app.c 71 KB

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  1. #include "app.h"
  2. #include "common.h"
  3. #include "switch_ctrl.h"
  4. #include "appweb_handle.h"
  5. #include "modbus_handle.h"
  6. #include "sqlite_handle.h"
  7. #include <sys/time.h>
  8. #include <stdio.h>
  9. #include <unistd.h>
  10. #include "elog.h"
  11. #include "sensor_handle.h"
  12. #include "websocket_handle.h"
  13. #include "paras.h"
  14. #include "thread.h"
  15. #include "cascade.h"
  16. #include "upg.h"
  17. #include "sys.h"
  18. #include "cfg.h"
  19. #include "lock.h"
  20. #include "smtp.h"
  21. #include "netswitch.h"
  22. #include "breaker_detection.h"
  23. #include <sys/mman.h>
  24. #include <string.h>
  25. #include <fcntl.h>
  26. #include <sys/stat.h>
  27. #include <sys/types.h>
  28. #include <unistd.h>
  29. #include "hlw8110_handle.h"
  30. #include <sys/ioctl.h>
  31. #include <sys/socket.h>
  32. #include <netinet/in.h>
  33. #include <net/if.h>
  34. static int keep_running;
  35. RETSIGTYPE stop_server(int __attribute__((unused)) a)
  36. {
  37. keep_running = 0;
  38. }
  39. void sensor_alarm(GlobalSensorManger *_globalSensorMangerTemp, int nAlarmType);
  40. /// @brief 电源数据采集线程
  41. /// @param arg
  42. /// @return
  43. static uint8_t channel[32] = {0};
  44. void* power_thread(void* arg)
  45. {
  46. int ret = 0 ;
  47. GlobalPowerManger* _globalPowerMangerTemp = NULL ;
  48. GlobalPowerInfo _globalPowerInfo ;
  49. GlobalPowerInfo _globalTotalPowerInfo ; //总电源信息
  50. GlobalTreeACManager* pTreeAPowerInfo; //三相子电源信息
  51. GlobalTreeACManager* _pTreeACPowerMangerTemp = NULL ;
  52. PowerWarningInfo _globalPowerWarningInfo ;
  53. PowerWarningInfo _globalTACWarningInfo;
  54. float Vavg[3]={0.0,0.0,0.0};
  55. int VavgTimes[3]={0,0,0};
  56. struct tm* t ;
  57. struct timeval tv;
  58. struct timezone tz ;
  59. int nSaveIndex =0;
  60. int sensor_nSaveIndex = 0;
  61. char strPower[] = "Table_PowerInfo";
  62. char strTacPower[] = "Table_PhasePowerInfo";
  63. char strTable[] = "Table_SensorInfo";
  64. int nSaveTacIndex = 0;
  65. thread_handle_t *h=(thread_handle_t*)arg;
  66. GlobalDeviceManager* _globalDeviceManager = (GlobalDeviceManager*)h->arg;
  67. _PowerDSManage_t* _powerDsManageTemp = NULL ;
  68. dev_search_last_Index(_globalDeviceManager->db, &nSaveIndex, strPower); // 查询日志最大点
  69. dev_search_last_Index(_globalDeviceManager->db, &nSaveTacIndex, strTacPower); // 查询日志最大点
  70. dev_search_last_Index(_globalDeviceManager->db, &sensor_nSaveIndex,strTable);
  71. InitHashTable(_globalDeviceManager);
  72. unsigned int samp_time = _globalDeviceManager->_globalDevInfo.product_samp_time;
  73. unsigned int usleepTime = samp_time*1000;
  74. unsigned int sSaveTime = _globalDeviceManager->_globalDevInfo.product_save_time;
  75. log_d("samp_time:%dms save_time:%dms\n", samp_time,sSaveTime);
  76. int nMaxIndex=2000000000;
  77. int nDeleteNumber=1000/sSaveTime*3600*24*30*10;
  78. bool isErrorBreak=false;
  79. _globalDeviceManager->_ReloadChm_flag=false;
  80. GlobalDeviceInfo *devInfo = &_globalDeviceManager->_globalDevInfo;
  81. int nsensor_DeleteNumber = 1000 / 120000 * 3600 * 24 * 30 * 10;
  82. //channel[0] = 1;
  83. dev_get_all_profuct_chid_from_power_mgr(_globalDeviceManager->db,channel);
  84. //int cnt = 1;
  85. //采集线程
  86. while (h->quit==0)
  87. {
  88. if (_globalDeviceManager->_ReloadChm_flag)
  89. {
  90. sleep(1);
  91. continue;
  92. }
  93. if (nSaveIndex>nMaxIndex/2)
  94. {
  95. dev_change_last_Index(_globalDeviceManager->db, &nSaveIndex, nDeleteNumber, strPower);
  96. }
  97. if (nSaveTacIndex > nMaxIndex / 2)
  98. {
  99. dev_change_last_Index(_globalDeviceManager->db, &nSaveIndex, nDeleteNumber, strTacPower);
  100. }
  101. if(_globalDeviceManager->_RS485LowConfData->opreation == 0)
  102. {
  103. sleep(1);
  104. continue;
  105. }
  106. if (sensor_nSaveIndex > nMaxIndex)
  107. {
  108. dev_change_last_Index(_globalDeviceManager->db, &sensor_nSaveIndex, nsensor_DeleteNumber, strTable);
  109. }
  110. #if (1)
  111. memset(&_globalTotalPowerInfo, 0, sizeof(GlobalPowerInfo));
  112. memset(&_globalPowerWarningInfo, 0, sizeof(PowerWarningInfo));
  113. _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].current = hlw8110_read_IA(__globalDeviceManage._RS485LowConfData);
  114. _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].voltage = hlw8110_read_UV(__globalDeviceManage._RS485LowConfData);
  115. _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].power = hwl8110_read_PA(__globalDeviceManage._RS485LowConfData);
  116. if(_globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].voltage < 1)
  117. _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].voltage = 0;
  118. _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].factor = hwl8110_read_PF(__globalDeviceManage._RS485LowConfData);
  119. _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].freq = hwl8110_read_LineFreq(__globalDeviceManage._RS485LowConfData);
  120. if(_globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].freq > 100)
  121. _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].freq = 0;
  122. //_globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].consumption = hwl8110_read_EA(__globalDeviceManage._RS485LowConfData);
  123. _globalDeviceManager->_globalDevInfo.consumer += hwl8110_read_EA(__globalDeviceManage._RS485LowConfData);
  124. dev_update_consumer(_globalDeviceManager->db, &_globalDeviceManager->_globalDevInfo);
  125. _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].consumption = _globalDeviceManager->_globalDevInfo.consumer;
  126. int val = 0;
  127. hlw8110_read_Status(__globalDeviceManage._RS485LowConfData,&val);
  128. _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].status = val;
  129. _globalDeviceManager->mmp->data[0].current = _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].current * 1000;
  130. _globalDeviceManager->mmp->data[0].voltage = _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].voltage * 1000;
  131. _globalDeviceManager->mmp->data[0].power = _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].power * 1000;
  132. _globalDeviceManager->mmp->data[0].factor = _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].factor * 1000;
  133. _globalDeviceManager->mmp->data[0].freq = _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].freq * 1000;
  134. _globalDeviceManager->mmp->data[0].consumer = _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].consumption * 1000;
  135. _globalDeviceManager->mmp->data[0].status = _globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0].status ;
  136. _globalDeviceManager->mmp->data[0].saddr = 0;
  137. _globalDeviceManager->mmp->data[0].temprature = _globalDeviceManager->g_modebus_read.temprature *100;
  138. _globalDeviceManager->mmp->data[0].humidity = _globalDeviceManager->g_modebus_read.humidity *100;
  139. dev_list_t dl;
  140. cascade_get_dlist(&dl);
  141. int flag = 0;
  142. //shanchu
  143. //add
  144. for(int i = 1;i < dl.cnt;i++)
  145. {
  146. flag = 0;
  147. list_for_each_entry(_globalPowerMangerTemp, &_globalDeviceManager->_globalPowerManger.list, list)
  148. {
  149. int k = dl.slave[i].addr;
  150. int p = _globalPowerMangerTemp->product_saddr;
  151. if(_globalPowerMangerTemp->product_saddr == dl.slave[i].addr)
  152. {
  153. //cunzai
  154. flag = 1;
  155. break;
  156. }
  157. }
  158. if(flag)
  159. {
  160. }else
  161. {
  162. //add
  163. //cnt++;
  164. int k = 0;
  165. for( ;k < 32;k++)
  166. {
  167. if(!channel[k])
  168. {
  169. break;
  170. }
  171. }
  172. uint8_t create_temp_flag = 0;
  173. GlobalPowerManger *Temp = NULL;
  174. GlobalSensorManger* sensor_temp = NULL;
  175. //malloc
  176. Temp = (GlobalPowerManger *)malloc(sizeof(GlobalPowerManger));
  177. if(Temp)
  178. {
  179. memset(Temp, 0, sizeof(GlobalPowerManger));
  180. Temp->global_over_manager = (GlobalOverManager *)malloc(sizeof(GlobalOverManager));
  181. if(Temp->global_over_manager)
  182. {
  183. memset(Temp->global_over_manager, 0, sizeof(GlobalOverManager));
  184. sensor_temp = (GlobalSensorManger *)malloc(sizeof(GlobalSensorManger));
  185. if(sensor_temp)
  186. {
  187. sensor_temp->over_manager = (GlobalSensorOverManage*)malloc(sizeof(GlobalSensorOverManage));
  188. memset(sensor_temp->over_manager,0,sizeof(GlobalSensorOverManage));
  189. if(sensor_temp->over_manager)
  190. {
  191. create_temp_flag = 1;
  192. }else
  193. {
  194. free(sensor_temp);
  195. sensor_temp = NULL;
  196. free(Temp->global_over_manager);
  197. free(Temp);
  198. Temp = NULL;
  199. }
  200. }else
  201. {
  202. free(Temp->global_over_manager);
  203. free(Temp);
  204. Temp = NULL;
  205. }
  206. }else
  207. {
  208. free(Temp);
  209. }
  210. }
  211. //create
  212. if(create_temp_flag)
  213. {
  214. uint8_t power_insert_flag = 0;
  215. uint8_t sensor_insert_flag = 0;
  216. int ret1 = 0;
  217. int ret2 = 0;
  218. ret1 = dev_get_power_manage_info(_globalDeviceManager->db,dl.slave[i].addr,dl.slave[i].addr,1,Temp);
  219. if(ret1 < 0)
  220. {
  221. Temp->product_id = dl.slave[i].addr;
  222. Temp->product_saddr = dl.slave[i].addr;
  223. Temp->product_ch_id = k;
  224. sprintf(Temp->product_ch_name, "CH%d", k);
  225. Temp->product_ch_addr = 1;
  226. ret1 = dev_insert_power_manage_info(_globalDeviceManager->db,Temp->product_id,Temp->product_ch_id,Temp);
  227. if(ret1 < 0)
  228. {
  229. ;
  230. }else
  231. {
  232. power_insert_flag = 1;
  233. }
  234. }else
  235. {
  236. power_insert_flag = 1;
  237. }
  238. if(power_insert_flag)
  239. {
  240. ret2 = dev_get_sensor_info_new (_globalDeviceManager->db,dl.slave[i].addr,dl.slave[i].addr,sensor_temp);
  241. if(ret2 < 0)
  242. {
  243. sensor_temp->product_id = dl.slave[i].addr;
  244. sensor_temp->sensor_id = dl.slave[i].addr;
  245. sensor_temp->sensor_type = 0;
  246. sensor_temp->sensor_interface_type = 0;
  247. strcpy(sensor_temp->sensor_name,"温湿度传感器");
  248. strcpy(sensor_temp->sensor_port_name,"COM2");
  249. if( sensor_temp->sensor_interface_type==1)
  250. {
  251. sensor_temp->sensor_baud = 9600;
  252. sensor_temp->sensor_addr = 1;
  253. } else {
  254. sensor_temp->sensor_baud = 0 ;
  255. sensor_temp->sensor_addr = 1;
  256. }
  257. sensor_temp->sensor_status = 1;
  258. ret2 = dev_insert_sensor_genera_manage(_globalDeviceManager->db,sensor_temp);
  259. if(ret2 < 0)
  260. {
  261. }else
  262. {
  263. sensor_insert_flag = 1;
  264. }
  265. }else
  266. {
  267. sensor_insert_flag = 1;
  268. }
  269. }
  270. if(power_insert_flag && sensor_insert_flag)
  271. {
  272. list_add_tail(&Temp->list, &_globalDeviceManager->_globalPowerManger.list);
  273. list_add_tail(&sensor_temp->list, &_globalDeviceManager->_globalSensorManger.list);
  274. channel[k] = 1;
  275. }else
  276. {
  277. free(sensor_temp->over_manager);
  278. free(sensor_temp);
  279. sensor_temp = NULL;
  280. free(Temp->global_over_manager);
  281. free(Temp);
  282. Temp = NULL;
  283. }
  284. }
  285. #if 0
  286. GlobalPowerManger *Temp = (GlobalPowerManger *)malloc(sizeof(GlobalPowerManger));
  287. if (Temp == NULL)
  288. {
  289. log_e("_globalPowerManger malloc error.\n");
  290. return NULL;
  291. }
  292. memset(Temp, 0, sizeof(GlobalPowerManger));
  293. Temp->global_over_manager = (GlobalOverManager *)malloc(sizeof(GlobalOverManager));
  294. if (Temp->global_over_manager == NULL)
  295. {
  296. log_e("_globalPowerManger->global_over_manager malloc error.\n");
  297. return NULL;
  298. }
  299. memset(Temp->global_over_manager, 0, sizeof(GlobalOverManager));
  300. //add a temprature and humunite
  301. ret = dev_get_power_manage_info(_globalDeviceManager->db,dl.slave[i].addr,dl.slave[i].addr,1,Temp);
  302. if(ret < 0)
  303. {
  304. Temp->product_id = dl.slave[i].addr;
  305. Temp->product_saddr = dl.slave[i].addr;
  306. Temp->product_ch_id = k;
  307. channel[k] = 1;
  308. sprintf(Temp->product_ch_name, "CH%d", k);
  309. Temp->product_ch_addr = 1;
  310. if (dev_insert_power_manage_info(_globalDeviceManager->db,
  311. Temp->product_id,
  312. Temp->product_ch_id,
  313. Temp) != 0)
  314. {
  315. log_e("address %d chn %d data inserted error.\n", i, k);
  316. free(Temp->global_over_manager);
  317. free(Temp);
  318. //return NULL;
  319. }else
  320. {
  321. list_add_tail(&Temp->list, &_globalDeviceManager->_globalPowerManger.list);
  322. }
  323. }else
  324. list_add_tail(&Temp->list, &_globalDeviceManager->_globalPowerManger.list);
  325. GlobalSensorManger* sensor_temp = (GlobalSensorManger *)malloc(sizeof(GlobalSensorManger));
  326. if(!sensor_temp)
  327. {
  328. return NULL;
  329. }
  330. ret = dev_get_sensor_info (_globalDeviceManager->db,dl.slave[i].addr,dl.slave[i].addr,sensor_temp);
  331. if(ret < 0)
  332. {
  333. sensor_temp->over_manager = (GlobalSensorOverManage*)malloc(sizeof(GlobalSensorOverManage));
  334. if(sensor_temp->over_manager==NULL)
  335. return NULL ;
  336. memset(sensor_temp->over_manager,0,sizeof(GlobalSensorOverManage));
  337. sensor_temp->product_id = dl.slave[i].addr;
  338. sensor_temp->sensor_id = dl.slave[i].addr;
  339. sensor_temp->sensor_type = 0;
  340. sensor_temp->sensor_interface_type = 0;
  341. strcpy(sensor_temp->sensor_name,"温湿度传感器");
  342. strcpy(sensor_temp->sensor_port_name,"COM2");
  343. if( sensor_temp->sensor_interface_type==1)
  344. {
  345. sensor_temp->sensor_baud = 9600;
  346. sensor_temp->sensor_addr = 1;
  347. } else {
  348. sensor_temp->sensor_baud = 0 ;
  349. sensor_temp->sensor_addr = 1;
  350. }
  351. sensor_temp->sensor_status = 1;
  352. if(dev_insert_sensor_genera_manage(_globalDeviceManager->db,sensor_temp))
  353. {
  354. log_e("sensor inserted failed error.\n");
  355. free(sensor_temp->over_manager);
  356. free(sensor_temp);
  357. }else
  358. {
  359. list_add_tail(&sensor_temp->list, &_globalDeviceManager->_globalSensorManger.list);
  360. }
  361. }else
  362. list_add_tail(&sensor_temp->list, &_globalDeviceManager->_globalSensorManger.list);
  363. #endif
  364. }
  365. }
  366. GlobalPowerManger *tmp,*pos;
  367. list_for_each_entry_safe(tmp,pos,&_globalDeviceManager->_globalPowerManger.list,list)
  368. {
  369. if(tmp->product_saddr == 0 || tmp == NULL)
  370. continue;
  371. flag = 0;
  372. for(int i = 1 ; i < dl.cnt; i++)
  373. {
  374. if(tmp->product_saddr == dl.slave[i].addr)
  375. {
  376. flag = 1;
  377. break;
  378. }
  379. }
  380. if(!flag)
  381. {
  382. //delete sensor
  383. pthread_mutex_lock(&__globalDeviceManage._sensor_update);
  384. GlobalSensorManger *sensor_temp,*sensor_pos;
  385. list_for_each_entry_safe(sensor_temp,sensor_pos,&_globalDeviceManager->_globalSensorManger.list,list)
  386. {
  387. if(tmp->product_saddr == 0 || sensor_temp == NULL)
  388. continue;
  389. if(sensor_temp->product_id == tmp->product_saddr && sensor_temp->sensor_id == tmp->product_saddr)
  390. {
  391. free(sensor_temp->over_manager);
  392. list_del(&sensor_temp->list);
  393. free(sensor_temp);
  394. break;
  395. }
  396. }
  397. pthread_mutex_unlock(&__globalDeviceManage._sensor_update);
  398. //delete power_thead
  399. free(tmp->global_over_manager);
  400. list_del(&tmp->list);
  401. //cnt --;
  402. free(tmp);
  403. }
  404. }
  405. cmd_data_t cmd;
  406. cmd.cmd = CASCADE_CMD_GET_INFO;
  407. cmd.obj = OBJ_OVERALL;
  408. for(int i = 1;i < dl.cnt;i++)
  409. {
  410. cascade_request_saddr(&cmd,dl.slave[i].addr,i);
  411. usleep(10000);
  412. }
  413. _globalDeviceManager->mmp->dev_chn = dl.cnt;
  414. cmd.cmd = CASCADE_CMD_QUERY_CH;
  415. cascade_free_dlist(&dl);
  416. for(int i = 1; i < _globalDeviceManager->mmp->dev_chn;i++)
  417. {
  418. int board = _globalDeviceManager->mmp->data[i].saddr;
  419. _globalDeviceManager->_all_ctrl_board[board].product_type = 0;
  420. _globalDeviceManager->_all_ctrl_board[board].product_saddr = _globalDeviceManager->mmp->data[i].saddr;
  421. _globalDeviceManager->_all_ctrl_board[board].product_number = 1;
  422. _globalDeviceManager->_all_ctrl_board[board]._PowerInfo->consumption = _globalDeviceManager->mmp->data[i].consumer/1000.0;
  423. _globalDeviceManager->_all_ctrl_board[board]._PowerInfo->current = _globalDeviceManager->mmp->data[i].current/1000.0;
  424. _globalDeviceManager->_all_ctrl_board[board]._PowerInfo->factor = _globalDeviceManager->mmp->data[i].factor/1000.0;
  425. _globalDeviceManager->_all_ctrl_board[board]._PowerInfo->freq = _globalDeviceManager->mmp->data[i].freq/1000.0;
  426. _globalDeviceManager->_all_ctrl_board[board]._PowerInfo->voltage = _globalDeviceManager->mmp->data[i].voltage/1000.0;
  427. _globalDeviceManager->_all_ctrl_board[board]._PowerInfo->power = _globalDeviceManager->mmp->data[i].power/1000.0;
  428. _globalDeviceManager->_all_ctrl_board[board]._PowerInfo->status = _globalDeviceManager->mmp->data[i].status;
  429. _globalDeviceManager->_all_ctrl_board[board]._PowerInfo->tempratue = _globalDeviceManager->mmp->data[i].temprature / 100.0;
  430. _globalDeviceManager->_all_ctrl_board[board]._PowerInfo->humidity = _globalDeviceManager->mmp->data[i].humidity /100.0;
  431. _globalDeviceManager->_all_ctrl_board[board]._PowerInfo->NF_status = _globalDeviceManager->mmp->data[i].temprature_status; //todo
  432. }
  433. struct tm *t;
  434. struct timeval tv;
  435. struct timezone tz;
  436. //warnning
  437. //cascade sensor thread!!!!
  438. GlobalSensorManger *_sensor_temp = NULL;
  439. GlobalSensorInfo _globalSensorInfo;
  440. pthread_mutex_lock(&__globalDeviceManage._sensor_update);
  441. list_for_each_entry(_sensor_temp, &_globalDeviceManager->_globalSensorManger.list, list)
  442. {
  443. if(_sensor_temp->product_id == 0)
  444. continue;
  445. switch (_sensor_temp->sensor_type)
  446. {
  447. case SENSOR_TYPE_TEMPERATURE:
  448. {
  449. gettimeofday(&tv, &tz);
  450. t = localtime(&tv.tv_sec);
  451. sprintf(_globalSensorInfo.samp_time, "%04d-%02d-%02d %02d:%02d:%02d.%03ld",
  452. t->tm_year + 1900, t->tm_mon, t->tm_mday, t->tm_hour, t->tm_min, t->tm_sec, tv.tv_usec / 1000);
  453. _globalSensorInfo.product_id = _sensor_temp->product_id;
  454. _globalSensorInfo.sensor_id = _sensor_temp->sensor_id;
  455. if(devInfo->_gmodbus_info.product_modbus_type == 0 && _sensor_temp->product_id == 0)
  456. {
  457. float temperature = 0.0;
  458. float humidity = 0.0;
  459. ret = _g_sensor_get_temperature_value((void *)&_globalDeviceManager->sensor_modbus_manager,
  460. _sensor_temp->sensor_addr,
  461. &temperature,
  462. &humidity);
  463. if (ret == -1)
  464. {
  465. _sensor_temp->sensor_status = 1;
  466. }else{
  467. _sensor_temp->sensor_status = 0;
  468. }
  469. _globalSensorInfo.val1 = temperature;
  470. _globalSensorInfo.val2 = humidity;
  471. _globalDeviceManager->g_modebus_read.temprature=temperature *1000;
  472. _globalDeviceManager->g_modebus_read.humidity=humidity *1000;
  473. }else{
  474. _globalSensorInfo.val1 = _globalDeviceManager->_all_ctrl_board[(int)_sensor_temp->sensor_id]._PowerInfo->tempratue;
  475. _globalSensorInfo.val2 = _globalDeviceManager->_all_ctrl_board[(int)_sensor_temp->sensor_id]._PowerInfo->humidity;
  476. _sensor_temp->sensor_status = _globalDeviceManager->_all_ctrl_board[(int)_sensor_temp->sensor_id]._PowerInfo->NF_status;
  477. }
  478. _globalSensorInfo.product_log_time=_sensor_temp->Cur_sensor_info.product_log_time;
  479. _sensor_temp->Cur_sensor_info=_globalSensorInfo;
  480. }
  481. break;
  482. default:
  483. break;
  484. }
  485. gettimeofday(&tv, NULL);
  486. time_t now;
  487. time(&now);
  488. t = localtime(&now);
  489. char buffer[80];
  490. strftime(buffer, sizeof(buffer), "%Y-%m-%d %H:%M:%S", t);
  491. memset(_sensor_temp->Cur_sensor_info.samp_time, 0, sizeof(_sensor_temp->Cur_sensor_info.samp_time));
  492. strftime(_sensor_temp->Cur_sensor_info.samp_time, sizeof(_sensor_temp->Cur_sensor_info.samp_time), "%Y-%m-%d %H:%M:%S", t);
  493. sprintf(buffer, ".%03ld", tv.tv_usec / 1000);
  494. strcat(_sensor_temp->Cur_sensor_info.samp_time, buffer);
  495. if (difftime(now, _sensor_temp->Cur_sensor_info.product_log_time) > (30000 / 1000))
  496. {
  497. _sensor_temp->Cur_sensor_info.product_log_time = now;
  498. // 插入数据库
  499. ret = dev_insert_sensor_info(_globalDeviceManager->db, &_sensor_temp->Cur_sensor_info, &sensor_nSaveIndex);
  500. if (ret != 0)
  501. {
  502. log_e("sensor_temp_write database error.");
  503. }
  504. }
  505. if (_sensor_temp->sensor_status == 0)
  506. {
  507. sensor_alarm(_sensor_temp, SENSOR_VAL1_UPPER);
  508. sensor_alarm(_sensor_temp, SENSOR_VAL1_LOWER);
  509. sensor_alarm(_sensor_temp, SENSOR_VAL2_UPPER);
  510. sensor_alarm(_sensor_temp, SENSOR_VAL2_LOWER);
  511. }
  512. }
  513. pthread_mutex_unlock(&__globalDeviceManage._sensor_update);
  514. bool SaveDBFlag = false; // 数据库存储记录,只要有通道存,就存一次总通道数据
  515. int _chn = 0;
  516. memset(Vavg, 0.0, sizeof(Vavg));
  517. memset(VavgTimes, 0, sizeof(VavgTimes));
  518. // 数据刷新
  519. pthread_mutex_lock(&__globalDeviceManage._power_update);
  520. list_for_each_entry(_globalPowerMangerTemp, &_globalDeviceManager->_globalPowerManger.list, list)
  521. {
  522. memcpy(&_globalPowerInfo._power_info, &_globalDeviceManager->_all_ctrl_board[(int)_globalPowerMangerTemp->product_saddr]._PowerInfo[0], sizeof(PowerInfo));
  523. _globalTotalPowerInfo.product_id = _globalDeviceManager->_globalDevInfo.product_id;
  524. _globalTotalPowerInfo.product_ch_id = 0; // 总电源通道信息为0
  525. _globalTotalPowerInfo.product_status = 0;
  526. _globalTotalPowerInfo._power_info.voltage = _globalTotalPowerInfo._power_info.voltage > _globalPowerInfo._power_info.voltage ? _globalTotalPowerInfo._power_info.voltage : _globalPowerInfo._power_info.voltage;
  527. _globalTotalPowerInfo._power_info.current += _globalPowerInfo._power_info.current;
  528. _globalTotalPowerInfo._power_info.power += _globalPowerInfo._power_info.power;
  529. _globalTotalPowerInfo._power_info.freq = _globalTotalPowerInfo._power_info.freq > _globalPowerInfo._power_info.freq ? _globalTotalPowerInfo._power_info.freq : _globalPowerInfo._power_info.freq;
  530. _globalTotalPowerInfo._power_info.consumption += _globalPowerInfo._power_info.consumption;
  531. _globalTotalPowerInfo._power_info.factor = _globalTotalPowerInfo._power_info.factor > _globalPowerInfo._power_info.factor ? _globalTotalPowerInfo._power_info.factor : _globalPowerInfo._power_info.factor;
  532. _globalTotalPowerInfo._power_info.status = _globalPowerInfo._power_info.status;
  533. // 补全信息
  534. _globalPowerInfo.product_id = _globalPowerMangerTemp->product_id;
  535. _globalPowerInfo.product_ch_id = _globalPowerMangerTemp->product_ch_id;
  536. _globalPowerInfo.product_status = _globalPowerInfo._power_info.status;
  537. // voltage
  538. if (_globalPowerMangerTemp->global_over_manager->product_vol_upper_enable)
  539. {
  540. if (_globalDeviceManager->_all_ctrl_board[(int)_globalPowerMangerTemp->product_saddr]._PowerInfo[0].voltage >
  541. _globalPowerMangerTemp->global_over_manager->product_vol_upper_threshold)
  542. {
  543. _globalDeviceManager->_all_ctrl_board[(int)_globalPowerMangerTemp->product_saddr]._PowerWarninginfo[0].w_voltage_up = 1;
  544. }
  545. }
  546. if (_globalPowerMangerTemp->global_over_manager->product_vol_lower_enable)
  547. {
  548. if (_globalDeviceManager->_all_ctrl_board[(int)_globalPowerMangerTemp->product_saddr]._PowerInfo[0].voltage <
  549. _globalPowerMangerTemp->global_over_manager->product_vol_lower_threshold)
  550. {
  551. _globalDeviceManager->_all_ctrl_board[(int)_globalPowerMangerTemp->product_saddr]._PowerWarninginfo[0].w_voltage_down = 1;
  552. }
  553. }
  554. // current
  555. if (_globalPowerMangerTemp->global_over_manager->product_cur_upper_enable)
  556. {
  557. if (_globalDeviceManager->_all_ctrl_board[(int)_globalPowerMangerTemp->product_saddr]._PowerInfo[0].current >
  558. _globalPowerMangerTemp->global_over_manager->product_cur_upper_threshold)
  559. {
  560. _globalDeviceManager->_all_ctrl_board[(int)_globalPowerMangerTemp->product_saddr]._PowerWarninginfo[0].w_current = 1;
  561. }
  562. }
  563. // power
  564. if (_globalPowerMangerTemp->global_over_manager->product_pwr_upper_enable)
  565. {
  566. if (_globalDeviceManager->_all_ctrl_board[(int)_globalPowerMangerTemp->product_saddr]._PowerInfo[0].power >
  567. _globalPowerMangerTemp->global_over_manager->product_pwr_upper_threshold)
  568. {
  569. _globalDeviceManager->_all_ctrl_board[(int)_globalPowerMangerTemp->product_saddr]._PowerWarninginfo[0].w_power = 1;
  570. }
  571. }
  572. // constmer
  573. if (_globalPowerMangerTemp->global_over_manager->product_pwrcon_upper_enable)
  574. {
  575. if (_globalDeviceManager->_all_ctrl_board[(int)_globalPowerMangerTemp->product_saddr]._PowerInfo[0].consumption >
  576. _globalPowerMangerTemp->global_over_manager->product_pwrcon_upper_threshold)
  577. {
  578. _globalDeviceManager->_all_ctrl_board[(int)_globalPowerMangerTemp->product_saddr]._PowerWarninginfo[0].w_consumption = 1;
  579. }
  580. }
  581. memcpy(&_globalPowerWarningInfo,
  582. &_globalDeviceManager->_all_ctrl_board[(int)_globalPowerMangerTemp->product_saddr]._PowerWarninginfo[0],
  583. sizeof(PowerWarningInfo));
  584. time_t now;
  585. time(&now);
  586. t = localtime(&now);
  587. char buffer[80];
  588. strftime(buffer, sizeof(buffer), "%Y-%m-%d %H:%M:%S", t);
  589. memset(_globalPowerInfo.samp_time,0,sizeof(_globalPowerInfo.samp_time));
  590. strftime(_globalPowerInfo.samp_time, sizeof(_globalPowerInfo.samp_time), "%Y-%m-%d %H:%M:%S", t);
  591. sprintf(buffer,".%03ld",tv.tv_usec/1000);
  592. strcat(_globalPowerInfo.samp_time,buffer);
  593. if (difftime(now,_globalPowerMangerTemp->product_log_time)>(sSaveTime/1000))
  594. {
  595. _globalPowerMangerTemp->product_log_time=now;
  596. SaveDBFlag=true;
  597. /* code */
  598. //插入数据库
  599. if(dev_insert_power_info(_globalDeviceManager->db,&_globalPowerInfo,&nSaveIndex)!=0)
  600. {
  601. log_d("ch%d insert data error.\n",_globalPowerMangerTemp->product_ch_id);
  602. }
  603. }
  604. //判断阈值状态
  605. if (_globalPowerWarningInfo.w_voltage_up!=_globalPowerMangerTemp->_PowerWarninginfo.w_voltage_up)
  606. {
  607. _globalPowerMangerTemp->_PowerWarninginfo.w_voltage_up=_globalPowerWarningInfo.w_voltage_up;
  608. /*高电压 */
  609. if (_globalPowerWarningInfo.w_voltage_up)
  610. dev_Alarm_send_message(_globalDeviceManager,_globalPowerMangerTemp,WARNING_V_UP);
  611. }
  612. if (_globalPowerWarningInfo.w_voltage_down!=_globalPowerMangerTemp->_PowerWarninginfo.w_voltage_down)
  613. {
  614. _globalPowerMangerTemp->_PowerWarninginfo.w_voltage_down=_globalPowerWarningInfo.w_voltage_down;
  615. /*低电压 */
  616. if(_globalPowerWarningInfo.w_voltage_down)
  617. dev_Alarm_send_message(_globalDeviceManager,_globalPowerMangerTemp,WARNING_V_DOWN);
  618. }
  619. if (_globalPowerWarningInfo.w_current!=_globalPowerMangerTemp->_PowerWarninginfo.w_current)
  620. {
  621. _globalPowerMangerTemp->_PowerWarninginfo.w_current=_globalPowerWarningInfo.w_current;
  622. /*高电流 */
  623. if(_globalPowerWarningInfo.w_current)
  624. dev_Alarm_send_message(_globalDeviceManager,_globalPowerMangerTemp,WARNING_A_UP);
  625. }
  626. if (_globalPowerWarningInfo.w_power!=_globalPowerMangerTemp->_PowerWarninginfo.w_power)
  627. {
  628. _globalPowerMangerTemp->_PowerWarninginfo.w_power=_globalPowerWarningInfo.w_power;
  629. /*高功率 */
  630. if(_globalPowerWarningInfo.w_power)
  631. dev_Alarm_send_message(_globalDeviceManager,_globalPowerMangerTemp,WARNING_W_UP);
  632. }
  633. if (_globalPowerWarningInfo.w_consumption!=_globalPowerMangerTemp->_PowerWarninginfo.w_consumption)
  634. {
  635. _globalPowerMangerTemp->_PowerWarninginfo.w_consumption=_globalPowerWarningInfo.w_consumption;
  636. /*高耗电 */
  637. if(_globalPowerWarningInfo.w_consumption)
  638. dev_Alarm_send_message(_globalDeviceManager,_globalPowerMangerTemp,WARNING_P_UP);
  639. }
  640. //nanosleep(&reqSleep, NULL);
  641. //usleep(usleepTime);
  642. #endif
  643. //全局记录一份数据
  644. if (!isErrorBreak)
  645. {
  646. memcpy(&_globalPowerMangerTemp->_PowerInfo,&_globalPowerInfo._power_info,sizeof(PowerInfo));
  647. memcpy(&_globalPowerMangerTemp->_PowerWarninginfo,&_globalPowerWarningInfo,sizeof(PowerWarningInfo));
  648. }
  649. isErrorBreak=false;
  650. //判断是否存在定时需要触发
  651. }
  652. //插入总电源信息
  653. gettimeofday(&tv, &tz);
  654. t = localtime(&tv.tv_sec);
  655. sprintf(_globalTotalPowerInfo.samp_time,"%04d-%02d-%02d %02d:%02d:%02d.%03ld",
  656. t->tm_year+1900,t->tm_mon+1,t->tm_mday,t->tm_hour,t->tm_min,t->tm_sec,tv.tv_usec/1000);
  657. //更新总电源信息
  658. //_globalDeviceManager->_globalPowerManger._PowerInfo = _globalTotalPowerInfo._power_info;
  659. _globalDeviceManager->_globalPowerManger._PowerInfo=_globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0];
  660. //插入数据库
  661. /*
  662. if (SaveDBFlag)
  663. {
  664. if (dev_insert_power_info(_globalDeviceManager->db, &_globalTotalPowerInfo, &nSaveIndex) != 0)
  665. {
  666. log_d("ch%d insert data error.\n", _globalTotalPowerInfoTemp.product_ch_id);
  667. }
  668. }
  669. */
  670. pthread_mutex_unlock(&__globalDeviceManage._power_update);
  671. sleep(3);
  672. }
  673. free_hash_table(_globalDeviceManager->alarmTab);
  674. log_e("Error!!!!!!!!!!!!!!Thread End");
  675. pthread_exit(NULL);
  676. }
  677. /// @brief 传感器硬件接口初始化
  678. /// @param _globalDeviceManager
  679. /// @return
  680. int dev_sensor_init(GlobalDeviceManager *_globalDeviceManager)
  681. {
  682. int ret = 0;
  683. ret = g_modbus_init(&_globalDeviceManager->sensor_modbus_manager,
  684. INTERL_SENSOR_MODBUS_PORT, // _globalSensorMangerTemp->sensor_port_name,
  685. INTERL_SENSOR_MODBUS_BAUD, // _globalSensorMangerTemp->sensor_baud,
  686. MASTER_MODE,
  687. 0,
  688. "sensor",
  689. 1);
  690. if (ret != 0)
  691. {
  692. log_e("sensor modbus init error.\n");
  693. }
  694. else log_i("sensor modbus init ok.\n");
  695. return 0;
  696. }
  697. /**
  698. * @brief 报警控制通道
  699. *
  700. * 这是一个用于报警控制通道的函数。
  701. */
  702. void AlarmCtrlChn(int nChID, int nCtrl)
  703. {
  704. char buff[256];
  705. int ret = 0;
  706. log_d("AlarmCtrlChn:%d,nCtrl=%d",nChID,nCtrl);
  707. GlobalPowerManger *_globalPowerMangerTemp = NULL;
  708. list_for_each_entry(_globalPowerMangerTemp, &__globalDeviceManage._globalPowerManger.list, list)
  709. {
  710. if (_globalPowerMangerTemp == NULL)
  711. break;
  712. if (nChID == _globalPowerMangerTemp->product_ch_id)
  713. {
  714. log_d("switch ctrl:%d", _globalPowerMangerTemp->product_ch_id);
  715. ret = g_switch_set_all_chn_ctrl(&__globalDeviceManage._globalRelaySampManger, _globalPowerMangerTemp,
  716. _globalPowerMangerTemp->product_saddr,
  717. _globalPowerMangerTemp->product_ch_addr,
  718. nCtrl, false);
  719. if (ret < 0)
  720. {
  721. ret = g_switch_set_all_chn_ctrl(&__globalDeviceManage._globalRelaySampManger, _globalPowerMangerTemp,
  722. _globalPowerMangerTemp->product_saddr,
  723. _globalPowerMangerTemp->product_ch_addr,
  724. nCtrl, false);
  725. }
  726. sprintf(buff, "$开启$|$通道$|%d", _globalPowerMangerTemp->product_ch_id);
  727. dev_insert_alarm_ctrl(__globalDeviceManage.db, _globalPowerMangerTemp->product_id, 2, buff);
  728. break;
  729. }
  730. }
  731. }
  732. void AlarmCtrlAll(int nCtrl)
  733. {
  734. //总关
  735. int nSendAddr=0;
  736. char buff[256];
  737. log_d("AlarmCtrlAll:Ctrl=%d",nCtrl);
  738. GlobalPowerManger* _globalPowerMangerTemp = NULL ;
  739. list_for_each_entry(_globalPowerMangerTemp, &__globalDeviceManage._globalPowerManger.list, list)
  740. {
  741. if(_globalPowerMangerTemp==NULL)
  742. break;
  743. if(_globalPowerMangerTemp->product_saddr==nSendAddr)continue;
  744. nSendAddr=_globalPowerMangerTemp->product_saddr;
  745. log_i("Close All address Start");
  746. int rec=g_switch_set_all_ctrl(&__globalDeviceManage._globalRelaySampManger,_globalPowerMangerTemp->product_ch_type,_globalPowerMangerTemp->product_saddr,nCtrl);
  747. if(rec<0)log_i("Close All address:%d rec:%d:%s",nSendAddr,rec,modbus_strerror(errno));
  748. }
  749. sprintf(buff,"$关闭$|$所有$|$通道$");
  750. dev_insert_alarm_ctrl(__globalDeviceManage.db,_globalPowerMangerTemp->product_id,2,buff);
  751. }
  752. /**
  753. * @brief 传感器报警函数
  754. *
  755. * 根据给定的报警类型和全局传感器管理器,执行相应的传感器报警操作。
  756. *
  757. * @param _globalSensorMangerTemp 全局传感器管理器指针
  758. * @param nAlarmType 报警类型(如SENSOR_VAL1_UPPER、SENSOR_VAL1_LOWER等)
  759. */
  760. void sensor_alarm(GlobalSensorManger *_globalSensorMangerTemp, int nAlarmType)
  761. {
  762. bool *penable = NULL; //使能
  763. bool *pSave = NULL; //是否已报警
  764. float *pValthreshold = NULL;//阈值
  765. float *pValData = NULL; //当前值
  766. char *nCtrlType = NULL; //报警方式
  767. char *nCtrlValue= NULL; //控制通道
  768. if (!_globalSensorMangerTemp|| !_globalSensorMangerTemp->over_manager)
  769. {
  770. return;
  771. }
  772. switch (nAlarmType)
  773. {
  774. case SENSOR_VAL1_UPPER:
  775. penable = &_globalSensorMangerTemp->over_manager->sensor_val1_upper_enabled;
  776. pValthreshold = &_globalSensorMangerTemp->over_manager->sensor_val1_upper_threshold;
  777. pSave = &_globalSensorMangerTemp->warning_status.sensor_val1_upper;
  778. pValData = &_globalSensorMangerTemp->Cur_sensor_info.val1;
  779. nCtrlType = &_globalSensorMangerTemp->over_manager->sensor_val1_upper_threshold_ctrl;
  780. nCtrlValue = _globalSensorMangerTemp->over_manager->sensor_val1_upper_threshold_ctrl_para;
  781. break;
  782. case SENSOR_VAL1_LOWER:
  783. penable = &_globalSensorMangerTemp->over_manager->sensor_val1_lower_enabled;
  784. pValthreshold = &_globalSensorMangerTemp->over_manager->sensor_val1_lower_threshold;
  785. pSave = &_globalSensorMangerTemp->warning_status.sensor_val1_lower;
  786. pValData = &_globalSensorMangerTemp->Cur_sensor_info.val1;
  787. nCtrlType = &_globalSensorMangerTemp->over_manager->sensor_val1_lower_threshold_ctrl;
  788. nCtrlValue = _globalSensorMangerTemp->over_manager->sensor_val1_lower_threshold_ctrl_para;
  789. break;
  790. case SENSOR_VAL2_UPPER:
  791. penable = &_globalSensorMangerTemp->over_manager->sensor_val2_upper_enabled;
  792. pValthreshold = &_globalSensorMangerTemp->over_manager->sensor_val2_upper_threshold;
  793. pSave = &_globalSensorMangerTemp->warning_status.sensor_val2_upper;
  794. pValData = &_globalSensorMangerTemp->Cur_sensor_info.val2;
  795. nCtrlType = &_globalSensorMangerTemp->over_manager->sensor_val2_upper_threshold_ctrl;
  796. nCtrlValue = _globalSensorMangerTemp->over_manager->sensor_val2_upper_threshold_ctrl_para;
  797. break;
  798. case SENSOR_VAL2_LOWER:
  799. penable = &_globalSensorMangerTemp->over_manager->sensor_val2_lower_enabled;
  800. pValthreshold = &_globalSensorMangerTemp->over_manager->sensor_val2_lower_threshold;
  801. pSave = &_globalSensorMangerTemp->warning_status.sensor_val2_lower;
  802. pValData = &_globalSensorMangerTemp->Cur_sensor_info.val2;
  803. nCtrlType = &_globalSensorMangerTemp->over_manager->sensor_val2_lower_threshold_ctrl;
  804. nCtrlValue = _globalSensorMangerTemp->over_manager->sensor_val2_lower_threshold_ctrl_para;
  805. break;
  806. default:
  807. break;
  808. }
  809. if (!(pValthreshold && penable && pValData && pSave))
  810. {
  811. return;
  812. }
  813. if (nAlarmType == SENSOR_VAL1_UPPER || nAlarmType == SENSOR_VAL2_UPPER)//上限
  814. {
  815. if (*penable == 1 && *pValthreshold < *pValData)
  816. {
  817. if (!*pSave)
  818. {
  819. *pSave = true;
  820. //log_d("Sensor_Alarm CtrlType=%d,value=%s",*nCtrlType,*nCtrlValue);
  821. dev_sensor_Alarm_send_message(&__globalDeviceManage, _globalSensorMangerTemp, nAlarmType);
  822. if (*nCtrlType == ALARM_CTRL_CLOSE_CH)
  823. {
  824. char *pCHlist;
  825. char *pCHListSave;
  826. pCHlist = strtok_r(nCtrlValue, ",", &pCHListSave);
  827. // 其他版本功能
  828. while (pCHlist != NULL)
  829. {
  830. AlarmCtrlChn(atoi(pCHlist),0);
  831. pCHlist = strtok_r(NULL, ",", &pCHListSave);
  832. }
  833. }
  834. else if (*nCtrlType == ALARM_CTRL_CLOSE_CH)
  835. {
  836. AlarmCtrlAll(0);
  837. }
  838. }
  839. }
  840. else
  841. {
  842. *pSave = false;
  843. }
  844. }
  845. else //下限
  846. {
  847. if (*penable == 1 && *pValthreshold > *pValData)
  848. {
  849. if (!*pSave)
  850. {
  851. *pSave = true;
  852. //log_d("Sensor_Alarm CtrlType=%d,value=%s",*nCtrlType,*nCtrlValue);
  853. dev_sensor_Alarm_send_message(&__globalDeviceManage, _globalSensorMangerTemp, nAlarmType);
  854. if (*nCtrlType == ALARM_CTRL_CLOSE_CH)
  855. {
  856. char *pCHlist;
  857. char *pCHListSave;
  858. pCHlist = strtok_r(nCtrlValue, ",", &pCHListSave);
  859. // 其他版本功能
  860. while (pCHlist != NULL)
  861. {
  862. AlarmCtrlChn(atoi(pCHlist), 0);
  863. pCHlist = strtok_r(NULL, ",", &pCHListSave);
  864. }
  865. }else if (*nCtrlType == ALARM_CTRL_CLOSE_CH)
  866. {
  867. AlarmCtrlAll(0);
  868. }
  869. }
  870. }
  871. else
  872. {
  873. *pSave = false;
  874. }
  875. }
  876. }
  877. /// @brief 传感器采集线程
  878. /// @param arg
  879. /// @return
  880. void* sensor_thread(void* arg)
  881. {
  882. #if 1
  883. GlobalDeviceManager *_globalDeviceManager = (GlobalDeviceManager *)&__globalDeviceManage;
  884. unsigned int samp_time = _globalDeviceManager->_globalDevInfo.product_samp_time;
  885. GlobalSensorManger *_globalSensorMangerTemp;
  886. int ret = 0;
  887. GlobalSensorInfo _globalSensorInfo;
  888. struct tm *t;
  889. struct timeval tv;
  890. struct timezone tz;
  891. // 硬件初始化
  892. // 初始化modbus
  893. // 初始化gpio
  894. dev_sensor_init(_globalDeviceManager);
  895. pthread_mutex_init(&__globalDeviceManage._sensor_update,NULL);
  896. float temperature = 0.0;
  897. float humidity = 0.0;
  898. int nSaveIndex = 1;
  899. char strTable[] = "Table_SensorInfo";
  900. char strTemp[64] = {0};
  901. dev_search_last_Index(_globalDeviceManager->db, &nSaveIndex, strTable); // 查询日志最大点
  902. // printf("asdasdasdasdasd %d\n",nSaveIndex);
  903. int nMaxIndex = 2000000000;
  904. int nDeleteNumber = 1000 / 120000 * 3600 * 24 * 30 * 10; // 1/60s;
  905. // printf("senseor !!!!!\n");
  906. //初始化GPIO
  907. /*
  908. log_d("GPIO 开始初始化");
  909. list_for_each_entry(_globalSensorMangerTemp, &_globalDeviceManager->_globalSensorManger.list, list)
  910. {
  911. if (_globalSensorMangerTemp->sensor_interface_type == 2) // 干节点传感器
  912. {
  913. memset(strTemp, 0, sizeof(strTemp));
  914. sprintf(strTemp, "echo %d > /sys/class/gpio/export",_globalSensorMangerTemp->sensor_addr+GPIO_PD11);
  915. system(strTemp);
  916. memset(strTemp, 0, sizeof(strTemp));
  917. sprintf(strTemp, "echo in > /sys/class/gpio/gpio%d/direction",_globalSensorMangerTemp->sensor_addr+GPIO_PD11);
  918. system(strTemp);
  919. }
  920. }
  921. log_d("GPIO 初始化成功");
  922. */
  923. // 采集线程
  924. while (_globalDeviceManager->dev_samp_flag)
  925. {
  926. if (nSaveIndex > nMaxIndex)
  927. {
  928. dev_change_last_Index(_globalDeviceManager->db, &nSaveIndex, nDeleteNumber, strTable);
  929. }
  930. pthread_mutex_lock(&__globalDeviceManage._sensor_update);
  931. list_for_each_entry(_globalSensorMangerTemp, &_globalDeviceManager->_globalSensorManger.list, list)
  932. {
  933. switch (_globalSensorMangerTemp->sensor_type)
  934. {
  935. case SENSOR_TYPE_TEMPERATURE: // 温湿度
  936. {
  937. // printf("get \n");
  938. float temperature = 0.0;
  939. float humidity = 0.0;
  940. #ifdef CUST_ANDERSON
  941. ret = _g_sensor_get_temperature_value_ANDERSON((void *)&_globalDeviceManager->sensor_modbus_manager,
  942. _globalSensorMangerTemp->sensor_addr,
  943. &temperature,
  944. &humidity);
  945. #else
  946. ret = _g_sensor_get_temperature_value((void *)&_globalDeviceManager->sensor_modbus_manager,
  947. _globalSensorMangerTemp->sensor_addr,
  948. &temperature,
  949. &humidity);
  950. #endif
  951. if (ret == -1)
  952. {
  953. _globalSensorMangerTemp->sensor_status = 1;
  954. }
  955. else
  956. {
  957. _globalSensorMangerTemp->sensor_status = 0;
  958. }
  959. // log_d("sensor val:%0.2f %0.2f\n",temperature,humidity);
  960. // printf("get temperature=%f humidity=%f\n",temperature,humidity);
  961. gettimeofday(&tv, &tz);
  962. t = localtime(&tv.tv_sec);
  963. sprintf(_globalSensorInfo.samp_time, "%04d-%02d-%02d %02d:%02d:%02d.%03ld",
  964. t->tm_year + 1900, t->tm_mon, t->tm_mday, t->tm_hour, t->tm_min, t->tm_sec, tv.tv_usec / 1000);
  965. _globalSensorInfo.product_id = __globalDeviceManage._globalDevInfo.product_id;
  966. _globalSensorInfo.sensor_id = _globalSensorMangerTemp->sensor_id;
  967. _globalSensorInfo.val1 = temperature;
  968. _globalSensorInfo.val2 = humidity;
  969. _globalSensorInfo.product_log_time=_globalSensorMangerTemp->Cur_sensor_info.product_log_time;
  970. _globalSensorMangerTemp->Cur_sensor_info=_globalSensorInfo;
  971. _globalDeviceManager->g_modebus_read.temprature=temperature *1000;
  972. _globalDeviceManager->g_modebus_read.humidity=humidity *1000;
  973. }
  974. break;
  975. case SENSOR_TYPE_SMOKE: // 烟雾
  976. case SENSOR_TYPE_WATER: // 水浸
  977. case SENSOR_TYPE_DOOR: // 门禁 IO信号
  978. {
  979. if (_globalSensorMangerTemp->sensor_interface_type==2)//干节点传感器
  980. {
  981. int nStatus=0;
  982. g_switch_get_gpio_status(_globalSensorMangerTemp->sensor_addr+GPIO_PD11,&nStatus);
  983. _globalSensorMangerTemp->Cur_sensor_info.val1=nStatus;
  984. }
  985. }
  986. break;
  987. case SENSOR_TYPE_GAS: // 气体
  988. {
  989. }
  990. break;
  991. case SENSOR_TYPE_AIR_PRESS: // 气流
  992. {
  993. }
  994. break;
  995. case SENSOR_TYPE_DoubleT://双头传感器
  996. {
  997. float temperature = 0.0;
  998. float temperature2 = 0.0;
  999. ret = _g_sensor_get_D_temperature_value_ANDERSON((void *)&_globalDeviceManager->sensor_modbus_manager,
  1000. _globalSensorMangerTemp->sensor_addr,
  1001. &temperature,
  1002. &temperature2);
  1003. if (ret == -1)
  1004. {
  1005. //log_w("Relay modbus Error:%s\n", modbus_strerror(errno));
  1006. _globalSensorMangerTemp->sensor_status = 1;
  1007. }
  1008. else
  1009. {
  1010. _globalSensorMangerTemp->sensor_status = 0;
  1011. }
  1012. // log_d("sensor val:%0.2f %0.2f\n",temperature,humidity);
  1013. // printf("get temperature=%f humidity=%f\n",temperature,humidity);
  1014. gettimeofday(&tv, &tz);
  1015. t = localtime(&tv.tv_sec);
  1016. sprintf(_globalSensorInfo.samp_time, "%04d-%02d-%02d %02d:%02d:%02d.%03ld",
  1017. t->tm_year + 1900, t->tm_mon, t->tm_mday, t->tm_hour, t->tm_min, t->tm_sec, tv.tv_usec / 1000);
  1018. _globalSensorInfo.product_id = __globalDeviceManage._globalDevInfo.product_id;
  1019. _globalSensorInfo.sensor_id = _globalSensorMangerTemp->sensor_id;
  1020. _globalSensorInfo.val1 = temperature;
  1021. _globalSensorInfo.val2 = temperature2;
  1022. _globalSensorInfo.product_log_time=_globalSensorMangerTemp->Cur_sensor_info.product_log_time;;
  1023. _globalSensorMangerTemp->Cur_sensor_info=_globalSensorInfo;
  1024. _globalDeviceManager->g_modebus_read.temprature=temperature;
  1025. _globalDeviceManager->g_modebus_read.temprature2=temperature2;
  1026. }
  1027. break;
  1028. }
  1029. // 通用功能
  1030. // 写入数据库
  1031. gettimeofday(&tv, NULL);
  1032. time_t now;
  1033. time(&now);
  1034. t = localtime(&now);
  1035. char buffer[80];
  1036. strftime(buffer, sizeof(buffer), "%Y-%m-%d %H:%M:%S", t);
  1037. memset(_globalSensorMangerTemp->Cur_sensor_info.samp_time, 0, sizeof(_globalSensorMangerTemp->Cur_sensor_info.samp_time));
  1038. strftime(_globalSensorMangerTemp->Cur_sensor_info.samp_time, sizeof(_globalSensorMangerTemp->Cur_sensor_info.samp_time), "%Y-%m-%d %H:%M:%S", t);
  1039. sprintf(buffer, ".%03ld", tv.tv_usec / 1000);
  1040. strcat(_globalSensorMangerTemp->Cur_sensor_info.samp_time, buffer);
  1041. if (difftime(now, _globalSensorMangerTemp->Cur_sensor_info.product_log_time) > (30000 / 1000))
  1042. {
  1043. _globalSensorMangerTemp->Cur_sensor_info.product_log_time = now;
  1044. // 插入数据库
  1045. ret = dev_insert_sensor_info(_globalDeviceManager->db, &_globalSensorMangerTemp->Cur_sensor_info, &nSaveIndex);
  1046. if (ret != 0)
  1047. {
  1048. log_e("sensor_temp_write database error.");
  1049. }
  1050. }
  1051. if (_globalSensorMangerTemp->sensor_status == 0)
  1052. {
  1053. sensor_alarm(_globalSensorMangerTemp, SENSOR_VAL1_UPPER);
  1054. sensor_alarm(_globalSensorMangerTemp, SENSOR_VAL1_LOWER);
  1055. sensor_alarm(_globalSensorMangerTemp, SENSOR_VAL2_UPPER);
  1056. sensor_alarm(_globalSensorMangerTemp, SENSOR_VAL2_LOWER);
  1057. }
  1058. }
  1059. pthread_mutex_unlock(&__globalDeviceManage._sensor_update);
  1060. sleep(3);
  1061. }
  1062. #endif
  1063. pthread_exit(NULL);
  1064. }
  1065. void* shm_thread(void *arg)
  1066. {
  1067. int fd = 0;
  1068. GlobalPowerManger* _globalPowerMangerTemp = NULL ;
  1069. GlobalDeviceManager *_globalDeviceManager = (GlobalDeviceManager *)&__globalDeviceManage;
  1070. smartPDU_shm_data pShmData;
  1071. memset(&pShmData, 0, sizeof(pShmData));
  1072. while (_globalDeviceManager->dev_samp_flag)
  1073. {
  1074. fd = shm_open("/smartPDU_shm", O_RDWR, 0666);
  1075. if (fd < 0)
  1076. {
  1077. printf("error open shm object\n");
  1078. sleep(5); // 延时5秒后再次创建
  1079. continue;
  1080. }
  1081. _globalDeviceManager->g_shm_Data = (smartPDU_shm_data *)mmap(NULL, sizeof(smartPDU_shm_data), PROT_READ | PROT_WRITE, MAP_SHARED, fd, 0);
  1082. if (!_globalDeviceManager->g_shm_Data)
  1083. {
  1084. printf("mmap failed!\n");
  1085. close(fd);
  1086. sleep(5); // 延时5秒后再次创建
  1087. continue;
  1088. }
  1089. while (_globalDeviceManager->dev_samp_flag)
  1090. {
  1091. if (_globalDeviceManager->g_shm_Data)
  1092. { // 初始化成功
  1093. memcpy(&pShmData, _globalDeviceManager->g_shm_Data, sizeof(smartPDU_shm_data));
  1094. if (_globalDeviceManager->g_shm_Data->bPDUSet > 0) // 已更新
  1095. {
  1096. GlobalPowerInfo _globalPowerInfo;
  1097. memset(&_globalPowerInfo._power_info, 0, sizeof(PowerInfo));
  1098. memcpy(&_globalPowerInfo._power_info,
  1099. &_globalDeviceManager->_all_ctrl_board[0]._PowerInfo[0],
  1100. sizeof(PowerInfo));
  1101. //_globalDeviceManager->_globalPowerManger;
  1102. _globalDeviceManager->g_shm_Data->fV = _globalPowerInfo._power_info.voltage;
  1103. _globalDeviceManager->g_shm_Data->fA = _globalPowerInfo._power_info.current;
  1104. _globalDeviceManager->g_shm_Data->fW = _globalPowerInfo._power_info.power;
  1105. _globalDeviceManager->g_shm_Data->fF = _globalPowerInfo._power_info.factor;
  1106. _globalDeviceManager->g_shm_Data->fS = _globalPowerInfo._power_info.consumption;
  1107. _globalDeviceManager->g_shm_Data->nStatus = _globalPowerInfo._power_info.status;
  1108. _globalDeviceManager->g_shm_Data->fT = _globalDeviceManager->g_modebus_read.temprature /1000.0;
  1109. _globalDeviceManager->g_shm_Data->fH = _globalDeviceManager->g_modebus_read.humidity /1000.0;
  1110. }
  1111. else if (_globalDeviceManager->g_shm_Data->bPDUSet == 0)
  1112. { // 等于于0则更新pdu数据
  1113. int nMaxCh=0;
  1114. list_for_each_entry(_globalPowerMangerTemp, &_globalDeviceManager->_globalPowerManger.list, list)
  1115. {
  1116. nMaxCh+=1;
  1117. }
  1118. //_globalDeviceManager->g_shm_Data->nMaxCh = nMaxCh;
  1119. _globalDeviceManager->g_shm_Data->nMaxCh = 1;
  1120. _globalDeviceManager->g_shm_Data->bPDUSet = 1;
  1121. }
  1122. else
  1123. { // 小于0 则主程序已析构退出重新等待加载
  1124. munmap(_globalDeviceManager->g_shm_Data, sizeof(smartPDU_shm_data));
  1125. _globalDeviceManager->g_shm_Data = NULL;
  1126. close(fd);
  1127. break;
  1128. }
  1129. }
  1130. sleep(5);
  1131. }
  1132. }
  1133. if (_globalDeviceManager->g_shm_Data)
  1134. {
  1135. munmap(_globalDeviceManager->g_shm_Data, sizeof(smartPDU_shm_data));
  1136. close(fd);
  1137. }
  1138. pthread_exit(NULL);
  1139. }
  1140. static void* ntp_thread(void *arg)
  1141. {
  1142. int r=0,flag=0;
  1143. NTPClient *pc=NULL;
  1144. time_t time1=0,time2=0,utc_time;
  1145. thread_handle_t *h=(thread_handle_t*)arg;
  1146. NTPManager *pntp=&_globalNTPManager;
  1147. #define NTP_TIMEOUT 5
  1148. #define NTP_INTERVAL_TIME 30
  1149. time1 = time(NULL);
  1150. while (h->quit == 0)
  1151. {
  1152. if (pntp->mode > 0)
  1153. {
  1154. //printf("___ntp_sync_flag: %d, interval: %d\n", ntp_sync_flag, abs(time1-time2));
  1155. if (ntp_sync_flag || (abs(time1 - time2) >= NTP_INTERVAL_TIME))
  1156. {
  1157. system("date");
  1158. if(pc==NULL) {
  1159. pc = createNTPClient(pntp->ntpaddress, pntp->port, NTP_TIMEOUT);
  1160. }
  1161. if (pc)
  1162. {
  1163. if (getCurrentTimeFromNTP(pc, &utc_time) == 0)
  1164. {
  1165. time_t host_time = time(NULL);
  1166. log_d("host_time: %ld, ntp_time: %ld", host_time, utc_time);
  1167. //if(host_time != utc_time) {
  1168. set_utctime(utc_time);
  1169. //set_utctime_zone(utc_time, pntp->tzone);
  1170. log_i("setCurrentTimeFromNTP success!");
  1171. // }
  1172. }
  1173. else
  1174. {
  1175. log_e("getCurrentTimeFromNTP failed!");
  1176. }
  1177. destroyNTPClient(pc);
  1178. pc = NULL;
  1179. }
  1180. ntp_sync_flag = 0;
  1181. time2 = time1;
  1182. }
  1183. }
  1184. time1 = time(NULL);
  1185. sleep(1);
  1186. }
  1187. destroyNTPClient(pc);
  1188. pthread_exit(NULL);
  1189. }
  1190. int ntp_config(NTPManager *nm)
  1191. {
  1192. int r=0;
  1193. #ifdef USE_NTPD
  1194. if(nm->mode==1) {
  1195. char cmd[400];
  1196. char *conf="/etc/ntp.conf";
  1197. sprintf(cmd, "sed -e /^server.*$/d -e \"$ a server %s minpoll 4 maxpoll 5\" -i %s", nm->ntpaddress, conf);
  1198. printf("___cmd: %s\n", cmd);
  1199. r = system(cmd);
  1200. system("/etc/init.d/S49ntp restart");
  1201. }
  1202. else {
  1203. system("/etc/init.d/S49ntp stop");
  1204. }
  1205. #else
  1206. //system("/etc/init.d/S49ntp stop");
  1207. if(nm->mode==1) {
  1208. ntp_sync_flag = 1;
  1209. }
  1210. #endif
  1211. return r;
  1212. }
  1213. static int ntp_init(void)
  1214. {
  1215. int r=0,flag=0;
  1216. time_t time1=0,time2=0,utc_time;
  1217. GlobalDeviceManager *dm=&__globalDeviceManage;
  1218. NTPManager *pntp=&_globalNTPManager;
  1219. r = dev_get_ntp_info(dm->db, pntp);
  1220. if (r) {
  1221. pntp->mode = 1;
  1222. strcpy(pntp->ntpaddress, "cn.pool.ntp.org");
  1223. strcpy(pntp->ntpName, "cn-pool");
  1224. pntp->port = 123;
  1225. pntp->product_id = dm->_globalDevInfo.product_id;
  1226. time_t t = time(NULL);
  1227. struct tm* ptm = localtime(&t);
  1228. sprintf(pntp->time, "%04d-%02d-%02d %02d:%02d:%02d", ptm->tm_year + 1900, ptm->tm_mon + 1, ptm->tm_mday, ptm->tm_hour, ptm->tm_min, ptm->tm_sec);
  1229. struct tm* ptm_gm = gmtime(&t);
  1230. pntp->tzone = 8;
  1231. pntp->weekday = (ptm->tm_wday == 0) ? 7 : ptm->tm_wday;
  1232. if (dev_insert_ntp_info(dm->db, pntp)) {
  1233. log_e("insert npt info failed");
  1234. }
  1235. }
  1236. else {
  1237. log_d("get ntp info from database succeeded");
  1238. }
  1239. ntp_config(pntp);
  1240. #ifndef USE_NTPD
  1241. thread_start(THREAD_ID_NTP, ntp_thread, NULL, 10 * MB, 0);
  1242. #endif
  1243. return 0;
  1244. }
  1245. void* snmp_thread(void *arg)
  1246. {
  1247. //int ret = 0 ;
  1248. thread_handle_t *h = (thread_handle_t *)arg;
  1249. GlobalDeviceManager *dm = (GlobalDeviceManager *)h->arg;
  1250. /* we are a subagent */
  1251. char path[PATH_MAX];
  1252. /* we are a subagent */
  1253. netsnmp_ds_set_boolean(NETSNMP_DS_APPLICATION_ID, NETSNMP_DS_AGENT_ROLE, 1);
  1254. /* initialize the agent library */
  1255. sys_get_path(path, SNMP_MIB_NAME);
  1256. init_agent(path);
  1257. /* initialize your mib code here */
  1258. init_pduMIB_form();
  1259. init_pduMIB_scalar();
  1260. /* pduMIB will be used to read pduMIB.conf files. */
  1261. init_snmp(path);
  1262. init_snmp_alarm();
  1263. dev_get_snmp_info(dm->db, &_globalSNMPManager);
  1264. dev_Alarm_Run_message(dm, language_alarm_Init_Success[0], "SNMP");
  1265. int reconfig=0;
  1266. while(h->quit==0)
  1267. {
  1268. if (reconfig) {
  1269. free_config();
  1270. read_configs();
  1271. reconfig = 0;
  1272. }
  1273. agent_check_and_process(1);/* block every 1 second */
  1274. }
  1275. /* at shutdown time */
  1276. snmp_shutdown(path);
  1277. /* deinitialize your mib code here */
  1278. /* shutdown the agent library */
  1279. shutdown_agent();
  1280. pthread_exit(NULL);
  1281. }
  1282. static void get_mac(cascade_ip_mmap_t *mmp)
  1283. {
  1284. struct ifreq ifreq;
  1285. int sock;
  1286. char *net = "eth0";
  1287. if((sock = socket(AF_INET,SOCK_STREAM,0))<0)
  1288. {
  1289. perror("socket");
  1290. return;
  1291. }
  1292. strcpy(ifreq.ifr_name,net);
  1293. if(ioctl(sock,SIOCGIFHWADDR,&ifreq)<0)
  1294. {
  1295. perror("ioctl");
  1296. return;
  1297. }
  1298. close(sock);
  1299. mmp->mac[0]=ifreq.ifr_hwaddr.sa_data[0];
  1300. mmp->mac[1]=ifreq.ifr_hwaddr.sa_data[1];
  1301. mmp->mac[2]=ifreq.ifr_hwaddr.sa_data[2];
  1302. mmp->mac[3]=ifreq.ifr_hwaddr.sa_data[3];
  1303. mmp->mac[4]=ifreq.ifr_hwaddr.sa_data[4];
  1304. mmp->mac[5]=ifreq.ifr_hwaddr.sa_data[5];
  1305. }
  1306. /// @brief 全局结构体初始化
  1307. /// @param _globalDeviceManager
  1308. /// @return
  1309. int _global_device_manage_init(GlobalDeviceManager* _globalDeviceManager)
  1310. {
  1311. int ret = 0 ;
  1312. int type = 0 ;
  1313. int chn = 0 ;
  1314. char path[PATH_MAX];
  1315. int io_thread_flag = 0 ;
  1316. int sensor_thread_flag = 0 ;
  1317. int nTac_chn=0;
  1318. //paras_load(&_globalDeviceManager->_globalDevInfo);
  1319. //初始化用户登录列表
  1320. INIT_LIST_HEAD(&_GlobalUserLoginInfo.list);
  1321. //使用的通道
  1322. _globalDeviceManager->useSlaveCount = 0 ;
  1323. //链接数据库获取配置信息
  1324. sys_get_path(path, DATABASE_NAME);
  1325. log_i("database: %s\n", path);
  1326. ret = sqlite_init(&_globalDeviceManager->db,&_globalDeviceManager->dbThreadlock, path);
  1327. if(ret<0)
  1328. {
  1329. log_e("database %s open error.\n", path);
  1330. return -1 ;
  1331. }
  1332. log_i("database %s open ok.\n", path);
  1333. //查询设备总体参数
  1334. if(dev_get_device_info(_globalDeviceManager->db,&_globalDeviceManager->_globalDevInfo)!=0)
  1335. {
  1336. log_e("get device info error.\n");
  1337. return -1 ;
  1338. }
  1339. log_i("get device info ok.\n");
  1340. //电源管理表初始化
  1341. memset(&_globalDeviceManager->_globalPowerManger,0,sizeof(GlobalPowerManger));
  1342. INIT_LIST_HEAD(&_globalDeviceManager->_globalPowerManger.list);
  1343. _globalDeviceManager->_globalPowerManger.global_over_manager = (GlobalOverManager*)malloc(sizeof(GlobalOverManager));
  1344. if(_globalDeviceManager->_globalPowerManger.global_over_manager==NULL)
  1345. {
  1346. log_e("_globalPowerManger->global_over_manager malloc error.\n");
  1347. return -1 ;
  1348. }
  1349. memset(_globalDeviceManager->_globalPowerManger.global_over_manager, 0, sizeof(GlobalOverManager));
  1350. //查询是否存在全部通道信息
  1351. ret = dev_get_power_manage_info(_globalDeviceManager->db,
  1352. _globalDeviceManager->_globalDevInfo.product_id,0,
  1353. 0, //1*8+j
  1354. &_globalDeviceManager->_globalPowerManger);
  1355. //未查询到信息 则插入
  1356. if(ret==-1)
  1357. {
  1358. _globalDeviceManager->_globalPowerManger.product_id = _globalDeviceManager->_globalDevInfo.product_id;
  1359. _globalDeviceManager->_globalPowerManger.product_saddr = 0 ;
  1360. _globalDeviceManager->_globalPowerManger.product_ch_id = 0;
  1361. _globalDeviceManager->_globalPowerManger.product_ch_addr = 0;
  1362. sprintf( _globalDeviceManager->_globalPowerManger.product_ch_name,"ALL_CH");//,_globalDeviceManager->_globalPowerManger.product_ch_id);
  1363. _globalDeviceManager->_globalPowerManger.product_ch_type = type;
  1364. _globalDeviceManager->_globalPowerManger.product_ch_status = 0;
  1365. _globalDeviceManager->_globalPowerManger.product_ch_NF_status = 0;
  1366. _globalDeviceManager->_globalPowerManger.product_ch_start_delay = 1000;
  1367. _globalDeviceManager->_globalPowerManger.product_ch_stop_delay = 1000;
  1368. _globalDeviceManager->_globalPowerManger.global_over_manager->product_cur_over_upper_threshold_ctrl =ALARM_CTRL_ALARM_ONLY;//默认超限只报警
  1369. _globalDeviceManager->_globalPowerManger.global_over_manager->product_pwr_over_upper_threshold_ctrl = ALARM_CTRL_ALARM_ONLY;
  1370. _globalDeviceManager->_globalPowerManger.global_over_manager->product_pwrcon_over_upper_threshold_ctrl = ALARM_CTRL_ALARM_ONLY;
  1371. _globalDeviceManager->_globalPowerManger.global_over_manager->product_vol_over_lower_threshold_ctrl= ALARM_CTRL_ALARM_ONLY;
  1372. _globalDeviceManager->_globalPowerManger.global_over_manager->product_vol_over_upper_threshold_ctrl = ALARM_CTRL_ALARM_ONLY;
  1373. if(dev_insert_power_manage_info(_globalDeviceManager->db,
  1374. _globalDeviceManager->_globalDevInfo.product_id,
  1375. 0,
  1376. &_globalDeviceManager->_globalPowerManger)!=0)
  1377. {
  1378. log_e("all chn data inserted error.\n");
  1379. return 0;
  1380. }
  1381. else
  1382. {
  1383. log_i("all chn data inserted ok.\n");
  1384. }
  1385. }
  1386. _globalDeviceManager->mmp = (cascade_ip_mmap_t *)malloc(sizeof(cascade_ip_mmap_t));
  1387. if(_globalDeviceManager->mmp == NULL)
  1388. {
  1389. log_e("mmp malloc error!!!!!\n");
  1390. return 0;
  1391. }
  1392. get_mac(_globalDeviceManager->mmp);
  1393. _globalDeviceManager->_RS485LowConfData = hlw8110_init();
  1394. _globalDeviceManager->useSlaveCount++;
  1395. _globalDeviceManager->_all_ctrl_board[0].product_saddr = 1;
  1396. _globalDeviceManager->_all_ctrl_board[0].product_number = 1;
  1397. _globalDeviceManager->_all_ctrl_board[0].product_type = 0;
  1398. GlobalPowerManger *_globalPowerMangerTemp = (GlobalPowerManger *)malloc(sizeof(GlobalPowerManger));
  1399. if (_globalPowerMangerTemp == NULL)
  1400. {
  1401. // log_e("_globalPowerManger malloc error.\n");
  1402. return -1;
  1403. }
  1404. memset(_globalPowerMangerTemp, 0, sizeof(GlobalPowerManger));
  1405. _globalPowerMangerTemp->global_over_manager = (GlobalOverManager *)malloc(sizeof(GlobalOverManager));
  1406. if (_globalPowerMangerTemp->global_over_manager == NULL)
  1407. {
  1408. // log_e("_globalPowerManger->global_over_manager malloc error.\n");
  1409. return -1;
  1410. }
  1411. memset(_globalPowerMangerTemp->global_over_manager, 0, sizeof(GlobalOverManager));
  1412. ret = dev_get_power_manage_info(_globalDeviceManager->db,
  1413. _globalDeviceManager->_globalDevInfo.product_id,
  1414. 0,
  1415. 1, // 1*8+j
  1416. _globalPowerMangerTemp);
  1417. if(ret == -1)
  1418. {
  1419. _globalPowerMangerTemp->product_id = _globalDeviceManager->_globalDevInfo.product_id;
  1420. _globalPowerMangerTemp->product_saddr = 0;
  1421. _globalPowerMangerTemp->product_ch_id = 1;
  1422. _globalPowerMangerTemp->product_ch_addr = 1;
  1423. sprintf(_globalPowerMangerTemp->product_ch_name, "CH%d", _globalPowerMangerTemp->product_ch_id);
  1424. _globalPowerMangerTemp->product_ch_type = 9;
  1425. _globalPowerMangerTemp->product_ch_status = 0;
  1426. _globalPowerMangerTemp->product_ch_start_delay = 0;
  1427. _globalPowerMangerTemp->product_ch_stop_delay = 0;
  1428. if (dev_insert_power_manage_info(_globalDeviceManager->db,
  1429. _globalDeviceManager->_globalDevInfo.product_id,
  1430. _globalPowerMangerTemp->product_ch_id,
  1431. _globalPowerMangerTemp) != 0)
  1432. {
  1433. log_e("address %d chn %d data inserted error.\n", 0, 1);
  1434. return 0;
  1435. }
  1436. }
  1437. list_add_tail(&_globalPowerMangerTemp->list, &_globalDeviceManager->_globalPowerManger.list);
  1438. int nGroups=CHANNEL_DELAY_SEC;
  1439. char strLog[200]={"MODBUS"};
  1440. dev_Alarm_Run_message(_globalDeviceManager,language_alarm_Init_Success[0],strLog);
  1441. log_d("GCPDU init begin!");
  1442. ResetChmData(0);
  1443. #if 1
  1444. //初始化传感器列表
  1445. INIT_LIST_HEAD(&_globalDeviceManager->_globalSensorManger.list);
  1446. INIT_LIST_HEAD(&_globalDeviceManager->_globalSensorManger.list);
  1447. // ret = dev_get_sensor_manage_info(_globalDeviceManager->db,
  1448. // _globalDeviceManager->_globalDevInfo.product_id,
  1449. // &_globalDeviceManager->_globalSensorManger);
  1450. //创建modbus采集线程 继电器控制线程
  1451. #if(OS_HANDWARE==1)
  1452. _globalDeviceManager->dev_samp_flag = true;
  1453. sensor_or_cascade_init();
  1454. cascade_init();
  1455. dev_Alarm_Run_message(_globalDeviceManager,language_alarm_Init_Success[0],"sensor");
  1456. thread_start(THREAD_ID_POWER, power_thread, _globalDeviceManager, 10*MB, 0);
  1457. //thread_start(THREAD_ID_SENSOR, ip_cascade_thread, _globalDeviceManager, 5*MB, 0);
  1458. thread_start(THREAD_ID_SHMW, shm_thread, _globalDeviceManager, 5*MB, 0);
  1459. //thread_start(THREAD_ID_BREAKER_SCANNER,breaker_scanner_thread,_globalDeviceManager,1*MB,0);
  1460. //thread_start(THREAD_ID_BREAKER, breaker_thread, _globalDeviceManager, 5*MB, 0);
  1461. dev_Alarm_Run_message(_globalDeviceManager,language_alarm_Init_Success[0],"Server Thread");
  1462. #endif
  1463. //创建传感器采集控制线程
  1464. ntp_init();
  1465. dev_Alarm_Run_message(_globalDeviceManager, language_alarm_Init_Success[0], "NTP");
  1466. #ifndef USE_NETSWITCH
  1467. thread_start(THREAD_ID_SNMP, snmp_thread, _globalDeviceManager, 10 * MB, 0);
  1468. #endif
  1469. dev_Alarm_Run_message(_globalDeviceManager, language_alarm_Init_Success[0], "SNMP");
  1470. #endif
  1471. // 初始化web
  1472. websocket_init();
  1473. appweb_init();
  1474. //netswitch_init();
  1475. smtp_init();
  1476. //通知smartUPG,app已经运行起来
  1477. upg_init();
  1478. while(1)
  1479. {
  1480. sleep(20);
  1481. }
  1482. return 0;
  1483. }
  1484. int snmp_config(SNMPManager *m)
  1485. {
  1486. char path[200];
  1487. char *conf="/snmp/conf/snmpd.conf";
  1488. char user[100],pass[200],cmd[400],trapinfo[200];
  1489. sys_get_path(path, conf);
  1490. sprintf(trapinfo, "trap2sink \"%s\" %s \"%s\"", m->nmsIP, "public", "162");
  1491. //delete
  1492. sprintf(cmd, "sed -e /^trap2sink.*$/d -i %s", path);
  1493. system(cmd);
  1494. sprintf(cmd, "sed -e \"$ a %s\" -i %s", trapinfo, path);
  1495. system(cmd);
  1496. if (strlen(m->crypt.auth.alg) > 1)
  1497. {
  1498. // createUser afafafaf MD5 "md5123456" DES "des123456
  1499. // delete
  1500. sprintf(cmd, "sed -e /^createUser.*$/d -e /^rouser.*$/d -i %s", path);
  1501. system(cmd);
  1502. if (m->version == 2)
  1503. {
  1504. sprintf(user, "rouser \"%s\"", m->crypt.user);
  1505. sprintf(pass, "createUser \"%s\" %s \"%s\"", m->crypt.user, m->crypt.auth.alg, m->crypt.auth.passwd);
  1506. if (strlen(m->crypt.priv.alg) > 1)
  1507. {
  1508. sprintf(cmd, " %s \"%s\"", m->crypt.priv.alg, m->crypt.priv.passwd);
  1509. strcat(pass, cmd);
  1510. }
  1511. sprintf(cmd, "sed -e \"$ a %s\" -e \"$ a %s\" -i %s", pass, user, path);
  1512. system(cmd);
  1513. }
  1514. }
  1515. system("killall snmpd");
  1516. sleep(1);
  1517. char *snmpdorder="/snmp/bin/snmpd";
  1518. char snmpdpath[200];
  1519. sys_get_path(snmpdpath, snmpdorder);
  1520. sprintf(cmd, "%s -Cc %s -Lo", snmpdpath,path);
  1521. system(cmd);
  1522. //exit(0);
  1523. //thread_restart(THREAD_ID_SNMP);
  1524. return 0;
  1525. }