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507 lines
18 KiB
507 lines
18 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 functions for BLE address management. |
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* |
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******************************************************************************/ |
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#include <base/bind.h> |
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#include <string.h> |
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#include "bt_types.h" |
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#include "btm_int.h" |
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#include "btu.h" |
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#include "device/include/controller.h" |
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#include "gap_api.h" |
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#include "hcimsgs.h" |
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#include "btm_ble_int.h" |
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#include "smp_api.h" |
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/******************************************************************************* |
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* |
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* Function btm_gen_resolve_paddr_cmpl |
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* |
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* Description This is callback functioin when resolvable private address |
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* generation is complete. |
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* |
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* Returns void |
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* |
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******************************************************************************/ |
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static void btm_gen_resolve_paddr_cmpl(tSMP_ENC* p) { |
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tBTM_LE_RANDOM_CB* p_cb = &btm_cb.ble_ctr_cb.addr_mgnt_cb; |
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BTM_TRACE_EVENT("btm_gen_resolve_paddr_cmpl"); |
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if (p) { |
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/* set hash to be LSB of rpAddress */ |
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p_cb->private_addr.address[5] = p->param_buf[0]; |
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p_cb->private_addr.address[4] = p->param_buf[1]; |
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p_cb->private_addr.address[3] = p->param_buf[2]; |
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/* set it to controller */ |
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btm_ble_set_random_address(p_cb->private_addr); |
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p_cb->own_addr_type = BLE_ADDR_RANDOM; |
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/* start a periodical timer to refresh random addr */ |
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period_ms_t interval_ms = BTM_BLE_PRIVATE_ADDR_INT_MS; |
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#if (BTM_BLE_CONFORMANCE_TESTING == TRUE) |
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interval_ms = btm_cb.ble_ctr_cb.rpa_tout * 1000; |
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#endif |
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alarm_set_on_mloop(p_cb->refresh_raddr_timer, interval_ms, |
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btm_ble_refresh_raddr_timer_timeout, NULL); |
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} else { |
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/* random address set failure */ |
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BTM_TRACE_DEBUG("set random address failed"); |
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} |
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} |
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/******************************************************************************* |
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* |
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* Function btm_gen_resolve_paddr_low |
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* |
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* Description This function is called when random address has generate the |
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* random number base for low 3 byte bd address. |
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* |
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* Returns void |
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* |
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******************************************************************************/ |
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void btm_gen_resolve_paddr_low(BT_OCTET8 rand) { |
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tBTM_LE_RANDOM_CB* p_cb = &btm_cb.ble_ctr_cb.addr_mgnt_cb; |
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tSMP_ENC output; |
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BTM_TRACE_EVENT("btm_gen_resolve_paddr_low"); |
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rand[2] &= (~BLE_RESOLVE_ADDR_MASK); |
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rand[2] |= BLE_RESOLVE_ADDR_MSB; |
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p_cb->private_addr.address[2] = rand[0]; |
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p_cb->private_addr.address[1] = rand[1]; |
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p_cb->private_addr.address[0] = rand[2]; |
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/* encrypt with ur IRK */ |
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if (!SMP_Encrypt(btm_cb.devcb.id_keys.irk, BT_OCTET16_LEN, rand, 3, |
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&output)) { |
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btm_gen_resolve_paddr_cmpl(NULL); |
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} else { |
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btm_gen_resolve_paddr_cmpl(&output); |
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} |
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} |
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/******************************************************************************* |
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* |
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* Function btm_gen_resolvable_private_addr |
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* |
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* Description This function generate a resolvable private address. |
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* |
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* Returns void |
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* |
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******************************************************************************/ |
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void btm_gen_resolvable_private_addr(base::Callback<void(BT_OCTET8)> cb) { |
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BTM_TRACE_EVENT("%s", __func__); |
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/* generate 3B rand as BD LSB, SRK with it, get BD MSB */ |
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btsnd_hcic_ble_rand(std::move(cb)); |
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} |
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/******************************************************************************* |
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* |
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* Function btm_gen_non_resolve_paddr_cmpl |
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* |
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* Description This is the callback function when non-resolvable private |
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* function is generated and write to controller. |
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* |
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* Returns void |
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* |
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******************************************************************************/ |
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static void btm_gen_non_resolve_paddr_cmpl(BT_OCTET8 rand) { |
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tBTM_LE_RANDOM_CB* p_cb = &btm_cb.ble_ctr_cb.addr_mgnt_cb; |
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tBTM_BLE_ADDR_CBACK* p_cback = p_cb->p_generate_cback; |
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void* p_data = p_cb->p; |
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uint8_t* pp; |
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RawAddress static_random; |
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BTM_TRACE_EVENT("btm_gen_non_resolve_paddr_cmpl"); |
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p_cb->p_generate_cback = NULL; |
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pp = rand; |
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STREAM_TO_BDADDR(static_random, pp); |
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/* mask off the 2 MSB */ |
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static_random.address[0] &= BLE_STATIC_PRIVATE_MSB_MASK; |
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/* report complete */ |
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if (p_cback) (*p_cback)(static_random, p_data); |
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} |
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/******************************************************************************* |
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* |
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* Function btm_gen_non_resolvable_private_addr |
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* |
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* Description This function generate a non-resolvable private address. |
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* |
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* |
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* Returns void |
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* |
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******************************************************************************/ |
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void btm_gen_non_resolvable_private_addr(tBTM_BLE_ADDR_CBACK* p_cback, |
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void* p) { |
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tBTM_LE_RANDOM_CB* p_mgnt_cb = &btm_cb.ble_ctr_cb.addr_mgnt_cb; |
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BTM_TRACE_EVENT("btm_gen_non_resolvable_private_addr"); |
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if (p_mgnt_cb->p_generate_cback != NULL) return; |
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p_mgnt_cb->p_generate_cback = p_cback; |
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p_mgnt_cb->p = p; |
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btsnd_hcic_ble_rand(base::Bind(&btm_gen_non_resolve_paddr_cmpl)); |
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} |
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/******************************************************************************* |
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* Utility functions for Random address resolving |
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******************************************************************************/ |
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/******************************************************************************* |
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* |
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* Function btm_ble_proc_resolve_x |
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* |
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* Description This function compares the X with random address 3 MSO bytes |
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* to find a match. |
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* |
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* Returns true on match, false otherwise |
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* |
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******************************************************************************/ |
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static bool btm_ble_proc_resolve_x(const tSMP_ENC& encrypt_output, |
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const RawAddress& random_bda) { |
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BTM_TRACE_EVENT("btm_ble_proc_resolve_x"); |
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/* compare the hash with 3 LSB of bd address */ |
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uint8_t comp[3]; |
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comp[0] = random_bda.address[5]; |
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comp[1] = random_bda.address[4]; |
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comp[2] = random_bda.address[3]; |
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if (!memcmp(encrypt_output.param_buf, comp, 3)) { |
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BTM_TRACE_EVENT("match is found"); |
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return true; |
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} |
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return false; |
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} |
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/******************************************************************************* |
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* |
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* Function btm_ble_init_pseudo_addr |
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* |
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* Description This function is used to initialize pseudo address. |
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* If pseudo address is not available, use dummy address |
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* |
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* Returns true is updated; false otherwise. |
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* |
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******************************************************************************/ |
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bool btm_ble_init_pseudo_addr(tBTM_SEC_DEV_REC* p_dev_rec, |
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const RawAddress& new_pseudo_addr) { |
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if (p_dev_rec->ble.pseudo_addr.IsEmpty()) { |
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p_dev_rec->ble.pseudo_addr = new_pseudo_addr; |
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return true; |
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} |
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return false; |
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} |
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/******************************************************************************* |
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* |
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* Function btm_ble_addr_resolvable |
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* |
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* Description This function checks if a RPA is resolvable by the device |
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* key. |
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* |
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* Returns true is resolvable; false otherwise. |
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* |
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******************************************************************************/ |
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bool btm_ble_addr_resolvable(const RawAddress& rpa, |
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tBTM_SEC_DEV_REC* p_dev_rec) { |
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bool rt = false; |
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if (!BTM_BLE_IS_RESOLVE_BDA(rpa)) return rt; |
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uint8_t rand[3]; |
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tSMP_ENC output; |
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if ((p_dev_rec->device_type & BT_DEVICE_TYPE_BLE) && |
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(p_dev_rec->ble.key_type & BTM_LE_KEY_PID)) { |
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BTM_TRACE_DEBUG("%s try to resolve", __func__); |
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/* use the 3 MSB of bd address as prand */ |
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rand[0] = rpa.address[2]; |
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rand[1] = rpa.address[1]; |
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rand[2] = rpa.address[0]; |
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/* generate X = E irk(R0, R1, R2) and R is random address 3 LSO */ |
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SMP_Encrypt(p_dev_rec->ble.keys.irk, BT_OCTET16_LEN, &rand[0], 3, &output); |
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rand[0] = rpa.address[5]; |
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rand[1] = rpa.address[4]; |
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rand[2] = rpa.address[3]; |
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if (!memcmp(output.param_buf, &rand[0], 3)) { |
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btm_ble_init_pseudo_addr(p_dev_rec, rpa); |
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rt = true; |
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} |
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} |
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return rt; |
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} |
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/******************************************************************************* |
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* |
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* Function btm_ble_match_random_bda |
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* |
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* Description This function match the random address to the appointed |
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* device record, starting from calculating IRK. If the record |
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* index exceeds the maximum record number, matching failed and |
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* send a callback. |
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* |
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* Returns None. |
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* |
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******************************************************************************/ |
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static bool btm_ble_match_random_bda(void* data, void* context) { |
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RawAddress* random_bda = (RawAddress*)context; |
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/* use the 3 MSB of bd address as prand */ |
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uint8_t rand[3]; |
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rand[0] = random_bda->address[2]; |
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rand[1] = random_bda->address[1]; |
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rand[2] = random_bda->address[0]; |
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BTM_TRACE_EVENT("%s next iteration", __func__); |
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tSMP_ENC output; |
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tBTM_SEC_DEV_REC* p_dev_rec = static_cast<tBTM_SEC_DEV_REC*>(data); |
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BTM_TRACE_DEBUG("sec_flags = %02x device_type = %d", p_dev_rec->sec_flags, |
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p_dev_rec->device_type); |
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if (!(p_dev_rec->device_type & BT_DEVICE_TYPE_BLE) || |
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!(p_dev_rec->ble.key_type & BTM_LE_KEY_PID)) |
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return true; |
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/* generate X = E irk(R0, R1, R2) and R is random address 3 LSO */ |
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SMP_Encrypt(p_dev_rec->ble.keys.irk, BT_OCTET16_LEN, &rand[0], 3, &output); |
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// if it was match, finish iteration, otherwise continue |
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return !btm_ble_proc_resolve_x(output, *random_bda); |
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} |
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/******************************************************************************* |
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* |
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* Function btm_ble_resolve_random_addr |
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* |
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* Description This function is called to resolve a random address. |
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* |
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* Returns pointer to the security record of the device whom a random |
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* address is matched to. |
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* |
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******************************************************************************/ |
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tBTM_SEC_DEV_REC* btm_ble_resolve_random_addr(const RawAddress& random_bda) { |
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BTM_TRACE_EVENT("%s", __func__); |
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/* start to resolve random address */ |
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/* check for next security record */ |
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list_node_t* n = list_foreach(btm_cb.sec_dev_rec, btm_ble_match_random_bda, |
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(void*)&random_bda); |
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tBTM_SEC_DEV_REC* p_dev_rec = nullptr; |
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if (n != nullptr) p_dev_rec = static_cast<tBTM_SEC_DEV_REC*>(list_node(n)); |
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BTM_TRACE_EVENT("%s: %sresolved", __func__, |
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(p_dev_rec == nullptr ? "not " : "")); |
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return p_dev_rec; |
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} |
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/******************************************************************************* |
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* address mapping between pseudo address and real connection address |
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******************************************************************************/ |
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/******************************************************************************* |
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* |
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* Function btm_find_dev_by_identity_addr |
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* |
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* Description find the security record whose LE static address is matching |
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* |
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******************************************************************************/ |
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tBTM_SEC_DEV_REC* btm_find_dev_by_identity_addr(const RawAddress& bd_addr, |
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uint8_t addr_type) { |
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#if (BLE_PRIVACY_SPT == TRUE) |
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list_node_t* end = list_end(btm_cb.sec_dev_rec); |
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for (list_node_t* node = list_begin(btm_cb.sec_dev_rec); node != end; |
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node = list_next(node)) { |
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tBTM_SEC_DEV_REC* p_dev_rec = |
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static_cast<tBTM_SEC_DEV_REC*>(list_node(node)); |
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if (p_dev_rec->ble.static_addr == bd_addr) { |
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if ((p_dev_rec->ble.static_addr_type & (~BLE_ADDR_TYPE_ID_BIT)) != |
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(addr_type & (~BLE_ADDR_TYPE_ID_BIT))) |
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BTM_TRACE_WARNING( |
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"%s find pseudo->random match with diff addr type: %d vs %d", |
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__func__, p_dev_rec->ble.static_addr_type, addr_type); |
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/* found the match */ |
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return p_dev_rec; |
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} |
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} |
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#endif |
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return NULL; |
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} |
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/******************************************************************************* |
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* |
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* Function btm_identity_addr_to_random_pseudo |
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* |
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* Description This function map a static BD address to a pseudo random |
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* address in security database. |
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* |
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******************************************************************************/ |
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bool btm_identity_addr_to_random_pseudo(RawAddress* bd_addr, |
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uint8_t* p_addr_type, bool refresh) { |
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#if (BLE_PRIVACY_SPT == TRUE) |
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tBTM_SEC_DEV_REC* p_dev_rec = |
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btm_find_dev_by_identity_addr(*bd_addr, *p_addr_type); |
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BTM_TRACE_EVENT("%s", __func__); |
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/* evt reported on static address, map static address to random pseudo */ |
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if (p_dev_rec != NULL) { |
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/* if RPA offloading is supported, or 4.2 controller, do RPA refresh */ |
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if (refresh && |
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controller_get_interface()->get_ble_resolving_list_max_size() != 0) |
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btm_ble_read_resolving_list_entry(p_dev_rec); |
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/* assign the original address to be the current report address */ |
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if (!btm_ble_init_pseudo_addr(p_dev_rec, *bd_addr)) |
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*bd_addr = p_dev_rec->ble.pseudo_addr; |
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*p_addr_type = p_dev_rec->ble.ble_addr_type; |
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return true; |
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} |
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#endif |
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return false; |
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} |
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/******************************************************************************* |
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* |
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* Function btm_random_pseudo_to_identity_addr |
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* |
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* Description This function map a random pseudo address to a public |
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* address. random_pseudo is input and output parameter |
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* |
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******************************************************************************/ |
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bool btm_random_pseudo_to_identity_addr(RawAddress* random_pseudo, |
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uint8_t* p_static_addr_type) { |
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#if (BLE_PRIVACY_SPT == TRUE) |
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tBTM_SEC_DEV_REC* p_dev_rec = btm_find_dev(*random_pseudo); |
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if (p_dev_rec != NULL) { |
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if (p_dev_rec->ble.in_controller_list & BTM_RESOLVING_LIST_BIT) { |
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*p_static_addr_type = p_dev_rec->ble.static_addr_type; |
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*random_pseudo = p_dev_rec->ble.static_addr; |
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if (controller_get_interface()->supports_ble_privacy()) |
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*p_static_addr_type |= BLE_ADDR_TYPE_ID_BIT; |
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return true; |
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} |
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} |
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#endif |
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return false; |
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} |
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/******************************************************************************* |
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* |
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* Function btm_ble_refresh_peer_resolvable_private_addr |
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* |
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* Description This function refresh the currently used resolvable remote |
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* private address into security database and set active |
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* connection address. |
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* |
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******************************************************************************/ |
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void btm_ble_refresh_peer_resolvable_private_addr(const RawAddress& pseudo_bda, |
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const RawAddress& rpa, |
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uint8_t rra_type) { |
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#if (BLE_PRIVACY_SPT == TRUE) |
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uint8_t rra_dummy = false; |
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if (rpa.IsEmpty()) rra_dummy = true; |
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/* update security record here, in adv event or connection complete process */ |
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tBTM_SEC_DEV_REC* p_sec_rec = btm_find_dev(pseudo_bda); |
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if (p_sec_rec != NULL) { |
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p_sec_rec->ble.cur_rand_addr = rpa; |
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/* unknown, if dummy address, set to static */ |
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if (rra_type == BTM_BLE_ADDR_PSEUDO) |
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p_sec_rec->ble.active_addr_type = |
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rra_dummy ? BTM_BLE_ADDR_STATIC : BTM_BLE_ADDR_RRA; |
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else |
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p_sec_rec->ble.active_addr_type = rra_type; |
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} else { |
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BTM_TRACE_ERROR("No matching known device in record"); |
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return; |
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} |
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BTM_TRACE_DEBUG("%s: active_addr_type: %d ", __func__, |
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p_sec_rec->ble.active_addr_type); |
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/* connection refresh remote address */ |
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tACL_CONN* p_acl = btm_bda_to_acl(p_sec_rec->bd_addr, BT_TRANSPORT_LE); |
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if (p_acl == NULL) |
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p_acl = btm_bda_to_acl(p_sec_rec->ble.pseudo_addr, BT_TRANSPORT_LE); |
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if (p_acl != NULL) { |
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if (rra_type == BTM_BLE_ADDR_PSEUDO) { |
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/* use static address, resolvable_private_addr is empty */ |
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if (rra_dummy) { |
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p_acl->active_remote_addr_type = p_sec_rec->ble.static_addr_type; |
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p_acl->active_remote_addr = p_sec_rec->ble.static_addr; |
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} else { |
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p_acl->active_remote_addr_type = BLE_ADDR_RANDOM; |
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p_acl->active_remote_addr = rpa; |
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} |
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} else { |
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p_acl->active_remote_addr_type = rra_type; |
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p_acl->active_remote_addr = rpa; |
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} |
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BTM_TRACE_DEBUG("p_acl->active_remote_addr_type: %d ", |
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p_acl->active_remote_addr_type); |
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VLOG(1) << __func__ << " conn_addr: " << p_acl->active_remote_addr; |
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} |
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#endif |
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} |
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/******************************************************************************* |
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* |
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* Function btm_ble_refresh_local_resolvable_private_addr |
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* |
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* Description This function refresh the currently used resolvable private |
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* address for the active link to the remote device |
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* |
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******************************************************************************/ |
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void btm_ble_refresh_local_resolvable_private_addr( |
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const RawAddress& pseudo_addr, const RawAddress& local_rpa) { |
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#if (BLE_PRIVACY_SPT == TRUE) |
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tACL_CONN* p = btm_bda_to_acl(pseudo_addr, BT_TRANSPORT_LE); |
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if (p != NULL) { |
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if (btm_cb.ble_ctr_cb.privacy_mode != BTM_PRIVACY_NONE) { |
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p->conn_addr_type = BLE_ADDR_RANDOM; |
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if (!local_rpa.IsEmpty()) |
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p->conn_addr = local_rpa; |
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else |
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p->conn_addr = btm_cb.ble_ctr_cb.addr_mgnt_cb.private_addr; |
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} else { |
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p->conn_addr_type = BLE_ADDR_PUBLIC; |
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p->conn_addr = *controller_get_interface()->get_address(); |
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} |
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} |
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#endif |
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}
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