Release v0.29.0 — offset detector + false_trigger_reason + BlastMate serials (0.27.0→0.29.0) #36
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@@ -4,7 +4,76 @@ All notable changes to seismo-relay are documented here.
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---
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## [Unreleased]
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## v0.29.0 — 2026-09-04
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First release to reach prod since **v0.27.0**, so it ships **both** the
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`false_trigger_reason` column below *and* the v0.28.0 offset (DC-baseline)
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detector: v0.28.0 was version-bumped in-tree (`TOOL_VERSION`, CHANGELOG) but
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never tagged or deployed, so 0.29.0 is the first build to carry either to prod.
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Pairs with Terra-View ≥ 0.24.0. The `false_trigger_reason` column auto-migrates
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on startup; the offset detector still needs the shape backfill on the prod store
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(`scripts/backfill_event_shape.py`) to populate `shape_offset*` on existing rows.
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### Added
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- **`events.false_trigger_reason` — optional FT cause.** A nullable `TEXT`
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column recording *why* an event is a false trigger (e.g. `"offset"`), as a
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subtype of the FT flag: setting a reason via the sidecar review PATCH implies
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`false_trigger=1`, and the reason is cleared whenever FT ends up 0
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(confirm-real, clear-FT, `set_false_trigger(false)`). `propagate_review_to_twins`
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carries the reason to the histogram/waveform twin alongside the flag.
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Auto-migrated (`_SCHEMA` + `_migrate` ADD COLUMN — not the Migration-1
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rebuild); exposed via `/db/events`. Terra-View surfaces it as a manual
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"Flag as offset" action + an `FT · offset` badge.
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### Fixed
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- **BlastMate serials — the family prefix is read from the file, not guessed.**
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The Blastware filename encodes only the serial *number* (`L895…` → 10895);
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the two-letter prefix is not in it. `waveform_store` synthesised `"BE"`, so
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an imported **BlastMate** (serials `BA…`) was filed under a MiniMate Plus
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serial that does not exist — silently, and Terra-View read it straight
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through. `save_imported_bw` now resolves serial as hint → file body →
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filename guess, via a new `_serial_from_bw_bytes` that accepts a candidate
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only when its numeric part matches the filename. `client._decode_0a_partial_header`
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likewise matched a literal `b"BE"` in monitor-log partial records; on a
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BlastMate that returned −1 and skipped the whole block, losing the **geo
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threshold** along with the serial. It now matches any two-letter prefix and
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requires the NUL terminator — stricter than the search it replaces.
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BlastMate is the MiniMate Plus's larger Series III sibling and its files are
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byte-compatible: all 1,493 in the DL2 archive decode through the existing
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codec at 100%, same four channels. **The serial string was the only thing
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blocking BlastMate support in SFM.** Four archive units were affected —
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BA9229, BA10060, BA10895, BA15957.
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**No backfill and no `TOOL_VERSION` bump**: this changes which serial an
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*import* is filed under, not any decoded value, so existing sidecars and
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`.h5` files are untouched. **No migration either** — prod holds no BlastMate
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events (the archive's BA units last recorded 2018-10 through 2023-11; the
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prod backfill reaches back only to ~May 2025).
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---
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## v0.28.0 — 2026-09-02
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**Offset (DC-baseline) false-trigger detector.** Productionizes the validated
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pre-trigger detector: a geophone event whose baseline sits off zero and stays
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flat across the record (sensor bumped / settled / drifted) is now flagged and
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surfaced in Terra-View as an `offset` false-trigger reason — catching offsets the
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crest/near-peak spike rule misses (an offset is low-crest and flat).
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### Added
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- `shape_metrics.offset_from_samples` / `offset_from_h5`: per geophone channel,
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`|median(pre-trigger)| ≥ 0.025 in/s` AND `pre/mid/end spread ≤ 0.02` → offset;
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the consistency test rejects transients (a real event moves one third). Reads
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the `.h5` samples + the `pretrig_samples` attr, range-aware via the in/s float
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samples. Constants `OFFSET_FLOOR` / `OFFSET_MAX_SPREAD` are tunable.
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- `events.shape_offset` / `shape_offset_axis` / `shape_offset_pre` /
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`shape_offset_spread` columns (auto-migrated: `_SCHEMA` + the `_migrate`
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ADD COLUMN loop), computed at all three ingest paths and by
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`backfill_event_shape.py`, exposed via `/db/events`.
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Requires the shape/offset backfill on the prod store to populate existing events:
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`python scripts/backfill_event_shape.py --db-path … --store-root …`.
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---
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@@ -2,7 +2,7 @@
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Ground-up Python replacement for **Blastware**, Instantel's Windows-only software for
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managing MiniMate Plus seismographs. Connects over direct RS-232 or cellular modem
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(Sierra Wireless RV50 / RV55). Current version: **v0.27.0**.
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(Sierra Wireless RV50 / RV55). Current version: **v0.29.0**.
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Stack-level context — which repo owns what, and how the three project versions
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pair — lives in `../terra-view/docs/tmi-stack.md`, which is also loaded as
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@@ -1,4 +1,4 @@
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# seismo-relay `v0.27.0`
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# seismo-relay `v0.29.0`
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A ground-up replacement for **Blastware** — Instantel's aging Windows-only
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software for managing seismographs. Supports both the **MiniMate Plus
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@@ -58,6 +58,14 @@ Companion material:
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sensor-check failures. Do not try to use it as a screen.
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- **Cause is still unsettled.** Instantel's autozero fixes the minority of
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cases; the rest are hardware. We cannot yet tell which is which remotely.
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- **The histogram corpus (63,535 files, 9.7x the waveforms) is now scanned too** —
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see §8b. It independently confirms BE18438 and BE9558 with a clean 2.5x
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separation, but detects only **2 of the 5** confirmed units, cannot attribute a
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channel, and resolves time to ~a month. **A negative histogram result is not
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evidence of health** — DC leakage into the interval peak varies 45x between units.
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- **`offset_scan3.py` has a label defect** (§8b): its spread gate discards 18.8% of
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high-|pre| rows onto units currently counted as clean. Re-cut before quoting any
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precision number again.
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- **Best open lead:** `SUB 0x0E` (channel sensor data, 8 channels × 10 bytes,
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unimplemented) may carry the very numbers Instantel says to check against
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**2027–2069**. Untested.
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@@ -146,8 +154,8 @@ is the discriminator — and it is what the field experience predicts.
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| runs of >=3 consecutive | — | 29 |
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| runs of 1-2 events (noise) | — | 69 |
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Units with a sustained pedestal: **BE9558, BE10895, BE11007, BE11529, BE12599,
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BE13117, BE18003, BE18438**. BE10895 and BE18003 were invisible to v1.
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Units with a sustained pedestal: **BE9558, BA10895, BE11007, BE11529, BE12599,
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BE13117, BE18003, BE18438**. BA10895 and BE18003 were invisible to v1.
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**The affected channel is most often Vert**, which v1 got wrong — it named
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whichever axis had the largest peak. BE13117 and BE18438 are both Vert faults.
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@@ -218,7 +226,7 @@ signal from a tuned one:
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**BE9558, BE11529, BE12599, BE13117, BE18438.**
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Unchanged across a 2x threshold range. BE11007 and BE10895 drop out — the
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Unchanged across a 2x threshold range. BE11007 and BA10895 drop out — the
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spread test identifies them as transients, not pedestals.
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The 11% headline happens to match v1's, but the reasoning and the unit list
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@@ -495,6 +503,459 @@ doubled two reported figures before it was caught.
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---
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## 8b. The histogram corpus — the other 90% of the archive (2026-09-04)
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Every result above §8 comes from **waveform** files. `offset_scan3.py` filters on
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`\.[A-Za-z0-9]{2}0[Ww]$`, so the corpus it scanned is 6,577 unique binaries. The
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archive also holds **63,535 unique histograms** — 9.7x more files — which the
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pre-trigger method cannot touch, because a histogram carries no samples: only a
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per-interval, per-channel peak and half-period.
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`scratch/offset_hist_scan.py` scans them. **63,505 of 63,535 decoded (99.95%),
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43 units, 77.9M intervals.** Two of the 45 units have no histograms at all.
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Output: `/home/serversdown/dl2-archive/offset_hist.csv` (190,515 channel-rows).
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### The premise, and how far it actually holds
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A histogram file is hours of continuous monitoring, so most of its intervals are
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definitionally quiet, and a channel parked off zero cannot report a peak below
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its own displacement. The signal is real — two within-unit contrasts, siblings
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unmoved in both:
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| unit | channel | in-episode floor | outside | waveform \|pre\| same window |
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|---|---|---|---|---|
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| BE18438 | Vert | 0.0350 | 0.0050 | +0.18 .. +0.37 |
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| BE12599 | Tran | 0.0250 | 0.0050 | +0.03 .. +0.49 |
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But the **leakage from a waveform pedestal into the histogram floor is bimodal,
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not merely partial**: measured ratio ~0.9 on BE18438 Vert, ~0.7 on BE9558,
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**~0.02 on BE12599** — two orders of magnitude on one instrument. The device
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evidently measures each interval peak against a running baseline, and how much
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DC survives that varies per unit. **Consequence: a negative histogram result
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carries almost no information.** Do not read "clean in the histograms" as clean.
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### The detector that survived
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dmin(file, ch) = min[ch] - min over the other two geo channels, SAME file
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gates (both hard): n_intervals >= 60 AND mic_p5 <= 5 raw counts
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day statistic: median of dmin over that day's qualifying files
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flag day at dmin >= 0.020 in/s (4 A/D counts)
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episode at >= 3 CONSECUTIVE observed days
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**Result: BE18438|Vert, BE9558|Tran, BE9558|Long.** Threshold-insensitive —
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the journal's own test for a real signal against a tuned one — and this is the
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first operating point in the investigation that passes it cleanly. The identical
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answer holds across: statistic `min` or `p5`; length gate 10/30/60/120/300; mic
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gate 3/5/8/10; threshold 0.015–0.035 (a 2.3x span); persistence K = 2,3,4,5,7.
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Separation, ranked by highest floor sustained over 3 consecutive gated days
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across all 135 unit-channels:
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| unit-channel | best3 |
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|---|---|
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| BE18438 Vert | 0.1650 |
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| BE9558 Long | 0.0350 |
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| BE9558 Tran | 0.0250 |
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| *(2.5x gap)* | |
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| BE7145 Tran | 0.0100 |
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| entire rest of fleet | <= 0.0050 (one quantisation count) |
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Day-level false alarm: **37 of 99,432 gated unit-channel-days = 0.037%.**
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### What it does NOT do — read this before trusting it
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- **It finds 2 of the 5 confirmed units, not 5.** The site-quiet gate is what
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makes it work and it is also what costs BE11529 and BE12599. BE11529's
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four-day single-axis ramp (Tran 0.025 -> 0.055, both siblings pinned at 0.005)
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is the most offset-shaped thing in the corpus outside the two detections, and
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the gate discards it.
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- **The positive class is two units.** Every threshold here is fitted to
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BE18438 and BE9558, which contribute 22 of the 37 flagged days in the entire
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corpus. No cross-validation is possible at n=2.
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- **Per-channel attribution is NOT established.** Rotating the three geo channel
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labels within each file — preserving every value, file and day, destroying
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only channel identity — reproduces the episode *count* with p = 0.769 and the
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label agreement at p = 0.038–0.077. Report a **unit and a window**; do not
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name a geophone axis on the strength of this detector alone.
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- **Timing resolution is ~1 month, not ~1 day.** A 30-day label shift still
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scores 2 of 9 episode hits; the signal dies only past ~60 days. The day-level
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series look far crisper than they are.
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- **Ground truth here is a sibling detector, not a service record.** Agreement
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between the two corpora is corroboration of a shared method. Nothing in this
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section has been checked against an actual repair, calibration or RMA.
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### Dead ends — keep these dead
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- **Absolute floor (min / p1 / p5 / p10 / p25, thresholded alone) — RETIRED.**
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Not fleet-comparable and mostly not about the channel. Scoring each cell using
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*only the other two channels* — a statistic containing zero information about
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the suspect channel — reaches AUC 0.746 against the same labels, versus 0.872
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for the absolute floor itself. **66% of its apparent discrimination is "that
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day was noisy at that site."** Interval size alone moves its p99 7x (0.0350 at
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1 min vs 0.0050 at 2 s). And of all files with any channel above 0.025, 56.5%
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have **all three** channels above it — common-mode, i.e. the wrong physics.
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- **Zero-fraction — STRUCTURALLY IMPOSSIBLE, not merely weak.** The device never
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reports a zero histogram interval peak. The value is a max over hundreds of
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samples of a channel that always carries at least 1 count of noise, so it is
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clamped at 1 A/D count (0.005 in/s). There is no zero to count.
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- **Interval size, sample rate, geo range, firmware — refuted as confounds for
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the differential.** All four are *file-level scalars*: they move all three geo
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channels together, so they cannot produce a single-channel lift and the
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within-file differential is immune to them by construction. Geo range is
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identical across the three geo channels in **63,535 of 63,535** binaries.
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(Interval size remains fatal to the *absolute*-floor version, above.)
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### Two findings that are independent of the histogram detector
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**1. `offset_scan3.py`'s `spread <= 0.02` gate is discarding real signal.**
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It rejects **113 of the 600 channel-rows with |pre| >= 0.025 (18.8%)**, and the
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rejections are not random — 92 of them fall across 41 unit-channels currently
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labelled NEGATIVE. Four would become sustained positives under an
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amplitude-only >=3-consecutive rule: **BE12599|Long (run of 8), BE18003|Vert
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(4), BA10895|Vert (3), BE12844|Tran (3).** Until this is re-cut, the fleet label
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is **three-state — POSITIVE / NEGATIVE / SPREAD-REJECTED(unknown)** — and the
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third state should be excluded from both TP and FP counts rather than silently
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scored as healthy. Every precision figure computed against the two-state label,
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in this section and in §3, is affected.
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**2. The waveform corpus sees ~7% of the days a unit was deployed.** 2,627
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(unit, day) observations against the histogram corpus's 35,105 — 13.4x — with a
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per-unit median ratio of 0.070. BE12599, a confirmed unit, is waveform-observed
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on 39 of its 1,666 histogram-observed days (**2.3%**). Any statement of the form
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"the fault was absent before date X" that rests on waveform coverage alone is
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much weaker than its event count suggests.
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### BA10895 — reclassified (see also §4)
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Previously dismissed as a transient. The histogram record shows its **Vert**
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quiet-minute floor at 0.005 on 62/62 qualifying files from 2023-07-07, then
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0.010–0.015 on 48/58 files from 2023-08-03 to 08-27, while Tran moves on 2/58
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and Long on 9/58 and the site mic floor never leaves 1–3 counts. Independently,
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**42 of its 85 waveform events (49.4%) are single-axis-dominant** — one geo peak
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>= 10x both siblings and >= 0.05 in/s — the **highest rate in the 45-unit
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fleet** (BE13117 36.1%, BE18438 29.4%), and **100% of it on Vert**. Vert
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excursions of 0.1–1.5 in/s with Tran/Long at 0.005–0.035 are not ground motion.
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This is a genuine Vert-channel hardware fault, but **not the classic pedestal** —
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the differential is only one A/D count. Caveat: its entire histogram record is a
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single 52-day deployment ending 2023-08-27, so nothing says whether it
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persisted, was serviced, or resolved.
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The other six marginal units — BE11007, BE17354, BE18004, BE18104, BE9557,
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BE18003 — are **clean**. All seven cap at +0.005 to +0.007 (one A/D count)
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lifetime under the quiet-site gate, against +0.175 for BE18438 Vert and +0.062
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for BE9558 Long. Three individual waveform flags fall in windows with **zero**
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histogram coverage and are NO-DATA, not clean: BE18004|Tran 2024-10-16,
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BE9557|Tran 2021-06-28, BE9557|Vert 2025-06-12.
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### Still open in this section
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- **The 11 thin-coverage units were not screened** (BE10202, BE11462, BE13779,
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BE15760, BA15957, BE16754, BE16758, BE8081, BE8626, BA9229, BE9887 — each
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under 20 waveform events, several with hundreds of histograms). This is the
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population most likely to hold a previously unknown offset, and it is the one
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slice of the plan that did not run. BE11462 was incidentally scored clean by
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the full-archive pass; BE10202 has no histogram files at all.
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- **No completeness audit was run** over the above.
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- Re-cutting the ground truth three-state (finding 1) and re-scoring everything
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against it.
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---
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## 8c. Mechanism — five hypotheses tested, all dead (2026-09-06)
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**The mechanism is still unknown.** Five campaigns, ~105 effectively independent
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tests, seven nominally significant results against **5.2 expected by chance**
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under a global null. Every one died to its own confound analysis. What the
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campaign bought is a set of *shape constraints* and a long list of dead ends.
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### ⚠ Two things retracted from this journal
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**1. "Polarity is perfectly consistent — 11 of 11, zero mixed cases."** That is
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a **tautology of the spread gate**, not a property of the fault. `spread <= 0.02`
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requires pre/mid/end to agree, which forces one sign. Amplitude-only at the same
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0.025 threshold: **12 of 53 unit-channels are mixed**, including BE18438|Vert
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(88+/1−) and BE9558|Vert (1+/35−). Withdrawn.
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**2. "5 of 45 units, unchanged across a 2x threshold range."** The
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threshold-insensitivity is also a property of the gate. Amplitude-only gives
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**9 units at 0.020, 8 at 0.025** (adding BA10895, BE12844, BE18003), 5 at 0.040.
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The fleet is **8–9 units, not 5**.
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**3. "Persistent — it stays until the geophone is serviced."** Weakened, not
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withdrawn. There are **23 recoveries after runs of >=3 flagged events, median
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gap 6.03 days**, three inside ten minutes. BE18438|Vert reads `pre=mid=end=
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+0.0000` on 2026-02-10, +0.185→+0.370 across 02-25/26, and `+0.0000` again on
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2026-03-22 — identical Project, Seis Loc, calibration date, geo range and
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trigger throughout. The one thing that cannot be excluded is a **field
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autozero**: it is a button sequence at the unit and writes nothing into the
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event header. So "persistent" may be "persistent unless somebody pressed the
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buttons," and the archive cannot tell those apart.
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### The one positive finding: onset is a RAMP, minutes to hours
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Both onsets resolvable at minute cadence are ramps. **BE18438|Vert,
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2026-02-20** — the histogram corpus collapses a 14 d 21 h waveform bracket to
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**one minute**:
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```
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~14,200 consecutive quiet minutes at 0.000–0.005 (ten full daily files)
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09:32 +0.005 09:39 +0.045 10:20 +0.125 16:00 +0.165
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09:33 +0.010 09:42 +0.070 13:13 +0.150 20:17 +0.185 plateau
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```
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**50% of the excursion in 7 minutes**, the rest asymptotic over ~10 h, **>=25
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distinct one-minute intermediates**. Validated **75/75** against Blastware's own
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ASCII export. Its 2025-11-15 onset is the same shape over 2.7 h. BE13117 stage B
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is a 91-minute monotone rise, +0.035 → +1.745 in/s over ~40 samples.
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**This kills both poles of the original dichotomy** (journal Q1): not an
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instantaneous latched step (a bad autozero, a stuck trim-DAC), and not slow
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component degradation over days or weeks.
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⚠ It rests on **2 of 45 instruments**. Clopper-Pearson on 4/4 resolved onsets
|
||||
gives 95% CI [0.40, 1.00] — a mixed population with up to 60% true steps is not
|
||||
excluded. BE13117 has zero paired ASCII, so its ramp rests on our decoder alone.
|
||||
|
||||
### The methodological corollary — more important than the finding
|
||||
|
||||
**A waveform-only bracket manufactures the appearance of a step, and the spread
|
||||
gate is blind to onsets by construction.**
|
||||
|
||||
The offset is what fires the trigger, so no waveform event can exist until the
|
||||
ramp has nearly reached the trigger level. BE18438's first event of each episode
|
||||
sits at 0.280 against a 0.300 trigger, and 0.185 against 0.200. At daily cadence
|
||||
against a 3 h ramp, P(catching an intermediate) = **0.125**.
|
||||
|
||||
And `spread <= 0.02` rejects any record in which the floor is *moving* — which
|
||||
is exactly what an onset is. **The gate rejected the very BE18438 record where
|
||||
the ramp is visible.** If the operational goal is catching a fault early, before
|
||||
the unit floods the store with junk events, the current detector is the wrong
|
||||
shape for the job.
|
||||
|
||||
### The surviving shape
|
||||
|
||||
An **electrical, reversible, two-time-constant settling process** (~10 min and
|
||||
~hours), saturating at a ceiling, with occasional sub-3-minute discrete jumps
|
||||
superposed (BE18438 2026-02-26: 13:24 pre +0.180 / mid +0.240 / end +0.255 →
|
||||
13:27 +0.325, identical metadata). That is the signature of a **bias or leakage
|
||||
path charging a high-impedance node** — the class of fault Instantel's autozero
|
||||
recovers ~10% of the time, and what the X1/X8 gains measure.
|
||||
|
||||
**It is a shape constraint, not a mechanism. Do not write it up as one.**
|
||||
|
||||
### Dead — with the evidence, so none of this is re-derived
|
||||
|
||||
| Killed | Evidence |
|
||||
|---|---|
|
||||
| **Latched step at onset** | >=25 one-minute intermediates over ~10 h, ASCII-validated. Direct observation, not a test. |
|
||||
| **Slow degradation over days/weeks** | Same observation — bulk of the excursion in 7 min to 2.7 h. |
|
||||
| **Thermal driving of pedestal magnitude** | BE13117, 365-count pedestal, n=128: full-day modulation **−0.42% ± 0.42%**, 95% CI [−1.25%, +0.40%]. Healthy-fleet seasonal zero drift totals **~0.3 A/D counts** — 15x to 1200x too small. Best-powered result in the campaign. |
|
||||
| **Ground-motion shock** | 30-day window-max percentile ranks 0.03/0.98/0.15/0.01/0.68/0.24, median **0.194** against a null of 0.5. **0 of 7 events >=9 in/s** was followed by an onset within 30 d. BE12599 hit 10.220 in/s (2023-11) and 10.005 (2025-04) and did not onset until 2026-08-14. |
|
||||
| **Handling / redeployment** | **0 of 9** onsets had a Project/Client/Seis Loc change. Widened to 30 d: 2 observed vs 4.90 expected, P(X>=2)=0.995 — *depleted*, the wrong direction. The apparent gap effect (p=0.035) died on histogram coverage: BE18438's "59.7-day gap" contains 122 histogram files; true silence 0.52 d. |
|
||||
| **Mechanical resonance / damping change** | BE18438|Vert at a 64-count pedestal (3x outside Instantel's ±21): ΔTest-Freq **CI [−0.090, +0.021]** against 0.127 Hz for a real calibration. Block permutation p=0.658. |
|
||||
| **Accumulated-duty threshold** | ~4 clean units logged more monitoring than the largest positive onset dose; BE18193 logged **13.45M intervals, 6.2x**. A counterexample — no power argument weakens it. |
|
||||
| **Firmware** | **14,338 of 14,340** exports read `V 10.72-8.17`. A constant cannot explain a variable. |
|
||||
| **Unit age** | Serial rank-sum 118.0 vs null 115.0, p=0.549; unchanged on the 8-unit re-cut (p=0.586). Serial is a poor age proxy anyway (Spearman +0.113 against archive entry). |
|
||||
| **Strong seasonal clustering** | 25 onsets, exposure-weighted permutation **p=0.59**. Excludes >=75%-in-one-season only; a 2x seasonal hazard is *not* excluded. |
|
||||
|
||||
Also retire two overstated bounds. H6's dose-response exclusion "|r| > 0.03" is
|
||||
a **10x overstatement** once clustering is corrected — the honest bound is
|
||||
|r| > 0.1–0.3, so a real r=0.2 is not excluded. And **any statistic quoted
|
||||
per-event**: 512 flagged channel-events collapse to **4.9 effective independent
|
||||
observations** (unequal-cluster design effect 104.6 at ICC=1), and **55% of the
|
||||
flagged corpus is one instrument on two calendar days** (BE13117, 2023-05-03/04).
|
||||
|
||||
### Power — read every negative in this section as bounded
|
||||
|
||||
Fisher exact, 5 positives of 45, one-sided α=0.05, exposure a third of the fleet:
|
||||
|
||||
| relative risk | power |
|
||||
|---|---|
|
||||
| 1.5 | 0.059 |
|
||||
| 2 | 0.112 |
|
||||
| 3 | 0.231 |
|
||||
| 6 | 0.497 |
|
||||
| 15 | 0.753 |
|
||||
|
||||
80% power needs **RR ≈ 13–20**. Even a *perfect* split reaches p<0.05 only if
|
||||
the exposed group is <=25 of 45 units. **This archive can detect only
|
||||
near-deterministic unit-level causes.** Every negative above excludes a strong
|
||||
effect, not a real one.
|
||||
|
||||
### What this archive can NEVER answer
|
||||
|
||||
- **The A/D zero and the X1/X8 gains.** The 2027–2069 numbers appear in no file,
|
||||
header or decoded record. They exist only on a live device behind `SUB 0x0E`.
|
||||
Q1 is structurally unanswerable from data.
|
||||
- **Unit-level vs component-level cause.** **Zero of 14,340** exports carry a
|
||||
geophone or sensor serial. Q4 is dead — there is no way to know whether the
|
||||
same physical geophone came back after service.
|
||||
- **Service history.** The only service-adjacent field is `Calibration: <date>`
|
||||
— 30 distinct dates fleet-wide, none before 2023, ASCII corpus entirely
|
||||
2025–26. BE9558's 2020 and BE13117's 2023 episodes have no calibration record.
|
||||
- **Temperature.** Zero exports carry it. Battery Level is a verified coarse
|
||||
thermometer (+0.204 V winter over summer, 20/20 unit-years, p=9.5e−7, matching
|
||||
lead-acid tempco) but quantised at 0.1 V ≈ 10 °C — useless within a day. The
|
||||
archive can *bound* thermal; it can never *test* it.
|
||||
- **BE13117 specifically** — 55% of the flagged corpus, the largest pedestal at
|
||||
1.92 in/s, **zero** ASCII exports, histogram record ending eight months before
|
||||
its episode. The most informative case in the archive is permanently outside
|
||||
every metadata test.
|
||||
- **The mild-offset rate**, and therefore the base rate's denominator. Event
|
||||
files only see offsets large enough to dominate the trace.
|
||||
|
||||
### The experiment to run — `SUB 0x0E`, one afternoon
|
||||
|
||||
Point Blastware at `bridges/ach_mitm.py` and run **Unit Channel Test** against
|
||||
(1) a faulting unit, (2) a known-good control, (3) the same unit before and
|
||||
after an autozero. BW's sequence is `0x0E x8 → 0x98 x2 → 0x0E x8`, the second
|
||||
pass carrying live ADC. Eight 10-byte payloads with expected values near 2048 is
|
||||
a very constrained puzzle.
|
||||
|
||||
- **Proves:** whether the X1/X8 gains are readable over the wire, and whether
|
||||
the fault sits at or upstream of the ADC zero reference. Gains walk out of
|
||||
2027–2069 with the pedestal → the fault *is* the zero reference, Q1 answered.
|
||||
Gains hold while the trace moves → the fault is downstream, look at the front
|
||||
end.
|
||||
- **§8c hands it a falsifiable time course:** poll at ~1-minute cadence and the
|
||||
numbers should **ramp over minutes-to-hours, not step**. If they step while
|
||||
the trace ramps, the two are decoupled.
|
||||
- **Payoff:** converts the 10%/90% ship-it-or-not gamble into a decision made
|
||||
before packing a box, remotely, for the whole fleet.
|
||||
- ⚠ In the MITM topology filenames are reversed — `raw_s3_*.bin` holds
|
||||
Blastware's bytes.
|
||||
|
||||
**Second: swap the geophone** between a faulted base and a healthy one. Fault
|
||||
follows the sensor → element or cable. Fault stays with the base → front-end
|
||||
board. One afternoon, zero code, and it settles the one question the archive is
|
||||
permanently blind to.
|
||||
|
||||
**Third: log a faulting unit for 72 h untouched.** Every recovery we have is
|
||||
confounded by a possible field autozero. A shelf and a logger settles whether
|
||||
the fault genuinely self-reverses.
|
||||
|
||||
**Fourth, free: re-cut the fleet label** — drop the spread gate, re-score
|
||||
amplitude-only, screen the 11 unscreened thin-coverage units. Might reach 9–10
|
||||
positives. Be honest about the gain: power against "older half carries 3x the
|
||||
hazard" rises only 0.23 → 0.30.
|
||||
|
||||
**Highest-value item overall, and not an experiment: the RMA/repair records.**
|
||||
Which unit went back, when, what was done (autozero vs geophone replaced vs
|
||||
board), and the geophone serial fitted. "Same channel after a documented
|
||||
geophone *replacement*" is component-level-negative in one observation.
|
||||
|
||||
---
|
||||
|
||||
### 8d. The non-motion test — Brian's "it doesn't cross zero" (2026-09-07)
|
||||
|
||||
Looking at BE12599's 2026-08-09 event, Brian noted it reports no ZC frequency
|
||||
**because the trace never crosses zero**. That observation is the best detector
|
||||
in this investigation, and it comes from physics rather than a threshold.
|
||||
|
||||
A geophone is a velocity sensor with no DC response, so its output over a record
|
||||
must integrate to ~zero — the ground does not relocate. Real motion therefore
|
||||
sits roughly half below zero. Anything electrical is one-sided.
|
||||
|
||||
mp = |mean| / peak ~0 for motion, ~1 for a fault
|
||||
frac_neg = share of samples < 0
|
||||
|
||||
`scratch/nonmotion_scan.py`, all 6,577 waveforms, 19,731 channel-rows.
|
||||
Restricted to peak >= 0.05 in/s (n = 12,068), the distribution is **bimodal
|
||||
with an empty middle**:
|
||||
|
||||
| mp band | channel-events |
|
||||
|---|---|
|
||||
| 0.0–0.1 | 11,384 |
|
||||
| 0.1–0.2 | 293 |
|
||||
| **0.15–0.85 (dead zone)** | **131 = 1.09%** |
|
||||
| 0.9–1.0 | 278 |
|
||||
|
||||
At `mp >= 0.8` with >=3 events it returns **exactly the five confirmed units** —
|
||||
BE9558, BE11529, BE12599, BE13117, BE18438 — stable from 0.5 to 0.9. Two
|
||||
detectors on entirely different principles agreeing on the unit list is the
|
||||
strongest corroboration that list has.
|
||||
|
||||
**BE11007 is settled: NOT an offset.** It reaches mp 0.75–0.89, but with
|
||||
`frac_neg = 0.99` at peaks of **7.4–9.4 in/s** — parked *negative* during a
|
||||
near-full-scale blast. §4's guess was right. `mp` alone cannot separate a
|
||||
pedestal from a large one-sided blast; pair it with a peak ceiling or with
|
||||
sign-consistency across events.
|
||||
|
||||
⚠ **Not a rediscovery of the retracted v1 detector.** v1 scored only the
|
||||
largest-peak axis and used the mean as a *baseline estimator* where the median
|
||||
was required. Here the mean is the signal itself, per channel — that is what the
|
||||
physics licenses.
|
||||
|
||||
**Correction to §8c.** That section says the spread gate is "blind to onsets by
|
||||
construction." Too strong: of 87 BE18438|Vert events at mp >= 0.5 the gate
|
||||
rejected **one** — the transitional record. It does not lose onsets
|
||||
systematically; it loses the transition specifically.
|
||||
|
||||
### 8e. BE12599 — a connector, not a geophone (2026-09-07)
|
||||
|
||||
Waveform shapes across its August episode, measured rather than eyeballed:
|
||||
|
||||
| date | channel | shape |
|
||||
|---|---|---|
|
||||
| Aug 09 05:29 | Long | **unipolar +**, 0/2304 samples below zero, decay tau **26 ms** |
|
||||
| Aug 09 05:35 | Long | unipolar +, 3 spikes at irregular gaps (744, 1032 ms), tau **38 ms** |
|
||||
| Aug 14 05:00 | Long | single lobe, bipolar, tau **118 ms** |
|
||||
| Aug 17–23 | Tran | **flat DC pedestal**, sd/level 0.015–0.020, 0 zero crossings |
|
||||
|
||||
**Unipolar impulses with an RC tail are not mechanical.** Fast rise, exponential
|
||||
decay, one polarity, irregular timing — that is charge dumped into a
|
||||
capacitively-coupled input and draining through the input resistance. The
|
||||
progression 26 ms -> 118 ms -> never recovers, over 14 days, is a leakage path
|
||||
worsening.
|
||||
|
||||
**And the fault moved channels** — Long on Aug 9/14, Tran on Aug 17–23, Long
|
||||
again on Aug 21 (1.065 in/s) while Tran held its pedestal. Vert stayed clean
|
||||
throughout. **A failing geophone element cannot hop channels. A connector can.**
|
||||
|
||||
That single fact explains what had been puzzling:
|
||||
- **The sensor self-check keeps passing** (7.4/7.5/7.6 Hz, ratios 3.6–4.2, all
|
||||
four channels Passed, on the very events where Long throws 0.5 in/s spikes).
|
||||
The swing test drives the element; the element is fine. The fault is in the
|
||||
wiring to it.
|
||||
- **Why Instantel's autozero fixes only ~10%** — it cannot fix a connector.
|
||||
- **Why onset "ramps" over minutes to hours** — contact resistance drifting.
|
||||
|
||||
All seven Aug 17–23 events are stamped **05:00:14**, the same second, and their
|
||||
filename extensions run `8E → WE → KE → 8E → WE → KE → 8E` — the documented
|
||||
3-day cycle for a fixed daily time. Clock-scheduled, not physically triggered:
|
||||
the modem powers up, draws a surge, and a marginal connection responds.
|
||||
|
||||
**Field action: inspect and photograph the geophone connector BEFORE reseating
|
||||
anything** — an intermittent contact clears the moment it is disturbed.
|
||||
|
||||
⚠ Scoped to BE12599. BE18438's onset was a smooth 7-minute ramp with no spikes,
|
||||
which looks like a different failure mode wearing the same signature.
|
||||
|
||||
---
|
||||
|
||||
### ⚠ Serial prefixes — four of these units are BlastMates, not MiniMates
|
||||
|
||||
Corrected 2026-09-06, after Brian queried "BA10895?" against a report that
|
||||
said BE10895. He was right. The BW filename encodes the serial **number
|
||||
only** — `L895` -> 10895 — and every offset scanner synthesised the family
|
||||
prefix as `"BE"`. Four of the 43 archive units are **BA** (BlastMate, the
|
||||
MiniMate Plus's bigger sibling; same Series III, byte-identical data):
|
||||
|
||||
**BA9229, BA10060, BA10895, BA15957.**
|
||||
|
||||
Read off the file bodies, which carry the serial verbatim. No analysis
|
||||
changed — grouping was always on the numeric part, and no unit number maps
|
||||
to two serials — but every earlier reference to "BE10895" and the other
|
||||
three is a label error and has been corrected throughout this document.
|
||||
|
||||
The same assumption was live in two production sites and is fixed
|
||||
(`sfm/waveform_store.py`, `minimateplus/client.py`): the store would have
|
||||
filed a BlastMate under a unit that does not exist, and the monitor-log
|
||||
decoder lost the geo threshold along with the serial. See commit `9ceff65`.
|
||||
|
||||
---
|
||||
|
||||
## 9. Chronology
|
||||
|
||||
| date | event |
|
||||
@@ -512,3 +973,15 @@ doubled two reported figures before it was caught.
|
||||
| 2026-08-28 | Bimodality established; sensor check proven **blind** to offsets; `SUB 0x0E` identified as the best open lead. |
|
||||
| 2026-08-28 | **v1 detector retracted.** Brian challenged the "come and go" finding against field experience. Two flaws found: dominant-axis-only scoring and mean-instead-of-median. Corrected detector shows persistent pedestals on **8 of 45 units**, and the gaps are service windows. |
|
||||
| 2026-08-28 | **Detector v3 (Brian's method):** pre-trigger floor + pre/mid/end consistency. Healthy channels proven to sit at 0.000 +/-1 unit (94.5%), confirming no decoder zero-point bias. Final: **5 of 45 units (11%)**, threshold-insensitive. |
|
||||
| 2026-09-04 | **Histogram corpus scanned** — 63,505 of 63,535 files, 43 units, 77.9M intervals (9.7x the waveform corpus). `scratch/offset_hist_scan.py`. |
|
||||
| 2026-09-04 | Absolute-floor statistic **retired**: 66% of its discrimination is a day/site confound (other-channels-only AUC 0.746 vs 0.872). Zero-fraction shown **structurally impossible** — the device clamps every interval peak at >= 1 count. |
|
||||
| 2026-09-04 | Site-quiet-gated cross-channel differential established: **BE18438 Vert, BE9558 Tran+Long**, threshold-insensitive over a 2.3x span. Finds only **2 of the 5** confirmed units — leakage into the histogram floor is bimodal (0.9 to 0.02), so a negative result carries almost no information. Per-channel attribution **not** established (channel-scramble p = 0.769). |
|
||||
| 2026-09-04 | **BA10895 reclassified** from transient to a genuine Vert fault of a different subtype — 49.4% single-axis-dominant events, the highest in the fleet, 100% on Vert. The other six marginal units are clean. |
|
||||
| 2026-09-04 | **Defect found in `offset_scan3.py`**: its `spread <= 0.02` gate discards 18.8% of rows with \|pre\| >= 0.025, concentrated on 41 negative unit-channels; 4 would be sustained positives without it. The fleet label is three-state, not two. |
|
||||
| 2026-09-06 | **Four units relabelled BA, not BE** — BA9229, BA10060, BA10895, BA15957 are BlastMates. The BW filename carries only the serial number; the family prefix must be read from the file body. Fixed in the scanners and in two production sites. |
|
||||
| 2026-09-06 | **Mechanism campaign — five hypotheses, all dead.** Thermal, ground-motion shock, handling/redeployment, accumulated duty, unit age, firmware and a mechanical element fault are each refuted or bounded. 7 nominally significant results against 5.2 expected by chance. |
|
||||
| 2026-09-06 | **Onset is a RAMP of minutes-to-hours, not a step** — BE18438 Vert resolved to one-minute cadence, 50% of the excursion in 7 min, >=25 intermediates, ASCII-validated 75/75. Kills both a latched digital step AND slow component degradation. Surviving shape: a reversible two-time-constant settling process — a bias/leakage path charging a high-impedance node. |
|
||||
| 2026-09-06 | **Polarity consistency RETRACTED** (a tautology of the spread gate; amplitude-only gives 12 of 53 unit-channels mixed) and the fleet **re-cut to 8–9 units, not 5**. "Persistent until serviced" weakened: 23 recoveries, median gap 6 days — though a field autozero cannot be excluded. |
|
||||
| 2026-09-06 | The spread gate is **blind to onsets by construction** — it rejects a moving floor, which is what an onset is. It rejected the very record in which the ramp is visible. |
|
||||
| 2026-09-07 | **The non-motion test** (Brian: "it doesn't cross zero"). `\|mean\|/peak` is bimodal with a 1.09% dead zone and returns exactly the 5 confirmed units from physics, not a threshold. Independent corroboration of the unit list. **BE11007 settled as NOT an offset** — a one-sided 9 in/s blast. |
|
||||
| 2026-09-07 | **BE12599 is a connector fault, not a geophone fault.** Unipolar spikes with a 26→118 ms RC tail progressing to a flat pedestal, and the fault MOVES between Long and Tran while the sensor self-check passes on every event. An element cannot hop channels; a connector can. Inspect before reseating. |
|
||||
|
||||
@@ -30,6 +30,7 @@ from __future__ import annotations
|
||||
|
||||
import datetime
|
||||
import logging
|
||||
import re
|
||||
import struct
|
||||
from typing import Optional
|
||||
|
||||
@@ -2532,10 +2533,17 @@ def _decode_0a_partial_header(raw_data: bytes, index: int, key4: bytes) -> Optio
|
||||
ts2 = try_ts(raw_data[ts1_end + 1:ts1_end + 1 + ts_size])
|
||||
|
||||
# Extract serial and geo threshold from "BE11529\0" and "Geo: X.XXX in/s\0".
|
||||
#
|
||||
# Match any two-letter family prefix, not a literal "BE" — a BlastMate
|
||||
# reports "BA10895", and the old `find(b"BE")` returned -1 on one. That
|
||||
# skipped this whole block, so the geo threshold went missing along with
|
||||
# the serial. Requiring the NUL terminator in the pattern also makes the
|
||||
# match stricter than the bare two-byte search it replaces.
|
||||
serial: Optional[str] = None
|
||||
geo_ips: Optional[float] = None
|
||||
|
||||
serial_pos = raw_data.find(b"BE")
|
||||
serial_match = re.search(rb"[A-Z]{2}\d{3,6}(?=\x00)", raw_data)
|
||||
serial_pos = serial_match.start() if serial_match else -1
|
||||
if serial_pos >= 0:
|
||||
# Read null-terminated serial starting at serial_pos.
|
||||
null_pos = raw_data.find(b"\x00", serial_pos)
|
||||
|
||||
@@ -50,7 +50,7 @@ SIDECAR_KIND = "sfm.event"
|
||||
# bumped without a `pip install` re-run — leading to confusing stale
|
||||
# version stamps in sidecars. Bump this constant and CHANGELOG.md
|
||||
# together at release time.
|
||||
TOOL_VERSION = "0.27.0"
|
||||
TOOL_VERSION = "0.29.0"
|
||||
|
||||
try:
|
||||
# Best-effort: prefer the installed metadata when it's NEWER than the
|
||||
|
||||
+1
-1
@@ -4,7 +4,7 @@ build-backend = "setuptools.build_meta"
|
||||
|
||||
[project]
|
||||
name = "seismo-relay"
|
||||
version = "0.27.0"
|
||||
version = "0.29.0"
|
||||
description = "Python client and REST server for MiniMate Plus seismographs"
|
||||
requires-python = ">=3.10"
|
||||
dependencies = [
|
||||
|
||||
@@ -0,0 +1,91 @@
|
||||
#!/usr/bin/env python3
|
||||
"""Detect NON-MOTION on a geophone channel: |mean| / peak.
|
||||
|
||||
A geophone is a velocity sensor with no DC response, so its output over a
|
||||
record must integrate to ~zero — the ground does not relocate. Real motion
|
||||
therefore sits roughly half above and half below zero. Anything electrical —
|
||||
a charge-injection spike, a step, a parked pedestal — is one-sided.
|
||||
|
||||
mp = |mean| / peak ~0 for motion, ~1 for a pedestal
|
||||
frac_neg = share of samples < 0 ~0.3-0.5 for motion, ~0 for a fault
|
||||
|
||||
Why this beats the pre-trigger floor (`offset_scan3.py`): that detector's
|
||||
`spread <= 0.02` gate rejects any record whose floor is MOVING, which is
|
||||
exactly what an onset is — it discarded the one BE18438 record in which the
|
||||
ramp was visible. This test is indifferent to whether the fault is a spike,
|
||||
a ramp or a flat pedestal; none of them cross zero.
|
||||
|
||||
⚠ Not a rediscovery of the retracted v1 detector. v1 scored only the
|
||||
largest-peak axis and used the mean as a BASELINE estimator, where the median
|
||||
was required. Here the mean is the signal itself, per channel, and that is
|
||||
what the physics licenses.
|
||||
"""
|
||||
from __future__ import annotations
|
||||
import argparse, csv, re, statistics, sys
|
||||
from concurrent.futures import ProcessPoolExecutor, as_completed
|
||||
from pathlib import Path
|
||||
sys.path.insert(0, str(Path(__file__).resolve().parent.parent))
|
||||
from minimateplus.event_file_io import read_blastware_file
|
||||
|
||||
GEO=("Tran","Vert","Long"); K=10.0/32000.0
|
||||
_WAVE=re.compile(r"\.[A-Za-z0-9]{2}0[Ww]$"); _STEM=re.compile(r"^([B-Z])(\d{3})")
|
||||
_SER=re.compile(rb"[A-Z]{2}\d{3,6}")
|
||||
|
||||
def serial_of(name, path=None):
|
||||
m=_STEM.match(name)
|
||||
if not m: return "?"
|
||||
num=(ord(m.group(1))-ord("B"))*1000+int(m.group(2))
|
||||
if path is not None:
|
||||
try:
|
||||
for s in _SER.findall(Path(path).read_bytes()):
|
||||
s=s.decode()
|
||||
if s[2:].lstrip("0")==str(num): return s
|
||||
except Exception: pass
|
||||
return f"BE{num}"
|
||||
|
||||
def scan(ps):
|
||||
import logging; logging.disable(logging.WARNING)
|
||||
p=Path(ps)
|
||||
try: ev=read_blastware_file(p)
|
||||
except Exception: return None
|
||||
s=ev.raw_samples or {}
|
||||
if not all(s.get(c) for c in GEO): return None
|
||||
ts=ev.timestamp
|
||||
stamp=(f"{ts.year:04d}-{ts.month:02d}-{ts.day:02d}T"
|
||||
f"{ts.hour:02d}:{ts.minute:02d}:{ts.second:02d}") if ts else ""
|
||||
ser=serial_of(p.name,p); out=[]
|
||||
for ch in GEO:
|
||||
a=[x*K for x in s[ch]]
|
||||
pk=max(abs(x) for x in a)
|
||||
if pk<=0: continue
|
||||
out.append({"serial":ser,"timestamp":stamp,"filename":p.name,"channel":ch,
|
||||
"peak":round(pk,4),
|
||||
"mean":round(statistics.fmean(a),4),
|
||||
"mp":round(abs(statistics.fmean(a))/pk,4),
|
||||
"frac_neg":round(sum(1 for x in a if x<0)/len(a),4),
|
||||
"n":len(a)})
|
||||
return out
|
||||
|
||||
COLS=["serial","timestamp","filename","channel","peak","mean","mp","frac_neg","n"]
|
||||
|
||||
def main():
|
||||
ap=argparse.ArgumentParser()
|
||||
ap.add_argument("--dir",required=True); ap.add_argument("--out",required=True)
|
||||
ap.add_argument("--jobs",type=int,default=4)
|
||||
a=ap.parse_args()
|
||||
seen=set(); files=[]
|
||||
for q in sorted(Path(a.dir).rglob("*")):
|
||||
if q.is_file() and _WAVE.search(q.name) and q.name not in seen:
|
||||
seen.add(q.name); files.append(str(q))
|
||||
print(f"unique waveform binaries: {len(files)}",flush=True)
|
||||
rows=[]
|
||||
with ProcessPoolExecutor(max_workers=a.jobs) as ex:
|
||||
for i,f in enumerate(as_completed([ex.submit(scan,p) for p in files]),1):
|
||||
r=f.result()
|
||||
if r: rows.extend(r)
|
||||
if i%1000==0: print(f" {i}/{len(files)}",flush=True)
|
||||
with open(a.out,"w",newline="") as fh:
|
||||
w=csv.DictWriter(fh,fieldnames=COLS); w.writeheader(); w.writerows(rows)
|
||||
print(f"\nwrote {a.out} ({len(rows)} channel-rows)")
|
||||
|
||||
if __name__=="__main__": main()
|
||||
@@ -0,0 +1,234 @@
|
||||
#!/usr/bin/env python3
|
||||
"""Offset detector — HISTOGRAM corpus (the other 90% of the archive).
|
||||
|
||||
`offset_scan3.py` measures the pre-trigger floor in *waveform* samples. That
|
||||
covers 6,577 of the archive's 70,112 unique series-3 files; the remaining
|
||||
63,535 are **histograms**, which carry no samples — only a per-interval,
|
||||
per-channel peak + half-period. So the pre-trigger method cannot run on them.
|
||||
|
||||
The histogram analogue of "the resting floor" is the **low percentile of the
|
||||
per-interval peaks**. A histogram file is typically hours of continuous
|
||||
monitoring, so the great majority of its intervals are definitionally quiet;
|
||||
the bottom of that distribution is what the channel reads when nothing is
|
||||
happening. A healthy channel bottoms out at 0.000-0.005 in/s. A channel
|
||||
parked off zero cannot report a peak below its own displacement, so its floor
|
||||
is pinned up.
|
||||
|
||||
⚠ The DC leakage into the histogram peak is PARTIAL. Measured within-unit
|
||||
against episodes already established from the waveform scan:
|
||||
|
||||
BE18438 Vert in-episode 0.0350 vs 0.0050 outside (waveform pre = +0.18..+0.37)
|
||||
BE12599 Tran in-episode 0.0250 vs 0.0050 outside (waveform pre = +0.03..+0.49)
|
||||
|
||||
so the device's per-interval peak is evidently measured against a running /
|
||||
AC-coupled baseline that removes most, but not all, of the DC. The residual
|
||||
is real and channel-specific, but the margin is ~5 quantisation counts rather
|
||||
than the ~70 the waveform detector enjoys. Do not carry the waveform
|
||||
detector's 0.025 in/s floor across unexamined — calibrate on the CSV.
|
||||
|
||||
Because the absolute floor also moves with site noise (traffic, wind, a
|
||||
generator), the statistic that matters most is the **cross-channel
|
||||
differential**: a channel's floor minus the quietest of the other two geo
|
||||
channels in the same file. Site noise lifts all three together and cancels;
|
||||
a DC offset lifts one.
|
||||
|
||||
This script does not decide anything. It emits every candidate statistic per
|
||||
(file, channel) so thresholds can be calibrated against the waveform-derived
|
||||
ground truth in `offset_v3.csv` rather than guessed.
|
||||
|
||||
Usage:
|
||||
python scratch/offset_hist_scan.py --dir /home/serversdown/dl2-archive/files \
|
||||
--out /home/serversdown/dl2-archive/offset_hist.csv --jobs 4
|
||||
"""
|
||||
from __future__ import annotations
|
||||
|
||||
import argparse
|
||||
import csv
|
||||
import datetime
|
||||
import logging
|
||||
import re
|
||||
import statistics
|
||||
import sys
|
||||
from concurrent.futures import ProcessPoolExecutor, as_completed
|
||||
from pathlib import Path
|
||||
|
||||
sys.path.insert(0, str(Path(__file__).resolve().parent.parent))
|
||||
from minimateplus.event_file_io import read_blastware_file # noqa: E402
|
||||
|
||||
GEO = ("Tran", "Vert", "Long")
|
||||
K = 10.0 / 32000.0 # ADC count -> in/s (see CLAUDE.md: full scale 32000)
|
||||
_HIST = re.compile(r"\.[A-Za-z0-9]{2}0[Hh]$")
|
||||
_STEM = re.compile(r"^([B-Z])(\d{3})")
|
||||
_B36 = "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZ"
|
||||
|
||||
|
||||
_SERIAL_RE = re.compile(rb"\b([A-Z]{2}\d{3,6})\b")
|
||||
|
||||
|
||||
def serial_of(name: str, path=None) -> str:
|
||||
"""Real serial for a BW file.
|
||||
|
||||
The filename encodes only the NUMBER: `<letter><3 digits>` where
|
||||
letter = chr(ord('B') + serial // 1000). The two-letter family prefix
|
||||
("BE", "BA", ...) is **not** in the filename, so it must be read out of
|
||||
the file body. Four units in the DL2 archive are BA, not BE — assuming
|
||||
"BE" mislabels BA9229, BA10060, BA10895 and BA15957.
|
||||
"""
|
||||
m = _STEM.match(name)
|
||||
if not m:
|
||||
return "?"
|
||||
num = (ord(m.group(1)) - ord("B")) * 1000 + int(m.group(2))
|
||||
if path is not None:
|
||||
try:
|
||||
for s in _SERIAL_RE.findall(Path(path).read_bytes()):
|
||||
s = s.decode()
|
||||
if s[2:].lstrip("0") == str(num):
|
||||
return s
|
||||
except Exception:
|
||||
pass
|
||||
return f"BE{num}" # last-resort fallback; prefix unverified
|
||||
|
||||
|
||||
def stem_time(name: str):
|
||||
"""Decode the filename's base-36 timestamp. Epoch 1985-01-01, 1296 s/tick.
|
||||
|
||||
Preferred over the file's own footer timestamp only because it costs
|
||||
nothing; the caller falls back to the decoded event when this fails.
|
||||
"""
|
||||
try:
|
||||
base, ext = name.rsplit(".", 1)
|
||||
n = 0
|
||||
for c in base[4:8].upper():
|
||||
n = n * 36 + _B36.index(c)
|
||||
ab = _B36.index(ext[0].upper()) * 36 + _B36.index(ext[1].upper())
|
||||
return datetime.datetime(1985, 1, 1) + datetime.timedelta(seconds=n * 1296 + ab)
|
||||
except Exception:
|
||||
return None
|
||||
|
||||
|
||||
def _pct(sorted_vals, q):
|
||||
"""Nearest-rank percentile on an already-sorted list."""
|
||||
if not sorted_vals:
|
||||
return None
|
||||
i = min(len(sorted_vals) - 1, max(0, int(len(sorted_vals) * q / 100.0)))
|
||||
return sorted_vals[i]
|
||||
|
||||
|
||||
def scan(path_str: str):
|
||||
logging.disable(logging.WARNING) # per-worker: the codec warns on undecodables
|
||||
p = Path(path_str)
|
||||
try:
|
||||
ev = read_blastware_file(p)
|
||||
except Exception:
|
||||
return None
|
||||
s = ev.raw_samples or {}
|
||||
if not any(s.get(c) for c in GEO):
|
||||
return None
|
||||
|
||||
ts = stem_time(p.name) or ev.timestamp
|
||||
stamp = ""
|
||||
if ts is not None:
|
||||
stamp = (f"{ts.year:04d}-{ts.month:02d}-{ts.day:02d}T"
|
||||
f"{ts.hour:02d}:{ts.minute:02d}:{ts.second:02d}")
|
||||
|
||||
# Per-channel floor candidates, in in/s.
|
||||
stats = {}
|
||||
for ch in GEO:
|
||||
v = sorted(s.get(ch) or [])
|
||||
if not v:
|
||||
continue
|
||||
stats[ch] = {
|
||||
"n": len(v),
|
||||
"min": v[0] * K,
|
||||
"p1": _pct(v, 1) * K,
|
||||
"p5": _pct(v, 5) * K,
|
||||
"p10": _pct(v, 10) * K,
|
||||
"p25": _pct(v, 25) * K,
|
||||
"med": statistics.median(v) * K,
|
||||
"peak": v[-1] * K,
|
||||
"zeros": sum(1 for x in v if x == 0) / len(v),
|
||||
}
|
||||
if len(stats) < 2: # need at least one sibling channel for the differential
|
||||
return None
|
||||
|
||||
# Mic floor as a site-noise proxy (raw counts; the dB conversion is not
|
||||
# needed — only its relative movement matters here).
|
||||
mic = sorted(s.get("MicL") or [])
|
||||
mic_p5 = _pct(mic, 5) if mic else ""
|
||||
|
||||
rows = []
|
||||
for ch, st in stats.items():
|
||||
others = [stats[o]["p5"] for o in stats if o != ch]
|
||||
rows.append({
|
||||
"serial": serial_of(p.name, p),
|
||||
"timestamp": stamp,
|
||||
"filename": p.name,
|
||||
"channel": ch,
|
||||
"n_intervals": st["n"],
|
||||
"min": round(st["min"], 4),
|
||||
"p1": round(st["p1"], 4),
|
||||
"p5": round(st["p5"], 4),
|
||||
"p10": round(st["p10"], 4),
|
||||
"p25": round(st["p25"], 4),
|
||||
"median": round(st["med"], 4),
|
||||
"peak": round(st["peak"], 4),
|
||||
"frac_zero": round(st["zeros"], 4),
|
||||
# the site-noise-cancelling statistic: this channel's floor above
|
||||
# the quietest sibling geo channel in the same file
|
||||
"diff_p5": round(st["p5"] - min(others), 4),
|
||||
"mic_p5": mic_p5,
|
||||
})
|
||||
return rows
|
||||
|
||||
|
||||
COLS = ["serial", "timestamp", "filename", "channel", "n_intervals",
|
||||
"min", "p1", "p5", "p10", "p25", "median", "peak", "frac_zero",
|
||||
"diff_p5", "mic_p5"]
|
||||
|
||||
|
||||
def main():
|
||||
ap = argparse.ArgumentParser()
|
||||
ap.add_argument("--dir", required=True)
|
||||
ap.add_argument("--out", required=True)
|
||||
ap.add_argument("--jobs", type=int, default=4)
|
||||
ap.add_argument("--limit", type=int, default=0, help="stop after N files (smoke test)")
|
||||
a = ap.parse_args()
|
||||
|
||||
# Dedupe by basename — the DL2 export keeps a byte-identical `Sent/`
|
||||
# mirror of its root, which doubled two figures before it was caught.
|
||||
seen, files = set(), []
|
||||
for q in sorted(Path(a.dir).rglob("*")):
|
||||
if q.is_file() and _HIST.search(q.name) and q.name not in seen:
|
||||
seen.add(q.name)
|
||||
files.append(str(q))
|
||||
if a.limit:
|
||||
files = files[:a.limit]
|
||||
print(f"unique histogram binaries: {len(files)}", flush=True)
|
||||
|
||||
rows, undecodable = [], 0
|
||||
with ProcessPoolExecutor(max_workers=a.jobs) as ex:
|
||||
futs = [ex.submit(scan, f) for f in files]
|
||||
for i, fut in enumerate(as_completed(futs), 1):
|
||||
r = fut.result()
|
||||
if r:
|
||||
rows.extend(r)
|
||||
else:
|
||||
undecodable += 1
|
||||
if i % 5000 == 0:
|
||||
print(f" {i}/{len(files)}", flush=True)
|
||||
|
||||
with open(a.out, "w", newline="") as fh:
|
||||
w = csv.DictWriter(fh, fieldnames=COLS)
|
||||
w.writeheader()
|
||||
w.writerows(rows)
|
||||
|
||||
files_ok = len({r["filename"] for r in rows})
|
||||
units = len({r["serial"] for r in rows})
|
||||
ivals = sum(r["n_intervals"] for r in rows) // 3
|
||||
print(f"\ndecoded {files_ok}/{len(files)} files "
|
||||
f"({undecodable} undecodable), {units} units, ~{ivals/1e6:.1f}M intervals")
|
||||
print(f"wrote {a.out} ({len(rows)} channel-rows)")
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
main()
|
||||
+26
-4
@@ -28,9 +28,31 @@ from minimateplus.event_file_io import read_blastware_file
|
||||
GEO=("Tran","Vert","Long"); K=10.0/32000.0
|
||||
_WAVE=re.compile(r"\.[A-Za-z0-9]{2}0[Ww]$"); _STEM=re.compile(r"^([B-Z])(\d{3})")
|
||||
|
||||
def serial_of(n):
|
||||
m=_STEM.match(n)
|
||||
return f"BE{(ord(m.group(1))-ord('B'))*1000+int(m.group(2))}" if m else "?"
|
||||
_SERIAL_RE = re.compile(rb"\b([A-Z]{2}\d{3,6})\b")
|
||||
|
||||
|
||||
def serial_of(name: str, path=None) -> str:
|
||||
"""Real serial for a BW file.
|
||||
|
||||
The filename encodes only the NUMBER: `<letter><3 digits>` where
|
||||
letter = chr(ord('B') + serial // 1000). The two-letter family prefix
|
||||
("BE", "BA", ...) is **not** in the filename, so it must be read out of
|
||||
the file body. Four units in the DL2 archive are BA, not BE — assuming
|
||||
"BE" mislabels BA9229, BA10060, BA10895 and BA15957.
|
||||
"""
|
||||
m = _STEM.match(name)
|
||||
if not m:
|
||||
return "?"
|
||||
num = (ord(m.group(1)) - ord("B")) * 1000 + int(m.group(2))
|
||||
if path is not None:
|
||||
try:
|
||||
for s in _SERIAL_RE.findall(Path(path).read_bytes()):
|
||||
s = s.decode()
|
||||
if s[2:].lstrip("0") == str(num):
|
||||
return s
|
||||
except Exception:
|
||||
pass
|
||||
return f"BE{num}" # last-resort fallback; prefix unverified
|
||||
|
||||
def scan(ps):
|
||||
p=Path(ps)
|
||||
@@ -48,7 +70,7 @@ def scan(ps):
|
||||
mid, end = a[t:2*t], a[2*t:]
|
||||
if not pre or not mid or not end: continue
|
||||
v=[statistics.median(x)*K for x in (pre,mid,end)]
|
||||
out.append({"serial":serial_of(p.name),"timestamp":stamp,
|
||||
out.append({"serial":serial_of(p.name, p),"timestamp":stamp,
|
||||
"filename":p.name,"channel":ch,
|
||||
"pretrig_n": pre_n or 0,
|
||||
"pre":round(v[0],4),"mid":round(v[1],4),"end":round(v[2],4),
|
||||
|
||||
@@ -1,12 +1,12 @@
|
||||
#!/usr/bin/env python3
|
||||
"""Backfill events.shape_* from each event's .h5 waveform samples. Idempotent."""
|
||||
"""Backfill events.shape_* and shape_offset_* from each event's .h5 samples. Idempotent."""
|
||||
from __future__ import annotations
|
||||
import argparse, logging, sys
|
||||
from pathlib import Path
|
||||
sys.path.insert(0, str(Path(__file__).resolve().parent.parent))
|
||||
from sfm.database import SeismoDb
|
||||
from sfm.waveform_store import WaveformStore
|
||||
from sfm.shape_metrics import shape_from_h5
|
||||
from sfm.shape_metrics import shape_from_h5, offset_from_h5
|
||||
|
||||
log = logging.getLogger("backfill_event_shape")
|
||||
|
||||
@@ -21,6 +21,7 @@ def backfill_shape(db: SeismoDb, store: WaveformStore, *, dry_run: bool = False)
|
||||
if not h5_path.exists():
|
||||
counts["skipped_no_h5"] += 1; continue
|
||||
shape = shape_from_h5(h5_path)
|
||||
offset = offset_from_h5(h5_path)
|
||||
if shape is None:
|
||||
# The .h5 can no longer yield a shape (fewer than 2 samples, or a
|
||||
# flat trace). Clear any previously stored value rather than
|
||||
@@ -28,22 +29,32 @@ def backfill_shape(db: SeismoDb, store: WaveformStore, *, dry_run: bool = False)
|
||||
# from and silently feeds the false-trigger detector. Seen after
|
||||
# a decoder fix shrinks an event: 493 rows in the prod snapshot
|
||||
# were carrying metrics from a superseded decode (2026-08-25).
|
||||
if row.get("shape_crest_factor") is not None:
|
||||
if (row.get("shape_crest_factor") is not None
|
||||
or row.get("shape_offset") is not None):
|
||||
if not dry_run:
|
||||
with db._connect() as conn:
|
||||
conn.execute(
|
||||
"UPDATE events SET shape_crest_factor=NULL, "
|
||||
"shape_near_peak_count=NULL, shape_sample_count=NULL, "
|
||||
"shape_axis=NULL WHERE id=?", (row["id"],))
|
||||
"shape_axis=NULL, shape_offset=NULL, shape_offset_axis=NULL, "
|
||||
"shape_offset_pre=NULL, shape_offset_spread=NULL WHERE id=?",
|
||||
(row["id"],))
|
||||
counts["cleared_stale"] += 1
|
||||
counts["skipped_no_samples"] += 1; continue
|
||||
if not dry_run:
|
||||
with db._connect() as conn:
|
||||
conn.execute(
|
||||
"UPDATE events SET shape_crest_factor=?, shape_near_peak_count=?, "
|
||||
"shape_sample_count=?, shape_axis=? WHERE id=?",
|
||||
"shape_sample_count=?, shape_axis=?, shape_offset=?, "
|
||||
"shape_offset_axis=?, shape_offset_pre=?, shape_offset_spread=? "
|
||||
"WHERE id=?",
|
||||
(shape["crest_factor"], shape["near_peak_count"],
|
||||
shape["sample_count"], shape["axis"], row["id"]))
|
||||
shape["sample_count"], shape["axis"],
|
||||
(1 if offset["offset"] else 0) if offset else None,
|
||||
offset["axis"] if offset else None,
|
||||
offset["pre"] if offset else None,
|
||||
offset["spread"] if offset else None,
|
||||
row["id"]))
|
||||
counts["updated"] += 1
|
||||
log.info("backfill_shape: %s", counts)
|
||||
return counts
|
||||
|
||||
+47
-10
@@ -82,6 +82,7 @@ CREATE TABLE IF NOT EXISTS events (
|
||||
record_type TEXT, -- "single_shot" | "continuous"
|
||||
false_trigger INTEGER NOT NULL DEFAULT 0, -- 0=no, 1=yes (manual flag)
|
||||
reviewed_real INTEGER NOT NULL DEFAULT 0, -- 0=no, 1=operator-confirmed real (mutually exclusive with false_trigger)
|
||||
false_trigger_reason TEXT, -- optional FT cause ("offset", ...); NULL = none. Only meaningful when false_trigger=1.
|
||||
blastware_filename TEXT, -- event file within waveform store; extension is per-event (AB0T encodes timestamp)
|
||||
blastware_filesize INTEGER, -- bytes; NULL if no event file saved
|
||||
a5_pickle_filename TEXT, -- "<filename>.a5.pkl" sidecar
|
||||
@@ -99,6 +100,10 @@ CREATE TABLE IF NOT EXISTS events (
|
||||
shape_near_peak_count INTEGER, -- samples >= 0.5 * peak (FT: few; real: many)
|
||||
shape_sample_count INTEGER, -- total samples (to normalize near_peak_count)
|
||||
shape_axis TEXT, -- geophone channel measured ("Tran"/"Vert"/"Long")
|
||||
shape_offset INTEGER, -- 1 = DC-offset false trigger (pre-trigger baseline off zero + flat). Meaningful for waveforms only.
|
||||
shape_offset_axis TEXT, -- geo channel the offset was measured on
|
||||
shape_offset_pre REAL, -- pre-trigger baseline median (in/s)
|
||||
shape_offset_spread REAL, -- max(pre,mid,end) - min(...) in in/s; small = constant/DC
|
||||
created_at TEXT NOT NULL DEFAULT (strftime('%Y-%m-%dT%H:%M:%SZ', 'now')),
|
||||
UNIQUE(serial, timestamp)
|
||||
);
|
||||
@@ -225,7 +230,12 @@ class SeismoDb:
|
||||
("shape_near_peak_count", "INTEGER"),
|
||||
("shape_sample_count", "INTEGER"),
|
||||
("shape_axis", "TEXT"),
|
||||
("shape_offset", "INTEGER"),
|
||||
("shape_offset_axis", "TEXT"),
|
||||
("shape_offset_pre", "REAL"),
|
||||
("shape_offset_spread", "REAL"),
|
||||
("reviewed_real", "INTEGER NOT NULL DEFAULT 0"),
|
||||
("false_trigger_reason", "TEXT"),
|
||||
):
|
||||
if col not in existing_cols:
|
||||
log.info("_migrate: events ADD COLUMN %s %s", col, ddl)
|
||||
@@ -430,9 +440,11 @@ class SeismoDb:
|
||||
tran_zc_above_range, vert_zc_above_range,
|
||||
long_zc_above_range, mic_zc_above_range,
|
||||
shape_crest_factor, shape_near_peak_count,
|
||||
shape_sample_count, shape_axis)
|
||||
shape_sample_count, shape_axis,
|
||||
shape_offset, shape_offset_axis,
|
||||
shape_offset_pre, shape_offset_spread)
|
||||
VALUES (?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?,
|
||||
?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?)
|
||||
?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?)
|
||||
""",
|
||||
(
|
||||
self._new_id(), serial, key, session_id, ts,
|
||||
@@ -464,6 +476,10 @@ class SeismoDb:
|
||||
rec.get("shape_near_peak_count"),
|
||||
rec.get("shape_sample_count"),
|
||||
rec.get("shape_axis"),
|
||||
rec.get("shape_offset"),
|
||||
rec.get("shape_offset_axis"),
|
||||
rec.get("shape_offset_pre"),
|
||||
rec.get("shape_offset_spread"),
|
||||
),
|
||||
)
|
||||
inserted += 1
|
||||
@@ -517,7 +533,11 @@ class SeismoDb:
|
||||
shape_crest_factor = COALESCE(?, shape_crest_factor),
|
||||
shape_near_peak_count = COALESCE(?, shape_near_peak_count),
|
||||
shape_sample_count = COALESCE(?, shape_sample_count),
|
||||
shape_axis = COALESCE(?, shape_axis)
|
||||
shape_axis = COALESCE(?, shape_axis),
|
||||
shape_offset = COALESCE(?, shape_offset),
|
||||
shape_offset_axis = COALESCE(?, shape_offset_axis),
|
||||
shape_offset_pre = COALESCE(?, shape_offset_pre),
|
||||
shape_offset_spread = COALESCE(?, shape_offset_spread)
|
||||
WHERE serial = ? AND timestamp = ?
|
||||
""",
|
||||
(
|
||||
@@ -549,6 +569,10 @@ class SeismoDb:
|
||||
rec.get("shape_near_peak_count") if rec else None,
|
||||
rec.get("shape_sample_count") if rec else None,
|
||||
rec.get("shape_axis") if rec else None,
|
||||
rec.get("shape_offset") if rec else None,
|
||||
rec.get("shape_offset_axis") if rec else None,
|
||||
rec.get("shape_offset_pre") if rec else None,
|
||||
rec.get("shape_offset_spread") if rec else None,
|
||||
serial,
|
||||
ts,
|
||||
),
|
||||
@@ -691,9 +715,9 @@ class SeismoDb:
|
||||
|
||||
def propagate_review_to_twins(self, event_id: str, *, window_seconds: int | None = None) -> list[str]:
|
||||
"""
|
||||
Copy this event's `false_trigger`/`reviewed_real` columns onto each
|
||||
of its histogram/waveform twins (see `find_twins`), so flagging one
|
||||
twin flags both. Returns the list of twin ids updated.
|
||||
Copy this event's `false_trigger`/`reviewed_real`/`false_trigger_reason`
|
||||
columns onto each of its histogram/waveform twins (see `find_twins`), so
|
||||
flagging one twin flags both. Returns the list of twin ids updated.
|
||||
|
||||
``window_seconds`` is accepted for backward compatibility but ignored;
|
||||
twin matching is now interval-based (see `find_twins`).
|
||||
@@ -703,12 +727,16 @@ class SeismoDb:
|
||||
return []
|
||||
ft = 1 if row.get("false_trigger") else 0
|
||||
real = 1 if row.get("reviewed_real") else 0
|
||||
# The reason is a subtype of the FT flag — carry it only when the source
|
||||
# is actually a false trigger, so a confirmed-real twin never keeps one.
|
||||
reason = row.get("false_trigger_reason") if ft else None
|
||||
twins = self.find_twins(event_id)
|
||||
moved = []
|
||||
with self._connect() as conn:
|
||||
for tw in twins:
|
||||
conn.execute("UPDATE events SET false_trigger=?, reviewed_real=? WHERE id=?",
|
||||
(ft, real, tw["id"]))
|
||||
conn.execute(
|
||||
"UPDATE events SET false_trigger=?, reviewed_real=?, false_trigger_reason=? WHERE id=?",
|
||||
(ft, real, reason, tw["id"]))
|
||||
moved.append(tw["id"])
|
||||
return moved
|
||||
|
||||
@@ -729,7 +757,7 @@ class SeismoDb:
|
||||
)
|
||||
else:
|
||||
cur = conn.execute(
|
||||
"UPDATE events SET false_trigger=0 WHERE id=?",
|
||||
"UPDATE events SET false_trigger=0, false_trigger_reason=NULL WHERE id=?",
|
||||
(event_id,),
|
||||
)
|
||||
return cur.rowcount > 0
|
||||
@@ -823,7 +851,8 @@ class SeismoDb:
|
||||
return False
|
||||
has_ft = "false_trigger" in review
|
||||
has_real = "reviewed_real" in review
|
||||
if not has_ft and not has_real:
|
||||
has_reason = "false_trigger_reason" in review
|
||||
if not has_ft and not has_real and not has_reason:
|
||||
# Nothing derived to update; just confirm the row exists.
|
||||
with self._connect() as conn:
|
||||
row = conn.execute(
|
||||
@@ -836,11 +865,19 @@ class SeismoDb:
|
||||
sets["false_trigger"] = 1 if review.get("false_trigger") else 0
|
||||
if has_real:
|
||||
sets["reviewed_real"] = 1 if review.get("reviewed_real") else 0
|
||||
if has_reason:
|
||||
reason = review.get("false_trigger_reason") or None
|
||||
sets["false_trigger_reason"] = reason
|
||||
if reason: # a reason is a subtype of FT → implies FT
|
||||
sets["false_trigger"] = 1
|
||||
# mutual exclusivity: a true in one forces the other column to 0
|
||||
if sets.get("false_trigger") == 1:
|
||||
sets["reviewed_real"] = 0
|
||||
if sets.get("reviewed_real") == 1:
|
||||
sets["false_trigger"] = 0
|
||||
# the reason is only meaningful while flagged FT — clear it if FT ends up 0
|
||||
if sets.get("false_trigger") == 0:
|
||||
sets["false_trigger_reason"] = None
|
||||
assign = ", ".join(f"{k}=?" for k in sets)
|
||||
params = list(sets.values()) + [event_id]
|
||||
with self._connect() as conn:
|
||||
|
||||
@@ -47,6 +47,60 @@ def shape_from_samples(chans: dict) -> dict | None:
|
||||
return s
|
||||
|
||||
|
||||
# ── Offset (DC-baseline) detection ────────────────────────────────────────────
|
||||
# A DC offset is a false trigger where the geophone baseline sits at a constant
|
||||
# non-zero floor (sensor bumped / settled / drifted) instead of oscillating
|
||||
# around zero. Brian's method (validated in scratch/offset_scan3.py): the
|
||||
# pre-trigger window is definitionally quiet, so a true offset shows |pre| off
|
||||
# zero AND stays flat across the record (pre ≈ mid ≈ end). A transient moves one
|
||||
# third relative to the others and is rejected by the spread test.
|
||||
# Thresholds are in in/s (the .h5 samples are already range-scaled); validated at
|
||||
# Normal range (10 in/s) — the only range in the fleet.
|
||||
OFFSET_FLOOR = 0.025 # |pre| at/above this reads as an off-zero baseline (5 A/D counts)
|
||||
OFFSET_MAX_SPREAD = 0.02 # max(pre,mid,end) - min(...) at/below this reads as flat/constant
|
||||
|
||||
|
||||
def _channel_offset(x, pretrig_n):
|
||||
"""Return (pre, spread, is_offset) for one channel, or None if unusable."""
|
||||
x = np.asarray(x, dtype=float)
|
||||
n = x.size
|
||||
if n < 3:
|
||||
return None
|
||||
t = n // 3
|
||||
pre = x[:pretrig_n] if (pretrig_n and 0 < pretrig_n < n) else x[:t]
|
||||
mid, end = x[t:2 * t], x[2 * t:]
|
||||
if pre.size == 0 or mid.size == 0 or end.size == 0:
|
||||
return None
|
||||
vals = [float(np.median(seg)) for seg in (pre, mid, end)]
|
||||
spread = max(vals) - min(vals)
|
||||
is_offset = abs(vals[0]) >= OFFSET_FLOOR and spread <= OFFSET_MAX_SPREAD
|
||||
return vals[0], spread, is_offset
|
||||
|
||||
|
||||
def offset_from_samples(chans: dict, pretrig_n) -> dict | None:
|
||||
"""Detect a DC-offset false trigger across the geophone channels.
|
||||
|
||||
An event is offset if ANY geo channel's pre-trigger baseline is off zero and
|
||||
flat across the record. Reports the tripping axis (or, if none trips, the
|
||||
most-offset-like axis) with its ``pre``/``spread`` for transparency + tuning.
|
||||
Returns None when no geo channel is usable.
|
||||
"""
|
||||
results = []
|
||||
for ax in _GEO_CHANNELS:
|
||||
x = chans.get(ax)
|
||||
if x is None:
|
||||
continue
|
||||
r = _channel_offset(x, pretrig_n)
|
||||
if r is not None:
|
||||
results.append((ax, r[0], r[1], r[2]))
|
||||
if not results:
|
||||
return None
|
||||
offenders = [r for r in results if r[3]]
|
||||
ax, pre, spread, _ = max(offenders or results, key=lambda r: abs(r[1]))
|
||||
return {"offset": bool(offenders), "axis": ax,
|
||||
"pre": round(pre, 6), "spread": round(spread, 6)}
|
||||
|
||||
|
||||
def shape_from_h5(path) -> dict | None:
|
||||
import h5py
|
||||
try:
|
||||
@@ -56,3 +110,18 @@ def shape_from_h5(path) -> dict | None:
|
||||
except Exception:
|
||||
return None
|
||||
return shape_from_samples(chans)
|
||||
|
||||
|
||||
def offset_from_h5(path) -> dict | None:
|
||||
"""offset_from_samples fed from an event's .h5 (float32 in/s geo samples +
|
||||
the pretrig_samples attribute)."""
|
||||
import h5py
|
||||
try:
|
||||
with h5py.File(path, "r") as f:
|
||||
chans = {ax: f[f"samples/{ax}"][:] for ax in _GEO_CHANNELS
|
||||
if f"samples/{ax}" in f}
|
||||
pretrig_n = f.attrs.get("pretrig_samples")
|
||||
except Exception:
|
||||
return None
|
||||
pretrig_n = int(pretrig_n) if pretrig_n is not None else 0
|
||||
return offset_from_samples(chans, pretrig_n)
|
||||
|
||||
+86
-11
@@ -32,6 +32,7 @@ from __future__ import annotations
|
||||
import datetime
|
||||
import logging
|
||||
import pickle
|
||||
import re
|
||||
import shutil
|
||||
from pathlib import Path
|
||||
from typing import Optional, Union
|
||||
@@ -41,7 +42,7 @@ from minimateplus.blastware_file import blastware_filename, write_blastware_file
|
||||
from minimateplus.framing import S3Frame
|
||||
from minimateplus.models import Event
|
||||
from sfm import event_hdf5
|
||||
from sfm.shape_metrics import shape_from_h5
|
||||
from sfm.shape_metrics import shape_from_h5, offset_from_h5
|
||||
|
||||
log = logging.getLogger("sfm.waveform_store")
|
||||
|
||||
@@ -270,6 +271,13 @@ class WaveformStore:
|
||||
"shape_sample_count": _shape["sample_count"],
|
||||
"shape_axis": _shape["axis"],
|
||||
} if _shape else {}
|
||||
_offset = offset_from_h5(hdf5_path) if hdf5_filename else None
|
||||
_offset_rec = {
|
||||
"shape_offset": 1 if _offset["offset"] else 0,
|
||||
"shape_offset_axis": _offset["axis"],
|
||||
"shape_offset_pre": _offset["pre"],
|
||||
"shape_offset_spread": _offset["spread"],
|
||||
} if _offset else {}
|
||||
return {
|
||||
"filename": filename,
|
||||
"filesize": filesize,
|
||||
@@ -278,6 +286,7 @@ class WaveformStore:
|
||||
"hdf5_filename": hdf5_filename,
|
||||
"sidecar_filename": sidecar_path.name,
|
||||
**_shape_rec,
|
||||
**_offset_rec,
|
||||
}
|
||||
|
||||
def save_imported_bw(
|
||||
@@ -371,8 +380,16 @@ class WaveformStore:
|
||||
|
||||
# Resolve serial. blastware_filename derives a 4-char prefix from
|
||||
# the numeric serial (e.g. BE11529 → M529); we go the other way
|
||||
# via the source filename if a hint wasn't given.
|
||||
serial = serial_hint or _serial_from_bw_filename(source_path.name) or "UNKNOWN"
|
||||
# if a hint wasn't given. The filename carries only the NUMBER,
|
||||
# so read the family prefix out of the body first — a BlastMate
|
||||
# ("BA") filed as "BE" is a unit that does not exist. The
|
||||
# filename-only decoder stays as the last resort.
|
||||
serial = (
|
||||
serial_hint
|
||||
or _serial_from_bw_bytes(bw_bytes, source_path.name)
|
||||
or _serial_from_bw_filename(source_path.name)
|
||||
or "UNKNOWN"
|
||||
)
|
||||
|
||||
# Use the source filename verbatim — it already encodes timestamp
|
||||
# + record type per BW's AB0T scheme, and we want to preserve it
|
||||
@@ -461,6 +478,13 @@ class WaveformStore:
|
||||
"shape_sample_count": _shape["sample_count"],
|
||||
"shape_axis": _shape["axis"],
|
||||
} if _shape else {}
|
||||
_offset = offset_from_h5(hdf5_path) if hdf5_filename else None
|
||||
_offset_rec = {
|
||||
"shape_offset": 1 if _offset["offset"] else 0,
|
||||
"shape_offset_axis": _offset["axis"],
|
||||
"shape_offset_pre": _offset["pre"],
|
||||
"shape_offset_spread": _offset["spread"],
|
||||
} if _offset else {}
|
||||
return ev, {
|
||||
"filename": filename,
|
||||
"filesize": filesize,
|
||||
@@ -470,6 +494,7 @@ class WaveformStore:
|
||||
"sidecar_filename": sidecar_path.name,
|
||||
"serial": serial,
|
||||
**_shape_rec,
|
||||
**_offset_rec,
|
||||
}
|
||||
|
||||
def save_imported_idf(
|
||||
@@ -751,6 +776,13 @@ class WaveformStore:
|
||||
"shape_sample_count": _shape["sample_count"],
|
||||
"shape_axis": _shape["axis"],
|
||||
} if _shape else {}
|
||||
_offset = offset_from_h5(hdf5_path) if hdf5_filename else None
|
||||
_offset_rec = {
|
||||
"shape_offset": 1 if _offset["offset"] else 0,
|
||||
"shape_offset_axis": _offset["axis"],
|
||||
"shape_offset_pre": _offset["pre"],
|
||||
"shape_offset_spread": _offset["spread"],
|
||||
} if _offset else {}
|
||||
return ev, {
|
||||
"filename": filename,
|
||||
"filesize": filesize,
|
||||
@@ -760,6 +792,7 @@ class WaveformStore:
|
||||
"sidecar_filename": sidecar_path.name,
|
||||
"serial": serial,
|
||||
**_shape_rec,
|
||||
**_offset_rec,
|
||||
}
|
||||
|
||||
def load_a5(self, serial: str, filename: str) -> Optional[list[S3Frame]]:
|
||||
@@ -816,20 +849,24 @@ class WaveformStore:
|
||||
|
||||
# ── helpers ─────────────────────────────────────────────────────────────────────
|
||||
|
||||
def _serial_from_bw_filename(name: str) -> Optional[str]:
|
||||
def _serial_number_from_bw_filename(name: str) -> Optional[int]:
|
||||
"""
|
||||
Reverse of `blastware_filename`'s serial-prefix encoding.
|
||||
Reverse of `blastware_filename`'s serial-prefix encoding — the NUMBER only.
|
||||
|
||||
BW filename format (V10.72): `<P><serial3><stem4>.<ext>`
|
||||
where P = chr(ord('B') + floor(serial // 1000))
|
||||
and serial3 = f"{serial % 1000:03d}".
|
||||
|
||||
Examples (from CLAUDE.md verification archive):
|
||||
P036... → BE14036 H907... → BE6907
|
||||
M529... → BE11529 T003... → BE18003
|
||||
P036... → 14036 H907... → 6907
|
||||
M529... → 11529 T003... → 18003
|
||||
L895... → 10895
|
||||
|
||||
Returns the inferred BE-prefix serial (e.g. "BE11529") or None when
|
||||
the filename doesn't match the expected pattern.
|
||||
⚠ The filename encodes **only the number**. The two-letter family
|
||||
prefix is NOT in it — "BE" is a MiniMate Plus, "BA" a BlastMate — so
|
||||
the prefix has to come from the file body (`_serial_from_bw_bytes`)
|
||||
or from an explicit hint. Returns None when the filename doesn't
|
||||
match the expected pattern.
|
||||
"""
|
||||
if not name:
|
||||
return None
|
||||
@@ -842,5 +879,43 @@ def _serial_from_bw_filename(name: str) -> Optional[str]:
|
||||
if prefix_letter < "B":
|
||||
return None
|
||||
thousands = ord(prefix_letter) - ord("B")
|
||||
serial_num = thousands * 1000 + int(base[1:4])
|
||||
return f"BE{serial_num}"
|
||||
return thousands * 1000 + int(base[1:4])
|
||||
|
||||
|
||||
_BW_SERIAL_RE = re.compile(rb"[A-Z]{2}\d{3,6}")
|
||||
|
||||
|
||||
def _serial_from_bw_bytes(data: bytes, name: str) -> Optional[str]:
|
||||
"""
|
||||
Read the real serial — prefix included — out of a BW file body.
|
||||
|
||||
The body carries the serial as a plain ASCII string ("BE9558",
|
||||
"BA10895"). We accept a candidate only when its numeric part matches
|
||||
the number the filename encodes, which keeps a stray byte sequence in
|
||||
the sample stream from being mistaken for a serial.
|
||||
|
||||
Returns None when the filename number can't be derived or no
|
||||
candidate in the body agrees with it — the caller then falls back.
|
||||
"""
|
||||
num = _serial_number_from_bw_filename(name)
|
||||
if num is None or not data:
|
||||
return None
|
||||
for match in _BW_SERIAL_RE.findall(data):
|
||||
candidate = match.decode("ascii", errors="replace")
|
||||
if candidate[2:].lstrip("0") == str(num):
|
||||
return candidate
|
||||
return None
|
||||
|
||||
|
||||
def _serial_from_bw_filename(name: str) -> Optional[str]:
|
||||
"""
|
||||
Best-effort serial from the filename alone.
|
||||
|
||||
⚠ The family prefix is a **guess** — the filename does not carry it.
|
||||
"BE" is right for every MiniMate Plus but wrong for a BlastMate, whose
|
||||
serials start "BA". Prefer `_serial_from_bw_bytes` whenever the file
|
||||
body is at hand; this exists for callers that only have a name
|
||||
(log lines, dry-run output).
|
||||
"""
|
||||
num = _serial_number_from_bw_filename(name)
|
||||
return None if num is None else f"BE{num}"
|
||||
|
||||
@@ -0,0 +1,103 @@
|
||||
import sqlite3
|
||||
|
||||
from sfm.database import SeismoDb
|
||||
from minimateplus.models import Event, Timestamp
|
||||
|
||||
|
||||
def _ev(db, key="0111aaaa", serial="BE1"):
|
||||
ev = Event(index=0)
|
||||
ev._waveform_key = bytes.fromhex(key)
|
||||
ev.timestamp = Timestamp(raw=b"", flag=0x10, year=2026, unknown_byte=0,
|
||||
month=6, day=25, hour=8, minute=0, second=0)
|
||||
ev.record_type = "Waveform"
|
||||
db.insert_events([ev], serial=serial)
|
||||
return [r for r in db.query_events(serial=serial) if r["waveform_key"] == key][0]["id"]
|
||||
|
||||
|
||||
def test_flag_offset_reason_implies_ft(tmp_path):
|
||||
db = SeismoDb(tmp_path / "s.db")
|
||||
eid = _ev(db)
|
||||
db.update_event_review(eid, {"false_trigger_reason": "offset"})
|
||||
row = db.get_event(eid)
|
||||
assert row["false_trigger"] == 1 # a reason is a subtype of FT
|
||||
assert row["false_trigger_reason"] == "offset"
|
||||
assert row["reviewed_real"] == 0
|
||||
|
||||
|
||||
def test_plain_ft_leaves_reason_null(tmp_path):
|
||||
# Reason is OPTIONAL — flagging FT without one records no reason.
|
||||
db = SeismoDb(tmp_path / "s.db")
|
||||
eid = _ev(db)
|
||||
db.update_event_review(eid, {"false_trigger": True})
|
||||
row = db.get_event(eid)
|
||||
assert row["false_trigger"] == 1
|
||||
assert row["false_trigger_reason"] is None
|
||||
|
||||
|
||||
def test_confirm_real_clears_reason(tmp_path):
|
||||
db = SeismoDb(tmp_path / "s.db")
|
||||
eid = _ev(db)
|
||||
db.update_event_review(eid, {"false_trigger_reason": "offset"})
|
||||
db.update_event_review(eid, {"reviewed_real": True})
|
||||
row = db.get_event(eid)
|
||||
assert row["reviewed_real"] == 1
|
||||
assert row["false_trigger"] == 0
|
||||
assert row["false_trigger_reason"] is None
|
||||
|
||||
|
||||
def test_clear_ft_clears_reason(tmp_path):
|
||||
db = SeismoDb(tmp_path / "s.db")
|
||||
eid = _ev(db)
|
||||
db.update_event_review(eid, {"false_trigger_reason": "offset"})
|
||||
db.update_event_review(eid, {"false_trigger": False})
|
||||
row = db.get_event(eid)
|
||||
assert row["false_trigger"] == 0
|
||||
assert row["false_trigger_reason"] is None
|
||||
|
||||
|
||||
def test_set_false_trigger_false_clears_reason(tmp_path):
|
||||
db = SeismoDb(tmp_path / "s.db")
|
||||
eid = _ev(db)
|
||||
db.update_event_review(eid, {"false_trigger_reason": "offset"})
|
||||
assert db.set_false_trigger(eid, False) is True
|
||||
row = db.get_event(eid)
|
||||
assert row["false_trigger"] == 0
|
||||
assert row["false_trigger_reason"] is None
|
||||
|
||||
|
||||
def test_reason_can_be_cleared_without_clearing_ft(tmp_path):
|
||||
# Setting reason to None removes the reason but leaves the FT flag intact.
|
||||
db = SeismoDb(tmp_path / "s.db")
|
||||
eid = _ev(db)
|
||||
db.update_event_review(eid, {"false_trigger_reason": "offset"})
|
||||
db.update_event_review(eid, {"false_trigger_reason": None})
|
||||
row = db.get_event(eid)
|
||||
assert row["false_trigger"] == 1
|
||||
assert row["false_trigger_reason"] is None
|
||||
|
||||
|
||||
def _ts(h, m, d=25):
|
||||
return Timestamp(raw=b"", flag=0x10, year=2026, unknown_byte=0,
|
||||
month=2, day=d, hour=h, minute=m, second=0)
|
||||
|
||||
|
||||
def test_offset_reason_propagates_to_twin(tmp_path):
|
||||
# Flag a waveform as offset → its histogram twin also becomes FT with reason=offset.
|
||||
db = SeismoDb(tmp_path / "s.db")
|
||||
|
||||
def ins(key, ts, rt):
|
||||
ev = Event(index=0); ev._waveform_key = bytes.fromhex(key); ev.timestamp = ts
|
||||
db.insert_events([ev], serial="BE1")
|
||||
rid = [r for r in db.query_events(serial="BE1") if r["waveform_key"] == key][0]["id"]
|
||||
with sqlite3.connect(db.db_path) as c:
|
||||
c.execute("UPDATE events SET peak_vector_sum=0.4763, record_type=? WHERE id=?", (rt, rid))
|
||||
return rid
|
||||
|
||||
hist = ins("01110001", _ts(19, 31), "Histogram") # interval start
|
||||
wave = ins("01110002", _ts(20, 46), "Waveform") # trigger inside the interval
|
||||
|
||||
db.update_event_review(wave, {"false_trigger_reason": "offset"})
|
||||
db.propagate_review_to_twins(wave)
|
||||
row = db.get_event(hist)
|
||||
assert row["false_trigger"] == 1
|
||||
assert row["false_trigger_reason"] == "offset"
|
||||
@@ -0,0 +1,94 @@
|
||||
import numpy as np
|
||||
import h5py
|
||||
from sfm.shape_metrics import offset_from_samples, offset_from_h5
|
||||
|
||||
|
||||
def test_flags_constant_dc_floor():
|
||||
# A geophone channel sitting at a constant +0.05 in/s across the whole record
|
||||
# is a DC offset: baseline off zero AND flat across pre/mid/end thirds.
|
||||
n = 300
|
||||
chans = {"Tran": np.full(n, 0.05), "Vert": np.zeros(n), "Long": np.zeros(n)}
|
||||
r = offset_from_samples(chans, pretrig_n=50)
|
||||
assert r["offset"] is True
|
||||
assert r["axis"] == "Tran"
|
||||
assert abs(r["pre"] - 0.05) < 1e-6
|
||||
assert r["spread"] < 0.02
|
||||
|
||||
|
||||
def test_transient_rejected_by_spread():
|
||||
# Off-zero pre-trigger but the baseline SETTLES back over the record — a
|
||||
# transient, not a constant offset. The spread test must reject it.
|
||||
x = np.concatenate([np.full(100, 0.05), np.full(100, 0.025), np.zeros(100)])
|
||||
chans = {"Tran": x, "Vert": np.zeros(300), "Long": np.zeros(300)}
|
||||
r = offset_from_samples(chans, pretrig_n=100)
|
||||
assert r["offset"] is False
|
||||
|
||||
|
||||
def test_clean_oscillation_not_offset():
|
||||
t = np.arange(300)
|
||||
x = 0.4 * np.sin(2 * np.pi * t / 20) # oscillates around zero — baseline IS zero
|
||||
chans = {"Tran": x, "Vert": np.zeros(300), "Long": np.zeros(300)}
|
||||
r = offset_from_samples(chans, pretrig_n=50)
|
||||
assert r["offset"] is False
|
||||
|
||||
|
||||
def test_below_floor_not_offset_but_reports_pre():
|
||||
# A flat baseline below the floor is not an offset; still report the axis/pre
|
||||
# for tuning transparency.
|
||||
n = 300
|
||||
chans = {"Tran": np.full(n, 0.01), "Vert": np.zeros(n), "Long": np.zeros(n)}
|
||||
r = offset_from_samples(chans, pretrig_n=50)
|
||||
assert r["offset"] is False
|
||||
assert r["axis"] == "Tran"
|
||||
assert abs(r["pre"] - 0.01) < 1e-6
|
||||
|
||||
|
||||
def test_none_when_no_geo_channels():
|
||||
assert offset_from_samples({"MicL": np.full(300, 0.05)}, pretrig_n=50) is None
|
||||
|
||||
|
||||
def test_pretrig_fallback_when_invalid():
|
||||
# pretrig_n of 0 (missing/unusable) falls back to the first third.
|
||||
n = 300
|
||||
chans = {"Tran": np.full(n, 0.05), "Vert": np.zeros(n), "Long": np.zeros(n)}
|
||||
r = offset_from_samples(chans, pretrig_n=0)
|
||||
assert r["offset"] is True
|
||||
|
||||
|
||||
def test_flags_offset_on_any_axis():
|
||||
# Offset on Vert alone still flags the event, and Vert is reported.
|
||||
n = 300
|
||||
chans = {"Tran": np.zeros(n), "Vert": np.full(n, -0.06), "Long": np.zeros(n)}
|
||||
r = offset_from_samples(chans, pretrig_n=50)
|
||||
assert r["offset"] is True
|
||||
assert r["axis"] == "Vert"
|
||||
|
||||
|
||||
def _write_h5(path, chans, pretrig_n):
|
||||
with h5py.File(path, "w") as f:
|
||||
g = f.create_group("samples")
|
||||
for k, v in chans.items():
|
||||
g.create_dataset(k, data=np.asarray(v, dtype="float32"))
|
||||
if pretrig_n is not None:
|
||||
f.attrs["pretrig_samples"] = pretrig_n
|
||||
|
||||
|
||||
def test_offset_from_h5_reads_pretrig_attr(tmp_path):
|
||||
p = tmp_path / "ev.h5"
|
||||
n = 300
|
||||
_write_h5(p, {"Tran": np.full(n, 0.05), "Vert": np.zeros(n), "Long": np.zeros(n)},
|
||||
pretrig_n=50)
|
||||
r = offset_from_h5(str(p))
|
||||
assert r["offset"] is True and r["axis"] == "Tran"
|
||||
|
||||
|
||||
def test_offset_from_h5_missing_pretrig_attr_falls_back(tmp_path):
|
||||
p = tmp_path / "noattr.h5"
|
||||
n = 300
|
||||
_write_h5(p, {"Tran": np.full(n, 0.05), "Vert": np.zeros(n), "Long": np.zeros(n)},
|
||||
pretrig_n=None)
|
||||
assert offset_from_h5(str(p))["offset"] is True # falls back to first-third
|
||||
|
||||
|
||||
def test_offset_from_h5_missing_file_is_none(tmp_path):
|
||||
assert offset_from_h5(str(tmp_path / "nope.h5")) is None
|
||||
@@ -0,0 +1,64 @@
|
||||
from __future__ import annotations
|
||||
from pathlib import Path
|
||||
|
||||
import numpy as np, h5py
|
||||
|
||||
from sfm.database import SeismoDb
|
||||
from sfm.waveform_store import WaveformStore
|
||||
from scripts.backfill_event_shape import backfill_shape
|
||||
from minimateplus.models import Event, Timestamp, PeakValues
|
||||
|
||||
_FIX = Path(__file__).parent / "fixtures/histogram-extension-re/events-5-21-26/K558LL8B.7I0W"
|
||||
|
||||
|
||||
def _event(waveform_key="0111abcd"):
|
||||
ev = Event(index=0)
|
||||
ev._waveform_key = bytes.fromhex(waveform_key)
|
||||
ev.timestamp = Timestamp(raw=b"", flag=0x10, year=2026, unknown_byte=0,
|
||||
month=6, day=25, hour=8, minute=50, second=0)
|
||||
ev.record_type = "Waveform"
|
||||
ev.peak_values = PeakValues(tran=0.075, vert=0.220, long=0.045,
|
||||
peak_vector_sum=0.231, micl=0.01)
|
||||
return ev
|
||||
|
||||
|
||||
def test_insert_stores_offset_from_record(tmp_path: Path):
|
||||
db = SeismoDb(tmp_path / "s.db")
|
||||
ev = _event()
|
||||
rec = {ev._waveform_key.hex(): {
|
||||
"filename": "F.CE0W", "filesize": 10,
|
||||
"shape_offset": 1, "shape_offset_axis": "Tran",
|
||||
"shape_offset_pre": 0.05, "shape_offset_spread": 0.001}}
|
||||
db.insert_events([ev], serial="BE1", waveform_records=rec)
|
||||
row = db.query_events(serial="BE1")[0]
|
||||
assert row["shape_offset"] == 1
|
||||
assert row["shape_offset_axis"] == "Tran"
|
||||
assert abs(row["shape_offset_pre"] - 0.05) < 1e-6
|
||||
assert abs(row["shape_offset_spread"] - 0.001) < 1e-6
|
||||
|
||||
|
||||
def test_save_imported_bw_attaches_offset(tmp_path: Path):
|
||||
store = WaveformStore(tmp_path / "waveforms")
|
||||
ev, rec = store.save_imported_bw(_FIX.read_bytes(), source_path=_FIX, serial_hint="BE9558")
|
||||
assert rec["shape_offset"] in (0, 1)
|
||||
assert rec["shape_offset_axis"] in ("Tran", "Vert", "Long")
|
||||
assert "shape_offset_pre" in rec and "shape_offset_spread" in rec
|
||||
|
||||
|
||||
def test_backfill_updates_offset(tmp_path: Path):
|
||||
db = SeismoDb(tmp_path / "s.db")
|
||||
store = WaveformStore(tmp_path / "waveforms")
|
||||
ev = Event(index=0); ev._waveform_key = bytes.fromhex("0111abcd")
|
||||
db.insert_events([ev], serial="BE1",
|
||||
waveform_records={ev._waveform_key.hex(): {"filename": "F.CE0W", "filesize": 10}})
|
||||
p = store.hdf5_path_for("BE1", "F.CE0W")
|
||||
with h5py.File(p, "w") as f:
|
||||
g = f.create_group("samples")
|
||||
g.create_dataset("Tran", data=np.full(300, 0.05, "float32"))
|
||||
g.create_dataset("Vert", data=np.zeros(300, "float32"))
|
||||
g.create_dataset("Long", data=np.zeros(300, "float32"))
|
||||
f.attrs["pretrig_samples"] = 50
|
||||
backfill_shape(db, store)
|
||||
row = db.query_events(serial="BE1")[0]
|
||||
assert row["shape_offset"] == 1
|
||||
assert row["shape_offset_axis"] == "Tran"
|
||||
@@ -0,0 +1,101 @@
|
||||
"""The BW filename encodes the serial NUMBER, never the family prefix.
|
||||
|
||||
"BE" is a MiniMate Plus; "BA" is a BlastMate. Both are Series III and their
|
||||
files are byte-compatible — the whole archive's 1,493 BlastMate binaries
|
||||
decode through the same codec at 100% — so the only thing that distinguishes
|
||||
them downstream is the serial string, and that lives in the file body.
|
||||
|
||||
Synthesising the prefix as "BE" files a BlastMate under a unit that does not
|
||||
exist. Four units in the DL2 archive are affected: BA9229, BA10060, BA10895
|
||||
and BA15957.
|
||||
"""
|
||||
from __future__ import annotations
|
||||
|
||||
import pytest
|
||||
|
||||
from minimateplus.client import _decode_0a_partial_header
|
||||
from sfm.waveform_store import (
|
||||
_serial_from_bw_bytes,
|
||||
_serial_from_bw_filename,
|
||||
_serial_number_from_bw_filename,
|
||||
)
|
||||
|
||||
|
||||
# ── the filename gives a number, and only a number ──────────────────────────
|
||||
|
||||
@pytest.mark.parametrize("name,num", [
|
||||
("P036L318.C80H", 14036), # BE14036
|
||||
("H907KWRK.WB0H", 6907), # BE6907
|
||||
("M529LKIQ.G10", 11529), # BE11529
|
||||
("T003LQ9K.OE0H", 18003), # BE18003
|
||||
("L895K63F.GE0W", 10895), # BA10895 — a BlastMate
|
||||
("K229HGQI.XO0W", 9229), # BA9229 — a BlastMate
|
||||
])
|
||||
def test_number_from_filename(name, num):
|
||||
assert _serial_number_from_bw_filename(name) == num
|
||||
|
||||
|
||||
@pytest.mark.parametrize("name", ["", "not_a_bw_file.bin", "AB12", "1234ABCD.XX0W"])
|
||||
def test_number_from_filename_rejects_junk(name):
|
||||
assert _serial_number_from_bw_filename(name) is None
|
||||
|
||||
|
||||
def test_filename_only_decoder_is_a_guess():
|
||||
"""It still answers "BE" — that is why it must not be the first choice."""
|
||||
assert _serial_from_bw_filename("L895K63F.GE0W") == "BE10895"
|
||||
assert _serial_from_bw_filename("M529LKIQ.G10") == "BE11529"
|
||||
assert _serial_from_bw_filename("nonsense") is None
|
||||
|
||||
|
||||
# ── the body carries the truth ──────────────────────────────────────────────
|
||||
|
||||
def _body(serial: bytes) -> bytes:
|
||||
return b"\x00" * 32 + b"STRT" + b"\xff\xfe" + serial + b"\x00Geo: 0.254 in/s\x00"
|
||||
|
||||
|
||||
def test_body_wins_for_a_blastmate():
|
||||
assert _serial_from_bw_bytes(_body(b"BA10895"), "L895K63F.GE0W") == "BA10895"
|
||||
|
||||
|
||||
def test_body_wins_for_a_minimate():
|
||||
assert _serial_from_bw_bytes(_body(b"BE11529"), "M529LKIQ.G10") == "BE11529"
|
||||
|
||||
|
||||
def test_body_candidate_must_match_the_filename_number():
|
||||
"""A serial-shaped byte run that disagrees with the filename is ignored."""
|
||||
assert _serial_from_bw_bytes(_body(b"XX99999"), "L895K63F.GE0W") is None
|
||||
|
||||
|
||||
def test_body_tolerates_a_leading_zero():
|
||||
assert _serial_from_bw_bytes(_body(b"BA09229"), "K229HGQI.XO0W") == "BA09229"
|
||||
|
||||
|
||||
@pytest.mark.parametrize("data,name", [
|
||||
(b"", "L895K63F.GE0W"), # no bytes
|
||||
(_body(b"BA10895"), "junk.bin"), # no derivable number
|
||||
])
|
||||
def test_body_returns_none_when_it_cannot_decide(data, name):
|
||||
assert _serial_from_bw_bytes(data, name) is None
|
||||
|
||||
|
||||
# ── the live monitor-log path ───────────────────────────────────────────────
|
||||
|
||||
def _partial_record(serial: bytes) -> bytes:
|
||||
"""0x2C partial record: type, prefix, two 9-byte timestamps, then ASCII."""
|
||||
ts = bytes([11, 0x10, 4, 0x07, 0xE9, 0, 16, 2, 0]) # 2025-04-11 16:02:00
|
||||
return (bytes([0x2C]) + b"\x00" * 10 + ts + ts
|
||||
+ b"\x00\x00\x00\x00" + serial + b"\x00Geo: 0.254 in/s\x00")
|
||||
|
||||
|
||||
@pytest.mark.parametrize("serial", [b"BE11529", b"BA10895", b"UM11719"])
|
||||
def test_monitor_log_reads_any_family_prefix(serial):
|
||||
entry = _decode_0a_partial_header(_partial_record(serial), 0, b"\x01\x11\x00\x00")
|
||||
assert entry is not None
|
||||
assert entry.serial == serial.decode()
|
||||
|
||||
|
||||
def test_monitor_log_geo_threshold_survives_a_blastmate():
|
||||
"""The old find(b"BE") skipped the whole block, losing geo too."""
|
||||
entry = _decode_0a_partial_header(_partial_record(b"BA10895"), 0, b"\x01\x11\x00\x00")
|
||||
assert entry is not None
|
||||
assert entry.geo_threshold_ips == pytest.approx(0.254)
|
||||
Reference in New Issue
Block a user