fsfw/serialize/SerialBufferAdapter.cpp

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#include <framework/serialize/SerialBufferAdapter.h>
#include <framework/serviceinterface/ServiceInterfaceStream.h>
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#include <cstring>
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template<typename count_t>
SerialBufferAdapter<count_t>::SerialBufferAdapter(const uint8_t* buffer,
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count_t bufferLength, bool serializeLength) :
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serializeLength(serializeLength),
constBuffer(buffer), buffer(nullptr),
bufferLength(bufferLength) {}
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template<typename count_t>
SerialBufferAdapter<count_t>::SerialBufferAdapter(uint8_t* buffer,
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count_t bufferLength, bool serializeLength) :
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serializeLength(serializeLength), constBuffer(buffer), buffer(buffer),
bufferLength(bufferLength) {}
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template<typename count_t>
SerialBufferAdapter<count_t>::~SerialBufferAdapter() {
}
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template<typename count_t>
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ReturnValue_t SerialBufferAdapter<count_t>::serialize(uint8_t** buffer_,
size_t* size_, const size_t max_size, bool bigEndian) const {
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uint32_t serializedLength = bufferLength;
if (serializeLength) {
serializedLength += AutoSerializeAdapter::getSerializedSize(
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&bufferLength);
}
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if (*size_ + serializedLength > max_size) {
return BUFFER_TOO_SHORT;
} else {
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if (serializeLength) {
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AutoSerializeAdapter::serialize(&bufferLength, buffer_, size_,
max_size, bigEndian);
}
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if (constBuffer != nullptr) {
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memcpy(*buffer_, this->constBuffer, bufferLength);
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}
else if (buffer != nullptr) {
// This will propably be never reached, constBuffer should always be
// set if non-const buffer is set.
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memcpy(*buffer_, this->buffer, bufferLength);
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}
else {
return HasReturnvaluesIF::RETURN_FAILED;
}
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*size_ += bufferLength;
(*buffer_) += bufferLength;
return HasReturnvaluesIF::RETURN_OK;
}
}
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template<typename count_t>
size_t SerialBufferAdapter<count_t>::getSerializedSize() const {
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if (serializeLength) {
return bufferLength + AutoSerializeAdapter::getSerializedSize(&bufferLength);
} else {
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return bufferLength;
}
}
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template<typename count_t>
ReturnValue_t SerialBufferAdapter<count_t>::deSerialize(const uint8_t** buffer,
size_t* size, bool bigEndian) {
//TODO Ignores Endian flag!
if (buffer != nullptr) {
if(serializeLength) {
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count_t serializedSize = AutoSerializeAdapter::getSerializedSize(
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&bufferLength);
if(bufferLength + serializedSize <= *size) {
*buffer += serializedSize;
*size -= serializedSize;
}
else {
return STREAM_TOO_SHORT;
}
}
//No Else If, go on with buffer
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if (bufferLength <= *size) {
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*size -= bufferLength;
memcpy(this->buffer, *buffer, bufferLength);
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(*buffer) += bufferLength;
return HasReturnvaluesIF::RETURN_OK;
}
else {
return STREAM_TOO_SHORT;
}
}
else {
return HasReturnvaluesIF::RETURN_FAILED;
}
}
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template<typename count_t>
uint8_t * SerialBufferAdapter<count_t>::getBuffer() {
if(buffer == nullptr) {
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sif::error << "Wrong access function for stored type !"
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" Use getConstBuffer()." << std::endl;
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return nullptr;
}
return buffer;
}
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template<typename count_t>
const uint8_t * SerialBufferAdapter<count_t>::getConstBuffer() {
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if(constBuffer == nullptr) {
sif::error << "SerialBufferAdapter: Buffers are unitialized!" << std::endl;
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return nullptr;
}
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return constBuffer;
}
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template<typename count_t>
void SerialBufferAdapter<count_t>::setBuffer(uint8_t* buffer,
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count_t bufferLength) {
this->buffer = buffer;
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this->constBuffer = buffer;
this->bufferLength = bufferLength;
}
//forward Template declaration for linker
template class SerialBufferAdapter<uint8_t>;
template class SerialBufferAdapter<uint16_t>;
template class SerialBufferAdapter<uint32_t>;