A phone call in the middle of a dictation left two choices: send what
was said so far off to be transcribed, or throw it away. Both end the
sentence you were in the middle of. Now the recording can be held: the
microphone stays ours, what was said before the pause stays in the
buffer, and what is said during it is dropped.
The capture program keeps running and keeps handing blocks over, which
are read and thrown away rather than left in the pipe. Stopping it
instead would mean asking the sound server for the device again on the
way back, and that is the one moment another application can take it: a
recording would be lost to the phone call it was paused for.
The clock stops with it. Paused time is time the recording does not
have, so the indicator and the length limit both go by what was
actually captured, and a five minute limit is not spent waiting.
The indicator says so as well, since a pulsing dot, moving bars and a
counting clock otherwise all say the words are still going in: the
ribbon freezes where the pause found it and turns amber behind two
bars. The tray menu holds and resumes it, `dikte pause` does, and so
does a global shortcut, which starts empty because holding a recording
is not something a keyboard has a habit for.
Dictation and a command to the agent both, whichever is recording. A
meeting is left out: it writes to a file as it goes and keeps two
streams aligned itself, and neither of those wants a hole in it.
A recording is never deleted for being disappointing. A microphone that
handed over nothing still leaves the right channel, which is everyone
else, and an hour of them is worth more than the empty channel costs; the
one thing the user cannot get back is the half that was there. So the
exact-zero check stays and stops throwing the file away: it says what the
microphone did, in a tray warning next to the recording being written up,
and the minutes are produced from what there is.
Reading the two capture pipes in turn from one thread put the failure it
was meant to fix back in a worse place. A microphone that stops delivering
leaves that read waiting forever, and the far side is not read either
until its pipe fills and its ffmpeg stops writing into it: the meeting
freezes, the levels sit still, and nothing is said for as long as nobody
looks. Each stream now has a reader of its own and a queue, so neither can
hold the other up, and a side that has said nothing for STALL_SECONDS ends
the recording the way a dead ffmpeg already did, out loud and keeping what
was captured.
Which system needs how many processes belongs in the table with everything
else that differs, so meeting() returns the list of commands it takes:
one on PulseAudio, one per device on a Mac. meeting_commands() is the
chooser again rather than a function with a Mac inside it, and the empty
entry in COREAUDIO is gone. The two AVFoundation targets are resolved
against a single device listing, which costs one ffmpeg run instead of two
and cannot see the indexes renumber between the microphone and the far
side.
Co-authored-by: benfirad <[email protected]>
--raw arrived in 1.4, the same release that stopped reading a bare "-" as
raw on its own. The split is there rather than at 1.0: Ubuntu 24.10 and
anything else on 1.2 refuses the option too, and 1.4 onwards writes a
container around the stream without it.
Asking the installed binary meant the command tests ran pw-record --help
four times for real, on a machine whose answer decides what they see, which
the module docstring promises they never do. They pin the answer in setUp,
and the reading itself gets its own class, the empty help nobody covered
included.
recording_command became a table of sound systems while this branch was
open, so the pw-record command it patched now lives in _pulse_record. The
check moves there with it, and nothing else about it changes.
Dikte already chose its clipboard programs once instead of in every
function; macOS joins that table rather than adding a branch to each one.
A Mac copies through pbcopy and presses Cmd+V straight into CoreGraphics,
records through AVFoundation, and asks Carbon for its global shortcuts.
The three tables are paste.Desktop, audio.Sound, and the pair of
predicates in hotkey.py. Each reads sys.platform inside the chooser, so a
test can stand somewhere else: 697 of the 737 tests now run on any
machine, the Wayland and X11 halves included, and the suite passes whole
whichever system it is run on.
Two things a Mac does not have needed saying rather than pretending:
there is no shortcut registry to install into, so Settings offers no
Install button and the listener is the mechanism instead of a fallback;
and nothing is offered as the sound the speakers are playing, so a
meeting needs BlackHole or Loopback and says so. The KDE-only labels
around them were already wrong on GNOME, and now name whichever desktop
is there.
Co-authored-by: firat <[email protected]>
Left alone, parec buffers about two seconds and then hands the lot over at
once. Measured against the chunk the level meter reads:
parec, as it was longest gap 2005 ms
parec --latency-msec=64 longest gap 86 ms
pw-record longest gap 129 ms
On a machine that has parec, which is every PulseAudio one and every PipeWire
one with the compatibility service, the waveform stood still and then jumped,
looking like a microphone that was not picking anything up. The recording
itself was fine, but the tail of one can be lost that way too: stop() ends the
process, and whatever is still held back goes with it.
The number asked for is the meter's own chunk, which is the unit the rest of
this file is measured in.
The pump now says when the capture ended with nothing captured, which is worth
saying: parec refusing the device looks like silence otherwise. But stop() ends
it the same way, so a recording shorter than 0.3 s raised that alarm first and
"Recording too short" second, sending the user after a sound server that is
fine. It follows the flag MeetingRecorder already carries for this.
test_desktop_compat.py moves into the files for the modules it covers, so a
test is where the next person looking at that module will find it.
Who said what is the hard part of a meeting transcript, and the usual answer
is to hand one mixed recording to a model and ask it to tell the voices apart.
That guess is wrong often enough to be worse than useless in minutes, where a
decision attributed to the wrong person is a decision nobody made.
So the question never reaches a model. ffmpeg records the microphone and the
default sink's monitor as one stereo stream, you on the left and everyone else
on the right, and one process reading both is what keeps them aligned over an
hour. Each channel is transcribed on its own and the two are interleaved on a
single timeline, so attribution is settled by the wire a voice arrived on.
What a microphone picks up from the speakers lands on both channels; our copy
is dropped when it overlaps theirs in time and says nearly the same thing.
The stream is written to disk as it arrives rather than held in memory, so
length costs nothing and a crash costs the tail instead of the whole meeting.
Every stage the run reaches is recorded in meetings.jsonl, so a failure while
summarising does not throw away the transcription of an hour of audio: the
retry reads the transcript back out of the document and picks up from there.
A run that dies keeps its recording whether or not audio is being kept.
The minutes model is configured on its own, under Settings, with its own
prompt, and it is told who was expected in the room so the names come out
spelled right. It is told outright that the transcript is a record of other
people talking, not instructions addressed to it.
The built-in listener now holds several bindings rather than one, and the KDE
side is parameterised by desktop id, so the meeting toggle gets a shortcut of
its own on the same footing as the dictation one.
The screenshots were downscaled to 430 px wide, which made the UI text
blurry. Restore them at native 1292 px as lossless WebP, which is also
half the size of the original PNGs (72 KB against 155 KB for the largest).
Rewrite every em dash in prose, comments, docstrings and interface strings
as ordinary punctuation.
Ctrl+Space starts and stops a recording. The audio goes to OpenAI for
transcription, a model on OpenRouter strips the fillers and restores
punctuation, and the result is copied and pasted into the focused window.
Only the Python standard library and PyQt6 — HTTP, multipart uploads and
WAV writing are all hand-rolled.
- pw-record captures raw 16 kHz mono PCM with a live level meter
- the corner indicator is drawn through XWayland, since a Wayland client
cannot position its own window
- silence is caught before it costs an API call, relative to each
recording's own noise floor, plus a filter for the stock phrases models
invent when handed silence
- audio and video files can be transcribed too, optionally with [mm:ss]
timestamps, chunked through ffmpeg for long inputs
- global shortcut installs as a KDE custom shortcut, with an evdev
listener as a fallback until the session is restarted
- Turkish and English interface, following the system locale by default