Files
wireclaw-pizero/camera_server.py
nicoboy a6cea5619a fix: videoconvert wrapping textoverlay dans pipeline hw
textoverlay ne digère pas I420 directement depuis v4l2convert.
Ajout de videoconvert avant et après textoverlay, puis
v4l2convert ! video/x-raw,format=I420 juste avant v4l2h264enc.

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
2026-06-09 16:59:10 +02:00

319 lines
10 KiB
Python

#!/usr/bin/env python3
"""
WireClaw — Pi Zero 2W camera server
Flask API port 5000 : /health /settings
RTP H264 → Jetson via GStreamer subprocess
Sideband JSON UDP port 5602 → Jetson (1 Hz)
Encoder strategy: v4l2h264enc hardware (default) → x264enc software (auto-fallback)
Config: .env (base) overridden by .env.dev if present
"""
import json
import os
import shlex
import signal
import socket
import subprocess
import threading
import time
import logging
from flask import Flask, jsonify, request
# --- .env loading -------------------------------------------------------------
def _load_env(path: str) -> None:
if not os.path.exists(path):
return
with open(path) as f:
for raw in f:
line = raw.strip()
if not line or line.startswith("#") or "=" not in line:
continue
key, _, val = line.partition("=")
os.environ[key.strip()] = val.strip()
_load_env(".env")
_load_env(".env.dev") # overrides .env when present
# --- Configuration -----------------------------------------------------------
DEFAULTS: dict = {
"jetson_host": os.environ.get("JETSON_HOST", "192.168.1.84"),
"jetson_port": int(os.environ.get("JETSON_PORT", "5600")),
"width": int(os.environ.get("WIDTH", "640")),
"height": int(os.environ.get("HEIGHT", "480")),
"fps": int(os.environ.get("FPS", "15")),
"bitrate_kbps": int(os.environ.get("BITRATE_KBPS", "1000")),
# "auto" tries hw then sw; "hw" forces v4l2h264enc; "sw" forces x264enc
"encoder": os.environ.get("ENCODER", "auto"),
}
FLASK_PORT = 5000
SIDEBAND_PORT = 5602
# --- Logging -----------------------------------------------------------------
logging.basicConfig(
level=logging.INFO,
format="%(asctime)s [%(levelname)s] %(message)s",
)
log = logging.getLogger(__name__)
# --- Helpers -----------------------------------------------------------------
def _get_temp_celsius() -> float | None:
"""Read SoC temperature via vcgencmd. Returns None if unavailable."""
try:
out = subprocess.check_output(["vcgencmd", "measure_temp"], text=True, timeout=1)
# output: "temp=45.2'C"
return float(out.strip().split("=")[1].replace("'C", ""))
except Exception:
return None
def _h264_level(w: int, h: int) -> str:
"""Minimum H.264 level for the given resolution."""
# level 4 required for anything above 720p
return "4" if w * h > 1280 * 720 else "3.2"
# --- Pipeline builder --------------------------------------------------------
def _build_pipeline(cfg: dict, encoder: str, overlay_text: str) -> str:
w, h, fps = cfg["width"], cfg["height"], cfg["fps"]
host, port = cfg["jetson_host"], cfg["jetson_port"]
level = _h264_level(w, h)
sink = f"rtph264pay config-interval=1 pt=96 ! udpsink host={host} port={port}"
# shlex-safe: repr() wraps in single quotes, preserving spaces inside text value
overlay = (
f"textoverlay text={overlay_text!r} "
f"valignment=top halignment=left "
f'font-desc="Sans Bold 24" draw-shadow=true'
)
if encoder == "hw":
bitrate_bps = cfg["bitrate_kbps"] * 1000
return (
f"libcamerasrc ! "
f"video/x-raw,width={w},height={h},format=NV12,framerate={fps}/1 ! "
f"v4l2convert ! "
f"videoconvert ! "
f"{overlay} ! "
f"videoconvert ! "
f"v4l2convert ! video/x-raw,format=I420 ! "
f"v4l2h264enc video-bitrate={bitrate_bps} "
f'extra-controls="controls,repeat_sequence_header=1" ! '
f"video/x-h264,level=(string){level} ! "
f"h264parse ! "
f"{sink}"
)
# sw — videoconvert handles any format before and after textoverlay
return (
f"libcamerasrc ! "
f"video/x-raw,width={w},height={h},framerate={fps}/1 ! "
f"videoconvert ! "
f"{overlay} ! "
f"videoconvert ! "
f"x264enc tune=zerolatency bitrate={cfg['bitrate_kbps']} ! "
f"{sink}"
)
# --- Sideband UDP thread ------------------------------------------------------
def _sideband_worker(gst: "GstManager") -> None:
sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
log.info("Sideband UDP ready (→ port %d)", SIDEBAND_PORT)
try:
while not gst._shutdown.is_set():
cfg = gst.get_cfg()
temp = _get_temp_celsius()
payload = json.dumps({
"ts": time.time(),
"width": cfg["width"],
"height": cfg["height"],
"fps": cfg["fps"],
"encoder": gst.encoder_active or "unknown",
"temp_c": temp,
}).encode()
try:
sock.sendto(payload, (cfg["jetson_host"], SIDEBAND_PORT))
except OSError as exc:
log.debug("sideband send: %s", exc)
time.sleep(1)
finally:
sock.close()
# --- GStreamer process manager -----------------------------------------------
class GstManager:
def __init__(self) -> None:
self._cfg: dict = dict(DEFAULTS)
self._lock = threading.Lock()
self._proc: subprocess.Popen | None = None
self._shutdown = threading.Event()
self._thread: threading.Thread | None = None
self.encoder_active: str | None = None
# Public API
def start(self) -> None:
self._thread = threading.Thread(target=self._worker, name="gst-rtp", daemon=True)
self._thread.start()
threading.Thread(target=_sideband_worker, args=(self,), name="sideband", daemon=True).start()
def stop(self) -> None:
self._shutdown.set()
self._terminate()
def restart_with(self, patch: dict) -> None:
with self._lock:
self._cfg.update(patch)
self._terminate()
def is_alive(self) -> bool:
with self._lock:
return self._proc is not None and self._proc.poll() is None
def get_cfg(self) -> dict:
with self._lock:
return dict(self._cfg)
# Internal
def _terminate(self) -> None:
with self._lock:
proc = self._proc
if proc and proc.poll() is None:
proc.terminate()
try:
proc.wait(timeout=3)
except subprocess.TimeoutExpired:
proc.kill()
def _launch(self, encoder: str) -> "subprocess.Popen | None":
with self._lock:
cfg = dict(self._cfg)
temp = _get_temp_celsius()
temp_str = f"{temp:.1f}C" if temp is not None else "?C"
overlay_text = f"temp={temp_str} {cfg['fps']}fps {cfg['width']}x{cfg['height']}"
pipeline = _build_pipeline(cfg, encoder, overlay_text)
cmd = ["gst-launch-1.0", "-e"] + shlex.split(pipeline)
log.info("GStreamer [%s] pipeline: %s", encoder, pipeline)
try:
return subprocess.Popen(cmd, stdout=subprocess.DEVNULL, stderr=subprocess.PIPE, text=True)
except FileNotFoundError:
log.error("gst-launch-1.0 not found in PATH")
return None
@staticmethod
def _drain_stderr(proc: "subprocess.Popen") -> None:
for line in proc.stderr:
stripped = line.rstrip()
if stripped:
log.debug("gst: %s", stripped)
def _worker(self) -> None:
with self._lock:
pref = self._cfg.get("encoder", "auto")
if pref == "hw":
queue = ["hw"]
elif pref == "sw":
queue = ["sw"]
else:
queue = ["hw", "sw"]
while not self._shutdown.is_set():
for enc in queue:
proc = self._launch(enc)
if proc is None:
continue
with self._lock:
self._proc = proc
self.encoder_active = enc
log.info("RTP stream running (encoder=%s)", enc)
threading.Thread(target=self._drain_stderr, args=(proc,), daemon=True).start()
proc.wait()
rc = proc.returncode
if self._shutdown.is_set():
return
log.warning("GStreamer [%s] exited rc=%d", enc, rc)
if enc == "hw" and pref == "auto":
log.warning("Hardware encoder failed — permanent fallback to x264enc")
queue = ["sw"]
break # restart outer while-loop with updated queue
if not self._shutdown.is_set():
log.info("Restarting in 3 s…")
time.sleep(3)
_gst = GstManager()
# --- Flask app ---------------------------------------------------------------
app = Flask(__name__)
@app.route("/health")
def health():
alive = _gst.is_alive()
return jsonify({
"status": "ok" if alive else "degraded",
"rtp": alive,
"encoder": _gst.encoder_active,
})
@app.route("/settings", methods=["GET"])
def settings_get():
return jsonify(_gst.get_cfg())
@app.route("/settings", methods=["POST"])
def settings_post():
data = request.get_json(force=True, silent=True) or {}
allowed = {"jetson_host", "jetson_port", "width", "height", "fps", "bitrate_kbps", "encoder"}
patch = {k: v for k, v in data.items() if k in allowed}
if not patch:
return jsonify({"error": "no valid fields", "allowed": sorted(allowed)}), 400
_gst.restart_with(patch)
return jsonify({"status": "restarting", "applied": patch})
# --- Shutdown ----------------------------------------------------------------
def _on_signal(sig, _frame) -> None:
log.info("Signal %d — shutting down", sig)
_gst.stop()
os._exit(0)
# --- Entrypoint --------------------------------------------------------------
if __name__ == "__main__":
signal.signal(signal.SIGTERM, _on_signal)
signal.signal(signal.SIGINT, _on_signal)
_gst.start()
time.sleep(1)
log.info("Flask API on 0.0.0.0:%d", FLASK_PORT)
app.run(host="0.0.0.0", port=FLASK_PORT, threaded=True)