.\" Generated by packaging/make-browse-man.py -- do not edit by hand. .TH SAUNTERBROWSE 1 "2026-08-29" "bandsaunter 2026-08-29_03" "User Commands" .SH NAME saunterbrowse \- read and listen to what a bandsaunter scan collected .SH SYNOPSIS .B saunterbrowse .RI [ DIRECTORY ] .RB [ \-\-sort .IR ORDER ] .RB [ \-\-filter .IR TEXT ] .RB [ \-\-player .IR CMD ] .RB [ \-\-list ] .RB [ \-\-callsigns ] .RB [ \-\-kml .RI [ FILE ]] .RB [ \-\-no\-lookup ] .SH DESCRIPTION A scan leaves a directory of recordings. Beside each one is a JSON file holding what the classifier made of it, and for speech a transcript of what was said. Reading that by hand means opening files one at a time and guessing which are worth playing. .PP .B saunterbrowse shows them as a list you move through with the arrow keys. The transcript of whichever recording is highlighted fills the top of the screen, because that is the part you actually want to read; underneath it are the identification, the bands the frequency falls in, and the list itself. Pressing Enter plays the recording. .PP With no .I DIRECTORY it opens the one the scanner writes to, taken from your saved settings, so it normally needs no arguments at all. .PP Recordings can also be dealt with as they are read. A key files one into saved/, investigate/ and noise/, another deletes it outright, and another locks its frequency out of every later scan. Nothing else is written: without one of those keys the browser only reads. .SH KEYS .TP .B "Up Down k j" Move through the recordings. .TP .B "PgUp PgDn" A screenful at a time. .TP .B "Home End" The first and the last. .TP .B Enter Play the highlighted recording. Playing a second one stops the first: two players talking over each other is worse than either alone. .TP .B Space Stop playing. With nothing playing, it starts, like Enter. .TP .B t Read the whole transcript full screen, scrolling with the arrow keys. Useful for a long net, where the panel at the top can only show the first few lines \[em] it says so when there is more. .TP .B / Filter. What you type is matched against the frequency, the filename, the identification and .I everything that was said, so "was the repeater mentioned" is a question you can ask directly. Enter accepts, Escape clears. .TP .B s Cycle the order: time, frequency, duration. .TP .B r Re-read the directory. A scan running in another window is still writing to it, and this picks up what has arrived since. .TP .B o Print the highlighted recording's path and quit, for piping into something else. .TP .B "S I N" File the highlighted recording into saved/, investigate/ and noise/ respectively \[em] the recording and every sidecar written beside it, together. See .B MANAGING THE RECORDINGS below. .TP .B u Put the last recording that was filed back where it came from. One level only, and a delete cannot be undone this way. .TP .B d Delete the highlighted recording and its sidecars for good. It asks first: this is the one key here that cannot be taken back. .TP .B m Lock the highlighted recording's frequency out, so that no later scan stops on it again. The frequency is written into your saved settings, the same list .BR bandsaunter (1) maintains, and takes effect on the next scan \[em] a scan already running read its settings when it started. .TP .B "? h" The list of keys, and which audio player was found. .TP .B q Quit. With a filter in force, Escape clears the filter first. .SH OPTIONS .TP .BI DIRECTORY Where the recordings are. Defaults to the scanner's output directory, or to .B $BANDSAUNTER_OUTPUT when that is set. .TP .BI \-\-sort " ORDER" Start in this order: time, frequency, duration. Time is newest first; duration is longest first. .TP .BI \-\-filter " TEXT" Start with only the recordings matching this, exactly as if it had been typed at the .B / prompt. .TP .BI \-\-player " CMD" The command used to play a recording. The path is appended as its last argument. By default the first of these that is installed is used: pw-play, paplay, aplay, play, ffplay, mpv. .TP .B \-\-callsigns Print every callsign heard in the directory, with the licence it belongs to and where and when it was heard, then exit. .TP .BI \-\-kml " [FILE]" Write a map of where the stations heard in this directory are licensed, and exit. Without a filename it writes .I callsigns.kml in the recordings directory \[em] the same file a scan writes, so a map built this way is continued by the next scan rather than duplicated. See .B THE MAP below. .TP .B \-\-no\-lookup Do not contact the licence database. Callsigns are still found and still described from their prefix; only the name and address are missing. .TP .B \-\-list Print one line per recording and exit, without drawing anything. This is what to use over a pipe, in a script, or anywhere there is no terminal. .TP .B \-V ", " \-\-version Print the version and exit. .SH SOUND Playback is handed to whichever player is installed rather than done in the program: the recordings are ordinary WAV files, every desktop already has something that plays them, and a browser that cannot start is worse than one that cannot play. If none is found, everything else still works and the message says which packages would fix it. .PP Over ssh there is usually no sound server at the far end. The browser and its transcripts work regardless; only Enter has nothing to do. .SH DETECTED CALLSIGNS Under the transcript, headed .BR "DETECTED CALLSIGNS:" , is every callsign heard in it, with the name and location on the licence. .PP Finding them is not a matter of one regular expression over the text as written. A speech recogniser is poor at callsigns \[em] they are not words, they are said one character at a time \[em] so it breaks them wherever the speaker paused and writes the phonetic alphabet down verbatim. It also joins the words back up, hyphenates them, spells them the way they sounded, and writes down the hesitation in the middle. "KU 0W", "K7 RA", "kilo uniform zero whiskey", "Whiskey\-One\-Alpha\-Whiskey", "WhiskeyOneAlphaWhiskey", "wiskey one alfa whisky" and "whiskey one alpha, uh, whiskey" are all one callsign each, and all of them are read back correctly. .PP A suffix is not part of the callsign. Nothing is joined across a slash, so .I W1AW/B is W1AW and not W1AWB, which belongs to nobody. .PP False positives are the thing to avoid: a browser that invents callsigns is worse than one that finds none. So a run of words is only accepted when none of its parts is an ordinary English word \[em] "or 3. Can you open 4" fits the shape once the punctuation is gone, and is not a callsign \[em] while a single token said in one breath is trusted, because W1BOY is a perfectly good callsign. .PP The lookup uses the FCC's own licence data, published at callook.info, which needs no account and no key. The callsign is the only thing sent, results are cached under .I ~/.cache/bandsaunter/ so the same net is looked up once however many nights it is recorded, and a lookup never delays the display: the entry says "looking up" and fills itself in. .PP .B \-\-no\-lookup contacts nothing at all. Callsigns are still found, and still described from their own structure \[em] the prefix is allocated by the ITU and the digit is the US licensing district, so a callsign says which country and which region it belongs to without any database. Outside the United States that is all there is; callook.info holds US licences only. .PP .B \-\-callsigns prints every callsign in the directory, who it belongs to, and each frequency and time it was heard on, then exits. .PP US amateur licence records are public by law, and include the street the licence was issued to, not merely the town. That is what is shown, and what is written into the map: holding it and not saying so would be worse than either showing it or not asking for it. .B \-\-no\-lookup asks for none of it. .SH THE MAP A licence says where its holder is, so a list of callsigns is also a map. The scanner writes one as it runs and .B \-\-kml builds one from recordings already on disk; both write the same file, so either can carry on from the other. .PP Each station is one placemark, not one per transmission: hearing the same repeater twenty times in an evening is one station, and twenty pins stacked on the same rooftop would say less than one. The pin holds the callsign, the licensee, the town, the grid square, and every frequency and time it was heard on, so clicking it answers "when did I hear this, and where on the dial". .PP The file is added to rather than replaced. A scan on Tuesday continues the map Monday made, which over a few weeks turns into a picture of what your aerial can actually reach. .PP Where the licence carries no coordinates the grid square is used instead, and the placemark says so, because a grid square is kilometres across where a licensed address is a street. A callsign with no licence on file at all is still recorded, in a folder named .IR "no location on file" , switched off by default: that a station was heard is worth keeping even when nothing says where it was. .PP KML is the format Google Earth uses. .BR qgis (1), .BR marble (1) and OsmAnd open it too, and it is XML, so a scan interrupted halfway through leaves a file that still opens. .SH MANAGING THE RECORDINGS A night's scan leaves hundreds of files, most of which are worth nothing and a few of which are the reason you left it running. Deciding which is which is what this program is for, and the keys that act on a recording are meant to be pressed once each, going down the list. .TP .B S Into .IR saved / \[em] keep this one. .TP .B I Into .IR investigate / \[em] come back to this one. .TP .B N Into .IR noise / \[em] not a signal worth keeping. .PP Each of these moves the whole capture \[em] the .IR .wav , the JSON sidecar, the raw IQ where it was kept, the transcript and the decoded data \[em] because a recording in one directory and its transcript in another is a pair nothing will ever put back together. If the move cannot be finished, whatever has already moved is put back: half a capture in each of two places is worse than none moved at all. .PP The subdirectories are ordinary directories inside the recordings directory, so a scan writing there never looks into them and never lists what is in them. To read what is in one, point the browser at it: .IP .EX saunterbrowse ~/bandsaunter/saved .EE .PP .B u puts the last one filed back. One step, not a history: it exists so that a mistyped key costs nothing, not so that an evening's sorting can be unwound. .PP .B d deletes instead, and asks first, because nothing puts that back. .PP .B m is the other half of the same job. A birdie, a pager transmitter or a data link that fills the recordings directory night after night is not a recording problem, it is a scanning problem, and this writes the frequency into the lock-out list in your settings file. The width comes from the .B lockout_width setting, so a lock-out is a channel rather than a single point. Locking out a frequency does not delete what has already been recorded on it \[em] the two keys are separate on purpose, and pressing both is the usual thing to do. .SH PICTURES Some recordings are not sounds. Slow-scan television, the NOAA weather satellites and the shortwave weather fax stations all send images as audio, and .BR bandsaunter (1) writes what it decodes as a PNG beside the recording. .PP Those are marked in the list by what they are \[em] "SSTV Martin M1 320x256" \[em] and the panel at the top of the screen gives the path of the file in full, wrapped rather than cut off, because a terminal cannot draw a PNG and saying exactly what to open is the most useful thing left. A weather satellite pass has three files: the whole frame, and each of the satellite's two sensors on its own. .PP .B o prints the picture's path rather than the recording's, for piping into an image viewer: .IP .EX saunterbrowse \-\-filter sstv \-\-list xdg\-open "$(saunterbrowse)" .EE .PP Filing a recording moves its pictures with it, and deleting one deletes them. .SH CALLSIGNS IN MORSE Most stations on the air never say a word. A repeater, a beacon or an unattended transmitter sends its callsign in Morse and stops, and what it sent takes the place of the transcript at the top of the screen, with the licence it belongs to underneath exactly as for speech. It is searchable with .B / like anything else. .PP Only the part of it that was not cut in half is looked at for a callsign. A capture opens when the squelch does, which is partway through a word as often as not, and what is left of that word can read as a whole one: .I K1AA caught halfway through is .IR K1A , which belongs to somebody else. .BR bandsaunter (1) describes how that is decided. The full text is shown either way. .SH DECODED DATA Where a capture carried data rather than speech, what was decoded takes the place of the transcript at the top of the screen: the kind of packet, and then the message. A pager's text, an APRS position report, or the bits and hex of a remote control. It is searchable with .B / like anything else, so "which page mentioned engine 4" is a question that can be asked here. .PP The text comes from the .I _data.txt beside the recording, or from the sidecar where there is none. .BR bandsaunter (1) describes how it is decoded and what has to be true before a decode is believed. .SH TRANSCRIPTS A transcript appears only where a recogniser produced one, which means the capture was judged to be speech and .B bandsaunter\-transcribe was installed at the time. Where there is none, the panel says which of the several reasons applies \[em] Morse, data, a bare carrier, or speech that was never offered to a recogniser \[em] because those want different things done about them. .PP Two places can hold the text: the JSON sidecar records what was recognised during the scan, and the .I _transcription.txt beside the recording is what a later re\-run wrote. The file wins, being the more recent of the two. .SH FILES .TP .I ~/bandsaunter/ Where recordings are written, unless the saved settings say otherwise. .TP .IR frequency \-\- date _ time \- modulation .wav A recording. .TP .IR ... .json Its measurements and identification. .TP .IR ... _transcription.txt What was said, where a recogniser heard speech. .TP .IR ... _data.txt What was decoded, where the capture carried data. .TP .IR saved /, investigate /, noise / Where the filing keys move recordings to. Created on first use; a scan never looks in them. .TP .I ~/.config/bandsaunter/config.yaml The settings the .B m key writes a locked-out frequency into. .SH ENVIRONMENT .TP .B BANDSAUNTER_OUTPUT The directory to open, overriding the saved settings. .SH EXAMPLES .PP .RS .EX saunterbrowse .EE .RE .PP Open the scanner's output directory. .PP .RS .EX saunterbrowse /mnt/recordings \-\-sort frequency .EE .RE .PP Browse somewhere else, grouped by channel rather than by time. .PP .RS .EX saunterbrowse \-\-list | grep \-i "mile marker" .EE .RE .PP Search the transcripts from a script. .PP .RS .EX saunterbrowse \-\-callsigns .EE .RE .PP Everyone who identified themselves, and where they were heard. .PP .RS .EX saunterbrowse \-\-kml ~/heard.kml .EE .RE .PP The same thing as a map, to open in Google Earth. .SH EXIT STATUS 0 on a clean exit, 1 when the directory holds no recordings, 2 when it does not exist or there is no terminal to draw on. .SH SEE ALSO .BR bandsaunter (1) .SH BUGS The list is read when the browser opens. Press .B r to pick up recordings a running scan has written since.