forked from forks/qmk_firmware
377 lines
12 KiB
C
377 lines
12 KiB
C
/* Copyright 2021 Batuhan Başerdem
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* <baserdem.batuhan@gmail.com> @bbaserdem
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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 "bbaserdem.h"
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// Language imports
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#include <sendstring_dvorak.h>
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// Need memcpy and memcmp from string.h along with transfer stuff
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#ifdef SPLIT_KEYBOARD
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#include "transactions.h"
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#include <string.h>
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#endif // SPLIT_KEYBOARD
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/*-------------------------*\
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|*-----KEYBOARD CONFIG-----*|
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\*-------------------------*/
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userspace_config_t userspace_config;
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userspace_runtime_t userspace_runtime;
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/*---------------------------------*\
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|*----SPLIT KEYBOARD TRANSPORT-----*|
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\*---------------------------------*/
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#ifdef SPLIT_KEYBOARD
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userspace_config_t transport_userspace_config;
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userspace_runtime_t transport_userspace_runtime;
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// Translate the RPC data to the local variable
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void userspace_config_sync(uint8_t in_buflen, const void* in_data, uint8_t out_buflen, void* out_data) {
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// Copy incoming data to local variable
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if (in_buflen == sizeof(transport_userspace_config)) {
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memcpy(&transport_userspace_config, in_data, in_buflen);
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}
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// There is no data to send back; so no output handling
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}
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void userspace_runtime_sync(uint8_t in_buflen, const void* in_data, uint8_t out_buflen, void* out_data) {
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// Copy incoming data to local variable
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if (in_buflen == sizeof(transport_userspace_runtime)) {
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memcpy(&transport_userspace_runtime, in_data, in_buflen);
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}
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// There is no data to send back; so no output handling
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}
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// Either send or receive the correct data
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void userspace_transport_update(void) {
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if (is_keyboard_master()) {
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// If we are the main device; we want to send info.
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transport_userspace_config.raw = userspace_config.raw;
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transport_userspace_runtime.raw = userspace_runtime.raw;
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} else {
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// If we are the secondary device; we want to receive info, and save to eeprom.
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userspace_config.raw = transport_userspace_config.raw;
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userspace_runtime.raw = transport_userspace_runtime.raw;
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}
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}
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// Initiate the protocol on sync
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void userspace_transport_sync(bool force_sync) {
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if (is_keyboard_master()) {
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// Keep track of the last state
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static userspace_config_t last_userspace_config;
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static userspace_runtime_t last_userspace_runtime;
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bool needs_sync = false;
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// Check if the config values are different
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if (memcmp(&transport_userspace_config, &last_userspace_config, sizeof(transport_userspace_config))) {
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needs_sync = true;
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memcpy(&last_userspace_config, &transport_userspace_config, sizeof(transport_userspace_config));
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}
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// Perform the sync if requested
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if (needs_sync || force_sync) {
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transaction_rpc_send(RPC_ID_CONFIG_SYNC, sizeof(transport_userspace_config), &transport_userspace_config);
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needs_sync = false;
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}
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// Check if the runtime values are different
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if (memcmp(&transport_userspace_runtime, &last_userspace_runtime, sizeof(transport_userspace_runtime))) {
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needs_sync = true;
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memcpy(&last_userspace_runtime, &transport_userspace_runtime, sizeof(transport_userspace_runtime));
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}
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// Perform the sync if requested
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if (needs_sync || force_sync) {
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transaction_rpc_send(RPC_ID_RUNTIME_SYNC, sizeof(transport_userspace_runtime), &transport_userspace_runtime);
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needs_sync = false;
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}
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}
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}
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#endif // SPLIT_KEYBOARD
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/*---------------------------*\
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|*-----KEYBOARD PRE INIT-----*|
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\*---------------------------*/
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/* This code runs before anything is started.
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* Good for early hardware setup
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*/
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__attribute__ ((weak)) void keyboard_pre_init_keymap(void) {}
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__attribute__ ((weak)) void keyboard_pre_init_user(void) {
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// Keymap specific stuff
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keyboard_pre_init_keymap();
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}
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/*---------------------*\
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|*-----MATRIX INIT-----*|
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\*---------------------*/
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/* This code runs once midway thru the firmware process.
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* So far, sets the base layer and fixes unicode mode
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*/
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__attribute__ ((weak)) void matrix_init_keymap(void) {}
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void matrix_init_user (void) {
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// Keymap specific things
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matrix_init_keymap();
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}
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/*----------------------------*\
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|*-----KEYBOARD POST INIT-----*|
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\*----------------------------*/
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/* This code runs after anything is started.
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* Good for late hardware setup, like setting up layer specifications
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*/
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__attribute__ ((weak)) void keyboard_post_init_keymap(void) {}
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__attribute__ ((weak)) void keyboard_post_init_user(void) {
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// Fix beginning base layer, in case some other firmware was flashed
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// set_single_persistent_default_layer(_BASE);
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// Unicode mode
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# ifdef UNICODEMAP_ENABLE
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set_unicode_input_mode(UC_LNX);
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# endif // UNICODEMAP_ENABLE
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// Split keyboard halves communication
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# ifdef SPLIT_KEYBOARD
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// Register the transactions
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transaction_register_rpc( RPC_ID_CONFIG_SYNC, userspace_config_sync );
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transaction_register_rpc(RPC_ID_RUNTIME_SYNC, userspace_runtime_sync);
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// Load default config values
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if (is_keyboard_master()) {
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// If we are main; load from eeconfig
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userspace_config.raw = eeconfig_read_user();
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// And update the transport variable
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userspace_transport_update();
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// Do one forced transfer to sync halves
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userspace_transport_sync(true);
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} else {
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// Just sync the data received
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userspace_transport_update();
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}
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# else // SPLIT_KEYBOARD
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// If we are not split; just load from eeprom
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userspace_config.raw = eeconfig_read_user();
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# endif // SPLIT_KEYBOARD
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// Backlight LED
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# ifdef BACKLIGHT_ENABLE
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keyboard_post_init_backlight();
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# endif // BACKLIGHT_ENABLE
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// RGB underglow
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# ifdef RGBLIGHT_ENABLE
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keyboard_post_init_underglow();
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# endif // RGBLIGHT_ENABLE
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// Keymap specific stuff
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keyboard_post_init_keymap();
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}
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/*---------------------------*\
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|*-----HOUSEKEEPING TASK-----*|
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\*---------------------------*/
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/* I have no idea what this does
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*/
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__attribute__ ((weak)) void housekeeping_task_keymap(void) {}
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void housekeeping_task_user(void) {
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// Check eeprom every now and then
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static userspace_config_t prev_userspace_config;
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static fast_timer_t throttle_timer = 0;
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static bool init_flag = true;
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// Read this if we never read it before
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if (init_flag) {
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init_flag = false;
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prev_userspace_config.raw = eeconfig_read_user();
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}
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// Throttled tasks here
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if (timer_elapsed_fast(throttle_timer) >= HOUSEKEEPING_THROTTLE_INTERVAL_MS) {
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// Refresh timer
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throttle_timer = timer_read_fast();
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// Check userspace config for eeprom updates
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if (memcmp(&prev_userspace_config, &userspace_config, sizeof(userspace_config))) {
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memcpy(&prev_userspace_config, &userspace_config, sizeof(userspace_config));
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eeconfig_update_user(userspace_config.raw);
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}
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}
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// Do transport stuff
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# ifdef SPLIT_KEYBOARD
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userspace_transport_update();
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userspace_transport_sync(false);
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# endif // SPLIT_KEYBOARD
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// Hook to keymap code
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housekeeping_task_keymap();
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}
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/*-----------------------*\
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|*-----EECONFIG INIT-----*|
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\*-----------------------*/
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/* Default values to send to the eeprom
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*/
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void eeconfig_init_user(void) {
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// Set everything to default
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userspace_config.raw = 0;
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// Set encoder states to sane defaults if enabled
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# ifdef ENCODER_ENABLE
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reset_encoder_state();
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# endif // ENCODER_ENABLE
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}
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/*------------------------*\
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|*-----PROCESS RECORD-----*|
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\*------------------------*/
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/* Process record: custom keycodes to process here
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* Allow also the following codes to hook here as well;
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* Macro definitions
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* Audio hooks
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*/
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__attribute__ ((weak))
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bool process_record_keymap(uint16_t keycode, keyrecord_t *record) {
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return true;
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}
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bool process_record_user(uint16_t keycode, keyrecord_t *record) {
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// Return after running through all individual hooks
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return
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process_record_keymap(keycode, record) &&
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# ifdef AUDIO_ENABLE
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process_record_audio(keycode, record) &&
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# endif // AUDIO_ENABLE
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# ifdef ENCODER_ENABLE
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process_record_encoder(keycode, record) &&
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# endif // ENCODER_ENABLE
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process_record_macro(keycode, record);
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}
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/*---------------------*\
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|*-----MATRIX SCAN-----*|
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\*---------------------*/
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/* This code runs every frame
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* I used to check for layer switching here, but layer state is better used.
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* Try to not put anything here; as it runs hundreds time per second-ish
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*/
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__attribute__ ((weak)) void matrix_scan_keymap(void) { }
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void matrix_scan_user (void) {
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// Keymap specific scan function
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matrix_scan_keymap();
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}
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/*---------------------*\
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|*-----LAYER STATE-----*|
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\*---------------------*/
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/* This code runs after every layer change
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* State represents the new layer state.
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*/
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__attribute__ ((weak))
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layer_state_t layer_state_set_keymap (layer_state_t state) {
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return state;
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}
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layer_state_t layer_state_set_user(layer_state_t state) {
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// Keymap layer state setting
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state = layer_state_set_keymap(state);
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// For underglow stuff
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# ifdef RGBLIGHT_ENABLE
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state = layer_state_set_underglow(state);
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# endif // RGBLIGHT_ENABLE
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// Audio playback
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# ifdef AUDIO_ENABLE
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state = layer_state_set_audio(state);
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# endif // AUDIO_ENABLE
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return state;
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}
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/*-----------------------------*\
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|*-----DEFAULT LAYER STATE-----*|
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\*-----------------------------*/
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/* This code runs after every time default base layer is changed
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*/
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__attribute__ ((weak))
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layer_state_t default_layer_state_set_keymap (layer_state_t state) {
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return state;
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}
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layer_state_t default_layer_state_set_user(layer_state_t state) {
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// Keymap level code
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state = default_layer_state_set_keymap(state);
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return state;
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}
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/*------------------------*\
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|*-----LED SET KEYMAP-----*|
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\*------------------------*/
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/* Code for LED indicators
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* I'm not sure when exactly does this code run
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*/
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__attribute__ ((weak)) void led_set_keymap(uint8_t usb_led) {}
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void led_set_user(uint8_t usb_led) {
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led_set_keymap(usb_led);
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}
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/*-----------------*\
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|*-----SUSPEND-----*|
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\*-----------------*/
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/* Suspend stuff here, mostly for the rgb lighting.
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*/
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__attribute__ ((weak)) void suspend_power_down_keymap (void) { }
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void suspend_power_down_user(void) {
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suspend_power_down_keymap();
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// RGB matrix sleep hook
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# ifdef RGB_MATRIX_ENABLE
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suspend_power_down_rgb();
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# endif // RGB_MATRIX_ENABLE
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}
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__attribute__ ((weak)) void suspend_wakeup_init_keymap (void) { }
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void suspend_wakeup_init_user(void) {
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suspend_wakeup_init_keymap();
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// RGB matrix sleep hook
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# ifdef RGB_MATRIX_ENABLE
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suspend_wakeup_init_rgb();
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# endif // RGB_MATRIX_ENABLE
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}
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<<<<<<< HEAD
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state = layer_state_set_keymap (state);
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#ifdef RGBLIGHT_ENABLE
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// Change RGB lighting depending on the last layer activated
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rgblight_change( get_highest_layer(state) );
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#endif
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return state;
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||||||| f439fe6055
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state = layer_state_set_keymap (state);
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#ifdef RGBLIGHT_ENABLE
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// Change RGB lighting depending on the last layer activated
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rgblight_change( biton32(state) );
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#endif
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return state;
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=======
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/*------------------*\
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|*-----SHUTDOWN-----*|
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\*------------------*/
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/* Shutdown stuff here; for when entering bootmode.
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*/
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__attribute__ ((weak)) void shutdown_keymap (void) { }
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void shutdown_user(void) {
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// Underglow LED hook on boot
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# ifdef RGBLIGHT_ENABLE
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shutdown_underglow();
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# endif // RGBLIGHT_ENABLE
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// Perkey led hook on boot
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# ifdef RGB_MATRIX_ENABLE
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shutdown_rgb();
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# endif // RGB_MATRIX_ENABLE
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// Keymap hooks
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shutdown_keymap();
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>>>>>>> upstream/master
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}
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