3 Commits
Author SHA1 Message Date
vliaudatandClaude Opus 5 dd4d1b97c8 feat: serve the BYOS device API
The panel now pairs, fetches its image and files its logs against this
application rather than against the TRMNL cloud.

Four endpoints: /api/setup issues a token on first contact,
/api/display hands back an image and a wake interval, /api/log stores
firmware diagnostics, and /api/device/image/<hash> serves the bytes.

The wake interval is where freshness and battery are traded off. In BYOS
nothing can be pushed: the device sleeps, wakes, asks and sleeps again.
So the interval is short while the shop trades and long overnight, and
it is shortened further whenever a change of state falls inside it —
the door opening in twenty minutes means waking in twenty-one,
whatever the base interval says.

The image filename is the hash of its own bytes. The firmware skips the
redraw when the name is unchanged, which is the whole battery strategy,
and the URL is immutable, unguessable and safe to cache forever. Two
integration tests pin this: unchanged data must yield the same filename
and store one row, changed hours must yield a different one.

MAC addresses are normalised before use. They are a primary key here,
and firmwares are inconsistent about case and separators; without this a
panel could register twice by capitalising itself differently. Header
names are read in both the hyphen and underscore spellings for the same
reason — the TRMNL docs and the Seeed sources disagree, and being
liberal costs nothing while being wrong costs a blank shop window.

Pairing is deliberately made to survive a rendering failure. The token
is issued once and only its digest is kept, so a device stranded by a
failed response would be registered yet hold no credential, and unable
to register again. The welcome image is worth far less than that. This
was found by running the flow, not by reading it.

satori, yoga and harfbuzz are marked external: bundling rewrites the
relative path satori uses to load its WebAssembly, and the renderer dies
on a missing hb.wasm.

The integration tests run against a real Postgres, in CI too. Mocking
Prisma here would only prove the mock works.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_012cSY9pVhZmJUKNN7wf1Myd
2026-09-20 18:00:50 +02:00
vliaudatandClaude Opus 5 72aff310d6 feat: build the frozen screen payload from resolved schedule data
Every string the panel shows is computed here, server-side and in both
languages: the status word, the formatted hours, the next-change line,
the week strip and the banner. The renderer downstream only draws, so it
has no access to the schedule and cannot disagree with this file about
what the shop's hours are.

Closing soon is still open and opening soon is still closed: the large
word states the fact and the line under it carries the nuance, which is
the only thing a passer-by can read from the pavement.

A message someone took the trouble to write always wins the banner over
the automatic notice. When its English translation has not landed yet,
the French line shows alone rather than a placeholder.

The snapshot test is the regression guard for the whole display
pipeline: any change to the shape or to a computed string has to be
acknowledged there before it can reach the panel. lib/screen is at 100%
statements and 96% branches.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_012cSY9pVhZmJUKNN7wf1Myd
2026-09-20 17:42:15 +02:00
vliaudatandClaude Opus 5 7a1e833971 feat: add the schedule resolution engine with its test table
This is the business core, written before any UI as the spec requires.
It is pure: no I/O, no database, no clock of its own. Everything arrives
in a ScheduleContext, so every rule below is exhaustively testable.

The engine works on civil (wall-clock) values rather than instants. A
slot that runs 10:00-18:30 runs 10:00-18:30 on the nights the clocks
change too, and day arithmetic goes through UTC, which has no daylight
saving. That turns the March and October switches from edge cases into
non-events, and the tests pin both of them.

Priority order, highest first: a dated exception, a vacation period, a
public holiday the shop closes for, the reference week, then closed.
Exceptions are badged by their stated reason rather than by who created
them, so a holiday imported by the sync shows as a holiday in the UI.

The search for the next opening is bounded to fourteen days. A shop that
is closed forever must not make the server spin; past the horizon the
screen simply says nothing about reopening. Both the never-open week and
the beyond-the-horizon reopening are covered.

"Soon" is strictly under thirty minutes, so a change exactly half an
hour away still reads as plain OPEN or CLOSED.

55 tests; lib/schedule sits at 97% statements and 93% branches against
an 85% floor. The thresholds were verified to actually fail the build
before being committed.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_012cSY9pVhZmJUKNN7wf1Myd
2026-09-20 17:38:01 +02:00