868 lines
37 KiB
Python
868 lines
37 KiB
Python
"""Tests du serveur web de génération de zones (webapp)."""
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def test_bbox_to_cells_single_km_cell():
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"""Une bbox couvrant ~1 km² retourne la cellule L93 correspondante."""
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from lidar_pipeline.webapp import bbox_to_cells
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# Cellule 1054,6882 : X∈[1054000,1055000], Y∈[6881000,6882000] (L93)
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from rasterio.warp import transform as warp_transform
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lons, lats = warp_transform('EPSG:2154', 'EPSG:4326',
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[1054100, 1054900], [6881100, 6881900])
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cells = bbox_to_cells(min(lons), min(lats), max(lons), max(lats))
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assert (1054, 6882) in cells
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# La sélection reste locale : pas de cellule lointaine
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for (c, r) in cells:
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assert abs(c - 1054) <= 1 and abs(r - 6882) <= 1
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def test_bbox_to_cells_empty_for_tiny_bbox():
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"""Une bbox quasi ponctuelle ne sélectionne rien (rétrécie sous 1 m)."""
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from lidar_pipeline.webapp import bbox_to_cells
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assert bbox_to_cells(7.850000, 48.930000, 7.850001, 48.930001) == []
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def test_processed_cells(tmp_path):
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"""processed_cells lit les dossiers de visualisations."""
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from lidar_pipeline.webapp import processed_cells
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vis = tmp_path / "visualisations" / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69_r0p2"
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vis.mkdir(parents=True)
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(vis / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69_aspect.avif").write_bytes(b"x")
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assert processed_cells(tmp_path) == {(1054, 6882)}
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def test_missing_cells_filters_processed(tmp_path):
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"""Les cellules déjà traitées sont exclues, les autres gardent leurs coins."""
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from lidar_pipeline.webapp import missing_cells_with_corners
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vis = tmp_path / "visualisations" / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69"
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vis.mkdir(parents=True)
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(vis / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69_aspect.avif").write_bytes(b"x")
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todo = missing_cells_with_corners([(1054, 6882), (1055, 6882)], tmp_path)
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assert len(todo) == 1
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assert todo[0]['col'] == 1055 and todo[0]['row'] == 6882
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assert len(todo[0]['corners']) == 4 # SW, SE, NE, NW
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def test_missing_cells_include_done(tmp_path):
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"""include_done=True conserve les cellules déjà traitées (régénération)."""
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from lidar_pipeline.webapp import missing_cells_with_corners
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vis = tmp_path / "visualisations" / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69"
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vis.mkdir(parents=True)
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(vis / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69_aspect.avif").write_bytes(b"x")
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todo = missing_cells_with_corners([(1054, 6882), (1055, 6882)], tmp_path,
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include_done=True)
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assert {(t['col'], t['row']) for t in todo} == {(1054, 6882), (1055, 6882)}
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def _make_tile(tmp_path, col, row, viz_keys, resolutions=(0.5, 0.2)):
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"""Crée les dossiers de visualisations d'une tuile (une entrée par résolution).
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Le suffixe de résolution n'est que sur le DOSSIER : les fichiers gardent
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le basename nu (cf. _expected_output_path dans le pipeline).
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"""
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base = f"LHD_FXX_{col:04d}_{row:04d}_PTS_LAMB93_IGN69"
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for res in resolutions:
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suffix = "" if res == 0.5 else "_r" + str(res).replace('.', 'p')
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vis = tmp_path / "visualisations" / (base + suffix)
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vis.mkdir(parents=True, exist_ok=True)
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for key in viz_keys:
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(vis / f"{base}_{key}.avif").write_bytes(b"x")
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def test_missing_cells_includes_incomplete_tile(tmp_path):
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"""Une tuile existante mais incomplète reste incluse (visualisation manquante)."""
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from lidar_pipeline.webapp import missing_cells_with_corners
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_make_tile(tmp_path, 1054, 6882, ["aspect"])
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# aspect aux deux résolutions → complète pour ['aspect']
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assert missing_cells_with_corners([(1054, 6882)], tmp_path, viz=["aspect"]) == []
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# slope manquante → la tuile est incluse pour être complétée
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todo = missing_cells_with_corners([(1054, 6882)], tmp_path,
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viz=["aspect", "slope"])
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assert [(t['col'], t['row']) for t in todo] == [(1054, 6882)]
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def test_missing_cells_requires_generation_resolution(tmp_path):
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"""Une tuile complète à 0.5 mais sans 0.2 reste à traiter (seule 0.2 est générée)."""
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from lidar_pipeline.webapp import missing_cells_with_corners
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_make_tile(tmp_path, 1054, 6882, ["aspect"], resolutions=(0.5,))
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assert len(missing_cells_with_corners([(1054, 6882)], tmp_path, viz=["aspect"])) == 1
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_make_tile(tmp_path, 1054, 6882, ["aspect"], resolutions=(0.2,))
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assert missing_cells_with_corners([(1054, 6882)], tmp_path, viz=["aspect"]) == []
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def test_complete_cells_maps_step_names(tmp_path):
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"""Les noms d'étapes sont convertis en mots-clés de fichiers (hillshade → hillshade_multi)."""
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from lidar_pipeline.webapp import complete_cells
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_make_tile(tmp_path, 1054, 6882, ["hillshade_multi"])
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assert complete_cells(tmp_path, ["hillshade"]) == {(1054, 6882)}
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# 'pos_open' → 'positive_openness' : absent → tuile non complète
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assert complete_cells(tmp_path, ["pos_open"]) == set()
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def test_preview_rejects_unknown_viz():
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"""/api/preview refuse un nom de visualisation inconnu (HTTPException 400)."""
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from fastapi import HTTPException
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from lidar_pipeline.webapp import preview, PreviewRequest
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req = PreviewRequest(bbox=[7.85, 48.93, 7.86, 48.94], viz=["inconnu"])
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try:
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preview(req)
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assert False, "une HTTPException était attendue"
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except HTTPException as e:
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assert e.status_code == 400
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assert "inconnu" in e.detail
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def test_preset_sanitize_and_upsert(tmp_path, monkeypatch):
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"""Presets de couches : valeurs assainies, remplacées par identifiant."""
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import lidar_pipeline.webapp as webapp
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monkeypatch.setattr(webapp, "PRESETS_FILE", tmp_path / ".presets.json")
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req = webapp.PresetRequest(id="Relief v2!", label=" Reliefs ",
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on=["slope", "aspect"],
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opacity={"slope": 0.5, "aspect": "0.8", "lrm": "x"},
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osm={"on": True, "opacity": 1.5, "dark": True})
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p = webapp._sanitize_preset(req)
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assert p["id"] == "reliefv2"
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assert p["label"] == "Reliefs"
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assert p["opacity"] == {"slope": 0.5, "aspect": 0.8}
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assert p["osm"] == {"on": True, "opacity": 1.0, "dark": True}
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webapp.upsert_preset(req)
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assert [x["label"] for x in webapp.list_presets()["presets"]] == ["Reliefs"]
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# Même identifiant : remplacement, pas de doublon
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webapp.upsert_preset(webapp.PresetRequest(id="reliefv2", label="Reliefs v2",
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on=["slope"], opacity={}))
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got = webapp.list_presets()["presets"]
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assert len(got) == 1 and got[0]["label"] == "Reliefs v2"
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# Suppression inconnue : 404
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from fastapi import HTTPException
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webapp.delete_preset(got[0]["id"])
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assert webapp.list_presets()["presets"] == []
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try:
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webapp.delete_preset("reliefv2")
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assert False, "une HTTPException était attendue"
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except HTTPException as e:
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assert e.status_code == 404
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def test_preset_file_corrupted_is_ignored(tmp_path, monkeypatch):
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"""Un fichier de presets corrompu est ignoré (liste vide, pas d'exception)."""
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import lidar_pipeline.webapp as webapp
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monkeypatch.setattr(webapp, "PRESETS_FILE", tmp_path / ".presets.json")
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webapp.PRESETS_FILE.write_text("{pas du json", encoding="utf-8")
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assert webapp._load_presets() == []
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def test_build_command_resolutions_match_completeness():
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"""La commande -r et la détection de complétude utilisent les mêmes résolutions."""
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from lidar_pipeline.webapp import GENERATE_RESOLUTIONS, _build_command
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cmd = _build_command([(1054, 6882)])
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i = cmd.index("-r")
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assert cmd[i + 1] == ",".join(str(r) for r in GENERATE_RESOLUTIONS)
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def test_job_state_persisted_across_reload(tmp_path, monkeypatch):
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"""L'état du job survit au redémarrage du serveur (file .generation.job.json)."""
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import lidar_pipeline.webapp as webapp
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monkeypatch.setattr(webapp, "JOB_FILE", tmp_path / "job.json")
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saved = {k: webapp._job.get(k) for k in ("proc", "started", "returncode", "cmd", "finished")}
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try:
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webapp._job.update({"started": 123.0, "returncode": 0,
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"cmd": ["python", "-m", "lidar_pipeline"], "finished": 456.0})
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webapp._save_job_state()
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assert (tmp_path / "job.json").exists()
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# Simulation du redémarrage : état mémoire vide, rechargé depuis disque
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webapp._job.update({"proc": None, "started": None, "returncode": None,
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"cmd": None, "finished": None})
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webapp._load_job_state()
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assert webapp._job["started"] == 123.0
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assert webapp._job["returncode"] == 0
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assert webapp._job["finished"] == 456.0
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finally:
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webapp._job.update(saved)
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def test_laz_cells_parses_input(tmp_path):
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"""laz_cells repère les dalles LHD présentes dans input/ (les autres ignorés)."""
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from lidar_pipeline.webapp import laz_cells
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(tmp_path / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69.copc.laz").write_bytes(b"x")
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(tmp_path / "LHD_FXX_1055_6881_PTS_LAMB93_IGN69.laz").write_bytes(b"x")
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(tmp_path / "LHD_FXX_1056_6880_PTS_LAMB93_IGN69.copc.las").write_bytes(b"x")
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(tmp_path / "autre_fichier.laz").write_bytes(b"x")
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assert laz_cells(tmp_path) == [(1054, 6882), (1055, 6881), (1056, 6880)]
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def test_preview_all_missing(tmp_path, monkeypatch):
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"""all_missing: seulement les dalles présentes dans input/ et incomplètes."""
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import lidar_pipeline.webapp as webapp
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monkeypatch.setattr(webapp, "INPUT_DIR", tmp_path)
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monkeypatch.setattr(webapp, "OUTPUT_DIR", tmp_path)
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(tmp_path / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69.copc.laz").write_bytes(b"x")
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(tmp_path / "LHD_FXX_1055_6881_PTS_LAMB93_IGN69.copc.laz").write_bytes(b"x")
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# 1054,6882 : aspect aux deux résolutions → complète pour ['aspect']
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base = "LHD_FXX_1054_6882_PTS_LAMB93_IGN69"
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for suffix in ("", "_r0p2"):
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vis = tmp_path / "visualisations" / (base + suffix)
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vis.mkdir(parents=True)
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(vis / f"{base}_aspect.avif").write_bytes(b"x")
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d = webapp.preview(webapp.PreviewRequest(all_missing=True, viz=["aspect"]))
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assert d["count"] == 1
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assert d["cells"][0]["col"] == 1055 and d["cells"][0]["row"] == 6881
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def test_generate_all_missing(tmp_path, monkeypatch):
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"""all_missing: traite toutes les dalles présentes (au-delà de la limite 400)."""
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import lidar_pipeline.webapp as webapp
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monkeypatch.setattr(webapp, "INPUT_DIR", tmp_path)
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monkeypatch.setattr(webapp, "OUTPUT_DIR", tmp_path)
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for i in range(1054, 1455): # 401 dalles → au-delà de MAX_CELLS
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(tmp_path / f"LHD_FXX_{i:04d}_6882_PTS_LAMB93_IGN69.copc.laz").write_bytes(b"x")
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captured = {}
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def fake_popen(cmd, **kwargs):
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captured["cmd"] = cmd
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class _P:
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def wait(self):
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return 0
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def poll(self):
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return 0
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return _P()
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# Stub du module subprocess : patcher le vrai module global casserait ses
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# autres usages (matplotlib l'appelle à l'import, ex. fc-list) et la
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# restauration serait un no-op (valeur déjà falsifiée).
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import subprocess as _real_subprocess
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class _SubprocessStub:
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Popen = staticmethod(fake_popen)
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run = staticmethod(_real_subprocess.run)
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STDOUT = _real_subprocess.STDOUT
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monkeypatch.setattr(webapp, "subprocess", _SubprocessStub)
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req = webapp.GenerateRequest(tiles=[], all_missing=True, viz=["aspect"])
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result = webapp.generate(req)
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assert result["demarré"] is True and result["tuiles"] == 401
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i = captured["cmd"].index("--file")
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assert len(captured["cmd"][i + 1:]) == 401
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assert "LHD_FXX_1054_6882_PTS_LAMB93_IGN69.copc.laz" in captured["cmd"]
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def test_generate_all_missing_empty(tmp_path, monkeypatch):
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"""all_missing sans dalle présente → 400."""
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from fastapi import HTTPException
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import lidar_pipeline.webapp as webapp
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monkeypatch.setattr(webapp, "INPUT_DIR", tmp_path)
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monkeypatch.setattr(webapp, "OUTPUT_DIR", tmp_path)
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try:
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webapp.generate(webapp.GenerateRequest(tiles=[], all_missing=True))
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assert False, "une HTTPException était attendue"
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except HTTPException as e:
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assert e.status_code == 400
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def test_build_command_regenerate():
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"""regenerate --force seul (classification conservée) ; reclassify ajoute --force-classification."""
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from lidar_pipeline.webapp import _build_command
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cmd = " ".join(_build_command([(1054, 6882)], regenerate=True))
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assert "--force" in cmd
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assert "--force-classification" not in cmd
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cmd = " ".join(_build_command([(1054, 6882)], regenerate=True, reclassify=True))
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assert "--force" in cmd
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assert "--force-classification" in cmd
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cmd = " ".join(_build_command([(1054, 6882)]))
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assert "--force" not in cmd
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assert "--force-classification" not in cmd
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def test_build_command_ground_classification():
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"""La commande utilise la méthode de classification demandée (défaut : ign)."""
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from lidar_pipeline.webapp import _build_command, GROUND_CLASS_METHODS
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# Défaut : ign (pré-classification)
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cmd = _build_command([(1054, 6882)])
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i = cmd.index("--ground-classification")
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assert cmd[i + 1] == "ign"
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# Chaque méthode valide est transmise telle quelle ; --force suit
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# regenerate, --force-classification suit reclassify (indépendants)
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for method in GROUND_CLASS_METHODS:
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for regenerate in (False, True):
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for reclassify in (False, True):
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cmd = _build_command([(1054, 6882)], regenerate=regenerate,
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ground_class=method, reclassify=reclassify)
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i = cmd.index("--ground-classification")
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assert cmd[i + 1] == method
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assert ("--force" in cmd) == regenerate
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assert ("--force-classification" in cmd) == reclassify
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def test_stop_generation(monkeypatch):
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"""/api/stop termine le processus en cours (SIGTERM) ou refuse (409)."""
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import time
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from fastapi import HTTPException
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import lidar_pipeline.webapp as webapp
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terminated = []
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class FakeProc:
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pid = 4242
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def poll(self):
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return None # en cours
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def terminate(self):
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terminated.append("SIGTERM")
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def wait(self, timeout=None):
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terminated.append("wait")
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saved = {k: webapp._job.get(k) for k in ("proc", "started", "returncode", "cmd", "finished")}
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try:
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webapp._job.update({"proc": FakeProc(), "started": time.time(),
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"returncode": None, "cmd": ["x"], "finished": None})
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assert webapp.stop_generation() == {"arrêt": "demandé"}
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assert "SIGTERM" in terminated
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# Le fil d'escalade peut mettre un instant avant son wait : laisser
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# la file de threads vider avant de restaurer l'état du job.
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for _ in range(50):
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if "wait" in terminated:
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break
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time.sleep(0.02)
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# Sans job en cours : refus propre
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webapp._job.update({"proc": None})
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try:
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webapp.stop_generation()
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assert False, "une HTTPException était attendue"
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except HTTPException as e:
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assert e.status_code == 409
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finally:
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webapp._job.update(saved)
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def test_build_command_default_viz_aspect():
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"""Sans choix de visualisation, la commande génère uniquement aspect."""
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from lidar_pipeline.webapp import _build_command
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cmd = _build_command([(1054, 6882)])
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i = cmd.index("--only")
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assert cmd[i + 1] == "aspect"
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def test_build_command_custom_viz():
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"""Les visualisations demandées sont passées à --only dans l'ordre."""
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from lidar_pipeline.webapp import _build_command
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cmd = _build_command([(1054, 6882)], viz=["aspect", "wavelet", "slope"])
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i = cmd.index("--only")
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assert cmd[i + 1:i + 4] == ["aspect", "wavelet", "slope"]
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def test_build_command_incremental_index():
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"""La génération web reconstruit l'index après chaque tuile (affichage en direct)."""
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from lidar_pipeline.webapp import _build_command
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cmd = _build_command([(1054, 6882)])
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assert "--incremental-index" in cmd
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def test_tiles_endpoint_stamp_diffing(tmp_path, monkeypatch):
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"""/api/tiles sert index_tiles.json, allégé quand le stamp correspond."""
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import json
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import lidar_pipeline.webapp as webapp
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monkeypatch.setattr(webapp, "OUTPUT_DIR", tmp_path)
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# Fichier absent (aucune tuile encore indexée) → réponse vide
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assert webapp.tiles_data() == {"stamp": None, "tiles": None}
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# Fichier présent → données complètes puis réponse allégée au stamp
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(tmp_path / "index_tiles.json").write_text(
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json.dumps({"tiles": [{"col": 1054, "corners": []}],
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"viz_meta": {}, "stats": {}}), encoding="utf-8")
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full = webapp.tiles_data()
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assert full["tiles"][0]["col"] == 1054
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light = webapp.tiles_data(stamp=full["stamp"])
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assert light["tiles"] is None and light["stamp"] == full["stamp"]
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# Un stamp périmé redonne les données complètes
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assert webapp.tiles_data(stamp=full["stamp"] - 10)["tiles"] is not None
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def test_tiles_endpoint_merges_remote_index(tmp_path, monkeypatch):
|
|
"""L'index du worker prime ; le cache local complète les positions perdues.
|
|
|
|
viz_meta est filtré aux couches du panneau (PANEL_VIZ) : une couche
|
|
retirée (absente de PANEL_VIZ) proposée par un index obsolète n'est
|
|
pas réintroduite.
|
|
"""
|
|
import json
|
|
import lidar_pipeline.webapp as webapp
|
|
monkeypatch.setattr(webapp, "OUTPUT_DIR", tmp_path)
|
|
monkeypatch.setattr(webapp, "GENERATION_URL", "http://distant:8973")
|
|
(tmp_path / "index_tiles.json").write_text(json.dumps({
|
|
"tiles": [
|
|
{"col": 1054, "row": 6882, "resolution": 0.2, "viz": {}}, # commun
|
|
{"col": 1050, "row": 6882, "resolution": 0.2, "viz": {}}, # local seul
|
|
],
|
|
"viz_meta": {
|
|
"aspect": {"label": "Aspect local"},
|
|
"slope": {"label": "Pente locale"},
|
|
},
|
|
"stats": {},
|
|
}), encoding="utf-8")
|
|
import os
|
|
remote_stamp = os.stat(tmp_path / "index_tiles.json").st_mtime + 1000
|
|
monkeypatch.setattr(webapp, "_remote_tiles_data", lambda: {
|
|
"stamp": remote_stamp,
|
|
"tiles": [
|
|
# 1054 régénéré côté worker : sa version (viz remplie) doit primer
|
|
{"col": 1054, "row": 6882, "resolution": 0.2, "viz": {"slope": {}}},
|
|
{"col": 1055, "row": 6882, "resolution": 0.2, "viz": {}}, # distant seul
|
|
],
|
|
"viz_meta": {
|
|
"slope": {"label": "Pente"},
|
|
"wavelet": {"label": "Ondulets"}, # hors panneau : filtrée
|
|
},
|
|
})
|
|
d = webapp.tiles_data()
|
|
entries = {(t["col"], json.dumps(t["viz"], sort_keys=True)) for t in d["tiles"]}
|
|
assert (1054, '{"slope": {}}') in entries # version distante retenue
|
|
assert (1055, '{}') in entries # tuile non cachée visible
|
|
assert (1050, '{}') in entries # historique local conservé
|
|
assert d["viz_meta"]["slope"]["label"] == "Pente" # distant prime
|
|
assert d["viz_meta"]["aspect"]["label"] == "Aspect local" # local complété
|
|
assert "wavelet" not in d["viz_meta"] # couche hors panneau filtrée
|
|
assert d["stamp"] == remote_stamp # max des deux stamps
|
|
|
|
|
|
def test_tiles_endpoint_worker_offline_serves_local(tmp_path, monkeypatch):
|
|
"""Worker injoignable : index local servi seul, sans erreur."""
|
|
import json
|
|
import lidar_pipeline.webapp as webapp
|
|
monkeypatch.setattr(webapp, "OUTPUT_DIR", tmp_path)
|
|
monkeypatch.setattr(webapp, "GENERATION_URL", "http://distant:8973")
|
|
(tmp_path / "index_tiles.json").write_text(
|
|
json.dumps({"tiles": [{"col": 1054}], "viz_meta": {}, "stats": {}}),
|
|
encoding="utf-8")
|
|
monkeypatch.setattr(webapp, "_remote_tiles_data", lambda: None)
|
|
d = webapp.tiles_data()
|
|
assert d["tiles"][0]["col"] == 1054
|
|
assert d["stamp"] is not None
|
|
|
|
|
|
def test_worker_offline_breaker(monkeypatch):
|
|
"""3 échecs consécutifs → tentatives suspendues ; un succès réarme."""
|
|
import lidar_pipeline.webapp as webapp
|
|
monkeypatch.setattr(webapp, "_WORKER_HEALTH", {"fails": 0, "until": 0.0})
|
|
webapp._worker_mark(False)
|
|
webapp._worker_mark(False)
|
|
assert webapp._worker_offline() is False # pas encore armé
|
|
webapp._worker_mark(False)
|
|
assert webapp._worker_offline() is True # disjoncteur armé
|
|
until = webapp._WORKER_HEALTH["until"]
|
|
webapp._worker_mark(False)
|
|
assert webapp._WORKER_HEALTH["until"] == until # fenêtre non étendue
|
|
webapp._worker_mark(True)
|
|
assert webapp._worker_offline() is False # réarmé immédiatement
|
|
|
|
|
|
def test_safe_rel_path():
|
|
"""Seuls les chemins images des préfixes autorisés sont rapatrieables."""
|
|
from lidar_pipeline.webapp import _safe_rel_path
|
|
assert _safe_rel_path("/visualisations/dalle/img.avif") == \
|
|
"visualisations/dalle/img.avif"
|
|
assert _safe_rel_path("/index_thumbs/a_b.jpg") == "index_thumbs/a_b.jpg"
|
|
assert _safe_rel_path("/index_subtiles/x_0_1.avif") == "index_subtiles/x_0_1.avif"
|
|
assert _safe_rel_path("/DTM/x.tif") is None # préfixe interdit
|
|
assert _safe_rel_path("/assets/app.js") is None # préfixe interdit
|
|
assert _safe_rel_path("/visualisations/../x.avif") is None # traversal
|
|
assert _safe_rel_path("/visualisations/a%20b.avif") is None # caractères
|
|
|
|
|
|
def test_fetch_remote_to_cache(tmp_path, monkeypatch):
|
|
"""Rapatriement atomique depuis le worker ; échec sans fichier ni erreur."""
|
|
import io
|
|
import lidar_pipeline.webapp as webapp
|
|
monkeypatch.setattr(webapp, "OUTPUT_DIR", tmp_path)
|
|
monkeypatch.setattr(webapp, "GENERATION_URL", "http://distant:8973")
|
|
monkeypatch.setattr(webapp, "_WORKER_HEALTH", {"fails": 0, "until": 0.0})
|
|
|
|
class _Resp(io.BytesIO):
|
|
def __enter__(self):
|
|
return self
|
|
|
|
def __exit__(self, *a):
|
|
return False
|
|
|
|
captured = {}
|
|
|
|
def fake_urlopen(req, timeout=None):
|
|
captured["url"] = req.full_url
|
|
return _Resp(b"IMAGEDATA")
|
|
|
|
monkeypatch.setattr(webapp.urllib.request, "urlopen", fake_urlopen)
|
|
assert webapp._fetch_remote_to_cache("visualisations/dalle/img.avif") is True
|
|
p = tmp_path / "visualisations" / "dalle" / "img.avif"
|
|
assert p.read_bytes() == b"IMAGEDATA"
|
|
assert captured["url"] == "http://distant:8973/visualisations/dalle/img.avif"
|
|
assert not list(tmp_path.rglob("*.part")) # pas de résidu temporaire
|
|
assert webapp._WORKER_HEALTH["fails"] == 0 # succès → disjoncteur sain
|
|
|
|
def boom(req, timeout=None):
|
|
raise OSError("injoignable")
|
|
|
|
monkeypatch.setattr(webapp.urllib.request, "urlopen", boom)
|
|
assert webapp._fetch_remote_to_cache("visualisations/dalle/x.avif") is False
|
|
assert not (tmp_path / "visualisations" / "dalle" / "x.avif").exists()
|
|
assert webapp._WORKER_HEALTH["fails"] == 1
|
|
|
|
|
|
def test_status_worker_offline_no_error(monkeypatch):
|
|
"""Worker hors ligne : running=null (ignoré par l'UI), pas de 503."""
|
|
from fastapi import HTTPException
|
|
import lidar_pipeline.webapp as webapp
|
|
monkeypatch.setattr(webapp, "GENERATION_URL", "http://distant:8973")
|
|
|
|
def unreachable(method, path, payload=None, timeout=30):
|
|
raise HTTPException(503, "machine de traitement injoignable")
|
|
|
|
monkeypatch.setattr(webapp, "_proxy_api", unreachable)
|
|
d = webapp.status(_FakeRequest(host="192.168.1.7"))
|
|
assert d["running"] is None
|
|
assert d["worker_offline"] is True
|
|
assert d["regen_allowed"] is True
|
|
|
|
|
|
def test_viz_step_names_match_pipeline():
|
|
"""Les noms acceptés par l'API sont exactement les étapes VIZ_STEPS du pipeline."""
|
|
from lidar_pipeline.webapp import _viz_step_names
|
|
from lidar_pipeline.pipeline import VIZ_STEPS
|
|
assert _viz_step_names() == [n for n, _ in VIZ_STEPS]
|
|
|
|
|
|
def test_generate_rejects_unknown_viz():
|
|
"""L'API refuse un nom de visualisation inconnu (HTTPException 400)."""
|
|
from fastapi import HTTPException
|
|
from lidar_pipeline.webapp import generate, GenerateRequest
|
|
req = GenerateRequest(tiles=[[1054, 6882]], viz=["wavelet", "inconnu"])
|
|
try:
|
|
generate(req)
|
|
assert False, "une HTTPException était attendue"
|
|
except HTTPException as e:
|
|
assert e.status_code == 400
|
|
assert "inconnu" in e.detail
|
|
|
|
|
|
def test_generate_accepts_wavelet_and_slope(monkeypatch):
|
|
"""L'API accepte wavelet + slope et les transmet à --only."""
|
|
import lidar_pipeline.webapp as webapp
|
|
captured = {}
|
|
|
|
def fake_popen(cmd, **kwargs):
|
|
captured["cmd"] = cmd
|
|
|
|
class _P:
|
|
def wait(self):
|
|
return 0
|
|
|
|
def poll(self):
|
|
return 0
|
|
return _P()
|
|
|
|
# Stub du module subprocess (voir test_generate_all_missing) : ne pas
|
|
# patcher le vrai module global.
|
|
import subprocess as _real_subprocess
|
|
|
|
class _SubprocessStub:
|
|
Popen = staticmethod(fake_popen)
|
|
run = staticmethod(_real_subprocess.run)
|
|
STDOUT = _real_subprocess.STDOUT
|
|
|
|
monkeypatch.setattr(webapp, "subprocess", _SubprocessStub)
|
|
req = webapp.GenerateRequest(tiles=[[1054, 6882]],
|
|
viz=["wavelet", "slope"])
|
|
result = webapp.generate(req)
|
|
assert result["demarré"] is True
|
|
i = captured["cmd"].index("--only")
|
|
assert captured["cmd"][i + 1:i + 3] == ["wavelet", "slope"]
|
|
|
|
|
|
def test_available_layers_scans_disk(tmp_path, monkeypatch):
|
|
"""/api/layers retourne les couches présentes (clé → label)."""
|
|
import lidar_pipeline.webapp as webapp
|
|
monkeypatch.setattr(webapp, "OUTPUT_DIR", tmp_path)
|
|
vis = tmp_path / "visualisations" / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69"
|
|
vis.mkdir(parents=True)
|
|
(vis / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69_wavelet.avif").write_bytes(b"x")
|
|
layers = webapp.available_layers()
|
|
assert layers.get("wavelet")
|
|
assert "aspect" not in layers
|
|
|
|
|
|
def test_rebuild_index_background(tmp_path, monkeypatch):
|
|
"""POST /api/rebuild lance build_index en arrière-plan puis termine."""
|
|
import time as _time
|
|
import lidar_pipeline.webapp as webapp
|
|
import lidar_pipeline.index as index_mod
|
|
calls = []
|
|
monkeypatch.setattr(index_mod, "build_index", lambda out: calls.append(out))
|
|
assert webapp.rebuild_index()["demarré"] is True
|
|
for _ in range(100):
|
|
if not webapp.rebuild_status()["running"]:
|
|
break
|
|
_time.sleep(0.05)
|
|
assert calls # build_index a bien été appelé
|
|
assert webapp.rebuild_status()["running"] is False
|
|
assert webapp.rebuild_status()["done"] is not None
|
|
|
|
|
|
def test_status_exposes_tiles_from_events(tmp_path, monkeypatch):
|
|
"""/api/status agrège les événements en tuiles (nom court + étapes)."""
|
|
import lidar_pipeline.webapp as webapp
|
|
from lidar_pipeline.progress import report_event, reset_events
|
|
monkeypatch.setattr(webapp, "OUTPUT_DIR", tmp_path)
|
|
reset_events(tmp_path)
|
|
report_event(tmp_path, "LHD_FXX_1054_6882_PTS_LAMB93_IGN69", "viz",
|
|
"start", "aspect", res=0.5)
|
|
s = webapp.status()
|
|
match = [t for t in s["tiles"] if t["short"] == "1054-6882"]
|
|
assert len(match) == 1
|
|
assert match[0]["state"] == "running"
|
|
assert any(step["label"] == "Aspect" for step in match[0]["steps"])
|
|
|
|
|
|
def test_generate_resets_progress_events(tmp_path, monkeypatch):
|
|
"""Un nouveau run repart d'un journal d'événements vide."""
|
|
import lidar_pipeline.webapp as webapp
|
|
from lidar_pipeline.progress import read_events, report_event
|
|
|
|
def fake_popen(cmd, **kwargs):
|
|
class _P:
|
|
def wait(self):
|
|
return 0
|
|
|
|
def poll(self):
|
|
return 0
|
|
return _P()
|
|
|
|
import subprocess as _real_subprocess
|
|
|
|
class _SubprocessStub:
|
|
Popen = staticmethod(fake_popen)
|
|
run = staticmethod(_real_subprocess.run)
|
|
STDOUT = _real_subprocess.STDOUT
|
|
|
|
monkeypatch.setattr(webapp, "OUTPUT_DIR", tmp_path)
|
|
monkeypatch.setattr(webapp, "subprocess", _SubprocessStub)
|
|
report_event(tmp_path, "ancienne_tuile", "tile", "ok")
|
|
req = webapp.GenerateRequest(tiles=[[1054, 6882]])
|
|
assert webapp.generate(req)["demarré"] is True
|
|
assert read_events(tmp_path) == []
|
|
|
|
|
|
# ============================================================
|
|
# Mode webapp légère (Raspberry Pi) : génération déléguée à une
|
|
# machine de traitement distante via LIDAR_GENERATION_URL.
|
|
# ============================================================
|
|
|
|
def test_generate_forwards_to_remote(monkeypatch):
|
|
"""/api/generate transmet la demande à la machine de traitement."""
|
|
import lidar_pipeline.webapp as webapp
|
|
calls = []
|
|
|
|
def fake_proxy(method, path, payload=None, timeout=30):
|
|
calls.append((method, path, payload))
|
|
return {"demarré": True, "tuiles": 1}
|
|
|
|
monkeypatch.setattr(webapp, "GENERATION_URL", "http://distant:8973")
|
|
monkeypatch.setattr(webapp, "_proxy_api", fake_proxy)
|
|
req = webapp.GenerateRequest(tiles=[[1054, 6882]], viz=["aspect"])
|
|
result = webapp.generate(req)
|
|
assert result["demarré"] is True and result["distant"] is True
|
|
assert calls == [("POST", "/api/generate",
|
|
{"tiles": [[1054, 6882]], "regenerate": False,
|
|
"reclassify": False,
|
|
"ground_class": "ign", "ign_classes": "sol",
|
|
"bare_earth": False, "viz": ["aspect"],
|
|
"all_missing": False})]
|
|
|
|
|
|
def test_status_proxies_remote(monkeypatch):
|
|
"""/api/status rapporte l'état du job distant (file de génération)."""
|
|
import lidar_pipeline.webapp as webapp
|
|
calls = []
|
|
|
|
def fake_proxy(method, path, payload=None, timeout=30):
|
|
calls.append((method, path, timeout))
|
|
return {"running": True, "tiles": []}
|
|
|
|
monkeypatch.setattr(webapp, "GENERATION_URL", "http://distant:8973")
|
|
monkeypatch.setattr(webapp, "_proxy_api", fake_proxy)
|
|
data = webapp.status()
|
|
assert data["running"] is True and data["distant"] is True
|
|
assert calls == [("GET", "/api/status", 10)] # timeout court : sondage UI
|
|
|
|
|
|
def test_preview_forwards_to_remote(monkeypatch):
|
|
"""/api/preview interroge le distant (il seul connaît input/ complet)."""
|
|
import lidar_pipeline.webapp as webapp
|
|
calls = []
|
|
|
|
def fake_proxy(method, path, payload=None, timeout=30):
|
|
calls.append((method, path, payload))
|
|
return {"count": 0, "cells": []}
|
|
|
|
monkeypatch.setattr(webapp, "GENERATION_URL", "http://distant:8973")
|
|
monkeypatch.setattr(webapp, "_proxy_api", fake_proxy)
|
|
req = webapp.PreviewRequest(bbox=[7.85, 48.93, 7.86, 48.94], viz=["aspect"])
|
|
assert webapp.preview(req)["count"] == 0
|
|
assert calls[0][0] == "POST" and calls[0][1] == "/api/preview"
|
|
assert calls[0][2]["bbox"] == [7.85, 48.93, 7.86, 48.94]
|
|
|
|
|
|
def test_proxy_translates_unreachable_host(monkeypatch):
|
|
"""Une machine de traitement injoignable devient un 503 explicite."""
|
|
from fastapi import HTTPException
|
|
import lidar_pipeline.webapp as webapp
|
|
monkeypatch.setattr(webapp, "GENERATION_URL", "http://localhost:1")
|
|
try:
|
|
webapp._proxy_api("GET", "/api/status", timeout=1)
|
|
assert False, "une HTTPException était attendue"
|
|
except HTTPException as e:
|
|
assert e.status_code == 503
|
|
assert "injoignable" in e.detail
|
|
|
|
|
|
def test_fallback_viz_step_names_match_pipeline():
|
|
"""Le repli léger (sans pipeline) liste les mêmes étapes, même ordre."""
|
|
from lidar_pipeline.pipeline import VIZ_STEPS
|
|
from lidar_pipeline.webapp import _fallback_viz_step_names
|
|
assert _fallback_viz_step_names() == [name for name, _ in VIZ_STEPS]
|
|
|
|
|
|
def test_viz_step_labels_without_pipeline():
|
|
"""Les libellés d'étapes restent corrects même sans importer le pipeline."""
|
|
import lidar_pipeline.webapp as webapp
|
|
labels = webapp._viz_step_labels()
|
|
assert labels["hillshade"] == "Hillshade multidirectionnel"
|
|
assert labels["pos_open"] == "Openness positive"
|
|
|
|
|
|
def test_sync_is_rebuild_only(tmp_path, monkeypatch):
|
|
"""/api/sync régénère l'index en arrière-plan (plus de rsync)."""
|
|
import time as _time
|
|
import lidar_pipeline.webapp as webapp
|
|
import lidar_pipeline.index as index_mod
|
|
calls = []
|
|
monkeypatch.setattr(index_mod, "build_index", lambda out: calls.append(out))
|
|
webapp._rebuild["done"] = None # ignore l'état d'un test précédent
|
|
assert webapp.sync_and_rebuild()["demarré"] is True
|
|
for _ in range(200):
|
|
s = webapp.rebuild_status()
|
|
if s["done"] is not None and not s["running"]:
|
|
break
|
|
_time.sleep(0.05)
|
|
assert calls # l'index a été reconstruit
|
|
assert webapp.rebuild_status()["error"] is None
|
|
assert webapp.rebuild_status()["done"] is not None
|
|
|
|
|
|
def test_require_token():
|
|
"""Le jeton (si défini) bloque les appels sans ou avec mauvais mauvais header."""
|
|
from fastapi import HTTPException
|
|
import lidar_pipeline.webapp as webapp
|
|
old = webapp.API_TOKEN
|
|
webapp.API_TOKEN = "secret"
|
|
try:
|
|
for bad in (None, "faux"):
|
|
try:
|
|
webapp._require_token(bad)
|
|
assert False, "une HTTPException était attendue"
|
|
except HTTPException as e:
|
|
assert e.status_code == 401
|
|
assert webapp._require_token("secret") is None
|
|
finally:
|
|
webapp.API_TOKEN = old
|
|
# Sans jeton configuré : tout passe (LAN de confiance)
|
|
webapp.API_TOKEN = None
|
|
assert webapp._require_token(None) is None
|
|
|
|
|
|
class _FakeRequest:
|
|
"""Requête minimale pour tester la restriction par IP (peer + XFF)."""
|
|
|
|
def __init__(self, host=None, xff=None):
|
|
self.client = type("C", (), {"host": host})() if host else None
|
|
self.headers = {"x-forwarded-for": xff} if xff else {}
|
|
|
|
|
|
def test_generate_restricted_to_lan_cidr():
|
|
"""/api/generate n'est autorisé que depuis LIDAR_REGEN_CIDR (si défini)."""
|
|
from fastapi import HTTPException
|
|
import lidar_pipeline.webapp as webapp
|
|
old = webapp.REGEN_CIDR
|
|
webapp.REGEN_CIDR = "192.168.1.0/24"
|
|
try:
|
|
# IP du réseau autorisé
|
|
webapp._require_lan_for_generation(_FakeRequest(host="192.168.1.42"))
|
|
# Reverse proxy local (pair dans le réseau) : X-Forwarded-For désigne
|
|
# le client réel derrière lui — refusé s'il est hors réseau
|
|
webapp._require_lan_for_generation(
|
|
_FakeRequest(host="192.168.1.50", xff="192.168.1.10, 192.168.1.50"))
|
|
for host, xff in (("10.0.0.5", None), ("8.8.8.8", None),
|
|
("192.168.3.1", None), ("2001:db8::1", None),
|
|
# XFF forgé par un client externe : ignoré (pair hors réseau)
|
|
("8.8.8.8", "192.168.1.5"),
|
|
# Client réel externe derrière le proxy local
|
|
("192.168.1.50", "8.8.8.8"),
|
|
# IP absente
|
|
(None, None)):
|
|
try:
|
|
webapp._require_lan_for_generation(_FakeRequest(host=host, xff=xff))
|
|
assert False, f"403 attendu pour host={host!r} xff={xff!r}"
|
|
except HTTPException as e:
|
|
assert e.status_code == 403
|
|
assert "réseau local" in e.detail
|
|
finally:
|
|
webapp.REGEN_CIDR = old
|
|
|
|
|
|
def test_generate_cidr_disabled(monkeypatch):
|
|
"""LIDAR_REGEN_CIDR vide = restriction levée (tout client autorisé)."""
|
|
import lidar_pipeline.webapp as webapp
|
|
monkeypatch.setattr(webapp, "REGEN_CIDR", "")
|
|
webapp._require_lan_for_generation(_FakeRequest(host="8.8.8.8"))
|
|
webapp._require_lan_for_generation(_FakeRequest())
|
|
|
|
|
|
def test_status_exposes_regen_allowed():
|
|
"""/api/status indique à l'interface si le client peut générer."""
|
|
import lidar_pipeline.webapp as webapp
|
|
assert webapp.status(_FakeRequest(host="192.168.1.7"))["regen_allowed"] is True
|
|
assert webapp.status(_FakeRequest(host="8.8.8.8"))["regen_allowed"] is False
|
|
|
|
|
|
def test_regen_cidr_default_covers_local_and_private():
|
|
"""Défaut : localhost + plages privées (LAN, hôte Docker), pas Internet."""
|
|
import lidar_pipeline.webapp as webapp
|
|
# Miroir du défaut de webapp.REGEN_CIDR (multidiffusion interdite ici :
|
|
# on le fixe explicitement pour tester la valeur de liste multi-CIDR).
|
|
old = webapp.REGEN_CIDR
|
|
webapp.REGEN_CIDR = "127.0.0.0/8,::1,10.0.0.0/8,172.16.0.0/12,192.168.0.0/16"
|
|
try:
|
|
for host in ("127.0.0.1", "::1", # boucle locale
|
|
"172.17.0.1", "172.26.0.5", # ponts Docker
|
|
"192.168.1.42", "192.168.122.7", # LAN privé
|
|
"10.0.0.5"):
|
|
assert webapp._ip_in_regen_cidr(host), host
|
|
for host in ("8.8.8.8", "2001:db8::1", "169.254.1.1", None):
|
|
assert not webapp._ip_in_regen_cidr(host), host
|
|
finally:
|
|
webapp.REGEN_CIDR = old
|
|
|
|
|
|
def test_regen_cidr_accepts_comma_separated_list():
|
|
"""LIDAR_REGEN_CIDR accepte plusieurs réseaux (entrées invalides ignorées)."""
|
|
import lidar_pipeline.webapp as webapp
|
|
old = webapp.REGEN_CIDR
|
|
webapp.REGEN_CIDR = "192.168.1.0/24, 10.0.0.0/8, pas-un-cidr"
|
|
try:
|
|
assert webapp._ip_in_regen_cidr("192.168.1.9")
|
|
assert webapp._ip_in_regen_cidr("10.1.2.3")
|
|
assert not webapp._ip_in_regen_cidr("192.168.3.9")
|
|
assert not webapp._ip_in_regen_cidr("172.17.0.1")
|
|
finally:
|
|
webapp.REGEN_CIDR = old
|
|
|
|
|
|
|