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493f89e0cb
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45054cc863
@ -186,19 +186,19 @@ void scheduling::initTasks() {
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scheduling::printAddObjectError("LIVE_TM", objects::LIVE_TM_TASK);
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}
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PeriodicTaskIF* logTmTask = factory->createPeriodicTask(
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"LOG_PSTORE", 15, PeriodicTaskIF::MINIMUM_STACK_SIZE, 1.0, nullptr);
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"LOG_PSTORE", 120, PeriodicTaskIF::MINIMUM_STACK_SIZE, 1.0, nullptr);
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result = logTmTask->addComponent(objects::LOG_STORE_AND_TM_TASK);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("LOG_STORE_AND_TM", objects::LOG_STORE_AND_TM_TASK);
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}
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PeriodicTaskIF* hkTmTask = factory->createPeriodicTask(
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"HK_PSTORE", 15, PeriodicTaskIF::MINIMUM_STACK_SIZE, 1.0, nullptr);
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"HK_PSTORE", 120, PeriodicTaskIF::MINIMUM_STACK_SIZE, 1.0, nullptr);
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result = hkTmTask->addComponent(objects::HK_STORE_AND_TM_TASK);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("HK_STORE_AND_TM", objects::HK_STORE_AND_TM_TASK);
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}
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PeriodicTaskIF* cfdpTmTask = factory->createPeriodicTask(
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"CFDP_PSTORE", 15, PeriodicTaskIF::MINIMUM_STACK_SIZE, 1.0, nullptr);
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"CFDP_PSTORE", 120, PeriodicTaskIF::MINIMUM_STACK_SIZE, 1.0, nullptr);
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result = cfdpTmTask->addComponent(objects::CFDP_STORE_AND_TM_TASK);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("CFDP_STORE_AND_TM", objects::CFDP_STORE_AND_TM_TASK);
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2
fsfw
2
fsfw
@ -1 +1 @@
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Subproject commit 33ac395072f0145b6e80e12deae978a5e0432f08
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Subproject commit db4587bb59603bdc83e6720193fd1782649a0678
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@ -26,19 +26,24 @@ ReturnValue_t PapbVcInterface::initialize() {
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}
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ReturnValue_t PapbVcInterface::write(const uint8_t* data, size_t size) {
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if (pollPapbBusySignal() == returnvalue::OK) {
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if (pollPapbBusySignal(0, 0) == returnvalue::OK) {
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startPacketTransfer();
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} else {
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return DirectTmSinkIF::IS_BUSY;
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}
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for (size_t idx = 0; idx < size; idx++) {
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if (pollPapbBusySignal() == returnvalue::OK) {
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if (pollPapbBusySignal(10, 10) == returnvalue::OK) {
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*(vcBaseReg + DATA_REG_OFFSET) = static_cast<uint32_t>(data[idx]);
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} else {
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abortPacketTransfer();
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return DirectTmSinkIF::IS_BUSY;
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return returnvalue::FAILED;
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}
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}
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if (pollPapbBusySignal() == returnvalue::OK) {
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if (pollPapbBusySignal(10, 10) == returnvalue::OK) {
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completePacketTransfer();
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} else {
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abortPacketTransfer();
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return returnvalue::FAILED;
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}
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return returnvalue::OK;
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}
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@ -47,11 +52,11 @@ void PapbVcInterface::startPacketTransfer() { *vcBaseReg = CONFIG_START; }
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void PapbVcInterface::completePacketTransfer() { *vcBaseReg = CONFIG_END; }
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ReturnValue_t PapbVcInterface::pollPapbBusySignal() const {
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ReturnValue_t PapbVcInterface::pollPapbBusySignal(uint32_t maxPollRetries,
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uint32_t retryDelayUs) const {
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gpio::Levels papbBusyState = gpio::Levels::LOW;
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ReturnValue_t result;
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uint32_t busyIdx = 0;
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uint32_t delayCount = 0;
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while (true) {
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/** Check if PAPB interface is ready to receive data */
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@ -64,16 +69,13 @@ ReturnValue_t PapbVcInterface::pollPapbBusySignal() const {
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if (papbBusyState == gpio::Levels::HIGH) {
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return returnvalue::OK;
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}
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if (busyIdx == 3) {
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usleep(100);
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busyIdx = 0;
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delayCount += 1;
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continue;
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}
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if (delayCount == 1000) {
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busyIdx++;
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if (busyIdx >= maxPollRetries) {
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return PAPB_BUSY;
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}
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busyIdx++;
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usleep(retryDelayUs);
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}
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return returnvalue::OK;
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}
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@ -98,7 +100,9 @@ void PapbVcInterface::isVcInterfaceBufferEmpty() {
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return;
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}
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bool PapbVcInterface::isBusy() const { return pollPapbBusySignal() == PAPB_BUSY; }
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bool PapbVcInterface::isBusy() const { return pollPapbBusySignal(0, 0) == PAPB_BUSY; }
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void PapbVcInterface::cancelTransfer() { abortPacketTransfer(); }
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ReturnValue_t PapbVcInterface::sendTestFrame() {
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/** Size of one complete transfer frame data field amounts to 1105 bytes */
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@ -41,6 +41,8 @@ class PapbVcInterface : public VirtualChannelIF {
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*/
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ReturnValue_t write(const uint8_t* data, size_t size) override;
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void cancelTransfer() override;
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ReturnValue_t initialize() override;
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private:
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@ -109,7 +111,7 @@ class PapbVcInterface : public VirtualChannelIF {
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*
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* @return returnvalue::OK when ready to receive data else PAPB_BUSY.
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*/
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ReturnValue_t pollPapbBusySignal() const;
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ReturnValue_t pollPapbBusySignal(uint32_t maxPollRetries, uint32_t retryDelayUs) const;
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/**
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* @brief This function can be used for debugging to check whether there are packets in
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@ -20,7 +20,6 @@ ReturnValue_t Ptme::initialize() {
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}
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ReturnValue_t Ptme::writeToVc(uint8_t vcId, const uint8_t* data, size_t size) {
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ReturnValue_t result = returnvalue::OK;
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VcInterfaceMapIter vcInterfaceMapIter = vcInterfaceMap.find(vcId);
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if (vcInterfaceMapIter == vcInterfaceMap.end()) {
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sif::warning << "Ptme::writeToVc: No virtual channel interface found for the virtual "
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@ -28,8 +27,7 @@ ReturnValue_t Ptme::writeToVc(uint8_t vcId, const uint8_t* data, size_t size) {
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<< static_cast<unsigned int>(vcId) << std::endl;
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return UNKNOWN_VC_ID;
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}
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result = vcInterfaceMapIter->second->write(data, size);
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return result;
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return vcInterfaceMapIter->second->write(data, size);
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}
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void Ptme::addVcInterface(VcId_t vcId, VirtualChannelIF* vc) {
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@ -62,3 +60,11 @@ bool Ptme::isBusy(uint8_t vcId) const {
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}
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return vcInterfaceMapIter->second->isBusy();
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}
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void Ptme::cancelTransfer(uint8_t vcId) {
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VcInterfaceMapIter vcInterfaceMapIter = vcInterfaceMap.find(vcId);
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if (vcInterfaceMapIter == vcInterfaceMap.end()) {
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return;
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}
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return vcInterfaceMapIter->second->cancelTransfer();
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}
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@ -36,6 +36,7 @@ class Ptme : public PtmeIF, public SystemObject {
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ReturnValue_t initialize() override;
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ReturnValue_t writeToVc(uint8_t vcId, const uint8_t* data, size_t size) override;
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bool isBusy(uint8_t vcId) const override;
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void cancelTransfer(uint8_t vcId) override;
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/**
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* @brief This function adds the reference to a virtual channel interface to the vcInterface
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@ -23,6 +23,7 @@ class PtmeIF {
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*/
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virtual ReturnValue_t writeToVc(uint8_t vcId, const uint8_t* data, size_t size) = 0;
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virtual bool isBusy(uint8_t vcId) const = 0;
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virtual void cancelTransfer(uint8_t vcId) = 0;
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};
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#endif /* LINUX_OBC_PTMEIF_H_ */
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@ -18,6 +18,7 @@ class VirtualChannelIF : public DirectTmSinkIF {
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virtual ~VirtualChannelIF(){};
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virtual ReturnValue_t initialize() = 0;
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virtual void cancelTransfer() = 0;
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};
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#endif /* LINUX_OBC_VCINTERFACEIF_H_ */
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@ -206,6 +206,8 @@ ReturnValue_t CcsdsIpCoreHandler::executeAction(ActionId_t actionId, MessageQueu
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void CcsdsIpCoreHandler::updateLinkState() { linkState = LINK_UP; }
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void CcsdsIpCoreHandler::enableTransmit() {
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// Reset PTME on each transmit enable.
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updateBatPriorityFromParam();
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#ifndef TE0720_1CFA
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gpioIF->pullHigh(ptmeGpios.enableTxClock);
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gpioIF->pullHigh(ptmeGpios.enableTxData);
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@ -32,10 +32,10 @@ ReturnValue_t PersistentLogTmStoreTask::performOperation(uint8_t opCode) {
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stateHandlingForStore(handleOneStore(stores.notOkStore, notOkStoreContext));
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stateHandlingForStore(handleOneStore(stores.miscStore, miscStoreContext));
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if (not someonesBusy) {
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TaskFactory::delayTask(40);
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} else if (someFileWasSwapped and graceDelayDuringDumping.hasTimedOut()) {
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TaskFactory::delayTask(100);
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} else /* and graceDelayDuringDumping.hasTimedOut()*/ {
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if (someFileWasSwapped) {
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TaskFactory::delayTask(1);
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TaskFactory::delayTask(20);
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}
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// TaskFactory::delayTask(2);
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// graceDelayDuringDumping.resetTimer();
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@ -17,10 +17,10 @@ ReturnValue_t PersistentSingleTmStoreTask::performOperation(uint8_t opCode) {
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}
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bool busy = handleOneStore(storeWithQueue, dumpContext);
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if (not busy) {
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TaskFactory::delayTask(40);
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TaskFactory::delayTask(100);
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} else {
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if (fileHasSwapped) {
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TaskFactory::delayTask(1);
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TaskFactory::delayTask(20);
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}
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// if (fileHasSwapped and graceDelayDuringDumping.hasTimedOut()) {
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// TaskFactory::delayTask(2);
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@ -218,7 +218,7 @@ ReturnValue_t PersistentTmStore::loadNextDumpFile() {
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}
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// sif::debug << "Path: " << dumpParams.dirEntry.path() << std::endl;
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// Can't even read CCSDS header.
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// File empty or can't even read CCSDS header.
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if (dumpParams.fileSize <= 6) {
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continue;
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}
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tmSinkBusyCd.resetTimer();
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result = store.dumpNextPacket(channel, dumpedLen, fileHasSwapped);
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if (result == DirectTmSinkIF::IS_BUSY) {
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sif::warning << "PersistentTmStore: PAPB was too busy for dump" << std::endl;
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sif::warning << "Unexpected PAPB busy" << std::endl;
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}
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if ((result == PersistentTmStore::DUMP_DONE or result == returnvalue::OK) and dumpedLen > 0) {
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dumpContext.dumpedBytes += dumpedLen;
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@ -45,6 +45,13 @@ bool TmStoreTaskBase::handleOneStore(PersistentTmStoreWithTmQueue& store,
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} else if (result == returnvalue::OK) {
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dumpsPerformed = true;
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}
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} else {
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dumpContext.ptmeBusyCounter++;
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if (dumpContext.ptmeBusyCounter == 50) {
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sif::warning << "PTME busy for longer period. Dumped length so far: "
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<< dumpContext.dumpedBytes << std::endl;
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dumpContext.ptmeBusyCounter = 0;
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}
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}
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if (cancelDumpCd.hasTimedOut() or tmSinkBusyCd.hasTimedOut()) {
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triggerEvent(persTmStore::DUMP_WAS_CANCELLED, store.getObjectId());
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const Event eventIfDone;
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uint32_t numberOfDumpedPackets = 0;
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uint32_t dumpedBytes = 0;
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uint32_t ptmeBusyCounter = 0;
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};
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TmStoreTaskBase(object_id_t objectId, StorageManagerIF& ipcStore, VirtualChannel& channel,
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@ -25,4 +25,12 @@ uint8_t VirtualChannel::getVcid() const { return vcId; }
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const char* VirtualChannel::getName() const { return vcName.c_str(); }
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bool VirtualChannel::isBusy() const { return ptme.isBusy(vcId); }
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bool VirtualChannel::isBusy() const {
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// Data is discarded, so channel is not busy.
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if (linkStateProvider.load()) {
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return false;
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}
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return ptme.isBusy(vcId);
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}
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void VirtualChannel::cancelTransfer() { ptme.cancelTransfer(vcId); }
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@ -28,6 +28,7 @@ class VirtualChannel : public SystemObject, public VirtualChannelIF {
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ReturnValue_t sendNextTm(const uint8_t* data, size_t size);
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bool isBusy() const override;
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ReturnValue_t write(const uint8_t* data, size_t size) override;
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void cancelTransfer() override;
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uint8_t getVcid() const;
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const char* getName() const;
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