eeconfig.c 10 KB

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  1. #include <string.h>
  2. #include <stdint.h>
  3. #include <stdbool.h>
  4. #include "debug.h"
  5. #include "eeconfig.h"
  6. #include "action_layer.h"
  7. #include "nvm_eeconfig.h"
  8. #include "keycode_config.h"
  9. #ifdef BACKLIGHT_ENABLE
  10. # include "backlight.h"
  11. #endif // BACKLIGHT_ENABLE
  12. #ifdef AUDIO_ENABLE
  13. # include "audio.h"
  14. #endif // AUDIO_ENABLE
  15. #ifdef RGBLIGHT_ENABLE
  16. # include "rgblight.h"
  17. #endif // RGBLIGHT_ENABLE
  18. #ifdef RGB_MATRIX_ENABLE
  19. # include "rgb_matrix_types.h"
  20. #endif // RGB_MATRIX_ENABLE
  21. #ifdef LED_MATRIX_ENABLE
  22. # include "led_matrix_types.h"
  23. #endif // LED_MATRIX_ENABLE
  24. #ifdef UNICODE_COMMON_ENABLE
  25. # include "unicode.h"
  26. #endif // UNICODE_COMMON_ENABLE
  27. #ifdef HAPTIC_ENABLE
  28. # include "haptic.h"
  29. #endif // HAPTIC_ENABLE
  30. #ifdef CONNECTION_ENABLE
  31. # include "connection.h"
  32. #endif // CONNECTION_ENABLE
  33. #ifdef VIA_ENABLE
  34. bool via_eeprom_is_valid(void);
  35. void via_eeprom_set_valid(bool valid);
  36. void eeconfig_init_via(void);
  37. #else
  38. bool dynamic_keymap_is_valid(void);
  39. void dynamic_keymap_reset(void);
  40. void dynamic_keymap_macro_reset(void);
  41. #endif // VIA_ENABLE
  42. #ifndef NKRO_DEFAULT_ON
  43. # define NKRO_DEFAULT_ON false
  44. #endif
  45. __attribute__((weak)) void eeconfig_init_user(void) {
  46. #if (EECONFIG_USER_DATA_SIZE) == 0
  47. // Reset user EEPROM value to blank, rather than to a set value
  48. eeconfig_update_user(0);
  49. #endif // (EECONFIG_USER_DATA_SIZE) == 0
  50. }
  51. __attribute__((weak)) void eeconfig_init_kb(void) {
  52. #if (EECONFIG_KB_DATA_SIZE) == 0
  53. // Reset Keyboard EEPROM value to blank, rather than to a set value
  54. eeconfig_update_kb(0);
  55. #endif // (EECONFIG_KB_DATA_SIZE) == 0
  56. eeconfig_init_user();
  57. }
  58. void eeconfig_init_quantum(void) {
  59. nvm_eeconfig_erase();
  60. eeconfig_enable();
  61. debug_config_t debug_config = {0};
  62. eeconfig_update_debug(&debug_config);
  63. default_layer_state = (layer_state_t)1 << 0;
  64. eeconfig_update_default_layer(default_layer_state);
  65. keymap_config_t keymap_config = {
  66. .swap_control_capslock = false,
  67. .capslock_to_control = false,
  68. .swap_lalt_lgui = false,
  69. .swap_ralt_rgui = false,
  70. .no_gui = false,
  71. .swap_grave_esc = false,
  72. .swap_backslash_backspace = false,
  73. .nkro = NKRO_DEFAULT_ON,
  74. .swap_lctl_lgui = false,
  75. .swap_rctl_rgui = false,
  76. .oneshot_enable = true, // Enable oneshot by default
  77. .swap_escape_capslock = false,
  78. .autocorrect_enable = true, // Enable autocorrect by default
  79. };
  80. eeconfig_update_keymap(&keymap_config);
  81. #ifdef BACKLIGHT_ENABLE
  82. backlight_config_t backlight_config = {0};
  83. eeconfig_update_backlight(&backlight_config);
  84. #endif // BACKLIGHT_ENABLE
  85. #ifdef AUDIO_ENABLE
  86. audio_config_t audio_config = {0};
  87. eeconfig_update_audio(&audio_config);
  88. #endif // AUDIO_ENABLE
  89. #ifdef RGBLIGHT_ENABLE
  90. extern void eeconfig_update_rgblight_default(void);
  91. eeconfig_update_rgblight_default();
  92. #endif // RGBLIGHT_ENABLE
  93. #ifdef UNICODE_COMMON_ENABLE
  94. unicode_config_t unicode_config = {0};
  95. eeconfig_update_unicode_mode(&unicode_config);
  96. #endif // UNICODE_COMMON_ENABLE
  97. #ifdef STENO_ENABLE
  98. eeconfig_update_steno_mode(0);
  99. #endif // STENO_ENABLE
  100. #ifdef RGB_MATRIX_ENABLE
  101. extern void eeconfig_update_rgb_matrix_default(void);
  102. eeconfig_update_rgb_matrix_default();
  103. #endif
  104. #ifdef LED_MATRIX_ENABLE
  105. extern void eeconfig_update_led_matrix_default(void);
  106. eeconfig_update_led_matrix_default();
  107. #endif // LED_MATRIX_ENABLE
  108. #ifdef HAPTIC_ENABLE
  109. haptic_config_t haptic_config = {0};
  110. eeconfig_update_haptic(&haptic_config);
  111. haptic_reset();
  112. #endif // HAPTIC_ENABLE
  113. #ifdef CONNECTION_ENABLE
  114. extern void eeconfig_update_connection_default(void);
  115. eeconfig_update_connection_default();
  116. #endif // CONNECTION_ENABLE
  117. #if (EECONFIG_KB_DATA_SIZE) > 0
  118. eeconfig_init_kb_datablock();
  119. #endif // (EECONFIG_KB_DATA_SIZE) > 0
  120. #if (EECONFIG_USER_DATA_SIZE) > 0
  121. eeconfig_init_user_datablock();
  122. #endif // (EECONFIG_USER_DATA_SIZE) > 0
  123. #if defined(VIA_ENABLE)
  124. // Invalidate VIA eeprom config, and then reset.
  125. // Just in case if power is lost mid init, this makes sure that it gets
  126. // properly re-initialized.
  127. eeconfig_init_via();
  128. #elif defined(DYNAMIC_KEYMAP_ENABLE)
  129. dynamic_keymap_reset();
  130. dynamic_keymap_macro_reset();
  131. #endif
  132. eeconfig_init_kb();
  133. #ifdef RGB_MATRIX_ENABLE
  134. extern void eeconfig_force_flush_rgb_matrix(void);
  135. eeconfig_force_flush_rgb_matrix();
  136. #endif // RGB_MATRIX_ENABLE
  137. #ifdef LED_MATRIX_ENABLE
  138. extern void eeconfig_force_flush_led_matrix(void);
  139. eeconfig_force_flush_led_matrix();
  140. #endif // LED_MATRIX_ENABLE
  141. }
  142. void eeconfig_init(void) {
  143. eeconfig_init_quantum();
  144. }
  145. void eeconfig_enable(void) {
  146. nvm_eeconfig_enable();
  147. }
  148. void eeconfig_disable(void) {
  149. nvm_eeconfig_disable();
  150. }
  151. bool eeconfig_is_enabled(void) {
  152. bool is_eeprom_enabled = nvm_eeconfig_is_enabled();
  153. #if defined(VIA_ENABLE)
  154. if (is_eeprom_enabled) {
  155. is_eeprom_enabled = via_eeprom_is_valid();
  156. }
  157. #elif defined(DYNAMIC_KEYMAP_ENABLE)
  158. if (is_eeprom_enabled) {
  159. is_eeprom_enabled = dynamic_keymap_is_valid();
  160. }
  161. #endif
  162. return is_eeprom_enabled;
  163. }
  164. bool eeconfig_is_disabled(void) {
  165. bool is_eeprom_disabled = nvm_eeconfig_is_disabled();
  166. #if defined(VIA_ENABLE)
  167. if (!is_eeprom_disabled) {
  168. is_eeprom_disabled = !via_eeprom_is_valid();
  169. }
  170. #elif defined(DYNAMIC_KEYMAP_ENABLE)
  171. if (!is_eeprom_disabled) {
  172. is_eeprom_disabled = !dynamic_keymap_is_valid();
  173. }
  174. #endif
  175. return is_eeprom_disabled;
  176. }
  177. void eeconfig_read_debug(debug_config_t *debug_config) {
  178. nvm_eeconfig_read_debug(debug_config);
  179. }
  180. void eeconfig_update_debug(const debug_config_t *debug_config) {
  181. nvm_eeconfig_update_debug(debug_config);
  182. }
  183. layer_state_t eeconfig_read_default_layer(void) {
  184. return nvm_eeconfig_read_default_layer();
  185. }
  186. void eeconfig_update_default_layer(layer_state_t state) {
  187. nvm_eeconfig_update_default_layer(state);
  188. }
  189. void eeconfig_read_keymap(keymap_config_t *keymap_config) {
  190. nvm_eeconfig_read_keymap(keymap_config);
  191. }
  192. void eeconfig_update_keymap(const keymap_config_t *keymap_config) {
  193. nvm_eeconfig_update_keymap(keymap_config);
  194. }
  195. #ifdef AUDIO_ENABLE
  196. void eeconfig_read_audio(audio_config_t *audio_config) {
  197. nvm_eeconfig_read_audio(audio_config);
  198. }
  199. void eeconfig_update_audio(const audio_config_t *audio_config) {
  200. nvm_eeconfig_update_audio(audio_config);
  201. }
  202. #endif // AUDIO_ENABLE
  203. #ifdef UNICODE_COMMON_ENABLE
  204. void eeconfig_read_unicode_mode(unicode_config_t *unicode_config) {
  205. return nvm_eeconfig_read_unicode_mode(unicode_config);
  206. }
  207. void eeconfig_update_unicode_mode(const unicode_config_t *unicode_config) {
  208. nvm_eeconfig_update_unicode_mode(unicode_config);
  209. }
  210. #endif // UNICODE_COMMON_ENABLE
  211. #ifdef BACKLIGHT_ENABLE
  212. void eeconfig_read_backlight(backlight_config_t *backlight_config) {
  213. nvm_eeconfig_read_backlight(backlight_config);
  214. }
  215. void eeconfig_update_backlight(const backlight_config_t *backlight_config) {
  216. nvm_eeconfig_update_backlight(backlight_config);
  217. }
  218. #endif // BACKLIGHT_ENABLE
  219. #ifdef STENO_ENABLE
  220. uint8_t eeconfig_read_steno_mode(void) {
  221. return nvm_eeconfig_read_steno_mode();
  222. }
  223. void eeconfig_update_steno_mode(uint8_t val) {
  224. nvm_eeconfig_update_steno_mode(val);
  225. }
  226. #endif // STENO_ENABLE
  227. #ifdef RGB_MATRIX_ENABLE
  228. void eeconfig_read_rgb_matrix(rgb_config_t *rgb_matrix_config) {
  229. nvm_eeconfig_read_rgb_matrix(rgb_matrix_config);
  230. }
  231. void eeconfig_update_rgb_matrix(const rgb_config_t *rgb_matrix_config) {
  232. nvm_eeconfig_update_rgb_matrix(rgb_matrix_config);
  233. }
  234. #endif // RGB_MATRIX_ENABLE
  235. #ifdef LED_MATRIX_ENABLE
  236. void eeconfig_read_led_matrix(led_eeconfig_t *led_matrix_config) {
  237. nvm_eeconfig_read_led_matrix(led_matrix_config);
  238. }
  239. void eeconfig_update_led_matrix(const led_eeconfig_t *led_matrix_config) {
  240. nvm_eeconfig_update_led_matrix(led_matrix_config);
  241. }
  242. #endif // LED_MATRIX_ENABLE
  243. #ifdef RGBLIGHT_ENABLE
  244. void eeconfig_read_rgblight(rgblight_config_t *rgblight_config) {
  245. nvm_eeconfig_read_rgblight(rgblight_config);
  246. }
  247. void eeconfig_update_rgblight(const rgblight_config_t *rgblight_config) {
  248. nvm_eeconfig_update_rgblight(rgblight_config);
  249. }
  250. #endif // RGBLIGHT_ENABLE
  251. #if (EECONFIG_KB_DATA_SIZE) == 0
  252. uint32_t eeconfig_read_kb(void) {
  253. return nvm_eeconfig_read_kb();
  254. }
  255. void eeconfig_update_kb(uint32_t val) {
  256. nvm_eeconfig_update_kb(val);
  257. }
  258. #endif // (EECONFIG_KB_DATA_SIZE) == 0
  259. #if (EECONFIG_USER_DATA_SIZE) == 0
  260. uint32_t eeconfig_read_user(void) {
  261. return nvm_eeconfig_read_user();
  262. }
  263. void eeconfig_update_user(uint32_t val) {
  264. nvm_eeconfig_update_user(val);
  265. }
  266. #endif // (EECONFIG_USER_DATA_SIZE) == 0
  267. #ifdef HAPTIC_ENABLE
  268. void eeconfig_read_haptic(haptic_config_t *haptic_config) {
  269. nvm_eeconfig_read_haptic(haptic_config);
  270. }
  271. void eeconfig_update_haptic(const haptic_config_t *haptic_config) {
  272. nvm_eeconfig_update_haptic(haptic_config);
  273. }
  274. #endif // HAPTIC_ENABLE
  275. #ifdef CONNECTION_ENABLE
  276. void eeconfig_read_connection(connection_config_t *config) {
  277. nvm_eeconfig_read_connection(config);
  278. }
  279. void eeconfig_update_connection(const connection_config_t *config) {
  280. nvm_eeconfig_update_connection(config);
  281. }
  282. #endif // CONNECTION_ENABLE
  283. bool eeconfig_read_handedness(void) {
  284. return nvm_eeconfig_read_handedness();
  285. }
  286. void eeconfig_update_handedness(bool val) {
  287. nvm_eeconfig_update_handedness(val);
  288. }
  289. #if (EECONFIG_KB_DATA_SIZE) > 0
  290. bool eeconfig_is_kb_datablock_valid(void) {
  291. return nvm_eeconfig_is_kb_datablock_valid();
  292. }
  293. uint32_t eeconfig_read_kb_datablock(void *data, uint32_t offset, uint32_t length) {
  294. return nvm_eeconfig_read_kb_datablock(data, offset, length);
  295. }
  296. uint32_t eeconfig_update_kb_datablock(const void *data, uint32_t offset, uint32_t length) {
  297. return nvm_eeconfig_update_kb_datablock(data, offset, length);
  298. }
  299. __attribute__((weak)) void eeconfig_init_kb_datablock(void) {
  300. nvm_eeconfig_init_kb_datablock();
  301. }
  302. #endif // (EECONFIG_KB_DATA_SIZE) > 0
  303. #if (EECONFIG_USER_DATA_SIZE) > 0
  304. bool eeconfig_is_user_datablock_valid(void) {
  305. return nvm_eeconfig_is_user_datablock_valid();
  306. }
  307. uint32_t eeconfig_read_user_datablock(void *data, uint32_t offset, uint32_t length) {
  308. return nvm_eeconfig_read_user_datablock(data, offset, length);
  309. }
  310. uint32_t eeconfig_update_user_datablock(const void *data, uint32_t offset, uint32_t length) {
  311. return nvm_eeconfig_update_user_datablock(data, offset, length);
  312. }
  313. __attribute__((weak)) void eeconfig_init_user_datablock(void) {
  314. nvm_eeconfig_init_user_datablock();
  315. }
  316. #endif // (EECONFIG_USER_DATA_SIZE) > 0