view docs/html/sdlaudiocvt.html @ 1544:ab1e4c41ab71

Fixed bug #33 Mike Frysinger wrote: > with libsdl-1.2.9, some games (like bomberclone) started > segfaulting in Gentoo [...snip...] > the last change in the last hunk: [...snip...] > if i change the statement to read: > (table[which].blit_features & GetBlitFeatures()) == GetBlitFeatures() > bomberclone no longer segfaults on my box Alex Volkov wrote: > The test "(table[which].blit_features & GetBlitFeatures()) == > table[which].blit_features)" is correct, and the previous > "(table[which].cpu_mmx == SDL_HasMMX())" was actually broken. I think there is potentially a slightly different cause of the above problem. During the introduction of the Altivec code, the blit_table struct field 'alpha' got changed from a straightforward enum to a bitmask, which makes perfect sense by itself. However, now the table driven blitter selection code in SDL_CalculateBlitN() can choose the wrong blitters when searching for a NO_ALPHA blitter because of the following code: int a_need = 0; ... (a_need & table[which].alpha) == a_need && When searching through the normal_blit_2[] table, a SET_ALPHA blitter (like Blit_RGB565_ARGB8888) can now be selected instead of a NO_ALPHA one, causing alpha channel bits to appear in a non-alpha destination surface. I suppose this could theoretically be an indirect cause of the segfault mentioned above. I *think* this can be fixed by changing to int a_need = NO_ALPHA;
author Sam Lantinga <slouken@libsdl.org>
date Wed, 15 Mar 2006 15:47:49 +0000
parents 355632dca928
children
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><H1
><A
NAME="SDLAUDIOCVT"
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>SDL_AudioCVT</H1
><DIV
CLASS="REFNAMEDIV"
><A
NAME="AEN6884"
></A
><H2
>Name</H2
>SDL_AudioCVT&nbsp;--&nbsp;Audio Conversion Structure</DIV
><DIV
CLASS="REFSECT1"
><A
NAME="AEN6887"
></A
><H2
>Structure Definition</H2
><PRE
CLASS="PROGRAMLISTING"
>typedef struct{
  int needed;
  Uint16 src_format;
  Uint16 dest_format;
  double rate_incr;
  Uint8 *buf;
  int len;
  int len_cvt;
  int len_mult;
  double len_ratio;
  void (*filters[10])(struct SDL_AudioCVT *cvt, Uint16 format);
  int filter_index;
} SDL_AudioCVT;</PRE
></DIV
><DIV
CLASS="REFSECT1"
><A
NAME="AEN6890"
></A
><H2
>Structure Data</H2
><DIV
CLASS="INFORMALTABLE"
><A
NAME="AEN6892"
></A
><P
></P
><TABLE
BORDER="0"
CLASS="CALSTABLE"
><TBODY
><TR
><TD
ALIGN="LEFT"
VALIGN="TOP"
><TT
CLASS="STRUCTFIELD"
><I
>needed</I
></TT
></TD
><TD
ALIGN="LEFT"
VALIGN="TOP"
>Set to one if the conversion is possible</TD
></TR
><TR
><TD
ALIGN="LEFT"
VALIGN="TOP"
><TT
CLASS="STRUCTFIELD"
><I
>src_format</I
></TT
></TD
><TD
ALIGN="LEFT"
VALIGN="TOP"
>Audio format of the source</TD
></TR
><TR
><TD
ALIGN="LEFT"
VALIGN="TOP"
><TT
CLASS="STRUCTFIELD"
><I
>dest_format</I
></TT
></TD
><TD
ALIGN="LEFT"
VALIGN="TOP"
>Audio format of the destination</TD
></TR
><TR
><TD
ALIGN="LEFT"
VALIGN="TOP"
><TT
CLASS="STRUCTFIELD"
><I
>rate_incr</I
></TT
></TD
><TD
ALIGN="LEFT"
VALIGN="TOP"
>Rate conversion increment</TD
></TR
><TR
><TD
ALIGN="LEFT"
VALIGN="TOP"
><TT
CLASS="STRUCTFIELD"
><I
>buf</I
></TT
></TD
><TD
ALIGN="LEFT"
VALIGN="TOP"
>Audio buffer</TD
></TR
><TR
><TD
ALIGN="LEFT"
VALIGN="TOP"
><TT
CLASS="STRUCTFIELD"
><I
>len</I
></TT
></TD
><TD
ALIGN="LEFT"
VALIGN="TOP"
>Length of the original audio buffer in bytes</TD
></TR
><TR
><TD
ALIGN="LEFT"
VALIGN="TOP"
><TT
CLASS="STRUCTFIELD"
><I
>len_cvt</I
></TT
></TD
><TD
ALIGN="LEFT"
VALIGN="TOP"
>Length of converted audio buffer in bytes (calculated)</TD
></TR
><TR
><TD
ALIGN="LEFT"
VALIGN="TOP"
><TT
CLASS="STRUCTFIELD"
><I
>len_mult</I
></TT
></TD
><TD
ALIGN="LEFT"
VALIGN="TOP"
><TT
CLASS="STRUCTFIELD"
><I
>buf</I
></TT
> must be <TT
CLASS="STRUCTFIELD"
><I
>len</I
></TT
>*<TT
CLASS="STRUCTFIELD"
><I
>len_mult</I
></TT
> bytes in size(calculated)</TD
></TR
><TR
><TD
ALIGN="LEFT"
VALIGN="TOP"
><TT
CLASS="STRUCTFIELD"
><I
>len_ratio</I
></TT
></TD
><TD
ALIGN="LEFT"
VALIGN="TOP"
>Final audio size is <TT
CLASS="STRUCTFIELD"
><I
>len</I
></TT
>*<TT
CLASS="STRUCTFIELD"
><I
>len_ratio</I
></TT
></TD
></TR
><TR
><TD
ALIGN="LEFT"
VALIGN="TOP"
><TT
CLASS="STRUCTFIELD"
><I
>filters[10](..)</I
></TT
></TD
><TD
ALIGN="LEFT"
VALIGN="TOP"
>Pointers to functions needed for this conversion</TD
></TR
><TR
><TD
ALIGN="LEFT"
VALIGN="TOP"
><TT
CLASS="STRUCTFIELD"
><I
>filter_index</I
></TT
></TD
><TD
ALIGN="LEFT"
VALIGN="TOP"
>Current conversion function</TD
></TR
></TBODY
></TABLE
><P
></P
></DIV
></DIV
><DIV
CLASS="REFSECT1"
><A
NAME="AEN6944"
></A
><H2
>Description</H2
><P
>The <SPAN
CLASS="STRUCTNAME"
>SDL_AudioCVT</SPAN
> is used to convert audio data between different formats. A <SPAN
CLASS="STRUCTNAME"
>SDL_AudioCVT</SPAN
> structure is created with the <A
HREF="sdlbuildaudiocvt.html"
><TT
CLASS="FUNCTION"
>SDL_BuildAudioCVT</TT
></A
> function, while the actual conversion is done by the <A
HREF="sdlconvertaudio.html"
><TT
CLASS="FUNCTION"
>SDL_ConvertAudio</TT
></A
> function.</P
><P
>Many of the fields in the <SPAN
CLASS="STRUCTNAME"
>SDL_AudioCVT</SPAN
> structure should be considered private and their function will not be discussed here.</P
><P
></P
><DIV
CLASS="VARIABLELIST"
><DL
><DT
><SPAN
CLASS="TYPE"
>Uint8 *</SPAN
><TT
CLASS="STRUCTFIELD"
><I
>buf</I
></TT
></DT
><DD
><P
>This points to the audio data that will be used in the conversion. It is both the source and the destination, which means the converted audio data overwrites the original data. It also means that the converted data may be larger than the original data (if you were converting from 8-bit to 16-bit, for instance), so you must ensure <TT
CLASS="STRUCTFIELD"
><I
>buf</I
></TT
> is large enough. See below.</P
></DD
><DT
><SPAN
CLASS="TYPE"
>int</SPAN
> <TT
CLASS="STRUCTFIELD"
><I
>len</I
></TT
></DT
><DD
><P
>This is the length of the original audio data in bytes.</P
></DD
><DT
><SPAN
CLASS="TYPE"
>int</SPAN
> <TT
CLASS="STRUCTFIELD"
><I
>len_mult</I
></TT
></DT
><DD
><P
>As explained above, the audio buffer needs to be big enough to store the converted data, which may be bigger than the original audio data. The length of <TT
CLASS="STRUCTFIELD"
><I
>buf</I
></TT
> should be <TT
CLASS="STRUCTFIELD"
><I
>len</I
></TT
>*<TT
CLASS="STRUCTFIELD"
><I
>len_mult</I
></TT
>.</P
></DD
><DT
><SPAN
CLASS="TYPE"
>double</SPAN
> <TT
CLASS="STRUCTFIELD"
><I
>len_ratio</I
></TT
></DT
><DD
><P
>When you have finished converting your audio data, you need to know how much of your audio buffer is valid. <TT
CLASS="STRUCTFIELD"
><I
>len</I
></TT
>*<TT
CLASS="STRUCTFIELD"
><I
>len_ratio</I
></TT
> is the size of the converted audio data in bytes. This is very similar to <TT
CLASS="STRUCTFIELD"
><I
>len_mult</I
></TT
>, however when the convert audio data is shorter than the original <TT
CLASS="STRUCTFIELD"
><I
>len_mult</I
></TT
> would be 1. <TT
CLASS="STRUCTFIELD"
><I
>len_ratio</I
></TT
>, on the other hand, would be a fractional number between 0 and 1.</P
></DD
></DL
></DIV
></DIV
><DIV
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><A
NAME="AEN6989"
></A
><H2
>See Also</H2
><P
><A
HREF="sdlbuildaudiocvt.html"
><TT
CLASS="FUNCTION"
>SDL_BuildAudioCVT</TT
></A
>,
<A
HREF="sdlconvertaudio.html"
><TT
CLASS="FUNCTION"
>SDL_ConvertAudio</TT
></A
>,
<A
HREF="sdlaudiospec.html"
><SPAN
CLASS="STRUCTNAME"
>SDL_AudioSpec</SPAN
></A
></P
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