Implement fast pair handshake

PiperOrigin-RevId: 521872662
This commit is contained in:
Qin Wang
2023-04-04 14:53:28 -07:00
committed by Copybara-Service
parent f8f9c4fd4e
commit d01bbcc2cd
6 changed files with 634 additions and 0 deletions
+25
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@@ -19,12 +19,15 @@ cc_library(
srcs = [
"fast_pair_data_encryptor_impl.cc",
"fast_pair_gatt_service_client_impl.cc",
"fast_pair_handshake_impl.cc",
],
hdrs = [
"fast_pair_data_encryptor.h",
"fast_pair_data_encryptor_impl.h",
"fast_pair_gatt_service_client.h",
"fast_pair_gatt_service_client_impl.h",
"fast_pair_handshake.h",
"fast_pair_handshake_impl.h",
],
visibility = [
"//:__subpackages__",
@@ -54,6 +57,7 @@ cc_library(
name = "test_support",
hdrs = [
"fake_fast_pair_data_encryptor.h",
"fake_fast_pair_gatt_service_client.h",
],
visibility = [
"//fastpair:__subpackages__",
@@ -117,3 +121,24 @@ cc_test(
"@com_google_googletest//:gtest_main",
],
)
cc_test(
name = "fast_pair_handshake_impl_test",
size = "small",
srcs = [
"fast_pair_handshake_impl_test.cc",
],
shard_count = 16,
deps = [
":handshake",
"//fastpair/common",
"//fastpair/server_access:test_support",
"//internal/platform:test_util",
"//internal/platform:types",
"//internal/platform/implementation/g3", # build_cleaner: keep
"@com_github_protobuf_matchers//protobuf-matchers",
"@com_google_absl//absl/status",
"@com_google_absl//absl/strings",
"@com_google_googletest//:gtest_main",
],
)
@@ -0,0 +1,78 @@
// Copyright 2023 Google LLC
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// https://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#ifndef THIRD_PARTY_NEARBY_FASTPAIR_HANDSHAKE_FAKE_FAST_PAIR_GATT_SERVICE_CLIENT_H_
#define THIRD_PARTY_NEARBY_FASTPAIR_HANDSHAKE_FAKE_FAST_PAIR_GATT_SERVICE_CLIENT_H_
#include <optional>
#include <utility>
#include "absl/functional/any_invocable.h"
#include "absl/strings/string_view.h"
#include "fastpair/common/fast_pair_device.h"
#include "fastpair/common/pair_failure.h"
#include "fastpair/handshake/fast_pair_gatt_service_client.h"
namespace nearby {
namespace fastpair {
// This class fakes FastPairGattServiceClient and permits setting which
// PairFailure, if any, is run with the callback.
class FakeFastPairGattServiceClient : public FastPairGattServiceClient {
public:
void InitializeGattConnection(
absl::AnyInvocable<void(std::optional<PairFailure>)>
on_gatt_initialized_callback) override {
on_initialized_callback_ = std::move(on_gatt_initialized_callback);
}
void WriteRequestAsync(
uint8_t message_type, uint8_t flags, absl::string_view provider_address,
absl::string_view seekers_address,
const FastPairDataEncryptor& fast_pair_data_encryptor,
WriteResponseCallback write_response_callback) override {
key_based_write_response_callback_ = std::move(write_response_callback);
}
void WritePasskeyAsync(
uint8_t message_type, uint32_t passkey,
const FastPairDataEncryptor& fast_pair_data_encryptor,
WriteResponseCallback write_response_callback) override {
passkey_write_response_callback_ = std::move(write_response_callback);
}
void RunOnGattClientInitializedCallback(
std::optional<PairFailure> failure = absl::nullopt) {
std::move(on_initialized_callback_)(failure);
}
void RunWriteResponseCallback(
absl::string_view value,
std::optional<PairFailure> failure = absl::nullopt) {
std::move(key_based_write_response_callback_)(value, failure);
}
void RunWritePasskeyCallback(
absl::string_view value,
std::optional<PairFailure> failure = absl::nullopt) {
std::move(passkey_write_response_callback_)(value, failure);
}
private:
absl::AnyInvocable<void(std::optional<PairFailure>)> on_initialized_callback_;
WriteResponseCallback key_based_write_response_callback_;
WriteResponseCallback passkey_write_response_callback_;
};
} // namespace fastpair
} // namespace nearby
#endif // THIRD_PARTY_NEARBY_FASTPAIR_HANDSHAKE_FAKE_FAST_PAIR_GATT_SERVICE_CLIENT_H_
+85
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@@ -0,0 +1,85 @@
// Copyright 2023 Google LLC
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// https://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#ifndef THIRD_PARTY_NEARBY_FASTPAIR_HANDSHAKE_FAST_PAIR_HANDSHAKE_H_
#define THIRD_PARTY_NEARBY_FASTPAIR_HANDSHAKE_FAST_PAIR_HANDSHAKE_H_
#include <memory>
#include <optional>
#include <utility>
#include "absl/functional/any_invocable.h"
#include "fastpair/common/fast_pair_device.h"
#include "fastpair/common/pair_failure.h"
#include "fastpair/handshake/fast_pair_data_encryptor.h"
#include "fastpair/handshake/fast_pair_gatt_service_client.h"
namespace nearby {
namespace fastpair {
// This class performs the Fast Pair handshake procedure upon creation and
// calls |on_complete| once finished. It also exposes the
// |FastPairDataEncryptor| and |FastPairGattServiceClient| instances that were
// used during the handshake.
//
// The procedure steps are as follows:
// 1. Create a GATT connection to the device.
// 2. Create a data encryptor instance with the generated keys.
// 3. Write the Key-Based Pairing Request to the characteristic
// (https://developers.google.com/nearby/fast-pair/spec#table1.1)
// 4. Decrypt the response.
// 5. Validate response.
// 6. Set classic address field on |FastPairDevice| instance.
// 7. Complete.
class FastPairHandshake {
public:
using OnCompleteCallback = absl::AnyInvocable<void(
FastPairDevice& device, std::optional<PairFailure> failure)>;
FastPairHandshake(
FastPairDevice& device, OnCompleteCallback on_complete_cb,
std::unique_ptr<FastPairDataEncryptor> data_encryptor,
std::unique_ptr<FastPairGattServiceClient> gatt_service_client)
: device_(&device),
on_complete_callback_(std::move(on_complete_cb)),
fast_pair_data_encryptor_(std::move(data_encryptor)),
fast_pair_gatt_service_client_(std::move(gatt_service_client)) {}
FastPairHandshake(const FastPairHandshake&) = delete;
FastPairHandshake& operator=(const FastPairHandshake&) = delete;
virtual ~FastPairHandshake() = default;
bool completed_successfully() { return completed_successfully_; }
FastPairDataEncryptor* fast_pair_data_encryptor() {
return fast_pair_data_encryptor_.get();
}
FastPairGattServiceClient* fast_pair_gatt_service_client() {
return fast_pair_gatt_service_client_.get();
}
protected:
bool completed_successfully_ = false;
FastPairDevice* device_;
OnCompleteCallback on_complete_callback_;
std::unique_ptr<FastPairDataEncryptor> fast_pair_data_encryptor_;
std::unique_ptr<FastPairGattServiceClient> fast_pair_gatt_service_client_;
};
} // namespace fastpair
} // namespace nearby
#endif // THIRD_PARTY_NEARBY_FASTPAIR_HANDSHAKE_FAST_PAIR_HANDSHAKE_H_
@@ -0,0 +1,131 @@
// Copyright 2023 Google LLC
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// https://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#include "fastpair/handshake/fast_pair_handshake_impl.h"
#include <memory>
#include <optional>
#include <utility>
#include <vector>
#include "absl/functional/bind_front.h"
#include "fastpair/common/constant.h"
#include "fastpair/common/pair_failure.h"
#include "fastpair/handshake/fast_pair_data_encryptor_impl.h"
#include "fastpair/handshake/fast_pair_gatt_service_client_impl.h"
#include "internal/base/bluetooth_address.h"
#include "internal/platform/logging.h"
namespace nearby {
namespace fastpair {
FastPairHandshakeImpl::FastPairHandshakeImpl(FastPairDevice& device,
OnCompleteCallback on_complete)
: FastPairHandshake(device, std::move(on_complete), nullptr, nullptr) {
fast_pair_gatt_service_client_ =
FastPairGattServiceClientImpl::Factory::Create(device);
fast_pair_gatt_service_client_->InitializeGattConnection(
[this](std::optional<PairFailure> failure) {
OnGattClientInitializedCallback(failure);
});
}
void FastPairHandshakeImpl::OnGattClientInitializedCallback(
std::optional<PairFailure> failure) {
if (failure.has_value()) {
NEARBY_LOGS(WARNING) << __func__
<< ": Failed to init gatt client with failure = "
<< failure.value();
std::move(on_complete_callback_)(*device_, failure.value());
return;
}
NEARBY_LOGS(INFO)
<< __func__
<< ": Fast Pair GATT service client initialization successful.";
FastPairDataEncryptorImpl::Factory::CreateAsync(
*device_, absl::bind_front(
&FastPairHandshakeImpl::OnDataEncryptorCreateAsync, this));
}
void FastPairHandshakeImpl::OnDataEncryptorCreateAsync(
std::unique_ptr<FastPairDataEncryptor> fast_pair_data_encryptor) {
if (!fast_pair_data_encryptor) {
NEARBY_LOGS(WARNING) << __func__
<< ": Failed to create Fast Pair Data Encryptor.";
std::move(on_complete_callback_)(*device_,
PairFailure::kDataEncryptorRetrieval);
return;
}
fast_pair_data_encryptor_ = std::move(fast_pair_data_encryptor);
NEARBY_LOGS(INFO) << __func__ << ": Beginning key-based pairing protocol";
fast_pair_gatt_service_client_->WriteRequestAsync(
/*message_type=*/kKeyBasedPairingType,
/*flags=*/kInitialOrSubsequentFlags,
/*provider_address=*/device_->GetBleAddress(),
/*seekers_address=*/"", *fast_pair_data_encryptor_,
[this](absl::string_view response, std::optional<PairFailure> failure) {
OnWriteResponse(response, failure);
});
}
void FastPairHandshakeImpl::OnWriteResponse(
absl::string_view response, std::optional<PairFailure> failure) {
if (failure.has_value()) {
NEARBY_LOGS(WARNING)
<< __func__
<< ": Failed during key-based pairing protocol with failure = "
<< failure.value();
std::move(on_complete_callback_)(*device_, failure.value());
return;
}
NEARBY_LOGS(INFO) << __func__ << ": Successfully wrote response.";
if (response.size() != kAesBlockByteSize) {
NEARBY_LOGS(WARNING)
<< __func__ << ": Handshake failed because of incorrect response size.";
std::move(on_complete_callback_)(
*device_, PairFailure::kKeybasedPairingResponseDecryptFailure);
return;
}
std::vector<uint8_t> response_bytes(response.begin(), response.end());
fast_pair_data_encryptor_->ParseDecryptResponse(
response_bytes, [this](std::optional<DecryptedResponse> response) {
OnParseDecryptedResponse(response);
});
}
void FastPairHandshakeImpl::OnParseDecryptedResponse(
std::optional<DecryptedResponse>& response) {
if (!response.has_value()) {
NEARBY_LOGS(WARNING) << __func__
<< ": Missing decrypted response from parse.";
std::move(on_complete_callback_)(
*device_, PairFailure::kKeybasedPairingResponseDecryptFailure);
return;
}
NEARBY_LOGS(INFO) << __func__
<< ": Successfully decrypted and parsed response.";
device_->set_public_address(
device::CanonicalizeBluetoothAddress(response->address_bytes));
completed_successfully_ = true;
std::move(on_complete_callback_)(*device_, absl::nullopt);
}
} // namespace fastpair
} // namespace nearby
@@ -0,0 +1,47 @@
// Copyright 2023 Google LLC
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// https://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#ifndef THIRD_PARTY_NEARBY_FASTPAIR_HANDSHAKE_FAST_PAIR_HANDSHAKE_IMPL_H_
#define THIRD_PARTY_NEARBY_FASTPAIR_HANDSHAKE_FAST_PAIR_HANDSHAKE_IMPL_H_
#include <memory>
#include <optional>
#include "fastpair/common/fast_pair_device.h"
#include "fastpair/common/pair_failure.h"
#include "fastpair/crypto/decrypted_response.h"
#include "fastpair/handshake/fast_pair_handshake.h"
namespace nearby {
namespace fastpair {
class FastPairHandshakeImpl : public FastPairHandshake {
public:
FastPairHandshakeImpl(FastPairDevice& device, OnCompleteCallback on_complete);
FastPairHandshakeImpl(const FastPairHandshakeImpl&) = delete;
FastPairHandshakeImpl& operator=(const FastPairHandshakeImpl&) = delete;
private:
void OnGattClientInitializedCallback(std::optional<PairFailure> failure);
void OnDataEncryptorCreateAsync(
std::unique_ptr<FastPairDataEncryptor> fast_pair_data_encryptor);
void OnWriteResponse(absl::string_view response,
std::optional<PairFailure> failure);
void OnParseDecryptedResponse(std::optional<DecryptedResponse>& response);
};
} // namespace fastpair
} // namespace nearby
#endif // THIRD_PARTY_NEARBY_FASTPAIR_HANDSHAKE_FAST_PAIR_HANDSHAKE_IMPL_H_
@@ -0,0 +1,268 @@
// Copyright 2023 Google LLC
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// https://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#include "fastpair/handshake/fast_pair_handshake_impl.h"
#include <algorithm>
#include <array>
#include <memory>
#include <optional>
#include <string>
#include "gmock/gmock.h"
#include "protobuf-matchers/protocol-buffer-matchers.h"
#include "gtest/gtest.h"
#include "absl/status/status.h"
#include "absl/strings/escaping.h"
#include "fastpair/common/constant.h"
#include "fastpair/common/fast_pair_device.h"
#include "fastpair/common/pair_failure.h"
#include "fastpair/common/protocol.h"
#include "fastpair/handshake/fast_pair_gatt_service_client_impl.h"
#include "fastpair/server_access/fake_fast_pair_repository.h"
#include "internal/platform/count_down_latch.h"
#include "internal/platform/medium_environment.h"
namespace nearby {
namespace fastpair {
namespace {
using Property = nearby::api::ble_v2::GattCharacteristic::Property;
using Permission = nearby::api::ble_v2::GattCharacteristic::Permission;
using ::nearby::api::ble_v2::GattCharacteristic;
constexpr absl::string_view kMetadataId("718c17");
constexpr absl::string_view kProviderAddress("11:22:33:44:55:66");
constexpr absl::string_view kPublicAddress("5E:3F:45:61:C3:32");
constexpr absl::string_view kKeyBasedResponse("keybasedresponse");
constexpr absl::string_view kWrongResponse("wrongresponse");
constexpr absl::string_view kPublicAntiSpoof =
"Wuyr48lD3txnUhGiMF1IfzlTwRxxe+wMB1HLzP+"
"0wVcljfT3XPoiy1fntlneziyLD5knDVAJSE+RM/zlPRP/Jg==";
constexpr char kInvalidPublicAntiSpoof[] = "InvalidPublicAntiSpoof";
constexpr std::array<uint8_t, kAesBlockByteSize> kRawResponseBytes = {
0x01, 0x5E, 0x3F, 0x45, 0x61, 0xC3, 0x32, 0x1D,
0xA0, 0xBA, 0xF0, 0xBB, 0x95, 0x1F, 0xF7, 0xB6};
constexpr Uuid kFastPairServiceUuid(0x0000FE2C00001000, 0x800000805F9B34FB);
constexpr Uuid kKeyBasedCharacteristicUuidV2(0xFE2C123483664814,
0x8EB001DE32100BEA);
constexpr Uuid kPasskeyCharacteristicUuidV2(0xFE2C123583664814,
0x8EB001DE32100BEA);
// Length of advertisement byte should be 16
constexpr absl::string_view kKeyBasedCharacteristicAdvertisementByte =
"keyBasedCharacte";
constexpr absl::string_view kPasskeyharacteristicAdvertisementByte =
"passkeyCharacter";
constexpr absl::Duration kGattOperationTimeout = absl::Seconds(15);
} // namespace
class FastPairHandshakeImplTest : public testing::Test {
public:
void SetUp() override {
repository_ = std::make_unique<FakeFastPairRepository>();
env_.Start({.use_simulated_clock = true});
BluetoothAdapter adapter;
BleV2Medium ble(adapter);
gatt_server_ = ble.StartGattServer(/*ServerGattConnectionCallback=*/{});
}
void TearDown() override {
repository_.reset();
key_based_characteristic_ = std::nullopt;
passkey_characteristic_ = std::nullopt;
gatt_server_->Stop();
gatt_server_.reset();
handshake_.reset();
env_.Stop();
}
void InsertCorrectGattCharacteristics() {
key_based_characteristic_ = gatt_server_->CreateCharacteristic(
kFastPairServiceUuid, kKeyBasedCharacteristicUuidV2, permissions_,
properties_);
gatt_server_->UpdateCharacteristic(
key_based_characteristic_.value(),
ByteArray(std::string(kKeyBasedCharacteristicAdvertisementByte)));
passkey_characteristic_ = gatt_server_->CreateCharacteristic(
kFastPairServiceUuid, kPasskeyCharacteristicUuidV2, permissions_,
properties_);
gatt_server_->UpdateCharacteristic(
passkey_characteristic_.value(),
ByteArray(std::string(kPasskeyharacteristicAdvertisementByte)));
}
void SetUpFastPairRepository() {
proto::Device metadata;
std::string decoded_key;
absl::Base64Unescape(kPublicAntiSpoof, &decoded_key);
metadata.mutable_anti_spoofing_key_pair()->set_public_key(decoded_key);
repository_->SetFakeMetadata(kMetadataId, metadata);
}
void FailedFastPairRepository() {
proto::Device metadata;
std::string decoded_key;
absl::Base64Unescape(kInvalidPublicAntiSpoof, &decoded_key);
metadata.mutable_anti_spoofing_key_pair()->set_public_key(decoded_key);
repository_->SetFakeMetadata(kMetadataId, metadata);
}
absl::Status TriggerKeyBasedGattChanged() {
FastPairDataEncryptor* fast_pair_data_encryptor_ =
handshake_->fast_pair_data_encryptor();
std::array<uint8_t, kAesBlockByteSize> encryptedResponse =
fast_pair_data_encryptor_->EncryptBytes(kRawResponseBytes);
std::array<char, kAesBlockByteSize> response;
std::copy(encryptedResponse.begin(), encryptedResponse.end(),
response.begin());
return gatt_server_->NotifyCharacteristicChanged(
key_based_characteristic_.value(), false, ByteArray(response));
}
absl::Status TriggerKeyBasedGattChangedWithWrongResponse() {
return gatt_server_->NotifyCharacteristicChanged(
key_based_characteristic_.value(), false,
ByteArray(std::string(kKeyBasedResponse)));
}
absl::Status TriggerKeyBasedGattChangedWithWrongSizeResponse() {
return gatt_server_->NotifyCharacteristicChanged(
key_based_characteristic_.value(), false,
ByteArray(std::string(kWrongResponse)));
}
protected:
std::unique_ptr<FastPairHandshake> handshake_;
private:
MediumEnvironment& env_{MediumEnvironment::Instance()};
std::unique_ptr<GattServer> gatt_server_;
std::optional<GattCharacteristic> key_based_characteristic_;
std::optional<GattCharacteristic> passkey_characteristic_;
std::unique_ptr<FakeFastPairRepository> repository_;
Property properties_ = Property::kWrite | Property::kNotify;
Permission permissions_ = Permission::kWrite;
};
TEST_F(FastPairHandshakeImplTest, Success) {
SetUpFastPairRepository();
InsertCorrectGattCharacteristics();
FastPairDevice device(kMetadataId, kProviderAddress,
Protocol::kFastPairInitialPairing);
CountDownLatch latch(1);
handshake_ = std::make_unique<FastPairHandshakeImpl>(
device,
[&](FastPairDevice& callback_device, std::optional<PairFailure> failure) {
EXPECT_EQ(&device, &callback_device);
EXPECT_EQ(device.public_address(), kPublicAddress);
EXPECT_FALSE(failure.has_value());
latch.CountDown();
});
EXPECT_OK(TriggerKeyBasedGattChanged());
latch.Await();
EXPECT_TRUE(handshake_->completed_successfully());
}
TEST_F(FastPairHandshakeImplTest, GattError) {
SetUpFastPairRepository();
FastPairDevice device(kMetadataId, kProviderAddress,
Protocol::kFastPairInitialPairing);
CountDownLatch latch(1);
handshake_ = std::make_unique<FastPairHandshakeImpl>(
device,
[&](FastPairDevice& callback_device, std::optional<PairFailure> failure) {
EXPECT_EQ(&device, &callback_device);
EXPECT_EQ(failure.value(), PairFailure::kCreateGattConnection);
latch.CountDown();
});
latch.Await();
EXPECT_FALSE(handshake_->completed_successfully());
}
TEST_F(FastPairHandshakeImplTest, DataEncryptorCreateError) {
FailedFastPairRepository();
InsertCorrectGattCharacteristics();
FastPairDevice device(kMetadataId, kProviderAddress,
Protocol::kFastPairInitialPairing);
CountDownLatch latch(1);
handshake_ = std::make_unique<FastPairHandshakeImpl>(
device,
[&](FastPairDevice& callback_device, std::optional<PairFailure> failure) {
EXPECT_EQ(&device, &callback_device);
EXPECT_EQ(failure.value(), PairFailure::kDataEncryptorRetrieval);
latch.CountDown();
});
latch.Await();
EXPECT_FALSE(handshake_->completed_successfully());
}
TEST_F(FastPairHandshakeImplTest, WriteResponseError) {
SetUpFastPairRepository();
InsertCorrectGattCharacteristics();
FastPairDevice device(kMetadataId, kProviderAddress,
Protocol::kFastPairInitialPairing);
CountDownLatch latch(1);
handshake_ = std::make_unique<FastPairHandshakeImpl>(
device,
[&](FastPairDevice& callback_device, std::optional<PairFailure> failure) {
EXPECT_EQ(&device, &callback_device);
EXPECT_EQ(failure.value(),
PairFailure::kKeyBasedPairingResponseTimeout);
latch.CountDown();
});
SystemClock::Sleep(kGattOperationTimeout);
latch.Await();
EXPECT_FALSE(handshake_->completed_successfully());
}
TEST_F(FastPairHandshakeImplTest, WriteResponseWrongSize) {
SetUpFastPairRepository();
InsertCorrectGattCharacteristics();
FastPairDevice device(kMetadataId, kProviderAddress,
Protocol::kFastPairInitialPairing);
CountDownLatch latch(1);
handshake_ = std::make_unique<FastPairHandshakeImpl>(
device,
[&](FastPairDevice& callback_device, std::optional<PairFailure> failure) {
EXPECT_EQ(&device, &callback_device);
EXPECT_EQ(failure.value(),
PairFailure::kKeybasedPairingResponseDecryptFailure);
latch.CountDown();
});
EXPECT_OK(TriggerKeyBasedGattChangedWithWrongSizeResponse());
latch.Await();
EXPECT_FALSE(handshake_->completed_successfully());
}
TEST_F(FastPairHandshakeImplTest, ParseResponseError) {
SetUpFastPairRepository();
InsertCorrectGattCharacteristics();
FastPairDevice device(kMetadataId, kProviderAddress,
Protocol::kFastPairInitialPairing);
CountDownLatch latch(1);
handshake_ = std::make_unique<FastPairHandshakeImpl>(
device,
[&](FastPairDevice& callback_device, std::optional<PairFailure> failure) {
EXPECT_EQ(&device, &callback_device);
EXPECT_EQ(failure.value(),
PairFailure::kKeybasedPairingResponseDecryptFailure);
latch.CountDown();
});
EXPECT_OK(TriggerKeyBasedGattChangedWithWrongResponse());
latch.Await();
EXPECT_FALSE(handshake_->completed_successfully());
}
} // namespace fastpair
} // namespace nearby