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00025 #include "avcodec.h"
00026 #include "dsputil.h"
00027 #include "mpegvideo.h"
00028
00029
00030
00031
00032 #define VLC_BITS 6
00033 #define ASV2_LEVEL_VLC_BITS 10
00034
00035 typedef struct ASV1Context{
00036 AVCodecContext *avctx;
00037 DSPContext dsp;
00038 AVFrame picture;
00039 PutBitContext pb;
00040 GetBitContext gb;
00041 ScanTable scantable;
00042 int inv_qscale;
00043 int mb_width;
00044 int mb_height;
00045 int mb_width2;
00046 int mb_height2;
00047 DCTELEM __align8 block[6][64];
00048 uint16_t __align8 intra_matrix[64];
00049 int __align8 q_intra_matrix[64];
00050 uint8_t *bitstream_buffer;
00051 int bitstream_buffer_size;
00052 } ASV1Context;
00053
00054 static const uint8_t scantab[64]={
00055 0x00,0x08,0x01,0x09,0x10,0x18,0x11,0x19,
00056 0x02,0x0A,0x03,0x0B,0x12,0x1A,0x13,0x1B,
00057 0x04,0x0C,0x05,0x0D,0x20,0x28,0x21,0x29,
00058 0x06,0x0E,0x07,0x0F,0x14,0x1C,0x15,0x1D,
00059 0x22,0x2A,0x23,0x2B,0x30,0x38,0x31,0x39,
00060 0x16,0x1E,0x17,0x1F,0x24,0x2C,0x25,0x2D,
00061 0x32,0x3A,0x33,0x3B,0x26,0x2E,0x27,0x2F,
00062 0x34,0x3C,0x35,0x3D,0x36,0x3E,0x37,0x3F,
00063 };
00064
00065
00066 static const uint8_t ccp_tab[17][2]={
00067 {0x2,2}, {0x7,5}, {0xB,5}, {0x3,5},
00068 {0xD,5}, {0x5,5}, {0x9,5}, {0x1,5},
00069 {0xE,5}, {0x6,5}, {0xA,5}, {0x2,5},
00070 {0xC,5}, {0x4,5}, {0x8,5}, {0x3,2},
00071 {0xF,5},
00072 };
00073
00074 static const uint8_t level_tab[7][2]={
00075 {3,4}, {3,3}, {3,2}, {0,3}, {2,2}, {2,3}, {2,4}
00076 };
00077
00078 static const uint8_t dc_ccp_tab[8][2]={
00079 {0x1,2}, {0xD,4}, {0xF,4}, {0xC,4},
00080 {0x5,3}, {0xE,4}, {0x4,3}, {0x0,2},
00081 };
00082
00083 static const uint8_t ac_ccp_tab[16][2]={
00084 {0x00,2}, {0x3B,6}, {0x0A,4}, {0x3A,6},
00085 {0x02,3}, {0x39,6}, {0x3C,6}, {0x38,6},
00086 {0x03,3}, {0x3D,6}, {0x08,4}, {0x1F,5},
00087 {0x09,4}, {0x0B,4}, {0x0D,4}, {0x0C,4},
00088 };
00089
00090 static const uint8_t asv2_level_tab[63][2]={
00091 {0x3F,10},{0x2F,10},{0x37,10},{0x27,10},{0x3B,10},{0x2B,10},{0x33,10},{0x23,10},
00092 {0x3D,10},{0x2D,10},{0x35,10},{0x25,10},{0x39,10},{0x29,10},{0x31,10},{0x21,10},
00093 {0x1F, 8},{0x17, 8},{0x1B, 8},{0x13, 8},{0x1D, 8},{0x15, 8},{0x19, 8},{0x11, 8},
00094 {0x0F, 6},{0x0B, 6},{0x0D, 6},{0x09, 6},
00095 {0x07, 4},{0x05, 4},
00096 {0x03, 2},
00097 {0x00, 5},
00098 {0x02, 2},
00099 {0x04, 4},{0x06, 4},
00100 {0x08, 6},{0x0C, 6},{0x0A, 6},{0x0E, 6},
00101 {0x10, 8},{0x18, 8},{0x14, 8},{0x1C, 8},{0x12, 8},{0x1A, 8},{0x16, 8},{0x1E, 8},
00102 {0x20,10},{0x30,10},{0x28,10},{0x38,10},{0x24,10},{0x34,10},{0x2C,10},{0x3C,10},
00103 {0x22,10},{0x32,10},{0x2A,10},{0x3A,10},{0x26,10},{0x36,10},{0x2E,10},{0x3E,10},
00104 };
00105
00106
00107 static VLC ccp_vlc;
00108 static VLC level_vlc;
00109 static VLC dc_ccp_vlc;
00110 static VLC ac_ccp_vlc;
00111 static VLC asv2_level_vlc;
00112
00113 static void init_vlcs(ASV1Context *a){
00114 static int done = 0;
00115
00116 if (!done) {
00117 done = 1;
00118
00119 init_vlc(&ccp_vlc, VLC_BITS, 17,
00120 &ccp_tab[0][1], 2, 1,
00121 &ccp_tab[0][0], 2, 1, 1);
00122 init_vlc(&dc_ccp_vlc, VLC_BITS, 8,
00123 &dc_ccp_tab[0][1], 2, 1,
00124 &dc_ccp_tab[0][0], 2, 1, 1);
00125 init_vlc(&ac_ccp_vlc, VLC_BITS, 16,
00126 &ac_ccp_tab[0][1], 2, 1,
00127 &ac_ccp_tab[0][0], 2, 1, 1);
00128 init_vlc(&level_vlc, VLC_BITS, 7,
00129 &level_tab[0][1], 2, 1,
00130 &level_tab[0][0], 2, 1, 1);
00131 init_vlc(&asv2_level_vlc, ASV2_LEVEL_VLC_BITS, 63,
00132 &asv2_level_tab[0][1], 2, 1,
00133 &asv2_level_tab[0][0], 2, 1, 1);
00134 }
00135 }
00136
00137
00138 static inline int asv2_get_bits(GetBitContext *gb, int n){
00139 return ff_reverse[ get_bits(gb, n) << (8-n) ];
00140 }
00141
00142 static inline void asv2_put_bits(PutBitContext *pb, int n, int v){
00143 put_bits(pb, n, ff_reverse[ v << (8-n) ]);
00144 }
00145
00146 static inline int asv1_get_level(GetBitContext *gb){
00147 int code= get_vlc2(gb, level_vlc.table, VLC_BITS, 1);
00148
00149 if(code==3) return get_sbits(gb, 8);
00150 else return code - 3;
00151 }
00152
00153 static inline int asv2_get_level(GetBitContext *gb){
00154 int code= get_vlc2(gb, asv2_level_vlc.table, ASV2_LEVEL_VLC_BITS, 1);
00155
00156 if(code==31) return (int8_t)asv2_get_bits(gb, 8);
00157 else return code - 31;
00158 }
00159
00160 static inline void asv1_put_level(PutBitContext *pb, int level){
00161 unsigned int index= level + 3;
00162
00163 if(index <= 6) put_bits(pb, level_tab[index][1], level_tab[index][0]);
00164 else{
00165 put_bits(pb, level_tab[3][1], level_tab[3][0]);
00166 put_bits(pb, 8, level&0xFF);
00167 }
00168 }
00169
00170 static inline void asv2_put_level(PutBitContext *pb, int level){
00171 unsigned int index= level + 31;
00172
00173 if(index <= 62) put_bits(pb, asv2_level_tab[index][1], asv2_level_tab[index][0]);
00174 else{
00175 put_bits(pb, asv2_level_tab[31][1], asv2_level_tab[31][0]);
00176 asv2_put_bits(pb, 8, level&0xFF);
00177 }
00178 }
00179
00180 static inline int asv1_decode_block(ASV1Context *a, DCTELEM block[64]){
00181 int i;
00182
00183 block[0]= 8*get_bits(&a->gb, 8);
00184
00185 for(i=0; i<11; i++){
00186 const int ccp= get_vlc2(&a->gb, ccp_vlc.table, VLC_BITS, 1);
00187
00188 if(ccp){
00189 if(ccp == 16) break;
00190 if(ccp < 0 || i>=10){
00191 av_log(a->avctx, AV_LOG_ERROR, "coded coeff pattern damaged\n");
00192 return -1;
00193 }
00194
00195 if(ccp&8) block[a->scantable.permutated[4*i+0]]= (asv1_get_level(&a->gb) * a->intra_matrix[4*i+0])>>4;
00196 if(ccp&4) block[a->scantable.permutated[4*i+1]]= (asv1_get_level(&a->gb) * a->intra_matrix[4*i+1])>>4;
00197 if(ccp&2) block[a->scantable.permutated[4*i+2]]= (asv1_get_level(&a->gb) * a->intra_matrix[4*i+2])>>4;
00198 if(ccp&1) block[a->scantable.permutated[4*i+3]]= (asv1_get_level(&a->gb) * a->intra_matrix[4*i+3])>>4;
00199 }
00200 }
00201
00202 return 0;
00203 }
00204
00205 static inline int asv2_decode_block(ASV1Context *a, DCTELEM block[64]){
00206 int i, count, ccp;
00207
00208 count= asv2_get_bits(&a->gb, 4);
00209
00210 block[0]= 8*asv2_get_bits(&a->gb, 8);
00211
00212 ccp= get_vlc2(&a->gb, dc_ccp_vlc.table, VLC_BITS, 1);
00213 if(ccp){
00214 if(ccp&4) block[a->scantable.permutated[1]]= (asv2_get_level(&a->gb) * a->intra_matrix[1])>>4;
00215 if(ccp&2) block[a->scantable.permutated[2]]= (asv2_get_level(&a->gb) * a->intra_matrix[2])>>4;
00216 if(ccp&1) block[a->scantable.permutated[3]]= (asv2_get_level(&a->gb) * a->intra_matrix[3])>>4;
00217 }
00218
00219 for(i=1; i<count+1; i++){
00220 const int ccp= get_vlc2(&a->gb, ac_ccp_vlc.table, VLC_BITS, 1);
00221
00222 if(ccp){
00223 if(ccp&8) block[a->scantable.permutated[4*i+0]]= (asv2_get_level(&a->gb) * a->intra_matrix[4*i+0])>>4;
00224 if(ccp&4) block[a->scantable.permutated[4*i+1]]= (asv2_get_level(&a->gb) * a->intra_matrix[4*i+1])>>4;
00225 if(ccp&2) block[a->scantable.permutated[4*i+2]]= (asv2_get_level(&a->gb) * a->intra_matrix[4*i+2])>>4;
00226 if(ccp&1) block[a->scantable.permutated[4*i+3]]= (asv2_get_level(&a->gb) * a->intra_matrix[4*i+3])>>4;
00227 }
00228 }
00229
00230 return 0;
00231 }
00232
00233 static inline void asv1_encode_block(ASV1Context *a, DCTELEM block[64]){
00234 int i;
00235 int nc_count=0;
00236
00237 put_bits(&a->pb, 8, (block[0] + 32)>>6);
00238 block[0]= 0;
00239
00240 for(i=0; i<10; i++){
00241 const int index= scantab[4*i];
00242 int ccp=0;
00243
00244 if( (block[index + 0] = (block[index + 0]*a->q_intra_matrix[index + 0] + (1<<15))>>16) ) ccp |= 8;
00245 if( (block[index + 8] = (block[index + 8]*a->q_intra_matrix[index + 8] + (1<<15))>>16) ) ccp |= 4;
00246 if( (block[index + 1] = (block[index + 1]*a->q_intra_matrix[index + 1] + (1<<15))>>16) ) ccp |= 2;
00247 if( (block[index + 9] = (block[index + 9]*a->q_intra_matrix[index + 9] + (1<<15))>>16) ) ccp |= 1;
00248
00249 if(ccp){
00250 for(;nc_count; nc_count--)
00251 put_bits(&a->pb, ccp_tab[0][1], ccp_tab[0][0]);
00252
00253 put_bits(&a->pb, ccp_tab[ccp][1], ccp_tab[ccp][0]);
00254
00255 if(ccp&8) asv1_put_level(&a->pb, block[index + 0]);
00256 if(ccp&4) asv1_put_level(&a->pb, block[index + 8]);
00257 if(ccp&2) asv1_put_level(&a->pb, block[index + 1]);
00258 if(ccp&1) asv1_put_level(&a->pb, block[index + 9]);
00259 }else{
00260 nc_count++;
00261 }
00262 }
00263 put_bits(&a->pb, ccp_tab[16][1], ccp_tab[16][0]);
00264 }
00265
00266 static inline void asv2_encode_block(ASV1Context *a, DCTELEM block[64]){
00267 int i;
00268 int count=0;
00269
00270 for(count=63; count>3; count--){
00271 const int index= scantab[count];
00272
00273 if( (block[index]*a->q_intra_matrix[index] + (1<<15))>>16 )
00274 break;
00275 }
00276
00277 count >>= 2;
00278
00279 asv2_put_bits(&a->pb, 4, count);
00280 asv2_put_bits(&a->pb, 8, (block[0] + 32)>>6);
00281 block[0]= 0;
00282
00283 for(i=0; i<=count; i++){
00284 const int index= scantab[4*i];
00285 int ccp=0;
00286
00287 if( (block[index + 0] = (block[index + 0]*a->q_intra_matrix[index + 0] + (1<<15))>>16) ) ccp |= 8;
00288 if( (block[index + 8] = (block[index + 8]*a->q_intra_matrix[index + 8] + (1<<15))>>16) ) ccp |= 4;
00289 if( (block[index + 1] = (block[index + 1]*a->q_intra_matrix[index + 1] + (1<<15))>>16) ) ccp |= 2;
00290 if( (block[index + 9] = (block[index + 9]*a->q_intra_matrix[index + 9] + (1<<15))>>16) ) ccp |= 1;
00291
00292 if(i) put_bits(&a->pb, ac_ccp_tab[ccp][1], ac_ccp_tab[ccp][0]);
00293 else put_bits(&a->pb, dc_ccp_tab[ccp][1], dc_ccp_tab[ccp][0]);
00294
00295 if(ccp){
00296 if(ccp&8) asv2_put_level(&a->pb, block[index + 0]);
00297 if(ccp&4) asv2_put_level(&a->pb, block[index + 8]);
00298 if(ccp&2) asv2_put_level(&a->pb, block[index + 1]);
00299 if(ccp&1) asv2_put_level(&a->pb, block[index + 9]);
00300 }
00301 }
00302 }
00303
00304 static inline int decode_mb(ASV1Context *a, DCTELEM block[6][64]){
00305 int i;
00306
00307 a->dsp.clear_blocks(block[0]);
00308
00309 if(a->avctx->codec_id == CODEC_ID_ASV1){
00310 for(i=0; i<6; i++){
00311 if( asv1_decode_block(a, block[i]) < 0)
00312 return -1;
00313 }
00314 }else{
00315 for(i=0; i<6; i++){
00316 if( asv2_decode_block(a, block[i]) < 0)
00317 return -1;
00318 }
00319 }
00320 return 0;
00321 }
00322
00323 static inline int encode_mb(ASV1Context *a, DCTELEM block[6][64]){
00324 int i;
00325
00326 if(a->pb.buf_end - a->pb.buf - (put_bits_count(&a->pb)>>3) < 30*16*16*3/2/8){
00327 av_log(a->avctx, AV_LOG_ERROR, "encoded frame too large\n");
00328 return -1;
00329 }
00330
00331 if(a->avctx->codec_id == CODEC_ID_ASV1){
00332 for(i=0; i<6; i++)
00333 asv1_encode_block(a, block[i]);
00334 }else{
00335 for(i=0; i<6; i++)
00336 asv2_encode_block(a, block[i]);
00337 }
00338 return 0;
00339 }
00340
00341 static inline void idct_put(ASV1Context *a, int mb_x, int mb_y){
00342 DCTELEM (*block)[64]= a->block;
00343 int linesize= a->picture.linesize[0];
00344
00345 uint8_t *dest_y = a->picture.data[0] + (mb_y * 16* linesize ) + mb_x * 16;
00346 uint8_t *dest_cb = a->picture.data[1] + (mb_y * 8 * a->picture.linesize[1]) + mb_x * 8;
00347 uint8_t *dest_cr = a->picture.data[2] + (mb_y * 8 * a->picture.linesize[2]) + mb_x * 8;
00348
00349 a->dsp.idct_put(dest_y , linesize, block[0]);
00350 a->dsp.idct_put(dest_y + 8, linesize, block[1]);
00351 a->dsp.idct_put(dest_y + 8*linesize , linesize, block[2]);
00352 a->dsp.idct_put(dest_y + 8*linesize + 8, linesize, block[3]);
00353
00354 if(!(a->avctx->flags&CODEC_FLAG_GRAY)){
00355 a->dsp.idct_put(dest_cb, a->picture.linesize[1], block[4]);
00356 a->dsp.idct_put(dest_cr, a->picture.linesize[2], block[5]);
00357 }
00358 }
00359
00360 static inline void dct_get(ASV1Context *a, int mb_x, int mb_y){
00361 DCTELEM (*block)[64]= a->block;
00362 int linesize= a->picture.linesize[0];
00363 int i;
00364
00365 uint8_t *ptr_y = a->picture.data[0] + (mb_y * 16* linesize ) + mb_x * 16;
00366 uint8_t *ptr_cb = a->picture.data[1] + (mb_y * 8 * a->picture.linesize[1]) + mb_x * 8;
00367 uint8_t *ptr_cr = a->picture.data[2] + (mb_y * 8 * a->picture.linesize[2]) + mb_x * 8;
00368
00369 a->dsp.get_pixels(block[0], ptr_y , linesize);
00370 a->dsp.get_pixels(block[1], ptr_y + 8, linesize);
00371 a->dsp.get_pixels(block[2], ptr_y + 8*linesize , linesize);
00372 a->dsp.get_pixels(block[3], ptr_y + 8*linesize + 8, linesize);
00373 for(i=0; i<4; i++)
00374 a->dsp.fdct(block[i]);
00375
00376 if(!(a->avctx->flags&CODEC_FLAG_GRAY)){
00377 a->dsp.get_pixels(block[4], ptr_cb, a->picture.linesize[1]);
00378 a->dsp.get_pixels(block[5], ptr_cr, a->picture.linesize[2]);
00379 for(i=4; i<6; i++)
00380 a->dsp.fdct(block[i]);
00381 }
00382 }
00383
00384 static int decode_frame(AVCodecContext *avctx,
00385 void *data, int *data_size,
00386 uint8_t *buf, int buf_size)
00387 {
00388 ASV1Context * const a = avctx->priv_data;
00389 AVFrame *picture = data;
00390 AVFrame * const p= (AVFrame*)&a->picture;
00391 int mb_x, mb_y;
00392
00393 if(p->data[0])
00394 avctx->release_buffer(avctx, p);
00395
00396 p->reference= 0;
00397 if(avctx->get_buffer(avctx, p) < 0){
00398 av_log(avctx, AV_LOG_ERROR, "get_buffer() failed\n");
00399 return -1;
00400 }
00401 p->pict_type= I_TYPE;
00402 p->key_frame= 1;
00403
00404 a->bitstream_buffer= av_fast_realloc(a->bitstream_buffer, &a->bitstream_buffer_size, buf_size + FF_INPUT_BUFFER_PADDING_SIZE);
00405
00406 if(avctx->codec_id == CODEC_ID_ASV1)
00407 a->dsp.bswap_buf((uint32_t*)a->bitstream_buffer, (uint32_t*)buf, buf_size/4);
00408 else{
00409 int i;
00410 for(i=0; i<buf_size; i++)
00411 a->bitstream_buffer[i]= ff_reverse[ buf[i] ];
00412 }
00413
00414 init_get_bits(&a->gb, a->bitstream_buffer, buf_size*8);
00415
00416 for(mb_y=0; mb_y<a->mb_height2; mb_y++){
00417 for(mb_x=0; mb_x<a->mb_width2; mb_x++){
00418 if( decode_mb(a, a->block) <0)
00419 return -1;
00420
00421 idct_put(a, mb_x, mb_y);
00422 }
00423 }
00424
00425 if(a->mb_width2 != a->mb_width){
00426 mb_x= a->mb_width2;
00427 for(mb_y=0; mb_y<a->mb_height2; mb_y++){
00428 if( decode_mb(a, a->block) <0)
00429 return -1;
00430
00431 idct_put(a, mb_x, mb_y);
00432 }
00433 }
00434
00435 if(a->mb_height2 != a->mb_height){
00436 mb_y= a->mb_height2;
00437 for(mb_x=0; mb_x<a->mb_width; mb_x++){
00438 if( decode_mb(a, a->block) <0)
00439 return -1;
00440
00441 idct_put(a, mb_x, mb_y);
00442 }
00443 }
00444 #if 0
00445 int i;
00446 printf("%d %d\n", 8*buf_size, get_bits_count(&a->gb));
00447 for(i=get_bits_count(&a->gb); i<8*buf_size; i++){
00448 printf("%d", get_bits1(&a->gb));
00449 }
00450
00451 for(i=0; i<s->avctx->extradata_size; i++){
00452 printf("%c\n", ((uint8_t*)s->avctx->extradata)[i]);
00453 }
00454 #endif
00455
00456 *picture= *(AVFrame*)&a->picture;
00457 *data_size = sizeof(AVPicture);
00458
00459 emms_c();
00460
00461 return (get_bits_count(&a->gb)+31)/32*4;
00462 }
00463
00464 static int encode_frame(AVCodecContext *avctx, unsigned char *buf, int buf_size, void *data){
00465 ASV1Context * const a = avctx->priv_data;
00466 AVFrame *pict = data;
00467 AVFrame * const p= (AVFrame*)&a->picture;
00468 int size;
00469 int mb_x, mb_y;
00470
00471 init_put_bits(&a->pb, buf, buf_size);
00472
00473 *p = *pict;
00474 p->pict_type= I_TYPE;
00475 p->key_frame= 1;
00476
00477 for(mb_y=0; mb_y<a->mb_height2; mb_y++){
00478 for(mb_x=0; mb_x<a->mb_width2; mb_x++){
00479 dct_get(a, mb_x, mb_y);
00480 encode_mb(a, a->block);
00481 }
00482 }
00483
00484 if(a->mb_width2 != a->mb_width){
00485 mb_x= a->mb_width2;
00486 for(mb_y=0; mb_y<a->mb_height2; mb_y++){
00487 dct_get(a, mb_x, mb_y);
00488 encode_mb(a, a->block);
00489 }
00490 }
00491
00492 if(a->mb_height2 != a->mb_height){
00493 mb_y= a->mb_height2;
00494 for(mb_x=0; mb_x<a->mb_width; mb_x++){
00495 dct_get(a, mb_x, mb_y);
00496 encode_mb(a, a->block);
00497 }
00498 }
00499 emms_c();
00500
00501 align_put_bits(&a->pb);
00502 while(put_bits_count(&a->pb)&31)
00503 put_bits(&a->pb, 8, 0);
00504
00505 size= put_bits_count(&a->pb)/32;
00506
00507 if(avctx->codec_id == CODEC_ID_ASV1)
00508 a->dsp.bswap_buf((uint32_t*)buf, (uint32_t*)buf, size);
00509 else{
00510 int i;
00511 for(i=0; i<4*size; i++)
00512 buf[i]= ff_reverse[ buf[i] ];
00513 }
00514
00515 return size*4;
00516 }
00517
00518 static void common_init(AVCodecContext *avctx){
00519 ASV1Context * const a = avctx->priv_data;
00520
00521 dsputil_init(&a->dsp, avctx);
00522
00523 a->mb_width = (avctx->width + 15) / 16;
00524 a->mb_height = (avctx->height + 15) / 16;
00525 a->mb_width2 = (avctx->width + 0) / 16;
00526 a->mb_height2 = (avctx->height + 0) / 16;
00527
00528 avctx->coded_frame= (AVFrame*)&a->picture;
00529 a->avctx= avctx;
00530 }
00531
00532 static int decode_init(AVCodecContext *avctx){
00533 ASV1Context * const a = avctx->priv_data;
00534 AVFrame *p= (AVFrame*)&a->picture;
00535 int i;
00536 const int scale= avctx->codec_id == CODEC_ID_ASV1 ? 1 : 2;
00537
00538 common_init(avctx);
00539 init_vlcs(a);
00540 ff_init_scantable(a->dsp.idct_permutation, &a->scantable, scantab);
00541 avctx->pix_fmt= PIX_FMT_YUV420P;
00542
00543 a->inv_qscale= ((uint8_t*)avctx->extradata)[0];
00544 if(a->inv_qscale == 0){
00545 av_log(avctx, AV_LOG_ERROR, "illegal qscale 0\n");
00546 if(avctx->codec_id == CODEC_ID_ASV1)
00547 a->inv_qscale= 6;
00548 else
00549 a->inv_qscale= 10;
00550 }
00551
00552 for(i=0; i<64; i++){
00553 int index= scantab[i];
00554
00555 a->intra_matrix[i]= 64*scale*ff_mpeg1_default_intra_matrix[index] / a->inv_qscale;
00556 }
00557
00558 p->qstride= a->mb_width;
00559 p->qscale_table= av_malloc( p->qstride * a->mb_height);
00560 p->quality= (32*scale + a->inv_qscale/2)/a->inv_qscale;
00561 memset(p->qscale_table, p->quality, p->qstride*a->mb_height);
00562
00563 return 0;
00564 }
00565
00566 static int encode_init(AVCodecContext *avctx){
00567 ASV1Context * const a = avctx->priv_data;
00568 int i;
00569 const int scale= avctx->codec_id == CODEC_ID_ASV1 ? 1 : 2;
00570
00571 common_init(avctx);
00572
00573 if(avctx->global_quality == 0) avctx->global_quality= 4*FF_QUALITY_SCALE;
00574
00575 a->inv_qscale= (32*scale*FF_QUALITY_SCALE + avctx->global_quality/2) / avctx->global_quality;
00576
00577 avctx->extradata= av_mallocz(8);
00578 avctx->extradata_size=8;
00579 ((uint32_t*)avctx->extradata)[0]= le2me_32(a->inv_qscale);
00580 ((uint32_t*)avctx->extradata)[1]= le2me_32(ff_get_fourcc("ASUS"));
00581
00582 for(i=0; i<64; i++){
00583 int q= 32*scale*ff_mpeg1_default_intra_matrix[i];
00584 a->q_intra_matrix[i]= ((a->inv_qscale<<16) + q/2) / q;
00585 }
00586
00587 return 0;
00588 }
00589
00590 static int decode_end(AVCodecContext *avctx){
00591 ASV1Context * const a = avctx->priv_data;
00592
00593 av_freep(&a->bitstream_buffer);
00594 av_freep(&a->picture.qscale_table);
00595 a->bitstream_buffer_size=0;
00596
00597 return 0;
00598 }
00599
00600 AVCodec asv1_decoder = {
00601 "asv1",
00602 CODEC_TYPE_VIDEO,
00603 CODEC_ID_ASV1,
00604 sizeof(ASV1Context),
00605 decode_init,
00606 NULL,
00607 decode_end,
00608 decode_frame,
00609 CODEC_CAP_DR1,
00610 };
00611
00612 AVCodec asv2_decoder = {
00613 "asv2",
00614 CODEC_TYPE_VIDEO,
00615 CODEC_ID_ASV2,
00616 sizeof(ASV1Context),
00617 decode_init,
00618 NULL,
00619 decode_end,
00620 decode_frame,
00621 CODEC_CAP_DR1,
00622 };
00623
00624 #ifdef CONFIG_ENCODERS
00625
00626 AVCodec asv1_encoder = {
00627 "asv1",
00628 CODEC_TYPE_VIDEO,
00629 CODEC_ID_ASV1,
00630 sizeof(ASV1Context),
00631 encode_init,
00632 encode_frame,
00633
00634 };
00635
00636 AVCodec asv2_encoder = {
00637 "asv2",
00638 CODEC_TYPE_VIDEO,
00639 CODEC_ID_ASV2,
00640 sizeof(ASV1Context),
00641 encode_init,
00642 encode_frame,
00643
00644 };
00645
00646 #endif //CONFIG_ENCODERS