Handle VMM WCS edge grid rounding
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This commit is contained in:
Codex
2026-07-16 13:45:58 +02:00
parent 512e15f24b
commit 153cff06c0
2 changed files with 131 additions and 11 deletions
@@ -57,6 +57,10 @@ class FloodHazardAcquisitionService:
WCS_REQUEST_INTERVAL_SECONDS = 1.0
WCS_RETRY_DELAY_SECONDS = 3.0
WCS_TRANSIENT_STATUS_CODES = frozenset({400, 429, 502, 503, 504})
# The VMM WCS rounds the grid size of partial edge tiles to an integer
# number of cells. Keep that provider artefact bounded and auditable.
WCS_EDGE_RESOLUTION_REL_TOLERANCE = 0.05
WCS_EDGE_RESOLUTION_ABS_TOLERANCE_M = 0.25
SERVICE_CATALOG_URL = "https://www.vlaanderen.be/datavindplaats/catalogus/publieke-inspire-coverage-service-van-ogrk"
LIMITATION = (
"Gemodelleerde maximale overstromingsdiepte voor een vast kans- en klimaatscenario. "
@@ -319,7 +323,11 @@ class FloodHazardAcquisitionService:
)
@staticmethod
def _mosaic_geotiffs(coverages: list[bytes], expected_resolution_m: float) -> bytes:
def _mosaic_geotiffs(
coverages: list[bytes],
expected_resolution_m: float,
diagnostics: dict[str, Any] | None = None,
) -> bytes:
if len(coverages) == 1:
return coverages[0]
try:
@@ -331,11 +339,63 @@ class FloodHazardAcquisitionService:
sources = []
try:
sources = [memory.open() for memory in memories]
for source in sources:
if source.crs is None or source.crs.to_epsg() != 31370 or source.count != 1:
raise AppError(code="FLOOD_HAZARD_TILE_MISMATCH", message="VMM coverage tiles do not share the governed CRS and band layout", status_code=502)
if not all(math.isclose(abs(float(value)), expected_resolution_m, rel_tol=0.02, abs_tol=0.05) for value in source.res):
raise AppError(code="FLOOD_HAZARD_TILE_MISMATCH", message="VMM coverage tile resolution differs from the governed request", status_code=502)
invalid_crs = [
index
for index, source in enumerate(sources)
if source.crs is None or source.crs.to_epsg() != 31370
]
invalid_bands = [index for index, source in enumerate(sources) if source.count != 1]
tile_resolutions = [
[abs(float(source.res[0])), abs(float(source.res[1]))]
for source in sources
]
invalid_resolution = [
{
"tile_index": index,
"resolution": tile_resolutions[index],
}
for index, source in enumerate(sources)
if not all(
math.isclose(
abs(float(value)),
expected_resolution_m,
rel_tol=FloodHazardAcquisitionService.WCS_EDGE_RESOLUTION_REL_TOLERANCE,
abs_tol=FloodHazardAcquisitionService.WCS_EDGE_RESOLUTION_ABS_TOLERANCE_M,
)
for value in source.res
)
]
if invalid_crs or invalid_bands or invalid_resolution:
raise AppError(
code="FLOOD_HAZARD_TILE_MISMATCH",
message="VMM coverage tiles do not match the governed CRS, band layout and resolution",
details={
"invalid_crs_tile_indexes": invalid_crs,
"invalid_band_tile_indexes": invalid_bands,
"invalid_resolution_tiles": invalid_resolution,
"expected_resolution_m": expected_resolution_m,
},
status_code=502,
)
harmonized_tile_indexes = [
index
for index, resolution in enumerate(tile_resolutions)
if not all(
math.isclose(value, expected_resolution_m, rel_tol=0.02, abs_tol=0.05)
for value in resolution
)
]
if diagnostics is not None:
diagnostics.update(
{
"source_tile_resolutions_m": tile_resolutions,
"target_resolution_m": expected_resolution_m,
"harmonized_tile_indexes": harmonized_tile_indexes,
"harmonization_method": (
"rasterio_merge_target_resolution" if harmonized_tile_indexes else None
),
}
)
mosaic, transform = merge(sources, res=(expected_resolution_m, expected_resolution_m), nodata=0.0, dtype="float32")
profile = sources[0].profile.copy()
profile.pop("blockxsize", None)
@@ -378,16 +438,25 @@ class FloodHazardAcquisitionService:
time.sleep(FloodHazardAcquisitionService.WCS_RETRY_DELAY_SECONDS)
raw_content, content_type = FloodHazardAcquisitionService._fetch(request_url, settings, opener)
coverage = FloodHazardAcquisitionService._extract_geotiff(raw_content, content_type)
raw_hash.update(len(raw_content).to_bytes(8, "big")); raw_hash.update(raw_content)
coverage_hash.update(len(coverage).to_bytes(8, "big")); coverage_hash.update(coverage)
raw_hash.update(len(raw_content).to_bytes(8, "big"))
raw_hash.update(raw_content)
coverage_hash.update(len(coverage).to_bytes(8, "big"))
coverage_hash.update(coverage)
content_types.append(content_type)
coverages.append(coverage)
return FloodHazardAcquisitionService._mosaic_geotiffs(coverages, prepared["resolution_m"]), {
mosaic_diagnostics: dict[str, Any] = {}
mosaic = FloodHazardAcquisitionService._mosaic_geotiffs(
coverages,
prepared["resolution_m"],
diagnostics=mosaic_diagnostics,
)
return mosaic, {
"tile_count": len(request_urls),
"request_urls": request_urls,
"response_content_types": content_types,
"response_sha256": raw_hash.hexdigest(),
"coverage_sha256": coverage_hash.hexdigest(),
"grid_harmonization": mosaic_diagnostics,
}
@staticmethod
@@ -417,7 +486,8 @@ class FloodHazardAcquisitionService:
normalized_m[positive] = raw_cm[positive] / 100.0
valid_values = normalized_m[positive].astype("float64")
profile = source.profile.copy()
profile.pop("blockxsize", None); profile.pop("blockysize", None)
profile.pop("blockxsize", None)
profile.pop("blockysize", None)
profile.update(driver="GTiff", width=normalized_m.shape[1], height=normalized_m.shape[0], count=1, dtype="float32", crs=FloodHazardAcquisitionService.SOURCE_CRS, transform=transform, nodata=FloodHazardAcquisitionService.NODATA, compress="deflate", predictor=3)
with MemoryFile() as output_memory:
with output_memory.open(**profile) as output:
@@ -536,6 +606,7 @@ class FloodHazardAcquisitionService:
"response_content_types": transfer["response_content_types"],
"response_sha256": transfer["response_sha256"],
"coverage_sha256": transfer["coverage_sha256"],
"grid_harmonization": transfer["grid_harmonization"],
"normalized_sha256": hashlib.sha256(normalized).hexdigest(),
"bbox_epsg4326": prepared["bbox_epsg4326"],
"bbox_epsg31370": prepared["bbox_epsg31370"],
@@ -5,7 +5,6 @@ from uuid import uuid4
import numpy as np
import pytest
import rasterio
from fastapi.testclient import TestClient
from pyproj import Transformer
from rasterio.io import MemoryFile
@@ -104,6 +103,23 @@ def depth_tiff(*, normalized_metres: bool = False) -> bytes:
return memory.read()
def edge_depth_tiff(*, left: float, top: float, x_resolution: float, y_resolution: float = 5.0) -> bytes:
values = np.full((20, 20), 100.0, dtype="float32")
with MemoryFile() as memory:
with memory.open(
driver="GTiff",
width=20,
height=20,
count=1,
dtype="float32",
crs="EPSG:31370",
transform=from_origin(left, top, x_resolution, y_resolution),
nodata=0.0,
) as output:
output.write(values, 1)
return memory.read()
def test_flood_hazard_registry_is_complete_and_semantically_honest() -> None:
products = FloodHazardAcquisitionService.list_products()
@@ -151,6 +167,39 @@ def test_flood_hazard_tiles_stay_below_the_observed_vmm_coverage_limit() -> None
)
def test_flood_hazard_mosaic_harmonizes_only_bounded_wcs_edge_grid_rounding() -> None:
regular = edge_depth_tiff(left=200_000, top=210_100, x_resolution=5.0)
rounded_edge = edge_depth_tiff(
left=200_100,
top=210_100,
x_resolution=4.76555,
y_resolution=5.0008,
)
diagnostics: dict[str, object] = {}
mosaic = FloodHazardAcquisitionService._mosaic_geotiffs(
[regular, rounded_edge],
expected_resolution_m=5.0,
diagnostics=diagnostics,
)
with MemoryFile(mosaic) as memory, memory.open() as dataset:
assert dataset.res == pytest.approx((5.0, 5.0))
assert diagnostics["harmonized_tile_indexes"] == [1]
assert diagnostics["harmonization_method"] == "rasterio_merge_target_resolution"
unsafe_edge = edge_depth_tiff(left=200_100, top=210_100, x_resolution=4.5)
with pytest.raises(AppError) as exc_info:
FloodHazardAcquisitionService._mosaic_geotiffs(
[regular, unsafe_edge],
expected_resolution_m=5.0,
)
assert exc_info.value.code == "FLOOD_HAZARD_TILE_MISMATCH"
assert exc_info.value.details["invalid_resolution_tiles"] == [
{"tile_index": 1, "resolution": [4.5, 5.0]}
]
def test_flood_hazard_xml_provider_error_is_exposed_without_losing_the_canonical_error() -> None:
response = b"""<?xml version="1.0"?>
<ExceptionReport xmlns="http://www.opengis.net/ows/1.1">