HttpServer.cpp 11 KB

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  1. #include "HttpServer.h"
  2. #include "h.h"
  3. #include "hmain.h"
  4. #include "hloop.h"
  5. #include "http2def.h"
  6. #include "FileCache.h"
  7. #include "HttpHandler.h"
  8. #include "Http2Session.h"
  9. #define RECV_BUFSIZE 8192
  10. #define SEND_BUFSIZE 8192
  11. #define MIN_HTTP_REQUEST "GET / HTTP/1.1\r\n\r\n"
  12. #define MIN_HTTP_REQUEST_LEN 18
  13. static HttpService s_default_service;
  14. static FileCache s_filecache;
  15. static void master_init(void* userdata) {
  16. #ifdef OS_UNIX
  17. char proctitle[256] = {0};
  18. snprintf(proctitle, sizeof(proctitle), "%s: master process", g_main_ctx.program_name);
  19. setproctitle(proctitle);
  20. #endif
  21. }
  22. static void master_proc(void* userdata) {
  23. while(1) sleep(1);
  24. }
  25. static void worker_init(void* userdata) {
  26. #ifdef OS_UNIX
  27. char proctitle[256] = {0};
  28. snprintf(proctitle, sizeof(proctitle), "%s: worker process", g_main_ctx.program_name);
  29. setproctitle(proctitle);
  30. signal(SIGNAL_RELOAD, signal_handler);
  31. #endif
  32. }
  33. static void on_recv(hio_t* io, void* _buf, int readbytes) {
  34. //printf("on_recv fd=%d readbytes=%d\n", hio_fd(io), readbytes);
  35. const char* buf = (const char*)_buf;
  36. HttpHandler* handler = (HttpHandler*)hevent_userdata(io);
  37. // HTTP1 / HTTP2 -> HttpSession -> InitRequest
  38. // recv -> FeedRecvData -> !WantRecv -> HttpRequest ->
  39. // HandleRequest -> HttpResponse -> SubmitResponse -> while (GetSendData) -> send
  40. if (handler->session == NULL) {
  41. // base check
  42. if (readbytes < MIN_HTTP_REQUEST_LEN) {
  43. hloge("[%s:%d] http request too small", handler->ip, handler->port);
  44. hio_close(io);
  45. return;
  46. }
  47. for (int i = 0; i < 3; ++i) {
  48. if (!IS_GRAPH(buf[i])) {
  49. hloge("[%s:%d] http check failed", handler->ip, handler->port);
  50. hio_close(io);
  51. return;
  52. }
  53. }
  54. http_version version = HTTP_V1;
  55. if (strncmp((char*)buf, HTTP2_MAGIC, MIN(readbytes, HTTP2_MAGIC_LEN)) == 0) {
  56. version = HTTP_V2;
  57. handler->req.http_major = 2;
  58. handler->req.http_minor = 0;
  59. }
  60. handler->session = HttpSession::New(HTTP_SERVER, version);
  61. if (handler->session == NULL) {
  62. hloge("[%s:%d] unsupported HTTP%d", handler->ip, handler->port, (int)version);
  63. hio_close(io);
  64. return;
  65. }
  66. handler->session->InitRequest(&handler->req);
  67. }
  68. HttpSession* session = handler->session;
  69. HttpRequest* req = &handler->req;
  70. HttpResponse* res = &handler->res;
  71. int nfeed = session->FeedRecvData((const char*)buf, readbytes);
  72. if (nfeed != readbytes) {
  73. hloge("[%s:%d] http parse error: %s", handler->ip, handler->port, session->StrError(session->GetError()));
  74. hio_close(io);
  75. return;
  76. }
  77. if (session->WantRecv()) {
  78. return;
  79. }
  80. #ifdef WITH_NGHTTP2
  81. if (session->version == HTTP_V2) {
  82. // HTTP2 extra processing steps
  83. Http2Session* h2s = (Http2Session*)session;
  84. if (h2s->state == HSS_RECV_PING) {
  85. char* data = NULL;
  86. size_t len = 0;
  87. while (session->GetSendData(&data, &len)) {
  88. hio_write(io, data, len);
  89. }
  90. return;
  91. }
  92. else if (
  93. h2s->state != HSS_RECV_HEADERS &&
  94. h2s->state != HSS_RECV_DATA) {
  95. // ignore other http2 frame
  96. return;
  97. }
  98. }
  99. // Upgrade: h2
  100. auto iter_upgrade = req->headers.find("upgrade");
  101. if (iter_upgrade != req->headers.end()) {
  102. hlogi("[%s:%d] Upgrade: %s", handler->ip, handler->port, iter_upgrade->second.c_str());
  103. // h2/h2c
  104. if (strnicmp(iter_upgrade->second.c_str(), "h2", 2) == 0) {
  105. hio_write(io, HTTP2_UPGRADE_RESPONSE, strlen(HTTP2_UPGRADE_RESPONSE));
  106. SAFE_DELETE(handler->session);
  107. session = handler->session = HttpSession::New(HTTP_SERVER, HTTP_V2);
  108. if (session == NULL) {
  109. hloge("[%s:%d] unsupported HTTP2", handler->ip, handler->port);
  110. hio_close(io);
  111. return;
  112. }
  113. HttpRequest http1_req = *req;
  114. session->InitRequest(req);
  115. *req = http1_req;
  116. req->http_major = 2;
  117. req->http_minor = 0;
  118. // HTTP2_Settings: ignore
  119. //session->FeedRecvData(HTTP2_Settings, );
  120. }
  121. else {
  122. hio_close(io);
  123. return;
  124. }
  125. }
  126. #endif
  127. int ret = handler->HandleRequest();
  128. // prepare headers body
  129. // Server:
  130. static char s_Server[64] = {'\0'};
  131. if (s_Server[0] == '\0') {
  132. snprintf(s_Server, sizeof(s_Server), "httpd/%s", get_compile_version());
  133. }
  134. res->headers["Server"] = s_Server;
  135. // Connection:
  136. bool keepalive = true;
  137. auto iter_keepalive = req->headers.find("connection");
  138. if (iter_keepalive != req->headers.end()) {
  139. if (stricmp(iter_keepalive->second.c_str(), "keep-alive") == 0) {
  140. keepalive = true;
  141. }
  142. else if (stricmp(iter_keepalive->second.c_str(), "close") == 0) {
  143. keepalive = false;
  144. }
  145. }
  146. if (keepalive) {
  147. res->headers["Connection"] = "keep-alive";
  148. }
  149. else {
  150. res->headers["Connection"] = "close";
  151. }
  152. if (req->http_major == 1) {
  153. std::string header = res->Dump(true, false);
  154. hbuf_t sendbuf;
  155. bool send_in_one_packet = true;
  156. int content_length = res->ContentLength();
  157. if (handler->fc) {
  158. // no copy filebuf, more efficient
  159. handler->fc->prepend_header(header.c_str(), header.size());
  160. sendbuf = handler->fc->httpbuf;
  161. }
  162. else {
  163. if (content_length > (1<<20)) {
  164. send_in_one_packet = false;
  165. } else if (content_length != 0) {
  166. header.insert(header.size(), (const char*)res->Content(), content_length);
  167. }
  168. sendbuf.base = (char*)header.c_str();
  169. sendbuf.len = header.size();
  170. }
  171. // send header/body
  172. hio_write(io, sendbuf.base, sendbuf.len);
  173. if (send_in_one_packet == false) {
  174. // send body
  175. hio_write(io, res->Content(), content_length);
  176. }
  177. }
  178. else if (req->http_major == 2) {
  179. session->SubmitResponse(res);
  180. char* data = NULL;
  181. size_t len = 0;
  182. while (session->GetSendData(&data, &len)) {
  183. hio_write(io, data, len);
  184. }
  185. }
  186. hlogi("[%s:%d][%s %s]=>[%d %s]",
  187. handler->ip, handler->port,
  188. http_method_str(req->method), req->path.c_str(),
  189. res->status_code, http_status_str(res->status_code));
  190. if (keepalive) {
  191. handler->KeepAlive();
  192. handler->Reset();
  193. session->InitRequest(req);
  194. }
  195. else {
  196. hio_close(io);
  197. }
  198. }
  199. static void on_close(hio_t* io) {
  200. HttpHandler* handler = (HttpHandler*)hevent_userdata(io);
  201. if (handler) {
  202. SAFE_DELETE(handler->session);
  203. delete handler;
  204. hevent_set_userdata(io, NULL);
  205. }
  206. }
  207. static void on_accept(hio_t* io) {
  208. printd("on_accept connfd=%d\n", hio_fd(io));
  209. /*
  210. char localaddrstr[INET6_ADDRSTRLEN+16] = {0};
  211. char peeraddrstr[INET6_ADDRSTRLEN+16] = {0};
  212. printf("accept connfd=%d [%s] <= [%s]\n", hio_fd(io),
  213. sockaddr_snprintf(hio_localaddr(io), localaddrstr, sizeof(localaddrstr)),
  214. sockaddr_snprintf(hio_peeraddr(io), peeraddrstr, sizeof(peeraddrstr)));
  215. */
  216. HBuf* buf = (HBuf*)hloop_userdata(hevent_loop(io));
  217. hio_setcb_close(io, on_close);
  218. hio_setcb_read(io, on_recv);
  219. hio_set_readbuf(io, buf->base, buf->len);
  220. hio_read(io);
  221. // new HttpHandler
  222. // delete on_close
  223. HttpHandler* handler = new HttpHandler;
  224. handler->service = (HttpService*)hevent_userdata(io);
  225. handler->files = &s_filecache;
  226. sockaddr_ntop(hio_peeraddr(io), handler->ip, sizeof(handler->ip));
  227. handler->port = sockaddr_htons(hio_peeraddr(io));
  228. handler->io = io;
  229. hevent_set_userdata(io, handler);
  230. }
  231. static void handle_cached_files(htimer_t* timer) {
  232. FileCache* pfc = (FileCache*)hevent_userdata(timer);
  233. if (pfc == NULL) {
  234. htimer_del(timer);
  235. return;
  236. }
  237. file_cache_t* fc = NULL;
  238. time_t tt;
  239. time(&tt);
  240. auto iter = pfc->cached_files.begin();
  241. while (iter != pfc->cached_files.end()) {
  242. fc = iter->second;
  243. if (tt - fc->stat_time > pfc->file_cached_time) {
  244. delete fc;
  245. iter = pfc->cached_files.erase(iter);
  246. continue;
  247. }
  248. ++iter;
  249. }
  250. }
  251. static void fflush_log(hidle_t* idle) {
  252. hlog_fflush();
  253. }
  254. // for implement http_server_stop
  255. static hloop_t* s_loop = NULL;
  256. static void worker_proc(void* userdata) {
  257. http_server_t* server = (http_server_t*)userdata;
  258. int listenfd = server->listenfd;
  259. hloop_t* loop = hloop_new(0);
  260. s_loop = loop;
  261. // one loop one readbuf.
  262. HBuf readbuf;
  263. readbuf.resize(RECV_BUFSIZE);
  264. hloop_set_userdata(loop, &readbuf);
  265. hio_t* listenio = haccept(loop, listenfd, on_accept);
  266. hevent_set_userdata(listenio, server->service);
  267. if (server->ssl) {
  268. hio_enable_ssl(listenio);
  269. }
  270. // fflush logfile when idle
  271. hlog_set_fflush(0);
  272. hidle_add(loop, fflush_log, INFINITE);
  273. // timer handle_cached_files
  274. htimer_t* timer = htimer_add(loop, handle_cached_files, s_filecache.file_cached_time*1000);
  275. hevent_set_userdata(timer, &s_filecache);
  276. hloop_run(loop);
  277. hloop_free(&loop);
  278. }
  279. int http_server_run(http_server_t* server, int wait) {
  280. // worker_processes
  281. if (server->worker_processes != 0 && g_worker_processes_num != 0 && g_worker_processes != NULL) {
  282. return ERR_OVER_LIMIT;
  283. }
  284. // service
  285. if (server->service == NULL) {
  286. server->service = &s_default_service;
  287. }
  288. // port
  289. server->listenfd = Listen(server->port, server->host);
  290. if (server->listenfd < 0) return server->listenfd;
  291. #ifdef OS_WIN
  292. if (server->worker_processes > 1) {
  293. server->worker_processes = 1;
  294. }
  295. #endif
  296. if (server->worker_processes == 0) {
  297. worker_proc(server);
  298. }
  299. else {
  300. // master-workers processes
  301. g_worker_processes_num = server->worker_processes;
  302. int bytes = g_worker_processes_num * sizeof(proc_ctx_t);
  303. g_worker_processes = (proc_ctx_t*)malloc(bytes);
  304. memset(g_worker_processes, 0, bytes);
  305. for (int i = 0; i < g_worker_processes_num; ++i) {
  306. proc_ctx_t* ctx = g_worker_processes + i;
  307. ctx->init = worker_init;
  308. ctx->init_userdata = NULL;
  309. ctx->proc = worker_proc;
  310. ctx->proc_userdata = server;
  311. spawn_proc(ctx);
  312. }
  313. if (wait) {
  314. master_init(NULL);
  315. master_proc(NULL);
  316. }
  317. }
  318. return 0;
  319. }
  320. // for SDK, just use for singleton
  321. int http_server_stop(http_server_t* server) {
  322. if (s_loop) {
  323. hloop_stop(s_loop);
  324. s_loop = NULL;
  325. }
  326. return 0;
  327. }