bandsaunter/tests/test_trunk.py
The Dust Council 4a272eb1d5 Recognise trunking control channels, and refuse to sit on them
A trunked system keeps one frequency transmitting a data stream around
the clock so its radios know where each conversation has been put.  There
is no speech on it and it never stops, which makes it the strongest and
most useless signal in the band: the scanner parked on 856.561 MHz for
the full record limit, saved four minutes of buzzing, and found it again
on the next sweep.

Five signatures, matched against a constant-envelope stream that never
pauses: 3600 baud two-level (Motorola SMARTNET/SmartZone), 9600 (EDACS),
1200 (MPT-1327), 4800 four-level (P25 or DMR Tier III), 2400 (NXDN).
The first two are believed at once -- nothing else sends at those rates
without pausing.  The rest share their shape with a digital voice call on
the same system, so they wait for the carrier to run unbroken past
--control-seconds, longer than a conversation goes without a breath.
Being in a trunked allocation raises confidence but is never required;
trunking is licensed on business pairs all over the spectrum.

One is named on screen, abandoned within a second or so, and its capture
deleted.  --keep-control records them for a decoder; --lockout-control
writes them into the lock-out list.

Three things had to be fixed to get there.

The simulator's "pseudo-random" symbols were a counter: multiplying the
symbol index by an odd constant and taking it modulo the level count
returns the low bits, so two-level FSK came out 0,1,0,1.  Every FSK test
in the suite was measuring a tone.  Its FSK is now shaped the way GFSK
and C4FM shape a stream, too, square-edged keying being a signal no
licensed transmitter would radiate.

The symbol-rate estimator locked onto harmonics -- 3600 baud read as
18000 -- because a transition impulse train is a comb of equal lines; it
now walks down to the fundamental.  The squared envelope is no longer a
candidate: it is not a transition signal, and its DC lobe made every
random OOK signal measure ninety baud.  The search starts at 200 Hz
rather than 40, below which it was reading drift, which is how a bare
carrier was awarded a symbol rate.  And a clean two-level signal counted
zero discriminator levels, because its modes land in the first and last
histogram bin, where find_peaks cannot see them.

Separately: locking out a frequency wrote to the settings file even under
--no-config, which has no settings file by definition.  It now writes
only where it read from, and --simulate never writes at all -- an
invented frequency would sit in a real config for ever, skipping whatever
genuine signal happened to land near it.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_016PsWPTweCT6pwxKngvVxcg
2026-08-22 14:22:49 -07:00

303 lines
12 KiB
Python

"""Trunking control channels: recognising them, and refusing to sit on them.
A trunked system keeps one frequency transmitting a data stream around the
clock so that every radio in the fleet knows which channel each conversation
has been assigned to. There is no speech on it and it never stops, which
makes it both the strongest and the most useless signal in the band: a scanner
that treats it as content parks on it for the full record limit, then finds it
again on the very next sweep.
"""
import numpy as np
import pytest
from bandsaunter.classify import (SignalFeatures, classify, trunk_control,
CONTROL_SIGNATURES)
from bandsaunter.config import ScanConfig
from bandsaunter.quality import CATEGORIES, assess
from bandsaunter.ranges import parse_range_list
from bandsaunter.scanner import Scanner, ScannerCallbacks
from bandsaunter.simulator import SimulatedDevice, VirtualTransmitter as V
FS = 96_000.0
def features(**over) -> SignalFeatures:
"""A control channel as the feature extractor sees one.
The numbers are those measured from a real 856.561 MHz SMARTNET capture,
so a change that stops this being recognised has broken the case the
detector was written for.
"""
f = SignalFeatures(sample_rate=32_000.0, n_samples=320_000, duration=10.0)
f.bandwidth = 7_437.5
f.env_cv = 0.0268
f.ook_contrast_db = 5.411
f.duty_cycle = 0.898
f.freq_modes = 2
f.mode_spacing = 5_326.7
f.level_dwell = 0.5244
f.baud = 3_600.1
f.baud_stability = 1.0
f.baud_strength = 51.7
f.snr_db = 38.58
for k, v in over.items():
setattr(f, k, v)
return f
def fsk(baud, levels, seconds=2.0, fs=FS, deviation=2_600.0, gaps=False):
"""Continuous multi-level FSK -- the shape every control channel has.
Built from the simulator's own transmitter so the transmit shaping is the
same as everywhere else: an unshaped square-edged stream is a signal no
licensed radio would radiate, and its harmonics fool any symbol-rate
estimator.
"""
mode = "fsk2" if levels == 2 else "fsk4"
tx = V(100e6, mode, 1.0, 12_500.0, f"ctl{baud:.0f}x{levels}",
baud=float(baud), deviation=deviation)
x = tx.generate(0.0, int(seconds * fs), fs)
if gaps: # key it on and off, as a voice call would
env = np.ones(x.size)
for i in range(0, x.size, int(fs * 0.5)):
env[i:i + int(fs * 0.2)] = 0.0
x = (x * env).astype(np.complex64)
return x
# -- the detector on its own -------------------------------------------------
def test_a_real_smartnet_control_channel_is_recognised():
c = trunk_control(features(), 856_561_096.0)
assert c is not None
assert "SMARTNET" in c.system
assert c.confidence >= 0.9
assert not c.ambiguous
def test_the_name_says_control_channel_in_words():
c = trunk_control(features(), 856_561_096.0)
assert c.describe().endswith("trunking control channel")
def test_being_in_a_trunked_band_is_corroboration_not_a_requirement():
"""Trunking is licensed all over the spectrum, so the shape has to be
enough on its own -- the allocation only raises confidence."""
inband = trunk_control(features(), 856_561_096.0)
out = trunk_control(features(), 33_000_000.0)
assert out is not None
assert inband.confidence > out.confidence
@pytest.mark.parametrize("baud,levels,name", [
(3_600.0, 2, "SMARTNET"), (9_600.0, 2, "EDACS"),
])
def test_unambiguous_symbol_rates_are_believed_at_once(baud, levels, name):
"""Nothing but a control channel sends these without pause, so waiting to
see whether it stops would only waste the receiver's time."""
c = trunk_control(features(baud=baud, freq_modes=levels),
856_500_000.0, continuous_for=0.0)
assert c is not None and name in c.system
@pytest.mark.parametrize("baud,levels", [(4_800.0, 4), (2_400.0, 4), (1_200.0, 2)])
def test_shapes_shared_with_digital_voice_wait_for_the_carrier_to_prove_itself(
baud, levels):
"""P25, DMR and NXDN control channels look exactly like a call on the same
system. Only one of the two is still transmitting a minute later."""
f = features(baud=baud, freq_modes=levels, mode_spacing=1_800.0)
assert trunk_control(f, 856_500_000.0, continuous_for=5.0) is None
late = trunk_control(f, 856_500_000.0, continuous_for=30.0)
assert late is not None and late.ambiguous
def test_patience_is_adjustable():
f = features(baud=4_800.0, freq_modes=4, mode_spacing=1_800.0)
assert trunk_control(f, 0.0, continuous_for=8.0, min_seconds=5.0) is not None
assert trunk_control(f, 0.0, continuous_for=8.0, min_seconds=60.0) is None
def test_a_bursty_data_signal_is_not_a_control_channel():
"""A pager page or a packet frame has the right symbol rate and the wrong
duty cycle: it stops, and a control channel never does."""
assert trunk_control(features(duty_cycle=0.2, ook_contrast_db=28.0),
929_000_000.0) is None
def test_an_off_rate_data_stream_is_left_alone():
assert trunk_control(features(baud=5_000.0), 856_500_000.0) is None
def test_a_wandering_symbol_rate_is_not_trusted():
"""The cyclostationary estimator always returns *some* peak; a control
channel's does not move."""
assert trunk_control(features(baud_stability=0.3), 856_500_000.0) is None
def test_voice_never_looks_like_one():
"""Speech swings the envelope around between syllables."""
assert trunk_control(features(env_cv=0.55), 856_500_000.0) is None
def test_every_signature_is_reachable():
"""A typo in the table would silently disable one system for ever."""
for baud, levels, name, conf, ambiguous in CONTROL_SIGNATURES:
f = features(baud=baud, freq_modes=levels, mode_spacing=1_800.0)
c = trunk_control(f, 0.0, continuous_for=999.0)
assert c is not None and c.system == name, name
# -- through the classifier --------------------------------------------------
def test_classify_names_the_control_channel_rather_than_the_modulation():
""""2-FSK" is true and useless; the point of spotting one is to say so."""
cls = classify(fsk(3_600.0, 2), FS, freq_hz=856_561_096.0, snr_db=40.0)
assert cls.control is not None
assert "control channel" in cls.label.lower()
assert cls.reasons[0].startswith("unbroken 3600 baud")
def test_a_keyed_digital_voice_call_is_not_called_a_control_channel():
cls = classify(fsk(4_800.0, 4, gaps=True), FS, freq_hz=856_500_000.0,
snr_db=40.0)
assert cls.control is None
# -- through the content gate ------------------------------------------------
def test_trunk_is_a_content_category_of_its_own():
assert "trunk" in CATEGORIES
def test_trunk_is_not_accepted_by_default():
assert "trunk" not in ScanConfig().accept
def test_the_verdict_calls_it_trunk_and_refuses_to_keep_it():
cls = classify(fsk(3_600.0, 2), FS, freq_hz=856_561_096.0, snr_db=40.0)
a = assess(cls, np.zeros(16_000), 16_000.0)
assert a.category == "trunk"
assert not a.accept
assert a.control is not None
assert "control channel" in a.reason
def test_keep_control_puts_it_back_in_the_digital_pile():
"""Someone feeding a decoder wants the control channel recorded."""
cls = classify(fsk(3_600.0, 2), FS, freq_hz=856_561_096.0, snr_db=40.0)
a = assess(cls, np.zeros(16_000), 16_000.0, skip_control=False)
assert a.category == "digital"
# -- end to end --------------------------------------------------------------
def control_channel_scan(tmp_path, **over):
tx = [V(856_562_500, "fsk2", 0.45, 12_500, "control", baud=3_600.0,
deviation=2_600.0)]
dev = SimulatedDevice(transmitters=tx).open()
cfg = ScanConfig(ranges=parse_range_list("856.4M-856.7M"),
output_dir=str(tmp_path), record_seconds=8.0,
hang_seconds=1.0, min_record_seconds=0.3,
threshold_db=12, dwell_seconds=0.05, max_cycles=1,
revisit_seconds=0.2, verify_seconds=0.5)
for k, v in over.items():
setattr(cfg, k, v)
hits, notes = [], []
s = Scanner(cfg, device=dev, callbacks=ScannerCallbacks(
on_record_end=hits.append, on_record_note=notes.append))
s.prepare()
s.run()
return s, hits, notes
def test_a_control_channel_is_never_saved(tmp_path):
s, hits, _ = control_channel_scan(tmp_path)
assert hits, "the transmitter was never found at all"
assert not any(h.kept for h in hits)
assert any(h.category == "trunk" for h in hits), [h.category for h in hits]
assert list(tmp_path.glob("*.wav")) == []
def test_it_is_abandoned_long_before_the_record_limit(tmp_path):
"""The whole point: not holding the receiver on a channel with nothing to
hear. Eight seconds were allowed; it should leave in about one."""
s, hits, _ = control_channel_scan(tmp_path)
trunk = [h for h in hits if h.category == "trunk"]
assert trunk
assert trunk[0].duration < 4.0, trunk[0].duration
def test_the_display_is_told_what_it_is(tmp_path):
s, hits, notes = control_channel_scan(tmp_path)
assert notes, "nothing was sent to the live display"
assert notes[0].startswith("TRUNK: ")
assert "SMARTNET" in notes[0]
def test_the_frequency_and_system_are_reported_in_the_status_line(tmp_path):
tx = [V(856_562_500, "fsk2", 0.45, 12_500, "control", baud=3_600.0,
deviation=2_600.0)]
dev = SimulatedDevice(transmitters=tx).open()
cfg = ScanConfig(ranges=parse_range_list("856.4M-856.7M"),
output_dir=str(tmp_path), record_seconds=8.0,
hang_seconds=1.0, threshold_db=12, dwell_seconds=0.05,
max_cycles=1, verify_seconds=0.5)
msgs = []
s = Scanner(cfg, device=dev, callbacks=ScannerCallbacks(on_status=msgs.append))
s.prepare()
s.run()
trunk = [m for m in msgs if m.startswith("TRUNK ")]
assert trunk, msgs
assert "856.5" in trunk[0] and "control channel" in trunk[0]
assert s.stats.control_channels
def test_keep_control_records_it_like_any_other_data(tmp_path):
s, hits, _ = control_channel_scan(tmp_path, skip_control=False)
kept = [h for h in hits if h.kept]
assert kept, [(h.category, h.stop_reason) for h in hits]
assert kept[0].category == "digital"
def test_lockout_control_writes_it_down_when_asked(tmp_path):
s, hits, _ = control_channel_scan(tmp_path, lockout_control=True,
save_lockouts=False)
assert s.cfg.lockout, "the control channel was not locked out"
assert s._is_locked(856_562_500)
def test_lockout_control_is_off_by_default(tmp_path):
s, hits, _ = control_channel_scan(tmp_path)
assert not s.cfg.lockout
def test_it_is_skipped_even_with_the_content_gate_off(tmp_path):
"""--keep-everything turns off *judging*, not spotting. A control channel
is still recognised, and the receiver still leaves promptly."""
s, hits, notes = control_channel_scan(tmp_path, require_signal=False)
assert notes and notes[0].startswith("TRUNK: ")
trunk = [h for h in hits if h.category == "trunk"]
assert trunk and not trunk[0].kept
assert trunk[0].duration < 4.0, trunk[0].duration
assert list(tmp_path.glob("*.wav")) == []
def test_a_simulated_lockout_never_reaches_the_real_settings(tmp_path, capsys):
"""The demo band is invented. A lock-out taken from it must not be
written into a settings file that a real scan will later read -- it would
sit there for ever, skipping whatever genuine signal happened to land near
a made-up frequency."""
from bandsaunter.cli import main
settings = tmp_path / "config.yaml"
settings.write_text("record_seconds: 4.0\nsave_lockouts: true\n")
rc = main(["scan", "--simulate", "-r", "856.4M-856.7M",
"-o", str(tmp_path / "out"), "--plain", "--cycles", "1",
"--record", "8", "--lockout-control",
"--profile", str(settings)])
assert rc == 0
out = capsys.readouterr().out
assert "locked out" in out and "for this run" in out, out
after = settings.read_text()
assert "lockout:" not in after, after
assert "856" not in after, after