updated indentation
This commit is contained in:
parent
cc2e26443d
commit
e245f56a4f
@ -6,17 +6,17 @@
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#include <unittest/core/CatchDefinitions.h>
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TEST_CASE("LocalDataSet" , "[LocDataSetTest]") {
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LocalPoolOwnerBase* poolOwner = objectManager->
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get<LocalPoolOwnerBase>(objects::TEST_LOCAL_POOL_OWNER_BASE);
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REQUIRE(poolOwner != nullptr);
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REQUIRE(poolOwner->initializeHkManager() == retval::CATCH_OK);
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REQUIRE(poolOwner->initializeHkManagerAfterTaskCreation()
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== retval::CATCH_OK);
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const uint32_t setId = 0;
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SECTION("BasicTest") {
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StaticLocalDataSet<3> localSet = StaticLocalDataSet<3>(
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sid_t(objects::TEST_LOCAL_POOL_OWNER_BASE, setId));
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}
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LocalPoolOwnerBase* poolOwner = objectManager->
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get<LocalPoolOwnerBase>(objects::TEST_LOCAL_POOL_OWNER_BASE);
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REQUIRE(poolOwner != nullptr);
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REQUIRE(poolOwner->initializeHkManager() == retval::CATCH_OK);
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REQUIRE(poolOwner->initializeHkManagerAfterTaskCreation()
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== retval::CATCH_OK);
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const uint32_t setId = 0;
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SECTION("BasicTest") {
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StaticLocalDataSet<3> localSet = StaticLocalDataSet<3>(
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sid_t(objects::TEST_LOCAL_POOL_OWNER_BASE, setId));
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}
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}
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@ -8,115 +8,115 @@
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TEST_CASE("LocalPoolManagerTest" , "[LocManTest]") {
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LocalPoolOwnerBase* poolOwner = objectManager->
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get<LocalPoolOwnerBase>(objects::TEST_LOCAL_POOL_OWNER_BASE);
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REQUIRE(poolOwner != nullptr);
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REQUIRE(poolOwner->initializeHkManager() == retval::CATCH_OK);
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REQUIRE(poolOwner->initializeHkManagerAfterTaskCreation()
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== retval::CATCH_OK);
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REQUIRE(poolOwner->dataset.assignPointers() == retval::CATCH_OK);
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MessageQueueMockBase* mqMock = poolOwner->getMockQueueHandle();
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REQUIRE(mqMock != nullptr);
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CommandMessage messageSent;
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uint8_t messagesSent = 0;
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LocalPoolOwnerBase* poolOwner = objectManager->
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get<LocalPoolOwnerBase>(objects::TEST_LOCAL_POOL_OWNER_BASE);
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REQUIRE(poolOwner != nullptr);
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REQUIRE(poolOwner->initializeHkManager() == retval::CATCH_OK);
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REQUIRE(poolOwner->initializeHkManagerAfterTaskCreation()
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== retval::CATCH_OK);
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REQUIRE(poolOwner->dataset.assignPointers() == retval::CATCH_OK);
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MessageQueueMockBase* mqMock = poolOwner->getMockQueueHandle();
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REQUIRE(mqMock != nullptr);
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CommandMessage messageSent;
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uint8_t messagesSent = 0;
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SECTION("BasicTest") {
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// Subscribe for message generation on update.
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REQUIRE(poolOwner->subscribeWrapperSetUpdate() == retval::CATCH_OK);
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// Subscribe for an update message.
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poolOwner->dataset.setChanged(true);
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// Now the update message should be generated.
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REQUIRE(poolOwner->poolManager.performHkOperation() == retval::CATCH_OK);
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REQUIRE(mqMock->wasMessageSent() == true);
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SECTION("BasicTest") {
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/* Subscribe for message generation on update. */
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REQUIRE(poolOwner->subscribeWrapperSetUpdate() == retval::CATCH_OK);
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/* Subscribe for an update message. */
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poolOwner->dataset.setChanged(true);
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/* Now the update message should be generated. */
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REQUIRE(poolOwner->poolManager.performHkOperation() == retval::CATCH_OK);
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REQUIRE(mqMock->wasMessageSent() == true);
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::UPDATE_NOTIFICATION_SET));
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::UPDATE_NOTIFICATION_SET));
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// Should have been reset.
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CHECK(poolOwner->dataset.hasChanged() == false);
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// Set changed again, result should be the same.
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poolOwner->dataset.setChanged(true);
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REQUIRE(poolOwner->poolManager.performHkOperation() == retval::CATCH_OK);
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/* Should have been reset. */
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CHECK(poolOwner->dataset.hasChanged() == false);
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/* Set changed again, result should be the same. */
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poolOwner->dataset.setChanged(true);
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REQUIRE(poolOwner->poolManager.performHkOperation() == retval::CATCH_OK);
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REQUIRE(mqMock->wasMessageSent(&messagesSent) == true);
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CHECK(messagesSent == 1);
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::UPDATE_NOTIFICATION_SET));
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REQUIRE(mqMock->wasMessageSent(&messagesSent) == true);
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CHECK(messagesSent == 1);
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::UPDATE_NOTIFICATION_SET));
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// now subscribe for set update HK as well.
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REQUIRE(poolOwner->subscribeWrapperSetUpdateHk() == retval::CATCH_OK);
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poolOwner->dataset.setChanged(true);
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REQUIRE(poolOwner->poolManager.performHkOperation() == retval::CATCH_OK);
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REQUIRE(mqMock->wasMessageSent(&messagesSent) == true);
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CHECK(messagesSent == 2);
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// first message sent should be the update notification, considering
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// the internal list is a vector checked in insertion order.
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::UPDATE_NOTIFICATION_SET));
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/* Now subscribe for set update HK as well. */
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REQUIRE(poolOwner->subscribeWrapperSetUpdateHk() == retval::CATCH_OK);
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poolOwner->dataset.setChanged(true);
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REQUIRE(poolOwner->poolManager.performHkOperation() == retval::CATCH_OK);
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REQUIRE(mqMock->wasMessageSent(&messagesSent) == true);
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CHECK(messagesSent == 2);
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/* first message sent should be the update notification, considering
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the internal list is a vector checked in insertion order. */
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::UPDATE_NOTIFICATION_SET));
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::HK_REPORT));
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// clear message to avoid memory leak, our mock won't do it for us (yet)
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CommandMessageCleaner::clearCommandMessage(&messageSent);
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}
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::HK_REPORT));
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/* Clear message to avoid memory leak, our mock won't do it for us (yet) */
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CommandMessageCleaner::clearCommandMessage(&messageSent);
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}
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SECTION("AdvancedTests") {
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// we need to reset the subscription list because the pool owner
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// is a global object.
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poolOwner->resetSubscriptionList();
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// Subscribe for variable update as well
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REQUIRE(not poolOwner->dataset.hasChanged());
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REQUIRE(poolOwner->subscribeWrapperVariableUpdate(lpool::uint8VarId) ==
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retval::CATCH_OK);
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lp_var_t<uint8_t>* poolVar = dynamic_cast<lp_var_t<uint8_t>*>(
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poolOwner->getPoolObjectHandle(lpool::uint8VarId));
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REQUIRE(poolVar != nullptr);
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poolVar->setChanged(true);
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REQUIRE(poolOwner->poolManager.performHkOperation() == retval::CATCH_OK);
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SECTION("AdvancedTests") {
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/* we need to reset the subscription list because the pool owner
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is a global object. */
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poolOwner->resetSubscriptionList();
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/* Subscribe for variable update as well */
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REQUIRE(not poolOwner->dataset.hasChanged());
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REQUIRE(poolOwner->subscribeWrapperVariableUpdate(lpool::uint8VarId) ==
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retval::CATCH_OK);
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lp_var_t<uint8_t>* poolVar = dynamic_cast<lp_var_t<uint8_t>*>(
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poolOwner->getPoolObjectHandle(lpool::uint8VarId));
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REQUIRE(poolVar != nullptr);
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poolVar->setChanged(true);
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REQUIRE(poolOwner->poolManager.performHkOperation() == retval::CATCH_OK);
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// Check update notification was sent.
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REQUIRE(mqMock->wasMessageSent(&messagesSent) == true);
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CHECK(messagesSent == 1);
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// Should have been reset.
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CHECK(poolVar->hasChanged() == false);
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::UPDATE_NOTIFICATION_VARIABLE));
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/* Check update notification was sent. */
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REQUIRE(mqMock->wasMessageSent(&messagesSent) == true);
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CHECK(messagesSent == 1);
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/* Should have been reset. */
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CHECK(poolVar->hasChanged() == false);
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::UPDATE_NOTIFICATION_VARIABLE));
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// now subscribe for the dataset update (HK and update) again
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REQUIRE(poolOwner->subscribeWrapperSetUpdate() == retval::CATCH_OK);
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REQUIRE(poolOwner->subscribeWrapperSetUpdateHk() == retval::CATCH_OK);
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/* Now subscribe for the dataset update (HK and update) again */
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REQUIRE(poolOwner->subscribeWrapperSetUpdate() == retval::CATCH_OK);
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REQUIRE(poolOwner->subscribeWrapperSetUpdateHk() == retval::CATCH_OK);
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poolOwner->dataset.setChanged(true);
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REQUIRE(poolOwner->poolManager.performHkOperation() == retval::CATCH_OK);
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// now two messages should be sent.
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REQUIRE(mqMock->wasMessageSent(&messagesSent) == true);
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CHECK(messagesSent == 2);
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mqMock->clearMessages(true);
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poolOwner->dataset.setChanged(true);
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REQUIRE(poolOwner->poolManager.performHkOperation() == retval::CATCH_OK);
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/* Now two messages should be sent. */
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REQUIRE(mqMock->wasMessageSent(&messagesSent) == true);
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CHECK(messagesSent == 2);
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mqMock->clearMessages(true);
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poolOwner->dataset.setChanged(true);
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poolVar->setChanged(true);
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REQUIRE(poolOwner->poolManager.performHkOperation() == retval::CATCH_OK);
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// now three messages should be sent.
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REQUIRE(mqMock->wasMessageSent(&messagesSent) == true);
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CHECK(messagesSent == 3);
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::UPDATE_NOTIFICATION_VARIABLE));
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::UPDATE_NOTIFICATION_SET));
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::HK_REPORT));
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CommandMessageCleaner::clearCommandMessage(&messageSent);
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REQUIRE(mqMock->receiveMessage(&messageSent) ==
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static_cast<int>(MessageQueueIF::EMPTY));
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}
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poolOwner->dataset.setChanged(true);
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poolVar->setChanged(true);
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REQUIRE(poolOwner->poolManager.performHkOperation() == retval::CATCH_OK);
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/* Now three messages should be sent. */
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REQUIRE(mqMock->wasMessageSent(&messagesSent) == true);
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CHECK(messagesSent == 3);
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::UPDATE_NOTIFICATION_VARIABLE));
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::UPDATE_NOTIFICATION_SET));
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REQUIRE(mqMock->receiveMessage(&messageSent) == retval::CATCH_OK);
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CHECK(messageSent.getCommand() == static_cast<int>(
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HousekeepingMessage::HK_REPORT));
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CommandMessageCleaner::clearCommandMessage(&messageSent);
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REQUIRE(mqMock->receiveMessage(&messageSent) ==
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static_cast<int>(MessageQueueIF::EMPTY));
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}
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}
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@ -21,32 +21,32 @@ static constexpr lp_id_t int64Vec2Id = 4;
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static constexpr uint32_t testSetId = 0;
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static constexpr uint8_t dataSetMaxVariables = 10;
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static const sid_t testSid = sid_t(objects::TEST_LOCAL_POOL_OWNER_BASE,
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testSetId);
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testSetId);
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}
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class LocalPoolTestDataSet: public LocalDataSet {
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public:
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LocalPoolTestDataSet(HasLocalDataPoolIF* owner, uint32_t setId):
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LocalDataSet(owner, setId, lpool::dataSetMaxVariables) {
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}
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LocalPoolTestDataSet(HasLocalDataPoolIF* owner, uint32_t setId):
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LocalDataSet(owner, setId, lpool::dataSetMaxVariables) {
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}
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ReturnValue_t assignPointers() {
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PoolVariableIF** rawVarArray = getContainer();
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localPoolVarUint8 = dynamic_cast<lp_var_t<uint8_t>*>(rawVarArray[0]);
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localPoolVarFloat = dynamic_cast<lp_var_t<float>*>(rawVarArray[1]);
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localPoolUint16Vec = dynamic_cast<lp_vec_t<uint16_t, 3>*>(
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rawVarArray[2]);
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if(localPoolVarUint8 == nullptr or localPoolVarFloat == nullptr or
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localPoolUint16Vec == nullptr) {
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return HasReturnvaluesIF::RETURN_FAILED;
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}
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return HasReturnvaluesIF::RETURN_OK;
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}
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ReturnValue_t assignPointers() {
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PoolVariableIF** rawVarArray = getContainer();
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localPoolVarUint8 = dynamic_cast<lp_var_t<uint8_t>*>(rawVarArray[0]);
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localPoolVarFloat = dynamic_cast<lp_var_t<float>*>(rawVarArray[1]);
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localPoolUint16Vec = dynamic_cast<lp_vec_t<uint16_t, 3>*>(
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rawVarArray[2]);
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if(localPoolVarUint8 == nullptr or localPoolVarFloat == nullptr or
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localPoolUint16Vec == nullptr) {
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return HasReturnvaluesIF::RETURN_FAILED;
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}
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return HasReturnvaluesIF::RETURN_OK;
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}
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lp_var_t<uint8_t>* localPoolVarUint8 = nullptr;
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lp_var_t<float>* localPoolVarFloat = nullptr;
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lp_vec_t<uint16_t, 3>* localPoolUint16Vec = nullptr;
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lp_var_t<uint8_t>* localPoolVarUint8 = nullptr;
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lp_var_t<float>* localPoolVarFloat = nullptr;
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lp_vec_t<uint16_t, 3>* localPoolUint16Vec = nullptr;
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private:
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};
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@ -54,143 +54,143 @@ private:
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class LocalPoolOwnerBase: public SystemObject, public HasLocalDataPoolIF {
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public:
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LocalPoolOwnerBase(
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object_id_t objectId = objects::TEST_LOCAL_POOL_OWNER_BASE):
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SystemObject(objectId), poolManager(this, messageQueue),
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dataset(this, lpool::testSetId) {
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messageQueue = new MessageQueueMockBase();
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}
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LocalPoolOwnerBase(
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object_id_t objectId = objects::TEST_LOCAL_POOL_OWNER_BASE):
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SystemObject(objectId), poolManager(this, messageQueue),
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dataset(this, lpool::testSetId) {
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messageQueue = new MessageQueueMockBase();
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}
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~LocalPoolOwnerBase() {
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QueueFactory::instance()->deleteMessageQueue(messageQueue);
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}
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~LocalPoolOwnerBase() {
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QueueFactory::instance()->deleteMessageQueue(messageQueue);
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}
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object_id_t getObjectId() const override {
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return SystemObject::getObjectId();
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}
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object_id_t getObjectId() const override {
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return SystemObject::getObjectId();
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}
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ReturnValue_t initializeHkManager() {
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if(not initialized) {
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initialized = true;
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return poolManager.initialize(messageQueue);
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}
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return HasReturnvaluesIF::RETURN_OK;
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}
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ReturnValue_t initializeHkManager() {
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if(not initialized) {
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initialized = true;
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return poolManager.initialize(messageQueue);
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}
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return HasReturnvaluesIF::RETURN_OK;
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}
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ReturnValue_t initializeHkManagerAfterTaskCreation() {
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if(not initializedAfterTaskCreation) {
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initializedAfterTaskCreation = true;
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return poolManager.initializeAfterTaskCreation();
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}
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return HasReturnvaluesIF::RETURN_OK;
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}
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ReturnValue_t initializeHkManagerAfterTaskCreation() {
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if(not initializedAfterTaskCreation) {
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initializedAfterTaskCreation = true;
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return poolManager.initializeAfterTaskCreation();
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}
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return HasReturnvaluesIF::RETURN_OK;
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}
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/** Command queue for housekeeping messages. */
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MessageQueueId_t getCommandQueue() const override {
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return messageQueue->getId();
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}
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/** Command queue for housekeeping messages. */
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MessageQueueId_t getCommandQueue() const override {
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return messageQueue->getId();
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}
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// This is called by initializeAfterTaskCreation of the HK manager.
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virtual ReturnValue_t initializeLocalDataPool(
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localpool::DataPool& localDataPoolMap,
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LocalDataPoolManager& poolManager) {
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// Default initialization empty for now.
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localDataPoolMap.emplace(lpool::uint8VarId,
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new PoolEntry<uint8_t>({0}));
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localDataPoolMap.emplace(lpool::floatVarId,
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new PoolEntry<float>({0}));
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localDataPoolMap.emplace(lpool::uint32VarId,
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new PoolEntry<uint32_t>({0}));
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// This is called by initializeAfterTaskCreation of the HK manager.
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virtual ReturnValue_t initializeLocalDataPool(
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localpool::DataPool& localDataPoolMap,
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LocalDataPoolManager& poolManager) {
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// Default initialization empty for now.
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localDataPoolMap.emplace(lpool::uint8VarId,
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new PoolEntry<uint8_t>({0}));
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localDataPoolMap.emplace(lpool::floatVarId,
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new PoolEntry<float>({0}));
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localDataPoolMap.emplace(lpool::uint32VarId,
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new PoolEntry<uint32_t>({0}));
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localDataPoolMap.emplace(lpool::uint16Vec3Id,
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new PoolEntry<uint16_t>({0, 0, 0}));
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localDataPoolMap.emplace(lpool::int64Vec2Id,
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new PoolEntry<int64_t>({0, 0}));
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return HasReturnvaluesIF::RETURN_OK;
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}
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localDataPoolMap.emplace(lpool::uint16Vec3Id,
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new PoolEntry<uint16_t>({0, 0, 0}));
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localDataPoolMap.emplace(lpool::int64Vec2Id,
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new PoolEntry<int64_t>({0, 0}));
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return HasReturnvaluesIF::RETURN_OK;
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}
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LocalDataPoolManager* getHkManagerHandle() override {
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return &poolManager;
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}
|
||||
LocalDataPoolManager* getHkManagerHandle() override {
|
||||
return &poolManager;
|
||||
}
|
||||
|
||||
uint32_t getPeriodicOperationFrequency() const override {
|
||||
return 0;
|
||||
}
|
||||
uint32_t getPeriodicOperationFrequency() const override {
|
||||
return 0;
|
||||
}
|
||||
|
||||
/**
|
||||
* This function is used by the pool manager to get a valid dataset
|
||||
/**
|
||||
* This function is used by the pool manager to get a valid dataset
|
||||
* from a SID
|
||||
* @param sid Corresponding structure ID
|
||||
* @return
|
||||
*/
|
||||
virtual LocalPoolDataSetBase* getDataSetHandle(sid_t sid) override {
|
||||
return &dataset;
|
||||
}
|
||||
* @param sid Corresponding structure ID
|
||||
* @return
|
||||
*/
|
||||
virtual LocalPoolDataSetBase* getDataSetHandle(sid_t sid) override {
|
||||
return &dataset;
|
||||
}
|
||||
|
||||
virtual LocalPoolObjectBase* getPoolObjectHandle(
|
||||
lp_id_t localPoolId) override {
|
||||
if(localPoolId == lpool::uint8VarId) {
|
||||
return &testUint8;
|
||||
}
|
||||
else if(localPoolId == lpool::uint16Vec3Id) {
|
||||
return &testUint16Vec;
|
||||
}
|
||||
else if(localPoolId == lpool::floatVarId) {
|
||||
return &testFloat;
|
||||
}
|
||||
else if(localPoolId == lpool::int64Vec2Id) {
|
||||
return &testInt64Vec;
|
||||
}
|
||||
else if(localPoolId == lpool::uint32VarId) {
|
||||
return &testUint32;
|
||||
}
|
||||
else {
|
||||
return &testUint8;
|
||||
}
|
||||
}
|
||||
virtual LocalPoolObjectBase* getPoolObjectHandle(
|
||||
lp_id_t localPoolId) override {
|
||||
if(localPoolId == lpool::uint8VarId) {
|
||||
return &testUint8;
|
||||
}
|
||||
else if(localPoolId == lpool::uint16Vec3Id) {
|
||||
return &testUint16Vec;
|
||||
}
|
||||
else if(localPoolId == lpool::floatVarId) {
|
||||
return &testFloat;
|
||||
}
|
||||
else if(localPoolId == lpool::int64Vec2Id) {
|
||||
return &testInt64Vec;
|
||||
}
|
||||
else if(localPoolId == lpool::uint32VarId) {
|
||||
return &testUint32;
|
||||
}
|
||||
else {
|
||||
return &testUint8;
|
||||
}
|
||||
}
|
||||
|
||||
MessageQueueMockBase* getMockQueueHandle() const {
|
||||
return dynamic_cast<MessageQueueMockBase*>(messageQueue);
|
||||
}
|
||||
MessageQueueMockBase* getMockQueueHandle() const {
|
||||
return dynamic_cast<MessageQueueMockBase*>(messageQueue);
|
||||
}
|
||||
|
||||
ReturnValue_t subscribeWrapperSetUpdate() {
|
||||
return poolManager.subscribeForSetUpdateMessages(lpool::testSetId,
|
||||
objects::NO_OBJECT, MessageQueueIF::NO_QUEUE, false);
|
||||
}
|
||||
ReturnValue_t subscribeWrapperSetUpdate() {
|
||||
return poolManager.subscribeForSetUpdateMessages(lpool::testSetId,
|
||||
objects::NO_OBJECT, MessageQueueIF::NO_QUEUE, false);
|
||||
}
|
||||
|
||||
ReturnValue_t subscribeWrapperSetUpdateHk(bool diagnostics = false) {
|
||||
return poolManager.subscribeForUpdatePackets(lpool::testSid, diagnostics,
|
||||
false, objects::HK_RECEIVER_MOCK);
|
||||
}
|
||||
ReturnValue_t subscribeWrapperSetUpdateHk(bool diagnostics = false) {
|
||||
return poolManager.subscribeForUpdatePackets(lpool::testSid, diagnostics,
|
||||
false, objects::HK_RECEIVER_MOCK);
|
||||
}
|
||||
|
||||
ReturnValue_t subscribeWrapperVariableUpdate(lp_id_t localPoolId) {
|
||||
return poolManager.subscribeForVariableUpdateMessages(localPoolId,
|
||||
MessageQueueIF::NO_QUEUE, objects::NO_OBJECT, false);
|
||||
}
|
||||
ReturnValue_t subscribeWrapperVariableUpdate(lp_id_t localPoolId) {
|
||||
return poolManager.subscribeForVariableUpdateMessages(localPoolId,
|
||||
MessageQueueIF::NO_QUEUE, objects::NO_OBJECT, false);
|
||||
}
|
||||
|
||||
void resetSubscriptionList() {
|
||||
poolManager.clearReceiversList();
|
||||
}
|
||||
void resetSubscriptionList() {
|
||||
poolManager.clearReceiversList();
|
||||
}
|
||||
|
||||
LocalDataPoolManager poolManager;
|
||||
LocalPoolTestDataSet dataset;
|
||||
LocalDataPoolManager poolManager;
|
||||
LocalPoolTestDataSet dataset;
|
||||
private:
|
||||
|
||||
lp_var_t<uint8_t> testUint8 = lp_var_t<uint8_t>(this, lpool::uint8VarId,
|
||||
&dataset);
|
||||
lp_var_t<float> testFloat = lp_var_t<float>(this, lpool::floatVarId,
|
||||
&dataset);
|
||||
lp_var_t<uint32_t> testUint32 = lp_var_t<uint32_t>(this, lpool::uint32VarId);
|
||||
lp_var_t<uint8_t> testUint8 = lp_var_t<uint8_t>(this, lpool::uint8VarId,
|
||||
&dataset);
|
||||
lp_var_t<float> testFloat = lp_var_t<float>(this, lpool::floatVarId,
|
||||
&dataset);
|
||||
lp_var_t<uint32_t> testUint32 = lp_var_t<uint32_t>(this, lpool::uint32VarId);
|
||||
|
||||
lp_vec_t<uint16_t, 3> testUint16Vec = lp_vec_t<uint16_t, 3>(this,
|
||||
lpool::uint16Vec3Id, &dataset);
|
||||
lp_vec_t<int64_t, 2> testInt64Vec = lp_vec_t<int64_t, 2>(this,
|
||||
lpool::int64Vec2Id);
|
||||
lp_vec_t<uint16_t, 3> testUint16Vec = lp_vec_t<uint16_t, 3>(this,
|
||||
lpool::uint16Vec3Id, &dataset);
|
||||
lp_vec_t<int64_t, 2> testInt64Vec = lp_vec_t<int64_t, 2>(this,
|
||||
lpool::int64Vec2Id);
|
||||
|
||||
MessageQueueIF* messageQueue = nullptr;
|
||||
MessageQueueIF* messageQueue = nullptr;
|
||||
|
||||
bool initialized = false;
|
||||
bool initializedAfterTaskCreation = false;
|
||||
bool initialized = false;
|
||||
bool initializedAfterTaskCreation = false;
|
||||
|
||||
};
|
||||
|
||||
|
@ -6,117 +6,117 @@
|
||||
|
||||
|
||||
TEST_CASE("LocalPoolVariable" , "[LocPoolVarTest]") {
|
||||
LocalPoolOwnerBase* poolOwner = objectManager->
|
||||
get<LocalPoolOwnerBase>(objects::TEST_LOCAL_POOL_OWNER_BASE);
|
||||
REQUIRE(poolOwner != nullptr);
|
||||
REQUIRE(poolOwner->initializeHkManager() == retval::CATCH_OK);
|
||||
REQUIRE(poolOwner->initializeHkManagerAfterTaskCreation()
|
||||
== retval::CATCH_OK);
|
||||
LocalPoolOwnerBase* poolOwner = objectManager->
|
||||
get<LocalPoolOwnerBase>(objects::TEST_LOCAL_POOL_OWNER_BASE);
|
||||
REQUIRE(poolOwner != nullptr);
|
||||
REQUIRE(poolOwner->initializeHkManager() == retval::CATCH_OK);
|
||||
REQUIRE(poolOwner->initializeHkManagerAfterTaskCreation()
|
||||
== retval::CATCH_OK);
|
||||
|
||||
SECTION("Basic Tests") {
|
||||
// very basic test.
|
||||
lp_var_t<uint8_t> testVariable = lp_var_t<uint8_t>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint8VarId);
|
||||
REQUIRE(testVariable.read() == retval::CATCH_OK);
|
||||
CHECK(testVariable.value == 0);
|
||||
testVariable.value = 5;
|
||||
REQUIRE(testVariable.commit() == retval::CATCH_OK);
|
||||
REQUIRE(testVariable.read() == retval::CATCH_OK);
|
||||
REQUIRE(testVariable.value == 5);
|
||||
CHECK(not testVariable.isValid());
|
||||
testVariable.setValid(true);
|
||||
CHECK(testVariable.isValid());
|
||||
CHECK(testVariable.commit(true) == retval::CATCH_OK);
|
||||
SECTION("Basic Tests") {
|
||||
/* very basic test. */
|
||||
lp_var_t<uint8_t> testVariable = lp_var_t<uint8_t>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint8VarId);
|
||||
REQUIRE(testVariable.read() == retval::CATCH_OK);
|
||||
CHECK(testVariable.value == 0);
|
||||
testVariable.value = 5;
|
||||
REQUIRE(testVariable.commit() == retval::CATCH_OK);
|
||||
REQUIRE(testVariable.read() == retval::CATCH_OK);
|
||||
REQUIRE(testVariable.value == 5);
|
||||
CHECK(not testVariable.isValid());
|
||||
testVariable.setValid(true);
|
||||
CHECK(testVariable.isValid());
|
||||
CHECK(testVariable.commit(true) == retval::CATCH_OK);
|
||||
|
||||
testVariable.setReadWriteMode(pool_rwm_t::VAR_READ);
|
||||
CHECK(testVariable.getReadWriteMode() == pool_rwm_t::VAR_READ);
|
||||
testVariable.setReadWriteMode(pool_rwm_t::VAR_READ_WRITE);
|
||||
testVariable.setReadWriteMode(pool_rwm_t::VAR_READ);
|
||||
CHECK(testVariable.getReadWriteMode() == pool_rwm_t::VAR_READ);
|
||||
testVariable.setReadWriteMode(pool_rwm_t::VAR_READ_WRITE);
|
||||
|
||||
testVariable.setDataPoolId(22);
|
||||
CHECK(testVariable.getDataPoolId() == 22);
|
||||
testVariable.setDataPoolId(lpool::uint8VarId);
|
||||
testVariable.setDataPoolId(22);
|
||||
CHECK(testVariable.getDataPoolId() == 22);
|
||||
testVariable.setDataPoolId(lpool::uint8VarId);
|
||||
|
||||
testVariable.setChanged(true);
|
||||
CHECK(testVariable.hasChanged());
|
||||
testVariable.setChanged(false);
|
||||
testVariable.setChanged(true);
|
||||
CHECK(testVariable.hasChanged());
|
||||
testVariable.setChanged(false);
|
||||
|
||||
gp_id_t globPoolId(objects::TEST_LOCAL_POOL_OWNER_BASE,
|
||||
lpool::uint8VarId);
|
||||
lp_var_t<uint8_t> testVariable2 = lp_var_t<uint8_t>(globPoolId);
|
||||
REQUIRE(testVariable2.read() == retval::CATCH_OK);
|
||||
CHECK(testVariable2 == 5);
|
||||
CHECK(testVariable == testVariable2);
|
||||
testVariable = 10;
|
||||
CHECK(testVariable != 5);
|
||||
//CHECK(not testVariable != testVariable2);
|
||||
uint8_t variableRaw = 0;
|
||||
uint8_t* varPtr = &variableRaw;
|
||||
size_t maxSize = testVariable.getSerializedSize();
|
||||
CHECK(maxSize == 1);
|
||||
size_t serSize = 0;
|
||||
CHECK(testVariable.serialize(&varPtr, &serSize, maxSize,
|
||||
SerializeIF::Endianness::MACHINE) == retval::CATCH_OK);
|
||||
CHECK(variableRaw == 10);
|
||||
const uint8_t* varConstPtr = &variableRaw;
|
||||
testVariable = 5;
|
||||
CHECK(testVariable.deSerialize(&varConstPtr, &serSize,
|
||||
SerializeIF::Endianness::MACHINE) == retval::CATCH_OK);
|
||||
CHECK(testVariable == 10);
|
||||
CHECK(testVariable != testVariable2);
|
||||
CHECK(testVariable2 < testVariable);
|
||||
CHECK(testVariable2 < 10);
|
||||
CHECK(testVariable > 5);
|
||||
CHECK(testVariable > testVariable2);
|
||||
variableRaw = static_cast<uint8_t>(testVariable2);
|
||||
CHECK(variableRaw == 5);
|
||||
gp_id_t globPoolId(objects::TEST_LOCAL_POOL_OWNER_BASE,
|
||||
lpool::uint8VarId);
|
||||
lp_var_t<uint8_t> testVariable2 = lp_var_t<uint8_t>(globPoolId);
|
||||
REQUIRE(testVariable2.read() == retval::CATCH_OK);
|
||||
CHECK(testVariable2 == 5);
|
||||
CHECK(testVariable == testVariable2);
|
||||
testVariable = 10;
|
||||
CHECK(testVariable != 5);
|
||||
//CHECK(not testVariable != testVariable2);
|
||||
uint8_t variableRaw = 0;
|
||||
uint8_t* varPtr = &variableRaw;
|
||||
size_t maxSize = testVariable.getSerializedSize();
|
||||
CHECK(maxSize == 1);
|
||||
size_t serSize = 0;
|
||||
CHECK(testVariable.serialize(&varPtr, &serSize, maxSize,
|
||||
SerializeIF::Endianness::MACHINE) == retval::CATCH_OK);
|
||||
CHECK(variableRaw == 10);
|
||||
const uint8_t* varConstPtr = &variableRaw;
|
||||
testVariable = 5;
|
||||
CHECK(testVariable.deSerialize(&varConstPtr, &serSize,
|
||||
SerializeIF::Endianness::MACHINE) == retval::CATCH_OK);
|
||||
CHECK(testVariable == 10);
|
||||
CHECK(testVariable != testVariable2);
|
||||
CHECK(testVariable2 < testVariable);
|
||||
CHECK(testVariable2 < 10);
|
||||
CHECK(testVariable > 5);
|
||||
CHECK(testVariable > testVariable2);
|
||||
variableRaw = static_cast<uint8_t>(testVariable2);
|
||||
CHECK(variableRaw == 5);
|
||||
|
||||
CHECK(testVariable == 10);
|
||||
testVariable = testVariable2;
|
||||
CHECK(testVariable == 5);
|
||||
}
|
||||
CHECK(testVariable == 10);
|
||||
testVariable = testVariable2;
|
||||
CHECK(testVariable == 5);
|
||||
}
|
||||
|
||||
SECTION("ErrorHandling") {
|
||||
SECTION("ErrorHandling") {
|
||||
|
||||
// not try to use a local pool variable which does not exist
|
||||
lp_var_t<uint8_t> invalidVariable = lp_var_t<uint8_t>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, 0xffffffff);
|
||||
REQUIRE(invalidVariable.read() ==
|
||||
static_cast<int>(localpool::POOL_ENTRY_NOT_FOUND));
|
||||
/* now try to use a local pool variable which does not exist */
|
||||
lp_var_t<uint8_t> invalidVariable = lp_var_t<uint8_t>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, 0xffffffff);
|
||||
REQUIRE(invalidVariable.read() ==
|
||||
static_cast<int>(localpool::POOL_ENTRY_NOT_FOUND));
|
||||
|
||||
REQUIRE(invalidVariable.commit() ==
|
||||
static_cast<int>(localpool::POOL_ENTRY_NOT_FOUND));
|
||||
// now try to access with wrong type
|
||||
lp_var_t<int8_t> invalidVariable2 = lp_var_t<int8_t>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint8VarId);
|
||||
REQUIRE(invalidVariable2.read() ==
|
||||
static_cast<int>(localpool::POOL_ENTRY_TYPE_CONFLICT));
|
||||
REQUIRE(invalidVariable.commit() ==
|
||||
static_cast<int>(localpool::POOL_ENTRY_NOT_FOUND));
|
||||
/* now try to access with wrong type */
|
||||
lp_var_t<int8_t> invalidVariable2 = lp_var_t<int8_t>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint8VarId);
|
||||
REQUIRE(invalidVariable2.read() ==
|
||||
static_cast<int>(localpool::POOL_ENTRY_TYPE_CONFLICT));
|
||||
|
||||
lp_var_t<uint8_t> readOnlyVar = lp_var_t<uint8_t>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint8VarId,
|
||||
nullptr, pool_rwm_t::VAR_READ);
|
||||
REQUIRE(readOnlyVar.commit() ==
|
||||
static_cast<int>(PoolVariableIF::INVALID_READ_WRITE_MODE));
|
||||
lp_var_t<uint8_t> writeOnlyVar = lp_var_t<uint8_t>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint8VarId,
|
||||
nullptr, pool_rwm_t::VAR_WRITE);
|
||||
REQUIRE(writeOnlyVar.read() == static_cast<int>(
|
||||
PoolVariableIF::INVALID_READ_WRITE_MODE));
|
||||
lp_var_t<uint8_t> readOnlyVar = lp_var_t<uint8_t>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint8VarId,
|
||||
nullptr, pool_rwm_t::VAR_READ);
|
||||
REQUIRE(readOnlyVar.commit() ==
|
||||
static_cast<int>(PoolVariableIF::INVALID_READ_WRITE_MODE));
|
||||
lp_var_t<uint8_t> writeOnlyVar = lp_var_t<uint8_t>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint8VarId,
|
||||
nullptr, pool_rwm_t::VAR_WRITE);
|
||||
REQUIRE(writeOnlyVar.read() == static_cast<int>(
|
||||
PoolVariableIF::INVALID_READ_WRITE_MODE));
|
||||
|
||||
lp_var_t<uint32_t> uint32tVar = lp_var_t<uint32_t>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint32VarId);
|
||||
lp_var_t<uint32_t> uint32tVar = lp_var_t<uint32_t>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint32VarId);
|
||||
#if FSFW_CPP_OSTREAM_ENABLED == 1
|
||||
sif::info << "LocalPoolVariable printout: " <<uint32tVar << std::endl;
|
||||
sif::info << "LocalPoolVariable printout: " <<uint32tVar << std::endl;
|
||||
#endif
|
||||
|
||||
// for code coverage. If program does not crash -> OK
|
||||
lp_var_t<uint8_t> invalidObjectVar = lp_var_t<uint8_t>(
|
||||
0xffffffff, lpool::uint8VarId);
|
||||
gp_id_t globPoolId(0xffffffff,
|
||||
lpool::uint8VarId);
|
||||
lp_var_t<uint8_t> invalidObjectVar2 = lp_var_t<uint8_t>(globPoolId);
|
||||
lp_var_t<uint8_t> invalidObjectVar3 = lp_var_t<uint8_t>(nullptr,
|
||||
lpool::uint8VarId);
|
||||
}
|
||||
/* for code coverage. If program does not crash -> OK */
|
||||
lp_var_t<uint8_t> invalidObjectVar = lp_var_t<uint8_t>(
|
||||
0xffffffff, lpool::uint8VarId);
|
||||
gp_id_t globPoolId(0xffffffff,
|
||||
lpool::uint8VarId);
|
||||
lp_var_t<uint8_t> invalidObjectVar2 = lp_var_t<uint8_t>(globPoolId);
|
||||
lp_var_t<uint8_t> invalidObjectVar3 = lp_var_t<uint8_t>(nullptr,
|
||||
lpool::uint8VarId);
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
|
@ -5,116 +5,116 @@
|
||||
#include <unittest/core/CatchDefinitions.h>
|
||||
|
||||
TEST_CASE("LocalPoolVector" , "[LocPoolVecTest]") {
|
||||
LocalPoolOwnerBase* poolOwner = objectManager->
|
||||
get<LocalPoolOwnerBase>(objects::TEST_LOCAL_POOL_OWNER_BASE);
|
||||
REQUIRE(poolOwner != nullptr);
|
||||
REQUIRE(poolOwner->initializeHkManager() == retval::CATCH_OK);
|
||||
REQUIRE(poolOwner->initializeHkManagerAfterTaskCreation()
|
||||
== retval::CATCH_OK);
|
||||
LocalPoolOwnerBase* poolOwner = objectManager->
|
||||
get<LocalPoolOwnerBase>(objects::TEST_LOCAL_POOL_OWNER_BASE);
|
||||
REQUIRE(poolOwner != nullptr);
|
||||
REQUIRE(poolOwner->initializeHkManager() == retval::CATCH_OK);
|
||||
REQUIRE(poolOwner->initializeHkManagerAfterTaskCreation()
|
||||
== retval::CATCH_OK);
|
||||
|
||||
SECTION("BasicTest") {
|
||||
// very basic test.
|
||||
lp_vec_t<uint16_t, 3> testVector = lp_vec_t<uint16_t, 3>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint16Vec3Id);
|
||||
REQUIRE(testVector.read() == retval::CATCH_OK);
|
||||
testVector.value[0] = 5;
|
||||
testVector.value[1] = 232;
|
||||
testVector.value[2] = 32023;
|
||||
SECTION("BasicTest") {
|
||||
// very basic test.
|
||||
lp_vec_t<uint16_t, 3> testVector = lp_vec_t<uint16_t, 3>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint16Vec3Id);
|
||||
REQUIRE(testVector.read() == retval::CATCH_OK);
|
||||
testVector.value[0] = 5;
|
||||
testVector.value[1] = 232;
|
||||
testVector.value[2] = 32023;
|
||||
|
||||
REQUIRE(testVector.commit(true) == retval::CATCH_OK);
|
||||
CHECK(testVector.isValid());
|
||||
REQUIRE(testVector.commit(true) == retval::CATCH_OK);
|
||||
CHECK(testVector.isValid());
|
||||
|
||||
testVector.value[0] = 0;
|
||||
testVector.value[1] = 0;
|
||||
testVector.value[2] = 0;
|
||||
testVector.value[0] = 0;
|
||||
testVector.value[1] = 0;
|
||||
testVector.value[2] = 0;
|
||||
|
||||
CHECK(testVector.read() == retval::CATCH_OK);
|
||||
CHECK(testVector.value[0] == 5);
|
||||
CHECK(testVector.value[1] == 232);
|
||||
CHECK(testVector.value[2] == 32023);
|
||||
CHECK(testVector.read() == retval::CATCH_OK);
|
||||
CHECK(testVector.value[0] == 5);
|
||||
CHECK(testVector.value[1] == 232);
|
||||
CHECK(testVector.value[2] == 32023);
|
||||
|
||||
CHECK(testVector[0] == 5);
|
||||
CHECK(testVector[0] == 5);
|
||||
|
||||
// This is invalid access, so the last value will be set instead.
|
||||
// (we can't throw exceptions)
|
||||
testVector[4] = 12;
|
||||
CHECK(testVector[2] == 12);
|
||||
CHECK(testVector.commit() == retval::CATCH_OK);
|
||||
/* This is invalid access, so the last value will be set instead.
|
||||
(we can't throw exceptions) */
|
||||
testVector[4] = 12;
|
||||
CHECK(testVector[2] == 12);
|
||||
CHECK(testVector.commit() == retval::CATCH_OK);
|
||||
|
||||
// Use read-only reference.
|
||||
const lp_vec_t<uint16_t, 3>& roTestVec = testVector;
|
||||
uint16_t valueOne = roTestVec[0];
|
||||
CHECK(valueOne == 5);
|
||||
/* Use read-only reference. */
|
||||
const lp_vec_t<uint16_t, 3>& roTestVec = testVector;
|
||||
uint16_t valueOne = roTestVec[0];
|
||||
CHECK(valueOne == 5);
|
||||
|
||||
uint16_t lastVal = roTestVec[25];
|
||||
CHECK(lastVal == 12);
|
||||
uint16_t lastVal = roTestVec[25];
|
||||
CHECK(lastVal == 12);
|
||||
|
||||
size_t maxSize = testVector.getSerializedSize();
|
||||
CHECK(maxSize == 6);
|
||||
size_t maxSize = testVector.getSerializedSize();
|
||||
CHECK(maxSize == 6);
|
||||
|
||||
uint16_t serializedVector[3];
|
||||
uint8_t* vecPtr = reinterpret_cast<uint8_t*>(serializedVector);
|
||||
size_t serSize = 0;
|
||||
REQUIRE(testVector.serialize(&vecPtr, &serSize,
|
||||
maxSize, SerializeIF::Endianness::MACHINE) == retval::CATCH_OK);
|
||||
uint16_t serializedVector[3];
|
||||
uint8_t* vecPtr = reinterpret_cast<uint8_t*>(serializedVector);
|
||||
size_t serSize = 0;
|
||||
REQUIRE(testVector.serialize(&vecPtr, &serSize,
|
||||
maxSize, SerializeIF::Endianness::MACHINE) == retval::CATCH_OK);
|
||||
|
||||
CHECK(serSize == 6);
|
||||
CHECK(serializedVector[0] == 5);
|
||||
CHECK(serializedVector[1] == 232);
|
||||
CHECK(serializedVector[2] == 12);
|
||||
CHECK(serSize == 6);
|
||||
CHECK(serializedVector[0] == 5);
|
||||
CHECK(serializedVector[1] == 232);
|
||||
CHECK(serializedVector[2] == 12);
|
||||
|
||||
maxSize = 1;
|
||||
REQUIRE(testVector.serialize(&vecPtr, &serSize,
|
||||
maxSize, SerializeIF::Endianness::MACHINE) ==
|
||||
static_cast<int>(SerializeIF::BUFFER_TOO_SHORT));
|
||||
maxSize = 1;
|
||||
REQUIRE(testVector.serialize(&vecPtr, &serSize,
|
||||
maxSize, SerializeIF::Endianness::MACHINE) ==
|
||||
static_cast<int>(SerializeIF::BUFFER_TOO_SHORT));
|
||||
|
||||
serializedVector[0] = 16;
|
||||
serializedVector[1] = 7832;
|
||||
serializedVector[2] = 39232;
|
||||
serializedVector[0] = 16;
|
||||
serializedVector[1] = 7832;
|
||||
serializedVector[2] = 39232;
|
||||
|
||||
const uint8_t* constVecPtr = reinterpret_cast<const uint8_t*>(
|
||||
serializedVector);
|
||||
REQUIRE(testVector.deSerialize(&constVecPtr, &serSize,
|
||||
SerializeIF::Endianness::MACHINE) == retval::CATCH_OK);
|
||||
CHECK(testVector[0] == 16);
|
||||
CHECK(testVector[1] == 7832);
|
||||
CHECK(testVector[2] == 39232);
|
||||
const uint8_t* constVecPtr = reinterpret_cast<const uint8_t*>(
|
||||
serializedVector);
|
||||
REQUIRE(testVector.deSerialize(&constVecPtr, &serSize,
|
||||
SerializeIF::Endianness::MACHINE) == retval::CATCH_OK);
|
||||
CHECK(testVector[0] == 16);
|
||||
CHECK(testVector[1] == 7832);
|
||||
CHECK(testVector[2] == 39232);
|
||||
|
||||
serSize = 1;
|
||||
REQUIRE(testVector.deSerialize(&constVecPtr, &serSize,
|
||||
SerializeIF::Endianness::MACHINE) ==
|
||||
static_cast<int>(SerializeIF::STREAM_TOO_SHORT));
|
||||
}
|
||||
serSize = 1;
|
||||
REQUIRE(testVector.deSerialize(&constVecPtr, &serSize,
|
||||
SerializeIF::Endianness::MACHINE) ==
|
||||
static_cast<int>(SerializeIF::STREAM_TOO_SHORT));
|
||||
}
|
||||
|
||||
SECTION("ErrorHandling") {
|
||||
// not try to use a local pool variable which does not exist
|
||||
lp_vec_t<uint16_t, 3> invalidVector = lp_vec_t<uint16_t, 3>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, 0xffffffff);
|
||||
REQUIRE(invalidVector.read() ==
|
||||
static_cast<int>(localpool::POOL_ENTRY_NOT_FOUND));
|
||||
REQUIRE(invalidVector.commit() ==
|
||||
static_cast<int>(localpool::POOL_ENTRY_NOT_FOUND));
|
||||
SECTION("ErrorHandling") {
|
||||
/* Now try to use a local pool variable which does not exist */
|
||||
lp_vec_t<uint16_t, 3> invalidVector = lp_vec_t<uint16_t, 3>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, 0xffffffff);
|
||||
REQUIRE(invalidVector.read() ==
|
||||
static_cast<int>(localpool::POOL_ENTRY_NOT_FOUND));
|
||||
REQUIRE(invalidVector.commit() ==
|
||||
static_cast<int>(localpool::POOL_ENTRY_NOT_FOUND));
|
||||
|
||||
// now try to access with wrong type
|
||||
lp_vec_t<uint32_t, 3> invalidVector2 = lp_vec_t<uint32_t, 3>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint16Vec3Id);
|
||||
REQUIRE(invalidVector2.read() ==
|
||||
static_cast<int>(localpool::POOL_ENTRY_TYPE_CONFLICT));
|
||||
REQUIRE(invalidVector2.commit() ==
|
||||
static_cast<int>(localpool::POOL_ENTRY_TYPE_CONFLICT));
|
||||
/* Now try to access with wrong type */
|
||||
lp_vec_t<uint32_t, 3> invalidVector2 = lp_vec_t<uint32_t, 3>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint16Vec3Id);
|
||||
REQUIRE(invalidVector2.read() ==
|
||||
static_cast<int>(localpool::POOL_ENTRY_TYPE_CONFLICT));
|
||||
REQUIRE(invalidVector2.commit() ==
|
||||
static_cast<int>(localpool::POOL_ENTRY_TYPE_CONFLICT));
|
||||
|
||||
lp_vec_t<uint16_t, 3> writeOnlyVec = lp_vec_t<uint16_t, 3>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint16Vec3Id,
|
||||
nullptr, pool_rwm_t::VAR_WRITE);
|
||||
REQUIRE(writeOnlyVec.read() ==
|
||||
static_cast<int>(PoolVariableIF::INVALID_READ_WRITE_MODE));
|
||||
lp_vec_t<uint16_t, 3> writeOnlyVec = lp_vec_t<uint16_t, 3>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint16Vec3Id,
|
||||
nullptr, pool_rwm_t::VAR_WRITE);
|
||||
REQUIRE(writeOnlyVec.read() ==
|
||||
static_cast<int>(PoolVariableIF::INVALID_READ_WRITE_MODE));
|
||||
|
||||
lp_vec_t<uint16_t, 3> readOnlyVec = lp_vec_t<uint16_t, 3>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint16Vec3Id,
|
||||
nullptr, pool_rwm_t::VAR_READ);
|
||||
REQUIRE(readOnlyVec.commit() ==
|
||||
static_cast<int>(PoolVariableIF::INVALID_READ_WRITE_MODE));
|
||||
}
|
||||
lp_vec_t<uint16_t, 3> readOnlyVec = lp_vec_t<uint16_t, 3>(
|
||||
objects::TEST_LOCAL_POOL_OWNER_BASE, lpool::uint16Vec3Id,
|
||||
nullptr, pool_rwm_t::VAR_READ);
|
||||
REQUIRE(readOnlyVec.commit() ==
|
||||
static_cast<int>(PoolVariableIF::INVALID_READ_WRITE_MODE));
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
|
Loading…
Reference in New Issue
Block a user