mirror of https://gitee.com/openkylin/bluez.git
240 lines
7.2 KiB
C
240 lines
7.2 KiB
C
// SPDX-License-Identifier: Apache-2.0
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/*
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* Copyright (C) 2014 Intel Corporation
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*
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*/
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#define _GNU_SOURCE
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#include <stdbool.h>
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#include "emulator/bthost.h"
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#include "src/shared/util.h"
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#include "src/shared/tester.h"
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#include "src/shared/queue.h"
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#include "lib/bluetooth.h"
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#include "android/utils.h"
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#include "tester-main.h"
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static struct queue *list;
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#define req_dsc 0x00, 0x01
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#define rsp_dsc 0x02, 0x01, 0x04, 0x08
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#define req_get 0x10, 0x02, 0x04
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#define rsp_get 0x12, 0x02, 0x01, 0x00, 0x07, 0x06, 0x00, \
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0x00, 0xff, 0xff, 0x02, 0x40
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#define req_cfg 0x20, 0x03, 0x04, 0x04, 0x01, 0x00, 0x07, \
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0x06, 0x00, 0x00, 0x21, 0x15, 0x02, \
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0x40
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#define rsp_cfg 0x22, 0x03
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#define req_open 0x30, 0x06, 0x04
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#define rsp_open 0x32, 0x06
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#define req_close 0x40, 0x08, 0x04
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#define rsp_close 0x42, 0x08
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#define req_start 0x40, 0x07, 0x04
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#define rsp_start 0x42, 0x07
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#define req_suspend 0x50, 0x09, 0x04
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#define rsp_suspend 0x52, 0x09
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static const struct pdu_set pdus[] = {
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{ raw_pdu(req_dsc), raw_pdu(rsp_dsc) },
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{ raw_pdu(req_get), raw_pdu(rsp_get) },
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{ raw_pdu(req_cfg), raw_pdu(rsp_cfg) },
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{ raw_pdu(req_open), raw_pdu(rsp_open) },
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{ raw_pdu(req_close), raw_pdu(rsp_close) },
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{ raw_pdu(req_start), raw_pdu(rsp_start) },
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{ raw_pdu(req_suspend), raw_pdu(rsp_suspend) },
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{ end_pdu, end_pdu },
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};
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static struct emu_l2cap_cid_data cid_data = {
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.pdu = pdus,
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};
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static void a2dp_connect_request_cb(uint16_t handle, uint16_t cid,
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void *user_data)
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{
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struct emu_l2cap_cid_data *cid_data = user_data;
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if (cid_data->handle)
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return;
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cid_data->handle = handle;
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cid_data->cid = cid;
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tester_handle_l2cap_data_exchange(cid_data);
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}
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static struct emu_set_l2cap_data l2cap_setup_data = {
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.psm = 25,
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.func = a2dp_connect_request_cb,
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.user_data = &cid_data,
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};
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static void a2dp_connect_action(void)
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{
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struct test_data *data = tester_get_data();
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const uint8_t *addr = hciemu_get_client_bdaddr(data->hciemu);
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struct step *step = g_new0(struct step, 1);
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bt_bdaddr_t bdaddr;
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cid_data.handle = 0;
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cid_data.cid = 0;
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bdaddr2android((const bdaddr_t *) addr, &bdaddr);
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step->action_status = data->if_a2dp->connect(&bdaddr);
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schedule_action_verification(step);
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}
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static void a2dp_disconnect_action(void)
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{
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struct test_data *data = tester_get_data();
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const uint8_t *addr = hciemu_get_client_bdaddr(data->hciemu);
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struct step *step = g_new0(struct step, 1);
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bt_bdaddr_t bdaddr;
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bdaddr2android((const bdaddr_t *) addr, &bdaddr);
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step->action_status = data->if_a2dp->disconnect(&bdaddr);
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schedule_action_verification(step);
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}
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static void audio_resume_action(void)
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{
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struct test_data *data = tester_get_data();
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struct step *step = g_new0(struct step, 1);
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int err;
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err = data->audio->open_output_stream(data->audio,
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0,
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AUDIO_DEVICE_OUT_ALL_A2DP,
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AUDIO_OUTPUT_FLAG_NONE,
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NULL,
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&data->if_stream, NULL);
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if (err < 0) {
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step->action_status = BT_STATUS_FAIL;
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goto done;
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}
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/* Write something to force resume */
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data->if_stream->write(data->if_stream, &err, sizeof(err));
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done:
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schedule_action_verification(step);
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}
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static void audio_suspend_action(void)
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{
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struct test_data *data = tester_get_data();
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struct step *step = g_new0(struct step, 1);
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data->if_stream->common.standby(&data->if_stream->common);
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schedule_action_verification(step);
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}
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static struct test_case test_cases[] = {
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TEST_CASE_BREDRLE("A2DP Init",
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ACTION_SUCCESS(dummy_action, NULL),
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),
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TEST_CASE_BREDRLE("A2DP Connect - Success",
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ACTION_SUCCESS(set_default_ssp_request_handler, NULL),
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ACTION_SUCCESS(bluetooth_enable_action, NULL),
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CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
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ACTION_SUCCESS(emu_setup_powered_remote_action, NULL),
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ACTION_SUCCESS(emu_set_ssp_mode_action, NULL),
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ACTION_SUCCESS(emu_add_l2cap_server_action, &l2cap_setup_data),
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ACTION_SUCCESS(a2dp_connect_action, NULL),
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CALLBACK_AV_CONN_STATE(CB_A2DP_CONN_STATE,
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BTAV_CONNECTION_STATE_CONNECTING),
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CALLBACK_AV_CONN_STATE(CB_A2DP_CONN_STATE,
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BTAV_CONNECTION_STATE_CONNECTED),
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ACTION_SUCCESS(bluetooth_disable_action, NULL),
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CALLBACK_AV_CONN_STATE(CB_A2DP_CONN_STATE,
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BTAV_CONNECTION_STATE_DISCONNECTED),
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CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
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),
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TEST_CASE_BREDRLE("A2DP Disconnect - Success",
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ACTION_SUCCESS(set_default_ssp_request_handler, NULL),
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ACTION_SUCCESS(bluetooth_enable_action, NULL),
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CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
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ACTION_SUCCESS(emu_setup_powered_remote_action, NULL),
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ACTION_SUCCESS(emu_set_ssp_mode_action, NULL),
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ACTION_SUCCESS(emu_add_l2cap_server_action, &l2cap_setup_data),
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ACTION_SUCCESS(a2dp_connect_action, NULL),
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CALLBACK_AV_CONN_STATE(CB_A2DP_CONN_STATE,
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BTAV_CONNECTION_STATE_CONNECTING),
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CALLBACK_AV_CONN_STATE(CB_A2DP_CONN_STATE,
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BTAV_CONNECTION_STATE_CONNECTED),
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ACTION_SUCCESS(a2dp_disconnect_action, NULL),
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CALLBACK_AV_CONN_STATE(CB_A2DP_CONN_STATE,
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BTAV_CONNECTION_STATE_DISCONNECTING),
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CALLBACK_AV_CONN_STATE(CB_A2DP_CONN_STATE,
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BTAV_CONNECTION_STATE_DISCONNECTED),
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ACTION_SUCCESS(bluetooth_disable_action, NULL),
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CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
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),
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TEST_CASE_BREDRLE("A2DP Resume - Success",
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ACTION_SUCCESS(set_default_ssp_request_handler, NULL),
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ACTION_SUCCESS(bluetooth_enable_action, NULL),
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CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
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ACTION_SUCCESS(emu_setup_powered_remote_action, NULL),
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ACTION_SUCCESS(emu_set_ssp_mode_action, NULL),
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ACTION_SUCCESS(emu_add_l2cap_server_action, &l2cap_setup_data),
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ACTION_SUCCESS(a2dp_connect_action, NULL),
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CALLBACK_AV_CONN_STATE(CB_A2DP_CONN_STATE,
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BTAV_CONNECTION_STATE_CONNECTING),
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CALLBACK_AV_CONN_STATE(CB_A2DP_CONN_STATE,
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BTAV_CONNECTION_STATE_CONNECTED),
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ACTION_SUCCESS(audio_resume_action, NULL),
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CALLBACK_AV_AUDIO_STATE(CB_A2DP_AUDIO_STATE,
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BTAV_AUDIO_STATE_STARTED),
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ACTION_SUCCESS(bluetooth_disable_action, NULL),
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CALLBACK_AV_CONN_STATE(CB_A2DP_CONN_STATE,
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BTAV_CONNECTION_STATE_DISCONNECTED),
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CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
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),
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TEST_CASE_BREDRLE("A2DP Suspend - Success",
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ACTION_SUCCESS(set_default_ssp_request_handler, NULL),
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ACTION_SUCCESS(bluetooth_enable_action, NULL),
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CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
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ACTION_SUCCESS(emu_setup_powered_remote_action, NULL),
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ACTION_SUCCESS(emu_set_ssp_mode_action, NULL),
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ACTION_SUCCESS(emu_add_l2cap_server_action, &l2cap_setup_data),
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ACTION_SUCCESS(a2dp_connect_action, NULL),
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CALLBACK_AV_CONN_STATE(CB_A2DP_CONN_STATE,
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BTAV_CONNECTION_STATE_CONNECTING),
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CALLBACK_AV_CONN_STATE(CB_A2DP_CONN_STATE,
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BTAV_CONNECTION_STATE_CONNECTED),
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ACTION_SUCCESS(audio_resume_action, NULL),
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CALLBACK_AV_AUDIO_STATE(CB_A2DP_AUDIO_STATE,
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BTAV_AUDIO_STATE_STARTED),
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ACTION_SUCCESS(audio_suspend_action, NULL),
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CALLBACK_AV_AUDIO_STATE(CB_A2DP_AUDIO_STATE,
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BTAV_AUDIO_STATE_STOPPED),
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ACTION_SUCCESS(bluetooth_disable_action, NULL),
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CALLBACK_AV_CONN_STATE(CB_A2DP_CONN_STATE,
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BTAV_CONNECTION_STATE_DISCONNECTED),
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CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
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),
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};
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struct queue *get_a2dp_tests(void)
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{
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uint16_t i = 0;
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list = queue_new();
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for (; i < sizeof(test_cases) / sizeof(test_cases[0]); ++i)
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queue_push_tail(list, &test_cases[i]);
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return list;
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}
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void remove_a2dp_tests(void)
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{
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queue_destroy(list, NULL);
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}
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