172 lines
6.4 KiB
C
172 lines
6.4 KiB
C
/* Copyright 2020 joshajohnson 2021 peepeetee
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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 "quantum.h"
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#ifdef RGB_MATRIX_ENABLE
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led_config_t g_led_config = { {
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// Key Matrix to LED Index
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{NO_LED,NO_LED,NO_LED,NO_LED},
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{ 7, 8, 9, 10},
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{ 11, 12, 13, 14},
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{ 15, 16, 17, 18},
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{ 19, 20, 21, 22},
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{ 23, 24, 25, 26}
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//todo: assign leds to keys differently for the different layouts
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}, {
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// LED Index to Physical Position
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{ 190, 50}, { 111, 50}, { 35, 50}, {38, 0}, {38, 35}, {186, 35}, {186, 0}, // UNDERGLOW
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//todo: underglow location needs to be recalculated. The top row is above row 4, and for now they have the same y value 0
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{ 0, 0}, {75, 0}, {150, 0}, {225, 0}, // row 4
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{ 0, 16}, {75, 16}, {150, 16}, {225, 16}, // row 3
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{ 0, 32}, {75, 32}, {150, 32}, {225, 32}, // row 2
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{ 0, 48}, {75, 48}, {150, 48}, {225, 48}, // row 1
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{ 0, 64}, {75, 64}, {150, 64}, {225, 64} // row 0
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}, {
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// LED Index to Flag
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LED_FLAG_UNDERGLOW, LED_FLAG_UNDERGLOW, LED_FLAG_UNDERGLOW, LED_FLAG_UNDERGLOW, LED_FLAG_UNDERGLOW, LED_FLAG_UNDERGLOW, LED_FLAG_UNDERGLOW, // UNDERGLOW
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LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT, // row 4
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LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT, // row 3
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LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT, // row 2
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LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT, // row 1
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LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT, LED_FLAG_KEYLIGHT // row 0
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} };
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#endif
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// #if LED_MERGE_NUMPAD_LEFT_HANDED_ENTER && LED_MERGE_NUMPAD_RIGHT_HANDED_ZERO
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// #error lower left enter conflicts with lower left zero
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// #endif
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// #if LED_MERGE_NUMPAD_RIGHT_HANDED_ENTER && LED_MERGE_NUMPAD_LEFT_HANDED_ZERO
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// #error lower right enter conflicts with lower right zero
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// #endif
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// /* LAYOUT_left_handed
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// * ┌───┬───┐
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// * │01 │02 │
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// * ┌───┼───┼───┼───┐
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// * │10 │11 │12 │13 │
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// * ├───┼───┼───┼───┤
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// * │ │21 │22 │23 │
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// * │20 ├───┼───┼───┤
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// * │ │31 │32 │33 │
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// * ├───┼───┼───┼───┤
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// * │ │41 │42 │43 │
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// * │40 ├───┼───┴───┤
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// * │ │51 │ 52 │
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// * └───┴───┴───────┘
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// */
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// #ifndef LED_MERGE_NUMPAD_LEFT_HANDED_PLUS //key 20
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// #define LED_MERGE_NUMPAD_LEFT_HANDED_PLUS FALSE
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// #endif // LED_MERGE_NUMPAD_LEFT_HANDED_PLUS
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// #ifndef LED_MERGE_NUMPAD_LEFT_HANDED_ENTER //key 40
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// #define LED_MERGE_NUMPAD_LEFT_HANDED_ENTER FALSE
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// #endif // LED_MERGE_NUMPAD_LEFT_HANDED_ENTER
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// #ifndef LED_MERGE_NUMPAD_LEFT_HANDED_ZERO //key 52
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// #define LED_MERGE_NUMPAD_LEFT_HANDED_ZERO FALSE
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// #endif // LED_MERGE_NUMPAD_LEFT_HANDED_ZERO
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// /* LAYOUT_right_handed
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// * ┌───┬───┐
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// * │01 │02 │
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// * ┌───┼───┼───┼───┐
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// * │10 │11 │12 │13 │
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// * ├───┼───┼───┼───┤
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// * │20 │21 │22 │ │
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// * ├───┼───┼───┤23 │
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// * │30 │31 │32 │ │
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// * ├───┼───┼───┼───┤
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// * │40 │41 │42 │ │
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// * ├───┴───┼───┤43 │
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// * │ 50 │52 │ │
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// * └───────┴───┴───┘
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// */
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// //LOCATION OF bottom row 0 NOT TESTED, WAITING ENDORSEMENT FROM MANUFACTURER
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// #ifndef LED_MERGE_NUMPAD_RIGHT_HANDED_PLUS // key 23
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// #define LED_MERGE_NUMPAD_RIGHT_HANDED_PLUS FALSE
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// #endif // LED_MERGE_NUMPAD_RIGHT_HANDED_PLUS
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// #ifndef LED_MERGE_NUMPAD_RIGHT_HANDED_ENTER // key 43
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// #define LED_MERGE_NUMPAD_RIGHT_HANDED_ENTER FALSE
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// #endif // LED_MERGE_NUMPAD_RIGHT_HANDED_ENTER
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// #ifndef LED_MERGE_NUMPAD_RIGHT_HANDED_ZERO // key 50 (confirm with manufacturer)
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// #define LED_MERGE_NUMPAD_RIGHT_HANDED_ZERO FALSE
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// #endif // LED_MERGE_NUMPAD_RIGHT_HANDED_ZERO
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// uint8_t rgb_matrix_map_row_column_to_led_kb(uint8_t row, uint8_t column, uint8_t *led_i) {
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// // Keys here have 2 leds. Here we add the led that is not bound to the key
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// // and the default led would be added
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// // by the default code that runs after this in rgb_matrix_map_row_column_to_led
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// uint8_t counter = 0;
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// #if LED_MERGE_NUMPAD_LEFT_HANDED_PLUS //key 20, leds 7 and 11, 7 already bound
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// if (row == 2 && column == 0) {
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// led_i[counter] = 11;
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// counter ++;
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// }
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// #endif
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// #if LED_MERGE_NUMPAD_LEFT_HANDED_ENTER //key 40, leds 19 and 23, 23 already bound
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// if (row == 4 && column == 0) {
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// led_i[counter] = 23;
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// counter ++;
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// }
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// #endif
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// #if LED_MERGE_NUMPAD_LEFT_HANDED_ZERO //key 52, leds 25 and 26, 26 already bound
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// if (row == 5 && column == 2) {
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// led_i[counter] = 26;
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// counter ++;
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// }
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// #endif
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// #if LED_MERGE_NUMPAD_RIGHT_HANDED_PLUS // key 23, led 14 and 18, 14 already bound
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// if (row == 2 && column == 3) {
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// led_i[counter] = 18;
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// counter ++;
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// }
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// #endif
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// #if LED_MERGE_NUMPAD_RIGHT_HANDED_ENTER // key 43, led 22 and 26, 22 already bound
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// if (row == 4 && column == 3) {
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// led_i[counter] = 26;
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// counter ++;
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// }
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// #endif
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// #if LED_MERGE_NUMPAD_RIGHT_HANDED_ZERO // key 50 (confirm with manufacturer)
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// // LED 23 and 24, 23(?) already bound
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// if (row == 5 && column == 0) {
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// led_i[counter] = 24;
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// counter ++;
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// }
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// #endif
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// return counter;
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// }
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