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520 lines
19 KiB
520 lines
19 KiB
/* |
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* Copyright (c) 2020 The ZMK Contributors |
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* |
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* SPDX-License-Identifier: MIT |
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*/ |
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#define DT_DRV_COMPAT zmk_behavior_hold_tap |
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#include <device.h> |
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#include <drivers/behavior.h> |
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#include <logging/log.h> |
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#include <zmk/behavior.h> |
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#include <zmk/matrix.h> |
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#include <zmk/endpoints.h> |
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#include <zmk/event-manager.h> |
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#include <zmk/events/position-state-changed.h> |
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#include <zmk/events/keycode-state-changed.h> |
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#include <zmk/events/modifiers-state-changed.h> |
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#include <zmk/hid.h> |
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#include <zmk/behavior.h> |
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LOG_MODULE_DECLARE(zmk, CONFIG_ZMK_LOG_LEVEL); |
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#if DT_NODE_EXISTS(DT_DRV_INST(0)) |
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#define ZMK_BHV_HOLD_TAP_MAX_HELD 10 |
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#define ZMK_BHV_HOLD_TAP_MAX_CAPTURED_EVENTS 40 |
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// increase if you have keyboard with more keys. |
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#define ZMK_BHV_HOLD_TAP_POSITION_NOT_USED 9999 |
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enum flavor { |
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ZMK_BHV_HOLD_TAP_FLAVOR_HOLD_PREFERRED = 0, |
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ZMK_BHV_HOLD_TAP_FLAVOR_BALANCED = 1, |
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ZMK_BHV_HOLD_TAP_FLAVOR_TAP_PREFERRED = 2, |
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}; |
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struct behavior_hold_tap_behaviors { |
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struct zmk_behavior_binding tap; |
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struct zmk_behavior_binding hold; |
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}; |
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struct behavior_hold_tap_config { |
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int tapping_term_ms; |
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struct behavior_hold_tap_behaviors *behaviors; |
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enum flavor flavor; |
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}; |
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// this data is specific for each hold-tap |
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struct active_hold_tap { |
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s32_t position; |
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// todo: move these params into the config->behaviors->tap and |
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u32_t param_hold; |
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u32_t param_tap; |
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s64_t timestamp; |
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bool is_decided; |
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bool is_hold; |
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const struct behavior_hold_tap_config *config; |
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struct k_delayed_work work; |
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bool work_is_cancelled; |
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}; |
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// The undecided hold tap is the hold tap that needs to be decided before |
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// other keypress events can be released. While the undecided_hold_tap is |
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// not NULL, most events are captured in captured_events. |
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// After the hold_tap is decided, it will stay in the active_hold_taps until |
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// its key-up has been processed and the delayed work is cleaned up. |
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struct active_hold_tap *undecided_hold_tap = NULL; |
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struct active_hold_tap active_hold_taps[ZMK_BHV_HOLD_TAP_MAX_HELD] = {}; |
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// We capture most position_state_changed events and some modifiers_state_changed events. |
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const struct zmk_event_header *captured_events[ZMK_BHV_HOLD_TAP_MAX_CAPTURED_EVENTS] = {}; |
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static int capture_event(const struct zmk_event_header *event) { |
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for (int i = 0; i < ZMK_BHV_HOLD_TAP_MAX_CAPTURED_EVENTS; i++) { |
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if (captured_events[i] == NULL) { |
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captured_events[i] = event; |
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return 0; |
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} |
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} |
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return -ENOMEM; |
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} |
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static struct position_state_changed *find_captured_keydown_event(u32_t position) { |
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struct position_state_changed *last_match = NULL; |
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for (int i = 0; i < ZMK_BHV_HOLD_TAP_MAX_CAPTURED_EVENTS; i++) { |
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const struct zmk_event_header *eh = captured_events[i]; |
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if (eh == NULL) { |
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return last_match; |
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} |
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if (!is_position_state_changed(eh)) { |
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continue; |
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} |
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struct position_state_changed *position_event = cast_position_state_changed(eh); |
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if (position_event->position == position && position_event->state) { |
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last_match = position_event; |
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} |
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} |
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return last_match; |
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} |
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const struct zmk_listener zmk_listener_behavior_hold_tap; |
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static void release_captured_events() { |
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if (undecided_hold_tap != NULL) { |
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return; |
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} |
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// We use a trick to prevent copying the captured_events array. |
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// |
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// Events for different mod-tap instances are separated by a NULL pointer. |
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// |
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// The first event popped will never be catched by the next active hold-tap |
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// because to start capturing a mod-tap-key-down event must first completely |
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// go through the events queue. |
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// |
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// Example of this release process; |
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// [mt2_down, k1_down, k1_up, mt2_up, null, ...] |
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// ^ |
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// mt2_down position event isn't captured because no hold-tap is active. |
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// mt2_down behavior event is handled, now we have an undecided hold-tap |
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// [null, k1_down, k1_up, mt2_up, null, ...] |
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// ^ |
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// k1_down is captured by the mt2 mod-tap |
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// !note that searches for find_captured_keydown_event by the mt2 behavior will stop at the |
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// first null encountered [mt1_down, null, k1_up, mt2_up, null, ...] |
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// ^ |
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// k1_up event is captured by the new hold-tap: |
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// [k1_down, k1_up, null, mt2_up, null, ...] |
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// ^ |
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// mt2_up event is not captured but causes release of mt2 behavior |
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// [k1_down, k1_up, null, null, null, ...] |
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// now mt2 will start releasing it's own captured positions. |
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for (int i = 0; i < ZMK_BHV_HOLD_TAP_MAX_CAPTURED_EVENTS; i++) { |
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const struct zmk_event_header *captured_event = captured_events[i]; |
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if (captured_event == NULL) { |
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return; |
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} |
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captured_events[i] = NULL; |
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if (undecided_hold_tap != NULL) { |
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k_msleep(10); |
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} |
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if (is_position_state_changed(captured_event)) { |
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struct position_state_changed *position_event = |
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cast_position_state_changed(captured_event); |
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LOG_DBG("Releasing key position event for position %d %s", position_event->position, |
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(position_event->state ? "pressed" : "released")); |
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} else { |
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struct keycode_state_changed *modifier_event = |
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cast_keycode_state_changed(captured_event); |
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LOG_DBG("Releasing mods changed event 0x%02X %s", modifier_event->keycode, |
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(modifier_event->state ? "pressed" : "released")); |
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} |
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ZMK_EVENT_RAISE_AT(captured_event, behavior_hold_tap); |
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} |
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} |
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static struct active_hold_tap *find_hold_tap(u32_t position) { |
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for (int i = 0; i < ZMK_BHV_HOLD_TAP_MAX_HELD; i++) { |
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if (active_hold_taps[i].position == position) { |
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return &active_hold_taps[i]; |
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} |
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} |
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return NULL; |
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} |
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static struct active_hold_tap *store_hold_tap(u32_t position, u32_t param_hold, u32_t param_tap, |
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s64_t timestamp, |
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const struct behavior_hold_tap_config *config) { |
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for (int i = 0; i < ZMK_BHV_HOLD_TAP_MAX_HELD; i++) { |
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if (active_hold_taps[i].position != ZMK_BHV_HOLD_TAP_POSITION_NOT_USED) { |
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continue; |
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} |
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active_hold_taps[i].position = position; |
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active_hold_taps[i].is_decided = false; |
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active_hold_taps[i].is_hold = false; |
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active_hold_taps[i].config = config; |
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active_hold_taps[i].param_hold = param_hold; |
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active_hold_taps[i].param_tap = param_tap; |
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active_hold_taps[i].timestamp = timestamp; |
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return &active_hold_taps[i]; |
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} |
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return NULL; |
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} |
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static void clear_hold_tap(struct active_hold_tap *hold_tap) { |
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hold_tap->position = ZMK_BHV_HOLD_TAP_POSITION_NOT_USED; |
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hold_tap->is_decided = false; |
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hold_tap->is_hold = false; |
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hold_tap->work_is_cancelled = false; |
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} |
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enum decision_moment { |
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HT_KEY_UP = 0, |
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HT_OTHER_KEY_DOWN = 1, |
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HT_OTHER_KEY_UP = 2, |
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HT_TIMER_EVENT = 3, |
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}; |
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static void decide_balanced(struct active_hold_tap *hold_tap, enum decision_moment event) { |
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switch (event) { |
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case HT_KEY_UP: |
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hold_tap->is_hold = 0; |
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hold_tap->is_decided = true; |
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break; |
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case HT_OTHER_KEY_UP: |
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case HT_TIMER_EVENT: |
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hold_tap->is_hold = 1; |
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hold_tap->is_decided = true; |
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break; |
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default: |
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return; |
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} |
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} |
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static void decide_tap_preferred(struct active_hold_tap *hold_tap, enum decision_moment event) { |
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switch (event) { |
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case HT_KEY_UP: |
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hold_tap->is_hold = 0; |
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hold_tap->is_decided = true; |
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break; |
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case HT_TIMER_EVENT: |
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hold_tap->is_hold = 1; |
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hold_tap->is_decided = true; |
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break; |
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default: |
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return; |
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} |
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} |
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static void decide_hold_preferred(struct active_hold_tap *hold_tap, enum decision_moment event) { |
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switch (event) { |
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case HT_KEY_UP: |
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hold_tap->is_hold = 0; |
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hold_tap->is_decided = true; |
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break; |
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case HT_OTHER_KEY_DOWN: |
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case HT_TIMER_EVENT: |
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hold_tap->is_hold = 1; |
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hold_tap->is_decided = true; |
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break; |
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default: |
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return; |
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} |
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} |
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static inline char *flavor_str(enum flavor flavor) { |
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switch (flavor) { |
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case ZMK_BHV_HOLD_TAP_FLAVOR_HOLD_PREFERRED: |
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return "hold-preferred"; |
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case ZMK_BHV_HOLD_TAP_FLAVOR_BALANCED: |
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return "balanced"; |
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case ZMK_BHV_HOLD_TAP_FLAVOR_TAP_PREFERRED: |
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return "tap-preferred"; |
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} |
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return "UNKNOWN FLAVOR"; |
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} |
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static void decide_hold_tap(struct active_hold_tap *hold_tap, enum decision_moment event_type) { |
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if (hold_tap->is_decided) { |
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return; |
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} |
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if (hold_tap != undecided_hold_tap) { |
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LOG_DBG("ERROR found undecided tap hold that is not the active tap hold"); |
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return; |
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} |
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switch (hold_tap->config->flavor) { |
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case ZMK_BHV_HOLD_TAP_FLAVOR_HOLD_PREFERRED: |
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decide_hold_preferred(hold_tap, event_type); |
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case ZMK_BHV_HOLD_TAP_FLAVOR_BALANCED: |
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decide_balanced(hold_tap, event_type); |
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case ZMK_BHV_HOLD_TAP_FLAVOR_TAP_PREFERRED: |
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decide_tap_preferred(hold_tap, event_type); |
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} |
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if (!hold_tap->is_decided) { |
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return; |
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} |
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LOG_DBG("%d decided %s (%s event %d)", hold_tap->position, hold_tap->is_hold ? "hold" : "tap", |
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flavor_str(hold_tap->config->flavor), event_type); |
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undecided_hold_tap = NULL; |
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struct zmk_behavior_binding_event event = { |
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.position = hold_tap->position, |
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.timestamp = hold_tap->timestamp, |
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}; |
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struct zmk_behavior_binding binding; |
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if (hold_tap->is_hold) { |
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binding.behavior_dev = hold_tap->config->behaviors->hold.behavior_dev; |
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binding.param1 = hold_tap->param_hold; |
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binding.param2 = 0; |
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} else { |
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binding.behavior_dev = hold_tap->config->behaviors->tap.behavior_dev; |
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binding.param1 = hold_tap->param_tap; |
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binding.param2 = 0; |
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} |
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behavior_keymap_binding_pressed(&binding, event); |
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release_captured_events(); |
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} |
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static int on_hold_tap_binding_pressed(struct zmk_behavior_binding *binding, |
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struct zmk_behavior_binding_event event) { |
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struct device *dev = device_get_binding(binding->behavior_dev); |
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const struct behavior_hold_tap_config *cfg = dev->config_info; |
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if (undecided_hold_tap != NULL) { |
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LOG_DBG("ERROR another hold-tap behavior is undecided."); |
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// if this happens, make sure the behavior events occur AFTER other position events. |
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return 0; |
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} |
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struct active_hold_tap *hold_tap = |
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store_hold_tap(event.position, binding->param1, binding->param2, event.timestamp, cfg); |
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if (hold_tap == NULL) { |
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LOG_ERR("unable to store hold-tap info, did you press more than %d hold-taps?", |
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ZMK_BHV_HOLD_TAP_MAX_HELD); |
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return 0; |
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} |
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LOG_DBG("%d new undecided hold_tap", event.position); |
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undecided_hold_tap = hold_tap; |
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// if this behavior was queued we have to adjust the timer to only |
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// wait for the remaining time. |
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s32_t tapping_term_ms_left = (hold_tap->timestamp + cfg->tapping_term_ms) - k_uptime_get(); |
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if (tapping_term_ms_left > 0) { |
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k_delayed_work_submit(&hold_tap->work, K_MSEC(tapping_term_ms_left)); |
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} |
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return 0; |
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} |
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static int on_hold_tap_binding_released(struct zmk_behavior_binding *binding, |
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struct zmk_behavior_binding_event event) { |
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struct active_hold_tap *hold_tap = find_hold_tap(event.position); |
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if (hold_tap == NULL) { |
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LOG_ERR("ACTIVE_HOLD_TAP_CLEANED_UP_TOO_EARLY"); |
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return 0; |
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} |
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// If these events were queued, the timer event may be queued too late or not at all. |
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// We insert a timer event before the TH_KEY_UP event to verify. |
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int work_cancel_result = k_delayed_work_cancel(&hold_tap->work); |
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if (event.timestamp > (hold_tap->timestamp + hold_tap->config->tapping_term_ms)) { |
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decide_hold_tap(hold_tap, HT_TIMER_EVENT); |
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} |
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decide_hold_tap(hold_tap, HT_KEY_UP); |
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// todo: set up the binding and data items inside of the active_hold_tap struct |
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struct zmk_behavior_binding_event sub_behavior_data = { |
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.position = hold_tap->position, |
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.timestamp = hold_tap->timestamp, |
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}; |
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struct zmk_behavior_binding sub_behavior_binding; |
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if (hold_tap->is_hold) { |
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sub_behavior_binding.behavior_dev = hold_tap->config->behaviors->hold.behavior_dev; |
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sub_behavior_binding.param1 = hold_tap->param_hold; |
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sub_behavior_binding.param2 = 0; |
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} else { |
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sub_behavior_binding.behavior_dev = hold_tap->config->behaviors->tap.behavior_dev; |
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sub_behavior_binding.param1 = hold_tap->param_tap; |
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sub_behavior_binding.param2 = 0; |
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} |
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behavior_keymap_binding_released(&sub_behavior_binding, sub_behavior_data); |
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if (work_cancel_result == -EINPROGRESS) { |
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// let the timer handler clean up |
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// if we'd clear now, the timer may call back for an uninitialized active_hold_tap. |
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LOG_DBG("%d hold-tap timer work in event queue", event.position); |
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hold_tap->work_is_cancelled = true; |
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} else { |
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LOG_DBG("%d cleaning up hold-tap", event.position); |
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clear_hold_tap(hold_tap); |
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} |
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return 0; |
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} |
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static const struct behavior_driver_api behavior_hold_tap_driver_api = { |
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.binding_pressed = on_hold_tap_binding_pressed, |
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.binding_released = on_hold_tap_binding_released, |
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}; |
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static int position_state_changed_listener(const struct zmk_event_header *eh) { |
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struct position_state_changed *ev = cast_position_state_changed(eh); |
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if (undecided_hold_tap == NULL) { |
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LOG_DBG("%d bubble (no undecided hold_tap active)", ev->position); |
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return 0; |
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} |
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if (undecided_hold_tap->position == ev->position) { |
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if (ev->state) { // keydown |
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LOG_ERR("hold-tap listener should be called before before most other listeners!"); |
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return 0; |
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} else { // keyup |
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LOG_DBG("%d bubble undecided hold-tap keyrelease event", undecided_hold_tap->position); |
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return 0; |
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} |
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} |
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// If these events were queued, the timer event may be queued too late or not at all. |
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// We make a timer decision before the other key events are handled if the timer would |
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// have run out. |
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if (ev->timestamp > |
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(undecided_hold_tap->timestamp + undecided_hold_tap->config->tapping_term_ms)) { |
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decide_hold_tap(undecided_hold_tap, HT_TIMER_EVENT); |
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} |
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if (!ev->state && find_captured_keydown_event(ev->position) == NULL) { |
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// no keydown event has been captured, let it bubble. |
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// we'll catch modifiers later in modifier_state_changed_listener |
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LOG_DBG("%d bubbling %d %s event", undecided_hold_tap->position, ev->position, |
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ev->state ? "down" : "up"); |
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return 0; |
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} |
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LOG_DBG("%d capturing %d %s event", undecided_hold_tap->position, ev->position, |
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ev->state ? "down" : "up"); |
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capture_event(eh); |
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decide_hold_tap(undecided_hold_tap, ev->state ? HT_OTHER_KEY_DOWN : HT_OTHER_KEY_UP); |
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return ZMK_EV_EVENT_CAPTURED; |
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} |
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static bool is_mod(struct keycode_state_changed *ev) { |
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return ev->usage_page == USAGE_KEYPAD && ev->keycode >= LCTL && ev->keycode <= RGUI; |
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} |
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static int keycode_state_changed_listener(const struct zmk_event_header *eh) { |
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// we want to catch layer-up events too... how? |
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struct keycode_state_changed *ev = cast_keycode_state_changed(eh); |
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if (undecided_hold_tap == NULL) { |
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// LOG_DBG("0x%02X bubble (no undecided hold_tap active)", ev->keycode); |
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return 0; |
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} |
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if (!is_mod(ev)) { |
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// LOG_DBG("0x%02X bubble (not a mod)", ev->keycode); |
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return 0; |
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} |
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// only key-up events will bubble through position_state_changed_listener |
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// if a undecided_hold_tap is active. |
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LOG_DBG("%d capturing 0x%02X %s event", undecided_hold_tap->position, ev->keycode, |
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ev->state ? "down" : "up"); |
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capture_event(eh); |
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return ZMK_EV_EVENT_CAPTURED; |
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} |
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int behavior_hold_tap_listener(const struct zmk_event_header *eh) { |
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if (is_position_state_changed(eh)) { |
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return position_state_changed_listener(eh); |
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} else if (is_keycode_state_changed(eh)) { |
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return keycode_state_changed_listener(eh); |
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} |
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return 0; |
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} |
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ZMK_LISTENER(behavior_hold_tap, behavior_hold_tap_listener); |
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ZMK_SUBSCRIPTION(behavior_hold_tap, position_state_changed); |
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// this should be modifiers_state_changed, but unfrotunately that's not implemented yet. |
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ZMK_SUBSCRIPTION(behavior_hold_tap, keycode_state_changed); |
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void behavior_hold_tap_timer_work_handler(struct k_work *item) { |
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struct active_hold_tap *hold_tap = CONTAINER_OF(item, struct active_hold_tap, work); |
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if (hold_tap->work_is_cancelled) { |
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clear_hold_tap(hold_tap); |
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} else { |
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decide_hold_tap(hold_tap, HT_TIMER_EVENT); |
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} |
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} |
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static int behavior_hold_tap_init(struct device *dev) { |
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static bool init_first_run = true; |
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if (init_first_run) { |
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for (int i = 0; i < ZMK_BHV_HOLD_TAP_MAX_HELD; i++) { |
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k_delayed_work_init(&active_hold_taps[i].work, behavior_hold_tap_timer_work_handler); |
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active_hold_taps[i].position = ZMK_BHV_HOLD_TAP_POSITION_NOT_USED; |
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} |
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} |
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init_first_run = false; |
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return 0; |
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} |
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struct behavior_hold_tap_data {}; |
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static struct behavior_hold_tap_data behavior_hold_tap_data; |
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|
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/* todo: get rid of unused param1 and param2. */ |
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#define _TRANSFORM_ENTRY(idx, node) \ |
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{ \ |
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.behavior_dev = DT_LABEL(DT_INST_PHANDLE_BY_IDX(node, bindings, idx)), \ |
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.param1 = COND_CODE_0(DT_INST_PHA_HAS_CELL_AT_IDX(node, bindings, idx, param1), (0), \ |
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(DT_INST_PHA_BY_IDX(node, bindings, idx, param1))), \ |
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.param2 = COND_CODE_0(DT_INST_PHA_HAS_CELL_AT_IDX(node, bindings, idx, param2), (0), \ |
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(DT_INST_PHA_BY_IDX(node, bindings, idx, param2))), \ |
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}, |
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|
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#define KP_INST(n) \ |
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static struct behavior_hold_tap_behaviors behavior_hold_tap_behaviors_##n = { \ |
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.hold = _TRANSFORM_ENTRY(0, n).tap = _TRANSFORM_ENTRY(1, n)}; \ |
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static struct behavior_hold_tap_config behavior_hold_tap_config_##n = { \ |
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.behaviors = &behavior_hold_tap_behaviors_##n, \ |
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.tapping_term_ms = DT_INST_PROP(n, tapping_term_ms), \ |
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.flavor = DT_ENUM_IDX(DT_DRV_INST(n), flavor), \ |
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}; \ |
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DEVICE_AND_API_INIT(behavior_hold_tap_##n, DT_INST_LABEL(n), behavior_hold_tap_init, \ |
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&behavior_hold_tap_data, &behavior_hold_tap_config_##n, APPLICATION, \ |
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CONFIG_KERNEL_INIT_PRIORITY_DEFAULT, &behavior_hold_tap_driver_api); |
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|
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DT_INST_FOREACH_STATUS_OKAY(KP_INST) |
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|
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#endif |