#include "pwm.h" #include "xc_drv_pwm.h" #include "rgblight.h" #include "mode.h" #include "math.h" #include #include "timer.h" #include "fmc_spi.h" #include "xc_drv_fmc_spi.h" #include "xc_drv_fmc_spi_dma.h" #include "ota_flash_interface.h" // 定义一个变量来保存当前的 PWM 输出管脚设置 uint8_t pwm_red_idx = PWM2_IDX; uint8_t pwm_green_idx = PWM3_IDX; uint8_t pwm_blue_idx = PWM5_IDX; /*------------------------------------------------------------------------------------ TypeDef -------------------------------------------------------------------------------------*/ uint16_t ch0_capture_data[CAPTURE_DATA_MAX]; uint16_t ch1_capture_data[CAPTURE_DATA_MAX]; uint16_t ch2_capture_data[CAPTURE_DATA_MAX]; PWM_CAP_STA_TypeDef pwm_cap_state = PWM_CAP_IDLE; PWM_BRK_STA_TypeDef pwm_brk_state = PWM_BRK_IDLE; PWM_BRK_CAP_STA_TypeDef pwm_brk_cap_state = PWM_BRK_CAP_VALID; pwm_ch_cap_dutycycle_t pwm_ch_cap_dutycycle; pwm_ch_cap_freq_t pwm_ch_cap_freq; pwm_ch_cap_type_t pwm_ch_cap_type; uint16_t timeCnt=0; uint16_t W_PWM = 100;//初始化暖光 uint16_t C_PWM = 0; uint16_t deadTime = 4; //2*deadTime+deadTime_C+deadTime_W=20;这个是修改死区的时间。这三个变量加起来要是20, 规定好了的,当时用的10的死区,后面修改了,不破坏原来的封装 uint16_t deadTime_C = _deadTime; // uint16_t deadTime_W = _deadTime; uint8_t driveMode=1; uint8_t PWMMAX=100; //最大占空比 uint8_t Brightness=BRIGHTNESS_MAX_PERCENT; // 切换 PWM 输出管脚,蓝牙调用此方法,切换设备输出线序 uint16_t W_PWM_duty;//初始化暖光 uint16_t C_PWM_duty; void switch_pwm_pins(uint8_t red_pwm, uint8_t green_pwm, uint8_t blue_pwm) { // pwm_red_idx = red_pwm; // pwm_green_idx = green_pwm; // pwm_blue_idx = blue_pwm; } void _PWM_INIT(){ GPIO_InitCfg_t GPIO_InitCfg = { 0 }; // 清零初始化配置结构体 GPIO_InitCfg.Mux = GPIO_Mux0; // 选择功能复用器0 GPIO_InitCfg.FunSel = GPIO_Dx; // 选择GPIO功能(非特殊功能) GPIO_InitCfg.Pull = GPIO_PULLDOWN; // 上拉电阻使能 GPIO_InitCfg.Dir = GPIO_DIR_OUTPUT; // 输出方向 GPIO_InitCfg.Int = NOT_INT; // 不使能中断 GPIO_InitCfg.Pin = IO_PWM_W; // 设置LED1引脚 xc_gpio_init(&GPIO_InitCfg); // 初始化GPIO GPIO_InitCfg.Dir = GPIO_DIR_OUTPUT; // 输出方向 GPIO_InitCfg.Int = NOT_INT; // 不使能中断 GPIO_InitCfg.Pin = IO_PWM_C; // 设置LED1引脚 xc_gpio_init(&GPIO_InitCfg); // 初始化GPIO xc_gpio_write_pin(IO_PWM_W, GPIO_PIN_RESET); // 主输出低 xc_gpio_write_pin(IO_PWM_C, GPIO_PIN_RESET); // 主输出低 if(deviceStatus==POWERON){ Start_PWM(); } } void PWM_SetDuty(uint8_t PWMX ,uint8_t duty) { // if(PWMX==IO_PWM_W){ // W_PWM=duty; // }else if(PWMX ==IO_PWM_C){ // C_PWM=duty; // } } static uint16_t scale_display_value(uint16_t value) { if(value > 100U) value = 100U; if(Brightness >= BRIGHTNESS_MAX_PERCENT) return value; return (uint16_t)(((uint32_t)value * Brightness + 50U) / 100U); } void UpdateDisplay(void) // static update with global brightness { W_PWM_duty = scale_display_value(W_PWM); C_PWM_duty = scale_display_value(C_PWM); } void UpdateDisplay_1(void) // dynamic update with global brightness { W_PWM_duty = scale_display_value(W_PWM); C_PWM_duty = scale_display_value(C_PWM); } void temperature(uint8_t data) // 0=cold, 255=warm { W_PWM = (uint16_t)(((uint32_t)data * 100U + 127U) / 255U); C_PWM = 100U - W_PWM; if(W_PWM >= 100U) { driveMode = 1; } else if(C_PWM >= 100U) { driveMode = 2; } else { driveMode = 0; } } /** * @brief app_pwm_init * @details * @param void * @retval void */ void app_pwm_init() { } //ADC float RefVol; void adc_Init(void) { //DEBUG("__ADC_DEMO__\r"); uint16_t adc_2v48_param; GPIO_InitCfg_t GPIO_InitCfg = { 0 }; GPIO_InitCfg.Mux = GPIO_Mux0; GPIO_InitCfg.FunSel = GPIO_Dx; GPIO_InitCfg.Pull = GPIO_NOPULL;//上拉 GPIO_InitCfg.Dir = GPIO_DIR_INPUT; GPIO_InitCfg.Int = RIS_FAIL_EDGE_INT; GPIO_InitCfg.Pin = GPIO_0; xc_gpio_init(&GPIO_InitCfg); ADC_InitCfg_t adc_cfg; /*----- Special Read the 2.48 v calibration value -----*/ /*< If the content of the parameter storage area is invalid, the default assignment is 10000 >*/ if(false == xc_adc_2v4_calibrate_read(&adc_2v48_param)) { adc_2v48_param = 10000; } /*----- Special Pin -----*/ /*< The SWD and SWCK pins can also be used as ADC pins. Pay attention to the function remapping of the PIN pins. >*/ adc_cfg.Freq = ADC_FREQ_2M; adc_cfg.RefVol = ADC_REF_VOL_3_3V; adc_cfg.SampEdge = ADC_SAMPEDGE_RISE; adc_cfg.ExtDataMode = ADC_EXT_DATA_MODE_32BIT; adc_cfg.ExtEdgeSel = ADC_EXT_EDGE_SEL_INTER; adc_cfg.ExtSampleNum = ADC_EXT_SAMPLE_NUM_8; adc_cfg.ExtTriggerSel = ADC_EXT_TRIGGER_SEL_PWM0; xc_adc_init(&adc_cfg); RefVol = adc_cfg.RefVol; } #define ADV_REF_VOLT_3_3V 3.3f #define ADV_REF_VOLT_2_4_8V 2.48f uint16_t after_adc_val; uint8_t adc_new_data_Flag = false; float ADC_DATA=0; uint8_t sss=0; extern uint8_t r_data[256]; void My_ADC_Get_Value(void){ //掉电保存 uint16_t adc_val; xc_adc_start_get_value( ADC_CH4_PIN0 ,&adc_val); if(adc_val<=1000&&sss==1){ //3099-3170 sss=0; app_op_flash_on(); } }