pkgsrc-ng/math/octave/patches/patch-scripts_audio_wavread.m
2014-11-05 12:41:07 +01:00

38 lines
1.8 KiB
Mathematica

$NetBSD: patch-scripts_audio_wavread.m,v 1.1 2014/03/06 23:06:58 jperkin Exp $
Texinfo 5.x compatibility.
--- scripts/audio/wavread.m.orig 2013-02-21 20:19:24.000000000 +0000
+++ scripts/audio/wavread.m
@@ -18,21 +18,26 @@
## -*- texinfo -*-
## @deftypefn {Function File} {@var{y} =} wavread (@var{filename})
+## @deftypefnx {Function File} {[@var{y}, @var{Fs}, @var{bps}] =} wavread (@var{filename})
+## @deftypefnx {Function File} {[@dots{}] =} wavread (@var{filename}, @var{n})
+## @deftypefnx {Function File} {[@dots{}] =} wavread (@var{filename}, @var{n1} @var{n2})
+## @deftypefnx {Function File} {[@var{samples}, @var{channels}] =} wavread (@var{filename}, "size")
+##
## Load the RIFF/WAVE sound file @var{filename}, and return the samples
## in vector @var{y}. If the file contains multichannel data, then
## @var{y} is a matrix with the channels represented as columns.
##
-## @deftypefnx {Function File} {[@var{y}, @var{Fs}, @var{bps}] =} wavread (@var{filename})
+## @code{[@var{y}, @var{Fs}, @var{bps}] = wavread (@var{filename})}
## Additionally return the sample rate (@var{fs}) in Hz and the number of bits
## per sample (@var{bps}).
##
-## @deftypefnx {Function File} {[@dots{}] =} wavread (@var{filename}, @var{n})
+## @code{[@dots{}] = wavread (@var{filename}, @var{n})}
## Read only the first @var{n} samples from each channel.
##
-## @deftypefnx {Function File} {[@dots{}] =} wavread (@var{filename}, @var{n1} @var{n2})
+## @code{wavread (@var{filename}, @var{n1} @var{n2})}
## Read only samples @var{n1} through @var{n2} from each channel.
##
-## @deftypefnx {Function File} {[@var{samples}, @var{channels}] =} wavread (@var{filename}, "size")
+## @code{[@var{samples}, @var{channels}] = wavread (@var{filename}, "size")}
## Return the number of samples (@var{n}) and channels (@var{ch})
## instead of the audio data.
## @seealso{wavwrite}