| 1234567891011121314151617181920212223242526272829303132333435363738394041424344454647484950515253545556575859606162636465666768697071727374757677787980818283848586878889909192939495969798991001011021031041051061071081091101111121131141151161171181191201211221231241251261271281291301311321331341351361371381391401411421431441451461471481491501511521531541551561571581591601611621631641651661671681691701711721731741751761771781791801811821831841851861871881891901911921931941951961971981992002012022032042052062072082092102112122132142152162172182192202212222232242252262272282292302312322332342352362372382392402412422432442452462472482492502512522532542552562572582592602612622632642652662672682692702712722732742752762772782792802812822832842852862872882892902912922932942952962972982993003013023033043053063073083093103113123133143153163173183193203213223233243253263273283293303313323333343353363373383393403413423433443453463473483493503513523533543553563573583593603613623633643653663673683693703713723733743753763773783793803813823833843853863873883893903913923933943953963973983994004014024034044054064074084094104114124134144154164174184194204214224234244254264274284294304314324334344354364374384394404414424434444454464474484494504514524534544554564574584594604614624634644654664674684694704714724734744754764774784794804814824834844854864874884894904914924934944954964974984995005015025035045055065075085095105115125135145155165175185195205215225235245255265275285295305315325335345355365375385395405415425435445455465475485495505515525535545555565575585595605615625635645655665675685695705715725735745755765775785795805815825835845855865875885895905915925935945955965975985996006016026036046056066076086096106116126136146156166176186196206216226236246256266276286296306316326336346356366376386396406416426436446456466476486496506516526536546556566576586596606616626636646656666676686696706716726736746756766776786796806816826836846856866876886896906916926936946956966976986997007017027037047057067077087097107117127137147157167177187197207217227237247257267277287297307317327337347357367377387397407417427437447457467477487497507517527537547557567577587597607617627637647657667677687697707717727737747757767777787797807817827837847857867877887897907917927937947957967977987998008018028038048058068078088098108118128138148158168178188198208218228238248258268278288298308318328338348358368378388398408418428438448458468478488498508518528538548558568578588598608618628638648658668678688698708718728738748758768778788798808818828838848858868878888898908918928938948958968978988999009019029039049059069079089099109119129139149159169179189199209219229239249259269279289299309319329339349359369379389399409419429439449459469479489499509519529539549559569579589599609619629639649659669679689699709719729739749759769779789799809819829839849859869879889899909919929939949959969979989991000100110021003100410051006100710081009101010111012101310141015101610171018101910201021 | /********************************* (C) РОТЕК *********************************** * @module  ups_monitor * @file    ups_monitor.c * @version 1.0.0 * @date    XX.XX.XXXX * $brief   Template ******************************************************************************* * @history     Version  Author         Comment * XX.XX.XXXX   1.0.0    Telenkov D.A.  First release. ******************************************************************************* */   #include "stm32f4xx.h"#include "ups_monitor.h"#include "parameters.h"#include "settings_api.h"#include "megatec.h"#include "led.h"#include "log.h"#include "rtc.h"#include "hal.h"#include "FreeRTOS.h"#include "task.h"#include "trap_api.h"#include "snmp_api.h"#include <stdbool.h>bool flCriticalAlarm = false;bool flNonCriticalAlarm = false;/**  * @brief  Общая структура настроек  */extern SETTINGS_t sSettings;extern bool flUpdateLog;/**  * @brief  Задача мониторинга параметров UPS  */void UPS_Monitor(void *params){	vTaskDelay(5000);  for (;;)  {		flCriticalAlarm = false;	  flNonCriticalAlarm = false;    // Проверяем флаг подключения UPS   if (UPS.Present)    {	  UPS_TestFinishMonitor();      UPS_LineFailMonitor();#if	defined HARDWARE_BT6707 || HARDWARE_BT6709      UPS_VACoutputLowRangeMonitor();      UPS_VACoutputHighRangeMonitor();#endif      UPS_LowBatMonitor();        UPS_PowerMonitor();      UPS_TemperatureHighRangeMonitor();      UPS_TemperatureLowRangeMonitor();      UPS_BatteryConnectMonitor();    }    UPS_ConnectMonitor();#ifdef INOUTS_ENABLE    UPS_DI0Monitor();#endif#ifdef HARDWARE_BT6709    AKB_Change_Monitor();#endif#ifdef HARDWARE_BT6703    UPS_CriticalAlarmMonitor();    UPS_NonCriticalAlarmMonitor();#endif      if(flCriticalAlarm){    	  if (UPS.Present)    		  LED_On(LED_MAJOR_R);    	  else    		  LED_Toggle(LED_MAJOR_R);      }      else{    	  LED_Off(LED_MAJOR_R);      }    vTaskDelay(1000);  }}#ifdef INOUTS_ENABLE/**  * @brief  Мониторинг бита DI0 state  */void UPS_DI0Monitor(void){  static bool isValueRecv = false;  static uint8_t DI0OldState = 0;  uint8_t DI0StateCurrent;  DI0StateCurrent = get_state_din_outs(DIN1) ^ sSettings.sInOuts.din_type_act[0];  UPS.Alarm = (UPS.Alarm & 0xef) | (DI0StateCurrent << 4);  	if (!isValueRecv) {	  isValueRecv = true;	  DI0OldState = DI0StateCurrent;	  if (DI0StateCurrent){		  log_event_data(LOG_ALARM_DIO, "Авария");		  SNMP_SendUserTrap(DI0_ALARM);		  flUpdateLog = true;	  }	  else{		  log_event_data(LOG_ALARM_DIO, "Норма");		  SNMP_SendUserTrap(DI0_NORM);		  flUpdateLog = true;	  }	  return;	}	/*if (DI0StateCurrent)	  flCriticalAlarm = true;*/	// Значение параметра изменилось	if (DI0StateCurrent != DI0OldState)	{	  if (!DI0StateCurrent){		log_event_data(LOG_ALARM_DIO, "Норма");		SNMP_SendUserTrap(DI0_NORM);		flUpdateLog = true;	  }	  else{		log_event_data(LOG_ALARM_DIO, "Авария");		SNMP_SendUserTrap(DI0_ALARM);		flUpdateLog = true;	  }	}	DI0OldState = DI0StateCurrent;}void relay_setup_log(uint8_t *curr_source, ro_type_source_t src_act_ro, uint8_t state_relay){	uint8_t i = 0;	for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){		if(curr_source[i] == src_act_ro){			  SetROInt(state_relay, i);			  SNMP_SendUserTrap((DO0_TOGGLED+i));			  if(state_relay){				  flUpdateLog = true;#if	defined HARDWARE_BT6707				  log_event_data((LOG_DO0_STATE + i), "Разомкнуто");#elif HARDWARE_BT6703				  log_event_data((LOG_DO0_STATE + i), "Замкнуто");#endif			  }			  else{				  flUpdateLog = true;#if	defined HARDWARE_BT6707				  log_event_data((LOG_DO0_STATE + i), "Замкнуто");#elif HARDWARE_BT6703				  log_event_data((LOG_DO0_STATE + i), "Разомкнуто");#endif			  }		}	}}void relay_setup_log_change(uint8_t *curr_source, uint8_t *prev_source, ro_type_source_t src_act_ro){	uint8_t i = 0;	for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){		if(curr_source[i] != prev_source[i] && (prev_source[i] == src_act_ro || curr_source[i] == src_act_ro)){#if	defined HARDWARE_BT6707			if(curr_source[i] != src_act_ro){				flUpdateLog = true;				 SetROInt(0, i);				 SNMP_SendUserTrap((DO0_TOGGLED+i));				 log_event_data((LOG_DO0_STATE + i), "Замкнуто");			  }			  else{				  flUpdateLog = true;				  SetROInt(1, i);				  SNMP_SendUserTrap((DO0_TOGGLED+i));				  log_event_data((LOG_DO0_STATE + i), "Разомкнуто");			  }#elif HARDWARE_BT6703			  if(curr_source[i] != src_act_ro){				  flUpdateLog = true;				  SetROInt(0, i);				  SNMP_SendUserTrap((DO0_TOGGLED+i));				  log_event_data((LOG_DO0_STATE + i), "Разомкнуто");			  }			  else{				  flUpdateLog = true;				  SetROInt(1, i);				 SNMP_SendUserTrap((DO0_TOGGLED+i));				  log_event_data((LOG_DO0_STATE + i), "Замкнуто");			  }#endif		}	}}#endif#ifdef HARDWARE_BT6703/**  * @brief  Мониторинг бита CriticalAlarm  */void UPS_CriticalAlarmMonitor(void){  static bool isValueRecv = false;  static uint8_t CriticalAlarmOldState = 0;  uint8_t CriticalAlarmCurrent;  uint8_t i = 0;  static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};  uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};  for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)	  CurrROtype_Sourse[i] = sSettings.sInOuts.ro_type_source[i];  CriticalAlarmCurrent = flCriticalAlarm;  if (!isValueRecv) {	isValueRecv = true;	CriticalAlarmOldState = CriticalAlarmCurrent;	for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)		OldROtype_Sourse[i] = CurrROtype_Sourse[i];	if(CriticalAlarmCurrent){	  relay_setup_log(CurrROtype_Sourse, CRITICAL, 1);	}	else{		relay_setup_log(CurrROtype_Sourse, CRITICAL, 0);	}	return;  }  // Значение параметра изменилось  if (CriticalAlarmCurrent != CriticalAlarmOldState)  {	  if(CriticalAlarmCurrent){		  relay_setup_log(CurrROtype_Sourse, CRITICAL, 1);	  }	  else{		  relay_setup_log(CurrROtype_Sourse, CRITICAL, 0);	  }  }  else  {	  if(CriticalAlarmCurrent)		  relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, CRITICAL);  }	for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){	  OldROtype_Sourse[i] = CurrROtype_Sourse[i];	}  CriticalAlarmOldState = CriticalAlarmCurrent;}/**  * @brief  Мониторинг бита NonCriticalAlarm  */void UPS_NonCriticalAlarmMonitor(void){  static bool isValueRecv = false;  static uint8_t NonCriticalAlarmOldState = 0;  uint8_t NonCriticalAlarmCurrent;  uint8_t i = 0;  static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};  uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};  for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)	  CurrROtype_Sourse[i] = sSettings.sInOuts.ro_type_source[i];  NonCriticalAlarmCurrent = flNonCriticalAlarm;  if (!isValueRecv) {	isValueRecv = true;	NonCriticalAlarmOldState = NonCriticalAlarmCurrent;	 for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)		 OldROtype_Sourse[i] = CurrROtype_Sourse[i];	  if(NonCriticalAlarmCurrent)		  relay_setup_log(CurrROtype_Sourse, NON_CRITICAL, 1);	  else		  relay_setup_log(CurrROtype_Sourse, NON_CRITICAL, 0);	return;  }  // Значение параметра изменилось  if (NonCriticalAlarmCurrent != NonCriticalAlarmOldState)  {	  if(NonCriticalAlarmCurrent){		  relay_setup_log(CurrROtype_Sourse, NON_CRITICAL, 1);	  }	  else{		  relay_setup_log(CurrROtype_Sourse, NON_CRITICAL, 0);	  }  }  else  {	  if(NonCriticalAlarmCurrent)		  relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, NON_CRITICAL);  }  for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){  	  OldROtype_Sourse[i] = CurrROtype_Sourse[i];  }  NonCriticalAlarmOldState = NonCriticalAlarmCurrent;}#endif/**  * @brief  Мониторинг бита Test in progress  */void UPS_TestFinishMonitor(void){  static uint8_t TestFinishState = 0;  uint8_t TestFinishStateCurrent;  char log_string[50];  TestFinishStateCurrent = (UPS.Status >> 2) & 0x01;  // Значение параметра изменилось  if (TestFinishStateCurrent != TestFinishState)  {    if (!TestFinishStateCurrent){      log_event_data(LOG_TEST_UPS, "Завершен");      flUpdateLog = true;    } else {      memset(log_string, 0, sizeof(log_string));      switch (get_act_source()) {        case WEB_ACT:            strcpy(log_string, name_login);            break;        case SNMP_ACT:        case OTHER_ACT:            strcpy(log_string, "Администратор");            break;#ifdef CLI_ENABLE        case CLI_ACT:            strcpy(log_string, "Администратор");            break;#endif        default:            break;      }      strcat(log_string, " (Запущен)");      log_event_data(LOG_TEST_UPS, log_string);      flUpdateLog = true;    }  }  TestFinishState = TestFinishStateCurrent;}/**  * @brief  Мониторинг бита LainFail  */void UPS_LineFailMonitor(void){  static bool isValueRecv = false;  static uint8_t lineFailOldState = 0;  uint8_t lineFailCurrent;#if defined HARDWARE_BT6707  uint8_t i = 0;  static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};  uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};  for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)	  CurrROtype_Sourse[i] = sSettings.sInOuts.ro_type_source[i];#endif  lineFailCurrent = (UPS.Status >> 7) & 0x01;    if (!isValueRecv) {    isValueRecv = true;    lineFailOldState = lineFailCurrent;    if (lineFailCurrent){    	log_event_data(LOG_ALARM_LINE, "Авария");          SNMP_SendUserTrap(LINE_ALARM);          flUpdateLog = true;#if	defined HARDWARE_BT6707    	relay_setup_log(CurrROtype_Sourse, AC_PRESENT, 1);#endif    }    else{#if	defined HARDWARE_BT6707      relay_setup_log(CurrROtype_Sourse, AC_PRESENT, 0);#endif      log_event_data(LOG_ALARM_LINE, "Норма");      SNMP_SendUserTrap(LINE_NORM);      flUpdateLog = true;    }    return;  }  if (lineFailCurrent)	  flCriticalAlarm = true;      // Значение параметра изменилось  if (lineFailCurrent != lineFailOldState)  {    if (lineFailCurrent){#if	defined HARDWARE_BT6707    	relay_setup_log(CurrROtype_Sourse, AC_PRESENT, 1);#endif    	log_event_data(LOG_ALARM_LINE, "Авария");    	SNMP_SendUserTrap(LINE_ALARM);#ifdef HARDWARE_BT6709      if(UPS.Alarm & 0x40) {        log_event_data(LOG_ALARM_CHANGE_AKB, "Авария");    	  SNMP_SendUserTrap(BATTERY_CHANGE_ALARM);      }   #endif    	flUpdateLog = true;    }    else{#if	defined HARDWARE_BT6707      relay_setup_log(CurrROtype_Sourse, AC_PRESENT, 0);#endif      log_event_data(LOG_ALARM_LINE, "Норма");      SNMP_SendUserTrap(LINE_NORM);      flUpdateLog = true;    }  }#if defined HARDWARE_BT6707  else{	  if (lineFailCurrent)		  relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, AC_PRESENT);  }  for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){	  OldROtype_Sourse[i] = CurrROtype_Sourse[i];  }#endif  lineFailOldState = lineFailCurrent;}#if defined HARDWARE_BT6707 || HARDWARE_BT6709/**  * @brief  Мониторинг аварии выходного напряжения по нижней границе  */void UPS_VACoutputLowRangeMonitor(void){  static uint8_t stateCurrentVACoutput = HYST_IDLE;  uint8_t VACoutputCurrent;#if	defined HARDWARE_BT6707  uint8_t i = 0;  static bool isValueRecv = false;  static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};  uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};  for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){	  CurrROtype_Sourse[i] = sSettings.sInOuts.ro_type_source[i];	  if(!isValueRecv)		  OldROtype_Sourse[i] = CurrROtype_Sourse[i];  }#endif  VACoutputCurrent = UPS.VAC_out;  /* Отслеживается переход через нижнию границу */  if (VACoutputCurrent < sSettings.sAlarmManager.ac_output_range.low)  {	    flCriticalAlarm = true;      if (stateCurrentVACoutput == HYST_IDLE)	    {          UPS.Alarm |= (1 << 7);          stateCurrentVACoutput = HYST_DOWN;#if	defined HARDWARE_BT6707          relay_setup_log(CurrROtype_Sourse, DC_PRESENT, 1);#endif	        log_event_data(LOG_ALARM_VAC_LOW_OUTPUT, "Авария");	  // Отправка трапа о завышении	//  SNMP_SendUserTrap(POWER_ALARM);	        flUpdateLog = true;	    } else {#if	defined HARDWARE_BT6707    	    relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, DC_PRESENT);#endif      }  }  /* Отслеживается нормализация */  else if (VACoutputCurrent > (sSettings.sAlarmManager.ac_output_range.low + sSettings.sAlarmManager.ac_output_range.hyst))  {      if (stateCurrentVACoutput == HYST_DOWN)	    {          UPS.Alarm &= 0x7f;    	    stateCurrentVACoutput = HYST_IDLE;#if	defined HARDWARE_BT6707	        relay_setup_log(CurrROtype_Sourse, DC_PRESENT, 0);#endif	        log_event_data(LOG_ALARM_VAC_LOW_OUTPUT, "Норма");	  // Отправка трапа о нормализации	 // SNMP_SendUserTrap(POWER_NORM);	        flUpdateLog = true;	    }  }#if	defined HARDWARE_BT6707  for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){  	  OldROtype_Sourse[i] = CurrROtype_Sourse[i];    }#endif}/**  * @brief  Мониторинг аварии выходного напряжения по верхней границе  */void UPS_VACoutputHighRangeMonitor(void){  static uint8_t stateCurrentVACoutput = HYST_IDLE;  uint8_t VACoutputCurrent;#if	defined HARDWARE_BT6707  uint8_t i = 0;  static bool isValueRecv = false;  static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};  uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};  for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){	  CurrROtype_Sourse[i] = sSettings.sInOuts.ro_type_source[i];	  if(!isValueRecv)		  OldROtype_Sourse[i] = CurrROtype_Sourse[i];  }#endif  VACoutputCurrent = UPS.VAC_out;  /* Отслеживается переход через верхнюю границу */  if (VACoutputCurrent > sSettings.sAlarmManager.ac_output_range.high)  {	    flCriticalAlarm = true;      if (stateCurrentVACoutput == HYST_IDLE) {          UPS.Alarm |= (1 << 7);          stateCurrentVACoutput = HYST_UP;#if	defined HARDWARE_BT6707          relay_setup_log(CurrROtype_Sourse, DC_PRESENT, 1);#endif	        log_event_data(LOG_ALARM_VAC_HIGH_OUTPUT, "Авария");	  // Отправка трапа о завышении	//  SNMP_SendUserTrap(POWER_ALARM);	        flUpdateLog = true;	    } else {#if	defined HARDWARE_BT6707    	    relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, DC_PRESENT);#endif      }  }  /* Отслеживается нормализация */  else if (VACoutputCurrent < (sSettings.sAlarmManager.ac_output_range.high - sSettings.sAlarmManager.ac_output_range.hyst))  {      if (stateCurrentVACoutput == HYST_UP) {          UPS.Alarm &= 0x7f;    	    stateCurrentVACoutput = HYST_IDLE;#if	defined HARDWARE_BT6707	        relay_setup_log(CurrROtype_Sourse, DC_PRESENT, 0);#endif	        log_event_data(LOG_ALARM_VAC_HIGH_OUTPUT, "Норма");	  // Отправка трапа о нормализации	 // SNMP_SendUserTrap(POWER_NORM);	        flUpdateLog = true;	    }  }#if	defined HARDWARE_BT6707  for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){  	  OldROtype_Sourse[i] = CurrROtype_Sourse[i];    }#endif}#endif/**  * @brief  Мониторинг бита LowBat    */void UPS_LowBatMonitor(void){  static bool isValueRecv = false;  static uint8_t lowBatOldState = 0;  static bool flag_alarm_time = false;  uint8_t lowBatCurrent;#if defined HARDWARE_BT6707  uint8_t i = 0;  static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};  uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};  for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)	  CurrROtype_Sourse[i] = sSettings.sInOuts.ro_type_source[i];#endif  if((UPS.Status >> 7) & 0x01)	  lowBatCurrent = (UPS.Status >> 6) & 0x01;  else	  lowBatCurrent = 0;    if (!isValueRecv) {    isValueRecv = true;    lowBatOldState = lowBatCurrent;    if (lowBatCurrent){    	log_event_data(LOG_ALARM_LOW_BAT, "Авария");          SNMP_SendUserTrap(LOW_BAT_ALARM);          flUpdateLog = true;#if defined HARDWARE_BT6707      relay_setup_log(CurrROtype_Sourse, CHARGE_AKB, 1);#endif    }    else{	  SNMP_SendUserTrap(LOW_BAT_NORM);	  log_event_data(LOG_ALARM_LOW_BAT, "Норма");	  flUpdateLog = true;#if defined HARDWARE_BT6707	  relay_setup_log(CurrROtype_Sourse, CHARGE_AKB, 0);#endif	}    return;  }  // Значение параметра изменилось  if (lowBatCurrent != lowBatOldState)  {	if(flag_alarm_time){		flag_alarm_time = false;		if (lowBatCurrent){		  SNMP_SendUserTrap(LOW_BAT_ALARM);		  log_event_data(LOG_ALARM_LOW_BAT, "Авария");		  flUpdateLog = true;#ifdef HARDWARE_BT6707		  relay_setup_log(CurrROtype_Sourse, CHARGE_AKB, 1);#endif		}		else{		  SNMP_SendUserTrap(LOW_BAT_NORM);		  log_event_data(LOG_ALARM_LOW_BAT, "Норма");		  flUpdateLog = true;#if defined HARDWARE_BT6707		  relay_setup_log(CurrROtype_Sourse, CHARGE_AKB, 0);#endif		}	}	else{		flag_alarm_time = true;	}  }#if defined HARDWARE_BT6707  else{	  flag_alarm_time = false;	  if (lowBatCurrent)		  relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, CHARGE_AKB);  }  for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){	  OldROtype_Sourse[i] = CurrROtype_Sourse[i];  }#endif    if(!flag_alarm_time){	  if (lowBatCurrent){		  flNonCriticalAlarm = true;	  }	  lowBatOldState = lowBatCurrent;  }  else{	  if (lowBatOldState){		  flNonCriticalAlarm = true;	  }  }}/**  * @brief  Мониторинг нагрузки   */void UPS_PowerMonitor(void){  float load;  static uint8_t stateCurrent = HYST_IDLE;      load = UPS.Load;  /* Отслеживается переход через верхнюю границу */  if (load > sSettings.sAlarmManager.load_range.high)  {	flCriticalAlarm = true;	UPS.Alarm = (UPS.Alarm & 0xfe) | (1 << 0);    if (stateCurrent == HYST_IDLE)	{      LED_On(LED_MINOR_R);      LED_On(LED_MINOR_G);	  stateCurrent = HYST_UP;      	  log_event_data(LOG_ALARM_POWER, "Авария");	  // Отправка трапа о завышении 	  SNMP_SendUserTrap(POWER_ALARM);	  flUpdateLog = true;	}  }  /* Отслеживается нормализация */  else if (load < (sSettings.sAlarmManager.load_range.high - sSettings.sAlarmManager.load_range.hyst))  {	UPS.Alarm = (UPS.Alarm & 0xfe);    if (stateCurrent == HYST_UP)	{    	LED_Off(LED_MINOR_R);    	LED_Off(LED_MINOR_G);	  stateCurrent = HYST_IDLE;      	  log_event_data(LOG_ALARM_POWER, "Норма");	  // Отправка трапа о нормализации 	  SNMP_SendUserTrap(POWER_NORM);	  flUpdateLog = true;	}  }}/**  * @brief  Мониторинг температуры по верхней границе  */void UPS_TemperatureHighRangeMonitor(void){  float temperature;  static uint8_t stateCurrent = HYST_IDLE;      temperature = UPS.Temp;  /* Отслеживается переход через верхнюю границу */  if (temperature > sSettings.sAlarmManager.Temprature_range.high)  {	flCriticalAlarm = true;	UPS.Alarm = (UPS.Alarm & 0xfd) | (1 << 1);    if (stateCurrent == HYST_IDLE)	{	  stateCurrent = HYST_UP;      	  log_event_data(LOG_ALARM_HIGH_TEMP, "Авария");	  // Отправка трапа о завышении 	  SNMP_SendUserTrap(BATTERY_HIGH_TEMPERATURE_ALARM);	  flUpdateLog = true;	}  }  /* Отслеживается нормализация */  else if (temperature < (sSettings.sAlarmManager.Temprature_range.high - sSettings.sAlarmManager.Temprature_range.hyst))  {	  UPS.Alarm = (UPS.Alarm & 0xfd);    if (stateCurrent == HYST_UP)	{	  stateCurrent = HYST_IDLE;      	  log_event_data(LOG_ALARM_HIGH_TEMP, "Норма");	  // Отправка трапа о нормализации 	  SNMP_SendUserTrap(BATTERY_HIGH_TEMPERATURE_NORM);	  flUpdateLog = true;	}  }}/**  * @brief  Мониторинг температуры по нижней границе  */void UPS_TemperatureLowRangeMonitor(void){  float temperature;  static uint8_t stateCurrent = HYST_IDLE;  temperature = UPS.Temp;  /* Отслеживается переход через нипжнюю границу */  if (temperature < sSettings.sAlarmManager.Temprature_range.low)  {	flCriticalAlarm = true;	UPS.Alarm = (UPS.Alarm & 0xdf) | (1 << 5);    if (stateCurrent == HYST_IDLE)	{	  stateCurrent = HYST_DOWN;	  log_event_data(LOG_ALARM_LOW_TEMP, "Авария");	  // Отправка трапа о занижении	  SNMP_SendUserTrap(BATTERY_LOW_TEMPERATURE_ALARM);	  flUpdateLog = true;	}  }  /* Отслеживается нормализация */  else if (temperature > (sSettings.sAlarmManager.Temprature_range.low + sSettings.sAlarmManager.Temprature_range.hyst))  {	  UPS.Alarm = (UPS.Alarm & 0xdf);    if (stateCurrent == HYST_DOWN)	{	  stateCurrent = HYST_IDLE;	  log_event_data(LOG_ALARM_LOW_TEMP, "Норма");	  // Отправка трапа о нормализации	  SNMP_SendUserTrap(BATTERY_LOW_TEMPERATURE_NORM);	  flUpdateLog = true;	}  }}/**  * @brief  Мониторинг параметра upsParams.connect  */void UPS_ConnectMonitor(void){  static bool isValueRecv = false;  static uint8_t connectOldState = 0;  uint8_t connectCurrent;    connectCurrent = UPS.Present;    UPS.Alarm = (UPS.Alarm & 0xfb) | ((connectCurrent^1) << 2);  if (!isValueRecv) {    isValueRecv = true;    connectOldState = connectCurrent;    if (!connectCurrent){    	log_event_data(LOG_ALARM_UPS, "Авария");    	SNMP_SendUserTrap(CONNECT_MONITOR_ALARM);    	flUpdateLog = true;    }    else{    	log_event_data(LOG_ALARM_UPS, "Норма");		SNMP_SendUserTrap(CONNECT_MONITOR_NORM);		flUpdateLog = true;    }    return;  }  if (!connectCurrent)  	  flCriticalAlarm = true;  // Значение параметра изменилось  if (connectCurrent != connectOldState)  {    if (connectCurrent){      log_event_data(LOG_ALARM_UPS, "Норма");      SNMP_SendUserTrap(CONNECT_MONITOR_NORM);      flUpdateLog = true;    }    else{      log_event_data(LOG_ALARM_UPS, "Авария");      SNMP_SendUserTrap(CONNECT_MONITOR_ALARM);      flUpdateLog = true;    }  }    connectOldState = connectCurrent;}/**  * @brief  Мониторинг параметра upsParams.connect  */void UPS_BatteryConnectMonitor(void){  static bool isValueRecv = false;  static bool flag_alarm_time = false;  static uint8_t AKBconnectOldState = 0;  uint8_t AKBconnectCurrent;#if defined HARDWARE_BT6707  uint8_t i = 0;  static uint8_t OldROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};  uint8_t CurrROtype_Sourse[OUTPUTS_TOTAL_COUNT] = {0};  for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++)	  CurrROtype_Sourse[i] = sSettings.sInOuts.ro_type_source[i];#endif  if(((UPS.Status >> 7) & 0x01) == 0)	  AKBconnectCurrent = (UPS.Status >> 6) & 0x01;  else{	  AKBconnectCurrent = 0;  }  UPS.Alarm = (UPS.Alarm & 0xf7) | (AKBconnectCurrent << 3);  if (!isValueRecv) {    isValueRecv = true;    AKBconnectOldState = AKBconnectCurrent;    if (AKBconnectCurrent){      log_event_data(LOG_ALARM_AKB, "Авария");	  SNMP_SendUserTrap(BATTERY_CONNECT_ALARM);	  flUpdateLog = true;#if defined HARDWARE_BT6707      relay_setup_log(CurrROtype_Sourse, OFF_AKB, 1);#endif    }    else{    	log_event_data(LOG_ALARM_AKB, "Норма");		  SNMP_SendUserTrap(BATTERY_CONNECT_NORM);		  flUpdateLog = true;#if	defined HARDWARE_BT6707		  relay_setup_log(CurrROtype_Sourse, OFF_AKB, 0);#endif    }    return;  }  // Значение параметра изменилось  if (AKBconnectCurrent != AKBconnectOldState)  {	if(flag_alarm_time){		flag_alarm_time = false;		if (!AKBconnectCurrent){		  log_event_data(LOG_ALARM_AKB, "Норма");		  SNMP_SendUserTrap(BATTERY_CONNECT_NORM);		  flUpdateLog = true;#if defined HARDWARE_BT6707		  relay_setup_log(CurrROtype_Sourse, OFF_AKB, 0);#endif		}		else{		  log_event_data(LOG_ALARM_AKB, "Авария");		  SNMP_SendUserTrap(BATTERY_CONNECT_ALARM);		  flUpdateLog = true;#if defined HARDWARE_BT6707		  relay_setup_log(CurrROtype_Sourse, OFF_AKB, 1);#endif		}	}	else{		flag_alarm_time = true;	}  }#if defined HARDWARE_BT6707  else{	  flag_alarm_time = false;	  if (AKBconnectCurrent)		  relay_setup_log_change(CurrROtype_Sourse, OldROtype_Sourse, OFF_AKB);  }  for(i = 0; i < OUTPUTS_TOTAL_COUNT; i ++){	  OldROtype_Sourse[i] = CurrROtype_Sourse[i];  }#endif  if(!flag_alarm_time){	  if (AKBconnectCurrent){		  flCriticalAlarm = true;	  }	  AKBconnectOldState = AKBconnectCurrent;  }  else{	  if (AKBconnectOldState){		  flCriticalAlarm = true;	  }  }}#ifdef HARDWARE_BT6709/**  * @brief  Мониторинг параметра замены АКБ  */void AKB_Change_Monitor(void){  uint32_t data_change = sSettings.UPS_Setting.set_data + (31536000*sSettings.UPS_Setting.life_time);  TM_RTC_t tmp_data;  static bool isValueRecv = false;  static uint8_t status_change_akb = 0;  uint8_t curr_status_change_akb = 0;    TM_RTC_GetDateTime(&tmp_data, TM_RTC_Format_BIN);    if (tmp_data.unix >= data_change) {    UPS.Alarm |= (1 << 6);    curr_status_change_akb = 1;    flCriticalAlarm = true;  }  else {    UPS.Alarm &= 0xbf;    curr_status_change_akb = 0;  }  if (!isValueRecv) {    isValueRecv = true;    status_change_akb = curr_status_change_akb;    if (curr_status_change_akb){    	log_event_data(LOG_ALARM_CHANGE_AKB, "Авария");    	SNMP_SendUserTrap(BATTERY_CHANGE_ALARM);    	flUpdateLog = true;    }    else{    	log_event_data(LOG_ALARM_CHANGE_AKB, "Норма");      SNMP_SendUserTrap(BATTERY_CHANGE_MORM);      flUpdateLog = true;    }    return;  }  // Значение параметра изменилось  if (status_change_akb != curr_status_change_akb)  {    if (curr_status_change_akb){      log_event_data(LOG_ALARM_CHANGE_AKB, "Авария");    	SNMP_SendUserTrap(BATTERY_CHANGE_ALARM);      flUpdateLog = true;    } else {      log_event_data(LOG_ALARM_CHANGE_AKB, "Норма");      SNMP_SendUserTrap(BATTERY_CHANGE_MORM);      flUpdateLog = true;    }  }  status_change_akb = curr_status_change_akb;}#endif/********************************* (C) РОТЕК **********************************/
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