185 lines
4.7 KiB
C
185 lines
4.7 KiB
C
#ifdef ENABLE_HID_SPELLCHECK
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#include "keymap_russian.h"
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#include "keymap_us_international.h"
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#include "features/hid_spellcheck.h"
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#include "features/beta_rawhid.h"
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#include "extra_mappings.h"
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uint8_t spellcheck_buffer[SPELLCHECK_BUFFER_MAX] = {0};
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uint8_t spellcheck_buffer_size = 0;
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// Return one of the following.
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#define SPELLCHECK_WORD 2
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#define SPELLCHECK_SPACE 1
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#define SPELLCHECK_NEITHER 0
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uint8_t keycode_type_en(uint8_t mods, uint16_t keycode) {
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if (
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KC_A <= keycode && keycode <= KC_Z // basic letters
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) {
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return SPELLCHECK_WORD;
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} else if (
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( // Include these
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(KC_1 <= keycode && keycode <= KC_SLSH) || // Symbols
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// Treat " (shifted ') as a word boundary.
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((keycode == KC_QUOT) && ((mods & MOD_MASK_SHIFT) != 0))
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) && !( // Don't include these
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(keycode == KC_ESC) ||
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(keycode == KC_ENTER)
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)
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) {
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return SPELLCHECK_SPACE;
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} else {
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return SPELLCHECK_NEITHER;
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}
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}
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uint8_t keycode_type_ru(uint8_t mods, uint16_t keycode) {
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if (
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KC_A <= keycode && keycode <= KC_Z // basic letters
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) {
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return SPELLCHECK_WORD;
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} else if (
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KC_1 <= keycode && keycode <= KC_0
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) {
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return SPELLCHECK_SPACE;
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}
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switch (keycode) {
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case RU_YO:
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case RU_HA:
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case RU_HARD:
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case RU_E:
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case RU_BE:
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case RU_YU:
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return SPELLCHECK_WORD;
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case RU_MINS:
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case RU_EQL:
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case RU_DOT:
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case RU_BSLS:
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return SPELLCHECK_SPACE;
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}
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return SPELLCHECK_NEITHER;
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}
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bool process_spellcheck(uint16_t keycode, keyrecord_t* record) {
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// Ignore key release; we only process key presses.
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if (!record->event.pressed) { return true; }
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#ifndef NO_ACTION_ONESHOT
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const uint8_t mods = get_mods() | get_oneshot_mods();
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#else
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const uint8_t mods = get_mods();
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#endif
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// Disable autocorrection while a mod other than shift is active.
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if ((mods & ~MOD_MASK_SHIFT) != 0) {
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spellcheck_buffer_size = 0;
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return true;
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}
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// The following switch cases address various kinds of keycodes. This logic is
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// split over two switches rather than merged into one. The first switch may
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// extract a basic keycode which is then further handled by the second switch,
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// e.g. a layer-tap key with Caps Lock `LT(layer, KC_CAPS)`.
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switch (keycode) {
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#ifndef NO_ACTION_TAPPING
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case QK_MOD_TAP ... QK_MOD_TAP_MAX: // Tap-hold keys.
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#ifndef NO_ACTION_LAYER
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case QK_LAYER_TAP ... QK_LAYER_TAP_MAX:
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#endif
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// Ignore when tap-hold keys are held.
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if (record->tap.count == 0) { return true; }
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// Otherwise when tapped, get the basic keycode.
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// Fallthrough intended.
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#endif
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// Handle shifted keys, e.g. symbols like KC_EXLM = S(KC_1).
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case QK_LSFT ... QK_LSFT + 255:
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case QK_RSFT ... QK_RSFT + 255:
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keycode &= 0xff; // Get the basic keycode.
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break;
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// NOTE: Space Cadet keys expose no info to check whether they are being
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// tapped vs. held. This makes autocorrection ambiguous, e.g. KC_LCPO might
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// be '(', which we would treat as a word break, or it might be shift, which
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// we would treat as having no effect. To behave cautiously, we allow Space
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// Cadet keycodes to fall to the logic below and clear autocorrection state.
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}
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switch (keycode) {
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// Ignore shifts, Caps Lock, one-shot mods, and layer switch keys.
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case KC_NO:
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case KC_LSFT:
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case KC_RSFT:
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case KC_CAPS:
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case QK_ONE_SHOT_MOD ... QK_ONE_SHOT_MOD_MAX:
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case QK_TO ... QK_TO_MAX:
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case QK_MOMENTARY ... QK_MOMENTARY_MAX:
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case QK_DEF_LAYER ... QK_DEF_LAYER_MAX:
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case QK_TOGGLE_LAYER ... QK_TOGGLE_LAYER_MAX:
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case QK_ONE_SHOT_LAYER ... QK_ONE_SHOT_LAYER_MAX:
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case QK_LAYER_TAP_TOGGLE ... QK_LAYER_TAP_TOGGLE_MAX:
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case QK_LAYER_MOD ... QK_LAYER_MOD_MAX:
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return true; // Ignore these keys.
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}
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if (keycode == KC_BSPC) {
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// Remove last character from buffer
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if (spellcheck_buffer_size > 0) { --spellcheck_buffer_size; }
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return true;
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}
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uint8_t keycode_type;
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switch (layer_layouts[biton32(layer_state)]) {
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case LAYOUT_EN:
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keycode_type = keycode_type_en(mods, keycode);
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break;
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case LAYOUT_RU:
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keycode_type = keycode_type_ru(mods, keycode);
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break;
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default:
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keycode_type = SPELLCHECK_NEITHER;
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break;
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}
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switch(keycode_type) {
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// No modifications are needed if this is a regular word character
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case SPELLCHECK_WORD:
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// If the buffer is full, rotate it to discard the oldest character.
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if (spellcheck_buffer_size >= SPELLCHECK_BUFFER_MAX) {
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memmove(spellcheck_buffer, spellcheck_buffer + 1, SPELLCHECK_BUFFER_MAX - 1);
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spellcheck_buffer_size = SPELLCHECK_BUFFER_MAX - 1;
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}
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spellcheck_buffer[spellcheck_buffer_size++] = (uint8_t) keycode;
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return true;
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case SPELLCHECK_SPACE:
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// If this is a word break, send word and reset buffer
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if (spellcheck_buffer_size > 0) {
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hid_send_word();
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spellcheck_buffer_size = 0;
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}
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return true;
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case SPELLCHECK_NEITHER:
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spellcheck_buffer_size = 0;
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return true;
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}
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return true;
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}
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#endif |