選択できるのは25トピックまでです。 トピックは、先頭が英数字で、英数字とダッシュ('-')を使用した35文字以内のものにしてください。

fuzzy_storage.c 67KB

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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. /*
  17. * Rspamd fuzzy storage server
  18. */
  19. #include "config.h"
  20. #include "libserver/fuzzy_wire.h"
  21. #include "util.h"
  22. #include "rspamd.h"
  23. #include "libserver/maps/map.h"
  24. #include "libserver/maps/map_helpers.h"
  25. #include "libserver/fuzzy_backend/fuzzy_backend.h"
  26. #include "ottery.h"
  27. #include "ref.h"
  28. #include "xxhash.h"
  29. #include "libserver/worker_util.h"
  30. #include "libserver/rspamd_control.h"
  31. #include "libcryptobox/cryptobox.h"
  32. #include "libcryptobox/keypairs_cache.h"
  33. #include "libcryptobox/keypair.h"
  34. #include "libutil/hash.h"
  35. #include "libserver/maps/map_private.h"
  36. #include "contrib/uthash/utlist.h"
  37. #include "lua/lua_common.h"
  38. #include "unix-std.h"
  39. #include <math.h>
  40. /* Resync value in seconds */
  41. #define DEFAULT_SYNC_TIMEOUT 60.0
  42. #define DEFAULT_KEYPAIR_CACHE_SIZE 512
  43. #define DEFAULT_MASTER_TIMEOUT 10.0
  44. #define DEFAULT_UPDATES_MAXFAIL 3
  45. #define COOKIE_SIZE 128
  46. #define DEFAULT_MAX_BUCKETS 2000
  47. #define DEFAULT_BUCKET_TTL 3600
  48. #define DEFAULT_BUCKET_MASK 24
  49. static const gchar *local_db_name = "local";
  50. #define msg_err_fuzzy_update(...) rspamd_default_log_function (G_LOG_LEVEL_CRITICAL, \
  51. session->name, session->uid, \
  52. G_STRFUNC, \
  53. __VA_ARGS__)
  54. #define msg_warn_fuzzy_update(...) rspamd_default_log_function (G_LOG_LEVEL_WARNING, \
  55. session->name, session->uid, \
  56. G_STRFUNC, \
  57. __VA_ARGS__)
  58. #define msg_info_fuzzy_update(...) rspamd_default_log_function (G_LOG_LEVEL_INFO, \
  59. session->name, session->uid, \
  60. G_STRFUNC, \
  61. __VA_ARGS__)
  62. #define msg_err_fuzzy_collection(...) rspamd_default_log_function (G_LOG_LEVEL_CRITICAL, \
  63. "fuzzy_collection", session->uid, \
  64. G_STRFUNC, \
  65. __VA_ARGS__)
  66. #define msg_warn_fuzzy_collection(...) rspamd_default_log_function (G_LOG_LEVEL_WARNING, \
  67. "fuzzy_collection", session->uid, \
  68. G_STRFUNC, \
  69. __VA_ARGS__)
  70. #define msg_info_fuzzy_collection(...) rspamd_default_log_function (G_LOG_LEVEL_INFO, \
  71. "fuzzy_collection", session->uid, \
  72. G_STRFUNC, \
  73. __VA_ARGS__)
  74. /* Init functions */
  75. gpointer init_fuzzy (struct rspamd_config *cfg);
  76. void start_fuzzy (struct rspamd_worker *worker);
  77. worker_t fuzzy_worker = {
  78. "fuzzy", /* Name */
  79. init_fuzzy, /* Init function */
  80. start_fuzzy, /* Start function */
  81. RSPAMD_WORKER_HAS_SOCKET,
  82. RSPAMD_WORKER_SOCKET_UDP, /* UDP socket */
  83. RSPAMD_WORKER_VER /* Version info */
  84. };
  85. struct fuzzy_global_stat {
  86. guint64 fuzzy_hashes;
  87. /**< number of fuzzy hashes stored */
  88. guint64 fuzzy_hashes_expired;
  89. /**< number of fuzzy hashes expired */
  90. guint64 fuzzy_hashes_checked[RSPAMD_FUZZY_EPOCH_MAX];
  91. /**< amount of check requests for each epoch */
  92. guint64 fuzzy_shingles_checked[RSPAMD_FUZZY_EPOCH_MAX];
  93. /**< amount of shingle check requests for each epoch */
  94. guint64 fuzzy_hashes_found[RSPAMD_FUZZY_EPOCH_MAX];
  95. /**< amount of invalid requests */
  96. guint64 invalid_requests;
  97. /**< amount of delayed hashes found */
  98. guint64 delayed_hashes;
  99. };
  100. struct fuzzy_key_stat {
  101. guint64 checked;
  102. guint64 matched;
  103. guint64 added;
  104. guint64 deleted;
  105. guint64 errors;
  106. rspamd_lru_hash_t *last_ips;
  107. ref_entry_t ref;
  108. };
  109. struct rspamd_fuzzy_mirror {
  110. gchar *name;
  111. struct upstream_list *u;
  112. struct rspamd_cryptobox_pubkey *key;
  113. };
  114. struct rspamd_leaky_bucket_elt {
  115. rspamd_inet_addr_t *addr;
  116. gdouble last;
  117. gdouble cur;
  118. };
  119. static const guint64 rspamd_fuzzy_storage_magic = 0x291a3253eb1b3ea5ULL;
  120. struct rspamd_fuzzy_storage_ctx {
  121. guint64 magic;
  122. /* Events base */
  123. struct ev_loop *event_loop;
  124. /* DNS resolver */
  125. struct rspamd_dns_resolver *resolver;
  126. /* Config */
  127. struct rspamd_config *cfg;
  128. /* END OF COMMON PART */
  129. struct fuzzy_global_stat stat;
  130. gdouble expire;
  131. gdouble sync_timeout;
  132. gdouble delay;
  133. struct rspamd_radix_map_helper *update_ips;
  134. struct rspamd_radix_map_helper *blocked_ips;
  135. struct rspamd_radix_map_helper *ratelimit_whitelist;
  136. struct rspamd_radix_map_helper *delay_whitelist;
  137. const ucl_object_t *update_map;
  138. const ucl_object_t *delay_whitelist_map;
  139. const ucl_object_t *blocked_map;
  140. const ucl_object_t *ratelimit_whitelist_map;
  141. guint keypair_cache_size;
  142. ev_timer stat_ev;
  143. ev_io peer_ev;
  144. /* Local keypair */
  145. struct rspamd_cryptobox_keypair *default_keypair; /* Bad clash, need for parse keypair */
  146. struct fuzzy_key *default_key;
  147. GHashTable *keys;
  148. gboolean encrypted_only;
  149. gboolean read_only;
  150. gboolean dedicated_update_worker;
  151. struct rspamd_keypair_cache *keypair_cache;
  152. struct rspamd_http_context *http_ctx;
  153. rspamd_lru_hash_t *errors_ips;
  154. rspamd_lru_hash_t *ratelimit_buckets;
  155. struct rspamd_fuzzy_backend *backend;
  156. GArray *updates_pending;
  157. guint updates_failed;
  158. guint updates_maxfail;
  159. /* Used to send data between workers */
  160. gint peer_fd;
  161. /* Ratelimits */
  162. guint leaky_bucket_ttl;
  163. guint leaky_bucket_mask;
  164. guint max_buckets;
  165. gboolean ratelimit_log_only;
  166. gdouble leaky_bucket_burst;
  167. gdouble leaky_bucket_rate;
  168. struct rspamd_worker *worker;
  169. const ucl_object_t *skip_map;
  170. struct rspamd_hash_map_helper *skip_hashes;
  171. gint lua_pre_handler_cbref;
  172. gint lua_post_handler_cbref;
  173. guchar cookie[COOKIE_SIZE];
  174. };
  175. enum fuzzy_cmd_type {
  176. CMD_NORMAL,
  177. CMD_SHINGLE,
  178. CMD_ENCRYPTED_NORMAL,
  179. CMD_ENCRYPTED_SHINGLE
  180. };
  181. struct fuzzy_session {
  182. struct rspamd_worker *worker;
  183. rspamd_inet_addr_t *addr;
  184. struct rspamd_fuzzy_storage_ctx *ctx;
  185. struct rspamd_fuzzy_shingle_cmd cmd; /* Can handle both shingles and non-shingles */
  186. struct rspamd_fuzzy_encrypted_reply reply; /* Again: contains everything */
  187. struct fuzzy_key_stat *ip_stat;
  188. enum rspamd_fuzzy_epoch epoch;
  189. enum fuzzy_cmd_type cmd_type;
  190. gint fd;
  191. guint64 time;
  192. struct ev_io io;
  193. ref_entry_t ref;
  194. struct fuzzy_key_stat *key_stat;
  195. struct rspamd_fuzzy_cmd_extension *extensions;
  196. guchar nm[rspamd_cryptobox_MAX_NMBYTES];
  197. };
  198. struct fuzzy_peer_request {
  199. ev_io io_ev;
  200. struct fuzzy_peer_cmd cmd;
  201. };
  202. struct fuzzy_key {
  203. struct rspamd_cryptobox_keypair *key;
  204. struct rspamd_cryptobox_pubkey *pk;
  205. struct fuzzy_key_stat *stat;
  206. };
  207. struct rspamd_updates_cbdata {
  208. GArray *updates_pending;
  209. struct rspamd_fuzzy_storage_ctx *ctx;
  210. gchar *source;
  211. gboolean final;
  212. };
  213. static void rspamd_fuzzy_write_reply (struct fuzzy_session *session);
  214. static gboolean rspamd_fuzzy_process_updates_queue (
  215. struct rspamd_fuzzy_storage_ctx *ctx,
  216. const gchar *source, gboolean final);
  217. static gboolean
  218. rspamd_fuzzy_check_ratelimit (struct fuzzy_session *session)
  219. {
  220. rspamd_inet_addr_t *masked;
  221. struct rspamd_leaky_bucket_elt *elt;
  222. ev_tstamp now;
  223. if (session->ctx->ratelimit_whitelist != NULL) {
  224. if (rspamd_match_radix_map_addr (session->ctx->ratelimit_whitelist,
  225. session->addr) != NULL) {
  226. return TRUE;
  227. }
  228. }
  229. /*
  230. if (rspamd_inet_address_is_local (session->addr, TRUE)) {
  231. return TRUE;
  232. }
  233. */
  234. masked = rspamd_inet_address_copy (session->addr);
  235. if (rspamd_inet_address_get_af (masked) == AF_INET) {
  236. rspamd_inet_address_apply_mask (masked,
  237. MIN (session->ctx->leaky_bucket_mask, 32));
  238. }
  239. else {
  240. /* Must be at least /64 */
  241. rspamd_inet_address_apply_mask (masked,
  242. MIN (MAX (session->ctx->leaky_bucket_mask * 4, 64), 128));
  243. }
  244. now = ev_now (session->ctx->event_loop);
  245. elt = rspamd_lru_hash_lookup (session->ctx->ratelimit_buckets, masked,
  246. now);
  247. if (elt) {
  248. gboolean ratelimited = FALSE;
  249. if (isnan (elt->cur)) {
  250. /* Ratelimit exceeded, preserve it for the whole ttl */
  251. ratelimited = TRUE;
  252. }
  253. else {
  254. /* Update bucket */
  255. if (elt->last < now) {
  256. elt->cur -= session->ctx->leaky_bucket_rate * (now - elt->last);
  257. elt->last = now;
  258. if (elt->cur < 0) {
  259. elt->cur = 0;
  260. }
  261. }
  262. else {
  263. elt->last = now;
  264. }
  265. /* Check bucket */
  266. if (elt->cur >= session->ctx->leaky_bucket_burst) {
  267. msg_info ("ratelimiting %s (%s), %.1f max elts",
  268. rspamd_inet_address_to_string (session->addr),
  269. rspamd_inet_address_to_string (masked),
  270. session->ctx->leaky_bucket_burst);
  271. elt->cur = NAN;
  272. }
  273. else {
  274. elt->cur ++; /* Allow one more request */
  275. }
  276. }
  277. rspamd_inet_address_free (masked);
  278. return !ratelimited;
  279. }
  280. else {
  281. /* New bucket */
  282. elt = g_malloc (sizeof (*elt));
  283. elt->addr = masked; /* transfer ownership */
  284. elt->cur = 1;
  285. elt->last = now;
  286. rspamd_lru_hash_insert (session->ctx->ratelimit_buckets,
  287. masked,
  288. elt,
  289. now,
  290. session->ctx->leaky_bucket_ttl);
  291. }
  292. return TRUE;
  293. }
  294. static gboolean
  295. rspamd_fuzzy_check_client (struct fuzzy_session *session, gboolean is_write)
  296. {
  297. if (session->ctx->blocked_ips != NULL) {
  298. if (rspamd_match_radix_map_addr (session->ctx->blocked_ips,
  299. session->addr) != NULL) {
  300. return FALSE;
  301. }
  302. }
  303. if (is_write) {
  304. if (session->ctx->read_only) {
  305. return FALSE;
  306. }
  307. if (session->ctx->update_ips != NULL) {
  308. if (rspamd_match_radix_map_addr (session->ctx->update_ips,
  309. session->addr) == NULL) {
  310. return FALSE;
  311. }
  312. else {
  313. return TRUE;
  314. }
  315. }
  316. return FALSE;
  317. }
  318. /* Non write */
  319. if (session->ctx->ratelimit_buckets) {
  320. if (session->ctx->ratelimit_log_only) {
  321. (void)rspamd_fuzzy_check_ratelimit (session); /* Check but ignore */
  322. }
  323. else {
  324. return rspamd_fuzzy_check_ratelimit (session);
  325. }
  326. }
  327. return TRUE;
  328. }
  329. static void
  330. fuzzy_key_stat_dtor (gpointer p)
  331. {
  332. struct fuzzy_key_stat *st = p;
  333. if (st->last_ips) {
  334. rspamd_lru_hash_destroy (st->last_ips);
  335. }
  336. g_free (st);
  337. }
  338. static void
  339. fuzzy_key_stat_unref (gpointer p)
  340. {
  341. struct fuzzy_key_stat *st = p;
  342. REF_RELEASE (st);
  343. }
  344. static void
  345. fuzzy_key_dtor (gpointer p)
  346. {
  347. struct fuzzy_key *key = p;
  348. if (key) {
  349. if (key->stat) {
  350. REF_RELEASE (key->stat);
  351. }
  352. g_free (key);
  353. }
  354. }
  355. static void
  356. fuzzy_count_callback (guint64 count, void *ud)
  357. {
  358. struct rspamd_fuzzy_storage_ctx *ctx = ud;
  359. ctx->stat.fuzzy_hashes = count;
  360. }
  361. static void
  362. fuzzy_rl_bucket_free (gpointer p)
  363. {
  364. struct rspamd_leaky_bucket_elt *elt = (struct rspamd_leaky_bucket_elt *)p;
  365. rspamd_inet_address_free (elt->addr);
  366. g_free (elt);
  367. }
  368. static void
  369. fuzzy_stat_count_callback (guint64 count, void *ud)
  370. {
  371. struct rspamd_fuzzy_storage_ctx *ctx = ud;
  372. ev_timer_again (ctx->event_loop, &ctx->stat_ev);
  373. ctx->stat.fuzzy_hashes = count;
  374. }
  375. static void
  376. rspamd_fuzzy_stat_callback (EV_P_ ev_timer *w, int revents)
  377. {
  378. struct rspamd_fuzzy_storage_ctx *ctx =
  379. (struct rspamd_fuzzy_storage_ctx *)w->data;
  380. rspamd_fuzzy_backend_count (ctx->backend, fuzzy_stat_count_callback, ctx);
  381. }
  382. static void
  383. fuzzy_update_version_callback (guint64 ver, void *ud)
  384. {
  385. }
  386. static void
  387. rspamd_fuzzy_updates_cb (gboolean success,
  388. guint nadded,
  389. guint ndeleted,
  390. guint nextended,
  391. guint nignored,
  392. void *ud)
  393. {
  394. struct rspamd_updates_cbdata *cbdata = ud;
  395. struct rspamd_fuzzy_storage_ctx *ctx;
  396. const gchar *source;
  397. ctx = cbdata->ctx;
  398. source = cbdata->source;
  399. if (success) {
  400. rspamd_fuzzy_backend_count (ctx->backend, fuzzy_count_callback, ctx);
  401. msg_info ("successfully updated fuzzy storage %s: %d updates in queue; "
  402. "%d pending currently; "
  403. "%d added; %d deleted; %d extended; %d duplicates",
  404. ctx->worker->cf->bind_conf ?
  405. ctx->worker->cf->bind_conf->bind_line :
  406. "unknown",
  407. cbdata->updates_pending->len,
  408. ctx->updates_pending->len,
  409. nadded, ndeleted, nextended, nignored);
  410. rspamd_fuzzy_backend_version (ctx->backend, source,
  411. fuzzy_update_version_callback, NULL);
  412. ctx->updates_failed = 0;
  413. if (cbdata->final || ctx->worker->state != rspamd_worker_state_running) {
  414. /* Plan exit */
  415. ev_break (ctx->event_loop, EVBREAK_ALL);
  416. }
  417. }
  418. else {
  419. if (++ctx->updates_failed > ctx->updates_maxfail) {
  420. msg_err ("cannot commit update transaction to fuzzy backend %s, discard "
  421. "%ud updates after %d retries",
  422. ctx->worker->cf->bind_conf ?
  423. ctx->worker->cf->bind_conf->bind_line :
  424. "unknown",
  425. cbdata->updates_pending->len,
  426. ctx->updates_maxfail);
  427. ctx->updates_failed = 0;
  428. if (cbdata->final || ctx->worker->state != rspamd_worker_state_running) {
  429. /* Plan exit */
  430. ev_break (ctx->event_loop, EVBREAK_ALL);
  431. }
  432. }
  433. else {
  434. msg_err ("cannot commit update transaction to fuzzy backend %s; "
  435. "%ud updates are still left; %ud currently pending;"
  436. " %d updates left",
  437. ctx->worker->cf->bind_conf ?
  438. ctx->worker->cf->bind_conf->bind_line :
  439. "unknown",
  440. cbdata->updates_pending->len,
  441. ctx->updates_pending->len,
  442. ctx->updates_maxfail - ctx->updates_failed);
  443. /* Move the remaining updates to ctx queue */
  444. g_array_append_vals (ctx->updates_pending,
  445. cbdata->updates_pending->data,
  446. cbdata->updates_pending->len);
  447. if (cbdata->final) {
  448. /* Try one more time */
  449. rspamd_fuzzy_process_updates_queue (cbdata->ctx, cbdata->source,
  450. cbdata->final);
  451. }
  452. }
  453. }
  454. g_array_free (cbdata->updates_pending, TRUE);
  455. g_free (cbdata->source);
  456. g_free (cbdata);
  457. }
  458. static gboolean
  459. rspamd_fuzzy_process_updates_queue (struct rspamd_fuzzy_storage_ctx *ctx,
  460. const gchar *source, gboolean final)
  461. {
  462. struct rspamd_updates_cbdata *cbdata;
  463. if (ctx->updates_pending->len > 0) {
  464. cbdata = g_malloc (sizeof (*cbdata));
  465. cbdata->ctx = ctx;
  466. cbdata->final = final;
  467. cbdata->updates_pending = ctx->updates_pending;
  468. ctx->updates_pending = g_array_sized_new (FALSE, FALSE,
  469. sizeof (struct fuzzy_peer_cmd),
  470. MAX (cbdata->updates_pending->len, 1024));
  471. cbdata->source = g_strdup (source);
  472. rspamd_fuzzy_backend_process_updates (ctx->backend,
  473. cbdata->updates_pending,
  474. source, rspamd_fuzzy_updates_cb, cbdata);
  475. return TRUE;
  476. }
  477. else if (final) {
  478. /* No need to sync */
  479. ev_break (ctx->event_loop, EVBREAK_ALL);
  480. }
  481. return FALSE;
  482. }
  483. static void
  484. rspamd_fuzzy_reply_io (EV_P_ ev_io *w, int revents)
  485. {
  486. struct fuzzy_session *session = (struct fuzzy_session *)w->data;
  487. ev_io_stop (EV_A_ w);
  488. rspamd_fuzzy_write_reply (session);
  489. REF_RELEASE (session);
  490. }
  491. static void
  492. rspamd_fuzzy_write_reply (struct fuzzy_session *session)
  493. {
  494. gssize r;
  495. gsize len;
  496. gconstpointer data;
  497. if (session->cmd_type == CMD_ENCRYPTED_NORMAL ||
  498. session->cmd_type == CMD_ENCRYPTED_SHINGLE) {
  499. /* Encrypted reply */
  500. data = &session->reply;
  501. if (session->epoch > RSPAMD_FUZZY_EPOCH10) {
  502. len = sizeof (session->reply);
  503. }
  504. else {
  505. len = sizeof (session->reply.hdr) + sizeof (session->reply.rep.v1);
  506. }
  507. }
  508. else {
  509. data = &session->reply.rep;
  510. if (session->epoch > RSPAMD_FUZZY_EPOCH10) {
  511. len = sizeof (session->reply.rep);
  512. }
  513. else {
  514. len = sizeof (session->reply.rep.v1);
  515. }
  516. }
  517. r = rspamd_inet_address_sendto (session->fd, data, len, 0,
  518. session->addr);
  519. if (r == -1) {
  520. if (errno == EINTR || errno == EWOULDBLOCK || errno == EAGAIN) {
  521. /* Grab reference to avoid early destruction */
  522. REF_RETAIN (session);
  523. session->io.data = session;
  524. ev_io_init (&session->io,
  525. rspamd_fuzzy_reply_io, session->fd, EV_WRITE);
  526. ev_io_start (session->ctx->event_loop, &session->io);
  527. }
  528. else {
  529. msg_err ("error while writing reply: %s", strerror (errno));
  530. }
  531. }
  532. }
  533. static void
  534. rspamd_fuzzy_update_stats (struct rspamd_fuzzy_storage_ctx *ctx,
  535. enum rspamd_fuzzy_epoch epoch,
  536. gboolean matched,
  537. gboolean is_shingle,
  538. gboolean is_delayed,
  539. struct fuzzy_key_stat *key_stat,
  540. struct fuzzy_key_stat *ip_stat,
  541. guint cmd, guint reply)
  542. {
  543. ctx->stat.fuzzy_hashes_checked[epoch] ++;
  544. if (matched) {
  545. ctx->stat.fuzzy_hashes_found[epoch]++;
  546. }
  547. if (is_shingle) {
  548. ctx->stat.fuzzy_shingles_checked[epoch]++;
  549. }
  550. if (is_delayed) {
  551. ctx->stat.delayed_hashes ++;
  552. }
  553. if (key_stat) {
  554. if (!matched && reply != 0) {
  555. key_stat->errors ++;
  556. }
  557. else {
  558. if (cmd == FUZZY_CHECK) {
  559. key_stat->checked++;
  560. if (matched) {
  561. key_stat->matched ++;
  562. }
  563. }
  564. else if (cmd == FUZZY_WRITE) {
  565. key_stat->added++;
  566. }
  567. else if (cmd == FUZZY_DEL) {
  568. key_stat->deleted++;
  569. }
  570. }
  571. }
  572. if (ip_stat) {
  573. if (!matched && reply != 0) {
  574. ip_stat->errors++;
  575. }
  576. else {
  577. if (cmd == FUZZY_CHECK) {
  578. ip_stat->checked++;
  579. if (matched) {
  580. ip_stat->matched++;
  581. }
  582. }
  583. else if (cmd == FUZZY_WRITE) {
  584. ip_stat->added++;
  585. }
  586. else if (cmd == FUZZY_DEL) {
  587. ip_stat->deleted++;
  588. }
  589. }
  590. }
  591. }
  592. enum rspamd_fuzzy_reply_flags {
  593. RSPAMD_FUZZY_REPLY_ENCRYPTED = 0x1u << 0u,
  594. RSPAMD_FUZZY_REPLY_SHINGLE = 0x1u << 1u,
  595. RSPAMD_FUZZY_REPLY_DELAY = 0x1u << 2u,
  596. };
  597. static void
  598. rspamd_fuzzy_make_reply (struct rspamd_fuzzy_cmd *cmd,
  599. struct rspamd_fuzzy_reply *result,
  600. struct fuzzy_session *session,
  601. gint flags)
  602. {
  603. gsize len;
  604. if (cmd) {
  605. result->v1.tag = cmd->tag;
  606. memcpy (&session->reply.rep, result, sizeof (*result));
  607. rspamd_fuzzy_update_stats (session->ctx,
  608. session->epoch,
  609. result->v1.prob > 0.5,
  610. flags & RSPAMD_FUZZY_REPLY_SHINGLE,
  611. flags & RSPAMD_FUZZY_REPLY_DELAY,
  612. session->key_stat,
  613. session->ip_stat,
  614. cmd->cmd,
  615. result->v1.value);
  616. if (flags & RSPAMD_FUZZY_REPLY_DELAY) {
  617. /* Hash is too fresh, need to delay it */
  618. session->reply.rep.ts = 0;
  619. session->reply.rep.v1.prob = 0.0;
  620. session->reply.rep.v1.value = 0;
  621. }
  622. if (flags & RSPAMD_FUZZY_REPLY_ENCRYPTED) {
  623. /* We need also to encrypt reply */
  624. ottery_rand_bytes (session->reply.hdr.nonce,
  625. sizeof (session->reply.hdr.nonce));
  626. /*
  627. * For old replies we need to encrypt just old part, otherwise
  628. * decryption would fail due to mac verification mistake
  629. */
  630. if (session->epoch > RSPAMD_FUZZY_EPOCH10) {
  631. len = sizeof (session->reply.rep);
  632. }
  633. else {
  634. len = sizeof (session->reply.rep.v1);
  635. }
  636. rspamd_cryptobox_encrypt_nm_inplace ((guchar *)&session->reply.rep,
  637. len,
  638. session->reply.hdr.nonce,
  639. session->nm,
  640. session->reply.hdr.mac,
  641. RSPAMD_CRYPTOBOX_MODE_25519);
  642. }
  643. }
  644. rspamd_fuzzy_write_reply (session);
  645. }
  646. static gboolean
  647. fuzzy_peer_try_send (gint fd, struct fuzzy_peer_request *up_req)
  648. {
  649. gssize r;
  650. r = write (fd, &up_req->cmd, sizeof (up_req->cmd));
  651. if (r != sizeof (up_req->cmd)) {
  652. return FALSE;
  653. }
  654. return TRUE;
  655. }
  656. static void
  657. fuzzy_peer_send_io (EV_P_ ev_io *w, int revents)
  658. {
  659. struct fuzzy_peer_request *up_req = (struct fuzzy_peer_request *)w->data;
  660. if (!fuzzy_peer_try_send (w->fd, up_req)) {
  661. msg_err ("cannot send update request to the peer: %s", strerror (errno));
  662. }
  663. ev_io_stop (EV_A_ w);
  664. g_free (up_req);
  665. }
  666. static void
  667. rspamd_fuzzy_extensions_tolua (lua_State *L,
  668. struct fuzzy_session *session)
  669. {
  670. struct rspamd_fuzzy_cmd_extension *ext;
  671. rspamd_inet_addr_t *addr;
  672. lua_createtable (L, 0, 0);
  673. LL_FOREACH (session->extensions, ext) {
  674. switch (ext->ext) {
  675. case RSPAMD_FUZZY_EXT_SOURCE_DOMAIN:
  676. lua_pushlstring (L, ext->payload, ext->length);
  677. lua_setfield (L, -2, "domain");
  678. break;
  679. case RSPAMD_FUZZY_EXT_SOURCE_IP4:
  680. addr = rspamd_inet_address_new (AF_INET, ext->payload);
  681. rspamd_lua_ip_push (L, addr);
  682. rspamd_inet_address_free (addr);
  683. lua_setfield (L, -2, "ip");
  684. break;
  685. case RSPAMD_FUZZY_EXT_SOURCE_IP6:
  686. addr = rspamd_inet_address_new (AF_INET6, ext->payload);
  687. rspamd_lua_ip_push (L, addr);
  688. rspamd_inet_address_free (addr);
  689. lua_setfield (L, -2, "ip");
  690. break;
  691. }
  692. }
  693. }
  694. static void
  695. rspamd_fuzzy_check_callback (struct rspamd_fuzzy_reply *result, void *ud)
  696. {
  697. struct fuzzy_session *session = ud;
  698. gboolean is_shingle = FALSE, __attribute__ ((unused)) encrypted = FALSE;
  699. struct rspamd_fuzzy_cmd *cmd = NULL;
  700. const struct rspamd_shingle *shingle = NULL;
  701. struct rspamd_shingle sgl_cpy;
  702. gint send_flags = 0;
  703. switch (session->cmd_type) {
  704. case CMD_ENCRYPTED_NORMAL:
  705. encrypted = TRUE;
  706. send_flags |= RSPAMD_FUZZY_REPLY_ENCRYPTED;
  707. /* Fallthrough */
  708. case CMD_NORMAL:
  709. cmd = &session->cmd.basic;
  710. break;
  711. case CMD_ENCRYPTED_SHINGLE:
  712. encrypted = TRUE;
  713. send_flags |= RSPAMD_FUZZY_REPLY_ENCRYPTED;
  714. /* Fallthrough */
  715. case CMD_SHINGLE:
  716. cmd = &session->cmd.basic;
  717. memcpy (&sgl_cpy, &session->cmd.sgl, sizeof (sgl_cpy));
  718. shingle = &sgl_cpy;
  719. is_shingle = TRUE;
  720. send_flags |= RSPAMD_FUZZY_REPLY_SHINGLE;
  721. break;
  722. }
  723. if (session->ctx->lua_post_handler_cbref != -1) {
  724. /* Start lua post handler */
  725. lua_State *L = session->ctx->cfg->lua_state;
  726. gint err_idx, ret;
  727. lua_pushcfunction (L, &rspamd_lua_traceback);
  728. err_idx = lua_gettop (L);
  729. /* Preallocate stack (small opt) */
  730. lua_checkstack (L, err_idx + 9);
  731. /* function */
  732. lua_rawgeti (L, LUA_REGISTRYINDEX, session->ctx->lua_post_handler_cbref);
  733. /* client IP */
  734. rspamd_lua_ip_push (L, session->addr);
  735. /* client command */
  736. lua_pushinteger (L, cmd->cmd);
  737. /* command value (push as rspamd_text) */
  738. (void)lua_new_text (L, result->digest, sizeof (result->digest), FALSE);
  739. /* is shingle */
  740. lua_pushboolean (L, is_shingle);
  741. /* result value */
  742. lua_pushinteger (L, result->v1.value);
  743. /* result probability */
  744. lua_pushnumber (L, result->v1.prob);
  745. /* result flag */
  746. lua_pushinteger (L, result->v1.flag);
  747. /* result timestamp */
  748. lua_pushinteger (L, result->ts);
  749. /* TODO: add additional data maybe (encryption, pubkey, etc) */
  750. rspamd_fuzzy_extensions_tolua (L, session);
  751. if ((ret = lua_pcall (L, 9, LUA_MULTRET, err_idx)) != 0) {
  752. msg_err ("call to lua_post_handler lua "
  753. "script failed (%d): %s", ret, lua_tostring (L, -1));
  754. }
  755. else {
  756. /* Return values order:
  757. * the first reply will be on err_idx + 1
  758. * if it is true, then we need to read the former ones:
  759. * 2-nd will be reply code
  760. * 3-rd will be probability (or 0.0 if missing)
  761. * 4-th value is flag (or default flag if missing)
  762. */
  763. ret = lua_toboolean (L, err_idx + 1);
  764. if (ret) {
  765. /* Artificial reply */
  766. result->v1.value = lua_tointeger (L, err_idx + 2);
  767. if (lua_isnumber (L, err_idx + 3)) {
  768. result->v1.prob = lua_tonumber (L, err_idx + 3);
  769. }
  770. else {
  771. result->v1.prob = 0.0f;
  772. }
  773. if (lua_isnumber (L, err_idx + 4)) {
  774. result->v1.flag = lua_tointeger (L, err_idx + 4);
  775. }
  776. lua_settop (L, 0);
  777. rspamd_fuzzy_make_reply (cmd, result, session, send_flags);
  778. REF_RELEASE (session);
  779. return;
  780. }
  781. }
  782. lua_settop (L, 0);
  783. }
  784. if (!isnan (session->ctx->delay) &&
  785. rspamd_match_radix_map_addr (session->ctx->delay_whitelist,
  786. session->addr) == NULL) {
  787. gdouble hash_age = rspamd_get_calendar_ticks () - result->ts;
  788. gdouble jittered_age = rspamd_time_jitter (session->ctx->delay,
  789. session->ctx->delay / 2.0);
  790. if (hash_age < jittered_age) {
  791. send_flags |= RSPAMD_FUZZY_REPLY_DELAY;
  792. }
  793. }
  794. /* Refresh hash if found with strong confidence */
  795. if (result->v1.prob > 0.9 && !session->ctx->read_only) {
  796. struct fuzzy_peer_cmd up_cmd;
  797. struct fuzzy_peer_request *up_req;
  798. if (session->worker->index == 0) {
  799. /* Just add to the queue */
  800. memset (&up_cmd, 0, sizeof (up_cmd));
  801. up_cmd.is_shingle = is_shingle;
  802. memcpy (up_cmd.cmd.normal.digest, result->digest,
  803. sizeof (up_cmd.cmd.normal.digest));
  804. up_cmd.cmd.normal.flag = result->v1.flag;
  805. up_cmd.cmd.normal.cmd = FUZZY_REFRESH;
  806. up_cmd.cmd.normal.shingles_count = cmd->shingles_count;
  807. if (is_shingle && shingle) {
  808. memcpy (&up_cmd.cmd.shingle.sgl, shingle,
  809. sizeof (up_cmd.cmd.shingle.sgl));
  810. }
  811. g_array_append_val (session->ctx->updates_pending, up_cmd);
  812. }
  813. else {
  814. /* We need to send request to the peer */
  815. up_req = g_malloc0 (sizeof (*up_req));
  816. up_req->cmd.is_shingle = is_shingle;
  817. memcpy (up_req->cmd.cmd.normal.digest, result->digest,
  818. sizeof (up_req->cmd.cmd.normal.digest));
  819. up_req->cmd.cmd.normal.flag = result->v1.flag;
  820. up_req->cmd.cmd.normal.cmd = FUZZY_REFRESH;
  821. up_req->cmd.cmd.normal.shingles_count = cmd->shingles_count;
  822. if (is_shingle && shingle) {
  823. memcpy (&up_req->cmd.cmd.shingle.sgl, shingle,
  824. sizeof (up_req->cmd.cmd.shingle.sgl));
  825. }
  826. if (!fuzzy_peer_try_send (session->ctx->peer_fd, up_req)) {
  827. up_req->io_ev.data = up_req;
  828. ev_io_init (&up_req->io_ev, fuzzy_peer_send_io,
  829. session->ctx->peer_fd, EV_WRITE);
  830. ev_io_start (session->ctx->event_loop, &up_req->io_ev);
  831. }
  832. else {
  833. g_free (up_req);
  834. }
  835. }
  836. }
  837. rspamd_fuzzy_make_reply (cmd, result, session, send_flags);
  838. REF_RELEASE (session);
  839. }
  840. static void
  841. rspamd_fuzzy_process_command (struct fuzzy_session *session)
  842. {
  843. gboolean is_shingle = FALSE, __attribute__ ((unused)) encrypted = FALSE;
  844. struct rspamd_fuzzy_cmd *cmd = NULL;
  845. struct rspamd_fuzzy_reply result;
  846. struct fuzzy_peer_cmd up_cmd;
  847. struct fuzzy_peer_request *up_req;
  848. struct fuzzy_key_stat *ip_stat = NULL;
  849. gchar hexbuf[rspamd_cryptobox_HASHBYTES * 2 + 1];
  850. rspamd_inet_addr_t *naddr;
  851. gpointer ptr;
  852. gsize up_len = 0;
  853. gint send_flags = 0;
  854. cmd = &session->cmd.basic;
  855. switch (session->cmd_type) {
  856. case CMD_NORMAL:
  857. up_len = sizeof (session->cmd.basic);
  858. break;
  859. case CMD_SHINGLE:
  860. up_len = sizeof (session->cmd);
  861. is_shingle = TRUE;
  862. send_flags |= RSPAMD_FUZZY_REPLY_SHINGLE;
  863. break;
  864. case CMD_ENCRYPTED_NORMAL:
  865. up_len = sizeof (session->cmd.basic);
  866. encrypted = TRUE;
  867. send_flags |= RSPAMD_FUZZY_REPLY_ENCRYPTED;
  868. break;
  869. case CMD_ENCRYPTED_SHINGLE:
  870. up_len = sizeof (session->cmd);
  871. encrypted = TRUE;
  872. is_shingle = TRUE;
  873. send_flags |= RSPAMD_FUZZY_REPLY_SHINGLE|RSPAMD_FUZZY_REPLY_ENCRYPTED;
  874. break;
  875. default:
  876. msg_err ("invalid command type: %d", session->cmd_type);
  877. return;
  878. }
  879. memset (&result, 0, sizeof (result));
  880. memcpy (result.digest, cmd->digest, sizeof (result.digest));
  881. result.v1.flag = cmd->flag;
  882. result.v1.tag = cmd->tag;
  883. if (session->ctx->lua_pre_handler_cbref != -1) {
  884. /* Start lua pre handler */
  885. lua_State *L = session->ctx->cfg->lua_state;
  886. gint err_idx, ret;
  887. lua_pushcfunction (L, &rspamd_lua_traceback);
  888. err_idx = lua_gettop (L);
  889. /* Preallocate stack (small opt) */
  890. lua_checkstack (L, err_idx + 5);
  891. /* function */
  892. lua_rawgeti (L, LUA_REGISTRYINDEX, session->ctx->lua_pre_handler_cbref);
  893. /* client IP */
  894. rspamd_lua_ip_push (L, session->addr);
  895. /* client command */
  896. lua_pushinteger (L, cmd->cmd);
  897. /* command value (push as rspamd_text) */
  898. (void)lua_new_text (L, cmd->digest, sizeof (cmd->digest), FALSE);
  899. /* is shingle */
  900. lua_pushboolean (L, is_shingle);
  901. /* TODO: add additional data maybe (encryption, pubkey, etc) */
  902. rspamd_fuzzy_extensions_tolua (L, session);
  903. if ((ret = lua_pcall (L, 5, LUA_MULTRET, err_idx)) != 0) {
  904. msg_err ("call to lua_pre_handler lua "
  905. "script failed (%d): %s", ret, lua_tostring (L, -1));
  906. }
  907. else {
  908. /* Return values order:
  909. * the first reply will be on err_idx + 1
  910. * if it is true, then we need to read the former ones:
  911. * 2-nd will be reply code
  912. * 3-rd will be probability (or 0.0 if missing)
  913. */
  914. ret = lua_toboolean (L, err_idx + 1);
  915. if (ret) {
  916. /* Artificial reply */
  917. result.v1.value = lua_tointeger (L, err_idx + 2);
  918. if (lua_isnumber (L, err_idx + 3)) {
  919. result.v1.prob = lua_tonumber (L, err_idx + 3);
  920. }
  921. else {
  922. result.v1.prob = 0.0f;
  923. }
  924. lua_settop (L, 0);
  925. rspamd_fuzzy_make_reply (cmd, &result, session, send_flags);
  926. return;
  927. }
  928. }
  929. lua_settop (L, 0);
  930. }
  931. if (G_UNLIKELY (cmd == NULL || up_len == 0)) {
  932. result.v1.value = 500;
  933. result.v1.prob = 0.0f;
  934. rspamd_fuzzy_make_reply (cmd, &result, session, send_flags);
  935. return;
  936. }
  937. if (session->ctx->encrypted_only && !encrypted) {
  938. /* Do not accept unencrypted commands */
  939. result.v1.value = 403;
  940. result.v1.prob = 0.0f;
  941. rspamd_fuzzy_make_reply (cmd, &result, session, send_flags);
  942. return;
  943. }
  944. if (session->key_stat) {
  945. ip_stat = rspamd_lru_hash_lookup (session->key_stat->last_ips,
  946. session->addr, -1);
  947. if (ip_stat == NULL) {
  948. naddr = rspamd_inet_address_copy (session->addr);
  949. ip_stat = g_malloc0 (sizeof (*ip_stat));
  950. REF_INIT_RETAIN (ip_stat, fuzzy_key_stat_dtor);
  951. rspamd_lru_hash_insert (session->key_stat->last_ips,
  952. naddr, ip_stat, -1, 0);
  953. }
  954. REF_RETAIN (ip_stat);
  955. session->ip_stat = ip_stat;
  956. }
  957. if (cmd->cmd == FUZZY_CHECK) {
  958. if (rspamd_fuzzy_check_client (session, FALSE)) {
  959. REF_RETAIN (session);
  960. rspamd_fuzzy_backend_check (session->ctx->backend, cmd,
  961. rspamd_fuzzy_check_callback, session);
  962. }
  963. else {
  964. result.v1.value = 403;
  965. result.v1.prob = 0.0f;
  966. result.v1.flag = 0;
  967. rspamd_fuzzy_make_reply (cmd, &result, session, send_flags);
  968. }
  969. }
  970. else if (cmd->cmd == FUZZY_STAT) {
  971. result.v1.prob = 1.0f;
  972. result.v1.value = 0;
  973. result.v1.flag = session->ctx->stat.fuzzy_hashes;
  974. rspamd_fuzzy_make_reply (cmd, &result, session, send_flags);
  975. }
  976. else {
  977. if (rspamd_fuzzy_check_client (session, TRUE)) {
  978. /* Check whitelist */
  979. if (session->ctx->skip_hashes && cmd->cmd == FUZZY_WRITE) {
  980. rspamd_encode_hex_buf (cmd->digest, sizeof (cmd->digest),
  981. hexbuf, sizeof (hexbuf) - 1);
  982. hexbuf[sizeof (hexbuf) - 1] = '\0';
  983. if (rspamd_match_hash_map (session->ctx->skip_hashes,
  984. hexbuf, sizeof (hexbuf) - 1)) {
  985. result.v1.value = 401;
  986. result.v1.prob = 0.0f;
  987. goto reply;
  988. }
  989. }
  990. if (session->worker->index == 0 || session->ctx->peer_fd == -1) {
  991. /* Just add to the queue */
  992. up_cmd.is_shingle = is_shingle;
  993. ptr = is_shingle ?
  994. (gpointer)&up_cmd.cmd.shingle :
  995. (gpointer)&up_cmd.cmd.normal;
  996. memcpy (ptr, cmd, up_len);
  997. g_array_append_val (session->ctx->updates_pending, up_cmd);
  998. }
  999. else {
  1000. /* We need to send request to the peer */
  1001. up_req = g_malloc0 (sizeof (*up_req));
  1002. up_req->cmd.is_shingle = is_shingle;
  1003. ptr = is_shingle ?
  1004. (gpointer)&up_req->cmd.cmd.shingle :
  1005. (gpointer)&up_req->cmd.cmd.normal;
  1006. memcpy (ptr, cmd, up_len);
  1007. if (!fuzzy_peer_try_send (session->ctx->peer_fd, up_req)) {
  1008. up_req->io_ev.data = up_req;
  1009. ev_io_init (&up_req->io_ev, fuzzy_peer_send_io,
  1010. session->ctx->peer_fd, EV_WRITE);
  1011. ev_io_start (session->ctx->event_loop, &up_req->io_ev);
  1012. }
  1013. else {
  1014. g_free (up_req);
  1015. }
  1016. }
  1017. result.v1.value = 0;
  1018. result.v1.prob = 1.0f;
  1019. }
  1020. else {
  1021. result.v1.value = 403;
  1022. result.v1.prob = 0.0f;
  1023. }
  1024. reply:
  1025. rspamd_fuzzy_make_reply (cmd, &result, session, send_flags);
  1026. }
  1027. }
  1028. static enum rspamd_fuzzy_epoch
  1029. rspamd_fuzzy_command_valid (struct rspamd_fuzzy_cmd *cmd, gint r)
  1030. {
  1031. enum rspamd_fuzzy_epoch ret = RSPAMD_FUZZY_EPOCH_MAX;
  1032. switch (cmd->version) {
  1033. case 4:
  1034. if (cmd->shingles_count > 0) {
  1035. if (r >= sizeof (struct rspamd_fuzzy_shingle_cmd)) {
  1036. ret = RSPAMD_FUZZY_EPOCH11;
  1037. }
  1038. }
  1039. else {
  1040. if (r >= sizeof (*cmd)) {
  1041. ret = RSPAMD_FUZZY_EPOCH11;
  1042. }
  1043. }
  1044. break;
  1045. case 3:
  1046. if (cmd->shingles_count > 0) {
  1047. if (r == sizeof (struct rspamd_fuzzy_shingle_cmd)) {
  1048. ret = RSPAMD_FUZZY_EPOCH10;
  1049. }
  1050. }
  1051. else {
  1052. if (r == sizeof (*cmd)) {
  1053. ret = RSPAMD_FUZZY_EPOCH10;
  1054. }
  1055. }
  1056. break;
  1057. case 2:
  1058. /*
  1059. * rspamd 0.8 has slightly different tokenizer then it might be not
  1060. * 100% compatible
  1061. */
  1062. if (cmd->shingles_count > 0) {
  1063. if (r == sizeof (struct rspamd_fuzzy_shingle_cmd)) {
  1064. ret = RSPAMD_FUZZY_EPOCH8;
  1065. }
  1066. }
  1067. else {
  1068. ret = RSPAMD_FUZZY_EPOCH8;
  1069. }
  1070. break;
  1071. default:
  1072. break;
  1073. }
  1074. return ret;
  1075. }
  1076. static gboolean
  1077. rspamd_fuzzy_decrypt_command (struct fuzzy_session *s, guchar *buf, gsize buflen)
  1078. {
  1079. struct rspamd_fuzzy_encrypted_req_hdr hdr;
  1080. struct rspamd_cryptobox_pubkey *rk;
  1081. struct fuzzy_key *key;
  1082. if (s->ctx->default_key == NULL) {
  1083. msg_warn ("received encrypted request when encryption is not enabled");
  1084. return FALSE;
  1085. }
  1086. if (buflen < sizeof (hdr)) {
  1087. msg_warn ("XXX: should not be reached");
  1088. return FALSE;
  1089. }
  1090. memcpy (&hdr, buf, sizeof (hdr));
  1091. buf += sizeof (hdr);
  1092. buflen -= sizeof (hdr);
  1093. /* Try to find the desired key */
  1094. key = g_hash_table_lookup (s->ctx->keys, hdr.key_id);
  1095. if (key == NULL) {
  1096. /* Unknown key, assume default one */
  1097. key = s->ctx->default_key;
  1098. }
  1099. s->key_stat = key->stat;
  1100. /* Now process keypair */
  1101. rk = rspamd_pubkey_from_bin (hdr.pubkey, sizeof (hdr.pubkey),
  1102. RSPAMD_KEYPAIR_KEX, RSPAMD_CRYPTOBOX_MODE_25519);
  1103. if (rk == NULL) {
  1104. msg_err ("bad key");
  1105. return FALSE;
  1106. }
  1107. rspamd_keypair_cache_process (s->ctx->keypair_cache, key->key, rk);
  1108. /* Now decrypt request */
  1109. if (!rspamd_cryptobox_decrypt_nm_inplace (buf, buflen, hdr.nonce,
  1110. rspamd_pubkey_get_nm (rk, key->key),
  1111. hdr.mac, RSPAMD_CRYPTOBOX_MODE_25519)) {
  1112. msg_err ("decryption failed");
  1113. rspamd_pubkey_unref (rk);
  1114. return FALSE;
  1115. }
  1116. memcpy (s->nm, rspamd_pubkey_get_nm (rk, key->key), sizeof (s->nm));
  1117. rspamd_pubkey_unref (rk);
  1118. return TRUE;
  1119. }
  1120. static gboolean
  1121. rspamd_fuzzy_extensions_from_wire (struct fuzzy_session *s, guchar *buf, gsize buflen)
  1122. {
  1123. struct rspamd_fuzzy_cmd_extension *ext, *prev_ext;
  1124. guchar *storage, *p = buf, *end = buf + buflen;
  1125. gsize st_len = 0, n_ext = 0;
  1126. /* Read number of extensions to allocate array */
  1127. while (p < end) {
  1128. guchar cmd = *p++;
  1129. if (p < end) {
  1130. if (cmd == RSPAMD_FUZZY_EXT_SOURCE_DOMAIN) {
  1131. /* Next byte is buf length */
  1132. guchar dom_len = *p++;
  1133. if (dom_len <= (end - p)) {
  1134. st_len += dom_len;
  1135. n_ext ++;
  1136. }
  1137. else {
  1138. /* Truncation */
  1139. return FALSE;
  1140. }
  1141. p += dom_len;
  1142. }
  1143. else if (cmd == RSPAMD_FUZZY_EXT_SOURCE_IP4) {
  1144. if (end - p >= sizeof (in_addr_t)) {
  1145. n_ext ++;
  1146. st_len += sizeof (in_addr_t);
  1147. }
  1148. else {
  1149. /* Truncation */
  1150. return FALSE;
  1151. }
  1152. p += sizeof (in_addr_t);
  1153. }
  1154. else if (cmd == RSPAMD_FUZZY_EXT_SOURCE_IP6) {
  1155. if (end - p >= sizeof (struct in6_addr)) {
  1156. n_ext ++;
  1157. st_len += sizeof (struct in6_addr);
  1158. }
  1159. else {
  1160. /* Truncation */
  1161. return FALSE;
  1162. }
  1163. p += sizeof (struct in6_addr);
  1164. }
  1165. else {
  1166. /* Invalid command */
  1167. return FALSE;
  1168. }
  1169. }
  1170. else {
  1171. /* Truncated extension */
  1172. return FALSE;
  1173. }
  1174. }
  1175. if (n_ext > 0) {
  1176. p = buf;
  1177. /*
  1178. * Memory layout: n_ext of struct rspamd_fuzzy_cmd_extension
  1179. * payload for each extension in a continious data segment
  1180. */
  1181. storage = g_malloc (n_ext * sizeof (struct rspamd_fuzzy_cmd_extension) +
  1182. st_len);
  1183. guchar *data_buf = storage +
  1184. n_ext * sizeof (struct rspamd_fuzzy_cmd_extension);
  1185. ext = (struct rspamd_fuzzy_cmd_extension *)storage;
  1186. /* All validation has been done, so we can just go further */
  1187. while (p < end) {
  1188. prev_ext = ext;
  1189. guchar cmd = *p++;
  1190. if (cmd == RSPAMD_FUZZY_EXT_SOURCE_DOMAIN) {
  1191. /* Next byte is buf length */
  1192. guchar dom_len = *p++;
  1193. guchar *dest = data_buf;
  1194. ext->ext = RSPAMD_FUZZY_EXT_SOURCE_DOMAIN;
  1195. ext->next = ext + 1;
  1196. ext->length = dom_len;
  1197. ext->payload = dest;
  1198. memcpy (dest, p, dom_len);
  1199. p += dom_len;
  1200. data_buf += dom_len;
  1201. ext = ext->next;
  1202. }
  1203. else if (cmd == RSPAMD_FUZZY_EXT_SOURCE_IP4) {
  1204. guchar *dest = data_buf;
  1205. ext->ext = RSPAMD_FUZZY_EXT_SOURCE_IP4;
  1206. ext->next = ext + 1;
  1207. ext->length = sizeof (in_addr_t);
  1208. ext->payload = dest;
  1209. memcpy (dest, p, sizeof (in_addr_t));
  1210. p += sizeof (in_addr_t);
  1211. data_buf += sizeof (in_addr_t);
  1212. ext = ext->next;
  1213. }
  1214. else if (cmd == RSPAMD_FUZZY_EXT_SOURCE_IP6) {
  1215. guchar *dest = data_buf;
  1216. ext->ext = RSPAMD_FUZZY_EXT_SOURCE_IP6;
  1217. ext->next = ext + 1;
  1218. ext->length = sizeof (struct in6_addr);
  1219. ext->payload = dest;
  1220. memcpy (dest, p, sizeof (struct in6_addr));
  1221. p += sizeof (struct in6_addr);
  1222. data_buf += sizeof (struct in6_addr);
  1223. ext = ext->next;
  1224. }
  1225. else {
  1226. g_assert_not_reached ();
  1227. }
  1228. }
  1229. /* Last next should be NULL */
  1230. prev_ext->next = NULL;
  1231. /* Rewind to the begin */
  1232. ext = (struct rspamd_fuzzy_cmd_extension *)storage;
  1233. s->extensions = ext;
  1234. }
  1235. return TRUE;
  1236. }
  1237. static gboolean
  1238. rspamd_fuzzy_cmd_from_wire (guchar *buf, guint buflen, struct fuzzy_session *s)
  1239. {
  1240. enum rspamd_fuzzy_epoch epoch;
  1241. gboolean encrypted = FALSE;
  1242. if (buflen < sizeof (struct rspamd_fuzzy_cmd)) {
  1243. msg_debug ("truncated fuzzy command of size %d received", buflen);
  1244. return FALSE;
  1245. }
  1246. /* Now check encryption */
  1247. if (buflen >= sizeof (struct rspamd_fuzzy_encrypted_cmd)) {
  1248. if (memcmp (buf, fuzzy_encrypted_magic, sizeof (fuzzy_encrypted_magic)) == 0) {
  1249. /* Encrypted command */
  1250. encrypted = TRUE;
  1251. }
  1252. }
  1253. if (encrypted) {
  1254. /* Decrypt first */
  1255. if (!rspamd_fuzzy_decrypt_command (s, buf, buflen)) {
  1256. return FALSE;
  1257. }
  1258. else {
  1259. /*
  1260. * Advance buffer to skip encrypted header.
  1261. * Note that after rspamd_fuzzy_decrypt_command buf is unencrypted
  1262. */
  1263. buf += sizeof (struct rspamd_fuzzy_encrypted_req_hdr);
  1264. buflen -= sizeof (struct rspamd_fuzzy_encrypted_req_hdr);
  1265. }
  1266. }
  1267. /* Fill the normal command */
  1268. if (buflen < sizeof (s->cmd.basic)) {
  1269. msg_debug ("truncated normal fuzzy command of size %d received", buflen);
  1270. return FALSE;
  1271. }
  1272. memcpy (&s->cmd.basic, buf, sizeof (s->cmd.basic));
  1273. epoch = rspamd_fuzzy_command_valid (&s->cmd.basic, buflen);
  1274. if (epoch == RSPAMD_FUZZY_EPOCH_MAX) {
  1275. msg_debug ("invalid fuzzy command of size %d received", buflen);
  1276. return FALSE;
  1277. }
  1278. s->epoch = epoch;
  1279. /* Advance buf */
  1280. buf += sizeof (s->cmd.basic);
  1281. buflen -= sizeof (s->cmd.basic);
  1282. if (s->cmd.basic.shingles_count > 0) {
  1283. if (buflen >= sizeof (s->cmd.sgl)) {
  1284. /* Copy the shingles part */
  1285. memcpy (&s->cmd.sgl, buf, sizeof (s->cmd.sgl));
  1286. }
  1287. else {
  1288. /* Truncated stuff */
  1289. msg_debug ("truncated fuzzy shingles command of size %d received", buflen);
  1290. return FALSE;
  1291. }
  1292. buf += sizeof (s->cmd.sgl);
  1293. buflen -= sizeof (s->cmd.sgl);
  1294. if (encrypted) {
  1295. s->cmd_type = CMD_ENCRYPTED_SHINGLE;
  1296. }
  1297. else {
  1298. s->cmd_type = CMD_SHINGLE;
  1299. }
  1300. }
  1301. else {
  1302. if (encrypted) {
  1303. s->cmd_type = CMD_ENCRYPTED_NORMAL;
  1304. }
  1305. else {
  1306. s->cmd_type = CMD_NORMAL;
  1307. }
  1308. }
  1309. if (buflen > 0) {
  1310. /* Process possible extensions */
  1311. if (!rspamd_fuzzy_extensions_from_wire (s, buf, buflen)) {
  1312. msg_debug ("truncated fuzzy shingles command of size %d received", buflen);
  1313. return FALSE;
  1314. }
  1315. }
  1316. return TRUE;
  1317. }
  1318. static void
  1319. fuzzy_session_destroy (gpointer d)
  1320. {
  1321. struct fuzzy_session *session = d;
  1322. rspamd_inet_address_free (session->addr);
  1323. rspamd_explicit_memzero (session->nm, sizeof (session->nm));
  1324. session->worker->nconns--;
  1325. if (session->ip_stat) {
  1326. REF_RELEASE (session->ip_stat);
  1327. }
  1328. if (session->extensions) {
  1329. g_free (session->extensions);
  1330. }
  1331. g_free (session);
  1332. }
  1333. #define FUZZY_INPUT_BUFLEN 1024
  1334. #ifdef HAVE_RECVMMSG
  1335. #define MSGVEC_LEN 16
  1336. #else
  1337. #define MSGVEC_LEN 1
  1338. #endif
  1339. /*
  1340. * Accept new connection and construct task
  1341. */
  1342. static void
  1343. accept_fuzzy_socket (EV_P_ ev_io *w, int revents)
  1344. {
  1345. struct rspamd_worker *worker = (struct rspamd_worker *)w->data;
  1346. struct fuzzy_session *session;
  1347. gssize r, msg_len;
  1348. guint64 *nerrors;
  1349. struct iovec iovs[MSGVEC_LEN];
  1350. guint8 bufs[MSGVEC_LEN][FUZZY_INPUT_BUFLEN];
  1351. struct sockaddr_storage peer_sa[MSGVEC_LEN];
  1352. socklen_t salen = sizeof (peer_sa[0]);
  1353. #ifdef HAVE_RECVMMSG
  1354. #define MSG_FIELD(msg, field) msg.msg_hdr.field
  1355. struct mmsghdr msg[MSGVEC_LEN];
  1356. #else
  1357. #define MSG_FIELD(msg, field) msg.field
  1358. struct msghdr msg[MSGVEC_LEN];
  1359. #endif
  1360. memset (msg, 0, sizeof (*msg) * MSGVEC_LEN);
  1361. /* Prepare messages to receive */
  1362. for (int i = 0; i < MSGVEC_LEN; i ++) {
  1363. /* Prepare msghdr structs */
  1364. iovs[i].iov_base = bufs[i];
  1365. iovs[i].iov_len = sizeof (bufs[i]);
  1366. MSG_FIELD(msg[i], msg_name) = (void *)&peer_sa[i];
  1367. MSG_FIELD(msg[i], msg_namelen) = salen;
  1368. MSG_FIELD(msg[i], msg_iov) = &iovs[i];
  1369. MSG_FIELD(msg[i], msg_iovlen) = 1;
  1370. }
  1371. /* Got some data */
  1372. if (revents == EV_READ) {
  1373. for (;;) {
  1374. #ifdef HAVE_RECVMMSG
  1375. r = recvmmsg (w->fd, msg, MSGVEC_LEN, 0, NULL);
  1376. #else
  1377. r = recvmsg (w->fd, msg, 0);
  1378. #endif
  1379. if (r == -1) {
  1380. if (errno == EINTR) {
  1381. continue;
  1382. }
  1383. else if (errno == EAGAIN || errno == EWOULDBLOCK) {
  1384. return;
  1385. }
  1386. msg_err ("got error while reading from socket: %d, %s",
  1387. errno,
  1388. strerror (errno));
  1389. return;
  1390. }
  1391. #ifndef HAVE_RECVMMSG
  1392. msg_len = r; /* Save real length in bytes here */
  1393. r = 1; /* Assume that we have received a single message */
  1394. #endif
  1395. for (int i = 0; i < r; i ++) {
  1396. session = g_malloc0 (sizeof (*session));
  1397. REF_INIT_RETAIN (session, fuzzy_session_destroy);
  1398. session->worker = worker;
  1399. session->fd = w->fd;
  1400. session->ctx = worker->ctx;
  1401. session->time = (guint64) time (NULL);
  1402. session->addr = rspamd_inet_address_from_sa (MSG_FIELD(msg[i], msg_name),
  1403. MSG_FIELD(msg[i], msg_namelen));
  1404. worker->nconns++;
  1405. /* Each message can have its length in case of recvmmsg */
  1406. #ifdef HAVE_RECVMMSG
  1407. msg_len = msg[i].msg_len;
  1408. #endif
  1409. if (rspamd_fuzzy_cmd_from_wire (iovs[i].iov_base,
  1410. msg_len, session)) {
  1411. /* Check shingles count sanity */
  1412. rspamd_fuzzy_process_command (session);
  1413. }
  1414. else {
  1415. /* Discard input */
  1416. session->ctx->stat.invalid_requests ++;
  1417. msg_debug ("invalid fuzzy command of size %z received", r);
  1418. nerrors = rspamd_lru_hash_lookup (session->ctx->errors_ips,
  1419. session->addr, -1);
  1420. if (nerrors == NULL) {
  1421. nerrors = g_malloc (sizeof (*nerrors));
  1422. *nerrors = 1;
  1423. rspamd_lru_hash_insert (session->ctx->errors_ips,
  1424. rspamd_inet_address_copy (session->addr),
  1425. nerrors, -1, -1);
  1426. }
  1427. else {
  1428. *nerrors = *nerrors + 1;
  1429. }
  1430. }
  1431. REF_RELEASE (session);
  1432. }
  1433. #ifdef HAVE_RECVMMSG
  1434. /* Stop reading as we are using recvmmsg instead of recvmsg */
  1435. break;
  1436. #endif
  1437. }
  1438. }
  1439. }
  1440. static gboolean
  1441. rspamd_fuzzy_storage_periodic_callback (void *ud)
  1442. {
  1443. struct rspamd_fuzzy_storage_ctx *ctx = ud;
  1444. if (ctx->updates_pending->len > 0) {
  1445. rspamd_fuzzy_process_updates_queue (ctx, local_db_name, FALSE);
  1446. return TRUE;
  1447. }
  1448. return FALSE;
  1449. }
  1450. static gboolean
  1451. rspamd_fuzzy_storage_sync (struct rspamd_main *rspamd_main,
  1452. struct rspamd_worker *worker, gint fd,
  1453. gint attached_fd,
  1454. struct rspamd_control_command *cmd,
  1455. gpointer ud)
  1456. {
  1457. struct rspamd_fuzzy_storage_ctx *ctx = ud;
  1458. struct rspamd_control_reply rep;
  1459. rep.reply.fuzzy_sync.status = 0;
  1460. if (ctx->backend && worker->index == 0) {
  1461. rspamd_fuzzy_process_updates_queue (ctx, local_db_name, FALSE);
  1462. rspamd_fuzzy_backend_start_update (ctx->backend, ctx->sync_timeout,
  1463. rspamd_fuzzy_storage_periodic_callback, ctx);
  1464. }
  1465. if (write (fd, &rep, sizeof (rep)) != sizeof (rep)) {
  1466. msg_err ("cannot write reply to the control socket: %s",
  1467. strerror (errno));
  1468. }
  1469. return TRUE;
  1470. }
  1471. static gboolean
  1472. rspamd_fuzzy_storage_reload (struct rspamd_main *rspamd_main,
  1473. struct rspamd_worker *worker, gint fd,
  1474. gint attached_fd,
  1475. struct rspamd_control_command *cmd,
  1476. gpointer ud)
  1477. {
  1478. struct rspamd_fuzzy_storage_ctx *ctx = ud;
  1479. GError *err = NULL;
  1480. struct rspamd_control_reply rep;
  1481. msg_info ("reloading fuzzy storage after receiving reload command");
  1482. if (ctx->backend) {
  1483. /* Close backend and reopen it one more time */
  1484. rspamd_fuzzy_backend_close (ctx->backend);
  1485. }
  1486. memset (&rep, 0, sizeof (rep));
  1487. rep.type = RSPAMD_CONTROL_RELOAD;
  1488. if ((ctx->backend = rspamd_fuzzy_backend_create (ctx->event_loop,
  1489. worker->cf->options, rspamd_main->cfg,
  1490. &err)) == NULL) {
  1491. msg_err ("cannot open backend after reload: %e", err);
  1492. g_error_free (err);
  1493. rep.reply.reload.status = err->code;
  1494. }
  1495. else {
  1496. rep.reply.reload.status = 0;
  1497. }
  1498. if (ctx->backend && worker->index == 0) {
  1499. rspamd_fuzzy_backend_start_update (ctx->backend, ctx->sync_timeout,
  1500. rspamd_fuzzy_storage_periodic_callback, ctx);
  1501. }
  1502. if (write (fd, &rep, sizeof (rep)) != sizeof (rep)) {
  1503. msg_err ("cannot write reply to the control socket: %s",
  1504. strerror (errno));
  1505. }
  1506. return TRUE;
  1507. }
  1508. static ucl_object_t *
  1509. rspamd_fuzzy_storage_stat_key (struct fuzzy_key_stat *key_stat)
  1510. {
  1511. ucl_object_t *res;
  1512. res = ucl_object_typed_new (UCL_OBJECT);
  1513. ucl_object_insert_key (res, ucl_object_fromint (key_stat->checked),
  1514. "checked", 0, false);
  1515. ucl_object_insert_key (res, ucl_object_fromint (key_stat->matched),
  1516. "matched", 0, false);
  1517. ucl_object_insert_key (res, ucl_object_fromint (key_stat->added),
  1518. "added", 0, false);
  1519. ucl_object_insert_key (res, ucl_object_fromint (key_stat->deleted),
  1520. "deleted", 0, false);
  1521. ucl_object_insert_key (res, ucl_object_fromint (key_stat->errors),
  1522. "errors", 0, false);
  1523. return res;
  1524. }
  1525. static ucl_object_t *
  1526. rspamd_fuzzy_stat_to_ucl (struct rspamd_fuzzy_storage_ctx *ctx, gboolean ip_stat)
  1527. {
  1528. struct fuzzy_key_stat *key_stat;
  1529. GHashTableIter it;
  1530. struct fuzzy_key *key;
  1531. ucl_object_t *obj, *keys_obj, *elt, *ip_elt, *ip_cur;
  1532. gpointer k, v;
  1533. gint i;
  1534. gchar keyname[17];
  1535. obj = ucl_object_typed_new (UCL_OBJECT);
  1536. keys_obj = ucl_object_typed_new (UCL_OBJECT);
  1537. g_hash_table_iter_init (&it, ctx->keys);
  1538. while (g_hash_table_iter_next (&it, &k, &v)) {
  1539. key = v;
  1540. key_stat = key->stat;
  1541. if (key_stat) {
  1542. rspamd_snprintf (keyname, sizeof (keyname), "%8bs", k);
  1543. elt = rspamd_fuzzy_storage_stat_key (key_stat);
  1544. if (key_stat->last_ips && ip_stat) {
  1545. i = 0;
  1546. ip_elt = ucl_object_typed_new (UCL_OBJECT);
  1547. while ((i = rspamd_lru_hash_foreach (key_stat->last_ips,
  1548. i, &k, &v)) != -1) {
  1549. ip_cur = rspamd_fuzzy_storage_stat_key (v);
  1550. ucl_object_insert_key (ip_elt, ip_cur,
  1551. rspamd_inet_address_to_string (k), 0, true);
  1552. }
  1553. ucl_object_insert_key (elt, ip_elt, "ips", 0, false);
  1554. }
  1555. ucl_object_insert_key (keys_obj, elt, keyname, 0, true);
  1556. }
  1557. }
  1558. ucl_object_insert_key (obj, keys_obj, "keys", 0, false);
  1559. /* Now generic stats */
  1560. ucl_object_insert_key (obj,
  1561. ucl_object_fromint (ctx->stat.fuzzy_hashes),
  1562. "fuzzy_stored",
  1563. 0,
  1564. false);
  1565. ucl_object_insert_key (obj,
  1566. ucl_object_fromint (ctx->stat.fuzzy_hashes_expired),
  1567. "fuzzy_expired",
  1568. 0,
  1569. false);
  1570. ucl_object_insert_key (obj,
  1571. ucl_object_fromint (ctx->stat.invalid_requests),
  1572. "invalid_requests",
  1573. 0,
  1574. false);
  1575. ucl_object_insert_key (obj,
  1576. ucl_object_fromint (ctx->stat.delayed_hashes),
  1577. "delayed_hashes",
  1578. 0,
  1579. false);
  1580. if (ctx->errors_ips && ip_stat) {
  1581. i = 0;
  1582. ip_elt = ucl_object_typed_new (UCL_OBJECT);
  1583. while ((i = rspamd_lru_hash_foreach (ctx->errors_ips, i, &k, &v)) != -1) {
  1584. ucl_object_insert_key (ip_elt,
  1585. ucl_object_fromint (*(guint64 *)v),
  1586. rspamd_inet_address_to_string (k), 0, true);
  1587. }
  1588. ucl_object_insert_key (obj,
  1589. ip_elt,
  1590. "errors_ips",
  1591. 0,
  1592. false);
  1593. }
  1594. /* Checked by epoch */
  1595. elt = ucl_object_typed_new (UCL_ARRAY);
  1596. for (i = RSPAMD_FUZZY_EPOCH6; i < RSPAMD_FUZZY_EPOCH_MAX; i++) {
  1597. ucl_array_append (elt,
  1598. ucl_object_fromint (ctx->stat.fuzzy_hashes_checked[i]));
  1599. }
  1600. ucl_object_insert_key (obj, elt, "fuzzy_checked", 0, false);
  1601. /* Shingles by epoch */
  1602. elt = ucl_object_typed_new (UCL_ARRAY);
  1603. for (i = RSPAMD_FUZZY_EPOCH6; i < RSPAMD_FUZZY_EPOCH_MAX; i++) {
  1604. ucl_array_append (elt,
  1605. ucl_object_fromint (ctx->stat.fuzzy_shingles_checked[i]));
  1606. }
  1607. ucl_object_insert_key (obj, elt, "fuzzy_shingles", 0, false);
  1608. /* Matched by epoch */
  1609. elt = ucl_object_typed_new (UCL_ARRAY);
  1610. for (i = RSPAMD_FUZZY_EPOCH6; i < RSPAMD_FUZZY_EPOCH_MAX; i++) {
  1611. ucl_array_append (elt,
  1612. ucl_object_fromint (ctx->stat.fuzzy_hashes_found[i]));
  1613. }
  1614. ucl_object_insert_key (obj, elt, "fuzzy_found", 0, false);
  1615. return obj;
  1616. }
  1617. static int
  1618. lua_fuzzy_add_pre_handler (lua_State *L)
  1619. {
  1620. struct rspamd_worker *wrk = *(struct rspamd_worker **)
  1621. rspamd_lua_check_udata (L, 1, "rspamd{worker}");
  1622. struct rspamd_fuzzy_storage_ctx *ctx;
  1623. if (wrk && lua_isfunction (L, 2)) {
  1624. ctx = (struct rspamd_fuzzy_storage_ctx *)wrk->ctx;
  1625. if (ctx->lua_pre_handler_cbref != -1) {
  1626. /* Should not happen */
  1627. luaL_unref (L, LUA_REGISTRYINDEX, ctx->lua_pre_handler_cbref);
  1628. }
  1629. lua_pushvalue (L, 2);
  1630. ctx->lua_pre_handler_cbref = luaL_ref (L, LUA_REGISTRYINDEX);
  1631. }
  1632. else {
  1633. return luaL_error (L, "invalid arguments, worker + function are expected");
  1634. }
  1635. return 0;
  1636. }
  1637. static int
  1638. lua_fuzzy_add_post_handler (lua_State *L)
  1639. {
  1640. struct rspamd_worker *wrk = *(struct rspamd_worker **)
  1641. rspamd_lua_check_udata (L, 1, "rspamd{worker}");
  1642. struct rspamd_fuzzy_storage_ctx *ctx;
  1643. if (wrk && lua_isfunction (L, 2)) {
  1644. ctx = (struct rspamd_fuzzy_storage_ctx *)wrk->ctx;
  1645. if (ctx->lua_post_handler_cbref != -1) {
  1646. /* Should not happen */
  1647. luaL_unref (L, LUA_REGISTRYINDEX, ctx->lua_post_handler_cbref);
  1648. }
  1649. lua_pushvalue (L, 2);
  1650. ctx->lua_post_handler_cbref = luaL_ref (L, LUA_REGISTRYINDEX);
  1651. }
  1652. else {
  1653. return luaL_error (L, "invalid arguments, worker + function are expected");
  1654. }
  1655. return 0;
  1656. }
  1657. static gboolean
  1658. rspamd_fuzzy_storage_stat (struct rspamd_main *rspamd_main,
  1659. struct rspamd_worker *worker, gint fd,
  1660. gint attached_fd,
  1661. struct rspamd_control_command *cmd,
  1662. gpointer ud)
  1663. {
  1664. struct rspamd_fuzzy_storage_ctx *ctx = ud;
  1665. struct rspamd_control_reply rep;
  1666. ucl_object_t *obj;
  1667. struct ucl_emitter_functions *emit_subr;
  1668. guchar fdspace[CMSG_SPACE(sizeof (int))];
  1669. struct iovec iov;
  1670. struct msghdr msg;
  1671. struct cmsghdr *cmsg;
  1672. gint outfd = -1;
  1673. gchar tmppath[PATH_MAX];
  1674. memset (&rep, 0, sizeof (rep));
  1675. rep.type = RSPAMD_CONTROL_FUZZY_STAT;
  1676. rspamd_snprintf (tmppath, sizeof (tmppath), "%s%c%s-XXXXXXXXXX",
  1677. rspamd_main->cfg->temp_dir, G_DIR_SEPARATOR, "fuzzy-stat");
  1678. if ((outfd = mkstemp (tmppath)) == -1) {
  1679. rep.reply.fuzzy_stat.status = errno;
  1680. msg_info_main ("cannot make temporary stat file for fuzzy stat: %s",
  1681. strerror (errno));
  1682. }
  1683. else {
  1684. rep.reply.fuzzy_stat.status = 0;
  1685. memcpy (rep.reply.fuzzy_stat.storage_id,
  1686. rspamd_fuzzy_backend_id (ctx->backend),
  1687. sizeof (rep.reply.fuzzy_stat.storage_id));
  1688. obj = rspamd_fuzzy_stat_to_ucl (ctx, TRUE);
  1689. emit_subr = ucl_object_emit_fd_funcs (outfd);
  1690. ucl_object_emit_full (obj, UCL_EMIT_JSON_COMPACT, emit_subr, NULL);
  1691. ucl_object_emit_funcs_free (emit_subr);
  1692. ucl_object_unref (obj);
  1693. /* Rewind output file */
  1694. close (outfd);
  1695. outfd = open (tmppath, O_RDONLY);
  1696. unlink (tmppath);
  1697. }
  1698. /* Now we can send outfd and status message */
  1699. memset (&msg, 0, sizeof (msg));
  1700. /* Attach fd to the message */
  1701. if (outfd != -1) {
  1702. memset (fdspace, 0, sizeof (fdspace));
  1703. msg.msg_control = fdspace;
  1704. msg.msg_controllen = sizeof (fdspace);
  1705. cmsg = CMSG_FIRSTHDR (&msg);
  1706. if (cmsg) {
  1707. cmsg->cmsg_level = SOL_SOCKET;
  1708. cmsg->cmsg_type = SCM_RIGHTS;
  1709. cmsg->cmsg_len = CMSG_LEN (sizeof (int));
  1710. memcpy (CMSG_DATA (cmsg), &outfd, sizeof (int));
  1711. }
  1712. }
  1713. iov.iov_base = &rep;
  1714. iov.iov_len = sizeof (rep);
  1715. msg.msg_iov = &iov;
  1716. msg.msg_iovlen = 1;
  1717. if (sendmsg (fd, &msg, 0) == -1) {
  1718. msg_err_main ("cannot send fuzzy stat: %s", strerror (errno));
  1719. }
  1720. if (outfd != -1) {
  1721. close (outfd);
  1722. }
  1723. return TRUE;
  1724. }
  1725. static gboolean
  1726. fuzzy_parse_keypair (rspamd_mempool_t *pool,
  1727. const ucl_object_t *obj,
  1728. gpointer ud,
  1729. struct rspamd_rcl_section *section,
  1730. GError **err)
  1731. {
  1732. struct rspamd_rcl_struct_parser *pd = ud;
  1733. struct rspamd_fuzzy_storage_ctx *ctx;
  1734. struct rspamd_cryptobox_keypair *kp;
  1735. struct fuzzy_key_stat *keystat;
  1736. struct fuzzy_key *key;
  1737. const ucl_object_t *cur;
  1738. const guchar *pk;
  1739. ucl_object_iter_t it = NULL;
  1740. gboolean ret;
  1741. ctx = pd->user_struct;
  1742. pd->offset = G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, default_keypair);
  1743. /*
  1744. * Single key
  1745. */
  1746. if (ucl_object_type (obj) == UCL_STRING || ucl_object_type (obj)
  1747. == UCL_OBJECT) {
  1748. ret = rspamd_rcl_parse_struct_keypair (pool, obj, pd, section, err);
  1749. if (!ret) {
  1750. return ret;
  1751. }
  1752. /* Insert key to the hash table */
  1753. kp = ctx->default_keypair;
  1754. if (kp == NULL) {
  1755. return FALSE;
  1756. }
  1757. if (rspamd_keypair_alg (kp) != RSPAMD_CRYPTOBOX_MODE_25519 ||
  1758. rspamd_keypair_type (kp) != RSPAMD_KEYPAIR_KEX) {
  1759. return FALSE;
  1760. }
  1761. key = g_malloc0 (sizeof (*key));
  1762. key->key = kp;
  1763. keystat = g_malloc0 (sizeof (*keystat));
  1764. REF_INIT_RETAIN (keystat, fuzzy_key_stat_dtor);
  1765. /* Hash of ip -> fuzzy_key_stat */
  1766. keystat->last_ips = rspamd_lru_hash_new_full (1024,
  1767. (GDestroyNotify) rspamd_inet_address_free,
  1768. fuzzy_key_stat_unref,
  1769. rspamd_inet_address_hash, rspamd_inet_address_equal);
  1770. key->stat = keystat;
  1771. pk = rspamd_keypair_component (kp, RSPAMD_KEYPAIR_COMPONENT_PK,
  1772. NULL);
  1773. g_hash_table_insert (ctx->keys, (gpointer)pk, key);
  1774. ctx->default_key = key;
  1775. msg_info_pool ("loaded keypair %*xs", 8, pk);
  1776. }
  1777. else if (ucl_object_type (obj) == UCL_ARRAY) {
  1778. while ((cur = ucl_object_iterate (obj, &it, true)) != NULL) {
  1779. if (!fuzzy_parse_keypair (pool, cur, pd, section, err)) {
  1780. msg_err_pool ("cannot parse keypair");
  1781. }
  1782. }
  1783. }
  1784. return TRUE;
  1785. }
  1786. static guint
  1787. fuzzy_kp_hash (gconstpointer p)
  1788. {
  1789. return *(guint *)p;
  1790. }
  1791. static gboolean
  1792. fuzzy_kp_equal (gconstpointer a, gconstpointer b)
  1793. {
  1794. const guchar *pa = a, *pb = b;
  1795. return (memcmp (pa, pb, RSPAMD_FUZZY_KEYLEN) == 0);
  1796. }
  1797. gpointer
  1798. init_fuzzy (struct rspamd_config *cfg)
  1799. {
  1800. struct rspamd_fuzzy_storage_ctx *ctx;
  1801. GQuark type;
  1802. type = g_quark_try_string ("fuzzy");
  1803. ctx = rspamd_mempool_alloc0 (cfg->cfg_pool,
  1804. sizeof (struct rspamd_fuzzy_storage_ctx));
  1805. ctx->magic = rspamd_fuzzy_storage_magic;
  1806. ctx->sync_timeout = DEFAULT_SYNC_TIMEOUT;
  1807. ctx->keypair_cache_size = DEFAULT_KEYPAIR_CACHE_SIZE;
  1808. ctx->lua_pre_handler_cbref = -1;
  1809. ctx->lua_post_handler_cbref = -1;
  1810. ctx->keys = g_hash_table_new_full (fuzzy_kp_hash, fuzzy_kp_equal,
  1811. NULL, fuzzy_key_dtor);
  1812. rspamd_mempool_add_destructor (cfg->cfg_pool,
  1813. (rspamd_mempool_destruct_t)g_hash_table_unref, ctx->keys);
  1814. ctx->errors_ips = rspamd_lru_hash_new_full (1024,
  1815. (GDestroyNotify) rspamd_inet_address_free, g_free,
  1816. rspamd_inet_address_hash, rspamd_inet_address_equal);
  1817. rspamd_mempool_add_destructor (cfg->cfg_pool,
  1818. (rspamd_mempool_destruct_t)rspamd_lru_hash_destroy, ctx->errors_ips);
  1819. ctx->cfg = cfg;
  1820. ctx->updates_maxfail = DEFAULT_UPDATES_MAXFAIL;
  1821. ctx->leaky_bucket_mask = DEFAULT_BUCKET_MASK;
  1822. ctx->leaky_bucket_ttl = DEFAULT_BUCKET_TTL;
  1823. ctx->max_buckets = DEFAULT_MAX_BUCKETS;
  1824. ctx->leaky_bucket_burst = NAN;
  1825. ctx->leaky_bucket_rate = NAN;
  1826. ctx->delay = NAN;
  1827. rspamd_rcl_register_worker_option (cfg,
  1828. type,
  1829. "sync",
  1830. rspamd_rcl_parse_struct_time,
  1831. ctx,
  1832. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx,
  1833. sync_timeout),
  1834. RSPAMD_CL_FLAG_TIME_FLOAT,
  1835. "Time to perform database sync, default: "
  1836. G_STRINGIFY (DEFAULT_SYNC_TIMEOUT) " seconds");
  1837. rspamd_rcl_register_worker_option (cfg,
  1838. type,
  1839. "expire",
  1840. rspamd_rcl_parse_struct_time,
  1841. ctx,
  1842. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx,
  1843. expire),
  1844. RSPAMD_CL_FLAG_TIME_FLOAT,
  1845. "Default expire time for hashes, default: "
  1846. G_STRINGIFY (DEFAULT_EXPIRE) " seconds");
  1847. rspamd_rcl_register_worker_option (cfg,
  1848. type,
  1849. "delay",
  1850. rspamd_rcl_parse_struct_time,
  1851. ctx,
  1852. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx,
  1853. delay),
  1854. RSPAMD_CL_FLAG_TIME_FLOAT,
  1855. "Default delay time for hashes, default: not enabled");
  1856. rspamd_rcl_register_worker_option (cfg,
  1857. type,
  1858. "allow_update",
  1859. rspamd_rcl_parse_struct_ucl,
  1860. ctx,
  1861. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, update_map),
  1862. 0,
  1863. "Allow modifications from the following IP addresses");
  1864. rspamd_rcl_register_worker_option (cfg,
  1865. type,
  1866. "delay_whitelist",
  1867. rspamd_rcl_parse_struct_ucl,
  1868. ctx,
  1869. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, delay_whitelist_map),
  1870. 0,
  1871. "Disable delay check for the following IP addresses");
  1872. rspamd_rcl_register_worker_option (cfg,
  1873. type,
  1874. "keypair",
  1875. fuzzy_parse_keypair,
  1876. ctx,
  1877. 0,
  1878. RSPAMD_CL_FLAG_MULTIPLE,
  1879. "Encryption keypair (can be repeated for different keys)");
  1880. rspamd_rcl_register_worker_option (cfg,
  1881. type,
  1882. "keypair_cache_size",
  1883. rspamd_rcl_parse_struct_integer,
  1884. ctx,
  1885. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx,
  1886. keypair_cache_size),
  1887. RSPAMD_CL_FLAG_UINT,
  1888. "Size of keypairs cache, default: "
  1889. G_STRINGIFY (DEFAULT_KEYPAIR_CACHE_SIZE));
  1890. rspamd_rcl_register_worker_option (cfg,
  1891. type,
  1892. "encrypted_only",
  1893. rspamd_rcl_parse_struct_boolean,
  1894. ctx,
  1895. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, encrypted_only),
  1896. 0,
  1897. "Allow encrypted requests only (and forbid all unknown keys or plaintext requests)");
  1898. rspamd_rcl_register_worker_option (cfg,
  1899. type,
  1900. "dedicated_update_worker",
  1901. rspamd_rcl_parse_struct_boolean,
  1902. ctx,
  1903. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, dedicated_update_worker),
  1904. 0,
  1905. "Use worker 0 for updates only");
  1906. rspamd_rcl_register_worker_option (cfg,
  1907. type,
  1908. "read_only",
  1909. rspamd_rcl_parse_struct_boolean,
  1910. ctx,
  1911. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, read_only),
  1912. 0,
  1913. "Work in read only mode");
  1914. rspamd_rcl_register_worker_option (cfg,
  1915. type,
  1916. "blocked",
  1917. rspamd_rcl_parse_struct_ucl,
  1918. ctx,
  1919. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, blocked_map),
  1920. 0,
  1921. "Block requests from specific networks");
  1922. rspamd_rcl_register_worker_option (cfg,
  1923. type,
  1924. "updates_maxfail",
  1925. rspamd_rcl_parse_struct_integer,
  1926. ctx,
  1927. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, updates_maxfail),
  1928. RSPAMD_CL_FLAG_UINT,
  1929. "Maximum number of updates to be failed before discarding");
  1930. rspamd_rcl_register_worker_option (cfg,
  1931. type,
  1932. "skip_hashes",
  1933. rspamd_rcl_parse_struct_ucl,
  1934. ctx,
  1935. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, skip_map),
  1936. 0,
  1937. "Skip specific hashes from the map");
  1938. /* Ratelimits */
  1939. rspamd_rcl_register_worker_option (cfg,
  1940. type,
  1941. "ratelimit_whitelist",
  1942. rspamd_rcl_parse_struct_ucl,
  1943. ctx,
  1944. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, ratelimit_whitelist_map),
  1945. 0,
  1946. "Skip specific addresses from rate limiting");
  1947. rspamd_rcl_register_worker_option (cfg,
  1948. type,
  1949. "ratelimit_max_buckets",
  1950. rspamd_rcl_parse_struct_integer,
  1951. ctx,
  1952. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, max_buckets),
  1953. RSPAMD_CL_FLAG_UINT,
  1954. "Maximum number of leaky buckets (default: " G_STRINGIFY(DEFAULT_MAX_BUCKETS) ")");
  1955. rspamd_rcl_register_worker_option (cfg,
  1956. type,
  1957. "ratelimit_network_mask",
  1958. rspamd_rcl_parse_struct_integer,
  1959. ctx,
  1960. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, leaky_bucket_mask),
  1961. RSPAMD_CL_FLAG_UINT,
  1962. "Network mask to apply for IPv4 rate addresses (default: " G_STRINGIFY(DEFAULT_BUCKET_MASK) ")");
  1963. rspamd_rcl_register_worker_option (cfg,
  1964. type,
  1965. "ratelimit_bucket_ttl",
  1966. rspamd_rcl_parse_struct_time,
  1967. ctx,
  1968. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, leaky_bucket_ttl),
  1969. RSPAMD_CL_FLAG_TIME_INTEGER,
  1970. "Time to live for ratelimit element (default: " G_STRINGIFY(DEFAULT_BUCKET_TTL) ")");
  1971. rspamd_rcl_register_worker_option (cfg,
  1972. type,
  1973. "ratelimit_rate",
  1974. rspamd_rcl_parse_struct_double,
  1975. ctx,
  1976. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, leaky_bucket_rate),
  1977. 0,
  1978. "Leak rate in requests per second");
  1979. rspamd_rcl_register_worker_option (cfg,
  1980. type,
  1981. "ratelimit_burst",
  1982. rspamd_rcl_parse_struct_double,
  1983. ctx,
  1984. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, leaky_bucket_burst),
  1985. 0,
  1986. "Peak value for ratelimit bucket");
  1987. rspamd_rcl_register_worker_option (cfg,
  1988. type,
  1989. "ratelimit_log_only",
  1990. rspamd_rcl_parse_struct_boolean,
  1991. ctx,
  1992. G_STRUCT_OFFSET (struct rspamd_fuzzy_storage_ctx, ratelimit_log_only),
  1993. 0,
  1994. "Don't really ban on ratelimit reaching, just log");
  1995. return ctx;
  1996. }
  1997. static void
  1998. rspamd_fuzzy_peer_io (EV_P_ ev_io *w, int revents)
  1999. {
  2000. struct fuzzy_peer_cmd cmd;
  2001. struct rspamd_fuzzy_storage_ctx *ctx =
  2002. (struct rspamd_fuzzy_storage_ctx *)w->data;
  2003. gssize r;
  2004. for (;;) {
  2005. r = read (w->fd, &cmd, sizeof (cmd));
  2006. if (r != sizeof (cmd)) {
  2007. if (errno == EINTR) {
  2008. continue;
  2009. }
  2010. if (errno != EAGAIN) {
  2011. msg_err ("cannot read command from peers: %s", strerror (errno));
  2012. }
  2013. break;
  2014. }
  2015. else {
  2016. g_array_append_val (ctx->updates_pending, cmd);
  2017. }
  2018. }
  2019. }
  2020. static void
  2021. fuzzy_peer_rep (struct rspamd_worker *worker,
  2022. struct rspamd_srv_reply *rep, gint rep_fd,
  2023. gpointer ud)
  2024. {
  2025. struct rspamd_fuzzy_storage_ctx *ctx = ud;
  2026. GList *cur;
  2027. struct rspamd_worker_listen_socket *ls;
  2028. struct rspamd_worker_accept_event *ac_ev;
  2029. ctx->peer_fd = rep_fd;
  2030. if (rep_fd == -1) {
  2031. msg_err ("cannot receive peer fd from the main process");
  2032. exit (EXIT_FAILURE);
  2033. }
  2034. else {
  2035. rspamd_socket_nonblocking (rep_fd);
  2036. }
  2037. msg_info ("got peer fd reply from the main process");
  2038. /* Start listening */
  2039. cur = worker->cf->listen_socks;
  2040. while (cur) {
  2041. ls = cur->data;
  2042. if (ls->fd != -1) {
  2043. msg_info ("start listening on %s",
  2044. rspamd_inet_address_to_string_pretty (ls->addr));
  2045. if (ls->type == RSPAMD_WORKER_SOCKET_UDP) {
  2046. ac_ev = g_malloc0 (sizeof (*ac_ev));
  2047. ac_ev->accept_ev.data = worker;
  2048. ac_ev->event_loop = ctx->event_loop;
  2049. ev_io_init (&ac_ev->accept_ev, accept_fuzzy_socket, ls->fd,
  2050. EV_READ);
  2051. ev_io_start (ctx->event_loop, &ac_ev->accept_ev);
  2052. DL_APPEND (worker->accept_events, ac_ev);
  2053. }
  2054. else {
  2055. /* We allow TCP listeners only for a update worker */
  2056. g_assert_not_reached ();
  2057. }
  2058. }
  2059. cur = g_list_next (cur);
  2060. }
  2061. if (ctx->peer_fd != -1) {
  2062. if (worker->index == 0) {
  2063. /* Listen for peer requests */
  2064. shutdown (ctx->peer_fd, SHUT_WR);
  2065. ctx->peer_ev.data = ctx;
  2066. ev_io_init (&ctx->peer_ev, rspamd_fuzzy_peer_io, ctx->peer_fd, EV_READ);
  2067. ev_io_start (ctx->event_loop, &ctx->peer_ev);
  2068. }
  2069. else {
  2070. shutdown (ctx->peer_fd, SHUT_RD);
  2071. }
  2072. }
  2073. }
  2074. /*
  2075. * Start worker process
  2076. */
  2077. __attribute__((noreturn))
  2078. void
  2079. start_fuzzy (struct rspamd_worker *worker)
  2080. {
  2081. struct rspamd_fuzzy_storage_ctx *ctx = worker->ctx;
  2082. GError *err = NULL;
  2083. struct rspamd_srv_command srv_cmd;
  2084. struct rspamd_config *cfg = worker->srv->cfg;
  2085. g_assert (rspamd_worker_check_context (worker->ctx, rspamd_fuzzy_storage_magic));
  2086. ctx->event_loop = rspamd_prepare_worker (worker,
  2087. "fuzzy",
  2088. NULL);
  2089. ctx->peer_fd = -1;
  2090. ctx->worker = worker;
  2091. ctx->cfg = worker->srv->cfg;
  2092. ctx->resolver = rspamd_dns_resolver_init (worker->srv->logger,
  2093. ctx->event_loop,
  2094. worker->srv->cfg);
  2095. rspamd_upstreams_library_config (worker->srv->cfg, ctx->cfg->ups_ctx,
  2096. ctx->event_loop, ctx->resolver->r);
  2097. /* Since this worker uses maps it needs a valid HTTP context */
  2098. ctx->http_ctx = rspamd_http_context_create (ctx->cfg, ctx->event_loop,
  2099. ctx->cfg->ups_ctx);
  2100. if (ctx->keypair_cache_size > 0) {
  2101. /* Create keypairs cache */
  2102. ctx->keypair_cache = rspamd_keypair_cache_new (ctx->keypair_cache_size);
  2103. }
  2104. if ((ctx->backend = rspamd_fuzzy_backend_create (ctx->event_loop,
  2105. worker->cf->options, cfg, &err)) == NULL) {
  2106. msg_err ("cannot open backend: %e", err);
  2107. if (err) {
  2108. g_error_free (err);
  2109. }
  2110. exit (EXIT_SUCCESS);
  2111. }
  2112. rspamd_fuzzy_backend_count (ctx->backend, fuzzy_count_callback, ctx);
  2113. if (worker->index == 0) {
  2114. ctx->updates_pending = g_array_sized_new (FALSE, FALSE,
  2115. sizeof (struct fuzzy_peer_cmd), 1024);
  2116. rspamd_fuzzy_backend_start_update (ctx->backend, ctx->sync_timeout,
  2117. rspamd_fuzzy_storage_periodic_callback, ctx);
  2118. if (ctx->dedicated_update_worker && worker->cf->count > 1) {
  2119. msg_info_config ("stop serving clients request in dedicated update mode");
  2120. rspamd_worker_stop_accept (worker);
  2121. GList *cur = worker->cf->listen_socks;
  2122. while (cur) {
  2123. struct rspamd_worker_listen_socket *ls =
  2124. (struct rspamd_worker_listen_socket *)cur->data;
  2125. if (ls->fd != -1) {
  2126. close (ls->fd);
  2127. }
  2128. cur = g_list_next (cur);
  2129. }
  2130. }
  2131. }
  2132. ctx->stat_ev.data = ctx;
  2133. ev_timer_init (&ctx->stat_ev, rspamd_fuzzy_stat_callback, ctx->sync_timeout,
  2134. ctx->sync_timeout);
  2135. ev_timer_start (ctx->event_loop, &ctx->stat_ev);
  2136. /* Register custom reload and stat commands for the control socket */
  2137. rspamd_control_worker_add_cmd_handler (worker, RSPAMD_CONTROL_RELOAD,
  2138. rspamd_fuzzy_storage_reload, ctx);
  2139. rspamd_control_worker_add_cmd_handler (worker, RSPAMD_CONTROL_FUZZY_STAT,
  2140. rspamd_fuzzy_storage_stat, ctx);
  2141. rspamd_control_worker_add_cmd_handler (worker, RSPAMD_CONTROL_FUZZY_SYNC,
  2142. rspamd_fuzzy_storage_sync, ctx);
  2143. /* Create radix trees */
  2144. if (ctx->update_map != NULL) {
  2145. rspamd_config_radix_from_ucl (worker->srv->cfg, ctx->update_map,
  2146. "Allow fuzzy updates from specified addresses",
  2147. &ctx->update_ips, NULL, worker, "fuzzy update");
  2148. }
  2149. if (ctx->skip_map != NULL) {
  2150. struct rspamd_map *m;
  2151. if ((m = rspamd_map_add_from_ucl (cfg, ctx->skip_map,
  2152. "Skip hashes",
  2153. rspamd_kv_list_read,
  2154. rspamd_kv_list_fin,
  2155. rspamd_kv_list_dtor,
  2156. (void **)&ctx->skip_hashes,
  2157. worker, RSPAMD_MAP_DEFAULT)) == NULL) {
  2158. msg_warn_config ("cannot load hashes list from %s",
  2159. ucl_object_tostring (ctx->skip_map));
  2160. }
  2161. else {
  2162. m->active_http = TRUE;
  2163. }
  2164. }
  2165. if (ctx->blocked_map != NULL) {
  2166. rspamd_config_radix_from_ucl (worker->srv->cfg, ctx->blocked_map,
  2167. "Block fuzzy requests from the specific IPs",
  2168. &ctx->blocked_ips,
  2169. NULL,
  2170. worker, "fuzzy blocked");
  2171. }
  2172. /* Create radix trees */
  2173. if (ctx->ratelimit_whitelist_map != NULL) {
  2174. rspamd_config_radix_from_ucl (worker->srv->cfg, ctx->ratelimit_whitelist_map,
  2175. "Skip ratelimits from specific ip addresses/networks",
  2176. &ctx->ratelimit_whitelist,
  2177. NULL,
  2178. worker, "fuzzy ratelimit whitelist");
  2179. }
  2180. if (!isnan (ctx->delay) && ctx->delay_whitelist_map != NULL) {
  2181. rspamd_config_radix_from_ucl (worker->srv->cfg, ctx->delay_whitelist_map,
  2182. "Skip delay from the following ips",
  2183. &ctx->delay_whitelist, NULL, worker,
  2184. "fuzzy delayed whitelist");
  2185. }
  2186. /* Ratelimits */
  2187. if (!isnan (ctx->leaky_bucket_rate) && !isnan (ctx->leaky_bucket_burst)) {
  2188. ctx->ratelimit_buckets = rspamd_lru_hash_new_full (ctx->max_buckets,
  2189. NULL, fuzzy_rl_bucket_free,
  2190. rspamd_inet_address_hash, rspamd_inet_address_equal);
  2191. }
  2192. /* Maps events */
  2193. ctx->resolver = rspamd_dns_resolver_init (worker->srv->logger,
  2194. ctx->event_loop,
  2195. worker->srv->cfg);
  2196. rspamd_map_watch (worker->srv->cfg, ctx->event_loop,
  2197. ctx->resolver, worker, RSPAMD_MAP_WATCH_WORKER);
  2198. /* Get peer pipe */
  2199. memset (&srv_cmd, 0, sizeof (srv_cmd));
  2200. srv_cmd.type = RSPAMD_SRV_SOCKETPAIR;
  2201. srv_cmd.cmd.spair.af = SOCK_DGRAM;
  2202. srv_cmd.cmd.spair.pair_num = worker->index;
  2203. memset (srv_cmd.cmd.spair.pair_id, 0, sizeof (srv_cmd.cmd.spair.pair_id));
  2204. /* 6 bytes of id (including \0) and bind_conf id */
  2205. G_STATIC_ASSERT (sizeof (srv_cmd.cmd.spair.pair_id) >=
  2206. sizeof ("fuzzy") + sizeof (guint64));
  2207. memcpy (srv_cmd.cmd.spair.pair_id, "fuzzy", sizeof ("fuzzy"));
  2208. /* Distinguish workers from each others... */
  2209. if (worker->cf->bind_conf && worker->cf->bind_conf->bind_line) {
  2210. guint64 bind_hash = rspamd_cryptobox_fast_hash (worker->cf->bind_conf->bind_line,
  2211. strlen (worker->cf->bind_conf->bind_line), 0xdeadbabe);
  2212. /* 8 more bytes */
  2213. memcpy (srv_cmd.cmd.spair.pair_id + sizeof ("fuzzy"), &bind_hash,
  2214. sizeof (bind_hash));
  2215. }
  2216. rspamd_srv_send_command (worker, ctx->event_loop, &srv_cmd, -1,
  2217. fuzzy_peer_rep, ctx);
  2218. luaL_Reg fuzzy_lua_reg = {
  2219. .name = "add_fuzzy_pre_handler",
  2220. .func = lua_fuzzy_add_pre_handler,
  2221. };
  2222. rspamd_lua_add_metamethod (ctx->cfg->lua_state, "rspamd{worker}", &fuzzy_lua_reg);
  2223. fuzzy_lua_reg = (luaL_Reg){
  2224. .name = "add_fuzzy_post_handler",
  2225. .func = lua_fuzzy_add_post_handler,
  2226. };
  2227. rspamd_lua_add_metamethod (ctx->cfg->lua_state, "rspamd{worker}", &fuzzy_lua_reg);
  2228. rspamd_lua_run_postloads (ctx->cfg->lua_state, ctx->cfg, ctx->event_loop,
  2229. worker);
  2230. ev_loop (ctx->event_loop, 0);
  2231. rspamd_worker_block_signals ();
  2232. if (ctx->peer_fd != -1) {
  2233. if (worker->index == 0) {
  2234. ev_io_stop (ctx->event_loop, &ctx->peer_ev);
  2235. }
  2236. close (ctx->peer_fd);
  2237. }
  2238. if (worker->index == 0 && ctx->updates_pending->len > 0) {
  2239. msg_info_config ("start another event loop to sync fuzzy storage");
  2240. if (rspamd_fuzzy_process_updates_queue (ctx, local_db_name, TRUE)) {
  2241. ev_loop (ctx->event_loop, 0);
  2242. msg_info_config ("sync cycle is done");
  2243. }
  2244. else {
  2245. msg_info_config ("no need to sync");
  2246. }
  2247. }
  2248. rspamd_fuzzy_backend_close (ctx->backend);
  2249. if (worker->index == 0) {
  2250. g_array_free (ctx->updates_pending, TRUE);
  2251. }
  2252. if (ctx->keypair_cache) {
  2253. rspamd_keypair_cache_destroy (ctx->keypair_cache);
  2254. }
  2255. if (ctx->ratelimit_buckets) {
  2256. rspamd_lru_hash_destroy (ctx->ratelimit_buckets);
  2257. }
  2258. if (ctx->lua_pre_handler_cbref != -1) {
  2259. luaL_unref (ctx->cfg->lua_state, LUA_REGISTRYINDEX, ctx->lua_pre_handler_cbref);
  2260. }
  2261. if (ctx->lua_post_handler_cbref != -1) {
  2262. luaL_unref (ctx->cfg->lua_state, LUA_REGISTRYINDEX, ctx->lua_post_handler_cbref);
  2263. }
  2264. REF_RELEASE (ctx->cfg);
  2265. rspamd_log_close (worker->srv->logger);
  2266. exit (EXIT_SUCCESS);
  2267. }