"""Tests du serveur web de génération de zones (webapp).""" def test_bbox_to_cells_single_km_cell(): """Une bbox couvrant ~1 km² retourne la cellule L93 correspondante.""" from lidar_pipeline.webapp import bbox_to_cells # Cellule 1054,6882 : X∈[1054000,1055000], Y∈[6881000,6882000] (L93) from rasterio.warp import transform as warp_transform lons, lats = warp_transform('EPSG:2154', 'EPSG:4326', [1054100, 1054900], [6881100, 6881900]) cells = bbox_to_cells(min(lons), min(lats), max(lons), max(lats)) assert (1054, 6882) in cells # La sélection reste locale : pas de cellule lointaine for (c, r) in cells: assert abs(c - 1054) <= 1 and abs(r - 6882) <= 1 def test_bbox_to_cells_empty_for_tiny_bbox(): """Une bbox quasi ponctuelle ne sélectionne rien (rétrécie sous 1 m).""" from lidar_pipeline.webapp import bbox_to_cells assert bbox_to_cells(7.850000, 48.930000, 7.850001, 48.930001) == [] def test_processed_cells(tmp_path): """processed_cells lit les dossiers de visualisations.""" from lidar_pipeline.webapp import processed_cells vis = tmp_path / "visualisations" / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69_r0p2" vis.mkdir(parents=True) (vis / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69_r0p2_aspect.avif").write_bytes(b"x") assert processed_cells(tmp_path) == {(1054, 6882)} def test_missing_cells_filters_processed(tmp_path): """Les cellules déjà traitées sont exclues, les autres gardent leurs coins.""" from lidar_pipeline.webapp import missing_cells_with_corners vis = tmp_path / "visualisations" / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69" vis.mkdir(parents=True) (vis / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69_aspect.avif").write_bytes(b"x") todo = missing_cells_with_corners([(1054, 6882), (1055, 6882)], tmp_path) assert len(todo) == 1 assert todo[0]['col'] == 1055 and todo[0]['row'] == 6882 assert len(todo[0]['corners']) == 4 # SW, SE, NE, NW def test_missing_cells_include_done(tmp_path): """include_done=True conserve les cellules déjà traitées (régénération).""" from lidar_pipeline.webapp import missing_cells_with_corners vis = tmp_path / "visualisations" / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69" vis.mkdir(parents=True) (vis / "LHD_FXX_1054_6882_PTS_LAMB93_IGN69_aspect.avif").write_bytes(b"x") todo = missing_cells_with_corners([(1054, 6882), (1055, 6882)], tmp_path, include_done=True) assert {(t['col'], t['row']) for t in todo} == {(1054, 6882), (1055, 6882)} def test_build_command_regenerate(): """regenerate=True ajoute --force --force-classification à la commande.""" from lidar_pipeline.webapp import _build_command cmd = " ".join(_build_command([(1054, 6882)], regenerate=True)) assert "--force" in cmd assert "--force-classification" in cmd cmd = " ".join(_build_command([(1054, 6882)])) assert "--force" not in cmd assert "--force-classification" not in cmd def test_build_command_ground_classification(): """La commande utilise la méthode de classification demandée (défaut : ign).""" from lidar_pipeline.webapp import _build_command, GROUND_CLASS_METHODS # Défaut : ign (pré-classification) cmd = _build_command([(1054, 6882)]) i = cmd.index("--ground-classification") assert cmd[i + 1] == "ign" # Chaque méthode valide est transmise telle quelle, avec ou sans régénération for method in GROUND_CLASS_METHODS: for regenerate in (False, True): cmd = _build_command([(1054, 6882)], regenerate=regenerate, ground_class=method) i = cmd.index("--ground-classification") assert cmd[i + 1] == method assert ("--force" in cmd) == regenerate assert ("--force-classification" in cmd) == regenerate