| | |
| | | uint16_t slottime,max_slotpos; |
| | | uint16_t lastpoll_count,interval_count,slot_startcount,tag_frequency,lastpoll_time,current_time; |
| | | extern uint8_t module_power; |
| | | extern float nomove_count; |
| | | uint8_t imu_enable,motor_enable; |
| | | u16 GetLPTime(void) |
| | | { |
| | |
| | | } |
| | | if(HAL_GPIO_ReadPin(INPUT_5V_GPIO_Port,INPUT_5V_Pin)) |
| | | { |
| | | nomove_count = 0; |
| | | if(state5v==0) |
| | | { |
| | | state5v=1; |
| | |
| | | |
| | | u16 total_slotnum,current_slotnum; |
| | | extern int32_t offsettimeus; |
| | | |
| | | void SetNextPollTime(u16 time) |
| | | #define FIXSLOT |
| | | uint16_t bigslot_num; |
| | | uint8_t fix_slotpos =8; |
| | | int32_t lpcount,lptime,target_time; |
| | | void SetNextPollTime(u16 slotpos) |
| | | { |
| | | int32_t lpcount,lptime,target_time; |
| | | u16 slotpos_intoatl; |
| | | #ifdef FIXSLOT |
| | | slotpos = fix_slotpos; |
| | | #endif |
| | | |
| | | if(current_slotnum>=total_slotnum) |
| | | current_slotnum-=total_slotnum; |
| | | |
| | | target_time=((current_slotnum*g_com_map[COM_INTERVAL])+time)*1000; |
| | | slotpos_intoatl = current_slotnum*bigslot_num+slotpos; |
| | | |
| | | target_time=(slotpos_intoatl*SLOTTIME_MS+100)*100; |
| | | //if(target_time<90000) |
| | | { |
| | | lptime=target_time-offsettimeus; |
| | |
| | | Usart1ParseDataCallback = UsartParseDataHandler; |
| | | parameter_init(); |
| | | //deca_sleep(1000); |
| | | g_com_map[VERSION] = 0x0110; |
| | | g_com_map[VERSION] = 0x0204; |
| | | #ifdef DEBUG_MODE |
| | | // g_com_map[DEV_ROLE]=1; |
| | | // g_com_map[DEV_ID]=1; |
| | | g_com_map[DEV_ID]=0x123; |
| | | g_com_map[COM_INTERVAL]=100; |
| | | // g_com_map[MAX_REPORT_ANC_NUM]=1; |
| | | g_com_map[NOMOVESLEEP_TIME]=10; |
| | | // g_com_map[NOMOVESLEEP_TIME]=10; |
| | | // g_com_map[IMU_ENABLE]=0; |
| | | #endif |
| | | |
| | | //g_com_map[NOMOVESLEEP_TIME]=10; |
| | | g_com_map[COM_INTERVAL]=50; |
| | | if(g_com_map[COM_INTERVAL]==0) |
| | | { |
| | | g_com_map[COM_INTERVAL]=100; |
| | | } |
| | | if(module_power>67) |
| | | {module_power=67;} |
| | | if(module_power>MAX_RFPOWER) |
| | | {module_power=MAX_RFPOWER;} |
| | | if(module_power<0) |
| | | {module_power=0;} |
| | | module_power = g_com_map[POWER]; |
| | |
| | | |
| | | group_id=g_com_map[GROUP_ID]; |
| | | dev_id = g_com_map[DEV_ID]; |
| | | slottime=ceil((double)g_com_map[MAX_REPORT_ANC_NUM]*SLOT_SCALE)+3; |
| | | //slottime=ceil((double)g_com_map[MAX_REPORT_ANC_NUM]*SLOT_SCALE)+3; |
| | | slottime = 5; |
| | | max_slotpos=g_com_map[COM_INTERVAL]/slottime; |
| | | tyncpoll_time=(g_com_map[DEV_ID]%max_slotpos)*slottime; |
| | | slot_startcount=tyncpoll_time*1000/LPTIMER_LSB; |
| | | lastpoll_time=tyncpoll_time; |
| | | tag_frequency = 1000/g_com_map[COM_INTERVAL]; |
| | | total_slotnum = 1000/g_com_map[COM_INTERVAL]; |
| | | bigslot_num = TOTAL_SLOTNUM/tag_frequency; |
| | | current_slotnum=1; |
| | | current_time=GetLPTime(); |
| | | if (HAL_LPTIM_TimeOut_Start_IT(&hlptim1, LPTIMER_1S_COUNT, slot_startcount) != HAL_OK) //system time is 1010ms 1 puls=30.518us |
| | |
| | | /* Initialize all configured peripherals */ |
| | | MX_GPIO_Init(); |
| | | MX_LPTIM1_Init(); |
| | | MX_DMA_Init(); |
| | | MX_DMA_Init(); |
| | | MX_USART1_UART_Init(); |
| | | MX_SPI1_Init(); |
| | | MX_ADC_Init(); |
| | |
| | | /* USER CODE END WHILE */ |
| | | |
| | | /* USER CODE BEGIN 3 */ |
| | | // while(1) |
| | | // { |
| | | // MODBUS_Poll(); |
| | | // } |
| | | if(g_start_send_flag) |
| | | { static uint16_t blink_count=0; |
| | | SystemClock_Config(); |
| | |
| | | Error_Handler(); |
| | | } |
| | | /* USER CODE BEGIN USART1_Init 2 */ |
| | | GPIO_InitStruct.Pin = GPIO_PIN_10; |
| | | GPIO_InitStruct.Mode = GPIO_MODE_AF_PP; |
| | | GPIO_InitStruct.Pull = GPIO_PULLUP; |
| | | GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_VERY_HIGH; |
| | | GPIO_InitStruct.Alternate = GPIO_AF4_USART1; |
| | | HAL_GPIO_Init(GPIOA, &GPIO_InitStruct); |
| | | // GPIO_InitStruct.Pin = GPIO_PIN_9; |
| | | // GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP; |
| | | // GPIO_InitStruct.Pull = GPIO_PULLUP; |
| | | // GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_VERY_HIGH; |
| | | // GPIO_InitStruct.Alternate = GPIO_AF4_USART1; |
| | | // HAL_GPIO_Init(GPIOA, &GPIO_InitStruct); |
| | | // if(HAL_UART_Receive_IT(&huart1, (uint8_t *)aRxBuffer, 1) != HAL_OK) |
| | | // { |
| | | // Error_Handler(); |
| | |
| | | HAL_GPIO_WritePin(GPIOA, SCL_Pin|SDA_Pin|SPI_CS_Pin, GPIO_PIN_SET); |
| | | |
| | | /*Configure GPIO pin Output Level */ |
| | | HAL_GPIO_WritePin(GPIOB, BAT_MEAS_GND_Pin|MOTOR_Pin, GPIO_PIN_SET); |
| | | HAL_GPIO_WritePin(GPIOB, BAT_MEAS_GND_Pin|MOTOR_Pin|PWR_CTL_Pin, GPIO_PIN_SET); |
| | | |
| | | /*Configure GPIO pin Output Level */ |
| | | HAL_GPIO_WritePin(GPIOB, LED1_G_Pin|LED1_R_Pin|LED2_R_Pin, GPIO_PIN_RESET); |
| | |
| | | GPIO_InitStruct.Pull = GPIO_PULLUP; |
| | | HAL_GPIO_Init(USER_KEY_GPIO_Port, &GPIO_InitStruct); |
| | | |
| | | /*Configure GPIO pins : MOTOR_Pin LED1_G_Pin LED1_R_Pin LED2_R_Pin */ |
| | | GPIO_InitStruct.Pin = MOTOR_Pin|LED1_G_Pin|LED1_R_Pin|LED2_R_Pin; |
| | | /*Configure GPIO pins : MOTOR_Pin LED1_G_Pin LED1_R_Pin LED2_R_Pin |
| | | PWR_CTL_Pin */ |
| | | GPIO_InitStruct.Pin = MOTOR_Pin|LED1_G_Pin|LED1_R_Pin|LED2_R_Pin |
| | | |PWR_CTL_Pin; |
| | | GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP; |
| | | GPIO_InitStruct.Pull = GPIO_NOPULL; |
| | | GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_LOW; |
| | |
| | | /*Enter the Standby mode*/ |
| | | HAL_PWR_EnterSTANDBYMode(); |
| | | } |
| | | extern uint8_t tx_near_msg[80],stationary_flag; |
| | | extern float nomove_count; |
| | | extern uint8_t tx_near_msg[80],stationary_flag,gotosleep_flag; |
| | | float key_keeptime; |
| | | void HAL_LPTIM_CompareMatchCallback(LPTIM_HandleTypeDef *hlptim) |
| | | { |
| | |
| | | } |
| | | if(nomove_count>=g_com_map[NOMOVESLEEP_TIME]-1&&imu_enable) |
| | | { |
| | | tx_near_msg[TAGSTATE] = tx_near_msg[TAGSTATE]|GOINGSLEEPBIT; |
| | | gotosleep_flag=1; |
| | | }else{ |
| | | gotosleep_flag=0; |
| | | } |
| | | if(nomove_count>g_com_map[NOMOVESLEEP_TIME]&&imu_enable) |
| | | { |