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564 lines
19 KiB
564 lines
19 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 the Bluetooth Device Manager |
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* |
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******************************************************************************/ |
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#include <stddef.h> |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#include "bt_common.h" |
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#include "bt_types.h" |
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#include "btm_api.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 "hcidefs.h" |
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#include "hcimsgs.h" |
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#include "l2c_api.h" |
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/******************************************************************************* |
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* |
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* Function BTM_SecAddDevice |
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* |
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* Description Add/modify device. This function will be normally called |
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* during host startup to restore all required information |
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* stored in the NVRAM. |
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* |
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* Parameters: bd_addr - BD address of the peer |
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* dev_class - Device Class |
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* bd_name - Name of the peer device. NULL if unknown. |
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* features - Remote device's features (up to 3 pages). |
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* NULL if not known |
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* trusted_mask - Bitwise OR of services that do not |
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* require authorization. |
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* (array of uint32_t) |
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* link_key - Connection link key. NULL if unknown. |
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* |
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* Returns true if added OK, else false |
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* |
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******************************************************************************/ |
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bool BTM_SecAddDevice(const RawAddress& bd_addr, DEV_CLASS dev_class, |
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BD_NAME bd_name, uint8_t* features, |
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uint32_t trusted_mask[], LINK_KEY link_key, |
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uint8_t key_type, tBTM_IO_CAP io_cap, |
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uint8_t pin_length) { |
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BTM_TRACE_API("%s: link key type:%x", __func__, key_type); |
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tBTM_SEC_DEV_REC* p_dev_rec = btm_find_dev(bd_addr); |
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if (!p_dev_rec) { |
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p_dev_rec = btm_sec_allocate_dev_rec(); |
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p_dev_rec->bd_addr = bd_addr; |
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p_dev_rec->hci_handle = BTM_GetHCIConnHandle(bd_addr, BT_TRANSPORT_BR_EDR); |
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/* use default value for background connection params */ |
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/* update conn params, use default value for background connection params */ |
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memset(&p_dev_rec->conn_params, 0xff, sizeof(tBTM_LE_CONN_PRAMS)); |
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} else { |
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/* "Bump" timestamp for existing record */ |
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p_dev_rec->timestamp = btm_cb.dev_rec_count++; |
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/* TODO(eisenbach): |
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* Small refactor, but leaving original logic for now. |
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* On the surface, this does not make any sense at all. Why change the |
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* bond state for an existing device here? This logic should be verified |
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* as part of a larger refactor. |
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*/ |
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p_dev_rec->bond_type = BOND_TYPE_UNKNOWN; |
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} |
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if (dev_class) memcpy(p_dev_rec->dev_class, dev_class, DEV_CLASS_LEN); |
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memset(p_dev_rec->sec_bd_name, 0, sizeof(tBTM_BD_NAME)); |
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if (bd_name && bd_name[0]) { |
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p_dev_rec->sec_flags |= BTM_SEC_NAME_KNOWN; |
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strlcpy((char*)p_dev_rec->sec_bd_name, (char*)bd_name, |
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BTM_MAX_REM_BD_NAME_LEN); |
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} |
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p_dev_rec->num_read_pages = 0; |
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if (features) { |
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bool found = false; |
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memcpy(p_dev_rec->feature_pages, features, |
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sizeof(p_dev_rec->feature_pages)); |
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for (int i = HCI_EXT_FEATURES_PAGE_MAX; !found && i >= 0; i--) { |
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for (int j = 0; j < HCI_FEATURE_BYTES_PER_PAGE; j++) { |
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if (p_dev_rec->feature_pages[i][j] != 0) { |
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found = true; |
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p_dev_rec->num_read_pages = i + 1; |
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break; |
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} |
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} |
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} |
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} else { |
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memset(p_dev_rec->feature_pages, 0, sizeof(p_dev_rec->feature_pages)); |
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} |
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BTM_SEC_COPY_TRUSTED_DEVICE(trusted_mask, p_dev_rec->trusted_mask); |
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if (link_key) { |
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VLOG(2) << __func__ << ": BDA: " << bd_addr; |
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p_dev_rec->sec_flags |= BTM_SEC_LINK_KEY_KNOWN; |
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memcpy(p_dev_rec->link_key, link_key, LINK_KEY_LEN); |
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p_dev_rec->link_key_type = key_type; |
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p_dev_rec->pin_code_length = pin_length; |
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if (pin_length >= 16 || key_type == BTM_LKEY_TYPE_AUTH_COMB || |
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key_type == BTM_LKEY_TYPE_AUTH_COMB_P_256) { |
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// Set the flag if the link key was made by using either a 16 digit |
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// pin or MITM. |
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p_dev_rec->sec_flags |= |
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BTM_SEC_16_DIGIT_PIN_AUTHED | BTM_SEC_LINK_KEY_AUTHED; |
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} |
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} |
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#if (BTIF_MIXED_MODE_INCLUDED == TRUE) |
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if (key_type < BTM_MAX_PRE_SM4_LKEY_TYPE) |
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p_dev_rec->sm4 = BTM_SM4_KNOWN; |
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else |
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p_dev_rec->sm4 = BTM_SM4_TRUE; |
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#endif |
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p_dev_rec->rmt_io_caps = io_cap; |
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p_dev_rec->device_type |= BT_DEVICE_TYPE_BREDR; |
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return true; |
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} |
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/** Free resources associated with the device associated with |bd_addr| address. |
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* |
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* *** WARNING *** |
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* tBTM_SEC_DEV_REC associated with bd_addr becomes invalid after this function |
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* is called, also any of it's fields. i.e. if you use p_dev_rec->bd_addr, it is |
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* no longer valid! |
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* *** WARNING *** |
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* |
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* Returns true if removed OK, false if not found or ACL link is active. |
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*/ |
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bool BTM_SecDeleteDevice(const RawAddress& bd_addr) { |
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if (BTM_IsAclConnectionUp(bd_addr, BT_TRANSPORT_LE) || |
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BTM_IsAclConnectionUp(bd_addr, BT_TRANSPORT_BR_EDR)) { |
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BTM_TRACE_WARNING("%s FAILED: Cannot Delete when connection is active", |
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__func__); |
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return false; |
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} |
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tBTM_SEC_DEV_REC* p_dev_rec = btm_find_dev(bd_addr); |
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if (p_dev_rec != NULL) { |
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RawAddress bda = p_dev_rec->bd_addr; |
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btm_sec_free_dev(p_dev_rec); |
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/* Tell controller to get rid of the link key, if it has one stored */ |
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BTM_DeleteStoredLinkKey(&bda, NULL); |
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} |
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return true; |
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} |
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/******************************************************************************* |
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* |
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* Function BTM_SecClearSecurityFlags |
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* |
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* Description Reset the security flags (mark as not-paired) for a given |
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* remove device. |
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* |
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******************************************************************************/ |
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extern void BTM_SecClearSecurityFlags(const RawAddress& bd_addr) { |
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tBTM_SEC_DEV_REC* p_dev_rec = btm_find_dev(bd_addr); |
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if (p_dev_rec == NULL) return; |
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p_dev_rec->sec_flags = 0; |
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p_dev_rec->sec_state = BTM_SEC_STATE_IDLE; |
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/** M: set SM4 to UNKNOWN after link is down @{*/ |
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// p_dev_rec->sm4 = BTM_SM4_UNKNOWN; |
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} |
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/******************************************************************************* |
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* |
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* Function BTM_SecReadDevName |
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* |
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* Description Looks for the device name in the security database for the |
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* specified BD address. |
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* |
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* Returns Pointer to the name or NULL |
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* |
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******************************************************************************/ |
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char* BTM_SecReadDevName(const RawAddress& bd_addr) { |
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char* p_name = NULL; |
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tBTM_SEC_DEV_REC* p_srec; |
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p_srec = btm_find_dev(bd_addr); |
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if (p_srec != NULL) p_name = (char*)p_srec->sec_bd_name; |
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return (p_name); |
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} |
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/******************************************************************************* |
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* |
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* Function btm_sec_alloc_dev |
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* |
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* Description Look for the record in the device database for the record |
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* with specified address |
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* |
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* Returns Pointer to the record or NULL |
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* |
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******************************************************************************/ |
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tBTM_SEC_DEV_REC* btm_sec_alloc_dev(const RawAddress& bd_addr) { |
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tBTM_INQ_INFO* p_inq_info; |
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BTM_TRACE_EVENT("btm_sec_alloc_dev"); |
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tBTM_SEC_DEV_REC* p_dev_rec = btm_sec_allocate_dev_rec(); |
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/* Check with the BT manager if details about remote device are known */ |
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/* outgoing connection */ |
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p_inq_info = BTM_InqDbRead(bd_addr); |
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if (p_inq_info != NULL) { |
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memcpy(p_dev_rec->dev_class, p_inq_info->results.dev_class, DEV_CLASS_LEN); |
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p_dev_rec->device_type = p_inq_info->results.device_type; |
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p_dev_rec->ble.ble_addr_type = p_inq_info->results.ble_addr_type; |
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} else if (bd_addr == btm_cb.connecting_bda) |
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memcpy(p_dev_rec->dev_class, btm_cb.connecting_dc, DEV_CLASS_LEN); |
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/* update conn params, use default value for background connection params */ |
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memset(&p_dev_rec->conn_params, 0xff, sizeof(tBTM_LE_CONN_PRAMS)); |
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p_dev_rec->bd_addr = bd_addr; |
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p_dev_rec->ble_hci_handle = BTM_GetHCIConnHandle(bd_addr, BT_TRANSPORT_LE); |
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p_dev_rec->hci_handle = BTM_GetHCIConnHandle(bd_addr, BT_TRANSPORT_BR_EDR); |
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return (p_dev_rec); |
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} |
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/******************************************************************************* |
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* |
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* Function btm_sec_free_dev |
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* |
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* Description Mark device record as not used |
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* |
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******************************************************************************/ |
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void btm_sec_free_dev(tBTM_SEC_DEV_REC* p_dev_rec) { |
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/* Clear out any saved BLE keys */ |
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btm_sec_clear_ble_keys(p_dev_rec); |
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list_remove(btm_cb.sec_dev_rec, p_dev_rec); |
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} |
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/******************************************************************************* |
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* |
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* Function btm_dev_support_switch |
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* |
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* Description This function is called by the L2CAP to check if remote |
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* device supports role switch |
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* |
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* Parameters: bd_addr - Address of the peer device |
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* |
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* Returns true if device is known and role switch is supported |
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* |
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******************************************************************************/ |
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bool btm_dev_support_switch(const RawAddress& bd_addr) { |
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tBTM_SEC_DEV_REC* p_dev_rec; |
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uint8_t xx; |
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bool feature_empty = true; |
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#if (BTM_SCO_INCLUDED == TRUE) |
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/* Role switch is not allowed if a SCO is up */ |
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if (btm_is_sco_active_by_bdaddr(bd_addr)) return (false); |
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#endif |
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p_dev_rec = btm_find_dev(bd_addr); |
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if (p_dev_rec && |
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controller_get_interface()->supports_master_slave_role_switch()) { |
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if (HCI_SWITCH_SUPPORTED(p_dev_rec->feature_pages[0])) { |
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BTM_TRACE_DEBUG("btm_dev_support_switch return true (feature found)"); |
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return (true); |
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} |
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/* If the feature field is all zero, we never received them */ |
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for (xx = 0; xx < BD_FEATURES_LEN; xx++) { |
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if (p_dev_rec->feature_pages[0][xx] != 0x00) { |
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feature_empty = false; /* at least one is != 0 */ |
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break; |
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} |
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} |
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/* If we don't know peer's capabilities, assume it supports Role-switch */ |
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if (feature_empty) { |
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BTM_TRACE_DEBUG("btm_dev_support_switch return true (feature empty)"); |
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return (true); |
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} |
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} |
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BTM_TRACE_DEBUG("btm_dev_support_switch return false"); |
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return (false); |
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} |
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bool is_handle_equal(void* data, void* context) { |
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tBTM_SEC_DEV_REC* p_dev_rec = static_cast<tBTM_SEC_DEV_REC*>(data); |
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uint16_t* handle = static_cast<uint16_t*>(context); |
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if (p_dev_rec->hci_handle == *handle || p_dev_rec->ble_hci_handle == *handle) |
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return false; |
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return true; |
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} |
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/******************************************************************************* |
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* |
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* Function btm_find_dev_by_handle |
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* |
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* Description Look for the record in the device database for the record |
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* with specified handle |
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* |
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* Returns Pointer to the record or NULL |
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* |
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******************************************************************************/ |
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tBTM_SEC_DEV_REC* btm_find_dev_by_handle(uint16_t handle) { |
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list_node_t* n = list_foreach(btm_cb.sec_dev_rec, is_handle_equal, &handle); |
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if (n) return static_cast<tBTM_SEC_DEV_REC*>(list_node(n)); |
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return NULL; |
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} |
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bool is_address_equal(void* data, void* context) { |
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tBTM_SEC_DEV_REC* p_dev_rec = static_cast<tBTM_SEC_DEV_REC*>(data); |
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const RawAddress* bd_addr = ((RawAddress*)context); |
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if (p_dev_rec->bd_addr == *bd_addr) return false; |
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// If a LE random address is looking for device record |
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if (p_dev_rec->ble.pseudo_addr == *bd_addr) return false; |
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if (btm_ble_addr_resolvable(*bd_addr, p_dev_rec)) return false; |
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return true; |
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} |
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/******************************************************************************* |
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* |
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* Function btm_find_dev |
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* |
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* Description Look for the record in the device database for the record |
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* with specified BD address |
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* |
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* Returns Pointer to the record or NULL |
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* |
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******************************************************************************/ |
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tBTM_SEC_DEV_REC* btm_find_dev(const RawAddress& bd_addr) { |
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list_node_t* n = |
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list_foreach(btm_cb.sec_dev_rec, is_address_equal, (void*)&bd_addr); |
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if (n) return static_cast<tBTM_SEC_DEV_REC*>(list_node(n)); |
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return NULL; |
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} |
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/******************************************************************************* |
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* |
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* Function btm_consolidate_dev |
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5** |
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* Description combine security records if identified as same peer |
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* |
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* Returns none |
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* |
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******************************************************************************/ |
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void btm_consolidate_dev(tBTM_SEC_DEV_REC* p_target_rec) { |
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tBTM_SEC_DEV_REC temp_rec = *p_target_rec; |
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BTM_TRACE_DEBUG("%s", __func__); |
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list_node_t* end = list_end(btm_cb.sec_dev_rec); |
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list_node_t* node = list_begin(btm_cb.sec_dev_rec); |
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while (node != end) { |
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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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// we do list_remove in some cases, must grab next before removing |
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node = list_next(node); |
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if (p_target_rec == p_dev_rec) continue; |
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if (p_dev_rec->bd_addr == p_target_rec->bd_addr) { |
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memcpy(p_target_rec, p_dev_rec, sizeof(tBTM_SEC_DEV_REC)); |
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p_target_rec->ble = temp_rec.ble; |
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p_target_rec->ble_hci_handle = temp_rec.ble_hci_handle; |
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p_target_rec->enc_key_size = temp_rec.enc_key_size; |
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p_target_rec->conn_params = temp_rec.conn_params; |
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p_target_rec->device_type |= temp_rec.device_type; |
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p_target_rec->sec_flags |= temp_rec.sec_flags; |
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p_target_rec->new_encryption_key_is_p256 = |
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temp_rec.new_encryption_key_is_p256; |
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p_target_rec->no_smp_on_br = temp_rec.no_smp_on_br; |
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p_target_rec->bond_type = temp_rec.bond_type; |
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/* remove the combined record */ |
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list_remove(btm_cb.sec_dev_rec, p_dev_rec); |
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} |
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/* an RPA device entry is a duplicate of the target record */ |
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if (btm_ble_addr_resolvable(p_dev_rec->bd_addr, p_target_rec)) { |
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if (p_target_rec->ble.pseudo_addr == p_dev_rec->bd_addr) { |
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p_target_rec->ble.ble_addr_type = p_dev_rec->ble.ble_addr_type; |
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p_target_rec->device_type |= p_dev_rec->device_type; |
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/* remove the combined record */ |
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list_remove(btm_cb.sec_dev_rec, p_dev_rec); |
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} |
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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 btm_find_or_alloc_dev |
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* |
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* Description Look for the record in the device database for the record |
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* with specified BD address |
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* |
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* Returns Pointer to the record or NULL |
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* |
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******************************************************************************/ |
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tBTM_SEC_DEV_REC* btm_find_or_alloc_dev(const RawAddress& bd_addr) { |
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tBTM_SEC_DEV_REC* p_dev_rec; |
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BTM_TRACE_EVENT("btm_find_or_alloc_dev"); |
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p_dev_rec = btm_find_dev(bd_addr); |
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if (p_dev_rec == NULL) { |
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/* Allocate a new device record or reuse the oldest one */ |
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p_dev_rec = btm_sec_alloc_dev(bd_addr); |
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} |
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return (p_dev_rec); |
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} |
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/******************************************************************************* |
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* |
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* Function btm_find_oldest_dev_rec |
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* |
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* Description Locates the oldest device in use. It first looks for |
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* the oldest non-paired device. If all devices are paired it |
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* returns the oldest paired device. |
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* |
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* Returns Pointer to the record or NULL |
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* |
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******************************************************************************/ |
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static tBTM_SEC_DEV_REC* btm_find_oldest_dev_rec(void) { |
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tBTM_SEC_DEV_REC* p_oldest = NULL; |
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uint32_t ts_oldest = 0xFFFFFFFF; |
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tBTM_SEC_DEV_REC* p_oldest_paired = NULL; |
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uint32_t ts_oldest_paired = 0xFFFFFFFF; |
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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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|
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if ((p_dev_rec->sec_flags & |
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(BTM_SEC_LINK_KEY_KNOWN | BTM_SEC_LE_LINK_KEY_KNOWN)) == 0) { |
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// Device is not paired |
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if (p_dev_rec->timestamp < ts_oldest) { |
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p_oldest = p_dev_rec; |
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ts_oldest = p_dev_rec->timestamp; |
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} |
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} else { |
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// Paired device |
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if (p_dev_rec->timestamp < ts_oldest_paired) { |
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p_oldest_paired = p_dev_rec; |
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ts_oldest_paired = p_dev_rec->timestamp; |
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} |
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} |
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} |
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// If we did not find any non-paired devices, use the oldest paired one... |
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if (ts_oldest == 0xFFFFFFFF) p_oldest = p_oldest_paired; |
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return p_oldest; |
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} |
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|
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/******************************************************************************* |
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* |
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* Function btm_sec_allocate_dev_rec |
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* |
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* Description Attempts to allocate a new device record. If we have |
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* exceeded the maximum number of allowable records to |
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* allocate, the oldest record will be deleted to make room |
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* for the new record. |
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* |
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* Returns Pointer to the newly allocated record |
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* |
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******************************************************************************/ |
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tBTM_SEC_DEV_REC* btm_sec_allocate_dev_rec(void) { |
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tBTM_SEC_DEV_REC* p_dev_rec = NULL; |
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|
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if (list_length(btm_cb.sec_dev_rec) > BTM_SEC_MAX_DEVICE_RECORDS) { |
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p_dev_rec = btm_find_oldest_dev_rec(); |
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list_remove(btm_cb.sec_dev_rec, p_dev_rec); |
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} |
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|
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p_dev_rec = |
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static_cast<tBTM_SEC_DEV_REC*>(osi_calloc(sizeof(tBTM_SEC_DEV_REC))); |
|
list_append(btm_cb.sec_dev_rec, p_dev_rec); |
|
|
|
// Initialize defaults |
|
p_dev_rec->sec_flags = BTM_SEC_IN_USE; |
|
p_dev_rec->bond_type = BOND_TYPE_UNKNOWN; |
|
p_dev_rec->timestamp = btm_cb.dev_rec_count++; |
|
p_dev_rec->rmt_io_caps = BTM_IO_CAP_UNKNOWN; |
|
|
|
return p_dev_rec; |
|
} |
|
|
|
/******************************************************************************* |
|
* |
|
* Function btm_get_bond_type_dev |
|
* |
|
* Description Get the bond type for a device in the device database |
|
* with specified BD address |
|
* |
|
* Returns The device bond type if known, otherwise BOND_TYPE_UNKNOWN |
|
* |
|
******************************************************************************/ |
|
tBTM_BOND_TYPE btm_get_bond_type_dev(const RawAddress& bd_addr) { |
|
tBTM_SEC_DEV_REC* p_dev_rec = btm_find_dev(bd_addr); |
|
|
|
if (p_dev_rec == NULL) return BOND_TYPE_UNKNOWN; |
|
|
|
return p_dev_rec->bond_type; |
|
} |
|
|
|
/******************************************************************************* |
|
* |
|
* Function btm_set_bond_type_dev |
|
* |
|
* Description Set the bond type for a device in the device database |
|
* with specified BD address |
|
* |
|
* Returns true on success, otherwise false |
|
* |
|
******************************************************************************/ |
|
bool btm_set_bond_type_dev(const RawAddress& bd_addr, |
|
tBTM_BOND_TYPE bond_type) { |
|
tBTM_SEC_DEV_REC* p_dev_rec = btm_find_dev(bd_addr); |
|
|
|
if (p_dev_rec == NULL) return false; |
|
|
|
p_dev_rec->bond_type = bond_type; |
|
return true; |
|
}
|
|
|