a0086086a2ffe0063cac4bbda50b6df6c3a32e15
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a0086086a2 |
feat: rolling-origin event-aware evaluation harness for model variants
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One fold per monsoon season (train <= 30 Apr, test Jun-Nov, 2021-2025) replaces the single fixed holdout that contained only ~4 warning events. Metrics are what matters operationally: sustained first-alert lead vs each observed 3.70m crossing (two consecutive alerting samples required; lookback floored at the previous event's end so multi-peak floods can't launder lead credit), peak error from the prediction actually issued 24h before the peak (3h match tolerance, null on outages), false-alarm episodes (12h gap tolerance), MAE / flood-regime MAE, and a Brier score on warning exceedance — included because sigma cancels algebraically in any p>=0.5 alert metric, so lead times compare predictors while Brier compares uncertainty models. Variants: baseline_abs (current), rise (target = future max - current level), rise_weighted (flood-regime sample weights 1x->5x), and rise_quantile (q50/q90 heads, spread-implied sigma). Harness verified by a 3-agent adversarial review (features bit-identical across fold cutoffs; three metric flaws found and fixed before first use). Also: features.build_labels/build_matrix gain stats_end so the rescue quantile is computed from pre-cutoff data only, closing the label- construction leak flagged in the earlier ML review. |
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98023243af |
feat: forecast precompute + issued-forecast archive + dashboard overlay
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The collection-leader worker now precomputes forecasts after every
scrape cycle: primes the /forecast cache (users never trigger the
multi-second inference — its TTL rises to 4500s so the hourly refresh
always wins) and persists every issued forecast to a new
forecast_history table keyed by (as_of, station, horizon) with
predicted max level, warn/danger probabilities, current level, and
model_version. This is the operational record the backtests lacked —
predicted-vs-actual becomes a simple join instead of retraining
historical models.
GET /api/forecast/history/{station} serves the archive (hours or
start/end + horizon filters, 5-min edge cache), and the station history
chart overlays 'Model 24 h peak (as issued)' as a dashed violet line
once data accumulates.
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731f10910e |
perf: stale-while-revalidate caching, bigger executor, cheap DB health probe
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Third on-box run: p50s healthy everywhere but tails at 60s — when a TTL expired under load, every concurrent miss parked an executor thread on the single-flight lock, exhausting the ~12-thread pool and timing out unrelated endpoints. All cached endpoints (latest, HII, stats, health) now use _cached_swr: fresh -> inline; expired-but-present -> the stale value is returned immediately and ONE background task refreshes; only a cold key (first request since startup) waits. Plus: dedicated ThreadPoolExecutor (EXECUTOR_THREADS, default 48) replaces the cpu+4 default, and DatabaseHealthCheck no longer re-runs the CREATE TABLE DDL suite on every probe (connect only when no live engine). |
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96fedb3991 |
perf: single-flight /api/stats; fast-fail health probe
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The on-box rerun after the inline fast path showed the cached endpoints healthy (latest p50 72-160ms, HII ~100ms) but /api/stats at 81% timeouts and /health at 33%: stats had a cache but NO single-flight, so every concurrent miss ran the heavy whole-DB counts (~1.7M rows) in parallel, re-jamming Postgres and the executor — which also dragged uncached history windows into 60s timeouts. /api/stats now computes through _ttl_cached_stale (one computation per 5min TTL, stale served on failure). The health API probe fails fast (5s instead of 30s) and its cache TTL rises to 30s, so a slow upstream can no longer pin executor threads longer than the cache lifetime. |
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0b14e394ad |
perf: Cache-Control headers so browsers and edge caches absorb traffic
Bandwidth diagnosis: iperf shows the proxy<->API VPN link at 65-78 Mbit/s and a fast client pulls 15.7 MB/s from a CDN but only ~66 KB/s from the site — the Caddy host's public uplink is the scarce resource. Max-ages mirror the server cache TTLs (latest 30s, HII 60s, forecast 120s, history/stats/stations 300s, static 1h, dashboard HTML 120s), so repeat views come from browser cache and an edge proxy (e.g. Cloudflare free tier in front of Caddy) can serve most traffic without touching the uplink. |
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d9c65bcf0c |
perf: inline cache fast path; cache /health checks
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The on-box load test exposed the real stall: cache HITS were dispatched through asyncio.to_thread, so under load a microsecond lookup queued ~11s behind slow work in the ~8-thread default executor (endpoints answered inline — /forecast 4ms, /api/stats 2ms — while every to_thread endpoint sat at p50 8-17s). Handlers now check TTL caches inline in the async path via _cache_fresh() and only pay for a thread on a miss. /health results are cached for HEALTH_CACHE_TTL_SECONDS (10): its external RID-API probe plus DB query were occupying executor threads on every hit, which is what jammed the pool in the first place. |
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1ec5cfb4df |
perf: gzip responses; multi-worker serving with single collection leader
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GZipMiddleware (min 500 bytes) compresses the dashboard HTML ~4x and station JSON up to ~100x, end-to-end through the Caddy TLS terminator — production load testing showed the deployment is bandwidth-bound once the response caches hit, so compression is the capacity lever. WEB_WORKERS (default 2) runs uvicorn multi-process via the app import string. Every worker executes the lifespan, so a localhost lock port (COLLECTION_LEADER_PORT, default 8901) elects exactly one background-collection leader per machine — RID/HII polling stays once-per-cycle instead of once-per-worker; the lock releases with the process. Locust clients now send Accept-Encoding so future runs measure compressed transfer, as browsers do. |
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039af8caac |
perf: cache /measurements/latest; stale-on-error fallback for cached endpoints
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The response caches (HII feeds, and now /measurements/latest at 45s TTL — the endpoint every dashboard poll hits) share one helper, _ttl_cached_stale: single-flight per key, empty results never cached, and expired entries kept as a fallback. If a recompute fails (DB unreachable), the last good response is served with an X-Data-Stale: true header instead of a 5xx — during an outage the dashboard keeps showing the last real readings with their honest timestamps. TTLs: LATEST_CACHE_TTL_SECONDS (45), HII_CACHE_TTL_SECONDS (120). |
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d27ca8bf40 |
perf: 120s TTL cache with single-flight on /api/hii/*/latest
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These endpoints ran an uncached latest-per-station aggregation on every request (p50 0.6-0.9s under load, ~30% of the traffic mix) for data the collector refreshes hourly. Responses are now cached per (feed, hours) for HII_CACHE_TTL_SECONDS (default 120) with a per-feed compute lock so a cache miss runs one query regardless of concurrency; empty results are never cached so recovery is immediate. Cached hits measure ~8ms. Cache is process-local behind a single helper — the seam where a shared backend (Redis) would slot in if the deployment ever moves to multiple workers; not warranted at one. |
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0005f7dce1 |
feat: codified backtests, honest docs, belt-and-braces serving, perf fixes
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Retrained on the gap-filled DB (592k -> 976k rows) and re-examined the flood backtests, now reproducible via scripts/backtest_render.py (renders the three docs/img charts and gates on a >=12h 2024 first-alert lead — currently failing by design and documented as such). Findings, all documented in FLOOD_FORECASTING.md: the true 2024 crossing was 24 Sep 17:00 (8h earlier than recorded; confirmed against the independent HII sensor), the historical 24h-warning claim was partly a missing-data artifact, and retrained warn classifiers collapse on the filled grid (P.1 24h PR-AUC 0.900 -> 0.288) while regression MAE improves (11.3 -> 10.5 cm). Serving therefore becomes max(classifier, sigmoid(regression)) so alerting is never worse than the regression path; metrics table, head-gating tiers, honest-limits and runbook expectations all updated to the current model (hgb-v1+d2d0e65). Perf, from Locust load testing (scripts/locustfile.py + load_test.py): single-flight lock around /forecast inference (concurrent cache misses previously each ran ~18s inference and starved the shared thread pool; 200-user run after: 105 rps, 0.01% errors), and /measurements/latest + /health moved off the event loop (synchronous DB/network calls in async handlers were stalling every request under load). |
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d2d0e655aa |
fix: All-time range fills the date pickers with the DB's first record date
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Uses first_timestamp from /api/stats (2018-08-01 fallback) as the start date and today as the end, instead of clearing the pickers. |
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b89c7e1915 |
feat: flood-verdict banner, violet rain palette, per-station bands, chip contrast, Umami
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UI/UX review backlog round 2 plus analytics: - at-a-glance verdict banner (role=status, aria-live) above the tiles: ok/watch/danger from P.1 level vs the official 3.70 m stage and the 24 h forecast, with a not-an-official-warning disclaimer + ThaiWater link (also added to the forecast card) - rainfall dots switch to a violet sequential ramp so they can never be confused with flow-status colors; legend gains 'Other markers' rows (grey no-data gauges, + bank-height sensors) - history-chart flood bands now use each station's own /forecast thresholds (P.1 official fallback) instead of hardcoded 3.0/4.5 - chipStyle(): contrast-safe text on all code/risk/stage chips (dark ink on amber/ochre, darkened fills for white ink); risk/stage ramps drop the blue step for a monotonic green-ochre-amber-red escalation - plain-language tooltips on the flow and capacity tiles - Umami: client script tag plus opt-out server-side middleware posting api-request events (fire-and-forget, 3 s timeout, never blocks) |
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5848621c77 |
fix: UI/UX review round 1 — mobile reachability, legend toggle, replay correctness
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From the multi-lens review (27 confirmed findings; this lands the quick high-impact set): - mobile: side-card cap 400px->70vh so the basin-stations expander is reachable; live-pill kept as a dot (title carries the label); replay button no longer wraps; legend returns behind a Legend toggle button (was display:none, which also removed the only rain toggle) - replay: auto-refresh skips while replaying (was clobbering state); Chiang Mai flow tile shows P.1 replay discharge instead of a basin-wide sum mislabelled as P.1 - history: placeholder text in the empty chart, dropdown flips to 'Custom range' when dates are hand-edited, controls hint when no station is selected - a11y/copy: aria-expanded/aria-controls on all three disclosure controls, sensor rows say 'of bank height' vs tile 'channel capacity', P.1 tile note deduped |
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09c1c84153 |
feat: search-engine indexing — robots.txt, sitemap.xml, llms.txt, SEO meta
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robots.txt (sitemap pointer, /metrics and /scrape/ disallowed), sitemap.xml (/ and /docs), and llms.txt (site + API summary for LLM crawlers) served at the domain root. Dashboard head gains title with keywords, meta description, canonical, Open Graph/Twitter tags, schema.org WebApplication JSON-LD, theme-color, and an inline SVG favicon (also silences the /favicon.ico 404). |
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bd3353e2dc |
feat: buildfor.life link in dashboard footer
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d0018d6529 |
feat: physically meaningful stat tiles + footer links
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'Combined discharge' summed sequential mainstem gauges, counting the same water several times — replaced with Chiang Mai river flow (P.1 discharge + % of channel capacity). 'Strongest flow' becomes 'Most stressed gauge' (max discharge_percent basin-wide). Reporting-stations note shows the ThaiWater/HII station count. Footer links to the source repo and /docs API reference. |
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df31de092b |
fix: collapse additional-stations list by default; no scroll-jump on station click
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The 97-row ThaiWater/HII list was starving the RID flow list down to one visible row. The section header is now a click/keyboard toggle (collapsed by default, arrow indicator); searching auto-expands it so hidden stations stay findable, and the flow list keeps a 280px minimum when both are open. Selecting a station no longer scrollIntoViews the history card. |
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e27d418a1a |
feat: station search in side panel; DB stats cover HII tables
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A search box above the station lists filters both the RID flow list and the basin-station list by code, name (Thai included), or river, and persists across refreshes. /api/stats now reports whole-DB totals — RID + hii_rainfall + hii_waterlevel counts, combined station count, and a date range spanning all sources — with per-source breakdown fields the stats strip shows as tile notes. Sensor section renamed to 'Additional basin stations · ThaiWater/HII'. |
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ba4710b243 |
feat: 'Last N' labels on history ranges; dropdown mirrors into date pickers
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Quick-range options read 'Last 24 hours' … 'Last 90 days'; choosing one fills the from/to date inputs with today and today-N (All time clears them). Dropdown-driven loads still fetch the precise trailing-hours window; hand-edited dates take over via state.useDates. |
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9516857d44 |
feat: date-range picker on the station history panel; drop PostgreSQL naming
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/measurements/history/{code} accepts optional start/end date params that
override the hours window (end date inclusive). The dashboard history
card gains from/to date inputs beside the quick-range dropdown —
explicit dates win, changing the dropdown clears them. All user-facing
'PostgreSQL history' labels renamed to 'Station history'.
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d29d49eac7 |
feat: collapsible flood outlook (P.1 only by default) + dashboard fixes
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The flood-risk card now shows just the Chiang Mai P.1 outlook; the per-station forecast grid collapses behind a Show/Hide expander. Fixes: the rain-layer toggle was unclickable (.map-overlay pointer-events:none now re-enabled on the legend), long HII station codes (MOU302, FOP015) wrap inside their chips instead of clipping, and the sensor panel sorts by bank percentage with no-data stations last. |
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4f3f19f6db |
feat: rainfall + HII water-level layers on the dashboard
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New endpoints GET /api/hii/rainfall/latest and /api/hii/waterlevel/latest serve the latest per-station rows from the hii_* tables. The map gains a TWA-style rain layer: circle markers binned by TMD 24-h classes (blues for light/moderate/heavy, site amber/red for very-heavy/extreme), with a legend block and show/hide toggle. The ThaiWater sensor panel now prefers the DB-backed HII feed (no API key required, 97+ stations, ThaiWater storage-percent situation colors, gauge-datum conversion via offset_msl) and falls back to the live /sensors/thaiwater passthrough. |
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d72496f404 |
feat: backfill hii_waterlevel from the HII waterlevel_graph archive
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scripts/backfill_hii_waterlevel.py walks the api-v3 waterlevel_graph endpoint (hourly wl_msl + discharge, archive back to ~2019) in full-year windows per station and upserts into hii_waterlevel. Defaults to the RID-mirror and key stations; --stations/--all/--start/--end/--chunk-days override. History upserts touch only wl_msl and discharge so colliding live-snapshot rows keep storage_percent/situation_level. Idempotent and safe to re-run. |
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33d8baa8dd |
fix: composite (station_id, timestamp) PK on hii_* measurement tables
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TimescaleDB create_hypertable rejects tables whose primary key omits the partitioning column; the surrogate id PK served no purpose, so use the natural key directly. |
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1845ef7203 |
feat: hourly HII/ThaiWater rainfall + backup water-level collection
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Poll the open api-v3.thaiwater.net public endpoints (rain_24h, waterlevel_load), filter to the Ping basin, and persist to new hii_rain_stations/hii_rainfall and hii_wl_stations/hii_waterlevel tables (auto-created; sqlite/postgresql/mysql). Water levels stay in their own tables since HII reports m MSL from a different station set; rid_code maps mirrors like ridhydro_P.1 to P.1 and offset_msl converts MSL to gauge datum. Runs every scraping cycle in web-api and continuous modes (hourly cadence even during 1-minute RID retry), one-shot via --collect-hii; docs/DATA_SOURCES.md catalogs all probed endpoints. |
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7befc82ff5 |
feat: database stats on the dashboard via GET /api/stats
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New SQLAdapter.get_database_stats() aggregates totals, station count, date range, and hourly-slot coverage in one query per dialect. The endpoint follows the existing 503-guard/to_thread/TTL-cache pattern; the dashboard gains a five-tile stats strip on the existing refresh cadence. Coverage denominator is hour-truncated so off-hour endpoints cannot push it past 100%; MySQL slot expression avoids % characters that would break under pyformat bind interpolation. |
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5e62ea529d |
feat: --fill-gaps all repairs missing data across the whole DB range
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Gap detection is now hour-granular: days with partial data (missing hourly slots) are re-fetched, not just days with no rows at all. The API's hour-24-is-next-midnight quirk is handled by re-fetching day D-1 when day D is missing its 00:00 slot. SQL adapters gain single-query range and recorded-hours lookups; non-SQL backends fall back to the old day-granular check. |
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410faeddd5 |
fix: protect admin API endpoints; stop rejecting flood-peak measurements
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Security: POST/PUT/DELETE /stations, POST /scrape/trigger and GET /config now require an X-API-Key header matching ADMIN_API_KEY. Secure by default - with no key configured those endpoints return 503 instead of being open. Comparison via secrets.compare_digest. Dashboard and read endpoints stay public. Data: the validator rejected any measurement whose discharge_percent exceeded 200 - which silently deleted the Oct 2024 record-flood peaks (the river genuinely ran at 201-226% of channel capacity). The cap is now 500%, and an out-of-range percent nulls that auxiliary field instead of discarding the whole row (water level and discharge are the data that matter). Surfaced by the user's historical backfill log. |
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27fa292e09 |
docs: September 2025 flood render - deployed config, 24 h warning, peak within 7 cm
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Hour-by-hour chart of the 25-28 Sep 2025 event as forecast by the exact deployed configuration (trained through 2024, event unseen): first alert 26 Sep 18:00, flooding began 27 Sep 18:00 (24 h lead), predicted peak 4.00 m vs actual 3.93 m. The near-miss 3.51 m crest on 26 Sep correctly never alerted. |
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f0183faa62 |
feat: discharge-driven river animation speed, replay stat tiles, hourly doc render
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- river dash animation now flows at a speed continuously derived from each segment's discharge (period 260/(Q+45) s, clamped 0.5-5.5 s) via inline per-path animation-duration, so it updates live and per-frame during the replay (CSS speed classes removed - setStyle cannot change classes) - the replay drives the Combined discharge and Strongest flow stat tiles each frame (marked '2024 replay'), restored on finish - docs: hour-by-hour detection detail render (22-28 Sep 2024) showing the model alert at 24 Sep 01:00, flooding at 25 Sep 01:00, and the 24 h warning between them; embedded with commentary - Matrix alerts now link to https://water.buildfor.life/ (override via ALERT_DASHBOARD_URL), replacing the Grafana public dashboard link |
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6112c681a7 |
docs: render of actual vs predicted through the 2024 flood; adaptive replay speed
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docs/img/backtest-2024-p1.png: observed P.1 level vs the 24h-ahead predicted peak issued at each hour by a model trained only on pre-flood data, with the warning-probability panel below (first alert 24 Sep 01:00, 24 h before flooding began). Embedded in FLOOD_FORECASTING.md's headline-validation section with an honest reading, including the ~0.4 m peak under-prediction. Replay pacing is now adaptive: 4 h/frame through quiet days, 2 h when risk is elevated, 1 h (hour-by-hour) while the model is alerting or the river is near/above flood stage - so viewers can watch the detection sequence unfold. |
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199b0e3483 |
feat: replay shows when the model would have detected and warned
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The 2024 snapshot now carries a model track: p_warning and predicted 24 h peak from HGB heads trained ONLY on pre-flood data (an honest backtest, cutoff 2024-08-31), plus its calibration sigma. During replay: - the map clock shows the system's state at each moment: 'model: no flood expected' -> 'elevated risk' -> amber 'MODEL ALERT - flooding within 24 h likely (predicted peak X m)' -> red 'FLOODING' once the river actually crosses stage 1. First alert fires 24 Sep 01:00, a full day before the water crossed the flood line on 25 Sep. - the flood-risk outlook stage chips re-render each frame from the historic model prediction (sigmoid over the stage levels), so the whole outlook panel time-travels with the map. |
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d015420b66 |
feat: full-basin 2024 flood replay with clock and demo indicator
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The replay now drives the entire map from a 120 kB all-station snapshot (static/flood-2024-all.json: 649 hourly frames x 16 stations of level + discharge, forward-filled on an aligned grid): - station markers recolor/resize per frame from historic discharge - river segments restyle per frame (color/width from the same nearest-gauge grading as live mode) - flood zones flood/recede from P.1's historic level - a large clock overlay on the map shows replay date/time, P.1 level and total basin flow - the LIVE DATA pill switches to an amber '2024 REPLAY' (or 'SIMULATION' for the demo_level/demo_rise hooks) and back on finish - replay end or stop restores the live view via a full dashboard reload Replaces the P.1-only snapshot (flood-2024-p1.json removed). |
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0b885e572d |
chore: gitignore .playwright-mcp browser artifacts
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0672ea5ffa |
feat: Oct-2024 flood replay, simulation hooks, and static replay data
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- header button 'Replay Oct 2024 flood': animates the real Sep 15 - Oct 12 2024 P.1 hourly series (~45 s) through the flood-zone display; zones flood blue as the river climbs to the 5.30 m record and recede as it falls; click again to stop; restores live state when done - replay reads a pre-extracted 15 kB static snapshot (static/flood-2024-p1.json, 335 frames) instead of pulling the 4.6 MB all-time history on every click; falls back to the history API if the snapshot is missing - demo hooks for testing/presentations: ?demo_level=4.4 pins a simulated P.1 level, ?demo_rise=1 animates rising water to 5.30 m; both label the outlook line as SIMULATION with the real level alongside |
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c62a03e778 |
feat: flooded zones render as water and auto-surface
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When P.1's current level reaches a zone's trigger level the zone fills water-blue (solid border, .62 opacity) instead of the amber risk ramp, and the zone layer adds itself to the map automatically - no toggle needed during an actual flood. A manual hide sets a session flag so auto-show does not fight the user. |
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711629682d |
feat: per-marker icon field for custom markers
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custom-markers.json entries accept an optional "icon" (any emoji, default pin); seeded homes/office icons for the existing markers. |
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7e7d244efa |
feat: add baan boe marker
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786b8514ea |
feat: custom map markers with per-location flood-zone risk
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src/static/custom-markers.json holds user points of interest
({name, lat, lon, optional note}); the dashboard renders them as pin
markers whose popups show which inundation zone the point sits in, its
P.1 trigger level, and the live 24 h exceedance probability (ray-cast
point-in-polygon against the zone geojson; smallest matching zone wins).
Seeded with the owner's four properties.
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a17509f3ea |
feat: replace digitized flood zones with owner-traced polygons
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The 7 Chiang Mai inundation zones are now hand-traced by the project owner against the real basemap (cnx_flood.geojson), replacing the scan-digitized approximation and its georeferencing error entirely. Features are ordered zone 7 -> 1 so the earlier-flooding (smaller) zones render on top of the wider extents in Leaflet. |
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4f12360960 |
fix: shift flood zones 1.05 km south, anchored to Nawarat Bridge
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The P.1 marker (Nawarat Bridge, 18.7875) sat inside zone 2 near its top
edge, but the bridge IS Chang Khlan's northern boundary - the layer was
~0.0095 deg too far north (the district-centroid correction in
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c4e0fb6bae |
fix: re-georeference flood zones and make them clearly visible
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The previous affine fit slid along the mostly north-south river (an ill-conditioned direction) leaving the zones ~1 km south-west of their true position. New approach: extract the scanned river band by color, match it to the OSM Ping mainstem centerline by arc length (which pins the along-river position), then correct residual translation using known district locations cross-checked against the river residual (533 m -> ~300 m median; Chang Khlan zone centroid now within 200 m). Mountain-area artifacts are clipped away via the municipality hull. Zones were also nearly invisible at fillOpacity 0.16 - base opacity is now 0.38, rising with the live 24 h exceedance probability, and 0.72 with a solid red border once the river is at or above a zone's level. |
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f05289e628 |
fix: CI matrix to Python 3.11 only until pandas is upgraded
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pandas 2.0.3 has no cp312 wheels, so the 3.12 matrix leg fails during dependency install. The deployment runs 3.11. |
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3b919adc56 |
feat: vector flood-zone polygons replace the scanned-map overlay
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Digitize the 7 Chiang Mai inundation zones from the municipal map into geojson polygons: pixels classified by legend color, vectorized via marching squares, and georeferenced by a 6-parameter affine fitted least-squares to the OSM Ping centerline (109 m median residual after outlier-filtered refits - the scanned image overlay could never scale correctly and is removed). The dashboard renders the zones as a Leaflet geoJSON layer styled live from the forecast: fill opacity scales with each zone's 24 h exceedance probability, zones whose trigger level the river has already reached get a solid red border, and each polygon's popup shows its trigger level and live probability. Zone styles refresh with every forecast load. |
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6c0bb024a8 |
chore: remove stray zero-byte files accidentally committed
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ecd34177bb |
fix: backtest/review findings in the flood-ML package
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From the adversarial review and threshold backtest (swarm verification): - predict.py: when a bundle's trained thresholds differ from the current config (deploy before retrain), skip its stale classifier heads and derive p_warning/p_danger from the regression + sigma against the CURRENT thresholds - the dashboard can no longer show contradictory old-threshold classifier output next to new-threshold stages - features.py: decouple the low-coverage regression-label rescue from the warning threshold (now the station's own p97.5 level); the old coupling silently dropped 34% of P.5's regression training rows and cost +46% MAE when its threshold rose - features.py: P.82 danger 3.80 -> 3.75 (3.80 was above the station's 8-year maximum of 3.78, so danger could never train or fire) - data.py / predict.py: anchor models/cache paths to the repo root; the relative paths silently returned zero rows when run from another CWD - annotate P.4A thresholds as low-confidence (11 supporting readings) 47 tests pass. Retrain required for the label-rescue and P.82 changes to reach the classifier heads. |
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9cac9c4d2a |
style: apply black/isort across the repo; make CI mypy advisory
The push-CI gates (black/isort/mypy) had never actually run before the branch-trigger fix, and the codebase predates them. Formatting is now black/isort clean repo-wide. mypy keeps running but non-blocking: 86 pre-existing errors are a separate cleanup, not a gate to hold hostage. |
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300c0e0b6f |
fix: trigger CI on master (repo default branch), drop unsupported Python matrix entries
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Workflows listened on 'main'/'develop' but the repo's default branch is master, so push events never started a job (every historical run is a schedule event). Point push/PR triggers and the deploy-gate refs at master, and trim the test matrix to 3.11/3.12 to match requires-python >=3.11. |
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e4d5d274f0 |
feat: per-station flood thresholds and Chiang Mai inundation stages for P.1
Replace the network-wide (3.0, 4.5) m thresholds with per-station values calibrated from the DB's discharge_percent (RID % of channel capacity): warning = median level at 75-85% capacity, danger = median at 95-105%. Fixes P.103 over-alerting (bank-full ~6.75 m, not 4.5) and P.67 under-alerting (overflow ~2.9 m). Requires a retrain to take effect in the classifier heads. P.1 uses the official Chiang Mai municipal inundation map instead: warning 3.70 m (stage 1, city flooding begins), danger 4.20 m (stage 5), with the full 7-stage table (3.70-4.60 m + discharge) in features.P1_FLOOD_STAGES. Forecast rows for P.1 now include per-stage exceedance probabilities computed from the regression head + calibration sigma - available immediately without retraining. Dashboard: "Chiang Mai city flood outlook" block above the forecast grid (predicted peak + 7 stage-probability chips) and a toggleable georeferenced overlay of the official flood-zone map (static/flood-zones-p1.jpg, bounds tunable in FLOOD_ZONE_BOUNDS). |
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29f4b5818d |
fix: require Python >=3.11 and lock scikit-learn deps for uv
scikit-learn 1.9.0 supports only Python >=3.11, so uv could not resolve the >=3.9 range. The deployment runs 3.11. Also pins numpy back to 1.26.4 in the lockfile (pandas 2.0.3 ABI). |