Convert yosino58 to use split common (#17861)
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					 27 changed files with 96 additions and 2118 deletions
				
			
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			@ -1,20 +1,10 @@
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#include QMK_KEYBOARD_H
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#ifdef PROTOCOL_LUFA
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  #include "lufa.h"
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  #include "split_util.h"
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#endif
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#ifdef SSD1306OLED
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  #include "ssd1306.h"
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#endif
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#ifdef RGBLIGHT_ENABLE
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//Following line allows macro to read current RGB settings
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extern rgblight_config_t rgblight_config;
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#endif
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extern uint8_t is_master;
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// Each layer gets a name for readability, which is then used in the keymap matrix below.
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// The underscores don't mean anything - you can have a layer called STUFF or any other name.
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// Layer names don't all need to be of the same length, obviously, and you can also skip them
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			@ -25,8 +15,7 @@ extern uint8_t is_master;
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#define _ADJUST 3
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enum custom_keycodes {
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  QWERTY = SAFE_RANGE,
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  LOWER,
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  LOWER = SAFE_RANGE,
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  RAISE,
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  ADJUST,
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  RGBRST
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			@ -126,11 +115,6 @@ const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
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int RGB_current_mode;
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void persistent_default_layer_set(uint16_t default_layer) {
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  eeconfig_update_default_layer(default_layer);
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  default_layer_set(default_layer);
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}
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// Setting ADJUST layer RGB back to default
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void update_tri_layer_RGB(uint8_t layer1, uint8_t layer2, uint8_t layer3) {
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  if (IS_LAYER_ON(layer1) && IS_LAYER_ON(layer2)) {
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			@ -144,18 +128,9 @@ void matrix_init_user(void) {
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    #ifdef RGBLIGHT_ENABLE
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      RGB_current_mode = rgblight_config.mode;
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    #endif
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    //SSD1306 OLED init, make sure to add #define SSD1306OLED in config.h
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    #ifdef SSD1306OLED
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      #ifdef SSD1306_128X64
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        iota_gfx_init(false);   // turns on the display
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      #else
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        iota_gfx_init(!has_usb());   // turns on the display
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      #endif
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    #endif
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}
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//SSD1306 OLED update loop, make sure to add #define SSD1306OLED in config.h
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#ifdef SSD1306OLED
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#ifdef OLED_ENABLE
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//assign the right code to your layers for OLED display
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#define L_QWERTY 0
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			@ -166,12 +141,8 @@ void matrix_init_user(void) {
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// When add source files to SRC in rules.mk, you can use functions.
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const char *read_logo(void);
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void matrix_scan_user(void) {
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   iota_gfx_task();
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}
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void matrix_render_user(struct CharacterMatrix *matrix) {
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  if (is_master) {
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bool oled_task_user(void) {
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  if (is_keyboard_master()) {
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    static char indctr[2][20][5]=
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    {
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      // white icon
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			@ -235,58 +206,40 @@ void matrix_render_user(struct CharacterMatrix *matrix) {
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    if (layer_state == L_RAISE) { rowr = 1; }
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    if (layer_state == L_ADJUST) { rowa = 1; }
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    matrix_write(matrix, indctr[rowl]  [0]);
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    matrix_write(matrix, indctr[rowr]  [1]);
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    matrix_write(matrix, indctr[rowa]  [2]);
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    matrix_write(matrix, indctr[rowc]  [3]);
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    matrix_write(matrix, indctr[rown]  [4]);
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    matrix_write_char(matrix, 0x13);
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    matrix_write(matrix, indctr[rowl]  [5]);
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    matrix_write(matrix, indctr[rowr]  [6]);
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    matrix_write(matrix, indctr[rowa]  [7]);
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    matrix_write(matrix, indctr[rowc]  [8]);
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    matrix_write(matrix, indctr[rown]  [9]);
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    matrix_write_char(matrix, 0x13);
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    matrix_write(matrix, indctr[rowl]  [10]);
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    matrix_write(matrix, indctr[rowr]  [11]);
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    matrix_write(matrix, indctr[rowa]  [12]);
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    matrix_write(matrix, indctr[rowc]  [13]);
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    matrix_write(matrix, indctr[rown]  [14]);
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    matrix_write_char(matrix, 0x13);
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    matrix_write(matrix, indctr[rowl]  [15]);
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    matrix_write(matrix, indctr[rowr]  [16]);
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    matrix_write(matrix, indctr[rowa]  [17]);
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    matrix_write(matrix, indctr[rowc]  [18]);
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    matrix_write(matrix, indctr[rown]  [19]);
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    oled_write(indctr[rowl]  [0], false);
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    oled_write(indctr[rowr]  [1], false);
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    oled_write(indctr[rowa]  [2], false);
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    oled_write(indctr[rowc]  [3], false);
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    oled_write(indctr[rown]  [4], false);
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    oled_write_char(0x13, false);
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    oled_write(indctr[rowl]  [5], false);
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    oled_write(indctr[rowr]  [6], false);
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    oled_write(indctr[rowa]  [7], false);
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    oled_write(indctr[rowc]  [8], false);
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    oled_write(indctr[rown]  [9], false);
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    oled_write_char(0x13, false);
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    oled_write(indctr[rowl]  [10], false);
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    oled_write(indctr[rowr]  [11], false);
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    oled_write(indctr[rowa]  [12], false);
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    oled_write(indctr[rowc]  [13], false);
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    oled_write(indctr[rown]  [14], false);
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    oled_write_char(0x13, false);
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    oled_write(indctr[rowl]  [15], false);
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    oled_write(indctr[rowr]  [16], false);
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    oled_write(indctr[rowa]  [17], false);
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    oled_write(indctr[rowc]  [18], false);
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    oled_write(indctr[rown]  [19], false);
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  }else{
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    matrix_write(matrix, read_logo());
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    oled_write(read_logo(), false);
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  }
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  return false;
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}
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void matrix_update(struct CharacterMatrix *dest, const struct CharacterMatrix *source) {
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  if (memcmp(dest->display, source->display, sizeof(dest->display))) {
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    memcpy(dest->display, source->display, sizeof(dest->display));
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    dest->dirty = true;
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  }
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}
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void iota_gfx_task_user(void) {
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  struct CharacterMatrix matrix;
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  matrix_clear(&matrix);
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  matrix_render_user(&matrix);
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  matrix_update(&display, &matrix);  
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}
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#endif//SSD1306OLED
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#endif
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bool process_record_user(uint16_t keycode, keyrecord_t *record) {
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  switch (keycode) {
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    case QWERTY:
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      if (record->event.pressed) {
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        persistent_default_layer_set(1UL<<_QWERTY);
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      }
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      return false;
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      break;
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    case LOWER:
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      if (record->event.pressed) {
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        layer_on(_LOWER);
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