backlight_arm.c 7.5 KB

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  1. #include "quantum.h"
  2. #include "backlight.h"
  3. #include <hal.h>
  4. #include "debug.h"
  5. // TODO: remove short term bodge when refactoring BACKLIGHT_CUSTOM_DRIVER out
  6. #ifdef BACKLIGHT_PIN
  7. # if defined(STM32F0XX) || defined(STM32F0xx)
  8. # pragma message("Backlight support for STMF072 has had limited testing, YMMV. If unsure, set 'BACKLIGHT_ENABLE = no' in your rules.mk")
  9. # endif
  10. // GPIOV2 && GPIOV3
  11. # ifndef BACKLIGHT_PAL_MODE
  12. # define BACKLIGHT_PAL_MODE 2
  13. # endif
  14. // GENERIC
  15. # ifndef BACKLIGHT_PWM_DRIVER
  16. # define BACKLIGHT_PWM_DRIVER PWMD4
  17. # endif
  18. # ifndef BACKLIGHT_PWM_CHANNEL
  19. # define BACKLIGHT_PWM_CHANNEL 3
  20. # endif
  21. static void breathing_callback(PWMDriver *pwmp);
  22. static PWMConfig pwmCFG = {0xFFFF, /* PWM clock frequency */
  23. 256, /* PWM period (in ticks) 1S (1/10kHz=0.1mS 0.1ms*10000 ticks=1S) */
  24. NULL, /* No Callback */
  25. { /* Default all channels to disabled - Channels will be configured durring init */
  26. {PWM_OUTPUT_DISABLED, NULL},
  27. {PWM_OUTPUT_DISABLED, NULL},
  28. {PWM_OUTPUT_DISABLED, NULL},
  29. {PWM_OUTPUT_DISABLED, NULL}},
  30. 0, /* HW dependent part.*/
  31. 0};
  32. static PWMConfig pwmCFG_breathing = {0xFFFF, /** PWM clock frequency */
  33. 256, /* PWM period (in ticks) 1S (1/10kHz=0.1mS 0.1ms*10000 ticks=1S) */
  34. breathing_callback, /* Breathing Callback */
  35. { /* Default all channels to disabled - Channels will be configured durring init */
  36. {PWM_OUTPUT_DISABLED, NULL},
  37. {PWM_OUTPUT_DISABLED, NULL},
  38. {PWM_OUTPUT_DISABLED, NULL},
  39. {PWM_OUTPUT_DISABLED, NULL}},
  40. 0, /* HW dependent part.*/
  41. 0};
  42. // See http://jared.geek.nz/2013/feb/linear-led-pwm
  43. static uint16_t cie_lightness(uint16_t v) {
  44. if (v <= 5243) // if below 8% of max
  45. return v / 9; // same as dividing by 900%
  46. else {
  47. uint32_t y = (((uint32_t)v + 10486) << 8) / (10486 + 0xFFFFUL); // add 16% of max and compare
  48. // to get a useful result with integer division, we shift left in the expression above
  49. // and revert what we've done again after squaring.
  50. y = y * y * y >> 8;
  51. if (y > 0xFFFFUL) // prevent overflow
  52. return 0xFFFFU;
  53. else
  54. return (uint16_t)y;
  55. }
  56. }
  57. void backlight_init_ports(void) {
  58. // printf("backlight_init_ports()\n");
  59. # ifdef USE_GPIOV1
  60. palSetPadMode(PAL_PORT(BACKLIGHT_PIN), PAL_PAD(BACKLIGHT_PIN), PAL_MODE_STM32_ALTERNATE_PUSHPULL);
  61. # else
  62. palSetPadMode(PAL_PORT(BACKLIGHT_PIN), PAL_PAD(BACKLIGHT_PIN), PAL_MODE_ALTERNATE(BACKLIGHT_PAL_MODE));
  63. # endif
  64. pwmCFG.channels[BACKLIGHT_PWM_CHANNEL - 1].mode = PWM_OUTPUT_ACTIVE_HIGH;
  65. pwmCFG_breathing.channels[BACKLIGHT_PWM_CHANNEL - 1].mode = PWM_OUTPUT_ACTIVE_HIGH;
  66. pwmStart(&BACKLIGHT_PWM_DRIVER, &pwmCFG);
  67. backlight_set(get_backlight_level());
  68. if (is_backlight_breathing()) {
  69. breathing_enable();
  70. }
  71. }
  72. void backlight_set(uint8_t level) {
  73. // printf("backlight_set(%d)\n", level);
  74. if (level == 0) {
  75. // Turn backlight off
  76. pwmDisableChannel(&BACKLIGHT_PWM_DRIVER, BACKLIGHT_PWM_CHANNEL - 1);
  77. } else {
  78. // Turn backlight on
  79. if (!is_breathing()) {
  80. uint32_t duty = (uint32_t)(cie_lightness(0xFFFF * (uint32_t)level / BACKLIGHT_LEVELS));
  81. // printf("duty: (%d)\n", duty);
  82. pwmEnableChannel(&BACKLIGHT_PWM_DRIVER, BACKLIGHT_PWM_CHANNEL - 1, PWM_FRACTION_TO_WIDTH(&BACKLIGHT_PWM_DRIVER, 0xFFFF, duty));
  83. }
  84. }
  85. }
  86. uint8_t backlight_tick = 0;
  87. void backlight_task(void) {}
  88. # define BREATHING_NO_HALT 0
  89. # define BREATHING_HALT_OFF 1
  90. # define BREATHING_HALT_ON 2
  91. # define BREATHING_STEPS 128
  92. static uint8_t breathing_halt = BREATHING_NO_HALT;
  93. static uint16_t breathing_counter = 0;
  94. bool is_breathing(void) { return BACKLIGHT_PWM_DRIVER.config == &pwmCFG_breathing; }
  95. static inline void breathing_min(void) { breathing_counter = 0; }
  96. static inline void breathing_max(void) { breathing_counter = get_breathing_period() * 256 / 2; }
  97. void breathing_interrupt_enable(void) {
  98. pwmStop(&BACKLIGHT_PWM_DRIVER);
  99. pwmStart(&BACKLIGHT_PWM_DRIVER, &pwmCFG_breathing);
  100. chSysLockFromISR();
  101. pwmEnablePeriodicNotification(&BACKLIGHT_PWM_DRIVER);
  102. pwmEnableChannelI(&BACKLIGHT_PWM_DRIVER, BACKLIGHT_PWM_CHANNEL - 1, PWM_FRACTION_TO_WIDTH(&BACKLIGHT_PWM_DRIVER, 0xFFFF, 0xFFFF));
  103. chSysUnlockFromISR();
  104. }
  105. void breathing_interrupt_disable(void) {
  106. pwmStop(&BACKLIGHT_PWM_DRIVER);
  107. pwmStart(&BACKLIGHT_PWM_DRIVER, &pwmCFG);
  108. }
  109. void breathing_enable(void) {
  110. breathing_counter = 0;
  111. breathing_halt = BREATHING_NO_HALT;
  112. breathing_interrupt_enable();
  113. }
  114. void breathing_pulse(void) {
  115. if (get_backlight_level() == 0)
  116. breathing_min();
  117. else
  118. breathing_max();
  119. breathing_halt = BREATHING_HALT_ON;
  120. breathing_interrupt_enable();
  121. }
  122. void breathing_disable(void) {
  123. // printf("breathing_disable()\n");
  124. breathing_interrupt_disable();
  125. // Restore backlight level
  126. backlight_set(get_backlight_level());
  127. }
  128. void breathing_self_disable(void) {
  129. if (get_backlight_level() == 0)
  130. breathing_halt = BREATHING_HALT_OFF;
  131. else
  132. breathing_halt = BREATHING_HALT_ON;
  133. }
  134. void breathing_toggle(void) {
  135. if (is_breathing())
  136. breathing_disable();
  137. else
  138. breathing_enable();
  139. }
  140. /* To generate breathing curve in python:
  141. * from math import sin, pi; [int(sin(x/128.0*pi)**4*255) for x in range(128)]
  142. */
  143. static const uint8_t breathing_table[BREATHING_STEPS] = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 2, 3, 4, 5, 6, 8, 10, 12, 15, 17, 20, 24, 28, 32, 36, 41, 46, 51, 57, 63, 70, 76, 83, 91, 98, 106, 113, 121, 129, 138, 146, 154, 162, 170, 178, 185, 193, 200, 207, 213, 220, 225, 231, 235, 240, 244, 247, 250, 252, 253, 254, 255, 254, 253, 252, 250, 247, 244, 240, 235, 231, 225, 220, 213, 207, 200, 193, 185, 178, 170, 162, 154, 146, 138, 129, 121, 113, 106, 98, 91, 83, 76, 70, 63, 57, 51, 46, 41, 36, 32, 28, 24, 20, 17, 15, 12, 10, 8, 6, 5, 4, 3, 2, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0};
  144. // Use this before the cie_lightness function.
  145. static inline uint16_t scale_backlight(uint16_t v) { return v / BACKLIGHT_LEVELS * get_backlight_level(); }
  146. static void breathing_callback(PWMDriver *pwmp) {
  147. (void)pwmp;
  148. uint8_t breathing_period = get_breathing_period();
  149. uint16_t interval = (uint16_t)breathing_period * 256 / BREATHING_STEPS;
  150. // resetting after one period to prevent ugly reset at overflow.
  151. breathing_counter = (breathing_counter + 1) % (breathing_period * 256);
  152. uint8_t index = breathing_counter / interval % BREATHING_STEPS;
  153. if (((breathing_halt == BREATHING_HALT_ON) && (index == BREATHING_STEPS / 2)) || ((breathing_halt == BREATHING_HALT_OFF) && (index == BREATHING_STEPS - 1))) {
  154. breathing_interrupt_disable();
  155. }
  156. uint32_t duty = cie_lightness(scale_backlight(breathing_table[index] * 256));
  157. chSysLockFromISR();
  158. pwmEnableChannelI(&BACKLIGHT_PWM_DRIVER, BACKLIGHT_PWM_CHANNEL - 1, PWM_FRACTION_TO_WIDTH(&BACKLIGHT_PWM_DRIVER, 0xFFFF, duty));
  159. chSysUnlockFromISR();
  160. }
  161. #endif