server.cc 44 KB

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  1. /* vim:expandtab:shiftwidth=2:tabstop=2:smarttab:
  2. *
  3. * Gearmand client and server library.
  4. *
  5. * Copyright (C) 2011-2013 Data Differential, http://datadifferential.com/
  6. * Copyright (C) 2008 Brian Aker, Eric Day
  7. * All rights reserved.
  8. *
  9. * Redistribution and use in source and binary forms, with or without
  10. * modification, are permitted provided that the following conditions are
  11. * met:
  12. *
  13. * * Redistributions of source code must retain the above copyright
  14. * notice, this list of conditions and the following disclaimer.
  15. *
  16. * * Redistributions in binary form must reproduce the above
  17. * copyright notice, this list of conditions and the following disclaimer
  18. * in the documentation and/or other materials provided with the
  19. * distribution.
  20. *
  21. * * The names of its contributors may not be used to endorse or
  22. * promote products derived from this software without specific prior
  23. * written permission.
  24. *
  25. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
  26. * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
  27. * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
  28. * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
  29. * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
  30. * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
  31. * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
  32. * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
  33. * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
  34. * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  35. * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  36. *
  37. */
  38. /**
  39. * @file
  40. * @brief Server Definitions
  41. */
  42. #include "gear_config.h"
  43. #include "libgearman-server/common.h"
  44. #include "libgearman-server/queue.h"
  45. #include "libgearman-server/plugins/base.h"
  46. #include <cerrno>
  47. #include <climits>
  48. #include <cstdlib>
  49. #include <cstring>
  50. #include <cassert>
  51. #include "libgearman-1.0/return.h"
  52. #include "libgearman-1.0/strerror.h"
  53. #include "libgearman/magic.h"
  54. /*
  55. * Private declarations
  56. */
  57. /**
  58. * @addtogroup gearman_server_private Private Server Functions
  59. * @ingroup gearman_server
  60. * @{
  61. */
  62. /**
  63. * Queue an error packet.
  64. */
  65. static gearmand_error_t _server_error_packet(const char *position_, const char *func_,
  66. gearman_server_con_st *server_con,
  67. gearman_return_t client_return_code, const char *error_string, const size_t error_string_length)
  68. {
  69. const char* error_code_string= gearman_strerror(client_return_code);
  70. error_code_string+= 8;
  71. gearmand_log_warning(position_, func_, "%s:%.*s", gearman_strerror(client_return_code), int(error_string_length), error_string);
  72. return gearman_server_io_packet_add(server_con, false, GEARMAN_MAGIC_RESPONSE,
  73. GEARMAN_COMMAND_ERROR, error_code_string,
  74. (size_t)(strlen(error_code_string) + 1),
  75. error_string, error_string_length,
  76. NULL);
  77. }
  78. /**
  79. * Send work result packets with data back to clients.
  80. */
  81. static gearmand_error_t
  82. _server_queue_work_data(gearman_server_job_st *server_job,
  83. gearmand_packet_st *packet, gearman_command_t command);
  84. /** @} */
  85. /*
  86. * Public definitions
  87. */
  88. #if __GNUC__ >= 7
  89. #pragma GCC diagnostic warning "-Wimplicit-fallthrough"
  90. #endif
  91. gearmand_error_t gearman_server_run_command(gearman_server_con_st *server_con,
  92. gearmand_packet_st *packet)
  93. {
  94. gearmand_error_t ret;
  95. gearman_server_client_st *server_client= NULL;
  96. if (packet->magic == GEARMAN_MAGIC_RESPONSE)
  97. {
  98. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_INVALID_MAGIC, gearman_literal_param("Request magic expected"));
  99. }
  100. if (uint32_t(packet->command) >= uint32_t(GEARMAN_COMMAND_MAX))
  101. {
  102. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_INVALID_COMMAND, gearman_literal_param("Invalid command expected"));
  103. }
  104. gearmand_log_debug(GEARMAN_DEFAULT_LOG_PARAM,
  105. "PACKET COMMAND: %s", gearmand_strcommand(packet));
  106. switch (packet->command)
  107. {
  108. /* Client/worker requests. */
  109. case GEARMAN_COMMAND_ECHO_REQ:
  110. /* Reuse the data buffer and just shove the data back. */
  111. ret= gearman_server_io_packet_add(server_con, true, GEARMAN_MAGIC_RESPONSE,
  112. GEARMAN_COMMAND_ECHO_RES, packet->data,
  113. packet->data_size, NULL);
  114. if (gearmand_failed(ret))
  115. {
  116. return gearmand_gerror("gearman_server_io_packet_add", ret);
  117. }
  118. packet->options.free_data= false;
  119. break;
  120. case GEARMAN_COMMAND_SUBMIT_REDUCE_JOB: // Reduce request
  121. server_client= gearman_server_client_add(server_con);
  122. if (server_client == NULL)
  123. {
  124. return GEARMAND_MEMORY_ALLOCATION_FAILURE;
  125. }
  126. case GEARMAN_COMMAND_SUBMIT_REDUCE_JOB_BACKGROUND:
  127. {
  128. gearmand_log_debug(GEARMAN_DEFAULT_LOG_PARAM,
  129. "Received reduce submission, Partitioner: %.*s(%lu) Reducer: %.*s(%lu) Unique: %.*s(%lu) with %d arguments",
  130. packet->arg_size[0] -1, packet->arg[0], packet->arg_size[0] -1,
  131. packet->arg_size[2] -1, packet->arg[2], packet->arg_size[2] -1, // reducer
  132. packet->arg_size[1] -1, packet->arg[1], packet->arg_size[1] -1,
  133. (int)packet->argc);
  134. if (packet->arg_size[2] -1 > GEARMAN_UNIQUE_SIZE)
  135. {
  136. gearman_server_client_free(server_client);
  137. gearmand_gerror("unique value too large", GEARMAND_ARGUMENT_TOO_LARGE);
  138. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_ARGUMENT_TOO_LARGE, gearman_literal_param("Unique value too large"));
  139. }
  140. gearman_job_priority_t map_priority= GEARMAN_JOB_PRIORITY_NORMAL;
  141. /* Schedule job. */
  142. gearman_server_job_st *server_job= gearman_server_job_add_reducer(Server,
  143. (char *)(packet->arg[0]), packet->arg_size[0] -1, // Function
  144. (char *)(packet->arg[1]), packet->arg_size[1] -1, // unique
  145. (char *)(packet->arg[2]), packet->arg_size[2] -1, // reducer
  146. packet->data, packet->data_size, map_priority,
  147. server_client, &ret, 0);
  148. if (gearmand_success(ret))
  149. {
  150. packet->options.free_data= false;
  151. }
  152. else if (ret == GEARMAND_JOB_QUEUE_FULL)
  153. {
  154. gearman_server_client_free(server_client);
  155. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_QUEUE_ERROR, gearman_literal_param("Job queue is full"));
  156. }
  157. else if (ret != GEARMAND_JOB_EXISTS)
  158. {
  159. gearman_server_client_free(server_client);
  160. gearmand_gerror("gearman_server_job_add", ret);
  161. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_QUEUE_ERROR, gearmand_strerror(ret), strlen(gearmand_strerror(ret)));
  162. }
  163. /* Queue the job created packet. */
  164. ret= gearman_server_io_packet_add(server_con, false, GEARMAN_MAGIC_RESPONSE,
  165. GEARMAN_COMMAND_JOB_CREATED,
  166. server_job->job_handle,
  167. (size_t)strlen(server_job->job_handle),
  168. NULL);
  169. if (gearmand_failed(ret))
  170. {
  171. gearman_server_client_free(server_client);
  172. return gearmand_gerror("gearman_server_io_packet_add", ret);
  173. }
  174. gearmand_log_notice(GEARMAN_DEFAULT_LOG_PARAM,"accepted,%.*s,%.*s,%.*s",
  175. packet->arg_size[0] -1, packet->arg[0], // Function
  176. packet->arg_size[1] -1, packet->arg[1], // unique
  177. packet->arg_size[2] -1, packet->arg[2]); // reducer
  178. }
  179. break;
  180. /* Client requests. */
  181. case GEARMAN_COMMAND_SUBMIT_JOB:
  182. case GEARMAN_COMMAND_SUBMIT_JOB_BG:
  183. case GEARMAN_COMMAND_SUBMIT_JOB_HIGH:
  184. case GEARMAN_COMMAND_SUBMIT_JOB_HIGH_BG:
  185. case GEARMAN_COMMAND_SUBMIT_JOB_LOW:
  186. case GEARMAN_COMMAND_SUBMIT_JOB_LOW_BG:
  187. case GEARMAN_COMMAND_SUBMIT_JOB_EPOCH:
  188. {
  189. gearman_job_priority_t priority;
  190. if (packet->command == GEARMAN_COMMAND_SUBMIT_JOB or
  191. packet->command == GEARMAN_COMMAND_SUBMIT_JOB_BG or
  192. packet->command == GEARMAN_COMMAND_SUBMIT_JOB_EPOCH)
  193. {
  194. priority= GEARMAN_JOB_PRIORITY_NORMAL;
  195. }
  196. else if (packet->command == GEARMAN_COMMAND_SUBMIT_JOB_HIGH or
  197. packet->command == GEARMAN_COMMAND_SUBMIT_JOB_HIGH_BG)
  198. {
  199. priority= GEARMAN_JOB_PRIORITY_HIGH;
  200. }
  201. else
  202. {
  203. priority= GEARMAN_JOB_PRIORITY_LOW;
  204. }
  205. if (packet->command == GEARMAN_COMMAND_SUBMIT_JOB_BG or
  206. packet->command == GEARMAN_COMMAND_SUBMIT_JOB_HIGH_BG or
  207. packet->command == GEARMAN_COMMAND_SUBMIT_JOB_LOW_BG or
  208. packet->command == GEARMAN_COMMAND_SUBMIT_JOB_EPOCH)
  209. {
  210. server_client= NULL;
  211. }
  212. else
  213. {
  214. server_client= gearman_server_client_add(server_con);
  215. if (server_client == NULL)
  216. {
  217. return GEARMAND_MEMORY_ALLOCATION_FAILURE;
  218. }
  219. }
  220. gearmand_log_debug(GEARMAN_DEFAULT_LOG_PARAM,
  221. "Received submission, function:%.*s unique:%.*s with %d arguments",
  222. packet->arg_size[0], packet->arg[0],
  223. packet->arg_size[1], packet->arg[1],
  224. (int)packet->argc);
  225. int64_t when= 0;
  226. if (packet->command == GEARMAN_COMMAND_SUBMIT_JOB_EPOCH)
  227. {
  228. char *endptr;
  229. // @note stroll will set errno if error, but it might also leave errno
  230. // alone if none happens (so a previous call that sets it might cause
  231. // an error.
  232. errno= 0;
  233. when= strtoll((char *)packet->arg[2], &endptr, 10);
  234. if (errno)
  235. {
  236. return gearmand_log_error(GEARMAN_DEFAULT_LOG_PARAM, "strtoul(%ul)", when);
  237. }
  238. gearmand_log_debug(GEARMAN_DEFAULT_LOG_PARAM,
  239. "Received EPOCH job submission, function:%.*s unique:%.*s with data for %jd at %jd, args %d",
  240. packet->arg_size[0], packet->arg[0],
  241. packet->arg_size[1], packet->arg[1],
  242. when, time(NULL),
  243. (int)packet->argc);
  244. }
  245. if (packet->arg_size[1] -1 > GEARMAN_UNIQUE_SIZE)
  246. {
  247. gearmand_gerror("unique value too large", GEARMAND_ARGUMENT_TOO_LARGE);
  248. gearman_server_client_free(server_client);
  249. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_ARGUMENT_TOO_LARGE, gearman_literal_param("Unique value too large"));
  250. }
  251. /* Schedule job. */
  252. gearman_server_job_st *server_job= gearman_server_job_add(Server,
  253. (char *)(packet->arg[0]), packet->arg_size[0] -1, // Function
  254. (char *)(packet->arg[1]), packet->arg_size[1] -1, // unique
  255. packet->data, packet->data_size, priority,
  256. server_client, &ret,
  257. when);
  258. if (gearmand_success(ret))
  259. {
  260. packet->options.free_data= false;
  261. }
  262. else if (ret == GEARMAND_JOB_QUEUE_FULL)
  263. {
  264. gearman_server_client_free(server_client);
  265. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_QUEUE_ERROR, gearman_literal_param("Job queue is full"));
  266. }
  267. else if (ret != GEARMAND_JOB_EXISTS)
  268. {
  269. gearman_server_client_free(server_client);
  270. gearmand_gerror("gearman_server_job_add", ret);
  271. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_QUEUE_ERROR, gearmand_strerror(ret), strlen(gearmand_strerror(ret)));
  272. }
  273. /* Queue the job created packet. */
  274. ret= gearman_server_io_packet_add(server_con, false, GEARMAN_MAGIC_RESPONSE,
  275. GEARMAN_COMMAND_JOB_CREATED,
  276. server_job->job_handle,
  277. (size_t)strlen(server_job->job_handle),
  278. NULL);
  279. if (gearmand_failed(ret))
  280. {
  281. gearman_server_client_free(server_client);
  282. return gearmand_gerror("gearman_server_io_packet_add", ret);
  283. }
  284. gearmand_log_notice(GEARMAN_DEFAULT_LOG_PARAM,"accepted,%.*s,%.*s,%jd",
  285. packet->arg_size[0], packet->arg[0], // Function
  286. packet->arg_size[1], packet->arg[1], // Unique
  287. when);
  288. }
  289. break;
  290. case GEARMAN_COMMAND_GET_STATUS_UNIQUE:
  291. {
  292. char unique_handle[GEARMAN_MAX_UNIQUE_SIZE];
  293. /* This may not be NULL terminated, so copy to make sure it is. */
  294. int unique_handle_length= snprintf(unique_handle, GEARMAN_MAX_UNIQUE_SIZE, "%.*s",
  295. (int)(packet->arg_size[0]), (char *)(packet->arg[0]));
  296. if (unique_handle_length >= GEARMAN_MAX_UNIQUE_SIZE || unique_handle_length < 0)
  297. {
  298. gearmand_log_error(GEARMAN_DEFAULT_LOG_PARAM, "snprintf(%d)", unique_handle_length);
  299. return GEARMAND_MEMORY_ALLOCATION_FAILURE;
  300. }
  301. gearman_server_job_st *server_job= gearman_server_job_get_by_unique(Server,
  302. unique_handle, (size_t)unique_handle_length,
  303. NULL);
  304. gearmand_log_debug(GEARMAN_DEFAULT_LOG_PARAM, "Searching for unique job: \"%s\" found: %s clients:%d", unique_handle,
  305. server_job ? "yes" : "no",
  306. server_job ? server_job->client_count : 0);
  307. /* Queue status result packet. */
  308. if (server_job == NULL)
  309. {
  310. ret= gearman_server_io_packet_add(server_con, false,
  311. GEARMAN_MAGIC_RESPONSE,
  312. GEARMAN_COMMAND_STATUS_RES_UNIQUE,
  313. unique_handle, (size_t)(unique_handle_length +1), // Job Handle
  314. "0", (size_t)2, //
  315. "0", (size_t)2, //
  316. "0", (size_t)2, //
  317. "0", (size_t)2, //
  318. "0", (size_t)1, // client_count
  319. NULL);
  320. }
  321. else
  322. {
  323. char numerator_buffer[11]; /* Max string size to hold a uint32_t. */
  324. int numerator_buffer_length= snprintf(numerator_buffer, sizeof(numerator_buffer), "%u", server_job->numerator);
  325. if ((size_t)numerator_buffer_length >= sizeof(numerator_buffer) || numerator_buffer_length < 0)
  326. {
  327. gearmand_log_error(GEARMAN_DEFAULT_LOG_PARAM, "snprintf(%d)", numerator_buffer_length);
  328. return GEARMAND_MEMORY_ALLOCATION_FAILURE;
  329. }
  330. char denominator_buffer[11]; /* Max string size to hold a uint32_t. */
  331. int denominator_buffer_length= snprintf(denominator_buffer, sizeof(denominator_buffer), "%u", server_job->denominator);
  332. if ((size_t)denominator_buffer_length >= sizeof(denominator_buffer) || denominator_buffer_length < 0)
  333. {
  334. gearmand_log_error(GEARMAN_DEFAULT_LOG_PARAM, "snprintf(%d)", denominator_buffer_length);
  335. return GEARMAND_MEMORY_ALLOCATION_FAILURE;
  336. }
  337. char client_count_buffer[11]; /* Max string size to hold a uint32_t. */
  338. int client_count_buffer_length= snprintf(client_count_buffer, sizeof(client_count_buffer), "%u", server_job->client_count);
  339. if ((size_t)client_count_buffer_length >= sizeof(client_count_buffer) || client_count_buffer_length < 0)
  340. {
  341. gearmand_log_error(GEARMAN_DEFAULT_LOG_PARAM, "snprintf(%d)", client_count_buffer_length);
  342. return GEARMAND_MEMORY_ALLOCATION_FAILURE;
  343. }
  344. ret= gearman_server_io_packet_add(server_con, false,
  345. GEARMAN_MAGIC_RESPONSE,
  346. GEARMAN_COMMAND_STATUS_RES_UNIQUE,
  347. unique_handle, (size_t)(unique_handle_length +1), // unique_handle
  348. "1", (size_t)2, // is_known
  349. server_job->worker == NULL ? "0" : "1", (size_t)2, // is_running
  350. numerator_buffer, (size_t)(numerator_buffer_length +1), // numerator
  351. denominator_buffer, (size_t)(denominator_buffer_length +1), //denominator
  352. client_count_buffer, (size_t)(client_count_buffer_length), //client_count
  353. NULL);
  354. }
  355. if (gearmand_failed(ret))
  356. {
  357. return gearmand_gerror("gearman_server_io_packet_add", ret);
  358. }
  359. }
  360. break;
  361. case GEARMAN_COMMAND_GET_STATUS:
  362. {
  363. char job_handle[GEARMAND_JOB_HANDLE_SIZE];
  364. /* This may not be NULL terminated, so copy to make sure it is. */
  365. int job_handle_length= snprintf(job_handle, GEARMAND_JOB_HANDLE_SIZE, "%.*s",
  366. (int)(packet->arg_size[0]), (char *)(packet->arg[0]));
  367. if (job_handle_length >= GEARMAND_JOB_HANDLE_SIZE || job_handle_length < 0)
  368. {
  369. gearmand_log_error(GEARMAN_DEFAULT_LOG_PARAM, "snprintf(%d)", job_handle_length);
  370. return GEARMAND_MEMORY_ALLOCATION_FAILURE;
  371. }
  372. gearman_server_job_st *server_job= gearman_server_job_get(Server,
  373. job_handle, (size_t)job_handle_length,
  374. NULL);
  375. /* Queue status result packet. */
  376. if (server_job == NULL)
  377. {
  378. gearmand_log_debug(GEARMAN_DEFAULT_LOG_PARAM,"status,%.*s,unknown,unknown,unknown,unknown",
  379. int(job_handle_length), job_handle);
  380. ret= gearman_server_io_packet_add(server_con, false,
  381. GEARMAN_MAGIC_RESPONSE,
  382. GEARMAN_COMMAND_STATUS_RES,
  383. job_handle, (size_t)(job_handle_length +1), // Job Handle
  384. "0", (size_t)2, //
  385. "0", (size_t)2, //
  386. "0", (size_t)2, //
  387. "0", (size_t)1, //
  388. NULL);
  389. }
  390. else
  391. {
  392. char numerator_buffer[11]; /* Max string size to hold a uint32_t. */
  393. int numerator_buffer_length= snprintf(numerator_buffer, sizeof(numerator_buffer), "%u", server_job->numerator);
  394. if ((size_t)numerator_buffer_length >= sizeof(numerator_buffer) || numerator_buffer_length < 0)
  395. {
  396. gearmand_log_error(GEARMAN_DEFAULT_LOG_PARAM, "snprintf(%d)", numerator_buffer_length);
  397. return GEARMAND_MEMORY_ALLOCATION_FAILURE;
  398. }
  399. char denominator_buffer[11]; /* Max string size to hold a uint32_t. */
  400. int denominator_buffer_length= snprintf(denominator_buffer, sizeof(denominator_buffer), "%u", server_job->denominator);
  401. if ((size_t)denominator_buffer_length >= sizeof(denominator_buffer) || denominator_buffer_length < 0)
  402. {
  403. gearmand_log_error(GEARMAN_DEFAULT_LOG_PARAM, "snprintf(%d)", denominator_buffer_length);
  404. return GEARMAND_MEMORY_ALLOCATION_FAILURE;
  405. }
  406. gearmand_log_debug(GEARMAN_DEFAULT_LOG_PARAM,"status,%.*s,known,%s,%.*s,%.*s",
  407. int(job_handle_length), job_handle,
  408. server_job->worker == NULL ? "quiet" : "running",
  409. int(numerator_buffer_length), numerator_buffer,
  410. int(denominator_buffer_length), denominator_buffer);
  411. ret= gearman_server_io_packet_add(server_con, false,
  412. GEARMAN_MAGIC_RESPONSE,
  413. GEARMAN_COMMAND_STATUS_RES,
  414. job_handle, (size_t)(job_handle_length +1),
  415. "1", (size_t)2,
  416. server_job->worker == NULL ? "0" : "1", (size_t)2,
  417. numerator_buffer, (size_t)(numerator_buffer_length +1),
  418. denominator_buffer, (size_t)(denominator_buffer_length),
  419. NULL);
  420. }
  421. if (gearmand_failed(ret))
  422. {
  423. return gearmand_gerror("gearman_server_io_packet_add", ret);
  424. }
  425. }
  426. break;
  427. case GEARMAN_COMMAND_OPTION_REQ:
  428. {
  429. char option[GEARMAND_OPTION_SIZE];
  430. /* This may not be NULL terminated, so copy to make sure it is. */
  431. int option_length= snprintf(option, sizeof(option), "%.*s",
  432. (int)(packet->arg_size[0]), (char *)(packet->arg[0]));
  433. if (option_length >= GEARMAND_OPTION_SIZE || option_length < 0)
  434. {
  435. gearmand_log_error(GEARMAN_DEFAULT_LOG_PARAM, "snprintf(%d)", option_length);
  436. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_UNKNOWN_OPTION,
  437. gearman_literal_param("Server does not recognize given option"));
  438. }
  439. if (strcasecmp(option, "exceptions") == 0)
  440. {
  441. gearmand_log_debug(GEARMAN_DEFAULT_LOG_PARAM, "'exceptions'");
  442. server_con->is_exceptions= true;
  443. }
  444. else
  445. {
  446. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_UNKNOWN_OPTION,
  447. gearman_literal_param("Server does not recognize given option"));
  448. }
  449. ret= gearman_server_io_packet_add(server_con, false, GEARMAN_MAGIC_RESPONSE,
  450. GEARMAN_COMMAND_OPTION_RES,
  451. packet->arg[0], packet->arg_size[0],
  452. NULL);
  453. if (gearmand_failed(ret))
  454. {
  455. return gearmand_gerror("gearman_server_io_packet_add", ret);
  456. }
  457. }
  458. break;
  459. /* Worker requests. */
  460. case GEARMAN_COMMAND_CAN_DO:
  461. gearmand_log_debug(GEARMAN_DEFAULT_LOG_PARAM, "Registering function: %.*s", packet->arg_size[0], packet->arg[0]);
  462. if (gearman_server_worker_add(server_con, (char *)(packet->arg[0]),
  463. packet->arg_size[0], 0) == NULL)
  464. {
  465. return GEARMAND_MEMORY_ALLOCATION_FAILURE;
  466. }
  467. break;
  468. case GEARMAN_COMMAND_CAN_DO_TIMEOUT:
  469. {
  470. if (packet->arg_size[1] > GEARMAN_MAXIMUM_INTEGER_DISPLAY_LENGTH)
  471. {
  472. return gearmand_log_gerror(GEARMAN_DEFAULT_LOG_PARAM, GEARMAND_INVALID_PACKET, "GEARMAND_INVALID_PACKET:strtol");
  473. }
  474. char strtol_buffer[GEARMAN_MAXIMUM_INTEGER_DISPLAY_LENGTH +1];
  475. memcpy(strtol_buffer, packet->arg[1], packet->arg_size[1]);
  476. strtol_buffer[packet->arg_size[1]]= 0;
  477. char *endptr;
  478. errno= 0;
  479. long timeout= strtol(strtol_buffer, &endptr, 10);
  480. if (timeout == LONG_MIN or timeout == LONG_MAX or errno != 0)
  481. {
  482. return gearmand_log_perror(GEARMAN_DEFAULT_LOG_PARAM, errno, "GEARMAN_COMMAND_CAN_DO_TIMEOUT:strtol: %s", strtol_buffer);
  483. }
  484. gearmand_log_debug(GEARMAN_DEFAULT_LOG_PARAM, "Registering function: %.*s with timeout %dl",
  485. packet->arg_size[0], packet->arg[0], timeout);
  486. if (gearman_server_worker_add(server_con, (char *)(packet->arg[0]),
  487. packet->arg_size[0] - 1,
  488. timeout) == NULL)
  489. {
  490. return GEARMAND_MEMORY_ALLOCATION_FAILURE;
  491. }
  492. }
  493. break;
  494. case GEARMAN_COMMAND_CANT_DO:
  495. gearmand_log_debug(GEARMAN_DEFAULT_LOG_PARAM, "Removing function: %.*s", packet->arg_size[0], packet->arg[0]);
  496. gearman_server_con_free_worker(server_con, (char *)(packet->arg[0]),
  497. packet->arg_size[0]);
  498. break;
  499. case GEARMAN_COMMAND_RESET_ABILITIES:
  500. gearman_server_con_free_workers(server_con);
  501. break;
  502. case GEARMAN_COMMAND_PRE_SLEEP:
  503. {
  504. gearman_server_job_st *server_job= gearman_server_job_peek(server_con);
  505. if (server_job == NULL)
  506. {
  507. server_con->is_sleeping= true;
  508. /* Remove any timeouts while sleeping */
  509. gearman_server_con_delete_timeout(server_con);
  510. }
  511. else
  512. {
  513. /* If there are jobs that could be run, queue a NOOP packet to wake the
  514. worker up. This could be the result of a race codition. */
  515. ret= gearman_server_io_packet_add(server_con, false,
  516. GEARMAN_MAGIC_RESPONSE,
  517. GEARMAN_COMMAND_NOOP, NULL);
  518. if (gearmand_failed(ret))
  519. {
  520. return gearmand_gerror("gearman_server_io_packet_add", ret);
  521. }
  522. }
  523. }
  524. break;
  525. case GEARMAN_COMMAND_GRAB_JOB:
  526. case GEARMAN_COMMAND_GRAB_JOB_UNIQ:
  527. case GEARMAN_COMMAND_GRAB_JOB_ALL:
  528. {
  529. server_con->is_sleeping= false;
  530. server_con->is_noop_sent= false;
  531. gearman_server_job_st *server_job= gearman_server_job_take(server_con);
  532. if (server_job == NULL)
  533. {
  534. /* No jobs found, queue no job packet. */
  535. ret= gearman_server_io_packet_add(server_con, false,
  536. GEARMAN_MAGIC_RESPONSE,
  537. GEARMAN_COMMAND_NO_JOB, NULL);
  538. }
  539. else if (packet->command == GEARMAN_COMMAND_GRAB_JOB_UNIQ)
  540. {
  541. /*
  542. We found a runnable job, queue job assigned packet and take the job off the queue.
  543. */
  544. ret= gearman_server_io_packet_add(server_con, false,
  545. GEARMAN_MAGIC_RESPONSE,
  546. GEARMAN_COMMAND_JOB_ASSIGN_UNIQ,
  547. server_job->job_handle, (size_t)(strlen(server_job->job_handle) + 1),
  548. server_job->function->function_name, server_job->function->function_name_size + 1,
  549. server_job->unique, (size_t)(server_job->unique_length + 1),
  550. server_job->data, server_job->data_size,
  551. NULL);
  552. }
  553. else if (packet->command == GEARMAN_COMMAND_GRAB_JOB_ALL and *server_job->reducer != '\0')
  554. {
  555. gearmand_log_debug(GEARMAN_DEFAULT_LOG_PARAM,
  556. "Sending reduce submission, Partitioner: %.*s(%lu) Reducer: %.*s(%lu) Unique: %.*s(%lu) with data sized (%lu)" ,
  557. server_job->function->function_name_size, server_job->function->function_name, server_job->function->function_name_size,
  558. strlen(server_job->reducer), server_job->reducer, strlen(server_job->reducer),
  559. server_job->unique_length, server_job->unique, server_job->unique_length,
  560. (unsigned long)server_job->data_size);
  561. /*
  562. We found a runnable job, queue job assigned packet and take the job off the queue.
  563. */
  564. ret= gearman_server_io_packet_add(server_con, false,
  565. GEARMAN_MAGIC_RESPONSE,
  566. GEARMAN_COMMAND_JOB_ASSIGN_ALL,
  567. server_job->job_handle, (size_t)(strlen(server_job->job_handle) + 1),
  568. server_job->function->function_name, server_job->function->function_name_size + 1,
  569. server_job->unique, server_job->unique_length +1,
  570. server_job->reducer, (size_t)(strlen(server_job->reducer) +1),
  571. server_job->data, server_job->data_size,
  572. NULL);
  573. }
  574. else if (packet->command == GEARMAN_COMMAND_GRAB_JOB_ALL)
  575. {
  576. /*
  577. We found a runnable job, queue job assigned packet and take the job off the queue.
  578. */
  579. ret= gearman_server_io_packet_add(server_con, false,
  580. GEARMAN_MAGIC_RESPONSE,
  581. GEARMAN_COMMAND_JOB_ASSIGN_UNIQ,
  582. server_job->job_handle, (size_t)(strlen(server_job->job_handle) +1),
  583. server_job->function->function_name, server_job->function->function_name_size +1,
  584. server_job->unique, server_job->unique_length +1,
  585. server_job->data, server_job->data_size,
  586. NULL);
  587. }
  588. else
  589. {
  590. gearmand_log_debug(GEARMAN_DEFAULT_LOG_PARAM,
  591. "Sending GEARMAN_COMMAND_JOB_ASSIGN Function: %.*s(%lu) with data sized (%lu)" ,
  592. server_job->function->function_name_size, server_job->function->function_name, server_job->function->function_name_size,
  593. (unsigned long)server_job->data_size);
  594. /* Same, but without unique ID. */
  595. ret= gearman_server_io_packet_add(server_con, false,
  596. GEARMAN_MAGIC_RESPONSE,
  597. GEARMAN_COMMAND_JOB_ASSIGN,
  598. server_job->job_handle, (size_t)(strlen(server_job->job_handle) + 1),
  599. server_job->function->function_name, server_job->function->function_name_size + 1,
  600. server_job->data, server_job->data_size,
  601. NULL);
  602. }
  603. if (gearmand_failed(ret))
  604. {
  605. gearmand_gerror("gearman_server_io_packet_add", ret);
  606. if (server_job)
  607. {
  608. return gearman_server_job_queue(server_job);
  609. }
  610. return ret;
  611. }
  612. /* Since job is assigned, we should respect function timeout */
  613. if (server_job != NULL)
  614. {
  615. gearman_server_con_add_job_timeout(server_con, server_job);
  616. }
  617. }
  618. break;
  619. case GEARMAN_COMMAND_WORK_DATA:
  620. case GEARMAN_COMMAND_WORK_WARNING:
  621. {
  622. gearman_server_job_st *server_job= gearman_server_job_get(Server,
  623. (char *)(packet->arg[0]), (size_t)strlen(packet->arg[0]),
  624. server_con);
  625. if (server_job == NULL)
  626. {
  627. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_JOB_NOT_FOUND, gearman_literal_param("Job does not exist on server"));
  628. }
  629. /* Queue the data/warning packet for all clients. */
  630. ret= _server_queue_work_data(server_job, packet, packet->command);
  631. if (gearmand_failed(ret))
  632. {
  633. return gearmand_gerror("_server_queue_work_data", ret);
  634. }
  635. }
  636. break;
  637. case GEARMAN_COMMAND_WORK_STATUS:
  638. {
  639. gearman_server_job_st *server_job= gearman_server_job_get(Server,
  640. (char *)(packet->arg[0]), (size_t)strlen(packet->arg[0]),
  641. server_con);
  642. if (server_job == NULL)
  643. {
  644. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_JOB_NOT_FOUND,
  645. gearman_literal_param("Job given in work result not found"));
  646. }
  647. /* Update job status. */
  648. server_job->numerator= (uint32_t)atoi((char *)(packet->arg[1]));
  649. /* This may not be NULL terminated, so copy to make sure it is. */
  650. char denominator_buffer[11]; /* Max string size to hold a uint32_t. */
  651. int denominator_buffer_length= snprintf(denominator_buffer, sizeof(denominator_buffer), "%.*s",
  652. (int)(packet->arg_size[2]),
  653. (char *)(packet->arg[2]));
  654. if ((size_t)denominator_buffer_length > sizeof(denominator_buffer) || denominator_buffer_length < 0)
  655. {
  656. gearmand_log_error(GEARMAN_DEFAULT_LOG_PARAM, "snprintf(%d)", denominator_buffer_length);
  657. return GEARMAND_MEMORY_ALLOCATION_FAILURE;
  658. }
  659. server_job->denominator= (uint32_t)atoi(denominator_buffer);
  660. /* Queue the status packet for all clients. */
  661. for (server_client= server_job->client_list; server_client;
  662. server_client= server_client->job_next)
  663. {
  664. ret= gearman_server_io_packet_add(server_client->con, false,
  665. GEARMAN_MAGIC_RESPONSE,
  666. GEARMAN_COMMAND_WORK_STATUS,
  667. packet->arg[0], packet->arg_size[0],
  668. packet->arg[1], packet->arg_size[1],
  669. packet->arg[2], packet->arg_size[2],
  670. NULL);
  671. if (gearmand_failed(ret))
  672. {
  673. gearmand_log_gerror_warn(GEARMAN_DEFAULT_LOG_PARAM, ret, "Failed to send WORK_STATUS packet to %s:%s", server_client->con->host(), server_client->con->port());
  674. }
  675. }
  676. }
  677. break;
  678. case GEARMAN_COMMAND_WORK_COMPLETE:
  679. {
  680. gearman_server_job_st *server_job= gearman_server_job_get(Server,
  681. (char *)(packet->arg[0]), (size_t)strlen(packet->arg[0]),
  682. server_con);
  683. if (server_job == NULL)
  684. {
  685. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_JOB_NOT_FOUND, gearman_literal_param("Job given in work result not found"));
  686. }
  687. /* Queue the complete packet for all clients. */
  688. ret= _server_queue_work_data(server_job, packet,
  689. GEARMAN_COMMAND_WORK_COMPLETE);
  690. if (gearmand_failed(ret))
  691. {
  692. return gearmand_gerror("_server_queue_work_data", ret);
  693. }
  694. /* Remove from persistent queue if one exists. */
  695. if (server_job->job_queued)
  696. {
  697. ret= gearman_queue_done(Server,
  698. server_job->unique,
  699. server_job->unique_length,
  700. server_job->function->function_name,
  701. server_job->function->function_name_size);
  702. if (gearmand_failed(ret))
  703. {
  704. return gearmand_gerror("Remove from persistent queue", ret);
  705. }
  706. }
  707. /* Job is done, remove it. */
  708. gearman_server_job_free(server_job);
  709. }
  710. break;
  711. case GEARMAN_COMMAND_WORK_EXCEPTION:
  712. {
  713. gearman_server_job_st *server_job= gearman_server_job_get(Server,
  714. (char *)(packet->arg[0]), (size_t)strlen(packet->arg[0]),
  715. server_con);
  716. if (server_job == NULL)
  717. {
  718. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_JOB_NOT_FOUND,
  719. gearman_literal_param("An exception was received for a job that does not exist"));
  720. }
  721. gearmand_log_debug(GEARMAN_DEFAULT_LOG_PARAM,
  722. "Exception being sent for handle: %.*s",
  723. (size_t)strlen(server_job->job_handle), server_job->job_handle);
  724. /* Queue the exception packet for all clients. */
  725. ret= _server_queue_work_data(server_job, packet, GEARMAN_COMMAND_WORK_EXCEPTION);
  726. if (gearmand_failed(ret))
  727. {
  728. return gearmand_gerror("_server_queue_work_data", ret);
  729. }
  730. /* Remove from persistent queue if one exists. */
  731. if (server_job->job_queued)
  732. {
  733. ret= gearman_queue_done(Server,
  734. server_job->unique,
  735. server_job->unique_length,
  736. server_job->function->function_name,
  737. server_job->function->function_name_size);
  738. if (gearmand_failed(ret))
  739. {
  740. return gearmand_gerror("Remove from persistent queue", ret);
  741. }
  742. }
  743. /* Job is done, remove it. */
  744. gearman_server_job_free(server_job);
  745. }
  746. break;
  747. case GEARMAN_COMMAND_WORK_FAIL:
  748. {
  749. char job_handle[GEARMAND_JOB_HANDLE_SIZE];
  750. /* This may not be NULL terminated, so copy to make sure it is. */
  751. int job_handle_length= snprintf(job_handle, GEARMAND_JOB_HANDLE_SIZE, "%.*s",
  752. (int)(packet->arg_size[0]), (char *)(packet->arg[0]));
  753. if (job_handle_length >= GEARMAND_JOB_HANDLE_SIZE || job_handle_length < 0)
  754. {
  755. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_ARGUMENT_TOO_LARGE,
  756. gearman_literal_param("Error occurred due to GEARMAND_JOB_HANDLE_SIZE being too small from snprintf"));
  757. }
  758. gearman_server_job_st *server_job= gearman_server_job_get(Server, job_handle, (size_t)job_handle_length,
  759. server_con);
  760. if (server_job == NULL)
  761. {
  762. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_JOB_NOT_FOUND,
  763. gearman_literal_param("Job given in work result not found"));
  764. }
  765. /* Queue the fail packet for all clients. */
  766. for (server_client= server_job->client_list; server_client;
  767. server_client= server_client->job_next)
  768. {
  769. ret= gearman_server_io_packet_add(server_client->con, false,
  770. GEARMAN_MAGIC_RESPONSE,
  771. GEARMAN_COMMAND_WORK_FAIL,
  772. packet->arg[0], packet->arg_size[0],
  773. NULL);
  774. if (gearmand_failed(ret))
  775. {
  776. gearmand_log_gerror_warn(GEARMAN_DEFAULT_LOG_PARAM, ret, "Failed to send WORK_FAIL packet to %s:%s", server_client->con->host(), server_client->con->port());
  777. }
  778. }
  779. /* Remove from persistent queue if one exists. */
  780. if (server_job->job_queued)
  781. {
  782. ret= gearman_queue_done(Server,
  783. server_job->unique,
  784. server_job->unique_length,
  785. server_job->function->function_name,
  786. server_job->function->function_name_size);
  787. if (gearmand_failed(ret))
  788. {
  789. return gearmand_gerror("Remove from persistent queue", ret);
  790. }
  791. }
  792. /* Job is done, remove it. */
  793. gearman_server_job_free(server_job);
  794. }
  795. break;
  796. case GEARMAN_COMMAND_SET_CLIENT_ID:
  797. gearman_server_con_set_id(server_con, (char *)(packet->arg[0]),
  798. packet->arg_size[0]);
  799. break;
  800. case GEARMAN_COMMAND_TEXT:
  801. return server_run_text(server_con, packet);
  802. case GEARMAN_COMMAND_UNUSED:
  803. case GEARMAN_COMMAND_NOOP:
  804. case GEARMAN_COMMAND_JOB_CREATED:
  805. case GEARMAN_COMMAND_NO_JOB:
  806. case GEARMAN_COMMAND_JOB_ASSIGN:
  807. case GEARMAN_COMMAND_ECHO_RES:
  808. case GEARMAN_COMMAND_ERROR:
  809. case GEARMAN_COMMAND_STATUS_RES:
  810. case GEARMAN_COMMAND_ALL_YOURS:
  811. case GEARMAN_COMMAND_OPTION_RES:
  812. case GEARMAN_COMMAND_SUBMIT_JOB_SCHED:
  813. case GEARMAN_COMMAND_JOB_ASSIGN_UNIQ:
  814. case GEARMAN_COMMAND_JOB_ASSIGN_ALL:
  815. case GEARMAN_COMMAND_MAX:
  816. case GEARMAN_COMMAND_STATUS_RES_UNIQUE:
  817. default:
  818. return _server_error_packet(GEARMAN_DEFAULT_LOG_PARAM, server_con, GEARMAN_INVALID_COMMAND, gearman_literal_param("Command not expected"));
  819. }
  820. return GEARMAND_SUCCESS;
  821. }
  822. gearmand_error_t gearman_server_shutdown_graceful(gearman_server_st *server)
  823. {
  824. server->shutdown_graceful= true;
  825. if (server->job_count == 0)
  826. {
  827. return GEARMAND_SHUTDOWN;
  828. }
  829. return GEARMAND_SHUTDOWN_GRACEFUL;
  830. }
  831. static gearmand_error_t gearman_queue_replay(gearman_server_st& server)
  832. {
  833. assert(server.state.queue_startup == true);
  834. if (server.queue_version == QUEUE_VERSION_FUNCTION)
  835. {
  836. assert(server.queue.functions->_replay_fn);
  837. return (*(server.queue.functions->_replay_fn))(&server,
  838. (void *)server.queue.functions->_context,
  839. gearmand::queue::Context::replay_add,
  840. &server);
  841. }
  842. assert(server.queue.object);
  843. return server.queue.object->replay(&server);
  844. }
  845. gearmand_error_t gearman_server_queue_replay(gearman_server_st& server)
  846. {
  847. server.state.queue_startup= true;
  848. gearmand_error_t ret= gearman_queue_replay(server);
  849. assert(ret != GEARMAND_UNKNOWN_STATE);
  850. server.state.queue_startup= false;
  851. return ret;
  852. }
  853. void *gearman_server_queue_context(const gearman_server_st *server)
  854. {
  855. if (server->queue_version == QUEUE_VERSION_FUNCTION)
  856. {
  857. return (void *)server->queue.functions->_context;
  858. }
  859. return NULL;
  860. }
  861. namespace gearmand {
  862. namespace queue {
  863. gearmand_error_t Context::replay_add(gearman_server_st *server,
  864. void*, // context
  865. const char *unique, size_t unique_size,
  866. const char *function_name, size_t function_name_size,
  867. const void *data, size_t data_size,
  868. gearman_job_priority_t priority,
  869. int64_t when)
  870. {
  871. assert(server->state.queue_startup == true);
  872. gearmand_error_t ret= GEARMAND_UNKNOWN_STATE;
  873. (void)gearman_server_job_add(server,
  874. function_name, function_name_size,
  875. unique, unique_size,
  876. data, data_size, priority, NULL, &ret, when);
  877. if (gearmand_failed(ret))
  878. {
  879. gearmand_gerror("gearman_server_job_add", ret);
  880. }
  881. return ret;
  882. }
  883. } // namespace queue
  884. } // namespace gearmand
  885. /*
  886. * Private definitions
  887. */
  888. static gearmand_error_t
  889. _server_queue_work_data(gearman_server_job_st *server_job,
  890. gearmand_packet_st *packet, const gearman_command_t command)
  891. {
  892. for (gearman_server_client_st* server_client= server_job->client_list; server_client;
  893. server_client= server_client->job_next)
  894. {
  895. gearmand_error_t ret;
  896. if (command == GEARMAN_COMMAND_WORK_EXCEPTION and (server_client->con->is_exceptions == false))
  897. {
  898. ret= gearman_server_io_packet_add(server_client->con, true,
  899. GEARMAN_MAGIC_RESPONSE, GEARMAN_COMMAND_WORK_FAIL,
  900. packet->arg[0], packet->arg_size[0], NULL);
  901. }
  902. else
  903. {
  904. uint8_t *data;
  905. if (packet->data_size > 0)
  906. {
  907. if (packet->options.free_data and
  908. server_client->job_next == NULL)
  909. {
  910. data= (uint8_t *)(packet->data);
  911. packet->options.free_data= false;
  912. }
  913. else
  914. {
  915. data= (uint8_t *)realloc(NULL, packet->data_size);
  916. if (data == NULL)
  917. {
  918. return gearmand_perror(errno, "realloc");
  919. }
  920. memcpy(data, packet->data, packet->data_size);
  921. }
  922. }
  923. else
  924. {
  925. data= NULL;
  926. }
  927. ret= gearman_server_io_packet_add(server_client->con, true,
  928. GEARMAN_MAGIC_RESPONSE, command,
  929. packet->arg[0], packet->arg_size[0],
  930. data, packet->data_size, NULL);
  931. }
  932. if (gearmand_failed(ret))
  933. {
  934. gearmand_log_gerror_warn(GEARMAN_DEFAULT_LOG_PARAM, ret, "Failed to send WORK_FAIL packet to %s:%s", server_client->con->host(), server_client->con->port());
  935. }
  936. }
  937. return GEARMAND_SUCCESS;
  938. }