mirror of
https://github.com/qmk/qmk_firmware.git
synced 2024-12-22 17:39:55 +00:00
9632360caa
* Add ARRAY_SIZE and CEILING utility macros * Apply a coccinelle patch to use ARRAY_SIZE * fix up some straggling items * Fix 'make test:secure' * Enhance ARRAY_SIZE macro to reject acting on pointers The previous definition would not produce a diagnostic for ``` int *p; size_t num_elem = ARRAY_SIZE(p) ``` but the new one will. * explicitly get definition of ARRAY_SIZE * Convert to ARRAY_SIZE when const is involved The following spatch finds additional instances where the array is const and the division is by the size of the type, not the size of the first element: ``` @ rule5a using "empty.iso" @ type T; const T[] E; @@ - (sizeof(E)/sizeof(T)) + ARRAY_SIZE(E) @ rule6a using "empty.iso" @ type T; const T[] E; @@ - sizeof(E)/sizeof(T) + ARRAY_SIZE(E) ``` * New instances of ARRAY_SIZE added since initial spatch run * Use `ARRAY_SIZE` in docs (found by grep) * Manually use ARRAY_SIZE hs_set is expected to be the same size as uint16_t, though it's made of two 8-bit integers * Just like char, sizeof(uint8_t) is guaranteed to be 1 This is at least true on any plausible system where qmk is actually used. Per my understanding it's universally true, assuming that uint8_t exists: https://stackoverflow.com/questions/48655310/can-i-assume-that-sizeofuint8-t-1 * Run qmk-format on core C files touched in this branch Co-authored-by: Stefan Kerkmann <karlk90@pm.me>
184 lines
6.5 KiB
C
184 lines
6.5 KiB
C
#include QMK_KEYBOARD_H
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#include "sten.h"
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/*
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* Key names are inherited from steno machines
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* .-----------------------------------------------------.
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* | LSU | LFT | LP | LH | ST1 | RF | RP | RL | RT | RD |
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* |-----------------------------------------------------|
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* | LSD | LK | LW | LR | ST2 | RR | RB | RG | RS | RZ |
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* '-----------------------------------------------------'
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*/
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// Function prefixes
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#define MEDIA (LSD | LK | LW | LR)
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#define FUNCT (LSD | LK | LP | LH)
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#define MOVE (LSU | LFT | LP | LH)
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#define SYMB (RD | RZ)
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#define NUMA (LW | LR)
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#define NUMB (RR | RB)
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// QMK Layer Numbers
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#define BASE 0
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#define GAME 1
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// Do not change QMK Layer 0! This is your main keyboard.
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// Make your QMK modifications to the later layers, to add
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// keys/customize on the first layer modify processQwerty():
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const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
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[BASE] = LAYOUT_butter(
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STN_S1, STN_TL, STN_PL, STN_HL, STN_ST1, STN_FR, STN_PR, STN_LR, STN_TR, STN_DR,
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STN_S2, STN_KL, STN_WL, STN_RL, STN_ST2, STN_RR, STN_BR, STN_GR, STN_SR, STN_ZR
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),
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// I don't game don't roast me thanks
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[GAME] = LAYOUT_butter(
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KC_Q, KC_W, KC_E, KC_R, KC_T, KC_Y, KC_U, KC_I, KC_O, KC_ENT,
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KC_A, KC_S, KC_D, KC_F, KC_G, KC_H, KC_J, KC_K, KC_L, TO(BASE)
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)
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};
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// Note: You can only use basic keycodes here!
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// P() is just a wrapper to make your life easier, any C code can be executed.
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// Only the longest matched chord is run!
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//
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// http://docs.gboards.ca
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uint32_t processQwerty(bool lookup) {
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// SECRET AGENT CHORDS
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P( LSU | LK | RS | RD, SEND_STRING(VERSION); SEND_STRING(__DATE__));
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P( LR | ST2| RR | RB, SEND(KC_BSPC));
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P( LSD | RZ, SEND(KC_SPC));
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// Dual chords
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P( LP | LH, CLICK_MOUSE(KC_MS_BTN2));
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P( ST1 | RF, CLICK_MOUSE(KC_MS_BTN1));
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P( LSU | LFT, SEND(KC_ESC));
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P( LSD | LK, SEND(KC_LSFT));
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P( RZ | RS, SEND(KC_LSFT));
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P( ST2 | RR, SEND(KC_SPC));
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P( RP | RL, SEND(KC_LGUI));
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P( RT | RD, SEND(KC_LCTL));
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P( RL | RT, SEND(KC_LALT));
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P( LSU | LSD | LFT | LK, SEND(KC_LCTL));
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P( RS | RT | RD | RZ, SEND(KC_ENT));
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// Function Layer
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P( FUNCT | RF, SEND(KC_F1));
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P( FUNCT | RP, SEND(KC_F2));
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P( FUNCT | RL, SEND(KC_F3));
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P( FUNCT | RT, SEND(KC_F4));
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P( FUNCT | RF | RR, SEND(KC_F5));
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P( FUNCT | RP | RB, SEND(KC_F6));
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P( FUNCT | RL | RG, SEND(KC_F7));
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P( FUNCT | RT | RS, SEND(KC_F8));
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P( FUNCT | RR, SEND(KC_F9));
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P( FUNCT | RB, SEND(KC_F10));
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P( FUNCT | RG, SEND(KC_F11));
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P( FUNCT | RS, SEND(KC_F12));
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// Movement Layer
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P( MOVE | RF, SEND(KC_LEFT));
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P( MOVE | RP, SEND(KC_DOWN));
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P( MOVE | RL, SEND(KC_UP));
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P( MOVE | RT, SEND(KC_RIGHT));
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P( MOVE | ST1, SEND(KC_PGUP));
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P( MOVE | ST2, SEND(KC_PGDN));
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// Media Layer
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P( MEDIA | RF, SEND(KC_MPRV));
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P( MEDIA | RP, SEND(KC_MPLY));
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P( MEDIA | RL, SEND(KC_MPLY));
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P( MEDIA | RT, SEND(KC_MNXT));
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P( MEDIA | RG, SEND(KC_VOLU));
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P( MEDIA | RB, SEND(KC_VOLD));
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P( MEDIA | RS, SEND(KC_MUTE));
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// Number Row, Right
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P( NUMB | LSU, SEND(KC_1));
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P( NUMB | LFT, SEND(KC_2));
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P( NUMB | LP, SEND(KC_3));
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P( NUMB | LH, SEND(KC_4));
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P( NUMB | ST1, SEND(KC_5));
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P( NUMB | RF, SEND(KC_6));
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P( NUMB | RP, SEND(KC_7));
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P( NUMB | RL, SEND(KC_8));
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P( NUMB | RT, SEND(KC_9));
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P( NUMB | RD, SEND(KC_0));
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// Number Row, Left
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P( NUMA | LSU, SEND(KC_1));
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P( NUMA | LFT, SEND(KC_2));
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P( NUMA | LP, SEND(KC_3));
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P( NUMA | LH, SEND(KC_4));
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P( NUMA | ST1, SEND(KC_5));
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P( NUMA | RF, SEND(KC_6));
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P( NUMA | RP, SEND(KC_7));
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P( NUMA | RL, SEND(KC_8));
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P( NUMA | RT, SEND(KC_9));
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P( NUMA | RD, SEND(KC_0));
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// Symbols and Numbers
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P( SYMB | LP | LW, SEND(KC_LSFT); SEND(KC_9)); // (
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P( SYMB | LH | LR, SEND(KC_LSFT); SEND(KC_0)); // )
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P( SYMB | ST1 | ST2, SEND(KC_GRV)); // `
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P( SYMB | RR | RF, SEND(KC_LSFT); SEND(KC_3)); // #
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P( SYMB | LFT | LK, SEND(KC_LSFT); SEND(KC_4)); // $
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P( SYMB | LSU, SEND(KC_LSFT); SEND(KC_1)); // !
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P( SYMB | LSD, SEND(KC_LSFT); SEND(KC_5)); // %
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P( SYMB | LFT, SEND(KC_LSFT); SEND(KC_2)); // @
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P( SYMB | LK, SEND(KC_LSFT); SEND(KC_6)); // ^
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P( SYMB | LP, SEND(KC_LSFT); SEND(KC_LBRC)); // {
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P( SYMB | LW, SEND(KC_LBRC));
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P( SYMB | LH, SEND(KC_LSFT); SEND(KC_RBRC)); // }
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P( SYMB | LR, SEND(KC_RBRC));
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P( SYMB | ST1, SEND(KC_LSFT); SEND(KC_BSLS)); // |
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P( SYMB | ST2, SEND(KC_LSFT); SEND(KC_GRV)); // ~
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P( SYMB | RP | RB, SEND(KC_QUOT));
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P( SYMB | RP | RG, SEND(KC_LSFT); SEND(KC_QUOT)); // "
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P( SYMB | RF, SEND(KC_KP_PLUS));
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P( SYMB | RR, SEND(KC_LSFT); SEND(KC_7)); // &
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P( SYMB | RP, SEND(KC_MINS));
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P( SYMB | RB, SEND(KC_EQL));
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P( SYMB | RL, SEND(KC_SLSH));
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P( SYMB | RG, SEND(KC_COMM));
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P( SYMB | RT, SEND(KC_PAST));
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P( SYMB | RS, SEND(KC_DOT));
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// Letters
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P( LSU | LSD, SEND(KC_A));
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P( LFT | LK, SEND(KC_S));
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P( LP | LW, SEND(KC_D));
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P( LH | LR, SEND(KC_F));
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P( ST1 | ST2, SEND(KC_G));
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P( RF | RR, SEND(KC_H));
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P( RT | RS, SEND(KC_L));
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P( RD | RZ, SEND(KC_SCLN));
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P( RG | RL, SEND(KC_K));
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P( RP | RB, SEND(KC_J));
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P( LSU, SEND(KC_Q));
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P( LSD, SEND(KC_Z));
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P( LFT, SEND(KC_W));
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P( LK, SEND(KC_X));
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P( LP, SEND(KC_E));
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P( LW, SEND(KC_C));
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P( LH, SEND(KC_R));
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P( LR, SEND(KC_V));
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P( ST1, SEND(KC_T));
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P( ST2, SEND(KC_B));
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P( RF, SEND(KC_Y));
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P( RR, SEND(KC_N));
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P( RP, SEND(KC_U));
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P( RB, SEND(KC_M));
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P( RL, SEND(KC_I));
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P( RG, SEND(KC_COMM));
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P( RT, SEND(KC_O));
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P( RS, SEND(KC_DOT));
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P( RD, SEND(KC_P));
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P( RZ, SEND(KC_SLSH));
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return 0;
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}
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// Don't fuck with this, thanks.
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size_t keymapsCount = ARRAY_SIZE(keymaps);
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