Merge branch 'master' into mueller/feature/windowsUdpBridge
This commit is contained in:
commit
be0cf56994
@ -72,11 +72,15 @@ public:
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return tmp;
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}
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T operator*() {
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T& operator*(){
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return *value;
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}
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T *operator->() {
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const T& operator*() const{
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return *value;
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}
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T *operator->(){
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return value;
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}
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@ -1,5 +1,5 @@
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#ifndef FIXEDMAP_H_
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#define FIXEDMAP_H_
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#ifndef FSFW_CONTAINER_FIXEDMAP_H_
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#define FSFW_CONTAINER_FIXEDMAP_H_
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#include "ArrayList.h"
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#include "../returnvalues/HasReturnvaluesIF.h"
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@ -7,7 +7,9 @@
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#include <type_traits>
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/**
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* \ingroup container
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* @warning Iterators return a non-const key_t in the pair.
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* @warning A User is not allowed to change the key, otherwise the map is corrupted.
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* @ingroup container
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*/
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template<typename key_t, typename T>
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class FixedMap: public SerializeIF {
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@ -50,15 +52,6 @@ public:
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Iterator(std::pair<key_t, T> *pair) :
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ArrayList<std::pair<key_t, T>, uint32_t>::Iterator(pair) {
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}
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T operator*() {
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return ArrayList<std::pair<key_t, T>, uint32_t>::Iterator::value->second;
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}
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T *operator->() {
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return &ArrayList<std::pair<key_t, T>, uint32_t>::Iterator::value->second;
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}
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};
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Iterator begin() const {
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@ -73,7 +66,7 @@ public:
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return _size;
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}
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ReturnValue_t insert(key_t key, T value, Iterator *storedValue = NULL) {
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ReturnValue_t insert(key_t key, T value, Iterator *storedValue = nullptr) {
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if (exists(key) == HasReturnvaluesIF::RETURN_OK) {
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return KEY_ALREADY_EXISTS;
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}
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@ -82,7 +75,7 @@ public:
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}
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theMap[_size].first = key;
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theMap[_size].second = value;
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if (storedValue != NULL) {
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if (storedValue != nullptr) {
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*storedValue = Iterator(&theMap[_size]);
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}
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++_size;
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@ -90,7 +83,7 @@ public:
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}
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ReturnValue_t insert(std::pair<key_t, T> pair) {
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return insert(pair.fist, pair.second);
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return insert(pair.first, pair.second);
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}
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ReturnValue_t exists(key_t key) const {
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@ -199,4 +192,4 @@ public:
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};
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#endif /* FIXEDMAP_H_ */
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#endif /* FSFW_CONTAINER_FIXEDMAP_H_ */
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@ -48,7 +48,7 @@ private:
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if (_size <= position) {
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return;
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}
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memmove(&theMap[position], &theMap[position + 1],
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memmove(static_cast<void*>(&theMap[position]), static_cast<void*>(&theMap[position + 1]),
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(_size - position - 1) * sizeof(std::pair<key_t,T>));
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--_size;
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}
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@ -68,15 +68,6 @@ public:
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Iterator(std::pair<key_t, T> *pair) :
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ArrayList<std::pair<key_t, T>, uint32_t>::Iterator(pair) {
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}
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T operator*() {
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return ArrayList<std::pair<key_t, T>, uint32_t>::Iterator::value->second;
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}
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T *operator->() {
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return &ArrayList<std::pair<key_t, T>, uint32_t>::Iterator::value->second;
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}
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};
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Iterator begin() const {
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@ -91,17 +82,17 @@ public:
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return _size;
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}
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ReturnValue_t insert(key_t key, T value, Iterator *storedValue = NULL) {
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ReturnValue_t insert(key_t key, T value, Iterator *storedValue = nullptr) {
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if (_size == theMap.maxSize()) {
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return MAP_FULL;
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}
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uint32_t position = findNicePlace(key);
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memmove(&theMap[position + 1], &theMap[position],
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memmove(static_cast<void*>(&theMap[position + 1]),static_cast<void*>(&theMap[position]),
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(_size - position) * sizeof(std::pair<key_t,T>));
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theMap[position].first = key;
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theMap[position].second = value;
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++_size;
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if (storedValue != NULL) {
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if (storedValue != nullptr) {
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*storedValue = Iterator(&theMap[position]);
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}
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return HasReturnvaluesIF::RETURN_OK;
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@ -145,12 +136,6 @@ public:
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return HasReturnvaluesIF::RETURN_OK;
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}
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//This is potentially unsafe
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// T *findValue(key_t key) const {
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// return &theMap[findFirstIndex(key)].second;
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// }
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Iterator find(key_t key) const {
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ReturnValue_t result = exists(key);
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if (result != HasReturnvaluesIF::RETURN_OK) {
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@ -550,7 +550,7 @@ Mode_t Subsystem::getFallbackSequence(Mode_t sequence) {
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for (FixedMap<Mode_t, SequenceInfo>::Iterator iter = modeSequences.begin();
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iter != modeSequences.end(); ++iter) {
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if (iter.value->first == sequence) {
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return iter->fallbackSequence;
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return iter->second.fallbackSequence;
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}
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}
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return -1;
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@ -559,7 +559,7 @@ Mode_t Subsystem::getFallbackSequence(Mode_t sequence) {
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bool Subsystem::isFallbackSequence(Mode_t SequenceId) {
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for (FixedMap<Mode_t, SequenceInfo>::Iterator iter = modeSequences.begin();
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iter != modeSequences.end(); iter++) {
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if (iter->fallbackSequence == SequenceId) {
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if (iter->second.fallbackSequence == SequenceId) {
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return true;
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}
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}
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@ -122,8 +122,8 @@ void CommandingServiceBase::handleCommandMessage(CommandMessage* reply) {
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// Implemented by child class, specifies what to do with reply.
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ReturnValue_t result = handleReply(reply, iter->command, &iter->state,
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&nextCommand, iter->objectId, &isStep);
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ReturnValue_t result = handleReply(reply, iter->second.command, &iter->second.state,
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&nextCommand, iter->second.objectId, &isStep);
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/* If the child implementation does not implement special handling for
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* rejected replies (RETURN_FAILED or INVALID_REPLY is returned), a
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@ -132,7 +132,7 @@ void CommandingServiceBase::handleCommandMessage(CommandMessage* reply) {
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if((reply->getCommand() == CommandMessage::REPLY_REJECTED) and
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(result == RETURN_FAILED or result == INVALID_REPLY)) {
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result = reply->getReplyRejectedReason();
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failureParameter1 = iter->command;
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failureParameter1 = iter->second.command;
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}
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switch (result) {
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@ -149,14 +149,14 @@ void CommandingServiceBase::handleCommandMessage(CommandMessage* reply) {
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default:
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if (isStep) {
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verificationReporter.sendFailureReport(
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TC_VERIFY::PROGRESS_FAILURE, iter->tcInfo.ackFlags,
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iter->tcInfo.tcPacketId, iter->tcInfo.tcSequenceControl,
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result, ++iter->step, failureParameter1,
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TC_VERIFY::PROGRESS_FAILURE, iter->second.tcInfo.ackFlags,
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iter->second.tcInfo.tcPacketId, iter->second.tcInfo.tcSequenceControl,
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result, ++iter->second.step, failureParameter1,
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failureParameter2);
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} else {
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verificationReporter.sendFailureReport(
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TC_VERIFY::COMPLETION_FAILURE, iter->tcInfo.ackFlags,
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iter->tcInfo.tcPacketId, iter->tcInfo.tcSequenceControl,
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TC_VERIFY::COMPLETION_FAILURE, iter->second.tcInfo.ackFlags,
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iter->second.tcInfo.tcPacketId, iter->second.tcInfo.tcSequenceControl,
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result, 0, failureParameter1, failureParameter2);
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}
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failureParameter1 = 0;
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@ -170,7 +170,7 @@ void CommandingServiceBase::handleCommandMessage(CommandMessage* reply) {
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void CommandingServiceBase::handleReplyHandlerResult(ReturnValue_t result,
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CommandMapIter iter, CommandMessage* nextCommand,
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CommandMessage* reply, bool& isStep) {
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iter->command = nextCommand->getCommand();
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iter->second.command = nextCommand->getCommand();
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// In case a new command is to be sent immediately, this is performed here.
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// If no new command is sent, only analyse reply result by initializing
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@ -185,14 +185,14 @@ void CommandingServiceBase::handleReplyHandlerResult(ReturnValue_t result,
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if (isStep and result != NO_STEP_MESSAGE) {
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verificationReporter.sendSuccessReport(
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TC_VERIFY::PROGRESS_SUCCESS,
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iter->tcInfo.ackFlags, iter->tcInfo.tcPacketId,
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iter->tcInfo.tcSequenceControl, ++iter->step);
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iter->second.tcInfo.ackFlags, iter->second.tcInfo.tcPacketId,
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iter->second.tcInfo.tcSequenceControl, ++iter->second.step);
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}
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else {
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verificationReporter.sendSuccessReport(
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TC_VERIFY::COMPLETION_SUCCESS,
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iter->tcInfo.ackFlags, iter->tcInfo.tcPacketId,
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iter->tcInfo.tcSequenceControl, 0);
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iter->second.tcInfo.ackFlags, iter->second.tcInfo.tcPacketId,
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iter->second.tcInfo.tcSequenceControl, 0);
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checkAndExecuteFifo(iter);
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}
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}
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@ -200,16 +200,16 @@ void CommandingServiceBase::handleReplyHandlerResult(ReturnValue_t result,
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if (isStep) {
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nextCommand->clearCommandMessage();
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verificationReporter.sendFailureReport(
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TC_VERIFY::PROGRESS_FAILURE, iter->tcInfo.ackFlags,
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iter->tcInfo.tcPacketId,
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iter->tcInfo.tcSequenceControl, sendResult,
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++iter->step, failureParameter1, failureParameter2);
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TC_VERIFY::PROGRESS_FAILURE, iter->second.tcInfo.ackFlags,
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iter->second.tcInfo.tcPacketId,
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iter->second.tcInfo.tcSequenceControl, sendResult,
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++iter->second.step, failureParameter1, failureParameter2);
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} else {
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nextCommand->clearCommandMessage();
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verificationReporter.sendFailureReport(
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TC_VERIFY::COMPLETION_FAILURE,
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iter->tcInfo.ackFlags, iter->tcInfo.tcPacketId,
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iter->tcInfo.tcSequenceControl, sendResult, 0,
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iter->second.tcInfo.ackFlags, iter->second.tcInfo.tcPacketId,
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iter->second.tcInfo.tcSequenceControl, sendResult, 0,
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failureParameter1, failureParameter2);
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}
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failureParameter1 = 0;
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@ -248,7 +248,7 @@ void CommandingServiceBase::handleRequestQueue() {
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iter = commandMap.find(queue);
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if (iter != commandMap.end()) {
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result = iter->fifo.insert(address);
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result = iter->second.fifo.insert(address);
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if (result != RETURN_OK) {
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rejectPacket(TC_VERIFY::START_FAILURE, &packet, OBJECT_BUSY);
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}
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@ -316,11 +316,11 @@ void CommandingServiceBase::startExecution(TcPacketStored *storedPacket,
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CommandMapIter iter) {
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ReturnValue_t result = RETURN_OK;
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CommandMessage command;
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iter->subservice = storedPacket->getSubService();
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result = prepareCommand(&command, iter->subservice,
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iter->second.subservice = storedPacket->getSubService();
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result = prepareCommand(&command, iter->second.subservice,
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storedPacket->getApplicationData(),
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storedPacket->getApplicationDataSize(), &iter->state,
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iter->objectId);
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storedPacket->getApplicationDataSize(), &iter->second.state,
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iter->second.objectId);
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ReturnValue_t sendResult = RETURN_OK;
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switch (result) {
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@ -330,13 +330,13 @@ void CommandingServiceBase::startExecution(TcPacketStored *storedPacket,
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&command);
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}
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if (sendResult == RETURN_OK) {
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Clock::getUptime(&iter->uptimeOfStart);
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iter->step = 0;
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iter->subservice = storedPacket->getSubService();
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iter->command = command.getCommand();
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iter->tcInfo.ackFlags = storedPacket->getAcknowledgeFlags();
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iter->tcInfo.tcPacketId = storedPacket->getPacketId();
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iter->tcInfo.tcSequenceControl =
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Clock::getUptime(&iter->second.uptimeOfStart);
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iter->second.step = 0;
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iter->second.subservice = storedPacket->getSubService();
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iter->second.command = command.getCommand();
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iter->second.tcInfo.ackFlags = storedPacket->getAcknowledgeFlags();
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iter->second.tcInfo.tcPacketId = storedPacket->getPacketId();
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iter->second.tcInfo.tcSequenceControl =
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storedPacket->getPacketSequenceControl();
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acceptPacket(TC_VERIFY::START_SUCCESS, storedPacket);
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} else {
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@ -386,7 +386,7 @@ void CommandingServiceBase::acceptPacket(uint8_t reportId,
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void CommandingServiceBase::checkAndExecuteFifo(CommandMapIter iter) {
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store_address_t address;
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if (iter->fifo.retrieve(&address) != RETURN_OK) {
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if (iter->second.fifo.retrieve(&address) != RETURN_OK) {
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commandMap.erase(&iter);
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} else {
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TcPacketStored newPacket(address);
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@ -412,10 +412,10 @@ void CommandingServiceBase::checkTimeout() {
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Clock::getUptime(&uptime);
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CommandMapIter iter;
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for (iter = commandMap.begin(); iter != commandMap.end(); ++iter) {
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if ((iter->uptimeOfStart + (timeoutSeconds * 1000)) < uptime) {
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if ((iter->second.uptimeOfStart + (timeoutSeconds * 1000)) < uptime) {
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verificationReporter.sendFailureReport(
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TC_VERIFY::COMPLETION_FAILURE, iter->tcInfo.ackFlags,
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iter->tcInfo.tcPacketId, iter->tcInfo.tcSequenceControl,
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TC_VERIFY::COMPLETION_FAILURE, iter->second.tcInfo.ackFlags,
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iter->second.tcInfo.tcPacketId, iter->second.tcInfo.tcSequenceControl,
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TIMEOUT);
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checkAndExecuteFifo(iter);
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}
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