Add HAL_timer_start for AVR, use stepper timer to time pulses
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@ -34,6 +34,7 @@
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// --------------------------------------------------------------------------
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#include "../../inc/MarlinConfig.h"
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#include "HAL.h"
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// --------------------------------------------------------------------------
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// Externals
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@ -74,9 +75,11 @@
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// --------------------------------------------------------------------------
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#if ENABLED(SDSUPPORT)
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#include "../../sd/SdFatUtil.h"
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int freeMemory() { return SdFatUtil::FreeRam(); }
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#else
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#else // !SDSUPPORT
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extern "C" {
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extern char __bss_end;
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@ -95,5 +98,4 @@ extern "C" {
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#endif // !SDSUPPORT
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#endif
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#endif // __AVR__
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@ -124,7 +124,7 @@ extern "C" {
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#define STEP_TIMER_NUM 1
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#define TEMP_TIMER_NUM 0
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#define PULSE_TIMER_NUM TEMP_TIMER_NUM
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#define PULSE_TIMER_NUM STEP_TIMER_NUM
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#define HAL_STEPPER_TIMER_RATE HAL_TIMER_RATE
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#define HAL_TICKS_PER_US ((HAL_STEPPER_TIMER_RATE) / 1000000) // Cannot be of type double
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@ -139,7 +139,7 @@ extern "C" {
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#define TIMER_OCR_0 OCR0A
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#define TIMER_COUNTER_0 TCNT0
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#define PULSE_TIMER_PRESCALE 8
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#define PULSE_TIMER_PRESCALE STEPPER_TIMER_PRESCALE
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#define ENABLE_STEPPER_DRIVER_INTERRUPT() SBI(TIMSK1, OCIE1A)
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#define DISABLE_STEPPER_DRIVER_INTERRUPT() CBI(TIMSK1, OCIE1A)
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@ -149,7 +149,36 @@ extern "C" {
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#define DISABLE_TEMPERATURE_INTERRUPT() CBI(TIMSK0, OCIE0B)
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#define TEMPERATURE_ISR_ENABLED() TEST(TIMSK0, OCIE0B)
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#define HAL_timer_start(timer_num, frequency)
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FORCE_INLINE void HAL_timer_start(const uint8_t timer_num, const uint32_t frequency) {
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UNUSED(frequency);
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switch (timer_num) {
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case STEP_TIMER_NUM:
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// waveform generation = 0100 = CTC
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SET_WGM(1, CTC_OCRnA);
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// output mode = 00 (disconnected)
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SET_COMA(1, NORMAL);
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// Set the timer pre-scaler
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// Generally we use a divider of 8, resulting in a 2MHz timer
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// frequency on a 16MHz MCU. If you are going to change this, be
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// sure to regenerate speed_lookuptable.h with
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// create_speed_lookuptable.py
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SET_CS(1, PRESCALER_8); // CS 2 = 1/8 prescaler
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// Init Stepper ISR to 122 Hz for quick starting
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// (F_CPU) / (STEPPER_TIMER_PRESCALE) / frequency
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OCR1A = 0x4000;
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TCNT1 = 0;
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break;
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case TEMP_TIMER_NUM:
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// Use timer0 for temperature measurement
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// Interleave temperature interrupt with millies interrupt
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OCR0B = 128;
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break;
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}
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}
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#define _CAT(a, ...) a ## __VA_ARGS__
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#define HAL_timer_set_compare(timer, compare) (_CAT(TIMER_OCR_, timer) = compare)
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@ -1993,27 +1993,8 @@ void Stepper::init() {
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E_AXIS_INIT(4);
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#endif
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#ifdef __AVR__
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// waveform generation = 0100 = CTC
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SET_WGM(1, CTC_OCRnA);
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// output mode = 00 (disconnected)
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SET_COMA(1, NORMAL);
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// Set the timer pre-scaler
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// Generally we use a divider of 8, resulting in a 2MHz timer
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// frequency on a 16MHz MCU. If you are going to change this, be
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// sure to regenerate speed_lookuptable.h with
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// create_speed_lookuptable.py
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SET_CS(1, PRESCALER_8); // CS 2 = 1/8 prescaler
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// Init Stepper ISR to 122 Hz for quick starting
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OCR1A = 0x4000;
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TCNT1 = 0;
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#else
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// Init Stepper ISR to 122 Hz for quick starting
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HAL_timer_start(STEP_TIMER_NUM, 122);
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#endif
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ENABLE_STEPPER_DRIVER_INTERRUPT();
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@ -1234,14 +1234,7 @@ void Temperature::init() {
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HAL_ANALOG_SELECT(FILWIDTH_PIN);
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#endif
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// todo: HAL: fix abstraction
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#ifdef __AVR__
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// Use timer0 for temperature measurement
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// Interleave temperature interrupt with millies interrupt
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OCR0B = 128;
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#else
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HAL_timer_start(TEMP_TIMER_NUM, TEMP_TIMER_FREQUENCY);
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#endif
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ENABLE_TEMPERATURE_INTERRUPT();
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#if HAS_AUTO_FAN_0
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