mirror of
https://github.com/kidfromjupiter/nearby.git
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284 lines
10 KiB
C++
284 lines
10 KiB
C++
// Copyright 2025 Google LLC
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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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// https://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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// #include
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// "third_party/nearby/connections/implementation/p2p_cluster_pcp_handler.h"
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#include "connections/implementation/p2p_star_pcp_handler.h"
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#include <cstdint>
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#include <string>
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#include <tuple>
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#include "gtest/gtest.h"
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#include "absl/time/time.h"
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#include "connections/advertising_options.h"
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#include "connections/connection_options.h"
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#include "connections/discovery_options.h"
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#include "connections/implementation/bwu_manager.h"
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#include "connections/implementation/client_proxy.h"
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#include "connections/implementation/endpoint_channel_manager.h"
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#include "connections/implementation/endpoint_manager.h"
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#include "connections/implementation/flags/nearby_connections_feature_flags.h"
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#include "connections/implementation/injected_bluetooth_device_store.h"
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#include "connections/implementation/mediums/bluetooth_radio.h"
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#include "connections/implementation/mediums/mediums.h"
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#include "connections/listeners.h"
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#include "connections/medium_selector.h"
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#include "connections/status.h"
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#include "connections/strategy.h"
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#include "internal/flags/nearby_flags.h"
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#include "internal/platform/byte_array.h"
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#include "internal/platform/count_down_latch.h"
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#include "internal/platform/logging.h"
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#include "internal/platform/medium_environment.h"
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namespace nearby {
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namespace connections {
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namespace {
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constexpr BooleanMediumSelector kTestCases[] = {
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BooleanMediumSelector{
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.ble = true,
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},
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BooleanMediumSelector{
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.bluetooth = true,
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},
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BooleanMediumSelector{
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.wifi_lan = true,
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},
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BooleanMediumSelector{
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.bluetooth = true,
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.ble = true,
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},
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BooleanMediumSelector{
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.bluetooth = true,
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.wifi_lan = true,
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},
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BooleanMediumSelector{
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.ble = true,
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.wifi_lan = true,
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},
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BooleanMediumSelector{
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.bluetooth = true,
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.ble = true,
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.wifi_lan = true,
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.wifi_direct = true,
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},
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BooleanMediumSelector{
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.bluetooth = true,
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.ble = true,
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.web_rtc = true,
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.wifi_lan = true,
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.wifi_hotspot = true,
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},
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};
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class P2pStarPcpHandlerTest
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: public testing::TestWithParam<std::tuple<BooleanMediumSelector>> {
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protected:
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void SetUp() override {
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LOG(INFO) << "SetUp: begin";
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if (advertising_options_.allowed.ble) {
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LOG(INFO) << "SetUp: BLE enabled";
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}
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if (advertising_options_.allowed.bluetooth) {
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LOG(INFO) << "SetUp: BT enabled";
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}
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if (advertising_options_.allowed.wifi_lan) {
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LOG(INFO) << "SetUp: WifiLan enabled";
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}
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if (advertising_options_.allowed.wifi_hotspot) {
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LOG(INFO) << "SetUp: WifiLan enabled";
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}
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if (advertising_options_.allowed.wifi_direct) {
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LOG(INFO) << "SetUp: WifiDirect enabled";
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}
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if (advertising_options_.allowed.web_rtc) {
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LOG(INFO) << "SetUp: WebRTC enabled";
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}
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LOG(INFO) << "SetUp: end";
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}
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ClientProxy client_a_;
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ClientProxy client_b_;
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std::string service_id_{"service"};
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ConnectionOptions connection_options_{
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{
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Strategy::kP2pStar,
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std::get<0>(GetParam()),
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},
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false, // auto_upgrade_bandwidth
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true, // enforce_topology_constraints
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};
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AdvertisingOptions advertising_options_{
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{
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Strategy::kP2pStar,
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std::get<0>(GetParam()),
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},
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false, // auto_upgrade_bandwidth
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true, // enforce_topology_constraints
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};
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DiscoveryOptions discovery_options_{
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{
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Strategy::kP2pStar,
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std::get<0>(GetParam()),
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},
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};
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MediumEnvironment& env_{MediumEnvironment::Instance()};
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};
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TEST_P(P2pStarPcpHandlerTest, CanConstructOne) {
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env_.Start();
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Mediums mediums;
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EndpointChannelManager ecm;
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EndpointManager em(&ecm);
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BwuManager bwu(mediums, em, ecm, {}, {});
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InjectedBluetoothDeviceStore ibds;
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P2pStarPcpHandler handler(mediums, em, ecm, bwu, ibds);
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env_.Stop();
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}
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TEST_P(P2pStarPcpHandlerTest, CanConnect) {
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env_.Start();
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std::string endpoint_name_a{"endpoint_name"};
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Mediums mediums_a;
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Mediums mediums_b;
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BluetoothRadio& radio_a = mediums_a.GetBluetoothRadio();
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BluetoothRadio& radio_b = mediums_b.GetBluetoothRadio();
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radio_a.GetBluetoothAdapter().SetName("BT Device A");
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radio_b.GetBluetoothAdapter().SetName("BT Device B");
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EndpointChannelManager ecm_a;
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EndpointChannelManager ecm_b;
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EndpointManager em_a(&ecm_a);
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EndpointManager em_b(&ecm_b);
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BwuManager bwu_a(mediums_a, em_a, ecm_a, {},
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{.allow_upgrade_to = {.bluetooth = true}});
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BwuManager bwu_b(mediums_b, em_b, ecm_b, {},
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{.allow_upgrade_to = {.bluetooth = true}});
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InjectedBluetoothDeviceStore ibds_a;
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InjectedBluetoothDeviceStore ibds_b;
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P2pStarPcpHandler handler_a(mediums_a, em_a, ecm_a, bwu_a, ibds_a);
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P2pStarPcpHandler handler_b(mediums_b, em_b, ecm_b, bwu_b, ibds_b);
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CountDownLatch discover_latch(1);
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CountDownLatch connect_latch(2);
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struct DiscoveredInfo {
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std::string endpoint_id;
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ByteArray endpoint_info;
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std::string service_id;
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} discovered;
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EXPECT_EQ(
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handler_a.StartAdvertising(
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&client_a_, service_id_, advertising_options_,
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{
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.endpoint_info = ByteArray{endpoint_name_a},
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.listener =
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{
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.initiated_cb =
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[&connect_latch](const std::string& endpoint_id,
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const ConnectionResponseInfo& info) {
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LOG(INFO)
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<< "StartAdvertising: initiated_cb called";
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connect_latch.CountDown();
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},
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},
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}),
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Status{Status::kSuccess});
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EXPECT_EQ(handler_b.StartDiscovery(
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&client_b_, service_id_, discovery_options_,
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{
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.endpoint_found_cb =
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[&discover_latch, &discovered](
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const std::string& endpoint_id,
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const ByteArray& endpoint_info,
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const std::string& service_id) {
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LOG(INFO) << "Device discovered: id=" << endpoint_id
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<< ", endpoint_info="
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<< endpoint_info.AsStringView();
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discovered = {
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.endpoint_id = endpoint_id,
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.endpoint_info = endpoint_info,
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.service_id = service_id,
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};
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discover_latch.CountDown();
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},
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}),
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Status{Status::kSuccess});
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EXPECT_TRUE(discover_latch.Await(absl::Milliseconds(1000)).result());
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EXPECT_EQ(endpoint_name_a, std::string{discovered.endpoint_info});
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const std::string kBssid = "34:36:3B:C7:8C:71";
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const std::int32_t kFreq = 5200;
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constexpr char kIp4Bytes[] = {(char)192, (char)168, (char)1, (char)37, 0};
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connection_options_.connection_info.supports_5_ghz = true;
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connection_options_.connection_info.bssid = kBssid;
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connection_options_.connection_info.ap_frequency = kFreq;
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connection_options_.connection_info.ip_address.resize(4);
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connection_options_.connection_info.ip_address = kIp4Bytes;
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client_b_.AddCancellationFlag(discovered.endpoint_id);
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handler_b.RequestConnection(
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&client_b_, discovered.endpoint_id,
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{.endpoint_info = discovered.endpoint_info,
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.listener =
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{
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.initiated_cb =
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[&connect_latch](const std::string& endpoint_id,
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const ConnectionResponseInfo& info) {
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LOG(INFO) << "RequestConnection: initiated_cb called";
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connect_latch.CountDown();
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},
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}},
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connection_options_);
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std::string client_b_local_endpoint = client_b_.GetLocalEndpointId();
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EXPECT_TRUE(connect_latch.Await(absl::Milliseconds(1000)).result());
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EXPECT_TRUE(client_b_.Is5GHzSupported(discovered.endpoint_id));
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EXPECT_EQ(client_b_.GetBssid(discovered.endpoint_id), kBssid);
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EXPECT_EQ(client_b_.GetApFrequency(discovered.endpoint_id), kFreq);
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EXPECT_EQ(client_b_.GetIPAddress(discovered.endpoint_id),
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std::string(kIp4Bytes));
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// When connection is established, EndpointManager will setup KeepAliveManager
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// loop. When it fails, the connection will be dismantled. Since this a unit
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// test, KeepAliveManager won't be really up. The disconnection may happen
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// before the following check, which cause the check fail. So we check the
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// connection status first.
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if (client_b_.IsConnectedToEndpoint(discovered.endpoint_id)) {
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EXPECT_EQ(client_a_.Is5GHzSupported(client_b_local_endpoint),
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mediums_b.GetWifi().GetCapability().supports_5_ghz);
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EXPECT_EQ(client_a_.GetBssid(client_b_local_endpoint),
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mediums_b.GetWifi().GetInformation().bssid);
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EXPECT_EQ(client_a_.GetApFrequency(client_b_local_endpoint),
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mediums_b.GetWifi().GetInformation().ap_frequency);
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EXPECT_EQ(client_a_.GetIPAddress(client_b_local_endpoint),
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mediums_b.GetWifi().GetInformation().ip_address_4_bytes);
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}
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handler_a.StopAdvertising(&client_a_);
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handler_b.StopDiscovery(&client_b_);
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bwu_a.Shutdown();
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bwu_b.Shutdown();
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handler_a.DisconnectFromEndpointManager();
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handler_b.DisconnectFromEndpointManager();
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env_.Stop();
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}
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INSTANTIATE_TEST_SUITE_P(ParametrisedPcpHandlerTest, P2pStarPcpHandlerTest,
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::testing::Combine(::testing::ValuesIn(kTestCases)));
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} // namespace
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} // namespace connections
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} // namespace nearby
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