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	Shifted PG_ODK
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					 7 changed files with 32 additions and 88 deletions
				
			
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			@ -22,33 +22,21 @@
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void get_clever_keycode(uint16_t* next_keycode, keyrecord_t* record) {
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  uint16_t prev_keycode = recent[RECENT_SIZE - 1];
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  //static bool is_shifted = false;
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    // Apostrophe
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    if (is_followed_by_apos(*next_keycode, prev_keycode)) {
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      set_last_keycode(PG_APOS);
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      //apostrophe = true;
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    }
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    //if (is_caps_lock_on()) {
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/*       if (is_letter(*next_keycode) || is_send_string_macro(*next_keycode)) {
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        if (recent[RECENT_SIZE - 3] == PG_E && recent[RECENT_SIZE - 2] == PG_T && prev_keycode == KC_SPC) {
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          caps_word_on();
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        }
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        if (recent[RECENT_SIZE - 2] == PG_VIRG && prev_keycode == KC_SPC && is_letter(*next_keycode)) {
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          caps_word_on();
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        }
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      } */
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    //}
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  switch (prev_keycode) {
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    case NNB_SPC:
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      switch (*next_keycode) {
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        // Shift auto de la ponctuation après une espace fine insécable
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        case PG_POIN:
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          process_word((uint16_t[]) {KC_BSPC, SAGR(KC_SPC)}, 2, record);
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          // uses less space than process_word
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          tap_code(KC_BSPC);
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          process_key(SAGR(KC_SPC), record);
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        case PG_TIRE:
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        case PG_VIRG:
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          return replace_ongoing_key(S(*next_keycode), next_keycode, record);
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			@ -64,7 +52,7 @@ void get_clever_keycode(uint16_t* next_keycode, keyrecord_t* record) {
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          // Shift the letter at the beginning of sentences.
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          if (is_letter(*next_keycode) || is_send_string_macro(*next_keycode)) {
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            //if (!is_caps_lock_on()) { add_weak_mods(MOD_BIT(KC_LSFT)); }
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            add_weak_mods(MOD_BIT(KC_LSFT));
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            set_oneshot_mods(MOD_BIT(KC_LSFT));     // Don't use weak mods !
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          }
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          break;
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      }
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			@ -119,15 +107,11 @@ void get_clever_keycode(uint16_t* next_keycode, keyrecord_t* record) {
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      switch (prev_keycode) {
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        case PG_O:
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          // oui
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          invoke_key(PG_U, record);
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          process_key(PG_U, record);
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        case PG_U:
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          // ui SFB
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          return replace_ongoing_key(PG_I, next_keycode, record);
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/*         case PG_L:
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          // là
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          return finish_word((uint16_t[]) {PG_ODK, PG_A}, 2, next_keycode, record); */
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        case PG_EACU:
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          // éa SFB
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          return replace_ongoing_key(PG_A, next_keycode, record);
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			@ -154,18 +138,26 @@ void get_clever_keycode(uint16_t* next_keycode, keyrecord_t* record) {
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        case PG_Q:
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          // qué scissor
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          return finish_word((uint16_t[]) {PG_U, PG_EACU}, 2, next_keycode, record);
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          //return finish_word((uint16_t[]) {PG_U, PG_EACU}, 2, next_keycode, record);
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          process_key(PG_U,record);
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          return replace_ongoing_key(PG_EACU, next_keycode, record);
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        case PG_Y:
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          // you bad redirection
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          return finish_word((uint16_t[]) {PG_O, PG_U}, 2, next_keycode, record);
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          //return finish_word((uint16_t[]) {PG_O, PG_U}, 2, next_keycode, record);
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          process_key(PG_O,record);
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          return replace_ongoing_key(PG_U, next_keycode, record);
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        case PG_T:
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          // "the"
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          return finish_word((uint16_t[]) {PG_H, PG_E}, 2, next_keycode, record);
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          //return finish_word((uint16_t[]) {PG_H, PG_E}, 2, next_keycode, record);
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          process_key(PG_H,record);
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          return replace_ongoing_key(PG_E, next_keycode, record);
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        case PG_I:
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          return finish_word((uint16_t[]) {PG_O, PG_N}, 2, next_keycode, record);
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          //return finish_word((uint16_t[]) {PG_O, PG_N}, 2, next_keycode, record);
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          process_key(PG_O,record);
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          return replace_ongoing_key(PG_N, next_keycode, record);
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        case PG_M:
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          if (is_letter(recent[RECENT_SIZE - 2])) {
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			@ -187,11 +179,6 @@ void get_clever_keycode(uint16_t* next_keycode, keyrecord_t* record) {
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        default:
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          // "à"
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          process_key(PG_ODK,record);
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          if (is_shifted) {
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              is_shifted = false;
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              add_weak_mods(MOD_BIT(KC_LSFT));
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          }
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          return replace_ongoing_key(PG_A, next_keycode, record);
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      }
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			@ -231,26 +218,10 @@ void get_clever_keycode(uint16_t* next_keycode, keyrecord_t* record) {
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      }
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      break;
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/*     case PG_R:
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      if (prev_keycode == PG_L) {
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          // "lr" -> "l" + 1DK
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          //bkspc_countdown = 0;
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          return replace_ongoing_key(OS_ODK, next_keycode, record);
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      }
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      break; */
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    case OU_GRV:
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      layer_off(_ODK);
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      return finish_word((uint16_t[]) {PG_O, PG_ODK, PG_N}, 3, next_keycode, record);
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/*      case PG_BL:
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      layer_off(_ODK);
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      return finish_word((uint16_t[]) {PG_B, PG_L}, 2, next_keycode, record); */
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/*     case J_APOS:
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      layer_off(_ODK);
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      return finish_word((uint16_t[]) {PG_J, PG_APOS}, 2, next_keycode, record); */
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    case PG_APOS:
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      if (is_apos_dr) { return replace_ongoing_key(PG_APOD, next_keycode, record); }
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      break;
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			@ -133,7 +133,6 @@ void process_key(uint16_t keycode, keyrecord_t* record) {
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void invoke_key(uint16_t keycode, keyrecord_t* record) {
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  process_key(keycode, record);  // tap_code doesn't work with caps word.
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  //record->keycode = keycode;
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  bkspc_countdown = 1;
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}
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			@ -148,10 +147,15 @@ void process_word(uint16_t keycodes[], uint8_t num_keycodes, keyrecord_t* record
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  for (int i = 0; i < num_keycodes; ++i) {
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    process_key(keycodes[i], record);  // tap_code doesn't work with caps word.
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  }
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  bkspc_countdown = num_keycodes;
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}
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void finish_word(uint16_t keycodes[], uint8_t num_keycodes, uint16_t* ongoing_keycode, keyrecord_t* record) {
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  process_word(keycodes, num_keycodes - 1, record);
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  bkspc_countdown = num_keycodes - 1;
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  replace_ongoing_key(keycodes[num_keycodes - 1], ongoing_keycode, record);
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}
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void finish_magic(uint16_t keycodes[], uint8_t num_keycodes, uint16_t* ongoing_keycode, keyrecord_t* record) {
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  process_word(keycodes, num_keycodes - 1, record);
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  replace_ongoing_key(keycodes[num_keycodes - 1], ongoing_keycode, record);
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}
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			@ -40,6 +40,7 @@ void invoke_key(uint16_t keycode, keyrecord_t* record);
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void replace_ongoing_key(uint16_t clever_keycode, uint16_t* ongoing_keycode, keyrecord_t* record);
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void process_word(uint16_t keycodes[], uint8_t num_keycodes, keyrecord_t* record);
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void finish_word(uint16_t keycodes[], uint8_t num_keycodes, uint16_t* ongoing_keycode, keyrecord_t* record);
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void finish_magic(uint16_t keycodes[], uint8_t num_keycodes, uint16_t* ongoing_keycode, keyrecord_t* record);
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bool process_clever_keys(uint16_t keycode, keyrecord_t* record);
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void end_CK(keyrecord_t* record);
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			@ -19,8 +19,6 @@
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bool is_apos_dr = false;
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bool process_macros(uint16_t keycode, keyrecord_t *record) {
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    //const uint8_t mods = get_mods();
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    //static bool is_shifted = false;
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    if (record->event.pressed) {    // Handling of other macros (on press).
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        switch (keycode) {
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			@ -52,7 +50,7 @@ bool process_macros(uint16_t keycode, keyrecord_t *record) {
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                layer_clear();
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                clear_oneshot_mods();
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                clear_weak_mods();
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                //clear_weak_mods();
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                caps_word_off();
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                disable_num_word();
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                clear_recent_keys();
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			@ -74,18 +72,7 @@ bool process_macros(uint16_t keycode, keyrecord_t *record) {
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                return false;
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            case NUM_ODK:
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                bool is_shifted = (get_mods() | get_weak_mods() | get_oneshot_mods()) & MOD_MASK_SHIFT;
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                if (is_shifted) {
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                    del_weak_mods(MOD_MASK_SHIFT);
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                    del_oneshot_mods(MOD_MASK_SHIFT);
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                    unregister_mods(MOD_MASK_SHIFT);
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                }
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                tap_code(PG_ODK);
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                if (is_shifted) {
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                    is_shifted = false;
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                    set_oneshot_mods(MOD_BIT(KC_LSFT));
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                }
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                return true;
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            case PG_DEG:
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			@ -16,15 +16,12 @@
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#include "odk_layer.h"
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bool is_shifted = false;
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bool process_odk_layer(uint16_t keycode, keyrecord_t *record) {
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    if (record->event.pressed) {    // On press
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        const uint8_t mods = get_mods() | get_weak_mods() | get_oneshot_mods();
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        //const uint8_t mods = get_mods() | get_oneshot_mods();
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        //static bool is_shifted = false;
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        if (keycode == OS_ODK) {
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            // Custom behaviour when alt-gr
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			@ -36,13 +33,12 @@ bool process_odk_layer(uint16_t keycode, keyrecord_t *record) {
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        } else if (keycode == PG_ODK) {
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            // Special behaviour of PG_ODK when shifted
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            // Shift must apply to the next keycode
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            is_shifted = mods & MOD_MASK_SHIFT;
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            if (is_shifted) {
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            if (mods & MOD_MASK_SHIFT) {
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                del_weak_mods(MOD_MASK_SHIFT);
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                del_oneshot_mods(MOD_MASK_SHIFT);
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                unregister_mods(MOD_MASK_SHIFT);
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                tap_code(PG_ODK);
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                add_weak_mods(MOD_BIT(KC_LSFT));
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                set_oneshot_mods(MOD_BIT(KC_LSFT));     // Don't use weak mods !
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                return false;
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            }
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			@ -61,23 +57,12 @@ bool process_odk_layer(uint16_t keycode, keyrecord_t *record) {
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                        break;
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                    default:
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                        //tap_code(PG_ODK);
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                        // Don't use tap_code, it doesn't go through process_record.
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                        // therefore it doesn't trigger the special behaviour of PG_ODK described above
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                        invoke_key(PG_ODK, record);
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                }
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            }
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/*             if (is_shifted) {
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                is_shifted = false;
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                //set_mods(mods);
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                add_weak_mods(MOD_BIT(KC_LSFT));
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            } */
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        }
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    }
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    return true;
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}
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/* void odk_layer_exit_check(uint16_t keycode) {
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    if (keycode == odk_keycode) {
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        layer_off(_ODK);
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        odk_keycode = KC_NO;
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    }
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} */
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			@ -24,10 +24,7 @@
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extern "C" {
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#endif
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extern bool is_shifted;
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bool process_odk_layer(uint16_t keycode, keyrecord_t *record);
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//void odk_layer_exit_check(uint16_t keycode);
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#ifdef __cplusplus
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}
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			@ -299,6 +299,5 @@ uint16_t get_alt_repeat_key_keycode_user(uint16_t keycode, uint8_t mods) {
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  if (recent[RECENT_SIZE - 1] != KC_NO) { return MAGIC; }
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  if (get_last_keycode() == KC_NO) { return MAGIC; }
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  return KC_TRNS;  // Defer to default definitions.
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}
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