Change handling of adjust layer to make it more LT(...) friendly. (#1625)
* Change handling of adjust layer to make it more LT(...) friendly. * Update based on feedback from drashna. * Change handling of adjust layer to make it more LT(...) friendly. This reworks handling to make it a little more friendly to include in keymaps.
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3 changed files with 15 additions and 27 deletions
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@ -34,12 +34,13 @@ enum planck_keycodes {
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COLEMAK,
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COLEMAK,
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DVORAK,
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DVORAK,
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PLOVER,
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PLOVER,
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LOWER,
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RAISE,
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BACKLIT,
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BACKLIT,
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EXT_PLV
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EXT_PLV
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};
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};
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#define LOWER MO(_LOWER)
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#define RAISE MO(_RAISE)
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const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
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const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
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/* Qwerty
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/* Qwerty
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@ -177,6 +178,10 @@ const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
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float plover_gb_song[][2] = SONG(PLOVER_GOODBYE_SOUND);
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float plover_gb_song[][2] = SONG(PLOVER_GOODBYE_SOUND);
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#endif
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#endif
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uint32_t layer_state_set_user(uint32_t state) {
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return update_tri_layer_state(state, _LOWER, _RAISE, _ADJUST);
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}
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bool process_record_user(uint16_t keycode, keyrecord_t *record) {
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bool process_record_user(uint16_t keycode, keyrecord_t *record) {
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switch (keycode) {
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switch (keycode) {
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case QWERTY:
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case QWERTY:
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@ -198,26 +203,6 @@ bool process_record_user(uint16_t keycode, keyrecord_t *record) {
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}
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}
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return false;
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return false;
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break;
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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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update_tri_layer(_LOWER, _RAISE, _ADJUST);
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} else {
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layer_off(_LOWER);
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update_tri_layer(_LOWER, _RAISE, _ADJUST);
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}
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return false;
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break;
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case RAISE:
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if (record->event.pressed) {
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layer_on(_RAISE);
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update_tri_layer(_LOWER, _RAISE, _ADJUST);
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} else {
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layer_off(_RAISE);
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update_tri_layer(_LOWER, _RAISE, _ADJUST);
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}
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return false;
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break;
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case BACKLIT:
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case BACKLIT:
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if (record->event.pressed) {
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if (record->event.pressed) {
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register_code(KC_RSFT);
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register_code(KC_RSFT);
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@ -780,12 +780,14 @@ void set_single_persistent_default_layer(uint8_t default_layer) {
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default_layer_set(1U<<default_layer);
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default_layer_set(1U<<default_layer);
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}
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}
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void update_tri_layer(uint8_t layer1, uint8_t layer2, uint8_t layer3) {
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uint32_t update_tri_layer_state(uint32_t state, 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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uint32_t mask12 = (1UL << layer1) | (1UL << layer2);
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layer_on(layer3);
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uint32_t mask3 = 1UL << layer3;
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} else {
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return (state & mask12) == mask12 ? (state | mask3) : (state & ~mask3);
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layer_off(layer3);
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}
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}
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void update_tri_layer(uint8_t layer1, uint8_t layer2, uint8_t layer3) {
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layer_state_set(update_tri_layer_state(layer_state, layer1, layer2, layer3));
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}
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}
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void tap_random_base64(void) {
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void tap_random_base64(void) {
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@ -142,6 +142,7 @@ void send_char(char ascii_code);
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// For tri-layer
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// For tri-layer
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void update_tri_layer(uint8_t layer1, uint8_t layer2, uint8_t layer3);
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void update_tri_layer(uint8_t layer1, uint8_t layer2, uint8_t layer3);
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uint32_t update_tri_layer_state(uint32_t state, uint8_t layer1, uint8_t layer2, uint8_t layer3);
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void set_single_persistent_default_layer(uint8_t default_layer);
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void set_single_persistent_default_layer(uint8_t default_layer);
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