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rspamd_http_test.c 12KB

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  1. /*-
  2. * Copyright 2016 Vsevolod Stakhov
  3. *
  4. * Licensed under the Apache License, Version 2.0 (the "License");
  5. * you may not use this file except in compliance with the License.
  6. * You may obtain a copy of the License at
  7. *
  8. * http://www.apache.org/licenses/LICENSE-2.0
  9. *
  10. * Unless required by applicable law or agreed to in writing, software
  11. * distributed under the License is distributed on an "AS IS" BASIS,
  12. * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  13. * See the License for the specific language governing permissions and
  14. * limitations under the License.
  15. */
  16. #include "config.h"
  17. #include "rspamd.h"
  18. #include "util.h"
  19. #include "http.h"
  20. #include "tests.h"
  21. #include "ottery.h"
  22. #include "cryptobox.h"
  23. #include "keypair.h"
  24. #include "unix-std.h"
  25. #include <math.h>
  26. #ifdef HAVE_SYS_WAIT_H
  27. #include <sys/wait.h>
  28. #endif
  29. static guint file_size = 500;
  30. static guint pconns = 100;
  31. static guint ntests = 3000;
  32. static guint nservers = 1;
  33. static void
  34. rspamd_server_error (struct rspamd_http_connection_entry *conn_ent,
  35. GError *err)
  36. {
  37. msg_err ("http error occurred: %s", err->message);
  38. g_assert (0);
  39. }
  40. static void
  41. rspamd_server_finish (struct rspamd_http_connection_entry *conn_ent)
  42. {
  43. /* Do nothing here */
  44. }
  45. static void
  46. rspamd_server_accept (gint fd, short what, void *arg)
  47. {
  48. struct rspamd_http_connection_router *rt = arg;
  49. rspamd_inet_addr_t *addr;
  50. gint nfd;
  51. if ((nfd =
  52. rspamd_accept_from_socket (fd, &addr)) == -1) {
  53. msg_warn ("accept failed: %s", strerror (errno));
  54. return;
  55. }
  56. /* Check for EAGAIN */
  57. if (nfd == 0) {
  58. return;
  59. }
  60. rspamd_inet_address_destroy (addr);
  61. rspamd_http_router_handle_socket (rt, nfd, NULL);
  62. }
  63. static void
  64. rspamd_http_term_handler (gint fd, short what, void *arg)
  65. {
  66. struct event_base *ev_base = arg;
  67. struct timeval tv = {0, 0};
  68. event_base_loopexit (ev_base, &tv);
  69. }
  70. static void
  71. rspamd_http_server_func (gint fd, const gchar *path, rspamd_inet_addr_t *addr,
  72. struct rspamd_cryptobox_keypair *kp, struct rspamd_keypair_cache *c)
  73. {
  74. struct rspamd_http_connection_router *rt;
  75. struct event_base *ev_base = event_init ();
  76. struct event accept_ev, term_ev;
  77. rt = rspamd_http_router_new (rspamd_server_error, rspamd_server_finish,
  78. NULL, ev_base, path, c);
  79. g_assert (rt != NULL);
  80. rspamd_http_router_set_key (rt, kp);
  81. event_set (&accept_ev, fd, EV_READ | EV_PERSIST, rspamd_server_accept, rt);
  82. event_base_set (ev_base, &accept_ev);
  83. event_add (&accept_ev, NULL);
  84. evsignal_set (&term_ev, SIGTERM, rspamd_http_term_handler, ev_base);
  85. event_base_set (ev_base, &term_ev);
  86. event_add (&term_ev, NULL);
  87. event_base_loop (ev_base, 0);
  88. }
  89. static gint
  90. rspamd_client_body (struct rspamd_http_connection *conn,
  91. struct rspamd_http_message *msg,
  92. const gchar *chunk, gsize len)
  93. {
  94. g_assert (chunk[0] == '\0');
  95. return 0;
  96. }
  97. struct client_cbdata {
  98. double *lat;
  99. gdouble ts;
  100. };
  101. static void
  102. rspamd_client_err (struct rspamd_http_connection *conn, GError *err)
  103. {
  104. msg_info ("abnormally closing connection from: error: %s",
  105. err->message);
  106. g_assert (0);
  107. close (conn->fd);
  108. rspamd_http_connection_unref (conn);
  109. }
  110. static gint
  111. rspamd_client_finish (struct rspamd_http_connection *conn,
  112. struct rspamd_http_message *msg)
  113. {
  114. struct client_cbdata *cb = conn->ud;
  115. *(cb->lat) = rspamd_get_ticks () * 1000. - cb->ts;
  116. close (conn->fd);
  117. rspamd_http_connection_unref (conn);
  118. g_free (cb);
  119. return 0;
  120. }
  121. static void
  122. rspamd_http_client_func (const gchar *path, rspamd_inet_addr_t *addr,
  123. struct rspamd_cryptobox_keypair *kp,
  124. struct rspamd_cryptobox_pubkey *peer_kp,
  125. struct rspamd_keypair_cache *c,
  126. struct event_base *ev_base, double *latency)
  127. {
  128. struct rspamd_http_message *msg;
  129. struct rspamd_http_connection *conn;
  130. gchar urlbuf[PATH_MAX];
  131. struct client_cbdata *cb;
  132. gint fd;
  133. g_assert ((fd = rspamd_inet_address_connect (addr, SOCK_STREAM, TRUE)) != -1);
  134. conn = rspamd_http_connection_new (rspamd_client_body, rspamd_client_err,
  135. rspamd_client_finish, RSPAMD_HTTP_CLIENT_SIMPLE,
  136. RSPAMD_HTTP_CLIENT, c);
  137. rspamd_snprintf (urlbuf, sizeof (urlbuf), "http://127.0.0.1/%s", path);
  138. msg = rspamd_http_message_from_url (urlbuf);
  139. g_assert (conn != NULL && msg != NULL);
  140. if (kp != NULL) {
  141. g_assert (peer_kp != NULL);
  142. rspamd_http_connection_set_key (conn, kp);
  143. msg->peer_key = rspamd_pubkey_ref (peer_kp);
  144. }
  145. cb = g_malloc (sizeof (*cb));
  146. cb->ts = rspamd_get_ticks () * 1000.;
  147. cb->lat = latency;
  148. rspamd_http_connection_write_message (conn, msg, NULL, NULL, cb,
  149. fd, NULL, ev_base);
  150. }
  151. static int
  152. cmpd (const void *p1, const void *p2)
  153. {
  154. const double *d1 = p1, *d2 = p2;
  155. return (*d1) - (*d2);
  156. }
  157. double
  158. rspamd_http_calculate_mean (double *lats, double *std)
  159. {
  160. guint i;
  161. gdouble mean = 0., dev = 0.;
  162. qsort (lats, ntests * pconns, sizeof (double), cmpd);
  163. for (i = 0; i < ntests * pconns; i ++) {
  164. mean += lats[i];
  165. }
  166. mean /= ntests * pconns;
  167. for (i = 0; i < ntests * pconns; i ++) {
  168. dev += (lats[i] - mean) * (lats[i] - mean);
  169. }
  170. dev /= ntests * pconns;
  171. *std = sqrt (dev);
  172. return mean;
  173. }
  174. static void
  175. rspamd_http_start_servers (pid_t *sfd, rspamd_inet_addr_t *addr,
  176. struct rspamd_cryptobox_keypair *serv_key,
  177. struct rspamd_keypair_cache *c)
  178. {
  179. guint i;
  180. gint fd;
  181. g_assert ((fd = rspamd_inet_address_listen (addr, SOCK_STREAM, TRUE)) != -1);
  182. for (i = 0; i < nservers; i ++) {
  183. sfd[i] = fork ();
  184. g_assert (sfd[i] != -1);
  185. if (sfd[i] == 0) {
  186. gperf_profiler_init (NULL, "plain-http-server");
  187. rspamd_http_server_func (fd, "/tmp/", addr, serv_key, c);
  188. gperf_profiler_stop ();
  189. exit (EXIT_SUCCESS);
  190. }
  191. }
  192. close (fd);
  193. }
  194. static void
  195. rspamd_http_stop_servers (pid_t *sfd)
  196. {
  197. guint i;
  198. gint res;
  199. for (i = 0; i < nservers; i++) {
  200. kill (sfd[i], SIGTERM);
  201. wait (&res);
  202. }
  203. }
  204. void
  205. rspamd_http_test_func (void)
  206. {
  207. struct event_base *ev_base = event_init ();
  208. rspamd_mempool_t *pool = rspamd_mempool_new (rspamd_mempool_suggest_size (), NULL);
  209. struct rspamd_cryptobox_keypair *serv_key, *client_key;
  210. struct rspamd_cryptobox_pubkey *peer_key;
  211. struct rspamd_keypair_cache *c;
  212. rspamd_mempool_mutex_t *mtx;
  213. rspamd_inet_addr_t *addr;
  214. gdouble ts1, ts2;
  215. gchar filepath[PATH_MAX], *buf;
  216. gchar *env;
  217. gint fd;
  218. guint i, j;
  219. pid_t *sfd;
  220. GString *b32_key;
  221. double diff, total_diff = 0.0, *latency, mean, std;
  222. rspamd_cryptobox_init ();
  223. rspamd_snprintf (filepath, sizeof (filepath), "/tmp/http-test-XXXXXX");
  224. g_assert ((fd = mkstemp (filepath)) != -1);
  225. /* Read environment */
  226. if ((env = getenv ("RSPAMD_HTTP_CONNS")) != NULL) {
  227. pconns = strtoul (env, NULL, 10);
  228. }
  229. if ((env = getenv ("RSPAMD_HTTP_TESTS")) != NULL) {
  230. ntests = strtoul (env, NULL, 10);
  231. }
  232. if ((env = getenv ("RSPAMD_HTTP_SIZE")) != NULL) {
  233. file_size = strtoul (env, NULL, 10);
  234. }
  235. if ((env = getenv ("RSPAMD_HTTP_SERVERS")) != NULL) {
  236. nservers = strtoul (env, NULL, 10);
  237. }
  238. sfd = g_alloca (sizeof (*sfd) * nservers);
  239. latency = g_malloc0 (pconns * ntests * sizeof (gdouble));
  240. buf = g_malloc (file_size);
  241. memset (buf, 0, file_size);
  242. g_assert (write (fd, buf, file_size) == file_size);
  243. g_free (buf);
  244. mtx = rspamd_mempool_get_mutex (pool);
  245. rspamd_parse_inet_address (&addr, "127.0.0.1", 0);
  246. rspamd_inet_address_set_port (addr, 43898);
  247. serv_key = rspamd_keypair_new (RSPAMD_KEYPAIR_KEX,
  248. RSPAMD_CRYPTOBOX_MODE_25519);
  249. client_key = rspamd_keypair_new (RSPAMD_KEYPAIR_KEX,
  250. RSPAMD_CRYPTOBOX_MODE_25519);
  251. c = rspamd_keypair_cache_new (16);
  252. rspamd_http_start_servers (sfd, addr, serv_key, NULL);
  253. usleep (100000);
  254. /* Do client stuff */
  255. gperf_profiler_init (NULL, "plain-http-client");
  256. for (i = 0; i < ntests; i ++) {
  257. for (j = 0; j < pconns; j ++) {
  258. rspamd_http_client_func (filepath + sizeof ("/tmp") - 1, addr,
  259. NULL, NULL, c, ev_base, &latency[i * pconns + j]);
  260. }
  261. ts1 = rspamd_get_ticks ();
  262. event_base_loop (ev_base, 0);
  263. ts2 = rspamd_get_ticks ();
  264. diff = (ts2 - ts1) * 1000.0;
  265. total_diff += diff;
  266. }
  267. gperf_profiler_stop ();
  268. msg_info ("Made %d connections of size %d in %.6f ms, %.6f cps",
  269. ntests * pconns,
  270. file_size,
  271. total_diff, ntests * pconns / total_diff * 1000.);
  272. mean = rspamd_http_calculate_mean (latency, &std);
  273. msg_info ("Latency: %.6f ms mean, %.6f dev",
  274. mean, std);
  275. rspamd_http_stop_servers (sfd);
  276. rspamd_http_start_servers (sfd, addr, serv_key, c);
  277. //rspamd_mempool_lock_mutex (mtx);
  278. usleep (100000);
  279. b32_key = rspamd_keypair_print (serv_key,
  280. RSPAMD_KEYPAIR_PUBKEY|RSPAMD_KEYPAIR_BASE32);
  281. g_assert (b32_key != NULL);
  282. peer_key = rspamd_pubkey_from_base32 (b32_key->str, b32_key->len,
  283. RSPAMD_KEYPAIR_KEX, RSPAMD_CRYPTOBOX_MODE_25519);
  284. g_assert (peer_key != NULL);
  285. total_diff = 0.0;
  286. gperf_profiler_init (NULL, "cached-http-client");
  287. for (i = 0; i < ntests; i ++) {
  288. for (j = 0; j < pconns; j ++) {
  289. rspamd_http_client_func (filepath + sizeof ("/tmp") - 1, addr,
  290. client_key, peer_key, c, ev_base, &latency[i * pconns + j]);
  291. }
  292. ts1 = rspamd_get_ticks ();
  293. event_base_loop (ev_base, 0);
  294. ts2 = rspamd_get_ticks ();
  295. diff = (ts2 - ts1) * 1000.0;
  296. total_diff += diff;
  297. }
  298. gperf_profiler_stop ();
  299. msg_info ("Made %d encrypted connections of size %d in %.6f ms, %.6f cps",
  300. ntests * pconns,
  301. file_size,
  302. total_diff, ntests * pconns / total_diff * 1000.);
  303. mean = rspamd_http_calculate_mean (latency, &std);
  304. msg_info ("Latency: %.6f ms mean, %.6f dev",
  305. mean, std);
  306. /* Restart server */
  307. rspamd_http_stop_servers (sfd);
  308. /* No keypairs cache */
  309. rspamd_http_start_servers (sfd, addr, serv_key, NULL);
  310. usleep (100000);
  311. total_diff = 0.0;
  312. gperf_profiler_init (NULL, "fair-http-client");
  313. for (i = 0; i < ntests; i ++) {
  314. for (j = 0; j < pconns; j ++) {
  315. rspamd_http_client_func (filepath + sizeof ("/tmp") - 1, addr,
  316. client_key, peer_key, c, ev_base, &latency[i * pconns + j]);
  317. }
  318. ts1 = rspamd_get_ticks ();
  319. event_base_loop (ev_base, 0);
  320. ts2 = rspamd_get_ticks ();
  321. diff = (ts2 - ts1) * 1000.0;
  322. total_diff += diff;
  323. }
  324. gperf_profiler_stop ();
  325. msg_info ("Made %d uncached encrypted connections of size %d in %.6f ms, %.6f cps",
  326. ntests * pconns,
  327. file_size,
  328. total_diff, ntests * pconns / total_diff * 1000.);
  329. mean = rspamd_http_calculate_mean (latency, &std);
  330. msg_info ("Latency: %.6f ms mean, %.6f dev",
  331. mean, std);
  332. /* AES mode */
  333. serv_key = rspamd_keypair_new (RSPAMD_KEYPAIR_KEX,
  334. RSPAMD_CRYPTOBOX_MODE_NIST);
  335. client_key = rspamd_keypair_new (RSPAMD_KEYPAIR_KEX,
  336. RSPAMD_CRYPTOBOX_MODE_NIST);
  337. c = rspamd_keypair_cache_new (16);
  338. /* Restart server */
  339. rspamd_http_stop_servers (sfd);
  340. /* No keypairs cache */
  341. rspamd_http_start_servers (sfd, addr, serv_key, c);
  342. //rspamd_mempool_lock_mutex (mtx);
  343. usleep (100000);
  344. b32_key = rspamd_keypair_print (serv_key,
  345. RSPAMD_KEYPAIR_PUBKEY | RSPAMD_KEYPAIR_BASE32);
  346. g_assert (b32_key != NULL);
  347. peer_key = rspamd_pubkey_from_base32 (b32_key->str, b32_key->len,
  348. RSPAMD_KEYPAIR_KEX, RSPAMD_CRYPTOBOX_MODE_NIST);
  349. g_assert (peer_key != NULL);
  350. total_diff = 0.0;
  351. gperf_profiler_init (NULL, "cached-http-client-aes");
  352. for (i = 0; i < ntests; i++) {
  353. for (j = 0; j < pconns; j++) {
  354. rspamd_http_client_func (filepath + sizeof ("/tmp") - 1,
  355. addr,
  356. client_key,
  357. peer_key,
  358. NULL,
  359. ev_base,
  360. &latency[i * pconns + j]);
  361. }
  362. ts1 = rspamd_get_ticks ();
  363. event_base_loop (ev_base, 0);
  364. ts2 = rspamd_get_ticks ();
  365. diff = (ts2 - ts1) * 1000.0;
  366. total_diff += diff;
  367. }
  368. gperf_profiler_stop ();
  369. msg_info (
  370. "Made %d aes encrypted connections of size %d in %.6f ms, %.6f cps",
  371. ntests * pconns,
  372. file_size,
  373. total_diff,
  374. ntests * pconns / total_diff * 1000.);
  375. mean = rspamd_http_calculate_mean (latency, &std);
  376. msg_info ("Latency: %.6f ms mean, %.6f dev",
  377. mean, std);
  378. /* Restart server */
  379. rspamd_http_stop_servers (sfd);
  380. /* No keypairs cache */
  381. rspamd_http_start_servers (sfd, addr, serv_key, NULL);
  382. //rspamd_mempool_lock_mutex (mtx);
  383. usleep (100000);
  384. total_diff = 0.0;
  385. gperf_profiler_init (NULL, "fair-http-client-aes");
  386. for (i = 0; i < ntests; i++) {
  387. for (j = 0; j < pconns; j++) {
  388. rspamd_http_client_func (filepath + sizeof ("/tmp") - 1,
  389. addr,
  390. client_key,
  391. peer_key,
  392. c,
  393. ev_base,
  394. &latency[i * pconns + j]);
  395. }
  396. ts1 = rspamd_get_ticks ();
  397. event_base_loop (ev_base, 0);
  398. ts2 = rspamd_get_ticks ();
  399. diff = (ts2 - ts1) * 1000.0;
  400. total_diff += diff;
  401. }
  402. gperf_profiler_stop ();
  403. msg_info (
  404. "Made %d uncached aes encrypted connections of size %d in %.6f ms, %.6f cps",
  405. ntests * pconns,
  406. file_size,
  407. total_diff,
  408. ntests * pconns / total_diff * 1000.);
  409. mean = rspamd_http_calculate_mean (latency, &std);
  410. msg_info ("Latency: %.6f ms mean, %.6f dev",
  411. mean, std);
  412. close (fd);
  413. unlink (filepath);
  414. rspamd_http_stop_servers (sfd);
  415. }