- H23: introduce Towerops.Workers.SyncErrors.transient?/1 classifier;
uisp/preseem/cn_maestro sync workers now retry transient failures (5xx,
timeouts, rate limits) via Oban while still discarding permanent errors
(401/403/404) as :ok. Stale monitoring data is the bigger risk than an
extra retry on a known-bad credential.
- H26: add Monitoring.get_latency_data_for_devices/2 batch counterpart
(currently a stub map but called from SiteLive.Show so any future ping
implementation lands in a single query, not one-per-device).
- H28: Nominatim search popups in the coverage map now bind via a text
node instead of an HTML string, so a compromised/poisoned response
can't execute as JS in the popup.
- H29: yaml_profiles dot-boundary OID prefix match (handles optional
trailing dot from YAML profile keys). Stops 1.3.6.1.4.1.9 from
incorrectly matching 1.3.6.1.4.1.99.
Rewire the single-coverage show page to mount MultiCoverageMap (the
same hook the org map uses) with one coverage in the array, and lift
the cnHeat-style overlay panels — LOS/NLOS toggle + height slider on
the left, opacity + RSSI filter on the bottom, distance probe on
click. Parameters move into a togglable right-side drawer so the map
dominates the viewport.
Show LiveView gains toggle_params / probe_point / close_probe /
set_probe_units handlers and delegates the formatters to
CoverageLive.Map. Site is now preloaded so coverages_payload/1 can
read site.name without an Ecto.AssociationNotLoaded crash that was
silently nuking the data-coverages JSON encode.
Also fixes a real bug in coverage_hooks.ts: pngForCoverage was
returning before the antenna-marker creation block, leaving the
marker code as unreachable dead code — towers never rendered. Moved
the marker creation into addCoverageLayer where it belongs and added
a no-PNG guard so a missing png_path logs instead of silently
failing the L.imageOverlay constructor.
Closes the cnHeat-parity gap on modes and clutter:
Backend
- Towerops.Coverages.Buildings.for_bbox/1 — PostGIS ST_Intersects
query that returns each building polygon as a compact
%{height_m, coords} map ready for in-memory point-in-polygon
testing, so the per-pixel hot loop never round-trips to
Postgres.
- Towerops.Coverages.Profile.sample/5 — accepts an optional
:clutter list and adds the building rooftop height to terrain
whenever a sample point falls inside a polygon. Pure ray-cast
PIP for portability.
- Towerops.Workers.CoverageWorker — fetches buildings once per
job and computes BOTH LOS and NLOS variants per SM-height
tier (12 PNGs total). LOS passes clutter: [] (height-above-
clutter view), NLOS passes the prefetched list (height-above-
ground view with rooftop diffraction). Pixel-loop signature
bundled into a ctx map to keep the function arity within
Credo's max-8 limit.
- Towerops.Workers.MsBuildingsImportWorker — streams Microsoft
GlobalMLBuildingFootprints GeoJSONSeq exports line-by-line,
upserts into coverage_buildings in 500-row batches via
insert_all + ON CONFLICT (source, ms_footprint_id). Handles
Polygon and MultiPolygon geometries; stable-hashes the bbox
when an explicit feature id is missing so re-imports are
idempotent. Public import_file/2 lets ops drive a state at
a time from IEx.
- Schema: nlos_tiers JSONB column on coverages, status_changeset
whitelist, payload exposed via list_ready_for_organization.
Frontend
- LOS / NLOS toggle pills above the height slider (left panel).
Selecting NLOS swaps each L.imageOverlay's URL via setUrl to
the matching nlos_tiers PNG, drops the cached pixel data, and
re-decodes for the RSSI filter; falls back to the other
mode's tiers when one is empty so older coverages still
render. coverage_hooks chunk: 22 KB → 25 KB.
Vertical 'Height above clutter' slider on the left of the map now
matches cnHeat's experience: pick an SM install height, the heatmap
re-renders to show only the coverage achievable from that height.
Backend
- New JSONB height_tiers column on coverages keyed by string metres
→ relative PNG path.
- CoverageWorker runs compute_pixels once per tier in
[1.83, 3.05, 4.57, 6.10, 9.14, 12.19] m (~6/10/15/20/30/40 ft)
by varying receiver_height_m on a copied struct. Each tier
writes its own raster + PNG via Raster.write/4 with a per-height
filename suffix; the default 3.05 m tier also populates the
legacy raster_path / png_path so existing show pages keep
working.
Frontend
- Vertical range slider (writing-mode: vertical-lr) anchored
centre-left. Step picks one of HEIGHT_TIERS_FT; label updates
to '6 ft'..'40 ft'.
- pngForCoverage/2 picks the closest available tier from the
payload's height_tiers map, falling back to the original png
for coverages not yet recomputed.
- On slider change the JS swaps each L.imageOverlay's URL via
setUrl, drops the cached pixel data, and re-decodes so the RSSI
filter still applies. coverage_hooks chunk: 20 KB → 22 KB.
Adds the cnHeat-style horizontal 'Min RSSI' slider beside the opacity
control. Pixels weaker than the threshold turn fully transparent,
client-side, with no server round-trip — same compute output now
powers an interactive 'where can I get -75 dBm or better' exploration.
- Slider range -100..-40 dBm step 1; -100 disables filtering.
- addCoverageLayer fetches each PNG into a hidden canvas and caches
its ImageData. crossOrigin=anonymous keeps reads tainted-free.
- Each pixel is classified by nearest palette colour (-50/-65/-75/
-85/-95 dBm centres matching Raster.write/3) and dropped if its
dBm is below the threshold. Result re-encoded via toDataURL and
swapped onto the L.imageOverlay via setUrl.
- destroyed() revokes blob URLs and clears the filter cache to
avoid leaks during LiveView nav. Bundle: coverage_hooks chunk
16 KB → 20 KB; main bundle unchanged at 1.2 MB.
Switch esbuild to ESM with --splitting and load app.js as type=module.
Heavy hooks now ship in their own chunk and only download when their
LiveView mounts.
- assets/js/lib/leaflet.ts: extract ensureLeaflet (vendored Leaflet
loader) into a shared module with a typed window.L declaration.
- assets/js/hooks/coverage_hooks.ts: extract CoverageMap,
MultiCoverageMap, and CoverageLocationPicker (~510 lines) with
proper interface types for hook context and tightened typing on
payloads / event handlers (CoveragePayload is now a real type).
- app.ts: replace those three inline hook bodies with lazyHook
stubs that call import('./hooks/coverage_hooks') on first mount,
forwarding lifecycle hooks once the chunk resolves. Also adds a
scoped `declare const L: any` so the remaining Leaflet hooks
type-check.
- root.html.heex: switch the script tag to type=module so the
emitted ESM bundle can use dynamic import().
- esbuild config: add --splitting --format=esm.
Build output now produces:
app.js 1.2 MB
coverage_hooks-<hash>.js 16 KB (lazy)
chunk-<hash>.js 2.4 KB (shared, lazy)