Fix deadlock when pending key release sessions are deallocated
[ Merge from http://go/wvgerrit/27261/ ] Sessions created to release keys are periodically cleaned up if the key release operation does not complete within a specific amount of time. If other sessions are open, they will be released through the timer thread. This would result in deadlock as a mutex was taken twice. Test: Verified by cdm_extended_duration_test (AutomatedOfflineSessionReleaseOnOpenSession and AutomatedOfflineSessionReleaseOnTimerEvent tests) b/37546078 Change-Id: I7d45f939bdce77e5db461a401364da4f42c1c034
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@@ -1443,35 +1443,37 @@ void CdmEngine::OnTimerEvent() {
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bool is_initial_usage_update = false;
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bool is_usage_update_needed = false;
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AutoLock lock(session_list_lock_);
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for (CdmSessionMap::iterator iter = sessions_.begin();
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iter != sessions_.end(); ++iter) {
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is_initial_usage_update =
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is_initial_usage_update || iter->second->is_initial_usage_update();
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is_usage_update_needed =
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is_usage_update_needed || iter->second->is_usage_update_needed();
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iter->second->OnTimerEvent(usage_update_period_expired);
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}
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if (is_usage_update_needed &&
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(usage_update_period_expired || is_initial_usage_update)) {
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bool has_usage_been_updated = false;
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{
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AutoLock lock(session_list_lock_);
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for (CdmSessionMap::iterator iter = sessions_.begin();
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iter != sessions_.end(); ++iter) {
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iter->second->reset_usage_flags();
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if (iter->second->get_usage_support_type() == kUsageEntrySupport)
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iter->second->UpdateUsageEntryInformation();
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is_initial_usage_update =
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is_initial_usage_update || iter->second->is_initial_usage_update();
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is_usage_update_needed =
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is_usage_update_needed || iter->second->is_usage_update_needed();
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if (!has_usage_been_updated) {
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// usage is updated for all sessions so this needs to be
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// called only once per update usage information period
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if (iter->second->get_usage_support_type() == kUsageTableSupport) {
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CdmResponseType status = iter->second->UpdateUsageTableInformation();
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if (NO_ERROR != status) {
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LOGW("Update usage information failed: %d", status);
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} else {
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has_usage_been_updated = true;
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iter->second->OnTimerEvent(usage_update_period_expired);
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}
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if (is_usage_update_needed &&
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(usage_update_period_expired || is_initial_usage_update)) {
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bool has_usage_been_updated = false;
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for (CdmSessionMap::iterator iter = sessions_.begin();
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iter != sessions_.end(); ++iter) {
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iter->second->reset_usage_flags();
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if (iter->second->get_usage_support_type() == kUsageEntrySupport)
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iter->second->UpdateUsageEntryInformation();
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if (!has_usage_been_updated) {
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// usage is updated for all sessions so this needs to be
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// called only once per update usage information period
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if (iter->second->get_usage_support_type() == kUsageTableSupport) {
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CdmResponseType status = iter->second->UpdateUsageTableInformation();
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if (NO_ERROR != status) {
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LOGW("Update usage information failed: %d", status);
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} else {
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has_usage_been_updated = true;
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}
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}
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}
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}
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@@ -988,6 +988,142 @@ TEST_F(WvCdmExtendedDurationTest, UsageOverflowTest) {
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}
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}
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// This test verifies that sessions allocated internally during key release
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// message generation are deallocated after their time to live period expires
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// by timer events (if other sessions are open).
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TEST_F(WvCdmExtendedDurationTest, AutomatedOfflineSessionReleaseOnTimerEvent) {
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Unprovision();
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Provision();
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// Leave session open to run the CDM timer
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CdmSessionId streaming_session_id;
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decryptor_.OpenSession(g_key_system, NULL, kDefaultCdmIdentifier, NULL,
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&streaming_session_id);
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// override default settings unless configured through the command line
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std::string key_id;
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std::string client_auth;
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GetOfflineConfiguration(&key_id, &client_auth);
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uint32_t initial_open_sessions =
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QueryStatus(kLevelDefault, wvcdm::QUERY_KEY_NUMBER_OF_OPEN_SESSIONS);
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uint32_t max_sessions =
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QueryStatus(kLevelDefault, wvcdm::QUERY_KEY_MAX_NUMBER_OF_SESSIONS);
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decryptor_.OpenSession(g_key_system, NULL, kDefaultCdmIdentifier, NULL,
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&session_id_);
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GenerateKeyRequest(kOfflineClip4, kLicenseTypeOffline);
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VerifyKeyRequestResponse(kUatLicenseServer, client_auth, false);
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EXPECT_FALSE(key_set_id_.empty());
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decryptor_.CloseSession(session_id_);
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CdmKeySetId key_set_id = key_set_id_;
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session_id_.clear();
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key_set_id_.clear();
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decryptor_.OpenSession(g_key_system, NULL, kDefaultCdmIdentifier, NULL,
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&session_id_);
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EXPECT_EQ(wvcdm::KEY_ADDED, decryptor_.RestoreKey(session_id_, key_set_id));
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decryptor_.CloseSession(session_id_);
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session_id_.clear();
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GenerateKeyRelease(key_set_id);
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uint32_t open_sessions =
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QueryStatus(kLevelDefault, wvcdm::QUERY_KEY_NUMBER_OF_OPEN_SESSIONS);
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EXPECT_GT(open_sessions, initial_open_sessions);
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sleep(kMinute + kClockTolerance);
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open_sessions =
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QueryStatus(kLevelDefault, wvcdm::QUERY_KEY_NUMBER_OF_OPEN_SESSIONS);
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EXPECT_EQ(open_sessions, initial_open_sessions);
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session_id_.clear();
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GenerateKeyRelease(key_set_id);
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key_set_id_ = key_set_id;
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VerifyKeyRequestResponse(kUatLicenseServer, client_auth, false);
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decryptor_.CloseSession(streaming_session_id);
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}
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// This test verifies that sessions allocated internally during key release
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// message generation are deallocated after their time to live period expires
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// when a new session is opened.
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TEST_F(WvCdmExtendedDurationTest, AutomatedOfflineSessionReleaseOnOpenSession) {
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Unprovision();
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Provision();
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// override default settings unless configured through the command line
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std::string key_id;
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std::string client_auth;
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GetOfflineConfiguration(&key_id, &client_auth);
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uint32_t initial_open_sessions =
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QueryStatus(kLevelDefault, wvcdm::QUERY_KEY_NUMBER_OF_OPEN_SESSIONS);
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uint32_t max_sessions =
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QueryStatus(kLevelDefault, wvcdm::QUERY_KEY_MAX_NUMBER_OF_SESSIONS);
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decryptor_.OpenSession(g_key_system, NULL, kDefaultCdmIdentifier, NULL,
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&session_id_);
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GenerateKeyRequest(kOfflineClip4, kLicenseTypeOffline);
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VerifyKeyRequestResponse(kUatLicenseServer, client_auth, false);
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EXPECT_FALSE(key_set_id_.empty());
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decryptor_.CloseSession(session_id_);
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CdmKeySetId key_set_id = key_set_id_;
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session_id_.clear();
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key_set_id_.clear();
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decryptor_.OpenSession(g_key_system, NULL, kDefaultCdmIdentifier, NULL,
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&session_id_);
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EXPECT_EQ(wvcdm::KEY_ADDED, decryptor_.RestoreKey(session_id_, key_set_id));
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decryptor_.CloseSession(session_id_);
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session_id_.clear();
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GenerateKeyRelease(key_set_id);
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decryptor_.OpenSession(g_key_system, NULL, kDefaultCdmIdentifier, NULL,
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&session_id_);
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EXPECT_GT(
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QueryStatus(kLevelDefault, wvcdm::QUERY_KEY_NUMBER_OF_OPEN_SESSIONS),
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initial_open_sessions);
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decryptor_.CloseSession(session_id_);
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EXPECT_GT(
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QueryStatus(kLevelDefault, wvcdm::QUERY_KEY_NUMBER_OF_OPEN_SESSIONS),
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initial_open_sessions);
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sleep(kMinute + kClockTolerance);
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EXPECT_GT(
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QueryStatus(kLevelDefault, wvcdm::QUERY_KEY_NUMBER_OF_OPEN_SESSIONS),
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initial_open_sessions);
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decryptor_.OpenSession(g_key_system, NULL, kDefaultCdmIdentifier, NULL,
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&session_id_);
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EXPECT_GT(
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QueryStatus(kLevelDefault, wvcdm::QUERY_KEY_NUMBER_OF_OPEN_SESSIONS),
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initial_open_sessions);
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decryptor_.CloseSession(session_id_);
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EXPECT_EQ(
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QueryStatus(kLevelDefault, wvcdm::QUERY_KEY_NUMBER_OF_OPEN_SESSIONS),
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initial_open_sessions);
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session_id_.clear();
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GenerateKeyRelease(key_set_id);
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key_set_id_ = key_set_id;
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VerifyKeyRequestResponse(kUatLicenseServer, client_auth, false);
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}
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// This test verifies that sessions allocated internally during
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// key release message generation are deallocated after their
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// time to live period expires.
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