forked from forks/qmk_firmware
b2405fccce
* ISO layout for the soldered Think6.5 PCB * Think6.5 personal layout readme * Add personal Think6.5 user map with LED group cycling * Add default case to process_record_user * Make the ASCII diagram match the layer properly * Relocate KC_NUHS to the home row for consistency * Add LAYOUT_65_iso_badge to info.json * Wire up the badge LEDs as capslock LEDs * Remove unused keymap variable
272 lines
14 KiB
C
272 lines
14 KiB
C
/* Copyright 2019 Rys Sommefeldt
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include QMK_KEYBOARD_H
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/*
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* LED ranges
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* ┌─────────────┬─────────────┬───────────────────────────────────────────┐
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* │ 00 01 02 03 │ 04 05 06 07 │ 08 09 10 11 12 13 14 15 16 17 18 19 20 21 │
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* │ escape │ badge │ underglow │
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* └─────────────┴─────────────┴───────────────────────────────────────────┘
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*/
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// Define the LED ranges start, end
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#define THINK65_LED_RANGE_OFF 0, 0
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#define THINK65_LED_RANGE_ESC 0, 4
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#define THINK65_LED_RANGE_BADGE 4, 8
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#define THINK65_LED_RANGE_UNDERGLOW 8, 22
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#define THINK65_LED_RANGE_ALL 0, 22
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// Turn the LEDs off by setting HSV to 0, 0, 0
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#define THINK65_LEDS_OFF 0, 0, 0
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// There are 3 ranges, so we can store all combinations in 2^3 values
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// Define all of them to make it easier to write the cycling code
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#define THINK65_LED_STATE_OFF 0x0 // 0b00000000
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#define THINK65_LED_STATE_ESC 0x1 // 0b00000001
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#define THINK65_LED_STATE_BADGE 0x2 // 0b00000010
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#define THINK65_LED_STATE_UNDERGLOW 0x4 // 0b00000100
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#define THINK65_LED_STATE_ESC_AND_BADGE 0x3 // 0b00000011
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#define THINK65_LED_STATE_ESC_AND_UNDERGLOW 0x5 // 0b00000101
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#define THINK65_LED_STATE_BADGE_AND_UNDERGLOW 0x6 // 0b00000110
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#define THINK65_LED_STATE_ON 0x7 // 0b00000111
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// Define each LED range as a bit flag
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#define THINK65_LED_ESC_RANGE_BIT 0
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#define THINK65_LED_BADGE_RANGE_BIT 1
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#define THINK65_LED_UNDERGLOW_RANGE_BIT 2
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// Setup some keycodes to control cycling and range toggling
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enum rys_keycodes {
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CYC_LED = SAFE_RANGE,
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TOG_ESC,
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TOG_BDG,
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TOG_UGL
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};
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// setup the user EEPROM space we need
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typedef union {
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uint8_t raw;
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struct {
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uint8_t current_led_state:8;
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};
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} user_config_t;
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user_config_t user_config;
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// toggle one of the range flag bits
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void toggle_led_state(unsigned int led_range) {
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if (led_range >= THINK65_LED_ESC_RANGE_BIT && led_range <= THINK65_LED_UNDERGLOW_RANGE_BIT) {
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user_config.current_led_state ^= 1 << led_range;
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}
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}
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// set one of the range flag bits
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void set_led_state(unsigned int led_range) {
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if (led_range >= THINK65_LED_ESC_RANGE_BIT && led_range <= THINK65_LED_UNDERGLOW_RANGE_BIT) {
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user_config.current_led_state |= 1 << led_range;
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}
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}
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// clear one of the range flag bits
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void clear_led_state(unsigned int led_range) {
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if (led_range >= THINK65_LED_ESC_RANGE_BIT && led_range <= THINK65_LED_UNDERGLOW_RANGE_BIT) {
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user_config.current_led_state &= ~(1 << led_range);
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}
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}
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// cycle LED states: Off -> Esc -> Badge -> Underglow -> Esc+Badge -> Esc+Underglow -> Badge+Underglow -> All
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void cycle_led_state(void) {
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switch(user_config.current_led_state) {
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case THINK65_LED_STATE_OFF:
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user_config.current_led_state = THINK65_LED_STATE_ESC;
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break;
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case THINK65_LED_STATE_ESC:
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user_config.current_led_state = THINK65_LED_STATE_BADGE;
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break;
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case THINK65_LED_STATE_BADGE:
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user_config.current_led_state = THINK65_LED_STATE_UNDERGLOW;
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break;
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case THINK65_LED_STATE_UNDERGLOW:
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user_config.current_led_state = THINK65_LED_STATE_ESC_AND_BADGE;
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break;
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case THINK65_LED_STATE_ESC_AND_BADGE:
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user_config.current_led_state = THINK65_LED_STATE_ESC_AND_UNDERGLOW;
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break;
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case THINK65_LED_STATE_ESC_AND_UNDERGLOW:
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user_config.current_led_state = THINK65_LED_STATE_BADGE_AND_UNDERGLOW;
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break;
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case THINK65_LED_STATE_BADGE_AND_UNDERGLOW:
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user_config.current_led_state = THINK65_LED_STATE_ON;
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break;
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case THINK65_LED_STATE_ON:
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user_config.current_led_state = THINK65_LED_STATE_OFF;
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break;
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default:
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break;
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}
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}
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void apply_led_state(void) {
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uint8_t h = rgblight_get_hue();
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uint8_t s = rgblight_get_sat();
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uint8_t v = rgblight_get_val();
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// Set the RGB ranges based on the current state
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switch(user_config.current_led_state) {
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case THINK65_LED_STATE_OFF:
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rgblight_sethsv_range(THINK65_LEDS_OFF, THINK65_LED_RANGE_ALL);
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break;
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case THINK65_LED_STATE_ESC:
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rgblight_sethsv_range(h, s, v, THINK65_LED_RANGE_ESC);
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rgblight_sethsv_range(THINK65_LEDS_OFF, THINK65_LED_RANGE_BADGE);
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rgblight_sethsv_range(THINK65_LEDS_OFF, THINK65_LED_RANGE_UNDERGLOW);
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break;
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case THINK65_LED_STATE_BADGE:
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rgblight_sethsv_range(THINK65_LEDS_OFF, THINK65_LED_RANGE_ESC);
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rgblight_sethsv_range(h, s, v, THINK65_LED_RANGE_BADGE);
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rgblight_sethsv_range(THINK65_LEDS_OFF, THINK65_LED_RANGE_UNDERGLOW);
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break;
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case THINK65_LED_STATE_UNDERGLOW:
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rgblight_sethsv_range(THINK65_LEDS_OFF, THINK65_LED_RANGE_ESC);
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rgblight_sethsv_range(THINK65_LEDS_OFF, THINK65_LED_RANGE_BADGE);
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rgblight_sethsv_range(h, s, v, THINK65_LED_RANGE_UNDERGLOW);
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break;
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case THINK65_LED_STATE_ESC_AND_BADGE:
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rgblight_sethsv_range(h, s, v, THINK65_LED_RANGE_ESC);
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rgblight_sethsv_range(h, s, v, THINK65_LED_RANGE_BADGE);
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rgblight_sethsv_range(THINK65_LEDS_OFF, THINK65_LED_RANGE_UNDERGLOW);
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break;
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case THINK65_LED_STATE_ESC_AND_UNDERGLOW:
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rgblight_sethsv_range(h, s, v, THINK65_LED_RANGE_ESC);
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rgblight_sethsv_range(THINK65_LEDS_OFF, THINK65_LED_RANGE_BADGE);
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rgblight_sethsv_range(h, s, v, THINK65_LED_RANGE_UNDERGLOW);
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break;
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case THINK65_LED_STATE_BADGE_AND_UNDERGLOW:
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rgblight_sethsv_range(THINK65_LEDS_OFF, THINK65_LED_RANGE_ESC);
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rgblight_sethsv_range(h, s, v, THINK65_LED_RANGE_BADGE);
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rgblight_sethsv_range(h, s, v, THINK65_LED_RANGE_UNDERGLOW);
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break;
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case THINK65_LED_STATE_ON:
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rgblight_sethsv_range(h, s, v, THINK65_LED_RANGE_ALL);
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break;
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default:
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break;
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}
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}
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void keyboard_post_init_user(void) {
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user_config.raw = eeconfig_read_user();
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if (user_config.current_led_state >= THINK65_LED_STATE_OFF && user_config.current_led_state <= THINK65_LED_STATE_ON) {
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// If the current state read from user EEPROM is valid, apply it
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apply_led_state();
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} else {
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// Setup a new default state of off
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user_config.current_led_state = THINK65_LED_STATE_OFF;
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apply_led_state();
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eeconfig_update_user(user_config.raw);
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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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switch (keycode) {
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case CYC_LED:
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if (record->event.pressed) {
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cycle_led_state();
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apply_led_state();
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eeconfig_update_user(user_config.raw);
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}
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break;
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case TOG_ESC:
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if (record->event.pressed) {
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toggle_led_state(THINK65_LED_ESC_RANGE_BIT);
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apply_led_state();
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eeconfig_update_user(user_config.raw);
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}
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break;
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case TOG_BDG:
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if (record->event.pressed) {
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toggle_led_state(THINK65_LED_BADGE_RANGE_BIT);
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apply_led_state();
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eeconfig_update_user(user_config.raw);
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}
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break;
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case TOG_UGL:
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if (record->event.pressed) {
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toggle_led_state(THINK65_LED_UNDERGLOW_RANGE_BIT);
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apply_led_state();
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eeconfig_update_user(user_config.raw);
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}
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break;
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case KC_CAPS:
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if (!record->event.pressed) {
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// connect capslock LED control to the badge LEDs
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host_keyboard_led_state().caps_lock ? set_led_state(THINK65_LED_BADGE_RANGE_BIT) : clear_led_state(THINK65_LED_BADGE_RANGE_BIT);
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apply_led_state();
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eeconfig_update_user(user_config.raw);
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}
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break;
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default:
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break;
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}
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return true;
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}
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const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
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[0] = LAYOUT_65_iso_badge(
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/*
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* ┌───┬───┬───┬───┬───┬───┬───┬───┬───┬───┬───┬───┬───┬───────┬───┐
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* │Esc│ 1 │ 2 │ 3 │ 4 │ 5 │ 6 │ 7 │ 8 │ 9 │ 0 │ - │ = │ Backsp│ ` │
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* ├───┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─────┼───┤
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* │ Tab │ Q │ W │ E │ R │ T │ Y │ U │ I │ O │ P │ [ │ ] │ │Del│
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* ├─────┴┬──┴┬──┴┬──┴┬──┴┬──┴┬──┴┬──┴┬──┴┬──┴┬──┴┬──┴┬──┴┐ Ent├───┤
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* │ Caps │ A │ S │ D │ F │ G │ H │ J │ K │ L │ ; │ ' │ # │ │ │
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* ├────┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴───┴┬───┤ │
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* │Shft│ \ │ Z │ X │ C │ V │ B │ N │ M │ , │ . │ / │ Shift│ ↑ │ │
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* ├────┼───┴┬──┴─┬─┴───┴───┴───┴───┴───┴──┬┴───┼───┴┬─┬───┼───┼───┤
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* │Ctrl│LAlt│GUI │ Spaaaaaaace │RAlt│ L1 │ │ ← │ ↓ │ → │
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* └────┴────┴────┴────────────────────────┴────┴────┘ └───┴───┴───┘
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*/
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KC_ESC, KC_1, KC_2, KC_3, KC_4, KC_5, KC_6, KC_7, KC_8, KC_9, KC_0, KC_MINS, KC_EQL, KC_BSPC, KC_GRV,
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KC_TAB, KC_Q, KC_W, KC_E, KC_R, KC_T, KC_Y, KC_U, KC_I, KC_O, KC_P, KC_LBRC, KC_RBRC, KC_DEL,
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KC_CAPS, KC_A, KC_S, KC_D, KC_F, KC_G, KC_H, KC_J, KC_K, KC_L, KC_SCLN, KC_QUOT, KC_NUHS, KC_ENT,
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KC_LSFT, KC_NUBS, KC_Z, KC_X, KC_C, KC_V, KC_B, KC_N, KC_M, KC_COMM, KC_DOT, KC_SLSH, KC_RSFT, KC_UP,
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KC_LCTL, KC_LALT, KC_LGUI, KC_SPC, KC_RALT, MO(1), KC_LEFT, KC_DOWN, KC_RGHT
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),
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[1] = LAYOUT_65_iso_badge(
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/*
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* ┌───┬───┬───┬───┬───┬───┬───┬───┬───┬───┬───┬───┬───┬───────┬───┐
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* │RST│ F1│ F2│ F3│ F4│ F5│ F6│ F7│ F8│ F9│F10│F11│F12│ │ │
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* ├───┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─────┼───┤
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* │ TOG │PLN│MOD│HU+│HU-│SA+│SA-│VA+│VA-│ │ │ │ │ │ │
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* ├─────┴┬──┴┬──┴┬──┴┬──┴┬──┴┬──┴┬──┴┬──┴┬──┴┬──┴┬──┴┬──┴┐ ├───┤
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* │ │ │ │ │ │ │ │ │ │ │ │ │ │ │ │
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* ├────┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴─┬─┴───┴┬───┤ │
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* │ │ │ │ │ │ │ │ │ │ │ │ │ │CYC│ │
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* ├────┼───┴┬──┴─┬─┴───┴───┴───┴───┴───┴──┬┴───┼───┴┬─┬───┼───┼───┤
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* │ │ │ │ │ │ │ │ESC│BDG│UGL│
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* └────┴────┴────┴────────────────────────┴────┴────┘ └───┴───┴───┘
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*/
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RESET, KC_F1, KC_F2, KC_F3, KC_F4, KC_F5, KC_F6, KC_F7, KC_F8, KC_F9, KC_F10, KC_F11, KC_F12, _______, _______,
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RGB_TOG, RGB_M_P, RGB_MOD, RGB_HUI, RGB_HUD, RGB_SAI, RGB_SAD, RGB_VAI, RGB_VAD, _______, _______, _______, _______, _______,
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_______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______,
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_______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, CYC_LED,
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_______, _______, _______, _______, _______, _______, TOG_ESC, TOG_BDG, TOG_UGL
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),
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};
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