f40bfc9267
Change-Id: Id7f4717d51ed02d67cb9f9cb3c0ada4a81843f97 Reviewed-on: http://gerrit.rockbox.org/137 Reviewed-by: Nils Wallménius <nils@rockbox.org> Tested-by: Nils Wallménius <nils@rockbox.org>
416 lines
13 KiB
C
416 lines
13 KiB
C
/********************************************************************
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* *
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* THIS FILE IS PART OF THE OggVorbis 'TREMOR' CODEC SOURCE CODE. *
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* *
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* USE, DISTRIBUTION AND REPRODUCTION OF THIS LIBRARY SOURCE IS *
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* GOVERNED BY A BSD-STYLE SOURCE LICENSE INCLUDED WITH THIS SOURCE *
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* IN 'COPYING'. PLEASE READ THESE TERMS BEFORE DISTRIBUTING. *
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* *
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* THE OggVorbis 'TREMOR' SOURCE CODE IS (C) COPYRIGHT 1994-2002 *
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* BY THE Xiph.Org FOUNDATION http://www.xiph.org/ *
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* *
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********************************************************************
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function: channel mapping 0 implementation
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********************************************************************/
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#include "config-tremor.h"
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#include <stdio.h>
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#include <string.h>
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#include <math.h>
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#include "ogg.h"
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#include "ivorbiscodec.h"
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#include "codeclib.h"
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#include "codec_internal.h"
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#include "codebook.h"
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#include "window.h"
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#include "registry.h"
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#include "misc.h"
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#include <codecs/lib/codeclib.h>
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/* simplistic, wasteful way of doing this (unique lookup for each
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mode/submapping); there should be a central repository for
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identical lookups. That will require minor work, so I'm putting it
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off as low priority.
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Why a lookup for each backend in a given mode? Because the
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blocksize is set by the mode, and low backend lookups may require
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parameters from other areas of the mode/mapping */
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typedef struct {
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vorbis_info_mode *mode;
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vorbis_info_mapping0 *map;
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vorbis_look_floor **floor_look;
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vorbis_look_residue **residue_look;
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vorbis_func_floor **floor_func;
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vorbis_func_residue **residue_func;
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int ch;
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long lastframe; /* if a different mode is called, we need to
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invalidate decay */
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} vorbis_look_mapping0;
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static void mapping0_free_info(vorbis_info_mapping *i){
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vorbis_info_mapping0 *info=(vorbis_info_mapping0 *)i;
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if(info){
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memset(info,0,sizeof(*info));
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_ogg_free(info);
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}
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}
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static void mapping0_free_look(vorbis_look_mapping *look){
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int i;
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vorbis_look_mapping0 *l=(vorbis_look_mapping0 *)look;
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if(l){
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for(i=0;i<l->map->submaps;i++){
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l->floor_func[i]->free_look(l->floor_look[i]);
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l->residue_func[i]->free_look(l->residue_look[i]);
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}
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_ogg_free(l->floor_func);
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_ogg_free(l->residue_func);
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_ogg_free(l->floor_look);
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_ogg_free(l->residue_look);
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memset(l,0,sizeof(*l));
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_ogg_free(l);
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}
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}
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static vorbis_look_mapping *mapping0_look(vorbis_dsp_state *vd,vorbis_info_mode *vm,
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vorbis_info_mapping *m){
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int i;
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vorbis_info *vi=vd->vi;
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codec_setup_info *ci=(codec_setup_info *)vi->codec_setup;
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vorbis_look_mapping0 *look=(vorbis_look_mapping0 *)_ogg_calloc(1,sizeof(*look));
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vorbis_info_mapping0 *info=look->map=(vorbis_info_mapping0 *)m;
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look->mode=vm;
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look->floor_look=(vorbis_look_floor **)_ogg_calloc(info->submaps,sizeof(*look->floor_look));
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look->residue_look=(vorbis_look_residue **)_ogg_calloc(info->submaps,sizeof(*look->residue_look));
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look->floor_func=(vorbis_func_floor **)_ogg_calloc(info->submaps,sizeof(*look->floor_func));
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look->residue_func=(vorbis_func_residue **)_ogg_calloc(info->submaps,sizeof(*look->residue_func));
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for(i=0;i<info->submaps;i++){
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int floornum=info->floorsubmap[i];
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int resnum=info->residuesubmap[i];
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look->floor_func[i]=_floor_P[ci->floor_type[floornum]];
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look->floor_look[i]=look->floor_func[i]->
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look(vd,vm,ci->floor_param[floornum]);
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look->residue_func[i]=_residue_P[ci->residue_type[resnum]];
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look->residue_look[i]=look->residue_func[i]->
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look(vd,vm,ci->residue_param[resnum]);
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}
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look->ch=vi->channels;
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return(look);
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}
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static int ilog(unsigned int v){
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int ret=0;
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if(v)--v;
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while(v){
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ret++;
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v>>=1;
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}
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return(ret);
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}
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/* also responsible for range checking */
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static vorbis_info_mapping *mapping0_unpack(vorbis_info *vi,oggpack_buffer *opb){
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int i,b;
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vorbis_info_mapping0 *info=(vorbis_info_mapping0 *)_ogg_calloc(1,sizeof(*info));
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codec_setup_info *ci=(codec_setup_info *)vi->codec_setup;
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memset(info,0,sizeof(*info));
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b=oggpack_read(opb,1);
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if(b<0)goto err_out;
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if(b){
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info->submaps=oggpack_read(opb,4)+1;
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if(info->submaps<=0)goto err_out;
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}else
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info->submaps=1;
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b=oggpack_read(opb,1);
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if(b<0)goto err_out;
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if(b){
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info->coupling_steps=oggpack_read(opb,8)+1;
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if(info->coupling_steps<=0)goto err_out;
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for(i=0;i<info->coupling_steps;i++){
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int testM=oggpack_read(opb,ilog(vi->channels));
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info->coupling_mag[i]=testM;
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int testA=oggpack_read(opb,ilog(vi->channels));
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info->coupling_ang[i]=testA;
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if(testM<0 ||
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testA<0 ||
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testM==testA ||
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testM>=vi->channels ||
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testA>=vi->channels) goto err_out;
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}
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}
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if(oggpack_read(opb,2)!=0)goto err_out; /* 2,3:reserved */
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if(info->submaps>1){
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for(i=0;i<vi->channels;i++){
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info->chmuxlist[i]=oggpack_read(opb,4);
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if(info->chmuxlist[i]>=info->submaps || info->chmuxlist[i]<0)goto err_out;
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}
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}
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for(i=0;i<info->submaps;i++){
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int temp=oggpack_read(opb,8);
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if(temp>=ci->times)goto err_out;
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info->floorsubmap[i]=oggpack_read(opb,8);
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if(info->floorsubmap[i]>=ci->floors || info->floorsubmap[i]<0)goto err_out;
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info->residuesubmap[i]=oggpack_read(opb,8);
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if(info->residuesubmap[i]>=ci->residues || info->residuesubmap[i]<0)
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goto err_out;
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}
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return info;
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err_out:
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mapping0_free_info(info);
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return(NULL);
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}
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#ifdef _ARM_ASSEM_
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#define MAGANG( _mag, _ang )\
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{\
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register int temp;\
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asm( "mov %[temp], %[ang]\n\t"\
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"cmp %[mag], #0\n\t"\
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"rsble %[temp], %[temp], #0\n\t"\
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"cmp %[ang], #0\n\t"\
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"subgt %[ang], %[mag], %[temp]\n\t"\
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"movle %[ang], %[mag]\n\t"\
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"addle %[mag], %[mag], %[temp]\n\t"\
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: [mag] "+r" ( ( _mag ) ), [ang] "+r" ( ( _ang ) ), [temp] "=&r" (temp)\
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:\
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: "cc" );\
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}
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static inline void channel_couple(ogg_int32_t *pcmM, ogg_int32_t *pcmA, int n)
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{
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ogg_int32_t * const pcmMend = pcmM + n/2;
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while(LIKELY(pcmM < pcmMend))
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{
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register int M0 asm("r2"),M1 asm("r3"),M2 asm("r4"),M3 asm("r5");
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register int A0 asm("r6"),A1 asm("r7"),A2 asm("r8"),A3 asm("r9");
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asm volatile( "ldmia %[pcmM], {%[M0], %[M1], %[M2], %[M3]}\n\t"
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"ldmia %[pcmA], {%[A0], %[A1], %[A2], %[A3]}\n\t"
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: [M0] "=r" (M0), [M1] "=r" (M1), [M2] "=r" (M2), [M3] "=r" (M3),
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[A0] "=r" (A0), [A1] "=r" (A1), [A2] "=r" (A2), [A3] "=r" (A3)
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: [pcmM] "r" (pcmM), [pcmA] "r" (pcmA)
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: "memory" );
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MAGANG( M0, A0 );
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MAGANG( M1, A1 );
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MAGANG( M2, A2 );
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MAGANG( M3, A3 );
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asm volatile( "stmia %[pcmM]!, {%[M0], %[M1], %[M2], %[M3]}\n\t"
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"stmia %[pcmA]!, {%[A0], %[A1], %[A2], %[A3]}\n\t"
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: [pcmM] "+r" (pcmM), [pcmA] "+r" (pcmA)
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: [M0] "r" (M0), [M1] "r" (M1), [M2] "r" (M2), [M3] "r" (M3),
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[A0] "r" (A0), [A1] "r" (A1), [A2] "r" (A2), [A3] "r" (A3)
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: "memory" );
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}
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}
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#elif defined CPU_COLDFIRE
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#define MAGANG( _mag, _ang, _off )\
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{\
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asm volatile( "tst.l %[mag]\n\t"\
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"bgt.s 1f\n\t"\
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"neg.l %[ang]\n\t" /* neg sets cc so we might as well jump */ \
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"ble.s 2f\n\t"\
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".word 0x51fb\n\t" /* trapf.l, shadow next 2 insns */ \
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/* if we didn't jump, the next test will */ \
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/* false anyway */ \
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"1:\n\t"\
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"tst.l %[ang]\n\t"\
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"bgt.s 2f\n\t"\
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"add.l %[mag], %[ang]\n\t"\
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"move.l %[ang], (" #_off ", %[pcmM])\n\t"\
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".word 0x51fa\n\t" /* trapf.w, shadow next insn */ \
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"2:\n\t"\
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"sub.l %[ang], %[mag]\n\t"\
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"move.l %[mag], (%[pcmA])+\n\t"\
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: [mag] "+r" ( ( _mag ) ), [ang] "+d" ( ( _ang ) ),\
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[pcmA] "+a" (pcmA)\
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: [pcmM] "a" (pcmM)\
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: "cc", "memory" );\
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}
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static inline void channel_couple(ogg_int32_t *pcmM, ogg_int32_t *pcmA, unsigned int n)
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{
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ogg_int32_t * const pcmMend = pcmM + n/2;
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while(LIKELY(pcmM < pcmMend))
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{
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register int M0 asm("a2"),M1 asm("a3"),M2 asm("a4"),M3 asm("a5");
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register int A0 asm("d2"),A1 asm("d3"),A2 asm("d4"),A3 asm("d5");
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asm volatile( "movem.l (%[pcmM]), %[M0]-%[M3]\n\t"
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"movem.l (%[pcmA]), %[A0]-%[A3]\n\t"
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: [M0] "=r" (M0), [M1] "=r" (M1), [M2] "=r" (M2), [M3] "=r" (M3),
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[A0] "=r" (A0), [A1] "=r" (A1), [A2] "=r" (A2), [A3] "=r" (A3)
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: [pcmM] "a" (pcmM), [pcmA] "a" (pcmA) );
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/* use offsets instead of autoinc since the store to pcmM is conditional */
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MAGANG( M0, A0, 0 );
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MAGANG( M1, A1, 4 );
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MAGANG( M2, A2, 8 );
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MAGANG( M3, A3, 12 );
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asm volatile( "lea.l (4*4, %[pcmM]), %[pcmM]\n\t"
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: [pcmM] "+a" (pcmM));
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}
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}
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#else
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static inline void channel_couple(ogg_int32_t *pcmM, ogg_int32_t *pcmA, int n)
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{
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int j;
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for(j=0;j<n/2;j++){
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ogg_int32_t mag = pcmM[j], ang = pcmA[j], _ang;
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if(mag>0)
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_ang = ang;
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else
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_ang = -ang;
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if(ang>0)
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pcmA[j]=mag-_ang;
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else{
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pcmA[j]=mag;
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pcmM[j]=mag+_ang;
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}
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}
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}
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#endif
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static int mapping0_inverse(vorbis_block *vb,vorbis_look_mapping *l){
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vorbis_dsp_state *vd=vb->vd;
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vorbis_info *vi=vd->vi;
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codec_setup_info *ci=(codec_setup_info *)vi->codec_setup;
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vorbis_look_mapping0 *look=(vorbis_look_mapping0 *)l;
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vorbis_info_mapping0 *info=look->map;
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int i,j;
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long n=vb->pcmend=ci->blocksizes[vb->W];
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/* bounded mapping arrays instead of using alloca();
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avoids memory leak; we can only deal with stereo anyway */
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ogg_int32_t *pcmbundle[CHANNELS];
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int zerobundle[CHANNELS];
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int nonzero[CHANNELS];
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void *floormemo[CHANNELS];
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/* time domain information decode (note that applying the
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information would have to happen later; we'll probably add a
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function entry to the harness for that later */
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/* NOT IMPLEMENTED */
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/* recover the spectral envelope; store it in the PCM vector for now */
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for(i=0;i<vi->channels;i++){
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int submap=info->chmuxlist[i];
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floormemo[i]=look->floor_func[submap]->
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inverse1(vb,look->floor_look[submap]);
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if(floormemo[i])
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nonzero[i]=1;
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else
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nonzero[i]=0;
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memset(vd->floors + i * ci->blocksizes[vb->W]/2,0,sizeof(ogg_int32_t)*n/2);
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}
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/* channel coupling can 'dirty' the nonzero listing */
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for(i=0;i<info->coupling_steps;i++){
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if(nonzero[info->coupling_mag[i]] ||
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nonzero[info->coupling_ang[i]]){
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nonzero[info->coupling_mag[i]]=1;
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nonzero[info->coupling_ang[i]]=1;
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}
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}
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/* recover the residue into our working vectors */
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for(i=0;i<info->submaps;i++){
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int ch_in_bundle=0;
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for(j=0;j<vi->channels;j++){
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if(info->chmuxlist[j]==i){
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if(nonzero[j])
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zerobundle[ch_in_bundle]=1;
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else
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zerobundle[ch_in_bundle]=0;
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pcmbundle[ch_in_bundle++] = vd->floors + j * ci->blocksizes[vb->W]/2;
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}
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}
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look->residue_func[i]->inverse(vb,look->residue_look[i],
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pcmbundle,zerobundle,ch_in_bundle);
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}
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//for(j=0;j<vi->channels;j++)
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//_analysis_output("coupled",seq+j,vb->pcm[j],-8,n/2,0,0);
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/* channel coupling */
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for(i=info->coupling_steps-1;i>=0;i--){
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ogg_int32_t *pcmM = vd->floors + info->coupling_mag[i] * ci->blocksizes[vb->W]/2;
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ogg_int32_t *pcmA = vd->floors + info->coupling_ang[i] * ci->blocksizes[vb->W]/2;
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channel_couple(pcmM,pcmA,n);
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}
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//for(j=0;j<vi->channels;j++)
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//_analysis_output("residue",seq+j,vb->pcm[j],-8,n/2,0,0);
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//for(j=0;j<vi->channels;j++)
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//_analysis_output("mdct",seq+j,vb->pcm[j],-24,n/2,0,1);
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/* transform the PCM data; takes PCM vector, vb; modifies PCM vector */
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/* only MDCT right now.... */
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for(i=0;i<vi->channels;i++){
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ogg_int32_t *pcm = vd->floors + i*ci->blocksizes[vb->W]/2;
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int submap=info->chmuxlist[i];
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if(nonzero[i]) {
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/* compute and apply spectral envelope */
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look->floor_func[submap]->
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inverse2(vb,look->floor_look[submap],floormemo[i],pcm);
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ff_imdct_half(ci->blocksizes_nbits[vb->W],
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(int32_t*)vd->residues[vd->ri] + i*ci->blocksizes[vb->W]/2,
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(int32_t*)&vd->floors[i*ci->blocksizes[vb->W]/2]);
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}
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else
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memset(vd->residues[vd->ri] + i*ci->blocksizes[vb->W]/2, 0, sizeof(ogg_int32_t)*n/2);
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}
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//for(j=0;j<vi->channels;j++)
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//_analysis_output("imdct",seq+j,vb->pcm[j],-24,n,0,0);
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//for(j=0;j<vi->channels;j++)
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//_analysis_output("window",seq+j,vb->pcm[j],-24,n,0,0);
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//seq+=vi->channels;
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/* all done! */
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return(0);
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}
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/* export hooks */
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const vorbis_func_mapping mapping0_exportbundle ICONST_ATTR ={
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&mapping0_unpack,
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&mapping0_look,
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&mapping0_free_info,
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&mapping0_free_look,
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&mapping0_inverse
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};
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