ergodox_ez.c 13 KB

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  1. #include QMK_KEYBOARD_H
  2. extern inline void ergodox_board_led_on(void);
  3. extern inline void ergodox_right_led_1_on(void);
  4. extern inline void ergodox_right_led_2_on(void);
  5. extern inline void ergodox_right_led_3_on(void);
  6. extern inline void ergodox_right_led_on(uint8_t led);
  7. extern inline void ergodox_board_led_off(void);
  8. extern inline void ergodox_right_led_1_off(void);
  9. extern inline void ergodox_right_led_2_off(void);
  10. extern inline void ergodox_right_led_3_off(void);
  11. extern inline void ergodox_right_led_off(uint8_t led);
  12. extern inline void ergodox_led_all_on(void);
  13. extern inline void ergodox_led_all_off(void);
  14. extern inline void ergodox_right_led_1_set(uint8_t n);
  15. extern inline void ergodox_right_led_2_set(uint8_t n);
  16. extern inline void ergodox_right_led_3_set(uint8_t n);
  17. extern inline void ergodox_right_led_set(uint8_t led, uint8_t n);
  18. extern inline void ergodox_led_all_set(uint8_t n);
  19. keyboard_config_t keyboard_config;
  20. bool i2c_initialized = 0;
  21. i2c_status_t mcp23018_status = 0x20;
  22. void matrix_init_kb(void) {
  23. // keyboard LEDs (see "PWM on ports OC1(A|B|C)" in "teensy-2-0.md")
  24. TCCR1A = 0b10101001; // set and configure fast PWM
  25. TCCR1B = 0b00001001; // set and configure fast PWM
  26. // (tied to Vcc for hardware convenience)
  27. DDRB &= ~(1<<4); // set B(4) as input
  28. PORTB &= ~(1<<4); // set B(4) internal pull-up disabled
  29. // unused pins - C7, D4, D5, D7, E6
  30. // set as input with internal pull-up enabled
  31. DDRC &= ~(1<<7);
  32. DDRD &= ~(1<<5 | 1<<4);
  33. DDRE &= ~(1<<6);
  34. PORTC |= (1<<7);
  35. PORTD |= (1<<5 | 1<<4);
  36. PORTE |= (1<<6);
  37. keyboard_config.raw = eeconfig_read_kb();
  38. ergodox_led_all_set((uint8_t)keyboard_config.led_level * 255 / 4 );
  39. #ifdef RGB_MATRIX_ENABLE
  40. if (keyboard_config.rgb_matrix_enable) {
  41. rgb_matrix_set_flags(LED_FLAG_ALL);
  42. } else {
  43. rgb_matrix_set_flags(LED_FLAG_NONE);
  44. }
  45. #endif
  46. ergodox_blink_all_leds();
  47. matrix_init_user();
  48. }
  49. void ergodox_blink_all_leds(void)
  50. {
  51. ergodox_led_all_off();
  52. ergodox_led_all_set(LED_BRIGHTNESS_DEFAULT);
  53. ergodox_right_led_1_on();
  54. _delay_ms(50);
  55. ergodox_right_led_2_on();
  56. _delay_ms(50);
  57. ergodox_right_led_3_on();
  58. _delay_ms(50);
  59. #ifdef LEFT_LEDS
  60. ergodox_left_led_1_on();
  61. _delay_ms(50);
  62. if (!mcp23018_status) {
  63. mcp23018_status = ergodox_left_leds_update();
  64. }
  65. ergodox_left_led_2_on();
  66. _delay_ms(50);
  67. if (!mcp23018_status) {
  68. mcp23018_status = ergodox_left_leds_update();
  69. }
  70. ergodox_left_led_3_on();
  71. _delay_ms(50);
  72. if (!mcp23018_status) {
  73. mcp23018_status = ergodox_left_leds_update();
  74. }
  75. #endif
  76. ergodox_right_led_1_off();
  77. _delay_ms(50);
  78. ergodox_right_led_2_off();
  79. _delay_ms(50);
  80. ergodox_right_led_3_off();
  81. #ifdef LEFT_LEDS
  82. _delay_ms(50);
  83. ergodox_left_led_1_off();
  84. if (!mcp23018_status) {
  85. mcp23018_status = ergodox_left_leds_update();
  86. }
  87. _delay_ms(50);
  88. ergodox_left_led_2_off();
  89. if (!mcp23018_status) {
  90. mcp23018_status = ergodox_left_leds_update();
  91. }
  92. _delay_ms(50);
  93. ergodox_left_led_3_off();
  94. if (!mcp23018_status) {
  95. mcp23018_status = ergodox_left_leds_update();
  96. }
  97. #endif
  98. //ergodox_led_all_on();
  99. //_delay_ms(333);
  100. ergodox_led_all_off();
  101. }
  102. uint8_t init_mcp23018(void) {
  103. mcp23018_status = 0x20;
  104. // I2C subsystem
  105. // uint8_t sreg_prev;
  106. // sreg_prev=SREG;
  107. // cli();
  108. if (i2c_initialized == 0) {
  109. i2c_init(); // on pins D(1,0)
  110. i2c_initialized = true;
  111. _delay_ms(1000);
  112. }
  113. // i2c_init(); // on pins D(1,0)
  114. // _delay_ms(1000);
  115. // set pin direction
  116. // - unused : input : 1
  117. // - input : input : 1
  118. // - driving : output : 0
  119. mcp23018_status = i2c_start(I2C_ADDR_WRITE, ERGODOX_EZ_I2C_TIMEOUT); if (mcp23018_status) goto out;
  120. mcp23018_status = i2c_write(IODIRA, ERGODOX_EZ_I2C_TIMEOUT); if (mcp23018_status) goto out;
  121. mcp23018_status = i2c_write(0b00000000, ERGODOX_EZ_I2C_TIMEOUT); if (mcp23018_status) goto out;
  122. mcp23018_status = i2c_write(0b00111111, ERGODOX_EZ_I2C_TIMEOUT); if (mcp23018_status) goto out;
  123. i2c_stop();
  124. // set pull-up
  125. // - unused : on : 1
  126. // - input : on : 1
  127. // - driving : off : 0
  128. mcp23018_status = i2c_start(I2C_ADDR_WRITE, ERGODOX_EZ_I2C_TIMEOUT); if (mcp23018_status) goto out;
  129. mcp23018_status = i2c_write(GPPUA, ERGODOX_EZ_I2C_TIMEOUT); if (mcp23018_status) goto out;
  130. mcp23018_status = i2c_write(0b00000000, ERGODOX_EZ_I2C_TIMEOUT); if (mcp23018_status) goto out;
  131. mcp23018_status = i2c_write(0b00111111, ERGODOX_EZ_I2C_TIMEOUT); if (mcp23018_status) goto out;
  132. out:
  133. i2c_stop();
  134. #ifdef LEFT_LEDS
  135. if (!mcp23018_status) mcp23018_status = ergodox_left_leds_update();
  136. #endif // LEFT_LEDS
  137. // SREG=sreg_prev;
  138. return mcp23018_status;
  139. }
  140. #ifdef LEFT_LEDS
  141. uint8_t ergodox_left_leds_update(void) {
  142. if (mcp23018_status) { // if there was an error
  143. return mcp23018_status;
  144. }
  145. #define LEFT_LED_1_SHIFT 7 // in MCP23018 port B
  146. #define LEFT_LED_2_SHIFT 6 // in MCP23018 port B
  147. #define LEFT_LED_3_SHIFT 7 // in MCP23018 port A
  148. // set logical value (doesn't matter on inputs)
  149. // - unused : hi-Z : 1
  150. // - input : hi-Z : 1
  151. // - driving : hi-Z : 1
  152. mcp23018_status = i2c_start(I2C_ADDR_WRITE, ERGODOX_EZ_I2C_TIMEOUT);
  153. if (mcp23018_status) goto out;
  154. mcp23018_status = i2c_write(OLATA, ERGODOX_EZ_I2C_TIMEOUT);
  155. if (mcp23018_status) goto out;
  156. mcp23018_status = i2c_write(0b11111111
  157. & ~(ergodox_left_led_3<<LEFT_LED_3_SHIFT),
  158. ERGODOX_EZ_I2C_TIMEOUT);
  159. if (mcp23018_status) goto out;
  160. mcp23018_status = i2c_write(0b11111111
  161. & ~(ergodox_left_led_2<<LEFT_LED_2_SHIFT)
  162. & ~(ergodox_left_led_1<<LEFT_LED_1_SHIFT),
  163. ERGODOX_EZ_I2C_TIMEOUT);
  164. if (mcp23018_status) goto out;
  165. out:
  166. i2c_stop();
  167. return mcp23018_status;
  168. }
  169. #endif
  170. #ifdef SWAP_HANDS_ENABLE
  171. __attribute__ ((weak))
  172. // swap-hands action needs a matrix to define the swap
  173. const keypos_t hand_swap_config[MATRIX_ROWS][MATRIX_COLS] = {
  174. /* Left hand, matrix positions */
  175. {{0,13}, {1,13}, {2,13}, {3,13}, {4,13}, {5,13}},
  176. {{0,12}, {1,12}, {2,12}, {3,12}, {4,12}, {5,12}},
  177. {{0,11}, {1,11}, {2,11}, {3,11}, {4,11}, {5,11}},
  178. {{0,10}, {1,10}, {2,10}, {3,10}, {4,10}, {5,10}},
  179. {{0,9}, {1,9}, {2,9}, {3,9}, {4,9}, {5,9}},
  180. {{0,8}, {1,8}, {2,8}, {3,8}, {4,8}, {5,8}},
  181. {{0,7}, {1,7}, {2,7}, {3,7}, {4,7}, {5,7}},
  182. /* Right hand, matrix positions */
  183. {{0,6}, {1,6}, {2,6}, {3,6}, {4,6}, {5,6}},
  184. {{0,5}, {1,5}, {2,5}, {3,5}, {4,5}, {5,5}},
  185. {{0,4}, {1,4}, {2,4}, {3,4}, {4,4}, {5,4}},
  186. {{0,3}, {1,3}, {2,3}, {3,3}, {4,3}, {5,3}},
  187. {{0,2}, {1,2}, {2,2}, {3,2}, {4,2}, {5,2}},
  188. {{0,1}, {1,1}, {2,1}, {3,1}, {4,1}, {5,1}},
  189. {{0,0}, {1,0}, {2,0}, {3,0}, {4,0}, {5,0}},
  190. };
  191. #endif
  192. #ifdef RGB_MATRIX_ENABLE
  193. const is31_led g_is31_leds[DRIVER_LED_TOTAL] = {
  194. /* driver
  195. * | R location
  196. * | | G location
  197. * | | | B location
  198. * | | | | */
  199. {0, C3_1, C2_1, C4_1}, // LED1 on right
  200. {0, C6_1, C5_1, C7_1}, // LED2
  201. {0, C4_2, C3_2, C5_2}, // LED3
  202. {0, C7_2, C6_2, C8_2}, // LED4
  203. {0, C2_3, C1_3, C3_3}, // LED5
  204. {0, C5_3, C4_3, C6_3}, // LED6
  205. {0, C8_3, C7_3, C9_3}, // LED7
  206. {0, C2_4, C1_4, C3_4}, // LED8
  207. {0, C6_4, C5_4, C7_4}, // LED9
  208. {0, C2_5, C1_5, C3_5}, // LED10
  209. {0, C7_5, C6_5, C8_5}, // LED11
  210. {0, C2_6, C1_6, C3_6}, // LED12
  211. {0, C5_6, C4_6, C6_6}, // LED13
  212. {0, C8_6, C7_6, C9_6}, // LED14
  213. {0, C2_7, C1_7, C3_7}, // LED15
  214. {0, C5_7, C4_7, C6_7}, // LED16
  215. {0, C2_8, C1_8, C3_8}, // LED17
  216. {0, C5_8, C4_8, C6_8}, // LED18
  217. {0, C3_9, C2_9, C4_9}, // LED19
  218. {0, C6_9, C5_9, C7_9}, // LED20
  219. {0, C4_10, C3_10, C5_10}, // LED21
  220. {0, C7_10, C6_10, C8_10}, // LED22
  221. {0, C2_11, C1_11, C3_11}, // LED23
  222. {0, C5_11, C4_11, C6_11}, // LED24
  223. {1, C3_1, C2_1, C4_1}, // LED1 on left
  224. {1, C6_1, C5_1, C7_1}, // LED2
  225. {1, C4_2, C3_2, C5_2}, // LED3
  226. {1, C7_2, C6_2, C8_2}, // LED4
  227. {1, C2_3, C1_3, C3_3}, // LED5
  228. {1, C5_3, C4_3, C6_3}, // LED6
  229. {1, C8_3, C7_3, C9_3}, // LED7
  230. {1, C2_4, C1_4, C3_4}, // LED8
  231. {1, C6_4, C5_4, C7_4}, // LED9
  232. {1, C2_5, C1_5, C3_5}, // LED10
  233. {1, C7_5, C6_5, C8_5}, // LED11
  234. {1, C2_6, C1_6, C3_6}, // LED12
  235. {1, C5_6, C4_6, C6_6}, // LED13
  236. {1, C8_6, C7_6, C9_6}, // LED14
  237. {1, C2_7, C1_7, C3_7}, // LED15
  238. {1, C5_7, C4_7, C6_7}, // LED16
  239. {1, C2_8, C1_8, C3_8}, // LED17
  240. {1, C5_8, C4_8, C6_8}, // LED18
  241. {1, C3_9, C2_9, C4_9}, // LED19
  242. {1, C6_9, C5_9, C7_9}, // LED20
  243. {1, C4_10, C3_10, C5_10}, // LED21
  244. {1, C7_10, C6_10, C8_10}, // LED22
  245. {1, C2_11, C1_11, C3_11}, // LED23
  246. {1, C5_11, C4_11, C6_11} // LED24
  247. };
  248. led_config_t g_led_config = { {
  249. { NO_LED, NO_LED, NO_LED, NO_LED, NO_LED, NO_LED },
  250. { 28, 33, 38, 43, 47, NO_LED },
  251. { 27, 32, 37, 42, 46, NO_LED },
  252. { 26, 31, 36, 41, 45, NO_LED },
  253. { 25, 30, 35, 40, 44, NO_LED },
  254. { 24, 29, 34, 39, NO_LED, NO_LED },
  255. { NO_LED, NO_LED, NO_LED, NO_LED, NO_LED, NO_LED },
  256. { NO_LED, NO_LED, NO_LED, NO_LED, NO_LED, NO_LED },
  257. { 0, 5, 10, 15, NO_LED, NO_LED },
  258. { 1, 6, 11, 16, 20, NO_LED },
  259. { 2, 7, 12, 17, 21, NO_LED },
  260. { 3, 8, 13, 18, 22, NO_LED },
  261. { 4, 9, 14, 19, 23, NO_LED },
  262. { NO_LED, NO_LED, NO_LED, NO_LED, NO_LED, NO_LED }
  263. }, {
  264. { 137, 0 }, { 154, 0 }, { 172, 0 }, { 189, 0 }, { 206, 0 }, { 137, 12 },
  265. { 154, 12 }, { 172, 12 }, { 189, 12 }, { 206, 12 }, { 137, 25 }, { 154, 25 },
  266. { 172, 25 }, { 189, 25 }, { 206, 25 }, { 137, 38 }, { 154, 38 }, { 172, 38 },
  267. { 189, 38 }, { 206, 38 }, { 154, 51 }, { 172, 51 }, { 189, 51 }, { 206, 51 },
  268. { 86, 0 }, { 68, 0 }, { 51, 0 }, { 34, 0 }, { 17, 0 }, { 86, 12 },
  269. { 68, 12 }, { 51, 12 }, { 34, 12 }, { 17, 12 }, { 86, 25 }, { 68, 25 },
  270. { 51, 25 }, { 34, 25 }, { 17, 25 }, { 86, 38 }, { 68, 38 }, { 51, 38 },
  271. { 34, 38 }, { 17, 38 }, { 68, 51 }, { 51, 51 }, { 34, 51 }, { 17, 51 }
  272. }, {
  273. 4, 4, 4, 4, 4, 4,
  274. 4, 4, 4, 4, 4, 4,
  275. 4, 4, 4, 4, 4, 4,
  276. 4, 4, 1, 1, 1, 1,
  277. 4, 4, 4, 4, 4, 4,
  278. 4, 4, 4, 4, 4, 4,
  279. 4, 4, 4, 4, 4, 4,
  280. 4, 4, 1, 1, 1, 1
  281. } };
  282. void suspend_power_down_kb(void) {
  283. rgb_matrix_set_color_all(0, 0, 0);
  284. rgb_matrix_set_suspend_state(true);
  285. suspend_power_down_user();
  286. }
  287. void suspend_wakeup_init_kb(void) {
  288. rgb_matrix_set_suspend_state(false);
  289. suspend_wakeup_init_user();
  290. }
  291. #ifdef ORYX_CONFIGURATOR
  292. void keyboard_post_init_kb(void) {
  293. rgb_matrix_enable_noeeprom();
  294. keyboard_post_init_user();
  295. }
  296. #endif
  297. #endif
  298. #ifdef ORYX_CONFIGURATOR
  299. bool process_record_kb(uint16_t keycode, keyrecord_t *record) {
  300. switch (keycode) {
  301. case LED_LEVEL:
  302. if (record->event.pressed) {
  303. keyboard_config.led_level++;
  304. if (keyboard_config.led_level > 4) {
  305. keyboard_config.led_level = 0;
  306. }
  307. ergodox_led_all_set((uint8_t)keyboard_config.led_level * 255 / 4 );
  308. eeconfig_update_kb(keyboard_config.raw);
  309. layer_state_set_kb(layer_state);
  310. }
  311. break;
  312. #ifdef RGB_MATRIX_ENABLE
  313. case TOGGLE_LAYER_COLOR:
  314. if (record->event.pressed) {
  315. keyboard_config.disable_layer_led ^= 1;
  316. if (keyboard_config.disable_layer_led)
  317. rgb_matrix_set_color_all(0, 0, 0);
  318. eeconfig_update_kb(keyboard_config.raw);
  319. }
  320. break;
  321. case RGB_TOG:
  322. if (record->event.pressed) {
  323. switch (rgb_matrix_get_flags()) {
  324. case LED_FLAG_ALL: {
  325. rgb_matrix_set_flags(LED_FLAG_NONE);
  326. keyboard_config.rgb_matrix_enable = false;
  327. rgb_matrix_set_color_all(0, 0, 0);
  328. }
  329. break;
  330. default: {
  331. rgb_matrix_set_flags(LED_FLAG_ALL);
  332. keyboard_config.rgb_matrix_enable = true;
  333. }
  334. break;
  335. }
  336. eeconfig_update_kb(keyboard_config.raw);
  337. }
  338. return false;
  339. #endif
  340. }
  341. return process_record_user(keycode, record);
  342. }
  343. #endif
  344. void eeconfig_init_kb(void) { // EEPROM is getting reset!
  345. keyboard_config.raw = 0;
  346. keyboard_config.led_level = 4;
  347. keyboard_config.rgb_matrix_enable = true;
  348. eeconfig_update_kb(keyboard_config.raw);
  349. eeconfig_init_user();
  350. }