Julian Oesandjonas 75cb93a7e7 fix(navigator): report a failed geofence load instead of leaving a fragment (#28603)
* fix(navigator): report a failed geofence load instead of leaving a fragment

_updateFence() resets _num_polygons and rebuilds the fence from dataman one
polygon at a time. It can stop early two ways: loadWait() failing for an entry,
or the array resize failing to allocate. Both logged to the console and left
whatever had been loaded so far in place.

A fragment of a fence is worse than no fence. Missing inclusion polygons permit
positions the fence excluded, missing exclusion polygons open up areas it
protected, and unlike an empty fence it still looks to the operator like a fence
is loaded.

Drop what was loaded on either failure and report it with mavlink_log_critical
and an event, so the state is unambiguous and the operator is told the fence is
not active rather than finding out in flight.

Reported by @lihnucs, who found the allocation path.

Assisted-by: Claude:claude-opus-5[1m]
Signed-off-by: Julian Oes <julian@oes.ch>

* rework(navigator): use _clearFence in ~Geofence()

* refactor(navigator): move new functions in hpp

* fix(navigator): pub GF_STATUS_FAILED when _updateFence fails and ensure GF is reloaded if previously failed with new request with same opaque id

* refactor(navigator): remove redundant check

* feat(msg): add GF_STATUS_FAILED to GeofenceStatus.msg

* refactor(navigator): rename _fence_updated to _fence_loaded

The flag now means the requested fence was loaded successfully, and
"updated" reads like a uORB or dataman change. Default it to false
since nothing is loaded at boot.

Assisted-by: Claude:claude-opus-5
Signed-off-by: Julian Oes <julian@oes.ch>

---------

Signed-off-by: Julian Oes <julian@oes.ch>
Co-authored-by: jonas <jonas.perolini@rigi.tech>
2026-09-17 10:04:40 +12:00
2026-09-16 16:00:00 +00:00
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PX4 Autopilot

The autopilot stack the industry builds on.

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About

PX4 is an open-source autopilot stack for drones and unmanned vehicles. It supports multirotors, fixed-wing, VTOL, rovers, and many more experimental platforms from racing quads to industrial survey aircraft. It runs on NuttX, Linux, and macOS. Licensed under BSD 3-Clause.

Why PX4

Modular architecture. PX4 is built around uORB, a DDS-compatible publish/subscribe middleware. Modules are fully parallelized and thread safe. You can build custom configurations and trim what you don't need.

Wide hardware support. PX4 runs on a wide range of autopilot boards and supports an extensive set of sensors, telemetry radios, and actuators through the Pixhawk ecosystem.

Developer friendly. First-class support for MAVLink and DDS / ROS 2 integration. Comprehensive SITL simulation, hardware-in-the-loop testing, and log analysis tools. An active developer community on Discord and the weekly dev call.

Vendor neutral governance. PX4 is hosted under the Dronecode Foundation, part of the Linux Foundation. Business-friendly BSD-3 license. No single vendor controls the roadmap.

Supported Vehicles

Multicopter
Multicopter
Fixed Wing
Fixed Wing
VTOL
VTOL
Rover
Rover

…and many more: helicopters, autogyros, airships, submarines, boats, and other experimental platforms. These frames have basic support but are not part of the regular flight-test program. See the full airframe reference.

Try PX4

Run PX4 in simulation with a single command. No build tools, no dependencies beyond Docker:

docker run --rm -it -p 14550:14550/udp px4io/px4-sitl:latest

Open QGroundControl and fly. See PX4 Simulation Quickstart for more options.

Build from Source

git clone https://github.com/PX4/PX4-Autopilot.git --recursive
cd PX4-Autopilot
make px4_sitl

Note

See the Development Guide for toolchain setup and build options.

Documentation & Resources

Resource Description
User Guide Build, configure, and fly with PX4
Developer Guide Modify the flight stack, add peripherals, port to new hardware
Airframe Reference Full list of supported frames
Autopilot Hardware Compatible flight controllers
Release Notes What's new in each release
Contribution Guide How to contribute to PX4

Community

Contributing

We welcome contributions of all kinds — bug reports, documentation, new features, and code reviews. Please read the Contribution Guide to get started.

Citation

If you use PX4 in academic work, please cite it. BibTeX:

@software{px4_autopilot,
  author    = {Meier, Lorenz and {The PX4 Contributors}},
  title     = {{PX4 Autopilot}},
  publisher = {Zenodo},
  doi       = {10.5281/zenodo.595432},
  url       = {https://px4.io}
}

The DOI above is a Zenodo concept DOI that always resolves to the latest release. For a version-pinned citation, see the Zenodo record or our CITATION.cff.

Governance

The PX4 Autopilot project is hosted by the Dronecode Foundation, a Linux Foundation Collaborative Project. Dronecode holds all PX4 trademarks and serves as the project's legal guardian, ensuring vendor-neutral stewardship — no single company owns the name or controls the roadmap. The source code is licensed under the BSD 3-Clause license, so you are free to use, modify, and distribute it in your own projects.

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Python 4.1%
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Other 1.5%