mirror of
https://github.com/Keychron/qmk_firmware.git
synced 2024-12-28 03:59:33 +06:00
bc818352a3
Co-authored-by: Ryan <fauxpark@gmail.com>
549 lines
13 KiB
C
549 lines
13 KiB
C
#include "arkag.h"
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#include "eeprom.h"
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/*
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Current Layout and Keeb:
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https://github.com/arkag/qmk_firmware/blob/master/keyboards/mechmini/v2/keymaps/arkag/keymap.c
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*/
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#include <stdbool.h>
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// Start: Written by Chris Lewis
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#ifndef MIN
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#define MIN(a,b) (((a)<(b))?(a):(b))
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#endif
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#ifndef MAX
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#define MAX(a,b) (((a)>(b))?(a):(b))
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#endif
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#define TYPING_SPEED_MAX_VALUE 200
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uint8_t typing_speed = 0;
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void velocikey_accelerate() {
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if (typing_speed < TYPING_SPEED_MAX_VALUE) typing_speed += (TYPING_SPEED_MAX_VALUE / 50);
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}
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void velocikey_decelerate() {
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static uint16_t decay_timer = 0;
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if (timer_elapsed(decay_timer) > 500 || decay_timer == 0) {
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if (typing_speed > 0) typing_speed -= 1;
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//Decay a little faster at half of max speed
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if (typing_speed > TYPING_SPEED_MAX_VALUE / 2) typing_speed -= 1;
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//Decay even faster at 3/4 of max speed
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if (typing_speed > TYPING_SPEED_MAX_VALUE / 4 * 3) typing_speed -= 3;
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decay_timer = timer_read();
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}
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}
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uint8_t velocikey_match_speed(uint8_t minValue, uint8_t maxValue) {
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return MAX(minValue, maxValue - (maxValue - minValue) * ((float)typing_speed / TYPING_SPEED_MAX_VALUE));
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}
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// End: Written by Chris Lewis
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static int shift_int = 0;
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uint8_t current_os,
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mod_primary_mask,
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fade_interval,
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num_extra_flashes_off = 0;
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Color underglow,
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flash_color,
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saved_color,
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hsv_none = {0,0,0};
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flashState flash_state = no_flash;
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fadeState fade_state = add_fade;
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activityState state = boot;
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bool aesthetic = false,
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shifty = false;
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float song_ussr[][2] = SONG(USSR_ANTHEM);
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void set_color (Color new, bool update) {
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rgblight_sethsv_eeprom_helper(new.h, new.s, new.v, update);
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}
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void save_color(Color to_save) {
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saved_color = to_save;
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}
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void reset_color(void) {
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underglow = saved_color;
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}
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Color mod_color(Color current_color, bool should_add, uint8_t change_amount) {
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save_color(underglow);
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int addlim = HUE_MAX - change_amount;
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int sublim = change_amount;
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int leftovers;
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if (should_add) {
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if (current_color.h <= addlim) {
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current_color.h += change_amount;
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} else {
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leftovers = (HUE_MAX + change_amount) % HUE_MAX;
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current_color.h = 0 + leftovers;
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}
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} else {
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if (current_color.h >= sublim) {
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current_color.h -= change_amount;
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} else {
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leftovers = change_amount - current_color.h;
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current_color.h = HUE_MAX - leftovers;
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}
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}
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return current_color;
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}
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void check_state (void) {
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static uint16_t active_timer;
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if (!active_timer) {active_timer = timer_read();}
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static bool activated, deactivated, slept;
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switch (state) {
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case active:
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if (!activated) {
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if (slept) {rgblight_mode_noeeprom(1);}
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activated = true;
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deactivated = false;
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}
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fade_interval = velocikey_match_speed(1, 25);
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if (timer_elapsed(active_timer) < INACTIVE_DELAY) {return;}
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active_timer = timer_read();
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state = inactive;
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return;
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case inactive:
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if (!deactivated) {
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deactivated = true;
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activated = false;
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}
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velocikey_decelerate();
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fade_interval = velocikey_match_speed(1, 25);
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return;
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case boot:
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return;
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}
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}
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void fade_rgb (void) {
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static uint16_t fade_timer;
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if (state == boot) {return;}
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if (!fade_timer) {fade_timer = timer_read();}
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if (timer_elapsed(fade_timer) < fade_interval) {return;}
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switch (fade_state) {
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case add_fade:
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if (underglow.h == HUE_MAX) {
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fade_state = sub_fade;
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return;
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}
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underglow.h = underglow.h + 1;
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break;
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case sub_fade:
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if (underglow.h == 0) {
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fade_state = add_fade;
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return;
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}
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underglow.h = underglow.h - 1;
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break;
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}
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fade_timer = timer_read();
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if (flash_state == no_flash) {
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set_color(underglow, false);
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}
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}
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void flash_rgb (void) {
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static uint16_t flash_timer;
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switch(flash_state) {
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case no_flash:
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return;
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case flash_off:
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if (!flash_timer) {flash_timer = timer_read();}
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if (timer_elapsed(flash_timer) >= LED_FLASH_DELAY) {
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set_color(hsv_none, false);
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flash_timer = timer_read();
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flash_state = flash_on;
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}
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return;
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case flash_on:
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if (timer_elapsed(flash_timer) >= LED_FLASH_DELAY) {
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set_color(flash_color, false);
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flash_timer = timer_read();
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if (num_extra_flashes_off > 0) {
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flash_state = flash_off;
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num_extra_flashes_off--;
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} else {
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set_color(underglow, false);
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flash_state = no_flash;
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}
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}
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return;
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}
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}
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void set_os (uint8_t os, bool update) {
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current_os = os;
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if (update) {
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eeprom_update_byte(EECONFIG_USERSPACE, current_os);
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}
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switch (os) {
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case OS_MAC:
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set_unicode_input_mode(UC_OSX);
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underglow = (Color){ 213, 255, 255 };
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break;
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case OS_WIN:
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set_unicode_input_mode(UC_WINC);
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underglow = (Color){ 128, 255, 255 };
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break;
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case OS_NIX:
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set_unicode_input_mode(UC_LNX);
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underglow = (Color){ 43, 255, 255 };
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break;
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default:
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underglow = (Color){ 0, 0, 255 };
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}
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set_color(underglow, update);
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flash_color = underglow;
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flash_state = flash_off;
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state = boot;
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num_extra_flashes_off = 1;
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}
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// register GUI if Mac or Ctrl if other
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void pri_mod(bool press) {
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if (press) {
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if (current_os == OS_MAC) {
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register_code(KC_LGUI);
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} else {
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register_code(KC_LCTL);
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}
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} else {
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if (current_os == OS_MAC) {
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unregister_code(KC_LGUI);
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} else {
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unregister_code(KC_LCTL);
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}
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}
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}
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// register Ctrl if Mac or GUI if other
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void sec_mod(bool press) {
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if (press) {
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if (current_os == OS_MAC) {
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register_code(KC_LCTL);
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} else {
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register_code(KC_LGUI);
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}
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} else {
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if (current_os == OS_MAC) {
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unregister_code(KC_LCTL);
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} else {
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unregister_code(KC_LGUI);
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}
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}
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}
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// register Meh if Win or Hyper if other
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// KC_MEH/HYPR registers both sides, causes issues with some apps
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// I'll do it myself, then
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void meh_hyper(bool press) {
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if (current_os == OS_WIN) {
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(press) ? register_mods(L_BIT_MEH) : unregister_mods(L_BIT_MEH);
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} else {
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(press) ? register_mods(L_BIT_HYPR) : unregister_mods(L_BIT_HYPR);
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}
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}
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void multi_tap(uint8_t num_of_chars, uint16_t keycode, bool use_shift) {
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if (use_shift) {
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register_code(KC_LSFT);
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}
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for (int i = 0; i < num_of_chars; i++) {
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tap_code(keycode);
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}
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if (use_shift) {
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unregister_code(KC_LSFT);
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}
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}
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void pair_surround_type(uint8_t num_of_chars, uint16_t keycode, bool use_shift) {
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for (int i = 0; i < num_of_chars; i++) {
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(use_shift) ? register_mods(MOD_BIT( KC_LSFT)) : NULL;
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tap_code(keycode);
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tap_code((keycode == KC_LCBR) ? KC_RCBR : (keycode == KC_LBRC) ? KC_RBRC : (keycode == KC_LPRN) ? KC_RPRN : KC_NO);
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(use_shift) ? unregister_mods(MOD_BIT( KC_LSFT)) : NULL;
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tap_code(KC_LEFT);
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}
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}
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void surround_type(uint8_t num_of_chars, uint16_t keycode, bool use_shift) {
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for (int i = 0; i < num_of_chars; i++) {
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(use_shift) ? register_mods(MOD_BIT( KC_LSFT)) : NULL;
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tap_code(keycode);
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(use_shift) ? unregister_mods(MOD_BIT( KC_LSFT)) : NULL;
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}
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multi_tap(num_of_chars / 2, KC_LEFT, false);
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}
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void long_keystroke(size_t num_of_keys, uint16_t keys[]) {
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for (int i = 0; i < num_of_keys-1; i++) {
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register_code(keys[i]);
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}
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tap_code(keys[num_of_keys-1]);
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for (int i = 0; i < num_of_keys-1; i++) {
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unregister_code(keys[i]);
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}
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}
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void pri_mod_keystroke(uint16_t key) {
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pri_mod(true);
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tap_code(key);
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pri_mod(false);
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}
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void matrix_init_user(void) {
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current_os = eeprom_read_byte(EECONFIG_USERSPACE);
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set_os(current_os, false);
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}
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LEADER_EXTERNS();
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void matrix_scan_user(void) {
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check_state();
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flash_rgb();
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fade_rgb();
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LEADER_DICTIONARY() {
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leading = false;
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leader_end();
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// begin OS functions
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SEQ_TWO_KEYS(KC_P, KC_B) {
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if (current_os == OS_WIN) {
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long_keystroke(2, (uint16_t[]){KC_LGUI, KC_PAUSE});
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} else {
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return;
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}
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}
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SEQ_TWO_KEYS(KC_S, KC_S) {
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if (current_os == OS_MAC) {
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long_keystroke(3, (uint16_t[]){KC_LGUI, KC_LSFT, KC_4});
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} else if (current_os == OS_WIN) {
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long_keystroke(3, (uint16_t[]){KC_LGUI, KC_LSFT, KC_S});
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} else {
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return;
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}
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}
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SEQ_THREE_KEYS(KC_C, KC_A, KC_D) {
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if (current_os == OS_WIN) {
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long_keystroke(3, (uint16_t[]){KC_LCTL, KC_LALT, KC_DEL});
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} else {
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}
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}
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SEQ_THREE_KEYS(KC_C, KC_A, KC_E) {
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if (current_os == OS_WIN) {
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long_keystroke(3, (uint16_t[]){KC_LCTL, KC_LALT, KC_END});
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} else {
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}
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}
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// end OS functions
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// begin format functions
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SEQ_ONE_KEY(KC_B) {
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surround_type(2, KC_8, true);
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}
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SEQ_ONE_KEY(KC_I) {
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surround_type(2, KC_MINS, true);
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}
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SEQ_ONE_KEY(KC_U) {
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surround_type(4, KC_MINS, true);
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}
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SEQ_ONE_KEY(KC_S) {
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surround_type(4, KC_GRAVE, true);
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}
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SEQ_ONE_KEY(KC_C) {
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register_unicode(0x00E7); // ç
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}
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SEQ_TWO_KEYS(KC_A, KC_V) {
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surround_type(2, KC_QUOT, true);
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pair_surround_type(2, KC_LCBR, true);
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surround_type(2, KC_SPC, false);
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}
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SEQ_TWO_KEYS(KC_M, KC_L) {
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pair_surround_type(1, KC_LBRC, false);
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SEND_STRING("LINK_NAME");
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tap_code(KC_RGHT);
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pair_surround_type(1, KC_LPRN, true);
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pri_mod_keystroke(KC_V);
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}
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SEQ_TWO_KEYS(KC_C, KC_C) {
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surround_type(2, KC_GRAVE, false);
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}
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SEQ_THREE_KEYS(KC_C, KC_C, KC_C) {
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surround_type(6, KC_GRAVE, false);
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}
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SEQ_ONE_KEY(KC_E) {
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register_unicode(0x00E8); // è
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}
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SEQ_TWO_KEYS(KC_E, KC_E) {
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register_unicode(0x00E9); // é
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}
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// end format functions
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// start fancy functions
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SEQ_TWO_KEYS(KC_V, KC_P) {
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SEND_STRING("ggvG}x:set paste\ni");
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pri_mod_keystroke(KC_V);
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}
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SEQ_THREE_KEYS(KC_C, KC_C, KC_ENT) {
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surround_type(6, KC_GRAVE, false);
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pri_mod_keystroke(KC_V);
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multi_tap(3, KC_RGHT, false);
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tap_code(KC_ENTER);
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}
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SEQ_THREE_KEYS(KC_T, KC_C, KC_ENT) {
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multi_tap(3, KC_GRAVE, false);
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pri_mod_keystroke(KC_V);
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multi_tap(2, KC_ENTER, false);
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}
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// end fancy functions
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// start typing functions
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SEQ_TWO_KEYS(KC_T, KC_M) {
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register_unicode(0x2122); // ™
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}
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SEQ_TWO_KEYS(KC_D, KC_D) {
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SEND_STRING(".\\Administrator");
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}
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SEQ_THREE_KEYS(KC_D, KC_D, KC_D) {
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SEND_STRING(".\\Administrator");
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tap_code(KC_TAB);
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pri_mod_keystroke(KC_V);
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tap_code(KC_ENTER);
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}
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SEQ_THREE_KEYS(KC_L, KC_O, KC_D) {
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send_unicode_string("ಠ__ಠ");
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}
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SEQ_THREE_KEYS(KC_M, KC_A, KC_P) {
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SEND_STRING("https://github.com/qmk/qmk_firmware/tree/master/users/arkag");
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}
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SEQ_TWO_KEYS(KC_F, KC_F) {
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send_unicode_string("(╯‵Д′)╯彡┻━┻");
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}
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SEQ_THREE_KEYS(KC_F, KC_F, KC_F) {
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send_unicode_string("┬─┬ノ( º _ º ノ)");
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}
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SEQ_THREE_KEYS(KC_L, KC_O, KC_L) {
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send_unicode_string("( ͡° ͜ʖ ͡°)");
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}
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SEQ_THREE_KEYS(KC_S, KC_S, KC_S) {
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send_unicode_string("¯\\_(ツ)_/¯");
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}
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// end typing functions
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}
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}
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bool process_record_user(uint16_t keycode, keyrecord_t *record) {
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if (aesthetic) {
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switch (keycode) {
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case KC_A ... KC_0:
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case KC_SPACE ... KC_SLASH:
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if (record->event.pressed) {
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state = active;
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velocikey_accelerate();
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tap_code(keycode);
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tap_code(KC_SPACE);
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}
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return false;
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case KC_BSPACE:
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if (record->event.pressed) {
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state = active;
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velocikey_accelerate();
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tap_code(keycode);
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tap_code(keycode);
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}
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return false;
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default: // Do nothing
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break;
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}
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}
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if (shifty) {
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switch (keycode) {
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case KC_A ... KC_Z:
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if (record->event.pressed) {
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shift_int += (rand() % 5);
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int shift = ((shift_int % 2) == 1) ? true : false;
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state = active;
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velocikey_accelerate();
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(shift) ? register_code(KC_LSFT) : NULL;
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tap_code(keycode);
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(shift) ? unregister_code(KC_LSFT) : NULL;
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}
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return false;
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case KC_SPC:
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if (record->event.pressed) {
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state = active;
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velocikey_accelerate();
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tap_code(keycode);
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}
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return false;
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default: // Do nothing
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break;
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}
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}
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switch (keycode) {
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#ifdef AUDIO_ENABLE
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case M_USSR:
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PLAY_SONG(song_ussr);
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return false;
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#endif
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case M_OS:
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if (record->event.pressed){
|
||
set_os((current_os+1) % _OS_COUNT, true);
|
||
}
|
||
return false;
|
||
|
||
case M_DASH:
|
||
if (record->event.pressed){
|
||
register_unicode(0x2014); // —
|
||
}
|
||
return false;
|
||
case M_LMHYP:
|
||
case M_EHYPR:
|
||
(keycode = M_LMHYP) ? (record->event.pressed) ? layer_on(_ARROW) : layer_off(_ARROW) : NULL;
|
||
meh_hyper(record->event.pressed);
|
||
return false;
|
||
|
||
case M_SFTY:
|
||
if(record->event.pressed){
|
||
num_extra_flashes_off = (shifty) ? 1 : 0;
|
||
shifty = !shifty;
|
||
flash_color = underglow;
|
||
flash_state = flash_off;
|
||
return false;
|
||
}
|
||
|
||
case M_AEST:
|
||
if(record->event.pressed){
|
||
num_extra_flashes_off = (aesthetic) ? 1 : 0;
|
||
aesthetic = !aesthetic;
|
||
flash_color = underglow;
|
||
flash_state = flash_off;
|
||
return false;
|
||
}
|
||
|
||
default:
|
||
if (record->event.pressed) {
|
||
state = active;
|
||
velocikey_accelerate();
|
||
}
|
||
return true;
|
||
}
|
||
}
|