mirror of
https://github.com/markqvist/RNode_Firmware.git
synced 2024-10-01 03:15:39 -04:00
Add BLE driver for NRF52
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parent
6e8865b2ae
commit
80769f1101
154
Bluetooth.h
154
Bluetooth.h
@ -13,11 +13,24 @@
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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 <https://www.gnu.org/licenses/>.
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#if MCU_VARIANT == MCU_ESP32
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#include "BluetoothSerial.h"
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#include "esp_bt_main.h"
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#include "esp_bt_device.h"
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#elif MCU_VARIANT == MCU_NRF52
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#include <bluefruit.h>
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#include <math.h>
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#endif
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#if MCU_VARIANT == MCU_ESP32
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BluetoothSerial SerialBT;
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#elif MCU_VARIANT == MCU_NRF52
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BLEUart SerialBT;
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BLEDis bledis;
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BLEBas blebas;
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#endif
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#define BT_PAIRING_TIMEOUT 35000
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uint32_t bt_pairing_started = 0;
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@ -138,4 +151,145 @@ char bt_devname[11];
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}
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}
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#elif MCU_VARIANT == MCU_NRF52
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uint8_t eeprom_read(uint32_t mapped_addr);
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void bt_stop() {
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if (bt_state != BT_STATE_OFF) {
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bt_allow_pairing = false;
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bt_state = BT_STATE_OFF;
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}
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}
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void bt_disable_pairing() {
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bt_allow_pairing = false;
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bt_ssp_pin = 0;
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bt_state = BT_STATE_ON;
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}
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void bt_pairing_complete(uint16_t conn_handle, uint8_t auth_status) {
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if (auth_status == BLE_GAP_SEC_STATUS_SUCCESS) {
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bt_disable_pairing();
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} else {
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bt_ssp_pin = 0;
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}
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}
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bool bt_passkey_callback(uint16_t conn_handle, uint8_t const passkey[6], bool match_request) {
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for (int i = 0; i < 6; i++) {
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// multiply by tens however many times needed to make numbers appear in order
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bt_ssp_pin += ((int)passkey[i] - 48) * pow(10, 5-i);
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}
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kiss_indicate_btpin();
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if (match_request) {
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if (bt_allow_pairing) {
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return true;
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}
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}
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return false;
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}
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void bt_connect_callback(uint16_t conn_handle) {
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bt_state = BT_STATE_CONNECTED;
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cable_state = CABLE_STATE_DISCONNECTED;
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}
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void bt_disconnect_callback(uint16_t conn_handle, uint8_t reason) {
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bt_state = BT_STATE_ON;
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}
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bool bt_setup_hw() {
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if (!bt_ready) {
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#if HAS_EEPROM
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if (EEPROM.read(eeprom_addr(ADDR_CONF_BT)) == BT_ENABLE_BYTE) {
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#else
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if (eeprom_read(eeprom_addr(ADDR_CONF_BT)) == BT_ENABLE_BYTE) {
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#endif
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bt_enabled = true;
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} else {
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bt_enabled = false;
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}
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Bluefruit.configPrphBandwidth(BANDWIDTH_MAX);
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Bluefruit.autoConnLed(false);
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if (Bluefruit.begin()) {
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Bluefruit.setTxPower(4); // Check bluefruit.h for supported values
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Bluefruit.Security.setIOCaps(true, true, false);
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Bluefruit.Security.setPairPasskeyCallback(bt_passkey_callback);
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Bluefruit.Periph.setConnectCallback(bt_connect_callback);
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Bluefruit.Periph.setDisconnectCallback(bt_disconnect_callback);
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Bluefruit.Security.setIOCaps(true, true, false);
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Bluefruit.Security.setPairCompleteCallback(bt_pairing_complete);
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const ble_gap_addr_t gap_addr = Bluefruit.getAddr();
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char *data = (char*)malloc(BT_DEV_ADDR_LEN+1);
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for (int i = 0; i < BT_DEV_ADDR_LEN; i++) {
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data[i] = gap_addr.addr[i];
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}
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#if HAS_EEPROM
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data[BT_DEV_ADDR_LEN] = EEPROM.read(eeprom_addr(ADDR_SIGNATURE));
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#else
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data[BT_DEV_ADDR_LEN] = eeprom_read(eeprom_addr(ADDR_SIGNATURE));
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#endif
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unsigned char *hash = MD5::make_hash(data, BT_DEV_ADDR_LEN);
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memcpy(bt_dh, hash, BT_DEV_HASH_LEN);
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sprintf(bt_devname, "RNode %02X%02X", bt_dh[14], bt_dh[15]);
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free(data);
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bt_ready = true;
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return true;
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} else { return false; }
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} else { return false; }
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}
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void bt_start() {
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if (bt_state == BT_STATE_OFF) {
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Bluefruit.setName(bt_devname);
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bledis.setManufacturer("Adafruit Industries");
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bledis.setModel("Bluefruit Feather52");
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// start device information service
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bledis.begin();
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SerialBT.begin();
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blebas.begin();
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// non-connectable advertising
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Bluefruit.Advertising.addFlags(BLE_GAP_ADV_FLAGS_LE_ONLY_GENERAL_DISC_MODE);
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Bluefruit.Advertising.addTxPower();
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// Include bleuart 128-bit uuid
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Bluefruit.Advertising.addService(SerialBT);
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// There is no room for Name in Advertising packet
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// Use Scan response for Name
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Bluefruit.ScanResponse.addName();
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Bluefruit.Advertising.start(0);
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bt_state = BT_STATE_ON;
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}
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}
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bool bt_init() {
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bt_state = BT_STATE_OFF;
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if (bt_setup_hw()) {
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if (bt_enabled && !console_active) bt_start();
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return true;
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} else {
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return false;
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}
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}
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void bt_enable_pairing() {
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if (bt_state == BT_STATE_OFF) bt_start();
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bt_allow_pairing = true;
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bt_pairing_started = millis();
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bt_state = BT_STATE_PAIRING;
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}
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void update_bt() {
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if (bt_allow_pairing && millis()-bt_pairing_started >= BT_PAIRING_TIMEOUT) {
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bt_disable_pairing();
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}
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}
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#endif
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2
Config.h
2
Config.h
@ -304,7 +304,7 @@
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#if BOARD_MODEL == BOARD_RAK4630
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#define HAS_EEPROM false
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#define HAS_DISPLAY false // set for debugging
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#define HAS_BLUETOOTH false
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#define HAS_BLUETOOTH true
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#define HAS_CONSOLE false
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#define HAS_PMU false
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#define HAS_NP false
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@ -140,7 +140,7 @@ void setup() {
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update_display();
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#endif
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#if MCU_VARIANT == MCU_ESP32
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#if MCU_VARIANT == MCU_ESP32 || MCU_VARIANT == MCU_NRF52
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#if HAS_PMU == true
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pmu_ready = init_pmu();
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#endif
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18
Utilities.h
18
Utilities.h
@ -1207,9 +1207,17 @@ void eeprom_update(int mapped_addr, uint8_t byte) {
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written_bytes = 0;
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}
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#endif
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}
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#if !HAS_EEPROM && MCU_VARIANT == MCU_NRF52
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void eeprom_flush() {
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// sync file contents to flash
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file.close();
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file.open(EEPROM_FILE, FILE_O_WRITE);
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written_bytes = 0;
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}
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#endif
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void eeprom_write(uint8_t addr, uint8_t byte) {
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if (!eeprom_info_locked() && addr >= 0 && addr < EEPROM_RESERVED) {
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eeprom_update(eeprom_addr(addr), byte);
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@ -1344,8 +1352,16 @@ bool eeprom_checksum_valid() {
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void bt_conf_save(bool is_enabled) {
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if (is_enabled) {
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eeprom_update(eeprom_addr(ADDR_CONF_BT), BT_ENABLE_BYTE);
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#if !HAS_EEPROM && MCU_VARIANT == MCU_NRF52
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// have to do a flush because we're only writing 1 byte and it syncs after 8
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eeprom_flush();
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#endif
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} else {
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eeprom_update(eeprom_addr(ADDR_CONF_BT), 0x00);
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#if !HAS_EEPROM && MCU_VARIANT == MCU_NRF52
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// have to do a flush because we're only writing 1 byte and it syncs after 8
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eeprom_flush();
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#endif
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}
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}
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