Allow setting current timer counter
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82ef6b5242
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6149b82119
@ -100,17 +100,23 @@ extern "C" {
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// timers
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// timers
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#define STEP_TIMER_NUM OCR1A
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#define TEMP_TIMER_NUM 0
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#define TEMP_TIMER_FREQUENCY (F_CPU / 64.0 / 256.0)
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#define HAL_TIMER_RATE ((F_CPU) / 8) // i.e., 2MHz or 2.5MHz
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#define HAL_TIMER_RATE ((F_CPU) / 8) // i.e., 2MHz or 2.5MHz
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#define HAL_STEPPER_TIMER_RATE HAL_TIMER_RATE
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#define STEPPER_TIMER_PRESCALE 8
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#define HAL_TICKS_PER_US ((HAL_STEPPER_TIMER_RATE) / 1000000) // Cannot be of type double
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#define HAL_TICKS_PER_US ((HAL_STEPPER_TIMER_RATE) / 1000000) // Cannot be of type double
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#define PULSE_TIMER_NUM TEMP_TIMER_NUM
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#define TEMP_TIMER_FREQUENCY ((F_CPU) / 64.0 / 256.0)
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#define HAL_STEPPER_TIMER_RATE HAL_TIMER_RATE
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#define STEPPER_TIMER_PRESCALE 8
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#define STEP_TIMER_NUM 1
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#define TIMER_OCR_1 OCR1A
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#define TIMER_COUNTER_1 TCNT1
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#define TEMP_TIMER_NUM 0
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#define TIMER_OCR_0 OCR0A
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#define TIMER_COUNTER_0 TCNT0
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#define TIMER_COUNTER_0 TCNT0
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#define PULSE_TIMER_NUM TEMP_TIMER_NUM
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#define PULSE_TIMER_PRESCALE 8
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#define PULSE_TIMER_PRESCALE 8
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#define ENABLE_STEPPER_DRIVER_INTERRUPT() SBI(TIMSK1, OCIE1A)
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#define ENABLE_STEPPER_DRIVER_INTERRUPT() SBI(TIMSK1, OCIE1A)
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@ -119,17 +125,14 @@ extern "C" {
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#define ENABLE_TEMPERATURE_INTERRUPT() SBI(TIMSK0, OCIE0B)
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#define ENABLE_TEMPERATURE_INTERRUPT() SBI(TIMSK0, OCIE0B)
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#define DISABLE_TEMPERATURE_INTERRUPT() CBI(TIMSK0, OCIE0B)
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#define DISABLE_TEMPERATURE_INTERRUPT() CBI(TIMSK0, OCIE0B)
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//void HAL_timer_start(const uint8_t timer_num, const uint32_t frequency);
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#define HAL_timer_start(timer_num, frequency)
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#define HAL_timer_start(timer_num,frequency)
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#define HAL_timer_get_count(timer) timer
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#define _CAT(a, ...) a ## __VA_ARGS__
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#define HAL_timer_set_count(timer, count) (_CAT(TIMER_OCR_, timer) = count)
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#define HAL_timer_get_count(timer) _CAT(TIMER_OCR_, timer)
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#define HAL_timer_set_current_count(timer, count) (_CAT(TIMER_COUNTER_, timer) = count)
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#define HAL_timer_get_current_count(timer) _CAT(TIMER_COUNTER_, timer)
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//void HAL_timer_set_count(const uint8_t timer_num, const uint16_t count);
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#define HAL_timer_set_count(timer, count) timer = (count)
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#define HAL_timer_get_current_count(timer) timer
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//void HAL_timer_isr_prologue(const uint8_t timer_num);
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#define HAL_timer_isr_prologue(timer_num)
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#define HAL_timer_isr_prologue(timer_num)
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#define HAL_STEP_TIMER_ISR ISR(TIMER1_COMPA_vect)
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#define HAL_STEP_TIMER_ISR ISR(TIMER1_COMPA_vect)
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@ -100,6 +100,11 @@ FORCE_INLINE static hal_timer_t HAL_timer_get_count(const uint8_t timer_num) {
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return pConfig->pTimerRegs->TC_CHANNEL[pConfig->channel].TC_RC;
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return pConfig->pTimerRegs->TC_CHANNEL[pConfig->channel].TC_RC;
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}
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}
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FORCE_INLINE static void HAL_timer_set_current_count(const uint8_t timer_num, const hal_timer_t count) {
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const tTimerConfig *pConfig = &TimerConfig[timer_num];
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pConfig->pTimerRegs->TC_CHANNEL[pConfig->channel].TC_CV = count;
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}
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FORCE_INLINE static hal_timer_t HAL_timer_get_current_count(const uint8_t timer_num) {
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FORCE_INLINE static hal_timer_t HAL_timer_get_current_count(const uint8_t timer_num) {
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const tTimerConfig *pConfig = &TimerConfig[timer_num];
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const tTimerConfig *pConfig = &TimerConfig[timer_num];
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return pConfig->pTimerRegs->TC_CHANNEL[pConfig->channel].TC_CV;
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return pConfig->pTimerRegs->TC_CHANNEL[pConfig->channel].TC_CV;
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@ -103,6 +103,13 @@ FORCE_INLINE static hal_timer_t HAL_timer_get_count(const uint8_t timer_num) {
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return 0;
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return 0;
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}
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}
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FORCE_INLINE static void HAL_timer_set_current_count(const uint8_t timer_num, const hal_timer_t count) {
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switch (timer_num) {
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case 0: LPC_TIM0->TC = count; break;
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case 1: LPC_TIM1->TC = count; break;
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}
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}
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FORCE_INLINE static hal_timer_t HAL_timer_get_current_count(const uint8_t timer_num) {
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FORCE_INLINE static hal_timer_t HAL_timer_get_current_count(const uint8_t timer_num) {
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switch (timer_num) {
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switch (timer_num) {
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case 0: return LPC_TIM0->TC;
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case 0: return LPC_TIM0->TC;
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@ -144,6 +144,13 @@ FORCE_INLINE static hal_timer_t HAL_timer_get_count(const uint8_t timer_num) {
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return temp;
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return temp;
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}
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}
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FORCE_INLINE static void HAL_timer_set_current_count(const uint8_t timer_num, const hal_timer_t count) {
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switch (timer_num) {
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case STEP_TIMER_NUM: StepperTimer.setCount(count); break;
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case TEMP_TIMER_NUM: TempTimer.setCount(count); break;
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}
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}
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FORCE_INLINE static hal_timer_t HAL_timer_get_current_count(const uint8_t timer_num) {
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FORCE_INLINE static hal_timer_t HAL_timer_get_current_count(const uint8_t timer_num) {
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hal_timer_t temp;
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hal_timer_t temp;
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switch (timer_num) {
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switch (timer_num) {
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@ -160,7 +167,6 @@ FORCE_INLINE static hal_timer_t HAL_timer_get_current_count(const uint8_t timer_
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return temp;
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return temp;
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}
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}
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//void HAL_timer_isr_prologue (const uint8_t timer_num);
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//void HAL_timer_isr_prologue (const uint8_t timer_num);
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FORCE_INLINE static void HAL_timer_isr_prologue(const uint8_t timer_num) {
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FORCE_INLINE static void HAL_timer_isr_prologue(const uint8_t timer_num) {
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@ -93,6 +93,13 @@ FORCE_INLINE static hal_timer_t HAL_timer_get_count(const uint8_t timer_num) {
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return 0;
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return 0;
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}
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}
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FORCE_INLINE static void HAL_timer_set_current_count(const uint8_t timer_num, const hal_timer_t count) {
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switch (timer_num) {
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case 0: FTM0_CNT = count;
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case 1: FTM1_CNT = count;
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}
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}
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FORCE_INLINE static hal_timer_t HAL_timer_get_current_count(const uint8_t timer_num) {
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FORCE_INLINE static hal_timer_t HAL_timer_get_current_count(const uint8_t timer_num) {
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switch (timer_num) {
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switch (timer_num) {
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case 0: return FTM0_CNT;
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case 0: return FTM0_CNT;
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