Fix backlight breathing on C6 (#6102)
* Fix backlight breathing on C6 * Account for ATmega32A's single TIMSK register (MT40) * Document hardware PWM on D4 for ATmega32A * Add C6 and D4 to BACKLIGHT_PIN description
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3 changed files with 38 additions and 27 deletions
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@ -76,7 +76,7 @@ This is a C header file that is one of the first things included, and will persi
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* `#define B7_AUDIO`
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* enables audio on pin B7 (duophony is enables if one of B[5-7]\_AUDIO is enabled along with one of C[4-6]\_AUDIO)
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* `#define BACKLIGHT_PIN B7`
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* pin of the backlight - B5, B6, B7 use PWM, others use softPWM
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* pin of the backlight - `B5`, `B6`, `B7` and `C6` (and `D4` on ATmega32A) use hardware PWM, others use software implementation
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* `#define BACKLIGHT_LEVELS 3`
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* number of levels your backlight will have (maximum 15 excluding off)
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* `#define BACKLIGHT_BREATHING`
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@ -35,11 +35,12 @@ Hardware PWM is only supported on certain pins of the MCU, so if the backlightin
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Hardware PWM is supported according to the following table:
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| Backlight Pin | Hardware timer |
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|---------------|----------------|
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|---------------|-------------------------|
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|`B5` | Timer 1 |
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|`B6` | Timer 1 |
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|`B7` | Timer 1 |
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|`C6` | Timer 3 |
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|`D4` | Timer 1 (ATmega32A only)|
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| other | Software PWM |
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The [audio feature](feature_audio.md) also uses hardware timers. Please refer to the following table to know what hardware timer the software PWM will use depending on the audio configuration:
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@ -1027,35 +1027,49 @@ void matrix_scan_quantum() {
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# define TCCRxB TCCR1B
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# define COMxx1 COM1C1
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# define OCRxx OCR1C
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# define TIMERx_OVF_vect TIMER1_OVF_vect
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# define TOIEx TOIE1
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# define ICRx ICR1
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# define TIMSKx TIMSK1
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#elif BACKLIGHT_PIN == B6
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# define HARDWARE_PWM
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# define TCCRxA TCCR1A
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# define TCCRxB TCCR1B
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# define COMxx1 COM1B1
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# define OCRxx OCR1B
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# define TIMERx_OVF_vect TIMER1_OVF_vect
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# define TOIEx TOIE1
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# define ICRx ICR1
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# define TIMSKx TIMSK1
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#elif BACKLIGHT_PIN == B5
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# define HARDWARE_PWM
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# define TCCRxA TCCR1A
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# define TCCRxB TCCR1B
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# define COMxx1 COM1A1
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# define OCRxx OCR1A
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# define TIMERx_OVF_vect TIMER1_OVF_vect
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# define TOIEx TOIE1
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# define ICRx ICR1
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# define TIMSKx TIMSK1
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#elif BACKLIGHT_PIN == C6
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# define HARDWARE_PWM
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# define TCCRxA TCCR3A
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# define TCCRxB TCCR3B
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# define COMxx1 COM1A1
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# define COMxx1 COM3A1
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# define OCRxx OCR3A
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# define TIMERx_OVF_vect TIMER3_OVF_vect
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# define TOIEx TOIE3
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# define ICRx ICR3
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# define TIMSKx TIMSK3
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#elif defined(__AVR_ATmega32A__) && BACKLIGHT_PIN == D4
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# define TCCRxA TCCR1A
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# define TCCRxB TCCR1B
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# define COMxx1 COM1B1
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# define OCRxx OCR1B
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# define TIMERx_OVF_vect TIMER1_OVF_vect
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# define TOIEx TOIE1
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# define ICRx ICR1
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# define TIMSK1 TIMSK
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# define TIMSKx TIMSK1
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#else
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# if !defined(BACKLIGHT_CUSTOM_DRIVER)
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# if !defined(B5_AUDIO) && !defined(B6_AUDIO) && !defined(B7_AUDIO)
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@ -1066,15 +1080,15 @@ void matrix_scan_quantum() {
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# define TCCRxA TCCR1A
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# define TCCRxB TCCR1B
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# define OCRxx OCR1A
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# define OCRxAH OCR1AH
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# define OCRxAL OCR1AL
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# define TIMERx_COMPA_vect TIMER1_COMPA_vect
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# define TIMERx_OVF_vect TIMER1_OVF_vect
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# define OCIExA OCIE1A
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# define TOIEx TOIE1
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# define ICRx ICR1
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# ifndef TIMSK
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# define TIMSK TIMSK1
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# if defined(__AVR_ATmega32A__) // This MCU has only one TIMSK register
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# define TIMSKx TIMSK
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# else
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# define TIMSKx TIMSK1
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# endif
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# elif !defined(C6_AUDIO) && !defined(C5_AUDIO) && !defined(C4_AUDIO)
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#pragma message "Using hardware timer 3 with software PWM"
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@ -1084,16 +1098,12 @@ void matrix_scan_quantum() {
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# define TCCRxA TCCR3A
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# define TCCRxB TCCR3B
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# define OCRxx OCR3A
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# define OCRxAH OCR3AH
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# define OCRxAL OCR3AL
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# define TIMERx_COMPA_vect TIMER3_COMPA_vect
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# define TIMERx_OVF_vect TIMER3_OVF_vect
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# define OCIExA OCIE3A
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# define TOIEx TOIE3
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# define ICRx ICR1
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# ifndef TIMSK
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# define TIMSK TIMSK3
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# endif
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# define TIMSKx TIMSK3
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# else
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#pragma message "Audio in use - using pure software PWM"
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#define NO_HARDWARE_PWM
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@ -1274,8 +1284,8 @@ void backlight_set(uint8_t level) {
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if (level == 0) {
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#ifdef BACKLIGHT_PWM_TIMER
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if (OCRxx) {
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TIMSK &= ~(_BV(OCIExA));
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TIMSK &= ~(_BV(TOIEx));
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TIMSKx &= ~(_BV(OCIExA));
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TIMSKx &= ~(_BV(TOIEx));
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FOR_EACH_LED(
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backlight_off(backlight_pin);
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)
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@ -1287,8 +1297,8 @@ void backlight_set(uint8_t level) {
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} else {
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#ifdef BACKLIGHT_PWM_TIMER
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if (!OCRxx) {
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TIMSK |= _BV(OCIExA);
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TIMSK |= _BV(TOIEx);
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TIMSKx |= _BV(OCIExA);
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TIMSKx |= _BV(TOIEx);
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}
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#else
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// Turn on PWM control of backlight pin
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@ -1325,11 +1335,11 @@ bool is_breathing(void) {
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#else
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bool is_breathing(void) {
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return !!(TIMSK1 & _BV(TOIE1));
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return !!(TIMSKx & _BV(TOIEx));
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}
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#define breathing_interrupt_enable() do {TIMSK1 |= _BV(TOIE1);} while (0)
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#define breathing_interrupt_disable() do {TIMSK1 &= ~_BV(TOIE1);} while (0)
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#define breathing_interrupt_enable() do {TIMSKx |= _BV(TOIEx);} while (0)
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#define breathing_interrupt_disable() do {TIMSKx &= ~_BV(TOIEx);} while (0)
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#endif
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#define breathing_min() do {breathing_counter = 0;} while (0)
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@ -1411,7 +1421,7 @@ void breathing_task(void)
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/* Assuming a 16MHz CPU clock and a timer that resets at 64k (ICR1), the following interrupt handler will run
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* about 244 times per second.
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*/
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ISR(TIMER1_OVF_vect)
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ISR(TIMERx_OVF_vect)
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#endif
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{
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uint16_t interval = (uint16_t) breathing_period * 244 / BREATHING_STEPS;
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