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501 lines
19 KiB
501 lines
19 KiB
#include "MAVLinkDecoder.h" |
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#include <QDebug> |
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MAVLinkDecoder::MAVLinkDecoder(MAVLinkProtocol* protocol, QObject *parent) : |
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QThread() |
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{ |
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Q_UNUSED(parent); |
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// We're doing it wrong - because the Qt folks got the API wrong: |
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// http://blog.qt.digia.com/blog/2010/06/17/youre-doing-it-wrong/ |
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moveToThread(this); |
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mavlink_message_info_t msg[256] = MAVLINK_MESSAGE_INFO; |
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memcpy(messageInfo, msg, sizeof(mavlink_message_info_t)*256); |
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memset(receivedMessages, 0, sizeof(mavlink_message_t)*256); |
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for (unsigned int i = 0; i<255;++i) |
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{ |
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componentID[i] = -1; |
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componentMulti[i] = false; |
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onboardTimeOffset[i] = 0; |
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onboardToGCSUnixTimeOffsetAndDelay[i] = 0; |
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firstOnboardTime[i] = 0; |
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} |
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// Fill filter |
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// Allow system status |
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// messageFilter.insert(MAVLINK_MSG_ID_HEARTBEAT, false); |
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// messageFilter.insert(MAVLINK_MSG_ID_SYS_STATUS, false); |
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messageFilter.insert(MAVLINK_MSG_ID_STATUSTEXT, false); |
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messageFilter.insert(MAVLINK_MSG_ID_COMMAND_LONG, false); |
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messageFilter.insert(MAVLINK_MSG_ID_COMMAND_ACK, false); |
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messageFilter.insert(MAVLINK_MSG_ID_PARAM_SET, false); |
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messageFilter.insert(MAVLINK_MSG_ID_PARAM_VALUE, false); |
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messageFilter.insert(MAVLINK_MSG_ID_MISSION_ITEM, false); |
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messageFilter.insert(MAVLINK_MSG_ID_MISSION_COUNT, false); |
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messageFilter.insert(MAVLINK_MSG_ID_MISSION_ACK, false); |
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messageFilter.insert(MAVLINK_MSG_ID_DATA_STREAM, false); |
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messageFilter.insert(MAVLINK_MSG_ID_GPS_STATUS, false); |
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messageFilter.insert(MAVLINK_MSG_ID_RC_CHANNELS_RAW, false); |
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messageFilter.insert(MAVLINK_MSG_ID_LOG_DATA, false); |
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#ifdef MAVLINK_MSG_ID_ENCAPSULATED_DATA |
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messageFilter.insert(MAVLINK_MSG_ID_ENCAPSULATED_DATA, false); |
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#endif |
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#ifdef MAVLINK_MSG_ID_DATA_TRANSMISSION_HANDSHAKE |
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messageFilter.insert(MAVLINK_MSG_ID_DATA_TRANSMISSION_HANDSHAKE, false); |
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#endif |
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messageFilter.insert(MAVLINK_MSG_ID_EXTENDED_MESSAGE, false); |
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messageFilter.insert(MAVLINK_MSG_ID_FILE_TRANSFER_PROTOCOL, false); |
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textMessageFilter.insert(MAVLINK_MSG_ID_DEBUG, false); |
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textMessageFilter.insert(MAVLINK_MSG_ID_DEBUG_VECT, false); |
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textMessageFilter.insert(MAVLINK_MSG_ID_NAMED_VALUE_FLOAT, false); |
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textMessageFilter.insert(MAVLINK_MSG_ID_NAMED_VALUE_INT, false); |
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// textMessageFilter.insert(MAVLINK_MSG_ID_HIGHRES_IMU, false); |
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connect(protocol, &MAVLinkProtocol::messageReceived, this, &MAVLinkDecoder::receiveMessage); |
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start(LowPriority); |
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} |
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/** |
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* @brief Runs the thread |
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* |
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**/ |
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void MAVLinkDecoder::run() |
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{ |
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exec(); |
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} |
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void MAVLinkDecoder::receiveMessage(LinkInterface* link,mavlink_message_t message) |
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{ |
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Q_UNUSED(link); |
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memcpy(receivedMessages+message.msgid, &message, sizeof(mavlink_message_t)); |
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uint8_t msgid = message.msgid; |
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// Store an arrival time for this message. This value ends up being calculated later. |
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quint64 time = 0; |
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// The SYSTEM_TIME message is special, in that it's handled here for synchronizing the QGC time with the remote time. |
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if (message.msgid == MAVLINK_MSG_ID_SYSTEM_TIME) |
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{ |
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mavlink_system_time_t timebase; |
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mavlink_msg_system_time_decode(&message, &timebase); |
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onboardTimeOffset[message.sysid] = (timebase.time_unix_usec+500)/1000 - timebase.time_boot_ms; |
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onboardToGCSUnixTimeOffsetAndDelay[message.sysid] = static_cast<qint64>(QGC::groundTimeMilliseconds() - (timebase.time_unix_usec+500)/1000); |
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} |
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else |
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{ |
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// See if first value is a time value and if it is, use that as the arrival time for this data. |
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uint8_t fieldid = 0; |
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uint8_t* m = ((uint8_t*)(receivedMessages+msgid))+8; |
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if (QString(messageInfo[msgid].fields[fieldid].name) == QString("time_boot_ms") && messageInfo[msgid].fields[fieldid].type == MAVLINK_TYPE_UINT32_T) |
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{ |
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time = *((quint32*)(m+messageInfo[msgid].fields[fieldid].wire_offset)); |
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} |
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else if (QString(messageInfo[msgid].fields[fieldid].name).contains("usec") && messageInfo[msgid].fields[fieldid].type == MAVLINK_TYPE_UINT64_T) |
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{ |
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time = *((quint64*)(m+messageInfo[msgid].fields[fieldid].wire_offset)); |
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time = (time+500)/1000; // Scale to milliseconds, round up/down correctly |
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} |
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} |
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// Align UAS time to global time |
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time = getUnixTimeFromMs(message.sysid, time); |
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// Send out all field values for this message |
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for (unsigned int i = 0; i < messageInfo[msgid].num_fields; ++i) |
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{ |
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emitFieldValue(&message, i, time); |
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} |
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// Send out combined math expressions |
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// FIXME XXX TODO |
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} |
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quint64 MAVLinkDecoder::getUnixTimeFromMs(int systemID, quint64 time) |
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{ |
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quint64 ret = 0; |
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if (time == 0) |
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{ |
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ret = QGC::groundTimeMilliseconds() - onboardToGCSUnixTimeOffsetAndDelay[systemID]; |
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} |
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// Check if time is smaller than 40 years, |
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// assuming no system without Unix timestamp |
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// runs longer than 40 years continuously without |
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// reboot. In worst case this will add/subtract the |
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// communication delay between GCS and MAV, |
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// it will never alter the timestamp in a safety |
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// critical way. |
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// |
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// Calculation: |
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// 40 years |
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// 365 days |
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// 24 hours |
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// 60 minutes |
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// 60 seconds |
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// 1000 milliseconds |
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// 1000 microseconds |
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#ifndef _MSC_VER |
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else if (time < 1261440000000LLU) |
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#else |
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else if (time < 1261440000000) |
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#endif |
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{ |
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if (onboardTimeOffset[systemID] == 0 || time < (firstOnboardTime[systemID]-100)) |
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{ |
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firstOnboardTime[systemID] = time; |
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onboardTimeOffset[systemID] = QGC::groundTimeMilliseconds() - time; |
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} |
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if (time > firstOnboardTime[systemID]) firstOnboardTime[systemID] = time; |
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ret = time + onboardTimeOffset[systemID]; |
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} |
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else |
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{ |
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// Time is not zero and larger than 40 years -> has to be |
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// a Unix epoch timestamp. Do nothing. |
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ret = time; |
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} |
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// // Check if the offset estimation likely went wrong |
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// // and we're talking to a new instance / the system |
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// // has rebooted. Only reset if this is consistent. |
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// if (!isNull && lastNonNullTime > ret) |
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// { |
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// onboardTimeOffsetInvalidCount++; |
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// } |
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// else if (!isNull && lastNonNullTime < ret) |
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// { |
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// onboardTimeOffsetInvalidCount = 0; |
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// } |
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// // Reset onboard time offset estimation, since it seems to be really off |
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// if (onboardTimeOffsetInvalidCount > 20) |
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// { |
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// onboardTimeOffset = 0; |
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// onboardTimeOffsetInvalidCount = 0; |
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// lastNonNullTime = 0; |
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// qDebug() << "RESETTET ONBOARD TIME OFFSET"; |
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// } |
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// // If we're progressing in time, set it |
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// // else wait for the reboot detection to |
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// // catch the timestamp wrap / reset |
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// if (!isNull && (lastNonNullTime < ret)) { |
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// lastNonNullTime = ret; |
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// } |
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return ret; |
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} |
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void MAVLinkDecoder::emitFieldValue(mavlink_message_t* msg, int fieldid, quint64 time) |
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{ |
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bool multiComponentSourceDetected = false; |
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// Store component ID |
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if (componentID[msg->msgid] == -1) |
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{ |
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componentID[msg->msgid] = msg->compid; |
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} |
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else |
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{ |
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// Got this message already |
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if (componentID[msg->msgid] != msg->compid) |
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{ |
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componentMulti[msg->msgid] = true; |
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} |
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} |
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if (componentMulti[msg->msgid] == true) multiComponentSourceDetected = true; |
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// Add field tree widget item |
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uint8_t msgid = msg->msgid; |
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if (messageFilter.contains(msgid)) return; |
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QString fieldName(messageInfo[msgid].fields[fieldid].name); |
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QString fieldType; |
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uint8_t* m = ((uint8_t*)(receivedMessages+msgid))+8; |
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QString name("%1.%2"); |
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QString unit(""); |
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// Debug vector messages |
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if (msgid == MAVLINK_MSG_ID_DEBUG_VECT) |
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{ |
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mavlink_debug_vect_t debug; |
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mavlink_msg_debug_vect_decode(msg, &debug); |
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char buf[11]; |
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strncpy(buf, debug.name, 10); |
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buf[10] = '\0'; |
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name = QString("%1.%2").arg(buf).arg(fieldName); |
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time = getUnixTimeFromMs(msg->sysid, (debug.time_usec+500)/1000); // Scale to milliseconds, round up/down correctly |
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} |
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else if (msgid == MAVLINK_MSG_ID_DEBUG) |
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{ |
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mavlink_debug_t debug; |
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mavlink_msg_debug_decode(msg, &debug); |
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name = name.arg(QString("debug")).arg(debug.ind); |
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time = getUnixTimeFromMs(msg->sysid, debug.time_boot_ms); |
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} |
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else if (msgid == MAVLINK_MSG_ID_NAMED_VALUE_FLOAT) |
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{ |
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mavlink_named_value_float_t debug; |
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mavlink_msg_named_value_float_decode(msg, &debug); |
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char buf[11]; |
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strncpy(buf, debug.name, 10); |
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buf[10] = '\0'; |
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name = QString(buf); |
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time = getUnixTimeFromMs(msg->sysid, debug.time_boot_ms); |
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} |
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else if (msgid == MAVLINK_MSG_ID_NAMED_VALUE_INT) |
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{ |
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mavlink_named_value_int_t debug; |
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mavlink_msg_named_value_int_decode(msg, &debug); |
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char buf[11]; |
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strncpy(buf, debug.name, 10); |
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buf[10] = '\0'; |
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name = QString(buf); |
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time = getUnixTimeFromMs(msg->sysid, debug.time_boot_ms); |
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} |
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else if (msgid == MAVLINK_MSG_ID_RC_CHANNELS_RAW) |
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{ |
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// XXX this is really ugly, but we do not know a better way to do this |
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mavlink_rc_channels_raw_t raw; |
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mavlink_msg_rc_channels_raw_decode(msg, &raw); |
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name = name.arg(messageInfo[msgid].name).arg(fieldName); |
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name.prepend(QString("port%1_").arg(raw.port)); |
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} |
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else if (msgid == MAVLINK_MSG_ID_RC_CHANNELS_SCALED) |
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{ |
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// XXX this is really ugly, but we do not know a better way to do this |
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mavlink_rc_channels_scaled_t scaled; |
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mavlink_msg_rc_channels_scaled_decode(msg, &scaled); |
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name = name.arg(messageInfo[msgid].name).arg(fieldName); |
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name.prepend(QString("port%1_").arg(scaled.port)); |
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} |
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else if (msgid == MAVLINK_MSG_ID_SERVO_OUTPUT_RAW) |
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{ |
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// XXX this is really ugly, but we do not know a better way to do this |
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mavlink_servo_output_raw_t servo; |
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mavlink_msg_servo_output_raw_decode(msg, &servo); |
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name = name.arg(messageInfo[msgid].name).arg(fieldName); |
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name.prepend(QString("port%1_").arg(servo.port)); |
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} |
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else |
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{ |
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name = name.arg(messageInfo[msgid].name).arg(fieldName); |
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} |
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if (multiComponentSourceDetected) |
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{ |
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name = name.prepend(QString("C%1:").arg(msg->compid)); |
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} |
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name = name.prepend(QString("M%1:").arg(msg->sysid)); |
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switch (messageInfo[msgid].fields[fieldid].type) |
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{ |
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case MAVLINK_TYPE_CHAR: |
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if (messageInfo[msgid].fields[fieldid].array_length > 0) |
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{ |
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char* str = (char*)(m+messageInfo[msgid].fields[fieldid].wire_offset); |
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// Enforce null termination |
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str[messageInfo[msgid].fields[fieldid].array_length-1] = '\0'; |
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QString string(name + ": " + str); |
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if (!textMessageFilter.contains(msgid)) emit textMessageReceived(msg->sysid, msg->compid, MAV_SEVERITY_INFO, string); |
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} |
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else |
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{ |
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// Single char |
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char b = *((char*)(m+messageInfo[msgid].fields[fieldid].wire_offset)); |
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unit = QString("char[%1]").arg(messageInfo[msgid].fields[fieldid].array_length); |
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emit valueChanged(msg->sysid, name, unit, b, time); |
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} |
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break; |
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case MAVLINK_TYPE_UINT8_T: |
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if (messageInfo[msgid].fields[fieldid].array_length > 0) |
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{ |
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uint8_t* nums = m+messageInfo[msgid].fields[fieldid].wire_offset; |
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fieldType = QString("uint8_t[%1]").arg(messageInfo[msgid].fields[fieldid].array_length); |
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for (unsigned int j = 0; j < messageInfo[msgid].fields[fieldid].array_length; ++j) |
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{ |
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emit valueChanged(msg->sysid, QString("%1.%2").arg(name).arg(j), fieldType, nums[j], time); |
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} |
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} |
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else |
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{ |
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// Single value |
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uint8_t u = *(m+messageInfo[msgid].fields[fieldid].wire_offset); |
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fieldType = "uint8_t"; |
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emit valueChanged(msg->sysid, name, fieldType, u, time); |
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} |
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break; |
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case MAVLINK_TYPE_INT8_T: |
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if (messageInfo[msgid].fields[fieldid].array_length > 0) |
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{ |
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int8_t* nums = (int8_t*)(m+messageInfo[msgid].fields[fieldid].wire_offset); |
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fieldType = QString("int8_t[%1]").arg(messageInfo[msgid].fields[fieldid].array_length); |
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for (unsigned int j = 0; j < messageInfo[msgid].fields[fieldid].array_length; ++j) |
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{ |
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emit valueChanged(msg->sysid, QString("%1.%2").arg(name).arg(j), fieldType, nums[j], time); |
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} |
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} |
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else |
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{ |
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// Single value |
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int8_t n = *((int8_t*)(m+messageInfo[msgid].fields[fieldid].wire_offset)); |
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fieldType = "int8_t"; |
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emit valueChanged(msg->sysid, name, fieldType, n, time); |
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} |
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break; |
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case MAVLINK_TYPE_UINT16_T: |
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if (messageInfo[msgid].fields[fieldid].array_length > 0) |
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{ |
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uint16_t* nums = (uint16_t*)(m+messageInfo[msgid].fields[fieldid].wire_offset); |
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fieldType = QString("uint16_t[%1]").arg(messageInfo[msgid].fields[fieldid].array_length); |
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for (unsigned int j = 0; j < messageInfo[msgid].fields[fieldid].array_length; ++j) |
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{ |
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emit valueChanged(msg->sysid, QString("%1.%2").arg(name).arg(j), fieldType, nums[j], time); |
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} |
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} |
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else |
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{ |
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// Single value |
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uint16_t n = *((uint16_t*)(m+messageInfo[msgid].fields[fieldid].wire_offset)); |
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fieldType = "uint16_t"; |
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emit valueChanged(msg->sysid, name, fieldType, n, time); |
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} |
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break; |
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case MAVLINK_TYPE_INT16_T: |
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if (messageInfo[msgid].fields[fieldid].array_length > 0) |
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{ |
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int16_t* nums = (int16_t*)(m+messageInfo[msgid].fields[fieldid].wire_offset); |
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fieldType = QString("int16_t[%1]").arg(messageInfo[msgid].fields[fieldid].array_length); |
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for (unsigned int j = 0; j < messageInfo[msgid].fields[fieldid].array_length; ++j) |
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{ |
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emit valueChanged(msg->sysid, QString("%1.%2").arg(name).arg(j), fieldType, nums[j], time); |
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} |
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} |
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else |
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{ |
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// Single value |
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int16_t n = *((int16_t*)(m+messageInfo[msgid].fields[fieldid].wire_offset)); |
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fieldType = "int16_t"; |
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emit valueChanged(msg->sysid, name, fieldType, n, time); |
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} |
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break; |
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case MAVLINK_TYPE_UINT32_T: |
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if (messageInfo[msgid].fields[fieldid].array_length > 0) |
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{ |
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uint32_t* nums = (uint32_t*)(m+messageInfo[msgid].fields[fieldid].wire_offset); |
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fieldType = QString("uint32_t[%1]").arg(messageInfo[msgid].fields[fieldid].array_length); |
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for (unsigned int j = 0; j < messageInfo[msgid].fields[fieldid].array_length; ++j) |
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{ |
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emit valueChanged(msg->sysid, QString("%1.%2").arg(name).arg(j), fieldType, nums[j], time); |
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} |
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} |
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else |
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{ |
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// Single value |
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uint32_t n = *((uint32_t*)(m+messageInfo[msgid].fields[fieldid].wire_offset)); |
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fieldType = "uint32_t"; |
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emit valueChanged(msg->sysid, name, fieldType, n, time); |
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} |
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break; |
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case MAVLINK_TYPE_INT32_T: |
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if (messageInfo[msgid].fields[fieldid].array_length > 0) |
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{ |
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int32_t* nums = (int32_t*)(m+messageInfo[msgid].fields[fieldid].wire_offset); |
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fieldType = QString("int32_t[%1]").arg(messageInfo[msgid].fields[fieldid].array_length); |
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for (unsigned int j = 0; j < messageInfo[msgid].fields[fieldid].array_length; ++j) |
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{ |
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emit valueChanged(msg->sysid, QString("%1.%2").arg(name).arg(j), fieldType, nums[j], time); |
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} |
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} |
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else |
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{ |
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// Single value |
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int32_t n = *((int32_t*)(m+messageInfo[msgid].fields[fieldid].wire_offset)); |
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fieldType = "int32_t"; |
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emit valueChanged(msg->sysid, name, fieldType, n, time); |
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} |
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break; |
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case MAVLINK_TYPE_FLOAT: |
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if (messageInfo[msgid].fields[fieldid].array_length > 0) |
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{ |
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float* nums = (float*)(m+messageInfo[msgid].fields[fieldid].wire_offset); |
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fieldType = QString("float[%1]").arg(messageInfo[msgid].fields[fieldid].array_length); |
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for (unsigned int j = 0; j < messageInfo[msgid].fields[fieldid].array_length; ++j) |
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{ |
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emit valueChanged(msg->sysid, QString("%1.%2").arg(name).arg(j), fieldType, (float)(nums[j]), time); |
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} |
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} |
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else |
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{ |
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// Single value |
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float f = *((float*)(m+messageInfo[msgid].fields[fieldid].wire_offset)); |
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fieldType = "float"; |
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emit valueChanged(msg->sysid, name, fieldType, f, time); |
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} |
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break; |
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case MAVLINK_TYPE_DOUBLE: |
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if (messageInfo[msgid].fields[fieldid].array_length > 0) |
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{ |
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double* nums = (double*)(m+messageInfo[msgid].fields[fieldid].wire_offset); |
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fieldType = QString("double[%1]").arg(messageInfo[msgid].fields[fieldid].array_length); |
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for (unsigned int j = 0; j < messageInfo[msgid].fields[fieldid].array_length; ++j) |
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{ |
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emit valueChanged(msg->sysid, QString("%1.%2").arg(name).arg(j), fieldType, nums[j], time); |
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} |
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} |
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else |
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{ |
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// Single value |
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double f = *((double*)(m+messageInfo[msgid].fields[fieldid].wire_offset)); |
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fieldType = "double"; |
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emit valueChanged(msg->sysid, name, fieldType, f, time); |
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} |
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break; |
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case MAVLINK_TYPE_UINT64_T: |
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if (messageInfo[msgid].fields[fieldid].array_length > 0) |
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{ |
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uint64_t* nums = (uint64_t*)(m+messageInfo[msgid].fields[fieldid].wire_offset); |
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fieldType = QString("uint64_t[%1]").arg(messageInfo[msgid].fields[fieldid].array_length); |
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for (unsigned int j = 0; j < messageInfo[msgid].fields[fieldid].array_length; ++j) |
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{ |
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emit valueChanged(msg->sysid, QString("%1.%2").arg(name).arg(j), fieldType, (quint64) nums[j], time); |
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} |
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} |
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else |
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{ |
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// Single value |
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uint64_t n = *((uint64_t*)(m+messageInfo[msgid].fields[fieldid].wire_offset)); |
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fieldType = "uint64_t"; |
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emit valueChanged(msg->sysid, name, fieldType, (quint64) n, time); |
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} |
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break; |
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case MAVLINK_TYPE_INT64_T: |
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if (messageInfo[msgid].fields[fieldid].array_length > 0) |
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{ |
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int64_t* nums = (int64_t*)(m+messageInfo[msgid].fields[fieldid].wire_offset); |
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fieldType = QString("int64_t[%1]").arg(messageInfo[msgid].fields[fieldid].array_length); |
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for (unsigned int j = 0; j < messageInfo[msgid].fields[fieldid].array_length; ++j) |
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{ |
|
emit valueChanged(msg->sysid, QString("%1.%2").arg(name).arg(j), fieldType, (qint64) nums[j], time); |
|
} |
|
} |
|
else |
|
{ |
|
// Single value |
|
int64_t n = *((int64_t*)(m+messageInfo[msgid].fields[fieldid].wire_offset)); |
|
fieldType = "int64_t"; |
|
emit valueChanged(msg->sysid, name, fieldType, (qint64) n, time); |
|
} |
|
break; |
|
default: |
|
qDebug() << "WARNING: UNKNOWN MAVLINK TYPE"; |
|
} |
|
}
|
|
|