// // Created by cfif on 19.12.2025. // #include "Model_Task.h" #include #include #include "HVAC_model.h" #include "memory.h" #include "SystemDelayInterface.h" #include "fc7xxx_driver_smc.h" #define LOG_SIGN "ModelTask" #define LOGGER env->logger tStatus_Sensor_For_Model model_Status_Sensor_For_Model_input; tStatus_Actuator_For_Model model_Status_Actuator_DoorsActuator_For_Model_input; tStatus_Duct_Tgt_For_Model model_Status_Duct_Tgt_For_Model_input; tStatus_Eva_Tgt_For_Model model_Status_Eva_Tgt_For_Model_input; tStatus_IO_For_Model model_Status_IO_For_Model_input; tStatus_Pwm_For_Model model_Status_Pwm_For_Model_input; tStatus_eComp_For_Model model_Status_eComp_For_Model_input; tStatus_External_For_Model model_Status_External_For_Model_input; tStatus_EMS_For_Model model_Status_EMS_For_Model_input; tStatus_Ionizer_Aroma_For_Model model_Status_Ionizer_Aroma_For_Model_input; tStatus_Duct_Select_For_Model model_Status_Duct_Select_For_Model_input; tStatus_Set_For_Model model_Status_Set_For_Model_output; tStatus_Actuator_For_Model model_Status_Actuator_DoorsActuator_For_Model_output; tStatus_Duct_Tgt_For_Model model_Status_Duct_Tgt_For_Model_output; tStatus_Eva_Tgt_For_Model model_Status_Eva_Tgt_For_Model_output; tStatus_IO_For_Model model_Status_IO_For_Model_output; tStatus_Pwm_For_Model model_Status_Pwm_For_Model_output; tStatus_eComp_For_Model model_Status_eComp_For_Model_output; tStatus_External_For_Model model_Status_External_For_Model_output; tStatus_EMS_For_Model model_Status_EMS_For_Model_output; tStatus_Ionizer_Aroma_For_Model model_Status_Ionizer_Aroma_For_Model_output; tStatus_Duct_Select_For_Model model_Status_Duct_Select_For_Model_output; void ModelTask_Init( tModelTask *env, tLinTaskActuator *linTaskActuator1, tLinTaskActuator *linTaskActuator2, tLinTaskActuator *linTaskActuator3, tLin4TaskSensor *lin4TaskSensor, tLin5TaskSensor *lin5TaskSensor, tPwms *pwms, tGpios *gpios, tAdc0Task *adc0Task, tAdc1Task *adc1Task, tCanSpamReceiver *canSpamReceiver, tCanSpamTransmitter *canSpamTransmitter, tCanSpamDebugTransmitter *canSpamDebugTransmitter, tDiagnostic *diagnostic, tCanUds *canUds, tLoggerInterface *logger ) { HVAC_model_initialize(); env->linTaskActuator1 = linTaskActuator1; env->linTaskActuator2 = linTaskActuator2; env->linTaskActuator3 = linTaskActuator3; env->lin4TaskSensor = lin4TaskSensor; env->lin5TaskSensor = lin5TaskSensor; env->pwms = pwms; env->gpios = gpios; env->canUds = canUds; env->adc0Task = adc0Task; env->adc1Task = adc1Task; env->canSpamReceiver = canSpamReceiver; env->canSpamTransmitter = canSpamTransmitter; env->canSpamDebugTransmitter = canSpamDebugTransmitter; env->diagnostic = diagnostic; env->access = osMutexNew(NULL); env->logger = logger; InitThreadAtrStatic(&env->thread.attr, "ModelTask", env->thread.controlBlock, env->thread.stack, osPriorityNormal); env->thread.id = 0; HVAC_model_initialize(); } static bool setActuatorBusy(tModelTask *env) { if (env->triggerCommand1 == false) { for (uint8_t i = 0; i < env->linTaskActuator1->LIN_ISSR_ALL; ++i) { if (Actuator_Ch0_Command_Model.COM[i] != 0) { env->triggerCommand1 = true; memcpy(&env->triggerActuatorCmdBus_1, &Actuator_Ch0_Command_Model, sizeof(ActuatorCmdBus)); #if (LOG_LIN_ACTUATOR == 1) #if (LOG_LIN1_ACTUATOR == 1) for (uint8_t j = 0; j < env->linTaskActuator1->LIN_ISSR_ALL; ++j) { switch (Actuator_Ch0_Command_Model.COM[j]) { case LIN_ACT_CFR_MOD: { LoggerFormatTrace(LOGGER, LOG_SIGN, "LIN1 (ADR[%d] = %d): TRIGGERED COMMAND LIN_ACT_CFR_MOD (SET BUSY)", j, Actuator_Ch0_Command_Model.BUS_ADR[j]) break; } case LIN_ACT_CFR_INI: { LoggerFormatTrace(LOGGER, LOG_SIGN, "LIN1 (ADR[%d] = %d): TRIGGERED COMMAND LIN_ACT_CFR_INI (SET BUSY)", j, Actuator_Ch0_Command_Model.BUS_ADR[j]) break; } case LIN_ACT_CFR_SET: { LoggerFormatTrace(LOGGER, LOG_SIGN, "LIN1 (ADR[%d] = %d): TRIGGERED COMMAND LIN_ACT_CFR_SET (SET BUSY)", j, Actuator_Ch0_Command_Model.BUS_ADR[j]) break; } case LIN_ACT_CFR_NONE: { break; } default: { LoggerFormatError(LOGGER, LOG_SIGN, "LIN1 (ADR[%d] = %d): TRIGGERED COMMAND = %d UNKNOWN !!! (SET BUSY)", j, Actuator_Ch0_Command_Model.BUS_ADR[j], Actuator_Ch0_Command_Model.COM[j]) } } } #endif #endif Actuator_Ch0_Status_Model.Busy = 1; break; } } } if (env->triggerCommand2 == false) { for (uint8_t i = 0; i < env->linTaskActuator2->LIN_ISSR_ALL; ++i) { if (Actuator_Ch1_Command_Model.COM[i] != 0) { env->triggerCommand2 = true; memcpy(&env->triggerActuatorCmdBus_2, &Actuator_Ch1_Command_Model, sizeof(ActuatorCmdBus)); #if (LOG_LIN_ACTUATOR == 1) #if (LOG_LIN2_ACTUATOR == 1) for (uint8_t j = 0; j < env->linTaskActuator2->LIN_ISSR_ALL; ++j) { switch (Actuator_Ch1_Command_Model.COM[j]) { case LIN_ACT_CFR_MOD: { LoggerFormatTrace(LOGGER, LOG_SIGN, "LIN2 (ADR[%d] = %d): TRIGGERED COMMAND LIN_ACT_CFR_MOD (SET BUSY)", j, Actuator_Ch1_Command_Model.BUS_ADR[j]) break; } case LIN_ACT_CFR_INI: { LoggerFormatTrace(LOGGER, LOG_SIGN, "LIN2 (ADR[%d] = %d): TRIGGERED COMMAND LIN_ACT_CFR_INI (SET BUSY)", j, Actuator_Ch1_Command_Model.BUS_ADR[j]) break; } case LIN_ACT_CFR_SET: { LoggerFormatTrace(LOGGER, LOG_SIGN, "LIN2 (ADR[%d] = %d): TRIGGERED COMMAND LIN_ACT_CFR_SET (SET BUSY)", j, Actuator_Ch1_Command_Model.BUS_ADR[j]) break; } case LIN_ACT_CFR_NONE: { break; } default: { LoggerFormatError(LOGGER, LOG_SIGN, "LIN2 (ADR[%d] = %d): TRIGGERED COMMAND = %d UNKNOWN !!! (SET BUSY)", j, Actuator_Ch1_Command_Model.BUS_ADR[j], Actuator_Ch1_Command_Model.COM[j]) } } } #endif #endif Actuator_Ch1_Status_Model.Busy = 1; break; } } } if (env->triggerCommand3 == false) { for (uint8_t i = 0; i < env->linTaskActuator3->LIN_ISSR_ALL; ++i) { if (Actuator_Ch2_Command_Model.COM[i] != 0) { env->triggerCommand3 = true; memcpy(&env->triggerActuatorCmdBus_3, &Actuator_Ch2_Command_Model, sizeof(ActuatorCmdBus)); #if (LOG_LIN_ACTUATOR == 1) #if (LOG_LIN3_ACTUATOR == 1) for (uint8_t j = 0; j < env->linTaskActuator3->LIN_ISSR_ALL; ++j) { switch (Actuator_Ch2_Command_Model.COM[j]) { case LIN_ACT_CFR_MOD: { LoggerFormatTrace(LOGGER, LOG_SIGN, "LIN3 (ADR[%d] = %d): TRIGGERED COMMAND LIN_ACT_CFR_MOD (SET BUSY)", j, Actuator_Ch2_Command_Model.BUS_ADR[j]) break; } case LIN_ACT_CFR_INI: { LoggerFormatTrace(LOGGER, LOG_SIGN, "LIN3 (ADR[%d] = %d): TRIGGERED COMMAND LIN_ACT_CFR_INI (SET BUSY)", j, Actuator_Ch2_Command_Model.BUS_ADR[j]) break; } case LIN_ACT_CFR_SET: { LoggerFormatTrace(LOGGER, LOG_SIGN, "LIN3 (ADR[%d] = %d): TRIGGERED COMMAND LIN_ACT_CFR_SET (SET BUSY)", j, Actuator_Ch2_Command_Model.BUS_ADR[j]) break; } case LIN_ACT_CFR_NONE: { break; } default: { LoggerFormatError(LOGGER, LOG_SIGN, "LIN3 (ADR[%d] = %d): TRIGGERED COMMAND = %d UNKNOWN !!! (SET BUSY)", j, Actuator_Ch2_Command_Model.BUS_ADR[j], Actuator_Ch2_Command_Model.COM[j]) } } } #endif #endif Actuator_Ch2_Status_Model.Busy = 1; break; } } } return false; } __attribute__((section(".nchache_save_data"))) volatile CCU_Stat1_t CCU_STAT1_MODEL_SAVE; __attribute__((section(".nchache_save_data"))) volatile CCU_Stat2_t CCU_STAT2_MODEL_SAVE; __attribute__((section(".nchache_save_data"))) volatile CCU_Stat3_t CCU_STAT3_MODEL_SAVE; __attribute__((section(".nchache_save_data"))) volatile CCU_Msg1_t CCU_MSG1_MODEL_SAVE; #define SLEEP_TIME 3000 static _Noreturn void ModelTask_Thread(tModelTask *env) { memset((void *) &CCU_STAT1_MODEL_SAVE, 0, sizeof(env->ccu_candb_tx.CCU_Stat1)); memset((void *) &CCU_STAT2_MODEL_SAVE, 0, sizeof(env->ccu_candb_tx.CCU_Stat2)); memset((void *) &CCU_STAT3_MODEL_SAVE, 0, sizeof(env->ccu_candb_tx.CCU_Stat3)); memset((void *) &CCU_MSG1_MODEL_SAVE, 0, sizeof(env->ccu_candb_tx.CCU_Msg1)); for (;;) { if (GPIO_ReadPins((uint8_t) PORT_E, PORT_PIN_16)) { if (env->sleep_time == 0) { env->sleep_time = SystemGetMs() + SLEEP_TIME; } } else { env->sleep_time = 0; } if ((env->sleep_time > 0) && (env->sleep_time < SystemGetMs())) { SMC_SetSystemMode(SMC_MODE_STANBY_3); } if (osMutexAcquire(env->access, 1000) == osOK) { //LoggerFormatError(LOGGER, LOG_SIGN, "Step END = %d", SystemGetMs()) rtDW.t_now = SystemGetMs(); getCmdBusADCData(env->adc0Task, &rtDW.ADC_Data_Model); getCmdBusADC2Data(env->adc1Task, (CmdBusADC2Data *) &rtDW.ADC_Data_Model.VN7008AJ_DIAG_FrontLINActuatorPowerDriverAB); //начало--------------------------------------------------PWM----------------------------------------------------------- PWM_Get.pwmPercentFront = env->pwms->pwmFrontCaptureIO.getPwm(env->pwms->pwmFrontCaptureIO.env); PWM_Get.pwmPercentRear = env->pwms->pwmRearCaptureIO.getPwm(env->pwms->pwmRearCaptureIO.env); PWM_Get.pwmPercentFrontReserved = env->pwms->pwmFrontCaptureIO.getPwm( env->pwms->pwmFrontReservedCaptureIO.env); PWM_Get.pwmPercentRearReserved = env->pwms->pwmRearCaptureIO.getPwm( env->pwms->pwmRearReservedCaptureIO.env); model_Status_Pwm_For_Model_input.Pwm_Front = PWM_Get.pwmPercentFront * 10; model_Status_Pwm_For_Model_input.Pwm_Rear = PWM_Get.pwmPercentRear * 10; //конец--------------------------------------------------PWM------------------------------------------------------------ //начало--------------------------------------------------CAN----------------------------------------------------------- get_CanSpamReceiver(env->canSpamReceiver); if (model_Status_Set_For_Model_output.EMS == 1) { rtDW.CCUCAN_EMS_HVC_REQ_MSG_MODEL.EMS_eCompChiller_Req = model_Status_EMS_For_Model_output.EMS_Chiller_Req; } model_Status_EMS_For_Model_input.EMS_Chiller_Req = rtDW.CCUCAN_EMS_HVC_REQ_MSG_MODEL.EMS_eCompChiller_Req; //конец--------------------------------------------------CAN------------------------------------------------------------ Lin4_Output_Get_From_Model(env->lin4TaskSensor); Lin5_Output_Get_From_Model(env->lin5TaskSensor); HVAC_model_step(); Lin5_Input_Set_From_Model(env->lin5TaskSensor); CanUdsOutput_Get_Model(env->canUds); setActuatorBusy(env); //начало--------------------------------------------------GPIO---------------------------------------------------------- // Включение 5V (1 - ВКЛ) GpioPinSet(&env->gpios->power.SW5V_EN, rtY.PowerEnable_Model.SW5V_EN); // Контроль напряжения борт-сети (1 - ВКЛ) GpioPinSet(&env->gpios->power.PBATT_CK_EN, rtY.PowerEnable_Model.PBATT_CK_EN); env->TwoWayValve_EN = rtY.PowerEnable_Model.TwoWayValve_EN; env->EN_BATTChiller = rtY.PowerEnable_Model.EN_BATTChiller; env->Incar_Motor_Front_EN = rtY.PowerEnable_Model.Incar_Motor_Front_EN; env->Incar_Motor_Rear_EN = rtY.PowerEnable_Model.Incar_Motor_Rear_EN; env->ShutOffFront_EN = rtY.PowerEnable_Model.ShutOffFront_EN; env->ShutOffRear_EN = rtY.PowerEnable_Model.ShutOffRear_EN; env->PtcRelayDriver1_EN = rtY.PowerEnable_Model.PtcRelayDriver1_EN; env->PtcRelayDriver2_EN = rtY.PowerEnable_Model.PtcRelayDriver2_EN; if (model_Status_Set_For_Model_output.IO == 1) { if (model_Status_IO_For_Model_output._2_Way_Valve == 0) { env->TwoWayValve_EN = false; } else { env->TwoWayValve_EN = true; } if (model_Status_IO_For_Model_output.IncarMotor_Front == 0) { env->Incar_Motor_Front_EN = false; } else { env->Incar_Motor_Front_EN = true; } if (model_Status_IO_For_Model_output.IncarMotor_Rear == 0) { env->Incar_Motor_Rear_EN = false; } else { env->Incar_Motor_Rear_EN = true; } if (model_Status_IO_For_Model_output.ShutOff_Chiller == 0) { env->EN_BATTChiller = false; } else { env->EN_BATTChiller = true; } if (model_Status_IO_For_Model_output.ShutOff_Front == 0) { env->ShutOffFront_EN = false; } else { env->ShutOffFront_EN = true; } if (model_Status_IO_For_Model_output.IncarMotor_Rear == 0) { env->ShutOffRear_EN = false; } else { env->ShutOffRear_EN = true; } if (model_Status_IO_For_Model_output.PTC_1 == 0) { env->PtcRelayDriver1_EN = false; } else { env->PtcRelayDriver1_EN = true; } if (model_Status_IO_For_Model_output.PTC_2 == 0) { env->PtcRelayDriver2_EN = false; } else { env->PtcRelayDriver2_EN = true; } } else { GpioPinSet(&env->gpios->power.BTS5180_2EKA_TwoWayValveAndReservePowerSupply.TwoWayValve_EN, env->TwoWayValve_EN); GpioPinSet(&env->gpios->power.BTS5180_2EKA_TwoWayValveAndReservePowerSupply.TwoWayValve_EN_Diag, true); GpioPinSet(&env->gpios->power.BTS5180_2EKA_TwoWayValveAndReservePowerSupply.ReservePower_EN, rtY.PowerEnable_Model.ReservePower_EN); GpioPinSet(&env->gpios->power.BTS4175SGAXUMA1_ShutOFFValveBatteryChiller.EN_BATTChiller, env->EN_BATTChiller); GpioPinSet(&env->gpios->power.BTS5180_2EKA_FrontRearIncarMotor.Incar_Motor_Front_EN, env->Incar_Motor_Front_EN); GpioPinSet(&env->gpios->power.BTS5180_2EKA_FrontRearIncarMotor.Incar_EN_Diag, true); GpioPinSet(&env->gpios->power.BTS5180_2EKA_FrontRearIncarMotor.Incar_Motor_Rear_EN, env->Incar_Motor_Rear_EN); GpioPinSet(&env->gpios->power.BTS5180_2EKA_ShutOFFValveFrontRear.ShutOffFront_EN, env->ShutOffFront_EN); GpioPinSet(&env->gpios->power.BTS5180_2EKA_ShutOFFValveFrontRear.ShutOff_EN_Diag, true); GpioPinSet(&env->gpios->power.BTS5180_2EKA_ShutOFFValveFrontRear.ShutOffRear_EN, env->ShutOffRear_EN); GpioPinSet(&env->gpios->power.BTS5180_2EKA_2xChannelPTCPower.PtcRelayDriver1_EN, env->PtcRelayDriver1_EN); GpioPinSet(&env->gpios->power.BTS5180_2EKA_2xChannelPTCPower.PtcRelayDriver_EN_Diag, true); GpioPinSet(&env->gpios->power.BTS5180_2EKA_2xChannelPTCPower.PtcRelayDriver2_EN, env->PtcRelayDriver2_EN); } model_Status_IO_For_Model_input._2_Way_Valve = env->TwoWayValve_EN; model_Status_IO_For_Model_input.IncarMotor_Front = env->Incar_Motor_Front_EN; model_Status_IO_For_Model_input.IncarMotor_Rear = env->Incar_Motor_Rear_EN; model_Status_IO_For_Model_input.ShutOff_Chiller = env->EN_BATTChiller; model_Status_IO_For_Model_input.ShutOff_Front = env->ShutOffFront_EN; model_Status_IO_For_Model_input.ShutOff_Rear = env->ShutOffRear_EN; model_Status_IO_For_Model_input.PTC_1 = env->PtcRelayDriver1_EN; model_Status_IO_For_Model_input.PTC_2 = env->PtcRelayDriver2_EN; // GpioPinSet(&env->gpios->power.BTS4175SGAXUMA1_ReservePowerOutput.EN_ReservePower, rtY.PowerEnable_Model.EN_ReservePower); GpioPinSet(&env->gpios->power.BTS4175SGAXUMA1_PowerReserve.EN_PowerReserve, rtY.PowerEnable_Model.EN_PowerReserve); GpioPinSet(&env->gpios->power.VN7008AJ_FrontLINActuatorPowerDriverAB.LIN_ActPower_AB, rtY.PowerEnable_Model.LIN_ActPower_AB); GpioPinSet(&env->gpios->power.VN7008AJ_FrontLINActuatorPowerDriverAB.EN_CurrentSensing_AB, true); GpioPinSet(&env->gpios->power.VN7008AJ_RearLINActuatorPowerDriverC.LIN_ActPower_C, rtY.PowerEnable_Model.LIN_ActPower_C); GpioPinSet(&env->gpios->power.VN7008AJ_RearLINActuatorPowerDriverC.EN_CurrentSensing_C, true); GpioPinSet(&env->gpios->power.BTS5120_2EKA_ShutoffValvePowerTXV.ShutOffTXV1_EN, rtY.PowerEnable_Model.ShutOffTXV1_EN); GpioPinSet(&env->gpios->power.BTS5120_2EKA_ShutoffValvePowerTXV.ShutOffTXV_EN_Diag, true); GpioPinSet(&env->gpios->power.BTS5120_2EKA_ShutoffValvePowerTXV.ShutOffTXV2_EN, rtY.PowerEnable_Model.ShutOffTXV2_EN); //конец--------------------------------------------------GPIO----------------------------------------------------------- //начало--------------------------------------------------PWM----------------------------------------------------------- if (model_Status_Set_For_Model_output.Pwm == 1) { rtY.PWM_Get_f.pwmPercentFront = model_Status_Pwm_For_Model_output.Pwm_Front / 10; rtY.PWM_Get_f.pwmPercentRear = model_Status_Pwm_For_Model_output.Pwm_Rear / 10; } env->pwms->pwmFrontIo.setActivePercent(env->pwms->pwmFrontIo.env, rtY.PWM_Get_f.pwmPercentFront); env->pwms->pwmRearIo.setActivePercent(env->pwms->pwmRearIo.env, rtY.PWM_Get_f.pwmPercentRear); env->pwms->pwmFrontReservedIo.setActivePercent(env->pwms->pwmFrontReservedIo.env, rtY.PWM_Get_f.pwmPercentFrontReserved); env->pwms->pwmRearReservedIo.setActivePercent(env->pwms->pwmRearReservedIo.env, rtY.PWM_Get_f.pwmPercentRearReserved); //конец--------------------------------------------------PWM------------------------------------------------------------ //начало-------------------------------------------------SlEEP---------------------------------------------------------- memcpy((void *) &CCU_STAT1_MODEL_SAVE, &rtY.CCU_Stat1_model, sizeof(env->ccu_candb_tx.CCU_Stat1)); memcpy((void *) &CCU_STAT2_MODEL_SAVE, &rtY.CCU_Stat2_model, sizeof(env->ccu_candb_tx.CCU_Stat2)); memcpy((void *) &CCU_MSG1_MODEL_SAVE, &rtY.CCU_Msg1_model, sizeof(env->ccu_candb_tx.CCU_Msg1)); //конец--------------------------------------------------SLEEP---------------------------------------------------------- //начало--------------------------------------------------CAN----------------------------------------------------------- memcpy(&env->ccu_candb_tx.CCU_Errors, &rtY.CCU_Errors_model, sizeof(env->ccu_candb_tx.CCU_Errors)); memcpy(&env->ccu_candb_tx.CCU_Stat1, &rtY.CCU_Stat1_model, sizeof(env->ccu_candb_tx.CCU_Stat1)); memcpy(&env->ccu_candb_tx.CCU_Stat2, &rtY.CCU_Stat2_model, sizeof(env->ccu_candb_tx.CCU_Stat2)); memcpy(&env->ccu_candb_tx.CCU_HVC_Req_Msg, &rtY.CCUCAN_HVC_REQ_MSG_MODEL, sizeof(env->ccu_candb_tx.CCU_HVC_Req_Msg)); memcpy(&env->ccu_candb_tx.CCU_Msg3, &rtY.CCU_Msg3_model, sizeof(env->ccu_candb_tx.CCU_Msg3)); memcpy(&env->ccu_candb_tx.CCU_Msg1, &rtY.CCU_Msg1_model, sizeof(env->ccu_candb_tx.CCU_Msg1)); if (model_Status_Set_For_Model_output.eComp == 1) { env->ccu_candb_tx.CCU_HVC_Req_Msg.CCU_eCompSpeedReq_Val_ro = model_Status_eComp_For_Model_output.Pwm_Front; // request to EMS for closing the low temperature circuit valve // 2 : "Open Valve request" // 1 : "Close Valve request" // 0 : "No request" if (model_Status_eComp_For_Model_output.LowTempValve == 0) { env->ccu_candb_tx.CCU_HVC_Req_Msg.CCU_LowTempValve_Req = 1; } else { env->ccu_candb_tx.CCU_HVC_Req_Msg.CCU_LowTempValve_Req = 2; } // 0 = Off!0 = On //1 Byte //[0x00] Off //[0x01..0xFF] On; Inverse value: 0x01 if (model_Status_eComp_For_Model_output.eComp_Statue_Request == 0) { env->ccu_candb_tx.CCU_HVC_Req_Msg.CCU_eCompReq_Stat = 0; } else { env->ccu_candb_tx.CCU_HVC_Req_Msg.CCU_eCompReq_Stat = 1; } } model_Status_eComp_For_Model_input.Pwm_Front = env->ccu_candb_tx.CCU_HVC_Req_Msg.CCU_eCompSpeedReq_Val_ro; model_Status_eComp_For_Model_input.LowTempValve = env->ccu_candb_tx.CCU_HVC_Req_Msg.CCU_LowTempValve_Req; model_Status_eComp_For_Model_input.eComp_Statue_Request = env->ccu_candb_tx.CCU_HVC_Req_Msg.CCU_eCompReq_Stat; if (model_Status_Set_For_Model_output.External == 1) { env->ccu_candb_tx.CCU_Msg3.CCU_FAN_Req = model_Status_External_For_Model_output.CoolingFan / 10; } model_Status_External_For_Model_input.CoolingFan = env->ccu_candb_tx.CCU_Msg3.CCU_FAN_Req; set_CanSpamTransmitter(env->canSpamTransmitter, &env->ccu_candb_tx); memcpy(&env->ccu_candb_dbg_tx.dbg_Act0, &rtY.dbgCAN_dbg_Act0_model, sizeof(env->ccu_candb_dbg_tx.dbg_Act0)); memcpy(&env->ccu_candb_dbg_tx.dbg_Act1, &rtY.dbgCAN_dbg_Act1_model, sizeof(env->ccu_candb_dbg_tx.dbg_Act1)); memcpy(&env->ccu_candb_dbg_tx.dbg_Act2, &rtY.dbgCAN_dbg_Act2_model, sizeof(env->ccu_candb_dbg_tx.dbg_Act2)); memcpy(&env->ccu_candb_dbg_tx.dbg_Sen_Duct, &rtY.dbgCAN_dbg_Sen_Duct_model, sizeof(env->ccu_candb_dbg_tx.dbg_Sen_Duct)); memcpy(&env->ccu_candb_dbg_tx.dbg_Sen_Eva, &rtY.dbgCAN_dbg_Sen_Eva_model, sizeof(env->ccu_candb_dbg_tx.dbg_Sen_Eva)); memcpy(&env->ccu_candb_dbg_tx.dbg_Logic_Blower, &rtY.dbgCAN_dbg_Logic_Blower_model, sizeof(env->ccu_candb_dbg_tx.dbg_Logic_Blower)); memcpy(&env->ccu_candb_dbg_tx.dbg_Sen_Amb, &rtY.dbgCAN_dbg_Sen_Amb_model, sizeof(env->ccu_candb_dbg_tx.dbg_Sen_Amb)); memcpy(&env->ccu_candb_dbg_tx.dbg_Sen_Incar, &rtY.dbgCAN_dbg_Sen_Incar_model, sizeof(env->ccu_candb_dbg_tx.dbg_Sen_Incar)); memcpy(&env->ccu_candb_dbg_tx.dbg_Sen_0, &rtY.dbgCAN_dbg_Sen_0_model, sizeof(env->ccu_candb_dbg_tx.dbg_Sen_0)); memcpy(&env->ccu_candb_dbg_tx.dbg_Logic_Ac, &rtY.dbg_Logic_Ac_model, sizeof(env->ccu_candb_dbg_tx.dbg_Logic_Ac)); memcpy(&env->ccu_candb_dbg_tx.dbg_CCU_IO, &rtY.dbgCAN_CCU_IO_model, sizeof(env->ccu_candb_dbg_tx.dbg_CCU_IO)); memcpy(&env->ccu_candb_dbg_tx.dbg_Logic_Rec, &rtY.dbgCAN_Logic_Rec_model, sizeof(env->ccu_candb_dbg_tx.dbg_Logic_Rec)); memcpy(&env->ccu_candb_dbg_tx.dbg_Logic_State, &rtY.dbgCAN_Logic_State_model, sizeof(env->ccu_candb_dbg_tx.dbg_Logic_State)); memcpy(&env->ccu_candb_dbg_tx.dbg_Auto_AF, &rtY.dbgCAN_Auto_AF_model, sizeof(env->ccu_candb_dbg_tx.dbg_Auto_AF)); memcpy(&env->ccu_candb_dbg_tx.dbg_Auto_Duct, &rtY.dbgCAN_Auto_Duct_model, sizeof(env->ccu_candb_dbg_tx.dbg_Auto_Duct)); memcpy(&env->ccu_candb_dbg_tx.dbg_Logic_Valve, &rtY.dbg_Logic_Valve_model, sizeof(env->ccu_candb_dbg_tx.dbg_Logic_Valve)); //конец--------------------------------------------------CAN------------------------------------------------------------ memcpy(&env->ccu_candb_dbg_tx.dbg_Drs, &rtY.dbg_Drs_t_model, sizeof(env->ccu_candb_dbg_tx.dbg_Drs)); memcpy(&env->ccu_candb_dbg_tx.dbg_LIN_AirQS_Stat, &rtY.dbg_LIN_AirQS_Stat_t_model, sizeof(env->ccu_candb_dbg_tx.dbg_Logic_Valve)); Lin4_Input_Set_From_Model(env->lin4TaskSensor); set_CanDebugSpamTransmitter(env->canSpamDebugTransmitter, &env->ccu_candb_dbg_tx); set_Dtc_state(env->diagnostic); CanUdsInput_Set_Model(env->canUds); env->isRunning = true; osMutexRelease(env->access); } else { LoggerErrorStatic(LOGGER, LOG_SIGN, "Access error ModelTask_Thread"); } SystemDelayMs(10); } } void ModelTask_StartThread(tModelTask *env) { if (!env->thread.id) { env->thread.id = osThreadNew((osThreadFunc_t) (ModelTask_Thread), (void *) (env), &env->thread.attr); } else { osThreadResume(env->thread.id); } } void ModelTask_StopThread(tModelTask *env) { if (env->thread.id) { osThreadSuspend(env->thread.id); } }