Under the transcript, headed DETECTED CALLSIGNS:, every callsign heard in it with the name and location on its licence. Finding them is not one regular expression over the text as written. A speech recogniser is poor at callsigns -- they are not words, they are said one character at a time -- so it breaks them wherever the speaker paused and writes the phonetic alphabet down verbatim. The recording that prompted this has "Alright, KU 0W" in it, with a space; spelled out it would have been "kilo uniform zero whiskey". All three forms read back to KU0W. Not inventing them matters more. A run of words is accepted only when none of its parts is an ordinary English word: "or 3. Can you open 4" and "CC1 boy", both from real transcripts here, fit the shape once the punctuation is gone and are not callsigns. A single token said in one breath is still trusted, because W1BOY is a perfectly good callsign, and a lone "a" or "i" cannot start a join or "a B4U player" becomes AB4U. Across the 126 transcripts in the recordings directory that turns three candidates into the one that was actually said. Lookups use the FCC's own licence data at callook.info -- no account, no key, the callsign the only thing sent. They never delay the display: the entry reads "looking up" and fills itself in, and results are cached under ~/.cache so a net recorded night after night is looked up once. --no-lookup contacts nothing and still describes a callsign from its own structure, the ITU prefix giving the country and the digit the US district, which is also all there is to say for callsigns outside the US. --callsigns prints everyone who identified themselves and where they were heard. Also asked: are transcripts appended to, or overwritten, when another transmission arrives on the same frequency? Neither could be shown from reading the code alone, so there are now three tests that run real scans and look at the files. By default each transmission has a transcript of its own -- the timestamp is in the name, so two overs cannot land on one file. With --combine there is one recording per frequency and therefore one transcript, opened for append with the time of each over; a second scan into the same directory adds to it rather than starting it over, which is the case the last of the three tests covers. The browser and callsign tests refuse to reach the network at all. One test did, quietly, and passed -- visible only because the assertion it failed printed a real operator's address. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_016PsWPTweCT6pwxKngvVxcg
473 lines
16 KiB
Python
Executable file
473 lines
16 KiB
Python
Executable file
#!/usr/bin/env python3
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"""Generate the bandsaunter manual page from the settings table.
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The settings are described in exactly one place -- bandsaunter/settings.py --
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so the manual cannot drift from the program. Every setting appears here with
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its command-line flag, its default, and the plain-language guidance that says
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what it is and when someone would change it.
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"""
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import sys
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from datetime import date
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from pathlib import Path
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sys.path.insert(0, str(Path(__file__).resolve().parent.parent))
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import bandsaunter # noqa: E402
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from bandsaunter import settings as st # noqa: E402
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from bandsaunter.config import ScanConfig # noqa: E402
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def esc(text: str) -> str:
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"""Escape for troff: a leading dot or apostrophe is a request."""
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out = text.replace("\\", "\\e")
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return "\n".join(("\\&" + ln if ln[:1] in (".", "'") else ln)
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for ln in out.split("\n"))
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def settings_section() -> list[str]:
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out = []
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defaults = ScanConfig()
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for group in st.GROUPS:
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out.append(f'.SS {esc(group)}')
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for s in st.in_group(group):
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flags = " ".join(s.flags)
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if s.off_flags:
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flags += " / " + " ".join(s.off_flags)
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shown = st.format_value(s, getattr(defaults, s.key))
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unit = f" ({s.unit})" if s.unit and s.kind not in ("bool",) else ""
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out.append('.TP')
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out.append(f'.B {esc(flags)}')
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out.append(f'{esc(s.label)} \\[em] {esc(s.help)}{esc(unit)}.')
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out.append('.br')
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out.append(f'Setting name \\fB{esc(s.key)}\\fR, '
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f'default \\fB{esc(shown)}\\fR.')
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accepts = s.describe_range()
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if accepts:
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out.append('.br')
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out.append(f'Accepts: {esc(accepts)}.')
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if s.guidance:
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# Indented to the entry it belongs to, not back out to the
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# left margin, so an entry reads as one block.
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out.append('.RS')
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out.append('.PP')
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out.append(esc(s.guidance))
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out.append('.RE')
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out.append('.PP')
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return out
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HEAD = r'''.\" Generated by packaging/make-man.py -- do not edit by hand.
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.TH BANDSAUNTER 1 "{date}" "bandsaunter {version}" "User Commands"
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.SH NAME
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bandsaunter \- scan, record and identify radio signals with an RTL-SDR
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.SH SYNOPSIS
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.B bandsaunter
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.RI [ command ]
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.RI [ options ]
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.br
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.B bandsaunter scan
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.BI \-r " RANGE"
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.RI [ options ]
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.br
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.B bandsaunter
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.RI "(no arguments: interactive menus)"
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.SH DESCRIPTION
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.B bandsaunter
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sweeps any set of frequency ranges with an RTL-SDR receiver, stops on
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signals that rise above the background noise, records them, and works out
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what kind of signal each one was. Morse is decoded to text and speech can be
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transcribed.
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.PP
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Ranges are given by hand or chosen from a built-in US band plan. There is no
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limit on how many may be scanned at once.
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.PP
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Captures that turn out to be noise, static or interference are discarded
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rather than saved, so what ends up on disk is transmissions rather than hiss.
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This is the behaviour of
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.B \-\-require\-signal
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and it is on by default.
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.PP
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Every setting can be given as a command-line option, set in the menus, or
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saved to a settings file; the three are the same list, described under
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.B SETTINGS
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below.
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.SH COMMANDS
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.TP
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.B scan
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Run a scan. Without
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.B \-r
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or
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.B \-b
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the interactive menus open instead.
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.TP
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.B bands
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Browse the built-in US band plan: amateur, marine, aviation, public service,
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business, railroad, GMRS/FRS, CB, ISM, weather, and more.
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.TP
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.B config
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Show or change the saved settings.
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.B "config KEY=VALUE"
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sets one and saves it,
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.B "config \-\-show"
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prints them all,
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.B "config \-\-describe KEY"
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explains one in full, and
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.B "config \-\-edit"
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opens the menus.
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.TP
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.B transcribe
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Transcribe existing recordings, or list which speech recognisers are
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installed with
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.BR \-\-engines .
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.TP
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.B devices
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List attached receivers.
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.TP
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.B profiles
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List saved profiles.
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.TP
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.B analyze
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Identify a signal in an already-recorded file, or decode Morse from it.
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.SH OPTIONS
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.TP
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.BI \-r " RANGE\fR, \fP" \-\-range " RANGE"
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A frequency range to sweep, such as
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.IR 144M\-148M .
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Repeatable, and a comma-separated list is accepted. See
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.B ENTERING FREQUENCIES
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below.
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.TP
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.BI \-b " KEY\fR, \fP" \-\-band " KEY"
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A band-plan preset, such as
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.IR gmrs " or " marine\-vhf .
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Repeatable.
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.B bandsaunter bands
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lists them.
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.TP
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.BI \-\-mode " MODE"
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Force one demodulator for every range: nfm, wfm, am, usb, lsb, cw or raw.
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Without this each range is demodulated according to what the signal turns out
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to be, which is normally what you want.
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.TP
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.BI \-p " NAME\fR, \fP" \-\-profile " NAME"
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Start from a saved profile instead of the saved default settings.
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.TP
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.BI \-\-save\-profile " NAME"
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Save the settings this run would have used, under that name, and exit.
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.TP
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.B \-\-save
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Save the settings this run would have used as the new defaults, and exit.
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.TP
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.B \-\-no\-config
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Ignore the saved settings file and start from the built-in defaults.
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.TP
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.B \-\-simulate
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Use a synthetic receiver instead of real hardware. Everything else behaves
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normally, so the program can be tried out with no dongle attached.
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.TP
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.B \-\-dry\-run
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Print the sweep plan \[em] every tuner step and how long a pass will take \[em]
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and exit without receiving anything.
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.TP
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.B \-\-keep\-carriers
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Also record steady unmodulated carriers, which are otherwise discarded as
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having no content. Useful for beacon hunting or for tracking down a source of
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interference.
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.SH SETTINGS
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Each of these can be given as a command-line option, changed in the menus
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under
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.BR "bandsaunter config" ,
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or written into the settings file. The command line wins for one run; the
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settings file is what every run starts from.
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'''
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TAIL = r'''.SH ENTERING FREQUENCIES
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Frequencies may be written with a unit or without:
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.IR 146.52M ", " "146.52 MHz" ", " 146520k ", " 146520000 .
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A bare number under 10000 is read as megahertz, since that is how people
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write frequencies.
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.PP
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A range is a pair:
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.IR 144M\-148M ", " 144\-148M " (the unit carries over), " "144M to 148M" ", "
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.IR 144M..148M .
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A single frequency on its own is treated as a narrow range around it.
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.PP
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A step and a demodulator may be attached:
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.I 144M\-148M/25k@nfm
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sweeps in 25 kHz steps and demodulates narrowband FM.
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.PP
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Several may be given at once, separated by commas, and
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.B \-r
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may be repeated. There is no limit on how many ranges a scan may cover.
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.SH BAND PLAN
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.B bandsaunter bands
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lists over a hundred presets from the US band plan, each carrying the right
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step size and demodulator for that service, so
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.B "\-b gmrs"
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is enough to scan GMRS properly.
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.PP
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Presets that stand for several others expand automatically:
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.I all\-cw
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sweeps every Morse segment of every amateur band, and
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.IR 2m\-complete ", " 70cm\-complete
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and their like sweep a whole amateur band end to end rather than one segment
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of it.
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.SH LOCK-OUTS
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Every receiving setup has a few frequencies not worth stopping on: a pager
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transmitter down the road, a nearby data link, or a spurious signal the
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receiver manufactures itself. Locking one out makes the scan skip it.
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.PP
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Pressing
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.B l
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during a scan locks out whatever is being received. Unless
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.B \-\-no\-save\-lockouts
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is given, it is written back to the settings file the run started from, so it
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stays locked out on later runs. Only the lock-out list is written back \[em]
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options given on the command line for a single run stay one-off.
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.PP
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Lock-outs can also be given directly, several at a time, as single
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frequencies or as spans:
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.PP
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.RS
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.EX
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bandsaunter scan \-r 144M\-148M \-\-lockout "162.55M, 450M\-455M"
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.EE
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.RE
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.PP
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A single frequency is widened by
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.BR \-\-lockout\-width ;
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a span is used exactly as written.
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.PP
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Two runs never write anything back.
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.B \-\-no\-config
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has no settings file to write to, since the point of it is to leave the saved
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settings alone; and
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.B \-\-simulate
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is looking at an invented band, whose frequencies would be nonsense in a real
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settings file. Both still lock out for the run in hand, and say so.
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.SH KEYS DURING A SCAN
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.TP
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.B q
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Stop.
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.TP
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.B p
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Pause and resume.
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.TP
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.B s
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Abandon this recording and resume sweeping.
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.TP
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.B l
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Lock out this frequency, now and in future runs.
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.TP
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.B "+ \fRand\fB \-"
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Raise or lower the squelch threshold by 1 dB.
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.SH OUTPUT
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Recordings are named
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.IR frequency \-\- date _ time \- modulation .wav ,
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with the frequency padded to four digits so that an ordinary directory
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listing sorts by frequency. Beside them are the run log, as JSON lines and as
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CSV, and optionally a transcript per recording and the raw samples.
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.PP
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With
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.B \-\-combine
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every transmission on one frequency is appended to a single growing file for
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that frequency, with a spoken date and time before each one, so a scan can be
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played back as a recording of that channel rather than clicked through as
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hundreds of fragments.
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.SH TRUNKED SYSTEMS
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Police, fire and large business radio in the US mostly runs on
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.IR trunked
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systems. Instead of giving each department its own frequency, the system owns
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a pool of channels and hands one out for each conversation as it happens. To
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make that work, one frequency in the pool is given over entirely to a data
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stream that runs day and night, telling every radio in the fleet where to go
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next. That frequency is the
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.IR "control channel" .
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.PP
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A control channel is the worst thing a scanner can find. It is loud, it is
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perfectly steady, it never stops, and there is nothing on it to listen to \[em]
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just a harsh buzz. A scanner without special handling parks on it for the
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whole record limit, saves the file, and then finds it again on the next sweep,
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for as long as it is left running.
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.PP
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bandsaunter recognises one from the shape of the signal, names the system on
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screen, deletes what it captured and moves on, usually within a second or
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two. What it looks for is a constant\-envelope data stream that never pauses,
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at a symbol rate belonging to a known trunking standard:
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.RS
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.PP
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3600 baud two\-level \[em] Motorola SMARTNET / SmartZone (Type I and II).
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.br
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9600 baud two\-level \[em] EDACS and ProVoice.
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.br
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1200 baud two\-level \[em] MPT\-1327.
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.br
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4800 baud four\-level \[em] P25 or DMR Tier III.
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.br
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2400 baud four\-level \[em] NXDN and NEXEDGE.
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.RE
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.PP
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The first two are recognised at once: nothing else transmits at those rates
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without pausing. The others share their shape with an ordinary digital voice
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call on the same system, so they are only called a control channel once the
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carrier has run unbroken for
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.B \-\-control\-seconds
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(20 s by default) \[em] long enough that a real conversation would have taken
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a breath. Raise that figure if digital voice calls are being skipped by
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mistake.
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.PP
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Being inside a band where trunking is common raises confidence but is never
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required: trunking is licensed on business pairs all over the spectrum.
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.PP
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Use
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.B \-\-keep\-control
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to record control channels anyway, which is what you want if you are feeding
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them to a decoder. Use
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.B \-\-lockout\-control
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to have each one written into the lock\-out list as it is found, so the
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scanner stops looking at it at all; with
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.B \-\-save\-lockouts
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on, that list survives a restart.
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.SH TRANSCRIPTS
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Anything the content check identifies as voice is passed to a speech
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recogniser, and the words are written to a
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.I _transcription.txt
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beside the recording. Only voice: running a recogniser over Morse or a data
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burst costs seconds and produces nothing.
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.PP
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One transcript per transmission, and none is ever overwritten \[em] the
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timestamp is part of the name, so two overs on one frequency cannot land on
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the same file.
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.PP
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With
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.B \-\-combine
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there is one recording per frequency, so there is one transcript per
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frequency, and each over is appended to it with the time it was heard. An
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unattended receiver keeps adding to that file night after night rather than
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starting it over.
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.PP
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A capture with nothing recognisable in it produces no file at all, rather
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than a directory of placeholders.
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.PP
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.BR saunterbrowse (1)
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reads these back, and lists any callsigns it finds in them with the licence
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they belong to.
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.SH HF RECEPTION
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These receivers cannot normally tune below about 24 MHz. Below that they can
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sample the antenna directly instead, which opens up shortwave: broadcast,
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amateur HF, marine, aviation. It is switched on automatically when a scan
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goes below 24 MHz. A direct connection to a suitable antenna is needed; the
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whip supplied with most dongles will hear very little.
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.SH SINGLE SIDEBAND
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Single sideband is the one mode where tuning must be exact: its demodulator
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is a filter that opens at the suppressed carrier, so tuning to the middle of
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the voice discards its lower half and shifts the rest. bandsaunter measures
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where the carrier is rather than assuming, and identifies upper from lower
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sideband by which way the signal's energy leans, so
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.B \-\-mode usb
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is not needed. The frequency in the filename is the carrier \[em] the
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frequency to dial into a radio.
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.SH FILES
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.TP
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.I ~/.config/bandsaunter/config.yaml
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The settings every run starts from.
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.TP
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.I ~/.config/bandsaunter/*.yaml
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Named profiles.
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.TP
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.I ~/bandsaunter/
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Where recordings, transcripts and logs are written, unless
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.B \-\-output
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says otherwise. Chosen on first run.
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.TP
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.I /etc/modprobe.d/blacklist-rtlsdr.conf
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Written by the package to keep the DVB-T television driver from claiming the
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receiver.
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.SH ENVIRONMENT
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.TP
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.B BANDSAUNTER_CONFIG_DIR
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Where settings and profiles live, instead of
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.IR ~/.config/bandsaunter .
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.TP
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.B BANDSAUNTER_LIBRTLSDR
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Path to a particular librtlsdr shared library, when the system one is not the
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one wanted.
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.TP
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.B BANDSAUNTER_DRIVER_MESSAGES
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Set to 1 to let the receiver driver print its own chatter, which is
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suppressed by default because it draws over the live display.
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.TP
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.B BANDSAUNTER_VENDOR_DIR
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Where a packaged speech recogniser is installed. Default
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.IR /usr/lib/bandsaunter/vendor .
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.TP
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.B BANDSAUNTER_MODEL_DIR
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Where packaged recognition models are installed. Default
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.IR /usr/share/bandsaunter/models .
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.TP
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.B BANDSAUNTER_ENGINE_OUTPUT
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Set to 1 to let the speech recogniser print its own progress.
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.SH EXAMPLES
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.TP
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.B bandsaunter
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Interactive menus: pick bands, change settings, start scanning.
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.TP
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.B bandsaunter scan \-b 2m \-b 70cm \-\-record 0 \-\-hang 6
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Scan two amateur bands, following each conversation to its end and allowing
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six seconds of silence between overs.
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.TP
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.B bandsaunter scan \-b marine\-vhf \-\-combine \-\-transcribe
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Scan marine VHF, keeping one growing file per channel with spoken timestamps,
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and write out what was said.
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.TP
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.B bandsaunter scan \-r 14.0M\-14.35M
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Scan the 20 metre amateur band. Direct sampling switches on by itself.
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.TP
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.B bandsaunter scan \-b all\-cw \-\-decode\-morse
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Sweep every Morse segment of every amateur band and decode what is heard.
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.TP
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.B bandsaunter scan \-b gmrs \-\-plain \-\-duration 3600
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Scan GMRS for an hour with line-per-hit output, suitable for a log file or a
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remote session.
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.TP
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.B bandsaunter config threshold_db=12
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Raise the squelch threshold and save it as the new default.
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.SH EXIT STATUS
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|
0 on success, 1 for a bad option or an unusable configuration, 2 when the
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receiver could not be opened.
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.SH SEE ALSO
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.BR saunterbrowse (1)
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\[em] browse and play back what a scan collected: the recordings list, their
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transcripts and their identifications, on one screen.
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.PP
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.BR rtl_test (1),
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.BR rtl_sdr (1),
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.BR espeak-ng (1)
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.PP
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The README shipped with the package covers the same ground at greater length,
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including why the detection thresholds are what they are.
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.SH BUGS
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The DVB-T television driver claims these dongles on sight. If the receiver
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cannot be opened, that is almost always why: the package blacklists the
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driver on install, but the module must be unloaded once with
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.B "rmmod dvb_usb_rtl28xxu"
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or the dongle replugged.
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'''
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def main() -> int:
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out = [HEAD.format(date=date.today().isoformat(),
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version=bandsaunter.__version__)]
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out += settings_section()
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out.append(TAIL)
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text = "\n".join(out)
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text = text.replace("\n\n", "\n") # troff dislikes blank lines
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target = Path(sys.argv[1] if len(sys.argv) > 1
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else Path(__file__).parent / "bandsaunter.1")
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target.write_text(text)
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print(target)
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return 0
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|
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if __name__ == "__main__":
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raise SystemExit(main())
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