Merge branch 'development' into mueller/gpio-update
This commit is contained in:
commit
ea3812fbbd
@ -15,11 +15,6 @@
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#include <cerrno>
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#include <cstring>
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/* Can be used for low-level debugging of the SPI bus */
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#ifndef FSFW_HAL_LINUX_SPI_WIRETAPPING
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#define FSFW_HAL_LINUX_SPI_WIRETAPPING 0
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#endif
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SpiComIF::SpiComIF(object_id_t objectId, GpioIF* gpioComIF):
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SystemObject(objectId), gpioComIF(gpioComIF) {
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if(gpioComIF == nullptr) {
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@ -193,7 +188,7 @@ ReturnValue_t SpiComIF::performRegularSendOperation(SpiCookie *spiCookie, const
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spiCookie->getSpiParameters(spiMode, spiSpeed, nullptr);
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setSpiSpeedAndMode(fileDescriptor, spiMode, spiSpeed);
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spiCookie->assignWriteBuffer(sendData);
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spiCookie->assignTransferSize(sendLen);
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spiCookie->setTransferSize(sendLen);
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bool fullDuplex = spiCookie->isFullDuplex();
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gpioId_t gpioId = spiCookie->getChipSelectPin();
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@ -335,6 +330,7 @@ ReturnValue_t SpiComIF::readReceivedMessage(CookieIF *cookie, uint8_t **buffer,
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*buffer = rxBuf;
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*size = spiCookie->getCurrentTransferSize();
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spiCookie->setTransferSize(0);
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return HasReturnvaluesIF::RETURN_OK;
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}
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@ -1,6 +1,7 @@
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#ifndef LINUX_SPI_SPICOMIF_H_
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#define LINUX_SPI_SPICOMIF_H_
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#include "fsfw/FSFW.h"
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#include "spiDefinitions.h"
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#include "returnvalues/classIds.h"
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#include "fsfw_hal/common/gpio/GpioIF.h"
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@ -121,7 +121,7 @@ bool SpiCookie::isFullDuplex() const {
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return not this->halfDuplex;
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}
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void SpiCookie::assignTransferSize(size_t transferSize) {
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void SpiCookie::setTransferSize(size_t transferSize) {
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spiTransferStruct.len = transferSize;
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}
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@ -103,10 +103,10 @@ public:
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void assignReadBuffer(uint8_t* rx);
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void assignWriteBuffer(const uint8_t* tx);
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/**
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* Assign size for the next transfer.
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* Set size for the next transfer. Set to 0 for no transfer
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* @param transferSize
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*/
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void assignTransferSize(size_t transferSize);
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void setTransferSize(size_t transferSize);
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size_t getCurrentTransferSize() const;
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struct UncommonParameters {
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@ -158,8 +158,6 @@ private:
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std::string spiDev, const size_t maxSize, spi::SpiModes spiMode, uint32_t spiSpeed,
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spi::send_callback_function_t callback, void* args);
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size_t currentTransferSize = 0;
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address_t spiAddress;
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gpioId_t chipSelectPin;
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std::string spiDevice;
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@ -461,7 +461,7 @@ size_t DeviceHandlerBase::getNextReplyLength(DeviceCommandId_t commandId){
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return iter->second.replyLen;
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}else{
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return 0;
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}
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}
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}
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ReturnValue_t DeviceHandlerBase::updateReplyMapEntry(DeviceCommandId_t deviceReply,
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@ -612,15 +612,15 @@ void DeviceHandlerBase::replyToReply(const DeviceCommandId_t command, DeviceRepl
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}
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DeviceCommandInfo* info = &replyInfo.command->second;
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if (info == nullptr){
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printWarningOrError(sif::OutputTypes::OUT_ERROR,
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"replyToReply", HasReturnvaluesIF::RETURN_FAILED,
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"Command pointer not found");
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return;
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printWarningOrError(sif::OutputTypes::OUT_ERROR,
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"replyToReply", HasReturnvaluesIF::RETURN_FAILED,
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"Command pointer not found");
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return;
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}
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if (info->expectedReplies > 0){
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// Check before to avoid underflow
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info->expectedReplies--;
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// Check before to avoid underflow
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info->expectedReplies--;
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}
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// Check if more replies are expected. If so, do nothing.
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if (info->expectedReplies == 0) {
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@ -1355,10 +1355,20 @@ void DeviceHandlerBase::buildInternalCommand(void) {
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DeviceCommandMap::iterator iter = deviceCommandMap.find(
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deviceCommandId);
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if (iter == deviceCommandMap.end()) {
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#if FSFW_VERBOSE_LEVEL >= 1
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char output[36];
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sprintf(output, "Command 0x%08x unknown",
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static_cast<unsigned int>(deviceCommandId));
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// so we can track misconfigurations
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printWarningOrError(sif::OutputTypes::OUT_WARNING,
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"buildInternalCommand",
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COMMAND_NOT_SUPPORTED,
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output);
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#endif
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result = COMMAND_NOT_SUPPORTED;
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}
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else if (iter->second.isExecuting) {
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#if FSFW_DISABLE_PRINTOUT == 0
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#if FSFW_VERBOSE_LEVEL >= 1
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char output[36];
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sprintf(output, "Command 0x%08x is executing",
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static_cast<unsigned int>(deviceCommandId));
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@ -1569,7 +1579,7 @@ LocalDataPoolManager* DeviceHandlerBase::getHkManagerHandle() {
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return &poolManager;
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}
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MessageQueueId_t DeviceHandlerBase::getCommanderId(DeviceCommandId_t replyId) const {
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MessageQueueId_t DeviceHandlerBase::getCommanderQueueId(DeviceCommandId_t replyId) const {
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auto commandIter = deviceCommandMap.find(replyId);
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if(commandIter == deviceCommandMap.end()) {
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return MessageQueueIF::NO_QUEUE;
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@ -6,22 +6,22 @@
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#include "DeviceHandlerFailureIsolation.h"
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#include "DeviceHandlerThermalSet.h"
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#include "../serviceinterface/ServiceInterface.h"
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#include "../serviceinterface/serviceInterfaceDefintions.h"
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#include "../objectmanager/SystemObject.h"
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#include "../tasks/ExecutableObjectIF.h"
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#include "../returnvalues/HasReturnvaluesIF.h"
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#include "../action/HasActionsIF.h"
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#include "../datapool/PoolVariableIF.h"
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#include "../modes/HasModesIF.h"
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#include "../power/PowerSwitchIF.h"
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#include "../ipc/MessageQueueIF.h"
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#include "../tasks/PeriodicTaskIF.h"
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#include "../action/ActionHelper.h"
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#include "../health/HealthHelper.h"
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#include "../parameters/ParameterHelper.h"
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#include "../datapoollocal/HasLocalDataPoolIF.h"
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#include "../datapoollocal/LocalDataPoolManager.h"
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#include "fsfw/serviceinterface/ServiceInterface.h"
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#include "fsfw/serviceinterface/serviceInterfaceDefintions.h"
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#include "fsfw/objectmanager/SystemObject.h"
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#include "fsfw/tasks/ExecutableObjectIF.h"
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#include "fsfw/returnvalues/HasReturnvaluesIF.h"
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#include "fsfw/action/HasActionsIF.h"
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#include "fsfw/datapool/PoolVariableIF.h"
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#include "fsfw/modes/HasModesIF.h"
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#include "fsfw/power/PowerSwitchIF.h"
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#include "fsfw/ipc/MessageQueueIF.h"
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#include "fsfw/tasks/PeriodicTaskIF.h"
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#include "fsfw/action/ActionHelper.h"
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#include "fsfw/health/HealthHelper.h"
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#include "fsfw/parameters/ParameterHelper.h"
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#include "fsfw/datapoollocal/HasLocalDataPoolIF.h"
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#include "fsfw/datapoollocal/LocalDataPoolManager.h"
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#include <map>
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@ -399,7 +399,7 @@ protected:
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*/
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virtual ReturnValue_t interpretDeviceReply(DeviceCommandId_t id,
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const uint8_t *packet) = 0;
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MessageQueueId_t getCommanderId(DeviceCommandId_t replyId) const;
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MessageQueueId_t getCommanderQueueId(DeviceCommandId_t replyId) const;
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/**
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* Helper function to get pending command. This is useful for devices
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* like SPI sensors to identify the last sent command.
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@ -16,15 +16,18 @@ InternalUnitTester::~InternalUnitTester() {}
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ReturnValue_t InternalUnitTester::performTests(
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const struct InternalUnitTester::TestConfig& testConfig) {
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#if FSFW_CPP_OSTREAM_ENABLED == 1
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sif::info << "Running internal unit tests.." << std::endl;
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sif::info << "Running internal unit tests.. Error messages might follow" <<
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std::endl;
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#else
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sif::printInfo("Running internal unit tests..\n");
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#endif
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testserialize::test_serialization();
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testmq::testMq();
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testsemaph::testBinSemaph();
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testsemaph::testCountingSemaph();
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if(testConfig.testSemaphores) {
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testsemaph::testBinSemaph();
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testsemaph::testCountingSemaph();
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}
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testmutex::testMutex();
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if(testConfig.testArrayPrinter) {
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arrayprinter::testArrayPrinter();
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@ -18,6 +18,7 @@ class InternalUnitTester: public HasReturnvaluesIF {
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public:
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struct TestConfig {
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bool testArrayPrinter = false;
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bool testSemaphores = true;
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};
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InternalUnitTester();
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@ -1,10 +1,12 @@
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#include "fsfw_tests/internal/osal/IntTestMutex.h"
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#include "fsfw_tests/internal/UnittDefinitions.h"
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#include "fsfw/platform.h"
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#include <fsfw/ipc/MutexFactory.h>
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#if defined(WIN32) || defined(UNIX)
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#include <fsfw/osal/host/Mutex.h>
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#if defined PLATFORM_WIN || defined PLATFORM_UNIX
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#include "fsfw/osal/host/Mutex.h"
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#include <thread>
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#include <future>
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#endif
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@ -20,7 +22,7 @@ void testmutex::testMutex() {
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// timed_mutex from the C++ library specifies undefined behaviour if
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// the timed mutex is locked twice from the same thread.
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// TODO: we should pass a define like FSFW_OSAL_HOST to the build.
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#if defined(WIN32) || defined(UNIX)
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#if defined PLATFORM_WIN || defined PLATFORM_UNIX
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// This calls the function from
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// another thread and stores the returnvalue in a future.
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auto future = std::async(&MutexIF::lockMutex, mutex, MutexIF::TimeoutType::WAITING, 1);
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@ -37,8 +39,7 @@ void testmutex::testMutex() {
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unitt::put_error(id);
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}
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// TODO: we should pass a define like FSFW_OSAL_HOST to the build.
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#if !defined(WIN32) && !defined(UNIX)
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#if !defined PLATFORM_WIN && !defined PLATFORM_UNIX
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result = mutex->unlockMutex();
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if(result != MutexIF::CURR_THREAD_DOES_NOT_OWN_MUTEX) {
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unitt::put_error(id);
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@ -1,9 +1,10 @@
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#include "fsfw/FSFW.h"
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#include "fsfw_tests/internal/osal/IntTestSemaphore.h"
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#include "fsfw_tests/internal/UnittDefinitions.h"
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#include <fsfw/tasks/SemaphoreFactory.h>
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#include <fsfw/serviceinterface/ServiceInterface.h>
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#include <fsfw/timemanager/Stopwatch.h>
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#include "fsfw/tasks/SemaphoreFactory.h"
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#include "fsfw/serviceinterface/ServiceInterface.h"
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#include "fsfw/timemanager/Stopwatch.h"
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#include <cstdlib>
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@ -16,7 +17,7 @@ void testsemaph::testBinSemaph() {
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}
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testBinSemaphoreImplementation(binSemaph, id);
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SemaphoreFactory::instance()->deleteSemaphore(binSemaph);
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#if defined(freeRTOS)
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#if defined FSFW_OSAL_FREERTOS
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SemaphoreIF* binSemaphUsingTask =
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SemaphoreFactory::instance()->createBinarySemaphore(1);
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testBinSemaphoreImplementation(binSemaphUsingTask, id);
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@ -36,7 +37,7 @@ void testsemaph::testCountingSemaph() {
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}
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testBinSemaphoreImplementation(countingSemaph, id);
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SemaphoreFactory::instance()->deleteSemaphore(countingSemaph);
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#if defined(freeRTOS)
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#if defined FSFW_OSAL_FREERTOS
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countingSemaph = SemaphoreFactory::instance()->
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createCountingSemaphore(1, 1, 1);
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testBinSemaphoreImplementation(countingSemaph, id);
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@ -50,7 +51,7 @@ void testsemaph::testCountingSemaph() {
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createCountingSemaphore(3,3);
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testCountingSemaphImplementation(countingSemaph, id);
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SemaphoreFactory::instance()->deleteSemaphore(countingSemaph);
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#if defined(freeRTOS)
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#if defined FSFW_OSAL_FREERTOS
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countingSemaph = SemaphoreFactory::instance()->
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createCountingSemaphore(3, 0, 1);
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uint8_t semaphCount = countingSemaph->getSemaphoreCounter();
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