httplib.h 20 KB

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  1. //
  2. // httplib.h
  3. //
  4. // Copyright (c) 2012 Yuji Hirose. All rights reserved.
  5. // The Boost Software License 1.0
  6. //
  7. #ifndef _CPPHTTPLIB_HTTPSLIB_H_
  8. #define _CPPHTTPLIB_HTTPSLIB_H_
  9. #ifdef _WIN32
  10. #define _CRT_SECURE_NO_WARNINGS
  11. #define _CRT_NONSTDC_NO_DEPRECATE
  12. #ifndef SO_SYNCHRONOUS_NONALERT
  13. #define SO_SYNCHRONOUS_NONALERT 0x20;
  14. #endif
  15. #ifndef SO_OPENTYPE
  16. #define SO_OPENTYPE 0x7008
  17. #endif
  18. #ifndef snprintf
  19. #define snprintf _snprintf_s
  20. #endif
  21. #include <fcntl.h>
  22. #include <io.h>
  23. #include <winsock2.h>
  24. typedef SOCKET socket_t;
  25. #else
  26. #include <pthread.h>
  27. #include <unistd.h>
  28. #include <netdb.h>
  29. #include <netinet/in.h>
  30. #include <arpa/inet.h>
  31. #include <sys/socket.h>
  32. typedef int socket_t;
  33. #endif
  34. #include <functional>
  35. #include <map>
  36. #include <regex>
  37. #include <string>
  38. #include <assert.h>
  39. namespace httplib
  40. {
  41. typedef std::map<std::string, std::string> Map;
  42. typedef std::multimap<std::string, std::string> MultiMap;
  43. typedef std::smatch Match;
  44. struct Request {
  45. std::string method;
  46. std::string url;
  47. MultiMap headers;
  48. std::string body;
  49. Map params;
  50. Match matches;
  51. bool has_header(const char* key) const;
  52. std::string get_header_value(const char* key) const;
  53. void set_header(const char* key, const char* val);
  54. bool has_param(const char* key) const;
  55. };
  56. struct Response {
  57. int status;
  58. MultiMap headers;
  59. std::string body;
  60. bool has_header(const char* key) const;
  61. std::string get_header_value(const char* key) const;
  62. void set_header(const char* key, const char* val);
  63. void set_redirect(const char* url);
  64. void set_content(const std::string& s, const char* content_type);
  65. Response() : status(-1) {}
  66. };
  67. class Server {
  68. public:
  69. typedef std::function<void (const Request&, Response&)> Handler;
  70. typedef std::function<void (const Request&, const Response&)> Logger;
  71. Server();
  72. ~Server();
  73. void get(const char* pattern, Handler handler);
  74. void post(const char* pattern, Handler handler);
  75. void set_error_handler(Handler handler);
  76. void set_logger(Logger logger);
  77. bool listen(const char* host, int port);
  78. void stop();
  79. private:
  80. typedef std::vector<std::pair<std::regex, Handler>> Handlers;
  81. void process_request(socket_t sock);
  82. bool read_request_line(FILE* fp, Request& req);
  83. bool routing(Request& req, Response& res);
  84. bool dispatch_request(Request& req, Response& res, Handlers& handlers);
  85. socket_t svr_sock_;
  86. Handlers get_handlers_;
  87. Handlers post_handlers_;
  88. Handler error_handler_;
  89. Logger logger_;
  90. };
  91. class Client {
  92. public:
  93. Client(const char* host, int port);
  94. ~Client();
  95. std::shared_ptr<Response> get(const char* url);
  96. std::shared_ptr<Response> head(const char* url);
  97. std::shared_ptr<Response> post(const char* url, const std::string& body, const char* content_type);
  98. std::shared_ptr<Response> post(const char* url, const Map& params);
  99. bool send(const Request& req, Response& res);
  100. private:
  101. bool read_response_line(FILE* fp, Response& res);
  102. const std::string host_;
  103. const int port_;
  104. };
  105. // Implementation
  106. namespace detail {
  107. template <class Fn>
  108. void split(const char* b, const char* e, char d, Fn fn)
  109. {
  110. int i = 0;
  111. int beg = 0;
  112. while (e ? (b + i != e) : (b[i] != '\0')) {
  113. if (b[i] == d) {
  114. fn(&b[beg], &b[i]);
  115. beg = i + 1;
  116. }
  117. i++;
  118. }
  119. if (i) {
  120. fn(&b[beg], &b[i]);
  121. }
  122. }
  123. inline void get_flie_pointers(int fd, FILE*& fp_read, FILE*& fp_write)
  124. {
  125. #ifdef _WIN32
  126. int osfhandle = _open_osfhandle(fd, _O_RDONLY);
  127. fp_read = _fdopen(osfhandle, "rb");
  128. fp_write = _fdopen(osfhandle, "wb");
  129. #else
  130. fp_read = fdopen(fd, "rb");
  131. fp_write = fdopen(fd, "wb");
  132. #endif
  133. }
  134. template <typename Fn>
  135. socket_t create_socket(const char* host, int port, Fn fn)
  136. {
  137. #ifdef _WIN32
  138. int opt = SO_SYNCHRONOUS_NONALERT;
  139. setsockopt(INVALID_SOCKET, SOL_SOCKET, SO_OPENTYPE, (char*)&opt, sizeof(opt));
  140. #endif
  141. // Create a socket
  142. socket_t sock = socket(AF_INET, SOCK_STREAM, 0);
  143. if (sock == -1) {
  144. return -1;
  145. }
  146. // Make 'reuse address' option available
  147. int yes = 1;
  148. setsockopt(sock, SOL_SOCKET, SO_REUSEADDR, (char*)&yes, sizeof(yes));
  149. // Get a host entry info
  150. struct hostent* hp;
  151. if (!(hp = gethostbyname(host))) {
  152. return -1;
  153. }
  154. // Bind the socket to the given address
  155. struct sockaddr_in addr;
  156. memset(&addr, 0, sizeof(addr));
  157. memcpy(&addr.sin_addr, hp->h_addr, hp->h_length);
  158. addr.sin_family = AF_INET;
  159. addr.sin_port = htons(port);
  160. return fn(sock, addr);
  161. }
  162. inline socket_t create_server_socket(const char* host, int port)
  163. {
  164. return create_socket(host, port, [](socket_t sock, struct sockaddr_in& addr) -> socket_t {
  165. if (::bind(sock, (struct sockaddr*)&addr, sizeof(addr))) {
  166. return -1;
  167. }
  168. if (listen(sock, 5)) { // Listen through 5 channels
  169. return -1;
  170. }
  171. return sock;
  172. });
  173. }
  174. inline int shutdown_socket(socket_t sock)
  175. {
  176. #ifdef _WIN32
  177. return shutdown(sock, SD_BOTH);
  178. #else
  179. return shutdown(sock, SHUT_RDWR);
  180. #endif
  181. }
  182. inline int close_socket(socket_t sock)
  183. {
  184. #ifdef _WIN32
  185. return closesocket(sock);
  186. #else
  187. return close(sock);
  188. #endif
  189. }
  190. inline socket_t create_client_socket(const char* host, int port)
  191. {
  192. return create_socket(host, port, [](socket_t sock, struct sockaddr_in& addr) -> socket_t {
  193. if (connect(sock, (struct sockaddr*)&addr, sizeof(struct sockaddr_in))) {
  194. return -1;
  195. }
  196. return sock;
  197. });
  198. }
  199. inline const char* status_message(int status)
  200. {
  201. switch (status) {
  202. case 200: return "OK";
  203. case 400: return "Bad Request";
  204. case 404: return "Not Found";
  205. default:
  206. case 500: return "Internal Server Error";
  207. }
  208. }
  209. inline const char* get_header_value_text(const MultiMap& map, const char* key, const char* def)
  210. {
  211. auto it = map.find(key);
  212. if (it != map.end()) {
  213. return it->second.c_str();
  214. }
  215. return def;
  216. }
  217. inline int get_header_value_int(const MultiMap& map, const char* key, int def)
  218. {
  219. auto it = map.find(key);
  220. if (it != map.end()) {
  221. return std::atoi(it->second.c_str());
  222. }
  223. return def;
  224. }
  225. inline bool read_headers(FILE* fp, MultiMap& headers)
  226. {
  227. static std::regex re("(.+?): (.+?)\r\n");
  228. const size_t BUFSIZ_HEADER = 2048;
  229. char buf[BUFSIZ_HEADER];
  230. for (;;) {
  231. if (!fgets(buf, BUFSIZ_HEADER, fp)) {
  232. return false;
  233. }
  234. if (!strcmp(buf, "\r\n")) {
  235. break;
  236. }
  237. std::cmatch m;
  238. if (std::regex_match(buf, m, re)) {
  239. auto key = std::string(m[1]);
  240. auto val = std::string(m[2]);
  241. headers.insert(std::make_pair(key, val));
  242. }
  243. }
  244. return true;
  245. }
  246. template <typename T>
  247. bool read_content(T& x, FILE* fp)
  248. {
  249. auto len = get_header_value_int(x.headers, "Content-Length", 0);
  250. if (len) {
  251. x.body.assign(len, 0);
  252. if (!fgets(&x.body[0], x.body.size() + 1, fp)) {
  253. return false;
  254. }
  255. }
  256. return true;
  257. }
  258. template <typename T>
  259. inline void write_headers(FILE* fp, const T& x)
  260. {
  261. fprintf(fp, "Connection: close\r\n");
  262. for (auto it = x.headers.begin(); it != x.headers.end(); ++it) {
  263. if (it->first != "Content-Type" && it->first != "Content-Length") {
  264. fprintf(fp, "%s: %s\r\n", it->first.c_str(), it->second.c_str());
  265. }
  266. }
  267. if (!x.body.empty()) {
  268. auto content_type = get_header_value_text(x.headers, "Content-Type", "text/plain");
  269. fprintf(fp, "Content-Type: %s\r\n", content_type);
  270. fprintf(fp, "Content-Length: %ld\r\n", x.body.size());
  271. }
  272. fprintf(fp, "\r\n");
  273. }
  274. inline void write_response(FILE* fp, const Request& req, const Response& res)
  275. {
  276. fprintf(fp, "HTTP/1.0 %d %s\r\n", res.status, status_message(res.status));
  277. write_headers(fp, res);
  278. if (!res.body.empty() && req.method != "HEAD") {
  279. fprintf(fp, "%s", res.body.c_str());
  280. }
  281. }
  282. inline std::string encode_url(const std::string& s)
  283. {
  284. std::string result;
  285. int i = 0;
  286. while (s[i]) {
  287. switch (s[i]) {
  288. case ' ': result += "+"; break;
  289. case '\'': result += "%27"; break;
  290. case ',': result += "%2C"; break;
  291. case ':': result += "%3A"; break;
  292. case ';': result += "%3B"; break;
  293. default:
  294. if (s[i] < 0) {
  295. result += '%';
  296. char hex[4];
  297. size_t len = snprintf(hex, sizeof(hex), "%02X", (unsigned char)s[i]);
  298. assert(len == 2);
  299. result.append(hex, len);
  300. } else {
  301. result += s[i];
  302. }
  303. break;
  304. }
  305. i++;
  306. }
  307. return result;
  308. }
  309. inline bool is_hex(char c, int& v)
  310. {
  311. if (0x20 <= c && isdigit(c)) {
  312. v = c - '0';
  313. return true;
  314. } else if ('A' <= c && c <= 'F') {
  315. v = c - 'A' + 10;
  316. return true;
  317. } else if ('a' <= c && c <= 'f') {
  318. v = c - 'a' + 10;
  319. return true;
  320. }
  321. return false;
  322. }
  323. inline int from_hex_to_i(const std::string& s, int i, int cnt, int& val)
  324. {
  325. val = 0;
  326. for (; s[i] && cnt; i++, cnt--) {
  327. int v = 0;
  328. if (is_hex(s[i], v)) {
  329. val = val * 16 + v;
  330. } else {
  331. break;
  332. }
  333. }
  334. return --i;
  335. }
  336. size_t to_utf8(int code, char* buff)
  337. {
  338. if (code < 0x0080) {
  339. buff[0] = (code & 0x7F);
  340. return 1;
  341. } else if (code < 0x0800) {
  342. buff[0] = (0xC0 | ((code >> 6) & 0x1F));
  343. buff[1] = (0x80 | (code & 0x3F));
  344. return 2;
  345. } else if (code < 0xD800) {
  346. buff[0] = (0xE0 | ((code >> 12) & 0xF));
  347. buff[1] = (0x80 | ((code >> 6) & 0x3F));
  348. buff[2] = (0x80 | (code & 0x3F));
  349. return 3;
  350. } else if (code < 0xE000) { // D800 - DFFF is invalid...
  351. return 0;
  352. } else if (code < 0x10000) {
  353. buff[0] = (0xE0 | ((code >> 12) & 0xF));
  354. buff[1] = (0x80 | ((code >> 6) & 0x3F));
  355. buff[2] = (0x80 | (code & 0x3F));
  356. return 3;
  357. } else if (code < 0x110000) {
  358. buff[0] = (0xF0 | ((code >> 18) & 0x7));
  359. buff[1] = (0x80 | ((code >> 12) & 0x3F));
  360. buff[2] = (0x80 | ((code >> 6) & 0x3F));
  361. buff[3] = (0x80 | (code & 0x3F));
  362. return 4;
  363. }
  364. // NOTREACHED
  365. return 0;
  366. }
  367. inline std::string decode_url(const std::string& s)
  368. {
  369. std::string result;
  370. for (int i = 0; s[i]; i++) {
  371. if (s[i] == '%') {
  372. i++;
  373. assert(s[i]);
  374. if (s[i] == '%') {
  375. result += s[i];
  376. } else if (s[i] == 'u') {
  377. // Unicode
  378. i++;
  379. assert(s[i]);
  380. int val = 0;
  381. i = from_hex_to_i(s, i, 4, val);
  382. char buff[4];
  383. size_t len = to_utf8(val, buff);
  384. if (len > 0) {
  385. result.append(buff, len);
  386. }
  387. } else {
  388. // HEX
  389. int val = 0;
  390. i = from_hex_to_i(s, i, 2, val);
  391. result += val;
  392. }
  393. } else if (s[i] == '+') {
  394. result += ' ';
  395. } else {
  396. result += s[i];
  397. }
  398. }
  399. return result;
  400. }
  401. inline void write_request(FILE* fp, const Request& req)
  402. {
  403. auto url = encode_url(req.url);
  404. fprintf(fp, "%s %s HTTP/1.0\r\n", req.method.c_str(), url.c_str());
  405. write_headers(fp, req);
  406. if (!req.body.empty()) {
  407. if (req.has_header("application/x-www-form-urlencoded")) {
  408. fprintf(fp, "%s", encode_url(req.body).c_str());
  409. } else {
  410. fprintf(fp, "%s", req.body.c_str());
  411. }
  412. }
  413. }
  414. inline void parse_query_text(const std::string& s, Map& params)
  415. {
  416. split(&s[0], &s[s.size()], '&', [&](const char* b, const char* e) {
  417. std::string key;
  418. std::string val;
  419. split(b, e, '=', [&](const char* b, const char* e) {
  420. if (key.empty()) {
  421. key.assign(b, e);
  422. } else {
  423. val.assign(b, e);
  424. }
  425. });
  426. params[key] = val;
  427. });
  428. }
  429. } // namespace detail
  430. // Request implementation
  431. inline bool Request::has_header(const char* key) const
  432. {
  433. return headers.find(key) != headers.end();
  434. }
  435. inline std::string Request::get_header_value(const char* key) const
  436. {
  437. return detail::get_header_value_text(headers, key, "");
  438. }
  439. inline void Request::set_header(const char* key, const char* val)
  440. {
  441. headers.insert(std::make_pair(key, val));
  442. }
  443. inline bool Request::has_param(const char* key) const
  444. {
  445. return params.find(key) != params.end();
  446. }
  447. // Response implementation
  448. inline bool Response::has_header(const char* key) const
  449. {
  450. return headers.find(key) != headers.end();
  451. }
  452. inline std::string Response::get_header_value(const char* key) const
  453. {
  454. return detail::get_header_value_text(headers, key, "");
  455. }
  456. inline void Response::set_header(const char* key, const char* val)
  457. {
  458. headers.insert(std::make_pair(key, val));
  459. }
  460. inline void Response::set_redirect(const char* url)
  461. {
  462. set_header("Location", url);
  463. status = 302;
  464. }
  465. inline void Response::set_content(const std::string& s, const char* content_type)
  466. {
  467. body = s;
  468. set_header("Content-Type", content_type);
  469. }
  470. // HTTP server implementation
  471. inline Server::Server()
  472. : svr_sock_(-1)
  473. {
  474. #ifdef _WIN32
  475. WSADATA wsaData;
  476. WSAStartup(0x0002, &wsaData);
  477. #endif
  478. }
  479. inline Server::~Server()
  480. {
  481. #ifdef _WIN32
  482. WSACleanup();
  483. #endif
  484. }
  485. inline void Server::get(const char* pattern, Handler handler)
  486. {
  487. get_handlers_.push_back(std::make_pair(std::regex(pattern), handler));
  488. }
  489. inline void Server::post(const char* pattern, Handler handler)
  490. {
  491. post_handlers_.push_back(std::make_pair(std::regex(pattern), handler));
  492. }
  493. inline void Server::set_error_handler(Handler handler)
  494. {
  495. error_handler_ = handler;
  496. }
  497. inline void Server::set_logger(Logger logger)
  498. {
  499. logger_ = logger;
  500. }
  501. inline bool Server::listen(const char* host, int port)
  502. {
  503. svr_sock_ = detail::create_server_socket(host, port);
  504. if (svr_sock_ == -1) {
  505. return false;
  506. }
  507. auto ret = true;
  508. for (;;) {
  509. socket_t sock = accept(svr_sock_, NULL, NULL);
  510. if (sock == -1) {
  511. if (svr_sock_ != -1) {
  512. detail::close_socket(svr_sock_);
  513. ret = false;
  514. } else {
  515. ; // The server socket was closed by user.
  516. }
  517. break;
  518. }
  519. // TODO: should be async
  520. process_request(sock);
  521. detail::shutdown_socket(sock);
  522. detail::close_socket(sock);
  523. }
  524. return ret;
  525. }
  526. inline void Server::stop()
  527. {
  528. detail::shutdown_socket(svr_sock_);
  529. detail::close_socket(svr_sock_);
  530. svr_sock_ = -1;
  531. }
  532. inline bool Server::read_request_line(FILE* fp, Request& req)
  533. {
  534. const size_t BUFSIZ_REQUESTLINE = 2048;
  535. char buf[BUFSIZ_REQUESTLINE];
  536. if (!fgets(buf, BUFSIZ_REQUESTLINE, fp)) {
  537. return false;
  538. }
  539. static std::regex re("(GET|HEAD|POST) ([^?]+)(?:\\?(.+?))? HTTP/1\\.[01]\r\n");
  540. std::cmatch m;
  541. if (std::regex_match(buf, m, re)) {
  542. req.method = std::string(m[1]);
  543. req.url = detail::decode_url(m[2]);
  544. // Parse query text
  545. auto len = std::distance(m[3].first, m[3].second);
  546. if (len > 0) {
  547. detail::parse_query_text(detail::decode_url(m[3]), req.params);
  548. }
  549. return true;
  550. }
  551. return false;
  552. }
  553. inline bool Server::routing(Request& req, Response& res)
  554. {
  555. if (req.method == "GET" || req.method == "HEAD") {
  556. return dispatch_request(req, res, get_handlers_);
  557. } else if (req.method == "POST") {
  558. return dispatch_request(req, res, post_handlers_);
  559. }
  560. return false;
  561. }
  562. inline bool Server::dispatch_request(Request& req, Response& res, Handlers& handlers)
  563. {
  564. for (auto it = handlers.begin(); it != handlers.end(); ++it) {
  565. const auto& pattern = it->first;
  566. const auto& handler = it->second;
  567. if (std::regex_match(req.url, req.matches, pattern)) {
  568. handler(req, res);
  569. return true;
  570. }
  571. }
  572. return false;
  573. }
  574. inline void Server::process_request(socket_t sock)
  575. {
  576. FILE* fp_read;
  577. FILE* fp_write;
  578. detail::get_flie_pointers(sock, fp_read, fp_write);
  579. Request req;
  580. Response res;
  581. if (!read_request_line(fp_read, req) ||
  582. !detail::read_headers(fp_read, req.headers)) {
  583. return;
  584. }
  585. if (req.method == "POST") {
  586. if (!detail::read_content(req, fp_read)) {
  587. return;
  588. }
  589. if (req.get_header_value("Content-Type") == "application/x-www-form-urlencoded") {
  590. detail::parse_query_text(detail::decode_url(req.body), req.params);
  591. }
  592. }
  593. if (routing(req, res)) {
  594. if (res.status == -1) {
  595. res.status = 200;
  596. }
  597. } else {
  598. res.status = 404;
  599. }
  600. assert(res.status != -1);
  601. if (400 <= res.status && error_handler_) {
  602. error_handler_(req, res);
  603. }
  604. detail::write_response(fp_write, req, res);
  605. fflush(fp_write);
  606. if (logger_) {
  607. logger_(req, res);
  608. }
  609. }
  610. // HTTP client implementation
  611. inline Client::Client(const char* host, int port)
  612. : host_(host)
  613. , port_(port)
  614. {
  615. #ifdef _WIN32
  616. WSADATA wsaData;
  617. WSAStartup(0x0002, &wsaData);
  618. #endif
  619. }
  620. inline Client::~Client()
  621. {
  622. #ifdef _WIN32
  623. WSACleanup();
  624. #endif
  625. }
  626. inline bool Client::read_response_line(FILE* fp, Response& res)
  627. {
  628. const size_t BUFSIZ_RESPONSELINE = 2048;
  629. char buf[BUFSIZ_RESPONSELINE];
  630. if (!fgets(buf, BUFSIZ_RESPONSELINE, fp)) {
  631. return false;
  632. }
  633. static std::regex re("HTTP/1\\.[01] (\\d+?) .+\r\n");
  634. std::cmatch m;
  635. if (std::regex_match(buf, m, re)) {
  636. res.status = std::atoi(std::string(m[1]).c_str());
  637. }
  638. return true;
  639. }
  640. inline bool Client::send(const Request& req, Response& res)
  641. {
  642. socket_t sock = detail::create_client_socket(host_.c_str(), port_);
  643. if (sock == -1) {
  644. return false;
  645. }
  646. FILE* fp_read;
  647. FILE* fp_write;
  648. detail::get_flie_pointers(sock, fp_read, fp_write);
  649. // Send request
  650. detail::write_request(fp_write, req);
  651. fflush(fp_write);
  652. // Receive response
  653. if (!read_response_line(fp_read, res) ||
  654. !detail::read_headers(fp_read, res.headers)) {
  655. return false;
  656. }
  657. if (req.method != "HEAD") {
  658. if (!detail::read_content(res, fp_read)) {
  659. return false;
  660. }
  661. }
  662. detail::shutdown_socket(sock);
  663. detail::close_socket(sock);
  664. return true;
  665. }
  666. inline std::shared_ptr<Response> Client::get(const char* url)
  667. {
  668. Request req;
  669. req.method = "GET";
  670. req.url = url;
  671. auto res = std::make_shared<Response>();
  672. return send(req, *res) ? res : nullptr;
  673. }
  674. inline std::shared_ptr<Response> Client::head(const char* url)
  675. {
  676. Request req;
  677. req.method = "HEAD";
  678. req.url = url;
  679. auto res = std::make_shared<Response>();
  680. return send(req, *res) ? res : nullptr;
  681. }
  682. inline std::shared_ptr<Response> Client::post(
  683. const char* url, const std::string& body, const char* content_type)
  684. {
  685. Request req;
  686. req.method = "POST";
  687. req.url = url;
  688. req.set_header("Content-Type", content_type);
  689. req.body = body;
  690. auto res = std::make_shared<Response>();
  691. return send(req, *res) ? res : nullptr;
  692. }
  693. inline std::shared_ptr<Response> Client::post(
  694. const char* url, const Map& params)
  695. {
  696. std::string query;
  697. for (auto it = params.begin(); it != params.end(); ++it) {
  698. if (it != params.begin()) {
  699. query += "&";
  700. }
  701. query += it->first;
  702. query += "=";
  703. query += it->second;
  704. }
  705. return post(url, query, "application/x-www-form-urlencoded");
  706. }
  707. } // namespace httplib
  708. #endif
  709. // vim: et ts=4 sw=4 cin cino={1s ff=unix