forked from mirrors/qmk_userspace
Format code according to conventions (#15193)
This commit is contained in:
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b06740c933
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35 changed files with 576 additions and 516 deletions
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@ -18,10 +18,9 @@
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#include "process_combo.h"
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#include "action_tapping.h"
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#ifdef COMBO_COUNT
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__attribute__((weak)) combo_t key_combos[COMBO_COUNT];
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uint16_t COMBO_LEN = COMBO_COUNT;
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__attribute__((weak)) combo_t key_combos[COMBO_COUNT];
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uint16_t COMBO_LEN = COMBO_COUNT;
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#else
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extern combo_t key_combos[];
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extern uint16_t COMBO_LEN;
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@ -46,64 +45,86 @@ __attribute__((weak)) bool process_combo_key_release(uint16_t combo_index, combo
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#endif
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#ifndef COMBO_NO_TIMER
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static uint16_t timer = 0;
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static uint16_t timer = 0;
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#endif
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static bool b_combo_enable = true; // defaults to enabled
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static uint16_t longest_term = 0;
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static bool b_combo_enable = true; // defaults to enabled
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static uint16_t longest_term = 0;
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typedef struct {
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keyrecord_t record;
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uint16_t combo_index;
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uint16_t keycode;
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uint16_t combo_index;
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uint16_t keycode;
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} queued_record_t;
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static uint8_t key_buffer_size = 0;
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static uint8_t key_buffer_size = 0;
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static queued_record_t key_buffer[COMBO_KEY_BUFFER_LENGTH];
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typedef struct {
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uint16_t combo_index;
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} queued_combo_t;
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static uint8_t combo_buffer_write= 0;
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static uint8_t combo_buffer_read = 0;
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static uint8_t combo_buffer_write = 0;
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static uint8_t combo_buffer_read = 0;
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static queued_combo_t combo_buffer[COMBO_BUFFER_LENGTH];
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#define INCREMENT_MOD(i) i = (i + 1) % COMBO_BUFFER_LENGTH
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#define COMBO_KEY_POS ((keypos_t){.col=254, .row=254})
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#define COMBO_KEY_POS ((keypos_t){.col = 254, .row = 254})
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#ifndef EXTRA_SHORT_COMBOS
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/* flags are their own elements in combo_t struct. */
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# define COMBO_ACTIVE(combo) (combo->active)
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# define COMBO_ACTIVE(combo) (combo->active)
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# define COMBO_DISABLED(combo) (combo->disabled)
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# define COMBO_STATE(combo) (combo->state)
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# define COMBO_STATE(combo) (combo->state)
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# define ACTIVATE_COMBO(combo) do {combo->active = true;}while(0)
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# define DEACTIVATE_COMBO(combo) do {combo->active = false;}while(0)
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# define DISABLE_COMBO(combo) do {combo->disabled = true;}while(0)
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# define RESET_COMBO_STATE(combo) do { \
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combo->disabled = false; \
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combo->state = 0; \
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}while(0)
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# define ACTIVATE_COMBO(combo) \
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do { \
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combo->active = true; \
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} while (0)
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# define DEACTIVATE_COMBO(combo) \
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do { \
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combo->active = false; \
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} while (0)
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# define DISABLE_COMBO(combo) \
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do { \
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combo->disabled = true; \
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} while (0)
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# define RESET_COMBO_STATE(combo) \
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do { \
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combo->disabled = false; \
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combo->state = 0; \
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} while (0)
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#else
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/* flags are at the two high bits of state. */
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# define COMBO_ACTIVE(combo) (combo->state & 0x80)
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# define COMBO_ACTIVE(combo) (combo->state & 0x80)
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# define COMBO_DISABLED(combo) (combo->state & 0x40)
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# define COMBO_STATE(combo) (combo->state & 0x3F)
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# define COMBO_STATE(combo) (combo->state & 0x3F)
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# define ACTIVATE_COMBO(combo) do {combo->state |= 0x80;}while(0)
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# define DEACTIVATE_COMBO(combo) do {combo->state &= ~0x80;}while(0)
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# define DISABLE_COMBO(combo) do {combo->state |= 0x40;}while(0)
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# define RESET_COMBO_STATE(combo) do {combo->state &= ~0x7F;}while(0)
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# define ACTIVATE_COMBO(combo) \
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do { \
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combo->state |= 0x80; \
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} while (0)
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# define DEACTIVATE_COMBO(combo) \
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do { \
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combo->state &= ~0x80; \
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} while (0)
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# define DISABLE_COMBO(combo) \
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do { \
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combo->state |= 0x40; \
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} while (0)
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# define RESET_COMBO_STATE(combo) \
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do { \
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combo->state &= ~0x7F; \
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} while (0)
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#endif
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static inline void release_combo(uint16_t combo_index, combo_t *combo) {
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if (combo->keycode) {
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keyrecord_t record = {
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.event = {
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.key = COMBO_KEY_POS,
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.time = timer_read()|1,
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.pressed = false,
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},
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.event =
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{
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.key = COMBO_KEY_POS,
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.time = timer_read() | 1,
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.pressed = false,
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},
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.keycode = combo->keycode,
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};
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#ifndef NO_ACTION_TAPPING
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@ -123,18 +144,17 @@ static inline bool _get_combo_must_hold(uint16_t combo_index, combo_t *combo) {
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#elif defined(COMBO_MUST_HOLD_PER_COMBO)
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return get_combo_must_hold(combo_index, combo);
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#elif defined(COMBO_MUST_HOLD_MODS)
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return (KEYCODE_IS_MOD(combo->keycode) ||
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(combo->keycode >= QK_MOMENTARY && combo->keycode <= QK_MOMENTARY_MAX));
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return (KEYCODE_IS_MOD(combo->keycode) || (combo->keycode >= QK_MOMENTARY && combo->keycode <= QK_MOMENTARY_MAX));
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#endif
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return false;
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}
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static inline uint16_t _get_wait_time(uint16_t combo_index, combo_t *combo ) {
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static inline uint16_t _get_wait_time(uint16_t combo_index, combo_t *combo) {
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if (_get_combo_must_hold(combo_index, combo)
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#ifdef COMBO_MUST_TAP_PER_COMBO
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|| get_combo_must_tap(combo_index, combo)
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|| get_combo_must_tap(combo_index, combo)
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#endif
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) {
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) {
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if (longest_term < COMBO_HOLD_TERM) {
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return COMBO_HOLD_TERM;
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}
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@ -144,9 +164,8 @@ static inline uint16_t _get_wait_time(uint16_t combo_index, combo_t *combo ) {
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}
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static inline uint16_t _get_combo_term(uint16_t combo_index, combo_t *combo) {
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#if defined(COMBO_TERM_PER_COMBO)
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return get_combo_term(combo_index, combo);
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return get_combo_term(combo_index, combo);
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#endif
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return COMBO_TERM;
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@ -154,7 +173,7 @@ static inline uint16_t _get_combo_term(uint16_t combo_index, combo_t *combo) {
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void clear_combos(void) {
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uint16_t index = 0;
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longest_term = 0;
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longest_term = 0;
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for (index = 0; index < COMBO_LEN; ++index) {
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combo_t *combo = &key_combos[index];
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if (!COMBO_ACTIVE(combo)) {
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@ -175,7 +194,7 @@ static inline void dump_key_buffer(void) {
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key_buffer_next = key_buffer_i + 1;
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queued_record_t *qrecord = &key_buffer[key_buffer_i];
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keyrecord_t *record = &qrecord->record;
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keyrecord_t * record = &qrecord->record;
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if (IS_NOEVENT(record->event)) {
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continue;
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@ -185,9 +204,9 @@ static inline void dump_key_buffer(void) {
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process_combo_event(qrecord->combo_index, true);
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} else {
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#ifndef NO_ACTION_TAPPING
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action_tapping_process(*record);
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action_tapping_process(*record);
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#else
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process_record(record);
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process_record(record);
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#endif
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}
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record->event.time = 0;
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@ -242,7 +261,9 @@ void apply_combo(uint16_t combo_index, combo_t *combo) {
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/* Apply combo's result keycode to the last chord key of the combo and
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* disable the other keys. */
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if (COMBO_DISABLED(combo)) { return; }
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if (COMBO_DISABLED(combo)) {
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return;
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}
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// state to check against so we find the last key of the combo from the buffer
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#if defined(EXTRA_EXTRA_LONG_COMBOS)
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@ -254,12 +275,11 @@ void apply_combo(uint16_t combo_index, combo_t *combo) {
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#endif
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for (uint8_t key_buffer_i = 0; key_buffer_i < key_buffer_size; key_buffer_i++) {
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queued_record_t *qrecord = &key_buffer[key_buffer_i];
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keyrecord_t *record = &qrecord->record;
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uint16_t keycode = qrecord->keycode;
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keyrecord_t * record = &qrecord->record;
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uint16_t keycode = qrecord->keycode;
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uint8_t key_count = 0;
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uint8_t key_count = 0;
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uint16_t key_index = -1;
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_find_key_index_and_count(combo->keys, keycode, &key_index, &key_count);
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@ -271,7 +291,7 @@ void apply_combo(uint16_t combo_index, combo_t *combo) {
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KEY_STATE_DOWN(state, key_index);
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if (ALL_COMBO_KEYS_ARE_DOWN(state, key_count)) {
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// this in the end executes the combo when the key_buffer is dumped.
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record->keycode = combo->keycode;
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record->keycode = combo->keycode;
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record->event.key = COMBO_KEY_POS;
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qrecord->combo_index = combo_index;
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@ -283,19 +303,15 @@ void apply_combo(uint16_t combo_index, combo_t *combo) {
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// by making it a TICK event.
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record->event.time = 0;
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}
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}
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drop_combo_from_buffer(combo_index);
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}
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static inline void apply_combos(void) {
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// Apply all buffered normal combos.
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for (uint8_t i = combo_buffer_read;
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i != combo_buffer_write;
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INCREMENT_MOD(i)) {
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for (uint8_t i = combo_buffer_read; i != combo_buffer_write; INCREMENT_MOD(i)) {
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queued_combo_t *buffered_combo = &combo_buffer[i];
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combo_t *combo = &key_combos[buffered_combo->combo_index];
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combo_t * combo = &key_combos[buffered_combo->combo_index];
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#ifdef COMBO_MUST_TAP_PER_COMBO
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if (get_combo_must_tap(buffered_combo->combo_index, combo)) {
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clear_combos();
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}
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combo_t* overlaps(combo_t *combo1, combo_t *combo2) {
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combo_t *overlaps(combo_t *combo1, combo_t *combo2) {
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/* Checks if the combos overlap and returns the combo that should be
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* dropped from the combo buffer.
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* The combo that has less keys will be dropped. If they have the same
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* amount of keys, drop combo1. */
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uint8_t idx1 = 0, idx2 = 0;
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uint8_t idx1 = 0, idx2 = 0;
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uint16_t key1, key2;
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bool overlaps = false;
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bool overlaps = false;
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while ((key1 = pgm_read_word(&combo1->keys[idx1])) != COMBO_END) {
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idx2 = 0;
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}
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static bool process_single_combo(combo_t *combo, uint16_t keycode, keyrecord_t *record, uint16_t combo_index) {
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uint8_t key_count = 0;
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uint8_t key_count = 0;
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uint16_t key_index = -1;
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_find_key_index_and_count(combo->keys, keycode, &key_index, &key_count);
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@ -369,12 +385,9 @@ static bool process_single_combo(combo_t *combo, uint16_t keycode, keyrecord_t *
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// disable readied combos that overlap with this combo
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combo_t *drop = NULL;
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for (uint8_t combo_buffer_i = combo_buffer_read;
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combo_buffer_i != combo_buffer_write;
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INCREMENT_MOD(combo_buffer_i)) {
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queued_combo_t *qcombo = &combo_buffer[combo_buffer_i];
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combo_t *buffered_combo = &key_combos[qcombo->combo_index];
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for (uint8_t combo_buffer_i = combo_buffer_read; combo_buffer_i != combo_buffer_write; INCREMENT_MOD(combo_buffer_i)) {
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queued_combo_t *qcombo = &combo_buffer[combo_buffer_i];
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combo_t * buffered_combo = &key_combos[qcombo->combo_index];
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if ((drop = overlaps(buffered_combo, combo))) {
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DISABLE_COMBO(drop);
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@ -387,21 +400,19 @@ static bool process_single_combo(combo_t *combo, uint16_t keycode, keyrecord_t *
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INCREMENT_MOD(combo_buffer_read);
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}
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}
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}
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if (drop != combo) {
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// save this combo to buffer
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combo_buffer[combo_buffer_write] = (queued_combo_t){
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.combo_index=combo_index,
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.combo_index = combo_index,
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};
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INCREMENT_MOD(combo_buffer_write);
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// get possible longer waiting time for tap-/hold-only combos.
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longest_term = _get_wait_time(combo_index, combo);
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}
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} // if timer elapsed end
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} // if timer elapsed end
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}
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} else {
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// chord releases
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else if (get_combo_must_tap(combo_index, combo)) {
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// immediately apply tap-only combo
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apply_combo(combo_index, combo);
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apply_combos(); // also apply other prepared combos and dump key buffer
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apply_combos(); // also apply other prepared combos and dump key buffer
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# ifdef COMBO_PROCESS_KEY_RELEASE
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if (process_combo_key_release(combo_index, combo, key_index, keycode)) {
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release_combo(combo_index, combo);
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@ -424,10 +435,7 @@ static bool process_single_combo(combo_t *combo, uint16_t keycode, keyrecord_t *
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# endif
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}
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#endif
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} else if (COMBO_ACTIVE(combo)
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&& ONLY_ONE_KEY_IS_DOWN(COMBO_STATE(combo))
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&& KEY_NOT_YET_RELEASED(COMBO_STATE(combo), key_index)
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) {
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} else if (COMBO_ACTIVE(combo) && ONLY_ONE_KEY_IS_DOWN(COMBO_STATE(combo)) && KEY_NOT_YET_RELEASED(COMBO_STATE(combo), key_index)) {
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/* last key released */
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release_combo(combo_index, combo);
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key_is_part_of_combo = true;
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#ifdef COMBO_PROCESS_KEY_RELEASE
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process_combo_key_release(combo_index, combo, key_index, keycode);
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#endif
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} else if (COMBO_ACTIVE(combo)
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&& KEY_NOT_YET_RELEASED(COMBO_STATE(combo), key_index)
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) {
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} else if (COMBO_ACTIVE(combo) && KEY_NOT_YET_RELEASED(COMBO_STATE(combo), key_index)) {
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/* first or middle key released */
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key_is_part_of_combo = true;
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@ -489,21 +495,21 @@ bool process_combo(uint16_t keycode, keyrecord_t *record) {
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if (record->event.pressed && is_combo_key) {
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#ifndef COMBO_NO_TIMER
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# ifdef COMBO_STRICT_TIMER
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# ifdef COMBO_STRICT_TIMER
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if (!timer) {
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// timer is set only on the first key
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timer = timer_read();
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}
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# else
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# else
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timer = timer_read();
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# endif
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# endif
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#endif
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if (key_buffer_size < COMBO_KEY_BUFFER_LENGTH) {
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key_buffer[key_buffer_size++] = (queued_record_t){
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.record = *record,
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.keycode = keycode,
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.combo_index = -1, // this will be set when applying combos
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.record = *record,
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.keycode = keycode,
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.combo_index = -1, // this will be set when applying combos
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};
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}
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} else {
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@ -532,7 +538,7 @@ void combo_task(void) {
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if (combo_buffer_read != combo_buffer_write) {
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apply_combos();
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longest_term = 0;
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timer = 0;
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timer = 0;
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} else {
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dump_key_buffer();
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timer = 0;
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@ -546,9 +552,9 @@ void combo_enable(void) { b_combo_enable = true; }
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void combo_disable(void) {
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#ifndef COMBO_NO_TIMER
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timer = 0;
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timer = 0;
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#endif
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b_combo_enable = false;
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b_combo_enable = false;
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combo_buffer_read = combo_buffer_write;
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clear_combos();
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dump_key_buffer();
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