aclk_query.c 13 KB

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  1. // SPDX-License-Identifier: GPL-3.0-or-later
  2. #include "aclk_query.h"
  3. #include "aclk_stats.h"
  4. #include "aclk_tx_msgs.h"
  5. #include "../../web/server/web_client_cache.h"
  6. #define WEB_HDR_ACCEPT_ENC "Accept-Encoding:"
  7. pthread_cond_t query_cond_wait = PTHREAD_COND_INITIALIZER;
  8. pthread_mutex_t query_lock_wait = PTHREAD_MUTEX_INITIALIZER;
  9. #define QUERY_THREAD_LOCK pthread_mutex_lock(&query_lock_wait)
  10. #define QUERY_THREAD_UNLOCK pthread_mutex_unlock(&query_lock_wait)
  11. struct pending_req_list {
  12. const char *msg_id;
  13. uint32_t hash;
  14. int canceled;
  15. struct pending_req_list *next;
  16. };
  17. static struct pending_req_list *pending_req_list_head = NULL;
  18. static pthread_mutex_t pending_req_list_lock = PTHREAD_MUTEX_INITIALIZER;
  19. static struct pending_req_list *pending_req_list_add(const char *msg_id)
  20. {
  21. struct pending_req_list *new = callocz(1, sizeof(struct pending_req_list));
  22. new->msg_id = msg_id;
  23. new->hash = simple_hash(msg_id);
  24. pthread_mutex_lock(&pending_req_list_lock);
  25. new->next = pending_req_list_head;
  26. pending_req_list_head = new;
  27. pthread_mutex_unlock(&pending_req_list_lock);
  28. return new;
  29. }
  30. void pending_req_list_rm(const char *msg_id)
  31. {
  32. uint32_t hash = simple_hash(msg_id);
  33. struct pending_req_list *prev = NULL;
  34. pthread_mutex_lock(&pending_req_list_lock);
  35. struct pending_req_list *curr = pending_req_list_head;
  36. while (curr) {
  37. if (curr->hash == hash && strcmp(curr->msg_id, msg_id) == 0) {
  38. if (prev)
  39. prev->next = curr->next;
  40. else
  41. pending_req_list_head = curr->next;
  42. freez(curr);
  43. break;
  44. }
  45. prev = curr;
  46. curr = curr->next;
  47. }
  48. pthread_mutex_unlock(&pending_req_list_lock);
  49. }
  50. int mark_pending_req_cancelled(const char *msg_id)
  51. {
  52. uint32_t hash = simple_hash(msg_id);
  53. pthread_mutex_lock(&pending_req_list_lock);
  54. struct pending_req_list *curr = pending_req_list_head;
  55. while (curr) {
  56. if (curr->hash == hash && strcmp(curr->msg_id, msg_id) == 0) {
  57. curr->canceled = 1;
  58. pthread_mutex_unlock(&pending_req_list_lock);
  59. return 0;
  60. }
  61. curr = curr->next;
  62. }
  63. pthread_mutex_unlock(&pending_req_list_lock);
  64. return 1;
  65. }
  66. static bool aclk_web_client_interrupt_cb(struct web_client *w __maybe_unused, void *data)
  67. {
  68. struct pending_req_list *req = (struct pending_req_list *)data;
  69. return req->canceled;
  70. }
  71. static int http_api_v2(struct aclk_query_thread *query_thr, aclk_query_t query) {
  72. ND_LOG_STACK lgs[] = {
  73. ND_LOG_FIELD_TXT(NDF_SRC_TRANSPORT, "aclk"),
  74. ND_LOG_FIELD_END(),
  75. };
  76. ND_LOG_STACK_PUSH(lgs);
  77. int retval = 0;
  78. BUFFER *local_buffer = NULL;
  79. size_t size = 0;
  80. size_t sent = 0;
  81. int z_ret;
  82. BUFFER *z_buffer = buffer_create(NETDATA_WEB_RESPONSE_INITIAL_SIZE, &netdata_buffers_statistics.buffers_aclk);
  83. char *start, *end;
  84. struct web_client *w = web_client_get_from_cache();
  85. w->acl = WEB_CLIENT_ACL_ACLK;
  86. w->mode = WEB_CLIENT_MODE_GET;
  87. w->timings.tv_in = query->created_tv;
  88. w->interrupt.callback = aclk_web_client_interrupt_cb;
  89. w->interrupt.callback_data = pending_req_list_add(query->msg_id);
  90. usec_t t;
  91. web_client_timeout_checkpoint_set(w, query->timeout);
  92. if(web_client_timeout_checkpoint_and_check(w, &t)) {
  93. nd_log(NDLS_ACCESS, NDLP_ERR, "QUERY CANCELED: QUEUE TIME EXCEEDED %llu ms (LIMIT %d ms)", t / USEC_PER_MS, query->timeout);
  94. retval = 1;
  95. w->response.code = HTTP_RESP_SERVICE_UNAVAILABLE;
  96. aclk_http_msg_v2_err(query_thr->client, query->callback_topic, query->msg_id, w->response.code, CLOUD_EC_SND_TIMEOUT, CLOUD_EMSG_SND_TIMEOUT, NULL, 0);
  97. goto cleanup;
  98. }
  99. web_client_decode_path_and_query_string(w, query->data.http_api_v2.query);
  100. char *path = (char *)buffer_tostring(w->url_path_decoded);
  101. if (aclk_stats_enabled) {
  102. char *url_path_endpoint = strrchr(path, '/');
  103. ACLK_STATS_LOCK;
  104. int stat_idx = aclk_cloud_req_http_type_to_idx(url_path_endpoint ? url_path_endpoint + 1 : "other");
  105. aclk_metrics_per_sample.cloud_req_http_by_type[stat_idx]++;
  106. ACLK_STATS_UNLOCK;
  107. }
  108. w->response.code = (short)web_client_api_request_with_node_selection(localhost, w, path);
  109. web_client_timeout_checkpoint_response_ready(w, &t);
  110. if (aclk_stats_enabled) {
  111. ACLK_STATS_LOCK;
  112. aclk_metrics_per_sample.cloud_q_process_total += t;
  113. aclk_metrics_per_sample.cloud_q_process_count++;
  114. if (aclk_metrics_per_sample.cloud_q_process_max < t)
  115. aclk_metrics_per_sample.cloud_q_process_max = t;
  116. ACLK_STATS_UNLOCK;
  117. }
  118. size = w->response.data->len;
  119. sent = size;
  120. // check if gzip encoding can and should be used
  121. if ((start = strstr((char *)query->data.http_api_v2.payload, WEB_HDR_ACCEPT_ENC))) {
  122. start += strlen(WEB_HDR_ACCEPT_ENC);
  123. end = strstr(start, "\x0D\x0A");
  124. start = strstr(start, "gzip");
  125. if (start && start < end) {
  126. w->response.zstream.zalloc = Z_NULL;
  127. w->response.zstream.zfree = Z_NULL;
  128. w->response.zstream.opaque = Z_NULL;
  129. if(deflateInit2(&w->response.zstream, web_gzip_level, Z_DEFLATED, 15 + 16, 8, web_gzip_strategy) == Z_OK) {
  130. w->response.zinitialized = true;
  131. w->response.zoutput = true;
  132. } else
  133. netdata_log_error("Failed to initialize zlib. Proceeding without compression.");
  134. }
  135. }
  136. if (w->response.data->len && w->response.zinitialized) {
  137. w->response.zstream.next_in = (Bytef *)w->response.data->buffer;
  138. w->response.zstream.avail_in = w->response.data->len;
  139. do {
  140. w->response.zstream.avail_out = NETDATA_WEB_RESPONSE_ZLIB_CHUNK_SIZE;
  141. w->response.zstream.next_out = w->response.zbuffer;
  142. z_ret = deflate(&w->response.zstream, Z_FINISH);
  143. if(z_ret < 0) {
  144. if(w->response.zstream.msg)
  145. netdata_log_error("Error compressing body. ZLIB error: \"%s\"", w->response.zstream.msg);
  146. else
  147. netdata_log_error("Unknown error during zlib compression.");
  148. retval = 1;
  149. w->response.code = 500;
  150. aclk_http_msg_v2_err(query_thr->client, query->callback_topic, query->msg_id, w->response.code, CLOUD_EC_ZLIB_ERROR, CLOUD_EMSG_ZLIB_ERROR, NULL, 0);
  151. goto cleanup;
  152. }
  153. int bytes_to_cpy = NETDATA_WEB_RESPONSE_ZLIB_CHUNK_SIZE - w->response.zstream.avail_out;
  154. buffer_need_bytes(z_buffer, bytes_to_cpy);
  155. memcpy(&z_buffer->buffer[z_buffer->len], w->response.zbuffer, bytes_to_cpy);
  156. z_buffer->len += bytes_to_cpy;
  157. } while(z_ret != Z_STREAM_END);
  158. // so that web_client_build_http_header
  159. // puts correct content length into header
  160. buffer_free(w->response.data);
  161. w->response.data = z_buffer;
  162. z_buffer = NULL;
  163. }
  164. web_client_build_http_header(w);
  165. local_buffer = buffer_create(NETDATA_WEB_RESPONSE_INITIAL_SIZE, &netdata_buffers_statistics.buffers_aclk);
  166. local_buffer->content_type = CT_APPLICATION_JSON;
  167. buffer_strcat(local_buffer, w->response.header_output->buffer);
  168. if (w->response.data->len) {
  169. if (w->response.zinitialized) {
  170. buffer_need_bytes(local_buffer, w->response.data->len);
  171. memcpy(&local_buffer->buffer[local_buffer->len], w->response.data->buffer, w->response.data->len);
  172. local_buffer->len += w->response.data->len;
  173. sent = sent - size + w->response.data->len;
  174. } else {
  175. buffer_strcat(local_buffer, w->response.data->buffer);
  176. }
  177. }
  178. // send msg.
  179. w->response.code = aclk_http_msg_v2(query_thr->client, query->callback_topic, query->msg_id, t, query->created, w->response.code, local_buffer->buffer, local_buffer->len);
  180. cleanup:
  181. web_client_log_completed_request(w, false);
  182. web_client_release_to_cache(w);
  183. pending_req_list_rm(query->msg_id);
  184. buffer_free(z_buffer);
  185. buffer_free(local_buffer);
  186. return retval;
  187. }
  188. static int send_bin_msg(struct aclk_query_thread *query_thr, aclk_query_t query)
  189. {
  190. // this will be simplified when legacy support is removed
  191. aclk_send_bin_message_subtopic_pid(query_thr->client, query->data.bin_payload.payload, query->data.bin_payload.size, query->data.bin_payload.topic, query->data.bin_payload.msg_name);
  192. return 0;
  193. }
  194. const char *aclk_query_get_name(aclk_query_type_t qt, int unknown_ok)
  195. {
  196. switch (qt) {
  197. case HTTP_API_V2: return "http_api_request_v2";
  198. case REGISTER_NODE: return "register_node";
  199. case NODE_STATE_UPDATE: return "node_state_update";
  200. case CHART_DIMS_UPDATE: return "chart_and_dim_update";
  201. case CHART_CONFIG_UPDATED: return "chart_config_updated";
  202. case CHART_RESET: return "reset_chart_messages";
  203. case RETENTION_UPDATED: return "update_retention_info";
  204. case UPDATE_NODE_INFO: return "update_node_info";
  205. case ALARM_PROVIDE_CHECKPOINT: return "alarm_checkpoint";
  206. case ALARM_PROVIDE_CFG: return "provide_alarm_config";
  207. case ALARM_SNAPSHOT: return "alarm_snapshot";
  208. case UPDATE_NODE_COLLECTORS: return "update_node_collectors";
  209. case PROTO_BIN_MESSAGE: return "generic_binary_proto_message";
  210. default:
  211. if (!unknown_ok)
  212. error_report("Unknown query type used %d", (int) qt);
  213. return "unknown";
  214. }
  215. }
  216. static void aclk_query_process_msg(struct aclk_query_thread *query_thr, aclk_query_t query)
  217. {
  218. if (query->type == UNKNOWN || query->type >= ACLK_QUERY_TYPE_COUNT) {
  219. error_report("Unknown query in query queue. %u", query->type);
  220. aclk_query_free(query);
  221. return;
  222. }
  223. worker_is_busy(query->type);
  224. if (query->type == HTTP_API_V2) {
  225. netdata_log_debug(D_ACLK, "Processing Queued Message of type: \"http_api_request_v2\"");
  226. http_api_v2(query_thr, query);
  227. } else {
  228. netdata_log_debug(D_ACLK, "Processing Queued Message of type: \"%s\"", query->data.bin_payload.msg_name);
  229. send_bin_msg(query_thr, query);
  230. }
  231. if (aclk_stats_enabled) {
  232. ACLK_STATS_LOCK;
  233. aclk_metrics_per_sample.queries_dispatched++;
  234. aclk_queries_per_thread[query_thr->idx]++;
  235. aclk_metrics_per_sample.queries_per_type[query->type]++;
  236. ACLK_STATS_UNLOCK;
  237. }
  238. aclk_query_free(query);
  239. worker_is_idle();
  240. }
  241. /* Processes messages from queue. Compete for work with other threads
  242. */
  243. int aclk_query_process_msgs(struct aclk_query_thread *query_thr)
  244. {
  245. aclk_query_t query;
  246. while ((query = aclk_queue_pop()))
  247. aclk_query_process_msg(query_thr, query);
  248. return 0;
  249. }
  250. static void worker_aclk_register(void) {
  251. worker_register("ACLKQUERY");
  252. for (int i = 1; i < ACLK_QUERY_TYPE_COUNT; i++) {
  253. worker_register_job_name(i, aclk_query_get_name(i, 0));
  254. }
  255. }
  256. static void aclk_query_request_cancel(void *data)
  257. {
  258. pthread_cond_broadcast((pthread_cond_t *) data);
  259. }
  260. /**
  261. * Main query processing thread
  262. */
  263. void *aclk_query_main_thread(void *ptr)
  264. {
  265. worker_aclk_register();
  266. struct aclk_query_thread *query_thr = ptr;
  267. service_register(SERVICE_THREAD_TYPE_NETDATA, aclk_query_request_cancel, NULL, &query_cond_wait, false);
  268. while (service_running(SERVICE_ACLK | ABILITY_DATA_QUERIES)) {
  269. aclk_query_process_msgs(query_thr);
  270. worker_is_idle();
  271. QUERY_THREAD_LOCK;
  272. if (unlikely(pthread_cond_wait(&query_cond_wait, &query_lock_wait)))
  273. sleep_usec(USEC_PER_SEC * 1);
  274. QUERY_THREAD_UNLOCK;
  275. }
  276. worker_unregister();
  277. return NULL;
  278. }
  279. #define TASK_LEN_MAX 22
  280. void aclk_query_threads_start(struct aclk_query_threads *query_threads, mqtt_wss_client client)
  281. {
  282. netdata_log_info("Starting %d query threads.", query_threads->count);
  283. char thread_name[TASK_LEN_MAX];
  284. query_threads->thread_list = callocz(query_threads->count, sizeof(struct aclk_query_thread));
  285. for (int i = 0; i < query_threads->count; i++) {
  286. query_threads->thread_list[i].idx = i; //thread needs to know its index for statistics
  287. query_threads->thread_list[i].client = client;
  288. if(unlikely(snprintfz(thread_name, TASK_LEN_MAX, "ACLK_QRY[%d]", i) < 0))
  289. netdata_log_error("snprintf encoding error");
  290. netdata_thread_create(
  291. &query_threads->thread_list[i].thread, thread_name, NETDATA_THREAD_OPTION_JOINABLE, aclk_query_main_thread,
  292. &query_threads->thread_list[i]);
  293. }
  294. }
  295. void aclk_query_threads_cleanup(struct aclk_query_threads *query_threads)
  296. {
  297. if (query_threads && query_threads->thread_list) {
  298. for (int i = 0; i < query_threads->count; i++) {
  299. netdata_thread_join(query_threads->thread_list[i].thread, NULL);
  300. }
  301. freez(query_threads->thread_list);
  302. }
  303. aclk_queue_lock();
  304. aclk_queue_flush();
  305. }