ploc supervisor update available command, wip
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8c1a5bd9ad
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2
fsfw
2
fsfw
@ -1 +1 @@
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Subproject commit c5b4b0136217219a4443d858f42c368af9b15f27
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Subproject commit b83259592a1f0ae5af20b00d1aef813fa26cd350
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@ -110,6 +110,11 @@ ReturnValue_t PlocSupervisorHandler::buildCommandFromCommand(
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prepareEmptyCmd(PLOC_SPV::APID_GET_BOOT_STATUS_RPT);
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prepareEmptyCmd(PLOC_SPV::APID_GET_BOOT_STATUS_RPT);
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result = RETURN_OK;
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result = RETURN_OK;
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break;
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break;
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}
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case(PLOC_SPV::UPDATE_AVAILABLE): {
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prepareUpdateAvailableCmd();
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result = RETURN_OK;
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break;
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}
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}
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default:
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default:
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sif::debug << "PlocSupervisorHandler::buildCommandFromCommand: Command not implemented"
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sif::debug << "PlocSupervisorHandler::buildCommandFromCommand: Command not implemented"
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@ -142,7 +147,9 @@ void PlocSupervisorHandler::fillCommandAndReplyMap() {
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this->insertInCommandMap(PLOC_SPV::GET_BOOT_STATUS_REPORT);
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this->insertInCommandMap(PLOC_SPV::GET_BOOT_STATUS_REPORT);
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this->insertInReplyMap(PLOC_SPV::ACK_REPORT, 3, nullptr, PLOC_SPV::SIZE_ACK_REPORT);
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this->insertInReplyMap(PLOC_SPV::ACK_REPORT, 3, nullptr, PLOC_SPV::SIZE_ACK_REPORT);
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this->insertInReplyMap(PLOC_SPV::EXE_REPORT, 3, nullptr, PLOC_SPV::SIZE_EXE_REPORT);
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this->insertInReplyMap(PLOC_SPV::EXE_REPORT, 3, nullptr, PLOC_SPV::SIZE_EXE_REPORT);
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this->insertInReplyMap(PLOC_SPV::HK_REPORT, 3, nullptr, PLOC_SPV::SIZE_HK_REPORT);
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this->insertInReplyMap(PLOC_SPV::HK_REPORT, 3, &hkset, PLOC_SPV::SIZE_HK_REPORT);
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this->insertInReplyMap(PLOC_SPV::HK_REPORT, 3, &bootStatusReport,
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PLOC_SPV::SIZE_BOOT_STATUS_REPORT);
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}
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}
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ReturnValue_t PlocSupervisorHandler::scanForReply(const uint8_t *start,
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ReturnValue_t PlocSupervisorHandler::scanForReply(const uint8_t *start,
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@ -441,34 +448,42 @@ ReturnValue_t PlocSupervisorHandler::handleBootStatusReport(const uint8_t* data)
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uint16_t offset = PLOC_SPV::DATA_FIELD_OFFSET;
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uint16_t offset = PLOC_SPV::DATA_FIELD_OFFSET;
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bootStatusReport.bootSignal = *(data + offset);
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bootStatusReport.bootSignal = *(data + offset);
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offest += 1;
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offset += 1;
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bootStatusReport.resetCounter = *(data + offset);
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bootStatusReport.resetCounter = *(data + offset);
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offest += 1;
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offset += 1;
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bootStatusReport.bootAfterMs = *(data + offset) << 24 | *(data + offset + 1) << 16 |
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bootStatusReport.bootAfterMs = *(data + offset) << 24 | *(data + offset + 1) << 16 |
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*(data + offset + 2) << 8 | *(data + offset + 3);
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*(data + offset + 2) << 8 | *(data + offset + 3);
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offest += 4;
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offset += 4;
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bootStatusReport.bootTimeoutMs = *(data + offset) << 24 | *(data + offset + 1) << 16 |
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bootStatusReport.bootTimeoutMs = *(data + offset) << 24 | *(data + offset + 1) << 16 |
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*(data + offset + 2) << 8 | *(data + offset + 3);
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*(data + offset + 2) << 8 | *(data + offset + 3);
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offest += 4;
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offset += 4;
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bootStatusReport.activeNvm = *(data + offset);
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bootStatusReport.activeNvm = *(data + offset);
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offest += 1;
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offset += 1;
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bootStatusReport.bp0State = *(data + offset);
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bootStatusReport.bp0State = *(data + offset);
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offest += 1;
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offset += 1;
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bootStatusReport.bp1State = *(data + offset);
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bootStatusReport.bp1State = *(data + offset);
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offest += 1;
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offset += 1;
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bootStatusReport.bp2State = *(data + offset);
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bootStatusReport.bp2State = *(data + offset);
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nextReplyId = PLOC_SPV::EXE_REPORT;
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nextReplyId = PLOC_SPV::EXE_REPORT;
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#if OBSW_VERBOSE_LEVEL >= 1 && PLOC_SUPERVISOR_DEBUG == 1
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#if OBSW_VERBOSE_LEVEL >= 1 && PLOC_SUPERVISOR_DEBUG == 1
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: Boot signal: " << static_cast<unsigned int>(bootStatusReport.bootSignal.value) << std::endl;
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: Boot signal: "
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: Reset counter: " << static_cast<unsigned int>(bootStatusReport.resetCounter.value) << std::endl;
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<< static_cast<unsigned int>(bootStatusReport.bootSignal.value) << std::endl;
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: BootAfterMs: " << bootStatusReport.bootAfterMs << " ms" << std::endl;
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: Reset counter: "
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: BootTimeoutMs: " << bootStatusReport.bootTimeoutMs << " ms" << std::endl;
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<< static_cast<unsigned int>(bootStatusReport.resetCounter.value) << std::endl;
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: Active NVM: " << static_cast<unsigned int>(bootStatusReport.activeNvm.value) << std::endl;
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: BootAfterMs: "
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: BP0: " << static_cast<unsigned int>(bootStatusReport.bp0State) << std::endl;
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<< bootStatusReport.bootAfterMs << " ms" << std::endl;
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: BP1: " << static_cast<unsigned int>(bootStatusReport.bp1State) << std::endl;
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: BootTimeoutMs: "
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: BP2: " << static_cast<unsigned int>(bootStatusReport.bp2State) << std::endl;
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<< bootStatusReport.bootTimeoutMs << " ms" << std::endl;
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: Active NVM: "
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<< static_cast<unsigned int>(bootStatusReport.activeNvm.value) << std::endl;
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: BP0: "
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<< static_cast<unsigned int>(bootStatusReport.bp0State.value) << std::endl;
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: BP1: "
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<< static_cast<unsigned int>(bootStatusReport.bp1State.value) << std::endl;
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sif::info << "PlocSupervisorHandler::handleBootStatusReport: BP2: "
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<< static_cast<unsigned int>(bootStatusReport.bp2State.value) << std::endl;
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#endif
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#endif
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return result;
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return result;
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@ -493,6 +508,16 @@ ReturnValue_t PlocSupervisorHandler::enableReplyInReplyMap(DeviceCommandMap::ite
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}
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}
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break;
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break;
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}
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}
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case PLOC_SPV::GET_BOOT_STATUS_REPORT: {
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enabledReplies = 3;
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result = DeviceHandlerBase::enableReplyInReplyMap(command, enabledReplies, true,
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PLOC_SPV::BOOT_STATUS_REPORT);
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if (result != RETURN_OK) {
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sif::debug << "PlocSupervisorHandler::enableReplyInReplyMap: Reply with id "
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<< PLOC_SPV::BOOT_STATUS_REPORT << " not in replyMap" << std::endl;
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}
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break;
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}
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case PLOC_SPV::RESTART_MPSOC:
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case PLOC_SPV::RESTART_MPSOC:
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case PLOC_SPV::START_MPSOC:
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case PLOC_SPV::START_MPSOC:
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case PLOC_SPV::SHUTDOWN_MPSOC:
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case PLOC_SPV::SHUTDOWN_MPSOC:
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@ -650,6 +675,29 @@ void PlocSupervisorHandler::prepareRestartTriesCmd(const uint8_t * commandData)
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nextReplyId = PLOC_SPV::ACK_REPORT;
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nextReplyId = PLOC_SPV::ACK_REPORT;
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}
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}
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void PlocSupervisorHandler::prepareUpdateAvailableCmd(const uint8_t * commandData) {
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uint8_t offset = 0;
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uint8_t imageSelect = *(commandData + offset);
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offset += 1;
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uint8_t imagePartition = *(commandData + offset);
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offset += 1;
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uint32_t imageSize = *(commandData + offset) << 24 | *(commandData + offset + 1) << 16
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| *(commandData + offset + 2) << 8 | *(commandData + offset + 3);
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offset += 4;
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uint32_t imageCrc = *(commandData + offset) << 24 | *(commandData + offset + 1) << 16
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| *(commandData + offset + 2) << 8 | *(commandData + offset + 3);
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offset += 4;
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uint32_t numberOfPackets = *(commandData + offset) << 24 | *(commandData + offset + 1) << 16
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| *(commandData + offset + 2) << 8 | *(commandData + offset + 3);
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PLOC_SPV::UpdateAvailable packet(imageSelect, imagePartition, imageSize, imageCrc,
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numberOfPackets);
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memcpy(commandBuffer, packet.getWholeData(), packet.getFullSize());
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rawPacket = commandBuffer;
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rawPacketLen = packet.getFullSize();
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nextReplyId = PLOC_SPV::ACK_REPORT;
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}
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void PlocSupervisorHandler::disableAllReplies() {
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void PlocSupervisorHandler::disableAllReplies() {
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DeviceReplyMap::iterator iter;
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DeviceReplyMap::iterator iter;
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@ -21,6 +21,8 @@ static const DeviceCommandId_t RESET_MPSOC = 8;
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static const DeviceCommandId_t SET_TIME_REF = 9;
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static const DeviceCommandId_t SET_TIME_REF = 9;
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static const DeviceCommandId_t DISABLE_PERIOIC_HK_TRANSMISSION = 10;
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static const DeviceCommandId_t DISABLE_PERIOIC_HK_TRANSMISSION = 10;
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static const DeviceCommandId_t GET_BOOT_STATUS_REPORT = 11;
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static const DeviceCommandId_t GET_BOOT_STATUS_REPORT = 11;
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/** Notifies the supervisor that a new update is available for the MPSoC */
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static const DeviceCommandId_t UPDATE_AVAILABLE = 12;
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/** Reply IDs */
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/** Reply IDs */
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static const DeviceCommandId_t ACK_REPORT = 50;
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static const DeviceCommandId_t ACK_REPORT = 50;
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@ -427,12 +429,73 @@ public:
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lp_var_t<uint32_t> bootAfterMs = lp_var_t<uint32_t>(sid.objectId, PoolIds::BOOT_AFTER_MS, this);
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lp_var_t<uint32_t> bootAfterMs = lp_var_t<uint32_t>(sid.objectId, PoolIds::BOOT_AFTER_MS, this);
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/** The currently set boot timeout */
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/** The currently set boot timeout */
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lp_var_t<uint32_t> bootTimeoutMs = lp_var_t<uint32_t>(sid.objectId, PoolIds::BOOT_TIMEOUT_MS, this);
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lp_var_t<uint32_t> bootTimeoutMs = lp_var_t<uint32_t>(sid.objectId, PoolIds::BOOT_TIMEOUT_MS, this);
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lp_var_t<uint8_t> activeNvm = lp_var_t<uint32_t>(sid.objectId, PoolIds::ACTIVE_NVM, this);
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lp_var_t<uint8_t> activeNvm = lp_var_t<uint8_t>(sid.objectId, PoolIds::ACTIVE_NVM, this);
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/** States of the boot partition pins */
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/** States of the boot partition pins */
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lp_var_t<uint8_t> bp0State = lp_var_t<uint32_t>(sid.objectId, PoolIds::BP0_STATE, this);
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lp_var_t<uint8_t> bp0State = lp_var_t<uint8_t>(sid.objectId, PoolIds::BP0_STATE, this);
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lp_var_t<uint8_t> bp1State = lp_var_t<uint32_t>(sid.objectId, PoolIds::BP1_STATE, this);
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lp_var_t<uint8_t> bp1State = lp_var_t<uint8_t>(sid.objectId, PoolIds::BP1_STATE, this);
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lp_var_t<uint8_t> bp2State = lp_var_t<uint32_t>(sid.objectId, PoolIds::BP2_STATE, this);
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lp_var_t<uint8_t> bp2State = lp_var_t<uint8_t>(sid.objectId, PoolIds::BP2_STATE, this);
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};
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};
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}
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}
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/**
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* @brief This class packages the command to notify the supervisor that a new update for the
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* MPSoC is available.
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*/
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class UpdateAvailable: public SpacePacket {
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public:
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/**
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* @brief Constructor
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*
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* @param imageSelect
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* @param imagePartition
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* @param imageSize
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* @param imageCrc
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* @param numberOfPackets
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*/
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UpdateAvailable(uint8_t imageSelect, uint8_t imagePartition, uint32_t imageSize,
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uint32_t imageCrc, uint32_t numberOfPackets) :
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SpacePacket(DATA_FIELD_LENGTH - 1, true, APID_SEL_MPSOC_BOOT_IMAGE,
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DEFAULT_SEQUENCE_COUNT), imageSelect(imageSelect), imagePartition(
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imagePartition), imageSize(imageSize), imageCrc(imageCrc), numberOfPackets(
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numberOfPackets) {
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initPacket();
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}
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private:
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static const uint16_t DATA_FIELD_LENGTH = 16;
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static const uint16_t DEFAULT_SEQUENCE_COUNT = 1;
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static const uint16_t CRC_OFFSET = DATA_FIELD_LENGTH - 2;
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uint8_t imageSelect = 0;
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uint8_t imagePartition = 0;
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uint32_t imageSize = 0;
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uint32_t imageCrc = 0;
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uint32_t numberOfPackets = 0;
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void initPacket() {
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uint8_t offset = 0;
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uint8_t* data_field_start = this->localData.fields.buffer;
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std::memcpy(data_field_start + offset, &imageSelect, sizeof(imageSelect));
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offset += 1;
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std::memcpy(data_field_start + offset, &imagePartition, sizeof(imagePartition));
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offset += 1;
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std::memcpy(data_field_start + offset, &imageSize, sizeof(imageSize));
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offset += 4;
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std::memcpy(data_field_start + offset, &imageCrc, sizeof(imageCrc));
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offset += 4;
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std::memcpy(data_field_start + offset, &numberOfPackets, sizeof(numberOfPackets));
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uint16_t crc = CRC::crc16ccitt(this->localData.byteStream,
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sizeof(CCSDSPrimaryHeader) + DATA_FIELD_LENGTH - 2);
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/* Add crc to packet data field of space packet */
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size_t serializedSize = 0;
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uint8_t* crcPos = this->localData.fields.buffer + CRC_OFFSET;
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SerializeAdapter::serialize<uint16_t>(&crc, &crcPos, &serializedSize, sizeof(crc),
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SerializeIF::Endianness::BIG);
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}
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};
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#endif /* MISSION_DEVICES_DEVICEDEFINITIONS_PLOCSVPDEFINITIONS_H_ */
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#endif /* MISSION_DEVICES_DEVICEDEFINITIONS_PLOCSVPDEFINITIONS_H_ */
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2
tmtc
2
tmtc
@ -1 +1 @@
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Subproject commit 2e942ec21e47485b9ab6416a0341b9ab8ec30543
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Subproject commit 6352a6f272b3138257831fcd1f5d9ffcd4902681
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