evhiperfifo.c 12 KB

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  1. /***************************************************************************
  2. * _ _ ____ _
  3. * Project ___| | | | _ \| |
  4. * / __| | | | |_) | |
  5. * | (__| |_| | _ <| |___
  6. * \___|\___/|_| \_\_____|
  7. *
  8. * Copyright (C) 1998 - 2015, Daniel Stenberg, <daniel@haxx.se>, et al.
  9. *
  10. * This software is licensed as described in the file COPYING, which
  11. * you should have received as part of this distribution. The terms
  12. * are also available at https://curl.haxx.se/docs/copyright.html.
  13. *
  14. * You may opt to use, copy, modify, merge, publish, distribute and/or sell
  15. * copies of the Software, and permit persons to whom the Software is
  16. * furnished to do so, under the terms of the COPYING file.
  17. *
  18. * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
  19. * KIND, either express or implied.
  20. *
  21. ***************************************************************************/
  22. /* <DESC>
  23. * multi socket interface together with libev
  24. * </DESC>
  25. */
  26. /* Example application source code using the multi socket interface to
  27. * download many files at once.
  28. *
  29. * This example features the same basic functionality as hiperfifo.c does,
  30. * but this uses libev instead of libevent.
  31. *
  32. * Written by Jeff Pohlmeyer, converted to use libev by Markus Koetter
  33. Requires libev and a (POSIX?) system that has mkfifo().
  34. This is an adaptation of libcurl's "hipev.c" and libevent's "event-test.c"
  35. sample programs.
  36. When running, the program creates the named pipe "hiper.fifo"
  37. Whenever there is input into the fifo, the program reads the input as a list
  38. of URL's and creates some new easy handles to fetch each URL via the
  39. curl_multi "hiper" API.
  40. Thus, you can try a single URL:
  41. % echo http://www.yahoo.com > hiper.fifo
  42. Or a whole bunch of them:
  43. % cat my-url-list > hiper.fifo
  44. The fifo buffer is handled almost instantly, so you can even add more URL's
  45. while the previous requests are still being downloaded.
  46. Note:
  47. For the sake of simplicity, URL length is limited to 1023 char's !
  48. This is purely a demo app, all retrieved data is simply discarded by the write
  49. callback.
  50. */
  51. #include <stdio.h>
  52. #include <string.h>
  53. #include <stdlib.h>
  54. #include <sys/time.h>
  55. #include <time.h>
  56. #include <unistd.h>
  57. #include <sys/poll.h>
  58. #include <curl/curl.h>
  59. #include <ev.h>
  60. #include <fcntl.h>
  61. #include <sys/stat.h>
  62. #include <errno.h>
  63. #define DPRINT(x...) printf(x)
  64. #define MSG_OUT stdout /* Send info to stdout, change to stderr if you want */
  65. /* Global information, common to all connections */
  66. typedef struct _GlobalInfo
  67. {
  68. struct ev_loop *loop;
  69. struct ev_io fifo_event;
  70. struct ev_timer timer_event;
  71. CURLM *multi;
  72. int still_running;
  73. FILE* input;
  74. } GlobalInfo;
  75. /* Information associated with a specific easy handle */
  76. typedef struct _ConnInfo
  77. {
  78. CURL *easy;
  79. char *url;
  80. GlobalInfo *global;
  81. char error[CURL_ERROR_SIZE];
  82. } ConnInfo;
  83. /* Information associated with a specific socket */
  84. typedef struct _SockInfo
  85. {
  86. curl_socket_t sockfd;
  87. CURL *easy;
  88. int action;
  89. long timeout;
  90. struct ev_io ev;
  91. int evset;
  92. GlobalInfo *global;
  93. } SockInfo;
  94. static void timer_cb(EV_P_ struct ev_timer *w, int revents);
  95. /* Update the event timer after curl_multi library calls */
  96. static int multi_timer_cb(CURLM *multi, long timeout_ms, GlobalInfo *g)
  97. {
  98. DPRINT("%s %li\n", __PRETTY_FUNCTION__, timeout_ms);
  99. ev_timer_stop(g->loop, &g->timer_event);
  100. if (timeout_ms > 0)
  101. {
  102. double t = timeout_ms / 1000;
  103. ev_timer_init(&g->timer_event, timer_cb, t, 0.);
  104. ev_timer_start(g->loop, &g->timer_event);
  105. }else
  106. timer_cb(g->loop, &g->timer_event, 0);
  107. return 0;
  108. }
  109. /* Die if we get a bad CURLMcode somewhere */
  110. static void mcode_or_die(const char *where, CURLMcode code)
  111. {
  112. if ( CURLM_OK != code )
  113. {
  114. const char *s;
  115. switch ( code )
  116. {
  117. case CURLM_BAD_HANDLE: s="CURLM_BAD_HANDLE"; break;
  118. case CURLM_BAD_EASY_HANDLE: s="CURLM_BAD_EASY_HANDLE"; break;
  119. case CURLM_OUT_OF_MEMORY: s="CURLM_OUT_OF_MEMORY"; break;
  120. case CURLM_INTERNAL_ERROR: s="CURLM_INTERNAL_ERROR"; break;
  121. case CURLM_UNKNOWN_OPTION: s="CURLM_UNKNOWN_OPTION"; break;
  122. case CURLM_LAST: s="CURLM_LAST"; break;
  123. default: s="CURLM_unknown";
  124. break;
  125. case CURLM_BAD_SOCKET: s="CURLM_BAD_SOCKET";
  126. fprintf(MSG_OUT, "ERROR: %s returns %s\n", where, s);
  127. /* ignore this error */
  128. return;
  129. }
  130. fprintf(MSG_OUT, "ERROR: %s returns %s\n", where, s);
  131. exit(code);
  132. }
  133. }
  134. /* Check for completed transfers, and remove their easy handles */
  135. static void check_multi_info(GlobalInfo *g)
  136. {
  137. char *eff_url;
  138. CURLMsg *msg;
  139. int msgs_left;
  140. ConnInfo *conn;
  141. CURL *easy;
  142. CURLcode res;
  143. fprintf(MSG_OUT, "REMAINING: %d\n", g->still_running);
  144. while ((msg = curl_multi_info_read(g->multi, &msgs_left))) {
  145. if (msg->msg == CURLMSG_DONE) {
  146. easy = msg->easy_handle;
  147. res = msg->data.result;
  148. curl_easy_getinfo(easy, CURLINFO_PRIVATE, &conn);
  149. curl_easy_getinfo(easy, CURLINFO_EFFECTIVE_URL, &eff_url);
  150. fprintf(MSG_OUT, "DONE: %s => (%d) %s\n", eff_url, res, conn->error);
  151. curl_multi_remove_handle(g->multi, easy);
  152. free(conn->url);
  153. curl_easy_cleanup(easy);
  154. free(conn);
  155. }
  156. }
  157. }
  158. /* Called by libevent when we get action on a multi socket */
  159. static void event_cb(EV_P_ struct ev_io *w, int revents)
  160. {
  161. DPRINT("%s w %p revents %i\n", __PRETTY_FUNCTION__, w, revents);
  162. GlobalInfo *g = (GlobalInfo*) w->data;
  163. CURLMcode rc;
  164. int action = (revents&EV_READ?CURL_POLL_IN:0)|
  165. (revents&EV_WRITE?CURL_POLL_OUT:0);
  166. rc = curl_multi_socket_action(g->multi, w->fd, action, &g->still_running);
  167. mcode_or_die("event_cb: curl_multi_socket_action", rc);
  168. check_multi_info(g);
  169. if ( g->still_running <= 0 )
  170. {
  171. fprintf(MSG_OUT, "last transfer done, kill timeout\n");
  172. ev_timer_stop(g->loop, &g->timer_event);
  173. }
  174. }
  175. /* Called by libevent when our timeout expires */
  176. static void timer_cb(EV_P_ struct ev_timer *w, int revents)
  177. {
  178. DPRINT("%s w %p revents %i\n", __PRETTY_FUNCTION__, w, revents);
  179. GlobalInfo *g = (GlobalInfo *)w->data;
  180. CURLMcode rc;
  181. rc = curl_multi_socket_action(g->multi, CURL_SOCKET_TIMEOUT, 0, &g->still_running);
  182. mcode_or_die("timer_cb: curl_multi_socket_action", rc);
  183. check_multi_info(g);
  184. }
  185. /* Clean up the SockInfo structure */
  186. static void remsock(SockInfo *f, GlobalInfo *g)
  187. {
  188. printf("%s \n", __PRETTY_FUNCTION__);
  189. if ( f )
  190. {
  191. if ( f->evset )
  192. ev_io_stop(g->loop, &f->ev);
  193. free(f);
  194. }
  195. }
  196. /* Assign information to a SockInfo structure */
  197. static void setsock(SockInfo*f, curl_socket_t s, CURL*e, int act, GlobalInfo*g)
  198. {
  199. printf("%s \n", __PRETTY_FUNCTION__);
  200. int kind = (act&CURL_POLL_IN?EV_READ:0)|(act&CURL_POLL_OUT?EV_WRITE:0);
  201. f->sockfd = s;
  202. f->action = act;
  203. f->easy = e;
  204. if ( f->evset )
  205. ev_io_stop(g->loop, &f->ev);
  206. ev_io_init(&f->ev, event_cb, f->sockfd, kind);
  207. f->ev.data = g;
  208. f->evset=1;
  209. ev_io_start(g->loop, &f->ev);
  210. }
  211. /* Initialize a new SockInfo structure */
  212. static void addsock(curl_socket_t s, CURL *easy, int action, GlobalInfo *g)
  213. {
  214. SockInfo *fdp = calloc(sizeof(SockInfo), 1);
  215. fdp->global = g;
  216. setsock(fdp, s, easy, action, g);
  217. curl_multi_assign(g->multi, s, fdp);
  218. }
  219. /* CURLMOPT_SOCKETFUNCTION */
  220. static int sock_cb(CURL *e, curl_socket_t s, int what, void *cbp, void *sockp)
  221. {
  222. DPRINT("%s e %p s %i what %i cbp %p sockp %p\n",
  223. __PRETTY_FUNCTION__, e, s, what, cbp, sockp);
  224. GlobalInfo *g = (GlobalInfo*) cbp;
  225. SockInfo *fdp = (SockInfo*) sockp;
  226. const char *whatstr[]={ "none", "IN", "OUT", "INOUT", "REMOVE"};
  227. fprintf(MSG_OUT,
  228. "socket callback: s=%d e=%p what=%s ", s, e, whatstr[what]);
  229. if ( what == CURL_POLL_REMOVE )
  230. {
  231. fprintf(MSG_OUT, "\n");
  232. remsock(fdp, g);
  233. } else
  234. {
  235. if ( !fdp )
  236. {
  237. fprintf(MSG_OUT, "Adding data: %s\n", whatstr[what]);
  238. addsock(s, e, what, g);
  239. } else
  240. {
  241. fprintf(MSG_OUT,
  242. "Changing action from %s to %s\n",
  243. whatstr[fdp->action], whatstr[what]);
  244. setsock(fdp, s, e, what, g);
  245. }
  246. }
  247. return 0;
  248. }
  249. /* CURLOPT_WRITEFUNCTION */
  250. static size_t write_cb(void *ptr, size_t size, size_t nmemb, void *data)
  251. {
  252. size_t realsize = size * nmemb;
  253. ConnInfo *conn = (ConnInfo*) data;
  254. (void)ptr;
  255. (void)conn;
  256. return realsize;
  257. }
  258. /* CURLOPT_PROGRESSFUNCTION */
  259. static int prog_cb (void *p, double dltotal, double dlnow, double ult,
  260. double uln)
  261. {
  262. ConnInfo *conn = (ConnInfo *)p;
  263. (void)ult;
  264. (void)uln;
  265. fprintf(MSG_OUT, "Progress: %s (%g/%g)\n", conn->url, dlnow, dltotal);
  266. return 0;
  267. }
  268. /* Create a new easy handle, and add it to the global curl_multi */
  269. static void new_conn(char *url, GlobalInfo *g )
  270. {
  271. ConnInfo *conn;
  272. CURLMcode rc;
  273. conn = calloc(1, sizeof(ConnInfo));
  274. memset(conn, 0, sizeof(ConnInfo));
  275. conn->error[0]='\0';
  276. conn->easy = curl_easy_init();
  277. if ( !conn->easy )
  278. {
  279. fprintf(MSG_OUT, "curl_easy_init() failed, exiting!\n");
  280. exit(2);
  281. }
  282. conn->global = g;
  283. conn->url = strdup(url);
  284. curl_easy_setopt(conn->easy, CURLOPT_URL, conn->url);
  285. curl_easy_setopt(conn->easy, CURLOPT_WRITEFUNCTION, write_cb);
  286. curl_easy_setopt(conn->easy, CURLOPT_WRITEDATA, conn);
  287. curl_easy_setopt(conn->easy, CURLOPT_VERBOSE, 1L);
  288. curl_easy_setopt(conn->easy, CURLOPT_ERRORBUFFER, conn->error);
  289. curl_easy_setopt(conn->easy, CURLOPT_PRIVATE, conn);
  290. curl_easy_setopt(conn->easy, CURLOPT_NOPROGRESS, 0L);
  291. curl_easy_setopt(conn->easy, CURLOPT_PROGRESSFUNCTION, prog_cb);
  292. curl_easy_setopt(conn->easy, CURLOPT_PROGRESSDATA, conn);
  293. curl_easy_setopt(conn->easy, CURLOPT_LOW_SPEED_TIME, 3L);
  294. curl_easy_setopt(conn->easy, CURLOPT_LOW_SPEED_LIMIT, 10L);
  295. fprintf(MSG_OUT,
  296. "Adding easy %p to multi %p (%s)\n", conn->easy, g->multi, url);
  297. rc = curl_multi_add_handle(g->multi, conn->easy);
  298. mcode_or_die("new_conn: curl_multi_add_handle", rc);
  299. /* note that the add_handle() will set a time-out to trigger very soon so
  300. that the necessary socket_action() call will be called by this app */
  301. }
  302. /* This gets called whenever data is received from the fifo */
  303. static void fifo_cb(EV_P_ struct ev_io *w, int revents)
  304. {
  305. char s[1024];
  306. long int rv=0;
  307. int n=0;
  308. GlobalInfo *g = (GlobalInfo *)w->data;
  309. do
  310. {
  311. s[0]='\0';
  312. rv=fscanf(g->input, "%1023s%n", s, &n);
  313. s[n]='\0';
  314. if ( n && s[0] )
  315. {
  316. new_conn(s,g); /* if we read a URL, go get it! */
  317. } else break;
  318. } while ( rv != EOF );
  319. }
  320. /* Create a named pipe and tell libevent to monitor it */
  321. static int init_fifo (GlobalInfo *g)
  322. {
  323. struct stat st;
  324. static const char *fifo = "hiper.fifo";
  325. curl_socket_t sockfd;
  326. fprintf(MSG_OUT, "Creating named pipe \"%s\"\n", fifo);
  327. if ( lstat (fifo, &st) == 0 )
  328. {
  329. if ( (st.st_mode & S_IFMT) == S_IFREG )
  330. {
  331. errno = EEXIST;
  332. perror("lstat");
  333. exit (1);
  334. }
  335. }
  336. unlink(fifo);
  337. if ( mkfifo (fifo, 0600) == -1 )
  338. {
  339. perror("mkfifo");
  340. exit (1);
  341. }
  342. sockfd = open(fifo, O_RDWR | O_NONBLOCK, 0);
  343. if ( sockfd == -1 )
  344. {
  345. perror("open");
  346. exit (1);
  347. }
  348. g->input = fdopen(sockfd, "r");
  349. fprintf(MSG_OUT, "Now, pipe some URL's into > %s\n", fifo);
  350. ev_io_init(&g->fifo_event, fifo_cb, sockfd, EV_READ);
  351. ev_io_start(g->loop, &g->fifo_event);
  352. return(0);
  353. }
  354. int main(int argc, char **argv)
  355. {
  356. GlobalInfo g;
  357. CURLMcode rc;
  358. (void)argc;
  359. (void)argv;
  360. memset(&g, 0, sizeof(GlobalInfo));
  361. g.loop = ev_default_loop(0);
  362. init_fifo(&g);
  363. g.multi = curl_multi_init();
  364. ev_timer_init(&g.timer_event, timer_cb, 0., 0.);
  365. g.timer_event.data = &g;
  366. g.fifo_event.data = &g;
  367. curl_multi_setopt(g.multi, CURLMOPT_SOCKETFUNCTION, sock_cb);
  368. curl_multi_setopt(g.multi, CURLMOPT_SOCKETDATA, &g);
  369. curl_multi_setopt(g.multi, CURLMOPT_TIMERFUNCTION, multi_timer_cb);
  370. curl_multi_setopt(g.multi, CURLMOPT_TIMERDATA, &g);
  371. /* we don't call any curl_multi_socket*() function yet as we have no handles
  372. added! */
  373. ev_loop(g.loop, 0);
  374. curl_multi_cleanup(g.multi);
  375. return 0;
  376. }