Commit Graph

2 Commits

Author SHA1 Message Date
Indiana
12e2d36527 refactor: extract the shared rolling-baseline core
BleFieldCore and MagFieldCore had converged on the same class: same
time-aware EMA, same warm-up gate, same "deviation past a threshold is an
event" shape, differing only in constants and field names. Three copies of
the alpha derivation existed across the sensor libs.

lib/baseline.ts now owns it. Both wrappers keep their own public types
(`.rssi`, `.magnitude`) so nothing downstream changed — which is what let
all 26 existing tests pass completely unmodified against the refactor.
That was the point of doing it this way: if the tests had needed editing,
the refactor would have been changing behaviour rather than removing
duplication.

coldSpot.ts deliberately does NOT adopt this. It threads immutable state
through pure functions so a whole session's narrative can be replayed in a
test without a clock — a different and equally valid shape. Collapsing the
two would force one into a style that doesn't fit it, which is how
deduplication turns into damage.

355 frontend tests pass unchanged; i18n parity gate passes.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-07-28 13:36:24 +00:00
Indiana
30694a954a feat: bluetooth and magnetometer channels — two more real instruments
Both measure genuine physics rather than dressing up a random number.

Bluetooth (lib/bluetooth.ts): BLE advertises in the 2.4GHz ISM band, and
the human body is mostly water, which absorbs 2.4GHz strongly — the same
physics that makes a microwave work and that degrades your wifi when
someone stands between you and the router. So RSSI genuinely drops when a
body crosses the path. That makes signal-strength variance a real,
physically-grounded movement signal. The module reports exactly that and
nothing more: it never claims a drop *is* a presence, only that the field
changed. Threshold is 6dB — above the 2-4dB of idle multipath wander, and
inside the 3-10dB a real body actually causes.

Magnetometer (lib/magnetometer.ts): the existing EMF mode infers field
disturbance from DeviceMotion/DeviceOrientation, which is a real
measurement but measures *movement*, not magnetism — a phone sitting still
beside a running motor reads nothing. This reads the actual magnetometer,
so the EMF meter measures what an EMF meter is supposed to. Real
ghost-hunting EMF meters are just magnetometers, and the spikes they pick
up come from mains wiring, motors and moving ferrous mass — all of which
this picks up, for the same real reasons. 3uT threshold clears the ~0.5-1uT
sensor noise while still catching household sources. Earth's constant
25-65uT background is explicitly what the rolling baseline exists to
subtract.

Both are additive: neither replaces the existing motion-based EMF, which
stays the fallback because it works on iOS where neither of these do
(no Web Bluetooth, no Generic Sensor API in any iOS browser). Both reuse
the time-aware EMA baseline shape from coldSpot.ts, since advertisement
and sensor intervals are irregular and a fixed per-sample alpha would
weight a burst and a long gap identically.

Web Bluetooth types are declared locally rather than pulling in
@types/web-bluetooth for three shapes — same approach lib/emf.ts already
takes with its non-standard sensor types.

Also renders unprompted 'manifest' utterances as an intrusion: violet edge,
full opacity (unlike the faded ambient/fragment murmurs), and a brief
blur-in. The unsettling part is that it is perfectly clear and completely
unbidden.

355 frontend tests pass (26 new); i18n parity gate passes.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-07-28 03:46:48 +00:00