chart.amow.com — FastAPI + Vue3 app
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Chris Amow 8ca624d435 Add prior-day levels and session VWAP; fix alert repetition they exposed
The confluence engine had nothing to work with. Daily moving averages were the
only level source, and they sat 163 to 697 points from price, so every cluster
had exactly one member and no alert could ever fire.

Two new sources, chosen for having a real following — the engine is a bet that
many participants watch the same price, which is what makes a level hold:

- Prior day high/low/close, from the last *closed* daily bar so mid-session the
  levels do not silently switch to today's own developing range. Full daily
  weight rather than the 0.75 average discount: a traded high is structure, not
  a derived average.
- Session VWAP, anchored to the 18:00 ET open like the daily bars. Institutional
  execution is benchmarked against it, and zero-volume overnight minutes are
  skipped rather than dividing by zero.

Both are stamped 1d, so they get their own colours to stay distinguishable from
the daily averages. Prior-day levels draw as price lines, which span the chart
and label the axis instead of relying on bar-index interpolation.

VWAP re-prices every minute while a daily average carries hundreds of points and
changes once a session, so broadcasting the whole level set on the VWAP cadence
would have pushed the entire history every minute. Levels now go out as a delta
that clients merge by id.

Adding the levels then exposed two defects that had been invisible while nothing
could cluster:

- Cluster identity was sha1(side + round(center / tolerance)), and tolerance
  derives from ATR, so it changed every bar. The same zone was continually
  issued a new id, never matched the cooldown table, and the cooldown did
  nothing. Identity is now the set of converging levels.
- Alert suppression keyed on that identity, so a level drifting in or out of a
  group read as a new zone. It now suppresses by proximity: two zones within an
  ATR are the same zone, and the strongest is the one reported.

Over six replayed sessions at threshold 28 that is 247 alerts, then 54, then 40;
raising the cooldown to 4h — which only affects repeats of the same area, never
a genuinely new zone — gives 17 total with a worst session of 9.

calibrate_alerts.py now sweeps threshold and cooldown together in one pass,
since the threshold turns out to be quantised and nearly useless as a control.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-10 00:36:21 -05:00
app Add prior-day levels and session VWAP; fix alert repetition they exposed 2026-08-10 00:36:21 -05:00
bin Add /api/version and bin/wait-deploy so deploys are observable from any machine 2026-08-10 01:04:58 +00:00
docs Add implementation plan for /ES multi-timeframe confluence chart 2026-08-09 20:31:40 -05:00
scripts Add prior-day levels and session VWAP; fix alert repetition they exposed 2026-08-10 00:36:21 -05:00
static Add prior-day levels and session VWAP; fix alert repetition they exposed 2026-08-10 00:36:21 -05:00
tests Add prior-day levels and session VWAP; fix alert repetition they exposed 2026-08-10 00:36:21 -05:00
.env.example Add prior-day levels and session VWAP; fix alert repetition they exposed 2026-08-10 00:36:21 -05:00
.gitignore Improve local chart development 2026-08-09 22:18:36 -05:00
docker-compose.yml trendlines namable deleteable 2026-08-09 23:00:46 -05:00
Dockerfile.dev Scaffold FastAPI + Vue3 placeholder app with local docker compose stack 2026-08-09 23:34:01 +00:00
main.py Enforce CHART_AUTH_TOKEN on /api and /ws; restore /api/version for wait-deploy 2026-08-10 04:38:36 +00:00
Procfile Scaffold FastAPI + Vue3 placeholder app with local docker compose stack 2026-08-09 23:34:01 +00:00
README.md Add prior-day levels and session VWAP; fix alert repetition they exposed 2026-08-10 00:36:21 -05:00
requirements-dev.txt Implement M0 Yahoo market data and replay 2026-08-09 20:36:13 -05:00
requirements.txt Implement M0 Yahoo market data and replay 2026-08-09 20:36:13 -05:00

chart

FastAPI backend + Vue 3 (from CDN, no build step) served at https://chart.amow.com.

The app charts Yahoo's ES=F feed, builds CME-session-aware timeframes, daily moving averages, prior-day high/low/close and session VWAP, and alerts on confluence zones. The full spec lives in docs/IMPLEMENTATION_PLAN.md — read it before writing code; it records decisions and verified API facts that are expensive to rediscover.

Local development

docker compose up --build

Then open http://localhost:8010. Override the host port with, for example, PORT=8020 docker compose up. The port binds to all host interfaces, so another machine can connect at http://HOST_IP:8010. The source tree is bind-mounted and uvicorn runs with --reload, so edits to main.py or static/ take effect without a rebuild. Rebuild only when requirements.txt changes.

The Compose stack also includes Playwright for browser screenshots. It reaches the app over the internal Compose network and writes ignored artifacts locally:

docker compose exec playwright playwright screenshot \
  --lang en-US --wait-for-timeout 5000 http://api:8000 /artifacts/chart.png

Without Docker:

python3 -m venv .venv && . .venv/bin/activate
pip install -r requirements.txt
uvicorn main:app --reload

Copy settings from .env.example as needed. To recalibrate the alert threshold against Yahoo's current eight-day minute tape:

python3 -m scripts.calibrate_alerts

It sweeps threshold and cooldown in a single replay pass and prints alerts per session.

The 2026-08-09 calibration ran when daily moving averages were the only levels, and 28 produced no alerts at all — there was nothing for a daily MA to cluster with. Adding prior-day H/L/C and VWAP changed that completely: the same threshold went to 247 alerts over six sessions, 185 of them in one day.

Two fixes brought it back, in this order:

  • Cluster identity was sha1(side + round(center / tolerance)), and tolerance derives from ATR — so it moved every bar. The same zone was continually issued a new id, never matched the cooldown table, and the cooldown was silently defeated. 247 → 54.
  • Alert suppression keyed on cluster identity, so a level drifting in or out of a group counted as a new zone. It now suppresses by proximity: two zones within one ATR are the same zone. 54 → 40.

Only then does the cooldown do anything useful. At threshold 28 the sweep reads:

cooldown total max/session
900s 40 30
3600s 29 20
7200s 22 14
14400s (selected) 17 9

Note the threshold itself is a blunt control: scores are sums of 12s (moving averages, VWAP) and 16s (prior-day levels), so 20, 24 and 28 behave identically and 32 falls to zero. Cooldown is the finer knob. Revisit both as more varied tapes are recorded — six sessions is not much, and one of them dominates the totals.

Layout

Path Purpose
main.py FastAPI lifespan and app wiring; JSON under /api, SPA at /
app/ Market sources, aggregation, analysis, alerts, and API
static/ index.html, app.js, style.css — Vue 3 loaded from unpkg
requirements.txt Python deps
Procfile Start command; nixpacks needs this or the deploy has nothing to run
bin/wait-deploy Blocks until the live site serves your latest commit
Dockerfile.dev, docker-compose.yml Local dev only — production does not use them

Deployment

Push to main → Forgejo webhook → Coolify rebuilds with nixpacks → live. Rebuild time depends on whether Docker's build cache is warm: measured at ~20s warm (you pushed recently) and ~90s cold (the cache goes stale after an idle hour or so, which is the usual case). Nothing changes on the site until the new container swaps in at the very end, so the old version keeps serving for the whole build.

To know when your commit is actually live, rather than guessing:

git push && bin/wait-deploy

It polls /api/version (which returns the SOURCE_COMMIT Coolify bakes into the container) until it matches your local HEAD, then exits. Runs from any machine — no Coolify token, no SSH tunnel. Check by hand any time with:

curl -s https://chart.amow.com/api/version

One more trap worth naming: if your change only touches an /api endpoint, the HTML is byte-identical and a browser refresh looks like nothing happened even after a successful deploy. Verify the endpoint, not the page.

Two things to know before changing the deploy config:

  • The Coolify domain is registered as https://chart.amow.com:8000. The port suffix is how Coolify decides the Traefik target port; drop it and every request 502s while the container looks perfectly healthy. It does not appear in the public URL.
  • Ignore a 502 in the first minute after a deploy — that's the rolling container swap, and it clears on its own.

Manual redeploy:

curl -X POST -H "Authorization: Bearer $(cat ~/.coolify-token)" \
  "http://127.0.0.1:8000/api/v1/deploy?uuid=dgvch0xqv8uvjfor7dl8bwl9&force=true"

Access token

CHART_AUTH_TOKEN guards everything under /api plus the /ws stream. Leave it blank and the app is wide open, which is what you want locally — nothing prompts. Set it and every request needs the token, as the X-Chart-Token header or a ?token= query parameter (WebSocket handshakes can't carry headers, hence the second form).

In production the token lives in Coolify's environment variables, not in this repo and not in .env — that file is gitignored and never exists in the built container. Coolify re-injects its env vars into every container it builds, so the token survives redeploys and reboots.

The browser asks for it once on the first 401 and keeps it in localStorage. To clear it: localStorage.removeItem('chart-token').

/api/health and /api/version deliberately stay open — bin/wait-deploy polls the latter from whatever machine you pushed from, and neither reveals anything about the market data or the configuration.

Saved trendlines

Manual trendlines are written to MANUAL_LINES_PATH (./data/manual_lines.json). In production /app/data is a Coolify persistent volume — without it the container filesystem is ephemeral and every deploy would silently wipe every line you've drawn.