log_producer_manager.cpp 30 KB

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  1. #include "log_producer_manager.h"
  2. #include "inner_log.h"
  3. //#include "md5.h"
  4. #include "sds.h"
  5. #include "baseFun.h"
  6. // change from 100ms to 1000s, reduce wake up when app switch to back
  7. #define LOG_PRODUCER_FLUSH_INTERVAL_MS 100
  8. #define LOG_PRODUCER_READ_INTERVAL_MS 100
  9. #define MAX_LOGGROUP_QUEUE_SIZE 1024
  10. #define MIN_LOGGROUP_QUEUE_SIZE 128
  11. #define MAX_MANAGER_FLUSH_COUNT 100 // 10MS * 100
  12. #define MAX_SENDER_FLUSH_COUNT 100 // 10ms * 100
  13. log_producer_manager* g_producer_manager[10];
  14. int producer_manager_num = 0;
  15. void _try_flush_loggroup(log_producer_manager* producer_manager)
  16. {
  17. int loggroup_size;
  18. int rst;
  19. int32_t now_time = time(NULL);
  20. CS_ENTER(producer_manager->lock);
  21. if (producer_manager->builder != NULL)
  22. {
  23. log_group_builder* builder = producer_manager->builder;
  24. producer_manager->builder = NULL;
  25. CS_LEAVE(producer_manager->lock);
  26. loggroup_size = builder->loggroup_size;
  27. rst = log_queue_push(producer_manager->loggroup_queue, builder);
  28. //aos_debug_log((LB, "try push loggroup to flusher, size : %d, status : %d", (int)loggroup_size, rst));
  29. if (rst != 0)
  30. {
  31. aos_error_log((LB, "try push loggroup to flusher failed, force drop this log group, error code : %d", rst));
  32. if (producer_manager->send_done_function != NULL)
  33. {
  34. producer_manager->send_done_function(LOG_PRODUCER_DROP_ERROR, loggroup_size, 0,
  35. NULL, "try push loggroup to flusher failed, force drop this log group", NULL, producer_manager->user_param);
  36. }
  37. log_group_destroy(builder);
  38. }
  39. else
  40. {
  41. producer_manager->totalBufferSize += loggroup_size;
  42. COND_SIGNAL(producer_manager->triger_cond);
  43. }
  44. }
  45. else
  46. {
  47. CS_LEAVE(producer_manager->lock);
  48. }
  49. }
  50. #ifdef WIN32
  51. //从db中读取log
  52. DWORD WINAPI log_producer_read_persistent_thread(LPVOID param)
  53. #else
  54. //从db中读取log
  55. void* log_producer_read_persistent_thread(void* param)
  56. #endif
  57. {
  58. int i = 0;
  59. int forceClean = 0;
  60. int32_t sleepMs = LOG_PRODUCER_READ_INTERVAL_MS;
  61. log_group_builder* builder = NULL;
  62. log_producer_manager* producer_manager = (log_producer_manager*)param;
  63. log_persistent_manager* persistent_manager;
  64. log_producer_config* config = producer_manager->producer_config;
  65. aos_info_log((LB, "start run read persistent thread"));
  66. while (producer_manager->shutdown == 0) {
  67. i = 0;
  68. for (i = 0; i < sleepMs; i += LOG_PRODUCER_READ_INTERVAL_MS)
  69. {
  70. #ifdef WIN32
  71. Sleep(LOG_PRODUCER_READ_INTERVAL_MS);
  72. #else
  73. usleep(LOG_PRODUCER_READ_INTERVAL_MS * 1000);
  74. #endif
  75. }
  76. do {
  77. // if send queue is full, skip pack and send data
  78. CS_ENTER(producer_manager->lock);
  79. if (producer_manager->send_param_queue_write - producer_manager->send_param_queue_read >= producer_manager->send_param_queue_size)
  80. {
  81. aos_debug_log((LB, "send queue is full, send queue write : %d, send queue read : %d, skip pack and send data",
  82. producer_manager->send_param_queue_write, producer_manager->send_param_queue_read));
  83. CS_LEAVE(producer_manager->lock);
  84. sleepMs = LOG_PRODUCER_READ_INTERVAL_MS;
  85. break;
  86. }
  87. CS_LEAVE(producer_manager->lock);
  88. if (config->endpoint == NULL ||
  89. config->skyeye_user_topic == NULL ||
  90. config->skyeye_sys_topic == NULL ||
  91. config->beidou_topic == NULL ||
  92. config->business_user_topic == NULL ||
  93. config->business_sys_topic == NULL ||
  94. config->vtmweb_topic == NULL) {
  95. aos_debug_log((LB, "endpoint is NULL, skip pack and send data"));
  96. sleepMs = LOG_PRODUCER_READ_INTERVAL_MS;
  97. break;
  98. }
  99. //get send data from persistent
  100. persistent_manager = producer_manager->persistent_manager;
  101. if (persistent_manager != NULL) {
  102. CS_ENTER(persistent_manager->lock);
  103. builder = log_persistent_manager_get_log(persistent_manager);//从db中读取log,数量为logCountPerPackage
  104. CS_LEAVE(persistent_manager->lock);
  105. if (builder != NULL) {
  106. int i = 0;
  107. int n_logs = 0;
  108. char modular[MAX_PATH] = { 0 };
  109. char uuid[MAX_LOG_COUNT][MAX_UUID_LEN] = { 0 };
  110. lz4_log_buf* lz4_buf = NULL;
  111. //缓存uuid和n_logs、modular
  112. for (i = 0; i < builder->grp->n_logs; i++) {
  113. strcpy(uuid[i], builder->grp->logs[i].uuid);
  114. }
  115. n_logs = builder->grp->n_logs;
  116. if (n_logs > 0) {
  117. sleepMs = config->logCountPerPackage / n_logs * LOG_PRODUCER_READ_INTERVAL_MS;
  118. }
  119. strcpy(modular, builder->modular);
  120. aos_debug_log((LB, "get from persistent log count : %d.", n_logs));
  121. // process data
  122. CS_ENTER(producer_manager->lock);
  123. producer_manager->totalBufferSize -= builder->loggroup_size;
  124. CS_LEAVE(producer_manager->lock);
  125. //添加terminalNo, SN, 效率贼低
  126. if (config->skyeyeTerminalNo != NULL) {
  127. add_log_terminal_no(builder, config->skyeyeTerminalNo);
  128. }
  129. if (config->skyeyeSn != NULL) {
  130. static char local_ip_str[64] = "0.0.0.0";
  131. static long ipInit = 0;
  132. //get ip every 1000 times
  133. if (ipInit % 1000 == 0)
  134. GetLocalIP(local_ip_str);
  135. ipInit++;
  136. add_log_terminal_sn_other(builder, config->skyeyeSn, local_ip_str);
  137. }
  138. clear_errJson_msg(builder);
  139. // check compress type
  140. if (config->compressType == 1)//是否压缩
  141. lz4_buf = serialize_to_proto_buf_with_malloc_lz4(builder);
  142. else
  143. lz4_buf = serialize_to_proto_buf_with_malloc_no_lz4(builder);
  144. if (lz4_buf == NULL)
  145. {
  146. aos_error_log((LB, "serialize loggroup to proto buf with lz4 failed"));
  147. if (producer_manager->send_done_function)
  148. {
  149. producer_manager->send_done_function(LOG_PRODUCER_DROP_ERROR, builder->loggroup_size, 0,
  150. NULL, "serialize loggroup to proto buf with lz4 failed", NULL, producer_manager->user_param);
  151. }
  152. if (producer_manager->uuid_send_done_function != NULL)
  153. {
  154. producer_manager->uuid_send_done_function(LOG_PRODUCER_INVALID,
  155. builder->loggroup_size, 0, NULL, "invalid send param, magic num not found", NULL,
  156. producer_manager->uuid_user_param, builder->grp->n_logs, uuid, builder->modular);//send_done后执行删除对应uuid的数据
  157. }
  158. }
  159. else
  160. {
  161. log_producer_send_param* send_param;
  162. CS_ENTER(producer_manager->lock);
  163. producer_manager->totalBufferSize += lz4_buf->length;//添加了额外字段、压缩后,最终长度
  164. send_param = create_log_producer_send_param(config, producer_manager, lz4_buf, builder);
  165. /*
  166. int i = 0;
  167. for (i = 0; i < send_param->log_buf->n_logs; i++)
  168. {
  169. char uuid[MAX_UUID_LEN];
  170. memset(uuid, 0, MAX_UUID_LEN);
  171. memcpy(uuid, send_param->log_buf->uuid[i], MAX_UUID_LEN);
  172. send_log_data("http://127.0.0.1:9000/read_uuid", uuid);
  173. }
  174. */
  175. producer_manager->send_param_queue[producer_manager->send_param_queue_write++ % producer_manager->send_param_queue_size] = send_param;//放入发送队列
  176. CS_LEAVE(producer_manager->lock);
  177. }
  178. log_group_destroy(builder);
  179. //set log status to sending
  180. CS_ENTER(persistent_manager->lock);
  181. log_persistent_manager_updata_log_status(persistent_manager, modular, n_logs, uuid, LOG_DB_STATUS_SENDING); //更新数据状态为sending
  182. CS_LEAVE(persistent_manager->lock);
  183. /** 每次都是24 [Gifur@2022720]*/
  184. persistent_manager->SendLogCount += n_logs;
  185. aos_debug_log((LB, "get from persistent, send log count : %d.", persistent_manager->SendLogCount));
  186. CS_ENTER(persistent_manager->lock);
  187. if (forceClean || persistent_manager->SendLogCount - persistent_manager->LastCleanLogCount > 5000) {//每5000条清理一次
  188. log_persistent_manager_clean(persistent_manager, modular);
  189. persistent_manager->LastCleanLogCount = persistent_manager->SendLogCount;
  190. forceClean = 0;
  191. }
  192. else
  193. {
  194. int count = db_get_count(persistent_manager->db_manager);
  195. if(count > (persistent_manager->config->maxPersistentLogCount + 1000))
  196. {
  197. log_persistent_manager_clean(persistent_manager, modular);
  198. persistent_manager->LastCleanLogCount = persistent_manager->SendLogCount;
  199. }
  200. }
  201. CS_LEAVE(persistent_manager->lock);
  202. continue;
  203. }
  204. else {
  205. if ((producer_manager->send_param_queue_write - producer_manager->send_param_queue_read) < producer_manager->send_param_queue_size)
  206. {
  207. sleepMs = 600 * LOG_PRODUCER_READ_INTERVAL_MS;//60s send once if can not get enough
  208. forceClean = 1;
  209. }
  210. else
  211. sleepMs = 3 * LOG_PRODUCER_READ_INTERVAL_MS;//普通暂停时间,等待发送线程发送
  212. //aos_debug_log((LB, "get from persistent is null."));
  213. break;
  214. }
  215. }
  216. break;
  217. } while (1);
  218. // send data
  219. CS_ENTER(producer_manager->lock);
  220. if (producer_manager->send_threads != NULL)
  221. {//spshell.exe, with send threads
  222. // if send thread count > 0, we just push send_param to sender queue
  223. while (producer_manager->send_param_queue_write > producer_manager->send_param_queue_read && !log_queue_isfull(producer_manager->sender_data_queue))
  224. {
  225. log_producer_send_param* send_param = producer_manager->send_param_queue[producer_manager->send_param_queue_read++ % producer_manager->send_param_queue_size];
  226. // push always success
  227. log_queue_push(producer_manager->sender_data_queue, send_param);//往发送队列存
  228. }
  229. }
  230. else if (producer_manager->send_param_queue_write > producer_manager->send_param_queue_read)
  231. {
  232. //sphost.exe ,no send threads
  233. // if no sender thread, we send this packet out in flush thread
  234. log_producer_send_param* send_param = producer_manager->send_param_queue[producer_manager->send_param_queue_read++ % producer_manager->send_param_queue_size];
  235. log_producer_send_data(send_param);
  236. }
  237. CS_LEAVE(producer_manager->lock);
  238. }
  239. aos_info_log((LB, "exit read persistent thread"));
  240. return 0;
  241. }
  242. #ifdef WIN32
  243. DWORD WINAPI log_producer_write_persistent_thread(LPVOID param)
  244. #else
  245. //队列取数据,写入db
  246. void* log_producer_write_persistent_thread(void* param)
  247. #endif
  248. {
  249. int lens;
  250. int first_process = 1;
  251. int32_t now;
  252. int32_t last_write_time = (int32_t)time(NULL);
  253. shareq_frame share_frame = {0};
  254. serialize_buf buf;
  255. memset(&buf, 0, sizeof(serialize_buf));
  256. int t_count = 0;
  257. int discardMsg = 0;
  258. log_producer_manager* producer_manager = (log_producer_manager*)param;
  259. log_persistent_manager* persistent_manager;
  260. share_frame.data = reinterpret_cast<unsigned char *>(&buf);
  261. aos_info_log((LB, "start run write persistent thread"));
  262. while (producer_manager->shutdown == 0)
  263. {
  264. int count = 0;
  265. CS_ENTER(producer_manager->lock);
  266. COND_WAIT_TIME(producer_manager->triger_cond, producer_manager->lock,LOG_PRODUCER_FLUSH_INTERVAL_MS);
  267. CS_LEAVE(producer_manager->lock);
  268. persistent_manager = producer_manager->persistent_manager;
  269. if (persistent_manager == NULL) {
  270. continue;
  271. }
  272. //第一次执行清理
  273. if (producer_manager->producer_config->enableGuarder && first_process) {
  274. int recoverRst;
  275. CS_ENTER(persistent_manager->lock);
  276. recoverRst = log_persistent_manager_recover(persistent_manager);
  277. if (recoverRst != 0)
  278. {
  279. aos_error_log((LB, "recover log persistent manager failed, result %d",
  280. recoverRst));
  281. }
  282. else
  283. {
  284. aos_info_log((LB, "recover log persistent manager success"));
  285. }
  286. CS_LEAVE(persistent_manager->lock);
  287. first_process = 0;
  288. }
  289. //huchen add,注意事务不能被其他线程打断,通过lock保证事务执行完成
  290. CS_ENTER(persistent_manager->lock);
  291. lens = ClibsharequeueGetLens(producer_manager->share_queue);
  292. now = time(NULL);
  293. if ((lens < MAX_SHAREQUEUE_LENS / 4) && (now - last_write_time < 1)) {//每1s执行一次事务
  294. CS_LEAVE(persistent_manager->lock);
  295. continue;
  296. }
  297. aos_debug_log((LB, "get from share queue log count : %d.", lens));
  298. t_count = db_get_count(persistent_manager->db_manager);
  299. if (t_count > (persistent_manager->config->maxPersistentLogCount + 2000)) {
  300. discardMsg = 1;
  301. g_discardMsgNum_since_full = g_discardMsgNum_since_full + 1;
  302. aos_warn_log((LB, "give up the db content, bcz db count %d exceeds max count %d", t_count, persistent_manager->config->maxPersistentLogCount));
  303. }
  304. else {
  305. discardMsg = 0;
  306. }
  307. // try read queue
  308. do
  309. {
  310. int result;
  311. //get send data from share buffer
  312. memset(share_frame.data, 0, sizeof(serialize_buf));
  313. result = ClibsharequeueGetAndDel(producer_manager->share_queue, &share_frame);
  314. if (result == 1)
  315. {
  316. if (discardMsg)
  317. continue;
  318. if (count == 0) {
  319. result = log_persistent_manager_transaction_begin(persistent_manager);
  320. if (result != LOG_PRODUCER_OK) {
  321. aos_warn_log((LB, "get from share queue, uuid %s begin failed.", buf.uuid));
  322. }
  323. result = log_persistent_manager_save_log(persistent_manager, (serialize_buf*)share_frame.data);
  324. if (result != LOG_PRODUCER_OK) {
  325. aos_warn_log((LB, "get from share queue, uuid %s save failed.", buf.uuid));
  326. }
  327. }
  328. else {
  329. result = log_persistent_manager_save_log(persistent_manager, (serialize_buf*)share_frame.data);
  330. if (result != LOG_PRODUCER_OK) {
  331. aos_warn_log((LB, "get from share queue, uuid %s save failed.", buf.uuid));
  332. }
  333. }
  334. count++;
  335. continue;
  336. }
  337. if (count > 0) {
  338. result = log_persistent_manager_transaction_commit(persistent_manager);
  339. if (result != LOG_PRODUCER_OK) {
  340. aos_warn_log((LB, "get from share queue, uuid %s commit failed.", buf.uuid));
  341. }
  342. }
  343. last_write_time = time(NULL);
  344. //aos_debug_log((LB, "get from share queue is null."));
  345. break;
  346. } while (1);
  347. CS_LEAVE(persistent_manager->lock);
  348. // if no job, check now loggroup
  349. _try_flush_loggroup(producer_manager);
  350. }
  351. aos_info_log((LB, "exit write persistent thread"));
  352. return 0;
  353. }
  354. #ifdef WIN32
  355. DWORD WINAPI log_producer_flush_thread(LPVOID param) //flush the log to spshell
  356. #else
  357. void* log_producer_flush_thread(void* param)
  358. #endif
  359. {
  360. while(1)
  361. {
  362. int i = 0;
  363. for(i =0; i < producer_manager_num; i++)
  364. {
  365. void* data = NULL;
  366. shareq_frame frame = { 0 };
  367. serialize_buf buf;
  368. memset(&buf, 0, sizeof(serialize_buf));
  369. log_producer_manager* producer_manager = (log_producer_manager*)g_producer_manager[i];
  370. log_persistent_manager* persistent_manager;
  371. frame.data = (unsigned char*)&buf;
  372. aos_info_log((LB, "start run flusher thread"));
  373. persistent_manager = producer_manager->persistent_manager;
  374. if (persistent_manager == NULL || producer_manager->shutdown == 1) {
  375. continue;
  376. }
  377. do
  378. {
  379. //get send data from buffer
  380. data = log_queue_trypop(producer_manager->loggroup_queue);
  381. if (data != NULL)
  382. {
  383. int insert_result = 0;
  384. log_group_builder* builder = (log_group_builder*)data;
  385. memset(frame.data, 0, sizeof(serialize_buf));
  386. serialize_to_buf(&builder->grp->logs[0], (serialize_buf*)frame.data);
  387. frame.size = sizeof(serialize_buf);
  388. CS_ENTER(persistent_manager->lock);
  389. insert_result = ClibsharequeueInsert(producer_manager->share_queue, &frame, 0);
  390. CS_LEAVE(persistent_manager->lock);
  391. if (insert_result == 0) {
  392. aos_warn_log((LB, "get from queue, uuid %s insert failed.", buf.uuid));
  393. }
  394. log_group_destroy(builder);
  395. continue;
  396. }
  397. //aos_debug_log((LB, "get from queue is null."));
  398. break;
  399. } while (1);
  400. // if no job, check now loggroup
  401. _try_flush_loggroup(producer_manager);
  402. }
  403. Sleep(100);
  404. }
  405. aos_info_log((LB, "exit flusher thread"));
  406. return 0;
  407. }
  408. log_producer_manager* create_log_producer_manager(log_producer_config* producer_config)
  409. {
  410. int32_t base_queue_size;
  411. log_producer_manager* producer_manager;
  412. static int isFlushThreadExist = 0;
  413. producer_manager = g_producer_manager[producer_manager_num] = (log_producer_manager*)malloc(sizeof(log_producer_manager));
  414. memset(producer_manager, 0, sizeof(log_producer_manager));
  415. producer_manager->producer_config = producer_config;
  416. base_queue_size = producer_config->maxBufferBytes / (producer_config->logBytesPerPackage + 1) + 10;
  417. if (base_queue_size < MIN_LOGGROUP_QUEUE_SIZE)
  418. {
  419. base_queue_size = MIN_LOGGROUP_QUEUE_SIZE;
  420. }
  421. else if (base_queue_size > MAX_LOGGROUP_QUEUE_SIZE)
  422. {
  423. base_queue_size = MAX_LOGGROUP_QUEUE_SIZE;
  424. }
  425. producer_manager->loggroup_queue = log_queue_create(base_queue_size);
  426. if (producer_config->useMemoryType == 0) {
  427. producer_manager->share_queue = ClibsharequeueCreate2("RVC_LOG_SDK_QUEUE");
  428. } else {
  429. producer_manager->share_queue = ClibsharequeueCreate3("RVC_LOG_SDK_QUEUE", 1);
  430. }
  431. producer_manager->send_param_queue_size = base_queue_size * 2;
  432. producer_manager->send_param_queue = (log_producer_send_param**)malloc(sizeof(log_producer_send_param*) * producer_manager->send_param_queue_size);
  433. producer_manager->triger_cond = CreateCond();
  434. producer_manager->lock = CreateCriticalSection();
  435. producer_manager_num++;
  436. if (!isFlushThreadExist)
  437. {
  438. isFlushThreadExist = 1;
  439. THREAD_INIT(producer_manager->flush_thread, log_producer_flush_thread, NULL);//以当前情况,无法减少这个flush线程,因为是跟producer_config绑定的
  440. }
  441. //huchen add for only Guarder has read 、flush and send thread
  442. if (producer_config->enableGuarder){//create upload part
  443. aos_debug_log((LB, "to create send&read&write thread %d", producer_config->sendThreadCount));
  444. if (producer_config->sendThreadCount > 0)
  445. {
  446. int32_t threadId;
  447. producer_manager->multi_thread_send_count = 0;
  448. producer_manager->send_threads = (THREAD*)malloc(sizeof(THREAD) * producer_config->sendThreadCount);
  449. producer_manager->sender_data_queue = log_queue_create(base_queue_size * 2);
  450. threadId = 0;
  451. for (; threadId < producer_manager->producer_config->sendThreadCount; ++threadId)
  452. {
  453. THREAD_INIT(producer_manager->send_threads[threadId], log_producer_send_thread, producer_manager);
  454. }
  455. producer_manager->read_thread = (THREAD*)malloc(sizeof(THREAD));
  456. aos_debug_log((LB, "to create read thread"));
  457. THREAD_INIT(producer_manager->read_thread, log_producer_read_persistent_thread, producer_manager);
  458. producer_manager->write_thread = (THREAD*)malloc(sizeof(THREAD));
  459. aos_debug_log((LB, "to create write thread"));
  460. THREAD_INIT(producer_manager->write_thread, log_producer_write_persistent_thread, producer_manager);
  461. }
  462. }
  463. aos_debug_log((LB, "create log producer manager, base_queue_size %d, name: %s", base_queue_size, producer_manager->producer_config->skyeyeEntityName));
  464. return producer_manager;
  465. }
  466. void _push_last_loggroup(log_producer_manager* manager)
  467. {
  468. log_group_builder* builder;
  469. CS_ENTER(manager->lock);
  470. builder = manager->builder;
  471. manager->builder = NULL;
  472. if (builder != NULL)
  473. {
  474. int32_t status;
  475. size_t loggroup_size = builder->loggroup_size;
  476. aos_debug_log((LB, "try push loggroup to flusher, size : %d", (int)builder->loggroup_size));
  477. status = log_queue_push(manager->loggroup_queue, builder);
  478. if (status != 0)
  479. {
  480. aos_error_log((LB, "try push loggroup to flusher failed, force drop this log group, error code : %d", status));
  481. log_group_destroy(builder);
  482. }
  483. else
  484. {
  485. manager->totalBufferSize += loggroup_size;
  486. COND_SIGNAL(manager->triger_cond);
  487. }
  488. }
  489. CS_LEAVE(manager->lock);
  490. }
  491. void destroy_log_producer_manager(log_producer_manager* manager)
  492. {
  493. int32_t total_wait_count;
  494. int waitCount = 0;
  495. // when destroy instance, flush last loggroup
  496. _push_last_loggroup(manager);
  497. aos_info_log((LB, "flush out producer loggroup begin"));
  498. total_wait_count = manager->producer_config->destroyFlusherWaitTimeoutSec > 0 ? manager->producer_config->destroyFlusherWaitTimeoutSec * 100 : MAX_MANAGER_FLUSH_COUNT;
  499. total_wait_count += manager->producer_config->destroySenderWaitTimeoutSec > 0 ? manager->producer_config->destroySenderWaitTimeoutSec * 100 : MAX_SENDER_FLUSH_COUNT;
  500. #ifdef WIN32
  501. Sleep(10);
  502. #else
  503. usleep(10 * 1000);
  504. #endif
  505. while (log_queue_size(manager->loggroup_queue) > 0 ||
  506. manager->send_param_queue_write - manager->send_param_queue_read > 0 ||
  507. (manager->sender_data_queue != NULL && log_queue_size(manager->sender_data_queue) > 0))
  508. {
  509. #ifdef WIN32
  510. Sleep(10);
  511. #else
  512. usleep(10 * 1000);
  513. #endif
  514. if (++waitCount == total_wait_count)
  515. {
  516. break;
  517. }
  518. }
  519. if (waitCount == total_wait_count)
  520. {
  521. aos_error_log((LB, "try flush out producer loggroup error, force exit, now loggroup %d", (int)(log_queue_size(manager->loggroup_queue))));
  522. }
  523. else
  524. {
  525. aos_info_log((LB, "flush out producer loggroup success"));
  526. }
  527. manager->shutdown = 1;
  528. // destroy root resources
  529. COND_SIGNAL(manager->triger_cond);
  530. if (manager->write_thread != NULL)
  531. {
  532. aos_info_log((LB, "join write thread begin"));
  533. THREAD_JOIN(manager->write_thread);
  534. free(manager->write_thread);
  535. manager->write_thread = NULL;
  536. aos_info_log((LB, "join write thread success"));
  537. }
  538. if (manager->read_thread != NULL)
  539. {
  540. aos_info_log((LB, "join read thread begin"));
  541. THREAD_JOIN(manager->read_thread);
  542. free(manager->read_thread);
  543. manager->read_thread = NULL;
  544. aos_info_log((LB, "join read thread success"));
  545. }
  546. aos_info_log((LB, "join flush thread begin"));
  547. THREAD_JOIN(manager->flush_thread);
  548. aos_info_log((LB, "join flush thread success"));
  549. if (manager->send_threads != NULL)
  550. {
  551. int32_t threadId;
  552. aos_info_log((LB, "join sender thread pool begin"));
  553. threadId = 0;
  554. for (; threadId < manager->producer_config->sendThreadCount; ++threadId)
  555. {
  556. THREAD_JOIN(manager->send_threads[threadId]);
  557. }
  558. free(manager->send_threads);
  559. manager->send_threads = NULL;
  560. aos_info_log((LB, "join sender thread pool success"));
  561. }
  562. DeleteCond(manager->triger_cond);
  563. log_queue_destroy(manager->loggroup_queue);
  564. ClibsharequeueDestroy(manager->share_queue);
  565. if (manager->sender_data_queue != NULL)
  566. {
  567. aos_info_log((LB, "flush out sender queue begin"));
  568. while (log_queue_size(manager->sender_data_queue) > 0)
  569. {
  570. void* send_param = log_queue_trypop(manager->sender_data_queue);
  571. if (send_param != NULL)
  572. {
  573. log_producer_send_fun(send_param);
  574. }
  575. }
  576. log_queue_destroy(manager->sender_data_queue);
  577. aos_info_log((LB, "flush out sender queue success"));
  578. }
  579. ReleaseCriticalSection(manager->lock);
  580. if (manager->send_param_queue != NULL)
  581. {
  582. free(manager->send_param_queue);
  583. manager->send_param_queue = NULL;
  584. }
  585. free(manager);
  586. //TODO
  587. //g_producer_manager[producer_manager_num]
  588. }
  589. #define LOG_PRODUCER_MANAGER_ADD_LOG_BEGIN CS_ENTER(producer_manager->lock); \
  590. if (producer_manager->builder == NULL) \
  591. { \
  592. if (log_queue_isfull(producer_manager->loggroup_queue)) \
  593. { \
  594. CS_LEAVE(producer_manager->lock); \
  595. return LOG_PRODUCER_DROP_ERROR; \
  596. } \
  597. producer_manager->builder = log_group_create(producer_manager->producer_config); \
  598. producer_manager->builder->private_value = producer_manager; \
  599. }
  600. #define LOG_PRODUCER_MANAGER_ADD_LOG_END { int ret; \
  601. int status; \
  602. log_group_builder * builder = producer_manager->builder; \
  603. if (flush == 0 && producer_manager->builder->loggroup_size < producer_manager->producer_config->logBytesPerPackage && producer_manager->builder->grp->n_logs < producer_manager->producer_config->logCountPerPackage) \
  604. { \
  605. CS_LEAVE(producer_manager->lock); \
  606. return LOG_PRODUCER_OK; \
  607. } \
  608. ret = LOG_PRODUCER_OK; \
  609. producer_manager->builder = NULL; \
  610. status = log_queue_push(producer_manager->loggroup_queue, builder); \
  611. if (status != 0) \
  612. { \
  613. do \
  614. { \
  615. char *szLogBuf = AllocLogBuf(); \
  616. char szLevel[10]; \
  617. char szTime[32]; \
  618. szLogBuf[MFLOG_BUFSIZE] = 0; \
  619. MakeLogPrefix( LM_ERROR, szLevel, szTime ); \
  620. _snprintf(szLogBuf, MFLOG_BUFSIZE, "try push loggroup to flusher failed, force drop this log group, error code : %d", status); \
  621. RvcLog_log( __FILE__,__LINE__, 1, LM_ERROR, szLevel, szTime, szLogBuf); \
  622. }while(0); \
  623. ret = LOG_PRODUCER_DROP_ERROR; \
  624. log_group_destroy(builder); \
  625. } \
  626. else \
  627. { \
  628. COND_SIGNAL(producer_manager->triger_cond); \
  629. } \
  630. CS_LEAVE(producer_manager->lock); \
  631. return ret; }
  632. log_producer_result log_producer_manager_add_log(log_producer_manager* producer_manager, log_item* log, int flush, long record_time)
  633. {
  634. LOG_PRODUCER_MANAGER_ADD_LOG_BEGIN;
  635. if (0 != add_log(producer_manager->builder, producer_manager->start_time, producer_manager->pack_index, log, record_time)) {
  636. aos_error_log((LB, "add log failed !"));
  637. }
  638. LOG_PRODUCER_MANAGER_ADD_LOG_END;
  639. }
  640. log_producer_result log_producer_manager_add_beidou_log(log_producer_manager* producer_manager, beidou_log_item* log, int flush)
  641. {
  642. LOG_PRODUCER_MANAGER_ADD_LOG_BEGIN;
  643. if (0 != add_beidou_log(producer_manager->builder, log)) {
  644. aos_error_log((LB, "add log failed !"));
  645. }
  646. LOG_PRODUCER_MANAGER_ADD_LOG_END;
  647. }
  648. log_producer_result log_producer_manager_add_log_raw(log_producer_manager* producer_manager, build_item* log, int flush)
  649. {
  650. LOG_PRODUCER_MANAGER_ADD_LOG_BEGIN;
  651. add_log_raw(producer_manager->builder, log);
  652. LOG_PRODUCER_MANAGER_ADD_LOG_END;
  653. }
  654. log_producer_result log_producer_manager_add_log_group(log_producer_manager* producer_manager, log_group_builder* builder, int flush)
  655. {
  656. int ret;
  657. int status;
  658. CS_ENTER(producer_manager->lock);
  659. if (flush == 0 && builder->loggroup_size < producer_manager->producer_config->logBytesPerPackage && builder->grp->n_logs < producer_manager->producer_config->logCountPerPackage)
  660. {
  661. CS_LEAVE(producer_manager->lock);
  662. return LOG_PRODUCER_OK;
  663. }
  664. ret = LOG_PRODUCER_OK;
  665. builder->private_value = producer_manager;
  666. aos_debug_log((LB, "try push loggroup to flusher, size : %d, log count %d", (int)builder->loggroup_size, (int)builder->grp->n_logs));
  667. status = log_queue_push(producer_manager->loggroup_queue, builder);
  668. if (status != 0)
  669. {
  670. aos_error_log((LB, "try push loggroup to flusher failed, force drop this log group, error code : %d", status));
  671. ret = LOG_PRODUCER_DROP_ERROR;
  672. }
  673. else
  674. {
  675. COND_SIGNAL(producer_manager->triger_cond);
  676. }
  677. CS_LEAVE(producer_manager->lock);
  678. return ret;
  679. }