mirror of
https://github.com/nzp-team/fteqw.git
synced 2024-11-14 00:10:46 +00:00
6f00bc8e8a
git-svn-id: https://svn.code.sf.net/p/fteqw/code/trunk@5529 fc73d0e0-1445-4013-8a0c-d673dee63da5
543 lines
14 KiB
C
543 lines
14 KiB
C
#include "quakedef.h"
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#ifdef AVAIL_OGGVORBIS
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#define OV_EXCLUDE_STATIC_CALLBACKS
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#ifdef __MORPHOS__
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#include <exec/exec.h>
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#include <libraries/vorbisfile.h>
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#include <proto/exec.h>
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#include <proto/vorbisfile.h>
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#else
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#include <vorbis/vorbisfile.h>
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#endif
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#ifdef LIBVORBISFILE_STATIC
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#define p_ov_open_callbacks ov_open_callbacks
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#define p_ov_clear ov_clear
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#define p_ov_info ov_info
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#define p_ov_comment ov_comment
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#define p_ov_pcm_total ov_pcm_total
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#define p_ov_time_total ov_time_total
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#define p_ov_read ov_read
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#define p_ov_pcm_seek ov_pcm_seek
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#else
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#if defined(__MORPHOS__)
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#define oggvorbislibrary VorbisFileBase
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struct Library *VorbisFileBase;
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#else
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dllhandle_t *oggvorbislibrary;
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#endif
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#ifdef __MORPHOS__
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#define p_ov_open_callbacks(a, b, c, d, e) ov_open_callbacks(a, b, c, d, &e)
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#define p_ov_clear ov_clear
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#define p_ov_info ov_info
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#define p_ov_comment ov_comment
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#define p_ov_pcm_total ov_pcm_total
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#define p_ov_time_total ov_time_total
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#define p_ov_read ov_read
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#define p_ov_pcm_seek ov_pcm_seek
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#else
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int (VARGS *p_ov_open_callbacks) (void *datasource, OggVorbis_File *vf, char *initial, long ibytes, ov_callbacks callbacks);
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int (VARGS *p_ov_clear)(OggVorbis_File *vf);
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vorbis_info *(VARGS *p_ov_info)(OggVorbis_File *vf,int link);
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vorbis_comment *(VARGS *p_ov_comment) (OggVorbis_File *vf,int link);
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ogg_int64_t (VARGS *p_ov_pcm_total)(OggVorbis_File *vf,int i);
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double (VARGS *p_ov_time_total)(OggVorbis_File *vf,int i);
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long (VARGS *p_ov_read)(OggVorbis_File *vf,char *buffer,int length,int bigendianp,int word,int sgned,int *bitstream);
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int (VARGS *p_ov_pcm_seek)(OggVorbis_File *vf,ogg_int64_t pos);
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#endif
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#endif
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typedef struct {
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unsigned char *start; //file positions
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unsigned long length;
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unsigned long pos;
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int srcspeed;
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int srcchannels;
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qboolean nopurge;
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qboolean failed;
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char *tempbuffer;
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int tempbufferbytes;
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char *decodedbuffer;
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int decodedbufferbytes;
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int decodedbytestart;
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int decodedbytecount;
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quintptr_t pcmtotal;
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float timetotal;
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OggVorbis_File vf;
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sfx_t *s;
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} ovdecoderbuffer_t;
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static float QDECL OV_Query(struct sfx_s *sfx, struct sfxcache_s *buf, char *name, size_t namesize)
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{
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ovdecoderbuffer_t *dec = sfx->decoder.buf;
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if (!dec)
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return -1;
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if (dec->timetotal < 0)
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{
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dec->pcmtotal = p_ov_pcm_total(&dec->vf, -1);
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dec->timetotal = p_ov_time_total(&dec->vf, -1);
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}
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if (buf)
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{
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buf->data = NULL; //you're not meant to actually be using the data here
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buf->soundoffset = 0;
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buf->length = dec->pcmtotal;
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buf->numchannels = dec->srcchannels;
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buf->speed = dec->srcspeed;
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buf->width = 2;
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}
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if (name)
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{
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vorbis_comment *c = p_ov_comment(&dec->vf, -1);
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int i;
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const char *artist = NULL;
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const char *title = NULL;
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for (i = 0; i < c->comments; i++)
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{
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if (!strncmp(c->user_comments[i], "ARTIST=", 7))
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artist = c->user_comments[i]+7;
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else if (!strncmp(c->user_comments[i], "TITLE=", 6))
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title = c->user_comments[i]+6;
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}
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if (artist && title)
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Q_snprintfz(name, namesize, "%s - %s", artist, title);
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else if (title)
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Q_snprintfz(name, namesize, "%s", title);
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}
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return dec->timetotal;
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}
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static sfxcache_t *QDECL OV_DecodeSome(struct sfx_s *sfx, struct sfxcache_s *buf, ssamplepos_t start, int length)
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{
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extern int snd_speed;
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extern cvar_t snd_linearresample_stream;
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int bigendianp = bigendian;
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int current_section = 0;
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ovdecoderbuffer_t *dec = sfx->decoder.buf;
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int bytesread;
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int outspeed = snd_speed;
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// Con_Printf("Minlength = %03i ", minlength);
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start *= 2*dec->srcchannels;
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length *= 2*dec->srcchannels;
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if (length)
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{
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if (start < dec->decodedbytestart)
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{
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// Con_Printf("Rewound to %i\n", start);
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dec->failed = false;
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//check pos
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if (p_ov_pcm_seek(&dec->vf, start * (dec->srcspeed/(2.0*dec->srcchannels*outspeed))) == 0)
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{
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/*something rewound, purge clear the buffer*/
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dec->decodedbytecount = 0;
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dec->decodedbytestart = start;
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}
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}
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/* if (start > dec->decodedbytestart + dec->decodedbytecount)
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{
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dec->decodedbytestart = start;
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p_ov_pcm_seek(&dec->vf, (dec->decodedbytestart * dec->srcspeed) / outspeed);
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}
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*/
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if (dec->decodedbytecount > outspeed*8 && !dec->nopurge)
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{
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/*everything is okay, but our buffer is getting needlessly large.
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keep anything after the 'new' position, but discard all before that
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trim shouldn't be able to go negative
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*/
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int trim = start - dec->decodedbytestart;
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if (trim < 0)
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{
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dec->decodedbytecount = 0;
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dec->decodedbytestart = start;
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// Con_Printf("trim < 0\n");
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}
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else if (trim > dec->decodedbytecount)
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{
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if (0==p_ov_pcm_seek(&dec->vf, start * (dec->srcspeed/(2.0*dec->srcchannels*outspeed))))
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{
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dec->decodedbytecount = 0;
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dec->decodedbytestart = start;
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}
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// Con_Printf("trim > count\n");
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}
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else
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{
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// Con_Printf("trim retain\n");
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//FIXME: retain an extra half-second for dual+ sound devices running slightly out of sync
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memmove(dec->decodedbuffer, dec->decodedbuffer + trim, dec->decodedbytecount - trim);
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dec->decodedbytecount -= trim;
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dec->decodedbytestart += trim;
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}
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}
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for (;;)
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{
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if (dec->failed || start+length <= dec->decodedbytestart + dec->decodedbytecount)
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break;
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if (dec->decodedbufferbytes < start+length - dec->decodedbytestart + 4096) //expand if needed. 4096 seems to be the recommended size.
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{
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// Con_Printf("Expand buffer\n");
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dec->decodedbufferbytes = (start+length - dec->decodedbytestart) + max(outspeed, 4096); //over allocate, because we can.
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dec->decodedbuffer = BZ_Realloc(dec->decodedbuffer, dec->decodedbufferbytes);
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}
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if (outspeed == dec->srcspeed)
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{
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bytesread = p_ov_read(&dec->vf, dec->decodedbuffer+dec->decodedbytecount, (start+length) - (dec->decodedbytestart+dec->decodedbytecount), bigendianp, 2, 1, ¤t_section);
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if (bytesread <= 0)
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{
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if (bytesread != 0) //0==eof
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{
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dec->failed = true;
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Con_Printf("ogg decoding failed %i\n", bytesread);
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break;
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}
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if (start >= dec->decodedbytestart+dec->decodedbytecount)
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return NULL; //let the mixer know that we hit the end
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break;
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}
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}
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else
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{
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double scale = dec->srcspeed / (double)outspeed;
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int decodesize = dec->decodedbufferbytes-dec->decodedbytecount; //bytes available
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decodesize /= 2*dec->srcchannels; //convert bytes to frames
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decodesize = floor(decodesize * scale); //round down, so that the SND_ResampleStream won't overflow the target buffer.
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decodesize *= 2*dec->srcchannels; //convert from frames back to bytes
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if (decodesize > dec->tempbufferbytes)
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{
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dec->tempbuffer = BZ_Realloc(dec->tempbuffer, decodesize);
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dec->tempbufferbytes = decodesize;
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}
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bytesread = p_ov_read(&dec->vf, dec->tempbuffer, decodesize, bigendianp, 2, 1, ¤t_section);
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if (bytesread <= 0)
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{
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if (bytesread != 0) //0==eof
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{
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dec->failed = true;
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Con_Printf("ogg decoding failed %i\n", bytesread);
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return NULL;
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}
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if (start >= dec->decodedbytestart+dec->decodedbytecount)
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return NULL; //let the mixer know that we hit the end
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break;
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}
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SND_ResampleStream(dec->tempbuffer,
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dec->srcspeed,
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2,
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dec->srcchannels,
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bytesread / (2 * dec->srcchannels),
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dec->decodedbuffer+dec->decodedbytecount,
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outspeed,
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2,
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dec->srcchannels,
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snd_linearresample_stream.ival);
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bytesread /= 2*dec->srcchannels; //convert bytes to frames
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bytesread = bytesread / scale; //calculate the same ammount that SND_ResampleStream will have splurged (we should probably make the output count explicit).
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bytesread *= 2*dec->srcchannels; //convert frames to bytes
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}
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dec->decodedbytecount += bytesread;
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}
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}
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if (buf)
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{
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buf->data = dec->decodedbuffer;
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buf->soundoffset = dec->decodedbytestart / (2 * dec->srcchannels);
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buf->length = dec->decodedbytecount / (2 * dec->srcchannels);
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buf->numchannels = dec->srcchannels;
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buf->speed = snd_speed;
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buf->width = 2;
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}
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return buf;
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}
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/*static void OV_CanceledDecoder(void *ctx, void *data, size_t a, size_t b)
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{
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sfx_t *s = ctx;
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if (s->loadstate != SLS_LOADING)
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s->loadstate = SLS_NOTLOADED;
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}*/
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static void QDECL OV_CancelDecoder(sfx_t *s)
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{ //called when the sound is unloaded. the entire thing is going away.
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ovdecoderbuffer_t *dec;
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s->loadstate = SLS_FAILED;
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dec = s->decoder.buf;
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s->decoder.buf = NULL;
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s->decoder.purge = NULL;
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s->decoder.ended = NULL;
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s->decoder.querydata = NULL;
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s->decoder.decodedata = NULL;
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p_ov_clear (&dec->vf); //close the decoder
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if (dec->tempbuffer)
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{
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BZ_Free(dec->tempbuffer);
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dec->tempbufferbytes = 0;
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}
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BZ_Free(dec->decodedbuffer);
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dec->decodedbuffer = NULL;
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BZ_Free(dec);
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//due to the nature of message passing, we can get into a state where the main thread is going to flag us as loaded when we have already failed.
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//that is bad.
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//so post a message to the main thread to override it, just in case.
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// COM_AddWork(WG_MAIN, OV_CanceledDecoder, s, NULL, SLS_NOTLOADED, 0);
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s->loadstate = SLS_NOTLOADED;
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}
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static void QDECL OV_ClearDecoder(sfx_t *s)
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{ //called when the sound is no longer playing.
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ovdecoderbuffer_t *dec;
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dec = s->decoder.buf;
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if (dec->nopurge)
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{
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/* BZ_Free(dec->tempbuffer);
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dec->tempbuffer = NULL;
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dec->tempbufferbytes = 0;
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BZ_Free(dec->decodedbuffer);
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dec->decodedbuffer = NULL;
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dec->decodedbufferbytes = 0;
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dec->decodedbytestart = 0;
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dec->decodedbytecount = 0;
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*/
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return;
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}
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OV_CancelDecoder(s);
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}
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static size_t VARGS read_func (void *ptr, size_t size, size_t nmemb, void *datasource)
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{
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ovdecoderbuffer_t *buffer = datasource;
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int spare = buffer->length - buffer->pos;
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if (size*nmemb > spare)
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nmemb = spare / size;
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memcpy(ptr, &buffer->start[buffer->pos], size*nmemb);
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buffer->pos += size*nmemb;
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return nmemb;
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}
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static int VARGS seek_func (void *datasource, ogg_int64_t offset, int whence)
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{
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ovdecoderbuffer_t *buffer = datasource;
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switch(whence)
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{
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case SEEK_SET:
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buffer->pos = offset;
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break;
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case SEEK_END:
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buffer->pos = buffer->length+offset;
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break;
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case SEEK_CUR:
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buffer->pos+=offset;
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break;
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}
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return 0;
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}
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static int VARGS close_func (void *datasource)
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{
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ovdecoderbuffer_t *buffer = datasource;
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BZ_Free(buffer->start);
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buffer->start=0;
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return 0;
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}
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static long VARGS tell_func (void *datasource)
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{
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ovdecoderbuffer_t *buffer = datasource;
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return buffer->pos;
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}
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static ov_callbacks callbacks = {
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read_func,
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seek_func,
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close_func,
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tell_func,
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};
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static qboolean OV_StartDecode(unsigned char *start, unsigned long length, ovdecoderbuffer_t *buffer)
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{
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#ifndef LIBVORBISFILE_STATIC
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static qboolean tried;
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#ifndef __MORPHOS__
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static dllfunction_t funcs[] =
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{
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{(void*)&p_ov_open_callbacks, "ov_open_callbacks"},
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{(void*)&p_ov_comment, "ov_comment"},
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{(void*)&p_ov_pcm_total, "ov_pcm_total"},
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{(void*)&p_ov_time_total, "ov_time_total"},
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{(void*)&p_ov_clear, "ov_clear"},
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{(void*)&p_ov_info, "ov_info"},
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{(void*)&p_ov_read, "ov_read"},
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{(void*)&p_ov_pcm_seek, "ov_pcm_seek"},
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{NULL}
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};
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#endif
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if (!oggvorbislibrary && !tried)
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#if defined(__MORPHOS__)
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{
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VorbisFileBase = OpenLibrary("vorbisfile.library", 2);
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if (!VorbisFileBase)
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{
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Con_Printf("Unable to open vorbisfile.library version 2\n");
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}
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}
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#elif defined(_WIN32)
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{
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oggvorbislibrary = Sys_LoadLibrary("vorbisfile", funcs);
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if (!oggvorbislibrary)
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oggvorbislibrary = Sys_LoadLibrary("libvorbisfile", funcs);
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if (!oggvorbislibrary)
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{
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oggvorbislibrary = Sys_LoadLibrary("libvorbisfile-3", funcs);
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if (!oggvorbislibrary)
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oggvorbislibrary = Sys_LoadLibrary("libvorbisfile", funcs);
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}
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if (!oggvorbislibrary)
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Con_Printf("Couldn't load DLL: \"vorbisfile.dll\" or \"libvorbisfile-3\".\n");
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}
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#else
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{
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oggvorbislibrary = Sys_LoadLibrary("libvorbisfile.so.3", funcs);
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if (!oggvorbislibrary)
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oggvorbislibrary = Sys_LoadLibrary("libvorbisfile", funcs);
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if (!oggvorbislibrary)
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Con_Printf("Couldn't load library: \"libvorbisfile\".\n");
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}
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#endif
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tried = true;
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if (!oggvorbislibrary)
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{
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Con_Printf("ogg vorbis library is not loaded.\n");
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return false;
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}
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#endif
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buffer->start = start;
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buffer->length = length;
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buffer->pos = 0;
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if (p_ov_open_callbacks(buffer, &buffer->vf, NULL, 0, callbacks))
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{
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Con_Printf("Input %s does not appear to be an Ogg Vorbis bitstream.\n", buffer->s->name);
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return false;
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}
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/* Print the comments plus a few lines about the bitstream we're
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decoding */
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{
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// char **ptr=p_ov_comment(&buffer->vf,-1)->user_comments;
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vorbis_info *vi=p_ov_info(&buffer->vf,-1);
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if (vi->channels < 1 || vi->channels > 2)
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{
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p_ov_clear (&buffer->vf);
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Con_Printf("Input %s has %i channels.\n", buffer->s->name, vi->channels);
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return false;
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}
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buffer->srcchannels = vi->channels;
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buffer->srcspeed = vi->rate;
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/*
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while(*ptr){
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Con_Printf("%s\n",*ptr);
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ptr++;
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}
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Con_Printf("\nBitstream is %d channel, %ldHz\n",vi->channels,vi->rate);
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Con_Printf("\nDecoded length: %ld samples\n",
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(long)p_ov_pcm_total(&buffer->vf,-1));
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Con_Printf("Encoded by: %s\n\n",p_ov_comment(&buffer->vf,-1)->vendor);
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*/ }
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buffer->tempbuffer = NULL;
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buffer->tempbufferbytes = 0;
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buffer->start = BZ_Malloc(length);
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memcpy(buffer->start, start, length);
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buffer->timetotal = -1;
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return true;
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}
|
|
|
|
|
|
qboolean QDECL S_LoadOVSound (sfx_t *s, qbyte *data, size_t datalen, int sndspeed, qboolean forcedecode)
|
|
{
|
|
ovdecoderbuffer_t *buffer;
|
|
|
|
if (datalen < 4 || strncmp(data, "OggS", 4))
|
|
return false;
|
|
|
|
buffer = Z_Malloc(sizeof(ovdecoderbuffer_t));
|
|
|
|
buffer->decodedbytestart = 0;
|
|
buffer->decodedbytecount = 0;
|
|
buffer->nopurge = forcedecode;
|
|
buffer->s = s;
|
|
s->decoder.buf = buffer;
|
|
s->loopstart = -1;
|
|
|
|
if (!OV_StartDecode(data, datalen, buffer))
|
|
{
|
|
if (buffer->decodedbuffer)
|
|
{
|
|
BZ_Free(buffer->decodedbuffer);
|
|
buffer->decodedbuffer = NULL;
|
|
}
|
|
buffer->decodedbufferbytes = 0;
|
|
buffer->decodedbytestart = 0;
|
|
buffer->decodedbytecount = 0;
|
|
Z_Free(s->decoder.buf);
|
|
s->decoder.buf = NULL;
|
|
s->loadstate = SLS_FAILED; //failed!
|
|
return false;
|
|
}
|
|
s->decoder.decodedata = OV_DecodeSome;
|
|
s->decoder.querydata = OV_Query;
|
|
s->decoder.purge = OV_CancelDecoder;
|
|
s->decoder.ended = OV_ClearDecoder;
|
|
|
|
s->decoder.decodedata(s, NULL, 0, 100);
|
|
|
|
if (p_ov_time_total(&buffer->vf, -1) < 5) //short sounds might as well remain cached.
|
|
buffer->nopurge = true;
|
|
|
|
return true;
|
|
}
|
|
|
|
#endif
|
|
|