Commit Graph

5 Commits

Author SHA1 Message Date
8e1087b12b Add serve-webapp.sh to manage the webapp stack on the lightweight machine
Single command to start the interactive map container in the background
(auto-restart after reboot), with stop/restart/status/sync/logs/update
subcommands. Configuration lives in webapp.env (template provided,
git-ignored): remote generation URL, shared token, rsync cache command,
periodic sync and allowed network. The SSH key is mounted automatically
for rsync, port conflicts are detected before launch, and update pulls the
repo, rebuilds the image and restarts.

Deploy doc updated: the script is now the recommended install path on the
Raspberry Pi, alongside run.sh (foreground) and docker compose.
2026-09-04 21:48:35 +02:00
23969c9e14 Add Leaflet interactive map, tile generator compose, auto-sync cache, deploy docs
index.py rewritten as a continuous Leaflet map: rotated L93 tiles, stackable
visualization layers (per-layer opacity, drag-reorder persisted in
localStorage), tile info panel, live rebuild after each tile during a run.
Leaflet is vendored in assets/vendor/ so the map works fully offline;
georeferencing falls back rasterio -> pyproj -> affine so the lightweight
webapp (no GDAL) is supported.

docker-compose.worker.yml adds the tile generator service (full image + GPU)
that remote webapps call via LIDAR_GENERATION_URL, plus a one-shot process
profile. webapp.py gains LIDAR_AUTO_SYNC_SECONDS periodic cache refresh and
LIDAR_REGEN_CIDR restricting generation to the local network. run.sh
--serve-webapp now mounts ~/.ssh read-only so the rsync sync works.

docs/DEPLOY_WEBAPP.md completed for Raspberry Pi deployment: prerequisites,
git clone install, SSH key setup, first sync, update procedure and
troubleshooting.
2026-09-04 21:36:14 +02:00
422f58d772 Split webapp for Raspberry Pi deployment, remote generation API and sync
La webapp (carte + vignettes) et la génération de tuiles se déploient sur
deux machines : image légère Dockerfile.webapp (FastAPI + Pillow AVIF
natif + pyproj) sur Raspberry Pi, pipeline complet sur la machine de
traitement. LIDAR_GENERATION_URL délègue /api/generate, /api/preview et
/api/status ; /api/sync ramène les tuiles par rsync puis régénère
vignettes et index localement. Token partagé optionnel
(LIDAR_API_TOKEN/LIDAR_REMOTE_TOKEN). Retire du dépôt les journaux
internes (.swival, audit-findings) et les données (data/, notebooks/).
Doc : docs/DEPLOY_WEBAPP.md.
2026-09-02 19:44:39 +02:00
8ca65155db Add web map with zone generation API, side job queue, and restore historical DTM hole rendering
- webapp.py: FastAPI serving the continuous map (port 8973) with
  /api/preview, /api/generate and /api/status; tiles are downloaded
  from IGN and processed in a logged subprocess, tracked live in a
  side "File de génération" panel that survives page reloads
- fetch_ign.py: download missing 1 km LiDAR HD tiles from the IGN
  geoplateforme before processing
- index.py: tile thumbnails and 500 m subtiles are now invalidated by
  mtime so regenerating a tile refreshes its cached images; progress
  logging per tile
- dtm.py: back to the historical gap handling (small gaps filled by
  fillnodata only, larger holes left as nodata rendered black);
  lowest-return floor only via --bare-earth, IGN class selection via
  --ign-classes
- cli.py: positional input now optional (--rebuild-index works alone)
- docker-compose.yml: serve (GPU, port 8973) and process services;
  launch via docker compose only (documented in AGENTS.md/AGENTS.md)
- tests: 131 passing, incl. regressions for thumbnail staleness,
  --rebuild-index without input, and nodata rendering
2026-08-31 18:07:14 +02:00
67d024a64e Auto-detect best GPU with sm_120 skip: prefer RTX 5060 Ti, fall back to 4060 Ti when nvcc/CuPy does not support sm_120 yet 2026-05-31 23:14:23 +02:00