Document real-world peak detector validation
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+21
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@@ -26,7 +26,8 @@ after a value falls below `drop_ratio * current_peak`, it emits that maximum
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only after actual subsequent below-threshold observations support a continuous
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`hold_seconds` interval. `min_peak` is a generic detector setting, along with
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`drop_ratio` (0 < ratio < 1), `hold_seconds` (>= 0), and an explicit positive
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`max_sample_gap_seconds`. Elapsed time, never a sample count, determines
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`max_sample_gap_seconds`. They are selected per signal, rather than being
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globally fixed process constants. Elapsed time, never a sample count, determines
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confirmation. An interval longer than the configured maximum sample gap
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restarts a reset candidate, so a timestamp gap is not
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continuous-below evidence. Reset values can be negative rather than zero,
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@@ -35,10 +36,25 @@ The maximum gap is required rather than inferred or defaulted, making each
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source's continuity assumption explicit.
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K7 roll length, variable `bf81c547-dccf-4709-aee2-0f78366d1dfc` (m), is the
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first real-world validation case. The tested capture is continuous on a
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10-second grid through its latest available sample; its shorter-than-requested
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result was caused by an end time queried in the future, not observed time-series
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gaps. The raw capture remains ignored and deterministic tests use synthetic
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clean reference validation case. With `min_peak=10`, `drop_ratio=0.75`,
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`hold_seconds=60`, and `max_sample_gap_seconds=20`, its continuous 10-second
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capture produced exactly four plausible peaks of approximately 49.98 m. Its
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shorter-than-requested result was caused by an end time queried in the future,
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not observed time-series gaps.
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Bento 2 roll weight is the second, more realistic robustness validation case:
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machine `6201f3de-b940-45d7-930c-1481c5ae9e1d`, variable
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`059c0015-9aff-4270-a4ce-f21b83f99378` (kg). Its observed cadence is 10
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seconds, but it has long plateaus, reset values roughly 300–470 kg, and
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materially varying peaks. With `min_peak=800`, `drop_ratio=0.75`,
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`hold_seconds=60`, and `max_sample_gap_seconds=20`, the extended capture
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yielded 13 plausible completed peaks: 936, 919, 935, 930, 930, 920, 909,
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1195, 921, 930, 939, 912, and 914 kg (from 00:46:50Z through 03:06:30Z on
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2026-09-04). The approximately 1195 kg peak is retained as a real
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process/mechanical condition, not special-cased as a defect; it is emitted
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only after its following reset has enough below-threshold observations. A
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reset is not expected to approach zero, and peak values are not assumed to be
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constant. Raw captures remain ignored and deterministic tests use synthetic
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fixtures only.
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## Central domain context
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@@ -69,20 +69,34 @@ roll weight, and comparable sawtooth/batch signals. It retains the current
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maximum and emits it only after the value is below
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`drop_ratio * current_peak` continuously for `hold_seconds`. Configuration is
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`min_peak`, `drop_ratio` (strictly between 0 and 1), non-negative
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`hold_seconds`, and positive `max_sample_gap_seconds`. The hold uses elapsed
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`hold_seconds`, and positive `max_sample_gap_seconds`. These are per-signal
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configuration parameters, not globally fixed process constants. The hold uses elapsed
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timestamps, never a sample count; an interval longer than the configured
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maximum sample gap restarts a reset candidate,
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so a timestamp gap alone is not evidence that a signal remained below threshold.
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`max_sample_gap_seconds` is required rather than defaulted, so the source's
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continuity assumption is explicit for each detector configuration.
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Reset values can be negative and need not be zero. Equal timestamps are
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accepted in arrival order but add no elapsed hold time; backwards timestamps
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are rejected.
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Reset values need not approach zero (and can be negative), and peak magnitude
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can vary materially between cycles. Equal timestamps are accepted in arrival
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order but add no elapsed hold time; backwards timestamps are rejected.
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The first real-world validation case is K7 roll length (m), variable
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`bf81c547-dccf-4709-aee2-0f78366d1dfc`. When the ignored local capture is
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present, run `python scripts/validate_k7_roll_length.py` to inspect detected
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peaks without adding the raw capture to tests or version control.
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Real-world validations use ignored local captures and are not part of the test
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suite. K7 roll length (m), variable `bf81c547-dccf-4709-aee2-0f78366d1dfc`, is
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the clean reference case: its 10-second capture produced exactly four plausible
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peaks of about 49.98 m with `min_peak=10`, `drop_ratio=0.75`,
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`hold_seconds=60`, and `max_sample_gap_seconds=20`. Run
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`python scripts/validate_k7_roll_length.py` when that capture is available.
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Bento 2 roll weight (kg), machine `6201f3de-b940-45d7-930c-1481c5ae9e1d`,
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variable `059c0015-9aff-4270-a4ce-f21b83f99378`, is the more realistic
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robustness case. Its observed 10-second signal has plateaus, reset values of
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roughly 300–470 kg, and materially varying peak heights. With
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`min_peak=800`, `drop_ratio=0.75`, `hold_seconds=60`, and
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`max_sample_gap_seconds=20`, the extended capture produces 13 plausible
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completed peaks, including a legitimate approximately 1195 kg cycle. Run
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`python scripts/validate_bento2_roll_weight.py` when the ignored capture is
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available. Neither capture should be added to version control or automated
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tests.
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`docker compose up -d timescaledb` is an optional local database design for a
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future persistence milestone. It is not required for the bootstrap tests.
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@@ -52,6 +52,9 @@ This is calculation-domain logic, with no ENLYZE transport dependency.
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The detector uses timestamps rather than a sample count. An interval longer
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than the configured positive `max_sample_gap_seconds` restarts a reset candidate,
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so a timestamp alone does not establish that a signal was continuously below
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threshold. Equal
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timestamps are processed in arrival order but contribute no elapsed time, and
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backwards timestamps are rejected. Reset values are not assumed to be zero.
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threshold. These parameters (`min_peak`, `drop_ratio`, `hold_seconds`, and
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`max_sample_gap_seconds`) are selected per signal rather than treated as global
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process constants. Equal timestamps are processed in arrival order but
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contribute no elapsed time, and backwards timestamps are rejected. Reset values
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are not assumed to approach zero, and peak values may vary materially between
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cycles.
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+4
-1
@@ -31,7 +31,10 @@ tests against sanitized fixtures.
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The generic configurable sawtooth detector is implemented: it retains the
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current maximum, closes a cycle after a configurable below-peak fraction has
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actual sample support for a configurable elapsed duration, and emits one
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completed peak. Its pure state can later be persisted for incremental use.
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completed peak. Its pure state can later be persisted for incremental use. It
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has been validated with a clean K7 roll-length reference signal and a more
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variable Bento 2 roll-weight robustness signal; the latter includes plateaus,
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non-zero resets, and varying peak heights without detector special cases.
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## Later
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@@ -0,0 +1,82 @@
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#!/usr/bin/env python3
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"""Validate the peak detector against an ignored local Bento 2 capture.
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This developer utility reads no network data and does not modify the capture.
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Run it from the repository root when
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data/raw/enlyze/bento2-roll-weight-extended.raw.json is available.
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"""
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from __future__ import annotations
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import json
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from datetime import datetime
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from pathlib import Path
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from production_analytics.calculations import (
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PeakCycleDetector,
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PeakDetectorConfig,
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TimeSeriesSample,
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)
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CAPTURE = Path("data/raw/enlyze/bento2-roll-weight-extended.raw.json")
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VARIABLE_UUID = "059c0015-9aff-4270-a4ce-f21b83f99378"
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EXPECTED_PEAKS = (
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("2026-09-04T00:46:50+00:00", 936.0),
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("2026-09-04T00:57:10+00:00", 919.0),
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("2026-09-04T01:07:20+00:00", 935.0),
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("2026-09-04T01:17:20+00:00", 930.0),
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("2026-09-04T01:27:20+00:00", 930.0),
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("2026-09-04T01:37:30+00:00", 920.0),
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("2026-09-04T01:48:00+00:00", 909.0),
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("2026-09-04T02:14:20+00:00", 1195.0),
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("2026-09-04T02:24:10+00:00", 921.0),
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("2026-09-04T02:35:40+00:00", 930.0),
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("2026-09-04T02:46:10+00:00", 939.0),
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("2026-09-04T02:56:20+00:00", 912.0),
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("2026-09-04T03:06:30+00:00", 914.0),
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)
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def main() -> int:
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if not CAPTURE.is_file():
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print(f"Bento 2 capture is not available: {CAPTURE}")
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return 1
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payload = json.loads(CAPTURE.read_text(encoding="utf-8"))
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data = payload["response"]["body"]["data"]
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value_index = data["columns"].index(VARIABLE_UUID)
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samples = (
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TimeSeriesSample(
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datetime.fromisoformat(record[0].replace("Z", "+00:00")),
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float(record[value_index]),
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)
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for record in data["records"]
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if record[value_index] is not None
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)
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detector = PeakCycleDetector(
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PeakDetectorConfig(
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min_peak=800.0,
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drop_ratio=0.75,
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hold_seconds=60.0,
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max_sample_gap_seconds=20.0,
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)
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)
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peaks = list(detector.process_many(samples))
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observed = tuple((peak.peak_timestamp.isoformat(), peak.value) for peak in peaks)
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print(f"Detected peaks: {len(peaks)}")
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for peak in peaks:
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print(
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f"peak={peak.value:.0f} kg at {peak.peak_timestamp.isoformat()} "
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f"confirmed={peak.confirmed_at.isoformat()}"
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)
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if observed != EXPECTED_PEAKS:
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print("Validation failed: detected peaks differ from the expected extended-window result.")
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return 2
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print("Validation passed: detected peaks match the 13 expected completed peaks.")
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return 0
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if __name__ == "__main__":
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raise SystemExit(main())
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