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  1. /* Copyright 2018 Jason Williams (Wilba)
  2. * Copyright 2021 Doni Crosby
  3. *
  4. * This program is free software: you can redistribute it and/or modify
  5. * it under the terms of the GNU General Public License as published by
  6. * the Free Software Foundation, either version 2 of the License, or
  7. * (at your option) any later version.
  8. *
  9. * This program is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. * GNU General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU General Public License
  15. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  16. */
  17. #include "is31fl3736.h"
  18. #include "i2c_master.h"
  19. #include "wait.h"
  20. // This is a 7-bit address, that gets left-shifted and bit 0
  21. // set to 0 for write, 1 for read (as per I2C protocol)
  22. // The address will vary depending on your wiring:
  23. // 00 <-> GND
  24. // 01 <-> SCL
  25. // 10 <-> SDA
  26. // 11 <-> VCC
  27. // ADDR1 represents A1:A0 of the 7-bit address.
  28. // ADDR2 represents A3:A2 of the 7-bit address.
  29. // The result is: 0b101(ADDR2)(ADDR1)
  30. #define ISSI_ADDR_DEFAULT 0x50
  31. #define ISSI_COMMANDREGISTER 0xFD
  32. #define ISSI_COMMANDREGISTER_WRITELOCK 0xFE
  33. #define ISSI_INTERRUPTMASKREGISTER 0xF0
  34. #define ISSI_INTERRUPTSTATUSREGISTER 0xF1
  35. #define ISSI_PAGE_LEDCONTROL 0x00 // PG0
  36. #define ISSI_PAGE_PWM 0x01 // PG1
  37. #define ISSI_PAGE_AUTOBREATH 0x02 // PG2
  38. #define ISSI_PAGE_FUNCTION 0x03 // PG3
  39. #define ISSI_REG_CONFIGURATION 0x00 // PG3
  40. #define ISSI_REG_GLOBALCURRENT 0x01 // PG3
  41. #define ISSI_REG_RESET 0x11 // PG3
  42. #define ISSI_REG_SWPULLUP 0x0F // PG3
  43. #define ISSI_REG_CSPULLUP 0x10 // PG3
  44. #ifndef ISSI_TIMEOUT
  45. # define ISSI_TIMEOUT 100
  46. #endif
  47. #ifndef ISSI_PERSISTENCE
  48. # define ISSI_PERSISTENCE 0
  49. #endif
  50. #ifndef ISSI_SWPULLUP
  51. # define ISSI_SWPULLUP PUR_0R
  52. #endif
  53. #ifndef ISSI_CSPULLUP
  54. # define ISSI_CSPULLUP PUR_0R
  55. #endif
  56. // Transfer buffer for TWITransmitData()
  57. uint8_t g_twi_transfer_buffer[20];
  58. // These buffers match the IS31FL3736 PWM registers.
  59. // The control buffers match the PG0 LED On/Off registers.
  60. // Storing them like this is optimal for I2C transfers to the registers.
  61. // We could optimize this and take out the unused registers from these
  62. // buffers and the transfers in IS31FL3736_write_pwm_buffer() but it's
  63. // probably not worth the extra complexity.
  64. uint8_t g_pwm_buffer[DRIVER_COUNT][192];
  65. bool g_pwm_buffer_update_required = false;
  66. uint8_t g_led_control_registers[DRIVER_COUNT][24] = {{0}, {0}};
  67. bool g_led_control_registers_update_required = false;
  68. void IS31FL3736_write_register(uint8_t addr, uint8_t reg, uint8_t data) {
  69. g_twi_transfer_buffer[0] = reg;
  70. g_twi_transfer_buffer[1] = data;
  71. #if ISSI_PERSISTENCE > 0
  72. for (uint8_t i = 0; i < ISSI_PERSISTENCE; i++) {
  73. if (i2c_transmit(addr << 1, g_twi_transfer_buffer, 2, ISSI_TIMEOUT) == 0) break;
  74. }
  75. #else
  76. i2c_transmit(addr << 1, g_twi_transfer_buffer, 2, ISSI_TIMEOUT);
  77. #endif
  78. }
  79. void IS31FL3736_write_pwm_buffer(uint8_t addr, uint8_t *pwm_buffer) {
  80. // assumes PG1 is already selected
  81. // transmit PWM registers in 12 transfers of 16 bytes
  82. // g_twi_transfer_buffer[] is 20 bytes
  83. // iterate over the pwm_buffer contents at 16 byte intervals
  84. for (int i = 0; i < 192; i += 16) {
  85. g_twi_transfer_buffer[0] = i;
  86. // copy the data from i to i+15
  87. // device will auto-increment register for data after the first byte
  88. // thus this sets registers 0x00-0x0F, 0x10-0x1F, etc. in one transfer
  89. for (int j = 0; j < 16; j++) {
  90. g_twi_transfer_buffer[1 + j] = pwm_buffer[i + j];
  91. }
  92. #if ISSI_PERSISTENCE > 0
  93. for (uint8_t i = 0; i < ISSI_PERSISTENCE; i++) {
  94. if (i2c_transmit(addr << 1, g_twi_transfer_buffer, 17, ISSI_TIMEOUT) == 0) break;
  95. }
  96. #else
  97. i2c_transmit(addr << 1, g_twi_transfer_buffer, 17, ISSI_TIMEOUT);
  98. #endif
  99. }
  100. }
  101. void IS31FL3736_init(uint8_t addr) {
  102. // In order to avoid the LEDs being driven with garbage data
  103. // in the LED driver's PWM registers, shutdown is enabled last.
  104. // Set up the mode and other settings, clear the PWM registers,
  105. // then disable software shutdown.
  106. // Unlock the command register.
  107. IS31FL3736_write_register(addr, ISSI_COMMANDREGISTER_WRITELOCK, 0xC5);
  108. // Select PG0
  109. IS31FL3736_write_register(addr, ISSI_COMMANDREGISTER, ISSI_PAGE_LEDCONTROL);
  110. // Turn off all LEDs.
  111. for (int i = 0x00; i <= 0x17; i++) {
  112. IS31FL3736_write_register(addr, i, 0x00);
  113. }
  114. // Unlock the command register.
  115. IS31FL3736_write_register(addr, ISSI_COMMANDREGISTER_WRITELOCK, 0xC5);
  116. // Select PG1
  117. IS31FL3736_write_register(addr, ISSI_COMMANDREGISTER, ISSI_PAGE_PWM);
  118. // Set PWM on all LEDs to 0
  119. // No need to setup Breath registers to PWM as that is the default.
  120. for (int i = 0x00; i <= 0xBF; i++) {
  121. IS31FL3736_write_register(addr, i, 0x00);
  122. }
  123. // Unlock the command register.
  124. IS31FL3736_write_register(addr, ISSI_COMMANDREGISTER_WRITELOCK, 0xC5);
  125. // Select PG3
  126. IS31FL3736_write_register(addr, ISSI_COMMANDREGISTER, ISSI_PAGE_FUNCTION);
  127. // Set de-ghost pull-up resistors (SWx)
  128. IS31FL3736_write_register(addr, ISSI_REG_SWPULLUP, ISSI_SWPULLUP);
  129. // Set de-ghost pull-down resistors (CSx)
  130. IS31FL3736_write_register(addr, ISSI_REG_CSPULLUP, ISSI_CSPULLUP);
  131. // Set global current to maximum.
  132. IS31FL3736_write_register(addr, ISSI_REG_GLOBALCURRENT, 0xFF);
  133. // Disable software shutdown.
  134. IS31FL3736_write_register(addr, ISSI_REG_CONFIGURATION, 0x01);
  135. // Wait 10ms to ensure the device has woken up.
  136. wait_ms(10);
  137. }
  138. void IS31FL3736_set_color(int index, uint8_t red, uint8_t green, uint8_t blue) {
  139. is31_led led;
  140. if (index >= 0 && index < DRIVER_LED_TOTAL) {
  141. memcpy_P(&led, (&g_is31_leds[index]), sizeof(led));
  142. g_pwm_buffer[led.driver][led.r] = red;
  143. g_pwm_buffer[led.driver][led.g] = green;
  144. g_pwm_buffer[led.driver][led.b] = blue;
  145. g_pwm_buffer_update_required = true;
  146. }
  147. }
  148. void IS31FL3736_set_color_all(uint8_t red, uint8_t green, uint8_t blue) {
  149. for (int i = 0; i < DRIVER_LED_TOTAL; i++) {
  150. IS31FL3736_set_color(i, red, green, blue);
  151. }
  152. }
  153. void IS31FL3736_set_led_control_register(uint8_t index, bool red, bool green, bool blue) {
  154. is31_led led;
  155. memcpy_P(&led, (&g_is31_leds[index]), sizeof(led));
  156. // IS31FL3733
  157. // The PWM register for a matrix position (0x00 to 0xBF) can be
  158. // divided by 8 to get the LED control register (0x00 to 0x17),
  159. // then mod 8 to get the bit position within that register.
  160. // IS31FL3736
  161. // The PWM register for a matrix position (0x00 to 0xBF) is interleaved, so:
  162. // A1=0x00 A2=0x02 A3=0x04 A4=0x06 A5=0x08 A6=0x0A A7=0x0C A8=0x0E
  163. // B1=0x10 B2=0x12 B3=0x14
  164. // But also, the LED control registers (0x00 to 0x17) are also interleaved, so:
  165. // A1-A4=0x00 A5-A8=0x01
  166. // So, the same math applies.
  167. uint8_t control_register_r = led.r / 8;
  168. uint8_t control_register_g = led.g / 8;
  169. uint8_t control_register_b = led.b / 8;
  170. uint8_t bit_r = led.r % 8;
  171. uint8_t bit_g = led.g % 8;
  172. uint8_t bit_b = led.b % 8;
  173. if (red) {
  174. g_led_control_registers[led.driver][control_register_r] |= (1 << bit_r);
  175. } else {
  176. g_led_control_registers[led.driver][control_register_r] &= ~(1 << bit_r);
  177. }
  178. if (green) {
  179. g_led_control_registers[led.driver][control_register_g] |= (1 << bit_g);
  180. } else {
  181. g_led_control_registers[led.driver][control_register_g] &= ~(1 << bit_g);
  182. }
  183. if (blue) {
  184. g_led_control_registers[led.driver][control_register_b] |= (1 << bit_b);
  185. } else {
  186. g_led_control_registers[led.driver][control_register_b] &= ~(1 << bit_b);
  187. }
  188. g_led_control_registers_update_required = true;
  189. }
  190. void IS31FL3736_mono_set_brightness(int index, uint8_t value) {
  191. if (index >= 0 && index < 96) {
  192. // Index in range 0..95 -> A1..A8, B1..B8, etc.
  193. // Map index 0..95 to registers 0x00..0xBE (interleaved)
  194. uint8_t pwm_register = index * 2;
  195. g_pwm_buffer[0][pwm_register] = value;
  196. g_pwm_buffer_update_required = true;
  197. }
  198. }
  199. void IS31FL3736_mono_set_brightness_all(uint8_t value) {
  200. for (int i = 0; i < 96; i++) {
  201. IS31FL3736_mono_set_brightness(i, value);
  202. }
  203. }
  204. void IS31FL3736_mono_set_led_control_register(uint8_t index, bool enabled) {
  205. // Index in range 0..95 -> A1..A8, B1..B8, etc.
  206. // Map index 0..95 to registers 0x00..0xBE (interleaved)
  207. uint8_t pwm_register = index * 2;
  208. // Map register 0x00..0xBE (interleaved) into control register and bit
  209. uint8_t control_register = pwm_register / 8;
  210. uint8_t bit = pwm_register % 8;
  211. if (enabled) {
  212. g_led_control_registers[0][control_register] |= (1 << bit);
  213. } else {
  214. g_led_control_registers[0][control_register] &= ~(1 << bit);
  215. }
  216. g_led_control_registers_update_required = true;
  217. }
  218. void IS31FL3736_update_pwm_buffers(uint8_t addr1, uint8_t addr2) {
  219. if (g_pwm_buffer_update_required) {
  220. // Firstly we need to unlock the command register and select PG1
  221. IS31FL3736_write_register(addr1, ISSI_COMMANDREGISTER_WRITELOCK, 0xC5);
  222. IS31FL3736_write_register(addr1, ISSI_COMMANDREGISTER, ISSI_PAGE_PWM);
  223. IS31FL3736_write_pwm_buffer(addr1, g_pwm_buffer[0]);
  224. // IS31FL3736_write_pwm_buffer(addr2, g_pwm_buffer[1]);
  225. }
  226. g_pwm_buffer_update_required = false;
  227. }
  228. void IS31FL3736_update_led_control_registers(uint8_t addr1, uint8_t addr2) {
  229. if (g_led_control_registers_update_required) {
  230. // Firstly we need to unlock the command register and select PG0
  231. IS31FL3736_write_register(addr1, ISSI_COMMANDREGISTER_WRITELOCK, 0xC5);
  232. IS31FL3736_write_register(addr1, ISSI_COMMANDREGISTER, ISSI_PAGE_LEDCONTROL);
  233. for (int i = 0; i < 24; i++) {
  234. IS31FL3736_write_register(addr1, i, g_led_control_registers[0][i]);
  235. // IS31FL3736_write_register(addr2, i, g_led_control_registers[1][i]);
  236. }
  237. g_led_control_registers_update_required = false;
  238. }
  239. }