working pwm input capture
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parent
2df23ab567
commit
48f60f0f73
@ -30,7 +30,8 @@ static TIM_HandleTypeDef timer_handle = {
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static TIM_IC_InitTypeDef input_capture_init = {
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static TIM_IC_InitTypeDef input_capture_init = {
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.ICPrescaler = TIM_ICPSC_DIV1,
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.ICPrescaler = TIM_ICPSC_DIV1,
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.ICFilter = 0,
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.ICFilter = 0,
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.ICPolarity = TIM_ICPOLARITY_FALLING,
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// .ICPolarity = TIM_ICPOLARITY_FALLING,
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.ICPolarity = TIM_ICPOLARITY_BOTHEDGE,
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.ICSelection = TIM_ICSELECTION_INDIRECTTI,
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.ICSelection = TIM_ICSELECTION_INDIRECTTI,
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};
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};
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@ -64,9 +65,7 @@ static const struct driver gpio_b10 = {
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&__gpio_b10,
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&__gpio_b10,
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};
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};
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static uint32_t ch3 = 0, ch4 = 0;
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static int period = 0, period_start = 0, pulse = 0, pulse_start = 0;
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static int period = 0, pulse = 0;
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void config_input(void)
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void config_input(void)
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{
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{
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@ -77,13 +76,8 @@ void config_input(void)
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/* cfg timer */
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/* cfg timer */
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HAL_TIM_IC_Init(&timer_handle);
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HAL_TIM_IC_Init(&timer_handle);
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HAL_TIM_IC_ConfigChannel(&timer_handle, &input_capture_init, TIM_CHANNEL_4);
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HAL_TIM_IC_ConfigChannel(&timer_handle, &input_capture_init, TIM_CHANNEL_4);
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input_capture_init.ICPolarity = TIM_ICPOLARITY_RISING;
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input_capture_init.ICSelection = TIM_ICSELECTION_DIRECTTI;
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HAL_TIM_IC_ConfigChannel(&timer_handle, &input_capture_init, TIM_CHANNEL_3);
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HAL_TIM_SlaveConfigSynchronization(&timer_handle, &slave_config);
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HAL_TIM_SlaveConfigSynchronization(&timer_handle, &slave_config);
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HAL_TIM_IC_Start_IT(&timer_handle, TIM_CHANNEL_4);
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HAL_TIM_IC_Start_IT(&timer_handle, TIM_CHANNEL_4);
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HAL_TIM_IC_Start_IT(&timer_handle, TIM_CHANNEL_3);
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HAL_NVIC_EnableIRQ(TIM2_IRQn);
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HAL_NVIC_EnableIRQ(TIM2_IRQn);
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}
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}
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@ -109,9 +103,6 @@ int main(void)
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drv_ioctl(&pwm_3, IOCTL_PWM_SET_DUTY_CYCLE, (const void *)&duty);
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drv_ioctl(&pwm_3, IOCTL_PWM_SET_DUTY_CYCLE, (const void *)&duty);
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drv_ioctl(&pwm_4, IOCTL_PWM_SET_DUTY_CYCLE, (const void *)&duty);
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drv_ioctl(&pwm_4, IOCTL_PWM_SET_DUTY_CYCLE, (const void *)&duty);
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sleep_ms(100);
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sleep_ms(100);
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if((period >= 0) && (pulse >= 0)) {
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// sprintf(print_buffer, "period: %u,\tpulse: %u\r\n", period, pulse);
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// drv_write(&uart_1, print_buffer, strlen(print_buffer));
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float dist = 84000.0 / pulse;
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float dist = 84000.0 / pulse;
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dist = 343.0 / dist;
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dist = 343.0 / dist;
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@ -121,16 +112,12 @@ int main(void)
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sprintf(print_buffer, "distance: %d cm\r\n", d);
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sprintf(print_buffer, "distance: %d cm\r\n", d);
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drv_write(&uart_1, print_buffer, strlen(print_buffer));
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drv_write(&uart_1, print_buffer, strlen(print_buffer));
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}
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}
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}
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for(unsigned int duty = 98; duty > 0; duty--) {
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for(unsigned int duty = 98; duty > 0; duty--) {
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drv_ioctl(&pwm_1, IOCTL_PWM_SET_DUTY_CYCLE, (const void *)&duty);
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drv_ioctl(&pwm_1, IOCTL_PWM_SET_DUTY_CYCLE, (const void *)&duty);
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drv_ioctl(&pwm_2, IOCTL_PWM_SET_DUTY_CYCLE, (const void *)&duty);
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drv_ioctl(&pwm_2, IOCTL_PWM_SET_DUTY_CYCLE, (const void *)&duty);
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drv_ioctl(&pwm_3, IOCTL_PWM_SET_DUTY_CYCLE, (const void *)&duty);
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drv_ioctl(&pwm_3, IOCTL_PWM_SET_DUTY_CYCLE, (const void *)&duty);
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drv_ioctl(&pwm_4, IOCTL_PWM_SET_DUTY_CYCLE, (const void *)&duty);
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drv_ioctl(&pwm_4, IOCTL_PWM_SET_DUTY_CYCLE, (const void *)&duty);
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sleep_ms(100);
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sleep_ms(100);
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if((period >= 0) && (pulse >= 0)) {
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// sprintf(print_buffer, "period: %u,\tpulse: %u\r\n", period, pulse);
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// drv_write(&uart_1, print_buffer, strlen(print_buffer));
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float dist = 84000.0 / pulse;
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float dist = 84000.0 / pulse;
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dist = 343.0 / dist;
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dist = 343.0 / dist;
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@ -141,7 +128,6 @@ int main(void)
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drv_write(&uart_1, print_buffer, strlen(print_buffer));
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drv_write(&uart_1, print_buffer, strlen(print_buffer));
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}
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}
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}
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}
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}
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return 0;
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return 0;
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}
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}
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@ -151,51 +137,27 @@ void TIM2_IRQHandler(void)
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{
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{
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enter_isr();
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enter_isr();
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TIM_HandleTypeDef *htim = &timer_handle;
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TIM_HandleTypeDef *htim = &timer_handle;
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uint32_t tmpreg = 0U;
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if(__HAL_TIM_GET_FLAG(htim, TIM_FLAG_CC1) != RESET) {
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if(__HAL_TIM_GET_IT_SOURCE(htim, TIM_IT_CC1) !=RESET) {
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__HAL_TIM_CLEAR_IT(htim, TIM_IT_CC1);
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/* Input capture event */
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if((htim->Instance->CCMR1 & TIM_CCMR1_CC1S) != 0x00U) {
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tmpreg = htim->Instance->CCR1;
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}
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}
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}
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/* Capture compare 2 event */
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if(__HAL_TIM_GET_FLAG(htim, TIM_FLAG_CC2) != RESET) {
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if(__HAL_TIM_GET_IT_SOURCE(htim, TIM_IT_CC2) !=RESET) {
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__HAL_TIM_CLEAR_IT(htim, TIM_IT_CC2);
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/* Input capture event */
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if((htim->Instance->CCMR1 & TIM_CCMR1_CC2S) != 0x00U) {
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tmpreg = htim->Instance->CCR2;
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}
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}
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}
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/* Capture compare 3 event */
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if(__HAL_TIM_GET_FLAG(htim, TIM_FLAG_CC3) != RESET) {
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if(__HAL_TIM_GET_IT_SOURCE(htim, TIM_IT_CC3) !=RESET) {
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__HAL_TIM_CLEAR_IT(htim, TIM_IT_CC3);
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/* Input capture event */
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if((htim->Instance->CCMR2 & TIM_CCMR2_CC3S) != 0x00U) {
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ch3 = htim->Instance->CCR3;
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}
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}
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}
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/* Capture compare 4 event */
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/* Capture compare 4 event */
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if(__HAL_TIM_GET_FLAG(htim, TIM_FLAG_CC4) != RESET) {
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if(__HAL_TIM_GET_FLAG(htim, TIM_FLAG_CC4) != RESET) {
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if(__HAL_TIM_GET_IT_SOURCE(htim, TIM_IT_CC4) !=RESET) {
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if(__HAL_TIM_GET_IT_SOURCE(htim, TIM_IT_CC4) !=RESET) {
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__HAL_TIM_CLEAR_IT(htim, TIM_IT_CC4);
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__HAL_TIM_CLEAR_IT(htim, TIM_IT_CC4);
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/* Input capture event */
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/* Input capture event */
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if((htim->Instance->CCMR2 & TIM_CCMR2_CC4S) != 0x00U) {
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if((htim->Instance->CCMR2 & TIM_CCMR2_CC4S) != 0x00U) {
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uint32_t ch4_old = ch4;
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uint32_t ch4 = htim->Instance->CCR4;
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ch4 = htim->Instance->CCR4;
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if(GPIO_PIN_SET == HAL_GPIO_ReadPin(GPIOB, GPIO_PIN_10)) {
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period = ch4 - ch4_old;
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if(ch4 > period_start)
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pulse = ch4 - ch3;
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period = ch4 - period_start;
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period_start = ch4;
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pulse_start = ch4;
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}
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else {
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if(ch4 > pulse_start)
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pulse = ch4 - pulse_start;
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}
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}
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}
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}
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}
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}
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}
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tmpreg = tmpreg;
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exit_isr();
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exit_isr();
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}
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}
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