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IHH[]A\A]A^A_ÅlAIIE1AIHCI1H9\AIIE1tE1tkE1@vE?HAt3E1Ƀ set instance name (p.ex. JACK client) -o --output select audio output module --list-modules list the available modules --list-devices list the available output devices for given output module -a --audiodevice select audio device (for files, empty or - is stdout) -s --stdout write raw audio to stdout (-o raw -a -) -S --STDOUT play AND output stream to stdout -O --outfile raw output to given file (-o raw -a ) -w --wav write samples as WAV file in (-o wav -a ) --au write samples as Sun AU file in (-o au -a ) --cdr write samples as raw CD audio file in (-o cdr -a ) -r --rate set the audio output rate in Hz (default 44100) -R --inputrate set intput rate in Hz for conversion (if > 0) (always last operation before output) --speed play at given speed factor by resampling --resample set resampler method (fine (default) or dirty) -c --channels set channel count to -m --mono set output channel count to 1 --stereo set output channel count to 2 (default) -C --inputch set input channel count for conversion -e --encoding set output encoding (%s) --endian set output endianess: big, little, native (default) -E --inputenc set input encoding for conversion --inputend set input endianess: big, little, or native (default being same as output endianess) --byteswap swap byte order at end (possibly again) --list-encodings list of encoding short and long names --mix mixing matrix between input and output channels as linear factors, comma separated list for output channel 1, then 2, ... default unity if channel counts match, 0.5,0.5 for stereo to mono, 1,1 for the other way --filter apply filter(s) before preamp stage, with coeff as b_0,...,b_N,a_0,...,a_N (a_0=1 is mandatory) and multiple filters separated by ':'. -P

--preamp

amplify signal with

dB before output --offset apply PCM offset (floating point scaled in [-1:1] --clip select clipping mode: soft or hard for forced clipping also for floating point output, implicit (default) for implied clipping during conversion --dither enable dithering for conversions to integer --test-format return 0 if audio format set by preceeding options is supported --test-encodings print out possible encodings with given channels/rate --query-format print out default format for given device, if any -o h --headphones (aix/hp/sun) output on headphones -o s --speaker (aix/hp/sun) output on speaker -o l --lineout (aix/hp/sun) output to lineout -b --buffer set play buffer ("output cache") --preload fraction of buffer to fill before playback --devbuffer set device buffer in seconds; <= 0 means default --timelimit set time limit in PCM samples if >= 0 --seconds set time limit in seconds if >= 0 --source choose signal source: file (default), wave, sweep, pink, geiger (implied by --wave-freq, --wave-sweep, --pink-rows, --geiger-activity), or white for white noise --wave-freq set wave generator frequency or list of those with comma separation for enabling a generated test signal instead of standard input, empty value repeating the previous --wave-pat

set wave pattern(s) (out of those: %s ), --wave-phase

set wave phase shift(s), negative values inverting the pattern in time and empty value repeating the previous, --wave-direction overriding the negative bit --wave-direction set direction explicitly (the sign counts) --wave-sweep sweep a generated wave to frequency f, from first one specified for --wave-freq, using the first wave pattern and direction, too --sweep-time set frequency sweep duration to s seconds if > 0 (defaulting to timelimit if set, otherwise one second) --sweep-count set timelimit to exactly produce that many (smooth) sweeps --sweep-type set sweep type: lin(ear), qua(d) (default), exp(onential) --sweep-hard disable post-sweep smoothing for periodicity --genbuffer buffer size (limit) for signal generators, if > 0 (default), this enforces a periodic buffer also for non-periodic signals, benefit: less runtime CPU overhead --wave-limit alias for --genbuffer --pink-rows activate pink noise source and choose rows for ` the algorithm (<1 chooses default) --geiger-activity a Geiger-Mueller counter as source, with average events per second -t --test no output, just read and discard data (-o test) -v[*] --verbose increase verboselevel --aggressive tries to get higher priority (nice) -T --realtime tries to get realtime priority -? --help give compact help --longhelp give this long help listing --version give name / version string See the manpage out123(1) for more information. Also, note that any numeric arguments are parsed in C locale (pi is 3.14, not 3,14). out123: [src/out123.c:%s():%i] error: out123 error %i: %s out123: [src/out123.c:%s():%i] error: failed to copy stream to stdout: %s out123: missing argument for parameter: %s Devices for output module %s: out123: [src/out123.c:%s():%i] error: Failed to enumerate output devices: %s out123: [src/out123.c:%s():%i] error: Invalid run mode %d out123: no valid output rate with given speed and input rate Error setting output parameters. Do you need a usage reminder?out123: Aggressively trying to increase priority. Failed to aggressively increase priority. out123: Getting real-time priority out123: [src/out123.c:%s():%i] error: Unknown encoding '%s' given! out123: [src/out123.c:%s():%i] error: Unknown input encoding '%s' given! out123: [src/out123.c:%s():%i] error: Need %i mixing matrix entries, got %zu. Sampling rates out of range for the resampler.out123: resampling %zu samples @ %ld Hz to up to %zu samples @ %ld Hz Cannot compute resampler output count.out123: [src/out123.c:%s():%i] error: Bad value for clipping mode given: %s out123: input format: %li Hz, %i channels, %s out123: virtual output rate %li for actual speed %g out123: format: %li Hz, %i channels, %s out123: applying scaled offset: %f out123: [src/out123.c:%s():%i] error: Bad value for resampler type given: %s out123: [src/out123.c:%s():%i] error: Got no valid filter specification out of: %s out123: [src/out123.c:%s():%i] error: Cannot init filter %zu: %s out123: [src/out123.c:%s():%i] error: %zu errors during filter setup out123: [src/out123.c:%s():%i] error: setting up pink noise generator: %s out123: pink noise with %i generator rows (0=internal default) out123: [src/out123.c:%s():%i] error: setting up white noise generator: %s out123: [src/out123.c:%s():%i] error: setting up geiger generator: %s out123: geiger with actvity %g out123: [src/out123.c:%s():%i] error: bad sweep choice: %s out123: Warning: bad wave pattern: %s out123: [src/out123.c:%s():%i] error: setting up sweep generator: %s out123: %s sweep of %zu samples (%s) out123: from: %s @ %g Hz p %g out123: to: %s @ %g Hz p %g out123: [src/out123.c:%s():%i] error: unknown signal source: %s out123: Warning: wave setup ignored without specified frequency out123: [src/out123.c:%s():%i] error: setting up wave generator: %s out123: wave %zu: %s @ %g Hz (%g Hz) p %g out123: periodic signal table of %zu samples out123: live signal generation out123: Interrupted. Dropping the ball. 1.29.3UTF-8utf-8UTF8utf8biglittlenativewavaudiodevicecdrautestrawsourcewavegeigerOOM -T get realtime priority out123 1.29.3 %s: %s ???pinkrbOOM! (during mixing)smoothly periodicperiodic with phase jumpscut offexactlyLC_ALLLC_CTYPELANGout123: invalid argument: %s %-15s %s Failed to allocate output.Can't get realtime priority softimplicitout123: mixing in %s out123: out ch %i mix: %6.2fout123: converting via %s out123: preamp: %.1f dB%s out123: output real name: %s out123: This is a live sink. waver initditherfinedirtyresampling setupwhiteout123: white noise linquaexpout123: default sine wave buffer mixbuffer convbuffer filterbuffer ampbuffer resample convout123: clipped %zu samples direct mixdirect convpreampquadstdoutSTDOUToutfileverbosequietmonostereochannelsinputchoffsetinputratespeedclipheadphonesspeakerlineoutoutputlist-moduleslist-devicespreloadaggressiverealtimelonghelpversionencodingendianinputencinputendbyteswaplist-encodingstest-formattest-encodingsquery-formatnamedevbuffertimelimitsecondswave-patwave-freqwave-phasewave-directionwave-limitgenbufferpink-rowsgeiger-activitywave-sweepsweep-typesweep-timesweep-hardsweep-countresamplecheck_fatal_syncheck_fatal_outputlist_output_moduleslist_output_devicessetup_processingsetup_wavegenmainfatal_mallocopen_next_filepush_outputquery_formatgetencsset_endianset_outputvalidate_filterspecstore_filtersparse_filterspecsetcharoptiongj+???C;6 K@QPQ0`W 0 ЃH\0p`p P(Tp`T 0@ Dp,@X 0@\|$LhPPp P `@ @ zRx &D$4(I FJ w?:*3$"\ OtO&&&ԁ Ё ́؁ԁ ,Ё)F[ E AAP܁VB~(l DJAG hABCXDBBA A(G0P (A ABBE P (A ABBB {(C ABB(yBAD c DBA (  BAD uDBHLpBBB B(A0A8Dp 8D0A(B BBBA LBDD c ABH \ ABI \ ABA HIOtp8lfYDD q GBE AABA8LfYDD q GBE AABA8ԊfYDD q GBE AABA4pXDD u FAL DAAA8@fYDD q GBE AABA48tpXDD u FAL DAAA(p\FDA FAI(gFDA PAJ($gFDA PAJhBAF@lX}FBD D(D0 (A ABBJ e (A ABBE f (A ABBD f(A ABBhYDN A BDD EAF 1EAU$DFBA A(D@( qBAD { DBA LpEAD$htDFBA A(D@ED (pjFDA UAH4pBAG Q CBH  CBB DF F o0\=BBB B(D0C8D@q 8A0A(B BBBB J 8A0A(B BBBD aHNP`HH@s8A0A(B BBB(_AAD w(T0K(A 0L FBB B(A0A8D` iGpX WAH8T BBB B(D0D8DPp 8A0A(B BBBB  KBB B(G0D8DPm 8A0A(B BBBI u 8A0A(B BBBA  AP( puBAI` ABA 88 dL[+FBB B(A0J8JV Ie jGJABdABBBBItJKFMHFFI^ADBBBIsJKFIHHFIOIB^JOASUBP_At vhghRap 0 x  o     h" oohooo 00@0P0`0p00000000011 101@1P1`1p11111111122 202@2P2`2p22222222233 303@3P3`3p33333333344 404@4P4`4p44444444455 505@5P5`5p55555555566 606?𿚙??1@DjtusopvSviO}vvpiqimxxcxCpMPc`Xr pR P hi0io0zab hHTw@tt u?(}$-}e5>0tEExN tW`i`~o{ 0@v  @ww*5@ L/usr/lib/debug/.dwz/x86_64-linux-gnu/mpg123.debugυnዽt}x4aa17399a246d0fa83cbd117379de696e63e11f.debug:H.shstrtab.interp.note.gnu.property.note.gnu.build-id.note.ABI-tag.gnu.hash.dynsym.dynstr.gnu.version.gnu.version_r.rela.dyn.rela.plt.init.plt.got.plt.sec.text.fini.rodata.eh_frame_hdr.eh_frame.init_array.fini_array.dynamic.data.bss.gnu_debugaltlink.gnu_debuglink 880&hh$9 Go$Q  Y aonohh} Bh"h" 00 0 0 @6@6P6P6`<`<Ul 5 x x   `   F 4L "