ups_monitor.c 41 KB

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  1. /********************************* (C) РОТЕК ***********************************
  2. * @module ups_monitor
  3. * @file ups_monitor.c
  4. * @version 1.0.0
  5. * @date XX.XX.XXXX
  6. * $brief Template
  7. *******************************************************************************
  8. * @history Version Author Comment
  9. * XX.XX.XXXX 1.0.0 Telenkov D.A. First release.
  10. *******************************************************************************
  11. */
  12. #include "stm32f4xx.h"
  13. #include "ups_monitor.h"
  14. #include "parameters.h"
  15. #include "settings_api.h"
  16. #include "megatec.h"
  17. #include "led.h"
  18. #include "log.h"
  19. #include "rtc.h"
  20. #include "hal.h"
  21. #include "FreeRTOS.h"
  22. #include "task.h"
  23. #include "trap_api.h"
  24. #include "snmp_api.h"
  25. #include <stdbool.h>
  26. #ifdef PRINTF_STDLIB
  27. #include <stdio.h>
  28. #endif
  29. #ifdef PRINTF_CUSTOM
  30. #include "tinystdio.h"
  31. #endif
  32. bool flCriticalAlarm = false;
  33. bool flNonCriticalAlarm = false;
  34. bool flLedAlarm = false;
  35. /**
  36. * @brief Общая структура настроек
  37. */
  38. extern SETTINGS_t sSettings;
  39. extern bool flUpdateLog;
  40. extern int test_time;
  41. /**
  42. * @brief Задача мониторинга параметров UPS
  43. */
  44. void UPS_Monitor(void *params)
  45. {
  46. vTaskDelay(5000);
  47. for (;;)
  48. {
  49. flCriticalAlarm = false;
  50. flNonCriticalAlarm = false;
  51. flLedAlarm = false;
  52. #define XMONITOR(monitor_func, present) if (present) { monitor_func(); }
  53. MONITOR_TABLE
  54. #undef XMONITOR
  55. #ifdef LED_ALARM
  56. if(flLedAlarm){
  57. if (UPS.Present)
  58. LED_On(LED_ALARM);
  59. else
  60. LED_Toggle(LED_ALARM);
  61. }
  62. else{
  63. LED_Off(LED_ALARM);
  64. }
  65. #endif
  66. vTaskDelay(1000);
  67. }
  68. }
  69. #ifdef DINS_ENABLE
  70. /**
  71. * @brief Мониторинг бита DI0 state
  72. */
  73. void UPS_DI0Monitor(void)
  74. {
  75. #ifdef DIN_MONITOR
  76. static bool isValueRecv = false;
  77. static uint8_t DI0OldState[INPUTS_TOTAL_COUNT];
  78. uint8_t DI0StateCurrent;
  79. for(uint8_t i = 0; i < INPUTS_TOTAL_COUNT; i ++) {
  80. DI0StateCurrent = get_state_din_outs((DIN1+i)) ^ sSettings.sDINs[i].din_type_act;
  81. UPS.Alarm = (UPS.Alarm & ~(1 << (4 + i))) | (DI0StateCurrent << (4 + i));
  82. if (!isValueRecv) {
  83. DI0OldState[i] = DI0StateCurrent;
  84. if (DI0StateCurrent){
  85. log_event_data((LOG_ALARM_DIO + i), "Авария");
  86. SNMP_SendUserTrap(DI0_ALARM + 2*i);
  87. flUpdateLog = true;
  88. }
  89. else{
  90. log_event_data((LOG_ALARM_DIO + i), "Норма");
  91. SNMP_SendUserTrap(DI0_NORM + 2*i);
  92. flUpdateLog = true;
  93. }
  94. if (i == (INPUTS_TOTAL_COUNT - 1)) {
  95. isValueRecv = true;
  96. break;
  97. }
  98. continue;
  99. }
  100. if (DI0StateCurrent) {
  101. flLedAlarm = true;
  102. }
  103. // Значение параметра изменилось
  104. if (DI0StateCurrent != DI0OldState[i])
  105. {
  106. if (!DI0StateCurrent){
  107. log_event_data((LOG_ALARM_DIO + i), "Норма");
  108. SNMP_SendUserTrap((DI0_NORM + 2*i));
  109. flUpdateLog = true;
  110. }
  111. else{
  112. log_event_data((LOG_ALARM_DIO + i), "Авария");
  113. SNMP_SendUserTrap(DI0_ALARM + 2*i);
  114. flUpdateLog = true;
  115. }
  116. }
  117. DI0OldState[i] = DI0StateCurrent;
  118. }
  119. #endif
  120. }
  121. #endif
  122. #ifdef DOUTS_ENABLE
  123. void relay_setup_log(uint8_t *curr_source, ro_type_source_t src_act_ro, uint8_t state_relay)
  124. {
  125. uint8_t i = 0;
  126. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){
  127. if(curr_source[i] == src_act_ro){
  128. SetROInt(state_relay, i);
  129. SNMP_SendUserTrap((DO0_TOGGLED+i));
  130. if(state_relay){
  131. flUpdateLog = true;
  132. #if defined RELAY_NC
  133. log_event_data((LOG_DO0_STATE + i), "Разомкнуто");
  134. #else
  135. log_event_data((LOG_DO0_STATE + i), "Замкнуто");
  136. #endif
  137. }
  138. else{
  139. flUpdateLog = true;
  140. #if defined RELAY_NC
  141. log_event_data((LOG_DO0_STATE + i), "Замкнуто");
  142. #else
  143. log_event_data((LOG_DO0_STATE + i), "Разомкнуто");
  144. #endif
  145. }
  146. }
  147. }
  148. }
  149. void relay_setup_log_change(uint8_t *curr_source, uint8_t *prev_source, ro_type_source_t src_act_ro)
  150. {
  151. uint8_t i = 0;
  152. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){
  153. if(curr_source[i] != prev_source[i] && (prev_source[i] == src_act_ro || curr_source[i] == src_act_ro)){
  154. #if defined RELAY_NC
  155. if(curr_source[i] != src_act_ro){
  156. flUpdateLog = true;
  157. SetROInt(0, i);
  158. SNMP_SendUserTrap((DO0_TOGGLED+i));
  159. log_event_data((LOG_DO0_STATE + i), "Замкнуто");
  160. }
  161. else{
  162. flUpdateLog = true;
  163. SetROInt(1, i);
  164. SNMP_SendUserTrap((DO0_TOGGLED+i));
  165. log_event_data((LOG_DO0_STATE + i), "Разомкнуто");
  166. }
  167. #else
  168. if(curr_source[i] != src_act_ro){
  169. flUpdateLog = true;
  170. SetROInt(0, i);
  171. SNMP_SendUserTrap((DO0_TOGGLED+i));
  172. log_event_data((LOG_DO0_STATE + i), "Разомкнуто");
  173. }
  174. else{
  175. flUpdateLog = true;
  176. SetROInt(1, i);
  177. SNMP_SendUserTrap((DO0_TOGGLED+i));
  178. log_event_data((LOG_DO0_STATE + i), "Замкнуто");
  179. }
  180. #endif
  181. }
  182. }
  183. }
  184. #endif
  185. #ifdef TYPE_CRITICAL_ALARM_MONITOR
  186. /**
  187. * @brief Мониторинг бита CriticalAlarm
  188. */
  189. void UPS_CriticalAlarmMonitor(void)
  190. {
  191. static bool isValueRecv = false;
  192. static uint8_t CriticalAlarmOldState = 0;
  193. uint8_t CriticalAlarmCurrent;
  194. uint8_t i = 0;
  195. static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  196. uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  197. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)
  198. CurrROtype_Sourse[i] = sSettings.sRelays[i].ro_type_source;
  199. CriticalAlarmCurrent = flCriticalAlarm;
  200. if (!isValueRecv) {
  201. isValueRecv = true;
  202. CriticalAlarmOldState = CriticalAlarmCurrent;
  203. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)
  204. OldROtype_Sourse[i] = CurrROtype_Sourse[i];
  205. if(CriticalAlarmCurrent){
  206. relay_setup_log(CurrROtype_Sourse, CRITICAL, 1);
  207. }
  208. else{
  209. relay_setup_log(CurrROtype_Sourse, CRITICAL, 0);
  210. }
  211. return;
  212. }
  213. // Значение параметра изменилось
  214. if (CriticalAlarmCurrent != CriticalAlarmOldState)
  215. {
  216. if(CriticalAlarmCurrent){
  217. relay_setup_log(CurrROtype_Sourse, CRITICAL, 1);
  218. }
  219. else{
  220. relay_setup_log(CurrROtype_Sourse, CRITICAL, 0);
  221. }
  222. }
  223. else
  224. {
  225. if(CriticalAlarmCurrent)
  226. relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, CRITICAL);
  227. }
  228. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){
  229. OldROtype_Sourse[i] = CurrROtype_Sourse[i];
  230. }
  231. CriticalAlarmOldState = CriticalAlarmCurrent;
  232. }
  233. /**
  234. * @brief Мониторинг бита NonCriticalAlarm
  235. */
  236. void UPS_NonCriticalAlarmMonitor(void)
  237. {
  238. static bool isValueRecv = false;
  239. static uint8_t NonCriticalAlarmOldState = 0;
  240. uint8_t NonCriticalAlarmCurrent;
  241. uint8_t i = 0;
  242. static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  243. uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  244. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)
  245. CurrROtype_Sourse[i] = sSettings.sRelays[i].ro_type_source;
  246. NonCriticalAlarmCurrent = flNonCriticalAlarm;
  247. if (!isValueRecv) {
  248. isValueRecv = true;
  249. NonCriticalAlarmOldState = NonCriticalAlarmCurrent;
  250. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)
  251. OldROtype_Sourse[i] = CurrROtype_Sourse[i];
  252. if(NonCriticalAlarmCurrent)
  253. relay_setup_log(CurrROtype_Sourse, NON_CRITICAL, 1);
  254. else
  255. relay_setup_log(CurrROtype_Sourse, NON_CRITICAL, 0);
  256. return;
  257. }
  258. // Значение параметра изменилось
  259. if (NonCriticalAlarmCurrent != NonCriticalAlarmOldState)
  260. {
  261. if(NonCriticalAlarmCurrent){
  262. relay_setup_log(CurrROtype_Sourse, NON_CRITICAL, 1);
  263. }
  264. else{
  265. relay_setup_log(CurrROtype_Sourse, NON_CRITICAL, 0);
  266. }
  267. }
  268. else
  269. {
  270. if(NonCriticalAlarmCurrent)
  271. relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, NON_CRITICAL);
  272. }
  273. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){
  274. OldROtype_Sourse[i] = CurrROtype_Sourse[i];
  275. }
  276. NonCriticalAlarmOldState = NonCriticalAlarmCurrent;
  277. }
  278. #endif
  279. /**
  280. * @brief Мониторинг бита Test in progress
  281. */
  282. void UPS_TestFinishMonitor(void)
  283. {
  284. #ifdef TEST_AKB_FINISH_MONITOR
  285. static uint8_t TestFinishState = 0;
  286. uint8_t TestFinishStateCurrent;
  287. char log_string[50];
  288. static uint32_t start_time_test = 0;
  289. TestFinishStateCurrent = (UPS.Status >> 2) & 0x01;
  290. // Значение параметра изменилось
  291. if (TestFinishStateCurrent != TestFinishState)
  292. {
  293. if (!TestFinishStateCurrent){
  294. printf("Test finish\r\n");
  295. #ifdef TEST_ALARM_AKB_MONITOR
  296. float time_test_actual = ((float)(xTaskGetTickCount() - start_time_test)) / (1000*60);
  297. UPSReadTestStatus();
  298. #ifdef RELAY_ALARM_AKB
  299. static uint8_t AKBAlarmState = 0;
  300. uint8_t i = 0;
  301. static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  302. uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  303. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)
  304. CurrROtype_Sourse[i] = sSettings.sRelays[i].ro_type_source;
  305. #endif
  306. float Uakb_av = voltage_bat_average();
  307. float Pload_av = power_load_average();
  308. float k_eff;
  309. printf("Uakb_av: %0.2f", Uakb_av);
  310. printf("Pload_av: %0.2f", Pload_av);
  311. if(UPS.Test_Status != 2 && Pload_av >= 3) {
  312. GetUPSEfficiencyFactorInt(&k_eff);
  313. float Ccalc = (sSettings.UPS_Setting.ups_power*Pload_av*time_test_actual)/(100*60*Uakb_av*(k_eff));
  314. printf("Ccalc: %0.2f", Ccalc);
  315. float Ccalc_percent = (100*Ccalc)/sSettings.UPS_Setting.common_capacity;
  316. if (Ccalc_percent >= 80) {
  317. sprintf(log_string, "Авария(%0.2f Ач)", Ccalc);
  318. log_event_data(LOG_TEST_ALARM_AKB, log_string);
  319. #ifdef RELAY_ALARM_AKB
  320. relay_setup_log(CurrROtype_Sourse, ALARM_AKB, 1);
  321. AKBAlarmState = 1;
  322. #endif
  323. } else {
  324. sprintf(log_string, "Норма(%0.2f Ач)", Ccalc);
  325. log_event_data(LOG_TEST_ALARM_AKB, log_string);
  326. #ifdef RELAY_ALARM_AKB
  327. relay_setup_log(CurrROtype_Sourse, ALARM_AKB, 0);
  328. AKBAlarmState = 0;
  329. #endif
  330. }
  331. }
  332. #ifdef RELAY_ALARM_AKB
  333. if (AKBAlarmState)
  334. relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, ALARM_AKB);
  335. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)
  336. OldROtype_Sourse[i] = CurrROtype_Sourse[i];
  337. #endif
  338. memset(log_string, 0, sizeof(log_string));
  339. if(UPS.Test_Status == 2 ||( (time_test_actual <= 0.9*test_time || time_test_actual >= 1.1*test_time) && (test_time != 0 && test_time != 100))){//
  340. strcpy(log_string, "Ошибка");
  341. } else {
  342. strcpy(log_string, "Завершен");
  343. }
  344. uint8_t len1 = strlen(log_string);
  345. sprintf(&log_string[len1], "(%0.1f мин)", time_test_actual);
  346. log_event_data(LOG_TEST_UPS, log_string);
  347. test_time = 0;
  348. #else
  349. log_event_data(LOG_TEST_UPS, "Завершен");
  350. #endif
  351. flUpdateLog = true;
  352. } else {
  353. memset(log_string, 0, sizeof(log_string));
  354. switch (get_act_source()) {
  355. case WEB_ACT:
  356. strcpy(log_string, name_login);
  357. break;
  358. case SNMP_ACT:
  359. case OTHER_ACT:
  360. strcpy(log_string, "Администратор");
  361. break;
  362. #ifdef CLI_ENABLE
  363. case CLI_ACT:
  364. strcpy(log_string, "Администратор");
  365. break;
  366. #endif
  367. default:
  368. break;
  369. }
  370. #ifdef TEST_ALARM_AKB_MONITOR
  371. start_time_test = xTaskGetTickCount();
  372. if (test_time == 0) {
  373. strcat(log_string, " (авто)");
  374. } else if (test_time == 100) {
  375. strcat(log_string, " (до разряда)");
  376. } else {
  377. uint8_t len = strlen(log_string);
  378. sprintf(&log_string[len], "(%i мин)", test_time);
  379. }
  380. #else
  381. strcat(log_string, " (Запущен)");
  382. #endif
  383. printf("Test start\r\n");
  384. log_event_data(LOG_TEST_UPS, log_string);
  385. flUpdateLog = true;
  386. }
  387. }
  388. TestFinishState = TestFinishStateCurrent;
  389. #endif
  390. }
  391. uint8_t UPS_VACinputRangeAlarm(void)
  392. {
  393. #ifdef VAC_IN_MONITOR
  394. uint8_t flag = 0;
  395. static uint8_t stateCurrentVACinput_low = HYST_IDLE;
  396. static uint8_t stateCurrentVACinput_high = HYST_IDLE;
  397. float VACinputCurrent = UPS.VAC_in;
  398. /* Отслеживается переход через нижнию границу */
  399. if (VACinputCurrent < sSettings.sAlarmManager.ac_input_range.low)
  400. {
  401. if (stateCurrentVACinput_low == HYST_IDLE || stateCurrentVACinput_low == HYST_DOWN) {
  402. stateCurrentVACinput_low = HYST_DOWN;
  403. flag |= (1 << 1);
  404. }
  405. } else if (VACinputCurrent > (sSettings.sAlarmManager.ac_input_range.low + sSettings.sAlarmManager.ac_input_range.hyst))
  406. {
  407. if (stateCurrentVACinput_low == HYST_DOWN)
  408. {
  409. stateCurrentVACinput_low = HYST_IDLE;
  410. flag &= 0xfd;
  411. }
  412. } else {
  413. if (stateCurrentVACinput_low == HYST_DOWN) {
  414. flag |= (1 << 1);
  415. }
  416. }
  417. /* Отслеживается переход через верхнюю границу */
  418. if (VACinputCurrent > sSettings.sAlarmManager.ac_input_range.high)
  419. {
  420. if (stateCurrentVACinput_high == HYST_IDLE || stateCurrentVACinput_high == HYST_UP) {
  421. stateCurrentVACinput_high = HYST_UP;
  422. flag |= (1 << 2);
  423. }
  424. } else if (VACinputCurrent < (sSettings.sAlarmManager.ac_input_range.high - sSettings.sAlarmManager.ac_input_range.hyst))
  425. {
  426. if (stateCurrentVACinput_high == HYST_UP)
  427. {
  428. stateCurrentVACinput_high = HYST_IDLE;
  429. flag &= 0xfb;
  430. }
  431. } else {
  432. if (stateCurrentVACinput_high == HYST_UP) {
  433. flag |= (1 << 2);
  434. }
  435. }
  436. return flag;
  437. #endif
  438. }
  439. /**
  440. * @brief Мониторинг бита LainFail
  441. */
  442. void UPS_LineFailMonitor(void)
  443. {
  444. #ifdef LINE_FAIL_MONITOR
  445. static bool isValueRecv = false;
  446. static uint8_t lineFailOldState = 0;
  447. uint8_t lineFailCurrent;
  448. char log_string[50];
  449. uint8_t len;
  450. #if defined RELAY_AC_PRESENT
  451. uint8_t i = 0;
  452. static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  453. uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  454. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)
  455. CurrROtype_Sourse[i] = sSettings.sRelays[i].ro_type_source;
  456. #endif
  457. #ifdef HARDWARE_BT6703_RT
  458. lineFailCurrent = ((UPS.Status >> 7) & 0x01);
  459. lineFailCurrent |= UPS_VACinputRangeAlarm();
  460. #else
  461. lineFailCurrent = (UPS.Status >> 7) & 0x01;
  462. #endif
  463. if (!isValueRecv) {
  464. isValueRecv = true;
  465. lineFailOldState = lineFailCurrent;
  466. if (lineFailCurrent != 0){
  467. memset(log_string, 0, sizeof(log_string));
  468. strcat(log_string, "Авария");
  469. #ifdef HARDWARE_BT6703_RT
  470. len = strlen(log_string);
  471. sprintf(&log_string[len], " (%0.1f В)", UPS.VAC_in);
  472. #endif
  473. log_event_data(LOG_ALARM_LINE, log_string);
  474. SNMP_SendUserTrap(LINE_ALARM);
  475. flUpdateLog = true;
  476. #if defined RELAY_AC_PRESENT
  477. relay_setup_log(CurrROtype_Sourse, AC_PRESENT, 1);
  478. #endif
  479. }
  480. else{
  481. #if defined RELAY_AC_PRESENT
  482. relay_setup_log(CurrROtype_Sourse, AC_PRESENT, 0);
  483. #endif
  484. log_event_data(LOG_ALARM_LINE, "Норма");
  485. SNMP_SendUserTrap(LINE_NORM);
  486. flUpdateLog = true;
  487. }
  488. return;
  489. }
  490. if (lineFailCurrent != 0){
  491. flCriticalAlarm = true;
  492. flLedAlarm = true;
  493. }
  494. // Значение параметра изменилось
  495. if (lineFailCurrent != lineFailOldState)
  496. {
  497. if (lineFailCurrent != 0){
  498. #if defined RELAY_AC_PRESENT
  499. relay_setup_log(CurrROtype_Sourse, AC_PRESENT, 1);
  500. #endif
  501. memset(log_string, 0, sizeof(log_string));
  502. strcat(log_string, "Авария");
  503. #ifdef HARDWARE_BT6703_RT
  504. len = strlen(log_string);
  505. sprintf(&log_string[len], " (%0.1f В)", UPS.VAC_in);
  506. #endif
  507. log_event_data(LOG_ALARM_LINE, log_string);
  508. SNMP_SendUserTrap(LINE_ALARM);
  509. #ifdef AKB_CHANGE_MONITOR
  510. if(UPS.Alarm & 0x40) {
  511. log_event_data(LOG_ALARM_CHANGE_AKB, "Авария");
  512. SNMP_SendUserTrap(BATTERY_CHANGE_ALARM);
  513. }
  514. #endif
  515. flUpdateLog = true;
  516. }
  517. else{
  518. #if defined RELAY_AC_PRESENT
  519. relay_setup_log(CurrROtype_Sourse, AC_PRESENT, 0);
  520. #endif
  521. log_event_data(LOG_ALARM_LINE, "Норма");
  522. SNMP_SendUserTrap(LINE_NORM);
  523. flUpdateLog = true;
  524. }
  525. }
  526. #if defined RELAY_AC_PRESENT
  527. else{
  528. if (lineFailCurrent != 0)
  529. relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, AC_PRESENT);
  530. }
  531. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){
  532. OldROtype_Sourse[i] = CurrROtype_Sourse[i];
  533. }
  534. #endif
  535. lineFailOldState = lineFailCurrent;
  536. #endif
  537. }
  538. #ifdef VAC_OUT_MONITOR
  539. /**
  540. * @brief Мониторинг аварии выходного напряжения по нижней границе
  541. */
  542. void UPS_VACoutputLowRangeMonitor(void)
  543. {
  544. static uint8_t stateCurrentVACoutput = HYST_IDLE;
  545. float VACoutputCurrent;
  546. #if defined RELAY_DC_PRESENT
  547. uint8_t i = 0;
  548. static bool isValueRecv = false;
  549. static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  550. uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  551. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){
  552. CurrROtype_Sourse[i] = sSettings.sRelays[i].ro_type_source;
  553. if(!isValueRecv)
  554. OldROtype_Sourse[i] = CurrROtype_Sourse[i];
  555. }
  556. #endif
  557. VACoutputCurrent = UPS.VAC_out;
  558. /* Отслеживается переход через нижнию границу */
  559. if (VACoutputCurrent < sSettings.sAlarmManager.ac_output_range.low)
  560. {
  561. if (stateCurrentVACoutput == HYST_IDLE)
  562. {
  563. UPS.Alarm |= (1 << 7);
  564. stateCurrentVACoutput = HYST_DOWN;
  565. #if defined RELAY_DC_PRESENT
  566. relay_setup_log(CurrROtype_Sourse, DC_PRESENT, 1);
  567. #endif
  568. log_event_data(LOG_ALARM_VAC_LOW_OUTPUT, "Авария");
  569. // Отправка трапа о завышении
  570. // SNMP_SendUserTrap(POWER_ALARM);
  571. flUpdateLog = true;
  572. } else {
  573. #if defined RELAY_DC_PRESENT
  574. relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, DC_PRESENT);
  575. #endif
  576. }
  577. }
  578. /* Отслеживается нормализация */
  579. else if (VACoutputCurrent > (sSettings.sAlarmManager.ac_output_range.low + sSettings.sAlarmManager.ac_output_range.hyst))
  580. {
  581. if (stateCurrentVACoutput == HYST_DOWN)
  582. {
  583. UPS.Alarm &= 0xffffff7f;
  584. stateCurrentVACoutput = HYST_IDLE;
  585. #if defined RELAY_DC_PRESENT
  586. relay_setup_log(CurrROtype_Sourse, DC_PRESENT, 0);
  587. #endif
  588. log_event_data(LOG_ALARM_VAC_LOW_OUTPUT, "Норма");
  589. // Отправка трапа о нормализации
  590. // SNMP_SendUserTrap(POWER_NORM);
  591. flUpdateLog = true;
  592. }
  593. }
  594. if (UPS.Alarm & 0x80) {
  595. flLedAlarm = true;
  596. }
  597. #if defined RELAY_DC_PRESENT
  598. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){
  599. OldROtype_Sourse[i] = CurrROtype_Sourse[i];
  600. }
  601. #endif
  602. }
  603. /**
  604. * @brief Мониторинг аварии выходного напряжения по верхней границе
  605. */
  606. void UPS_VACoutputHighRangeMonitor(void)
  607. {
  608. static uint8_t stateCurrentVACoutput = HYST_IDLE;
  609. float VACoutputCurrent;
  610. #if defined RELAY_DC_PRESENT
  611. uint8_t i = 0;
  612. static bool isValueRecv = false;
  613. static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  614. uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  615. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){
  616. CurrROtype_Sourse[i] = sSettings.sRelays[i].ro_type_source;
  617. if(!isValueRecv)
  618. OldROtype_Sourse[i] = CurrROtype_Sourse[i];
  619. }
  620. #endif
  621. VACoutputCurrent = UPS.VAC_out;
  622. /* Отслеживается переход через верхнюю границу */
  623. if (VACoutputCurrent > sSettings.sAlarmManager.ac_output_range.high)
  624. {
  625. if (stateCurrentVACoutput == HYST_IDLE) {
  626. UPS.Alarm |= (1 << 7);
  627. stateCurrentVACoutput = HYST_UP;
  628. #if defined RELAY_DC_PRESENT
  629. relay_setup_log(CurrROtype_Sourse, DC_PRESENT, 1);
  630. #endif
  631. log_event_data(LOG_ALARM_VAC_HIGH_OUTPUT, "Авария");
  632. // Отправка трапа о завышении
  633. // SNMP_SendUserTrap(POWER_ALARM);
  634. flUpdateLog = true;
  635. } else {
  636. #if defined RELAY_DC_PRESENT
  637. relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, DC_PRESENT);
  638. #endif
  639. }
  640. }
  641. /* Отслеживается нормализация */
  642. else if (VACoutputCurrent < (sSettings.sAlarmManager.ac_output_range.high - sSettings.sAlarmManager.ac_output_range.hyst))
  643. {
  644. if (stateCurrentVACoutput == HYST_UP) {
  645. UPS.Alarm &= 0xffffff7f;
  646. stateCurrentVACoutput = HYST_IDLE;
  647. #if defined RELAY_DC_PRESENT
  648. relay_setup_log(CurrROtype_Sourse, DC_PRESENT, 0);
  649. #endif
  650. log_event_data(LOG_ALARM_VAC_HIGH_OUTPUT, "Норма");
  651. // Отправка трапа о нормализации
  652. // SNMP_SendUserTrap(POWER_NORM);
  653. flUpdateLog = true;
  654. }
  655. }
  656. if (UPS.Alarm & 0x80) {
  657. flLedAlarm = true;
  658. }
  659. #if defined RELAY_DC_PRESENT
  660. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){
  661. OldROtype_Sourse[i] = CurrROtype_Sourse[i];
  662. }
  663. #endif
  664. }
  665. #endif
  666. /**
  667. * @brief Мониторинг бита LowBat
  668. */
  669. void UPS_LowBatMonitor(void)
  670. {
  671. #ifdef LOW_BAT_MONITOR
  672. static bool isValueRecv = false;
  673. static uint8_t lowBatOldState = 0;
  674. static bool flag_alarm_time = false;
  675. uint8_t lowBatCurrent;
  676. #if defined RELAY_CHARGE_AKB
  677. uint8_t i = 0;
  678. static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  679. uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  680. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)
  681. CurrROtype_Sourse[i] = sSettings.sRelays[i].ro_type_source;
  682. #endif
  683. if((UPS.Status >> 7) & 0x01)
  684. lowBatCurrent = (UPS.Status >> 6) & 0x01;
  685. else
  686. lowBatCurrent = 0;
  687. if (!isValueRecv) {
  688. isValueRecv = true;
  689. lowBatOldState = lowBatCurrent;
  690. if (lowBatCurrent){
  691. log_event_data(LOG_ALARM_LOW_BAT, "Авария");
  692. SNMP_SendUserTrap(LOW_BAT_ALARM);
  693. flUpdateLog = true;
  694. #if defined RELAY_CHARGE_AKB
  695. relay_setup_log(CurrROtype_Sourse, CHARGE_AKB, 1);
  696. #endif
  697. }
  698. else{
  699. SNMP_SendUserTrap(LOW_BAT_NORM);
  700. log_event_data(LOG_ALARM_LOW_BAT, "Норма");
  701. flUpdateLog = true;
  702. #if defined RELAY_CHARGE_AKB
  703. relay_setup_log(CurrROtype_Sourse, CHARGE_AKB, 0);
  704. #endif
  705. }
  706. return;
  707. }
  708. // Значение параметра изменилось
  709. if (lowBatCurrent != lowBatOldState)
  710. {
  711. if(flag_alarm_time){
  712. flag_alarm_time = false;
  713. if (lowBatCurrent){
  714. SNMP_SendUserTrap(LOW_BAT_ALARM);
  715. log_event_data(LOG_ALARM_LOW_BAT, "Авария");
  716. flUpdateLog = true;
  717. #ifdef RELAY_CHARGE_AKB
  718. relay_setup_log(CurrROtype_Sourse, CHARGE_AKB, 1);
  719. #endif
  720. }
  721. else{
  722. SNMP_SendUserTrap(LOW_BAT_NORM);
  723. log_event_data(LOG_ALARM_LOW_BAT, "Норма");
  724. flUpdateLog = true;
  725. #if defined RELAY_CHARGE_AKB
  726. relay_setup_log(CurrROtype_Sourse, CHARGE_AKB, 0);
  727. #endif
  728. }
  729. }
  730. else{
  731. flag_alarm_time = true;
  732. }
  733. }
  734. #if defined RELAY_CHARGE_AKB
  735. else{
  736. flag_alarm_time = false;
  737. if (lowBatCurrent)
  738. relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, CHARGE_AKB);
  739. }
  740. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){
  741. OldROtype_Sourse[i] = CurrROtype_Sourse[i];
  742. }
  743. #endif
  744. if(!flag_alarm_time){
  745. if (lowBatCurrent){
  746. flNonCriticalAlarm = true;
  747. flLedAlarm = true;
  748. }
  749. lowBatOldState = lowBatCurrent;
  750. }
  751. else{
  752. if (lowBatOldState){
  753. flNonCriticalAlarm = true;
  754. flLedAlarm = true;
  755. }
  756. }
  757. #endif
  758. }
  759. /**
  760. * @brief Мониторинг нагрузки
  761. */
  762. void UPS_PowerMonitor(void)
  763. {
  764. #ifdef LOAD_MONITOR
  765. float load;
  766. static uint8_t stateCurrent = HYST_IDLE;
  767. load = UPS.Load;
  768. /* Отслеживается переход через верхнюю границу */
  769. if (load > sSettings.sAlarmManager.load_range.high)
  770. {
  771. UPS.Alarm = (UPS.Alarm & 0xfffffffe) | (1 << 0);
  772. if (stateCurrent == HYST_IDLE)
  773. {
  774. #ifdef LED_RED_MINOR
  775. LED_On(LED_RED_MINOR);
  776. #endif
  777. #ifdef LED_GREEN_MINOR
  778. LED_On(LED_GREEN_MINOR);
  779. #endif
  780. stateCurrent = HYST_UP;
  781. log_event_data(LOG_ALARM_POWER, "Авария");
  782. // Отправка трапа о завышении
  783. SNMP_SendUserTrap(POWER_ALARM);
  784. flUpdateLog = true;
  785. }
  786. }
  787. /* Отслеживается нормализация */
  788. else if (load < (sSettings.sAlarmManager.load_range.high - sSettings.sAlarmManager.load_range.hyst))
  789. {
  790. UPS.Alarm = (UPS.Alarm & 0xfffffffe);
  791. if (stateCurrent == HYST_UP)
  792. {
  793. #ifdef LED_RED_MINOR
  794. LED_Off(LED_RED_MINOR);
  795. #endif
  796. #ifdef LED_GREEN_MINOR
  797. LED_Off(LED_GREEN_MINOR);
  798. #endif
  799. stateCurrent = HYST_IDLE;
  800. log_event_data(LOG_ALARM_POWER, "Норма");
  801. // Отправка трапа о нормализации
  802. SNMP_SendUserTrap(POWER_NORM);
  803. flUpdateLog = true;
  804. }
  805. }
  806. if (UPS.Alarm & 0x00000001) {
  807. flCriticalAlarm = true;
  808. flLedAlarm = true;
  809. }
  810. #endif
  811. }
  812. #ifdef SENSOR_TEMP_MONITOR
  813. /**
  814. * @brief Мониторинг аварии датчика температуры
  815. */
  816. void sensorTemperatureMonitor(void)
  817. {
  818. float temperature;
  819. static uint8_t type_sensor[MAX_T_SENSORS];
  820. static uint8_t alarm[MAX_T_SENSORS];
  821. static uint8_t start_monitor = 0;
  822. if (start_monitor == 0) {
  823. start_monitor = 1;
  824. for(uint8_t i = 0; i < MAX_T_SENSORS; i ++){
  825. type_sensor[i] = sSettings.sTempControl[i].type_sensor;
  826. }
  827. }
  828. for(uint8_t i = 0; i < MAX_T_SENSORS; i ++){
  829. if (alarm[i] && sSettings.sTempControl[i].type_sensor != type_sensor[i]) {
  830. alarm[i] = 0;
  831. if (type_sensor[i] == TS_AKB) {
  832. log_event_data(LOG_ALARM_SENSOR_AKB, "Норма");
  833. flUpdateLog = true;
  834. } else if (type_sensor[i] == TS_CABINET) {
  835. log_event_data(LOG_ALARM_SENSOR_CABINET, "Норма");
  836. flUpdateLog = true;
  837. }
  838. }
  839. if (sSettings.sTempControl[i].type_sensor == TS_AKB) {
  840. GetInternalTempInt(&temperature);
  841. if(temperature == 85) {
  842. if(!alarm[i]) {
  843. log_event_data(LOG_ALARM_SENSOR_AKB, "Авария");
  844. flUpdateLog = true;
  845. flLedAlarm = true;
  846. alarm[i] = 1;
  847. }
  848. } else {
  849. if(alarm[i]) {
  850. log_event_data(LOG_ALARM_SENSOR_AKB, "Норма");
  851. flUpdateLog = true;
  852. alarm[i] = 0;
  853. }
  854. }
  855. } else if (sSettings.sTempControl[i].type_sensor == TS_CABINET) {
  856. GetTempCaseInt(&temperature);
  857. if(temperature == 85) {
  858. if(!alarm[i]) {
  859. log_event_data(LOG_ALARM_SENSOR_CABINET, "Авария");
  860. flUpdateLog = true;
  861. flLedAlarm = true;
  862. alarm[i] = 1;
  863. }
  864. } else {
  865. if(alarm[i]) {
  866. log_event_data(LOG_ALARM_SENSOR_CABINET, "Норма");
  867. flUpdateLog = true;
  868. alarm[i] = 0;
  869. }
  870. }
  871. }
  872. type_sensor[i] = sSettings.sTempControl[i].type_sensor;
  873. }
  874. }
  875. #endif
  876. #ifdef TEMP_AKB_MONITOR
  877. /**
  878. * @brief Мониторинг температуры по верхней границе
  879. */
  880. void UPS_TemperatureHighRangeMonitor(void)
  881. {
  882. float temperature;
  883. static uint8_t stateCurrent = HYST_IDLE;
  884. GetInternalTempInt(&temperature);
  885. if(temperature == 85) {
  886. UPS.Alarm = (UPS.Alarm & 0xfffffffd) | (1 << 1);
  887. if (stateCurrent == HYST_UP) {
  888. stateCurrent = HYST_IDLE;
  889. log_event_data(LOG_ALARM_HIGH_TEMP, "Норма");
  890. // Отправка трапа о нормализации
  891. SNMP_SendUserTrap(BATTERY_HIGH_TEMPERATURE_NORM);
  892. flUpdateLog = true;
  893. }
  894. return;
  895. } else {
  896. if (stateCurrent == HYST_IDLE) {
  897. UPS.Alarm = (UPS.Alarm & 0xfffffffd);
  898. }
  899. }
  900. /* Отслеживается переход через верхнюю границу */
  901. if (temperature > sSettings.sAlarmManager.Temprature_range.high)
  902. {
  903. if (stateCurrent == HYST_IDLE)
  904. {
  905. stateCurrent = HYST_UP;
  906. UPS.Alarm = (UPS.Alarm & 0xfffffffd) | (1 << 1);
  907. log_event_data(LOG_ALARM_HIGH_TEMP, "Авария");
  908. // Отправка трапа о завышении
  909. SNMP_SendUserTrap(BATTERY_HIGH_TEMPERATURE_ALARM);
  910. flUpdateLog = true;
  911. }
  912. }
  913. /* Отслеживается нормализация */
  914. else if (temperature < (sSettings.sAlarmManager.Temprature_range.high - sSettings.sAlarmManager.Temprature_range.hyst))
  915. {
  916. if (stateCurrent == HYST_UP)
  917. {
  918. stateCurrent = HYST_IDLE;
  919. UPS.Alarm = (UPS.Alarm & 0xfffffffd);
  920. log_event_data(LOG_ALARM_HIGH_TEMP, "Норма");
  921. // Отправка трапа о нормализации
  922. SNMP_SendUserTrap(BATTERY_HIGH_TEMPERATURE_NORM);
  923. flUpdateLog = true;
  924. }
  925. }
  926. if (UPS.Alarm & 0x00000002) {
  927. flCriticalAlarm = true;
  928. flLedAlarm = true;
  929. }
  930. }
  931. /**
  932. * @brief Мониторинг температуры по нижней границе
  933. */
  934. void UPS_TemperatureLowRangeMonitor(void)
  935. {
  936. float temperature;
  937. static uint8_t stateCurrent = HYST_IDLE;
  938. GetInternalTempInt(&temperature);
  939. if(temperature == 85) {
  940. UPS.Alarm = (UPS.Alarm & 0xfffffeff) | (1 << 8);
  941. if (stateCurrent == HYST_DOWN) {
  942. stateCurrent = HYST_IDLE;
  943. log_event_data(LOG_ALARM_LOW_TEMP, "Норма");
  944. // Отправка трапа о нормализации
  945. SNMP_SendUserTrap(BATTERY_LOW_TEMPERATURE_NORM);
  946. flUpdateLog = true;
  947. }
  948. return;
  949. } else {
  950. if (stateCurrent == HYST_IDLE) {
  951. UPS.Alarm = (UPS.Alarm & 0xfffffeff);
  952. }
  953. }
  954. /* Отслеживается переход через нипжнюю границу */
  955. if (temperature < sSettings.sAlarmManager.Temprature_range.low)
  956. {
  957. if (stateCurrent == HYST_IDLE)
  958. {
  959. stateCurrent = HYST_DOWN;
  960. UPS.Alarm = (UPS.Alarm & 0xfffffeff) | (1 << 8);
  961. log_event_data(LOG_ALARM_LOW_TEMP, "Авария");
  962. // Отправка трапа о занижении
  963. SNMP_SendUserTrap(BATTERY_LOW_TEMPERATURE_ALARM);
  964. flUpdateLog = true;
  965. }
  966. }
  967. /* Отслеживается нормализация */
  968. else if (temperature > (sSettings.sAlarmManager.Temprature_range.low + sSettings.sAlarmManager.Temprature_range.hyst))
  969. {
  970. if (stateCurrent == HYST_DOWN)
  971. {
  972. stateCurrent = HYST_IDLE;
  973. UPS.Alarm = (UPS.Alarm & 0xfffffeff);
  974. log_event_data(LOG_ALARM_LOW_TEMP, "Норма");
  975. // Отправка трапа о нормализации
  976. SNMP_SendUserTrap(BATTERY_LOW_TEMPERATURE_NORM);
  977. flUpdateLog = true;
  978. }
  979. }
  980. if (UPS.Alarm & 0x00000100) {
  981. flCriticalAlarm = true;
  982. flLedAlarm = true;
  983. }
  984. }
  985. #endif
  986. #ifdef TEMP_CABINET_MONITOR
  987. /**
  988. * @brief Мониторинг температуры шкафа по верхней границе
  989. */
  990. void Cabinet_TemperatureHighRangeMonitor(void)
  991. {
  992. float temperature;
  993. static uint8_t stateCurrent = HYST_IDLE;
  994. GetTempCaseInt(&temperature);
  995. if(temperature == 85) {
  996. UPS.Alarm = (UPS.Alarm & 0xfffffdff) | (1 << 9);
  997. if (stateCurrent == HYST_UP) {
  998. stateCurrent = HYST_IDLE;
  999. log_event_data(LOG_ALARM_HIGH_CABINET_TEMP, "Норма");
  1000. // Отправка трапа о нормализации
  1001. SNMP_SendUserTrap(CABINET_HIGH_TEMPERATURE_NORM);
  1002. flUpdateLog = true;
  1003. }
  1004. return;
  1005. } else {
  1006. if (stateCurrent == HYST_IDLE) {
  1007. UPS.Alarm = (UPS.Alarm & 0xfffffdff);
  1008. }
  1009. }
  1010. /* Отслеживается переход через верхнюю границу */
  1011. if (temperature > sSettings.sAlarmManager.Temprature_cabinet_range.high)
  1012. {
  1013. if (stateCurrent == HYST_IDLE)
  1014. {
  1015. UPS.Alarm = (UPS.Alarm & 0xfffffdff) | (1 << 9);
  1016. stateCurrent = HYST_UP;
  1017. log_event_data(LOG_ALARM_HIGH_CABINET_TEMP, "Авария");
  1018. // Отправка трапа о завышении
  1019. SNMP_SendUserTrap(CABINET_HIGH_TEMPERATURE_ALARM);
  1020. flUpdateLog = true;
  1021. }
  1022. }
  1023. /* Отслеживается нормализация */
  1024. else if (temperature < (sSettings.sAlarmManager.Temprature_cabinet_range.high - sSettings.sAlarmManager.Temprature_cabinet_range.hyst))
  1025. {
  1026. if (stateCurrent == HYST_UP)
  1027. {
  1028. UPS.Alarm = (UPS.Alarm & 0xfffffdff);
  1029. stateCurrent = HYST_IDLE;
  1030. log_event_data(LOG_ALARM_HIGH_CABINET_TEMP, "Норма");
  1031. // Отправка трапа о нормализации
  1032. SNMP_SendUserTrap(CABINET_HIGH_TEMPERATURE_NORM);
  1033. flUpdateLog = true;
  1034. }
  1035. }
  1036. if (UPS.Alarm & 0x00000200) {
  1037. flLedAlarm = true;
  1038. }
  1039. }
  1040. /**
  1041. * @brief Мониторинг температуры шкафа по нижней границе
  1042. */
  1043. void Cabinet_TemperatureLowRangeMonitor(void)
  1044. {
  1045. float temperature;
  1046. static uint8_t stateCurrent = HYST_IDLE;
  1047. GetTempCaseInt(&temperature);
  1048. if(temperature == 85) {
  1049. UPS.Alarm = (UPS.Alarm & 0xfffffbff) | (1 << 10);
  1050. if (stateCurrent == HYST_DOWN) {
  1051. stateCurrent = HYST_IDLE;
  1052. log_event_data(LOG_ALARM_LOW_CABINET_TEMP, "Норма");
  1053. // Отправка трапа о нормализации
  1054. SNMP_SendUserTrap(CABINET_LOW_TEMPERATURE_NORM);
  1055. flUpdateLog = true;
  1056. }
  1057. return;
  1058. } else {
  1059. if (stateCurrent == HYST_IDLE) {
  1060. UPS.Alarm = (UPS.Alarm & 0xfffffbff);
  1061. }
  1062. }
  1063. /* Отслеживается переход через нипжнюю границу */
  1064. if (temperature < sSettings.sAlarmManager.Temprature_cabinet_range.low)
  1065. {
  1066. if (stateCurrent == HYST_IDLE)
  1067. {
  1068. stateCurrent = HYST_DOWN;
  1069. UPS.Alarm = (UPS.Alarm & 0xfffffbff) | (1 << 10);
  1070. log_event_data(LOG_ALARM_LOW_CABINET_TEMP, "Авария");
  1071. // Отправка трапа о занижении
  1072. SNMP_SendUserTrap(CABINET_LOW_TEMPERATURE_ALARM);
  1073. flUpdateLog = true;
  1074. }
  1075. }
  1076. /* Отслеживается нормализация */
  1077. else if (temperature > (sSettings.sAlarmManager.Temprature_cabinet_range.low + sSettings.sAlarmManager.Temprature_cabinet_range.hyst))
  1078. {
  1079. if (stateCurrent == HYST_DOWN)
  1080. {
  1081. UPS.Alarm = (UPS.Alarm & 0xfffffbff);
  1082. stateCurrent = HYST_IDLE;
  1083. log_event_data(LOG_ALARM_LOW_CABINET_TEMP, "Норма");
  1084. // Отправка трапа о нормализации
  1085. SNMP_SendUserTrap(CABINET_LOW_TEMPERATURE_NORM);
  1086. flUpdateLog = true;
  1087. }
  1088. }
  1089. if (UPS.Alarm & 0x00000400) {
  1090. flLedAlarm = true;
  1091. }
  1092. }
  1093. #endif
  1094. /**
  1095. * @brief Мониторинг параметра upsParams.connect
  1096. */
  1097. void UPS_ConnectMonitor(void)
  1098. {
  1099. #ifdef UPS_CONNECT_MONITOR
  1100. static bool isValueRecv = false;
  1101. static uint8_t connectOldState = 0;
  1102. uint8_t connectCurrent;
  1103. connectCurrent = UPS.Present;
  1104. UPS.Alarm = (UPS.Alarm & 0xfffffffb) | ((connectCurrent^1) << 2);
  1105. if (!isValueRecv) {
  1106. isValueRecv = true;
  1107. connectOldState = connectCurrent;
  1108. if (!connectCurrent){
  1109. log_event_data(LOG_ALARM_UPS, "Авария");
  1110. SNMP_SendUserTrap(CONNECT_MONITOR_ALARM);
  1111. }
  1112. else{
  1113. log_event_data(LOG_ALARM_UPS, "Норма");
  1114. SNMP_SendUserTrap(CONNECT_MONITOR_NORM);
  1115. flUpdateLog = true;
  1116. }
  1117. return;
  1118. }
  1119. if (!connectCurrent){
  1120. flCriticalAlarm = true;
  1121. flLedAlarm = true;
  1122. }
  1123. // Значение параметра изменилось
  1124. if (connectCurrent != connectOldState)
  1125. {
  1126. if (connectCurrent){
  1127. log_event_data(LOG_ALARM_UPS, "Норма");
  1128. SNMP_SendUserTrap(CONNECT_MONITOR_NORM);
  1129. flUpdateLog = true;
  1130. }
  1131. else{
  1132. log_event_data(LOG_ALARM_UPS, "Авария");
  1133. SNMP_SendUserTrap(CONNECT_MONITOR_ALARM);
  1134. }
  1135. }
  1136. connectOldState = connectCurrent;
  1137. #endif
  1138. }
  1139. /**
  1140. * @brief Мониторинг параметра upsParams.connect
  1141. */
  1142. void UPS_BatteryConnectMonitor(void)
  1143. {
  1144. #ifdef BAT_CONNECT_MONITOR
  1145. static bool isValueRecv = false;
  1146. static bool flag_alarm_time = false;
  1147. static uint8_t AKBconnectOldState = 0;
  1148. uint8_t AKBconnectCurrent;
  1149. #if defined RELAY_OFF_AKB
  1150. uint8_t i = 0;
  1151. static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  1152. uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};
  1153. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)
  1154. CurrROtype_Sourse[i] = sSettings.sRelays[i].ro_type_source;
  1155. #endif
  1156. if(((UPS.Status >> 7) & 0x01) == 0)
  1157. AKBconnectCurrent = (UPS.Status >> 6) & 0x01;
  1158. else{
  1159. AKBconnectCurrent = 0;
  1160. }
  1161. UPS.Alarm = (UPS.Alarm & 0xfffffff7) | (AKBconnectCurrent << 3);
  1162. if (!isValueRecv) {
  1163. isValueRecv = true;
  1164. AKBconnectOldState = AKBconnectCurrent;
  1165. if (AKBconnectCurrent){
  1166. log_event_data(LOG_ALARM_AKB, "Авария");
  1167. SNMP_SendUserTrap(BATTERY_CONNECT_ALARM);
  1168. flUpdateLog = true;
  1169. #if defined RELAY_OFF_AKB
  1170. relay_setup_log(CurrROtype_Sourse, OFF_AKB, 1);
  1171. #endif
  1172. }
  1173. else{
  1174. log_event_data(LOG_ALARM_AKB, "Норма");
  1175. SNMP_SendUserTrap(BATTERY_CONNECT_NORM);
  1176. flUpdateLog = true;
  1177. #if defined RELAY_OFF_AKB
  1178. relay_setup_log(CurrROtype_Sourse, OFF_AKB, 0);
  1179. #endif
  1180. }
  1181. return;
  1182. }
  1183. // Значение параметра изменилось
  1184. if (AKBconnectCurrent != AKBconnectOldState)
  1185. {
  1186. if(flag_alarm_time){
  1187. flag_alarm_time = false;
  1188. if (!AKBconnectCurrent){
  1189. log_event_data(LOG_ALARM_AKB, "Норма");
  1190. SNMP_SendUserTrap(BATTERY_CONNECT_NORM);
  1191. flUpdateLog = true;
  1192. #if defined RELAY_OFF_AKB
  1193. relay_setup_log(CurrROtype_Sourse, OFF_AKB, 0);
  1194. #endif
  1195. }
  1196. else{
  1197. log_event_data(LOG_ALARM_AKB, "Авария");
  1198. SNMP_SendUserTrap(BATTERY_CONNECT_ALARM);
  1199. flUpdateLog = true;
  1200. #if defined RELAY_OFF_AKB
  1201. relay_setup_log(CurrROtype_Sourse, OFF_AKB, 1);
  1202. #endif
  1203. }
  1204. }
  1205. else{
  1206. flag_alarm_time = true;
  1207. }
  1208. }
  1209. #if defined RELAY_OFF_AKB
  1210. else{
  1211. flag_alarm_time = false;
  1212. if (AKBconnectCurrent)
  1213. relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, OFF_AKB);
  1214. }
  1215. for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){
  1216. OldROtype_Sourse[i] = CurrROtype_Sourse[i];
  1217. }
  1218. #endif
  1219. if(!flag_alarm_time){
  1220. if (AKBconnectCurrent){
  1221. flCriticalAlarm = true;
  1222. flLedAlarm = true;
  1223. }
  1224. AKBconnectOldState = AKBconnectCurrent;
  1225. }
  1226. else{
  1227. if (AKBconnectOldState){
  1228. flCriticalAlarm = true;
  1229. flLedAlarm = true;
  1230. }
  1231. }
  1232. #endif
  1233. }
  1234. #ifdef AKB_CHANGE_MONITOR
  1235. /**
  1236. * @brief Мониторинг параметра замены АКБ
  1237. */
  1238. void AKB_Change_Monitor(void)
  1239. {
  1240. uint32_t data_change = sSettings.UPS_Setting.set_data + (31536000*sSettings.UPS_Setting.life_time);
  1241. TM_RTC_t tmp_data;
  1242. static bool isValueRecv = false;
  1243. static uint8_t status_change_akb = 0;
  1244. uint8_t curr_status_change_akb = 0;
  1245. TM_RTC_GetDateTime(&tmp_data, TM_RTC_Format_BIN);
  1246. if (tmp_data.unix >= data_change) {
  1247. UPS.Alarm |= (1 << 6);
  1248. curr_status_change_akb = 1;
  1249. flCriticalAlarm = true;
  1250. flLedAlarm = true;
  1251. }
  1252. else {
  1253. UPS.Alarm &= 0xffffffbf;
  1254. curr_status_change_akb = 0;
  1255. }
  1256. if (!isValueRecv) {
  1257. isValueRecv = true;
  1258. status_change_akb = curr_status_change_akb;
  1259. if (curr_status_change_akb){
  1260. log_event_data(LOG_ALARM_CHANGE_AKB, "Авария");
  1261. SNMP_SendUserTrap(BATTERY_CHANGE_ALARM);
  1262. flUpdateLog = true;
  1263. }
  1264. else{
  1265. log_event_data(LOG_ALARM_CHANGE_AKB, "Норма");
  1266. SNMP_SendUserTrap(BATTERY_CHANGE_MORM);
  1267. flUpdateLog = true;
  1268. }
  1269. return;
  1270. }
  1271. // Значение параметра изменилось
  1272. if (status_change_akb != curr_status_change_akb)
  1273. {
  1274. if (curr_status_change_akb){
  1275. log_event_data(LOG_ALARM_CHANGE_AKB, "Авария");
  1276. SNMP_SendUserTrap(BATTERY_CHANGE_ALARM);
  1277. flUpdateLog = true;
  1278. } else {
  1279. log_event_data(LOG_ALARM_CHANGE_AKB, "Норма");
  1280. SNMP_SendUserTrap(BATTERY_CHANGE_MORM);
  1281. flUpdateLog = true;
  1282. }
  1283. }
  1284. status_change_akb = curr_status_change_akb;
  1285. }
  1286. #endif
  1287. #ifdef UPS_FAILED_MONITOR
  1288. void UPS_Failed_Monitor(void)
  1289. {
  1290. static bool isValueRecv = false;
  1291. static uint8_t UPSFailOldState = 0;
  1292. uint8_t UPSFailCurrent;
  1293. UPSFailCurrent = (UPS.Status >> 4) & 0x01;
  1294. if (!isValueRecv) {
  1295. isValueRecv = true;
  1296. UPSFailOldState = UPSFailCurrent;
  1297. if (UPSFailCurrent){
  1298. log_event_data(LOG_ALARM_UPS_FAILED, "Авария");
  1299. SNMP_SendUserTrap(UPS_ALARM);
  1300. flUpdateLog = true;
  1301. }
  1302. else{
  1303. log_event_data(LOG_ALARM_UPS_FAILED, "Норма");
  1304. SNMP_SendUserTrap(UPS_NORM);
  1305. flUpdateLog = true;
  1306. }
  1307. return;
  1308. }
  1309. if (UPSFailCurrent){
  1310. flCriticalAlarm = true;
  1311. flLedAlarm = true;
  1312. }
  1313. // Значение параметра изменилось
  1314. if (UPSFailCurrent != UPSFailOldState)
  1315. {
  1316. if (UPSFailCurrent){
  1317. log_event_data(LOG_ALARM_UPS_FAILED, "Авария");
  1318. SNMP_SendUserTrap(UPS_ALARM);
  1319. flUpdateLog = true;
  1320. }
  1321. else{
  1322. log_event_data(LOG_ALARM_UPS_FAILED, "Норма");
  1323. SNMP_SendUserTrap(UPS_NORM);
  1324. flUpdateLog = true;
  1325. }
  1326. }
  1327. UPSFailOldState = UPSFailCurrent;
  1328. }
  1329. #endif
  1330. /********************************* (C) РОТЕК **********************************/