Dashboard (web/hand_web.py) - Record/replay panel driving g1_record_replay.py as a pty child: take library (replay/download/duplicate/rename/delete/upload/delete-all), pause & resume, and in-take key buttons that grey out in the --fingers modes the recorder ignores (measured: in touch mode the keys change nothing at all). - /api/restart is container-aware: it kills inspire_g1 and lets the supervisor relaunch it. It used to run manage.sh, which started a SECOND inspire_g1 beside the supervised one - two writers on one RS-485 bus - and never returned. - Shape/combo libraries take a .bak on every write, with an undo button. Both files are rewritten in full, so deleting the last entry was unrecoverable. recorder/ - The recorder lives in this project now: one source of truth for the CLI and the dashboard, with pause/resume added to replay. - record.sh picks a runtime by itself (a python with the SDK, the vendored SDK, or the inspire-hand container). bundle.sh packs a ~340KB portable kit. tools/ - preflight.sh: read-only readiness report for a new robot (hardware, docker, build prerequisites, per-robot settings) ending in an install-path verdict. - fetch_deps.sh: stage build dependencies, verifying the libs are aarch64. - export_ui.py: regenerate an embedding app's vendored copy of the UI. docker/ - build_image.sh resolves its dependencies from several layouts: deps/ inside the project, /usr/local, a source install prefix, or a ROS2 colcon workspace (where the idl headers live when /usr/local has none). - web/ is copied in the last layer, so dashboard edits skip the C++ rebuild. - restart=always, and start.sh always builds so an edit cannot silently run a stale image. deps/unitree_sdk2 is vendored so a robot that has never seen the SDK can build. Docs: README quickstart + embedding notes, SETUP_G1 corrected (that udev rule stopped creating /dev/inspire_* symlinks a while ago), ROBOT_README describing a live install.
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Inspire RH56 dual-hand bring-up on Unitree G1 (PC2)
Setup notes specific to this robot. Upstream README assumes a clean
unitree_sdk2 install in /usr/local and hard-codes /dev/ttyUSB1+/dev/ttyUSB2;
neither holds here, so we adjust as below.
Canonical (workstation): …/yslootahtech/Project/G1/DFX_inspire_service
Deploy to PC2 unitree@192.168.123.164:~/DFX_inspire_service via rsync, then ./build.sh.
(wifi 10.255.254.86 is flaky; the eth0 IP 192.168.123.164 is the reliable path.)
0. Easiest way to drive everything — manage.sh
./manage.sh # status: service + devices + adapters
./manage.sh start|stop|restart
./manage.sh open|close|box|menu # fingers only
./manage.sh like|handshake|thumbup # arm + hand (ARM MOVES)
./manage.sh arm "shake hand" # built-in arm action; armlist to list
./manage.sh help
It keeps exactly one inspire_g1 running (duplicates corrupt the RS-485 bus) and
auto-starts the service for gesture commands.
Architecture (unchanged from upstream)
hand_example/your app → DDS topic rt/inspire/cmd (MotorCmds_, 12 motors:
0–5 right, 6–11 left) → inspire_g1 → RS-485 (CH340 USB adapters, 115200 8N1,
Inspire slave id 1) → hands. State flows back on rt/inspire/state.
Finger order per hand: pinky, ring, middle, index, thumb-bend, thumb-rotation.
q ∈ [0,1]: 0 = closed, 1 = open.
1. Build (no system changes)
unitree_sdk2 in /usr/local is stale (no go2 IDL). build.sh links against the
newer ~/unitree_sdk2 source tree instead:
cd ~/DFX_inspire_service
./build.sh # -> build/inspire_g1, inspire_h1, hand_example
2. Serial access + telling the two hands apart (one-time)
Both adapters are CH340s reporting the same USB serial, so there is nothing intrinsic to key on. Two separate problems, two separate answers:
Access. The udev rule grants 0666 to any CH340 tty — it does not create
/dev/inspire_* symlinks any more (per-port symlinks broke whenever the adapters
moved to a different hub socket). Only needed for the native path; the container
runs privileged with /dev mounted and does not care:
sudo cp ~/DFX_inspire_service/udev/99-inspire-hands.rules /etc/udev/rules.d/
sudo udevadm control --reload-rules && sudo udevadm trigger
ls -l /dev/ttyUSB* # two nodes, world-writable
Identity. inspire_g1 resolves which tty is which hand, best first:
- RS-485 id —
id 1 = right, id 2 = left. Wiring-independent and permanent; immune to replugs, hub changes and enumeration order. Set it once per robot:docker exec inspire-hand ./build/hand_setid <left-hand-port> 1 2 INSPIRE_RIGHT_PATH/INSPIRE_LEFT_PATH— pin by physical USB socket (run.shships1-2.2.1.1, which is this robot's topology).- USB path order — the fallback, and the one that can silently swap the hands on unfamiliar hardware.
On a new robot, do (1). Then (2) and (3) stop mattering.
3. Run + test
cd ~/DFX_inspire_service/build
./inspire_g1 # Terminal 1 (no sudo needed after the udev rule)
./hand_example # Terminal 2 -> both hands open/close ~1 Hz
Stop with Ctrl+C in each. If a hand doesn't move: check 24 V power, RS-485 A/B polarity, and that the hand is at Inspire slave id 1.
Record / replay panel (dashboard)
The dashboard's Record / replay card runs g1_record_replay.py as a child process — the
same script as the CLI, so a take made in the browser and one made from a terminal are the
same file in DataG1/. It needs the recorder present on whatever host serves the dashboard:
# where g1_record_replay.py lives (searched: ../Manual_Recorder, ~/Manual_Recorder)
export RECORDER_DIR=~/Manual_Recorder
# an interpreter that can import unitree_sdk2py (on a workstation: the g1_env conda python)
export RECORDER_PY=python3
./manage.sh dashboard # prints the resolved recorder path, or NOT FOUND
The panel starts a take, relays the in-take keys (o c [ ] ; ', f, and the saved shapes as
keys 1-9), answers the recorder's preview/save prompts, and lists DataG1/ for replay,
rename and delete. Two things it works around, both load-bearing:
- Keys are paced ~150 ms apart. The recorder reads them with
select()+ bufferedsys.stdin.read(1); a burst lands in Python's buffer,select()then reports nothing ready and every key after the first is stranded. Measured: 3 keys 10 ms apart → 2 arrived. - Stop sends SIGINT, and the dashboard repairs SIGINT first. A process backgrounded by a
non-interactive shell inherits
SIGINT = SIG_IGN, which survivesexec— andmanage.shstarts the dashboard exactly that way, so without the repair Stop would silently do nothing. The panel shows a warning if the repair did not hold. SIGINT (not SIGKILL) is what lets the recorder walk the arm home and release it.
Replay and preview move the arm and both require an explicit confirmation. Starting a
take disarms force-follow, since the bridge and the recorder would otherwise both publish
rt/inspire/cmd every frame.
If you move an adapter to a different USB socket
The udev KERNELS value changes. Re-discover and update the rule:
udevadm info -a -n /dev/ttyUSB0 | grep -m1 'KERNELS=="[0-9]'
Troubleshooting
/dev/inspire_*missing / no CH340 inlsusb→ the hand USB-RS485 adapters are unplugged (or robot rebooted with them out). Re-plug them; udev recreates the names.- Fingers don't move (thumb might) → usually a latched actuator fault from running
two
inspire_g1at once.inspire_g1now runsClearError+ sets speed/force on startup;./manage.sh restartre-applies it. If still stuck, power-cycle the hands (24 V). - Two
inspire_g1instances → they collide on the serial bus;./manage.sh statusflags it,restartfixes it. Kill withpkill -x inspire_g1(neverpkill -f). rt/inspire/statereads all-zeros → cosmetic; CH340 adapters echo their TX so position read-back is unreliable. Does not affect commands sent to the hand.