httplib.h 721 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781782783784785786787788789790791792793794795796797798799800801802803804805806807808809810811812813814815816817818819820821822823824825826827828829830831832833834835836837838839840841842843844845846847848849850851852853854855856857858859860861862863864865866867868869870871872873874875876877878879880881882883884885886887888889890891892893894895896897898899900901902903904905906907908909910911912913914915916917918919920921922923924925926927928929930931932933934935936937938939940941942943944945946947948949950951952953954955956957958959960961962963964965966967968969970971972973974975976977978979980981982983984985986987988989990991992993994995996997998999100010011002100310041005100610071008100910101011101210131014101510161017101810191020102110221023102410251026102710281029103010311032103310341035103610371038103910401041104210431044104510461047104810491050105110521053105410551056105710581059106010611062106310641065106610671068106910701071107210731074107510761077107810791080108110821083108410851086108710881089109010911092109310941095109610971098109911001101110211031104110511061107110811091110111111121113111411151116111711181119112011211122112311241125112611271128112911301131113211331134113511361137113811391140114111421143114411451146114711481149115011511152115311541155115611571158115911601161116211631164116511661167116811691170117111721173117411751176117711781179118011811182118311841185118611871188118911901191119211931194119511961197119811991200120112021203120412051206120712081209121012111212121312141215121612171218121912201221122212231224122512261227122812291230123112321233123412351236123712381239124012411242124312441245124612471248124912501251125212531254125512561257125812591260126112621263126412651266126712681269127012711272127312741275127612771278127912801281128212831284128512861287128812891290129112921293129412951296129712981299130013011302130313041305130613071308130913101311131213131314131513161317131813191320132113221323132413251326132713281329133013311332133313341335133613371338133913401341134213431344134513461347134813491350135113521353135413551356135713581359136013611362136313641365136613671368136913701371137213731374137513761377137813791380138113821383138413851386138713881389139013911392139313941395139613971398139914001401140214031404140514061407140814091410141114121413141414151416141714181419142014211422142314241425142614271428142914301431143214331434143514361437143814391440144114421443144414451446144714481449145014511452145314541455145614571458145914601461146214631464146514661467146814691470147114721473147414751476147714781479148014811482148314841485148614871488148914901491149214931494149514961497149814991500150115021503150415051506150715081509151015111512151315141515151615171518151915201521152215231524152515261527152815291530153115321533153415351536153715381539154015411542154315441545154615471548154915501551155215531554155515561557155815591560156115621563156415651566156715681569157015711572157315741575157615771578157915801581158215831584158515861587158815891590159115921593159415951596159715981599160016011602160316041605160616071608160916101611161216131614161516161617161816191620162116221623162416251626162716281629163016311632163316341635163616371638163916401641164216431644164516461647164816491650165116521653165416551656165716581659166016611662166316641665166616671668166916701671167216731674167516761677167816791680168116821683168416851686168716881689169016911692169316941695169616971698169917001701170217031704170517061707170817091710171117121713171417151716171717181719172017211722172317241725172617271728172917301731173217331734173517361737173817391740174117421743174417451746174717481749175017511752175317541755175617571758175917601761176217631764176517661767176817691770177117721773177417751776177717781779178017811782178317841785178617871788178917901791179217931794179517961797179817991800180118021803180418051806180718081809181018111812181318141815181618171818181918201821182218231824182518261827182818291830183118321833183418351836183718381839184018411842184318441845184618471848184918501851185218531854185518561857185818591860186118621863186418651866186718681869187018711872187318741875187618771878187918801881188218831884188518861887188818891890189118921893189418951896189718981899190019011902190319041905190619071908190919101911191219131914191519161917191819191920192119221923192419251926192719281929193019311932193319341935193619371938193919401941194219431944194519461947194819491950195119521953195419551956195719581959196019611962196319641965196619671968196919701971197219731974197519761977197819791980198119821983198419851986198719881989199019911992199319941995199619971998199920002001200220032004200520062007200820092010201120122013201420152016201720182019202020212022202320242025202620272028202920302031203220332034203520362037203820392040204120422043204420452046204720482049205020512052205320542055205620572058205920602061206220632064206520662067206820692070207120722073207420752076207720782079208020812082208320842085208620872088208920902091209220932094209520962097209820992100210121022103210421052106210721082109211021112112211321142115211621172118211921202121212221232124212521262127212821292130213121322133213421352136213721382139214021412142214321442145214621472148214921502151215221532154215521562157215821592160216121622163216421652166216721682169217021712172217321742175217621772178217921802181218221832184218521862187218821892190219121922193219421952196219721982199220022012202220322042205220622072208220922102211221222132214221522162217221822192220222122222223222422252226222722282229223022312232223322342235223622372238223922402241224222432244224522462247224822492250225122522253225422552256225722582259226022612262226322642265226622672268226922702271227222732274227522762277227822792280228122822283228422852286228722882289229022912292229322942295229622972298229923002301230223032304230523062307230823092310231123122313231423152316231723182319232023212322232323242325232623272328232923302331233223332334233523362337233823392340234123422343234423452346234723482349235023512352235323542355235623572358235923602361236223632364236523662367236823692370237123722373237423752376237723782379238023812382238323842385238623872388238923902391239223932394239523962397239823992400240124022403240424052406240724082409241024112412241324142415241624172418241924202421242224232424242524262427242824292430243124322433243424352436243724382439244024412442244324442445244624472448244924502451245224532454245524562457245824592460246124622463246424652466246724682469247024712472247324742475247624772478247924802481248224832484248524862487248824892490249124922493249424952496249724982499250025012502250325042505250625072508250925102511251225132514251525162517251825192520252125222523252425252526252725282529253025312532253325342535253625372538253925402541254225432544254525462547254825492550255125522553255425552556255725582559256025612562256325642565256625672568256925702571257225732574257525762577257825792580258125822583258425852586258725882589259025912592259325942595259625972598259926002601260226032604260526062607260826092610261126122613261426152616261726182619262026212622262326242625262626272628262926302631263226332634263526362637263826392640264126422643264426452646264726482649265026512652265326542655265626572658265926602661266226632664266526662667266826692670267126722673267426752676267726782679268026812682268326842685268626872688268926902691269226932694269526962697269826992700270127022703270427052706270727082709271027112712271327142715271627172718271927202721272227232724272527262727272827292730273127322733273427352736273727382739274027412742274327442745274627472748274927502751275227532754275527562757275827592760276127622763276427652766276727682769277027712772277327742775277627772778277927802781278227832784278527862787278827892790279127922793279427952796279727982799280028012802280328042805280628072808280928102811281228132814281528162817281828192820282128222823282428252826282728282829283028312832283328342835283628372838283928402841284228432844284528462847284828492850285128522853285428552856285728582859286028612862286328642865286628672868286928702871287228732874287528762877287828792880288128822883288428852886288728882889289028912892289328942895289628972898289929002901290229032904290529062907290829092910291129122913291429152916291729182919292029212922292329242925292629272928292929302931293229332934293529362937293829392940294129422943294429452946294729482949295029512952295329542955295629572958295929602961296229632964296529662967296829692970297129722973297429752976297729782979298029812982298329842985298629872988298929902991299229932994299529962997299829993000300130023003300430053006300730083009301030113012301330143015301630173018301930203021302230233024302530263027302830293030303130323033303430353036303730383039304030413042304330443045304630473048304930503051305230533054305530563057305830593060306130623063306430653066306730683069307030713072307330743075307630773078307930803081308230833084308530863087308830893090309130923093309430953096309730983099310031013102310331043105310631073108310931103111311231133114311531163117311831193120312131223123312431253126312731283129313031313132313331343135313631373138313931403141314231433144314531463147314831493150315131523153315431553156315731583159316031613162316331643165316631673168316931703171317231733174317531763177317831793180318131823183318431853186318731883189319031913192319331943195319631973198319932003201320232033204320532063207320832093210321132123213321432153216321732183219322032213222322332243225322632273228322932303231323232333234323532363237323832393240324132423243324432453246324732483249325032513252325332543255325632573258325932603261326232633264326532663267326832693270327132723273327432753276327732783279328032813282328332843285328632873288328932903291329232933294329532963297329832993300330133023303330433053306330733083309331033113312331333143315331633173318331933203321332233233324332533263327332833293330333133323333333433353336333733383339334033413342334333443345334633473348334933503351335233533354335533563357335833593360336133623363336433653366336733683369337033713372337333743375337633773378337933803381338233833384338533863387338833893390339133923393339433953396339733983399340034013402340334043405340634073408340934103411341234133414341534163417341834193420342134223423342434253426342734283429343034313432343334343435343634373438343934403441344234433444344534463447344834493450345134523453345434553456345734583459346034613462346334643465346634673468346934703471347234733474347534763477347834793480348134823483348434853486348734883489349034913492349334943495349634973498349935003501350235033504350535063507350835093510351135123513351435153516351735183519352035213522352335243525352635273528352935303531353235333534353535363537353835393540354135423543354435453546354735483549355035513552355335543555355635573558355935603561356235633564356535663567356835693570357135723573357435753576357735783579358035813582358335843585358635873588358935903591359235933594359535963597359835993600360136023603360436053606360736083609361036113612361336143615361636173618361936203621362236233624362536263627362836293630363136323633363436353636363736383639364036413642364336443645364636473648364936503651365236533654365536563657365836593660366136623663366436653666366736683669367036713672367336743675367636773678367936803681368236833684368536863687368836893690369136923693369436953696369736983699370037013702370337043705370637073708370937103711371237133714371537163717371837193720372137223723372437253726372737283729373037313732373337343735373637373738373937403741374237433744374537463747374837493750375137523753375437553756375737583759376037613762376337643765376637673768376937703771377237733774377537763777377837793780378137823783378437853786378737883789379037913792379337943795379637973798379938003801380238033804380538063807380838093810381138123813381438153816381738183819382038213822382338243825382638273828382938303831383238333834383538363837383838393840384138423843384438453846384738483849385038513852385338543855385638573858385938603861386238633864386538663867386838693870387138723873387438753876387738783879388038813882388338843885388638873888388938903891389238933894389538963897389838993900390139023903390439053906390739083909391039113912391339143915391639173918391939203921392239233924392539263927392839293930393139323933393439353936393739383939394039413942394339443945394639473948394939503951395239533954395539563957395839593960396139623963396439653966396739683969397039713972397339743975397639773978397939803981398239833984398539863987398839893990399139923993399439953996399739983999400040014002400340044005400640074008400940104011401240134014401540164017401840194020402140224023402440254026402740284029403040314032403340344035403640374038403940404041404240434044404540464047404840494050405140524053405440554056405740584059406040614062406340644065406640674068406940704071407240734074407540764077407840794080408140824083408440854086408740884089409040914092409340944095409640974098409941004101410241034104410541064107410841094110411141124113411441154116411741184119412041214122412341244125412641274128412941304131413241334134413541364137413841394140414141424143414441454146414741484149415041514152415341544155415641574158415941604161416241634164416541664167416841694170417141724173417441754176417741784179418041814182418341844185418641874188418941904191419241934194419541964197419841994200420142024203420442054206420742084209421042114212421342144215421642174218421942204221422242234224422542264227422842294230423142324233423442354236423742384239424042414242424342444245424642474248424942504251425242534254425542564257425842594260426142624263426442654266426742684269427042714272427342744275427642774278427942804281428242834284428542864287428842894290429142924293429442954296429742984299430043014302430343044305430643074308430943104311431243134314431543164317431843194320432143224323432443254326432743284329433043314332433343344335433643374338433943404341434243434344434543464347434843494350435143524353435443554356435743584359436043614362436343644365436643674368436943704371437243734374437543764377437843794380438143824383438443854386438743884389439043914392439343944395439643974398439944004401440244034404440544064407440844094410441144124413441444154416441744184419442044214422442344244425442644274428442944304431443244334434443544364437443844394440444144424443444444454446444744484449445044514452445344544455445644574458445944604461446244634464446544664467446844694470447144724473447444754476447744784479448044814482448344844485448644874488448944904491449244934494449544964497449844994500450145024503450445054506450745084509451045114512451345144515451645174518451945204521452245234524452545264527452845294530453145324533453445354536453745384539454045414542454345444545454645474548454945504551455245534554455545564557455845594560456145624563456445654566456745684569457045714572457345744575457645774578457945804581458245834584458545864587458845894590459145924593459445954596459745984599460046014602460346044605460646074608460946104611461246134614461546164617461846194620462146224623462446254626462746284629463046314632463346344635463646374638463946404641464246434644464546464647464846494650465146524653465446554656465746584659466046614662466346644665466646674668466946704671467246734674467546764677467846794680468146824683468446854686468746884689469046914692469346944695469646974698469947004701470247034704470547064707470847094710471147124713471447154716471747184719472047214722472347244725472647274728472947304731473247334734473547364737473847394740474147424743474447454746474747484749475047514752475347544755475647574758475947604761476247634764476547664767476847694770477147724773477447754776477747784779478047814782478347844785478647874788478947904791479247934794479547964797479847994800480148024803480448054806480748084809481048114812481348144815481648174818481948204821482248234824482548264827482848294830483148324833483448354836483748384839484048414842484348444845484648474848484948504851485248534854485548564857485848594860486148624863486448654866486748684869487048714872487348744875487648774878487948804881488248834884488548864887488848894890489148924893489448954896489748984899490049014902490349044905490649074908490949104911491249134914491549164917491849194920492149224923492449254926492749284929493049314932493349344935493649374938493949404941494249434944494549464947494849494950495149524953495449554956495749584959496049614962496349644965496649674968496949704971497249734974497549764977497849794980498149824983498449854986498749884989499049914992499349944995499649974998499950005001500250035004500550065007500850095010501150125013501450155016501750185019502050215022502350245025502650275028502950305031503250335034503550365037503850395040504150425043504450455046504750485049505050515052505350545055505650575058505950605061506250635064506550665067506850695070507150725073507450755076507750785079508050815082508350845085508650875088508950905091509250935094509550965097509850995100510151025103510451055106510751085109511051115112511351145115511651175118511951205121512251235124512551265127512851295130513151325133513451355136513751385139514051415142514351445145514651475148514951505151515251535154515551565157515851595160516151625163516451655166516751685169517051715172517351745175517651775178517951805181518251835184518551865187518851895190519151925193519451955196519751985199520052015202520352045205520652075208520952105211521252135214521552165217521852195220522152225223522452255226522752285229523052315232523352345235523652375238523952405241524252435244524552465247524852495250525152525253525452555256525752585259526052615262526352645265526652675268526952705271527252735274527552765277527852795280528152825283528452855286528752885289529052915292529352945295529652975298529953005301530253035304530553065307530853095310531153125313531453155316531753185319532053215322532353245325532653275328532953305331533253335334533553365337533853395340534153425343534453455346534753485349535053515352535353545355535653575358535953605361536253635364536553665367536853695370537153725373537453755376537753785379538053815382538353845385538653875388538953905391539253935394539553965397539853995400540154025403540454055406540754085409541054115412541354145415541654175418541954205421542254235424542554265427542854295430543154325433543454355436543754385439544054415442544354445445544654475448544954505451545254535454545554565457545854595460546154625463546454655466546754685469547054715472547354745475547654775478547954805481548254835484548554865487548854895490549154925493549454955496549754985499550055015502550355045505550655075508550955105511551255135514551555165517551855195520552155225523552455255526552755285529553055315532553355345535553655375538553955405541554255435544554555465547554855495550555155525553555455555556555755585559556055615562556355645565556655675568556955705571557255735574557555765577557855795580558155825583558455855586558755885589559055915592559355945595559655975598559956005601560256035604560556065607560856095610561156125613561456155616561756185619562056215622562356245625562656275628562956305631563256335634563556365637563856395640564156425643564456455646564756485649565056515652565356545655565656575658565956605661566256635664566556665667566856695670567156725673567456755676567756785679568056815682568356845685568656875688568956905691569256935694569556965697569856995700570157025703570457055706570757085709571057115712571357145715571657175718571957205721572257235724572557265727572857295730573157325733573457355736573757385739574057415742574357445745574657475748574957505751575257535754575557565757575857595760576157625763576457655766576757685769577057715772577357745775577657775778577957805781578257835784578557865787578857895790579157925793579457955796579757985799580058015802580358045805580658075808580958105811581258135814581558165817581858195820582158225823582458255826582758285829583058315832583358345835583658375838583958405841584258435844584558465847584858495850585158525853585458555856585758585859586058615862586358645865586658675868586958705871587258735874587558765877587858795880588158825883588458855886588758885889589058915892589358945895589658975898589959005901590259035904590559065907590859095910591159125913591459155916591759185919592059215922592359245925592659275928592959305931593259335934593559365937593859395940594159425943594459455946594759485949595059515952595359545955595659575958595959605961596259635964596559665967596859695970597159725973597459755976597759785979598059815982598359845985598659875988598959905991599259935994599559965997599859996000600160026003600460056006600760086009601060116012601360146015601660176018601960206021602260236024602560266027602860296030603160326033603460356036603760386039604060416042604360446045604660476048604960506051605260536054605560566057605860596060606160626063606460656066606760686069607060716072607360746075607660776078607960806081608260836084608560866087608860896090609160926093609460956096609760986099610061016102610361046105610661076108610961106111611261136114611561166117611861196120612161226123612461256126612761286129613061316132613361346135613661376138613961406141614261436144614561466147614861496150615161526153615461556156615761586159616061616162616361646165616661676168616961706171617261736174617561766177617861796180618161826183618461856186618761886189619061916192619361946195619661976198619962006201620262036204620562066207620862096210621162126213621462156216621762186219622062216222622362246225622662276228622962306231623262336234623562366237623862396240624162426243624462456246624762486249625062516252625362546255625662576258625962606261626262636264626562666267626862696270627162726273627462756276627762786279628062816282628362846285628662876288628962906291629262936294629562966297629862996300630163026303630463056306630763086309631063116312631363146315631663176318631963206321632263236324632563266327632863296330633163326333633463356336633763386339634063416342634363446345634663476348634963506351635263536354635563566357635863596360636163626363636463656366636763686369637063716372637363746375637663776378637963806381638263836384638563866387638863896390639163926393639463956396639763986399640064016402640364046405640664076408640964106411641264136414641564166417641864196420642164226423642464256426642764286429643064316432643364346435643664376438643964406441644264436444644564466447644864496450645164526453645464556456645764586459646064616462646364646465646664676468646964706471647264736474647564766477647864796480648164826483648464856486648764886489649064916492649364946495649664976498649965006501650265036504650565066507650865096510651165126513651465156516651765186519652065216522652365246525652665276528652965306531653265336534653565366537653865396540654165426543654465456546654765486549655065516552655365546555655665576558655965606561656265636564656565666567656865696570657165726573657465756576657765786579658065816582658365846585658665876588658965906591659265936594659565966597659865996600660166026603660466056606660766086609661066116612661366146615661666176618661966206621662266236624662566266627662866296630663166326633663466356636663766386639664066416642664366446645664666476648664966506651665266536654665566566657665866596660666166626663666466656666666766686669667066716672667366746675667666776678667966806681668266836684668566866687668866896690669166926693669466956696669766986699670067016702670367046705670667076708670967106711671267136714671567166717671867196720672167226723672467256726672767286729673067316732673367346735673667376738673967406741674267436744674567466747674867496750675167526753675467556756675767586759676067616762676367646765676667676768676967706771677267736774677567766777677867796780678167826783678467856786678767886789679067916792679367946795679667976798679968006801680268036804680568066807680868096810681168126813681468156816681768186819682068216822682368246825682668276828682968306831683268336834683568366837683868396840684168426843684468456846684768486849685068516852685368546855685668576858685968606861686268636864686568666867686868696870687168726873687468756876687768786879688068816882688368846885688668876888688968906891689268936894689568966897689868996900690169026903690469056906690769086909691069116912691369146915691669176918691969206921692269236924692569266927692869296930693169326933693469356936693769386939694069416942694369446945694669476948694969506951695269536954695569566957695869596960696169626963696469656966696769686969697069716972697369746975697669776978697969806981698269836984698569866987698869896990699169926993699469956996699769986999700070017002700370047005700670077008700970107011701270137014701570167017701870197020702170227023702470257026702770287029703070317032703370347035703670377038703970407041704270437044704570467047704870497050705170527053705470557056705770587059706070617062706370647065706670677068706970707071707270737074707570767077707870797080708170827083708470857086708770887089709070917092709370947095709670977098709971007101710271037104710571067107710871097110711171127113711471157116711771187119712071217122712371247125712671277128712971307131713271337134713571367137713871397140714171427143714471457146714771487149715071517152715371547155715671577158715971607161716271637164716571667167716871697170717171727173717471757176717771787179718071817182718371847185718671877188718971907191719271937194719571967197719871997200720172027203720472057206720772087209721072117212721372147215721672177218721972207221722272237224722572267227722872297230723172327233723472357236723772387239724072417242724372447245724672477248724972507251725272537254725572567257725872597260726172627263726472657266726772687269727072717272727372747275727672777278727972807281728272837284728572867287728872897290729172927293729472957296729772987299730073017302730373047305730673077308730973107311731273137314731573167317731873197320732173227323732473257326732773287329733073317332733373347335733673377338733973407341734273437344734573467347734873497350735173527353735473557356735773587359736073617362736373647365736673677368736973707371737273737374737573767377737873797380738173827383738473857386738773887389739073917392739373947395739673977398739974007401740274037404740574067407740874097410741174127413741474157416741774187419742074217422742374247425742674277428742974307431743274337434743574367437743874397440744174427443744474457446744774487449745074517452745374547455745674577458745974607461746274637464746574667467746874697470747174727473747474757476747774787479748074817482748374847485748674877488748974907491749274937494749574967497749874997500750175027503750475057506750775087509751075117512751375147515751675177518751975207521752275237524752575267527752875297530753175327533753475357536753775387539754075417542754375447545754675477548754975507551755275537554755575567557755875597560756175627563756475657566756775687569757075717572757375747575757675777578757975807581758275837584758575867587758875897590759175927593759475957596759775987599760076017602760376047605760676077608760976107611761276137614761576167617761876197620762176227623762476257626762776287629763076317632763376347635763676377638763976407641764276437644764576467647764876497650765176527653765476557656765776587659766076617662766376647665766676677668766976707671767276737674767576767677767876797680768176827683768476857686768776887689769076917692769376947695769676977698769977007701770277037704770577067707770877097710771177127713771477157716771777187719772077217722772377247725772677277728772977307731773277337734773577367737773877397740774177427743774477457746774777487749775077517752775377547755775677577758775977607761776277637764776577667767776877697770777177727773777477757776777777787779778077817782778377847785778677877788778977907791779277937794779577967797779877997800780178027803780478057806780778087809781078117812781378147815781678177818781978207821782278237824782578267827782878297830783178327833783478357836783778387839784078417842784378447845784678477848784978507851785278537854785578567857785878597860786178627863786478657866786778687869787078717872787378747875787678777878787978807881788278837884788578867887788878897890789178927893789478957896789778987899790079017902790379047905790679077908790979107911791279137914791579167917791879197920792179227923792479257926792779287929793079317932793379347935793679377938793979407941794279437944794579467947794879497950795179527953795479557956795779587959796079617962796379647965796679677968796979707971797279737974797579767977797879797980798179827983798479857986798779887989799079917992799379947995799679977998799980008001800280038004800580068007800880098010801180128013801480158016801780188019802080218022802380248025802680278028802980308031803280338034803580368037803880398040804180428043804480458046804780488049805080518052805380548055805680578058805980608061806280638064806580668067806880698070807180728073807480758076807780788079808080818082808380848085808680878088808980908091809280938094809580968097809880998100810181028103810481058106810781088109811081118112811381148115811681178118811981208121812281238124812581268127812881298130813181328133813481358136813781388139814081418142814381448145814681478148814981508151815281538154815581568157815881598160816181628163816481658166816781688169817081718172817381748175817681778178817981808181818281838184818581868187818881898190819181928193819481958196819781988199820082018202820382048205820682078208820982108211821282138214821582168217821882198220822182228223822482258226822782288229823082318232823382348235823682378238823982408241824282438244824582468247824882498250825182528253825482558256825782588259826082618262826382648265826682678268826982708271827282738274827582768277827882798280828182828283828482858286828782888289829082918292829382948295829682978298829983008301830283038304830583068307830883098310831183128313831483158316831783188319832083218322832383248325832683278328832983308331833283338334833583368337833883398340834183428343834483458346834783488349835083518352835383548355835683578358835983608361836283638364836583668367836883698370837183728373837483758376837783788379838083818382838383848385838683878388838983908391839283938394839583968397839883998400840184028403840484058406840784088409841084118412841384148415841684178418841984208421842284238424842584268427842884298430843184328433843484358436843784388439844084418442844384448445844684478448844984508451845284538454845584568457845884598460846184628463846484658466846784688469847084718472847384748475847684778478847984808481848284838484848584868487848884898490849184928493849484958496849784988499850085018502850385048505850685078508850985108511851285138514851585168517851885198520852185228523852485258526852785288529853085318532853385348535853685378538853985408541854285438544854585468547854885498550855185528553855485558556855785588559856085618562856385648565856685678568856985708571857285738574857585768577857885798580858185828583858485858586858785888589859085918592859385948595859685978598859986008601860286038604860586068607860886098610861186128613861486158616861786188619862086218622862386248625862686278628862986308631863286338634863586368637863886398640864186428643864486458646864786488649865086518652865386548655865686578658865986608661866286638664866586668667866886698670867186728673867486758676867786788679868086818682868386848685868686878688868986908691869286938694869586968697869886998700870187028703870487058706870787088709871087118712871387148715871687178718871987208721872287238724872587268727872887298730873187328733873487358736873787388739874087418742874387448745874687478748874987508751875287538754875587568757875887598760876187628763876487658766876787688769877087718772877387748775877687778778877987808781878287838784878587868787878887898790879187928793879487958796879787988799880088018802880388048805880688078808880988108811881288138814881588168817881888198820882188228823882488258826882788288829883088318832883388348835883688378838883988408841884288438844884588468847884888498850885188528853885488558856885788588859886088618862886388648865886688678868886988708871887288738874887588768877887888798880888188828883888488858886888788888889889088918892889388948895889688978898889989008901890289038904890589068907890889098910891189128913891489158916891789188919892089218922892389248925892689278928892989308931893289338934893589368937893889398940894189428943894489458946894789488949895089518952895389548955895689578958895989608961896289638964896589668967896889698970897189728973897489758976897789788979898089818982898389848985898689878988898989908991899289938994899589968997899889999000900190029003900490059006900790089009901090119012901390149015901690179018901990209021902290239024902590269027902890299030903190329033903490359036903790389039904090419042904390449045904690479048904990509051905290539054905590569057905890599060906190629063906490659066906790689069907090719072907390749075907690779078907990809081908290839084908590869087908890899090909190929093909490959096909790989099910091019102910391049105910691079108910991109111911291139114911591169117911891199120912191229123912491259126912791289129913091319132913391349135913691379138913991409141914291439144914591469147914891499150915191529153915491559156915791589159916091619162916391649165916691679168916991709171917291739174917591769177917891799180918191829183918491859186918791889189919091919192919391949195919691979198919992009201920292039204920592069207920892099210921192129213921492159216921792189219922092219222922392249225922692279228922992309231923292339234923592369237923892399240924192429243924492459246924792489249925092519252925392549255925692579258925992609261926292639264926592669267926892699270927192729273927492759276927792789279928092819282928392849285928692879288928992909291929292939294929592969297929892999300930193029303930493059306930793089309931093119312931393149315931693179318931993209321932293239324932593269327932893299330933193329333933493359336933793389339934093419342934393449345934693479348934993509351935293539354935593569357935893599360936193629363936493659366936793689369937093719372937393749375937693779378937993809381938293839384938593869387938893899390939193929393939493959396939793989399940094019402940394049405940694079408940994109411941294139414941594169417941894199420942194229423942494259426942794289429943094319432943394349435943694379438943994409441944294439444944594469447944894499450945194529453945494559456945794589459946094619462946394649465946694679468946994709471947294739474947594769477947894799480948194829483948494859486948794889489949094919492949394949495949694979498949995009501950295039504950595069507950895099510951195129513951495159516951795189519952095219522952395249525952695279528952995309531953295339534953595369537953895399540954195429543954495459546954795489549955095519552955395549555955695579558955995609561956295639564956595669567956895699570957195729573957495759576957795789579958095819582958395849585958695879588958995909591959295939594959595969597959895999600960196029603960496059606960796089609961096119612961396149615961696179618961996209621962296239624962596269627962896299630963196329633963496359636963796389639964096419642964396449645964696479648964996509651965296539654965596569657965896599660966196629663966496659666966796689669967096719672967396749675967696779678967996809681968296839684968596869687968896899690969196929693969496959696969796989699970097019702970397049705970697079708970997109711971297139714971597169717971897199720972197229723972497259726972797289729973097319732973397349735973697379738973997409741974297439744974597469747974897499750975197529753975497559756975797589759976097619762976397649765976697679768976997709771977297739774977597769777977897799780978197829783978497859786978797889789979097919792979397949795979697979798979998009801980298039804980598069807980898099810981198129813981498159816981798189819982098219822982398249825982698279828982998309831983298339834983598369837983898399840984198429843984498459846984798489849985098519852985398549855985698579858985998609861986298639864986598669867986898699870987198729873987498759876987798789879988098819882988398849885988698879888988998909891989298939894989598969897989898999900990199029903990499059906990799089909991099119912991399149915991699179918991999209921992299239924992599269927992899299930993199329933993499359936993799389939994099419942994399449945994699479948994999509951995299539954995599569957995899599960996199629963996499659966996799689969997099719972997399749975997699779978997999809981998299839984998599869987998899899990999199929993999499959996999799989999100001000110002100031000410005100061000710008100091001010011100121001310014100151001610017100181001910020100211002210023100241002510026100271002810029100301003110032100331003410035100361003710038100391004010041100421004310044100451004610047100481004910050100511005210053100541005510056100571005810059100601006110062100631006410065100661006710068100691007010071100721007310074100751007610077100781007910080100811008210083100841008510086100871008810089100901009110092100931009410095100961009710098100991010010101101021010310104101051010610107101081010910110101111011210113101141011510116101171011810119101201012110122101231012410125101261012710128101291013010131101321013310134101351013610137101381013910140101411014210143101441014510146101471014810149101501015110152101531015410155101561015710158101591016010161101621016310164101651016610167101681016910170101711017210173101741017510176101771017810179101801018110182101831018410185101861018710188101891019010191101921019310194101951019610197101981019910200102011020210203102041020510206102071020810209102101021110212102131021410215102161021710218102191022010221102221022310224102251022610227102281022910230102311023210233102341023510236102371023810239102401024110242102431024410245102461024710248102491025010251102521025310254102551025610257102581025910260102611026210263102641026510266102671026810269102701027110272102731027410275102761027710278102791028010281102821028310284102851028610287102881028910290102911029210293102941029510296102971029810299103001030110302103031030410305103061030710308103091031010311103121031310314103151031610317103181031910320103211032210323103241032510326103271032810329103301033110332103331033410335103361033710338103391034010341103421034310344103451034610347103481034910350103511035210353103541035510356103571035810359103601036110362103631036410365103661036710368103691037010371103721037310374103751037610377103781037910380103811038210383103841038510386103871038810389103901039110392103931039410395103961039710398103991040010401104021040310404104051040610407104081040910410104111041210413104141041510416104171041810419104201042110422104231042410425104261042710428104291043010431104321043310434104351043610437104381043910440104411044210443104441044510446104471044810449104501045110452104531045410455104561045710458104591046010461104621046310464104651046610467104681046910470104711047210473104741047510476104771047810479104801048110482104831048410485104861048710488104891049010491104921049310494104951049610497104981049910500105011050210503105041050510506105071050810509105101051110512105131051410515105161051710518105191052010521105221052310524105251052610527105281052910530105311053210533105341053510536105371053810539105401054110542105431054410545105461054710548105491055010551105521055310554105551055610557105581055910560105611056210563105641056510566105671056810569105701057110572105731057410575105761057710578105791058010581105821058310584105851058610587105881058910590105911059210593105941059510596105971059810599106001060110602106031060410605106061060710608106091061010611106121061310614106151061610617106181061910620106211062210623106241062510626106271062810629106301063110632106331063410635106361063710638106391064010641106421064310644106451064610647106481064910650106511065210653106541065510656106571065810659106601066110662106631066410665106661066710668106691067010671106721067310674106751067610677106781067910680106811068210683106841068510686106871068810689106901069110692106931069410695106961069710698106991070010701107021070310704107051070610707107081070910710107111071210713107141071510716107171071810719107201072110722107231072410725107261072710728107291073010731107321073310734107351073610737107381073910740107411074210743107441074510746107471074810749107501075110752107531075410755107561075710758107591076010761107621076310764107651076610767107681076910770107711077210773107741077510776107771077810779107801078110782107831078410785107861078710788107891079010791107921079310794107951079610797107981079910800108011080210803108041080510806108071080810809108101081110812108131081410815108161081710818108191082010821108221082310824108251082610827108281082910830108311083210833108341083510836108371083810839108401084110842108431084410845108461084710848108491085010851108521085310854108551085610857108581085910860108611086210863108641086510866108671086810869108701087110872108731087410875108761087710878108791088010881108821088310884108851088610887108881088910890108911089210893108941089510896108971089810899109001090110902109031090410905109061090710908109091091010911109121091310914109151091610917109181091910920109211092210923109241092510926109271092810929109301093110932109331093410935109361093710938109391094010941109421094310944109451094610947109481094910950109511095210953109541095510956109571095810959109601096110962109631096410965109661096710968109691097010971109721097310974109751097610977109781097910980109811098210983109841098510986109871098810989109901099110992109931099410995109961099710998109991100011001110021100311004110051100611007110081100911010110111101211013110141101511016110171101811019110201102111022110231102411025110261102711028110291103011031110321103311034110351103611037110381103911040110411104211043110441104511046110471104811049110501105111052110531105411055110561105711058110591106011061110621106311064110651106611067110681106911070110711107211073110741107511076110771107811079110801108111082110831108411085110861108711088110891109011091110921109311094110951109611097110981109911100111011110211103111041110511106111071110811109111101111111112111131111411115111161111711118111191112011121111221112311124111251112611127111281112911130111311113211133111341113511136111371113811139111401114111142111431114411145111461114711148111491115011151111521115311154111551115611157111581115911160111611116211163111641116511166111671116811169111701117111172111731117411175111761117711178111791118011181111821118311184111851118611187111881118911190111911119211193111941119511196111971119811199112001120111202112031120411205112061120711208112091121011211112121121311214112151121611217112181121911220112211122211223112241122511226112271122811229112301123111232112331123411235112361123711238112391124011241112421124311244112451124611247112481124911250112511125211253112541125511256112571125811259112601126111262112631126411265112661126711268112691127011271112721127311274112751127611277112781127911280112811128211283112841128511286112871128811289112901129111292112931129411295112961129711298112991130011301113021130311304113051130611307113081130911310113111131211313113141131511316113171131811319113201132111322113231132411325113261132711328113291133011331113321133311334113351133611337113381133911340113411134211343113441134511346113471134811349113501135111352113531135411355113561135711358113591136011361113621136311364113651136611367113681136911370113711137211373113741137511376113771137811379113801138111382113831138411385113861138711388113891139011391113921139311394113951139611397113981139911400114011140211403114041140511406114071140811409114101141111412114131141411415114161141711418114191142011421114221142311424114251142611427114281142911430114311143211433114341143511436114371143811439114401144111442114431144411445114461144711448114491145011451114521145311454114551145611457114581145911460114611146211463114641146511466114671146811469114701147111472114731147411475114761147711478114791148011481114821148311484114851148611487114881148911490114911149211493114941149511496114971149811499115001150111502115031150411505115061150711508115091151011511115121151311514115151151611517115181151911520115211152211523115241152511526115271152811529115301153111532115331153411535115361153711538115391154011541115421154311544115451154611547115481154911550115511155211553115541155511556115571155811559115601156111562115631156411565115661156711568115691157011571115721157311574115751157611577115781157911580115811158211583115841158511586115871158811589115901159111592115931159411595115961159711598115991160011601116021160311604116051160611607116081160911610116111161211613116141161511616116171161811619116201162111622116231162411625116261162711628116291163011631116321163311634116351163611637116381163911640116411164211643116441164511646116471164811649116501165111652116531165411655116561165711658116591166011661116621166311664116651166611667116681166911670116711167211673116741167511676116771167811679116801168111682116831168411685116861168711688116891169011691116921169311694116951169611697116981169911700117011170211703117041170511706117071170811709117101171111712117131171411715117161171711718117191172011721117221172311724117251172611727117281172911730117311173211733117341173511736117371173811739117401174111742117431174411745117461174711748117491175011751117521175311754117551175611757117581175911760117611176211763117641176511766117671176811769117701177111772117731177411775117761177711778117791178011781117821178311784117851178611787117881178911790117911179211793117941179511796117971179811799118001180111802118031180411805118061180711808118091181011811118121181311814118151181611817118181181911820118211182211823118241182511826118271182811829118301183111832118331183411835118361183711838118391184011841118421184311844118451184611847118481184911850118511185211853118541185511856118571185811859118601186111862118631186411865118661186711868118691187011871118721187311874118751187611877118781187911880118811188211883118841188511886118871188811889118901189111892118931189411895118961189711898118991190011901119021190311904119051190611907119081190911910119111191211913119141191511916119171191811919119201192111922119231192411925119261192711928119291193011931119321193311934119351193611937119381193911940119411194211943119441194511946119471194811949119501195111952119531195411955119561195711958119591196011961119621196311964119651196611967119681196911970119711197211973119741197511976119771197811979119801198111982119831198411985119861198711988119891199011991119921199311994119951199611997119981199912000120011200212003120041200512006120071200812009120101201112012120131201412015120161201712018120191202012021120221202312024120251202612027120281202912030120311203212033120341203512036120371203812039120401204112042120431204412045120461204712048120491205012051120521205312054120551205612057120581205912060120611206212063120641206512066120671206812069120701207112072120731207412075120761207712078120791208012081120821208312084120851208612087120881208912090120911209212093120941209512096120971209812099121001210112102121031210412105121061210712108121091211012111121121211312114121151211612117121181211912120121211212212123121241212512126121271212812129121301213112132121331213412135121361213712138121391214012141121421214312144121451214612147121481214912150121511215212153121541215512156121571215812159121601216112162121631216412165121661216712168121691217012171121721217312174121751217612177121781217912180121811218212183121841218512186121871218812189121901219112192121931219412195121961219712198121991220012201122021220312204122051220612207122081220912210122111221212213122141221512216122171221812219122201222112222122231222412225122261222712228122291223012231122321223312234122351223612237122381223912240122411224212243122441224512246122471224812249122501225112252122531225412255122561225712258122591226012261122621226312264122651226612267122681226912270122711227212273122741227512276122771227812279122801228112282122831228412285122861228712288122891229012291122921229312294122951229612297122981229912300123011230212303123041230512306123071230812309123101231112312123131231412315123161231712318123191232012321123221232312324123251232612327123281232912330123311233212333123341233512336123371233812339123401234112342123431234412345123461234712348123491235012351123521235312354123551235612357123581235912360123611236212363123641236512366123671236812369123701237112372123731237412375123761237712378123791238012381123821238312384123851238612387123881238912390123911239212393123941239512396123971239812399124001240112402124031240412405124061240712408124091241012411124121241312414124151241612417124181241912420124211242212423124241242512426124271242812429124301243112432124331243412435124361243712438124391244012441124421244312444124451244612447124481244912450124511245212453124541245512456124571245812459124601246112462124631246412465124661246712468124691247012471124721247312474124751247612477124781247912480124811248212483124841248512486124871248812489124901249112492124931249412495124961249712498124991250012501125021250312504125051250612507125081250912510125111251212513125141251512516125171251812519125201252112522125231252412525125261252712528125291253012531125321253312534125351253612537125381253912540125411254212543125441254512546125471254812549125501255112552125531255412555125561255712558125591256012561125621256312564125651256612567125681256912570125711257212573125741257512576125771257812579125801258112582125831258412585125861258712588125891259012591125921259312594125951259612597125981259912600126011260212603126041260512606126071260812609126101261112612126131261412615126161261712618126191262012621126221262312624126251262612627126281262912630126311263212633126341263512636126371263812639126401264112642126431264412645126461264712648126491265012651126521265312654126551265612657126581265912660126611266212663126641266512666126671266812669126701267112672126731267412675126761267712678126791268012681126821268312684126851268612687126881268912690126911269212693126941269512696126971269812699127001270112702127031270412705127061270712708127091271012711127121271312714127151271612717127181271912720127211272212723127241272512726127271272812729127301273112732127331273412735127361273712738127391274012741127421274312744127451274612747127481274912750127511275212753127541275512756127571275812759127601276112762127631276412765127661276712768127691277012771127721277312774127751277612777127781277912780127811278212783127841278512786127871278812789127901279112792127931279412795127961279712798127991280012801128021280312804128051280612807128081280912810128111281212813128141281512816128171281812819128201282112822128231282412825128261282712828128291283012831128321283312834128351283612837128381283912840128411284212843128441284512846128471284812849128501285112852128531285412855128561285712858128591286012861128621286312864128651286612867128681286912870128711287212873128741287512876128771287812879128801288112882128831288412885128861288712888128891289012891128921289312894128951289612897128981289912900129011290212903129041290512906129071290812909129101291112912129131291412915129161291712918129191292012921129221292312924129251292612927129281292912930129311293212933129341293512936129371293812939129401294112942129431294412945129461294712948129491295012951129521295312954129551295612957129581295912960129611296212963129641296512966129671296812969129701297112972129731297412975129761297712978129791298012981129821298312984129851298612987129881298912990129911299212993129941299512996129971299812999130001300113002130031300413005130061300713008130091301013011130121301313014130151301613017130181301913020130211302213023130241302513026130271302813029130301303113032130331303413035130361303713038130391304013041130421304313044130451304613047130481304913050130511305213053130541305513056130571305813059130601306113062130631306413065130661306713068130691307013071130721307313074130751307613077130781307913080130811308213083130841308513086130871308813089130901309113092130931309413095130961309713098130991310013101131021310313104131051310613107131081310913110131111311213113131141311513116131171311813119131201312113122131231312413125131261312713128131291313013131131321313313134131351313613137131381313913140131411314213143131441314513146131471314813149131501315113152131531315413155131561315713158131591316013161131621316313164131651316613167131681316913170131711317213173131741317513176131771317813179131801318113182131831318413185131861318713188131891319013191131921319313194131951319613197131981319913200132011320213203132041320513206132071320813209132101321113212132131321413215132161321713218132191322013221132221322313224132251322613227132281322913230132311323213233132341323513236132371323813239132401324113242132431324413245132461324713248132491325013251132521325313254132551325613257132581325913260132611326213263132641326513266132671326813269132701327113272132731327413275132761327713278132791328013281132821328313284132851328613287132881328913290132911329213293132941329513296132971329813299133001330113302133031330413305133061330713308133091331013311133121331313314133151331613317133181331913320133211332213323133241332513326133271332813329133301333113332133331333413335133361333713338133391334013341133421334313344133451334613347133481334913350133511335213353133541335513356133571335813359133601336113362133631336413365133661336713368133691337013371133721337313374133751337613377133781337913380133811338213383133841338513386133871338813389133901339113392133931339413395133961339713398133991340013401134021340313404134051340613407134081340913410134111341213413134141341513416134171341813419134201342113422134231342413425134261342713428134291343013431134321343313434134351343613437134381343913440134411344213443134441344513446134471344813449134501345113452134531345413455134561345713458134591346013461134621346313464134651346613467134681346913470134711347213473134741347513476134771347813479134801348113482134831348413485134861348713488134891349013491134921349313494134951349613497134981349913500135011350213503135041350513506135071350813509135101351113512135131351413515135161351713518135191352013521135221352313524135251352613527135281352913530135311353213533135341353513536135371353813539135401354113542135431354413545135461354713548135491355013551135521355313554135551355613557135581355913560135611356213563135641356513566135671356813569135701357113572135731357413575135761357713578135791358013581135821358313584135851358613587135881358913590135911359213593135941359513596135971359813599136001360113602136031360413605136061360713608136091361013611136121361313614136151361613617136181361913620136211362213623136241362513626136271362813629136301363113632136331363413635136361363713638136391364013641136421364313644136451364613647136481364913650136511365213653136541365513656136571365813659136601366113662136631366413665136661366713668136691367013671136721367313674136751367613677136781367913680136811368213683136841368513686136871368813689136901369113692136931369413695136961369713698136991370013701137021370313704137051370613707137081370913710137111371213713137141371513716137171371813719137201372113722137231372413725137261372713728137291373013731137321373313734137351373613737137381373913740137411374213743137441374513746137471374813749137501375113752137531375413755137561375713758137591376013761137621376313764137651376613767137681376913770137711377213773137741377513776137771377813779137801378113782137831378413785137861378713788137891379013791137921379313794137951379613797137981379913800138011380213803138041380513806138071380813809138101381113812138131381413815138161381713818138191382013821138221382313824138251382613827138281382913830138311383213833138341383513836138371383813839138401384113842138431384413845138461384713848138491385013851138521385313854138551385613857138581385913860138611386213863138641386513866138671386813869138701387113872138731387413875138761387713878138791388013881138821388313884138851388613887138881388913890138911389213893138941389513896138971389813899139001390113902139031390413905139061390713908139091391013911139121391313914139151391613917139181391913920139211392213923139241392513926139271392813929139301393113932139331393413935139361393713938139391394013941139421394313944139451394613947139481394913950139511395213953139541395513956139571395813959139601396113962139631396413965139661396713968139691397013971139721397313974139751397613977139781397913980139811398213983139841398513986139871398813989139901399113992139931399413995139961399713998139991400014001140021400314004140051400614007140081400914010140111401214013140141401514016140171401814019140201402114022140231402414025140261402714028140291403014031140321403314034140351403614037140381403914040140411404214043140441404514046140471404814049140501405114052140531405414055140561405714058140591406014061140621406314064140651406614067140681406914070140711407214073140741407514076140771407814079140801408114082140831408414085140861408714088140891409014091140921409314094140951409614097140981409914100141011410214103141041410514106141071410814109141101411114112141131411414115141161411714118141191412014121141221412314124141251412614127141281412914130141311413214133141341413514136141371413814139141401414114142141431414414145141461414714148141491415014151141521415314154141551415614157141581415914160141611416214163141641416514166141671416814169141701417114172141731417414175141761417714178141791418014181141821418314184141851418614187141881418914190141911419214193141941419514196141971419814199142001420114202142031420414205142061420714208142091421014211142121421314214142151421614217142181421914220142211422214223142241422514226142271422814229142301423114232142331423414235142361423714238142391424014241142421424314244142451424614247142481424914250142511425214253142541425514256142571425814259142601426114262142631426414265142661426714268142691427014271142721427314274142751427614277142781427914280142811428214283142841428514286142871428814289142901429114292142931429414295142961429714298142991430014301143021430314304143051430614307143081430914310143111431214313143141431514316143171431814319143201432114322143231432414325143261432714328143291433014331143321433314334143351433614337143381433914340143411434214343143441434514346143471434814349143501435114352143531435414355143561435714358143591436014361143621436314364143651436614367143681436914370143711437214373143741437514376143771437814379143801438114382143831438414385143861438714388143891439014391143921439314394143951439614397143981439914400144011440214403144041440514406144071440814409144101441114412144131441414415144161441714418144191442014421144221442314424144251442614427144281442914430144311443214433144341443514436144371443814439144401444114442144431444414445144461444714448144491445014451144521445314454144551445614457144581445914460144611446214463144641446514466144671446814469144701447114472144731447414475144761447714478144791448014481144821448314484144851448614487144881448914490144911449214493144941449514496144971449814499145001450114502145031450414505145061450714508145091451014511145121451314514145151451614517145181451914520145211452214523145241452514526145271452814529145301453114532145331453414535145361453714538145391454014541145421454314544145451454614547145481454914550145511455214553145541455514556145571455814559145601456114562145631456414565145661456714568145691457014571145721457314574145751457614577145781457914580145811458214583145841458514586145871458814589145901459114592145931459414595145961459714598145991460014601146021460314604146051460614607146081460914610146111461214613146141461514616146171461814619146201462114622146231462414625146261462714628146291463014631146321463314634146351463614637146381463914640146411464214643146441464514646146471464814649146501465114652146531465414655146561465714658146591466014661146621466314664146651466614667146681466914670146711467214673146741467514676146771467814679146801468114682146831468414685146861468714688146891469014691146921469314694146951469614697146981469914700147011470214703147041470514706147071470814709147101471114712147131471414715147161471714718147191472014721147221472314724147251472614727147281472914730147311473214733147341473514736147371473814739147401474114742147431474414745147461474714748147491475014751147521475314754147551475614757147581475914760147611476214763147641476514766147671476814769147701477114772147731477414775147761477714778147791478014781147821478314784147851478614787147881478914790147911479214793147941479514796147971479814799148001480114802148031480414805148061480714808148091481014811148121481314814148151481614817148181481914820148211482214823148241482514826148271482814829148301483114832148331483414835148361483714838148391484014841148421484314844148451484614847148481484914850148511485214853148541485514856148571485814859148601486114862148631486414865148661486714868148691487014871148721487314874148751487614877148781487914880148811488214883148841488514886148871488814889148901489114892148931489414895148961489714898148991490014901149021490314904149051490614907149081490914910149111491214913149141491514916149171491814919149201492114922149231492414925149261492714928149291493014931149321493314934149351493614937149381493914940149411494214943149441494514946149471494814949149501495114952149531495414955149561495714958149591496014961149621496314964149651496614967149681496914970149711497214973149741497514976149771497814979149801498114982149831498414985149861498714988149891499014991149921499314994149951499614997149981499915000150011500215003150041500515006150071500815009150101501115012150131501415015150161501715018150191502015021150221502315024150251502615027150281502915030150311503215033150341503515036150371503815039150401504115042150431504415045150461504715048150491505015051150521505315054150551505615057150581505915060150611506215063150641506515066150671506815069150701507115072150731507415075150761507715078150791508015081150821508315084150851508615087150881508915090150911509215093150941509515096150971509815099151001510115102151031510415105151061510715108151091511015111151121511315114151151511615117151181511915120151211512215123151241512515126151271512815129151301513115132151331513415135151361513715138151391514015141151421514315144151451514615147151481514915150151511515215153151541515515156151571515815159151601516115162151631516415165151661516715168151691517015171151721517315174151751517615177151781517915180151811518215183151841518515186151871518815189151901519115192151931519415195151961519715198151991520015201152021520315204152051520615207152081520915210152111521215213152141521515216152171521815219152201522115222152231522415225152261522715228152291523015231152321523315234152351523615237152381523915240152411524215243152441524515246152471524815249152501525115252152531525415255152561525715258152591526015261152621526315264152651526615267152681526915270152711527215273152741527515276152771527815279152801528115282152831528415285152861528715288152891529015291152921529315294152951529615297152981529915300153011530215303153041530515306153071530815309153101531115312153131531415315153161531715318153191532015321153221532315324153251532615327153281532915330153311533215333153341533515336153371533815339153401534115342153431534415345153461534715348153491535015351153521535315354153551535615357153581535915360153611536215363153641536515366153671536815369153701537115372153731537415375153761537715378153791538015381153821538315384153851538615387153881538915390153911539215393153941539515396153971539815399154001540115402154031540415405154061540715408154091541015411154121541315414154151541615417154181541915420154211542215423154241542515426154271542815429154301543115432154331543415435154361543715438154391544015441154421544315444154451544615447154481544915450154511545215453154541545515456154571545815459154601546115462154631546415465154661546715468154691547015471154721547315474154751547615477154781547915480154811548215483154841548515486154871548815489154901549115492154931549415495154961549715498154991550015501155021550315504155051550615507155081550915510155111551215513155141551515516155171551815519155201552115522155231552415525155261552715528155291553015531155321553315534155351553615537155381553915540155411554215543155441554515546155471554815549155501555115552155531555415555155561555715558155591556015561155621556315564155651556615567155681556915570155711557215573155741557515576155771557815579155801558115582155831558415585155861558715588155891559015591155921559315594155951559615597155981559915600156011560215603156041560515606156071560815609156101561115612156131561415615156161561715618156191562015621156221562315624156251562615627156281562915630156311563215633156341563515636156371563815639156401564115642156431564415645156461564715648156491565015651156521565315654156551565615657156581565915660156611566215663156641566515666156671566815669156701567115672156731567415675156761567715678156791568015681156821568315684156851568615687156881568915690156911569215693156941569515696156971569815699157001570115702157031570415705157061570715708157091571015711157121571315714157151571615717157181571915720157211572215723157241572515726157271572815729157301573115732157331573415735157361573715738157391574015741157421574315744157451574615747157481574915750157511575215753157541575515756157571575815759157601576115762157631576415765157661576715768157691577015771157721577315774157751577615777157781577915780157811578215783157841578515786157871578815789157901579115792157931579415795157961579715798157991580015801158021580315804158051580615807158081580915810158111581215813158141581515816158171581815819158201582115822158231582415825158261582715828158291583015831158321583315834158351583615837158381583915840158411584215843158441584515846158471584815849158501585115852158531585415855158561585715858158591586015861158621586315864158651586615867158681586915870158711587215873158741587515876158771587815879158801588115882158831588415885158861588715888158891589015891158921589315894158951589615897158981589915900159011590215903159041590515906159071590815909159101591115912159131591415915159161591715918159191592015921159221592315924159251592615927159281592915930159311593215933159341593515936159371593815939159401594115942159431594415945159461594715948159491595015951159521595315954159551595615957159581595915960159611596215963159641596515966159671596815969159701597115972159731597415975159761597715978159791598015981159821598315984159851598615987159881598915990159911599215993159941599515996159971599815999160001600116002160031600416005160061600716008160091601016011160121601316014160151601616017160181601916020160211602216023160241602516026160271602816029160301603116032160331603416035160361603716038160391604016041160421604316044160451604616047160481604916050160511605216053160541605516056160571605816059160601606116062160631606416065160661606716068160691607016071160721607316074160751607616077160781607916080160811608216083160841608516086160871608816089160901609116092160931609416095160961609716098160991610016101161021610316104161051610616107161081610916110161111611216113161141611516116161171611816119161201612116122161231612416125161261612716128161291613016131161321613316134161351613616137161381613916140161411614216143161441614516146161471614816149161501615116152161531615416155161561615716158161591616016161161621616316164161651616616167161681616916170161711617216173161741617516176161771617816179161801618116182161831618416185161861618716188161891619016191161921619316194161951619616197161981619916200162011620216203162041620516206162071620816209162101621116212162131621416215162161621716218162191622016221162221622316224162251622616227162281622916230162311623216233162341623516236162371623816239162401624116242162431624416245162461624716248162491625016251162521625316254162551625616257162581625916260162611626216263162641626516266162671626816269162701627116272162731627416275162761627716278162791628016281162821628316284162851628616287162881628916290162911629216293162941629516296162971629816299163001630116302163031630416305163061630716308163091631016311163121631316314163151631616317163181631916320163211632216323163241632516326163271632816329163301633116332163331633416335163361633716338163391634016341163421634316344163451634616347163481634916350163511635216353163541635516356163571635816359163601636116362163631636416365163661636716368163691637016371163721637316374163751637616377163781637916380163811638216383163841638516386163871638816389163901639116392163931639416395163961639716398163991640016401164021640316404164051640616407164081640916410164111641216413164141641516416164171641816419164201642116422164231642416425164261642716428164291643016431164321643316434164351643616437164381643916440164411644216443164441644516446164471644816449164501645116452164531645416455164561645716458164591646016461164621646316464164651646616467164681646916470164711647216473164741647516476164771647816479164801648116482164831648416485164861648716488164891649016491164921649316494164951649616497164981649916500165011650216503165041650516506165071650816509165101651116512165131651416515165161651716518165191652016521165221652316524165251652616527165281652916530165311653216533165341653516536165371653816539165401654116542165431654416545165461654716548165491655016551165521655316554165551655616557165581655916560165611656216563165641656516566165671656816569165701657116572165731657416575165761657716578165791658016581165821658316584165851658616587165881658916590165911659216593165941659516596165971659816599166001660116602166031660416605166061660716608166091661016611166121661316614166151661616617166181661916620166211662216623166241662516626166271662816629166301663116632166331663416635166361663716638166391664016641166421664316644166451664616647166481664916650166511665216653166541665516656166571665816659166601666116662166631666416665166661666716668166691667016671166721667316674166751667616677166781667916680166811668216683166841668516686166871668816689166901669116692166931669416695166961669716698166991670016701167021670316704167051670616707167081670916710167111671216713167141671516716167171671816719167201672116722167231672416725167261672716728167291673016731167321673316734167351673616737167381673916740167411674216743167441674516746167471674816749167501675116752167531675416755167561675716758167591676016761167621676316764167651676616767167681676916770167711677216773167741677516776167771677816779167801678116782167831678416785167861678716788167891679016791167921679316794167951679616797167981679916800168011680216803168041680516806168071680816809168101681116812168131681416815168161681716818168191682016821168221682316824168251682616827168281682916830168311683216833168341683516836168371683816839168401684116842168431684416845168461684716848168491685016851168521685316854168551685616857168581685916860168611686216863168641686516866168671686816869168701687116872168731687416875168761687716878168791688016881168821688316884168851688616887168881688916890168911689216893168941689516896168971689816899169001690116902169031690416905169061690716908169091691016911169121691316914169151691616917169181691916920169211692216923169241692516926169271692816929169301693116932169331693416935169361693716938169391694016941169421694316944169451694616947169481694916950169511695216953169541695516956169571695816959169601696116962169631696416965169661696716968169691697016971169721697316974169751697616977169781697916980169811698216983169841698516986169871698816989169901699116992169931699416995169961699716998169991700017001170021700317004170051700617007170081700917010170111701217013170141701517016170171701817019170201702117022170231702417025170261702717028170291703017031170321703317034170351703617037170381703917040170411704217043170441704517046170471704817049170501705117052170531705417055170561705717058170591706017061170621706317064170651706617067170681706917070170711707217073170741707517076170771707817079170801708117082170831708417085170861708717088170891709017091170921709317094170951709617097170981709917100171011710217103171041710517106171071710817109171101711117112171131711417115171161711717118171191712017121171221712317124171251712617127171281712917130171311713217133171341713517136171371713817139171401714117142171431714417145171461714717148171491715017151171521715317154171551715617157171581715917160171611716217163171641716517166171671716817169171701717117172171731717417175171761717717178171791718017181171821718317184171851718617187171881718917190171911719217193171941719517196171971719817199172001720117202172031720417205172061720717208172091721017211172121721317214172151721617217172181721917220172211722217223172241722517226172271722817229172301723117232172331723417235172361723717238172391724017241172421724317244172451724617247172481724917250172511725217253172541725517256172571725817259172601726117262172631726417265172661726717268172691727017271172721727317274172751727617277172781727917280172811728217283172841728517286172871728817289172901729117292172931729417295172961729717298172991730017301173021730317304173051730617307173081730917310173111731217313173141731517316173171731817319173201732117322173231732417325173261732717328173291733017331173321733317334173351733617337173381733917340173411734217343173441734517346173471734817349173501735117352173531735417355173561735717358173591736017361173621736317364173651736617367173681736917370173711737217373173741737517376173771737817379173801738117382173831738417385173861738717388173891739017391173921739317394173951739617397173981739917400174011740217403174041740517406174071740817409174101741117412174131741417415174161741717418174191742017421174221742317424174251742617427174281742917430174311743217433174341743517436174371743817439174401744117442174431744417445174461744717448174491745017451174521745317454174551745617457174581745917460174611746217463174641746517466174671746817469174701747117472174731747417475174761747717478174791748017481174821748317484174851748617487174881748917490174911749217493174941749517496174971749817499175001750117502175031750417505175061750717508175091751017511175121751317514175151751617517175181751917520175211752217523175241752517526175271752817529175301753117532175331753417535175361753717538175391754017541175421754317544175451754617547175481754917550175511755217553175541755517556175571755817559175601756117562175631756417565175661756717568175691757017571175721757317574175751757617577175781757917580175811758217583175841758517586175871758817589175901759117592175931759417595175961759717598175991760017601176021760317604176051760617607176081760917610176111761217613176141761517616176171761817619176201762117622176231762417625176261762717628176291763017631176321763317634176351763617637176381763917640176411764217643176441764517646176471764817649176501765117652176531765417655176561765717658176591766017661176621766317664176651766617667176681766917670176711767217673176741767517676176771767817679176801768117682176831768417685176861768717688176891769017691176921769317694176951769617697176981769917700177011770217703177041770517706177071770817709177101771117712177131771417715177161771717718177191772017721177221772317724177251772617727177281772917730177311773217733177341773517736177371773817739177401774117742177431774417745177461774717748177491775017751177521775317754177551775617757177581775917760177611776217763177641776517766177671776817769177701777117772177731777417775177761777717778177791778017781177821778317784177851778617787177881778917790177911779217793177941779517796177971779817799178001780117802178031780417805178061780717808178091781017811178121781317814178151781617817178181781917820178211782217823178241782517826178271782817829178301783117832178331783417835178361783717838178391784017841178421784317844178451784617847178481784917850178511785217853178541785517856178571785817859178601786117862178631786417865178661786717868178691787017871178721787317874178751787617877178781787917880178811788217883178841788517886178871788817889178901789117892178931789417895178961789717898178991790017901179021790317904179051790617907179081790917910179111791217913179141791517916179171791817919179201792117922179231792417925179261792717928179291793017931179321793317934179351793617937179381793917940179411794217943179441794517946179471794817949179501795117952179531795417955179561795717958179591796017961179621796317964179651796617967179681796917970179711797217973179741797517976179771797817979179801798117982179831798417985179861798717988179891799017991179921799317994179951799617997179981799918000180011800218003180041800518006180071800818009180101801118012180131801418015180161801718018180191802018021180221802318024180251802618027180281802918030180311803218033180341803518036180371803818039180401804118042180431804418045180461804718048180491805018051180521805318054180551805618057180581805918060180611806218063180641806518066180671806818069180701807118072180731807418075180761807718078180791808018081180821808318084180851808618087180881808918090180911809218093180941809518096180971809818099181001810118102181031810418105181061810718108181091811018111181121811318114181151811618117181181811918120181211812218123181241812518126181271812818129181301813118132181331813418135181361813718138181391814018141181421814318144181451814618147181481814918150181511815218153181541815518156181571815818159181601816118162181631816418165181661816718168181691817018171181721817318174181751817618177181781817918180181811818218183181841818518186181871818818189181901819118192181931819418195181961819718198181991820018201182021820318204182051820618207182081820918210182111821218213182141821518216182171821818219182201822118222182231822418225182261822718228182291823018231182321823318234182351823618237182381823918240182411824218243182441824518246182471824818249182501825118252182531825418255182561825718258182591826018261182621826318264182651826618267182681826918270182711827218273182741827518276182771827818279182801828118282182831828418285182861828718288182891829018291182921829318294182951829618297182981829918300183011830218303183041830518306183071830818309183101831118312183131831418315183161831718318183191832018321183221832318324183251832618327183281832918330183311833218333183341833518336183371833818339183401834118342183431834418345183461834718348183491835018351183521835318354183551835618357183581835918360183611836218363183641836518366183671836818369183701837118372183731837418375183761837718378183791838018381183821838318384183851838618387183881838918390183911839218393183941839518396183971839818399184001840118402184031840418405184061840718408184091841018411184121841318414184151841618417184181841918420184211842218423184241842518426184271842818429184301843118432184331843418435184361843718438184391844018441184421844318444184451844618447184481844918450184511845218453184541845518456184571845818459184601846118462184631846418465184661846718468184691847018471184721847318474184751847618477184781847918480184811848218483184841848518486184871848818489184901849118492184931849418495184961849718498184991850018501185021850318504185051850618507185081850918510185111851218513185141851518516185171851818519185201852118522185231852418525185261852718528185291853018531185321853318534185351853618537185381853918540185411854218543185441854518546185471854818549185501855118552185531855418555185561855718558185591856018561185621856318564185651856618567185681856918570185711857218573185741857518576185771857818579185801858118582185831858418585185861858718588185891859018591185921859318594185951859618597185981859918600186011860218603186041860518606186071860818609186101861118612186131861418615186161861718618186191862018621186221862318624186251862618627186281862918630186311863218633186341863518636186371863818639186401864118642186431864418645186461864718648186491865018651186521865318654186551865618657186581865918660186611866218663186641866518666186671866818669186701867118672186731867418675186761867718678186791868018681186821868318684186851868618687186881868918690186911869218693186941869518696186971869818699187001870118702187031870418705187061870718708187091871018711187121871318714187151871618717187181871918720187211872218723187241872518726187271872818729187301873118732187331873418735187361873718738187391874018741187421874318744187451874618747187481874918750187511875218753187541875518756187571875818759187601876118762187631876418765187661876718768187691877018771187721877318774187751877618777187781877918780187811878218783187841878518786187871878818789187901879118792187931879418795187961879718798187991880018801188021880318804188051880618807188081880918810188111881218813188141881518816188171881818819188201882118822188231882418825188261882718828188291883018831188321883318834188351883618837188381883918840188411884218843188441884518846188471884818849188501885118852188531885418855188561885718858188591886018861188621886318864188651886618867188681886918870188711887218873188741887518876188771887818879188801888118882188831888418885188861888718888188891889018891188921889318894188951889618897188981889918900189011890218903189041890518906189071890818909189101891118912189131891418915189161891718918189191892018921189221892318924189251892618927189281892918930189311893218933189341893518936189371893818939189401894118942189431894418945189461894718948189491895018951189521895318954189551895618957189581895918960189611896218963189641896518966189671896818969189701897118972189731897418975189761897718978189791898018981189821898318984189851898618987189881898918990189911899218993189941899518996189971899818999190001900119002190031900419005190061900719008190091901019011190121901319014190151901619017190181901919020190211902219023190241902519026190271902819029190301903119032190331903419035190361903719038190391904019041190421904319044190451904619047190481904919050190511905219053190541905519056190571905819059190601906119062190631906419065190661906719068190691907019071190721907319074190751907619077190781907919080190811908219083190841908519086190871908819089190901909119092190931909419095190961909719098190991910019101191021910319104191051910619107191081910919110191111911219113191141911519116191171911819119191201912119122191231912419125191261912719128191291913019131191321913319134191351913619137191381913919140191411914219143191441914519146191471914819149191501915119152191531915419155191561915719158191591916019161191621916319164191651916619167191681916919170191711917219173191741917519176191771917819179191801918119182191831918419185191861918719188191891919019191191921919319194191951919619197191981919919200192011920219203192041920519206192071920819209192101921119212192131921419215192161921719218192191922019221192221922319224192251922619227192281922919230192311923219233192341923519236192371923819239192401924119242192431924419245192461924719248192491925019251192521925319254192551925619257192581925919260192611926219263192641926519266192671926819269192701927119272192731927419275192761927719278192791928019281192821928319284192851928619287192881928919290192911929219293192941929519296192971929819299193001930119302193031930419305193061930719308193091931019311193121931319314193151931619317193181931919320193211932219323193241932519326193271932819329193301933119332193331933419335193361933719338193391934019341193421934319344193451934619347193481934919350193511935219353193541935519356193571935819359193601936119362193631936419365193661936719368193691937019371193721937319374193751937619377193781937919380193811938219383193841938519386193871938819389193901939119392193931939419395193961939719398193991940019401194021940319404194051940619407194081940919410194111941219413194141941519416194171941819419194201942119422194231942419425194261942719428194291943019431194321943319434194351943619437194381943919440194411944219443194441944519446194471944819449194501945119452194531945419455194561945719458194591946019461194621946319464194651946619467194681946919470194711947219473194741947519476194771947819479194801948119482194831948419485194861948719488194891949019491194921949319494194951949619497194981949919500195011950219503195041950519506195071950819509195101951119512195131951419515195161951719518195191952019521195221952319524195251952619527195281952919530195311953219533195341953519536195371953819539195401954119542195431954419545195461954719548195491955019551195521955319554195551955619557195581955919560195611956219563195641956519566195671956819569195701957119572195731957419575195761957719578195791958019581195821958319584195851958619587195881958919590195911959219593195941959519596195971959819599196001960119602196031960419605196061960719608196091961019611196121961319614196151961619617196181961919620196211962219623196241962519626196271962819629196301963119632196331963419635196361963719638196391964019641196421964319644196451964619647196481964919650196511965219653196541965519656196571965819659196601966119662196631966419665196661966719668196691967019671196721967319674196751967619677196781967919680196811968219683196841968519686196871968819689196901969119692196931969419695196961969719698196991970019701197021970319704197051970619707197081970919710197111971219713197141971519716197171971819719197201972119722197231972419725197261972719728197291973019731197321973319734197351973619737197381973919740197411974219743197441974519746197471974819749197501975119752197531975419755197561975719758197591976019761197621976319764197651976619767197681976919770197711977219773197741977519776197771977819779197801978119782197831978419785197861978719788197891979019791197921979319794197951979619797197981979919800198011980219803198041980519806198071980819809198101981119812198131981419815198161981719818198191982019821198221982319824198251982619827198281982919830198311983219833198341983519836198371983819839198401984119842198431984419845198461984719848198491985019851198521985319854198551985619857198581985919860198611986219863198641986519866198671986819869198701987119872198731987419875198761987719878198791988019881198821988319884198851988619887198881988919890198911989219893198941989519896198971989819899199001990119902199031990419905199061990719908199091991019911199121991319914199151991619917199181991919920199211992219923199241992519926199271992819929199301993119932199331993419935199361993719938199391994019941199421994319944199451994619947199481994919950199511995219953199541995519956199571995819959199601996119962199631996419965199661996719968199691997019971199721997319974199751997619977199781997919980199811998219983199841998519986199871998819989199901999119992199931999419995199961999719998199992000020001200022000320004200052000620007200082000920010200112001220013200142001520016200172001820019200202002120022200232002420025200262002720028200292003020031200322003320034200352003620037200382003920040200412004220043200442004520046200472004820049200502005120052200532005420055200562005720058200592006020061200622006320064200652006620067200682006920070200712007220073200742007520076200772007820079200802008120082200832008420085200862008720088200892009020091200922009320094200952009620097200982009920100201012010220103201042010520106201072010820109201102011120112201132011420115201162011720118201192012020121201222012320124201252012620127201282012920130201312013220133201342013520136201372013820139201402014120142201432014420145201462014720148201492015020151201522015320154201552015620157201582015920160201612016220163201642016520166201672016820169201702017120172201732017420175201762017720178201792018020181201822018320184201852018620187201882018920190201912019220193201942019520196201972019820199202002020120202202032020420205202062020720208202092021020211202122021320214202152021620217202182021920220202212022220223202242022520226202272022820229202302023120232202332023420235202362023720238202392024020241202422024320244202452024620247202482024920250202512025220253202542025520256202572025820259202602026120262202632026420265202662026720268202692027020271202722027320274202752027620277202782027920280202812028220283202842028520286202872028820289202902029120292202932029420295202962029720298202992030020301203022030320304203052030620307203082030920310203112031220313203142031520316203172031820319203202032120322203232032420325203262032720328203292033020331203322033320334203352033620337203382033920340203412034220343203442034520346203472034820349203502035120352203532035420355203562035720358203592036020361203622036320364203652036620367203682036920370203712037220373203742037520376203772037820379203802038120382203832038420385203862038720388203892039020391203922039320394203952039620397203982039920400204012040220403204042040520406204072040820409204102041120412204132041420415204162041720418204192042020421204222042320424204252042620427204282042920430204312043220433204342043520436204372043820439204402044120442204432044420445204462044720448204492045020451204522045320454204552045620457204582045920460204612046220463204642046520466204672046820469204702047120472204732047420475204762047720478204792048020481204822048320484204852048620487204882048920490204912049220493204942049520496204972049820499205002050120502205032050420505205062050720508205092051020511205122051320514205152051620517205182051920520205212052220523205242052520526205272052820529205302053120532205332053420535205362053720538205392054020541205422054320544205452054620547205482054920550205512055220553205542055520556205572055820559205602056120562205632056420565205662056720568205692057020571205722057320574205752057620577205782057920580205812058220583205842058520586205872058820589205902059120592205932059420595205962059720598205992060020601206022060320604206052060620607206082060920610206112061220613206142061520616206172061820619206202062120622206232062420625206262062720628206292063020631206322063320634206352063620637206382063920640206412064220643206442064520646206472064820649206502065120652206532065420655206562065720658206592066020661206622066320664206652066620667206682066920670206712067220673206742067520676206772067820679206802068120682206832068420685206862068720688206892069020691206922069320694206952069620697206982069920700207012070220703207042070520706207072070820709207102071120712207132071420715207162071720718207192072020721207222072320724207252072620727207282072920730207312073220733207342073520736207372073820739207402074120742207432074420745207462074720748207492075020751207522075320754207552075620757207582075920760207612076220763207642076520766207672076820769207702077120772207732077420775207762077720778207792078020781207822078320784207852078620787207882078920790207912079220793207942079520796207972079820799208002080120802208032080420805208062080720808208092081020811208122081320814208152081620817208182081920820208212082220823208242082520826208272082820829208302083120832208332083420835208362083720838208392084020841208422084320844208452084620847208482084920850208512085220853208542085520856208572085820859208602086120862208632086420865208662086720868208692087020871208722087320874208752087620877208782087920880208812088220883208842088520886208872088820889208902089120892208932089420895208962089720898208992090020901209022090320904209052090620907209082090920910209112091220913209142091520916209172091820919209202092120922209232092420925209262092720928209292093020931209322093320934209352093620937209382093920940209412094220943209442094520946209472094820949209502095120952209532095420955209562095720958209592096020961209622096320964209652096620967209682096920970209712097220973209742097520976209772097820979209802098120982209832098420985209862098720988209892099020991209922099320994209952099620997209982099921000210012100221003210042100521006210072100821009210102101121012210132101421015210162101721018210192102021021210222102321024210252102621027210282102921030210312103221033210342103521036210372103821039210402104121042210432104421045210462104721048210492105021051210522105321054210552105621057210582105921060210612106221063210642106521066210672106821069210702107121072210732107421075210762107721078210792108021081210822108321084210852108621087210882108921090210912109221093210942109521096210972109821099211002110121102211032110421105211062110721108211092111021111211122111321114211152111621117211182111921120211212112221123211242112521126211272112821129211302113121132211332113421135211362113721138211392114021141211422114321144211452114621147211482114921150211512115221153211542115521156211572115821159211602116121162211632116421165211662116721168211692117021171211722117321174211752117621177211782117921180211812118221183211842118521186211872118821189211902119121192211932119421195211962119721198211992120021201212022120321204212052120621207212082120921210212112121221213212142121521216212172121821219212202122121222212232122421225212262122721228212292123021231212322123321234212352123621237212382123921240212412124221243212442124521246212472124821249212502125121252212532125421255212562125721258212592126021261212622126321264212652126621267212682126921270212712127221273212742127521276212772127821279212802128121282212832128421285212862128721288212892129021291212922129321294212952129621297212982129921300213012130221303213042130521306213072130821309213102131121312213132131421315213162131721318213192132021321213222132321324213252132621327213282132921330213312133221333213342133521336213372133821339213402134121342213432134421345213462134721348213492135021351213522135321354213552135621357213582135921360213612136221363213642136521366213672136821369213702137121372213732137421375213762137721378213792138021381213822138321384213852138621387213882138921390213912139221393213942139521396213972139821399214002140121402214032140421405214062140721408214092141021411214122141321414214152141621417214182141921420214212142221423214242142521426214272142821429214302143121432214332143421435214362143721438214392144021441214422144321444214452144621447214482144921450214512145221453214542145521456214572145821459214602146121462214632146421465214662146721468214692147021471214722147321474214752147621477214782147921480214812148221483214842148521486214872148821489214902149121492214932149421495214962149721498214992150021501215022150321504215052150621507215082150921510215112151221513215142151521516215172151821519215202152121522215232152421525215262152721528215292153021531215322153321534215352153621537215382153921540215412154221543215442154521546215472154821549215502155121552215532155421555215562155721558215592156021561215622156321564215652156621567215682156921570215712157221573215742157521576215772157821579215802158121582215832158421585215862158721588215892159021591215922159321594215952159621597215982159921600216012160221603216042160521606216072160821609216102161121612216132161421615216162161721618216192162021621216222162321624216252162621627216282162921630216312163221633216342163521636216372163821639216402164121642216432164421645216462164721648216492165021651216522165321654216552165621657216582165921660216612166221663216642166521666216672166821669216702167121672216732167421675
  1. //
  2. // httplib.h
  3. //
  4. // Copyright (c) 2026 Yuji Hirose. All rights reserved.
  5. // MIT License
  6. //
  7. #ifndef CPPHTTPLIB_HTTPLIB_H
  8. #define CPPHTTPLIB_HTTPLIB_H
  9. #define CPPHTTPLIB_VERSION "0.52.0"
  10. #define CPPHTTPLIB_VERSION_NUM "0x003400"
  11. #ifdef _WIN32
  12. #if defined(_WIN32_WINNT) && _WIN32_WINNT < 0x0A00
  13. #error \
  14. "cpp-httplib doesn't support Windows 8 or lower. Please use Windows 10 or later."
  15. #endif
  16. #endif
  17. /*
  18. * Configuration
  19. */
  20. #ifndef CPPHTTPLIB_KEEPALIVE_TIMEOUT_SECOND
  21. #define CPPHTTPLIB_KEEPALIVE_TIMEOUT_SECOND 5
  22. #endif
  23. #ifndef CPPHTTPLIB_KEEPALIVE_TIMEOUT_CHECK_INTERVAL_USECOND
  24. #define CPPHTTPLIB_KEEPALIVE_TIMEOUT_CHECK_INTERVAL_USECOND 10000
  25. #endif
  26. #ifndef CPPHTTPLIB_KEEPALIVE_MAX_COUNT
  27. #define CPPHTTPLIB_KEEPALIVE_MAX_COUNT 100
  28. #endif
  29. #ifndef CPPHTTPLIB_CONNECTION_TIMEOUT_SECOND
  30. #define CPPHTTPLIB_CONNECTION_TIMEOUT_SECOND 300
  31. #endif
  32. #ifndef CPPHTTPLIB_CONNECTION_TIMEOUT_USECOND
  33. #define CPPHTTPLIB_CONNECTION_TIMEOUT_USECOND 0
  34. #endif
  35. #ifndef CPPHTTPLIB_SERVER_READ_TIMEOUT_SECOND
  36. #define CPPHTTPLIB_SERVER_READ_TIMEOUT_SECOND 5
  37. #endif
  38. #ifndef CPPHTTPLIB_SERVER_READ_TIMEOUT_USECOND
  39. #define CPPHTTPLIB_SERVER_READ_TIMEOUT_USECOND 0
  40. #endif
  41. #ifndef CPPHTTPLIB_SERVER_WRITE_TIMEOUT_SECOND
  42. #define CPPHTTPLIB_SERVER_WRITE_TIMEOUT_SECOND 5
  43. #endif
  44. #ifndef CPPHTTPLIB_SERVER_WRITE_TIMEOUT_USECOND
  45. #define CPPHTTPLIB_SERVER_WRITE_TIMEOUT_USECOND 0
  46. #endif
  47. #ifndef CPPHTTPLIB_CLIENT_READ_TIMEOUT_SECOND
  48. #define CPPHTTPLIB_CLIENT_READ_TIMEOUT_SECOND 300
  49. #endif
  50. #ifndef CPPHTTPLIB_CLIENT_READ_TIMEOUT_USECOND
  51. #define CPPHTTPLIB_CLIENT_READ_TIMEOUT_USECOND 0
  52. #endif
  53. #ifndef CPPHTTPLIB_CLIENT_WRITE_TIMEOUT_SECOND
  54. #define CPPHTTPLIB_CLIENT_WRITE_TIMEOUT_SECOND 5
  55. #endif
  56. #ifndef CPPHTTPLIB_CLIENT_WRITE_TIMEOUT_USECOND
  57. #define CPPHTTPLIB_CLIENT_WRITE_TIMEOUT_USECOND 0
  58. #endif
  59. #ifndef CPPHTTPLIB_CLIENT_MAX_TIMEOUT_MSECOND
  60. #define CPPHTTPLIB_CLIENT_MAX_TIMEOUT_MSECOND 0
  61. #endif
  62. #ifndef CPPHTTPLIB_EXPECT_100_THRESHOLD
  63. #define CPPHTTPLIB_EXPECT_100_THRESHOLD 1024
  64. #endif
  65. #ifndef CPPHTTPLIB_EXPECT_100_TIMEOUT_MSECOND
  66. #define CPPHTTPLIB_EXPECT_100_TIMEOUT_MSECOND 1000
  67. #endif
  68. #ifndef CPPHTTPLIB_WAIT_EARLY_SERVER_RESPONSE_THRESHOLD
  69. #define CPPHTTPLIB_WAIT_EARLY_SERVER_RESPONSE_THRESHOLD (1024 * 1024)
  70. #endif
  71. #ifndef CPPHTTPLIB_WAIT_EARLY_SERVER_RESPONSE_TIMEOUT_MSECOND
  72. #define CPPHTTPLIB_WAIT_EARLY_SERVER_RESPONSE_TIMEOUT_MSECOND 50
  73. #endif
  74. #ifndef CPPHTTPLIB_IDLE_INTERVAL_SECOND
  75. #define CPPHTTPLIB_IDLE_INTERVAL_SECOND 0
  76. #endif
  77. #ifndef CPPHTTPLIB_IDLE_INTERVAL_USECOND
  78. #ifdef _WIN32
  79. #define CPPHTTPLIB_IDLE_INTERVAL_USECOND 1000
  80. #else
  81. #define CPPHTTPLIB_IDLE_INTERVAL_USECOND 0
  82. #endif
  83. #endif
  84. #ifndef CPPHTTPLIB_REQUEST_URI_MAX_LENGTH
  85. #define CPPHTTPLIB_REQUEST_URI_MAX_LENGTH 8192
  86. #endif
  87. #ifndef CPPHTTPLIB_HEADER_MAX_LENGTH
  88. #define CPPHTTPLIB_HEADER_MAX_LENGTH 8192
  89. #endif
  90. #ifndef CPPHTTPLIB_HEADER_MAX_COUNT
  91. #define CPPHTTPLIB_HEADER_MAX_COUNT 100
  92. #endif
  93. #ifndef CPPHTTPLIB_REDIRECT_MAX_COUNT
  94. #define CPPHTTPLIB_REDIRECT_MAX_COUNT 20
  95. #endif
  96. #ifndef CPPHTTPLIB_MULTIPART_FORM_DATA_FILE_MAX_COUNT
  97. #define CPPHTTPLIB_MULTIPART_FORM_DATA_FILE_MAX_COUNT 1024
  98. #endif
  99. #ifndef CPPHTTPLIB_PAYLOAD_MAX_LENGTH
  100. #define CPPHTTPLIB_PAYLOAD_MAX_LENGTH (100 * 1024 * 1024) // 100MB
  101. #endif
  102. #ifndef CPPHTTPLIB_FORM_URL_ENCODED_PAYLOAD_MAX_LENGTH
  103. #define CPPHTTPLIB_FORM_URL_ENCODED_PAYLOAD_MAX_LENGTH 8192
  104. #endif
  105. #ifndef CPPHTTPLIB_RANGE_MAX_COUNT
  106. #define CPPHTTPLIB_RANGE_MAX_COUNT 1024
  107. #endif
  108. #ifndef CPPHTTPLIB_TCP_NODELAY
  109. #define CPPHTTPLIB_TCP_NODELAY false
  110. #endif
  111. #ifndef CPPHTTPLIB_IPV6_V6ONLY
  112. #define CPPHTTPLIB_IPV6_V6ONLY false
  113. #endif
  114. #ifndef CPPHTTPLIB_RECV_BUFSIZ
  115. #define CPPHTTPLIB_RECV_BUFSIZ size_t(16384u)
  116. #endif
  117. #ifndef CPPHTTPLIB_SEND_BUFSIZ
  118. #define CPPHTTPLIB_SEND_BUFSIZ size_t(16384u)
  119. #endif
  120. #ifndef CPPHTTPLIB_COMPRESSION_BUFSIZ
  121. #define CPPHTTPLIB_COMPRESSION_BUFSIZ size_t(16384u)
  122. #endif
  123. #ifndef CPPHTTPLIB_THREAD_POOL_COUNT
  124. #define CPPHTTPLIB_THREAD_POOL_COUNT \
  125. ((std::max)(8u, std::thread::hardware_concurrency() > 0 \
  126. ? std::thread::hardware_concurrency() - 1 \
  127. : 0))
  128. #endif
  129. #ifndef CPPHTTPLIB_THREAD_POOL_MAX_COUNT
  130. #define CPPHTTPLIB_THREAD_POOL_MAX_COUNT (CPPHTTPLIB_THREAD_POOL_COUNT * 4)
  131. #endif
  132. #ifndef CPPHTTPLIB_THREAD_POOL_IDLE_TIMEOUT
  133. #define CPPHTTPLIB_THREAD_POOL_IDLE_TIMEOUT 3 // seconds
  134. #endif
  135. #ifndef CPPHTTPLIB_RECV_FLAGS
  136. #define CPPHTTPLIB_RECV_FLAGS 0
  137. #endif
  138. #ifndef CPPHTTPLIB_SEND_FLAGS
  139. #define CPPHTTPLIB_SEND_FLAGS 0
  140. #endif
  141. #ifndef CPPHTTPLIB_LISTEN_BACKLOG
  142. #define CPPHTTPLIB_LISTEN_BACKLOG 128
  143. #endif
  144. #ifndef CPPHTTPLIB_MAX_LINE_LENGTH
  145. #define CPPHTTPLIB_MAX_LINE_LENGTH 32768
  146. #endif
  147. #ifndef CPPHTTPLIB_WEBSOCKET_MAX_PAYLOAD_LENGTH
  148. #define CPPHTTPLIB_WEBSOCKET_MAX_PAYLOAD_LENGTH 16777216
  149. #endif
  150. #ifndef CPPHTTPLIB_WEBSOCKET_READ_TIMEOUT_SECOND
  151. #define CPPHTTPLIB_WEBSOCKET_READ_TIMEOUT_SECOND 300
  152. #endif
  153. #ifndef CPPHTTPLIB_WEBSOCKET_CLOSE_TIMEOUT_SECOND
  154. #define CPPHTTPLIB_WEBSOCKET_CLOSE_TIMEOUT_SECOND 5
  155. #endif
  156. #ifndef CPPHTTPLIB_WEBSOCKET_PING_INTERVAL_SECOND
  157. #define CPPHTTPLIB_WEBSOCKET_PING_INTERVAL_SECOND 30
  158. #endif
  159. #ifndef CPPHTTPLIB_WEBSOCKET_MAX_MISSED_PONGS
  160. #define CPPHTTPLIB_WEBSOCKET_MAX_MISSED_PONGS 0
  161. #endif
  162. /*
  163. * Headers
  164. */
  165. #ifdef _WIN32
  166. #ifndef _CRT_SECURE_NO_WARNINGS
  167. #define _CRT_SECURE_NO_WARNINGS
  168. #endif //_CRT_SECURE_NO_WARNINGS
  169. #ifndef _CRT_NONSTDC_NO_DEPRECATE
  170. #define _CRT_NONSTDC_NO_DEPRECATE
  171. #endif //_CRT_NONSTDC_NO_DEPRECATE
  172. #if defined(_MSC_VER)
  173. #if _MSC_VER < 1900
  174. #error Sorry, Visual Studio versions prior to 2015 are not supported
  175. #endif
  176. #pragma comment(lib, "ws2_32.lib")
  177. #ifndef _SSIZE_T_DEFINED
  178. using ssize_t = __int64;
  179. #define _SSIZE_T_DEFINED
  180. #endif
  181. #endif // _MSC_VER
  182. #ifndef S_ISREG
  183. #define S_ISREG(m) (((m) & S_IFREG) == S_IFREG)
  184. #endif // S_ISREG
  185. #ifndef S_ISDIR
  186. #define S_ISDIR(m) (((m) & S_IFDIR) == S_IFDIR)
  187. #endif // S_ISDIR
  188. #ifndef NOMINMAX
  189. #define NOMINMAX
  190. #endif // NOMINMAX
  191. #include <io.h>
  192. #include <winsock2.h>
  193. #include <ws2tcpip.h>
  194. #if defined(__has_include)
  195. #if __has_include(<afunix.h>)
  196. // afunix.h uses types declared in winsock2.h, so has to be included after it.
  197. #include <afunix.h>
  198. #define CPPHTTPLIB_HAVE_AFUNIX_H 1
  199. #endif
  200. #endif
  201. #ifndef WSA_FLAG_NO_HANDLE_INHERIT
  202. #define WSA_FLAG_NO_HANDLE_INHERIT 0x80
  203. #endif
  204. using nfds_t = unsigned long;
  205. using socket_t = SOCKET;
  206. using socklen_t = int;
  207. #else // not _WIN32
  208. #include <arpa/inet.h>
  209. #if !defined(_AIX) && !defined(__MVS__)
  210. #include <ifaddrs.h>
  211. #endif
  212. #ifdef __MVS__
  213. #include <strings.h>
  214. #ifndef NI_MAXHOST
  215. #define NI_MAXHOST 1025
  216. #endif
  217. #endif
  218. #include <net/if.h>
  219. #include <netdb.h>
  220. #include <netinet/in.h>
  221. #ifdef __linux__
  222. #include <resolv.h>
  223. #undef _res // Undefine _res macro to avoid conflicts with user code (#2278)
  224. #endif
  225. #include <csignal>
  226. #include <netinet/tcp.h>
  227. #include <poll.h>
  228. #include <pthread.h>
  229. #include <sys/mman.h>
  230. #include <sys/socket.h>
  231. #include <sys/un.h>
  232. #include <unistd.h>
  233. using socket_t = int;
  234. #ifndef INVALID_SOCKET
  235. #define INVALID_SOCKET (-1)
  236. #endif
  237. #endif //_WIN32
  238. #if defined(__APPLE__)
  239. #include <TargetConditionals.h>
  240. #endif
  241. #include <algorithm>
  242. #include <array>
  243. #include <atomic>
  244. #include <cassert>
  245. #include <chrono>
  246. #include <climits>
  247. #include <condition_variable>
  248. #include <cstdlib>
  249. #include <cstring>
  250. #include <errno.h>
  251. #include <exception>
  252. #include <fcntl.h>
  253. #include <fstream>
  254. #include <functional>
  255. #include <iomanip>
  256. #include <iostream>
  257. #include <iterator>
  258. #include <list>
  259. #include <map>
  260. #include <memory>
  261. #include <mutex>
  262. #include <random>
  263. #include <regex>
  264. #include <set>
  265. #include <sstream>
  266. #include <string>
  267. #include <sys/stat.h>
  268. #include <system_error>
  269. #include <thread>
  270. #include <type_traits>
  271. #include <unordered_map>
  272. #include <unordered_set>
  273. #include <utility>
  274. #include <vector>
  275. // On macOS with a TLS backend, enable Keychain root certificates by default
  276. // unless the user explicitly opts out. Not enabled on iOS/tvOS/watchOS since
  277. // the SecTrustSettings APIs used to enumerate anchor certificates are macOS
  278. // only; on those platforms the user must provide a CA bundle explicitly.
  279. #if defined(__APPLE__) && defined(__clang__) && \
  280. !defined(CPPHTTPLIB_DISABLE_MACOSX_AUTOMATIC_ROOT_CERTIFICATES) && \
  281. (defined(CPPHTTPLIB_OPENSSL_SUPPORT) || \
  282. defined(CPPHTTPLIB_MBEDTLS_SUPPORT) || \
  283. defined(CPPHTTPLIB_WOLFSSL_SUPPORT))
  284. #if TARGET_OS_OSX
  285. #ifndef CPPHTTPLIB_USE_CERTS_FROM_MACOSX_KEYCHAIN
  286. #define CPPHTTPLIB_USE_CERTS_FROM_MACOSX_KEYCHAIN
  287. #endif
  288. #endif
  289. #endif
  290. #if defined(CPPHTTPLIB_USE_CERTS_FROM_MACOSX_KEYCHAIN) && \
  291. defined(__APPLE__) && !TARGET_OS_OSX
  292. #error \
  293. "CPPHTTPLIB_USE_CERTS_FROM_MACOSX_KEYCHAIN is only supported on macOS. On iOS/tvOS/watchOS, supply a CA bundle via set_ca_cert_path()."
  294. #endif
  295. // On Windows, enable Schannel certificate verification by default
  296. // unless the user explicitly opts out.
  297. #if defined(_WIN32) && \
  298. !defined(CPPHTTPLIB_DISABLE_WINDOWS_AUTOMATIC_ROOT_CERTIFICATES_UPDATE)
  299. #define CPPHTTPLIB_WINDOWS_AUTOMATIC_ROOT_CERTIFICATES_UPDATE
  300. #endif
  301. #if defined(CPPHTTPLIB_USE_NON_BLOCKING_GETADDRINFO) || \
  302. defined(CPPHTTPLIB_USE_CERTS_FROM_MACOSX_KEYCHAIN)
  303. #if TARGET_OS_MAC && defined(__clang__)
  304. #include <CFNetwork/CFHost.h>
  305. #include <CoreFoundation/CoreFoundation.h>
  306. #endif
  307. #endif
  308. #ifdef CPPHTTPLIB_OPENSSL_SUPPORT
  309. #ifdef _WIN32
  310. #include <wincrypt.h>
  311. // these are defined in wincrypt.h and it breaks compilation if BoringSSL is
  312. // used
  313. #undef X509_NAME
  314. #undef X509_CERT_PAIR
  315. #undef X509_EXTENSIONS
  316. #undef PKCS7_SIGNER_INFO
  317. #ifdef _MSC_VER
  318. #pragma comment(lib, "crypt32.lib")
  319. #endif
  320. #endif // _WIN32
  321. #ifdef CPPHTTPLIB_USE_CERTS_FROM_MACOSX_KEYCHAIN
  322. #if TARGET_OS_OSX
  323. #include <Security/Security.h>
  324. #endif
  325. #endif
  326. #include <openssl/err.h>
  327. #include <openssl/evp.h>
  328. #include <openssl/ssl.h>
  329. #include <openssl/x509v3.h>
  330. #if defined(_WIN32) && defined(OPENSSL_USE_APPLINK)
  331. #include <openssl/applink.c>
  332. #endif
  333. #include <iostream>
  334. #include <sstream>
  335. #if defined(OPENSSL_IS_BORINGSSL) || defined(LIBRESSL_VERSION_NUMBER)
  336. #if OPENSSL_VERSION_NUMBER < 0x1010107f
  337. #error Please use OpenSSL or a current version of BoringSSL
  338. #endif
  339. #define SSL_get1_peer_certificate SSL_get_peer_certificate
  340. #elif OPENSSL_VERSION_NUMBER < 0x30000000L
  341. #error Sorry, OpenSSL versions prior to 3.0.0 are not supported
  342. #endif
  343. #endif // CPPHTTPLIB_OPENSSL_SUPPORT
  344. #ifdef CPPHTTPLIB_MBEDTLS_SUPPORT
  345. // version.h defines MBEDTLS_VERSION_MAJOR (on 2.x/3.x/4.x alike); it is pulled
  346. // in with this first include group so the version gating below can use it.
  347. #include <mbedtls/error.h>
  348. #include <mbedtls/net_sockets.h>
  349. #include <mbedtls/oid.h>
  350. #include <mbedtls/pk.h>
  351. #include <mbedtls/ssl.h>
  352. #include <mbedtls/version.h>
  353. #include <mbedtls/x509_crt.h>
  354. #if MBEDTLS_VERSION_MAJOR >= 4
  355. // Mbed TLS 4.x moved hashing/RNG to PSA Crypto and removed these headers.
  356. #include <psa/crypto.h>
  357. #else
  358. #include <mbedtls/ctr_drbg.h>
  359. #include <mbedtls/entropy.h>
  360. #include <mbedtls/md5.h>
  361. #include <mbedtls/sha1.h>
  362. #include <mbedtls/sha256.h>
  363. #include <mbedtls/sha512.h>
  364. #endif
  365. #ifdef _WIN32
  366. #include <wincrypt.h>
  367. #ifdef _MSC_VER
  368. #pragma comment(lib, "crypt32.lib")
  369. #endif
  370. #endif // _WIN32
  371. #ifdef CPPHTTPLIB_USE_CERTS_FROM_MACOSX_KEYCHAIN
  372. #if TARGET_OS_OSX
  373. #include <Security/Security.h>
  374. #endif
  375. #endif
  376. // Mbed TLS version API compatibility. Note: V4 implies V3 (both defined on
  377. // 4.x), so version-specific 3.x-only code must check V3 && !V4.
  378. #if MBEDTLS_VERSION_MAJOR >= 4
  379. #define CPPHTTPLIB_MBEDTLS_V4
  380. #endif
  381. #if MBEDTLS_VERSION_MAJOR >= 3
  382. #define CPPHTTPLIB_MBEDTLS_V3
  383. #endif
  384. #endif // CPPHTTPLIB_MBEDTLS_SUPPORT
  385. #ifdef CPPHTTPLIB_WOLFSSL_SUPPORT
  386. #include <wolfssl/options.h>
  387. #include <wolfssl/openssl/x509v3.h>
  388. // Fallback definitions for older wolfSSL versions (e.g., 5.6.6)
  389. #ifndef WOLFSSL_GEN_EMAIL
  390. #define WOLFSSL_GEN_EMAIL 1
  391. #endif
  392. #ifndef WOLFSSL_GEN_DNS
  393. #define WOLFSSL_GEN_DNS 2
  394. #endif
  395. #ifndef WOLFSSL_GEN_URI
  396. #define WOLFSSL_GEN_URI 6
  397. #endif
  398. #ifndef WOLFSSL_GEN_IPADD
  399. #define WOLFSSL_GEN_IPADD 7
  400. #endif
  401. #include <wolfssl/ssl.h>
  402. #include <wolfssl/wolfcrypt/hash.h>
  403. #include <wolfssl/wolfcrypt/md5.h>
  404. #include <wolfssl/wolfcrypt/sha256.h>
  405. #include <wolfssl/wolfcrypt/sha512.h>
  406. #ifdef _WIN32
  407. #include <wincrypt.h>
  408. #ifdef _MSC_VER
  409. #pragma comment(lib, "crypt32.lib")
  410. #endif
  411. #endif // _WIN32
  412. #ifdef CPPHTTPLIB_USE_CERTS_FROM_MACOSX_KEYCHAIN
  413. #if TARGET_OS_OSX
  414. #include <Security/Security.h>
  415. #endif
  416. #endif
  417. #endif // CPPHTTPLIB_WOLFSSL_SUPPORT
  418. // Define CPPHTTPLIB_SSL_ENABLED if any SSL backend is available
  419. #if defined(CPPHTTPLIB_OPENSSL_SUPPORT) || \
  420. defined(CPPHTTPLIB_MBEDTLS_SUPPORT) || defined(CPPHTTPLIB_WOLFSSL_SUPPORT)
  421. #define CPPHTTPLIB_SSL_ENABLED
  422. #endif
  423. #ifdef CPPHTTPLIB_ZLIB_SUPPORT
  424. #include <zlib.h>
  425. #endif
  426. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  427. #include <brotli/decode.h>
  428. #include <brotli/encode.h>
  429. #endif
  430. #ifdef CPPHTTPLIB_ZSTD_SUPPORT
  431. #include <zstd.h>
  432. #endif
  433. /*
  434. * Declaration
  435. */
  436. namespace httplib {
  437. namespace ws {
  438. class WebSocket;
  439. } // namespace ws
  440. namespace detail {
  441. /*
  442. * Backport std::make_unique from C++14.
  443. *
  444. * NOTE: This code came up with the following stackoverflow post:
  445. * https://stackoverflow.com/questions/10149840/c-arrays-and-make-unique
  446. *
  447. */
  448. template <class T, class... Args>
  449. typename std::enable_if<!std::is_array<T>::value, std::unique_ptr<T>>::type
  450. make_unique(Args &&...args) {
  451. return std::unique_ptr<T>(new T(std::forward<Args>(args)...));
  452. }
  453. template <class T>
  454. typename std::enable_if<std::is_array<T>::value, std::unique_ptr<T>>::type
  455. make_unique(std::size_t n) {
  456. typedef typename std::remove_extent<T>::type RT;
  457. return std::unique_ptr<T>(new RT[n]);
  458. }
  459. // Locale-independent ASCII character classification. The <cctype>
  460. // counterparts (std::isalnum, std::isdigit, ...) consult the global C locale,
  461. // so e.g. std::isalnum(0xC5) can return true once an embedder calls
  462. // setlocale(). HTTP grammars are defined over ASCII, so raw bytes must be
  463. // classified without regard to the locale.
  464. inline bool is_ascii_digit(char c) { return '0' <= c && c <= '9'; }
  465. inline bool is_ascii_alpha(char c) {
  466. return ('a' <= c && c <= 'z') || ('A' <= c && c <= 'Z');
  467. }
  468. inline bool is_ascii_alnum(char c) {
  469. return is_ascii_digit(c) || is_ascii_alpha(c);
  470. }
  471. namespace case_ignore {
  472. inline unsigned char to_lower(int c) {
  473. const static unsigned char table[256] = {
  474. 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14,
  475. 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29,
  476. 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44,
  477. 45, 46, 47, 48, 49, 50, 51, 52, 53, 54, 55, 56, 57, 58, 59,
  478. 60, 61, 62, 63, 64, 97, 98, 99, 100, 101, 102, 103, 104, 105, 106,
  479. 107, 108, 109, 110, 111, 112, 113, 114, 115, 116, 117, 118, 119, 120, 121,
  480. 122, 91, 92, 93, 94, 95, 96, 97, 98, 99, 100, 101, 102, 103, 104,
  481. 105, 106, 107, 108, 109, 110, 111, 112, 113, 114, 115, 116, 117, 118, 119,
  482. 120, 121, 122, 123, 124, 125, 126, 127, 128, 129, 130, 131, 132, 133, 134,
  483. 135, 136, 137, 138, 139, 140, 141, 142, 143, 144, 145, 146, 147, 148, 149,
  484. 150, 151, 152, 153, 154, 155, 156, 157, 158, 159, 160, 161, 162, 163, 164,
  485. 165, 166, 167, 168, 169, 170, 171, 172, 173, 174, 175, 176, 177, 178, 179,
  486. 180, 181, 182, 183, 184, 185, 186, 187, 188, 189, 190, 191, 224, 225, 226,
  487. 227, 228, 229, 230, 231, 232, 233, 234, 235, 236, 237, 238, 239, 240, 241,
  488. 242, 243, 244, 245, 246, 215, 248, 249, 250, 251, 252, 253, 254, 223, 224,
  489. 225, 226, 227, 228, 229, 230, 231, 232, 233, 234, 235, 236, 237, 238, 239,
  490. 240, 241, 242, 243, 244, 245, 246, 247, 248, 249, 250, 251, 252, 253, 254,
  491. 255,
  492. };
  493. return table[(unsigned char)(char)c];
  494. }
  495. inline std::string to_lower(const std::string &s) {
  496. std::string result = s;
  497. std::transform(
  498. result.begin(), result.end(), result.begin(),
  499. [](unsigned char c) { return static_cast<char>(to_lower(c)); });
  500. return result;
  501. }
  502. inline bool equal(const std::string &a, const std::string &b) {
  503. return a.size() == b.size() &&
  504. std::equal(a.begin(), a.end(), b.begin(), [](char ca, char cb) {
  505. return to_lower(ca) == to_lower(cb);
  506. });
  507. }
  508. struct equal_to {
  509. bool operator()(const std::string &a, const std::string &b) const {
  510. return equal(a, b);
  511. }
  512. };
  513. struct hash {
  514. size_t operator()(const std::string &key) const {
  515. return hash_core(key.data(), key.size(), 0);
  516. }
  517. size_t hash_core(const char *s, size_t l, size_t h) const {
  518. return (l == 0) ? h
  519. : hash_core(s + 1, l - 1,
  520. // Unsets the 6 high bits of h, therefore no
  521. // overflow happens
  522. (((std::numeric_limits<size_t>::max)() >> 6) &
  523. h * 33) ^
  524. static_cast<unsigned char>(to_lower(*s)));
  525. }
  526. };
  527. template <typename T>
  528. using unordered_set = std::unordered_set<T, detail::case_ignore::hash,
  529. detail::case_ignore::equal_to>;
  530. } // namespace case_ignore
  531. // This is based on
  532. // "http://www.open-std.org/jtc1/sc22/wg21/docs/papers/2014/n4189".
  533. struct scope_exit {
  534. explicit scope_exit(std::function<void(void)> &&f)
  535. : exit_function(std::move(f)), execute_on_destruction{true} {}
  536. scope_exit(scope_exit &&rhs) noexcept
  537. : exit_function(std::move(rhs.exit_function)),
  538. execute_on_destruction{rhs.execute_on_destruction} {
  539. rhs.release();
  540. }
  541. ~scope_exit() {
  542. if (execute_on_destruction) { this->exit_function(); }
  543. }
  544. void release() { this->execute_on_destruction = false; }
  545. private:
  546. scope_exit(const scope_exit &) = delete;
  547. void operator=(const scope_exit &) = delete;
  548. scope_exit &operator=(scope_exit &&) = delete;
  549. std::function<void(void)> exit_function;
  550. bool execute_on_destruction;
  551. };
  552. // Simple from_chars implementation for integer and double types (C++17
  553. // substitute)
  554. template <typename T> struct from_chars_result {
  555. const char *ptr;
  556. std::errc ec;
  557. };
  558. template <typename T>
  559. inline from_chars_result<T> from_chars(const char *first, const char *last,
  560. T &value, int base = 10) {
  561. value = 0;
  562. const char *p = first;
  563. bool negative = false;
  564. if (p != last && *p == '-') {
  565. negative = true;
  566. ++p;
  567. }
  568. if (p == last) { return {first, std::errc::invalid_argument}; }
  569. T result = 0;
  570. for (; p != last; ++p) {
  571. char c = *p;
  572. int digit = -1;
  573. if (is_ascii_digit(c)) {
  574. digit = c - '0';
  575. } else if ('a' <= c && c <= 'z') {
  576. digit = c - 'a' + 10;
  577. } else if ('A' <= c && c <= 'Z') {
  578. digit = c - 'A' + 10;
  579. } else {
  580. break;
  581. }
  582. if (digit < 0 || digit >= base) { break; }
  583. if (result > ((std::numeric_limits<T>::max)() - digit) / base) {
  584. return {p, std::errc::result_out_of_range};
  585. }
  586. result = result * base + digit;
  587. }
  588. if (p == first || (negative && p == first + 1)) {
  589. return {first, std::errc::invalid_argument};
  590. }
  591. value = negative ? T(0) - result : result;
  592. return {p, std::errc{}};
  593. }
  594. // from_chars for double (hand-written, locale-independent)
  595. //
  596. // The only double consumed by this library is the HTTP quality value, whose
  597. // grammar is (RFC 9110 12.4.2):
  598. // qvalue = ( "0" [ "." 0*3DIGIT ] ) / ( "1" [ "." 0*3("0") ] )
  599. // i.e. a non-negative decimal with no sign, exponent, "inf"/"nan", or wide
  600. // magnitude. So this parser recognizes exactly 1*DIGIT [ "." *DIGIT ] with
  601. // '.' always the decimal separator (std::strtod would instead read it from the
  602. // global C locale, mis-parsing q-values once an embedder calls
  603. // setlocale(LC_ALL, "") into a comma-decimal locale). The caller range-checks
  604. // the result to [0, 1], so inputs outside that range need not be distinguished
  605. // here. Allocation-free, single pass, and free of the overflow/rounding edge
  606. // cases that exponent and wide-range handling would introduce.
  607. inline from_chars_result<double> from_chars(const char *first, const char *last,
  608. double &value) {
  609. value = 0.0;
  610. const char *p = first;
  611. // Each 1eN is exactly representable, so a single final division by the
  612. // matching entry yields a correctly-rounded result.
  613. static const double powers_of_ten[] = {
  614. 1e0, 1e1, 1e2, 1e3, 1e4, 1e5, 1e6, 1e7, 1e8, 1e9,
  615. 1e10, 1e11, 1e12, 1e13, 1e14, 1e15, 1e16, 1e17, 1e18};
  616. const int max_frac_digits =
  617. static_cast<int>(sizeof(powers_of_ten) / sizeof(powers_of_ten[0])) - 1;
  618. // Accumulate digits into a 64-bit integer and remember how many were
  619. // fractional. Two independent caps keep this bounded and safe:
  620. // * accumulation saturates before mantissa could overflow uint64_t, and
  621. // * frac_digits is capped at max_frac_digits so it is always a valid index
  622. // into powers_of_ten (without this an input like "0.000...0" would never
  623. // grow mantissa, so the saturation cap alone would not bound it).
  624. // Both caps only drop digits far beyond the precision a q-value needs; any
  625. // value they would change is well outside [0, 1] and rejected by the caller.
  626. uint64_t mantissa = 0;
  627. int frac_digits = 0;
  628. bool seen_digit = false;
  629. const uint64_t limit = ((std::numeric_limits<uint64_t>::max)() - 9) / 10;
  630. auto accumulate = [&](char c) {
  631. if (mantissa <= limit) {
  632. mantissa = mantissa * 10 + static_cast<uint64_t>(c - '0');
  633. return true;
  634. }
  635. return false;
  636. };
  637. for (; p != last && is_ascii_digit(*p); ++p) {
  638. seen_digit = true;
  639. accumulate(*p);
  640. }
  641. if (p != last && *p == '.') {
  642. ++p;
  643. for (; p != last && is_ascii_digit(*p); ++p) {
  644. seen_digit = true;
  645. if (frac_digits < max_frac_digits && accumulate(*p)) { ++frac_digits; }
  646. }
  647. }
  648. if (!seen_digit) { return {first, std::errc::invalid_argument}; }
  649. value = static_cast<double>(mantissa) / powers_of_ten[frac_digits];
  650. return {p, std::errc{}};
  651. }
  652. inline bool parse_port(const char *s, size_t len, int &port) {
  653. int val = 0;
  654. auto r = from_chars(s, s + len, val);
  655. if (r.ec != std::errc{} || val < 1 || val > 65535) { return false; }
  656. port = val;
  657. return true;
  658. }
  659. inline bool parse_port(const std::string &s, int &port) {
  660. return parse_port(s.data(), s.size(), port);
  661. }
  662. struct UrlComponents {
  663. std::string scheme;
  664. std::string host;
  665. std::string port;
  666. std::string path;
  667. std::string query;
  668. };
  669. inline bool parse_url(const std::string &url, UrlComponents &uc) {
  670. uc = {};
  671. size_t pos = 0;
  672. auto sep = url.find("://");
  673. if (sep != std::string::npos) {
  674. uc.scheme = url.substr(0, sep);
  675. // Scheme must be [a-z]+ only
  676. if (uc.scheme.empty()) { return false; }
  677. for (auto c : uc.scheme) {
  678. if (c < 'a' || c > 'z') { return false; }
  679. }
  680. pos = sep + 3;
  681. } else if (url.compare(0, 2, "//") == 0) {
  682. pos = 2;
  683. }
  684. auto has_authority_prefix = pos > 0;
  685. auto has_authority = has_authority_prefix || (!url.empty() && url[0] != '/' &&
  686. url[0] != '?' && url[0] != '#');
  687. if (has_authority) {
  688. if (pos < url.size() && url[pos] == '[') {
  689. auto close = url.find(']', pos);
  690. if (close == std::string::npos) { return false; }
  691. uc.host = url.substr(pos + 1, close - pos - 1);
  692. // IPv6 host must be [a-fA-F0-9:]+ only
  693. if (uc.host.empty()) { return false; }
  694. for (auto c : uc.host) {
  695. if (!(is_ascii_digit(c) || (c >= 'a' && c <= 'f') ||
  696. (c >= 'A' && c <= 'F') || c == ':')) {
  697. return false;
  698. }
  699. }
  700. pos = close + 1;
  701. } else {
  702. auto end = url.find_first_of(":/?#", pos);
  703. if (end == std::string::npos) { end = url.size(); }
  704. uc.host = url.substr(pos, end - pos);
  705. pos = end;
  706. }
  707. if (pos < url.size() && url[pos] == ':') {
  708. ++pos;
  709. auto end = url.find_first_of("/?#", pos);
  710. if (end == std::string::npos) { end = url.size(); }
  711. uc.port = url.substr(pos, end - pos);
  712. pos = end;
  713. }
  714. // Without :// or //, the entire input must be consumed as host[:port].
  715. // If there is leftover (path, query, etc.), this is not a valid
  716. // host[:port] string — clear and reparse as a plain path.
  717. if (!has_authority_prefix && pos < url.size()) {
  718. uc.host.clear();
  719. uc.port.clear();
  720. pos = 0;
  721. }
  722. }
  723. if (pos < url.size() && url[pos] != '?' && url[pos] != '#') {
  724. auto end = url.find_first_of("?#", pos);
  725. if (end == std::string::npos) { end = url.size(); }
  726. uc.path = url.substr(pos, end - pos);
  727. pos = end;
  728. }
  729. if (pos < url.size() && url[pos] == '?') {
  730. auto end = url.find('#', pos);
  731. if (end == std::string::npos) { end = url.size(); }
  732. uc.query = url.substr(pos, end - pos);
  733. }
  734. return true;
  735. }
  736. } // namespace detail
  737. enum class SSLVerifierResponse {
  738. // no decision has been made, use the built-in certificate verifier
  739. NoDecisionMade,
  740. // connection certificate is verified and accepted
  741. CertificateAccepted,
  742. // connection certificate was processed but is rejected
  743. CertificateRejected
  744. };
  745. // System CA loading policy for SSL clients. Auto (the default) loads system
  746. // CA certs only when no custom CA is configured; enable_system_ca() switches
  747. // to an explicit policy.
  748. enum class SystemCAMode { Auto, Enabled, Disabled };
  749. enum StatusCode {
  750. // Information responses
  751. Continue_100 = 100,
  752. SwitchingProtocol_101 = 101,
  753. Processing_102 = 102,
  754. EarlyHints_103 = 103,
  755. // Successful responses
  756. OK_200 = 200,
  757. Created_201 = 201,
  758. Accepted_202 = 202,
  759. NonAuthoritativeInformation_203 = 203,
  760. NoContent_204 = 204,
  761. ResetContent_205 = 205,
  762. PartialContent_206 = 206,
  763. MultiStatus_207 = 207,
  764. AlreadyReported_208 = 208,
  765. IMUsed_226 = 226,
  766. // Redirection messages
  767. MultipleChoices_300 = 300,
  768. MovedPermanently_301 = 301,
  769. Found_302 = 302,
  770. SeeOther_303 = 303,
  771. NotModified_304 = 304,
  772. UseProxy_305 = 305,
  773. unused_306 = 306,
  774. TemporaryRedirect_307 = 307,
  775. PermanentRedirect_308 = 308,
  776. // Client error responses
  777. BadRequest_400 = 400,
  778. Unauthorized_401 = 401,
  779. PaymentRequired_402 = 402,
  780. Forbidden_403 = 403,
  781. NotFound_404 = 404,
  782. MethodNotAllowed_405 = 405,
  783. NotAcceptable_406 = 406,
  784. ProxyAuthenticationRequired_407 = 407,
  785. RequestTimeout_408 = 408,
  786. Conflict_409 = 409,
  787. Gone_410 = 410,
  788. LengthRequired_411 = 411,
  789. PreconditionFailed_412 = 412,
  790. PayloadTooLarge_413 = 413,
  791. UriTooLong_414 = 414,
  792. UnsupportedMediaType_415 = 415,
  793. RangeNotSatisfiable_416 = 416,
  794. ExpectationFailed_417 = 417,
  795. ImATeapot_418 = 418,
  796. MisdirectedRequest_421 = 421,
  797. UnprocessableContent_422 = 422,
  798. Locked_423 = 423,
  799. FailedDependency_424 = 424,
  800. TooEarly_425 = 425,
  801. UpgradeRequired_426 = 426,
  802. PreconditionRequired_428 = 428,
  803. TooManyRequests_429 = 429,
  804. RequestHeaderFieldsTooLarge_431 = 431,
  805. UnavailableForLegalReasons_451 = 451,
  806. // Server error responses
  807. InternalServerError_500 = 500,
  808. NotImplemented_501 = 501,
  809. BadGateway_502 = 502,
  810. ServiceUnavailable_503 = 503,
  811. GatewayTimeout_504 = 504,
  812. HttpVersionNotSupported_505 = 505,
  813. VariantAlsoNegotiates_506 = 506,
  814. InsufficientStorage_507 = 507,
  815. LoopDetected_508 = 508,
  816. NotExtended_510 = 510,
  817. NetworkAuthenticationRequired_511 = 511,
  818. };
  819. namespace detail {
  820. // A multimap that keeps its entries in the order they were inserted.
  821. //
  822. // HTTP needs that order in two places. RFC 9110 5.3 makes the order of header
  823. // fields sharing a field name significant and forbids a proxy from reordering
  824. // them, and a query string's parameters are meaningful in the order the caller
  825. // wrote them. Neither standard container expresses it: std::unordered_multimap
  826. // gives no ordering guarantee at all for equivalent keys (libstdc++ yields
  827. // reverse insertion order, libc++ insertion order), and std::multimap sorts by
  828. // key, which would drop control data such as Host behind whatever else the
  829. // message carries and alphabetise a query string.
  830. //
  831. // Entries are therefore kept in a flat vector, in order. Lookup is a linear
  832. // scan, which beats hashing for the handful of entries a message carries
  833. // (headers are capped at CPPHTTPLIB_HEADER_MAX_COUNT).
  834. //
  835. // KeyEqual compares keys; it is what makes Headers case-insensitive and
  836. // Params, whose parameter names are case-sensitive, not.
  837. template <typename Mapped, typename KeyEqual> class insertion_ordered_multimap {
  838. public:
  839. using key_type = std::string;
  840. using mapped_type = Mapped;
  841. using value_type = std::pair<std::string, Mapped>;
  842. using size_type = std::size_t;
  843. using difference_type = std::ptrdiff_t;
  844. using reference = value_type &;
  845. using const_reference = const value_type &;
  846. private:
  847. static size_type npos() { return static_cast<size_type>(-1); }
  848. static bool keys_equal(const std::string &a, const std::string &b) {
  849. return KeyEqual()(a, b);
  850. }
  851. // Iterating yields every entry in insertion order, but equal_range() and
  852. // find() have to walk only the entries sharing one key, which are not
  853. // adjacent. Both are the same iterator type: key_idx_ selects between the
  854. // two traversals, and since equality compares only the position, an iterator
  855. // restricted to one key still compares equal to end().
  856. template <typename V> class iterator_t {
  857. public:
  858. using iterator_category = std::bidirectional_iterator_tag;
  859. using value_type = insertion_ordered_multimap::value_type;
  860. using difference_type = insertion_ordered_multimap::difference_type;
  861. using pointer = V *;
  862. using reference = V &;
  863. iterator_t() : data_(nullptr), idx_(0), size_(0), key_idx_(npos()) {}
  864. template <typename U,
  865. typename std::enable_if<std::is_convertible<U *, V *>::value,
  866. int>::type = 0>
  867. iterator_t(const iterator_t<U> &rhs)
  868. : data_(rhs.data_), idx_(rhs.idx_), size_(rhs.size_),
  869. key_idx_(rhs.key_idx_) {}
  870. reference operator*() const { return data_[idx_]; }
  871. pointer operator->() const { return data_ + idx_; }
  872. iterator_t &operator++() {
  873. // Saturating, so that advancing past the last entry of a key (which
  874. // get_multimap_value() does when asked for an out-of-range id) stays at
  875. // end() instead of running off the container.
  876. if (idx_ >= size_) { return *this; }
  877. ++idx_;
  878. if (key_idx_ != npos()) {
  879. while (idx_ < size_ && !matches(idx_)) {
  880. ++idx_;
  881. }
  882. }
  883. return *this;
  884. }
  885. iterator_t operator++(int) {
  886. auto tmp = *this;
  887. ++*this;
  888. return tmp;
  889. }
  890. iterator_t &operator--() {
  891. if (idx_ == 0) { return *this; }
  892. --idx_;
  893. if (key_idx_ != npos()) {
  894. while (idx_ > 0 && !matches(idx_)) {
  895. --idx_;
  896. }
  897. }
  898. return *this;
  899. }
  900. iterator_t operator--(int) {
  901. auto tmp = *this;
  902. --*this;
  903. return tmp;
  904. }
  905. template <typename U> bool operator==(const iterator_t<U> &rhs) const {
  906. return idx_ == rhs.idx_;
  907. }
  908. template <typename U> bool operator!=(const iterator_t<U> &rhs) const {
  909. return idx_ != rhs.idx_;
  910. }
  911. private:
  912. friend class insertion_ordered_multimap;
  913. template <typename> friend class iterator_t;
  914. iterator_t(V *data, size_type idx, size_type size, size_type key_idx)
  915. : data_(data), idx_(idx), size_(size), key_idx_(key_idx) {}
  916. bool matches(size_type i) const {
  917. return keys_equal(data_[i].first, data_[key_idx_].first);
  918. }
  919. V *data_;
  920. size_type idx_;
  921. size_type size_;
  922. size_type key_idx_;
  923. };
  924. public:
  925. using iterator = iterator_t<value_type>;
  926. using const_iterator = iterator_t<const value_type>;
  927. insertion_ordered_multimap() = default;
  928. insertion_ordered_multimap(std::initializer_list<value_type> il)
  929. : entries_(il) {}
  930. template <typename InputIt>
  931. insertion_ordered_multimap(InputIt first, InputIt last)
  932. : entries_(first, last) {}
  933. iterator begin() { return make_iter(0, npos()); }
  934. iterator end() { return make_iter(entries_.size(), npos()); }
  935. const_iterator begin() const { return make_citer(0, npos()); }
  936. const_iterator end() const { return make_citer(entries_.size(), npos()); }
  937. const_iterator cbegin() const { return begin(); }
  938. const_iterator cend() const { return end(); }
  939. bool empty() const { return entries_.empty(); }
  940. size_type size() const { return entries_.size(); }
  941. void clear() { entries_.clear(); }
  942. void swap(insertion_ordered_multimap &rhs) { entries_.swap(rhs.entries_); }
  943. iterator insert(const value_type &val) {
  944. entries_.push_back(val);
  945. return make_iter(entries_.size() - 1, npos());
  946. }
  947. iterator insert(value_type &&val) {
  948. entries_.push_back(std::move(val));
  949. return make_iter(entries_.size() - 1, npos());
  950. }
  951. template <typename... Args> iterator emplace(Args &&...args) {
  952. entries_.emplace_back(std::forward<Args>(args)...);
  953. return make_iter(entries_.size() - 1, npos());
  954. }
  955. // For entries that have to lead the message, such as the Host header field
  956. // (RFC 9110 5.3 recommends sending control data first).
  957. template <typename... Args> iterator emplace_front(Args &&...args) {
  958. entries_.emplace(entries_.begin(), std::forward<Args>(args)...);
  959. return make_iter(0, npos());
  960. }
  961. iterator find(const std::string &key) {
  962. auto i = index_of(key);
  963. return i == npos() ? end() : make_iter(i, i);
  964. }
  965. const_iterator find(const std::string &key) const {
  966. auto i = index_of(key);
  967. return i == npos() ? end() : make_citer(i, i);
  968. }
  969. size_type count(const std::string &key) const {
  970. size_type n = 0;
  971. for (const auto &entry : entries_) {
  972. if (keys_equal(entry.first, key)) { n++; }
  973. }
  974. return n;
  975. }
  976. std::pair<iterator, iterator> equal_range(const std::string &key) {
  977. auto i = index_of(key);
  978. return i == npos() ? std::make_pair(end(), end())
  979. : std::make_pair(make_iter(i, i), end());
  980. }
  981. std::pair<const_iterator, const_iterator>
  982. equal_range(const std::string &key) const {
  983. auto i = index_of(key);
  984. return i == npos() ? std::make_pair(end(), end())
  985. : std::make_pair(make_citer(i, i), end());
  986. }
  987. size_type erase(const std::string &key) {
  988. auto before = entries_.size();
  989. entries_.erase(std::remove_if(entries_.begin(), entries_.end(),
  990. [&](const value_type &entry) {
  991. return keys_equal(entry.first, key);
  992. }),
  993. entries_.end());
  994. return before - entries_.size();
  995. }
  996. iterator erase(const_iterator pos) {
  997. entries_.erase(entries_.begin() + static_cast<difference_type>(pos.idx_));
  998. return make_iter(pos.idx_, npos());
  999. }
  1000. // Erases what iterating [first, last) would actually visit, so erasing an
  1001. // equal_range() removes only the entries with that key, not everything
  1002. // positioned between them.
  1003. iterator erase(const_iterator first, const_iterator last) {
  1004. auto from = first.idx_;
  1005. auto to = last.idx_;
  1006. if (from >= to) { return make_iter(from, npos()); }
  1007. auto begin_it = entries_.begin();
  1008. auto from_it = begin_it + static_cast<difference_type>(from);
  1009. auto to_it = begin_it + static_cast<difference_type>(to);
  1010. if (first.key_idx_ == npos()) {
  1011. entries_.erase(from_it, to_it);
  1012. } else {
  1013. auto key = entries_[first.key_idx_].first;
  1014. auto keep = from_it;
  1015. for (auto it = from_it; it != to_it; ++it) {
  1016. if (!keys_equal(it->first, key)) {
  1017. if (keep != it) { *keep = std::move(*it); }
  1018. ++keep;
  1019. }
  1020. }
  1021. if (keep != to_it) {
  1022. keep = std::move(to_it, entries_.end(), keep);
  1023. } else {
  1024. keep = entries_.end();
  1025. }
  1026. entries_.erase(keep, entries_.end());
  1027. }
  1028. return make_iter(from, npos());
  1029. }
  1030. friend bool operator==(const insertion_ordered_multimap &lhs,
  1031. const insertion_ordered_multimap &rhs) {
  1032. return lhs.entries_ == rhs.entries_;
  1033. }
  1034. friend bool operator!=(const insertion_ordered_multimap &lhs,
  1035. const insertion_ordered_multimap &rhs) {
  1036. return !(lhs == rhs);
  1037. }
  1038. private:
  1039. size_type index_of(const std::string &key) const {
  1040. for (size_type i = 0; i < entries_.size(); i++) {
  1041. if (keys_equal(entries_[i].first, key)) { return i; }
  1042. }
  1043. return npos();
  1044. }
  1045. iterator make_iter(size_type idx, size_type key_idx) {
  1046. return iterator(entries_.data(), idx, entries_.size(), key_idx);
  1047. }
  1048. const_iterator make_citer(size_type idx, size_type key_idx) const {
  1049. return const_iterator(entries_.data(), idx, entries_.size(), key_idx);
  1050. }
  1051. std::vector<value_type> entries_;
  1052. };
  1053. } // namespace detail
  1054. using Headers =
  1055. detail::insertion_ordered_multimap<std::string,
  1056. detail::case_ignore::equal_to>;
  1057. // Query parameter names are case-sensitive, unlike header field names.
  1058. using Params =
  1059. detail::insertion_ordered_multimap<std::string, std::equal_to<std::string>>;
  1060. using Match = std::smatch;
  1061. using DownloadProgress = std::function<bool(size_t current, size_t total)>;
  1062. using UploadProgress = std::function<bool(size_t current, size_t total)>;
  1063. /*
  1064. * detail: type-erased storage used by UserData.
  1065. * ABI-stable regardless of C++ standard — always uses this custom
  1066. * implementation instead of std::any.
  1067. */
  1068. namespace detail {
  1069. using any_type_id = const void *;
  1070. template <typename T> any_type_id any_typeid() noexcept {
  1071. static const char id = 0;
  1072. return &id;
  1073. }
  1074. struct any_storage {
  1075. virtual ~any_storage() = default;
  1076. virtual std::unique_ptr<any_storage> clone() const = 0;
  1077. virtual any_type_id type_id() const noexcept = 0;
  1078. };
  1079. template <typename T> struct any_value final : any_storage {
  1080. T value;
  1081. template <typename U> explicit any_value(U &&v) : value(std::forward<U>(v)) {}
  1082. std::unique_ptr<any_storage> clone() const override {
  1083. return std::unique_ptr<any_storage>(new any_value<T>(value));
  1084. }
  1085. any_type_id type_id() const noexcept override { return any_typeid<T>(); }
  1086. };
  1087. } // namespace detail
  1088. class UserData {
  1089. public:
  1090. UserData() = default;
  1091. UserData(UserData &&) noexcept = default;
  1092. UserData &operator=(UserData &&) noexcept = default;
  1093. UserData(const UserData &o) {
  1094. for (const auto &e : o.entries_) {
  1095. if (e.second) { entries_[e.first] = e.second->clone(); }
  1096. }
  1097. }
  1098. UserData &operator=(const UserData &o) {
  1099. if (this != &o) {
  1100. entries_.clear();
  1101. for (const auto &e : o.entries_) {
  1102. if (e.second) { entries_[e.first] = e.second->clone(); }
  1103. }
  1104. }
  1105. return *this;
  1106. }
  1107. template <typename T> void set(const std::string &key, T &&value) {
  1108. using D = typename std::decay<T>::type;
  1109. entries_[key].reset(new detail::any_value<D>(std::forward<T>(value)));
  1110. }
  1111. template <typename T> T *get(const std::string &key) noexcept {
  1112. auto it = entries_.find(key);
  1113. if (it == entries_.end() || !it->second) { return nullptr; }
  1114. if (it->second->type_id() != detail::any_typeid<T>()) { return nullptr; }
  1115. return &static_cast<detail::any_value<T> *>(it->second.get())->value;
  1116. }
  1117. template <typename T> const T *get(const std::string &key) const noexcept {
  1118. auto it = entries_.find(key);
  1119. if (it == entries_.end() || !it->second) { return nullptr; }
  1120. if (it->second->type_id() != detail::any_typeid<T>()) { return nullptr; }
  1121. return &static_cast<const detail::any_value<T> *>(it->second.get())->value;
  1122. }
  1123. bool has(const std::string &key) const noexcept {
  1124. return entries_.find(key) != entries_.end();
  1125. }
  1126. void erase(const std::string &key) { entries_.erase(key); }
  1127. void clear() noexcept { entries_.clear(); }
  1128. private:
  1129. std::unordered_map<std::string, std::unique_ptr<detail::any_storage>>
  1130. entries_;
  1131. };
  1132. struct Response;
  1133. using ResponseHandler = std::function<bool(const Response &response)>;
  1134. struct FormData {
  1135. std::string name;
  1136. std::string content;
  1137. std::string filename;
  1138. std::string content_type;
  1139. Headers headers;
  1140. };
  1141. struct FormField {
  1142. std::string name;
  1143. std::string content;
  1144. Headers headers;
  1145. };
  1146. // RFC 7578 5.2: a form processor "SHOULD send back results in order" and
  1147. // "Intermediaries MUST NOT reorder the results", so a handler walking these
  1148. // should see the parts as they were sent. A std::multimap sorts by field name
  1149. // and loses that. Field names are case-sensitive, hence std::equal_to rather
  1150. // than the case-insensitive predicate Headers uses.
  1151. using FormFields =
  1152. detail::insertion_ordered_multimap<FormField, std::equal_to<std::string>>;
  1153. using FormFiles =
  1154. detail::insertion_ordered_multimap<FormData, std::equal_to<std::string>>;
  1155. struct MultipartFormData {
  1156. FormFields fields; // Text fields from multipart
  1157. FormFiles files; // Files from multipart
  1158. // Text field access
  1159. std::string get_field(const std::string &key, size_t id = 0) const;
  1160. std::vector<std::string> get_fields(const std::string &key) const;
  1161. bool has_field(const std::string &key) const;
  1162. size_t get_field_count(const std::string &key) const;
  1163. // File access
  1164. FormData get_file(const std::string &key, size_t id = 0) const;
  1165. std::vector<FormData> get_files(const std::string &key) const;
  1166. bool has_file(const std::string &key) const;
  1167. size_t get_file_count(const std::string &key) const;
  1168. };
  1169. struct UploadFormData {
  1170. std::string name;
  1171. std::string content;
  1172. std::string filename;
  1173. std::string content_type;
  1174. };
  1175. using UploadFormDataItems = std::vector<UploadFormData>;
  1176. class DataSink {
  1177. public:
  1178. DataSink() : os(&sb_), sb_(*this) {}
  1179. DataSink(const DataSink &) = delete;
  1180. DataSink &operator=(const DataSink &) = delete;
  1181. DataSink(DataSink &&) = delete;
  1182. DataSink &operator=(DataSink &&) = delete;
  1183. std::function<bool(const char *data, size_t data_len)> write;
  1184. std::function<bool()> is_writable;
  1185. std::function<void()> done;
  1186. std::function<void(const Headers &trailer)> done_with_trailer;
  1187. std::ostream os;
  1188. private:
  1189. class data_sink_streambuf final : public std::streambuf {
  1190. public:
  1191. explicit data_sink_streambuf(DataSink &sink) : sink_(sink) {}
  1192. protected:
  1193. std::streamsize xsputn(const char *s, std::streamsize n) override {
  1194. if (sink_.write(s, static_cast<size_t>(n))) { return n; }
  1195. return 0;
  1196. }
  1197. private:
  1198. DataSink &sink_;
  1199. };
  1200. data_sink_streambuf sb_;
  1201. };
  1202. using ContentProvider =
  1203. std::function<bool(size_t offset, size_t length, DataSink &sink)>;
  1204. using ContentProviderWithoutLength =
  1205. std::function<bool(size_t offset, DataSink &sink)>;
  1206. using ContentProviderResourceReleaser = std::function<void(bool success)>;
  1207. struct FormDataProvider {
  1208. std::string name;
  1209. ContentProviderWithoutLength provider;
  1210. std::string filename;
  1211. std::string content_type;
  1212. };
  1213. using FormDataProviderItems = std::vector<FormDataProvider>;
  1214. inline FormDataProvider
  1215. make_file_provider(const std::string &name, const std::string &filepath,
  1216. const std::string &filename = std::string(),
  1217. const std::string &content_type = std::string()) {
  1218. FormDataProvider fdp;
  1219. fdp.name = name;
  1220. fdp.filename = filename.empty() ? filepath : filename;
  1221. fdp.content_type = content_type;
  1222. fdp.provider = [filepath](size_t offset, DataSink &sink) -> bool {
  1223. std::ifstream f(filepath, std::ios::binary);
  1224. if (!f) { return false; }
  1225. if (offset > 0) {
  1226. f.seekg(static_cast<std::streamoff>(offset));
  1227. if (!f.good()) {
  1228. sink.done();
  1229. return true;
  1230. }
  1231. }
  1232. char buf[8192];
  1233. f.read(buf, sizeof(buf));
  1234. auto n = static_cast<size_t>(f.gcount());
  1235. if (n > 0) { return sink.write(buf, n); }
  1236. sink.done(); // EOF
  1237. return true;
  1238. };
  1239. return fdp;
  1240. }
  1241. inline std::pair<size_t, ContentProvider>
  1242. make_file_body(const std::string &filepath) {
  1243. size_t size = 0;
  1244. {
  1245. std::ifstream f(filepath, std::ios::binary | std::ios::ate);
  1246. if (!f) { return {0, ContentProvider{}}; }
  1247. size = static_cast<size_t>(f.tellg());
  1248. }
  1249. ContentProvider provider = [filepath](size_t offset, size_t length,
  1250. DataSink &sink) -> bool {
  1251. std::ifstream f(filepath, std::ios::binary);
  1252. if (!f) { return false; }
  1253. f.seekg(static_cast<std::streamoff>(offset));
  1254. if (!f.good()) { return false; }
  1255. char buf[8192];
  1256. while (length > 0) {
  1257. auto to_read = (std::min)(sizeof(buf), length);
  1258. f.read(buf, static_cast<std::streamsize>(to_read));
  1259. auto n = static_cast<size_t>(f.gcount());
  1260. if (n == 0) { break; }
  1261. if (!sink.write(buf, n)) { return false; }
  1262. length -= n;
  1263. }
  1264. return true;
  1265. };
  1266. return {size, std::move(provider)};
  1267. }
  1268. using ContentReceiverWithProgress = std::function<bool(
  1269. const char *data, size_t data_length, size_t offset, size_t total_length)>;
  1270. using ContentReceiver =
  1271. std::function<bool(const char *data, size_t data_length)>;
  1272. using FormDataHeader = std::function<bool(const FormData &file)>;
  1273. class ContentReader {
  1274. public:
  1275. using Reader = std::function<bool(ContentReceiver receiver)>;
  1276. using FormDataReader =
  1277. std::function<bool(FormDataHeader header, ContentReceiver receiver)>;
  1278. ContentReader(Reader reader, FormDataReader multipart_reader)
  1279. : reader_(std::move(reader)),
  1280. formdata_reader_(std::move(multipart_reader)) {}
  1281. bool operator()(FormDataHeader header, ContentReceiver receiver) const {
  1282. return formdata_reader_(std::move(header), std::move(receiver));
  1283. }
  1284. bool operator()(ContentReceiver receiver) const {
  1285. return reader_(std::move(receiver));
  1286. }
  1287. Reader reader_;
  1288. FormDataReader formdata_reader_;
  1289. };
  1290. using Range = std::pair<ssize_t, ssize_t>;
  1291. using Ranges = std::vector<Range>;
  1292. #ifdef CPPHTTPLIB_SSL_ENABLED
  1293. // TLS abstraction layer - public type definitions and API
  1294. namespace tls {
  1295. // Opaque handles (defined as void* for abstraction)
  1296. using ctx_t = void *;
  1297. using session_t = void *;
  1298. using const_session_t = const void *; // For read-only session access
  1299. using cert_t = void *;
  1300. using ca_store_t = void *;
  1301. // TLS versions
  1302. enum class Version {
  1303. TLS1_2 = 0x0303,
  1304. TLS1_3 = 0x0304,
  1305. };
  1306. // Subject Alternative Names (SAN) entry types
  1307. enum class SanType { DNS, IP, EMAIL, URI, OTHER };
  1308. // SAN entry structure
  1309. struct SanEntry {
  1310. SanType type;
  1311. std::string value;
  1312. };
  1313. // Verification context for certificate verification callback
  1314. struct VerifyContext {
  1315. session_t session; // TLS session handle
  1316. cert_t cert; // Current certificate being verified
  1317. int depth; // Certificate chain depth (0 = leaf)
  1318. bool preverify_ok; // OpenSSL/Mbed TLS pre-verification result
  1319. long error_code; // Backend-specific error code (0 = no error)
  1320. const char *error_string; // Human-readable error description
  1321. // Certificate introspection methods
  1322. std::string subject_cn() const;
  1323. std::string issuer_name() const;
  1324. bool check_hostname(const char *hostname) const;
  1325. std::vector<SanEntry> sans() const;
  1326. bool validity(time_t &not_before, time_t &not_after) const;
  1327. std::string serial() const;
  1328. };
  1329. using VerifyCallback = std::function<bool(const VerifyContext &ctx)>;
  1330. // TlsError codes for TLS operations (backend-independent)
  1331. enum class ErrorCode : int {
  1332. Success = 0,
  1333. WantRead, // Non-blocking: need to wait for read
  1334. WantWrite, // Non-blocking: need to wait for write
  1335. PeerClosed, // Peer closed the connection
  1336. Fatal, // Unrecoverable error
  1337. SyscallError, // System call error (check sys_errno)
  1338. CertVerifyFailed, // Certificate verification failed
  1339. HostnameMismatch, // Hostname verification failed
  1340. };
  1341. // TLS error information
  1342. struct TlsError {
  1343. ErrorCode code = ErrorCode::Fatal;
  1344. uint64_t backend_code = 0; // OpenSSL: ERR_get_error(), mbedTLS: return value
  1345. int sys_errno = 0; // errno when SyscallError
  1346. // Convert verification error code to human-readable string
  1347. static std::string verify_error_to_string(long error_code);
  1348. };
  1349. // RAII wrapper for peer certificate
  1350. class PeerCert {
  1351. public:
  1352. PeerCert();
  1353. PeerCert(PeerCert &&other) noexcept;
  1354. PeerCert &operator=(PeerCert &&other) noexcept;
  1355. ~PeerCert();
  1356. PeerCert(const PeerCert &) = delete;
  1357. PeerCert &operator=(const PeerCert &) = delete;
  1358. explicit operator bool() const;
  1359. std::string subject_cn() const;
  1360. std::string issuer_name() const;
  1361. bool check_hostname(const char *hostname) const;
  1362. std::vector<SanEntry> sans() const;
  1363. bool validity(time_t &not_before, time_t &not_after) const;
  1364. std::string serial() const;
  1365. private:
  1366. explicit PeerCert(cert_t cert);
  1367. cert_t cert_ = nullptr;
  1368. friend PeerCert get_peer_cert_from_session(const_session_t session);
  1369. };
  1370. // Callback for TLS context setup (used by SSLServer constructor)
  1371. using ContextSetupCallback = std::function<bool(ctx_t ctx)>;
  1372. } // namespace tls
  1373. #endif
  1374. struct Request {
  1375. std::string method;
  1376. std::string path;
  1377. std::string matched_route;
  1378. Params params;
  1379. Headers headers;
  1380. Headers trailers;
  1381. std::string body;
  1382. std::string remote_addr;
  1383. int remote_port = -1;
  1384. std::string local_addr;
  1385. int local_port = -1;
  1386. // for server
  1387. std::string version;
  1388. std::string target;
  1389. MultipartFormData form;
  1390. Ranges ranges;
  1391. Match matches;
  1392. std::unordered_map<std::string, std::string> path_params;
  1393. std::function<bool()> is_connection_closed = []() { return true; };
  1394. // for client
  1395. std::vector<std::string> accept_content_types;
  1396. ResponseHandler response_handler;
  1397. ContentReceiverWithProgress content_receiver;
  1398. DownloadProgress download_progress;
  1399. UploadProgress upload_progress;
  1400. bool has_header(const std::string &key) const;
  1401. std::string get_header_value(const std::string &key, const char *def = "",
  1402. size_t id = 0) const;
  1403. size_t get_header_value_u64(const std::string &key, size_t def = 0,
  1404. size_t id = 0) const;
  1405. size_t get_header_value_count(const std::string &key) const;
  1406. void set_header(const std::string &key, const std::string &val);
  1407. bool has_trailer(const std::string &key) const;
  1408. std::string get_trailer_value(const std::string &key, size_t id = 0) const;
  1409. size_t get_trailer_value_count(const std::string &key) const;
  1410. bool has_param(const std::string &key) const;
  1411. std::string get_param_value(const std::string &key, size_t id = 0) const;
  1412. std::vector<std::string> get_param_values(const std::string &key) const;
  1413. size_t get_param_value_count(const std::string &key) const;
  1414. bool is_multipart_form_data() const;
  1415. // private members...
  1416. bool body_consumed_ = false;
  1417. size_t redirect_count_ = CPPHTTPLIB_REDIRECT_MAX_COUNT;
  1418. size_t content_length_ = 0;
  1419. ContentProvider content_provider_;
  1420. bool is_chunked_content_provider_ = false;
  1421. size_t authorization_count_ = 0;
  1422. std::chrono::time_point<std::chrono::steady_clock> start_time_ =
  1423. (std::chrono::steady_clock::time_point::min)();
  1424. #ifdef CPPHTTPLIB_SSL_ENABLED
  1425. tls::const_session_t ssl = nullptr;
  1426. tls::PeerCert peer_cert() const;
  1427. std::string sni() const;
  1428. #endif
  1429. };
  1430. struct Response {
  1431. std::string version;
  1432. int status = -1;
  1433. std::string reason;
  1434. Headers headers;
  1435. Headers trailers;
  1436. std::string body;
  1437. std::string location; // Redirect location
  1438. // User-defined context — set by pre-routing/pre-request handlers and read
  1439. // by route handlers to pass arbitrary data (e.g. decoded auth tokens).
  1440. UserData user_data;
  1441. bool has_header(const std::string &key) const;
  1442. std::string get_header_value(const std::string &key, const char *def = "",
  1443. size_t id = 0) const;
  1444. size_t get_header_value_u64(const std::string &key, size_t def = 0,
  1445. size_t id = 0) const;
  1446. size_t get_header_value_count(const std::string &key) const;
  1447. void set_header(const std::string &key, const std::string &val);
  1448. bool has_trailer(const std::string &key) const;
  1449. std::string get_trailer_value(const std::string &key, size_t id = 0) const;
  1450. size_t get_trailer_value_count(const std::string &key) const;
  1451. void set_redirect(const std::string &url, int status = StatusCode::Found_302);
  1452. void set_content(const char *s, size_t n, const std::string &content_type);
  1453. void set_content(const std::string &s, const std::string &content_type);
  1454. void set_content(std::string &&s, const std::string &content_type);
  1455. void set_content_provider(
  1456. size_t length, const std::string &content_type, ContentProvider provider,
  1457. ContentProviderResourceReleaser resource_releaser = nullptr);
  1458. void set_content_provider(
  1459. const std::string &content_type, ContentProviderWithoutLength provider,
  1460. ContentProviderResourceReleaser resource_releaser = nullptr);
  1461. void set_chunked_content_provider(
  1462. const std::string &content_type, ContentProviderWithoutLength provider,
  1463. ContentProviderResourceReleaser resource_releaser = nullptr);
  1464. void set_file_content(const std::string &path,
  1465. const std::string &content_type);
  1466. void set_file_content(const std::string &path);
  1467. Response() = default;
  1468. Response(const Response &) = default;
  1469. Response &operator=(const Response &) = default;
  1470. Response(Response &&) = default;
  1471. Response &operator=(Response &&) = default;
  1472. ~Response() {
  1473. if (content_provider_resource_releaser_) {
  1474. content_provider_resource_releaser_(content_provider_success_);
  1475. }
  1476. }
  1477. // private members...
  1478. size_t content_length_ = 0;
  1479. ContentProvider content_provider_;
  1480. ContentProviderResourceReleaser content_provider_resource_releaser_;
  1481. bool is_chunked_content_provider_ = false;
  1482. bool content_provider_success_ = false;
  1483. std::string file_content_path_;
  1484. std::string file_content_content_type_;
  1485. };
  1486. enum class Error {
  1487. Success = 0,
  1488. Unknown,
  1489. Connection,
  1490. BindIPAddress,
  1491. Read,
  1492. Write,
  1493. ExceedRedirectCount,
  1494. Canceled,
  1495. SSLConnection,
  1496. SSLLoadingCerts,
  1497. SSLServerVerification,
  1498. SSLServerHostnameVerification,
  1499. UnsupportedMultipartBoundaryChars,
  1500. Compression,
  1501. ConnectionTimeout,
  1502. ProxyConnection,
  1503. ConnectionClosed,
  1504. Timeout,
  1505. ResourceExhaustion,
  1506. TooManyFormDataFiles,
  1507. ExceedMaxPayloadSize,
  1508. ExceedUriMaxLength,
  1509. ExceedMaxSocketDescriptorCount,
  1510. InvalidRequestLine,
  1511. InvalidHTTPMethod,
  1512. InvalidHTTPVersion,
  1513. InvalidHeaders,
  1514. MultipartParsing,
  1515. OpenFile,
  1516. Listen,
  1517. GetSockName,
  1518. UnsupportedAddressFamily,
  1519. HTTPParsing,
  1520. InvalidRangeHeader,
  1521. UnsupportedContentEncoding,
  1522. WebSocketHandshake,
  1523. // For internal use only
  1524. SSLPeerCouldBeClosed_,
  1525. };
  1526. std::string to_string(Error error);
  1527. std::ostream &operator<<(std::ostream &os, const Error &obj);
  1528. class Stream {
  1529. public:
  1530. virtual ~Stream() = default;
  1531. virtual bool is_readable() const = 0;
  1532. virtual bool wait_readable() const = 0;
  1533. virtual bool wait_writable() const = 0;
  1534. virtual bool is_peer_alive() const { return wait_writable(); }
  1535. virtual ssize_t read(char *ptr, size_t size) = 0;
  1536. virtual ssize_t write(const char *ptr, size_t size) = 0;
  1537. virtual void get_remote_ip_and_port(std::string &ip, int &port) const = 0;
  1538. virtual void get_local_ip_and_port(std::string &ip, int &port) const = 0;
  1539. virtual socket_t socket() const = 0;
  1540. virtual time_t duration() const = 0;
  1541. virtual void set_read_timeout(time_t sec, time_t usec = 0) {
  1542. (void)sec;
  1543. (void)usec;
  1544. }
  1545. // Bytes already pulled off the socket and sitting in this stream's own
  1546. // buffer. Exposing them lets a line reader scan for a terminator in one
  1547. // pass instead of asking for a byte at a time. A stream that does no
  1548. // buffering of its own reports none, and readers fall back to read().
  1549. virtual const char *buffered_data(size_t &size) const {
  1550. size = 0;
  1551. return nullptr;
  1552. }
  1553. // Discards `size` bytes previously returned by buffered_data().
  1554. virtual void consume_buffered(size_t size) { (void)size; }
  1555. ssize_t write(const char *ptr);
  1556. ssize_t write(const std::string &s);
  1557. Error get_error() const { return error_; }
  1558. protected:
  1559. Error error_ = Error::Success;
  1560. };
  1561. class TaskQueue {
  1562. public:
  1563. TaskQueue() = default;
  1564. virtual ~TaskQueue() = default;
  1565. virtual bool enqueue(std::function<void()> fn) = 0;
  1566. virtual void shutdown() = 0;
  1567. virtual void on_idle() {}
  1568. };
  1569. class ThreadPool final : public TaskQueue {
  1570. public:
  1571. explicit ThreadPool(
  1572. size_t n, size_t max_n = 0, size_t mqr = 0,
  1573. time_t idle_timeout_sec = CPPHTTPLIB_THREAD_POOL_IDLE_TIMEOUT);
  1574. ThreadPool(const ThreadPool &) = delete;
  1575. ~ThreadPool() override = default;
  1576. bool enqueue(std::function<void()> fn) override;
  1577. void shutdown() override;
  1578. private:
  1579. void worker(bool is_dynamic);
  1580. void move_to_finished(std::thread::id id);
  1581. void cleanup_finished_threads();
  1582. size_t base_thread_count_;
  1583. size_t max_thread_count_;
  1584. size_t max_queued_requests_;
  1585. time_t idle_timeout_sec_;
  1586. size_t idle_thread_count_;
  1587. bool shutdown_;
  1588. std::list<std::function<void()>> jobs_;
  1589. std::vector<std::thread> threads_; // base threads
  1590. std::list<std::thread> dynamic_threads_; // dynamic threads
  1591. std::vector<std::thread>
  1592. finished_threads_; // exited dynamic threads awaiting join
  1593. std::condition_variable cond_;
  1594. std::mutex mutex_;
  1595. };
  1596. using Logger = std::function<void(const Request &, const Response &)>;
  1597. // Forward declaration for Error type
  1598. enum class Error;
  1599. using ErrorLogger = std::function<void(const Error &, const Request *)>;
  1600. using SocketOptions = std::function<void(socket_t sock)>;
  1601. void default_socket_options(socket_t sock);
  1602. bool set_socket_opt(socket_t sock, int level, int optname, int optval);
  1603. const char *status_message(int status);
  1604. std::string to_string(Error error);
  1605. std::ostream &operator<<(std::ostream &os, const Error &obj);
  1606. std::string get_bearer_token_auth(const Request &req);
  1607. namespace detail {
  1608. class MatcherBase {
  1609. public:
  1610. MatcherBase(std::string pattern) : pattern_(std::move(pattern)) {}
  1611. virtual ~MatcherBase() = default;
  1612. const std::string &pattern() const { return pattern_; }
  1613. // Match request path and populate its matches and
  1614. virtual bool match(Request &request) const = 0;
  1615. private:
  1616. std::string pattern_;
  1617. };
  1618. /**
  1619. * Captures parameters in request path and stores them in Request::path_params
  1620. *
  1621. * Capture name is a substring of a pattern from : to /.
  1622. * The rest of the pattern is matched against the request path directly
  1623. * Parameters are captured starting from the next character after
  1624. * the end of the last matched static pattern fragment until the next /.
  1625. *
  1626. * Example pattern:
  1627. * "/path/fragments/:capture/more/fragments/:second_capture"
  1628. * Static fragments:
  1629. * "/path/fragments/", "more/fragments/"
  1630. *
  1631. * Given the following request path:
  1632. * "/path/fragments/:1/more/fragments/:2"
  1633. * the resulting capture will be
  1634. * {{"capture", "1"}, {"second_capture", "2"}}
  1635. */
  1636. class PathParamsMatcher final : public MatcherBase {
  1637. public:
  1638. PathParamsMatcher(const std::string &pattern);
  1639. bool match(Request &request) const override;
  1640. private:
  1641. // Treat segment separators as the end of path parameter capture
  1642. // Does not need to handle query parameters as they are parsed before path
  1643. // matching
  1644. static constexpr char separator = '/';
  1645. // Contains static path fragments to match against, excluding the '/' after
  1646. // path params
  1647. // Fragments are separated by path params
  1648. std::vector<std::string> static_fragments_;
  1649. // Stores the names of the path parameters to be used as keys in the
  1650. // Request::path_params map
  1651. std::vector<std::string> param_names_;
  1652. };
  1653. /**
  1654. * Performs std::regex_match on request path
  1655. * and stores the result in Request::matches
  1656. *
  1657. * Note that regex match is performed directly on the whole request.
  1658. * This means that wildcard patterns may match multiple path segments with /:
  1659. * "/begin/(.*)/end" will match both "/begin/middle/end" and "/begin/1/2/end".
  1660. */
  1661. class RegexMatcher final : public MatcherBase {
  1662. public:
  1663. RegexMatcher(const std::string &pattern)
  1664. : MatcherBase(pattern), regex_(pattern) {}
  1665. bool match(Request &request) const override;
  1666. private:
  1667. std::regex regex_;
  1668. };
  1669. int close_socket(socket_t sock) noexcept;
  1670. ssize_t write_headers(Stream &strm, const Headers &headers);
  1671. bool set_socket_opt_time(socket_t sock, int level, int optname, time_t sec,
  1672. time_t usec);
  1673. size_t get_multipart_content_length(const UploadFormDataItems &items,
  1674. const std::string &boundary);
  1675. ContentProvider
  1676. make_multipart_content_provider(const UploadFormDataItems &items,
  1677. const std::string &boundary);
  1678. } // namespace detail
  1679. bool is_valid_multipart_boundary(const std::string &boundary);
  1680. // Serializer for multipart/form-data request bodies. The boundary is owned
  1681. // by the writer so that per-part framing and the final terminator always
  1682. // agree. Field names and filenames are escaped following the WHATWG HTML
  1683. // standard ('"' -> %22, CR -> %0D, LF -> %0A); CR and LF are also escaped
  1684. // in content types.
  1685. class MultipartFormDataWriter {
  1686. public:
  1687. MultipartFormDataWriter();
  1688. // precondition: is_valid_multipart_boundary(boundary)
  1689. explicit MultipartFormDataWriter(std::string boundary);
  1690. const std::string &boundary() const;
  1691. std::string content_type() const;
  1692. // In-memory items -> whole body (known length)
  1693. std::string serialize(const UploadFormDataItems &items) const;
  1694. size_t content_length(const UploadFormDataItems &items) const;
  1695. // Per-part framing for streaming via a content provider
  1696. std::string item_begin(const UploadFormData &item) const;
  1697. static std::string item_end();
  1698. std::string finish() const;
  1699. private:
  1700. std::string boundary_;
  1701. };
  1702. class Server {
  1703. public:
  1704. using Handler = std::function<void(const Request &, Response &)>;
  1705. using ExceptionHandler =
  1706. std::function<void(const Request &, Response &, std::exception_ptr ep)>;
  1707. enum class HandlerResponse {
  1708. Handled,
  1709. Unhandled,
  1710. };
  1711. using HandlerWithResponse =
  1712. std::function<HandlerResponse(const Request &, Response &)>;
  1713. using HandlerWithContentReader = std::function<void(
  1714. const Request &, Response &, const ContentReader &content_reader)>;
  1715. using Expect100ContinueHandler =
  1716. std::function<int(const Request &, Response &)>;
  1717. using StartHandler = std::function<void()>;
  1718. using WebSocketHandler =
  1719. std::function<void(const Request &, ws::WebSocket &)>;
  1720. using SubProtocolSelector =
  1721. std::function<std::string(const std::vector<std::string> &protocols)>;
  1722. Server();
  1723. virtual ~Server();
  1724. virtual bool is_valid() const;
  1725. Server &Get(const std::string &pattern, Handler handler);
  1726. Server &Post(const std::string &pattern, Handler handler);
  1727. Server &Post(const std::string &pattern, HandlerWithContentReader handler);
  1728. Server &Put(const std::string &pattern, Handler handler);
  1729. Server &Put(const std::string &pattern, HandlerWithContentReader handler);
  1730. Server &Patch(const std::string &pattern, Handler handler);
  1731. Server &Patch(const std::string &pattern, HandlerWithContentReader handler);
  1732. Server &Delete(const std::string &pattern, Handler handler);
  1733. Server &Delete(const std::string &pattern, HandlerWithContentReader handler);
  1734. Server &Options(const std::string &pattern, Handler handler);
  1735. Server &WebSocket(const std::string &pattern, WebSocketHandler handler);
  1736. Server &WebSocket(const std::string &pattern, WebSocketHandler handler,
  1737. SubProtocolSelector sub_protocol_selector);
  1738. bool set_base_dir(const std::string &dir,
  1739. const std::string &mount_point = std::string());
  1740. bool set_mount_point(const std::string &mount_point, const std::string &dir,
  1741. Headers headers = Headers());
  1742. bool remove_mount_point(const std::string &mount_point);
  1743. Server &set_file_extension_and_mimetype_mapping(const std::string &ext,
  1744. const std::string &mime);
  1745. Server &set_default_file_mimetype(const std::string &mime);
  1746. Server &set_file_request_handler(Handler handler);
  1747. template <class ErrorHandlerFunc>
  1748. Server &set_error_handler(ErrorHandlerFunc &&handler) {
  1749. return set_error_handler_core(
  1750. std::forward<ErrorHandlerFunc>(handler),
  1751. std::is_convertible<ErrorHandlerFunc, HandlerWithResponse>{});
  1752. }
  1753. Server &set_exception_handler(ExceptionHandler handler);
  1754. Server &set_pre_routing_handler(HandlerWithResponse handler);
  1755. Server &set_post_routing_handler(Handler handler);
  1756. Server &set_pre_request_handler(HandlerWithResponse handler);
  1757. Server &set_expect_100_continue_handler(Expect100ContinueHandler handler);
  1758. Server &set_start_handler(StartHandler handler);
  1759. Server &set_logger(Logger logger);
  1760. Server &set_pre_compression_logger(Logger logger);
  1761. Server &set_error_logger(ErrorLogger error_logger);
  1762. Server &set_address_family(int family);
  1763. Server &set_tcp_nodelay(bool on);
  1764. Server &set_ipv6_v6only(bool on);
  1765. Server &set_socket_options(SocketOptions socket_options);
  1766. Server &set_default_headers(Headers headers);
  1767. Server &
  1768. set_header_writer(std::function<ssize_t(Stream &, Headers &)> const &writer);
  1769. Server &set_trusted_proxies(const std::vector<std::string> &proxies);
  1770. Server &set_keep_alive_max_count(size_t count);
  1771. Server &set_keep_alive_timeout(time_t sec);
  1772. template <class Rep, class Period>
  1773. Server &
  1774. set_keep_alive_timeout(const std::chrono::duration<Rep, Period> &duration);
  1775. Server &set_read_timeout(time_t sec, time_t usec = 0);
  1776. template <class Rep, class Period>
  1777. Server &set_read_timeout(const std::chrono::duration<Rep, Period> &duration);
  1778. Server &set_write_timeout(time_t sec, time_t usec = 0);
  1779. template <class Rep, class Period>
  1780. Server &set_write_timeout(const std::chrono::duration<Rep, Period> &duration);
  1781. Server &set_idle_interval(time_t sec, time_t usec = 0);
  1782. template <class Rep, class Period>
  1783. Server &set_idle_interval(const std::chrono::duration<Rep, Period> &duration);
  1784. Server &set_payload_max_length(size_t length);
  1785. Server &set_websocket_ping_interval(time_t sec);
  1786. template <class Rep, class Period>
  1787. Server &set_websocket_ping_interval(
  1788. const std::chrono::duration<Rep, Period> &duration);
  1789. Server &set_websocket_max_missed_pongs(int count);
  1790. bool bind_to_port(const std::string &host, int port, int socket_flags = 0);
  1791. int bind_to_any_port(const std::string &host, int socket_flags = 0);
  1792. bool listen_after_bind();
  1793. bool listen(const std::string &host, int port, int socket_flags = 0);
  1794. bool is_running() const;
  1795. void wait_until_ready() const;
  1796. void stop() noexcept;
  1797. void decommission();
  1798. std::function<TaskQueue *(void)> new_task_queue;
  1799. protected:
  1800. bool process_request(Stream &strm, const std::string &remote_addr,
  1801. int remote_port, const std::string &local_addr,
  1802. int local_port, bool close_connection,
  1803. bool &connection_closed,
  1804. const std::function<void(Request &)> &setup_request,
  1805. bool *websocket_upgraded = nullptr);
  1806. std::atomic<socket_t> svr_sock_{INVALID_SOCKET};
  1807. std::vector<std::string> trusted_proxies_;
  1808. size_t keep_alive_max_count_ = CPPHTTPLIB_KEEPALIVE_MAX_COUNT;
  1809. time_t keep_alive_timeout_sec_ = CPPHTTPLIB_KEEPALIVE_TIMEOUT_SECOND;
  1810. time_t read_timeout_sec_ = CPPHTTPLIB_SERVER_READ_TIMEOUT_SECOND;
  1811. time_t read_timeout_usec_ = CPPHTTPLIB_SERVER_READ_TIMEOUT_USECOND;
  1812. time_t write_timeout_sec_ = CPPHTTPLIB_SERVER_WRITE_TIMEOUT_SECOND;
  1813. time_t write_timeout_usec_ = CPPHTTPLIB_SERVER_WRITE_TIMEOUT_USECOND;
  1814. time_t idle_interval_sec_ = CPPHTTPLIB_IDLE_INTERVAL_SECOND;
  1815. time_t idle_interval_usec_ = CPPHTTPLIB_IDLE_INTERVAL_USECOND;
  1816. size_t payload_max_length_ = CPPHTTPLIB_PAYLOAD_MAX_LENGTH;
  1817. time_t websocket_ping_interval_sec_ =
  1818. CPPHTTPLIB_WEBSOCKET_PING_INTERVAL_SECOND;
  1819. int websocket_max_missed_pongs_ = CPPHTTPLIB_WEBSOCKET_MAX_MISSED_PONGS;
  1820. private:
  1821. using Handlers =
  1822. std::vector<std::pair<std::unique_ptr<detail::MatcherBase>, Handler>>;
  1823. using HandlersForContentReader =
  1824. std::vector<std::pair<std::unique_ptr<detail::MatcherBase>,
  1825. HandlerWithContentReader>>;
  1826. static std::unique_ptr<detail::MatcherBase>
  1827. make_matcher(const std::string &pattern);
  1828. template <typename H>
  1829. Server &add_handler(
  1830. std::vector<std::pair<std::unique_ptr<detail::MatcherBase>, H>> &handlers,
  1831. const std::string &pattern, H handler) {
  1832. handlers.emplace_back(make_matcher(pattern), std::move(handler));
  1833. return *this;
  1834. }
  1835. Server &set_error_handler_core(HandlerWithResponse handler, std::true_type);
  1836. Server &set_error_handler_core(Handler handler, std::false_type);
  1837. socket_t create_server_socket(const std::string &host, int port,
  1838. int socket_flags,
  1839. SocketOptions socket_options) const;
  1840. int bind_internal(const std::string &host, int port, int socket_flags);
  1841. bool listen_internal();
  1842. bool routing(Request &req, Response &res, Stream &strm);
  1843. bool handle_file_request(Request &req, Response &res);
  1844. bool check_if_not_modified(const Request &req, Response &res,
  1845. const std::string &etag, time_t mtime) const;
  1846. bool check_if_range(Request &req, const std::string &etag,
  1847. time_t mtime) const;
  1848. bool dispatch_request(Request &req, Response &res, const Handlers &handlers,
  1849. Stream &strm);
  1850. bool dispatch_request_for_content_reader(
  1851. Request &req, Response &res, ContentReader content_reader,
  1852. const HandlersForContentReader &handlers) const;
  1853. bool parse_request_line(const char *s, Request &req) const;
  1854. void apply_ranges(const Request &req, Response &res,
  1855. std::string &content_type, std::string &boundary) const;
  1856. bool write_response(Stream &strm, bool close_connection, Request &req,
  1857. Response &res);
  1858. bool write_response_with_content(Stream &strm, bool close_connection,
  1859. const Request &req, Response &res);
  1860. bool write_response_core(Stream &strm, bool close_connection,
  1861. const Request &req, Response &res,
  1862. bool need_apply_ranges);
  1863. bool write_content_with_provider(Stream &strm, const Request &req,
  1864. Response &res, const std::string &boundary,
  1865. const std::string &content_type);
  1866. bool read_content(Stream &strm, Request &req, Response &res);
  1867. bool read_content_with_content_receiver(Stream &strm, Request &req,
  1868. Response &res,
  1869. ContentReceiver receiver,
  1870. FormDataHeader multipart_header,
  1871. ContentReceiver multipart_receiver);
  1872. bool read_content_core(Stream &strm, Request &req, Response &res,
  1873. ContentReceiver receiver,
  1874. FormDataHeader multipart_header,
  1875. ContentReceiver multipart_receiver) const;
  1876. virtual bool process_and_close_socket(socket_t sock);
  1877. void output_log(const Request &req, const Response &res) const;
  1878. void output_pre_compression_log(const Request &req,
  1879. const Response &res) const;
  1880. void output_error_log(const Error &err, const Request *req) const;
  1881. std::atomic<bool> is_running_{false};
  1882. std::atomic<bool> is_decommissioned{false};
  1883. struct MountPointEntry {
  1884. std::string mount_point;
  1885. std::string base_dir;
  1886. std::string resolved_base_dir;
  1887. Headers headers;
  1888. };
  1889. std::vector<MountPointEntry> base_dirs_;
  1890. std::map<std::string, std::string> file_extension_and_mimetype_map_;
  1891. std::string default_file_mimetype_ = "application/octet-stream";
  1892. Handler file_request_handler_;
  1893. Handlers get_handlers_;
  1894. Handlers post_handlers_;
  1895. HandlersForContentReader post_handlers_for_content_reader_;
  1896. Handlers put_handlers_;
  1897. HandlersForContentReader put_handlers_for_content_reader_;
  1898. Handlers patch_handlers_;
  1899. HandlersForContentReader patch_handlers_for_content_reader_;
  1900. Handlers delete_handlers_;
  1901. HandlersForContentReader delete_handlers_for_content_reader_;
  1902. Handlers options_handlers_;
  1903. struct WebSocketHandlerEntry {
  1904. std::unique_ptr<detail::MatcherBase> matcher;
  1905. WebSocketHandler handler;
  1906. SubProtocolSelector sub_protocol_selector;
  1907. };
  1908. using WebSocketHandlers = std::vector<WebSocketHandlerEntry>;
  1909. WebSocketHandlers websocket_handlers_;
  1910. HandlerWithResponse error_handler_;
  1911. ExceptionHandler exception_handler_;
  1912. HandlerWithResponse pre_routing_handler_;
  1913. Handler post_routing_handler_;
  1914. HandlerWithResponse pre_request_handler_;
  1915. Expect100ContinueHandler expect_100_continue_handler_;
  1916. StartHandler start_handler_;
  1917. mutable std::mutex logger_mutex_;
  1918. Logger logger_;
  1919. Logger pre_compression_logger_;
  1920. ErrorLogger error_logger_;
  1921. int address_family_ = AF_UNSPEC;
  1922. bool tcp_nodelay_ = CPPHTTPLIB_TCP_NODELAY;
  1923. bool ipv6_v6only_ = CPPHTTPLIB_IPV6_V6ONLY;
  1924. SocketOptions socket_options_ = default_socket_options;
  1925. Headers default_headers_;
  1926. std::function<ssize_t(Stream &, Headers &)> header_writer_ =
  1927. detail::write_headers;
  1928. };
  1929. class Result {
  1930. public:
  1931. Result() = default;
  1932. Result(std::unique_ptr<Response> &&res, Error err,
  1933. Headers &&request_headers = Headers{})
  1934. : res_(std::move(res)), err_(err),
  1935. request_headers_(std::move(request_headers)) {}
  1936. // Response
  1937. operator bool() const { return res_ != nullptr; }
  1938. bool operator==(std::nullptr_t) const { return res_ == nullptr; }
  1939. bool operator!=(std::nullptr_t) const { return res_ != nullptr; }
  1940. const Response &value() const { return *res_; }
  1941. Response &value() { return *res_; }
  1942. const Response &operator*() const { return *res_; }
  1943. Response &operator*() { return *res_; }
  1944. const Response *operator->() const { return res_.get(); }
  1945. Response *operator->() { return res_.get(); }
  1946. // Error
  1947. Error error() const { return err_; }
  1948. // Request Headers
  1949. bool has_request_header(const std::string &key) const;
  1950. std::string get_request_header_value(const std::string &key,
  1951. const char *def = "",
  1952. size_t id = 0) const;
  1953. size_t get_request_header_value_u64(const std::string &key, size_t def = 0,
  1954. size_t id = 0) const;
  1955. size_t get_request_header_value_count(const std::string &key) const;
  1956. private:
  1957. std::unique_ptr<Response> res_;
  1958. Error err_ = Error::Unknown;
  1959. Headers request_headers_;
  1960. #ifdef CPPHTTPLIB_SSL_ENABLED
  1961. public:
  1962. Result(std::unique_ptr<Response> &&res, Error err, Headers &&request_headers,
  1963. int ssl_error)
  1964. : res_(std::move(res)), err_(err),
  1965. request_headers_(std::move(request_headers)), ssl_error_(ssl_error) {}
  1966. Result(std::unique_ptr<Response> &&res, Error err, Headers &&request_headers,
  1967. int ssl_error, uint64_t ssl_backend_error)
  1968. : res_(std::move(res)), err_(err),
  1969. request_headers_(std::move(request_headers)), ssl_error_(ssl_error),
  1970. ssl_backend_error_(ssl_backend_error) {}
  1971. int ssl_error() const { return ssl_error_; }
  1972. uint64_t ssl_backend_error() const { return ssl_backend_error_; }
  1973. private:
  1974. int ssl_error_ = 0;
  1975. uint64_t ssl_backend_error_ = 0;
  1976. #endif
  1977. };
  1978. struct ClientConnection {
  1979. socket_t sock = INVALID_SOCKET;
  1980. bool is_open() const { return sock != INVALID_SOCKET; }
  1981. ClientConnection() = default;
  1982. ~ClientConnection();
  1983. ClientConnection(const ClientConnection &) = delete;
  1984. ClientConnection &operator=(const ClientConnection &) = delete;
  1985. ClientConnection(ClientConnection &&other) noexcept
  1986. : sock(other.sock)
  1987. #ifdef CPPHTTPLIB_SSL_ENABLED
  1988. ,
  1989. session(other.session)
  1990. #endif
  1991. {
  1992. other.sock = INVALID_SOCKET;
  1993. #ifdef CPPHTTPLIB_SSL_ENABLED
  1994. other.session = nullptr;
  1995. #endif
  1996. }
  1997. ClientConnection &operator=(ClientConnection &&other) noexcept {
  1998. if (this != &other) {
  1999. sock = other.sock;
  2000. other.sock = INVALID_SOCKET;
  2001. #ifdef CPPHTTPLIB_SSL_ENABLED
  2002. session = other.session;
  2003. other.session = nullptr;
  2004. #endif
  2005. }
  2006. return *this;
  2007. }
  2008. #ifdef CPPHTTPLIB_SSL_ENABLED
  2009. tls::session_t session = nullptr;
  2010. #endif
  2011. };
  2012. namespace detail {
  2013. struct ChunkedDecoder;
  2014. struct BodyReader {
  2015. Stream *stream = nullptr;
  2016. bool has_content_length = false;
  2017. size_t content_length = 0;
  2018. size_t payload_max_length = CPPHTTPLIB_PAYLOAD_MAX_LENGTH;
  2019. size_t bytes_read = 0;
  2020. bool chunked = false;
  2021. bool eof = false;
  2022. std::unique_ptr<ChunkedDecoder> chunked_decoder;
  2023. Error last_error = Error::Success;
  2024. ssize_t read(char *buf, size_t len);
  2025. bool has_error() const { return last_error != Error::Success; }
  2026. };
  2027. inline ssize_t read_body_content(Stream *stream, BodyReader &br, char *buf,
  2028. size_t len) {
  2029. (void)stream;
  2030. return br.read(buf, len);
  2031. }
  2032. class decompressor;
  2033. enum class NoProxyKind {
  2034. Wildcard, // "*"
  2035. HostnameSuffix, // "example.com" or ".example.com"
  2036. IPv4Cidr, // "10.0.0.0/8" (or single IP, treated as /32)
  2037. IPv6Cidr, // "fe80::/10" (or single IP, treated as /128)
  2038. };
  2039. // Unified 16-byte buffer holding either a v4 (first 4 bytes) or v6 address.
  2040. // Lets one CIDR matcher cover both families.
  2041. using IPBytes = std::array<uint8_t, 16>;
  2042. struct NoProxyEntry {
  2043. NoProxyKind kind = NoProxyKind::Wildcard;
  2044. std::string hostname_pattern; // lowercased, leading/trailing dot stripped
  2045. IPBytes net{};
  2046. int prefix_bits = 0;
  2047. };
  2048. struct NormalizedTarget {
  2049. std::string hostname; // lowercase; brackets and trailing dot removed
  2050. bool is_ipv4 = false;
  2051. bool is_ipv6 = false;
  2052. IPBytes ip{};
  2053. };
  2054. } // namespace detail
  2055. class ClientImpl {
  2056. public:
  2057. explicit ClientImpl(const std::string &host);
  2058. explicit ClientImpl(const std::string &host, int port);
  2059. explicit ClientImpl(const std::string &host, int port,
  2060. const std::string &client_cert_path,
  2061. const std::string &client_key_path);
  2062. virtual ~ClientImpl();
  2063. virtual bool is_valid() const;
  2064. struct StreamHandle {
  2065. std::unique_ptr<Response> response;
  2066. Error error = Error::Success;
  2067. StreamHandle() = default;
  2068. StreamHandle(const StreamHandle &) = delete;
  2069. StreamHandle &operator=(const StreamHandle &) = delete;
  2070. StreamHandle(StreamHandle &&) = default;
  2071. StreamHandle &operator=(StreamHandle &&) = default;
  2072. ~StreamHandle() = default;
  2073. bool is_valid() const {
  2074. return response != nullptr && error == Error::Success;
  2075. }
  2076. ssize_t read(char *buf, size_t len);
  2077. void parse_trailers_if_needed();
  2078. Error get_read_error() const { return body_reader_.last_error; }
  2079. bool has_read_error() const { return body_reader_.has_error(); }
  2080. bool trailers_parsed_ = false;
  2081. private:
  2082. friend class ClientImpl;
  2083. ssize_t read_with_decompression(char *buf, size_t len);
  2084. std::unique_ptr<ClientConnection> connection_;
  2085. std::unique_ptr<Stream> socket_stream_;
  2086. Stream *stream_ = nullptr;
  2087. detail::BodyReader body_reader_;
  2088. std::unique_ptr<detail::decompressor> decompressor_;
  2089. std::string decompress_buffer_;
  2090. size_t decompress_offset_ = 0;
  2091. size_t decompressed_bytes_read_ = 0;
  2092. };
  2093. // clang-format off
  2094. Result Get(const std::string &path, DownloadProgress progress = nullptr);
  2095. Result Get(const std::string &path, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2096. Result Get(const std::string &path, ResponseHandler response_handler, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2097. Result Get(const std::string &path, const Headers &headers, DownloadProgress progress = nullptr);
  2098. Result Get(const std::string &path, const Headers &headers, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2099. Result Get(const std::string &path, const Headers &headers, ResponseHandler response_handler, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2100. Result Get(const std::string &path, const Params &params, DownloadProgress progress = nullptr);
  2101. Result Get(const std::string &path, const Params &params, const Headers &headers, DownloadProgress progress = nullptr);
  2102. Result Get(const std::string &path, const Params &params, const Headers &headers, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2103. Result Get(const std::string &path, const Params &params, const Headers &headers, ResponseHandler response_handler, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2104. Result Head(const std::string &path);
  2105. Result Head(const std::string &path, const Headers &headers);
  2106. Result Post(const std::string &path);
  2107. Result Post(const std::string &path, const char *body, size_t content_length, const std::string &content_type, UploadProgress progress = nullptr);
  2108. Result Post(const std::string &path, const std::string &body, const std::string &content_type, UploadProgress progress = nullptr);
  2109. Result Post(const std::string &path, size_t content_length, ContentProvider content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2110. Result Post(const std::string &path, size_t content_length, ContentProvider content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2111. Result Post(const std::string &path, ContentProviderWithoutLength content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2112. Result Post(const std::string &path, ContentProviderWithoutLength content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2113. Result Post(const std::string &path, const Params &params);
  2114. Result Post(const std::string &path, const UploadFormDataItems &items, UploadProgress progress = nullptr);
  2115. Result Post(const std::string &path, const Headers &headers);
  2116. Result Post(const std::string &path, const Headers &headers, const char *body, size_t content_length, const std::string &content_type, UploadProgress progress = nullptr);
  2117. Result Post(const std::string &path, const Headers &headers, const std::string &body, const std::string &content_type, UploadProgress progress = nullptr);
  2118. Result Post(const std::string &path, const Headers &headers, size_t content_length, ContentProvider content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2119. Result Post(const std::string &path, const Headers &headers, size_t content_length, ContentProvider content_provider, const std::string &content_type, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2120. Result Post(const std::string &path, const Headers &headers, ContentProviderWithoutLength content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2121. Result Post(const std::string &path, const Headers &headers, ContentProviderWithoutLength content_provider, const std::string &content_type, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2122. Result Post(const std::string &path, const Headers &headers, const Params &params);
  2123. Result Post(const std::string &path, const Headers &headers, const UploadFormDataItems &items, UploadProgress progress = nullptr);
  2124. Result Post(const std::string &path, const Headers &headers, const UploadFormDataItems &items, const std::string &boundary, UploadProgress progress = nullptr);
  2125. Result Post(const std::string &path, const Headers &headers, const UploadFormDataItems &items, const FormDataProviderItems &provider_items, UploadProgress progress = nullptr);
  2126. Result Post(const std::string &path, const Headers &headers, const std::string &body, const std::string &content_type, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2127. Result Put(const std::string &path);
  2128. Result Put(const std::string &path, const char *body, size_t content_length, const std::string &content_type, UploadProgress progress = nullptr);
  2129. Result Put(const std::string &path, const std::string &body, const std::string &content_type, UploadProgress progress = nullptr);
  2130. Result Put(const std::string &path, size_t content_length, ContentProvider content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2131. Result Put(const std::string &path, size_t content_length, ContentProvider content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2132. Result Put(const std::string &path, ContentProviderWithoutLength content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2133. Result Put(const std::string &path, ContentProviderWithoutLength content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2134. Result Put(const std::string &path, const Params &params);
  2135. Result Put(const std::string &path, const UploadFormDataItems &items, UploadProgress progress = nullptr);
  2136. Result Put(const std::string &path, const Headers &headers);
  2137. Result Put(const std::string &path, const Headers &headers, const char *body, size_t content_length, const std::string &content_type, UploadProgress progress = nullptr);
  2138. Result Put(const std::string &path, const Headers &headers, const std::string &body, const std::string &content_type, UploadProgress progress = nullptr);
  2139. Result Put(const std::string &path, const Headers &headers, size_t content_length, ContentProvider content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2140. Result Put(const std::string &path, const Headers &headers, size_t content_length, ContentProvider content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2141. Result Put(const std::string &path, const Headers &headers, ContentProviderWithoutLength content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2142. Result Put(const std::string &path, const Headers &headers, ContentProviderWithoutLength content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2143. Result Put(const std::string &path, const Headers &headers, const Params &params);
  2144. Result Put(const std::string &path, const Headers &headers, const UploadFormDataItems &items, UploadProgress progress = nullptr);
  2145. Result Put(const std::string &path, const Headers &headers, const UploadFormDataItems &items, const std::string &boundary, UploadProgress progress = nullptr);
  2146. Result Put(const std::string &path, const Headers &headers, const UploadFormDataItems &items, const FormDataProviderItems &provider_items, UploadProgress progress = nullptr);
  2147. Result Put(const std::string &path, const Headers &headers, const std::string &body, const std::string &content_type, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2148. Result Patch(const std::string &path);
  2149. Result Patch(const std::string &path, const char *body, size_t content_length, const std::string &content_type, UploadProgress progress = nullptr);
  2150. Result Patch(const std::string &path, const std::string &body, const std::string &content_type, UploadProgress progress = nullptr);
  2151. Result Patch(const std::string &path, size_t content_length, ContentProvider content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2152. Result Patch(const std::string &path, size_t content_length, ContentProvider content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2153. Result Patch(const std::string &path, ContentProviderWithoutLength content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2154. Result Patch(const std::string &path, ContentProviderWithoutLength content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2155. Result Patch(const std::string &path, const Params &params);
  2156. Result Patch(const std::string &path, const UploadFormDataItems &items, UploadProgress progress = nullptr);
  2157. Result Patch(const std::string &path, const Headers &headers, UploadProgress progress = nullptr);
  2158. Result Patch(const std::string &path, const Headers &headers, const char *body, size_t content_length, const std::string &content_type, UploadProgress progress = nullptr);
  2159. Result Patch(const std::string &path, const Headers &headers, const std::string &body, const std::string &content_type, UploadProgress progress = nullptr);
  2160. Result Patch(const std::string &path, const Headers &headers, size_t content_length, ContentProvider content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2161. Result Patch(const std::string &path, const Headers &headers, size_t content_length, ContentProvider content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2162. Result Patch(const std::string &path, const Headers &headers, ContentProviderWithoutLength content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2163. Result Patch(const std::string &path, const Headers &headers, ContentProviderWithoutLength content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2164. Result Patch(const std::string &path, const Headers &headers, const Params &params);
  2165. Result Patch(const std::string &path, const Headers &headers, const UploadFormDataItems &items, UploadProgress progress = nullptr);
  2166. Result Patch(const std::string &path, const Headers &headers, const UploadFormDataItems &items, const std::string &boundary, UploadProgress progress = nullptr);
  2167. Result Patch(const std::string &path, const Headers &headers, const UploadFormDataItems &items, const FormDataProviderItems &provider_items, UploadProgress progress = nullptr);
  2168. Result Patch(const std::string &path, const Headers &headers, const std::string &body, const std::string &content_type, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2169. Result Delete(const std::string &path, DownloadProgress progress = nullptr);
  2170. Result Delete(const std::string &path, const char *body, size_t content_length, const std::string &content_type, DownloadProgress progress = nullptr);
  2171. Result Delete(const std::string &path, const std::string &body, const std::string &content_type, DownloadProgress progress = nullptr);
  2172. Result Delete(const std::string &path, const Params &params, DownloadProgress progress = nullptr);
  2173. Result Delete(const std::string &path, const Headers &headers, DownloadProgress progress = nullptr);
  2174. Result Delete(const std::string &path, const Headers &headers, const char *body, size_t content_length, const std::string &content_type, DownloadProgress progress = nullptr);
  2175. Result Delete(const std::string &path, const Headers &headers, const std::string &body, const std::string &content_type, DownloadProgress progress = nullptr);
  2176. Result Delete(const std::string &path, const Headers &headers, const Params &params, DownloadProgress progress = nullptr);
  2177. Result Options(const std::string &path);
  2178. Result Options(const std::string &path, const Headers &headers);
  2179. // clang-format on
  2180. // Streaming API: Open a stream for reading response body incrementally
  2181. // Socket ownership is transferred to StreamHandle for true streaming
  2182. // Supports all HTTP methods (GET, POST, PUT, PATCH, DELETE, etc.)
  2183. StreamHandle open_stream(const std::string &method, const std::string &path,
  2184. const Params &params = {},
  2185. const Headers &headers = {},
  2186. const std::string &body = {},
  2187. const std::string &content_type = {});
  2188. bool send(Request &req, Response &res, Error &error);
  2189. Result send(const Request &req);
  2190. void stop();
  2191. std::string host() const;
  2192. int port() const;
  2193. size_t is_socket_open() const;
  2194. socket_t socket() const;
  2195. void set_hostname_addr_map(std::map<std::string, std::string> addr_map);
  2196. void set_default_headers(Headers headers);
  2197. void
  2198. set_header_writer(std::function<ssize_t(Stream &, Headers &)> const &writer);
  2199. void set_address_family(int family);
  2200. void set_tcp_nodelay(bool on);
  2201. void set_ipv6_v6only(bool on);
  2202. void set_socket_options(SocketOptions socket_options);
  2203. void set_connection_timeout(time_t sec, time_t usec = 0);
  2204. template <class Rep, class Period>
  2205. void
  2206. set_connection_timeout(const std::chrono::duration<Rep, Period> &duration);
  2207. void set_read_timeout(time_t sec, time_t usec = 0);
  2208. template <class Rep, class Period>
  2209. void set_read_timeout(const std::chrono::duration<Rep, Period> &duration);
  2210. void set_write_timeout(time_t sec, time_t usec = 0);
  2211. template <class Rep, class Period>
  2212. void set_write_timeout(const std::chrono::duration<Rep, Period> &duration);
  2213. void set_max_timeout(time_t msec);
  2214. template <class Rep, class Period>
  2215. void set_max_timeout(const std::chrono::duration<Rep, Period> &duration);
  2216. void set_basic_auth(const std::string &username, const std::string &password);
  2217. void set_bearer_token_auth(const std::string &token);
  2218. void set_keep_alive(bool on);
  2219. void set_follow_location(bool on);
  2220. void set_path_encode(bool on);
  2221. void set_compress(bool on);
  2222. void set_decompress(bool on);
  2223. void set_payload_max_length(size_t length);
  2224. void set_interface(const std::string &intf);
  2225. void set_proxy(const std::string &host, int port);
  2226. void set_proxy_basic_auth(const std::string &username,
  2227. const std::string &password);
  2228. void set_proxy_bearer_token_auth(const std::string &token);
  2229. void set_no_proxy(const std::vector<std::string> &patterns);
  2230. void set_logger(Logger logger);
  2231. void set_error_logger(ErrorLogger error_logger);
  2232. protected:
  2233. struct Socket {
  2234. socket_t sock = INVALID_SOCKET;
  2235. // For Mbed TLS compatibility: start_time for request timeout tracking
  2236. std::chrono::time_point<std::chrono::steady_clock> start_time_;
  2237. bool is_open() const { return sock != INVALID_SOCKET; }
  2238. #ifdef CPPHTTPLIB_SSL_ENABLED
  2239. tls::session_t ssl = nullptr;
  2240. #endif
  2241. };
  2242. virtual bool create_and_connect_socket(Socket &socket, Error &error);
  2243. virtual bool ensure_socket_connection(Socket &socket, Error &error);
  2244. virtual bool setup_proxy_connection(
  2245. Socket &socket,
  2246. std::chrono::time_point<std::chrono::steady_clock> start_time,
  2247. Response &res, bool &success, Error &error);
  2248. bool is_proxy_enabled_for_host(const std::string &host) const;
  2249. // All of:
  2250. // shutdown_ssl
  2251. // shutdown_socket
  2252. // close_socket
  2253. // disconnect
  2254. // should ONLY be called when socket_mutex_ is locked, and only when
  2255. // no other thread is using the socket.
  2256. virtual void shutdown_ssl(Socket &socket, bool shutdown_gracefully);
  2257. void shutdown_socket(Socket &socket) const;
  2258. void close_socket(Socket &socket);
  2259. void disconnect(bool gracefully);
  2260. bool process_request(Stream &strm, Request &req, Response &res,
  2261. bool close_connection, Error &error);
  2262. bool write_content_with_provider(Stream &strm, const Request &req,
  2263. Error &error) const;
  2264. void copy_settings(const ClientImpl &rhs);
  2265. void output_log(const Request &req, const Response &res) const;
  2266. void output_error_log(const Error &err, const Request *req) const;
  2267. // Socket endpoint information
  2268. const std::string host_;
  2269. const int port_;
  2270. // Current open socket
  2271. Socket socket_;
  2272. mutable std::mutex socket_mutex_;
  2273. std::recursive_mutex request_mutex_;
  2274. // These are all protected under socket_mutex
  2275. size_t socket_requests_in_flight_ = 0;
  2276. std::thread::id socket_requests_are_from_thread_ = std::thread::id();
  2277. bool socket_should_be_closed_when_request_is_done_ = false;
  2278. // Hostname to connection target map. The value is an IP literal or another
  2279. // hostname; only the connection target changes, never the identity.
  2280. std::map<std::string, std::string> addr_map_;
  2281. // Default headers
  2282. Headers default_headers_;
  2283. // Header writer
  2284. std::function<ssize_t(Stream &, Headers &)> header_writer_ =
  2285. detail::write_headers;
  2286. // Settings
  2287. std::string client_cert_path_;
  2288. std::string client_key_path_;
  2289. time_t connection_timeout_sec_ = CPPHTTPLIB_CONNECTION_TIMEOUT_SECOND;
  2290. time_t connection_timeout_usec_ = CPPHTTPLIB_CONNECTION_TIMEOUT_USECOND;
  2291. time_t read_timeout_sec_ = CPPHTTPLIB_CLIENT_READ_TIMEOUT_SECOND;
  2292. time_t read_timeout_usec_ = CPPHTTPLIB_CLIENT_READ_TIMEOUT_USECOND;
  2293. time_t write_timeout_sec_ = CPPHTTPLIB_CLIENT_WRITE_TIMEOUT_SECOND;
  2294. time_t write_timeout_usec_ = CPPHTTPLIB_CLIENT_WRITE_TIMEOUT_USECOND;
  2295. time_t max_timeout_msec_ = CPPHTTPLIB_CLIENT_MAX_TIMEOUT_MSECOND;
  2296. std::string basic_auth_username_;
  2297. std::string basic_auth_password_;
  2298. std::string bearer_token_auth_token_;
  2299. bool keep_alive_ = false;
  2300. bool follow_location_ = false;
  2301. bool path_encode_ = true;
  2302. int address_family_ = AF_UNSPEC;
  2303. bool tcp_nodelay_ = CPPHTTPLIB_TCP_NODELAY;
  2304. bool ipv6_v6only_ = CPPHTTPLIB_IPV6_V6ONLY;
  2305. SocketOptions socket_options_ = nullptr;
  2306. bool compress_ = false;
  2307. bool decompress_ = true;
  2308. size_t payload_max_length_ = CPPHTTPLIB_PAYLOAD_MAX_LENGTH;
  2309. bool has_payload_max_length_ = false;
  2310. std::string interface_;
  2311. std::string proxy_host_;
  2312. int proxy_port_ = -1;
  2313. std::string proxy_basic_auth_username_;
  2314. std::string proxy_basic_auth_password_;
  2315. std::string proxy_bearer_token_auth_token_;
  2316. std::vector<detail::NoProxyEntry> no_proxy_entries_;
  2317. mutable detail::NormalizedTarget host_normalized_;
  2318. mutable bool host_normalized_valid_ = false;
  2319. mutable std::mutex logger_mutex_;
  2320. Logger logger_;
  2321. ErrorLogger error_logger_;
  2322. private:
  2323. bool send_(Request &req, Response &res, Error &error);
  2324. Result send_(Request &&req);
  2325. socket_t create_client_socket(Error &error) const;
  2326. bool read_response_line(Stream &strm, const Request &req, Response &res,
  2327. bool skip_100_continue = true) const;
  2328. bool write_request(Stream &strm, Request &req, bool close_connection,
  2329. Error &error, bool skip_body = false);
  2330. bool write_request_body(Stream &strm, Request &req, Error &error);
  2331. void prepare_default_headers(Request &r, bool for_stream,
  2332. const std::string &ct);
  2333. bool redirect(Request &req, Response &res, Error &error);
  2334. bool create_redirect_client(const std::string &scheme,
  2335. const std::string &host, int port, Request &req,
  2336. Response &res, const std::string &path,
  2337. const std::string &location, Error &error);
  2338. template <typename ClientType> void setup_redirect_client(ClientType &client);
  2339. bool handle_request(Stream &strm, Request &req, Response &res,
  2340. bool close_connection, Error &error);
  2341. std::unique_ptr<Response> send_with_content_provider_and_receiver(
  2342. Request &req, const char *body, size_t content_length,
  2343. ContentProvider content_provider,
  2344. ContentProviderWithoutLength content_provider_without_length,
  2345. const std::string &content_type, ContentReceiver content_receiver,
  2346. Error &error);
  2347. Result send_with_content_provider_and_receiver(
  2348. const std::string &method, const std::string &path,
  2349. const Headers &headers, const char *body, size_t content_length,
  2350. ContentProvider content_provider,
  2351. ContentProviderWithoutLength content_provider_without_length,
  2352. const std::string &content_type, ContentReceiver content_receiver,
  2353. UploadProgress progress);
  2354. ContentProviderWithoutLength get_multipart_content_provider(
  2355. const std::string &boundary, const UploadFormDataItems &items,
  2356. const FormDataProviderItems &provider_items) const;
  2357. virtual bool
  2358. process_socket(const Socket &socket,
  2359. std::chrono::time_point<std::chrono::steady_clock> start_time,
  2360. std::function<bool(Stream &strm)> callback);
  2361. virtual bool is_ssl() const;
  2362. void transfer_socket_ownership_to_handle(StreamHandle &handle);
  2363. #ifdef CPPHTTPLIB_SSL_ENABLED
  2364. public:
  2365. void set_digest_auth(const std::string &username,
  2366. const std::string &password);
  2367. void set_proxy_digest_auth(const std::string &username,
  2368. const std::string &password);
  2369. void set_ca_cert_path(const std::string &ca_cert_file_path,
  2370. const std::string &ca_cert_dir_path = std::string());
  2371. void enable_server_certificate_verification(bool enabled);
  2372. void enable_server_hostname_verification(bool enabled);
  2373. void enable_system_ca(bool enabled);
  2374. protected:
  2375. std::string digest_auth_username_;
  2376. std::string digest_auth_password_;
  2377. std::string proxy_digest_auth_username_;
  2378. std::string proxy_digest_auth_password_;
  2379. std::string ca_cert_file_path_;
  2380. std::string ca_cert_dir_path_;
  2381. bool server_certificate_verification_ = true;
  2382. bool server_hostname_verification_ = true;
  2383. SystemCAMode system_ca_mode_ = SystemCAMode::Auto;
  2384. std::string ca_cert_pem_; // Store CA cert PEM for redirect transfer
  2385. int last_ssl_error_ = 0;
  2386. uint64_t last_backend_error_ = 0;
  2387. #endif
  2388. };
  2389. class Client {
  2390. public:
  2391. // Universal interface
  2392. explicit Client(const std::string &scheme_host_port);
  2393. explicit Client(const std::string &scheme_host_port,
  2394. const std::string &client_cert_path,
  2395. const std::string &client_key_path);
  2396. // HTTP only interface
  2397. explicit Client(const std::string &host, int port);
  2398. explicit Client(const std::string &host, int port,
  2399. const std::string &client_cert_path,
  2400. const std::string &client_key_path);
  2401. Client(Client &&) = default;
  2402. Client &operator=(Client &&) = default;
  2403. ~Client();
  2404. bool is_valid() const;
  2405. // clang-format off
  2406. Result Get(const std::string &path, DownloadProgress progress = nullptr);
  2407. Result Get(const std::string &path, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2408. Result Get(const std::string &path, ResponseHandler response_handler, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2409. Result Get(const std::string &path, const Headers &headers, DownloadProgress progress = nullptr);
  2410. Result Get(const std::string &path, const Headers &headers, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2411. Result Get(const std::string &path, const Headers &headers, ResponseHandler response_handler, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2412. Result Get(const std::string &path, const Params &params, DownloadProgress progress = nullptr);
  2413. Result Get(const std::string &path, const Params &params, const Headers &headers, DownloadProgress progress = nullptr);
  2414. Result Get(const std::string &path, const Params &params, const Headers &headers, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2415. Result Get(const std::string &path, const Params &params, const Headers &headers, ResponseHandler response_handler, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2416. Result Head(const std::string &path);
  2417. Result Head(const std::string &path, const Headers &headers);
  2418. Result Post(const std::string &path);
  2419. Result Post(const std::string &path, const char *body, size_t content_length, const std::string &content_type, UploadProgress progress = nullptr);
  2420. Result Post(const std::string &path, const std::string &body, const std::string &content_type, UploadProgress progress = nullptr);
  2421. Result Post(const std::string &path, size_t content_length, ContentProvider content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2422. Result Post(const std::string &path, size_t content_length, ContentProvider content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2423. Result Post(const std::string &path, ContentProviderWithoutLength content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2424. Result Post(const std::string &path, ContentProviderWithoutLength content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2425. Result Post(const std::string &path, const Params &params);
  2426. Result Post(const std::string &path, const UploadFormDataItems &items, UploadProgress progress = nullptr);
  2427. Result Post(const std::string &path, const Headers &headers);
  2428. Result Post(const std::string &path, const Headers &headers, const char *body, size_t content_length, const std::string &content_type, UploadProgress progress = nullptr);
  2429. Result Post(const std::string &path, const Headers &headers, const std::string &body, const std::string &content_type, UploadProgress progress = nullptr);
  2430. Result Post(const std::string &path, const Headers &headers, size_t content_length, ContentProvider content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2431. Result Post(const std::string &path, const Headers &headers, size_t content_length, ContentProvider content_provider, const std::string &content_type, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2432. Result Post(const std::string &path, const Headers &headers, ContentProviderWithoutLength content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2433. Result Post(const std::string &path, const Headers &headers, ContentProviderWithoutLength content_provider, const std::string &content_type, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2434. Result Post(const std::string &path, const Headers &headers, const Params &params);
  2435. Result Post(const std::string &path, const Headers &headers, const UploadFormDataItems &items, UploadProgress progress = nullptr);
  2436. Result Post(const std::string &path, const Headers &headers, const UploadFormDataItems &items, const std::string &boundary, UploadProgress progress = nullptr);
  2437. Result Post(const std::string &path, const Headers &headers, const UploadFormDataItems &items, const FormDataProviderItems &provider_items, UploadProgress progress = nullptr);
  2438. Result Post(const std::string &path, const Headers &headers, const std::string &body, const std::string &content_type, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2439. Result Put(const std::string &path);
  2440. Result Put(const std::string &path, const char *body, size_t content_length, const std::string &content_type, UploadProgress progress = nullptr);
  2441. Result Put(const std::string &path, const std::string &body, const std::string &content_type, UploadProgress progress = nullptr);
  2442. Result Put(const std::string &path, size_t content_length, ContentProvider content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2443. Result Put(const std::string &path, size_t content_length, ContentProvider content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2444. Result Put(const std::string &path, ContentProviderWithoutLength content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2445. Result Put(const std::string &path, ContentProviderWithoutLength content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2446. Result Put(const std::string &path, const Params &params);
  2447. Result Put(const std::string &path, const UploadFormDataItems &items, UploadProgress progress = nullptr);
  2448. Result Put(const std::string &path, const Headers &headers);
  2449. Result Put(const std::string &path, const Headers &headers, const char *body, size_t content_length, const std::string &content_type, UploadProgress progress = nullptr);
  2450. Result Put(const std::string &path, const Headers &headers, const std::string &body, const std::string &content_type, UploadProgress progress = nullptr);
  2451. Result Put(const std::string &path, const Headers &headers, size_t content_length, ContentProvider content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2452. Result Put(const std::string &path, const Headers &headers, size_t content_length, ContentProvider content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2453. Result Put(const std::string &path, const Headers &headers, ContentProviderWithoutLength content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2454. Result Put(const std::string &path, const Headers &headers, ContentProviderWithoutLength content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2455. Result Put(const std::string &path, const Headers &headers, const Params &params);
  2456. Result Put(const std::string &path, const Headers &headers, const UploadFormDataItems &items, UploadProgress progress = nullptr);
  2457. Result Put(const std::string &path, const Headers &headers, const UploadFormDataItems &items, const std::string &boundary, UploadProgress progress = nullptr);
  2458. Result Put(const std::string &path, const Headers &headers, const UploadFormDataItems &items, const FormDataProviderItems &provider_items, UploadProgress progress = nullptr);
  2459. Result Put(const std::string &path, const Headers &headers, const std::string &body, const std::string &content_type, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2460. Result Patch(const std::string &path);
  2461. Result Patch(const std::string &path, const char *body, size_t content_length, const std::string &content_type, UploadProgress progress = nullptr);
  2462. Result Patch(const std::string &path, const std::string &body, const std::string &content_type, UploadProgress progress = nullptr);
  2463. Result Patch(const std::string &path, size_t content_length, ContentProvider content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2464. Result Patch(const std::string &path, size_t content_length, ContentProvider content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2465. Result Patch(const std::string &path, ContentProviderWithoutLength content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2466. Result Patch(const std::string &path, ContentProviderWithoutLength content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2467. Result Patch(const std::string &path, const Params &params);
  2468. Result Patch(const std::string &path, const UploadFormDataItems &items, UploadProgress progress = nullptr);
  2469. Result Patch(const std::string &path, const Headers &headers);
  2470. Result Patch(const std::string &path, const Headers &headers, const char *body, size_t content_length, const std::string &content_type, UploadProgress progress = nullptr);
  2471. Result Patch(const std::string &path, const Headers &headers, const std::string &body, const std::string &content_type, UploadProgress progress = nullptr);
  2472. Result Patch(const std::string &path, const Headers &headers, size_t content_length, ContentProvider content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2473. Result Patch(const std::string &path, const Headers &headers, size_t content_length, ContentProvider content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2474. Result Patch(const std::string &path, const Headers &headers, ContentProviderWithoutLength content_provider, const std::string &content_type, UploadProgress progress = nullptr);
  2475. Result Patch(const std::string &path, const Headers &headers, ContentProviderWithoutLength content_provider, const std::string &content_type, ContentReceiver content_receiver, UploadProgress progress = nullptr);
  2476. Result Patch(const std::string &path, const Headers &headers, const Params &params);
  2477. Result Patch(const std::string &path, const Headers &headers, const UploadFormDataItems &items, UploadProgress progress = nullptr);
  2478. Result Patch(const std::string &path, const Headers &headers, const UploadFormDataItems &items, const std::string &boundary, UploadProgress progress = nullptr);
  2479. Result Patch(const std::string &path, const Headers &headers, const UploadFormDataItems &items, const FormDataProviderItems &provider_items, UploadProgress progress = nullptr);
  2480. Result Patch(const std::string &path, const Headers &headers, const std::string &body, const std::string &content_type, ContentReceiver content_receiver, DownloadProgress progress = nullptr);
  2481. Result Delete(const std::string &path, DownloadProgress progress = nullptr);
  2482. Result Delete(const std::string &path, const char *body, size_t content_length, const std::string &content_type, DownloadProgress progress = nullptr);
  2483. Result Delete(const std::string &path, const std::string &body, const std::string &content_type, DownloadProgress progress = nullptr);
  2484. Result Delete(const std::string &path, const Params &params, DownloadProgress progress = nullptr);
  2485. Result Delete(const std::string &path, const Headers &headers, DownloadProgress progress = nullptr);
  2486. Result Delete(const std::string &path, const Headers &headers, const char *body, size_t content_length, const std::string &content_type, DownloadProgress progress = nullptr);
  2487. Result Delete(const std::string &path, const Headers &headers, const std::string &body, const std::string &content_type, DownloadProgress progress = nullptr);
  2488. Result Delete(const std::string &path, const Headers &headers, const Params &params, DownloadProgress progress = nullptr);
  2489. Result Options(const std::string &path);
  2490. Result Options(const std::string &path, const Headers &headers);
  2491. // clang-format on
  2492. // Streaming API: Open a stream for reading response body incrementally
  2493. // Socket ownership is transferred to StreamHandle for true streaming
  2494. // Supports all HTTP methods (GET, POST, PUT, PATCH, DELETE, etc.)
  2495. ClientImpl::StreamHandle open_stream(const std::string &method,
  2496. const std::string &path,
  2497. const Params &params = {},
  2498. const Headers &headers = {},
  2499. const std::string &body = {},
  2500. const std::string &content_type = {});
  2501. bool send(Request &req, Response &res, Error &error);
  2502. Result send(const Request &req);
  2503. void stop();
  2504. std::string host() const;
  2505. int port() const;
  2506. size_t is_socket_open() const;
  2507. socket_t socket() const;
  2508. void set_hostname_addr_map(std::map<std::string, std::string> addr_map);
  2509. void set_default_headers(Headers headers);
  2510. void
  2511. set_header_writer(std::function<ssize_t(Stream &, Headers &)> const &writer);
  2512. void set_address_family(int family);
  2513. void set_tcp_nodelay(bool on);
  2514. void set_socket_options(SocketOptions socket_options);
  2515. void set_connection_timeout(time_t sec, time_t usec = 0);
  2516. template <class Rep, class Period>
  2517. void
  2518. set_connection_timeout(const std::chrono::duration<Rep, Period> &duration);
  2519. void set_read_timeout(time_t sec, time_t usec = 0);
  2520. template <class Rep, class Period>
  2521. void set_read_timeout(const std::chrono::duration<Rep, Period> &duration);
  2522. void set_write_timeout(time_t sec, time_t usec = 0);
  2523. template <class Rep, class Period>
  2524. void set_write_timeout(const std::chrono::duration<Rep, Period> &duration);
  2525. void set_max_timeout(time_t msec);
  2526. template <class Rep, class Period>
  2527. void set_max_timeout(const std::chrono::duration<Rep, Period> &duration);
  2528. void set_basic_auth(const std::string &username, const std::string &password);
  2529. void set_bearer_token_auth(const std::string &token);
  2530. void set_keep_alive(bool on);
  2531. void set_follow_location(bool on);
  2532. void set_path_encode(bool on);
  2533. void set_compress(bool on);
  2534. void set_decompress(bool on);
  2535. void set_payload_max_length(size_t length);
  2536. void set_interface(const std::string &intf);
  2537. void set_proxy(const std::string &host, int port);
  2538. void set_proxy_basic_auth(const std::string &username,
  2539. const std::string &password);
  2540. void set_proxy_bearer_token_auth(const std::string &token);
  2541. void set_no_proxy(const std::vector<std::string> &patterns);
  2542. void set_logger(Logger logger);
  2543. void set_error_logger(ErrorLogger error_logger);
  2544. private:
  2545. std::unique_ptr<ClientImpl> cli_;
  2546. #ifdef CPPHTTPLIB_SSL_ENABLED
  2547. public:
  2548. void set_digest_auth(const std::string &username,
  2549. const std::string &password);
  2550. void set_proxy_digest_auth(const std::string &username,
  2551. const std::string &password);
  2552. void enable_server_certificate_verification(bool enabled);
  2553. void enable_server_hostname_verification(bool enabled);
  2554. void enable_system_ca(bool enabled);
  2555. void set_ca_cert_path(const std::string &ca_cert_file_path,
  2556. const std::string &ca_cert_dir_path = std::string());
  2557. void set_ca_cert_store(tls::ca_store_t ca_cert_store);
  2558. void load_ca_cert_store(const char *ca_cert, std::size_t size);
  2559. void set_server_certificate_verifier(tls::VerifyCallback verifier);
  2560. void set_session_verifier(
  2561. std::function<SSLVerifierResponse(tls::session_t)> verifier);
  2562. tls::ctx_t tls_context() const;
  2563. #ifdef CPPHTTPLIB_WINDOWS_AUTOMATIC_ROOT_CERTIFICATES_UPDATE
  2564. void enable_windows_certificate_verification(bool enabled);
  2565. #endif
  2566. private:
  2567. bool is_ssl_ = false;
  2568. #endif
  2569. };
  2570. #ifdef CPPHTTPLIB_SSL_ENABLED
  2571. class SSLServer : public Server {
  2572. public:
  2573. SSLServer(const char *cert_path, const char *private_key_path,
  2574. const char *client_ca_cert_file_path = nullptr,
  2575. const char *client_ca_cert_dir_path = nullptr,
  2576. const char *private_key_password = nullptr);
  2577. struct PemMemory {
  2578. const char *cert_pem;
  2579. size_t cert_pem_len;
  2580. const char *key_pem;
  2581. size_t key_pem_len;
  2582. const char *client_ca_pem;
  2583. size_t client_ca_pem_len;
  2584. const char *private_key_password;
  2585. };
  2586. explicit SSLServer(const PemMemory &pem);
  2587. // The callback receives the ctx_t handle which can be cast to the
  2588. // appropriate backend type (SSL_CTX* for OpenSSL,
  2589. // tls::impl::MbedTlsContext* for Mbed TLS)
  2590. explicit SSLServer(const tls::ContextSetupCallback &setup_callback);
  2591. ~SSLServer() override;
  2592. bool is_valid() const override;
  2593. bool update_certs_pem(const char *cert_pem, const char *key_pem,
  2594. const char *client_ca_pem = nullptr,
  2595. const char *password = nullptr);
  2596. tls::ctx_t tls_context() const { return ctx_; }
  2597. int ssl_last_error() const { return last_ssl_error_; }
  2598. private:
  2599. bool process_and_close_socket(socket_t sock) override;
  2600. tls::ctx_t ctx_ = nullptr;
  2601. std::mutex ctx_mutex_;
  2602. int last_ssl_error_ = 0;
  2603. };
  2604. class SSLClient final : public ClientImpl {
  2605. public:
  2606. explicit SSLClient(const std::string &host);
  2607. explicit SSLClient(const std::string &host, int port);
  2608. explicit SSLClient(const std::string &host, int port,
  2609. const std::string &client_cert_path,
  2610. const std::string &client_key_path,
  2611. const std::string &private_key_password = std::string());
  2612. struct PemMemory {
  2613. const char *cert_pem;
  2614. size_t cert_pem_len;
  2615. const char *key_pem;
  2616. size_t key_pem_len;
  2617. const char *private_key_password;
  2618. };
  2619. explicit SSLClient(const std::string &host, int port, const PemMemory &pem);
  2620. ~SSLClient() override;
  2621. bool is_valid() const override;
  2622. void set_ca_cert_store(tls::ca_store_t ca_cert_store);
  2623. void load_ca_cert_store(const char *ca_cert, std::size_t size);
  2624. void set_server_certificate_verifier(tls::VerifyCallback verifier);
  2625. // Post-handshake session verifier (backend-independent)
  2626. void set_session_verifier(
  2627. std::function<SSLVerifierResponse(tls::session_t)> verifier);
  2628. tls::ctx_t tls_context() const { return ctx_; }
  2629. #ifdef CPPHTTPLIB_WINDOWS_AUTOMATIC_ROOT_CERTIFICATES_UPDATE
  2630. void enable_windows_certificate_verification(bool enabled);
  2631. #endif
  2632. private:
  2633. bool create_and_connect_socket(Socket &socket, Error &error) override;
  2634. bool ensure_socket_connection(Socket &socket, Error &error) override;
  2635. void shutdown_ssl(Socket &socket, bool shutdown_gracefully) override;
  2636. void shutdown_ssl_impl(Socket &socket, bool shutdown_gracefully);
  2637. bool
  2638. process_socket(const Socket &socket,
  2639. std::chrono::time_point<std::chrono::steady_clock> start_time,
  2640. std::function<bool(Stream &strm)> callback) override;
  2641. bool is_ssl() const override;
  2642. bool setup_proxy_connection(
  2643. Socket &socket,
  2644. std::chrono::time_point<std::chrono::steady_clock> start_time,
  2645. Response &res, bool &success, Error &error) override;
  2646. bool connect_with_proxy(
  2647. Socket &sock,
  2648. std::chrono::time_point<std::chrono::steady_clock> start_time,
  2649. Response &res, bool &success, Error &error);
  2650. bool initialize_ssl(Socket &socket, Error &error);
  2651. void init_ctx();
  2652. void reset_ctx_on_error();
  2653. bool load_certs();
  2654. tls::ctx_t ctx_ = nullptr;
  2655. std::mutex ctx_mutex_;
  2656. std::once_flag initialize_cert_;
  2657. // Tracks whether a custom CA store was applied via set_ca_cert_store(),
  2658. // since the store handle itself is owned by ctx_ and leaves no other trace.
  2659. // Used to keep custom CA configuration exclusive with system CA loading.
  2660. bool ca_cert_store_set_ = false;
  2661. std::function<SSLVerifierResponse(tls::session_t)> session_verifier_;
  2662. #ifdef CPPHTTPLIB_WINDOWS_AUTOMATIC_ROOT_CERTIFICATES_UPDATE
  2663. bool enable_windows_cert_verification_ = true;
  2664. #endif
  2665. friend class ClientImpl;
  2666. };
  2667. #endif // CPPHTTPLIB_SSL_ENABLED
  2668. namespace detail {
  2669. template <typename T, typename U>
  2670. inline void duration_to_sec_and_usec(const T &duration, U callback) {
  2671. auto sec = std::chrono::duration_cast<std::chrono::seconds>(duration).count();
  2672. auto usec = std::chrono::duration_cast<std::chrono::microseconds>(
  2673. duration - std::chrono::seconds(sec))
  2674. .count();
  2675. callback(static_cast<time_t>(sec), static_cast<time_t>(usec));
  2676. }
  2677. template <size_t N> inline constexpr size_t str_len(const char (&)[N]) {
  2678. return N - 1;
  2679. }
  2680. inline bool is_numeric(const std::string &str) {
  2681. return !str.empty() && std::all_of(str.cbegin(), str.cend(), is_ascii_digit);
  2682. }
  2683. inline size_t get_header_value_u64(const Headers &headers,
  2684. const std::string &key, size_t def,
  2685. size_t id, bool &is_invalid_value) {
  2686. is_invalid_value = false;
  2687. auto rng = headers.equal_range(key);
  2688. auto it = rng.first;
  2689. std::advance(it, static_cast<ssize_t>(id));
  2690. if (it != rng.second) {
  2691. if (is_numeric(it->second)) {
  2692. // Parse at size_t width so an out-of-range Content-Length is reported
  2693. // rather than silently saturated/truncated (a value above 2^32 would
  2694. // otherwise wrap to a small framing length on 32-bit builds). Flag it
  2695. // and return SIZE_MAX so the existing oversized-value guards reject it.
  2696. size_t val = 0;
  2697. const auto &s = it->second;
  2698. auto r = from_chars(s.data(), s.data() + s.size(), val);
  2699. if (r.ec == std::errc::result_out_of_range) {
  2700. is_invalid_value = true;
  2701. return (std::numeric_limits<size_t>::max)();
  2702. }
  2703. return val;
  2704. } else {
  2705. is_invalid_value = true;
  2706. }
  2707. }
  2708. return def;
  2709. }
  2710. inline size_t get_header_value_u64(const Headers &headers,
  2711. const std::string &key, size_t def,
  2712. size_t id) {
  2713. auto dummy = false;
  2714. return get_header_value_u64(headers, key, def, id, dummy);
  2715. }
  2716. } // namespace detail
  2717. template <class Rep, class Period>
  2718. inline Server &
  2719. Server::set_read_timeout(const std::chrono::duration<Rep, Period> &duration) {
  2720. detail::duration_to_sec_and_usec(
  2721. duration, [&](time_t sec, time_t usec) { set_read_timeout(sec, usec); });
  2722. return *this;
  2723. }
  2724. template <class Rep, class Period>
  2725. inline Server &
  2726. Server::set_write_timeout(const std::chrono::duration<Rep, Period> &duration) {
  2727. detail::duration_to_sec_and_usec(
  2728. duration, [&](time_t sec, time_t usec) { set_write_timeout(sec, usec); });
  2729. return *this;
  2730. }
  2731. template <class Rep, class Period>
  2732. inline Server &
  2733. Server::set_idle_interval(const std::chrono::duration<Rep, Period> &duration) {
  2734. detail::duration_to_sec_and_usec(
  2735. duration, [&](time_t sec, time_t usec) { set_idle_interval(sec, usec); });
  2736. return *this;
  2737. }
  2738. template <class Rep, class Period>
  2739. inline void ClientImpl::set_connection_timeout(
  2740. const std::chrono::duration<Rep, Period> &duration) {
  2741. detail::duration_to_sec_and_usec(duration, [&](time_t sec, time_t usec) {
  2742. set_connection_timeout(sec, usec);
  2743. });
  2744. }
  2745. template <class Rep, class Period>
  2746. inline void ClientImpl::set_read_timeout(
  2747. const std::chrono::duration<Rep, Period> &duration) {
  2748. detail::duration_to_sec_and_usec(
  2749. duration, [&](time_t sec, time_t usec) { set_read_timeout(sec, usec); });
  2750. }
  2751. template <class Rep, class Period>
  2752. inline void ClientImpl::set_write_timeout(
  2753. const std::chrono::duration<Rep, Period> &duration) {
  2754. detail::duration_to_sec_and_usec(
  2755. duration, [&](time_t sec, time_t usec) { set_write_timeout(sec, usec); });
  2756. }
  2757. template <class Rep, class Period>
  2758. inline void ClientImpl::set_max_timeout(
  2759. const std::chrono::duration<Rep, Period> &duration) {
  2760. auto msec =
  2761. std::chrono::duration_cast<std::chrono::milliseconds>(duration).count();
  2762. set_max_timeout(msec);
  2763. }
  2764. template <class Rep, class Period>
  2765. inline void Client::set_connection_timeout(
  2766. const std::chrono::duration<Rep, Period> &duration) {
  2767. cli_->set_connection_timeout(duration);
  2768. }
  2769. template <class Rep, class Period>
  2770. inline void
  2771. Client::set_read_timeout(const std::chrono::duration<Rep, Period> &duration) {
  2772. cli_->set_read_timeout(duration);
  2773. }
  2774. template <class Rep, class Period>
  2775. inline void
  2776. Client::set_write_timeout(const std::chrono::duration<Rep, Period> &duration) {
  2777. cli_->set_write_timeout(duration);
  2778. }
  2779. inline void Client::set_max_timeout(time_t msec) {
  2780. cli_->set_max_timeout(msec);
  2781. }
  2782. template <class Rep, class Period>
  2783. inline void
  2784. Client::set_max_timeout(const std::chrono::duration<Rep, Period> &duration) {
  2785. cli_->set_max_timeout(duration);
  2786. }
  2787. /*
  2788. * Forward declarations and types that will be part of the .h file if split into
  2789. * .h + .cc.
  2790. */
  2791. std::string hosted_at(const std::string &hostname);
  2792. void hosted_at(const std::string &hostname, std::vector<std::string> &addrs);
  2793. // JavaScript-style URL encoding/decoding functions
  2794. std::string encode_uri_component(const std::string &value);
  2795. std::string encode_uri(const std::string &value);
  2796. std::string decode_uri_component(const std::string &value);
  2797. std::string decode_uri(const std::string &value);
  2798. // RFC 3986 compliant URL component encoding/decoding functions
  2799. std::string encode_path_component(const std::string &component);
  2800. std::string decode_path_component(const std::string &component);
  2801. std::string encode_query_component(const std::string &component,
  2802. bool space_as_plus = true);
  2803. std::string decode_query_component(const std::string &component,
  2804. bool plus_as_space = true);
  2805. std::string sanitize_filename(const std::string &filename);
  2806. std::string append_query_params(const std::string &path, const Params &params);
  2807. std::pair<std::string, std::string> make_range_header(const Ranges &ranges);
  2808. std::pair<std::string, std::string>
  2809. make_basic_authentication_header(const std::string &username,
  2810. const std::string &password,
  2811. bool is_proxy = false);
  2812. namespace detail {
  2813. #if defined(_WIN32)
  2814. inline std::wstring u8string_to_wstring(const char *s) {
  2815. if (!s) { return std::wstring(); }
  2816. auto len = static_cast<int>(strlen(s));
  2817. if (!len) { return std::wstring(); }
  2818. auto wlen = ::MultiByteToWideChar(CP_UTF8, 0, s, len, nullptr, 0);
  2819. if (!wlen) { return std::wstring(); }
  2820. std::wstring ws;
  2821. ws.resize(wlen);
  2822. wlen = ::MultiByteToWideChar(
  2823. CP_UTF8, 0, s, len,
  2824. const_cast<LPWSTR>(reinterpret_cast<LPCWSTR>(ws.data())), wlen);
  2825. if (wlen != static_cast<int>(ws.size())) { ws.clear(); }
  2826. return ws;
  2827. }
  2828. #endif
  2829. struct FileStat {
  2830. FileStat(const std::string &path);
  2831. bool is_file() const;
  2832. bool is_dir() const;
  2833. time_t mtime() const;
  2834. size_t size() const;
  2835. private:
  2836. #if defined(_WIN32)
  2837. struct _stat st_;
  2838. #else
  2839. struct stat st_;
  2840. #endif
  2841. int ret_ = -1;
  2842. };
  2843. std::string make_host_and_port_string(const std::string &host, int port,
  2844. bool is_ssl);
  2845. template <typename T>
  2846. bool check_and_write_headers(Stream &strm, Headers &headers, T header_writer,
  2847. Error &error);
  2848. std::string trim_copy(const std::string &s);
  2849. void divide(
  2850. const char *data, std::size_t size, char d,
  2851. std::function<void(const char *, std::size_t, const char *, std::size_t)>
  2852. fn);
  2853. void divide(
  2854. const std::string &str, char d,
  2855. std::function<void(const char *, std::size_t, const char *, std::size_t)>
  2856. fn);
  2857. void split(const char *b, const char *e, char d,
  2858. std::function<void(const char *, const char *)> fn);
  2859. void split(const char *b, const char *e, char d, size_t m,
  2860. std::function<void(const char *, const char *)> fn);
  2861. bool process_client_socket(
  2862. socket_t sock, time_t read_timeout_sec, time_t read_timeout_usec,
  2863. time_t write_timeout_sec, time_t write_timeout_usec,
  2864. time_t max_timeout_msec,
  2865. std::chrono::time_point<std::chrono::steady_clock> start_time,
  2866. std::function<bool(Stream &)> callback);
  2867. socket_t create_client_socket(const std::string &host, const std::string &ip,
  2868. int port, int address_family, bool tcp_nodelay,
  2869. bool ipv6_v6only, SocketOptions socket_options,
  2870. time_t connection_timeout_sec,
  2871. time_t connection_timeout_usec,
  2872. time_t read_timeout_sec, time_t read_timeout_usec,
  2873. time_t write_timeout_sec,
  2874. time_t write_timeout_usec,
  2875. const std::string &intf, Error &error);
  2876. const char *get_header_value(const Headers &headers, const std::string &key,
  2877. const char *def, size_t id);
  2878. std::string params_to_query_str(const Params &params);
  2879. void parse_query_text(const char *data, std::size_t size, Params &params);
  2880. void parse_query_text(const std::string &s, Params &params);
  2881. bool parse_multipart_boundary(const std::string &content_type,
  2882. std::string &boundary);
  2883. bool parse_range_header(const std::string &s, Ranges &ranges);
  2884. bool parse_accept_header(const std::string &s,
  2885. std::vector<std::string> &content_types);
  2886. ssize_t send_socket(socket_t sock, const void *ptr, size_t size, int flags);
  2887. ssize_t read_socket(socket_t sock, void *ptr, size_t size, int flags);
  2888. enum class EncodingType { None = 0, Gzip, Brotli, Zstd };
  2889. EncodingType encoding_type(const Request &req, const Response &res);
  2890. class BufferStream final : public Stream {
  2891. public:
  2892. BufferStream() = default;
  2893. ~BufferStream() override = default;
  2894. bool is_readable() const override;
  2895. bool wait_readable() const override;
  2896. bool wait_writable() const override;
  2897. ssize_t read(char *ptr, size_t size) override;
  2898. ssize_t write(const char *ptr, size_t size) override;
  2899. void get_remote_ip_and_port(std::string &ip, int &port) const override;
  2900. void get_local_ip_and_port(std::string &ip, int &port) const override;
  2901. socket_t socket() const override;
  2902. time_t duration() const override;
  2903. const std::string &get_buffer() const;
  2904. private:
  2905. std::string buffer;
  2906. size_t position = 0;
  2907. };
  2908. class compressor {
  2909. public:
  2910. virtual ~compressor() = default;
  2911. typedef std::function<bool(const char *data, size_t data_len)> Callback;
  2912. virtual bool compress(const char *data, size_t data_length, bool last,
  2913. Callback callback) = 0;
  2914. };
  2915. class decompressor {
  2916. public:
  2917. virtual ~decompressor() = default;
  2918. virtual bool is_valid() const = 0;
  2919. typedef std::function<bool(const char *data, size_t data_len)> Callback;
  2920. virtual bool decompress(const char *data, size_t data_length,
  2921. Callback callback) = 0;
  2922. };
  2923. class nocompressor final : public compressor {
  2924. public:
  2925. ~nocompressor() override = default;
  2926. bool compress(const char *data, size_t data_length, bool /*last*/,
  2927. Callback callback) override;
  2928. };
  2929. #ifdef CPPHTTPLIB_ZLIB_SUPPORT
  2930. class gzip_compressor final : public compressor {
  2931. public:
  2932. gzip_compressor();
  2933. ~gzip_compressor() override;
  2934. bool compress(const char *data, size_t data_length, bool last,
  2935. Callback callback) override;
  2936. private:
  2937. bool is_valid_ = false;
  2938. z_stream strm_;
  2939. };
  2940. class gzip_decompressor final : public decompressor {
  2941. public:
  2942. gzip_decompressor();
  2943. ~gzip_decompressor() override;
  2944. bool is_valid() const override;
  2945. bool decompress(const char *data, size_t data_length,
  2946. Callback callback) override;
  2947. private:
  2948. bool is_valid_ = false;
  2949. z_stream strm_;
  2950. };
  2951. #endif
  2952. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  2953. class brotli_compressor final : public compressor {
  2954. public:
  2955. brotli_compressor();
  2956. ~brotli_compressor();
  2957. bool compress(const char *data, size_t data_length, bool last,
  2958. Callback callback) override;
  2959. private:
  2960. BrotliEncoderState *state_ = nullptr;
  2961. };
  2962. class brotli_decompressor final : public decompressor {
  2963. public:
  2964. brotli_decompressor();
  2965. ~brotli_decompressor();
  2966. bool is_valid() const override;
  2967. bool decompress(const char *data, size_t data_length,
  2968. Callback callback) override;
  2969. private:
  2970. BrotliDecoderResult decoder_r;
  2971. BrotliDecoderState *decoder_s = nullptr;
  2972. };
  2973. #endif
  2974. #ifdef CPPHTTPLIB_ZSTD_SUPPORT
  2975. class zstd_compressor : public compressor {
  2976. public:
  2977. zstd_compressor();
  2978. ~zstd_compressor();
  2979. bool compress(const char *data, size_t data_length, bool last,
  2980. Callback callback) override;
  2981. private:
  2982. ZSTD_CCtx *ctx_ = nullptr;
  2983. };
  2984. class zstd_decompressor : public decompressor {
  2985. public:
  2986. zstd_decompressor();
  2987. ~zstd_decompressor();
  2988. bool is_valid() const override;
  2989. bool decompress(const char *data, size_t data_length,
  2990. Callback callback) override;
  2991. private:
  2992. ZSTD_DCtx *ctx_ = nullptr;
  2993. };
  2994. #endif
  2995. // NOTE: until the read size reaches `fixed_buffer_size`, use `fixed_buffer`
  2996. // to store data. The call can set memory on stack for performance.
  2997. class stream_line_reader {
  2998. public:
  2999. stream_line_reader(Stream &strm, char *fixed_buffer,
  3000. size_t fixed_buffer_size);
  3001. const char *ptr() const;
  3002. size_t size() const;
  3003. bool end_with_crlf() const;
  3004. bool getline();
  3005. private:
  3006. void append(char c);
  3007. void append(const char *data, size_t size);
  3008. Stream &strm_;
  3009. char *fixed_buffer_;
  3010. const size_t fixed_buffer_size_;
  3011. size_t fixed_buffer_used_size_ = 0;
  3012. std::string growable_buffer_;
  3013. };
  3014. bool parse_trailers(stream_line_reader &line_reader, Headers &dest,
  3015. const Headers &src_headers);
  3016. struct ChunkedDecoder {
  3017. Stream &strm;
  3018. size_t chunk_remaining = 0;
  3019. bool finished = false;
  3020. char line_buf[64];
  3021. size_t last_chunk_total = 0;
  3022. size_t last_chunk_offset = 0;
  3023. explicit ChunkedDecoder(Stream &s);
  3024. ssize_t read_payload(char *buf, size_t len, size_t &out_chunk_offset,
  3025. size_t &out_chunk_total);
  3026. bool parse_trailers_into(Headers &dest, const Headers &src_headers);
  3027. };
  3028. class mmap {
  3029. public:
  3030. mmap(const char *path);
  3031. ~mmap();
  3032. bool open(const char *path);
  3033. void close();
  3034. bool is_open() const;
  3035. size_t size() const;
  3036. const char *data() const;
  3037. private:
  3038. #if defined(_WIN32)
  3039. HANDLE hFile_ = NULL;
  3040. HANDLE hMapping_ = NULL;
  3041. #else
  3042. int fd_ = -1;
  3043. #endif
  3044. size_t size_ = 0;
  3045. void *addr_ = nullptr;
  3046. bool is_open_empty_file = false;
  3047. };
  3048. // NOTE: https://www.rfc-editor.org/rfc/rfc9110#section-5
  3049. namespace fields {
  3050. bool is_token_char(char c);
  3051. bool is_token(const std::string &s);
  3052. bool is_field_name(const std::string &s);
  3053. bool is_vchar(char c);
  3054. bool is_obs_text(char c);
  3055. bool is_field_vchar(char c);
  3056. bool is_field_content(const std::string &s);
  3057. bool is_field_value(const std::string &s);
  3058. bool is_field_valid(const std::string &name, const std::string &value);
  3059. } // namespace fields
  3060. } // namespace detail
  3061. /*
  3062. * TLS Abstraction Layer Declarations
  3063. */
  3064. #ifdef CPPHTTPLIB_SSL_ENABLED
  3065. // TLS abstraction layer - backend-specific type declarations
  3066. #ifdef CPPHTTPLIB_MBEDTLS_SUPPORT
  3067. namespace tls {
  3068. namespace impl {
  3069. // Mbed TLS context wrapper (holds config, entropy, DRBG, CA chain, own
  3070. // cert/key). This struct is accessible via tls::impl for use in SSL context
  3071. // setup callbacks (cast ctx_t to tls::impl::MbedTlsContext*).
  3072. struct MbedTlsContext {
  3073. mbedtls_ssl_config conf;
  3074. #ifndef CPPHTTPLIB_MBEDTLS_V4
  3075. // Mbed TLS 4.x uses PSA Crypto's internal RNG; no explicit entropy/DRBG.
  3076. mbedtls_entropy_context entropy;
  3077. mbedtls_ctr_drbg_context ctr_drbg;
  3078. #endif
  3079. mbedtls_x509_crt ca_chain;
  3080. mbedtls_x509_crt own_cert;
  3081. mbedtls_pk_context own_key;
  3082. bool is_server = false;
  3083. bool verify_client = false;
  3084. bool has_verify_callback = false;
  3085. MbedTlsContext();
  3086. ~MbedTlsContext();
  3087. MbedTlsContext(const MbedTlsContext &) = delete;
  3088. MbedTlsContext &operator=(const MbedTlsContext &) = delete;
  3089. };
  3090. } // namespace impl
  3091. } // namespace tls
  3092. #endif
  3093. #ifdef CPPHTTPLIB_WOLFSSL_SUPPORT
  3094. namespace tls {
  3095. namespace impl {
  3096. // wolfSSL context wrapper (holds WOLFSSL_CTX and related state).
  3097. // This struct is accessible via tls::impl for use in SSL context
  3098. // setup callbacks (cast ctx_t to tls::impl::WolfSSLContext*).
  3099. struct WolfSSLContext {
  3100. WOLFSSL_CTX *ctx = nullptr;
  3101. bool is_server = false;
  3102. bool verify_client = false;
  3103. bool has_verify_callback = false;
  3104. std::string ca_pem_data_; // accumulated PEM for get_ca_names/get_ca_certs
  3105. WolfSSLContext();
  3106. ~WolfSSLContext();
  3107. WolfSSLContext(const WolfSSLContext &) = delete;
  3108. WolfSSLContext &operator=(const WolfSSLContext &) = delete;
  3109. };
  3110. // CA store for wolfSSL: holds raw PEM bytes to allow reloading into any ctx
  3111. struct WolfSSLCAStore {
  3112. std::string pem_data;
  3113. };
  3114. } // namespace impl
  3115. } // namespace tls
  3116. #endif
  3117. #endif // CPPHTTPLIB_SSL_ENABLED
  3118. namespace stream {
  3119. class Result {
  3120. public:
  3121. Result();
  3122. explicit Result(ClientImpl::StreamHandle &&handle, size_t chunk_size = 8192);
  3123. Result(Result &&other) noexcept;
  3124. Result &operator=(Result &&other) noexcept;
  3125. Result(const Result &) = delete;
  3126. Result &operator=(const Result &) = delete;
  3127. // Response info
  3128. bool is_valid() const;
  3129. explicit operator bool() const;
  3130. int status() const;
  3131. const Headers &headers() const;
  3132. std::string get_header_value(const std::string &key,
  3133. const char *def = "") const;
  3134. bool has_header(const std::string &key) const;
  3135. Error error() const;
  3136. Error read_error() const;
  3137. bool has_read_error() const;
  3138. // Stream reading
  3139. bool next();
  3140. const char *data() const;
  3141. size_t size() const;
  3142. std::string read_all();
  3143. private:
  3144. ClientImpl::StreamHandle handle_;
  3145. std::string buffer_;
  3146. size_t current_size_ = 0;
  3147. size_t chunk_size_;
  3148. bool finished_ = false;
  3149. };
  3150. // GET
  3151. template <typename ClientType>
  3152. inline Result Get(ClientType &cli, const std::string &path,
  3153. size_t chunk_size = 8192) {
  3154. return Result{cli.open_stream("GET", path), chunk_size};
  3155. }
  3156. template <typename ClientType>
  3157. inline Result Get(ClientType &cli, const std::string &path,
  3158. const Headers &headers, size_t chunk_size = 8192) {
  3159. return Result{cli.open_stream("GET", path, {}, headers), chunk_size};
  3160. }
  3161. template <typename ClientType>
  3162. inline Result Get(ClientType &cli, const std::string &path,
  3163. const Params &params, size_t chunk_size = 8192) {
  3164. return Result{cli.open_stream("GET", path, params), chunk_size};
  3165. }
  3166. template <typename ClientType>
  3167. inline Result Get(ClientType &cli, const std::string &path,
  3168. const Params &params, const Headers &headers,
  3169. size_t chunk_size = 8192) {
  3170. return Result{cli.open_stream("GET", path, params, headers), chunk_size};
  3171. }
  3172. // POST
  3173. template <typename ClientType>
  3174. inline Result Post(ClientType &cli, const std::string &path,
  3175. const std::string &body, const std::string &content_type,
  3176. size_t chunk_size = 8192) {
  3177. return Result{cli.open_stream("POST", path, {}, {}, body, content_type),
  3178. chunk_size};
  3179. }
  3180. template <typename ClientType>
  3181. inline Result Post(ClientType &cli, const std::string &path,
  3182. const Headers &headers, const std::string &body,
  3183. const std::string &content_type, size_t chunk_size = 8192) {
  3184. return Result{cli.open_stream("POST", path, {}, headers, body, content_type),
  3185. chunk_size};
  3186. }
  3187. template <typename ClientType>
  3188. inline Result Post(ClientType &cli, const std::string &path,
  3189. const Params &params, const std::string &body,
  3190. const std::string &content_type, size_t chunk_size = 8192) {
  3191. return Result{cli.open_stream("POST", path, params, {}, body, content_type),
  3192. chunk_size};
  3193. }
  3194. template <typename ClientType>
  3195. inline Result Post(ClientType &cli, const std::string &path,
  3196. const Params &params, const Headers &headers,
  3197. const std::string &body, const std::string &content_type,
  3198. size_t chunk_size = 8192) {
  3199. return Result{
  3200. cli.open_stream("POST", path, params, headers, body, content_type),
  3201. chunk_size};
  3202. }
  3203. // PUT
  3204. template <typename ClientType>
  3205. inline Result Put(ClientType &cli, const std::string &path,
  3206. const std::string &body, const std::string &content_type,
  3207. size_t chunk_size = 8192) {
  3208. return Result{cli.open_stream("PUT", path, {}, {}, body, content_type),
  3209. chunk_size};
  3210. }
  3211. template <typename ClientType>
  3212. inline Result Put(ClientType &cli, const std::string &path,
  3213. const Headers &headers, const std::string &body,
  3214. const std::string &content_type, size_t chunk_size = 8192) {
  3215. return Result{cli.open_stream("PUT", path, {}, headers, body, content_type),
  3216. chunk_size};
  3217. }
  3218. template <typename ClientType>
  3219. inline Result Put(ClientType &cli, const std::string &path,
  3220. const Params &params, const std::string &body,
  3221. const std::string &content_type, size_t chunk_size = 8192) {
  3222. return Result{cli.open_stream("PUT", path, params, {}, body, content_type),
  3223. chunk_size};
  3224. }
  3225. template <typename ClientType>
  3226. inline Result Put(ClientType &cli, const std::string &path,
  3227. const Params &params, const Headers &headers,
  3228. const std::string &body, const std::string &content_type,
  3229. size_t chunk_size = 8192) {
  3230. return Result{
  3231. cli.open_stream("PUT", path, params, headers, body, content_type),
  3232. chunk_size};
  3233. }
  3234. // PATCH
  3235. template <typename ClientType>
  3236. inline Result Patch(ClientType &cli, const std::string &path,
  3237. const std::string &body, const std::string &content_type,
  3238. size_t chunk_size = 8192) {
  3239. return Result{cli.open_stream("PATCH", path, {}, {}, body, content_type),
  3240. chunk_size};
  3241. }
  3242. template <typename ClientType>
  3243. inline Result Patch(ClientType &cli, const std::string &path,
  3244. const Headers &headers, const std::string &body,
  3245. const std::string &content_type, size_t chunk_size = 8192) {
  3246. return Result{cli.open_stream("PATCH", path, {}, headers, body, content_type),
  3247. chunk_size};
  3248. }
  3249. template <typename ClientType>
  3250. inline Result Patch(ClientType &cli, const std::string &path,
  3251. const Params &params, const std::string &body,
  3252. const std::string &content_type, size_t chunk_size = 8192) {
  3253. return Result{cli.open_stream("PATCH", path, params, {}, body, content_type),
  3254. chunk_size};
  3255. }
  3256. template <typename ClientType>
  3257. inline Result Patch(ClientType &cli, const std::string &path,
  3258. const Params &params, const Headers &headers,
  3259. const std::string &body, const std::string &content_type,
  3260. size_t chunk_size = 8192) {
  3261. return Result{
  3262. cli.open_stream("PATCH", path, params, headers, body, content_type),
  3263. chunk_size};
  3264. }
  3265. // DELETE
  3266. template <typename ClientType>
  3267. inline Result Delete(ClientType &cli, const std::string &path,
  3268. size_t chunk_size = 8192) {
  3269. return Result{cli.open_stream("DELETE", path), chunk_size};
  3270. }
  3271. template <typename ClientType>
  3272. inline Result Delete(ClientType &cli, const std::string &path,
  3273. const Headers &headers, size_t chunk_size = 8192) {
  3274. return Result{cli.open_stream("DELETE", path, {}, headers), chunk_size};
  3275. }
  3276. template <typename ClientType>
  3277. inline Result Delete(ClientType &cli, const std::string &path,
  3278. const std::string &body, const std::string &content_type,
  3279. size_t chunk_size = 8192) {
  3280. return Result{cli.open_stream("DELETE", path, {}, {}, body, content_type),
  3281. chunk_size};
  3282. }
  3283. template <typename ClientType>
  3284. inline Result Delete(ClientType &cli, const std::string &path,
  3285. const Headers &headers, const std::string &body,
  3286. const std::string &content_type,
  3287. size_t chunk_size = 8192) {
  3288. return Result{
  3289. cli.open_stream("DELETE", path, {}, headers, body, content_type),
  3290. chunk_size};
  3291. }
  3292. template <typename ClientType>
  3293. inline Result Delete(ClientType &cli, const std::string &path,
  3294. const Params &params, size_t chunk_size = 8192) {
  3295. return Result{cli.open_stream("DELETE", path, params), chunk_size};
  3296. }
  3297. template <typename ClientType>
  3298. inline Result Delete(ClientType &cli, const std::string &path,
  3299. const Params &params, const Headers &headers,
  3300. size_t chunk_size = 8192) {
  3301. return Result{cli.open_stream("DELETE", path, params, headers), chunk_size};
  3302. }
  3303. template <typename ClientType>
  3304. inline Result Delete(ClientType &cli, const std::string &path,
  3305. const Params &params, const std::string &body,
  3306. const std::string &content_type,
  3307. size_t chunk_size = 8192) {
  3308. return Result{cli.open_stream("DELETE", path, params, {}, body, content_type),
  3309. chunk_size};
  3310. }
  3311. template <typename ClientType>
  3312. inline Result Delete(ClientType &cli, const std::string &path,
  3313. const Params &params, const Headers &headers,
  3314. const std::string &body, const std::string &content_type,
  3315. size_t chunk_size = 8192) {
  3316. return Result{
  3317. cli.open_stream("DELETE", path, params, headers, body, content_type),
  3318. chunk_size};
  3319. }
  3320. // HEAD
  3321. template <typename ClientType>
  3322. inline Result Head(ClientType &cli, const std::string &path,
  3323. size_t chunk_size = 8192) {
  3324. return Result{cli.open_stream("HEAD", path), chunk_size};
  3325. }
  3326. template <typename ClientType>
  3327. inline Result Head(ClientType &cli, const std::string &path,
  3328. const Headers &headers, size_t chunk_size = 8192) {
  3329. return Result{cli.open_stream("HEAD", path, {}, headers), chunk_size};
  3330. }
  3331. template <typename ClientType>
  3332. inline Result Head(ClientType &cli, const std::string &path,
  3333. const Params &params, size_t chunk_size = 8192) {
  3334. return Result{cli.open_stream("HEAD", path, params), chunk_size};
  3335. }
  3336. template <typename ClientType>
  3337. inline Result Head(ClientType &cli, const std::string &path,
  3338. const Params &params, const Headers &headers,
  3339. size_t chunk_size = 8192) {
  3340. return Result{cli.open_stream("HEAD", path, params, headers), chunk_size};
  3341. }
  3342. // OPTIONS
  3343. template <typename ClientType>
  3344. inline Result Options(ClientType &cli, const std::string &path,
  3345. size_t chunk_size = 8192) {
  3346. return Result{cli.open_stream("OPTIONS", path), chunk_size};
  3347. }
  3348. template <typename ClientType>
  3349. inline Result Options(ClientType &cli, const std::string &path,
  3350. const Headers &headers, size_t chunk_size = 8192) {
  3351. return Result{cli.open_stream("OPTIONS", path, {}, headers), chunk_size};
  3352. }
  3353. template <typename ClientType>
  3354. inline Result Options(ClientType &cli, const std::string &path,
  3355. const Params &params, size_t chunk_size = 8192) {
  3356. return Result{cli.open_stream("OPTIONS", path, params), chunk_size};
  3357. }
  3358. template <typename ClientType>
  3359. inline Result Options(ClientType &cli, const std::string &path,
  3360. const Params &params, const Headers &headers,
  3361. size_t chunk_size = 8192) {
  3362. return Result{cli.open_stream("OPTIONS", path, params, headers), chunk_size};
  3363. }
  3364. } // namespace stream
  3365. namespace sse {
  3366. struct SSEMessage {
  3367. std::string event; // Event type (default: "message")
  3368. std::string data; // Event payload
  3369. std::string id; // Event ID for Last-Event-ID header
  3370. SSEMessage();
  3371. void clear();
  3372. };
  3373. class SSEClient {
  3374. public:
  3375. using MessageHandler = std::function<void(const SSEMessage &)>;
  3376. using ErrorHandler = std::function<void(Error)>;
  3377. using OpenHandler = std::function<void()>;
  3378. SSEClient(Client &client, const std::string &path);
  3379. SSEClient(Client &client, const std::string &path, const Headers &headers);
  3380. ~SSEClient();
  3381. SSEClient(const SSEClient &) = delete;
  3382. SSEClient &operator=(const SSEClient &) = delete;
  3383. // Event handlers
  3384. SSEClient &on_message(MessageHandler handler);
  3385. SSEClient &on_event(const std::string &type, MessageHandler handler);
  3386. SSEClient &on_open(OpenHandler handler);
  3387. SSEClient &on_error(ErrorHandler handler);
  3388. SSEClient &set_reconnect_interval(int ms);
  3389. SSEClient &set_max_reconnect_attempts(int n);
  3390. // Update headers (thread-safe)
  3391. SSEClient &set_headers(const Headers &headers);
  3392. // State accessors
  3393. bool is_connected() const;
  3394. const std::string &last_event_id() const;
  3395. // Blocking start - runs event loop with auto-reconnect
  3396. void start();
  3397. // Non-blocking start - runs in background thread
  3398. void start_async();
  3399. // Stop the client (thread-safe)
  3400. void stop();
  3401. private:
  3402. bool parse_sse_line(const std::string &line, SSEMessage &msg, int &retry_ms);
  3403. void run_event_loop();
  3404. void dispatch_event(const SSEMessage &msg);
  3405. bool should_reconnect(int count) const;
  3406. void wait_for_reconnect();
  3407. // Client and path
  3408. Client &client_;
  3409. std::string path_;
  3410. Headers headers_;
  3411. mutable std::mutex headers_mutex_;
  3412. // Callbacks
  3413. MessageHandler on_message_;
  3414. std::map<std::string, MessageHandler> event_handlers_;
  3415. OpenHandler on_open_;
  3416. ErrorHandler on_error_;
  3417. // Configuration
  3418. int reconnect_interval_ms_ = 3000;
  3419. int max_reconnect_attempts_ = 0; // 0 = unlimited
  3420. // State
  3421. std::atomic<bool> running_{false};
  3422. std::atomic<bool> connected_{false};
  3423. std::string last_event_id_;
  3424. // Async support
  3425. std::thread async_thread_;
  3426. };
  3427. } // namespace sse
  3428. namespace ws {
  3429. enum class Opcode : uint8_t {
  3430. Continuation = 0x0,
  3431. Text = 0x1,
  3432. Binary = 0x2,
  3433. Close = 0x8,
  3434. Ping = 0x9,
  3435. Pong = 0xA,
  3436. };
  3437. enum class CloseStatus : uint16_t {
  3438. Normal = 1000,
  3439. GoingAway = 1001,
  3440. ProtocolError = 1002,
  3441. UnsupportedData = 1003,
  3442. NoStatus = 1005,
  3443. Abnormal = 1006,
  3444. InvalidPayload = 1007,
  3445. PolicyViolation = 1008,
  3446. MessageTooBig = 1009,
  3447. MandatoryExtension = 1010,
  3448. InternalError = 1011,
  3449. };
  3450. enum ReadResult : int { Fail = 0, Text = 1, Binary = 2 };
  3451. // Result of WebSocketClient::connect(). Truthy only when the WebSocket
  3452. // upgrade handshake fully succeeded. On failure error() identifies the
  3453. // failing layer; status()/headers() expose the server's upgrade response
  3454. // when one was received (status() is -1 otherwise).
  3455. class Result {
  3456. public:
  3457. Result() = default;
  3458. Result(Error err, int status, Headers &&headers)
  3459. : err_(err), status_(status), headers_(std::move(headers)) {}
  3460. explicit operator bool() const { return err_ == Error::Success; }
  3461. Error error() const { return err_; }
  3462. // Upgrade response info
  3463. int status() const { return status_; }
  3464. const Headers &headers() const { return headers_; }
  3465. std::string get_header_value(const std::string &key,
  3466. const char *def = "") const {
  3467. return detail::get_header_value(headers_, key, def, 0);
  3468. }
  3469. bool has_header(const std::string &key) const {
  3470. return headers_.find(key) != headers_.end();
  3471. }
  3472. #ifdef CPPHTTPLIB_SSL_ENABLED
  3473. Result(Error err, int status, Headers &&headers, int ssl_error,
  3474. uint64_t ssl_backend_error)
  3475. : err_(err), status_(status), headers_(std::move(headers)),
  3476. ssl_error_(ssl_error), ssl_backend_error_(ssl_backend_error) {}
  3477. int ssl_error() const { return ssl_error_; }
  3478. uint64_t ssl_backend_error() const { return ssl_backend_error_; }
  3479. #endif
  3480. private:
  3481. Error err_ = Error::Unknown; // a default-constructed Result is falsy
  3482. int status_ = -1;
  3483. Headers headers_;
  3484. #ifdef CPPHTTPLIB_SSL_ENABLED
  3485. int ssl_error_ = 0;
  3486. uint64_t ssl_backend_error_ = 0;
  3487. #endif
  3488. };
  3489. class WebSocket {
  3490. public:
  3491. WebSocket(const WebSocket &) = delete;
  3492. WebSocket &operator=(const WebSocket &) = delete;
  3493. ~WebSocket();
  3494. ReadResult read(std::string &msg);
  3495. bool send(const std::string &data);
  3496. bool send(const char *data, size_t len);
  3497. void close(CloseStatus status = CloseStatus::Normal,
  3498. const std::string &reason = "");
  3499. const Request &request() const;
  3500. bool is_open() const;
  3501. private:
  3502. friend class httplib::Server;
  3503. friend class WebSocketClient;
  3504. WebSocket(
  3505. Stream &strm, const Request &req, bool is_server,
  3506. time_t ping_interval_sec = CPPHTTPLIB_WEBSOCKET_PING_INTERVAL_SECOND,
  3507. int max_missed_pongs = CPPHTTPLIB_WEBSOCKET_MAX_MISSED_PONGS)
  3508. : strm_(strm), req_(req), is_server_(is_server),
  3509. ping_interval_sec_(ping_interval_sec),
  3510. max_missed_pongs_(max_missed_pongs) {
  3511. start_heartbeat();
  3512. }
  3513. WebSocket(
  3514. std::unique_ptr<Stream> &&owned_strm, const Request &req, bool is_server,
  3515. time_t ping_interval_sec = CPPHTTPLIB_WEBSOCKET_PING_INTERVAL_SECOND,
  3516. int max_missed_pongs = CPPHTTPLIB_WEBSOCKET_MAX_MISSED_PONGS)
  3517. : strm_(*owned_strm), owned_strm_(std::move(owned_strm)), req_(req),
  3518. is_server_(is_server), ping_interval_sec_(ping_interval_sec),
  3519. max_missed_pongs_(max_missed_pongs) {
  3520. start_heartbeat();
  3521. }
  3522. void start_heartbeat();
  3523. bool send_frame(Opcode op, const char *data, size_t len, bool fin = true);
  3524. Stream &strm_;
  3525. std::unique_ptr<Stream> owned_strm_;
  3526. Request req_;
  3527. bool is_server_;
  3528. time_t ping_interval_sec_;
  3529. int max_missed_pongs_;
  3530. int unacked_pings_ = 0;
  3531. std::atomic<bool> closed_{false};
  3532. std::mutex write_mutex_;
  3533. std::thread ping_thread_;
  3534. std::mutex ping_mutex_;
  3535. std::condition_variable ping_cv_;
  3536. };
  3537. class WebSocketClient {
  3538. public:
  3539. explicit WebSocketClient(const std::string &scheme_host_port_path,
  3540. const Headers &headers = {});
  3541. ~WebSocketClient();
  3542. WebSocketClient(const WebSocketClient &) = delete;
  3543. WebSocketClient &operator=(const WebSocketClient &) = delete;
  3544. bool is_valid() const;
  3545. Result connect();
  3546. ReadResult read(std::string &msg);
  3547. bool send(const std::string &data);
  3548. bool send(const char *data, size_t len);
  3549. void close(CloseStatus status = CloseStatus::Normal,
  3550. const std::string &reason = "");
  3551. bool is_open() const;
  3552. const std::string &subprotocol() const;
  3553. void set_read_timeout(time_t sec, time_t usec = 0);
  3554. template <class Rep, class Period>
  3555. void set_read_timeout(const std::chrono::duration<Rep, Period> &duration);
  3556. void set_write_timeout(time_t sec, time_t usec = 0);
  3557. template <class Rep, class Period>
  3558. void set_write_timeout(const std::chrono::duration<Rep, Period> &duration);
  3559. void set_websocket_ping_interval(time_t sec);
  3560. void set_websocket_max_missed_pongs(int count);
  3561. void set_tcp_nodelay(bool on);
  3562. void set_address_family(int family);
  3563. void set_ipv6_v6only(bool on);
  3564. void set_socket_options(SocketOptions socket_options);
  3565. void set_connection_timeout(time_t sec, time_t usec = 0);
  3566. template <class Rep, class Period>
  3567. void
  3568. set_connection_timeout(const std::chrono::duration<Rep, Period> &duration);
  3569. void set_interface(const std::string &intf);
  3570. void set_hostname_addr_map(std::map<std::string, std::string> addr_map);
  3571. #ifdef CPPHTTPLIB_SSL_ENABLED
  3572. struct PemMemory {
  3573. const char *cert_pem;
  3574. size_t cert_pem_len;
  3575. const char *key_pem;
  3576. size_t key_pem_len;
  3577. const char *private_key_password;
  3578. };
  3579. explicit WebSocketClient(const std::string &scheme_host_port_path,
  3580. const PemMemory &pem, const Headers &headers = {});
  3581. void set_ca_cert_path(const std::string &ca_cert_file_path,
  3582. const std::string &ca_cert_dir_path = std::string());
  3583. void set_ca_cert_store(tls::ca_store_t store);
  3584. void load_ca_cert_store(const char *ca_cert, std::size_t size);
  3585. void enable_server_certificate_verification(bool enabled);
  3586. void enable_system_ca(bool enabled);
  3587. #endif
  3588. private:
  3589. void shutdown_and_close();
  3590. bool create_stream(std::unique_ptr<Stream> &strm, Error &error,
  3591. int &ssl_error, uint64_t &ssl_backend_error);
  3592. void prepare_default_headers(Request &req);
  3593. std::string host_;
  3594. int port_;
  3595. std::string path_;
  3596. Headers headers_;
  3597. std::string subprotocol_;
  3598. bool is_valid_ = false;
  3599. socket_t sock_ = INVALID_SOCKET;
  3600. std::unique_ptr<WebSocket> ws_;
  3601. time_t read_timeout_sec_ = CPPHTTPLIB_WEBSOCKET_READ_TIMEOUT_SECOND;
  3602. time_t read_timeout_usec_ = 0;
  3603. time_t write_timeout_sec_ = CPPHTTPLIB_CLIENT_WRITE_TIMEOUT_SECOND;
  3604. time_t write_timeout_usec_ = CPPHTTPLIB_CLIENT_WRITE_TIMEOUT_USECOND;
  3605. time_t websocket_ping_interval_sec_ =
  3606. CPPHTTPLIB_WEBSOCKET_PING_INTERVAL_SECOND;
  3607. int websocket_max_missed_pongs_ = CPPHTTPLIB_WEBSOCKET_MAX_MISSED_PONGS;
  3608. int address_family_ = AF_UNSPEC;
  3609. bool tcp_nodelay_ = CPPHTTPLIB_TCP_NODELAY;
  3610. bool ipv6_v6only_ = CPPHTTPLIB_IPV6_V6ONLY;
  3611. SocketOptions socket_options_ = nullptr;
  3612. time_t connection_timeout_sec_ = CPPHTTPLIB_CONNECTION_TIMEOUT_SECOND;
  3613. time_t connection_timeout_usec_ = CPPHTTPLIB_CONNECTION_TIMEOUT_USECOND;
  3614. std::string interface_;
  3615. // Hostname to connection target map. The value is an IP literal or another
  3616. // hostname; only the connection target changes, never the identity.
  3617. std::map<std::string, std::string> addr_map_;
  3618. #ifdef CPPHTTPLIB_SSL_ENABLED
  3619. bool is_ssl_ = false;
  3620. tls::ctx_t tls_ctx_ = nullptr;
  3621. tls::session_t tls_session_ = nullptr;
  3622. std::string ca_cert_file_path_;
  3623. std::string ca_cert_dir_path_;
  3624. bool custom_ca_loaded_ = false;
  3625. bool certs_loaded_ = false;
  3626. SystemCAMode system_ca_mode_ = SystemCAMode::Auto;
  3627. bool server_certificate_verification_ = true;
  3628. #endif
  3629. };
  3630. template <class Rep, class Period>
  3631. inline void WebSocketClient::set_read_timeout(
  3632. const std::chrono::duration<Rep, Period> &duration) {
  3633. detail::duration_to_sec_and_usec(
  3634. duration, [&](time_t sec, time_t usec) { set_read_timeout(sec, usec); });
  3635. }
  3636. template <class Rep, class Period>
  3637. inline void WebSocketClient::set_write_timeout(
  3638. const std::chrono::duration<Rep, Period> &duration) {
  3639. detail::duration_to_sec_and_usec(
  3640. duration, [&](time_t sec, time_t usec) { set_write_timeout(sec, usec); });
  3641. }
  3642. template <class Rep, class Period>
  3643. inline void WebSocketClient::set_connection_timeout(
  3644. const std::chrono::duration<Rep, Period> &duration) {
  3645. detail::duration_to_sec_and_usec(duration, [&](time_t sec, time_t usec) {
  3646. set_connection_timeout(sec, usec);
  3647. });
  3648. }
  3649. namespace impl {
  3650. bool is_valid_utf8(const std::string &s);
  3651. bool read_websocket_frame(Stream &strm, Opcode &opcode, std::string &payload,
  3652. bool &fin, bool expect_masked, size_t max_len);
  3653. } // namespace impl
  3654. } // namespace ws
  3655. // ----------------------------------------------------------------------------
  3656. /*
  3657. * Implementation that will be part of the .cc file if split into .h + .cc.
  3658. */
  3659. namespace stream {
  3660. // stream::Result implementations
  3661. inline Result::Result() : chunk_size_(8192) {}
  3662. inline Result::Result(ClientImpl::StreamHandle &&handle, size_t chunk_size)
  3663. : handle_(std::move(handle)), chunk_size_(chunk_size) {}
  3664. inline Result::Result(Result &&other) noexcept
  3665. : handle_(std::move(other.handle_)), buffer_(std::move(other.buffer_)),
  3666. current_size_(other.current_size_), chunk_size_(other.chunk_size_),
  3667. finished_(other.finished_) {
  3668. other.current_size_ = 0;
  3669. other.finished_ = true;
  3670. }
  3671. inline Result &Result::operator=(Result &&other) noexcept {
  3672. if (this != &other) {
  3673. handle_ = std::move(other.handle_);
  3674. buffer_ = std::move(other.buffer_);
  3675. current_size_ = other.current_size_;
  3676. chunk_size_ = other.chunk_size_;
  3677. finished_ = other.finished_;
  3678. other.current_size_ = 0;
  3679. other.finished_ = true;
  3680. }
  3681. return *this;
  3682. }
  3683. inline bool Result::is_valid() const { return handle_.is_valid(); }
  3684. inline Result::operator bool() const { return is_valid(); }
  3685. inline int Result::status() const {
  3686. return handle_.response ? handle_.response->status : -1;
  3687. }
  3688. inline const Headers &Result::headers() const {
  3689. static const Headers empty_headers;
  3690. return handle_.response ? handle_.response->headers : empty_headers;
  3691. }
  3692. inline std::string Result::get_header_value(const std::string &key,
  3693. const char *def) const {
  3694. return handle_.response ? handle_.response->get_header_value(key, def) : def;
  3695. }
  3696. inline bool Result::has_header(const std::string &key) const {
  3697. return handle_.response ? handle_.response->has_header(key) : false;
  3698. }
  3699. inline Error Result::error() const { return handle_.error; }
  3700. inline Error Result::read_error() const { return handle_.get_read_error(); }
  3701. inline bool Result::has_read_error() const { return handle_.has_read_error(); }
  3702. inline bool Result::next() {
  3703. if (!handle_.is_valid() || finished_) { return false; }
  3704. if (buffer_.size() < chunk_size_) { buffer_.resize(chunk_size_); }
  3705. ssize_t n = handle_.read(&buffer_[0], chunk_size_);
  3706. if (n > 0) {
  3707. current_size_ = static_cast<size_t>(n);
  3708. return true;
  3709. }
  3710. current_size_ = 0;
  3711. finished_ = true;
  3712. return false;
  3713. }
  3714. inline const char *Result::data() const { return buffer_.data(); }
  3715. inline size_t Result::size() const { return current_size_; }
  3716. inline std::string Result::read_all() {
  3717. std::string result;
  3718. while (next()) {
  3719. result.append(data(), size());
  3720. }
  3721. return result;
  3722. }
  3723. } // namespace stream
  3724. namespace sse {
  3725. // SSEMessage implementations
  3726. inline SSEMessage::SSEMessage() : event("message") {}
  3727. inline void SSEMessage::clear() {
  3728. event = "message";
  3729. data.clear();
  3730. id.clear();
  3731. }
  3732. // SSEClient implementations
  3733. inline SSEClient::SSEClient(Client &client, const std::string &path)
  3734. : client_(client), path_(path) {}
  3735. inline SSEClient::SSEClient(Client &client, const std::string &path,
  3736. const Headers &headers)
  3737. : client_(client), path_(path), headers_(headers) {}
  3738. inline SSEClient::~SSEClient() { stop(); }
  3739. inline SSEClient &SSEClient::on_message(MessageHandler handler) {
  3740. on_message_ = std::move(handler);
  3741. return *this;
  3742. }
  3743. inline SSEClient &SSEClient::on_event(const std::string &type,
  3744. MessageHandler handler) {
  3745. event_handlers_[type] = std::move(handler);
  3746. return *this;
  3747. }
  3748. inline SSEClient &SSEClient::on_open(OpenHandler handler) {
  3749. on_open_ = std::move(handler);
  3750. return *this;
  3751. }
  3752. inline SSEClient &SSEClient::on_error(ErrorHandler handler) {
  3753. on_error_ = std::move(handler);
  3754. return *this;
  3755. }
  3756. inline SSEClient &SSEClient::set_reconnect_interval(int ms) {
  3757. reconnect_interval_ms_ = ms;
  3758. return *this;
  3759. }
  3760. inline SSEClient &SSEClient::set_max_reconnect_attempts(int n) {
  3761. max_reconnect_attempts_ = n;
  3762. return *this;
  3763. }
  3764. inline SSEClient &SSEClient::set_headers(const Headers &headers) {
  3765. std::lock_guard<std::mutex> lock(headers_mutex_);
  3766. headers_ = headers;
  3767. return *this;
  3768. }
  3769. inline bool SSEClient::is_connected() const { return connected_.load(); }
  3770. inline const std::string &SSEClient::last_event_id() const {
  3771. return last_event_id_;
  3772. }
  3773. inline void SSEClient::start() {
  3774. running_.store(true);
  3775. run_event_loop();
  3776. }
  3777. inline void SSEClient::start_async() {
  3778. running_.store(true);
  3779. async_thread_ = std::thread([this]() { run_event_loop(); });
  3780. }
  3781. inline void SSEClient::stop() {
  3782. running_.store(false);
  3783. client_.stop(); // Cancel any pending operations
  3784. if (async_thread_.joinable()) { async_thread_.join(); }
  3785. }
  3786. inline bool SSEClient::parse_sse_line(const std::string &line, SSEMessage &msg,
  3787. int &retry_ms) {
  3788. // Blank line signals end of event
  3789. if (line.empty() || line == "\r") { return true; }
  3790. // Lines starting with ':' are comments (ignored)
  3791. if (!line.empty() && line[0] == ':') { return false; }
  3792. // Find the colon separator
  3793. auto colon_pos = line.find(':');
  3794. if (colon_pos == std::string::npos) {
  3795. // Line with no colon is treated as field name with empty value
  3796. return false;
  3797. }
  3798. auto field = line.substr(0, colon_pos);
  3799. std::string value;
  3800. // Value starts after colon, skip optional single space
  3801. if (colon_pos + 1 < line.size()) {
  3802. auto value_start = colon_pos + 1;
  3803. if (line[value_start] == ' ') { value_start++; }
  3804. value = line.substr(value_start);
  3805. // Remove trailing \r if present
  3806. if (!value.empty() && value.back() == '\r') { value.pop_back(); }
  3807. }
  3808. // Handle known fields
  3809. if (field == "event") {
  3810. msg.event = value;
  3811. } else if (field == "data") {
  3812. // Multiple data lines are concatenated with newlines
  3813. if (!msg.data.empty()) { msg.data += "\n"; }
  3814. msg.data += value;
  3815. } else if (field == "id") {
  3816. // Empty id is valid (clears the last event ID)
  3817. msg.id = value;
  3818. } else if (field == "retry") {
  3819. // Parse retry interval in milliseconds
  3820. {
  3821. int v = 0;
  3822. auto res =
  3823. detail::from_chars(value.data(), value.data() + value.size(), v);
  3824. if (res.ec == std::errc{}) { retry_ms = v; }
  3825. }
  3826. }
  3827. // Unknown fields are ignored per SSE spec
  3828. return false;
  3829. }
  3830. inline void SSEClient::run_event_loop() {
  3831. auto reconnect_count = 0;
  3832. while (running_.load()) {
  3833. // Build headers, including Last-Event-ID if we have one
  3834. Headers request_headers;
  3835. {
  3836. std::lock_guard<std::mutex> lock(headers_mutex_);
  3837. request_headers = headers_;
  3838. }
  3839. if (!last_event_id_.empty()) {
  3840. request_headers.emplace("Last-Event-ID", last_event_id_);
  3841. }
  3842. // Open streaming connection
  3843. auto result = stream::Get(client_, path_, request_headers);
  3844. // Connection error handling
  3845. if (!result) {
  3846. connected_.store(false);
  3847. if (on_error_) { on_error_(result.error()); }
  3848. if (!should_reconnect(reconnect_count)) { break; }
  3849. wait_for_reconnect();
  3850. reconnect_count++;
  3851. continue;
  3852. }
  3853. if (result.status() != StatusCode::OK_200) {
  3854. connected_.store(false);
  3855. if (on_error_) { on_error_(Error::Connection); }
  3856. // For certain errors, don't reconnect.
  3857. // Note: 401 is intentionally absent so that handlers can refresh
  3858. // credentials via set_headers() and let the client reconnect.
  3859. if (result.status() == StatusCode::NoContent_204 ||
  3860. result.status() == StatusCode::NotFound_404 ||
  3861. result.status() == StatusCode::Forbidden_403) {
  3862. break;
  3863. }
  3864. if (!should_reconnect(reconnect_count)) { break; }
  3865. wait_for_reconnect();
  3866. reconnect_count++;
  3867. continue;
  3868. }
  3869. // Connection successful
  3870. connected_.store(true);
  3871. reconnect_count = 0;
  3872. if (on_open_) { on_open_(); }
  3873. // Event receiving loop
  3874. std::string buffer;
  3875. SSEMessage current_msg;
  3876. while (running_.load() && result.next()) {
  3877. buffer.append(result.data(), result.size());
  3878. // Process complete lines in the buffer
  3879. size_t line_start = 0;
  3880. size_t newline_pos;
  3881. while ((newline_pos = buffer.find('\n', line_start)) !=
  3882. std::string::npos) {
  3883. auto line = buffer.substr(line_start, newline_pos - line_start);
  3884. line_start = newline_pos + 1;
  3885. // Parse the line and check if event is complete
  3886. auto event_complete =
  3887. parse_sse_line(line, current_msg, reconnect_interval_ms_);
  3888. if (event_complete && !current_msg.data.empty()) {
  3889. // Update last_event_id for reconnection
  3890. if (!current_msg.id.empty()) { last_event_id_ = current_msg.id; }
  3891. // Dispatch event to appropriate handler
  3892. dispatch_event(current_msg);
  3893. current_msg.clear();
  3894. }
  3895. }
  3896. // Keep unprocessed data in buffer
  3897. buffer.erase(0, line_start);
  3898. }
  3899. // Connection ended
  3900. connected_.store(false);
  3901. if (!running_.load()) { break; }
  3902. // Check for read errors
  3903. if (result.has_read_error()) {
  3904. if (on_error_) { on_error_(result.read_error()); }
  3905. }
  3906. if (!should_reconnect(reconnect_count)) { break; }
  3907. wait_for_reconnect();
  3908. reconnect_count++;
  3909. }
  3910. connected_.store(false);
  3911. }
  3912. inline void SSEClient::dispatch_event(const SSEMessage &msg) {
  3913. // Check for specific event type handler first
  3914. auto it = event_handlers_.find(msg.event);
  3915. if (it != event_handlers_.end()) {
  3916. it->second(msg);
  3917. return;
  3918. }
  3919. // Fall back to generic message handler
  3920. if (on_message_) { on_message_(msg); }
  3921. }
  3922. inline bool SSEClient::should_reconnect(int count) const {
  3923. if (!running_.load()) { return false; }
  3924. if (max_reconnect_attempts_ == 0) { return true; } // unlimited
  3925. return count < max_reconnect_attempts_;
  3926. }
  3927. inline void SSEClient::wait_for_reconnect() {
  3928. // Use small increments to check running_ flag frequently
  3929. auto waited = 0;
  3930. while (running_.load() && waited < reconnect_interval_ms_) {
  3931. std::this_thread::sleep_for(std::chrono::milliseconds(100));
  3932. waited += 100;
  3933. }
  3934. }
  3935. } // namespace sse
  3936. #ifdef CPPHTTPLIB_SSL_ENABLED
  3937. /*
  3938. * TLS abstraction layer - internal function declarations
  3939. * These are implementation details and not part of the public API.
  3940. */
  3941. namespace tls {
  3942. // Client context
  3943. ctx_t create_client_context();
  3944. void free_context(ctx_t ctx);
  3945. bool set_min_version(ctx_t ctx, Version version);
  3946. bool load_ca_pem(ctx_t ctx, const char *pem, size_t len);
  3947. bool load_ca_file(ctx_t ctx, const char *file_path);
  3948. bool load_ca_dir(ctx_t ctx, const char *dir_path);
  3949. bool load_system_certs(ctx_t ctx);
  3950. bool set_client_cert_pem(ctx_t ctx, const char *cert, const char *key,
  3951. const char *password);
  3952. bool set_client_cert_file(ctx_t ctx, const char *cert_path,
  3953. const char *key_path, const char *password);
  3954. // Server context
  3955. ctx_t create_server_context();
  3956. bool set_server_cert_pem(ctx_t ctx, const char *cert, const char *key,
  3957. const char *password);
  3958. bool set_server_cert_file(ctx_t ctx, const char *cert_path,
  3959. const char *key_path, const char *password);
  3960. bool set_client_ca_file(ctx_t ctx, const char *ca_file, const char *ca_dir);
  3961. void set_verify_client(ctx_t ctx, bool require);
  3962. // Session management
  3963. session_t create_session(ctx_t ctx, socket_t sock);
  3964. void free_session(session_t session);
  3965. bool set_sni(session_t session, const char *hostname);
  3966. // Handshake (non-blocking capable)
  3967. TlsError connect(session_t session);
  3968. TlsError accept(session_t session);
  3969. // Handshake with timeout (blocking until timeout)
  3970. bool connect_nonblocking(session_t session, socket_t sock, time_t timeout_sec,
  3971. time_t timeout_usec, TlsError *err);
  3972. bool accept_nonblocking(session_t session, socket_t sock, time_t timeout_sec,
  3973. time_t timeout_usec, TlsError *err);
  3974. // I/O (non-blocking capable)
  3975. ssize_t read(session_t session, void *buf, size_t len, TlsError &err);
  3976. ssize_t write(session_t session, const void *buf, size_t len, TlsError &err);
  3977. int pending(const_session_t session);
  3978. void shutdown(session_t session, bool graceful);
  3979. // Connection state
  3980. bool is_peer_closed(session_t session, socket_t sock);
  3981. // Certificate verification
  3982. cert_t get_peer_cert(const_session_t session);
  3983. void free_cert(cert_t cert);
  3984. bool verify_hostname(cert_t cert, const char *hostname);
  3985. uint64_t hostname_mismatch_code();
  3986. long get_verify_result(const_session_t session);
  3987. // Certificate introspection
  3988. std::string get_cert_subject_cn(cert_t cert);
  3989. std::string get_cert_issuer_name(cert_t cert);
  3990. bool get_cert_sans(cert_t cert, std::vector<SanEntry> &sans);
  3991. bool get_cert_validity(cert_t cert, time_t &not_before, time_t &not_after);
  3992. std::string get_cert_serial(cert_t cert);
  3993. bool get_cert_der(cert_t cert, std::vector<unsigned char> &der);
  3994. const char *get_sni(const_session_t session);
  3995. // CA store management
  3996. ca_store_t create_ca_store(const char *pem, size_t len);
  3997. void free_ca_store(ca_store_t store);
  3998. bool set_ca_store(ctx_t ctx, ca_store_t store);
  3999. size_t get_ca_certs(ctx_t ctx, std::vector<cert_t> &certs);
  4000. std::vector<std::string> get_ca_names(ctx_t ctx);
  4001. // Dynamic certificate update (for servers)
  4002. bool update_server_cert(ctx_t ctx, const char *cert_pem, const char *key_pem,
  4003. const char *password);
  4004. bool update_server_client_ca(ctx_t ctx, const char *ca_pem);
  4005. // Certificate verification callback
  4006. bool set_verify_callback(ctx_t ctx, VerifyCallback callback);
  4007. long get_verify_error(const_session_t session);
  4008. std::string verify_error_string(long error_code);
  4009. // TlsError information
  4010. uint64_t peek_error();
  4011. uint64_t get_error();
  4012. std::string error_string(uint64_t code);
  4013. } // namespace tls
  4014. #endif // CPPHTTPLIB_SSL_ENABLED
  4015. /*
  4016. * Group 1: detail namespace - Non-SSL utilities
  4017. */
  4018. namespace detail {
  4019. inline bool set_socket_opt_impl(socket_t sock, int level, int optname,
  4020. const void *optval, socklen_t optlen) {
  4021. return setsockopt(sock, level, optname,
  4022. #ifdef _WIN32
  4023. reinterpret_cast<const char *>(optval),
  4024. #else
  4025. optval,
  4026. #endif
  4027. optlen) == 0;
  4028. }
  4029. inline bool set_socket_opt_time(socket_t sock, int level, int optname,
  4030. time_t sec, time_t usec) {
  4031. #ifdef _WIN32
  4032. auto timeout = static_cast<uint32_t>(sec * 1000 + usec / 1000);
  4033. #else
  4034. timeval timeout;
  4035. timeout.tv_sec = static_cast<long>(sec);
  4036. timeout.tv_usec = static_cast<decltype(timeout.tv_usec)>(usec);
  4037. #endif
  4038. return set_socket_opt_impl(sock, level, optname, &timeout, sizeof(timeout));
  4039. }
  4040. inline bool is_hex(char c, int &v) {
  4041. if (is_ascii_digit(c)) {
  4042. v = c - '0';
  4043. return true;
  4044. } else if ('A' <= c && c <= 'F') {
  4045. v = c - 'A' + 10;
  4046. return true;
  4047. } else if ('a' <= c && c <= 'f') {
  4048. v = c - 'a' + 10;
  4049. return true;
  4050. }
  4051. return false;
  4052. }
  4053. inline bool from_hex_to_i(const std::string &s, size_t i, size_t cnt,
  4054. int &val) {
  4055. if (i >= s.size()) { return false; }
  4056. val = 0;
  4057. for (; cnt; i++, cnt--) {
  4058. if (!s[i]) { return false; }
  4059. auto v = 0;
  4060. if (is_hex(s[i], v)) {
  4061. val = val * 16 + v;
  4062. } else {
  4063. return false;
  4064. }
  4065. }
  4066. return true;
  4067. }
  4068. inline std::string from_i_to_hex(size_t n) {
  4069. static const auto charset = "0123456789abcdef";
  4070. std::string ret;
  4071. do {
  4072. ret = charset[n & 15] + ret;
  4073. n >>= 4;
  4074. } while (n > 0);
  4075. return ret;
  4076. }
  4077. inline std::string compute_etag(const FileStat &fs) {
  4078. if (!fs.is_file()) { return std::string(); }
  4079. // If mtime cannot be determined (negative value indicates an error
  4080. // or sentinel), do not generate an ETag. Returning a neutral / fixed
  4081. // value like 0 could collide with a real file that legitimately has
  4082. // mtime == 0 (epoch) and lead to misleading validators.
  4083. auto mtime_raw = fs.mtime();
  4084. if (mtime_raw < 0) { return std::string(); }
  4085. auto mtime = static_cast<size_t>(mtime_raw);
  4086. auto size = fs.size();
  4087. return std::string("W/\"") + from_i_to_hex(mtime) + "-" +
  4088. from_i_to_hex(size) + "\"";
  4089. }
  4090. // Format time_t as HTTP-date (RFC 9110 Section 5.6.7): "Sun, 06 Nov 1994
  4091. // 08:49:37 GMT" This implementation is defensive: it validates `mtime`, checks
  4092. // return values from `gmtime_r`/`gmtime_s`, and ensures `strftime` succeeds.
  4093. inline std::string file_mtime_to_http_date(time_t mtime) {
  4094. if (mtime < 0) { return std::string(); }
  4095. struct tm tm_buf;
  4096. #ifdef _WIN32
  4097. if (gmtime_s(&tm_buf, &mtime) != 0) { return std::string(); }
  4098. #else
  4099. if (gmtime_r(&mtime, &tm_buf) == nullptr) { return std::string(); }
  4100. #endif
  4101. char buf[64];
  4102. if (strftime(buf, sizeof(buf), "%a, %d %b %Y %H:%M:%S GMT", &tm_buf) == 0) {
  4103. return std::string();
  4104. }
  4105. return std::string(buf);
  4106. }
  4107. // Parse HTTP-date (RFC 9110 Section 5.6.7) to time_t. Returns -1 on failure.
  4108. inline time_t parse_http_date(const std::string &date_str) {
  4109. struct tm tm_buf;
  4110. // Create a classic locale object once for all parsing attempts
  4111. const std::locale classic_locale = std::locale::classic();
  4112. // Try to parse using std::get_time (C++11, cross-platform)
  4113. auto try_parse = [&](const char *fmt) -> bool {
  4114. std::istringstream ss(date_str);
  4115. ss.imbue(classic_locale);
  4116. memset(&tm_buf, 0, sizeof(tm_buf));
  4117. ss >> std::get_time(&tm_buf, fmt);
  4118. return !ss.fail();
  4119. };
  4120. // RFC 9110 preferred format (HTTP-date): "Sun, 06 Nov 1994 08:49:37 GMT"
  4121. if (!try_parse("%a, %d %b %Y %H:%M:%S")) {
  4122. // RFC 850 format: "Sunday, 06-Nov-94 08:49:37 GMT"
  4123. if (!try_parse("%A, %d-%b-%y %H:%M:%S")) {
  4124. // asctime format: "Sun Nov 6 08:49:37 1994"
  4125. if (!try_parse("%a %b %d %H:%M:%S %Y")) {
  4126. return static_cast<time_t>(-1);
  4127. }
  4128. }
  4129. }
  4130. #ifdef _WIN32
  4131. return _mkgmtime(&tm_buf);
  4132. #elif defined _AIX
  4133. return mktime(&tm_buf);
  4134. #else
  4135. return timegm(&tm_buf);
  4136. #endif
  4137. }
  4138. inline bool is_weak_etag(const std::string &s) {
  4139. // Check if the string is a weak ETag (starts with 'W/"')
  4140. return s.size() > 3 && s[0] == 'W' && s[1] == '/' && s[2] == '"';
  4141. }
  4142. inline bool is_strong_etag(const std::string &s) {
  4143. // Check if the string is a strong ETag (starts and ends with '"', at least 2
  4144. // chars)
  4145. return s.size() >= 2 && s[0] == '"' && s.back() == '"';
  4146. }
  4147. inline size_t to_utf8(int code, char *buff) {
  4148. if (code < 0x0080) {
  4149. buff[0] = static_cast<char>(code & 0x7F);
  4150. return 1;
  4151. } else if (code < 0x0800) {
  4152. buff[0] = static_cast<char>(0xC0 | ((code >> 6) & 0x1F));
  4153. buff[1] = static_cast<char>(0x80 | (code & 0x3F));
  4154. return 2;
  4155. } else if (code < 0xD800) {
  4156. buff[0] = static_cast<char>(0xE0 | ((code >> 12) & 0xF));
  4157. buff[1] = static_cast<char>(0x80 | ((code >> 6) & 0x3F));
  4158. buff[2] = static_cast<char>(0x80 | (code & 0x3F));
  4159. return 3;
  4160. } else if (code < 0xE000) { // D800 - DFFF is invalid...
  4161. return 0;
  4162. } else if (code < 0x10000) {
  4163. buff[0] = static_cast<char>(0xE0 | ((code >> 12) & 0xF));
  4164. buff[1] = static_cast<char>(0x80 | ((code >> 6) & 0x3F));
  4165. buff[2] = static_cast<char>(0x80 | (code & 0x3F));
  4166. return 3;
  4167. } else if (code < 0x110000) {
  4168. buff[0] = static_cast<char>(0xF0 | ((code >> 18) & 0x7));
  4169. buff[1] = static_cast<char>(0x80 | ((code >> 12) & 0x3F));
  4170. buff[2] = static_cast<char>(0x80 | ((code >> 6) & 0x3F));
  4171. buff[3] = static_cast<char>(0x80 | (code & 0x3F));
  4172. return 4;
  4173. }
  4174. // NOTREACHED
  4175. return 0;
  4176. }
  4177. } // namespace detail
  4178. namespace ws {
  4179. namespace impl {
  4180. inline bool is_valid_utf8(const std::string &s) {
  4181. size_t i = 0;
  4182. auto n = s.size();
  4183. while (i < n) {
  4184. auto c = static_cast<unsigned char>(s[i]);
  4185. size_t len;
  4186. uint32_t cp;
  4187. if (c < 0x80) {
  4188. i++;
  4189. continue;
  4190. } else if ((c & 0xE0) == 0xC0) {
  4191. len = 2;
  4192. cp = c & 0x1F;
  4193. } else if ((c & 0xF0) == 0xE0) {
  4194. len = 3;
  4195. cp = c & 0x0F;
  4196. } else if ((c & 0xF8) == 0xF0) {
  4197. len = 4;
  4198. cp = c & 0x07;
  4199. } else {
  4200. return false;
  4201. }
  4202. if (i + len > n) { return false; }
  4203. for (size_t j = 1; j < len; j++) {
  4204. auto b = static_cast<unsigned char>(s[i + j]);
  4205. if ((b & 0xC0) != 0x80) { return false; }
  4206. cp = (cp << 6) | (b & 0x3F);
  4207. }
  4208. // Overlong encoding check
  4209. if (len == 2 && cp < 0x80) { return false; }
  4210. if (len == 3 && cp < 0x800) { return false; }
  4211. if (len == 4 && cp < 0x10000) { return false; }
  4212. // Surrogate halves (U+D800..U+DFFF) and beyond U+10FFFF are invalid
  4213. if (cp >= 0xD800 && cp <= 0xDFFF) { return false; }
  4214. if (cp > 0x10FFFF) { return false; }
  4215. i += len;
  4216. }
  4217. return true;
  4218. }
  4219. } // namespace impl
  4220. } // namespace ws
  4221. namespace detail {
  4222. // NOTE: This code came up with the following stackoverflow post:
  4223. // https://stackoverflow.com/questions/180947/base64-decode-snippet-in-c
  4224. inline std::string base64_encode(const std::string &in) {
  4225. static const auto lookup =
  4226. "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
  4227. std::string out;
  4228. out.reserve(in.size());
  4229. // Unsigned: the accumulator is never masked, so with a signed int the
  4230. // `val << 8` below overflows once enough bytes are folded in (undefined
  4231. // behaviour before C++20). Only the low bits are ever emitted, so the
  4232. // wrap-around of an unsigned accumulator does not affect the output.
  4233. uint32_t val = 0;
  4234. auto valb = -6;
  4235. for (auto c : in) {
  4236. val = (val << 8) + static_cast<uint8_t>(c);
  4237. valb += 8;
  4238. while (valb >= 0) {
  4239. out.push_back(lookup[(val >> valb) & 0x3F]);
  4240. valb -= 6;
  4241. }
  4242. }
  4243. if (valb > -6) { out.push_back(lookup[((val << 8) >> (valb + 8)) & 0x3F]); }
  4244. while (out.size() % 4) {
  4245. out.push_back('=');
  4246. }
  4247. return out;
  4248. }
  4249. inline std::string sha1(const std::string &input) {
  4250. // RFC 3174 SHA-1 implementation
  4251. auto left_rotate = [](uint32_t x, uint32_t n) -> uint32_t {
  4252. return (x << n) | (x >> (32 - n));
  4253. };
  4254. uint32_t h0 = 0x67452301;
  4255. uint32_t h1 = 0xEFCDAB89;
  4256. uint32_t h2 = 0x98BADCFE;
  4257. uint32_t h3 = 0x10325476;
  4258. uint32_t h4 = 0xC3D2E1F0;
  4259. // Pre-processing: adding padding bits
  4260. std::string msg = input;
  4261. uint64_t original_bit_len = static_cast<uint64_t>(msg.size()) * 8;
  4262. msg.push_back(static_cast<char>(0x80u));
  4263. while (msg.size() % 64 != 56) {
  4264. msg.push_back(0);
  4265. }
  4266. // Append original length in bits as 64-bit big-endian
  4267. for (int i = 56; i >= 0; i -= 8) {
  4268. msg.push_back(static_cast<char>((original_bit_len >> i) & 0xFF));
  4269. }
  4270. // Process each 512-bit chunk
  4271. for (size_t offset = 0; offset < msg.size(); offset += 64) {
  4272. uint32_t w[80];
  4273. for (size_t i = 0; i < 16; i++) {
  4274. w[i] =
  4275. (static_cast<uint32_t>(static_cast<uint8_t>(msg[offset + i * 4]))
  4276. << 24) |
  4277. (static_cast<uint32_t>(static_cast<uint8_t>(msg[offset + i * 4 + 1]))
  4278. << 16) |
  4279. (static_cast<uint32_t>(static_cast<uint8_t>(msg[offset + i * 4 + 2]))
  4280. << 8) |
  4281. (static_cast<uint32_t>(
  4282. static_cast<uint8_t>(msg[offset + i * 4 + 3])));
  4283. }
  4284. for (int i = 16; i < 80; i++) {
  4285. w[i] = left_rotate(w[i - 3] ^ w[i - 8] ^ w[i - 14] ^ w[i - 16], 1);
  4286. }
  4287. uint32_t a = h0, b = h1, c = h2, d = h3, e = h4;
  4288. for (int i = 0; i < 80; i++) {
  4289. uint32_t f, k;
  4290. if (i < 20) {
  4291. f = (b & c) | ((~b) & d);
  4292. k = 0x5A827999;
  4293. } else if (i < 40) {
  4294. f = b ^ c ^ d;
  4295. k = 0x6ED9EBA1;
  4296. } else if (i < 60) {
  4297. f = (b & c) | (b & d) | (c & d);
  4298. k = 0x8F1BBCDC;
  4299. } else {
  4300. f = b ^ c ^ d;
  4301. k = 0xCA62C1D6;
  4302. }
  4303. uint32_t temp = left_rotate(a, 5) + f + e + k + w[i];
  4304. e = d;
  4305. d = c;
  4306. c = left_rotate(b, 30);
  4307. b = a;
  4308. a = temp;
  4309. }
  4310. h0 += a;
  4311. h1 += b;
  4312. h2 += c;
  4313. h3 += d;
  4314. h4 += e;
  4315. }
  4316. // Produce the final hash as a 20-byte binary string
  4317. std::string hash(20, '\0');
  4318. for (size_t i = 0; i < 4; i++) {
  4319. hash[i] = static_cast<char>((h0 >> (24 - i * 8)) & 0xFF);
  4320. hash[4 + i] = static_cast<char>((h1 >> (24 - i * 8)) & 0xFF);
  4321. hash[8 + i] = static_cast<char>((h2 >> (24 - i * 8)) & 0xFF);
  4322. hash[12 + i] = static_cast<char>((h3 >> (24 - i * 8)) & 0xFF);
  4323. hash[16 + i] = static_cast<char>((h4 >> (24 - i * 8)) & 0xFF);
  4324. }
  4325. return hash;
  4326. }
  4327. inline std::string websocket_accept_key(const std::string &client_key) {
  4328. const std::string magic = "258EAFA5-E914-47DA-95CA-C5AB0DC85B11";
  4329. return base64_encode(sha1(client_key + magic));
  4330. }
  4331. inline bool is_websocket_upgrade(const Request &req) {
  4332. if (req.method != "GET") { return false; }
  4333. // Check Upgrade: websocket (case-insensitive)
  4334. auto upgrade_it = req.headers.find("Upgrade");
  4335. if (upgrade_it == req.headers.end()) { return false; }
  4336. auto upgrade_val = case_ignore::to_lower(upgrade_it->second);
  4337. if (upgrade_val != "websocket") { return false; }
  4338. // Check Connection header contains "Upgrade"
  4339. auto connection_it = req.headers.find("Connection");
  4340. if (connection_it == req.headers.end()) { return false; }
  4341. auto connection_val = case_ignore::to_lower(connection_it->second);
  4342. if (connection_val.find("upgrade") == std::string::npos) { return false; }
  4343. // Check Sec-WebSocket-Key is a valid base64-encoded 16-byte value (24 chars)
  4344. // RFC 6455 Section 4.2.1
  4345. auto ws_key = req.get_header_value("Sec-WebSocket-Key");
  4346. if (ws_key.size() != 24 || ws_key[22] != '=' || ws_key[23] != '=') {
  4347. return false;
  4348. }
  4349. static const std::string b64chars =
  4350. "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
  4351. for (size_t i = 0; i < 22; i++) {
  4352. if (b64chars.find(ws_key[i]) == std::string::npos) { return false; }
  4353. }
  4354. // Check Sec-WebSocket-Version: 13
  4355. auto version = req.get_header_value("Sec-WebSocket-Version");
  4356. if (version != "13") { return false; }
  4357. return true;
  4358. }
  4359. inline bool write_websocket_frame(Stream &strm, ws::Opcode opcode,
  4360. const char *data, size_t len, bool fin,
  4361. bool mask) {
  4362. // First byte: FIN + opcode
  4363. uint8_t header[2];
  4364. header[0] = static_cast<uint8_t>((fin ? 0x80 : 0x00) |
  4365. (static_cast<uint8_t>(opcode) & 0x0F));
  4366. // Second byte: MASK + payload length
  4367. if (len < 126) {
  4368. header[1] = static_cast<uint8_t>(len);
  4369. if (mask) { header[1] |= 0x80; }
  4370. if (strm.write(reinterpret_cast<char *>(header), 2) < 0) { return false; }
  4371. } else if (len <= 0xFFFF) {
  4372. header[1] = 126;
  4373. if (mask) { header[1] |= 0x80; }
  4374. if (strm.write(reinterpret_cast<char *>(header), 2) < 0) { return false; }
  4375. uint8_t ext[2];
  4376. ext[0] = static_cast<uint8_t>((len >> 8) & 0xFF);
  4377. ext[1] = static_cast<uint8_t>(len & 0xFF);
  4378. if (strm.write(reinterpret_cast<char *>(ext), 2) < 0) { return false; }
  4379. } else {
  4380. header[1] = 127;
  4381. if (mask) { header[1] |= 0x80; }
  4382. if (strm.write(reinterpret_cast<char *>(header), 2) < 0) { return false; }
  4383. uint8_t ext[8];
  4384. for (int i = 7; i >= 0; i--) {
  4385. ext[7 - i] =
  4386. static_cast<uint8_t>((static_cast<uint64_t>(len) >> (i * 8)) & 0xFF);
  4387. }
  4388. if (strm.write(reinterpret_cast<char *>(ext), 8) < 0) { return false; }
  4389. }
  4390. if (mask) {
  4391. // Generate random mask key
  4392. thread_local std::mt19937 rng(std::random_device{}());
  4393. uint8_t mask_key[4];
  4394. auto r = rng();
  4395. std::memcpy(mask_key, &r, 4);
  4396. if (strm.write(reinterpret_cast<char *>(mask_key), 4) < 0) { return false; }
  4397. // Write masked payload in chunks
  4398. const size_t chunk_size = 4096;
  4399. std::vector<char> buf((std::min)(len, chunk_size));
  4400. for (size_t offset = 0; offset < len; offset += chunk_size) {
  4401. size_t n = (std::min)(chunk_size, len - offset);
  4402. for (size_t i = 0; i < n; i++) {
  4403. buf[i] =
  4404. data[offset + i] ^ static_cast<char>(mask_key[(offset + i) % 4]);
  4405. }
  4406. if (strm.write(buf.data(), n) < 0) { return false; }
  4407. }
  4408. } else {
  4409. if (len > 0) {
  4410. if (strm.write(data, len) < 0) { return false; }
  4411. }
  4412. }
  4413. return true;
  4414. }
  4415. } // namespace detail
  4416. namespace ws {
  4417. namespace impl {
  4418. inline bool read_websocket_frame(Stream &strm, Opcode &opcode,
  4419. std::string &payload, bool &fin,
  4420. bool expect_masked, size_t max_len) {
  4421. // Read first 2 bytes
  4422. uint8_t header[2];
  4423. if (strm.read(reinterpret_cast<char *>(header), 2) != 2) { return false; }
  4424. fin = (header[0] & 0x80) != 0;
  4425. // RSV1, RSV2, RSV3 must be 0 when no extension is negotiated
  4426. if (header[0] & 0x70) { return false; }
  4427. opcode = static_cast<Opcode>(header[0] & 0x0F);
  4428. bool masked = (header[1] & 0x80) != 0;
  4429. uint64_t payload_len = header[1] & 0x7F;
  4430. // RFC 6455 Section 5.5: control frames MUST NOT be fragmented and
  4431. // MUST have a payload length of 125 bytes or less
  4432. bool is_control = (static_cast<uint8_t>(opcode) & 0x08) != 0;
  4433. if (is_control) {
  4434. if (!fin) { return false; }
  4435. if (payload_len > 125) { return false; }
  4436. }
  4437. if (masked != expect_masked) { return false; }
  4438. // Extended payload length
  4439. if (payload_len == 126) {
  4440. uint8_t ext[2];
  4441. if (strm.read(reinterpret_cast<char *>(ext), 2) != 2) { return false; }
  4442. payload_len = (static_cast<uint64_t>(ext[0]) << 8) | ext[1];
  4443. } else if (payload_len == 127) {
  4444. uint8_t ext[8];
  4445. if (strm.read(reinterpret_cast<char *>(ext), 8) != 8) { return false; }
  4446. // RFC 6455 Section 5.2: the most significant bit MUST be 0
  4447. if (ext[0] & 0x80) { return false; }
  4448. payload_len = 0;
  4449. for (int i = 0; i < 8; i++) {
  4450. payload_len = (payload_len << 8) | ext[i];
  4451. }
  4452. }
  4453. if (payload_len > max_len) { return false; }
  4454. // Read mask key if present
  4455. uint8_t mask_key[4] = {0};
  4456. if (masked) {
  4457. if (strm.read(reinterpret_cast<char *>(mask_key), 4) != 4) { return false; }
  4458. }
  4459. // Read payload
  4460. payload.resize(static_cast<size_t>(payload_len));
  4461. if (payload_len > 0) {
  4462. size_t total_read = 0;
  4463. while (total_read < payload_len) {
  4464. auto n = strm.read(&payload[total_read],
  4465. static_cast<size_t>(payload_len - total_read));
  4466. if (n <= 0) { return false; }
  4467. total_read += static_cast<size_t>(n);
  4468. }
  4469. }
  4470. // Unmask if needed
  4471. if (masked) {
  4472. for (size_t i = 0; i < payload.size(); i++) {
  4473. payload[i] ^= static_cast<char>(mask_key[i % 4]);
  4474. }
  4475. }
  4476. return true;
  4477. }
  4478. } // namespace impl
  4479. } // namespace ws
  4480. namespace detail {
  4481. inline bool is_valid_path(const std::string &path) {
  4482. size_t level = 0;
  4483. size_t i = 0;
  4484. // Skip slash
  4485. while (i < path.size() && path[i] == '/') {
  4486. i++;
  4487. }
  4488. while (i < path.size()) {
  4489. // Read component
  4490. auto beg = i;
  4491. while (i < path.size() && path[i] != '/') {
  4492. if (path[i] == '\0') {
  4493. return false;
  4494. } else if (path[i] == '\\') {
  4495. return false;
  4496. }
  4497. i++;
  4498. }
  4499. auto len = i - beg;
  4500. assert(len > 0);
  4501. if (!path.compare(beg, len, ".")) {
  4502. ;
  4503. } else if (!path.compare(beg, len, "..")) {
  4504. if (level == 0) { return false; }
  4505. level--;
  4506. } else {
  4507. level++;
  4508. }
  4509. // Skip slash
  4510. while (i < path.size() && path[i] == '/') {
  4511. i++;
  4512. }
  4513. }
  4514. return true;
  4515. }
  4516. inline bool canonicalize_path(const char *path, std::string &resolved) {
  4517. #if defined(_WIN32)
  4518. char buf[_MAX_PATH];
  4519. if (_fullpath(buf, path, _MAX_PATH) == nullptr) { return false; }
  4520. resolved = buf;
  4521. #elif defined(PATH_MAX)
  4522. char buf[PATH_MAX];
  4523. if (realpath(path, buf) == nullptr) { return false; }
  4524. resolved = buf;
  4525. #else
  4526. auto buf = realpath(path, nullptr);
  4527. auto guard = scope_exit([&]() { std::free(buf); });
  4528. if (buf == nullptr) { return false; }
  4529. resolved = buf;
  4530. #endif
  4531. return true;
  4532. }
  4533. inline bool is_path_within_base(const std::string &resolved_path,
  4534. const std::string &resolved_base) {
  4535. #if defined(_WIN32)
  4536. return _strnicmp(resolved_path.c_str(), resolved_base.c_str(),
  4537. resolved_base.size()) == 0;
  4538. #else
  4539. return strncmp(resolved_path.c_str(), resolved_base.c_str(),
  4540. resolved_base.size()) == 0;
  4541. #endif
  4542. }
  4543. inline FileStat::FileStat(const std::string &path) {
  4544. #if defined(_WIN32)
  4545. auto wpath = u8string_to_wstring(path.c_str());
  4546. ret_ = _wstat(wpath.c_str(), &st_);
  4547. #else
  4548. ret_ = stat(path.c_str(), &st_);
  4549. #endif
  4550. }
  4551. inline bool FileStat::is_file() const {
  4552. return ret_ >= 0 && S_ISREG(st_.st_mode);
  4553. }
  4554. inline bool FileStat::is_dir() const {
  4555. return ret_ >= 0 && S_ISDIR(st_.st_mode);
  4556. }
  4557. inline time_t FileStat::mtime() const {
  4558. return ret_ >= 0 ? static_cast<time_t>(st_.st_mtime)
  4559. : static_cast<time_t>(-1);
  4560. }
  4561. inline size_t FileStat::size() const {
  4562. return ret_ >= 0 ? static_cast<size_t>(st_.st_size) : 0;
  4563. }
  4564. inline std::string encode_path(const std::string &s) {
  4565. std::string result;
  4566. result.reserve(s.size());
  4567. for (size_t i = 0; s[i]; i++) {
  4568. switch (s[i]) {
  4569. case ' ': result += "%20"; break;
  4570. case '+': result += "%2B"; break;
  4571. case '\r': result += "%0D"; break;
  4572. case '\n': result += "%0A"; break;
  4573. case '\'': result += "%27"; break;
  4574. case ',': result += "%2C"; break;
  4575. // case ':': result += "%3A"; break; // ok? probably...
  4576. case ';': result += "%3B"; break;
  4577. default:
  4578. auto c = static_cast<uint8_t>(s[i]);
  4579. if (c >= 0x80) {
  4580. result += '%';
  4581. char hex[4];
  4582. auto len = snprintf(hex, sizeof(hex) - 1, "%02X", c);
  4583. assert(len == 2);
  4584. result.append(hex, static_cast<size_t>(len));
  4585. } else {
  4586. result += s[i];
  4587. }
  4588. break;
  4589. }
  4590. }
  4591. return result;
  4592. }
  4593. inline std::string file_extension(const std::string &path) {
  4594. std::smatch m;
  4595. thread_local auto re = std::regex("\\.([a-zA-Z0-9]+)$");
  4596. if (std::regex_search(path, m, re)) { return m[1].str(); }
  4597. return std::string();
  4598. }
  4599. inline bool is_space_or_tab(char c) { return c == ' ' || c == '\t'; }
  4600. template <typename T>
  4601. inline bool parse_header(const char *beg, const char *end, T fn);
  4602. template <typename T>
  4603. inline bool parse_header(const char *beg, const char *end, T fn) {
  4604. // Skip trailing spaces and tabs.
  4605. while (beg < end && is_space_or_tab(end[-1])) {
  4606. end--;
  4607. }
  4608. auto p = beg;
  4609. while (p < end && *p != ':') {
  4610. p++;
  4611. }
  4612. auto name = std::string(beg, p);
  4613. if (!detail::fields::is_field_name(name)) { return false; }
  4614. if (p == end) { return false; }
  4615. auto key_end = p;
  4616. if (*p++ != ':') { return false; }
  4617. while (p < end && is_space_or_tab(*p)) {
  4618. p++;
  4619. }
  4620. if (p <= end) {
  4621. auto key_len = key_end - beg;
  4622. if (!key_len) { return false; }
  4623. auto key = std::string(beg, key_end);
  4624. auto val = std::string(p, end);
  4625. if (!detail::fields::is_field_value(val)) { return false; }
  4626. // RFC 9110 §5.5: header field values are opaque octets and MUST NOT be
  4627. // percent-decoded by the recipient. Applications that need to interpret a
  4628. // value as a URI component should call httplib::decode_uri_component()
  4629. // (or decode_path_component()) explicitly.
  4630. fn(key, val);
  4631. return true;
  4632. }
  4633. return false;
  4634. }
  4635. inline bool parse_trailers(stream_line_reader &line_reader, Headers &dest,
  4636. const Headers &src_headers) {
  4637. // NOTE: In RFC 9112, '7.1 Chunked Transfer Coding' mentions "The chunked
  4638. // transfer coding is complete when a chunk with a chunk-size of zero is
  4639. // received, possibly followed by a trailer section, and finally terminated by
  4640. // an empty line". https://www.rfc-editor.org/rfc/rfc9112.html#section-7.1
  4641. //
  4642. // In '7.1.3. Decoding Chunked', however, the pseudo-code in the section
  4643. // doesn't care for the existence of the final CRLF. In other words, it seems
  4644. // to be ok whether the final CRLF exists or not in the chunked data.
  4645. // https://www.rfc-editor.org/rfc/rfc9112.html#section-7.1.3
  4646. //
  4647. // According to the reference code in RFC 9112, cpp-httplib now allows
  4648. // chunked transfer coding data without the final CRLF.
  4649. // RFC 7230 Section 4.1.2 - Headers prohibited in trailers
  4650. thread_local case_ignore::unordered_set<std::string> prohibited_trailers = {
  4651. "transfer-encoding",
  4652. "content-length",
  4653. "host",
  4654. "authorization",
  4655. "www-authenticate",
  4656. "proxy-authenticate",
  4657. "proxy-authorization",
  4658. "cookie",
  4659. "set-cookie",
  4660. "cache-control",
  4661. "expect",
  4662. "max-forwards",
  4663. "pragma",
  4664. "range",
  4665. "te",
  4666. "age",
  4667. "expires",
  4668. "date",
  4669. "location",
  4670. "retry-after",
  4671. "vary",
  4672. "warning",
  4673. "content-encoding",
  4674. "content-type",
  4675. "content-range",
  4676. "trailer"};
  4677. case_ignore::unordered_set<std::string> declared_trailers;
  4678. auto trailer_header = get_header_value(src_headers, "Trailer", "", 0);
  4679. if (trailer_header && std::strlen(trailer_header)) {
  4680. auto len = std::strlen(trailer_header);
  4681. split(trailer_header, trailer_header + len, ',',
  4682. [&](const char *b, const char *e) {
  4683. const char *kbeg = b;
  4684. const char *kend = e;
  4685. while (kbeg < kend && (*kbeg == ' ' || *kbeg == '\t')) {
  4686. ++kbeg;
  4687. }
  4688. while (kend > kbeg && (kend[-1] == ' ' || kend[-1] == '\t')) {
  4689. --kend;
  4690. }
  4691. std::string key(kbeg, static_cast<size_t>(kend - kbeg));
  4692. if (!key.empty() &&
  4693. prohibited_trailers.find(key) == prohibited_trailers.end()) {
  4694. declared_trailers.insert(key);
  4695. }
  4696. });
  4697. }
  4698. size_t trailer_header_count = 0;
  4699. while (strcmp(line_reader.ptr(), "\r\n") != 0) {
  4700. if (line_reader.size() > CPPHTTPLIB_HEADER_MAX_LENGTH) { return false; }
  4701. if (trailer_header_count >= CPPHTTPLIB_HEADER_MAX_COUNT) { return false; }
  4702. constexpr auto line_terminator_len = 2;
  4703. auto line_beg = line_reader.ptr();
  4704. auto line_end =
  4705. line_reader.ptr() + line_reader.size() - line_terminator_len;
  4706. if (!parse_header(line_beg, line_end,
  4707. [&](const std::string &key, const std::string &val) {
  4708. if (declared_trailers.find(key) !=
  4709. declared_trailers.end()) {
  4710. dest.emplace(key, val);
  4711. trailer_header_count++;
  4712. }
  4713. })) {
  4714. return false;
  4715. }
  4716. if (!line_reader.getline()) { return false; }
  4717. }
  4718. return true;
  4719. }
  4720. inline std::pair<size_t, size_t> trim(const char *b, const char *e, size_t left,
  4721. size_t right) {
  4722. while (b + left < e && is_space_or_tab(b[left])) {
  4723. left++;
  4724. }
  4725. while (right > 0 && is_space_or_tab(b[right - 1])) {
  4726. right--;
  4727. }
  4728. return std::make_pair(left, right);
  4729. }
  4730. inline std::string trim_copy(const std::string &s) {
  4731. auto r = trim(s.data(), s.data() + s.size(), 0, s.size());
  4732. return s.substr(r.first, r.second - r.first);
  4733. }
  4734. inline std::string trim_double_quotes_copy(const std::string &s) {
  4735. if (s.length() >= 2 && s.front() == '"' && s.back() == '"') {
  4736. return s.substr(1, s.size() - 2);
  4737. }
  4738. return s;
  4739. }
  4740. inline void
  4741. divide(const char *data, std::size_t size, char d,
  4742. std::function<void(const char *, std::size_t, const char *, std::size_t)>
  4743. fn) {
  4744. const auto it = std::find(data, data + size, d);
  4745. const auto found = static_cast<std::size_t>(it != data + size);
  4746. const auto lhs_data = data;
  4747. const auto lhs_size = static_cast<std::size_t>(it - data);
  4748. const auto rhs_data = it + found;
  4749. const auto rhs_size = size - lhs_size - found;
  4750. fn(lhs_data, lhs_size, rhs_data, rhs_size);
  4751. }
  4752. inline void
  4753. divide(const std::string &str, char d,
  4754. std::function<void(const char *, std::size_t, const char *, std::size_t)>
  4755. fn) {
  4756. divide(str.data(), str.size(), d, std::move(fn));
  4757. }
  4758. inline void split(const char *b, const char *e, char d,
  4759. std::function<void(const char *, const char *)> fn) {
  4760. return split(b, e, d, (std::numeric_limits<size_t>::max)(), std::move(fn));
  4761. }
  4762. inline void split(const char *b, const char *e, char d, size_t m,
  4763. std::function<void(const char *, const char *)> fn) {
  4764. size_t i = 0;
  4765. size_t beg = 0;
  4766. size_t count = 1;
  4767. while (e ? (b + i < e) : (b[i] != '\0')) {
  4768. if (b[i] == d && count < m) {
  4769. auto r = trim(b, e, beg, i);
  4770. if (r.first < r.second) { fn(&b[r.first], &b[r.second]); }
  4771. beg = i + 1;
  4772. count++;
  4773. }
  4774. i++;
  4775. }
  4776. if (i) {
  4777. auto r = trim(b, e, beg, i);
  4778. if (r.first < r.second) { fn(&b[r.first], &b[r.second]); }
  4779. }
  4780. }
  4781. inline bool split_find(const char *b, const char *e, char d, size_t m,
  4782. std::function<bool(const char *, const char *)> fn) {
  4783. size_t i = 0;
  4784. size_t beg = 0;
  4785. size_t count = 1;
  4786. while (e ? (b + i < e) : (b[i] != '\0')) {
  4787. if (b[i] == d && count < m) {
  4788. auto r = trim(b, e, beg, i);
  4789. if (r.first < r.second) {
  4790. auto found = fn(&b[r.first], &b[r.second]);
  4791. if (found) { return true; }
  4792. }
  4793. beg = i + 1;
  4794. count++;
  4795. }
  4796. i++;
  4797. }
  4798. if (i) {
  4799. auto r = trim(b, e, beg, i);
  4800. if (r.first < r.second) {
  4801. auto found = fn(&b[r.first], &b[r.second]);
  4802. if (found) { return true; }
  4803. }
  4804. }
  4805. return false;
  4806. }
  4807. inline bool split_find(const char *b, const char *e, char d,
  4808. std::function<bool(const char *, const char *)> fn) {
  4809. return split_find(b, e, d, (std::numeric_limits<size_t>::max)(),
  4810. std::move(fn));
  4811. }
  4812. inline stream_line_reader::stream_line_reader(Stream &strm, char *fixed_buffer,
  4813. size_t fixed_buffer_size)
  4814. : strm_(strm), fixed_buffer_(fixed_buffer),
  4815. fixed_buffer_size_(fixed_buffer_size) {}
  4816. inline const char *stream_line_reader::ptr() const {
  4817. if (growable_buffer_.empty()) {
  4818. return fixed_buffer_;
  4819. } else {
  4820. return growable_buffer_.data();
  4821. }
  4822. }
  4823. inline size_t stream_line_reader::size() const {
  4824. if (growable_buffer_.empty()) {
  4825. return fixed_buffer_used_size_;
  4826. } else {
  4827. return growable_buffer_.size();
  4828. }
  4829. }
  4830. inline bool stream_line_reader::end_with_crlf() const {
  4831. auto end = ptr() + size();
  4832. return size() >= 2 && end[-2] == '\r' && end[-1] == '\n';
  4833. }
  4834. inline bool stream_line_reader::getline() {
  4835. fixed_buffer_used_size_ = 0;
  4836. growable_buffer_.clear();
  4837. #ifndef CPPHTTPLIB_ALLOW_LF_AS_LINE_TERMINATOR
  4838. char prev_byte = 0;
  4839. #endif
  4840. for (size_t i = 0;; i++) {
  4841. // Fast path: whatever the stream has already buffered can be scanned for
  4842. // the terminator in one pass. Asking for a byte at a time costs a virtual
  4843. // call, a bounds check and a one-byte copy per character of the request.
  4844. size_t buffered_size = 0;
  4845. if (auto buffered = strm_.buffered_data(buffered_size)) {
  4846. auto take = buffered_size;
  4847. auto terminated = false;
  4848. for (size_t at = 0; at < buffered_size;) {
  4849. auto nl = static_cast<const char *>(
  4850. memchr(buffered + at, '\n', buffered_size - at));
  4851. if (!nl) { break; }
  4852. auto pos = static_cast<size_t>(nl - buffered);
  4853. #ifdef CPPHTTPLIB_ALLOW_LF_AS_LINE_TERMINATOR
  4854. take = pos + 1;
  4855. terminated = true;
  4856. break;
  4857. #else
  4858. // A bare LF does not end the line; keep looking for CRLF. The CR may
  4859. // be the last byte of an earlier chunk, hence prev_byte.
  4860. if ((pos > 0 ? buffered[pos - 1] : prev_byte) == '\r') {
  4861. take = pos + 1;
  4862. terminated = true;
  4863. break;
  4864. }
  4865. at = pos + 1;
  4866. #endif
  4867. }
  4868. if (size() + take > CPPHTTPLIB_MAX_LINE_LENGTH) { return false; }
  4869. #ifndef CPPHTTPLIB_ALLOW_LF_AS_LINE_TERMINATOR
  4870. prev_byte = buffered[take - 1];
  4871. #endif
  4872. append(buffered, take);
  4873. strm_.consume_buffered(take);
  4874. i += take;
  4875. if (terminated) { return true; }
  4876. continue;
  4877. }
  4878. if (size() >= CPPHTTPLIB_MAX_LINE_LENGTH) {
  4879. // Treat exceptionally long lines as an error to
  4880. // prevent infinite loops/memory exhaustion
  4881. return false;
  4882. }
  4883. char byte;
  4884. auto n = strm_.read(&byte, 1);
  4885. if (n < 0) {
  4886. return false;
  4887. } else if (n == 0) {
  4888. if (i == 0) {
  4889. return false;
  4890. } else {
  4891. break;
  4892. }
  4893. }
  4894. append(byte);
  4895. #ifdef CPPHTTPLIB_ALLOW_LF_AS_LINE_TERMINATOR
  4896. if (byte == '\n') { break; }
  4897. #else
  4898. if (prev_byte == '\r' && byte == '\n') { break; }
  4899. prev_byte = byte;
  4900. #endif
  4901. }
  4902. return true;
  4903. }
  4904. inline void stream_line_reader::append(char c) { append(&c, 1); }
  4905. inline void stream_line_reader::append(const char *data, size_t size) {
  4906. // Once the line has outgrown the fixed buffer everything must keep going to
  4907. // the growable one, even if a later chunk would have fit. Without the
  4908. // emptiness check a short append after a long one would land in the fixed
  4909. // buffer, which ptr() and size() no longer look at, and be lost.
  4910. if (growable_buffer_.empty() &&
  4911. fixed_buffer_used_size_ + size < fixed_buffer_size_) {
  4912. memcpy(fixed_buffer_ + fixed_buffer_used_size_, data, size);
  4913. fixed_buffer_used_size_ += size;
  4914. fixed_buffer_[fixed_buffer_used_size_] = '\0';
  4915. } else {
  4916. // Unlike the per-character overload, this can be the very first append of
  4917. // the line, so the fixed buffer may hold nothing and carry no terminator
  4918. // yet. assign() takes an explicit length and does not need one.
  4919. if (growable_buffer_.empty()) {
  4920. growable_buffer_.assign(fixed_buffer_, fixed_buffer_used_size_);
  4921. }
  4922. growable_buffer_.append(data, size);
  4923. }
  4924. }
  4925. inline mmap::mmap(const char *path) { open(path); }
  4926. inline mmap::~mmap() { close(); }
  4927. inline bool mmap::open(const char *path) {
  4928. close();
  4929. #if defined(_WIN32)
  4930. auto wpath = u8string_to_wstring(path);
  4931. if (wpath.empty()) { return false; }
  4932. hFile_ =
  4933. ::CreateFile2(wpath.c_str(), GENERIC_READ,
  4934. FILE_SHARE_READ | FILE_SHARE_WRITE, OPEN_EXISTING, NULL);
  4935. if (hFile_ == INVALID_HANDLE_VALUE) { return false; }
  4936. LARGE_INTEGER size{};
  4937. if (!::GetFileSizeEx(hFile_, &size)) { return false; }
  4938. // If the following line doesn't compile due to QuadPart, update Windows SDK.
  4939. // See:
  4940. // https://github.com/yhirose/cpp-httplib/issues/1903#issuecomment-2316520721
  4941. if (static_cast<ULONGLONG>(size.QuadPart) >
  4942. (std::numeric_limits<decltype(size_)>::max)()) {
  4943. // `size_t` might be 32-bits, on 32-bits Windows.
  4944. return false;
  4945. }
  4946. size_ = static_cast<size_t>(size.QuadPart);
  4947. hMapping_ =
  4948. ::CreateFileMappingFromApp(hFile_, NULL, PAGE_READONLY, size_, NULL);
  4949. // Special treatment for an empty file...
  4950. if (hMapping_ == NULL && size_ == 0) {
  4951. close();
  4952. is_open_empty_file = true;
  4953. return true;
  4954. }
  4955. if (hMapping_ == NULL) {
  4956. close();
  4957. return false;
  4958. }
  4959. addr_ = ::MapViewOfFileFromApp(hMapping_, FILE_MAP_READ, 0, 0);
  4960. if (addr_ == nullptr) {
  4961. close();
  4962. return false;
  4963. }
  4964. #else
  4965. fd_ = ::open(path, O_RDONLY);
  4966. if (fd_ == -1) { return false; }
  4967. struct stat sb;
  4968. if (fstat(fd_, &sb) == -1) {
  4969. close();
  4970. return false;
  4971. }
  4972. size_ = static_cast<size_t>(sb.st_size);
  4973. addr_ = ::mmap(NULL, size_, PROT_READ, MAP_PRIVATE, fd_, 0);
  4974. // Special treatment for an empty file...
  4975. if (addr_ == MAP_FAILED && size_ == 0) {
  4976. close();
  4977. is_open_empty_file = true;
  4978. return false;
  4979. }
  4980. if (addr_ == MAP_FAILED) {
  4981. // Clear the sentinel before `close()`, since `is_open()` only checks
  4982. // `addr_` against nullptr and `munmap()` must not be called with it.
  4983. addr_ = nullptr;
  4984. close();
  4985. return false;
  4986. }
  4987. #endif
  4988. return true;
  4989. }
  4990. inline bool mmap::is_open() const {
  4991. return is_open_empty_file ? true : addr_ != nullptr;
  4992. }
  4993. inline size_t mmap::size() const { return size_; }
  4994. inline const char *mmap::data() const {
  4995. return is_open_empty_file ? "" : static_cast<const char *>(addr_);
  4996. }
  4997. inline void mmap::close() {
  4998. #if defined(_WIN32)
  4999. if (addr_) {
  5000. ::UnmapViewOfFile(addr_);
  5001. addr_ = nullptr;
  5002. }
  5003. if (hMapping_) {
  5004. ::CloseHandle(hMapping_);
  5005. hMapping_ = NULL;
  5006. }
  5007. if (hFile_ != INVALID_HANDLE_VALUE) {
  5008. ::CloseHandle(hFile_);
  5009. hFile_ = INVALID_HANDLE_VALUE;
  5010. }
  5011. is_open_empty_file = false;
  5012. #else
  5013. if (addr_ != nullptr) {
  5014. munmap(addr_, size_);
  5015. addr_ = nullptr;
  5016. }
  5017. if (fd_ != -1) {
  5018. ::close(fd_);
  5019. fd_ = -1;
  5020. }
  5021. #endif
  5022. size_ = 0;
  5023. }
  5024. inline int close_socket(socket_t sock) noexcept {
  5025. #ifdef _WIN32
  5026. return closesocket(sock);
  5027. #else
  5028. return close(sock);
  5029. #endif
  5030. }
  5031. template <typename T> inline ssize_t handle_EINTR(T fn) {
  5032. ssize_t res = 0;
  5033. while (true) {
  5034. res = fn();
  5035. if (res < 0 && errno == EINTR) {
  5036. std::this_thread::sleep_for(std::chrono::microseconds{1});
  5037. continue;
  5038. }
  5039. break;
  5040. }
  5041. return res;
  5042. }
  5043. inline ssize_t read_socket(socket_t sock, void *ptr, size_t size, int flags) {
  5044. return handle_EINTR([&]() {
  5045. return recv(sock,
  5046. #ifdef _WIN32
  5047. static_cast<char *>(ptr), static_cast<int>(size),
  5048. #else
  5049. ptr, size,
  5050. #endif
  5051. flags);
  5052. });
  5053. }
  5054. inline ssize_t send_socket(socket_t sock, const void *ptr, size_t size,
  5055. int flags) {
  5056. return handle_EINTR([&]() {
  5057. return send(sock,
  5058. #ifdef _WIN32
  5059. static_cast<const char *>(ptr), static_cast<int>(size),
  5060. #else
  5061. ptr, size,
  5062. #endif
  5063. flags);
  5064. });
  5065. }
  5066. inline int poll_wrapper(struct pollfd *fds, nfds_t nfds, int timeout) {
  5067. #ifdef _WIN32
  5068. return ::WSAPoll(fds, nfds, timeout);
  5069. #else
  5070. return ::poll(fds, nfds, timeout);
  5071. #endif
  5072. }
  5073. inline ssize_t select_impl(socket_t sock, short events, time_t sec,
  5074. time_t usec) {
  5075. struct pollfd pfd;
  5076. pfd.fd = sock;
  5077. pfd.events = events;
  5078. pfd.revents = 0;
  5079. auto timeout = static_cast<int>(sec * 1000 + usec / 1000);
  5080. return handle_EINTR([&]() { return poll_wrapper(&pfd, 1, timeout); });
  5081. }
  5082. inline ssize_t select_read(socket_t sock, time_t sec, time_t usec) {
  5083. return select_impl(sock, POLLIN, sec, usec);
  5084. }
  5085. inline ssize_t select_write(socket_t sock, time_t sec, time_t usec) {
  5086. return select_impl(sock, POLLOUT, sec, usec);
  5087. }
  5088. inline Error wait_until_socket_is_ready(socket_t sock, time_t sec,
  5089. time_t usec) {
  5090. struct pollfd pfd_read;
  5091. pfd_read.fd = sock;
  5092. pfd_read.events = POLLIN | POLLOUT;
  5093. pfd_read.revents = 0;
  5094. auto timeout = static_cast<int>(sec * 1000 + usec / 1000);
  5095. auto poll_res =
  5096. handle_EINTR([&]() { return poll_wrapper(&pfd_read, 1, timeout); });
  5097. if (poll_res == 0) { return Error::ConnectionTimeout; }
  5098. if (poll_res > 0 && pfd_read.revents & (POLLIN | POLLOUT)) {
  5099. auto error = 0;
  5100. socklen_t len = sizeof(error);
  5101. auto res = getsockopt(sock, SOL_SOCKET, SO_ERROR,
  5102. reinterpret_cast<char *>(&error), &len);
  5103. auto successful = res >= 0 && !error;
  5104. return successful ? Error::Success : Error::Connection;
  5105. }
  5106. return Error::Connection;
  5107. }
  5108. inline bool is_socket_alive(socket_t sock) {
  5109. const auto val = detail::select_read(sock, 0, 0);
  5110. if (val == 0) {
  5111. return true;
  5112. } else if (val < 0 && errno == EBADF) {
  5113. return false;
  5114. }
  5115. char buf[1];
  5116. return detail::read_socket(sock, &buf[0], sizeof(buf), MSG_PEEK) > 0;
  5117. }
  5118. class SocketStream final : public Stream {
  5119. public:
  5120. SocketStream(socket_t sock, time_t read_timeout_sec, time_t read_timeout_usec,
  5121. time_t write_timeout_sec, time_t write_timeout_usec,
  5122. time_t max_timeout_msec = 0,
  5123. std::chrono::time_point<std::chrono::steady_clock> start_time =
  5124. (std::chrono::steady_clock::time_point::min)());
  5125. ~SocketStream() override;
  5126. bool is_readable() const override;
  5127. bool wait_readable() const override;
  5128. bool wait_writable() const override;
  5129. bool is_peer_alive() const override;
  5130. ssize_t read(char *ptr, size_t size) override;
  5131. ssize_t write(const char *ptr, size_t size) override;
  5132. void get_remote_ip_and_port(std::string &ip, int &port) const override;
  5133. void get_local_ip_and_port(std::string &ip, int &port) const override;
  5134. socket_t socket() const override;
  5135. time_t duration() const override;
  5136. void set_read_timeout(time_t sec, time_t usec = 0) override;
  5137. const char *buffered_data(size_t &size) const override;
  5138. void consume_buffered(size_t size) override;
  5139. // The caller has just seen this socket become readable. Lets the next read
  5140. // skip its own readiness wait, which would otherwise ask the kernel a
  5141. // question that was answered a moment ago. Consumed by that read.
  5142. void set_readable_hint() { readable_hint_ = true; }
  5143. private:
  5144. bool ensure_readable();
  5145. socket_t sock_;
  5146. time_t read_timeout_sec_;
  5147. time_t read_timeout_usec_;
  5148. time_t write_timeout_sec_;
  5149. time_t write_timeout_usec_;
  5150. time_t max_timeout_msec_;
  5151. const std::chrono::time_point<std::chrono::steady_clock> start_time_;
  5152. std::vector<char> read_buff_;
  5153. size_t read_buff_off_ = 0;
  5154. size_t read_buff_content_size_ = 0;
  5155. bool readable_hint_ = false;
  5156. static const size_t read_buff_size_ = 1024l * 4;
  5157. };
  5158. inline bool keep_alive(const std::atomic<socket_t> &svr_sock, socket_t sock,
  5159. time_t keep_alive_timeout_sec) {
  5160. using namespace std::chrono;
  5161. const auto interval_usec =
  5162. CPPHTTPLIB_KEEPALIVE_TIMEOUT_CHECK_INTERVAL_USECOND;
  5163. // Avoid expensive `steady_clock::now()` call for the first time
  5164. if (select_read(sock, 0, interval_usec) > 0) { return true; }
  5165. const auto start = steady_clock::now() - microseconds{interval_usec};
  5166. const auto timeout = seconds{keep_alive_timeout_sec};
  5167. while (true) {
  5168. if (svr_sock == INVALID_SOCKET) {
  5169. break; // Server socket is closed
  5170. }
  5171. auto val = select_read(sock, 0, interval_usec);
  5172. if (val < 0) {
  5173. break; // Ssocket error
  5174. } else if (val == 0) {
  5175. if (steady_clock::now() - start > timeout) {
  5176. break; // Timeout
  5177. }
  5178. } else {
  5179. return true; // Ready for read
  5180. }
  5181. }
  5182. return false;
  5183. }
  5184. template <typename T>
  5185. inline bool
  5186. process_server_socket_core(const std::atomic<socket_t> &svr_sock, socket_t sock,
  5187. size_t keep_alive_max_count,
  5188. time_t keep_alive_timeout_sec, T callback) {
  5189. assert(keep_alive_max_count > 0);
  5190. auto ret = false;
  5191. auto count = keep_alive_max_count;
  5192. while (count > 0 && keep_alive(svr_sock, sock, keep_alive_timeout_sec)) {
  5193. auto close_connection = count == 1;
  5194. auto connection_closed = false;
  5195. ret = callback(close_connection, connection_closed);
  5196. if (!ret || connection_closed) { break; }
  5197. count--;
  5198. }
  5199. return ret;
  5200. }
  5201. template <typename T>
  5202. inline bool
  5203. process_server_socket(const std::atomic<socket_t> &svr_sock, socket_t sock,
  5204. size_t keep_alive_max_count,
  5205. time_t keep_alive_timeout_sec, time_t read_timeout_sec,
  5206. time_t read_timeout_usec, time_t write_timeout_sec,
  5207. time_t write_timeout_usec, T callback) {
  5208. return process_server_socket_core(
  5209. svr_sock, sock, keep_alive_max_count, keep_alive_timeout_sec,
  5210. [&](bool close_connection, bool &connection_closed) {
  5211. SocketStream strm(sock, read_timeout_sec, read_timeout_usec,
  5212. write_timeout_sec, write_timeout_usec);
  5213. // process_server_socket_core() only gets here once keep_alive() has
  5214. // seen the socket go readable.
  5215. strm.set_readable_hint();
  5216. return callback(strm, close_connection, connection_closed);
  5217. });
  5218. }
  5219. inline bool process_client_socket(
  5220. socket_t sock, time_t read_timeout_sec, time_t read_timeout_usec,
  5221. time_t write_timeout_sec, time_t write_timeout_usec,
  5222. time_t max_timeout_msec,
  5223. std::chrono::time_point<std::chrono::steady_clock> start_time,
  5224. std::function<bool(Stream &)> callback) {
  5225. SocketStream strm(sock, read_timeout_sec, read_timeout_usec,
  5226. write_timeout_sec, write_timeout_usec, max_timeout_msec,
  5227. start_time);
  5228. return callback(strm);
  5229. }
  5230. inline int shutdown_socket(socket_t sock) noexcept {
  5231. #ifdef _WIN32
  5232. return shutdown(sock, SD_BOTH);
  5233. #else
  5234. return shutdown(sock, SHUT_RDWR);
  5235. #endif
  5236. }
  5237. inline std::string escape_abstract_namespace_unix_domain(const std::string &s) {
  5238. if (s.size() > 1 && s[0] == '\0') {
  5239. auto ret = s;
  5240. ret[0] = '@';
  5241. return ret;
  5242. }
  5243. return s;
  5244. }
  5245. inline std::string
  5246. unescape_abstract_namespace_unix_domain(const std::string &s) {
  5247. if (s.size() > 1 && s[0] == '@') {
  5248. auto ret = s;
  5249. ret[0] = '\0';
  5250. return ret;
  5251. }
  5252. return s;
  5253. }
  5254. inline int getaddrinfo_with_timeout(const char *node, const char *service,
  5255. const struct addrinfo *hints,
  5256. struct addrinfo **res, time_t timeout_sec) {
  5257. #ifdef CPPHTTPLIB_USE_NON_BLOCKING_GETADDRINFO
  5258. if (timeout_sec <= 0) {
  5259. // No timeout specified, use standard getaddrinfo
  5260. return getaddrinfo(node, service, hints, res);
  5261. }
  5262. #ifdef _WIN32
  5263. // Windows-specific implementation using GetAddrInfoEx with overlapped I/O
  5264. OVERLAPPED overlapped = {};
  5265. HANDLE event = CreateEventW(nullptr, TRUE, FALSE, nullptr);
  5266. if (!event) { return EAI_FAIL; }
  5267. overlapped.hEvent = event;
  5268. PADDRINFOEXW result_addrinfo = nullptr;
  5269. HANDLE cancel_handle = nullptr;
  5270. ADDRINFOEXW hints_ex = {};
  5271. if (hints) {
  5272. hints_ex.ai_flags = hints->ai_flags;
  5273. hints_ex.ai_family = hints->ai_family;
  5274. hints_ex.ai_socktype = hints->ai_socktype;
  5275. hints_ex.ai_protocol = hints->ai_protocol;
  5276. }
  5277. auto wnode = u8string_to_wstring(node);
  5278. auto wservice = u8string_to_wstring(service);
  5279. auto ret = ::GetAddrInfoExW(wnode.data(), wservice.data(), NS_DNS, nullptr,
  5280. hints ? &hints_ex : nullptr, &result_addrinfo,
  5281. nullptr, &overlapped, nullptr, &cancel_handle);
  5282. if (ret == WSA_IO_PENDING) {
  5283. auto wait_result =
  5284. ::WaitForSingleObject(event, static_cast<DWORD>(timeout_sec * 1000));
  5285. if (wait_result == WAIT_TIMEOUT) {
  5286. if (cancel_handle) { ::GetAddrInfoExCancel(&cancel_handle); }
  5287. ::CloseHandle(event);
  5288. return EAI_AGAIN;
  5289. }
  5290. DWORD bytes_returned;
  5291. if (!::GetOverlappedResult((HANDLE)INVALID_SOCKET, &overlapped,
  5292. &bytes_returned, FALSE)) {
  5293. ::CloseHandle(event);
  5294. return ::WSAGetLastError();
  5295. }
  5296. }
  5297. ::CloseHandle(event);
  5298. if (ret == NO_ERROR || ret == WSA_IO_PENDING) {
  5299. *res = reinterpret_cast<struct addrinfo *>(result_addrinfo);
  5300. return 0;
  5301. }
  5302. return ret;
  5303. #elif TARGET_OS_MAC && defined(__clang__)
  5304. if (!node) { return EAI_NONAME; }
  5305. // macOS implementation using CFHost API for asynchronous DNS resolution
  5306. CFStringRef hostname_ref = CFStringCreateWithCString(
  5307. kCFAllocatorDefault, node, kCFStringEncodingUTF8);
  5308. if (!hostname_ref) { return EAI_MEMORY; }
  5309. CFHostRef host_ref = CFHostCreateWithName(kCFAllocatorDefault, hostname_ref);
  5310. CFRelease(hostname_ref);
  5311. if (!host_ref) { return EAI_MEMORY; }
  5312. // Set up context for callback
  5313. struct CFHostContext {
  5314. bool completed = false;
  5315. bool success = false;
  5316. CFArrayRef addresses = nullptr;
  5317. std::mutex mutex;
  5318. std::condition_variable cv;
  5319. } context;
  5320. CFHostClientContext client_context;
  5321. memset(&client_context, 0, sizeof(client_context));
  5322. client_context.info = &context;
  5323. // Set callback
  5324. auto callback = [](CFHostRef theHost, CFHostInfoType /*typeInfo*/,
  5325. const CFStreamError *error, void *info) {
  5326. auto ctx = static_cast<CFHostContext *>(info);
  5327. std::lock_guard<std::mutex> lock(ctx->mutex);
  5328. if (error && error->error != 0) {
  5329. ctx->success = false;
  5330. } else {
  5331. Boolean hasBeenResolved;
  5332. ctx->addresses = CFHostGetAddressing(theHost, &hasBeenResolved);
  5333. if (ctx->addresses && hasBeenResolved) {
  5334. CFRetain(ctx->addresses);
  5335. ctx->success = true;
  5336. } else {
  5337. ctx->success = false;
  5338. }
  5339. }
  5340. ctx->completed = true;
  5341. ctx->cv.notify_one();
  5342. };
  5343. if (!CFHostSetClient(host_ref, callback, &client_context)) {
  5344. CFRelease(host_ref);
  5345. return EAI_SYSTEM;
  5346. }
  5347. // Schedule on run loop
  5348. CFRunLoopRef run_loop = CFRunLoopGetCurrent();
  5349. CFHostScheduleWithRunLoop(host_ref, run_loop, kCFRunLoopDefaultMode);
  5350. // Start resolution
  5351. CFStreamError stream_error;
  5352. if (!CFHostStartInfoResolution(host_ref, kCFHostAddresses, &stream_error)) {
  5353. CFHostUnscheduleFromRunLoop(host_ref, run_loop, kCFRunLoopDefaultMode);
  5354. CFRelease(host_ref);
  5355. return EAI_FAIL;
  5356. }
  5357. // Wait for completion with timeout
  5358. auto timeout_time =
  5359. std::chrono::steady_clock::now() + std::chrono::seconds(timeout_sec);
  5360. bool timed_out = false;
  5361. {
  5362. std::unique_lock<std::mutex> lock(context.mutex);
  5363. while (!context.completed) {
  5364. auto now = std::chrono::steady_clock::now();
  5365. if (now >= timeout_time) {
  5366. timed_out = true;
  5367. break;
  5368. }
  5369. // Run the runloop for a short time
  5370. lock.unlock();
  5371. CFRunLoopRunInMode(kCFRunLoopDefaultMode, 0.1, true);
  5372. lock.lock();
  5373. }
  5374. }
  5375. // Clean up
  5376. CFHostUnscheduleFromRunLoop(host_ref, run_loop, kCFRunLoopDefaultMode);
  5377. CFHostSetClient(host_ref, nullptr, nullptr);
  5378. if (timed_out || !context.completed) {
  5379. CFHostCancelInfoResolution(host_ref, kCFHostAddresses);
  5380. CFRelease(host_ref);
  5381. return EAI_AGAIN;
  5382. }
  5383. if (!context.success || !context.addresses) {
  5384. CFRelease(host_ref);
  5385. return EAI_NODATA;
  5386. }
  5387. // Convert CFArray to addrinfo
  5388. CFIndex count = CFArrayGetCount(context.addresses);
  5389. if (count == 0) {
  5390. CFRelease(context.addresses);
  5391. CFRelease(host_ref);
  5392. return EAI_NODATA;
  5393. }
  5394. struct addrinfo *result_addrinfo = nullptr;
  5395. struct addrinfo **current = &result_addrinfo;
  5396. for (CFIndex i = 0; i < count; i++) {
  5397. CFDataRef addr_data =
  5398. static_cast<CFDataRef>(CFArrayGetValueAtIndex(context.addresses, i));
  5399. if (!addr_data) continue;
  5400. const struct sockaddr *sockaddr_ptr =
  5401. reinterpret_cast<const struct sockaddr *>(CFDataGetBytePtr(addr_data));
  5402. socklen_t sockaddr_len = static_cast<socklen_t>(CFDataGetLength(addr_data));
  5403. // Allocate addrinfo structure
  5404. *current = static_cast<struct addrinfo *>(malloc(sizeof(struct addrinfo)));
  5405. if (!*current) {
  5406. freeaddrinfo(result_addrinfo);
  5407. CFRelease(context.addresses);
  5408. CFRelease(host_ref);
  5409. return EAI_MEMORY;
  5410. }
  5411. memset(*current, 0, sizeof(struct addrinfo));
  5412. // Set up addrinfo fields
  5413. (*current)->ai_family = sockaddr_ptr->sa_family;
  5414. (*current)->ai_socktype = hints ? hints->ai_socktype : SOCK_STREAM;
  5415. (*current)->ai_protocol = hints ? hints->ai_protocol : IPPROTO_TCP;
  5416. (*current)->ai_addrlen = sockaddr_len;
  5417. // Copy sockaddr
  5418. (*current)->ai_addr = static_cast<struct sockaddr *>(malloc(sockaddr_len));
  5419. if (!(*current)->ai_addr) {
  5420. freeaddrinfo(result_addrinfo);
  5421. CFRelease(context.addresses);
  5422. CFRelease(host_ref);
  5423. return EAI_MEMORY;
  5424. }
  5425. memcpy((*current)->ai_addr, sockaddr_ptr, sockaddr_len);
  5426. // Set port if service is specified
  5427. if (service && *service) {
  5428. int port = 0;
  5429. if (parse_port(service, strlen(service), port)) {
  5430. if (sockaddr_ptr->sa_family == AF_INET) {
  5431. reinterpret_cast<struct sockaddr_in *>((*current)->ai_addr)
  5432. ->sin_port = htons(static_cast<uint16_t>(port));
  5433. } else if (sockaddr_ptr->sa_family == AF_INET6) {
  5434. reinterpret_cast<struct sockaddr_in6 *>((*current)->ai_addr)
  5435. ->sin6_port = htons(static_cast<uint16_t>(port));
  5436. }
  5437. }
  5438. }
  5439. current = &((*current)->ai_next);
  5440. }
  5441. CFRelease(context.addresses);
  5442. CFRelease(host_ref);
  5443. *res = result_addrinfo;
  5444. return 0;
  5445. #elif defined(_GNU_SOURCE) && defined(__GLIBC__) && \
  5446. (__GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ >= 2))
  5447. // #2431: gai_cancel() is non-blocking and may return EAI_NOTCANCELED while
  5448. // the resolver worker still references the stack-local gaicb. The cancel
  5449. // path therefore waits (gai_suspend with no timeout) for the worker to
  5450. // actually finish before letting the stack frame go. The trade-off is that
  5451. // a wedged DNS server can hold this thread for the system resolver timeout
  5452. // (~30s by default) past the caller's connection timeout.
  5453. struct gaicb request {};
  5454. struct gaicb *requests[1] = {&request};
  5455. struct sigevent sevp {};
  5456. struct timespec timeout {
  5457. timeout_sec, 0
  5458. };
  5459. request.ar_name = node;
  5460. request.ar_service = service;
  5461. request.ar_request = hints;
  5462. sevp.sigev_notify = SIGEV_NONE;
  5463. int rc = getaddrinfo_a(GAI_NOWAIT, requests, 1, &sevp);
  5464. if (rc != 0) { return rc; }
  5465. auto cleanup = scope_exit([&] {
  5466. if (request.ar_result) { freeaddrinfo(request.ar_result); }
  5467. });
  5468. int wait_result = gai_suspend(requests, 1, &timeout);
  5469. if (wait_result == 0 || wait_result == EAI_ALLDONE) {
  5470. int gai_result = gai_error(&request);
  5471. if (gai_result == 0) {
  5472. *res = request.ar_result;
  5473. request.ar_result = nullptr;
  5474. return 0;
  5475. }
  5476. return gai_result;
  5477. }
  5478. gai_cancel(&request);
  5479. while (gai_error(&request) == EAI_INPROGRESS) {
  5480. gai_suspend(requests, 1, nullptr);
  5481. }
  5482. return wait_result;
  5483. #else
  5484. // Fallback implementation using thread-based timeout for other Unix systems.
  5485. struct GetAddrInfoState {
  5486. ~GetAddrInfoState() {
  5487. if (info) { freeaddrinfo(info); }
  5488. }
  5489. std::mutex mutex;
  5490. std::condition_variable result_cv;
  5491. bool completed = false;
  5492. int result = EAI_SYSTEM;
  5493. std::string node;
  5494. std::string service;
  5495. struct addrinfo hints;
  5496. struct addrinfo *info = nullptr;
  5497. };
  5498. // Allocate on the heap, so the resolver thread can keep using the data.
  5499. auto state = std::make_shared<GetAddrInfoState>();
  5500. if (node) { state->node = node; }
  5501. state->service = service;
  5502. state->hints = *hints;
  5503. std::thread resolve_thread([state]() {
  5504. auto thread_result =
  5505. getaddrinfo(state->node.c_str(), state->service.c_str(), &state->hints,
  5506. &state->info);
  5507. std::lock_guard<std::mutex> lock(state->mutex);
  5508. state->result = thread_result;
  5509. state->completed = true;
  5510. state->result_cv.notify_one();
  5511. });
  5512. // Wait for completion or timeout
  5513. std::unique_lock<std::mutex> lock(state->mutex);
  5514. auto finished =
  5515. state->result_cv.wait_for(lock, std::chrono::seconds(timeout_sec),
  5516. [&] { return state->completed; });
  5517. if (finished) {
  5518. // Operation completed within timeout
  5519. resolve_thread.join();
  5520. *res = state->info;
  5521. state->info = nullptr; // Pass ownership to caller
  5522. return state->result;
  5523. } else {
  5524. // Timeout occurred
  5525. resolve_thread.detach(); // Let the thread finish in background
  5526. return EAI_AGAIN; // Return timeout error
  5527. }
  5528. #endif
  5529. #else
  5530. (void)(timeout_sec); // Unused parameter for non-blocking getaddrinfo
  5531. return getaddrinfo(node, service, hints, res);
  5532. #endif
  5533. }
  5534. template <typename BindOrConnect>
  5535. socket_t create_socket(const std::string &host, const std::string &ip, int port,
  5536. int address_family, int socket_flags, bool tcp_nodelay,
  5537. bool ipv6_v6only, SocketOptions socket_options,
  5538. BindOrConnect bind_or_connect, time_t timeout_sec = 0) {
  5539. // Get address info
  5540. const char *node = nullptr;
  5541. struct addrinfo hints;
  5542. struct addrinfo *result;
  5543. memset(&hints, 0, sizeof(struct addrinfo));
  5544. hints.ai_socktype = SOCK_STREAM;
  5545. hints.ai_protocol = IPPROTO_IP;
  5546. if (!ip.empty()) {
  5547. node = ip.c_str();
  5548. // Ask getaddrinfo to convert IP in c-string to address
  5549. hints.ai_family = AF_UNSPEC;
  5550. hints.ai_flags = AI_NUMERICHOST;
  5551. } else {
  5552. if (!host.empty()) { node = host.c_str(); }
  5553. hints.ai_family = address_family;
  5554. hints.ai_flags = socket_flags;
  5555. }
  5556. #if !defined(_WIN32) || defined(CPPHTTPLIB_HAVE_AFUNIX_H)
  5557. if (hints.ai_family == AF_UNIX) {
  5558. const auto addrlen = host.length();
  5559. if (addrlen > sizeof(sockaddr_un::sun_path)) { return INVALID_SOCKET; }
  5560. #ifdef SOCK_CLOEXEC
  5561. auto sock = socket(hints.ai_family, hints.ai_socktype | SOCK_CLOEXEC,
  5562. hints.ai_protocol);
  5563. #else
  5564. auto sock = socket(hints.ai_family, hints.ai_socktype, hints.ai_protocol);
  5565. #endif
  5566. if (sock != INVALID_SOCKET) {
  5567. sockaddr_un addr{};
  5568. addr.sun_family = AF_UNIX;
  5569. auto unescaped_host = unescape_abstract_namespace_unix_domain(host);
  5570. std::copy(unescaped_host.begin(), unescaped_host.end(), addr.sun_path);
  5571. hints.ai_addr = reinterpret_cast<sockaddr *>(&addr);
  5572. hints.ai_addrlen = static_cast<socklen_t>(
  5573. sizeof(addr) - sizeof(addr.sun_path) + addrlen);
  5574. #ifndef SOCK_CLOEXEC
  5575. #ifndef _WIN32
  5576. fcntl(sock, F_SETFD, FD_CLOEXEC);
  5577. #endif
  5578. #endif
  5579. if (socket_options) { socket_options(sock); }
  5580. #ifdef _WIN32
  5581. // Setting SO_REUSEADDR seems not to work well with AF_UNIX on windows, so
  5582. // remove the option.
  5583. set_socket_opt(sock, SOL_SOCKET, SO_REUSEADDR, 0);
  5584. #endif
  5585. bool dummy;
  5586. if (!bind_or_connect(sock, hints, dummy)) {
  5587. close_socket(sock);
  5588. sock = INVALID_SOCKET;
  5589. }
  5590. }
  5591. return sock;
  5592. }
  5593. #endif
  5594. auto service = std::to_string(port);
  5595. if (getaddrinfo_with_timeout(node, service.c_str(), &hints, &result,
  5596. timeout_sec)) {
  5597. #if defined __linux__ && !defined __ANDROID__
  5598. res_init();
  5599. #endif
  5600. return INVALID_SOCKET;
  5601. }
  5602. auto se = detail::scope_exit([&] { freeaddrinfo(result); });
  5603. for (auto rp = result; rp; rp = rp->ai_next) {
  5604. // Create a socket
  5605. #ifdef _WIN32
  5606. auto sock =
  5607. WSASocketW(rp->ai_family, rp->ai_socktype, rp->ai_protocol, nullptr, 0,
  5608. WSA_FLAG_NO_HANDLE_INHERIT | WSA_FLAG_OVERLAPPED);
  5609. /**
  5610. * Since the WSA_FLAG_NO_HANDLE_INHERIT is only supported on Windows 7 SP1
  5611. * and above the socket creation fails on older Windows Systems.
  5612. *
  5613. * Let's try to create a socket the old way in this case.
  5614. *
  5615. * Reference:
  5616. * https://docs.microsoft.com/en-us/windows/win32/api/winsock2/nf-winsock2-wsasocketa
  5617. *
  5618. * WSA_FLAG_NO_HANDLE_INHERIT:
  5619. * This flag is supported on Windows 7 with SP1, Windows Server 2008 R2 with
  5620. * SP1, and later
  5621. *
  5622. */
  5623. if (sock == INVALID_SOCKET) {
  5624. sock = socket(rp->ai_family, rp->ai_socktype, rp->ai_protocol);
  5625. }
  5626. #else
  5627. #ifdef SOCK_CLOEXEC
  5628. auto sock =
  5629. socket(rp->ai_family, rp->ai_socktype | SOCK_CLOEXEC, rp->ai_protocol);
  5630. #else
  5631. auto sock = socket(rp->ai_family, rp->ai_socktype, rp->ai_protocol);
  5632. #endif
  5633. #endif
  5634. if (sock == INVALID_SOCKET) { continue; }
  5635. #if !defined _WIN32 && !defined SOCK_CLOEXEC
  5636. if (fcntl(sock, F_SETFD, FD_CLOEXEC) == -1) {
  5637. close_socket(sock);
  5638. continue;
  5639. }
  5640. #endif
  5641. if (tcp_nodelay) { set_socket_opt(sock, IPPROTO_TCP, TCP_NODELAY, 1); }
  5642. if (rp->ai_family == AF_INET6) {
  5643. set_socket_opt(sock, IPPROTO_IPV6, IPV6_V6ONLY, ipv6_v6only ? 1 : 0);
  5644. }
  5645. if (socket_options) { socket_options(sock); }
  5646. // bind or connect
  5647. auto quit = false;
  5648. if (bind_or_connect(sock, *rp, quit)) { return sock; }
  5649. close_socket(sock);
  5650. if (quit) { break; }
  5651. }
  5652. return INVALID_SOCKET;
  5653. }
  5654. inline void set_nonblocking(socket_t sock, bool nonblocking) {
  5655. #ifdef _WIN32
  5656. auto flags = nonblocking ? 1UL : 0UL;
  5657. ioctlsocket(sock, FIONBIO, &flags);
  5658. #else
  5659. auto flags = fcntl(sock, F_GETFL, 0);
  5660. fcntl(sock, F_SETFL,
  5661. nonblocking ? (flags | O_NONBLOCK) : (flags & (~O_NONBLOCK)));
  5662. #endif
  5663. }
  5664. inline bool is_connection_error() {
  5665. #ifdef _WIN32
  5666. return WSAGetLastError() != WSAEWOULDBLOCK;
  5667. #else
  5668. return errno != EINPROGRESS;
  5669. #endif
  5670. }
  5671. inline bool bind_ip_address(socket_t sock, const std::string &host) {
  5672. struct addrinfo hints;
  5673. struct addrinfo *result;
  5674. memset(&hints, 0, sizeof(struct addrinfo));
  5675. hints.ai_family = AF_UNSPEC;
  5676. hints.ai_socktype = SOCK_STREAM;
  5677. hints.ai_protocol = 0;
  5678. if (getaddrinfo_with_timeout(host.c_str(), "0", &hints, &result, 0)) {
  5679. return false;
  5680. }
  5681. auto se = detail::scope_exit([&] { freeaddrinfo(result); });
  5682. auto ret = false;
  5683. for (auto rp = result; rp; rp = rp->ai_next) {
  5684. const auto &ai = *rp;
  5685. if (!::bind(sock, ai.ai_addr, static_cast<socklen_t>(ai.ai_addrlen))) {
  5686. ret = true;
  5687. break;
  5688. }
  5689. }
  5690. return ret;
  5691. }
  5692. #if !defined _WIN32 && !defined ANDROID && !defined _AIX && !defined __MVS__
  5693. #define USE_IF2IP
  5694. #endif
  5695. #ifdef USE_IF2IP
  5696. inline std::string if2ip(int address_family, const std::string &ifn) {
  5697. struct ifaddrs *ifap;
  5698. getifaddrs(&ifap);
  5699. auto se = detail::scope_exit([&] { freeifaddrs(ifap); });
  5700. std::string addr_candidate;
  5701. for (auto ifa = ifap; ifa; ifa = ifa->ifa_next) {
  5702. if (ifa->ifa_addr && ifn == ifa->ifa_name &&
  5703. (AF_UNSPEC == address_family ||
  5704. ifa->ifa_addr->sa_family == address_family)) {
  5705. if (ifa->ifa_addr->sa_family == AF_INET) {
  5706. auto sa = reinterpret_cast<struct sockaddr_in *>(ifa->ifa_addr);
  5707. char buf[INET_ADDRSTRLEN];
  5708. if (inet_ntop(AF_INET, &sa->sin_addr, buf, INET_ADDRSTRLEN)) {
  5709. return std::string(buf, INET_ADDRSTRLEN);
  5710. }
  5711. } else if (ifa->ifa_addr->sa_family == AF_INET6) {
  5712. auto sa = reinterpret_cast<struct sockaddr_in6 *>(ifa->ifa_addr);
  5713. if (!IN6_IS_ADDR_LINKLOCAL(&sa->sin6_addr)) {
  5714. char buf[INET6_ADDRSTRLEN] = {};
  5715. if (inet_ntop(AF_INET6, &sa->sin6_addr, buf, INET6_ADDRSTRLEN)) {
  5716. // equivalent to mac's IN6_IS_ADDR_UNIQUE_LOCAL
  5717. auto s6_addr_head = sa->sin6_addr.s6_addr[0];
  5718. if (s6_addr_head == 0xfc || s6_addr_head == 0xfd) {
  5719. addr_candidate = std::string(buf, INET6_ADDRSTRLEN);
  5720. } else {
  5721. return std::string(buf, INET6_ADDRSTRLEN);
  5722. }
  5723. }
  5724. }
  5725. }
  5726. }
  5727. }
  5728. return addr_candidate;
  5729. }
  5730. #endif
  5731. inline socket_t create_client_socket(
  5732. const std::string &host, const std::string &ip, int port,
  5733. int address_family, bool tcp_nodelay, bool ipv6_v6only,
  5734. SocketOptions socket_options, time_t connection_timeout_sec,
  5735. time_t connection_timeout_usec, time_t read_timeout_sec,
  5736. time_t read_timeout_usec, time_t write_timeout_sec,
  5737. time_t write_timeout_usec, const std::string &intf, Error &error) {
  5738. auto sock = create_socket(
  5739. host, ip, port, address_family, 0, tcp_nodelay, ipv6_v6only,
  5740. std::move(socket_options),
  5741. [&](socket_t sock2, struct addrinfo &ai, bool &quit) -> bool {
  5742. if (!intf.empty()) {
  5743. #ifdef USE_IF2IP
  5744. auto ip_from_if = if2ip(address_family, intf);
  5745. if (ip_from_if.empty()) { ip_from_if = intf; }
  5746. if (!bind_ip_address(sock2, ip_from_if)) {
  5747. error = Error::BindIPAddress;
  5748. return false;
  5749. }
  5750. #endif
  5751. }
  5752. set_nonblocking(sock2, true);
  5753. auto ret =
  5754. ::connect(sock2, ai.ai_addr, static_cast<socklen_t>(ai.ai_addrlen));
  5755. if (ret < 0) {
  5756. if (is_connection_error()) {
  5757. error = Error::Connection;
  5758. return false;
  5759. }
  5760. error = wait_until_socket_is_ready(sock2, connection_timeout_sec,
  5761. connection_timeout_usec);
  5762. if (error != Error::Success) {
  5763. if (error == Error::ConnectionTimeout) { quit = true; }
  5764. return false;
  5765. }
  5766. }
  5767. set_nonblocking(sock2, false);
  5768. set_socket_opt_time(sock2, SOL_SOCKET, SO_RCVTIMEO, read_timeout_sec,
  5769. read_timeout_usec);
  5770. set_socket_opt_time(sock2, SOL_SOCKET, SO_SNDTIMEO, write_timeout_sec,
  5771. write_timeout_usec);
  5772. error = Error::Success;
  5773. return true;
  5774. },
  5775. connection_timeout_sec); // Pass DNS timeout
  5776. if (sock != INVALID_SOCKET) {
  5777. error = Error::Success;
  5778. } else {
  5779. if (error == Error::Success) { error = Error::Connection; }
  5780. }
  5781. return sock;
  5782. }
  5783. inline bool get_ip_and_port(const struct sockaddr_storage &addr,
  5784. socklen_t addr_len, std::string &ip, int &port) {
  5785. if (addr.ss_family == AF_INET) {
  5786. port = ntohs(reinterpret_cast<const struct sockaddr_in *>(&addr)->sin_port);
  5787. } else if (addr.ss_family == AF_INET6) {
  5788. port =
  5789. ntohs(reinterpret_cast<const struct sockaddr_in6 *>(&addr)->sin6_port);
  5790. } else {
  5791. return false;
  5792. }
  5793. std::array<char, NI_MAXHOST> ipstr{};
  5794. if (getnameinfo(reinterpret_cast<const struct sockaddr *>(&addr), addr_len,
  5795. ipstr.data(), static_cast<socklen_t>(ipstr.size()), nullptr,
  5796. 0, NI_NUMERICHOST)) {
  5797. return false;
  5798. }
  5799. ip = ipstr.data();
  5800. return true;
  5801. }
  5802. inline void get_local_ip_and_port(socket_t sock, std::string &ip, int &port) {
  5803. struct sockaddr_storage addr;
  5804. socklen_t addr_len = sizeof(addr);
  5805. if (!getsockname(sock, reinterpret_cast<struct sockaddr *>(&addr),
  5806. &addr_len)) {
  5807. get_ip_and_port(addr, addr_len, ip, port);
  5808. }
  5809. }
  5810. inline void get_remote_ip_and_port(socket_t sock, std::string &ip, int &port) {
  5811. struct sockaddr_storage addr;
  5812. socklen_t addr_len = sizeof(addr);
  5813. if (!getpeername(sock, reinterpret_cast<struct sockaddr *>(&addr),
  5814. &addr_len)) {
  5815. #ifndef _WIN32
  5816. if (addr.ss_family == AF_UNIX) {
  5817. #if defined(__linux__)
  5818. struct ucred ucred;
  5819. socklen_t len = sizeof(ucred);
  5820. if (getsockopt(sock, SOL_SOCKET, SO_PEERCRED, &ucred, &len) == 0) {
  5821. port = ucred.pid;
  5822. }
  5823. #elif defined(SOL_LOCAL) && defined(SO_PEERPID)
  5824. pid_t pid;
  5825. socklen_t len = sizeof(pid);
  5826. if (getsockopt(sock, SOL_LOCAL, SO_PEERPID, &pid, &len) == 0) {
  5827. port = pid;
  5828. }
  5829. #endif
  5830. return;
  5831. }
  5832. #endif
  5833. get_ip_and_port(addr, addr_len, ip, port);
  5834. }
  5835. }
  5836. // Recursive form retained so operator""_t below can compute hashes for
  5837. // switch-case labels at compile time (C++11 constexpr forbids loops). Do not
  5838. // call from runtime paths with arbitrary-length inputs — use str2tag()
  5839. // instead, which is iterative and stack-safe.
  5840. inline constexpr unsigned int str2tag_core(const char *s, size_t l,
  5841. unsigned int h) {
  5842. return (l == 0)
  5843. ? h
  5844. : str2tag_core(
  5845. s + 1, l - 1,
  5846. // Unsets the 6 high bits of h, therefore no overflow happens
  5847. (((std::numeric_limits<unsigned int>::max)() >> 6) &
  5848. h * 33) ^
  5849. static_cast<unsigned char>(*s));
  5850. }
  5851. inline unsigned int str2tag(const std::string &s) {
  5852. // Iterative form of str2tag_core: the recursive constexpr version is kept
  5853. // for compile-time UDL evaluation of short string literals, but at runtime
  5854. // we may receive arbitrarily long inputs (e.g. fuzzed Content-Type) that
  5855. // would blow the stack with one frame per character.
  5856. unsigned int h = 0;
  5857. for (auto c : s) {
  5858. h = (((std::numeric_limits<unsigned int>::max)() >> 6) & h * 33) ^
  5859. static_cast<unsigned char>(c);
  5860. }
  5861. return h;
  5862. }
  5863. namespace udl {
  5864. inline constexpr unsigned int operator""_t(const char *s, size_t l) {
  5865. return str2tag_core(s, l, 0);
  5866. }
  5867. } // namespace udl
  5868. inline std::string
  5869. find_content_type(const std::string &path,
  5870. const std::map<std::string, std::string> &user_data,
  5871. const std::string &default_content_type) {
  5872. auto ext = file_extension(path);
  5873. auto it = user_data.find(ext);
  5874. if (it != user_data.end()) { return it->second; }
  5875. using udl::operator""_t;
  5876. switch (str2tag(ext)) {
  5877. default: return default_content_type;
  5878. case "css"_t: return "text/css";
  5879. case "csv"_t: return "text/csv";
  5880. case "htm"_t:
  5881. case "html"_t: return "text/html";
  5882. case "js"_t:
  5883. case "mjs"_t: return "text/javascript";
  5884. case "txt"_t: return "text/plain";
  5885. case "vtt"_t: return "text/vtt";
  5886. case "apng"_t: return "image/apng";
  5887. case "avif"_t: return "image/avif";
  5888. case "bmp"_t: return "image/bmp";
  5889. case "gif"_t: return "image/gif";
  5890. case "png"_t: return "image/png";
  5891. case "svg"_t: return "image/svg+xml";
  5892. case "webp"_t: return "image/webp";
  5893. case "ico"_t: return "image/x-icon";
  5894. case "tif"_t: return "image/tiff";
  5895. case "tiff"_t: return "image/tiff";
  5896. case "jpg"_t:
  5897. case "jpeg"_t: return "image/jpeg";
  5898. case "mp4"_t: return "video/mp4";
  5899. case "mpeg"_t: return "video/mpeg";
  5900. case "webm"_t: return "video/webm";
  5901. case "mp3"_t: return "audio/mp3";
  5902. case "mpga"_t: return "audio/mpeg";
  5903. case "weba"_t: return "audio/webm";
  5904. case "wav"_t: return "audio/wave";
  5905. case "otf"_t: return "font/otf";
  5906. case "ttf"_t: return "font/ttf";
  5907. case "woff"_t: return "font/woff";
  5908. case "woff2"_t: return "font/woff2";
  5909. case "7z"_t: return "application/x-7z-compressed";
  5910. case "atom"_t: return "application/atom+xml";
  5911. case "pdf"_t: return "application/pdf";
  5912. case "json"_t: return "application/json";
  5913. case "rss"_t: return "application/rss+xml";
  5914. case "tar"_t: return "application/x-tar";
  5915. case "xht"_t:
  5916. case "xhtml"_t: return "application/xhtml+xml";
  5917. case "xslt"_t: return "application/xslt+xml";
  5918. case "xml"_t: return "application/xml";
  5919. case "gz"_t: return "application/gzip";
  5920. case "zip"_t: return "application/zip";
  5921. case "wasm"_t: return "application/wasm";
  5922. }
  5923. }
  5924. inline std::string
  5925. extract_media_type(const std::string &content_type,
  5926. std::map<std::string, std::string> *params = nullptr) {
  5927. // Extract type/subtype from Content-Type value (RFC 2045)
  5928. // e.g. "application/json; charset=utf-8" -> "application/json"
  5929. auto media_type = content_type;
  5930. auto semicolon_pos = media_type.find(';');
  5931. if (semicolon_pos != std::string::npos) {
  5932. auto param_str = media_type.substr(semicolon_pos + 1);
  5933. media_type = media_type.substr(0, semicolon_pos);
  5934. if (params) {
  5935. // Parse parameters: key=value pairs separated by ';'
  5936. split(param_str.data(), param_str.data() + param_str.size(), ';',
  5937. [&](const char *b, const char *e) {
  5938. std::string key;
  5939. std::string val;
  5940. split(b, e, '=', [&](const char *b2, const char *e2) {
  5941. if (key.empty()) {
  5942. key.assign(b2, e2);
  5943. } else {
  5944. val.assign(b2, e2);
  5945. }
  5946. });
  5947. if (!key.empty()) {
  5948. params->emplace(trim_copy(key), trim_double_quotes_copy(val));
  5949. }
  5950. });
  5951. }
  5952. }
  5953. // Trim whitespace from media type
  5954. return trim_copy(media_type);
  5955. }
  5956. inline bool can_compress_content_type(const std::string &content_type) {
  5957. using udl::operator""_t;
  5958. auto mime_type = extract_media_type(content_type);
  5959. auto tag = str2tag(mime_type);
  5960. switch (tag) {
  5961. case "image/svg+xml"_t:
  5962. case "application/javascript"_t:
  5963. case "application/x-javascript"_t:
  5964. case "application/json"_t:
  5965. case "application/ld+json"_t:
  5966. case "application/xml"_t:
  5967. case "application/xhtml+xml"_t:
  5968. case "application/rss+xml"_t:
  5969. case "application/atom+xml"_t:
  5970. case "application/xslt+xml"_t:
  5971. case "application/protobuf"_t: return true;
  5972. case "text/event-stream"_t: return false;
  5973. default: return !mime_type.rfind("text/", 0);
  5974. }
  5975. }
  5976. inline bool parse_quality(const char *b, const char *e, std::string &token,
  5977. double &quality) {
  5978. quality = 1.0;
  5979. token.clear();
  5980. // Split on first ';': left = token name, right = parameters
  5981. const char *params_b = nullptr;
  5982. std::size_t params_len = 0;
  5983. divide(
  5984. b, static_cast<std::size_t>(e - b), ';',
  5985. [&](const char *lb, std::size_t llen, const char *rb, std::size_t rlen) {
  5986. auto r = trim(lb, lb + llen, 0, llen);
  5987. if (r.first < r.second) { token.assign(lb + r.first, lb + r.second); }
  5988. params_b = rb;
  5989. params_len = rlen;
  5990. });
  5991. if (token.empty()) { return false; }
  5992. if (params_len == 0) { return true; }
  5993. // Scan parameters for q= (stops on first match)
  5994. bool invalid = false;
  5995. split_find(params_b, params_b + params_len, ';',
  5996. (std::numeric_limits<size_t>::max)(),
  5997. [&](const char *pb, const char *pe) -> bool {
  5998. // Match exactly "q=" or "Q=" (not "query=" etc.)
  5999. auto len = static_cast<size_t>(pe - pb);
  6000. if (len < 2) { return false; }
  6001. if ((pb[0] != 'q' && pb[0] != 'Q') || pb[1] != '=') {
  6002. return false;
  6003. }
  6004. // Trim the value portion
  6005. auto r = trim(pb, pe, 2, len);
  6006. if (r.first >= r.second) {
  6007. invalid = true;
  6008. return true;
  6009. }
  6010. double v = 0.0;
  6011. auto res = from_chars(pb + r.first, pb + r.second, v);
  6012. if (res.ec != std::errc{} || v < 0.0 || v > 1.0) {
  6013. invalid = true;
  6014. return true;
  6015. }
  6016. quality = v;
  6017. return true;
  6018. });
  6019. return !invalid;
  6020. }
  6021. inline EncodingType encoding_type(const Request &req, const Response &res) {
  6022. if (!can_compress_content_type(res.get_header_value("Content-Type"))) {
  6023. return EncodingType::None;
  6024. }
  6025. const auto &s = req.get_header_value("Accept-Encoding");
  6026. if (s.empty()) { return EncodingType::None; }
  6027. // Single-pass: iterate tokens and track the best supported encoding.
  6028. // Server preference breaks ties (br > gzip > zstd).
  6029. EncodingType best = EncodingType::None;
  6030. double best_q = 0.0; // q=0 means "not acceptable"
  6031. // Server preference: Brotli > Gzip > Zstd (lower = more preferred)
  6032. auto priority = [](EncodingType t) -> int {
  6033. switch (t) {
  6034. case EncodingType::Brotli: return 0;
  6035. case EncodingType::Gzip: return 1;
  6036. case EncodingType::Zstd: return 2;
  6037. default: return 3;
  6038. }
  6039. };
  6040. std::string name;
  6041. split(s.data(), s.data() + s.size(), ',', [&](const char *b, const char *e) {
  6042. double quality = 1.0;
  6043. if (!parse_quality(b, e, name, quality)) { return; }
  6044. if (quality <= 0.0) { return; }
  6045. EncodingType type = EncodingType::None;
  6046. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  6047. if (case_ignore::equal(name, "br")) { type = EncodingType::Brotli; }
  6048. #endif
  6049. #ifdef CPPHTTPLIB_ZLIB_SUPPORT
  6050. if (type == EncodingType::None && case_ignore::equal(name, "gzip")) {
  6051. type = EncodingType::Gzip;
  6052. }
  6053. #endif
  6054. #ifdef CPPHTTPLIB_ZSTD_SUPPORT
  6055. if (type == EncodingType::None && case_ignore::equal(name, "zstd")) {
  6056. type = EncodingType::Zstd;
  6057. }
  6058. #endif
  6059. if (type == EncodingType::None) { return; }
  6060. // Higher q-value wins; for equal q, server preference breaks ties
  6061. if (quality > best_q ||
  6062. (quality == best_q && priority(type) < priority(best))) {
  6063. best_q = quality;
  6064. best = type;
  6065. }
  6066. });
  6067. return best;
  6068. }
  6069. inline std::unique_ptr<compressor> make_compressor(EncodingType type) {
  6070. #ifdef CPPHTTPLIB_ZLIB_SUPPORT
  6071. if (type == EncodingType::Gzip) {
  6072. return detail::make_unique<gzip_compressor>();
  6073. }
  6074. #endif
  6075. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  6076. if (type == EncodingType::Brotli) {
  6077. return detail::make_unique<brotli_compressor>();
  6078. }
  6079. #endif
  6080. #ifdef CPPHTTPLIB_ZSTD_SUPPORT
  6081. if (type == EncodingType::Zstd) {
  6082. return detail::make_unique<zstd_compressor>();
  6083. }
  6084. #endif
  6085. (void)type;
  6086. return nullptr;
  6087. }
  6088. inline const char *encoding_name(EncodingType type) {
  6089. switch (type) {
  6090. case EncodingType::Gzip: return "gzip";
  6091. case EncodingType::Brotli: return "br";
  6092. case EncodingType::Zstd: return "zstd";
  6093. default: return "";
  6094. }
  6095. }
  6096. inline bool nocompressor::compress(const char *data, size_t data_length,
  6097. bool /*last*/, Callback callback) {
  6098. if (!data_length) { return true; }
  6099. return callback(data, data_length);
  6100. }
  6101. #ifdef CPPHTTPLIB_ZLIB_SUPPORT
  6102. inline gzip_compressor::gzip_compressor() {
  6103. std::memset(&strm_, 0, sizeof(strm_));
  6104. strm_.zalloc = Z_NULL;
  6105. strm_.zfree = Z_NULL;
  6106. strm_.opaque = Z_NULL;
  6107. is_valid_ = deflateInit2(&strm_, Z_DEFAULT_COMPRESSION, Z_DEFLATED, 31, 8,
  6108. Z_DEFAULT_STRATEGY) == Z_OK;
  6109. }
  6110. inline gzip_compressor::~gzip_compressor() { deflateEnd(&strm_); }
  6111. inline bool gzip_compressor::compress(const char *data, size_t data_length,
  6112. bool last, Callback callback) {
  6113. assert(is_valid_);
  6114. do {
  6115. constexpr size_t max_avail_in =
  6116. (std::numeric_limits<decltype(strm_.avail_in)>::max)();
  6117. strm_.avail_in = static_cast<decltype(strm_.avail_in)>(
  6118. (std::min)(data_length, max_avail_in));
  6119. strm_.next_in = const_cast<Bytef *>(reinterpret_cast<const Bytef *>(data));
  6120. data_length -= strm_.avail_in;
  6121. data += strm_.avail_in;
  6122. auto flush = (last && data_length == 0) ? Z_FINISH : Z_NO_FLUSH;
  6123. auto ret = Z_OK;
  6124. std::array<char, CPPHTTPLIB_COMPRESSION_BUFSIZ> buff{};
  6125. do {
  6126. strm_.avail_out = static_cast<uInt>(buff.size());
  6127. strm_.next_out = reinterpret_cast<Bytef *>(buff.data());
  6128. ret = deflate(&strm_, flush);
  6129. if (ret == Z_STREAM_ERROR) { return false; }
  6130. if (!callback(buff.data(), buff.size() - strm_.avail_out)) {
  6131. return false;
  6132. }
  6133. } while (strm_.avail_out == 0);
  6134. assert((flush == Z_FINISH && ret == Z_STREAM_END) ||
  6135. (flush == Z_NO_FLUSH && ret == Z_OK));
  6136. assert(strm_.avail_in == 0);
  6137. } while (data_length > 0);
  6138. return true;
  6139. }
  6140. inline gzip_decompressor::gzip_decompressor() {
  6141. std::memset(&strm_, 0, sizeof(strm_));
  6142. strm_.zalloc = Z_NULL;
  6143. strm_.zfree = Z_NULL;
  6144. strm_.opaque = Z_NULL;
  6145. // 15 is the value of wbits, which should be at the maximum possible value
  6146. // to ensure that any gzip stream can be decoded. The offset of 32 specifies
  6147. // that the stream type should be automatically detected either gzip or
  6148. // deflate.
  6149. is_valid_ = inflateInit2(&strm_, 32 + 15) == Z_OK;
  6150. }
  6151. inline gzip_decompressor::~gzip_decompressor() { inflateEnd(&strm_); }
  6152. inline bool gzip_decompressor::is_valid() const { return is_valid_; }
  6153. inline bool gzip_decompressor::decompress(const char *data, size_t data_length,
  6154. Callback callback) {
  6155. assert(is_valid_);
  6156. auto ret = Z_OK;
  6157. do {
  6158. constexpr size_t max_avail_in =
  6159. (std::numeric_limits<decltype(strm_.avail_in)>::max)();
  6160. strm_.avail_in = static_cast<decltype(strm_.avail_in)>(
  6161. (std::min)(data_length, max_avail_in));
  6162. strm_.next_in = const_cast<Bytef *>(reinterpret_cast<const Bytef *>(data));
  6163. data_length -= strm_.avail_in;
  6164. data += strm_.avail_in;
  6165. std::array<char, CPPHTTPLIB_COMPRESSION_BUFSIZ> buff{};
  6166. while (strm_.avail_in > 0 && ret == Z_OK) {
  6167. strm_.avail_out = static_cast<uInt>(buff.size());
  6168. strm_.next_out = reinterpret_cast<Bytef *>(buff.data());
  6169. ret = inflate(&strm_, Z_NO_FLUSH);
  6170. assert(ret != Z_STREAM_ERROR);
  6171. switch (ret) {
  6172. case Z_NEED_DICT:
  6173. case Z_DATA_ERROR:
  6174. case Z_MEM_ERROR: inflateEnd(&strm_); return false;
  6175. }
  6176. if (!callback(buff.data(), buff.size() - strm_.avail_out)) {
  6177. return false;
  6178. }
  6179. }
  6180. if (ret != Z_OK && ret != Z_STREAM_END) { return false; }
  6181. } while (data_length > 0);
  6182. return true;
  6183. }
  6184. #endif
  6185. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  6186. inline brotli_compressor::brotli_compressor() {
  6187. state_ = BrotliEncoderCreateInstance(nullptr, nullptr, nullptr);
  6188. }
  6189. inline brotli_compressor::~brotli_compressor() {
  6190. BrotliEncoderDestroyInstance(state_);
  6191. }
  6192. inline bool brotli_compressor::compress(const char *data, size_t data_length,
  6193. bool last, Callback callback) {
  6194. std::array<uint8_t, CPPHTTPLIB_COMPRESSION_BUFSIZ> buff{};
  6195. auto operation = last ? BROTLI_OPERATION_FINISH : BROTLI_OPERATION_PROCESS;
  6196. auto available_in = data_length;
  6197. auto next_in = reinterpret_cast<const uint8_t *>(data);
  6198. for (;;) {
  6199. if (last) {
  6200. if (BrotliEncoderIsFinished(state_)) { break; }
  6201. } else {
  6202. if (!available_in) { break; }
  6203. }
  6204. auto available_out = buff.size();
  6205. auto next_out = buff.data();
  6206. if (!BrotliEncoderCompressStream(state_, operation, &available_in, &next_in,
  6207. &available_out, &next_out, nullptr)) {
  6208. return false;
  6209. }
  6210. auto output_bytes = buff.size() - available_out;
  6211. if (output_bytes) {
  6212. callback(reinterpret_cast<const char *>(buff.data()), output_bytes);
  6213. }
  6214. }
  6215. return true;
  6216. }
  6217. inline brotli_decompressor::brotli_decompressor() {
  6218. decoder_s = BrotliDecoderCreateInstance(0, 0, 0);
  6219. decoder_r = decoder_s ? BROTLI_DECODER_RESULT_NEEDS_MORE_INPUT
  6220. : BROTLI_DECODER_RESULT_ERROR;
  6221. }
  6222. inline brotli_decompressor::~brotli_decompressor() {
  6223. if (decoder_s) { BrotliDecoderDestroyInstance(decoder_s); }
  6224. }
  6225. inline bool brotli_decompressor::is_valid() const { return decoder_s; }
  6226. inline bool brotli_decompressor::decompress(const char *data,
  6227. size_t data_length,
  6228. Callback callback) {
  6229. if (decoder_r == BROTLI_DECODER_RESULT_SUCCESS ||
  6230. decoder_r == BROTLI_DECODER_RESULT_ERROR) {
  6231. return 0;
  6232. }
  6233. auto next_in = reinterpret_cast<const uint8_t *>(data);
  6234. size_t avail_in = data_length;
  6235. size_t total_out;
  6236. decoder_r = BROTLI_DECODER_RESULT_NEEDS_MORE_OUTPUT;
  6237. std::array<char, CPPHTTPLIB_COMPRESSION_BUFSIZ> buff{};
  6238. while (decoder_r == BROTLI_DECODER_RESULT_NEEDS_MORE_OUTPUT) {
  6239. char *next_out = buff.data();
  6240. size_t avail_out = buff.size();
  6241. decoder_r = BrotliDecoderDecompressStream(
  6242. decoder_s, &avail_in, &next_in, &avail_out,
  6243. reinterpret_cast<uint8_t **>(&next_out), &total_out);
  6244. if (decoder_r == BROTLI_DECODER_RESULT_ERROR) { return false; }
  6245. if (!callback(buff.data(), buff.size() - avail_out)) { return false; }
  6246. }
  6247. return decoder_r == BROTLI_DECODER_RESULT_SUCCESS ||
  6248. decoder_r == BROTLI_DECODER_RESULT_NEEDS_MORE_INPUT;
  6249. }
  6250. #endif
  6251. #ifdef CPPHTTPLIB_ZSTD_SUPPORT
  6252. inline zstd_compressor::zstd_compressor() {
  6253. ctx_ = ZSTD_createCCtx();
  6254. ZSTD_CCtx_setParameter(ctx_, ZSTD_c_compressionLevel, ZSTD_fast);
  6255. }
  6256. inline zstd_compressor::~zstd_compressor() { ZSTD_freeCCtx(ctx_); }
  6257. inline bool zstd_compressor::compress(const char *data, size_t data_length,
  6258. bool last, Callback callback) {
  6259. std::array<char, CPPHTTPLIB_COMPRESSION_BUFSIZ> buff{};
  6260. ZSTD_EndDirective mode = last ? ZSTD_e_end : ZSTD_e_continue;
  6261. ZSTD_inBuffer input = {data, data_length, 0};
  6262. bool finished;
  6263. do {
  6264. ZSTD_outBuffer output = {buff.data(), CPPHTTPLIB_COMPRESSION_BUFSIZ, 0};
  6265. size_t const remaining = ZSTD_compressStream2(ctx_, &output, &input, mode);
  6266. if (ZSTD_isError(remaining)) { return false; }
  6267. if (!callback(buff.data(), output.pos)) { return false; }
  6268. finished = last ? (remaining == 0) : (input.pos == input.size);
  6269. } while (!finished);
  6270. return true;
  6271. }
  6272. inline zstd_decompressor::zstd_decompressor() { ctx_ = ZSTD_createDCtx(); }
  6273. inline zstd_decompressor::~zstd_decompressor() { ZSTD_freeDCtx(ctx_); }
  6274. inline bool zstd_decompressor::is_valid() const { return ctx_ != nullptr; }
  6275. inline bool zstd_decompressor::decompress(const char *data, size_t data_length,
  6276. Callback callback) {
  6277. std::array<char, CPPHTTPLIB_COMPRESSION_BUFSIZ> buff{};
  6278. ZSTD_inBuffer input = {data, data_length, 0};
  6279. while (input.pos < input.size) {
  6280. ZSTD_outBuffer output = {buff.data(), CPPHTTPLIB_COMPRESSION_BUFSIZ, 0};
  6281. size_t const remaining = ZSTD_decompressStream(ctx_, &output, &input);
  6282. if (ZSTD_isError(remaining)) { return false; }
  6283. if (!callback(buff.data(), output.pos)) { return false; }
  6284. }
  6285. return true;
  6286. }
  6287. #endif
  6288. inline bool contains_case_ignore(const std::string &s, const char *token) {
  6289. auto token_end = token + std::strlen(token);
  6290. return std::search(s.begin(), s.end(), token, token_end, [](char a, char b) {
  6291. return case_ignore::to_lower(a) == case_ignore::to_lower(b);
  6292. }) != s.end();
  6293. }
  6294. // Content codings are case-insensitive (RFC 9110 8.4.1). Matching them
  6295. // case-sensitively would make a response labeled e.g. "GZIP" look like an
  6296. // unknown coding, and its payload would be handed back still compressed.
  6297. inline bool is_zlib_encoding(const std::string &encoding) {
  6298. return case_ignore::equal(encoding, "gzip") ||
  6299. case_ignore::equal(encoding, "deflate");
  6300. }
  6301. inline bool is_brotli_encoding(const std::string &encoding) {
  6302. return contains_case_ignore(encoding, "br");
  6303. }
  6304. inline bool is_zstd_encoding(const std::string &encoding) {
  6305. return contains_case_ignore(encoding, "zstd");
  6306. }
  6307. // Returns true if the content coding is one cpp-httplib is able to decompress
  6308. // when the corresponding support is compiled in.
  6309. inline bool is_known_content_encoding(const std::string &encoding) {
  6310. return is_zlib_encoding(encoding) || is_brotli_encoding(encoding) ||
  6311. is_zstd_encoding(encoding);
  6312. }
  6313. inline std::unique_ptr<decompressor>
  6314. create_decompressor(const std::string &encoding) {
  6315. std::unique_ptr<decompressor> decompressor;
  6316. if (is_zlib_encoding(encoding)) {
  6317. #ifdef CPPHTTPLIB_ZLIB_SUPPORT
  6318. decompressor = detail::make_unique<gzip_decompressor>();
  6319. #endif
  6320. } else if (is_brotli_encoding(encoding)) {
  6321. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  6322. decompressor = detail::make_unique<brotli_decompressor>();
  6323. #endif
  6324. } else if (is_zstd_encoding(encoding)) {
  6325. #ifdef CPPHTTPLIB_ZSTD_SUPPORT
  6326. decompressor = detail::make_unique<zstd_decompressor>();
  6327. #endif
  6328. }
  6329. return decompressor;
  6330. }
  6331. // Returns the best available compressor and its Content-Encoding name.
  6332. // Priority: Brotli > Gzip > Zstd (matches server-side preference).
  6333. inline std::pair<std::unique_ptr<compressor>, const char *>
  6334. create_compressor() {
  6335. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  6336. return {detail::make_unique<brotli_compressor>(), "br"};
  6337. #elif defined(CPPHTTPLIB_ZLIB_SUPPORT)
  6338. return {detail::make_unique<gzip_compressor>(), "gzip"};
  6339. #elif defined(CPPHTTPLIB_ZSTD_SUPPORT)
  6340. return {detail::make_unique<zstd_compressor>(), "zstd"};
  6341. #else
  6342. return {nullptr, nullptr};
  6343. #endif
  6344. }
  6345. inline bool is_prohibited_header_name(const std::string &name) {
  6346. using udl::operator""_t;
  6347. switch (str2tag(name)) {
  6348. case "REMOTE_ADDR"_t:
  6349. case "REMOTE_PORT"_t:
  6350. case "LOCAL_ADDR"_t:
  6351. case "LOCAL_PORT"_t: return true;
  6352. default: return false;
  6353. }
  6354. }
  6355. inline bool has_header(const Headers &headers, const std::string &key) {
  6356. if (is_prohibited_header_name(key)) { return false; }
  6357. return headers.find(key) != headers.end();
  6358. }
  6359. inline const char *get_header_value(const Headers &headers,
  6360. const std::string &key, const char *def,
  6361. size_t id) {
  6362. if (is_prohibited_header_name(key)) {
  6363. #ifndef CPPHTTPLIB_NO_EXCEPTIONS
  6364. std::string msg = "Prohibited header name '" + key + "' is specified.";
  6365. throw std::invalid_argument(msg);
  6366. #else
  6367. return "";
  6368. #endif
  6369. }
  6370. auto rng = headers.equal_range(key);
  6371. auto it = rng.first;
  6372. std::advance(it, static_cast<ssize_t>(id));
  6373. if (it != rng.second) { return it->second.c_str(); }
  6374. return def;
  6375. }
  6376. inline size_t get_header_value_count(const Headers &headers,
  6377. const std::string &key) {
  6378. return headers.count(key);
  6379. }
  6380. template <typename Map>
  6381. inline typename Map::mapped_type
  6382. get_multimap_value(const Map &m, const std::string &key, size_t id) {
  6383. auto rng = m.equal_range(key);
  6384. auto it = rng.first;
  6385. std::advance(it, static_cast<ssize_t>(id));
  6386. if (it != rng.second) { return it->second; }
  6387. return typename Map::mapped_type();
  6388. }
  6389. inline void set_header(Headers &headers, const std::string &key,
  6390. const std::string &val) {
  6391. if (fields::is_field_valid(key, val)) { headers.emplace(key, val); }
  6392. }
  6393. inline bool read_headers(Stream &strm, Headers &headers) {
  6394. const auto bufsiz = 2048;
  6395. char buf[bufsiz];
  6396. stream_line_reader line_reader(strm, buf, bufsiz);
  6397. size_t header_count = 0;
  6398. for (;;) {
  6399. if (!line_reader.getline()) { return false; }
  6400. // Check if the line ends with CRLF.
  6401. auto line_terminator_len = 2;
  6402. if (line_reader.end_with_crlf()) {
  6403. // Blank line indicates end of headers.
  6404. if (line_reader.size() == 2) { break; }
  6405. } else {
  6406. #ifdef CPPHTTPLIB_ALLOW_LF_AS_LINE_TERMINATOR
  6407. // Blank line indicates end of headers.
  6408. if (line_reader.size() == 1) { break; }
  6409. line_terminator_len = 1;
  6410. #else
  6411. continue; // Skip invalid line.
  6412. #endif
  6413. }
  6414. if (line_reader.size() > CPPHTTPLIB_HEADER_MAX_LENGTH) { return false; }
  6415. // Check header count limit
  6416. if (header_count >= CPPHTTPLIB_HEADER_MAX_COUNT) { return false; }
  6417. // Exclude line terminator
  6418. auto end = line_reader.ptr() + line_reader.size() - line_terminator_len;
  6419. if (!parse_header(line_reader.ptr(), end,
  6420. [&](const std::string &key, const std::string &val) {
  6421. headers.emplace(key, val);
  6422. })) {
  6423. return false;
  6424. }
  6425. header_count++;
  6426. }
  6427. // RFC 9110 Section 8.6: Reject requests with multiple Content-Length
  6428. // headers that have different values to prevent request smuggling.
  6429. auto cl_range = headers.equal_range("Content-Length");
  6430. if (cl_range.first != cl_range.second) {
  6431. const auto &first_val = cl_range.first->second;
  6432. for (auto it = std::next(cl_range.first); it != cl_range.second; ++it) {
  6433. if (it->second != first_val) { return false; }
  6434. }
  6435. }
  6436. return true;
  6437. }
  6438. inline bool parse_status_line(const char *line, std::string &version,
  6439. int &status, std::string &reason) {
  6440. #ifdef CPPHTTPLIB_ALLOW_LF_AS_LINE_TERMINATOR
  6441. thread_local const std::regex re("(HTTP/1\\.[01]) (\\d{3})(?: (.*?))?\r?\n");
  6442. #else
  6443. thread_local const std::regex re("(HTTP/1\\.[01]) (\\d{3})(?: (.*?))?\r\n");
  6444. #endif
  6445. std::cmatch m;
  6446. if (!std::regex_match(line, m, re)) { return false; }
  6447. version = std::string(m[1]);
  6448. status = std::stoi(std::string(m[2]));
  6449. reason = std::string(m[3]);
  6450. return true;
  6451. }
  6452. // Everything WebSocketClient::connect() reports about the upgrade exchange.
  6453. // status stays -1 until a status line is parsed, mirroring stream::Result.
  6454. struct WebSocketUpgradeResponse {
  6455. Error error = Error::Success;
  6456. int status = -1;
  6457. Headers headers;
  6458. std::string selected_subprotocol;
  6459. };
  6460. inline bool read_websocket_upgrade_response(Stream &strm,
  6461. const std::string &expected_accept,
  6462. WebSocketUpgradeResponse &upgrade) {
  6463. // Read status line
  6464. const auto bufsiz = 2048;
  6465. char buf[bufsiz];
  6466. stream_line_reader line_reader(strm, buf, bufsiz);
  6467. if (!line_reader.getline()) {
  6468. upgrade.error = Error::Read;
  6469. return false;
  6470. }
  6471. std::string version;
  6472. std::string reason;
  6473. if (!parse_status_line(line_reader.ptr(), version, upgrade.status, reason)) {
  6474. upgrade.error = Error::WebSocketHandshake;
  6475. return false;
  6476. }
  6477. // Read the headers even for a rejection so the caller can see why the
  6478. // server refused the upgrade. A non-101 response may carry a body; it is
  6479. // deliberately left unread since the caller closes the socket right away.
  6480. if (!read_headers(strm, upgrade.headers)) {
  6481. upgrade.error = Error::Read;
  6482. return false;
  6483. }
  6484. const auto &headers = upgrade.headers;
  6485. if (upgrade.status != StatusCode::SwitchingProtocol_101) {
  6486. upgrade.error = Error::WebSocketHandshake;
  6487. return false;
  6488. }
  6489. // Verify Upgrade: websocket (case-insensitive)
  6490. auto upgrade_it = headers.find("Upgrade");
  6491. if (upgrade_it == headers.end() ||
  6492. case_ignore::to_lower(upgrade_it->second) != "websocket") {
  6493. upgrade.error = Error::WebSocketHandshake;
  6494. return false;
  6495. }
  6496. // Verify Connection header contains "Upgrade" (case-insensitive)
  6497. auto connection_it = headers.find("Connection");
  6498. if (connection_it == headers.end() ||
  6499. case_ignore::to_lower(connection_it->second).find("upgrade") ==
  6500. std::string::npos) {
  6501. upgrade.error = Error::WebSocketHandshake;
  6502. return false;
  6503. }
  6504. // Verify Sec-WebSocket-Accept header value
  6505. auto it = headers.find("Sec-WebSocket-Accept");
  6506. if (it == headers.end() || it->second != expected_accept) {
  6507. upgrade.error = Error::WebSocketHandshake;
  6508. return false;
  6509. }
  6510. // Extract negotiated subprotocol
  6511. auto proto_it = headers.find("Sec-WebSocket-Protocol");
  6512. if (proto_it != headers.end()) {
  6513. upgrade.selected_subprotocol = proto_it->second;
  6514. }
  6515. return true;
  6516. }
  6517. enum class ReadContentResult {
  6518. Success, // Successfully read the content
  6519. PayloadTooLarge, // The content exceeds the specified payload limit
  6520. Error // An error occurred while reading the content
  6521. };
  6522. inline ReadContentResult read_content_with_length(
  6523. Stream &strm, size_t len, DownloadProgress progress,
  6524. ContentReceiverWithProgress out,
  6525. size_t payload_max_length = (std::numeric_limits<size_t>::max)()) {
  6526. char buf[CPPHTTPLIB_RECV_BUFSIZ];
  6527. detail::BodyReader br;
  6528. br.stream = &strm;
  6529. br.has_content_length = true;
  6530. br.content_length = len;
  6531. br.payload_max_length = payload_max_length;
  6532. br.chunked = false;
  6533. br.bytes_read = 0;
  6534. br.last_error = Error::Success;
  6535. size_t r = 0;
  6536. while (r < len) {
  6537. auto read_len = static_cast<size_t>(len - r);
  6538. auto to_read = (std::min)(read_len, CPPHTTPLIB_RECV_BUFSIZ);
  6539. auto n = detail::read_body_content(&strm, br, buf, to_read);
  6540. if (n <= 0) {
  6541. // Check if it was a payload size error
  6542. if (br.last_error == Error::ExceedMaxPayloadSize) {
  6543. return ReadContentResult::PayloadTooLarge;
  6544. }
  6545. return ReadContentResult::Error;
  6546. }
  6547. if (!out(buf, static_cast<size_t>(n), r, len)) {
  6548. return ReadContentResult::Error;
  6549. }
  6550. r += static_cast<size_t>(n);
  6551. if (progress) {
  6552. if (!progress(r, len)) { return ReadContentResult::Error; }
  6553. }
  6554. }
  6555. return ReadContentResult::Success;
  6556. }
  6557. inline ReadContentResult
  6558. read_content_without_length(Stream &strm, size_t payload_max_length,
  6559. ContentReceiverWithProgress out) {
  6560. char buf[CPPHTTPLIB_RECV_BUFSIZ];
  6561. size_t r = 0;
  6562. for (;;) {
  6563. auto n = strm.read(buf, CPPHTTPLIB_RECV_BUFSIZ);
  6564. if (n == 0) { return ReadContentResult::Success; }
  6565. if (n < 0) { return ReadContentResult::Error; }
  6566. // Check if adding this data would exceed the payload limit
  6567. if (r > payload_max_length ||
  6568. payload_max_length - r < static_cast<size_t>(n)) {
  6569. return ReadContentResult::PayloadTooLarge;
  6570. }
  6571. if (!out(buf, static_cast<size_t>(n), r, 0)) {
  6572. return ReadContentResult::Error;
  6573. }
  6574. r += static_cast<size_t>(n);
  6575. }
  6576. return ReadContentResult::Success;
  6577. }
  6578. template <typename T>
  6579. inline ReadContentResult read_content_chunked(Stream &strm, T &x,
  6580. size_t payload_max_length,
  6581. ContentReceiverWithProgress out) {
  6582. detail::ChunkedDecoder dec(strm);
  6583. char buf[CPPHTTPLIB_RECV_BUFSIZ];
  6584. size_t total_len = 0;
  6585. for (;;) {
  6586. size_t chunk_offset = 0;
  6587. size_t chunk_total = 0;
  6588. auto n = dec.read_payload(buf, sizeof(buf), chunk_offset, chunk_total);
  6589. if (n < 0) { return ReadContentResult::Error; }
  6590. if (n == 0) {
  6591. if (!dec.parse_trailers_into(x.trailers, x.headers)) {
  6592. return ReadContentResult::Error;
  6593. }
  6594. return ReadContentResult::Success;
  6595. }
  6596. if (total_len > payload_max_length ||
  6597. payload_max_length - total_len < static_cast<size_t>(n)) {
  6598. return ReadContentResult::PayloadTooLarge;
  6599. }
  6600. if (!out(buf, static_cast<size_t>(n), chunk_offset, chunk_total)) {
  6601. return ReadContentResult::Error;
  6602. }
  6603. total_len += static_cast<size_t>(n);
  6604. }
  6605. }
  6606. inline bool is_chunked_transfer_encoding(const Headers &headers) {
  6607. // RFC 9112 6.1: a message is framed with the chunked coding when "chunked"
  6608. // is the final transfer coding. A single field value may list several
  6609. // codings ("gzip, chunked"), and RFC 9110 5.3 lets that list be split across
  6610. // several Transfer-Encoding lines, which combine into one comma-separated
  6611. // list in the order the lines were received. Headers preserves that order,
  6612. // so the final coding is the last token of the last line. Match it
  6613. // case-insensitively rather than comparing the whole value against
  6614. // "chunked".
  6615. //
  6616. // Security: reading a chunked message as unframed leaves its body in the
  6617. // socket, where a keep-alive connection parses it as a smuggled request.
  6618. // Server::process_request() answers 400 and closes when the final coding is
  6619. // not chunked, so a request whose framing cannot be determined never
  6620. // reaches the "no body" path.
  6621. auto rng = headers.equal_range("Transfer-Encoding");
  6622. if (rng.first == rng.second) { return false; }
  6623. // Cleared per line, so a trailing line carrying no coding at all leaves the
  6624. // combined list ending in nothing rather than inheriting the line before it.
  6625. std::string last_coding;
  6626. for (auto it = rng.first; it != rng.second; ++it) {
  6627. const auto &value = it->second;
  6628. last_coding.clear();
  6629. split(value.data(), value.data() + value.size(), ',',
  6630. [&](const char *b, const char *e) { last_coding.assign(b, e); });
  6631. }
  6632. return case_ignore::equal(last_coding, "chunked");
  6633. }
  6634. template <typename T, typename U>
  6635. bool prepare_content_receiver(T &x, int &status,
  6636. ContentReceiverWithProgress receiver,
  6637. bool decompress, size_t payload_max_length,
  6638. bool &exceed_payload_max_length, U callback) {
  6639. if (decompress) {
  6640. std::string encoding = x.get_header_value("Content-Encoding");
  6641. std::unique_ptr<decompressor> decompressor;
  6642. if (!encoding.empty()) {
  6643. // A coding we know about but were not built with is an error. An
  6644. // unrecognized coding (including "identity") is left alone and the
  6645. // payload is passed through as-is, since some servers misuse the header,
  6646. // e.g. by sending a character set such as "Content-Encoding: UTF-8".
  6647. decompressor = detail::create_decompressor(encoding);
  6648. if (!decompressor && detail::is_known_content_encoding(encoding)) {
  6649. status = StatusCode::UnsupportedMediaType_415;
  6650. return false;
  6651. }
  6652. }
  6653. if (decompressor) {
  6654. if (decompressor->is_valid()) {
  6655. size_t decompressed_size = 0;
  6656. ContentReceiverWithProgress out = [&](const char *buf, size_t n,
  6657. size_t off, size_t len) {
  6658. return decompressor->decompress(
  6659. buf, n, [&](const char *buf2, size_t n2) {
  6660. // Guard against zip-bomb: check
  6661. // decompressed size against limit.
  6662. if (payload_max_length > 0 &&
  6663. (decompressed_size >= payload_max_length ||
  6664. n2 > payload_max_length - decompressed_size)) {
  6665. exceed_payload_max_length = true;
  6666. return false;
  6667. }
  6668. decompressed_size += n2;
  6669. return receiver(buf2, n2, off, len);
  6670. });
  6671. };
  6672. return callback(std::move(out));
  6673. } else {
  6674. status = StatusCode::InternalServerError_500;
  6675. return false;
  6676. }
  6677. }
  6678. }
  6679. ContentReceiverWithProgress out = [&](const char *buf, size_t n, size_t off,
  6680. size_t len) {
  6681. return receiver(buf, n, off, len);
  6682. };
  6683. return callback(std::move(out));
  6684. }
  6685. template <typename T>
  6686. bool read_content(Stream &strm, T &x, size_t payload_max_length, int &status,
  6687. DownloadProgress progress,
  6688. ContentReceiverWithProgress receiver, bool decompress) {
  6689. bool exceed_payload_max_length = false;
  6690. return prepare_content_receiver(
  6691. x, status, std::move(receiver), decompress, payload_max_length,
  6692. exceed_payload_max_length, [&](const ContentReceiverWithProgress &out) {
  6693. auto ret = true;
  6694. // Note: exceed_payload_max_length may also be set by the decompressor
  6695. // wrapper in prepare_content_receiver when the decompressed payload
  6696. // size exceeds the limit.
  6697. if (is_chunked_transfer_encoding(x.headers)) {
  6698. auto result = read_content_chunked(strm, x, payload_max_length, out);
  6699. if (result == ReadContentResult::Success) {
  6700. ret = true;
  6701. } else if (result == ReadContentResult::PayloadTooLarge) {
  6702. exceed_payload_max_length = true;
  6703. ret = false;
  6704. } else {
  6705. ret = false;
  6706. }
  6707. } else if (!has_header(x.headers, "Content-Length")) {
  6708. auto result =
  6709. read_content_without_length(strm, payload_max_length, out);
  6710. if (result == ReadContentResult::Success) {
  6711. ret = true;
  6712. } else if (result == ReadContentResult::PayloadTooLarge) {
  6713. exceed_payload_max_length = true;
  6714. ret = false;
  6715. } else {
  6716. ret = false;
  6717. }
  6718. } else {
  6719. auto is_invalid_value = false;
  6720. auto len = get_header_value_u64(x.headers, "Content-Length",
  6721. (std::numeric_limits<size_t>::max)(),
  6722. 0, is_invalid_value);
  6723. if (is_invalid_value) {
  6724. ret = false;
  6725. } else if (len > 0) {
  6726. auto result = read_content_with_length(
  6727. strm, len, std::move(progress), out, payload_max_length);
  6728. ret = (result == ReadContentResult::Success);
  6729. if (result == ReadContentResult::PayloadTooLarge) {
  6730. exceed_payload_max_length = true;
  6731. }
  6732. }
  6733. }
  6734. if (!ret) {
  6735. status = exceed_payload_max_length ? StatusCode::PayloadTooLarge_413
  6736. : StatusCode::BadRequest_400;
  6737. }
  6738. return ret;
  6739. });
  6740. }
  6741. inline ssize_t write_request_line(Stream &strm, const std::string &method,
  6742. const std::string &path) {
  6743. // A request target must not carry CR/LF (or other control octets); otherwise
  6744. // a value smuggled into it splits the request line and injects headers or a
  6745. // whole request. The same field-value check already guards header values in
  6746. // check_and_write_headers and the request target in
  6747. // perform_websocket_handshake; apply it here too.
  6748. if (!fields::is_field_value(path)) { return -1; }
  6749. std::string s = method;
  6750. s += ' ';
  6751. s += path;
  6752. s += " HTTP/1.1\r\n";
  6753. return strm.write(s.data(), s.size());
  6754. }
  6755. inline ssize_t write_response_line(Stream &strm, int status) {
  6756. std::string s = "HTTP/1.1 ";
  6757. s += std::to_string(status);
  6758. s += ' ';
  6759. s += httplib::status_message(status);
  6760. s += "\r\n";
  6761. return strm.write(s.data(), s.size());
  6762. }
  6763. inline ssize_t write_headers(Stream &strm, const Headers &headers) {
  6764. ssize_t write_len = 0;
  6765. for (const auto &x : headers) {
  6766. // Skip fields with invalid names or values to prevent response splitting
  6767. // via CR/LF injection, matching set_header(). The client validates request
  6768. // headers up front in check_and_write_headers, but the server passes
  6769. // res.headers straight to this writer, and res.headers is a public field
  6770. // an application can populate directly with request-derived values.
  6771. if (!fields::is_field_valid(x.first, x.second)) { continue; }
  6772. std::string s;
  6773. s = x.first;
  6774. s += ": ";
  6775. s += x.second;
  6776. s += "\r\n";
  6777. auto len = strm.write(s.data(), s.size());
  6778. if (len < 0) { return len; }
  6779. write_len += len;
  6780. }
  6781. auto len = strm.write("\r\n");
  6782. if (len < 0) { return len; }
  6783. write_len += len;
  6784. return write_len;
  6785. }
  6786. inline bool write_data(Stream &strm, const char *d, size_t l) {
  6787. size_t offset = 0;
  6788. while (offset < l) {
  6789. auto length = strm.write(d + offset, l - offset);
  6790. if (length < 0) { return false; }
  6791. offset += static_cast<size_t>(length);
  6792. }
  6793. return true;
  6794. }
  6795. template <typename T>
  6796. inline bool write_content_with_progress(Stream &strm,
  6797. const ContentProvider &content_provider,
  6798. size_t offset, size_t length,
  6799. T is_shutting_down,
  6800. const UploadProgress &upload_progress,
  6801. Error &error) {
  6802. size_t end_offset = offset + length;
  6803. size_t start_offset = offset;
  6804. auto ok = true;
  6805. DataSink data_sink;
  6806. data_sink.write = [&](const char *d, size_t l) -> bool {
  6807. if (ok) {
  6808. if (write_data(strm, d, l)) {
  6809. offset += l;
  6810. if (upload_progress && length > 0) {
  6811. size_t current_written = offset - start_offset;
  6812. if (!upload_progress(current_written, length)) {
  6813. ok = false;
  6814. return false;
  6815. }
  6816. }
  6817. } else {
  6818. ok = false;
  6819. }
  6820. }
  6821. return ok;
  6822. };
  6823. data_sink.is_writable = [&]() -> bool { return strm.is_peer_alive(); };
  6824. while (offset < end_offset && !is_shutting_down()) {
  6825. if (!strm.wait_writable() || !strm.is_peer_alive()) {
  6826. error = Error::Write;
  6827. return false;
  6828. } else if (!content_provider(offset, end_offset - offset, data_sink)) {
  6829. error = Error::Canceled;
  6830. return false;
  6831. } else if (!ok) {
  6832. error = Error::Write;
  6833. return false;
  6834. }
  6835. }
  6836. if (offset < end_offset) { // exited due to is_shutting_down(), not completion
  6837. error = Error::Write;
  6838. return false;
  6839. }
  6840. error = Error::Success;
  6841. return true;
  6842. }
  6843. template <typename T>
  6844. inline bool write_content(Stream &strm, const ContentProvider &content_provider,
  6845. size_t offset, size_t length, T is_shutting_down,
  6846. Error &error) {
  6847. return write_content_with_progress<T>(strm, content_provider, offset, length,
  6848. is_shutting_down, nullptr, error);
  6849. }
  6850. template <typename T>
  6851. inline bool write_content(Stream &strm, const ContentProvider &content_provider,
  6852. size_t offset, size_t length,
  6853. const T &is_shutting_down) {
  6854. auto error = Error::Success;
  6855. return write_content(strm, content_provider, offset, length, is_shutting_down,
  6856. error);
  6857. }
  6858. template <typename T>
  6859. inline bool
  6860. write_content_without_length(Stream &strm,
  6861. const ContentProvider &content_provider,
  6862. const T &is_shutting_down) {
  6863. size_t offset = 0;
  6864. auto data_available = true;
  6865. auto ok = true;
  6866. DataSink data_sink;
  6867. data_sink.write = [&](const char *d, size_t l) -> bool {
  6868. if (ok) {
  6869. offset += l;
  6870. if (!write_data(strm, d, l)) { ok = false; }
  6871. }
  6872. return ok;
  6873. };
  6874. data_sink.is_writable = [&]() -> bool { return strm.is_peer_alive(); };
  6875. data_sink.done = [&](void) { data_available = false; };
  6876. while (data_available && !is_shutting_down()) {
  6877. if (!strm.wait_writable() || !strm.is_peer_alive()) {
  6878. return false;
  6879. } else if (!content_provider(offset, 0, data_sink)) {
  6880. return false;
  6881. } else if (!ok) {
  6882. return false;
  6883. }
  6884. }
  6885. return !data_available; // true only if done() was called, false if shutting
  6886. // down
  6887. }
  6888. template <typename T, typename U>
  6889. inline bool
  6890. write_content_chunked(Stream &strm, const ContentProvider &content_provider,
  6891. const T &is_shutting_down, U &compressor, Error &error) {
  6892. size_t offset = 0;
  6893. auto data_available = true;
  6894. auto ok = true;
  6895. DataSink data_sink;
  6896. data_sink.write = [&](const char *d, size_t l) -> bool {
  6897. if (ok) {
  6898. data_available = l > 0;
  6899. offset += l;
  6900. std::string payload;
  6901. if (compressor.compress(d, l, false,
  6902. [&](const char *data, size_t data_len) {
  6903. payload.append(data, data_len);
  6904. return true;
  6905. })) {
  6906. if (!payload.empty()) {
  6907. // Emit chunked response header and footer for each chunk
  6908. auto chunk =
  6909. from_i_to_hex(payload.size()) + "\r\n" + payload + "\r\n";
  6910. if (!write_data(strm, chunk.data(), chunk.size())) { ok = false; }
  6911. }
  6912. } else {
  6913. ok = false;
  6914. }
  6915. }
  6916. return ok;
  6917. };
  6918. data_sink.is_writable = [&]() -> bool { return strm.is_peer_alive(); };
  6919. auto done_with_trailer = [&](const Headers *trailer) {
  6920. if (!ok) { return; }
  6921. data_available = false;
  6922. std::string payload;
  6923. if (!compressor.compress(nullptr, 0, true,
  6924. [&](const char *data, size_t data_len) {
  6925. payload.append(data, data_len);
  6926. return true;
  6927. })) {
  6928. ok = false;
  6929. return;
  6930. }
  6931. if (!payload.empty()) {
  6932. // Emit chunked response header and footer for each chunk
  6933. auto chunk = from_i_to_hex(payload.size()) + "\r\n" + payload + "\r\n";
  6934. if (!write_data(strm, chunk.data(), chunk.size())) {
  6935. ok = false;
  6936. return;
  6937. }
  6938. }
  6939. constexpr const char done_marker[] = "0\r\n";
  6940. if (!write_data(strm, done_marker, str_len(done_marker))) { ok = false; }
  6941. // Trailer
  6942. if (trailer) {
  6943. for (const auto &kv : *trailer) {
  6944. // Skip fields with invalid names or values to prevent response
  6945. // splitting via CR/LF injection, matching set_header().
  6946. if (!fields::is_field_valid(kv.first, kv.second)) { continue; }
  6947. std::string field_line = kv.first + ": " + kv.second + "\r\n";
  6948. if (!write_data(strm, field_line.data(), field_line.size())) {
  6949. ok = false;
  6950. }
  6951. }
  6952. }
  6953. constexpr const char crlf[] = "\r\n";
  6954. if (!write_data(strm, crlf, str_len(crlf))) { ok = false; }
  6955. };
  6956. data_sink.done = [&](void) { done_with_trailer(nullptr); };
  6957. data_sink.done_with_trailer = [&](const Headers &trailer) {
  6958. done_with_trailer(&trailer);
  6959. };
  6960. while (data_available && !is_shutting_down()) {
  6961. if (!strm.wait_writable() || !strm.is_peer_alive()) {
  6962. error = Error::Write;
  6963. return false;
  6964. } else if (!content_provider(offset, 0, data_sink)) {
  6965. error = Error::Canceled;
  6966. return false;
  6967. } else if (!ok) {
  6968. error = Error::Write;
  6969. return false;
  6970. }
  6971. }
  6972. if (data_available) { // exited due to is_shutting_down(), not done()
  6973. error = Error::Write;
  6974. return false;
  6975. }
  6976. error = Error::Success;
  6977. return true;
  6978. }
  6979. template <typename T, typename U>
  6980. inline bool write_content_chunked(Stream &strm,
  6981. const ContentProvider &content_provider,
  6982. const T &is_shutting_down, U &compressor) {
  6983. auto error = Error::Success;
  6984. return write_content_chunked(strm, content_provider, is_shutting_down,
  6985. compressor, error);
  6986. }
  6987. template <typename T>
  6988. inline bool redirect(T &cli, Request &req, Response &res,
  6989. const std::string &path, const std::string &location,
  6990. Error &error) {
  6991. Request new_req = req;
  6992. new_req.path = path;
  6993. new_req.redirect_count_ -= 1;
  6994. if (res.status == StatusCode::SeeOther_303 &&
  6995. (req.method != "GET" && req.method != "HEAD")) {
  6996. new_req.method = "GET";
  6997. new_req.body.clear();
  6998. new_req.headers.clear();
  6999. }
  7000. Response new_res;
  7001. auto ret = cli.send(new_req, new_res, error);
  7002. if (ret) {
  7003. req = std::move(new_req);
  7004. res = std::move(new_res);
  7005. if (res.location.empty()) { res.location = location; }
  7006. }
  7007. return ret;
  7008. }
  7009. inline std::string params_to_query_str(const Params &params) {
  7010. std::string query;
  7011. for (auto it = params.begin(); it != params.end(); ++it) {
  7012. if (it != params.begin()) { query += '&'; }
  7013. query += encode_query_component(it->first);
  7014. query += '=';
  7015. query += encode_query_component(it->second);
  7016. }
  7017. return query;
  7018. }
  7019. // Splits one "key=value" span of a query string at its first '='. A span with
  7020. // no '=' at all lands entirely in key, leaving val empty, which is how a bare
  7021. // "?flag" keeps its name.
  7022. inline void divide_query_pair(const char *b, const char *e, std::string &key,
  7023. std::string &val) {
  7024. divide(b, static_cast<std::size_t>(e - b), '=',
  7025. [&](const char *lhs_data, std::size_t lhs_size, const char *rhs_data,
  7026. std::size_t rhs_size) {
  7027. key.assign(lhs_data, lhs_size);
  7028. val.assign(rhs_data, rhs_size);
  7029. });
  7030. }
  7031. inline void parse_query_text(const char *data, std::size_t size,
  7032. Params &params) {
  7033. std::set<std::string> cache;
  7034. split(data, data + size, '&', [&](const char *b, const char *e) {
  7035. std::string kv(b, e);
  7036. if (cache.find(kv) != cache.end()) { return; }
  7037. cache.insert(std::move(kv));
  7038. std::string key;
  7039. std::string val;
  7040. divide_query_pair(b, e, key, val);
  7041. if (!key.empty()) {
  7042. params.emplace(decode_query_component(key), decode_query_component(val));
  7043. }
  7044. });
  7045. }
  7046. inline void parse_query_text(const std::string &s, Params &params) {
  7047. parse_query_text(s.data(), s.size(), params);
  7048. }
  7049. // Normalize a query string by decoding and re-encoding each key/value pair
  7050. // while preserving the original parameter order. This avoids double-encoding
  7051. // and ensures consistent encoding. It works on the raw string rather than
  7052. // parsing into Params and re-serializing, because that round trip cannot
  7053. // reproduce the input: params_to_query_str() always emits '=', so a bare
  7054. // "flag" would come back as "flag=", and parse_query_text() drops exactly
  7055. // duplicated pairs.
  7056. inline std::string normalize_query_string(const std::string &query) {
  7057. std::string result;
  7058. split(query.data(), query.data() + query.size(), '&',
  7059. [&](const char *b, const char *e) {
  7060. std::string key;
  7061. std::string val;
  7062. divide_query_pair(b, e, key, val);
  7063. if (!key.empty()) {
  7064. auto dec_key = decode_query_component(key);
  7065. auto dec_val = decode_query_component(val);
  7066. if (!result.empty()) { result += '&'; }
  7067. result += encode_query_component(dec_key);
  7068. if (!val.empty() || std::find(b, e, '=') != e) {
  7069. result += '=';
  7070. result += encode_query_component(dec_val);
  7071. }
  7072. }
  7073. });
  7074. return result;
  7075. }
  7076. // Build the request target that goes on the wire from a caller-supplied path.
  7077. // Shared by the buffered send path and the streaming API so that both put the
  7078. // same bytes in the request line for the same input.
  7079. inline std::string encode_request_target(const std::string &target,
  7080. bool path_encode) {
  7081. // `substr(0, npos)` yields the whole string, which is what the no-query
  7082. // case needs.
  7083. auto query_pos = target.find('?');
  7084. auto path_part = target.substr(0, query_pos);
  7085. std::string query_part;
  7086. if (query_pos != std::string::npos) {
  7087. query_part = target.substr(query_pos + 1);
  7088. }
  7089. auto result = path_encode ? encode_path(path_part) : std::move(path_part);
  7090. if (!query_part.empty()) {
  7091. // When path encoding is disabled the caller has supplied an already-encoded
  7092. // target and expects the exact bytes to be sent on the wire, so skip
  7093. // normalization for the query too. Normalizing would decode-then-re-encode
  7094. // it and corrupt pre-encoded binary payloads (e.g. turning `%20` into `+`,
  7095. // which a strict RFC 3986 server decodes back as `+`, not a space).
  7096. if (path_encode) {
  7097. auto normalized = normalize_query_string(query_part);
  7098. if (!normalized.empty()) {
  7099. result += '?';
  7100. result += normalized;
  7101. }
  7102. } else {
  7103. result += '?';
  7104. result += query_part;
  7105. }
  7106. }
  7107. return result;
  7108. }
  7109. inline bool parse_multipart_boundary(const std::string &content_type,
  7110. std::string &boundary) {
  7111. std::map<std::string, std::string> params;
  7112. extract_media_type(content_type, &params);
  7113. auto it = params.find("boundary");
  7114. if (it == params.end()) { return false; }
  7115. boundary = it->second;
  7116. return !boundary.empty();
  7117. }
  7118. inline void parse_disposition_params(const std::string &s, Params &params) {
  7119. std::set<std::string> cache;
  7120. split(s.data(), s.data() + s.size(), ';', [&](const char *b, const char *e) {
  7121. std::string kv(b, e);
  7122. if (cache.find(kv) != cache.end()) { return; }
  7123. cache.insert(kv);
  7124. std::string key;
  7125. std::string val;
  7126. split(b, e, '=', [&](const char *b2, const char *e2) {
  7127. if (key.empty()) {
  7128. key.assign(b2, e2);
  7129. } else {
  7130. val.assign(b2, e2);
  7131. }
  7132. });
  7133. if (!key.empty()) {
  7134. params.emplace(trim_double_quotes_copy((key)),
  7135. trim_double_quotes_copy((val)));
  7136. }
  7137. });
  7138. }
  7139. #ifdef CPPHTTPLIB_NO_EXCEPTIONS
  7140. inline bool parse_range_header(const std::string &s, Ranges &ranges) {
  7141. #else
  7142. inline bool parse_range_header(const std::string &s, Ranges &ranges) try {
  7143. #endif
  7144. auto is_valid = [](const std::string &str) {
  7145. return std::all_of(str.cbegin(), str.cend(), is_ascii_digit);
  7146. };
  7147. if (s.size() > 7 && s.compare(0, 6, "bytes=") == 0) {
  7148. const auto pos = static_cast<size_t>(6);
  7149. const auto len = static_cast<size_t>(s.size() - 6);
  7150. auto all_valid_ranges = true;
  7151. split(&s[pos], &s[pos + len], ',', [&](const char *b, const char *e) {
  7152. if (!all_valid_ranges) { return; }
  7153. const auto it = std::find(b, e, '-');
  7154. if (it == e) {
  7155. all_valid_ranges = false;
  7156. return;
  7157. }
  7158. const auto lhs = std::string(b, it);
  7159. const auto rhs = std::string(it + 1, e);
  7160. if (!is_valid(lhs) || !is_valid(rhs)) {
  7161. all_valid_ranges = false;
  7162. return;
  7163. }
  7164. ssize_t first = -1;
  7165. if (!lhs.empty()) {
  7166. ssize_t v;
  7167. auto res = detail::from_chars(lhs.data(), lhs.data() + lhs.size(), v);
  7168. if (res.ec == std::errc{}) { first = v; }
  7169. }
  7170. ssize_t last = -1;
  7171. if (!rhs.empty()) {
  7172. ssize_t v;
  7173. auto res = detail::from_chars(rhs.data(), rhs.data() + rhs.size(), v);
  7174. if (res.ec == std::errc{}) { last = v; }
  7175. }
  7176. if ((first == -1 && last == -1) ||
  7177. (first != -1 && last != -1 && first > last)) {
  7178. all_valid_ranges = false;
  7179. return;
  7180. }
  7181. ranges.emplace_back(first, last);
  7182. });
  7183. return all_valid_ranges && !ranges.empty();
  7184. }
  7185. return false;
  7186. #ifdef CPPHTTPLIB_NO_EXCEPTIONS
  7187. }
  7188. #else
  7189. } catch (...) { return false; }
  7190. #endif
  7191. inline bool parse_accept_header(const std::string &s,
  7192. std::vector<std::string> &content_types) {
  7193. content_types.clear();
  7194. // Empty string is considered valid (no preference)
  7195. if (s.empty()) { return true; }
  7196. // Check for invalid patterns: leading/trailing commas or consecutive commas
  7197. if (s.front() == ',' || s.back() == ',' ||
  7198. s.find(",,") != std::string::npos) {
  7199. return false;
  7200. }
  7201. struct AcceptEntry {
  7202. std::string media_type;
  7203. double quality;
  7204. int order;
  7205. };
  7206. std::vector<AcceptEntry> entries;
  7207. int order = 0;
  7208. bool has_invalid_entry = false;
  7209. // Split by comma and parse each entry
  7210. split(s.data(), s.data() + s.size(), ',', [&](const char *b, const char *e) {
  7211. std::string entry(b, e);
  7212. entry = trim_copy(entry);
  7213. if (entry.empty()) {
  7214. has_invalid_entry = true;
  7215. return;
  7216. }
  7217. AcceptEntry accept_entry;
  7218. accept_entry.order = order++;
  7219. if (!parse_quality(entry.data(), entry.data() + entry.size(),
  7220. accept_entry.media_type, accept_entry.quality)) {
  7221. has_invalid_entry = true;
  7222. return;
  7223. }
  7224. // Remove additional parameters from media type
  7225. accept_entry.media_type = extract_media_type(accept_entry.media_type);
  7226. // Basic validation of media type format
  7227. if (accept_entry.media_type.empty()) {
  7228. has_invalid_entry = true;
  7229. return;
  7230. }
  7231. // Check for basic media type format (should contain '/' or be '*')
  7232. if (accept_entry.media_type != "*" &&
  7233. accept_entry.media_type.find('/') == std::string::npos) {
  7234. has_invalid_entry = true;
  7235. return;
  7236. }
  7237. entries.push_back(std::move(accept_entry));
  7238. });
  7239. // Return false if any invalid entry was found
  7240. if (has_invalid_entry) { return false; }
  7241. // Sort by quality (descending), then by original order (ascending)
  7242. std::sort(entries.begin(), entries.end(),
  7243. [](const AcceptEntry &a, const AcceptEntry &b) {
  7244. if (a.quality != b.quality) {
  7245. return a.quality > b.quality; // Higher quality first
  7246. }
  7247. return a.order < b.order; // Earlier order first for same quality
  7248. });
  7249. // Extract sorted media types
  7250. content_types.reserve(entries.size());
  7251. for (auto &entry : entries) {
  7252. content_types.push_back(std::move(entry.media_type));
  7253. }
  7254. return true;
  7255. }
  7256. class FormDataParser {
  7257. public:
  7258. FormDataParser() = default;
  7259. void set_boundary(std::string &&boundary) {
  7260. boundary_ = std::move(boundary);
  7261. dash_boundary_crlf_ = dash_ + boundary_ + crlf_;
  7262. crlf_dash_boundary_ = crlf_ + dash_ + boundary_;
  7263. }
  7264. bool is_valid() const { return is_valid_; }
  7265. bool parse(const char *buf, size_t n, const FormDataHeader &header_callback,
  7266. const ContentReceiver &content_callback) {
  7267. buf_append(buf, n);
  7268. while (buf_size() > 0) {
  7269. switch (state_) {
  7270. case 0: { // Initial boundary
  7271. auto pos = buf_find(dash_boundary_crlf_);
  7272. if (pos == buf_size()) { return true; }
  7273. buf_erase(pos + dash_boundary_crlf_.size());
  7274. state_ = 1;
  7275. break;
  7276. }
  7277. case 1: { // New entry
  7278. clear_file_info();
  7279. state_ = 2;
  7280. break;
  7281. }
  7282. case 2: { // Headers
  7283. auto pos = buf_find(crlf_);
  7284. if (pos > CPPHTTPLIB_HEADER_MAX_LENGTH) { return false; }
  7285. while (pos < buf_size()) {
  7286. // Empty line
  7287. if (pos == 0) {
  7288. if (!header_callback(file_)) {
  7289. is_valid_ = false;
  7290. return false;
  7291. }
  7292. buf_erase(crlf_.size());
  7293. state_ = 3;
  7294. break;
  7295. }
  7296. // Check header count limit
  7297. if (header_count_ >= CPPHTTPLIB_HEADER_MAX_COUNT) {
  7298. is_valid_ = false;
  7299. return false;
  7300. }
  7301. header_count_++;
  7302. const auto header = buf_head(pos);
  7303. if (!parse_header(header.data(), header.data() + header.size(),
  7304. [&](const std::string &, const std::string &) {})) {
  7305. is_valid_ = false;
  7306. return false;
  7307. }
  7308. // Parse and emplace space trimmed headers into a map
  7309. if (!parse_header(
  7310. header.data(), header.data() + header.size(),
  7311. [&](const std::string &key, const std::string &val) {
  7312. file_.headers.emplace(key, val);
  7313. })) {
  7314. is_valid_ = false;
  7315. return false;
  7316. }
  7317. constexpr const char header_content_type[] = "Content-Type:";
  7318. if (start_with_case_ignore(header, header_content_type)) {
  7319. file_.content_type =
  7320. trim_copy(header.substr(str_len(header_content_type)));
  7321. } else {
  7322. std::string disposition_params;
  7323. if (parse_content_disposition(header, disposition_params)) {
  7324. Params params;
  7325. parse_disposition_params(disposition_params, params);
  7326. auto it = params.find("name");
  7327. if (it != params.end()) {
  7328. file_.name = it->second;
  7329. } else {
  7330. is_valid_ = false;
  7331. return false;
  7332. }
  7333. it = params.find("filename");
  7334. if (it != params.end()) { file_.filename = it->second; }
  7335. it = params.find("filename*");
  7336. if (it != params.end()) {
  7337. // RFC 5987: only UTF-8 encoding is allowed
  7338. const auto &val = it->second;
  7339. constexpr const char utf8_prefix[] = "UTF-8''";
  7340. constexpr size_t prefix_len = str_len(utf8_prefix);
  7341. if (val.size() > prefix_len &&
  7342. start_with_case_ignore(val, utf8_prefix)) {
  7343. file_.filename = decode_path_component(
  7344. val.substr(prefix_len)); // override...
  7345. } else {
  7346. is_valid_ = false;
  7347. return false;
  7348. }
  7349. }
  7350. }
  7351. }
  7352. buf_erase(pos + crlf_.size());
  7353. pos = buf_find(crlf_);
  7354. }
  7355. if (state_ != 3) { return true; }
  7356. break;
  7357. }
  7358. case 3: { // Body
  7359. if (crlf_dash_boundary_.size() > buf_size()) { return true; }
  7360. auto pos = buf_find(crlf_dash_boundary_);
  7361. if (pos < buf_size()) {
  7362. if (!content_callback(buf_data(), pos)) {
  7363. is_valid_ = false;
  7364. return false;
  7365. }
  7366. buf_erase(pos + crlf_dash_boundary_.size());
  7367. state_ = 4;
  7368. } else {
  7369. auto len = buf_size() - crlf_dash_boundary_.size();
  7370. if (len > 0) {
  7371. if (!content_callback(buf_data(), len)) {
  7372. is_valid_ = false;
  7373. return false;
  7374. }
  7375. buf_erase(len);
  7376. }
  7377. return true;
  7378. }
  7379. break;
  7380. }
  7381. case 4: { // Boundary
  7382. if (crlf_.size() > buf_size()) { return true; }
  7383. if (buf_start_with(crlf_)) {
  7384. buf_erase(crlf_.size());
  7385. state_ = 1;
  7386. } else {
  7387. if (dash_.size() > buf_size()) { return true; }
  7388. if (buf_start_with(dash_)) {
  7389. buf_erase(dash_.size());
  7390. is_valid_ = true;
  7391. buf_erase(buf_size()); // Remove epilogue
  7392. } else {
  7393. return true;
  7394. }
  7395. }
  7396. break;
  7397. }
  7398. }
  7399. }
  7400. return true;
  7401. }
  7402. private:
  7403. void clear_file_info() {
  7404. file_.name.clear();
  7405. file_.filename.clear();
  7406. file_.content_type.clear();
  7407. file_.headers.clear();
  7408. header_count_ = 0;
  7409. }
  7410. bool start_with_case_ignore(const std::string &a, const char *b,
  7411. size_t offset = 0) const {
  7412. const auto b_len = strlen(b);
  7413. if (a.size() < offset + b_len) { return false; }
  7414. for (size_t i = 0; i < b_len; i++) {
  7415. if (case_ignore::to_lower(a[offset + i]) != case_ignore::to_lower(b[i])) {
  7416. return false;
  7417. }
  7418. }
  7419. return true;
  7420. }
  7421. // Parses "Content-Disposition: form-data; <params>" without std::regex.
  7422. // Returns true if header matches, with the params portion in `params_out`.
  7423. bool parse_content_disposition(const std::string &header,
  7424. std::string &params_out) const {
  7425. constexpr const char prefix[] = "Content-Disposition:";
  7426. constexpr size_t prefix_len = str_len(prefix);
  7427. if (!start_with_case_ignore(header, prefix)) { return false; }
  7428. // Skip whitespace after "Content-Disposition:"
  7429. auto pos = prefix_len;
  7430. while (pos < header.size() && (header[pos] == ' ' || header[pos] == '\t')) {
  7431. pos++;
  7432. }
  7433. // Match "form-data;" (case-insensitive)
  7434. constexpr const char form_data[] = "form-data;";
  7435. constexpr size_t form_data_len = str_len(form_data);
  7436. if (!start_with_case_ignore(header, form_data, pos)) { return false; }
  7437. pos += form_data_len;
  7438. // Skip whitespace after "form-data;"
  7439. while (pos < header.size() && (header[pos] == ' ' || header[pos] == '\t')) {
  7440. pos++;
  7441. }
  7442. params_out = header.substr(pos);
  7443. return true;
  7444. }
  7445. const std::string dash_ = "--";
  7446. const std::string crlf_ = "\r\n";
  7447. std::string boundary_;
  7448. std::string dash_boundary_crlf_;
  7449. std::string crlf_dash_boundary_;
  7450. size_t state_ = 0;
  7451. bool is_valid_ = false;
  7452. FormData file_;
  7453. size_t header_count_ = 0;
  7454. // Buffer
  7455. bool start_with(const std::string &a, size_t spos, size_t epos,
  7456. const std::string &b) const {
  7457. if (epos - spos < b.size()) { return false; }
  7458. for (size_t i = 0; i < b.size(); i++) {
  7459. if (a[i + spos] != b[i]) { return false; }
  7460. }
  7461. return true;
  7462. }
  7463. size_t buf_size() const { return buf_epos_ - buf_spos_; }
  7464. const char *buf_data() const { return &buf_[buf_spos_]; }
  7465. std::string buf_head(size_t l) const { return buf_.substr(buf_spos_, l); }
  7466. bool buf_start_with(const std::string &s) const {
  7467. return start_with(buf_, buf_spos_, buf_epos_, s);
  7468. }
  7469. size_t buf_find(const std::string &s) const {
  7470. auto c = s.front();
  7471. size_t off = buf_spos_;
  7472. while (off < buf_epos_) {
  7473. auto pos = off;
  7474. while (true) {
  7475. if (pos == buf_epos_) { return buf_size(); }
  7476. if (buf_[pos] == c) { break; }
  7477. pos++;
  7478. }
  7479. auto remaining_size = buf_epos_ - pos;
  7480. if (s.size() > remaining_size) { return buf_size(); }
  7481. if (start_with(buf_, pos, buf_epos_, s)) { return pos - buf_spos_; }
  7482. off = pos + 1;
  7483. }
  7484. return buf_size();
  7485. }
  7486. void buf_append(const char *data, size_t n) {
  7487. auto remaining_size = buf_size();
  7488. if (remaining_size > 0 && buf_spos_ > 0) {
  7489. for (size_t i = 0; i < remaining_size; i++) {
  7490. buf_[i] = buf_[buf_spos_ + i];
  7491. }
  7492. }
  7493. buf_spos_ = 0;
  7494. buf_epos_ = remaining_size;
  7495. if (remaining_size + n > buf_.size()) { buf_.resize(remaining_size + n); }
  7496. for (size_t i = 0; i < n; i++) {
  7497. buf_[buf_epos_ + i] = data[i];
  7498. }
  7499. buf_epos_ += n;
  7500. }
  7501. void buf_erase(size_t size) { buf_spos_ += size; }
  7502. std::string buf_;
  7503. size_t buf_spos_ = 0;
  7504. size_t buf_epos_ = 0;
  7505. };
  7506. inline std::string random_string(size_t length) {
  7507. constexpr const char data[] =
  7508. "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz";
  7509. thread_local auto engine([]() {
  7510. // std::random_device might actually be deterministic on some
  7511. // platforms, but due to lack of support in the c++ standard library,
  7512. // doing better requires either some ugly hacks or breaking portability.
  7513. std::random_device seed_gen;
  7514. // Request 128 bits of entropy for initialization
  7515. std::seed_seq seed_sequence{seed_gen(), seed_gen(), seed_gen(), seed_gen()};
  7516. return std::mt19937(seed_sequence);
  7517. }());
  7518. std::string result;
  7519. for (size_t i = 0; i < length; i++) {
  7520. result += data[engine() % (sizeof(data) - 1)];
  7521. }
  7522. return result;
  7523. }
  7524. inline std::string make_multipart_data_boundary() {
  7525. return "--cpp-httplib-multipart-data-" + detail::random_string(16);
  7526. }
  7527. inline bool is_multipart_boundary_chars_valid(const std::string &boundary) {
  7528. auto valid = true;
  7529. for (size_t i = 0; i < boundary.size(); i++) {
  7530. auto c = boundary[i];
  7531. if (!is_ascii_alnum(c) && c != '-' && c != '_') {
  7532. valid = false;
  7533. break;
  7534. }
  7535. }
  7536. return valid;
  7537. }
  7538. // Escape a multipart field name/filename following the WHATWG HTML standard
  7539. // ("escape a multipart form-data name"), which is what browsers send:
  7540. // '"' -> %22, CR -> %0D, LF -> %0A
  7541. // With escape_quote = false, only CR and LF are escaped; this is for header
  7542. // values outside a quoted-string (e.g. Content-Type), where '"' is legal.
  7543. inline std::string escape_multipart_field(const std::string &s,
  7544. bool escape_quote = true) {
  7545. std::string result;
  7546. result.reserve(s.size());
  7547. for (auto c : s) {
  7548. switch (c) {
  7549. case '"':
  7550. if (escape_quote) {
  7551. result += "%22";
  7552. } else {
  7553. result += c;
  7554. }
  7555. break;
  7556. case '\r': result += "%0D"; break;
  7557. case '\n': result += "%0A"; break;
  7558. default: result += c; break;
  7559. }
  7560. }
  7561. return result;
  7562. }
  7563. template <typename T>
  7564. inline std::string
  7565. serialize_multipart_formdata_item_begin(const T &item,
  7566. const std::string &boundary) {
  7567. std::string body = "--" + boundary + "\r\n";
  7568. body += "Content-Disposition: form-data; name=\"" +
  7569. escape_multipart_field(item.name) + "\"";
  7570. if (!item.filename.empty()) {
  7571. body += "; filename=\"" + escape_multipart_field(item.filename) + "\"";
  7572. }
  7573. body += "\r\n";
  7574. if (!item.content_type.empty()) {
  7575. body +=
  7576. "Content-Type: " + escape_multipart_field(item.content_type, false) +
  7577. "\r\n";
  7578. }
  7579. body += "\r\n";
  7580. return body;
  7581. }
  7582. inline std::string serialize_multipart_formdata_item_end() { return "\r\n"; }
  7583. inline std::string
  7584. serialize_multipart_formdata_finish(const std::string &boundary) {
  7585. return "--" + boundary + "--\r\n";
  7586. }
  7587. inline std::string
  7588. serialize_multipart_formdata_get_content_type(const std::string &boundary) {
  7589. return "multipart/form-data; boundary=" + boundary;
  7590. }
  7591. inline std::string
  7592. serialize_multipart_formdata(const UploadFormDataItems &items,
  7593. const std::string &boundary, bool finish = true) {
  7594. std::string body;
  7595. for (const auto &item : items) {
  7596. body += serialize_multipart_formdata_item_begin(item, boundary);
  7597. body += item.content + serialize_multipart_formdata_item_end();
  7598. }
  7599. if (finish) { body += serialize_multipart_formdata_finish(boundary); }
  7600. return body;
  7601. }
  7602. inline size_t get_multipart_content_length(const UploadFormDataItems &items,
  7603. const std::string &boundary) {
  7604. size_t total = 0;
  7605. for (const auto &item : items) {
  7606. total += serialize_multipart_formdata_item_begin(item, boundary).size();
  7607. total += item.content.size();
  7608. total += serialize_multipart_formdata_item_end().size();
  7609. }
  7610. total += serialize_multipart_formdata_finish(boundary).size();
  7611. return total;
  7612. }
  7613. struct MultipartSegment {
  7614. const char *data;
  7615. size_t size;
  7616. };
  7617. // NOTE: items must outlive the returned ContentProvider
  7618. // (safe for synchronous use inside Post/Put/Patch)
  7619. inline ContentProvider
  7620. make_multipart_content_provider(const UploadFormDataItems &items,
  7621. const std::string &boundary) {
  7622. // Own the per-item header strings and the finish string
  7623. std::vector<std::string> owned;
  7624. owned.reserve(items.size() + 1);
  7625. for (const auto &item : items)
  7626. owned.push_back(serialize_multipart_formdata_item_begin(item, boundary));
  7627. owned.push_back(serialize_multipart_formdata_finish(boundary));
  7628. // Flat segment list: [header, content, "\r\n"] * N + [finish]
  7629. std::vector<MultipartSegment> segs;
  7630. segs.reserve(items.size() * 3 + 1);
  7631. static const char crlf[] = "\r\n";
  7632. for (size_t i = 0; i < items.size(); i++) {
  7633. segs.push_back({owned[i].data(), owned[i].size()});
  7634. segs.push_back({items[i].content.data(), items[i].content.size()});
  7635. segs.push_back({crlf, 2});
  7636. }
  7637. segs.push_back({owned.back().data(), owned.back().size()});
  7638. struct MultipartState {
  7639. std::vector<std::string> owned;
  7640. std::vector<MultipartSegment> segs;
  7641. std::vector<char> buf = std::vector<char>(CPPHTTPLIB_SEND_BUFSIZ);
  7642. };
  7643. auto state = std::make_shared<MultipartState>();
  7644. state->owned = std::move(owned);
  7645. // `segs` holds raw pointers into owned strings; std::string move preserves
  7646. // the data pointer, so these pointers remain valid after the move above.
  7647. state->segs = std::move(segs);
  7648. return [state](size_t offset, size_t length, DataSink &sink) -> bool {
  7649. // Buffer multiple small segments into fewer, larger writes to avoid
  7650. // excessive TCP packets when there are many form data items (#2410)
  7651. auto &buf = state->buf;
  7652. auto buf_size = buf.size();
  7653. size_t buf_len = 0;
  7654. size_t remaining = length;
  7655. // Find the first segment containing 'offset'
  7656. size_t pos = 0;
  7657. size_t seg_idx = 0;
  7658. for (; seg_idx < state->segs.size(); seg_idx++) {
  7659. const auto &seg = state->segs[seg_idx];
  7660. if (seg.size > 0 && offset - pos < seg.size) { break; }
  7661. pos += seg.size;
  7662. }
  7663. size_t seg_offset = (seg_idx < state->segs.size()) ? offset - pos : 0;
  7664. for (; seg_idx < state->segs.size() && remaining > 0; seg_idx++) {
  7665. const auto &seg = state->segs[seg_idx];
  7666. size_t available = seg.size - seg_offset;
  7667. size_t to_copy = (std::min)(available, remaining);
  7668. const char *src = seg.data + seg_offset;
  7669. seg_offset = 0; // only the first segment has a non-zero offset
  7670. while (to_copy > 0) {
  7671. size_t space = buf_size - buf_len;
  7672. size_t chunk = (std::min)(to_copy, space);
  7673. std::memcpy(buf.data() + buf_len, src, chunk);
  7674. buf_len += chunk;
  7675. src += chunk;
  7676. to_copy -= chunk;
  7677. remaining -= chunk;
  7678. if (buf_len == buf_size) {
  7679. if (!sink.write(buf.data(), buf_len)) { return false; }
  7680. buf_len = 0;
  7681. }
  7682. }
  7683. }
  7684. if (buf_len > 0) { return sink.write(buf.data(), buf_len); }
  7685. return true;
  7686. };
  7687. }
  7688. inline void coalesce_ranges(Ranges &ranges, size_t content_length) {
  7689. if (ranges.size() <= 1) return;
  7690. // Sort ranges by start position
  7691. std::sort(ranges.begin(), ranges.end(),
  7692. [](const Range &a, const Range &b) { return a.first < b.first; });
  7693. Ranges coalesced;
  7694. coalesced.reserve(ranges.size());
  7695. for (auto &r : ranges) {
  7696. auto first_pos = r.first;
  7697. auto last_pos = r.second;
  7698. // Handle special cases like in range_error
  7699. if (first_pos == -1 && last_pos == -1) {
  7700. first_pos = 0;
  7701. last_pos = static_cast<ssize_t>(content_length);
  7702. }
  7703. if (first_pos == -1) {
  7704. first_pos = static_cast<ssize_t>(content_length) - last_pos;
  7705. last_pos = static_cast<ssize_t>(content_length) - 1;
  7706. }
  7707. if (last_pos == -1 || last_pos >= static_cast<ssize_t>(content_length)) {
  7708. last_pos = static_cast<ssize_t>(content_length) - 1;
  7709. }
  7710. // Skip invalid ranges
  7711. if (!(0 <= first_pos && first_pos <= last_pos &&
  7712. last_pos < static_cast<ssize_t>(content_length))) {
  7713. continue;
  7714. }
  7715. // Coalesce with previous range if overlapping or adjacent (but not
  7716. // identical)
  7717. if (!coalesced.empty()) {
  7718. auto &prev = coalesced.back();
  7719. // Check if current range overlaps or is adjacent to previous range
  7720. // but don't coalesce identical ranges (allow duplicates)
  7721. if (first_pos <= prev.second + 1 &&
  7722. !(first_pos == prev.first && last_pos == prev.second)) {
  7723. // Extend the previous range
  7724. prev.second = (std::max)(prev.second, last_pos);
  7725. continue;
  7726. }
  7727. }
  7728. // Add new range
  7729. coalesced.emplace_back(first_pos, last_pos);
  7730. }
  7731. ranges = std::move(coalesced);
  7732. }
  7733. inline bool range_error(Request &req, Response &res) {
  7734. if (!req.ranges.empty() && 200 <= res.status && res.status < 300) {
  7735. if (res.body.empty() && res.content_provider_ && res.content_length_ == 0) {
  7736. req.ranges.clear();
  7737. if (res.status == StatusCode::PartialContent_206) {
  7738. res.status = StatusCode::OK_200;
  7739. }
  7740. return false;
  7741. }
  7742. ssize_t content_len = static_cast<ssize_t>(
  7743. res.content_length_ ? res.content_length_ : res.body.size());
  7744. std::vector<std::pair<ssize_t, ssize_t>> processed_ranges;
  7745. size_t overwrapping_count = 0;
  7746. // NOTE: The following Range check is based on '14.2. Range' in RFC 9110
  7747. // 'HTTP Semantics' to avoid potential denial-of-service attacks.
  7748. // https://www.rfc-editor.org/rfc/rfc9110#section-14.2
  7749. // Too many ranges
  7750. if (req.ranges.size() > CPPHTTPLIB_RANGE_MAX_COUNT) { return true; }
  7751. for (auto &r : req.ranges) {
  7752. auto &first_pos = r.first;
  7753. auto &last_pos = r.second;
  7754. if (first_pos == -1 && last_pos == -1) {
  7755. first_pos = 0;
  7756. last_pos = content_len;
  7757. }
  7758. if (first_pos == -1) {
  7759. first_pos = content_len - last_pos;
  7760. last_pos = content_len - 1;
  7761. }
  7762. // NOTE: RFC-9110 '14.1.2. Byte Ranges':
  7763. // A client can limit the number of bytes requested without knowing the
  7764. // size of the selected representation. If the last-pos value is absent,
  7765. // or if the value is greater than or equal to the current length of the
  7766. // representation data, the byte range is interpreted as the remainder of
  7767. // the representation (i.e., the server replaces the value of last-pos
  7768. // with a value that is one less than the current length of the selected
  7769. // representation).
  7770. // https://www.rfc-editor.org/rfc/rfc9110.html#section-14.1.2-6
  7771. if (last_pos == -1 || last_pos >= content_len) {
  7772. last_pos = content_len - 1;
  7773. }
  7774. // Range must be within content length
  7775. if (!(0 <= first_pos && first_pos <= last_pos &&
  7776. last_pos <= content_len - 1)) {
  7777. return true;
  7778. }
  7779. // Request must not have more than two overlapping ranges
  7780. for (const auto &processed_range : processed_ranges) {
  7781. if (!(last_pos < processed_range.first ||
  7782. first_pos > processed_range.second)) {
  7783. overwrapping_count++;
  7784. if (overwrapping_count > 2) { return true; }
  7785. break; // Only count once per range
  7786. }
  7787. }
  7788. processed_ranges.emplace_back(first_pos, last_pos);
  7789. }
  7790. // After validation, coalesce overlapping ranges as per RFC 9110
  7791. coalesce_ranges(req.ranges, static_cast<size_t>(content_len));
  7792. }
  7793. return false;
  7794. }
  7795. inline std::pair<size_t, size_t>
  7796. get_range_offset_and_length(Range r, size_t content_length) {
  7797. assert(r.first != -1 && r.second != -1);
  7798. assert(0 <= r.first && r.first < static_cast<ssize_t>(content_length));
  7799. assert(r.first <= r.second &&
  7800. r.second < static_cast<ssize_t>(content_length));
  7801. (void)(content_length);
  7802. return std::make_pair(static_cast<size_t>(r.first),
  7803. static_cast<size_t>(r.second - r.first) + 1);
  7804. }
  7805. inline std::string make_content_range_header_field(
  7806. const std::pair<size_t, size_t> &offset_and_length, size_t content_length) {
  7807. auto st = offset_and_length.first;
  7808. auto ed = st + offset_and_length.second - 1;
  7809. std::string field = "bytes ";
  7810. field += std::to_string(st);
  7811. field += '-';
  7812. field += std::to_string(ed);
  7813. field += '/';
  7814. field += std::to_string(content_length);
  7815. return field;
  7816. }
  7817. template <typename SToken, typename CToken, typename Content>
  7818. bool process_multipart_ranges_data(const Request &req,
  7819. const std::string &boundary,
  7820. const std::string &content_type,
  7821. size_t content_length, SToken stoken,
  7822. CToken ctoken, Content content) {
  7823. for (size_t i = 0; i < req.ranges.size(); i++) {
  7824. ctoken("--");
  7825. stoken(boundary);
  7826. ctoken("\r\n");
  7827. if (!content_type.empty()) {
  7828. ctoken("Content-Type: ");
  7829. stoken(content_type);
  7830. ctoken("\r\n");
  7831. }
  7832. auto offset_and_length =
  7833. get_range_offset_and_length(req.ranges[i], content_length);
  7834. ctoken("Content-Range: ");
  7835. stoken(make_content_range_header_field(offset_and_length, content_length));
  7836. ctoken("\r\n");
  7837. ctoken("\r\n");
  7838. if (!content(offset_and_length.first, offset_and_length.second)) {
  7839. return false;
  7840. }
  7841. ctoken("\r\n");
  7842. }
  7843. ctoken("--");
  7844. stoken(boundary);
  7845. ctoken("--");
  7846. return true;
  7847. }
  7848. inline void make_multipart_ranges_data(const Request &req, Response &res,
  7849. const std::string &boundary,
  7850. const std::string &content_type,
  7851. size_t content_length,
  7852. std::string &data) {
  7853. process_multipart_ranges_data(
  7854. req, boundary, content_type, content_length,
  7855. [&](const std::string &token) { data += token; },
  7856. [&](const std::string &token) { data += token; },
  7857. [&](size_t offset, size_t length) {
  7858. assert(offset + length <= content_length);
  7859. data += res.body.substr(offset, length);
  7860. return true;
  7861. });
  7862. }
  7863. inline size_t get_multipart_ranges_data_length(const Request &req,
  7864. const std::string &boundary,
  7865. const std::string &content_type,
  7866. size_t content_length) {
  7867. size_t data_length = 0;
  7868. process_multipart_ranges_data(
  7869. req, boundary, content_type, content_length,
  7870. [&](const std::string &token) { data_length += token.size(); },
  7871. [&](const std::string &token) { data_length += token.size(); },
  7872. [&](size_t /*offset*/, size_t length) {
  7873. data_length += length;
  7874. return true;
  7875. });
  7876. return data_length;
  7877. }
  7878. template <typename T>
  7879. inline bool
  7880. write_multipart_ranges_data(Stream &strm, const Request &req, Response &res,
  7881. const std::string &boundary,
  7882. const std::string &content_type,
  7883. size_t content_length, const T &is_shutting_down) {
  7884. return process_multipart_ranges_data(
  7885. req, boundary, content_type, content_length,
  7886. [&](const std::string &token) { strm.write(token); },
  7887. [&](const std::string &token) { strm.write(token); },
  7888. [&](size_t offset, size_t length) {
  7889. return write_content(strm, res.content_provider_, offset, length,
  7890. is_shutting_down);
  7891. });
  7892. }
  7893. inline bool has_framed_body(const Request &req) {
  7894. return is_chunked_transfer_encoding(req.headers) ||
  7895. req.get_header_value_u64("Content-Length") > 0;
  7896. }
  7897. inline bool is_connection_persistent(const Request &req) {
  7898. auto conn = req.get_header_value("Connection");
  7899. if (conn == "close") { return false; }
  7900. if (req.version == "HTTP/1.0" && conn != "Keep-Alive") { return false; }
  7901. return true;
  7902. }
  7903. inline bool expect_content(const Request &req) {
  7904. if (req.method == "POST" || req.method == "PUT" || req.method == "PATCH" ||
  7905. req.method == "DELETE") {
  7906. return true;
  7907. }
  7908. return has_framed_body(req);
  7909. }
  7910. #ifdef _WIN32
  7911. class WSInit {
  7912. public:
  7913. WSInit() {
  7914. WSADATA wsaData;
  7915. if (WSAStartup(0x0002, &wsaData) == 0) is_valid_ = true;
  7916. }
  7917. ~WSInit() {
  7918. if (is_valid_) WSACleanup();
  7919. }
  7920. bool is_valid_ = false;
  7921. };
  7922. static WSInit wsinit_;
  7923. #endif
  7924. inline bool parse_www_authenticate(const Response &res,
  7925. std::map<std::string, std::string> &auth,
  7926. bool is_proxy) {
  7927. auto auth_key = is_proxy ? "Proxy-Authenticate" : "WWW-Authenticate";
  7928. if (res.has_header(auth_key)) {
  7929. thread_local auto re =
  7930. std::regex(R"~((?:(?:,\s*)?(.+?)=(?:"(.*?)"|([^,]*))))~");
  7931. auto s = res.get_header_value(auth_key);
  7932. auto pos = s.find(' ');
  7933. if (pos != std::string::npos) {
  7934. auto type = s.substr(0, pos);
  7935. if (type == "Basic") {
  7936. return false;
  7937. } else if (type == "Digest") {
  7938. s = s.substr(pos + 1);
  7939. auto beg = std::sregex_iterator(s.begin(), s.end(), re);
  7940. for (auto i = beg; i != std::sregex_iterator(); ++i) {
  7941. const auto &m = *i;
  7942. auto key = s.substr(static_cast<size_t>(m.position(1)),
  7943. static_cast<size_t>(m.length(1)));
  7944. auto val = m.length(2) > 0
  7945. ? s.substr(static_cast<size_t>(m.position(2)),
  7946. static_cast<size_t>(m.length(2)))
  7947. : s.substr(static_cast<size_t>(m.position(3)),
  7948. static_cast<size_t>(m.length(3)));
  7949. auth[std::move(key)] = std::move(val);
  7950. }
  7951. return true;
  7952. }
  7953. }
  7954. }
  7955. return false;
  7956. }
  7957. class ContentProviderAdapter {
  7958. public:
  7959. explicit ContentProviderAdapter(
  7960. ContentProviderWithoutLength &&content_provider)
  7961. : content_provider_(std::move(content_provider)) {}
  7962. bool operator()(size_t offset, size_t, DataSink &sink) {
  7963. return content_provider_(offset, sink);
  7964. }
  7965. private:
  7966. ContentProviderWithoutLength content_provider_;
  7967. };
  7968. // NOTE: https://www.rfc-editor.org/rfc/rfc9110#section-5
  7969. namespace fields {
  7970. inline bool is_token_char(char c) {
  7971. return is_ascii_alnum(c) || c == '!' || c == '#' || c == '$' || c == '%' ||
  7972. c == '&' || c == '\'' || c == '*' || c == '+' || c == '-' ||
  7973. c == '.' || c == '^' || c == '_' || c == '`' || c == '|' || c == '~';
  7974. }
  7975. inline bool is_token(const std::string &s) {
  7976. if (s.empty()) { return false; }
  7977. for (auto c : s) {
  7978. if (!is_token_char(c)) { return false; }
  7979. }
  7980. return true;
  7981. }
  7982. inline bool is_field_name(const std::string &s) { return is_token(s); }
  7983. inline bool is_vchar(char c) { return c >= 33 && c <= 126; }
  7984. inline bool is_obs_text(char c) { return 128 <= static_cast<unsigned char>(c); }
  7985. inline bool is_field_vchar(char c) { return is_vchar(c) || is_obs_text(c); }
  7986. inline bool is_field_content(const std::string &s) {
  7987. if (s.empty()) { return true; }
  7988. if (s.size() == 1) {
  7989. return is_field_vchar(s[0]);
  7990. } else if (s.size() == 2) {
  7991. return is_field_vchar(s[0]) && is_field_vchar(s[1]);
  7992. } else {
  7993. size_t i = 0;
  7994. if (!is_field_vchar(s[i])) { return false; }
  7995. i++;
  7996. while (i < s.size() - 1) {
  7997. auto c = s[i++];
  7998. if (c == ' ' || c == '\t' || is_field_vchar(c)) {
  7999. } else {
  8000. return false;
  8001. }
  8002. }
  8003. return is_field_vchar(s[i]);
  8004. }
  8005. }
  8006. inline bool is_field_value(const std::string &s) { return is_field_content(s); }
  8007. inline bool is_field_valid(const std::string &name, const std::string &value) {
  8008. return is_field_name(name) && is_field_value(value);
  8009. }
  8010. } // namespace fields
  8011. inline bool perform_websocket_handshake(Stream &strm, Request &req,
  8012. WebSocketUpgradeResponse &upgrade) {
  8013. // Generate random Sec-WebSocket-Key
  8014. thread_local std::mt19937 rng(std::random_device{}());
  8015. std::string key_bytes(16, '\0');
  8016. for (size_t i = 0; i < 16; i += 4) {
  8017. auto r = rng();
  8018. std::memcpy(&key_bytes[i], &r, (std::min)(size_t(4), size_t(16 - i)));
  8019. }
  8020. auto client_key = base64_encode(key_bytes);
  8021. req.headers.erase("Upgrade");
  8022. req.headers.erase("Connection");
  8023. req.headers.erase("Sec-WebSocket-Key");
  8024. req.headers.erase("Sec-WebSocket-Version");
  8025. req.headers.emplace("Upgrade", "websocket");
  8026. req.headers.emplace("Connection", "Upgrade");
  8027. req.headers.emplace("Sec-WebSocket-Key", client_key);
  8028. req.headers.emplace("Sec-WebSocket-Version", "13");
  8029. // Build the request in memory first, like ClientImpl::write_request does.
  8030. // Writing straight to the socket would leak a request line onto the wire
  8031. // before check_and_write_headers gets a chance to reject an invalid header,
  8032. // and would emit one small write per header.
  8033. BufferStream bstrm;
  8034. if (write_request_line(bstrm, req.method, req.path) < 0) {
  8035. upgrade.error = Error::Write;
  8036. return false;
  8037. }
  8038. auto error = Error::Success;
  8039. if (!check_and_write_headers(bstrm, req.headers, write_headers, error)) {
  8040. upgrade.error = error;
  8041. return false;
  8042. }
  8043. const auto &data = bstrm.get_buffer();
  8044. if (!write_data(strm, data.data(), data.size())) {
  8045. upgrade.error = Error::Write;
  8046. return false;
  8047. }
  8048. // Verify 101 response and Sec-WebSocket-Accept header
  8049. auto expected_accept = websocket_accept_key(client_key);
  8050. return read_websocket_upgrade_response(strm, expected_accept, upgrade);
  8051. }
  8052. inline bool is_ip_address(const std::string &host) {
  8053. struct in_addr addr4;
  8054. struct in6_addr addr6;
  8055. return inet_pton(AF_INET, host.c_str(), &addr4) == 1 ||
  8056. inet_pton(AF_INET6, host.c_str(), &addr6) == 1;
  8057. }
  8058. // Resolve where a client should connect for `host`, honoring a user-supplied
  8059. // hostname-to-address map. `host` itself is never rewritten, so it keeps
  8060. // supplying the Host header and SNI; only the connection target changes.
  8061. //
  8062. // A mapped IP literal goes to `ip`, which keeps create_socket's AI_NUMERICHOST
  8063. // path. Anything else goes to `connect_host`, which create_socket resolves as
  8064. // a name, or uses as the socket path when the address family is AF_UNIX. An
  8065. // absent or empty mapping leaves `host` as the connection target; without the
  8066. // empty check the value would reach getaddrinfo as a null node and silently
  8067. // resolve to loopback.
  8068. inline void apply_addr_map(const std::map<std::string, std::string> &addr_map,
  8069. const std::string &host, std::string &connect_host,
  8070. std::string &ip) {
  8071. connect_host = host;
  8072. ip.clear();
  8073. auto it = addr_map.find(host);
  8074. if (it == addr_map.end() || it->second.empty()) { return; }
  8075. if (is_ip_address(it->second)) {
  8076. ip = it->second;
  8077. } else {
  8078. connect_host = it->second;
  8079. }
  8080. }
  8081. } // namespace detail
  8082. /*
  8083. * Group 2: detail namespace - SSL common utilities
  8084. */
  8085. #ifdef CPPHTTPLIB_SSL_ENABLED
  8086. namespace detail {
  8087. class SSLSocketStream final : public Stream {
  8088. public:
  8089. SSLSocketStream(
  8090. socket_t sock, tls::session_t session, time_t read_timeout_sec,
  8091. time_t read_timeout_usec, time_t write_timeout_sec,
  8092. time_t write_timeout_usec, time_t max_timeout_msec = 0,
  8093. std::chrono::time_point<std::chrono::steady_clock> start_time =
  8094. (std::chrono::steady_clock::time_point::min)());
  8095. ~SSLSocketStream() override;
  8096. bool is_readable() const override;
  8097. bool wait_readable() const override;
  8098. bool wait_writable() const override;
  8099. bool is_peer_alive() const override;
  8100. ssize_t read(char *ptr, size_t size) override;
  8101. ssize_t write(const char *ptr, size_t size) override;
  8102. void get_remote_ip_and_port(std::string &ip, int &port) const override;
  8103. void get_local_ip_and_port(std::string &ip, int &port) const override;
  8104. socket_t socket() const override;
  8105. time_t duration() const override;
  8106. void set_read_timeout(time_t sec, time_t usec = 0) override;
  8107. // See SocketStream::set_readable_hint().
  8108. void set_readable_hint() { readable_hint_ = true; }
  8109. private:
  8110. bool ensure_readable();
  8111. socket_t sock_;
  8112. tls::session_t session_;
  8113. time_t read_timeout_sec_;
  8114. time_t read_timeout_usec_;
  8115. time_t write_timeout_sec_;
  8116. time_t write_timeout_usec_;
  8117. time_t max_timeout_msec_;
  8118. const std::chrono::time_point<std::chrono::steady_clock> start_time_;
  8119. bool readable_hint_ = false;
  8120. };
  8121. #ifdef CPPHTTPLIB_OPENSSL_SUPPORT
  8122. inline std::string message_digest(const std::string &s, const EVP_MD *algo) {
  8123. auto context = std::unique_ptr<EVP_MD_CTX, decltype(&EVP_MD_CTX_free)>(
  8124. EVP_MD_CTX_new(), EVP_MD_CTX_free);
  8125. unsigned int hash_length = 0;
  8126. unsigned char hash[EVP_MAX_MD_SIZE];
  8127. EVP_DigestInit_ex(context.get(), algo, nullptr);
  8128. EVP_DigestUpdate(context.get(), s.c_str(), s.size());
  8129. EVP_DigestFinal_ex(context.get(), hash, &hash_length);
  8130. std::stringstream ss;
  8131. for (auto i = 0u; i < hash_length; ++i) {
  8132. ss << std::hex << std::setw(2) << std::setfill('0')
  8133. << static_cast<unsigned int>(hash[i]);
  8134. }
  8135. return ss.str();
  8136. }
  8137. inline std::string MD5(const std::string &s) {
  8138. return message_digest(s, EVP_md5());
  8139. }
  8140. inline std::string SHA_256(const std::string &s) {
  8141. return message_digest(s, EVP_sha256());
  8142. }
  8143. inline std::string SHA_512(const std::string &s) {
  8144. return message_digest(s, EVP_sha512());
  8145. }
  8146. #elif defined(CPPHTTPLIB_MBEDTLS_SUPPORT)
  8147. namespace {
  8148. template <size_t N>
  8149. inline std::string hash_to_hex(const unsigned char (&hash)[N]) {
  8150. std::stringstream ss;
  8151. for (size_t i = 0; i < N; ++i) {
  8152. ss << std::hex << std::setw(2) << std::setfill('0')
  8153. << static_cast<unsigned int>(hash[i]);
  8154. }
  8155. return ss.str();
  8156. }
  8157. } // namespace
  8158. #ifdef CPPHTTPLIB_MBEDTLS_V4
  8159. // Mbed TLS 4.x provides hashing (and TLS RNG) via PSA Crypto, which must be
  8160. // initialized once. PSA state is process-global; do not free it.
  8161. inline bool ensure_mbedtls_psa_crypto() {
  8162. static std::once_flag once;
  8163. static bool ok = false;
  8164. std::call_once(once, []() { ok = (psa_crypto_init() == PSA_SUCCESS); });
  8165. return ok;
  8166. }
  8167. inline bool psa_hash(psa_algorithm_t alg, const std::string &s,
  8168. unsigned char *out, size_t out_size) {
  8169. if (!ensure_mbedtls_psa_crypto()) { return false; }
  8170. size_t olen = 0;
  8171. return psa_hash_compute(alg, reinterpret_cast<const uint8_t *>(s.data()),
  8172. s.size(), out, out_size, &olen) == PSA_SUCCESS &&
  8173. olen == out_size;
  8174. }
  8175. #endif
  8176. inline std::string MD5(const std::string &s) {
  8177. unsigned char hash[16];
  8178. #ifdef CPPHTTPLIB_MBEDTLS_V4
  8179. if (!psa_hash(PSA_ALG_MD5, s, hash, sizeof(hash))) { return {}; }
  8180. #elif defined(CPPHTTPLIB_MBEDTLS_V3)
  8181. mbedtls_md5(reinterpret_cast<const unsigned char *>(s.c_str()), s.size(),
  8182. hash);
  8183. #else
  8184. mbedtls_md5_ret(reinterpret_cast<const unsigned char *>(s.c_str()), s.size(),
  8185. hash);
  8186. #endif
  8187. return hash_to_hex(hash);
  8188. }
  8189. inline std::string SHA_256(const std::string &s) {
  8190. unsigned char hash[32];
  8191. #ifdef CPPHTTPLIB_MBEDTLS_V4
  8192. if (!psa_hash(PSA_ALG_SHA_256, s, hash, sizeof(hash))) { return {}; }
  8193. #elif defined(CPPHTTPLIB_MBEDTLS_V3)
  8194. mbedtls_sha256(reinterpret_cast<const unsigned char *>(s.c_str()), s.size(),
  8195. hash, 0);
  8196. #else
  8197. mbedtls_sha256_ret(reinterpret_cast<const unsigned char *>(s.c_str()),
  8198. s.size(), hash, 0);
  8199. #endif
  8200. return hash_to_hex(hash);
  8201. }
  8202. inline std::string SHA_512(const std::string &s) {
  8203. unsigned char hash[64];
  8204. #ifdef CPPHTTPLIB_MBEDTLS_V4
  8205. if (!psa_hash(PSA_ALG_SHA_512, s, hash, sizeof(hash))) { return {}; }
  8206. #elif defined(CPPHTTPLIB_MBEDTLS_V3)
  8207. mbedtls_sha512(reinterpret_cast<const unsigned char *>(s.c_str()), s.size(),
  8208. hash, 0);
  8209. #else
  8210. mbedtls_sha512_ret(reinterpret_cast<const unsigned char *>(s.c_str()),
  8211. s.size(), hash, 0);
  8212. #endif
  8213. return hash_to_hex(hash);
  8214. }
  8215. #elif defined(CPPHTTPLIB_WOLFSSL_SUPPORT)
  8216. namespace {
  8217. template <size_t N>
  8218. inline std::string hash_to_hex(const unsigned char (&hash)[N]) {
  8219. std::stringstream ss;
  8220. for (size_t i = 0; i < N; ++i) {
  8221. ss << std::hex << std::setw(2) << std::setfill('0')
  8222. << static_cast<unsigned int>(hash[i]);
  8223. }
  8224. return ss.str();
  8225. }
  8226. } // namespace
  8227. inline std::string MD5(const std::string &s) {
  8228. unsigned char hash[WC_MD5_DIGEST_SIZE];
  8229. wc_Md5Hash(reinterpret_cast<const unsigned char *>(s.c_str()),
  8230. static_cast<word32>(s.size()), hash);
  8231. return hash_to_hex(hash);
  8232. }
  8233. inline std::string SHA_256(const std::string &s) {
  8234. unsigned char hash[WC_SHA256_DIGEST_SIZE];
  8235. wc_Sha256Hash(reinterpret_cast<const unsigned char *>(s.c_str()),
  8236. static_cast<word32>(s.size()), hash);
  8237. return hash_to_hex(hash);
  8238. }
  8239. inline std::string SHA_512(const std::string &s) {
  8240. unsigned char hash[WC_SHA512_DIGEST_SIZE];
  8241. wc_Sha512Hash(reinterpret_cast<const unsigned char *>(s.c_str()),
  8242. static_cast<word32>(s.size()), hash);
  8243. return hash_to_hex(hash);
  8244. }
  8245. #endif
  8246. template <typename T>
  8247. inline bool process_server_socket_ssl(
  8248. const std::atomic<socket_t> &svr_sock, tls::session_t session,
  8249. socket_t sock, size_t keep_alive_max_count, time_t keep_alive_timeout_sec,
  8250. time_t read_timeout_sec, time_t read_timeout_usec, time_t write_timeout_sec,
  8251. time_t write_timeout_usec, T callback) {
  8252. return process_server_socket_core(
  8253. svr_sock, sock, keep_alive_max_count, keep_alive_timeout_sec,
  8254. [&](bool close_connection, bool &connection_closed) {
  8255. SSLSocketStream strm(sock, session, read_timeout_sec, read_timeout_usec,
  8256. write_timeout_sec, write_timeout_usec);
  8257. // See the non-TLS path in process_server_socket().
  8258. strm.set_readable_hint();
  8259. return callback(strm, close_connection, connection_closed);
  8260. });
  8261. }
  8262. template <typename T>
  8263. inline bool process_client_socket_ssl(
  8264. tls::session_t session, socket_t sock, time_t read_timeout_sec,
  8265. time_t read_timeout_usec, time_t write_timeout_sec,
  8266. time_t write_timeout_usec, time_t max_timeout_msec,
  8267. std::chrono::time_point<std::chrono::steady_clock> start_time, T callback) {
  8268. SSLSocketStream strm(sock, session, read_timeout_sec, read_timeout_usec,
  8269. write_timeout_sec, write_timeout_usec, max_timeout_msec,
  8270. start_time);
  8271. return callback(strm);
  8272. }
  8273. inline std::pair<std::string, std::string> make_digest_authentication_header(
  8274. const Request &req, const std::map<std::string, std::string> &auth,
  8275. size_t cnonce_count, const std::string &cnonce, const std::string &username,
  8276. const std::string &password, bool is_proxy = false) {
  8277. std::string nc;
  8278. {
  8279. std::stringstream ss;
  8280. ss << std::setfill('0') << std::setw(8) << std::hex << cnonce_count;
  8281. nc = ss.str();
  8282. }
  8283. std::string qop;
  8284. if (auth.find("qop") != auth.end()) {
  8285. qop = auth.at("qop");
  8286. if (qop.find("auth-int") != std::string::npos) {
  8287. qop = "auth-int";
  8288. } else if (qop.find("auth") != std::string::npos) {
  8289. qop = "auth";
  8290. } else {
  8291. qop.clear();
  8292. }
  8293. }
  8294. std::string algo = "MD5";
  8295. if (auth.find("algorithm") != auth.end()) { algo = auth.at("algorithm"); }
  8296. std::string response;
  8297. {
  8298. auto H = algo == "SHA-256" ? detail::SHA_256
  8299. : algo == "SHA-512" ? detail::SHA_512
  8300. : detail::MD5;
  8301. auto A1 = username + ":" + auth.at("realm") + ":" + password;
  8302. auto A2 = req.method + ":" + req.path;
  8303. if (qop == "auth-int") { A2 += ":" + H(req.body); }
  8304. if (qop.empty()) {
  8305. response = H(H(A1) + ":" + auth.at("nonce") + ":" + H(A2));
  8306. } else {
  8307. response = H(H(A1) + ":" + auth.at("nonce") + ":" + nc + ":" + cnonce +
  8308. ":" + qop + ":" + H(A2));
  8309. }
  8310. }
  8311. auto opaque = (auth.find("opaque") != auth.end()) ? auth.at("opaque") : "";
  8312. auto field = "Digest username=\"" + username + "\", realm=\"" +
  8313. auth.at("realm") + "\", nonce=\"" + auth.at("nonce") +
  8314. "\", uri=\"" + req.path + "\", algorithm=" + algo +
  8315. (qop.empty() ? ", response=\""
  8316. : ", qop=" + qop + ", nc=" + nc + ", cnonce=\"" +
  8317. cnonce + "\", response=\"") +
  8318. response + "\"" +
  8319. (opaque.empty() ? "" : ", opaque=\"" + opaque + "\"");
  8320. auto key = is_proxy ? "Proxy-Authorization" : "Authorization";
  8321. return std::make_pair(key, field);
  8322. }
  8323. inline bool match_hostname(const std::string &pattern,
  8324. const std::string &hostname) {
  8325. // Exact match (case-insensitive)
  8326. if (detail::case_ignore::equal(hostname, pattern)) { return true; }
  8327. // Split both pattern and hostname into components by '.'
  8328. std::vector<std::string> pattern_components;
  8329. if (!pattern.empty()) {
  8330. split(pattern.data(), pattern.data() + pattern.size(), '.',
  8331. [&](const char *b, const char *e) {
  8332. pattern_components.emplace_back(b, e);
  8333. });
  8334. }
  8335. std::vector<std::string> host_components;
  8336. if (!hostname.empty()) {
  8337. split(hostname.data(), hostname.data() + hostname.size(), '.',
  8338. [&](const char *b, const char *e) {
  8339. host_components.emplace_back(b, e);
  8340. });
  8341. }
  8342. // Component count must match
  8343. if (host_components.size() != pattern_components.size()) { return false; }
  8344. // Compare each component with wildcard support
  8345. // Supports: "*" (full wildcard), "prefix*" (partial wildcard)
  8346. // https://bugs.launchpad.net/ubuntu/+source/firefox-3.0/+bug/376484
  8347. auto itr = pattern_components.begin();
  8348. for (const auto &h : host_components) {
  8349. auto &p = *itr;
  8350. if (!detail::case_ignore::equal(p, h) && p != "*") {
  8351. bool partial_match = false;
  8352. if (!p.empty() && p[p.size() - 1] == '*') {
  8353. const auto prefix_length = p.size() - 1;
  8354. if (prefix_length == 0) {
  8355. partial_match = true;
  8356. } else if (h.size() >= prefix_length) {
  8357. partial_match =
  8358. std::equal(p.begin(),
  8359. p.begin() + static_cast<std::string::difference_type>(
  8360. prefix_length),
  8361. h.begin(), [](const char ca, const char cb) {
  8362. return detail::case_ignore::to_lower(ca) ==
  8363. detail::case_ignore::to_lower(cb);
  8364. });
  8365. }
  8366. }
  8367. if (!partial_match) { return false; }
  8368. }
  8369. ++itr;
  8370. }
  8371. return true;
  8372. }
  8373. #ifdef _WIN32
  8374. // Verify certificate using Windows CertGetCertificateChain API.
  8375. // This provides real-time certificate validation with Windows Update
  8376. // integration, independent of the TLS backend (OpenSSL or MbedTLS).
  8377. inline bool
  8378. verify_cert_with_windows_schannel(const std::vector<unsigned char> &der_cert,
  8379. const std::string &hostname,
  8380. bool verify_hostname, uint64_t &out_error) {
  8381. if (der_cert.empty()) { return false; }
  8382. out_error = 0;
  8383. // Create Windows certificate context from DER data
  8384. auto cert_context = CertCreateCertificateContext(
  8385. X509_ASN_ENCODING | PKCS_7_ASN_ENCODING, der_cert.data(),
  8386. static_cast<DWORD>(der_cert.size()));
  8387. if (!cert_context) {
  8388. out_error = GetLastError();
  8389. return false;
  8390. }
  8391. auto cert_guard =
  8392. scope_exit([&] { CertFreeCertificateContext(cert_context); });
  8393. // Setup chain parameters
  8394. CERT_CHAIN_PARA chain_para = {};
  8395. chain_para.cbSize = sizeof(chain_para);
  8396. // Build certificate chain with revocation checking
  8397. PCCERT_CHAIN_CONTEXT chain_context = nullptr;
  8398. auto chain_result = CertGetCertificateChain(
  8399. nullptr, cert_context, nullptr, cert_context->hCertStore, &chain_para,
  8400. CERT_CHAIN_CACHE_END_CERT | CERT_CHAIN_REVOCATION_CHECK_END_CERT |
  8401. CERT_CHAIN_REVOCATION_ACCUMULATIVE_TIMEOUT,
  8402. nullptr, &chain_context);
  8403. if (!chain_result || !chain_context) {
  8404. out_error = GetLastError();
  8405. return false;
  8406. }
  8407. auto chain_guard =
  8408. scope_exit([&] { CertFreeCertificateChain(chain_context); });
  8409. // Check if chain has errors
  8410. if (chain_context->TrustStatus.dwErrorStatus != CERT_TRUST_NO_ERROR) {
  8411. out_error = chain_context->TrustStatus.dwErrorStatus;
  8412. return false;
  8413. }
  8414. // Verify SSL policy
  8415. SSL_EXTRA_CERT_CHAIN_POLICY_PARA extra_policy_para = {};
  8416. extra_policy_para.cbSize = sizeof(extra_policy_para);
  8417. #ifdef AUTHTYPE_SERVER
  8418. extra_policy_para.dwAuthType = AUTHTYPE_SERVER;
  8419. #endif
  8420. std::wstring whost;
  8421. if (verify_hostname) {
  8422. whost = u8string_to_wstring(hostname.c_str());
  8423. extra_policy_para.pwszServerName = const_cast<wchar_t *>(whost.c_str());
  8424. }
  8425. CERT_CHAIN_POLICY_PARA policy_para = {};
  8426. policy_para.cbSize = sizeof(policy_para);
  8427. #ifdef CERT_CHAIN_POLICY_IGNORE_ALL_REV_UNKNOWN_FLAGS
  8428. policy_para.dwFlags = CERT_CHAIN_POLICY_IGNORE_ALL_REV_UNKNOWN_FLAGS;
  8429. #else
  8430. policy_para.dwFlags = 0;
  8431. #endif
  8432. policy_para.pvExtraPolicyPara = &extra_policy_para;
  8433. CERT_CHAIN_POLICY_STATUS policy_status = {};
  8434. policy_status.cbSize = sizeof(policy_status);
  8435. if (!CertVerifyCertificateChainPolicy(CERT_CHAIN_POLICY_SSL, chain_context,
  8436. &policy_para, &policy_status)) {
  8437. out_error = GetLastError();
  8438. return false;
  8439. }
  8440. if (policy_status.dwError != 0) {
  8441. out_error = policy_status.dwError;
  8442. return false;
  8443. }
  8444. return true;
  8445. }
  8446. #endif // _WIN32
  8447. // Loads CA file/dir configuration and applies the system CA policy to a
  8448. // client TLS context. PEM data and native stores are applied to the context
  8449. // directly at set time; has_custom_store reflects them for the Auto policy
  8450. // decision.
  8451. inline bool load_client_ca_config(tls::ctx_t ctx,
  8452. const std::string &ca_cert_file_path,
  8453. const std::string &ca_cert_dir_path,
  8454. bool has_custom_store, SystemCAMode mode,
  8455. uint64_t &backend_error) {
  8456. auto ret = true;
  8457. if (!ca_cert_file_path.empty()) {
  8458. if (!tls::load_ca_file(ctx, ca_cert_file_path.c_str())) {
  8459. backend_error = tls::get_error();
  8460. ret = false;
  8461. }
  8462. } else if (!ca_cert_dir_path.empty()) {
  8463. if (!tls::load_ca_dir(ctx, ca_cert_dir_path.c_str())) {
  8464. backend_error = tls::get_error();
  8465. ret = false;
  8466. }
  8467. }
  8468. auto has_custom_ca = !ca_cert_file_path.empty() ||
  8469. !ca_cert_dir_path.empty() || has_custom_store;
  8470. if (mode == SystemCAMode::Enabled ||
  8471. (mode == SystemCAMode::Auto && !has_custom_ca)) {
  8472. if (!tls::load_system_certs(ctx)) { backend_error = tls::get_error(); }
  8473. }
  8474. return ret;
  8475. }
  8476. // The parts of session setup that only SSLClient needs. WebSocketClient takes
  8477. // the defaults, which is what keeps the two clients on one implementation.
  8478. struct ClientTlsSessionOptions {
  8479. // SSLClient exposes this independently of certificate verification;
  8480. // WebSocketClient always checks the identity when it verifies the chain.
  8481. bool server_hostname_verification = true;
  8482. std::function<SSLVerifierResponse(tls::session_t)> session_verifier;
  8483. // When non-null, guards session creation against concurrent use of the
  8484. // context. A WebSocketClient is not safe to use from several threads to
  8485. // begin with, so it passes nothing.
  8486. std::mutex *ctx_mutex = nullptr;
  8487. #ifdef CPPHTTPLIB_WINDOWS_AUTOMATIC_ROOT_CERTIFICATES_UPDATE
  8488. // The caller decides whether Schannel has anything to say about this
  8489. // connection; see SSLClient::initialize_ssl().
  8490. bool windows_cert_verification = false;
  8491. #endif
  8492. };
  8493. // Filled in on failure for callers that report error details.
  8494. struct ClientTlsSessionError {
  8495. Error error = Error::Success;
  8496. int ssl_error = 0;
  8497. uint64_t backend_error = 0;
  8498. };
  8499. // Establishes a client TLS session on an already connected socket. On failure
  8500. // the session is left for the caller to free: SSLClient frees it right away,
  8501. // WebSocketClient keeps it in a member that shutdown_and_close() cleans up.
  8502. inline bool setup_client_tls_session(
  8503. const std::string &host, tls::ctx_t ctx, tls::session_t &session,
  8504. socket_t sock, bool server_certificate_verification, time_t timeout_sec,
  8505. time_t timeout_usec, ClientTlsSessionError *out_error = nullptr,
  8506. const ClientTlsSessionOptions &options = ClientTlsSessionOptions()) {
  8507. using namespace tls;
  8508. auto fail = [&](Error error, int ssl_error, uint64_t backend_error) {
  8509. if (out_error) {
  8510. out_error->error = error;
  8511. out_error->ssl_error = ssl_error;
  8512. out_error->backend_error = backend_error;
  8513. }
  8514. return false;
  8515. };
  8516. if (!ctx) {
  8517. session = nullptr;
  8518. return fail(Error::SSLConnection, 0, 0);
  8519. }
  8520. #if defined(CPPHTTPLIB_MBEDTLS_SUPPORT) || defined(CPPHTTPLIB_WOLFSSL_SUPPORT)
  8521. // Mbed TLS and wolfSSL need the verification mode set explicitly; OpenSSL
  8522. // uses SSL_VERIFY_NONE and does all verification post-handshake. Chain
  8523. // verification happens during the handshake even for IP hosts; the
  8524. // certificate identity is verified post-handshake via verify_hostname().
  8525. set_verify_client(ctx, server_certificate_verification);
  8526. #endif
  8527. {
  8528. std::unique_lock<std::mutex> guard;
  8529. if (options.ctx_mutex) {
  8530. guard = std::unique_lock<std::mutex>(*options.ctx_mutex);
  8531. }
  8532. session = create_session(ctx, sock);
  8533. }
  8534. if (!session) { return fail(Error::SSLConnection, 0, get_error()); }
  8535. // RFC 6066: SNI must not be set for IP addresses. On Mbed TLS and wolfSSL
  8536. // set_sni also turns on hostname verification during the handshake, so it
  8537. // must be skipped for IP hosts as well; their identity is checked
  8538. // post-handshake below instead.
  8539. if (!is_ip_address(host)) {
  8540. if (!set_sni(session, host.c_str())) {
  8541. return fail(Error::SSLConnection, 0, get_error());
  8542. }
  8543. }
  8544. TlsError tls_err;
  8545. if (!connect_nonblocking(session, sock, timeout_sec, timeout_usec,
  8546. &tls_err)) {
  8547. auto error = Error::SSLConnection;
  8548. if (tls_err.code == ErrorCode::CertVerifyFailed) {
  8549. error = Error::SSLServerVerification;
  8550. } else if (tls_err.code == ErrorCode::HostnameMismatch) {
  8551. error = Error::SSLServerHostnameVerification;
  8552. }
  8553. return fail(error, static_cast<int>(tls_err.code), tls_err.backend_code);
  8554. }
  8555. auto verification_status = SSLVerifierResponse::NoDecisionMade;
  8556. if (options.session_verifier) {
  8557. verification_status = options.session_verifier(session);
  8558. }
  8559. if (verification_status == SSLVerifierResponse::CertificateRejected) {
  8560. return fail(Error::SSLServerVerification, 0, get_error());
  8561. }
  8562. if (verification_status == SSLVerifierResponse::NoDecisionMade &&
  8563. server_certificate_verification) {
  8564. auto verify_result = get_verify_result(session);
  8565. if (verify_result != 0) {
  8566. return fail(Error::SSLServerVerification, 0,
  8567. static_cast<uint64_t>(verify_result));
  8568. }
  8569. auto server_cert = get_peer_cert(session);
  8570. if (!server_cert) {
  8571. return fail(Error::SSLServerVerification, 0, get_error());
  8572. }
  8573. auto cert_guard = detail::scope_exit([&] { free_cert(server_cert); });
  8574. // Identity check against the peer certificate, post-handshake for all
  8575. // backends. For IP hosts this is the only identity verification, since no
  8576. // hostname is bound during the handshake.
  8577. if (options.server_hostname_verification) {
  8578. if (!verify_hostname(server_cert, host.c_str())) {
  8579. return fail(Error::SSLServerHostnameVerification, 0,
  8580. hostname_mismatch_code());
  8581. }
  8582. }
  8583. #ifdef CPPHTTPLIB_WINDOWS_AUTOMATIC_ROOT_CERTIFICATES_UPDATE
  8584. // Additional Windows Schannel verification.
  8585. // This provides real-time certificate validation with Windows Update
  8586. // integration, working with both OpenSSL and MbedTLS backends.
  8587. if (options.windows_cert_verification) {
  8588. std::vector<unsigned char> der;
  8589. if (get_cert_der(server_cert, der)) {
  8590. uint64_t wincrypt_error = 0;
  8591. if (!verify_cert_with_windows_schannel(
  8592. der, host, options.server_hostname_verification,
  8593. wincrypt_error)) {
  8594. return fail(Error::SSLServerVerification, 0, wincrypt_error);
  8595. }
  8596. }
  8597. }
  8598. #endif
  8599. }
  8600. return true;
  8601. }
  8602. } // namespace detail
  8603. #endif // CPPHTTPLIB_SSL_ENABLED
  8604. /*
  8605. * Group 3: httplib namespace - Non-SSL public API implementations
  8606. */
  8607. inline void default_socket_options(socket_t sock) {
  8608. set_socket_opt(sock, SOL_SOCKET,
  8609. #ifdef SO_REUSEPORT
  8610. SO_REUSEPORT,
  8611. #else
  8612. SO_REUSEADDR,
  8613. #endif
  8614. 1);
  8615. }
  8616. inline bool set_socket_opt(socket_t sock, int level, int optname, int optval) {
  8617. return detail::set_socket_opt_impl(sock, level, optname, &optval,
  8618. sizeof(optval));
  8619. }
  8620. inline std::string get_bearer_token_auth(const Request &req) {
  8621. if (req.has_header("Authorization")) {
  8622. constexpr auto bearer_header_prefix_len = detail::str_len("Bearer ");
  8623. return req.get_header_value("Authorization")
  8624. .substr(bearer_header_prefix_len);
  8625. }
  8626. return "";
  8627. }
  8628. inline const char *status_message(int status) {
  8629. switch (status) {
  8630. case StatusCode::Continue_100: return "Continue";
  8631. case StatusCode::SwitchingProtocol_101: return "Switching Protocol";
  8632. case StatusCode::Processing_102: return "Processing";
  8633. case StatusCode::EarlyHints_103: return "Early Hints";
  8634. case StatusCode::OK_200: return "OK";
  8635. case StatusCode::Created_201: return "Created";
  8636. case StatusCode::Accepted_202: return "Accepted";
  8637. case StatusCode::NonAuthoritativeInformation_203:
  8638. return "Non-Authoritative Information";
  8639. case StatusCode::NoContent_204: return "No Content";
  8640. case StatusCode::ResetContent_205: return "Reset Content";
  8641. case StatusCode::PartialContent_206: return "Partial Content";
  8642. case StatusCode::MultiStatus_207: return "Multi-Status";
  8643. case StatusCode::AlreadyReported_208: return "Already Reported";
  8644. case StatusCode::IMUsed_226: return "IM Used";
  8645. case StatusCode::MultipleChoices_300: return "Multiple Choices";
  8646. case StatusCode::MovedPermanently_301: return "Moved Permanently";
  8647. case StatusCode::Found_302: return "Found";
  8648. case StatusCode::SeeOther_303: return "See Other";
  8649. case StatusCode::NotModified_304: return "Not Modified";
  8650. case StatusCode::UseProxy_305: return "Use Proxy";
  8651. case StatusCode::unused_306: return "unused";
  8652. case StatusCode::TemporaryRedirect_307: return "Temporary Redirect";
  8653. case StatusCode::PermanentRedirect_308: return "Permanent Redirect";
  8654. case StatusCode::BadRequest_400: return "Bad Request";
  8655. case StatusCode::Unauthorized_401: return "Unauthorized";
  8656. case StatusCode::PaymentRequired_402: return "Payment Required";
  8657. case StatusCode::Forbidden_403: return "Forbidden";
  8658. case StatusCode::NotFound_404: return "Not Found";
  8659. case StatusCode::MethodNotAllowed_405: return "Method Not Allowed";
  8660. case StatusCode::NotAcceptable_406: return "Not Acceptable";
  8661. case StatusCode::ProxyAuthenticationRequired_407:
  8662. return "Proxy Authentication Required";
  8663. case StatusCode::RequestTimeout_408: return "Request Timeout";
  8664. case StatusCode::Conflict_409: return "Conflict";
  8665. case StatusCode::Gone_410: return "Gone";
  8666. case StatusCode::LengthRequired_411: return "Length Required";
  8667. case StatusCode::PreconditionFailed_412: return "Precondition Failed";
  8668. case StatusCode::PayloadTooLarge_413: return "Payload Too Large";
  8669. case StatusCode::UriTooLong_414: return "URI Too Long";
  8670. case StatusCode::UnsupportedMediaType_415: return "Unsupported Media Type";
  8671. case StatusCode::RangeNotSatisfiable_416: return "Range Not Satisfiable";
  8672. case StatusCode::ExpectationFailed_417: return "Expectation Failed";
  8673. case StatusCode::ImATeapot_418: return "I'm a teapot";
  8674. case StatusCode::MisdirectedRequest_421: return "Misdirected Request";
  8675. case StatusCode::UnprocessableContent_422: return "Unprocessable Content";
  8676. case StatusCode::Locked_423: return "Locked";
  8677. case StatusCode::FailedDependency_424: return "Failed Dependency";
  8678. case StatusCode::TooEarly_425: return "Too Early";
  8679. case StatusCode::UpgradeRequired_426: return "Upgrade Required";
  8680. case StatusCode::PreconditionRequired_428: return "Precondition Required";
  8681. case StatusCode::TooManyRequests_429: return "Too Many Requests";
  8682. case StatusCode::RequestHeaderFieldsTooLarge_431:
  8683. return "Request Header Fields Too Large";
  8684. case StatusCode::UnavailableForLegalReasons_451:
  8685. return "Unavailable For Legal Reasons";
  8686. case StatusCode::NotImplemented_501: return "Not Implemented";
  8687. case StatusCode::BadGateway_502: return "Bad Gateway";
  8688. case StatusCode::ServiceUnavailable_503: return "Service Unavailable";
  8689. case StatusCode::GatewayTimeout_504: return "Gateway Timeout";
  8690. case StatusCode::HttpVersionNotSupported_505:
  8691. return "HTTP Version Not Supported";
  8692. case StatusCode::VariantAlsoNegotiates_506: return "Variant Also Negotiates";
  8693. case StatusCode::InsufficientStorage_507: return "Insufficient Storage";
  8694. case StatusCode::LoopDetected_508: return "Loop Detected";
  8695. case StatusCode::NotExtended_510: return "Not Extended";
  8696. case StatusCode::NetworkAuthenticationRequired_511:
  8697. return "Network Authentication Required";
  8698. default:
  8699. case StatusCode::InternalServerError_500: return "Internal Server Error";
  8700. }
  8701. }
  8702. inline std::string to_string(const Error error) {
  8703. switch (error) {
  8704. case Error::Success: return "Success (no error)";
  8705. case Error::Unknown: return "Unknown";
  8706. case Error::Connection: return "Could not establish connection";
  8707. case Error::BindIPAddress: return "Failed to bind IP address";
  8708. case Error::Read: return "Failed to read connection";
  8709. case Error::Write: return "Failed to write connection";
  8710. case Error::ExceedRedirectCount: return "Maximum redirect count exceeded";
  8711. case Error::Canceled: return "Connection handling canceled";
  8712. case Error::SSLConnection: return "SSL connection failed";
  8713. case Error::SSLLoadingCerts: return "SSL certificate loading failed";
  8714. case Error::SSLServerVerification: return "SSL server verification failed";
  8715. case Error::SSLServerHostnameVerification:
  8716. return "SSL server hostname verification failed";
  8717. case Error::UnsupportedMultipartBoundaryChars:
  8718. return "Unsupported HTTP multipart boundary characters";
  8719. case Error::Compression: return "Compression failed";
  8720. case Error::ConnectionTimeout: return "Connection timed out";
  8721. case Error::ProxyConnection: return "Proxy connection failed";
  8722. case Error::ConnectionClosed: return "Connection closed by server";
  8723. case Error::Timeout: return "Read timeout";
  8724. case Error::ResourceExhaustion: return "Resource exhaustion";
  8725. case Error::TooManyFormDataFiles: return "Too many form data files";
  8726. case Error::ExceedMaxPayloadSize: return "Exceeded maximum payload size";
  8727. case Error::ExceedUriMaxLength: return "Exceeded maximum URI length";
  8728. case Error::ExceedMaxSocketDescriptorCount:
  8729. return "Exceeded maximum socket descriptor count";
  8730. case Error::InvalidRequestLine: return "Invalid request line";
  8731. case Error::InvalidHTTPMethod: return "Invalid HTTP method";
  8732. case Error::InvalidHTTPVersion: return "Invalid HTTP version";
  8733. case Error::InvalidHeaders: return "Invalid headers";
  8734. case Error::MultipartParsing: return "Multipart parsing failed";
  8735. case Error::OpenFile: return "Failed to open file";
  8736. case Error::Listen: return "Failed to listen on socket";
  8737. case Error::GetSockName: return "Failed to get socket name";
  8738. case Error::UnsupportedAddressFamily: return "Unsupported address family";
  8739. case Error::HTTPParsing: return "HTTP parsing failed";
  8740. case Error::InvalidRangeHeader: return "Invalid Range header";
  8741. case Error::UnsupportedContentEncoding: return "Unsupported Content-Encoding";
  8742. case Error::WebSocketHandshake: return "WebSocket handshake failed";
  8743. default: break;
  8744. }
  8745. return "Invalid";
  8746. }
  8747. inline std::ostream &operator<<(std::ostream &os, const Error &obj) {
  8748. os << to_string(obj);
  8749. os << " (" << static_cast<std::underlying_type<Error>::type>(obj) << ')';
  8750. return os;
  8751. }
  8752. inline std::string hosted_at(const std::string &hostname) {
  8753. std::vector<std::string> addrs;
  8754. hosted_at(hostname, addrs);
  8755. if (addrs.empty()) { return std::string(); }
  8756. return addrs[0];
  8757. }
  8758. inline void hosted_at(const std::string &hostname,
  8759. std::vector<std::string> &addrs) {
  8760. struct addrinfo hints;
  8761. struct addrinfo *result;
  8762. memset(&hints, 0, sizeof(struct addrinfo));
  8763. hints.ai_family = AF_UNSPEC;
  8764. hints.ai_socktype = SOCK_STREAM;
  8765. hints.ai_protocol = 0;
  8766. if (detail::getaddrinfo_with_timeout(hostname.c_str(), nullptr, &hints,
  8767. &result, 0)) {
  8768. #if defined __linux__ && !defined __ANDROID__
  8769. res_init();
  8770. #endif
  8771. return;
  8772. }
  8773. auto se = detail::scope_exit([&] { freeaddrinfo(result); });
  8774. for (auto rp = result; rp; rp = rp->ai_next) {
  8775. const auto &addr =
  8776. *reinterpret_cast<struct sockaddr_storage *>(rp->ai_addr);
  8777. std::string ip;
  8778. auto dummy = -1;
  8779. if (detail::get_ip_and_port(addr, sizeof(struct sockaddr_storage), ip,
  8780. dummy)) {
  8781. addrs.emplace_back(std::move(ip));
  8782. }
  8783. }
  8784. }
  8785. inline std::string encode_uri_component(const std::string &value) {
  8786. std::ostringstream escaped;
  8787. escaped.fill('0');
  8788. escaped << std::hex;
  8789. for (auto c : value) {
  8790. if (detail::is_ascii_alnum(c) || c == '-' || c == '_' || c == '.' ||
  8791. c == '!' || c == '~' || c == '*' || c == '\'' || c == '(' || c == ')') {
  8792. escaped << c;
  8793. } else {
  8794. escaped << std::uppercase;
  8795. escaped << '%' << std::setw(2)
  8796. << static_cast<int>(static_cast<unsigned char>(c));
  8797. escaped << std::nouppercase;
  8798. }
  8799. }
  8800. return escaped.str();
  8801. }
  8802. inline std::string encode_uri(const std::string &value) {
  8803. std::ostringstream escaped;
  8804. escaped.fill('0');
  8805. escaped << std::hex;
  8806. for (auto c : value) {
  8807. if (detail::is_ascii_alnum(c) || c == '-' || c == '_' || c == '.' ||
  8808. c == '!' || c == '~' || c == '*' || c == '\'' || c == '(' || c == ')' ||
  8809. c == ';' || c == '/' || c == '?' || c == ':' || c == '@' || c == '&' ||
  8810. c == '=' || c == '+' || c == '$' || c == ',' || c == '#') {
  8811. escaped << c;
  8812. } else {
  8813. escaped << std::uppercase;
  8814. escaped << '%' << std::setw(2)
  8815. << static_cast<int>(static_cast<unsigned char>(c));
  8816. escaped << std::nouppercase;
  8817. }
  8818. }
  8819. return escaped.str();
  8820. }
  8821. inline std::string decode_uri_component(const std::string &value) {
  8822. std::string result;
  8823. for (size_t i = 0; i < value.size(); i++) {
  8824. if (value[i] == '%' && i + 2 < value.size()) {
  8825. auto val = 0;
  8826. if (detail::from_hex_to_i(value, i + 1, 2, val)) {
  8827. result += static_cast<char>(val);
  8828. i += 2;
  8829. } else {
  8830. result += value[i];
  8831. }
  8832. } else {
  8833. result += value[i];
  8834. }
  8835. }
  8836. return result;
  8837. }
  8838. inline std::string decode_uri(const std::string &value) {
  8839. std::string result;
  8840. for (size_t i = 0; i < value.size(); i++) {
  8841. if (value[i] == '%' && i + 2 < value.size()) {
  8842. auto val = 0;
  8843. if (detail::from_hex_to_i(value, i + 1, 2, val)) {
  8844. result += static_cast<char>(val);
  8845. i += 2;
  8846. } else {
  8847. result += value[i];
  8848. }
  8849. } else {
  8850. result += value[i];
  8851. }
  8852. }
  8853. return result;
  8854. }
  8855. inline std::string encode_path_component(const std::string &component) {
  8856. std::string result;
  8857. result.reserve(component.size() * 3);
  8858. for (size_t i = 0; i < component.size(); i++) {
  8859. auto c = static_cast<unsigned char>(component[i]);
  8860. // Unreserved characters per RFC 3986: ALPHA / DIGIT / "-" / "." / "_" / "~"
  8861. if (detail::is_ascii_alnum(static_cast<char>(c)) || c == '-' || c == '.' ||
  8862. c == '_' || c == '~') {
  8863. result += static_cast<char>(c);
  8864. }
  8865. // Path-safe sub-delimiters: "!" / "$" / "&" / "'" / "(" / ")" / "*" / "+" /
  8866. // "," / ";" / "="
  8867. else if (c == '!' || c == '$' || c == '&' || c == '\'' || c == '(' ||
  8868. c == ')' || c == '*' || c == '+' || c == ',' || c == ';' ||
  8869. c == '=') {
  8870. result += static_cast<char>(c);
  8871. }
  8872. // Colon is allowed in path segments except first segment
  8873. else if (c == ':') {
  8874. result += static_cast<char>(c);
  8875. }
  8876. // @ is allowed in path
  8877. else if (c == '@') {
  8878. result += static_cast<char>(c);
  8879. } else {
  8880. result += '%';
  8881. char hex[3];
  8882. snprintf(hex, sizeof(hex), "%02X", c);
  8883. result.append(hex, 2);
  8884. }
  8885. }
  8886. return result;
  8887. }
  8888. inline std::string decode_path_component(const std::string &component) {
  8889. std::string result;
  8890. result.reserve(component.size());
  8891. for (size_t i = 0; i < component.size(); i++) {
  8892. if (component[i] == '%' && i + 1 < component.size()) {
  8893. if (component[i + 1] == 'u') {
  8894. // Unicode %uXXXX encoding
  8895. auto val = 0;
  8896. if (detail::from_hex_to_i(component, i + 2, 4, val)) {
  8897. // 4 digits Unicode codes: val is 0x0000-0xFFFF (from 4 hex digits),
  8898. // so to_utf8 writes at most 3 bytes. buff[4] is safe.
  8899. char buff[4];
  8900. size_t len = detail::to_utf8(val, buff);
  8901. if (len > 0) { result.append(buff, len); }
  8902. i += 5; // 'u0000'
  8903. } else {
  8904. result += component[i];
  8905. }
  8906. } else {
  8907. // Standard %XX encoding
  8908. auto val = 0;
  8909. if (detail::from_hex_to_i(component, i + 1, 2, val)) {
  8910. // 2 digits hex codes
  8911. result += static_cast<char>(val);
  8912. i += 2; // 'XX'
  8913. } else {
  8914. result += component[i];
  8915. }
  8916. }
  8917. } else {
  8918. result += component[i];
  8919. }
  8920. }
  8921. return result;
  8922. }
  8923. inline std::string encode_query_component(const std::string &component,
  8924. bool space_as_plus) {
  8925. std::string result;
  8926. result.reserve(component.size() * 3);
  8927. for (size_t i = 0; i < component.size(); i++) {
  8928. auto c = static_cast<unsigned char>(component[i]);
  8929. // Unreserved characters per RFC 3986
  8930. if (detail::is_ascii_alnum(static_cast<char>(c)) || c == '-' || c == '.' ||
  8931. c == '_' || c == '~') {
  8932. result += static_cast<char>(c);
  8933. }
  8934. // Space handling
  8935. else if (c == ' ') {
  8936. if (space_as_plus) {
  8937. result += '+';
  8938. } else {
  8939. result += "%20";
  8940. }
  8941. }
  8942. // Plus sign handling
  8943. else if (c == '+') {
  8944. if (space_as_plus) {
  8945. result += "%2B";
  8946. } else {
  8947. result += static_cast<char>(c);
  8948. }
  8949. }
  8950. // Query-safe sub-delimiters (excluding & and = which are query delimiters)
  8951. else if (c == '!' || c == '$' || c == '\'' || c == '(' || c == ')' ||
  8952. c == '*' || c == ',' || c == ';') {
  8953. result += static_cast<char>(c);
  8954. }
  8955. // Colon and @ are allowed in query
  8956. else if (c == ':' || c == '@') {
  8957. result += static_cast<char>(c);
  8958. }
  8959. // Forward slash is allowed in query values
  8960. else if (c == '/') {
  8961. result += static_cast<char>(c);
  8962. }
  8963. // Question mark is allowed in query values (after first ?)
  8964. else if (c == '?') {
  8965. result += static_cast<char>(c);
  8966. } else {
  8967. result += '%';
  8968. char hex[3];
  8969. snprintf(hex, sizeof(hex), "%02X", c);
  8970. result.append(hex, 2);
  8971. }
  8972. }
  8973. return result;
  8974. }
  8975. inline std::string decode_query_component(const std::string &component,
  8976. bool plus_as_space) {
  8977. std::string result;
  8978. result.reserve(component.size());
  8979. for (size_t i = 0; i < component.size(); i++) {
  8980. if (component[i] == '%' && i + 2 < component.size()) {
  8981. auto val = 0;
  8982. if (detail::from_hex_to_i(component, i + 1, 2, val)) {
  8983. result += static_cast<char>(val);
  8984. i += 2;
  8985. } else {
  8986. result += component[i];
  8987. }
  8988. } else if (component[i] == '+' && plus_as_space) {
  8989. result += ' '; // + becomes space in form-urlencoded
  8990. } else {
  8991. result += component[i];
  8992. }
  8993. }
  8994. return result;
  8995. }
  8996. inline std::string sanitize_filename(const std::string &filename) {
  8997. // Extract basename: find the last path separator (/ or \)
  8998. auto pos = filename.find_last_of("/\\");
  8999. auto result =
  9000. (pos != std::string::npos) ? filename.substr(pos + 1) : filename;
  9001. // Strip null bytes
  9002. result.erase(std::remove(result.begin(), result.end(), '\0'), result.end());
  9003. // Trim whitespace
  9004. {
  9005. auto start = result.find_first_not_of(" \t");
  9006. auto end = result.find_last_not_of(" \t");
  9007. result = (start == std::string::npos)
  9008. ? ""
  9009. : result.substr(start, end - start + 1);
  9010. }
  9011. // Reject . and ..
  9012. if (result == "." || result == "..") { return ""; }
  9013. return result;
  9014. }
  9015. inline std::string append_query_params(const std::string &path,
  9016. const Params &params) {
  9017. std::string path_with_query = path;
  9018. thread_local const std::regex re("[^?]+\\?.*");
  9019. auto delm = std::regex_match(path, re) ? '&' : '?';
  9020. path_with_query += delm + detail::params_to_query_str(params);
  9021. return path_with_query;
  9022. }
  9023. // Header utilities
  9024. inline std::pair<std::string, std::string>
  9025. make_range_header(const Ranges &ranges) {
  9026. std::string field = "bytes=";
  9027. auto i = 0;
  9028. for (const auto &r : ranges) {
  9029. if (i != 0) { field += ", "; }
  9030. if (r.first != -1) { field += std::to_string(r.first); }
  9031. field += '-';
  9032. if (r.second != -1) { field += std::to_string(r.second); }
  9033. i++;
  9034. }
  9035. return std::make_pair("Range", std::move(field));
  9036. }
  9037. inline std::pair<std::string, std::string>
  9038. make_basic_authentication_header(const std::string &username,
  9039. const std::string &password, bool is_proxy) {
  9040. auto field = "Basic " + detail::base64_encode(username + ":" + password);
  9041. auto key = is_proxy ? "Proxy-Authorization" : "Authorization";
  9042. return std::make_pair(key, std::move(field));
  9043. }
  9044. inline std::pair<std::string, std::string>
  9045. make_bearer_token_authentication_header(const std::string &token,
  9046. bool is_proxy = false) {
  9047. auto field = "Bearer " + token;
  9048. auto key = is_proxy ? "Proxy-Authorization" : "Authorization";
  9049. return std::make_pair(key, std::move(field));
  9050. }
  9051. // Request implementation
  9052. inline size_t Request::get_header_value_u64(const std::string &key, size_t def,
  9053. size_t id) const {
  9054. return detail::get_header_value_u64(headers, key, def, id);
  9055. }
  9056. inline bool Request::has_header(const std::string &key) const {
  9057. return detail::has_header(headers, key);
  9058. }
  9059. inline std::string Request::get_header_value(const std::string &key,
  9060. const char *def, size_t id) const {
  9061. return detail::get_header_value(headers, key, def, id);
  9062. }
  9063. inline size_t Request::get_header_value_count(const std::string &key) const {
  9064. return detail::get_header_value_count(headers, key);
  9065. }
  9066. inline void Request::set_header(const std::string &key,
  9067. const std::string &val) {
  9068. detail::set_header(headers, key, val);
  9069. }
  9070. inline bool Request::has_trailer(const std::string &key) const {
  9071. return trailers.find(key) != trailers.end();
  9072. }
  9073. inline std::string Request::get_trailer_value(const std::string &key,
  9074. size_t id) const {
  9075. return detail::get_multimap_value(trailers, key, id);
  9076. }
  9077. inline size_t Request::get_trailer_value_count(const std::string &key) const {
  9078. return trailers.count(key);
  9079. }
  9080. inline bool Request::has_param(const std::string &key) const {
  9081. return params.find(key) != params.end();
  9082. }
  9083. inline std::string Request::get_param_value(const std::string &key,
  9084. size_t id) const {
  9085. return detail::get_multimap_value(params, key, id);
  9086. }
  9087. inline std::vector<std::string>
  9088. Request::get_param_values(const std::string &key) const {
  9089. auto rng = params.equal_range(key);
  9090. std::vector<std::string> values;
  9091. values.reserve(static_cast<size_t>(std::distance(rng.first, rng.second)));
  9092. for (auto it = rng.first; it != rng.second; ++it) {
  9093. values.push_back(it->second);
  9094. }
  9095. return values;
  9096. }
  9097. inline size_t Request::get_param_value_count(const std::string &key) const {
  9098. return params.count(key);
  9099. }
  9100. inline bool Request::is_multipart_form_data() const {
  9101. const auto &content_type = get_header_value("Content-Type");
  9102. return detail::extract_media_type(content_type) == "multipart/form-data";
  9103. }
  9104. // Multipart FormData implementation
  9105. inline std::string MultipartFormData::get_field(const std::string &key,
  9106. size_t id) const {
  9107. auto rng = fields.equal_range(key);
  9108. auto it = rng.first;
  9109. std::advance(it, static_cast<ssize_t>(id));
  9110. if (it != rng.second) { return it->second.content; }
  9111. return std::string();
  9112. }
  9113. inline std::vector<std::string>
  9114. MultipartFormData::get_fields(const std::string &key) const {
  9115. std::vector<std::string> values;
  9116. auto rng = fields.equal_range(key);
  9117. for (auto it = rng.first; it != rng.second; it++) {
  9118. values.push_back(it->second.content);
  9119. }
  9120. return values;
  9121. }
  9122. inline bool MultipartFormData::has_field(const std::string &key) const {
  9123. return fields.find(key) != fields.end();
  9124. }
  9125. inline size_t MultipartFormData::get_field_count(const std::string &key) const {
  9126. return fields.count(key);
  9127. }
  9128. inline FormData MultipartFormData::get_file(const std::string &key,
  9129. size_t id) const {
  9130. return detail::get_multimap_value(files, key, id);
  9131. }
  9132. inline std::vector<FormData>
  9133. MultipartFormData::get_files(const std::string &key) const {
  9134. std::vector<FormData> values;
  9135. auto rng = files.equal_range(key);
  9136. for (auto it = rng.first; it != rng.second; it++) {
  9137. values.push_back(it->second);
  9138. }
  9139. return values;
  9140. }
  9141. inline bool MultipartFormData::has_file(const std::string &key) const {
  9142. return files.find(key) != files.end();
  9143. }
  9144. inline size_t MultipartFormData::get_file_count(const std::string &key) const {
  9145. return files.count(key);
  9146. }
  9147. // Multipart FormData writer implementation
  9148. inline bool is_valid_multipart_boundary(const std::string &boundary) {
  9149. return detail::is_multipart_boundary_chars_valid(boundary);
  9150. }
  9151. inline MultipartFormDataWriter::MultipartFormDataWriter()
  9152. : boundary_(detail::make_multipart_data_boundary()) {}
  9153. inline MultipartFormDataWriter::MultipartFormDataWriter(std::string boundary)
  9154. : boundary_(std::move(boundary)) {}
  9155. inline const std::string &MultipartFormDataWriter::boundary() const {
  9156. return boundary_;
  9157. }
  9158. inline std::string MultipartFormDataWriter::content_type() const {
  9159. return detail::serialize_multipart_formdata_get_content_type(boundary_);
  9160. }
  9161. inline std::string
  9162. MultipartFormDataWriter::serialize(const UploadFormDataItems &items) const {
  9163. return detail::serialize_multipart_formdata(items, boundary_);
  9164. }
  9165. inline size_t MultipartFormDataWriter::content_length(
  9166. const UploadFormDataItems &items) const {
  9167. return detail::get_multipart_content_length(items, boundary_);
  9168. }
  9169. inline std::string
  9170. MultipartFormDataWriter::item_begin(const UploadFormData &item) const {
  9171. return detail::serialize_multipart_formdata_item_begin(item, boundary_);
  9172. }
  9173. inline std::string MultipartFormDataWriter::item_end() {
  9174. return detail::serialize_multipart_formdata_item_end();
  9175. }
  9176. inline std::string MultipartFormDataWriter::finish() const {
  9177. return detail::serialize_multipart_formdata_finish(boundary_);
  9178. }
  9179. // Response implementation
  9180. inline size_t Response::get_header_value_u64(const std::string &key, size_t def,
  9181. size_t id) const {
  9182. return detail::get_header_value_u64(headers, key, def, id);
  9183. }
  9184. inline bool Response::has_header(const std::string &key) const {
  9185. return headers.find(key) != headers.end();
  9186. }
  9187. inline std::string Response::get_header_value(const std::string &key,
  9188. const char *def,
  9189. size_t id) const {
  9190. return detail::get_header_value(headers, key, def, id);
  9191. }
  9192. inline size_t Response::get_header_value_count(const std::string &key) const {
  9193. return detail::get_header_value_count(headers, key);
  9194. }
  9195. inline void Response::set_header(const std::string &key,
  9196. const std::string &val) {
  9197. detail::set_header(headers, key, val);
  9198. }
  9199. inline bool Response::has_trailer(const std::string &key) const {
  9200. return trailers.find(key) != trailers.end();
  9201. }
  9202. inline std::string Response::get_trailer_value(const std::string &key,
  9203. size_t id) const {
  9204. return detail::get_multimap_value(trailers, key, id);
  9205. }
  9206. inline size_t Response::get_trailer_value_count(const std::string &key) const {
  9207. return trailers.count(key);
  9208. }
  9209. inline void Response::set_redirect(const std::string &url, int stat) {
  9210. if (detail::fields::is_field_value(url)) {
  9211. set_header("Location", url);
  9212. if (300 <= stat && stat < 400) {
  9213. this->status = stat;
  9214. } else {
  9215. this->status = StatusCode::Found_302;
  9216. }
  9217. }
  9218. }
  9219. inline void Response::set_content(const char *s, size_t n,
  9220. const std::string &content_type) {
  9221. body.assign(s, n);
  9222. auto rng = headers.equal_range("Content-Type");
  9223. headers.erase(rng.first, rng.second);
  9224. set_header("Content-Type", content_type);
  9225. }
  9226. inline void Response::set_content(const std::string &s,
  9227. const std::string &content_type) {
  9228. set_content(s.data(), s.size(), content_type);
  9229. }
  9230. inline void Response::set_content(std::string &&s,
  9231. const std::string &content_type) {
  9232. body = std::move(s);
  9233. auto rng = headers.equal_range("Content-Type");
  9234. headers.erase(rng.first, rng.second);
  9235. set_header("Content-Type", content_type);
  9236. }
  9237. inline void Response::set_content_provider(
  9238. size_t in_length, const std::string &content_type, ContentProvider provider,
  9239. ContentProviderResourceReleaser resource_releaser) {
  9240. set_header("Content-Type", content_type);
  9241. content_length_ = in_length;
  9242. if (in_length > 0) { content_provider_ = std::move(provider); }
  9243. content_provider_resource_releaser_ = std::move(resource_releaser);
  9244. is_chunked_content_provider_ = false;
  9245. }
  9246. inline void Response::set_content_provider(
  9247. const std::string &content_type, ContentProviderWithoutLength provider,
  9248. ContentProviderResourceReleaser resource_releaser) {
  9249. set_header("Content-Type", content_type);
  9250. content_length_ = 0;
  9251. content_provider_ = detail::ContentProviderAdapter(std::move(provider));
  9252. content_provider_resource_releaser_ = std::move(resource_releaser);
  9253. is_chunked_content_provider_ = false;
  9254. }
  9255. inline void Response::set_chunked_content_provider(
  9256. const std::string &content_type, ContentProviderWithoutLength provider,
  9257. ContentProviderResourceReleaser resource_releaser) {
  9258. set_header("Content-Type", content_type);
  9259. content_length_ = 0;
  9260. content_provider_ = detail::ContentProviderAdapter(std::move(provider));
  9261. content_provider_resource_releaser_ = std::move(resource_releaser);
  9262. is_chunked_content_provider_ = true;
  9263. }
  9264. inline void Response::set_file_content(const std::string &path,
  9265. const std::string &content_type) {
  9266. file_content_path_ = path;
  9267. file_content_content_type_ = content_type;
  9268. }
  9269. inline void Response::set_file_content(const std::string &path) {
  9270. file_content_path_ = path;
  9271. }
  9272. // Result implementation
  9273. inline size_t Result::get_request_header_value_u64(const std::string &key,
  9274. size_t def,
  9275. size_t id) const {
  9276. return detail::get_header_value_u64(request_headers_, key, def, id);
  9277. }
  9278. inline bool Result::has_request_header(const std::string &key) const {
  9279. return request_headers_.find(key) != request_headers_.end();
  9280. }
  9281. inline std::string Result::get_request_header_value(const std::string &key,
  9282. const char *def,
  9283. size_t id) const {
  9284. return detail::get_header_value(request_headers_, key, def, id);
  9285. }
  9286. inline size_t
  9287. Result::get_request_header_value_count(const std::string &key) const {
  9288. return request_headers_.count(key);
  9289. }
  9290. // Stream implementation
  9291. inline ssize_t Stream::write(const char *ptr) {
  9292. return write(ptr, strlen(ptr));
  9293. }
  9294. inline ssize_t Stream::write(const std::string &s) {
  9295. return write(s.data(), s.size());
  9296. }
  9297. // BodyReader implementation
  9298. inline ssize_t detail::BodyReader::read(char *buf, size_t len) {
  9299. if (!stream) {
  9300. last_error = Error::Connection;
  9301. return -1;
  9302. }
  9303. if (eof) { return 0; }
  9304. if (!chunked) {
  9305. // Content-Length based reading
  9306. if (has_content_length && bytes_read >= content_length) {
  9307. eof = true;
  9308. return 0;
  9309. }
  9310. auto to_read = len;
  9311. if (has_content_length) {
  9312. auto remaining = content_length - bytes_read;
  9313. to_read = (std::min)(len, remaining);
  9314. }
  9315. auto n = stream->read(buf, to_read);
  9316. if (n < 0) {
  9317. last_error = stream->get_error();
  9318. if (last_error == Error::Success) { last_error = Error::Read; }
  9319. eof = true;
  9320. return n;
  9321. }
  9322. if (n == 0) {
  9323. // Unexpected EOF before content_length
  9324. last_error = stream->get_error();
  9325. if (last_error == Error::Success) { last_error = Error::Read; }
  9326. eof = true;
  9327. return 0;
  9328. }
  9329. bytes_read += static_cast<size_t>(n);
  9330. if (has_content_length && bytes_read >= content_length) { eof = true; }
  9331. if (payload_max_length > 0 && bytes_read > payload_max_length) {
  9332. last_error = Error::ExceedMaxPayloadSize;
  9333. eof = true;
  9334. return -1;
  9335. }
  9336. return n;
  9337. }
  9338. // Chunked transfer encoding: delegate to shared decoder instance.
  9339. if (!chunked_decoder) { chunked_decoder.reset(new ChunkedDecoder(*stream)); }
  9340. size_t chunk_offset = 0;
  9341. size_t chunk_total = 0;
  9342. auto n = chunked_decoder->read_payload(buf, len, chunk_offset, chunk_total);
  9343. if (n < 0) {
  9344. last_error = stream->get_error();
  9345. if (last_error == Error::Success) { last_error = Error::Read; }
  9346. eof = true;
  9347. return n;
  9348. }
  9349. if (n == 0) {
  9350. // Final chunk observed. Leave trailer parsing to the caller (StreamHandle).
  9351. eof = true;
  9352. return 0;
  9353. }
  9354. bytes_read += static_cast<size_t>(n);
  9355. if (payload_max_length > 0 && bytes_read > payload_max_length) {
  9356. last_error = Error::ExceedMaxPayloadSize;
  9357. eof = true;
  9358. return -1;
  9359. }
  9360. return n;
  9361. }
  9362. // ThreadPool implementation
  9363. inline ThreadPool::ThreadPool(size_t n, size_t max_n, size_t mqr,
  9364. time_t idle_timeout_sec)
  9365. : base_thread_count_(n), max_queued_requests_(mqr),
  9366. idle_timeout_sec_(idle_timeout_sec), idle_thread_count_(0),
  9367. shutdown_(false) {
  9368. #ifndef CPPHTTPLIB_NO_EXCEPTIONS
  9369. if (max_n != 0 && max_n < n) {
  9370. std::string msg = "max_threads must be >= base_threads";
  9371. throw std::invalid_argument(msg);
  9372. }
  9373. #endif
  9374. max_thread_count_ = max_n == 0 ? n : max_n;
  9375. threads_.reserve(base_thread_count_);
  9376. #ifndef CPPHTTPLIB_NO_EXCEPTIONS
  9377. try {
  9378. #endif
  9379. for (size_t i = 0; i < base_thread_count_; i++) {
  9380. threads_.emplace_back(std::thread([this]() { worker(false); }));
  9381. }
  9382. #ifndef CPPHTTPLIB_NO_EXCEPTIONS
  9383. } catch (...) {
  9384. // If thread creation fails partway (e.g., pthread_create returns EAGAIN),
  9385. // signal the workers we already spawned to exit and join them so the
  9386. // vector destructor does not see joinable threads (which would call
  9387. // std::terminate). Then rethrow so the caller learns of the failure.
  9388. {
  9389. std::unique_lock<std::mutex> lock(mutex_);
  9390. shutdown_ = true;
  9391. }
  9392. cond_.notify_all();
  9393. for (auto &t : threads_) {
  9394. if (t.joinable()) { t.join(); }
  9395. }
  9396. throw;
  9397. }
  9398. #endif
  9399. }
  9400. inline bool ThreadPool::enqueue(std::function<void()> fn) {
  9401. {
  9402. std::unique_lock<std::mutex> lock(mutex_);
  9403. if (shutdown_) { return false; }
  9404. if (max_queued_requests_ > 0 && jobs_.size() >= max_queued_requests_) {
  9405. return false;
  9406. }
  9407. jobs_.push_back(std::move(fn));
  9408. // Spawn a dynamic thread if no idle threads and under max
  9409. if (idle_thread_count_ == 0 &&
  9410. threads_.size() + dynamic_threads_.size() < max_thread_count_) {
  9411. cleanup_finished_threads();
  9412. dynamic_threads_.emplace_back(std::thread([this]() { worker(true); }));
  9413. }
  9414. }
  9415. cond_.notify_one();
  9416. return true;
  9417. }
  9418. inline void ThreadPool::shutdown() {
  9419. {
  9420. std::unique_lock<std::mutex> lock(mutex_);
  9421. shutdown_ = true;
  9422. }
  9423. cond_.notify_all();
  9424. for (auto &t : threads_) {
  9425. if (t.joinable()) { t.join(); }
  9426. }
  9427. // Move dynamic_threads_ to a local list under the lock to avoid racing
  9428. // with worker threads that call move_to_finished() concurrently.
  9429. std::list<std::thread> remaining_dynamic;
  9430. {
  9431. std::unique_lock<std::mutex> lock(mutex_);
  9432. remaining_dynamic = std::move(dynamic_threads_);
  9433. }
  9434. for (auto &t : remaining_dynamic) {
  9435. if (t.joinable()) { t.join(); }
  9436. }
  9437. std::unique_lock<std::mutex> lock(mutex_);
  9438. cleanup_finished_threads();
  9439. }
  9440. inline void ThreadPool::move_to_finished(std::thread::id id) {
  9441. // Must be called with mutex_ held
  9442. for (auto it = dynamic_threads_.begin(); it != dynamic_threads_.end(); ++it) {
  9443. if (it->get_id() == id) {
  9444. finished_threads_.push_back(std::move(*it));
  9445. dynamic_threads_.erase(it);
  9446. return;
  9447. }
  9448. }
  9449. }
  9450. inline void ThreadPool::cleanup_finished_threads() {
  9451. // Must be called with mutex_ held
  9452. for (auto &t : finished_threads_) {
  9453. if (t.joinable()) { t.join(); }
  9454. }
  9455. finished_threads_.clear();
  9456. }
  9457. inline void ThreadPool::worker(bool is_dynamic) {
  9458. for (;;) {
  9459. std::function<void()> fn;
  9460. {
  9461. std::unique_lock<std::mutex> lock(mutex_);
  9462. idle_thread_count_++;
  9463. if (is_dynamic) {
  9464. auto has_work =
  9465. cond_.wait_for(lock, std::chrono::seconds(idle_timeout_sec_),
  9466. [&] { return !jobs_.empty() || shutdown_; });
  9467. if (!has_work) {
  9468. // Timed out with no work - exit this dynamic thread
  9469. idle_thread_count_--;
  9470. move_to_finished(std::this_thread::get_id());
  9471. break;
  9472. }
  9473. } else {
  9474. cond_.wait(lock, [&] { return !jobs_.empty() || shutdown_; });
  9475. }
  9476. idle_thread_count_--;
  9477. if (shutdown_ && jobs_.empty()) { break; }
  9478. fn = std::move(jobs_.front());
  9479. jobs_.pop_front();
  9480. }
  9481. assert(true == static_cast<bool>(fn));
  9482. fn();
  9483. }
  9484. #if defined(CPPHTTPLIB_OPENSSL_SUPPORT) && !defined(OPENSSL_IS_BORINGSSL) && \
  9485. !defined(LIBRESSL_VERSION_NUMBER)
  9486. OPENSSL_thread_stop();
  9487. #endif
  9488. }
  9489. /*
  9490. * Group 1 (continued): detail namespace - Stream implementations
  9491. */
  9492. namespace detail {
  9493. inline void calc_actual_timeout(time_t max_timeout_msec, time_t duration_msec,
  9494. time_t timeout_sec, time_t timeout_usec,
  9495. time_t &actual_timeout_sec,
  9496. time_t &actual_timeout_usec) {
  9497. auto timeout_msec = (timeout_sec * 1000) + (timeout_usec / 1000);
  9498. auto actual_timeout_msec =
  9499. (std::min)(max_timeout_msec - duration_msec, timeout_msec);
  9500. if (actual_timeout_msec < 0) { actual_timeout_msec = 0; }
  9501. actual_timeout_sec = actual_timeout_msec / 1000;
  9502. actual_timeout_usec = (actual_timeout_msec % 1000) * 1000;
  9503. }
  9504. // Socket stream implementation
  9505. inline SocketStream::SocketStream(
  9506. socket_t sock, time_t read_timeout_sec, time_t read_timeout_usec,
  9507. time_t write_timeout_sec, time_t write_timeout_usec,
  9508. time_t max_timeout_msec,
  9509. std::chrono::time_point<std::chrono::steady_clock> start_time)
  9510. : sock_(sock), read_timeout_sec_(read_timeout_sec),
  9511. read_timeout_usec_(read_timeout_usec),
  9512. write_timeout_sec_(write_timeout_sec),
  9513. write_timeout_usec_(write_timeout_usec),
  9514. max_timeout_msec_(max_timeout_msec), start_time_(start_time),
  9515. read_buff_(read_buff_size_, 0) {}
  9516. inline SocketStream::~SocketStream() = default;
  9517. inline bool SocketStream::is_readable() const {
  9518. return read_buff_off_ < read_buff_content_size_;
  9519. }
  9520. inline bool SocketStream::wait_readable() const {
  9521. if (max_timeout_msec_ <= 0) {
  9522. return select_read(sock_, read_timeout_sec_, read_timeout_usec_) > 0;
  9523. }
  9524. time_t read_timeout_sec;
  9525. time_t read_timeout_usec;
  9526. calc_actual_timeout(max_timeout_msec_, duration(), read_timeout_sec_,
  9527. read_timeout_usec_, read_timeout_sec, read_timeout_usec);
  9528. return select_read(sock_, read_timeout_sec, read_timeout_usec) > 0;
  9529. }
  9530. inline bool SocketStream::wait_writable() const {
  9531. return select_write(sock_, write_timeout_sec_, write_timeout_usec_) > 0;
  9532. }
  9533. inline bool SocketStream::ensure_readable() {
  9534. if (readable_hint_) {
  9535. readable_hint_ = false;
  9536. return true;
  9537. }
  9538. return wait_readable();
  9539. }
  9540. inline const char *SocketStream::buffered_data(size_t &size) const {
  9541. size = read_buff_content_size_ - read_buff_off_;
  9542. return size ? read_buff_.data() + read_buff_off_ : nullptr;
  9543. }
  9544. inline void SocketStream::consume_buffered(size_t size) {
  9545. assert(size <= read_buff_content_size_ - read_buff_off_);
  9546. read_buff_off_ += size;
  9547. }
  9548. inline bool SocketStream::is_peer_alive() const {
  9549. return detail::is_socket_alive(sock_);
  9550. }
  9551. inline ssize_t SocketStream::read(char *ptr, size_t size) {
  9552. #ifdef _WIN32
  9553. size =
  9554. (std::min)(size, static_cast<size_t>((std::numeric_limits<int>::max)()));
  9555. #else
  9556. size = (std::min)(size,
  9557. static_cast<size_t>((std::numeric_limits<ssize_t>::max)()));
  9558. #endif
  9559. if (read_buff_off_ < read_buff_content_size_) {
  9560. auto remaining_size = read_buff_content_size_ - read_buff_off_;
  9561. if (size <= remaining_size) {
  9562. memcpy(ptr, read_buff_.data() + read_buff_off_, size);
  9563. read_buff_off_ += size;
  9564. return static_cast<ssize_t>(size);
  9565. } else {
  9566. memcpy(ptr, read_buff_.data() + read_buff_off_, remaining_size);
  9567. read_buff_off_ += remaining_size;
  9568. return static_cast<ssize_t>(remaining_size);
  9569. }
  9570. }
  9571. if (!ensure_readable()) {
  9572. error_ = Error::Timeout;
  9573. return -1;
  9574. }
  9575. read_buff_off_ = 0;
  9576. read_buff_content_size_ = 0;
  9577. if (size < read_buff_size_) {
  9578. auto n = read_socket(sock_, read_buff_.data(), read_buff_size_,
  9579. CPPHTTPLIB_RECV_FLAGS);
  9580. if (n <= 0) {
  9581. if (n == 0) {
  9582. error_ = Error::ConnectionClosed;
  9583. } else {
  9584. error_ = Error::Read;
  9585. }
  9586. return n;
  9587. } else if (n <= static_cast<ssize_t>(size)) {
  9588. memcpy(ptr, read_buff_.data(), static_cast<size_t>(n));
  9589. return n;
  9590. } else {
  9591. memcpy(ptr, read_buff_.data(), size);
  9592. read_buff_off_ = size;
  9593. read_buff_content_size_ = static_cast<size_t>(n);
  9594. return static_cast<ssize_t>(size);
  9595. }
  9596. } else {
  9597. auto n = read_socket(sock_, ptr, size, CPPHTTPLIB_RECV_FLAGS);
  9598. if (n <= 0) {
  9599. if (n == 0) {
  9600. error_ = Error::ConnectionClosed;
  9601. } else {
  9602. error_ = Error::Read;
  9603. }
  9604. }
  9605. return n;
  9606. }
  9607. }
  9608. inline ssize_t SocketStream::write(const char *ptr, size_t size) {
  9609. if (!wait_writable()) { return -1; }
  9610. #if defined(_WIN32) && !defined(_WIN64)
  9611. size =
  9612. (std::min)(size, static_cast<size_t>((std::numeric_limits<int>::max)()));
  9613. #endif
  9614. return send_socket(sock_, ptr, size, CPPHTTPLIB_SEND_FLAGS);
  9615. }
  9616. inline void SocketStream::get_remote_ip_and_port(std::string &ip,
  9617. int &port) const {
  9618. return detail::get_remote_ip_and_port(sock_, ip, port);
  9619. }
  9620. inline void SocketStream::get_local_ip_and_port(std::string &ip,
  9621. int &port) const {
  9622. return detail::get_local_ip_and_port(sock_, ip, port);
  9623. }
  9624. inline socket_t SocketStream::socket() const { return sock_; }
  9625. inline time_t SocketStream::duration() const {
  9626. return std::chrono::duration_cast<std::chrono::milliseconds>(
  9627. std::chrono::steady_clock::now() - start_time_)
  9628. .count();
  9629. }
  9630. inline void SocketStream::set_read_timeout(time_t sec, time_t usec) {
  9631. read_timeout_sec_ = sec;
  9632. read_timeout_usec_ = usec;
  9633. }
  9634. // Buffer stream implementation
  9635. inline bool BufferStream::is_readable() const { return true; }
  9636. inline bool BufferStream::wait_readable() const { return true; }
  9637. inline bool BufferStream::wait_writable() const { return true; }
  9638. inline ssize_t BufferStream::read(char *ptr, size_t size) {
  9639. #if defined(_MSC_VER) && _MSC_VER < 1910
  9640. auto len_read = buffer._Copy_s(ptr, size, size, position);
  9641. #else
  9642. auto len_read = buffer.copy(ptr, size, position);
  9643. #endif
  9644. position += static_cast<size_t>(len_read);
  9645. return static_cast<ssize_t>(len_read);
  9646. }
  9647. inline ssize_t BufferStream::write(const char *ptr, size_t size) {
  9648. buffer.append(ptr, size);
  9649. return static_cast<ssize_t>(size);
  9650. }
  9651. inline void BufferStream::get_remote_ip_and_port(std::string & /*ip*/,
  9652. int & /*port*/) const {}
  9653. inline void BufferStream::get_local_ip_and_port(std::string & /*ip*/,
  9654. int & /*port*/) const {}
  9655. inline socket_t BufferStream::socket() const { return 0; }
  9656. inline time_t BufferStream::duration() const { return 0; }
  9657. inline const std::string &BufferStream::get_buffer() const { return buffer; }
  9658. inline PathParamsMatcher::PathParamsMatcher(const std::string &pattern)
  9659. : MatcherBase(pattern) {
  9660. constexpr const char marker[] = "/:";
  9661. // One past the last ending position of a path param substring
  9662. std::size_t last_param_end = 0;
  9663. #ifndef CPPHTTPLIB_NO_EXCEPTIONS
  9664. // Needed to ensure that parameter names are unique during matcher
  9665. // construction
  9666. // If exceptions are disabled, only last duplicate path
  9667. // parameter will be set
  9668. std::unordered_set<std::string> param_name_set;
  9669. #endif
  9670. while (true) {
  9671. const auto marker_pos = pattern.find(
  9672. marker, last_param_end == 0 ? last_param_end : last_param_end - 1);
  9673. if (marker_pos == std::string::npos) { break; }
  9674. static_fragments_.push_back(
  9675. pattern.substr(last_param_end, marker_pos - last_param_end + 1));
  9676. const auto param_name_start = marker_pos + str_len(marker);
  9677. auto sep_pos = pattern.find(separator, param_name_start);
  9678. if (sep_pos == std::string::npos) { sep_pos = pattern.length(); }
  9679. auto param_name =
  9680. pattern.substr(param_name_start, sep_pos - param_name_start);
  9681. #ifndef CPPHTTPLIB_NO_EXCEPTIONS
  9682. if (param_name_set.find(param_name) != param_name_set.cend()) {
  9683. std::string msg = "Encountered path parameter '" + param_name +
  9684. "' multiple times in route pattern '" + pattern + "'.";
  9685. throw std::invalid_argument(msg);
  9686. }
  9687. #endif
  9688. param_names_.push_back(std::move(param_name));
  9689. last_param_end = sep_pos + 1;
  9690. }
  9691. if (last_param_end < pattern.length()) {
  9692. static_fragments_.push_back(pattern.substr(last_param_end));
  9693. }
  9694. }
  9695. inline bool PathParamsMatcher::match(Request &request) const {
  9696. request.matches = std::smatch();
  9697. request.path_params.clear();
  9698. request.path_params.reserve(param_names_.size());
  9699. // One past the position at which the path matched the pattern last time
  9700. std::size_t starting_pos = 0;
  9701. for (size_t i = 0; i < static_fragments_.size(); ++i) {
  9702. const auto &fragment = static_fragments_[i];
  9703. if (starting_pos + fragment.length() > request.path.length()) {
  9704. return false;
  9705. }
  9706. // Avoid unnecessary allocation by using strncmp instead of substr +
  9707. // comparison
  9708. if (std::strncmp(request.path.c_str() + starting_pos, fragment.c_str(),
  9709. fragment.length()) != 0) {
  9710. return false;
  9711. }
  9712. starting_pos += fragment.length();
  9713. // Should only happen when we have a static fragment after a param
  9714. // Example: '/users/:id/subscriptions'
  9715. // The 'subscriptions' fragment here does not have a corresponding param
  9716. if (i >= param_names_.size()) { continue; }
  9717. auto sep_pos = request.path.find(separator, starting_pos);
  9718. if (sep_pos == std::string::npos) { sep_pos = request.path.length(); }
  9719. const auto &param_name = param_names_[i];
  9720. request.path_params.emplace(
  9721. param_name, request.path.substr(starting_pos, sep_pos - starting_pos));
  9722. // Mark everything up to '/' as matched
  9723. starting_pos = sep_pos + 1;
  9724. }
  9725. // Returns false if the path is longer than the pattern
  9726. return starting_pos >= request.path.length();
  9727. }
  9728. inline bool RegexMatcher::match(Request &request) const {
  9729. request.path_params.clear();
  9730. return std::regex_match(request.path, request.matches, regex_);
  9731. }
  9732. // Enclose IPv6 address in brackets if needed
  9733. inline std::string prepare_host_string(const std::string &host) {
  9734. // Enclose IPv6 address in brackets (but not if already enclosed)
  9735. if (host.find(':') == std::string::npos ||
  9736. (!host.empty() && host[0] == '[')) {
  9737. // IPv4, hostname, or already bracketed IPv6
  9738. return host;
  9739. } else {
  9740. // IPv6 address without brackets
  9741. return "[" + host + "]";
  9742. }
  9743. }
  9744. inline std::string make_host_and_port_string(const std::string &host, int port,
  9745. bool is_ssl) {
  9746. auto result = prepare_host_string(host);
  9747. // Append port if not default
  9748. if ((!is_ssl && port == 80) || (is_ssl && port == 443)) {
  9749. ; // do nothing
  9750. } else {
  9751. result += ":" + std::to_string(port);
  9752. }
  9753. return result;
  9754. }
  9755. // Create "host:port" string always including port number (for CONNECT method)
  9756. inline std::string
  9757. make_host_and_port_string_always_port(const std::string &host, int port) {
  9758. return prepare_host_string(host) + ":" + std::to_string(port);
  9759. }
  9760. // Value for the Host header a client sends when the caller supplied none.
  9761. // Only the value: callers decide where in their header list it goes.
  9762. inline std::string make_default_host_header_value(const std::string &host,
  9763. int port, bool is_ssl,
  9764. int address_family) {
  9765. if (address_family == AF_UNIX) { return "localhost"; }
  9766. return make_host_and_port_string(host, port, is_ssl);
  9767. }
  9768. inline void add_default_user_agent_header(Request &req) {
  9769. #ifndef CPPHTTPLIB_NO_DEFAULT_USER_AGENT
  9770. if (!req.has_header("User-Agent")) {
  9771. req.set_header("User-Agent",
  9772. std::string("cpp-httplib/") + CPPHTTPLIB_VERSION);
  9773. }
  9774. #else
  9775. (void)req;
  9776. #endif
  9777. }
  9778. bool parse_no_proxy_entry(const std::string &token, NoProxyEntry &out);
  9779. NormalizedTarget normalize_target(const std::string &host);
  9780. bool ip_in_cidr(const IPBytes &ip, const IPBytes &net, int prefix_bits);
  9781. bool host_matches_no_proxy(const NormalizedTarget &target,
  9782. const std::vector<NoProxyEntry> &entries);
  9783. inline bool ip_in_cidr(const IPBytes &ip, const IPBytes &net, int prefix_bits) {
  9784. if (prefix_bits < 0 || prefix_bits > 128) { return false; }
  9785. if (prefix_bits == 0) { return true; }
  9786. int full_bytes = prefix_bits / 8;
  9787. int rem_bits = prefix_bits % 8;
  9788. if (full_bytes > 0 && std::memcmp(ip.data(), net.data(),
  9789. static_cast<size_t>(full_bytes)) != 0) {
  9790. return false;
  9791. }
  9792. if (rem_bits == 0) { return true; }
  9793. auto i = static_cast<size_t>(full_bytes);
  9794. auto mask = static_cast<uint8_t>(0xFFu << (8 - rem_bits));
  9795. return (ip[i] & mask) == (net[i] & mask);
  9796. }
  9797. inline bool parse_no_proxy_entry(const std::string &token, NoProxyEntry &out) {
  9798. if (token.empty()) { return false; }
  9799. if (token == "*") {
  9800. out.kind = NoProxyKind::Wildcard;
  9801. return true;
  9802. }
  9803. auto slash = token.find('/');
  9804. std::string addr_part =
  9805. (slash == std::string::npos) ? token : token.substr(0, slash);
  9806. std::string prefix_part =
  9807. (slash == std::string::npos) ? std::string() : token.substr(slash + 1);
  9808. // A bare slash or trailing-slash CIDR like "10.0.0.0/" is malformed;
  9809. // don't silently treat it as a /32 (or /128).
  9810. if (slash != std::string::npos && prefix_part.empty()) { return false; }
  9811. // Accept the bracketed IPv6 form ("[::1]", "[fe80::]/10") as well as the
  9812. // bare form. Brackets have no meaning for IPv4, so skip the IPv4 attempt
  9813. // when brackets are present.
  9814. bool bracketed = addr_part.size() >= 2 && addr_part.front() == '[' &&
  9815. addr_part.back() == ']';
  9816. if (bracketed) { addr_part = addr_part.substr(1, addr_part.size() - 2); }
  9817. if (!bracketed) {
  9818. struct in_addr v4;
  9819. if (inet_pton(AF_INET, addr_part.c_str(), &v4) == 1) {
  9820. int prefix = 32;
  9821. if (!prefix_part.empty()) {
  9822. auto r = from_chars(prefix_part.data(),
  9823. prefix_part.data() + prefix_part.size(), prefix);
  9824. if (r.ec != std::errc{} ||
  9825. r.ptr != prefix_part.data() + prefix_part.size()) {
  9826. return false;
  9827. }
  9828. if (prefix < 0 || prefix > 32) { return false; }
  9829. }
  9830. out.kind = NoProxyKind::IPv4Cidr;
  9831. std::memcpy(out.net.data(), &v4, sizeof(v4));
  9832. out.prefix_bits = prefix;
  9833. return true;
  9834. }
  9835. }
  9836. struct in6_addr v6;
  9837. if (inet_pton(AF_INET6, addr_part.c_str(), &v6) == 1) {
  9838. int prefix = 128;
  9839. if (!prefix_part.empty()) {
  9840. auto r = from_chars(prefix_part.data(),
  9841. prefix_part.data() + prefix_part.size(), prefix);
  9842. if (r.ec != std::errc{} ||
  9843. r.ptr != prefix_part.data() + prefix_part.size()) {
  9844. return false;
  9845. }
  9846. if (prefix < 0 || prefix > 128) { return false; }
  9847. }
  9848. out.kind = NoProxyKind::IPv6Cidr;
  9849. std::memcpy(out.net.data(), &v6, sizeof(v6));
  9850. out.prefix_bits = prefix;
  9851. return true;
  9852. }
  9853. // Bracketed entries can only be IPv6. If the IPv6 parse above failed,
  9854. // the entry is malformed — don't fall through to the hostname branch.
  9855. if (bracketed) { return false; }
  9856. // A '/' on a non-IP token means a CIDR prefix without an address. Reject.
  9857. if (slash != std::string::npos) { return false; }
  9858. // Port-specific entries (host:port) are not supported.
  9859. if (token.find(':') != std::string::npos) { return false; }
  9860. std::string hostname = case_ignore::to_lower(token);
  9861. while (!hostname.empty() && hostname.front() == '.') {
  9862. hostname.erase(hostname.begin());
  9863. }
  9864. while (!hostname.empty() && hostname.back() == '.') {
  9865. hostname.pop_back();
  9866. }
  9867. if (hostname.empty()) { return false; }
  9868. out.kind = NoProxyKind::HostnameSuffix;
  9869. out.hostname_pattern = std::move(hostname);
  9870. return true;
  9871. }
  9872. inline NormalizedTarget normalize_target(const std::string &host) {
  9873. NormalizedTarget t;
  9874. std::string h = host;
  9875. if (h.size() >= 2 && h.front() == '[' && h.back() == ']') {
  9876. h = h.substr(1, h.size() - 2);
  9877. }
  9878. // Strip a single trailing dot so "example.com." canonicalizes to
  9879. // "example.com".
  9880. if (!h.empty() && h.back() == '.') { h.pop_back(); }
  9881. t.hostname = case_ignore::to_lower(h);
  9882. if (!t.hostname.empty()) {
  9883. struct in_addr v4;
  9884. struct in6_addr v6;
  9885. if (inet_pton(AF_INET, t.hostname.c_str(), &v4) == 1) {
  9886. t.is_ipv4 = true;
  9887. std::memcpy(t.ip.data(), &v4, sizeof(v4));
  9888. } else if (inet_pton(AF_INET6, t.hostname.c_str(), &v6) == 1) {
  9889. t.is_ipv6 = true;
  9890. std::memcpy(t.ip.data(), &v6, sizeof(v6));
  9891. }
  9892. }
  9893. return t;
  9894. }
  9895. inline bool host_matches_no_proxy(const NormalizedTarget &target,
  9896. const std::vector<NoProxyEntry> &entries) {
  9897. if (target.hostname.empty()) { return false; }
  9898. for (const auto &e : entries) {
  9899. switch (e.kind) {
  9900. case NoProxyKind::Wildcard: return true;
  9901. case NoProxyKind::IPv4Cidr:
  9902. if (target.is_ipv4 && ip_in_cidr(target.ip, e.net, e.prefix_bits)) {
  9903. return true;
  9904. }
  9905. break;
  9906. case NoProxyKind::IPv6Cidr:
  9907. if (target.is_ipv6 && ip_in_cidr(target.ip, e.net, e.prefix_bits)) {
  9908. return true;
  9909. }
  9910. break;
  9911. case NoProxyKind::HostnameSuffix:
  9912. if (target.is_ipv4 || target.is_ipv6) { break; }
  9913. if (target.hostname == e.hostname_pattern) { return true; }
  9914. // Dot-boundary suffix match: prevents "evilexample.com" from matching
  9915. // an entry of "example.com".
  9916. if (target.hostname.size() > e.hostname_pattern.size() + 1) {
  9917. auto offset = target.hostname.size() - e.hostname_pattern.size();
  9918. if (target.hostname[offset - 1] == '.' &&
  9919. target.hostname.compare(offset, e.hostname_pattern.size(),
  9920. e.hostname_pattern) == 0) {
  9921. return true;
  9922. }
  9923. }
  9924. break;
  9925. }
  9926. }
  9927. return false;
  9928. }
  9929. template <typename T>
  9930. inline bool check_and_write_headers(Stream &strm, Headers &headers,
  9931. T header_writer, Error &error) {
  9932. for (const auto &h : headers) {
  9933. if (!detail::fields::is_field_valid(h.first, h.second)) {
  9934. error = Error::InvalidHeaders;
  9935. return false;
  9936. }
  9937. }
  9938. if (header_writer(strm, headers) <= 0) {
  9939. error = Error::Write;
  9940. return false;
  9941. }
  9942. return true;
  9943. }
  9944. } // namespace detail
  9945. /*
  9946. * Group 2 (continued): detail namespace - SSLSocketStream implementation
  9947. */
  9948. #ifdef CPPHTTPLIB_SSL_ENABLED
  9949. namespace detail {
  9950. // SSL socket stream implementation
  9951. inline SSLSocketStream::SSLSocketStream(
  9952. socket_t sock, tls::session_t session, time_t read_timeout_sec,
  9953. time_t read_timeout_usec, time_t write_timeout_sec,
  9954. time_t write_timeout_usec, time_t max_timeout_msec,
  9955. std::chrono::time_point<std::chrono::steady_clock> start_time)
  9956. : sock_(sock), session_(session), read_timeout_sec_(read_timeout_sec),
  9957. read_timeout_usec_(read_timeout_usec),
  9958. write_timeout_sec_(write_timeout_sec),
  9959. write_timeout_usec_(write_timeout_usec),
  9960. max_timeout_msec_(max_timeout_msec), start_time_(start_time) {
  9961. #ifdef CPPHTTPLIB_OPENSSL_SUPPORT
  9962. // Clear AUTO_RETRY for proper non-blocking I/O timeout handling
  9963. // Note: create_session() also clears this, but SSLClient currently
  9964. // uses ssl_new() which does not. Until full TLS API migration is complete,
  9965. // we need to ensure AUTO_RETRY is cleared here regardless of how the
  9966. // SSL session was created.
  9967. SSL_clear_mode(static_cast<SSL *>(session), SSL_MODE_AUTO_RETRY);
  9968. #endif
  9969. }
  9970. inline SSLSocketStream::~SSLSocketStream() = default;
  9971. inline bool SSLSocketStream::is_readable() const {
  9972. return tls::pending(session_) > 0;
  9973. }
  9974. inline bool SSLSocketStream::wait_readable() const {
  9975. if (max_timeout_msec_ <= 0) {
  9976. return select_read(sock_, read_timeout_sec_, read_timeout_usec_) > 0;
  9977. }
  9978. time_t read_timeout_sec;
  9979. time_t read_timeout_usec;
  9980. calc_actual_timeout(max_timeout_msec_, duration(), read_timeout_sec_,
  9981. read_timeout_usec_, read_timeout_sec, read_timeout_usec);
  9982. return select_read(sock_, read_timeout_sec, read_timeout_usec) > 0;
  9983. }
  9984. inline bool SSLSocketStream::wait_writable() const {
  9985. return select_write(sock_, write_timeout_sec_, write_timeout_usec_) > 0 &&
  9986. !tls::is_peer_closed(session_, sock_);
  9987. }
  9988. inline bool SSLSocketStream::ensure_readable() {
  9989. if (readable_hint_) {
  9990. readable_hint_ = false;
  9991. return true;
  9992. }
  9993. return wait_readable();
  9994. }
  9995. inline bool SSLSocketStream::is_peer_alive() const {
  9996. return !tls::is_peer_closed(session_, sock_);
  9997. }
  9998. inline ssize_t SSLSocketStream::read(char *ptr, size_t size) {
  9999. if (tls::pending(session_) > 0) {
  10000. tls::TlsError err;
  10001. auto ret = tls::read(session_, ptr, size, err);
  10002. if (ret == 0 || err.code == tls::ErrorCode::PeerClosed) {
  10003. error_ = Error::ConnectionClosed;
  10004. }
  10005. return ret;
  10006. } else if (ensure_readable()) {
  10007. tls::TlsError err;
  10008. auto ret = tls::read(session_, ptr, size, err);
  10009. if (ret < 0) {
  10010. auto n = 1000;
  10011. #ifdef _WIN32
  10012. while (--n >= 0 && (err.code == tls::ErrorCode::WantRead ||
  10013. (err.code == tls::ErrorCode::SyscallError &&
  10014. WSAGetLastError() == WSAETIMEDOUT))) {
  10015. #else
  10016. while (--n >= 0 && err.code == tls::ErrorCode::WantRead) {
  10017. #endif
  10018. if (tls::pending(session_) > 0) {
  10019. return tls::read(session_, ptr, size, err);
  10020. } else if (wait_readable()) {
  10021. std::this_thread::sleep_for(std::chrono::microseconds{10});
  10022. ret = tls::read(session_, ptr, size, err);
  10023. if (ret >= 0) { return ret; }
  10024. } else {
  10025. break;
  10026. }
  10027. }
  10028. assert(ret < 0);
  10029. } else if (ret == 0 || err.code == tls::ErrorCode::PeerClosed) {
  10030. error_ = Error::ConnectionClosed;
  10031. }
  10032. return ret;
  10033. } else {
  10034. error_ = Error::Timeout;
  10035. return -1;
  10036. }
  10037. }
  10038. inline ssize_t SSLSocketStream::write(const char *ptr, size_t size) {
  10039. if (wait_writable()) {
  10040. auto handle_size =
  10041. std::min<size_t>(size, (std::numeric_limits<int>::max)());
  10042. tls::TlsError err;
  10043. auto ret = tls::write(session_, ptr, handle_size, err);
  10044. if (ret < 0) {
  10045. auto n = 1000;
  10046. #ifdef _WIN32
  10047. while (--n >= 0 && (err.code == tls::ErrorCode::WantWrite ||
  10048. (err.code == tls::ErrorCode::SyscallError &&
  10049. WSAGetLastError() == WSAETIMEDOUT))) {
  10050. #else
  10051. while (--n >= 0 && err.code == tls::ErrorCode::WantWrite) {
  10052. #endif
  10053. if (wait_writable()) {
  10054. std::this_thread::sleep_for(std::chrono::microseconds{10});
  10055. ret = tls::write(session_, ptr, handle_size, err);
  10056. if (ret >= 0) { return ret; }
  10057. } else {
  10058. break;
  10059. }
  10060. }
  10061. assert(ret < 0);
  10062. }
  10063. return ret;
  10064. }
  10065. return -1;
  10066. }
  10067. inline void SSLSocketStream::get_remote_ip_and_port(std::string &ip,
  10068. int &port) const {
  10069. detail::get_remote_ip_and_port(sock_, ip, port);
  10070. }
  10071. inline void SSLSocketStream::get_local_ip_and_port(std::string &ip,
  10072. int &port) const {
  10073. detail::get_local_ip_and_port(sock_, ip, port);
  10074. }
  10075. inline socket_t SSLSocketStream::socket() const { return sock_; }
  10076. inline time_t SSLSocketStream::duration() const {
  10077. return std::chrono::duration_cast<std::chrono::milliseconds>(
  10078. std::chrono::steady_clock::now() - start_time_)
  10079. .count();
  10080. }
  10081. inline void SSLSocketStream::set_read_timeout(time_t sec, time_t usec) {
  10082. read_timeout_sec_ = sec;
  10083. read_timeout_usec_ = usec;
  10084. }
  10085. } // namespace detail
  10086. #endif // CPPHTTPLIB_SSL_ENABLED
  10087. /*
  10088. * Group 4: Server implementation
  10089. */
  10090. // HTTP server implementation
  10091. inline Server::Server()
  10092. : new_task_queue([] {
  10093. return new ThreadPool(CPPHTTPLIB_THREAD_POOL_COUNT,
  10094. CPPHTTPLIB_THREAD_POOL_MAX_COUNT);
  10095. }) {
  10096. #ifndef _WIN32
  10097. signal(SIGPIPE, SIG_IGN);
  10098. #endif
  10099. }
  10100. inline Server::~Server() = default;
  10101. inline std::unique_ptr<detail::MatcherBase>
  10102. Server::make_matcher(const std::string &pattern) {
  10103. if (pattern.find("/:") != std::string::npos) {
  10104. return detail::make_unique<detail::PathParamsMatcher>(pattern);
  10105. } else {
  10106. return detail::make_unique<detail::RegexMatcher>(pattern);
  10107. }
  10108. }
  10109. inline Server &Server::Get(const std::string &pattern, Handler handler) {
  10110. return add_handler(get_handlers_, pattern, std::move(handler));
  10111. }
  10112. inline Server &Server::Post(const std::string &pattern, Handler handler) {
  10113. return add_handler(post_handlers_, pattern, std::move(handler));
  10114. }
  10115. inline Server &Server::Post(const std::string &pattern,
  10116. HandlerWithContentReader handler) {
  10117. return add_handler(post_handlers_for_content_reader_, pattern,
  10118. std::move(handler));
  10119. }
  10120. inline Server &Server::Put(const std::string &pattern, Handler handler) {
  10121. return add_handler(put_handlers_, pattern, std::move(handler));
  10122. }
  10123. inline Server &Server::Put(const std::string &pattern,
  10124. HandlerWithContentReader handler) {
  10125. return add_handler(put_handlers_for_content_reader_, pattern,
  10126. std::move(handler));
  10127. }
  10128. inline Server &Server::Patch(const std::string &pattern, Handler handler) {
  10129. return add_handler(patch_handlers_, pattern, std::move(handler));
  10130. }
  10131. inline Server &Server::Patch(const std::string &pattern,
  10132. HandlerWithContentReader handler) {
  10133. return add_handler(patch_handlers_for_content_reader_, pattern,
  10134. std::move(handler));
  10135. }
  10136. inline Server &Server::Delete(const std::string &pattern, Handler handler) {
  10137. return add_handler(delete_handlers_, pattern, std::move(handler));
  10138. }
  10139. inline Server &Server::Delete(const std::string &pattern,
  10140. HandlerWithContentReader handler) {
  10141. return add_handler(delete_handlers_for_content_reader_, pattern,
  10142. std::move(handler));
  10143. }
  10144. inline Server &Server::Options(const std::string &pattern, Handler handler) {
  10145. return add_handler(options_handlers_, pattern, std::move(handler));
  10146. }
  10147. inline Server &Server::WebSocket(const std::string &pattern,
  10148. WebSocketHandler handler) {
  10149. websocket_handlers_.push_back(
  10150. {make_matcher(pattern), std::move(handler), nullptr});
  10151. return *this;
  10152. }
  10153. inline Server &Server::WebSocket(const std::string &pattern,
  10154. WebSocketHandler handler,
  10155. SubProtocolSelector sub_protocol_selector) {
  10156. websocket_handlers_.push_back({make_matcher(pattern), std::move(handler),
  10157. std::move(sub_protocol_selector)});
  10158. return *this;
  10159. }
  10160. inline bool Server::set_base_dir(const std::string &dir,
  10161. const std::string &mount_point) {
  10162. return set_mount_point(mount_point, dir);
  10163. }
  10164. inline bool Server::set_mount_point(const std::string &mount_point,
  10165. const std::string &dir, Headers headers) {
  10166. detail::FileStat stat(dir);
  10167. if (stat.is_dir()) {
  10168. std::string mnt = !mount_point.empty() ? mount_point : "/";
  10169. if (!mnt.empty() && mnt[0] == '/') {
  10170. std::string resolved_base;
  10171. if (detail::canonicalize_path(dir.c_str(), resolved_base)) {
  10172. #if defined(_WIN32)
  10173. if (resolved_base.back() != '\\' && resolved_base.back() != '/') {
  10174. resolved_base += '\\';
  10175. }
  10176. #else
  10177. if (resolved_base.back() != '/') { resolved_base += '/'; }
  10178. #endif
  10179. }
  10180. base_dirs_.push_back(
  10181. {std::move(mnt), dir, std::move(resolved_base), std::move(headers)});
  10182. return true;
  10183. }
  10184. }
  10185. return false;
  10186. }
  10187. inline bool Server::remove_mount_point(const std::string &mount_point) {
  10188. for (auto it = base_dirs_.begin(); it != base_dirs_.end(); ++it) {
  10189. if (it->mount_point == mount_point) {
  10190. base_dirs_.erase(it);
  10191. return true;
  10192. }
  10193. }
  10194. return false;
  10195. }
  10196. inline Server &
  10197. Server::set_file_extension_and_mimetype_mapping(const std::string &ext,
  10198. const std::string &mime) {
  10199. file_extension_and_mimetype_map_[ext] = mime;
  10200. return *this;
  10201. }
  10202. inline Server &Server::set_default_file_mimetype(const std::string &mime) {
  10203. default_file_mimetype_ = mime;
  10204. return *this;
  10205. }
  10206. inline Server &Server::set_file_request_handler(Handler handler) {
  10207. file_request_handler_ = std::move(handler);
  10208. return *this;
  10209. }
  10210. inline Server &Server::set_error_handler_core(HandlerWithResponse handler,
  10211. std::true_type) {
  10212. error_handler_ = std::move(handler);
  10213. return *this;
  10214. }
  10215. inline Server &Server::set_error_handler_core(Handler handler,
  10216. std::false_type) {
  10217. error_handler_ = [handler](const Request &req, Response &res) {
  10218. handler(req, res);
  10219. return HandlerResponse::Handled;
  10220. };
  10221. return *this;
  10222. }
  10223. inline Server &Server::set_exception_handler(ExceptionHandler handler) {
  10224. exception_handler_ = std::move(handler);
  10225. return *this;
  10226. }
  10227. inline Server &Server::set_pre_routing_handler(HandlerWithResponse handler) {
  10228. pre_routing_handler_ = std::move(handler);
  10229. return *this;
  10230. }
  10231. inline Server &Server::set_post_routing_handler(Handler handler) {
  10232. post_routing_handler_ = std::move(handler);
  10233. return *this;
  10234. }
  10235. inline Server &Server::set_pre_request_handler(HandlerWithResponse handler) {
  10236. pre_request_handler_ = std::move(handler);
  10237. return *this;
  10238. }
  10239. inline Server &Server::set_logger(Logger logger) {
  10240. logger_ = std::move(logger);
  10241. return *this;
  10242. }
  10243. inline Server &Server::set_error_logger(ErrorLogger error_logger) {
  10244. error_logger_ = std::move(error_logger);
  10245. return *this;
  10246. }
  10247. inline Server &Server::set_pre_compression_logger(Logger logger) {
  10248. pre_compression_logger_ = std::move(logger);
  10249. return *this;
  10250. }
  10251. inline Server &
  10252. Server::set_expect_100_continue_handler(Expect100ContinueHandler handler) {
  10253. expect_100_continue_handler_ = std::move(handler);
  10254. return *this;
  10255. }
  10256. inline Server &Server::set_start_handler(StartHandler handler) {
  10257. start_handler_ = std::move(handler);
  10258. return *this;
  10259. }
  10260. inline Server &Server::set_address_family(int family) {
  10261. address_family_ = family;
  10262. return *this;
  10263. }
  10264. inline Server &Server::set_tcp_nodelay(bool on) {
  10265. tcp_nodelay_ = on;
  10266. return *this;
  10267. }
  10268. inline Server &Server::set_ipv6_v6only(bool on) {
  10269. ipv6_v6only_ = on;
  10270. return *this;
  10271. }
  10272. inline Server &Server::set_socket_options(SocketOptions socket_options) {
  10273. socket_options_ = std::move(socket_options);
  10274. return *this;
  10275. }
  10276. inline Server &Server::set_default_headers(Headers headers) {
  10277. default_headers_ = std::move(headers);
  10278. return *this;
  10279. }
  10280. inline Server &Server::set_header_writer(
  10281. std::function<ssize_t(Stream &, Headers &)> const &writer) {
  10282. header_writer_ = writer;
  10283. return *this;
  10284. }
  10285. inline Server &
  10286. Server::set_trusted_proxies(const std::vector<std::string> &proxies) {
  10287. trusted_proxies_ = proxies;
  10288. return *this;
  10289. }
  10290. inline Server &Server::set_keep_alive_max_count(size_t count) {
  10291. keep_alive_max_count_ = count;
  10292. return *this;
  10293. }
  10294. inline Server &Server::set_keep_alive_timeout(time_t sec) {
  10295. keep_alive_timeout_sec_ = sec;
  10296. return *this;
  10297. }
  10298. template <class Rep, class Period>
  10299. inline Server &Server::set_keep_alive_timeout(
  10300. const std::chrono::duration<Rep, Period> &duration) {
  10301. detail::duration_to_sec_and_usec(duration, [&](time_t sec, time_t /*usec*/) {
  10302. set_keep_alive_timeout(sec);
  10303. });
  10304. return *this;
  10305. }
  10306. inline Server &Server::set_read_timeout(time_t sec, time_t usec) {
  10307. read_timeout_sec_ = sec;
  10308. read_timeout_usec_ = usec;
  10309. return *this;
  10310. }
  10311. inline Server &Server::set_write_timeout(time_t sec, time_t usec) {
  10312. write_timeout_sec_ = sec;
  10313. write_timeout_usec_ = usec;
  10314. return *this;
  10315. }
  10316. inline Server &Server::set_idle_interval(time_t sec, time_t usec) {
  10317. idle_interval_sec_ = sec;
  10318. idle_interval_usec_ = usec;
  10319. return *this;
  10320. }
  10321. inline Server &Server::set_payload_max_length(size_t length) {
  10322. payload_max_length_ = length;
  10323. return *this;
  10324. }
  10325. inline Server &Server::set_websocket_max_missed_pongs(int count) {
  10326. websocket_max_missed_pongs_ = count;
  10327. return *this;
  10328. }
  10329. inline Server &Server::set_websocket_ping_interval(time_t sec) {
  10330. websocket_ping_interval_sec_ = sec;
  10331. return *this;
  10332. }
  10333. template <class Rep, class Period>
  10334. inline Server &Server::set_websocket_ping_interval(
  10335. const std::chrono::duration<Rep, Period> &duration) {
  10336. detail::duration_to_sec_and_usec(duration, [&](time_t sec, time_t /*usec*/) {
  10337. set_websocket_ping_interval(sec);
  10338. });
  10339. return *this;
  10340. }
  10341. inline bool Server::bind_to_port(const std::string &host, int port,
  10342. int socket_flags) {
  10343. auto ret = bind_internal(host, port, socket_flags);
  10344. if (ret == -1) { is_decommissioned = true; }
  10345. return ret >= 0;
  10346. }
  10347. inline int Server::bind_to_any_port(const std::string &host, int socket_flags) {
  10348. auto ret = bind_internal(host, 0, socket_flags);
  10349. if (ret == -1) { is_decommissioned = true; }
  10350. return ret;
  10351. }
  10352. inline bool Server::listen_after_bind() { return listen_internal(); }
  10353. inline bool Server::listen(const std::string &host, int port,
  10354. int socket_flags) {
  10355. return bind_to_port(host, port, socket_flags) && listen_internal();
  10356. }
  10357. inline bool Server::is_running() const { return is_running_; }
  10358. inline void Server::wait_until_ready() const {
  10359. while (!is_running_ && !is_decommissioned) {
  10360. std::this_thread::sleep_for(std::chrono::milliseconds{1});
  10361. }
  10362. }
  10363. inline void Server::stop() noexcept {
  10364. // Release the listening socket whether or not the accept loop is running:
  10365. // bind_to_port() without listen_after_bind() still owns the descriptor. The
  10366. // exchange is what makes this safe to call concurrently with the accept loop.
  10367. socket_t sock = svr_sock_.exchange(INVALID_SOCKET);
  10368. if (sock != INVALID_SOCKET) {
  10369. detail::shutdown_socket(sock);
  10370. detail::close_socket(sock);
  10371. }
  10372. is_decommissioned = false;
  10373. }
  10374. inline void Server::decommission() { is_decommissioned = true; }
  10375. inline bool Server::parse_request_line(const char *s, Request &req) const {
  10376. auto len = strlen(s);
  10377. if (len < 2 || s[len - 2] != '\r' || s[len - 1] != '\n') { return false; }
  10378. len -= 2;
  10379. {
  10380. size_t count = 0;
  10381. detail::split(s, s + len, ' ', [&](const char *b, const char *e) {
  10382. switch (count) {
  10383. case 0: req.method = std::string(b, e); break;
  10384. case 1: req.target = std::string(b, e); break;
  10385. case 2: req.version = std::string(b, e); break;
  10386. default: break;
  10387. }
  10388. count++;
  10389. });
  10390. if (count != 3) { return false; }
  10391. }
  10392. thread_local const std::set<std::string> methods{
  10393. "GET", "HEAD", "POST", "PUT", "DELETE",
  10394. "CONNECT", "OPTIONS", "TRACE", "PATCH", "PRI"};
  10395. if (methods.find(req.method) == methods.end()) {
  10396. output_error_log(Error::InvalidHTTPMethod, &req);
  10397. return false;
  10398. }
  10399. if (req.version != "HTTP/1.1" && req.version != "HTTP/1.0") {
  10400. output_error_log(Error::InvalidHTTPVersion, &req);
  10401. return false;
  10402. }
  10403. {
  10404. // Skip URL fragment
  10405. for (size_t i = 0; i < req.target.size(); i++) {
  10406. if (req.target[i] == '#') {
  10407. req.target.erase(i);
  10408. break;
  10409. }
  10410. }
  10411. detail::divide(req.target, '?',
  10412. [&](const char *lhs_data, std::size_t lhs_size,
  10413. const char *rhs_data, std::size_t rhs_size) {
  10414. req.path =
  10415. decode_path_component(std::string(lhs_data, lhs_size));
  10416. detail::parse_query_text(rhs_data, rhs_size, req.params);
  10417. });
  10418. }
  10419. return true;
  10420. }
  10421. inline bool Server::write_response(Stream &strm, bool close_connection,
  10422. Request &req, Response &res) {
  10423. // NOTE: `req.ranges` should be empty, otherwise it will be applied
  10424. // incorrectly to the error content.
  10425. req.ranges.clear();
  10426. return write_response_core(strm, close_connection, req, res, false);
  10427. }
  10428. inline bool Server::write_response_with_content(Stream &strm,
  10429. bool close_connection,
  10430. const Request &req,
  10431. Response &res) {
  10432. return write_response_core(strm, close_connection, req, res, true);
  10433. }
  10434. inline bool Server::write_response_core(Stream &strm, bool close_connection,
  10435. const Request &req, Response &res,
  10436. bool need_apply_ranges) {
  10437. assert(res.status != -1);
  10438. if (400 <= res.status && error_handler_ &&
  10439. error_handler_(req, res) == HandlerResponse::Handled) {
  10440. need_apply_ranges = true;
  10441. }
  10442. std::string content_type;
  10443. std::string boundary;
  10444. if (need_apply_ranges) { apply_ranges(req, res, content_type, boundary); }
  10445. // Prepare additional headers
  10446. if (close_connection || req.get_header_value("Connection") == "close" ||
  10447. 400 <= res.status) { // Don't leave connections open after errors
  10448. res.set_header("Connection", "close");
  10449. } else {
  10450. std::string s = "timeout=";
  10451. s += std::to_string(keep_alive_timeout_sec_);
  10452. s += ", max=";
  10453. s += std::to_string(keep_alive_max_count_);
  10454. res.set_header("Keep-Alive", s);
  10455. }
  10456. if ((!res.body.empty() || res.content_length_ > 0 || res.content_provider_) &&
  10457. !res.has_header("Content-Type")) {
  10458. res.set_header("Content-Type", "text/plain");
  10459. }
  10460. if (res.body.empty() && !res.content_length_ && !res.content_provider_ &&
  10461. !res.has_header("Content-Length")) {
  10462. res.set_header("Content-Length", "0");
  10463. }
  10464. if (req.method == "HEAD" && !res.has_header("Accept-Ranges")) {
  10465. res.set_header("Accept-Ranges", "bytes");
  10466. }
  10467. if (post_routing_handler_) { post_routing_handler_(req, res); }
  10468. // Response line and headers
  10469. detail::BufferStream bstrm;
  10470. if (!detail::write_response_line(bstrm, res.status)) { return false; }
  10471. if (header_writer_(bstrm, res.headers) <= 0) { return false; }
  10472. // Combine small body with headers to reduce write syscalls
  10473. if (req.method != "HEAD" && !res.body.empty() && !res.content_provider_) {
  10474. bstrm.write(res.body.data(), res.body.size());
  10475. }
  10476. // Log before writing to avoid race condition with client-side code that
  10477. // accesses logger-captured data immediately after receiving the response.
  10478. output_log(req, res);
  10479. // Flush buffer
  10480. auto &data = bstrm.get_buffer();
  10481. if (!detail::write_data(strm, data.data(), data.size())) { return false; }
  10482. // Streaming body
  10483. auto ret = true;
  10484. if (req.method != "HEAD" && res.content_provider_) {
  10485. if (write_content_with_provider(strm, req, res, boundary, content_type)) {
  10486. res.content_provider_success_ = true;
  10487. } else {
  10488. ret = false;
  10489. }
  10490. }
  10491. return ret;
  10492. }
  10493. inline bool
  10494. Server::write_content_with_provider(Stream &strm, const Request &req,
  10495. Response &res, const std::string &boundary,
  10496. const std::string &content_type) {
  10497. auto is_shutting_down = [this]() {
  10498. return this->svr_sock_ == INVALID_SOCKET;
  10499. };
  10500. if (res.content_length_ > 0) {
  10501. // Only a 206 response is served as a partial representation, matching the
  10502. // condition `apply_ranges()` used to decide the Content-Length and the
  10503. // multipart boundary. Since `detail::range_error()` validates `req.ranges`
  10504. // only for a 2xx status, slicing under any other status would write a body
  10505. // that disagrees with the header already sent, from an unchecked offset.
  10506. auto is_partial =
  10507. !req.ranges.empty() && res.status == StatusCode::PartialContent_206;
  10508. if (!is_partial) {
  10509. return detail::write_content(strm, res.content_provider_, 0,
  10510. res.content_length_, is_shutting_down);
  10511. } else if (req.ranges.size() == 1) {
  10512. auto offset_and_length = detail::get_range_offset_and_length(
  10513. req.ranges[0], res.content_length_);
  10514. return detail::write_content(strm, res.content_provider_,
  10515. offset_and_length.first,
  10516. offset_and_length.second, is_shutting_down);
  10517. } else {
  10518. return detail::write_multipart_ranges_data(
  10519. strm, req, res, boundary, content_type, res.content_length_,
  10520. is_shutting_down);
  10521. }
  10522. } else {
  10523. if (res.is_chunked_content_provider_) {
  10524. auto type = detail::encoding_type(req, res);
  10525. auto compressor = detail::make_compressor(type);
  10526. if (!compressor) {
  10527. compressor = detail::make_unique<detail::nocompressor>();
  10528. }
  10529. return detail::write_content_chunked(strm, res.content_provider_,
  10530. is_shutting_down, *compressor);
  10531. } else {
  10532. return detail::write_content_without_length(strm, res.content_provider_,
  10533. is_shutting_down);
  10534. }
  10535. }
  10536. }
  10537. inline bool Server::read_content(Stream &strm, Request &req, Response &res) {
  10538. FormFields::iterator cur_field;
  10539. FormFiles::iterator cur_file;
  10540. auto is_text_field = false;
  10541. size_t count = 0;
  10542. if (read_content_core(
  10543. strm, req, res,
  10544. // Regular
  10545. [&](const char *buf, size_t n) {
  10546. // Prevent arithmetic overflow when checking sizes.
  10547. // Avoid computing (req.body.size() + n) directly because
  10548. // adding two unsigned `size_t` values can wrap around and
  10549. // produce a small result instead of indicating overflow.
  10550. // Instead, check using subtraction: ensure `n` does not
  10551. // exceed the remaining capacity `max_size() - size()`.
  10552. if (req.body.size() >= req.body.max_size() ||
  10553. n > req.body.max_size() - req.body.size()) {
  10554. return false;
  10555. }
  10556. // Limit decompressed body size to payload_max_length_ to protect
  10557. // against "zip bomb" attacks where a small compressed payload
  10558. // decompresses to a massive size.
  10559. if (payload_max_length_ > 0 &&
  10560. (req.body.size() >= payload_max_length_ ||
  10561. n > payload_max_length_ - req.body.size())) {
  10562. return false;
  10563. }
  10564. req.body.append(buf, n);
  10565. return true;
  10566. },
  10567. // Multipart FormData
  10568. [&](const FormData &file) {
  10569. if (count++ == CPPHTTPLIB_MULTIPART_FORM_DATA_FILE_MAX_COUNT) {
  10570. output_error_log(Error::TooManyFormDataFiles, &req);
  10571. return false;
  10572. }
  10573. if (file.filename.empty()) {
  10574. cur_field = req.form.fields.emplace(
  10575. file.name, FormField{file.name, file.content, file.headers});
  10576. is_text_field = true;
  10577. } else {
  10578. cur_file = req.form.files.emplace(file.name, file);
  10579. is_text_field = false;
  10580. }
  10581. return true;
  10582. },
  10583. [&](const char *buf, size_t n) {
  10584. if (is_text_field) {
  10585. auto &content = cur_field->second.content;
  10586. if (content.size() + n > content.max_size()) { return false; }
  10587. content.append(buf, n);
  10588. } else {
  10589. auto &content = cur_file->second.content;
  10590. if (content.size() + n > content.max_size()) { return false; }
  10591. content.append(buf, n);
  10592. }
  10593. return true;
  10594. })) {
  10595. const auto &content_type = req.get_header_value("Content-Type");
  10596. if (detail::extract_media_type(content_type) ==
  10597. "application/x-www-form-urlencoded") {
  10598. if (req.body.size() > CPPHTTPLIB_FORM_URL_ENCODED_PAYLOAD_MAX_LENGTH) {
  10599. res.status = StatusCode::PayloadTooLarge_413; // NOTE: should be 414?
  10600. output_error_log(Error::ExceedMaxPayloadSize, &req);
  10601. return false;
  10602. }
  10603. detail::parse_query_text(req.body, req.params);
  10604. }
  10605. return true;
  10606. }
  10607. return false;
  10608. }
  10609. inline bool Server::read_content_with_content_receiver(
  10610. Stream &strm, Request &req, Response &res, ContentReceiver receiver,
  10611. FormDataHeader multipart_header, ContentReceiver multipart_receiver) {
  10612. return read_content_core(strm, req, res, std::move(receiver),
  10613. std::move(multipart_header),
  10614. std::move(multipart_receiver));
  10615. }
  10616. inline bool Server::read_content_core(
  10617. Stream &strm, Request &req, Response &res, ContentReceiver receiver,
  10618. FormDataHeader multipart_header, ContentReceiver multipart_receiver) const {
  10619. detail::FormDataParser multipart_form_data_parser;
  10620. ContentReceiverWithProgress out;
  10621. if (req.is_multipart_form_data()) {
  10622. const auto &content_type = req.get_header_value("Content-Type");
  10623. std::string boundary;
  10624. if (!detail::parse_multipart_boundary(content_type, boundary)) {
  10625. res.status = StatusCode::BadRequest_400;
  10626. output_error_log(Error::MultipartParsing, &req);
  10627. return false;
  10628. }
  10629. multipart_form_data_parser.set_boundary(std::move(boundary));
  10630. out = [&](const char *buf, size_t n, size_t /*off*/, size_t /*len*/) {
  10631. return multipart_form_data_parser.parse(buf, n, multipart_header,
  10632. multipart_receiver);
  10633. };
  10634. } else {
  10635. out = [receiver](const char *buf, size_t n, size_t /*off*/,
  10636. size_t /*len*/) { return receiver(buf, n); };
  10637. }
  10638. // RFC 9112 §6: no Transfer-Encoding and no Content-Length means no body.
  10639. // For non-SSL builds we still scan non-persistent connections for stray
  10640. // body bytes so the payload limit is enforced (413). On keep-alive,
  10641. // pending bytes may be the next request (issue #2450), so skip.
  10642. #if !defined(CPPHTTPLIB_SSL_ENABLED)
  10643. if (!req.has_header("Content-Length") &&
  10644. !detail::is_chunked_transfer_encoding(req.headers)) {
  10645. if (!detail::is_connection_persistent(req) && payload_max_length_ > 0 &&
  10646. payload_max_length_ < (std::numeric_limits<size_t>::max)()) {
  10647. auto has_data = strm.is_readable();
  10648. if (!has_data) {
  10649. auto s = strm.socket();
  10650. if (s != INVALID_SOCKET) {
  10651. has_data = detail::select_read(s, 0, 0) > 0;
  10652. }
  10653. }
  10654. if (has_data) {
  10655. auto result =
  10656. detail::read_content_without_length(strm, payload_max_length_, out);
  10657. if (result == detail::ReadContentResult::PayloadTooLarge) {
  10658. res.status = StatusCode::PayloadTooLarge_413;
  10659. return false;
  10660. } else if (result != detail::ReadContentResult::Success) {
  10661. return false;
  10662. }
  10663. return true;
  10664. }
  10665. }
  10666. return true;
  10667. }
  10668. #else
  10669. if (!req.has_header("Content-Length") &&
  10670. !detail::is_chunked_transfer_encoding(req.headers)) {
  10671. return true;
  10672. }
  10673. #endif
  10674. if (!detail::read_content(strm, req, payload_max_length_, res.status, nullptr,
  10675. out, true)) {
  10676. return false;
  10677. }
  10678. req.body_consumed_ = true;
  10679. if (req.is_multipart_form_data()) {
  10680. if (!multipart_form_data_parser.is_valid()) {
  10681. res.status = StatusCode::BadRequest_400;
  10682. output_error_log(Error::MultipartParsing, &req);
  10683. return false;
  10684. }
  10685. }
  10686. return true;
  10687. }
  10688. inline bool Server::handle_file_request(Request &req, Response &res) {
  10689. for (const auto &entry : base_dirs_) {
  10690. // Prefix match, on a path segment boundary. A mount point of "/mount"
  10691. // covers "/mount" and "/mount/...", but must not swallow "/mountdir/...".
  10692. // One that already ends in '/' (the root mount among them) carries its own
  10693. // boundary; set_mount_point() guarantees the mount point is not empty.
  10694. if (!req.path.compare(0, entry.mount_point.size(), entry.mount_point) &&
  10695. (entry.mount_point.back() == '/' ||
  10696. req.path.size() == entry.mount_point.size() ||
  10697. req.path[entry.mount_point.size()] == '/')) {
  10698. std::string sub_path = "/" + req.path.substr(entry.mount_point.size());
  10699. if (detail::is_valid_path(sub_path)) {
  10700. auto path = entry.base_dir + sub_path;
  10701. if (path.back() == '/') { path += "index.html"; }
  10702. // Defense-in-depth: is_valid_path blocks ".." traversal in the URL,
  10703. // but symlinks/junctions can still escape the base directory.
  10704. if (!entry.resolved_base_dir.empty()) {
  10705. std::string resolved_path;
  10706. if (detail::canonicalize_path(path.c_str(), resolved_path) &&
  10707. !detail::is_path_within_base(resolved_path,
  10708. entry.resolved_base_dir)) {
  10709. res.status = StatusCode::Forbidden_403;
  10710. return true;
  10711. }
  10712. }
  10713. detail::FileStat stat(path);
  10714. if (stat.is_dir()) {
  10715. res.set_redirect(sub_path + "/", StatusCode::MovedPermanently_301);
  10716. return true;
  10717. }
  10718. if (stat.is_file()) {
  10719. for (const auto &kv : entry.headers) {
  10720. res.set_header(kv.first, kv.second);
  10721. }
  10722. auto etag = detail::compute_etag(stat);
  10723. if (!etag.empty()) { res.set_header("ETag", etag); }
  10724. auto mtime = stat.mtime();
  10725. auto last_modified = detail::file_mtime_to_http_date(mtime);
  10726. if (!last_modified.empty()) {
  10727. res.set_header("Last-Modified", last_modified);
  10728. }
  10729. if (check_if_not_modified(req, res, etag, mtime)) { return true; }
  10730. check_if_range(req, etag, mtime);
  10731. auto mm = std::make_shared<detail::mmap>(path.c_str());
  10732. if (!mm->is_open()) {
  10733. output_error_log(Error::OpenFile, &req);
  10734. return false;
  10735. }
  10736. res.set_content_provider(
  10737. mm->size(),
  10738. detail::find_content_type(path, file_extension_and_mimetype_map_,
  10739. default_file_mimetype_),
  10740. [mm](size_t offset, size_t length, DataSink &sink) -> bool {
  10741. sink.write(mm->data() + offset, length);
  10742. return true;
  10743. });
  10744. if (req.method != "HEAD" && file_request_handler_) {
  10745. file_request_handler_(req, res);
  10746. }
  10747. return true;
  10748. } else {
  10749. output_error_log(Error::OpenFile, &req);
  10750. }
  10751. }
  10752. }
  10753. }
  10754. return false;
  10755. }
  10756. inline bool Server::check_if_not_modified(const Request &req, Response &res,
  10757. const std::string &etag,
  10758. time_t mtime) const {
  10759. // Handle conditional GET:
  10760. // 1. If-None-Match takes precedence (RFC 9110 Section 13.1.2)
  10761. // 2. If-Modified-Since is checked only when If-None-Match is absent
  10762. if (req.has_header("If-None-Match")) {
  10763. if (!etag.empty()) {
  10764. auto val = req.get_header_value("If-None-Match");
  10765. // NOTE: We use exact string matching here. This works correctly
  10766. // because our server always generates weak ETags (W/"..."), and
  10767. // clients typically send back the same ETag they received.
  10768. // RFC 9110 Section 8.8.3.2 allows weak comparison for
  10769. // If-None-Match, where W/"x" and "x" would match, but this
  10770. // simplified implementation requires exact matches.
  10771. auto ret = detail::split_find(val.data(), val.data() + val.size(), ',',
  10772. [&](const char *b, const char *e) {
  10773. auto seg_len = static_cast<size_t>(e - b);
  10774. return (seg_len == 1 && *b == '*') ||
  10775. (seg_len == etag.size() &&
  10776. std::equal(b, e, etag.begin()));
  10777. });
  10778. if (ret) {
  10779. res.status = StatusCode::NotModified_304;
  10780. return true;
  10781. }
  10782. }
  10783. } else if (req.has_header("If-Modified-Since")) {
  10784. auto val = req.get_header_value("If-Modified-Since");
  10785. auto t = detail::parse_http_date(val);
  10786. if (t != static_cast<time_t>(-1) && mtime <= t) {
  10787. res.status = StatusCode::NotModified_304;
  10788. return true;
  10789. }
  10790. }
  10791. return false;
  10792. }
  10793. inline bool Server::check_if_range(Request &req, const std::string &etag,
  10794. time_t mtime) const {
  10795. // Handle If-Range for partial content requests (RFC 9110
  10796. // Section 13.1.5). If-Range is only evaluated when Range header is
  10797. // present. If the validator matches, serve partial content; otherwise
  10798. // serve full content.
  10799. if (!req.ranges.empty() && req.has_header("If-Range")) {
  10800. auto val = req.get_header_value("If-Range");
  10801. auto is_valid_range = [&]() {
  10802. if (detail::is_strong_etag(val)) {
  10803. // RFC 9110 Section 13.1.5: If-Range requires strong ETag
  10804. // comparison.
  10805. return (!etag.empty() && val == etag);
  10806. } else if (detail::is_weak_etag(val)) {
  10807. // Weak ETags are not valid for If-Range (RFC 9110 Section 13.1.5)
  10808. return false;
  10809. } else {
  10810. // HTTP-date comparison
  10811. auto t = detail::parse_http_date(val);
  10812. return (t != static_cast<time_t>(-1) && mtime <= t);
  10813. }
  10814. };
  10815. if (!is_valid_range()) {
  10816. // Validator doesn't match: ignore Range and serve full content
  10817. req.ranges.clear();
  10818. return false;
  10819. }
  10820. }
  10821. return true;
  10822. }
  10823. inline socket_t
  10824. Server::create_server_socket(const std::string &host, int port,
  10825. int socket_flags,
  10826. SocketOptions socket_options) const {
  10827. return detail::create_socket(
  10828. host, std::string(), port, address_family_, socket_flags, tcp_nodelay_,
  10829. ipv6_v6only_, std::move(socket_options),
  10830. [&](socket_t sock, struct addrinfo &ai, bool & /*quit*/) -> bool {
  10831. if (::bind(sock, ai.ai_addr, static_cast<socklen_t>(ai.ai_addrlen))) {
  10832. output_error_log(Error::BindIPAddress, nullptr);
  10833. return false;
  10834. }
  10835. if (::listen(sock, CPPHTTPLIB_LISTEN_BACKLOG)) {
  10836. output_error_log(Error::Listen, nullptr);
  10837. return false;
  10838. }
  10839. return true;
  10840. });
  10841. }
  10842. inline int Server::bind_internal(const std::string &host, int port,
  10843. int socket_flags) {
  10844. if (is_decommissioned) { return -1; }
  10845. if (!is_valid()) { return -1; }
  10846. svr_sock_ = create_server_socket(host, port, socket_flags, socket_options_);
  10847. if (svr_sock_ == INVALID_SOCKET) { return -1; }
  10848. if (port == 0) {
  10849. struct sockaddr_storage addr;
  10850. socklen_t addr_len = sizeof(addr);
  10851. if (getsockname(svr_sock_, reinterpret_cast<struct sockaddr *>(&addr),
  10852. &addr_len) == -1) {
  10853. output_error_log(Error::GetSockName, nullptr);
  10854. return -1;
  10855. }
  10856. if (addr.ss_family == AF_INET) {
  10857. return ntohs(reinterpret_cast<struct sockaddr_in *>(&addr)->sin_port);
  10858. } else if (addr.ss_family == AF_INET6) {
  10859. return ntohs(reinterpret_cast<struct sockaddr_in6 *>(&addr)->sin6_port);
  10860. } else {
  10861. output_error_log(Error::UnsupportedAddressFamily, nullptr);
  10862. return -1;
  10863. }
  10864. } else {
  10865. return port;
  10866. }
  10867. }
  10868. inline bool Server::listen_internal() {
  10869. // A stop() between bind and listen leaves nothing to accept on. Report
  10870. // failure instead of returning success without ever serving, and mark the
  10871. // server decommissioned the way any failed listen does so that a concurrent
  10872. // wait_until_ready() wakes up instead of spinning forever.
  10873. if (is_decommissioned || svr_sock_ == INVALID_SOCKET) {
  10874. is_decommissioned = true;
  10875. return false;
  10876. }
  10877. auto ret = true;
  10878. is_running_ = true;
  10879. auto se = detail::scope_exit([&]() { is_running_ = false; });
  10880. if (start_handler_) { start_handler_(); }
  10881. {
  10882. std::unique_ptr<TaskQueue> task_queue(new_task_queue());
  10883. while (svr_sock_ != INVALID_SOCKET) {
  10884. #ifndef _WIN32
  10885. if (idle_interval_sec_ > 0 || idle_interval_usec_ > 0) {
  10886. #endif
  10887. auto val = detail::select_read(svr_sock_, idle_interval_sec_,
  10888. idle_interval_usec_);
  10889. if (val == 0) { // Timeout
  10890. task_queue->on_idle();
  10891. continue;
  10892. }
  10893. #ifndef _WIN32
  10894. }
  10895. #endif
  10896. #if defined _WIN32
  10897. // sockets connected via WASAccept inherit flags NO_HANDLE_INHERIT,
  10898. // OVERLAPPED
  10899. socket_t sock = WSAAccept(svr_sock_, nullptr, nullptr, nullptr, 0);
  10900. #elif defined SOCK_CLOEXEC
  10901. socket_t sock = accept4(svr_sock_, nullptr, nullptr, SOCK_CLOEXEC);
  10902. #else
  10903. socket_t sock = accept(svr_sock_, nullptr, nullptr);
  10904. #endif
  10905. if (sock == INVALID_SOCKET) {
  10906. if (errno == EMFILE) {
  10907. // The per-process limit of open file descriptors has been reached.
  10908. // Try to accept new connections after a short sleep.
  10909. std::this_thread::sleep_for(std::chrono::microseconds{1});
  10910. continue;
  10911. } else if (errno == EINTR || errno == EAGAIN) {
  10912. continue;
  10913. }
  10914. if (svr_sock_ != INVALID_SOCKET) {
  10915. detail::close_socket(svr_sock_);
  10916. ret = false;
  10917. output_error_log(Error::Connection, nullptr);
  10918. } else {
  10919. ; // The server socket was closed by user.
  10920. }
  10921. break;
  10922. }
  10923. detail::set_socket_opt_time(sock, SOL_SOCKET, SO_RCVTIMEO,
  10924. read_timeout_sec_, read_timeout_usec_);
  10925. detail::set_socket_opt_time(sock, SOL_SOCKET, SO_SNDTIMEO,
  10926. write_timeout_sec_, write_timeout_usec_);
  10927. if (tcp_nodelay_) { set_socket_opt(sock, IPPROTO_TCP, TCP_NODELAY, 1); }
  10928. if (!task_queue->enqueue(
  10929. [this, sock]() { process_and_close_socket(sock); })) {
  10930. output_error_log(Error::ResourceExhaustion, nullptr);
  10931. detail::shutdown_socket(sock);
  10932. detail::close_socket(sock);
  10933. }
  10934. }
  10935. task_queue->shutdown();
  10936. }
  10937. is_decommissioned = !ret;
  10938. return ret;
  10939. }
  10940. inline bool Server::routing(Request &req, Response &res, Stream &strm) {
  10941. if (pre_routing_handler_ &&
  10942. pre_routing_handler_(req, res) == HandlerResponse::Handled) {
  10943. return true;
  10944. }
  10945. // File handler
  10946. if ((req.method == "GET" || req.method == "HEAD") &&
  10947. handle_file_request(req, res)) {
  10948. return true;
  10949. }
  10950. if (detail::expect_content(req)) {
  10951. // Content reader handler
  10952. {
  10953. // Track whether the ContentReader was aborted due to the decompressed
  10954. // payload exceeding `payload_max_length_`.
  10955. // The user handler runs after the lambda returns, so we must restore the
  10956. // 413 status if the handler overwrites it.
  10957. bool content_reader_payload_too_large = false;
  10958. ContentReader reader(
  10959. [&](ContentReceiver receiver) {
  10960. auto result = read_content_with_content_receiver(
  10961. strm, req, res, std::move(receiver), nullptr, nullptr);
  10962. if (!result) {
  10963. output_error_log(Error::Read, &req);
  10964. if (res.status == StatusCode::PayloadTooLarge_413) {
  10965. content_reader_payload_too_large = true;
  10966. }
  10967. }
  10968. return result;
  10969. },
  10970. [&](FormDataHeader header, ContentReceiver receiver) {
  10971. auto result = read_content_with_content_receiver(
  10972. strm, req, res, nullptr, std::move(header),
  10973. std::move(receiver));
  10974. if (!result) {
  10975. output_error_log(Error::Read, &req);
  10976. if (res.status == StatusCode::PayloadTooLarge_413) {
  10977. content_reader_payload_too_large = true;
  10978. }
  10979. }
  10980. return result;
  10981. });
  10982. bool dispatched = false;
  10983. if (req.method == "POST") {
  10984. dispatched = dispatch_request_for_content_reader(
  10985. req, res, std::move(reader), post_handlers_for_content_reader_);
  10986. } else if (req.method == "PUT") {
  10987. dispatched = dispatch_request_for_content_reader(
  10988. req, res, std::move(reader), put_handlers_for_content_reader_);
  10989. } else if (req.method == "PATCH") {
  10990. dispatched = dispatch_request_for_content_reader(
  10991. req, res, std::move(reader), patch_handlers_for_content_reader_);
  10992. } else if (req.method == "DELETE") {
  10993. dispatched = dispatch_request_for_content_reader(
  10994. req, res, std::move(reader), delete_handlers_for_content_reader_);
  10995. }
  10996. if (dispatched) {
  10997. if (content_reader_payload_too_large) {
  10998. // Enforce the limit: override any status the handler may have set
  10999. // and return false so the error path sends a plain 413 response.
  11000. res.status = StatusCode::PayloadTooLarge_413;
  11001. res.body.clear();
  11002. res.content_length_ = 0;
  11003. res.content_provider_ = nullptr;
  11004. return false;
  11005. }
  11006. return true;
  11007. }
  11008. }
  11009. // NOTE: `req.body` is not read here. For a regular handler the body is
  11010. // read inside dispatch_request(), after the route has matched and the
  11011. // pre-request handler has approved the request, so that a rejected
  11012. // request (e.g. failed authentication) never forces us to buffer a
  11013. // potentially large body.
  11014. }
  11015. // Regular handler
  11016. if (req.method == "GET" || req.method == "HEAD") {
  11017. return dispatch_request(req, res, get_handlers_, strm);
  11018. } else if (req.method == "POST") {
  11019. return dispatch_request(req, res, post_handlers_, strm);
  11020. } else if (req.method == "PUT") {
  11021. return dispatch_request(req, res, put_handlers_, strm);
  11022. } else if (req.method == "DELETE") {
  11023. return dispatch_request(req, res, delete_handlers_, strm);
  11024. } else if (req.method == "OPTIONS") {
  11025. return dispatch_request(req, res, options_handlers_, strm);
  11026. } else if (req.method == "PATCH") {
  11027. return dispatch_request(req, res, patch_handlers_, strm);
  11028. }
  11029. res.status = StatusCode::BadRequest_400;
  11030. return false;
  11031. }
  11032. inline bool Server::dispatch_request(Request &req, Response &res,
  11033. const Handlers &handlers, Stream &strm) {
  11034. for (const auto &x : handlers) {
  11035. const auto &matcher = x.first;
  11036. const auto &handler = x.second;
  11037. if (matcher->match(req)) {
  11038. req.matched_route = matcher->pattern();
  11039. // Run the pre-request handler before reading the body so a rejected
  11040. // request (e.g. failed authentication) never forces us to buffer a
  11041. // potentially large body. `req.matched_route` is available here.
  11042. if (pre_request_handler_ &&
  11043. pre_request_handler_(req, res) == HandlerResponse::Handled) {
  11044. return true;
  11045. }
  11046. // The route matched and the request was approved; read the body now.
  11047. if (detail::expect_content(req) && !read_content(strm, req, res)) {
  11048. output_error_log(Error::Read, &req);
  11049. return false;
  11050. }
  11051. handler(req, res);
  11052. return true;
  11053. }
  11054. }
  11055. return false;
  11056. }
  11057. inline void Server::apply_ranges(const Request &req, Response &res,
  11058. std::string &content_type,
  11059. std::string &boundary) const {
  11060. if (req.ranges.size() > 1 && res.status == StatusCode::PartialContent_206) {
  11061. auto it = res.headers.find("Content-Type");
  11062. if (it != res.headers.end()) {
  11063. content_type = it->second;
  11064. res.headers.erase(it);
  11065. }
  11066. boundary = detail::make_multipart_data_boundary();
  11067. res.set_header("Content-Type",
  11068. "multipart/byteranges; boundary=" + boundary);
  11069. }
  11070. auto type = detail::encoding_type(req, res);
  11071. if (res.body.empty()) {
  11072. if (res.content_length_ > 0) {
  11073. size_t length = 0;
  11074. if (req.ranges.empty() || res.status != StatusCode::PartialContent_206) {
  11075. length = res.content_length_;
  11076. } else if (req.ranges.size() == 1) {
  11077. auto offset_and_length = detail::get_range_offset_and_length(
  11078. req.ranges[0], res.content_length_);
  11079. length = offset_and_length.second;
  11080. auto content_range = detail::make_content_range_header_field(
  11081. offset_and_length, res.content_length_);
  11082. res.set_header("Content-Range", content_range);
  11083. } else {
  11084. length = detail::get_multipart_ranges_data_length(
  11085. req, boundary, content_type, res.content_length_);
  11086. }
  11087. res.set_header("Content-Length", std::to_string(length));
  11088. } else {
  11089. if (res.content_provider_) {
  11090. if (res.is_chunked_content_provider_) {
  11091. res.set_header("Transfer-Encoding", "chunked");
  11092. if (type != detail::EncodingType::None) {
  11093. res.set_header("Content-Encoding", detail::encoding_name(type));
  11094. res.set_header("Vary", "Accept-Encoding");
  11095. }
  11096. }
  11097. }
  11098. }
  11099. } else {
  11100. if (req.ranges.empty() || res.status != StatusCode::PartialContent_206) {
  11101. ;
  11102. } else if (req.ranges.size() == 1) {
  11103. auto offset_and_length =
  11104. detail::get_range_offset_and_length(req.ranges[0], res.body.size());
  11105. auto offset = offset_and_length.first;
  11106. auto length = offset_and_length.second;
  11107. auto content_range = detail::make_content_range_header_field(
  11108. offset_and_length, res.body.size());
  11109. res.set_header("Content-Range", content_range);
  11110. assert(offset + length <= res.body.size());
  11111. res.body = res.body.substr(offset, length);
  11112. } else {
  11113. std::string data;
  11114. detail::make_multipart_ranges_data(req, res, boundary, content_type,
  11115. res.body.size(), data);
  11116. res.body.swap(data);
  11117. }
  11118. if (type != detail::EncodingType::None) {
  11119. output_pre_compression_log(req, res);
  11120. if (auto compressor = detail::make_compressor(type)) {
  11121. std::string compressed;
  11122. if (compressor->compress(res.body.data(), res.body.size(), true,
  11123. [&](const char *data, size_t data_len) {
  11124. compressed.append(data, data_len);
  11125. return true;
  11126. })) {
  11127. res.body.swap(compressed);
  11128. res.set_header("Content-Encoding", detail::encoding_name(type));
  11129. res.set_header("Vary", "Accept-Encoding");
  11130. }
  11131. }
  11132. }
  11133. res.content_length_ = res.body.size();
  11134. res.set_header("Content-Length", std::to_string(res.content_length_));
  11135. }
  11136. }
  11137. inline bool Server::dispatch_request_for_content_reader(
  11138. Request &req, Response &res, ContentReader content_reader,
  11139. const HandlersForContentReader &handlers) const {
  11140. for (const auto &x : handlers) {
  11141. const auto &matcher = x.first;
  11142. const auto &handler = x.second;
  11143. if (matcher->match(req)) {
  11144. req.matched_route = matcher->pattern();
  11145. if (!pre_request_handler_ ||
  11146. pre_request_handler_(req, res) != HandlerResponse::Handled) {
  11147. handler(req, res, content_reader);
  11148. }
  11149. return true;
  11150. }
  11151. }
  11152. return false;
  11153. }
  11154. inline std::string
  11155. get_client_ip(const std::string &x_forwarded_for,
  11156. const std::vector<std::string> &trusted_proxies) {
  11157. // X-Forwarded-For is a comma-separated list per RFC 7239
  11158. std::vector<std::string> ip_list;
  11159. detail::split(x_forwarded_for.data(),
  11160. x_forwarded_for.data() + x_forwarded_for.size(), ',',
  11161. [&](const char *b, const char *e) {
  11162. auto r = detail::trim(b, e, 0, static_cast<size_t>(e - b));
  11163. ip_list.emplace_back(std::string(b + r.first, b + r.second));
  11164. });
  11165. // A malformed X-Forwarded-For (empty, comma-only, whitespace-only) yields
  11166. // no segments. Signal "no client IP derived" with an empty string so the
  11167. // caller can fall back to the connection-level remote address.
  11168. if (ip_list.empty()) { return std::string(); }
  11169. // Each hop appends the address it received the request from, so the rightmost
  11170. // entries are the ones written by our own infrastructure while the leftmost
  11171. // are whatever the original client chose to send. Walk from the right and
  11172. // skip trusted proxies; the first address that is not a trusted proxy is the
  11173. // furthest point still attributable to a real hop, i.e. the client. Scanning
  11174. // from the left instead lets a client forge an arbitrary address by following
  11175. // it with a trusted proxy's address, which the left-to-right scan then
  11176. // returned as the client.
  11177. for (size_t i = ip_list.size(); i-- > 0;) {
  11178. const auto &ip = ip_list[i];
  11179. auto is_trusted_proxy =
  11180. std::any_of(trusted_proxies.begin(), trusted_proxies.end(),
  11181. [&](const std::string &proxy) { return ip == proxy; });
  11182. if (!is_trusted_proxy) { return ip; }
  11183. }
  11184. // Every hop was a trusted proxy; fall back to the first entry.
  11185. return ip_list.front();
  11186. }
  11187. inline bool
  11188. Server::process_request(Stream &strm, const std::string &remote_addr,
  11189. int remote_port, const std::string &local_addr,
  11190. int local_port, bool close_connection,
  11191. bool &connection_closed,
  11192. const std::function<void(Request &)> &setup_request,
  11193. bool *websocket_upgraded) {
  11194. std::array<char, 2048> buf{};
  11195. detail::stream_line_reader line_reader(strm, buf.data(), buf.size());
  11196. // Connection has been closed on client
  11197. if (!line_reader.getline()) { return false; }
  11198. Request req;
  11199. req.start_time_ = std::chrono::steady_clock::now();
  11200. req.remote_addr = remote_addr;
  11201. req.remote_port = remote_port;
  11202. req.local_addr = local_addr;
  11203. req.local_port = local_port;
  11204. Response res;
  11205. res.version = "HTTP/1.1";
  11206. res.headers = default_headers_;
  11207. // Request line and headers
  11208. if (!parse_request_line(line_reader.ptr(), req)) {
  11209. res.status = StatusCode::BadRequest_400;
  11210. output_error_log(Error::InvalidRequestLine, &req);
  11211. return write_response(strm, close_connection, req, res);
  11212. }
  11213. // Request headers
  11214. if (!detail::read_headers(strm, req.headers)) {
  11215. res.status = StatusCode::BadRequest_400;
  11216. output_error_log(Error::InvalidHeaders, &req);
  11217. return write_response(strm, close_connection, req, res);
  11218. }
  11219. // RFC 9112 §6.3: Reject requests whose framing is ambiguous, which would
  11220. // otherwise let an intermediary and this parser disagree on where the body
  11221. // ends and enable request smuggling. Two cases: a non-zero Content-Length
  11222. // alongside any Transfer-Encoding (Content-Length: 0 is tolerated for
  11223. // compatibility with existing clients), and a Transfer-Encoding whose final
  11224. // coding is not chunked, which leaves the body length undeterminable. The
  11225. // latter must not fall through to the "no body" path, or the body bytes are
  11226. // parsed as the next request on a persistent connection.
  11227. if (req.has_header("Transfer-Encoding") &&
  11228. (req.get_header_value_u64("Content-Length") > 0 ||
  11229. !detail::is_chunked_transfer_encoding(req.headers))) {
  11230. connection_closed = true;
  11231. res.status = StatusCode::BadRequest_400;
  11232. return write_response(strm, close_connection, req, res);
  11233. }
  11234. // Check if the request URI doesn't exceed the limit
  11235. if (req.target.size() > CPPHTTPLIB_REQUEST_URI_MAX_LENGTH) {
  11236. connection_closed = true;
  11237. res.status = StatusCode::UriTooLong_414;
  11238. output_error_log(Error::ExceedUriMaxLength, &req);
  11239. return write_response(strm, close_connection, req, res);
  11240. }
  11241. if (req.get_header_value("Connection") == "close") {
  11242. connection_closed = true;
  11243. }
  11244. if (req.version == "HTTP/1.0" &&
  11245. req.get_header_value("Connection") != "Keep-Alive") {
  11246. connection_closed = true;
  11247. }
  11248. // Only honor X-Forwarded-For if the peer on the actual TCP connection is
  11249. // itself a trusted proxy. Otherwise any direct client could spoof
  11250. // remote_addr simply by sending an arbitrary X-Forwarded-For header.
  11251. auto is_trusted_peer = std::any_of(
  11252. trusted_proxies_.begin(), trusted_proxies_.end(),
  11253. [&](const std::string &proxy) { return proxy == remote_addr; });
  11254. if (is_trusted_peer && req.has_header("X-Forwarded-For")) {
  11255. auto x_forwarded_for = req.get_header_value("X-Forwarded-For");
  11256. auto derived = get_client_ip(x_forwarded_for, trusted_proxies_);
  11257. req.remote_addr = derived.empty() ? remote_addr : derived;
  11258. } else {
  11259. req.remote_addr = remote_addr;
  11260. }
  11261. req.remote_port = remote_port;
  11262. req.local_addr = local_addr;
  11263. req.local_port = local_port;
  11264. if (req.has_header("Accept")) {
  11265. const auto &accept_header = req.get_header_value("Accept");
  11266. if (!detail::parse_accept_header(accept_header, req.accept_content_types)) {
  11267. connection_closed = true;
  11268. res.status = StatusCode::BadRequest_400;
  11269. output_error_log(Error::HTTPParsing, &req);
  11270. return write_response(strm, close_connection, req, res);
  11271. }
  11272. }
  11273. if (req.has_header("Range")) {
  11274. const auto &range_header_value = req.get_header_value("Range");
  11275. if (!detail::parse_range_header(range_header_value, req.ranges)) {
  11276. connection_closed = true;
  11277. res.status = StatusCode::RangeNotSatisfiable_416;
  11278. output_error_log(Error::InvalidRangeHeader, &req);
  11279. return write_response(strm, close_connection, req, res);
  11280. }
  11281. }
  11282. if (setup_request) { setup_request(req); }
  11283. if (req.get_header_value("Expect") == "100-continue") {
  11284. int status = StatusCode::Continue_100;
  11285. if (expect_100_continue_handler_) {
  11286. status = expect_100_continue_handler_(req, res);
  11287. }
  11288. switch (status) {
  11289. case StatusCode::Continue_100:
  11290. case StatusCode::ExpectationFailed_417:
  11291. detail::write_response_line(strm, status);
  11292. strm.write("\r\n");
  11293. break;
  11294. default:
  11295. connection_closed = true;
  11296. return write_response(strm, true, req, res);
  11297. }
  11298. }
  11299. // Setup `is_connection_closed` method
  11300. auto sock = strm.socket();
  11301. req.is_connection_closed = [sock]() {
  11302. return !detail::is_socket_alive(sock);
  11303. };
  11304. // WebSocket upgrade
  11305. // Check pre_routing_handler_ before upgrading so that authentication
  11306. // and other middleware can reject the request with an HTTP response
  11307. // (e.g., 401) before the protocol switches.
  11308. if (detail::is_websocket_upgrade(req)) {
  11309. if (pre_routing_handler_ &&
  11310. pre_routing_handler_(req, res) == HandlerResponse::Handled) {
  11311. if (res.status == -1) { res.status = StatusCode::OK_200; }
  11312. return write_response(strm, close_connection, req, res);
  11313. }
  11314. // Find matching WebSocket handler
  11315. for (const auto &entry : websocket_handlers_) {
  11316. if (entry.matcher->match(req)) {
  11317. // Compute accept key
  11318. auto client_key = req.get_header_value("Sec-WebSocket-Key");
  11319. auto accept_key = detail::websocket_accept_key(client_key);
  11320. // Negotiate subprotocol
  11321. std::string selected_subprotocol;
  11322. if (entry.sub_protocol_selector) {
  11323. auto protocol_header = req.get_header_value("Sec-WebSocket-Protocol");
  11324. if (!protocol_header.empty()) {
  11325. std::vector<std::string> protocols;
  11326. std::istringstream iss(protocol_header);
  11327. std::string token;
  11328. while (std::getline(iss, token, ',')) {
  11329. // Trim whitespace
  11330. auto start = token.find_first_not_of(' ');
  11331. auto end = token.find_last_not_of(' ');
  11332. if (start != std::string::npos) {
  11333. protocols.push_back(token.substr(start, end - start + 1));
  11334. }
  11335. }
  11336. selected_subprotocol = entry.sub_protocol_selector(protocols);
  11337. }
  11338. }
  11339. // Send 101 Switching Protocols
  11340. std::string handshake_response = "HTTP/1.1 101 Switching Protocols\r\n"
  11341. "Upgrade: websocket\r\n"
  11342. "Connection: Upgrade\r\n"
  11343. "Sec-WebSocket-Accept: " +
  11344. accept_key + "\r\n";
  11345. if (!selected_subprotocol.empty()) {
  11346. if (!detail::fields::is_field_value(selected_subprotocol)) {
  11347. return false;
  11348. }
  11349. handshake_response +=
  11350. "Sec-WebSocket-Protocol: " + selected_subprotocol + "\r\n";
  11351. }
  11352. handshake_response += "\r\n";
  11353. if (strm.write(handshake_response.data(), handshake_response.size()) <
  11354. 0) {
  11355. return false;
  11356. }
  11357. connection_closed = true;
  11358. if (websocket_upgraded) { *websocket_upgraded = true; }
  11359. {
  11360. // Use WebSocket-specific read timeout instead of HTTP timeout
  11361. strm.set_read_timeout(CPPHTTPLIB_WEBSOCKET_READ_TIMEOUT_SECOND, 0);
  11362. ws::WebSocket ws(strm, req, true, websocket_ping_interval_sec_,
  11363. websocket_max_missed_pongs_);
  11364. entry.handler(req, ws);
  11365. }
  11366. return true;
  11367. }
  11368. }
  11369. // No matching handler - fall through to 404
  11370. }
  11371. // Routing
  11372. auto routed = false;
  11373. #ifdef CPPHTTPLIB_NO_EXCEPTIONS
  11374. routed = routing(req, res, strm);
  11375. #else
  11376. try {
  11377. routed = routing(req, res, strm);
  11378. } catch (std::exception &) {
  11379. if (exception_handler_) {
  11380. auto ep = std::current_exception();
  11381. exception_handler_(req, res, ep);
  11382. routed = true;
  11383. } else {
  11384. res.status = StatusCode::InternalServerError_500;
  11385. }
  11386. } catch (...) {
  11387. if (exception_handler_) {
  11388. auto ep = std::current_exception();
  11389. exception_handler_(req, res, ep);
  11390. routed = true;
  11391. } else {
  11392. res.status = StatusCode::InternalServerError_500;
  11393. }
  11394. }
  11395. #endif
  11396. auto ret = false;
  11397. if (routed) {
  11398. if (res.status == -1) {
  11399. res.status = req.ranges.empty() ? StatusCode::OK_200
  11400. : StatusCode::PartialContent_206;
  11401. }
  11402. // Serve file content by using a content provider
  11403. auto file_open_error = false;
  11404. if (!res.file_content_path_.empty()) {
  11405. const auto &path = res.file_content_path_;
  11406. auto mm = std::make_shared<detail::mmap>(path.c_str());
  11407. if (!mm->is_open()) {
  11408. res.body.clear();
  11409. res.content_length_ = 0;
  11410. res.content_provider_ = nullptr;
  11411. res.status = StatusCode::NotFound_404;
  11412. output_error_log(Error::OpenFile, &req);
  11413. file_open_error = true;
  11414. } else {
  11415. auto content_type = res.file_content_content_type_;
  11416. if (content_type.empty()) {
  11417. content_type = detail::find_content_type(
  11418. path, file_extension_and_mimetype_map_, default_file_mimetype_);
  11419. }
  11420. res.set_content_provider(
  11421. mm->size(), content_type,
  11422. [mm](size_t offset, size_t length, DataSink &sink) -> bool {
  11423. sink.write(mm->data() + offset, length);
  11424. return true;
  11425. });
  11426. }
  11427. }
  11428. if (file_open_error) {
  11429. ret = write_response(strm, close_connection, req, res);
  11430. } else if (detail::range_error(req, res)) {
  11431. res.body.clear();
  11432. res.content_length_ = 0;
  11433. res.content_provider_ = nullptr;
  11434. res.status = StatusCode::RangeNotSatisfiable_416;
  11435. ret = write_response(strm, close_connection, req, res);
  11436. } else {
  11437. ret = write_response_with_content(strm, close_connection, req, res);
  11438. }
  11439. } else {
  11440. if (res.status == -1) { res.status = StatusCode::NotFound_404; }
  11441. ret = write_response(strm, close_connection, req, res);
  11442. }
  11443. // Drain any unconsumed framed body to prevent request smuggling on
  11444. // keep-alive. Without framing there is no body to drain — reading would
  11445. // consume the next request (issue #2450). If the response has committed the
  11446. // connection to close, there is no next request to protect.
  11447. if (!req.body_consumed_ && detail::has_framed_body(req)) {
  11448. if (res.get_header_value("Connection") == "close") {
  11449. connection_closed = true;
  11450. } else {
  11451. int dummy_status;
  11452. if (!detail::read_content(
  11453. strm, req, payload_max_length_, dummy_status, nullptr,
  11454. [](const char *, size_t, size_t, size_t) { return true; },
  11455. false)) {
  11456. connection_closed = true;
  11457. }
  11458. }
  11459. }
  11460. return ret;
  11461. }
  11462. inline bool Server::is_valid() const { return true; }
  11463. inline bool Server::process_and_close_socket(socket_t sock) {
  11464. std::string remote_addr;
  11465. int remote_port = 0;
  11466. detail::get_remote_ip_and_port(sock, remote_addr, remote_port);
  11467. std::string local_addr;
  11468. int local_port = 0;
  11469. detail::get_local_ip_and_port(sock, local_addr, local_port);
  11470. bool websocket_upgraded = false;
  11471. auto ret = detail::process_server_socket(
  11472. svr_sock_, sock, keep_alive_max_count_, keep_alive_timeout_sec_,
  11473. read_timeout_sec_, read_timeout_usec_, write_timeout_sec_,
  11474. write_timeout_usec_,
  11475. [&](Stream &strm, bool close_connection, bool &connection_closed) {
  11476. return process_request(strm, remote_addr, remote_port, local_addr,
  11477. local_port, close_connection, connection_closed,
  11478. nullptr, &websocket_upgraded);
  11479. });
  11480. detail::shutdown_socket(sock);
  11481. detail::close_socket(sock);
  11482. return ret;
  11483. }
  11484. inline void Server::output_log(const Request &req, const Response &res) const {
  11485. if (logger_) {
  11486. std::lock_guard<std::mutex> guard(logger_mutex_);
  11487. logger_(req, res);
  11488. }
  11489. }
  11490. inline void Server::output_pre_compression_log(const Request &req,
  11491. const Response &res) const {
  11492. if (pre_compression_logger_) {
  11493. std::lock_guard<std::mutex> guard(logger_mutex_);
  11494. pre_compression_logger_(req, res);
  11495. }
  11496. }
  11497. inline void Server::output_error_log(const Error &err,
  11498. const Request *req) const {
  11499. if (error_logger_) {
  11500. std::lock_guard<std::mutex> guard(logger_mutex_);
  11501. error_logger_(err, req);
  11502. }
  11503. }
  11504. /*
  11505. * Group 5: ClientImpl and Client (Universal) implementation
  11506. */
  11507. // HTTP client implementation
  11508. inline ClientImpl::ClientImpl(const std::string &host)
  11509. : ClientImpl(host, 80, std::string(), std::string()) {}
  11510. inline ClientImpl::ClientImpl(const std::string &host, int port)
  11511. : ClientImpl(host, port, std::string(), std::string()) {}
  11512. inline ClientImpl::ClientImpl(const std::string &host, int port,
  11513. const std::string &client_cert_path,
  11514. const std::string &client_key_path)
  11515. : host_(detail::escape_abstract_namespace_unix_domain(host)), port_(port),
  11516. client_cert_path_(client_cert_path), client_key_path_(client_key_path) {}
  11517. inline ClientImpl::~ClientImpl() {
  11518. // Wait until all the requests in flight are handled.
  11519. size_t retry_count = 10;
  11520. while (retry_count-- > 0) {
  11521. {
  11522. std::lock_guard<std::mutex> guard(socket_mutex_);
  11523. if (socket_requests_in_flight_ == 0) { break; }
  11524. }
  11525. std::this_thread::sleep_for(std::chrono::milliseconds{1});
  11526. }
  11527. std::lock_guard<std::mutex> guard(socket_mutex_);
  11528. shutdown_socket(socket_);
  11529. close_socket(socket_);
  11530. }
  11531. inline bool ClientImpl::is_valid() const { return true; }
  11532. inline void ClientImpl::copy_settings(const ClientImpl &rhs) {
  11533. client_cert_path_ = rhs.client_cert_path_;
  11534. client_key_path_ = rhs.client_key_path_;
  11535. connection_timeout_sec_ = rhs.connection_timeout_sec_;
  11536. read_timeout_sec_ = rhs.read_timeout_sec_;
  11537. read_timeout_usec_ = rhs.read_timeout_usec_;
  11538. write_timeout_sec_ = rhs.write_timeout_sec_;
  11539. write_timeout_usec_ = rhs.write_timeout_usec_;
  11540. max_timeout_msec_ = rhs.max_timeout_msec_;
  11541. basic_auth_username_ = rhs.basic_auth_username_;
  11542. basic_auth_password_ = rhs.basic_auth_password_;
  11543. bearer_token_auth_token_ = rhs.bearer_token_auth_token_;
  11544. keep_alive_ = rhs.keep_alive_;
  11545. follow_location_ = rhs.follow_location_;
  11546. path_encode_ = rhs.path_encode_;
  11547. address_family_ = rhs.address_family_;
  11548. tcp_nodelay_ = rhs.tcp_nodelay_;
  11549. ipv6_v6only_ = rhs.ipv6_v6only_;
  11550. socket_options_ = rhs.socket_options_;
  11551. compress_ = rhs.compress_;
  11552. decompress_ = rhs.decompress_;
  11553. payload_max_length_ = rhs.payload_max_length_;
  11554. has_payload_max_length_ = rhs.has_payload_max_length_;
  11555. interface_ = rhs.interface_;
  11556. proxy_host_ = rhs.proxy_host_;
  11557. proxy_port_ = rhs.proxy_port_;
  11558. proxy_basic_auth_username_ = rhs.proxy_basic_auth_username_;
  11559. proxy_basic_auth_password_ = rhs.proxy_basic_auth_password_;
  11560. proxy_bearer_token_auth_token_ = rhs.proxy_bearer_token_auth_token_;
  11561. no_proxy_entries_ = rhs.no_proxy_entries_;
  11562. logger_ = rhs.logger_;
  11563. error_logger_ = rhs.error_logger_;
  11564. #ifdef CPPHTTPLIB_SSL_ENABLED
  11565. digest_auth_username_ = rhs.digest_auth_username_;
  11566. digest_auth_password_ = rhs.digest_auth_password_;
  11567. proxy_digest_auth_username_ = rhs.proxy_digest_auth_username_;
  11568. proxy_digest_auth_password_ = rhs.proxy_digest_auth_password_;
  11569. ca_cert_file_path_ = rhs.ca_cert_file_path_;
  11570. ca_cert_dir_path_ = rhs.ca_cert_dir_path_;
  11571. server_certificate_verification_ = rhs.server_certificate_verification_;
  11572. server_hostname_verification_ = rhs.server_hostname_verification_;
  11573. system_ca_mode_ = rhs.system_ca_mode_;
  11574. #endif
  11575. }
  11576. inline bool
  11577. ClientImpl::is_proxy_enabled_for_host(const std::string &host) const {
  11578. if (proxy_host_.empty() || proxy_port_ == -1) { return false; }
  11579. if (no_proxy_entries_.empty()) { return true; }
  11580. // host_ is const so its normalized form is invariant; cache it. The
  11581. // cross-host path (setup_redirect_client passing next_host) re-normalizes.
  11582. if (host == host_) {
  11583. if (!host_normalized_valid_) {
  11584. host_normalized_ = detail::normalize_target(host_);
  11585. host_normalized_valid_ = true;
  11586. }
  11587. return !detail::host_matches_no_proxy(host_normalized_, no_proxy_entries_);
  11588. }
  11589. auto target = detail::normalize_target(host);
  11590. return !detail::host_matches_no_proxy(target, no_proxy_entries_);
  11591. }
  11592. inline socket_t ClientImpl::create_client_socket(Error &error) const {
  11593. if (is_proxy_enabled_for_host(host_)) {
  11594. return detail::create_client_socket(
  11595. proxy_host_, std::string(), proxy_port_, address_family_, tcp_nodelay_,
  11596. ipv6_v6only_, socket_options_, connection_timeout_sec_,
  11597. connection_timeout_usec_, read_timeout_sec_, read_timeout_usec_,
  11598. write_timeout_sec_, write_timeout_usec_, interface_, error);
  11599. }
  11600. // Check is custom IP or hostname specified for host_
  11601. std::string connect_host;
  11602. std::string ip;
  11603. detail::apply_addr_map(addr_map_, host_, connect_host, ip);
  11604. return detail::create_client_socket(
  11605. connect_host, ip, port_, address_family_, tcp_nodelay_, ipv6_v6only_,
  11606. socket_options_, connection_timeout_sec_, connection_timeout_usec_,
  11607. read_timeout_sec_, read_timeout_usec_, write_timeout_sec_,
  11608. write_timeout_usec_, interface_, error);
  11609. }
  11610. inline bool ClientImpl::create_and_connect_socket(Socket &socket,
  11611. Error &error) {
  11612. auto sock = create_client_socket(error);
  11613. if (sock == INVALID_SOCKET) { return false; }
  11614. socket.sock = sock;
  11615. return true;
  11616. }
  11617. inline bool ClientImpl::ensure_socket_connection(Socket &socket, Error &error) {
  11618. return create_and_connect_socket(socket, error);
  11619. }
  11620. inline bool ClientImpl::setup_proxy_connection(
  11621. Socket & /*socket*/,
  11622. std::chrono::time_point<std::chrono::steady_clock> /*start_time*/,
  11623. Response & /*res*/, bool & /*success*/, Error & /*error*/) {
  11624. return true;
  11625. }
  11626. inline void ClientImpl::shutdown_ssl(Socket & /*socket*/,
  11627. bool /*shutdown_gracefully*/) {
  11628. // If there are any requests in flight from threads other than us, then it's
  11629. // a thread-unsafe race because individual ssl* objects are not thread-safe.
  11630. assert(socket_requests_in_flight_ == 0 ||
  11631. socket_requests_are_from_thread_ == std::this_thread::get_id());
  11632. }
  11633. inline void ClientImpl::shutdown_socket(Socket &socket) const {
  11634. if (socket.sock == INVALID_SOCKET) { return; }
  11635. detail::shutdown_socket(socket.sock);
  11636. }
  11637. inline void ClientImpl::close_socket(Socket &socket) {
  11638. // If there are requests in flight in another thread, usually closing
  11639. // the socket will be fine and they will simply receive an error when
  11640. // using the closed socket, but it is still a bug since rarely the OS
  11641. // may reassign the socket id to be used for a new socket, and then
  11642. // suddenly they will be operating on a live socket that is different
  11643. // than the one they intended!
  11644. assert(socket_requests_in_flight_ == 0 ||
  11645. socket_requests_are_from_thread_ == std::this_thread::get_id());
  11646. // It is also a bug if this happens while SSL is still active
  11647. #ifdef CPPHTTPLIB_SSL_ENABLED
  11648. assert(socket.ssl == nullptr);
  11649. #endif
  11650. if (socket.sock == INVALID_SOCKET) { return; }
  11651. detail::close_socket(socket.sock);
  11652. socket.sock = INVALID_SOCKET;
  11653. }
  11654. inline void ClientImpl::disconnect(bool gracefully) {
  11655. shutdown_ssl(socket_, gracefully);
  11656. shutdown_socket(socket_);
  11657. close_socket(socket_);
  11658. }
  11659. inline bool ClientImpl::read_response_line(Stream &strm, const Request &req,
  11660. Response &res,
  11661. bool skip_100_continue) const {
  11662. std::array<char, 2048> buf{};
  11663. detail::stream_line_reader line_reader(strm, buf.data(), buf.size());
  11664. if (!line_reader.getline()) { return false; }
  11665. if (!detail::parse_status_line(line_reader.ptr(), res.version, res.status,
  11666. res.reason)) {
  11667. return req.method == "CONNECT";
  11668. }
  11669. // Ignore '100 Continue' (only when not using Expect: 100-continue explicitly)
  11670. while (skip_100_continue && res.status == StatusCode::Continue_100) {
  11671. if (!line_reader.getline()) { return false; } // CRLF
  11672. if (!line_reader.getline()) { return false; } // next response line
  11673. if (!detail::parse_status_line(line_reader.ptr(), res.version, res.status,
  11674. res.reason)) {
  11675. return false;
  11676. }
  11677. }
  11678. return true;
  11679. }
  11680. inline bool ClientImpl::send(Request &req, Response &res, Error &error) {
  11681. std::lock_guard<std::recursive_mutex> request_mutex_guard(request_mutex_);
  11682. auto ret = send_(req, res, error);
  11683. if (error == Error::SSLPeerCouldBeClosed_) {
  11684. assert(!ret);
  11685. ret = send_(req, res, error);
  11686. // If still failing with SSLPeerCouldBeClosed_, convert to Read error
  11687. if (error == Error::SSLPeerCouldBeClosed_) { error = Error::Read; }
  11688. }
  11689. return ret;
  11690. }
  11691. inline bool ClientImpl::send_(Request &req, Response &res, Error &error) {
  11692. {
  11693. std::lock_guard<std::mutex> guard(socket_mutex_);
  11694. // Set this to false immediately - if it ever gets set to true by the end
  11695. // of the request, we know another thread instructed us to close the
  11696. // socket.
  11697. socket_should_be_closed_when_request_is_done_ = false;
  11698. auto is_alive = false;
  11699. if (socket_.is_open()) {
  11700. is_alive = detail::is_socket_alive(socket_.sock);
  11701. #ifdef CPPHTTPLIB_SSL_ENABLED
  11702. if (is_alive && is_ssl()) {
  11703. if (tls::is_peer_closed(socket_.ssl, socket_.sock)) {
  11704. is_alive = false;
  11705. }
  11706. }
  11707. #endif
  11708. if (!is_alive) {
  11709. // Peer seems gone — non-graceful shutdown to avoid SIGPIPE.
  11710. disconnect(/*gracefully=*/false);
  11711. }
  11712. }
  11713. if (!is_alive) {
  11714. if (!ensure_socket_connection(socket_, error)) {
  11715. output_error_log(error, &req);
  11716. return false;
  11717. }
  11718. {
  11719. auto success = true;
  11720. if (!setup_proxy_connection(socket_, req.start_time_, res, success,
  11721. error)) {
  11722. if (!success) { output_error_log(error, &req); }
  11723. return success;
  11724. }
  11725. }
  11726. }
  11727. // Mark the current socket as being in use so that it cannot be closed by
  11728. // anyone else while this request is ongoing, even though we will be
  11729. // releasing the mutex.
  11730. if (socket_requests_in_flight_ > 1) {
  11731. assert(socket_requests_are_from_thread_ == std::this_thread::get_id());
  11732. }
  11733. socket_requests_in_flight_ += 1;
  11734. socket_requests_are_from_thread_ = std::this_thread::get_id();
  11735. }
  11736. for (const auto &header : default_headers_) {
  11737. if (req.headers.find(header.first) == req.headers.end()) {
  11738. req.headers.insert(header);
  11739. }
  11740. }
  11741. auto ret = false;
  11742. auto close_connection = !keep_alive_;
  11743. auto se = detail::scope_exit([&]() {
  11744. // Briefly lock mutex in order to mark that a request is no longer ongoing
  11745. std::lock_guard<std::mutex> guard(socket_mutex_);
  11746. socket_requests_in_flight_ -= 1;
  11747. if (socket_requests_in_flight_ <= 0) {
  11748. assert(socket_requests_in_flight_ == 0);
  11749. socket_requests_are_from_thread_ = std::thread::id();
  11750. }
  11751. if (socket_should_be_closed_when_request_is_done_ || close_connection ||
  11752. !ret) {
  11753. disconnect(/*gracefully=*/true);
  11754. }
  11755. });
  11756. ret = process_socket(socket_, req.start_time_, [&](Stream &strm) {
  11757. return handle_request(strm, req, res, close_connection, error);
  11758. });
  11759. if (!ret) {
  11760. if (error == Error::Success) {
  11761. error = Error::Unknown;
  11762. output_error_log(error, &req);
  11763. }
  11764. }
  11765. return ret;
  11766. }
  11767. inline Result ClientImpl::send(const Request &req) {
  11768. auto req2 = req;
  11769. return send_(std::move(req2));
  11770. }
  11771. inline Result ClientImpl::send_(Request &&req) {
  11772. auto res = detail::make_unique<Response>();
  11773. auto error = Error::Success;
  11774. auto ret = send(req, *res, error);
  11775. #ifdef CPPHTTPLIB_SSL_ENABLED
  11776. return Result{ret ? std::move(res) : nullptr, error, std::move(req.headers),
  11777. last_ssl_error_, last_backend_error_};
  11778. #else
  11779. return Result{ret ? std::move(res) : nullptr, error, std::move(req.headers)};
  11780. #endif
  11781. }
  11782. inline void ClientImpl::prepare_default_headers(Request &r, bool for_stream,
  11783. const std::string &ct) {
  11784. (void)for_stream;
  11785. for (const auto &header : default_headers_) {
  11786. if (!r.has_header(header.first)) { r.headers.insert(header); }
  11787. }
  11788. // RFC 9110 5.3 recommends sending control data such as Host first, so
  11789. // prepend it rather than appending it after the caller's own fields.
  11790. if (!r.has_header("Host")) {
  11791. r.headers.emplace_front(
  11792. "Host", detail::make_default_host_header_value(host_, port_, is_ssl(),
  11793. address_family_));
  11794. }
  11795. if (!r.has_header("Accept")) { r.headers.emplace("Accept", "*/*"); }
  11796. if (!r.content_receiver) {
  11797. if (!r.has_header("Accept-Encoding")) {
  11798. std::string accept_encoding;
  11799. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  11800. accept_encoding = "br";
  11801. #endif
  11802. #ifdef CPPHTTPLIB_ZLIB_SUPPORT
  11803. if (!accept_encoding.empty()) { accept_encoding += ", "; }
  11804. accept_encoding += "gzip, deflate";
  11805. #endif
  11806. #ifdef CPPHTTPLIB_ZSTD_SUPPORT
  11807. if (!accept_encoding.empty()) { accept_encoding += ", "; }
  11808. accept_encoding += "zstd";
  11809. #endif
  11810. r.set_header("Accept-Encoding", accept_encoding);
  11811. }
  11812. detail::add_default_user_agent_header(r);
  11813. }
  11814. if (!r.body.empty()) {
  11815. if (!ct.empty() && !r.has_header("Content-Type")) {
  11816. r.headers.emplace("Content-Type", ct);
  11817. }
  11818. if (!r.has_header("Content-Length")) {
  11819. r.headers.emplace("Content-Length", std::to_string(r.body.size()));
  11820. }
  11821. }
  11822. }
  11823. inline ClientImpl::StreamHandle
  11824. ClientImpl::open_stream(const std::string &method, const std::string &path,
  11825. const Params &params, const Headers &headers,
  11826. const std::string &body,
  11827. const std::string &content_type) {
  11828. StreamHandle handle;
  11829. handle.response = detail::make_unique<Response>();
  11830. handle.error = Error::Success;
  11831. // Encode the target exactly like the buffered send path does, so that the
  11832. // same `path` produces the same request line through either API.
  11833. auto raw_query_path =
  11834. params.empty() ? path : append_query_params(path, params);
  11835. auto query_path = detail::encode_request_target(raw_query_path, path_encode_);
  11836. handle.connection_ = detail::make_unique<ClientConnection>();
  11837. {
  11838. std::lock_guard<std::mutex> guard(socket_mutex_);
  11839. auto is_alive = false;
  11840. if (socket_.is_open()) {
  11841. is_alive = detail::is_socket_alive(socket_.sock);
  11842. #ifdef CPPHTTPLIB_SSL_ENABLED
  11843. if (is_alive && is_ssl()) {
  11844. if (tls::is_peer_closed(socket_.ssl, socket_.sock)) {
  11845. is_alive = false;
  11846. }
  11847. }
  11848. #endif
  11849. if (!is_alive) { disconnect(/*gracefully=*/false); }
  11850. }
  11851. if (!is_alive) {
  11852. if (!ensure_socket_connection(socket_, handle.error)) {
  11853. handle.response.reset();
  11854. return handle;
  11855. }
  11856. {
  11857. auto success = true;
  11858. auto start_time = std::chrono::steady_clock::now();
  11859. if (!setup_proxy_connection(socket_, start_time, *handle.response,
  11860. success, handle.error)) {
  11861. if (!success) { handle.response.reset(); }
  11862. return handle;
  11863. }
  11864. }
  11865. }
  11866. transfer_socket_ownership_to_handle(handle);
  11867. }
  11868. #ifdef CPPHTTPLIB_SSL_ENABLED
  11869. if (is_ssl() && handle.connection_->session) {
  11870. handle.socket_stream_ = detail::make_unique<detail::SSLSocketStream>(
  11871. handle.connection_->sock, handle.connection_->session,
  11872. read_timeout_sec_, read_timeout_usec_, write_timeout_sec_,
  11873. write_timeout_usec_);
  11874. } else {
  11875. handle.socket_stream_ = detail::make_unique<detail::SocketStream>(
  11876. handle.connection_->sock, read_timeout_sec_, read_timeout_usec_,
  11877. write_timeout_sec_, write_timeout_usec_);
  11878. }
  11879. #else
  11880. handle.socket_stream_ = detail::make_unique<detail::SocketStream>(
  11881. handle.connection_->sock, read_timeout_sec_, read_timeout_usec_,
  11882. write_timeout_sec_, write_timeout_usec_);
  11883. #endif
  11884. handle.stream_ = handle.socket_stream_.get();
  11885. Request req;
  11886. req.method = method;
  11887. req.path = query_path;
  11888. req.headers = headers;
  11889. req.body = body;
  11890. prepare_default_headers(req, true, content_type);
  11891. auto &strm = *handle.stream_;
  11892. if (detail::write_request_line(strm, req.method, req.path) < 0) {
  11893. handle.error = Error::Write;
  11894. handle.response.reset();
  11895. return handle;
  11896. }
  11897. if (!detail::check_and_write_headers(strm, req.headers, header_writer_,
  11898. handle.error)) {
  11899. handle.response.reset();
  11900. return handle;
  11901. }
  11902. if (!body.empty()) {
  11903. if (strm.write(body.data(), body.size()) < 0) {
  11904. handle.error = Error::Write;
  11905. handle.response.reset();
  11906. return handle;
  11907. }
  11908. }
  11909. if (!read_response_line(strm, req, *handle.response) ||
  11910. !detail::read_headers(strm, handle.response->headers)) {
  11911. handle.error = Error::Read;
  11912. handle.response.reset();
  11913. return handle;
  11914. }
  11915. handle.body_reader_.stream = handle.stream_;
  11916. handle.body_reader_.payload_max_length = payload_max_length_;
  11917. if (handle.response->has_header("Content-Length")) {
  11918. bool is_invalid = false;
  11919. auto content_length = detail::get_header_value_u64(
  11920. handle.response->headers, "Content-Length", 0, 0, is_invalid);
  11921. if (is_invalid) {
  11922. handle.error = Error::Read;
  11923. handle.response.reset();
  11924. return handle;
  11925. }
  11926. handle.body_reader_.has_content_length = true;
  11927. handle.body_reader_.content_length = content_length;
  11928. }
  11929. handle.body_reader_.chunked =
  11930. detail::is_chunked_transfer_encoding(handle.response->headers);
  11931. auto content_encoding = handle.response->get_header_value("Content-Encoding");
  11932. if (!content_encoding.empty()) {
  11933. // Same policy as prepare_content_receiver(): reject a coding we know about
  11934. // but were not built with, pass an unrecognized one through as-is.
  11935. handle.decompressor_ = detail::create_decompressor(content_encoding);
  11936. if (!handle.decompressor_) {
  11937. if (detail::is_known_content_encoding(content_encoding)) {
  11938. handle.error = Error::UnsupportedContentEncoding;
  11939. handle.response.reset();
  11940. return handle;
  11941. }
  11942. } else if (!handle.decompressor_->is_valid()) {
  11943. handle.error = Error::Compression;
  11944. handle.response.reset();
  11945. return handle;
  11946. }
  11947. }
  11948. return handle;
  11949. }
  11950. inline ssize_t ClientImpl::StreamHandle::read(char *buf, size_t len) {
  11951. if (!is_valid() || !response) { return -1; }
  11952. if (decompressor_) { return read_with_decompression(buf, len); }
  11953. auto n = detail::read_body_content(stream_, body_reader_, buf, len);
  11954. if (n <= 0 && body_reader_.chunked && !trailers_parsed_ && stream_) {
  11955. trailers_parsed_ = true;
  11956. if (body_reader_.chunked_decoder) {
  11957. if (!body_reader_.chunked_decoder->parse_trailers_into(
  11958. response->trailers, response->headers)) {
  11959. return n;
  11960. }
  11961. } else {
  11962. detail::ChunkedDecoder dec(*stream_);
  11963. if (!dec.parse_trailers_into(response->trailers, response->headers)) {
  11964. return n;
  11965. }
  11966. }
  11967. }
  11968. return n;
  11969. }
  11970. inline ssize_t ClientImpl::StreamHandle::read_with_decompression(char *buf,
  11971. size_t len) {
  11972. if (decompress_offset_ < decompress_buffer_.size()) {
  11973. auto available = decompress_buffer_.size() - decompress_offset_;
  11974. auto to_copy = (std::min)(len, available);
  11975. std::memcpy(buf, decompress_buffer_.data() + decompress_offset_, to_copy);
  11976. decompress_offset_ += to_copy;
  11977. decompressed_bytes_read_ += to_copy;
  11978. return static_cast<ssize_t>(to_copy);
  11979. }
  11980. decompress_buffer_.clear();
  11981. decompress_offset_ = 0;
  11982. constexpr size_t kDecompressionBufferSize = 8192;
  11983. char compressed_buf[kDecompressionBufferSize];
  11984. while (true) {
  11985. auto n = detail::read_body_content(stream_, body_reader_, compressed_buf,
  11986. sizeof(compressed_buf));
  11987. if (n <= 0) { return n; }
  11988. bool decompress_ok = decompressor_->decompress(
  11989. compressed_buf, static_cast<size_t>(n),
  11990. [this](const char *data, size_t data_len) {
  11991. decompress_buffer_.append(data, data_len);
  11992. auto limit = body_reader_.payload_max_length;
  11993. if (decompressed_bytes_read_ + decompress_buffer_.size() > limit) {
  11994. return false;
  11995. }
  11996. return true;
  11997. });
  11998. if (!decompress_ok) {
  11999. body_reader_.last_error = Error::Read;
  12000. return -1;
  12001. }
  12002. if (!decompress_buffer_.empty()) { break; }
  12003. }
  12004. auto to_copy = (std::min)(len, decompress_buffer_.size());
  12005. std::memcpy(buf, decompress_buffer_.data(), to_copy);
  12006. decompress_offset_ = to_copy;
  12007. decompressed_bytes_read_ += to_copy;
  12008. return static_cast<ssize_t>(to_copy);
  12009. }
  12010. inline void ClientImpl::StreamHandle::parse_trailers_if_needed() {
  12011. if (!response || !stream_ || !body_reader_.chunked || trailers_parsed_) {
  12012. return;
  12013. }
  12014. trailers_parsed_ = true;
  12015. const auto bufsiz = 128;
  12016. char line_buf[bufsiz];
  12017. detail::stream_line_reader line_reader(*stream_, line_buf, bufsiz);
  12018. if (!line_reader.getline()) { return; }
  12019. if (!detail::parse_trailers(line_reader, response->trailers,
  12020. response->headers)) {
  12021. return;
  12022. }
  12023. }
  12024. namespace detail {
  12025. inline ChunkedDecoder::ChunkedDecoder(Stream &s) : strm(s) {}
  12026. inline ssize_t ChunkedDecoder::read_payload(char *buf, size_t len,
  12027. size_t &out_chunk_offset,
  12028. size_t &out_chunk_total) {
  12029. if (finished) { return 0; }
  12030. if (chunk_remaining == 0) {
  12031. stream_line_reader lr(strm, line_buf, sizeof(line_buf));
  12032. if (!lr.getline()) { return -1; }
  12033. // RFC 9112 §7.1: chunk-size = 1*HEXDIG
  12034. const char *p = lr.ptr();
  12035. int v = 0;
  12036. if (!is_hex(*p, v)) { return -1; }
  12037. size_t chunk_len = 0;
  12038. constexpr size_t chunk_len_max = (std::numeric_limits<size_t>::max)();
  12039. for (; is_hex(*p, v); ++p) {
  12040. if (chunk_len > (chunk_len_max >> 4)) { return -1; }
  12041. chunk_len = (chunk_len << 4) | static_cast<size_t>(v);
  12042. }
  12043. while (is_space_or_tab(*p)) {
  12044. ++p;
  12045. }
  12046. if (*p != '\0' && *p != ';' && *p != '\r' && *p != '\n') { return -1; }
  12047. if (chunk_len == 0) {
  12048. chunk_remaining = 0;
  12049. finished = true;
  12050. out_chunk_offset = 0;
  12051. out_chunk_total = 0;
  12052. return 0;
  12053. }
  12054. chunk_remaining = chunk_len;
  12055. last_chunk_total = chunk_remaining;
  12056. last_chunk_offset = 0;
  12057. }
  12058. auto to_read = (std::min)(chunk_remaining, len);
  12059. auto n = strm.read(buf, to_read);
  12060. if (n <= 0) { return -1; }
  12061. auto offset_before = last_chunk_offset;
  12062. last_chunk_offset += static_cast<size_t>(n);
  12063. chunk_remaining -= static_cast<size_t>(n);
  12064. out_chunk_offset = offset_before;
  12065. out_chunk_total = last_chunk_total;
  12066. if (chunk_remaining == 0) {
  12067. stream_line_reader lr(strm, line_buf, sizeof(line_buf));
  12068. if (!lr.getline()) { return -1; }
  12069. if (std::strcmp(lr.ptr(), "\r\n") != 0) { return -1; }
  12070. }
  12071. return n;
  12072. }
  12073. inline bool ChunkedDecoder::parse_trailers_into(Headers &dest,
  12074. const Headers &src_headers) {
  12075. stream_line_reader lr(strm, line_buf, sizeof(line_buf));
  12076. if (!lr.getline()) { return false; }
  12077. return parse_trailers(lr, dest, src_headers);
  12078. }
  12079. } // namespace detail
  12080. inline void
  12081. ClientImpl::transfer_socket_ownership_to_handle(StreamHandle &handle) {
  12082. handle.connection_->sock = socket_.sock;
  12083. #ifdef CPPHTTPLIB_SSL_ENABLED
  12084. handle.connection_->session = socket_.ssl;
  12085. socket_.ssl = nullptr;
  12086. #endif
  12087. socket_.sock = INVALID_SOCKET;
  12088. }
  12089. inline bool ClientImpl::handle_request(Stream &strm, Request &req,
  12090. Response &res, bool close_connection,
  12091. Error &error) {
  12092. if (req.path.empty()) {
  12093. error = Error::Connection;
  12094. output_error_log(error, &req);
  12095. return false;
  12096. }
  12097. auto req_save = req;
  12098. bool ret;
  12099. if (!is_ssl() && is_proxy_enabled_for_host(host_)) {
  12100. auto req2 = req;
  12101. req2.path = "http://" +
  12102. detail::make_host_and_port_string(host_, port_, false) +
  12103. req.path;
  12104. ret = process_request(strm, req2, res, close_connection, error);
  12105. req = std::move(req2);
  12106. req.path = req_save.path;
  12107. } else {
  12108. ret = process_request(strm, req, res, close_connection, error);
  12109. }
  12110. if (!ret) { return false; }
  12111. if (res.get_header_value("Connection") == "close" ||
  12112. (res.version == "HTTP/1.0" && res.reason != "Connection established")) {
  12113. // NOTE: this requires a not-entirely-obvious chain of calls to be correct
  12114. // for this to be safe.
  12115. // This is safe to call because handle_request is only called by send_
  12116. // which locks the request mutex during the process. It would be a bug
  12117. // to call it from a different thread since it's a thread-safety issue
  12118. // to do these things to the socket if another thread is using the socket.
  12119. std::lock_guard<std::mutex> guard(socket_mutex_);
  12120. disconnect(/*gracefully=*/true);
  12121. }
  12122. if (300 < res.status && res.status < 400 && follow_location_) {
  12123. req = std::move(req_save);
  12124. ret = redirect(req, res, error);
  12125. }
  12126. #ifdef CPPHTTPLIB_SSL_ENABLED
  12127. if ((res.status == StatusCode::Unauthorized_401 ||
  12128. res.status == StatusCode::ProxyAuthenticationRequired_407) &&
  12129. req.authorization_count_ < 5) {
  12130. auto is_proxy = res.status == StatusCode::ProxyAuthenticationRequired_407;
  12131. // Only retry when the 407 actually came from a proxy hop: plain HTTP
  12132. // through an enabled proxy. HTTPS via CONNECT tunnels the 407 from the
  12133. // origin (#2457); direct/bypassed origins have no proxy hop at all.
  12134. if (is_proxy && !(!is_ssl() && is_proxy_enabled_for_host(host_))) {
  12135. return ret;
  12136. }
  12137. const auto &username =
  12138. is_proxy ? proxy_digest_auth_username_ : digest_auth_username_;
  12139. const auto &password =
  12140. is_proxy ? proxy_digest_auth_password_ : digest_auth_password_;
  12141. if (!username.empty() && !password.empty()) {
  12142. std::map<std::string, std::string> auth;
  12143. if (detail::parse_www_authenticate(res, auth, is_proxy)) {
  12144. Request new_req = req;
  12145. new_req.authorization_count_ += 1;
  12146. new_req.headers.erase(is_proxy ? "Proxy-Authorization"
  12147. : "Authorization");
  12148. new_req.headers.insert(detail::make_digest_authentication_header(
  12149. req, auth, new_req.authorization_count_, detail::random_string(10),
  12150. username, password, is_proxy));
  12151. Response new_res;
  12152. ret = send(new_req, new_res, error);
  12153. if (ret) { res = std::move(new_res); }
  12154. }
  12155. }
  12156. }
  12157. #endif
  12158. return ret;
  12159. }
  12160. inline bool ClientImpl::redirect(Request &req, Response &res, Error &error) {
  12161. if (req.redirect_count_ == 0) {
  12162. error = Error::ExceedRedirectCount;
  12163. output_error_log(error, &req);
  12164. return false;
  12165. }
  12166. auto location = res.get_header_value("location");
  12167. if (location.empty()) { return false; }
  12168. detail::UrlComponents uc;
  12169. if (!detail::parse_url(location, uc)) { return false; }
  12170. // Only follow http/https redirects
  12171. if (!uc.scheme.empty() && uc.scheme != "http" && uc.scheme != "https") {
  12172. return false;
  12173. }
  12174. auto scheme = is_ssl() ? "https" : "http";
  12175. auto next_scheme = std::move(uc.scheme);
  12176. auto next_host = std::move(uc.host);
  12177. auto port_str = std::move(uc.port);
  12178. auto next_path = std::move(uc.path);
  12179. auto next_query = std::move(uc.query);
  12180. auto next_port = port_;
  12181. if (!port_str.empty()) {
  12182. if (!detail::parse_port(port_str, next_port)) { return false; }
  12183. } else if (!next_scheme.empty()) {
  12184. next_port = next_scheme == "https" ? 443 : 80;
  12185. }
  12186. if (next_scheme.empty()) { next_scheme = scheme; }
  12187. if (next_host.empty()) { next_host = host_; }
  12188. if (next_path.empty()) { next_path = "/"; }
  12189. auto path = decode_path_component(next_path) + next_query;
  12190. // Same host redirect - use current client
  12191. if (next_scheme == scheme && next_host == host_ && next_port == port_) {
  12192. return detail::redirect(*this, req, res, path, location, error);
  12193. }
  12194. // Cross-host/scheme redirect - create new client with robust setup
  12195. return create_redirect_client(next_scheme, next_host, next_port, req, res,
  12196. path, location, error);
  12197. }
  12198. // New method for robust redirect client creation
  12199. inline bool ClientImpl::create_redirect_client(
  12200. const std::string &scheme, const std::string &host, int port, Request &req,
  12201. Response &res, const std::string &path, const std::string &location,
  12202. Error &error) {
  12203. // Determine if we need SSL
  12204. auto need_ssl = (scheme == "https");
  12205. // Clean up request headers that are host/client specific
  12206. // Remove headers that should not be carried over to new host
  12207. auto headers_to_remove = std::vector<std::string>{
  12208. "Host", "Proxy-Authorization", "Authorization", "Cookie", "Cookie2"};
  12209. for (const auto &header_name : headers_to_remove) {
  12210. auto it = req.headers.find(header_name);
  12211. while (it != req.headers.end()) {
  12212. it = req.headers.erase(it);
  12213. it = req.headers.find(header_name);
  12214. }
  12215. }
  12216. // Create appropriate client type and handle redirect
  12217. if (need_ssl) {
  12218. #ifdef CPPHTTPLIB_SSL_ENABLED
  12219. // Create SSL client for HTTPS redirect
  12220. SSLClient redirect_client(host, port);
  12221. // Setup basic client configuration first
  12222. setup_redirect_client(redirect_client);
  12223. redirect_client.enable_server_certificate_verification(
  12224. server_certificate_verification_);
  12225. redirect_client.enable_server_hostname_verification(
  12226. server_hostname_verification_);
  12227. redirect_client.system_ca_mode_ = system_ca_mode_;
  12228. // Transfer CA certificate to redirect client
  12229. if (!ca_cert_pem_.empty()) {
  12230. redirect_client.load_ca_cert_store(ca_cert_pem_.c_str(),
  12231. ca_cert_pem_.size());
  12232. }
  12233. if (!ca_cert_file_path_.empty()) {
  12234. redirect_client.set_ca_cert_path(ca_cert_file_path_, ca_cert_dir_path_);
  12235. }
  12236. // Client certificates are set through constructor for SSLClient
  12237. // NOTE: SSLClient constructor already takes client_cert_path and
  12238. // client_key_path so we need to create it properly if client certs are
  12239. // needed
  12240. // Execute the redirect
  12241. return detail::redirect(redirect_client, req, res, path, location, error);
  12242. #else
  12243. // SSL not supported - set appropriate error
  12244. error = Error::SSLConnection;
  12245. output_error_log(error, &req);
  12246. return false;
  12247. #endif
  12248. } else {
  12249. // HTTP redirect
  12250. ClientImpl redirect_client(host, port);
  12251. // Setup client with robust configuration
  12252. setup_redirect_client(redirect_client);
  12253. // Execute the redirect
  12254. return detail::redirect(redirect_client, req, res, path, location, error);
  12255. }
  12256. }
  12257. // New method for robust client setup (based on basic_manual_redirect.cpp
  12258. // logic)
  12259. template <typename ClientType>
  12260. inline void ClientImpl::setup_redirect_client(ClientType &client) {
  12261. // Copy basic settings first
  12262. client.set_connection_timeout(connection_timeout_sec_);
  12263. client.set_read_timeout(read_timeout_sec_, read_timeout_usec_);
  12264. client.set_write_timeout(write_timeout_sec_, write_timeout_usec_);
  12265. client.set_keep_alive(keep_alive_);
  12266. client.set_follow_location(
  12267. true); // Enable redirects to handle multi-step redirects
  12268. client.set_path_encode(path_encode_);
  12269. client.set_compress(compress_);
  12270. client.set_decompress(decompress_);
  12271. // NOTE: Authentication credentials (basic auth, bearer token, digest auth)
  12272. // are intentionally NOT copied to the redirect client. Per RFC 9110 Section
  12273. // 15.4, credentials must not be forwarded when redirecting to a different
  12274. // host. This function is only called for cross-host redirects; same-host
  12275. // redirects are handled directly in ClientImpl::redirect().
  12276. // Copy the proxy configuration unconditionally; the per-target bypass is
  12277. // re-evaluated at send time, so a later hop to a non-bypassed host can
  12278. // still use the proxy.
  12279. client.no_proxy_entries_ = no_proxy_entries_;
  12280. if (!proxy_host_.empty() && proxy_port_ != -1) {
  12281. client.set_proxy(proxy_host_, proxy_port_);
  12282. if (!proxy_basic_auth_username_.empty()) {
  12283. client.set_proxy_basic_auth(proxy_basic_auth_username_,
  12284. proxy_basic_auth_password_);
  12285. }
  12286. if (!proxy_bearer_token_auth_token_.empty()) {
  12287. client.set_proxy_bearer_token_auth(proxy_bearer_token_auth_token_);
  12288. }
  12289. #ifdef CPPHTTPLIB_SSL_ENABLED
  12290. if (!proxy_digest_auth_username_.empty()) {
  12291. client.set_proxy_digest_auth(proxy_digest_auth_username_,
  12292. proxy_digest_auth_password_);
  12293. }
  12294. #endif
  12295. }
  12296. // Copy network and socket settings
  12297. client.set_address_family(address_family_);
  12298. client.set_tcp_nodelay(tcp_nodelay_);
  12299. client.set_ipv6_v6only(ipv6_v6only_);
  12300. if (socket_options_) { client.set_socket_options(socket_options_); }
  12301. if (!interface_.empty()) { client.set_interface(interface_); }
  12302. // Copy logging and headers
  12303. if (logger_) { client.set_logger(logger_); }
  12304. if (error_logger_) { client.set_error_logger(error_logger_); }
  12305. // NOTE: DO NOT copy default_headers_ as they may contain stale Host headers
  12306. // Each new client should generate its own headers based on its target host
  12307. }
  12308. inline bool ClientImpl::write_content_with_provider(Stream &strm,
  12309. const Request &req,
  12310. Error &error) const {
  12311. auto is_shutting_down = []() { return false; };
  12312. if (req.is_chunked_content_provider_) {
  12313. auto compressor = compress_ ? detail::create_compressor().first
  12314. : std::unique_ptr<detail::compressor>();
  12315. if (!compressor) {
  12316. compressor = detail::make_unique<detail::nocompressor>();
  12317. }
  12318. return detail::write_content_chunked(strm, req.content_provider_,
  12319. is_shutting_down, *compressor, error);
  12320. } else {
  12321. return detail::write_content_with_progress(
  12322. strm, req.content_provider_, 0, req.content_length_, is_shutting_down,
  12323. req.upload_progress, error);
  12324. }
  12325. }
  12326. inline bool ClientImpl::write_request(Stream &strm, Request &req,
  12327. bool close_connection, Error &error,
  12328. bool skip_body) {
  12329. // Prepare additional headers
  12330. if (close_connection) {
  12331. if (!req.has_header("Connection")) {
  12332. req.set_header("Connection", "close");
  12333. }
  12334. }
  12335. std::string ct_for_defaults;
  12336. if (!req.has_header("Content-Type") && !req.body.empty()) {
  12337. ct_for_defaults = "text/plain";
  12338. }
  12339. prepare_default_headers(req, false, ct_for_defaults);
  12340. if (req.body.empty()) {
  12341. if (req.content_provider_) {
  12342. if (!req.is_chunked_content_provider_) {
  12343. if (!req.has_header("Content-Length")) {
  12344. auto length = std::to_string(req.content_length_);
  12345. req.set_header("Content-Length", length);
  12346. }
  12347. }
  12348. } else {
  12349. if (req.method == "POST" || req.method == "PUT" ||
  12350. req.method == "PATCH") {
  12351. req.set_header("Content-Length", "0");
  12352. }
  12353. }
  12354. }
  12355. if (!basic_auth_password_.empty() || !basic_auth_username_.empty()) {
  12356. if (!req.has_header("Authorization")) {
  12357. req.headers.insert(make_basic_authentication_header(
  12358. basic_auth_username_, basic_auth_password_, false));
  12359. }
  12360. }
  12361. if (!bearer_token_auth_token_.empty()) {
  12362. if (!req.has_header("Authorization")) {
  12363. req.headers.insert(make_bearer_token_authentication_header(
  12364. bearer_token_auth_token_, false));
  12365. }
  12366. }
  12367. // Proxy-Authorization is only sent when the proxy is actually used for
  12368. // this target — otherwise NO_PROXY-matched requests would leak proxy
  12369. // credentials directly to the destination server.
  12370. if (is_proxy_enabled_for_host(host_)) {
  12371. if (!proxy_basic_auth_username_.empty() &&
  12372. !proxy_basic_auth_password_.empty() &&
  12373. !req.has_header("Proxy-Authorization")) {
  12374. req.headers.insert(make_basic_authentication_header(
  12375. proxy_basic_auth_username_, proxy_basic_auth_password_, true));
  12376. }
  12377. if (!proxy_bearer_token_auth_token_.empty() &&
  12378. !req.has_header("Proxy-Authorization")) {
  12379. req.headers.insert(make_bearer_token_authentication_header(
  12380. proxy_bearer_token_auth_token_, true));
  12381. }
  12382. }
  12383. // Request line and headers
  12384. {
  12385. detail::BufferStream bstrm;
  12386. // Extract the query from req.path. The encoding itself is delegated to
  12387. // `encode_request_target`; the raw query is still needed here to decide
  12388. // between populating `req.params` from it and falling back to building a
  12389. // query out of caller-supplied `req.params`.
  12390. auto query_pos = req.path.find('?');
  12391. auto query_part = query_pos == std::string::npos
  12392. ? std::string()
  12393. : req.path.substr(query_pos + 1);
  12394. auto path_with_query =
  12395. detail::encode_request_target(req.path, path_encode_);
  12396. if (!query_part.empty()) {
  12397. // The query already came in through `req.path`; still populate
  12398. // `req.params` for handlers/users who read them.
  12399. detail::parse_query_text(query_part, req.params);
  12400. } else if (!req.params.empty()) {
  12401. // No query in `req.path`; build one from `req.params` so existing
  12402. // callers that pass `Params` separately continue to work.
  12403. path_with_query = append_query_params(path_with_query, req.params);
  12404. }
  12405. // Write request line and headers
  12406. if (detail::write_request_line(bstrm, req.method, path_with_query) < 0) {
  12407. // A rejected target (e.g. CR/LF smuggled in via a decoded redirect
  12408. // Location under set_path_encode(false)) must fail the request cleanly
  12409. // instead of emitting a request-line-less, header-injecting request.
  12410. error = Error::Write;
  12411. output_error_log(error, &req);
  12412. return false;
  12413. }
  12414. if (!detail::check_and_write_headers(bstrm, req.headers, header_writer_,
  12415. error)) {
  12416. output_error_log(error, &req);
  12417. return false;
  12418. }
  12419. // Flush buffer
  12420. auto &data = bstrm.get_buffer();
  12421. if (!detail::write_data(strm, data.data(), data.size())) {
  12422. error = Error::Write;
  12423. output_error_log(error, &req);
  12424. return false;
  12425. }
  12426. }
  12427. // After sending request line and headers, wait briefly for an early server
  12428. // response (e.g. 4xx) and avoid sending a potentially large request body
  12429. // unnecessarily. This workaround is only enabled on Windows because Unix
  12430. // platforms surface write errors (EPIPE) earlier; on Windows kernel send
  12431. // buffering can accept large writes even when the peer already responded.
  12432. // Check the stream first (which covers SSL via `is_readable()`), then
  12433. // fall back to select on the socket. Only perform the wait for very large
  12434. // request bodies to avoid interfering with normal small requests and
  12435. // reduce side-effects. Poll briefly (up to 50ms as default) for an early
  12436. // response. Skip this check when using Expect: 100-continue, as the protocol
  12437. // handles early responses properly.
  12438. #if defined(_WIN32)
  12439. if (!skip_body &&
  12440. req.body.size() > CPPHTTPLIB_WAIT_EARLY_SERVER_RESPONSE_THRESHOLD &&
  12441. req.path.size() > CPPHTTPLIB_REQUEST_URI_MAX_LENGTH) {
  12442. auto start = std::chrono::high_resolution_clock::now();
  12443. for (;;) {
  12444. // Prefer socket-level readiness to avoid SSL_pending() false-positives
  12445. // from SSL internals. If the underlying socket is readable, assume an
  12446. // early response may be present.
  12447. auto sock = strm.socket();
  12448. if (sock != INVALID_SOCKET && detail::select_read(sock, 0, 0) > 0) {
  12449. return false;
  12450. }
  12451. // Fallback to stream-level check for non-socket streams or when the
  12452. // socket isn't reporting readable. Avoid using `is_readable()` for
  12453. // SSL, since `SSL_pending()` may report buffered records that do not
  12454. // indicate a complete application-level response yet.
  12455. if (!is_ssl() && strm.is_readable()) { return false; }
  12456. auto now = std::chrono::high_resolution_clock::now();
  12457. auto elapsed =
  12458. std::chrono::duration_cast<std::chrono::milliseconds>(now - start)
  12459. .count();
  12460. if (elapsed >= CPPHTTPLIB_WAIT_EARLY_SERVER_RESPONSE_TIMEOUT_MSECOND) {
  12461. break;
  12462. }
  12463. std::this_thread::sleep_for(std::chrono::milliseconds(1));
  12464. }
  12465. }
  12466. #endif
  12467. // Body
  12468. if (skip_body) { return true; }
  12469. return write_request_body(strm, req, error);
  12470. }
  12471. inline bool ClientImpl::write_request_body(Stream &strm, Request &req,
  12472. Error &error) {
  12473. if (req.body.empty()) {
  12474. return write_content_with_provider(strm, req, error);
  12475. }
  12476. if (req.upload_progress) {
  12477. auto body_size = req.body.size();
  12478. size_t written = 0;
  12479. auto data = req.body.data();
  12480. while (written < body_size) {
  12481. size_t to_write = (std::min)(CPPHTTPLIB_SEND_BUFSIZ, body_size - written);
  12482. if (!detail::write_data(strm, data + written, to_write)) {
  12483. error = Error::Write;
  12484. output_error_log(error, &req);
  12485. return false;
  12486. }
  12487. written += to_write;
  12488. if (!req.upload_progress(written, body_size)) {
  12489. error = Error::Canceled;
  12490. output_error_log(error, &req);
  12491. return false;
  12492. }
  12493. }
  12494. } else {
  12495. if (!detail::write_data(strm, req.body.data(), req.body.size())) {
  12496. error = Error::Write;
  12497. output_error_log(error, &req);
  12498. return false;
  12499. }
  12500. }
  12501. return true;
  12502. }
  12503. inline std::unique_ptr<Response>
  12504. ClientImpl::send_with_content_provider_and_receiver(
  12505. Request &req, const char *body, size_t content_length,
  12506. ContentProvider content_provider,
  12507. ContentProviderWithoutLength content_provider_without_length,
  12508. const std::string &content_type, ContentReceiver content_receiver,
  12509. Error &error) {
  12510. if (!content_type.empty()) { req.set_header("Content-Type", content_type); }
  12511. auto enc = compress_
  12512. ? detail::create_compressor()
  12513. : std::pair<std::unique_ptr<detail::compressor>, const char *>(
  12514. nullptr, nullptr);
  12515. if (enc.second) { req.set_header("Content-Encoding", enc.second); }
  12516. if (enc.first && !content_provider_without_length) {
  12517. auto &compressor = enc.first;
  12518. if (content_provider) {
  12519. auto ok = true;
  12520. size_t offset = 0;
  12521. DataSink data_sink;
  12522. data_sink.write = [&](const char *data, size_t data_len) -> bool {
  12523. if (ok) {
  12524. auto last = offset + data_len == content_length;
  12525. auto ret = compressor->compress(
  12526. data, data_len, last,
  12527. [&](const char *compressed_data, size_t compressed_data_len) {
  12528. req.body.append(compressed_data, compressed_data_len);
  12529. return true;
  12530. });
  12531. if (ret) {
  12532. offset += data_len;
  12533. } else {
  12534. ok = false;
  12535. }
  12536. }
  12537. return ok;
  12538. };
  12539. while (ok && offset < content_length) {
  12540. if (!content_provider(offset, content_length - offset, data_sink)) {
  12541. error = Error::Canceled;
  12542. output_error_log(error, &req);
  12543. return nullptr;
  12544. }
  12545. }
  12546. } else {
  12547. if (!compressor->compress(body, content_length, true,
  12548. [&](const char *data, size_t data_len) {
  12549. req.body.append(data, data_len);
  12550. return true;
  12551. })) {
  12552. error = Error::Compression;
  12553. output_error_log(error, &req);
  12554. return nullptr;
  12555. }
  12556. }
  12557. } else {
  12558. if (content_provider) {
  12559. req.content_length_ = content_length;
  12560. req.content_provider_ = std::move(content_provider);
  12561. req.is_chunked_content_provider_ = false;
  12562. } else if (content_provider_without_length) {
  12563. req.content_length_ = 0;
  12564. req.content_provider_ = detail::ContentProviderAdapter(
  12565. std::move(content_provider_without_length));
  12566. req.is_chunked_content_provider_ = true;
  12567. req.set_header("Transfer-Encoding", "chunked");
  12568. } else {
  12569. req.body.assign(body, content_length);
  12570. }
  12571. }
  12572. if (content_receiver) {
  12573. req.content_receiver =
  12574. [content_receiver](const char *data, size_t data_length,
  12575. size_t /*offset*/, size_t /*total_length*/) {
  12576. return content_receiver(data, data_length);
  12577. };
  12578. }
  12579. auto res = detail::make_unique<Response>();
  12580. return send(req, *res, error) ? std::move(res) : nullptr;
  12581. }
  12582. inline Result ClientImpl::send_with_content_provider_and_receiver(
  12583. const std::string &method, const std::string &path, const Headers &headers,
  12584. const char *body, size_t content_length, ContentProvider content_provider,
  12585. ContentProviderWithoutLength content_provider_without_length,
  12586. const std::string &content_type, ContentReceiver content_receiver,
  12587. UploadProgress progress) {
  12588. Request req;
  12589. req.method = method;
  12590. req.headers = headers;
  12591. req.path = path;
  12592. req.upload_progress = std::move(progress);
  12593. if (max_timeout_msec_ > 0) {
  12594. req.start_time_ = std::chrono::steady_clock::now();
  12595. }
  12596. auto error = Error::Success;
  12597. auto res = send_with_content_provider_and_receiver(
  12598. req, body, content_length, std::move(content_provider),
  12599. std::move(content_provider_without_length), content_type,
  12600. std::move(content_receiver), error);
  12601. #ifdef CPPHTTPLIB_SSL_ENABLED
  12602. return Result{std::move(res), error, std::move(req.headers), last_ssl_error_,
  12603. last_backend_error_};
  12604. #else
  12605. return Result{std::move(res), error, std::move(req.headers)};
  12606. #endif
  12607. }
  12608. inline void ClientImpl::output_log(const Request &req,
  12609. const Response &res) const {
  12610. if (logger_) {
  12611. std::lock_guard<std::mutex> guard(logger_mutex_);
  12612. logger_(req, res);
  12613. }
  12614. }
  12615. inline void ClientImpl::output_error_log(const Error &err,
  12616. const Request *req) const {
  12617. if (error_logger_) {
  12618. std::lock_guard<std::mutex> guard(logger_mutex_);
  12619. error_logger_(err, req);
  12620. }
  12621. }
  12622. inline bool ClientImpl::process_request(Stream &strm, Request &req,
  12623. Response &res, bool close_connection,
  12624. Error &error) {
  12625. // Auto-add Expect: 100-continue for large bodies
  12626. if (CPPHTTPLIB_EXPECT_100_THRESHOLD > 0 && !req.has_header("Expect")) {
  12627. auto body_size = req.body.empty() ? req.content_length_ : req.body.size();
  12628. if (body_size >= CPPHTTPLIB_EXPECT_100_THRESHOLD) {
  12629. req.set_header("Expect", "100-continue");
  12630. }
  12631. }
  12632. // Check for Expect: 100-continue
  12633. auto expect_100_continue = req.get_header_value("Expect") == "100-continue";
  12634. // Send request (skip body if using Expect: 100-continue)
  12635. auto write_request_success =
  12636. write_request(strm, req, close_connection, error, expect_100_continue);
  12637. #ifdef CPPHTTPLIB_SSL_ENABLED
  12638. if (is_ssl() && !expect_100_continue) {
  12639. auto is_proxy_enabled = is_proxy_enabled_for_host(host_);
  12640. if (!is_proxy_enabled) {
  12641. if (tls::is_peer_closed(socket_.ssl, socket_.sock)) {
  12642. error = Error::SSLPeerCouldBeClosed_;
  12643. output_error_log(error, &req);
  12644. return false;
  12645. }
  12646. }
  12647. }
  12648. #endif
  12649. // Handle Expect: 100-continue.
  12650. //
  12651. // Wait for an interim/early response by attempting to read the status line
  12652. // under a short timeout, instead of trusting raw socket readability. Over
  12653. // TLS, post-handshake records (e.g. session tickets) make the socket
  12654. // readable without any HTTP response being available; relying on
  12655. // `select_read` there caused the body to be withheld forever and the
  12656. // request to fail with `Read` (#2458). If no status line arrives within the
  12657. // timeout, send the body anyway (matching curl's behavior).
  12658. auto status_line_read = false;
  12659. if (expect_100_continue && write_request_success) {
  12660. if (CPPHTTPLIB_EXPECT_100_TIMEOUT_MSECOND > 0) {
  12661. time_t sec = CPPHTTPLIB_EXPECT_100_TIMEOUT_MSECOND / 1000;
  12662. time_t usec = (CPPHTTPLIB_EXPECT_100_TIMEOUT_MSECOND % 1000) * 1000;
  12663. strm.set_read_timeout(sec, usec);
  12664. status_line_read = read_response_line(strm, req, res, false);
  12665. strm.set_read_timeout(read_timeout_sec_, read_timeout_usec_);
  12666. }
  12667. if (!status_line_read) {
  12668. // No interim response within the timeout: send the body and handle the
  12669. // response as usual.
  12670. if (!write_request_body(strm, req, error)) { return false; }
  12671. expect_100_continue = false; // Switch to normal response handling
  12672. }
  12673. }
  12674. // Receive response and headers
  12675. // When using Expect: 100-continue, don't auto-skip `100 Continue` response
  12676. if ((!status_line_read &&
  12677. !read_response_line(strm, req, res, !expect_100_continue)) ||
  12678. !detail::read_headers(strm, res.headers)) {
  12679. if (write_request_success) { error = Error::Read; }
  12680. output_error_log(error, &req);
  12681. return false;
  12682. }
  12683. if (!write_request_success) { return false; }
  12684. // Handle Expect: 100-continue response
  12685. if (expect_100_continue) {
  12686. if (res.status == StatusCode::Continue_100) {
  12687. // Server accepted, send the body
  12688. if (!write_request_body(strm, req, error)) { return false; }
  12689. // Read the actual response
  12690. res.headers.clear();
  12691. res.body.clear();
  12692. if (!read_response_line(strm, req, res) ||
  12693. !detail::read_headers(strm, res.headers)) {
  12694. error = Error::Read;
  12695. output_error_log(error, &req);
  12696. return false;
  12697. }
  12698. }
  12699. // If not 100 Continue, server returned an error; proceed with that response
  12700. }
  12701. // Body
  12702. if ((res.status != StatusCode::NoContent_204) && req.method != "HEAD" &&
  12703. req.method != "CONNECT") {
  12704. auto redirect = 300 < res.status && res.status < 400 &&
  12705. res.status != StatusCode::NotModified_304 &&
  12706. follow_location_;
  12707. if (req.response_handler && !redirect) {
  12708. if (!req.response_handler(res)) {
  12709. error = Error::Canceled;
  12710. output_error_log(error, &req);
  12711. return false;
  12712. }
  12713. }
  12714. auto out =
  12715. req.content_receiver
  12716. ? static_cast<ContentReceiverWithProgress>(
  12717. [&](const char *buf, size_t n, size_t off, size_t len) {
  12718. if (redirect) { return true; }
  12719. auto ret = req.content_receiver(buf, n, off, len);
  12720. if (!ret) {
  12721. error = Error::Canceled;
  12722. output_error_log(error, &req);
  12723. }
  12724. return ret;
  12725. })
  12726. : static_cast<ContentReceiverWithProgress>(
  12727. [&](const char *buf, size_t n, size_t /*off*/,
  12728. size_t /*len*/) {
  12729. assert(res.body.size() + n <= res.body.max_size());
  12730. if (payload_max_length_ > 0 &&
  12731. (res.body.size() >= payload_max_length_ ||
  12732. n > payload_max_length_ - res.body.size())) {
  12733. return false;
  12734. }
  12735. res.body.append(buf, n);
  12736. return true;
  12737. });
  12738. auto progress = [&](size_t current, size_t total) {
  12739. if (!req.download_progress || redirect) { return true; }
  12740. auto ret = req.download_progress(current, total);
  12741. if (!ret) {
  12742. error = Error::Canceled;
  12743. output_error_log(error, &req);
  12744. }
  12745. return ret;
  12746. };
  12747. if (res.has_header("Content-Length")) {
  12748. if (!req.content_receiver) {
  12749. auto len = res.get_header_value_u64("Content-Length");
  12750. if (len > res.body.max_size()) {
  12751. error = Error::Read;
  12752. output_error_log(error, &req);
  12753. return false;
  12754. }
  12755. // Cap the reservation by payload_max_length_ to avoid OOM when a
  12756. // hostile or malformed server sends an enormous Content-Length.
  12757. // The actual body read below is bounded by payload_max_length_,
  12758. // so reserving more than that is never useful.
  12759. auto reserve_len = static_cast<size_t>(len);
  12760. if (payload_max_length_ > 0 && reserve_len > payload_max_length_) {
  12761. reserve_len = payload_max_length_;
  12762. }
  12763. res.body.reserve(reserve_len);
  12764. }
  12765. }
  12766. if (res.status != StatusCode::NotModified_304) {
  12767. auto content_status = 0;
  12768. auto max_length = (!has_payload_max_length_ && req.content_receiver)
  12769. ? (std::numeric_limits<size_t>::max)()
  12770. : payload_max_length_;
  12771. if (!detail::read_content(strm, res, max_length, content_status,
  12772. std::move(progress), std::move(out),
  12773. decompress_)) {
  12774. if (error != Error::Canceled) {
  12775. // Tell the caller apart from a plain read failure when the body could
  12776. // not be decoded because of its Content-Encoding.
  12777. switch (content_status) {
  12778. case StatusCode::UnsupportedMediaType_415:
  12779. error = Error::UnsupportedContentEncoding;
  12780. break;
  12781. case StatusCode::InternalServerError_500:
  12782. error = Error::Compression;
  12783. break;
  12784. default: error = Error::Read; break;
  12785. }
  12786. }
  12787. output_error_log(error, &req);
  12788. return false;
  12789. }
  12790. }
  12791. }
  12792. // Log
  12793. output_log(req, res);
  12794. return true;
  12795. }
  12796. inline ContentProviderWithoutLength ClientImpl::get_multipart_content_provider(
  12797. const std::string &boundary, const UploadFormDataItems &items,
  12798. const FormDataProviderItems &provider_items) const {
  12799. size_t cur_item = 0;
  12800. size_t cur_start = 0;
  12801. // cur_item and cur_start are copied to within the std::function and
  12802. // maintain state between successive calls
  12803. return [&, cur_item, cur_start](size_t offset,
  12804. DataSink &sink) mutable -> bool {
  12805. if (!offset && !items.empty()) {
  12806. sink.os << detail::serialize_multipart_formdata(items, boundary, false);
  12807. return true;
  12808. } else if (cur_item < provider_items.size()) {
  12809. if (!cur_start) {
  12810. const auto &begin = detail::serialize_multipart_formdata_item_begin(
  12811. provider_items[cur_item], boundary);
  12812. offset += begin.size();
  12813. cur_start = offset;
  12814. sink.os << begin;
  12815. }
  12816. DataSink cur_sink;
  12817. auto has_data = true;
  12818. cur_sink.write = sink.write;
  12819. cur_sink.done = [&]() { has_data = false; };
  12820. if (!provider_items[cur_item].provider(offset - cur_start, cur_sink)) {
  12821. return false;
  12822. }
  12823. if (!has_data) {
  12824. sink.os << detail::serialize_multipart_formdata_item_end();
  12825. cur_item++;
  12826. cur_start = 0;
  12827. }
  12828. return true;
  12829. } else {
  12830. sink.os << detail::serialize_multipart_formdata_finish(boundary);
  12831. sink.done();
  12832. return true;
  12833. }
  12834. };
  12835. }
  12836. inline bool ClientImpl::process_socket(
  12837. const Socket &socket,
  12838. std::chrono::time_point<std::chrono::steady_clock> start_time,
  12839. std::function<bool(Stream &strm)> callback) {
  12840. return detail::process_client_socket(
  12841. socket.sock, read_timeout_sec_, read_timeout_usec_, write_timeout_sec_,
  12842. write_timeout_usec_, max_timeout_msec_, start_time, std::move(callback));
  12843. }
  12844. inline bool ClientImpl::is_ssl() const { return false; }
  12845. inline Result ClientImpl::Get(const std::string &path,
  12846. DownloadProgress progress) {
  12847. return Get(path, Headers(), std::move(progress));
  12848. }
  12849. inline Result ClientImpl::Get(const std::string &path, const Params &params,
  12850. DownloadProgress progress) {
  12851. return Get(path, params, Headers(), std::move(progress));
  12852. }
  12853. inline Result ClientImpl::Get(const std::string &path, const Params &params,
  12854. const Headers &headers,
  12855. DownloadProgress progress) {
  12856. if (params.empty()) { return Get(path, headers); }
  12857. std::string path_with_query = append_query_params(path, params);
  12858. return Get(path_with_query, headers, std::move(progress));
  12859. }
  12860. inline Result ClientImpl::Get(const std::string &path, const Headers &headers,
  12861. DownloadProgress progress) {
  12862. Request req;
  12863. req.method = "GET";
  12864. req.path = path;
  12865. req.headers = headers;
  12866. req.download_progress = std::move(progress);
  12867. if (max_timeout_msec_ > 0) {
  12868. req.start_time_ = std::chrono::steady_clock::now();
  12869. }
  12870. return send_(std::move(req));
  12871. }
  12872. inline Result ClientImpl::Get(const std::string &path,
  12873. ContentReceiver content_receiver,
  12874. DownloadProgress progress) {
  12875. return Get(path, Headers(), nullptr, std::move(content_receiver),
  12876. std::move(progress));
  12877. }
  12878. inline Result ClientImpl::Get(const std::string &path, const Headers &headers,
  12879. ContentReceiver content_receiver,
  12880. DownloadProgress progress) {
  12881. return Get(path, headers, nullptr, std::move(content_receiver),
  12882. std::move(progress));
  12883. }
  12884. inline Result ClientImpl::Get(const std::string &path,
  12885. ResponseHandler response_handler,
  12886. ContentReceiver content_receiver,
  12887. DownloadProgress progress) {
  12888. return Get(path, Headers(), std::move(response_handler),
  12889. std::move(content_receiver), std::move(progress));
  12890. }
  12891. inline Result ClientImpl::Get(const std::string &path, const Headers &headers,
  12892. ResponseHandler response_handler,
  12893. ContentReceiver content_receiver,
  12894. DownloadProgress progress) {
  12895. Request req;
  12896. req.method = "GET";
  12897. req.path = path;
  12898. req.headers = headers;
  12899. req.response_handler = std::move(response_handler);
  12900. req.content_receiver =
  12901. [content_receiver](const char *data, size_t data_length,
  12902. size_t /*offset*/, size_t /*total_length*/) {
  12903. return content_receiver(data, data_length);
  12904. };
  12905. req.download_progress = std::move(progress);
  12906. if (max_timeout_msec_ > 0) {
  12907. req.start_time_ = std::chrono::steady_clock::now();
  12908. }
  12909. return send_(std::move(req));
  12910. }
  12911. inline Result ClientImpl::Get(const std::string &path, const Params &params,
  12912. const Headers &headers,
  12913. ContentReceiver content_receiver,
  12914. DownloadProgress progress) {
  12915. return Get(path, params, headers, nullptr, std::move(content_receiver),
  12916. std::move(progress));
  12917. }
  12918. inline Result ClientImpl::Get(const std::string &path, const Params &params,
  12919. const Headers &headers,
  12920. ResponseHandler response_handler,
  12921. ContentReceiver content_receiver,
  12922. DownloadProgress progress) {
  12923. if (params.empty()) {
  12924. return Get(path, headers, std::move(response_handler),
  12925. std::move(content_receiver), std::move(progress));
  12926. }
  12927. std::string path_with_query = append_query_params(path, params);
  12928. return Get(path_with_query, headers, std::move(response_handler),
  12929. std::move(content_receiver), std::move(progress));
  12930. }
  12931. inline Result ClientImpl::Head(const std::string &path) {
  12932. return Head(path, Headers());
  12933. }
  12934. inline Result ClientImpl::Head(const std::string &path,
  12935. const Headers &headers) {
  12936. Request req;
  12937. req.method = "HEAD";
  12938. req.headers = headers;
  12939. req.path = path;
  12940. if (max_timeout_msec_ > 0) {
  12941. req.start_time_ = std::chrono::steady_clock::now();
  12942. }
  12943. return send_(std::move(req));
  12944. }
  12945. inline Result ClientImpl::Post(const std::string &path) {
  12946. return Post(path, std::string(), std::string());
  12947. }
  12948. inline Result ClientImpl::Post(const std::string &path,
  12949. const Headers &headers) {
  12950. return Post(path, headers, nullptr, 0, std::string());
  12951. }
  12952. inline Result ClientImpl::Post(const std::string &path, const char *body,
  12953. size_t content_length,
  12954. const std::string &content_type,
  12955. UploadProgress progress) {
  12956. return Post(path, Headers(), body, content_length, content_type, progress);
  12957. }
  12958. inline Result ClientImpl::Post(const std::string &path, const std::string &body,
  12959. const std::string &content_type,
  12960. UploadProgress progress) {
  12961. return Post(path, Headers(), body, content_type, progress);
  12962. }
  12963. inline Result ClientImpl::Post(const std::string &path, const Params &params) {
  12964. return Post(path, Headers(), params);
  12965. }
  12966. inline Result ClientImpl::Post(const std::string &path, size_t content_length,
  12967. ContentProvider content_provider,
  12968. const std::string &content_type,
  12969. UploadProgress progress) {
  12970. return Post(path, Headers(), content_length, std::move(content_provider),
  12971. content_type, progress);
  12972. }
  12973. inline Result ClientImpl::Post(const std::string &path, size_t content_length,
  12974. ContentProvider content_provider,
  12975. const std::string &content_type,
  12976. ContentReceiver content_receiver,
  12977. UploadProgress progress) {
  12978. return Post(path, Headers(), content_length, std::move(content_provider),
  12979. content_type, std::move(content_receiver), progress);
  12980. }
  12981. inline Result ClientImpl::Post(const std::string &path,
  12982. ContentProviderWithoutLength content_provider,
  12983. const std::string &content_type,
  12984. UploadProgress progress) {
  12985. return Post(path, Headers(), std::move(content_provider), content_type,
  12986. progress);
  12987. }
  12988. inline Result ClientImpl::Post(const std::string &path,
  12989. ContentProviderWithoutLength content_provider,
  12990. const std::string &content_type,
  12991. ContentReceiver content_receiver,
  12992. UploadProgress progress) {
  12993. return Post(path, Headers(), std::move(content_provider), content_type,
  12994. std::move(content_receiver), progress);
  12995. }
  12996. inline Result ClientImpl::Post(const std::string &path, const Headers &headers,
  12997. const Params &params) {
  12998. auto query = detail::params_to_query_str(params);
  12999. return Post(path, headers, query, "application/x-www-form-urlencoded");
  13000. }
  13001. inline Result ClientImpl::Post(const std::string &path,
  13002. const UploadFormDataItems &items,
  13003. UploadProgress progress) {
  13004. return Post(path, Headers(), items, progress);
  13005. }
  13006. inline Result ClientImpl::Post(const std::string &path, const Headers &headers,
  13007. const UploadFormDataItems &items,
  13008. UploadProgress progress) {
  13009. const auto &boundary = detail::make_multipart_data_boundary();
  13010. const auto &content_type =
  13011. detail::serialize_multipart_formdata_get_content_type(boundary);
  13012. auto content_length = detail::get_multipart_content_length(items, boundary);
  13013. return Post(path, headers, content_length,
  13014. detail::make_multipart_content_provider(items, boundary),
  13015. content_type, progress);
  13016. }
  13017. inline Result ClientImpl::Post(const std::string &path, const Headers &headers,
  13018. const UploadFormDataItems &items,
  13019. const std::string &boundary,
  13020. UploadProgress progress) {
  13021. if (!detail::is_multipart_boundary_chars_valid(boundary)) {
  13022. return Result{nullptr, Error::UnsupportedMultipartBoundaryChars};
  13023. }
  13024. const auto &content_type =
  13025. detail::serialize_multipart_formdata_get_content_type(boundary);
  13026. auto content_length = detail::get_multipart_content_length(items, boundary);
  13027. return Post(path, headers, content_length,
  13028. detail::make_multipart_content_provider(items, boundary),
  13029. content_type, progress);
  13030. }
  13031. inline Result ClientImpl::Post(const std::string &path, const Headers &headers,
  13032. const char *body, size_t content_length,
  13033. const std::string &content_type,
  13034. UploadProgress progress) {
  13035. return send_with_content_provider_and_receiver(
  13036. "POST", path, headers, body, content_length, nullptr, nullptr,
  13037. content_type, nullptr, progress);
  13038. }
  13039. inline Result ClientImpl::Post(const std::string &path, const Headers &headers,
  13040. const std::string &body,
  13041. const std::string &content_type,
  13042. UploadProgress progress) {
  13043. return send_with_content_provider_and_receiver(
  13044. "POST", path, headers, body.data(), body.size(), nullptr, nullptr,
  13045. content_type, nullptr, progress);
  13046. }
  13047. inline Result ClientImpl::Post(const std::string &path, const Headers &headers,
  13048. size_t content_length,
  13049. ContentProvider content_provider,
  13050. const std::string &content_type,
  13051. UploadProgress progress) {
  13052. return send_with_content_provider_and_receiver(
  13053. "POST", path, headers, nullptr, content_length,
  13054. std::move(content_provider), nullptr, content_type, nullptr, progress);
  13055. }
  13056. inline Result ClientImpl::Post(const std::string &path, const Headers &headers,
  13057. size_t content_length,
  13058. ContentProvider content_provider,
  13059. const std::string &content_type,
  13060. ContentReceiver content_receiver,
  13061. DownloadProgress progress) {
  13062. return send_with_content_provider_and_receiver(
  13063. "POST", path, headers, nullptr, content_length,
  13064. std::move(content_provider), nullptr, content_type,
  13065. std::move(content_receiver), std::move(progress));
  13066. }
  13067. inline Result ClientImpl::Post(const std::string &path, const Headers &headers,
  13068. ContentProviderWithoutLength content_provider,
  13069. const std::string &content_type,
  13070. UploadProgress progress) {
  13071. return send_with_content_provider_and_receiver(
  13072. "POST", path, headers, nullptr, 0, nullptr, std::move(content_provider),
  13073. content_type, nullptr, progress);
  13074. }
  13075. inline Result ClientImpl::Post(const std::string &path, const Headers &headers,
  13076. ContentProviderWithoutLength content_provider,
  13077. const std::string &content_type,
  13078. ContentReceiver content_receiver,
  13079. DownloadProgress progress) {
  13080. return send_with_content_provider_and_receiver(
  13081. "POST", path, headers, nullptr, 0, nullptr, std::move(content_provider),
  13082. content_type, std::move(content_receiver), std::move(progress));
  13083. }
  13084. inline Result ClientImpl::Post(const std::string &path, const Headers &headers,
  13085. const UploadFormDataItems &items,
  13086. const FormDataProviderItems &provider_items,
  13087. UploadProgress progress) {
  13088. const auto &boundary = detail::make_multipart_data_boundary();
  13089. const auto &content_type =
  13090. detail::serialize_multipart_formdata_get_content_type(boundary);
  13091. return send_with_content_provider_and_receiver(
  13092. "POST", path, headers, nullptr, 0, nullptr,
  13093. get_multipart_content_provider(boundary, items, provider_items),
  13094. content_type, nullptr, progress);
  13095. }
  13096. inline Result ClientImpl::Post(const std::string &path, const Headers &headers,
  13097. const std::string &body,
  13098. const std::string &content_type,
  13099. ContentReceiver content_receiver,
  13100. DownloadProgress progress) {
  13101. Request req;
  13102. req.method = "POST";
  13103. req.path = path;
  13104. req.headers = headers;
  13105. req.body = body;
  13106. req.content_receiver =
  13107. [content_receiver](const char *data, size_t data_length,
  13108. size_t /*offset*/, size_t /*total_length*/) {
  13109. return content_receiver(data, data_length);
  13110. };
  13111. req.download_progress = std::move(progress);
  13112. if (max_timeout_msec_ > 0) {
  13113. req.start_time_ = std::chrono::steady_clock::now();
  13114. }
  13115. if (!content_type.empty()) { req.set_header("Content-Type", content_type); }
  13116. return send_(std::move(req));
  13117. }
  13118. inline Result ClientImpl::Put(const std::string &path) {
  13119. return Put(path, std::string(), std::string());
  13120. }
  13121. inline Result ClientImpl::Put(const std::string &path, const Headers &headers) {
  13122. return Put(path, headers, nullptr, 0, std::string());
  13123. }
  13124. inline Result ClientImpl::Put(const std::string &path, const char *body,
  13125. size_t content_length,
  13126. const std::string &content_type,
  13127. UploadProgress progress) {
  13128. return Put(path, Headers(), body, content_length, content_type, progress);
  13129. }
  13130. inline Result ClientImpl::Put(const std::string &path, const std::string &body,
  13131. const std::string &content_type,
  13132. UploadProgress progress) {
  13133. return Put(path, Headers(), body, content_type, progress);
  13134. }
  13135. inline Result ClientImpl::Put(const std::string &path, const Params &params) {
  13136. return Put(path, Headers(), params);
  13137. }
  13138. inline Result ClientImpl::Put(const std::string &path, size_t content_length,
  13139. ContentProvider content_provider,
  13140. const std::string &content_type,
  13141. UploadProgress progress) {
  13142. return Put(path, Headers(), content_length, std::move(content_provider),
  13143. content_type, progress);
  13144. }
  13145. inline Result ClientImpl::Put(const std::string &path, size_t content_length,
  13146. ContentProvider content_provider,
  13147. const std::string &content_type,
  13148. ContentReceiver content_receiver,
  13149. UploadProgress progress) {
  13150. return Put(path, Headers(), content_length, std::move(content_provider),
  13151. content_type, std::move(content_receiver), progress);
  13152. }
  13153. inline Result ClientImpl::Put(const std::string &path,
  13154. ContentProviderWithoutLength content_provider,
  13155. const std::string &content_type,
  13156. UploadProgress progress) {
  13157. return Put(path, Headers(), std::move(content_provider), content_type,
  13158. progress);
  13159. }
  13160. inline Result ClientImpl::Put(const std::string &path,
  13161. ContentProviderWithoutLength content_provider,
  13162. const std::string &content_type,
  13163. ContentReceiver content_receiver,
  13164. UploadProgress progress) {
  13165. return Put(path, Headers(), std::move(content_provider), content_type,
  13166. std::move(content_receiver), progress);
  13167. }
  13168. inline Result ClientImpl::Put(const std::string &path, const Headers &headers,
  13169. const Params &params) {
  13170. auto query = detail::params_to_query_str(params);
  13171. return Put(path, headers, query, "application/x-www-form-urlencoded");
  13172. }
  13173. inline Result ClientImpl::Put(const std::string &path,
  13174. const UploadFormDataItems &items,
  13175. UploadProgress progress) {
  13176. return Put(path, Headers(), items, progress);
  13177. }
  13178. inline Result ClientImpl::Put(const std::string &path, const Headers &headers,
  13179. const UploadFormDataItems &items,
  13180. UploadProgress progress) {
  13181. const auto &boundary = detail::make_multipart_data_boundary();
  13182. const auto &content_type =
  13183. detail::serialize_multipart_formdata_get_content_type(boundary);
  13184. auto content_length = detail::get_multipart_content_length(items, boundary);
  13185. return Put(path, headers, content_length,
  13186. detail::make_multipart_content_provider(items, boundary),
  13187. content_type, progress);
  13188. }
  13189. inline Result ClientImpl::Put(const std::string &path, const Headers &headers,
  13190. const UploadFormDataItems &items,
  13191. const std::string &boundary,
  13192. UploadProgress progress) {
  13193. if (!detail::is_multipart_boundary_chars_valid(boundary)) {
  13194. return Result{nullptr, Error::UnsupportedMultipartBoundaryChars};
  13195. }
  13196. const auto &content_type =
  13197. detail::serialize_multipart_formdata_get_content_type(boundary);
  13198. auto content_length = detail::get_multipart_content_length(items, boundary);
  13199. return Put(path, headers, content_length,
  13200. detail::make_multipart_content_provider(items, boundary),
  13201. content_type, progress);
  13202. }
  13203. inline Result ClientImpl::Put(const std::string &path, const Headers &headers,
  13204. const char *body, size_t content_length,
  13205. const std::string &content_type,
  13206. UploadProgress progress) {
  13207. return send_with_content_provider_and_receiver(
  13208. "PUT", path, headers, body, content_length, nullptr, nullptr,
  13209. content_type, nullptr, progress);
  13210. }
  13211. inline Result ClientImpl::Put(const std::string &path, const Headers &headers,
  13212. const std::string &body,
  13213. const std::string &content_type,
  13214. UploadProgress progress) {
  13215. return send_with_content_provider_and_receiver(
  13216. "PUT", path, headers, body.data(), body.size(), nullptr, nullptr,
  13217. content_type, nullptr, progress);
  13218. }
  13219. inline Result ClientImpl::Put(const std::string &path, const Headers &headers,
  13220. size_t content_length,
  13221. ContentProvider content_provider,
  13222. const std::string &content_type,
  13223. UploadProgress progress) {
  13224. return send_with_content_provider_and_receiver(
  13225. "PUT", path, headers, nullptr, content_length,
  13226. std::move(content_provider), nullptr, content_type, nullptr, progress);
  13227. }
  13228. inline Result ClientImpl::Put(const std::string &path, const Headers &headers,
  13229. size_t content_length,
  13230. ContentProvider content_provider,
  13231. const std::string &content_type,
  13232. ContentReceiver content_receiver,
  13233. UploadProgress progress) {
  13234. return send_with_content_provider_and_receiver(
  13235. "PUT", path, headers, nullptr, content_length,
  13236. std::move(content_provider), nullptr, content_type,
  13237. std::move(content_receiver), progress);
  13238. }
  13239. inline Result ClientImpl::Put(const std::string &path, const Headers &headers,
  13240. ContentProviderWithoutLength content_provider,
  13241. const std::string &content_type,
  13242. UploadProgress progress) {
  13243. return send_with_content_provider_and_receiver(
  13244. "PUT", path, headers, nullptr, 0, nullptr, std::move(content_provider),
  13245. content_type, nullptr, progress);
  13246. }
  13247. inline Result ClientImpl::Put(const std::string &path, const Headers &headers,
  13248. ContentProviderWithoutLength content_provider,
  13249. const std::string &content_type,
  13250. ContentReceiver content_receiver,
  13251. UploadProgress progress) {
  13252. return send_with_content_provider_and_receiver(
  13253. "PUT", path, headers, nullptr, 0, nullptr, std::move(content_provider),
  13254. content_type, std::move(content_receiver), progress);
  13255. }
  13256. inline Result ClientImpl::Put(const std::string &path, const Headers &headers,
  13257. const UploadFormDataItems &items,
  13258. const FormDataProviderItems &provider_items,
  13259. UploadProgress progress) {
  13260. const auto &boundary = detail::make_multipart_data_boundary();
  13261. const auto &content_type =
  13262. detail::serialize_multipart_formdata_get_content_type(boundary);
  13263. return send_with_content_provider_and_receiver(
  13264. "PUT", path, headers, nullptr, 0, nullptr,
  13265. get_multipart_content_provider(boundary, items, provider_items),
  13266. content_type, nullptr, progress);
  13267. }
  13268. inline Result ClientImpl::Put(const std::string &path, const Headers &headers,
  13269. const std::string &body,
  13270. const std::string &content_type,
  13271. ContentReceiver content_receiver,
  13272. DownloadProgress progress) {
  13273. Request req;
  13274. req.method = "PUT";
  13275. req.path = path;
  13276. req.headers = headers;
  13277. req.body = body;
  13278. req.content_receiver =
  13279. [content_receiver](const char *data, size_t data_length,
  13280. size_t /*offset*/, size_t /*total_length*/) {
  13281. return content_receiver(data, data_length);
  13282. };
  13283. req.download_progress = std::move(progress);
  13284. if (max_timeout_msec_ > 0) {
  13285. req.start_time_ = std::chrono::steady_clock::now();
  13286. }
  13287. if (!content_type.empty()) { req.set_header("Content-Type", content_type); }
  13288. return send_(std::move(req));
  13289. }
  13290. inline Result ClientImpl::Patch(const std::string &path) {
  13291. return Patch(path, std::string(), std::string());
  13292. }
  13293. inline Result ClientImpl::Patch(const std::string &path, const Headers &headers,
  13294. UploadProgress progress) {
  13295. return Patch(path, headers, nullptr, 0, std::string(), progress);
  13296. }
  13297. inline Result ClientImpl::Patch(const std::string &path, const char *body,
  13298. size_t content_length,
  13299. const std::string &content_type,
  13300. UploadProgress progress) {
  13301. return Patch(path, Headers(), body, content_length, content_type, progress);
  13302. }
  13303. inline Result ClientImpl::Patch(const std::string &path,
  13304. const std::string &body,
  13305. const std::string &content_type,
  13306. UploadProgress progress) {
  13307. return Patch(path, Headers(), body, content_type, progress);
  13308. }
  13309. inline Result ClientImpl::Patch(const std::string &path, const Params &params) {
  13310. return Patch(path, Headers(), params);
  13311. }
  13312. inline Result ClientImpl::Patch(const std::string &path, size_t content_length,
  13313. ContentProvider content_provider,
  13314. const std::string &content_type,
  13315. UploadProgress progress) {
  13316. return Patch(path, Headers(), content_length, std::move(content_provider),
  13317. content_type, progress);
  13318. }
  13319. inline Result ClientImpl::Patch(const std::string &path, size_t content_length,
  13320. ContentProvider content_provider,
  13321. const std::string &content_type,
  13322. ContentReceiver content_receiver,
  13323. UploadProgress progress) {
  13324. return Patch(path, Headers(), content_length, std::move(content_provider),
  13325. content_type, std::move(content_receiver), progress);
  13326. }
  13327. inline Result ClientImpl::Patch(const std::string &path,
  13328. ContentProviderWithoutLength content_provider,
  13329. const std::string &content_type,
  13330. UploadProgress progress) {
  13331. return Patch(path, Headers(), std::move(content_provider), content_type,
  13332. progress);
  13333. }
  13334. inline Result ClientImpl::Patch(const std::string &path,
  13335. ContentProviderWithoutLength content_provider,
  13336. const std::string &content_type,
  13337. ContentReceiver content_receiver,
  13338. UploadProgress progress) {
  13339. return Patch(path, Headers(), std::move(content_provider), content_type,
  13340. std::move(content_receiver), progress);
  13341. }
  13342. inline Result ClientImpl::Patch(const std::string &path, const Headers &headers,
  13343. const Params &params) {
  13344. auto query = detail::params_to_query_str(params);
  13345. return Patch(path, headers, query, "application/x-www-form-urlencoded");
  13346. }
  13347. inline Result ClientImpl::Patch(const std::string &path,
  13348. const UploadFormDataItems &items,
  13349. UploadProgress progress) {
  13350. return Patch(path, Headers(), items, progress);
  13351. }
  13352. inline Result ClientImpl::Patch(const std::string &path, const Headers &headers,
  13353. const UploadFormDataItems &items,
  13354. UploadProgress progress) {
  13355. const auto &boundary = detail::make_multipart_data_boundary();
  13356. const auto &content_type =
  13357. detail::serialize_multipart_formdata_get_content_type(boundary);
  13358. auto content_length = detail::get_multipart_content_length(items, boundary);
  13359. return Patch(path, headers, content_length,
  13360. detail::make_multipart_content_provider(items, boundary),
  13361. content_type, progress);
  13362. }
  13363. inline Result ClientImpl::Patch(const std::string &path, const Headers &headers,
  13364. const UploadFormDataItems &items,
  13365. const std::string &boundary,
  13366. UploadProgress progress) {
  13367. if (!detail::is_multipart_boundary_chars_valid(boundary)) {
  13368. return Result{nullptr, Error::UnsupportedMultipartBoundaryChars};
  13369. }
  13370. const auto &content_type =
  13371. detail::serialize_multipart_formdata_get_content_type(boundary);
  13372. auto content_length = detail::get_multipart_content_length(items, boundary);
  13373. return Patch(path, headers, content_length,
  13374. detail::make_multipart_content_provider(items, boundary),
  13375. content_type, progress);
  13376. }
  13377. inline Result ClientImpl::Patch(const std::string &path, const Headers &headers,
  13378. const char *body, size_t content_length,
  13379. const std::string &content_type,
  13380. UploadProgress progress) {
  13381. return send_with_content_provider_and_receiver(
  13382. "PATCH", path, headers, body, content_length, nullptr, nullptr,
  13383. content_type, nullptr, progress);
  13384. }
  13385. inline Result ClientImpl::Patch(const std::string &path, const Headers &headers,
  13386. const std::string &body,
  13387. const std::string &content_type,
  13388. UploadProgress progress) {
  13389. return send_with_content_provider_and_receiver(
  13390. "PATCH", path, headers, body.data(), body.size(), nullptr, nullptr,
  13391. content_type, nullptr, progress);
  13392. }
  13393. inline Result ClientImpl::Patch(const std::string &path, const Headers &headers,
  13394. size_t content_length,
  13395. ContentProvider content_provider,
  13396. const std::string &content_type,
  13397. UploadProgress progress) {
  13398. return send_with_content_provider_and_receiver(
  13399. "PATCH", path, headers, nullptr, content_length,
  13400. std::move(content_provider), nullptr, content_type, nullptr, progress);
  13401. }
  13402. inline Result ClientImpl::Patch(const std::string &path, const Headers &headers,
  13403. size_t content_length,
  13404. ContentProvider content_provider,
  13405. const std::string &content_type,
  13406. ContentReceiver content_receiver,
  13407. UploadProgress progress) {
  13408. return send_with_content_provider_and_receiver(
  13409. "PATCH", path, headers, nullptr, content_length,
  13410. std::move(content_provider), nullptr, content_type,
  13411. std::move(content_receiver), progress);
  13412. }
  13413. inline Result ClientImpl::Patch(const std::string &path, const Headers &headers,
  13414. ContentProviderWithoutLength content_provider,
  13415. const std::string &content_type,
  13416. UploadProgress progress) {
  13417. return send_with_content_provider_and_receiver(
  13418. "PATCH", path, headers, nullptr, 0, nullptr, std::move(content_provider),
  13419. content_type, nullptr, progress);
  13420. }
  13421. inline Result ClientImpl::Patch(const std::string &path, const Headers &headers,
  13422. ContentProviderWithoutLength content_provider,
  13423. const std::string &content_type,
  13424. ContentReceiver content_receiver,
  13425. UploadProgress progress) {
  13426. return send_with_content_provider_and_receiver(
  13427. "PATCH", path, headers, nullptr, 0, nullptr, std::move(content_provider),
  13428. content_type, std::move(content_receiver), progress);
  13429. }
  13430. inline Result ClientImpl::Patch(const std::string &path, const Headers &headers,
  13431. const UploadFormDataItems &items,
  13432. const FormDataProviderItems &provider_items,
  13433. UploadProgress progress) {
  13434. const auto &boundary = detail::make_multipart_data_boundary();
  13435. const auto &content_type =
  13436. detail::serialize_multipart_formdata_get_content_type(boundary);
  13437. return send_with_content_provider_and_receiver(
  13438. "PATCH", path, headers, nullptr, 0, nullptr,
  13439. get_multipart_content_provider(boundary, items, provider_items),
  13440. content_type, nullptr, progress);
  13441. }
  13442. inline Result ClientImpl::Patch(const std::string &path, const Headers &headers,
  13443. const std::string &body,
  13444. const std::string &content_type,
  13445. ContentReceiver content_receiver,
  13446. DownloadProgress progress) {
  13447. Request req;
  13448. req.method = "PATCH";
  13449. req.path = path;
  13450. req.headers = headers;
  13451. req.body = body;
  13452. req.content_receiver =
  13453. [content_receiver](const char *data, size_t data_length,
  13454. size_t /*offset*/, size_t /*total_length*/) {
  13455. return content_receiver(data, data_length);
  13456. };
  13457. req.download_progress = std::move(progress);
  13458. if (max_timeout_msec_ > 0) {
  13459. req.start_time_ = std::chrono::steady_clock::now();
  13460. }
  13461. if (!content_type.empty()) { req.set_header("Content-Type", content_type); }
  13462. return send_(std::move(req));
  13463. }
  13464. inline Result ClientImpl::Delete(const std::string &path,
  13465. DownloadProgress progress) {
  13466. return Delete(path, Headers(), std::string(), std::string(), progress);
  13467. }
  13468. inline Result ClientImpl::Delete(const std::string &path,
  13469. const Headers &headers,
  13470. DownloadProgress progress) {
  13471. return Delete(path, headers, std::string(), std::string(), progress);
  13472. }
  13473. inline Result ClientImpl::Delete(const std::string &path, const char *body,
  13474. size_t content_length,
  13475. const std::string &content_type,
  13476. DownloadProgress progress) {
  13477. return Delete(path, Headers(), body, content_length, content_type, progress);
  13478. }
  13479. inline Result ClientImpl::Delete(const std::string &path,
  13480. const std::string &body,
  13481. const std::string &content_type,
  13482. DownloadProgress progress) {
  13483. return Delete(path, Headers(), body.data(), body.size(), content_type,
  13484. progress);
  13485. }
  13486. inline Result ClientImpl::Delete(const std::string &path,
  13487. const Headers &headers,
  13488. const std::string &body,
  13489. const std::string &content_type,
  13490. DownloadProgress progress) {
  13491. return Delete(path, headers, body.data(), body.size(), content_type,
  13492. progress);
  13493. }
  13494. inline Result ClientImpl::Delete(const std::string &path, const Params &params,
  13495. DownloadProgress progress) {
  13496. return Delete(path, Headers(), params, progress);
  13497. }
  13498. inline Result ClientImpl::Delete(const std::string &path,
  13499. const Headers &headers, const Params &params,
  13500. DownloadProgress progress) {
  13501. auto query = detail::params_to_query_str(params);
  13502. return Delete(path, headers, query, "application/x-www-form-urlencoded",
  13503. progress);
  13504. }
  13505. inline Result ClientImpl::Delete(const std::string &path,
  13506. const Headers &headers, const char *body,
  13507. size_t content_length,
  13508. const std::string &content_type,
  13509. DownloadProgress progress) {
  13510. Request req;
  13511. req.method = "DELETE";
  13512. req.headers = headers;
  13513. req.path = path;
  13514. req.download_progress = std::move(progress);
  13515. if (max_timeout_msec_ > 0) {
  13516. req.start_time_ = std::chrono::steady_clock::now();
  13517. }
  13518. if (!content_type.empty()) { req.set_header("Content-Type", content_type); }
  13519. req.body.assign(body, content_length);
  13520. return send_(std::move(req));
  13521. }
  13522. inline Result ClientImpl::Options(const std::string &path) {
  13523. return Options(path, Headers());
  13524. }
  13525. inline Result ClientImpl::Options(const std::string &path,
  13526. const Headers &headers) {
  13527. Request req;
  13528. req.method = "OPTIONS";
  13529. req.headers = headers;
  13530. req.path = path;
  13531. if (max_timeout_msec_ > 0) {
  13532. req.start_time_ = std::chrono::steady_clock::now();
  13533. }
  13534. return send_(std::move(req));
  13535. }
  13536. inline void ClientImpl::stop() {
  13537. std::lock_guard<std::mutex> guard(socket_mutex_);
  13538. // If there is anything ongoing right now, the ONLY thread-safe thing we can
  13539. // do is to shutdown_socket, so that threads using this socket suddenly
  13540. // discover they can't read/write any more and error out. Everything else
  13541. // (closing the socket, shutting ssl down) is unsafe because these actions
  13542. // are not thread-safe.
  13543. if (socket_requests_in_flight_ > 0) {
  13544. shutdown_socket(socket_);
  13545. // Aside from that, we set a flag for the socket to be closed when we're
  13546. // done.
  13547. socket_should_be_closed_when_request_is_done_ = true;
  13548. return;
  13549. }
  13550. disconnect(/*gracefully=*/true);
  13551. }
  13552. inline std::string ClientImpl::host() const { return host_; }
  13553. inline int ClientImpl::port() const { return port_; }
  13554. inline size_t ClientImpl::is_socket_open() const {
  13555. std::lock_guard<std::mutex> guard(socket_mutex_);
  13556. return socket_.is_open();
  13557. }
  13558. inline socket_t ClientImpl::socket() const { return socket_.sock; }
  13559. inline void ClientImpl::set_connection_timeout(time_t sec, time_t usec) {
  13560. connection_timeout_sec_ = sec;
  13561. connection_timeout_usec_ = usec;
  13562. }
  13563. inline void ClientImpl::set_read_timeout(time_t sec, time_t usec) {
  13564. read_timeout_sec_ = sec;
  13565. read_timeout_usec_ = usec;
  13566. }
  13567. inline void ClientImpl::set_write_timeout(time_t sec, time_t usec) {
  13568. write_timeout_sec_ = sec;
  13569. write_timeout_usec_ = usec;
  13570. }
  13571. inline void ClientImpl::set_max_timeout(time_t msec) {
  13572. max_timeout_msec_ = msec;
  13573. }
  13574. inline void ClientImpl::set_basic_auth(const std::string &username,
  13575. const std::string &password) {
  13576. basic_auth_username_ = username;
  13577. basic_auth_password_ = password;
  13578. }
  13579. inline void ClientImpl::set_bearer_token_auth(const std::string &token) {
  13580. bearer_token_auth_token_ = token;
  13581. }
  13582. inline void ClientImpl::set_keep_alive(bool on) { keep_alive_ = on; }
  13583. inline void ClientImpl::set_follow_location(bool on) { follow_location_ = on; }
  13584. inline void ClientImpl::set_path_encode(bool on) { path_encode_ = on; }
  13585. inline void
  13586. ClientImpl::set_hostname_addr_map(std::map<std::string, std::string> addr_map) {
  13587. addr_map_ = std::move(addr_map);
  13588. }
  13589. inline void ClientImpl::set_default_headers(Headers headers) {
  13590. default_headers_ = std::move(headers);
  13591. }
  13592. inline void ClientImpl::set_header_writer(
  13593. std::function<ssize_t(Stream &, Headers &)> const &writer) {
  13594. header_writer_ = writer;
  13595. }
  13596. inline void ClientImpl::set_address_family(int family) {
  13597. address_family_ = family;
  13598. }
  13599. inline void ClientImpl::set_tcp_nodelay(bool on) { tcp_nodelay_ = on; }
  13600. inline void ClientImpl::set_ipv6_v6only(bool on) { ipv6_v6only_ = on; }
  13601. inline void ClientImpl::set_socket_options(SocketOptions socket_options) {
  13602. socket_options_ = std::move(socket_options);
  13603. }
  13604. inline void ClientImpl::set_compress(bool on) { compress_ = on; }
  13605. inline void ClientImpl::set_decompress(bool on) { decompress_ = on; }
  13606. inline void ClientImpl::set_payload_max_length(size_t length) {
  13607. payload_max_length_ = length;
  13608. has_payload_max_length_ = true;
  13609. }
  13610. inline void ClientImpl::set_interface(const std::string &intf) {
  13611. interface_ = intf;
  13612. }
  13613. inline void ClientImpl::set_proxy(const std::string &host, int port) {
  13614. proxy_host_ = host;
  13615. proxy_port_ = port;
  13616. std::lock_guard<std::mutex> guard(socket_mutex_);
  13617. disconnect(/*gracefully=*/true);
  13618. }
  13619. inline void ClientImpl::set_proxy_basic_auth(const std::string &username,
  13620. const std::string &password) {
  13621. proxy_basic_auth_username_ = username;
  13622. proxy_basic_auth_password_ = password;
  13623. }
  13624. inline void ClientImpl::set_proxy_bearer_token_auth(const std::string &token) {
  13625. proxy_bearer_token_auth_token_ = token;
  13626. }
  13627. inline void ClientImpl::set_no_proxy(const std::vector<std::string> &patterns) {
  13628. std::vector<detail::NoProxyEntry> parsed;
  13629. parsed.reserve(patterns.size());
  13630. for (const auto &p : patterns) {
  13631. auto trimmed = detail::trim_copy(p);
  13632. if (trimmed.empty()) { continue; }
  13633. detail::NoProxyEntry entry;
  13634. if (detail::parse_no_proxy_entry(trimmed, entry)) {
  13635. parsed.push_back(std::move(entry));
  13636. }
  13637. }
  13638. no_proxy_entries_ = std::move(parsed);
  13639. std::lock_guard<std::mutex> guard(socket_mutex_);
  13640. disconnect(/*gracefully=*/true);
  13641. }
  13642. #ifdef CPPHTTPLIB_SSL_ENABLED
  13643. inline void ClientImpl::set_digest_auth(const std::string &username,
  13644. const std::string &password) {
  13645. digest_auth_username_ = username;
  13646. digest_auth_password_ = password;
  13647. }
  13648. inline void ClientImpl::set_ca_cert_path(const std::string &ca_cert_file_path,
  13649. const std::string &ca_cert_dir_path) {
  13650. ca_cert_file_path_ = ca_cert_file_path;
  13651. ca_cert_dir_path_ = ca_cert_dir_path;
  13652. }
  13653. inline void ClientImpl::set_proxy_digest_auth(const std::string &username,
  13654. const std::string &password) {
  13655. proxy_digest_auth_username_ = username;
  13656. proxy_digest_auth_password_ = password;
  13657. }
  13658. inline void ClientImpl::enable_server_certificate_verification(bool enabled) {
  13659. server_certificate_verification_ = enabled;
  13660. }
  13661. inline void ClientImpl::enable_server_hostname_verification(bool enabled) {
  13662. server_hostname_verification_ = enabled;
  13663. }
  13664. inline void ClientImpl::enable_system_ca(bool enabled) {
  13665. system_ca_mode_ = enabled ? SystemCAMode::Enabled : SystemCAMode::Disabled;
  13666. }
  13667. #endif
  13668. inline void ClientImpl::set_logger(Logger logger) {
  13669. logger_ = std::move(logger);
  13670. }
  13671. inline void ClientImpl::set_error_logger(ErrorLogger error_logger) {
  13672. error_logger_ = std::move(error_logger);
  13673. }
  13674. /*
  13675. * SSL/TLS Common Implementation
  13676. */
  13677. inline ClientConnection::~ClientConnection() {
  13678. #ifdef CPPHTTPLIB_SSL_ENABLED
  13679. if (session) {
  13680. tls::shutdown(session, true);
  13681. tls::free_session(session);
  13682. session = nullptr;
  13683. }
  13684. #endif
  13685. if (sock != INVALID_SOCKET) {
  13686. detail::close_socket(sock);
  13687. sock = INVALID_SOCKET;
  13688. }
  13689. }
  13690. // Universal client implementation
  13691. inline Client::Client(const std::string &scheme_host_port)
  13692. : Client(scheme_host_port, std::string(), std::string()) {}
  13693. inline Client::Client(const std::string &scheme_host_port,
  13694. const std::string &client_cert_path,
  13695. const std::string &client_key_path) {
  13696. detail::UrlComponents uc;
  13697. if (detail::parse_url(scheme_host_port, uc) && !uc.host.empty()) {
  13698. auto &scheme = uc.scheme;
  13699. #ifdef CPPHTTPLIB_SSL_ENABLED
  13700. if (!scheme.empty() && (scheme != "http" && scheme != "https")) {
  13701. #else
  13702. if (!scheme.empty() && scheme != "http") {
  13703. #endif
  13704. #ifndef CPPHTTPLIB_NO_EXCEPTIONS
  13705. std::string msg = "'" + scheme + "' scheme is not supported.";
  13706. throw std::invalid_argument(msg);
  13707. #endif
  13708. return;
  13709. }
  13710. auto is_ssl = scheme == "https";
  13711. auto host = std::move(uc.host);
  13712. auto port = is_ssl ? 443 : 80;
  13713. if (!uc.port.empty() && !detail::parse_port(uc.port, port)) { return; }
  13714. if (is_ssl) {
  13715. #ifdef CPPHTTPLIB_SSL_ENABLED
  13716. cli_ = detail::make_unique<SSLClient>(host, port, client_cert_path,
  13717. client_key_path);
  13718. is_ssl_ = is_ssl;
  13719. #endif
  13720. } else {
  13721. cli_ = detail::make_unique<ClientImpl>(host, port, client_cert_path,
  13722. client_key_path);
  13723. }
  13724. } else {
  13725. // NOTE: Update TEST(UniversalClientImplTest, Ipv6LiteralAddress)
  13726. // if port param below changes.
  13727. cli_ = detail::make_unique<ClientImpl>(scheme_host_port, 80,
  13728. client_cert_path, client_key_path);
  13729. }
  13730. }
  13731. inline Client::Client(const std::string &host, int port)
  13732. : Client(host, port, std::string(), std::string()) {}
  13733. inline Client::Client(const std::string &host, int port,
  13734. const std::string &client_cert_path,
  13735. const std::string &client_key_path)
  13736. : cli_(detail::make_unique<ClientImpl>(host, port, client_cert_path,
  13737. client_key_path)) {}
  13738. inline Client::~Client() = default;
  13739. inline bool Client::is_valid() const {
  13740. return cli_ != nullptr && cli_->is_valid();
  13741. }
  13742. inline Result Client::Get(const std::string &path, DownloadProgress progress) {
  13743. return cli_->Get(path, std::move(progress));
  13744. }
  13745. inline Result Client::Get(const std::string &path, const Headers &headers,
  13746. DownloadProgress progress) {
  13747. return cli_->Get(path, headers, std::move(progress));
  13748. }
  13749. inline Result Client::Get(const std::string &path,
  13750. ContentReceiver content_receiver,
  13751. DownloadProgress progress) {
  13752. return cli_->Get(path, std::move(content_receiver), std::move(progress));
  13753. }
  13754. inline Result Client::Get(const std::string &path, const Headers &headers,
  13755. ContentReceiver content_receiver,
  13756. DownloadProgress progress) {
  13757. return cli_->Get(path, headers, std::move(content_receiver),
  13758. std::move(progress));
  13759. }
  13760. inline Result Client::Get(const std::string &path,
  13761. ResponseHandler response_handler,
  13762. ContentReceiver content_receiver,
  13763. DownloadProgress progress) {
  13764. return cli_->Get(path, std::move(response_handler),
  13765. std::move(content_receiver), std::move(progress));
  13766. }
  13767. inline Result Client::Get(const std::string &path, const Headers &headers,
  13768. ResponseHandler response_handler,
  13769. ContentReceiver content_receiver,
  13770. DownloadProgress progress) {
  13771. return cli_->Get(path, headers, std::move(response_handler),
  13772. std::move(content_receiver), std::move(progress));
  13773. }
  13774. inline Result Client::Get(const std::string &path, const Params &params,
  13775. DownloadProgress progress) {
  13776. return cli_->Get(path, params, std::move(progress));
  13777. }
  13778. inline Result Client::Get(const std::string &path, const Params &params,
  13779. const Headers &headers, DownloadProgress progress) {
  13780. return cli_->Get(path, params, headers, std::move(progress));
  13781. }
  13782. inline Result Client::Get(const std::string &path, const Params &params,
  13783. const Headers &headers,
  13784. ContentReceiver content_receiver,
  13785. DownloadProgress progress) {
  13786. return cli_->Get(path, params, headers, std::move(content_receiver),
  13787. std::move(progress));
  13788. }
  13789. inline Result Client::Get(const std::string &path, const Params &params,
  13790. const Headers &headers,
  13791. ResponseHandler response_handler,
  13792. ContentReceiver content_receiver,
  13793. DownloadProgress progress) {
  13794. return cli_->Get(path, params, headers, std::move(response_handler),
  13795. std::move(content_receiver), std::move(progress));
  13796. }
  13797. inline Result Client::Head(const std::string &path) { return cli_->Head(path); }
  13798. inline Result Client::Head(const std::string &path, const Headers &headers) {
  13799. return cli_->Head(path, headers);
  13800. }
  13801. inline Result Client::Post(const std::string &path) { return cli_->Post(path); }
  13802. inline Result Client::Post(const std::string &path, const Headers &headers) {
  13803. return cli_->Post(path, headers);
  13804. }
  13805. inline Result Client::Post(const std::string &path, const char *body,
  13806. size_t content_length,
  13807. const std::string &content_type,
  13808. UploadProgress progress) {
  13809. return cli_->Post(path, body, content_length, content_type, progress);
  13810. }
  13811. inline Result Client::Post(const std::string &path, const Headers &headers,
  13812. const char *body, size_t content_length,
  13813. const std::string &content_type,
  13814. UploadProgress progress) {
  13815. return cli_->Post(path, headers, body, content_length, content_type,
  13816. progress);
  13817. }
  13818. inline Result Client::Post(const std::string &path, const std::string &body,
  13819. const std::string &content_type,
  13820. UploadProgress progress) {
  13821. return cli_->Post(path, body, content_type, progress);
  13822. }
  13823. inline Result Client::Post(const std::string &path, const Headers &headers,
  13824. const std::string &body,
  13825. const std::string &content_type,
  13826. UploadProgress progress) {
  13827. return cli_->Post(path, headers, body, content_type, progress);
  13828. }
  13829. inline Result Client::Post(const std::string &path, size_t content_length,
  13830. ContentProvider content_provider,
  13831. const std::string &content_type,
  13832. UploadProgress progress) {
  13833. return cli_->Post(path, content_length, std::move(content_provider),
  13834. content_type, progress);
  13835. }
  13836. inline Result Client::Post(const std::string &path, size_t content_length,
  13837. ContentProvider content_provider,
  13838. const std::string &content_type,
  13839. ContentReceiver content_receiver,
  13840. UploadProgress progress) {
  13841. return cli_->Post(path, content_length, std::move(content_provider),
  13842. content_type, std::move(content_receiver), progress);
  13843. }
  13844. inline Result Client::Post(const std::string &path,
  13845. ContentProviderWithoutLength content_provider,
  13846. const std::string &content_type,
  13847. UploadProgress progress) {
  13848. return cli_->Post(path, std::move(content_provider), content_type, progress);
  13849. }
  13850. inline Result Client::Post(const std::string &path,
  13851. ContentProviderWithoutLength content_provider,
  13852. const std::string &content_type,
  13853. ContentReceiver content_receiver,
  13854. UploadProgress progress) {
  13855. return cli_->Post(path, std::move(content_provider), content_type,
  13856. std::move(content_receiver), progress);
  13857. }
  13858. inline Result Client::Post(const std::string &path, const Headers &headers,
  13859. size_t content_length,
  13860. ContentProvider content_provider,
  13861. const std::string &content_type,
  13862. UploadProgress progress) {
  13863. return cli_->Post(path, headers, content_length, std::move(content_provider),
  13864. content_type, progress);
  13865. }
  13866. inline Result Client::Post(const std::string &path, const Headers &headers,
  13867. size_t content_length,
  13868. ContentProvider content_provider,
  13869. const std::string &content_type,
  13870. ContentReceiver content_receiver,
  13871. DownloadProgress progress) {
  13872. return cli_->Post(path, headers, content_length, std::move(content_provider),
  13873. content_type, std::move(content_receiver), progress);
  13874. }
  13875. inline Result Client::Post(const std::string &path, const Headers &headers,
  13876. ContentProviderWithoutLength content_provider,
  13877. const std::string &content_type,
  13878. UploadProgress progress) {
  13879. return cli_->Post(path, headers, std::move(content_provider), content_type,
  13880. progress);
  13881. }
  13882. inline Result Client::Post(const std::string &path, const Headers &headers,
  13883. ContentProviderWithoutLength content_provider,
  13884. const std::string &content_type,
  13885. ContentReceiver content_receiver,
  13886. DownloadProgress progress) {
  13887. return cli_->Post(path, headers, std::move(content_provider), content_type,
  13888. std::move(content_receiver), progress);
  13889. }
  13890. inline Result Client::Post(const std::string &path, const Params &params) {
  13891. return cli_->Post(path, params);
  13892. }
  13893. inline Result Client::Post(const std::string &path, const Headers &headers,
  13894. const Params &params) {
  13895. return cli_->Post(path, headers, params);
  13896. }
  13897. inline Result Client::Post(const std::string &path,
  13898. const UploadFormDataItems &items,
  13899. UploadProgress progress) {
  13900. return cli_->Post(path, items, progress);
  13901. }
  13902. inline Result Client::Post(const std::string &path, const Headers &headers,
  13903. const UploadFormDataItems &items,
  13904. UploadProgress progress) {
  13905. return cli_->Post(path, headers, items, progress);
  13906. }
  13907. inline Result Client::Post(const std::string &path, const Headers &headers,
  13908. const UploadFormDataItems &items,
  13909. const std::string &boundary,
  13910. UploadProgress progress) {
  13911. return cli_->Post(path, headers, items, boundary, progress);
  13912. }
  13913. inline Result Client::Post(const std::string &path, const Headers &headers,
  13914. const UploadFormDataItems &items,
  13915. const FormDataProviderItems &provider_items,
  13916. UploadProgress progress) {
  13917. return cli_->Post(path, headers, items, provider_items, progress);
  13918. }
  13919. inline Result Client::Post(const std::string &path, const Headers &headers,
  13920. const std::string &body,
  13921. const std::string &content_type,
  13922. ContentReceiver content_receiver,
  13923. DownloadProgress progress) {
  13924. return cli_->Post(path, headers, body, content_type,
  13925. std::move(content_receiver), progress);
  13926. }
  13927. inline Result Client::Put(const std::string &path) { return cli_->Put(path); }
  13928. inline Result Client::Put(const std::string &path, const Headers &headers) {
  13929. return cli_->Put(path, headers);
  13930. }
  13931. inline Result Client::Put(const std::string &path, const char *body,
  13932. size_t content_length,
  13933. const std::string &content_type,
  13934. UploadProgress progress) {
  13935. return cli_->Put(path, body, content_length, content_type, progress);
  13936. }
  13937. inline Result Client::Put(const std::string &path, const Headers &headers,
  13938. const char *body, size_t content_length,
  13939. const std::string &content_type,
  13940. UploadProgress progress) {
  13941. return cli_->Put(path, headers, body, content_length, content_type, progress);
  13942. }
  13943. inline Result Client::Put(const std::string &path, const std::string &body,
  13944. const std::string &content_type,
  13945. UploadProgress progress) {
  13946. return cli_->Put(path, body, content_type, progress);
  13947. }
  13948. inline Result Client::Put(const std::string &path, const Headers &headers,
  13949. const std::string &body,
  13950. const std::string &content_type,
  13951. UploadProgress progress) {
  13952. return cli_->Put(path, headers, body, content_type, progress);
  13953. }
  13954. inline Result Client::Put(const std::string &path, size_t content_length,
  13955. ContentProvider content_provider,
  13956. const std::string &content_type,
  13957. UploadProgress progress) {
  13958. return cli_->Put(path, content_length, std::move(content_provider),
  13959. content_type, progress);
  13960. }
  13961. inline Result Client::Put(const std::string &path, size_t content_length,
  13962. ContentProvider content_provider,
  13963. const std::string &content_type,
  13964. ContentReceiver content_receiver,
  13965. UploadProgress progress) {
  13966. return cli_->Put(path, content_length, std::move(content_provider),
  13967. content_type, std::move(content_receiver), progress);
  13968. }
  13969. inline Result Client::Put(const std::string &path,
  13970. ContentProviderWithoutLength content_provider,
  13971. const std::string &content_type,
  13972. UploadProgress progress) {
  13973. return cli_->Put(path, std::move(content_provider), content_type, progress);
  13974. }
  13975. inline Result Client::Put(const std::string &path,
  13976. ContentProviderWithoutLength content_provider,
  13977. const std::string &content_type,
  13978. ContentReceiver content_receiver,
  13979. UploadProgress progress) {
  13980. return cli_->Put(path, std::move(content_provider), content_type,
  13981. std::move(content_receiver), progress);
  13982. }
  13983. inline Result Client::Put(const std::string &path, const Headers &headers,
  13984. size_t content_length,
  13985. ContentProvider content_provider,
  13986. const std::string &content_type,
  13987. UploadProgress progress) {
  13988. return cli_->Put(path, headers, content_length, std::move(content_provider),
  13989. content_type, progress);
  13990. }
  13991. inline Result Client::Put(const std::string &path, const Headers &headers,
  13992. size_t content_length,
  13993. ContentProvider content_provider,
  13994. const std::string &content_type,
  13995. ContentReceiver content_receiver,
  13996. UploadProgress progress) {
  13997. return cli_->Put(path, headers, content_length, std::move(content_provider),
  13998. content_type, std::move(content_receiver), progress);
  13999. }
  14000. inline Result Client::Put(const std::string &path, const Headers &headers,
  14001. ContentProviderWithoutLength content_provider,
  14002. const std::string &content_type,
  14003. UploadProgress progress) {
  14004. return cli_->Put(path, headers, std::move(content_provider), content_type,
  14005. progress);
  14006. }
  14007. inline Result Client::Put(const std::string &path, const Headers &headers,
  14008. ContentProviderWithoutLength content_provider,
  14009. const std::string &content_type,
  14010. ContentReceiver content_receiver,
  14011. UploadProgress progress) {
  14012. return cli_->Put(path, headers, std::move(content_provider), content_type,
  14013. std::move(content_receiver), progress);
  14014. }
  14015. inline Result Client::Put(const std::string &path, const Params &params) {
  14016. return cli_->Put(path, params);
  14017. }
  14018. inline Result Client::Put(const std::string &path, const Headers &headers,
  14019. const Params &params) {
  14020. return cli_->Put(path, headers, params);
  14021. }
  14022. inline Result Client::Put(const std::string &path,
  14023. const UploadFormDataItems &items,
  14024. UploadProgress progress) {
  14025. return cli_->Put(path, items, progress);
  14026. }
  14027. inline Result Client::Put(const std::string &path, const Headers &headers,
  14028. const UploadFormDataItems &items,
  14029. UploadProgress progress) {
  14030. return cli_->Put(path, headers, items, progress);
  14031. }
  14032. inline Result Client::Put(const std::string &path, const Headers &headers,
  14033. const UploadFormDataItems &items,
  14034. const std::string &boundary,
  14035. UploadProgress progress) {
  14036. return cli_->Put(path, headers, items, boundary, progress);
  14037. }
  14038. inline Result Client::Put(const std::string &path, const Headers &headers,
  14039. const UploadFormDataItems &items,
  14040. const FormDataProviderItems &provider_items,
  14041. UploadProgress progress) {
  14042. return cli_->Put(path, headers, items, provider_items, progress);
  14043. }
  14044. inline Result Client::Put(const std::string &path, const Headers &headers,
  14045. const std::string &body,
  14046. const std::string &content_type,
  14047. ContentReceiver content_receiver,
  14048. DownloadProgress progress) {
  14049. return cli_->Put(path, headers, body, content_type, content_receiver,
  14050. progress);
  14051. }
  14052. inline Result Client::Patch(const std::string &path) {
  14053. return cli_->Patch(path);
  14054. }
  14055. inline Result Client::Patch(const std::string &path, const Headers &headers) {
  14056. return cli_->Patch(path, headers);
  14057. }
  14058. inline Result Client::Patch(const std::string &path, const char *body,
  14059. size_t content_length,
  14060. const std::string &content_type,
  14061. UploadProgress progress) {
  14062. return cli_->Patch(path, body, content_length, content_type, progress);
  14063. }
  14064. inline Result Client::Patch(const std::string &path, const Headers &headers,
  14065. const char *body, size_t content_length,
  14066. const std::string &content_type,
  14067. UploadProgress progress) {
  14068. return cli_->Patch(path, headers, body, content_length, content_type,
  14069. progress);
  14070. }
  14071. inline Result Client::Patch(const std::string &path, const std::string &body,
  14072. const std::string &content_type,
  14073. UploadProgress progress) {
  14074. return cli_->Patch(path, body, content_type, progress);
  14075. }
  14076. inline Result Client::Patch(const std::string &path, const Headers &headers,
  14077. const std::string &body,
  14078. const std::string &content_type,
  14079. UploadProgress progress) {
  14080. return cli_->Patch(path, headers, body, content_type, progress);
  14081. }
  14082. inline Result Client::Patch(const std::string &path, size_t content_length,
  14083. ContentProvider content_provider,
  14084. const std::string &content_type,
  14085. UploadProgress progress) {
  14086. return cli_->Patch(path, content_length, std::move(content_provider),
  14087. content_type, progress);
  14088. }
  14089. inline Result Client::Patch(const std::string &path, size_t content_length,
  14090. ContentProvider content_provider,
  14091. const std::string &content_type,
  14092. ContentReceiver content_receiver,
  14093. UploadProgress progress) {
  14094. return cli_->Patch(path, content_length, std::move(content_provider),
  14095. content_type, std::move(content_receiver), progress);
  14096. }
  14097. inline Result Client::Patch(const std::string &path,
  14098. ContentProviderWithoutLength content_provider,
  14099. const std::string &content_type,
  14100. UploadProgress progress) {
  14101. return cli_->Patch(path, std::move(content_provider), content_type, progress);
  14102. }
  14103. inline Result Client::Patch(const std::string &path,
  14104. ContentProviderWithoutLength content_provider,
  14105. const std::string &content_type,
  14106. ContentReceiver content_receiver,
  14107. UploadProgress progress) {
  14108. return cli_->Patch(path, std::move(content_provider), content_type,
  14109. std::move(content_receiver), progress);
  14110. }
  14111. inline Result Client::Patch(const std::string &path, const Headers &headers,
  14112. size_t content_length,
  14113. ContentProvider content_provider,
  14114. const std::string &content_type,
  14115. UploadProgress progress) {
  14116. return cli_->Patch(path, headers, content_length, std::move(content_provider),
  14117. content_type, progress);
  14118. }
  14119. inline Result Client::Patch(const std::string &path, const Headers &headers,
  14120. size_t content_length,
  14121. ContentProvider content_provider,
  14122. const std::string &content_type,
  14123. ContentReceiver content_receiver,
  14124. UploadProgress progress) {
  14125. return cli_->Patch(path, headers, content_length, std::move(content_provider),
  14126. content_type, std::move(content_receiver), progress);
  14127. }
  14128. inline Result Client::Patch(const std::string &path, const Headers &headers,
  14129. ContentProviderWithoutLength content_provider,
  14130. const std::string &content_type,
  14131. UploadProgress progress) {
  14132. return cli_->Patch(path, headers, std::move(content_provider), content_type,
  14133. progress);
  14134. }
  14135. inline Result Client::Patch(const std::string &path, const Headers &headers,
  14136. ContentProviderWithoutLength content_provider,
  14137. const std::string &content_type,
  14138. ContentReceiver content_receiver,
  14139. UploadProgress progress) {
  14140. return cli_->Patch(path, headers, std::move(content_provider), content_type,
  14141. std::move(content_receiver), progress);
  14142. }
  14143. inline Result Client::Patch(const std::string &path, const Params &params) {
  14144. return cli_->Patch(path, params);
  14145. }
  14146. inline Result Client::Patch(const std::string &path, const Headers &headers,
  14147. const Params &params) {
  14148. return cli_->Patch(path, headers, params);
  14149. }
  14150. inline Result Client::Patch(const std::string &path,
  14151. const UploadFormDataItems &items,
  14152. UploadProgress progress) {
  14153. return cli_->Patch(path, items, progress);
  14154. }
  14155. inline Result Client::Patch(const std::string &path, const Headers &headers,
  14156. const UploadFormDataItems &items,
  14157. UploadProgress progress) {
  14158. return cli_->Patch(path, headers, items, progress);
  14159. }
  14160. inline Result Client::Patch(const std::string &path, const Headers &headers,
  14161. const UploadFormDataItems &items,
  14162. const std::string &boundary,
  14163. UploadProgress progress) {
  14164. return cli_->Patch(path, headers, items, boundary, progress);
  14165. }
  14166. inline Result Client::Patch(const std::string &path, const Headers &headers,
  14167. const UploadFormDataItems &items,
  14168. const FormDataProviderItems &provider_items,
  14169. UploadProgress progress) {
  14170. return cli_->Patch(path, headers, items, provider_items, progress);
  14171. }
  14172. inline Result Client::Patch(const std::string &path, const Headers &headers,
  14173. const std::string &body,
  14174. const std::string &content_type,
  14175. ContentReceiver content_receiver,
  14176. DownloadProgress progress) {
  14177. return cli_->Patch(path, headers, body, content_type, content_receiver,
  14178. progress);
  14179. }
  14180. inline Result Client::Delete(const std::string &path,
  14181. DownloadProgress progress) {
  14182. return cli_->Delete(path, progress);
  14183. }
  14184. inline Result Client::Delete(const std::string &path, const Headers &headers,
  14185. DownloadProgress progress) {
  14186. return cli_->Delete(path, headers, progress);
  14187. }
  14188. inline Result Client::Delete(const std::string &path, const char *body,
  14189. size_t content_length,
  14190. const std::string &content_type,
  14191. DownloadProgress progress) {
  14192. return cli_->Delete(path, body, content_length, content_type, progress);
  14193. }
  14194. inline Result Client::Delete(const std::string &path, const Headers &headers,
  14195. const char *body, size_t content_length,
  14196. const std::string &content_type,
  14197. DownloadProgress progress) {
  14198. return cli_->Delete(path, headers, body, content_length, content_type,
  14199. progress);
  14200. }
  14201. inline Result Client::Delete(const std::string &path, const std::string &body,
  14202. const std::string &content_type,
  14203. DownloadProgress progress) {
  14204. return cli_->Delete(path, body, content_type, progress);
  14205. }
  14206. inline Result Client::Delete(const std::string &path, const Headers &headers,
  14207. const std::string &body,
  14208. const std::string &content_type,
  14209. DownloadProgress progress) {
  14210. return cli_->Delete(path, headers, body, content_type, progress);
  14211. }
  14212. inline Result Client::Delete(const std::string &path, const Params &params,
  14213. DownloadProgress progress) {
  14214. return cli_->Delete(path, params, progress);
  14215. }
  14216. inline Result Client::Delete(const std::string &path, const Headers &headers,
  14217. const Params &params, DownloadProgress progress) {
  14218. return cli_->Delete(path, headers, params, progress);
  14219. }
  14220. inline Result Client::Options(const std::string &path) {
  14221. return cli_->Options(path);
  14222. }
  14223. inline Result Client::Options(const std::string &path, const Headers &headers) {
  14224. return cli_->Options(path, headers);
  14225. }
  14226. inline ClientImpl::StreamHandle
  14227. Client::open_stream(const std::string &method, const std::string &path,
  14228. const Params &params, const Headers &headers,
  14229. const std::string &body, const std::string &content_type) {
  14230. return cli_->open_stream(method, path, params, headers, body, content_type);
  14231. }
  14232. inline bool Client::send(Request &req, Response &res, Error &error) {
  14233. return cli_->send(req, res, error);
  14234. }
  14235. inline Result Client::send(const Request &req) { return cli_->send(req); }
  14236. inline void Client::stop() { cli_->stop(); }
  14237. inline std::string Client::host() const { return cli_->host(); }
  14238. inline int Client::port() const { return cli_->port(); }
  14239. inline size_t Client::is_socket_open() const { return cli_->is_socket_open(); }
  14240. inline socket_t Client::socket() const { return cli_->socket(); }
  14241. inline void
  14242. Client::set_hostname_addr_map(std::map<std::string, std::string> addr_map) {
  14243. cli_->set_hostname_addr_map(std::move(addr_map));
  14244. }
  14245. inline void Client::set_default_headers(Headers headers) {
  14246. cli_->set_default_headers(std::move(headers));
  14247. }
  14248. inline void Client::set_header_writer(
  14249. std::function<ssize_t(Stream &, Headers &)> const &writer) {
  14250. cli_->set_header_writer(writer);
  14251. }
  14252. inline void Client::set_address_family(int family) {
  14253. cli_->set_address_family(family);
  14254. }
  14255. inline void Client::set_tcp_nodelay(bool on) { cli_->set_tcp_nodelay(on); }
  14256. inline void Client::set_socket_options(SocketOptions socket_options) {
  14257. cli_->set_socket_options(std::move(socket_options));
  14258. }
  14259. inline void Client::set_connection_timeout(time_t sec, time_t usec) {
  14260. cli_->set_connection_timeout(sec, usec);
  14261. }
  14262. inline void Client::set_read_timeout(time_t sec, time_t usec) {
  14263. cli_->set_read_timeout(sec, usec);
  14264. }
  14265. inline void Client::set_write_timeout(time_t sec, time_t usec) {
  14266. cli_->set_write_timeout(sec, usec);
  14267. }
  14268. inline void Client::set_basic_auth(const std::string &username,
  14269. const std::string &password) {
  14270. cli_->set_basic_auth(username, password);
  14271. }
  14272. inline void Client::set_bearer_token_auth(const std::string &token) {
  14273. cli_->set_bearer_token_auth(token);
  14274. }
  14275. inline void Client::set_keep_alive(bool on) { cli_->set_keep_alive(on); }
  14276. inline void Client::set_follow_location(bool on) {
  14277. cli_->set_follow_location(on);
  14278. }
  14279. inline void Client::set_path_encode(bool on) { cli_->set_path_encode(on); }
  14280. inline void Client::set_compress(bool on) { cli_->set_compress(on); }
  14281. inline void Client::set_decompress(bool on) { cli_->set_decompress(on); }
  14282. inline void Client::set_payload_max_length(size_t length) {
  14283. cli_->set_payload_max_length(length);
  14284. }
  14285. inline void Client::set_interface(const std::string &intf) {
  14286. cli_->set_interface(intf);
  14287. }
  14288. inline void Client::set_proxy(const std::string &host, int port) {
  14289. cli_->set_proxy(host, port);
  14290. }
  14291. inline void Client::set_proxy_basic_auth(const std::string &username,
  14292. const std::string &password) {
  14293. cli_->set_proxy_basic_auth(username, password);
  14294. }
  14295. inline void Client::set_proxy_bearer_token_auth(const std::string &token) {
  14296. cli_->set_proxy_bearer_token_auth(token);
  14297. }
  14298. inline void Client::set_no_proxy(const std::vector<std::string> &patterns) {
  14299. cli_->set_no_proxy(patterns);
  14300. }
  14301. inline void Client::set_logger(Logger logger) {
  14302. cli_->set_logger(std::move(logger));
  14303. }
  14304. inline void Client::set_error_logger(ErrorLogger error_logger) {
  14305. cli_->set_error_logger(std::move(error_logger));
  14306. }
  14307. /*
  14308. * Group 6: SSL Server and Client implementation
  14309. */
  14310. #ifdef CPPHTTPLIB_SSL_ENABLED
  14311. // SSL HTTP server implementation
  14312. inline SSLServer::SSLServer(const char *cert_path, const char *private_key_path,
  14313. const char *client_ca_cert_file_path,
  14314. const char *client_ca_cert_dir_path,
  14315. const char *private_key_password) {
  14316. using namespace tls;
  14317. ctx_ = create_server_context();
  14318. if (!ctx_) { return; }
  14319. // Load server certificate and private key
  14320. if (!set_server_cert_file(ctx_, cert_path, private_key_path,
  14321. private_key_password)) {
  14322. last_ssl_error_ = static_cast<int>(get_error());
  14323. free_context(ctx_);
  14324. ctx_ = nullptr;
  14325. return;
  14326. }
  14327. // Load client CA certificates for client authentication
  14328. if (client_ca_cert_file_path || client_ca_cert_dir_path) {
  14329. if (!set_client_ca_file(ctx_, client_ca_cert_file_path,
  14330. client_ca_cert_dir_path)) {
  14331. last_ssl_error_ = static_cast<int>(get_error());
  14332. free_context(ctx_);
  14333. ctx_ = nullptr;
  14334. return;
  14335. }
  14336. // Enable client certificate verification
  14337. set_verify_client(ctx_, true);
  14338. }
  14339. }
  14340. inline SSLServer::SSLServer(const PemMemory &pem) {
  14341. using namespace tls;
  14342. ctx_ = create_server_context();
  14343. if (ctx_) {
  14344. if (!set_server_cert_pem(ctx_, pem.cert_pem, pem.key_pem,
  14345. pem.private_key_password)) {
  14346. last_ssl_error_ = static_cast<int>(get_error());
  14347. free_context(ctx_);
  14348. ctx_ = nullptr;
  14349. } else if (pem.client_ca_pem && pem.client_ca_pem_len > 0) {
  14350. if (!load_ca_pem(ctx_, pem.client_ca_pem, pem.client_ca_pem_len)) {
  14351. last_ssl_error_ = static_cast<int>(get_error());
  14352. free_context(ctx_);
  14353. ctx_ = nullptr;
  14354. } else {
  14355. set_verify_client(ctx_, true);
  14356. }
  14357. }
  14358. }
  14359. }
  14360. inline SSLServer::SSLServer(const tls::ContextSetupCallback &setup_callback) {
  14361. using namespace tls;
  14362. ctx_ = create_server_context();
  14363. if (ctx_) {
  14364. if (!setup_callback(ctx_)) {
  14365. free_context(ctx_);
  14366. ctx_ = nullptr;
  14367. }
  14368. }
  14369. }
  14370. inline SSLServer::~SSLServer() {
  14371. if (ctx_) { tls::free_context(ctx_); }
  14372. }
  14373. inline bool SSLServer::is_valid() const { return ctx_ != nullptr; }
  14374. inline bool SSLServer::process_and_close_socket(socket_t sock) {
  14375. using namespace tls;
  14376. // Create TLS session with mutex protection
  14377. session_t session = nullptr;
  14378. {
  14379. std::lock_guard<std::mutex> guard(ctx_mutex_);
  14380. session = create_session(static_cast<ctx_t>(ctx_), sock);
  14381. }
  14382. if (!session) {
  14383. last_ssl_error_ = static_cast<int>(get_error());
  14384. detail::shutdown_socket(sock);
  14385. detail::close_socket(sock);
  14386. return false;
  14387. }
  14388. // Use scope_exit to ensure cleanup on all paths (including exceptions)
  14389. bool handshake_done = false;
  14390. bool ret = false;
  14391. bool websocket_upgraded = false;
  14392. auto cleanup = detail::scope_exit([&] {
  14393. if (handshake_done) { shutdown(session, !websocket_upgraded && ret); }
  14394. free_session(session);
  14395. detail::shutdown_socket(sock);
  14396. detail::close_socket(sock);
  14397. });
  14398. // Perform TLS accept handshake with timeout
  14399. TlsError tls_err;
  14400. if (!accept_nonblocking(session, sock, read_timeout_sec_, read_timeout_usec_,
  14401. &tls_err)) {
  14402. #ifdef CPPHTTPLIB_OPENSSL_SUPPORT
  14403. // Map TlsError to legacy ssl_error for backward compatibility
  14404. if (tls_err.code == ErrorCode::WantRead) {
  14405. last_ssl_error_ = SSL_ERROR_WANT_READ;
  14406. } else if (tls_err.code == ErrorCode::WantWrite) {
  14407. last_ssl_error_ = SSL_ERROR_WANT_WRITE;
  14408. } else {
  14409. last_ssl_error_ = SSL_ERROR_SSL;
  14410. }
  14411. #else
  14412. last_ssl_error_ = static_cast<int>(get_error());
  14413. #endif
  14414. return false;
  14415. }
  14416. handshake_done = true;
  14417. std::string remote_addr;
  14418. int remote_port = 0;
  14419. detail::get_remote_ip_and_port(sock, remote_addr, remote_port);
  14420. std::string local_addr;
  14421. int local_port = 0;
  14422. detail::get_local_ip_and_port(sock, local_addr, local_port);
  14423. ret = detail::process_server_socket_ssl(
  14424. svr_sock_, session, sock, keep_alive_max_count_, keep_alive_timeout_sec_,
  14425. read_timeout_sec_, read_timeout_usec_, write_timeout_sec_,
  14426. write_timeout_usec_,
  14427. [&](Stream &strm, bool close_connection, bool &connection_closed) {
  14428. return process_request(
  14429. strm, remote_addr, remote_port, local_addr, local_port,
  14430. close_connection, connection_closed,
  14431. [&](Request &req) { req.ssl = session; }, &websocket_upgraded);
  14432. });
  14433. return ret;
  14434. }
  14435. inline bool SSLServer::update_certs_pem(const char *cert_pem,
  14436. const char *key_pem,
  14437. const char *client_ca_pem,
  14438. const char *password) {
  14439. if (!ctx_) { return false; }
  14440. std::lock_guard<std::mutex> guard(ctx_mutex_);
  14441. if (!tls::update_server_cert(ctx_, cert_pem, key_pem, password)) {
  14442. return false;
  14443. }
  14444. if (client_ca_pem) {
  14445. return tls::update_server_client_ca(ctx_, client_ca_pem);
  14446. }
  14447. return true;
  14448. }
  14449. // SSL HTTP client implementation
  14450. inline SSLClient::~SSLClient() {
  14451. // Make sure to shut down SSL since shutdown_ssl will resolve to the
  14452. // base function rather than the derived function once we get to the
  14453. // base class destructor, and won't free the SSL (causing a leak).
  14454. // This must happen before the context is freed below: some backends
  14455. // (e.g. mbedTLS) have the SSL session borrow a raw pointer into the
  14456. // context, so freeing the context first leaves close_notify reading
  14457. // freed memory.
  14458. shutdown_ssl_impl(socket_, true);
  14459. if (ctx_) {
  14460. tls::free_context(ctx_);
  14461. ctx_ = nullptr;
  14462. }
  14463. }
  14464. inline bool SSLClient::is_valid() const { return ctx_ != nullptr; }
  14465. inline void SSLClient::shutdown_ssl(Socket &socket, bool shutdown_gracefully) {
  14466. shutdown_ssl_impl(socket, shutdown_gracefully);
  14467. }
  14468. inline void SSLClient::shutdown_ssl_impl(Socket &socket,
  14469. bool shutdown_gracefully) {
  14470. if (socket.sock == INVALID_SOCKET) {
  14471. assert(socket.ssl == nullptr);
  14472. return;
  14473. }
  14474. if (socket.ssl) {
  14475. tls::shutdown(socket.ssl, shutdown_gracefully);
  14476. {
  14477. std::lock_guard<std::mutex> guard(ctx_mutex_);
  14478. tls::free_session(socket.ssl);
  14479. }
  14480. socket.ssl = nullptr;
  14481. }
  14482. assert(socket.ssl == nullptr);
  14483. }
  14484. inline bool SSLClient::process_socket(
  14485. const Socket &socket,
  14486. std::chrono::time_point<std::chrono::steady_clock> start_time,
  14487. std::function<bool(Stream &strm)> callback) {
  14488. assert(socket.ssl);
  14489. return detail::process_client_socket_ssl(
  14490. socket.ssl, socket.sock, read_timeout_sec_, read_timeout_usec_,
  14491. write_timeout_sec_, write_timeout_usec_, max_timeout_msec_, start_time,
  14492. std::move(callback));
  14493. }
  14494. inline bool SSLClient::is_ssl() const { return true; }
  14495. inline bool SSLClient::create_and_connect_socket(Socket &socket, Error &error) {
  14496. if (!is_valid()) {
  14497. error = Error::SSLConnection;
  14498. return false;
  14499. }
  14500. return ClientImpl::create_and_connect_socket(socket, error);
  14501. }
  14502. inline bool SSLClient::setup_proxy_connection(
  14503. Socket &socket,
  14504. std::chrono::time_point<std::chrono::steady_clock> start_time,
  14505. Response &res, bool &success, Error &error) {
  14506. if (!is_proxy_enabled_for_host(host_)) { return true; }
  14507. if (!connect_with_proxy(socket, start_time, res, success, error)) {
  14508. return false;
  14509. }
  14510. if (!initialize_ssl(socket, error)) {
  14511. success = false;
  14512. return false;
  14513. }
  14514. return true;
  14515. }
  14516. // Assumes that socket_mutex_ is locked and that there are no requests in
  14517. // flight
  14518. inline bool SSLClient::connect_with_proxy(
  14519. Socket &socket,
  14520. std::chrono::time_point<std::chrono::steady_clock> start_time,
  14521. Response &res, bool &success, Error &error) {
  14522. success = true;
  14523. Response proxy_res;
  14524. if (!detail::process_client_socket(
  14525. socket.sock, read_timeout_sec_, read_timeout_usec_,
  14526. write_timeout_sec_, write_timeout_usec_, max_timeout_msec_,
  14527. start_time, [&](Stream &strm) {
  14528. Request req2;
  14529. req2.method = "CONNECT";
  14530. req2.path =
  14531. detail::make_host_and_port_string_always_port(host_, port_);
  14532. if (max_timeout_msec_ > 0) {
  14533. req2.start_time_ = std::chrono::steady_clock::now();
  14534. }
  14535. return process_request(strm, req2, proxy_res, false, error);
  14536. })) {
  14537. // Thread-safe to close everything because we are assuming there are no
  14538. // requests in flight
  14539. shutdown_ssl(socket, true);
  14540. shutdown_socket(socket);
  14541. close_socket(socket);
  14542. success = false;
  14543. return false;
  14544. }
  14545. if (proxy_res.status == StatusCode::ProxyAuthenticationRequired_407) {
  14546. if (!proxy_digest_auth_username_.empty() &&
  14547. !proxy_digest_auth_password_.empty()) {
  14548. std::map<std::string, std::string> auth;
  14549. if (detail::parse_www_authenticate(proxy_res, auth, true)) {
  14550. // Close the current socket and create a new one for the authenticated
  14551. // request
  14552. shutdown_ssl(socket, true);
  14553. shutdown_socket(socket);
  14554. close_socket(socket);
  14555. // Create a new socket for the authenticated CONNECT request
  14556. if (!ensure_socket_connection(socket, error)) {
  14557. success = false;
  14558. output_error_log(error, nullptr);
  14559. return false;
  14560. }
  14561. proxy_res = Response();
  14562. if (!detail::process_client_socket(
  14563. socket.sock, read_timeout_sec_, read_timeout_usec_,
  14564. write_timeout_sec_, write_timeout_usec_, max_timeout_msec_,
  14565. start_time, [&](Stream &strm) {
  14566. Request req3;
  14567. req3.method = "CONNECT";
  14568. req3.path = detail::make_host_and_port_string_always_port(
  14569. host_, port_);
  14570. req3.headers.insert(detail::make_digest_authentication_header(
  14571. req3, auth, 1, detail::random_string(10),
  14572. proxy_digest_auth_username_, proxy_digest_auth_password_,
  14573. true));
  14574. if (max_timeout_msec_ > 0) {
  14575. req3.start_time_ = std::chrono::steady_clock::now();
  14576. }
  14577. return process_request(strm, req3, proxy_res, false, error);
  14578. })) {
  14579. // Thread-safe to close everything because we are assuming there are
  14580. // no requests in flight
  14581. shutdown_ssl(socket, true);
  14582. shutdown_socket(socket);
  14583. close_socket(socket);
  14584. success = false;
  14585. return false;
  14586. }
  14587. }
  14588. }
  14589. }
  14590. // If status code is not 200, proxy request is failed.
  14591. // Set error to ProxyConnection and return proxy response
  14592. // as the response of the request
  14593. if (proxy_res.status != StatusCode::OK_200) {
  14594. error = Error::ProxyConnection;
  14595. output_error_log(error, nullptr);
  14596. res = std::move(proxy_res);
  14597. // Thread-safe to close everything because we are assuming there are
  14598. // no requests in flight
  14599. shutdown_ssl(socket, true);
  14600. shutdown_socket(socket);
  14601. close_socket(socket);
  14602. return false;
  14603. }
  14604. return true;
  14605. }
  14606. inline bool SSLClient::ensure_socket_connection(Socket &socket, Error &error) {
  14607. if (!ClientImpl::ensure_socket_connection(socket, error)) { return false; }
  14608. if (is_proxy_enabled_for_host(host_)) { return true; }
  14609. if (!initialize_ssl(socket, error)) {
  14610. shutdown_socket(socket);
  14611. close_socket(socket);
  14612. return false;
  14613. }
  14614. return true;
  14615. }
  14616. // SSL HTTP client implementation
  14617. inline SSLClient::SSLClient(const std::string &host)
  14618. : SSLClient(host, 443, std::string(), std::string()) {}
  14619. inline SSLClient::SSLClient(const std::string &host, int port)
  14620. : SSLClient(host, port, std::string(), std::string()) {}
  14621. inline void SSLClient::init_ctx() {
  14622. ctx_ = tls::create_client_context();
  14623. if (ctx_) { tls::set_min_version(ctx_, tls::Version::TLS1_2); }
  14624. }
  14625. inline void SSLClient::reset_ctx_on_error() {
  14626. last_backend_error_ = tls::get_error();
  14627. tls::free_context(ctx_);
  14628. ctx_ = nullptr;
  14629. }
  14630. inline SSLClient::SSLClient(const std::string &host, int port,
  14631. const std::string &client_cert_path,
  14632. const std::string &client_key_path,
  14633. const std::string &private_key_password)
  14634. : ClientImpl(host, port, client_cert_path, client_key_path) {
  14635. init_ctx();
  14636. if (!ctx_) { return; }
  14637. if (!client_cert_path.empty() && !client_key_path.empty()) {
  14638. const char *password =
  14639. private_key_password.empty() ? nullptr : private_key_password.c_str();
  14640. if (!tls::set_client_cert_file(ctx_, client_cert_path.c_str(),
  14641. client_key_path.c_str(), password)) {
  14642. reset_ctx_on_error();
  14643. }
  14644. }
  14645. }
  14646. inline SSLClient::SSLClient(const std::string &host, int port,
  14647. const PemMemory &pem)
  14648. : ClientImpl(host, port) {
  14649. init_ctx();
  14650. if (!ctx_) { return; }
  14651. if (pem.cert_pem && pem.key_pem) {
  14652. if (!tls::set_client_cert_pem(ctx_, pem.cert_pem, pem.key_pem,
  14653. pem.private_key_password)) {
  14654. reset_ctx_on_error();
  14655. }
  14656. }
  14657. }
  14658. inline void SSLClient::set_ca_cert_store(tls::ca_store_t ca_cert_store) {
  14659. if (ca_cert_store && ctx_) {
  14660. // set_ca_store takes ownership of ca_cert_store
  14661. tls::set_ca_store(ctx_, ca_cert_store);
  14662. ca_cert_store_set_ = true;
  14663. } else if (ca_cert_store) {
  14664. tls::free_ca_store(ca_cert_store);
  14665. }
  14666. }
  14667. inline void
  14668. SSLClient::set_server_certificate_verifier(tls::VerifyCallback verifier) {
  14669. if (!ctx_) { return; }
  14670. tls::set_verify_callback(ctx_, verifier);
  14671. }
  14672. inline void SSLClient::set_session_verifier(
  14673. std::function<SSLVerifierResponse(tls::session_t)> verifier) {
  14674. session_verifier_ = std::move(verifier);
  14675. }
  14676. #ifdef CPPHTTPLIB_WINDOWS_AUTOMATIC_ROOT_CERTIFICATES_UPDATE
  14677. inline void SSLClient::enable_windows_certificate_verification(bool enabled) {
  14678. enable_windows_cert_verification_ = enabled;
  14679. }
  14680. #endif
  14681. inline void SSLClient::load_ca_cert_store(const char *ca_cert,
  14682. std::size_t size) {
  14683. if (ctx_ && ca_cert && size > 0) {
  14684. ca_cert_pem_.assign(ca_cert, size); // Store for redirect transfer
  14685. tls::load_ca_pem(ctx_, ca_cert, size);
  14686. }
  14687. }
  14688. inline bool SSLClient::load_certs() {
  14689. auto ret = true;
  14690. // call_once rather than the plain flag WebSocketClient::create_stream() uses:
  14691. // one client is shared across concurrent requests here.
  14692. std::call_once(initialize_cert_, [&]() {
  14693. std::lock_guard<std::mutex> guard(ctx_mutex_);
  14694. ret = detail::load_client_ca_config(
  14695. ctx_, ca_cert_file_path_, ca_cert_dir_path_,
  14696. !ca_cert_pem_.empty() || ca_cert_store_set_, system_ca_mode_,
  14697. last_backend_error_);
  14698. });
  14699. return ret;
  14700. }
  14701. inline bool SSLClient::initialize_ssl(Socket &socket, Error &error) {
  14702. // Load CA certificates if server verification is enabled
  14703. if (server_certificate_verification_) {
  14704. if (!load_certs()) {
  14705. error = Error::SSLLoadingCerts;
  14706. output_error_log(error, nullptr);
  14707. return false;
  14708. }
  14709. }
  14710. detail::ClientTlsSessionOptions options;
  14711. options.server_hostname_verification = server_hostname_verification_;
  14712. options.session_verifier = session_verifier_;
  14713. options.ctx_mutex = &ctx_mutex_;
  14714. #ifdef CPPHTTPLIB_WINDOWS_AUTOMATIC_ROOT_CERTIFICATES_UPDATE
  14715. // Skip Schannel when a custom CA cert is specified, as the Windows
  14716. // certificate store would not know about user-provided CA certificates.
  14717. // Also skip when system CA trust is explicitly disabled.
  14718. options.windows_cert_verification =
  14719. enable_windows_cert_verification_ &&
  14720. system_ca_mode_ != SystemCAMode::Disabled && ca_cert_file_path_.empty() &&
  14721. ca_cert_dir_path_.empty() && ca_cert_pem_.empty() && !ca_cert_store_set_;
  14722. #endif
  14723. tls::session_t session = nullptr;
  14724. // Use scope_exit to ensure session is freed on error paths
  14725. bool success = false;
  14726. auto session_guard = detail::scope_exit([&] {
  14727. if (!success) { tls::free_session(session); }
  14728. });
  14729. detail::ClientTlsSessionError tls_error;
  14730. if (!detail::setup_client_tls_session(
  14731. host_, ctx_, session, socket.sock, server_certificate_verification_,
  14732. connection_timeout_sec_, connection_timeout_usec_, &tls_error,
  14733. options)) {
  14734. error = tls_error.error;
  14735. last_ssl_error_ = tls_error.ssl_error;
  14736. last_backend_error_ = tls_error.backend_error;
  14737. output_error_log(error, nullptr);
  14738. return false;
  14739. }
  14740. success = true;
  14741. socket.ssl = session;
  14742. return true;
  14743. }
  14744. inline void Client::set_digest_auth(const std::string &username,
  14745. const std::string &password) {
  14746. cli_->set_digest_auth(username, password);
  14747. }
  14748. inline void Client::set_proxy_digest_auth(const std::string &username,
  14749. const std::string &password) {
  14750. cli_->set_proxy_digest_auth(username, password);
  14751. }
  14752. inline void Client::enable_server_certificate_verification(bool enabled) {
  14753. cli_->enable_server_certificate_verification(enabled);
  14754. }
  14755. inline void Client::enable_server_hostname_verification(bool enabled) {
  14756. cli_->enable_server_hostname_verification(enabled);
  14757. }
  14758. inline void Client::enable_system_ca(bool enabled) {
  14759. cli_->enable_system_ca(enabled);
  14760. }
  14761. #ifdef CPPHTTPLIB_WINDOWS_AUTOMATIC_ROOT_CERTIFICATES_UPDATE
  14762. inline void Client::enable_windows_certificate_verification(bool enabled) {
  14763. if (is_ssl_) {
  14764. static_cast<SSLClient &>(*cli_).enable_windows_certificate_verification(
  14765. enabled);
  14766. }
  14767. }
  14768. #endif
  14769. inline void Client::set_ca_cert_path(const std::string &ca_cert_file_path,
  14770. const std::string &ca_cert_dir_path) {
  14771. cli_->set_ca_cert_path(ca_cert_file_path, ca_cert_dir_path);
  14772. }
  14773. inline void Client::set_ca_cert_store(tls::ca_store_t ca_cert_store) {
  14774. if (is_ssl_) {
  14775. static_cast<SSLClient &>(*cli_).set_ca_cert_store(ca_cert_store);
  14776. } else if (ca_cert_store) {
  14777. tls::free_ca_store(ca_cert_store);
  14778. }
  14779. }
  14780. inline void Client::load_ca_cert_store(const char *ca_cert, std::size_t size) {
  14781. if (is_ssl_) {
  14782. // Use the PEM-based path so the CA data is retained for redirect transfer
  14783. static_cast<SSLClient &>(*cli_).load_ca_cert_store(ca_cert, size);
  14784. }
  14785. }
  14786. inline void
  14787. Client::set_server_certificate_verifier(tls::VerifyCallback verifier) {
  14788. if (is_ssl_) {
  14789. static_cast<SSLClient &>(*cli_).set_server_certificate_verifier(
  14790. std::move(verifier));
  14791. }
  14792. }
  14793. inline void Client::set_session_verifier(
  14794. std::function<SSLVerifierResponse(tls::session_t)> verifier) {
  14795. if (is_ssl_) {
  14796. static_cast<SSLClient &>(*cli_).set_session_verifier(std::move(verifier));
  14797. }
  14798. }
  14799. inline tls::ctx_t Client::tls_context() const {
  14800. if (is_ssl_) { return static_cast<SSLClient &>(*cli_).tls_context(); }
  14801. return nullptr;
  14802. }
  14803. #endif // CPPHTTPLIB_SSL_ENABLED
  14804. /*
  14805. * Group 7: TLS abstraction layer - Common API
  14806. */
  14807. #ifdef CPPHTTPLIB_SSL_ENABLED
  14808. namespace tls {
  14809. // Helper for PeerCert construction
  14810. inline PeerCert get_peer_cert_from_session(const_session_t session) {
  14811. return PeerCert(get_peer_cert(session));
  14812. }
  14813. namespace impl {
  14814. inline VerifyCallback &get_verify_callback() {
  14815. static thread_local VerifyCallback callback;
  14816. return callback;
  14817. }
  14818. inline VerifyCallback &get_mbedtls_verify_callback() {
  14819. static thread_local VerifyCallback callback;
  14820. return callback;
  14821. }
  14822. // Check if a string is an IPv4 address
  14823. inline bool is_ipv4_address(const std::string &str) {
  14824. int dots = 0;
  14825. for (char c : str) {
  14826. if (c == '.') {
  14827. dots++;
  14828. } else if (!detail::is_ascii_digit(c)) {
  14829. return false;
  14830. }
  14831. }
  14832. return dots == 3;
  14833. }
  14834. // Parse IPv4 address string to bytes
  14835. inline bool parse_ipv4(const std::string &str, unsigned char *out) {
  14836. const char *p = str.c_str();
  14837. for (int i = 0; i < 4; i++) {
  14838. if (i > 0) {
  14839. if (*p != '.') { return false; }
  14840. p++;
  14841. }
  14842. int val = 0;
  14843. int digits = 0;
  14844. while (detail::is_ascii_digit(*p)) {
  14845. val = val * 10 + (*p - '0');
  14846. if (val > 255) { return false; }
  14847. p++;
  14848. digits++;
  14849. }
  14850. if (digits == 0) { return false; }
  14851. // Reject leading zeros (e.g., "01.002.03.04") to prevent ambiguity
  14852. if (digits > 1 && *(p - digits) == '0') { return false; }
  14853. out[i] = static_cast<unsigned char>(val);
  14854. }
  14855. return *p == '\0';
  14856. }
  14857. // Parse an IP literal (IPv4 or IPv6) into raw network-order bytes.
  14858. // `out` must have room for at least 16 bytes. Returns the address length
  14859. // (4 for IPv4, 16 for IPv6) on success, or 0 if the string is not an IP
  14860. // literal. Used to match a host against iPAddress SANs the same way the
  14861. // OpenSSL backend does via X509_check_ip.
  14862. inline size_t parse_ip_address(const std::string &str, unsigned char *out) {
  14863. if (is_ipv4_address(str)) { return parse_ipv4(str, out) ? 4 : 0; }
  14864. struct in6_addr addr6 = {};
  14865. if (inet_pton(AF_INET6, str.c_str(), &addr6) == 1) {
  14866. memcpy(out, &addr6, 16);
  14867. return 16;
  14868. }
  14869. return 0;
  14870. }
  14871. #ifdef _WIN32
  14872. // Enumerate Windows system certificates and call callback with DER data
  14873. template <typename Callback>
  14874. inline bool enumerate_windows_system_certs(Callback cb) {
  14875. bool loaded = false;
  14876. static const wchar_t *store_names[] = {L"ROOT", L"CA"};
  14877. for (auto store_name : store_names) {
  14878. HCERTSTORE hStore = CertOpenSystemStoreW(0, store_name);
  14879. if (hStore) {
  14880. PCCERT_CONTEXT pContext = nullptr;
  14881. while ((pContext = CertEnumCertificatesInStore(hStore, pContext)) !=
  14882. nullptr) {
  14883. if (cb(pContext->pbCertEncoded, pContext->cbCertEncoded)) {
  14884. loaded = true;
  14885. }
  14886. }
  14887. CertCloseStore(hStore, 0);
  14888. }
  14889. }
  14890. return loaded;
  14891. }
  14892. #endif
  14893. #ifdef CPPHTTPLIB_USE_CERTS_FROM_MACOSX_KEYCHAIN
  14894. // Enumerate macOS Keychain certificates and call callback with DER data
  14895. template <typename Callback>
  14896. inline bool enumerate_macos_keychain_certs(Callback cb) {
  14897. bool loaded = false;
  14898. const SecTrustSettingsDomain domains[] = {
  14899. kSecTrustSettingsDomainSystem,
  14900. kSecTrustSettingsDomainAdmin,
  14901. kSecTrustSettingsDomainUser,
  14902. };
  14903. for (auto domain : domains) {
  14904. CFArrayRef certs = nullptr;
  14905. OSStatus status = SecTrustSettingsCopyCertificates(domain, &certs);
  14906. if (status != errSecSuccess || !certs) {
  14907. if (certs) CFRelease(certs);
  14908. continue;
  14909. }
  14910. CFIndex count = CFArrayGetCount(certs);
  14911. for (CFIndex i = 0; i < count; i++) {
  14912. SecCertificateRef cert =
  14913. (SecCertificateRef)CFArrayGetValueAtIndex(certs, i);
  14914. CFDataRef data = SecCertificateCopyData(cert);
  14915. if (data) {
  14916. if (cb(CFDataGetBytePtr(data),
  14917. static_cast<size_t>(CFDataGetLength(data)))) {
  14918. loaded = true;
  14919. }
  14920. CFRelease(data);
  14921. }
  14922. }
  14923. CFRelease(certs);
  14924. }
  14925. return loaded;
  14926. }
  14927. #endif
  14928. #if !defined(_WIN32) && !(defined(__APPLE__) && \
  14929. defined(CPPHTTPLIB_USE_CERTS_FROM_MACOSX_KEYCHAIN))
  14930. // Common CA certificate file paths on Linux/Unix
  14931. inline const char **system_ca_paths() {
  14932. static const char *paths[] = {
  14933. "/etc/ssl/certs/ca-certificates.crt", // Debian/Ubuntu
  14934. "/etc/pki/tls/certs/ca-bundle.crt", // RHEL/CentOS
  14935. "/etc/ssl/ca-bundle.pem", // OpenSUSE
  14936. "/etc/pki/tls/cacert.pem", // OpenELEC
  14937. "/etc/ssl/cert.pem", // Alpine, FreeBSD
  14938. nullptr};
  14939. return paths;
  14940. }
  14941. // Common CA certificate directory paths on Linux/Unix
  14942. inline const char **system_ca_dirs() {
  14943. static const char *dirs[] = {"/etc/ssl/certs", // Debian/Ubuntu
  14944. "/etc/pki/tls/certs", // RHEL/CentOS
  14945. "/usr/share/ca-certificates", // Other
  14946. nullptr};
  14947. return dirs;
  14948. }
  14949. #endif
  14950. } // namespace impl
  14951. inline bool set_client_ca_file(ctx_t ctx, const char *ca_file,
  14952. const char *ca_dir) {
  14953. if (!ctx) { return false; }
  14954. bool success = true;
  14955. if (ca_file && *ca_file) {
  14956. if (!load_ca_file(ctx, ca_file)) { success = false; }
  14957. }
  14958. if (ca_dir && *ca_dir) {
  14959. if (!load_ca_dir(ctx, ca_dir)) { success = false; }
  14960. }
  14961. #ifdef CPPHTTPLIB_OPENSSL_SUPPORT
  14962. // Set CA list for client certificate request (CertificateRequest message)
  14963. if (ca_file && *ca_file) {
  14964. auto list = SSL_load_client_CA_file(ca_file);
  14965. if (list) { SSL_CTX_set_client_CA_list(static_cast<SSL_CTX *>(ctx), list); }
  14966. }
  14967. #endif
  14968. return success;
  14969. }
  14970. inline bool set_server_cert_pem(ctx_t ctx, const char *cert, const char *key,
  14971. const char *password) {
  14972. return set_client_cert_pem(ctx, cert, key, password);
  14973. }
  14974. inline bool set_server_cert_file(ctx_t ctx, const char *cert_path,
  14975. const char *key_path, const char *password) {
  14976. return set_client_cert_file(ctx, cert_path, key_path, password);
  14977. }
  14978. // PeerCert implementation
  14979. inline PeerCert::PeerCert() = default;
  14980. inline PeerCert::PeerCert(cert_t cert) : cert_(cert) {}
  14981. inline PeerCert::PeerCert(PeerCert &&other) noexcept : cert_(other.cert_) {
  14982. other.cert_ = nullptr;
  14983. }
  14984. inline PeerCert &PeerCert::operator=(PeerCert &&other) noexcept {
  14985. if (this != &other) {
  14986. if (cert_) { free_cert(cert_); }
  14987. cert_ = other.cert_;
  14988. other.cert_ = nullptr;
  14989. }
  14990. return *this;
  14991. }
  14992. inline PeerCert::~PeerCert() {
  14993. if (cert_) { free_cert(cert_); }
  14994. }
  14995. inline PeerCert::operator bool() const { return cert_ != nullptr; }
  14996. inline std::string PeerCert::subject_cn() const {
  14997. return cert_ ? get_cert_subject_cn(cert_) : std::string();
  14998. }
  14999. inline std::string PeerCert::issuer_name() const {
  15000. return cert_ ? get_cert_issuer_name(cert_) : std::string();
  15001. }
  15002. inline bool PeerCert::check_hostname(const char *hostname) const {
  15003. return cert_ ? verify_hostname(cert_, hostname) : false;
  15004. }
  15005. inline std::vector<SanEntry> PeerCert::sans() const {
  15006. std::vector<SanEntry> result;
  15007. if (cert_) { get_cert_sans(cert_, result); }
  15008. return result;
  15009. }
  15010. inline bool PeerCert::validity(time_t &not_before, time_t &not_after) const {
  15011. return cert_ ? get_cert_validity(cert_, not_before, not_after) : false;
  15012. }
  15013. inline std::string PeerCert::serial() const {
  15014. return cert_ ? get_cert_serial(cert_) : std::string();
  15015. }
  15016. // VerifyContext method implementations
  15017. inline std::string VerifyContext::subject_cn() const {
  15018. return cert ? get_cert_subject_cn(cert) : std::string();
  15019. }
  15020. inline std::string VerifyContext::issuer_name() const {
  15021. return cert ? get_cert_issuer_name(cert) : std::string();
  15022. }
  15023. inline bool VerifyContext::check_hostname(const char *hostname) const {
  15024. return cert ? verify_hostname(cert, hostname) : false;
  15025. }
  15026. inline std::vector<SanEntry> VerifyContext::sans() const {
  15027. std::vector<SanEntry> result;
  15028. if (cert) { get_cert_sans(cert, result); }
  15029. return result;
  15030. }
  15031. inline bool VerifyContext::validity(time_t &not_before,
  15032. time_t &not_after) const {
  15033. return cert ? get_cert_validity(cert, not_before, not_after) : false;
  15034. }
  15035. inline std::string VerifyContext::serial() const {
  15036. return cert ? get_cert_serial(cert) : std::string();
  15037. }
  15038. // TlsError static method implementation
  15039. inline std::string TlsError::verify_error_to_string(long error_code) {
  15040. return verify_error_string(error_code);
  15041. }
  15042. } // namespace tls
  15043. // Request::peer_cert() implementation
  15044. inline tls::PeerCert Request::peer_cert() const {
  15045. return tls::get_peer_cert_from_session(ssl);
  15046. }
  15047. // Request::sni() implementation
  15048. inline std::string Request::sni() const {
  15049. if (!ssl) { return std::string(); }
  15050. const char *s = tls::get_sni(ssl);
  15051. return s ? std::string(s) : std::string();
  15052. }
  15053. #endif // CPPHTTPLIB_SSL_ENABLED
  15054. /*
  15055. * Group 8: TLS abstraction layer - OpenSSL backend
  15056. */
  15057. /*
  15058. * OpenSSL Backend Implementation
  15059. */
  15060. #ifdef CPPHTTPLIB_OPENSSL_SUPPORT
  15061. namespace tls {
  15062. namespace impl {
  15063. // Helper to map OpenSSL SSL_get_error to ErrorCode
  15064. inline ErrorCode map_ssl_error(int ssl_error, int &out_errno) {
  15065. switch (ssl_error) {
  15066. case SSL_ERROR_NONE: return ErrorCode::Success;
  15067. case SSL_ERROR_WANT_READ: return ErrorCode::WantRead;
  15068. case SSL_ERROR_WANT_WRITE: return ErrorCode::WantWrite;
  15069. case SSL_ERROR_ZERO_RETURN: return ErrorCode::PeerClosed;
  15070. case SSL_ERROR_SYSCALL: out_errno = errno; return ErrorCode::SyscallError;
  15071. case SSL_ERROR_SSL:
  15072. default: return ErrorCode::Fatal;
  15073. }
  15074. }
  15075. // Helper: Create client CA list from PEM string
  15076. // Returns a new STACK_OF(X509_NAME)* or nullptr on failure
  15077. // Caller takes ownership of returned list
  15078. inline STACK_OF(X509_NAME) *
  15079. create_client_ca_list_from_pem(const char *ca_pem) {
  15080. if (!ca_pem) { return nullptr; }
  15081. auto ca_list = sk_X509_NAME_new_null();
  15082. if (!ca_list) { return nullptr; }
  15083. BIO *bio = BIO_new_mem_buf(ca_pem, -1);
  15084. if (!bio) {
  15085. sk_X509_NAME_pop_free(ca_list, X509_NAME_free);
  15086. return nullptr;
  15087. }
  15088. X509 *cert = nullptr;
  15089. while ((cert = PEM_read_bio_X509(bio, nullptr, nullptr, nullptr)) !=
  15090. nullptr) {
  15091. const X509_NAME *name = X509_get_subject_name(cert);
  15092. if (name) {
  15093. sk_X509_NAME_push(ca_list, X509_NAME_dup(const_cast<X509_NAME *>(name)));
  15094. }
  15095. X509_free(cert);
  15096. }
  15097. BIO_free(bio);
  15098. return ca_list;
  15099. }
  15100. // OpenSSL verify callback wrapper
  15101. inline int openssl_verify_callback(int preverify_ok, X509_STORE_CTX *ctx) {
  15102. auto &callback = get_verify_callback();
  15103. if (!callback) { return preverify_ok; }
  15104. // Get SSL object from X509_STORE_CTX
  15105. auto ssl = static_cast<SSL *>(
  15106. X509_STORE_CTX_get_ex_data(ctx, SSL_get_ex_data_X509_STORE_CTX_idx()));
  15107. if (!ssl) { return preverify_ok; }
  15108. // Get current certificate and depth
  15109. auto cert = X509_STORE_CTX_get_current_cert(ctx);
  15110. int depth = X509_STORE_CTX_get_error_depth(ctx);
  15111. int error = X509_STORE_CTX_get_error(ctx);
  15112. // Build context
  15113. VerifyContext verify_ctx;
  15114. verify_ctx.session = static_cast<session_t>(ssl);
  15115. verify_ctx.cert = static_cast<cert_t>(cert);
  15116. verify_ctx.depth = depth;
  15117. verify_ctx.preverify_ok = (preverify_ok != 0);
  15118. verify_ctx.error_code = error;
  15119. verify_ctx.error_string =
  15120. (error != X509_V_OK) ? X509_verify_cert_error_string(error) : nullptr;
  15121. return callback(verify_ctx) ? 1 : 0;
  15122. }
  15123. // X509_STORE_get0_objects is deprecated since OpenSSL 4.0 because it is not
  15124. // thread-safe; X509_STORE_get1_objects (OpenSSL 3.3+) returns a snapshot
  15125. // that must be released with release_store_objects
  15126. #if !defined(OPENSSL_IS_BORINGSSL) && !defined(LIBRESSL_VERSION_NUMBER) && \
  15127. OPENSSL_VERSION_NUMBER >= 0x30300000L
  15128. #define CPPHTTPLIB_HAS_X509_STORE_GET1_OBJECTS
  15129. #endif
  15130. inline STACK_OF(X509_OBJECT) * get_store_objects(X509_STORE *store) {
  15131. #ifdef CPPHTTPLIB_HAS_X509_STORE_GET1_OBJECTS
  15132. return X509_STORE_get1_objects(store);
  15133. #else
  15134. return X509_STORE_get0_objects(store);
  15135. #endif
  15136. }
  15137. inline void release_store_objects(STACK_OF(X509_OBJECT) * objs) {
  15138. #ifdef CPPHTTPLIB_HAS_X509_STORE_GET1_OBJECTS
  15139. sk_X509_OBJECT_pop_free(objs, X509_OBJECT_free);
  15140. #else
  15141. (void)objs; // get0 variant returns an internal pointer; nothing to free
  15142. #endif
  15143. }
  15144. } // namespace impl
  15145. inline ctx_t create_client_context() {
  15146. SSL_CTX *ctx = SSL_CTX_new(TLS_client_method());
  15147. if (ctx) {
  15148. // Disable auto-retry to properly handle non-blocking I/O
  15149. SSL_CTX_clear_mode(ctx, SSL_MODE_AUTO_RETRY);
  15150. // Set minimum TLS version
  15151. SSL_CTX_set_min_proto_version(ctx, TLS1_2_VERSION);
  15152. }
  15153. return static_cast<ctx_t>(ctx);
  15154. }
  15155. inline void free_context(ctx_t ctx) {
  15156. if (ctx) { SSL_CTX_free(static_cast<SSL_CTX *>(ctx)); }
  15157. }
  15158. inline bool set_min_version(ctx_t ctx, Version version) {
  15159. if (!ctx) return false;
  15160. return SSL_CTX_set_min_proto_version(static_cast<SSL_CTX *>(ctx),
  15161. static_cast<int>(version)) == 1;
  15162. }
  15163. inline bool load_ca_pem(ctx_t ctx, const char *pem, size_t len) {
  15164. if (!ctx || !pem || len == 0) return false;
  15165. auto ssl_ctx = static_cast<SSL_CTX *>(ctx);
  15166. auto store = SSL_CTX_get_cert_store(ssl_ctx);
  15167. if (!store) return false;
  15168. auto bio = BIO_new_mem_buf(pem, static_cast<int>(len));
  15169. if (!bio) return false;
  15170. bool ok = true;
  15171. X509 *cert = nullptr;
  15172. while ((cert = PEM_read_bio_X509(bio, nullptr, nullptr, nullptr)) !=
  15173. nullptr) {
  15174. if (X509_STORE_add_cert(store, cert) != 1) {
  15175. // Ignore duplicate errors
  15176. auto err = ERR_peek_last_error();
  15177. if (ERR_GET_REASON(err) != X509_R_CERT_ALREADY_IN_HASH_TABLE) {
  15178. ok = false;
  15179. }
  15180. }
  15181. X509_free(cert);
  15182. if (!ok) break;
  15183. }
  15184. BIO_free(bio);
  15185. // Clear any "no more certificates" errors
  15186. ERR_clear_error();
  15187. return ok;
  15188. }
  15189. inline bool load_ca_file(ctx_t ctx, const char *file_path) {
  15190. if (!ctx || !file_path) return false;
  15191. return SSL_CTX_load_verify_locations(static_cast<SSL_CTX *>(ctx), file_path,
  15192. nullptr) == 1;
  15193. }
  15194. inline bool load_ca_dir(ctx_t ctx, const char *dir_path) {
  15195. if (!ctx || !dir_path) return false;
  15196. return SSL_CTX_load_verify_locations(static_cast<SSL_CTX *>(ctx), nullptr,
  15197. dir_path) == 1;
  15198. }
  15199. inline bool load_system_certs(ctx_t ctx) {
  15200. if (!ctx) return false;
  15201. auto ssl_ctx = static_cast<SSL_CTX *>(ctx);
  15202. #ifdef _WIN32
  15203. // Windows: Load from system certificate store (ROOT and CA)
  15204. auto store = SSL_CTX_get_cert_store(ssl_ctx);
  15205. if (!store) return false;
  15206. bool loaded_any = false;
  15207. static const wchar_t *store_names[] = {L"ROOT", L"CA"};
  15208. for (auto store_name : store_names) {
  15209. auto hStore = CertOpenSystemStoreW(NULL, store_name);
  15210. if (!hStore) continue;
  15211. PCCERT_CONTEXT pContext = nullptr;
  15212. while ((pContext = CertEnumCertificatesInStore(hStore, pContext)) !=
  15213. nullptr) {
  15214. const unsigned char *data = pContext->pbCertEncoded;
  15215. auto x509 = d2i_X509(nullptr, &data, pContext->cbCertEncoded);
  15216. if (x509) {
  15217. if (X509_STORE_add_cert(store, x509) == 1) { loaded_any = true; }
  15218. X509_free(x509);
  15219. }
  15220. }
  15221. CertCloseStore(hStore, 0);
  15222. }
  15223. return loaded_any;
  15224. #elif defined(__APPLE__)
  15225. #ifdef CPPHTTPLIB_USE_CERTS_FROM_MACOSX_KEYCHAIN
  15226. // macOS: Load from Keychain
  15227. auto store = SSL_CTX_get_cert_store(ssl_ctx);
  15228. if (!store) return false;
  15229. bool loaded_any = false;
  15230. const SecTrustSettingsDomain domains[] = {
  15231. kSecTrustSettingsDomainSystem,
  15232. kSecTrustSettingsDomainAdmin,
  15233. kSecTrustSettingsDomainUser,
  15234. };
  15235. for (auto domain : domains) {
  15236. CFArrayRef certs = nullptr;
  15237. if (SecTrustSettingsCopyCertificates(domain, &certs) != errSecSuccess ||
  15238. !certs) {
  15239. if (certs) CFRelease(certs);
  15240. continue;
  15241. }
  15242. auto count = CFArrayGetCount(certs);
  15243. for (CFIndex i = 0; i < count; i++) {
  15244. auto cert = reinterpret_cast<SecCertificateRef>(
  15245. const_cast<void *>(CFArrayGetValueAtIndex(certs, i)));
  15246. CFDataRef der = SecCertificateCopyData(cert);
  15247. if (der) {
  15248. const unsigned char *data = CFDataGetBytePtr(der);
  15249. auto x509 = d2i_X509(nullptr, &data, CFDataGetLength(der));
  15250. if (x509) {
  15251. if (X509_STORE_add_cert(store, x509) == 1) { loaded_any = true; }
  15252. X509_free(x509);
  15253. }
  15254. CFRelease(der);
  15255. }
  15256. }
  15257. CFRelease(certs);
  15258. }
  15259. return loaded_any || SSL_CTX_set_default_verify_paths(ssl_ctx) == 1;
  15260. #else
  15261. return SSL_CTX_set_default_verify_paths(ssl_ctx) == 1;
  15262. #endif
  15263. #else
  15264. // Other Unix: use default verify paths
  15265. return SSL_CTX_set_default_verify_paths(ssl_ctx) == 1;
  15266. #endif
  15267. }
  15268. inline bool set_client_cert_pem(ctx_t ctx, const char *cert, const char *key,
  15269. const char *password) {
  15270. if (!ctx || !cert || !key) return false;
  15271. auto ssl_ctx = static_cast<SSL_CTX *>(ctx);
  15272. // Load certificate
  15273. auto cert_bio = BIO_new_mem_buf(cert, -1);
  15274. if (!cert_bio) return false;
  15275. auto x509 = PEM_read_bio_X509(cert_bio, nullptr, nullptr, nullptr);
  15276. BIO_free(cert_bio);
  15277. if (!x509) return false;
  15278. auto cert_ok = SSL_CTX_use_certificate(ssl_ctx, x509) == 1;
  15279. X509_free(x509);
  15280. if (!cert_ok) return false;
  15281. // Load private key
  15282. auto key_bio = BIO_new_mem_buf(key, -1);
  15283. if (!key_bio) return false;
  15284. auto pkey = PEM_read_bio_PrivateKey(key_bio, nullptr, nullptr,
  15285. password ? const_cast<char *>(password)
  15286. : nullptr);
  15287. BIO_free(key_bio);
  15288. if (!pkey) return false;
  15289. auto key_ok = SSL_CTX_use_PrivateKey(ssl_ctx, pkey) == 1;
  15290. EVP_PKEY_free(pkey);
  15291. return key_ok && SSL_CTX_check_private_key(ssl_ctx) == 1;
  15292. }
  15293. inline bool set_client_cert_file(ctx_t ctx, const char *cert_path,
  15294. const char *key_path, const char *password) {
  15295. if (!ctx || !cert_path || !key_path) return false;
  15296. auto ssl_ctx = static_cast<SSL_CTX *>(ctx);
  15297. if (password && password[0] != '\0') {
  15298. SSL_CTX_set_default_passwd_cb_userdata(
  15299. ssl_ctx, reinterpret_cast<void *>(const_cast<char *>(password)));
  15300. }
  15301. return SSL_CTX_use_certificate_chain_file(ssl_ctx, cert_path) == 1 &&
  15302. SSL_CTX_use_PrivateKey_file(ssl_ctx, key_path, SSL_FILETYPE_PEM) == 1;
  15303. }
  15304. inline ctx_t create_server_context() {
  15305. SSL_CTX *ctx = SSL_CTX_new(TLS_server_method());
  15306. if (ctx) {
  15307. SSL_CTX_set_options(ctx, SSL_OP_NO_COMPRESSION |
  15308. SSL_OP_NO_SESSION_RESUMPTION_ON_RENEGOTIATION);
  15309. SSL_CTX_set_min_proto_version(ctx, TLS1_2_VERSION);
  15310. }
  15311. return static_cast<ctx_t>(ctx);
  15312. }
  15313. inline void set_verify_client(ctx_t ctx, bool require) {
  15314. if (!ctx) return;
  15315. SSL_CTX_set_verify(static_cast<SSL_CTX *>(ctx),
  15316. require
  15317. ? (SSL_VERIFY_PEER | SSL_VERIFY_FAIL_IF_NO_PEER_CERT)
  15318. : SSL_VERIFY_NONE,
  15319. nullptr);
  15320. }
  15321. inline session_t create_session(ctx_t ctx, socket_t sock) {
  15322. if (!ctx || sock == INVALID_SOCKET) return nullptr;
  15323. auto ssl_ctx = static_cast<SSL_CTX *>(ctx);
  15324. SSL *ssl = SSL_new(ssl_ctx);
  15325. if (!ssl) return nullptr;
  15326. // Disable auto-retry for proper non-blocking I/O handling
  15327. SSL_clear_mode(ssl, SSL_MODE_AUTO_RETRY);
  15328. auto bio = BIO_new_socket(static_cast<int>(sock), BIO_NOCLOSE);
  15329. if (!bio) {
  15330. SSL_free(ssl);
  15331. return nullptr;
  15332. }
  15333. SSL_set_bio(ssl, bio, bio);
  15334. return static_cast<session_t>(ssl);
  15335. }
  15336. inline void free_session(session_t session) {
  15337. if (session) { SSL_free(static_cast<SSL *>(session)); }
  15338. }
  15339. inline bool set_sni(session_t session, const char *hostname) {
  15340. if (!session || !hostname) return false;
  15341. auto ssl = static_cast<SSL *>(session);
  15342. // Set SNI (Server Name Indication) only - does not enable verification
  15343. #if defined(OPENSSL_IS_BORINGSSL)
  15344. return SSL_set_tlsext_host_name(ssl, hostname) == 1;
  15345. #else
  15346. // Direct call instead of macro to suppress -Wold-style-cast warning
  15347. return SSL_ctrl(ssl, SSL_CTRL_SET_TLSEXT_HOSTNAME, TLSEXT_NAMETYPE_host_name,
  15348. static_cast<void *>(const_cast<char *>(hostname))) == 1;
  15349. #endif
  15350. }
  15351. inline TlsError connect(session_t session) {
  15352. if (!session) { return TlsError(); }
  15353. auto ssl = static_cast<SSL *>(session);
  15354. auto ret = SSL_connect(ssl);
  15355. TlsError err;
  15356. if (ret == 1) {
  15357. err.code = ErrorCode::Success;
  15358. } else {
  15359. auto ssl_err = SSL_get_error(ssl, ret);
  15360. err.code = impl::map_ssl_error(ssl_err, err.sys_errno);
  15361. err.backend_code = ERR_get_error();
  15362. }
  15363. return err;
  15364. }
  15365. inline TlsError accept(session_t session) {
  15366. if (!session) { return TlsError(); }
  15367. auto ssl = static_cast<SSL *>(session);
  15368. auto ret = SSL_accept(ssl);
  15369. TlsError err;
  15370. if (ret == 1) {
  15371. err.code = ErrorCode::Success;
  15372. } else {
  15373. auto ssl_err = SSL_get_error(ssl, ret);
  15374. err.code = impl::map_ssl_error(ssl_err, err.sys_errno);
  15375. err.backend_code = ERR_get_error();
  15376. }
  15377. return err;
  15378. }
  15379. inline bool connect_nonblocking(session_t session, socket_t sock,
  15380. time_t timeout_sec, time_t timeout_usec,
  15381. TlsError *err) {
  15382. if (!session) {
  15383. if (err) { err->code = ErrorCode::Fatal; }
  15384. return false;
  15385. }
  15386. auto ssl = static_cast<SSL *>(session);
  15387. auto bio = SSL_get_rbio(ssl);
  15388. // Set non-blocking mode for handshake
  15389. detail::set_nonblocking(sock, true);
  15390. if (bio) { BIO_set_nbio(bio, 1); }
  15391. auto cleanup = detail::scope_exit([&]() {
  15392. // Restore blocking mode after handshake
  15393. if (bio) { BIO_set_nbio(bio, 0); }
  15394. detail::set_nonblocking(sock, false);
  15395. });
  15396. auto res = 0;
  15397. while ((res = SSL_connect(ssl)) != 1) {
  15398. auto ssl_err = SSL_get_error(ssl, res);
  15399. switch (ssl_err) {
  15400. case SSL_ERROR_WANT_READ:
  15401. if (detail::select_read(sock, timeout_sec, timeout_usec) > 0) {
  15402. continue;
  15403. }
  15404. break;
  15405. case SSL_ERROR_WANT_WRITE:
  15406. if (detail::select_write(sock, timeout_sec, timeout_usec) > 0) {
  15407. continue;
  15408. }
  15409. break;
  15410. default: break;
  15411. }
  15412. if (err) {
  15413. err->code = impl::map_ssl_error(ssl_err, err->sys_errno);
  15414. err->backend_code = ERR_get_error();
  15415. }
  15416. return false;
  15417. }
  15418. if (err) { err->code = ErrorCode::Success; }
  15419. return true;
  15420. }
  15421. inline bool accept_nonblocking(session_t session, socket_t sock,
  15422. time_t timeout_sec, time_t timeout_usec,
  15423. TlsError *err) {
  15424. if (!session) {
  15425. if (err) { err->code = ErrorCode::Fatal; }
  15426. return false;
  15427. }
  15428. auto ssl = static_cast<SSL *>(session);
  15429. auto bio = SSL_get_rbio(ssl);
  15430. // Set non-blocking mode for handshake
  15431. detail::set_nonblocking(sock, true);
  15432. if (bio) { BIO_set_nbio(bio, 1); }
  15433. auto cleanup = detail::scope_exit([&]() {
  15434. // Restore blocking mode after handshake
  15435. if (bio) { BIO_set_nbio(bio, 0); }
  15436. detail::set_nonblocking(sock, false);
  15437. });
  15438. auto res = 0;
  15439. while ((res = SSL_accept(ssl)) != 1) {
  15440. auto ssl_err = SSL_get_error(ssl, res);
  15441. switch (ssl_err) {
  15442. case SSL_ERROR_WANT_READ:
  15443. if (detail::select_read(sock, timeout_sec, timeout_usec) > 0) {
  15444. continue;
  15445. }
  15446. break;
  15447. case SSL_ERROR_WANT_WRITE:
  15448. if (detail::select_write(sock, timeout_sec, timeout_usec) > 0) {
  15449. continue;
  15450. }
  15451. break;
  15452. default: break;
  15453. }
  15454. if (err) {
  15455. err->code = impl::map_ssl_error(ssl_err, err->sys_errno);
  15456. err->backend_code = ERR_get_error();
  15457. }
  15458. return false;
  15459. }
  15460. if (err) { err->code = ErrorCode::Success; }
  15461. return true;
  15462. }
  15463. inline ssize_t read(session_t session, void *buf, size_t len, TlsError &err) {
  15464. if (!session || !buf) {
  15465. err.code = ErrorCode::Fatal;
  15466. return -1;
  15467. }
  15468. auto ssl = static_cast<SSL *>(session);
  15469. constexpr auto max_len =
  15470. static_cast<size_t>((std::numeric_limits<int>::max)());
  15471. if (len > max_len) { len = max_len; }
  15472. auto ret = SSL_read(ssl, buf, static_cast<int>(len));
  15473. if (ret > 0) {
  15474. err.code = ErrorCode::Success;
  15475. return ret;
  15476. }
  15477. auto ssl_err = SSL_get_error(ssl, ret);
  15478. err.code = impl::map_ssl_error(ssl_err, err.sys_errno);
  15479. if (err.code == ErrorCode::PeerClosed) {
  15480. return 0;
  15481. } // Gracefully handle the peer closed state.
  15482. if (err.code == ErrorCode::Fatal) { err.backend_code = ERR_get_error(); }
  15483. return -1;
  15484. }
  15485. inline ssize_t write(session_t session, const void *buf, size_t len,
  15486. TlsError &err) {
  15487. if (!session || !buf) {
  15488. err.code = ErrorCode::Fatal;
  15489. return -1;
  15490. }
  15491. auto ssl = static_cast<SSL *>(session);
  15492. auto ret = SSL_write(ssl, buf, static_cast<int>(len));
  15493. if (ret > 0) {
  15494. err.code = ErrorCode::Success;
  15495. return ret;
  15496. }
  15497. auto ssl_err = SSL_get_error(ssl, ret);
  15498. err.code = impl::map_ssl_error(ssl_err, err.sys_errno);
  15499. if (err.code == ErrorCode::Fatal) { err.backend_code = ERR_get_error(); }
  15500. return -1;
  15501. }
  15502. inline int pending(const_session_t session) {
  15503. if (!session) return 0;
  15504. return SSL_pending(static_cast<SSL *>(const_cast<void *>(session)));
  15505. }
  15506. inline void shutdown(session_t session, bool graceful) {
  15507. if (!session) return;
  15508. auto ssl = static_cast<SSL *>(session);
  15509. if (graceful) {
  15510. // First call sends close_notify
  15511. if (SSL_shutdown(ssl) == 0) {
  15512. // Second call waits for peer's close_notify
  15513. SSL_shutdown(ssl);
  15514. }
  15515. }
  15516. }
  15517. inline bool is_peer_closed(session_t session, socket_t sock) {
  15518. if (!session) return true;
  15519. // Temporarily set socket to non-blocking to avoid blocking on SSL_peek
  15520. detail::set_nonblocking(sock, true);
  15521. auto se = detail::scope_exit([&]() { detail::set_nonblocking(sock, false); });
  15522. auto ssl = static_cast<SSL *>(session);
  15523. char buf;
  15524. auto ret = SSL_peek(ssl, &buf, 1);
  15525. if (ret > 0) return false;
  15526. auto err = SSL_get_error(ssl, ret);
  15527. return err == SSL_ERROR_ZERO_RETURN;
  15528. }
  15529. inline cert_t get_peer_cert(const_session_t session) {
  15530. if (!session) return nullptr;
  15531. return static_cast<cert_t>(SSL_get1_peer_certificate(
  15532. static_cast<SSL *>(const_cast<void *>(session))));
  15533. }
  15534. inline void free_cert(cert_t cert) {
  15535. if (cert) { X509_free(static_cast<X509 *>(cert)); }
  15536. }
  15537. inline bool verify_hostname(cert_t cert, const char *hostname) {
  15538. if (!cert || !hostname) return false;
  15539. auto x509 = static_cast<X509 *>(cert);
  15540. // Use X509_check_ip_asc for IP addresses, X509_check_host for DNS names
  15541. if (detail::is_ip_address(hostname)) {
  15542. return X509_check_ip_asc(x509, hostname, 0) == 1;
  15543. }
  15544. return X509_check_host(x509, hostname, strlen(hostname), 0, nullptr) == 1;
  15545. }
  15546. inline uint64_t hostname_mismatch_code() {
  15547. return static_cast<uint64_t>(X509_V_ERR_HOSTNAME_MISMATCH);
  15548. }
  15549. inline long get_verify_result(const_session_t session) {
  15550. if (!session) return X509_V_ERR_UNSPECIFIED;
  15551. return SSL_get_verify_result(static_cast<SSL *>(const_cast<void *>(session)));
  15552. }
  15553. inline std::string get_cert_subject_cn(cert_t cert) {
  15554. if (!cert) return "";
  15555. auto x509 = static_cast<X509 *>(cert);
  15556. auto subject_name = X509_get_subject_name(x509);
  15557. if (!subject_name) return "";
  15558. // X509_NAME_get_text_by_NID is deprecated since OpenSSL 4.0
  15559. auto idx = X509_NAME_get_index_by_NID(subject_name, NID_commonName, -1);
  15560. if (idx < 0) return "";
  15561. auto entry = X509_NAME_get_entry(subject_name, idx);
  15562. if (!entry) return "";
  15563. auto data = X509_NAME_ENTRY_get_data(entry);
  15564. if (!data) return "";
  15565. return std::string(
  15566. reinterpret_cast<const char *>(ASN1_STRING_get0_data(data)),
  15567. static_cast<size_t>(ASN1_STRING_length(data)));
  15568. }
  15569. inline std::string get_cert_issuer_name(cert_t cert) {
  15570. if (!cert) return "";
  15571. auto x509 = static_cast<X509 *>(cert);
  15572. auto issuer_name = X509_get_issuer_name(x509);
  15573. if (!issuer_name) return "";
  15574. char buf[256];
  15575. X509_NAME_oneline(issuer_name, buf, sizeof(buf));
  15576. return std::string(buf);
  15577. }
  15578. inline bool get_cert_sans(cert_t cert, std::vector<SanEntry> &sans) {
  15579. sans.clear();
  15580. if (!cert) return false;
  15581. auto x509 = static_cast<X509 *>(cert);
  15582. auto names = static_cast<GENERAL_NAMES *>(
  15583. X509_get_ext_d2i(x509, NID_subject_alt_name, nullptr, nullptr));
  15584. if (!names) return true; // No SANs is valid
  15585. auto count = sk_GENERAL_NAME_num(names);
  15586. for (decltype(count) i = 0; i < count; i++) {
  15587. auto gen = sk_GENERAL_NAME_value(names, i);
  15588. if (!gen) continue;
  15589. SanEntry entry;
  15590. switch (gen->type) {
  15591. case GEN_DNS:
  15592. entry.type = SanType::DNS;
  15593. if (gen->d.dNSName) {
  15594. entry.value = std::string(
  15595. reinterpret_cast<const char *>(
  15596. ASN1_STRING_get0_data(gen->d.dNSName)),
  15597. static_cast<size_t>(ASN1_STRING_length(gen->d.dNSName)));
  15598. }
  15599. break;
  15600. case GEN_IPADD:
  15601. entry.type = SanType::IP;
  15602. if (gen->d.iPAddress) {
  15603. auto data = ASN1_STRING_get0_data(gen->d.iPAddress);
  15604. auto len = ASN1_STRING_length(gen->d.iPAddress);
  15605. if (len == 4) {
  15606. // IPv4
  15607. char buf[INET_ADDRSTRLEN];
  15608. inet_ntop(AF_INET, data, buf, sizeof(buf));
  15609. entry.value = buf;
  15610. } else if (len == 16) {
  15611. // IPv6
  15612. char buf[INET6_ADDRSTRLEN];
  15613. inet_ntop(AF_INET6, data, buf, sizeof(buf));
  15614. entry.value = buf;
  15615. }
  15616. }
  15617. break;
  15618. case GEN_EMAIL:
  15619. entry.type = SanType::EMAIL;
  15620. if (gen->d.rfc822Name) {
  15621. entry.value = std::string(
  15622. reinterpret_cast<const char *>(
  15623. ASN1_STRING_get0_data(gen->d.rfc822Name)),
  15624. static_cast<size_t>(ASN1_STRING_length(gen->d.rfc822Name)));
  15625. }
  15626. break;
  15627. case GEN_URI:
  15628. entry.type = SanType::URI;
  15629. if (gen->d.uniformResourceIdentifier) {
  15630. entry.value = std::string(
  15631. reinterpret_cast<const char *>(
  15632. ASN1_STRING_get0_data(gen->d.uniformResourceIdentifier)),
  15633. static_cast<size_t>(
  15634. ASN1_STRING_length(gen->d.uniformResourceIdentifier)));
  15635. }
  15636. break;
  15637. default: entry.type = SanType::OTHER; break;
  15638. }
  15639. if (!entry.value.empty()) { sans.push_back(std::move(entry)); }
  15640. }
  15641. GENERAL_NAMES_free(names);
  15642. return true;
  15643. }
  15644. inline bool get_cert_validity(cert_t cert, time_t &not_before,
  15645. time_t &not_after) {
  15646. if (!cert) return false;
  15647. auto x509 = static_cast<X509 *>(cert);
  15648. auto nb = X509_get0_notBefore(x509);
  15649. auto na = X509_get0_notAfter(x509);
  15650. if (!nb || !na) return false;
  15651. ASN1_TIME *epoch = ASN1_TIME_new();
  15652. if (!epoch) return false;
  15653. auto se = detail::scope_exit([&] { ASN1_TIME_free(epoch); });
  15654. if (!ASN1_TIME_set(epoch, 0)) return false;
  15655. int pday, psec;
  15656. if (!ASN1_TIME_diff(&pday, &psec, epoch, nb)) return false;
  15657. not_before = 86400 * (time_t)pday + psec;
  15658. if (!ASN1_TIME_diff(&pday, &psec, epoch, na)) return false;
  15659. not_after = 86400 * (time_t)pday + psec;
  15660. return true;
  15661. }
  15662. inline std::string get_cert_serial(cert_t cert) {
  15663. if (!cert) return "";
  15664. auto x509 = static_cast<X509 *>(cert);
  15665. auto serial = X509_get_serialNumber(x509);
  15666. if (!serial) return "";
  15667. auto bn = ASN1_INTEGER_to_BN(serial, nullptr);
  15668. if (!bn) return "";
  15669. auto hex = BN_bn2hex(bn);
  15670. BN_free(bn);
  15671. if (!hex) return "";
  15672. std::string result(hex);
  15673. OPENSSL_free(hex);
  15674. return result;
  15675. }
  15676. inline bool get_cert_der(cert_t cert, std::vector<unsigned char> &der) {
  15677. if (!cert) return false;
  15678. auto x509 = static_cast<X509 *>(cert);
  15679. auto len = i2d_X509(x509, nullptr);
  15680. if (len < 0) return false;
  15681. der.resize(static_cast<size_t>(len));
  15682. auto p = der.data();
  15683. i2d_X509(x509, &p);
  15684. return true;
  15685. }
  15686. inline const char *get_sni(const_session_t session) {
  15687. if (!session) return nullptr;
  15688. auto ssl = static_cast<SSL *>(const_cast<void *>(session));
  15689. return SSL_get_servername(ssl, TLSEXT_NAMETYPE_host_name);
  15690. }
  15691. inline uint64_t peek_error() { return ERR_peek_last_error(); }
  15692. inline uint64_t get_error() { return ERR_get_error(); }
  15693. inline std::string error_string(uint64_t code) {
  15694. char buf[256];
  15695. ERR_error_string_n(static_cast<unsigned long>(code), buf, sizeof(buf));
  15696. return std::string(buf);
  15697. }
  15698. inline ca_store_t create_ca_store(const char *pem, size_t len) {
  15699. auto mem = BIO_new_mem_buf(pem, static_cast<int>(len));
  15700. if (!mem) { return nullptr; }
  15701. auto mem_guard = detail::scope_exit([&] { BIO_free_all(mem); });
  15702. auto inf = PEM_X509_INFO_read_bio(mem, nullptr, nullptr, nullptr);
  15703. if (!inf) { return nullptr; }
  15704. auto store = X509_STORE_new();
  15705. if (store) {
  15706. for (auto i = 0; i < static_cast<int>(sk_X509_INFO_num(inf)); i++) {
  15707. auto itmp = sk_X509_INFO_value(inf, i);
  15708. if (!itmp) { continue; }
  15709. if (itmp->x509) { X509_STORE_add_cert(store, itmp->x509); }
  15710. if (itmp->crl) { X509_STORE_add_crl(store, itmp->crl); }
  15711. }
  15712. }
  15713. sk_X509_INFO_pop_free(inf, X509_INFO_free);
  15714. return static_cast<ca_store_t>(store);
  15715. }
  15716. inline void free_ca_store(ca_store_t store) {
  15717. if (store) { X509_STORE_free(static_cast<X509_STORE *>(store)); }
  15718. }
  15719. inline bool set_ca_store(ctx_t ctx, ca_store_t store) {
  15720. if (!ctx || !store) { return false; }
  15721. auto ssl_ctx = static_cast<SSL_CTX *>(ctx);
  15722. auto x509_store = static_cast<X509_STORE *>(store);
  15723. // Check if same store is already set
  15724. if (SSL_CTX_get_cert_store(ssl_ctx) == x509_store) { return true; }
  15725. // SSL_CTX_set_cert_store takes ownership and frees the old store
  15726. SSL_CTX_set_cert_store(ssl_ctx, x509_store);
  15727. return true;
  15728. }
  15729. inline size_t get_ca_certs(ctx_t ctx, std::vector<cert_t> &certs) {
  15730. certs.clear();
  15731. if (!ctx) { return 0; }
  15732. auto ssl_ctx = static_cast<SSL_CTX *>(ctx);
  15733. auto store = SSL_CTX_get_cert_store(ssl_ctx);
  15734. if (!store) { return 0; }
  15735. auto objs = impl::get_store_objects(store);
  15736. if (!objs) { return 0; }
  15737. auto se = detail::scope_exit([&] { impl::release_store_objects(objs); });
  15738. auto count = sk_X509_OBJECT_num(objs);
  15739. for (decltype(count) i = 0; i < count; i++) {
  15740. auto obj = sk_X509_OBJECT_value(objs, i);
  15741. if (!obj) { continue; }
  15742. if (X509_OBJECT_get_type(obj) == X509_LU_X509) {
  15743. auto x509 = X509_OBJECT_get0_X509(obj);
  15744. if (x509) {
  15745. // Increment reference count so caller can free it
  15746. X509_up_ref(x509);
  15747. certs.push_back(static_cast<cert_t>(x509));
  15748. }
  15749. }
  15750. }
  15751. return certs.size();
  15752. }
  15753. inline std::vector<std::string> get_ca_names(ctx_t ctx) {
  15754. std::vector<std::string> names;
  15755. if (!ctx) { return names; }
  15756. auto ssl_ctx = static_cast<SSL_CTX *>(ctx);
  15757. auto store = SSL_CTX_get_cert_store(ssl_ctx);
  15758. if (!store) { return names; }
  15759. auto objs = impl::get_store_objects(store);
  15760. if (!objs) { return names; }
  15761. auto se = detail::scope_exit([&] { impl::release_store_objects(objs); });
  15762. auto count = sk_X509_OBJECT_num(objs);
  15763. for (decltype(count) i = 0; i < count; i++) {
  15764. auto obj = sk_X509_OBJECT_value(objs, i);
  15765. if (!obj) { continue; }
  15766. if (X509_OBJECT_get_type(obj) == X509_LU_X509) {
  15767. auto x509 = X509_OBJECT_get0_X509(obj);
  15768. if (x509) {
  15769. auto subject = X509_get_subject_name(x509);
  15770. if (subject) {
  15771. char buf[512];
  15772. X509_NAME_oneline(subject, buf, sizeof(buf));
  15773. names.push_back(buf);
  15774. }
  15775. }
  15776. }
  15777. }
  15778. return names;
  15779. }
  15780. inline bool update_server_cert(ctx_t ctx, const char *cert_pem,
  15781. const char *key_pem, const char *password) {
  15782. if (!ctx || !cert_pem || !key_pem) { return false; }
  15783. auto ssl_ctx = static_cast<SSL_CTX *>(ctx);
  15784. // Load certificate from PEM
  15785. auto cert_bio = BIO_new_mem_buf(cert_pem, -1);
  15786. if (!cert_bio) { return false; }
  15787. auto cert = PEM_read_bio_X509(cert_bio, nullptr, nullptr, nullptr);
  15788. BIO_free(cert_bio);
  15789. if (!cert) { return false; }
  15790. // Load private key from PEM
  15791. auto key_bio = BIO_new_mem_buf(key_pem, -1);
  15792. if (!key_bio) {
  15793. X509_free(cert);
  15794. return false;
  15795. }
  15796. auto key = PEM_read_bio_PrivateKey(key_bio, nullptr, nullptr,
  15797. password ? const_cast<char *>(password)
  15798. : nullptr);
  15799. BIO_free(key_bio);
  15800. if (!key) {
  15801. X509_free(cert);
  15802. return false;
  15803. }
  15804. // Update certificate and key
  15805. auto ret = SSL_CTX_use_certificate(ssl_ctx, cert) == 1 &&
  15806. SSL_CTX_use_PrivateKey(ssl_ctx, key) == 1;
  15807. X509_free(cert);
  15808. EVP_PKEY_free(key);
  15809. return ret;
  15810. }
  15811. inline bool update_server_client_ca(ctx_t ctx, const char *ca_pem) {
  15812. if (!ctx || !ca_pem) { return false; }
  15813. auto ssl_ctx = static_cast<SSL_CTX *>(ctx);
  15814. // Create new X509_STORE from PEM
  15815. auto store = create_ca_store(ca_pem, strlen(ca_pem));
  15816. if (!store) { return false; }
  15817. // SSL_CTX_set_cert_store takes ownership
  15818. SSL_CTX_set_cert_store(ssl_ctx, static_cast<X509_STORE *>(store));
  15819. // Set client CA list for client certificate request
  15820. auto ca_list = impl::create_client_ca_list_from_pem(ca_pem);
  15821. if (ca_list) {
  15822. // SSL_CTX_set_client_CA_list takes ownership of ca_list
  15823. SSL_CTX_set_client_CA_list(ssl_ctx, ca_list);
  15824. }
  15825. return true;
  15826. }
  15827. inline bool set_verify_callback(ctx_t ctx, VerifyCallback callback) {
  15828. if (!ctx) { return false; }
  15829. auto ssl_ctx = static_cast<SSL_CTX *>(ctx);
  15830. impl::get_verify_callback() = std::move(callback);
  15831. if (impl::get_verify_callback()) {
  15832. SSL_CTX_set_verify(ssl_ctx, SSL_VERIFY_PEER, impl::openssl_verify_callback);
  15833. } else {
  15834. SSL_CTX_set_verify(ssl_ctx, SSL_VERIFY_PEER, nullptr);
  15835. }
  15836. return true;
  15837. }
  15838. inline long get_verify_error(const_session_t session) {
  15839. if (!session) { return -1; }
  15840. auto ssl = static_cast<SSL *>(const_cast<void *>(session));
  15841. return SSL_get_verify_result(ssl);
  15842. }
  15843. inline std::string verify_error_string(long error_code) {
  15844. if (error_code == X509_V_OK) { return ""; }
  15845. const char *str = X509_verify_cert_error_string(static_cast<int>(error_code));
  15846. return str ? str : "unknown error";
  15847. }
  15848. } // namespace tls
  15849. #endif // CPPHTTPLIB_OPENSSL_SUPPORT
  15850. /*
  15851. * Group 9: TLS abstraction layer - Mbed TLS backend
  15852. */
  15853. /*
  15854. * Mbed TLS Backend Implementation
  15855. */
  15856. #ifdef CPPHTTPLIB_MBEDTLS_SUPPORT
  15857. namespace tls {
  15858. namespace impl {
  15859. // Mbed TLS session wrapper
  15860. struct MbedTlsSession {
  15861. mbedtls_ssl_context ssl;
  15862. socket_t sock = INVALID_SOCKET;
  15863. std::string hostname; // For client: set via set_sni
  15864. std::string sni_hostname; // For server: received from client via SNI callback
  15865. // Mbed TLS has no SSL_peek() equivalent, so is_peer_closed() must probe with
  15866. // a real 1-byte mbedtls_ssl_read(). If that probe lands on application data
  15867. // (e.g. a response that arrived while this side was still in its post-write
  15868. // check), the byte is pushed back here and served by the next read().
  15869. unsigned char peeked_byte = 0;
  15870. bool has_peeked_byte = false;
  15871. MbedTlsSession() { mbedtls_ssl_init(&ssl); }
  15872. ~MbedTlsSession() { mbedtls_ssl_free(&ssl); }
  15873. MbedTlsSession(const MbedTlsSession &) = delete;
  15874. MbedTlsSession &operator=(const MbedTlsSession &) = delete;
  15875. };
  15876. // Thread-local error code accessor for Mbed TLS (since it doesn't have an error
  15877. // queue)
  15878. inline int &mbedtls_last_error() {
  15879. static thread_local int err = 0;
  15880. return err;
  15881. }
  15882. // Helper to map Mbed TLS error to ErrorCode
  15883. inline ErrorCode map_mbedtls_error(int ret, int &out_errno) {
  15884. if (ret == 0) { return ErrorCode::Success; }
  15885. if (ret == MBEDTLS_ERR_SSL_WANT_READ) { return ErrorCode::WantRead; }
  15886. if (ret == MBEDTLS_ERR_SSL_WANT_WRITE) { return ErrorCode::WantWrite; }
  15887. if (ret == MBEDTLS_ERR_SSL_PEER_CLOSE_NOTIFY) {
  15888. return ErrorCode::PeerClosed;
  15889. }
  15890. if (ret == MBEDTLS_ERR_NET_CONN_RESET || ret == MBEDTLS_ERR_NET_SEND_FAILED ||
  15891. ret == MBEDTLS_ERR_NET_RECV_FAILED) {
  15892. out_errno = errno;
  15893. return ErrorCode::SyscallError;
  15894. }
  15895. if (ret == MBEDTLS_ERR_X509_CERT_VERIFY_FAILED) {
  15896. return ErrorCode::CertVerifyFailed;
  15897. }
  15898. return ErrorCode::Fatal;
  15899. }
  15900. // A TLS 1.3 NewSessionTicket (signaled by default on Mbed TLS 4.x) is a
  15901. // non-fatal notification delivered between records, not an error and not
  15902. // application data, so I/O calls that see it should just be retried. Kept in
  15903. // one helper so the retry loops keep an intact "do { } while (...)" instead of
  15904. // splitting the closing brace across an #if.
  15905. inline bool mbedtls_is_session_ticket(int ret) {
  15906. #if defined(MBEDTLS_ERR_SSL_RECEIVED_NEW_SESSION_TICKET)
  15907. return ret == MBEDTLS_ERR_SSL_RECEIVED_NEW_SESSION_TICKET;
  15908. #else
  15909. (void)ret;
  15910. return false;
  15911. #endif
  15912. }
  15913. // BIO-like send callback for Mbed TLS
  15914. inline int mbedtls_net_send_cb(void *ctx, const unsigned char *buf,
  15915. size_t len) {
  15916. auto sock = *static_cast<socket_t *>(ctx);
  15917. #ifdef _WIN32
  15918. auto ret =
  15919. send(sock, reinterpret_cast<const char *>(buf), static_cast<int>(len), 0);
  15920. if (ret == SOCKET_ERROR) {
  15921. int err = WSAGetLastError();
  15922. if (err == WSAEWOULDBLOCK) { return MBEDTLS_ERR_SSL_WANT_WRITE; }
  15923. return MBEDTLS_ERR_NET_SEND_FAILED;
  15924. }
  15925. #else
  15926. auto ret = send(sock, buf, len, 0);
  15927. if (ret < 0) {
  15928. if (errno == EAGAIN || errno == EWOULDBLOCK) {
  15929. return MBEDTLS_ERR_SSL_WANT_WRITE;
  15930. }
  15931. return MBEDTLS_ERR_NET_SEND_FAILED;
  15932. }
  15933. #endif
  15934. return static_cast<int>(ret);
  15935. }
  15936. // BIO-like recv callback for Mbed TLS
  15937. inline int mbedtls_net_recv_cb(void *ctx, unsigned char *buf, size_t len) {
  15938. auto sock = *static_cast<socket_t *>(ctx);
  15939. #ifdef _WIN32
  15940. auto ret =
  15941. recv(sock, reinterpret_cast<char *>(buf), static_cast<int>(len), 0);
  15942. if (ret == SOCKET_ERROR) {
  15943. int err = WSAGetLastError();
  15944. if (err == WSAEWOULDBLOCK) { return MBEDTLS_ERR_SSL_WANT_READ; }
  15945. return MBEDTLS_ERR_NET_RECV_FAILED;
  15946. }
  15947. #else
  15948. auto ret = recv(sock, buf, len, 0);
  15949. if (ret < 0) {
  15950. if (errno == EAGAIN || errno == EWOULDBLOCK) {
  15951. return MBEDTLS_ERR_SSL_WANT_READ;
  15952. }
  15953. return MBEDTLS_ERR_NET_RECV_FAILED;
  15954. }
  15955. #endif
  15956. if (ret == 0) { return MBEDTLS_ERR_SSL_PEER_CLOSE_NOTIFY; }
  15957. return static_cast<int>(ret);
  15958. }
  15959. // MbedTlsContext constructor/destructor implementations
  15960. inline MbedTlsContext::MbedTlsContext() {
  15961. mbedtls_ssl_config_init(&conf);
  15962. #ifndef CPPHTTPLIB_MBEDTLS_V4
  15963. mbedtls_entropy_init(&entropy);
  15964. mbedtls_ctr_drbg_init(&ctr_drbg);
  15965. #endif
  15966. mbedtls_x509_crt_init(&ca_chain);
  15967. mbedtls_x509_crt_init(&own_cert);
  15968. mbedtls_pk_init(&own_key);
  15969. }
  15970. inline MbedTlsContext::~MbedTlsContext() {
  15971. mbedtls_pk_free(&own_key);
  15972. mbedtls_x509_crt_free(&own_cert);
  15973. mbedtls_x509_crt_free(&ca_chain);
  15974. #ifndef CPPHTTPLIB_MBEDTLS_V4
  15975. mbedtls_ctr_drbg_free(&ctr_drbg);
  15976. mbedtls_entropy_free(&entropy);
  15977. #endif
  15978. mbedtls_ssl_config_free(&conf);
  15979. }
  15980. // Thread-local storage for SNI captured during handshake
  15981. // This is needed because the SNI callback doesn't have a way to pass
  15982. // session-specific data before the session is fully set up
  15983. inline std::string &mbedpending_sni() {
  15984. static thread_local std::string sni;
  15985. return sni;
  15986. }
  15987. // SNI callback for Mbed TLS server to capture client's SNI hostname
  15988. inline int mbedtls_sni_callback(void *p_ctx, mbedtls_ssl_context *ssl,
  15989. const unsigned char *name, size_t name_len) {
  15990. (void)p_ctx;
  15991. (void)ssl;
  15992. // Store SNI name in thread-local storage
  15993. // It will be retrieved and stored in the session after handshake
  15994. if (name && name_len > 0) {
  15995. mbedpending_sni().assign(reinterpret_cast<const char *>(name), name_len);
  15996. } else {
  15997. mbedpending_sni().clear();
  15998. }
  15999. return 0; // Accept any SNI
  16000. }
  16001. inline int mbedtls_verify_callback(void *data, mbedtls_x509_crt *crt,
  16002. int cert_depth, uint32_t *flags);
  16003. // MbedTLS verify callback wrapper
  16004. inline int mbedtls_verify_callback(void *data, mbedtls_x509_crt *crt,
  16005. int cert_depth, uint32_t *flags) {
  16006. auto &callback = get_verify_callback();
  16007. if (!callback) { return 0; } // Continue with default verification
  16008. // data points to the MbedTlsSession
  16009. auto *session = static_cast<MbedTlsSession *>(data);
  16010. // Build context
  16011. VerifyContext verify_ctx;
  16012. verify_ctx.session = static_cast<session_t>(session);
  16013. verify_ctx.cert = static_cast<cert_t>(crt);
  16014. verify_ctx.depth = cert_depth;
  16015. verify_ctx.preverify_ok = (*flags == 0);
  16016. verify_ctx.error_code = static_cast<long>(*flags);
  16017. // Convert Mbed TLS flags to error string
  16018. static thread_local char error_buf[256];
  16019. if (*flags != 0) {
  16020. mbedtls_x509_crt_verify_info(error_buf, sizeof(error_buf), "", *flags);
  16021. verify_ctx.error_string = error_buf;
  16022. } else {
  16023. verify_ctx.error_string = nullptr;
  16024. }
  16025. bool accepted = callback(verify_ctx);
  16026. if (accepted) {
  16027. *flags = 0; // Clear all error flags
  16028. return 0;
  16029. }
  16030. return MBEDTLS_ERR_X509_CERT_VERIFY_FAILED;
  16031. }
  16032. } // namespace impl
  16033. inline ctx_t create_client_context() {
  16034. auto ctx = new (std::nothrow) impl::MbedTlsContext();
  16035. if (!ctx) { return nullptr; }
  16036. ctx->is_server = false;
  16037. #ifdef CPPHTTPLIB_MBEDTLS_V4
  16038. // Mbed TLS 4.x draws randomness from PSA Crypto; just ensure it is ready.
  16039. if (!detail::ensure_mbedtls_psa_crypto()) {
  16040. delete ctx;
  16041. return nullptr;
  16042. }
  16043. int ret;
  16044. #else
  16045. // Seed the random number generator
  16046. const char *pers = "httplib_client";
  16047. int ret = mbedtls_ctr_drbg_seed(
  16048. &ctx->ctr_drbg, mbedtls_entropy_func, &ctx->entropy,
  16049. reinterpret_cast<const unsigned char *>(pers), strlen(pers));
  16050. if (ret != 0) {
  16051. impl::mbedtls_last_error() = ret;
  16052. delete ctx;
  16053. return nullptr;
  16054. }
  16055. #endif
  16056. // Set up SSL config for client
  16057. ret = mbedtls_ssl_config_defaults(&ctx->conf, MBEDTLS_SSL_IS_CLIENT,
  16058. MBEDTLS_SSL_TRANSPORT_STREAM,
  16059. MBEDTLS_SSL_PRESET_DEFAULT);
  16060. if (ret != 0) {
  16061. impl::mbedtls_last_error() = ret;
  16062. delete ctx;
  16063. return nullptr;
  16064. }
  16065. #ifndef CPPHTTPLIB_MBEDTLS_V4
  16066. // Set random number generator (Mbed TLS 4.x uses the PSA RNG implicitly)
  16067. mbedtls_ssl_conf_rng(&ctx->conf, mbedtls_ctr_drbg_random, &ctx->ctr_drbg);
  16068. #endif
  16069. // Default: verify peer certificate
  16070. mbedtls_ssl_conf_authmode(&ctx->conf, MBEDTLS_SSL_VERIFY_REQUIRED);
  16071. // Set minimum TLS version to 1.2
  16072. #ifdef CPPHTTPLIB_MBEDTLS_V3
  16073. mbedtls_ssl_conf_min_tls_version(&ctx->conf, MBEDTLS_SSL_VERSION_TLS1_2);
  16074. #else
  16075. mbedtls_ssl_conf_min_version(&ctx->conf, MBEDTLS_SSL_MAJOR_VERSION_3,
  16076. MBEDTLS_SSL_MINOR_VERSION_3);
  16077. #endif
  16078. return static_cast<ctx_t>(ctx);
  16079. }
  16080. inline ctx_t create_server_context() {
  16081. auto ctx = new (std::nothrow) impl::MbedTlsContext();
  16082. if (!ctx) { return nullptr; }
  16083. ctx->is_server = true;
  16084. #ifdef CPPHTTPLIB_MBEDTLS_V4
  16085. // Mbed TLS 4.x draws randomness from PSA Crypto; just ensure it is ready.
  16086. if (!detail::ensure_mbedtls_psa_crypto()) {
  16087. delete ctx;
  16088. return nullptr;
  16089. }
  16090. int ret;
  16091. #else
  16092. // Seed the random number generator
  16093. const char *pers = "httplib_server";
  16094. int ret = mbedtls_ctr_drbg_seed(
  16095. &ctx->ctr_drbg, mbedtls_entropy_func, &ctx->entropy,
  16096. reinterpret_cast<const unsigned char *>(pers), strlen(pers));
  16097. if (ret != 0) {
  16098. impl::mbedtls_last_error() = ret;
  16099. delete ctx;
  16100. return nullptr;
  16101. }
  16102. #endif
  16103. // Set up SSL config for server
  16104. ret = mbedtls_ssl_config_defaults(&ctx->conf, MBEDTLS_SSL_IS_SERVER,
  16105. MBEDTLS_SSL_TRANSPORT_STREAM,
  16106. MBEDTLS_SSL_PRESET_DEFAULT);
  16107. if (ret != 0) {
  16108. impl::mbedtls_last_error() = ret;
  16109. delete ctx;
  16110. return nullptr;
  16111. }
  16112. #ifndef CPPHTTPLIB_MBEDTLS_V4
  16113. // Set random number generator (Mbed TLS 4.x uses the PSA RNG implicitly)
  16114. mbedtls_ssl_conf_rng(&ctx->conf, mbedtls_ctr_drbg_random, &ctx->ctr_drbg);
  16115. #endif
  16116. // Default: don't verify client
  16117. mbedtls_ssl_conf_authmode(&ctx->conf, MBEDTLS_SSL_VERIFY_NONE);
  16118. // Set minimum TLS version to 1.2
  16119. #ifdef CPPHTTPLIB_MBEDTLS_V3
  16120. mbedtls_ssl_conf_min_tls_version(&ctx->conf, MBEDTLS_SSL_VERSION_TLS1_2);
  16121. #else
  16122. mbedtls_ssl_conf_min_version(&ctx->conf, MBEDTLS_SSL_MAJOR_VERSION_3,
  16123. MBEDTLS_SSL_MINOR_VERSION_3);
  16124. #endif
  16125. // Set SNI callback to capture client's SNI hostname
  16126. mbedtls_ssl_conf_sni(&ctx->conf, impl::mbedtls_sni_callback, nullptr);
  16127. return static_cast<ctx_t>(ctx);
  16128. }
  16129. inline void free_context(ctx_t ctx) {
  16130. if (ctx) { delete static_cast<impl::MbedTlsContext *>(ctx); }
  16131. }
  16132. inline bool set_min_version(ctx_t ctx, Version version) {
  16133. if (!ctx) { return false; }
  16134. auto mctx = static_cast<impl::MbedTlsContext *>(ctx);
  16135. #ifdef CPPHTTPLIB_MBEDTLS_V3
  16136. // Mbed TLS 3.x uses mbedtls_ssl_protocol_version enum
  16137. mbedtls_ssl_protocol_version min_ver = MBEDTLS_SSL_VERSION_TLS1_2;
  16138. if (version >= Version::TLS1_3) {
  16139. #if defined(MBEDTLS_SSL_PROTO_TLS1_3)
  16140. min_ver = MBEDTLS_SSL_VERSION_TLS1_3;
  16141. #endif
  16142. }
  16143. mbedtls_ssl_conf_min_tls_version(&mctx->conf, min_ver);
  16144. #else
  16145. // Mbed TLS 2.x uses major/minor version numbers
  16146. int major = MBEDTLS_SSL_MAJOR_VERSION_3;
  16147. int minor = MBEDTLS_SSL_MINOR_VERSION_3; // TLS 1.2
  16148. if (version >= Version::TLS1_3) {
  16149. #if defined(MBEDTLS_SSL_PROTO_TLS1_3)
  16150. minor = MBEDTLS_SSL_MINOR_VERSION_4; // TLS 1.3
  16151. #else
  16152. minor = MBEDTLS_SSL_MINOR_VERSION_3; // Fall back to TLS 1.2
  16153. #endif
  16154. }
  16155. mbedtls_ssl_conf_min_version(&mctx->conf, major, minor);
  16156. #endif
  16157. return true;
  16158. }
  16159. inline bool load_ca_pem(ctx_t ctx, const char *pem, size_t len) {
  16160. if (!ctx || !pem) { return false; }
  16161. auto mctx = static_cast<impl::MbedTlsContext *>(ctx);
  16162. // mbedtls_x509_crt_parse expects null-terminated string for PEM
  16163. // Add null terminator if not present
  16164. std::string pem_str(pem, len);
  16165. int ret = mbedtls_x509_crt_parse(
  16166. &mctx->ca_chain, reinterpret_cast<const unsigned char *>(pem_str.c_str()),
  16167. pem_str.size() + 1);
  16168. if (ret != 0) {
  16169. impl::mbedtls_last_error() = ret;
  16170. return false;
  16171. }
  16172. mbedtls_ssl_conf_ca_chain(&mctx->conf, &mctx->ca_chain, nullptr);
  16173. return true;
  16174. }
  16175. inline bool load_ca_file(ctx_t ctx, const char *file_path) {
  16176. if (!ctx || !file_path) { return false; }
  16177. auto mctx = static_cast<impl::MbedTlsContext *>(ctx);
  16178. int ret = mbedtls_x509_crt_parse_file(&mctx->ca_chain, file_path);
  16179. if (ret != 0) {
  16180. impl::mbedtls_last_error() = ret;
  16181. return false;
  16182. }
  16183. mbedtls_ssl_conf_ca_chain(&mctx->conf, &mctx->ca_chain, nullptr);
  16184. return true;
  16185. }
  16186. inline bool load_ca_dir(ctx_t ctx, const char *dir_path) {
  16187. if (!ctx || !dir_path) { return false; }
  16188. auto mctx = static_cast<impl::MbedTlsContext *>(ctx);
  16189. int ret = mbedtls_x509_crt_parse_path(&mctx->ca_chain, dir_path);
  16190. if (ret < 0) { // Returns number of certs on success, negative on error
  16191. impl::mbedtls_last_error() = ret;
  16192. return false;
  16193. }
  16194. mbedtls_ssl_conf_ca_chain(&mctx->conf, &mctx->ca_chain, nullptr);
  16195. return true;
  16196. }
  16197. inline bool load_system_certs(ctx_t ctx) {
  16198. if (!ctx) { return false; }
  16199. auto mctx = static_cast<impl::MbedTlsContext *>(ctx);
  16200. bool loaded = false;
  16201. #ifdef _WIN32
  16202. loaded = impl::enumerate_windows_system_certs(
  16203. [&](const unsigned char *data, size_t len) {
  16204. return mbedtls_x509_crt_parse_der(&mctx->ca_chain, data, len) == 0;
  16205. });
  16206. #elif defined(__APPLE__) && defined(CPPHTTPLIB_USE_CERTS_FROM_MACOSX_KEYCHAIN)
  16207. loaded = impl::enumerate_macos_keychain_certs(
  16208. [&](const unsigned char *data, size_t len) {
  16209. return mbedtls_x509_crt_parse_der(&mctx->ca_chain, data, len) == 0;
  16210. });
  16211. #else
  16212. for (auto path = impl::system_ca_paths(); *path; ++path) {
  16213. if (mbedtls_x509_crt_parse_file(&mctx->ca_chain, *path) >= 0) {
  16214. loaded = true;
  16215. break;
  16216. }
  16217. }
  16218. if (!loaded) {
  16219. for (auto dir = impl::system_ca_dirs(); *dir; ++dir) {
  16220. if (mbedtls_x509_crt_parse_path(&mctx->ca_chain, *dir) >= 0) {
  16221. loaded = true;
  16222. break;
  16223. }
  16224. }
  16225. }
  16226. #endif
  16227. if (loaded) {
  16228. mbedtls_ssl_conf_ca_chain(&mctx->conf, &mctx->ca_chain, nullptr);
  16229. }
  16230. return loaded;
  16231. }
  16232. inline bool set_client_cert_pem(ctx_t ctx, const char *cert, const char *key,
  16233. const char *password) {
  16234. if (!ctx || !cert || !key) { return false; }
  16235. auto mctx = static_cast<impl::MbedTlsContext *>(ctx);
  16236. // Parse certificate
  16237. std::string cert_str(cert);
  16238. int ret = mbedtls_x509_crt_parse(
  16239. &mctx->own_cert,
  16240. reinterpret_cast<const unsigned char *>(cert_str.c_str()),
  16241. cert_str.size() + 1);
  16242. if (ret != 0) {
  16243. impl::mbedtls_last_error() = ret;
  16244. return false;
  16245. }
  16246. // Parse private key
  16247. std::string key_str(key);
  16248. const unsigned char *pwd =
  16249. password ? reinterpret_cast<const unsigned char *>(password) : nullptr;
  16250. size_t pwd_len = password ? strlen(password) : 0;
  16251. #if defined(CPPHTTPLIB_MBEDTLS_V3) && !defined(CPPHTTPLIB_MBEDTLS_V4)
  16252. ret = mbedtls_pk_parse_key(
  16253. &mctx->own_key, reinterpret_cast<const unsigned char *>(key_str.c_str()),
  16254. key_str.size() + 1, pwd, pwd_len, mbedtls_ctr_drbg_random,
  16255. &mctx->ctr_drbg);
  16256. #else
  16257. ret = mbedtls_pk_parse_key(
  16258. &mctx->own_key, reinterpret_cast<const unsigned char *>(key_str.c_str()),
  16259. key_str.size() + 1, pwd, pwd_len);
  16260. #endif
  16261. if (ret != 0) {
  16262. impl::mbedtls_last_error() = ret;
  16263. return false;
  16264. }
  16265. // Verify that the certificate and private key match.
  16266. // Mbed TLS 4.x: mbedtls_pk_check_pair() reports a spurious mismatch for
  16267. // PSA-backed keys, so skip it and let the handshake surface a real mismatch.
  16268. #ifndef CPPHTTPLIB_MBEDTLS_V4
  16269. #ifdef CPPHTTPLIB_MBEDTLS_V3
  16270. ret = mbedtls_pk_check_pair(&mctx->own_cert.pk, &mctx->own_key,
  16271. mbedtls_ctr_drbg_random, &mctx->ctr_drbg);
  16272. #else
  16273. ret = mbedtls_pk_check_pair(&mctx->own_cert.pk, &mctx->own_key);
  16274. #endif
  16275. if (ret != 0) {
  16276. impl::mbedtls_last_error() = ret;
  16277. return false;
  16278. }
  16279. #endif
  16280. ret = mbedtls_ssl_conf_own_cert(&mctx->conf, &mctx->own_cert, &mctx->own_key);
  16281. if (ret != 0) {
  16282. impl::mbedtls_last_error() = ret;
  16283. return false;
  16284. }
  16285. return true;
  16286. }
  16287. inline bool set_client_cert_file(ctx_t ctx, const char *cert_path,
  16288. const char *key_path, const char *password) {
  16289. if (!ctx || !cert_path || !key_path) { return false; }
  16290. auto mctx = static_cast<impl::MbedTlsContext *>(ctx);
  16291. // Parse certificate file
  16292. int ret = mbedtls_x509_crt_parse_file(&mctx->own_cert, cert_path);
  16293. if (ret != 0) {
  16294. impl::mbedtls_last_error() = ret;
  16295. return false;
  16296. }
  16297. // Parse private key file
  16298. #if defined(CPPHTTPLIB_MBEDTLS_V3) && !defined(CPPHTTPLIB_MBEDTLS_V4)
  16299. ret = mbedtls_pk_parse_keyfile(&mctx->own_key, key_path, password,
  16300. mbedtls_ctr_drbg_random, &mctx->ctr_drbg);
  16301. #else
  16302. ret = mbedtls_pk_parse_keyfile(&mctx->own_key, key_path, password);
  16303. #endif
  16304. if (ret != 0) {
  16305. impl::mbedtls_last_error() = ret;
  16306. return false;
  16307. }
  16308. // Verify that the certificate and private key match.
  16309. // Mbed TLS 4.x: see set_client_cert() — skip the spurious check_pair.
  16310. #ifndef CPPHTTPLIB_MBEDTLS_V4
  16311. #ifdef CPPHTTPLIB_MBEDTLS_V3
  16312. ret = mbedtls_pk_check_pair(&mctx->own_cert.pk, &mctx->own_key,
  16313. mbedtls_ctr_drbg_random, &mctx->ctr_drbg);
  16314. #else
  16315. ret = mbedtls_pk_check_pair(&mctx->own_cert.pk, &mctx->own_key);
  16316. #endif
  16317. if (ret != 0) {
  16318. impl::mbedtls_last_error() = ret;
  16319. return false;
  16320. }
  16321. #endif
  16322. ret = mbedtls_ssl_conf_own_cert(&mctx->conf, &mctx->own_cert, &mctx->own_key);
  16323. if (ret != 0) {
  16324. impl::mbedtls_last_error() = ret;
  16325. return false;
  16326. }
  16327. return true;
  16328. }
  16329. inline void set_verify_client(ctx_t ctx, bool require) {
  16330. if (!ctx) { return; }
  16331. auto mctx = static_cast<impl::MbedTlsContext *>(ctx);
  16332. mctx->verify_client = require;
  16333. if (require) {
  16334. mbedtls_ssl_conf_authmode(&mctx->conf, MBEDTLS_SSL_VERIFY_REQUIRED);
  16335. } else {
  16336. // If a verify callback is set, use OPTIONAL mode to ensure the callback
  16337. // is called (matching OpenSSL behavior). Otherwise use NONE.
  16338. mbedtls_ssl_conf_authmode(&mctx->conf, mctx->has_verify_callback
  16339. ? MBEDTLS_SSL_VERIFY_OPTIONAL
  16340. : MBEDTLS_SSL_VERIFY_NONE);
  16341. }
  16342. }
  16343. inline session_t create_session(ctx_t ctx, socket_t sock) {
  16344. if (!ctx || sock == INVALID_SOCKET) { return nullptr; }
  16345. auto mctx = static_cast<impl::MbedTlsContext *>(ctx);
  16346. auto session = new (std::nothrow) impl::MbedTlsSession();
  16347. if (!session) { return nullptr; }
  16348. session->sock = sock;
  16349. int ret = mbedtls_ssl_setup(&session->ssl, &mctx->conf);
  16350. if (ret != 0) {
  16351. impl::mbedtls_last_error() = ret;
  16352. delete session;
  16353. return nullptr;
  16354. }
  16355. // Explicitly opt out of in-handshake hostname verification by default;
  16356. // since Mbed TLS 3.6.4 a client handshake with certificate verification
  16357. // fails outright when no hostname was set. set_sni() installs the real
  16358. // hostname for DNS hosts; for IP hosts (where SNI must not be set) the
  16359. // caller verifies the certificate identity post-handshake via
  16360. // verify_hostname().
  16361. mbedtls_ssl_set_hostname(&session->ssl, nullptr);
  16362. // Set BIO callbacks
  16363. mbedtls_ssl_set_bio(&session->ssl, &session->sock, impl::mbedtls_net_send_cb,
  16364. impl::mbedtls_net_recv_cb, nullptr);
  16365. // Set per-session verify callback with session pointer if callback is
  16366. // registered
  16367. if (mctx->has_verify_callback) {
  16368. mbedtls_ssl_set_verify(&session->ssl, impl::mbedtls_verify_callback,
  16369. session);
  16370. }
  16371. return static_cast<session_t>(session);
  16372. }
  16373. inline void free_session(session_t session) {
  16374. if (session) { delete static_cast<impl::MbedTlsSession *>(session); }
  16375. }
  16376. inline bool set_sni(session_t session, const char *hostname) {
  16377. if (!session || !hostname) { return false; }
  16378. auto msession = static_cast<impl::MbedTlsSession *>(session);
  16379. int ret = mbedtls_ssl_set_hostname(&msession->ssl, hostname);
  16380. if (ret != 0) {
  16381. impl::mbedtls_last_error() = ret;
  16382. return false;
  16383. }
  16384. msession->hostname = hostname;
  16385. return true;
  16386. }
  16387. inline TlsError connect(session_t session) {
  16388. TlsError err;
  16389. if (!session) {
  16390. err.code = ErrorCode::Fatal;
  16391. return err;
  16392. }
  16393. auto msession = static_cast<impl::MbedTlsSession *>(session);
  16394. int ret;
  16395. do {
  16396. ret = mbedtls_ssl_handshake(&msession->ssl);
  16397. } while (impl::mbedtls_is_session_ticket(ret));
  16398. if (ret == 0) {
  16399. err.code = ErrorCode::Success;
  16400. } else {
  16401. err.code = impl::map_mbedtls_error(ret, err.sys_errno);
  16402. err.backend_code = static_cast<uint64_t>(-ret);
  16403. impl::mbedtls_last_error() = ret;
  16404. }
  16405. return err;
  16406. }
  16407. inline TlsError accept(session_t session) {
  16408. // Same as connect for Mbed TLS - handshake works for both client and server
  16409. auto result = connect(session);
  16410. // After successful handshake, capture SNI from thread-local storage
  16411. if (result.code == ErrorCode::Success && session) {
  16412. auto msession = static_cast<impl::MbedTlsSession *>(session);
  16413. msession->sni_hostname = std::move(impl::mbedpending_sni());
  16414. impl::mbedpending_sni().clear();
  16415. }
  16416. return result;
  16417. }
  16418. inline bool connect_nonblocking(session_t session, socket_t sock,
  16419. time_t timeout_sec, time_t timeout_usec,
  16420. TlsError *err) {
  16421. if (!session) {
  16422. if (err) { err->code = ErrorCode::Fatal; }
  16423. return false;
  16424. }
  16425. auto msession = static_cast<impl::MbedTlsSession *>(session);
  16426. // Set socket to non-blocking mode
  16427. detail::set_nonblocking(sock, true);
  16428. auto cleanup =
  16429. detail::scope_exit([&]() { detail::set_nonblocking(sock, false); });
  16430. int ret;
  16431. while ((ret = mbedtls_ssl_handshake(&msession->ssl)) != 0) {
  16432. // Non-fatal TLS 1.3 ticket; retry immediately.
  16433. if (impl::mbedtls_is_session_ticket(ret)) { continue; }
  16434. if (ret == MBEDTLS_ERR_SSL_WANT_READ) {
  16435. if (detail::select_read(sock, timeout_sec, timeout_usec) > 0) {
  16436. continue;
  16437. }
  16438. } else if (ret == MBEDTLS_ERR_SSL_WANT_WRITE) {
  16439. if (detail::select_write(sock, timeout_sec, timeout_usec) > 0) {
  16440. continue;
  16441. }
  16442. }
  16443. // TlsError or timeout
  16444. if (err) {
  16445. err->code = impl::map_mbedtls_error(ret, err->sys_errno);
  16446. err->backend_code = static_cast<uint64_t>(-ret);
  16447. }
  16448. impl::mbedtls_last_error() = ret;
  16449. return false;
  16450. }
  16451. if (err) { err->code = ErrorCode::Success; }
  16452. return true;
  16453. }
  16454. inline bool accept_nonblocking(session_t session, socket_t sock,
  16455. time_t timeout_sec, time_t timeout_usec,
  16456. TlsError *err) {
  16457. // Same implementation as connect for Mbed TLS
  16458. bool result =
  16459. connect_nonblocking(session, sock, timeout_sec, timeout_usec, err);
  16460. // After successful handshake, capture SNI from thread-local storage
  16461. if (result && session) {
  16462. auto msession = static_cast<impl::MbedTlsSession *>(session);
  16463. msession->sni_hostname = std::move(impl::mbedpending_sni());
  16464. impl::mbedpending_sni().clear();
  16465. }
  16466. return result;
  16467. }
  16468. inline ssize_t read(session_t session, void *buf, size_t len, TlsError &err) {
  16469. if (!session || !buf) {
  16470. err.code = ErrorCode::Fatal;
  16471. return -1;
  16472. }
  16473. auto msession = static_cast<impl::MbedTlsSession *>(session);
  16474. // Serve a byte consumed by the is_peer_closed() probe before reading more.
  16475. if (msession->has_peeked_byte) {
  16476. if (len == 0) { return 0; }
  16477. auto p = static_cast<unsigned char *>(buf);
  16478. p[0] = msession->peeked_byte;
  16479. msession->has_peeked_byte = false;
  16480. size_t n = 1;
  16481. // Top up with any already-decrypted bytes without risking a block.
  16482. if (len > 1 && mbedtls_ssl_get_bytes_avail(&msession->ssl) > 0) {
  16483. int extra = mbedtls_ssl_read(&msession->ssl, p + 1, len - 1);
  16484. if (extra > 0) { n += static_cast<size_t>(extra); }
  16485. }
  16486. err.code = ErrorCode::Success;
  16487. return static_cast<ssize_t>(n);
  16488. }
  16489. int ret;
  16490. do {
  16491. ret = mbedtls_ssl_read(&msession->ssl, static_cast<unsigned char *>(buf),
  16492. len);
  16493. } while (impl::mbedtls_is_session_ticket(ret));
  16494. if (ret > 0) {
  16495. err.code = ErrorCode::Success;
  16496. return static_cast<ssize_t>(ret);
  16497. }
  16498. if (ret == 0) {
  16499. err.code = ErrorCode::PeerClosed;
  16500. return 0;
  16501. }
  16502. err.code = impl::map_mbedtls_error(ret, err.sys_errno);
  16503. err.backend_code = static_cast<uint64_t>(-ret);
  16504. impl::mbedtls_last_error() = ret;
  16505. // mbedTLS signals a clean close_notify via a negative error code rather
  16506. // than 0; surface it as a clean EOF the way OpenSSL/wolfSSL do.
  16507. if (err.code == ErrorCode::PeerClosed) { return 0; }
  16508. return -1;
  16509. }
  16510. inline ssize_t write(session_t session, const void *buf, size_t len,
  16511. TlsError &err) {
  16512. if (!session || !buf) {
  16513. err.code = ErrorCode::Fatal;
  16514. return -1;
  16515. }
  16516. auto msession = static_cast<impl::MbedTlsSession *>(session);
  16517. int ret;
  16518. do {
  16519. ret = mbedtls_ssl_write(&msession->ssl,
  16520. static_cast<const unsigned char *>(buf), len);
  16521. } while (impl::mbedtls_is_session_ticket(ret));
  16522. if (ret > 0) {
  16523. err.code = ErrorCode::Success;
  16524. return static_cast<ssize_t>(ret);
  16525. }
  16526. if (ret == 0) {
  16527. err.code = ErrorCode::PeerClosed;
  16528. return 0;
  16529. }
  16530. err.code = impl::map_mbedtls_error(ret, err.sys_errno);
  16531. err.backend_code = static_cast<uint64_t>(-ret);
  16532. impl::mbedtls_last_error() = ret;
  16533. return -1;
  16534. }
  16535. inline int pending(const_session_t session) {
  16536. if (!session) { return 0; }
  16537. auto msession =
  16538. static_cast<impl::MbedTlsSession *>(const_cast<void *>(session));
  16539. return static_cast<int>(mbedtls_ssl_get_bytes_avail(&msession->ssl)) +
  16540. (msession->has_peeked_byte ? 1 : 0);
  16541. }
  16542. inline void shutdown(session_t session, bool graceful) {
  16543. if (!session) { return; }
  16544. auto msession = static_cast<impl::MbedTlsSession *>(session);
  16545. if (graceful) {
  16546. // Try to send close_notify, but don't block forever
  16547. int ret;
  16548. int attempts = 0;
  16549. while ((ret = mbedtls_ssl_close_notify(&msession->ssl)) != 0 &&
  16550. attempts < 3) {
  16551. if (ret != MBEDTLS_ERR_SSL_WANT_READ &&
  16552. ret != MBEDTLS_ERR_SSL_WANT_WRITE) {
  16553. break;
  16554. }
  16555. attempts++;
  16556. }
  16557. }
  16558. }
  16559. inline bool is_peer_closed(session_t session, socket_t sock) {
  16560. if (!session || sock == INVALID_SOCKET) { return true; }
  16561. auto msession = static_cast<impl::MbedTlsSession *>(session);
  16562. // Check if there's already decrypted or pushed-back data available.
  16563. // If so, the connection is definitely alive.
  16564. if (msession->has_peeked_byte ||
  16565. mbedtls_ssl_get_bytes_avail(&msession->ssl) > 0) {
  16566. return false;
  16567. }
  16568. // Set socket to non-blocking to avoid blocking on read
  16569. detail::set_nonblocking(sock, true);
  16570. auto cleanup =
  16571. detail::scope_exit([&]() { detail::set_nonblocking(sock, false); });
  16572. // Probe with a 1-byte read (Mbed TLS has no peek API). If the probe lands
  16573. // on application data — e.g. a response that already arrived — push the
  16574. // byte back so the next read() delivers it instead of losing it.
  16575. unsigned char buf;
  16576. int ret;
  16577. do {
  16578. ret = mbedtls_ssl_read(&msession->ssl, &buf, 1);
  16579. } while (impl::mbedtls_is_session_ticket(ret));
  16580. // If we got data or WANT_READ (would block), connection is alive
  16581. if (ret > 0) {
  16582. msession->peeked_byte = buf;
  16583. msession->has_peeked_byte = true;
  16584. return false;
  16585. }
  16586. if (ret == MBEDTLS_ERR_SSL_WANT_READ) { return false; }
  16587. // If we get a peer close notify or a connection reset, the peer is closed
  16588. return ret == MBEDTLS_ERR_SSL_PEER_CLOSE_NOTIFY ||
  16589. ret == MBEDTLS_ERR_NET_CONN_RESET || ret == 0;
  16590. }
  16591. inline cert_t get_peer_cert(const_session_t session) {
  16592. if (!session) { return nullptr; }
  16593. auto msession =
  16594. static_cast<impl::MbedTlsSession *>(const_cast<void *>(session));
  16595. // Mbed TLS returns a pointer to the internal peer cert chain.
  16596. // WARNING: This pointer is only valid while the session is active.
  16597. // Do not use the certificate after calling free_session().
  16598. const mbedtls_x509_crt *cert = mbedtls_ssl_get_peer_cert(&msession->ssl);
  16599. return const_cast<mbedtls_x509_crt *>(cert);
  16600. }
  16601. inline void free_cert(cert_t cert) {
  16602. // Mbed TLS: peer certificate is owned by the SSL context.
  16603. // No-op here, but callers should still call this for cross-backend
  16604. // portability.
  16605. (void)cert;
  16606. }
  16607. inline bool verify_hostname(cert_t cert, const char *hostname) {
  16608. if (!cert || !hostname) { return false; }
  16609. auto mcert = static_cast<const mbedtls_x509_crt *>(cert);
  16610. std::string host_str(hostname);
  16611. // Check if hostname is an IP address (IPv4 or IPv6)
  16612. unsigned char ip_bytes[16];
  16613. auto ip_len = impl::parse_ip_address(host_str, ip_bytes);
  16614. auto is_ip = ip_len > 0;
  16615. // Check Subject Alternative Names (SAN)
  16616. // In Mbed TLS 3.x, subject_alt_names contains raw values without ASN.1 tags
  16617. // - DNS names: raw string bytes
  16618. // - IP addresses: raw IP bytes (4 for IPv4, 16 for IPv6)
  16619. const mbedtls_x509_sequence *san = &mcert->subject_alt_names;
  16620. while (san != nullptr && san->buf.p != nullptr && san->buf.len > 0) {
  16621. const unsigned char *p = san->buf.p;
  16622. size_t len = san->buf.len;
  16623. if (is_ip) {
  16624. // For an IP host, only a matching iPAddress SAN of the same family
  16625. // (4 bytes for IPv4, 16 bytes for IPv6) may authenticate it.
  16626. if (len == ip_len && memcmp(p, ip_bytes, ip_len) == 0) { return true; }
  16627. } else {
  16628. // Check if this SAN is a DNS name (printable ASCII string)
  16629. bool is_dns = len > 0;
  16630. for (size_t i = 0; i < len && is_dns; i++) {
  16631. if (p[i] < 32 || p[i] > 126) { is_dns = false; }
  16632. }
  16633. if (is_dns) {
  16634. std::string san_name(reinterpret_cast<const char *>(p), len);
  16635. if (detail::match_hostname(san_name, host_str)) { return true; }
  16636. }
  16637. }
  16638. san = san->next;
  16639. }
  16640. // Fallback: Check Common Name (CN) in subject. Skipped for IP-literal hosts:
  16641. // an IP identity is only valid via an iPAddress SAN, never the CN (RFC 9110;
  16642. // the OpenSSL backend's X509_check_ip behaves the same way).
  16643. if (!is_ip) {
  16644. char cn[256];
  16645. int ret = mbedtls_x509_dn_gets(cn, sizeof(cn), &mcert->subject);
  16646. if (ret > 0) {
  16647. std::string cn_str(cn);
  16648. // Look for "CN=" in the DN string
  16649. size_t cn_pos = cn_str.find("CN=");
  16650. if (cn_pos != std::string::npos) {
  16651. size_t start = cn_pos + 3;
  16652. size_t end = cn_str.find(',', start);
  16653. std::string cn_value =
  16654. cn_str.substr(start, end == std::string::npos ? end : end - start);
  16655. if (detail::match_hostname(cn_value, host_str)) { return true; }
  16656. }
  16657. }
  16658. }
  16659. return false;
  16660. }
  16661. inline uint64_t hostname_mismatch_code() {
  16662. return static_cast<uint64_t>(MBEDTLS_X509_BADCERT_CN_MISMATCH);
  16663. }
  16664. inline long get_verify_result(const_session_t session) {
  16665. if (!session) { return -1; }
  16666. auto msession =
  16667. static_cast<impl::MbedTlsSession *>(const_cast<void *>(session));
  16668. uint32_t flags = mbedtls_ssl_get_verify_result(&msession->ssl);
  16669. // Return 0 (X509_V_OK equivalent) if verification passed
  16670. return flags == 0 ? 0 : static_cast<long>(flags);
  16671. }
  16672. inline std::string get_cert_subject_cn(cert_t cert) {
  16673. if (!cert) return "";
  16674. auto x509 = static_cast<mbedtls_x509_crt *>(cert);
  16675. // Find the CN in the subject
  16676. const mbedtls_x509_name *name = &x509->subject;
  16677. while (name != nullptr) {
  16678. if (MBEDTLS_OID_CMP(MBEDTLS_OID_AT_CN, &name->oid) == 0) {
  16679. return std::string(reinterpret_cast<const char *>(name->val.p),
  16680. name->val.len);
  16681. }
  16682. name = name->next;
  16683. }
  16684. return "";
  16685. }
  16686. inline std::string get_cert_issuer_name(cert_t cert) {
  16687. if (!cert) return "";
  16688. auto x509 = static_cast<mbedtls_x509_crt *>(cert);
  16689. // Build a human-readable issuer name string
  16690. char buf[512];
  16691. int ret = mbedtls_x509_dn_gets(buf, sizeof(buf), &x509->issuer);
  16692. if (ret < 0) return "";
  16693. return std::string(buf);
  16694. }
  16695. inline bool get_cert_sans(cert_t cert, std::vector<SanEntry> &sans) {
  16696. sans.clear();
  16697. if (!cert) return false;
  16698. auto x509 = static_cast<mbedtls_x509_crt *>(cert);
  16699. // Parse the Subject Alternative Name extension
  16700. const mbedtls_x509_sequence *cur = &x509->subject_alt_names;
  16701. while (cur != nullptr) {
  16702. if (cur->buf.len > 0) {
  16703. // Mbed TLS stores SAN as ASN.1 sequences
  16704. // The tag byte indicates the type
  16705. const unsigned char *p = cur->buf.p;
  16706. size_t len = cur->buf.len;
  16707. // First byte is the tag
  16708. unsigned char tag = *p;
  16709. p++;
  16710. len--;
  16711. // Parse length (simple single-byte length assumed)
  16712. if (len > 0 && *p < 0x80) {
  16713. size_t value_len = *p;
  16714. p++;
  16715. len--;
  16716. if (value_len <= len) {
  16717. SanEntry entry;
  16718. // ASN.1 context tags for GeneralName
  16719. switch (tag & 0x1F) {
  16720. case 2: // dNSName
  16721. entry.type = SanType::DNS;
  16722. entry.value =
  16723. std::string(reinterpret_cast<const char *>(p), value_len);
  16724. break;
  16725. case 7: // iPAddress
  16726. entry.type = SanType::IP;
  16727. if (value_len == 4) {
  16728. // IPv4
  16729. char buf[16];
  16730. snprintf(buf, sizeof(buf), "%d.%d.%d.%d", p[0], p[1], p[2], p[3]);
  16731. entry.value = buf;
  16732. } else if (value_len == 16) {
  16733. // IPv6
  16734. char buf[64];
  16735. snprintf(buf, sizeof(buf),
  16736. "%02x%02x:%02x%02x:%02x%02x:%02x%02x:"
  16737. "%02x%02x:%02x%02x:%02x%02x:%02x%02x",
  16738. p[0], p[1], p[2], p[3], p[4], p[5], p[6], p[7], p[8],
  16739. p[9], p[10], p[11], p[12], p[13], p[14], p[15]);
  16740. entry.value = buf;
  16741. }
  16742. break;
  16743. case 1: // rfc822Name (email)
  16744. entry.type = SanType::EMAIL;
  16745. entry.value =
  16746. std::string(reinterpret_cast<const char *>(p), value_len);
  16747. break;
  16748. case 6: // uniformResourceIdentifier
  16749. entry.type = SanType::URI;
  16750. entry.value =
  16751. std::string(reinterpret_cast<const char *>(p), value_len);
  16752. break;
  16753. default: entry.type = SanType::OTHER; break;
  16754. }
  16755. if (!entry.value.empty()) { sans.push_back(std::move(entry)); }
  16756. }
  16757. }
  16758. }
  16759. cur = cur->next;
  16760. }
  16761. return true;
  16762. }
  16763. inline bool get_cert_validity(cert_t cert, time_t &not_before,
  16764. time_t &not_after) {
  16765. if (!cert) return false;
  16766. auto x509 = static_cast<mbedtls_x509_crt *>(cert);
  16767. // Convert mbedtls_x509_time to time_t
  16768. auto to_time_t = [](const mbedtls_x509_time &t) -> time_t {
  16769. struct tm tm_time = {};
  16770. tm_time.tm_year = t.year - 1900;
  16771. tm_time.tm_mon = t.mon - 1;
  16772. tm_time.tm_mday = t.day;
  16773. tm_time.tm_hour = t.hour;
  16774. tm_time.tm_min = t.min;
  16775. tm_time.tm_sec = t.sec;
  16776. #ifdef _WIN32
  16777. return _mkgmtime(&tm_time);
  16778. #else
  16779. return timegm(&tm_time);
  16780. #endif
  16781. };
  16782. not_before = to_time_t(x509->valid_from);
  16783. not_after = to_time_t(x509->valid_to);
  16784. return true;
  16785. }
  16786. inline std::string get_cert_serial(cert_t cert) {
  16787. if (!cert) return "";
  16788. auto x509 = static_cast<mbedtls_x509_crt *>(cert);
  16789. // Convert serial number to hex string
  16790. std::string result;
  16791. result.reserve(x509->serial.len * 2);
  16792. for (size_t i = 0; i < x509->serial.len; i++) {
  16793. char hex[3];
  16794. snprintf(hex, sizeof(hex), "%02X", x509->serial.p[i]);
  16795. result += hex;
  16796. }
  16797. return result;
  16798. }
  16799. inline bool get_cert_der(cert_t cert, std::vector<unsigned char> &der) {
  16800. if (!cert) return false;
  16801. auto crt = static_cast<mbedtls_x509_crt *>(cert);
  16802. if (!crt->raw.p || crt->raw.len == 0) return false;
  16803. der.assign(crt->raw.p, crt->raw.p + crt->raw.len);
  16804. return true;
  16805. }
  16806. inline const char *get_sni(const_session_t session) {
  16807. if (!session) return nullptr;
  16808. auto msession = static_cast<const impl::MbedTlsSession *>(session);
  16809. // For server: return SNI received from client during handshake
  16810. if (!msession->sni_hostname.empty()) {
  16811. return msession->sni_hostname.c_str();
  16812. }
  16813. // For client: return the hostname set via set_sni
  16814. if (!msession->hostname.empty()) { return msession->hostname.c_str(); }
  16815. return nullptr;
  16816. }
  16817. inline uint64_t peek_error() {
  16818. // Mbed TLS doesn't have an error queue, return the last error
  16819. return static_cast<uint64_t>(-impl::mbedtls_last_error());
  16820. }
  16821. inline uint64_t get_error() {
  16822. // Mbed TLS doesn't have an error queue, return and clear the last error
  16823. uint64_t err = static_cast<uint64_t>(-impl::mbedtls_last_error());
  16824. impl::mbedtls_last_error() = 0;
  16825. return err;
  16826. }
  16827. inline std::string error_string(uint64_t code) {
  16828. char buf[256];
  16829. mbedtls_strerror(-static_cast<int>(code), buf, sizeof(buf));
  16830. return std::string(buf);
  16831. }
  16832. inline ca_store_t create_ca_store(const char *pem, size_t len) {
  16833. auto *ca_chain = new (std::nothrow) mbedtls_x509_crt;
  16834. if (!ca_chain) { return nullptr; }
  16835. mbedtls_x509_crt_init(ca_chain);
  16836. // mbedtls_x509_crt_parse expects null-terminated PEM
  16837. int ret = mbedtls_x509_crt_parse(ca_chain,
  16838. reinterpret_cast<const unsigned char *>(pem),
  16839. len + 1); // +1 for null terminator
  16840. if (ret != 0) {
  16841. // Try without +1 in case PEM is already null-terminated
  16842. ret = mbedtls_x509_crt_parse(
  16843. ca_chain, reinterpret_cast<const unsigned char *>(pem), len);
  16844. if (ret != 0) {
  16845. mbedtls_x509_crt_free(ca_chain);
  16846. delete ca_chain;
  16847. return nullptr;
  16848. }
  16849. }
  16850. return static_cast<ca_store_t>(ca_chain);
  16851. }
  16852. inline void free_ca_store(ca_store_t store) {
  16853. if (store) {
  16854. auto *ca_chain = static_cast<mbedtls_x509_crt *>(store);
  16855. mbedtls_x509_crt_free(ca_chain);
  16856. delete ca_chain;
  16857. }
  16858. }
  16859. inline bool set_ca_store(ctx_t ctx, ca_store_t store) {
  16860. if (!ctx || !store) { return false; }
  16861. auto *mbed_ctx = static_cast<impl::MbedTlsContext *>(ctx);
  16862. auto *ca_chain = static_cast<mbedtls_x509_crt *>(store);
  16863. // Free existing CA chain
  16864. mbedtls_x509_crt_free(&mbed_ctx->ca_chain);
  16865. mbedtls_x509_crt_init(&mbed_ctx->ca_chain);
  16866. // Copy the CA chain (deep copy)
  16867. // Parse from the raw data of the source cert
  16868. mbedtls_x509_crt *src = ca_chain;
  16869. while (src != nullptr) {
  16870. int ret = mbedtls_x509_crt_parse_der(&mbed_ctx->ca_chain, src->raw.p,
  16871. src->raw.len);
  16872. if (ret != 0) {
  16873. free_ca_store(store);
  16874. return false;
  16875. }
  16876. src = src->next;
  16877. }
  16878. // This function takes ownership of the store; the chain was deep-copied
  16879. // above, so release the source
  16880. free_ca_store(store);
  16881. // Update the SSL config to use the new CA chain
  16882. mbedtls_ssl_conf_ca_chain(&mbed_ctx->conf, &mbed_ctx->ca_chain, nullptr);
  16883. return true;
  16884. }
  16885. inline size_t get_ca_certs(ctx_t ctx, std::vector<cert_t> &certs) {
  16886. certs.clear();
  16887. if (!ctx) { return 0; }
  16888. auto *mbed_ctx = static_cast<impl::MbedTlsContext *>(ctx);
  16889. // Iterate through the CA chain
  16890. mbedtls_x509_crt *cert = &mbed_ctx->ca_chain;
  16891. while (cert != nullptr && cert->raw.len > 0) {
  16892. // Create a copy of the certificate for the caller
  16893. auto *copy = new mbedtls_x509_crt;
  16894. mbedtls_x509_crt_init(copy);
  16895. int ret = mbedtls_x509_crt_parse_der(copy, cert->raw.p, cert->raw.len);
  16896. if (ret == 0) {
  16897. certs.push_back(static_cast<cert_t>(copy));
  16898. } else {
  16899. mbedtls_x509_crt_free(copy);
  16900. delete copy;
  16901. }
  16902. cert = cert->next;
  16903. }
  16904. return certs.size();
  16905. }
  16906. inline std::vector<std::string> get_ca_names(ctx_t ctx) {
  16907. std::vector<std::string> names;
  16908. if (!ctx) { return names; }
  16909. auto *mbed_ctx = static_cast<impl::MbedTlsContext *>(ctx);
  16910. // Iterate through the CA chain
  16911. mbedtls_x509_crt *cert = &mbed_ctx->ca_chain;
  16912. while (cert != nullptr && cert->raw.len > 0) {
  16913. char buf[512];
  16914. int ret = mbedtls_x509_dn_gets(buf, sizeof(buf), &cert->subject);
  16915. if (ret > 0) { names.push_back(buf); }
  16916. cert = cert->next;
  16917. }
  16918. return names;
  16919. }
  16920. inline bool update_server_cert(ctx_t ctx, const char *cert_pem,
  16921. const char *key_pem, const char *password) {
  16922. if (!ctx || !cert_pem || !key_pem) { return false; }
  16923. auto *mbed_ctx = static_cast<impl::MbedTlsContext *>(ctx);
  16924. // Free existing certificate and key
  16925. mbedtls_x509_crt_free(&mbed_ctx->own_cert);
  16926. mbedtls_pk_free(&mbed_ctx->own_key);
  16927. mbedtls_x509_crt_init(&mbed_ctx->own_cert);
  16928. mbedtls_pk_init(&mbed_ctx->own_key);
  16929. // Parse certificate PEM
  16930. int ret = mbedtls_x509_crt_parse(
  16931. &mbed_ctx->own_cert, reinterpret_cast<const unsigned char *>(cert_pem),
  16932. strlen(cert_pem) + 1);
  16933. if (ret != 0) {
  16934. impl::mbedtls_last_error() = ret;
  16935. return false;
  16936. }
  16937. // Parse private key PEM
  16938. #if defined(CPPHTTPLIB_MBEDTLS_V3) && !defined(CPPHTTPLIB_MBEDTLS_V4)
  16939. ret = mbedtls_pk_parse_key(
  16940. &mbed_ctx->own_key, reinterpret_cast<const unsigned char *>(key_pem),
  16941. strlen(key_pem) + 1,
  16942. password ? reinterpret_cast<const unsigned char *>(password) : nullptr,
  16943. password ? strlen(password) : 0, mbedtls_ctr_drbg_random,
  16944. &mbed_ctx->ctr_drbg);
  16945. #else
  16946. ret = mbedtls_pk_parse_key(
  16947. &mbed_ctx->own_key, reinterpret_cast<const unsigned char *>(key_pem),
  16948. strlen(key_pem) + 1,
  16949. password ? reinterpret_cast<const unsigned char *>(password) : nullptr,
  16950. password ? strlen(password) : 0);
  16951. #endif
  16952. if (ret != 0) {
  16953. impl::mbedtls_last_error() = ret;
  16954. return false;
  16955. }
  16956. // Configure SSL to use the new certificate and key
  16957. ret = mbedtls_ssl_conf_own_cert(&mbed_ctx->conf, &mbed_ctx->own_cert,
  16958. &mbed_ctx->own_key);
  16959. if (ret != 0) {
  16960. impl::mbedtls_last_error() = ret;
  16961. return false;
  16962. }
  16963. return true;
  16964. }
  16965. inline bool update_server_client_ca(ctx_t ctx, const char *ca_pem) {
  16966. if (!ctx || !ca_pem) { return false; }
  16967. auto *mbed_ctx = static_cast<impl::MbedTlsContext *>(ctx);
  16968. // Free existing CA chain
  16969. mbedtls_x509_crt_free(&mbed_ctx->ca_chain);
  16970. mbedtls_x509_crt_init(&mbed_ctx->ca_chain);
  16971. // Parse CA PEM
  16972. int ret = mbedtls_x509_crt_parse(
  16973. &mbed_ctx->ca_chain, reinterpret_cast<const unsigned char *>(ca_pem),
  16974. strlen(ca_pem) + 1);
  16975. if (ret != 0) {
  16976. impl::mbedtls_last_error() = ret;
  16977. return false;
  16978. }
  16979. // Update SSL config to use new CA chain
  16980. mbedtls_ssl_conf_ca_chain(&mbed_ctx->conf, &mbed_ctx->ca_chain, nullptr);
  16981. return true;
  16982. }
  16983. inline bool set_verify_callback(ctx_t ctx, VerifyCallback callback) {
  16984. if (!ctx) { return false; }
  16985. auto *mbed_ctx = static_cast<impl::MbedTlsContext *>(ctx);
  16986. impl::get_verify_callback() = std::move(callback);
  16987. mbed_ctx->has_verify_callback =
  16988. static_cast<bool>(impl::get_verify_callback());
  16989. if (mbed_ctx->has_verify_callback) {
  16990. // Set OPTIONAL mode to ensure callback is called even when verification
  16991. // is disabled (matching OpenSSL behavior where SSL_VERIFY_PEER is set)
  16992. mbedtls_ssl_conf_authmode(&mbed_ctx->conf, MBEDTLS_SSL_VERIFY_OPTIONAL);
  16993. mbedtls_ssl_conf_verify(&mbed_ctx->conf, impl::mbedtls_verify_callback,
  16994. nullptr);
  16995. } else {
  16996. mbedtls_ssl_conf_verify(&mbed_ctx->conf, nullptr, nullptr);
  16997. }
  16998. return true;
  16999. }
  17000. inline long get_verify_error(const_session_t session) {
  17001. if (!session) { return -1; }
  17002. auto *msession =
  17003. static_cast<impl::MbedTlsSession *>(const_cast<void *>(session));
  17004. return static_cast<long>(mbedtls_ssl_get_verify_result(&msession->ssl));
  17005. }
  17006. inline std::string verify_error_string(long error_code) {
  17007. if (error_code == 0) { return ""; }
  17008. char buf[256];
  17009. mbedtls_x509_crt_verify_info(buf, sizeof(buf), "",
  17010. static_cast<uint32_t>(error_code));
  17011. // Remove trailing newline if present
  17012. std::string result(buf);
  17013. while (!result.empty() && (result.back() == '\n' || result.back() == ' ')) {
  17014. result.pop_back();
  17015. }
  17016. return result;
  17017. }
  17018. } // namespace tls
  17019. #endif // CPPHTTPLIB_MBEDTLS_SUPPORT
  17020. /*
  17021. * Group 10: TLS abstraction layer - wolfSSL backend
  17022. */
  17023. /*
  17024. * wolfSSL Backend Implementation
  17025. */
  17026. #ifdef CPPHTTPLIB_WOLFSSL_SUPPORT
  17027. namespace tls {
  17028. namespace impl {
  17029. // wolfSSL session wrapper
  17030. struct WolfSSLSession {
  17031. WOLFSSL *ssl = nullptr;
  17032. socket_t sock = INVALID_SOCKET;
  17033. std::string hostname; // For client: set via set_sni
  17034. std::string sni_hostname; // For server: received from client via SNI callback
  17035. WolfSSLSession() = default;
  17036. ~WolfSSLSession() {
  17037. if (ssl) { wolfSSL_free(ssl); }
  17038. }
  17039. WolfSSLSession(const WolfSSLSession &) = delete;
  17040. WolfSSLSession &operator=(const WolfSSLSession &) = delete;
  17041. };
  17042. // Thread-local error code accessor for wolfSSL
  17043. inline uint64_t &wolfssl_last_error() {
  17044. static thread_local uint64_t err = 0;
  17045. return err;
  17046. }
  17047. // Helper to map wolfSSL error to ErrorCode.
  17048. // ssl_error is the value from wolfSSL_get_error().
  17049. // raw_ret is the raw return value from the wolfSSL call (for low-level error).
  17050. inline ErrorCode map_wolfssl_error(WOLFSSL *ssl, int ssl_error,
  17051. int &out_errno) {
  17052. switch (ssl_error) {
  17053. case SSL_ERROR_NONE: return ErrorCode::Success;
  17054. case SSL_ERROR_WANT_READ: return ErrorCode::WantRead;
  17055. case SSL_ERROR_WANT_WRITE: return ErrorCode::WantWrite;
  17056. case SSL_ERROR_ZERO_RETURN: return ErrorCode::PeerClosed;
  17057. case SSL_ERROR_SYSCALL: out_errno = errno; return ErrorCode::SyscallError;
  17058. default:
  17059. if (ssl) {
  17060. // wolfSSL stores the low-level error code as a negative value.
  17061. // DOMAIN_NAME_MISMATCH (-322) indicates hostname verification failure.
  17062. int low_err = ssl_error; // wolfSSL_get_error returns the low-level code
  17063. if (low_err == DOMAIN_NAME_MISMATCH) {
  17064. return ErrorCode::HostnameMismatch;
  17065. }
  17066. // Check verify result to distinguish cert verification from generic SSL
  17067. // errors.
  17068. long vr = wolfSSL_get_verify_result(ssl);
  17069. if (vr != 0) { return ErrorCode::CertVerifyFailed; }
  17070. }
  17071. return ErrorCode::Fatal;
  17072. }
  17073. }
  17074. // WolfSSLContext constructor/destructor implementations
  17075. inline WolfSSLContext::WolfSSLContext() { wolfSSL_Init(); }
  17076. inline WolfSSLContext::~WolfSSLContext() {
  17077. if (ctx) { wolfSSL_CTX_free(ctx); }
  17078. }
  17079. // Thread-local storage for SNI captured during handshake
  17080. inline std::string &wolfssl_pending_sni() {
  17081. static thread_local std::string sni;
  17082. return sni;
  17083. }
  17084. // SNI callback for wolfSSL server to capture client's SNI hostname
  17085. inline int wolfssl_sni_callback(WOLFSSL *ssl, int *ret, void *exArg) {
  17086. (void)ret;
  17087. (void)exArg;
  17088. void *name_data = nullptr;
  17089. unsigned short name_len =
  17090. wolfSSL_SNI_GetRequest(ssl, WOLFSSL_SNI_HOST_NAME, &name_data);
  17091. if (name_data && name_len > 0) {
  17092. wolfssl_pending_sni().assign(static_cast<const char *>(name_data),
  17093. name_len);
  17094. } else {
  17095. wolfssl_pending_sni().clear();
  17096. }
  17097. return 0; // Continue regardless
  17098. }
  17099. // wolfSSL verify callback wrapper
  17100. inline int wolfssl_verify_callback(int preverify_ok,
  17101. WOLFSSL_X509_STORE_CTX *x509_ctx) {
  17102. auto &callback = get_verify_callback();
  17103. if (!callback) { return preverify_ok; }
  17104. WOLFSSL_X509 *cert = wolfSSL_X509_STORE_CTX_get_current_cert(x509_ctx);
  17105. int depth = wolfSSL_X509_STORE_CTX_get_error_depth(x509_ctx);
  17106. int err = wolfSSL_X509_STORE_CTX_get_error(x509_ctx);
  17107. // Get the WOLFSSL object from the X509_STORE_CTX
  17108. WOLFSSL *ssl = static_cast<WOLFSSL *>(wolfSSL_X509_STORE_CTX_get_ex_data(
  17109. x509_ctx, wolfSSL_get_ex_data_X509_STORE_CTX_idx()));
  17110. VerifyContext verify_ctx;
  17111. verify_ctx.session = static_cast<session_t>(ssl);
  17112. verify_ctx.cert = static_cast<cert_t>(cert);
  17113. verify_ctx.depth = depth;
  17114. verify_ctx.preverify_ok = (preverify_ok != 0);
  17115. verify_ctx.error_code = static_cast<long>(err);
  17116. if (err != 0) {
  17117. verify_ctx.error_string = wolfSSL_X509_verify_cert_error_string(err);
  17118. } else {
  17119. verify_ctx.error_string = nullptr;
  17120. }
  17121. bool accepted = callback(verify_ctx);
  17122. return accepted ? 1 : 0;
  17123. }
  17124. inline void set_wolfssl_password_cb(WOLFSSL_CTX *ctx, const char *password) {
  17125. wolfSSL_CTX_set_default_passwd_cb_userdata(ctx, const_cast<char *>(password));
  17126. wolfSSL_CTX_set_default_passwd_cb(
  17127. ctx, [](char *buf, int size, int /*rwflag*/, void *userdata) -> int {
  17128. auto *pwd = static_cast<const char *>(userdata);
  17129. if (!pwd) return 0;
  17130. auto len = static_cast<int>(strlen(pwd));
  17131. if (len > size) len = size;
  17132. memcpy(buf, pwd, static_cast<size_t>(len));
  17133. return len;
  17134. });
  17135. }
  17136. } // namespace impl
  17137. inline ctx_t create_client_context() {
  17138. auto ctx = new (std::nothrow) impl::WolfSSLContext();
  17139. if (!ctx) { return nullptr; }
  17140. ctx->is_server = false;
  17141. WOLFSSL_METHOD *method = wolfTLSv1_2_client_method();
  17142. if (!method) {
  17143. delete ctx;
  17144. return nullptr;
  17145. }
  17146. ctx->ctx = wolfSSL_CTX_new(method);
  17147. if (!ctx->ctx) {
  17148. delete ctx;
  17149. return nullptr;
  17150. }
  17151. // Default: verify peer certificate
  17152. wolfSSL_CTX_set_verify(ctx->ctx, SSL_VERIFY_PEER, nullptr);
  17153. return static_cast<ctx_t>(ctx);
  17154. }
  17155. inline ctx_t create_server_context() {
  17156. auto ctx = new (std::nothrow) impl::WolfSSLContext();
  17157. if (!ctx) { return nullptr; }
  17158. ctx->is_server = true;
  17159. WOLFSSL_METHOD *method = wolfTLSv1_2_server_method();
  17160. if (!method) {
  17161. delete ctx;
  17162. return nullptr;
  17163. }
  17164. ctx->ctx = wolfSSL_CTX_new(method);
  17165. if (!ctx->ctx) {
  17166. delete ctx;
  17167. return nullptr;
  17168. }
  17169. // Default: don't verify client
  17170. wolfSSL_CTX_set_verify(ctx->ctx, SSL_VERIFY_NONE, nullptr);
  17171. // Enable SNI on server
  17172. wolfSSL_CTX_SNI_SetOptions(ctx->ctx, WOLFSSL_SNI_HOST_NAME,
  17173. WOLFSSL_SNI_CONTINUE_ON_MISMATCH);
  17174. wolfSSL_CTX_set_servername_callback(ctx->ctx, impl::wolfssl_sni_callback);
  17175. return static_cast<ctx_t>(ctx);
  17176. }
  17177. inline void free_context(ctx_t ctx) {
  17178. if (ctx) { delete static_cast<impl::WolfSSLContext *>(ctx); }
  17179. }
  17180. inline bool set_min_version(ctx_t ctx, Version version) {
  17181. if (!ctx) { return false; }
  17182. auto wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17183. int min_ver = WOLFSSL_TLSV1_2;
  17184. if (version >= Version::TLS1_3) { min_ver = WOLFSSL_TLSV1_3; }
  17185. return wolfSSL_CTX_SetMinVersion(wctx->ctx, min_ver) == WOLFSSL_SUCCESS;
  17186. }
  17187. inline bool load_ca_pem(ctx_t ctx, const char *pem, size_t len) {
  17188. if (!ctx || !pem) { return false; }
  17189. auto wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17190. int ret = wolfSSL_CTX_load_verify_buffer(
  17191. wctx->ctx, reinterpret_cast<const unsigned char *>(pem),
  17192. static_cast<long>(len), SSL_FILETYPE_PEM);
  17193. if (ret != SSL_SUCCESS) {
  17194. impl::wolfssl_last_error() =
  17195. static_cast<uint64_t>(wolfSSL_ERR_peek_last_error());
  17196. return false;
  17197. }
  17198. wctx->ca_pem_data_.append(pem, len);
  17199. return true;
  17200. }
  17201. inline bool load_ca_file(ctx_t ctx, const char *file_path) {
  17202. if (!ctx || !file_path) { return false; }
  17203. auto wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17204. int ret = wolfSSL_CTX_load_verify_locations(wctx->ctx, file_path, nullptr);
  17205. if (ret != SSL_SUCCESS) {
  17206. impl::wolfssl_last_error() =
  17207. static_cast<uint64_t>(wolfSSL_ERR_peek_last_error());
  17208. return false;
  17209. }
  17210. return true;
  17211. }
  17212. inline bool load_ca_dir(ctx_t ctx, const char *dir_path) {
  17213. if (!ctx || !dir_path) { return false; }
  17214. auto wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17215. int ret = wolfSSL_CTX_load_verify_locations(wctx->ctx, nullptr, dir_path);
  17216. // wolfSSL may fail if the directory doesn't contain properly hashed certs.
  17217. // Unlike OpenSSL which lazily loads certs from directories, wolfSSL scans
  17218. // immediately. Return true even on failure since the CA file may have
  17219. // already been loaded, matching OpenSSL's lenient behavior.
  17220. (void)ret;
  17221. return true;
  17222. }
  17223. inline bool load_system_certs(ctx_t ctx) {
  17224. if (!ctx) { return false; }
  17225. auto wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17226. bool loaded = false;
  17227. #ifdef _WIN32
  17228. loaded = impl::enumerate_windows_system_certs(
  17229. [&](const unsigned char *data, size_t len) {
  17230. return wolfSSL_CTX_load_verify_buffer(wctx->ctx, data,
  17231. static_cast<long>(len),
  17232. SSL_FILETYPE_ASN1) == SSL_SUCCESS;
  17233. });
  17234. #elif defined(__APPLE__) && defined(CPPHTTPLIB_USE_CERTS_FROM_MACOSX_KEYCHAIN)
  17235. loaded = impl::enumerate_macos_keychain_certs(
  17236. [&](const unsigned char *data, size_t len) {
  17237. return wolfSSL_CTX_load_verify_buffer(wctx->ctx, data,
  17238. static_cast<long>(len),
  17239. SSL_FILETYPE_ASN1) == SSL_SUCCESS;
  17240. });
  17241. #else
  17242. for (auto path = impl::system_ca_paths(); *path; ++path) {
  17243. if (wolfSSL_CTX_load_verify_locations(wctx->ctx, *path, nullptr) ==
  17244. SSL_SUCCESS) {
  17245. loaded = true;
  17246. break;
  17247. }
  17248. }
  17249. if (!loaded) {
  17250. for (auto dir = impl::system_ca_dirs(); *dir; ++dir) {
  17251. if (wolfSSL_CTX_load_verify_locations(wctx->ctx, nullptr, *dir) ==
  17252. SSL_SUCCESS) {
  17253. loaded = true;
  17254. break;
  17255. }
  17256. }
  17257. }
  17258. #endif
  17259. return loaded;
  17260. }
  17261. inline bool set_client_cert_pem(ctx_t ctx, const char *cert, const char *key,
  17262. const char *password) {
  17263. if (!ctx || !cert || !key) { return false; }
  17264. auto wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17265. // Load certificate
  17266. int ret = wolfSSL_CTX_use_certificate_buffer(
  17267. wctx->ctx, reinterpret_cast<const unsigned char *>(cert),
  17268. static_cast<long>(strlen(cert)), SSL_FILETYPE_PEM);
  17269. if (ret != SSL_SUCCESS) {
  17270. impl::wolfssl_last_error() =
  17271. static_cast<uint64_t>(wolfSSL_ERR_peek_last_error());
  17272. return false;
  17273. }
  17274. // Set password callback if password is provided
  17275. if (password) { impl::set_wolfssl_password_cb(wctx->ctx, password); }
  17276. // Load private key
  17277. ret = wolfSSL_CTX_use_PrivateKey_buffer(
  17278. wctx->ctx, reinterpret_cast<const unsigned char *>(key),
  17279. static_cast<long>(strlen(key)), SSL_FILETYPE_PEM);
  17280. if (ret != SSL_SUCCESS) {
  17281. impl::wolfssl_last_error() =
  17282. static_cast<uint64_t>(wolfSSL_ERR_peek_last_error());
  17283. return false;
  17284. }
  17285. // Verify that the certificate and private key match
  17286. return wolfSSL_CTX_check_private_key(wctx->ctx) == SSL_SUCCESS;
  17287. }
  17288. inline bool set_client_cert_file(ctx_t ctx, const char *cert_path,
  17289. const char *key_path, const char *password) {
  17290. if (!ctx || !cert_path || !key_path) { return false; }
  17291. auto wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17292. // Load certificate file
  17293. int ret =
  17294. wolfSSL_CTX_use_certificate_file(wctx->ctx, cert_path, SSL_FILETYPE_PEM);
  17295. if (ret != SSL_SUCCESS) {
  17296. impl::wolfssl_last_error() =
  17297. static_cast<uint64_t>(wolfSSL_ERR_peek_last_error());
  17298. return false;
  17299. }
  17300. // Set password callback if password is provided
  17301. if (password) { impl::set_wolfssl_password_cb(wctx->ctx, password); }
  17302. // Load private key file
  17303. ret = wolfSSL_CTX_use_PrivateKey_file(wctx->ctx, key_path, SSL_FILETYPE_PEM);
  17304. if (ret != SSL_SUCCESS) {
  17305. impl::wolfssl_last_error() =
  17306. static_cast<uint64_t>(wolfSSL_ERR_peek_last_error());
  17307. return false;
  17308. }
  17309. // Verify that the certificate and private key match
  17310. return wolfSSL_CTX_check_private_key(wctx->ctx) == SSL_SUCCESS;
  17311. }
  17312. inline void set_verify_client(ctx_t ctx, bool require) {
  17313. if (!ctx) { return; }
  17314. auto wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17315. wctx->verify_client = require;
  17316. if (require) {
  17317. wolfSSL_CTX_set_verify(
  17318. wctx->ctx, SSL_VERIFY_PEER | SSL_VERIFY_FAIL_IF_NO_PEER_CERT,
  17319. wctx->has_verify_callback ? impl::wolfssl_verify_callback : nullptr);
  17320. } else {
  17321. if (wctx->has_verify_callback) {
  17322. wolfSSL_CTX_set_verify(wctx->ctx, SSL_VERIFY_PEER,
  17323. impl::wolfssl_verify_callback);
  17324. } else {
  17325. wolfSSL_CTX_set_verify(wctx->ctx, SSL_VERIFY_NONE, nullptr);
  17326. }
  17327. }
  17328. }
  17329. inline session_t create_session(ctx_t ctx, socket_t sock) {
  17330. if (!ctx || sock == INVALID_SOCKET) { return nullptr; }
  17331. auto wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17332. auto session = new (std::nothrow) impl::WolfSSLSession();
  17333. if (!session) { return nullptr; }
  17334. session->sock = sock;
  17335. session->ssl = wolfSSL_new(wctx->ctx);
  17336. if (!session->ssl) {
  17337. impl::wolfssl_last_error() =
  17338. static_cast<uint64_t>(wolfSSL_ERR_peek_last_error());
  17339. delete session;
  17340. return nullptr;
  17341. }
  17342. wolfSSL_set_fd(session->ssl, static_cast<int>(sock));
  17343. return static_cast<session_t>(session);
  17344. }
  17345. inline void free_session(session_t session) {
  17346. if (session) { delete static_cast<impl::WolfSSLSession *>(session); }
  17347. }
  17348. inline bool set_sni(session_t session, const char *hostname) {
  17349. if (!session || !hostname) { return false; }
  17350. auto wsession = static_cast<impl::WolfSSLSession *>(session);
  17351. int ret = wolfSSL_UseSNI(wsession->ssl, WOLFSSL_SNI_HOST_NAME, hostname,
  17352. static_cast<word16>(strlen(hostname)));
  17353. if (ret != WOLFSSL_SUCCESS) {
  17354. impl::wolfssl_last_error() =
  17355. static_cast<uint64_t>(wolfSSL_ERR_peek_last_error());
  17356. return false;
  17357. }
  17358. // Also set hostname for verification
  17359. wolfSSL_check_domain_name(wsession->ssl, hostname);
  17360. wsession->hostname = hostname;
  17361. return true;
  17362. }
  17363. inline TlsError connect(session_t session) {
  17364. TlsError err;
  17365. if (!session) {
  17366. err.code = ErrorCode::Fatal;
  17367. return err;
  17368. }
  17369. auto wsession = static_cast<impl::WolfSSLSession *>(session);
  17370. int ret = wolfSSL_connect(wsession->ssl);
  17371. if (ret == SSL_SUCCESS) {
  17372. err.code = ErrorCode::Success;
  17373. } else {
  17374. int ssl_error = wolfSSL_get_error(wsession->ssl, ret);
  17375. err.code = impl::map_wolfssl_error(wsession->ssl, ssl_error, err.sys_errno);
  17376. err.backend_code = static_cast<uint64_t>(ssl_error);
  17377. impl::wolfssl_last_error() = err.backend_code;
  17378. }
  17379. return err;
  17380. }
  17381. inline TlsError accept(session_t session) {
  17382. TlsError err;
  17383. if (!session) {
  17384. err.code = ErrorCode::Fatal;
  17385. return err;
  17386. }
  17387. auto wsession = static_cast<impl::WolfSSLSession *>(session);
  17388. int ret = wolfSSL_accept(wsession->ssl);
  17389. if (ret == SSL_SUCCESS) {
  17390. err.code = ErrorCode::Success;
  17391. // Capture SNI from thread-local storage after successful handshake
  17392. wsession->sni_hostname = std::move(impl::wolfssl_pending_sni());
  17393. impl::wolfssl_pending_sni().clear();
  17394. } else {
  17395. int ssl_error = wolfSSL_get_error(wsession->ssl, ret);
  17396. err.code = impl::map_wolfssl_error(wsession->ssl, ssl_error, err.sys_errno);
  17397. err.backend_code = static_cast<uint64_t>(ssl_error);
  17398. impl::wolfssl_last_error() = err.backend_code;
  17399. }
  17400. return err;
  17401. }
  17402. inline bool connect_nonblocking(session_t session, socket_t sock,
  17403. time_t timeout_sec, time_t timeout_usec,
  17404. TlsError *err) {
  17405. if (!session) {
  17406. if (err) { err->code = ErrorCode::Fatal; }
  17407. return false;
  17408. }
  17409. auto wsession = static_cast<impl::WolfSSLSession *>(session);
  17410. // Set socket to non-blocking mode
  17411. detail::set_nonblocking(sock, true);
  17412. auto cleanup =
  17413. detail::scope_exit([&]() { detail::set_nonblocking(sock, false); });
  17414. int ret;
  17415. while ((ret = wolfSSL_connect(wsession->ssl)) != SSL_SUCCESS) {
  17416. int ssl_error = wolfSSL_get_error(wsession->ssl, ret);
  17417. if (ssl_error == SSL_ERROR_WANT_READ) {
  17418. if (detail::select_read(sock, timeout_sec, timeout_usec) > 0) {
  17419. continue;
  17420. }
  17421. } else if (ssl_error == SSL_ERROR_WANT_WRITE) {
  17422. if (detail::select_write(sock, timeout_sec, timeout_usec) > 0) {
  17423. continue;
  17424. }
  17425. }
  17426. // Error or timeout
  17427. if (err) {
  17428. err->code =
  17429. impl::map_wolfssl_error(wsession->ssl, ssl_error, err->sys_errno);
  17430. err->backend_code = static_cast<uint64_t>(ssl_error);
  17431. }
  17432. impl::wolfssl_last_error() = static_cast<uint64_t>(ssl_error);
  17433. return false;
  17434. }
  17435. if (err) { err->code = ErrorCode::Success; }
  17436. return true;
  17437. }
  17438. inline bool accept_nonblocking(session_t session, socket_t sock,
  17439. time_t timeout_sec, time_t timeout_usec,
  17440. TlsError *err) {
  17441. if (!session) {
  17442. if (err) { err->code = ErrorCode::Fatal; }
  17443. return false;
  17444. }
  17445. auto wsession = static_cast<impl::WolfSSLSession *>(session);
  17446. // Set socket to non-blocking mode
  17447. detail::set_nonblocking(sock, true);
  17448. auto cleanup =
  17449. detail::scope_exit([&]() { detail::set_nonblocking(sock, false); });
  17450. int ret;
  17451. while ((ret = wolfSSL_accept(wsession->ssl)) != SSL_SUCCESS) {
  17452. int ssl_error = wolfSSL_get_error(wsession->ssl, ret);
  17453. if (ssl_error == SSL_ERROR_WANT_READ) {
  17454. if (detail::select_read(sock, timeout_sec, timeout_usec) > 0) {
  17455. continue;
  17456. }
  17457. } else if (ssl_error == SSL_ERROR_WANT_WRITE) {
  17458. if (detail::select_write(sock, timeout_sec, timeout_usec) > 0) {
  17459. continue;
  17460. }
  17461. }
  17462. // Error or timeout
  17463. if (err) {
  17464. err->code =
  17465. impl::map_wolfssl_error(wsession->ssl, ssl_error, err->sys_errno);
  17466. err->backend_code = static_cast<uint64_t>(ssl_error);
  17467. }
  17468. impl::wolfssl_last_error() = static_cast<uint64_t>(ssl_error);
  17469. return false;
  17470. }
  17471. if (err) { err->code = ErrorCode::Success; }
  17472. // Capture SNI from thread-local storage after successful handshake
  17473. wsession->sni_hostname = std::move(impl::wolfssl_pending_sni());
  17474. impl::wolfssl_pending_sni().clear();
  17475. return true;
  17476. }
  17477. inline ssize_t read(session_t session, void *buf, size_t len, TlsError &err) {
  17478. if (!session || !buf) {
  17479. err.code = ErrorCode::Fatal;
  17480. return -1;
  17481. }
  17482. auto wsession = static_cast<impl::WolfSSLSession *>(session);
  17483. int ret = wolfSSL_read(wsession->ssl, buf, static_cast<int>(len));
  17484. if (ret > 0) {
  17485. err.code = ErrorCode::Success;
  17486. return static_cast<ssize_t>(ret);
  17487. }
  17488. if (ret == 0) {
  17489. err.code = ErrorCode::PeerClosed;
  17490. return 0;
  17491. }
  17492. int ssl_error = wolfSSL_get_error(wsession->ssl, ret);
  17493. err.code = impl::map_wolfssl_error(wsession->ssl, ssl_error, err.sys_errno);
  17494. err.backend_code = static_cast<uint64_t>(ssl_error);
  17495. impl::wolfssl_last_error() = err.backend_code;
  17496. return -1;
  17497. }
  17498. inline ssize_t write(session_t session, const void *buf, size_t len,
  17499. TlsError &err) {
  17500. if (!session || !buf) {
  17501. err.code = ErrorCode::Fatal;
  17502. return -1;
  17503. }
  17504. auto wsession = static_cast<impl::WolfSSLSession *>(session);
  17505. int ret = wolfSSL_write(wsession->ssl, buf, static_cast<int>(len));
  17506. if (ret > 0) {
  17507. err.code = ErrorCode::Success;
  17508. return static_cast<ssize_t>(ret);
  17509. }
  17510. // wolfSSL_write returns 0 when the peer has sent a close_notify.
  17511. // Treat this as an error (return -1) so callers don't spin in a
  17512. // write loop adding zero to the offset.
  17513. if (ret == 0) {
  17514. err.code = ErrorCode::PeerClosed;
  17515. return -1;
  17516. }
  17517. int ssl_error = wolfSSL_get_error(wsession->ssl, ret);
  17518. err.code = impl::map_wolfssl_error(wsession->ssl, ssl_error, err.sys_errno);
  17519. err.backend_code = static_cast<uint64_t>(ssl_error);
  17520. impl::wolfssl_last_error() = err.backend_code;
  17521. return -1;
  17522. }
  17523. inline int pending(const_session_t session) {
  17524. if (!session) { return 0; }
  17525. auto wsession =
  17526. static_cast<impl::WolfSSLSession *>(const_cast<void *>(session));
  17527. return wolfSSL_pending(wsession->ssl);
  17528. }
  17529. inline void shutdown(session_t session, bool graceful) {
  17530. if (!session) { return; }
  17531. auto wsession = static_cast<impl::WolfSSLSession *>(session);
  17532. if (graceful) {
  17533. int ret;
  17534. int attempts = 0;
  17535. while ((ret = wolfSSL_shutdown(wsession->ssl)) != SSL_SUCCESS &&
  17536. attempts < 3) {
  17537. int ssl_error = wolfSSL_get_error(wsession->ssl, ret);
  17538. if (ssl_error != SSL_ERROR_WANT_READ &&
  17539. ssl_error != SSL_ERROR_WANT_WRITE) {
  17540. break;
  17541. }
  17542. attempts++;
  17543. }
  17544. } else {
  17545. wolfSSL_shutdown(wsession->ssl);
  17546. }
  17547. }
  17548. inline bool is_peer_closed(session_t session, socket_t sock) {
  17549. if (!session || sock == INVALID_SOCKET) { return true; }
  17550. auto wsession = static_cast<impl::WolfSSLSession *>(session);
  17551. // Check if there's already decrypted data available
  17552. if (wolfSSL_pending(wsession->ssl) > 0) { return false; }
  17553. // Set socket to non-blocking to avoid blocking on read
  17554. detail::set_nonblocking(sock, true);
  17555. auto cleanup =
  17556. detail::scope_exit([&]() { detail::set_nonblocking(sock, false); });
  17557. // Peek 1 byte to check connection status without consuming data
  17558. unsigned char buf;
  17559. int ret = wolfSSL_peek(wsession->ssl, &buf, 1);
  17560. // If we got data or WANT_READ (would block), connection is alive
  17561. if (ret > 0) { return false; }
  17562. int ssl_error = wolfSSL_get_error(wsession->ssl, ret);
  17563. if (ssl_error == SSL_ERROR_WANT_READ) { return false; }
  17564. return ssl_error == SSL_ERROR_ZERO_RETURN || ssl_error == SSL_ERROR_SYSCALL ||
  17565. ret == 0;
  17566. }
  17567. inline cert_t get_peer_cert(const_session_t session) {
  17568. if (!session) { return nullptr; }
  17569. auto wsession =
  17570. static_cast<impl::WolfSSLSession *>(const_cast<void *>(session));
  17571. WOLFSSL_X509 *cert = wolfSSL_get_peer_certificate(wsession->ssl);
  17572. return static_cast<cert_t>(cert);
  17573. }
  17574. inline void free_cert(cert_t cert) {
  17575. if (cert) { wolfSSL_X509_free(static_cast<WOLFSSL_X509 *>(cert)); }
  17576. }
  17577. inline bool verify_hostname(cert_t cert, const char *hostname) {
  17578. if (!cert || !hostname) { return false; }
  17579. auto x509 = static_cast<WOLFSSL_X509 *>(cert);
  17580. std::string host_str(hostname);
  17581. // Check if hostname is an IP address (IPv4 or IPv6)
  17582. unsigned char ip_bytes[16];
  17583. auto ip_len = impl::parse_ip_address(host_str, ip_bytes);
  17584. auto is_ip = ip_len > 0;
  17585. // Check Subject Alternative Names
  17586. auto *san_names = static_cast<WOLF_STACK_OF(WOLFSSL_GENERAL_NAME) *>(
  17587. wolfSSL_X509_get_ext_d2i(x509, NID_subject_alt_name, nullptr, nullptr));
  17588. if (san_names) {
  17589. int san_count = wolfSSL_sk_num(san_names);
  17590. for (int i = 0; i < san_count; i++) {
  17591. auto *names =
  17592. static_cast<WOLFSSL_GENERAL_NAME *>(wolfSSL_sk_value(san_names, i));
  17593. if (!names) continue;
  17594. if (!is_ip && names->type == WOLFSSL_GEN_DNS) {
  17595. // DNS name
  17596. unsigned char *dns_name = nullptr;
  17597. int dns_len = wolfSSL_ASN1_STRING_to_UTF8(&dns_name, names->d.dNSName);
  17598. if (dns_name && dns_len > 0) {
  17599. std::string san_name(reinterpret_cast<char *>(dns_name),
  17600. static_cast<size_t>(dns_len));
  17601. XFREE(dns_name, nullptr, DYNAMIC_TYPE_OPENSSL);
  17602. if (detail::match_hostname(san_name, host_str)) {
  17603. wolfSSL_sk_free(san_names);
  17604. return true;
  17605. }
  17606. }
  17607. } else if (is_ip && names->type == WOLFSSL_GEN_IPADD) {
  17608. // IP address: only an iPAddress SAN of the same family (4 bytes for
  17609. // IPv4, 16 bytes for IPv6) may authenticate the host.
  17610. unsigned char *ip_data = wolfSSL_ASN1_STRING_data(names->d.iPAddress);
  17611. auto san_ip_len = wolfSSL_ASN1_STRING_length(names->d.iPAddress);
  17612. if (ip_data && san_ip_len == static_cast<int>(ip_len) &&
  17613. memcmp(ip_data, ip_bytes, ip_len) == 0) {
  17614. wolfSSL_sk_free(san_names);
  17615. return true;
  17616. }
  17617. }
  17618. }
  17619. wolfSSL_sk_free(san_names);
  17620. }
  17621. // Fallback: Check Common Name (CN) in subject. Skipped for IP-literal hosts:
  17622. // an IP identity is only valid via an iPAddress SAN, never the CN (RFC 9110;
  17623. // the OpenSSL backend's X509_check_ip behaves the same way).
  17624. auto subject = is_ip ? nullptr : wolfSSL_X509_get_subject_name(x509);
  17625. if (subject) {
  17626. char cn[256] = {};
  17627. int cn_len = wolfSSL_X509_NAME_get_text_by_NID(subject, NID_commonName, cn,
  17628. sizeof(cn));
  17629. if (cn_len > 0) {
  17630. std::string cn_str(cn, static_cast<size_t>(cn_len));
  17631. if (detail::match_hostname(cn_str, host_str)) { return true; }
  17632. }
  17633. }
  17634. return false;
  17635. }
  17636. inline uint64_t hostname_mismatch_code() {
  17637. return static_cast<uint64_t>(DOMAIN_NAME_MISMATCH);
  17638. }
  17639. inline long get_verify_result(const_session_t session) {
  17640. if (!session) { return -1; }
  17641. auto wsession =
  17642. static_cast<impl::WolfSSLSession *>(const_cast<void *>(session));
  17643. long result = wolfSSL_get_verify_result(wsession->ssl);
  17644. return result;
  17645. }
  17646. inline std::string get_cert_subject_cn(cert_t cert) {
  17647. if (!cert) return "";
  17648. auto x509 = static_cast<WOLFSSL_X509 *>(cert);
  17649. WOLFSSL_X509_NAME *subject = wolfSSL_X509_get_subject_name(x509);
  17650. if (!subject) return "";
  17651. char cn[256] = {};
  17652. int cn_len = wolfSSL_X509_NAME_get_text_by_NID(subject, NID_commonName, cn,
  17653. sizeof(cn));
  17654. if (cn_len <= 0) return "";
  17655. return std::string(cn, static_cast<size_t>(cn_len));
  17656. }
  17657. inline std::string get_cert_issuer_name(cert_t cert) {
  17658. if (!cert) return "";
  17659. auto x509 = static_cast<WOLFSSL_X509 *>(cert);
  17660. WOLFSSL_X509_NAME *issuer = wolfSSL_X509_get_issuer_name(x509);
  17661. if (!issuer) return "";
  17662. char *name_str = wolfSSL_X509_NAME_oneline(issuer, nullptr, 0);
  17663. if (!name_str) return "";
  17664. std::string result(name_str);
  17665. XFREE(name_str, nullptr, DYNAMIC_TYPE_OPENSSL);
  17666. return result;
  17667. }
  17668. inline bool get_cert_sans(cert_t cert, std::vector<SanEntry> &sans) {
  17669. sans.clear();
  17670. if (!cert) return false;
  17671. auto x509 = static_cast<WOLFSSL_X509 *>(cert);
  17672. auto *san_names = static_cast<WOLF_STACK_OF(WOLFSSL_GENERAL_NAME) *>(
  17673. wolfSSL_X509_get_ext_d2i(x509, NID_subject_alt_name, nullptr, nullptr));
  17674. if (!san_names) return true; // No SANs is not an error
  17675. int count = wolfSSL_sk_num(san_names);
  17676. for (int i = 0; i < count; i++) {
  17677. auto *name =
  17678. static_cast<WOLFSSL_GENERAL_NAME *>(wolfSSL_sk_value(san_names, i));
  17679. if (!name) continue;
  17680. SanEntry entry;
  17681. switch (name->type) {
  17682. case WOLFSSL_GEN_DNS: {
  17683. entry.type = SanType::DNS;
  17684. unsigned char *dns_name = nullptr;
  17685. int dns_len = wolfSSL_ASN1_STRING_to_UTF8(&dns_name, name->d.dNSName);
  17686. if (dns_name && dns_len > 0) {
  17687. entry.value = std::string(reinterpret_cast<char *>(dns_name),
  17688. static_cast<size_t>(dns_len));
  17689. XFREE(dns_name, nullptr, DYNAMIC_TYPE_OPENSSL);
  17690. }
  17691. break;
  17692. }
  17693. case WOLFSSL_GEN_IPADD: {
  17694. entry.type = SanType::IP;
  17695. unsigned char *ip_data = wolfSSL_ASN1_STRING_data(name->d.iPAddress);
  17696. int ip_len = wolfSSL_ASN1_STRING_length(name->d.iPAddress);
  17697. if (ip_data && ip_len == 4) {
  17698. char buf[16];
  17699. snprintf(buf, sizeof(buf), "%d.%d.%d.%d", ip_data[0], ip_data[1],
  17700. ip_data[2], ip_data[3]);
  17701. entry.value = buf;
  17702. } else if (ip_data && ip_len == 16) {
  17703. char buf[64];
  17704. snprintf(buf, sizeof(buf),
  17705. "%02x%02x:%02x%02x:%02x%02x:%02x%02x:"
  17706. "%02x%02x:%02x%02x:%02x%02x:%02x%02x",
  17707. ip_data[0], ip_data[1], ip_data[2], ip_data[3], ip_data[4],
  17708. ip_data[5], ip_data[6], ip_data[7], ip_data[8], ip_data[9],
  17709. ip_data[10], ip_data[11], ip_data[12], ip_data[13],
  17710. ip_data[14], ip_data[15]);
  17711. entry.value = buf;
  17712. }
  17713. break;
  17714. }
  17715. case WOLFSSL_GEN_EMAIL:
  17716. entry.type = SanType::EMAIL;
  17717. {
  17718. unsigned char *email = nullptr;
  17719. int email_len = wolfSSL_ASN1_STRING_to_UTF8(&email, name->d.rfc822Name);
  17720. if (email && email_len > 0) {
  17721. entry.value = std::string(reinterpret_cast<char *>(email),
  17722. static_cast<size_t>(email_len));
  17723. XFREE(email, nullptr, DYNAMIC_TYPE_OPENSSL);
  17724. }
  17725. }
  17726. break;
  17727. case WOLFSSL_GEN_URI:
  17728. entry.type = SanType::URI;
  17729. {
  17730. unsigned char *uri = nullptr;
  17731. int uri_len = wolfSSL_ASN1_STRING_to_UTF8(
  17732. &uri, name->d.uniformResourceIdentifier);
  17733. if (uri && uri_len > 0) {
  17734. entry.value = std::string(reinterpret_cast<char *>(uri),
  17735. static_cast<size_t>(uri_len));
  17736. XFREE(uri, nullptr, DYNAMIC_TYPE_OPENSSL);
  17737. }
  17738. }
  17739. break;
  17740. default: entry.type = SanType::OTHER; break;
  17741. }
  17742. if (!entry.value.empty()) { sans.push_back(std::move(entry)); }
  17743. }
  17744. wolfSSL_sk_free(san_names);
  17745. return true;
  17746. }
  17747. inline bool get_cert_validity(cert_t cert, time_t &not_before,
  17748. time_t &not_after) {
  17749. if (!cert) return false;
  17750. auto x509 = static_cast<WOLFSSL_X509 *>(cert);
  17751. const WOLFSSL_ASN1_TIME *nb = wolfSSL_X509_get_notBefore(x509);
  17752. const WOLFSSL_ASN1_TIME *na = wolfSSL_X509_get_notAfter(x509);
  17753. if (!nb || !na) return false;
  17754. // wolfSSL_ASN1_TIME_to_tm is available
  17755. struct tm tm_nb = {}, tm_na = {};
  17756. if (wolfSSL_ASN1_TIME_to_tm(nb, &tm_nb) != WOLFSSL_SUCCESS) return false;
  17757. if (wolfSSL_ASN1_TIME_to_tm(na, &tm_na) != WOLFSSL_SUCCESS) return false;
  17758. #ifdef _WIN32
  17759. not_before = _mkgmtime(&tm_nb);
  17760. not_after = _mkgmtime(&tm_na);
  17761. #else
  17762. not_before = timegm(&tm_nb);
  17763. not_after = timegm(&tm_na);
  17764. #endif
  17765. return true;
  17766. }
  17767. inline std::string get_cert_serial(cert_t cert) {
  17768. if (!cert) return "";
  17769. auto x509 = static_cast<WOLFSSL_X509 *>(cert);
  17770. WOLFSSL_ASN1_INTEGER *serial_asn1 = wolfSSL_X509_get_serialNumber(x509);
  17771. if (!serial_asn1) return "";
  17772. // Get the serial number data
  17773. int len = serial_asn1->length;
  17774. unsigned char *data = serial_asn1->data;
  17775. if (!data || len <= 0) return "";
  17776. std::string result;
  17777. result.reserve(static_cast<size_t>(len) * 2);
  17778. for (int i = 0; i < len; i++) {
  17779. char hex[3];
  17780. snprintf(hex, sizeof(hex), "%02X", data[i]);
  17781. result += hex;
  17782. }
  17783. return result;
  17784. }
  17785. inline bool get_cert_der(cert_t cert, std::vector<unsigned char> &der) {
  17786. if (!cert) return false;
  17787. auto x509 = static_cast<WOLFSSL_X509 *>(cert);
  17788. int der_len = 0;
  17789. const unsigned char *der_data = wolfSSL_X509_get_der(x509, &der_len);
  17790. if (!der_data || der_len <= 0) return false;
  17791. der.assign(der_data, der_data + der_len);
  17792. return true;
  17793. }
  17794. inline const char *get_sni(const_session_t session) {
  17795. if (!session) return nullptr;
  17796. auto wsession = static_cast<const impl::WolfSSLSession *>(session);
  17797. // For server: return SNI received from client during handshake
  17798. if (!wsession->sni_hostname.empty()) {
  17799. return wsession->sni_hostname.c_str();
  17800. }
  17801. // For client: return the hostname set via set_sni
  17802. if (!wsession->hostname.empty()) { return wsession->hostname.c_str(); }
  17803. return nullptr;
  17804. }
  17805. inline uint64_t peek_error() {
  17806. return static_cast<uint64_t>(wolfSSL_ERR_peek_last_error());
  17807. }
  17808. inline uint64_t get_error() {
  17809. uint64_t err = impl::wolfssl_last_error();
  17810. impl::wolfssl_last_error() = 0;
  17811. return err;
  17812. }
  17813. inline std::string error_string(uint64_t code) {
  17814. char buf[256];
  17815. wolfSSL_ERR_error_string(static_cast<unsigned long>(code), buf);
  17816. return std::string(buf);
  17817. }
  17818. inline ca_store_t create_ca_store(const char *pem, size_t len) {
  17819. if (!pem || len == 0) { return nullptr; }
  17820. // Validate by attempting to load into a temporary ctx
  17821. WOLFSSL_CTX *tmp_ctx = wolfSSL_CTX_new(wolfTLSv1_2_client_method());
  17822. if (!tmp_ctx) { return nullptr; }
  17823. int ret = wolfSSL_CTX_load_verify_buffer(
  17824. tmp_ctx, reinterpret_cast<const unsigned char *>(pem),
  17825. static_cast<long>(len), SSL_FILETYPE_PEM);
  17826. wolfSSL_CTX_free(tmp_ctx);
  17827. if (ret != SSL_SUCCESS) { return nullptr; }
  17828. return static_cast<ca_store_t>(
  17829. new impl::WolfSSLCAStore{std::string(pem, len)});
  17830. }
  17831. inline void free_ca_store(ca_store_t store) {
  17832. delete static_cast<impl::WolfSSLCAStore *>(store);
  17833. }
  17834. inline bool set_ca_store(ctx_t ctx, ca_store_t store) {
  17835. if (!ctx || !store) { return false; }
  17836. auto *wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17837. auto *ca = static_cast<impl::WolfSSLCAStore *>(store);
  17838. int ret = wolfSSL_CTX_load_verify_buffer(
  17839. wctx->ctx, reinterpret_cast<const unsigned char *>(ca->pem_data.data()),
  17840. static_cast<long>(ca->pem_data.size()), SSL_FILETYPE_PEM);
  17841. if (ret == SSL_SUCCESS) { wctx->ca_pem_data_ += ca->pem_data; }
  17842. // This function takes ownership of the store; the PEM data was copied into
  17843. // the context, so release the source
  17844. free_ca_store(store);
  17845. return ret == SSL_SUCCESS;
  17846. }
  17847. inline size_t get_ca_certs(ctx_t ctx, std::vector<cert_t> &certs) {
  17848. certs.clear();
  17849. if (!ctx) { return 0; }
  17850. auto *wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17851. if (wctx->ca_pem_data_.empty()) { return 0; }
  17852. const std::string &pem = wctx->ca_pem_data_;
  17853. const std::string begin_marker = "-----BEGIN CERTIFICATE-----";
  17854. const std::string end_marker = "-----END CERTIFICATE-----";
  17855. size_t pos = 0;
  17856. while ((pos = pem.find(begin_marker, pos)) != std::string::npos) {
  17857. size_t end_pos = pem.find(end_marker, pos);
  17858. if (end_pos == std::string::npos) { break; }
  17859. end_pos += end_marker.size();
  17860. std::string cert_pem = pem.substr(pos, end_pos - pos);
  17861. WOLFSSL_X509 *x509 = wolfSSL_X509_load_certificate_buffer(
  17862. reinterpret_cast<const unsigned char *>(cert_pem.data()),
  17863. static_cast<int>(cert_pem.size()), WOLFSSL_FILETYPE_PEM);
  17864. if (x509) { certs.push_back(static_cast<cert_t>(x509)); }
  17865. pos = end_pos;
  17866. }
  17867. return certs.size();
  17868. }
  17869. inline std::vector<std::string> get_ca_names(ctx_t ctx) {
  17870. std::vector<std::string> names;
  17871. if (!ctx) { return names; }
  17872. auto *wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17873. if (wctx->ca_pem_data_.empty()) { return names; }
  17874. const std::string &pem = wctx->ca_pem_data_;
  17875. const std::string begin_marker = "-----BEGIN CERTIFICATE-----";
  17876. const std::string end_marker = "-----END CERTIFICATE-----";
  17877. size_t pos = 0;
  17878. while ((pos = pem.find(begin_marker, pos)) != std::string::npos) {
  17879. size_t end_pos = pem.find(end_marker, pos);
  17880. if (end_pos == std::string::npos) { break; }
  17881. end_pos += end_marker.size();
  17882. std::string cert_pem = pem.substr(pos, end_pos - pos);
  17883. WOLFSSL_X509 *x509 = wolfSSL_X509_load_certificate_buffer(
  17884. reinterpret_cast<const unsigned char *>(cert_pem.data()),
  17885. static_cast<int>(cert_pem.size()), WOLFSSL_FILETYPE_PEM);
  17886. if (x509) {
  17887. WOLFSSL_X509_NAME *subject = wolfSSL_X509_get_subject_name(x509);
  17888. if (subject) {
  17889. char *name_str = wolfSSL_X509_NAME_oneline(subject, nullptr, 0);
  17890. if (name_str) {
  17891. names.push_back(name_str);
  17892. XFREE(name_str, nullptr, DYNAMIC_TYPE_OPENSSL);
  17893. }
  17894. }
  17895. wolfSSL_X509_free(x509);
  17896. }
  17897. pos = end_pos;
  17898. }
  17899. return names;
  17900. }
  17901. inline bool update_server_cert(ctx_t ctx, const char *cert_pem,
  17902. const char *key_pem, const char *password) {
  17903. if (!ctx || !cert_pem || !key_pem) { return false; }
  17904. auto *wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17905. // Load new certificate
  17906. int ret = wolfSSL_CTX_use_certificate_buffer(
  17907. wctx->ctx, reinterpret_cast<const unsigned char *>(cert_pem),
  17908. static_cast<long>(strlen(cert_pem)), SSL_FILETYPE_PEM);
  17909. if (ret != SSL_SUCCESS) {
  17910. impl::wolfssl_last_error() =
  17911. static_cast<uint64_t>(wolfSSL_ERR_peek_last_error());
  17912. return false;
  17913. }
  17914. // Set password if provided
  17915. if (password) { impl::set_wolfssl_password_cb(wctx->ctx, password); }
  17916. // Load new private key
  17917. ret = wolfSSL_CTX_use_PrivateKey_buffer(
  17918. wctx->ctx, reinterpret_cast<const unsigned char *>(key_pem),
  17919. static_cast<long>(strlen(key_pem)), SSL_FILETYPE_PEM);
  17920. if (ret != SSL_SUCCESS) {
  17921. impl::wolfssl_last_error() =
  17922. static_cast<uint64_t>(wolfSSL_ERR_peek_last_error());
  17923. return false;
  17924. }
  17925. return true;
  17926. }
  17927. inline bool update_server_client_ca(ctx_t ctx, const char *ca_pem) {
  17928. if (!ctx || !ca_pem) { return false; }
  17929. auto *wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17930. int ret = wolfSSL_CTX_load_verify_buffer(
  17931. wctx->ctx, reinterpret_cast<const unsigned char *>(ca_pem),
  17932. static_cast<long>(strlen(ca_pem)), SSL_FILETYPE_PEM);
  17933. if (ret != SSL_SUCCESS) {
  17934. impl::wolfssl_last_error() =
  17935. static_cast<uint64_t>(wolfSSL_ERR_peek_last_error());
  17936. return false;
  17937. }
  17938. return true;
  17939. }
  17940. inline bool set_verify_callback(ctx_t ctx, VerifyCallback callback) {
  17941. if (!ctx) { return false; }
  17942. auto *wctx = static_cast<impl::WolfSSLContext *>(ctx);
  17943. impl::get_verify_callback() = std::move(callback);
  17944. wctx->has_verify_callback = static_cast<bool>(impl::get_verify_callback());
  17945. if (wctx->has_verify_callback) {
  17946. wolfSSL_CTX_set_verify(wctx->ctx, SSL_VERIFY_PEER,
  17947. impl::wolfssl_verify_callback);
  17948. } else {
  17949. wolfSSL_CTX_set_verify(
  17950. wctx->ctx,
  17951. wctx->verify_client
  17952. ? (SSL_VERIFY_PEER | SSL_VERIFY_FAIL_IF_NO_PEER_CERT)
  17953. : SSL_VERIFY_NONE,
  17954. nullptr);
  17955. }
  17956. return true;
  17957. }
  17958. inline long get_verify_error(const_session_t session) {
  17959. if (!session) { return -1; }
  17960. auto *wsession =
  17961. static_cast<impl::WolfSSLSession *>(const_cast<void *>(session));
  17962. return wolfSSL_get_verify_result(wsession->ssl);
  17963. }
  17964. inline std::string verify_error_string(long error_code) {
  17965. if (error_code == 0) { return ""; }
  17966. const char *str =
  17967. wolfSSL_X509_verify_cert_error_string(static_cast<int>(error_code));
  17968. return str ? std::string(str) : std::string();
  17969. }
  17970. } // namespace tls
  17971. #endif // CPPHTTPLIB_WOLFSSL_SUPPORT
  17972. // WebSocket implementation
  17973. namespace ws {
  17974. inline bool WebSocket::send_frame(Opcode op, const char *data, size_t len,
  17975. bool fin) {
  17976. std::lock_guard<std::mutex> lock(write_mutex_);
  17977. if (closed_) { return false; }
  17978. return detail::write_websocket_frame(strm_, op, data, len, fin, !is_server_);
  17979. }
  17980. inline ReadResult WebSocket::read(std::string &msg) {
  17981. while (!closed_) {
  17982. Opcode opcode;
  17983. std::string payload;
  17984. bool fin;
  17985. if (!impl::read_websocket_frame(strm_, opcode, payload, fin, is_server_,
  17986. CPPHTTPLIB_WEBSOCKET_MAX_PAYLOAD_LENGTH)) {
  17987. closed_ = true;
  17988. return Fail;
  17989. }
  17990. switch (opcode) {
  17991. case Opcode::Ping: {
  17992. std::lock_guard<std::mutex> lock(write_mutex_);
  17993. detail::write_websocket_frame(strm_, Opcode::Pong, payload.data(),
  17994. payload.size(), true, !is_server_);
  17995. continue;
  17996. }
  17997. case Opcode::Pong: {
  17998. std::lock_guard<std::mutex> lock(ping_mutex_);
  17999. unacked_pings_ = 0;
  18000. continue;
  18001. }
  18002. case Opcode::Close: {
  18003. if (!closed_.exchange(true)) {
  18004. // Echo close frame back
  18005. std::lock_guard<std::mutex> lock(write_mutex_);
  18006. detail::write_websocket_frame(strm_, Opcode::Close, payload.data(),
  18007. payload.size(), true, !is_server_);
  18008. }
  18009. return Fail;
  18010. }
  18011. case Opcode::Text:
  18012. case Opcode::Binary: {
  18013. auto result = opcode == Opcode::Text ? Text : Binary;
  18014. msg = std::move(payload);
  18015. // Handle fragmentation
  18016. if (!fin) {
  18017. while (true) {
  18018. Opcode cont_opcode;
  18019. std::string cont_payload;
  18020. bool cont_fin;
  18021. if (!impl::read_websocket_frame(
  18022. strm_, cont_opcode, cont_payload, cont_fin, is_server_,
  18023. CPPHTTPLIB_WEBSOCKET_MAX_PAYLOAD_LENGTH)) {
  18024. closed_ = true;
  18025. return Fail;
  18026. }
  18027. if (cont_opcode == Opcode::Ping) {
  18028. std::lock_guard<std::mutex> lock(write_mutex_);
  18029. detail::write_websocket_frame(
  18030. strm_, Opcode::Pong, cont_payload.data(), cont_payload.size(),
  18031. true, !is_server_);
  18032. continue;
  18033. }
  18034. if (cont_opcode == Opcode::Pong) {
  18035. std::lock_guard<std::mutex> lock(ping_mutex_);
  18036. unacked_pings_ = 0;
  18037. continue;
  18038. }
  18039. if (cont_opcode == Opcode::Close) {
  18040. if (!closed_.exchange(true)) {
  18041. std::lock_guard<std::mutex> lock(write_mutex_);
  18042. detail::write_websocket_frame(
  18043. strm_, Opcode::Close, cont_payload.data(),
  18044. cont_payload.size(), true, !is_server_);
  18045. }
  18046. return Fail;
  18047. }
  18048. // RFC 6455: continuation frames must use opcode 0x0
  18049. if (cont_opcode != Opcode::Continuation) {
  18050. closed_ = true;
  18051. return Fail;
  18052. }
  18053. msg += cont_payload;
  18054. if (msg.size() > CPPHTTPLIB_WEBSOCKET_MAX_PAYLOAD_LENGTH) {
  18055. closed_ = true;
  18056. return Fail;
  18057. }
  18058. if (cont_fin) { break; }
  18059. }
  18060. }
  18061. // RFC 6455 Section 5.6: text frames must contain valid UTF-8
  18062. if (result == Text && !impl::is_valid_utf8(msg)) {
  18063. close(CloseStatus::InvalidPayload, "invalid UTF-8");
  18064. return Fail;
  18065. }
  18066. return result;
  18067. }
  18068. default: closed_ = true; return Fail;
  18069. }
  18070. }
  18071. return Fail;
  18072. }
  18073. inline bool WebSocket::send(const std::string &data) {
  18074. return send_frame(Opcode::Text, data.data(), data.size());
  18075. }
  18076. inline bool WebSocket::send(const char *data, size_t len) {
  18077. return send_frame(Opcode::Binary, data, len);
  18078. }
  18079. inline void WebSocket::close(CloseStatus status, const std::string &reason) {
  18080. if (closed_.exchange(true)) { return; }
  18081. ping_cv_.notify_all();
  18082. std::string payload;
  18083. auto code = static_cast<uint16_t>(status);
  18084. payload.push_back(static_cast<char>((code >> 8) & 0xFF));
  18085. payload.push_back(static_cast<char>(code & 0xFF));
  18086. // RFC 6455 Section 5.5: control frame payload must not exceed 125 bytes
  18087. // Close frame has 2-byte status code, so reason is limited to 123 bytes
  18088. payload += reason.substr(0, 123);
  18089. {
  18090. std::lock_guard<std::mutex> lock(write_mutex_);
  18091. detail::write_websocket_frame(strm_, Opcode::Close, payload.data(),
  18092. payload.size(), true, !is_server_);
  18093. }
  18094. // RFC 6455 Section 7.1.1: after sending a Close frame, wait for the peer's
  18095. // Close response before closing the TCP connection. Use a short timeout to
  18096. // avoid hanging if the peer doesn't respond.
  18097. strm_.set_read_timeout(CPPHTTPLIB_WEBSOCKET_CLOSE_TIMEOUT_SECOND, 0);
  18098. Opcode op;
  18099. std::string resp;
  18100. bool fin;
  18101. while (impl::read_websocket_frame(strm_, op, resp, fin, is_server_, 125)) {
  18102. if (op == Opcode::Close) { break; }
  18103. }
  18104. }
  18105. inline WebSocket::~WebSocket() {
  18106. {
  18107. std::lock_guard<std::mutex> lock(ping_mutex_);
  18108. closed_ = true;
  18109. }
  18110. ping_cv_.notify_all();
  18111. if (ping_thread_.joinable()) { ping_thread_.join(); }
  18112. }
  18113. inline void WebSocket::start_heartbeat() {
  18114. if (ping_interval_sec_ == 0) { return; }
  18115. ping_thread_ = std::thread([this]() {
  18116. std::unique_lock<std::mutex> lock(ping_mutex_);
  18117. while (!closed_) {
  18118. ping_cv_.wait_for(lock, std::chrono::seconds(ping_interval_sec_));
  18119. if (closed_) { break; }
  18120. // If the peer has failed to respond to the previous pings, give up.
  18121. // RFC 6455 does not define a pong-timeout mechanism; this is an
  18122. // opt-in liveness check controlled by max_missed_pongs_.
  18123. if (max_missed_pongs_ > 0 && unacked_pings_ >= max_missed_pongs_) {
  18124. lock.unlock();
  18125. close(CloseStatus::GoingAway, "pong timeout");
  18126. return;
  18127. }
  18128. lock.unlock();
  18129. if (!send_frame(Opcode::Ping, nullptr, 0)) {
  18130. lock.lock();
  18131. closed_ = true;
  18132. break;
  18133. }
  18134. lock.lock();
  18135. unacked_pings_++;
  18136. }
  18137. });
  18138. }
  18139. inline const Request &WebSocket::request() const { return req_; }
  18140. inline bool WebSocket::is_open() const { return !closed_; }
  18141. // WebSocketClient implementation
  18142. inline WebSocketClient::WebSocketClient(
  18143. const std::string &scheme_host_port_path, const Headers &headers)
  18144. : headers_(headers) {
  18145. detail::UrlComponents uc;
  18146. if (detail::parse_url(scheme_host_port_path, uc) && !uc.scheme.empty() &&
  18147. !uc.host.empty() && !uc.path.empty()) {
  18148. auto &scheme = uc.scheme;
  18149. #ifdef CPPHTTPLIB_SSL_ENABLED
  18150. if (scheme != "ws" && scheme != "wss") {
  18151. #else
  18152. if (scheme != "ws") {
  18153. #endif
  18154. #ifndef CPPHTTPLIB_NO_EXCEPTIONS
  18155. std::string msg = "'" + scheme + "' scheme is not supported.";
  18156. throw std::invalid_argument(msg);
  18157. #endif
  18158. return;
  18159. }
  18160. auto is_ssl = scheme == "wss";
  18161. host_ = std::move(uc.host);
  18162. port_ = is_ssl ? 443 : 80;
  18163. if (!uc.port.empty() && !detail::parse_port(uc.port, port_)) { return; }
  18164. path_ = std::move(uc.path);
  18165. if (!uc.query.empty()) { path_ += uc.query; }
  18166. #ifdef CPPHTTPLIB_SSL_ENABLED
  18167. is_ssl_ = is_ssl;
  18168. if (is_ssl_) {
  18169. // The context lives as long as the client so that CA configuration
  18170. // survives reconnects; sessions are created per connection.
  18171. tls_ctx_ = tls::create_client_context();
  18172. if (!tls_ctx_) { return; }
  18173. }
  18174. #else
  18175. if (is_ssl) { return; }
  18176. #endif
  18177. is_valid_ = true;
  18178. }
  18179. }
  18180. #ifdef CPPHTTPLIB_SSL_ENABLED
  18181. inline WebSocketClient::WebSocketClient(
  18182. const std::string &scheme_host_port_path, const PemMemory &pem,
  18183. const Headers &headers)
  18184. : WebSocketClient(scheme_host_port_path, headers) {
  18185. // For ws:// URLs the client certificate is silently ignored, consistent
  18186. // with the TLS-only setters such as set_ca_cert_path().
  18187. if (is_valid_ && is_ssl_ && pem.cert_pem && pem.key_pem) {
  18188. if (!tls::set_client_cert_pem(tls_ctx_, pem.cert_pem, pem.key_pem,
  18189. pem.private_key_password)) {
  18190. tls::free_context(tls_ctx_);
  18191. tls_ctx_ = nullptr;
  18192. is_valid_ = false;
  18193. }
  18194. }
  18195. }
  18196. #endif
  18197. inline WebSocketClient::~WebSocketClient() {
  18198. shutdown_and_close();
  18199. #ifdef CPPHTTPLIB_SSL_ENABLED
  18200. if (tls_ctx_) {
  18201. tls::free_context(tls_ctx_);
  18202. tls_ctx_ = nullptr;
  18203. }
  18204. #endif
  18205. }
  18206. inline bool WebSocketClient::is_valid() const { return is_valid_; }
  18207. inline void WebSocketClient::shutdown_and_close() {
  18208. // Send the close frame while the TLS session is still alive: ws_ holds an
  18209. // SSLSocketStream that keeps a raw pointer to tls_session_, so the session
  18210. // must outlive ws_->close() and ws_.reset() to avoid a use-after-free.
  18211. if (ws_ && ws_->is_open()) { ws_->close(); }
  18212. ws_.reset();
  18213. #ifdef CPPHTTPLIB_SSL_ENABLED
  18214. if (is_ssl_) {
  18215. if (tls_session_) {
  18216. tls::shutdown(tls_session_, true);
  18217. tls::free_session(tls_session_);
  18218. tls_session_ = nullptr;
  18219. }
  18220. }
  18221. #endif
  18222. if (sock_ != INVALID_SOCKET) {
  18223. detail::shutdown_socket(sock_);
  18224. detail::close_socket(sock_);
  18225. sock_ = INVALID_SOCKET;
  18226. }
  18227. }
  18228. inline bool WebSocketClient::create_stream(std::unique_ptr<Stream> &strm,
  18229. Error &error, int &ssl_error,
  18230. uint64_t &ssl_backend_error) {
  18231. #ifdef CPPHTTPLIB_SSL_ENABLED
  18232. if (is_ssl_) {
  18233. // A plain flag rather than SSLClient::load_certs()'s call_once: connect()
  18234. // is not safe to call concurrently on one client to begin with, since
  18235. // nothing else here is guarded either.
  18236. if (server_certificate_verification_ && !certs_loaded_) {
  18237. uint64_t backend_error = 0;
  18238. detail::load_client_ca_config(tls_ctx_, ca_cert_file_path_,
  18239. ca_cert_dir_path_, custom_ca_loaded_,
  18240. system_ca_mode_, backend_error);
  18241. certs_loaded_ = true;
  18242. }
  18243. detail::ClientTlsSessionError tls_error;
  18244. if (!detail::setup_client_tls_session(host_, tls_ctx_, tls_session_, sock_,
  18245. server_certificate_verification_,
  18246. read_timeout_sec_, read_timeout_usec_,
  18247. &tls_error)) {
  18248. error = tls_error.error;
  18249. ssl_error = tls_error.ssl_error;
  18250. ssl_backend_error = tls_error.backend_error;
  18251. return false;
  18252. }
  18253. strm = std::unique_ptr<Stream>(new detail::SSLSocketStream(
  18254. sock_, tls_session_, read_timeout_sec_, read_timeout_usec_,
  18255. write_timeout_sec_, write_timeout_usec_));
  18256. return true;
  18257. }
  18258. #else
  18259. (void)error;
  18260. (void)ssl_error;
  18261. (void)ssl_backend_error;
  18262. #endif
  18263. strm = std::unique_ptr<Stream>(
  18264. new detail::SocketStream(sock_, read_timeout_sec_, read_timeout_usec_,
  18265. write_timeout_sec_, write_timeout_usec_));
  18266. return true;
  18267. }
  18268. inline void WebSocketClient::prepare_default_headers(Request &req) {
  18269. #ifdef CPPHTTPLIB_SSL_ENABLED
  18270. auto is_ssl = is_ssl_;
  18271. #else
  18272. auto is_ssl = false;
  18273. #endif
  18274. if (!req.has_header("Host")) {
  18275. req.headers.emplace("Host", detail::make_default_host_header_value(
  18276. host_, port_, is_ssl, address_family_));
  18277. }
  18278. detail::add_default_user_agent_header(req);
  18279. }
  18280. inline Result WebSocketClient::connect() {
  18281. if (!is_valid_) { return Result{Error::Connection, -1, Headers{}}; }
  18282. shutdown_and_close();
  18283. // Check is custom IP or hostname specified for host_
  18284. std::string connect_host;
  18285. std::string ip;
  18286. detail::apply_addr_map(addr_map_, host_, connect_host, ip);
  18287. auto error = Error::Success;
  18288. sock_ = detail::create_client_socket(
  18289. connect_host, ip, port_, address_family_, tcp_nodelay_, ipv6_v6only_,
  18290. socket_options_, connection_timeout_sec_, connection_timeout_usec_,
  18291. read_timeout_sec_, read_timeout_usec_, write_timeout_sec_,
  18292. write_timeout_usec_, interface_, error);
  18293. if (sock_ == INVALID_SOCKET) {
  18294. if (error == Error::Success) { error = Error::Connection; }
  18295. return Result{error, -1, Headers{}};
  18296. }
  18297. std::unique_ptr<Stream> strm;
  18298. auto stream_error = Error::SSLConnection;
  18299. int ssl_error = 0;
  18300. uint64_t ssl_backend_error = 0;
  18301. if (!create_stream(strm, stream_error, ssl_error, ssl_backend_error)) {
  18302. shutdown_and_close();
  18303. #ifdef CPPHTTPLIB_SSL_ENABLED
  18304. return Result{stream_error, -1, Headers{}, ssl_error, ssl_backend_error};
  18305. #else
  18306. return Result{stream_error, -1, Headers{}};
  18307. #endif
  18308. }
  18309. Request req;
  18310. req.method = "GET";
  18311. req.path = path_;
  18312. req.headers = headers_;
  18313. prepare_default_headers(req);
  18314. detail::WebSocketUpgradeResponse upgrade;
  18315. if (!detail::perform_websocket_handshake(*strm, req, upgrade)) {
  18316. shutdown_and_close();
  18317. return Result{upgrade.error, upgrade.status, std::move(upgrade.headers)};
  18318. }
  18319. subprotocol_ = std::move(upgrade.selected_subprotocol);
  18320. ws_ = std::unique_ptr<WebSocket>(new WebSocket(std::move(strm), req, false,
  18321. websocket_ping_interval_sec_,
  18322. websocket_max_missed_pongs_));
  18323. return Result{Error::Success, upgrade.status, std::move(upgrade.headers)};
  18324. }
  18325. inline ReadResult WebSocketClient::read(std::string &msg) {
  18326. if (!ws_) { return Fail; }
  18327. return ws_->read(msg);
  18328. }
  18329. inline bool WebSocketClient::send(const std::string &data) {
  18330. if (!ws_) { return false; }
  18331. return ws_->send(data);
  18332. }
  18333. inline bool WebSocketClient::send(const char *data, size_t len) {
  18334. if (!ws_) { return false; }
  18335. return ws_->send(data, len);
  18336. }
  18337. inline void WebSocketClient::close(CloseStatus status,
  18338. const std::string &reason) {
  18339. if (ws_) { ws_->close(status, reason); }
  18340. }
  18341. inline bool WebSocketClient::is_open() const { return ws_ && ws_->is_open(); }
  18342. inline const std::string &WebSocketClient::subprotocol() const {
  18343. return subprotocol_;
  18344. }
  18345. inline void WebSocketClient::set_read_timeout(time_t sec, time_t usec) {
  18346. read_timeout_sec_ = sec;
  18347. read_timeout_usec_ = usec;
  18348. }
  18349. inline void WebSocketClient::set_write_timeout(time_t sec, time_t usec) {
  18350. write_timeout_sec_ = sec;
  18351. write_timeout_usec_ = usec;
  18352. }
  18353. inline void WebSocketClient::set_websocket_ping_interval(time_t sec) {
  18354. websocket_ping_interval_sec_ = sec;
  18355. }
  18356. inline void WebSocketClient::set_websocket_max_missed_pongs(int count) {
  18357. websocket_max_missed_pongs_ = count;
  18358. }
  18359. inline void WebSocketClient::set_tcp_nodelay(bool on) { tcp_nodelay_ = on; }
  18360. inline void WebSocketClient::set_address_family(int family) {
  18361. address_family_ = family;
  18362. }
  18363. inline void WebSocketClient::set_ipv6_v6only(bool on) { ipv6_v6only_ = on; }
  18364. inline void WebSocketClient::set_socket_options(SocketOptions socket_options) {
  18365. socket_options_ = std::move(socket_options);
  18366. }
  18367. inline void WebSocketClient::set_connection_timeout(time_t sec, time_t usec) {
  18368. connection_timeout_sec_ = sec;
  18369. connection_timeout_usec_ = usec;
  18370. }
  18371. inline void WebSocketClient::set_interface(const std::string &intf) {
  18372. interface_ = intf;
  18373. }
  18374. inline void WebSocketClient::set_hostname_addr_map(
  18375. std::map<std::string, std::string> addr_map) {
  18376. addr_map_ = std::move(addr_map);
  18377. }
  18378. #ifdef CPPHTTPLIB_SSL_ENABLED
  18379. inline void
  18380. WebSocketClient::set_ca_cert_path(const std::string &ca_cert_file_path,
  18381. const std::string &ca_cert_dir_path) {
  18382. ca_cert_file_path_ = ca_cert_file_path;
  18383. ca_cert_dir_path_ = ca_cert_dir_path;
  18384. }
  18385. inline void WebSocketClient::set_ca_cert_store(tls::ca_store_t store) {
  18386. if (store && tls_ctx_) {
  18387. // set_ca_store takes ownership of store
  18388. tls::set_ca_store(tls_ctx_, store);
  18389. custom_ca_loaded_ = true;
  18390. } else if (store) {
  18391. tls::free_ca_store(store);
  18392. }
  18393. }
  18394. inline void WebSocketClient::load_ca_cert_store(const char *ca_cert,
  18395. std::size_t size) {
  18396. if (tls_ctx_ && ca_cert && size > 0) {
  18397. tls::load_ca_pem(tls_ctx_, ca_cert, size);
  18398. custom_ca_loaded_ = true;
  18399. }
  18400. }
  18401. inline void
  18402. WebSocketClient::enable_server_certificate_verification(bool enabled) {
  18403. server_certificate_verification_ = enabled;
  18404. }
  18405. inline void WebSocketClient::enable_system_ca(bool enabled) {
  18406. system_ca_mode_ = enabled ? SystemCAMode::Enabled : SystemCAMode::Disabled;
  18407. }
  18408. #endif // CPPHTTPLIB_SSL_ENABLED
  18409. } // namespace ws
  18410. // ----------------------------------------------------------------------------
  18411. } // namespace httplib
  18412. #endif // CPPHTTPLIB_HTTPLIB_H