Fix BLE pairing behaviour and disable just works pairing
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								Bluetooth.h
									
									
									
									
									
								
							
							
						
						
									
										38
									
								
								Bluetooth.h
									
									
									
									
									
								
							@ -259,9 +259,34 @@ void bt_disable_pairing() {
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void bt_pairing_complete(uint16_t conn_handle, uint8_t auth_status) {
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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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					    if (auth_status == BLE_GAP_SEC_STATUS_SUCCESS) {
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					      BLEConnection* connection = Bluefruit.Connection(conn_handle);
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					      ble_gap_conn_sec_mode_t security = connection->getSecureMode();
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					      // On the NRF52 it is not possible with the Arduino library to reject
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					      // requests from devices with no IO capabilities, which would allow
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					      // bypassing pin entry through pairing using the "just works" mode.
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					      // Therefore, we must check the security level of the connection after
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					      // pairing to ensure "just works" has not been used. If it has, we need
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					      // to disconnect, unpair and delete any bonding information immediately.
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					      // Settings on the SerialBT service should prevent unauthorised access to
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					      // the serial port anyway, but this is still wise to do regardless.
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					      //
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					      // Note: It may be nice to have this done in the BLESecurity class in the
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					      // future, but as it stands right now I'd have to fork the BSP to do
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					      // that, which I don't fancy doing. Impact on security is likely minimal.
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					      // Requires investigation.
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					      if (security.sm == 1 && security.lv >= 3) {
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          bt_state = BT_STATE_CONNECTED;
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					          bt_state = BT_STATE_CONNECTED;
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          cable_state = CABLE_STATE_DISCONNECTED;
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					          cable_state = CABLE_STATE_DISCONNECTED;
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          bt_disable_pairing();
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					          bt_disable_pairing();
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					      } else {
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					          if (connection->bonded()) {
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					              connection->removeBondKey();
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					          }
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					          connection->disconnect();
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					      }
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    } else {
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					    } else {
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      bt_ssp_pin = 0;
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					      bt_ssp_pin = 0;
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    }
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					    }
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@ -273,11 +298,9 @@ bool bt_passkey_callback(uint16_t conn_handle, uint8_t const passkey[6], bool ma
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        bt_ssp_pin += ((int)passkey[i] - 48) * pow(10, 5-i);
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					        bt_ssp_pin += ((int)passkey[i] - 48) * pow(10, 5-i);
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    }
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					    }
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    kiss_indicate_btpin();
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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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					    if (bt_allow_pairing) {
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        return true;
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					        return true;
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    }
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					    }
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    }
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    return false;
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					    return false;
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}
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					}
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@ -287,8 +310,10 @@ void bt_connect_callback(uint16_t conn_handle) {
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}
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					}
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void bt_disconnect_callback(uint16_t conn_handle, uint8_t reason) {
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					void bt_disconnect_callback(uint16_t conn_handle, uint8_t reason) {
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					    if (reason != BLE_GAP_SEC_STATUS_SUCCESS) {
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        bt_state = BT_STATE_ON;
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					        bt_state = BT_STATE_ON;
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    }
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					    }
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					}
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bool bt_setup_hw() {
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					bool bt_setup_hw() {
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  if (!bt_ready) {
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					  if (!bt_ready) {
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@ -305,7 +330,14 @@ bool bt_setup_hw() {
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    Bluefruit.autoConnLed(false);
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					    Bluefruit.autoConnLed(false);
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    if (Bluefruit.begin()) {
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					    if (Bluefruit.begin()) {
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      Bluefruit.setTxPower(8);    // Check bluefruit.h for supported values
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					      Bluefruit.setTxPower(8);    // Check bluefruit.h for supported values
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      Bluefruit.Security.setIOCaps(true, true, false);
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					      Bluefruit.Security.setIOCaps(true, false, false); // display, yes; yes / no, no; keyboard, no
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					      // This device is indeed capable of yes / no through the pairing mode
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					      // being set, but I have chosen to set it thus to force the input of the
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					      // pin on the device initiating the pairing. This prevents it from being
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					      // paired with automatically by a hypothetical malicious device nearby
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					      // without physical access to the RNode.
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					      Bluefruit.Security.setMITM(true);
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      Bluefruit.Security.setPairPasskeyCallback(bt_passkey_callback);
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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.setConnectCallback(bt_connect_callback);
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      Bluefruit.Periph.setDisconnectCallback(bt_disconnect_callback);
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					      Bluefruit.Periph.setDisconnectCallback(bt_disconnect_callback);
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