ws2812_spi.c 6.6 KB

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  1. #include "quantum.h"
  2. #include "ws2812.h"
  3. /* Adapted from https://github.com/gamazeps/ws2812b-chibios-SPIDMA/ */
  4. // Define the spi your LEDs are plugged to here
  5. #ifndef WS2812_SPI
  6. # define WS2812_SPI SPID1
  7. #endif
  8. #ifndef WS2812_SPI_MOSI_PAL_MODE
  9. # define WS2812_SPI_MOSI_PAL_MODE 5
  10. #endif
  11. #ifndef WS2812_SPI_SCK_PAL_MODE
  12. # define WS2812_SPI_SCK_PAL_MODE 5
  13. #endif
  14. #ifndef WS2812_SPI_DIVISOR
  15. # define WS2812_SPI_DIVISOR 16
  16. #endif
  17. // Push Pull or Open Drain Configuration
  18. // Default Push Pull
  19. #ifndef WS2812_EXTERNAL_PULLUP
  20. # if defined(USE_GPIOV1)
  21. # define WS2812_MOSI_OUTPUT_MODE PAL_MODE_ALTERNATE_PUSHPULL
  22. # else
  23. # define WS2812_MOSI_OUTPUT_MODE PAL_MODE_ALTERNATE(WS2812_SPI_MOSI_PAL_MODE) | PAL_OUTPUT_TYPE_PUSHPULL
  24. # endif
  25. #else
  26. # if defined(USE_GPIOV1)
  27. # define WS2812_MOSI_OUTPUT_MODE PAL_MODE_ALTERNATE_OPENDRAIN
  28. # else
  29. # define WS2812_MOSI_OUTPUT_MODE PAL_MODE_ALTERNATE(WS2812_SPI_MOSI_PAL_MODE) | PAL_OUTPUT_TYPE_OPENDRAIN
  30. # endif
  31. #endif
  32. // Define SPI config speed
  33. // baudrate should target 3.2MHz
  34. // F072 fpclk = 48MHz
  35. // 48/16 = 3Mhz
  36. #if WS2812_SPI_DIVISOR == 2
  37. # define WS2812_SPI_DIVISOR_CR1_BR_X (0)
  38. #elif WS2812_SPI_DIVISOR == 4
  39. # define WS2812_SPI_DIVISOR_CR1_BR_X (SPI_CR1_BR_0)
  40. #elif WS2812_SPI_DIVISOR == 8
  41. # define WS2812_SPI_DIVISOR_CR1_BR_X (SPI_CR1_BR_1)
  42. #elif WS2812_SPI_DIVISOR == 16 // default
  43. # define WS2812_SPI_DIVISOR_CR1_BR_X (SPI_CR1_BR_1 | SPI_CR1_BR_0)
  44. #elif WS2812_SPI_DIVISOR == 32
  45. # define WS2812_SPI_DIVISOR_CR1_BR_X (SPI_CR1_BR_2)
  46. #elif WS2812_SPI_DIVISOR == 64
  47. # define WS2812_SPI_DIVISOR_CR1_BR_X (SPI_CR1_BR_2 | SPI_CR1_BR_0)
  48. #elif WS2812_SPI_DIVISOR == 128
  49. # define WS2812_SPI_DIVISOR_CR1_BR_X (SPI_CR1_BR_2 | SPI_CR1_BR_1)
  50. #elif WS2812_SPI_DIVISOR == 256
  51. # define WS2812_SPI_DIVISOR_CR1_BR_X (SPI_CR1_BR_2 | SPI_CR1_BR_1 | SPI_CR1_BR_0)
  52. #else
  53. # error "Configured WS2812_SPI_DIVISOR value is not supported at this time."
  54. #endif
  55. // Use SPI circular buffer
  56. #ifdef WS2812_SPI_USE_CIRCULAR_BUFFER
  57. # define WS2812_SPI_BUFFER_MODE 1 // circular buffer
  58. #else
  59. # define WS2812_SPI_BUFFER_MODE 0 // normal buffer
  60. #endif
  61. #if defined(USE_GPIOV1)
  62. # define WS2812_SCK_OUTPUT_MODE PAL_MODE_ALTERNATE_PUSHPULL
  63. #else
  64. # define WS2812_SCK_OUTPUT_MODE PAL_MODE_ALTERNATE(WS2812_SPI_SCK_PAL_MODE) | PAL_OUTPUT_TYPE_PUSHPULL
  65. #endif
  66. #define BYTES_FOR_LED_BYTE 4
  67. #ifdef RGBW
  68. # define WS2812_CHANNELS 4
  69. #else
  70. # define WS2812_CHANNELS 3
  71. #endif
  72. #define BYTES_FOR_LED (BYTES_FOR_LED_BYTE * WS2812_CHANNELS)
  73. #define DATA_SIZE (BYTES_FOR_LED * WS2812_LED_COUNT)
  74. #define RESET_SIZE (1000 * WS2812_TRST_US / (2 * WS2812_TIMING))
  75. #define PREAMBLE_SIZE 4
  76. static uint8_t txbuf[PREAMBLE_SIZE + DATA_SIZE + RESET_SIZE] = {0};
  77. /*
  78. * As the trick here is to use the SPI to send a huge pattern of 0 and 1 to
  79. * the ws2812b protocol, we use this helper function to translate bytes into
  80. * 0s and 1s for the LED (with the appropriate timing).
  81. */
  82. static uint8_t get_protocol_eq(uint8_t data, int pos) {
  83. uint8_t eq = 0;
  84. if (data & (1 << (2 * (3 - pos))))
  85. eq = 0b1110;
  86. else
  87. eq = 0b1000;
  88. if (data & (2 << (2 * (3 - pos))))
  89. eq += 0b11100000;
  90. else
  91. eq += 0b10000000;
  92. return eq;
  93. }
  94. static void set_led_color_rgb(LED_TYPE color, int pos) {
  95. uint8_t* tx_start = &txbuf[PREAMBLE_SIZE];
  96. #if (WS2812_BYTE_ORDER == WS2812_BYTE_ORDER_GRB)
  97. for (int j = 0; j < 4; j++)
  98. tx_start[BYTES_FOR_LED * pos + j] = get_protocol_eq(color.g, j);
  99. for (int j = 0; j < 4; j++)
  100. tx_start[BYTES_FOR_LED * pos + BYTES_FOR_LED_BYTE + j] = get_protocol_eq(color.r, j);
  101. for (int j = 0; j < 4; j++)
  102. tx_start[BYTES_FOR_LED * pos + BYTES_FOR_LED_BYTE * 2 + j] = get_protocol_eq(color.b, j);
  103. #elif (WS2812_BYTE_ORDER == WS2812_BYTE_ORDER_RGB)
  104. for (int j = 0; j < 4; j++)
  105. tx_start[BYTES_FOR_LED * pos + j] = get_protocol_eq(color.r, j);
  106. for (int j = 0; j < 4; j++)
  107. tx_start[BYTES_FOR_LED * pos + BYTES_FOR_LED_BYTE + j] = get_protocol_eq(color.g, j);
  108. for (int j = 0; j < 4; j++)
  109. tx_start[BYTES_FOR_LED * pos + BYTES_FOR_LED_BYTE * 2 + j] = get_protocol_eq(color.b, j);
  110. #elif (WS2812_BYTE_ORDER == WS2812_BYTE_ORDER_BGR)
  111. for (int j = 0; j < 4; j++)
  112. tx_start[BYTES_FOR_LED * pos + j] = get_protocol_eq(color.b, j);
  113. for (int j = 0; j < 4; j++)
  114. tx_start[BYTES_FOR_LED * pos + BYTES_FOR_LED_BYTE + j] = get_protocol_eq(color.g, j);
  115. for (int j = 0; j < 4; j++)
  116. tx_start[BYTES_FOR_LED * pos + BYTES_FOR_LED_BYTE * 2 + j] = get_protocol_eq(color.r, j);
  117. #endif
  118. #ifdef RGBW
  119. for (int j = 0; j < 4; j++)
  120. tx_start[BYTES_FOR_LED * pos + BYTES_FOR_LED_BYTE * 4 + j] = get_protocol_eq(color.w, j);
  121. #endif
  122. }
  123. void ws2812_init(void) {
  124. palSetLineMode(RGB_DI_PIN, WS2812_MOSI_OUTPUT_MODE);
  125. #ifdef WS2812_SPI_SCK_PIN
  126. palSetLineMode(WS2812_SPI_SCK_PIN, WS2812_SCK_OUTPUT_MODE);
  127. #endif // WS2812_SPI_SCK_PIN
  128. // TODO: more dynamic baudrate
  129. static const SPIConfig spicfg = {
  130. #ifndef HAL_LLD_SELECT_SPI_V2
  131. // HAL_SPI_V1
  132. # if SPI_SUPPORTS_CIRCULAR == TRUE
  133. WS2812_SPI_BUFFER_MODE,
  134. # endif
  135. NULL, // end_cb
  136. PAL_PORT(RGB_DI_PIN),
  137. PAL_PAD(RGB_DI_PIN),
  138. # if defined(WB32F3G71xx) || defined(WB32FQ95xx)
  139. 0,
  140. 0,
  141. WS2812_SPI_DIVISOR
  142. # else
  143. WS2812_SPI_DIVISOR_CR1_BR_X,
  144. 0
  145. # endif
  146. #else
  147. // HAL_SPI_V2
  148. # if SPI_SUPPORTS_CIRCULAR == TRUE
  149. WS2812_SPI_BUFFER_MODE,
  150. # endif
  151. # if SPI_SUPPORTS_SLAVE_MODE == TRUE
  152. false,
  153. # endif
  154. NULL, // data_cb
  155. NULL, // error_cb
  156. PAL_PORT(RGB_DI_PIN),
  157. PAL_PAD(RGB_DI_PIN),
  158. WS2812_SPI_DIVISOR_CR1_BR_X,
  159. 0
  160. #endif
  161. };
  162. spiAcquireBus(&WS2812_SPI); /* Acquire ownership of the bus. */
  163. spiStart(&WS2812_SPI, &spicfg); /* Setup transfer parameters. */
  164. spiSelect(&WS2812_SPI); /* Slave Select assertion. */
  165. #ifdef WS2812_SPI_USE_CIRCULAR_BUFFER
  166. spiStartSend(&WS2812_SPI, ARRAY_SIZE(txbuf), txbuf);
  167. #endif
  168. }
  169. void ws2812_setleds(LED_TYPE* ledarray, uint16_t leds) {
  170. static bool s_init = false;
  171. if (!s_init) {
  172. ws2812_init();
  173. s_init = true;
  174. }
  175. for (uint8_t i = 0; i < leds; i++) {
  176. set_led_color_rgb(ledarray[i], i);
  177. }
  178. // Send async - each led takes ~0.03ms, 50 leds ~1.5ms, animations flushing faster than send will cause issues.
  179. // Instead spiSend can be used to send synchronously (or the thread logic can be added back).
  180. #ifndef WS2812_SPI_USE_CIRCULAR_BUFFER
  181. # ifdef WS2812_SPI_SYNC
  182. spiSend(&WS2812_SPI, ARRAY_SIZE(txbuf), txbuf);
  183. # else
  184. spiStartSend(&WS2812_SPI, ARRAY_SIZE(txbuf), txbuf);
  185. # endif
  186. #endif
  187. }