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#include <stdbool.h>
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#include <avr/io.h>
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#include <util/delay.h>
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#include "print.h"
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#include "debug.h"
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#include "timer.h"
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#include "util.h"
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#include "jump_bootloader.h"
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#include "usb_keyboard.h"
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#include "usb_mouse.h"
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#include "usb_keycodes.h"
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#include "layer.h"
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#include "matrix_skel.h"
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#include "keymap_skel.h"
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#include "controller.h"
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#include "key_process.h"
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#define MOUSE_MOVE_UNIT 10
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#define MOUSE_MOVE_ACCEL (mouse_repeat < 50 ? mouse_repeat/5 : 10)
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#ifndef MOUSE_DELAY_TIME
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# define MOUSE_DELAY_TIME 255
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#endif
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#define MOUSE_DELAY_MS (MOUSE_DELAY_TIME >> (mouse_repeat < 5 ? mouse_repeat : 4))
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// TODO: refactoring
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void proc_matrix(void) {
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static int mouse_repeat = 0;
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bool modified = false;
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//bool has_ghost = false;
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int key_index = 0;
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uint8_t mouse_btn = 0;
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int8_t mouse_x = 0;
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int8_t mouse_y = 0;
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int8_t mouse_vwheel = 0;
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int8_t mouse_hwheel = 0;
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uint8_t fn_bits = 0;
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matrix_scan();
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modified = matrix_is_modified();
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if (modified) {
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if (debug_matrix) matrix_print();
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#ifdef DEBUG_LED
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// LED flash for debug
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DEBUG_LED_CONFIG;
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DEBUG_LED_ON;
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#endif
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}
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if (matrix_has_ghost()) {
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// should send error?
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debug("matrix has ghost!!\n");
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return;
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}
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usb_keyboard_clear_report();
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for (int row = 0; row < matrix_rows(); row++) {
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for (int col = 0; col < matrix_cols(); col++) {
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if (!matrix_is_on(row, col)) continue;
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uint8_t code = layer_get_keycode(row, col);
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if (code == KB_NO) {
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// do nothing
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} else if (IS_MOD(code)) {
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usb_keyboard_mods |= MOD_BIT(code);
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} else if (IS_MOUSE(code)) {
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// mouse
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if (code == MS_UP)
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mouse_y -= MOUSE_MOVE_UNIT + MOUSE_MOVE_ACCEL;
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if (code == MS_DOWN)
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mouse_y += MOUSE_MOVE_UNIT + MOUSE_MOVE_ACCEL;
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if (code == MS_LEFT)
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mouse_x -= MOUSE_MOVE_UNIT + MOUSE_MOVE_ACCEL;
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if (code == MS_RIGHT)
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mouse_x += MOUSE_MOVE_UNIT + MOUSE_MOVE_ACCEL;
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if (code == MS_BTN1) mouse_btn |= BIT_BTN1;
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if (code == MS_BTN2) mouse_btn |= BIT_BTN2;
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if (code == MS_BTN3) mouse_btn |= BIT_BTN3;
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if (code == MS_BTN4) mouse_btn |= BIT_BTN4;
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if (code == MS_BTN5) mouse_btn |= BIT_BTN5;
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if (code == MS_WH_UP) mouse_vwheel += 1;
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if (code == MS_WH_DOWN) mouse_vwheel -= 1;
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if (code == MS_WH_LEFT) mouse_hwheel -= 1;
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if (code == MS_WH_RIGHT) mouse_hwheel += 1;
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} else if (IS_FN(code)) {
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fn_bits |= FN_BIT(code);
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} else {
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// normal keys
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if (key_index < 6)
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usb_keyboard_keys[key_index] = code;
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key_index++;
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}
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}
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}
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if (modified) {
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#ifdef DEBUG_LED
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// LED flash for debug
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DEBUG_LED_CONFIG;
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DEBUG_LED_OFF;
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#endif
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}
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layer_switching(fn_bits);
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// when 4 left modifier keys down
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if (keymap_is_special_mode(fn_bits)) {
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switch (usb_keyboard_keys[0]) {
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case KB_H: // help
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print_enable = true;
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print("b: jump to bootloader\n");
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print("d: debug print toggle\n");
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print("k: keyboard debug toggle\n");
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print("m: mouse debug toggle\n");
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print("x: matrix debug toggle\n");
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print("v: print version\n");
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print("t: print timer count\n");
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print("p: print enable toggle\n");
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_delay_ms(500);
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print_enable = false;
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break;
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case KB_B: // bootloader
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usb_keyboard_clear_report();
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usb_keyboard_send();
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print_enable = true;
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print("jump to bootloader...\n");
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_delay_ms(1000);
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jump_bootloader(); // not return
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break;
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case KB_D: // debug all toggle
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usb_keyboard_clear_report();
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usb_keyboard_send();
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debug_enable = !debug_enable;
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if (debug_enable) {
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print_enable = true;
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print("debug enabled.\n");
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debug_matrix = true;
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debug_keyboard = true;
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debug_mouse = true;
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} else {
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print("debug disabled.\n");
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print_enable = false;
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debug_matrix = false;
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debug_keyboard = false;
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debug_mouse = false;
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}
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_delay_ms(1000);
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break;
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case KB_X: // debug matrix toggle
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usb_keyboard_clear_report();
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usb_keyboard_send();
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debug_matrix = !debug_matrix;
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if (debug_matrix)
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print("debug matrix enabled.\n");
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else
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print("debug matrix disabled.\n");
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_delay_ms(1000);
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break;
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case KB_K: // debug keyboard toggle
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usb_keyboard_clear_report();
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usb_keyboard_send();
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debug_keyboard = !debug_keyboard;
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if (debug_keyboard)
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print("debug keyboard enabled.\n");
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else
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print("debug keyboard disabled.\n");
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_delay_ms(1000);
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break;
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case KB_M: // debug mouse toggle
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usb_keyboard_clear_report();
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usb_keyboard_send();
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debug_mouse = !debug_mouse;
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if (debug_mouse)
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print("debug mouse enabled.\n");
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else
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print("debug mouse disabled.\n");
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_delay_ms(1000);
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break;
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case KB_V: // print version & information
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usb_keyboard_clear_report();
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usb_keyboard_send();
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print_enable = true;
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print(STR(DESCRIPTION) "\n");
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_delay_ms(1000);
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break;
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case KB_T: // print timer
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usb_keyboard_clear_report();
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usb_keyboard_send();
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print_enable = true;
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print("timer: "); phex16(timer_count); print("\n");
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_delay_ms(500);
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break;
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case KB_P: // print toggle
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usb_keyboard_clear_report();
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usb_keyboard_send();
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if (print_enable) {
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print("print disabled.\n");
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print_enable = false;
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} else {
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print_enable = true;
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print("print enabled.\n");
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}
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_delay_ms(1000);
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break;
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}
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}
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// send mouse packet to host
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if (mouse_x || mouse_y || mouse_vwheel || mouse_hwheel || mouse_btn != mouse_buttons) {
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mouse_buttons = mouse_btn;
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if (mouse_x && mouse_y)
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usb_mouse_move(mouse_x*0.7, mouse_y*0.7, mouse_vwheel, mouse_hwheel);
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else
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usb_mouse_move(mouse_x, mouse_y, mouse_vwheel, mouse_hwheel);
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usb_mouse_print(mouse_x, mouse_y, mouse_vwheel, mouse_hwheel);
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// acceleration
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_delay_ms(MOUSE_DELAY_MS);
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mouse_repeat++;
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} else {
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mouse_repeat = 0;
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}
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// send key packet to host
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if (modified) {
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if (key_index > 6) {
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//Rollover
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}
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usb_keyboard_send();
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}
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}
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