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446 lines
14 KiB
446 lines
14 KiB
/****************************************************************************** |
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* |
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* Copyright (C) 1999-2012 Broadcom Corporation |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at: |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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* |
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******************************************************************************/ |
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/****************************************************************************** |
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* |
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* this file contains GATT authentication handling functions |
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* |
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******************************************************************************/ |
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#include "bt_target.h" |
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#include "bt_utils.h" |
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#include <string.h> |
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#include "bt_common.h" |
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#include "btm_int.h" |
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#include "gatt_api.h" |
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#include "gatt_int.h" |
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#include "osi/include/osi.h" |
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using base::StringPrintf; |
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/******************************************************************************* |
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* |
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* Function gatt_sign_data |
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* |
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* Description This function sign the data for write command. |
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* |
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* Returns true if encrypted, otherwise false. |
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* |
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******************************************************************************/ |
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static bool gatt_sign_data(tGATT_CLCB* p_clcb) { |
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tGATT_VALUE* p_attr = (tGATT_VALUE*)p_clcb->p_attr_buf; |
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uint8_t *p_data = NULL, *p; |
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uint16_t payload_size = p_clcb->p_tcb->payload_size; |
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bool status = false; |
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uint8_t* p_signature; |
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/* do not need to mark channel securoty activity for data signing */ |
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gatt_set_sec_act(p_clcb->p_tcb, GATT_SEC_OK); |
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p_data = |
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(uint8_t*)osi_malloc(p_attr->len + 3); /* 3 = 2 byte handle + opcode */ |
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p = p_data; |
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UINT8_TO_STREAM(p, GATT_SIGN_CMD_WRITE); |
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UINT16_TO_STREAM(p, p_attr->handle); |
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ARRAY_TO_STREAM(p, p_attr->value, p_attr->len); |
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/* sign data length should be attribulte value length plus 2B handle + 1B op |
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* code */ |
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if ((payload_size - GATT_AUTH_SIGN_LEN - 3) < p_attr->len) |
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p_attr->len = payload_size - GATT_AUTH_SIGN_LEN - 3; |
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p_signature = p_attr->value + p_attr->len; |
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if (BTM_BleDataSignature( |
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p_clcb->p_tcb->peer_bda, p_data, |
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(uint16_t)(p_attr->len + 3), /* 3 = 2 byte handle + opcode */ |
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p_signature)) { |
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p_attr->len += BTM_BLE_AUTH_SIGN_LEN; |
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gatt_set_ch_state(p_clcb->p_tcb, GATT_CH_OPEN); |
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gatt_act_write(p_clcb, GATT_SEC_SIGN_DATA); |
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} else { |
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gatt_end_operation(p_clcb, GATT_INTERNAL_ERROR, NULL); |
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} |
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osi_free(p_data); |
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return status; |
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} |
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/******************************************************************************* |
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* |
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* Function gatt_verify_signature |
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* |
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* Description This function start to verify the sign data when receiving |
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* the data from peer device. |
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* |
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* Returns |
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* |
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******************************************************************************/ |
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void gatt_verify_signature(tGATT_TCB& tcb, BT_HDR* p_buf) { |
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uint16_t cmd_len; |
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uint8_t op_code; |
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uint8_t *p, *p_orig = (uint8_t*)(p_buf + 1) + p_buf->offset; |
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uint32_t counter; |
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if (p_buf->len < GATT_AUTH_SIGN_LEN + 4) { |
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LOG(ERROR) << StringPrintf("%s: Data length %u less than expected %u", |
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__func__, p_buf->len, GATT_AUTH_SIGN_LEN + 4); |
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return; |
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} |
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cmd_len = p_buf->len - GATT_AUTH_SIGN_LEN + 4; |
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p = p_orig + cmd_len - 4; |
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STREAM_TO_UINT32(counter, p); |
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if (!BTM_BleVerifySignature(tcb.peer_bda, p_orig, cmd_len, counter, p)) { |
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/* if this is a bad signature, assume from attacker, ignore it */ |
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LOG(ERROR) << StringPrintf("Signature Verification Failed, data ignored"); |
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return; |
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} |
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STREAM_TO_UINT8(op_code, p_orig); |
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gatt_server_handle_client_req(tcb, op_code, (uint16_t)(p_buf->len - 1), |
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p_orig); |
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} |
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/******************************************************************************* |
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* |
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* Function gatt_sec_check_complete |
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* |
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* Description security check complete and proceed to data sending action. |
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* |
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* Returns void. |
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* |
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******************************************************************************/ |
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void gatt_sec_check_complete(bool sec_check_ok, tGATT_CLCB* p_clcb, |
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uint8_t sec_act) { |
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if (p_clcb && p_clcb->p_tcb && p_clcb->p_tcb->pending_enc_clcb.empty()) { |
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gatt_set_sec_act(p_clcb->p_tcb, GATT_SEC_NONE); |
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} |
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if (!sec_check_ok) { |
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gatt_end_operation(p_clcb, GATT_AUTH_FAIL, NULL); |
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} else if (p_clcb->operation == GATTC_OPTYPE_WRITE) { |
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gatt_act_write(p_clcb, sec_act); |
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} else if (p_clcb->operation == GATTC_OPTYPE_READ) { |
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gatt_act_read(p_clcb, p_clcb->counter); |
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} |
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} |
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/******************************************************************************* |
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* |
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* Function gatt_enc_cmpl_cback |
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* |
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* Description link encryption complete callback. |
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* |
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* Returns |
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* |
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******************************************************************************/ |
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void gatt_enc_cmpl_cback(const RawAddress* bd_addr, tBT_TRANSPORT transport, |
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UNUSED_ATTR void* p_ref_data, tBTM_STATUS result) { |
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VLOG(1) << StringPrintf("gatt_enc_cmpl_cback"); |
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tGATT_TCB* p_tcb = gatt_find_tcb_by_addr(*bd_addr, transport); |
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if (!p_tcb) { |
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LOG(ERROR) << StringPrintf("%s: enc callback for unknown bd_addr", |
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__func__); |
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return; |
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} |
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if (gatt_get_sec_act(p_tcb) == GATT_SEC_ENC_PENDING) return; |
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if (p_tcb->pending_enc_clcb.empty()) { |
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LOG(ERROR) << StringPrintf("%s: no operation waiting for encrypting", |
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__func__); |
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return; |
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} |
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tGATT_CLCB* p_clcb = p_tcb->pending_enc_clcb.front(); |
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p_tcb->pending_enc_clcb.pop(); |
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bool status = false; |
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if (result == BTM_SUCCESS) { |
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if (gatt_get_sec_act(p_tcb) == GATT_SEC_ENCRYPT_MITM) { |
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uint8_t sec_flag = 0; |
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BTM_GetSecurityFlagsByTransport(*bd_addr, &sec_flag, transport); |
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if (sec_flag & BTM_SEC_FLAG_LKEY_AUTHED) { |
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status = true; |
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} |
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} else { |
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status = true; |
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} |
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} |
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gatt_sec_check_complete(status, p_clcb, p_tcb->sec_act); |
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/* start all other pending operation in queue */ |
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while (!p_tcb->pending_enc_clcb.empty()) { |
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tGATT_CLCB* p_clcb = p_tcb->pending_enc_clcb.front(); |
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p_tcb->pending_enc_clcb.pop(); |
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gatt_security_check_start(p_clcb); |
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} |
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} |
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/******************************************************************************* |
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* |
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* Function gatt_notify_enc_cmpl |
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* |
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* Description link encryption complete notification for all encryption |
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* process initiated outside GATT. |
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* |
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* Returns |
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* |
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******************************************************************************/ |
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void gatt_notify_enc_cmpl(const RawAddress& bd_addr) { |
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tGATT_TCB* p_tcb = gatt_find_tcb_by_addr(bd_addr, BT_TRANSPORT_LE); |
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if (!p_tcb) { |
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VLOG(1) << StringPrintf( |
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"notify GATT for encryption completion of unknown device"); |
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return; |
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} |
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for (uint8_t i = 0; i < GATT_MAX_APPS; i++) { |
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if (gatt_cb.cl_rcb[i].in_use && gatt_cb.cl_rcb[i].app_cb.p_enc_cmpl_cb) { |
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(*gatt_cb.cl_rcb[i].app_cb.p_enc_cmpl_cb)(gatt_cb.cl_rcb[i].gatt_if, |
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bd_addr); |
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} |
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} |
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if (gatt_get_sec_act(p_tcb) == GATT_SEC_ENC_PENDING) { |
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gatt_set_sec_act(p_tcb, GATT_SEC_NONE); |
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while (!p_tcb->pending_enc_clcb.empty()) { |
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tGATT_CLCB* p_clcb = p_tcb->pending_enc_clcb.front(); |
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p_tcb->pending_enc_clcb.pop(); |
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gatt_security_check_start(p_clcb); |
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} |
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} |
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} |
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/******************************************************************************* |
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* |
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* Function gatt_set_sec_act |
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* |
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* Description This function set the sec_act in clcb |
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* |
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* Returns none |
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* |
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******************************************************************************/ |
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void gatt_set_sec_act(tGATT_TCB* p_tcb, tGATT_SEC_ACTION sec_act) { |
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if (p_tcb) { |
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p_tcb->sec_act = sec_act; |
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} |
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} |
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/******************************************************************************* |
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* |
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* Function gatt_get_sec_act |
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* |
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* Description This function get the sec_act in clcb |
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* |
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* Returns none |
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* |
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******************************************************************************/ |
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tGATT_SEC_ACTION gatt_get_sec_act(tGATT_TCB* p_tcb) { |
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tGATT_SEC_ACTION sec_act = GATT_SEC_NONE; |
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if (p_tcb) { |
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sec_act = p_tcb->sec_act; |
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} |
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return sec_act; |
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} |
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/** |
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* This routine determine the security action based on auth_request and current |
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* link status. Returns tGATT_SEC_ACTION (security action) |
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*/ |
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tGATT_SEC_ACTION gatt_determine_sec_act(tGATT_CLCB* p_clcb) { |
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tGATT_SEC_ACTION act = GATT_SEC_OK; |
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uint8_t sec_flag; |
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tGATT_TCB* p_tcb = p_clcb->p_tcb; |
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tGATT_AUTH_REQ auth_req = p_clcb->auth_req; |
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bool is_link_encrypted = false; |
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bool is_link_key_known = false; |
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bool is_key_mitm = false; |
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uint8_t key_type; |
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tBTM_BLE_SEC_REQ_ACT sec_act = BTM_LE_SEC_NONE; |
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if (auth_req == GATT_AUTH_REQ_NONE) return act; |
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BTM_GetSecurityFlagsByTransport(p_tcb->peer_bda, &sec_flag, |
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p_clcb->p_tcb->transport); |
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btm_ble_link_sec_check(p_tcb->peer_bda, auth_req, &sec_act); |
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/* if a encryption is pending, need to wait */ |
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if (sec_act == BTM_BLE_SEC_REQ_ACT_DISCARD && auth_req != GATT_AUTH_REQ_NONE) |
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return GATT_SEC_ENC_PENDING; |
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if (sec_flag & (BTM_SEC_FLAG_ENCRYPTED | BTM_SEC_FLAG_LKEY_KNOWN)) { |
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if (sec_flag & BTM_SEC_FLAG_ENCRYPTED) is_link_encrypted = true; |
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is_link_key_known = true; |
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if (sec_flag & BTM_SEC_FLAG_LKEY_AUTHED) is_key_mitm = true; |
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} |
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/* first check link key upgrade required or not */ |
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switch (auth_req) { |
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case GATT_AUTH_REQ_MITM: |
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case GATT_AUTH_REQ_SIGNED_MITM: |
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if (!is_key_mitm) act = GATT_SEC_ENCRYPT_MITM; |
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break; |
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case GATT_AUTH_REQ_NO_MITM: |
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case GATT_AUTH_REQ_SIGNED_NO_MITM: |
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if (!is_link_key_known) act = GATT_SEC_ENCRYPT_NO_MITM; |
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break; |
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default: |
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break; |
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} |
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/* now check link needs to be encrypted or not if the link key upgrade is not |
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* required */ |
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if (act == GATT_SEC_OK) { |
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if (p_tcb->transport == BT_TRANSPORT_LE && |
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(p_clcb->operation == GATTC_OPTYPE_WRITE) && |
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(p_clcb->op_subtype == GATT_WRITE_NO_RSP)) { |
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/* this is a write command request |
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check data signing required or not */ |
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if (!is_link_encrypted) { |
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btm_ble_get_enc_key_type(p_tcb->peer_bda, &key_type); |
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if ((key_type & BTM_LE_KEY_LCSRK) && |
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((auth_req == GATT_AUTH_REQ_SIGNED_NO_MITM) || |
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(auth_req == GATT_AUTH_REQ_SIGNED_MITM))) { |
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act = GATT_SEC_SIGN_DATA; |
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} else { |
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act = GATT_SEC_ENCRYPT; |
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} |
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} |
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} else { |
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if (!is_link_encrypted) { |
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act = GATT_SEC_ENCRYPT; |
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} |
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} |
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} |
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return act; |
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} |
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/******************************************************************************* |
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* |
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* Function gatt_get_link_encrypt_status |
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* |
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* Description This routine get the encryption status of the specified link |
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* |
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* |
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* Returns tGATT_STATUS link encryption status |
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* |
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******************************************************************************/ |
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tGATT_STATUS gatt_get_link_encrypt_status(tGATT_TCB& tcb) { |
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tGATT_STATUS encrypt_status = GATT_NOT_ENCRYPTED; |
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uint8_t sec_flag = 0; |
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BTM_GetSecurityFlagsByTransport(tcb.peer_bda, &sec_flag, tcb.transport); |
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if ((sec_flag & BTM_SEC_FLAG_ENCRYPTED) && |
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(sec_flag & BTM_SEC_FLAG_LKEY_KNOWN)) { |
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encrypt_status = GATT_ENCRYPED_NO_MITM; |
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if (sec_flag & BTM_SEC_FLAG_LKEY_AUTHED) |
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encrypt_status = GATT_ENCRYPED_MITM; |
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} |
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VLOG(1) << StringPrintf("gatt_get_link_encrypt_status status=0x%x", |
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encrypt_status); |
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return encrypt_status; |
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} |
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/******************************************************************************* |
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* |
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* Function gatt_convert_sec_action |
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* |
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* Description Convert GATT security action enum into equivalent |
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* BTM BLE security action enum |
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* |
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* Returns bool true - conversation is successful |
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* |
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******************************************************************************/ |
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static bool gatt_convert_sec_action(tGATT_SEC_ACTION gatt_sec_act, |
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tBTM_BLE_SEC_ACT* p_btm_sec_act) { |
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bool status = true; |
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switch (gatt_sec_act) { |
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case GATT_SEC_ENCRYPT: |
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*p_btm_sec_act = BTM_BLE_SEC_ENCRYPT; |
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break; |
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case GATT_SEC_ENCRYPT_NO_MITM: |
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*p_btm_sec_act = BTM_BLE_SEC_ENCRYPT_NO_MITM; |
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break; |
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case GATT_SEC_ENCRYPT_MITM: |
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*p_btm_sec_act = BTM_BLE_SEC_ENCRYPT_MITM; |
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break; |
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default: |
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status = false; |
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break; |
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} |
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return status; |
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} |
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/** check link security */ |
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void gatt_security_check_start(tGATT_CLCB* p_clcb) { |
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tGATT_TCB* p_tcb = p_clcb->p_tcb; |
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tGATT_SEC_ACTION sec_act_old = gatt_get_sec_act(p_tcb); |
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tGATT_SEC_ACTION gatt_sec_act = gatt_determine_sec_act(p_clcb); |
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if (sec_act_old == GATT_SEC_NONE) gatt_set_sec_act(p_tcb, gatt_sec_act); |
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switch (gatt_sec_act) { |
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case GATT_SEC_SIGN_DATA: |
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VLOG(1) << StringPrintf("%s: Do data signing", __func__); |
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gatt_sign_data(p_clcb); |
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break; |
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case GATT_SEC_ENCRYPT: |
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case GATT_SEC_ENCRYPT_NO_MITM: |
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case GATT_SEC_ENCRYPT_MITM: |
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if (sec_act_old < GATT_SEC_ENCRYPT) { |
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VLOG(1) << StringPrintf("%s: Encrypt now or key upgreade first", |
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__func__); |
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tBTM_BLE_SEC_ACT btm_ble_sec_act; |
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gatt_convert_sec_action(gatt_sec_act, &btm_ble_sec_act); |
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tBTM_STATUS btm_status = |
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BTM_SetEncryption(p_tcb->peer_bda, p_tcb->transport, |
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gatt_enc_cmpl_cback, NULL, btm_ble_sec_act); |
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if ((btm_status != BTM_SUCCESS) && (btm_status != BTM_CMD_STARTED)) { |
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LOG(ERROR) << StringPrintf( |
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"%s BTM_SetEncryption failed btm_status=%d", __func__, |
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btm_status); |
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gatt_set_sec_act(p_tcb, GATT_SEC_NONE); |
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gatt_set_ch_state(p_tcb, GATT_CH_OPEN); |
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gatt_end_operation(p_clcb, GATT_INSUF_ENCRYPTION, NULL); |
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return; |
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} |
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} |
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p_tcb->pending_enc_clcb.push(p_clcb); |
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break; |
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case GATT_SEC_ENC_PENDING: |
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p_tcb->pending_enc_clcb.push(p_clcb); |
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/* wait for link encrypotion to finish */ |
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break; |
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default: |
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gatt_sec_check_complete(true, p_clcb, gatt_sec_act); |
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break; |
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} |
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}
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