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Merge branch 'develop' into multi-message-Storage
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@@ -217,7 +217,7 @@ void setupModules()
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}
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#endif // HAS_BUTTON
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#if ARCH_PORTDUINO
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if (config.display.displaymode != meshtastic_Config_DisplayConfig_DisplayMode_COLOR) {
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if (config.display.displaymode != meshtastic_Config_DisplayConfig_DisplayMode_COLOR && portduino_config.i2cdev != "") {
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seesawRotary = new SeesawRotary("SeesawRotary");
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if (!seesawRotary->init()) {
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delete seesawRotary;
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@@ -45,8 +45,12 @@ bool PositionModule::handleReceivedProtobuf(const meshtastic_MeshPacket &mp, mes
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{
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auto p = *pptr;
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// If inbound message is a replay (or spoof!) of our own messages, we shouldn't process
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// (why use second-hand sources for our own data?)
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const auto transport = mp.transport_mechanism;
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if (isFromUs(&mp) && !IS_ONE_OF(transport, meshtastic_MeshPacket_TransportMechanism_TRANSPORT_INTERNAL,
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meshtastic_MeshPacket_TransportMechanism_TRANSPORT_API)) {
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LOG_WARN("Ignoring packet supposedly from us over external transport");
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return true;
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}
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// FIXME this can in fact happen with packets sent from EUD (src=RX_SRC_USER)
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// to set fixed location, EUD-GPS location or just the time (see also issue #900)
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@@ -472,19 +476,53 @@ void PositionModule::sendLostAndFoundText()
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delete[] message;
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}
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// Helper: return imprecise (truncated + centered) lat/lon as int32 using current precision
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static inline void computeImpreciseLatLon(int32_t inLat, int32_t inLon, uint8_t precisionBits, int32_t &outLat, int32_t &outLon)
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{
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if (precisionBits > 0 && precisionBits < 32) {
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// Build mask for top 'precisionBits' bits of a 32-bit unsigned field
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const uint32_t mask = (precisionBits == 32) ? UINT32_MAX : (UINT32_MAX << (32 - precisionBits));
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// Note: latitude_i/longitude_i are stored as signed 32-bit in meshtastic code but
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// the bitmask logic used previously operated as unsigned—preserve that behavior by
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// casting to uint32_t for masking, then back to int32_t.
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uint32_t lat_u = static_cast<uint32_t>(inLat) & mask;
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uint32_t lon_u = static_cast<uint32_t>(inLon) & mask;
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// Add the "center of cell" offset used elsewhere:
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// The code previously added (1 << (31 - precision)) to produce the middle of the possible location.
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uint32_t center_offset = (1u << (31 - precisionBits));
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lat_u += center_offset;
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lon_u += center_offset;
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outLat = static_cast<int32_t>(lat_u);
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outLon = static_cast<int32_t>(lon_u);
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} else {
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// full precision: return input unchanged
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outLat = inLat;
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outLon = inLon;
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}
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}
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struct SmartPosition PositionModule::getDistanceTraveledSinceLastSend(meshtastic_PositionLite currentPosition)
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{
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// The minimum distance to travel before we are able to send a new position packet.
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const uint32_t distanceTravelThreshold =
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Default::getConfiguredOrDefault(config.position.broadcast_smart_minimum_distance, 100);
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// Determine the distance in meters between two points on the globe
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float distanceTraveledSinceLastSend = GeoCoord::latLongToMeter(
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lastGpsLatitude * 1e-7, lastGpsLongitude * 1e-7, currentPosition.latitude_i * 1e-7, currentPosition.longitude_i * 1e-7);
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int32_t lastLatImprecise, lastLonImprecise;
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int32_t currentLatImprecise, currentLonImprecise;
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return SmartPosition{.distanceTraveled = abs(distanceTraveledSinceLastSend),
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computeImpreciseLatLon(lastGpsLatitude, lastGpsLongitude, precision, lastLatImprecise, lastLonImprecise);
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computeImpreciseLatLon(currentPosition.latitude_i, currentPosition.longitude_i, precision, currentLatImprecise,
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currentLonImprecise);
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float distMeters = GeoCoord::latLongToMeter(lastLatImprecise * 1e-7, lastLonImprecise * 1e-7, currentLatImprecise * 1e-7,
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currentLonImprecise * 1e-7);
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float distanceTraveled = fabsf(distMeters);
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return SmartPosition{.distanceTraveled = distanceTraveled,
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.distanceThreshold = distanceTravelThreshold,
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.hasTraveledOverThreshold = abs(distanceTraveledSinceLastSend) >= distanceTravelThreshold};
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.hasTraveledOverThreshold = distanceTraveled >= distanceTravelThreshold};
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}
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void PositionModule::handleNewPosition()
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@@ -75,6 +75,12 @@ uint8_t RoutingModule::getHopLimitForResponse(uint8_t hopStart, uint8_t hopLimit
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return Default::getConfiguredOrDefaultHopLimit(config.lora.hop_limit); // Use the default hop limit
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}
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meshtastic_MeshPacket *RoutingModule::allocAckNak(meshtastic_Routing_Error err, NodeNum to, PacketId idFrom, ChannelIndex chIndex,
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uint8_t hopLimit)
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{
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return MeshModule::allocAckNak(err, to, idFrom, chIndex, hopLimit);
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}
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RoutingModule::RoutingModule() : ProtobufModule("routing", meshtastic_PortNum_ROUTING_APP, &meshtastic_Routing_msg)
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{
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isPromiscuous = true;
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@@ -16,6 +16,9 @@ class RoutingModule : public ProtobufModule<meshtastic_Routing>
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virtual void sendAckNak(meshtastic_Routing_Error err, NodeNum to, PacketId idFrom, ChannelIndex chIndex, uint8_t hopLimit = 0,
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bool ackWantsAck = false);
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meshtastic_MeshPacket *allocAckNak(meshtastic_Routing_Error err, NodeNum to, PacketId idFrom, ChannelIndex chIndex,
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uint8_t hopLimit = 0);
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// Given the hopStart and hopLimit upon reception of a request, return the hop limit to use for the response
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uint8_t getHopLimitForResponse(uint8_t hopStart, uint8_t hopLimit);
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