test.cc 505 KB

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  1. // NOTE: This file should be saved as UTF-8 w/ BOM
  2. #include <httplib.h>
  3. #include <signal.h>
  4. #ifndef _WIN32
  5. #include <arpa/inet.h>
  6. #include <ctime>
  7. #include <curl/curl.h>
  8. #include <netinet/in.h>
  9. #include <sys/socket.h>
  10. #include <sys/time.h>
  11. #include <unistd.h>
  12. #endif
  13. #include <gtest/gtest.h>
  14. #include <algorithm>
  15. #include <atomic>
  16. #include <chrono>
  17. #include <cstdio>
  18. #include <fstream>
  19. #include <future>
  20. #include <limits>
  21. #include <memory>
  22. #include <sstream>
  23. #include <stdexcept>
  24. #include <thread>
  25. #include <type_traits>
  26. #include <vector>
  27. #if __cplusplus >= 202002L
  28. inline std::string u8_to_string(const char8_t *s) {
  29. return std::string(reinterpret_cast<const char *>(s));
  30. }
  31. #define U8(x) u8_to_string(u8##x)
  32. #else
  33. #define U8(x) u8##x
  34. #endif
  35. #define SERVER_CERT_FILE "./cert.pem"
  36. #define SERVER_CERT2_FILE "./cert2.pem"
  37. #define SERVER_PRIVATE_KEY_FILE "./key.pem"
  38. #define CA_CERT_FILE "./ca-bundle.crt"
  39. #define CLIENT_CA_CERT_FILE "./rootCA.cert.pem"
  40. #define CLIENT_CA_CERT_DIR "."
  41. #define CLIENT_CERT_FILE "./client.cert.pem"
  42. #define CLIENT_PRIVATE_KEY_FILE "./client.key.pem"
  43. #define CLIENT_ENCRYPTED_CERT_FILE "./client_encrypted.cert.pem"
  44. #define CLIENT_ENCRYPTED_PRIVATE_KEY_FILE "./client_encrypted.key.pem"
  45. #define CLIENT_ENCRYPTED_PRIVATE_KEY_PASS "test012!"
  46. #define SERVER_ENCRYPTED_CERT_FILE "./cert_encrypted.pem"
  47. #define SERVER_ENCRYPTED_PRIVATE_KEY_FILE "./key_encrypted.pem"
  48. #define SERVER_ENCRYPTED_PRIVATE_KEY_PASS "test123!"
  49. using namespace std;
  50. using namespace httplib;
  51. const char *HOST = "localhost";
  52. static int get_base_port() {
  53. const char *shard = getenv("GTEST_SHARD_INDEX");
  54. return shard ? 11234 + std::atoi(shard) * 100 : 1234;
  55. }
  56. const int PORT = get_base_port();
  57. const string LONG_QUERY_VALUE = string(25000, '@');
  58. const string LONG_QUERY_URL = "/long-query-value?key=" + LONG_QUERY_VALUE;
  59. const string TOO_LONG_QUERY_VALUE = string(35000, '@');
  60. const string TOO_LONG_QUERY_URL =
  61. "/too-long-query-value?key=" + TOO_LONG_QUERY_VALUE;
  62. const std::string JSON_DATA = "{\"hello\":\"world\"}";
  63. const string LARGE_DATA = string(1024 * 1024 * 100, '@'); // 100MB
  64. FormData &get_file_value(std::vector<FormData> &items, const char *key) {
  65. auto it = std::find_if(items.begin(), items.end(), [&](const FormData &file) {
  66. return file.name == key;
  67. });
  68. #ifdef CPPHTTPLIB_NO_EXCEPTIONS
  69. return *it;
  70. #else
  71. if (it != items.end()) { return *it; }
  72. throw std::runtime_error("invalid multipart form data name error");
  73. #endif
  74. }
  75. static void read_file(const std::string &path, std::string &out) {
  76. std::ifstream fs(path, std::ios_base::binary);
  77. if (!fs) {
  78. #ifdef CPPHTTPLIB_NO_EXCEPTIONS
  79. return;
  80. #else
  81. throw std::runtime_error("File not found: " + path);
  82. #endif
  83. }
  84. fs.seekg(0, std::ios_base::end);
  85. auto size = fs.tellg();
  86. fs.seekg(0);
  87. out.resize(static_cast<size_t>(size));
  88. fs.read(&out[0], static_cast<std::streamsize>(size));
  89. }
  90. void performance_test(const char *host) {
  91. Server svr;
  92. svr.Get("/benchmark", [&](const Request & /*req*/, Response &res) {
  93. res.set_content("Benchmark Response", "text/plain");
  94. });
  95. auto listen_thread = std::thread([&]() { svr.listen(host, PORT); });
  96. auto se = detail::scope_exit([&] {
  97. svr.stop();
  98. listen_thread.join();
  99. ASSERT_FALSE(svr.is_running());
  100. });
  101. svr.wait_until_ready();
  102. Client cli(host, PORT);
  103. // Warm-up request to establish connection and resolve DNS
  104. auto warmup_res = cli.Get("/benchmark");
  105. ASSERT_TRUE(warmup_res); // Ensure server is responding correctly
  106. // Run multiple trials and collect timings
  107. const int num_trials = 20;
  108. std::vector<int64_t> timings;
  109. timings.reserve(num_trials);
  110. for (int i = 0; i < num_trials; i++) {
  111. auto start = std::chrono::high_resolution_clock::now();
  112. auto res = cli.Get("/benchmark");
  113. auto end = std::chrono::high_resolution_clock::now();
  114. auto elapsed =
  115. std::chrono::duration_cast<std::chrono::milliseconds>(end - start)
  116. .count();
  117. // Assertions after timing measurement to avoid overhead
  118. ASSERT_TRUE(res);
  119. EXPECT_EQ(StatusCode::OK_200, res->status);
  120. timings.push_back(elapsed);
  121. }
  122. // Calculate 25th percentile (lower quartile)
  123. std::sort(timings.begin(), timings.end());
  124. auto p25 = timings[num_trials / 4];
  125. // Format timings for output
  126. std::ostringstream timings_str;
  127. timings_str << "[";
  128. for (size_t i = 0; i < timings.size(); i++) {
  129. if (i > 0) timings_str << ", ";
  130. timings_str << timings[i];
  131. }
  132. timings_str << "]";
  133. // Localhost HTTP GET should be fast even in CI environments
  134. EXPECT_LE(p25, 5) << "25th percentile performance is too slow: " << p25
  135. << "ms (Issue #1777). Timings: " << timings_str.str();
  136. }
  137. TEST(BenchmarkTest, localhost) { performance_test("localhost"); }
  138. TEST(BenchmarkTest, v6) { performance_test("::1"); }
  139. class UnixSocketTest : public ::testing::Test {
  140. protected:
  141. void TearDown() override { std::remove(pathname_.c_str()); }
  142. void client_GET(const std::string &addr) {
  143. httplib::Client cli{addr};
  144. cli.set_address_family(AF_UNIX);
  145. ASSERT_TRUE(cli.is_valid());
  146. const auto &result = cli.Get(pattern_);
  147. ASSERT_TRUE(result) << "error: " << result.error();
  148. const auto &resp = result.value();
  149. EXPECT_EQ(resp.status, StatusCode::OK_200);
  150. EXPECT_EQ(resp.body, content_);
  151. }
  152. static std::string make_sock_path() {
  153. const char *shard = getenv("GTEST_SHARD_INDEX");
  154. return shard ? std::string("./httplib-server-") + shard + ".sock"
  155. : "./httplib-server.sock";
  156. }
  157. const std::string pathname_{make_sock_path()};
  158. const std::string pattern_{"/hi"};
  159. const std::string content_{"Hello World!"};
  160. };
  161. TEST_F(UnixSocketTest, pathname) {
  162. httplib::Server svr;
  163. svr.Get(pattern_, [&](const httplib::Request &, httplib::Response &res) {
  164. res.set_content(content_, "text/plain");
  165. });
  166. std::thread t{[&] {
  167. ASSERT_TRUE(svr.set_address_family(AF_UNIX).listen(pathname_, 80));
  168. }};
  169. auto se = detail::scope_exit([&] {
  170. svr.stop();
  171. t.join();
  172. ASSERT_FALSE(svr.is_running());
  173. });
  174. svr.wait_until_ready();
  175. ASSERT_TRUE(svr.is_running());
  176. client_GET(pathname_);
  177. }
  178. #if defined(__linux__) || \
  179. /* __APPLE__ */ (defined(SOL_LOCAL) && defined(SO_PEERPID))
  180. TEST_F(UnixSocketTest, PeerPid) {
  181. httplib::Server svr;
  182. std::string remote_port_val;
  183. svr.Get(pattern_, [&](const httplib::Request &req, httplib::Response &res) {
  184. res.set_content(content_, "text/plain");
  185. remote_port_val = std::to_string(req.remote_port);
  186. });
  187. std::thread t{[&] {
  188. ASSERT_TRUE(svr.set_address_family(AF_UNIX).listen(pathname_, 80));
  189. }};
  190. auto se = detail::scope_exit([&] {
  191. svr.stop();
  192. t.join();
  193. ASSERT_FALSE(svr.is_running());
  194. });
  195. svr.wait_until_ready();
  196. ASSERT_TRUE(svr.is_running());
  197. client_GET(pathname_);
  198. EXPECT_EQ(std::to_string(getpid()), remote_port_val);
  199. }
  200. #endif
  201. #ifdef __linux__
  202. TEST_F(UnixSocketTest, abstract) {
  203. constexpr char svr_path[]{"\x00httplib-server.sock"};
  204. const std::string abstract_addr{svr_path, sizeof(svr_path) - 1};
  205. httplib::Server svr;
  206. svr.Get(pattern_, [&](const httplib::Request &, httplib::Response &res) {
  207. res.set_content(content_, "text/plain");
  208. });
  209. std::thread t{[&] {
  210. ASSERT_TRUE(svr.set_address_family(AF_UNIX).listen(abstract_addr, 80));
  211. }};
  212. auto se = detail::scope_exit([&] {
  213. svr.stop();
  214. t.join();
  215. ASSERT_FALSE(svr.is_running());
  216. });
  217. svr.wait_until_ready();
  218. ASSERT_TRUE(svr.is_running());
  219. client_GET(abstract_addr);
  220. }
  221. #endif
  222. TEST_F(UnixSocketTest, HostHeaderAutoSet) {
  223. httplib::Server svr;
  224. std::string received_host_header;
  225. svr.Get(pattern_, [&](const httplib::Request &req, httplib::Response &res) {
  226. // Capture the Host header sent by the client
  227. auto host_iter = req.headers.find("Host");
  228. if (host_iter != req.headers.end()) {
  229. received_host_header = host_iter->second;
  230. }
  231. res.set_content(content_, "text/plain");
  232. });
  233. std::thread t{[&] {
  234. ASSERT_TRUE(svr.set_address_family(AF_UNIX).listen(pathname_, 80));
  235. }};
  236. auto se = detail::scope_exit([&] {
  237. svr.stop();
  238. t.join();
  239. ASSERT_FALSE(svr.is_running());
  240. });
  241. svr.wait_until_ready();
  242. ASSERT_TRUE(svr.is_running());
  243. // Test that Host header is automatically set to "localhost" for Unix socket
  244. // connections
  245. httplib::Client cli{pathname_};
  246. cli.set_address_family(AF_UNIX);
  247. ASSERT_TRUE(cli.is_valid());
  248. const auto &result = cli.Get(pattern_);
  249. ASSERT_TRUE(result) << "error: " << result.error();
  250. const auto &resp = result.value();
  251. EXPECT_EQ(resp.status, StatusCode::OK_200);
  252. EXPECT_EQ(resp.body, content_);
  253. // Verify that Host header was automatically set to "localhost"
  254. EXPECT_EQ(received_host_header, "localhost");
  255. }
  256. #ifndef _WIN32
  257. TEST(SocketStream, wait_writable_UNIX) {
  258. int fds[2];
  259. ASSERT_EQ(0, socketpair(AF_UNIX, SOCK_STREAM, 0, fds));
  260. const auto asSocketStream = [&](socket_t fd,
  261. std::function<bool(Stream &)> func) {
  262. return detail::process_client_socket(
  263. fd, 0, 0, 0, 0, 0, std::chrono::steady_clock::time_point::min(), func);
  264. };
  265. asSocketStream(fds[0], [&](Stream &s0) {
  266. EXPECT_EQ(s0.socket(), fds[0]);
  267. EXPECT_TRUE(s0.wait_writable());
  268. EXPECT_EQ(0, close(fds[1]));
  269. EXPECT_FALSE(s0.wait_writable());
  270. return true;
  271. });
  272. EXPECT_EQ(0, close(fds[0]));
  273. }
  274. TEST(SocketStream, wait_writable_INET) {
  275. sockaddr_in addr;
  276. memset(&addr, 0, sizeof(addr));
  277. addr.sin_family = AF_INET;
  278. addr.sin_port = htons(PORT + 1);
  279. addr.sin_addr.s_addr = htonl(INADDR_LOOPBACK);
  280. int disconnected_svr_sock = -1;
  281. std::thread svr{[&] {
  282. const int s = socket(AF_INET, SOCK_STREAM, 0);
  283. ASSERT_LE(0, s);
  284. ASSERT_EQ(0, ::bind(s, reinterpret_cast<sockaddr *>(&addr), sizeof(addr)));
  285. ASSERT_EQ(0, listen(s, 1));
  286. ASSERT_LE(0, disconnected_svr_sock = accept(s, nullptr, nullptr));
  287. ASSERT_EQ(0, close(s));
  288. }};
  289. std::this_thread::sleep_for(std::chrono::milliseconds(100));
  290. std::thread cli{[&] {
  291. const int s = socket(AF_INET, SOCK_STREAM, 0);
  292. ASSERT_LE(0, s);
  293. ASSERT_EQ(0, connect(s, reinterpret_cast<sockaddr *>(&addr), sizeof(addr)));
  294. ASSERT_EQ(0, close(s));
  295. }};
  296. cli.join();
  297. svr.join();
  298. ASSERT_NE(disconnected_svr_sock, -1);
  299. const auto asSocketStream = [&](socket_t fd,
  300. std::function<bool(Stream &)> func) {
  301. return detail::process_client_socket(
  302. fd, 0, 0, 0, 0, 0, std::chrono::steady_clock::time_point::min(), func);
  303. };
  304. asSocketStream(disconnected_svr_sock, [&](Stream &ss) {
  305. EXPECT_EQ(ss.socket(), disconnected_svr_sock);
  306. EXPECT_FALSE(ss.wait_writable());
  307. return true;
  308. });
  309. ASSERT_EQ(0, close(disconnected_svr_sock));
  310. }
  311. #endif // #ifndef _WIN32
  312. TEST(ClientTest, MoveConstructible) {
  313. EXPECT_FALSE(std::is_copy_constructible<Client>::value);
  314. EXPECT_TRUE(std::is_nothrow_move_constructible<Client>::value);
  315. }
  316. TEST(ClientTest, MoveAssignable) {
  317. EXPECT_FALSE(std::is_copy_assignable<Client>::value);
  318. EXPECT_TRUE(std::is_nothrow_move_assignable<Client>::value);
  319. }
  320. #ifdef _WIN32
  321. TEST(StartupTest, WSAStartup) {
  322. WSADATA wsaData;
  323. int ret = WSAStartup(0x0002, &wsaData);
  324. ASSERT_EQ(0, ret);
  325. }
  326. #endif
  327. TEST(DecodePathTest, PercentCharacter) {
  328. EXPECT_EQ(
  329. decode_path_component(
  330. R"(descrip=Gastos%20%C3%A1%C3%A9%C3%AD%C3%B3%C3%BA%C3%B1%C3%91%206)"),
  331. U8("descrip=Gastos áéíóúñÑ 6"));
  332. }
  333. TEST(DecodePathTest, PercentCharacterNUL) {
  334. string expected;
  335. expected.push_back('x');
  336. expected.push_back('\0');
  337. expected.push_back('x');
  338. EXPECT_EQ(decode_path_component("x%00x"), expected);
  339. }
  340. TEST(EncodeQueryParamTest, ParseUnescapedChararactersTest) {
  341. string unescapedCharacters = "-_.!~*'()";
  342. EXPECT_EQ(httplib::encode_uri_component(unescapedCharacters), "-_.!~*'()");
  343. }
  344. TEST(EncodeQueryParamTest, ParseReservedCharactersTest) {
  345. string reservedCharacters = ";,/?:@&=+$";
  346. EXPECT_EQ(httplib::encode_uri_component(reservedCharacters),
  347. "%3B%2C%2F%3F%3A%40%26%3D%2B%24");
  348. }
  349. TEST(ClientQueryOrder, PreserveOrder) {
  350. // This test reproduces Issue #2259: client may reorder query parameters
  351. // when sending a GET request. The expected behavior is that the client
  352. // preserves the original query string order when the caller supplied it
  353. // as part of the path.
  354. Server svr;
  355. svr.Get("/", [&](const Request &req, Response &res) {
  356. // Echo back the raw target so the test can assert ordering
  357. res.set_content(req.target, "text/plain");
  358. });
  359. std::thread t{[&] { svr.listen(HOST, PORT); }};
  360. auto se = detail::scope_exit([&] {
  361. svr.stop();
  362. t.join();
  363. ASSERT_FALSE(svr.is_running());
  364. });
  365. svr.wait_until_ready();
  366. Client cli(HOST, PORT);
  367. ASSERT_TRUE(cli.is_valid());
  368. const std::string original = "/?z=1&y=2&x=3&c=7&b=8&a=9";
  369. auto res = cli.Get(original);
  370. ASSERT_TRUE(res);
  371. // Expect the echoed target to exactly match the original path (order
  372. // preserved)
  373. EXPECT_EQ(res->body, original);
  374. }
  375. TEST(EncodeQueryParamTest, TestUTF8Characters) {
  376. string chineseCharacters = U8("中国語");
  377. string russianCharacters = U8("дом");
  378. string brazilianCharacters = U8("óculos");
  379. EXPECT_EQ(httplib::encode_uri_component(chineseCharacters),
  380. "%E4%B8%AD%E5%9B%BD%E8%AA%9E");
  381. EXPECT_EQ(httplib::encode_uri_component(russianCharacters),
  382. "%D0%B4%D0%BE%D0%BC");
  383. EXPECT_EQ(httplib::encode_uri_component(brazilianCharacters), "%C3%B3culos");
  384. }
  385. TEST(EncodeUriComponentTest, ParseUnescapedChararactersTest) {
  386. string unescapedCharacters = "-_.!~*'()";
  387. EXPECT_EQ(httplib::encode_uri_component(unescapedCharacters), "-_.!~*'()");
  388. }
  389. TEST(EncodeUriComponentTest, ParseReservedCharactersTest) {
  390. string reservedCharacters = ";,/?:@&=+$";
  391. EXPECT_EQ(httplib::encode_uri_component(reservedCharacters),
  392. "%3B%2C%2F%3F%3A%40%26%3D%2B%24");
  393. }
  394. TEST(EncodeUriComponentTest, TestUTF8Characters) {
  395. string chineseCharacters = U8("中国語");
  396. string russianCharacters = U8("дом");
  397. string brazilianCharacters = U8("óculos");
  398. EXPECT_EQ(httplib::encode_uri_component(chineseCharacters),
  399. "%E4%B8%AD%E5%9B%BD%E8%AA%9E");
  400. EXPECT_EQ(httplib::encode_uri_component(russianCharacters),
  401. "%D0%B4%D0%BE%D0%BC");
  402. EXPECT_EQ(httplib::encode_uri_component(brazilianCharacters), "%C3%B3culos");
  403. }
  404. TEST(EncodeUriComponentTest, TestPathComponentEncoding) {
  405. // Issue #2082 use case: encoding path component with ampersand
  406. string pathWithAmpersand = "Piri Tommy Villiers - on & on";
  407. EXPECT_EQ(httplib::encode_uri_component(pathWithAmpersand),
  408. "Piri%20Tommy%20Villiers%20-%20on%20%26%20on");
  409. }
  410. TEST(EncodeUriTest, ParseUnescapedChararactersTest) {
  411. string unescapedCharacters = "-_.!~*'()";
  412. EXPECT_EQ(httplib::encode_uri(unescapedCharacters), "-_.!~*'()");
  413. }
  414. TEST(EncodeUriTest, ParseReservedCharactersTest) {
  415. string reservedCharacters = ";,/?:@&=+$#";
  416. EXPECT_EQ(httplib::encode_uri(reservedCharacters), ";,/?:@&=+$#");
  417. }
  418. TEST(EncodeUriTest, TestUTF8Characters) {
  419. string chineseCharacters = U8("中国語");
  420. string russianCharacters = U8("дом");
  421. string brazilianCharacters = U8("óculos");
  422. EXPECT_EQ(httplib::encode_uri(chineseCharacters),
  423. "%E4%B8%AD%E5%9B%BD%E8%AA%9E");
  424. EXPECT_EQ(httplib::encode_uri(russianCharacters), "%D0%B4%D0%BE%D0%BC");
  425. EXPECT_EQ(httplib::encode_uri(brazilianCharacters), "%C3%B3culos");
  426. }
  427. TEST(EncodeUriTest, TestCompleteUri) {
  428. string uri =
  429. "https://example.com/path/to/resource?query=value&param=test#fragment";
  430. EXPECT_EQ(
  431. httplib::encode_uri(uri),
  432. "https://example.com/path/to/resource?query=value&param=test#fragment");
  433. }
  434. TEST(EncodeUriTest, TestUriWithSpacesAndSpecialChars) {
  435. string uri =
  436. "https://example.com/path with spaces/file name.html?q=hello world";
  437. EXPECT_EQ(httplib::encode_uri(uri),
  438. "https://example.com/path%20with%20spaces/"
  439. "file%20name.html?q=hello%20world");
  440. }
  441. TEST(DecodeUriComponentTest, ParseEncodedChararactersTest) {
  442. string encodedString = "%3B%2C%2F%3F%3A%40%26%3D%2B%24";
  443. EXPECT_EQ(httplib::decode_uri_component(encodedString), ";,/?:@&=+$");
  444. }
  445. TEST(DecodeUriComponentTest, ParseUnescapedChararactersTest) {
  446. string unescapedCharacters = "-_.!~*'()";
  447. EXPECT_EQ(httplib::decode_uri_component(unescapedCharacters), "-_.!~*'()");
  448. }
  449. TEST(DecodeUriComponentTest, TestUTF8Characters) {
  450. string encodedChinese = "%E4%B8%AD%E5%9B%BD%E8%AA%9E";
  451. string encodedRussian = "%D0%B4%D0%BE%D0%BC";
  452. string encodedBrazilian = "%C3%B3culos";
  453. EXPECT_EQ(httplib::decode_uri_component(encodedChinese), U8("中国語"));
  454. EXPECT_EQ(httplib::decode_uri_component(encodedRussian), U8("дом"));
  455. EXPECT_EQ(httplib::decode_uri_component(encodedBrazilian), U8("óculos"));
  456. }
  457. TEST(DecodeUriComponentTest, TestPathComponentDecoding) {
  458. string encodedPath = "Piri%20Tommy%20Villiers%20-%20on%20%26%20on";
  459. EXPECT_EQ(httplib::decode_uri_component(encodedPath),
  460. "Piri Tommy Villiers - on & on");
  461. }
  462. TEST(DecodeUriTest, ParseEncodedChararactersTest) {
  463. string encodedString = "%20%22%3C%3E%5C%5E%60%7B%7D%7C";
  464. EXPECT_EQ(httplib::decode_uri(encodedString), " \"<>\\^`{}|");
  465. }
  466. TEST(DecodeUriTest, ParseUnescapedChararactersTest) {
  467. string unescapedCharacters = "-_.!~*'();,/?:@&=+$#";
  468. EXPECT_EQ(httplib::decode_uri(unescapedCharacters), "-_.!~*'();,/?:@&=+$#");
  469. }
  470. TEST(DecodeUriTest, TestUTF8Characters) {
  471. string encodedChinese = "%E4%B8%AD%E5%9B%BD%E8%AA%9E";
  472. string encodedRussian = "%D0%B4%D0%BE%D0%BC";
  473. string encodedBrazilian = "%C3%B3culos";
  474. EXPECT_EQ(httplib::decode_uri(encodedChinese), U8("中国語"));
  475. EXPECT_EQ(httplib::decode_uri(encodedRussian), U8("дом"));
  476. EXPECT_EQ(httplib::decode_uri(encodedBrazilian), U8("óculos"));
  477. }
  478. TEST(DecodeUriTest, TestCompleteUri) {
  479. string encodedUri = "https://example.com/path%20with%20spaces/"
  480. "file%20name.html?q=hello%20world";
  481. EXPECT_EQ(
  482. httplib::decode_uri(encodedUri),
  483. "https://example.com/path with spaces/file name.html?q=hello world");
  484. }
  485. TEST(DecodeUriTest, TestRoundTripWithEncodeUri) {
  486. string original =
  487. "https://example.com/path with spaces/file name.html?q=hello world";
  488. string encoded = httplib::encode_uri(original);
  489. string decoded = httplib::decode_uri(encoded);
  490. EXPECT_EQ(decoded, original);
  491. }
  492. TEST(DecodeUriComponentTest, TestRoundTripWithEncodeUriComponent) {
  493. string original = "Piri Tommy Villiers - on & on";
  494. string encoded = httplib::encode_uri_component(original);
  495. string decoded = httplib::decode_uri_component(encoded);
  496. EXPECT_EQ(decoded, original);
  497. }
  498. TEST(TrimTests, TrimStringTests) {
  499. EXPECT_EQ("abc", detail::trim_copy("abc"));
  500. EXPECT_EQ("abc", detail::trim_copy(" abc "));
  501. EXPECT_TRUE(detail::trim_copy("").empty());
  502. }
  503. TEST(ParseAcceptHeaderTest, BasicAcceptParsing) {
  504. // Simple case without quality values
  505. std::vector<std::string> result1;
  506. EXPECT_TRUE(detail::parse_accept_header(
  507. "text/html,application/json,text/plain", result1));
  508. EXPECT_EQ(result1.size(), 3U);
  509. EXPECT_EQ(result1[0], "text/html");
  510. EXPECT_EQ(result1[1], "application/json");
  511. EXPECT_EQ(result1[2], "text/plain");
  512. // With quality values
  513. std::vector<std::string> result2;
  514. EXPECT_TRUE(detail::parse_accept_header(
  515. "text/html;q=0.9,application/json;q=1.0,text/plain;q=0.8", result2));
  516. EXPECT_EQ(result2.size(), 3U);
  517. EXPECT_EQ(result2[0], "application/json"); // highest q value
  518. EXPECT_EQ(result2[1], "text/html");
  519. EXPECT_EQ(result2[2], "text/plain"); // lowest q value
  520. }
  521. TEST(ParseAcceptHeaderTest, MixedQualityValues) {
  522. // Mixed with and without quality values
  523. std::vector<std::string> result;
  524. EXPECT_TRUE(detail::parse_accept_header(
  525. "text/html,application/json;q=0.5,text/plain;q=0.8", result));
  526. EXPECT_EQ(result.size(), 3U);
  527. EXPECT_EQ(result[0], "text/html"); // no q value means 1.0
  528. EXPECT_EQ(result[1], "text/plain"); // q=0.8
  529. EXPECT_EQ(result[2], "application/json"); // q=0.5
  530. }
  531. TEST(ParseAcceptHeaderTest, EdgeCases) {
  532. // Empty header
  533. std::vector<std::string> empty_result;
  534. EXPECT_TRUE(detail::parse_accept_header("", empty_result));
  535. EXPECT_TRUE(empty_result.empty());
  536. // Single type
  537. std::vector<std::string> single_result;
  538. EXPECT_TRUE(detail::parse_accept_header("application/json", single_result));
  539. EXPECT_EQ(single_result.size(), 1U);
  540. EXPECT_EQ(single_result[0], "application/json");
  541. // Wildcard types
  542. std::vector<std::string> wildcard_result;
  543. EXPECT_TRUE(detail::parse_accept_header(
  544. "text/*;q=0.5,*/*;q=0.1,application/json", wildcard_result));
  545. EXPECT_EQ(wildcard_result.size(), 3U);
  546. EXPECT_EQ(wildcard_result[0], "application/json");
  547. EXPECT_EQ(wildcard_result[1], "text/*");
  548. EXPECT_EQ(wildcard_result[2], "*/*");
  549. }
  550. TEST(ParseAcceptHeaderTest, RealWorldExamples) {
  551. // Common browser Accept header
  552. std::vector<std::string> browser_result;
  553. EXPECT_TRUE(
  554. detail::parse_accept_header("text/html,application/xhtml+xml,application/"
  555. "xml;q=0.9,image/webp,image/apng,*/*;q=0.8",
  556. browser_result));
  557. EXPECT_EQ(browser_result.size(), 6U);
  558. EXPECT_EQ(browser_result[0], "text/html"); // q=1.0 (default)
  559. EXPECT_EQ(browser_result[1], "application/xhtml+xml"); // q=1.0 (default)
  560. EXPECT_EQ(browser_result[2], "image/webp"); // q=1.0 (default)
  561. EXPECT_EQ(browser_result[3], "image/apng"); // q=1.0 (default)
  562. EXPECT_EQ(browser_result[4], "application/xml"); // q=0.9
  563. EXPECT_EQ(browser_result[5], "*/*"); // q=0.8
  564. // API client header
  565. std::vector<std::string> api_result;
  566. EXPECT_TRUE(detail::parse_accept_header(
  567. "application/json;q=0.9,application/xml;q=0.8,text/plain;q=0.1",
  568. api_result));
  569. EXPECT_EQ(api_result.size(), 3U);
  570. EXPECT_EQ(api_result[0], "application/json");
  571. EXPECT_EQ(api_result[1], "application/xml");
  572. EXPECT_EQ(api_result[2], "text/plain");
  573. }
  574. TEST(ParseAcceptHeaderTest, SpecialCases) {
  575. // Quality value with 3 decimal places
  576. std::vector<std::string> decimal_result;
  577. EXPECT_TRUE(detail::parse_accept_header(
  578. "text/html;q=0.123,application/json;q=0.456", decimal_result));
  579. EXPECT_EQ(decimal_result.size(), 2U);
  580. EXPECT_EQ(decimal_result[0], "application/json"); // Higher q value
  581. EXPECT_EQ(decimal_result[1], "text/html");
  582. // Zero quality (should still be included but with lowest priority)
  583. std::vector<std::string> zero_q_result;
  584. EXPECT_TRUE(detail::parse_accept_header("text/html;q=0,application/json;q=1",
  585. zero_q_result));
  586. EXPECT_EQ(zero_q_result.size(), 2U);
  587. EXPECT_EQ(zero_q_result[0], "application/json"); // q=1
  588. EXPECT_EQ(zero_q_result[1], "text/html"); // q=0
  589. // No spaces around commas
  590. std::vector<std::string> no_space_result;
  591. EXPECT_TRUE(detail::parse_accept_header(
  592. "text/html;q=0.9,application/json;q=0.8,text/plain;q=0.7",
  593. no_space_result));
  594. EXPECT_EQ(no_space_result.size(), 3U);
  595. EXPECT_EQ(no_space_result[0], "text/html");
  596. EXPECT_EQ(no_space_result[1], "application/json");
  597. EXPECT_EQ(no_space_result[2], "text/plain");
  598. }
  599. TEST(ParseAcceptHeaderTest, InvalidCases) {
  600. std::vector<std::string> result;
  601. // Invalid quality value (> 1.0)
  602. EXPECT_FALSE(
  603. detail::parse_accept_header("text/html;q=1.5,application/json", result));
  604. // Invalid quality value (< 0.0)
  605. EXPECT_FALSE(
  606. detail::parse_accept_header("text/html;q=-0.1,application/json", result));
  607. // Invalid quality value (not a number)
  608. EXPECT_FALSE(detail::parse_accept_header(
  609. "text/html;q=invalid,application/json", result));
  610. // Empty quality value
  611. EXPECT_FALSE(
  612. detail::parse_accept_header("text/html;q=,application/json", result));
  613. // Invalid media type format (no slash and not wildcard)
  614. EXPECT_FALSE(
  615. detail::parse_accept_header("invalidtype,application/json", result));
  616. // Empty media type
  617. result.clear();
  618. EXPECT_FALSE(detail::parse_accept_header(",application/json", result));
  619. // Only commas
  620. result.clear();
  621. EXPECT_FALSE(detail::parse_accept_header(",,,", result));
  622. // Valid cases should still work
  623. EXPECT_TRUE(detail::parse_accept_header("*/*", result));
  624. EXPECT_EQ(result.size(), 1U);
  625. EXPECT_EQ(result[0], "*/*");
  626. EXPECT_TRUE(detail::parse_accept_header("*", result));
  627. EXPECT_EQ(result.size(), 1U);
  628. EXPECT_EQ(result[0], "*");
  629. EXPECT_TRUE(detail::parse_accept_header("text/*", result));
  630. EXPECT_EQ(result.size(), 1U);
  631. EXPECT_EQ(result[0], "text/*");
  632. }
  633. TEST(ParseAcceptHeaderTest, ContentTypesPopulatedAndInvalidHeaderHandling) {
  634. Server svr;
  635. svr.Get("/accept_ok", [&](const Request &req, Response &res) {
  636. EXPECT_EQ(req.accept_content_types.size(), 3U);
  637. EXPECT_EQ(req.accept_content_types[0], "application/json");
  638. EXPECT_EQ(req.accept_content_types[1], "text/html");
  639. EXPECT_EQ(req.accept_content_types[2], "*/*");
  640. res.set_content("ok", "text/plain");
  641. });
  642. svr.Get("/accept_bad_request", [&](const Request & /*req*/, Response &res) {
  643. EXPECT_TRUE(false);
  644. res.set_content("bad request", "text/plain");
  645. });
  646. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  647. auto se = detail::scope_exit([&] {
  648. svr.stop();
  649. listen_thread.join();
  650. ASSERT_FALSE(svr.is_running());
  651. });
  652. svr.wait_until_ready();
  653. Client cli("localhost", PORT);
  654. {
  655. auto res =
  656. cli.Get("/accept_ok",
  657. {{"Accept", "application/json, text/html;q=0.8, */*;q=0.1"}});
  658. ASSERT_TRUE(res);
  659. EXPECT_EQ(StatusCode::OK_200, res->status);
  660. }
  661. {
  662. auto res = cli.Get("/accept_bad_request",
  663. {{"Accept", "text/html;q=abc,application/json"}});
  664. ASSERT_TRUE(res);
  665. EXPECT_EQ(StatusCode::BadRequest_400, res->status);
  666. }
  667. }
  668. TEST(DivideTest, DivideStringTests) {
  669. auto divide = [](const std::string &str, char d) {
  670. std::string lhs;
  671. std::string rhs;
  672. detail::divide(str, d,
  673. [&](const char *lhs_data, std::size_t lhs_size,
  674. const char *rhs_data, std::size_t rhs_size) {
  675. lhs.assign(lhs_data, lhs_size);
  676. rhs.assign(rhs_data, rhs_size);
  677. });
  678. return std::make_pair(std::move(lhs), std::move(rhs));
  679. };
  680. {
  681. const auto res = divide("", '=');
  682. EXPECT_EQ(res.first, "");
  683. EXPECT_EQ(res.second, "");
  684. }
  685. {
  686. const auto res = divide("=", '=');
  687. EXPECT_EQ(res.first, "");
  688. EXPECT_EQ(res.second, "");
  689. }
  690. {
  691. const auto res = divide(" ", '=');
  692. EXPECT_EQ(res.first, " ");
  693. EXPECT_EQ(res.second, "");
  694. }
  695. {
  696. const auto res = divide("a", '=');
  697. EXPECT_EQ(res.first, "a");
  698. EXPECT_EQ(res.second, "");
  699. }
  700. {
  701. const auto res = divide("a=", '=');
  702. EXPECT_EQ(res.first, "a");
  703. EXPECT_EQ(res.second, "");
  704. }
  705. {
  706. const auto res = divide("=b", '=');
  707. EXPECT_EQ(res.first, "");
  708. EXPECT_EQ(res.second, "b");
  709. }
  710. {
  711. const auto res = divide("a=b", '=');
  712. EXPECT_EQ(res.first, "a");
  713. EXPECT_EQ(res.second, "b");
  714. }
  715. {
  716. const auto res = divide("a=b=", '=');
  717. EXPECT_EQ(res.first, "a");
  718. EXPECT_EQ(res.second, "b=");
  719. }
  720. {
  721. const auto res = divide("a=b=c", '=');
  722. EXPECT_EQ(res.first, "a");
  723. EXPECT_EQ(res.second, "b=c");
  724. }
  725. }
  726. TEST(SplitTest, ParseQueryString) {
  727. string s = "key1=val1&key2=val2&key3=val3";
  728. Params dic;
  729. detail::split(s.c_str(), s.c_str() + s.size(), '&',
  730. [&](const char *b, const char *e) {
  731. string key, val;
  732. detail::split(b, e, '=', [&](const char *b2, const char *e2) {
  733. if (key.empty()) {
  734. key.assign(b2, e2);
  735. } else {
  736. val.assign(b2, e2);
  737. }
  738. });
  739. dic.emplace(key, val);
  740. });
  741. EXPECT_EQ("val1", dic.find("key1")->second);
  742. EXPECT_EQ("val2", dic.find("key2")->second);
  743. EXPECT_EQ("val3", dic.find("key3")->second);
  744. }
  745. TEST(SplitTest, ParseInvalidQueryTests) {
  746. {
  747. string s = " ";
  748. Params dict;
  749. detail::parse_query_text(s, dict);
  750. EXPECT_TRUE(dict.empty());
  751. }
  752. {
  753. string s = " = =";
  754. Params dict;
  755. detail::parse_query_text(s, dict);
  756. EXPECT_TRUE(dict.empty());
  757. }
  758. }
  759. TEST(ParseQueryTest, ParseQueryString) {
  760. {
  761. std::string s = "key1=val1&key2=val2&key3=val3";
  762. Params dic;
  763. detail::parse_query_text(s, dic);
  764. EXPECT_EQ("val1", dic.find("key1")->second);
  765. EXPECT_EQ("val2", dic.find("key2")->second);
  766. EXPECT_EQ("val3", dic.find("key3")->second);
  767. }
  768. {
  769. std::string s = "key1&key2=val1&key3=val1=val2&key4=val1=val2=val3";
  770. Params dic;
  771. detail::parse_query_text(s, dic);
  772. EXPECT_EQ("", dic.find("key1")->second);
  773. EXPECT_EQ("val1", dic.find("key2")->second);
  774. EXPECT_EQ("val1=val2", dic.find("key3")->second);
  775. EXPECT_EQ("val1=val2=val3", dic.find("key4")->second);
  776. }
  777. }
  778. TEST(ParamsToQueryTest, ConvertParamsToQuery) {
  779. Params dic;
  780. EXPECT_EQ(detail::params_to_query_str(dic), "");
  781. dic.emplace("key1", "val1");
  782. EXPECT_EQ(detail::params_to_query_str(dic), "key1=val1");
  783. dic.emplace("key2", "val2");
  784. dic.emplace("key3", "val3");
  785. EXPECT_EQ(detail::params_to_query_str(dic), "key1=val1&key2=val2&key3=val3");
  786. }
  787. TEST(ParseMultipartBoundaryTest, DefaultValue) {
  788. string content_type = "multipart/form-data; boundary=something";
  789. string boundary;
  790. auto ret = detail::parse_multipart_boundary(content_type, boundary);
  791. EXPECT_TRUE(ret);
  792. EXPECT_EQ(boundary, "something");
  793. }
  794. TEST(ParseMultipartBoundaryTest, ValueWithQuote) {
  795. string content_type = "multipart/form-data; boundary=\"gc0pJq0M:08jU534c0p\"";
  796. string boundary;
  797. auto ret = detail::parse_multipart_boundary(content_type, boundary);
  798. EXPECT_TRUE(ret);
  799. EXPECT_EQ(boundary, "gc0pJq0M:08jU534c0p");
  800. }
  801. TEST(ParseMultipartBoundaryTest, ValueWithCharset) {
  802. string content_type =
  803. "multipart/mixed; boundary=THIS_STRING_SEPARATES;charset=UTF-8";
  804. string boundary;
  805. auto ret = detail::parse_multipart_boundary(content_type, boundary);
  806. EXPECT_TRUE(ret);
  807. EXPECT_EQ(boundary, "THIS_STRING_SEPARATES");
  808. }
  809. TEST(ParseMultipartBoundaryTest, ValueWithQuotesAndCharset) {
  810. string content_type =
  811. "multipart/mixed; boundary=\"cpp-httplib-multipart-data\"; charset=UTF-8";
  812. string boundary;
  813. auto ret = detail::parse_multipart_boundary(content_type, boundary);
  814. EXPECT_TRUE(ret);
  815. EXPECT_EQ(boundary, "cpp-httplib-multipart-data");
  816. }
  817. TEST(GetHeaderValueTest, DefaultValue) {
  818. Headers headers = {{"Dummy", "Dummy"}};
  819. auto val = detail::get_header_value(headers, "Content-Type", "text/plain", 0);
  820. EXPECT_STREQ("text/plain", val);
  821. }
  822. TEST(GetHeaderValueTest, DefaultValueInt) {
  823. Headers headers = {{"Dummy", "Dummy"}};
  824. auto val = detail::get_header_value_u64(headers, "Content-Length", 100, 0);
  825. EXPECT_EQ(100ull, val);
  826. }
  827. TEST(GetHeaderValueTest, RegularValue) {
  828. Headers headers = {{"Content-Type", "text/html"}, {"Dummy", "Dummy"}};
  829. auto val = detail::get_header_value(headers, "Content-Type", "text/plain", 0);
  830. EXPECT_STREQ("text/html", val);
  831. }
  832. TEST(GetHeaderValueTest, RegularValueWithDifferentCase) {
  833. Headers headers = {{"Content-Type", "text/html"}, {"Dummy", "Dummy"}};
  834. auto val = detail::get_header_value(headers, "content-type", "text/plain", 0);
  835. EXPECT_STREQ("text/html", val);
  836. }
  837. TEST(GetHeaderValueTest, SetContent) {
  838. Response res;
  839. res.set_content("html", "text/html");
  840. EXPECT_EQ("text/html", res.get_header_value("Content-Type"));
  841. res.set_content("text", "text/plain");
  842. EXPECT_EQ(1U, res.get_header_value_count("Content-Type"));
  843. EXPECT_EQ("text/plain", res.get_header_value("Content-Type"));
  844. }
  845. TEST(GetHeaderValueTest, RegularValueInt) {
  846. Headers headers = {{"Content-Length", "100"}, {"Dummy", "Dummy"}};
  847. auto val = detail::get_header_value_u64(headers, "Content-Length", 0, 0);
  848. EXPECT_EQ(100ull, val);
  849. }
  850. TEST(GetHeaderValueTest, RegularInvalidValueInt) {
  851. Headers headers = {{"Content-Length", "x"}};
  852. auto is_invalid_value = false;
  853. auto val = detail::get_header_value_u64(headers, "Content-Length", 0, 0,
  854. is_invalid_value);
  855. EXPECT_EQ(0ull, val);
  856. EXPECT_TRUE(is_invalid_value);
  857. }
  858. TEST(GetHeaderValueTest, Range) {
  859. {
  860. Headers headers = {make_range_header({{1, -1}})};
  861. auto val = detail::get_header_value(headers, "Range", 0, 0);
  862. EXPECT_STREQ("bytes=1-", val);
  863. }
  864. {
  865. Headers headers = {make_range_header({{-1, 1}})};
  866. auto val = detail::get_header_value(headers, "Range", 0, 0);
  867. EXPECT_STREQ("bytes=-1", val);
  868. }
  869. {
  870. Headers headers = {make_range_header({{1, 10}})};
  871. auto val = detail::get_header_value(headers, "Range", 0, 0);
  872. EXPECT_STREQ("bytes=1-10", val);
  873. }
  874. {
  875. Headers headers = {make_range_header({{1, 10}, {100, -1}})};
  876. auto val = detail::get_header_value(headers, "Range", 0, 0);
  877. EXPECT_STREQ("bytes=1-10, 100-", val);
  878. }
  879. {
  880. Headers headers = {make_range_header({{1, 10}, {100, 200}})};
  881. auto val = detail::get_header_value(headers, "Range", 0, 0);
  882. EXPECT_STREQ("bytes=1-10, 100-200", val);
  883. }
  884. {
  885. Headers headers = {make_range_header({{0, 0}, {-1, 1}})};
  886. auto val = detail::get_header_value(headers, "Range", 0, 0);
  887. EXPECT_STREQ("bytes=0-0, -1", val);
  888. }
  889. }
  890. TEST(ParseHeaderValueTest, Range) {
  891. {
  892. Ranges ranges;
  893. auto ret = detail::parse_range_header("bytes=1-", ranges);
  894. EXPECT_TRUE(ret);
  895. EXPECT_EQ(1u, ranges.size());
  896. EXPECT_EQ(1u, ranges[0].first);
  897. EXPECT_EQ(-1, ranges[0].second);
  898. }
  899. {
  900. Ranges ranges;
  901. auto ret = detail::parse_range_header("bytes=-1", ranges);
  902. EXPECT_TRUE(ret);
  903. EXPECT_EQ(1u, ranges.size());
  904. EXPECT_EQ(-1, ranges[0].first);
  905. EXPECT_EQ(1u, ranges[0].second);
  906. }
  907. {
  908. Ranges ranges;
  909. auto ret = detail::parse_range_header("bytes=1-10", ranges);
  910. EXPECT_TRUE(ret);
  911. EXPECT_EQ(1u, ranges.size());
  912. EXPECT_EQ(1u, ranges[0].first);
  913. EXPECT_EQ(10u, ranges[0].second);
  914. }
  915. {
  916. Ranges ranges;
  917. auto ret = detail::parse_range_header("bytes=10-1", ranges);
  918. EXPECT_FALSE(ret);
  919. }
  920. {
  921. Ranges ranges;
  922. auto ret = detail::parse_range_header("bytes=1-10, 100-", ranges);
  923. EXPECT_TRUE(ret);
  924. EXPECT_EQ(2u, ranges.size());
  925. EXPECT_EQ(1u, ranges[0].first);
  926. EXPECT_EQ(10u, ranges[0].second);
  927. EXPECT_EQ(100u, ranges[1].first);
  928. EXPECT_EQ(-1, ranges[1].second);
  929. }
  930. {
  931. Ranges ranges;
  932. auto ret =
  933. detail::parse_range_header("bytes=1-10, 100-200, 300-400", ranges);
  934. EXPECT_TRUE(ret);
  935. EXPECT_EQ(3u, ranges.size());
  936. EXPECT_EQ(1u, ranges[0].first);
  937. EXPECT_EQ(10u, ranges[0].second);
  938. EXPECT_EQ(100u, ranges[1].first);
  939. EXPECT_EQ(200u, ranges[1].second);
  940. EXPECT_EQ(300u, ranges[2].first);
  941. EXPECT_EQ(400u, ranges[2].second);
  942. }
  943. {
  944. Ranges ranges;
  945. EXPECT_FALSE(detail::parse_range_header("bytes", ranges));
  946. EXPECT_FALSE(detail::parse_range_header("bytes=", ranges));
  947. EXPECT_FALSE(detail::parse_range_header("bytes=0", ranges));
  948. EXPECT_FALSE(detail::parse_range_header("bytes=-", ranges));
  949. EXPECT_FALSE(detail::parse_range_header("bytes= ", ranges));
  950. EXPECT_FALSE(detail::parse_range_header("bytes=,", ranges));
  951. EXPECT_FALSE(detail::parse_range_header("bytes=,,", ranges));
  952. EXPECT_FALSE(detail::parse_range_header("bytes=,,,", ranges));
  953. EXPECT_FALSE(detail::parse_range_header("bytes=a-b", ranges));
  954. EXPECT_FALSE(detail::parse_range_header("bytes=1-0", ranges));
  955. EXPECT_FALSE(detail::parse_range_header("bytes=0--1", ranges));
  956. EXPECT_FALSE(detail::parse_range_header("bytes=0- 1", ranges));
  957. EXPECT_FALSE(detail::parse_range_header("bytes=0 -1", ranges));
  958. EXPECT_TRUE(ranges.empty());
  959. }
  960. }
  961. TEST(ParseAcceptEncoding1, AcceptEncoding) {
  962. Request req;
  963. req.set_header("Accept-Encoding", "gzip");
  964. Response res;
  965. res.set_header("Content-Type", "text/plain");
  966. auto ret = detail::encoding_type(req, res);
  967. #ifdef CPPHTTPLIB_ZLIB_SUPPORT
  968. EXPECT_TRUE(ret == detail::EncodingType::Gzip);
  969. #else
  970. EXPECT_TRUE(ret == detail::EncodingType::None);
  971. #endif
  972. }
  973. TEST(ParseAcceptEncoding2, AcceptEncoding) {
  974. Request req;
  975. req.set_header("Accept-Encoding", "gzip, deflate, br, zstd");
  976. Response res;
  977. res.set_header("Content-Type", "text/plain");
  978. auto ret = detail::encoding_type(req, res);
  979. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  980. EXPECT_TRUE(ret == detail::EncodingType::Brotli);
  981. #elif CPPHTTPLIB_ZLIB_SUPPORT
  982. EXPECT_TRUE(ret == detail::EncodingType::Gzip);
  983. #elif CPPHTTPLIB_ZSTD_SUPPORT
  984. EXPECT_TRUE(ret == detail::EncodingType::Zstd);
  985. #else
  986. EXPECT_TRUE(ret == detail::EncodingType::None);
  987. #endif
  988. }
  989. TEST(ParseAcceptEncoding3, AcceptEncoding) {
  990. Request req;
  991. req.set_header("Accept-Encoding",
  992. "br;q=1.0, gzip;q=0.8, zstd;q=0.8, *;q=0.1");
  993. Response res;
  994. res.set_header("Content-Type", "text/plain");
  995. auto ret = detail::encoding_type(req, res);
  996. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  997. EXPECT_TRUE(ret == detail::EncodingType::Brotli);
  998. #elif CPPHTTPLIB_ZLIB_SUPPORT
  999. EXPECT_TRUE(ret == detail::EncodingType::Gzip);
  1000. #elif CPPHTTPLIB_ZSTD_SUPPORT
  1001. EXPECT_TRUE(ret == detail::EncodingType::Zstd);
  1002. #else
  1003. EXPECT_TRUE(ret == detail::EncodingType::None);
  1004. #endif
  1005. }
  1006. TEST(BufferStreamTest, read) {
  1007. detail::BufferStream strm1;
  1008. Stream &strm = strm1;
  1009. EXPECT_EQ(5, strm.write("hello"));
  1010. char buf[512];
  1011. EXPECT_EQ(2, strm.read(buf, 2));
  1012. EXPECT_EQ('h', buf[0]);
  1013. EXPECT_EQ('e', buf[1]);
  1014. EXPECT_EQ(2, strm.read(buf, 2));
  1015. EXPECT_EQ('l', buf[0]);
  1016. EXPECT_EQ('l', buf[1]);
  1017. EXPECT_EQ(1, strm.read(buf, 1));
  1018. EXPECT_EQ('o', buf[0]);
  1019. EXPECT_EQ(0, strm.read(buf, 1));
  1020. }
  1021. TEST(HostnameToIPConversionTest, HTTPWatch_Online) {
  1022. auto host = "www.httpwatch.com";
  1023. auto ip = hosted_at(host);
  1024. EXPECT_EQ("23.96.13.243", ip);
  1025. std::vector<std::string> addrs;
  1026. hosted_at(host, addrs);
  1027. EXPECT_EQ(1u, addrs.size());
  1028. }
  1029. #if 0 // It depends on each test environment...
  1030. TEST(HostnameToIPConversionTest, YouTube_Online) {
  1031. auto host = "www.youtube.com";
  1032. std::vector<std::string> addrs;
  1033. hosted_at(host, addrs);
  1034. EXPECT_EQ(20u, addrs.size());
  1035. auto it = std::find(addrs.begin(), addrs.end(), "2607:f8b0:4006:809::200e");
  1036. EXPECT_TRUE(it != addrs.end());
  1037. }
  1038. #endif
  1039. class ChunkedEncodingTest : public ::testing::Test {
  1040. protected:
  1041. ChunkedEncodingTest()
  1042. : cli_(HOST, PORT)
  1043. #ifdef CPPHTTPLIB_SSL_ENABLED
  1044. ,
  1045. svr_(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE)
  1046. #endif
  1047. {
  1048. cli_.set_connection_timeout(2);
  1049. #ifdef CPPHTTPLIB_SSL_ENABLED
  1050. cli_.enable_server_certificate_verification(false);
  1051. #endif
  1052. }
  1053. virtual void SetUp() {
  1054. read_file("./image.jpg", image_data_);
  1055. svr_.Get("/hi", [&](const Request & /*req*/, Response &res) {
  1056. res.set_content("Hello World!", "text/plain");
  1057. });
  1058. svr_.Get(
  1059. "/chunked", [this](const httplib::Request &, httplib::Response &res) {
  1060. res.set_chunked_content_provider(
  1061. "image/jpeg", [this](size_t offset, httplib::DataSink &sink) {
  1062. size_t remaining = image_data_.size() - offset;
  1063. if (remaining == 0) {
  1064. sink.done();
  1065. } else {
  1066. constexpr size_t CHUNK_SIZE = 1024;
  1067. size_t send_size = std::min(CHUNK_SIZE, remaining);
  1068. sink.write(&image_data_[offset], send_size);
  1069. std::this_thread::sleep_for(std::chrono::milliseconds(10));
  1070. }
  1071. return true;
  1072. });
  1073. });
  1074. t_ = thread([&]() { ASSERT_TRUE(svr_.listen(HOST, PORT)); });
  1075. svr_.wait_until_ready();
  1076. }
  1077. virtual void TearDown() {
  1078. svr_.stop();
  1079. if (!request_threads_.empty()) {
  1080. std::this_thread::sleep_for(std::chrono::seconds(1));
  1081. for (auto &t : request_threads_) {
  1082. t.join();
  1083. }
  1084. }
  1085. t_.join();
  1086. }
  1087. #ifdef CPPHTTPLIB_SSL_ENABLED
  1088. SSLClient cli_;
  1089. SSLServer svr_;
  1090. #else
  1091. Client cli_;
  1092. Server svr_;
  1093. #endif
  1094. thread t_;
  1095. std::vector<thread> request_threads_;
  1096. std::string image_data_;
  1097. };
  1098. TEST_F(ChunkedEncodingTest, NormalGet) {
  1099. auto res = cli_.Get("/chunked");
  1100. ASSERT_TRUE(res);
  1101. std::string out;
  1102. read_file("./image.jpg", out);
  1103. EXPECT_EQ(StatusCode::OK_200, res->status);
  1104. EXPECT_EQ(out, res->body);
  1105. }
  1106. TEST_F(ChunkedEncodingTest, WithContentReceiver) {
  1107. std::string body;
  1108. auto res = cli_.Get("/chunked", [&](const char *data, size_t data_length) {
  1109. body.append(data, data_length);
  1110. return true;
  1111. });
  1112. ASSERT_TRUE(res);
  1113. std::string out;
  1114. read_file("./image.jpg", out);
  1115. EXPECT_EQ(StatusCode::OK_200, res->status);
  1116. EXPECT_EQ(out, body);
  1117. }
  1118. TEST_F(ChunkedEncodingTest, WithResponseHandlerAndContentReceiver) {
  1119. std::string body;
  1120. auto res = cli_.Get(
  1121. "/chunked",
  1122. [&](const Response &response) {
  1123. EXPECT_EQ(StatusCode::OK_200, response.status);
  1124. return true;
  1125. },
  1126. [&](const char *data, size_t data_length) {
  1127. body.append(data, data_length);
  1128. return true;
  1129. });
  1130. ASSERT_TRUE(res);
  1131. std::string out;
  1132. read_file("./image.jpg", out);
  1133. EXPECT_EQ(StatusCode::OK_200, res->status);
  1134. EXPECT_EQ(out, body);
  1135. }
  1136. TEST(RangeTest, FromHTTPBin_Online) {
  1137. #ifdef CPPHTTPLIB_DEFAULT_HTTPBIN
  1138. auto host = "httpcan.org";
  1139. auto path = std::string{"/range/32"};
  1140. #else
  1141. auto host = "nghttp2.org";
  1142. auto path = std::string{"/httpbin/range/32"};
  1143. #endif
  1144. #ifdef CPPHTTPLIB_SSL_ENABLED
  1145. auto port = 443;
  1146. SSLClient cli(host, port);
  1147. #else
  1148. auto port = 80;
  1149. Client cli(host, port);
  1150. #endif
  1151. cli.set_connection_timeout(5);
  1152. {
  1153. auto res = cli.Get(path);
  1154. ASSERT_TRUE(res);
  1155. EXPECT_EQ("abcdefghijklmnopqrstuvwxyzabcdef", res->body);
  1156. EXPECT_EQ(StatusCode::OK_200, res->status);
  1157. }
  1158. {
  1159. Headers headers = {make_range_header({{1, -1}})};
  1160. auto res = cli.Get(path, headers);
  1161. ASSERT_TRUE(res);
  1162. EXPECT_EQ("bcdefghijklmnopqrstuvwxyzabcdef", res->body);
  1163. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  1164. }
  1165. {
  1166. Headers headers = {make_range_header({{1, 10}})};
  1167. auto res = cli.Get(path, headers);
  1168. ASSERT_TRUE(res);
  1169. EXPECT_EQ("bcdefghijk", res->body);
  1170. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  1171. }
  1172. {
  1173. Headers headers = {make_range_header({{0, 31}})};
  1174. auto res = cli.Get(path, headers);
  1175. ASSERT_TRUE(res);
  1176. EXPECT_EQ("abcdefghijklmnopqrstuvwxyzabcdef", res->body);
  1177. EXPECT_EQ(StatusCode::OK_200, res->status);
  1178. }
  1179. {
  1180. Headers headers = {make_range_header({{0, -1}})};
  1181. auto res = cli.Get(path, headers);
  1182. ASSERT_TRUE(res);
  1183. EXPECT_EQ("abcdefghijklmnopqrstuvwxyzabcdef", res->body);
  1184. EXPECT_EQ(StatusCode::OK_200, res->status);
  1185. }
  1186. {
  1187. Headers headers = {make_range_header({{0, 32}})};
  1188. auto res = cli.Get(path, headers);
  1189. ASSERT_TRUE(res);
  1190. EXPECT_EQ(StatusCode::RangeNotSatisfiable_416, res->status);
  1191. }
  1192. }
  1193. TEST(GetAddrInfoDanglingRefTest, LongTimeout) {
  1194. auto host = "unresolvableaddress.local";
  1195. auto path = std::string{"/"};
  1196. #ifdef CPPHTTPLIB_SSL_ENABLED
  1197. auto port = 443;
  1198. SSLClient cli(host, port);
  1199. #else
  1200. auto port = 80;
  1201. Client cli(host, port);
  1202. #endif
  1203. cli.set_connection_timeout(1);
  1204. {
  1205. auto res = cli.Get(path);
  1206. ASSERT_FALSE(res);
  1207. }
  1208. std::this_thread::sleep_for(std::chrono::seconds(8));
  1209. }
  1210. TEST(ConnectionErrorTest, InvalidHost) {
  1211. auto host = "-abcde.com";
  1212. #ifdef CPPHTTPLIB_SSL_ENABLED
  1213. auto port = 443;
  1214. SSLClient cli(host, port);
  1215. #else
  1216. auto port = 80;
  1217. Client cli(host, port);
  1218. #endif
  1219. cli.set_connection_timeout(std::chrono::seconds(2));
  1220. auto res = cli.Get("/");
  1221. ASSERT_TRUE(!res);
  1222. EXPECT_EQ(Error::Connection, res.error());
  1223. }
  1224. TEST(ConnectionErrorTest, InvalidHost2) {
  1225. auto host = "httpcan.org/";
  1226. #ifdef CPPHTTPLIB_SSL_ENABLED
  1227. SSLClient cli(host);
  1228. #else
  1229. Client cli(host);
  1230. #endif
  1231. cli.set_connection_timeout(std::chrono::seconds(2));
  1232. auto res = cli.Get("/");
  1233. ASSERT_TRUE(!res);
  1234. EXPECT_EQ(Error::Connection, res.error());
  1235. }
  1236. TEST(ConnectionErrorTest, InvalidHostCheckResultErrorToString) {
  1237. auto host = "httpcan.org/";
  1238. #ifdef CPPHTTPLIB_SSL_ENABLED
  1239. SSLClient cli(host);
  1240. #else
  1241. Client cli(host);
  1242. #endif
  1243. cli.set_connection_timeout(std::chrono::seconds(2));
  1244. auto res = cli.Get("/");
  1245. ASSERT_TRUE(!res);
  1246. stringstream s;
  1247. s << "error code: " << res.error();
  1248. EXPECT_EQ("error code: Could not establish connection (2)", s.str());
  1249. }
  1250. TEST(ConnectionErrorTest, InvalidPort) {
  1251. auto host = "localhost";
  1252. auto port = 44380;
  1253. #ifdef CPPHTTPLIB_SSL_ENABLED
  1254. SSLClient cli(host, port);
  1255. #else
  1256. Client cli(host, port);
  1257. #endif
  1258. cli.set_connection_timeout(std::chrono::seconds(2));
  1259. auto res = cli.Get("/");
  1260. ASSERT_TRUE(!res);
  1261. EXPECT_TRUE(Error::Connection == res.error() ||
  1262. Error::ConnectionTimeout == res.error());
  1263. }
  1264. TEST(ConnectionErrorTest, Timeout_Online) {
  1265. auto host = "google.com";
  1266. #ifdef CPPHTTPLIB_SSL_ENABLED
  1267. auto port = 44380;
  1268. SSLClient cli(host, port);
  1269. #else
  1270. auto port = 8080;
  1271. Client cli(host, port);
  1272. #endif
  1273. cli.set_connection_timeout(std::chrono::seconds(2));
  1274. // only probe one address type so that the error reason
  1275. // correlates to the timed-out IPv4, not the unsupported
  1276. // IPv6 connection attempt
  1277. cli.set_address_family(AF_INET);
  1278. auto res = cli.Get("/");
  1279. ASSERT_TRUE(!res);
  1280. EXPECT_EQ(Error::ConnectionTimeout, res.error());
  1281. }
  1282. TEST(CancelTest, NoCancel_Online) {
  1283. #ifdef CPPHTTPLIB_DEFAULT_HTTPBIN
  1284. auto host = "httpcan.org";
  1285. auto path = std::string{"/range/32"};
  1286. #else
  1287. auto host = "nghttp2.org";
  1288. auto path = std::string{"/httpbin/range/32"};
  1289. #endif
  1290. #ifdef CPPHTTPLIB_SSL_ENABLED
  1291. auto port = 443;
  1292. SSLClient cli(host, port);
  1293. #else
  1294. auto port = 80;
  1295. Client cli(host, port);
  1296. #endif
  1297. cli.set_connection_timeout(std::chrono::seconds(5));
  1298. auto res = cli.Get(path, [](uint64_t, uint64_t) { return true; });
  1299. ASSERT_TRUE(res);
  1300. EXPECT_EQ("abcdefghijklmnopqrstuvwxyzabcdef", res->body);
  1301. EXPECT_EQ(StatusCode::OK_200, res->status);
  1302. }
  1303. TEST(CancelTest, WithCancelSmallPayload_Online) {
  1304. #ifdef CPPHTTPLIB_DEFAULT_HTTPBIN
  1305. auto host = "httpcan.org";
  1306. auto path = std::string{"/range/32"};
  1307. #else
  1308. auto host = "nghttp2.org";
  1309. auto path = std::string{"/httpbin/range/32"};
  1310. #endif
  1311. #ifdef CPPHTTPLIB_SSL_ENABLED
  1312. auto port = 443;
  1313. SSLClient cli(host, port);
  1314. #else
  1315. auto port = 80;
  1316. Client cli(host, port);
  1317. #endif
  1318. auto res = cli.Get(path, [](uint64_t, uint64_t) { return false; });
  1319. cli.set_connection_timeout(std::chrono::seconds(5));
  1320. ASSERT_TRUE(!res);
  1321. EXPECT_EQ(Error::Canceled, res.error());
  1322. }
  1323. TEST(CancelTest, WithCancelLargePayload_Online) {
  1324. #ifdef CPPHTTPLIB_DEFAULT_HTTPBIN
  1325. auto host = "httpcan.org";
  1326. auto path = std::string{"/range/65536"};
  1327. #else
  1328. auto host = "nghttp2.org";
  1329. auto path = std::string{"/httpbin/range/65536"};
  1330. #endif
  1331. #ifdef CPPHTTPLIB_SSL_ENABLED
  1332. auto port = 443;
  1333. SSLClient cli(host, port);
  1334. #else
  1335. auto port = 80;
  1336. Client cli(host, port);
  1337. #endif
  1338. cli.set_connection_timeout(std::chrono::seconds(5));
  1339. uint32_t count = 0;
  1340. auto res =
  1341. cli.Get(path, [&count](uint64_t, uint64_t) { return (count++ == 0); });
  1342. ASSERT_TRUE(!res);
  1343. EXPECT_EQ(Error::Canceled, res.error());
  1344. }
  1345. TEST(CancelTest, NoCancelPost) {
  1346. Server svr;
  1347. svr.Post("/", [&](const Request & /*req*/, Response &res) {
  1348. res.set_content("Hello World!", "text/plain");
  1349. });
  1350. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  1351. auto se = detail::scope_exit([&] {
  1352. svr.stop();
  1353. thread.join();
  1354. ASSERT_FALSE(svr.is_running());
  1355. });
  1356. svr.wait_until_ready();
  1357. Client cli(HOST, PORT);
  1358. cli.set_connection_timeout(std::chrono::seconds(5));
  1359. auto res =
  1360. cli.Post("/", Headers(), JSON_DATA.data(), JSON_DATA.size(),
  1361. "application/json", [](uint64_t, uint64_t) { return true; });
  1362. ASSERT_TRUE(res);
  1363. EXPECT_EQ("Hello World!", res->body);
  1364. EXPECT_EQ(StatusCode::OK_200, res->status);
  1365. }
  1366. TEST(CancelTest, WithCancelSmallPayloadPost) {
  1367. Server svr;
  1368. svr.Post("/", [&](const Request & /*req*/, Response &res) {
  1369. res.set_content("Hello World!", "text/plain");
  1370. });
  1371. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  1372. auto se = detail::scope_exit([&] {
  1373. svr.stop();
  1374. thread.join();
  1375. ASSERT_FALSE(svr.is_running());
  1376. });
  1377. svr.wait_until_ready();
  1378. Client cli(HOST, PORT);
  1379. cli.set_connection_timeout(std::chrono::seconds(5));
  1380. auto res =
  1381. cli.Post("/", Headers(), JSON_DATA.data(), JSON_DATA.size(),
  1382. "application/json", [](uint64_t, uint64_t) { return false; });
  1383. ASSERT_TRUE(!res);
  1384. EXPECT_EQ(Error::Canceled, res.error());
  1385. }
  1386. TEST(CancelTest, WithCancelLargePayloadPost) {
  1387. Server svr;
  1388. svr.set_payload_max_length(200 * 1024 * 1024);
  1389. svr.Post("/", [&](const Request & /*req*/, Response &res) {
  1390. res.set_content(LARGE_DATA, "text/plain");
  1391. });
  1392. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  1393. auto se = detail::scope_exit([&] {
  1394. svr.stop();
  1395. thread.join();
  1396. ASSERT_FALSE(svr.is_running());
  1397. });
  1398. svr.wait_until_ready();
  1399. Client cli(HOST, PORT);
  1400. cli.set_payload_max_length(200 * 1024 * 1024);
  1401. cli.set_connection_timeout(std::chrono::seconds(5));
  1402. auto res =
  1403. cli.Post("/", Headers(), JSON_DATA.data(), JSON_DATA.size(),
  1404. "application/json", [](uint64_t, uint64_t) { return false; });
  1405. ASSERT_TRUE(!res);
  1406. EXPECT_EQ(Error::Canceled, res.error());
  1407. }
  1408. TEST(CancelTest, NoCancelPut) {
  1409. Server svr;
  1410. svr.Put("/", [&](const Request & /*req*/, Response &res) {
  1411. res.set_content("Hello World!", "text/plain");
  1412. });
  1413. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  1414. auto se = detail::scope_exit([&] {
  1415. svr.stop();
  1416. thread.join();
  1417. ASSERT_FALSE(svr.is_running());
  1418. });
  1419. svr.wait_until_ready();
  1420. Client cli(HOST, PORT);
  1421. cli.set_connection_timeout(std::chrono::seconds(5));
  1422. auto res =
  1423. cli.Put("/", Headers(), JSON_DATA.data(), JSON_DATA.size(),
  1424. "application/json", [](uint64_t, uint64_t) { return true; });
  1425. ASSERT_TRUE(res);
  1426. EXPECT_EQ("Hello World!", res->body);
  1427. EXPECT_EQ(StatusCode::OK_200, res->status);
  1428. }
  1429. TEST(CancelTest, WithCancelSmallPayloadPut) {
  1430. Server svr;
  1431. svr.Put("/", [&](const Request & /*req*/, Response &res) {
  1432. res.set_content("Hello World!", "text/plain");
  1433. });
  1434. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  1435. auto se = detail::scope_exit([&] {
  1436. svr.stop();
  1437. thread.join();
  1438. ASSERT_FALSE(svr.is_running());
  1439. });
  1440. svr.wait_until_ready();
  1441. Client cli(HOST, PORT);
  1442. cli.set_connection_timeout(std::chrono::seconds(5));
  1443. auto res =
  1444. cli.Put("/", Headers(), JSON_DATA.data(), JSON_DATA.size(),
  1445. "application/json", [](uint64_t, uint64_t) { return false; });
  1446. ASSERT_TRUE(!res);
  1447. EXPECT_EQ(Error::Canceled, res.error());
  1448. }
  1449. TEST(CancelTest, WithCancelLargePayloadPut) {
  1450. Server svr;
  1451. svr.set_payload_max_length(200 * 1024 * 1024);
  1452. svr.Put("/", [&](const Request & /*req*/, Response &res) {
  1453. res.set_content(LARGE_DATA, "text/plain");
  1454. });
  1455. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  1456. auto se = detail::scope_exit([&] {
  1457. svr.stop();
  1458. thread.join();
  1459. ASSERT_FALSE(svr.is_running());
  1460. });
  1461. svr.wait_until_ready();
  1462. Client cli(HOST, PORT);
  1463. cli.set_payload_max_length(200 * 1024 * 1024);
  1464. cli.set_connection_timeout(std::chrono::seconds(5));
  1465. auto res =
  1466. cli.Put("/", Headers(), JSON_DATA.data(), JSON_DATA.size(),
  1467. "application/json", [](uint64_t, uint64_t) { return false; });
  1468. ASSERT_TRUE(!res);
  1469. EXPECT_EQ(Error::Canceled, res.error());
  1470. }
  1471. TEST(CancelTest, NoCancelPatch) {
  1472. Server svr;
  1473. svr.Patch("/", [&](const Request & /*req*/, Response &res) {
  1474. res.set_content("Hello World!", "text/plain");
  1475. });
  1476. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  1477. auto se = detail::scope_exit([&] {
  1478. svr.stop();
  1479. thread.join();
  1480. ASSERT_FALSE(svr.is_running());
  1481. });
  1482. svr.wait_until_ready();
  1483. Client cli(HOST, PORT);
  1484. cli.set_connection_timeout(std::chrono::seconds(5));
  1485. auto res =
  1486. cli.Patch("/", Headers(), JSON_DATA.data(), JSON_DATA.size(),
  1487. "application/json", [](uint64_t, uint64_t) { return true; });
  1488. ASSERT_TRUE(res);
  1489. EXPECT_EQ("Hello World!", res->body);
  1490. EXPECT_EQ(StatusCode::OK_200, res->status);
  1491. }
  1492. TEST(CancelTest, WithCancelSmallPayloadPatch) {
  1493. Server svr;
  1494. svr.Patch("/", [&](const Request & /*req*/, Response &res) {
  1495. res.set_content("Hello World!", "text/plain");
  1496. });
  1497. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  1498. auto se = detail::scope_exit([&] {
  1499. svr.stop();
  1500. thread.join();
  1501. ASSERT_FALSE(svr.is_running());
  1502. });
  1503. svr.wait_until_ready();
  1504. Client cli(HOST, PORT);
  1505. cli.set_connection_timeout(std::chrono::seconds(5));
  1506. auto res =
  1507. cli.Patch("/", Headers(), JSON_DATA.data(), JSON_DATA.size(),
  1508. "application/json", [](uint64_t, uint64_t) { return false; });
  1509. ASSERT_TRUE(!res);
  1510. EXPECT_EQ(Error::Canceled, res.error());
  1511. }
  1512. TEST(CancelTest, WithCancelLargePayloadPatch) {
  1513. Server svr;
  1514. svr.set_payload_max_length(200 * 1024 * 1024);
  1515. svr.Patch("/", [&](const Request & /*req*/, Response &res) {
  1516. res.set_content(LARGE_DATA, "text/plain");
  1517. });
  1518. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  1519. auto se = detail::scope_exit([&] {
  1520. svr.stop();
  1521. thread.join();
  1522. ASSERT_FALSE(svr.is_running());
  1523. });
  1524. svr.wait_until_ready();
  1525. Client cli(HOST, PORT);
  1526. cli.set_payload_max_length(200 * 1024 * 1024);
  1527. cli.set_connection_timeout(std::chrono::seconds(5));
  1528. auto res =
  1529. cli.Patch("/", Headers(), JSON_DATA.data(), JSON_DATA.size(),
  1530. "application/json", [](uint64_t, uint64_t) { return false; });
  1531. ASSERT_TRUE(!res);
  1532. EXPECT_EQ(Error::Canceled, res.error());
  1533. }
  1534. TEST(CancelTest, NoCancelDelete) {
  1535. Server svr;
  1536. svr.Delete("/", [&](const Request & /*req*/, Response &res) {
  1537. res.set_content("Hello World!", "text/plain");
  1538. });
  1539. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  1540. auto se = detail::scope_exit([&] {
  1541. svr.stop();
  1542. thread.join();
  1543. ASSERT_FALSE(svr.is_running());
  1544. });
  1545. svr.wait_until_ready();
  1546. Client cli(HOST, PORT);
  1547. cli.set_connection_timeout(std::chrono::seconds(5));
  1548. auto res =
  1549. cli.Delete("/", Headers(), JSON_DATA.data(), JSON_DATA.size(),
  1550. "application/json", [](uint64_t, uint64_t) { return true; });
  1551. ASSERT_TRUE(res);
  1552. EXPECT_EQ("Hello World!", res->body);
  1553. EXPECT_EQ(StatusCode::OK_200, res->status);
  1554. }
  1555. TEST(CancelTest, WithCancelSmallPayloadDelete) {
  1556. Server svr;
  1557. svr.Delete("/", [&](const Request & /*req*/, Response &res) {
  1558. res.set_content("Hello World!", "text/plain");
  1559. });
  1560. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  1561. auto se = detail::scope_exit([&] {
  1562. svr.stop();
  1563. thread.join();
  1564. ASSERT_FALSE(svr.is_running());
  1565. });
  1566. svr.wait_until_ready();
  1567. Client cli(HOST, PORT);
  1568. cli.set_connection_timeout(std::chrono::seconds(5));
  1569. auto res =
  1570. cli.Delete("/", Headers(), JSON_DATA.data(), JSON_DATA.size(),
  1571. "application/json", [](uint64_t, uint64_t) { return false; });
  1572. ASSERT_TRUE(!res);
  1573. EXPECT_EQ(Error::Canceled, res.error());
  1574. }
  1575. TEST(CancelTest, WithCancelLargePayloadDelete) {
  1576. Server svr;
  1577. svr.set_payload_max_length(200 * 1024 * 1024);
  1578. svr.Delete("/", [&](const Request & /*req*/, Response &res) {
  1579. res.set_content(LARGE_DATA, "text/plain");
  1580. });
  1581. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  1582. auto se = detail::scope_exit([&] {
  1583. svr.stop();
  1584. thread.join();
  1585. ASSERT_FALSE(svr.is_running());
  1586. });
  1587. svr.wait_until_ready();
  1588. Client cli(HOST, PORT);
  1589. cli.set_payload_max_length(200 * 1024 * 1024);
  1590. cli.set_connection_timeout(std::chrono::seconds(5));
  1591. auto res =
  1592. cli.Delete("/", Headers(), JSON_DATA.data(), JSON_DATA.size(),
  1593. "application/json", [](uint64_t, uint64_t) { return false; });
  1594. ASSERT_TRUE(!res);
  1595. EXPECT_EQ(Error::Canceled, res.error());
  1596. }
  1597. static std::string remove_whitespace(const std::string &input) {
  1598. std::string output;
  1599. output.reserve(input.size());
  1600. std::copy_if(input.begin(), input.end(), std::back_inserter(output),
  1601. [](unsigned char c) { return !std::isspace(c); });
  1602. return output;
  1603. }
  1604. TEST(BaseAuthTest, FromHTTPWatch_Online) {
  1605. #ifdef CPPHTTPLIB_DEFAULT_HTTPBIN
  1606. auto host = "httpcan.org";
  1607. auto path = std::string{"/basic-auth/hello/world"};
  1608. #else
  1609. auto host = "nghttp2.org";
  1610. auto path = std::string{"/httpbin/basic-auth/hello/world"};
  1611. #endif
  1612. #ifdef CPPHTTPLIB_SSL_ENABLED
  1613. auto port = 443;
  1614. SSLClient cli(host, port);
  1615. #else
  1616. auto port = 80;
  1617. Client cli(host, port);
  1618. #endif
  1619. {
  1620. auto res = cli.Get(path);
  1621. ASSERT_TRUE(res);
  1622. EXPECT_EQ(StatusCode::Unauthorized_401, res->status);
  1623. }
  1624. {
  1625. auto res =
  1626. cli.Get(path, {make_basic_authentication_header("hello", "world")});
  1627. ASSERT_TRUE(res);
  1628. EXPECT_EQ("{\"authenticated\":true,\"user\":\"hello\"}",
  1629. remove_whitespace(res->body));
  1630. EXPECT_EQ(StatusCode::OK_200, res->status);
  1631. }
  1632. {
  1633. cli.set_basic_auth("hello", "world");
  1634. auto res = cli.Get(path);
  1635. ASSERT_TRUE(res);
  1636. EXPECT_EQ("{\"authenticated\":true,\"user\":\"hello\"}",
  1637. remove_whitespace(res->body));
  1638. EXPECT_EQ(StatusCode::OK_200, res->status);
  1639. }
  1640. {
  1641. cli.set_basic_auth("hello", "bad");
  1642. auto res = cli.Get(path);
  1643. ASSERT_TRUE(res);
  1644. EXPECT_EQ(StatusCode::Unauthorized_401, res->status);
  1645. }
  1646. {
  1647. cli.set_basic_auth("bad", "world");
  1648. auto res = cli.Get(path);
  1649. ASSERT_TRUE(res);
  1650. EXPECT_EQ(StatusCode::Unauthorized_401, res->status);
  1651. }
  1652. }
  1653. #ifdef CPPHTTPLIB_SSL_ENABLED
  1654. TEST(DigestAuthTest, FromHTTPWatch_Online) {
  1655. #ifdef CPPHTTPLIB_DEFAULT_HTTPBIN
  1656. auto host = "httpcan.org";
  1657. auto unauth_path = std::string{"/digest-auth/auth/hello/world"};
  1658. auto paths = std::vector<std::string>{
  1659. "/digest-auth/auth/hello/world/MD5",
  1660. "/digest-auth/auth/hello/world/SHA-256",
  1661. "/digest-auth/auth/hello/world/SHA-512",
  1662. };
  1663. #else
  1664. auto host = "nghttp2.org";
  1665. auto unauth_path = std::string{"/httpbin/digest-auth/auth/hello/world"};
  1666. auto paths = std::vector<std::string>{
  1667. "/httpbin/digest-auth/auth/hello/world/MD5",
  1668. "/httpbin/digest-auth/auth/hello/world/SHA-256",
  1669. "/httpbin/digest-auth/auth/hello/world/SHA-512",
  1670. "/httpbin/digest-auth/auth-int/hello/world/MD5",
  1671. };
  1672. #endif
  1673. auto port = 443;
  1674. SSLClient cli(host, port);
  1675. {
  1676. auto res = cli.Get(unauth_path);
  1677. ASSERT_TRUE(res);
  1678. EXPECT_EQ(StatusCode::Unauthorized_401, res->status);
  1679. }
  1680. {
  1681. cli.set_digest_auth("hello", "world");
  1682. for (const auto &path : paths) {
  1683. auto res = cli.Get(path.c_str());
  1684. ASSERT_TRUE(res);
  1685. #ifdef CPPHTTPLIB_DEFAULT_HTTPBIN
  1686. std::string algo(path.substr(path.rfind('/') + 1));
  1687. EXPECT_EQ(
  1688. remove_whitespace("{\"algorithm\":\"" + algo +
  1689. "\",\"authenticated\":true,\"user\":\"hello\"}\n"),
  1690. remove_whitespace(res->body));
  1691. #else
  1692. EXPECT_EQ("{\"authenticated\":true,\"user\":\"hello\"}",
  1693. remove_whitespace(res->body));
  1694. #endif
  1695. EXPECT_EQ(StatusCode::OK_200, res->status);
  1696. }
  1697. #ifdef CPPHTTPLIB_DEFAULT_HTTPBIN
  1698. cli.set_digest_auth("hello", "bad");
  1699. for (const auto &path : paths) {
  1700. auto res = cli.Get(path.c_str());
  1701. ASSERT_TRUE(res);
  1702. EXPECT_EQ(StatusCode::Unauthorized_401, res->status);
  1703. }
  1704. #endif
  1705. }
  1706. }
  1707. #endif
  1708. TEST(SpecifyServerIPAddressTest, AnotherHostname_Online) {
  1709. auto host = "google.com";
  1710. auto another_host = "example.com";
  1711. auto wrong_ip = "0.0.0.0";
  1712. #ifdef CPPHTTPLIB_SSL_ENABLED
  1713. SSLClient cli(host);
  1714. #else
  1715. Client cli(host);
  1716. #endif
  1717. cli.set_hostname_addr_map({{another_host, wrong_ip}});
  1718. auto res = cli.Get("/");
  1719. ASSERT_TRUE(res);
  1720. ASSERT_EQ(StatusCode::MovedPermanently_301, res->status);
  1721. }
  1722. TEST(SpecifyServerIPAddressTest, RealHostname_Online) {
  1723. auto host = "google.com";
  1724. auto wrong_ip = "0.0.0.0";
  1725. #ifdef CPPHTTPLIB_SSL_ENABLED
  1726. SSLClient cli(host);
  1727. #else
  1728. Client cli(host);
  1729. #endif
  1730. cli.set_hostname_addr_map({{host, wrong_ip}});
  1731. auto res = cli.Get("/");
  1732. ASSERT_TRUE(!res);
  1733. EXPECT_EQ(Error::Connection, res.error());
  1734. }
  1735. TEST(AbsoluteRedirectTest, Redirect_Online) {
  1736. auto host = "nghttp2.org";
  1737. #ifdef CPPHTTPLIB_SSL_ENABLED
  1738. SSLClient cli(host);
  1739. #else
  1740. Client cli(host);
  1741. #endif
  1742. cli.set_follow_location(true);
  1743. auto res = cli.Get("/httpbin/absolute-redirect/3");
  1744. ASSERT_TRUE(res);
  1745. EXPECT_EQ(StatusCode::OK_200, res->status);
  1746. }
  1747. TEST(RedirectTest, Redirect_Online) {
  1748. auto host = "nghttp2.org";
  1749. #ifdef CPPHTTPLIB_SSL_ENABLED
  1750. SSLClient cli(host);
  1751. #else
  1752. Client cli(host);
  1753. #endif
  1754. cli.set_follow_location(true);
  1755. auto res = cli.Get("/httpbin/redirect/3");
  1756. ASSERT_TRUE(res);
  1757. EXPECT_EQ(StatusCode::OK_200, res->status);
  1758. }
  1759. TEST(RelativeRedirectTest, Redirect_Online) {
  1760. auto host = "nghttp2.org";
  1761. #ifdef CPPHTTPLIB_SSL_ENABLED
  1762. SSLClient cli(host);
  1763. #else
  1764. Client cli(host);
  1765. #endif
  1766. cli.set_follow_location(true);
  1767. auto res = cli.Get("/httpbin/relative-redirect/3");
  1768. ASSERT_TRUE(res);
  1769. EXPECT_EQ(StatusCode::OK_200, res->status);
  1770. }
  1771. TEST(TooManyRedirectTest, Redirect_Online) {
  1772. auto host = "nghttp2.org";
  1773. #ifdef CPPHTTPLIB_SSL_ENABLED
  1774. SSLClient cli(host);
  1775. #else
  1776. Client cli(host);
  1777. #endif
  1778. cli.set_follow_location(true);
  1779. auto res = cli.Get("/httpbin/redirect/21");
  1780. ASSERT_TRUE(!res);
  1781. EXPECT_EQ(Error::ExceedRedirectCount, res.error());
  1782. }
  1783. #ifdef CPPHTTPLIB_SSL_ENABLED
  1784. TEST(YahooRedirectTest, Redirect_Online) {
  1785. Client cli("yahoo.com");
  1786. auto res = cli.Get("/");
  1787. ASSERT_TRUE(res);
  1788. EXPECT_EQ(StatusCode::MovedPermanently_301, res->status);
  1789. cli.set_follow_location(true);
  1790. res = cli.Get("/");
  1791. ASSERT_TRUE(res);
  1792. EXPECT_EQ(StatusCode::OK_200, res->status);
  1793. EXPECT_EQ("https://www.yahoo.com/", res->location);
  1794. }
  1795. // Previously "nghttp2.org" "/httpbin/redirect-to"
  1796. #define REDIR_HOST "httpbingo.org"
  1797. #define REDIR_PATH "/redirect-to"
  1798. TEST(HttpsToHttpRedirectTest, Redirect_Online) {
  1799. SSLClient cli(REDIR_HOST);
  1800. cli.set_follow_location(true);
  1801. auto res =
  1802. cli.Get(REDIR_PATH "?url=http%3A%2F%2Fexample.com&status_code=302");
  1803. ASSERT_TRUE(res);
  1804. EXPECT_EQ(StatusCode::OK_200, res->status);
  1805. }
  1806. TEST(HttpsToHttpRedirectTest2, Redirect_Online) {
  1807. SSLClient cli(REDIR_HOST);
  1808. cli.set_follow_location(true);
  1809. Params params;
  1810. params.emplace("url", "http://example.com");
  1811. params.emplace("status_code", "302");
  1812. auto res = cli.Get(REDIR_PATH, params, Headers{});
  1813. ASSERT_TRUE(res);
  1814. EXPECT_EQ(StatusCode::OK_200, res->status);
  1815. }
  1816. TEST(HttpsToHttpRedirectTest3, Redirect_Online) {
  1817. SSLClient cli(REDIR_HOST);
  1818. cli.set_follow_location(true);
  1819. Params params;
  1820. params.emplace("url", "http://example.com");
  1821. auto res = cli.Get(REDIR_PATH "?status_code=302", params, Headers{});
  1822. ASSERT_TRUE(res);
  1823. EXPECT_EQ(StatusCode::OK_200, res->status);
  1824. }
  1825. TEST(UrlWithSpace, Redirect_Online) {
  1826. SSLClient cli("edge.forgecdn.net");
  1827. cli.set_follow_location(true);
  1828. auto res = cli.Get("/files/2595/310/Neat 1.4-17.jar");
  1829. ASSERT_TRUE(res);
  1830. EXPECT_EQ(StatusCode::OK_200, res->status);
  1831. EXPECT_EQ(18527U, res->get_header_value_u64("Content-Length"));
  1832. }
  1833. #endif
  1834. #if !defined(_WIN32) && !defined(_WIN64)
  1835. TEST(ReceiveSignals, Signal) {
  1836. auto setupSignalHandlers = []() {
  1837. struct sigaction act;
  1838. sigemptyset(&act.sa_mask);
  1839. act.sa_flags = SA_SIGINFO;
  1840. act.sa_sigaction = [](int sig, siginfo_t *, void *) {
  1841. switch (sig) {
  1842. case SIGINT:
  1843. default: break;
  1844. }
  1845. };
  1846. ::sigaction(SIGINT, &act, nullptr);
  1847. };
  1848. Server svr;
  1849. int port = 0;
  1850. auto thread = std::thread([&]() {
  1851. setupSignalHandlers();
  1852. port = svr.bind_to_any_port(HOST);
  1853. svr.listen_after_bind();
  1854. });
  1855. auto se = detail::scope_exit([&] {
  1856. svr.stop();
  1857. thread.join();
  1858. ASSERT_FALSE(svr.is_running());
  1859. });
  1860. svr.wait_until_ready();
  1861. ASSERT_TRUE(svr.is_running());
  1862. pthread_kill(thread.native_handle(), SIGINT);
  1863. std::this_thread::sleep_for(std::chrono::milliseconds(100));
  1864. ASSERT_TRUE(svr.is_running());
  1865. }
  1866. #endif
  1867. TEST(RedirectToDifferentPort, Redirect) {
  1868. Server svr1;
  1869. svr1.Get("/1", [&](const Request & /*req*/, Response &res) {
  1870. res.set_content("Hello World!", "text/plain");
  1871. });
  1872. int svr1_port = 0;
  1873. auto thread1 = std::thread([&]() {
  1874. svr1_port = svr1.bind_to_any_port(HOST);
  1875. svr1.listen_after_bind();
  1876. });
  1877. Server svr2;
  1878. svr2.Get("/2", [&](const Request & /*req*/, Response &res) {
  1879. res.set_redirect("http://localhost:" + std::to_string(svr1_port) + "/1");
  1880. });
  1881. int svr2_port = 0;
  1882. auto thread2 = std::thread([&]() {
  1883. svr2_port = svr2.bind_to_any_port(HOST);
  1884. svr2.listen_after_bind();
  1885. });
  1886. auto se = detail::scope_exit([&] {
  1887. svr2.stop();
  1888. thread2.join();
  1889. svr1.stop();
  1890. thread1.join();
  1891. ASSERT_FALSE(svr2.is_running());
  1892. ASSERT_FALSE(svr1.is_running());
  1893. });
  1894. svr1.wait_until_ready();
  1895. svr2.wait_until_ready();
  1896. Client cli("localhost", svr2_port);
  1897. cli.set_follow_location(true);
  1898. auto res = cli.Get("/2");
  1899. ASSERT_TRUE(res);
  1900. EXPECT_EQ(StatusCode::OK_200, res->status);
  1901. EXPECT_EQ("Hello World!", res->body);
  1902. }
  1903. TEST(RedirectFromPageWithContent, Redirect) {
  1904. Server svr;
  1905. svr.Get("/1", [&](const Request & /*req*/, Response &res) {
  1906. res.set_content("___", "text/plain");
  1907. res.set_redirect("/2");
  1908. });
  1909. svr.Get("/2", [&](const Request & /*req*/, Response &res) {
  1910. res.set_content("Hello World!", "text/plain");
  1911. });
  1912. auto th = std::thread([&]() { svr.listen("localhost", PORT); });
  1913. auto se = detail::scope_exit([&] {
  1914. svr.stop();
  1915. th.join();
  1916. ASSERT_FALSE(svr.is_running());
  1917. });
  1918. svr.wait_until_ready();
  1919. {
  1920. Client cli("localhost", PORT);
  1921. cli.set_follow_location(true);
  1922. std::string body;
  1923. auto res = cli.Get("/1", [&](const char *data, size_t data_length) {
  1924. body.append(data, data_length);
  1925. return true;
  1926. });
  1927. ASSERT_TRUE(res);
  1928. EXPECT_EQ(StatusCode::OK_200, res->status);
  1929. EXPECT_EQ("Hello World!", body);
  1930. }
  1931. {
  1932. Client cli("localhost", PORT);
  1933. std::string body;
  1934. auto res = cli.Get("/1", [&](const char *data, size_t data_length) {
  1935. body.append(data, data_length);
  1936. return true;
  1937. });
  1938. ASSERT_TRUE(res);
  1939. EXPECT_EQ(StatusCode::Found_302, res->status);
  1940. EXPECT_EQ("___", body);
  1941. }
  1942. }
  1943. TEST(RedirectFromPageWithContentIP6, Redirect) {
  1944. Server svr;
  1945. auto port_str = std::to_string(PORT);
  1946. auto redirect_url = "http://[::1]:" + port_str + "/2";
  1947. auto expected_host = "[::1]:" + port_str;
  1948. svr.Get("/1", [&](const Request & /*req*/, Response &res) {
  1949. res.set_content("___", "text/plain");
  1950. // res.set_redirect("/2");
  1951. res.set_redirect(redirect_url);
  1952. });
  1953. svr.Get("/2", [&](const Request &req, Response &res) {
  1954. auto host_header = req.headers.find("Host");
  1955. ASSERT_TRUE(host_header != req.headers.end());
  1956. EXPECT_EQ(expected_host, host_header->second);
  1957. res.set_content("Hello World!", "text/plain");
  1958. });
  1959. auto th = std::thread([&]() { svr.listen("::1", PORT); });
  1960. auto se = detail::scope_exit([&] {
  1961. svr.stop();
  1962. th.join();
  1963. ASSERT_FALSE(svr.is_running());
  1964. });
  1965. // When IPV6 support isn't available svr.listen("::1", PORT) never
  1966. // actually starts anything, so the condition !svr.is_running() will
  1967. // always remain true, and the loop never stops.
  1968. // This basically counts how many milliseconds have passed since the
  1969. // call to svr.listen(), and if after 5 seconds nothing started yet
  1970. // aborts the test.
  1971. for (unsigned int milliseconds = 0; !svr.is_running(); milliseconds++) {
  1972. std::this_thread::sleep_for(std::chrono::milliseconds(1));
  1973. ASSERT_LT(milliseconds, 5000U);
  1974. }
  1975. {
  1976. Client cli("::1", PORT);
  1977. cli.set_follow_location(true);
  1978. std::string body;
  1979. auto res = cli.Get("/1", [&](const char *data, size_t data_length) {
  1980. body.append(data, data_length);
  1981. return true;
  1982. });
  1983. ASSERT_TRUE(res);
  1984. EXPECT_EQ(StatusCode::OK_200, res->status);
  1985. EXPECT_EQ("Hello World!", body);
  1986. }
  1987. {
  1988. Client cli("::1", PORT);
  1989. std::string body;
  1990. auto res = cli.Get("/1", [&](const char *data, size_t data_length) {
  1991. body.append(data, data_length);
  1992. return true;
  1993. });
  1994. ASSERT_TRUE(res);
  1995. EXPECT_EQ(StatusCode::Found_302, res->status);
  1996. EXPECT_EQ("___", body);
  1997. }
  1998. }
  1999. TEST(PathUrlEncodeTest, PathUrlEncode) {
  2000. Server svr;
  2001. svr.Get("/foo", [](const Request &req, Response &res) {
  2002. auto a = req.params.find("a");
  2003. if (a != req.params.end()) {
  2004. res.set_content((*a).second, "text/plain");
  2005. res.status = StatusCode::OK_200;
  2006. } else {
  2007. res.status = StatusCode::BadRequest_400;
  2008. }
  2009. });
  2010. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  2011. auto se = detail::scope_exit([&] {
  2012. svr.stop();
  2013. thread.join();
  2014. ASSERT_FALSE(svr.is_running());
  2015. });
  2016. svr.wait_until_ready();
  2017. {
  2018. Client cli(HOST, PORT);
  2019. cli.set_path_encode(false);
  2020. auto res = cli.Get("/foo?a=explicitly+encoded");
  2021. ASSERT_TRUE(res);
  2022. EXPECT_EQ(StatusCode::OK_200, res->status);
  2023. // This expects it back with a space, as the `+` won't have been
  2024. // url-encoded, and server-side the params get decoded turning `+`
  2025. // into spaces.
  2026. EXPECT_EQ("explicitly encoded", res->body);
  2027. }
  2028. }
  2029. TEST(PathUrlEncodeTest, IncludePercentEncodingLF) {
  2030. Server svr;
  2031. svr.Get("/", [](const Request &req, Response &) {
  2032. EXPECT_EQ("\x0A", req.get_param_value("something"));
  2033. });
  2034. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  2035. auto se = detail::scope_exit([&] {
  2036. svr.stop();
  2037. thread.join();
  2038. ASSERT_FALSE(svr.is_running());
  2039. });
  2040. svr.wait_until_ready();
  2041. {
  2042. Client cli(HOST, PORT);
  2043. cli.set_path_encode(false);
  2044. auto res = cli.Get("/?something=%0A");
  2045. ASSERT_TRUE(res);
  2046. EXPECT_EQ(StatusCode::OK_200, res->status);
  2047. }
  2048. }
  2049. TEST(BindServerTest, DISABLED_BindDualStack) {
  2050. Server svr;
  2051. svr.Get("/1", [&](const Request & /*req*/, Response &res) {
  2052. res.set_content("Hello World!", "text/plain");
  2053. });
  2054. auto thread = std::thread([&]() { svr.listen("::", PORT); });
  2055. auto se = detail::scope_exit([&] {
  2056. svr.stop();
  2057. thread.join();
  2058. ASSERT_FALSE(svr.is_running());
  2059. });
  2060. svr.wait_until_ready();
  2061. {
  2062. Client cli("127.0.0.1", PORT);
  2063. auto res = cli.Get("/1");
  2064. ASSERT_TRUE(res);
  2065. EXPECT_EQ(StatusCode::OK_200, res->status);
  2066. EXPECT_EQ("Hello World!", res->body);
  2067. }
  2068. {
  2069. Client cli("::1", PORT);
  2070. auto res = cli.Get("/1");
  2071. ASSERT_TRUE(res);
  2072. EXPECT_EQ(StatusCode::OK_200, res->status);
  2073. EXPECT_EQ("Hello World!", res->body);
  2074. }
  2075. }
  2076. TEST(BindServerTest, BindAndListenSeparately) {
  2077. Server svr;
  2078. int port = svr.bind_to_any_port("0.0.0.0");
  2079. ASSERT_TRUE(svr.is_valid());
  2080. ASSERT_TRUE(port > 0);
  2081. svr.stop();
  2082. }
  2083. #ifdef CPPHTTPLIB_SSL_ENABLED
  2084. TEST(BindServerTest, BindAndListenSeparatelySSL) {
  2085. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE, CLIENT_CA_CERT_FILE,
  2086. CLIENT_CA_CERT_DIR);
  2087. int port = svr.bind_to_any_port("0.0.0.0");
  2088. ASSERT_TRUE(svr.is_valid());
  2089. ASSERT_TRUE(port > 0);
  2090. svr.stop();
  2091. }
  2092. TEST(BindServerTest, BindAndListenSeparatelySSLEncryptedKey) {
  2093. SSLServer svr(SERVER_ENCRYPTED_CERT_FILE, SERVER_ENCRYPTED_PRIVATE_KEY_FILE,
  2094. nullptr, nullptr, SERVER_ENCRYPTED_PRIVATE_KEY_PASS);
  2095. int port = svr.bind_to_any_port("0.0.0.0");
  2096. ASSERT_TRUE(svr.is_valid());
  2097. ASSERT_TRUE(port > 0);
  2098. svr.stop();
  2099. }
  2100. TEST(BindServerTest, UpdateCertsPem) {
  2101. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE, CLIENT_CA_CERT_FILE);
  2102. int port = svr.bind_to_any_port("0.0.0.0");
  2103. ASSERT_TRUE(svr.is_valid());
  2104. ASSERT_TRUE(port > 0);
  2105. // Read PEM files
  2106. std::string cert_pem, key_pem, ca_pem;
  2107. read_file(SERVER_CERT_FILE, cert_pem);
  2108. read_file(SERVER_PRIVATE_KEY_FILE, key_pem);
  2109. read_file(CLIENT_CA_CERT_FILE, ca_pem);
  2110. // Update server certificates using PEM API
  2111. ASSERT_TRUE(
  2112. svr.update_certs_pem(cert_pem.c_str(), key_pem.c_str(), ca_pem.c_str()));
  2113. ASSERT_TRUE(svr.is_valid());
  2114. svr.stop();
  2115. }
  2116. TEST(SSLClientServerTest, UpdateCertsPemWithClientAuth) {
  2117. // Start server with client CA (enables client auth)
  2118. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE, CLIENT_CA_CERT_FILE);
  2119. ASSERT_TRUE(svr.is_valid());
  2120. bool handler_called = false;
  2121. svr.Get("/test", [&](const Request &req, Response &res) {
  2122. handler_called = true;
  2123. // Verify client certificate is present
  2124. auto cert = req.peer_cert();
  2125. EXPECT_TRUE(static_cast<bool>(cert));
  2126. res.set_content("ok", "text/plain");
  2127. });
  2128. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  2129. auto se = detail::scope_exit([&] {
  2130. svr.stop();
  2131. t.join();
  2132. ASSERT_FALSE(svr.is_running());
  2133. });
  2134. svr.wait_until_ready();
  2135. // Read PEM files
  2136. std::string cert_pem, key_pem, ca_pem;
  2137. read_file(SERVER_CERT_FILE, cert_pem);
  2138. read_file(SERVER_PRIVATE_KEY_FILE, key_pem);
  2139. read_file(CLIENT_CA_CERT_FILE, ca_pem);
  2140. // Update server certificates and client CA using PEM API while server running
  2141. ASSERT_TRUE(
  2142. svr.update_certs_pem(cert_pem.c_str(), key_pem.c_str(), ca_pem.c_str()));
  2143. // Connect with client certificate
  2144. SSLClient cli(HOST, PORT, CLIENT_CERT_FILE, CLIENT_PRIVATE_KEY_FILE);
  2145. cli.enable_server_certificate_verification(false);
  2146. cli.set_connection_timeout(30);
  2147. auto res = cli.Get("/test");
  2148. ASSERT_TRUE(res);
  2149. ASSERT_EQ(StatusCode::OK_200, res->status);
  2150. ASSERT_TRUE(handler_called);
  2151. EXPECT_EQ("ok", res->body);
  2152. }
  2153. #endif
  2154. TEST(ErrorHandlerTest, ContentLength) {
  2155. Server svr;
  2156. svr.set_error_handler([](const Request & /*req*/, Response &res) {
  2157. res.status = StatusCode::OK_200;
  2158. res.set_content("abcdefghijklmnopqrstuvwxyz",
  2159. "text/html"); // <= Content-Length still 13
  2160. });
  2161. svr.Get("/hi", [](const Request & /*req*/, Response &res) {
  2162. res.set_content("Hello World!\n", "text/plain");
  2163. res.status = 524;
  2164. });
  2165. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  2166. auto se = detail::scope_exit([&] {
  2167. svr.stop();
  2168. thread.join();
  2169. ASSERT_FALSE(svr.is_running());
  2170. });
  2171. svr.wait_until_ready();
  2172. {
  2173. Client cli(HOST, PORT);
  2174. auto res = cli.Get("/hi", {{"Accept-Encoding", ""}});
  2175. ASSERT_TRUE(res);
  2176. EXPECT_EQ(StatusCode::OK_200, res->status);
  2177. EXPECT_EQ("text/html", res->get_header_value("Content-Type"));
  2178. EXPECT_EQ("26", res->get_header_value("Content-Length"));
  2179. EXPECT_EQ("abcdefghijklmnopqrstuvwxyz", res->body);
  2180. }
  2181. }
  2182. #ifndef CPPHTTPLIB_NO_EXCEPTIONS
  2183. TEST(ExceptionTest, WithoutExceptionHandler) {
  2184. Server svr;
  2185. svr.Get("/exception", [&](const Request & /*req*/, Response & /*res*/) {
  2186. throw std::runtime_error("exception...");
  2187. });
  2188. svr.Get("/unknown", [&](const Request & /*req*/, Response & /*res*/) {
  2189. throw std::runtime_error("exception\r\n...");
  2190. });
  2191. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  2192. auto se = detail::scope_exit([&] {
  2193. svr.stop();
  2194. listen_thread.join();
  2195. ASSERT_FALSE(svr.is_running());
  2196. });
  2197. svr.wait_until_ready();
  2198. Client cli("localhost", PORT);
  2199. {
  2200. auto res = cli.Get("/exception");
  2201. ASSERT_TRUE(res);
  2202. EXPECT_EQ(StatusCode::InternalServerError_500, res->status);
  2203. ASSERT_TRUE(res->has_header("EXCEPTION_WHAT"));
  2204. EXPECT_EQ("exception...", res->get_header_value("EXCEPTION_WHAT"));
  2205. }
  2206. {
  2207. auto res = cli.Get("/unknown");
  2208. ASSERT_TRUE(res);
  2209. EXPECT_EQ(StatusCode::InternalServerError_500, res->status);
  2210. ASSERT_TRUE(res->has_header("EXCEPTION_WHAT"));
  2211. EXPECT_EQ("exception\\r\\n...", res->get_header_value("EXCEPTION_WHAT"));
  2212. }
  2213. }
  2214. TEST(ExceptionTest, WithExceptionHandler) {
  2215. Server svr;
  2216. svr.set_exception_handler([](const Request & /*req*/, Response &res,
  2217. std::exception_ptr ep) {
  2218. EXPECT_FALSE(ep == nullptr);
  2219. try {
  2220. std::rethrow_exception(ep);
  2221. } catch (std::exception &e) {
  2222. EXPECT_EQ("abc", std::string(e.what()));
  2223. } catch (...) {}
  2224. res.status = StatusCode::InternalServerError_500;
  2225. res.set_content("abcdefghijklmnopqrstuvwxyz",
  2226. "text/html"); // <= Content-Length still 13 at this point
  2227. });
  2228. svr.Get("/hi", [](const Request & /*req*/, Response &res) {
  2229. res.set_content("Hello World!\n", "text/plain");
  2230. throw std::runtime_error("abc");
  2231. });
  2232. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  2233. auto se = detail::scope_exit([&] {
  2234. svr.stop();
  2235. thread.join();
  2236. ASSERT_FALSE(svr.is_running());
  2237. });
  2238. svr.wait_until_ready();
  2239. for (size_t i = 0; i < 10; i++) {
  2240. Client cli(HOST, PORT);
  2241. for (size_t j = 0; j < 100; j++) {
  2242. auto res = cli.Get("/hi", {{"Accept-Encoding", ""}});
  2243. ASSERT_TRUE(res);
  2244. EXPECT_EQ(StatusCode::InternalServerError_500, res->status);
  2245. EXPECT_EQ("text/html", res->get_header_value("Content-Type"));
  2246. EXPECT_EQ("26", res->get_header_value("Content-Length"));
  2247. EXPECT_EQ("abcdefghijklmnopqrstuvwxyz", res->body);
  2248. }
  2249. cli.set_keep_alive(true);
  2250. for (size_t j = 0; j < 100; j++) {
  2251. auto res = cli.Get("/hi", {{"Accept-Encoding", ""}});
  2252. ASSERT_TRUE(res);
  2253. EXPECT_EQ(StatusCode::InternalServerError_500, res->status);
  2254. EXPECT_EQ("text/html", res->get_header_value("Content-Type"));
  2255. EXPECT_EQ("26", res->get_header_value("Content-Length"));
  2256. EXPECT_EQ("abcdefghijklmnopqrstuvwxyz", res->body);
  2257. }
  2258. }
  2259. }
  2260. TEST(ExceptionTest, AndErrorHandler) {
  2261. Server svr;
  2262. svr.set_error_handler([](const Request & /*req*/, Response &res) {
  2263. if (res.body.empty()) { res.set_content("NOT_FOUND", "text/html"); }
  2264. });
  2265. svr.set_exception_handler(
  2266. [](const Request & /*req*/, Response &res, std::exception_ptr ep) {
  2267. EXPECT_FALSE(ep == nullptr);
  2268. try {
  2269. std::rethrow_exception(ep);
  2270. } catch (std::exception &e) {
  2271. res.set_content(e.what(), "text/html");
  2272. } catch (...) {}
  2273. res.status = StatusCode::InternalServerError_500;
  2274. });
  2275. svr.Get("/exception", [](const Request & /*req*/, Response & /*res*/) {
  2276. throw std::runtime_error("EXCEPTION");
  2277. });
  2278. svr.Get("/error", [](const Request & /*req*/, Response &res) {
  2279. res.set_content("ERROR", "text/html");
  2280. res.status = StatusCode::InternalServerError_500;
  2281. });
  2282. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  2283. auto se = detail::scope_exit([&] {
  2284. svr.stop();
  2285. thread.join();
  2286. ASSERT_FALSE(svr.is_running());
  2287. });
  2288. svr.wait_until_ready();
  2289. Client cli(HOST, PORT);
  2290. {
  2291. auto res = cli.Get("/exception");
  2292. ASSERT_TRUE(res);
  2293. EXPECT_EQ("text/html", res->get_header_value("Content-Type"));
  2294. EXPECT_EQ("EXCEPTION", res->body);
  2295. }
  2296. {
  2297. auto res = cli.Get("/error");
  2298. ASSERT_TRUE(res);
  2299. EXPECT_EQ(StatusCode::InternalServerError_500, res->status);
  2300. EXPECT_EQ("ERROR", res->body);
  2301. }
  2302. {
  2303. auto res = cli.Get("/invalid");
  2304. ASSERT_TRUE(res);
  2305. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  2306. EXPECT_EQ("NOT_FOUND", res->body);
  2307. }
  2308. }
  2309. #endif
  2310. TEST(NoContentTest, ContentLength) {
  2311. Server svr;
  2312. svr.Get("/hi", [](const Request & /*req*/, Response &res) {
  2313. res.status = StatusCode::NoContent_204;
  2314. });
  2315. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  2316. auto se = detail::scope_exit([&] {
  2317. svr.stop();
  2318. thread.join();
  2319. ASSERT_FALSE(svr.is_running());
  2320. });
  2321. svr.wait_until_ready();
  2322. {
  2323. Client cli(HOST, PORT);
  2324. auto res = cli.Get("/hi");
  2325. ASSERT_TRUE(res);
  2326. EXPECT_EQ(StatusCode::NoContent_204, res->status);
  2327. EXPECT_EQ("0", res->get_header_value("Content-Length"));
  2328. }
  2329. }
  2330. TEST(RoutingHandlerTest, PreAndPostRoutingHandlers) {
  2331. #ifdef CPPHTTPLIB_SSL_ENABLED
  2332. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  2333. ASSERT_TRUE(svr.is_valid());
  2334. #else
  2335. Server svr;
  2336. #endif
  2337. svr.set_pre_routing_handler([](const Request &req, Response &res) {
  2338. if (req.path == "/routing_handler") {
  2339. res.set_header("PRE_ROUTING", "on");
  2340. res.set_content("Routing Handler", "text/plain");
  2341. return httplib::Server::HandlerResponse::Handled;
  2342. }
  2343. return httplib::Server::HandlerResponse::Unhandled;
  2344. });
  2345. svr.set_error_handler([](const Request & /*req*/, Response &res) {
  2346. res.set_content("Error", "text/html");
  2347. });
  2348. svr.set_post_routing_handler([](const Request &req, Response &res) {
  2349. if (req.path == "/routing_handler") {
  2350. res.set_header("POST_ROUTING", "on");
  2351. }
  2352. });
  2353. svr.Get("/hi", [](const Request & /*req*/, Response &res) {
  2354. res.set_content("Hello World!\n", "text/plain");
  2355. });
  2356. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  2357. auto se = detail::scope_exit([&] {
  2358. svr.stop();
  2359. thread.join();
  2360. ASSERT_FALSE(svr.is_running());
  2361. });
  2362. svr.wait_until_ready();
  2363. {
  2364. #ifdef CPPHTTPLIB_SSL_ENABLED
  2365. SSLClient cli(HOST, PORT);
  2366. cli.enable_server_certificate_verification(false);
  2367. #else
  2368. Client cli(HOST, PORT);
  2369. #endif
  2370. auto res = cli.Get("/routing_handler");
  2371. ASSERT_TRUE(res);
  2372. EXPECT_EQ(StatusCode::OK_200, res->status);
  2373. EXPECT_EQ("Routing Handler", res->body);
  2374. EXPECT_EQ(1U, res->get_header_value_count("PRE_ROUTING"));
  2375. EXPECT_EQ("on", res->get_header_value("PRE_ROUTING"));
  2376. EXPECT_EQ(1U, res->get_header_value_count("POST_ROUTING"));
  2377. EXPECT_EQ("on", res->get_header_value("POST_ROUTING"));
  2378. }
  2379. {
  2380. #ifdef CPPHTTPLIB_SSL_ENABLED
  2381. SSLClient cli(HOST, PORT);
  2382. cli.enable_server_certificate_verification(false);
  2383. #else
  2384. Client cli(HOST, PORT);
  2385. #endif
  2386. auto res = cli.Get("/hi");
  2387. ASSERT_TRUE(res);
  2388. EXPECT_EQ(StatusCode::OK_200, res->status);
  2389. EXPECT_EQ("Hello World!\n", res->body);
  2390. EXPECT_EQ(0U, res->get_header_value_count("PRE_ROUTING"));
  2391. EXPECT_EQ(0U, res->get_header_value_count("POST_ROUTING"));
  2392. }
  2393. {
  2394. #ifdef CPPHTTPLIB_SSL_ENABLED
  2395. SSLClient cli(HOST, PORT);
  2396. cli.enable_server_certificate_verification(false);
  2397. #else
  2398. Client cli(HOST, PORT);
  2399. #endif
  2400. auto res = cli.Get("/aaa");
  2401. ASSERT_TRUE(res);
  2402. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  2403. EXPECT_EQ("Error", res->body);
  2404. EXPECT_EQ(0U, res->get_header_value_count("PRE_ROUTING"));
  2405. EXPECT_EQ(0U, res->get_header_value_count("POST_ROUTING"));
  2406. }
  2407. }
  2408. TEST(RequestHandlerTest, PreRequestHandler) {
  2409. auto route_path = "/user/:user";
  2410. Server svr;
  2411. svr.Get("/hi", [](const Request &, Response &res) {
  2412. res.set_content("hi", "text/plain");
  2413. });
  2414. svr.Get(route_path, [](const Request &req, Response &res) {
  2415. res.set_content(req.path_params.at("user"), "text/plain");
  2416. });
  2417. svr.set_pre_request_handler([&](const Request &req, Response &res) {
  2418. if (req.matched_route == route_path) {
  2419. auto user = req.path_params.at("user");
  2420. if (user != "john") {
  2421. res.status = StatusCode::Forbidden_403;
  2422. res.set_content("error", "text/html");
  2423. return Server::HandlerResponse::Handled;
  2424. }
  2425. }
  2426. return Server::HandlerResponse::Unhandled;
  2427. });
  2428. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  2429. auto se = detail::scope_exit([&] {
  2430. svr.stop();
  2431. thread.join();
  2432. ASSERT_FALSE(svr.is_running());
  2433. });
  2434. svr.wait_until_ready();
  2435. Client cli(HOST, PORT);
  2436. {
  2437. auto res = cli.Get("/hi");
  2438. ASSERT_TRUE(res);
  2439. EXPECT_EQ(StatusCode::OK_200, res->status);
  2440. EXPECT_EQ("hi", res->body);
  2441. }
  2442. {
  2443. auto res = cli.Get("/user/john");
  2444. ASSERT_TRUE(res);
  2445. EXPECT_EQ(StatusCode::OK_200, res->status);
  2446. EXPECT_EQ("john", res->body);
  2447. }
  2448. {
  2449. auto res = cli.Get("/user/invalid-user");
  2450. ASSERT_TRUE(res);
  2451. EXPECT_EQ(StatusCode::Forbidden_403, res->status);
  2452. EXPECT_EQ("error", res->body);
  2453. }
  2454. }
  2455. TEST(InvalidFormatTest, StatusCode) {
  2456. Server svr;
  2457. svr.Get("/hi", [](const Request & /*req*/, Response &res) {
  2458. res.set_content("Hello World!\n", "text/plain");
  2459. res.status = 9999; // Status should be a three-digit code...
  2460. });
  2461. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  2462. auto se = detail::scope_exit([&] {
  2463. svr.stop();
  2464. thread.join();
  2465. ASSERT_FALSE(svr.is_running());
  2466. });
  2467. svr.wait_until_ready();
  2468. {
  2469. Client cli(HOST, PORT);
  2470. auto res = cli.Get("/hi");
  2471. ASSERT_FALSE(res);
  2472. }
  2473. }
  2474. TEST(URLFragmentTest, WithFragment) {
  2475. Server svr;
  2476. svr.Get("/hi", [](const Request &req, Response & /*res*/) {
  2477. EXPECT_TRUE(req.target == "/hi");
  2478. });
  2479. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  2480. auto se = detail::scope_exit([&] {
  2481. svr.stop();
  2482. thread.join();
  2483. ASSERT_FALSE(svr.is_running());
  2484. });
  2485. svr.wait_until_ready();
  2486. {
  2487. Client cli(HOST, PORT);
  2488. auto res = cli.Get("/hi#key1=val1=key2=val2");
  2489. EXPECT_TRUE(res);
  2490. EXPECT_EQ(StatusCode::OK_200, res->status);
  2491. res = cli.Get("/hi%23key1=val1=key2=val2");
  2492. EXPECT_TRUE(res);
  2493. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  2494. }
  2495. }
  2496. TEST(HeaderWriter, SetHeaderWriter) {
  2497. Server svr;
  2498. svr.set_header_writer([](Stream &strm, Headers &hdrs) {
  2499. hdrs.emplace("CustomServerHeader", "CustomServerValue");
  2500. return detail::write_headers(strm, hdrs);
  2501. });
  2502. svr.Get("/hi", [](const Request &req, Response &res) {
  2503. auto it = req.headers.find("CustomClientHeader");
  2504. EXPECT_TRUE(it != req.headers.end());
  2505. EXPECT_EQ(it->second, "CustomClientValue");
  2506. res.set_content("Hello World!\n", "text/plain");
  2507. });
  2508. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  2509. auto se = detail::scope_exit([&] {
  2510. svr.stop();
  2511. thread.join();
  2512. ASSERT_FALSE(svr.is_running());
  2513. });
  2514. svr.wait_until_ready();
  2515. {
  2516. Client cli(HOST, PORT);
  2517. cli.set_header_writer([](Stream &strm, Headers &hdrs) {
  2518. hdrs.emplace("CustomClientHeader", "CustomClientValue");
  2519. return detail::write_headers(strm, hdrs);
  2520. });
  2521. auto res = cli.Get("/hi");
  2522. EXPECT_TRUE(res);
  2523. EXPECT_EQ(StatusCode::OK_200, res->status);
  2524. auto it = res->headers.find("CustomServerHeader");
  2525. EXPECT_TRUE(it != res->headers.end());
  2526. EXPECT_EQ(it->second, "CustomServerValue");
  2527. }
  2528. }
  2529. class ServerTest : public ::testing::Test {
  2530. protected:
  2531. ServerTest()
  2532. : cli_(HOST, PORT)
  2533. #ifdef CPPHTTPLIB_SSL_ENABLED
  2534. ,
  2535. svr_(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE)
  2536. #endif
  2537. {
  2538. #ifdef CPPHTTPLIB_SSL_ENABLED
  2539. cli_.enable_server_certificate_verification(false);
  2540. #endif
  2541. // Allow LARGE_DATA (100MB) responses
  2542. cli_.set_payload_max_length(200 * 1024 * 1024);
  2543. }
  2544. virtual void SetUp() {
  2545. // Allow LARGE_DATA (100MB) tests to pass with new 100MB default limit
  2546. svr_.set_payload_max_length(200 * 1024 * 1024);
  2547. svr_.set_mount_point("/", "./www");
  2548. svr_.set_mount_point("/mount", "./www2");
  2549. svr_.set_file_extension_and_mimetype_mapping("abcde", "text/abcde");
  2550. svr_.Get("/hi",
  2551. [&](const Request & /*req*/, Response &res) {
  2552. res.set_content("Hello World!", "text/plain");
  2553. })
  2554. .Get("/file_content",
  2555. [&](const Request & /*req*/, Response &res) {
  2556. res.set_file_content("./www/dir/test.html");
  2557. })
  2558. .Get("/file_content_with_content_type",
  2559. [&](const Request & /*req*/, Response &res) {
  2560. res.set_file_content("./www/file", "text/plain");
  2561. })
  2562. .Get("/invalid_file_content",
  2563. [&](const Request & /*req*/, Response &res) {
  2564. res.set_file_content("./www/dir/invalid_file_path");
  2565. })
  2566. .Get("/http_response_splitting",
  2567. [&](const Request & /*req*/, Response &res) {
  2568. res.set_header("a", "1\r\nSet-Cookie: a=1");
  2569. EXPECT_EQ(0U, res.headers.size());
  2570. EXPECT_FALSE(res.has_header("a"));
  2571. res.set_header("a", "1\nSet-Cookie: a=1");
  2572. EXPECT_EQ(0U, res.headers.size());
  2573. EXPECT_FALSE(res.has_header("a"));
  2574. res.set_header("a", "1\rSet-Cookie: a=1");
  2575. EXPECT_EQ(0U, res.headers.size());
  2576. EXPECT_FALSE(res.has_header("a"));
  2577. res.set_header("a\r\nb", "0");
  2578. EXPECT_EQ(0U, res.headers.size());
  2579. EXPECT_FALSE(res.has_header("a"));
  2580. res.set_header("a\rb", "0");
  2581. EXPECT_EQ(0U, res.headers.size());
  2582. EXPECT_FALSE(res.has_header("a"));
  2583. res.set_header("a\nb", "0");
  2584. EXPECT_EQ(0U, res.headers.size());
  2585. EXPECT_FALSE(res.has_header("a"));
  2586. res.set_redirect("1\r\nSet-Cookie: a=1");
  2587. EXPECT_EQ(0U, res.headers.size());
  2588. EXPECT_FALSE(res.has_header("Location"));
  2589. })
  2590. .Get("/slow",
  2591. [&](const Request & /*req*/, Response &res) {
  2592. std::this_thread::sleep_for(std::chrono::seconds(2));
  2593. res.set_content("slow", "text/plain");
  2594. })
  2595. #if 0
  2596. .Post("/slowpost",
  2597. [&](const Request & /*req*/, Response &res) {
  2598. std::this_thread::sleep_for(std::chrono::seconds(2));
  2599. res.set_content("slow", "text/plain");
  2600. })
  2601. #endif
  2602. .Get("/remote_addr",
  2603. [&](const Request &req, Response &res) {
  2604. ASSERT_FALSE(req.has_header("REMOTE_ADDR"));
  2605. ASSERT_FALSE(req.has_header("REMOTE_PORT"));
  2606. #ifndef CPPHTTPLIB_NO_EXCEPTIONS
  2607. ASSERT_ANY_THROW(req.get_header_value("REMOTE_ADDR"));
  2608. ASSERT_ANY_THROW(req.get_header_value("REMOTE_PORT"));
  2609. #endif
  2610. res.set_content(req.remote_addr, "text/plain");
  2611. })
  2612. .Get("/local_addr",
  2613. [&](const Request &req, Response &res) {
  2614. ASSERT_FALSE(req.has_header("LOCAL_ADDR"));
  2615. ASSERT_FALSE(req.has_header("LOCAL_PORT"));
  2616. #ifndef CPPHTTPLIB_NO_EXCEPTIONS
  2617. ASSERT_ANY_THROW(req.get_header_value("LOCAL_ADDR"));
  2618. ASSERT_ANY_THROW(req.get_header_value("LOCAL_PORT"));
  2619. #endif
  2620. auto local_addr = req.local_addr;
  2621. auto local_port = std::to_string(req.local_port);
  2622. res.set_content(local_addr.append(":").append(local_port),
  2623. "text/plain");
  2624. })
  2625. .Get("/endwith%",
  2626. [&](const Request & /*req*/, Response &res) {
  2627. res.set_content("Hello World!", "text/plain");
  2628. })
  2629. .Get("/a\\+\\+b",
  2630. [&](const Request &req, Response &res) {
  2631. ASSERT_TRUE(req.has_param("a +b"));
  2632. auto val = req.get_param_value("a +b");
  2633. res.set_content(val, "text/plain");
  2634. })
  2635. .Get("/", [&](const Request & /*req*/,
  2636. Response &res) { res.set_redirect("/hi"); })
  2637. .Post("/1",
  2638. [](const Request & /*req*/, Response &res) {
  2639. res.set_redirect("/2", StatusCode::SeeOther_303);
  2640. })
  2641. .Get("/2",
  2642. [](const Request & /*req*/, Response &res) {
  2643. res.set_content("redirected.", "text/plain");
  2644. res.status = StatusCode::OK_200;
  2645. })
  2646. .Post("/person",
  2647. [&](const Request &req, Response &res) {
  2648. if (req.has_param("name") && req.has_param("note")) {
  2649. persons_[req.get_param_value("name")] =
  2650. req.get_param_value("note");
  2651. } else {
  2652. res.status = StatusCode::BadRequest_400;
  2653. }
  2654. })
  2655. .Put("/person",
  2656. [&](const Request &req, Response &res) {
  2657. if (req.has_param("name") && req.has_param("note")) {
  2658. persons_[req.get_param_value("name")] =
  2659. req.get_param_value("note");
  2660. } else {
  2661. res.status = StatusCode::BadRequest_400;
  2662. }
  2663. })
  2664. .Get("/person/(.*)",
  2665. [&](const Request &req, Response &res) {
  2666. string name = req.matches[1];
  2667. if (persons_.find(name) != persons_.end()) {
  2668. auto note = persons_[name];
  2669. res.set_content(note, "text/plain");
  2670. } else {
  2671. res.status = StatusCode::NotFound_404;
  2672. }
  2673. })
  2674. .Delete("/person",
  2675. [&](const Request &req, Response &res) {
  2676. if (req.has_param("name")) {
  2677. string name = req.get_param_value("name");
  2678. if (persons_.find(name) != persons_.end()) {
  2679. persons_.erase(name);
  2680. res.set_content("DELETED", "text/plain");
  2681. } else {
  2682. res.status = StatusCode::NotFound_404;
  2683. }
  2684. } else {
  2685. res.status = StatusCode::BadRequest_400;
  2686. }
  2687. })
  2688. .Post("/x-www-form-urlencoded-json",
  2689. [&](const Request &req, Response &res) {
  2690. auto json = req.get_param_value("json");
  2691. ASSERT_EQ(JSON_DATA, json);
  2692. res.set_content(json, "appliation/json");
  2693. res.status = StatusCode::OK_200;
  2694. })
  2695. .Get("/streamed-chunked",
  2696. [&](const Request & /*req*/, Response &res) {
  2697. res.set_chunked_content_provider(
  2698. "text/plain", [](size_t /*offset*/, DataSink &sink) {
  2699. sink.os << "123";
  2700. sink.os << "456";
  2701. sink.os << "789";
  2702. sink.done();
  2703. return true;
  2704. });
  2705. })
  2706. .Get("/streamed-chunked-with-prohibited-trailer",
  2707. [&](const Request & /*req*/, Response &res) {
  2708. auto i = new int(0);
  2709. // Declare both a prohibited trailer (Content-Length) and an
  2710. // allowed one
  2711. res.set_header("Trailer", "Content-Length, X-Allowed");
  2712. res.set_chunked_content_provider(
  2713. "text/plain",
  2714. [i](size_t /*offset*/, DataSink &sink) {
  2715. switch (*i) {
  2716. case 0: sink.os << "123"; break;
  2717. case 1: sink.os << "456"; break;
  2718. case 2: sink.os << "789"; break;
  2719. case 3: {
  2720. sink.done_with_trailer(
  2721. {{"Content-Length", "5"}, {"X-Allowed", "yes"}});
  2722. } break;
  2723. }
  2724. (*i)++;
  2725. return true;
  2726. },
  2727. [i](bool success) {
  2728. EXPECT_TRUE(success);
  2729. delete i;
  2730. });
  2731. })
  2732. .Get("/streamed-chunked2",
  2733. [&](const Request & /*req*/, Response &res) {
  2734. auto i = new int(0);
  2735. res.set_chunked_content_provider(
  2736. "text/plain",
  2737. [i](size_t /*offset*/, DataSink &sink) {
  2738. switch (*i) {
  2739. case 0: sink.os << "123"; break;
  2740. case 1: sink.os << "456"; break;
  2741. case 2: sink.os << "789"; break;
  2742. case 3: sink.done(); break;
  2743. }
  2744. (*i)++;
  2745. return true;
  2746. },
  2747. [i](bool success) {
  2748. EXPECT_TRUE(success);
  2749. delete i;
  2750. });
  2751. })
  2752. .Get("/streamed-chunked-with-trailer",
  2753. [&](const Request & /*req*/, Response &res) {
  2754. auto i = new int(0);
  2755. res.set_header("Trailer", "Dummy1, Dummy2");
  2756. res.set_chunked_content_provider(
  2757. "text/plain",
  2758. [i](size_t /*offset*/, DataSink &sink) {
  2759. switch (*i) {
  2760. case 0: sink.os << "123"; break;
  2761. case 1: sink.os << "456"; break;
  2762. case 2: sink.os << "789"; break;
  2763. case 3: {
  2764. sink.done_with_trailer(
  2765. {{"Dummy1", "DummyVal1"}, {"Dummy2", "DummyVal2"}});
  2766. } break;
  2767. }
  2768. (*i)++;
  2769. return true;
  2770. },
  2771. [i](bool success) {
  2772. EXPECT_TRUE(success);
  2773. delete i;
  2774. });
  2775. })
  2776. .Get("/streamed",
  2777. [&](const Request & /*req*/, Response &res) {
  2778. res.set_content_provider(
  2779. 6, "text/plain",
  2780. [](size_t offset, size_t /*length*/, DataSink &sink) {
  2781. sink.os << (offset < 3 ? "a" : "b");
  2782. return true;
  2783. });
  2784. })
  2785. .Get("/streamed-with-range",
  2786. [&](const Request &req, Response &res) {
  2787. auto data = new std::string("abcdefg");
  2788. res.set_content_provider(
  2789. data->size(), "text/plain",
  2790. [data](size_t offset, size_t length, DataSink &sink) {
  2791. size_t DATA_CHUNK_SIZE = 4;
  2792. const auto &d = *data;
  2793. auto out_len =
  2794. std::min(static_cast<size_t>(length), DATA_CHUNK_SIZE);
  2795. auto ret =
  2796. sink.write(&d[static_cast<size_t>(offset)], out_len);
  2797. EXPECT_TRUE(ret);
  2798. return true;
  2799. },
  2800. [data, &req](bool success) {
  2801. EXPECT_EQ(success, !req.has_param("error"));
  2802. delete data;
  2803. });
  2804. })
  2805. .Get("/streamed-cancel",
  2806. [&](const Request & /*req*/, Response &res) {
  2807. res.set_content_provider(
  2808. size_t(-1), "text/plain",
  2809. [](size_t /*offset*/, size_t /*length*/, DataSink &sink) {
  2810. sink.os << "data_chunk";
  2811. return true;
  2812. });
  2813. })
  2814. .Get("/regex-with-delimiter",
  2815. [&](const Request &req, Response & /*res*/) {
  2816. ASSERT_TRUE(req.has_param("key"));
  2817. EXPECT_EQ("^(?.*(value))", req.get_param_value("key"));
  2818. })
  2819. .Get("/with-range",
  2820. [&](const Request & /*req*/, Response &res) {
  2821. res.set_content("abcdefg", "text/plain");
  2822. })
  2823. .Get("/test-start-time",
  2824. [&](const Request &req, Response & /*res*/) {
  2825. EXPECT_NE(req.start_time_,
  2826. std::chrono::steady_clock::time_point::min());
  2827. })
  2828. .Get("/with-range-customized-response",
  2829. [&](const Request & /*req*/, Response &res) {
  2830. res.status = StatusCode::BadRequest_400;
  2831. res.set_content(JSON_DATA, "application/json");
  2832. })
  2833. .Post("/chunked",
  2834. [&](const Request &req, Response & /*res*/) {
  2835. EXPECT_EQ(req.body, "dechunked post body");
  2836. })
  2837. .Post("/large-chunked",
  2838. [&](const Request &req, Response & /*res*/) {
  2839. std::string expected(6 * 30 * 1024u, 'a');
  2840. EXPECT_EQ(req.body, expected);
  2841. })
  2842. .Post("/multipart",
  2843. [&](const Request &req, Response & /*res*/) {
  2844. EXPECT_EQ(4u, req.form.get_field_count("text1") +
  2845. req.form.get_field_count("text2") +
  2846. req.form.get_field_count("file3") +
  2847. req.form.get_field_count("file4"));
  2848. EXPECT_EQ(2u, req.form.get_file_count("file1") +
  2849. req.form.get_file_count("file2"));
  2850. ASSERT_TRUE(!req.form.has_file("???"));
  2851. ASSERT_TRUE(!req.form.has_field("???"));
  2852. ASSERT_TRUE(req.body.empty());
  2853. {
  2854. const auto &text = req.form.get_field("text1");
  2855. EXPECT_EQ("text default", text);
  2856. }
  2857. {
  2858. const auto &text = req.form.get_field("text2");
  2859. EXPECT_EQ("aωb", text);
  2860. }
  2861. {
  2862. const auto &file = req.form.get_file("file1");
  2863. EXPECT_EQ("hello.txt", file.filename);
  2864. EXPECT_EQ("text/plain", file.content_type);
  2865. EXPECT_EQ("h\ne\n\nl\nl\no\n", file.content);
  2866. }
  2867. {
  2868. const auto &file = req.form.get_file("file2");
  2869. EXPECT_EQ("world.json", file.filename);
  2870. EXPECT_EQ("application/json", file.content_type);
  2871. EXPECT_EQ("{\n \"world\", true\n}\n", file.content);
  2872. }
  2873. {
  2874. const auto &text = req.form.get_field("file3");
  2875. EXPECT_EQ(0u, text.size());
  2876. }
  2877. {
  2878. const auto &text = req.form.get_field("file4");
  2879. EXPECT_EQ(0u, text.size());
  2880. }
  2881. })
  2882. .Post("/multipart/multi_file_values",
  2883. [&](const Request &req, Response & /*res*/) {
  2884. EXPECT_EQ(3u, req.form.get_field_count("text") +
  2885. req.form.get_field_count("multi_text1"));
  2886. EXPECT_EQ(2u, req.form.get_file_count("multi_file1"));
  2887. ASSERT_TRUE(!req.form.has_file("???"));
  2888. ASSERT_TRUE(!req.form.has_field("???"));
  2889. ASSERT_TRUE(req.body.empty());
  2890. {
  2891. const auto &text = req.form.get_field("text");
  2892. EXPECT_EQ("default text", text);
  2893. }
  2894. {
  2895. const auto &text1_values = req.form.get_fields("multi_text1");
  2896. EXPECT_EQ(2u, text1_values.size());
  2897. EXPECT_EQ("aaaaa", text1_values[0]);
  2898. EXPECT_EQ("bbbbb", text1_values[1]);
  2899. }
  2900. {
  2901. const auto &file1_values = req.form.get_files("multi_file1");
  2902. EXPECT_EQ(2u, file1_values.size());
  2903. auto file1 = file1_values[0];
  2904. EXPECT_EQ(file1.filename, "hello.txt");
  2905. EXPECT_EQ(file1.content_type, "text/plain");
  2906. EXPECT_EQ("h\ne\n\nl\nl\no\n", file1.content);
  2907. auto file2 = file1_values[1];
  2908. EXPECT_EQ(file2.filename, "world.json");
  2909. EXPECT_EQ(file2.content_type, "application/json");
  2910. EXPECT_EQ("{\n \"world\", true\n}\n", file2.content);
  2911. }
  2912. })
  2913. .Post("/empty",
  2914. [&](const Request &req, Response &res) {
  2915. EXPECT_EQ(req.body, "");
  2916. EXPECT_EQ("text/plain", req.get_header_value("Content-Type"));
  2917. EXPECT_EQ("0", req.get_header_value("Content-Length"));
  2918. res.set_content("empty", "text/plain");
  2919. })
  2920. .Post("/empty-no-content-type",
  2921. [&](const Request &req, Response &res) {
  2922. EXPECT_EQ(req.body, "");
  2923. EXPECT_FALSE(req.has_header("Content-Type"));
  2924. EXPECT_EQ("0", req.get_header_value("Content-Length"));
  2925. res.set_content("empty-no-content-type", "text/plain");
  2926. })
  2927. .Post("/path-only",
  2928. [&](const Request &req, Response &res) {
  2929. EXPECT_EQ(req.body, "");
  2930. EXPECT_EQ("", req.get_header_value("Content-Type"));
  2931. EXPECT_EQ("0", req.get_header_value("Content-Length"));
  2932. res.set_content("path-only", "text/plain");
  2933. })
  2934. .Post("/path-headers-only",
  2935. [&](const Request &req, Response &res) {
  2936. EXPECT_EQ(req.body, "");
  2937. EXPECT_EQ("", req.get_header_value("Content-Type"));
  2938. EXPECT_EQ("0", req.get_header_value("Content-Length"));
  2939. EXPECT_EQ("world", req.get_header_value("hello"));
  2940. EXPECT_EQ("world2", req.get_header_value("hello2"));
  2941. res.set_content("path-headers-only", "text/plain");
  2942. })
  2943. .Post("/post-large",
  2944. [&](const Request &req, Response &res) {
  2945. EXPECT_EQ(req.body, LARGE_DATA);
  2946. res.set_content(req.body, "text/plain");
  2947. })
  2948. .Post("/post-loopback",
  2949. [&](const Request &, Response &res,
  2950. ContentReader const &content_reader) {
  2951. std::string body;
  2952. content_reader([&](const char *data, size_t data_length) {
  2953. body.append(data, data_length);
  2954. return true;
  2955. });
  2956. res.set_content(body, "text/plain");
  2957. })
  2958. .Put("/put-loopback",
  2959. [&](const Request &, Response &res,
  2960. ContentReader const &content_reader) {
  2961. std::string body;
  2962. content_reader([&](const char *data, size_t data_length) {
  2963. body.append(data, data_length);
  2964. return true;
  2965. });
  2966. res.set_content(body, "text/plain");
  2967. })
  2968. .Patch("/patch-loopback",
  2969. [&](const Request &, Response &res,
  2970. ContentReader const &content_reader) {
  2971. std::string body;
  2972. content_reader([&](const char *data, size_t data_length) {
  2973. body.append(data, data_length);
  2974. return true;
  2975. });
  2976. res.set_content(body, "text/plain");
  2977. })
  2978. .Put("/empty-no-content-type",
  2979. [&](const Request &req, Response &res) {
  2980. EXPECT_EQ(req.body, "");
  2981. EXPECT_FALSE(req.has_header("Content-Type"));
  2982. EXPECT_EQ("0", req.get_header_value("Content-Length"));
  2983. res.set_content("empty-no-content-type", "text/plain");
  2984. })
  2985. .Put("/put",
  2986. [&](const Request &req, Response &res) {
  2987. EXPECT_EQ(req.body, "PUT");
  2988. res.set_content(req.body, "text/plain");
  2989. })
  2990. .Put("/put-large",
  2991. [&](const Request &req, Response &res) {
  2992. EXPECT_EQ(req.body, LARGE_DATA);
  2993. res.set_content(req.body, "text/plain");
  2994. })
  2995. .Patch("/patch",
  2996. [&](const Request &req, Response &res) {
  2997. EXPECT_EQ(req.body, "PATCH");
  2998. res.set_content(req.body, "text/plain");
  2999. })
  3000. .Delete("/delete",
  3001. [&](const Request & /*req*/, Response &res) {
  3002. res.set_content("DELETE", "text/plain");
  3003. })
  3004. .Delete("/delete-body",
  3005. [&](const Request &req, Response &res) {
  3006. EXPECT_EQ(req.body, "content");
  3007. res.set_content(req.body, "text/plain");
  3008. })
  3009. .Options(R"(\*)",
  3010. [&](const Request & /*req*/, Response &res) {
  3011. res.set_header("Allow", "GET, POST, HEAD, OPTIONS");
  3012. })
  3013. .Get("/request-target",
  3014. [&](const Request &req, Response & /*res*/) {
  3015. EXPECT_EQ("/request-target?aaa=bbb&ccc=ddd", req.target);
  3016. EXPECT_EQ("bbb", req.get_param_value("aaa"));
  3017. EXPECT_EQ("ddd", req.get_param_value("ccc"));
  3018. })
  3019. .Get("/long-query-value",
  3020. [&](const Request &req, Response & /*res*/) {
  3021. EXPECT_EQ(LONG_QUERY_URL, req.target);
  3022. EXPECT_EQ(LONG_QUERY_VALUE, req.get_param_value("key"));
  3023. })
  3024. .Get("/too-long-query-value",
  3025. [&](const Request &req, Response & /*res*/) {
  3026. EXPECT_EQ(TOO_LONG_QUERY_URL, req.target);
  3027. EXPECT_EQ(TOO_LONG_QUERY_VALUE, req.get_param_value("key"));
  3028. })
  3029. .Get("/array-param",
  3030. [&](const Request &req, Response & /*res*/) {
  3031. EXPECT_EQ(3u, req.get_param_value_count("array"));
  3032. EXPECT_EQ("value1", req.get_param_value("array", 0));
  3033. EXPECT_EQ("value2", req.get_param_value("array", 1));
  3034. EXPECT_EQ("value3", req.get_param_value("array", 2));
  3035. })
  3036. .Post("/validate-no-multiple-headers",
  3037. [&](const Request &req, Response & /*res*/) {
  3038. EXPECT_EQ(1u, req.get_header_value_count("Content-Length"));
  3039. EXPECT_EQ("5", req.get_header_value("Content-Length"));
  3040. })
  3041. .Post("/content_receiver",
  3042. [&](const Request &req, Response &res,
  3043. const ContentReader &content_reader) {
  3044. if (req.is_multipart_form_data()) {
  3045. std::vector<FormData> items;
  3046. content_reader(
  3047. [&](const FormData &file) {
  3048. items.push_back(file);
  3049. return true;
  3050. },
  3051. [&](const char *data, size_t data_length) {
  3052. items.back().content.append(data, data_length);
  3053. return true;
  3054. });
  3055. EXPECT_EQ(5u, items.size());
  3056. {
  3057. const auto &file = get_file_value(items, "text1");
  3058. EXPECT_TRUE(file.filename.empty());
  3059. EXPECT_EQ("text default", file.content);
  3060. }
  3061. {
  3062. const auto &file = get_file_value(items, "text2");
  3063. EXPECT_TRUE(file.filename.empty());
  3064. EXPECT_EQ("aωb", file.content);
  3065. }
  3066. {
  3067. const auto &file = get_file_value(items, "file1");
  3068. EXPECT_EQ("hello.txt", file.filename);
  3069. EXPECT_EQ("text/plain", file.content_type);
  3070. EXPECT_EQ("h\ne\n\nl\nl\no\n", file.content);
  3071. }
  3072. {
  3073. const auto &file = get_file_value(items, "file2");
  3074. EXPECT_EQ("world.json", file.filename);
  3075. EXPECT_EQ("application/json", file.content_type);
  3076. EXPECT_EQ(R"({\n "world": true\n}\n)", file.content);
  3077. }
  3078. {
  3079. const auto &file = get_file_value(items, "file3");
  3080. EXPECT_TRUE(file.filename.empty());
  3081. EXPECT_EQ("application/octet-stream", file.content_type);
  3082. EXPECT_EQ(0u, file.content.size());
  3083. }
  3084. } else {
  3085. std::string body;
  3086. content_reader([&](const char *data, size_t data_length) {
  3087. EXPECT_EQ(7U, data_length);
  3088. body.append(data, data_length);
  3089. return true;
  3090. });
  3091. EXPECT_EQ(body, "content");
  3092. res.set_content(body, "text/plain");
  3093. }
  3094. })
  3095. .Put("/content_receiver",
  3096. [&](const Request & /*req*/, Response &res,
  3097. const ContentReader &content_reader) {
  3098. std::string body;
  3099. content_reader([&](const char *data, size_t data_length) {
  3100. body.append(data, data_length);
  3101. return true;
  3102. });
  3103. EXPECT_EQ(body, "content");
  3104. res.set_content(body, "text/plain");
  3105. })
  3106. .Patch("/content_receiver",
  3107. [&](const Request & /*req*/, Response &res,
  3108. const ContentReader &content_reader) {
  3109. std::string body;
  3110. content_reader([&](const char *data, size_t data_length) {
  3111. body.append(data, data_length);
  3112. return true;
  3113. });
  3114. EXPECT_EQ(body, "content");
  3115. res.set_content(body, "text/plain");
  3116. })
  3117. .Post("/query-string-and-body",
  3118. [&](const Request &req, Response & /*res*/) {
  3119. ASSERT_TRUE(req.has_param("key"));
  3120. EXPECT_EQ(req.get_param_value("key"), "value");
  3121. EXPECT_EQ(req.body, "content");
  3122. })
  3123. .Get("/last-request",
  3124. [&](const Request &req, Response & /*res*/) {
  3125. EXPECT_EQ("close", req.get_header_value("Connection"));
  3126. })
  3127. .Get(R"(/redirect/(\d+))",
  3128. [&](const Request &req, Response &res) {
  3129. auto num = std::stoi(req.matches[1]) + 1;
  3130. std::string url = "/redirect/" + std::to_string(num);
  3131. res.set_redirect(url);
  3132. })
  3133. .Post("/binary",
  3134. [&](const Request &req, Response &res) {
  3135. EXPECT_EQ(4U, req.body.size());
  3136. EXPECT_EQ("application/octet-stream",
  3137. req.get_header_value("Content-Type"));
  3138. EXPECT_EQ("4", req.get_header_value("Content-Length"));
  3139. res.set_content(req.body, "application/octet-stream");
  3140. })
  3141. .Put("/binary",
  3142. [&](const Request &req, Response &res) {
  3143. EXPECT_EQ(4U, req.body.size());
  3144. EXPECT_EQ("application/octet-stream",
  3145. req.get_header_value("Content-Type"));
  3146. EXPECT_EQ("4", req.get_header_value("Content-Length"));
  3147. res.set_content(req.body, "application/octet-stream");
  3148. })
  3149. .Patch("/binary",
  3150. [&](const Request &req, Response &res) {
  3151. EXPECT_EQ(4U, req.body.size());
  3152. EXPECT_EQ("application/octet-stream",
  3153. req.get_header_value("Content-Type"));
  3154. EXPECT_EQ("4", req.get_header_value("Content-Length"));
  3155. res.set_content(req.body, "application/octet-stream");
  3156. })
  3157. .Delete("/binary",
  3158. [&](const Request &req, Response &res) {
  3159. EXPECT_EQ(4U, req.body.size());
  3160. EXPECT_EQ("application/octet-stream",
  3161. req.get_header_value("Content-Type"));
  3162. EXPECT_EQ("4", req.get_header_value("Content-Length"));
  3163. res.set_content(req.body, "application/octet-stream");
  3164. })
  3165. .Get("/issue1772",
  3166. [&](const Request & /*req*/, Response &res) {
  3167. res.status = 401;
  3168. res.set_header("WWW-Authenticate", "Basic realm=123456");
  3169. })
  3170. .Delete("/issue609",
  3171. [](const httplib::Request &, httplib::Response &res,
  3172. const httplib::ContentReader &) {
  3173. res.set_content("ok", "text/plain");
  3174. })
  3175. #if defined(CPPHTTPLIB_ZLIB_SUPPORT) || defined(CPPHTTPLIB_BROTLI_SUPPORT) || \
  3176. defined(CPPHTTPLIB_ZSTD_SUPPORT)
  3177. .Get("/compress",
  3178. [&](const Request & /*req*/, Response &res) {
  3179. res.set_content(
  3180. "12345678901234567890123456789012345678901234567890123456789"
  3181. "01234567890123456789012345678901234567890",
  3182. "text/plain");
  3183. })
  3184. .Get("/nocompress",
  3185. [&](const Request & /*req*/, Response &res) {
  3186. res.set_content(
  3187. "12345678901234567890123456789012345678901234567890123456789"
  3188. "01234567890123456789012345678901234567890",
  3189. "application/octet-stream");
  3190. })
  3191. .Post("/compress-multipart",
  3192. [&](const Request &req, Response & /*res*/) {
  3193. EXPECT_EQ(2u, req.form.fields.size());
  3194. ASSERT_TRUE(!req.form.has_field("???"));
  3195. {
  3196. const auto &text = req.form.get_field("key1");
  3197. EXPECT_EQ("test", text);
  3198. }
  3199. {
  3200. const auto &text = req.form.get_field("key2");
  3201. EXPECT_EQ("--abcdefg123", text);
  3202. }
  3203. })
  3204. #endif
  3205. ;
  3206. persons_["john"] = "programmer";
  3207. t_ = thread([&]() { ASSERT_TRUE(svr_.listen(HOST, PORT)); });
  3208. svr_.wait_until_ready();
  3209. }
  3210. virtual void TearDown() {
  3211. svr_.stop();
  3212. if (!request_threads_.empty()) {
  3213. std::this_thread::sleep_for(std::chrono::seconds(1));
  3214. for (auto &t : request_threads_) {
  3215. t.join();
  3216. }
  3217. }
  3218. t_.join();
  3219. }
  3220. map<string, string> persons_;
  3221. #ifdef CPPHTTPLIB_SSL_ENABLED
  3222. SSLClient cli_;
  3223. SSLServer svr_;
  3224. #else
  3225. Client cli_;
  3226. Server svr_;
  3227. #endif
  3228. thread t_;
  3229. std::vector<thread> request_threads_;
  3230. };
  3231. TEST_F(ServerTest, GetMethod200) {
  3232. auto res = cli_.Get("/hi");
  3233. ASSERT_TRUE(res);
  3234. EXPECT_EQ("HTTP/1.1", res->version);
  3235. EXPECT_EQ(StatusCode::OK_200, res->status);
  3236. EXPECT_EQ("OK", res->reason);
  3237. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  3238. EXPECT_EQ(1U, res->get_header_value_count("Content-Type"));
  3239. EXPECT_EQ("Hello World!", res->body);
  3240. }
  3241. TEST_F(ServerTest, GetEmptyFile) {
  3242. auto res = cli_.Get("/empty_file");
  3243. ASSERT_TRUE(res);
  3244. EXPECT_EQ(StatusCode::OK_200, res->status);
  3245. EXPECT_EQ("application/octet-stream", res->get_header_value("Content-Type"));
  3246. EXPECT_EQ(0, std::stoi(res->get_header_value("Content-Length")));
  3247. EXPECT_EQ("", res->body);
  3248. }
  3249. TEST_F(ServerTest, GetFileContent) {
  3250. auto res = cli_.Get("/file_content");
  3251. ASSERT_TRUE(res);
  3252. EXPECT_EQ(StatusCode::OK_200, res->status);
  3253. EXPECT_EQ("text/html", res->get_header_value("Content-Type"));
  3254. EXPECT_EQ(9, std::stoi(res->get_header_value("Content-Length")));
  3255. EXPECT_EQ("test.html", res->body);
  3256. }
  3257. TEST_F(ServerTest, GetFileContentWithRange) {
  3258. auto res = cli_.Get("/file_content", {{make_range_header({{1, 3}})}});
  3259. ASSERT_TRUE(res);
  3260. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  3261. EXPECT_EQ("text/html", res->get_header_value("Content-Type"));
  3262. EXPECT_EQ("bytes 1-3/9", res->get_header_value("Content-Range"));
  3263. EXPECT_EQ(3, std::stoi(res->get_header_value("Content-Length")));
  3264. EXPECT_EQ("est", res->body);
  3265. }
  3266. TEST_F(ServerTest, GetFileContentWithContentType) {
  3267. auto res = cli_.Get("/file_content_with_content_type");
  3268. ASSERT_TRUE(res);
  3269. EXPECT_EQ(StatusCode::OK_200, res->status);
  3270. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  3271. EXPECT_EQ(5, std::stoi(res->get_header_value("Content-Length")));
  3272. EXPECT_EQ("file\n", res->body);
  3273. }
  3274. TEST_F(ServerTest, GetInvalidFileContent) {
  3275. auto res = cli_.Get("/invalid_file_content");
  3276. ASSERT_TRUE(res);
  3277. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3278. }
  3279. TEST_F(ServerTest, GetMethod200withPercentEncoding) {
  3280. auto res = cli_.Get("/%68%69"); // auto res = cli_.Get("/hi");
  3281. ASSERT_TRUE(res);
  3282. EXPECT_EQ("HTTP/1.1", res->version);
  3283. EXPECT_EQ(StatusCode::OK_200, res->status);
  3284. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  3285. EXPECT_EQ(1U, res->get_header_value_count("Content-Type"));
  3286. EXPECT_EQ("Hello World!", res->body);
  3287. }
  3288. TEST_F(ServerTest, GetMethod302) {
  3289. auto res = cli_.Get("/");
  3290. ASSERT_TRUE(res);
  3291. EXPECT_EQ(StatusCode::Found_302, res->status);
  3292. EXPECT_EQ("/hi", res->get_header_value("Location"));
  3293. }
  3294. TEST_F(ServerTest, GetMethod302Redirect) {
  3295. cli_.set_follow_location(true);
  3296. auto res = cli_.Get("/");
  3297. ASSERT_TRUE(res);
  3298. EXPECT_EQ(StatusCode::OK_200, res->status);
  3299. EXPECT_EQ("Hello World!", res->body);
  3300. EXPECT_EQ("/hi", res->location);
  3301. }
  3302. TEST_F(ServerTest, GetMethod404) {
  3303. auto res = cli_.Get("/invalid");
  3304. ASSERT_TRUE(res);
  3305. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3306. }
  3307. TEST_F(ServerTest, HeadMethod200) {
  3308. auto res = cli_.Head("/hi");
  3309. ASSERT_TRUE(res);
  3310. EXPECT_EQ(StatusCode::OK_200, res->status);
  3311. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  3312. EXPECT_TRUE(res->body.empty());
  3313. }
  3314. TEST_F(ServerTest, HeadMethod200Static) {
  3315. auto res = cli_.Head("/mount/dir/index.html");
  3316. ASSERT_TRUE(res);
  3317. EXPECT_EQ(StatusCode::OK_200, res->status);
  3318. EXPECT_EQ("text/html", res->get_header_value("Content-Type"));
  3319. EXPECT_EQ(104, std::stoi(res->get_header_value("Content-Length")));
  3320. EXPECT_TRUE(res->body.empty());
  3321. }
  3322. TEST_F(ServerTest, HeadMethod404) {
  3323. auto res = cli_.Head("/invalid");
  3324. ASSERT_TRUE(res);
  3325. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3326. EXPECT_TRUE(res->body.empty());
  3327. }
  3328. TEST_F(ServerTest, GetMethodPersonJohn) {
  3329. auto res = cli_.Get("/person/john");
  3330. ASSERT_TRUE(res);
  3331. EXPECT_EQ(StatusCode::OK_200, res->status);
  3332. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  3333. EXPECT_EQ("programmer", res->body);
  3334. }
  3335. TEST_F(ServerTest, PostMethod1) {
  3336. auto res = cli_.Get("/person/john1");
  3337. ASSERT_TRUE(res);
  3338. ASSERT_EQ(StatusCode::NotFound_404, res->status);
  3339. res = cli_.Post("/person", "name=john1&note=coder",
  3340. "application/x-www-form-urlencoded");
  3341. ASSERT_TRUE(res);
  3342. ASSERT_EQ(StatusCode::OK_200, res->status);
  3343. res = cli_.Get("/person/john1");
  3344. ASSERT_TRUE(res);
  3345. ASSERT_EQ(StatusCode::OK_200, res->status);
  3346. ASSERT_EQ("text/plain", res->get_header_value("Content-Type"));
  3347. ASSERT_EQ("coder", res->body);
  3348. }
  3349. TEST_F(ServerTest, PostMethod2) {
  3350. auto res = cli_.Get("/person/john2");
  3351. ASSERT_TRUE(res);
  3352. ASSERT_EQ(StatusCode::NotFound_404, res->status);
  3353. Params params;
  3354. params.emplace("name", "john2");
  3355. params.emplace("note", "coder");
  3356. res = cli_.Post("/person", params);
  3357. ASSERT_TRUE(res);
  3358. ASSERT_EQ(StatusCode::OK_200, res->status);
  3359. res = cli_.Get("/person/john2");
  3360. ASSERT_TRUE(res);
  3361. ASSERT_EQ(StatusCode::OK_200, res->status);
  3362. ASSERT_EQ("text/plain", res->get_header_value("Content-Type"));
  3363. ASSERT_EQ("coder", res->body);
  3364. }
  3365. TEST_F(ServerTest, PutMethod3) {
  3366. auto res = cli_.Get("/person/john3");
  3367. ASSERT_TRUE(res);
  3368. ASSERT_EQ(StatusCode::NotFound_404, res->status);
  3369. Params params;
  3370. params.emplace("name", "john3");
  3371. params.emplace("note", "coder");
  3372. res = cli_.Put("/person", params);
  3373. ASSERT_TRUE(res);
  3374. ASSERT_EQ(StatusCode::OK_200, res->status);
  3375. res = cli_.Get("/person/john3");
  3376. ASSERT_TRUE(res);
  3377. ASSERT_EQ(StatusCode::OK_200, res->status);
  3378. ASSERT_EQ("text/plain", res->get_header_value("Content-Type"));
  3379. ASSERT_EQ("coder", res->body);
  3380. }
  3381. TEST_F(ServerTest, DeleteMethod1) {
  3382. auto res = cli_.Get("/person/john4");
  3383. ASSERT_TRUE(res);
  3384. ASSERT_EQ(StatusCode::NotFound_404, res->status);
  3385. Params params;
  3386. params.emplace("name", "john4");
  3387. params.emplace("note", "coder");
  3388. res = cli_.Post("/person", params);
  3389. ASSERT_TRUE(res);
  3390. ASSERT_EQ(StatusCode::OK_200, res->status);
  3391. res = cli_.Get("/person/john4");
  3392. ASSERT_TRUE(res);
  3393. ASSERT_EQ(StatusCode::OK_200, res->status);
  3394. ASSERT_EQ("text/plain", res->get_header_value("Content-Type"));
  3395. ASSERT_EQ("coder", res->body);
  3396. Params delete_params;
  3397. delete_params.emplace("name", "john4");
  3398. res = cli_.Delete("/person", delete_params);
  3399. ASSERT_TRUE(res);
  3400. ASSERT_EQ(StatusCode::OK_200, res->status);
  3401. ASSERT_EQ("DELETED", res->body);
  3402. res = cli_.Get("/person/john4");
  3403. ASSERT_TRUE(res);
  3404. ASSERT_EQ(StatusCode::NotFound_404, res->status);
  3405. }
  3406. TEST_F(ServerTest, DeleteMethod2) {
  3407. auto res = cli_.Get("/person/john5");
  3408. ASSERT_TRUE(res);
  3409. ASSERT_EQ(StatusCode::NotFound_404, res->status);
  3410. Params params;
  3411. params.emplace("name", "john5");
  3412. params.emplace("note", "developer");
  3413. res = cli_.Post("/person", params);
  3414. ASSERT_TRUE(res);
  3415. ASSERT_EQ(StatusCode::OK_200, res->status);
  3416. res = cli_.Get("/person/john5");
  3417. ASSERT_TRUE(res);
  3418. ASSERT_EQ(StatusCode::OK_200, res->status);
  3419. ASSERT_EQ("text/plain", res->get_header_value("Content-Type"));
  3420. ASSERT_EQ("developer", res->body);
  3421. Params delete_params;
  3422. delete_params.emplace("name", "john5");
  3423. Headers headers;
  3424. headers.emplace("Custom-Header", "test-value");
  3425. res = cli_.Delete("/person", headers, delete_params);
  3426. ASSERT_TRUE(res);
  3427. ASSERT_EQ(StatusCode::OK_200, res->status);
  3428. ASSERT_EQ("DELETED", res->body);
  3429. res = cli_.Get("/person/john5");
  3430. ASSERT_TRUE(res);
  3431. ASSERT_EQ(StatusCode::NotFound_404, res->status);
  3432. }
  3433. TEST_F(ServerTest, DeleteMethod3) {
  3434. auto res = cli_.Get("/person/john6");
  3435. ASSERT_TRUE(res);
  3436. ASSERT_EQ(StatusCode::NotFound_404, res->status);
  3437. Params params;
  3438. params.emplace("name", "john6");
  3439. params.emplace("note", "tester");
  3440. res = cli_.Post("/person", params);
  3441. ASSERT_TRUE(res);
  3442. ASSERT_EQ(StatusCode::OK_200, res->status);
  3443. res = cli_.Get("/person/john6");
  3444. ASSERT_TRUE(res);
  3445. ASSERT_EQ(StatusCode::OK_200, res->status);
  3446. ASSERT_EQ("text/plain", res->get_header_value("Content-Type"));
  3447. ASSERT_EQ("tester", res->body);
  3448. Params delete_params;
  3449. delete_params.emplace("name", "john6");
  3450. Headers headers;
  3451. headers.emplace("Custom-Header", "test-value");
  3452. res = cli_.Delete("/person", headers, delete_params, nullptr);
  3453. ASSERT_TRUE(res);
  3454. ASSERT_EQ(StatusCode::OK_200, res->status);
  3455. ASSERT_EQ("DELETED", res->body);
  3456. res = cli_.Get("/person/john6");
  3457. ASSERT_TRUE(res);
  3458. ASSERT_EQ(StatusCode::NotFound_404, res->status);
  3459. }
  3460. TEST_F(ServerTest, PostWwwFormUrlEncodedJson) {
  3461. Params params;
  3462. params.emplace("json", JSON_DATA);
  3463. auto res = cli_.Post("/x-www-form-urlencoded-json", params);
  3464. ASSERT_TRUE(res);
  3465. ASSERT_EQ(StatusCode::OK_200, res->status);
  3466. ASSERT_EQ(JSON_DATA, res->body);
  3467. }
  3468. TEST_F(ServerTest, PostEmptyContent) {
  3469. auto res = cli_.Post("/empty", "", "text/plain");
  3470. ASSERT_TRUE(res);
  3471. ASSERT_EQ(StatusCode::OK_200, res->status);
  3472. ASSERT_EQ("empty", res->body);
  3473. }
  3474. TEST_F(ServerTest, PostEmptyContentWithNoContentType) {
  3475. auto res = cli_.Post("/empty-no-content-type");
  3476. ASSERT_TRUE(res);
  3477. ASSERT_EQ(StatusCode::OK_200, res->status);
  3478. ASSERT_EQ("empty-no-content-type", res->body);
  3479. }
  3480. TEST_F(ServerTest, PostPathOnly) {
  3481. auto res = cli_.Post("/path-only");
  3482. ASSERT_TRUE(res);
  3483. ASSERT_EQ(StatusCode::OK_200, res->status);
  3484. ASSERT_EQ("path-only", res->body);
  3485. }
  3486. TEST_F(ServerTest, PostPathAndHeadersOnly) {
  3487. auto res = cli_.Post("/path-headers-only",
  3488. Headers({{"hello", "world"}, {"hello2", "world2"}}));
  3489. ASSERT_TRUE(res);
  3490. ASSERT_EQ(StatusCode::OK_200, res->status);
  3491. ASSERT_EQ("path-headers-only", res->body);
  3492. }
  3493. TEST_F(ServerTest, PostLarge) {
  3494. auto res = cli_.Post("/post-large", LARGE_DATA, "text/plain");
  3495. ASSERT_TRUE(res);
  3496. ASSERT_EQ(StatusCode::OK_200, res->status);
  3497. EXPECT_EQ(LARGE_DATA, res->body);
  3498. }
  3499. TEST_F(ServerTest, PutEmptyContentWithNoContentType) {
  3500. auto res = cli_.Put("/empty-no-content-type");
  3501. ASSERT_TRUE(res);
  3502. ASSERT_EQ(StatusCode::OK_200, res->status);
  3503. ASSERT_EQ("empty-no-content-type", res->body);
  3504. }
  3505. TEST_F(ServerTest, GetMethodDir) {
  3506. auto res = cli_.Get("/dir/");
  3507. ASSERT_TRUE(res);
  3508. EXPECT_EQ(StatusCode::OK_200, res->status);
  3509. EXPECT_EQ("text/html", res->get_header_value("Content-Type"));
  3510. auto body = R"(<html>
  3511. <head>
  3512. </head>
  3513. <body>
  3514. <a href="/dir/test.html">Test</a>
  3515. <a href="/hi">hi</a>
  3516. </body>
  3517. </html>
  3518. )";
  3519. EXPECT_EQ(body, res->body);
  3520. }
  3521. TEST_F(ServerTest, GetMethodDirTest) {
  3522. auto res = cli_.Get("/dir/test.html");
  3523. ASSERT_TRUE(res);
  3524. EXPECT_EQ(StatusCode::OK_200, res->status);
  3525. EXPECT_EQ("text/html", res->get_header_value("Content-Type"));
  3526. EXPECT_EQ("test.html", res->body);
  3527. }
  3528. TEST_F(ServerTest, GetMethodDirTestWithDoubleDots) {
  3529. auto res = cli_.Get("/dir/../dir/test.html");
  3530. ASSERT_TRUE(res);
  3531. EXPECT_EQ(StatusCode::OK_200, res->status);
  3532. EXPECT_EQ("text/html", res->get_header_value("Content-Type"));
  3533. EXPECT_EQ("test.html", res->body);
  3534. }
  3535. TEST_F(ServerTest, GetMethodInvalidPath) {
  3536. auto res = cli_.Get("/dir/../test.html");
  3537. ASSERT_TRUE(res);
  3538. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3539. }
  3540. TEST_F(ServerTest, GetMethodOutOfBaseDir) {
  3541. auto res = cli_.Get("/../www/dir/test.html");
  3542. ASSERT_TRUE(res);
  3543. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3544. }
  3545. TEST_F(ServerTest, GetMethodOutOfBaseDir2) {
  3546. auto res = cli_.Get("/dir/../../www/dir/test.html");
  3547. ASSERT_TRUE(res);
  3548. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3549. }
  3550. TEST_F(ServerTest, GetMethodDirMountTest) {
  3551. auto res = cli_.Get("/mount/dir/test.html");
  3552. ASSERT_TRUE(res);
  3553. EXPECT_EQ(StatusCode::OK_200, res->status);
  3554. EXPECT_EQ("text/html", res->get_header_value("Content-Type"));
  3555. EXPECT_EQ("test.html", res->body);
  3556. }
  3557. TEST_F(ServerTest, GetMethodDirMountTestWithDoubleDots) {
  3558. auto res = cli_.Get("/mount/dir/../dir/test.html");
  3559. ASSERT_TRUE(res);
  3560. EXPECT_EQ(StatusCode::OK_200, res->status);
  3561. EXPECT_EQ("text/html", res->get_header_value("Content-Type"));
  3562. EXPECT_EQ("test.html", res->body);
  3563. }
  3564. TEST_F(ServerTest, GetMethodInvalidMountPath) {
  3565. auto res = cli_.Get("/mount/dir/../test.html");
  3566. ASSERT_TRUE(res);
  3567. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3568. }
  3569. TEST_F(ServerTest, GetMethodEmbeddedNUL) {
  3570. auto res = cli_.Get("/mount/dir/test.html%00.js");
  3571. ASSERT_TRUE(res);
  3572. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3573. }
  3574. TEST_F(ServerTest, GetMethodOutOfBaseDirMount) {
  3575. auto res = cli_.Get("/mount/../www2/dir/test.html");
  3576. ASSERT_TRUE(res);
  3577. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3578. }
  3579. TEST_F(ServerTest, GetMethodOutOfBaseDirMount2) {
  3580. auto res = cli_.Get("/mount/dir/../../www2/dir/test.html");
  3581. ASSERT_TRUE(res);
  3582. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3583. }
  3584. TEST_F(ServerTest, GetMethodOutOfBaseDirMountWithBackslash) {
  3585. auto res = cli_.Get("/mount/%2e%2e%5c/www2/dir/test.html");
  3586. ASSERT_TRUE(res);
  3587. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3588. }
  3589. TEST_F(ServerTest, PostMethod303) {
  3590. auto res = cli_.Post("/1", "body", "text/plain");
  3591. ASSERT_TRUE(res);
  3592. EXPECT_EQ(StatusCode::SeeOther_303, res->status);
  3593. EXPECT_EQ("/2", res->get_header_value("Location"));
  3594. }
  3595. TEST_F(ServerTest, PostMethod303Redirect) {
  3596. cli_.set_follow_location(true);
  3597. auto res = cli_.Post("/1", "body", "text/plain");
  3598. ASSERT_TRUE(res);
  3599. EXPECT_EQ(StatusCode::OK_200, res->status);
  3600. EXPECT_EQ("redirected.", res->body);
  3601. EXPECT_EQ("/2", res->location);
  3602. }
  3603. TEST_F(ServerTest, UserDefinedMIMETypeMapping) {
  3604. auto res = cli_.Get("/dir/test.abcde");
  3605. ASSERT_TRUE(res);
  3606. EXPECT_EQ(StatusCode::OK_200, res->status);
  3607. EXPECT_EQ("text/abcde", res->get_header_value("Content-Type"));
  3608. EXPECT_EQ("abcde", res->body);
  3609. }
  3610. TEST_F(ServerTest, StaticFileRange) {
  3611. auto res = cli_.Get("/dir/test.abcde", {{make_range_header({{2, 3}})}});
  3612. ASSERT_TRUE(res);
  3613. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  3614. EXPECT_EQ("text/abcde", res->get_header_value("Content-Type"));
  3615. EXPECT_EQ("2", res->get_header_value("Content-Length"));
  3616. EXPECT_EQ(true, res->has_header("Content-Range"));
  3617. EXPECT_EQ("bytes 2-3/5", res->get_header_value("Content-Range"));
  3618. EXPECT_EQ(std::string("cd"), res->body);
  3619. }
  3620. TEST_F(ServerTest, StaticFileRanges) {
  3621. auto res =
  3622. cli_.Get("/dir/test.abcde", {{make_range_header({{1, 2}, {4, -1}})}});
  3623. ASSERT_TRUE(res);
  3624. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  3625. EXPECT_TRUE(
  3626. res->get_header_value("Content-Type")
  3627. .find(
  3628. "multipart/byteranges; boundary=--cpp-httplib-multipart-data-") ==
  3629. 0);
  3630. EXPECT_EQ("266", res->get_header_value("Content-Length"));
  3631. }
  3632. TEST_F(ServerTest, StaticFileRangeHead) {
  3633. auto res = cli_.Head("/dir/test.abcde", {{make_range_header({{2, 3}})}});
  3634. ASSERT_TRUE(res);
  3635. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  3636. EXPECT_EQ("text/abcde", res->get_header_value("Content-Type"));
  3637. EXPECT_EQ("2", res->get_header_value("Content-Length"));
  3638. EXPECT_EQ(true, res->has_header("Content-Range"));
  3639. EXPECT_EQ("bytes 2-3/5", res->get_header_value("Content-Range"));
  3640. }
  3641. TEST_F(ServerTest, StaticFileRangeBigFile) {
  3642. auto res = cli_.Get("/dir/1MB.txt", {{make_range_header({{-1, 5}})}});
  3643. ASSERT_TRUE(res);
  3644. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  3645. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  3646. EXPECT_EQ("5", res->get_header_value("Content-Length"));
  3647. EXPECT_EQ(true, res->has_header("Content-Range"));
  3648. EXPECT_EQ("bytes 1048571-1048575/1048576",
  3649. res->get_header_value("Content-Range"));
  3650. EXPECT_EQ("LAST\n", res->body);
  3651. }
  3652. TEST_F(ServerTest, StaticFileRangeBigFile2) {
  3653. auto res = cli_.Get("/dir/1MB.txt", {{make_range_header({{1, 4097}})}});
  3654. ASSERT_TRUE(res);
  3655. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  3656. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  3657. EXPECT_EQ("4097", res->get_header_value("Content-Length"));
  3658. EXPECT_EQ(true, res->has_header("Content-Range"));
  3659. EXPECT_EQ("bytes 1-4097/1048576", res->get_header_value("Content-Range"));
  3660. }
  3661. TEST_F(ServerTest, StaticFileBigFile) {
  3662. auto res = cli_.Get("/dir/1MB.txt");
  3663. ASSERT_TRUE(res);
  3664. EXPECT_EQ(StatusCode::OK_200, res->status);
  3665. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  3666. EXPECT_EQ("1048576", res->get_header_value("Content-Length"));
  3667. }
  3668. TEST_F(ServerTest, InvalidBaseDirMount) {
  3669. EXPECT_EQ(false, svr_.set_mount_point("invalid_mount_point", "./www3"));
  3670. }
  3671. TEST_F(ServerTest, Binary) {
  3672. std::vector<char> binary{0x00, 0x01, 0x02, 0x03};
  3673. auto res = cli_.Post("/binary", binary.data(), binary.size(),
  3674. "application/octet-stream");
  3675. ASSERT_TRUE(res);
  3676. ASSERT_EQ(StatusCode::OK_200, res->status);
  3677. ASSERT_EQ(4U, res->body.size());
  3678. res = cli_.Put("/binary", binary.data(), binary.size(),
  3679. "application/octet-stream");
  3680. ASSERT_TRUE(res);
  3681. ASSERT_EQ(StatusCode::OK_200, res->status);
  3682. ASSERT_EQ(4U, res->body.size());
  3683. res = cli_.Patch("/binary", binary.data(), binary.size(),
  3684. "application/octet-stream");
  3685. ASSERT_TRUE(res);
  3686. ASSERT_EQ(StatusCode::OK_200, res->status);
  3687. ASSERT_EQ(4U, res->body.size());
  3688. res = cli_.Delete("/binary", binary.data(), binary.size(),
  3689. "application/octet-stream");
  3690. ASSERT_TRUE(res);
  3691. ASSERT_EQ(StatusCode::OK_200, res->status);
  3692. ASSERT_EQ(4U, res->body.size());
  3693. }
  3694. TEST_F(ServerTest, BinaryString) {
  3695. auto binary = std::string("\x00\x01\x02\x03", 4);
  3696. auto res = cli_.Post("/binary", binary, "application/octet-stream");
  3697. ASSERT_TRUE(res);
  3698. ASSERT_EQ(StatusCode::OK_200, res->status);
  3699. ASSERT_EQ(4U, res->body.size());
  3700. res = cli_.Put("/binary", binary, "application/octet-stream");
  3701. ASSERT_TRUE(res);
  3702. ASSERT_EQ(StatusCode::OK_200, res->status);
  3703. ASSERT_EQ(4U, res->body.size());
  3704. res = cli_.Patch("/binary", binary, "application/octet-stream");
  3705. ASSERT_TRUE(res);
  3706. ASSERT_EQ(StatusCode::OK_200, res->status);
  3707. ASSERT_EQ(4U, res->body.size());
  3708. res = cli_.Delete("/binary", binary, "application/octet-stream");
  3709. ASSERT_TRUE(res);
  3710. ASSERT_EQ(StatusCode::OK_200, res->status);
  3711. ASSERT_EQ(4U, res->body.size());
  3712. }
  3713. TEST_F(ServerTest, EmptyRequest) {
  3714. auto res = cli_.Get("");
  3715. ASSERT_TRUE(!res);
  3716. EXPECT_EQ(Error::Connection, res.error());
  3717. }
  3718. TEST_F(ServerTest, LongRequest) {
  3719. std::string request;
  3720. for (size_t i = 0; i < 545; i++) {
  3721. request += "/TooLongRequest";
  3722. }
  3723. request += "OK";
  3724. auto res = cli_.Get(request.c_str());
  3725. ASSERT_TRUE(res);
  3726. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3727. }
  3728. TEST_F(ServerTest, TooLongRequest) {
  3729. std::string request;
  3730. for (size_t i = 0; i < 546; i++) {
  3731. request += "/TooLongRequest";
  3732. }
  3733. request += "_NG";
  3734. auto start = std::chrono::high_resolution_clock::now();
  3735. cli_.set_keep_alive(true);
  3736. auto res = cli_.Get(request.c_str());
  3737. auto end = std::chrono::high_resolution_clock::now();
  3738. auto elapsed =
  3739. std::chrono::duration_cast<std::chrono::milliseconds>(end - start)
  3740. .count();
  3741. ASSERT_TRUE(res);
  3742. EXPECT_EQ(StatusCode::UriTooLong_414, res->status);
  3743. EXPECT_LE(elapsed, 1000);
  3744. EXPECT_EQ("close", res->get_header_value("Connection"));
  3745. EXPECT_FALSE(cli_.is_socket_open());
  3746. }
  3747. TEST_F(ServerTest, AlmostTooLongRequest) {
  3748. // test for #2046 - URI length check shouldn't include other content on req
  3749. // line URI is max URI length, minus 14 other chars in req line (GET, space,
  3750. // leading /, space, HTTP/1.1)
  3751. std::string request =
  3752. "/" + string(CPPHTTPLIB_REQUEST_URI_MAX_LENGTH - 14, 'A');
  3753. auto res = cli_.Get(request.c_str());
  3754. ASSERT_TRUE(res) << "Error: " << to_string(res.error());
  3755. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3756. }
  3757. TEST_F(ServerTest, LongHeader) {
  3758. Request req;
  3759. req.method = "GET";
  3760. req.path = "/hi";
  3761. std::string host_and_port;
  3762. host_and_port += HOST;
  3763. host_and_port += ":";
  3764. host_and_port += std::to_string(PORT);
  3765. req.headers.emplace("Host", host_and_port.c_str());
  3766. req.headers.emplace("Accept", "*/*");
  3767. req.headers.emplace("User-Agent", "cpp-httplib/0.1");
  3768. req.headers.emplace(
  3769. "Header-Name",
  3770. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3771. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3772. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3773. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3774. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3775. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3776. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3777. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3778. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3779. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3780. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3781. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3782. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3783. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3784. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3785. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3786. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3787. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3788. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3789. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3790. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3791. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3792. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3793. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3794. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3795. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3796. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3797. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3798. "@@@@@@@@@@@@@@@@");
  3799. auto res = std::make_shared<Response>();
  3800. auto error = Error::Success;
  3801. auto ret = cli_.send(req, *res, error);
  3802. ASSERT_TRUE(ret);
  3803. EXPECT_EQ(StatusCode::OK_200, res->status);
  3804. }
  3805. TEST_F(ServerTest, LongQueryValue) {
  3806. auto start = std::chrono::high_resolution_clock::now();
  3807. cli_.set_keep_alive(true);
  3808. auto res = cli_.Get(LONG_QUERY_URL.c_str());
  3809. auto end = std::chrono::high_resolution_clock::now();
  3810. auto elapsed =
  3811. std::chrono::duration_cast<std::chrono::milliseconds>(end - start)
  3812. .count();
  3813. ASSERT_TRUE(res);
  3814. EXPECT_EQ(StatusCode::UriTooLong_414, res->status);
  3815. EXPECT_LE(elapsed, 1000);
  3816. EXPECT_EQ("close", res->get_header_value("Connection"));
  3817. EXPECT_FALSE(cli_.is_socket_open());
  3818. }
  3819. TEST_F(ServerTest, TooLongQueryValue) {
  3820. auto res = cli_.Get(TOO_LONG_QUERY_URL.c_str());
  3821. ASSERT_FALSE(res);
  3822. EXPECT_EQ(Error::Read, res.error());
  3823. }
  3824. TEST_F(ServerTest, TooLongHeader) {
  3825. Request req;
  3826. req.method = "GET";
  3827. req.path = "/hi";
  3828. std::string host_and_port;
  3829. host_and_port += HOST;
  3830. host_and_port += ":";
  3831. host_and_port += std::to_string(PORT);
  3832. req.headers.emplace("Host", host_and_port.c_str());
  3833. req.headers.emplace("Accept", "*/*");
  3834. req.headers.emplace("User-Agent", "cpp-httplib/0.1");
  3835. req.headers.emplace(
  3836. "Header-Name",
  3837. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3838. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3839. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3840. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3841. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3842. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3843. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3844. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3845. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3846. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3847. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3848. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3849. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3850. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3851. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3852. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3853. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3854. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3855. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3856. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3857. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3858. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3859. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3860. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3861. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3862. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3863. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3864. "@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"
  3865. "@@@@@@@@@@@@@@@@@");
  3866. auto res = std::make_shared<Response>();
  3867. auto error = Error::Success;
  3868. auto ret = cli_.send(req, *res, error);
  3869. ASSERT_TRUE(ret);
  3870. EXPECT_EQ(StatusCode::OK_200, res->status);
  3871. }
  3872. TEST_F(ServerTest, HeaderCountAtLimit) {
  3873. // Test with headers just under the 100 limit
  3874. httplib::Headers headers;
  3875. // Add 95 custom headers (the client will add Host, User-Agent, Accept, etc.)
  3876. // This should keep us just under the 100 header limit
  3877. for (int i = 0; i < 95; i++) {
  3878. std::string name = "X-Test-Header-" + std::to_string(i);
  3879. std::string value = "value" + std::to_string(i);
  3880. headers.emplace(name, value);
  3881. }
  3882. // This should work fine as we're under the limit
  3883. auto res = cli_.Get("/hi", headers);
  3884. EXPECT_TRUE(res);
  3885. if (res) { EXPECT_EQ(StatusCode::OK_200, res->status); }
  3886. }
  3887. TEST_F(ServerTest, HeaderCountExceedsLimit) {
  3888. // Test with many headers to exceed the 100 limit
  3889. httplib::Headers headers;
  3890. // Add 150 headers to definitely exceed the 100 limit
  3891. for (int i = 0; i < 150; i++) {
  3892. std::string name = "X-Test-Header-" + std::to_string(i);
  3893. std::string value = "value" + std::to_string(i);
  3894. headers.emplace(name, value);
  3895. }
  3896. // This should fail due to exceeding header count limit
  3897. cli_.set_keep_alive(true);
  3898. auto res = cli_.Get("/hi", headers);
  3899. // The server should respond with 400 Bad Request
  3900. ASSERT_TRUE(res);
  3901. EXPECT_EQ(StatusCode::BadRequest_400, res->status);
  3902. EXPECT_EQ("close", res->get_header_value("Connection"));
  3903. EXPECT_FALSE(cli_.is_socket_open());
  3904. }
  3905. TEST_F(ServerTest, PercentEncoding) {
  3906. auto res = cli_.Get("/e%6edwith%");
  3907. ASSERT_TRUE(res);
  3908. EXPECT_EQ(StatusCode::OK_200, res->status);
  3909. }
  3910. TEST_F(ServerTest, PercentEncodingUnicode) {
  3911. auto res = cli_.Get("/e%u006edwith%");
  3912. ASSERT_TRUE(res);
  3913. EXPECT_EQ(StatusCode::OK_200, res->status);
  3914. }
  3915. TEST_F(ServerTest, InvalidPercentEncoding) {
  3916. auto res = cli_.Get("/%endwith%");
  3917. ASSERT_TRUE(res);
  3918. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3919. }
  3920. TEST_F(ServerTest, InvalidPercentEncodingUnicode) {
  3921. auto res = cli_.Get("/%uendwith%");
  3922. ASSERT_TRUE(res);
  3923. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3924. }
  3925. TEST_F(ServerTest, EndWithPercentCharacterInQuery) {
  3926. auto res = cli_.Get("/hello?aaa=bbb%");
  3927. ASSERT_TRUE(res);
  3928. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  3929. }
  3930. TEST_F(ServerTest, PlusSignEncoding) {
  3931. auto res = cli_.Get("/a+%2Bb?a %2bb=a %2Bb");
  3932. ASSERT_TRUE(res);
  3933. EXPECT_EQ(StatusCode::OK_200, res->status);
  3934. EXPECT_EQ("a +b", res->body);
  3935. }
  3936. TEST_F(ServerTest, HeaderCountSecurityTest) {
  3937. // This test simulates a potential DoS attack using many headers
  3938. // to verify our security fix prevents memory exhaustion
  3939. httplib::Headers attack_headers;
  3940. // Attempt to add many headers like an attacker would (200 headers to far
  3941. // exceed limit)
  3942. for (int i = 0; i < 200; i++) {
  3943. std::string name = "X-Attack-Header-" + std::to_string(i);
  3944. std::string value = "attack_payload_" + std::to_string(i);
  3945. attack_headers.emplace(name, value);
  3946. }
  3947. // Try to POST with excessive headers
  3948. cli_.set_keep_alive(true);
  3949. auto res = cli_.Post("/", attack_headers, "test_data", "text/plain");
  3950. // Should either fail or return 400 Bad Request due to security limit
  3951. if (res) {
  3952. // If we get a response, it should be 400 Bad Request
  3953. EXPECT_EQ(StatusCode::BadRequest_400, res->status);
  3954. } else {
  3955. // Request failed, which is the expected behavior for DoS protection
  3956. EXPECT_FALSE(res);
  3957. }
  3958. EXPECT_EQ("close", res->get_header_value("Connection"));
  3959. EXPECT_FALSE(cli_.is_socket_open());
  3960. }
  3961. TEST_F(ServerTest, MultipartFormData) {
  3962. UploadFormDataItems items = {
  3963. {"text1", "text default", "", ""},
  3964. {"text2", "aωb", "", ""},
  3965. {"file1", "h\ne\n\nl\nl\no\n", "hello.txt", "text/plain"},
  3966. {"file2", "{\n \"world\", true\n}\n", "world.json", "application/json"},
  3967. {"file3", "", "", "application/octet-stream"},
  3968. {"file4", "", "", " application/json tmp-string "}};
  3969. auto res = cli_.Post("/multipart", items);
  3970. ASSERT_TRUE(res);
  3971. EXPECT_EQ(StatusCode::OK_200, res->status);
  3972. }
  3973. TEST_F(ServerTest, MultipartFormDataMultiFileValues) {
  3974. UploadFormDataItems items = {
  3975. {"text", "default text", "", ""},
  3976. {"multi_text1", "aaaaa", "", ""},
  3977. {"multi_text1", "bbbbb", "", ""},
  3978. {"multi_file1", "h\ne\n\nl\nl\no\n", "hello.txt", "text/plain"},
  3979. {"multi_file1", "{\n \"world\", true\n}\n", "world.json",
  3980. "application/json"},
  3981. };
  3982. auto res = cli_.Post("/multipart/multi_file_values", items);
  3983. ASSERT_TRUE(res);
  3984. EXPECT_EQ(StatusCode::OK_200, res->status);
  3985. }
  3986. TEST_F(ServerTest, CaseInsensitiveHeaderName) {
  3987. auto res = cli_.Get("/hi");
  3988. ASSERT_TRUE(res);
  3989. EXPECT_EQ(StatusCode::OK_200, res->status);
  3990. EXPECT_EQ("text/plain", res->get_header_value("content-type"));
  3991. EXPECT_EQ("Hello World!", res->body);
  3992. }
  3993. TEST_F(ServerTest, CaseInsensitiveTransferEncoding) {
  3994. Request req;
  3995. req.method = "POST";
  3996. req.path = "/chunked";
  3997. std::string host_and_port;
  3998. host_and_port += HOST;
  3999. host_and_port += ":";
  4000. host_and_port += std::to_string(PORT);
  4001. req.headers.emplace("Host", host_and_port.c_str());
  4002. req.headers.emplace("Accept", "*/*");
  4003. req.headers.emplace("User-Agent", "cpp-httplib/0.1");
  4004. req.headers.emplace("Content-Type", "text/plain");
  4005. req.headers.emplace("Content-Length", "0");
  4006. req.headers.emplace(
  4007. "Transfer-Encoding",
  4008. "Chunked"); // Note, "Chunked" rather than typical "chunked".
  4009. // Client does not chunk, so make a chunked body manually.
  4010. req.body = "4\r\ndech\r\nf\r\nunked post body\r\n0\r\n\r\n";
  4011. auto res = std::make_shared<Response>();
  4012. auto error = Error::Success;
  4013. auto ret = cli_.send(req, *res, error);
  4014. ASSERT_TRUE(ret);
  4015. EXPECT_EQ(StatusCode::OK_200, res->status);
  4016. }
  4017. TEST_F(ServerTest, GetStreamed2) {
  4018. auto res = cli_.Get("/streamed", {{make_range_header({{2, 3}})}});
  4019. ASSERT_TRUE(res);
  4020. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4021. EXPECT_EQ("2", res->get_header_value("Content-Length"));
  4022. EXPECT_EQ(true, res->has_header("Content-Range"));
  4023. EXPECT_EQ("bytes 2-3/6", res->get_header_value("Content-Range"));
  4024. EXPECT_EQ(std::string("ab"), res->body);
  4025. }
  4026. TEST_F(ServerTest, GetStreamed) {
  4027. auto res = cli_.Get("/streamed");
  4028. ASSERT_TRUE(res);
  4029. EXPECT_EQ(StatusCode::OK_200, res->status);
  4030. EXPECT_EQ("6", res->get_header_value("Content-Length"));
  4031. EXPECT_EQ(std::string("aaabbb"), res->body);
  4032. }
  4033. TEST_F(ServerTest, GetStreamedWithRange1) {
  4034. auto res = cli_.Get("/streamed-with-range", {{make_range_header({{3, 5}})}});
  4035. ASSERT_TRUE(res);
  4036. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4037. EXPECT_EQ("3", res->get_header_value("Content-Length"));
  4038. EXPECT_EQ(true, res->has_header("Content-Range"));
  4039. EXPECT_EQ("bytes 3-5/7", res->get_header_value("Content-Range"));
  4040. EXPECT_EQ(std::string("def"), res->body);
  4041. }
  4042. TEST_F(ServerTest, GetStreamedWithRange2) {
  4043. auto res = cli_.Get("/streamed-with-range", {{make_range_header({{1, -1}})}});
  4044. ASSERT_TRUE(res);
  4045. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4046. EXPECT_EQ("6", res->get_header_value("Content-Length"));
  4047. EXPECT_EQ(true, res->has_header("Content-Range"));
  4048. EXPECT_EQ("bytes 1-6/7", res->get_header_value("Content-Range"));
  4049. EXPECT_EQ(std::string("bcdefg"), res->body);
  4050. }
  4051. TEST_F(ServerTest, GetStreamedWithRangeSuffix1) {
  4052. auto res = cli_.Get("/streamed-with-range", {{"Range", "bytes=-3"}});
  4053. ASSERT_TRUE(res);
  4054. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4055. EXPECT_EQ("3", res->get_header_value("Content-Length"));
  4056. EXPECT_EQ(true, res->has_header("Content-Range"));
  4057. EXPECT_EQ("bytes 4-6/7", res->get_header_value("Content-Range"));
  4058. EXPECT_EQ(std::string("efg"), res->body);
  4059. }
  4060. TEST_F(ServerTest, GetStreamedWithRangeSuffix2) {
  4061. auto res = cli_.Get("/streamed-with-range?error", {{"Range", "bytes=-9999"}});
  4062. ASSERT_TRUE(res);
  4063. EXPECT_EQ(StatusCode::RangeNotSatisfiable_416, res->status);
  4064. EXPECT_EQ("0", res->get_header_value("Content-Length"));
  4065. EXPECT_EQ(false, res->has_header("Content-Range"));
  4066. EXPECT_EQ(0U, res->body.size());
  4067. }
  4068. TEST_F(ServerTest, GetStreamedWithRangeError) {
  4069. auto res = cli_.Get("/streamed-with-range",
  4070. {{"Range", "bytes=92233720368547758079223372036854775806-"
  4071. "92233720368547758079223372036854775807"}});
  4072. ASSERT_TRUE(res);
  4073. EXPECT_EQ(StatusCode::RangeNotSatisfiable_416, res->status);
  4074. EXPECT_EQ("0", res->get_header_value("Content-Length"));
  4075. EXPECT_EQ(false, res->has_header("Content-Range"));
  4076. EXPECT_EQ(0U, res->body.size());
  4077. }
  4078. TEST_F(ServerTest, GetRangeWithMaxLongLength) {
  4079. auto res = cli_.Get(
  4080. "/with-range",
  4081. {{"Range", "bytes=0-" + std::to_string(std::numeric_limits<long>::max())},
  4082. {"Accept-Encoding", ""}});
  4083. ASSERT_TRUE(res);
  4084. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4085. EXPECT_EQ("7", res->get_header_value("Content-Length"));
  4086. EXPECT_EQ(true, res->has_header("Content-Range"));
  4087. EXPECT_EQ("bytes 0-6/7", res->get_header_value("Content-Range"));
  4088. EXPECT_EQ(std::string("abcdefg"), res->body);
  4089. }
  4090. TEST_F(ServerTest, GetRangeWithZeroToInfinite) {
  4091. auto res = cli_.Get("/with-range", {
  4092. {"Range", "bytes=0-"},
  4093. {"Accept-Encoding", ""},
  4094. });
  4095. ASSERT_TRUE(res);
  4096. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4097. EXPECT_EQ("7", res->get_header_value("Content-Length"));
  4098. EXPECT_EQ(true, res->has_header("Content-Range"));
  4099. EXPECT_EQ("bytes 0-6/7", res->get_header_value("Content-Range"));
  4100. EXPECT_EQ(std::string("abcdefg"), res->body);
  4101. }
  4102. TEST_F(ServerTest, GetStreamedWithRangeMultipart) {
  4103. auto res =
  4104. cli_.Get("/streamed-with-range", {{make_range_header({{1, 2}, {4, 5}})}});
  4105. ASSERT_TRUE(res);
  4106. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4107. EXPECT_EQ("267", res->get_header_value("Content-Length"));
  4108. EXPECT_EQ(false, res->has_header("Content-Range"));
  4109. EXPECT_EQ(267U, res->body.size());
  4110. // Check that both range contents are present
  4111. EXPECT_TRUE(res->body.find("bc\r\n") != std::string::npos);
  4112. EXPECT_TRUE(res->body.find("ef\r\n") != std::string::npos);
  4113. // Check that Content-Range headers are present for both ranges
  4114. EXPECT_TRUE(res->body.find("Content-Range: bytes 1-2/7") !=
  4115. std::string::npos);
  4116. EXPECT_TRUE(res->body.find("Content-Range: bytes 4-5/7") !=
  4117. std::string::npos);
  4118. }
  4119. TEST_F(ServerTest, GetStreamedWithTooManyRanges) {
  4120. Ranges ranges;
  4121. for (size_t i = 0; i < CPPHTTPLIB_RANGE_MAX_COUNT + 1; i++) {
  4122. ranges.emplace_back(0, -1);
  4123. }
  4124. auto res =
  4125. cli_.Get("/streamed-with-range?error", {{make_range_header(ranges)}});
  4126. ASSERT_TRUE(res);
  4127. EXPECT_EQ(StatusCode::RangeNotSatisfiable_416, res->status);
  4128. EXPECT_EQ("0", res->get_header_value("Content-Length"));
  4129. EXPECT_EQ(false, res->has_header("Content-Range"));
  4130. EXPECT_EQ(0U, res->body.size());
  4131. }
  4132. TEST_F(ServerTest, GetStreamedWithOverwrapping) {
  4133. auto res =
  4134. cli_.Get("/streamed-with-range", {{make_range_header({{1, 4}, {2, 5}})}});
  4135. ASSERT_TRUE(res);
  4136. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4137. EXPECT_EQ(5U, res->body.size());
  4138. // Check that overlapping ranges are coalesced into a single range
  4139. EXPECT_EQ("bcdef", res->body);
  4140. EXPECT_EQ("bytes 1-5/7", res->get_header_value("Content-Range"));
  4141. // Should be single range, not multipart
  4142. EXPECT_TRUE(res->has_header("Content-Range"));
  4143. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  4144. }
  4145. TEST_F(ServerTest, GetStreamedWithNonAscendingRanges) {
  4146. auto res =
  4147. cli_.Get("/streamed-with-range", {{make_range_header({{4, 5}, {0, 2}})}});
  4148. ASSERT_TRUE(res);
  4149. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4150. EXPECT_EQ(268U, res->body.size());
  4151. // Check that both range contents are present
  4152. EXPECT_TRUE(res->body.find("ef\r\n") != std::string::npos);
  4153. EXPECT_TRUE(res->body.find("abc\r\n") != std::string::npos);
  4154. // Check that Content-Range headers are present for both ranges
  4155. EXPECT_TRUE(res->body.find("Content-Range: bytes 4-5/7") !=
  4156. std::string::npos);
  4157. EXPECT_TRUE(res->body.find("Content-Range: bytes 0-2/7") !=
  4158. std::string::npos);
  4159. }
  4160. TEST_F(ServerTest, GetStreamedWithDuplicateRanges) {
  4161. auto res =
  4162. cli_.Get("/streamed-with-range", {{make_range_header({{0, 2}, {0, 2}})}});
  4163. ASSERT_TRUE(res);
  4164. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4165. EXPECT_EQ(269U, res->body.size());
  4166. // Check that both duplicate range contents are present
  4167. size_t first_abc = res->body.find("abc\r\n");
  4168. EXPECT_TRUE(first_abc != std::string::npos);
  4169. size_t second_abc = res->body.find("abc\r\n", first_abc + 1);
  4170. EXPECT_TRUE(second_abc != std::string::npos);
  4171. // Check that Content-Range headers are present for both ranges
  4172. size_t first_range = res->body.find("Content-Range: bytes 0-2/7");
  4173. EXPECT_TRUE(first_range != std::string::npos);
  4174. size_t second_range =
  4175. res->body.find("Content-Range: bytes 0-2/7", first_range + 1);
  4176. EXPECT_TRUE(second_range != std::string::npos);
  4177. }
  4178. TEST_F(ServerTest, GetStreamedWithRangesMoreThanTwoOverwrapping) {
  4179. auto res = cli_.Get("/streamed-with-range?error",
  4180. {{make_range_header({{0, 1}, {1, 2}, {2, 3}, {3, 4}})}});
  4181. ASSERT_TRUE(res);
  4182. EXPECT_EQ(StatusCode::RangeNotSatisfiable_416, res->status);
  4183. EXPECT_EQ("0", res->get_header_value("Content-Length"));
  4184. EXPECT_EQ(false, res->has_header("Content-Range"));
  4185. EXPECT_EQ(0U, res->body.size());
  4186. }
  4187. TEST_F(ServerTest, GetStreamedEndless) {
  4188. uint64_t offset = 0;
  4189. auto res = cli_.Get("/streamed-cancel",
  4190. [&](const char * /*data*/, uint64_t data_length) {
  4191. if (offset < 100) {
  4192. offset += data_length;
  4193. return true;
  4194. }
  4195. return false;
  4196. });
  4197. ASSERT_TRUE(!res);
  4198. EXPECT_EQ(Error::Canceled, res.error());
  4199. }
  4200. TEST_F(ServerTest, ClientStop) {
  4201. std::atomic_size_t count{4};
  4202. std::vector<std::thread> threads;
  4203. for (auto i = count.load(); i != 0; --i) {
  4204. threads.emplace_back([&]() {
  4205. auto res = cli_.Get("/streamed-cancel",
  4206. [&](const char *, uint64_t) { return true; });
  4207. --count;
  4208. ASSERT_TRUE(!res);
  4209. EXPECT_TRUE(res.error() == Error::Canceled ||
  4210. res.error() == Error::Read || res.error() == Error::Write);
  4211. });
  4212. }
  4213. std::this_thread::sleep_for(std::chrono::seconds(2));
  4214. while (count != 0) {
  4215. cli_.stop();
  4216. std::this_thread::sleep_for(std::chrono::milliseconds(10));
  4217. }
  4218. for (auto &t : threads) {
  4219. t.join();
  4220. }
  4221. }
  4222. TEST_F(ServerTest, GetWithRange1) {
  4223. auto res = cli_.Get("/with-range", {
  4224. make_range_header({{3, 5}}),
  4225. {"Accept-Encoding", ""},
  4226. });
  4227. ASSERT_TRUE(res);
  4228. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4229. EXPECT_EQ("3", res->get_header_value("Content-Length"));
  4230. EXPECT_EQ(true, res->has_header("Content-Range"));
  4231. EXPECT_EQ("bytes 3-5/7", res->get_header_value("Content-Range"));
  4232. EXPECT_EQ(std::string("def"), res->body);
  4233. }
  4234. TEST_F(ServerTest, GetWithRange2) {
  4235. auto res = cli_.Get("/with-range", {
  4236. make_range_header({{1, -1}}),
  4237. {"Accept-Encoding", ""},
  4238. });
  4239. ASSERT_TRUE(res);
  4240. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4241. EXPECT_EQ("6", res->get_header_value("Content-Length"));
  4242. EXPECT_EQ(true, res->has_header("Content-Range"));
  4243. EXPECT_EQ("bytes 1-6/7", res->get_header_value("Content-Range"));
  4244. EXPECT_EQ(std::string("bcdefg"), res->body);
  4245. }
  4246. TEST_F(ServerTest, GetWithRange3) {
  4247. auto res = cli_.Get("/with-range", {
  4248. make_range_header({{0, 0}}),
  4249. {"Accept-Encoding", ""},
  4250. });
  4251. ASSERT_TRUE(res);
  4252. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4253. EXPECT_EQ("1", res->get_header_value("Content-Length"));
  4254. EXPECT_EQ(true, res->has_header("Content-Range"));
  4255. EXPECT_EQ("bytes 0-0/7", res->get_header_value("Content-Range"));
  4256. EXPECT_EQ(std::string("a"), res->body);
  4257. }
  4258. TEST_F(ServerTest, GetWithRange4) {
  4259. auto res = cli_.Get("/with-range", {
  4260. make_range_header({{-1, 2}}),
  4261. {"Accept-Encoding", ""},
  4262. });
  4263. ASSERT_TRUE(res);
  4264. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4265. EXPECT_EQ("2", res->get_header_value("Content-Length"));
  4266. EXPECT_EQ(true, res->has_header("Content-Range"));
  4267. EXPECT_EQ("bytes 5-6/7", res->get_header_value("Content-Range"));
  4268. EXPECT_EQ(std::string("fg"), res->body);
  4269. }
  4270. TEST_F(ServerTest, GetWithRange5) {
  4271. auto res = cli_.Get("/with-range", {
  4272. make_range_header({{0, 5}}),
  4273. {"Accept-Encoding", ""},
  4274. });
  4275. ASSERT_TRUE(res);
  4276. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4277. EXPECT_EQ("6", res->get_header_value("Content-Length"));
  4278. EXPECT_EQ(true, res->has_header("Content-Range"));
  4279. EXPECT_EQ("bytes 0-5/7", res->get_header_value("Content-Range"));
  4280. EXPECT_EQ(std::string("abcdef"), res->body);
  4281. }
  4282. TEST_F(ServerTest, GetWithRangeOffsetGreaterThanContent) {
  4283. auto res = cli_.Get("/with-range", {{make_range_header({{10000, 20000}})}});
  4284. ASSERT_TRUE(res);
  4285. EXPECT_EQ(StatusCode::RangeNotSatisfiable_416, res->status);
  4286. }
  4287. TEST_F(ServerTest, GetWithRangeMultipart) {
  4288. auto res = cli_.Get("/with-range", {{make_range_header({{1, 2}, {4, 5}})}});
  4289. ASSERT_TRUE(res);
  4290. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  4291. EXPECT_EQ("267", res->get_header_value("Content-Length"));
  4292. EXPECT_EQ(false, res->has_header("Content-Range"));
  4293. EXPECT_EQ(267U, res->body.size());
  4294. }
  4295. TEST_F(ServerTest, GetWithRangeMultipartOffsetGreaterThanContent) {
  4296. auto res =
  4297. cli_.Get("/with-range", {{make_range_header({{-1, 2}, {10000, 30000}})}});
  4298. ASSERT_TRUE(res);
  4299. EXPECT_EQ(StatusCode::RangeNotSatisfiable_416, res->status);
  4300. }
  4301. TEST_F(ServerTest, GetWithRangeCustomizedResponse) {
  4302. auto res = cli_.Get("/with-range-customized-response",
  4303. {{make_range_header({{1, 2}})}});
  4304. ASSERT_TRUE(res);
  4305. EXPECT_EQ(StatusCode::BadRequest_400, res->status);
  4306. EXPECT_EQ(true, res->has_header("Content-Length"));
  4307. EXPECT_EQ(false, res->has_header("Content-Range"));
  4308. EXPECT_EQ(JSON_DATA, res->body);
  4309. }
  4310. TEST_F(ServerTest, GetWithRangeMultipartCustomizedResponseMultipleRange) {
  4311. auto res = cli_.Get("/with-range-customized-response",
  4312. {{make_range_header({{1, 2}, {4, 5}})}});
  4313. ASSERT_TRUE(res);
  4314. EXPECT_EQ(StatusCode::BadRequest_400, res->status);
  4315. EXPECT_EQ(true, res->has_header("Content-Length"));
  4316. EXPECT_EQ(false, res->has_header("Content-Range"));
  4317. EXPECT_EQ(JSON_DATA, res->body);
  4318. }
  4319. TEST_F(ServerTest, Issue1772) {
  4320. auto res = cli_.Get("/issue1772", {{make_range_header({{1000, -1}})}});
  4321. ASSERT_TRUE(res);
  4322. EXPECT_EQ(StatusCode::Unauthorized_401, res->status);
  4323. }
  4324. TEST_F(ServerTest, Issue609) {
  4325. auto res = cli_.Delete("/issue609");
  4326. ASSERT_TRUE(res);
  4327. EXPECT_EQ(StatusCode::OK_200, res->status);
  4328. EXPECT_EQ(std::string("ok"), res->body);
  4329. }
  4330. TEST_F(ServerTest, GetStreamedChunked) {
  4331. auto res = cli_.Get("/streamed-chunked");
  4332. ASSERT_TRUE(res);
  4333. EXPECT_EQ(StatusCode::OK_200, res->status);
  4334. EXPECT_EQ(std::string("123456789"), res->body);
  4335. }
  4336. TEST_F(ServerTest, GetStreamedChunked2) {
  4337. auto res = cli_.Get("/streamed-chunked2");
  4338. ASSERT_TRUE(res);
  4339. EXPECT_EQ(StatusCode::OK_200, res->status);
  4340. EXPECT_EQ(std::string("123456789"), res->body);
  4341. }
  4342. TEST_F(ServerTest, GetStreamedChunkedWithTrailer) {
  4343. auto res = cli_.Get("/streamed-chunked-with-trailer");
  4344. ASSERT_TRUE(res);
  4345. EXPECT_EQ(StatusCode::OK_200, res->status);
  4346. EXPECT_EQ(std::string("123456789"), res->body);
  4347. EXPECT_TRUE(res->has_header("Trailer"));
  4348. EXPECT_EQ(1U, res->get_header_value_count("Trailer"));
  4349. EXPECT_EQ(std::string("Dummy1, Dummy2"), res->get_header_value("Trailer"));
  4350. // Trailers are now stored separately from headers (security fix)
  4351. EXPECT_EQ(2U, res->trailers.size());
  4352. EXPECT_TRUE(res->has_trailer("Dummy1"));
  4353. EXPECT_TRUE(res->has_trailer("Dummy2"));
  4354. EXPECT_FALSE(res->has_trailer("Dummy3"));
  4355. EXPECT_EQ(std::string("DummyVal1"), res->get_trailer_value("Dummy1"));
  4356. EXPECT_EQ(std::string("DummyVal2"), res->get_trailer_value("Dummy2"));
  4357. // Verify trailers are NOT in headers (security verification)
  4358. EXPECT_EQ(std::string(""), res->get_header_value("Dummy1"));
  4359. EXPECT_EQ(std::string(""), res->get_header_value("Dummy2"));
  4360. }
  4361. TEST_F(ServerTest, LargeChunkedPost) {
  4362. Request req;
  4363. req.method = "POST";
  4364. req.path = "/large-chunked";
  4365. std::string host_and_port;
  4366. host_and_port += HOST;
  4367. host_and_port += ":";
  4368. host_and_port += std::to_string(PORT);
  4369. req.headers.emplace("Host", host_and_port.c_str());
  4370. req.headers.emplace("Accept", "*/*");
  4371. req.headers.emplace("User-Agent", "cpp-httplib/0.1");
  4372. req.headers.emplace("Content-Type", "text/plain");
  4373. req.headers.emplace("Content-Length", "0");
  4374. req.headers.emplace("Transfer-Encoding", "chunked");
  4375. std::string long_string(30 * 1024u, 'a');
  4376. std::string chunk = "7800\r\n" + long_string + "\r\n";
  4377. // Attempt to make a large enough post to exceed OS buffers, to test that
  4378. // the server handles short reads if the full chunk data isn't available.
  4379. req.body = chunk + chunk + chunk + chunk + chunk + chunk + "0\r\n\r\n";
  4380. auto res = std::make_shared<Response>();
  4381. auto error = Error::Success;
  4382. auto ret = cli_.send(req, *res, error);
  4383. ASSERT_TRUE(ret);
  4384. EXPECT_EQ(StatusCode::OK_200, res->status);
  4385. }
  4386. TEST_F(ServerTest, GetMethodRemoteAddr) {
  4387. auto res = cli_.Get("/remote_addr");
  4388. ASSERT_TRUE(res);
  4389. EXPECT_EQ(StatusCode::OK_200, res->status);
  4390. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  4391. EXPECT_TRUE(res->body == "::1" || res->body == "127.0.0.1");
  4392. }
  4393. TEST_F(ServerTest, GetMethodLocalAddr) {
  4394. auto res = cli_.Get("/local_addr");
  4395. ASSERT_TRUE(res);
  4396. EXPECT_EQ(StatusCode::OK_200, res->status);
  4397. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  4398. EXPECT_TRUE(res->body == std::string("::1:").append(to_string(PORT)) ||
  4399. res->body == std::string("127.0.0.1:").append(to_string(PORT)));
  4400. }
  4401. TEST_F(ServerTest, HTTPResponseSplitting) {
  4402. auto res = cli_.Get("/http_response_splitting");
  4403. ASSERT_TRUE(res);
  4404. EXPECT_EQ(StatusCode::OK_200, res->status);
  4405. }
  4406. TEST_F(ServerTest, SlowRequest) {
  4407. request_threads_.emplace_back([this]() { auto res = cli_.Get("/slow"); });
  4408. request_threads_.emplace_back([this]() { auto res = cli_.Get("/slow"); });
  4409. request_threads_.emplace_back([this]() { auto res = cli_.Get("/slow"); });
  4410. }
  4411. #if 0
  4412. TEST_F(ServerTest, SlowPost) {
  4413. char buffer[64 * 1024];
  4414. memset(buffer, 0x42, sizeof(buffer));
  4415. auto res = cli_.Post(
  4416. "/slowpost", 64 * 1024 * 1024,
  4417. [&](size_t /*offset*/, size_t /*length*/, DataSink &sink) {
  4418. auto ret = sink.write(buffer, sizeof(buffer));
  4419. EXPECT_TRUE(ret);
  4420. return true;
  4421. },
  4422. "text/plain");
  4423. ASSERT_TRUE(res);
  4424. EXPECT_EQ(StatusCode::OK_200, res->status);
  4425. }
  4426. TEST_F(ServerTest, SlowPostFail) {
  4427. char buffer[64 * 1024];
  4428. memset(buffer, 0x42, sizeof(buffer));
  4429. cli_.set_write_timeout(std::chrono::seconds(0));
  4430. auto res = cli_.Post(
  4431. "/slowpost", 64 * 1024 * 1024,
  4432. [&](size_t /*offset*/, size_t /*length*/, DataSink &sink) {
  4433. sink.write(buffer, sizeof(buffer));
  4434. return true;
  4435. },
  4436. "text/plain");
  4437. ASSERT_TRUE(!res);
  4438. EXPECT_EQ(Error::Write, res.error());
  4439. }
  4440. #endif
  4441. TEST_F(ServerTest, Put) {
  4442. auto res = cli_.Put("/put", "PUT", "text/plain");
  4443. ASSERT_TRUE(res);
  4444. EXPECT_EQ(StatusCode::OK_200, res->status);
  4445. EXPECT_EQ("PUT", res->body);
  4446. }
  4447. TEST_F(ServerTest, PutWithContentProvider) {
  4448. auto res = cli_.Put(
  4449. "/put", 3,
  4450. [](size_t /*offset*/, size_t /*length*/, DataSink &sink) {
  4451. sink.os << "PUT";
  4452. return true;
  4453. },
  4454. "text/plain");
  4455. ASSERT_TRUE(res);
  4456. EXPECT_EQ(StatusCode::OK_200, res->status);
  4457. EXPECT_EQ("PUT", res->body);
  4458. }
  4459. TEST_F(ServerTest, PostWithContentProviderAbort) {
  4460. auto res = cli_.Post(
  4461. "/post", 42,
  4462. [](size_t /*offset*/, size_t /*length*/, DataSink & /*sink*/) {
  4463. return false;
  4464. },
  4465. "text/plain");
  4466. ASSERT_TRUE(!res);
  4467. EXPECT_EQ(Error::Canceled, res.error());
  4468. }
  4469. TEST_F(ServerTest, PutWithContentProviderWithoutLength) {
  4470. auto res = cli_.Put(
  4471. "/put",
  4472. [](size_t /*offset*/, DataSink &sink) {
  4473. sink.os << "PUT";
  4474. sink.done();
  4475. return true;
  4476. },
  4477. "text/plain");
  4478. ASSERT_TRUE(res);
  4479. EXPECT_EQ(StatusCode::OK_200, res->status);
  4480. EXPECT_EQ("PUT", res->body);
  4481. }
  4482. TEST_F(ServerTest, PostWithContentProviderWithoutLengthAbort) {
  4483. auto res = cli_.Post(
  4484. "/post", [](size_t /*offset*/, DataSink & /*sink*/) { return false; },
  4485. "text/plain");
  4486. ASSERT_TRUE(!res);
  4487. EXPECT_EQ(Error::Canceled, res.error());
  4488. }
  4489. TEST_F(ServerTest, PostLoopBack) {
  4490. std::string body;
  4491. auto res = cli_.Post(
  4492. "/post-loopback", 9,
  4493. [](size_t /*offset*/, size_t length, DataSink &sink) {
  4494. EXPECT_EQ(9u, length);
  4495. sink.write("123", 3);
  4496. sink.write("456", 3);
  4497. sink.write("789", 3);
  4498. return true;
  4499. },
  4500. "text/plain",
  4501. [&body](const char *data, size_t data_length) {
  4502. body.append(data, data_length);
  4503. return true;
  4504. });
  4505. ASSERT_TRUE(res);
  4506. EXPECT_EQ(StatusCode::OK_200, res->status);
  4507. EXPECT_EQ("123456789", body);
  4508. }
  4509. TEST_F(ServerTest, PutLoopBack) {
  4510. std::string body;
  4511. auto res = cli_.Put(
  4512. "/put-loopback", 9,
  4513. [](size_t /*offset*/, size_t length, DataSink &sink) {
  4514. EXPECT_EQ(9u, length);
  4515. sink.write("123", 3);
  4516. sink.write("456", 3);
  4517. sink.write("789", 3);
  4518. return true;
  4519. },
  4520. "text/plain",
  4521. [&body](const char *data, size_t data_length) {
  4522. body.append(data, data_length);
  4523. return true;
  4524. });
  4525. ASSERT_TRUE(res);
  4526. EXPECT_EQ(StatusCode::OK_200, res->status);
  4527. EXPECT_EQ("123456789", body);
  4528. }
  4529. TEST_F(ServerTest, PatchLoopBack) {
  4530. std::string body;
  4531. auto res = cli_.Patch(
  4532. "/patch-loopback", 9,
  4533. [](size_t /*offset*/, size_t length, DataSink &sink) {
  4534. EXPECT_EQ(9u, length);
  4535. sink.write("123", 3);
  4536. sink.write("456", 3);
  4537. sink.write("789", 3);
  4538. return true;
  4539. },
  4540. "text/plain",
  4541. [&body](const char *data, size_t data_length) {
  4542. body.append(data, data_length);
  4543. return true;
  4544. });
  4545. ASSERT_TRUE(res);
  4546. EXPECT_EQ(StatusCode::OK_200, res->status);
  4547. EXPECT_EQ("123456789", body);
  4548. }
  4549. TEST_F(ServerTest, PostLoopBackWithoutRequestContentLength) {
  4550. std::string body;
  4551. auto res = cli_.Post(
  4552. "/post-loopback",
  4553. [](size_t /*offset*/, DataSink &sink) {
  4554. sink.write("123", 3);
  4555. sink.write("456", 3);
  4556. sink.write("789", 3);
  4557. sink.done();
  4558. return true;
  4559. },
  4560. "text/plain",
  4561. [&body](const char *data, size_t data_length) {
  4562. body.append(data, data_length);
  4563. return true;
  4564. });
  4565. ASSERT_TRUE(res);
  4566. EXPECT_EQ(StatusCode::OK_200, res->status);
  4567. EXPECT_EQ("123456789", body);
  4568. }
  4569. #ifdef CPPHTTPLIB_ZLIB_SUPPORT
  4570. TEST_F(ServerTest, PutWithContentProviderWithGzip) {
  4571. cli_.set_compress(true);
  4572. auto res = cli_.Put(
  4573. "/put", 3,
  4574. [](size_t /*offset*/, size_t /*length*/, DataSink &sink) {
  4575. sink.os << "PUT";
  4576. return true;
  4577. },
  4578. "text/plain");
  4579. ASSERT_TRUE(res);
  4580. EXPECT_EQ(StatusCode::OK_200, res->status);
  4581. EXPECT_EQ("PUT", res->body);
  4582. }
  4583. TEST_F(ServerTest, PostWithContentProviderWithGzipAbort) {
  4584. cli_.set_compress(true);
  4585. auto res = cli_.Post(
  4586. "/post", 42,
  4587. [](size_t /*offset*/, size_t /*length*/, DataSink & /*sink*/) {
  4588. return false;
  4589. },
  4590. "text/plain");
  4591. ASSERT_TRUE(!res);
  4592. EXPECT_EQ(Error::Canceled, res.error());
  4593. }
  4594. TEST_F(ServerTest, PutWithContentProviderWithoutLengthWithGzip) {
  4595. cli_.set_compress(true);
  4596. auto res = cli_.Put(
  4597. "/put",
  4598. [](size_t /*offset*/, DataSink &sink) {
  4599. sink.os << "PUT";
  4600. sink.done();
  4601. return true;
  4602. },
  4603. "text/plain");
  4604. ASSERT_TRUE(res);
  4605. EXPECT_EQ(StatusCode::OK_200, res->status);
  4606. EXPECT_EQ("PUT", res->body);
  4607. }
  4608. TEST_F(ServerTest, PostWithContentProviderWithoutLengthWithGzipAbort) {
  4609. cli_.set_compress(true);
  4610. auto res = cli_.Post(
  4611. "/post", [](size_t /*offset*/, DataSink & /*sink*/) { return false; },
  4612. "text/plain");
  4613. ASSERT_TRUE(!res);
  4614. EXPECT_EQ(Error::Canceled, res.error());
  4615. }
  4616. TEST_F(ServerTest, PutLargeFileWithGzip) {
  4617. cli_.set_compress(true);
  4618. auto res = cli_.Put("/put-large", LARGE_DATA, "text/plain");
  4619. ASSERT_TRUE(res);
  4620. EXPECT_EQ(StatusCode::OK_200, res->status);
  4621. EXPECT_EQ(LARGE_DATA, res->body);
  4622. }
  4623. TEST_F(ServerTest, PutLargeFileWithGzip2) {
  4624. #ifdef CPPHTTPLIB_SSL_ENABLED
  4625. std::string s = std::string("https://") + HOST + ":" + std::to_string(PORT);
  4626. Client cli(s.c_str());
  4627. cli.enable_server_certificate_verification(false);
  4628. #else
  4629. std::string s = std::string("http://") + HOST + ":" + std::to_string(PORT);
  4630. Client cli(s.c_str());
  4631. #endif
  4632. cli.set_compress(true);
  4633. auto res = cli.Put("/put-large", LARGE_DATA, "text/plain");
  4634. ASSERT_TRUE(res);
  4635. EXPECT_EQ(StatusCode::OK_200, res->status);
  4636. EXPECT_EQ(LARGE_DATA, res->body);
  4637. // The compressed size should be less than a 10th of the original. May vary
  4638. // depending on the zlib library.
  4639. EXPECT_LT(res.get_request_header_value_u64("Content-Length"),
  4640. static_cast<uint64_t>(10 * 1024 * 1024));
  4641. EXPECT_EQ("gzip", res.get_request_header_value("Content-Encoding"));
  4642. }
  4643. TEST_F(ServerTest, PutContentWithDeflate) {
  4644. cli_.set_compress(false);
  4645. Headers headers;
  4646. headers.emplace("Content-Encoding", "deflate");
  4647. // PUT in deflate format:
  4648. auto res = cli_.Put("/put", headers,
  4649. "\170\234\013\010\015\001\0\001\361\0\372", "text/plain");
  4650. ASSERT_TRUE(res);
  4651. EXPECT_EQ(StatusCode::OK_200, res->status);
  4652. EXPECT_EQ("PUT", res->body);
  4653. }
  4654. TEST_F(ServerTest, GetStreamedChunkedWithGzip) {
  4655. Headers headers;
  4656. headers.emplace("Accept-Encoding", "gzip, deflate");
  4657. auto res = cli_.Get("/streamed-chunked", headers);
  4658. ASSERT_TRUE(res);
  4659. EXPECT_EQ(StatusCode::OK_200, res->status);
  4660. EXPECT_EQ(std::string("123456789"), res->body);
  4661. }
  4662. TEST_F(ServerTest, GetStreamedChunkedWithGzip2) {
  4663. Headers headers;
  4664. headers.emplace("Accept-Encoding", "gzip, deflate");
  4665. auto res = cli_.Get("/streamed-chunked2", headers);
  4666. ASSERT_TRUE(res);
  4667. EXPECT_EQ(StatusCode::OK_200, res->status);
  4668. EXPECT_EQ(std::string("123456789"), res->body);
  4669. }
  4670. TEST_F(ServerTest, SplitDelimiterInPathRegex) {
  4671. auto res = cli_.Get("/regex-with-delimiter?key=^(?.*(value))");
  4672. ASSERT_TRUE(res);
  4673. EXPECT_EQ(StatusCode::OK_200, res->status);
  4674. }
  4675. TEST(GzipDecompressor, ChunkedDecompression) {
  4676. std::string data;
  4677. for (size_t i = 0; i < 32 * 1024; ++i) {
  4678. data.push_back(static_cast<char>('a' + i % 26));
  4679. }
  4680. std::string compressed_data;
  4681. {
  4682. httplib::detail::gzip_compressor compressor;
  4683. bool result = compressor.compress(
  4684. data.data(), data.size(),
  4685. /*last=*/true,
  4686. [&](const char *compressed_data_chunk, size_t compressed_data_size) {
  4687. compressed_data.insert(compressed_data.size(), compressed_data_chunk,
  4688. compressed_data_size);
  4689. return true;
  4690. });
  4691. ASSERT_TRUE(result);
  4692. }
  4693. std::string decompressed_data;
  4694. {
  4695. httplib::detail::gzip_decompressor decompressor;
  4696. // Chunk size is chosen specifically to have a decompressed chunk size equal
  4697. // to 16384 bytes 16384 bytes is the size of decompressor output buffer
  4698. size_t chunk_size = 130;
  4699. for (size_t chunk_begin = 0; chunk_begin < compressed_data.size();
  4700. chunk_begin += chunk_size) {
  4701. size_t current_chunk_size =
  4702. std::min(compressed_data.size() - chunk_begin, chunk_size);
  4703. bool result = decompressor.decompress(
  4704. compressed_data.data() + chunk_begin, current_chunk_size,
  4705. [&](const char *decompressed_data_chunk,
  4706. size_t decompressed_data_chunk_size) {
  4707. decompressed_data.insert(decompressed_data.size(),
  4708. decompressed_data_chunk,
  4709. decompressed_data_chunk_size);
  4710. return true;
  4711. });
  4712. ASSERT_TRUE(result);
  4713. }
  4714. }
  4715. ASSERT_EQ(data, decompressed_data);
  4716. }
  4717. TEST(GzipDecompressor, DeflateDecompression) {
  4718. std::string original_text = "Raw deflate without gzip";
  4719. unsigned char data[32] = {0x78, 0x9C, 0x0B, 0x4A, 0x2C, 0x57, 0x48, 0x49,
  4720. 0x4D, 0xCB, 0x49, 0x2C, 0x49, 0x55, 0x28, 0xCF,
  4721. 0x2C, 0xC9, 0xC8, 0x2F, 0x2D, 0x51, 0x48, 0xAF,
  4722. 0xCA, 0x2C, 0x00, 0x00, 0x6F, 0x98, 0x09, 0x2E};
  4723. std::string compressed_data(data, data + sizeof(data) / sizeof(data[0]));
  4724. std::string decompressed_data;
  4725. {
  4726. httplib::detail::gzip_decompressor decompressor;
  4727. bool result = decompressor.decompress(
  4728. compressed_data.data(), compressed_data.size(),
  4729. [&](const char *decompressed_data_chunk,
  4730. size_t decompressed_data_chunk_size) {
  4731. decompressed_data.insert(decompressed_data.size(),
  4732. decompressed_data_chunk,
  4733. decompressed_data_chunk_size);
  4734. return true;
  4735. });
  4736. ASSERT_TRUE(result);
  4737. }
  4738. ASSERT_EQ(original_text, decompressed_data);
  4739. }
  4740. TEST(GzipDecompressor, DeflateDecompressionTrailingBytes) {
  4741. std::string original_text = "Raw deflate without gzip";
  4742. unsigned char data[40] = {0x78, 0x9C, 0x0B, 0x4A, 0x2C, 0x57, 0x48, 0x49,
  4743. 0x4D, 0xCB, 0x49, 0x2C, 0x49, 0x55, 0x28, 0xCF,
  4744. 0x2C, 0xC9, 0xC8, 0x2F, 0x2D, 0x51, 0x48, 0xAF,
  4745. 0xCA, 0x2C, 0x00, 0x00, 0x6F, 0x98, 0x09, 0x2E,
  4746. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
  4747. std::string compressed_data(data, data + sizeof(data) / sizeof(data[0]));
  4748. std::string decompressed_data;
  4749. {
  4750. httplib::detail::gzip_decompressor decompressor;
  4751. bool result = decompressor.decompress(
  4752. compressed_data.data(), compressed_data.size(),
  4753. [&](const char *decompressed_data_chunk,
  4754. size_t decompressed_data_chunk_size) {
  4755. decompressed_data.insert(decompressed_data.size(),
  4756. decompressed_data_chunk,
  4757. decompressed_data_chunk_size);
  4758. return true;
  4759. });
  4760. ASSERT_TRUE(result);
  4761. }
  4762. ASSERT_EQ(original_text, decompressed_data);
  4763. }
  4764. #ifdef _WIN32
  4765. TEST(GzipDecompressor, LargeRandomData) {
  4766. // prepare large random data that is difficult to be compressed and is
  4767. // expected to have large size even when compressed
  4768. std::random_device seed_gen;
  4769. std::mt19937 random(seed_gen());
  4770. constexpr auto large_size_byte = 4294967296UL; // 4GiB
  4771. constexpr auto data_size = large_size_byte + 134217728UL; // + 128MiB
  4772. std::vector<std::uint32_t> data(data_size / sizeof(std::uint32_t));
  4773. std::generate(data.begin(), data.end(), [&]() { return random(); });
  4774. // compress data over 4GiB
  4775. std::string compressed_data;
  4776. compressed_data.reserve(large_size_byte + 536870912UL); // + 512MiB reserved
  4777. httplib::detail::gzip_compressor compressor;
  4778. auto result = compressor.compress(reinterpret_cast<const char *>(data.data()),
  4779. data.size() * sizeof(std::uint32_t), true,
  4780. [&](const char *data, size_t size) {
  4781. compressed_data.insert(
  4782. compressed_data.size(), data, size);
  4783. return true;
  4784. });
  4785. ASSERT_TRUE(result);
  4786. // FIXME: compressed data size is expected to be greater than 4GiB,
  4787. // but there is no guarantee
  4788. // ASSERT_TRUE(compressed_data.size() >= large_size_byte);
  4789. // decompress data over 4GiB
  4790. std::string decompressed_data;
  4791. decompressed_data.reserve(data_size);
  4792. httplib::detail::gzip_decompressor decompressor;
  4793. result = decompressor.decompress(
  4794. compressed_data.data(), compressed_data.size(),
  4795. [&](const char *data, size_t size) {
  4796. decompressed_data.insert(decompressed_data.size(), data, size);
  4797. return true;
  4798. });
  4799. ASSERT_TRUE(result);
  4800. // compare
  4801. ASSERT_EQ(data_size, decompressed_data.size());
  4802. ASSERT_TRUE(std::memcmp(data.data(), decompressed_data.data(), data_size) ==
  4803. 0);
  4804. }
  4805. #endif
  4806. #endif
  4807. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  4808. TEST_F(ServerTest, GetStreamedChunkedWithBrotli) {
  4809. Headers headers;
  4810. headers.emplace("Accept-Encoding", "br");
  4811. auto res = cli_.Get("/streamed-chunked", headers);
  4812. ASSERT_TRUE(res);
  4813. EXPECT_EQ(StatusCode::OK_200, res->status);
  4814. EXPECT_EQ(std::string("123456789"), res->body);
  4815. }
  4816. TEST_F(ServerTest, GetStreamedChunkedWithBrotli2) {
  4817. Headers headers;
  4818. headers.emplace("Accept-Encoding", "br");
  4819. auto res = cli_.Get("/streamed-chunked2", headers);
  4820. ASSERT_TRUE(res);
  4821. EXPECT_EQ(StatusCode::OK_200, res->status);
  4822. EXPECT_EQ(std::string("123456789"), res->body);
  4823. }
  4824. #endif
  4825. TEST_F(ServerTest, Patch) {
  4826. auto res = cli_.Patch("/patch", "PATCH", "text/plain");
  4827. ASSERT_TRUE(res);
  4828. EXPECT_EQ(StatusCode::OK_200, res->status);
  4829. EXPECT_EQ("PATCH", res->body);
  4830. }
  4831. TEST_F(ServerTest, Delete) {
  4832. auto res = cli_.Delete("/delete");
  4833. ASSERT_TRUE(res);
  4834. EXPECT_EQ(StatusCode::OK_200, res->status);
  4835. EXPECT_EQ("DELETE", res->body);
  4836. }
  4837. TEST_F(ServerTest, DeleteContentReceiver) {
  4838. auto res = cli_.Delete("/delete-body", "content", "text/plain");
  4839. ASSERT_TRUE(res);
  4840. EXPECT_EQ(StatusCode::OK_200, res->status);
  4841. EXPECT_EQ("content", res->body);
  4842. }
  4843. TEST_F(ServerTest, Options) {
  4844. auto res = cli_.Options("*");
  4845. ASSERT_TRUE(res);
  4846. EXPECT_EQ(StatusCode::OK_200, res->status);
  4847. EXPECT_EQ("GET, POST, HEAD, OPTIONS", res->get_header_value("Allow"));
  4848. EXPECT_TRUE(res->body.empty());
  4849. }
  4850. TEST_F(ServerTest, URL) {
  4851. auto res = cli_.Get("/request-target?aaa=bbb&ccc=ddd");
  4852. ASSERT_TRUE(res);
  4853. EXPECT_EQ(StatusCode::OK_200, res->status);
  4854. }
  4855. TEST_F(ServerTest, ArrayParam) {
  4856. auto res = cli_.Get("/array-param?array=value1&array=value2&array=value3");
  4857. ASSERT_TRUE(res);
  4858. EXPECT_EQ(StatusCode::OK_200, res->status);
  4859. }
  4860. TEST_F(ServerTest, NoMultipleHeaders) {
  4861. Headers headers = {{"Content-Length", "5"}};
  4862. auto res = cli_.Post("/validate-no-multiple-headers", headers, "hello",
  4863. "text/plain");
  4864. ASSERT_TRUE(res);
  4865. EXPECT_EQ(StatusCode::OK_200, res->status);
  4866. }
  4867. TEST_F(ServerTest, PostContentReceiver) {
  4868. auto res = cli_.Post("/content_receiver", "content", "text/plain");
  4869. ASSERT_TRUE(res);
  4870. ASSERT_EQ(StatusCode::OK_200, res->status);
  4871. ASSERT_EQ("content", res->body);
  4872. }
  4873. TEST_F(ServerTest, PostMultipartFileContentReceiver) {
  4874. UploadFormDataItems items = {
  4875. {"text1", "text default", "", ""},
  4876. {"text2", "aωb", "", ""},
  4877. {"file1", "h\ne\n\nl\nl\no\n", "hello.txt", "text/plain"},
  4878. {"file2", R"({\n "world": true\n}\n)", "world.json", "application/json"},
  4879. {"file3", "", "", "application/octet-stream"},
  4880. };
  4881. auto res = cli_.Post("/content_receiver", items);
  4882. ASSERT_TRUE(res);
  4883. EXPECT_EQ(StatusCode::OK_200, res->status);
  4884. }
  4885. TEST_F(ServerTest, PostMultipartPlusBoundary) {
  4886. UploadFormDataItems items = {
  4887. {"text1", "text default", "", ""},
  4888. {"text2", "aωb", "", ""},
  4889. {"file1", "h\ne\n\nl\nl\no\n", "hello.txt", "text/plain"},
  4890. {"file2", R"({\n "world": true\n}\n)", "world.json", "application/json"},
  4891. {"file3", "", "", "application/octet-stream"},
  4892. };
  4893. auto boundary = std::string("+++++");
  4894. std::string body;
  4895. for (const auto &item : items) {
  4896. body += "--" + boundary + "\r\n";
  4897. body += "Content-Disposition: form-data; name=\"" + item.name + "\"";
  4898. if (!item.filename.empty()) {
  4899. body += "; filename=\"" + item.filename + "\"";
  4900. }
  4901. body += "\r\n";
  4902. if (!item.content_type.empty()) {
  4903. body += "Content-Type: " + item.content_type + "\r\n";
  4904. }
  4905. body += "\r\n";
  4906. body += item.content + "\r\n";
  4907. }
  4908. body += "--" + boundary + "--\r\n";
  4909. std::string content_type = "multipart/form-data; boundary=" + boundary;
  4910. auto res = cli_.Post("/content_receiver", body, content_type.c_str());
  4911. ASSERT_TRUE(res);
  4912. EXPECT_EQ(StatusCode::OK_200, res->status);
  4913. }
  4914. TEST_F(ServerTest, PostContentReceiverGzip) {
  4915. cli_.set_compress(true);
  4916. auto res = cli_.Post("/content_receiver", "content", "text/plain");
  4917. ASSERT_TRUE(res);
  4918. ASSERT_EQ(StatusCode::OK_200, res->status);
  4919. ASSERT_EQ("content", res->body);
  4920. }
  4921. TEST_F(ServerTest, PutContentReceiver) {
  4922. auto res = cli_.Put("/content_receiver", "content", "text/plain");
  4923. ASSERT_TRUE(res);
  4924. ASSERT_EQ(StatusCode::OK_200, res->status);
  4925. ASSERT_EQ("content", res->body);
  4926. }
  4927. TEST_F(ServerTest, PatchContentReceiver) {
  4928. auto res = cli_.Patch("/content_receiver", "content", "text/plain");
  4929. ASSERT_TRUE(res);
  4930. ASSERT_EQ(StatusCode::OK_200, res->status);
  4931. ASSERT_EQ("content", res->body);
  4932. }
  4933. template <typename ClientType>
  4934. void TestWithHeadersAndContentReceiver(
  4935. ClientType &cli,
  4936. std::function<Result(ClientType &, const std::string &, const Headers &,
  4937. const std::string &, const std::string &,
  4938. ContentReceiver, DownloadProgress)>
  4939. request_func) {
  4940. Headers headers;
  4941. headers.emplace("X-Custom-Header", "test-value");
  4942. std::string received_body;
  4943. auto res = request_func(
  4944. cli, "/content_receiver", headers, "content", "application/json",
  4945. [&](const char *data, size_t data_length) {
  4946. received_body.append(data, data_length);
  4947. return true;
  4948. },
  4949. nullptr);
  4950. ASSERT_TRUE(res);
  4951. EXPECT_EQ(StatusCode::OK_200, res->status);
  4952. EXPECT_EQ("content", received_body);
  4953. }
  4954. TEST_F(ServerTest, PostWithHeadersAndContentReceiver) {
  4955. #ifdef CPPHTTPLIB_SSL_ENABLED
  4956. using ClientT = SSLClient;
  4957. #else
  4958. using ClientT = Client;
  4959. #endif
  4960. TestWithHeadersAndContentReceiver<ClientT>(
  4961. cli_, [](ClientT &cli, const std::string &path, const Headers &headers,
  4962. const std::string &body, const std::string &content_type,
  4963. ContentReceiver receiver, DownloadProgress progress) {
  4964. return cli.Post(path, headers, body, content_type, receiver, progress);
  4965. });
  4966. }
  4967. TEST_F(ServerTest, PutWithHeadersAndContentReceiver) {
  4968. #ifdef CPPHTTPLIB_SSL_ENABLED
  4969. using ClientT = SSLClient;
  4970. #else
  4971. using ClientT = Client;
  4972. #endif
  4973. TestWithHeadersAndContentReceiver<ClientT>(
  4974. cli_, [](ClientT &cli, const std::string &path, const Headers &headers,
  4975. const std::string &body, const std::string &content_type,
  4976. ContentReceiver receiver, DownloadProgress progress) {
  4977. return cli.Put(path, headers, body, content_type, receiver, progress);
  4978. });
  4979. }
  4980. TEST_F(ServerTest, PatchWithHeadersAndContentReceiver) {
  4981. #ifdef CPPHTTPLIB_SSL_ENABLED
  4982. using ClientT = SSLClient;
  4983. #else
  4984. using ClientT = Client;
  4985. #endif
  4986. TestWithHeadersAndContentReceiver<ClientT>(
  4987. cli_, [](ClientT &cli, const std::string &path, const Headers &headers,
  4988. const std::string &body, const std::string &content_type,
  4989. ContentReceiver receiver, DownloadProgress progress) {
  4990. return cli.Patch(path, headers, body, content_type, receiver, progress);
  4991. });
  4992. }
  4993. template <typename ClientType>
  4994. void TestWithHeadersAndContentReceiverWithProgress(
  4995. ClientType &cli,
  4996. std::function<Result(ClientType &, const std::string &, const Headers &,
  4997. const std::string &, const std::string &,
  4998. ContentReceiver, DownloadProgress)>
  4999. request_func) {
  5000. Headers headers;
  5001. headers.emplace("X-Test-Header", "progress-test");
  5002. std::string received_body;
  5003. auto progress_called = false;
  5004. auto res = request_func(
  5005. cli, "/content_receiver", headers, "content", "text/plain",
  5006. [&](const char *data, size_t data_length) {
  5007. received_body.append(data, data_length);
  5008. return true;
  5009. },
  5010. [&](uint64_t /*current*/, uint64_t /*total*/) {
  5011. progress_called = true;
  5012. return true;
  5013. });
  5014. ASSERT_TRUE(res);
  5015. EXPECT_EQ(StatusCode::OK_200, res->status);
  5016. EXPECT_EQ("content", received_body);
  5017. EXPECT_TRUE(progress_called);
  5018. }
  5019. TEST_F(ServerTest, PostWithHeadersAndContentReceiverWithProgress) {
  5020. #ifdef CPPHTTPLIB_SSL_ENABLED
  5021. using ClientT = SSLClient;
  5022. #else
  5023. using ClientT = Client;
  5024. #endif
  5025. TestWithHeadersAndContentReceiverWithProgress<ClientT>(
  5026. cli_, [](ClientT &cli, const std::string &path, const Headers &headers,
  5027. const std::string &body, const std::string &content_type,
  5028. ContentReceiver receiver, DownloadProgress progress) {
  5029. return cli.Post(path, headers, body, content_type, receiver, progress);
  5030. });
  5031. }
  5032. TEST_F(ServerTest, PutWithHeadersAndContentReceiverWithProgress) {
  5033. #ifdef CPPHTTPLIB_SSL_ENABLED
  5034. using ClientT = SSLClient;
  5035. #else
  5036. using ClientT = Client;
  5037. #endif
  5038. TestWithHeadersAndContentReceiverWithProgress<ClientT>(
  5039. cli_, [](ClientT &cli, const std::string &path, const Headers &headers,
  5040. const std::string &body, const std::string &content_type,
  5041. ContentReceiver receiver, DownloadProgress progress) {
  5042. return cli.Put(path, headers, body, content_type, receiver, progress);
  5043. });
  5044. }
  5045. TEST_F(ServerTest, PatchWithHeadersAndContentReceiverWithProgress) {
  5046. #ifdef CPPHTTPLIB_SSL_ENABLED
  5047. using ClientT = SSLClient;
  5048. #else
  5049. using ClientT = Client;
  5050. #endif
  5051. TestWithHeadersAndContentReceiverWithProgress<ClientT>(
  5052. cli_, [](ClientT &cli, const std::string &path, const Headers &headers,
  5053. const std::string &body, const std::string &content_type,
  5054. ContentReceiver receiver, DownloadProgress progress) {
  5055. return cli.Patch(path, headers, body, content_type, receiver, progress);
  5056. });
  5057. }
  5058. template <typename ClientType>
  5059. void TestWithHeadersAndContentReceiverError(
  5060. ClientType &cli, std::function<Result(ClientType &, const std::string &,
  5061. const Headers &, const std::string &,
  5062. const std::string &, ContentReceiver)>
  5063. request_func) {
  5064. Headers headers;
  5065. headers.emplace("X-Error-Test", "true");
  5066. std::string received_body;
  5067. auto receiver_failed = false;
  5068. auto res =
  5069. request_func(cli, "/content_receiver", headers, "content", "text/plain",
  5070. [&](const char *data, size_t data_length) {
  5071. received_body.append(data, data_length);
  5072. receiver_failed = true;
  5073. return false;
  5074. });
  5075. ASSERT_FALSE(res);
  5076. EXPECT_TRUE(receiver_failed);
  5077. }
  5078. TEST_F(ServerTest, PostWithHeadersAndContentReceiverError) {
  5079. #ifdef CPPHTTPLIB_SSL_ENABLED
  5080. using ClientT = SSLClient;
  5081. #else
  5082. using ClientT = Client;
  5083. #endif
  5084. TestWithHeadersAndContentReceiverError<ClientT>(
  5085. cli_, [](ClientT &cli, const std::string &path, const Headers &headers,
  5086. const std::string &body, const std::string &content_type,
  5087. ContentReceiver receiver) {
  5088. return cli.Post(path, headers, body, content_type, receiver);
  5089. });
  5090. }
  5091. TEST_F(ServerTest, PuttWithHeadersAndContentReceiverError) {
  5092. #ifdef CPPHTTPLIB_SSL_ENABLED
  5093. using ClientT = SSLClient;
  5094. #else
  5095. using ClientT = Client;
  5096. #endif
  5097. TestWithHeadersAndContentReceiverError<ClientT>(
  5098. cli_, [](ClientT &cli, const std::string &path, const Headers &headers,
  5099. const std::string &body, const std::string &content_type,
  5100. ContentReceiver receiver) {
  5101. return cli.Put(path, headers, body, content_type, receiver);
  5102. });
  5103. }
  5104. TEST_F(ServerTest, PatchWithHeadersAndContentReceiverError) {
  5105. #ifdef CPPHTTPLIB_SSL_ENABLED
  5106. using ClientT = SSLClient;
  5107. #else
  5108. using ClientT = Client;
  5109. #endif
  5110. TestWithHeadersAndContentReceiverError<ClientT>(
  5111. cli_, [](ClientT &cli, const std::string &path, const Headers &headers,
  5112. const std::string &body, const std::string &content_type,
  5113. ContentReceiver receiver) {
  5114. return cli.Patch(path, headers, body, content_type, receiver);
  5115. });
  5116. }
  5117. TEST_F(ServerTest, PostQueryStringAndBody) {
  5118. auto res =
  5119. cli_.Post("/query-string-and-body?key=value", "content", "text/plain");
  5120. ASSERT_TRUE(res);
  5121. ASSERT_EQ(StatusCode::OK_200, res->status);
  5122. }
  5123. TEST_F(ServerTest, HTTP2Magic) {
  5124. Request req;
  5125. req.method = "PRI";
  5126. req.path = "*";
  5127. req.body = "SM";
  5128. auto res = std::make_shared<Response>();
  5129. auto error = Error::Success;
  5130. auto ret = cli_.send(req, *res, error);
  5131. ASSERT_TRUE(ret);
  5132. EXPECT_EQ(StatusCode::BadRequest_400, res->status);
  5133. }
  5134. TEST_F(ServerTest, KeepAlive) {
  5135. auto res = cli_.Get("/hi");
  5136. ASSERT_TRUE(res);
  5137. EXPECT_EQ(StatusCode::OK_200, res->status);
  5138. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5139. EXPECT_EQ("Hello World!", res->body);
  5140. res = cli_.Get("/hi");
  5141. ASSERT_TRUE(res);
  5142. EXPECT_EQ(StatusCode::OK_200, res->status);
  5143. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5144. EXPECT_EQ("Hello World!", res->body);
  5145. res = cli_.Get("/hi");
  5146. ASSERT_TRUE(res);
  5147. EXPECT_EQ(StatusCode::OK_200, res->status);
  5148. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5149. EXPECT_EQ("Hello World!", res->body);
  5150. res = cli_.Get("/not-exist");
  5151. ASSERT_TRUE(res);
  5152. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  5153. res = cli_.Post("/empty", "", "text/plain");
  5154. ASSERT_TRUE(res);
  5155. EXPECT_EQ(StatusCode::OK_200, res->status);
  5156. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5157. EXPECT_EQ("empty", res->body);
  5158. EXPECT_EQ("close", res->get_header_value("Connection"));
  5159. res = cli_.Post(
  5160. "/empty", 0, [&](size_t, size_t, DataSink &) { return true; },
  5161. "text/plain");
  5162. ASSERT_TRUE(res);
  5163. EXPECT_EQ(StatusCode::OK_200, res->status);
  5164. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5165. EXPECT_EQ("empty", res->body);
  5166. cli_.set_keep_alive(false);
  5167. res = cli_.Get("/last-request");
  5168. ASSERT_TRUE(res);
  5169. EXPECT_EQ(StatusCode::OK_200, res->status);
  5170. EXPECT_EQ("close", res->get_header_value("Connection"));
  5171. }
  5172. TEST_F(ServerTest, TooManyRedirect) {
  5173. cli_.set_follow_location(true);
  5174. auto res = cli_.Get("/redirect/0");
  5175. ASSERT_TRUE(!res);
  5176. EXPECT_EQ(Error::ExceedRedirectCount, res.error());
  5177. }
  5178. TEST_F(ServerTest, BadRequestLineCancelsKeepAlive) {
  5179. Request req;
  5180. req.method = "FOOBAR";
  5181. req.path = "/hi";
  5182. cli_.set_keep_alive(true);
  5183. auto res = cli_.send(req);
  5184. ASSERT_TRUE(res);
  5185. EXPECT_EQ(StatusCode::BadRequest_400, res->status);
  5186. EXPECT_EQ("close", res->get_header_value("Connection"));
  5187. EXPECT_FALSE(cli_.is_socket_open());
  5188. }
  5189. TEST_F(ServerTest, StartTime) { auto res = cli_.Get("/test-start-time"); }
  5190. #ifdef CPPHTTPLIB_ZLIB_SUPPORT
  5191. TEST_F(ServerTest, Gzip) {
  5192. Headers headers;
  5193. headers.emplace("Accept-Encoding", "gzip, deflate");
  5194. auto res = cli_.Get("/compress", headers);
  5195. ASSERT_TRUE(res);
  5196. EXPECT_EQ("gzip", res->get_header_value("Content-Encoding"));
  5197. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5198. EXPECT_EQ("33", res->get_header_value("Content-Length"));
  5199. EXPECT_EQ("123456789012345678901234567890123456789012345678901234567890123456"
  5200. "7890123456789012345678901234567890",
  5201. res->body);
  5202. EXPECT_EQ(StatusCode::OK_200, res->status);
  5203. }
  5204. TEST_F(ServerTest, GzipWithoutAcceptEncoding) {
  5205. Headers headers;
  5206. headers.emplace("Accept-Encoding", "");
  5207. auto res = cli_.Get("/compress", headers);
  5208. ASSERT_TRUE(res);
  5209. EXPECT_TRUE(res->get_header_value("Content-Encoding").empty());
  5210. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5211. EXPECT_EQ("100", res->get_header_value("Content-Length"));
  5212. EXPECT_EQ("123456789012345678901234567890123456789012345678901234567890123456"
  5213. "7890123456789012345678901234567890",
  5214. res->body);
  5215. EXPECT_EQ(StatusCode::OK_200, res->status);
  5216. }
  5217. TEST_F(ServerTest, GzipWithContentReceiver) {
  5218. Headers headers;
  5219. headers.emplace("Accept-Encoding", "gzip, deflate");
  5220. std::string body;
  5221. auto res = cli_.Get("/compress", headers,
  5222. [&](const char *data, uint64_t data_length) {
  5223. EXPECT_EQ(100U, data_length);
  5224. body.append(data, data_length);
  5225. return true;
  5226. });
  5227. ASSERT_TRUE(res);
  5228. EXPECT_EQ("gzip", res->get_header_value("Content-Encoding"));
  5229. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5230. EXPECT_EQ("33", res->get_header_value("Content-Length"));
  5231. EXPECT_EQ("123456789012345678901234567890123456789012345678901234567890123456"
  5232. "7890123456789012345678901234567890",
  5233. body);
  5234. EXPECT_EQ(StatusCode::OK_200, res->status);
  5235. }
  5236. TEST_F(ServerTest, GzipWithoutDecompressing) {
  5237. Headers headers;
  5238. headers.emplace("Accept-Encoding", "gzip, deflate");
  5239. cli_.set_decompress(false);
  5240. auto res = cli_.Get("/compress", headers);
  5241. ASSERT_TRUE(res);
  5242. EXPECT_EQ("gzip", res->get_header_value("Content-Encoding"));
  5243. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5244. EXPECT_EQ("33", res->get_header_value("Content-Length"));
  5245. EXPECT_EQ(33U, res->body.size());
  5246. EXPECT_EQ(StatusCode::OK_200, res->status);
  5247. }
  5248. TEST_F(ServerTest, GzipWithContentReceiverWithoutAcceptEncoding) {
  5249. Headers headers;
  5250. headers.emplace("Accept-Encoding", "");
  5251. std::string body;
  5252. auto res = cli_.Get("/compress", headers,
  5253. [&](const char *data, uint64_t data_length) {
  5254. EXPECT_EQ(100U, data_length);
  5255. body.append(data, data_length);
  5256. return true;
  5257. });
  5258. ASSERT_TRUE(res);
  5259. EXPECT_TRUE(res->get_header_value("Content-Encoding").empty());
  5260. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5261. EXPECT_EQ("100", res->get_header_value("Content-Length"));
  5262. EXPECT_EQ("123456789012345678901234567890123456789012345678901234567890123456"
  5263. "7890123456789012345678901234567890",
  5264. body);
  5265. EXPECT_EQ(StatusCode::OK_200, res->status);
  5266. }
  5267. TEST_F(ServerTest, NoGzip) {
  5268. Headers headers;
  5269. headers.emplace("Accept-Encoding", "gzip, deflate");
  5270. auto res = cli_.Get("/nocompress", headers);
  5271. ASSERT_TRUE(res);
  5272. EXPECT_EQ(false, res->has_header("Content-Encoding"));
  5273. EXPECT_EQ("application/octet-stream", res->get_header_value("Content-Type"));
  5274. EXPECT_EQ("100", res->get_header_value("Content-Length"));
  5275. EXPECT_EQ("123456789012345678901234567890123456789012345678901234567890123456"
  5276. "7890123456789012345678901234567890",
  5277. res->body);
  5278. EXPECT_EQ(StatusCode::OK_200, res->status);
  5279. }
  5280. TEST_F(ServerTest, NoGzipWithContentReceiver) {
  5281. Headers headers;
  5282. headers.emplace("Accept-Encoding", "gzip, deflate");
  5283. std::string body;
  5284. auto res = cli_.Get("/nocompress", headers,
  5285. [&](const char *data, uint64_t data_length) {
  5286. EXPECT_EQ(100U, data_length);
  5287. body.append(data, data_length);
  5288. return true;
  5289. });
  5290. ASSERT_TRUE(res);
  5291. EXPECT_EQ(false, res->has_header("Content-Encoding"));
  5292. EXPECT_EQ("application/octet-stream", res->get_header_value("Content-Type"));
  5293. EXPECT_EQ("100", res->get_header_value("Content-Length"));
  5294. EXPECT_EQ("123456789012345678901234567890123456789012345678901234567890123456"
  5295. "7890123456789012345678901234567890",
  5296. body);
  5297. EXPECT_EQ(StatusCode::OK_200, res->status);
  5298. }
  5299. TEST_F(ServerTest, MultipartFormDataGzip) {
  5300. UploadFormDataItems items = {
  5301. {"key1", "test", "", ""},
  5302. {"key2", "--abcdefg123", "", ""},
  5303. };
  5304. cli_.set_compress(true);
  5305. auto res = cli_.Post("/compress-multipart", items);
  5306. ASSERT_TRUE(res);
  5307. EXPECT_EQ(StatusCode::OK_200, res->status);
  5308. }
  5309. #endif
  5310. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  5311. TEST_F(ServerTest, Brotli) {
  5312. Headers headers;
  5313. headers.emplace("Accept-Encoding", "br");
  5314. auto res = cli_.Get("/compress", headers);
  5315. ASSERT_TRUE(res);
  5316. EXPECT_EQ("br", res->get_header_value("Content-Encoding"));
  5317. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5318. EXPECT_EQ("19", res->get_header_value("Content-Length"));
  5319. EXPECT_EQ("123456789012345678901234567890123456789012345678901234567890123456"
  5320. "7890123456789012345678901234567890",
  5321. res->body);
  5322. EXPECT_EQ(StatusCode::OK_200, res->status);
  5323. }
  5324. #endif
  5325. #ifdef CPPHTTPLIB_ZSTD_SUPPORT
  5326. TEST_F(ServerTest, Zstd) {
  5327. Headers headers;
  5328. headers.emplace("Accept-Encoding", "zstd");
  5329. auto res = cli_.Get("/compress", headers);
  5330. ASSERT_TRUE(res);
  5331. EXPECT_EQ("zstd", res->get_header_value("Content-Encoding"));
  5332. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5333. EXPECT_EQ("26", res->get_header_value("Content-Length"));
  5334. EXPECT_EQ("123456789012345678901234567890123456789012345678901234567890123456"
  5335. "7890123456789012345678901234567890",
  5336. res->body);
  5337. EXPECT_EQ(StatusCode::OK_200, res->status);
  5338. }
  5339. TEST_F(ServerTest, ZstdWithoutAcceptEncoding) {
  5340. Headers headers;
  5341. headers.emplace("Accept-Encoding", "");
  5342. auto res = cli_.Get("/compress", headers);
  5343. ASSERT_TRUE(res);
  5344. EXPECT_TRUE(res->get_header_value("Content-Encoding").empty());
  5345. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5346. EXPECT_EQ("100", res->get_header_value("Content-Length"));
  5347. EXPECT_EQ("123456789012345678901234567890123456789012345678901234567890123456"
  5348. "7890123456789012345678901234567890",
  5349. res->body);
  5350. EXPECT_EQ(StatusCode::OK_200, res->status);
  5351. }
  5352. TEST_F(ServerTest, ZstdWithContentReceiver) {
  5353. Headers headers;
  5354. headers.emplace("Accept-Encoding", "zstd");
  5355. std::string body;
  5356. auto res = cli_.Get("/compress", headers,
  5357. [&](const char *data, uint64_t data_length) {
  5358. EXPECT_EQ(100U, data_length);
  5359. body.append(data, data_length);
  5360. return true;
  5361. });
  5362. ASSERT_TRUE(res);
  5363. EXPECT_EQ("zstd", res->get_header_value("Content-Encoding"));
  5364. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5365. EXPECT_EQ("26", res->get_header_value("Content-Length"));
  5366. EXPECT_EQ("123456789012345678901234567890123456789012345678901234567890123456"
  5367. "7890123456789012345678901234567890",
  5368. body);
  5369. EXPECT_EQ(StatusCode::OK_200, res->status);
  5370. }
  5371. TEST_F(ServerTest, ZstdWithoutDecompressing) {
  5372. Headers headers;
  5373. headers.emplace("Accept-Encoding", "zstd");
  5374. cli_.set_decompress(false);
  5375. auto res = cli_.Get("/compress", headers);
  5376. unsigned char compressed[26] = {0x28, 0xb5, 0x2f, 0xfd, 0x20, 0x64, 0x8d,
  5377. 0x00, 0x00, 0x50, 0x31, 0x32, 0x33, 0x34,
  5378. 0x35, 0x36, 0x37, 0x38, 0x39, 0x30, 0x01,
  5379. 0x00, 0xd7, 0xa9, 0x20, 0x01};
  5380. ASSERT_TRUE(res);
  5381. EXPECT_EQ("zstd", res->get_header_value("Content-Encoding"));
  5382. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5383. EXPECT_EQ("26", res->get_header_value("Content-Length"));
  5384. EXPECT_EQ(StatusCode::OK_200, res->status);
  5385. ASSERT_EQ(26U, res->body.size());
  5386. EXPECT_TRUE(std::memcmp(compressed, res->body.data(), sizeof(compressed)) ==
  5387. 0);
  5388. }
  5389. TEST_F(ServerTest, ZstdWithContentReceiverWithoutAcceptEncoding) {
  5390. Headers headers;
  5391. headers.emplace("Accept-Encoding", "");
  5392. std::string body;
  5393. auto res = cli_.Get("/compress", headers,
  5394. [&](const char *data, uint64_t data_length) {
  5395. EXPECT_EQ(100U, data_length);
  5396. body.append(data, data_length);
  5397. return true;
  5398. });
  5399. ASSERT_TRUE(res);
  5400. EXPECT_TRUE(res->get_header_value("Content-Encoding").empty());
  5401. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  5402. EXPECT_EQ("100", res->get_header_value("Content-Length"));
  5403. EXPECT_EQ("123456789012345678901234567890123456789012345678901234567890123456"
  5404. "7890123456789012345678901234567890",
  5405. body);
  5406. EXPECT_EQ(StatusCode::OK_200, res->status);
  5407. }
  5408. TEST_F(ServerTest, NoZstd) {
  5409. Headers headers;
  5410. headers.emplace("Accept-Encoding", "zstd");
  5411. auto res = cli_.Get("/nocompress", headers);
  5412. ASSERT_TRUE(res);
  5413. EXPECT_EQ(false, res->has_header("Content-Encoding"));
  5414. EXPECT_EQ("application/octet-stream", res->get_header_value("Content-Type"));
  5415. EXPECT_EQ("100", res->get_header_value("Content-Length"));
  5416. EXPECT_EQ("123456789012345678901234567890123456789012345678901234567890123456"
  5417. "7890123456789012345678901234567890",
  5418. res->body);
  5419. EXPECT_EQ(StatusCode::OK_200, res->status);
  5420. }
  5421. TEST_F(ServerTest, NoZstdWithContentReceiver) {
  5422. Headers headers;
  5423. headers.emplace("Accept-Encoding", "zstd");
  5424. std::string body;
  5425. auto res = cli_.Get("/nocompress", headers,
  5426. [&](const char *data, uint64_t data_length) {
  5427. EXPECT_EQ(100U, data_length);
  5428. body.append(data, data_length);
  5429. return true;
  5430. });
  5431. ASSERT_TRUE(res);
  5432. EXPECT_EQ(false, res->has_header("Content-Encoding"));
  5433. EXPECT_EQ("application/octet-stream", res->get_header_value("Content-Type"));
  5434. EXPECT_EQ("100", res->get_header_value("Content-Length"));
  5435. EXPECT_EQ("123456789012345678901234567890123456789012345678901234567890123456"
  5436. "7890123456789012345678901234567890",
  5437. body);
  5438. EXPECT_EQ(StatusCode::OK_200, res->status);
  5439. }
  5440. // TODO: How to enable zstd ??
  5441. TEST_F(ServerTest, MultipartFormDataZstd) {
  5442. UploadFormDataItems items = {
  5443. {"key1", "test", "", ""},
  5444. {"key2", "--abcdefg123", "", ""},
  5445. };
  5446. Headers headers;
  5447. headers.emplace("Accept-Encoding", "zstd");
  5448. cli_.set_compress(true);
  5449. auto res = cli_.Post("/compress-multipart", headers, items);
  5450. ASSERT_TRUE(res);
  5451. EXPECT_EQ(StatusCode::OK_200, res->status);
  5452. }
  5453. TEST_F(ServerTest, PutWithContentProviderWithZstd) {
  5454. Headers headers;
  5455. headers.emplace("Accept-Encoding", "zstd");
  5456. cli_.set_compress(true);
  5457. auto res = cli_.Put(
  5458. "/put", headers, 3,
  5459. [](size_t /*offset*/, size_t /*length*/, DataSink &sink) {
  5460. sink.os << "PUT";
  5461. return true;
  5462. },
  5463. "text/plain");
  5464. ASSERT_TRUE(res);
  5465. EXPECT_EQ(StatusCode::OK_200, res->status);
  5466. EXPECT_EQ("PUT", res->body);
  5467. }
  5468. // Pre-compression logging tests
  5469. TEST_F(ServerTest, PreCompressionLogging) {
  5470. // Test data for compression (matches the actual /compress endpoint content)
  5471. const std::string test_content =
  5472. "123456789012345678901234567890123456789012345678901234567890123456789012"
  5473. "3456789012345678901234567890";
  5474. // Variables to capture logging data
  5475. std::string pre_compression_body;
  5476. std::string pre_compression_content_type;
  5477. std::string pre_compression_content_encoding;
  5478. std::string post_compression_body;
  5479. std::string post_compression_content_type;
  5480. std::string post_compression_content_encoding;
  5481. // Set up pre-compression logger
  5482. svr_.set_pre_compression_logger([&](const Request & /*req*/,
  5483. const Response &res) {
  5484. pre_compression_body = res.body;
  5485. pre_compression_content_type = res.get_header_value("Content-Type");
  5486. pre_compression_content_encoding = res.get_header_value("Content-Encoding");
  5487. });
  5488. // Set up post-compression logger
  5489. svr_.set_logger([&](const Request & /*req*/, const Response &res) {
  5490. post_compression_body = res.body;
  5491. post_compression_content_type = res.get_header_value("Content-Type");
  5492. post_compression_content_encoding =
  5493. res.get_header_value("Content-Encoding");
  5494. });
  5495. // Test with gzip compression
  5496. Headers headers;
  5497. headers.emplace("Accept-Encoding", "gzip");
  5498. auto res = cli_.Get("/compress", headers);
  5499. // Verify response was compressed
  5500. ASSERT_TRUE(res);
  5501. EXPECT_EQ(StatusCode::OK_200, res->status);
  5502. EXPECT_EQ("gzip", res->get_header_value("Content-Encoding"));
  5503. // Verify pre-compression logger captured uncompressed content
  5504. EXPECT_EQ(test_content, pre_compression_body);
  5505. EXPECT_EQ("text/plain", pre_compression_content_type);
  5506. EXPECT_TRUE(pre_compression_content_encoding
  5507. .empty()); // No encoding header before compression
  5508. // Verify post-compression logger captured compressed content
  5509. EXPECT_NE(test_content,
  5510. post_compression_body); // Should be different after compression
  5511. EXPECT_EQ("text/plain", post_compression_content_type);
  5512. EXPECT_EQ("gzip", post_compression_content_encoding);
  5513. // Verify compressed content is smaller
  5514. EXPECT_LT(post_compression_body.size(), pre_compression_body.size());
  5515. }
  5516. TEST_F(ServerTest, PreCompressionLoggingWithBrotli) {
  5517. const std::string test_content =
  5518. "123456789012345678901234567890123456789012345678901234567890123456789012"
  5519. "3456789012345678901234567890";
  5520. std::string pre_compression_body;
  5521. std::string post_compression_body;
  5522. svr_.set_pre_compression_logger(
  5523. [&](const Request & /*req*/, const Response &res) {
  5524. pre_compression_body = res.body;
  5525. });
  5526. svr_.set_logger([&](const Request & /*req*/, const Response &res) {
  5527. post_compression_body = res.body;
  5528. });
  5529. Headers headers;
  5530. headers.emplace("Accept-Encoding", "br");
  5531. auto res = cli_.Get("/compress", headers);
  5532. ASSERT_TRUE(res);
  5533. EXPECT_EQ(StatusCode::OK_200, res->status);
  5534. EXPECT_EQ("br", res->get_header_value("Content-Encoding"));
  5535. // Verify pre-compression content is uncompressed
  5536. EXPECT_EQ(test_content, pre_compression_body);
  5537. // Verify post-compression content is compressed
  5538. EXPECT_NE(test_content, post_compression_body);
  5539. EXPECT_LT(post_compression_body.size(), pre_compression_body.size());
  5540. }
  5541. TEST_F(ServerTest, PreCompressionLoggingWithoutCompression) {
  5542. const std::string test_content =
  5543. "123456789012345678901234567890123456789012345678901234567890123456789012"
  5544. "3456789012345678901234567890";
  5545. std::string pre_compression_body;
  5546. std::string post_compression_body;
  5547. svr_.set_pre_compression_logger(
  5548. [&](const Request & /*req*/, const Response &res) {
  5549. pre_compression_body = res.body;
  5550. });
  5551. svr_.set_logger([&](const Request & /*req*/, const Response &res) {
  5552. post_compression_body = res.body;
  5553. });
  5554. // Request without compression (use /nocompress endpoint)
  5555. Headers headers;
  5556. auto res = cli_.Get("/nocompress", headers);
  5557. ASSERT_TRUE(res);
  5558. EXPECT_EQ(StatusCode::OK_200, res->status);
  5559. EXPECT_TRUE(res->get_header_value("Content-Encoding").empty());
  5560. // Pre-compression logger should not be called when no compression is applied
  5561. EXPECT_TRUE(
  5562. pre_compression_body.empty()); // Pre-compression logger not called
  5563. EXPECT_EQ(
  5564. test_content,
  5565. post_compression_body); // Post-compression logger captures final content
  5566. }
  5567. TEST_F(ServerTest, PreCompressionLoggingOnlyPreLogger) {
  5568. const std::string test_content =
  5569. "123456789012345678901234567890123456789012345678901234567890123456789012"
  5570. "3456789012345678901234567890";
  5571. std::string pre_compression_body;
  5572. bool pre_logger_called = false;
  5573. // Set only pre-compression logger
  5574. svr_.set_pre_compression_logger(
  5575. [&](const Request & /*req*/, const Response &res) {
  5576. pre_compression_body = res.body;
  5577. pre_logger_called = true;
  5578. });
  5579. Headers headers;
  5580. headers.emplace("Accept-Encoding", "gzip");
  5581. auto res = cli_.Get("/compress", headers);
  5582. ASSERT_TRUE(res);
  5583. EXPECT_EQ(StatusCode::OK_200, res->status);
  5584. EXPECT_EQ("gzip", res->get_header_value("Content-Encoding"));
  5585. // Verify pre-compression logger was called
  5586. EXPECT_TRUE(pre_logger_called);
  5587. EXPECT_EQ(test_content, pre_compression_body);
  5588. }
  5589. TEST_F(ServerTest, SendLargeBodyAfterRequestLineError) {
  5590. {
  5591. // Test with Expect: 100-continue header - success case
  5592. // Server returns 100 Continue, client sends body, server returns 200 OK
  5593. Request req;
  5594. req.method = "POST";
  5595. req.path = "/post-large";
  5596. req.set_header("Expect", "100-continue");
  5597. req.body = LARGE_DATA;
  5598. Response res;
  5599. auto error = Error::Success;
  5600. cli_.set_keep_alive(true);
  5601. auto ret = cli_.send(req, res, error);
  5602. EXPECT_TRUE(ret);
  5603. EXPECT_EQ(StatusCode::OK_200, res.status);
  5604. EXPECT_EQ(LARGE_DATA, res.body);
  5605. }
  5606. {
  5607. // Test with Expect: 100-continue header - error case
  5608. // Client should not send the body when server returns an error
  5609. Request req;
  5610. req.method = "POST";
  5611. req.path = "/post-large?q=" + LONG_QUERY_VALUE;
  5612. req.set_header("Expect", "100-continue");
  5613. req.body = LARGE_DATA;
  5614. Response res;
  5615. auto error = Error::Success;
  5616. auto start = std::chrono::high_resolution_clock::now();
  5617. cli_.set_keep_alive(true);
  5618. auto ret = cli_.send(req, res, error);
  5619. auto end = std::chrono::high_resolution_clock::now();
  5620. auto elapsed =
  5621. std::chrono::duration_cast<std::chrono::milliseconds>(end - start)
  5622. .count();
  5623. // With Expect: 100-continue, request completes successfully but with error
  5624. EXPECT_TRUE(ret);
  5625. EXPECT_EQ(StatusCode::UriTooLong_414, res.status);
  5626. EXPECT_EQ("close", res.get_header_value("Connection"));
  5627. EXPECT_FALSE(cli_.is_socket_open());
  5628. EXPECT_LE(elapsed, 200);
  5629. }
  5630. {
  5631. // Send an extra GET request to ensure error recovery without hanging
  5632. Request req;
  5633. req.method = "GET";
  5634. req.path = "/hi";
  5635. auto start = std::chrono::high_resolution_clock::now();
  5636. auto res = cli_.send(req);
  5637. auto end = std::chrono::high_resolution_clock::now();
  5638. auto elapsed =
  5639. std::chrono::duration_cast<std::chrono::milliseconds>(end - start)
  5640. .count();
  5641. ASSERT_TRUE(res);
  5642. EXPECT_EQ(StatusCode::OK_200, res->status);
  5643. EXPECT_EQ("Hello World!", res->body);
  5644. EXPECT_LE(elapsed, 500);
  5645. }
  5646. }
  5647. TEST(ZstdDecompressor, ChunkedDecompression) {
  5648. std::string data;
  5649. for (size_t i = 0; i < 32 * 1024; ++i) {
  5650. data.push_back(static_cast<char>('a' + i % 26));
  5651. }
  5652. std::string compressed_data;
  5653. {
  5654. httplib::detail::zstd_compressor compressor;
  5655. bool result = compressor.compress(
  5656. data.data(), data.size(),
  5657. /*last=*/true,
  5658. [&](const char *compressed_data_chunk, size_t compressed_data_size) {
  5659. compressed_data.insert(compressed_data.size(), compressed_data_chunk,
  5660. compressed_data_size);
  5661. return true;
  5662. });
  5663. ASSERT_TRUE(result);
  5664. }
  5665. std::string decompressed_data;
  5666. {
  5667. httplib::detail::zstd_decompressor decompressor;
  5668. // Chunk size is chosen specifically to have a decompressed chunk size equal
  5669. // to 16384 bytes 16384 bytes is the size of decompressor output buffer
  5670. size_t chunk_size = 130;
  5671. for (size_t chunk_begin = 0; chunk_begin < compressed_data.size();
  5672. chunk_begin += chunk_size) {
  5673. size_t current_chunk_size =
  5674. std::min(compressed_data.size() - chunk_begin, chunk_size);
  5675. bool result = decompressor.decompress(
  5676. compressed_data.data() + chunk_begin, current_chunk_size,
  5677. [&](const char *decompressed_data_chunk,
  5678. size_t decompressed_data_chunk_size) {
  5679. decompressed_data.insert(decompressed_data.size(),
  5680. decompressed_data_chunk,
  5681. decompressed_data_chunk_size);
  5682. return true;
  5683. });
  5684. ASSERT_TRUE(result);
  5685. }
  5686. }
  5687. ASSERT_EQ(data, decompressed_data);
  5688. }
  5689. TEST(ZstdDecompressor, Decompress) {
  5690. std::string original_text = "Compressed with ZSTD";
  5691. unsigned char data[29] = {0x28, 0xb5, 0x2f, 0xfd, 0x20, 0x14, 0xa1, 0x00,
  5692. 0x00, 0x43, 0x6f, 0x6d, 0x70, 0x72, 0x65, 0x73,
  5693. 0x73, 0x65, 0x64, 0x20, 0x77, 0x69, 0x74, 0x68,
  5694. 0x20, 0x5a, 0x53, 0x54, 0x44};
  5695. std::string compressed_data(data, data + sizeof(data) / sizeof(data[0]));
  5696. std::string decompressed_data;
  5697. {
  5698. httplib::detail::zstd_decompressor decompressor;
  5699. bool result = decompressor.decompress(
  5700. compressed_data.data(), compressed_data.size(),
  5701. [&](const char *decompressed_data_chunk,
  5702. size_t decompressed_data_chunk_size) {
  5703. decompressed_data.insert(decompressed_data.size(),
  5704. decompressed_data_chunk,
  5705. decompressed_data_chunk_size);
  5706. return true;
  5707. });
  5708. ASSERT_TRUE(result);
  5709. }
  5710. ASSERT_EQ(original_text, decompressed_data);
  5711. }
  5712. #endif
  5713. // Sends a raw request to a server listening at HOST:PORT.
  5714. static bool send_request(time_t read_timeout_sec, const std::string &req,
  5715. std::string *resp = nullptr) {
  5716. auto error = Error::Success;
  5717. auto client_sock = detail::create_client_socket(
  5718. HOST, "", PORT, AF_UNSPEC, false, false, nullptr,
  5719. /*connection_timeout_sec=*/5, 0,
  5720. /*read_timeout_sec=*/5, 0,
  5721. /*write_timeout_sec=*/5, 0, std::string(), error);
  5722. if (client_sock == INVALID_SOCKET) { return false; }
  5723. auto ret = detail::process_client_socket(
  5724. client_sock, read_timeout_sec, 0, 0, 0, 0,
  5725. std::chrono::steady_clock::time_point::min(), [&](Stream &strm) {
  5726. if (req.size() !=
  5727. static_cast<size_t>(strm.write(req.data(), req.size()))) {
  5728. return false;
  5729. }
  5730. char buf[512];
  5731. detail::stream_line_reader line_reader(strm, buf, sizeof(buf));
  5732. while (line_reader.getline()) {
  5733. if (resp) { *resp += line_reader.ptr(); }
  5734. }
  5735. return true;
  5736. });
  5737. detail::close_socket(client_sock);
  5738. return ret;
  5739. }
  5740. TEST(ServerRequestParsingTest, TrimWhitespaceFromHeaderValues) {
  5741. Server svr;
  5742. std::string header_value;
  5743. svr.Get("/validate-ws-in-headers", [&](const Request &req, Response &res) {
  5744. header_value = req.get_header_value("foo");
  5745. res.set_content("ok", "text/plain");
  5746. });
  5747. thread t = thread([&] { svr.listen(HOST, PORT); });
  5748. auto se = detail::scope_exit([&] {
  5749. svr.stop();
  5750. t.join();
  5751. ASSERT_FALSE(svr.is_running());
  5752. });
  5753. svr.wait_until_ready();
  5754. // Only space and horizontal tab are whitespace. Make sure other whitespace-
  5755. // like characters are not treated the same - use vertical tab and escape.
  5756. const std::string req = "GET /validate-ws-in-headers HTTP/1.1\r\n"
  5757. "foo: \t \v bar \x1B\t \r\n"
  5758. "Connection: close\r\n"
  5759. "\r\n";
  5760. std::string res;
  5761. ASSERT_TRUE(send_request(5, req, &res));
  5762. EXPECT_EQ(header_value, "");
  5763. EXPECT_EQ("HTTP/1.1 400 Bad Request", res.substr(0, 24));
  5764. }
  5765. // Sends a raw request and verifies that there isn't a crash or exception.
  5766. static void test_raw_request(const std::string &req,
  5767. std::string *out = nullptr) {
  5768. Server svr;
  5769. svr.Get("/hi", [&](const Request & /*req*/, Response &res) {
  5770. res.set_content("ok", "text/plain");
  5771. });
  5772. svr.Put("/put_hi", [&](const Request & /*req*/, Response &res) {
  5773. res.set_content("ok", "text/plain");
  5774. });
  5775. svr.Get("/header_field_value_check",
  5776. [&](const Request & /*req*/, Response &res) {
  5777. res.set_content("ok", "text/plain");
  5778. });
  5779. // Server read timeout must be longer than the client read timeout for the
  5780. // bug to reproduce, probably to force the server to process a request
  5781. // without a trailing blank line.
  5782. const time_t client_read_timeout_sec = 1;
  5783. svr.set_read_timeout(std::chrono::seconds(client_read_timeout_sec + 1));
  5784. bool listen_thread_ok = false;
  5785. thread t = thread([&] { listen_thread_ok = svr.listen(HOST, PORT); });
  5786. auto se = detail::scope_exit([&] {
  5787. svr.stop();
  5788. t.join();
  5789. ASSERT_FALSE(svr.is_running());
  5790. EXPECT_TRUE(listen_thread_ok);
  5791. });
  5792. svr.wait_until_ready();
  5793. ASSERT_TRUE(send_request(client_read_timeout_sec, req, out));
  5794. }
  5795. TEST(ServerRequestParsingTest, ReadHeadersRegexComplexity) {
  5796. // A certain header line causes an exception if the header property is parsed
  5797. // naively with a single regex. This occurs with libc++ but not libstdc++.
  5798. test_raw_request(
  5799. "GET /hi HTTP/1.1\r\n"
  5800. " : "
  5801. " "
  5802. " ");
  5803. }
  5804. TEST(ServerRequestParsingTest, ReadHeadersRegexComplexity2) {
  5805. // A certain header line causes an exception if the header property *name* is
  5806. // parsed with a regular expression starting with "(.+?):" - this is a non-
  5807. // greedy matcher and requires backtracking when there are a lot of ":"
  5808. // characters.
  5809. // This occurs with libc++ but not libstdc++.
  5810. test_raw_request(
  5811. "GET /hi HTTP/1.1\r\n"
  5812. ":-:::::::::::::::::::::::::::-::::::::::::::::::::::::@-&&&&&&&&&&&"
  5813. "--:::::::-:::::::::::::::::::::::::::::-:::::::::::::::::@-&&&&&&&&"
  5814. "&&&--:::::::-:::::::::::::::::::::::::::::-:::::::::::::::::@-:::::"
  5815. "::-:::::::::::::::::@-&&&&&&&&&&&--:::::::-::::::::::::::::::::::::"
  5816. ":::::-:::::::::::::::::@-&&&&&&&&&&&--:::::::-:::::::::::::::::::::"
  5817. "::::::::-:::::::::::::::::@-&&&&&&&--:::::::-::::::::::::::::::::::"
  5818. ":::::::-:::::::::::::::::@-&&&&&&&&&&&--:::::::-:::::::::::::::::::"
  5819. "::::::::::-:::::::::::::::::@-&&&&&::::::::::::-:::::::::::::::::@-"
  5820. "&&&&&&&&&&&--:::::::-:::::::::::::::::::::::::::::-::::::::::::::::"
  5821. ":@-&&&&&&&&&&&--:::::::-:::::::::::::::::::::::::::::-:::::::::::::"
  5822. "::::@-&&&&&&&&&&&--:::::::-:::::::::::::::::::::::::::::-::::::@-&&"
  5823. "&&&&&&&&&--:::::::-:::::::::::::::::::::::::::::-:::::::::::::::::@"
  5824. "::::::-:::::::::::::::::::::::::::::-:::::::::::::::::@-&&&&&&&&&&&"
  5825. "--:::::::-:::::::::::::::::::::::::::::-:::::::::::::::::@-&&&&&&&&"
  5826. "&&&--:::::::-:::::::::::::::::::::::::::::-:::::::::::::::::@-&&&&&"
  5827. "&&&&&&--:::::::-:::::::::::::::::::::::::::::-:::::::::::::::::@-&&"
  5828. "&&&&&&&&&--:::::::-:::::::::::::::::::::::::::::-:::::::::::::::::@"
  5829. "-&&&&&&&&&&&--:::::::-:::::::::::::::::::::::::::::-:::::::::::::::"
  5830. "::@-&&&&&&&&&&&--:::::::-:::::::::::::::::::::::::::::-::::::::::::"
  5831. ":::::@-&&&&&&&&&&&::-:::::::::::::::::@-&&&&&&&&&&&--:::::::-::::::"
  5832. ":::::::::::::::::::::::-:::::::::::::::::@-&&&&&&&&&&&--:::::::-:::"
  5833. "::::::::::::::::::::::::::-:::::::::::::::::@-&&&&&&&&&&&--:::::::-"
  5834. ":::::::::::::::::::::::::::::-:::::::::::::::::@-&&&&&&&&&&&---&&:&"
  5835. "&&.0------------:-:::::::::::::::::::::::::::::-:::::::::::::::::@-"
  5836. "&&&&&&&&&&&--:::::::-:::::::::::::::::::::::::::::-::::::::::::::::"
  5837. ":@-&&&&&&&&&&&--:::::::-:::::::::::::::::::::::::::::-:::::::::::::"
  5838. "::::@-&&&&&&&&&&&---&&:&&&.0------------O--------\rH PUTHTTP/1.1\r\n"
  5839. "&&&%%%");
  5840. }
  5841. TEST(ServerRequestParsingTest, ExcessiveWhitespaceInUnparsableHeaderLine) {
  5842. // Make sure this doesn't crash the server.
  5843. // In a previous version of the header line regex, the "\r" rendered the line
  5844. // unparsable and the regex engine repeatedly backtracked, trying to look for
  5845. // a new position where the leading white space ended and the field value
  5846. // began.
  5847. // The crash occurs with libc++ but not libstdc++.
  5848. test_raw_request("GET /hi HTTP/1.1\r\n"
  5849. "a:" +
  5850. std::string(2000, ' ') + '\r' + std::string(20, 'z') +
  5851. "\r\n"
  5852. "\r\n");
  5853. }
  5854. TEST(ServerRequestParsingTest, InvalidFirstChunkLengthInRequest) {
  5855. std::string out;
  5856. test_raw_request("PUT /put_hi HTTP/1.1\r\n"
  5857. "Content-Type: text/plain\r\n"
  5858. "Transfer-Encoding: chunked\r\n"
  5859. "\r\n"
  5860. "nothex\r\n",
  5861. &out);
  5862. EXPECT_EQ("HTTP/1.1 400 Bad Request", out.substr(0, 24));
  5863. }
  5864. TEST(ServerRequestParsingTest, InvalidSecondChunkLengthInRequest) {
  5865. std::string out;
  5866. test_raw_request("PUT /put_hi HTTP/1.1\r\n"
  5867. "Content-Type: text/plain\r\n"
  5868. "Transfer-Encoding: chunked\r\n"
  5869. "\r\n"
  5870. "3\r\n"
  5871. "xyz\r\n"
  5872. "NaN\r\n",
  5873. &out);
  5874. EXPECT_EQ("HTTP/1.1 400 Bad Request", out.substr(0, 24));
  5875. }
  5876. TEST(ServerRequestParsingTest, ChunkLengthTooHighInRequest) {
  5877. std::string out;
  5878. test_raw_request("PUT /put_hi HTTP/1.1\r\n"
  5879. "Content-Type: text/plain\r\n"
  5880. "Transfer-Encoding: chunked\r\n"
  5881. "\r\n"
  5882. // Length is too large for 64 bits.
  5883. "1ffffffffffffffff\r\n"
  5884. "xyz\r\n",
  5885. &out);
  5886. EXPECT_EQ("HTTP/1.1 400 Bad Request", out.substr(0, 24));
  5887. }
  5888. TEST(ServerRequestParsingTest, InvalidHeaderTextWithExtraCR) {
  5889. test_raw_request("GET /hi HTTP/1.1\r\n"
  5890. "Content-Type: text/plain\r\n\r");
  5891. }
  5892. TEST(ServerRequestParsingTest, InvalidSpaceInURL) {
  5893. std::string out;
  5894. test_raw_request("GET /h i HTTP/1.1\r\n\r\n", &out);
  5895. EXPECT_EQ("HTTP/1.1 400 Bad Request", out.substr(0, 24));
  5896. }
  5897. TEST(ServerRequestParsingTest, RemoteAddrSetOnBadRequest) {
  5898. Server svr;
  5899. svr.set_error_handler([&](const Request &req, Response & /*res*/) {
  5900. EXPECT_TRUE(!req.remote_addr.empty());
  5901. });
  5902. thread t = thread([&] { svr.listen(HOST, PORT); });
  5903. auto se = detail::scope_exit([&] {
  5904. svr.stop();
  5905. t.join();
  5906. ASSERT_FALSE(svr.is_running());
  5907. });
  5908. svr.wait_until_ready();
  5909. // Send an invalid request line to trigger Bad Request
  5910. const std::string bad_req = "BADMETHOD / HTTP/1.1\r\nHost: localhost\r\n\r\n";
  5911. std::string out;
  5912. ASSERT_TRUE(send_request(5, bad_req, &out));
  5913. EXPECT_EQ("HTTP/1.1 400 Bad Request", out.substr(0, 24));
  5914. }
  5915. TEST(ServerRequestParsingTest, InvalidFieldValueContains_CR_LF_NUL) {
  5916. std::string out;
  5917. std::string request(
  5918. "GET /header_field_value_check HTTP/1.1\r\nTest: [\r\x00\n]\r\n\r\n", 55);
  5919. test_raw_request(request, &out);
  5920. EXPECT_EQ("HTTP/1.1 400 Bad Request", out.substr(0, 24));
  5921. }
  5922. TEST(ServerRequestParsingTest, InvalidFieldValueContains_LF) {
  5923. std::string out;
  5924. std::string request(
  5925. "GET /header_field_value_check HTTP/1.1\r\nTest: [\n\n\n]\r\n\r\n", 55);
  5926. test_raw_request(request, &out);
  5927. EXPECT_EQ("HTTP/1.1 400 Bad Request", out.substr(0, 24));
  5928. }
  5929. TEST(ServerRequestParsingTest, InvalidFieldNameContains_PreceedingSpaces) {
  5930. std::string out;
  5931. std::string request(
  5932. "GET /header_field_value_check HTTP/1.1\r\n Test: val\r\n\r\n", 55);
  5933. test_raw_request(request, &out);
  5934. EXPECT_EQ("HTTP/1.1 400 Bad Request", out.substr(0, 24));
  5935. }
  5936. TEST(ServerRequestParsingTest, EmptyFieldValue) {
  5937. std::string out;
  5938. test_raw_request("GET /header_field_value_check HTTP/1.1\r\n"
  5939. "Test: \r\n\r\n",
  5940. &out);
  5941. EXPECT_EQ("HTTP/1.1 200 OK", out.substr(0, 15));
  5942. }
  5943. TEST(ServerStopTest, StopServerWithChunkedTransmission) {
  5944. Server svr;
  5945. svr.Get("/events", [](const Request & /*req*/, Response &res) {
  5946. res.set_header("Cache-Control", "no-cache");
  5947. res.set_chunked_content_provider(
  5948. "text/event-stream", [](size_t offset, DataSink &sink) {
  5949. std::string s = "data:";
  5950. s += std::to_string(offset);
  5951. s += "\n\n";
  5952. auto ret = sink.write(s.data(), s.size());
  5953. EXPECT_TRUE(ret);
  5954. std::this_thread::sleep_for(std::chrono::seconds(1));
  5955. return true;
  5956. });
  5957. });
  5958. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  5959. svr.wait_until_ready();
  5960. Client client(HOST, PORT);
  5961. const Headers headers = {{"Accept", "text/event-stream"}};
  5962. auto get_thread = std::thread([&client, &headers]() {
  5963. auto res = client.Get(
  5964. "/events", headers,
  5965. [](const char * /*data*/, size_t /*len*/) -> bool { return true; });
  5966. });
  5967. auto se = detail::scope_exit([&] {
  5968. svr.stop();
  5969. get_thread.join();
  5970. listen_thread.join();
  5971. ASSERT_FALSE(svr.is_running());
  5972. });
  5973. // Give GET time to get a few messages.
  5974. std::this_thread::sleep_for(std::chrono::seconds(2));
  5975. }
  5976. TEST(ServerStopTest, ClientAccessAfterServerDown) {
  5977. httplib::Server svr;
  5978. svr.Post("/hi",
  5979. [&](const httplib::Request & /*req*/, httplib::Response &res) {
  5980. res.status = StatusCode::OK_200;
  5981. });
  5982. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  5983. svr.wait_until_ready();
  5984. Client cli(HOST, PORT);
  5985. auto res = cli.Post("/hi", "data", "text/plain");
  5986. ASSERT_TRUE(res);
  5987. EXPECT_EQ(StatusCode::OK_200, res->status);
  5988. svr.stop();
  5989. thread.join();
  5990. ASSERT_FALSE(svr.is_running());
  5991. res = cli.Post("/hi", "data", "text/plain");
  5992. ASSERT_FALSE(res);
  5993. }
  5994. TEST(ServerStopTest, ListenFailure) {
  5995. Server svr;
  5996. auto t = thread([&]() {
  5997. auto ret = svr.listen("????", PORT);
  5998. EXPECT_FALSE(ret);
  5999. });
  6000. svr.wait_until_ready();
  6001. svr.stop();
  6002. t.join();
  6003. }
  6004. #ifndef CPPHTTPLIB_NO_EXCEPTIONS
  6005. TEST(ServerStopTest, Decommision) {
  6006. Server svr;
  6007. svr.Get("/hi", [&](const Request &, Response &res) { res.body = "hi..."; });
  6008. for (int i = 0; i < 4; i++) {
  6009. auto is_even = !(i % 2);
  6010. std::thread t{[&] {
  6011. try {
  6012. std::this_thread::sleep_for(std::chrono::milliseconds(100));
  6013. if (is_even) {
  6014. throw std::runtime_error("Some thing that happens to go wrong.");
  6015. }
  6016. svr.listen(HOST, PORT);
  6017. } catch (...) { svr.decommission(); }
  6018. }};
  6019. svr.wait_until_ready();
  6020. // Server is up
  6021. {
  6022. Client cli(HOST, PORT);
  6023. auto res = cli.Get("/hi");
  6024. if (is_even) {
  6025. EXPECT_FALSE(res);
  6026. } else {
  6027. EXPECT_TRUE(res);
  6028. EXPECT_EQ("hi...", res->body);
  6029. }
  6030. }
  6031. svr.stop();
  6032. t.join();
  6033. // Server is down...
  6034. {
  6035. Client cli(HOST, PORT);
  6036. auto res = cli.Get("/hi");
  6037. EXPECT_FALSE(res);
  6038. }
  6039. }
  6040. }
  6041. #endif
  6042. // Helper function for string body upload progress tests
  6043. template <typename SetupHandler, typename ClientCall>
  6044. void TestStringBodyUploadProgress(SetupHandler &&setup_handler,
  6045. ClientCall &&client_call,
  6046. const string &body) {
  6047. Server svr;
  6048. setup_handler(svr);
  6049. thread t = thread([&]() { svr.listen(HOST, PORT); });
  6050. auto se = detail::scope_exit([&] {
  6051. svr.stop();
  6052. t.join();
  6053. });
  6054. svr.wait_until_ready();
  6055. Client cli(HOST, PORT);
  6056. vector<uint64_t> progress_values;
  6057. bool progress_called = false;
  6058. auto res =
  6059. client_call(cli, body, [&](uint64_t current, uint64_t /*total*/) -> bool {
  6060. progress_values.push_back(current);
  6061. progress_called = true;
  6062. return true;
  6063. });
  6064. ASSERT_TRUE(res);
  6065. EXPECT_EQ(200, res->status);
  6066. EXPECT_TRUE(progress_called);
  6067. }
  6068. TEST(UploadProgressTest, PostStringBodyBasic) {
  6069. TestStringBodyUploadProgress(
  6070. [](Server &svr) {
  6071. svr.Post("/test", [](const Request & /*req*/, Response &res) {
  6072. res.set_content("received", "text/plain");
  6073. });
  6074. },
  6075. [](Client &cli, const string &body, UploadProgress progress_callback) {
  6076. return cli.Post("/test", body, "text/plain", progress_callback);
  6077. },
  6078. "test data for upload progress");
  6079. }
  6080. TEST(UploadProgressTest, PutStringBodyBasic) {
  6081. TestStringBodyUploadProgress(
  6082. [](Server &svr) {
  6083. svr.Put("/test", [](const Request & /*req*/, Response &res) {
  6084. res.set_content("put received", "text/plain");
  6085. });
  6086. },
  6087. [](Client &cli, const string &body, UploadProgress progress_callback) {
  6088. return cli.Put("/test", body, "text/plain", progress_callback);
  6089. },
  6090. "put test data for upload progress");
  6091. }
  6092. TEST(UploadProgressTest, PatchStringBodyBasic) {
  6093. TestStringBodyUploadProgress(
  6094. [](Server &svr) {
  6095. svr.Patch("/test", [](const Request & /*req*/, Response &res) {
  6096. res.set_content("patch received", "text/plain");
  6097. });
  6098. },
  6099. [](Client &cli, const string &body, UploadProgress progress_callback) {
  6100. return cli.Patch("/test", body, "text/plain", progress_callback);
  6101. },
  6102. "patch test data for upload progress");
  6103. }
  6104. // Helper function for content provider upload progress tests
  6105. template <typename SetupHandler, typename ClientCall>
  6106. void TestContentProviderUploadProgress(SetupHandler &&setup_handler,
  6107. ClientCall &&client_call) {
  6108. Server svr;
  6109. setup_handler(svr);
  6110. thread t = thread([&]() { svr.listen(HOST, PORT); });
  6111. auto se = detail::scope_exit([&] {
  6112. svr.stop();
  6113. t.join();
  6114. });
  6115. svr.wait_until_ready();
  6116. Client cli(HOST, PORT);
  6117. vector<uint64_t> progress_values;
  6118. auto res =
  6119. client_call(cli, [&](uint64_t current, uint64_t /*total*/) -> bool {
  6120. progress_values.push_back(current);
  6121. return true;
  6122. });
  6123. ASSERT_TRUE(res);
  6124. EXPECT_EQ(200, res->status);
  6125. EXPECT_FALSE(progress_values.empty());
  6126. }
  6127. TEST(UploadProgressTest, PostContentProviderProgress) {
  6128. TestContentProviderUploadProgress(
  6129. [](Server &svr) {
  6130. svr.Post("/test", [](const Request & /*req*/, Response &res) {
  6131. res.set_content("provider received", "text/plain");
  6132. });
  6133. },
  6134. [](Client &cli, UploadProgress progress_callback) {
  6135. return cli.Post(
  6136. "/test", 10,
  6137. [](size_t /*offset*/, size_t /*length*/, DataSink &sink) -> bool {
  6138. sink.os << "test data";
  6139. return true;
  6140. },
  6141. "text/plain", progress_callback);
  6142. });
  6143. }
  6144. // Helper function for multipart upload progress tests
  6145. template <typename SetupHandler, typename ClientCall>
  6146. void TestMultipartUploadProgress(SetupHandler &&setup_handler,
  6147. ClientCall &&client_call,
  6148. const string &endpoint) {
  6149. Server svr;
  6150. setup_handler(svr);
  6151. thread t = thread([&]() { svr.listen(HOST, PORT); });
  6152. auto se = detail::scope_exit([&] {
  6153. svr.stop();
  6154. t.join();
  6155. });
  6156. svr.wait_until_ready();
  6157. Client cli(HOST, PORT);
  6158. vector<uint64_t> progress_values;
  6159. UploadFormDataItems items = {
  6160. {"field1", "value1", "", ""},
  6161. {"field2", "longer value for progress tracking test", "", ""},
  6162. {"file1", "file content data for upload progress", "test.txt",
  6163. "text/plain"}};
  6164. auto res = client_call(cli, endpoint, items,
  6165. [&](uint64_t current, uint64_t /*total*/) -> bool {
  6166. progress_values.push_back(current);
  6167. return true;
  6168. });
  6169. ASSERT_TRUE(res);
  6170. EXPECT_EQ(200, res->status);
  6171. EXPECT_FALSE(progress_values.empty());
  6172. }
  6173. TEST(UploadProgressTest, PostMultipartProgress) {
  6174. TestMultipartUploadProgress(
  6175. [](Server &svr) {
  6176. svr.Post("/multipart", [](const Request &req, Response &res) {
  6177. EXPECT_TRUE(!req.form.files.empty() || !req.form.fields.empty());
  6178. res.set_content("multipart received", "text/plain");
  6179. });
  6180. },
  6181. [](Client &cli, const string &endpoint, const UploadFormDataItems &items,
  6182. UploadProgress progress_callback) {
  6183. return cli.Post(endpoint, items, progress_callback);
  6184. },
  6185. "/multipart");
  6186. }
  6187. // Helper function for basic download progress tests
  6188. template <typename SetupHandler, typename ClientCall>
  6189. void TestBasicDownloadProgress(SetupHandler &&setup_handler,
  6190. ClientCall &&client_call, const string &endpoint,
  6191. size_t expected_content_size) {
  6192. Server svr;
  6193. setup_handler(svr);
  6194. thread t = thread([&]() { svr.listen(HOST, PORT); });
  6195. auto se = detail::scope_exit([&] {
  6196. svr.stop();
  6197. t.join();
  6198. });
  6199. svr.wait_until_ready();
  6200. Client cli(HOST, PORT);
  6201. vector<uint64_t> progress_values;
  6202. auto res = client_call(cli, endpoint,
  6203. [&](uint64_t current, uint64_t /*total*/) -> bool {
  6204. progress_values.push_back(current);
  6205. return true;
  6206. });
  6207. ASSERT_TRUE(res);
  6208. EXPECT_EQ(200, res->status);
  6209. EXPECT_FALSE(progress_values.empty());
  6210. EXPECT_EQ(expected_content_size, res->body.size());
  6211. }
  6212. TEST(DownloadProgressTest, GetBasic) {
  6213. TestBasicDownloadProgress(
  6214. [](Server &svr) {
  6215. svr.Get("/download", [](const Request & /*req*/, Response &res) {
  6216. string content(1000, 'D');
  6217. res.set_content(content, "text/plain");
  6218. });
  6219. },
  6220. [](Client &cli, const string &endpoint,
  6221. DownloadProgress progress_callback) {
  6222. return cli.Get(endpoint, progress_callback);
  6223. },
  6224. "/download", 1000u);
  6225. }
  6226. // Helper function for content receiver download progress tests
  6227. template <typename SetupHandler, typename ClientCall>
  6228. void TestContentReceiverDownloadProgress(SetupHandler &&setup_handler,
  6229. ClientCall &&client_call,
  6230. const string &endpoint,
  6231. size_t expected_content_size) {
  6232. Server svr;
  6233. setup_handler(svr);
  6234. thread t = thread([&]() { svr.listen(HOST, PORT); });
  6235. auto se = detail::scope_exit([&] {
  6236. svr.stop();
  6237. t.join();
  6238. });
  6239. svr.wait_until_ready();
  6240. Client cli(HOST, PORT);
  6241. vector<uint64_t> progress_values;
  6242. string received_body;
  6243. auto res = client_call(
  6244. cli, endpoint,
  6245. [&](const char *data, size_t data_length) -> bool {
  6246. received_body.append(data, data_length);
  6247. return true;
  6248. },
  6249. [&](uint64_t current, uint64_t /*total*/) -> bool {
  6250. progress_values.push_back(current);
  6251. return true;
  6252. });
  6253. ASSERT_TRUE(res);
  6254. EXPECT_EQ(200, res->status);
  6255. EXPECT_FALSE(progress_values.empty());
  6256. EXPECT_EQ(expected_content_size, received_body.size());
  6257. EXPECT_TRUE(res->body.empty());
  6258. }
  6259. TEST(DownloadProgressTest, GetWithContentReceiver) {
  6260. TestContentReceiverDownloadProgress(
  6261. [](Server &svr) {
  6262. svr.Get("/download-receiver",
  6263. [](const Request & /*req*/, Response &res) {
  6264. string content(2000, 'R');
  6265. res.set_content(content, "text/plain");
  6266. });
  6267. },
  6268. [](Client &cli, const string &endpoint, ContentReceiver content_receiver,
  6269. DownloadProgress progress_callback) {
  6270. return cli.Get(endpoint, content_receiver, progress_callback);
  6271. },
  6272. "/download-receiver", 2000u);
  6273. }
  6274. TEST(StreamingTest, NoContentLengthStreaming) {
  6275. Server svr;
  6276. svr.Get("/stream", [](const Request & /*req*/, Response &res) {
  6277. res.set_content_provider("text/plain", [](size_t offset, DataSink &sink) {
  6278. if (offset < 6) {
  6279. sink.os << (offset < 3 ? "a" : "b");
  6280. } else {
  6281. sink.done();
  6282. }
  6283. return true;
  6284. });
  6285. });
  6286. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  6287. auto listen_se = detail::scope_exit([&] {
  6288. svr.stop();
  6289. listen_thread.join();
  6290. ASSERT_FALSE(svr.is_running());
  6291. });
  6292. svr.wait_until_ready();
  6293. Client client(HOST, PORT);
  6294. auto get_thread = std::thread([&client]() {
  6295. std::string s;
  6296. auto res =
  6297. client.Get("/stream", [&s](const char *data, size_t len) -> bool {
  6298. s += std::string(data, len);
  6299. return true;
  6300. });
  6301. ASSERT_TRUE(res);
  6302. EXPECT_EQ(StatusCode::OK_200, res->status);
  6303. EXPECT_EQ("aaabbb", s);
  6304. });
  6305. auto get_se = detail::scope_exit([&] { get_thread.join(); });
  6306. // Give GET time to get a few messages.
  6307. std::this_thread::sleep_for(std::chrono::milliseconds(500));
  6308. }
  6309. TEST(MountTest, Unmount) {
  6310. Server svr;
  6311. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  6312. auto se = detail::scope_exit([&] {
  6313. svr.stop();
  6314. listen_thread.join();
  6315. ASSERT_FALSE(svr.is_running());
  6316. });
  6317. svr.wait_until_ready();
  6318. Client cli("localhost", PORT);
  6319. svr.set_mount_point("/mount2", "./www2");
  6320. auto res = cli.Get("/");
  6321. ASSERT_TRUE(res);
  6322. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  6323. res = cli.Get("/mount2/dir/test.html");
  6324. ASSERT_TRUE(res);
  6325. EXPECT_EQ(StatusCode::OK_200, res->status);
  6326. svr.set_mount_point("/", "./www");
  6327. res = cli.Get("/dir/");
  6328. ASSERT_TRUE(res);
  6329. EXPECT_EQ(StatusCode::OK_200, res->status);
  6330. svr.remove_mount_point("/");
  6331. res = cli.Get("/dir/");
  6332. ASSERT_TRUE(res);
  6333. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  6334. svr.remove_mount_point("/mount2");
  6335. res = cli.Get("/mount2/dir/test.html");
  6336. ASSERT_TRUE(res);
  6337. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  6338. }
  6339. TEST(MountTest, Redicect) {
  6340. Server svr;
  6341. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  6342. auto se = detail::scope_exit([&] {
  6343. svr.stop();
  6344. listen_thread.join();
  6345. ASSERT_FALSE(svr.is_running());
  6346. });
  6347. svr.set_mount_point("/", "./www");
  6348. svr.wait_until_ready();
  6349. Client cli("localhost", PORT);
  6350. auto res = cli.Get("/dir/");
  6351. ASSERT_TRUE(res);
  6352. EXPECT_EQ(StatusCode::OK_200, res->status);
  6353. res = cli.Get("/dir");
  6354. ASSERT_TRUE(res);
  6355. EXPECT_EQ(StatusCode::MovedPermanently_301, res->status);
  6356. res = cli.Get("/file");
  6357. ASSERT_TRUE(res);
  6358. EXPECT_EQ(StatusCode::OK_200, res->status);
  6359. res = cli.Get("/file/");
  6360. ASSERT_TRUE(res);
  6361. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  6362. cli.set_follow_location(true);
  6363. res = cli.Get("/dir");
  6364. ASSERT_TRUE(res);
  6365. EXPECT_EQ(StatusCode::OK_200, res->status);
  6366. }
  6367. TEST(MountTest, MultibytesPathName) {
  6368. Server svr;
  6369. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  6370. auto se = detail::scope_exit([&] {
  6371. svr.stop();
  6372. listen_thread.join();
  6373. ASSERT_FALSE(svr.is_running());
  6374. });
  6375. svr.set_mount_point("/", "./www");
  6376. svr.wait_until_ready();
  6377. Client cli("localhost", PORT);
  6378. auto res = cli.Get(U8("/日本語Dir/日本語File.txt"));
  6379. ASSERT_TRUE(res);
  6380. EXPECT_EQ(StatusCode::OK_200, res->status);
  6381. EXPECT_EQ(U8("日本語コンテンツ"), res->body);
  6382. }
  6383. TEST(KeepAliveTest, ReadTimeout) {
  6384. Server svr;
  6385. svr.Get("/a", [&](const Request & /*req*/, Response &res) {
  6386. std::this_thread::sleep_for(std::chrono::seconds(2));
  6387. res.set_content("a", "text/plain");
  6388. });
  6389. svr.Get("/b", [&](const Request & /*req*/, Response &res) {
  6390. res.set_content("b", "text/plain");
  6391. });
  6392. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  6393. auto se = detail::scope_exit([&] {
  6394. svr.stop();
  6395. listen_thread.join();
  6396. ASSERT_FALSE(svr.is_running());
  6397. });
  6398. svr.wait_until_ready();
  6399. Client cli("localhost", PORT);
  6400. cli.set_keep_alive(true);
  6401. cli.set_read_timeout(std::chrono::seconds(1));
  6402. auto resa = cli.Get("/a");
  6403. ASSERT_FALSE(resa);
  6404. EXPECT_EQ(Error::Read, resa.error());
  6405. auto resb = cli.Get("/b");
  6406. ASSERT_TRUE(resb);
  6407. EXPECT_EQ(StatusCode::OK_200, resb->status);
  6408. EXPECT_EQ("b", resb->body);
  6409. }
  6410. TEST(KeepAliveTest, MaxCount) {
  6411. size_t keep_alive_max_count = 3;
  6412. Server svr;
  6413. svr.set_keep_alive_max_count(keep_alive_max_count);
  6414. svr.Get("/hi", [](const httplib::Request &, httplib::Response &res) {
  6415. res.set_content("Hello World!", "text/plain");
  6416. });
  6417. auto listen_thread = std::thread([&svr] { svr.listen(HOST, PORT); });
  6418. auto se = detail::scope_exit([&] {
  6419. svr.stop();
  6420. listen_thread.join();
  6421. ASSERT_FALSE(svr.is_running());
  6422. });
  6423. svr.wait_until_ready();
  6424. Client cli(HOST, PORT);
  6425. cli.set_keep_alive(true);
  6426. for (size_t i = 0; i < 5; i++) {
  6427. auto result = cli.Get("/hi");
  6428. ASSERT_TRUE(result);
  6429. EXPECT_EQ(StatusCode::OK_200, result->status);
  6430. if (i == keep_alive_max_count - 1) {
  6431. EXPECT_EQ("close", result->get_header_value("Connection"));
  6432. } else {
  6433. EXPECT_FALSE(result->has_header("Connection"));
  6434. }
  6435. }
  6436. }
  6437. TEST(KeepAliveTest, Issue1041) {
  6438. Server svr;
  6439. svr.set_keep_alive_timeout(3);
  6440. svr.Get("/hi", [](const httplib::Request &, httplib::Response &res) {
  6441. res.set_content("Hello World!", "text/plain");
  6442. });
  6443. auto listen_thread = std::thread([&svr] { svr.listen(HOST, PORT); });
  6444. auto se = detail::scope_exit([&] {
  6445. svr.stop();
  6446. listen_thread.join();
  6447. ASSERT_FALSE(svr.is_running());
  6448. });
  6449. svr.wait_until_ready();
  6450. Client cli(HOST, PORT);
  6451. cli.set_keep_alive(true);
  6452. auto result = cli.Get("/hi");
  6453. ASSERT_TRUE(result);
  6454. EXPECT_EQ(StatusCode::OK_200, result->status);
  6455. std::this_thread::sleep_for(std::chrono::seconds(5));
  6456. result = cli.Get("/hi");
  6457. ASSERT_TRUE(result);
  6458. EXPECT_EQ(StatusCode::OK_200, result->status);
  6459. }
  6460. TEST(KeepAliveTest, Issue1959) {
  6461. Server svr;
  6462. svr.set_keep_alive_timeout(5);
  6463. svr.Get("/a", [&](const Request & /*req*/, Response &res) {
  6464. res.set_content("a", "text/plain");
  6465. });
  6466. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  6467. auto se = detail::scope_exit([&] {
  6468. if (!svr.is_running()) return;
  6469. svr.stop();
  6470. listen_thread.join();
  6471. ASSERT_FALSE(svr.is_running());
  6472. });
  6473. svr.wait_until_ready();
  6474. Client cli("localhost", PORT);
  6475. cli.set_keep_alive(true);
  6476. using namespace std::chrono;
  6477. auto start = steady_clock::now();
  6478. cli.Get("/a");
  6479. svr.stop();
  6480. listen_thread.join();
  6481. auto end = steady_clock::now();
  6482. auto elapsed = duration_cast<milliseconds>(end - start).count();
  6483. EXPECT_LT(elapsed, 5000);
  6484. }
  6485. #ifdef CPPHTTPLIB_SSL_ENABLED
  6486. TEST(KeepAliveTest, SSLClientReconnection) {
  6487. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  6488. ASSERT_TRUE(svr.is_valid());
  6489. svr.set_keep_alive_timeout(1);
  6490. svr.Get("/hi", [](const httplib::Request &, httplib::Response &res) {
  6491. res.set_content("Hello World!", "text/plain");
  6492. });
  6493. auto listen_thread = std::thread([&svr] { svr.listen(HOST, PORT); });
  6494. auto se = detail::scope_exit([&] {
  6495. svr.stop();
  6496. listen_thread.join();
  6497. ASSERT_FALSE(svr.is_running());
  6498. });
  6499. svr.wait_until_ready();
  6500. SSLClient cli(HOST, PORT);
  6501. cli.enable_server_certificate_verification(false);
  6502. cli.set_keep_alive(true);
  6503. auto result = cli.Get("/hi");
  6504. ASSERT_TRUE(result);
  6505. EXPECT_EQ(StatusCode::OK_200, result->status);
  6506. result = cli.Get("/hi");
  6507. ASSERT_TRUE(result);
  6508. EXPECT_EQ(StatusCode::OK_200, result->status);
  6509. std::this_thread::sleep_for(std::chrono::seconds(2));
  6510. // Recoonect
  6511. result = cli.Get("/hi");
  6512. ASSERT_TRUE(result);
  6513. EXPECT_EQ(StatusCode::OK_200, result->status);
  6514. result = cli.Get("/hi");
  6515. ASSERT_TRUE(result);
  6516. EXPECT_EQ(StatusCode::OK_200, result->status);
  6517. }
  6518. TEST(KeepAliveTest, SSLClientReconnectionPost) {
  6519. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  6520. ASSERT_TRUE(svr.is_valid());
  6521. svr.set_keep_alive_timeout(1);
  6522. std::string content = "reconnect";
  6523. svr.Post("/hi", [](const httplib::Request &, httplib::Response &res) {
  6524. res.set_content("Hello World!", "text/plain");
  6525. });
  6526. auto listen_thread = std::thread([&svr] { svr.listen(HOST, PORT); });
  6527. auto se = detail::scope_exit([&] {
  6528. svr.stop();
  6529. listen_thread.join();
  6530. ASSERT_FALSE(svr.is_running());
  6531. });
  6532. svr.wait_until_ready();
  6533. SSLClient cli(HOST, PORT);
  6534. cli.enable_server_certificate_verification(false);
  6535. cli.set_keep_alive(true);
  6536. auto result = cli.Post(
  6537. "/hi", content.size(),
  6538. [&content](size_t /*offset*/, size_t /*length*/, DataSink &sink) {
  6539. sink.write(content.c_str(), content.size());
  6540. return true;
  6541. },
  6542. "text/plain");
  6543. ASSERT_TRUE(result);
  6544. EXPECT_EQ(200, result->status);
  6545. std::this_thread::sleep_for(std::chrono::seconds(2));
  6546. // Recoonect
  6547. result = cli.Post(
  6548. "/hi", content.size(),
  6549. [&content](size_t /*offset*/, size_t /*length*/, DataSink &sink) {
  6550. sink.write(content.c_str(), content.size());
  6551. return true;
  6552. },
  6553. "text/plain");
  6554. ASSERT_TRUE(result);
  6555. EXPECT_EQ(200, result->status);
  6556. result = cli.Post(
  6557. "/hi", content.size(),
  6558. [&content](size_t /*offset*/, size_t /*length*/, DataSink &sink) {
  6559. sink.write(content.c_str(), content.size());
  6560. return true;
  6561. },
  6562. "text/plain");
  6563. ASSERT_TRUE(result);
  6564. EXPECT_EQ(200, result->status);
  6565. }
  6566. TEST(SNI_AutoDetectionTest, SNI_Logic) {
  6567. using namespace httplib::tls;
  6568. {
  6569. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  6570. ASSERT_TRUE(svr.is_valid());
  6571. svr.Get("/sni", [&](const Request &req, Response &res) {
  6572. std::string expected = req.sni();
  6573. EXPECT_EQ(expected, req.get_param_value("expected"));
  6574. res.set_content("ok", "text/plain");
  6575. });
  6576. auto listen_thread = std::thread([&svr] { svr.listen(HOST, PORT); });
  6577. auto se = detail::scope_exit([&] {
  6578. svr.stop();
  6579. listen_thread.join();
  6580. ASSERT_FALSE(svr.is_running());
  6581. });
  6582. svr.wait_until_ready();
  6583. {
  6584. SSLClient cli("localhost", PORT);
  6585. cli.enable_server_certificate_verification(false);
  6586. auto res = cli.Get("/sni?expected=localhost");
  6587. ASSERT_TRUE(res);
  6588. }
  6589. {
  6590. SSLClient cli("::1", PORT);
  6591. cli.enable_server_certificate_verification(false);
  6592. auto res = cli.Get("/sni?expected=");
  6593. // NOTE: This may fail if the server is listening on IPv4 only
  6594. // (e.g., when localhost resolves to 127.0.0.1 only)
  6595. if (res) {
  6596. EXPECT_EQ(StatusCode::OK_200, res->status);
  6597. } else {
  6598. EXPECT_EQ(Error::Connection, res.error());
  6599. }
  6600. }
  6601. }
  6602. }
  6603. #endif
  6604. TEST(ClientProblemDetectionTest, ContentProvider) {
  6605. Server svr;
  6606. size_t content_length = 1024 * 1024;
  6607. svr.Get("/hi", [&](const Request & /*req*/, Response &res) {
  6608. res.set_content_provider(
  6609. content_length, "text/plain",
  6610. [&](size_t offset, size_t length, DataSink &sink) {
  6611. auto out_len = std::min(length, static_cast<size_t>(1024));
  6612. std::string out(out_len, '@');
  6613. sink.write(out.data(), out_len);
  6614. return offset < 4096;
  6615. },
  6616. [](bool success) { ASSERT_FALSE(success); });
  6617. });
  6618. svr.Get("/empty", [&](const Request & /*req*/, Response &res) {
  6619. res.set_content_provider(
  6620. 0, "text/plain",
  6621. [&](size_t /*offset*/, size_t /*length*/, DataSink & /*sink*/) -> bool {
  6622. EXPECT_TRUE(false);
  6623. return true;
  6624. },
  6625. [](bool success) { ASSERT_FALSE(success); });
  6626. });
  6627. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  6628. auto se = detail::scope_exit([&] {
  6629. svr.stop();
  6630. listen_thread.join();
  6631. ASSERT_FALSE(svr.is_running());
  6632. });
  6633. svr.wait_until_ready();
  6634. Client cli("localhost", PORT);
  6635. {
  6636. auto res = cli.Get("/hi", [&](const char * /*data*/,
  6637. size_t /*data_length*/) { return false; });
  6638. ASSERT_FALSE(res);
  6639. }
  6640. {
  6641. auto res = cli.Get("/empty", [&](const char * /*data*/,
  6642. size_t /*data_length*/) { return false; });
  6643. ASSERT_TRUE(res);
  6644. }
  6645. }
  6646. TEST(ErrorHandlerWithContentProviderTest, ErrorHandler) {
  6647. Server svr;
  6648. svr.set_error_handler([](Request const &, Response &res) -> void {
  6649. res.set_chunked_content_provider(
  6650. "text/plain", [](std::size_t const, DataSink &sink) -> bool {
  6651. sink.os << "hello";
  6652. sink.os << "world";
  6653. sink.done();
  6654. return true;
  6655. });
  6656. });
  6657. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  6658. auto se = detail::scope_exit([&] {
  6659. svr.stop();
  6660. listen_thread.join();
  6661. ASSERT_FALSE(svr.is_running());
  6662. });
  6663. svr.wait_until_ready();
  6664. Client cli("localhost", PORT);
  6665. auto res = cli.Get("/");
  6666. ASSERT_TRUE(res);
  6667. EXPECT_EQ(StatusCode::NotFound_404, res->status);
  6668. EXPECT_EQ("helloworld", res->body);
  6669. }
  6670. TEST(LongPollingTest, ClientCloseDetection) {
  6671. Server svr;
  6672. svr.Get("/events", [&](const Request & /*req*/, Response &res) {
  6673. res.set_chunked_content_provider(
  6674. "text/plain", [](std::size_t const, DataSink &sink) -> bool {
  6675. EXPECT_TRUE(sink.is_writable()); // the socket is alive
  6676. sink.os << "hello";
  6677. auto count = 10;
  6678. while (count > 0 && sink.is_writable()) {
  6679. this_thread::sleep_for(chrono::milliseconds(10));
  6680. count--;
  6681. }
  6682. EXPECT_FALSE(sink.is_writable()); // the socket is closed
  6683. return true;
  6684. });
  6685. });
  6686. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  6687. auto se = detail::scope_exit([&] {
  6688. svr.stop();
  6689. listen_thread.join();
  6690. ASSERT_FALSE(svr.is_running());
  6691. });
  6692. svr.wait_until_ready();
  6693. Client cli("localhost", PORT);
  6694. auto res = cli.Get("/events", [&](const char *data, size_t data_length) {
  6695. EXPECT_EQ("hello", string(data, data_length));
  6696. return false; // close the socket immediately.
  6697. });
  6698. ASSERT_FALSE(res);
  6699. }
  6700. TEST(GetWithParametersTest, GetWithParameters) {
  6701. Server svr;
  6702. svr.Get("/", [&](const Request &req, Response &) {
  6703. EXPECT_EQ("world", req.get_param_value("hello"));
  6704. EXPECT_EQ("world2", req.get_param_value("hello2"));
  6705. EXPECT_EQ("world3", req.get_param_value("hello3"));
  6706. });
  6707. svr.Get("/params", [&](const Request &req, Response &) {
  6708. EXPECT_EQ("world", req.get_param_value("hello"));
  6709. EXPECT_EQ("world2", req.get_param_value("hello2"));
  6710. EXPECT_EQ("world3", req.get_param_value("hello3"));
  6711. });
  6712. svr.Get(R"(/resources/([a-z0-9\\-]+))", [&](const Request &req, Response &) {
  6713. EXPECT_EQ("resource-id", req.matches[1]);
  6714. EXPECT_EQ("foo", req.get_param_value("param1"));
  6715. EXPECT_EQ("bar", req.get_param_value("param2"));
  6716. });
  6717. svr.Get("/users/:id", [&](const Request &req, Response &) {
  6718. EXPECT_EQ("user-id", req.path_params.at("id"));
  6719. EXPECT_EQ("foo", req.get_param_value("param1"));
  6720. EXPECT_EQ("bar", req.get_param_value("param2"));
  6721. });
  6722. auto listen_thread = std::thread([&svr]() { svr.listen(HOST, PORT); });
  6723. auto se = detail::scope_exit([&] {
  6724. svr.stop();
  6725. listen_thread.join();
  6726. ASSERT_FALSE(svr.is_running());
  6727. });
  6728. svr.wait_until_ready();
  6729. {
  6730. Client cli(HOST, PORT);
  6731. Params params;
  6732. params.emplace("hello", "world");
  6733. params.emplace("hello2", "world2");
  6734. params.emplace("hello3", "world3");
  6735. auto res = cli.Get("/", params, Headers{});
  6736. ASSERT_TRUE(res);
  6737. EXPECT_EQ(StatusCode::OK_200, res->status);
  6738. }
  6739. {
  6740. Client cli(HOST, PORT);
  6741. auto res = cli.Get("/params?hello=world&hello2=world2&hello3=world3");
  6742. ASSERT_TRUE(res);
  6743. EXPECT_EQ(StatusCode::OK_200, res->status);
  6744. }
  6745. {
  6746. Client cli(HOST, PORT);
  6747. auto res = cli.Get("/resources/resource-id?param1=foo&param2=bar");
  6748. ASSERT_TRUE(res);
  6749. EXPECT_EQ(StatusCode::OK_200, res->status);
  6750. }
  6751. {
  6752. Client cli(HOST, PORT);
  6753. auto res = cli.Get("/users/user-id?param1=foo&param2=bar");
  6754. ASSERT_TRUE(res);
  6755. EXPECT_EQ(StatusCode::OK_200, res->status);
  6756. }
  6757. }
  6758. TEST(GetWithParametersTest, GetWithParameters2) {
  6759. Server svr;
  6760. svr.Get("/", [&](const Request &req, Response &res) {
  6761. auto text = req.get_param_value("hello");
  6762. res.set_content(text, "text/plain");
  6763. });
  6764. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  6765. auto se = detail::scope_exit([&] {
  6766. svr.stop();
  6767. listen_thread.join();
  6768. ASSERT_FALSE(svr.is_running());
  6769. });
  6770. svr.wait_until_ready();
  6771. Client cli("localhost", PORT);
  6772. Params params;
  6773. params.emplace("hello", "world");
  6774. std::string body;
  6775. auto res = cli.Get("/", params, Headers{},
  6776. [&](const char *data, size_t data_length) {
  6777. body.append(data, data_length);
  6778. return true;
  6779. });
  6780. ASSERT_TRUE(res);
  6781. EXPECT_EQ(StatusCode::OK_200, res->status);
  6782. EXPECT_EQ("world", body);
  6783. }
  6784. TEST(ClientDefaultHeadersTest, DefaultHeaders_Online) {
  6785. #ifdef CPPHTTPLIB_DEFAULT_HTTPBIN
  6786. auto host = "httpcan.org";
  6787. auto path = std::string{"/range/32"};
  6788. #else
  6789. auto host = "nghttp2.org";
  6790. auto path = std::string{"/httpbin/range/32"};
  6791. #endif
  6792. #ifdef CPPHTTPLIB_SSL_ENABLED
  6793. SSLClient cli(host);
  6794. #else
  6795. Client cli(host);
  6796. #endif
  6797. cli.set_default_headers({make_range_header({{1, 10}})});
  6798. cli.set_connection_timeout(5);
  6799. {
  6800. auto res = cli.Get(path);
  6801. ASSERT_TRUE(res);
  6802. EXPECT_EQ("bcdefghijk", res->body);
  6803. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  6804. }
  6805. {
  6806. auto res = cli.Get(path);
  6807. ASSERT_TRUE(res);
  6808. EXPECT_EQ("bcdefghijk", res->body);
  6809. EXPECT_EQ(StatusCode::PartialContent_206, res->status);
  6810. }
  6811. }
  6812. TEST(ServerDefaultHeadersTest, DefaultHeaders) {
  6813. Server svr;
  6814. svr.set_default_headers({{"Hello", "World"}});
  6815. svr.Get("/", [&](const Request & /*req*/, Response &res) {
  6816. res.set_content("ok", "text/plain");
  6817. });
  6818. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  6819. auto se = detail::scope_exit([&] {
  6820. svr.stop();
  6821. listen_thread.join();
  6822. ASSERT_FALSE(svr.is_running());
  6823. });
  6824. svr.wait_until_ready();
  6825. Client cli("localhost", PORT);
  6826. auto res = cli.Get("/");
  6827. ASSERT_TRUE(res);
  6828. EXPECT_EQ(StatusCode::OK_200, res->status);
  6829. EXPECT_EQ("ok", res->body);
  6830. EXPECT_EQ("World", res->get_header_value("Hello"));
  6831. }
  6832. #ifdef CPPHTTPLIB_SSL_ENABLED
  6833. TEST(KeepAliveTest, ReadTimeoutSSL) {
  6834. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  6835. ASSERT_TRUE(svr.is_valid());
  6836. svr.Get("/a", [&](const Request & /*req*/, Response &res) {
  6837. std::this_thread::sleep_for(std::chrono::seconds(2));
  6838. res.set_content("a", "text/plain");
  6839. });
  6840. svr.Get("/b", [&](const Request & /*req*/, Response &res) {
  6841. res.set_content("b", "text/plain");
  6842. });
  6843. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  6844. auto se = detail::scope_exit([&] {
  6845. svr.stop();
  6846. listen_thread.join();
  6847. ASSERT_FALSE(svr.is_running());
  6848. });
  6849. svr.wait_until_ready();
  6850. SSLClient cli("localhost", PORT);
  6851. cli.enable_server_certificate_verification(false);
  6852. cli.set_keep_alive(true);
  6853. cli.set_read_timeout(std::chrono::seconds(1));
  6854. auto resa = cli.Get("/a");
  6855. ASSERT_TRUE(!resa);
  6856. EXPECT_EQ(Error::Read, resa.error());
  6857. auto resb = cli.Get("/b");
  6858. ASSERT_TRUE(resb);
  6859. EXPECT_EQ(StatusCode::OK_200, resb->status);
  6860. EXPECT_EQ("b", resb->body);
  6861. }
  6862. #endif
  6863. class ServerTestWithAI_PASSIVE : public ::testing::Test {
  6864. protected:
  6865. ServerTestWithAI_PASSIVE()
  6866. : cli_(HOST, PORT)
  6867. #ifdef CPPHTTPLIB_SSL_ENABLED
  6868. ,
  6869. svr_(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE)
  6870. #endif
  6871. {
  6872. #ifdef CPPHTTPLIB_SSL_ENABLED
  6873. cli_.enable_server_certificate_verification(false);
  6874. #endif
  6875. }
  6876. virtual void SetUp() {
  6877. svr_.Get("/hi", [&](const Request & /*req*/, Response &res) {
  6878. res.set_content("Hello World!", "text/plain");
  6879. });
  6880. t_ = thread(
  6881. [&]() { ASSERT_TRUE(svr_.listen(std::string(), PORT, AI_PASSIVE)); });
  6882. svr_.wait_until_ready();
  6883. }
  6884. virtual void TearDown() {
  6885. svr_.stop();
  6886. t_.join();
  6887. }
  6888. #ifdef CPPHTTPLIB_SSL_ENABLED
  6889. SSLClient cli_;
  6890. SSLServer svr_;
  6891. #else
  6892. Client cli_;
  6893. Server svr_;
  6894. #endif
  6895. thread t_;
  6896. };
  6897. TEST_F(ServerTestWithAI_PASSIVE, GetMethod200) {
  6898. auto res = cli_.Get("/hi");
  6899. ASSERT_TRUE(res);
  6900. EXPECT_EQ(StatusCode::OK_200, res->status);
  6901. EXPECT_EQ("text/plain", res->get_header_value("Content-Type"));
  6902. EXPECT_EQ("Hello World!", res->body);
  6903. }
  6904. class ServerUpDownTest : public ::testing::Test {
  6905. protected:
  6906. ServerUpDownTest() : cli_(HOST, PORT) {}
  6907. virtual void SetUp() {
  6908. t_ = thread([&]() {
  6909. svr_.bind_to_any_port(HOST);
  6910. std::this_thread::sleep_for(std::chrono::milliseconds(500));
  6911. ASSERT_TRUE(svr_.listen_after_bind());
  6912. });
  6913. svr_.wait_until_ready();
  6914. }
  6915. virtual void TearDown() {
  6916. svr_.stop();
  6917. t_.join();
  6918. }
  6919. Client cli_;
  6920. Server svr_;
  6921. thread t_;
  6922. };
  6923. TEST_F(ServerUpDownTest, QuickStartStop) {
  6924. // Should not crash, especially when run with
  6925. // --gtest_filter=ServerUpDownTest.QuickStartStop --gtest_repeat=1000
  6926. }
  6927. class PayloadMaxLengthTest : public ::testing::Test {
  6928. protected:
  6929. PayloadMaxLengthTest()
  6930. : cli_(HOST, PORT)
  6931. #ifdef CPPHTTPLIB_SSL_ENABLED
  6932. ,
  6933. svr_(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE)
  6934. #endif
  6935. {
  6936. #ifdef CPPHTTPLIB_SSL_ENABLED
  6937. cli_.enable_server_certificate_verification(false);
  6938. #endif
  6939. }
  6940. virtual void SetUp() {
  6941. svr_.set_payload_max_length(8);
  6942. svr_.Post("/test", [&](const Request & /*req*/, Response &res) {
  6943. res.set_content("test", "text/plain");
  6944. });
  6945. t_ = thread([&]() { ASSERT_TRUE(svr_.listen(HOST, PORT)); });
  6946. svr_.wait_until_ready();
  6947. }
  6948. virtual void TearDown() {
  6949. svr_.stop();
  6950. t_.join();
  6951. }
  6952. #ifdef CPPHTTPLIB_SSL_ENABLED
  6953. SSLClient cli_;
  6954. SSLServer svr_;
  6955. #else
  6956. Client cli_;
  6957. Server svr_;
  6958. #endif
  6959. thread t_;
  6960. };
  6961. TEST_F(PayloadMaxLengthTest, ExceedLimit) {
  6962. auto res = cli_.Post("/test", "123456789", "text/plain");
  6963. ASSERT_TRUE(res);
  6964. EXPECT_EQ(StatusCode::PayloadTooLarge_413, res->status);
  6965. res = cli_.Post("/test", "12345678", "text/plain");
  6966. ASSERT_TRUE(res);
  6967. EXPECT_EQ(StatusCode::OK_200, res->status);
  6968. }
  6969. TEST_F(PayloadMaxLengthTest, ChunkedEncodingSecurityTest) {
  6970. // Test chunked encoding with payload exceeding the 8-byte limit
  6971. std::string large_chunked_data(16, 'A'); // 16 bytes, exceeds 8-byte limit
  6972. auto res = cli_.Post("/test", large_chunked_data, "text/plain");
  6973. ASSERT_TRUE(res);
  6974. EXPECT_EQ(StatusCode::PayloadTooLarge_413, res->status);
  6975. }
  6976. TEST_F(PayloadMaxLengthTest, ChunkedEncodingWithinLimit) {
  6977. // Test chunked encoding with payload within the 8-byte limit
  6978. std::string small_chunked_data(4, 'B'); // 4 bytes, within 8-byte limit
  6979. auto res = cli_.Post("/test", small_chunked_data, "text/plain");
  6980. ASSERT_TRUE(res);
  6981. EXPECT_EQ(StatusCode::OK_200, res->status);
  6982. }
  6983. TEST_F(PayloadMaxLengthTest, RawSocketChunkedTest) {
  6984. // Test using send_request to send chunked data exceeding payload limit
  6985. std::string chunked_request = "POST /test HTTP/1.1\r\n"
  6986. "Host: " +
  6987. std::string(HOST) + ":" + std::to_string(PORT) +
  6988. "\r\n"
  6989. "Transfer-Encoding: chunked\r\n"
  6990. "Connection: close\r\n"
  6991. "\r\n"
  6992. "a\r\n" // 10 bytes chunk (exceeds 8-byte limit)
  6993. "0123456789\r\n"
  6994. "0\r\n" // End chunk
  6995. "\r\n";
  6996. std::string response;
  6997. bool result = send_request(1, chunked_request, &response);
  6998. if (!result) {
  6999. // If send_request fails, it might be because the server closed the
  7000. // connection due to payload limit enforcement, which is acceptable
  7001. SUCCEED()
  7002. << "Server rejected oversized chunked request (connection closed)";
  7003. } else {
  7004. // If we got a response, check if it's an error response or connection was
  7005. // closed early Short response length indicates connection was closed due to
  7006. // payload limit
  7007. if (response.length() <= 10) {
  7008. SUCCEED() << "Server closed connection for oversized chunked request";
  7009. } else {
  7010. // Check for error status codes
  7011. EXPECT_TRUE(response.find("413") != std::string::npos ||
  7012. response.find("Payload Too Large") != std::string::npos ||
  7013. response.find("400") != std::string::npos);
  7014. }
  7015. }
  7016. }
  7017. TEST_F(PayloadMaxLengthTest, NoContentLengthPayloadLimit) {
  7018. // Test request without Content-Length header exceeding payload limit
  7019. std::string request_without_content_length = "POST /test HTTP/1.1\r\n"
  7020. "Host: " +
  7021. std::string(HOST) + ":" +
  7022. std::to_string(PORT) +
  7023. "\r\n"
  7024. "Connection: close\r\n"
  7025. "\r\n";
  7026. // Add payload exceeding the 8-byte limit
  7027. std::string large_payload(16, 'X'); // 16 bytes, exceeds 8-byte limit
  7028. request_without_content_length += large_payload;
  7029. std::string response;
  7030. bool result = send_request(1, request_without_content_length, &response);
  7031. if (!result) {
  7032. // If send_request fails, server likely closed connection due to payload
  7033. // limit
  7034. SUCCEED() << "Server rejected oversized request without Content-Length "
  7035. "(connection closed)";
  7036. } else {
  7037. // Check if server responded with error or closed connection early
  7038. if (response.length() <= 10) {
  7039. SUCCEED() << "Server closed connection for oversized request without "
  7040. "Content-Length";
  7041. } else {
  7042. // Check for error status codes
  7043. EXPECT_TRUE(response.find("413") != std::string::npos ||
  7044. response.find("Payload Too Large") != std::string::npos ||
  7045. response.find("400") != std::string::npos);
  7046. }
  7047. }
  7048. }
  7049. TEST_F(PayloadMaxLengthTest, NoContentLengthWithinLimit) {
  7050. // Test request without Content-Length header within payload limit
  7051. std::string request_without_content_length = "POST /test HTTP/1.1\r\n"
  7052. "Host: " +
  7053. std::string(HOST) + ":" +
  7054. std::to_string(PORT) +
  7055. "\r\n"
  7056. "Connection: close\r\n"
  7057. "\r\n";
  7058. // Add payload within the 8-byte limit
  7059. std::string small_payload(4, 'Y'); // 4 bytes, within 8-byte limit
  7060. request_without_content_length += small_payload;
  7061. std::string response;
  7062. bool result = send_request(1, request_without_content_length, &response);
  7063. // For requests without Content-Length, the server may have different behavior
  7064. // The key is that it should not reject due to payload limit for small
  7065. // payloads
  7066. if (result) {
  7067. // Check for any HTTP response (success or error, but not connection closed)
  7068. if (response.length() > 10) {
  7069. SUCCEED()
  7070. << "Server processed request without Content-Length within limit";
  7071. } else {
  7072. // Short response might indicate connection closed, which is acceptable
  7073. SUCCEED() << "Server closed connection for request without "
  7074. "Content-Length (acceptable behavior)";
  7075. }
  7076. } else {
  7077. // Connection failure might be due to protocol requirements
  7078. SUCCEED() << "Connection issue with request without Content-Length "
  7079. "(environment-specific)";
  7080. }
  7081. }
  7082. class LargePayloadMaxLengthTest : public ::testing::Test {
  7083. protected:
  7084. LargePayloadMaxLengthTest()
  7085. : cli_(HOST, PORT)
  7086. #ifdef CPPHTTPLIB_SSL_ENABLED
  7087. ,
  7088. svr_(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE)
  7089. #endif
  7090. {
  7091. #ifdef CPPHTTPLIB_SSL_ENABLED
  7092. cli_.enable_server_certificate_verification(false);
  7093. #endif
  7094. }
  7095. virtual void SetUp() {
  7096. // Set 10MB payload limit
  7097. const size_t LARGE_PAYLOAD_LIMIT = 10 * 1024 * 1024; // 10MB
  7098. svr_.set_payload_max_length(LARGE_PAYLOAD_LIMIT);
  7099. svr_.Post("/test", [&](const Request & /*req*/, Response &res) {
  7100. res.set_content("Large payload test", "text/plain");
  7101. });
  7102. t_ = thread([&]() { ASSERT_TRUE(svr_.listen(HOST, PORT)); });
  7103. svr_.wait_until_ready();
  7104. }
  7105. virtual void TearDown() {
  7106. svr_.stop();
  7107. t_.join();
  7108. }
  7109. #ifdef CPPHTTPLIB_SSL_ENABLED
  7110. SSLClient cli_;
  7111. SSLServer svr_;
  7112. #else
  7113. Client cli_;
  7114. Server svr_;
  7115. #endif
  7116. thread t_;
  7117. };
  7118. TEST_F(LargePayloadMaxLengthTest, ChunkedEncodingWithin10MB) {
  7119. // Test chunked encoding with payload within 10MB limit
  7120. std::string medium_payload(5 * 1024 * 1024,
  7121. 'A'); // 5MB payload, within 10MB limit
  7122. auto res = cli_.Post("/test", medium_payload, "application/octet-stream");
  7123. ASSERT_TRUE(res);
  7124. EXPECT_EQ(StatusCode::OK_200, res->status);
  7125. }
  7126. TEST_F(LargePayloadMaxLengthTest, ChunkedEncodingExceeds10MB) {
  7127. // Test chunked encoding with payload exceeding 10MB limit
  7128. std::string large_payload(12 * 1024 * 1024,
  7129. 'B'); // 12MB payload, exceeds 10MB limit
  7130. auto res = cli_.Post("/test", large_payload, "application/octet-stream");
  7131. // Server may either return 413 or close the connection
  7132. if (res) {
  7133. EXPECT_EQ(StatusCode::PayloadTooLarge_413, res->status);
  7134. } else {
  7135. SUCCEED() << "Server closed connection for payload exceeding 10MB limit";
  7136. }
  7137. }
  7138. TEST_F(LargePayloadMaxLengthTest, NoContentLengthWithin10MB) {
  7139. // Test request without Content-Length header within 10MB limit
  7140. std::string request_without_content_length = "POST /test HTTP/1.1\r\n"
  7141. "Host: " +
  7142. std::string(HOST) + ":" +
  7143. std::to_string(PORT) +
  7144. "\r\n"
  7145. "Connection: close\r\n"
  7146. "\r\n";
  7147. // Add 1MB payload (within 10MB limit)
  7148. std::string medium_payload(1024 * 1024, 'C'); // 1MB payload
  7149. request_without_content_length += medium_payload;
  7150. std::string response;
  7151. bool result = send_request(5, request_without_content_length, &response);
  7152. if (result) {
  7153. // Should get a proper HTTP response for payloads within limit
  7154. if (response.length() > 10) {
  7155. SUCCEED() << "Server processed 1MB request without Content-Length within "
  7156. "10MB limit";
  7157. } else {
  7158. SUCCEED() << "Server closed connection (acceptable behavior for no "
  7159. "Content-Length)";
  7160. }
  7161. } else {
  7162. SUCCEED() << "Connection issue with 1MB payload (environment-specific)";
  7163. }
  7164. }
  7165. TEST_F(LargePayloadMaxLengthTest, NoContentLengthExceeds10MB) {
  7166. // Test request without Content-Length header exceeding 10MB limit
  7167. std::string request_without_content_length = "POST /test HTTP/1.1\r\n"
  7168. "Host: " +
  7169. std::string(HOST) + ":" +
  7170. std::to_string(PORT) +
  7171. "\r\n"
  7172. "Connection: close\r\n"
  7173. "\r\n";
  7174. // Add 12MB payload (exceeds 10MB limit)
  7175. std::string large_payload(12 * 1024 * 1024, 'D'); // 12MB payload
  7176. request_without_content_length += large_payload;
  7177. std::string response;
  7178. bool result = send_request(10, request_without_content_length, &response);
  7179. if (!result) {
  7180. // Server should close connection due to payload limit
  7181. SUCCEED() << "Server rejected 12MB request without Content-Length "
  7182. "(connection closed)";
  7183. } else {
  7184. // Check for error response
  7185. if (response.length() <= 10) {
  7186. SUCCEED()
  7187. << "Server closed connection for 12MB request exceeding 10MB limit";
  7188. } else {
  7189. EXPECT_TRUE(response.find("413") != std::string::npos ||
  7190. response.find("Payload Too Large") != std::string::npos ||
  7191. response.find("400") != std::string::npos);
  7192. }
  7193. }
  7194. }
  7195. // Regression test for DoS vulnerability: a malicious server sending a response
  7196. // without Content-Length header must not cause unbounded memory consumption on
  7197. // the client side. The client should stop reading after a reasonable limit,
  7198. // similar to the server-side set_payload_max_length protection.
  7199. TEST(ClientVulnerabilityTest, UnboundedReadWithoutContentLength) {
  7200. constexpr size_t CLIENT_READ_LIMIT = 2 * 1024 * 1024; // 2MB safety limit
  7201. #ifndef _WIN32
  7202. signal(SIGPIPE, SIG_IGN);
  7203. #endif
  7204. auto server_thread = std::thread([] {
  7205. constexpr size_t MALICIOUS_DATA_SIZE = 10 * 1024 * 1024; // 10MB from server
  7206. auto srv = ::socket(AF_INET, SOCK_STREAM, 0);
  7207. default_socket_options(srv);
  7208. detail::set_socket_opt_time(srv, SOL_SOCKET, SO_RCVTIMEO, 5, 0);
  7209. detail::set_socket_opt_time(srv, SOL_SOCKET, SO_SNDTIMEO, 5, 0);
  7210. sockaddr_in addr{};
  7211. addr.sin_family = AF_INET;
  7212. addr.sin_port = htons(PORT + 2);
  7213. ::inet_pton(AF_INET, "127.0.0.1", &addr.sin_addr);
  7214. int opt = 1;
  7215. ::setsockopt(srv, SOL_SOCKET, SO_REUSEADDR,
  7216. #ifdef _WIN32
  7217. reinterpret_cast<const char *>(&opt),
  7218. #else
  7219. &opt,
  7220. #endif
  7221. sizeof(opt));
  7222. ::bind(srv, reinterpret_cast<sockaddr *>(&addr), sizeof(addr));
  7223. ::listen(srv, 1);
  7224. sockaddr_in cli_addr{};
  7225. socklen_t cli_len = sizeof(cli_addr);
  7226. auto cli = ::accept(srv, reinterpret_cast<sockaddr *>(&cli_addr), &cli_len);
  7227. if (cli != INVALID_SOCKET) {
  7228. char buf[4096];
  7229. ::recv(cli, buf, sizeof(buf), 0);
  7230. // Malicious response: no Content-Length, no chunked encoding
  7231. std::string response_header = "HTTP/1.1 200 OK\r\n"
  7232. "Connection: close\r\n"
  7233. "\r\n";
  7234. ::send(cli,
  7235. #ifdef _WIN32
  7236. static_cast<const char *>(response_header.c_str()),
  7237. static_cast<int>(response_header.size()),
  7238. #else
  7239. response_header.c_str(), response_header.size(),
  7240. #endif
  7241. 0);
  7242. // Send 10MB of data
  7243. std::string chunk(64 * 1024, 'A');
  7244. size_t total_sent = 0;
  7245. while (total_sent < MALICIOUS_DATA_SIZE) {
  7246. auto to_send = std::min(chunk.size(), MALICIOUS_DATA_SIZE - total_sent);
  7247. auto sent = ::send(cli,
  7248. #ifdef _WIN32
  7249. static_cast<const char *>(chunk.c_str()),
  7250. static_cast<int>(to_send),
  7251. #else
  7252. chunk.c_str(), to_send,
  7253. #endif
  7254. 0);
  7255. if (sent <= 0) break;
  7256. total_sent += static_cast<size_t>(sent);
  7257. }
  7258. detail::close_socket(cli);
  7259. }
  7260. detail::close_socket(srv);
  7261. });
  7262. std::this_thread::sleep_for(std::chrono::milliseconds(200));
  7263. size_t total_read = 0;
  7264. {
  7265. Client cli("127.0.0.1", PORT + 2);
  7266. cli.set_read_timeout(5, 0);
  7267. cli.set_payload_max_length(CLIENT_READ_LIMIT);
  7268. auto stream = cli.open_stream("GET", "/malicious");
  7269. ASSERT_TRUE(stream.is_valid());
  7270. char buffer[64 * 1024];
  7271. ssize_t n;
  7272. while ((n = stream.read(buffer, sizeof(buffer))) > 0) {
  7273. total_read += static_cast<size_t>(n);
  7274. }
  7275. } // StreamHandle and Client destroyed here, closing the socket
  7276. server_thread.join();
  7277. // With set_payload_max_length, the client must stop reading before consuming
  7278. // all 10MB. The read loop should be cut off at or near the configured limit.
  7279. EXPECT_LE(total_read, CLIENT_READ_LIMIT)
  7280. << "Client read " << total_read << " bytes, exceeding the configured "
  7281. << "payload_max_length of " << CLIENT_READ_LIMIT << " bytes.";
  7282. }
  7283. // Verify that set_payload_max_length(0) means "no limit" and allows reading
  7284. // the entire response body without truncation.
  7285. TEST(ClientVulnerabilityTest, PayloadMaxLengthZeroMeansNoLimit) {
  7286. static constexpr size_t DATA_SIZE = 4 * 1024 * 1024; // 4MB from server
  7287. #ifndef _WIN32
  7288. signal(SIGPIPE, SIG_IGN);
  7289. #endif
  7290. auto server_thread = std::thread([] {
  7291. auto srv = ::socket(AF_INET, SOCK_STREAM, 0);
  7292. default_socket_options(srv);
  7293. detail::set_socket_opt_time(srv, SOL_SOCKET, SO_RCVTIMEO, 5, 0);
  7294. detail::set_socket_opt_time(srv, SOL_SOCKET, SO_SNDTIMEO, 5, 0);
  7295. sockaddr_in addr{};
  7296. addr.sin_family = AF_INET;
  7297. addr.sin_port = htons(PORT + 2);
  7298. ::inet_pton(AF_INET, "127.0.0.1", &addr.sin_addr);
  7299. int opt = 1;
  7300. ::setsockopt(srv, SOL_SOCKET, SO_REUSEADDR,
  7301. #ifdef _WIN32
  7302. reinterpret_cast<const char *>(&opt),
  7303. #else
  7304. &opt,
  7305. #endif
  7306. sizeof(opt));
  7307. ::bind(srv, reinterpret_cast<sockaddr *>(&addr), sizeof(addr));
  7308. ::listen(srv, 1);
  7309. sockaddr_in cli_addr{};
  7310. socklen_t cli_len = sizeof(cli_addr);
  7311. auto cli = ::accept(srv, reinterpret_cast<sockaddr *>(&cli_addr), &cli_len);
  7312. if (cli != INVALID_SOCKET) {
  7313. char buf[4096];
  7314. ::recv(cli, buf, sizeof(buf), 0);
  7315. std::string response_header = "HTTP/1.1 200 OK\r\n"
  7316. "Connection: close\r\n"
  7317. "\r\n";
  7318. ::send(cli,
  7319. #ifdef _WIN32
  7320. static_cast<const char *>(response_header.c_str()),
  7321. static_cast<int>(response_header.size()),
  7322. #else
  7323. response_header.c_str(), response_header.size(),
  7324. #endif
  7325. 0);
  7326. std::string chunk(64 * 1024, 'A');
  7327. size_t total_sent = 0;
  7328. while (total_sent < DATA_SIZE) {
  7329. auto to_send = std::min(chunk.size(), DATA_SIZE - total_sent);
  7330. auto sent = ::send(cli,
  7331. #ifdef _WIN32
  7332. static_cast<const char *>(chunk.c_str()),
  7333. static_cast<int>(to_send),
  7334. #else
  7335. chunk.c_str(), to_send,
  7336. #endif
  7337. 0);
  7338. if (sent <= 0) break;
  7339. total_sent += static_cast<size_t>(sent);
  7340. }
  7341. #ifdef _WIN32
  7342. ::shutdown(cli, SD_SEND);
  7343. #else
  7344. ::shutdown(cli, SHUT_WR);
  7345. #endif
  7346. // Drain until the client closes its end, ensuring all data is delivered
  7347. char drain[1024];
  7348. while (::recv(cli, drain, sizeof(drain), 0) > 0) {}
  7349. detail::close_socket(cli);
  7350. }
  7351. detail::close_socket(srv);
  7352. });
  7353. std::this_thread::sleep_for(std::chrono::milliseconds(200));
  7354. size_t total_read = 0;
  7355. {
  7356. Client cli("127.0.0.1", PORT + 2);
  7357. cli.set_read_timeout(5, 0);
  7358. cli.set_payload_max_length(0); // 0 means no limit
  7359. auto stream = cli.open_stream("GET", "/data");
  7360. ASSERT_TRUE(stream.is_valid());
  7361. char buffer[64 * 1024];
  7362. ssize_t n;
  7363. while ((n = stream.read(buffer, sizeof(buffer))) > 0) {
  7364. total_read += static_cast<size_t>(n);
  7365. }
  7366. }
  7367. server_thread.join();
  7368. EXPECT_EQ(total_read, DATA_SIZE)
  7369. << "With payload_max_length(0), the client should read all " << DATA_SIZE
  7370. << " bytes without truncation, but only read " << total_read << " bytes.";
  7371. }
  7372. // Verify that content_receiver bypasses the default payload_max_length,
  7373. // allowing streaming downloads larger than 100MB without requiring an explicit
  7374. // set_payload_max_length call.
  7375. TEST(ClientVulnerabilityTest, ContentReceiverBypassesDefaultPayloadMaxLength) {
  7376. static constexpr size_t DATA_SIZE = 200 * 1024 * 1024; // 200MB from server
  7377. #ifndef _WIN32
  7378. signal(SIGPIPE, SIG_IGN);
  7379. #endif
  7380. auto server_thread = std::thread([] {
  7381. auto srv = ::socket(AF_INET, SOCK_STREAM, 0);
  7382. default_socket_options(srv);
  7383. detail::set_socket_opt_time(srv, SOL_SOCKET, SO_RCVTIMEO, 5, 0);
  7384. detail::set_socket_opt_time(srv, SOL_SOCKET, SO_SNDTIMEO, 5, 0);
  7385. sockaddr_in addr{};
  7386. addr.sin_family = AF_INET;
  7387. addr.sin_port = htons(PORT + 2);
  7388. ::inet_pton(AF_INET, "127.0.0.1", &addr.sin_addr);
  7389. int opt = 1;
  7390. ::setsockopt(srv, SOL_SOCKET, SO_REUSEADDR,
  7391. #ifdef _WIN32
  7392. reinterpret_cast<const char *>(&opt),
  7393. #else
  7394. &opt,
  7395. #endif
  7396. sizeof(opt));
  7397. ::bind(srv, reinterpret_cast<sockaddr *>(&addr), sizeof(addr));
  7398. ::listen(srv, 1);
  7399. sockaddr_in cli_addr{};
  7400. socklen_t cli_len = sizeof(cli_addr);
  7401. auto cli = ::accept(srv, reinterpret_cast<sockaddr *>(&cli_addr), &cli_len);
  7402. if (cli != INVALID_SOCKET) {
  7403. char buf[4096];
  7404. ::recv(cli, buf, sizeof(buf), 0);
  7405. // Response with Content-Length larger than default 100MB limit
  7406. auto content_length = std::to_string(DATA_SIZE);
  7407. std::string response_header = "HTTP/1.1 200 OK\r\n"
  7408. "Content-Length: " +
  7409. content_length +
  7410. "\r\n"
  7411. "Connection: close\r\n"
  7412. "\r\n";
  7413. ::send(cli,
  7414. #ifdef _WIN32
  7415. static_cast<const char *>(response_header.c_str()),
  7416. static_cast<int>(response_header.size()),
  7417. #else
  7418. response_header.c_str(), response_header.size(),
  7419. #endif
  7420. 0);
  7421. std::string chunk(64 * 1024, 'A');
  7422. size_t total_sent = 0;
  7423. while (total_sent < DATA_SIZE) {
  7424. auto to_send = std::min(chunk.size(), DATA_SIZE - total_sent);
  7425. auto sent = ::send(cli,
  7426. #ifdef _WIN32
  7427. static_cast<const char *>(chunk.c_str()),
  7428. static_cast<int>(to_send),
  7429. #else
  7430. chunk.c_str(), to_send,
  7431. #endif
  7432. 0);
  7433. if (sent <= 0) break;
  7434. total_sent += static_cast<size_t>(sent);
  7435. }
  7436. detail::close_socket(cli);
  7437. }
  7438. detail::close_socket(srv);
  7439. });
  7440. std::this_thread::sleep_for(std::chrono::milliseconds(200));
  7441. size_t total_received = 0;
  7442. {
  7443. Client cli("127.0.0.1", PORT + 2);
  7444. cli.set_read_timeout(10, 0);
  7445. // Do NOT call set_payload_max_length — use the default 100MB limit
  7446. auto res =
  7447. cli.Get("/large", [&](const char * /*data*/, size_t data_length) {
  7448. total_received += data_length;
  7449. return true;
  7450. });
  7451. ASSERT_TRUE(res);
  7452. EXPECT_EQ(StatusCode::OK_200, res->status);
  7453. }
  7454. server_thread.join();
  7455. EXPECT_EQ(total_received, DATA_SIZE)
  7456. << "With content_receiver, the client should read all " << DATA_SIZE
  7457. << " bytes despite the default 100MB payload_max_length, but only read "
  7458. << total_received << " bytes.";
  7459. }
  7460. // Verify that an explicit set_payload_max_length smaller than the response is
  7461. // enforced even when a content_receiver is used.
  7462. TEST(ClientVulnerabilityTest,
  7463. ContentReceiverRespectsExplicitPayloadMaxLength150MB) {
  7464. static constexpr size_t DATA_SIZE = 200 * 1024 * 1024; // 200MB from server
  7465. static constexpr size_t EXPLICIT_LIMIT = 150 * 1024 * 1024; // 150MB limit
  7466. #ifndef _WIN32
  7467. signal(SIGPIPE, SIG_IGN);
  7468. #endif
  7469. auto server_thread = std::thread([] {
  7470. auto srv = ::socket(AF_INET, SOCK_STREAM, 0);
  7471. default_socket_options(srv);
  7472. detail::set_socket_opt_time(srv, SOL_SOCKET, SO_RCVTIMEO, 5, 0);
  7473. detail::set_socket_opt_time(srv, SOL_SOCKET, SO_SNDTIMEO, 5, 0);
  7474. sockaddr_in addr{};
  7475. addr.sin_family = AF_INET;
  7476. addr.sin_port = htons(PORT + 2);
  7477. ::inet_pton(AF_INET, "127.0.0.1", &addr.sin_addr);
  7478. int opt = 1;
  7479. ::setsockopt(srv, SOL_SOCKET, SO_REUSEADDR,
  7480. #ifdef _WIN32
  7481. reinterpret_cast<const char *>(&opt),
  7482. #else
  7483. &opt,
  7484. #endif
  7485. sizeof(opt));
  7486. ::bind(srv, reinterpret_cast<sockaddr *>(&addr), sizeof(addr));
  7487. ::listen(srv, 1);
  7488. sockaddr_in cli_addr{};
  7489. socklen_t cli_len = sizeof(cli_addr);
  7490. auto cli = ::accept(srv, reinterpret_cast<sockaddr *>(&cli_addr), &cli_len);
  7491. if (cli != INVALID_SOCKET) {
  7492. char buf[4096];
  7493. ::recv(cli, buf, sizeof(buf), 0);
  7494. auto content_length = std::to_string(DATA_SIZE);
  7495. std::string response_header = "HTTP/1.1 200 OK\r\n"
  7496. "Content-Length: " +
  7497. content_length +
  7498. "\r\n"
  7499. "Connection: close\r\n"
  7500. "\r\n";
  7501. ::send(cli,
  7502. #ifdef _WIN32
  7503. static_cast<const char *>(response_header.c_str()),
  7504. static_cast<int>(response_header.size()),
  7505. #else
  7506. response_header.c_str(), response_header.size(),
  7507. #endif
  7508. 0);
  7509. std::string chunk(64 * 1024, 'A');
  7510. size_t total_sent = 0;
  7511. while (total_sent < DATA_SIZE) {
  7512. auto to_send = std::min(chunk.size(), DATA_SIZE - total_sent);
  7513. auto sent = ::send(cli,
  7514. #ifdef _WIN32
  7515. static_cast<const char *>(chunk.c_str()),
  7516. static_cast<int>(to_send),
  7517. #else
  7518. chunk.c_str(), to_send,
  7519. #endif
  7520. 0);
  7521. if (sent <= 0) break;
  7522. total_sent += static_cast<size_t>(sent);
  7523. }
  7524. detail::close_socket(cli);
  7525. }
  7526. detail::close_socket(srv);
  7527. });
  7528. std::this_thread::sleep_for(std::chrono::milliseconds(200));
  7529. size_t total_received = 0;
  7530. {
  7531. Client cli("127.0.0.1", PORT + 2);
  7532. cli.set_read_timeout(10, 0);
  7533. cli.set_payload_max_length(EXPLICIT_LIMIT); // Explicit 150MB limit
  7534. auto res =
  7535. cli.Get("/large", [&](const char * /*data*/, size_t data_length) {
  7536. total_received += data_length;
  7537. return true;
  7538. });
  7539. // Should fail because 200MB exceeds the explicit 150MB limit
  7540. EXPECT_FALSE(res);
  7541. }
  7542. server_thread.join();
  7543. EXPECT_LE(total_received, EXPLICIT_LIMIT)
  7544. << "Client with content_receiver should respect the explicit "
  7545. << "payload_max_length of " << EXPLICIT_LIMIT << " bytes, but read "
  7546. << total_received << " bytes.";
  7547. }
  7548. // Verify that an explicit set_payload_max_length larger than the response
  7549. // allows the content_receiver to read all data successfully.
  7550. TEST(ClientVulnerabilityTest,
  7551. ContentReceiverRespectsExplicitPayloadMaxLength250MB) {
  7552. static constexpr size_t DATA_SIZE = 200 * 1024 * 1024; // 200MB from server
  7553. static constexpr size_t EXPLICIT_LIMIT = 250 * 1024 * 1024; // 250MB limit
  7554. #ifndef _WIN32
  7555. signal(SIGPIPE, SIG_IGN);
  7556. #endif
  7557. auto server_thread = std::thread([] {
  7558. auto srv = ::socket(AF_INET, SOCK_STREAM, 0);
  7559. default_socket_options(srv);
  7560. detail::set_socket_opt_time(srv, SOL_SOCKET, SO_RCVTIMEO, 5, 0);
  7561. detail::set_socket_opt_time(srv, SOL_SOCKET, SO_SNDTIMEO, 5, 0);
  7562. sockaddr_in addr{};
  7563. addr.sin_family = AF_INET;
  7564. addr.sin_port = htons(PORT + 2);
  7565. ::inet_pton(AF_INET, "127.0.0.1", &addr.sin_addr);
  7566. int opt = 1;
  7567. ::setsockopt(srv, SOL_SOCKET, SO_REUSEADDR,
  7568. #ifdef _WIN32
  7569. reinterpret_cast<const char *>(&opt),
  7570. #else
  7571. &opt,
  7572. #endif
  7573. sizeof(opt));
  7574. ::bind(srv, reinterpret_cast<sockaddr *>(&addr), sizeof(addr));
  7575. ::listen(srv, 1);
  7576. sockaddr_in cli_addr{};
  7577. socklen_t cli_len = sizeof(cli_addr);
  7578. auto cli = ::accept(srv, reinterpret_cast<sockaddr *>(&cli_addr), &cli_len);
  7579. if (cli != INVALID_SOCKET) {
  7580. char buf[4096];
  7581. ::recv(cli, buf, sizeof(buf), 0);
  7582. auto content_length = std::to_string(DATA_SIZE);
  7583. std::string response_header = "HTTP/1.1 200 OK\r\n"
  7584. "Content-Length: " +
  7585. content_length +
  7586. "\r\n"
  7587. "Connection: close\r\n"
  7588. "\r\n";
  7589. ::send(cli,
  7590. #ifdef _WIN32
  7591. static_cast<const char *>(response_header.c_str()),
  7592. static_cast<int>(response_header.size()),
  7593. #else
  7594. response_header.c_str(), response_header.size(),
  7595. #endif
  7596. 0);
  7597. std::string chunk(64 * 1024, 'A');
  7598. size_t total_sent = 0;
  7599. while (total_sent < DATA_SIZE) {
  7600. auto to_send = std::min(chunk.size(), DATA_SIZE - total_sent);
  7601. auto sent = ::send(cli,
  7602. #ifdef _WIN32
  7603. static_cast<const char *>(chunk.c_str()),
  7604. static_cast<int>(to_send),
  7605. #else
  7606. chunk.c_str(), to_send,
  7607. #endif
  7608. 0);
  7609. if (sent <= 0) break;
  7610. total_sent += static_cast<size_t>(sent);
  7611. }
  7612. #ifdef _WIN32
  7613. ::shutdown(cli, SD_SEND);
  7614. #else
  7615. ::shutdown(cli, SHUT_WR);
  7616. #endif
  7617. char drain[1024];
  7618. while (::recv(cli, drain, sizeof(drain), 0) > 0) {}
  7619. detail::close_socket(cli);
  7620. }
  7621. detail::close_socket(srv);
  7622. });
  7623. std::this_thread::sleep_for(std::chrono::milliseconds(200));
  7624. size_t total_received = 0;
  7625. {
  7626. Client cli("127.0.0.1", PORT + 2);
  7627. cli.set_read_timeout(10, 0);
  7628. cli.set_payload_max_length(EXPLICIT_LIMIT); // Explicit 250MB limit
  7629. auto res =
  7630. cli.Get("/large", [&](const char * /*data*/, size_t data_length) {
  7631. total_received += data_length;
  7632. return true;
  7633. });
  7634. ASSERT_TRUE(res);
  7635. EXPECT_EQ(StatusCode::OK_200, res->status);
  7636. }
  7637. server_thread.join();
  7638. EXPECT_EQ(total_received, DATA_SIZE)
  7639. << "With explicit payload_max_length of " << EXPLICIT_LIMIT
  7640. << " bytes (larger than " << DATA_SIZE
  7641. << " bytes response), content_receiver should read all data, but only "
  7642. "read "
  7643. << total_received << " bytes.";
  7644. }
  7645. #if defined(CPPHTTPLIB_ZLIB_SUPPORT) && !defined(_WIN32)
  7646. // Regression test for "zip bomb" attack on the client side: a malicious server
  7647. // sends a small gzip-compressed response that decompresses to a huge payload.
  7648. // The client must enforce payload_max_length on the decompressed size.
  7649. TEST(ClientVulnerabilityTest, ZipBombWithoutContentLength) {
  7650. constexpr size_t DECOMPRESSED_SIZE =
  7651. 10 * 1024 * 1024; // 10MB after decompression
  7652. constexpr size_t CLIENT_READ_LIMIT = 2 * 1024 * 1024; // 2MB safety limit
  7653. // Prepare gzip-compressed data: 10MB of zeros compresses to a few KB
  7654. std::string uncompressed(DECOMPRESSED_SIZE, '\0');
  7655. std::string compressed;
  7656. {
  7657. httplib::detail::gzip_compressor compressor;
  7658. bool ok =
  7659. compressor.compress(uncompressed.data(), uncompressed.size(),
  7660. /*last=*/true, [&](const char *buf, size_t len) {
  7661. compressed.append(buf, len);
  7662. return true;
  7663. });
  7664. ASSERT_TRUE(ok);
  7665. }
  7666. // Sanity: compressed data should be much smaller than the decompressed size
  7667. ASSERT_LT(compressed.size(), DECOMPRESSED_SIZE / 10);
  7668. #ifndef _WIN32
  7669. signal(SIGPIPE, SIG_IGN);
  7670. #endif
  7671. // Set up the listening socket in the main thread so the server is guaranteed
  7672. // to be ready before the client connects (eliminates race condition).
  7673. auto srv = ::socket(AF_INET, SOCK_STREAM, 0);
  7674. default_socket_options(srv);
  7675. detail::set_socket_opt_time(srv, SOL_SOCKET, SO_RCVTIMEO, 5, 0);
  7676. detail::set_socket_opt_time(srv, SOL_SOCKET, SO_SNDTIMEO, 5, 0);
  7677. sockaddr_in addr{};
  7678. addr.sin_family = AF_INET;
  7679. addr.sin_port = htons(PORT + 3);
  7680. ::inet_pton(AF_INET, "127.0.0.1", &addr.sin_addr);
  7681. int opt = 1;
  7682. ::setsockopt(srv, SOL_SOCKET, SO_REUSEADDR,
  7683. #ifdef _WIN32
  7684. reinterpret_cast<const char *>(&opt),
  7685. #else
  7686. &opt,
  7687. #endif
  7688. sizeof(opt));
  7689. ASSERT_EQ(0, ::bind(srv, reinterpret_cast<sockaddr *>(&addr), sizeof(addr)));
  7690. ASSERT_EQ(0, ::listen(srv, 1));
  7691. auto server_thread = std::thread([&compressed, srv] {
  7692. sockaddr_in cli_addr{};
  7693. socklen_t cli_len = sizeof(cli_addr);
  7694. auto cli = ::accept(srv, reinterpret_cast<sockaddr *>(&cli_addr), &cli_len);
  7695. if (cli != INVALID_SOCKET) {
  7696. // Read the full HTTP request (until \r\n\r\n)
  7697. char buf[4096];
  7698. size_t total = 0;
  7699. while (total < sizeof(buf)) {
  7700. auto n = ::recv(cli, buf + total, sizeof(buf) - total, 0);
  7701. if (n <= 0) break;
  7702. total += static_cast<size_t>(n);
  7703. // Check for end of headers
  7704. if (total >= 4) {
  7705. std::string req(buf, total);
  7706. if (req.find("\r\n\r\n") != std::string::npos) break;
  7707. }
  7708. }
  7709. // Malicious response: gzip-compressed body, no Content-Length
  7710. std::string response_header = "HTTP/1.1 200 OK\r\n"
  7711. "Content-Encoding: gzip\r\n"
  7712. "Connection: close\r\n"
  7713. "\r\n";
  7714. ::send(cli,
  7715. #ifdef _WIN32
  7716. static_cast<const char *>(response_header.c_str()),
  7717. static_cast<int>(response_header.size()),
  7718. #else
  7719. response_header.c_str(), response_header.size(),
  7720. #endif
  7721. 0);
  7722. // Send the compressed payload (small on the wire, huge when decompressed)
  7723. size_t total_sent = 0;
  7724. while (total_sent < compressed.size()) {
  7725. auto to_send = std::min(compressed.size() - total_sent,
  7726. static_cast<size_t>(64 * 1024));
  7727. auto sent =
  7728. ::send(cli,
  7729. #ifdef _WIN32
  7730. static_cast<const char *>(compressed.c_str() + total_sent),
  7731. static_cast<int>(to_send),
  7732. #else
  7733. compressed.c_str() + total_sent, to_send,
  7734. #endif
  7735. 0);
  7736. if (sent <= 0) break;
  7737. total_sent += static_cast<size_t>(sent);
  7738. }
  7739. detail::close_socket(cli);
  7740. }
  7741. });
  7742. auto se = detail::scope_exit([&] {
  7743. detail::close_socket(srv);
  7744. server_thread.join();
  7745. });
  7746. size_t total_decompressed = 0;
  7747. {
  7748. Client cli("127.0.0.1", PORT + 3);
  7749. cli.set_read_timeout(5, 0);
  7750. cli.set_decompress(true);
  7751. cli.set_payload_max_length(CLIENT_READ_LIMIT);
  7752. auto stream = cli.open_stream("GET", "/zipbomb");
  7753. ASSERT_TRUE(stream.is_valid());
  7754. char buffer[64 * 1024];
  7755. ssize_t n;
  7756. while ((n = stream.read(buffer, sizeof(buffer))) > 0) {
  7757. total_decompressed += static_cast<size_t>(n);
  7758. }
  7759. }
  7760. // The decompressed size must be capped by payload_max_length. Without
  7761. // protection, the client would decompress the full 10MB from a tiny
  7762. // compressed payload, enabling a zip bomb DoS attack.
  7763. EXPECT_LE(total_decompressed, CLIENT_READ_LIMIT)
  7764. << "Client decompressed " << total_decompressed
  7765. << " bytes from a gzip response. The decompressed size should be "
  7766. << "limited by set_payload_max_length to prevent zip bomb attacks.";
  7767. }
  7768. #endif
  7769. TEST(HostAndPortPropertiesTest, NoSSL) {
  7770. httplib::Client cli("www.google.com", 1234);
  7771. ASSERT_EQ("www.google.com", cli.host());
  7772. ASSERT_EQ(1234, cli.port());
  7773. }
  7774. TEST(HostAndPortPropertiesTest, NoSSLWithSimpleAPI) {
  7775. httplib::Client cli("www.google.com:1234");
  7776. ASSERT_EQ("www.google.com", cli.host());
  7777. ASSERT_EQ(1234, cli.port());
  7778. }
  7779. #ifdef CPPHTTPLIB_SSL_ENABLED
  7780. TEST(HostAndPortPropertiesTest, SSL) {
  7781. httplib::SSLClient cli("www.google.com");
  7782. ASSERT_EQ("www.google.com", cli.host());
  7783. ASSERT_EQ(443, cli.port());
  7784. }
  7785. TEST(SSLClientTest, UpdateCAStoreWithPem_Online) {
  7786. // Test updating CA store multiple times using PEM-based load_ca_cert_store
  7787. std::string cert;
  7788. read_file(CA_CERT_FILE, cert);
  7789. httplib::SSLClient httplib_client("www.google.com");
  7790. // Load CA store first time
  7791. httplib_client.load_ca_cert_store(cert.data(), cert.size());
  7792. // Load CA store second time (update)
  7793. httplib_client.load_ca_cert_store(cert.data(), cert.size());
  7794. // Verify client is still valid and can make connections
  7795. httplib_client.enable_server_certificate_verification(true);
  7796. auto res = httplib_client.Get("/");
  7797. ASSERT_TRUE(res);
  7798. // Google may return 200 or 301 depending on various factors
  7799. EXPECT_TRUE(res->status == StatusCode::OK_200 ||
  7800. res->status == StatusCode::MovedPermanently_301);
  7801. }
  7802. TEST(SSLClientTest, ServerNameIndication_Online) {
  7803. #ifdef CPPHTTPLIB_DEFAULT_HTTPBIN
  7804. auto host = "httpcan.org";
  7805. auto path = std::string{"/get"};
  7806. #else
  7807. auto host = "nghttp2.org";
  7808. auto path = std::string{"/httpbin/get"};
  7809. #endif
  7810. SSLClient cli(host, 443);
  7811. auto res = cli.Get(path);
  7812. ASSERT_TRUE(res);
  7813. ASSERT_EQ(StatusCode::OK_200, res->status);
  7814. }
  7815. TEST(SSLClientTest, ServerCertificateVerificationError_Online) {
  7816. // Use a site that will cause SSL verification failure due to self-signed cert
  7817. SSLClient cli("self-signed.badssl.com", 443);
  7818. cli.enable_server_certificate_verification(true);
  7819. auto res = cli.Get("/");
  7820. ASSERT_TRUE(!res);
  7821. EXPECT_EQ(Error::SSLServerVerification, res.error());
  7822. // Verify backend error is captured for SSLServerVerification
  7823. // This occurs when certificate verification fails
  7824. // OpenSSL: X509_V_ERR_DEPTH_ZERO_SELF_SIGNED_CERT (18)
  7825. // Mbed TLS: MBEDTLS_X509_BADCERT_NOT_TRUSTED or similar flags
  7826. EXPECT_NE(0UL, res.ssl_backend_error());
  7827. #ifdef CPPHTTPLIB_OPENSSL_SUPPORT
  7828. // For OpenSSL, ssl_error is 0 for verification errors
  7829. EXPECT_EQ(0, res.ssl_error());
  7830. #if !defined(_WIN32) || \
  7831. defined(CPPHTTPLIB_DISABLE_WINDOWS_AUTOMATIC_ROOT_CERTIFICATES_UPDATE)
  7832. // On non-Windows or when Windows Schannel is disabled, the error comes
  7833. // from OpenSSL's verification
  7834. EXPECT_EQ(static_cast<unsigned long>(X509_V_ERR_DEPTH_ZERO_SELF_SIGNED_CERT),
  7835. res.ssl_backend_error());
  7836. #endif
  7837. #endif
  7838. }
  7839. TEST(SSLClientTest, ServerHostnameVerificationError_Online) {
  7840. // Use a site where hostname doesn't match the certificate
  7841. // badssl.com provides wrong.host.badssl.com which has cert for *.badssl.com
  7842. SSLClient cli("wrong.host.badssl.com", 443);
  7843. cli.enable_server_certificate_verification(true);
  7844. cli.enable_server_hostname_verification(true);
  7845. auto res = cli.Get("/");
  7846. ASSERT_TRUE(!res);
  7847. // The error type depends on when hostname verification occurs:
  7848. // - OpenSSL: SSLServerHostnameVerification (post-handshake verification)
  7849. // - Mbed TLS: SSLServerVerification (during handshake)
  7850. EXPECT_TRUE(res.error() == Error::SSLServerHostnameVerification ||
  7851. res.error() == Error::SSLServerVerification);
  7852. // Verify backend error is captured for hostname verification failure
  7853. EXPECT_NE(0UL, res.ssl_backend_error());
  7854. #ifdef CPPHTTPLIB_OPENSSL_SUPPORT
  7855. // For OpenSSL, ssl_error is 0 for verification errors
  7856. EXPECT_EQ(0, res.ssl_error());
  7857. #if !defined(_WIN32) || \
  7858. defined(CPPHTTPLIB_DISABLE_WINDOWS_AUTOMATIC_ROOT_CERTIFICATES_UPDATE)
  7859. // On non-Windows or when Windows Schannel is disabled, the error comes
  7860. // from OpenSSL's hostname verification
  7861. EXPECT_EQ(static_cast<unsigned long>(X509_V_ERR_HOSTNAME_MISMATCH),
  7862. res.ssl_backend_error());
  7863. #endif
  7864. #endif
  7865. }
  7866. #if defined(_WIN32) && defined(CPPHTTPLIB_SSL_ENABLED) && \
  7867. !defined(CPPHTTPLIB_DISABLE_WINDOWS_AUTOMATIC_ROOT_CERTIFICATES_UPDATE)
  7868. TEST(SSLClientTest, WindowsCertificateVerification_DefaultEnabled) {
  7869. SSLClient cli("www.google.com", 443);
  7870. cli.enable_server_certificate_verification(true);
  7871. auto res = cli.Get("/");
  7872. if (res) { EXPECT_NE(StatusCode::InternalServerError_500, res->status); }
  7873. }
  7874. TEST(SSLClientTest, WindowsCertificateVerification_Disabled) {
  7875. SSLClient cli("www.google.com", 443);
  7876. cli.enable_server_certificate_verification(true);
  7877. cli.enable_windows_certificate_verification(false);
  7878. auto res = cli.Get("/");
  7879. if (res) { EXPECT_NE(StatusCode::InternalServerError_500, res->status); }
  7880. }
  7881. #endif
  7882. TEST(SSLClientTest, ServerCertificateVerification1_Online) {
  7883. Client cli("https://google.com");
  7884. auto res = cli.Get("/");
  7885. ASSERT_TRUE(res);
  7886. ASSERT_EQ(StatusCode::MovedPermanently_301, res->status);
  7887. }
  7888. TEST(SSLClientTest, ServerCertificateVerification2_Online) {
  7889. SSLClient cli("google.com");
  7890. cli.set_ca_cert_path(CA_CERT_FILE);
  7891. auto res = cli.Get("/");
  7892. ASSERT_TRUE(res);
  7893. ASSERT_EQ(StatusCode::MovedPermanently_301, res->status);
  7894. }
  7895. TEST(SSLClientTest, ServerCertificateVerification3_Online) {
  7896. SSLClient cli("google.com");
  7897. cli.enable_server_certificate_verification(true);
  7898. cli.set_ca_cert_path("hello");
  7899. auto res = cli.Get("/");
  7900. ASSERT_TRUE(!res);
  7901. EXPECT_EQ(Error::SSLLoadingCerts, res.error());
  7902. // For SSL_CTX operations, ssl_error should be 0, only ssl_backend_error
  7903. // should be set
  7904. EXPECT_EQ(0, res.ssl_error());
  7905. // Verify backend error is captured for SSLLoadingCerts
  7906. // This error occurs when loading CA certificates fails
  7907. EXPECT_NE(0UL, res.ssl_backend_error());
  7908. #ifdef CPPHTTPLIB_OPENSSL_SUPPORT
  7909. // OpenSSL specific error codes:
  7910. // > openssl errstr 0x80000002
  7911. // error:80000002:system library::No such file or directory
  7912. // > openssl errstr 0xA000126
  7913. // error:0A000126:SSL routines::unexpected eof while reading
  7914. EXPECT_TRUE(res.ssl_backend_error() == 0x80000002 ||
  7915. res.ssl_backend_error() == 0xA000126);
  7916. #endif
  7917. }
  7918. TEST(SSLClientTest, ServerCertificateVerification4) {
  7919. SSLServer svr(SERVER_CERT2_FILE, SERVER_PRIVATE_KEY_FILE);
  7920. ASSERT_TRUE(svr.is_valid());
  7921. svr.Get("/test", [&](const Request &, Response &res) {
  7922. res.set_content("test", "text/plain");
  7923. svr.stop();
  7924. ASSERT_TRUE(true);
  7925. });
  7926. thread t = thread([&]() { ASSERT_TRUE(svr.listen("127.0.0.1", PORT)); });
  7927. auto se = detail::scope_exit([&] {
  7928. t.join();
  7929. ASSERT_FALSE(svr.is_running());
  7930. });
  7931. svr.wait_until_ready();
  7932. SSLClient cli("127.0.0.1", PORT);
  7933. cli.set_ca_cert_path(SERVER_CERT2_FILE);
  7934. cli.enable_server_certificate_verification(true);
  7935. cli.set_connection_timeout(30);
  7936. auto res = cli.Get("/test");
  7937. ASSERT_TRUE(res);
  7938. ASSERT_EQ(StatusCode::OK_200, res->status);
  7939. }
  7940. TEST(SSLClientTest, ServerCertificateVerification5_Online) {
  7941. std::string cert;
  7942. read_file(CA_CERT_FILE, cert);
  7943. SSLClient cli("google.com");
  7944. cli.load_ca_cert_store(cert.data(), cert.size());
  7945. const auto res = cli.Get("/");
  7946. ASSERT_TRUE(res);
  7947. ASSERT_EQ(StatusCode::MovedPermanently_301, res->status);
  7948. }
  7949. TEST(SSLClientTest, ServerCertificateVerification6_Online) {
  7950. // clang-format off
  7951. static constexpr char cert[] =
  7952. "GlobalSign Root CA\n"
  7953. "==================\n"
  7954. "-----BEGIN CERTIFICATE-----\n"
  7955. "MIIDdTCCAl2gAwIBAgILBAAAAAABFUtaw5QwDQYJKoZIhvcNAQEFBQAwVzELMAkGA1UEBhMCQkUx\n"
  7956. "GTAXBgNVBAoTEEdsb2JhbFNpZ24gbnYtc2ExEDAOBgNVBAsTB1Jvb3QgQ0ExGzAZBgNVBAMTEkds\n"
  7957. "b2JhbFNpZ24gUm9vdCBDQTAeFw05ODA5MDExMjAwMDBaFw0yODAxMjgxMjAwMDBaMFcxCzAJBgNV\n"
  7958. "BAYTAkJFMRkwFwYDVQQKExBHbG9iYWxTaWduIG52LXNhMRAwDgYDVQQLEwdSb290IENBMRswGQYD\n"
  7959. "VQQDExJHbG9iYWxTaWduIFJvb3QgQ0EwggEiMA0GCSqGSIb3DQEBAQUAA4IBDwAwggEKAoIBAQDa\n"
  7960. "DuaZjc6j40+Kfvvxi4Mla+pIH/EqsLmVEQS98GPR4mdmzxzdzxtIK+6NiY6arymAZavpxy0Sy6sc\n"
  7961. "THAHoT0KMM0VjU/43dSMUBUc71DuxC73/OlS8pF94G3VNTCOXkNz8kHp1Wrjsok6Vjk4bwY8iGlb\n"
  7962. "Kk3Fp1S4bInMm/k8yuX9ifUSPJJ4ltbcdG6TRGHRjcdGsnUOhugZitVtbNV4FpWi6cgKOOvyJBNP\n"
  7963. "c1STE4U6G7weNLWLBYy5d4ux2x8gkasJU26Qzns3dLlwR5EiUWMWea6xrkEmCMgZK9FGqkjWZCrX\n"
  7964. "gzT/LCrBbBlDSgeF59N89iFo7+ryUp9/k5DPAgMBAAGjQjBAMA4GA1UdDwEB/wQEAwIBBjAPBgNV\n"
  7965. "HRMBAf8EBTADAQH/MB0GA1UdDgQWBBRge2YaRQ2XyolQL30EzTSo//z9SzANBgkqhkiG9w0BAQUF\n"
  7966. "AAOCAQEA1nPnfE920I2/7LqivjTFKDK1fPxsnCwrvQmeU79rXqoRSLblCKOzyj1hTdNGCbM+w6Dj\n"
  7967. "Y1Ub8rrvrTnhQ7k4o+YviiY776BQVvnGCv04zcQLcFGUl5gE38NflNUVyRRBnMRddWQVDf9VMOyG\n"
  7968. "j/8N7yy5Y0b2qvzfvGn9LhJIZJrglfCm7ymPAbEVtQwdpf5pLGkkeB6zpxxxYu7KyJesF12KwvhH\n"
  7969. "hm4qxFYxldBniYUr+WymXUadDKqC5JlR3XC321Y9YeRq4VzW9v493kHMB65jUr9TU/Qr6cf9tveC\n"
  7970. "X4XSQRjbgbMEHMUfpIBvFSDJ3gyICh3WZlXi/EjJKSZp4A==\n"
  7971. "-----END CERTIFICATE-----\n";
  7972. // clang-format on
  7973. SSLClient cli("google.com");
  7974. cli.load_ca_cert_store(cert, sizeof(cert));
  7975. const auto res = cli.Get("/");
  7976. ASSERT_TRUE(res);
  7977. ASSERT_EQ(StatusCode::MovedPermanently_301, res->status);
  7978. }
  7979. TEST(SSLClientTest, WildcardHostNameMatch_Online) {
  7980. SSLClient cli("www.youtube.com");
  7981. cli.set_ca_cert_path(CA_CERT_FILE);
  7982. cli.enable_server_certificate_verification(true);
  7983. cli.set_follow_location(true);
  7984. auto res = cli.Get("/");
  7985. ASSERT_TRUE(res);
  7986. ASSERT_EQ(StatusCode::OK_200, res->status);
  7987. }
  7988. TEST(SSLClientTest, WildcardHostNameMatchCase_Online) {
  7989. SSLClient cli("wWw.YouTube.Com");
  7990. cli.set_ca_cert_path(CA_CERT_FILE);
  7991. cli.enable_server_certificate_verification(true);
  7992. cli.enable_server_hostname_verification(true);
  7993. cli.set_follow_location(true);
  7994. auto res = cli.Get("/");
  7995. ASSERT_TRUE(res);
  7996. ASSERT_EQ(StatusCode::OK_200, res->status);
  7997. }
  7998. TEST(SSLClientTest, HostNameMatchCase_Online) {
  7999. SSLClient cli("gOoGlE.COm");
  8000. cli.enable_server_certificate_verification(true);
  8001. cli.enable_server_hostname_verification(true);
  8002. cli.set_follow_location(true);
  8003. auto res = cli.Get("/");
  8004. ASSERT_TRUE(res);
  8005. ASSERT_EQ(StatusCode::OK_200, res->status);
  8006. }
  8007. TEST(SSLClientTest, Issue2004_Online) {
  8008. Client client("https://google.com");
  8009. client.set_follow_location(true);
  8010. auto res = client.Get("/");
  8011. ASSERT_TRUE(res);
  8012. ASSERT_EQ(StatusCode::OK_200, res->status);
  8013. auto body = res->body;
  8014. EXPECT_EQ(body.substr(0, 15), "<!doctype html>");
  8015. }
  8016. TEST(SSLClientTest, ErrorReportingWhenInvalid) {
  8017. // Create SSLClient with invalid cert/key to make is_valid() return false
  8018. SSLClient cli("localhost", 8080, "nonexistent_cert.pem",
  8019. "nonexistent_key.pem");
  8020. // is_valid() should be false due to cert loading failure
  8021. ASSERT_FALSE(cli.is_valid());
  8022. auto res = cli.Get("/");
  8023. ASSERT_FALSE(res);
  8024. EXPECT_EQ(Error::SSLConnection, res.error());
  8025. }
  8026. TEST(SSLClientTest, Issue2251_SwappedClientCertAndKey) {
  8027. // Test for Issue #2251: SSL error not properly reported when client cert
  8028. // and key paths are swapped or mismatched
  8029. // This simulates the scenario where user accidentally swaps the cert and key
  8030. // files
  8031. // Using client cert file as private key and vice versa (completely wrong)
  8032. SSLClient cli("localhost", 8080, "client.key.pem", "client.cert.pem");
  8033. // Should fail validation due to cert/key mismatch
  8034. ASSERT_FALSE(cli.is_valid());
  8035. // Attempt to make a request should fail with proper error
  8036. auto res = cli.Get("/");
  8037. ASSERT_FALSE(res);
  8038. EXPECT_EQ(Error::SSLConnection, res.error());
  8039. // SSL error should be recorded in the Result object (this is the key fix for
  8040. // Issue #2251)
  8041. auto backend_error = res.ssl_backend_error();
  8042. EXPECT_NE(0u, backend_error);
  8043. }
  8044. // Tests cert/key mismatch detection at the TLS context level
  8045. TEST(TlsApiTest, ClientCertKeyMismatch) {
  8046. // Test that using mismatched cert/key causes connection failure.
  8047. // We verify this at the SSLClient level rather than through internal
  8048. // TLS API functions.
  8049. SSLClient cli(HOST, PORT, "client.cert.pem", "key.pem");
  8050. cli.enable_server_certificate_verification(false);
  8051. cli.set_connection_timeout(2);
  8052. // The mismatch should cause a connection or handshake error
  8053. auto res = cli.Get("/test");
  8054. // OpenSSL detects mismatch at context setup, MbedTLS at handshake
  8055. // Either way, the request should fail
  8056. EXPECT_FALSE(res);
  8057. }
  8058. #endif
  8059. #if 0
  8060. TEST(SSLClientTest, SetInterfaceWithINET6) {
  8061. auto cli = std::make_shared<httplib::Client>("https://httpcan.org");
  8062. ASSERT_TRUE(cli != nullptr);
  8063. cli->set_address_family(AF_INET6);
  8064. cli->set_interface("en0");
  8065. auto res = cli->Get("/get");
  8066. ASSERT_TRUE(res);
  8067. ASSERT_EQ(StatusCode::OK_200, res->status);
  8068. }
  8069. #endif
  8070. // ClientCertPresent uses get_peer_cert() - works with all TLS backends
  8071. #ifdef CPPHTTPLIB_SSL_ENABLED
  8072. void ClientCertPresent(
  8073. const std::string &client_cert_file,
  8074. const std::string &client_private_key_file,
  8075. const std::string &client_encrypted_private_key_pass = std::string()) {
  8076. using namespace httplib::tls;
  8077. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE, CLIENT_CA_CERT_FILE,
  8078. CLIENT_CA_CERT_DIR);
  8079. ASSERT_TRUE(svr.is_valid());
  8080. svr.Get("/test", [&](const Request &req, Response &res) {
  8081. res.set_content("test", "text/plain");
  8082. auto cert = req.peer_cert();
  8083. ASSERT_TRUE(static_cast<bool>(cert));
  8084. std::string common_name = cert.subject_cn();
  8085. EXPECT_EQ("Common Name", common_name);
  8086. });
  8087. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8088. auto se = detail::scope_exit([&] {
  8089. svr.stop();
  8090. t.join();
  8091. ASSERT_FALSE(svr.is_running());
  8092. });
  8093. svr.wait_until_ready();
  8094. SSLClient cli(HOST, PORT, client_cert_file, client_private_key_file,
  8095. client_encrypted_private_key_pass);
  8096. cli.enable_server_certificate_verification(false);
  8097. cli.set_connection_timeout(30);
  8098. auto res = cli.Get("/test");
  8099. ASSERT_TRUE(res);
  8100. ASSERT_EQ(StatusCode::OK_200, res->status);
  8101. }
  8102. TEST(SSLClientServerTest, ClientCertPresent) {
  8103. ClientCertPresent(CLIENT_CERT_FILE, CLIENT_PRIVATE_KEY_FILE);
  8104. }
  8105. TEST(SSLClientServerTest, ClientEncryptedCertPresent) {
  8106. ClientCertPresent(CLIENT_ENCRYPTED_CERT_FILE,
  8107. CLIENT_ENCRYPTED_PRIVATE_KEY_FILE,
  8108. CLIENT_ENCRYPTED_PRIVATE_KEY_PASS);
  8109. }
  8110. // PEM memory-based constructor tests (works with all TLS backends)
  8111. void PemMemoryClientCertPresent(
  8112. const std::string &client_cert_file,
  8113. const std::string &client_private_key_file,
  8114. const std::string &client_encrypted_private_key_pass = std::string()) {
  8115. // Read PEM files into memory
  8116. std::string server_cert_pem, server_key_pem;
  8117. std::string client_ca_pem;
  8118. std::string client_cert_pem, client_key_pem;
  8119. read_file(SERVER_CERT_FILE, server_cert_pem);
  8120. read_file(SERVER_PRIVATE_KEY_FILE, server_key_pem);
  8121. read_file(CLIENT_CA_CERT_FILE, client_ca_pem);
  8122. read_file(client_cert_file, client_cert_pem);
  8123. read_file(client_private_key_file, client_key_pem);
  8124. // Create server with PEM memory
  8125. SSLServer::PemMemory server_pem = {
  8126. server_cert_pem.c_str(),
  8127. server_cert_pem.size(),
  8128. server_key_pem.c_str(),
  8129. server_key_pem.size(),
  8130. client_ca_pem.c_str(),
  8131. client_ca_pem.size(),
  8132. nullptr // no password for server key
  8133. };
  8134. SSLServer svr(server_pem);
  8135. ASSERT_TRUE(svr.is_valid());
  8136. svr.Get("/test", [&](const Request &, Response &res) {
  8137. res.set_content("test", "text/plain");
  8138. });
  8139. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8140. auto se = detail::scope_exit([&] {
  8141. svr.stop();
  8142. t.join();
  8143. ASSERT_FALSE(svr.is_running());
  8144. });
  8145. svr.wait_until_ready();
  8146. // Create client with PEM memory
  8147. const char *password = client_encrypted_private_key_pass.empty()
  8148. ? nullptr
  8149. : client_encrypted_private_key_pass.c_str();
  8150. SSLClient::PemMemory client_pem = {
  8151. client_cert_pem.c_str(), client_cert_pem.size(), client_key_pem.c_str(),
  8152. client_key_pem.size(), password};
  8153. SSLClient cli(HOST, PORT, client_pem);
  8154. cli.enable_server_certificate_verification(false);
  8155. cli.set_connection_timeout(30);
  8156. auto res = cli.Get("/test");
  8157. ASSERT_TRUE(res);
  8158. ASSERT_EQ(StatusCode::OK_200, res->status);
  8159. }
  8160. TEST(SSLClientServerTest, PemMemoryClientCertPresent) {
  8161. PemMemoryClientCertPresent(CLIENT_CERT_FILE, CLIENT_PRIVATE_KEY_FILE);
  8162. }
  8163. TEST(SSLClientServerTest, PemMemoryClientEncryptedCertPresent) {
  8164. PemMemoryClientCertPresent(CLIENT_ENCRYPTED_CERT_FILE,
  8165. CLIENT_ENCRYPTED_PRIVATE_KEY_FILE,
  8166. CLIENT_ENCRYPTED_PRIVATE_KEY_PASS);
  8167. }
  8168. TEST(SSLClientServerTest, ClientCertMissing) {
  8169. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE, CLIENT_CA_CERT_FILE,
  8170. CLIENT_CA_CERT_DIR);
  8171. ASSERT_TRUE(svr.is_valid());
  8172. svr.Get("/test", [&](const Request &, Response &) { ASSERT_TRUE(false); });
  8173. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8174. auto se = detail::scope_exit([&] {
  8175. svr.stop();
  8176. t.join();
  8177. ASSERT_FALSE(svr.is_running());
  8178. });
  8179. svr.wait_until_ready();
  8180. SSLClient cli(HOST, PORT);
  8181. cli.set_connection_timeout(30);
  8182. auto res = cli.Get("/test");
  8183. ASSERT_TRUE(!res);
  8184. // When client cert is missing and server requires it, connection fails
  8185. // Error type depends on backend implementation
  8186. EXPECT_TRUE(res.error() == Error::SSLServerVerification ||
  8187. res.error() == Error::SSLConnection);
  8188. // Verify backend error is captured
  8189. // Note: This test may have different error codes depending on the exact
  8190. // verification failure
  8191. EXPECT_NE(0UL, res.ssl_backend_error());
  8192. }
  8193. TEST(SSLClientServerTest, TrustDirOptional) {
  8194. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE, CLIENT_CA_CERT_FILE);
  8195. ASSERT_TRUE(svr.is_valid());
  8196. svr.Get("/test", [&](const Request &, Response &res) {
  8197. res.set_content("test", "text/plain");
  8198. });
  8199. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8200. auto se = detail::scope_exit([&] {
  8201. svr.stop();
  8202. t.join();
  8203. ASSERT_FALSE(svr.is_running());
  8204. });
  8205. svr.wait_until_ready();
  8206. SSLClient cli(HOST, PORT, CLIENT_CERT_FILE, CLIENT_PRIVATE_KEY_FILE);
  8207. cli.enable_server_certificate_verification(false);
  8208. cli.set_connection_timeout(30);
  8209. auto res = cli.Get("/test");
  8210. ASSERT_TRUE(res);
  8211. ASSERT_EQ(StatusCode::OK_200, res->status);
  8212. }
  8213. TEST(SSLClientServerTest, SSLConnectTimeout) {
  8214. class NoListenSSLServer : public SSLServer {
  8215. public:
  8216. NoListenSSLServer(const char *cert_path, const char *private_key_path,
  8217. const char *client_ca_cert_file_path,
  8218. const char *client_ca_cert_dir_path = nullptr)
  8219. : SSLServer(cert_path, private_key_path, client_ca_cert_file_path,
  8220. client_ca_cert_dir_path),
  8221. stop_(false) {}
  8222. std::atomic_bool stop_;
  8223. private:
  8224. bool process_and_close_socket(socket_t /*sock*/) override {
  8225. // Don't create SSL context
  8226. while (!stop_.load()) {
  8227. std::this_thread::sleep_for(std::chrono::milliseconds(100));
  8228. }
  8229. return true;
  8230. }
  8231. };
  8232. NoListenSSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE,
  8233. CLIENT_CA_CERT_FILE);
  8234. ASSERT_TRUE(svr.is_valid());
  8235. svr.Get("/test", [&](const Request &, Response &res) {
  8236. res.set_content("test", "text/plain");
  8237. });
  8238. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8239. auto se = detail::scope_exit([&] {
  8240. svr.stop_ = true;
  8241. svr.stop();
  8242. t.join();
  8243. ASSERT_FALSE(svr.is_running());
  8244. });
  8245. svr.wait_until_ready();
  8246. SSLClient cli(HOST, PORT, CLIENT_CERT_FILE, CLIENT_PRIVATE_KEY_FILE);
  8247. cli.enable_server_certificate_verification(false);
  8248. cli.set_connection_timeout(1);
  8249. auto res = cli.Get("/test");
  8250. ASSERT_TRUE(!res);
  8251. EXPECT_EQ(Error::SSLConnection, res.error());
  8252. // Timeout results in WantRead error code (maps to backend-specific value)
  8253. EXPECT_NE(0, res.ssl_error());
  8254. }
  8255. TEST(SSLClientServerTest, CustomizeServerSSLCtxGeneric) {
  8256. // Test SSLServer with client certificate verification using the standard
  8257. // constructor (ContextSetupCallback is tested by backend-specific tests)
  8258. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE, CLIENT_CA_CERT_FILE,
  8259. CLIENT_CA_CERT_DIR);
  8260. ASSERT_TRUE(svr.is_valid());
  8261. svr.Get("/test", [&](const Request &req, Response &res) {
  8262. res.set_content("test", "text/plain");
  8263. auto cert = req.peer_cert();
  8264. ASSERT_TRUE(static_cast<bool>(cert));
  8265. auto common_name = cert.subject_cn();
  8266. EXPECT_EQ("Common Name", common_name);
  8267. });
  8268. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8269. auto se = detail::scope_exit([&] {
  8270. svr.stop();
  8271. t.join();
  8272. ASSERT_FALSE(svr.is_running());
  8273. });
  8274. svr.wait_until_ready();
  8275. SSLClient cli(HOST, PORT, CLIENT_CERT_FILE, CLIENT_PRIVATE_KEY_FILE);
  8276. cli.enable_server_certificate_verification(false);
  8277. cli.set_connection_timeout(30);
  8278. auto res = cli.Get("/test");
  8279. ASSERT_TRUE(res);
  8280. ASSERT_EQ(StatusCode::OK_200, res->status);
  8281. }
  8282. // Test verify_hostname for both OpenSSL and MbedTLS backends
  8283. // Verifies that wildcard matching and exact matching work consistently
  8284. TEST(SSLClientServerTest, TlsVerifyHostname) {
  8285. using namespace httplib::tls;
  8286. // We need a running server to test against
  8287. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  8288. ASSERT_TRUE(svr.is_valid());
  8289. svr.Get("/test", [](const Request &, Response &res) {
  8290. res.set_content("ok", "text/plain");
  8291. });
  8292. thread t([&]() { svr.listen(HOST, PORT); });
  8293. auto se = detail::scope_exit([&] {
  8294. svr.stop();
  8295. t.join();
  8296. });
  8297. svr.wait_until_ready();
  8298. bool verify_callback_called = false;
  8299. bool verify_result_wrong = false;
  8300. SSLClient cli(HOST, PORT);
  8301. cli.enable_server_certificate_verification(true);
  8302. cli.set_ca_cert_path(CA_CERT_FILE);
  8303. cli.set_connection_timeout(5);
  8304. // Note: Test certificate has CN="Common Name", not "localhost"
  8305. bool verify_result_cn = false;
  8306. cli.set_server_certificate_verifier([&](const VerifyContext &ctx) -> bool {
  8307. verify_callback_called = true;
  8308. if (!ctx.cert) return false;
  8309. // Test 1: "Common Name" should match (our test server cert CN)
  8310. verify_result_cn = ctx.check_hostname("Common Name");
  8311. // Test 2: wrong hostname should not match
  8312. verify_result_wrong = ctx.check_hostname("wronghost.example.com");
  8313. return true; // Accept for the purpose of this test
  8314. });
  8315. auto res = cli.Get("/test");
  8316. // The request may succeed or fail depending on cert configuration
  8317. // but the callback should have been called
  8318. ASSERT_TRUE(verify_callback_called)
  8319. << "Verify callback should have been called";
  8320. // CN="Common Name" should match our test certificate
  8321. EXPECT_TRUE(verify_result_cn)
  8322. << "verify_hostname should match 'Common Name' (certificate CN)";
  8323. // Wrong hostname should not match
  8324. EXPECT_FALSE(verify_result_wrong)
  8325. << "verify_hostname should not match 'wronghost.example.com'";
  8326. }
  8327. #endif
  8328. // mbedTLS-specific callback constructor test
  8329. // Tests that the void* callback can customize TLS settings via MbedTlsContext
  8330. #ifdef CPPHTTPLIB_SSL_ENABLED
  8331. TEST(SSLClientServerTest, ClientCAListSentToClient) {
  8332. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE, CLIENT_CA_CERT_FILE);
  8333. ASSERT_TRUE(svr.is_valid());
  8334. // Set up a handler to verify client certificate is present
  8335. bool client_cert_verified = false;
  8336. svr.Get("/test", [&](const Request & /*req*/, Response &res) {
  8337. // Verify that client certificate was provided
  8338. client_cert_verified = true;
  8339. res.set_content("success", "text/plain");
  8340. });
  8341. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8342. auto se = detail::scope_exit([&] {
  8343. svr.stop();
  8344. t.join();
  8345. ASSERT_FALSE(svr.is_running());
  8346. });
  8347. svr.wait_until_ready();
  8348. // Client with certificate
  8349. SSLClient cli(HOST, PORT, CLIENT_CERT_FILE, CLIENT_PRIVATE_KEY_FILE);
  8350. cli.enable_server_certificate_verification(false);
  8351. cli.set_connection_timeout(30);
  8352. auto res = cli.Get("/test");
  8353. ASSERT_TRUE(res);
  8354. ASSERT_EQ(StatusCode::OK_200, res->status);
  8355. ASSERT_TRUE(client_cert_verified);
  8356. EXPECT_EQ("success", res->body);
  8357. }
  8358. #endif
  8359. // ClientCAListSetInContext uses get_peer_cert() - works with all TLS
  8360. // backends
  8361. #ifdef CPPHTTPLIB_SSL_ENABLED
  8362. TEST(SSLClientServerTest, ClientCAListSetInContext) {
  8363. using namespace httplib::tls;
  8364. // Test that when client CA cert file is provided,
  8365. // the server properly requests and validates client certificates
  8366. // Create a server with client authentication
  8367. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE, CLIENT_CA_CERT_FILE);
  8368. ASSERT_TRUE(svr.is_valid());
  8369. bool handler_called = false;
  8370. svr.Get("/test", [&](const Request &req, Response &res) {
  8371. handler_called = true;
  8372. // Verify that a client certificate was provided
  8373. auto cert = req.peer_cert();
  8374. ASSERT_TRUE(static_cast<bool>(cert));
  8375. // Get the issuer name
  8376. std::string issuer_str = cert.issuer_name();
  8377. ASSERT_FALSE(issuer_str.empty());
  8378. // The client certificate should be issued by our test CA
  8379. EXPECT_TRUE(issuer_str.find("Root CA Name") != std::string::npos);
  8380. res.set_content("authenticated", "text/plain");
  8381. });
  8382. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8383. auto se = detail::scope_exit([&] {
  8384. svr.stop();
  8385. t.join();
  8386. ASSERT_FALSE(svr.is_running());
  8387. });
  8388. svr.wait_until_ready();
  8389. // Connect with a client certificate issued by the CA
  8390. SSLClient cli(HOST, PORT, CLIENT_CERT_FILE, CLIENT_PRIVATE_KEY_FILE);
  8391. cli.enable_server_certificate_verification(false);
  8392. cli.set_connection_timeout(30);
  8393. auto res = cli.Get("/test");
  8394. ASSERT_TRUE(res);
  8395. ASSERT_EQ(StatusCode::OK_200, res->status);
  8396. ASSERT_TRUE(handler_called);
  8397. EXPECT_EQ("authenticated", res->body);
  8398. }
  8399. TEST(TlsCertIntrospectionTest, GetCertSANs) {
  8400. using namespace httplib::tls;
  8401. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  8402. ASSERT_TRUE(svr.is_valid());
  8403. svr.Get("/test", [](const Request &, Response &res) {
  8404. res.set_content("ok", "text/plain");
  8405. });
  8406. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8407. auto se = detail::scope_exit([&] {
  8408. svr.stop();
  8409. t.join();
  8410. });
  8411. svr.wait_until_ready();
  8412. SSLClient cli(HOST, PORT);
  8413. cli.enable_server_certificate_verification(false);
  8414. cli.set_connection_timeout(30);
  8415. bool cert_checked = false;
  8416. cli.set_server_certificate_verifier([&](const VerifyContext &ctx) -> bool {
  8417. if (ctx.cert) {
  8418. auto sans = ctx.sans();
  8419. // Test certificate may or may not have SANs - just verify the API
  8420. // works If SANs exist, verify the types are valid
  8421. for (const auto &san : sans) {
  8422. EXPECT_TRUE(san.type == SanType::DNS || san.type == SanType::IP ||
  8423. san.type == SanType::EMAIL || san.type == SanType::URI ||
  8424. san.type == SanType::OTHER);
  8425. EXPECT_FALSE(san.value.empty());
  8426. }
  8427. cert_checked = true;
  8428. }
  8429. return true;
  8430. });
  8431. auto res = cli.Get("/test");
  8432. ASSERT_TRUE(res);
  8433. EXPECT_TRUE(cert_checked);
  8434. }
  8435. TEST(TlsCertIntrospectionTest, GetCertValidity) {
  8436. using namespace httplib::tls;
  8437. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  8438. ASSERT_TRUE(svr.is_valid());
  8439. svr.Get("/test", [](const Request &, Response &res) {
  8440. res.set_content("ok", "text/plain");
  8441. });
  8442. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8443. auto se = detail::scope_exit([&] {
  8444. svr.stop();
  8445. t.join();
  8446. });
  8447. svr.wait_until_ready();
  8448. SSLClient cli(HOST, PORT);
  8449. cli.enable_server_certificate_verification(false);
  8450. cli.set_connection_timeout(30);
  8451. bool validity_checked = false;
  8452. cli.set_server_certificate_verifier([&](const VerifyContext &ctx) -> bool {
  8453. if (ctx.cert) {
  8454. time_t not_before = 0, not_after = 0;
  8455. bool result = ctx.validity(not_before, not_after);
  8456. EXPECT_TRUE(result);
  8457. // Verify that not_before < now < not_after for a valid cert
  8458. time_t now = time(nullptr);
  8459. EXPECT_LT(not_before, now);
  8460. EXPECT_GT(not_after, now);
  8461. validity_checked = true;
  8462. }
  8463. return true;
  8464. });
  8465. auto res = cli.Get("/test");
  8466. ASSERT_TRUE(res);
  8467. EXPECT_TRUE(validity_checked);
  8468. }
  8469. TEST(TlsCertIntrospectionTest, GetCertSerial) {
  8470. using namespace httplib::tls;
  8471. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  8472. ASSERT_TRUE(svr.is_valid());
  8473. svr.Get("/test", [](const Request &, Response &res) {
  8474. res.set_content("ok", "text/plain");
  8475. });
  8476. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8477. auto se = detail::scope_exit([&] {
  8478. svr.stop();
  8479. t.join();
  8480. });
  8481. svr.wait_until_ready();
  8482. SSLClient cli(HOST, PORT);
  8483. cli.enable_server_certificate_verification(false);
  8484. cli.set_connection_timeout(30);
  8485. bool serial_checked = false;
  8486. cli.set_server_certificate_verifier([&](const VerifyContext &ctx) -> bool {
  8487. if (ctx.cert) {
  8488. std::string serial = ctx.serial();
  8489. EXPECT_FALSE(serial.empty());
  8490. // Serial should be a hex string
  8491. for (char c : serial) {
  8492. EXPECT_TRUE((c >= '0' && c <= '9') || (c >= 'A' && c <= 'F') ||
  8493. (c >= 'a' && c <= 'f'));
  8494. }
  8495. serial_checked = true;
  8496. }
  8497. return true;
  8498. });
  8499. auto res = cli.Get("/test");
  8500. ASSERT_TRUE(res);
  8501. EXPECT_TRUE(serial_checked);
  8502. }
  8503. TEST(SSLClientServerTest, ClientCAListLoadErrorRecorded) {
  8504. // Test 1: Valid CA file - no error should be recorded
  8505. {
  8506. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE,
  8507. CLIENT_CA_CERT_FILE);
  8508. ASSERT_TRUE(svr.is_valid());
  8509. // With valid setup, last_ssl_error should be 0
  8510. EXPECT_EQ(0, svr.ssl_last_error());
  8511. }
  8512. // Test 2: Invalid CA file content
  8513. // When SSL_load_client_CA_file fails, last_ssl_error_ should be set
  8514. {
  8515. // Create a temporary file with completely invalid content
  8516. const char *temp_invalid_ca = "./temp_invalid_ca_for_test.txt";
  8517. {
  8518. std::ofstream ofs(temp_invalid_ca);
  8519. ofs << "This is not a certificate file at all\n";
  8520. ofs << "Just plain text content\n";
  8521. }
  8522. // Create server with invalid CA file
  8523. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE, temp_invalid_ca);
  8524. // Clean up temporary file
  8525. std::remove(temp_invalid_ca);
  8526. // When there's an SSL error (from either SSL_CTX_load_verify_locations
  8527. // or SSL_load_client_CA_file), last_ssl_error_ should be non-zero
  8528. // Note: SSL_CTX_load_verify_locations typically fails first,
  8529. // but our error handling code path is still exercised
  8530. if (!svr.is_valid()) { EXPECT_NE(0, svr.ssl_last_error()); }
  8531. }
  8532. }
  8533. TEST(VerifyCallbackTest, VerifyContextFields) {
  8534. using namespace httplib::tls;
  8535. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  8536. ASSERT_TRUE(svr.is_valid());
  8537. svr.Get("/test", [](const Request &, Response &res) {
  8538. res.set_content("ok", "text/plain");
  8539. });
  8540. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8541. auto se = detail::scope_exit([&] {
  8542. svr.stop();
  8543. t.join();
  8544. });
  8545. svr.wait_until_ready();
  8546. SSLClient cli(HOST, PORT);
  8547. cli.enable_server_certificate_verification(false);
  8548. cli.set_connection_timeout(30);
  8549. int callback_count = 0;
  8550. bool saw_leaf_cert = false;
  8551. cli.set_server_certificate_verifier([&](const VerifyContext &ctx) -> bool {
  8552. if (ctx.cert) {
  8553. callback_count++;
  8554. // We should see at least one certificate (the leaf)
  8555. std::string cn = ctx.subject_cn();
  8556. if (!cn.empty()) { saw_leaf_cert = true; }
  8557. // Verify context fields are populated
  8558. EXPECT_NE(ctx.session, nullptr);
  8559. EXPECT_GE(ctx.depth, 0);
  8560. }
  8561. return true;
  8562. });
  8563. auto res = cli.Get("/test");
  8564. ASSERT_TRUE(res);
  8565. EXPECT_GT(callback_count, 0);
  8566. EXPECT_TRUE(saw_leaf_cert);
  8567. }
  8568. TEST(TlsVerifyErrorTest, GetVerifyErrorString) {
  8569. using httplib::tls::TlsError;
  8570. // Test that verify_error_to_string returns empty for success
  8571. std::string success_str = TlsError::verify_error_to_string(0);
  8572. EXPECT_TRUE(success_str.empty());
  8573. // Test that verify_error_to_string returns non-empty for error codes
  8574. // Using a common error code (certificate expired)
  8575. std::string error_str =
  8576. TlsError::verify_error_to_string(10); // X509_V_ERR_CERT_HAS_EXPIRED
  8577. EXPECT_FALSE(error_str.empty());
  8578. }
  8579. TEST(SessionVerifierTest, CertificateAccepted) {
  8580. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  8581. ASSERT_TRUE(svr.is_valid());
  8582. svr.Get("/test", [](const Request &, Response &res) {
  8583. res.set_content("ok", "text/plain");
  8584. });
  8585. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8586. auto se = detail::scope_exit([&] {
  8587. svr.stop();
  8588. t.join();
  8589. });
  8590. svr.wait_until_ready();
  8591. SSLClient cli(HOST, PORT);
  8592. cli.enable_server_certificate_verification(false);
  8593. cli.set_connection_timeout(30);
  8594. bool callback_called = false;
  8595. cli.set_session_verifier([&](tls::session_t session) -> SSLVerifierResponse {
  8596. EXPECT_NE(session, nullptr);
  8597. callback_called = true;
  8598. return SSLVerifierResponse::CertificateAccepted;
  8599. });
  8600. auto res = cli.Get("/test");
  8601. ASSERT_TRUE(res);
  8602. EXPECT_EQ(200, res->status);
  8603. EXPECT_TRUE(callback_called);
  8604. }
  8605. TEST(SessionVerifierTest, CertificateRejected) {
  8606. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  8607. ASSERT_TRUE(svr.is_valid());
  8608. svr.Get("/test", [](const Request &, Response &res) {
  8609. res.set_content("ok", "text/plain");
  8610. });
  8611. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8612. auto se = detail::scope_exit([&] {
  8613. svr.stop();
  8614. t.join();
  8615. });
  8616. svr.wait_until_ready();
  8617. SSLClient cli(HOST, PORT);
  8618. cli.enable_server_certificate_verification(false);
  8619. cli.set_connection_timeout(30);
  8620. bool callback_called = false;
  8621. cli.set_session_verifier([&](tls::session_t session) -> SSLVerifierResponse {
  8622. EXPECT_NE(session, nullptr);
  8623. callback_called = true;
  8624. return SSLVerifierResponse::CertificateRejected;
  8625. });
  8626. auto res = cli.Get("/test");
  8627. EXPECT_FALSE(res);
  8628. EXPECT_TRUE(callback_called);
  8629. }
  8630. TEST(SessionVerifierTest, NoDecisionFallsThrough) {
  8631. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  8632. ASSERT_TRUE(svr.is_valid());
  8633. svr.Get("/test", [](const Request &, Response &res) {
  8634. res.set_content("ok", "text/plain");
  8635. });
  8636. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8637. auto se = detail::scope_exit([&] {
  8638. svr.stop();
  8639. t.join();
  8640. });
  8641. svr.wait_until_ready();
  8642. // NoDecisionMade with verification disabled should succeed (no default check)
  8643. SSLClient cli(HOST, PORT);
  8644. cli.enable_server_certificate_verification(false);
  8645. cli.set_connection_timeout(30);
  8646. bool callback_called = false;
  8647. cli.set_session_verifier([&](tls::session_t session) -> SSLVerifierResponse {
  8648. EXPECT_NE(session, nullptr);
  8649. callback_called = true;
  8650. return SSLVerifierResponse::NoDecisionMade;
  8651. });
  8652. auto res = cli.Get("/test");
  8653. ASSERT_TRUE(res);
  8654. EXPECT_EQ(200, res->status);
  8655. EXPECT_TRUE(callback_called);
  8656. }
  8657. TEST(SessionVerifierTest, NoDecisionWithVerificationEnabled) {
  8658. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  8659. ASSERT_TRUE(svr.is_valid());
  8660. svr.Get("/test", [](const Request &, Response &res) {
  8661. res.set_content("ok", "text/plain");
  8662. });
  8663. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  8664. auto se = detail::scope_exit([&] {
  8665. svr.stop();
  8666. t.join();
  8667. });
  8668. svr.wait_until_ready();
  8669. // NoDecisionMade with verification enabled should fail (self-signed cert).
  8670. // Note: On MbedTLS, the handshake itself fails before reaching the verifier,
  8671. // so we only check that the request fails, not whether the callback was
  8672. // called.
  8673. SSLClient cli(HOST, PORT);
  8674. cli.enable_server_certificate_verification(true);
  8675. cli.set_connection_timeout(30);
  8676. cli.set_session_verifier([&](tls::session_t session) -> SSLVerifierResponse {
  8677. EXPECT_NE(session, nullptr);
  8678. return SSLVerifierResponse::NoDecisionMade;
  8679. });
  8680. auto res = cli.Get("/test");
  8681. EXPECT_FALSE(res);
  8682. }
  8683. TEST(SSLClientServerTest, ClientCAListFromPem) {
  8684. // Test SSL server using PemMemory constructor with client CA certificates
  8685. // Read PEM files
  8686. std::string server_cert_pem, server_key_pem, client_ca_pem;
  8687. read_file(SERVER_CERT_FILE, server_cert_pem);
  8688. read_file(SERVER_PRIVATE_KEY_FILE, server_key_pem);
  8689. read_file(CLIENT_CA_CERT_FILE, client_ca_pem);
  8690. // Create SSLServer with PemMemory constructor including client CA
  8691. SSLServer::PemMemory server_pem = {
  8692. server_cert_pem.c_str(),
  8693. server_cert_pem.size(),
  8694. server_key_pem.c_str(),
  8695. server_key_pem.size(),
  8696. client_ca_pem.c_str(),
  8697. client_ca_pem.size(),
  8698. nullptr // no password for server key
  8699. };
  8700. SSLServer svr(server_pem);
  8701. ASSERT_TRUE(svr.is_valid());
  8702. // No SSL error should be recorded for valid setup
  8703. EXPECT_EQ(0, svr.ssl_last_error());
  8704. // Set up server endpoints
  8705. svr.Get("/test-pem-ca", [&](const Request & /*req*/, Response &res) {
  8706. res.set_content("ok", "text/plain");
  8707. });
  8708. // Start server in a thread
  8709. auto server_thread = thread([&]() { svr.listen(HOST, PORT); });
  8710. svr.wait_until_ready();
  8711. // Connect with client certificate (using constructor with paths)
  8712. SSLClient cli(HOST, PORT, CLIENT_CERT_FILE, CLIENT_PRIVATE_KEY_FILE);
  8713. cli.enable_server_certificate_verification(false);
  8714. auto res = cli.Get("/test-pem-ca");
  8715. ASSERT_TRUE(res);
  8716. EXPECT_EQ(200, res->status);
  8717. EXPECT_EQ("ok", res->body);
  8718. svr.stop();
  8719. server_thread.join();
  8720. }
  8721. #endif
  8722. #ifdef _WIN32
  8723. TEST(CleanupTest, WSACleanup) {
  8724. int ret = WSACleanup();
  8725. ASSERT_EQ(0, ret);
  8726. }
  8727. #endif
  8728. #ifndef CPPHTTPLIB_SSL_ENABLED
  8729. TEST(NoSSLSupport, SimpleInterface) {
  8730. ASSERT_ANY_THROW(Client cli("https://yahoo.com"));
  8731. }
  8732. #endif
  8733. #ifndef CPPHTTPLIB_NO_EXCEPTIONS
  8734. TEST(InvalidScheme, SimpleInterface) {
  8735. ASSERT_ANY_THROW(Client cli("scheme://yahoo.com"));
  8736. }
  8737. #endif
  8738. TEST(NoScheme, SimpleInterface) {
  8739. Client cli("yahoo.com:80");
  8740. ASSERT_TRUE(cli.is_valid());
  8741. }
  8742. TEST(SendAPI, SimpleInterface_Online) {
  8743. Client cli("http://yahoo.com");
  8744. Request req;
  8745. req.method = "GET";
  8746. req.path = "/";
  8747. auto res = cli.send(req);
  8748. ASSERT_TRUE(res);
  8749. EXPECT_EQ(StatusCode::MovedPermanently_301, res->status);
  8750. }
  8751. TEST(SendAPI, WithParamsInRequest) {
  8752. Server svr;
  8753. svr.Get("/", [&](const Request &req, Response & /*res*/) {
  8754. EXPECT_TRUE(req.has_param("test"));
  8755. EXPECT_EQ("test_value", req.get_param_value("test"));
  8756. });
  8757. auto t = std::thread([&]() { svr.listen(HOST, PORT); });
  8758. auto se = detail::scope_exit([&] {
  8759. svr.stop();
  8760. t.join();
  8761. ASSERT_FALSE(svr.is_running());
  8762. });
  8763. svr.wait_until_ready();
  8764. Client cli(HOST, PORT);
  8765. {
  8766. Request req;
  8767. req.method = "GET";
  8768. req.path = "/";
  8769. req.params.emplace("test", "test_value");
  8770. auto res = cli.send(req);
  8771. ASSERT_TRUE(res);
  8772. }
  8773. {
  8774. auto res = cli.Get("/", {{"test", "test_value"}}, Headers{});
  8775. ASSERT_TRUE(res);
  8776. }
  8777. }
  8778. TEST(ClientImplMethods, GetSocketTest) {
  8779. httplib::Server svr;
  8780. svr.Get("/", [&](const httplib::Request & /*req*/, httplib::Response &res) {
  8781. res.status = StatusCode::OK_200;
  8782. });
  8783. auto port = svr.bind_to_any_port("127.0.0.1");
  8784. auto thread = std::thread([&]() { svr.listen_after_bind(); });
  8785. auto se = detail::scope_exit([&] {
  8786. svr.stop();
  8787. thread.join();
  8788. ASSERT_FALSE(svr.is_running());
  8789. });
  8790. svr.wait_until_ready();
  8791. {
  8792. httplib::Client cli("127.0.0.1", port);
  8793. cli.set_keep_alive(true);
  8794. // Use the behavior of cpp-httplib of opening the connection
  8795. // only when the first request happens. If that changes,
  8796. // this test would be obsolete.
  8797. EXPECT_EQ(cli.socket(), INVALID_SOCKET);
  8798. // This also implicitly tests the server. But other tests would fail much
  8799. // earlier than this one to be considered.
  8800. auto res = cli.Get("/");
  8801. ASSERT_TRUE(res);
  8802. EXPECT_EQ(StatusCode::OK_200, res->status);
  8803. ASSERT_TRUE(cli.socket() != INVALID_SOCKET);
  8804. }
  8805. }
  8806. // Disabled due to out-of-memory problem on GitHub Actions
  8807. #ifdef _WIN64
  8808. TEST(ServerLargeContentTest, DISABLED_SendLargeContent) {
  8809. // allocate content size larger than 2GB in memory
  8810. const size_t content_size = 2LL * 1024LL * 1024LL * 1024LL + 1LL;
  8811. char *content = (char *)malloc(content_size);
  8812. ASSERT_TRUE(content);
  8813. Server svr;
  8814. svr.Get("/foo",
  8815. [=](const httplib::Request & /*req*/, httplib::Response &res) {
  8816. res.set_content(content, content_size, "application/octet-stream");
  8817. });
  8818. auto listen_thread = std::thread([&svr]() { svr.listen(HOST, PORT); });
  8819. auto se = detail::scope_exit([&] {
  8820. svr.stop();
  8821. listen_thread.join();
  8822. if (content) free(content);
  8823. ASSERT_FALSE(svr.is_running());
  8824. });
  8825. svr.wait_until_ready();
  8826. Client cli(HOST, PORT);
  8827. auto res = cli.Get("/foo");
  8828. ASSERT_TRUE(res);
  8829. EXPECT_EQ(StatusCode::OK_200, res->status);
  8830. EXPECT_EQ(content_size, res->body.length());
  8831. }
  8832. #endif
  8833. #ifdef CPPHTTPLIB_SSL_ENABLED
  8834. TEST(YahooRedirectTest2, SimpleInterface_Online) {
  8835. Client cli("http://yahoo.com");
  8836. auto res = cli.Get("/");
  8837. ASSERT_TRUE(res);
  8838. EXPECT_EQ(StatusCode::MovedPermanently_301, res->status);
  8839. cli.set_follow_location(true);
  8840. res = cli.Get("/");
  8841. ASSERT_TRUE(res);
  8842. EXPECT_EQ(StatusCode::OK_200, res->status);
  8843. EXPECT_EQ("https://www.yahoo.com/", res->location);
  8844. }
  8845. TEST(YahooRedirectTest3, SimpleInterface_Online) {
  8846. Client cli("https://yahoo.com");
  8847. auto res = cli.Get("/");
  8848. ASSERT_TRUE(res);
  8849. EXPECT_EQ(StatusCode::MovedPermanently_301, res->status);
  8850. cli.set_follow_location(true);
  8851. res = cli.Get("/");
  8852. ASSERT_TRUE(res);
  8853. EXPECT_EQ(StatusCode::OK_200, res->status);
  8854. EXPECT_EQ("https://www.yahoo.com/", res->location);
  8855. }
  8856. TEST(YahooRedirectTest3, NewResultInterface_Online) {
  8857. Client cli("https://yahoo.com");
  8858. auto res = cli.Get("/");
  8859. ASSERT_TRUE(res);
  8860. ASSERT_FALSE(!res);
  8861. ASSERT_TRUE(res);
  8862. ASSERT_FALSE(res == nullptr);
  8863. ASSERT_TRUE(res != nullptr);
  8864. EXPECT_EQ(Error::Success, res.error());
  8865. EXPECT_EQ(StatusCode::MovedPermanently_301, res.value().status);
  8866. EXPECT_EQ(StatusCode::MovedPermanently_301, (*res).status);
  8867. EXPECT_EQ(StatusCode::MovedPermanently_301, res->status);
  8868. cli.set_follow_location(true);
  8869. res = cli.Get("/");
  8870. ASSERT_TRUE(res);
  8871. EXPECT_EQ(Error::Success, res.error());
  8872. EXPECT_EQ(StatusCode::OK_200, res.value().status);
  8873. EXPECT_EQ(StatusCode::OK_200, (*res).status);
  8874. EXPECT_EQ(StatusCode::OK_200, res->status);
  8875. EXPECT_EQ("https://www.yahoo.com/", res->location);
  8876. }
  8877. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  8878. TEST(DecodeWithChunkedEncoding, BrotliEncoding_Online) {
  8879. Client cli("https://cdnjs.cloudflare.com");
  8880. auto res =
  8881. cli.Get("/ajax/libs/jquery/3.5.1/jquery.js", {{"Accept-Encoding", "br"}});
  8882. ASSERT_TRUE(res);
  8883. EXPECT_EQ(StatusCode::OK_200, res->status);
  8884. EXPECT_EQ(287630U, res->body.size());
  8885. EXPECT_EQ("application/javascript; charset=utf-8",
  8886. res->get_header_value("Content-Type"));
  8887. }
  8888. #endif
  8889. // Previously "https://nghttp2.org" "/httpbin/redirect-to"
  8890. #undef REDIR_HOST // Silence compiler warning
  8891. #define REDIR_HOST "https://httpbingo.org"
  8892. TEST(HttpsToHttpRedirectTest, SimpleInterface_Online) {
  8893. Client cli(REDIR_HOST);
  8894. cli.set_follow_location(true);
  8895. auto res =
  8896. cli.Get(REDIR_PATH "?url=http%3A%2F%2Fexample.com&status_code=302");
  8897. ASSERT_TRUE(res);
  8898. EXPECT_EQ(StatusCode::OK_200, res->status);
  8899. }
  8900. TEST(HttpsToHttpRedirectTest2, SimpleInterface_Online) {
  8901. Client cli(REDIR_HOST);
  8902. cli.set_follow_location(true);
  8903. Params params;
  8904. params.emplace("url", "http://example.com");
  8905. params.emplace("status_code", "302");
  8906. auto res = cli.Get(REDIR_PATH, params, Headers{});
  8907. ASSERT_TRUE(res);
  8908. EXPECT_EQ(StatusCode::OK_200, res->status);
  8909. }
  8910. TEST(HttpsToHttpRedirectTest3, SimpleInterface_Online) {
  8911. Client cli(REDIR_HOST);
  8912. cli.set_follow_location(true);
  8913. Params params;
  8914. params.emplace("url", "http://example.com");
  8915. auto res = cli.Get(REDIR_PATH "?status_code=302", params, Headers{});
  8916. ASSERT_TRUE(res);
  8917. EXPECT_EQ(StatusCode::OK_200, res->status);
  8918. }
  8919. TEST(HttpToHttpsRedirectTest, CertFile) {
  8920. auto ssl_port = PORT + 1;
  8921. Server svr;
  8922. ASSERT_TRUE(svr.is_valid());
  8923. svr.Get("/index", [&](const Request &, Response &res) {
  8924. res.set_redirect("https://127.0.0.1:" + std::to_string(ssl_port) +
  8925. "/index");
  8926. svr.stop();
  8927. });
  8928. SSLServer ssl_svr(SERVER_CERT2_FILE, SERVER_PRIVATE_KEY_FILE);
  8929. ASSERT_TRUE(ssl_svr.is_valid());
  8930. ssl_svr.Get("/index", [&](const Request &, Response &res) {
  8931. res.set_content("test", "text/plain");
  8932. ssl_svr.stop();
  8933. });
  8934. thread t = thread([&]() { ASSERT_TRUE(svr.listen("127.0.0.1", PORT)); });
  8935. thread t2 =
  8936. thread([&]() { ASSERT_TRUE(ssl_svr.listen("127.0.0.1", ssl_port)); });
  8937. auto se = detail::scope_exit([&] {
  8938. t2.join();
  8939. t.join();
  8940. ASSERT_FALSE(svr.is_running());
  8941. });
  8942. svr.wait_until_ready();
  8943. ssl_svr.wait_until_ready();
  8944. Client cli("127.0.0.1", PORT);
  8945. cli.set_ca_cert_path(SERVER_CERT2_FILE);
  8946. cli.enable_server_certificate_verification(true);
  8947. cli.set_follow_location(true);
  8948. cli.set_connection_timeout(30);
  8949. auto res = cli.Get("/index");
  8950. ASSERT_TRUE(res);
  8951. ASSERT_EQ(StatusCode::OK_200, res->status);
  8952. }
  8953. TEST(SSLClientRedirectTest, CertFile) {
  8954. auto ssl_port = PORT + 1;
  8955. SSLServer ssl_svr1(SERVER_CERT2_FILE, SERVER_PRIVATE_KEY_FILE);
  8956. ASSERT_TRUE(ssl_svr1.is_valid());
  8957. ssl_svr1.Get("/index", [&](const Request &, Response &res) {
  8958. res.set_redirect("https://127.0.0.1:" + std::to_string(ssl_port) +
  8959. "/index");
  8960. ssl_svr1.stop();
  8961. });
  8962. SSLServer ssl_svr2(SERVER_CERT2_FILE, SERVER_PRIVATE_KEY_FILE);
  8963. ASSERT_TRUE(ssl_svr2.is_valid());
  8964. ssl_svr2.Get("/index", [&](const Request &, Response &res) {
  8965. res.set_content("test", "text/plain");
  8966. ssl_svr2.stop();
  8967. });
  8968. thread t = thread([&]() { ASSERT_TRUE(ssl_svr1.listen("127.0.0.1", PORT)); });
  8969. thread t2 =
  8970. thread([&]() { ASSERT_TRUE(ssl_svr2.listen("127.0.0.1", ssl_port)); });
  8971. auto se = detail::scope_exit([&] {
  8972. t2.join();
  8973. t.join();
  8974. ASSERT_FALSE(ssl_svr1.is_running());
  8975. });
  8976. ssl_svr1.wait_until_ready();
  8977. ssl_svr2.wait_until_ready();
  8978. SSLClient cli("127.0.0.1", PORT);
  8979. std::string cert;
  8980. read_file(SERVER_CERT2_FILE, cert);
  8981. cli.load_ca_cert_store(cert.c_str(), cert.size());
  8982. cli.enable_server_certificate_verification(true);
  8983. cli.set_follow_location(true);
  8984. cli.set_connection_timeout(30);
  8985. auto res = cli.Get("/index");
  8986. ASSERT_TRUE(res);
  8987. ASSERT_EQ(StatusCode::OK_200, res->status);
  8988. }
  8989. #endif
  8990. #ifdef CPPHTTPLIB_SSL_ENABLED
  8991. // Test that set_ca_cert_store() skips system certs (consistent with
  8992. // set_ca_cert_path behavior). When a custom cert store is set, only those certs
  8993. // should be trusted - system certs should NOT be loaded.
  8994. TEST(SSLClientTest, SetCaCertStoreSkipsSystemCerts_Online) {
  8995. // Load a specific cert that is NOT a system CA cert
  8996. std::string cert;
  8997. read_file(SERVER_CERT2_FILE, cert);
  8998. SSLClient cli("google.com");
  8999. cli.load_ca_cert_store(cert.c_str(), cert.size());
  9000. cli.enable_server_certificate_verification(true);
  9001. // This should FAIL because:
  9002. // 1. We loaded only SERVER_CERT2 (a test cert, not a CA for google.com)
  9003. // 2. System certs should NOT be loaded when custom store is set
  9004. // If system certs WERE loaded, this would succeed
  9005. auto res = cli.Get("/");
  9006. ASSERT_FALSE(res);
  9007. EXPECT_EQ(Error::SSLServerVerification, res.error());
  9008. }
  9009. TEST(MultipartFormDataTest, LargeData) {
  9010. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  9011. svr.Post("/post", [&](const Request &req, Response & /*res*/,
  9012. const ContentReader &content_reader) {
  9013. if (req.is_multipart_form_data()) {
  9014. std::vector<FormData> items;
  9015. content_reader(
  9016. [&](const FormData &file) {
  9017. items.push_back(file);
  9018. return true;
  9019. },
  9020. [&](const char *data, size_t data_length) {
  9021. items.back().content.append(data, data_length);
  9022. return true;
  9023. });
  9024. EXPECT_TRUE(std::string(items[0].name) == "document");
  9025. EXPECT_EQ(size_t(1024 * 1024 * 2), items[0].content.size());
  9026. EXPECT_TRUE(items[0].filename == "2MB_data");
  9027. EXPECT_TRUE(items[0].content_type == "application/octet-stream");
  9028. EXPECT_TRUE(items[1].name == "hello");
  9029. EXPECT_TRUE(items[1].content == "world");
  9030. EXPECT_TRUE(items[1].filename == "");
  9031. EXPECT_TRUE(items[1].content_type == "");
  9032. } else {
  9033. std::string body;
  9034. content_reader([&](const char *data, size_t data_length) {
  9035. body.append(data, data_length);
  9036. return true;
  9037. });
  9038. }
  9039. });
  9040. auto port = svr.bind_to_any_port(HOST);
  9041. auto t = std::thread([&]() { svr.listen_after_bind(); });
  9042. auto se = detail::scope_exit([&] {
  9043. svr.stop();
  9044. t.join();
  9045. ASSERT_FALSE(svr.is_running());
  9046. });
  9047. svr.wait_until_ready();
  9048. {
  9049. std::string data(1024 * 1024 * 2, '.');
  9050. std::stringstream buffer;
  9051. buffer << data;
  9052. SSLClient cli(HOST, port);
  9053. cli.enable_server_certificate_verification(false);
  9054. UploadFormDataItems items{
  9055. {"document", buffer.str(), "2MB_data", "application/octet-stream"},
  9056. {"hello", "world", "", ""},
  9057. };
  9058. auto res = cli.Post("/post", items);
  9059. ASSERT_TRUE(res);
  9060. ASSERT_EQ(StatusCode::OK_200, res->status);
  9061. }
  9062. }
  9063. TEST(MultipartFormDataTest, DataProviderItems) {
  9064. std::random_device seed_gen;
  9065. std::mt19937 random(seed_gen());
  9066. std::string rand1;
  9067. rand1.resize(1000);
  9068. std::generate(rand1.begin(), rand1.end(), [&]() { return random(); });
  9069. std::string rand2;
  9070. rand2.resize(3000);
  9071. std::generate(rand2.begin(), rand2.end(), [&]() { return random(); });
  9072. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  9073. svr.Post("/post-none", [&](const Request &req, Response & /*res*/,
  9074. const ContentReader &content_reader) {
  9075. ASSERT_FALSE(req.is_multipart_form_data());
  9076. std::string body;
  9077. content_reader([&](const char *data, size_t data_length) {
  9078. body.append(data, data_length);
  9079. return true;
  9080. });
  9081. EXPECT_EQ(body, "");
  9082. });
  9083. svr.Post("/post-items", [&](const Request &req, Response & /*res*/,
  9084. const ContentReader &content_reader) {
  9085. ASSERT_TRUE(req.is_multipart_form_data());
  9086. std::vector<FormData> items;
  9087. content_reader(
  9088. [&](const FormData &file) {
  9089. items.push_back(file);
  9090. return true;
  9091. },
  9092. [&](const char *data, size_t data_length) {
  9093. items.back().content.append(data, data_length);
  9094. return true;
  9095. });
  9096. ASSERT_TRUE(items.size() == 2);
  9097. EXPECT_EQ(std::string(items[0].name), "name1");
  9098. EXPECT_EQ(items[0].content, "Testing123");
  9099. EXPECT_EQ(items[0].filename, "filename1");
  9100. EXPECT_EQ(items[0].content_type, "application/octet-stream");
  9101. EXPECT_EQ(items[1].name, "name2");
  9102. EXPECT_EQ(items[1].content, "Testing456");
  9103. EXPECT_EQ(items[1].filename, "");
  9104. EXPECT_EQ(items[1].content_type, "");
  9105. });
  9106. svr.Post("/post-providers", [&](const Request &req, Response & /*res*/,
  9107. const ContentReader &content_reader) {
  9108. ASSERT_TRUE(req.is_multipart_form_data());
  9109. std::vector<FormData> items;
  9110. content_reader(
  9111. [&](const FormData &file) {
  9112. items.push_back(file);
  9113. return true;
  9114. },
  9115. [&](const char *data, size_t data_length) {
  9116. items.back().content.append(data, data_length);
  9117. return true;
  9118. });
  9119. ASSERT_TRUE(items.size() == 2);
  9120. EXPECT_EQ(items[0].name, "name3");
  9121. EXPECT_EQ(items[0].content, rand1);
  9122. EXPECT_EQ(items[0].filename, "filename3");
  9123. EXPECT_EQ(items[0].content_type, "");
  9124. EXPECT_EQ(items[1].name, "name4");
  9125. EXPECT_EQ(items[1].content, rand2);
  9126. EXPECT_EQ(items[1].filename, "filename4");
  9127. EXPECT_EQ(items[1].content_type, "");
  9128. });
  9129. svr.Post("/post-both", [&](const Request &req, Response & /*res*/,
  9130. const ContentReader &content_reader) {
  9131. ASSERT_TRUE(req.is_multipart_form_data());
  9132. std::vector<FormData> items;
  9133. content_reader(
  9134. [&](const FormData &file) {
  9135. items.push_back(file);
  9136. return true;
  9137. },
  9138. [&](const char *data, size_t data_length) {
  9139. items.back().content.append(data, data_length);
  9140. return true;
  9141. });
  9142. ASSERT_TRUE(items.size() == 4);
  9143. EXPECT_EQ(std::string(items[0].name), "name1");
  9144. EXPECT_EQ(items[0].content, "Testing123");
  9145. EXPECT_EQ(items[0].filename, "filename1");
  9146. EXPECT_EQ(items[0].content_type, "application/octet-stream");
  9147. EXPECT_EQ(items[1].name, "name2");
  9148. EXPECT_EQ(items[1].content, "Testing456");
  9149. EXPECT_EQ(items[1].filename, "");
  9150. EXPECT_EQ(items[1].content_type, "");
  9151. EXPECT_EQ(items[2].name, "name3");
  9152. EXPECT_EQ(items[2].content, rand1);
  9153. EXPECT_EQ(items[2].filename, "filename3");
  9154. EXPECT_EQ(items[2].content_type, "");
  9155. EXPECT_EQ(items[3].name, "name4");
  9156. EXPECT_EQ(items[3].content, rand2);
  9157. EXPECT_EQ(items[3].filename, "filename4");
  9158. EXPECT_EQ(items[3].content_type, "");
  9159. });
  9160. auto port = svr.bind_to_any_port("localhost");
  9161. auto t = std::thread([&]() { svr.listen_after_bind(); });
  9162. auto se = detail::scope_exit([&] {
  9163. svr.stop();
  9164. t.join();
  9165. ASSERT_FALSE(svr.is_running());
  9166. });
  9167. svr.wait_until_ready();
  9168. {
  9169. SSLClient cli("localhost", port);
  9170. cli.enable_server_certificate_verification(false);
  9171. UploadFormDataItems items{
  9172. {"name1", "Testing123", "filename1", "application/octet-stream"},
  9173. {"name2", "Testing456", "", ""}, // not a file
  9174. };
  9175. {
  9176. auto res = cli.Post("/post-none", {}, {}, {});
  9177. ASSERT_TRUE(res);
  9178. ASSERT_EQ(StatusCode::OK_200, res->status);
  9179. }
  9180. FormDataProviderItems providers;
  9181. {
  9182. auto res =
  9183. cli.Post("/post-items", {}, items, providers); // empty providers
  9184. ASSERT_TRUE(res);
  9185. ASSERT_EQ(StatusCode::OK_200, res->status);
  9186. }
  9187. providers.push_back({"name3",
  9188. [&](size_t offset, httplib::DataSink &sink) -> bool {
  9189. // test the offset is given correctly at each step
  9190. if (!offset)
  9191. sink.os.write(rand1.data(), 30);
  9192. else if (offset == 30)
  9193. sink.os.write(rand1.data() + 30, 300);
  9194. else if (offset == 330)
  9195. sink.os.write(rand1.data() + 330, 670);
  9196. else if (offset == rand1.size())
  9197. sink.done();
  9198. return true;
  9199. },
  9200. "filename3",
  9201. {}});
  9202. providers.push_back({"name4",
  9203. [&](size_t offset, httplib::DataSink &sink) -> bool {
  9204. // test the offset is given correctly at each step
  9205. if (!offset)
  9206. sink.os.write(rand2.data(), 2000);
  9207. else if (offset == 2000)
  9208. sink.os.write(rand2.data() + 2000, 1);
  9209. else if (offset == 2001)
  9210. sink.os.write(rand2.data() + 2001, 999);
  9211. else if (offset == rand2.size())
  9212. sink.done();
  9213. return true;
  9214. },
  9215. "filename4",
  9216. {}});
  9217. {
  9218. auto res = cli.Post("/post-providers", {}, {}, providers);
  9219. ASSERT_TRUE(res);
  9220. ASSERT_EQ(StatusCode::OK_200, res->status);
  9221. }
  9222. {
  9223. auto res = cli.Post("/post-both", {}, items, providers);
  9224. ASSERT_TRUE(res);
  9225. ASSERT_EQ(StatusCode::OK_200, res->status);
  9226. }
  9227. }
  9228. }
  9229. TEST(MultipartFormDataTest, BadHeader) {
  9230. Server svr;
  9231. svr.Post("/post", [&](const Request & /*req*/, Response &res) {
  9232. res.set_content("ok", "text/plain");
  9233. });
  9234. thread t = thread([&] { svr.listen(HOST, PORT); });
  9235. auto se = detail::scope_exit([&] {
  9236. svr.stop();
  9237. t.join();
  9238. ASSERT_FALSE(svr.is_running());
  9239. });
  9240. svr.wait_until_ready();
  9241. const std::string body =
  9242. "This is the preamble. It is to be ignored, though it\r\n"
  9243. "is a handy place for composition agents to include an\r\n"
  9244. "explanatory note to non-MIME conformant readers.\r\n"
  9245. "\r\n"
  9246. "\r\n"
  9247. "--simple boundary\r\n"
  9248. "Content-Disposition: form-data; name=\"field1\"\r\n"
  9249. ": BAD...\r\n"
  9250. "\r\n"
  9251. "value1\r\n"
  9252. "--simple boundary\r\n"
  9253. "Content-Disposition: form-data; name=\"field2\"; "
  9254. "filename=\"example.txt\"\r\n"
  9255. "\r\n"
  9256. "value2\r\n"
  9257. "--simple boundary--\r\n"
  9258. "This is the epilogue. It is also to be ignored.\r\n";
  9259. std::string content_type =
  9260. R"(multipart/form-data; boundary="simple boundary")";
  9261. Client cli(HOST, PORT);
  9262. auto res = cli.Post("/post", body, content_type.c_str());
  9263. ASSERT_TRUE(res);
  9264. EXPECT_EQ(StatusCode::BadRequest_400, res->status);
  9265. }
  9266. TEST(MultipartFormDataTest, WithPreamble) {
  9267. Server svr;
  9268. svr.Post("/post", [&](const Request & /*req*/, Response &res) {
  9269. res.set_content("ok", "text/plain");
  9270. });
  9271. thread t = thread([&] { svr.listen(HOST, PORT); });
  9272. auto se = detail::scope_exit([&] {
  9273. svr.stop();
  9274. t.join();
  9275. ASSERT_FALSE(svr.is_running());
  9276. });
  9277. svr.wait_until_ready();
  9278. const std::string body =
  9279. "This is the preamble. It is to be ignored, though it\r\n"
  9280. "is a handy place for composition agents to include an\r\n"
  9281. "explanatory note to non-MIME conformant readers.\r\n"
  9282. "\r\n"
  9283. "\r\n"
  9284. "--simple boundary\r\n"
  9285. "Content-Disposition: form-data; name=\"field1\"\r\n"
  9286. "\r\n"
  9287. "value1\r\n"
  9288. "--simple boundary\r\n"
  9289. "Content-Disposition: form-data; name=\"field2\"; "
  9290. "filename=\"example.txt\"\r\n"
  9291. "\r\n"
  9292. "value2\r\n"
  9293. "--simple boundary--\r\n"
  9294. "This is the epilogue. It is also to be ignored.\r\n";
  9295. std::string content_type =
  9296. R"(multipart/form-data; boundary="simple boundary")";
  9297. Client cli(HOST, PORT);
  9298. auto res = cli.Post("/post", body, content_type.c_str());
  9299. ASSERT_TRUE(res);
  9300. EXPECT_EQ(StatusCode::OK_200, res->status);
  9301. }
  9302. TEST(MultipartFormDataTest, PostCustomBoundary) {
  9303. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  9304. svr.Post("/post_customboundary", [&](const Request &req, Response & /*res*/,
  9305. const ContentReader &content_reader) {
  9306. if (req.is_multipart_form_data()) {
  9307. std::vector<FormData> items;
  9308. content_reader(
  9309. [&](const FormData &file) {
  9310. items.push_back(file);
  9311. return true;
  9312. },
  9313. [&](const char *data, size_t data_length) {
  9314. items.back().content.append(data, data_length);
  9315. return true;
  9316. });
  9317. EXPECT_TRUE(std::string(items[0].name) == "document");
  9318. EXPECT_EQ(size_t(1024 * 1024 * 2), items[0].content.size());
  9319. EXPECT_TRUE(items[0].filename == "2MB_data");
  9320. EXPECT_TRUE(items[0].content_type == "application/octet-stream");
  9321. EXPECT_TRUE(items[1].name == "hello");
  9322. EXPECT_TRUE(items[1].content == "world");
  9323. EXPECT_TRUE(items[1].filename == "");
  9324. EXPECT_TRUE(items[1].content_type == "");
  9325. } else {
  9326. std::string body;
  9327. content_reader([&](const char *data, size_t data_length) {
  9328. body.append(data, data_length);
  9329. return true;
  9330. });
  9331. }
  9332. });
  9333. auto port = svr.bind_to_any_port("localhost");
  9334. auto t = std::thread([&]() { svr.listen_after_bind(); });
  9335. auto se = detail::scope_exit([&] {
  9336. svr.stop();
  9337. t.join();
  9338. ASSERT_FALSE(svr.is_running());
  9339. });
  9340. svr.wait_until_ready();
  9341. {
  9342. std::string data(1024 * 1024 * 2, '.');
  9343. std::stringstream buffer;
  9344. buffer << data;
  9345. SSLClient cli("localhost", port);
  9346. cli.enable_server_certificate_verification(false);
  9347. UploadFormDataItems items{
  9348. {"document", buffer.str(), "2MB_data", "application/octet-stream"},
  9349. {"hello", "world", "", ""},
  9350. };
  9351. auto res = cli.Post("/post_customboundary", {}, items, "abc-abc");
  9352. ASSERT_TRUE(res);
  9353. ASSERT_EQ(StatusCode::OK_200, res->status);
  9354. }
  9355. }
  9356. TEST(MultipartFormDataTest, PostInvalidBoundaryChars) {
  9357. std::string data(1024 * 1024 * 2, '&');
  9358. std::stringstream buffer;
  9359. buffer << data;
  9360. Client cli("https://localhost:8080");
  9361. UploadFormDataItems items{
  9362. {"document", buffer.str(), "2MB_data", "application/octet-stream"},
  9363. {"hello", "world", "", ""},
  9364. };
  9365. for (const char &c : " \t\r\n") {
  9366. auto res =
  9367. cli.Post("/invalid_boundary", {}, items, string("abc123").append(1, c));
  9368. ASSERT_EQ(Error::UnsupportedMultipartBoundaryChars, res.error());
  9369. ASSERT_FALSE(res);
  9370. }
  9371. }
  9372. TEST(MultipartFormDataTest, PutFormData) {
  9373. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  9374. svr.Put("/put", [&](const Request &req, const Response & /*res*/,
  9375. const ContentReader &content_reader) {
  9376. if (req.is_multipart_form_data()) {
  9377. std::vector<FormData> items;
  9378. content_reader(
  9379. [&](const FormData &file) {
  9380. items.push_back(file);
  9381. return true;
  9382. },
  9383. [&](const char *data, size_t data_length) {
  9384. items.back().content.append(data, data_length);
  9385. return true;
  9386. });
  9387. EXPECT_TRUE(std::string(items[0].name) == "document");
  9388. EXPECT_EQ(size_t(1024 * 1024 * 2), items[0].content.size());
  9389. EXPECT_TRUE(items[0].filename == "2MB_data");
  9390. EXPECT_TRUE(items[0].content_type == "application/octet-stream");
  9391. EXPECT_TRUE(items[1].name == "hello");
  9392. EXPECT_TRUE(items[1].content == "world");
  9393. EXPECT_TRUE(items[1].filename == "");
  9394. EXPECT_TRUE(items[1].content_type == "");
  9395. } else {
  9396. std::string body;
  9397. content_reader([&](const char *data, size_t data_length) {
  9398. body.append(data, data_length);
  9399. return true;
  9400. });
  9401. }
  9402. });
  9403. auto port = svr.bind_to_any_port("localhost");
  9404. auto t = std::thread([&]() { svr.listen_after_bind(); });
  9405. auto se = detail::scope_exit([&] {
  9406. svr.stop();
  9407. t.join();
  9408. ASSERT_FALSE(svr.is_running());
  9409. });
  9410. svr.wait_until_ready();
  9411. {
  9412. std::string data(1024 * 1024 * 2, '&');
  9413. std::stringstream buffer;
  9414. buffer << data;
  9415. SSLClient cli("localhost", port);
  9416. cli.enable_server_certificate_verification(false);
  9417. UploadFormDataItems items{
  9418. {"document", buffer.str(), "2MB_data", "application/octet-stream"},
  9419. {"hello", "world", "", ""},
  9420. };
  9421. auto res = cli.Put("/put", items);
  9422. ASSERT_TRUE(res);
  9423. ASSERT_EQ(StatusCode::OK_200, res->status);
  9424. }
  9425. }
  9426. TEST(MultipartFormDataTest, PutFormDataCustomBoundary) {
  9427. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  9428. svr.Put("/put_customboundary",
  9429. [&](const Request &req, const Response & /*res*/,
  9430. const ContentReader &content_reader) {
  9431. if (req.is_multipart_form_data()) {
  9432. std::vector<FormData> items;
  9433. content_reader(
  9434. [&](const FormData &file) {
  9435. items.push_back(file);
  9436. return true;
  9437. },
  9438. [&](const char *data, size_t data_length) {
  9439. items.back().content.append(data, data_length);
  9440. return true;
  9441. });
  9442. EXPECT_TRUE(std::string(items[0].name) == "document");
  9443. EXPECT_EQ(size_t(1024 * 1024 * 2), items[0].content.size());
  9444. EXPECT_TRUE(items[0].filename == "2MB_data");
  9445. EXPECT_TRUE(items[0].content_type == "application/octet-stream");
  9446. EXPECT_TRUE(items[1].name == "hello");
  9447. EXPECT_TRUE(items[1].content == "world");
  9448. EXPECT_TRUE(items[1].filename == "");
  9449. EXPECT_TRUE(items[1].content_type == "");
  9450. } else {
  9451. std::string body;
  9452. content_reader([&](const char *data, size_t data_length) {
  9453. body.append(data, data_length);
  9454. return true;
  9455. });
  9456. }
  9457. });
  9458. auto port = svr.bind_to_any_port("localhost");
  9459. auto t = std::thread([&]() { svr.listen_after_bind(); });
  9460. auto se = detail::scope_exit([&] {
  9461. svr.stop();
  9462. t.join();
  9463. ASSERT_FALSE(svr.is_running());
  9464. });
  9465. svr.wait_until_ready();
  9466. {
  9467. std::string data(1024 * 1024 * 2, '&');
  9468. std::stringstream buffer;
  9469. buffer << data;
  9470. SSLClient cli("localhost", port);
  9471. cli.enable_server_certificate_verification(false);
  9472. UploadFormDataItems items{
  9473. {"document", buffer.str(), "2MB_data", "application/octet-stream"},
  9474. {"hello", "world", "", ""},
  9475. };
  9476. auto res = cli.Put("/put_customboundary", {}, items, "abc-abc_");
  9477. ASSERT_TRUE(res);
  9478. ASSERT_EQ(StatusCode::OK_200, res->status);
  9479. }
  9480. }
  9481. TEST(MultipartFormDataTest, PutInvalidBoundaryChars) {
  9482. std::string data(1024 * 1024 * 2, '&');
  9483. std::stringstream buffer;
  9484. buffer << data;
  9485. Client cli("https://localhost:8080");
  9486. cli.enable_server_certificate_verification(false);
  9487. UploadFormDataItems items{
  9488. {"document", buffer.str(), "2MB_data", "application/octet-stream"},
  9489. {"hello", "world", "", ""},
  9490. };
  9491. for (const char &c : " \t\r\n") {
  9492. auto res = cli.Put("/put", {}, items, string("abc123").append(1, c));
  9493. ASSERT_EQ(Error::UnsupportedMultipartBoundaryChars, res.error());
  9494. ASSERT_FALSE(res);
  9495. }
  9496. }
  9497. TEST(MultipartFormDataTest, AlternateFilename) {
  9498. auto handled = false;
  9499. Server svr;
  9500. svr.Post("/test", [&](const Request &req, Response &res) {
  9501. ASSERT_EQ(2u, req.form.files.size());
  9502. ASSERT_EQ(1u, req.form.fields.size());
  9503. // Test files
  9504. const auto &file1 = req.form.get_file("file1");
  9505. ASSERT_EQ("file1", file1.name);
  9506. ASSERT_EQ("A.txt", file1.filename);
  9507. ASSERT_EQ("text/plain", file1.content_type);
  9508. ASSERT_EQ("Content of a.txt.\r\n", file1.content);
  9509. const auto &file2 = req.form.get_file("file2");
  9510. ASSERT_EQ("file2", file2.name);
  9511. ASSERT_EQ("a.html", file2.filename);
  9512. ASSERT_EQ("text/html", file2.content_type);
  9513. ASSERT_EQ("<!DOCTYPE html><title>Content of a.html.</title>\r\n",
  9514. file2.content);
  9515. // Test text field
  9516. const auto &text = req.form.get_field("text");
  9517. ASSERT_EQ("text default", text);
  9518. res.set_content("ok", "text/plain");
  9519. handled = true;
  9520. });
  9521. thread t = thread([&] { svr.listen(HOST, PORT); });
  9522. auto se = detail::scope_exit([&] {
  9523. svr.stop();
  9524. t.join();
  9525. ASSERT_FALSE(svr.is_running());
  9526. ASSERT_TRUE(handled);
  9527. });
  9528. svr.wait_until_ready();
  9529. auto req = "POST /test HTTP/1.1\r\n"
  9530. "Content-Type: multipart/form-data;boundary=--------\r\n"
  9531. "Content-Length: 399\r\n"
  9532. "\r\n"
  9533. "----------\r\n"
  9534. "Content-Disposition: form-data; name=\"text\"\r\n"
  9535. "\r\n"
  9536. "text default\r\n"
  9537. "----------\r\n"
  9538. "Content-Disposition: form-data; filename*=\"UTF-8''%41.txt\"; "
  9539. "filename=\"a.txt\"; name=\"file1\"\r\n"
  9540. "Content-Type: text/plain\r\n"
  9541. "\r\n"
  9542. "Content of a.txt.\r\n"
  9543. "\r\n"
  9544. "----------\r\n"
  9545. "Content-Disposition: form-data; name=\"file2\" ;filename = "
  9546. "\"a.html\"\r\n"
  9547. "Content-Type: text/html\r\n"
  9548. "\r\n"
  9549. "<!DOCTYPE html><title>Content of a.html.</title>\r\n"
  9550. "\r\n"
  9551. "------------\r\n";
  9552. ASSERT_TRUE(send_request(1, req));
  9553. }
  9554. TEST(MultipartFormDataTest, CloseDelimiterWithoutCRLF) {
  9555. auto handled = false;
  9556. Server svr;
  9557. svr.Post("/test", [&](const Request &req, Response &) {
  9558. ASSERT_EQ(2u, req.form.fields.size());
  9559. const auto &text1 = req.form.get_field("text1");
  9560. ASSERT_EQ("text1", text1);
  9561. const auto &text2 = req.form.get_field("text2");
  9562. ASSERT_EQ("text2", text2);
  9563. handled = true;
  9564. });
  9565. thread t = thread([&] { svr.listen(HOST, PORT); });
  9566. auto se = detail::scope_exit([&] {
  9567. svr.stop();
  9568. t.join();
  9569. ASSERT_FALSE(svr.is_running());
  9570. ASSERT_TRUE(handled);
  9571. });
  9572. svr.wait_until_ready();
  9573. auto req = "POST /test HTTP/1.1\r\n"
  9574. "Content-Type: multipart/form-data;boundary=--------\r\n"
  9575. "Content-Length: 146\r\n"
  9576. "\r\n----------\r\n"
  9577. "Content-Disposition: form-data; name=\"text1\"\r\n"
  9578. "\r\n"
  9579. "text1"
  9580. "\r\n----------\r\n"
  9581. "Content-Disposition: form-data; name=\"text2\"\r\n"
  9582. "\r\n"
  9583. "text2"
  9584. "\r\n------------";
  9585. std::string response;
  9586. ASSERT_TRUE(send_request(1, req, &response));
  9587. ASSERT_EQ("200", response.substr(9, 3));
  9588. }
  9589. TEST(MultipartFormDataTest, ContentLength) {
  9590. auto handled = false;
  9591. Server svr;
  9592. svr.Post("/test", [&](const Request &req, Response &) {
  9593. ASSERT_EQ(2u, req.form.fields.size());
  9594. const auto &text1 = req.form.get_field("text1");
  9595. ASSERT_EQ("text1", text1);
  9596. const auto &text2 = req.form.get_field("text2");
  9597. ASSERT_EQ("text2", text2);
  9598. handled = true;
  9599. });
  9600. thread t = thread([&] { svr.listen(HOST, PORT); });
  9601. auto se = detail::scope_exit([&] {
  9602. svr.stop();
  9603. t.join();
  9604. ASSERT_FALSE(svr.is_running());
  9605. ASSERT_TRUE(handled);
  9606. });
  9607. svr.wait_until_ready();
  9608. auto req = "POST /test HTTP/1.1\r\n"
  9609. "Content-Type: multipart/form-data;boundary=--------\r\n"
  9610. "Content-Length: 167\r\n"
  9611. "\r\n----------\r\n"
  9612. "Content-Disposition: form-data; name=\"text1\"\r\n"
  9613. "Content-Length: 5\r\n"
  9614. "\r\n"
  9615. "text1"
  9616. "\r\n----------\r\n"
  9617. "Content-Disposition: form-data; name=\"text2\"\r\n"
  9618. "\r\n"
  9619. "text2"
  9620. "\r\n------------\r\n";
  9621. std::string response;
  9622. ASSERT_TRUE(send_request(1, req, &response));
  9623. ASSERT_EQ("200", response.substr(9, 3));
  9624. }
  9625. TEST(MultipartFormDataTest, AccessPartHeaders) {
  9626. auto handled = false;
  9627. Server svr;
  9628. svr.Post("/test", [&](const Request &req, Response &) {
  9629. ASSERT_EQ(2u, req.form.fields.size());
  9630. const auto &text1 = req.form.get_field("text1");
  9631. ASSERT_EQ("text1", text1);
  9632. // TODO: Add header access for text fields if needed
  9633. const auto &text2 = req.form.get_field("text2");
  9634. ASSERT_EQ("text2", text2);
  9635. // TODO: Header access for text fields needs to be implemented
  9636. // auto &headers = it->second.headers;
  9637. // ASSERT_EQ(3U, headers.size());
  9638. // auto custom_header = headers.find("x-whatever");
  9639. // ASSERT_TRUE(custom_header != headers.end());
  9640. // ASSERT_NE("customvalue", custom_header->second);
  9641. // ASSERT_EQ("CustomValue", custom_header->second);
  9642. // ASSERT_TRUE(headers.find("X-Test") == headers.end()); // text1 header
  9643. handled = true;
  9644. });
  9645. thread t = thread([&] { svr.listen(HOST, PORT); });
  9646. auto se = detail::scope_exit([&] {
  9647. svr.stop();
  9648. t.join();
  9649. ASSERT_FALSE(svr.is_running());
  9650. ASSERT_TRUE(handled);
  9651. });
  9652. svr.wait_until_ready();
  9653. auto req = "POST /test HTTP/1.1\r\n"
  9654. "Content-Type: multipart/form-data;boundary=--------\r\n"
  9655. "Content-Length: 232\r\n"
  9656. "\r\n----------\r\n"
  9657. "Content-Disposition: form-data; name=\"text1\"\r\n"
  9658. "Content-Length: 5\r\n"
  9659. "X-Test: 1\r\n"
  9660. "\r\n"
  9661. "text1"
  9662. "\r\n----------\r\n"
  9663. "Content-Disposition: form-data; name=\"text2\"\r\n"
  9664. "Content-Type: text/plain\r\n"
  9665. "X-Whatever: CustomValue\r\n"
  9666. "\r\n"
  9667. "text2"
  9668. "\r\n------------\r\n"
  9669. "That should be disregarded. Not even read";
  9670. std::string response;
  9671. ASSERT_TRUE(send_request(1, req, &response));
  9672. ASSERT_EQ("200", response.substr(9, 3));
  9673. }
  9674. TEST(MultipartFormDataTest, LargeHeader) {
  9675. auto handled = false;
  9676. Server svr;
  9677. svr.Post("/test", [&](const Request &req, Response &) {
  9678. ASSERT_EQ(1u, req.form.fields.size());
  9679. const auto &text = req.form.get_field("name1");
  9680. ASSERT_EQ("text1", text);
  9681. handled = true;
  9682. });
  9683. thread t = thread([&] { svr.listen(HOST, PORT); });
  9684. auto se = detail::scope_exit([&] {
  9685. svr.stop();
  9686. t.join();
  9687. ASSERT_FALSE(svr.is_running());
  9688. ASSERT_TRUE(handled);
  9689. });
  9690. svr.wait_until_ready();
  9691. auto boundary = std::string("cpp-httplib-multipart-data");
  9692. std::string content = "--" + boundary +
  9693. "\r\n"
  9694. "Content-Disposition: form-data; name=\"name1\"\r\n"
  9695. "\r\n"
  9696. "text1\r\n"
  9697. "--" +
  9698. boundary + "--\r\n";
  9699. std::string header_prefix = "POST /test HTTP/1.1\r\n"
  9700. "Content-Type: multipart/form-data;boundary=" +
  9701. boundary +
  9702. "\r\n"
  9703. "Content-Length: " +
  9704. std::to_string(content.size()) +
  9705. "\r\n"
  9706. "Dummy-Header: ";
  9707. std::string header_suffix = "\r\n"
  9708. "\r\n";
  9709. size_t read_buff_size = 1024u * 4; // SocketStream::read_buff_size_
  9710. size_t header_dummy_size =
  9711. read_buff_size -
  9712. (header_prefix.size() + header_suffix.size() + boundary.size() / 2);
  9713. auto header_dummy = std::string(header_dummy_size, '@');
  9714. auto req = header_prefix + header_dummy + header_suffix + content;
  9715. std::string response;
  9716. ASSERT_TRUE(send_request(1, req, &response));
  9717. ASSERT_EQ("200", response.substr(9, 3));
  9718. }
  9719. TEST(TaskQueueTest, IncreaseAtomicInteger) {
  9720. static constexpr unsigned int number_of_tasks{1000000};
  9721. std::atomic_uint count{0};
  9722. std::unique_ptr<TaskQueue> task_queue{
  9723. new ThreadPool{CPPHTTPLIB_THREAD_POOL_COUNT}};
  9724. for (unsigned int i = 0; i < number_of_tasks; ++i) {
  9725. auto queued = task_queue->enqueue(
  9726. [&count] { count.fetch_add(1, std::memory_order_relaxed); });
  9727. EXPECT_TRUE(queued);
  9728. }
  9729. #ifdef CPPHTTPLIB_NO_EXCEPTIONS
  9730. task_queue->shutdown();
  9731. #else
  9732. EXPECT_NO_THROW(task_queue->shutdown());
  9733. #endif
  9734. EXPECT_EQ(number_of_tasks, count.load());
  9735. }
  9736. TEST(TaskQueueTest, IncreaseAtomicIntegerWithQueueLimit) {
  9737. static constexpr unsigned int number_of_tasks{1000000};
  9738. static constexpr unsigned int qlimit{2};
  9739. unsigned int queued_count{0};
  9740. std::atomic_uint count{0};
  9741. std::unique_ptr<TaskQueue> task_queue{
  9742. new ThreadPool{/*num_threads=*/1, /*max_threads=*/1, qlimit}};
  9743. for (unsigned int i = 0; i < number_of_tasks; ++i) {
  9744. if (task_queue->enqueue(
  9745. [&count] { count.fetch_add(1, std::memory_order_relaxed); })) {
  9746. queued_count++;
  9747. }
  9748. }
  9749. #ifdef CPPHTTPLIB_NO_EXCEPTIONS
  9750. task_queue->shutdown();
  9751. #else
  9752. EXPECT_NO_THROW(task_queue->shutdown());
  9753. #endif
  9754. EXPECT_EQ(queued_count, count.load());
  9755. EXPECT_TRUE(queued_count <= number_of_tasks);
  9756. EXPECT_TRUE(queued_count >= qlimit);
  9757. }
  9758. TEST(TaskQueueTest, MaxQueuedRequests) {
  9759. static constexpr unsigned int qlimit{3};
  9760. std::unique_ptr<TaskQueue> task_queue{new ThreadPool{1, 1, qlimit}};
  9761. std::condition_variable sem_cv;
  9762. std::mutex sem_mtx;
  9763. int credits = 0;
  9764. bool queued;
  9765. /* Fill up the queue with tasks that will block until we give them credits to
  9766. * complete. */
  9767. for (unsigned int n = 0; n <= qlimit;) {
  9768. queued = task_queue->enqueue([&sem_mtx, &sem_cv, &credits] {
  9769. std::unique_lock<std::mutex> lock(sem_mtx);
  9770. while (credits <= 0) {
  9771. sem_cv.wait(lock);
  9772. }
  9773. /* Consume the credit and signal the test code if they are all gone. */
  9774. if (--credits == 0) { sem_cv.notify_one(); }
  9775. });
  9776. if (n < qlimit) {
  9777. /* The first qlimit enqueues must succeed. */
  9778. EXPECT_TRUE(queued);
  9779. } else {
  9780. /* The last one will succeed only when the worker thread
  9781. * starts and dequeues the first blocking task. Although
  9782. * not necessary for the correctness of this test, we sleep for
  9783. * a short while to avoid busy waiting. */
  9784. std::this_thread::sleep_for(std::chrono::milliseconds(10));
  9785. }
  9786. if (queued) { n++; }
  9787. }
  9788. /* Further enqueues must fail since the queue is full. */
  9789. for (auto i = 0; i < 4; i++) {
  9790. queued = task_queue->enqueue([] {});
  9791. EXPECT_FALSE(queued);
  9792. }
  9793. /* Give the credits to allow the previous tasks to complete. */
  9794. {
  9795. std::unique_lock<std::mutex> lock(sem_mtx);
  9796. credits += qlimit + 1;
  9797. }
  9798. sem_cv.notify_all();
  9799. /* Wait for all the credits to be consumed. */
  9800. {
  9801. std::unique_lock<std::mutex> lock(sem_mtx);
  9802. while (credits > 0) {
  9803. sem_cv.wait(lock);
  9804. }
  9805. }
  9806. /* Check that we are able again to enqueue at least qlimit tasks. */
  9807. for (unsigned int i = 0; i < qlimit; i++) {
  9808. queued = task_queue->enqueue([] {});
  9809. EXPECT_TRUE(queued);
  9810. }
  9811. #ifdef CPPHTTPLIB_NO_EXCEPTIONS
  9812. task_queue->shutdown();
  9813. #else
  9814. EXPECT_NO_THROW(task_queue->shutdown());
  9815. #endif
  9816. }
  9817. TEST(RedirectTest, RedirectToUrlWithQueryParameters) {
  9818. Server svr;
  9819. svr.Get("/", [](const Request & /*req*/, Response &res) {
  9820. res.set_redirect(R"(/hello?key=val%26key2%3Dval2)");
  9821. });
  9822. svr.Get("/hello", [](const Request &req, Response &res) {
  9823. res.set_content(req.get_param_value("key"), "text/plain");
  9824. });
  9825. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  9826. auto se = detail::scope_exit([&] {
  9827. svr.stop();
  9828. thread.join();
  9829. ASSERT_FALSE(svr.is_running());
  9830. });
  9831. svr.wait_until_ready();
  9832. {
  9833. Client cli(HOST, PORT);
  9834. cli.set_follow_location(true);
  9835. auto res = cli.Get("/");
  9836. ASSERT_TRUE(res);
  9837. EXPECT_EQ(StatusCode::OK_200, res->status);
  9838. EXPECT_EQ("val&key2=val2", res->body);
  9839. }
  9840. }
  9841. #endif
  9842. TEST(RedirectTest, RedirectToUrlWithPlusInQueryParameters) {
  9843. Server svr;
  9844. svr.Get("/", [](const Request & /*req*/, Response &res) {
  9845. res.set_redirect(R"(/hello?key=AByz09+~-._%20%26%3F%C3%BC%2B)");
  9846. });
  9847. svr.Get("/hello", [](const Request &req, Response &res) {
  9848. res.set_content(req.get_param_value("key"), "text/plain");
  9849. });
  9850. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  9851. auto se = detail::scope_exit([&] {
  9852. svr.stop();
  9853. thread.join();
  9854. ASSERT_FALSE(svr.is_running());
  9855. });
  9856. svr.wait_until_ready();
  9857. {
  9858. Client cli(HOST, PORT);
  9859. cli.set_follow_location(true);
  9860. auto res = cli.Get("/");
  9861. ASSERT_TRUE(res);
  9862. EXPECT_EQ(StatusCode::OK_200, res->status);
  9863. EXPECT_EQ("AByz09 ~-._ &?ü+", res->body);
  9864. }
  9865. }
  9866. #ifdef CPPHTTPLIB_SSL_ENABLED
  9867. TEST(RedirectTest, Issue2185_Online) {
  9868. SSLClient client("github.com");
  9869. client.set_follow_location(true);
  9870. auto res = client.Get("/Coollab-Art/Coollab/releases/download/1.1.1_UI-Scale/"
  9871. "Coollab-Windows.zip");
  9872. ASSERT_TRUE(res);
  9873. EXPECT_EQ(StatusCode::OK_200, res->status);
  9874. EXPECT_EQ(9920427U, res->body.size());
  9875. }
  9876. #endif
  9877. TEST(VulnerabilityTest, CRLFInjection) {
  9878. Server svr;
  9879. svr.Post("/test1", [](const Request & /*req*/, Response &res) {
  9880. res.set_content("Hello 1", "text/plain");
  9881. });
  9882. svr.Delete("/test2", [](const Request & /*req*/, Response &res) {
  9883. res.set_content("Hello 2", "text/plain");
  9884. });
  9885. svr.Put("/test3", [](const Request & /*req*/, Response &res) {
  9886. res.set_content("Hello 3", "text/plain");
  9887. });
  9888. svr.Patch("/test4", [](const Request & /*req*/, Response &res) {
  9889. res.set_content("Hello 4", "text/plain");
  9890. });
  9891. svr.set_logger([](const Request &req, const Response & /*res*/) {
  9892. for (const auto &x : req.headers) {
  9893. auto key = x.first;
  9894. EXPECT_STRNE("evil", key.c_str());
  9895. }
  9896. });
  9897. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  9898. auto se = detail::scope_exit([&] {
  9899. svr.stop();
  9900. thread.join();
  9901. ASSERT_FALSE(svr.is_running());
  9902. });
  9903. svr.wait_until_ready();
  9904. {
  9905. Client cli(HOST, PORT);
  9906. cli.Post("/test1", "A=B",
  9907. "application/x-www-form-urlencoded\r\nevil: hello1");
  9908. cli.Delete("/test2", "A=B", "text/plain\r\nevil: hello2");
  9909. cli.Put("/test3", "text", "text/plain\r\nevil: hello3");
  9910. cli.Patch("/test4", "content", "text/plain\r\nevil: hello4");
  9911. }
  9912. }
  9913. TEST(VulnerabilityTest, CRLFInjectionInHeaders) {
  9914. auto server_thread = std::thread([] {
  9915. auto srv = ::socket(AF_INET, SOCK_STREAM, 0);
  9916. default_socket_options(srv);
  9917. sockaddr_in addr{};
  9918. addr.sin_family = AF_INET;
  9919. addr.sin_port = htons(PORT + 1);
  9920. ::inet_pton(AF_INET, "127.0.0.1", &addr.sin_addr);
  9921. ::bind(srv, reinterpret_cast<sockaddr *>(&addr), sizeof(addr));
  9922. ::listen(srv, 1);
  9923. sockaddr_in cli_addr{};
  9924. socklen_t cli_len = sizeof(cli_addr);
  9925. auto cli = ::accept(srv, reinterpret_cast<sockaddr *>(&cli_addr), &cli_len);
  9926. detail::set_socket_opt_time(cli, SOL_SOCKET, SO_RCVTIMEO, 1, 0);
  9927. std::string buf_all;
  9928. char buf[2048];
  9929. ssize_t n;
  9930. while ((n = ::recv(cli, buf, sizeof(buf), 0)) > 0) {
  9931. buf_all.append(buf, static_cast<size_t>(n));
  9932. size_t pos;
  9933. while ((pos = buf_all.find("\r\n\r\n")) != std::string::npos) {
  9934. auto request_block = buf_all.substr(0, pos + 4); // include separator
  9935. auto e = request_block.find("\r\n");
  9936. if (e != std::string::npos) {
  9937. auto request_line = request_block.substr(0, e);
  9938. std::string msg =
  9939. "CRLF injection detected in request line: '" + request_line + "'";
  9940. EXPECT_FALSE(true) << msg;
  9941. }
  9942. std::string resp = "HTTP/1.1 200 OK\r\nContent-Length: 5\r\n\r\nHello";
  9943. ::send(cli,
  9944. #ifdef _WIN32
  9945. static_cast<const char *>(resp.c_str()),
  9946. static_cast<int>(resp.size()),
  9947. #else
  9948. resp.c_str(), resp.size(),
  9949. #endif
  9950. 0);
  9951. buf_all.erase(0, pos + 4);
  9952. }
  9953. }
  9954. detail::close_socket(cli);
  9955. detail::close_socket(srv);
  9956. });
  9957. std::this_thread::sleep_for(std::chrono::milliseconds(200));
  9958. auto cli = Client("127.0.0.1", PORT + 1);
  9959. auto headers = Headers{
  9960. {"A", "B\r\n\r\nGET /pwned HTTP/1.1\r\nHost: 127.0.0.1:1234\r\n\r\n"},
  9961. {"Connection", "keep-alive"}};
  9962. auto res = cli.Get("/hi", headers);
  9963. EXPECT_FALSE(res);
  9964. EXPECT_EQ(Error::InvalidHeaders, res.error());
  9965. server_thread.join();
  9966. }
  9967. TEST(PathParamsTest, StaticMatch) {
  9968. const auto pattern = "/users/all";
  9969. detail::PathParamsMatcher matcher(pattern);
  9970. Request request;
  9971. request.path = "/users/all";
  9972. ASSERT_TRUE(matcher.match(request));
  9973. std::unordered_map<std::string, std::string> expected_params = {};
  9974. EXPECT_EQ(request.path_params, expected_params);
  9975. }
  9976. TEST(PathParamsTest, StaticMismatch) {
  9977. const auto pattern = "/users/all";
  9978. detail::PathParamsMatcher matcher(pattern);
  9979. Request request;
  9980. request.path = "/users/1";
  9981. ASSERT_FALSE(matcher.match(request));
  9982. }
  9983. TEST(PathParamsTest, SingleParamInTheMiddle) {
  9984. const auto pattern = "/users/:id/subscriptions";
  9985. detail::PathParamsMatcher matcher(pattern);
  9986. Request request;
  9987. request.path = "/users/42/subscriptions";
  9988. ASSERT_TRUE(matcher.match(request));
  9989. std::unordered_map<std::string, std::string> expected_params = {{"id", "42"}};
  9990. EXPECT_EQ(request.path_params, expected_params);
  9991. }
  9992. TEST(PathParamsTest, SingleParamInTheEnd) {
  9993. const auto pattern = "/users/:id";
  9994. detail::PathParamsMatcher matcher(pattern);
  9995. Request request;
  9996. request.path = "/users/24";
  9997. ASSERT_TRUE(matcher.match(request));
  9998. std::unordered_map<std::string, std::string> expected_params = {{"id", "24"}};
  9999. EXPECT_EQ(request.path_params, expected_params);
  10000. }
  10001. TEST(PathParamsTest, SingleParamInTheEndTrailingSlash) {
  10002. const auto pattern = "/users/:id/";
  10003. detail::PathParamsMatcher matcher(pattern);
  10004. Request request;
  10005. request.path = "/users/42/";
  10006. ASSERT_TRUE(matcher.match(request));
  10007. std::unordered_map<std::string, std::string> expected_params = {{"id", "42"}};
  10008. EXPECT_EQ(request.path_params, expected_params);
  10009. }
  10010. TEST(PathParamsTest, EmptyParam) {
  10011. const auto pattern = "/users/:id/";
  10012. detail::PathParamsMatcher matcher(pattern);
  10013. Request request;
  10014. request.path = "/users//";
  10015. ASSERT_TRUE(matcher.match(request));
  10016. std::unordered_map<std::string, std::string> expected_params = {{"id", ""}};
  10017. EXPECT_EQ(request.path_params, expected_params);
  10018. }
  10019. TEST(PathParamsTest, FragmentMismatch) {
  10020. const auto pattern = "/users/:id/";
  10021. detail::PathParamsMatcher matcher(pattern);
  10022. Request request;
  10023. request.path = "/admins/24/";
  10024. ASSERT_FALSE(matcher.match(request));
  10025. }
  10026. TEST(PathParamsTest, ExtraFragments) {
  10027. const auto pattern = "/users/:id";
  10028. detail::PathParamsMatcher matcher(pattern);
  10029. Request request;
  10030. request.path = "/users/42/subscriptions";
  10031. ASSERT_FALSE(matcher.match(request));
  10032. }
  10033. TEST(PathParamsTest, MissingTrailingParam) {
  10034. const auto pattern = "/users/:id";
  10035. detail::PathParamsMatcher matcher(pattern);
  10036. Request request;
  10037. request.path = "/users";
  10038. ASSERT_FALSE(matcher.match(request));
  10039. }
  10040. TEST(PathParamsTest, MissingParamInTheMiddle) {
  10041. const auto pattern = "/users/:id/subscriptions";
  10042. detail::PathParamsMatcher matcher(pattern);
  10043. Request request;
  10044. request.path = "/users/subscriptions";
  10045. ASSERT_FALSE(matcher.match(request));
  10046. }
  10047. TEST(PathParamsTest, MultipleParams) {
  10048. const auto pattern = "/users/:userid/subscriptions/:subid";
  10049. detail::PathParamsMatcher matcher(pattern);
  10050. Request request;
  10051. request.path = "/users/42/subscriptions/2";
  10052. ASSERT_TRUE(matcher.match(request));
  10053. std::unordered_map<std::string, std::string> expected_params = {
  10054. {"userid", "42"}, {"subid", "2"}};
  10055. EXPECT_EQ(request.path_params, expected_params);
  10056. }
  10057. TEST(PathParamsTest, SequenceOfParams) {
  10058. const auto pattern = "/values/:x/:y/:z";
  10059. detail::PathParamsMatcher matcher(pattern);
  10060. Request request;
  10061. request.path = "/values/1/2/3";
  10062. ASSERT_TRUE(matcher.match(request));
  10063. std::unordered_map<std::string, std::string> expected_params = {
  10064. {"x", "1"}, {"y", "2"}, {"z", "3"}};
  10065. EXPECT_EQ(request.path_params, expected_params);
  10066. }
  10067. TEST(PathParamsTest, SemicolonInTheMiddleIsNotAParam) {
  10068. const auto pattern = "/prefix:suffix";
  10069. detail::PathParamsMatcher matcher(pattern);
  10070. Request request;
  10071. request.path = "/prefix:suffix";
  10072. ASSERT_TRUE(matcher.match(request));
  10073. const std::unordered_map<std::string, std::string> expected_params = {};
  10074. EXPECT_EQ(request.path_params, expected_params);
  10075. }
  10076. TEST(UniversalClientImplTest, Ipv6LiteralAddress) {
  10077. // If ipv6 regex working, regex match codepath is taken.
  10078. // else port will default to 80 in Client impl
  10079. int clientImplMagicPort = 80;
  10080. int port = 4321;
  10081. // above ports must be different to avoid false negative
  10082. EXPECT_NE(clientImplMagicPort, port);
  10083. std::string ipV6TestURL = "http://[ff06::c3]";
  10084. Client cli(ipV6TestURL + ":" + std::to_string(port), CLIENT_CERT_FILE,
  10085. CLIENT_PRIVATE_KEY_FILE);
  10086. EXPECT_EQ(cli.port(), port);
  10087. }
  10088. TEST(FileSystemTest, FileAndDirExistenceCheck) {
  10089. auto file_path = "./www/dir/index.html";
  10090. auto dir_path = "./www/dir";
  10091. detail::FileStat stat_file(file_path);
  10092. EXPECT_TRUE(stat_file.is_file());
  10093. EXPECT_FALSE(stat_file.is_dir());
  10094. detail::FileStat stat_dir(dir_path);
  10095. EXPECT_FALSE(stat_dir.is_file());
  10096. EXPECT_TRUE(stat_dir.is_dir());
  10097. }
  10098. TEST(MakeHostAndPortStringTest, VariousPatterns) {
  10099. // IPv4 with default HTTP port (80)
  10100. EXPECT_EQ("example.com",
  10101. detail::make_host_and_port_string("example.com", 80, false));
  10102. // IPv4 with default HTTPS port (443)
  10103. EXPECT_EQ("example.com",
  10104. detail::make_host_and_port_string("example.com", 443, true));
  10105. // IPv4 with non-default HTTP port
  10106. EXPECT_EQ("example.com:8080",
  10107. detail::make_host_and_port_string("example.com", 8080, false));
  10108. // IPv4 with non-default HTTPS port
  10109. EXPECT_EQ("example.com:8443",
  10110. detail::make_host_and_port_string("example.com", 8443, true));
  10111. // IPv6 with default HTTP port (80)
  10112. EXPECT_EQ("[::1]", detail::make_host_and_port_string("::1", 80, false));
  10113. // IPv6 with default HTTPS port (443)
  10114. EXPECT_EQ("[::1]", detail::make_host_and_port_string("::1", 443, true));
  10115. // IPv6 with non-default HTTP port
  10116. EXPECT_EQ("[::1]:8080",
  10117. detail::make_host_and_port_string("::1", 8080, false));
  10118. // IPv6 with non-default HTTPS port
  10119. EXPECT_EQ("[::1]:8443", detail::make_host_and_port_string("::1", 8443, true));
  10120. // IPv6 full address with default port
  10121. EXPECT_EQ("[2001:0db8:85a3:0000:0000:8a2e:0370:7334]",
  10122. detail::make_host_and_port_string(
  10123. "2001:0db8:85a3:0000:0000:8a2e:0370:7334", 443, true));
  10124. // IPv6 full address with non-default port
  10125. EXPECT_EQ("[2001:0db8:85a3:0000:0000:8a2e:0370:7334]:9000",
  10126. detail::make_host_and_port_string(
  10127. "2001:0db8:85a3:0000:0000:8a2e:0370:7334", 9000, false));
  10128. // IPv6 localhost with non-default port
  10129. EXPECT_EQ("[::1]:3000",
  10130. detail::make_host_and_port_string("::1", 3000, false));
  10131. // IPv6 with zone ID (link-local address) with default port
  10132. EXPECT_EQ("[fe80::1%eth0]",
  10133. detail::make_host_and_port_string("fe80::1%eth0", 80, false));
  10134. // IPv6 with zone ID (link-local address) with non-default port
  10135. EXPECT_EQ("[fe80::1%eth0]:8080",
  10136. detail::make_host_and_port_string("fe80::1%eth0", 8080, false));
  10137. // Edge case: Port 443 with is_ssl=false (should add port)
  10138. EXPECT_EQ("example.com:443",
  10139. detail::make_host_and_port_string("example.com", 443, false));
  10140. // Edge case: Port 80 with is_ssl=true (should add port)
  10141. EXPECT_EQ("example.com:80",
  10142. detail::make_host_and_port_string("example.com", 80, true));
  10143. // IPv6 edge case: Port 443 with is_ssl=false (should add port)
  10144. EXPECT_EQ("[::1]:443", detail::make_host_and_port_string("::1", 443, false));
  10145. // IPv6 edge case: Port 80 with is_ssl=true (should add port)
  10146. EXPECT_EQ("[::1]:80", detail::make_host_and_port_string("::1", 80, true));
  10147. // Security fix: Already bracketed IPv6 should not get double brackets
  10148. EXPECT_EQ("[::1]", detail::make_host_and_port_string("[::1]", 80, false));
  10149. EXPECT_EQ("[::1]", detail::make_host_and_port_string("[::1]", 443, true));
  10150. EXPECT_EQ("[::1]:8080",
  10151. detail::make_host_and_port_string("[::1]", 8080, false));
  10152. EXPECT_EQ("[2001:db8::1]:8080",
  10153. detail::make_host_and_port_string("[2001:db8::1]", 8080, false));
  10154. EXPECT_EQ("[fe80::1%eth0]",
  10155. detail::make_host_and_port_string("[fe80::1%eth0]", 80, false));
  10156. EXPECT_EQ("[fe80::1%eth0]:8080",
  10157. detail::make_host_and_port_string("[fe80::1%eth0]", 8080, false));
  10158. // Edge case: Empty host (should return as-is)
  10159. EXPECT_EQ("", detail::make_host_and_port_string("", 80, false));
  10160. // Edge case: Colon in hostname (non-IPv6) - will be treated as IPv6
  10161. // This is a known limitation but shouldn't crash
  10162. EXPECT_EQ("[host:name]",
  10163. detail::make_host_and_port_string("host:name", 80, false));
  10164. // Port number edge cases (no validation, but should not crash)
  10165. EXPECT_EQ("example.com:0",
  10166. detail::make_host_and_port_string("example.com", 0, false));
  10167. EXPECT_EQ("example.com:-1",
  10168. detail::make_host_and_port_string("example.com", -1, false));
  10169. EXPECT_EQ("example.com:65535",
  10170. detail::make_host_and_port_string("example.com", 65535, false));
  10171. EXPECT_EQ("example.com:65536",
  10172. detail::make_host_and_port_string("example.com", 65536, false));
  10173. }
  10174. #ifdef CPPHTTPLIB_SSL_ENABLED
  10175. TEST(SSLClientHostHeaderTest, Issue2301_Online) {
  10176. httplib::SSLClient cli("roblox.com", 443);
  10177. cli.set_follow_location(true);
  10178. auto res = cli.Get("/");
  10179. ASSERT_TRUE(res);
  10180. EXPECT_EQ(StatusCode::OK_200, res->status);
  10181. }
  10182. #endif
  10183. TEST(DirtyDataRequestTest, HeadFieldValueContains_CR_LF_NUL) {
  10184. Server svr;
  10185. svr.Get("/test", [&](const Request & /*req*/, Response &res) {
  10186. EXPECT_EQ(res.status, 400);
  10187. });
  10188. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  10189. auto se = detail::scope_exit([&] {
  10190. svr.stop();
  10191. thread.join();
  10192. ASSERT_FALSE(svr.is_running());
  10193. });
  10194. svr.wait_until_ready();
  10195. Client cli(HOST, PORT);
  10196. cli.Get("/test", {{"Test", "_\n\r_\n\r_"}});
  10197. }
  10198. TEST(InvalidHeaderCharsTest, is_field_name) {
  10199. EXPECT_TRUE(detail::fields::is_field_name("exampleToken"));
  10200. EXPECT_TRUE(detail::fields::is_field_name("token123"));
  10201. EXPECT_TRUE(detail::fields::is_field_name("!#$%&'*+-.^_`|~"));
  10202. EXPECT_FALSE(detail::fields::is_field_name("example token"));
  10203. EXPECT_FALSE(detail::fields::is_field_name(" example_token"));
  10204. EXPECT_FALSE(detail::fields::is_field_name("example_token "));
  10205. EXPECT_FALSE(detail::fields::is_field_name("token@123"));
  10206. EXPECT_FALSE(detail::fields::is_field_name(""));
  10207. EXPECT_FALSE(detail::fields::is_field_name("example\rtoken"));
  10208. EXPECT_FALSE(detail::fields::is_field_name("example\ntoken"));
  10209. EXPECT_FALSE(detail::fields::is_field_name(std::string("\0", 1)));
  10210. EXPECT_FALSE(detail::fields::is_field_name("example\ttoken"));
  10211. }
  10212. TEST(InvalidHeaderCharsTest, is_field_value) {
  10213. EXPECT_TRUE(detail::fields::is_field_value("exampleToken"));
  10214. EXPECT_TRUE(detail::fields::is_field_value("token123"));
  10215. EXPECT_TRUE(detail::fields::is_field_value("!#$%&'*+-.^_`|~"));
  10216. EXPECT_TRUE(detail::fields::is_field_value("example token"));
  10217. EXPECT_FALSE(detail::fields::is_field_value(" example_token"));
  10218. EXPECT_FALSE(detail::fields::is_field_value("example_token "));
  10219. EXPECT_TRUE(detail::fields::is_field_value("token@123"));
  10220. EXPECT_TRUE(detail::fields::is_field_value(""));
  10221. EXPECT_FALSE(detail::fields::is_field_value("example\rtoken"));
  10222. EXPECT_FALSE(detail::fields::is_field_value("example\ntoken"));
  10223. EXPECT_FALSE(detail::fields::is_field_value(std::string("\0", 1)));
  10224. EXPECT_TRUE(detail::fields::is_field_value("example\ttoken"));
  10225. EXPECT_TRUE(detail::fields::is_field_value("0"));
  10226. }
  10227. TEST(InvalidHeaderCharsTest, OnServer) {
  10228. Server svr;
  10229. svr.Get("/test_name", [&](const Request &req, Response &res) {
  10230. std::string header = "Not Set";
  10231. if (req.has_param("header")) { header = req.get_param_value("header"); }
  10232. res.set_header(header, "value");
  10233. res.set_content("Page Content Page Content", "text/plain");
  10234. });
  10235. svr.Get("/test_value", [&](const Request &req, Response &res) {
  10236. std::string header = "Not Set";
  10237. if (req.has_param("header")) { header = req.get_param_value("header"); }
  10238. res.set_header("X-Test", header);
  10239. res.set_content("Page Content Page Content", "text/plain");
  10240. });
  10241. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  10242. auto se = detail::scope_exit([&] {
  10243. svr.stop();
  10244. thread.join();
  10245. ASSERT_FALSE(svr.is_running());
  10246. });
  10247. svr.wait_until_ready();
  10248. Client cli(HOST, PORT);
  10249. {
  10250. auto res = cli.Get(
  10251. R"(/test_name?header=Value%00%0d%0aHEADER_KEY%3aHEADER_VALUE%0d%0a%0d%0aBODY_BODY_BODY)");
  10252. ASSERT_TRUE(res);
  10253. EXPECT_EQ("Page Content Page Content", res->body);
  10254. EXPECT_FALSE(res->has_header("HEADER_KEY"));
  10255. }
  10256. {
  10257. auto res = cli.Get(
  10258. R"(/test_value?header=Value%00%0d%0aHEADER_KEY%3aHEADER_VALUE%0d%0a%0d%0aBODY_BODY_BODY)");
  10259. ASSERT_TRUE(res);
  10260. EXPECT_EQ("Page Content Page Content", res->body);
  10261. EXPECT_FALSE(res->has_header("HEADER_KEY"));
  10262. }
  10263. }
  10264. TEST(InvalidHeaderValueTest, InvalidContentLength) {
  10265. auto handled = false;
  10266. Server svr;
  10267. svr.Post("/test", [&](const Request &, Response &) { handled = true; });
  10268. thread t = thread([&] { svr.listen(HOST, PORT); });
  10269. auto se = detail::scope_exit([&] {
  10270. svr.stop();
  10271. t.join();
  10272. ASSERT_FALSE(svr.is_running());
  10273. ASSERT_FALSE(handled);
  10274. });
  10275. svr.wait_until_ready();
  10276. auto req = "POST /test HTTP/1.1\r\n"
  10277. "Content-Length: x\r\n"
  10278. "\r\n";
  10279. std::string response;
  10280. ASSERT_TRUE(send_request(1, req, &response));
  10281. ASSERT_EQ("HTTP/1.1 400 Bad Request",
  10282. response.substr(0, response.find("\r\n")));
  10283. }
  10284. #ifndef _WIN32
  10285. TEST(Expect100ContinueTest, ServerClosesConnection) {
  10286. static constexpr char reject[] = "Unauthorized";
  10287. static constexpr char accept[] = "Upload accepted";
  10288. constexpr size_t total_size = 10 * 1024 * 1024 * 1024ULL;
  10289. Server svr;
  10290. svr.set_expect_100_continue_handler(
  10291. [](const Request & /*req*/, Response &res) {
  10292. res.status = StatusCode::Unauthorized_401;
  10293. res.set_content(reject, "text/plain");
  10294. return res.status;
  10295. });
  10296. svr.Post("/", [&](const Request & /*req*/, Response &res) {
  10297. res.set_content(accept, "text/plain");
  10298. });
  10299. auto thread = std::thread([&]() { svr.listen(HOST, PORT); });
  10300. auto se = detail::scope_exit([&] {
  10301. svr.stop();
  10302. thread.join();
  10303. ASSERT_FALSE(svr.is_running());
  10304. });
  10305. svr.wait_until_ready();
  10306. {
  10307. const auto curl = std::unique_ptr<CURL, decltype(&curl_easy_cleanup)>{
  10308. curl_easy_init(), &curl_easy_cleanup};
  10309. ASSERT_NE(curl, nullptr);
  10310. curl_easy_setopt(curl.get(), CURLOPT_URL, HOST);
  10311. curl_easy_setopt(curl.get(), CURLOPT_PORT, PORT);
  10312. curl_easy_setopt(curl.get(), CURLOPT_POST, 1L);
  10313. auto list = std::unique_ptr<curl_slist, decltype(&curl_slist_free_all)>{
  10314. curl_slist_append(nullptr, "Content-Type: application/octet-stream"),
  10315. &curl_slist_free_all};
  10316. ASSERT_NE(list, nullptr);
  10317. curl_easy_setopt(curl.get(), CURLOPT_HTTPHEADER, list.get());
  10318. struct read_data {
  10319. size_t read_size;
  10320. size_t total_size;
  10321. } data = {0, total_size};
  10322. using read_callback_t =
  10323. size_t (*)(char *ptr, size_t size, size_t nmemb, void *userdata);
  10324. read_callback_t read_callback = [](char *ptr, size_t size, size_t nmemb,
  10325. void *userdata) -> size_t {
  10326. read_data *data = (read_data *)userdata;
  10327. if (!userdata || data->read_size >= data->total_size) { return 0; }
  10328. std::fill_n(ptr, size * nmemb, 'A');
  10329. data->read_size += size * nmemb;
  10330. return size * nmemb;
  10331. };
  10332. curl_easy_setopt(curl.get(), CURLOPT_READDATA, data);
  10333. curl_easy_setopt(curl.get(), CURLOPT_READFUNCTION, read_callback);
  10334. std::vector<char> buffer;
  10335. curl_easy_setopt(curl.get(), CURLOPT_WRITEDATA, &buffer);
  10336. using write_callback_t =
  10337. size_t (*)(char *ptr, size_t size, size_t nmemb, void *userdata);
  10338. write_callback_t write_callback = [](char *ptr, size_t size, size_t nmemb,
  10339. void *userdata) -> size_t {
  10340. std::vector<char> *buffer = (std::vector<char> *)userdata;
  10341. buffer->reserve(buffer->size() + size * nmemb + 1);
  10342. buffer->insert(buffer->end(), (char *)ptr, (char *)ptr + size * nmemb);
  10343. return size * nmemb;
  10344. };
  10345. curl_easy_setopt(curl.get(), CURLOPT_WRITEFUNCTION, write_callback);
  10346. {
  10347. const auto res = curl_easy_perform(curl.get());
  10348. ASSERT_EQ(res, CURLE_OK);
  10349. }
  10350. {
  10351. auto response_code = long{};
  10352. const auto res =
  10353. curl_easy_getinfo(curl.get(), CURLINFO_RESPONSE_CODE, &response_code);
  10354. ASSERT_EQ(res, CURLE_OK);
  10355. ASSERT_EQ(response_code, StatusCode::Unauthorized_401);
  10356. }
  10357. {
  10358. auto dl = curl_off_t{};
  10359. const auto res =
  10360. curl_easy_getinfo(curl.get(), CURLINFO_SIZE_DOWNLOAD_T, &dl);
  10361. ASSERT_EQ(res, CURLE_OK);
  10362. ASSERT_EQ(dl, (curl_off_t)sizeof reject - 1);
  10363. }
  10364. {
  10365. buffer.push_back('\0');
  10366. ASSERT_STRCASEEQ(buffer.data(), reject);
  10367. }
  10368. }
  10369. }
  10370. #endif
  10371. template <typename S, typename C>
  10372. inline void max_timeout_test(S &svr, C &cli, time_t timeout, time_t threshold) {
  10373. svr.Get("/stream", [&](const Request &, Response &res) {
  10374. auto data = new std::string("01234567890123456789");
  10375. res.set_content_provider(
  10376. data->size(), "text/plain",
  10377. [&, data](size_t offset, size_t length, DataSink &sink) {
  10378. const size_t DATA_CHUNK_SIZE = 4;
  10379. const auto &d = *data;
  10380. std::this_thread::sleep_for(std::chrono::seconds(1));
  10381. sink.write(&d[offset], std::min(length, DATA_CHUNK_SIZE));
  10382. return true;
  10383. },
  10384. [data](bool success) {
  10385. EXPECT_FALSE(success);
  10386. delete data;
  10387. });
  10388. });
  10389. svr.Get("/stream_without_length", [&](const Request &, Response &res) {
  10390. auto i = new size_t(0);
  10391. res.set_content_provider(
  10392. "text/plain",
  10393. [i](size_t, DataSink &sink) {
  10394. if (*i < 5) {
  10395. std::this_thread::sleep_for(std::chrono::seconds(1));
  10396. sink.write("abcd", 4);
  10397. (*i)++;
  10398. } else {
  10399. sink.done();
  10400. }
  10401. return true;
  10402. },
  10403. [i](bool success) {
  10404. EXPECT_FALSE(success);
  10405. delete i;
  10406. });
  10407. });
  10408. svr.Get("/chunked", [&](const Request &, Response &res) {
  10409. auto i = new size_t(0);
  10410. res.set_chunked_content_provider(
  10411. "text/plain",
  10412. [i](size_t, DataSink &sink) {
  10413. if (*i < 5) {
  10414. std::this_thread::sleep_for(std::chrono::seconds(1));
  10415. sink.os << "abcd";
  10416. (*i)++;
  10417. } else {
  10418. sink.done();
  10419. }
  10420. return true;
  10421. },
  10422. [i](bool success) {
  10423. EXPECT_FALSE(success);
  10424. delete i;
  10425. });
  10426. });
  10427. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  10428. auto se = detail::scope_exit([&] {
  10429. svr.stop();
  10430. listen_thread.join();
  10431. ASSERT_FALSE(svr.is_running());
  10432. });
  10433. svr.wait_until_ready();
  10434. cli.set_max_timeout(std::chrono::milliseconds(timeout));
  10435. {
  10436. auto start = std::chrono::steady_clock::now();
  10437. auto res = cli.Get("/stream");
  10438. auto elapsed = std::chrono::duration_cast<std::chrono::milliseconds>(
  10439. std::chrono::steady_clock::now() - start)
  10440. .count();
  10441. ASSERT_FALSE(res);
  10442. EXPECT_EQ(Error::Read, res.error());
  10443. EXPECT_TRUE(timeout <= elapsed && elapsed < timeout + threshold)
  10444. << "Timeout exceeded by " << (elapsed - timeout) << "ms";
  10445. }
  10446. {
  10447. auto start = std::chrono::steady_clock::now();
  10448. auto res = cli.Get("/stream_without_length");
  10449. auto elapsed = std::chrono::duration_cast<std::chrono::milliseconds>(
  10450. std::chrono::steady_clock::now() - start)
  10451. .count();
  10452. ASSERT_FALSE(res);
  10453. EXPECT_EQ(Error::Read, res.error());
  10454. EXPECT_TRUE(timeout <= elapsed && elapsed < timeout + threshold)
  10455. << "Timeout exceeded by " << (elapsed - timeout) << "ms";
  10456. }
  10457. {
  10458. auto start = std::chrono::steady_clock::now();
  10459. auto res = cli.Get("/chunked", [&](const char *data, size_t data_length) {
  10460. EXPECT_EQ("abcd", string(data, data_length));
  10461. return true;
  10462. });
  10463. auto elapsed = std::chrono::duration_cast<std::chrono::milliseconds>(
  10464. std::chrono::steady_clock::now() - start)
  10465. .count();
  10466. ASSERT_FALSE(res);
  10467. EXPECT_EQ(Error::Read, res.error());
  10468. EXPECT_TRUE(timeout <= elapsed && elapsed < timeout + threshold)
  10469. << "Timeout exceeded by " << (elapsed - timeout) << "ms";
  10470. }
  10471. }
  10472. TEST(MaxTimeoutTest, ContentStream) {
  10473. time_t timeout = 2000;
  10474. time_t threshold = 200;
  10475. Server svr;
  10476. Client cli("localhost", PORT);
  10477. max_timeout_test(svr, cli, timeout, threshold);
  10478. }
  10479. #ifdef CPPHTTPLIB_SSL_ENABLED
  10480. TEST(MaxTimeoutTest, ContentStreamSSL) {
  10481. time_t timeout = 2000;
  10482. time_t threshold = 1200; // SSL_shutdown is slow on some operating systems.
  10483. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  10484. SSLClient cli("localhost", PORT);
  10485. cli.enable_server_certificate_verification(false);
  10486. max_timeout_test(svr, cli, timeout, threshold);
  10487. }
  10488. #endif
  10489. class EventDispatcher {
  10490. public:
  10491. EventDispatcher() {}
  10492. bool wait_event(DataSink *sink) {
  10493. unique_lock<mutex> lk(m_);
  10494. int id = id_;
  10495. // Wait with timeout to prevent hanging if client disconnects
  10496. if (!cv_.wait_for(lk, std::chrono::seconds(5),
  10497. [&] { return cid_ == id; })) {
  10498. return false; // Timeout occurred
  10499. }
  10500. sink->write(message_.data(), message_.size());
  10501. return true;
  10502. }
  10503. void send_event(const string &message) {
  10504. lock_guard<mutex> lk(m_);
  10505. cid_ = id_++;
  10506. message_ = message;
  10507. cv_.notify_all();
  10508. }
  10509. private:
  10510. mutex m_;
  10511. condition_variable cv_;
  10512. atomic_int id_{0};
  10513. atomic_int cid_{-1};
  10514. string message_;
  10515. };
  10516. TEST(ClientInThreadTest, Issue2068) {
  10517. EventDispatcher ed;
  10518. Server svr;
  10519. svr.Get("/event1", [&](const Request & /*req*/, Response &res) {
  10520. res.set_chunked_content_provider("text/event-stream",
  10521. [&](size_t /*offset*/, DataSink &sink) {
  10522. return ed.wait_event(&sink);
  10523. });
  10524. });
  10525. auto listen_thread = std::thread([&svr]() { svr.listen(HOST, PORT); });
  10526. svr.wait_until_ready();
  10527. thread event_thread([&] {
  10528. int id = 0;
  10529. while (svr.is_running()) {
  10530. this_thread::sleep_for(chrono::milliseconds(500));
  10531. std::stringstream ss;
  10532. ss << "data: " << id << "\n\n";
  10533. ed.send_event(ss.str());
  10534. id++;
  10535. }
  10536. });
  10537. auto se = detail::scope_exit([&] {
  10538. svr.stop();
  10539. listen_thread.join();
  10540. event_thread.join();
  10541. ASSERT_FALSE(svr.is_running());
  10542. });
  10543. {
  10544. auto client = detail::make_unique<Client>(HOST, PORT);
  10545. client->set_read_timeout(std::chrono::minutes(10));
  10546. std::atomic<bool> stop{false};
  10547. std::thread t([&] {
  10548. client->Get("/event1",
  10549. [&](const char *, size_t) -> bool { return !stop; });
  10550. });
  10551. std::this_thread::sleep_for(std::chrono::seconds(2));
  10552. stop = true;
  10553. client->stop();
  10554. t.join();
  10555. // Reset client after thread has finished
  10556. client.reset();
  10557. }
  10558. }
  10559. TEST(HeaderSmugglingTest, ChunkedTrailerHeadersMerged) {
  10560. Server svr;
  10561. svr.Get("/", [](const Request &req, Response &res) {
  10562. EXPECT_EQ(2U, req.trailers.size());
  10563. EXPECT_FALSE(req.has_trailer("[invalid key...]"));
  10564. // Denied
  10565. EXPECT_FALSE(req.has_trailer("Content-Length"));
  10566. EXPECT_FALSE(req.has_trailer("X-Forwarded-For"));
  10567. // Accepted
  10568. EXPECT_TRUE(req.has_trailer("X-Hello"));
  10569. EXPECT_EQ(req.get_trailer_value("X-Hello"), "hello");
  10570. EXPECT_TRUE(req.has_trailer("X-World"));
  10571. EXPECT_EQ(req.get_trailer_value("X-World"), "world");
  10572. res.set_content("ok", "text/plain");
  10573. });
  10574. thread t = thread([&]() { svr.listen(HOST, PORT); });
  10575. auto se = detail::scope_exit([&] {
  10576. svr.stop();
  10577. t.join();
  10578. ASSERT_FALSE(svr.is_running());
  10579. });
  10580. svr.wait_until_ready();
  10581. const std::string req = "GET / HTTP/1.1\r\n"
  10582. "Transfer-Encoding: chunked\r\n"
  10583. "Trailer: X-Hello, X-World, X-AAA, X-BBB\r\n"
  10584. "\r\n"
  10585. "0\r\n"
  10586. "Content-Length: 10\r\n"
  10587. "Host: internal.local\r\n"
  10588. "Content-Type: malicious/content\r\n"
  10589. "Cookie: any\r\n"
  10590. "Set-Cookie: any\r\n"
  10591. "X-Forwarded-For: attacker.com\r\n"
  10592. "X-Real-Ip: 1.1.1.1\r\n"
  10593. "X-Hello: hello\r\n"
  10594. "X-World: world\r\n"
  10595. "\r\n";
  10596. std::string res;
  10597. ASSERT_TRUE(send_request(1, req, &res));
  10598. }
  10599. TEST(ForwardedHeadersTest, NoProxiesSetting) {
  10600. Server svr;
  10601. std::string observed_remote_addr;
  10602. std::string observed_xff;
  10603. svr.Get("/ip", [&](const Request &req, Response &res) {
  10604. observed_remote_addr = req.remote_addr;
  10605. observed_xff = req.get_header_value("X-Forwarded-For");
  10606. res.set_content("ok", "text/plain");
  10607. });
  10608. thread t = thread([&]() { svr.listen(HOST, PORT); });
  10609. auto se = detail::scope_exit([&] {
  10610. svr.stop();
  10611. t.join();
  10612. ASSERT_FALSE(svr.is_running());
  10613. });
  10614. svr.wait_until_ready();
  10615. Client cli(HOST, PORT);
  10616. auto res = cli.Get("/ip", {{"X-Forwarded-For", "203.0.113.66"}});
  10617. ASSERT_TRUE(res);
  10618. EXPECT_EQ(StatusCode::OK_200, res->status);
  10619. EXPECT_EQ(observed_xff, "203.0.113.66");
  10620. EXPECT_TRUE(observed_remote_addr == "::1" ||
  10621. observed_remote_addr == "127.0.0.1");
  10622. }
  10623. TEST(ForwardedHeadersTest, NoForwardedHeaders) {
  10624. Server svr;
  10625. svr.set_trusted_proxies({"203.0.113.66"});
  10626. std::string observed_remote_addr;
  10627. std::string observed_xff;
  10628. svr.Get("/ip", [&](const Request &req, Response &res) {
  10629. observed_remote_addr = req.remote_addr;
  10630. observed_xff = req.get_header_value("X-Forwarded-For");
  10631. res.set_content("ok", "text/plain");
  10632. });
  10633. thread t = thread([&]() { svr.listen(HOST, PORT); });
  10634. auto se = detail::scope_exit([&] {
  10635. svr.stop();
  10636. t.join();
  10637. ASSERT_FALSE(svr.is_running());
  10638. });
  10639. svr.wait_until_ready();
  10640. Client cli(HOST, PORT);
  10641. auto res = cli.Get("/ip");
  10642. ASSERT_TRUE(res);
  10643. EXPECT_EQ(StatusCode::OK_200, res->status);
  10644. EXPECT_EQ(observed_xff, "");
  10645. EXPECT_TRUE(observed_remote_addr == "::1" ||
  10646. observed_remote_addr == "127.0.0.1");
  10647. }
  10648. TEST(ForwardedHeadersTest, SingleTrustedProxy_UsesIPBeforeTrusted) {
  10649. Server svr;
  10650. svr.set_trusted_proxies({"203.0.113.66"});
  10651. std::string observed_remote_addr;
  10652. std::string observed_xff;
  10653. svr.Get("/ip", [&](const Request &req, Response &res) {
  10654. observed_remote_addr = req.remote_addr;
  10655. observed_xff = req.get_header_value("X-Forwarded-For");
  10656. res.set_content("ok", "text/plain");
  10657. });
  10658. thread t = thread([&]() { svr.listen(HOST, PORT); });
  10659. auto se = detail::scope_exit([&] {
  10660. svr.stop();
  10661. t.join();
  10662. ASSERT_FALSE(svr.is_running());
  10663. });
  10664. svr.wait_until_ready();
  10665. Client cli(HOST, PORT);
  10666. auto res =
  10667. cli.Get("/ip", {{"X-Forwarded-For", "198.51.100.23, 203.0.113.66"}});
  10668. ASSERT_TRUE(res);
  10669. EXPECT_EQ(StatusCode::OK_200, res->status);
  10670. EXPECT_EQ(observed_xff, "198.51.100.23, 203.0.113.66");
  10671. EXPECT_EQ(observed_remote_addr, "198.51.100.23");
  10672. }
  10673. TEST(ForwardedHeadersTest, MultipleTrustedProxies_UsesClientIP) {
  10674. Server svr;
  10675. svr.set_trusted_proxies({"203.0.113.66", "192.0.2.45"});
  10676. std::string observed_remote_addr;
  10677. std::string observed_xff;
  10678. svr.Get("/ip", [&](const Request &req, Response &res) {
  10679. observed_remote_addr = req.remote_addr;
  10680. observed_xff = req.get_header_value("X-Forwarded-For");
  10681. res.set_content("ok", "text/plain");
  10682. });
  10683. thread t = thread([&]() { svr.listen(HOST, PORT); });
  10684. auto se = detail::scope_exit([&] {
  10685. svr.stop();
  10686. t.join();
  10687. ASSERT_FALSE(svr.is_running());
  10688. });
  10689. svr.wait_until_ready();
  10690. Client cli(HOST, PORT);
  10691. auto res = cli.Get(
  10692. "/ip", {{"X-Forwarded-For", "198.51.100.23, 203.0.113.66, 192.0.2.45"}});
  10693. ASSERT_TRUE(res);
  10694. EXPECT_EQ(StatusCode::OK_200, res->status);
  10695. EXPECT_EQ(observed_xff, "198.51.100.23, 203.0.113.66, 192.0.2.45");
  10696. EXPECT_EQ(observed_remote_addr, "198.51.100.23");
  10697. }
  10698. TEST(ForwardedHeadersTest, TrustedProxyNotInHeader_UsesFirstFromXFF) {
  10699. Server svr;
  10700. svr.set_trusted_proxies({"192.0.2.45"});
  10701. std::string observed_remote_addr;
  10702. std::string observed_xff;
  10703. svr.Get("/ip", [&](const Request &req, Response &res) {
  10704. observed_remote_addr = req.remote_addr;
  10705. observed_xff = req.get_header_value("X-Forwarded-For");
  10706. res.set_content("ok", "text/plain");
  10707. });
  10708. thread t = thread([&]() { svr.listen(HOST, PORT); });
  10709. auto se = detail::scope_exit([&] {
  10710. svr.stop();
  10711. t.join();
  10712. ASSERT_FALSE(svr.is_running());
  10713. });
  10714. svr.wait_until_ready();
  10715. Client cli(HOST, PORT);
  10716. auto res =
  10717. cli.Get("/ip", {{"X-Forwarded-For", "198.51.100.23, 198.51.100.24"}});
  10718. ASSERT_TRUE(res);
  10719. EXPECT_EQ(StatusCode::OK_200, res->status);
  10720. EXPECT_EQ(observed_xff, "198.51.100.23, 198.51.100.24");
  10721. EXPECT_EQ(observed_remote_addr, "198.51.100.23");
  10722. }
  10723. TEST(ForwardedHeadersTest, LastHopTrusted_SelectsImmediateLeftIP) {
  10724. Server svr;
  10725. svr.set_trusted_proxies({"192.0.2.45"});
  10726. std::string observed_remote_addr;
  10727. std::string observed_xff;
  10728. svr.Get("/ip", [&](const Request &req, Response &res) {
  10729. observed_remote_addr = req.remote_addr;
  10730. observed_xff = req.get_header_value("X-Forwarded-For");
  10731. res.set_content("ok", "text/plain");
  10732. });
  10733. thread t = thread([&]() { svr.listen(HOST, PORT); });
  10734. auto se = detail::scope_exit([&] {
  10735. svr.stop();
  10736. t.join();
  10737. ASSERT_FALSE(svr.is_running());
  10738. });
  10739. svr.wait_until_ready();
  10740. Client cli(HOST, PORT);
  10741. auto res = cli.Get(
  10742. "/ip", {{"X-Forwarded-For", "198.51.100.23, 203.0.113.66, 192.0.2.45"}});
  10743. ASSERT_TRUE(res);
  10744. EXPECT_EQ(StatusCode::OK_200, res->status);
  10745. EXPECT_EQ(observed_xff, "198.51.100.23, 203.0.113.66, 192.0.2.45");
  10746. EXPECT_EQ(observed_remote_addr, "203.0.113.66");
  10747. }
  10748. TEST(ForwardedHeadersTest, HandlesWhitespaceAroundIPs) {
  10749. Server svr;
  10750. svr.set_trusted_proxies({"192.0.2.45"});
  10751. std::string observed_remote_addr;
  10752. std::string observed_xff;
  10753. svr.Get("/ip", [&](const Request &req, Response &res) {
  10754. observed_remote_addr = req.remote_addr;
  10755. observed_xff = req.get_header_value("X-Forwarded-For");
  10756. res.set_content("ok", "text/plain");
  10757. });
  10758. thread t = thread([&]() { svr.listen(HOST, PORT); });
  10759. auto se = detail::scope_exit([&] {
  10760. svr.stop();
  10761. t.join();
  10762. ASSERT_FALSE(svr.is_running());
  10763. });
  10764. svr.wait_until_ready();
  10765. std::string raw_req =
  10766. "GET /ip HTTP/1.1\r\n"
  10767. "Host: localhost\r\n"
  10768. "X-Forwarded-For: 198.51.100.23 , 203.0.113.66 , 192.0.2.45 \r\n"
  10769. "Connection: close\r\n"
  10770. "\r\n";
  10771. std::string out;
  10772. ASSERT_TRUE(send_request(5, raw_req, &out));
  10773. EXPECT_EQ("HTTP/1.1 200 OK", out.substr(0, 15));
  10774. // Header parser trims surrounding whitespace of the header value
  10775. EXPECT_EQ(observed_xff, "198.51.100.23 , 203.0.113.66 , 192.0.2.45");
  10776. EXPECT_EQ(observed_remote_addr, "203.0.113.66");
  10777. }
  10778. #ifndef _WIN32
  10779. TEST(ServerRequestParsingTest, RequestWithoutContentLengthOrTransferEncoding) {
  10780. Server svr;
  10781. svr.Post("/post", [&](const Request &req, Response &res) {
  10782. res.set_content(req.body, "text/plain");
  10783. });
  10784. svr.Put("/put", [&](const Request &req, Response &res) {
  10785. res.set_content(req.body, "text/plain");
  10786. });
  10787. svr.Patch("/patch", [&](const Request &req, Response &res) {
  10788. res.set_content(req.body, "text/plain");
  10789. });
  10790. svr.Delete("/delete", [&](const Request &req, Response &res) {
  10791. res.set_content(req.body, "text/plain");
  10792. });
  10793. thread t = thread([&]() { svr.listen(HOST, PORT); });
  10794. auto se = detail::scope_exit([&] {
  10795. svr.stop();
  10796. t.join();
  10797. ASSERT_FALSE(svr.is_running());
  10798. });
  10799. svr.wait_until_ready();
  10800. std::string resp;
  10801. // POST without Content-Length
  10802. ASSERT_TRUE(send_request(5,
  10803. "POST /post HTTP/1.1\r\n"
  10804. "Host: localhost\r\n"
  10805. "Connection: close\r\n"
  10806. "\r\n",
  10807. &resp));
  10808. EXPECT_TRUE(resp.find("HTTP/1.1 200 OK") == 0);
  10809. // PUT without Content-Length
  10810. resp.clear();
  10811. ASSERT_TRUE(send_request(5,
  10812. "PUT /put HTTP/1.1\r\n"
  10813. "Host: localhost\r\n"
  10814. "Connection: close\r\n"
  10815. "\r\n",
  10816. &resp));
  10817. EXPECT_TRUE(resp.find("HTTP/1.1 200 OK") == 0);
  10818. // PATCH without Content-Length
  10819. resp.clear();
  10820. ASSERT_TRUE(send_request(5,
  10821. "PATCH /patch HTTP/1.1\r\n"
  10822. "Host: localhost\r\n"
  10823. "Connection: close\r\n"
  10824. "\r\n",
  10825. &resp));
  10826. EXPECT_TRUE(resp.find("HTTP/1.1 200 OK") == 0);
  10827. // DELETE without Content-Length
  10828. resp.clear();
  10829. ASSERT_TRUE(send_request(5,
  10830. "DELETE /delete HTTP/1.1\r\n"
  10831. "Host: localhost\r\n"
  10832. "Connection: close\r\n"
  10833. "\r\n",
  10834. &resp));
  10835. EXPECT_TRUE(resp.find("HTTP/1.1 200 OK") == 0);
  10836. }
  10837. #endif
  10838. //==============================================================================
  10839. // open_stream() Tests
  10840. //==============================================================================
  10841. inline std::string read_all(ClientImpl::StreamHandle &handle) {
  10842. std::string result;
  10843. char buf[8192];
  10844. ssize_t n;
  10845. while ((n = handle.read(buf, sizeof(buf))) > 0) {
  10846. result.append(buf, static_cast<size_t>(n));
  10847. }
  10848. return result;
  10849. }
  10850. // Mock stream for unit tests
  10851. class MockStream : public Stream {
  10852. public:
  10853. std::string data;
  10854. size_t pos = 0;
  10855. ssize_t error_after = -1; // -1 = no error
  10856. explicit MockStream(const std::string &d, ssize_t err = -1)
  10857. : data(d), error_after(err) {}
  10858. bool is_readable() const override { return true; }
  10859. bool wait_readable() const override { return true; }
  10860. bool wait_writable() const override { return true; }
  10861. ssize_t read(char *ptr, size_t size) override {
  10862. if (error_after >= 0 && pos >= static_cast<size_t>(error_after)) return -1;
  10863. if (pos >= data.size()) return 0;
  10864. size_t limit =
  10865. error_after >= 0 ? static_cast<size_t>(error_after) : data.size();
  10866. size_t to_read = std::min(size, std::min(data.size() - pos, limit - pos));
  10867. std::memcpy(ptr, data.data() + pos, to_read);
  10868. pos += to_read;
  10869. return static_cast<ssize_t>(to_read);
  10870. }
  10871. ssize_t write(const char *, size_t) override { return -1; }
  10872. void get_remote_ip_and_port(std::string &ip, int &port) const override {
  10873. ip = "127.0.0.1";
  10874. port = 0;
  10875. }
  10876. void get_local_ip_and_port(std::string &ip, int &port) const override {
  10877. ip = "127.0.0.1";
  10878. port = 0;
  10879. }
  10880. socket_t socket() const override { return INVALID_SOCKET; }
  10881. time_t duration() const override { return 0; }
  10882. };
  10883. TEST(StreamHandleTest, Basic) {
  10884. ClientImpl::StreamHandle handle;
  10885. EXPECT_FALSE(handle.is_valid());
  10886. handle.response = detail::make_unique<Response>();
  10887. handle.error = Error::Connection;
  10888. EXPECT_FALSE(handle.is_valid());
  10889. handle.error = Error::Success;
  10890. EXPECT_TRUE(handle.is_valid());
  10891. }
  10892. TEST(BodyReaderTest, Basic) {
  10893. MockStream stream("Hello, World!");
  10894. detail::BodyReader reader;
  10895. reader.stream = &stream;
  10896. reader.content_length = 13;
  10897. char buf[32];
  10898. EXPECT_EQ(13, reader.read(buf, sizeof(buf)));
  10899. EXPECT_EQ(0, reader.read(buf, sizeof(buf)));
  10900. EXPECT_TRUE(reader.eof);
  10901. }
  10902. TEST(BodyReaderTest, NoStream) {
  10903. detail::BodyReader reader;
  10904. char buf[32];
  10905. EXPECT_EQ(-1, reader.read(buf, sizeof(buf)));
  10906. EXPECT_EQ(Error::Connection, reader.last_error);
  10907. }
  10908. TEST(BodyReaderTest, Error) {
  10909. MockStream stream("Hello, World!", 5);
  10910. detail::BodyReader reader;
  10911. reader.stream = &stream;
  10912. reader.content_length = 13;
  10913. char buf[32];
  10914. EXPECT_EQ(5, reader.read(buf, sizeof(buf)));
  10915. EXPECT_EQ(-1, reader.read(buf, sizeof(buf)));
  10916. EXPECT_EQ(Error::Read, reader.last_error);
  10917. }
  10918. // Memory buffer mode removed: StreamHandle reads only from socket streams.
  10919. // Mock-based StreamHandle tests relying on private internals are removed.
  10920. class OpenStreamTest : public ::testing::Test {
  10921. protected:
  10922. void SetUp() override {
  10923. svr_.Get("/hello", [](const Request &, Response &res) {
  10924. res.set_content("Hello World!", "text/plain");
  10925. });
  10926. svr_.Get("/large", [](const Request &, Response &res) {
  10927. res.set_content(std::string(10000, 'X'), "text/plain");
  10928. });
  10929. svr_.Get("/chunked", [](const Request &, Response &res) {
  10930. res.set_chunked_content_provider("text/plain",
  10931. [](size_t offset, DataSink &sink) {
  10932. if (offset < 15) {
  10933. sink.write("chunk", 5);
  10934. return true;
  10935. }
  10936. sink.done();
  10937. return true;
  10938. });
  10939. });
  10940. svr_.Get("/compressible", [](const Request &, Response &res) {
  10941. res.set_chunked_content_provider("text/plain", [](size_t offset,
  10942. DataSink &sink) {
  10943. if (offset < 100 * 1024) {
  10944. std::string chunk(std::min(size_t(8192), 100 * 1024 - offset), 'A');
  10945. sink.write(chunk.data(), chunk.size());
  10946. return true;
  10947. }
  10948. sink.done();
  10949. return true;
  10950. });
  10951. });
  10952. svr_.Get("/streamed-chunked-with-prohibited-trailer",
  10953. [](const Request & /*req*/, Response &res) {
  10954. auto i = new int(0);
  10955. res.set_header("Trailer", "Content-Length, X-Allowed");
  10956. res.set_chunked_content_provider(
  10957. "text/plain",
  10958. [i](size_t /*offset*/, DataSink &sink) {
  10959. switch (*i) {
  10960. case 0: sink.os << "123"; break;
  10961. case 1: sink.os << "456"; break;
  10962. case 2: sink.os << "789"; break;
  10963. case 3: {
  10964. sink.done_with_trailer(
  10965. {{"Content-Length", "5"}, {"X-Allowed", "yes"}});
  10966. } break;
  10967. }
  10968. (*i)++;
  10969. return true;
  10970. },
  10971. [i](bool success) {
  10972. EXPECT_TRUE(success);
  10973. delete i;
  10974. });
  10975. });
  10976. // Echo headers endpoint for header-related tests
  10977. svr_.Get("/echo-headers", [](const Request &req, Response &res) {
  10978. std::string body;
  10979. for (const auto &h : req.headers) {
  10980. body.append(h.first);
  10981. body.push_back(':');
  10982. body.append(h.second);
  10983. body.push_back('\n');
  10984. }
  10985. res.set_content(body, "text/plain");
  10986. });
  10987. svr_.Post("/echo-headers", [](const Request &req, Response &res) {
  10988. std::string body;
  10989. for (const auto &h : req.headers) {
  10990. body.append(h.first);
  10991. body.push_back(':');
  10992. body.append(h.second);
  10993. body.push_back('\n');
  10994. }
  10995. res.set_content(body, "text/plain");
  10996. });
  10997. port_ = svr_.bind_to_any_port("127.0.0.1");
  10998. thread_ = std::thread([this]() { svr_.listen_after_bind(); });
  10999. svr_.wait_until_ready();
  11000. }
  11001. void TearDown() override {
  11002. svr_.stop();
  11003. if (thread_.joinable()) thread_.join();
  11004. }
  11005. Server svr_;
  11006. std::thread thread_;
  11007. int port_ = 0;
  11008. };
  11009. TEST_F(OpenStreamTest, Basic) {
  11010. Client cli("127.0.0.1", port_);
  11011. auto handle = cli.open_stream("GET", "/hello");
  11012. EXPECT_TRUE(handle.is_valid());
  11013. EXPECT_EQ("Hello World!", read_all(handle));
  11014. }
  11015. TEST_F(OpenStreamTest, SmallBuffer) {
  11016. Client cli("127.0.0.1", port_);
  11017. auto handle = cli.open_stream("GET", "/hello");
  11018. std::string result;
  11019. char buf[4];
  11020. ssize_t n;
  11021. while ((n = handle.read(buf, sizeof(buf))) > 0)
  11022. result.append(buf, static_cast<size_t>(n));
  11023. EXPECT_EQ("Hello World!", result);
  11024. }
  11025. TEST_F(OpenStreamTest, DefaultHeaders) {
  11026. Client cli("127.0.0.1", port_);
  11027. // open_stream GET should include Host, User-Agent and Accept-Encoding
  11028. {
  11029. auto handle = cli.open_stream("GET", "/echo-headers");
  11030. ASSERT_TRUE(handle.is_valid());
  11031. auto body = read_all(handle);
  11032. EXPECT_NE(body.find("Host:127.0.0.1:" + std::to_string(port_)),
  11033. std::string::npos);
  11034. EXPECT_NE(body.find("User-Agent:cpp-httplib/" CPPHTTPLIB_VERSION),
  11035. std::string::npos);
  11036. EXPECT_NE(body.find("Accept-Encoding:"), std::string::npos);
  11037. }
  11038. // open_stream POST with body and no explicit content_type should NOT add
  11039. // text/plain Content-Type (behavior differs from non-streaming path), but
  11040. // should include Content-Length
  11041. {
  11042. auto handle = cli.open_stream("POST", "/echo-headers", {}, {}, "hello", "");
  11043. ASSERT_TRUE(handle.is_valid());
  11044. auto body = read_all(handle);
  11045. EXPECT_EQ(body.find("Content-Type: text/plain"), std::string::npos);
  11046. EXPECT_NE(body.find("Content-Length:5"), std::string::npos);
  11047. }
  11048. // open_stream POST with explicit Content-Type should preserve it
  11049. {
  11050. auto handle = cli.open_stream("POST", "/echo-headers", {},
  11051. {{"Content-Type", "application/custom"}},
  11052. "{}", "application/custom");
  11053. ASSERT_TRUE(handle.is_valid());
  11054. auto body = read_all(handle);
  11055. EXPECT_NE(body.find("Content-Type:application/custom"), std::string::npos);
  11056. }
  11057. // User-specified User-Agent must not be overwritten for stream API
  11058. {
  11059. auto handle = cli.open_stream("GET", "/echo-headers", {},
  11060. {{"User-Agent", "MyAgent/1.2"}});
  11061. ASSERT_TRUE(handle.is_valid());
  11062. auto body = read_all(handle);
  11063. EXPECT_NE(body.find("User-Agent:MyAgent/1.2"), std::string::npos);
  11064. }
  11065. }
  11066. TEST_F(OpenStreamTest, Large) {
  11067. Client cli("127.0.0.1", port_);
  11068. auto handle = cli.open_stream("GET", "/large");
  11069. EXPECT_EQ(10000u, read_all(handle).size());
  11070. }
  11071. TEST_F(OpenStreamTest, ConnectionError) {
  11072. Client cli("127.0.0.1", 9999);
  11073. auto handle = cli.open_stream("GET", "/hello");
  11074. EXPECT_FALSE(handle.is_valid());
  11075. }
  11076. TEST_F(OpenStreamTest, Chunked) {
  11077. Client cli("127.0.0.1", port_);
  11078. auto handle = cli.open_stream("GET", "/chunked");
  11079. EXPECT_TRUE(handle.response && handle.response->get_header_value(
  11080. "Transfer-Encoding") == "chunked");
  11081. EXPECT_EQ("chunkchunkchunk", read_all(handle));
  11082. }
  11083. TEST_F(OpenStreamTest, ProhibitedTrailersAreIgnored_Stream) {
  11084. Client cli("127.0.0.1", port_);
  11085. auto handle =
  11086. cli.open_stream("GET", "/streamed-chunked-with-prohibited-trailer");
  11087. ASSERT_TRUE(handle.is_valid());
  11088. // Consume body to allow trailers to be received/parsed
  11089. auto body = read_all(handle);
  11090. // Explicitly parse trailers (ensure trailers are available for assertion)
  11091. handle.parse_trailers_if_needed();
  11092. EXPECT_EQ(std::string("123456789"), body);
  11093. // The response should include a Trailer header declaring both names
  11094. ASSERT_TRUE(handle.response);
  11095. EXPECT_TRUE(handle.response->has_header("Trailer"));
  11096. EXPECT_EQ(std::string("Content-Length, X-Allowed"),
  11097. handle.response->get_header_value("Trailer"));
  11098. // Prohibited trailer must not be present
  11099. EXPECT_FALSE(handle.response->has_trailer("Content-Length"));
  11100. // Allowed trailer should be present
  11101. EXPECT_TRUE(handle.response->has_trailer("X-Allowed"));
  11102. EXPECT_EQ(std::string("yes"),
  11103. handle.response->get_trailer_value("X-Allowed"));
  11104. // Verify trailers are NOT present as regular headers
  11105. EXPECT_EQ(std::string(""),
  11106. handle.response->get_header_value("Content-Length"));
  11107. EXPECT_EQ(std::string(""), handle.response->get_header_value("X-Allowed"));
  11108. }
  11109. #ifdef CPPHTTPLIB_ZLIB_SUPPORT
  11110. TEST_F(OpenStreamTest, Gzip) {
  11111. Client cli("127.0.0.1", port_);
  11112. auto handle = cli.open_stream("GET", "/compressible", {},
  11113. {{"Accept-Encoding", "gzip"}});
  11114. EXPECT_EQ("gzip", handle.response->get_header_value("Content-Encoding"));
  11115. EXPECT_EQ(100u * 1024u, read_all(handle).size());
  11116. }
  11117. #endif
  11118. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  11119. TEST_F(OpenStreamTest, Brotli) {
  11120. Client cli("127.0.0.1", port_);
  11121. auto handle =
  11122. cli.open_stream("GET", "/compressible", {}, {{"Accept-Encoding", "br"}});
  11123. EXPECT_EQ("br", handle.response->get_header_value("Content-Encoding"));
  11124. EXPECT_EQ(100u * 1024u, read_all(handle).size());
  11125. }
  11126. #endif
  11127. #ifdef CPPHTTPLIB_ZSTD_SUPPORT
  11128. TEST_F(OpenStreamTest, Zstd) {
  11129. Client cli("127.0.0.1", port_);
  11130. auto handle = cli.open_stream("GET", "/compressible", {},
  11131. {{"Accept-Encoding", "zstd"}});
  11132. EXPECT_EQ("zstd", handle.response->get_header_value("Content-Encoding"));
  11133. EXPECT_EQ(100u * 1024u, read_all(handle).size());
  11134. }
  11135. #endif
  11136. #ifdef CPPHTTPLIB_SSL_ENABLED
  11137. class SSLOpenStreamTest : public ::testing::Test {
  11138. protected:
  11139. SSLOpenStreamTest() : svr_("cert.pem", "key.pem") {}
  11140. void SetUp() override {
  11141. svr_.Get("/hello", [](const Request &, Response &res) {
  11142. res.set_content("Hello SSL World!", "text/plain");
  11143. });
  11144. svr_.Get("/chunked", [](const Request &, Response &res) {
  11145. res.set_chunked_content_provider("text/plain",
  11146. [](size_t offset, DataSink &sink) {
  11147. if (offset < 15) {
  11148. sink.write("chunk", 5);
  11149. return true;
  11150. }
  11151. sink.done();
  11152. return true;
  11153. });
  11154. });
  11155. svr_.Post("/echo", [](const Request &req, Response &res) {
  11156. res.set_content(req.body, req.get_header_value("Content-Type"));
  11157. });
  11158. svr_.Post("/chunked-response", [](const Request &req, Response &res) {
  11159. std::string body = req.body;
  11160. res.set_chunked_content_provider(
  11161. "text/plain", [body](size_t offset, DataSink &sink) {
  11162. if (offset < body.size()) {
  11163. sink.write(body.data() + offset, body.size() - offset);
  11164. }
  11165. sink.done();
  11166. return true;
  11167. });
  11168. });
  11169. port_ = svr_.bind_to_any_port("127.0.0.1");
  11170. thread_ = std::thread([this]() { svr_.listen_after_bind(); });
  11171. svr_.wait_until_ready();
  11172. }
  11173. void TearDown() override {
  11174. svr_.stop();
  11175. if (thread_.joinable()) thread_.join();
  11176. }
  11177. SSLServer svr_;
  11178. std::thread thread_;
  11179. int port_ = 0;
  11180. };
  11181. TEST_F(SSLOpenStreamTest, Basic) {
  11182. SSLClient cli("127.0.0.1", port_);
  11183. cli.enable_server_certificate_verification(false);
  11184. auto handle = cli.open_stream("GET", "/hello");
  11185. ASSERT_TRUE(handle.is_valid());
  11186. EXPECT_EQ("Hello SSL World!", read_all(handle));
  11187. }
  11188. TEST_F(SSLOpenStreamTest, Chunked) {
  11189. SSLClient cli("127.0.0.1", port_);
  11190. cli.enable_server_certificate_verification(false);
  11191. auto handle = cli.open_stream("GET", "/chunked");
  11192. ASSERT_TRUE(handle.is_valid()) << "Error: " << static_cast<int>(handle.error);
  11193. EXPECT_TRUE(handle.response && handle.response->get_header_value(
  11194. "Transfer-Encoding") == "chunked");
  11195. auto body = read_all(handle);
  11196. EXPECT_EQ("chunkchunkchunk", body);
  11197. }
  11198. TEST_F(SSLOpenStreamTest, Post) {
  11199. SSLClient cli("127.0.0.1", port_);
  11200. cli.enable_server_certificate_verification(false);
  11201. auto handle =
  11202. cli.open_stream("POST", "/echo", {}, {}, "Hello SSL POST", "text/plain");
  11203. ASSERT_TRUE(handle.is_valid()) << "Error: " << static_cast<int>(handle.error);
  11204. EXPECT_EQ(200, handle.response->status);
  11205. auto body = read_all(handle);
  11206. EXPECT_EQ("Hello SSL POST", body);
  11207. }
  11208. TEST_F(SSLOpenStreamTest, PostChunked) {
  11209. SSLClient cli("127.0.0.1", port_);
  11210. cli.enable_server_certificate_verification(false);
  11211. auto handle = cli.open_stream("POST", "/chunked-response", {}, {},
  11212. "Chunked SSL Data", "text/plain");
  11213. ASSERT_TRUE(handle.is_valid());
  11214. EXPECT_EQ(200, handle.response->status);
  11215. auto body = read_all(handle);
  11216. EXPECT_EQ("Chunked SSL Data", body);
  11217. }
  11218. #endif // CPPHTTPLIB_SSL_ENABLED
  11219. //==============================================================================
  11220. // Parity Tests: ensure streaming and non-streaming APIs produce identical
  11221. // results for various scenarios.
  11222. //==============================================================================
  11223. TEST(ParityTest, GetVsOpenStream) {
  11224. Server svr;
  11225. const std::string path = "/parity";
  11226. const std::string content = "Parity test content: hello world";
  11227. svr.Get(path, [&](const Request & /*req*/, Response &res) {
  11228. res.set_content(content, "text/plain");
  11229. });
  11230. auto t = std::thread([&]() { svr.listen(HOST, PORT); });
  11231. auto se = detail::scope_exit([&] {
  11232. svr.stop();
  11233. t.join();
  11234. ASSERT_FALSE(svr.is_running());
  11235. });
  11236. svr.wait_until_ready();
  11237. Client cli(HOST, PORT);
  11238. // Non-stream path
  11239. auto r1 = cli.Get(path);
  11240. ASSERT_TRUE(r1);
  11241. EXPECT_EQ(StatusCode::OK_200, r1->status);
  11242. // Stream path
  11243. auto h = cli.open_stream("GET", path);
  11244. ASSERT_TRUE(h.is_valid());
  11245. EXPECT_EQ(r1->body, read_all(h));
  11246. }
  11247. // Helper to compress data with provided compressor type T
  11248. template <typename Compressor>
  11249. static std::string compress_payload_for_parity(const std::string &in) {
  11250. std::string out;
  11251. Compressor compressor;
  11252. bool ok = compressor.compress(in.data(), in.size(), /*last=*/true,
  11253. [&](const char *data, size_t n) {
  11254. out.append(data, n);
  11255. return true;
  11256. });
  11257. EXPECT_TRUE(ok);
  11258. return out;
  11259. }
  11260. // Helper function for compression parity tests
  11261. template <typename Compressor>
  11262. static void test_compression_parity(const std::string &original,
  11263. const std::string &path,
  11264. const std::string &encoding) {
  11265. const std::string compressed =
  11266. compress_payload_for_parity<Compressor>(original);
  11267. Server svr;
  11268. svr.Get(path, [&](const Request & /*req*/, Response &res) {
  11269. res.set_content(compressed, "application/octet-stream");
  11270. res.set_header("Content-Encoding", encoding);
  11271. });
  11272. auto t = std::thread([&] { svr.listen(HOST, PORT); });
  11273. auto se = detail::scope_exit([&] {
  11274. svr.stop();
  11275. t.join();
  11276. ASSERT_FALSE(svr.is_running());
  11277. });
  11278. svr.wait_until_ready();
  11279. Client cli(HOST, PORT);
  11280. // Non-streaming
  11281. {
  11282. auto res = cli.Get(path);
  11283. ASSERT_TRUE(res);
  11284. EXPECT_EQ(StatusCode::OK_200, res->status);
  11285. EXPECT_EQ(original, res->body);
  11286. }
  11287. // Streaming
  11288. {
  11289. auto h = cli.open_stream("GET", path);
  11290. ASSERT_TRUE(h.is_valid());
  11291. EXPECT_EQ(original, read_all(h));
  11292. }
  11293. }
  11294. #ifdef CPPHTTPLIB_ZLIB_SUPPORT
  11295. TEST(ParityTest, Gzip) {
  11296. test_compression_parity<detail::gzip_compressor>(
  11297. "The quick brown fox jumps over the lazy dog", "/parity-gzip", "gzip");
  11298. }
  11299. #endif
  11300. #ifdef CPPHTTPLIB_BROTLI_SUPPORT
  11301. TEST(ParityTest, Brotli) {
  11302. test_compression_parity<detail::brotli_compressor>(
  11303. "Hello, brotli parity test payload", "/parity-br", "br");
  11304. }
  11305. #endif
  11306. #ifdef CPPHTTPLIB_ZSTD_SUPPORT
  11307. TEST(ParityTest, Zstd) {
  11308. test_compression_parity<detail::zstd_compressor>(
  11309. "Zstandard parity test payload", "/parity-zstd", "zstd");
  11310. }
  11311. #endif
  11312. //==============================================================================
  11313. // New Stream API Tests
  11314. //==============================================================================
  11315. inline std::string read_body(httplib::stream::Result &result) {
  11316. std::string body;
  11317. while (result.next()) {
  11318. body.append(result.data(), result.size());
  11319. }
  11320. return body;
  11321. }
  11322. TEST(ClientConnectionTest, Basic) {
  11323. httplib::ClientConnection conn;
  11324. EXPECT_FALSE(conn.is_open());
  11325. conn.sock = 1;
  11326. EXPECT_TRUE(conn.is_open());
  11327. httplib::ClientConnection conn2(std::move(conn));
  11328. EXPECT_EQ(INVALID_SOCKET, conn.sock);
  11329. conn2.sock = INVALID_SOCKET;
  11330. }
  11331. // Unified test server for all stream::* tests
  11332. class StreamApiTest : public ::testing::Test {
  11333. protected:
  11334. void SetUp() override {
  11335. svr_.Get("/hello", [](const httplib::Request &, httplib::Response &res) {
  11336. res.set_content("Hello World!", "text/plain");
  11337. });
  11338. svr_.Get("/echo-params",
  11339. [](const httplib::Request &req, httplib::Response &res) {
  11340. std::string r;
  11341. for (const auto &p : req.params) {
  11342. if (!r.empty()) r += "&";
  11343. r += p.first + "=" + p.second;
  11344. }
  11345. res.set_content(r, "text/plain");
  11346. });
  11347. svr_.Post("/echo", [](const httplib::Request &req, httplib::Response &res) {
  11348. res.set_content(req.body, req.get_header_value("Content-Type"));
  11349. });
  11350. svr_.Post("/echo-headers",
  11351. [](const httplib::Request &req, httplib::Response &res) {
  11352. std::string r;
  11353. for (const auto &h : req.headers)
  11354. r += h.first + ": " + h.second + "\n";
  11355. res.set_content(r, "text/plain");
  11356. });
  11357. svr_.Post("/echo-params",
  11358. [](const httplib::Request &req, httplib::Response &res) {
  11359. std::string r = "params:";
  11360. for (const auto &p : req.params)
  11361. r += p.first + "=" + p.second + ";";
  11362. res.set_content(r + " body:" + req.body, "text/plain");
  11363. });
  11364. svr_.Post("/large", [](const httplib::Request &, httplib::Response &res) {
  11365. res.set_content(std::string(100 * 1024, 'X'), "application/octet-stream");
  11366. });
  11367. svr_.Put("/echo", [](const httplib::Request &req, httplib::Response &res) {
  11368. res.set_content("PUT:" + req.body, "text/plain");
  11369. });
  11370. svr_.Patch("/echo",
  11371. [](const httplib::Request &req, httplib::Response &res) {
  11372. res.set_content("PATCH:" + req.body, "text/plain");
  11373. });
  11374. svr_.Delete(
  11375. "/resource", [](const httplib::Request &req, httplib::Response &res) {
  11376. res.set_content(req.body.empty() ? "Deleted" : "Deleted:" + req.body,
  11377. "text/plain");
  11378. });
  11379. svr_.Get("/head-test",
  11380. [](const httplib::Request &, httplib::Response &res) {
  11381. res.set_content("body for HEAD", "text/plain");
  11382. });
  11383. svr_.Options("/options",
  11384. [](const httplib::Request &, httplib::Response &res) {
  11385. res.set_header("Allow", "GET, POST, PUT, DELETE, OPTIONS");
  11386. });
  11387. thread_ = std::thread([this]() { svr_.listen(HOST, PORT); });
  11388. svr_.wait_until_ready();
  11389. }
  11390. void TearDown() override {
  11391. svr_.stop();
  11392. if (thread_.joinable()) thread_.join();
  11393. }
  11394. httplib::Server svr_;
  11395. std::thread thread_;
  11396. };
  11397. // stream::Get tests
  11398. TEST_F(StreamApiTest, GetBasic) {
  11399. httplib::Client cli(HOST, PORT);
  11400. auto result = httplib::stream::Get(cli, "/hello");
  11401. ASSERT_TRUE(result.is_valid());
  11402. EXPECT_EQ(200, result.status());
  11403. EXPECT_EQ("Hello World!", read_body(result));
  11404. }
  11405. TEST_F(StreamApiTest, GetWithParams) {
  11406. httplib::Client cli(HOST, PORT);
  11407. httplib::Params params{{"foo", "bar"}};
  11408. auto result = httplib::stream::Get(cli, "/echo-params", params);
  11409. ASSERT_TRUE(result.is_valid());
  11410. EXPECT_TRUE(read_body(result).find("foo=bar") != std::string::npos);
  11411. }
  11412. TEST_F(StreamApiTest, GetConnectionError) {
  11413. httplib::Client cli(HOST, 9999);
  11414. EXPECT_FALSE(httplib::stream::Get(cli, "/hello").is_valid());
  11415. }
  11416. TEST_F(StreamApiTest, Get404) {
  11417. httplib::Client cli(HOST, PORT);
  11418. auto result = httplib::stream::Get(cli, "/nonexistent");
  11419. EXPECT_TRUE(result.is_valid());
  11420. EXPECT_EQ(404, result.status());
  11421. }
  11422. // stream::Post tests
  11423. TEST_F(StreamApiTest, PostBasic) {
  11424. httplib::Client cli(HOST, PORT);
  11425. auto result = httplib::stream::Post(cli, "/echo", R"({"key":"value"})",
  11426. "application/json");
  11427. ASSERT_TRUE(result.is_valid());
  11428. EXPECT_EQ("application/json", result.get_header_value("Content-Type"));
  11429. EXPECT_EQ(R"({"key":"value"})", read_body(result));
  11430. }
  11431. TEST_F(StreamApiTest, PostWithHeaders) {
  11432. httplib::Client cli(HOST, PORT);
  11433. httplib::Headers headers{{"X-Custom", "value"}};
  11434. auto result = httplib::stream::Post(cli, "/echo-headers", headers, "body",
  11435. "text/plain");
  11436. EXPECT_TRUE(read_body(result).find("X-Custom: value") != std::string::npos);
  11437. }
  11438. TEST_F(StreamApiTest, PostWithParams) {
  11439. httplib::Client cli(HOST, PORT);
  11440. httplib::Params params{{"k", "v"}};
  11441. auto result =
  11442. httplib::stream::Post(cli, "/echo-params", params, "data", "text/plain");
  11443. auto body = read_body(result);
  11444. EXPECT_TRUE(body.find("k=v") != std::string::npos);
  11445. EXPECT_TRUE(body.find("body:data") != std::string::npos);
  11446. }
  11447. TEST_F(StreamApiTest, PostLarge) {
  11448. httplib::Client cli(HOST, PORT);
  11449. auto result = httplib::stream::Post(cli, "/large", "", "text/plain");
  11450. size_t total = 0;
  11451. while (result.next()) {
  11452. total += result.size();
  11453. }
  11454. EXPECT_EQ(100u * 1024u, total);
  11455. }
  11456. // stream::Put/Patch tests
  11457. TEST_F(StreamApiTest, PutAndPatch) {
  11458. httplib::Client cli(HOST, PORT);
  11459. auto put = httplib::stream::Put(cli, "/echo", "test", "text/plain");
  11460. EXPECT_EQ("PUT:test", read_body(put));
  11461. auto patch = httplib::stream::Patch(cli, "/echo", "test", "text/plain");
  11462. EXPECT_EQ("PATCH:test", read_body(patch));
  11463. }
  11464. // stream::Delete tests
  11465. TEST_F(StreamApiTest, Delete) {
  11466. httplib::Client cli(HOST, PORT);
  11467. auto del1 = httplib::stream::Delete(cli, "/resource");
  11468. EXPECT_EQ("Deleted", read_body(del1));
  11469. auto del2 = httplib::stream::Delete(cli, "/resource", "data", "text/plain");
  11470. EXPECT_EQ("Deleted:data", read_body(del2));
  11471. }
  11472. // stream::Head/Options tests
  11473. TEST_F(StreamApiTest, HeadAndOptions) {
  11474. httplib::Client cli(HOST, PORT);
  11475. auto head = httplib::stream::Head(cli, "/head-test");
  11476. EXPECT_TRUE(head.is_valid());
  11477. EXPECT_FALSE(head.get_header_value("Content-Length").empty());
  11478. auto opts = httplib::stream::Options(cli, "/options");
  11479. EXPECT_EQ("GET, POST, PUT, DELETE, OPTIONS", opts.get_header_value("Allow"));
  11480. }
  11481. // SSL stream::* tests
  11482. #ifdef CPPHTTPLIB_SSL_ENABLED
  11483. class SSLStreamApiTest : public ::testing::Test {
  11484. protected:
  11485. void SetUp() override {
  11486. svr_.Get("/hello", [](const httplib::Request &, httplib::Response &res) {
  11487. res.set_content("Hello SSL!", "text/plain");
  11488. });
  11489. svr_.Post("/echo", [](const httplib::Request &req, httplib::Response &res) {
  11490. res.set_content(req.body, "text/plain");
  11491. });
  11492. port_ = svr_.bind_to_any_port("127.0.0.1");
  11493. thread_ = std::thread([this]() { svr_.listen_after_bind(); });
  11494. svr_.wait_until_ready();
  11495. }
  11496. void TearDown() override {
  11497. svr_.stop();
  11498. if (thread_.joinable()) thread_.join();
  11499. }
  11500. httplib::SSLServer svr_{"cert.pem", "key.pem"};
  11501. std::thread thread_;
  11502. int port_ = 0;
  11503. };
  11504. TEST_F(SSLStreamApiTest, GetAndPost) {
  11505. httplib::SSLClient cli("127.0.0.1", port_);
  11506. cli.enable_server_certificate_verification(false);
  11507. auto get = httplib::stream::Get(cli, "/hello");
  11508. EXPECT_EQ("Hello SSL!", read_body(get));
  11509. auto post = httplib::stream::Post(cli, "/echo", "test", "text/plain");
  11510. EXPECT_EQ("test", read_body(post));
  11511. }
  11512. #endif
  11513. // Tests for Error::Timeout and Error::ConnectionClosed error types
  11514. // These errors are set in SocketStream/SSLSocketStream and propagated through
  11515. // BodyReader
  11516. TEST(ErrorHandlingTest, StreamReadTimeout) {
  11517. // Test that read timeout during streaming is detected
  11518. // Use a large content-length response where server delays mid-stream
  11519. Server svr;
  11520. svr.Get("/slow-stream", [](const Request &, Response &res) {
  11521. // Send a large response with delay in the middle
  11522. res.set_content_provider(
  11523. 1000, // content_length
  11524. "text/plain", [](size_t offset, size_t /*length*/, DataSink &sink) {
  11525. if (offset < 100) {
  11526. // Send first 100 bytes immediately
  11527. std::string data(100, 'A');
  11528. sink.write(data.c_str(), data.size());
  11529. return true;
  11530. }
  11531. // Then delay longer than client timeout
  11532. std::this_thread::sleep_for(std::chrono::seconds(3));
  11533. std::string data(900, 'B');
  11534. sink.write(data.c_str(), data.size());
  11535. return true;
  11536. });
  11537. });
  11538. auto port = 8091;
  11539. std::thread t([&]() { svr.listen("localhost", port); });
  11540. svr.wait_until_ready();
  11541. Client cli("localhost", port);
  11542. cli.set_read_timeout(1, 0); // 1 second timeout
  11543. auto handle = cli.open_stream("GET", "/slow-stream");
  11544. ASSERT_TRUE(handle.is_valid());
  11545. char buf[256];
  11546. ssize_t total = 0;
  11547. ssize_t n;
  11548. bool got_error = false;
  11549. while ((n = handle.read(buf, sizeof(buf))) > 0) {
  11550. total += n;
  11551. }
  11552. if (n < 0) {
  11553. got_error = true;
  11554. // Should be timeout or read error
  11555. EXPECT_TRUE(handle.get_read_error() == Error::Timeout ||
  11556. handle.get_read_error() == Error::Read)
  11557. << "Actual error: " << to_string(handle.get_read_error());
  11558. }
  11559. // Either we got an error, or we got less data than expected
  11560. EXPECT_TRUE(got_error || total < 1000)
  11561. << "Expected timeout but got all " << total << " bytes";
  11562. svr.stop();
  11563. t.join();
  11564. }
  11565. TEST(ErrorHandlingTest, StreamConnectionClosed) {
  11566. // Test connection closed detection via BodyReader
  11567. Server svr;
  11568. std::atomic<bool> close_now{false};
  11569. svr.Get("/will-close", [&](const Request &, Response &res) {
  11570. res.set_content_provider(
  11571. 10000, // Large content_length that we won't fully send
  11572. "text/plain", [&](size_t offset, size_t /*length*/, DataSink &sink) {
  11573. if (offset < 100) {
  11574. std::string data(100, 'X');
  11575. sink.write(data.c_str(), data.size());
  11576. return true;
  11577. }
  11578. // Wait for signal then abort
  11579. while (!close_now) {
  11580. std::this_thread::sleep_for(std::chrono::milliseconds(10));
  11581. }
  11582. return false; // Abort - server will close connection
  11583. });
  11584. });
  11585. auto port = 8092;
  11586. std::thread t([&]() { svr.listen("localhost", port); });
  11587. svr.wait_until_ready();
  11588. Client cli("localhost", port);
  11589. auto handle = cli.open_stream("GET", "/will-close");
  11590. ASSERT_TRUE(handle.is_valid());
  11591. char buf[256];
  11592. ssize_t n = handle.read(buf, sizeof(buf)); // First read
  11593. EXPECT_GT(n, 0) << "First read should succeed";
  11594. // Signal server to close
  11595. close_now = true;
  11596. // Keep reading until error or EOF
  11597. while ((n = handle.read(buf, sizeof(buf))) > 0) {
  11598. // Keep reading
  11599. }
  11600. // Should get an error since content_length wasn't satisfied
  11601. if (n < 0) {
  11602. EXPECT_TRUE(handle.get_read_error() == Error::ConnectionClosed ||
  11603. handle.get_read_error() == Error::Read)
  11604. << "Actual error: " << to_string(handle.get_read_error());
  11605. }
  11606. svr.stop();
  11607. t.join();
  11608. }
  11609. #ifdef CPPHTTPLIB_SSL_ENABLED
  11610. TEST(ErrorHandlingTest, SSLStreamReadTimeout) {
  11611. // Test that read timeout during SSL streaming is detected
  11612. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  11613. svr.Get("/slow-stream", [](const Request &, Response &res) {
  11614. res.set_content_provider(
  11615. 1000, "text/plain",
  11616. [](size_t offset, size_t /*length*/, DataSink &sink) {
  11617. if (offset < 100) {
  11618. std::string data(100, 'A');
  11619. sink.write(data.c_str(), data.size());
  11620. return true;
  11621. }
  11622. std::this_thread::sleep_for(std::chrono::seconds(3));
  11623. std::string data(900, 'B');
  11624. sink.write(data.c_str(), data.size());
  11625. return true;
  11626. });
  11627. });
  11628. auto port = 8093;
  11629. std::thread t([&]() { svr.listen("localhost", port); });
  11630. svr.wait_until_ready();
  11631. SSLClient cli("localhost", port);
  11632. cli.enable_server_certificate_verification(false);
  11633. cli.set_read_timeout(1, 0); // 1 second timeout
  11634. auto handle = cli.open_stream("GET", "/slow-stream");
  11635. ASSERT_TRUE(handle.is_valid());
  11636. char buf[256];
  11637. ssize_t total = 0;
  11638. ssize_t n;
  11639. bool got_error = false;
  11640. while ((n = handle.read(buf, sizeof(buf))) > 0) {
  11641. total += n;
  11642. }
  11643. if (n < 0) {
  11644. got_error = true;
  11645. EXPECT_TRUE(handle.get_read_error() == Error::Timeout ||
  11646. handle.get_read_error() == Error::Read)
  11647. << "Actual error: " << to_string(handle.get_read_error());
  11648. }
  11649. EXPECT_TRUE(got_error || total < 1000)
  11650. << "Expected timeout but got all " << total << " bytes";
  11651. svr.stop();
  11652. t.join();
  11653. }
  11654. TEST(ErrorHandlingTest, SSLStreamConnectionClosed) {
  11655. // Test SSL connection closed detection
  11656. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  11657. std::atomic<bool> close_now{false};
  11658. svr.Get("/will-close", [&](const Request &, Response &res) {
  11659. res.set_content_provider(
  11660. 10000, "text/plain",
  11661. [&](size_t offset, size_t /*length*/, DataSink &sink) {
  11662. if (offset < 100) {
  11663. std::string data(100, 'X');
  11664. sink.write(data.c_str(), data.size());
  11665. return true;
  11666. }
  11667. while (!close_now) {
  11668. std::this_thread::sleep_for(std::chrono::milliseconds(10));
  11669. }
  11670. return false;
  11671. });
  11672. });
  11673. auto port = 8094;
  11674. std::thread t([&]() { svr.listen("localhost", port); });
  11675. svr.wait_until_ready();
  11676. SSLClient cli("localhost", port);
  11677. cli.enable_server_certificate_verification(false);
  11678. auto handle = cli.open_stream("GET", "/will-close");
  11679. ASSERT_TRUE(handle.is_valid());
  11680. char buf[256];
  11681. ssize_t n = handle.read(buf, sizeof(buf)); // First read
  11682. EXPECT_GT(n, 0);
  11683. // Signal server to close
  11684. close_now = true;
  11685. while ((n = handle.read(buf, sizeof(buf))) > 0) {
  11686. // Keep reading
  11687. }
  11688. if (n < 0) {
  11689. EXPECT_TRUE(handle.get_read_error() == Error::ConnectionClosed ||
  11690. handle.get_read_error() == Error::Read)
  11691. << "Actual error: " << to_string(handle.get_read_error());
  11692. }
  11693. svr.stop();
  11694. t.join();
  11695. }
  11696. #endif
  11697. TEST(ETagTest, StaticFileETagAndIfNoneMatch) {
  11698. using namespace httplib;
  11699. // Create a test file
  11700. const char *fname = "etag_testfile.txt";
  11701. const char *content = "etag-content";
  11702. {
  11703. std::ofstream ofs(fname);
  11704. ofs << content;
  11705. ASSERT_TRUE(ofs.good());
  11706. }
  11707. Server svr;
  11708. svr.set_mount_point("/static", ".");
  11709. auto t = std::thread([&]() { svr.listen("localhost", PORT); });
  11710. svr.wait_until_ready();
  11711. Client cli(HOST, PORT);
  11712. // First request: should get 200 with ETag header
  11713. auto res1 = cli.Get("/static/etag_testfile.txt");
  11714. ASSERT_TRUE(res1);
  11715. ASSERT_EQ(200, res1->status);
  11716. ASSERT_TRUE(res1->has_header("ETag"));
  11717. std::string etag = res1->get_header_value("ETag");
  11718. EXPECT_FALSE(etag.empty());
  11719. // Verify ETag format: W/"hex-hex"
  11720. ASSERT_GE(etag.length(), 5u); // Minimum: W/""
  11721. EXPECT_EQ('W', etag[0]);
  11722. EXPECT_EQ('/', etag[1]);
  11723. EXPECT_EQ('"', etag[2]);
  11724. EXPECT_EQ('"', etag.back());
  11725. // Exact match: expect 304 Not Modified
  11726. Headers h2 = {{"If-None-Match", etag}};
  11727. auto res2 = cli.Get("/static/etag_testfile.txt", h2);
  11728. ASSERT_TRUE(res2);
  11729. EXPECT_EQ(304, res2->status);
  11730. // Wildcard match: expect 304 Not Modified
  11731. Headers h3 = {{"If-None-Match", "*"}};
  11732. auto res3 = cli.Get("/static/etag_testfile.txt", h3);
  11733. ASSERT_TRUE(res3);
  11734. EXPECT_EQ(304, res3->status);
  11735. // Non-matching ETag: expect 200
  11736. Headers h4 = {{"If-None-Match", "W/\"deadbeef\""}};
  11737. auto res4 = cli.Get("/static/etag_testfile.txt", h4);
  11738. ASSERT_TRUE(res4);
  11739. EXPECT_EQ(200, res4->status);
  11740. // Multiple ETags with one matching: expect 304
  11741. Headers h5 = {{"If-None-Match", "W/\"other\", " + etag + ", W/\"another\""}};
  11742. auto res5 = cli.Get("/static/etag_testfile.txt", h5);
  11743. ASSERT_TRUE(res5);
  11744. EXPECT_EQ(304, res5->status);
  11745. svr.stop();
  11746. t.join();
  11747. std::remove(fname);
  11748. }
  11749. TEST(ETagTest, StaticFileETagIfNoneMatchStarNotFound) {
  11750. using namespace httplib;
  11751. Server svr;
  11752. svr.set_mount_point("/static", ".");
  11753. auto t = std::thread([&]() { svr.listen(HOST, PORT); });
  11754. svr.wait_until_ready();
  11755. Client cli(HOST, PORT);
  11756. // Send If-None-Match: * to a non-existent file
  11757. Headers h = {{"If-None-Match", "*"}};
  11758. auto res = cli.Get("/static/etag_testfile_notfound.txt", h);
  11759. ASSERT_TRUE(res);
  11760. EXPECT_EQ(404, res->status);
  11761. svr.stop();
  11762. t.join();
  11763. }
  11764. TEST(ETagTest, IfNoneMatchBoundaryCheck) {
  11765. using namespace httplib;
  11766. // Create a test file
  11767. const char *fname = "etag_boundary_testfile.txt";
  11768. const char *content = "boundary-test";
  11769. {
  11770. std::ofstream ofs(fname);
  11771. ofs << content;
  11772. ASSERT_TRUE(ofs.good());
  11773. }
  11774. Server svr;
  11775. svr.set_mount_point("/static", ".");
  11776. auto t = std::thread([&]() { svr.listen("localhost", PORT); });
  11777. svr.wait_until_ready();
  11778. Client cli(HOST, PORT);
  11779. // Get the actual ETag
  11780. auto res1 = cli.Get("/static/etag_boundary_testfile.txt");
  11781. ASSERT_TRUE(res1);
  11782. ASSERT_EQ(200, res1->status);
  11783. ASSERT_TRUE(res1->has_header("ETag"));
  11784. std::string etag = res1->get_header_value("ETag");
  11785. // Test 1: Very long ETag value (longer than actual ETag)
  11786. // Should NOT match and return 200 (not trigger out-of-bounds read)
  11787. Headers h1 = {{"If-None-Match", "W/"
  11788. "\"very-long-etag-value-that-is-much-longer-"
  11789. "than-the-actual-etag-value\""}};
  11790. auto res2 = cli.Get("/static/etag_boundary_testfile.txt", h1);
  11791. ASSERT_TRUE(res2);
  11792. EXPECT_EQ(200, res2->status); // Should not match
  11793. // Test 2: Long string followed by wildcard
  11794. // Should match on "*" and return 304 (without out-of-bounds read on the long
  11795. // string)
  11796. Headers h2 = {{"If-None-Match", "W/\"another-very-long-value\", *"}};
  11797. auto res3 = cli.Get("/static/etag_boundary_testfile.txt", h2);
  11798. ASSERT_TRUE(res3);
  11799. EXPECT_EQ(304, res3->status); // Should match on "*"
  11800. // Test 3: Wildcard followed by long string
  11801. // Should match on "*" immediately and return 304
  11802. Headers h3 = {{"If-None-Match", "*, W/\"long-value-after-wildcard\""}};
  11803. auto res4 = cli.Get("/static/etag_boundary_testfile.txt", h3);
  11804. ASSERT_TRUE(res4);
  11805. EXPECT_EQ(304, res4->status); // Should match on "*"
  11806. // Test 4: Multiple long non-matching values
  11807. // Should NOT match and return 200 (test that all comparisons are safe)
  11808. Headers h4 = {{"If-None-Match", "W/\"first-long-non-matching-value\", "
  11809. "W/\"second-long-non-matching-value\", "
  11810. "W/\"third-long-non-matching-value\""}};
  11811. auto res5 = cli.Get("/static/etag_boundary_testfile.txt", h4);
  11812. ASSERT_TRUE(res5);
  11813. EXPECT_EQ(200, res5->status); // Should not match
  11814. // Test 5: Single character that is not "*" (edge case)
  11815. Headers h5 = {{"If-None-Match", "X"}};
  11816. auto res6 = cli.Get("/static/etag_boundary_testfile.txt", h5);
  11817. ASSERT_TRUE(res6);
  11818. EXPECT_EQ(200, res6->status); // Should not match
  11819. svr.stop();
  11820. t.join();
  11821. std::remove(fname);
  11822. }
  11823. TEST(ETagTest, LastModifiedAndIfModifiedSince) {
  11824. using namespace httplib;
  11825. // Create a test file
  11826. const char *fname = "ims_testfile.txt";
  11827. const char *content = "if-modified-since-test";
  11828. {
  11829. std::ofstream ofs(fname);
  11830. ofs << content;
  11831. ASSERT_TRUE(ofs.good());
  11832. }
  11833. Server svr;
  11834. svr.set_mount_point("/static", ".");
  11835. auto t = std::thread([&]() { svr.listen(HOST, PORT); });
  11836. svr.wait_until_ready();
  11837. Client cli(HOST, PORT);
  11838. // First request: should get 200 with Last-Modified header
  11839. auto res1 = cli.Get("/static/ims_testfile.txt");
  11840. ASSERT_TRUE(res1);
  11841. ASSERT_EQ(200, res1->status);
  11842. ASSERT_TRUE(res1->has_header("Last-Modified"));
  11843. std::string last_modified = res1->get_header_value("Last-Modified");
  11844. EXPECT_FALSE(last_modified.empty());
  11845. // If-Modified-Since with same time: expect 304
  11846. Headers h2 = {{"If-Modified-Since", last_modified}};
  11847. auto res2 = cli.Get("/static/ims_testfile.txt", h2);
  11848. ASSERT_TRUE(res2);
  11849. EXPECT_EQ(304, res2->status);
  11850. // If-Modified-Since with future time: expect 304
  11851. Headers h3 = {{"If-Modified-Since", "Sun, 01 Jan 2099 00:00:00 GMT"}};
  11852. auto res3 = cli.Get("/static/ims_testfile.txt", h3);
  11853. ASSERT_TRUE(res3);
  11854. EXPECT_EQ(304, res3->status);
  11855. // If-Modified-Since with past time: expect 200
  11856. Headers h4 = {{"If-Modified-Since", "Sun, 01 Jan 2000 00:00:00 GMT"}};
  11857. auto res4 = cli.Get("/static/ims_testfile.txt", h4);
  11858. ASSERT_TRUE(res4);
  11859. EXPECT_EQ(200, res4->status);
  11860. // If-None-Match takes precedence over If-Modified-Since
  11861. // (send matching ETag with old If-Modified-Since -> should still be 304)
  11862. ASSERT_TRUE(res1->has_header("ETag"));
  11863. std::string etag = res1->get_header_value("ETag");
  11864. Headers h5 = {{"If-None-Match", etag},
  11865. {"If-Modified-Since", "Sun, 01 Jan 2000 00:00:00 GMT"}};
  11866. auto res5 = cli.Get("/static/ims_testfile.txt", h5);
  11867. ASSERT_TRUE(res5);
  11868. EXPECT_EQ(304, res5->status);
  11869. svr.stop();
  11870. t.join();
  11871. std::remove(fname);
  11872. }
  11873. TEST(ETagTest, VaryAcceptEncodingWithCompression) {
  11874. using namespace httplib;
  11875. Server svr;
  11876. // Endpoint that returns compressible content
  11877. svr.Get("/compressible", [](const Request &, Response &res) {
  11878. // Return a large enough body to trigger compression
  11879. std::string body(1000, 'a');
  11880. res.set_content(body, "text/plain");
  11881. });
  11882. auto t = std::thread([&]() { svr.listen(HOST, PORT); });
  11883. svr.wait_until_ready();
  11884. Client cli(HOST, PORT);
  11885. // Request with gzip support: should get Vary header when compressed
  11886. cli.set_compress(true);
  11887. auto res1 = cli.Get("/compressible");
  11888. ASSERT_TRUE(res1);
  11889. EXPECT_EQ(200, res1->status);
  11890. // If Content-Encoding is set, Vary should also be set
  11891. if (res1->has_header("Content-Encoding")) {
  11892. EXPECT_TRUE(res1->has_header("Vary"));
  11893. EXPECT_EQ("Accept-Encoding", res1->get_header_value("Vary"));
  11894. }
  11895. // Request without Accept-Encoding header: should not have compression
  11896. Headers h_no_compress;
  11897. auto res2 = cli.Get("/compressible", h_no_compress);
  11898. ASSERT_TRUE(res2);
  11899. EXPECT_EQ(200, res2->status);
  11900. // Verify Vary header is present when compression is applied
  11901. // (the exact behavior depends on server configuration)
  11902. svr.stop();
  11903. t.join();
  11904. }
  11905. TEST(ETagTest, IfRangeWithETag) {
  11906. using namespace httplib;
  11907. // Create a test file with known content
  11908. const char *fname = "if_range_testfile.txt";
  11909. const std::string content = "0123456789ABCDEFGHIJ"; // 20 bytes
  11910. {
  11911. std::ofstream ofs(fname);
  11912. ofs << content;
  11913. ASSERT_TRUE(ofs.good());
  11914. }
  11915. Server svr;
  11916. svr.set_mount_point("/static", ".");
  11917. auto t = std::thread([&]() { svr.listen(HOST, PORT); });
  11918. svr.wait_until_ready();
  11919. Client cli(HOST, PORT);
  11920. // First request: get ETag
  11921. auto res1 = cli.Get("/static/if_range_testfile.txt");
  11922. ASSERT_TRUE(res1);
  11923. ASSERT_EQ(200, res1->status);
  11924. ASSERT_TRUE(res1->has_header("ETag"));
  11925. std::string etag = res1->get_header_value("ETag");
  11926. // RFC 9110 Section 13.1.5: If-Range requires strong ETag comparison.
  11927. // Since our server generates weak ETags (W/"..."), If-Range with our
  11928. // ETag should NOT result in partial content - it should return full content.
  11929. Headers h2 = {{"Range", "bytes=0-4"}, {"If-Range", etag}};
  11930. auto res2 = cli.Get("/static/if_range_testfile.txt", h2);
  11931. ASSERT_TRUE(res2);
  11932. // Weak ETag in If-Range -> full content (200), not partial (206)
  11933. EXPECT_EQ(200, res2->status);
  11934. EXPECT_EQ(content, res2->body);
  11935. EXPECT_FALSE(res2->has_header("Content-Range"));
  11936. // Range request with non-matching If-Range (ETag): should get 200 (full
  11937. // content)
  11938. Headers h3 = {{"Range", "bytes=0-4"}, {"If-Range", "W/\"wrong-etag\""}};
  11939. auto res3 = cli.Get("/static/if_range_testfile.txt", h3);
  11940. ASSERT_TRUE(res3);
  11941. EXPECT_EQ(200, res3->status);
  11942. EXPECT_EQ(content, res3->body);
  11943. EXPECT_FALSE(res3->has_header("Content-Range"));
  11944. // Range request with strong ETag (hypothetical - our server doesn't generate
  11945. // strong ETags, but if client sends a strong ETag that doesn't match, it
  11946. // should return full content)
  11947. Headers h4 = {{"Range", "bytes=0-4"}, {"If-Range", "\"strong-etag\""}};
  11948. auto res4 = cli.Get("/static/if_range_testfile.txt", h4);
  11949. ASSERT_TRUE(res4);
  11950. EXPECT_EQ(200, res4->status);
  11951. EXPECT_EQ(content, res4->body);
  11952. EXPECT_FALSE(res4->has_header("Content-Range"));
  11953. svr.stop();
  11954. t.join();
  11955. std::remove(fname);
  11956. }
  11957. TEST(ETagTest, IfRangeWithDate) {
  11958. using namespace httplib;
  11959. // Create a test file
  11960. const char *fname = "if_range_date_testfile.txt";
  11961. const std::string content = "ABCDEFGHIJ0123456789"; // 20 bytes
  11962. {
  11963. std::ofstream ofs(fname);
  11964. ofs << content;
  11965. ASSERT_TRUE(ofs.good());
  11966. }
  11967. Server svr;
  11968. svr.set_mount_point("/static", ".");
  11969. auto t = std::thread([&]() { svr.listen(HOST, PORT); });
  11970. svr.wait_until_ready();
  11971. Client cli(HOST, PORT);
  11972. // First request: get Last-Modified
  11973. auto res1 = cli.Get("/static/if_range_date_testfile.txt");
  11974. ASSERT_TRUE(res1);
  11975. ASSERT_EQ(200, res1->status);
  11976. ASSERT_TRUE(res1->has_header("Last-Modified"));
  11977. std::string last_modified = res1->get_header_value("Last-Modified");
  11978. // Range request with matching If-Range (date): should get 206
  11979. Headers h2 = {{"Range", "bytes=5-9"}, {"If-Range", last_modified}};
  11980. auto res2 = cli.Get("/static/if_range_date_testfile.txt", h2);
  11981. ASSERT_TRUE(res2);
  11982. EXPECT_EQ(206, res2->status);
  11983. EXPECT_EQ("FGHIJ", res2->body);
  11984. // Range request with old If-Range date: should get 200 (full content)
  11985. Headers h3 = {{"Range", "bytes=5-9"},
  11986. {"If-Range", "Sun, 01 Jan 2000 00:00:00 GMT"}};
  11987. auto res3 = cli.Get("/static/if_range_date_testfile.txt", h3);
  11988. ASSERT_TRUE(res3);
  11989. EXPECT_EQ(200, res3->status);
  11990. EXPECT_EQ(content, res3->body);
  11991. // Range request with future If-Range date: should get 206
  11992. Headers h4 = {{"Range", "bytes=0-4"},
  11993. {"If-Range", "Sun, 01 Jan 2099 00:00:00 GMT"}};
  11994. auto res4 = cli.Get("/static/if_range_date_testfile.txt", h4);
  11995. ASSERT_TRUE(res4);
  11996. EXPECT_EQ(206, res4->status);
  11997. EXPECT_EQ("ABCDE", res4->body);
  11998. svr.stop();
  11999. t.join();
  12000. std::remove(fname);
  12001. }
  12002. TEST(ETagTest, MalformedIfNoneMatchAndWhitespace) {
  12003. using namespace httplib;
  12004. const char *fname = "etag_malformed.txt";
  12005. const char *content = "malformed-etag";
  12006. {
  12007. std::ofstream ofs(fname);
  12008. ofs << content;
  12009. ASSERT_TRUE(ofs.good());
  12010. }
  12011. Server svr;
  12012. svr.set_mount_point("/static", ".");
  12013. auto t = std::thread([&]() { svr.listen(HOST, PORT); });
  12014. svr.wait_until_ready();
  12015. Client cli(HOST, PORT);
  12016. // baseline: should get 200 and an ETag
  12017. auto res1 = cli.Get("/static/etag_malformed.txt");
  12018. ASSERT_TRUE(res1);
  12019. ASSERT_EQ(200, res1->status);
  12020. ASSERT_TRUE(res1->has_header("ETag"));
  12021. // Malformed ETag value (missing quotes) should be treated as non-matching
  12022. Headers h_bad = {{"If-None-Match", "W/noquotes"}};
  12023. auto res_bad = cli.Get("/static/etag_malformed.txt", h_bad);
  12024. ASSERT_TRUE(res_bad);
  12025. EXPECT_EQ(200, res_bad->status);
  12026. // Whitespace-only header value should be considered invalid / non-matching
  12027. std::string raw_req = "GET /static/etag_malformed.txt HTTP/1.1\r\n"
  12028. "Host: localhost\r\n"
  12029. "If-None-Match: \r\n"
  12030. "Connection: close\r\n"
  12031. "\r\n";
  12032. std::string out;
  12033. ASSERT_TRUE(send_request(5, raw_req, &out));
  12034. EXPECT_EQ("HTTP/1.1 200 OK", out.substr(0, 15));
  12035. svr.stop();
  12036. t.join();
  12037. std::remove(fname);
  12038. }
  12039. TEST(ETagTest, InvalidIfModifiedSinceAndIfRangeDate) {
  12040. using namespace httplib;
  12041. const char *fname = "ims_invalid_format.txt";
  12042. const char *content = "ims-bad-format";
  12043. {
  12044. std::ofstream ofs(fname);
  12045. ofs << content;
  12046. ASSERT_TRUE(ofs.good());
  12047. }
  12048. Server svr;
  12049. svr.set_mount_point("/static", ".");
  12050. auto t = std::thread([&]() { svr.listen(HOST, PORT); });
  12051. svr.wait_until_ready();
  12052. Client cli(HOST, PORT);
  12053. auto res1 = cli.Get("/static/ims_invalid_format.txt");
  12054. ASSERT_TRUE(res1);
  12055. ASSERT_EQ(200, res1->status);
  12056. ASSERT_TRUE(res1->has_header("Last-Modified"));
  12057. // If-Modified-Since with invalid format should not result in 304
  12058. Headers h_bad_date = {{"If-Modified-Since", "not-a-valid-date"}};
  12059. auto res_bad = cli.Get("/static/ims_invalid_format.txt", h_bad_date);
  12060. ASSERT_TRUE(res_bad);
  12061. EXPECT_EQ(200, res_bad->status);
  12062. // If-Range with invalid date format should be treated as mismatch -> full
  12063. // content (200)
  12064. Headers h_ifrange_bad = {{"Range", "bytes=0-3"},
  12065. {"If-Range", "invalid-date"}};
  12066. auto res_ifrange = cli.Get("/static/ims_invalid_format.txt", h_ifrange_bad);
  12067. ASSERT_TRUE(res_ifrange);
  12068. EXPECT_EQ(200, res_ifrange->status);
  12069. svr.stop();
  12070. t.join();
  12071. std::remove(fname);
  12072. }
  12073. TEST(ETagTest, IfRangeWithMalformedETag) {
  12074. using namespace httplib;
  12075. const char *fname = "ifrange_malformed.txt";
  12076. const std::string content = "0123456789";
  12077. {
  12078. std::ofstream ofs(fname);
  12079. ofs << content;
  12080. ASSERT_TRUE(ofs.good());
  12081. }
  12082. Server svr;
  12083. svr.set_mount_point("/static", ".");
  12084. auto t = std::thread([&]() { svr.listen(HOST, PORT); });
  12085. svr.wait_until_ready();
  12086. Client cli(HOST, PORT);
  12087. // First request: get ETag
  12088. auto res1 = cli.Get("/static/ifrange_malformed.txt");
  12089. ASSERT_TRUE(res1);
  12090. ASSERT_EQ(200, res1->status);
  12091. ASSERT_TRUE(res1->has_header("ETag"));
  12092. // If-Range with malformed ETag (no quotes) should be treated as mismatch ->
  12093. // full content (200)
  12094. Headers h_malformed = {{"Range", "bytes=0-4"}, {"If-Range", "W/noquotes"}};
  12095. auto res2 = cli.Get("/static/ifrange_malformed.txt", h_malformed);
  12096. ASSERT_TRUE(res2);
  12097. EXPECT_EQ(200, res2->status);
  12098. EXPECT_EQ(content, res2->body);
  12099. svr.stop();
  12100. t.join();
  12101. std::remove(fname);
  12102. }
  12103. TEST(ETagTest, ExtremeLargeDateValues) {
  12104. using namespace httplib;
  12105. const char *fname = "ims_extreme_date.txt";
  12106. const char *content = "ims-extreme-date";
  12107. {
  12108. std::ofstream ofs(fname);
  12109. ofs << content;
  12110. ASSERT_TRUE(ofs.good());
  12111. }
  12112. Server svr;
  12113. svr.set_mount_point("/static", ".");
  12114. auto t = std::thread([&]() { svr.listen(HOST, PORT); });
  12115. svr.wait_until_ready();
  12116. Client cli(HOST, PORT);
  12117. auto res1 = cli.Get(std::string("/static/") + fname);
  12118. ASSERT_TRUE(res1);
  12119. ASSERT_EQ(200, res1->status);
  12120. ASSERT_TRUE(res1->has_header("Last-Modified"));
  12121. // Extremely large year that may overflow date parsing routines.
  12122. Headers h_large_date = {
  12123. {"If-Modified-Since", "Sun, 01 Jan 99999 00:00:00 GMT"}};
  12124. auto res_bad = cli.Get(std::string("/static/") + fname, h_large_date);
  12125. ASSERT_TRUE(res_bad);
  12126. // Expect server to treat this as invalid/mismatch and return full content
  12127. EXPECT_EQ(200, res_bad->status);
  12128. // If-Range with extremely large date should be treated as mismatch -> full
  12129. // content (200)
  12130. Headers h_ifrange_large = {{"Range", "bytes=0-3"},
  12131. {"If-Range", "Sun, 01 Jan 99999 00:00:00 GMT"}};
  12132. auto res_ifrange = cli.Get(std::string("/static/") + fname, h_ifrange_large);
  12133. ASSERT_TRUE(res_ifrange);
  12134. EXPECT_EQ(200, res_ifrange->status);
  12135. svr.stop();
  12136. t.join();
  12137. std::remove(fname);
  12138. }
  12139. TEST(ETagTest, NegativeFileModificationTime) {
  12140. using namespace httplib;
  12141. const char *fname = "ims_negative_mtime.txt";
  12142. const std::string content = "negative-mtime";
  12143. {
  12144. std::ofstream ofs(fname);
  12145. ofs << content;
  12146. ASSERT_TRUE(ofs.good());
  12147. }
  12148. // Try to set file mtime to a negative value. This may fail on some
  12149. // platforms/filesystems; if it fails, the test will still verify server
  12150. // behaves safely by performing a regular conditional request.
  12151. #if defined(__APPLE__) || defined(__linux__)
  12152. bool set_negative = false;
  12153. do {
  12154. struct timeval times[2];
  12155. // access time: now
  12156. times[0].tv_sec = time(nullptr);
  12157. times[0].tv_usec = 0;
  12158. // modification time: negative (e.g., -1)
  12159. times[1].tv_sec = -1;
  12160. times[1].tv_usec = 0;
  12161. if (utimes(fname, times) == 0) { set_negative = true; }
  12162. } while (0);
  12163. #else
  12164. bool set_negative = false;
  12165. #endif
  12166. Server svr;
  12167. svr.set_mount_point("/static", ".");
  12168. auto t = std::thread([&]() { svr.listen(HOST, PORT); });
  12169. svr.wait_until_ready();
  12170. Client cli(HOST, PORT);
  12171. auto res1 = cli.Get(std::string("/static/") + fname);
  12172. ASSERT_TRUE(res1);
  12173. ASSERT_EQ(200, res1->status);
  12174. bool has_last_modified = res1->has_header("Last-Modified");
  12175. std::string last_modified;
  12176. if (has_last_modified) {
  12177. last_modified = res1->get_header_value("Last-Modified");
  12178. }
  12179. if (set_negative) {
  12180. // If we successfully set a negative mtime, ensure server returns a
  12181. // Last-Modified string (may be empty or normalized). Send If-Modified-Since
  12182. // with an old date and ensure server handles it without crash.
  12183. Headers h_old = {{"If-Modified-Since", "Sun, 01 Jan 1970 00:00:00 GMT"}};
  12184. auto res2 = cli.Get(std::string("/static/") + fname, h_old);
  12185. ASSERT_TRUE(res2);
  12186. // Behavior may vary; at minimum ensure server responds (200 or 304).
  12187. EXPECT_TRUE(res2->status == 200 || res2->status == 304);
  12188. } else {
  12189. // Could not set negative mtime on this platform; fall back to verifying
  12190. // that normal invalid/malformed dates are treated safely (non-304).
  12191. Headers h_bad_date = {
  12192. {"If-Modified-Since", "Sun, 01 Jan 99999 00:00:00 GMT"}};
  12193. auto res_bad = cli.Get(std::string("/static/") + fname, h_bad_date);
  12194. ASSERT_TRUE(res_bad);
  12195. EXPECT_EQ(200, res_bad->status);
  12196. }
  12197. svr.stop();
  12198. t.join();
  12199. std::remove(fname);
  12200. }
  12201. //==============================================================================
  12202. // SSE Parsing Tests
  12203. //==============================================================================
  12204. class SSEParsingTest : public ::testing::Test {
  12205. protected:
  12206. // Test helper that mimics SSE parsing behavior
  12207. static bool parse_sse_line(const std::string &line, sse::SSEMessage &msg,
  12208. int &retry_ms) {
  12209. // Blank line signals end of event
  12210. if (line.empty() || line == "\r") { return true; }
  12211. // Lines starting with ':' are comments (ignored)
  12212. if (!line.empty() && line[0] == ':') { return false; }
  12213. // Find the colon separator
  12214. auto colon_pos = line.find(':');
  12215. if (colon_pos == std::string::npos) {
  12216. // Line with no colon is treated as field name with empty value
  12217. return false;
  12218. }
  12219. std::string field = line.substr(0, colon_pos);
  12220. std::string value;
  12221. // Value starts after colon, skip optional single space
  12222. if (colon_pos + 1 < line.size()) {
  12223. size_t value_start = colon_pos + 1;
  12224. if (line[value_start] == ' ') { value_start++; }
  12225. value = line.substr(value_start);
  12226. // Remove trailing \r if present
  12227. if (!value.empty() && value.back() == '\r') { value.pop_back(); }
  12228. }
  12229. // Handle known fields
  12230. if (field == "event") {
  12231. msg.event = value;
  12232. } else if (field == "data") {
  12233. // Multiple data lines are concatenated with newlines
  12234. if (!msg.data.empty()) { msg.data += "\n"; }
  12235. msg.data += value;
  12236. } else if (field == "id") {
  12237. // Empty id is valid (clears the last event ID)
  12238. msg.id = value;
  12239. } else if (field == "retry") {
  12240. // Parse retry interval in milliseconds
  12241. {
  12242. int v = 0;
  12243. auto res =
  12244. detail::from_chars(value.data(), value.data() + value.size(), v);
  12245. if (res.ec == std::errc{}) { retry_ms = v; }
  12246. }
  12247. }
  12248. // Unknown fields are ignored per SSE spec
  12249. return false;
  12250. }
  12251. };
  12252. // Test: Single-line data
  12253. TEST_F(SSEParsingTest, SingleLineData) {
  12254. sse::SSEMessage msg;
  12255. int retry_ms = 3000;
  12256. EXPECT_FALSE(parse_sse_line("data: hello", msg, retry_ms));
  12257. EXPECT_EQ(msg.data, "hello");
  12258. EXPECT_EQ(msg.event, "message");
  12259. // Blank line ends event
  12260. EXPECT_TRUE(parse_sse_line("", msg, retry_ms));
  12261. }
  12262. // Test: Multi-line data
  12263. TEST_F(SSEParsingTest, MultiLineData) {
  12264. sse::SSEMessage msg;
  12265. int retry_ms = 3000;
  12266. EXPECT_FALSE(parse_sse_line("data: line1", msg, retry_ms));
  12267. EXPECT_FALSE(parse_sse_line("data: line2", msg, retry_ms));
  12268. EXPECT_FALSE(parse_sse_line("data: line3", msg, retry_ms));
  12269. EXPECT_EQ(msg.data, "line1\nline2\nline3");
  12270. }
  12271. // Test: Custom event types
  12272. TEST_F(SSEParsingTest, CustomEventType) {
  12273. sse::SSEMessage msg;
  12274. int retry_ms = 3000;
  12275. EXPECT_FALSE(parse_sse_line("event: update", msg, retry_ms));
  12276. EXPECT_FALSE(parse_sse_line("data: payload", msg, retry_ms));
  12277. EXPECT_EQ(msg.event, "update");
  12278. EXPECT_EQ(msg.data, "payload");
  12279. }
  12280. // Test: Event ID handling
  12281. TEST_F(SSEParsingTest, EventIdHandling) {
  12282. sse::SSEMessage msg;
  12283. int retry_ms = 3000;
  12284. EXPECT_FALSE(parse_sse_line("id: 12345", msg, retry_ms));
  12285. EXPECT_FALSE(parse_sse_line("data: test", msg, retry_ms));
  12286. EXPECT_EQ(msg.id, "12345");
  12287. }
  12288. // Test: Empty event ID (clears last event ID)
  12289. TEST_F(SSEParsingTest, EmptyEventId) {
  12290. sse::SSEMessage msg;
  12291. msg.id = "previous";
  12292. int retry_ms = 3000;
  12293. EXPECT_FALSE(parse_sse_line("id:", msg, retry_ms));
  12294. EXPECT_EQ(msg.id, "");
  12295. }
  12296. // Test: Retry field parsing
  12297. TEST_F(SSEParsingTest, RetryFieldParsing) {
  12298. sse::SSEMessage msg;
  12299. int retry_ms = 3000;
  12300. EXPECT_FALSE(parse_sse_line("retry: 5000", msg, retry_ms));
  12301. EXPECT_EQ(retry_ms, 5000);
  12302. }
  12303. // Test: Invalid retry value
  12304. TEST_F(SSEParsingTest, InvalidRetryValue) {
  12305. sse::SSEMessage msg;
  12306. int retry_ms = 3000;
  12307. EXPECT_FALSE(parse_sse_line("retry: invalid", msg, retry_ms));
  12308. EXPECT_EQ(retry_ms, 3000); // Unchanged
  12309. }
  12310. // Test: Comments (lines starting with :)
  12311. TEST_F(SSEParsingTest, CommentsIgnored) {
  12312. sse::SSEMessage msg;
  12313. int retry_ms = 3000;
  12314. EXPECT_FALSE(parse_sse_line(": this is a comment", msg, retry_ms));
  12315. EXPECT_EQ(msg.data, "");
  12316. EXPECT_EQ(msg.event, "message");
  12317. }
  12318. // Test: Colon in value
  12319. TEST_F(SSEParsingTest, ColonInValue) {
  12320. sse::SSEMessage msg;
  12321. int retry_ms = 3000;
  12322. EXPECT_FALSE(parse_sse_line("data: hello:world:test", msg, retry_ms));
  12323. EXPECT_EQ(msg.data, "hello:world:test");
  12324. }
  12325. // Test: Line with no colon (field name only)
  12326. TEST_F(SSEParsingTest, FieldNameOnly) {
  12327. sse::SSEMessage msg;
  12328. int retry_ms = 3000;
  12329. // According to SSE spec, this is treated as field name with empty value
  12330. EXPECT_FALSE(parse_sse_line("data", msg, retry_ms));
  12331. // Since we don't recognize "data" without colon, data should be empty
  12332. EXPECT_EQ(msg.data, "");
  12333. }
  12334. // Test: Trailing \r handling
  12335. TEST_F(SSEParsingTest, TrailingCarriageReturn) {
  12336. sse::SSEMessage msg;
  12337. int retry_ms = 3000;
  12338. EXPECT_FALSE(parse_sse_line("data: hello\r", msg, retry_ms));
  12339. EXPECT_EQ(msg.data, "hello");
  12340. }
  12341. // Test: Unknown fields ignored
  12342. TEST_F(SSEParsingTest, UnknownFieldsIgnored) {
  12343. sse::SSEMessage msg;
  12344. int retry_ms = 3000;
  12345. EXPECT_FALSE(parse_sse_line("unknown: value", msg, retry_ms));
  12346. EXPECT_EQ(msg.data, "");
  12347. EXPECT_EQ(msg.event, "message");
  12348. }
  12349. // Test: Space after colon is optional
  12350. TEST_F(SSEParsingTest, SpaceAfterColonOptional) {
  12351. sse::SSEMessage msg1, msg2;
  12352. int retry_ms = 3000;
  12353. EXPECT_FALSE(parse_sse_line("data: hello", msg1, retry_ms));
  12354. EXPECT_FALSE(parse_sse_line("data:hello", msg2, retry_ms));
  12355. EXPECT_EQ(msg1.data, "hello");
  12356. EXPECT_EQ(msg2.data, "hello");
  12357. }
  12358. // Test: SSEMessage clear
  12359. TEST_F(SSEParsingTest, MessageClear) {
  12360. sse::SSEMessage msg;
  12361. msg.event = "custom";
  12362. msg.data = "some data";
  12363. msg.id = "123";
  12364. msg.clear();
  12365. EXPECT_EQ(msg.event, "message");
  12366. EXPECT_EQ(msg.data, "");
  12367. EXPECT_EQ(msg.id, "");
  12368. }
  12369. // Test: Complete event parsing
  12370. TEST_F(SSEParsingTest, CompleteEventParsing) {
  12371. sse::SSEMessage msg;
  12372. int retry_ms = 3000;
  12373. EXPECT_FALSE(parse_sse_line("event: notification", msg, retry_ms));
  12374. EXPECT_FALSE(parse_sse_line("id: evt-42", msg, retry_ms));
  12375. EXPECT_FALSE(parse_sse_line("data: {\"type\":\"alert\"}", msg, retry_ms));
  12376. EXPECT_FALSE(parse_sse_line("retry: 1000", msg, retry_ms));
  12377. // Blank line ends event
  12378. EXPECT_TRUE(parse_sse_line("", msg, retry_ms));
  12379. EXPECT_EQ(msg.event, "notification");
  12380. EXPECT_EQ(msg.id, "evt-42");
  12381. EXPECT_EQ(msg.data, "{\"type\":\"alert\"}");
  12382. EXPECT_EQ(retry_ms, 1000);
  12383. }
  12384. //==============================================================================
  12385. // Integration Tests with Server
  12386. //==============================================================================
  12387. class SSEIntegrationTest : public ::testing::Test {
  12388. protected:
  12389. void SetUp() override {
  12390. stop_server_.store(false);
  12391. events_.clear();
  12392. server_ = httplib::detail::make_unique<Server>();
  12393. setup_server();
  12394. start_server();
  12395. }
  12396. void TearDown() override {
  12397. stop_server_.store(true);
  12398. event_cv_.notify_all();
  12399. server_->stop();
  12400. if (server_thread_.joinable()) { server_thread_.join(); }
  12401. }
  12402. void setup_server() {
  12403. // Simple SSE endpoint
  12404. server_->Get("/events", [this](const Request &req, Response &res) {
  12405. auto last_id = req.get_header_value("Last-Event-ID");
  12406. if (!last_id.empty()) { last_received_event_id_ = last_id; }
  12407. res.set_chunked_content_provider(
  12408. "text/event-stream", [this](size_t /*offset*/, DataSink &sink) {
  12409. std::unique_lock<std::mutex> lock(event_mutex_);
  12410. if (event_cv_.wait_for(
  12411. lock, std::chrono::milliseconds(200), [this] {
  12412. return !events_.empty() || stop_server_.load();
  12413. })) {
  12414. if (stop_server_.load()) { return false; }
  12415. if (!events_.empty()) {
  12416. std::string event = events_.front();
  12417. events_.erase(events_.begin());
  12418. sink.write(event.data(), event.size());
  12419. return true;
  12420. }
  12421. }
  12422. return !stop_server_.load();
  12423. });
  12424. });
  12425. // Endpoint that returns error
  12426. server_->Get("/error-endpoint", [](const Request &, Response &res) {
  12427. res.status = 500;
  12428. res.set_content("Internal Server Error", "text/plain");
  12429. });
  12430. // Endpoint for custom event types
  12431. server_->Get("/custom-events", [](const Request &, Response &res) {
  12432. res.set_chunked_content_provider(
  12433. "text/event-stream", [](size_t offset, DataSink &sink) {
  12434. if (offset == 0) {
  12435. std::string event = "event: update\ndata: updated\n\n"
  12436. "event: delete\ndata: deleted\n\n";
  12437. sink.write(event.data(), event.size());
  12438. }
  12439. return false; // End stream after sending
  12440. });
  12441. });
  12442. }
  12443. void start_server() {
  12444. port_ = server_->bind_to_any_port(HOST);
  12445. server_thread_ = std::thread([this]() { server_->listen_after_bind(); });
  12446. // Wait for server to start
  12447. while (!server_->is_running()) {
  12448. std::this_thread::sleep_for(std::chrono::milliseconds(10));
  12449. }
  12450. }
  12451. int get_port() const { return port_; }
  12452. void send_event(const std::string &event) {
  12453. std::lock_guard<std::mutex> lock(event_mutex_);
  12454. events_.push_back(event);
  12455. event_cv_.notify_all();
  12456. }
  12457. std::unique_ptr<Server> server_;
  12458. std::thread server_thread_;
  12459. std::mutex event_mutex_;
  12460. std::condition_variable event_cv_;
  12461. std::vector<std::string> events_;
  12462. std::atomic<bool> stop_server_{false};
  12463. std::string last_received_event_id_;
  12464. int port_ = 0;
  12465. };
  12466. // Test: Successful connection and on_open callback
  12467. TEST_F(SSEIntegrationTest, SuccessfulConnection) {
  12468. // Add a simple endpoint that sends one event and closes
  12469. server_->Get("/simple-event", [](const Request &, Response &res) {
  12470. res.set_chunked_content_provider(
  12471. "text/event-stream", [](size_t offset, DataSink &sink) {
  12472. if (offset == 0) {
  12473. std::string event = "data: hello\n\n";
  12474. sink.write(event.data(), event.size());
  12475. }
  12476. return false; // Close stream after sending
  12477. });
  12478. });
  12479. Client client("localhost", get_port());
  12480. sse::SSEClient sse(client, "/simple-event");
  12481. std::atomic<bool> open_called{false};
  12482. std::atomic<bool> message_received{false};
  12483. sse.on_open([&open_called]() { open_called.store(true); });
  12484. sse.on_message([&message_received](const sse::SSEMessage &msg) {
  12485. if (msg.data == "hello") { message_received.store(true); }
  12486. });
  12487. sse.set_reconnect_interval(100);
  12488. sse.set_max_reconnect_attempts(1);
  12489. // Start async
  12490. sse.start_async();
  12491. // Wait for message to be processed
  12492. std::this_thread::sleep_for(std::chrono::milliseconds(500));
  12493. sse.stop();
  12494. EXPECT_TRUE(open_called.load());
  12495. EXPECT_TRUE(message_received.load());
  12496. }
  12497. // Test: on_message callback
  12498. TEST_F(SSEIntegrationTest, OnMessageCallback) {
  12499. // Endpoint that sends multiple events then closes
  12500. server_->Get("/multi-event", [](const Request &, Response &res) {
  12501. res.set_chunked_content_provider(
  12502. "text/event-stream", [](size_t offset, DataSink &sink) {
  12503. if (offset == 0) {
  12504. std::string events = "data: message1\n\ndata: message2\n\n";
  12505. sink.write(events.data(), events.size());
  12506. }
  12507. return false;
  12508. });
  12509. });
  12510. Client client("localhost", get_port());
  12511. sse::SSEClient sse(client, "/multi-event");
  12512. std::vector<std::string> received_messages;
  12513. std::mutex messages_mutex;
  12514. sse.on_message([&](const sse::SSEMessage &msg) {
  12515. std::lock_guard<std::mutex> lock(messages_mutex);
  12516. received_messages.push_back(msg.data);
  12517. });
  12518. sse.set_reconnect_interval(100);
  12519. sse.set_max_reconnect_attempts(1);
  12520. sse.start_async();
  12521. std::this_thread::sleep_for(std::chrono::milliseconds(500));
  12522. sse.stop();
  12523. std::lock_guard<std::mutex> lock(messages_mutex);
  12524. EXPECT_GE(received_messages.size(), 2u);
  12525. if (received_messages.size() >= 2) {
  12526. EXPECT_EQ(received_messages[0], "message1");
  12527. EXPECT_EQ(received_messages[1], "message2");
  12528. }
  12529. }
  12530. // Test: on_event for specific types
  12531. TEST_F(SSEIntegrationTest, OnEventForSpecificTypes) {
  12532. Client client("localhost", get_port());
  12533. sse::SSEClient sse(client, "/custom-events");
  12534. std::atomic<bool> update_received{false};
  12535. std::atomic<bool> delete_received{false};
  12536. sse.on_event("update", [&update_received](const sse::SSEMessage &msg) {
  12537. if (msg.data == "updated") { update_received.store(true); }
  12538. });
  12539. sse.on_event("delete", [&delete_received](const sse::SSEMessage &msg) {
  12540. if (msg.data == "deleted") { delete_received.store(true); }
  12541. });
  12542. sse.set_max_reconnect_attempts(1);
  12543. sse.start_async();
  12544. std::this_thread::sleep_for(std::chrono::milliseconds(300));
  12545. sse.stop();
  12546. EXPECT_TRUE(update_received.load());
  12547. EXPECT_TRUE(delete_received.load());
  12548. }
  12549. // Test: on_error callback on connection failure
  12550. TEST_F(SSEIntegrationTest, OnErrorCallback) {
  12551. // Connect to a non-existent port
  12552. Client client("localhost", 59999);
  12553. sse::SSEClient sse(client, "/events");
  12554. std::atomic<bool> error_called{false};
  12555. Error received_error = Error::Success;
  12556. sse.on_error([&](Error err) {
  12557. error_called.store(true);
  12558. received_error = err;
  12559. });
  12560. sse.set_reconnect_interval(50);
  12561. sse.set_max_reconnect_attempts(1);
  12562. sse.start_async();
  12563. std::this_thread::sleep_for(std::chrono::milliseconds(200));
  12564. sse.stop();
  12565. EXPECT_TRUE(error_called.load());
  12566. EXPECT_NE(received_error, Error::Success);
  12567. }
  12568. // Test: Last-Event-ID header sent on reconnect
  12569. TEST_F(SSEIntegrationTest, LastEventIdHeader) {
  12570. // Endpoint that sends event with ID
  12571. server_->Get("/event-with-id", [](const Request &, Response &res) {
  12572. res.set_chunked_content_provider(
  12573. "text/event-stream", [](size_t offset, DataSink &sink) {
  12574. if (offset == 0) {
  12575. std::string event = "id: evt-123\ndata: test\n\n";
  12576. sink.write(event.data(), event.size());
  12577. }
  12578. return false;
  12579. });
  12580. });
  12581. Client client("localhost", get_port());
  12582. sse::SSEClient sse(client, "/event-with-id");
  12583. std::atomic<bool> id_received{false};
  12584. sse.on_message([&](const sse::SSEMessage &msg) {
  12585. if (!msg.id.empty()) { id_received.store(true); }
  12586. });
  12587. sse.set_reconnect_interval(100);
  12588. sse.set_max_reconnect_attempts(1);
  12589. sse.start_async();
  12590. std::this_thread::sleep_for(std::chrono::milliseconds(500));
  12591. sse.stop();
  12592. EXPECT_TRUE(id_received.load());
  12593. EXPECT_EQ(sse.last_event_id(), "evt-123");
  12594. }
  12595. // Test: Manual stop
  12596. TEST_F(SSEIntegrationTest, ManualStop) {
  12597. // Endpoint that sends one event and stays open briefly
  12598. std::atomic<bool> handler_running{true};
  12599. server_->Get("/stay-open", [&handler_running](const Request &,
  12600. Response &res) {
  12601. res.set_chunked_content_provider(
  12602. "text/event-stream", [&handler_running](size_t offset, DataSink &sink) {
  12603. if (offset == 0) {
  12604. std::string event = "data: connected\n\n";
  12605. sink.write(event.data(), event.size());
  12606. }
  12607. // Keep connection open while handler_running is true
  12608. for (int i = 0; i < 10 && handler_running.load(); ++i) {
  12609. std::this_thread::sleep_for(std::chrono::milliseconds(50));
  12610. }
  12611. return false;
  12612. });
  12613. });
  12614. Client client("localhost", get_port());
  12615. sse::SSEClient sse(client, "/stay-open");
  12616. std::atomic<bool> connected{false};
  12617. sse.on_open([&connected]() { connected.store(true); });
  12618. sse.set_reconnect_interval(100);
  12619. sse.set_max_reconnect_attempts(1);
  12620. sse.start_async();
  12621. // Wait for connection to establish
  12622. for (int i = 0; i < 20 && !connected.load(); ++i) {
  12623. std::this_thread::sleep_for(std::chrono::milliseconds(50));
  12624. }
  12625. EXPECT_TRUE(connected.load());
  12626. EXPECT_TRUE(sse.is_connected());
  12627. // Signal handler to stop
  12628. handler_running.store(false);
  12629. // Stop SSE client
  12630. sse.stop();
  12631. EXPECT_FALSE(sse.is_connected());
  12632. }
  12633. // Test: SSEClient with custom headers
  12634. TEST_F(SSEIntegrationTest, CustomHeaders) {
  12635. // Setup a server endpoint that checks for custom header
  12636. std::atomic<bool> header_received{false};
  12637. server_->Get("/header-check", [&](const Request &req, Response &res) {
  12638. if (req.get_header_value("X-Custom-Header") == "custom-value") {
  12639. header_received.store(true);
  12640. }
  12641. res.set_chunked_content_provider("text/event-stream",
  12642. [](size_t, DataSink &) { return false; });
  12643. });
  12644. Client client("localhost", get_port());
  12645. Headers headers = {{"X-Custom-Header", "custom-value"}};
  12646. sse::SSEClient sse(client, "/header-check", headers);
  12647. sse.set_max_reconnect_attempts(1);
  12648. sse.start_async();
  12649. std::this_thread::sleep_for(std::chrono::milliseconds(200));
  12650. sse.stop();
  12651. EXPECT_TRUE(header_received.load());
  12652. }
  12653. // Test: Reconnect interval configuration
  12654. TEST_F(SSEIntegrationTest, ReconnectIntervalConfiguration) {
  12655. Client client("localhost", get_port());
  12656. sse::SSEClient sse(client, "/events");
  12657. auto &result = sse.set_reconnect_interval(500);
  12658. // Builder pattern should return reference to self
  12659. EXPECT_EQ(&result, &sse);
  12660. }
  12661. // Test: Max reconnect attempts
  12662. TEST_F(SSEIntegrationTest, MaxReconnectAttempts) {
  12663. // Connect to non-existent port to force reconnects
  12664. Client client("localhost", 59998);
  12665. sse::SSEClient sse(client, "/events");
  12666. std::atomic<int> error_count{0};
  12667. sse.on_error([&](Error) { error_count.fetch_add(1); });
  12668. sse.set_reconnect_interval(50);
  12669. sse.set_max_reconnect_attempts(2);
  12670. auto start = std::chrono::steady_clock::now();
  12671. sse.start(); // Blocking call
  12672. auto end = std::chrono::steady_clock::now();
  12673. // Should have stopped after 2 failed attempts
  12674. EXPECT_GE(error_count.load(), 2);
  12675. // Should not have taken too long (max 2 attempts * 50ms + overhead)
  12676. auto duration =
  12677. std::chrono::duration_cast<std::chrono::milliseconds>(end - start);
  12678. #ifdef _WIN32
  12679. // Windows is much slower for socket connection failures
  12680. EXPECT_LT(duration.count(), 7000);
  12681. #else
  12682. EXPECT_LT(duration.count(), 1000);
  12683. #endif
  12684. }
  12685. // Test: Multi-line data in integration
  12686. TEST_F(SSEIntegrationTest, MultiLineDataIntegration) {
  12687. // Endpoint with multi-line data
  12688. server_->Get("/multiline-data", [](const Request &, Response &res) {
  12689. res.set_chunked_content_provider(
  12690. "text/event-stream", [](size_t offset, DataSink &sink) {
  12691. if (offset == 0) {
  12692. std::string event = "data: line1\ndata: line2\ndata: line3\n\n";
  12693. sink.write(event.data(), event.size());
  12694. }
  12695. return false;
  12696. });
  12697. });
  12698. Client client("localhost", get_port());
  12699. sse::SSEClient sse(client, "/multiline-data");
  12700. std::string received_data;
  12701. std::mutex data_mutex;
  12702. sse.on_message([&](const sse::SSEMessage &msg) {
  12703. std::lock_guard<std::mutex> lock(data_mutex);
  12704. received_data = msg.data;
  12705. });
  12706. sse.set_reconnect_interval(100);
  12707. sse.set_max_reconnect_attempts(1);
  12708. sse.start_async();
  12709. std::this_thread::sleep_for(std::chrono::milliseconds(500));
  12710. sse.stop();
  12711. std::lock_guard<std::mutex> lock(data_mutex);
  12712. EXPECT_EQ(received_data, "line1\nline2\nline3");
  12713. }
  12714. // Test: Auto-reconnect after server disconnection
  12715. TEST_F(SSEIntegrationTest, AutoReconnectAfterDisconnect) {
  12716. std::atomic<int> connection_count{0};
  12717. std::atomic<int> message_count{0};
  12718. // Endpoint that sends one event and closes, forcing reconnect
  12719. server_->Get("/reconnect-test",
  12720. [&connection_count](const Request &, Response &res) {
  12721. connection_count.fetch_add(1);
  12722. res.set_chunked_content_provider(
  12723. "text/event-stream", [](size_t offset, DataSink &sink) {
  12724. if (offset == 0) {
  12725. std::string event = "data: hello\n\n";
  12726. sink.write(event.data(), event.size());
  12727. }
  12728. return false; // Close connection after sending
  12729. });
  12730. });
  12731. Client client("localhost", get_port());
  12732. sse::SSEClient sse(client, "/reconnect-test");
  12733. sse.on_message([&message_count](const sse::SSEMessage &) {
  12734. message_count.fetch_add(1);
  12735. });
  12736. sse.set_reconnect_interval(100);
  12737. sse.set_max_reconnect_attempts(3);
  12738. sse.start_async();
  12739. // Wait long enough for multiple reconnects
  12740. std::this_thread::sleep_for(std::chrono::milliseconds(800));
  12741. sse.stop();
  12742. // Should have connected multiple times (initial + reconnects)
  12743. EXPECT_GE(connection_count.load(), 2);
  12744. // Should have received messages from multiple connections
  12745. EXPECT_GE(message_count.load(), 2);
  12746. }
  12747. // Test: Last-Event-ID sent on reconnect
  12748. TEST_F(SSEIntegrationTest, LastEventIdSentOnReconnect) {
  12749. std::atomic<int> connection_count{0};
  12750. std::vector<std::string> received_last_event_ids;
  12751. std::mutex id_mutex;
  12752. // Endpoint that checks Last-Event-ID header and sends event with ID
  12753. server_->Get("/reconnect-with-id", [&](const Request &req, Response &res) {
  12754. int conn = connection_count.fetch_add(1);
  12755. // Capture the Last-Event-ID header from each connection
  12756. {
  12757. std::lock_guard<std::mutex> lock(id_mutex);
  12758. received_last_event_ids.push_back(req.get_header_value("Last-Event-ID"));
  12759. }
  12760. res.set_chunked_content_provider(
  12761. "text/event-stream", [conn](size_t offset, DataSink &sink) {
  12762. if (offset == 0) {
  12763. std::string event =
  12764. "id: event-" + std::to_string(conn) + "\ndata: msg\n\n";
  12765. sink.write(event.data(), event.size());
  12766. }
  12767. return false;
  12768. });
  12769. });
  12770. Client client("localhost", get_port());
  12771. sse::SSEClient sse(client, "/reconnect-with-id");
  12772. sse.set_reconnect_interval(100);
  12773. sse.set_max_reconnect_attempts(3);
  12774. sse.start_async();
  12775. // Wait for at least 2 connections
  12776. std::this_thread::sleep_for(std::chrono::milliseconds(500));
  12777. sse.stop();
  12778. // Verify behavior
  12779. std::lock_guard<std::mutex> lock(id_mutex);
  12780. EXPECT_GE(received_last_event_ids.size(), 2u);
  12781. // First connection should have no Last-Event-ID
  12782. if (!received_last_event_ids.empty()) {
  12783. EXPECT_EQ(received_last_event_ids[0], "");
  12784. }
  12785. // Second connection should have Last-Event-ID from first connection
  12786. if (received_last_event_ids.size() >= 2) {
  12787. EXPECT_EQ(received_last_event_ids[1], "event-0");
  12788. }
  12789. }
  12790. TEST(Issue2318Test, EmptyHostString) {
  12791. {
  12792. httplib::Client cli_empty("", PORT);
  12793. auto res = cli_empty.Get("/");
  12794. ASSERT_FALSE(res);
  12795. EXPECT_EQ(httplib::Error::Connection, res.error());
  12796. }
  12797. {
  12798. httplib::Client cli(" ", PORT);
  12799. auto res = cli.Get("/");
  12800. ASSERT_FALSE(res);
  12801. EXPECT_EQ(httplib::Error::Connection, res.error());
  12802. }
  12803. }
  12804. #ifdef CPPHTTPLIB_ZLIB_SUPPORT
  12805. TEST(ZipBombProtectionTest, DecompressedSizeExceedsLimit) {
  12806. Server svr;
  12807. // Set a small payload limit (1KB)
  12808. svr.set_payload_max_length(1024);
  12809. svr.Post("/test", [&](const Request &req, Response &res) {
  12810. res.set_content("Body size: " + std::to_string(req.body.size()),
  12811. "text/plain");
  12812. });
  12813. auto listen_thread = std::thread([&]() { svr.listen(HOST, PORT); });
  12814. auto se = detail::scope_exit([&] {
  12815. svr.stop();
  12816. listen_thread.join();
  12817. });
  12818. svr.wait_until_ready();
  12819. // Create data that compresses well but exceeds limit when decompressed
  12820. // 8KB of repeated null bytes compresses to a very small size
  12821. std::string original_data(8 * 1024, '\0');
  12822. // Compress the data using gzip
  12823. std::string compressed_data;
  12824. detail::gzip_compressor compressor;
  12825. compressor.compress(original_data.data(), original_data.size(), true,
  12826. [&](const char *data, size_t size) {
  12827. compressed_data.append(data, size);
  12828. return true;
  12829. });
  12830. // Verify compression worked (compressed should be much smaller)
  12831. ASSERT_LT(compressed_data.size(), original_data.size());
  12832. ASSERT_LT(compressed_data.size(), 1024u); // Compressed fits in limit
  12833. // Send compressed data with Content-Encoding: gzip
  12834. Client cli(HOST, PORT);
  12835. Headers headers = {{"Content-Encoding", "gzip"}};
  12836. auto res =
  12837. cli.Post("/test", headers, compressed_data, "application/octet-stream");
  12838. // Server should reject because decompressed size (8KB) exceeds limit (1KB)
  12839. ASSERT_TRUE(res);
  12840. EXPECT_EQ(StatusCode::BadRequest_400, res->status);
  12841. }
  12842. #endif
  12843. // ============================================================================
  12844. // OpenSSL-Specific Tests
  12845. // ============================================================================
  12846. #ifdef CPPHTTPLIB_OPENSSL_SUPPORT
  12847. X509 *readCertificate(const std::string &strFileName) {
  12848. std::ifstream inStream(strFileName);
  12849. std::string strCertPEM((std::istreambuf_iterator<char>(inStream)),
  12850. std::istreambuf_iterator<char>());
  12851. if (strCertPEM.empty()) return (nullptr);
  12852. BIO *pbCert = BIO_new(BIO_s_mem());
  12853. BIO_write(pbCert, strCertPEM.c_str(), (int)strCertPEM.size());
  12854. X509 *pCert = PEM_read_bio_X509(pbCert, NULL, 0, NULL);
  12855. BIO_free(pbCert);
  12856. return (pCert);
  12857. }
  12858. EVP_PKEY *readPrivateKey(const std::string &strFileName) {
  12859. std::ifstream inStream(strFileName);
  12860. std::string strPrivateKeyPEM((std::istreambuf_iterator<char>(inStream)),
  12861. std::istreambuf_iterator<char>());
  12862. if (strPrivateKeyPEM.empty()) return (nullptr);
  12863. BIO *pbPrivKey = BIO_new(BIO_s_mem());
  12864. BIO_write(pbPrivKey, strPrivateKeyPEM.c_str(), (int)strPrivateKeyPEM.size());
  12865. EVP_PKEY *pPrivateKey = PEM_read_bio_PrivateKey(pbPrivKey, NULL, NULL, NULL);
  12866. BIO_free(pbPrivKey);
  12867. return (pPrivateKey);
  12868. }
  12869. TEST(BindServerTest, UpdateCerts) {
  12870. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE, CLIENT_CA_CERT_FILE);
  12871. int port = svr.bind_to_any_port("0.0.0.0");
  12872. ASSERT_TRUE(svr.is_valid());
  12873. ASSERT_TRUE(port > 0);
  12874. X509 *cert = readCertificate(SERVER_CERT_FILE);
  12875. X509 *ca_cert = readCertificate(CLIENT_CA_CERT_FILE);
  12876. EVP_PKEY *key = readPrivateKey(SERVER_PRIVATE_KEY_FILE);
  12877. ASSERT_TRUE(cert != nullptr);
  12878. ASSERT_TRUE(ca_cert != nullptr);
  12879. ASSERT_TRUE(key != nullptr);
  12880. X509_STORE *cert_store = X509_STORE_new();
  12881. X509_STORE_add_cert(cert_store, ca_cert);
  12882. // svr.update_certs(cert, key, cert_store); // deprecated
  12883. svr.update_certs_pem(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE,
  12884. CLIENT_CA_CERT_FILE);
  12885. ASSERT_TRUE(svr.is_valid());
  12886. svr.stop();
  12887. X509_STORE_free(cert_store);
  12888. X509_free(cert);
  12889. X509_free(ca_cert);
  12890. EVP_PKEY_free(key);
  12891. }
  12892. // Test that SSLServer(X509*, EVP_PKEY*, X509_STORE*) constructor sets
  12893. // client CA list correctly for TLS handshake
  12894. TEST(SSLClientServerTest, X509ConstructorSetsClientCAList) {
  12895. X509 *cert = readCertificate(SERVER_CERT_FILE);
  12896. X509 *ca_cert = readCertificate(CLIENT_CA_CERT_FILE);
  12897. EVP_PKEY *key = readPrivateKey(SERVER_PRIVATE_KEY_FILE);
  12898. ASSERT_TRUE(cert != nullptr);
  12899. ASSERT_TRUE(ca_cert != nullptr);
  12900. ASSERT_TRUE(key != nullptr);
  12901. X509_STORE *cert_store = X509_STORE_new();
  12902. X509_STORE_add_cert(cert_store, ca_cert);
  12903. // Use X509-based constructor (deprecated but should still work correctly)
  12904. #pragma GCC diagnostic push
  12905. #pragma GCC diagnostic ignored "-Wdeprecated-declarations"
  12906. SSLServer svr(cert, key, cert_store);
  12907. #pragma GCC diagnostic pop
  12908. ASSERT_TRUE(svr.is_valid());
  12909. // Verify that client CA list is set in SSL_CTX
  12910. auto ssl_ctx = static_cast<SSL_CTX *>(svr.tls_context());
  12911. ASSERT_TRUE(ssl_ctx != nullptr);
  12912. STACK_OF(X509_NAME) *ca_list = SSL_CTX_get_client_CA_list(ssl_ctx);
  12913. ASSERT_TRUE(ca_list != nullptr);
  12914. EXPECT_GT(sk_X509_NAME_num(ca_list), 0);
  12915. X509_free(cert);
  12916. X509_free(ca_cert);
  12917. EVP_PKEY_free(key);
  12918. }
  12919. // Test that update_certs() updates client CA list correctly
  12920. TEST(SSLClientServerTest, UpdateCertsSetsClientCAList) {
  12921. // Start with file-based constructor
  12922. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  12923. ASSERT_TRUE(svr.is_valid());
  12924. // Initially no client CA list should be set
  12925. auto ssl_ctx = static_cast<SSL_CTX *>(svr.tls_context());
  12926. ASSERT_TRUE(ssl_ctx != nullptr);
  12927. STACK_OF(X509_NAME) *ca_list_before = SSL_CTX_get_client_CA_list(ssl_ctx);
  12928. int count_before = ca_list_before ? sk_X509_NAME_num(ca_list_before) : 0;
  12929. EXPECT_EQ(0, count_before);
  12930. // Now update with client CA (PEM string)
  12931. std::string cert_pem, key_pem, ca_pem;
  12932. read_file(SERVER_CERT_FILE, cert_pem);
  12933. read_file(SERVER_PRIVATE_KEY_FILE, key_pem);
  12934. read_file(CLIENT_CA_CERT_FILE, ca_pem);
  12935. svr.update_certs_pem(cert_pem.c_str(), key_pem.c_str(), ca_pem.c_str());
  12936. ASSERT_TRUE(svr.is_valid());
  12937. // Now client CA list should be set
  12938. STACK_OF(X509_NAME) *ca_list_after = SSL_CTX_get_client_CA_list(ssl_ctx);
  12939. ASSERT_TRUE(ca_list_after != nullptr);
  12940. EXPECT_GT(sk_X509_NAME_num(ca_list_after), 0);
  12941. }
  12942. TEST(SSLClientServerTest, FilePathConstructorSetsClientCAList) {
  12943. // Test that the file-path SSLServer constructor properly sets the client CA
  12944. // list that is sent to clients during the TLS handshake (CertificateRequest)
  12945. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE, CLIENT_CA_CERT_FILE);
  12946. ASSERT_TRUE(svr.is_valid());
  12947. auto ssl_ctx = static_cast<SSL_CTX *>(svr.tls_context());
  12948. ASSERT_TRUE(ssl_ctx != nullptr);
  12949. STACK_OF(X509_NAME) *ca_list = SSL_CTX_get_client_CA_list(ssl_ctx);
  12950. ASSERT_TRUE(ca_list != nullptr);
  12951. EXPECT_GT(sk_X509_NAME_num(ca_list), 0);
  12952. }
  12953. // Disabled due to the out-of-memory problem on GitHub Actions Workflows
  12954. TEST(SSLClientServerTest, DISABLED_LargeDataTransfer) {
  12955. // prepare large data
  12956. std::random_device seed_gen;
  12957. std::mt19937 random(seed_gen());
  12958. constexpr auto large_size_byte = 2147483648UL + 1048576UL; // 2GiB + 1MiB
  12959. std::vector<std::uint32_t> binary(large_size_byte / sizeof(std::uint32_t));
  12960. std::generate(binary.begin(), binary.end(), [&random]() { return random(); });
  12961. // server
  12962. SSLServer svr(SERVER_CERT_FILE, SERVER_PRIVATE_KEY_FILE);
  12963. ASSERT_TRUE(svr.is_valid());
  12964. svr.Post("/binary", [&](const Request &req, Response &res) {
  12965. EXPECT_EQ(large_size_byte, req.body.size());
  12966. EXPECT_EQ(0, std::memcmp(binary.data(), req.body.data(), large_size_byte));
  12967. res.set_content(req.body, "application/octet-stream");
  12968. });
  12969. auto listen_thread = std::thread([&svr]() { svr.listen("localhost", PORT); });
  12970. auto se = detail::scope_exit([&] {
  12971. svr.stop();
  12972. listen_thread.join();
  12973. ASSERT_FALSE(svr.is_running());
  12974. });
  12975. svr.wait_until_ready();
  12976. // client POST
  12977. SSLClient cli("localhost", PORT);
  12978. cli.enable_server_certificate_verification(false);
  12979. cli.set_read_timeout(std::chrono::seconds(100));
  12980. cli.set_write_timeout(std::chrono::seconds(100));
  12981. auto res = cli.Post("/binary", reinterpret_cast<char *>(binary.data()),
  12982. large_size_byte, "application/octet-stream");
  12983. // compare
  12984. EXPECT_EQ(StatusCode::OK_200, res->status);
  12985. EXPECT_EQ(large_size_byte, res->body.size());
  12986. EXPECT_EQ(0, std::memcmp(binary.data(), res->body.data(), large_size_byte));
  12987. }
  12988. #endif
  12989. // ============================================================================
  12990. // MbedTLS-Specific Tests
  12991. // ============================================================================
  12992. #ifdef CPPHTTPLIB_MBEDTLS_SUPPORT
  12993. TEST(SSLClientServerTest, CustomizeServerSSLCtxMbedTLS) {
  12994. using namespace httplib::tls;
  12995. // Track if callback was invoked
  12996. bool callback_invoked = false;
  12997. // The callback receives void* ctx which is actually MbedTlsContext*
  12998. // We can access the mbedtls_ssl_config via the context
  12999. auto setup_callback = [&callback_invoked](void *ctx) {
  13000. callback_invoked = true;
  13001. // Cast to MbedTlsContext* to access the ssl config
  13002. auto *mbedtls_ctx = static_cast<httplib::tls::impl::MbedTlsContext *>(ctx);
  13003. mbedtls_ssl_config *conf = &mbedtls_ctx->conf;
  13004. // Use static variables to hold certificate data (simplified for test)
  13005. static mbedtls_x509_crt own_cert;
  13006. static mbedtls_pk_context own_key;
  13007. static mbedtls_x509_crt ca_chain;
  13008. static bool initialized = false;
  13009. if (!initialized) {
  13010. mbedtls_x509_crt_init(&own_cert);
  13011. mbedtls_pk_init(&own_key);
  13012. mbedtls_x509_crt_init(&ca_chain);
  13013. // Load server certificate
  13014. if (mbedtls_x509_crt_parse_file(&own_cert, SERVER_CERT_FILE) != 0) {
  13015. return false;
  13016. }
  13017. // Load server private key
  13018. if (mbedtls_pk_parse_keyfile(&own_key, SERVER_PRIVATE_KEY_FILE, nullptr
  13019. #if MBEDTLS_VERSION_MAJOR >= 3
  13020. ,
  13021. mbedtls_ctr_drbg_random, nullptr
  13022. #endif
  13023. ) != 0) {
  13024. return false;
  13025. }
  13026. // Load CA chain for client verification
  13027. if (mbedtls_x509_crt_parse_file(&ca_chain, CLIENT_CA_CERT_FILE) != 0) {
  13028. return false;
  13029. }
  13030. initialized = true;
  13031. }
  13032. // Configure the SSL config
  13033. mbedtls_ssl_conf_own_cert(conf, &own_cert, &own_key);
  13034. mbedtls_ssl_conf_ca_chain(conf, &ca_chain, nullptr);
  13035. mbedtls_ssl_conf_authmode(conf, MBEDTLS_SSL_VERIFY_REQUIRED);
  13036. // Set minimum TLS version using mbedTLS native API
  13037. #if MBEDTLS_VERSION_MAJOR >= 3
  13038. mbedtls_ssl_conf_min_tls_version(conf, MBEDTLS_SSL_VERSION_TLS1_2);
  13039. #else
  13040. mbedtls_ssl_conf_min_version(conf, MBEDTLS_SSL_MAJOR_VERSION_3,
  13041. MBEDTLS_SSL_MINOR_VERSION_3);
  13042. #endif
  13043. return true;
  13044. };
  13045. SSLServer svr(setup_callback);
  13046. ASSERT_TRUE(svr.is_valid());
  13047. ASSERT_TRUE(callback_invoked);
  13048. svr.Get("/test", [&](const Request &req, Response &res) {
  13049. res.set_content("test", "text/plain");
  13050. auto cert = req.peer_cert();
  13051. ASSERT_TRUE(static_cast<bool>(cert));
  13052. auto common_name = cert.subject_cn();
  13053. EXPECT_EQ("Common Name", common_name);
  13054. });
  13055. thread t = thread([&]() { ASSERT_TRUE(svr.listen(HOST, PORT)); });
  13056. auto se = detail::scope_exit([&] {
  13057. svr.stop();
  13058. t.join();
  13059. ASSERT_FALSE(svr.is_running());
  13060. });
  13061. svr.wait_until_ready();
  13062. SSLClient cli(HOST, PORT, CLIENT_CERT_FILE, CLIENT_PRIVATE_KEY_FILE);
  13063. cli.enable_server_certificate_verification(false);
  13064. cli.set_connection_timeout(30);
  13065. auto res = cli.Get("/test");
  13066. ASSERT_TRUE(res);
  13067. ASSERT_EQ(StatusCode::OK_200, res->status);
  13068. }
  13069. #endif
  13070. // WebSocket Tests
  13071. TEST(WebSocketTest, RSVBitsMustBeZero) {
  13072. // RFC 6455 Section 5.2: RSV1, RSV2, RSV3 MUST be 0 unless an extension
  13073. // defining the meaning of these bits has been negotiated.
  13074. auto make_frame = [](uint8_t first_byte) {
  13075. std::string frame;
  13076. frame += static_cast<char>(first_byte); // FIN + RSV + opcode
  13077. frame += static_cast<char>(0x05); // mask=0, payload_len=5
  13078. frame += "Hello";
  13079. return frame;
  13080. };
  13081. // RSV1 set (0x40)
  13082. {
  13083. detail::BufferStream strm;
  13084. strm.write(make_frame(0x81 | 0x40).data(), 8); // FIN + RSV1 + Text
  13085. ws::Opcode opcode;
  13086. std::string payload;
  13087. bool fin;
  13088. EXPECT_FALSE(ws::impl::read_websocket_frame(strm, opcode, payload, fin,
  13089. false, 1024));
  13090. }
  13091. // RSV2 set (0x20)
  13092. {
  13093. detail::BufferStream strm;
  13094. strm.write(make_frame(0x81 | 0x20).data(), 8); // FIN + RSV2 + Text
  13095. ws::Opcode opcode;
  13096. std::string payload;
  13097. bool fin;
  13098. EXPECT_FALSE(ws::impl::read_websocket_frame(strm, opcode, payload, fin,
  13099. false, 1024));
  13100. }
  13101. // RSV3 set (0x10)
  13102. {
  13103. detail::BufferStream strm;
  13104. strm.write(make_frame(0x81 | 0x10).data(), 8); // FIN + RSV3 + Text
  13105. ws::Opcode opcode;
  13106. std::string payload;
  13107. bool fin;
  13108. EXPECT_FALSE(ws::impl::read_websocket_frame(strm, opcode, payload, fin,
  13109. false, 1024));
  13110. }
  13111. // No RSV bits set - should succeed
  13112. {
  13113. detail::BufferStream strm;
  13114. strm.write(make_frame(0x81).data(), 8); // FIN + Text, no RSV
  13115. ws::Opcode opcode;
  13116. std::string payload;
  13117. bool fin;
  13118. EXPECT_TRUE(ws::impl::read_websocket_frame(strm, opcode, payload, fin,
  13119. false, 1024));
  13120. EXPECT_EQ(ws::Opcode::Text, opcode);
  13121. EXPECT_EQ("Hello", payload);
  13122. EXPECT_TRUE(fin);
  13123. }
  13124. }
  13125. TEST(WebSocketTest, ControlFrameValidation) {
  13126. // RFC 6455 Section 5.5: control frames MUST have FIN=1 and
  13127. // payload length <= 125.
  13128. // Ping with FIN=0 - must be rejected
  13129. {
  13130. detail::BufferStream strm;
  13131. std::string frame;
  13132. frame += static_cast<char>(0x09); // FIN=0, opcode=Ping
  13133. frame += static_cast<char>(0x00); // mask=0, payload_len=0
  13134. strm.write(frame.data(), frame.size());
  13135. ws::Opcode opcode;
  13136. std::string payload;
  13137. bool fin;
  13138. EXPECT_FALSE(ws::impl::read_websocket_frame(strm, opcode, payload, fin,
  13139. false, 1024));
  13140. }
  13141. // Close with FIN=0 - must be rejected
  13142. {
  13143. detail::BufferStream strm;
  13144. std::string frame;
  13145. frame += static_cast<char>(0x08); // FIN=0, opcode=Close
  13146. frame += static_cast<char>(0x00); // mask=0, payload_len=0
  13147. strm.write(frame.data(), frame.size());
  13148. ws::Opcode opcode;
  13149. std::string payload;
  13150. bool fin;
  13151. EXPECT_FALSE(ws::impl::read_websocket_frame(strm, opcode, payload, fin,
  13152. false, 1024));
  13153. }
  13154. // Ping with payload_len=126 (extended length) - must be rejected
  13155. {
  13156. detail::BufferStream strm;
  13157. std::string frame;
  13158. frame += static_cast<char>(0x89); // FIN=1, opcode=Ping
  13159. frame += static_cast<char>(126); // payload_len=126 (>125)
  13160. frame += static_cast<char>(0x00); // extended length high byte
  13161. frame += static_cast<char>(126); // extended length low byte
  13162. frame += std::string(126, 'x');
  13163. strm.write(frame.data(), frame.size());
  13164. ws::Opcode opcode;
  13165. std::string payload;
  13166. bool fin;
  13167. EXPECT_FALSE(ws::impl::read_websocket_frame(strm, opcode, payload, fin,
  13168. false, 1024));
  13169. }
  13170. // Ping with FIN=1 and payload_len=125 - should succeed
  13171. {
  13172. detail::BufferStream strm;
  13173. std::string frame;
  13174. frame += static_cast<char>(0x89); // FIN=1, opcode=Ping
  13175. frame += static_cast<char>(125); // payload_len=125
  13176. frame += std::string(125, 'x');
  13177. strm.write(frame.data(), frame.size());
  13178. ws::Opcode opcode;
  13179. std::string payload;
  13180. bool fin;
  13181. EXPECT_TRUE(ws::impl::read_websocket_frame(strm, opcode, payload, fin,
  13182. false, 1024));
  13183. EXPECT_EQ(ws::Opcode::Ping, opcode);
  13184. EXPECT_EQ(125u, payload.size());
  13185. EXPECT_TRUE(fin);
  13186. }
  13187. }
  13188. TEST(WebSocketTest, PayloadLength64BitMSBMustBeZero) {
  13189. // RFC 6455 Section 5.2: the most significant bit of a 64-bit payload
  13190. // length MUST be 0.
  13191. // MSB set - must be rejected
  13192. {
  13193. detail::BufferStream strm;
  13194. std::string frame;
  13195. frame += static_cast<char>(0x81); // FIN=1, opcode=Text
  13196. frame += static_cast<char>(127); // 64-bit extended length
  13197. frame += static_cast<char>(0x80); // MSB set (invalid)
  13198. frame += std::string(7, '\0'); // remaining 7 bytes of length
  13199. strm.write(frame.data(), frame.size());
  13200. ws::Opcode opcode;
  13201. std::string payload;
  13202. bool fin;
  13203. EXPECT_FALSE(ws::impl::read_websocket_frame(strm, opcode, payload, fin,
  13204. false, 1024));
  13205. }
  13206. // MSB clear - should pass length parsing (will be rejected by max_len,
  13207. // but that's a different check; use a small length to verify)
  13208. {
  13209. detail::BufferStream strm;
  13210. std::string frame;
  13211. frame += static_cast<char>(0x81); // FIN=1, opcode=Text
  13212. frame += static_cast<char>(127); // 64-bit extended length
  13213. frame += std::string(7, '\0'); // high bytes = 0
  13214. frame += static_cast<char>(0x03); // length = 3
  13215. frame += "abc";
  13216. strm.write(frame.data(), frame.size());
  13217. ws::Opcode opcode;
  13218. std::string payload;
  13219. bool fin;
  13220. EXPECT_TRUE(ws::impl::read_websocket_frame(strm, opcode, payload, fin,
  13221. false, 1024));
  13222. EXPECT_EQ(ws::Opcode::Text, opcode);
  13223. EXPECT_EQ("abc", payload);
  13224. }
  13225. }
  13226. TEST(WebSocketTest, InvalidUTF8TextFrame) {
  13227. // RFC 6455 Section 5.6: text frames must contain valid UTF-8.
  13228. // Valid UTF-8
  13229. EXPECT_TRUE(ws::impl::is_valid_utf8("Hello"));
  13230. EXPECT_TRUE(ws::impl::is_valid_utf8("\xC3\xA9")); // é (U+00E9)
  13231. EXPECT_TRUE(ws::impl::is_valid_utf8("\xE3\x81\x82")); // あ (U+3042)
  13232. EXPECT_TRUE(ws::impl::is_valid_utf8("\xF0\x9F\x98\x80")); // 😀 (U+1F600)
  13233. EXPECT_TRUE(ws::impl::is_valid_utf8(""));
  13234. // Invalid UTF-8
  13235. EXPECT_FALSE(ws::impl::is_valid_utf8("\x80")); // Invalid start byte
  13236. EXPECT_FALSE(ws::impl::is_valid_utf8("\xC3\x28")); // Bad continuation
  13237. EXPECT_FALSE(ws::impl::is_valid_utf8("\xC0\xAF")); // Overlong encoding
  13238. EXPECT_FALSE(
  13239. ws::impl::is_valid_utf8("\xED\xA0\x80")); // Surrogate half U+D800
  13240. EXPECT_FALSE(ws::impl::is_valid_utf8("\xF4\x90\x80\x80")); // Beyond U+10FFFF
  13241. }
  13242. TEST(WebSocketTest, ConnectAndDisconnect) {
  13243. Server svr;
  13244. svr.WebSocket("/ws", [](const Request &, ws::WebSocket &ws) {
  13245. std::string msg;
  13246. while (ws.read(msg)) {}
  13247. });
  13248. auto port = svr.bind_to_any_port(HOST);
  13249. std::thread t([&]() { svr.listen_after_bind(); });
  13250. svr.wait_until_ready();
  13251. ws::WebSocketClient client("ws://localhost:" + std::to_string(port) + "/ws");
  13252. ASSERT_TRUE(client.connect());
  13253. EXPECT_TRUE(client.is_open());
  13254. client.close();
  13255. EXPECT_FALSE(client.is_open());
  13256. svr.stop();
  13257. t.join();
  13258. }
  13259. TEST(WebSocketTest, ValidURL) {
  13260. ws::WebSocketClient ws1("ws://localhost:8080/path");
  13261. EXPECT_TRUE(ws1.is_valid());
  13262. ws::WebSocketClient ws2("ws://example.com/path");
  13263. EXPECT_TRUE(ws2.is_valid());
  13264. ws::WebSocketClient ws3("ws://example.com:9090/path/to/endpoint");
  13265. EXPECT_TRUE(ws3.is_valid());
  13266. #ifdef CPPHTTPLIB_SSL_ENABLED
  13267. ws::WebSocketClient wss1("wss://example.com/path");
  13268. EXPECT_TRUE(wss1.is_valid());
  13269. ws::WebSocketClient wss2("wss://example.com:443/path");
  13270. EXPECT_TRUE(wss2.is_valid());
  13271. #endif
  13272. }
  13273. TEST(WebSocketTest, InvalidURL) {
  13274. // No scheme
  13275. ws::WebSocketClient ws1("localhost:8080/path");
  13276. EXPECT_FALSE(ws1.is_valid());
  13277. // No path
  13278. ws::WebSocketClient ws2("ws://localhost:8080");
  13279. EXPECT_FALSE(ws2.is_valid());
  13280. // Empty string
  13281. ws::WebSocketClient ws3("");
  13282. EXPECT_FALSE(ws3.is_valid());
  13283. // Missing host
  13284. ws::WebSocketClient ws4("ws://:8080/path");
  13285. EXPECT_FALSE(ws4.is_valid());
  13286. }
  13287. TEST(WebSocketTest, UnsupportedScheme) {
  13288. #ifdef CPPHTTPLIB_NO_EXCEPTIONS
  13289. ws::WebSocketClient ws1("http://localhost:8080/path");
  13290. EXPECT_FALSE(ws1.is_valid());
  13291. ws::WebSocketClient ws2("https://localhost:8080/path");
  13292. EXPECT_FALSE(ws2.is_valid());
  13293. ws::WebSocketClient ws3("ftp://localhost:8080/path");
  13294. EXPECT_FALSE(ws3.is_valid());
  13295. #else
  13296. EXPECT_THROW(ws::WebSocketClient("http://localhost:8080/path"),
  13297. std::invalid_argument);
  13298. EXPECT_THROW(ws::WebSocketClient("ftp://localhost:8080/path"),
  13299. std::invalid_argument);
  13300. #endif
  13301. }
  13302. TEST(WebSocketTest, ConnectWhenInvalid) {
  13303. ws::WebSocketClient ws("not a valid url");
  13304. EXPECT_FALSE(ws.is_valid());
  13305. EXPECT_FALSE(ws.connect());
  13306. }
  13307. TEST(WebSocketTest, DefaultPort) {
  13308. ws::WebSocketClient ws1("ws://example.com/path");
  13309. EXPECT_TRUE(ws1.is_valid());
  13310. // ws:// defaults to port 80 (verified by successful parse)
  13311. #ifdef CPPHTTPLIB_SSL_ENABLED
  13312. ws::WebSocketClient ws2("wss://example.com/path");
  13313. EXPECT_TRUE(ws2.is_valid());
  13314. // wss:// defaults to port 443 (verified by successful parse)
  13315. #endif
  13316. }
  13317. TEST(WebSocketTest, IPv6LiteralAddress) {
  13318. ws::WebSocketClient ws1("ws://[::1]:8080/path");
  13319. EXPECT_TRUE(ws1.is_valid());
  13320. ws::WebSocketClient ws2("ws://[fe80::1]:3000/ws");
  13321. EXPECT_TRUE(ws2.is_valid());
  13322. }
  13323. TEST(WebSocketTest, ComplexPath) {
  13324. ws::WebSocketClient ws1("ws://localhost:8080/path/to/endpoint");
  13325. EXPECT_TRUE(ws1.is_valid());
  13326. ws::WebSocketClient ws2("ws://localhost:8080/");
  13327. EXPECT_TRUE(ws2.is_valid());
  13328. }
  13329. class WebSocketIntegrationTest : public ::testing::Test {
  13330. protected:
  13331. void SetUp() override {
  13332. server_ = httplib::detail::make_unique<Server>();
  13333. setup_server();
  13334. start_server();
  13335. }
  13336. void TearDown() override {
  13337. server_->stop();
  13338. if (server_thread_.joinable()) { server_thread_.join(); }
  13339. }
  13340. void setup_server() {
  13341. server_->WebSocket("/ws-echo", [](const Request &, ws::WebSocket &ws) {
  13342. std::string msg;
  13343. ws::ReadResult ret;
  13344. while ((ret = ws.read(msg))) {
  13345. if (ret == ws::Binary) {
  13346. ws.send(msg.data(), msg.size());
  13347. } else {
  13348. ws.send(msg);
  13349. }
  13350. }
  13351. });
  13352. server_->WebSocket("/ws-echo-string",
  13353. [](const Request &, ws::WebSocket &ws) {
  13354. std::string msg;
  13355. while (ws.read(msg)) {
  13356. ws.send("echo: " + msg);
  13357. }
  13358. });
  13359. server_->WebSocket(
  13360. "/ws-request-info", [](const Request &req, ws::WebSocket &ws) {
  13361. // Echo back request metadata
  13362. ws.send("path:" + req.path);
  13363. ws.send("header:" + req.get_header_value("X-Test-Header"));
  13364. std::string msg;
  13365. while (ws.read(msg)) {}
  13366. });
  13367. server_->WebSocket("/ws-close", [](const Request &, ws::WebSocket &ws) {
  13368. std::string msg;
  13369. ws.read(msg); // wait for a message
  13370. ws.close();
  13371. });
  13372. server_->WebSocket("/ws-close-status",
  13373. [](const Request &, ws::WebSocket &ws) {
  13374. std::string msg;
  13375. ws.read(msg); // wait for a message
  13376. ws.close(ws::CloseStatus::GoingAway, "shutting down");
  13377. });
  13378. server_->WebSocket(
  13379. "/ws-subprotocol",
  13380. [](const Request &, ws::WebSocket &ws) {
  13381. std::string msg;
  13382. while (ws.read(msg)) {
  13383. ws.send(msg);
  13384. }
  13385. },
  13386. [](const std::vector<std::string> &protocols) -> std::string {
  13387. for (const auto &p : protocols) {
  13388. if (p == "graphql-ws") { return p; }
  13389. }
  13390. return "";
  13391. });
  13392. }
  13393. void start_server() {
  13394. port_ = server_->bind_to_any_port(HOST);
  13395. server_thread_ = std::thread([this]() { server_->listen_after_bind(); });
  13396. server_->wait_until_ready();
  13397. }
  13398. std::unique_ptr<Server> server_;
  13399. std::thread server_thread_;
  13400. int port_ = 0;
  13401. };
  13402. TEST_F(WebSocketIntegrationTest, TextEcho) {
  13403. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13404. "/ws-echo");
  13405. ASSERT_TRUE(client.connect());
  13406. ASSERT_TRUE(client.is_open());
  13407. ASSERT_TRUE(client.send("Hello WebSocket"));
  13408. std::string msg;
  13409. EXPECT_EQ(ws::Text, client.read(msg));
  13410. EXPECT_EQ("Hello WebSocket", msg);
  13411. client.close();
  13412. }
  13413. TEST_F(WebSocketIntegrationTest, BinaryEcho) {
  13414. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13415. "/ws-echo");
  13416. ASSERT_TRUE(client.connect());
  13417. std::string binary_data = {'\x00', '\x01', '\x02', '\xFF', '\xFE'};
  13418. ASSERT_TRUE(client.send(binary_data.data(), binary_data.size()));
  13419. std::string msg;
  13420. EXPECT_EQ(ws::Binary, client.read(msg));
  13421. EXPECT_EQ(binary_data, msg);
  13422. client.close();
  13423. }
  13424. TEST_F(WebSocketIntegrationTest, MultipleMessages) {
  13425. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13426. "/ws-echo");
  13427. ASSERT_TRUE(client.connect());
  13428. for (int i = 0; i < 10; i++) {
  13429. auto text = "message " + std::to_string(i);
  13430. ASSERT_TRUE(client.send(text));
  13431. std::string msg;
  13432. ASSERT_TRUE(client.read(msg));
  13433. EXPECT_EQ(text, msg);
  13434. }
  13435. client.close();
  13436. }
  13437. TEST_F(WebSocketIntegrationTest, CloseHandshake) {
  13438. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13439. "/ws-close");
  13440. ASSERT_TRUE(client.connect());
  13441. // Send a message to trigger the server to close
  13442. ASSERT_TRUE(client.send("trigger close"));
  13443. // The server will close, so read should return false
  13444. std::string msg;
  13445. EXPECT_FALSE(client.read(msg));
  13446. EXPECT_FALSE(client.is_open());
  13447. }
  13448. TEST_F(WebSocketIntegrationTest, LargeMessage) {
  13449. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13450. "/ws-echo");
  13451. ASSERT_TRUE(client.connect());
  13452. // 128KB message
  13453. std::string large_data(128 * 1024, 'X');
  13454. ASSERT_TRUE(client.send(large_data));
  13455. std::string msg;
  13456. ASSERT_TRUE(client.read(msg));
  13457. EXPECT_EQ(large_data, msg);
  13458. client.close();
  13459. }
  13460. TEST_F(WebSocketIntegrationTest, ConcurrentSend) {
  13461. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13462. "/ws-echo");
  13463. ASSERT_TRUE(client.connect());
  13464. const int num_threads = 4;
  13465. std::vector<std::thread> threads;
  13466. std::atomic<int> send_count{0};
  13467. for (int t = 0; t < num_threads; t++) {
  13468. threads.emplace_back([&client, &send_count, t]() {
  13469. for (int i = 0; i < 5; i++) {
  13470. auto text = "thread" + std::to_string(t) + "_msg" + std::to_string(i);
  13471. if (client.send(text)) { send_count++; }
  13472. }
  13473. });
  13474. }
  13475. for (auto &th : threads) {
  13476. th.join();
  13477. }
  13478. int received = 0;
  13479. std::string msg;
  13480. while (received < send_count.load()) {
  13481. if (!client.read(msg)) { break; }
  13482. received++;
  13483. }
  13484. EXPECT_EQ(send_count.load(), received);
  13485. client.close();
  13486. }
  13487. TEST_F(WebSocketIntegrationTest, ReadString) {
  13488. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13489. "/ws-echo-string");
  13490. ASSERT_TRUE(client.connect());
  13491. ASSERT_TRUE(client.send("hello"));
  13492. std::string msg;
  13493. ASSERT_TRUE(client.read(msg));
  13494. EXPECT_EQ("echo: hello", msg);
  13495. ASSERT_TRUE(client.send("world"));
  13496. ASSERT_TRUE(client.read(msg));
  13497. EXPECT_EQ("echo: world", msg);
  13498. client.close();
  13499. }
  13500. TEST_F(WebSocketIntegrationTest, RequestAccess) {
  13501. Headers headers = {{"X-Test-Header", "test-value"}};
  13502. ws::WebSocketClient client(
  13503. "ws://localhost:" + std::to_string(port_) + "/ws-request-info", headers);
  13504. ASSERT_TRUE(client.connect());
  13505. std::string msg;
  13506. ASSERT_TRUE(client.read(msg));
  13507. EXPECT_EQ("path:/ws-request-info", msg);
  13508. ASSERT_TRUE(client.read(msg));
  13509. EXPECT_EQ("header:test-value", msg);
  13510. client.close();
  13511. }
  13512. TEST_F(WebSocketIntegrationTest, ReadTimeout) {
  13513. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13514. "/ws-echo");
  13515. client.set_read_timeout(1, 0); // 1 second
  13516. ASSERT_TRUE(client.connect());
  13517. // Don't send anything — server echo handler waits for a message,
  13518. // so read() should time out and return false.
  13519. std::string msg;
  13520. EXPECT_FALSE(client.read(msg));
  13521. }
  13522. TEST_F(WebSocketIntegrationTest, MaxPayloadExceeded) {
  13523. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13524. "/ws-echo");
  13525. client.set_read_timeout(5, 0);
  13526. ASSERT_TRUE(client.connect());
  13527. // Send a message exceeding CPPHTTPLIB_WEBSOCKET_MAX_PAYLOAD_LENGTH (16MB).
  13528. // The server should reject it and close the connection.
  13529. std::string oversized(CPPHTTPLIB_WEBSOCKET_MAX_PAYLOAD_LENGTH + 1, 'A');
  13530. client.send(oversized);
  13531. // The server's read() should have failed due to payload limit,
  13532. // so our read() should return false (connection closed).
  13533. std::string msg;
  13534. EXPECT_FALSE(client.read(msg));
  13535. }
  13536. TEST_F(WebSocketIntegrationTest, MaxPayloadAtLimit) {
  13537. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13538. "/ws-echo");
  13539. client.set_read_timeout(10, 0);
  13540. ASSERT_TRUE(client.connect());
  13541. // Send a message exactly at CPPHTTPLIB_WEBSOCKET_MAX_PAYLOAD_LENGTH (16MB).
  13542. // This should succeed.
  13543. std::string at_limit(CPPHTTPLIB_WEBSOCKET_MAX_PAYLOAD_LENGTH, 'B');
  13544. ASSERT_TRUE(client.send(at_limit));
  13545. std::string msg;
  13546. ASSERT_TRUE(client.read(msg));
  13547. EXPECT_EQ(at_limit.size(), msg.size());
  13548. client.close();
  13549. }
  13550. TEST_F(WebSocketIntegrationTest, ConnectToInvalidPath) {
  13551. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13552. "/nonexistent");
  13553. EXPECT_FALSE(client.connect());
  13554. EXPECT_FALSE(client.is_open());
  13555. }
  13556. TEST_F(WebSocketIntegrationTest, EmptyMessage) {
  13557. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13558. "/ws-echo");
  13559. ASSERT_TRUE(client.connect());
  13560. ASSERT_TRUE(client.send(""));
  13561. std::string msg;
  13562. EXPECT_EQ(ws::Text, client.read(msg));
  13563. EXPECT_EQ("", msg);
  13564. client.close();
  13565. }
  13566. TEST_F(WebSocketIntegrationTest, Reconnect) {
  13567. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13568. "/ws-echo");
  13569. // First connection
  13570. ASSERT_TRUE(client.connect());
  13571. ASSERT_TRUE(client.send("first"));
  13572. std::string msg;
  13573. ASSERT_TRUE(client.read(msg));
  13574. EXPECT_EQ("first", msg);
  13575. client.close();
  13576. EXPECT_FALSE(client.is_open());
  13577. // Reconnect using the same client object
  13578. ASSERT_TRUE(client.connect());
  13579. ASSERT_TRUE(client.is_open());
  13580. ASSERT_TRUE(client.send("second"));
  13581. ASSERT_TRUE(client.read(msg));
  13582. EXPECT_EQ("second", msg);
  13583. client.close();
  13584. }
  13585. TEST_F(WebSocketIntegrationTest, CloseWithStatus) {
  13586. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13587. "/ws-close-status");
  13588. ASSERT_TRUE(client.connect());
  13589. // Trigger the server to close with GoingAway status
  13590. ASSERT_TRUE(client.send("trigger"));
  13591. // read() should return false after receiving the close frame
  13592. std::string msg;
  13593. EXPECT_FALSE(client.read(msg));
  13594. EXPECT_FALSE(client.is_open());
  13595. }
  13596. TEST_F(WebSocketIntegrationTest, ClientCloseWithStatus) {
  13597. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13598. "/ws-echo");
  13599. ASSERT_TRUE(client.connect());
  13600. client.close(ws::CloseStatus::GoingAway, "client leaving");
  13601. EXPECT_FALSE(client.is_open());
  13602. }
  13603. TEST_F(WebSocketIntegrationTest, SubProtocolNegotiation) {
  13604. Headers headers = {{"Sec-WebSocket-Protocol", "mqtt, graphql-ws"}};
  13605. ws::WebSocketClient client(
  13606. "ws://localhost:" + std::to_string(port_) + "/ws-subprotocol", headers);
  13607. ASSERT_TRUE(client.connect());
  13608. // Server should have selected graphql-ws
  13609. EXPECT_EQ("graphql-ws", client.subprotocol());
  13610. client.close();
  13611. }
  13612. TEST_F(WebSocketIntegrationTest, SubProtocolNoMatch) {
  13613. Headers headers = {{"Sec-WebSocket-Protocol", "mqtt, wamp"}};
  13614. ws::WebSocketClient client(
  13615. "ws://localhost:" + std::to_string(port_) + "/ws-subprotocol", headers);
  13616. ASSERT_TRUE(client.connect());
  13617. // Server should not have selected any subprotocol
  13618. EXPECT_TRUE(client.subprotocol().empty());
  13619. client.close();
  13620. }
  13621. TEST_F(WebSocketIntegrationTest, SubProtocolNotRequested) {
  13622. // Connect without requesting any subprotocol
  13623. ws::WebSocketClient client("ws://localhost:" + std::to_string(port_) +
  13624. "/ws-subprotocol");
  13625. ASSERT_TRUE(client.connect());
  13626. EXPECT_TRUE(client.subprotocol().empty());
  13627. client.close();
  13628. }
  13629. TEST(WebSocketPreRoutingTest, RejectWithoutAuth) {
  13630. Server svr;
  13631. svr.set_pre_routing_handler([](const Request &req, Response &res) {
  13632. if (!req.has_header("Authorization")) {
  13633. res.status = StatusCode::Unauthorized_401;
  13634. res.set_content("Unauthorized", "text/plain");
  13635. return Server::HandlerResponse::Handled;
  13636. }
  13637. return Server::HandlerResponse::Unhandled;
  13638. });
  13639. svr.WebSocket("/ws", [](const Request &, ws::WebSocket &ws) {
  13640. std::string msg;
  13641. while (ws.read(msg)) {
  13642. ws.send(msg);
  13643. }
  13644. });
  13645. auto port = svr.bind_to_any_port("localhost");
  13646. std::thread t([&]() { svr.listen_after_bind(); });
  13647. svr.wait_until_ready();
  13648. // Without Authorization header - should be rejected before upgrade
  13649. ws::WebSocketClient client1("ws://localhost:" + std::to_string(port) + "/ws");
  13650. EXPECT_FALSE(client1.connect());
  13651. // With Authorization header - should succeed
  13652. Headers headers = {{"Authorization", "Bearer token123"}};
  13653. ws::WebSocketClient client2("ws://localhost:" + std::to_string(port) + "/ws",
  13654. headers);
  13655. ASSERT_TRUE(client2.connect());
  13656. ASSERT_TRUE(client2.send("hello"));
  13657. std::string msg;
  13658. ASSERT_TRUE(client2.read(msg));
  13659. EXPECT_EQ("hello", msg);
  13660. client2.close();
  13661. svr.stop();
  13662. t.join();
  13663. }
  13664. #ifdef CPPHTTPLIB_OPENSSL_SUPPORT
  13665. class WebSocketSSLIntegrationTest : public ::testing::Test {
  13666. protected:
  13667. void SetUp() override {
  13668. server_ = httplib::detail::make_unique<SSLServer>(SERVER_CERT_FILE,
  13669. SERVER_PRIVATE_KEY_FILE);
  13670. server_->WebSocket("/ws-echo", [](const Request &, ws::WebSocket &ws) {
  13671. std::string msg;
  13672. ws::ReadResult ret;
  13673. while ((ret = ws.read(msg))) {
  13674. if (ret == ws::Binary) {
  13675. ws.send(msg.data(), msg.size());
  13676. } else {
  13677. ws.send(msg);
  13678. }
  13679. }
  13680. });
  13681. port_ = server_->bind_to_any_port(HOST);
  13682. server_thread_ = std::thread([this]() { server_->listen_after_bind(); });
  13683. server_->wait_until_ready();
  13684. }
  13685. void TearDown() override {
  13686. server_->stop();
  13687. if (server_thread_.joinable()) { server_thread_.join(); }
  13688. }
  13689. std::unique_ptr<SSLServer> server_;
  13690. std::thread server_thread_;
  13691. int port_ = 0;
  13692. };
  13693. TEST_F(WebSocketSSLIntegrationTest, TextEcho) {
  13694. ws::WebSocketClient client("wss://localhost:" + std::to_string(port_) +
  13695. "/ws-echo");
  13696. client.enable_server_certificate_verification(false);
  13697. ASSERT_TRUE(client.connect());
  13698. ASSERT_TRUE(client.is_open());
  13699. ASSERT_TRUE(client.send("Hello WSS"));
  13700. std::string msg;
  13701. EXPECT_EQ(ws::Text, client.read(msg));
  13702. EXPECT_EQ("Hello WSS", msg);
  13703. client.close();
  13704. }
  13705. #endif