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Complete RC6 supply chain gates
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GeoIntel TODO

Actief RC-programma: Belgie en de Belgische Noordzee

docs/RC_ROADMAP_BELGIUM_NORTH_SEA.md is vanaf 2026-07-17 het enige actieve releasebord. Mol en de Kempen blijven regressiereferenties, maar de productscope is nu heel Belgie plus de juridisch correct gelabelde Belgische maritieme zones.

  • RC-0: Belgische en maritieme scopefreeze vastleggen.
  • RC-0: autonome roadmap zonder afzonderlijke RC-12 vastleggen.
  • RC-0: deterministisch release-evidence manifest implementeren en draaien.
  • RC-1: actuele productiebackup, verificatie en geisoleerde restore bewijzen.
  • RC-2: liveness/readiness/capabilities fail-closed en waarheidsgetrouw maken.
  • RC-2: verweesde jobs en analysis runs na een procesherstart verzoenen.
  • RC-3: expliciete rasterkeuze en temporeel compatibele detectie-QA afdwingen.
  • RC-4: aparte nationale bron- en dekkingscontracten implementeren zonder het vaste Sprint 7-providerregister te wijzigen.
  • RC-4: expliciete NGI/RBINS-operator en selectiegebonden coverage-API implementeren en lokaal valideren.
  • RC-4: Tower fetch-only, canonieke persistence en live browseracceptatie bewijzen.
  • RC-4: nationale basisdekking en expliciete coverage-contracten voor Wallonie, Brussel en de Belgische Noordzee via golden areas operationaliseren.
  • RC-5: secrets/configuratie/uploadlimieten/immutable deploy en rollback bewijzen.
  • RC-6: volledige CI, dependency-audit, containerscan en SBOM toevoegen.
  • RC-7: kritieke API-routes concrete responsemodellen geven.
  • RC-8: echte frontend- en browser-E2E-releaseflows toevoegen.
  • RC-9: loading, toegankelijkheid, widescreen/mobile en performance afronden.
  • RC-10: dataretentie, diskdruk en veilige cleanup operationaliseren.
  • RC-11: fresh install, upgrade, rollback, releasepakket, tag en live acceptatie afronden.

Een aparte RC-12/soakfase wordt niet uitgevoerd. De relevante fresh-install-, upgrade-, rollback- en runtimebewijzen zijn verplicht opgenomen in RC-5 en RC-11.

Actuele V1-productstatus

Dit is het enige actuele afwerkingsbord. De lange sprint- en voorbereidingslijsten verderop blijven bewaard als historisch bewijs, maar zijn geen open productroadmap meer.

  • Open automatisch de volledige Kempen-werkruimte met Mol als snel selecteerbaar werkgebied; een technische project- of regioselectie is niet vereist.
  • Kies een begrijpbaar datathema, teken een rechthoek of gebruik het volledige werkgebied en analyseer alle 15 beschikbare thema's uit PostGIS.
  • Gebruik voor getekende en handmatig ingevoerde rechthoeken overal bbox ∩ Area; een bbox rond het volledige werkgebied resolveert naar de exacte persistente Area-geometrie en activeert pas dan de full-Area fast path.
  • Toon betekenisvolle eenheden en metrieklabels voor oppervlakte, lengte, inwoners, hoogte, scenario's en stationsmetingen; objectaantallen zijn ondersteunend.
  • Vergelijk beschikbare historische meetmomenten met een volledige tijdreeks, absolute wijziging, procentuele wijziging en bronbeperking.
  • Download vectorresultaten als GeoJSON, rasteranalyses als JSON en historische vergelijkingen als JSON; kopieren blijft voor alle drie mogelijk.
  • Ga vanuit een afgeronde analyse rechtstreeks naar de lokale brongebonden Ollama-assistent of naar Downloads en keer terug zonder het zichtbare kaartresultaat of de evolutievergelijking te verliezen.
  • Herbereken en bewaar het actieve vector-, raster- of evolutieresultaat server-side voordat Downloads wordt geopend, met traceerbare selectie- en bronmetadata.
  • Haal de canonieke regionale werkruimte exact op naam op zodat groei van operator- en benchmarkprojecten de standaard kaartcontext niet kan verdringen.
  • Gebruik de operationele lokale YOLO/PyTorch-keten alleen met persisted detecties, GRB-QA en expliciete controlewaarschuwingen.
  • Toon in de beeldanalyse alleen operationele luchtbeeldrasters en geen hoogte-, overstromings- of thematische beleidsrasters.
  • Draai de volledige applicatie in de beheersbare Unraid-container op poort 1202 met PostGIS, backend, frontend, Ollama-koppeling en modelconfiguratie.
  • Archiveer allowlisted benchmark-, kalibratie- en rooktestwerkruimtes om de actieve projectlijst beheersbaar te houden, zonder gegevens of resultaten te verwijderen.
  • Verberg technische identifiers, modeldetails en interne statussen achter expliciete technische details en gebruik uniforme Nederlandse taaktaal in kaart-, kwaliteits-, detectie- en segmentatiewerkstromen.
  • Begrens de grootste frontendverantwoordelijkheden met afzonderlijke overzichts-, modelbeheer- en kaarthelpermodules zonder gedrag te wijzigen.
  • Maak de vijf bestaande officiële beleidsrasters veilig op aanvraag beschikbaar voor elke begrensde selectie in Vlaanderen, met Dataset-cache, semantische metrics en zonder 1.425 vooraf geladen rasters.

Bewuste, niet-blokkerende grenzen:

  • Watervolume blijft niet beschikbaar zolang geen gekoppelde bathymetrie, bodemhoogte en onzekerheidsmodel bestaan. Dit is geospatiale correctheid, geen onafgewerkte UI.
  • Gebouwdetectie is operationeel maar blijft een controlekandidaat; verdere training gebeurt pas na nieuwe, onafhankelijke reviewdata.
  • Een echt SAM/YOLO-seg-model en een trainingsstudio blijven post-V1. De persistente segmentatie- en QA-fundering blijft beschikbaar voor later.

Map-first Mol explorer

  • Make the Mol geographic explorer the default workflow.
  • Add drag rectangle selection with automatic persisted theme queries.
  • Separate exact bbox intersection totals from the bounded map preview.
  • Add official Mol GRB roads, water and parcels provisioning support.
  • Select, validate and provision official Statbel 2021-2025 population/statistical-sector snapshots for Mol.
  • Select, validate and provision official Departement Omgeving 2013-2025 forest snapshots from the 10 m land-use map.
  • Define and provision the official 28-municipality Vervoerregio Kempen as the explicit operational regional scope.
  • Partition and provision the complete current GRB building theme for all 28 Kempen transport-region municipalities, with resumable source artifacts and one queryable regional PostGIS dataset.
  • Provision the remaining regional GRB context themes in bounded partitions: roads, water and parcels.
  • Make the complete regional workspace the automatic data context and use municipality/full-region Areas as one spatial filter instead of requiring a region dropdown.
  • Reduce end-user noise by moving technical projects, source metadata, QA evidence, provider internals and model diagnostics behind explicit advanced disclosures.
  • Default Detection Lab to the configured local YOLO asset and present measured model quality and control requirements honestly.
  • Extend official population and land-use time series from Mol to the approved 28-municipality regional scope.
  • Make Evolution automatically open an available regional series and distinguish historical themes from current-only snapshots.
  • Replace object-count-only map results with semantic PostGIS metrics for hectares, kilometres and inhabitants while retaining counts as supporting evidence.
  • Show complete comparable observation timelines and all compatible semantic metric deltas for exact persisted Areas.
  • Expand the modern 2013-2025 land-use operator with water, built-function and transport surfaces from the retained official raster.
  • Add a source inventory that separates loaded data from audited official follow-up sources.
  • Add a local Ollama question window grounded in persisted GeoIntel metrics and installed server models.
  • Add a governed depth/bathymetry source before exposing water volume; never infer volume from 2D GRB water geometry.
  • Integrate governed Waterinfo/VMM annual station series without presenting point measurements as area-wide water volume.
  • Add bounded historical orthophoto acquisition for official 1971-2025 products with a map overlay and no current-GRB QA on old imagery.
  • Add BWK/Natura 2000 through an explicit provider/operator contract.
  • Expand BWK/Natura 2000 state 2025 from Mol to all 28 approved Kempen municipalities with partitioned source evidence.
  • Add a regional VMM flood-hazard operator that provisions official scenario rasters per municipality Area through the canonical API.
  • Add annual agricultural-use parcels through an explicit provider/operator contract.
  • Extend the official 1778/1873/1969 historical buildings, water and roads series from Mol to the approved regional scope with partitioned source audits.
  • Connect a drawn rectangle to bounded official orthophoto acquisition, local configured-YOLO detection and persisted GRB QA.
  • Add governed official space-occupation, open-space, population-density, accessibility and service-level rasters with semantic map metrics.
  • Add the DOV digital soil map for Mol with exact clipping, source attributes and historical survey limitations.
  • Execute the governed thematic-raster operator for every persisted Kempen municipality after the Mol live gate passes.
  • Persist one bounded whole-region snapshot per thematic raster so drawn selections can cross municipality boundaries without changing source semantics.
  • Generalize the DOV soil-map operator to all 28 approved Kempen municipality partitions with one regional snapshot manifest.
  • Add a resumable regional DHMV DTM/DSM operator for all 28 approved Kempen municipality Areas.
  • Execute and audit the complete 336-product VMM and 56-product DHMV regional runtime matrices.
  • Present municipal DHMV/VMM partitions as logical regional layers and analyse cross-boundary rectangles without a municipality prerequisite.
  • Add a read-only source freshness/version audit with explicit publication policies, local integrity checks, operator CLI and compact Status workspace surface.
  • Add explicit bounded GRB/orthophoto catalogue release probes using official capabilities and ISO metadata; keep every acquisition separate and operator-controlled.
  • Add a governed regional GRB plan -> stage -> checksum-confirmed apply workflow that preserves every previous snapshot.
  • Add a fail-closed ALZ publication probe that distinguishes provisional v1/v2 snapshots from the definitive v3 historical edition and never downloads an archive.
  • Add a fail-closed Statbel DCAT publication probe that distinguishes population year, sector-geometry year and the 2025 REDEGEO transition without downloading distributions.
  • Add a fail-closed Statbel population import preflight with archive/schema/CRS/join/total/baseline checks, retained checksums and explicit ZZZZ accounting before any new Dataset import.
  • Add an explicit Statbel population plan -> stage -> named review -> checksum-confirmed apply workflow that preserves every prior annual snapshot.
  • Add an explicit definitive ALZ plan -> stage -> named review -> checksum-confirmed apply workflow while keeping v1/v2 campaign snapshots non-importable.
  • Extend catalogue probes only to additional sources that publish a stable official edition contract; do not add background polling or infer releases from HTTP dates alone.

Governed source expansion backlog

Implement these in order. Every source must use an explicit operator/provider contract, retain raw checksummed evidence, persist through DatasetService and pass live Mol validation before regional expansion.

P1 - Biologische Waarderingskaart / Natura 2000

  • Confirm the official downloadable service/layer/version and licence for the 2025 state.
  • Define stable habitat/biotope/value fields and keep BWK valuation separate from Natura 2000 habitat classification.
  • Clip in EPSG:31370 to Mol, transform to EPSG:4326 and persist valid polygonal vector_features with source feature ids.
  • Add hectare metrics per governed class plus unknown/unmapped-class diagnostics; do not invent an annual trend from one state.
  • Add source manifest, unit tests, live row/count/geometry audit and map/source-inventory presentation.

P2 - Annual agricultural-use parcels

  • Inventory official annual editions and document schema/code-list changes before selecting a comparable year range.
  • Retain annual source files and crop code lists; normalize only fields whose meaning is stable across editions.
  • Persist separate annual Datasets with hectares by crop/use class and an explicit unstable-parcel-identity limitation.
  • Compare area/category totals over time; do not claim parcel lineage where identifiers or boundaries changed.
  • Validate Mol first, then partition all 28 Kempen municipalities with completeness/checksum manifests.

P3 - Buildings and Addresses Register

  • Define a governed snapshot operator and relation mapping between building unit, building object, address and GRB geometry.
  • Keep register lifecycle/status semantics separate from GRB footprint geometry and document match confidence/unmatched rows.
  • Add current building-status/address metrics without exposing personal data or treating addresses as households/population.
  • Add Mol reconciliation tests and a live mismatch report before regional import.

P4 - Digitaal Hoogtemodel Vlaanderen

  • Select official DTM/DSM product, service and native resolution; retain acquisition date and vertical reference.
  • Add bounded raster acquisition/clip storage with nodata, CRS, resolution and checksum validation.
  • Implement governed elevation, relief and slope statistics in metres/degrees; keep drainage interpretation explicitly derived.
  • Do not label terrain/surface height as water depth and do not enable volume from DHMV alone.

P5 - Water depth / bathymetry

  • Audit authoritative sources: no public municipality-wide inland bathymetry for Mol was identified; keep permanent waterbody volume unavailable.
  • Integrate the separate public VMM fluvial/pluvial flood-hazard depth scenarios without presenting them as bathymetry or current water state.
  • Persist scenario identity, source centimetres, normalized metres, WCS checksums, exact Area clipping and positive-depth coverage.
  • Expose mapped inundation area, depth statistics and a clearly named maximum-depth area integral with a prohibition on calling it concurrent volume.
  • Extend the VMM scenario workflow to the approved regional scope using 28 municipality partitions instead of one unsafe monolithic raster.
  • Define waterbody linkage, surface elevation, bottom elevation and uncertainty propagation before adding any volume metric.
  • Validate coverage gaps and prohibit extrapolation outside measured/profiled waterbodies.
  • Add independent GIS review and golden-volume fixtures before exposing the result to users or Ollama.

This file now starts with the current implementation status. Older preparation/backlog sections are preserved below as historical planning context and should not be treated as the live sprint board without checking docs/CODEX_EXECUTION_LOG.md.

Release hardening status

  • Remove Python datetime.utcnow() deprecation warnings from backend service paths.
  • Split frontend production build into app, React vendor and MapLibre vendor chunks.
  • Enforce Python deprecation warnings as release-readiness failures.
  • Fix Docker backend package install order and remove mandatory root .env dependency.
  • Add Docker build context ignores for backend and frontend.
  • Run Docker/PostGIS live validation on Tower/Unraid.
  • Add Unraid Compose template assets with editable ports, storage path and app icon.
  • Add single-container Unraid runtime with embedded PostGIS, backend and frontend.
  • Remove embedded PostGIS password defaults from all-in-one Docker image metadata.
  • Report reused-volume PostgreSQL collation mismatches in live migration smoke.
  • Execute Tower PostgreSQL collation reindex/refresh after backup.

Current implementation status

  • Make Mol the primary workbench, AOI and operator-sample context while preserving broader Kempen coverage.
  • Add a Mol multi-zone operational pack with independent positive holdouts, background control and persisted map-ready AOIs.
  • Execute the Mol pack on live Tower/PostGIS with real orthophotos, GRB references, configured YOLO, persisted QA/QC and a zero-building background control.
  • Persist and stream the complete official Mol municipality boundary plus all 36,941 clipped GRB buildings through the Map workspace.
  • Run a bounded Mol-center raster, tile, configured-YOLO, persisted detection, GRB QA and export workflow on live Tower/PostGIS.
  • Separate persisted database layers from available analysis-result overlays with an explicit Map content mode.
  • Persist combined Mol operator evidence under the Unraid storage mount so reports survive all-in-one container replacement.
  • Visually review Mol Postel and Donk false-positive/false-negative evidence, classify the dominant error modes and only then decide whether another model-training pass is justified.
  • Clip detection QA populations to persisted raster/tile coverage and add box-to-footprint matching diagnostics before reconsidering model training.
  • Add a coverage-aware Mol multi-zone benchmark report with explicit positive-zone, per-zone collapse, reference-coverage and pure-empty background gates.
  • Execute the refreshed coverage-aware Mol operational benchmark against the active local model and record the resulting retain/review decision.
  • Align map-driven building QA with footprint IoU 0.25 and show measured candidate/match/error metrics instead of calling every detection a building.
  • Persist paginated false-positive/false-negative operator decisions and expose them in the Quality workspace.
  • Bound QA evidence resolution to persisted evidence ids instead of loading complete regional reference datasets.
  • Compare confidence 0.10 and 0.15 over independent Mol holdouts; retain 0.15 because it wins F1 in every positive zone while both pass the empty-background control.
  • Complete conservative decisions for the generated 48 false-negative and 48 false-positive review cards, validate both roles fail-closed and retain only 15 confirmed model errors.
  • Audit the confirmed review evidence against the active corpus and holdouts; reject retraining because it provides zero novel leakage-free labels.
  • Backend FastAPI foundation, health endpoint and service structure.
  • React/TypeScript frontend foundation and MapLibre workbench.
  • Map layer visibility, opacity and feature property inspection.
  • Selected project area/AOI map overlay with visibility and opacity controls.
  • SQLAlchemy/PostGIS ORM models and Alembic migration chain through Sprint 9.
  • Dataset upload, storage metadata and vector feature persistence.
  • Raster metadata and raster operation service boundaries.
  • Vector operation service boundaries and fixture-backed tests.
  • Provider registry skeleton for GRB, OSM, manual and fixture providers.
  • Detection Lab foundation, persistence, GeoJSON output and QA integration.
  • Configured-YOLO optional dependency strategy and local preflight.
  • Segmentation Lab foundation, persistence, GeoJSON output and QA integration.
  • QA/QC golden benchmark fixtures and script.
  • Run QA/QC golden benchmark from the main readiness gate.
  • Verify browser-facing demo QA/QC metrics against the golden baseline.
  • Explicit offline demo workflow seed for project, AOI, fixture datasets and persisted QA metrics.
  • Project-scoped QA/QC result listing and frontend QA/QC Results panel.
  • Persisted export foundation for vector/detection/segmentation GeoJSON and project metadata JSON.
  • Lightweight HTML project report artifact export.
  • V1 readiness handoff summary in project metadata/report exports.
  • Browser-facing demo/export workflow smoke script with connected V1 state checks.
  • Compact V1 workbench status strip for project, AOI, datasets, map, QA/QC and exports.
  • Dry-run-first demo export artifact cleanup tooling.
  • Browser-facing default workbench state smoke for the offline demo project.
  • Browser-facing workbench interaction backing-state smoke and stable UI test anchors.
  • Backend API contract audit comparing implemented FastAPI routes with docs/API_CONTRACTS.md.
  • Live Docker/PostGIS validation on Tower/Unraid.
  • Real YOLO compatibility smoke with optional AI extras and local model file.
  • Detection and segmentation workflow hook extraction beyond Sprint 10.
  • Export and QA/QC workflow hook extraction beyond Sprint 10.
  • Dataset, raster and vector workflow hook extraction beyond Sprint 10.
  • Dataset detail, raster controls and vector controls component decomposition.
  • QA/QC results and map workspace component decomposition.
  • Docker Compose port/storage/database configuration via .env defaults for Unraid.
  • Single-container geointel Unraid compose/template runtime.
  • Export preview component decomposition and HTML report download-only UX hardening.
  • Provider, change-detection and map-workspace orchestration hook decomposition.
  • Project/area/dataset cross-load orchestration hook decomposition.
  • Demo workflow orchestration hook decomposition.
  • Final App.tsx import/encoding cleanup and size audit.
  • Optional final bootstrap-effect extraction.
  • Decide next V1 stabilization focus: golden dataset expansion or frontend visual polish backlog.
  • Expand golden QA/QC benchmark coverage across partial, perfect, no-overlap and MultiPolygon scenarios.
  • Improve workbench shell visual polish, mobile navigation density and AI result readability.
  • Improve Map workspace layer provenance, empty guidance and selected-feature summary readability.
  • Add Data/Map mobile visual polish for upload forms, action grids and map toolbar density.
  • Add AI Labs mobile visual polish for model cards, lab forms and result tables.
  • Add Export/System mobile visual polish for export actions and provider capability cards.
  • Add inspector mobile polish for dataset metadata, raster/vector tools and action groups.
  • Add export preview readability polish for large JSON/GeoJSON handoff artifacts.
  • Add accessibility focus polish for primary workbench keyboard navigation.
  • Add raster/vector operation form readability polish for dense tool panels.
  • Add compact loading/error/empty/result state polish across QA, exports and AI labs.
  • Add compact shell density polish for topbar context, mobile navigation and workspace skip flow.
  • Add Overview workspace panel hierarchy polish for readiness and recommended-action regions.
  • Add Data workspace selected-summary and panel density polish.
  • Add Map workspace panel hierarchy and layer-control density polish.
  • Add selected map feature extraction with highlight, property table, copy and GeoJSON download.
  • Add operational GIS map workflow with road basemap, persisted database layer selection and AOI/layer vector_features query run.
  • Add basemap policy notice and guided GIS query-to-QA/export workflow in the Map workspace.
  • Add reusable latest-result mode for repeated Map QA/QC runs without duplicate derived artifacts.
  • Add opt-in Docker/Unraid AI build/runtime path for local PyTorch/Ultralytics YOLO operation.
  • Surface configured-YOLO runtime preflight status through the API and Detection Lab UI.
  • Add read-only local model asset catalog and Detection Lab model-file selection.
  • Add live model asset detection workflow smoke for configured-YOLO runtime/provenance validation.
  • Add one-click full GIS workflow action for query, derived dataset, QA/QC and export handoff.
  • Add QA/QC workspace result hierarchy and filter density polish.
  • Add Change Detection panel hierarchy and analysis workspace density polish.
  • Add calm workbench layout pass to reduce duplicate navigation, heavy card styling and shell density.
  • Add Data and Map usability layout pass with compact catalog cards and map-first spatial review.
  • Add QA/QC and Exports usability layout pass with calmer evidence review and handoff artifact scanning.
  • Add AI Labs Detection/Segmentation hierarchy and result density polish.
  • Add Export/System handoff hierarchy and provider registry density polish.
  • Add widescreen and ultrawide workbench breakpoints for the map-first GIS workflow.
  • Add operator-provided real raster/reference detection + QA workflow smoke.
  • Validate the configured building model on a real georeferenced Kempen orthophoto/GeoTIFF with persisted reference vectors and QA/QC metrics.
  • Fix configured-YOLO mixed-case class labels so Building model output matches building domain filters.
  • Persist CRS metadata in raster tile manifests so AI detections can be transformed to WGS84 GeoJSON correctly.
  • Add real-data detection calibration sweep tooling for confidence-threshold and QA/QC metric comparison.
  • Add calibration QA evidence export tooling for false-positive/false-negative inspection artifacts.
  • Add real-data detection quality matrix tooling for model/tile/threshold comparison.
  • Add reproducible Geel/Mol/Turnhout operator sample preparation and multi-sample quality matrix tooling.
  • Run first Geel/Mol/Turnhout persisted detection quality baseline.
  • Add and benchmark a stronger yolov8s building-segmentation runtime model candidate.
  • Add operator-only tile-level YOLO dataset export with overlapping windows and deterministic negative tile retention.
  • Train and benchmark the first tile-level local YOLO candidate on Tower through the persisted QA/QC matrix.
  • Calibrate confidence, IoU and model selection against additional local orthophoto/reference samples beyond Geel/Mol/Turnhout.
  • Add negative/background AOIs to the operator sample corpus and train an expanded local tile-level YOLO candidate.
  • Add a hard-negative model-quality pass with sparse/background AOIs and explicit false-positive scoring.
  • Train a hard-negative-balanced YOLO candidate and rerun dense QA plus background false-positive matrices.
  • Benchmark an external remote-sensing YOLOv8l building candidate as an explicit local model asset.
  • Train and gate the uniquehardneg160e50 YOLOv8s candidate through 7 positive AOIs and 9 hard-negative/background samples.
  • Train and gate an AOI-scale aoi512e80 YOLOv8s candidate to test the 160px training-scale hypothesis.
  • Raise configured-YOLO max_det through YOLO_MAX_DETECTIONS so dense AOIs are not capped at 300 detections before QA/QC.
  • Rerun live dense-AOI calibration after redeploy with YOLO_MAX_DETECTIONS=1000; Westerlo reached 523/1000 detections at lower thresholds and Turnhout reached 822/1000, confirming the old 300 cap is removed.
  • Add configured-YOLO cross-tile duplicate suppression and raw/suppressed calibration evidence fields.
  • Rerun live dense-AOI calibration after redeploy with YOLO_DUPLICATE_IOU_THRESHOLD=0.5; Westerlo 0.25 improved to F1 0.2537313432835821 and Turnhout 0.25 improved to F1 0.14114114114114112, but the candidate remains rejected.
  • Add OPERATOR_YOLO_MIN_LABEL_VISIBLE_RATIO so the next overlapping-tile dataset can drop tiny clipped edge-fragment labels.
  • Add operator-only larger-AOI sample prep flags so the next training dataset is not limited to one 512x512 tile per documented sample.
  • Regenerate Tower AOI1024 operator samples with paged GRB references and verify no dense reference sample is capped at 1000 features.
  • Export and audit AOI1024 clean-label variants; select yolo-building-aoi1024-visible050-minpx8 as the first audit-passing 512px training candidate.
  • Train and gate geointel-building-yolov8s-aoi1024clean512e50-pt through seven positive AOIs and nine hard-negative/background AOIs.
  • Train and gate background-aware geointel-building-yolov8s-aoi1024bg512r3e50-pt; it is the strongest positive-AOI candidate so far but remains inactive because full background-candidate false-positive pressure still blocks default promotion.
  • Add explicit operator detection profiles for local model assets and promote the expanded-AOI balanced review profile at threshold 0.15 after positive and pure-empty split-background gates passed.
  • Add pure-empty versus sparse-building contextual background corpus classification to operator manifests, hard-negative matrix filters and YOLO tile provenance.
  • Add a split background-corpus matrix runner and report builder that runs pure-empty and sparse-context matrices separately.
  • Teach the model promotion report to consume split background summaries so only pure_empty_negative blocks default promotion and sparse_building_context stays review-only.
  • Add one-command operator workflow to run split background matrices and immediately build the split-aware promotion report.
  • Add preflight-only validation for the split-background promotion workflow before long runtime matrices.
  • Rerun split background matrices on Tower after rebuild, then recalibrate against the cleaner pure-empty gate plus separate sparse-context inspection matrix.
  • Add guarded promoted-candidate activation helper requiring a promotion report path and exact candidate key before .env can be changed.
  • Add per-sample YOLO dataset audit diagnostics for parsed labels, median box area, small-box share and AOI-specific warning codes.
  • Add deterministic visual YOLO label QA contact sheets before spending more CPU on another training run.
  • Filter no-data/low-variance pure-empty negative tiles from operator YOLO exports before the next training run.
  • Regenerate the AOI1024 cleanpx YOLO dataset with low-variance negative filtering and rerun visual contact-sheet QA before training.
  • Train one inactive candidate from the filtered AOI1024 cleanpx YOLO dataset and gate it through the positive-AOI plus split-background promotion workflow; reject it because mean positive F1 remains below gate.
  • Add deterministic dataset/base/trained-model SHA256 provenance to future operator training summaries.
  • Review per-AOI false-negative evidence, expand positive sample/label coverage and verify the resulting candidate improves false-negative rate in every validated AOI.
  • Complete rebuild/restart and browser/runtime smoke for the guarded promoted V1 building detector activation.
  • Expand focused small-building training evidence after reviewing persistent false negatives, train one inactive candidate and pass it through positive, pure-empty and fixed-reference promotion evidence before guarded activation.
  • Audit the promoted model's increased false-positive load from persisted seven-AOI QA evidence, including geodetic area buckets, AOI-qualified tile hotspots and combined review GeoJSON.
  • Add persisted detection provenance, stratified visual contact sheets and an explicit manual-decision gate for false-positive review.
  • Visually classify representative false-positive evidence from Turnhout, Herentals and Geel and review the remaining 5,838 persistent false negatives before any further model training; do not start another blind run.

Sprint 8 status

  • Detection foundation ORM and migration
  • Detection model registry capability stubs
  • Detection run service boundary
  • Detection API foundation
  • Detection Lab UI foundation
  • Segmentation Lab foundation
  • Configured YOLO local preflight
  • Real YOLO/PyTorch model compatibility smoke

0. Repository Foundation

  • Repo mappenstructuur voorbereiden
  • Productdocumentatie voorbereiden
  • Architectuurdocumentatie voorbereiden
  • Codex build plan voorbereiden
  • Masterprompt voorbereiden
  • Init git repository
  • Voeg echte backend scaffold toe
  • Voeg echte frontend scaffold toe

1. Backend Foundation

  • FastAPI app aanmaken
  • Config systeem aanmaken
  • Database connectie voorbereiden
  • SQLAlchemy models toevoegen
  • Alembic migrations toevoegen
  • Health endpoint toevoegen
  • Tests voor health endpoint toevoegen

2. Database / PostGIS

  • Docker compose met PostgreSQL/PostGIS
  • PostGIS extensie activeren
  • projects tabel
  • areas tabel
  • datasets tabel
  • analysis_runs tabel
  • detections tabel
  • quality_checks tabel
  • exports tabel
  • spatial indexes

3. Frontend Foundation

  • React + TypeScript scaffold
  • Routing
  • Layout met sidebar
  • API client
  • Project pages
  • Map Workbench basis
  • Map layer controls
  • Feature property inspector
  • Selected area display

4. Project & Area API

  • POST /projects
  • GET /projects
  • GET /projects/{id}
  • POST /projects/{id}/areas
  • GET /projects/{id}/areas
  • GeoJSON validatie

5. Dataset Manager

  • Upload endpoint
  • Storage paths
  • Raster metadata extraction
  • Vector metadata extraction
  • Dataset list UI
  • Dataset detail UI

6. Raster Core

  • Rasterio metadata reader
  • Raster preview generation
  • Clip raster by area
  • Tile raster by area
  • Save tile metadata

7. Vector Core

  • GeoPandas importer
  • CRS detection
  • CRS transformation
  • Geometry validation
  • Clip vector by area
  • Store features in PostGIS

8. Reference Data

  • OSM fetcher als fallback
  • GRB integration research verwerken in code
  • Reference dataset cache
  • Reference layer viewer

9. Detection Lab

  • YOLO wrapper
  • Model config
  • Inference job
  • Pixel bbox naar geo polygon
  • Detections opslaan
  • Detection UI
  • GeoJSON export

10. QA/QC Lab

  • Spatial matching
  • IoU berekening
  • Precision/recall/F1
  • False positive layer
  • False negative layer
  • QA dashboard
  • QA export foundation

11. Segmentation Lab

  • Segmentation service design
  • Mask artifact path convention
  • Polygonize masks
  • Segmentatiekaartlaag

12. Change Detection

  • Compare two runs
  • Added/removed objects
  • Change stats
  • Change layer

13. Tests

  • Unit tests GIS helpers
  • API tests
  • DB/migration smoke tests
  • Raster fixture tests
  • Vector fixture tests
  • QA/QC tests

14. Portfolio Release

  • Demo dataset voorbereiden
  • Demo workflow documenteren
  • Screenshots toevoegen
  • README portfolio sectie
  • Full smoke test

Repo preparation additions

  • Add Data Catalog.
  • Add Analysis Specifications.
  • Add QA/QC Specification.
  • Add Raster Operations Specification.
  • Add Vector Operations Specification.
  • Add Detection Pipeline Specification.
  • Add Segmentation Pipeline Specification.
  • Add Change Detection Specification.
  • Add UI Page Specifications.
  • Add Storage Architecture.
  • Add Demo Scenarios.
  • Add Development Rules.
  • Add Codex phase prompts.

Recommended first Codex build sequence

  • Phase 1: Backend foundation using docs/CODEX_PHASE_1_PROMPT.md.
  • Phase 2: Dataset Manager using docs/CODEX_PHASE_2_PROMPT.md.
  • Phase 3: Detection + QA/QC skeleton using docs/CODEX_PHASE_3_PROMPT.md.

M2 Engineering Package

  • Add ADR decision records.
  • Add RFC placeholders for future modules.
  • Add API/database/event contracts.
  • Add model registry and class catalogs.
  • Add queue architecture.
  • Add acceptance matrix and test catalog.
  • Add Codex M2 build prompts.
  • Start Codex Pass 01 backend foundation.

M4 Autonomous Build Readiness

  • Add M4 autonomous build readiness document.
  • Add M4 sprint board.
  • Add module build contracts.
  • Add acceptance test catalog.
  • Add API example responses.
  • Add job lifecycle contract.
  • Add frontend state and route contracts.
  • Add backend service IO contracts.
  • Add model registry seed specification.
  • Add demo fixture manifest.
  • Add Codex autonomous runbook.
  • Add Codex pass prompts.
  • Add Geel demo fixtures.

Next M5 Preparation

  • Add concrete SQL migration snippets for every core table.
  • Add OpenAPI YAML draft.
  • Add frontend component prop contracts.
  • Add backend unit-test skeleton files.
  • Add frontend test skeleton files.
  • Add live data connector research notes with verified endpoints.

M5 Operational Readiness Checklist

  • CI/CD specification added.
  • Healthcheck contracts added.
  • Observability plan added.
  • Troubleshooting runbook added.
  • Rollback and recovery plan added.
  • Security checklist added.
  • Geospatial validation rules added.
  • Build governance added.
  • Codex pass documents added.
  • Smoke scripts added.
  • M6: implement actual backend foundation.
  • M6: implement database migrations.
  • M6: implement frontend shell.

M8 Codex Day-1 Readiness

  • Add Day 1 master prompt.
  • Add pass-by-pass Day 1 prompts.
  • Add autonomy boundaries.
  • Add failure recovery playbook.
  • Add quality gate matrix.
  • Add operator checklist.
  • Add smoke script scaffold.
  • Let Codex execute Day 1 implementation passes.

M10 Ultra Preparation

  • Add autonomous build charter.
  • Add Codex start-here guide.
  • Add M10 master autonomous prompt.
  • Add pass sequence.
  • Add geometry and CRS contracts.
  • Add error taxonomy.
  • Add feature flag strategy.
  • Add model adapter guide.
  • Add QA/QC matching algorithm.
  • Add frontend state machine.
  • Add implementation ticket index and tickets.
  • Add API example payloads.
  • Add final pre-Codex checklist.

Current Workbench UI

  • Replace the accumulated shell overrides with a coherent premium presentation layer while preserving V1 behavior.

  • Group navigation into Workspace, Analyze and Deliver and make the inspector an optional drawer.

  • Fix mobile navigation so the active workspace uses the full viewport width.

  • Bound populated Project, Dataset, QA, AI and Export panels so long histories do not push core actions thousands of pixels down-page.

  • Move Data create/upload forms and Map/AI diagnostics into explicit progressive disclosures.

  • Reorder AI Labs around run controls and Map around layer selection plus the MapLibre canvas.

  • Harden detection QA coverage and matching diagnostics before any further model training.

  • Replace the one-page workflow panel stack with a task-based workbench shell.

  • Add persistent project/AOI/dataset/layer context.

  • Move selected dataset details into a persistent inspector.

  • Deploy the shell refactor to Tower and run live browser smoke on port 1202.

  • Polish Data, Map and AI Labs workspaces.

  • Polish QA/QC and Exports workspaces.

  • Add selected-object inspector detail tabs for project, AOI, dataset, QA check, export and AI run context.

  • Improve map/dataset selection ergonomics from the workbench canvas and inspector.

  • Improve populated Data/Exports readability after a demo workflow run.

  • Improve live visual shell width, scroll behavior and Map workspace layout at 1280px.

  • Add export history filtering controls for long-running demo environments.

  • Add a safe export retention/cleanup command for demo environments.

  • Add a live dry-run maintenance smoke for demo export cleanup.

  • Add browser screenshot artifact automation for visual regression handoff.

  • Add backend error-envelope audit for expected user-error paths.

  • Expand golden datasets beyond the original single building QA fixture pair.

  • Add workbench visual polish pass for command bar, panel surfaces, empty states and mobile nav density.

  • Add map/result overlay ergonomics for active layer provenance and feature property summaries.

  • Add export/report handoff polish for artifact readiness, action grouping and export provenance.

  • Polish lightweight HTML project report readability, print styling and handoff sections.

  • Add Map empty-state quick actions for ready vector datasets.

  • Add Data catalog role-density polish for reference/candidate/source scanning.

  • Add Data catalog action polish for map, metadata, export and QA affordances.

  • Add QA/QC handoff polish for candidate/reference context and persisted results.

  • Add QA/QC metric card polish for precision, recall, F1, IoU and error counts.

  • Add mobile overflow hardening for workbench navigation, inspector and long QA identifiers.

  • Add QA/QC result filtering and density controls for long-running demo projects.

  • Add Overview workflow guidance for the V1 project -> data -> map -> QA/AI -> export path.

  • Audit populated demo workflow and tighten complete-state Overview guidance copy.

  • Make Overview workflow rail Map/Export clicks preserve useful dataset context.

  • Add latest handoff artifact cards to the Export Center for report, metadata and GeoJSON outputs.

  • Add QA/QC evidence drilldown for selected checks, false-positive/negative evidence and provenance JSON.

  • Add raster pipeline readiness and guardrail surfaces for metadata, CRS, preview, tile manifest and clip-AOI handoff.

  • Add useful default dataset context so Data, Map and Exports are immediately usable after project/demo load.

  • Make raster tile handoff to Detection Lab auto-select the configured YOLO run form.

  • Add AI Lab run-readiness checks for Detection and Segmentation before job submission.

  • Add AI Lab action guardrails so explicit fixture models are not exposed as normal operator runs.

  • Add persisted vector area selection from the Map workspace with bbox extract and GeoJSON download.

  • Persist map area selections as Export Center handoff artifacts.

  • Persist map area selections as reusable derived vector datasets indexed into vector_features.

  • Add Map workspace QA/QC shortcut for saved derived selection datasets.

  • Add Map workspace QA/QC evidence drilldown handoff for saved selection comparisons.

  • Persist QA/QC feature-level evidence for matches, false positives and false negatives.

  • Render persisted QA/QC feature-level evidence as Map workspace overlays.

  • Add safe local YOLO model env configuration helper for Unraid/Tower runtime activation.

  • Harden configured YOLO inference for single-band raster tiles and wrapped runtime errors.

  • Add operator-only YOLO dataset export and local training-smoke wrapper for real sample calibration.

  • Train/evaluate a small local GeoIntel building-detector smoke from the current operator samples and reject it because QA/QC did not improve.

  • Add operator-only tile-level YOLO dataset export with overlapping windows and deterministic negative tile retention.

  • Run tile-level training on Tower and accept/reject the resulting local model through the persisted QA/QC matrix.

  • Train/evaluate a YOLOv8s hard-negative local building-detector candidate on Tower and keep it inactive because hard-negative false positives remain.

  • Add an operator-facing local model catalog/activation workflow with SHA256, active model status and explicit threshold guidance.

  • Block silent local model asset auto-selection in Detection Lab.

  • Add structured raster tile manifest handoff into Detection Lab with linked preflight visibility.

  • Add full threshold calibration comparison UX so detection runs can compare candidate thresholds before promotion.

  • Add guided in-app detection calibration runner for explicit threshold sweeps.

  • Link guided calibration rows to the QA evidence map.

  • Add guided calibration summary export from the Detection Lab.

  • Allow the evidence bundle script to consume Detection Lab calibration summary exports.

  • Add a local browser-summary QA evidence bundle smoke using mocked canonical evidence responses.

  • Add a multi-AOI calibration evidence portfolio convention for model-review handoff.

  • Run the first live multi-AOI calibration evidence portfolio on Tower for Geel, Mol and Turnhout.

  • Run fresh positive-AOI matrix coverage for Balen, Herentals and Westerlo.

  • Preserve model/tile provenance in calibration evidence bundle summaries.

  • Prevent same-threshold calibration evidence responses from overwriting each other in multi-model portfolios.

  • Add a model promotion decision report that combines positive-AOI score with hard-negative false-positive pressure.

  • Train and reject a YOLOv8s hard-negative r8 partial candidate after 12 CPU epochs through the full positive/background promotion gate.

  • Finish and reject the full YOLOv8s hard-negative r8 e60 candidate through the same promotion gate.

  • Add more AOIs after the tile-level baseline so the next local model attempt is not limited to Geel/Mol/Turnhout.

  • Add negative/background AOIs so the next tile dataset is not all positive tiles.

  • Improve positive training coverage/label quality before the next higher-capacity model attempt; simply extending the same hardneg r8 run is not enough.

Sprint 146 - Operator YOLO dataset quality audit

  • Add a dataset/label-quality audit for generated operator YOLO tile datasets.
  • Report sample coverage, validation coverage, repeated hard-negative pressure and YOLO label area integrity.
  • Wire the audit script into the readiness syntax gate.
  • Use live audit output to decide whether the next model pass needs more positive AOIs, label cleanup or unique hard negatives.
  • Add more unique background/hard-negative AOIs before repeating hard-negative-balanced YOLO training.
  • Supersede yolo-building-tile-expanded160 only with audited AOI1024 corpora; no repeat-heavy r4/r8 dataset became a default.
  • Regenerate Tower operator samples, export a new unique-hard-negative tile dataset and rerun the dataset audit before training.

Sprint 147 - Unique hard-negative AOI expansion

  • Expand the documented operator background candidates from 3 to 9 unique AOIs.
  • Keep every new background AOI explicit, allow_empty_reference=True, and sample_role='background_candidate'.
  • Add test coverage for minimum background candidate count, unique centers and regional spread.
  • Prepare the new samples on Tower and build a fresh hard-negative tile dataset.
  • Rebuild Tower all-in-one image so the newly copied operator scripts are available inside /app/scripts without docker cp.
  • Fix YOLO preflight CLI so it respects Tower .env runtime configuration.
  • Train a new inactive AOI1024 YOLOv8s candidate with visible-label filtering.
  • Fix the all-in-one/compose Nginx upload limit after live 1024px GeoTIFF uploads hit 413 Request Entity Too Large.
  • Fix the all-in-one/compose Nginx proxy timeout after low-threshold persisted YOLO/QA runs hit 504 Gateway Timeout.
  • Rerun the previously failing Geel low-threshold persisted QA/QC path for geointel-building-yolov8s-aoi1024visible025e50-pt after redeploying upload/timeout fixes.
  • Finish remaining AOI1024 positive-sample matrix coverage for geointel-building-yolov8s-aoi1024visible025e50-pt.
  • Run AOI1024 background/hard-negative matrix for geointel-building-yolov8s-aoi1024visible025e50-pt.
  • Fix promotion-report parsing for multi_sample_quality_summary.json inputs.
  • Generate AOI1024 promotion report and keep recommended candidate as none.
  • Add GRB paging before trusting dense reference exports as full ground truth.
  • Regenerate Tower AOI1024 operator samples with paged GRB references, then re-export and audit labels before any new training attempt.
  • Improve AOI1024 label quality before retraining: yolo-building-aoi1024-cleanpx12vis035 now audits ok with 14,632 labels, min_label_px=12, min_label_visible_ratio=0.35, median normalized box area 0.001373291015625 and small-box share 0.0.
  • Train and reject geointel-building-yolov8s-aoi1024cleanpx12vis035e50-pt through the positive/background promotion gate.
  • Keep every local YOLO candidate inactive until positive-AOI and hard-negative promotion reports recommend default activation.

Sprint 181 - Complete Mol municipality workspace

  • Persist the official VRBG municipality boundary for Mol (NIS 13025).
  • Page, deduplicate and boundary-clip the complete GRB GBG building layer.
  • Import municipality layers through the existing DatasetService and VectorFeatureService path, with no direct provider-to-database write.
  • Prefer the complete municipality workspace on a fresh session while keeping the lightweight boundary as the initially rendered layer.
  • Make GeoJSON bounds calculation safe for municipality-scale layers.
  • Acquire and tile a georeferenced raster only for an explicitly selected Mol analysis zone before running the next configured-YOLO validation.

Sprint 182 - Municipality viewport delivery and bounded AI handoff

  • Stop downloading municipality-scale vector datasets as one frontend GeoJSON payload.
  • Deliver large persisted layers through the existing PostGIS bbox endpoint from zoom level 14.
  • Report visible/total counts and explicit truncation instead of silently hiding omitted features.
  • Preserve complete loading and auto-fit behavior for small vectors and persisted AI/QA overlays.
  • Allow the real raster/detection/QA operator smoke to reuse the definitive Mol project.
  • Link operator raster/reference uploads to the persisted analysis Area and keep their names distinct from municipality-wide layers.
  • Execute the bounded Mol-Centrum configured-YOLO/QA workflow in the deployed runtime and retain its persisted ids as release evidence.

Sprint 171 - Positive AOI expansion and small-building recovery

  • Reject cross-model false-negative comparisons when reference populations differ.
  • Add explicit Olen, Lille, Oud-Turnhout and Kasterlee positive training AOIs.
  • Preserve Turnhout, Retie, Westerlo and Arendonk-heide as manifest-backed validation holdouts.
  • Make the tile exporter reject unknown validation samples and holdout leakage.
  • Refresh the full AOI1024 operator manifest on Tower and fetch only missing AOIs.
  • Export and audit a low-minimum-label dataset without changing the active model.
  • Render and inspect a sample-balanced label contact sheet before training.
  • Finish the inactive expanded-minpx4 candidate and run the full promotion gate.
  • Export the focused 23-sample minpx3 corpus with independent Vosselaar/Grobbendonk validation and external Turnhout/Retie/Westerlo holdouts.
  • Train, audit and guarded-activate the focused small-building candidate only after all persisted promotion gates passed.

Sprint 199 - Reviewed accuracy expansion and fail-closed challenger

  • Add six complete training-only AOIs outside every protected Mol/Kempen holdout.
  • Page and audit 9,964 new GRB building references with municipality and CRS provenance.
  • Export and visually inspect the 252-tile, 79,192-label reviewed-accuracy corpus.
  • Train one inactive 20-epoch YOLOv8s challenger from the active local model without downloads.
  • Rerun active and challenger models on identical coverage-aware reference populations.
  • Confirm positive-zone F1 improvement in all seven holdouts.
  • Reject challenger activation because Postel-bos produced two detections while the active model remained at zero.
  • Update the recommended UI profile with the current active model's coverage-aligned evidence.
  • Collect new training-only hard negatives matching the two Postel-bos errors before another challenger attempt.

Sprint 212 - Platform-wide official source portfolio

  • Rebalance official source planning across six platform domains.
  • Distinguish operational ready Datasets from audited but unimplemented sources.
  • Reduce Sources workspace noise through domain summaries and progressive disclosure.
  • Add official space, soil, mobility, population, service, climate and economy candidates.
  • Replace the water-first recommendation with a cross-domain implementation wave.
  • Implement the governed Flemish thematic-raster registry for space occupation, open space, population density, node value and service level.
  • Add the digital soil map through DatasetService and VectorFeatureService.

Sprint 224 - Governed GRB evolution

  • Audit all eight retained regional GRB snapshots for complete official source identities and geometry-hash fallbacks.
  • Validate old governed snapshots through authoritative, complete and approved operator provenance before enabling object-level comparison.
  • Make future regional GRB imports reject missing official OGC identities.
  • Persist explicit identity schemes and collection prefixes on new GRB snapshots.
  • Show precise daily edition ranges and explain registration-date nuance in the Evolution workspace.
  • Document refresh readiness across the complete official-source portfolio.
  • Verify and add the governed ALZ catalog probe against the official campaign-snapshot and definitive-archive publication contract.
  • Add a read-only orthophoto preflight for product variant, official edition, exact WCS selected-area domain and deterministic flight-year points.
  • Keep orthophoto pixel refresh manual through a separate plan-stage-review-apply flow that retains the passed preflight identity and creates a new immutable Dataset with official YYYY.NN source version.

Bathymetry follow-up

  • Add governed municipality partition orchestration for all of Flanders after the Mol VHA operator passes live acceptance.
  • Add read-only MDK WCS capability/TLS probe and maritime scope metadata.
  • Add bounded MDK GeoTIFF acquisition only after live CRS, LAT, nodata and response-limit validation. Current official endpoint is blocked by TLS hostname mismatch and unavailable capabilities; never bypass verification.
  • Add SPW staged-download adapter with mDNG metadata and survey-epoch coverage validation.
  • Add authoritative territorial-sea, EEZ and continental-shelf boundary layers with legally accurate labels.
  • Add vertical-datum conversion only when authoritative transforms and uncertainty tests exist; never merge TAW, LAT and mDNG implicitly.
  • Add water volume only when bed and water-surface inputs share a governed time, datum and coverage contract.