Merge branch 'eive/develop' into meier/develop
This commit is contained in:
commit
789668ae50
@ -68,6 +68,9 @@ and this project adheres to [Semantic Versioning](http://semver.org/).
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- Small bugfix in STM32 HAL for SPI
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- Small bugfix in STM32 HAL for SPI
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PR: https://egit.irs.uni-stuttgart.de/fsfw/fsfw/pulls/599
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PR: https://egit.irs.uni-stuttgart.de/fsfw/fsfw/pulls/599
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- HAL GPIO: Improved error checking in `LinuxLibgpioIF::configureGpios(...)`. If a GPIO
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configuration fails, the function will exit prematurely with a dedicated error code
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PR: https://egit.irs.uni-stuttgart.de/fsfw/fsfw/pulls/602
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# [v4.0.0]
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# [v4.0.0]
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@ -44,6 +44,7 @@ ReturnValue_t LinuxLibgpioIF::addGpios(GpioCookie* gpioCookie) {
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}
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}
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ReturnValue_t LinuxLibgpioIF::configureGpios(GpioMap& mapToAdd) {
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ReturnValue_t LinuxLibgpioIF::configureGpios(GpioMap& mapToAdd) {
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ReturnValue_t result = RETURN_OK;
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for (auto& gpioConfig : mapToAdd) {
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for (auto& gpioConfig : mapToAdd) {
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auto& gpioType = gpioConfig.second->gpioType;
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auto& gpioType = gpioConfig.second->gpioType;
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switch (gpioType) {
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switch (gpioType) {
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@ -55,7 +56,7 @@ ReturnValue_t LinuxLibgpioIF::configureGpios(GpioMap& mapToAdd) {
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if (regularGpio == nullptr) {
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if (regularGpio == nullptr) {
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return GPIO_INVALID_INSTANCE;
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return GPIO_INVALID_INSTANCE;
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}
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}
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configureGpioByChip(gpioConfig.first, *regularGpio);
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result = configureGpioByChip(gpioConfig.first, *regularGpio);
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break;
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break;
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}
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}
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case (gpio::GpioTypes::GPIO_REGULAR_BY_LABEL): {
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case (gpio::GpioTypes::GPIO_REGULAR_BY_LABEL): {
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@ -63,7 +64,7 @@ ReturnValue_t LinuxLibgpioIF::configureGpios(GpioMap& mapToAdd) {
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if (regularGpio == nullptr) {
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if (regularGpio == nullptr) {
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return GPIO_INVALID_INSTANCE;
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return GPIO_INVALID_INSTANCE;
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}
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}
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configureGpioByLabel(gpioConfig.first, *regularGpio);
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result = configureGpioByLabel(gpioConfig.first, *regularGpio);
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break;
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break;
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}
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}
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case (gpio::GpioTypes::GPIO_REGULAR_BY_LINE_NAME): {
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case (gpio::GpioTypes::GPIO_REGULAR_BY_LINE_NAME): {
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@ -71,7 +72,7 @@ ReturnValue_t LinuxLibgpioIF::configureGpios(GpioMap& mapToAdd) {
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if (regularGpio == nullptr) {
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if (regularGpio == nullptr) {
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return GPIO_INVALID_INSTANCE;
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return GPIO_INVALID_INSTANCE;
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}
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}
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configureGpioByLineName(gpioConfig.first, *regularGpio);
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result = configureGpioByLineName(gpioConfig.first, *regularGpio);
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break;
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break;
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}
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}
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case (gpio::GpioTypes::CALLBACK): {
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case (gpio::GpioTypes::CALLBACK): {
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@ -83,8 +84,11 @@ ReturnValue_t LinuxLibgpioIF::configureGpios(GpioMap& mapToAdd) {
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gpioCallback->initValue, gpioCallback->callbackArgs);
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gpioCallback->initValue, gpioCallback->callbackArgs);
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}
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}
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}
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}
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if (result != RETURN_OK) {
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return GPIO_INIT_FAILED;
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}
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}
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return RETURN_OK;
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}
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return result;
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}
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}
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ReturnValue_t LinuxLibgpioIF::configureGpioByLabel(gpioId_t gpioId,
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ReturnValue_t LinuxLibgpioIF::configureGpioByLabel(gpioId_t gpioId,
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@ -29,6 +29,8 @@ class LinuxLibgpioIF : public GpioIF, public SystemObject {
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HasReturnvaluesIF::makeReturnCode(gpioRetvalId, 4);
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HasReturnvaluesIF::makeReturnCode(gpioRetvalId, 4);
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static constexpr ReturnValue_t GPIO_DUPLICATE_DETECTED =
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static constexpr ReturnValue_t GPIO_DUPLICATE_DETECTED =
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HasReturnvaluesIF::makeReturnCode(gpioRetvalId, 5);
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HasReturnvaluesIF::makeReturnCode(gpioRetvalId, 5);
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static constexpr ReturnValue_t GPIO_INIT_FAILED =
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HasReturnvaluesIF::makeReturnCode(gpioRetvalId, 6);
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LinuxLibgpioIF(object_id_t objectId);
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LinuxLibgpioIF(object_id_t objectId);
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virtual ~LinuxLibgpioIF();
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virtual ~LinuxLibgpioIF();
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@ -307,6 +307,11 @@ void Subsystem::replyToCommand(ReturnValue_t status, uint32_t parameter) {
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}
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}
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}
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}
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ReturnValue_t Subsystem::addSequence(SequenceEntry sequence) {
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return addSequence(sequence.table, sequence.mode, sequence.fallbackMode, sequence.inStore,
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sequence.preInit);
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}
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ReturnValue_t Subsystem::addSequence(ArrayList<ModeListEntry> *sequence, Mode_t id,
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ReturnValue_t Subsystem::addSequence(ArrayList<ModeListEntry> *sequence, Mode_t id,
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Mode_t fallbackSequence, bool inStore, bool preInit) {
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Mode_t fallbackSequence, bool inStore, bool preInit) {
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ReturnValue_t result;
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ReturnValue_t result;
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@ -350,6 +355,10 @@ ReturnValue_t Subsystem::addSequence(ArrayList<ModeListEntry> *sequence, Mode_t
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return result;
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return result;
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}
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}
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ReturnValue_t Subsystem::addTable(TableEntry table) {
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return addTable(table.table, table.mode, table.inStore, table.preInit);
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}
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ReturnValue_t Subsystem::addTable(ArrayList<ModeListEntry> *table, Mode_t id, bool inStore,
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ReturnValue_t Subsystem::addTable(ArrayList<ModeListEntry> *table, Mode_t id, bool inStore,
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bool preInit) {
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bool preInit) {
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ReturnValue_t result;
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ReturnValue_t result;
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@ -458,6 +467,7 @@ ReturnValue_t Subsystem::initialize() {
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}
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}
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mode = initialMode;
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mode = initialMode;
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submode = initSubmode;
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return RETURN_OK;
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return RETURN_OK;
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}
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}
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@ -595,7 +605,10 @@ ReturnValue_t Subsystem::checkObjectConnections() {
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return RETURN_OK;
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return RETURN_OK;
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}
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}
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void Subsystem::setInitialMode(Mode_t mode) { initialMode = mode; }
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void Subsystem::setInitialMode(Mode_t mode, Submode_t submode) {
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this->initialMode = mode;
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this->initSubmode = submode;
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}
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void Subsystem::cantKeepMode() {
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void Subsystem::cantKeepMode() {
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ReturnValue_t result;
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ReturnValue_t result;
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@ -10,6 +10,28 @@
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#include "fsfw/FSFW.h"
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#include "fsfw/FSFW.h"
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#include "modes/ModeDefinitions.h"
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#include "modes/ModeDefinitions.h"
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struct TableSequenceBase {
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public:
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TableSequenceBase(Mode_t mode, ArrayList<ModeListEntry> *table) : mode(mode), table(table){};
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Mode_t mode;
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ArrayList<ModeListEntry> *table;
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bool inStore = false;
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bool preInit = true;
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};
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struct TableEntry : public TableSequenceBase {
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public:
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TableEntry(Mode_t mode, ArrayList<ModeListEntry> *table) : TableSequenceBase(mode, table){};
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};
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struct SequenceEntry : public TableSequenceBase {
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public:
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SequenceEntry(Mode_t mode, ArrayList<ModeListEntry> *table, Mode_t fallbackMode)
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: TableSequenceBase(mode, table), fallbackMode(fallbackMode) {}
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Mode_t fallbackMode;
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};
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/**
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/**
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* @brief This class extends the SubsystemBase to perform the management of mode tables
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* @brief This class extends the SubsystemBase to perform the management of mode tables
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* and mode sequences
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* and mode sequences
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@ -48,13 +70,15 @@ class Subsystem : public SubsystemBase, public HasModeSequenceIF {
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uint32_t maxNumberOfTables);
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uint32_t maxNumberOfTables);
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virtual ~Subsystem();
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virtual ~Subsystem();
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ReturnValue_t addSequence(SequenceEntry sequence);
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ReturnValue_t addSequence(ArrayList<ModeListEntry> *sequence, Mode_t id, Mode_t fallbackSequence,
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ReturnValue_t addSequence(ArrayList<ModeListEntry> *sequence, Mode_t id, Mode_t fallbackSequence,
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bool inStore = true, bool preInit = true);
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bool inStore = true, bool preInit = true);
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ReturnValue_t addTable(TableEntry table);
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ReturnValue_t addTable(ArrayList<ModeListEntry> *table, Mode_t id, bool inStore = true,
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ReturnValue_t addTable(ArrayList<ModeListEntry> *table, Mode_t id, bool inStore = true,
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bool preInit = true);
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bool preInit = true);
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void setInitialMode(Mode_t mode);
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void setInitialMode(Mode_t mode, Submode_t submode = SUBMODE_NONE);
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virtual ReturnValue_t initialize() override;
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virtual ReturnValue_t initialize() override;
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@ -93,6 +117,7 @@ class Subsystem : public SubsystemBase, public HasModeSequenceIF {
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Submode_t targetSubmode;
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Submode_t targetSubmode;
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Mode_t initialMode = 0;
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Mode_t initialMode = 0;
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Submode_t initSubmode = SUBMODE_NONE;
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HybridIterator<ModeListEntry> currentSequenceIterator;
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HybridIterator<ModeListEntry> currentSequenceIterator;
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