effc3e380f
* Add QMK Configurator support and remove userspace definitions * fix that build breakage * Unsupport community layouts but use standard layouts
339 lines
9.9 KiB
C
339 lines
9.9 KiB
C
/* Copyright 2018 Yiancar
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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 "hs60.h"
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#include "config.h"
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// Please ignore this is for upcoming features
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/*#ifdef RAW_ENABLE
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void raw_hid_receive( uint8_t *data, uint8_t length )
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{
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uint8_t command = data[0];
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switch ( command )
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{
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case id_protocol_version:
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{
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msg_protocol_version *msg = (msg_protocol_version*)&data[1];
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msg->version = PROTOCOL_VERSION;
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break;
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}
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#if USE_KEYMAPS_IN_EEPROM
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case id_keymap_keycode_load:
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{
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msg_keymap_keycode_load *msg = (msg_keymap_keycode_load*)&data[1];
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msg->keycode = keymap_keycode_load( msg->layer, msg->row, msg->column );
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break;
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}
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case id_keymap_keycode_save:
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{
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msg_keymap_keycode_save *msg = (msg_keymap_keycode_save*)&data[1];
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keymap_keycode_save( msg->layer, msg->row, msg->column, msg->keycode);
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break;
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}
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case id_keymap_default_save:
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{
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keymap_default_save();
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break;
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}
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#endif // USE_KEYMAPS_IN_EEPROM
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case id_backlight_config_set_values:
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{
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msg_backlight_config_set_values *msg = (msg_backlight_config_set_values*)&data[1];
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backlight_config_set_values(msg);
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backlight_config_save();
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break;
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}
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case id_backlight_config_set_alphas_mods:
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{
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msg_backlight_config_set_alphas_mods *msg = (msg_backlight_config_set_alphas_mods*)&data[1];
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backlight_config_set_alphas_mods( msg->alphas_mods );
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backlight_config_save();
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break;
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}
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case id_backlight_set_key_color:
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{
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msg_backlight_set_key_color *msg = (msg_backlight_set_key_color*)&data[1];
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backlight_set_key_color(msg->row, msg->column, msg->hsv);
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break;
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}
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case id_system_get_state:
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{
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msg_system_state *msg = (msg_system_state*)&data[1];
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msg->value = backlight_get_tick();
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break;
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}
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default:
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{
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// Unhandled message.
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data[0] = id_unhandled;
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break;
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}
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}
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// Return same buffer with values changed
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raw_hid_send( data, length );
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}
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#endif*/
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const is31_led g_is31_leds[DRIVER_LED_TOTAL] = {
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/* Refer to IS31 manual for these locations
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* driver
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* | R location
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* | | G location
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* | | | B location
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* | | | | */
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{0, C1_1, C3_2, C4_2}, //A1
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{0, C1_2, C2_2, C4_3}, //A2
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{0, C1_3, C2_3, C3_3}, //A3
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{0, C1_4, C2_4, C3_4}, //A4
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{0, C1_5, C2_5, C3_5}, //A5
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{0, C1_6, C2_6, C3_6}, //A6
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{0, C1_7, C2_7, C3_7}, //A7
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{0, C1_8, C2_8, C3_8}, //A8
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{0, C9_1, C8_1, C7_1}, //A9
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{0, C9_2, C8_2, C7_2}, //A10
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{0, C9_3, C8_3, C7_3}, //A11
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{0, C9_4, C8_4, C7_4}, //A12
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{0, C9_5, C8_5, C7_5}, //A13
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{0, C9_6, C8_6, C7_6}, //A14
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{0, C9_7, C8_7, C6_6}, //A15
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{0, C9_8, C7_7, C6_7}, //A16
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{0, C1_9, C3_10, C4_10}, //B1
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{0, C1_10, C2_10, C4_11}, //B2
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{0, C1_11, C2_11, C3_11}, //B3
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{0, C1_12, C2_12, C3_12}, //B4
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{0, C1_13, C2_13, C3_13}, //B5
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{0, C1_14, C2_14, C3_14}, //B6
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{0, C1_15, C2_15, C3_15}, //B7
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{0, C1_16, C2_16, C3_16}, //B8
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{0, C9_9, C8_9, C7_9}, //B9
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{0, C9_10, C8_10, C7_10}, //B10
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{0, C9_11, C8_11, C7_11}, //B11
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{0, C9_12, C8_12, C7_12}, //B12
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{0, C9_13, C8_13, C7_13}, //B13
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{0, C9_14, C8_14, C7_14}, //B14
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{1, C1_1, C3_2, C4_2}, //C1
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{1, C1_2, C2_2, C4_3}, //C2
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{1, C1_3, C2_3, C3_3}, //C3
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{1, C1_4, C2_4, C3_4}, //C4
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{1, C1_5, C2_5, C3_5}, //C5
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{1, C1_6, C2_6, C3_6}, //C6
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{1, C1_7, C2_7, C3_7}, //C7
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{1, C1_8, C2_8, C3_8}, //C8
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{1, C9_1, C8_1, C7_1}, //C9
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{1, C9_2, C8_2, C7_2}, //C10
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{1, C9_3, C8_3, C7_3}, //C11
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{1, C9_4, C8_4, C7_4}, //C12
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{1, C9_5, C8_5, C7_5}, //C13
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{1, C9_6, C8_6, C7_6}, //C14
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{1, C9_7, C8_7, C6_6}, //C15
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{1, C9_8, C7_7, C6_7}, //C16
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{1, C1_9, C3_10, C4_10}, //D1
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{1, C1_10, C2_10, C4_11}, //D2
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{1, C1_11, C2_11, C3_11}, //D3
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{1, C1_12, C2_12, C3_12}, //D4
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{1, C1_13, C2_13, C3_13}, //D5
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{1, C1_14, C2_14, C3_14}, //D6
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{1, C1_15, C2_15, C3_15}, //D7
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{1, C1_16, C2_16, C3_16}, //D8
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{1, C9_9, C8_9, C7_9}, //D9
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{1, C9_10, C8_10, C7_10}, //D10
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{1, C9_11, C8_11, C7_11}, //D11
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{1, C9_12, C8_12, C7_12}, //D12
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{1, C9_13, C8_13, C7_13}, //D13
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{1, C9_14, C8_14, C7_14}, //D14
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{1, C9_15, C8_15, C6_14}, //D15
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{1, C9_16, C7_15, C6_15} //D16
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};
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const rgb_led g_rgb_leds[DRIVER_LED_TOTAL] = {
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//
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// C7, C6, C5, C4, C3, C2, C1, A7, A6, A5, A4, A3, A2, A1,
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// C8, C9, C10, C11, C12, C13, C14, A8, A9, A10, A11, A12, A13, ---,
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// D4, D5, D6, D7, D8, C16, C15, B5, B6, B7, B8, A16, A15, A14,
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// D3, D2, D1, D9, D10, D11, D12, B4, B3, B2, B1, B9, ---, B10,
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// D16, D15, D14, ---, ---, ---, D13, ---, ---, ---, B14, B13, B12, B11
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/* {row | col << 4}
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* | {x=0..224, y=0..64}
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* | | modifier
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* | | | */
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{{0|(13<<4)}, {224, 0}, 1}, //A1-A16
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{{0|(12<<4)}, {204, 0}, 0},
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{{0|(11<<4)}, {187, 0}, 0},
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{{0|(10<<4)}, {170, 0}, 0},
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{{0|(9<<4)}, {153, 0}, 0},
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{{0|(8<<4)}, {136, 0}, 0},
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{{0|(7<<4)}, {119, 0}, 0},
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{{1|(7<<4)}, {119, 16}, 0},
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{{1|(8<<4)}, {136, 16}, 0},
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{{1|(9<<4)}, {153, 16}, 0},
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{{1|(10<<4)}, {170, 16}, 0},
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{{1|(11<<4)}, {187, 16}, 0},
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{{1|(12<<4)}, {204, 16}, 0},
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{{2|(13<<4)}, {224, 8}, 1},
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{{2|(12<<4)}, {204, 32}, 0},
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{{2|(11<<4)}, {187, 32}, 0},
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{{3|(10<<4)}, {170, 48}, 0}, //B1-B14
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{{3|(9<<4)}, {153, 48}, 0},
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{{3|(8<<4)}, {136, 48}, 0},
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{{3|(7<<4)}, {119, 48}, 0},
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{{2|(7<<4)}, {119, 32}, 0},
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{{2|(8<<4)}, {136, 32}, 0},
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{{2|(9<<4)}, {153, 32}, 0},
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{{2|(10<<4)}, {170, 32}, 0},
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{{3|(11<<4)}, {187, 48}, 0},
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{{3|(13<<4)}, {214, 48}, 1},
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{{4|(13<<4)}, {224, 64}, 1},
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{{4|(12<<4)}, {204, 64}, 1},
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{{4|(11<<4)}, {187, 64}, 1},
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{{4|(10<<4)}, {170, 64}, 1},
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{{0|(6<<4)}, {102, 0}, 0}, //C1-C16
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{{0|(5<<4)}, { 85, 0}, 0},
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{{0|(4<<4)}, { 68, 0}, 0},
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{{0|(3<<4)}, { 51, 0}, 0},
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{{0|(2<<4)}, { 34, 0}, 0},
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{{0|(1<<4)}, { 17, 0}, 0},
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{{0|(0<<4)}, { 0, 0}, 1},
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{{1|(0<<4)}, { 0, 16}, 1},
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{{1|(1<<4)}, { 17, 16}, 0},
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{{1|(2<<4)}, { 34, 16}, 0},
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{{1|(3<<4)}, { 51, 16}, 0},
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{{1|(4<<4)}, { 68, 16}, 0},
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{{1|(5<<4)}, { 85, 16}, 0},
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{{1|(6<<4)}, {102, 16}, 0},
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{{2|(6<<4)}, {102, 32}, 0},
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{{2|(5<<4)}, { 85, 32}, 0},
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{{3|(2<<4)}, { 32, 48}, 0}, //D1-D16
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{{3|(1<<4)}, { 17, 48}, 0},
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{{3|(0<<4)}, { 0, 48}, 1},
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{{2|(0<<4)}, { 0, 32}, 1},
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{{2|(1<<4)}, { 17, 32}, 0},
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{{2|(2<<4)}, { 34, 32}, 0},
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{{2|(3<<4)}, { 51, 32}, 0},
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{{2|(4<<4)}, { 68, 32}, 0},
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{{3|(3<<4)}, { 51, 48}, 0},
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{{3|(4<<4)}, { 68, 48}, 0},
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{{3|(5<<4)}, { 85, 48}, 0},
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{{3|(6<<4)}, {102, 48}, 0},
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{{4|(3<<4)}, {102, 64}, 0},
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{{4|(2<<4)}, { 34, 68}, 1},
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{{4|(1<<4)}, { 17, 68}, 1},
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{{4|(0<<4)}, { 0, 68}, 1}
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};
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void bootmagic_lite(void)
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{
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// The lite version of TMK's bootmagic made by Wilba.
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// 100% less potential for accidentally making the
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// keyboard do stupid things.
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// We need multiple scans because debouncing can't be turned off.
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matrix_scan();
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wait_ms(DEBOUNCING_DELAY);
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matrix_scan();
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// If the Esc and space bar are held down on power up,
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// reset the EEPROM valid state and jump to bootloader.
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// Assumes Esc is at [0,0] and spacebar is at [4,6].
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// This isn't very generalized, but we need something that doesn't
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// rely on user's keymaps in firmware or EEPROM.
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if ( ( matrix_get_row(0) & (1<<0) ) &&
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( matrix_get_row(4) & (1<<6) ) )
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{
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// Set the TMK/QMK EEPROM state as invalid.
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eeconfig_disable();
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//eeprom_set_valid(false);
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// Jump to bootloader.
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bootloader_jump();
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}
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}
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void matrix_init_kb(void) {
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// put your keyboard start-up code here
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// runs once when the firmware starts up
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bootmagic_lite();
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// Please ignore this is for upcoming features
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// If the EEPROM has the magic, the data is good.
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// OK to load from EEPROM.
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/*if (eeprom_is_valid())
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{
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backlight_config_load();
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// TODO: do something to "turn on" keymaps in EEPROM?
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}
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else
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{
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// If the EEPROM has not been saved before, or is out of date,
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// save the default values to the EEPROM. Default values
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// come from construction of the zeal_backlight_config instance.
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backlight_config_save();
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// Clear the LED colors stored in EEPROM
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for ( int row=0; row < MATRIX_ROWS; row++ )
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{
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HSV hsv;
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for ( int column=0; column < MATRIX_COLS; column++ )
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{
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hsv.h = rand() & 0xFF;
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hsv.s = rand() & 0x7F;
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hsv.v = 255;
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backlight_set_key_color( row, column, hsv );
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}
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}
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#ifdef USE_KEYMAPS_IN_EEPROM
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keymap_default_save();
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#endif
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// Save the magic number last, in case saving was interrupted
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eeprom_set_valid(true);
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}*/
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matrix_init_user();
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}
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void matrix_scan_kb(void) {
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matrix_scan_user();
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}
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bool process_record_kb(uint16_t keycode, keyrecord_t *record) {
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return process_record_user(keycode, record);
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}
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void led_set_kb(uint8_t usb_led) {
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//backlight_set_indicator_state(usb_led);
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}
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void suspend_power_down_kb(void)
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{
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rgb_matrix_set_suspend_state(true);
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}
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void suspend_wakeup_init_kb(void)
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{
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rgb_matrix_set_suspend_state(false);
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}
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