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nearby/sharing/certificates/nearby_share_certificate_manager_impl.cc
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// 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 "sharing/certificates/nearby_share_certificate_manager_impl.h"
#include <stddef.h>
#include <stdint.h>
#include <algorithm>
#include <array>
#include <functional>
#include <memory>
#include <optional>
#include <ostream>
#include <sstream>
#include <string>
#include <utility>
#include <vector>
#include "google/protobuf/timestamp.pb.h"
#include "absl/algorithm/algorithm.h"
#include "absl/base/nullability.h"
#include "absl/container/flat_hash_map.h"
#include "absl/memory/memory.h"
#include "absl/status/statusor.h"
#include "absl/strings/escaping.h"
#include "absl/strings/str_cat.h"
#include "absl/strings/string_view.h"
#include "absl/synchronization/notification.h"
#include "absl/time/time.h"
#include "absl/types/span.h"
#include "internal/base/file_path.h"
#include "internal/platform/implementation/account_manager.h"
#include "internal/platform/mac_address.h"
#include "sharing/certificates/common.h"
#include "sharing/certificates/constants.h"
#include "sharing/certificates/nearby_share_certificate_manager.h"
#include "sharing/certificates/nearby_share_certificate_storage.h"
#include "sharing/certificates/nearby_share_certificate_storage_impl.h"
#include "sharing/certificates/nearby_share_decrypted_public_certificate.h"
#include "sharing/certificates/nearby_share_encrypted_metadata_key.h"
#include "sharing/certificates/nearby_share_private_certificate.h"
#include "sharing/internal/api/bluetooth_adapter.h"
#include "sharing/internal/api/preference_manager.h"
#include "sharing/internal/api/public_certificate_database.h"
#include "sharing/internal/api/sharing_platform.h"
#include "sharing/internal/base/encode.h"
#include "sharing/internal/public/context.h"
#include "sharing/internal/public/logging.h"
#include "sharing/internal/public/pref_names.h"
#include "sharing/local_device_data/nearby_share_local_device_data_manager.h"
#if defined(__linux__)
#include "sharing/linux/stubs/highway_fingerprint.h"
#include "sharing/linux/stubs/identity_rpc_types.h"
#include "sharing/linux/stubs/sharing_rpc_client.h"
#else
#include "google/nearby/identity/v1/resources.pb.h"
#include "google/nearby/identity/v1/rpcs.pb.h"
#include "location/nearby/sharing/lib/rpc/sharing_rpc_client.h"
#include "util/hash/highway_fingerprint.h"
#endif
#include "sharing/proto/certificate_rpc.pb.h"
#include "sharing/proto/encrypted_metadata.pb.h"
#include "sharing/proto/enums.pb.h"
#include "sharing/proto/rpc_resources.pb.h"
#include "sharing/proto/timestamp.pb.h"
#include "sharing/scheduling/nearby_share_scheduler.h"
#include "sharing/scheduling/nearby_share_scheduler_factory.h"
namespace nearby {
namespace sharing {
namespace {
using ::google::nearby::identity::v1::AccountInfo;
using ::google::nearby::identity::v1::GetAccountInfoRequest;
using ::google::nearby::identity::v1::GetAccountInfoResponse;
using ::google::nearby::identity::v1::PerVisibilitySharedCredentials;
using ::google::nearby::identity::v1::PublishDeviceRequest;
using ::google::nearby::identity::v1::PublishDeviceResponse;
using ::google::nearby::identity::v1::QuerySharedCredentialsRequest;
using ::google::nearby::identity::v1::QuerySharedCredentialsResponse;
using ::google::nearby::identity::v1::SharedCredential;
using ::nearby::sharing::api::PreferenceManager;
using ::nearby::sharing::api::PublicCertificateDatabase;
using ::nearby::sharing::api::SharingPlatform;
using ::nearby::sharing::proto::DeviceVisibility;
using ::nearby::sharing::proto::EncryptedMetadata;
using ::nearby::sharing::proto::PublicCertificate;
constexpr absl::Duration kGetAccountInfoPeriod = absl::Hours(1);
constexpr std::array<DeviceVisibility, 2> kVisibilities = {
DeviceVisibility::DEVICE_VISIBILITY_ALL_CONTACTS,
DeviceVisibility::DEVICE_VISIBILITY_SELF_SHARE,
};
const absl::string_view kPublicCertificateDatabaseName =
"NearbySharePublicCertificateDatabase";
// These values are persisted to logs. Entries should not be renumbered and
// numeric values should never be reused.
enum class GetDecryptedPublicCertificateResult {
kSuccess = 0,
kNoMatch = 1,
kStorageFailure = 2,
kMaxValue = kStorageFailure
};
size_t NumExpectedPrivateCertificates() {
return kVisibilities.size() * kNearbyShareNumPrivateCertificates;
}
std::optional<EncryptedMetadata> BuildMetadata(
std::string device_name, std::optional<std::string> full_name,
std::optional<std::string> icon_url,
std::optional<std::string> account_name, int32_t vendor_id,
Context* context) {
EncryptedMetadata metadata;
if (device_name.empty()) {
LOG(WARNING) << "Failed to create private certificate metadata; "
"missing device name.";
return std::nullopt;
}
metadata.set_device_name(device_name);
if (full_name.has_value()) {
metadata.set_full_name(*full_name);
}
if (icon_url.has_value()) {
metadata.set_icon_url(*icon_url);
}
if (account_name.has_value()) {
metadata.set_account_name(*account_name);
}
metadata.set_vendor_id(vendor_id);
MacAddress mac_address = context->GetBluetoothAdapter().GetAddress();
if (mac_address.IsSet()) {
std::string mac_address_string(6, ' ');
if (mac_address.ToBytes(absl::MakeSpan(
reinterpret_cast<uint8_t*>(mac_address_string.data()), 6))) {
metadata.set_bluetooth_mac_address(mac_address_string);
}
}
return metadata;
}
void TryDecryptPublicCertificates(
const NearbyShareEncryptedMetadataKey& encrypted_metadata_key,
NearbyShareCertificateManager::CertDecryptedCallback callback, bool success,
std::unique_ptr<std::vector<PublicCertificate>> public_certificates) {
if (!success || !public_certificates) {
LOG(ERROR) << "Failed to read public certificates from storage.";
std::move(callback)(std::nullopt);
return;
}
for (const auto& cert : *public_certificates) {
std::optional<NearbyShareDecryptedPublicCertificate> decrypted =
NearbyShareDecryptedPublicCertificate::DecryptPublicCertificate(
cert, encrypted_metadata_key);
if (decrypted) {
VLOG(1) << "Successfully decrypted public certificate with ID "
<< nearby::utils::HexEncode(decrypted->id());
std::move(callback)(std::move(decrypted));
return;
}
}
VLOG(1) << "Metadata key could not decrypt any public certificates.";
std::move(callback)(std::nullopt);
}
void DumpCertificateId(std::stringstream& sstream, absl::string_view cert_id,
bool is_public_cert) {
if (is_public_cert) {
sstream << " Public certificates:[";
} else {
sstream << " Private certificates:[";
}
for (int i = 0; i < cert_id.size() - 1; ++i) {
sstream << static_cast<int>(static_cast<int8_t>(cert_id[i])) << ", ";
}
sstream << static_cast<int>(static_cast<int8_t>(cert_id[cert_id.size() - 1]))
<< "]" << std::endl;
}
} // namespace
// static
NearbyShareCertificateManagerImpl::Factory*
NearbyShareCertificateManagerImpl::Factory::test_factory_ = nullptr;
// static
std::unique_ptr<NearbyShareCertificateManager>
NearbyShareCertificateManagerImpl::Factory::Create(
Context* context, SharingPlatform& sharing_platform,
NearbyShareLocalDeviceDataManager* local_device_data_manager,
const FilePath& profile_path,
nearby::sharing::api::IdentityRpcClient* absl_nonnull identity_client) {
DCHECK(context);
if (test_factory_) {
return test_factory_->CreateInstance(context, local_device_data_manager,
profile_path, identity_client);
}
FilePath database_path = profile_path;
database_path.append(FilePath(kPublicCertificateDatabaseName));
return absl::WrapUnique(new NearbyShareCertificateManagerImpl(
context, sharing_platform.GetPreferenceManager(),
sharing_platform.GetAccountManager(),
sharing_platform.CreatePublicCertificateDatabase(database_path),
local_device_data_manager, identity_client));
}
// static
void NearbyShareCertificateManagerImpl::Factory::SetFactoryForTesting(
Factory* test_factory) {
test_factory_ = test_factory;
}
NearbyShareCertificateManagerImpl::Factory::~Factory() = default;
NearbyShareCertificateManagerImpl::NearbyShareCertificateManagerImpl(
Context* context, PreferenceManager& preference_manager,
AccountManager& account_manager,
std::unique_ptr<PublicCertificateDatabase> public_certificate_database,
NearbyShareLocalDeviceDataManager* local_device_data_manager,
nearby::sharing::api::IdentityRpcClient* absl_nonnull identity_client)
: context_(context),
account_manager_(account_manager),
local_device_data_manager_(local_device_data_manager),
preference_manager_(preference_manager),
nearby_identity_client_(identity_client),
certificate_storage_(NearbyShareCertificateStorageImpl::Factory::Create(
preference_manager, std::move(public_certificate_database))),
private_certificate_expiration_scheduler_(
NearbyShareSchedulerFactory::CreateExpirationScheduler(
context, preference_manager,
[&] { return NextPrivateCertificateExpirationTime(); },
/*retry_failures=*/true,
/*require_connectivity=*/false,
PrefNames::kSchedulerPrivateCertificateExpiration,
[this]() {
VLOG(1)
<< "Private certificate expiration scheduler is called.";
executor_->PostTask([this]() {
private_certificate_expiration_scheduler_->HandleResult(
RefreshPrivateCertificatesInExecutor(
/*force_upload=*/false));
});
})),
public_certificate_expiration_scheduler_(
NearbyShareSchedulerFactory::CreateExpirationScheduler(
context, preference_manager,
[&] { return NextPublicCertificateExpirationTime(); },
/*retry_failures=*/true,
/*require_connectivity=*/false,
PrefNames::kSchedulerPublicCertificateExpiration,
[this]() {
VLOG(1)
<< ": Public certificate expiration scheduler is called.";
executor_->PostTask([this]() {
public_certificate_expiration_scheduler_->HandleResult(
RemoveExpiredPublicCertificatesInExecutor());
});
})),
force_contacts_update_scheduler_(
NearbyShareSchedulerFactory::CreatePeriodicScheduler(
context, preference_manager,
kNearbyShareLocalCertificateUploadPeriod,
/*retry_failures=*/true,
/*require_connectivity=*/true,
PrefNames::kSchedulerUploadLocalDeviceCertificates,
[this]() {
VLOG(1)
<< "Upload local device certificates scheduler is called.";
executor_->PostTask([this]() {
force_contacts_update_scheduler_->HandleResult(
UploadDeviceCertificatesInExecutor(
certificate_storage_->GetPrivateCertificates(),
/*force_update_contacts=*/true));
});
})),
download_public_certificates_scheduler_(
NearbyShareSchedulerFactory::CreatePeriodicScheduler(
context, preference_manager,
kNearbySharePublicCertificateDownloadPeriod,
/*retry_failures=*/true,
/*require_connectivity=*/true,
PrefNames::kSchedulerDownloadPublicCertificates,
[this]() {
LOG(INFO)
<< "Download public certificates scheduler is called.";
executor_->PostTask([this]() {
download_public_certificates_scheduler_->HandleResult(
DownloadPublicCertificatesInExecutor());
});
})),
account_info_update_scheduler_(
NearbyShareSchedulerFactory::CreatePeriodicScheduler(
context_, preference_manager_, kGetAccountInfoPeriod,
/*retry_failures=*/true,
/*require_connectivity=*/true,
PrefNames::kSchedulerGetAccountInfo,
[this]() {
LOG(INFO) << "Get account info scheduler is called.";
executor_->PostTask([this]() {
account_info_update_scheduler_->HandleResult(
UpdateAccountInfoInExecutor());
});
})),
executor_(context->CreateSequencedTaskRunner()) {
local_device_data_manager_->AddObserver(this);
}
NearbyShareCertificateManagerImpl::~NearbyShareCertificateManagerImpl() {
local_device_data_manager_->RemoveObserver(this);
}
std::string NearbyShareCertificateManagerImpl::GetId() {
return preference_manager_.GetString(PrefNames::kDeviceId, "");
}
void NearbyShareCertificateManagerImpl::CertificateDownloadContext::
QuerySharedCredentialsFetchNextPage() {
LOG(INFO) << __func__
<< ": Downloading public certificates page=" << page_number_;
page_number_++;
QuerySharedCredentialsRequest request;
request.set_name(absl::StrCat("devices/", device_id_));
if (next_page_token_.has_value()) {
request.set_page_token(*next_page_token_);
}
nearby_identity_client_->QuerySharedCredentials(
std::move(request),
[this](const absl::StatusOr<QuerySharedCredentialsResponse>&
response) mutable {
if (!response.ok()) {
LOG(WARNING) << "Failed to download public certificates: "
<< response.status();
std::move(download_callback_)(response.status());
return;
}
for (const auto& credential : response->shared_credentials()) {
if (credential.data_type() !=
SharedCredential::DATA_TYPE_PUBLIC_CERTIFICATE) {
continue;
}
PublicCertificate certificate;
if (!certificate.ParseFromString(credential.data())) {
LOG(ERROR) << "Failed parsing to PublicCertificate, credential.id: "
<< credential.id() << " data: "
<< absl::BytesToHexString(credential.data());
continue;
}
VLOG(1) << "Successfully parsed credential: " << credential.id();
certificates_.push_back(certificate);
}
if (response->next_page_token().empty()) {
LOG(INFO) << "Completed download of " << certificates_.size()
<< " certificates";
std::move(download_callback_)(std::move(certificates_));
return;
}
next_page_token_ = response->next_page_token();
QuerySharedCredentialsFetchNextPage();
});
}
bool NearbyShareCertificateManagerImpl::UpdatePublicCertificates(
const std::vector<PublicCertificate>& certificates) {
// Save certificates to store.
absl::Notification notification;
bool is_added_to_store = false;
certificate_storage_->AddPublicCertificates(
absl::MakeSpan(certificates.data(), certificates.size()),
[&](bool success) {
is_added_to_store = success;
notification.Notify();
});
notification.WaitForNotification();
if (!is_added_to_store) {
LOG(ERROR) << "Failed to add certificates to store.";
return false;
}
// Succeeded to download public certificates.
NotifyPublicCertificatesDownloaded();
// Recompute the expiration timer to account for new certificates.
public_certificate_expiration_scheduler_->Reschedule();
return true;
}
void NearbyShareCertificateManagerImpl::DownloadPublicCertificates() {
download_public_certificates_scheduler_->MakeImmediateRequest();
}
bool NearbyShareCertificateManagerImpl::DownloadPublicCertificatesInExecutor() {
LOG(INFO) << "Start to download public certificates in executor.";
if (!is_running()) {
LOG(WARNING) << "Ignore certificates download, manager is not running.";
return false;
}
std::string device_id = GetId();
if (device_id.empty() || !account_manager_.GetCurrentAccount().has_value()) {
LOG(WARNING) << "Ignore certificates download, no logged in account.";
// Return true to prevent retry.
return true;
}
bool download_succeeded = false;
absl::Notification notification;
auto context = std::make_unique<CertificateDownloadContext>(
nearby_identity_client_, std::move(device_id),
[this, &download_succeeded, &notification](
absl::StatusOr<std::vector<PublicCertificate>> certificates_status) {
if (!certificates_status.ok()) {
download_succeeded = false;
LOG(WARNING) << "Failed to download public certificates: "
<< certificates_status.status();
} else {
auto certificates = certificates_status.value();
if (VLOG_IS_ON(1)) {
for (const auto& certificate : certificates) {
VLOG(1) << "Downloaded certificate id: "
<< absl::BytesToHexString(certificate.secret_id());
}
}
download_succeeded = UpdatePublicCertificates(certificates);
}
notification.Notify();
});
context->QuerySharedCredentialsFetchNextPage();
// Wait for all pages of certificates to be downloaded.
// MUST not terminate early, otherwise notification will go out of scope, and
// the callback will call Notify on a destroyed object.
notification.WaitForNotification();
LOG(INFO) << "Public certificates downloadws, success: "
<< download_succeeded;
return download_succeeded;
}
void NearbyShareCertificateManagerImpl::RegeneratePrivateCertificates() {
executor_->PostTask([this]() {
LOG(INFO) << "Regenerating private certificates in executor.";
certificate_storage_->ClearPrivateCertificates();
private_certificate_expiration_scheduler_->HandleResult(
RefreshPrivateCertificatesInExecutor(/*force_upload=*/false));
});
}
void NearbyShareCertificateManagerImpl::AddCertifactesToPublishDeviceRequest(
const std::vector<NearbySharePrivateCertificate>& private_certs,
PublishDeviceRequest& request) {
PerVisibilitySharedCredentials* new_self_credential =
request.mutable_device()->add_per_visibility_shared_credentials();
new_self_credential->set_visibility(
PerVisibilitySharedCredentials::VISIBILITY_SELF);
PerVisibilitySharedCredentials* new_contacts_credential =
request.mutable_device()->add_per_visibility_shared_credentials();
new_contacts_credential->set_visibility(
PerVisibilitySharedCredentials::VISIBILITY_CONTACTS);
int self_share_credential_count = 0;
int contacts_share_credential_count = 0;
for (const NearbySharePrivateCertificate& private_cert : private_certs) {
std::optional<PublicCertificate> public_cert =
private_cert.ToPublicCertificate();
if (!public_cert.has_value()) {
LOG(WARNING) << "Failed to convert private certificate to public "
"certificate.";
continue;
}
VLOG(1) << "Uploading public certificate id: "
<< absl::BytesToHexString(public_cert->secret_id()) << "for "
<< (public_cert->for_self_share() ? "self" : "contact");
SharedCredential* shared_credential;
if (public_cert->for_self_share()) {
shared_credential = new_self_credential->add_shared_credentials();
self_share_credential_count++;
} else {
shared_credential = new_contacts_credential->add_shared_credentials();
contacts_share_credential_count++;
}
shared_credential->set_id(
util_hash::HighwayFingerprint64(public_cert->secret_id()));
shared_credential->set_data(public_cert->SerializeAsString());
shared_credential->set_data_type(
SharedCredential::DATA_TYPE_PUBLIC_CERTIFICATE);
shared_credential->mutable_expiration_time()->set_seconds(
public_cert->end_time().seconds());
shared_credential->mutable_expiration_time()->set_nanos(
public_cert->end_time().nanos());
}
LOG(INFO) << __func__ << ": PublishDevice: uploaded "
<< self_share_credential_count << " self share credentials and "
<< contacts_share_credential_count << " contacts credentials";
}
bool NearbyShareCertificateManagerImpl::UploadDeviceCertificatesInExecutor(
const std::vector<NearbySharePrivateCertificate>& private_certs,
bool force_update_contacts) {
LOG(INFO) << "Start to upload local device certificates in executor.";
if (private_certs.empty()) {
LOG(WARNING) << "Ignore local device certificates upload, no private "
"certificates found.";
return false;
}
if (!is_running()) {
LOG(WARNING)
<< "Ignore local device certificates upload, manager is not running.";
return false;
}
std::string device_id = GetId();
if (device_id.empty() || !account_manager_.GetCurrentAccount().has_value()) {
LOG(WARNING)
<< "Ignore local device certificates upload, no logged in account.";
// Return true to prevent retry.
return true;
}
PublishDeviceRequest request;
request.mutable_device()->set_name(absl::StrCat("devices/", device_id));
VLOG(1) << __func__ << ": PublishDeviceRequest with Device.name: "
<< request.device().name();
request.mutable_device()->set_display_name(
local_device_data_manager_->GetDeviceName());
// Force update contacts call is right after CONTACT_GOOGLE_CONTACT_LATEST
// call and can use CONTACT_GOOGLE_CONTACT to save server side computation.
request.mutable_device()->set_contact(
force_update_contacts
? google::nearby::identity::v1::Device::CONTACT_GOOGLE_CONTACT_LATEST
: google::nearby::identity::v1::Device::CONTACT_GOOGLE_CONTACT);
AddCertifactesToPublishDeviceRequest(private_certs, request);
bool upload_certificates_succeeded = false;
bool regenerate_certificates = false;
absl::Notification notification;
nearby_identity_client_->PublishDevice(
std::move(request),
[&upload_certificates_succeeded, &regenerate_certificates,
&notification](const absl::StatusOr<PublishDeviceResponse>& response) {
upload_certificates_succeeded = response.ok();
if (!response.ok()) {
LOG(WARNING) << __func__
<< ": PublishDevice failed: " << response.status();
} else {
// If contacts are removed, regenerate all Private certificates and
// make a 2nd PublishDevice RPC call.
if (absl::linear_search(
response.value().contact_updates().begin(),
response.value().contact_updates().end(),
google::nearby::identity::v1::PublishDeviceResponse::
CONTACT_UPDATE_REMOVED)) {
regenerate_certificates = true;
}
LOG(INFO) << __func__
<< ": PublishDevice succeeded. contact_removed: "
<< regenerate_certificates;
}
notification.Notify();
});
// MUST not terminate early, otherwise notification will go out of scope, and
// the callback will call Notify on a destroyed object.
notification.WaitForNotification();
// check whether the manager is still running
if (!is_running()) {
LOG(WARNING) << __func__ << ": manager is stopped after call.";
return false;
}
if (!upload_certificates_succeeded) {
return false;
}
if (regenerate_certificates) {
LOG(INFO) << __func__
<< ": Need to make another call to PublishDevice after "
"regenerating all Private certificates: ";
RegeneratePrivateCertificates();
}
return true;
}
void NearbyShareCertificateManagerImpl::GetDecryptedPublicCertificate(
NearbyShareEncryptedMetadataKey encrypted_metadata_key,
CertDecryptedCallback callback) {
certificate_storage_->GetPublicCertificates(
[encrypted_metadata_key = std::move(encrypted_metadata_key),
callback = std::move(callback)](
bool success,
std::unique_ptr<std::vector<PublicCertificate>> result) {
TryDecryptPublicCertificates(encrypted_metadata_key,
std::move(callback), success,
std::move(result));
});
}
void NearbyShareCertificateManagerImpl::ClearPublicCertificates(
std::function<void(bool)> callback) {
certificate_storage_->ClearPublicCertificates(std::move(callback));
}
void NearbyShareCertificateManagerImpl::OnStartScheduledTasks() {
private_certificate_expiration_scheduler_->Start();
public_certificate_expiration_scheduler_->Start();
force_contacts_update_scheduler_->Start();
download_public_certificates_scheduler_->Start();
account_info_update_scheduler_->Start();
}
void NearbyShareCertificateManagerImpl::OnStopScheduledTasks() {
private_certificate_expiration_scheduler_->Stop();
public_certificate_expiration_scheduler_->Stop();
force_contacts_update_scheduler_->Stop();
download_public_certificates_scheduler_->Stop();
account_info_update_scheduler_->Stop();
}
std::optional<NearbySharePrivateCertificate>
NearbyShareCertificateManagerImpl::GetValidPrivateCertificate(
DeviceVisibility visibility) const {
if (visibility == DeviceVisibility::DEVICE_VISIBILITY_UNSPECIFIED ||
visibility == DeviceVisibility::DEVICE_VISIBILITY_HIDDEN) {
return std::nullopt;
}
// If the user already signed in, setup contacts certificate for everyone
// mode to show correct user icon on remote device.
if (visibility == DeviceVisibility::DEVICE_VISIBILITY_EVERYONE) {
visibility = DeviceVisibility::DEVICE_VISIBILITY_ALL_CONTACTS;
}
std::vector<NearbySharePrivateCertificate> certs =
certificate_storage_->GetPrivateCertificates();
for (auto& cert : certs) {
if (IsNearbyShareCertificateWithinValidityPeriod(
context_->GetClock()->Now(), cert.not_before(), cert.not_after(),
/*use_public_certificate_tolerance=*/false) &&
cert.visibility() == visibility) {
return std::move(cert);
}
}
LOG(WARNING) << "No valid private certificate found with visibility "
<< static_cast<int>(visibility);
return std::nullopt;
}
void NearbyShareCertificateManagerImpl::UpdatePrivateCertificateInStorage(
const NearbySharePrivateCertificate& private_certificate) {
certificate_storage_->UpdatePrivateCertificate(private_certificate);
}
void NearbyShareCertificateManagerImpl::OnLocalDeviceDataChanged(
bool did_device_name_change, bool did_full_name_change,
bool did_icon_change) {
LOG(INFO) << "Handle local device data changed.";
if (!did_device_name_change && !did_full_name_change && !did_icon_change)
return;
// Recreate all private certificates to ensure up-to-date metadata.
RegeneratePrivateCertificates();
}
void NearbyShareCertificateManagerImpl::SetVendorId(int32_t vendor_id) {
LOG(INFO) << "Setting certificate vendor ID to " << vendor_id;
vendor_id_ = vendor_id;
auto certificate = GetValidPrivateCertificate(
proto::DeviceVisibility::DEVICE_VISIBILITY_ALL_CONTACTS);
auto self_certificate = GetValidPrivateCertificate(
proto::DeviceVisibility::DEVICE_VISIBILITY_SELF_SHARE);
if (certificate.has_value() && self_certificate.has_value()) {
if (certificate->unencrypted_metadata().vendor_id() == vendor_id_ &&
self_certificate->unencrypted_metadata().vendor_id() == vendor_id_) {
LOG(INFO) << "Requested vendor ID is already set in latest valid private "
"certificates. Skipping certificate refresh.";
return;
}
}
// Recreate all private certificates to ensure up-to-date metadata.
RegeneratePrivateCertificates();
}
std::string NearbyShareCertificateManagerImpl::Dump() const {
std::stringstream sstream;
sstream << "Public Certificates" << std::endl;
std::vector<std::string> ids =
certificate_storage_->GetPublicCertificateIds();
sstream << " Total count:" << ids.size() << std::endl;
for (const auto& id : ids) {
DumpCertificateId(sstream, id, true);
}
sstream << std::endl;
sstream << "Private Certificates" << std::endl;
std::vector<NearbySharePrivateCertificate> private_certs =
certificate_storage_->GetPrivateCertificates();
if (private_certs.empty()) {
sstream << " Total count: 0" << std::endl;
} else {
sstream << " Total count:" << private_certs.size() << std::endl;
for (const auto& cert : private_certs) {
std::string id(cert.id().begin(), cert.id().end());
DumpCertificateId(sstream, id, false);
}
}
return sstream.str();
}
absl::Time
NearbyShareCertificateManagerImpl::NextPrivateCertificateExpirationTime() {
std::optional<AccountManager::Account> account =
account_manager_.GetCurrentAccount();
// If the user is not logged in, there are no certs and we don't need to check
// for expiration.
if (!account.has_value()) {
return absl::InfiniteFuture();
}
return certificate_storage_->NextPrivateCertificateExpirationTime(
NumExpectedPrivateCertificates());
}
bool NearbyShareCertificateManagerImpl::RefreshPrivateCertificatesInExecutor(
bool force_upload) {
LOG(INFO) << "Refreshing private certificates in executor.";
absl::Time now = context_->GetClock()->Now();
certificate_storage_->RemoveExpiredPrivateCertificates(now);
std::optional<AccountManager::Account> account =
account_manager_.GetCurrentAccount();
if (!account.has_value()) {
LOG(INFO) << "Not logged in on refreshing private certificates, ignoring";
return true;
;
}
std::vector<NearbySharePrivateCertificate> certs =
certificate_storage_->GetPrivateCertificates();
if (certs.size() == NumExpectedPrivateCertificates()) {
LOG(INFO) << "All private certificates are still valid. ";
if (force_upload) {
LOG(INFO) << "Force upload private certificates and update contacts.";
force_contacts_update_scheduler_->MakeImmediateRequest();
}
return true;
}
// Determine how many private certificates of each visibility need to be
// created, and determine the validity period for the new certificates.
absl::flat_hash_map<DeviceVisibility, size_t> num_valid_certs;
absl::flat_hash_map<DeviceVisibility, absl::Time> latest_not_after;
for (DeviceVisibility visibility : kVisibilities) {
num_valid_certs[visibility] = 0;
latest_not_after[visibility] = now;
}
for (const NearbySharePrivateCertificate& cert : certs) {
++num_valid_certs[cert.visibility()];
latest_not_after[cert.visibility()] =
std::max(latest_not_after[cert.visibility()], cert.not_after());
}
std::optional<std::string> email =
account.has_value()
? account->email
: static_cast<std::optional<std::string>>(std::nullopt);
std::optional<std::string> icon_url =
account.has_value()
? (account->picture_url.empty()
? static_cast<std::optional<std::string>>(std::nullopt)
: account->picture_url)
: static_cast<std::optional<std::string>>(std::nullopt);
std::optional<std::string> full_name =
account.has_value()
? (account->display_name.empty()
? static_cast<std::optional<std::string>>(std::nullopt)
: account->display_name)
: static_cast<std::optional<std::string>>(std::nullopt);
std::optional<EncryptedMetadata> metadata =
BuildMetadata(local_device_data_manager_->GetDeviceName(), full_name,
icon_url, email, vendor_id_, context_);
if (!metadata.has_value()) {
LOG(WARNING)
<< "Failed to create private certificates; cannot create metadata";
return false;
}
// Add new certificates if necessary. Each visibility should have
// kNearbyShareNumPrivateCertificates.
LOG(INFO)
<< "Creating "
<< kNearbyShareNumPrivateCertificates -
num_valid_certs[DeviceVisibility::DEVICE_VISIBILITY_ALL_CONTACTS]
<< " all-contacts visibility, "
<< kNearbyShareNumPrivateCertificates -
num_valid_certs[DeviceVisibility::DEVICE_VISIBILITY_SELF_SHARE]
<< " self-share visibility, ";
for (DeviceVisibility visibility : kVisibilities) {
while (num_valid_certs[visibility] < kNearbyShareNumPrivateCertificates) {
certs.emplace_back(visibility,
/*not_before=*/latest_not_after[visibility],
*metadata);
++num_valid_certs[visibility];
latest_not_after[visibility] = certs.back().not_after();
}
}
certificate_storage_->ReplacePrivateCertificates(
absl::MakeSpan(certs.data(), certs.size()));
NotifyPrivateCertificatesChanged();
// force_contacts_update_scheduler_ should only be updated if
// force_update_contacts is true, otherwise we could miss the 24hr contact
// update window.
if (force_upload) {
force_contacts_update_scheduler_->MakeImmediateRequest();
} else {
executor_->PostTask([this]() {
VLOG(1) << "Begin UploadDeviceCertificatesInExecutor";
UploadDeviceCertificatesInExecutor(
certificate_storage_->GetPrivateCertificates(),
/*force_update_contacts=*/false);
});
}
return true;
}
void NearbyShareCertificateManagerImpl::ForceUploadPrivateCertificates() {
executor_->PostTask([this]() {
private_certificate_expiration_scheduler_->HandleResult(
RefreshPrivateCertificatesInExecutor(/*force_upload=*/true));
});
}
absl::Time
NearbyShareCertificateManagerImpl::NextPublicCertificateExpirationTime() {
absl::Time next_expiration_time =
certificate_storage_->NextPublicCertificateExpirationTime();
// To account for clock skew between devices, we accept public certificates
// that are slightly past their validity period. This conforms with the
// GmsCore implementation.
return next_expiration_time +
kNearbySharePublicCertificateValidityBoundOffsetTolerance;
}
bool NearbyShareCertificateManagerImpl::
RemoveExpiredPublicCertificatesInExecutor() {
LOG(INFO) << "Removing expired public certificates in executor.";
absl::Notification notification;
bool result = false;
certificate_storage_->RemoveExpiredPublicCertificates(
context_->GetClock()->Now(), [&](bool success) {
result = success;
notification.Notify();
});
notification.WaitForNotification();
if (!result) {
LOG(ERROR) << "Failed to remove expired public certificates.";
}
return result;
}
bool NearbyShareCertificateManagerImpl::UpdateAccountInfoInExecutor() {
GetAccountInfoRequest request;
bool get_account_info_succeeded = false;
absl::Notification notification;
nearby_identity_client_->GetAccountInfo(
std::move(request),
[this, &get_account_info_succeeded, &notification](
const absl::StatusOr<GetAccountInfoResponse>& response) mutable {
if (!response.ok()) {
LOG(WARNING) << "GetAccountInfo failed: " << response.status();
} else {
get_account_info_succeeded = true;
const auto& capabilities = response->account_info().capabilities();
bool has_titanium_capability =
(std::find(capabilities.begin(), capabilities.end(),
AccountInfo::CAPABILITY_TITANIUM) !=
capabilities.end());
preference_manager_.SetBoolean(PrefNames::kAdvancedProtectionEnabled,
has_titanium_capability);
LOG(INFO) << "GetAccountInfo succeeded, advanced protection enabled: "
<< has_titanium_capability;
}
notification.Notify();
});
// MUST not terminate early, otherwise notification will go out of scope, and
// the callback will call Notify on a destroyed object.
notification.WaitForNotification();
return get_account_info_succeeded;
}
} // namespace sharing
} // namespace nearby