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rspamd_upstream_test.c 6.3KB

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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 "ottery.h"
  19. #include "contrib/libev/ev.h"
  20. #include <math.h>
  21. const char *test_upstream_list = "microsoft.com:443:1,google.com:80:2,kernel.org:443:3";
  22. const char *new_upstream_list = "freebsd.org:80";
  23. char test_key[32];
  24. extern struct ev_loop *event_loop;
  25. static void
  26. rspamd_upstream_test_method (struct upstream_list *ls,
  27. enum rspamd_upstream_rotation rot, const gchar *expected)
  28. {
  29. struct upstream *up;
  30. if (rot != RSPAMD_UPSTREAM_HASHED) {
  31. up = rspamd_upstream_get (ls, rot, NULL, 0);
  32. g_assert (up != NULL);
  33. g_assert (strcmp (rspamd_upstream_name (up), expected) == 0);
  34. }
  35. else {
  36. up = rspamd_upstream_get (ls, RSPAMD_UPSTREAM_HASHED, test_key,
  37. sizeof (test_key));
  38. g_assert (up != NULL);
  39. g_assert (strcmp (rspamd_upstream_name (up), expected) == 0);
  40. }
  41. }
  42. static void
  43. rspamd_upstream_timeout_handler (EV_P_ ev_timer *w, int revents)
  44. {
  45. struct rspamd_dns_resolver *resolver = (struct rspamd_dns_resolver *)w->data;
  46. rdns_resolver_release (resolver->r);
  47. }
  48. void
  49. rspamd_upstream_test_func (void)
  50. {
  51. struct upstream_list *ls, *nls;
  52. struct upstream *up, *upn;
  53. struct rspamd_dns_resolver *resolver;
  54. struct rspamd_config *cfg;
  55. gint i, success = 0;
  56. const gint assumptions = 100500;
  57. gdouble p;
  58. static ev_timer ev;
  59. rspamd_inet_addr_t *addr, *next_addr, *paddr;
  60. cfg = rspamd_config_new (RSPAMD_CONFIG_INIT_SKIP_LUA);
  61. cfg->dns_retransmits = 2;
  62. cfg->dns_timeout = 0.5;
  63. cfg->upstream_max_errors = 1;
  64. cfg->upstream_revive_time = 0.5;
  65. cfg->upstream_error_time = 2;
  66. resolver = rspamd_dns_resolver_init (NULL, event_loop, cfg);
  67. rspamd_upstreams_library_config (cfg, cfg->ups_ctx, event_loop, resolver->r);
  68. /*
  69. * Test v4/v6 priorities
  70. */
  71. nls = rspamd_upstreams_create (cfg->ups_ctx);
  72. g_assert (rspamd_upstreams_add_upstream (nls, "127.0.0.1", 0,
  73. RSPAMD_UPSTREAM_PARSE_DEFAULT,
  74. NULL));
  75. up = rspamd_upstream_get (nls, RSPAMD_UPSTREAM_RANDOM, NULL, 0);
  76. rspamd_parse_inet_address (&paddr, "127.0.0.2", strlen ("127.0.0.2"),
  77. RSPAMD_INET_ADDRESS_PARSE_DEFAULT);
  78. g_assert (rspamd_upstream_add_addr (up, paddr));
  79. rspamd_parse_inet_address (&paddr, "::1", strlen ("::1"),
  80. RSPAMD_INET_ADDRESS_PARSE_DEFAULT);
  81. g_assert (rspamd_upstream_add_addr (up, paddr));
  82. /* Rewind to start */
  83. addr = rspamd_upstream_addr_next (up);
  84. addr = rspamd_upstream_addr_next (up);
  85. /* cur should be zero here */
  86. addr = rspamd_upstream_addr_next (up);
  87. next_addr = rspamd_upstream_addr_next (up);
  88. g_assert (rspamd_inet_address_get_af (addr) == AF_INET);
  89. g_assert (rspamd_inet_address_get_af (next_addr) == AF_INET);
  90. next_addr = rspamd_upstream_addr_next (up);
  91. g_assert (rspamd_inet_address_get_af (next_addr) == AF_INET6);
  92. next_addr = rspamd_upstream_addr_next (up);
  93. g_assert (rspamd_inet_address_get_af (next_addr) == AF_INET);
  94. next_addr = rspamd_upstream_addr_next (up);
  95. g_assert (rspamd_inet_address_get_af (next_addr) == AF_INET);
  96. next_addr = rspamd_upstream_addr_next (up);
  97. g_assert (rspamd_inet_address_get_af (next_addr) == AF_INET6);
  98. /* Test errors with IPv6 */
  99. rspamd_upstream_fail (up, TRUE, NULL);
  100. /* Now we should have merely IPv4 addresses in rotation */
  101. addr = rspamd_upstream_addr_next (up);
  102. for (i = 0; i < 256; i++) {
  103. next_addr = rspamd_upstream_addr_next (up);
  104. g_assert (rspamd_inet_address_get_af (addr) == AF_INET);
  105. g_assert (rspamd_inet_address_get_af (next_addr) == AF_INET);
  106. g_assert (rspamd_inet_address_compare (addr, next_addr, FALSE) != 0);
  107. addr = next_addr;
  108. }
  109. rspamd_upstreams_destroy (nls);
  110. ls = rspamd_upstreams_create (cfg->ups_ctx);
  111. g_assert (rspamd_upstreams_parse_line (ls, test_upstream_list, 443, NULL));
  112. g_assert (rspamd_upstreams_count (ls) == 3);
  113. /* Test master-slave rotation */
  114. rspamd_upstream_test_method (ls, RSPAMD_UPSTREAM_MASTER_SLAVE, "kernel.org");
  115. rspamd_upstream_test_method (ls, RSPAMD_UPSTREAM_MASTER_SLAVE, "kernel.org");
  116. /* Test round-robin rotation */
  117. rspamd_upstream_test_method (ls, RSPAMD_UPSTREAM_ROUND_ROBIN, "kernel.org");
  118. rspamd_upstream_test_method (ls, RSPAMD_UPSTREAM_ROUND_ROBIN, "kernel.org");
  119. rspamd_upstream_test_method (ls, RSPAMD_UPSTREAM_ROUND_ROBIN, "google.com");
  120. rspamd_upstream_test_method (ls, RSPAMD_UPSTREAM_ROUND_ROBIN, "kernel.org");
  121. rspamd_upstream_test_method (ls, RSPAMD_UPSTREAM_ROUND_ROBIN, "google.com");
  122. rspamd_upstream_test_method (ls, RSPAMD_UPSTREAM_ROUND_ROBIN, "microsoft.com");
  123. /* Test stable hashing */
  124. nls = rspamd_upstreams_create (cfg->ups_ctx);
  125. g_assert (rspamd_upstreams_parse_line (nls, test_upstream_list, 443, NULL));
  126. g_assert (rspamd_upstreams_parse_line (nls, new_upstream_list, 443, NULL));
  127. for (i = 0; i < assumptions; i ++) {
  128. ottery_rand_bytes (test_key, sizeof (test_key));
  129. up = rspamd_upstream_get (ls, RSPAMD_UPSTREAM_HASHED, test_key,
  130. sizeof (test_key));
  131. upn = rspamd_upstream_get (nls, RSPAMD_UPSTREAM_HASHED, test_key,
  132. sizeof (test_key));
  133. if (strcmp (rspamd_upstream_name (up), rspamd_upstream_name (upn)) == 0) {
  134. success ++;
  135. }
  136. }
  137. p = 1.0 - fabs (3.0 / 4.0 - (gdouble)success / (gdouble)assumptions);
  138. /*
  139. * P value is calculated as following:
  140. * when we add/remove M upstreams from the list, the probability of hash
  141. * miss should be close to the relation N / (N + M), where N is the size of
  142. * the previous upstreams list.
  143. */
  144. msg_debug ("p value for hash consistency: %.6f", p);
  145. g_assert (p > 0.9);
  146. rspamd_upstreams_destroy (nls);
  147. /* Upstream fail test */
  148. ev.data = resolver;
  149. ev_timer_init (&ev, rspamd_upstream_timeout_handler, 2.0, 0.0);
  150. up = rspamd_upstream_get (ls, RSPAMD_UPSTREAM_MASTER_SLAVE, NULL, 0);
  151. for (i = 0; i < 100; i ++) {
  152. rspamd_upstream_fail (up, TRUE, NULL);
  153. }
  154. g_assert (rspamd_upstreams_alive (ls) == 2);
  155. ev_timer_start (event_loop, &ev);
  156. ev_run (event_loop, 0);
  157. g_assert (rspamd_upstreams_alive (ls) == 3);
  158. rspamd_upstreams_destroy (ls);
  159. REF_RELEASE (cfg);
  160. }