Communication Message continued
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@ -5,6 +5,7 @@
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*/
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#include <framework/devicehandlers/CommunicationMessage.h>
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#include <framework/serviceinterface/ServiceInterfaceStream.h>
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#include <cstring>
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CommunicationMessage::CommunicationMessage(): uninitialized(true) {
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@ -23,19 +24,23 @@ void CommunicationMessage::setSendRequestFromPointer(uint32_t address,
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void CommunicationMessage::setSendRequestFromIpcStore(uint32_t address, store_address_t storeId) {
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setMessageType(SEND_DATA_FROM_IPC_STORE);
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setAddress(address);
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setStoreId(storeId);
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setStoreId(storeId.raw);
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}
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void CommunicationMessage::setSendRequestRaw(uint32_t address, uint32_t length) {
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void CommunicationMessage::setSendRequestRaw(uint32_t address, uint32_t length,
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uint16_t sendBufferPosition) {
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setMessageType(SEND_DATA_RAW);
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setAddress(address);
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setDataLen(length);
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if(sendBufferPosition != 0) {
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setBufferPosition(sendBufferPosition);
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}
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}
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void CommunicationMessage::setDataReplyFromIpcStore(uint32_t address, store_address_t storeId) {
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setMessageType(REPLY_DATA_IPC_STORE);
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setAddress(address);
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setStoreId(storeId);
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setStoreId(storeId.raw);
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}
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void CommunicationMessage::setDataReplyFromPointer(uint32_t address,
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uint32_t dataLen, uint8_t *data) {
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@ -51,7 +56,7 @@ void CommunicationMessage::setDataReplyRaw(uint32_t address,
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setAddress(address);
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setDataLen(length);
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if(receiveBufferPosition != 0) {
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setReceiveBufferPosition(receiveBufferPosition);
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setBufferPosition(receiveBufferPosition);
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}
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}
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@ -60,61 +65,137 @@ void CommunicationMessage::setMessageType(messageType status) {
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memcpy(getData() + sizeof(uint32_t), &status_uint8, sizeof(status_uint8));
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}
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void CommunicationMessage::setAddress(uint32_t address) {
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void CommunicationMessage::setAddress(address_t address) {
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memcpy(getData(),&address,sizeof(address));
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}
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void CommunicationMessage::setReceiveBufferPosition(uint16_t bufferPosition) {
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memcpy(getData() + sizeof(uint32_t) + sizeof(uint8_t),
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address_t CommunicationMessage::getAddress() const {
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address_t address;
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memcpy(&address,getData(),sizeof(address));
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return address;
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}
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void CommunicationMessage::setBufferPosition(uint16_t bufferPosition) {
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memcpy(getData() + sizeof(uint32_t) + sizeof(uint16_t),
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&bufferPosition, sizeof(bufferPosition));
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}
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uint16_t CommunicationMessage::getBufferPosition() const {
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uint16_t bufferPosition;
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memcpy(&bufferPosition,
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getData() + sizeof(uint32_t) + sizeof(uint16_t), sizeof(bufferPosition));
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return bufferPosition;
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}
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void CommunicationMessage::setDataPointer(const void * data) {
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memcpy(getData() + 3 * sizeof(uint32_t), &data, sizeof(uint32_t));
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}
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void CommunicationMessage::setStoreId(store_address_t storeId) {
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memcpy(getData() + 2 * sizeof(uint32_t), &storeId, sizeof(store_address_t));
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memcpy(getData() + 2 * sizeof(uint32_t), &storeId.raw, sizeof(uint32_t));
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}
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store_address_t CommunicationMessage::getStoreId() const{
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store_address_t temp;
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memcpy(&temp.raw,getData() + 2 * sizeof(uint32_t), sizeof(uint32_t));
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return temp;
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}
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void CommunicationMessage::setDataLen(uint32_t length) {
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memcpy(getData() + 2 * sizeof(uint32_t), &length, sizeof(length));
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}
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void CommunicationMessage::setData(uint32_t data) {
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uint32_t CommunicationMessage::getDataLen() const {
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uint32_t len;
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memcpy(&len, getData() + 2 * sizeof(uint32_t), sizeof(len));
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return len;
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}
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void CommunicationMessage::setUint32Data(uint32_t data) {
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memcpy(getData() + 3 * sizeof(uint32_t), &data, sizeof(data));
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}
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void CommunicationMessage::setDataByte1(uint8_t byte1) {
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memcpy(getData() + 3 * sizeof(uint32_t), &byte1, sizeof(byte1));
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uint32_t CommunicationMessage::getUint32Data() const{
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uint32_t data;
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memcpy(&data,getData() + 3 * sizeof(uint32_t), sizeof(data));
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return data;
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}
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void CommunicationMessage::setDataByte2(uint8_t byte2) {
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memcpy(getData() + 3 * sizeof(uint32_t) + sizeof(uint8_t), &byte2, sizeof(byte2));
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void CommunicationMessage::setDataByte(uint8_t byte, uint8_t position) {
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if(0 <= position && position <= 3) {
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memcpy(getData() + 3 * sizeof(uint32_t) + position * sizeof(uint8_t), &byte, sizeof(byte));
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}
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else {
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error << "Comm Message: Invalid byte position" << std::endl;
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}
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}
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void CommunicationMessage::setDataByte3(uint8_t byte3) {
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memcpy(getData() + 3 * sizeof(uint32_t) + 2* sizeof(uint8_t), &byte3, sizeof(byte3));
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uint8_t CommunicationMessage::getDataByte(uint8_t position) const {
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if(0 <= position && position <= 3) {
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uint8_t byte;
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memcpy(&byte, getData() + 3 * sizeof(uint32_t) + position * sizeof(uint8_t), sizeof(byte));
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return byte;
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}
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else {
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return 0;
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error << "Comm Message: Invalid byte position" << std::endl;
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}
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}
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void CommunicationMessage::setDataByte4(uint8_t byte4) {
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memcpy(getData() + 3 * sizeof(uint32_t) + 3* sizeof(uint8_t), &byte4, sizeof(byte4));
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void CommunicationMessage::setDataUint16(uint16_t data, uint8_t position) {
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if(position == 0 || position == 1) {
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memcpy(getData() + 3 * sizeof(uint32_t) + position * sizeof(uint16_t), &data, sizeof(data));
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}
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else {
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error << "Comm Message: Invalid byte position" << std::endl;
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}
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}
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void CommunicationMessage::setDataUINT16_1(uint16_t data1) {
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memcpy(getData() + 3 * sizeof(uint32_t), &data1, sizeof(data1));
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uint16_t CommunicationMessage::getDataUint16(uint8_t position) const{
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if(position == 0 || position == 1) {
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uint16_t data;
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memcpy(&data, getData() + 3 * sizeof(uint32_t) + position * sizeof(uint16_t), sizeof(data));
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return data;
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}
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else {
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return 0;
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error << "Comm Message: Invalid byte position" << std::endl;
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}
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}
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void CommunicationMessage::setDataUINT16_2(uint16_t data2) {
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memcpy(getData() + 3 * sizeof(uint32_t) + sizeof(uint16_t), &data2, sizeof(data2));
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}
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CommunicationMessage::messageType CommunicationMessage::getMessageType() {
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CommunicationMessage::messageType CommunicationMessage::getMessageType() const{
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messageType messageType;
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memcpy(&messageType, getData() + sizeof(uint32_t),sizeof(uint8_t));
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return messageType;
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}
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void CommunicationMessage::setMessageId(uint8_t messageId) {
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memcpy(getData() + sizeof(uint32_t) + sizeof(uint8_t), &messageId, sizeof(messageId));
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}
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uint8_t CommunicationMessage::getMessageId() const {
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uint8_t messageId;
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memcpy(&messageId, getData() + sizeof(uint32_t) + sizeof(uint8_t), sizeof(messageId));
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return messageId;
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}
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void CommunicationMessage::clearCommunicationMessage() {
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messageType messageType = getMessageType();
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switch(messageType) {
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case(messageType::REPLY_DATA_IPC_STORE):
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case(messageType::SEND_DATA_FROM_IPC_STORE): {
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store_address_t storeId = getStoreId();
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StorageManagerIF *ipcStore = objectManager->
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get<StorageManagerIF>(objects::IPC_STORE);
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if (ipcStore != NULL) {
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ipcStore->deleteData(storeId);
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}
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}
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/* NO BREAK falls through*/
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default:
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memset(getData(),0,4*sizeof(uint32_t));
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break;
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}
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}
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@ -10,6 +10,7 @@
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#include <framework/ipc/MessageQueueMessage.h>
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#include <framework/storagemanager/StorageManagerIF.h>
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#include <framework/devicehandlers/DeviceHandlerBase.h>
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/**
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* @brief Used to pass communication information between tasks
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@ -26,6 +27,7 @@
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class CommunicationMessage: public MessageQueueMessage {
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public:
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enum messageType {
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NONE,
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SEND_DATA_FROM_POINTER,
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SEND_DATA_FROM_IPC_STORE,
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SEND_DATA_RAW,
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@ -41,6 +43,24 @@ public:
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CommunicationMessage();
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virtual ~CommunicationMessage();
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/**
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* Message Type is stored as the fifth byte of the message data
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* @param status
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*/
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void setMessageType(messageType status);
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messageType getMessageType() const;
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/**
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* This is a unique ID which can be used to handle different kinds of messages.
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* For example, the same interface (e.g. SPI) could be used to exchange raw data
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* (e.g. sensor values) and data stored in the IPC store.
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* The ID can be used to distinguish the messages in child implementations.
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* The message ID is stored as the sixth byte of the message data.
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* @param messageId
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*/
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void setMessageId(uint8_t messageId);
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uint8_t getMessageId() const;
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/**
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* Send requests with pointer to the data to be sent and send data length
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* @param address Target Address, first four bytes
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@ -65,7 +85,8 @@ public:
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* @param data Pointer to data to send
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*
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*/
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void setSendRequestRaw(uint32_t address, uint32_t length);
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void setSendRequestRaw(uint32_t address, uint32_t length,
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uint16_t sendBufferPosition = 0);
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/**
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* Data message with data stored in IPC store
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@ -97,31 +118,27 @@ public:
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* First four bytes of message data
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* @param address
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*/
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void setAddress(uint32_t address);
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void setAddress(address_t address);
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address_t getAddress() const;
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/**
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* Set byte as position of 4 byte data field
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* @param byte
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* @param position Position, 0 to 3 possible
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*/
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void setDataByte(uint8_t byte, uint8_t position);
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uint8_t getDataByte(uint8_t position) const;
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/**
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* Message Type is stored as the fifth byte of the message data
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* @param status
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* Set 2 byte value at position 1 or 2 of data field
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* @param data
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* @param position 0 or 1 possible
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*/
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void setMessageType(messageType status);
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messageType getMessageType();
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void setDataUint16(uint16_t data, uint8_t position);
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uint16_t getDataUint16(uint8_t position) const;
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void setMessageId(uint8_t messageId);
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messageType getMessageId();
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/*
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* The following functions can be used to
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* set the data field (4 bytes possible);
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*/
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void setDataByte1(uint8_t byte1);
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void setDataByte2(uint8_t byte2);
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void setDataByte3(uint8_t byte3);
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void setDataByte4(uint8_t byte4);
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void setDataUINT16_1(uint16_t data1);
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void setDataUINT16_2(uint16_t data2);
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void setData(uint32_t data);
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void setUint32Data(uint32_t data);
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uint32_t getUint32Data() const;
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/**
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* Stored in Bytes 13-16 of message data
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@ -129,6 +146,8 @@ public:
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*/
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void setDataLen(uint32_t length);
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uint32_t getDataLen() const;
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/**
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* Stored in last four bytes (Bytes 17-20) of message data
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* @param sendData
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@ -136,19 +155,22 @@ public:
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void setDataPointer(const void * data);
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/**
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* Buffer Position is stored as the seventh and eigth byte of
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* In case the send request data or reply data is to be stored in a buffer,
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* a buffer Position can be stored here as the seventh and eigth byte of
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* the message, so the receive buffer can't be larger than sizeof(uint16_t) for now.
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* @param bufferPosition
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* @param bufferPosition In case the data is stored in a buffer, the position can be supplied here
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*/
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void setReceiveBufferPosition(uint16_t bufferPosition);
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void setBufferPosition(uint16_t bufferPosition);
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uint16_t getBufferPosition() const;
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void setStoreId(store_address_t storeId);
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store_address_t getStoreId() const;
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/**
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* Clear the message
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* Clear the message. Deletes IPC Store data
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* and sets all data to 0. Also sets message type to NONE
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*/
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void clearCommunicationMessage();
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private:
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bool uninitialized; //!< Could be used to warn if data has not been set.
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};
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@ -73,10 +73,15 @@ public:
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virtual ReturnValue_t getSendSuccess(Cookie *cookie) = 0;
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/**
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* Called by DHB in the SEND_WRITE doSendRead().
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* @param cookie
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* @return
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*/
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virtual ReturnValue_t requestReceiveMessage(Cookie *cookie) = 0;
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/**
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* Called by DHB in the GET_WIRTE doGetRead().
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* Called by DHB in the GET_WRITE doGetRead().
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* This function is used to receive data from the physical device
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* by implementing and calling related drivers or wrapper functions.
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* @param cookie
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