2020-10-01 12:05:24 +02:00
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#include "LocalPoolDataSetBase.h"
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2021-01-12 19:41:47 +01:00
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#include "HasLocalDataPoolIF.h"
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2021-01-12 20:46:34 +01:00
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#include "internal/HasLocalDpIFUserAttorney.h"
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2021-01-06 21:14:23 +01:00
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#include "../serviceinterface/ServiceInterface.h"
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2021-02-28 16:34:11 +01:00
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#include "../globalfunctions/bitutility.h"
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2020-10-01 12:05:24 +02:00
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#include "../datapoollocal/LocalDataPoolManager.h"
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#include "../housekeeping/PeriodicHousekeepingHelper.h"
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#include "../serialize/SerializeAdapter.h"
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#include <cmath>
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#include <cstring>
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2021-01-11 22:18:42 +01:00
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LocalPoolDataSetBase::LocalPoolDataSetBase(HasLocalDataPoolIF *hkOwner,
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2021-01-13 12:41:24 +01:00
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uint32_t setId, PoolVariableIF** registeredVariablesArray,
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const size_t maxNumberOfVariables, bool periodicHandling):
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PoolDataSetBase(registeredVariablesArray, maxNumberOfVariables) {
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if(hkOwner == nullptr) {
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// Configuration error.
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2021-01-03 14:16:52 +01:00
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#if FSFW_CPP_OSTREAM_ENABLED == 1
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2021-01-13 12:41:24 +01:00
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sif::error << "LocalPoolDataSetBase::LocalPoolDataSetBase: Owner "
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<< "invalid!" << std::endl;
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2021-01-06 21:14:23 +01:00
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#else
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2021-01-13 12:41:24 +01:00
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sif::printError("LocalPoolDataSetBase::LocalPoolDataSetBase: Owner "
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"invalid!\n\r");
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2021-01-06 21:14:23 +01:00
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#endif /* FSFW_CPP_OSTREAM_ENABLED == 1 */
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2021-01-13 12:41:24 +01:00
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return;
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}
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AccessPoolManagerIF* accessor = HasLocalDpIFUserAttorney::getAccessorHandle(hkOwner);
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if(accessor != nullptr) {
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2021-01-25 13:09:39 +01:00
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poolManager = accessor->getPoolManagerHandle();
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2021-01-13 12:41:24 +01:00
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mutexIfSingleDataCreator = accessor->getLocalPoolMutex();
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}
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this->sid.objectId = hkOwner->getObjectId();
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this->sid.ownerSetId = setId;
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// Data creators get a periodic helper for periodic HK data generation.
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if(periodicHandling) {
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periodicHelper = new PeriodicHousekeepingHelper(this);
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}
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2020-10-01 12:05:24 +02:00
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}
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2021-03-03 23:49:27 +01:00
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LocalPoolDataSetBase::LocalPoolDataSetBase(sid_t sid, PoolVariableIF** registeredVariablesArray,
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2021-01-13 12:41:24 +01:00
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const size_t maxNumberOfVariables):
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PoolDataSetBase(registeredVariablesArray, maxNumberOfVariables) {
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HasLocalDataPoolIF* hkOwner = objectManager->get<HasLocalDataPoolIF>(
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sid.objectId);
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if(hkOwner != nullptr) {
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AccessPoolManagerIF* accessor = HasLocalDpIFUserAttorney::getAccessorHandle(hkOwner);
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if(accessor != nullptr) {
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mutexIfSingleDataCreator = accessor->getLocalPoolMutex();
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2021-02-04 13:46:27 +01:00
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poolManager = accessor->getPoolManagerHandle();
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2021-01-13 12:41:24 +01:00
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}
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}
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this->sid = sid;
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2020-10-01 12:05:24 +02:00
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}
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2021-01-06 21:14:23 +01:00
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LocalPoolDataSetBase::LocalPoolDataSetBase(
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2021-01-13 12:41:24 +01:00
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PoolVariableIF **registeredVariablesArray,
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const size_t maxNumberOfVariables, bool protectEveryReadCommitCall):
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PoolDataSetBase(registeredVariablesArray, maxNumberOfVariables) {
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this->setReadCommitProtectionBehaviour(protectEveryReadCommitCall);
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2021-01-06 21:14:23 +01:00
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}
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2020-10-01 12:05:24 +02:00
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LocalPoolDataSetBase::~LocalPoolDataSetBase() {
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2021-02-06 14:15:56 +01:00
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/* We only delete objects which were created in the class constructor */
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2021-01-13 12:41:24 +01:00
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if(periodicHelper != nullptr) {
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delete periodicHelper;
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}
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2021-02-06 14:15:56 +01:00
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/* In case set was read but not comitted, we commit all variables with an invalid state */
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if(state == States::STATE_SET_WAS_READ) {
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for (uint16_t count = 0; count < fillCount; count++) {
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if(registeredVariables[count] != nullptr) {
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registeredVariables[count]->setValid(false);
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registeredVariables[count]->commit(MutexIF::TimeoutType::WAITING, 20);
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}
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}
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}
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2020-10-01 12:05:24 +02:00
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}
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2021-01-06 21:14:23 +01:00
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ReturnValue_t LocalPoolDataSetBase::lockDataPool(
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2021-01-13 12:41:24 +01:00
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MutexIF::TimeoutType timeoutType,
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uint32_t timeoutMs) {
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if(mutexIfSingleDataCreator != nullptr) {
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return mutexIfSingleDataCreator->lockMutex(timeoutType, timeoutMs);
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}
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return HasReturnvaluesIF::RETURN_OK;
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2020-10-01 12:05:24 +02:00
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}
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ReturnValue_t LocalPoolDataSetBase::serializeWithValidityBuffer(uint8_t **buffer,
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2021-01-13 12:41:24 +01:00
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size_t *size, size_t maxSize,
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SerializeIF::Endianness streamEndianness) const {
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2021-02-03 18:04:55 +01:00
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ReturnValue_t result = HasReturnvaluesIF::RETURN_OK;
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2021-01-13 12:41:24 +01:00
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uint8_t validityMaskSize = std::ceil(static_cast<float>(fillCount)/8.0);
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2021-02-28 16:17:07 +01:00
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uint8_t validityMask[validityMaskSize] = {};
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2021-01-13 12:41:24 +01:00
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uint8_t validBufferIndex = 0;
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uint8_t validBufferIndexBit = 0;
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for (uint16_t count = 0; count < fillCount; count++) {
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if(registeredVariables[count]->isValid()) {
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2021-02-28 16:17:07 +01:00
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/* Set bit at correct position */
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2021-02-28 16:34:11 +01:00
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bitutil::bitSet(validityMask + validBufferIndex, validBufferIndexBit);
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2021-02-28 16:17:07 +01:00
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}
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if(validBufferIndexBit == 7) {
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validBufferIndex ++;
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validBufferIndexBit = 0;
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2021-01-13 12:41:24 +01:00
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}
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2021-02-28 16:17:07 +01:00
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else {
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validBufferIndexBit ++;
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}
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2021-01-13 12:41:24 +01:00
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result = registeredVariables[count]->serialize(buffer, size, maxSize,
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streamEndianness);
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if (result != HasReturnvaluesIF::RETURN_OK) {
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return result;
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}
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}
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if(*size + validityMaskSize > maxSize) {
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return SerializeIF::BUFFER_TOO_SHORT;
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}
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// copy validity buffer to end
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std::memcpy(*buffer, validityMask, validityMaskSize);
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*size += validityMaskSize;
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return result;
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2020-10-01 12:05:24 +02:00
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}
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ReturnValue_t LocalPoolDataSetBase::deSerializeWithValidityBuffer(
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2021-01-13 12:41:24 +01:00
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const uint8_t **buffer, size_t *size,
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SerializeIF::Endianness streamEndianness) {
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ReturnValue_t result = HasReturnvaluesIF::RETURN_FAILED;
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for (uint16_t count = 0; count < fillCount; count++) {
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result = registeredVariables[count]->deSerialize(buffer, size,
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streamEndianness);
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if(result != HasReturnvaluesIF::RETURN_OK) {
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return result;
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}
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}
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if(*size < std::ceil(static_cast<float>(fillCount) / 8.0)) {
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return SerializeIF::STREAM_TOO_SHORT;
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}
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uint8_t validBufferIndex = 0;
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uint8_t validBufferIndexBit = 0;
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for (uint16_t count = 0; count < fillCount; count++) {
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// set validity buffer here.
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2021-02-28 16:34:11 +01:00
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bool nextVarValid = bitutil::bitGet(*buffer +
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2021-01-13 12:41:24 +01:00
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validBufferIndex, validBufferIndexBit);
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registeredVariables[count]->setValid(nextVarValid);
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if(validBufferIndexBit == 7) {
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validBufferIndex ++;
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validBufferIndexBit = 0;
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}
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else {
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validBufferIndexBit ++;
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}
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}
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return result;
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2020-10-01 12:05:24 +02:00
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}
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2020-12-03 13:00:04 +01:00
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2020-10-01 12:05:24 +02:00
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ReturnValue_t LocalPoolDataSetBase::unlockDataPool() {
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2021-01-13 12:41:24 +01:00
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if(mutexIfSingleDataCreator != nullptr) {
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return mutexIfSingleDataCreator->unlockMutex();
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}
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return HasReturnvaluesIF::RETURN_OK;
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2020-10-01 12:05:24 +02:00
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}
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ReturnValue_t LocalPoolDataSetBase::serializeLocalPoolIds(uint8_t** buffer,
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2021-01-13 12:41:24 +01:00
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size_t* size, size_t maxSize,SerializeIF::Endianness streamEndianness,
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bool serializeFillCount) const {
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2021-02-28 15:34:04 +01:00
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/* Serialize fill count as uint8_t */
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2021-01-13 12:41:24 +01:00
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uint8_t fillCount = this->fillCount;
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if(serializeFillCount) {
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SerializeAdapter::serialize(&fillCount, buffer, size, maxSize,
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streamEndianness);
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}
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for (uint16_t count = 0; count < fillCount; count++) {
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lp_id_t currentPoolId = registeredVariables[count]->getDataPoolId();
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auto result = SerializeAdapter::serialize(¤tPoolId, buffer,
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size, maxSize, streamEndianness);
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if(result != HasReturnvaluesIF::RETURN_OK) {
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2021-01-03 14:16:52 +01:00
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#if FSFW_CPP_OSTREAM_ENABLED == 1
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2021-01-13 12:41:24 +01:00
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sif::warning << "LocalPoolDataSetBase::serializeLocalPoolIds: "
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<< "Serialization error!" << std::endl;
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2021-01-06 21:14:23 +01:00
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#else
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2021-01-13 12:41:24 +01:00
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sif::printWarning("LocalPoolDataSetBase::serializeLocalPoolIds: "
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"Serialization error!\n\r");
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2021-01-06 21:14:23 +01:00
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#endif /* FSFW_CPP_OSTREAM_ENABLED == 1 */
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2021-01-13 12:41:24 +01:00
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return result;
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}
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}
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return HasReturnvaluesIF::RETURN_OK;
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2020-10-01 12:05:24 +02:00
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}
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uint8_t LocalPoolDataSetBase::getLocalPoolIdsSerializedSize(
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2021-01-13 12:41:24 +01:00
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bool serializeFillCount) const {
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if(serializeFillCount) {
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return fillCount * sizeof(lp_id_t) + sizeof(uint8_t);
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}
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else {
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return fillCount * sizeof(lp_id_t);
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}
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2020-10-01 12:05:24 +02:00
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}
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size_t LocalPoolDataSetBase::getSerializedSize() const {
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2021-01-13 12:41:24 +01:00
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if(withValidityBuffer) {
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uint8_t validityMaskSize = std::ceil(static_cast<float>(fillCount)/8.0);
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return validityMaskSize + PoolDataSetBase::getSerializedSize();
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}
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else {
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return PoolDataSetBase::getSerializedSize();
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}
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2020-10-01 12:05:24 +02:00
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}
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void LocalPoolDataSetBase::setValidityBufferGeneration(
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2021-01-13 12:41:24 +01:00
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bool withValidityBuffer) {
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this->withValidityBuffer = withValidityBuffer;
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2020-10-01 12:05:24 +02:00
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}
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ReturnValue_t LocalPoolDataSetBase::deSerialize(const uint8_t **buffer,
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2021-01-13 12:41:24 +01:00
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size_t *size, SerializeIF::Endianness streamEndianness) {
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if(withValidityBuffer) {
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return this->deSerializeWithValidityBuffer(buffer, size,
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streamEndianness);
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}
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else {
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return PoolDataSetBase::deSerialize(buffer, size, streamEndianness);
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}
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2020-10-01 12:05:24 +02:00
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}
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ReturnValue_t LocalPoolDataSetBase::serialize(uint8_t **buffer, size_t *size,
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2021-01-13 12:41:24 +01:00
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size_t maxSize, SerializeIF::Endianness streamEndianness) const {
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if(withValidityBuffer) {
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return this->serializeWithValidityBuffer(buffer, size,
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maxSize, streamEndianness);
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}
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else {
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return PoolDataSetBase::serialize(buffer, size, maxSize,
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streamEndianness);
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}
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2020-10-01 12:05:24 +02:00
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}
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void LocalPoolDataSetBase::setDiagnostic(bool isDiagnostics) {
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2021-01-13 12:41:24 +01:00
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this->diagnostic = isDiagnostics;
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2020-10-01 12:05:24 +02:00
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}
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bool LocalPoolDataSetBase::isDiagnostics() const {
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2021-01-13 12:41:24 +01:00
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return diagnostic;
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2020-10-01 12:05:24 +02:00
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}
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void LocalPoolDataSetBase::setReportingEnabled(bool reportingEnabled) {
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2021-01-13 12:41:24 +01:00
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this->reportingEnabled = reportingEnabled;
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2020-10-01 12:05:24 +02:00
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}
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bool LocalPoolDataSetBase::getReportingEnabled() const {
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2021-01-13 12:41:24 +01:00
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return reportingEnabled;
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2020-10-01 12:05:24 +02:00
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}
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void LocalPoolDataSetBase::initializePeriodicHelper(
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2021-01-13 12:41:24 +01:00
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float collectionInterval, dur_millis_t minimumPeriodicInterval,
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bool isDiagnostics, uint8_t nonDiagIntervalFactor) {
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periodicHelper->initialize(collectionInterval, minimumPeriodicInterval,
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isDiagnostics, nonDiagIntervalFactor);
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2020-10-01 12:05:24 +02:00
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}
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void LocalPoolDataSetBase::setChanged(bool changed) {
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2021-01-13 12:41:24 +01:00
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this->changed = changed;
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2020-10-01 12:05:24 +02:00
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}
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2020-12-03 13:00:04 +01:00
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bool LocalPoolDataSetBase::hasChanged() const {
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2021-01-13 12:41:24 +01:00
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return changed;
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2020-10-01 12:05:24 +02:00
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}
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sid_t LocalPoolDataSetBase::getSid() const {
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2021-01-13 12:41:24 +01:00
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return sid;
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2020-10-01 12:05:24 +02:00
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}
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bool LocalPoolDataSetBase::isValid() const {
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2021-01-13 12:41:24 +01:00
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return this->valid;
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2020-10-01 12:05:24 +02:00
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}
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void LocalPoolDataSetBase::setValidity(bool valid, bool setEntriesRecursively) {
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2021-01-13 12:41:24 +01:00
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if(setEntriesRecursively) {
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for(size_t idx = 0; idx < this->getFillCount(); idx++) {
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registeredVariables[idx] -> setValid(valid);
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}
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}
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this->valid = valid;
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2020-10-01 12:05:24 +02:00
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}
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2020-12-26 23:57:23 +01:00
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2021-01-12 00:13:49 +01:00
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object_id_t LocalPoolDataSetBase::getCreatorObjectId() {
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2021-01-13 12:41:24 +01:00
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if(poolManager != nullptr) {
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return poolManager->getCreatorObjectId();
|
|
|
|
}
|
|
|
|
return objects::NO_OBJECT;
|
2021-01-11 16:33:02 +01:00
|
|
|
}
|
2021-02-28 16:17:07 +01:00
|
|
|
|