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https://gitee.com/openharmony/ability_dmsfwk
synced 2024-12-03 11:51:05 +00:00
!144 fix connect remote ability bug
Merge pull request !144 from zhangmingxiang/0221
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commit
80b89eebec
@ -49,6 +49,12 @@ struct ConnectInfo {
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AppExecFwk::ElementName element;
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};
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struct ProcessDiedNotifyInfo {
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std::string remoteDeviceId;
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CallerInfo callerInfo;
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TargetComponent targetComponent;
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};
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class DistributedSchedService : public SystemAbility, public DistributedSchedStub {
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DECLARE_SYSTEM_ABILITY(DistributedSchedService);
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@ -130,7 +136,8 @@ private:
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const std::string& destinationDeviceId, const std::string& sourceDeviceId);
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void NotifyDeviceOfflineToAppLocked(const sptr<IRemoteObject>& connect, const ConnectAbilitySession& session);
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int32_t NotifyApp(const sptr<IRemoteObject>& connect, const AppExecFwk::ElementName& element, int32_t errCode);
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void NotifyProcessDiedLocked(const std::string& remoteDeviceId, const CallerInfo& callerInfo,
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void NotifyProcessDiedAll(const std::list<ProcessDiedNotifyInfo>& notifyList);
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void NotifyProcessDied(const std::string& remoteDeviceId, const CallerInfo& callerInfo,
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TargetComponent targetComponent);
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int32_t CheckDistributedConnectLocked(const CallerInfo& callerInfo) const;
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void DecreaseConnectLocked(int32_t uid);
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@ -526,26 +526,25 @@ int32_t DistributedSchedService::ConnectRemoteAbility(const OHOS::AAFwk::Want& w
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HILOGE("ConnectRemoteAbility check uid failed");
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return INVALID_PARAMETERS_ERR;
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}
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CallerInfo callerInfo;
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CallerInfo callerInfo = { callerUid, callerPid, CALLER_TYPE_HARMONY, localDeviceId };
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callerInfo.accessToken = accessToken;
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{
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std::lock_guard<std::mutex> autoLock(distributedLock_);
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callerInfo = { callerUid, callerPid, CALLER_TYPE_HARMONY, localDeviceId };
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callerInfo.accessToken = accessToken;
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int32_t checkResult = CheckDistributedConnectLocked(callerInfo);
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if (checkResult != ERR_OK) {
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return checkResult;
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}
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}
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if (!BundleManagerInternal::GetCallerAppIdFromBms(callerInfo.uid, callerInfo.callerAppId)) {
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HILOGE("ConnectRemoteAbility GetCallerAppIdFromBms failed");
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return INVALID_PARAMETERS_ERR;
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}
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int32_t ret = DistributedSchedAdapter::GetInstance().GetBundleNameListFromBms(
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callerInfo.uid, callerInfo.bundleNames);
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if (ret != ERR_OK) {
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HILOGE("ConnectRemoteAbility GetBundleNameListFromBms failed");
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return INVALID_PARAMETERS_ERR;
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}
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if (!BundleManagerInternal::GetCallerAppIdFromBms(callerInfo.uid, callerInfo.callerAppId)) {
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HILOGE("ConnectRemoteAbility GetCallerAppIdFromBms failed");
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return INVALID_PARAMETERS_ERR;
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}
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int32_t ret = DistributedSchedAdapter::GetInstance().GetBundleNameListFromBms(
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callerInfo.uid, callerInfo.bundleNames);
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if (ret != ERR_OK) {
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HILOGE("ConnectRemoteAbility GetBundleNameListFromBms failed");
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return INVALID_PARAMETERS_ERR;
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}
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HILOGD("[PerformanceTest] ConnectRemoteAbility begin");
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@ -889,19 +888,25 @@ int32_t DistributedSchedService::ConnectAbilityFromRemote(const OHOS::AAFwk::Wan
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HILOGD("ConnectAbilityFromRemote callerType is %{public}d", callerInfo.callerType);
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sptr<IRemoteObject> callbackWrapper = connect;
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std::map<sptr<IRemoteObject>, ConnectInfo>::iterator itConnect;
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if (callerInfo.callerType == CALLER_TYPE_HARMONY) {
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std::lock_guard<std::mutex> autoLock(connectLock_);
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auto itConnect = connectAbilityMap_.find(connect);
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itConnect = connectAbilityMap_.find(connect);
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if (itConnect != connectAbilityMap_.end()) {
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callbackWrapper = itConnect->second.callbackWrapper;
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} else {
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callbackWrapper = new AbilityConnectionWrapperStub(connect);
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ConnectInfo connectInfo {callerInfo, callbackWrapper};
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connectAbilityMap_.emplace(connect, connectInfo);
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}
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}
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int32_t errCode = DistributedSchedAdapter::GetInstance().ConnectAbility(want, callbackWrapper, this);
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HILOGD("[PerformanceTest] ConnectAbilityFromRemote end");
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if (errCode == ERR_OK) {
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std::lock_guard<std::mutex> autoLock(connectLock_);
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if (itConnect == connectAbilityMap_.end()) {
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ConnectInfo connectInfo {callerInfo, callbackWrapper};
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connectAbilityMap_.emplace(connect, connectInfo);
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}
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}
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return errCode;
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}
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@ -1103,8 +1108,7 @@ void DistributedSchedService::ProcessConnectDied(const sptr<IRemoteObject>& conn
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return;
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}
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std::list<ConnectAbilitySession> sessionsList;
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CallerInfo callerInfo;
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std::list<ProcessDiedNotifyInfo> notifyList;
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{
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std::lock_guard<std::mutex> autoLock(distributedLock_);
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auto it = distributedConnectAbilityMap_.find(connect);
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@ -1115,11 +1119,24 @@ void DistributedSchedService::ProcessConnectDied(const sptr<IRemoteObject>& conn
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if (connectSessionsList.empty()) {
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return;
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}
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callerInfo = connectSessionsList.front().GetCallerInfo();
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CallerInfo callerInfo = connectSessionsList.front().GetCallerInfo();
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std::set<std::string> processedDeviceSet;
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// to reduce the number of communications between devices, clean all the died process's connections
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for (auto iter = distributedConnectAbilityMap_.begin(); iter != distributedConnectAbilityMap_.end();) {
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sessionsList = iter->second;
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std::list<ConnectAbilitySession>& sessionsList = iter->second;
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if (!sessionsList.empty() && sessionsList.front().IsSameCaller(callerInfo)) {
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for (const auto& session : sessionsList) {
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std::string remoteDeviceId = session.GetDestinationDeviceId();
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TargetComponent targetComponent = session.GetTargetComponent();
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// the same session can connect different types component on the same device
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std::string key = remoteDeviceId + std::to_string(static_cast<int32_t>(targetComponent));
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// just notify one time for same remote device
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auto [_, isSuccess] = processedDeviceSet.emplace(key);
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if (isSuccess) {
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ProcessDiedNotifyInfo notifyInfo = { remoteDeviceId, callerInfo, targetComponent };
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notifyList.push_back(notifyInfo);
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}
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}
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DecreaseConnectLocked(callerInfo.uid);
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if (iter->first != nullptr) {
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iter->first->RemoveDeathRecipient(connectDeathRecipient_);
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@ -1130,37 +1147,31 @@ void DistributedSchedService::ProcessConnectDied(const sptr<IRemoteObject>& conn
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}
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}
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}
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std::set<std::string> processedDeviceSet;
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if (!sessionsList.empty() && sessionsList.front().IsSameCaller(callerInfo)) {
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for (const auto& session : sessionsList) {
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std::string remoteDeviceId = session.GetDestinationDeviceId();
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TargetComponent targetComponent = session.GetTargetComponent();
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// the same session can connect different types component on the same device
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std::string key = remoteDeviceId + std::to_string(static_cast<int32_t>(targetComponent));
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// just notify one time for same remote device
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auto [_, isSuccess] = processedDeviceSet.emplace(key);
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if (isSuccess) {
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NotifyProcessDiedLocked(remoteDeviceId, callerInfo, targetComponent);
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}
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}
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NotifyProcessDiedAll(notifyList);
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}
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void DistributedSchedService::NotifyProcessDiedAll(const std::list<ProcessDiedNotifyInfo>& notifyList)
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{
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for (auto it = notifyList.begin(); it != notifyList.end(); ++it) {
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NotifyProcessDied(it->remoteDeviceId, it->callerInfo, it->targetComponent);
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}
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}
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void DistributedSchedService::NotifyProcessDiedLocked(const std::string& remoteDeviceId,
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void DistributedSchedService::NotifyProcessDied(const std::string& remoteDeviceId,
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const CallerInfo& callerInfo, TargetComponent targetComponent)
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{
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if (targetComponent != TargetComponent::HARMONY_COMPONENT) {
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HILOGD("NotifyProcessDiedLocked not harmony component, no need to notify");
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HILOGD("NotifyProcessDied not harmony component, no need to notify");
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return;
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}
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sptr<IDistributedSched> remoteDms = GetRemoteDms(remoteDeviceId);
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if (remoteDms == nullptr) {
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HILOGE("NotifyProcessDiedLocked get remote dms failed");
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HILOGE("NotifyProcessDied get remote dms failed");
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return;
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}
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int32_t result = remoteDms->NotifyProcessDiedFromRemote(callerInfo);
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HILOGI("NotifyProcessDiedLocked result is %{public}d", result);
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HILOGI("NotifyProcessDied result is %{public}d", result);
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}
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ConnectAbilitySession::ConnectAbilitySession(const std::string& sourceDeviceId, const std::string& destinationDeviceId,
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