2 * @file libavcodec/vorbis_dec.c
4 * @author Denes Balatoni ( dbalatoni programozo hu )
6 * This file is part of FFmpeg.
8 * FFmpeg is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU Lesser General Public
10 * License as published by the Free Software Foundation; either
11 * version 2.1 of the License, or (at your option) any later version.
13 * FFmpeg is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16 * Lesser General Public License for more details.
18 * You should have received a copy of the GNU Lesser General Public
19 * License along with FFmpeg; if not, write to the Free Software
20 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
25 //#define AV_DEBUG(...) av_log(NULL, AV_LOG_INFO, __VA_ARGS__)
29 #define ALT_BITSTREAM_READER_LE
39 #define V_MAX_VLCS (1<<16)
49 uint_fast8_t dimensions
;
50 uint_fast8_t lookup_type
;
51 uint_fast8_t maxdepth
;
57 typedef union vorbis_floor_u vorbis_floor_data
;
58 typedef struct vorbis_floor0_s vorbis_floor0
;
59 typedef struct vorbis_floor1_s vorbis_floor1
;
60 struct vorbis_context_s
;
62 uint_fast8_t (* vorbis_floor_decode_func
)
63 (struct vorbis_context_s
*, vorbis_floor_data
*, float *);
65 uint_fast8_t floor_type
;
66 vorbis_floor_decode_func decode
;
69 struct vorbis_floor0_s
73 uint_fast16_t bark_map_size
;
74 int_fast32_t * map
[2];
75 uint_fast32_t map_size
[2];
76 uint_fast8_t amplitude_bits
;
77 uint_fast8_t amplitude_offset
;
78 uint_fast8_t num_books
;
79 uint_fast8_t * book_list
;
82 struct vorbis_floor1_s
84 uint_fast8_t partitions
;
85 uint_fast8_t maximum_class
;
86 uint_fast8_t partition_class
[32];
87 uint_fast8_t class_dimensions
[16];
88 uint_fast8_t class_subclasses
[16];
89 uint_fast8_t class_masterbook
[16];
90 int_fast16_t subclass_books
[16][8];
91 uint_fast8_t multiplier
;
92 uint_fast16_t x_list_dim
;
93 vorbis_floor1_entry
* list
;
102 uint_fast32_t partition_size
;
103 uint_fast8_t classifications
;
104 uint_fast8_t classbook
;
105 int_fast16_t books
[64][8];
106 uint_fast8_t maxpass
;
110 uint_fast8_t submaps
;
111 uint_fast16_t coupling_steps
;
112 uint_fast8_t *magnitude
;
115 uint_fast8_t submap_floor
[16];
116 uint_fast8_t submap_residue
[16];
120 uint_fast8_t blockflag
;
121 uint_fast16_t windowtype
;
122 uint_fast16_t transformtype
;
123 uint_fast8_t mapping
;
126 typedef struct vorbis_context_s
{
127 AVCodecContext
*avccontext
;
132 uint_fast8_t first_frame
;
133 uint_fast32_t version
;
134 uint_fast8_t audio_channels
;
135 uint_fast32_t audio_samplerate
;
136 uint_fast32_t bitrate_maximum
;
137 uint_fast32_t bitrate_nominal
;
138 uint_fast32_t bitrate_minimum
;
139 uint_fast32_t blocksize
[2];
140 const float * win
[2];
141 uint_fast16_t codebook_count
;
142 vorbis_codebook
*codebooks
;
143 uint_fast8_t floor_count
;
144 vorbis_floor
*floors
;
145 uint_fast8_t residue_count
;
146 vorbis_residue
*residues
;
147 uint_fast8_t mapping_count
;
148 vorbis_mapping
*mappings
;
149 uint_fast8_t mode_count
;
151 uint_fast8_t mode_number
; // mode number for the current packet
152 uint_fast8_t previous_window
;
153 float *channel_residues
;
154 float *channel_floors
;
156 uint_fast32_t add_bias
; // for float->int conversion
157 uint_fast32_t exp_bias
;
160 /* Helper functions */
163 (13.1f*atan(0.00074f*(x))+2.24f*atan(1.85e-8f*(x)*(x))+1e-4f*(x))
165 static float vorbisfloat2float(uint_fast32_t val
) {
166 double mant
=val
&0x1fffff;
167 long exp
=(val
&0x7fe00000L
)>>21;
168 if (val
&0x80000000) mant
=-mant
;
169 return ldexp(mant
, exp
- 20 - 768);
173 // Free all allocated memory -----------------------------------------
175 static void vorbis_free(vorbis_context
*vc
) {
178 av_freep(&vc
->channel_residues
);
179 av_freep(&vc
->channel_floors
);
180 av_freep(&vc
->saved
);
182 av_freep(&vc
->residues
);
183 av_freep(&vc
->modes
);
185 ff_mdct_end(&vc
->mdct
[0]);
186 ff_mdct_end(&vc
->mdct
[1]);
188 for(i
=0;i
<vc
->codebook_count
;++i
) {
189 av_free(vc
->codebooks
[i
].codevectors
);
190 free_vlc(&vc
->codebooks
[i
].vlc
);
192 av_freep(&vc
->codebooks
);
194 for(i
=0;i
<vc
->floor_count
;++i
) {
195 if(vc
->floors
[i
].floor_type
==0) {
196 av_free(vc
->floors
[i
].data
.t0
.map
[0]);
197 av_free(vc
->floors
[i
].data
.t0
.map
[1]);
198 av_free(vc
->floors
[i
].data
.t0
.book_list
);
199 av_free(vc
->floors
[i
].data
.t0
.lsp
);
202 av_free(vc
->floors
[i
].data
.t1
.list
);
205 av_freep(&vc
->floors
);
207 for(i
=0;i
<vc
->mapping_count
;++i
) {
208 av_free(vc
->mappings
[i
].magnitude
);
209 av_free(vc
->mappings
[i
].angle
);
210 av_free(vc
->mappings
[i
].mux
);
212 av_freep(&vc
->mappings
);
215 // Parse setup header -------------------------------------------------
217 // Process codebooks part
219 static int vorbis_parse_setup_hdr_codebooks(vorbis_context
*vc
) {
221 uint8_t *tmp_vlc_bits
;
222 uint32_t *tmp_vlc_codes
;
223 GetBitContext
*gb
=&vc
->gb
;
225 vc
->codebook_count
=get_bits(gb
,8)+1;
227 AV_DEBUG(" Codebooks: %d \n", vc
->codebook_count
);
229 vc
->codebooks
=av_mallocz(vc
->codebook_count
* sizeof(vorbis_codebook
));
230 tmp_vlc_bits
=av_mallocz(V_MAX_VLCS
* sizeof(uint8_t));
231 tmp_vlc_codes
=av_mallocz(V_MAX_VLCS
* sizeof(uint32_t));
233 for(cb
=0;cb
<vc
->codebook_count
;++cb
) {
234 vorbis_codebook
*codebook_setup
=&vc
->codebooks
[cb
];
235 uint_fast8_t ordered
;
236 uint_fast32_t t
, used_entries
=0;
237 uint_fast32_t entries
;
239 AV_DEBUG(" %d. Codebook \n", cb
);
241 if (get_bits(gb
, 24)!=0x564342) {
242 av_log(vc
->avccontext
, AV_LOG_ERROR
, " %"PRIdFAST16
". Codebook setup data corrupt. \n", cb
);
246 codebook_setup
->dimensions
=get_bits(gb
, 16);
247 if (codebook_setup
->dimensions
>16) {
248 av_log(vc
->avccontext
, AV_LOG_ERROR
, " %"PRIdFAST16
". Codebook's dimension is too large (%d). \n", cb
, codebook_setup
->dimensions
);
251 entries
=get_bits(gb
, 24);
252 if (entries
>V_MAX_VLCS
) {
253 av_log(vc
->avccontext
, AV_LOG_ERROR
, " %"PRIdFAST16
". Codebook has too many entries (%"PRIdFAST32
"). \n", cb
, entries
);
257 ordered
=get_bits1(gb
);
259 AV_DEBUG(" codebook_dimensions %d, codebook_entries %d \n", codebook_setup
->dimensions
, entries
);
264 uint_fast8_t sparse
=get_bits1(gb
);
266 AV_DEBUG(" not ordered \n");
269 AV_DEBUG(" sparse \n");
272 for(ce
=0;ce
<entries
;++ce
) {
275 tmp_vlc_bits
[ce
]=get_bits(gb
, 5)+1;
278 else tmp_vlc_bits
[ce
]=0;
281 AV_DEBUG(" not sparse \n");
283 used_entries
=entries
;
284 for(ce
=0;ce
<entries
;++ce
) {
285 tmp_vlc_bits
[ce
]=get_bits(gb
, 5)+1;
289 uint_fast16_t current_entry
=0;
290 uint_fast8_t current_length
=get_bits(gb
, 5)+1;
292 AV_DEBUG(" ordered, current length: %d \n", current_length
); //FIXME
294 used_entries
=entries
;
295 for(;current_entry
<used_entries
&& current_length
<= 32;++current_length
) {
296 uint_fast16_t i
, number
;
298 AV_DEBUG(" number bits: %d ", ilog(entries
- current_entry
));
300 number
=get_bits(gb
, ilog(entries
- current_entry
));
302 AV_DEBUG(" number: %d \n", number
);
304 for(i
=current_entry
;i
<number
+current_entry
;++i
) {
305 if (i
<used_entries
) tmp_vlc_bits
[i
]=current_length
;
308 current_entry
+=number
;
310 if (current_entry
>used_entries
) {
311 av_log(vc
->avccontext
, AV_LOG_ERROR
, " More codelengths than codes in codebook. \n");
316 codebook_setup
->lookup_type
=get_bits(gb
, 4);
318 AV_DEBUG(" lookup type: %d : %s \n", codebook_setup
->lookup_type
, codebook_setup
->lookup_type
? "vq" : "no lookup" );
320 // If the codebook is used for (inverse) VQ, calculate codevectors.
322 if (codebook_setup
->lookup_type
==1) {
323 uint_fast16_t i
, j
, k
;
324 uint_fast16_t codebook_lookup_values
=ff_vorbis_nth_root(entries
, codebook_setup
->dimensions
);
325 uint_fast16_t codebook_multiplicands
[codebook_lookup_values
];
327 float codebook_minimum_value
=vorbisfloat2float(get_bits_long(gb
, 32));
328 float codebook_delta_value
=vorbisfloat2float(get_bits_long(gb
, 32));
329 uint_fast8_t codebook_value_bits
=get_bits(gb
, 4)+1;
330 uint_fast8_t codebook_sequence_p
=get_bits1(gb
);
332 AV_DEBUG(" We expect %d numbers for building the codevectors. \n", codebook_lookup_values
);
333 AV_DEBUG(" delta %f minmum %f \n", codebook_delta_value
, codebook_minimum_value
);
335 for(i
=0;i
<codebook_lookup_values
;++i
) {
336 codebook_multiplicands
[i
]=get_bits(gb
, codebook_value_bits
);
338 AV_DEBUG(" multiplicands*delta+minmum : %e \n", (float)codebook_multiplicands
[i
]*codebook_delta_value
+codebook_minimum_value
);
339 AV_DEBUG(" multiplicand %d \n", codebook_multiplicands
[i
]);
342 // Weed out unused vlcs and build codevector vector
343 codebook_setup
->codevectors
=used_entries
? av_mallocz(used_entries
*codebook_setup
->dimensions
* sizeof(float)) : NULL
;
344 for(j
=0, i
=0;i
<entries
;++i
) {
345 uint_fast8_t dim
=codebook_setup
->dimensions
;
347 if (tmp_vlc_bits
[i
]) {
349 uint_fast32_t lookup_offset
=i
;
352 av_log(vc
->avccontext
, AV_LOG_INFO
, "Lookup offset %d ,", i
);
356 uint_fast32_t multiplicand_offset
= lookup_offset
% codebook_lookup_values
;
357 codebook_setup
->codevectors
[j
*dim
+k
]=codebook_multiplicands
[multiplicand_offset
]*codebook_delta_value
+codebook_minimum_value
+last
;
358 if (codebook_sequence_p
) {
359 last
=codebook_setup
->codevectors
[j
*dim
+k
];
361 lookup_offset
/=codebook_lookup_values
;
363 tmp_vlc_bits
[j
]=tmp_vlc_bits
[i
];
366 av_log(vc
->avccontext
, AV_LOG_INFO
, "real lookup offset %d, vector: ", j
);
368 av_log(vc
->avccontext
, AV_LOG_INFO
, " %f ", codebook_setup
->codevectors
[j
*dim
+k
]);
370 av_log(vc
->avccontext
, AV_LOG_INFO
, "\n");
376 if (j
!=used_entries
) {
377 av_log(vc
->avccontext
, AV_LOG_ERROR
, "Bug in codevector vector building code. \n");
380 entries
=used_entries
;
382 else if (codebook_setup
->lookup_type
>=2) {
383 av_log(vc
->avccontext
, AV_LOG_ERROR
, "Codebook lookup type not supported. \n");
387 // Initialize VLC table
388 if (ff_vorbis_len2vlc(tmp_vlc_bits
, tmp_vlc_codes
, entries
)) {
389 av_log(vc
->avccontext
, AV_LOG_ERROR
, " Invalid code lengths while generating vlcs. \n");
392 codebook_setup
->maxdepth
=0;
393 for(t
=0;t
<entries
;++t
)
394 if (tmp_vlc_bits
[t
]>=codebook_setup
->maxdepth
) codebook_setup
->maxdepth
=tmp_vlc_bits
[t
];
396 if(codebook_setup
->maxdepth
> 3*V_NB_BITS
) codebook_setup
->nb_bits
=V_NB_BITS2
;
397 else codebook_setup
->nb_bits
=V_NB_BITS
;
399 codebook_setup
->maxdepth
=(codebook_setup
->maxdepth
+codebook_setup
->nb_bits
-1)/codebook_setup
->nb_bits
;
401 if (init_vlc(&codebook_setup
->vlc
, codebook_setup
->nb_bits
, entries
, tmp_vlc_bits
, sizeof(*tmp_vlc_bits
), sizeof(*tmp_vlc_bits
), tmp_vlc_codes
, sizeof(*tmp_vlc_codes
), sizeof(*tmp_vlc_codes
), INIT_VLC_LE
)) {
402 av_log(vc
->avccontext
, AV_LOG_ERROR
, " Error generating vlc tables. \n");
407 av_free(tmp_vlc_bits
);
408 av_free(tmp_vlc_codes
);
413 av_free(tmp_vlc_bits
);
414 av_free(tmp_vlc_codes
);
418 // Process time domain transforms part (unused in Vorbis I)
420 static int vorbis_parse_setup_hdr_tdtransforms(vorbis_context
*vc
) {
421 GetBitContext
*gb
=&vc
->gb
;
423 uint_fast8_t vorbis_time_count
=get_bits(gb
, 6)+1;
425 for(i
=0;i
<vorbis_time_count
;++i
) {
426 uint_fast16_t vorbis_tdtransform
=get_bits(gb
, 16);
428 AV_DEBUG(" Vorbis time domain transform %d: %d \n", vorbis_time_count
, vorbis_tdtransform
);
430 if (vorbis_tdtransform
) {
431 av_log(vc
->avccontext
, AV_LOG_ERROR
, "Vorbis time domain transform data nonzero. \n");
438 // Process floors part
440 static uint_fast8_t vorbis_floor0_decode(vorbis_context
*vc
,
441 vorbis_floor_data
*vfu
, float *vec
);
442 static void create_map( vorbis_context
* vc
, uint_fast8_t floor_number
);
443 static uint_fast8_t vorbis_floor1_decode(vorbis_context
*vc
,
444 vorbis_floor_data
*vfu
, float *vec
);
445 static int vorbis_parse_setup_hdr_floors(vorbis_context
*vc
) {
446 GetBitContext
*gb
=&vc
->gb
;
449 vc
->floor_count
=get_bits(gb
, 6)+1;
451 vc
->floors
=av_mallocz(vc
->floor_count
* sizeof(vorbis_floor
));
453 for (i
=0;i
<vc
->floor_count
;++i
) {
454 vorbis_floor
*floor_setup
=&vc
->floors
[i
];
456 floor_setup
->floor_type
=get_bits(gb
, 16);
458 AV_DEBUG(" %d. floor type %d \n", i
, floor_setup
->floor_type
);
460 if (floor_setup
->floor_type
==1) {
461 uint_fast8_t maximum_class
=0;
462 uint_fast8_t rangebits
;
463 uint_fast16_t floor1_values
=2;
465 floor_setup
->decode
=vorbis_floor1_decode
;
467 floor_setup
->data
.t1
.partitions
=get_bits(gb
, 5);
469 AV_DEBUG(" %d.floor: %d partitions \n", i
, floor_setup
->data
.t1
.partitions
);
471 for(j
=0;j
<floor_setup
->data
.t1
.partitions
;++j
) {
472 floor_setup
->data
.t1
.partition_class
[j
]=get_bits(gb
, 4);
473 if (floor_setup
->data
.t1
.partition_class
[j
]>maximum_class
) maximum_class
=floor_setup
->data
.t1
.partition_class
[j
];
475 AV_DEBUG(" %d. floor %d partition class %d \n", i
, j
, floor_setup
->data
.t1
.partition_class
[j
]);
479 AV_DEBUG(" maximum class %d \n", maximum_class
);
481 floor_setup
->data
.t1
.maximum_class
=maximum_class
;
483 for(j
=0;j
<=maximum_class
;++j
) {
484 floor_setup
->data
.t1
.class_dimensions
[j
]=get_bits(gb
, 3)+1;
485 floor_setup
->data
.t1
.class_subclasses
[j
]=get_bits(gb
, 2);
487 AV_DEBUG(" %d floor %d class dim: %d subclasses %d \n", i
, j
, floor_setup
->data
.t1
.class_dimensions
[j
], floor_setup
->data
.t1
.class_subclasses
[j
]);
489 if (floor_setup
->data
.t1
.class_subclasses
[j
]) {
490 floor_setup
->data
.t1
.class_masterbook
[j
]=get_bits(gb
, 8);
492 AV_DEBUG(" masterbook: %d \n", floor_setup
->data
.t1
.class_masterbook
[j
]);
495 for(k
=0;k
<(1<<floor_setup
->data
.t1
.class_subclasses
[j
]);++k
) {
496 floor_setup
->data
.t1
.subclass_books
[j
][k
]=(int16_t)get_bits(gb
, 8)-1;
498 AV_DEBUG(" book %d. : %d \n", k
, floor_setup
->data
.t1
.subclass_books
[j
][k
]);
502 floor_setup
->data
.t1
.multiplier
=get_bits(gb
, 2)+1;
503 floor_setup
->data
.t1
.x_list_dim
=2;
505 for(j
=0;j
<floor_setup
->data
.t1
.partitions
;++j
) {
506 floor_setup
->data
.t1
.x_list_dim
+=floor_setup
->data
.t1
.class_dimensions
[floor_setup
->data
.t1
.partition_class
[j
]];
509 floor_setup
->data
.t1
.list
=av_mallocz(floor_setup
->data
.t1
.x_list_dim
* sizeof(vorbis_floor1_entry
));
512 rangebits
=get_bits(gb
, 4);
513 floor_setup
->data
.t1
.list
[0].x
= 0;
514 floor_setup
->data
.t1
.list
[1].x
= (1<<rangebits
);
516 for(j
=0;j
<floor_setup
->data
.t1
.partitions
;++j
) {
517 for(k
=0;k
<floor_setup
->data
.t1
.class_dimensions
[floor_setup
->data
.t1
.partition_class
[j
]];++k
,++floor1_values
) {
518 floor_setup
->data
.t1
.list
[floor1_values
].x
=get_bits(gb
, rangebits
);
520 AV_DEBUG(" %d. floor1 Y coord. %d \n", floor1_values
, floor_setup
->data
.t1
.list
[floor1_values
].x
);
524 // Precalculate order of x coordinates - needed for decode
525 ff_vorbis_ready_floor1_list(floor_setup
->data
.t1
.list
, floor_setup
->data
.t1
.x_list_dim
);
527 else if(floor_setup
->floor_type
==0) {
528 uint_fast8_t max_codebook_dim
=0;
530 floor_setup
->decode
=vorbis_floor0_decode
;
532 floor_setup
->data
.t0
.order
=get_bits(gb
, 8);
533 floor_setup
->data
.t0
.rate
=get_bits(gb
, 16);
534 floor_setup
->data
.t0
.bark_map_size
=get_bits(gb
, 16);
535 floor_setup
->data
.t0
.amplitude_bits
=get_bits(gb
, 6);
536 /* zero would result in a div by zero later *
538 if (floor_setup
->data
.t0
.amplitude_bits
== 0) {
539 av_log(vc
->avccontext
, AV_LOG_ERROR
,
540 "Floor 0 amplitude bits is 0.\n");
543 floor_setup
->data
.t0
.amplitude_offset
=get_bits(gb
, 8);
544 floor_setup
->data
.t0
.num_books
=get_bits(gb
, 4)+1;
546 /* allocate mem for booklist */
547 floor_setup
->data
.t0
.book_list
=
548 av_malloc(floor_setup
->data
.t0
.num_books
);
549 if(!floor_setup
->data
.t0
.book_list
) { return 1; }
550 /* read book indexes */
553 uint_fast8_t book_idx
;
554 for (idx
=0;idx
<floor_setup
->data
.t0
.num_books
;++idx
) {
555 book_idx
=get_bits(gb
, 8);
556 floor_setup
->data
.t0
.book_list
[idx
]=book_idx
;
557 if (vc
->codebooks
[book_idx
].dimensions
> max_codebook_dim
)
558 max_codebook_dim
=vc
->codebooks
[book_idx
].dimensions
;
560 if (floor_setup
->data
.t0
.book_list
[idx
]>vc
->codebook_count
)
567 /* allocate mem for lsp coefficients */
569 /* codebook dim is for padding if codebook dim doesn't *
570 * divide order+1 then we need to read more data */
571 floor_setup
->data
.t0
.lsp
=
572 av_malloc((floor_setup
->data
.t0
.order
+1 + max_codebook_dim
)
574 if(!floor_setup
->data
.t0
.lsp
) { return 1; }
577 #ifdef V_DEBUG /* debug output parsed headers */
578 AV_DEBUG("floor0 order: %u\n", floor_setup
->data
.t0
.order
);
579 AV_DEBUG("floor0 rate: %u\n", floor_setup
->data
.t0
.rate
);
580 AV_DEBUG("floor0 bark map size: %u\n",
581 floor_setup
->data
.t0
.bark_map_size
);
582 AV_DEBUG("floor0 amplitude bits: %u\n",
583 floor_setup
->data
.t0
.amplitude_bits
);
584 AV_DEBUG("floor0 amplitude offset: %u\n",
585 floor_setup
->data
.t0
.amplitude_offset
);
586 AV_DEBUG("floor0 number of books: %u\n",
587 floor_setup
->data
.t0
.num_books
);
588 AV_DEBUG("floor0 book list pointer: %p\n",
589 floor_setup
->data
.t0
.book_list
);
592 for (idx
=0;idx
<floor_setup
->data
.t0
.num_books
;++idx
) {
593 AV_DEBUG( " Book %d: %u\n",
595 floor_setup
->data
.t0
.book_list
[idx
] );
601 av_log(vc
->avccontext
, AV_LOG_ERROR
, "Invalid floor type!\n");
608 // Process residues part
610 static int vorbis_parse_setup_hdr_residues(vorbis_context
*vc
){
611 GetBitContext
*gb
=&vc
->gb
;
612 uint_fast8_t i
, j
, k
;
614 vc
->residue_count
=get_bits(gb
, 6)+1;
615 vc
->residues
=av_mallocz(vc
->residue_count
* sizeof(vorbis_residue
));
617 AV_DEBUG(" There are %d residues. \n", vc
->residue_count
);
619 for(i
=0;i
<vc
->residue_count
;++i
) {
620 vorbis_residue
*res_setup
=&vc
->residues
[i
];
621 uint_fast8_t cascade
[64];
622 uint_fast8_t high_bits
;
623 uint_fast8_t low_bits
;
625 res_setup
->type
=get_bits(gb
, 16);
627 AV_DEBUG(" %d. residue type %d \n", i
, res_setup
->type
);
629 res_setup
->begin
=get_bits(gb
, 24);
630 res_setup
->end
=get_bits(gb
, 24);
631 res_setup
->partition_size
=get_bits(gb
, 24)+1;
632 res_setup
->classifications
=get_bits(gb
, 6)+1;
633 res_setup
->classbook
=get_bits(gb
, 8);
635 AV_DEBUG(" begin %d end %d part.size %d classif.s %d classbook %d \n", res_setup
->begin
, res_setup
->end
, res_setup
->partition_size
,
636 res_setup
->classifications
, res_setup
->classbook
);
638 for(j
=0;j
<res_setup
->classifications
;++j
) {
640 low_bits
=get_bits(gb
, 3);
642 high_bits
=get_bits(gb
, 5);
644 cascade
[j
]=(high_bits
<<3)+low_bits
;
646 AV_DEBUG(" %d class casscade depth: %d \n", j
, ilog(cascade
[j
]));
649 res_setup
->maxpass
=0;
650 for(j
=0;j
<res_setup
->classifications
;++j
) {
652 if (cascade
[j
]&(1<<k
)) {
653 res_setup
->books
[j
][k
]=get_bits(gb
, 8);
655 AV_DEBUG(" %d class casscade depth %d book: %d \n", j
, k
, res_setup
->books
[j
][k
]);
657 if (k
>res_setup
->maxpass
) {
658 res_setup
->maxpass
=k
;
661 res_setup
->books
[j
][k
]=-1;
669 // Process mappings part
671 static int vorbis_parse_setup_hdr_mappings(vorbis_context
*vc
) {
672 GetBitContext
*gb
=&vc
->gb
;
675 vc
->mapping_count
=get_bits(gb
, 6)+1;
676 vc
->mappings
=av_mallocz(vc
->mapping_count
* sizeof(vorbis_mapping
));
678 AV_DEBUG(" There are %d mappings. \n", vc
->mapping_count
);
680 for(i
=0;i
<vc
->mapping_count
;++i
) {
681 vorbis_mapping
*mapping_setup
=&vc
->mappings
[i
];
683 if (get_bits(gb
, 16)) {
684 av_log(vc
->avccontext
, AV_LOG_ERROR
, "Other mappings than type 0 are not compliant with the Vorbis I specification. \n");
688 mapping_setup
->submaps
=get_bits(gb
, 4)+1;
690 mapping_setup
->submaps
=1;
694 mapping_setup
->coupling_steps
=get_bits(gb
, 8)+1;
695 mapping_setup
->magnitude
=av_mallocz(mapping_setup
->coupling_steps
* sizeof(uint_fast8_t));
696 mapping_setup
->angle
=av_mallocz(mapping_setup
->coupling_steps
* sizeof(uint_fast8_t));
697 for(j
=0;j
<mapping_setup
->coupling_steps
;++j
) {
698 mapping_setup
->magnitude
[j
]=get_bits(gb
, ilog(vc
->audio_channels
-1));
699 mapping_setup
->angle
[j
]=get_bits(gb
, ilog(vc
->audio_channels
-1));
700 // FIXME: sanity checks
703 mapping_setup
->coupling_steps
=0;
706 AV_DEBUG(" %d mapping coupling steps: %d \n", i
, mapping_setup
->coupling_steps
);
708 if(get_bits(gb
, 2)) {
709 av_log(vc
->avccontext
, AV_LOG_ERROR
, "%d. mapping setup data invalid. \n", i
);
710 return 1; // following spec.
713 if (mapping_setup
->submaps
>1) {
714 mapping_setup
->mux
=av_mallocz(vc
->audio_channels
* sizeof(uint_fast8_t));
715 for(j
=0;j
<vc
->audio_channels
;++j
) {
716 mapping_setup
->mux
[j
]=get_bits(gb
, 4);
720 for(j
=0;j
<mapping_setup
->submaps
;++j
) {
721 skip_bits(gb
, 8); // FIXME check?
722 mapping_setup
->submap_floor
[j
]=get_bits(gb
, 8);
723 mapping_setup
->submap_residue
[j
]=get_bits(gb
, 8);
725 AV_DEBUG(" %d mapping %d submap : floor %d, residue %d \n", i
, j
, mapping_setup
->submap_floor
[j
], mapping_setup
->submap_residue
[j
]);
731 // Process modes part
733 static void create_map( vorbis_context
* vc
, uint_fast8_t floor_number
)
735 vorbis_floor
* floors
=vc
->floors
;
738 int_fast8_t blockflag
;
740 int_fast32_t n
; //TODO: could theoretically be smaller?
742 for (blockflag
=0;blockflag
<2;++blockflag
)
744 n
=vc
->blocksize
[blockflag
]/2;
745 floors
[floor_number
].data
.t0
.map
[blockflag
]=
746 av_malloc((n
+1) * sizeof(int_fast32_t)); // n+sentinel
748 map
=floors
[floor_number
].data
.t0
.map
[blockflag
];
749 vf
=&floors
[floor_number
].data
.t0
;
751 for (idx
=0; idx
<n
;++idx
) {
752 map
[idx
]=floor( BARK((vf
->rate
*idx
)/(2.0f
*n
)) *
753 ((vf
->bark_map_size
)/
754 BARK(vf
->rate
/2.0f
)) );
755 if (vf
->bark_map_size
-1 < map
[idx
]) {
756 map
[idx
]=vf
->bark_map_size
-1;
760 vf
->map_size
[blockflag
]=n
;
764 for(idx
=0;idx
<=n
;++idx
) {
765 AV_DEBUG("floor0 map: map at pos %d is %d\n",
771 static int vorbis_parse_setup_hdr_modes(vorbis_context
*vc
) {
772 GetBitContext
*gb
=&vc
->gb
;
775 vc
->mode_count
=get_bits(gb
, 6)+1;
776 vc
->modes
=av_mallocz(vc
->mode_count
* sizeof(vorbis_mode
));
778 AV_DEBUG(" There are %d modes.\n", vc
->mode_count
);
780 for(i
=0;i
<vc
->mode_count
;++i
) {
781 vorbis_mode
*mode_setup
=&vc
->modes
[i
];
783 mode_setup
->blockflag
=get_bits1(gb
);
784 mode_setup
->windowtype
=get_bits(gb
, 16); //FIXME check
785 mode_setup
->transformtype
=get_bits(gb
, 16); //FIXME check
786 mode_setup
->mapping
=get_bits(gb
, 8); //FIXME check
788 AV_DEBUG(" %d mode: blockflag %d, windowtype %d, transformtype %d, mapping %d \n", i
, mode_setup
->blockflag
, mode_setup
->windowtype
, mode_setup
->transformtype
, mode_setup
->mapping
);
793 // Process the whole setup header using the functions above
795 static int vorbis_parse_setup_hdr(vorbis_context
*vc
) {
796 GetBitContext
*gb
=&vc
->gb
;
798 if ((get_bits(gb
, 8)!='v') || (get_bits(gb
, 8)!='o') ||
799 (get_bits(gb
, 8)!='r') || (get_bits(gb
, 8)!='b') ||
800 (get_bits(gb
, 8)!='i') || (get_bits(gb
, 8)!='s')) {
801 av_log(vc
->avccontext
, AV_LOG_ERROR
, " Vorbis setup header packet corrupt (no vorbis signature). \n");
805 if (vorbis_parse_setup_hdr_codebooks(vc
)) {
806 av_log(vc
->avccontext
, AV_LOG_ERROR
, " Vorbis setup header packet corrupt (codebooks). \n");
809 if (vorbis_parse_setup_hdr_tdtransforms(vc
)) {
810 av_log(vc
->avccontext
, AV_LOG_ERROR
, " Vorbis setup header packet corrupt (time domain transforms). \n");
813 if (vorbis_parse_setup_hdr_floors(vc
)) {
814 av_log(vc
->avccontext
, AV_LOG_ERROR
, " Vorbis setup header packet corrupt (floors). \n");
817 if (vorbis_parse_setup_hdr_residues(vc
)) {
818 av_log(vc
->avccontext
, AV_LOG_ERROR
, " Vorbis setup header packet corrupt (residues). \n");
821 if (vorbis_parse_setup_hdr_mappings(vc
)) {
822 av_log(vc
->avccontext
, AV_LOG_ERROR
, " Vorbis setup header packet corrupt (mappings). \n");
825 if (vorbis_parse_setup_hdr_modes(vc
)) {
826 av_log(vc
->avccontext
, AV_LOG_ERROR
, " Vorbis setup header packet corrupt (modes). \n");
829 if (!get_bits1(gb
)) {
830 av_log(vc
->avccontext
, AV_LOG_ERROR
, " Vorbis setup header packet corrupt (framing flag). \n");
831 return 8; // framing flag bit unset error
837 // Process the identification header
839 static int vorbis_parse_id_hdr(vorbis_context
*vc
){
840 GetBitContext
*gb
=&vc
->gb
;
841 uint_fast8_t bl0
, bl1
;
843 if ((get_bits(gb
, 8)!='v') || (get_bits(gb
, 8)!='o') ||
844 (get_bits(gb
, 8)!='r') || (get_bits(gb
, 8)!='b') ||
845 (get_bits(gb
, 8)!='i') || (get_bits(gb
, 8)!='s')) {
846 av_log(vc
->avccontext
, AV_LOG_ERROR
, " Vorbis id header packet corrupt (no vorbis signature). \n");
850 vc
->version
=get_bits_long(gb
, 32); //FIXME check 0
851 vc
->audio_channels
=get_bits(gb
, 8); //FIXME check >0
852 vc
->audio_samplerate
=get_bits_long(gb
, 32); //FIXME check >0
853 vc
->bitrate_maximum
=get_bits_long(gb
, 32);
854 vc
->bitrate_nominal
=get_bits_long(gb
, 32);
855 vc
->bitrate_minimum
=get_bits_long(gb
, 32);
858 vc
->blocksize
[0]=(1<<bl0
);
859 vc
->blocksize
[1]=(1<<bl1
);
860 if (bl0
>13 || bl0
<6 || bl1
>13 || bl1
<6 || bl1
<bl0
) {
861 av_log(vc
->avccontext
, AV_LOG_ERROR
, " Vorbis id header packet corrupt (illegal blocksize). \n");
864 // output format int16
865 if (vc
->blocksize
[1]/2 * vc
->audio_channels
* 2 >
866 AVCODEC_MAX_AUDIO_FRAME_SIZE
) {
867 av_log(vc
->avccontext
, AV_LOG_ERROR
, "Vorbis channel count makes "
868 "output packets too large.\n");
871 vc
->win
[0]=ff_vorbis_vwin
[bl0
-6];
872 vc
->win
[1]=ff_vorbis_vwin
[bl1
-6];
874 if ((get_bits1(gb
)) == 0) {
875 av_log(vc
->avccontext
, AV_LOG_ERROR
, " Vorbis id header packet corrupt (framing flag not set). \n");
879 vc
->channel_residues
= av_malloc((vc
->blocksize
[1]/2)*vc
->audio_channels
* sizeof(float));
880 vc
->channel_floors
= av_malloc((vc
->blocksize
[1]/2)*vc
->audio_channels
* sizeof(float));
881 vc
->saved
= av_mallocz((vc
->blocksize
[1]/4)*vc
->audio_channels
* sizeof(float));
882 vc
->previous_window
=0;
884 ff_mdct_init(&vc
->mdct
[0], bl0
, 1, vc
->exp_bias
? -(1<<15) : -1.0);
885 ff_mdct_init(&vc
->mdct
[1], bl1
, 1, vc
->exp_bias
? -(1<<15) : -1.0);
887 AV_DEBUG(" vorbis version %d \n audio_channels %d \n audio_samplerate %d \n bitrate_max %d \n bitrate_nom %d \n bitrate_min %d \n blk_0 %d blk_1 %d \n ",
888 vc
->version
, vc
->audio_channels
, vc
->audio_samplerate
, vc
->bitrate_maximum
, vc
->bitrate_nominal
, vc
->bitrate_minimum
, vc
->blocksize
[0], vc
->blocksize
[1]);
891 BLK=vc->blocksize[0];
892 for(i=0;i<BLK/2;++i) {
893 vc->win[0][i]=sin(0.5*3.14159265358*(sin(((float)i+0.5)/(float)BLK*3.14159265358))*(sin(((float)i+0.5)/(float)BLK*3.14159265358)));
900 // Process the extradata using the functions above (identification header, setup header)
902 static av_cold
int vorbis_decode_init(AVCodecContext
*avccontext
) {
903 vorbis_context
*vc
= avccontext
->priv_data
;
904 uint8_t *headers
= avccontext
->extradata
;
905 int headers_len
=avccontext
->extradata_size
;
906 uint8_t *header_start
[3];
908 GetBitContext
*gb
= &(vc
->gb
);
911 vc
->avccontext
= avccontext
;
912 dsputil_init(&vc
->dsp
, avccontext
);
914 if(vc
->dsp
.float_to_int16_interleave
== ff_float_to_int16_interleave_c
) {
919 vc
->exp_bias
= 15<<23;
923 av_log(avccontext
, AV_LOG_ERROR
, "Extradata corrupt.\n");
927 if (ff_split_xiph_headers(headers
, headers_len
, 30, header_start
, header_len
) < 0) {
928 av_log(avccontext
, AV_LOG_ERROR
, "Extradata corrupt.\n");
932 init_get_bits(gb
, header_start
[0], header_len
[0]*8);
933 hdr_type
=get_bits(gb
, 8);
935 av_log(avccontext
, AV_LOG_ERROR
, "First header is not the id header.\n");
938 if (vorbis_parse_id_hdr(vc
)) {
939 av_log(avccontext
, AV_LOG_ERROR
, "Id header corrupt.\n");
944 init_get_bits(gb
, header_start
[2], header_len
[2]*8);
945 hdr_type
=get_bits(gb
, 8);
947 av_log(avccontext
, AV_LOG_ERROR
, "Third header is not the setup header.\n");
951 if (vorbis_parse_setup_hdr(vc
)) {
952 av_log(avccontext
, AV_LOG_ERROR
, "Setup header corrupt.\n");
957 avccontext
->channels
= vc
->audio_channels
;
958 avccontext
->sample_rate
= vc
->audio_samplerate
;
959 avccontext
->frame_size
= FFMIN(vc
->blocksize
[0], vc
->blocksize
[1])>>2;
960 avccontext
->sample_fmt
= SAMPLE_FMT_S16
;
965 // Decode audiopackets -------------------------------------------------
967 // Read and decode floor
969 static uint_fast8_t vorbis_floor0_decode(vorbis_context
*vc
,
970 vorbis_floor_data
*vfu
, float *vec
) {
971 vorbis_floor0
* vf
=&vfu
->t0
;
973 uint_fast32_t amplitude
;
974 uint_fast32_t book_idx
;
975 uint_fast8_t blockflag
=vc
->modes
[vc
->mode_number
].blockflag
;
977 amplitude
=get_bits(&vc
->gb
, vf
->amplitude_bits
);
980 uint_fast16_t lsp_len
= 0;
982 vorbis_codebook codebook
;
984 book_idx
=get_bits(&vc
->gb
, ilog(vf
->num_books
));
985 if ( book_idx
>= vf
->num_books
) {
986 av_log( vc
->avccontext
, AV_LOG_ERROR
,
987 "floor0 dec: booknumber too high!\n" );
991 AV_DEBUG( "floor0 dec: booknumber: %u\n", book_idx
);
992 codebook
=vc
->codebooks
[vf
->book_list
[book_idx
]];
994 while (lsp_len
<vf
->order
) {
997 AV_DEBUG( "floor0 dec: book dimension: %d\n", codebook
.dimensions
);
998 AV_DEBUG( "floor0 dec: maximum depth: %d\n", codebook
.maxdepth
);
999 /* read temp vector */
1000 vec_off
=get_vlc2(&vc
->gb
,
1003 codebook
.maxdepth
) *
1004 codebook
.dimensions
;
1005 AV_DEBUG( "floor0 dec: vector offset: %d\n", vec_off
);
1006 /* copy each vector component and add last to it */
1007 for (idx
=0; idx
<codebook
.dimensions
; ++idx
) {
1008 lsp
[lsp_len
+idx
]=codebook
.codevectors
[vec_off
+idx
]+last
;
1010 last
=lsp
[lsp_len
+idx
-1]; /* set last to last vector component */
1012 lsp_len
+= codebook
.dimensions
;
1015 /* DEBUG: output lsp coeffs */
1018 for ( idx
= 0; idx
< lsp_len
; ++idx
)
1019 AV_DEBUG("floor0 dec: coeff at %d is %f\n", idx
, lsp
[idx
] );
1023 /* synthesize floor output vector */
1026 int order
=vf
->order
;
1027 float wstep
=M_PI
/vf
->bark_map_size
;
1029 for(i
=0;i
<order
;i
++) { lsp
[i
]=2.0f
*cos(lsp
[i
]); }
1031 AV_DEBUG("floor0 synth: map_size=%d; m=%d; wstep=%f\n",
1032 vf
->map_size
, order
, wstep
);
1035 while(i
<vf
->map_size
[blockflag
]) {
1036 int j
, iter_cond
=vf
->map
[blockflag
][i
];
1039 float two_cos_w
=2.0f
*cos(wstep
*iter_cond
); // needed all times
1041 /* similar part for the q and p products */
1042 for(j
=0;j
+1<order
;j
+=2) {
1043 q
*= lsp
[j
] -two_cos_w
;
1044 p
*= lsp
[j
+1]-two_cos_w
;
1046 if(j
==order
) { // even order
1047 p
*= p
*(2.0f
-two_cos_w
);
1048 q
*= q
*(2.0f
+two_cos_w
);
1051 q
*= two_cos_w
-lsp
[j
]; // one more time for q
1053 /* final step and square */
1054 p
*= p
*(4.f
-two_cos_w
*two_cos_w
);
1058 /* calculate linear floor value */
1061 ( (amplitude
*vf
->amplitude_offset
)/
1062 (((1<<vf
->amplitude_bits
)-1) * sqrt(p
+q
)) )
1063 - vf
->amplitude_offset
) * .11512925f
1068 do { vec
[i
]=q
; ++i
; }while(vf
->map
[blockflag
][i
]==iter_cond
);
1073 /* this channel is unused */
1077 AV_DEBUG(" Floor0 decoded\n");
1082 static uint_fast8_t vorbis_floor1_decode(vorbis_context
*vc
, vorbis_floor_data
*vfu
, float *vec
) {
1083 vorbis_floor1
* vf
=&vfu
->t1
;
1084 GetBitContext
*gb
=&vc
->gb
;
1085 uint_fast16_t range_v
[4]={ 256, 128, 86, 64 };
1086 uint_fast16_t range
=range_v
[vf
->multiplier
-1];
1087 uint_fast16_t floor1_Y
[vf
->x_list_dim
];
1088 uint_fast16_t floor1_Y_final
[vf
->x_list_dim
];
1089 int floor1_flag
[vf
->x_list_dim
];
1090 uint_fast8_t class_
;
1096 uint_fast16_t offset
;
1098 /*u*/int_fast16_t adx
, ady
, off
, predicted
; // WTF ? dy/adx= (unsigned)dy/adx ?
1099 int_fast16_t dy
, err
;
1102 if (!get_bits1(gb
)) return 1; // silence
1104 // Read values (or differences) for the floor's points
1106 floor1_Y
[0]=get_bits(gb
, ilog(range
-1));
1107 floor1_Y
[1]=get_bits(gb
, ilog(range
-1));
1109 AV_DEBUG("floor 0 Y %d floor 1 Y %d \n", floor1_Y
[0], floor1_Y
[1]);
1112 for(i
=0;i
<vf
->partitions
;++i
) {
1113 class_
=vf
->partition_class
[i
];
1114 cdim
=vf
->class_dimensions
[class_
];
1115 cbits
=vf
->class_subclasses
[class_
];
1119 AV_DEBUG("Cbits %d \n", cbits
);
1121 if (cbits
) { // this reads all subclasses for this partition's class
1122 cval
=get_vlc2(gb
, vc
->codebooks
[vf
->class_masterbook
[class_
]].vlc
.table
,
1123 vc
->codebooks
[vf
->class_masterbook
[class_
]].nb_bits
, 3);
1126 for(j
=0;j
<cdim
;++j
) {
1127 book
=vf
->subclass_books
[class_
][cval
& csub
];
1129 AV_DEBUG("book %d Cbits %d cval %d bits:%d \n", book
, cbits
, cval
, get_bits_count(gb
));
1133 floor1_Y
[offset
+j
]=get_vlc2(gb
, vc
->codebooks
[book
].vlc
.table
,
1134 vc
->codebooks
[book
].nb_bits
, 3);
1136 floor1_Y
[offset
+j
]=0;
1139 AV_DEBUG(" floor(%d) = %d \n", vf
->list
[offset
+j
].x
, floor1_Y
[offset
+j
]);
1144 // Amplitude calculation from the differences
1148 floor1_Y_final
[0]=floor1_Y
[0];
1149 floor1_Y_final
[1]=floor1_Y
[1];
1151 for(i
=2;i
<vf
->x_list_dim
;++i
) {
1152 uint_fast16_t val
, highroom
, lowroom
, room
;
1153 uint_fast16_t high_neigh_offs
;
1154 uint_fast16_t low_neigh_offs
;
1156 low_neigh_offs
=vf
->list
[i
].low
;
1157 high_neigh_offs
=vf
->list
[i
].high
;
1158 dy
=floor1_Y_final
[high_neigh_offs
]-floor1_Y_final
[low_neigh_offs
]; // render_point begin
1159 adx
=vf
->list
[high_neigh_offs
].x
-vf
->list
[low_neigh_offs
].x
;
1161 err
=ady
*(vf
->list
[i
].x
-vf
->list
[low_neigh_offs
].x
);
1162 off
=(int16_t)err
/(int16_t)adx
;
1164 predicted
=floor1_Y_final
[low_neigh_offs
]-off
;
1166 predicted
=floor1_Y_final
[low_neigh_offs
]+off
;
1167 } // render_point end
1170 highroom
=range
-predicted
;
1172 if (highroom
< lowroom
) {
1175 room
=lowroom
*2; // SPEC mispelling
1178 floor1_flag
[low_neigh_offs
]=1;
1179 floor1_flag
[high_neigh_offs
]=1;
1182 if (highroom
> lowroom
) {
1183 floor1_Y_final
[i
]=val
-lowroom
+predicted
;
1185 floor1_Y_final
[i
]=predicted
-val
+highroom
-1;
1189 floor1_Y_final
[i
]=predicted
-(val
+1)/2;
1191 floor1_Y_final
[i
]=predicted
+val
/2;
1196 floor1_Y_final
[i
]=predicted
;
1199 AV_DEBUG(" Decoded floor(%d) = %d / val %d \n", vf
->list
[i
].x
, floor1_Y_final
[i
], val
);
1202 // Curve synth - connect the calculated dots and convert from dB scale FIXME optimize ?
1204 ff_vorbis_floor1_render_list(vf
->list
, vf
->x_list_dim
, floor1_Y_final
, floor1_flag
, vf
->multiplier
, vec
, vf
->list
[1].x
);
1206 AV_DEBUG(" Floor decoded\n");
1211 // Read and decode residue
1213 static av_always_inline
int vorbis_residue_decode_internal(vorbis_context
*vc
, vorbis_residue
*vr
, uint_fast8_t ch
, uint_fast8_t *do_not_decode
, float *vec
, uint_fast16_t vlen
, int vr_type
) {
1214 GetBitContext
*gb
=&vc
->gb
;
1215 uint_fast8_t c_p_c
=vc
->codebooks
[vr
->classbook
].dimensions
;
1216 uint_fast16_t n_to_read
=vr
->end
-vr
->begin
;
1217 uint_fast16_t ptns_to_read
=n_to_read
/vr
->partition_size
;
1218 uint_fast8_t classifs
[ptns_to_read
*vc
->audio_channels
];
1220 uint_fast8_t ch_used
;
1226 do_not_decode
[0]&=do_not_decode
[j
]; // FIXME - clobbering input
1228 if (do_not_decode
[0]) return 0;
1234 AV_DEBUG(" residue type 0/1/2 decode begin, ch: %d cpc %d \n", ch
, c_p_c
);
1236 for(pass
=0;pass
<=vr
->maxpass
;++pass
) { // FIXME OPTIMIZE?
1237 uint_fast16_t voffset
;
1238 uint_fast16_t partition_count
;
1239 uint_fast16_t j_times_ptns_to_read
;
1242 for(partition_count
=0;partition_count
<ptns_to_read
;) { // SPEC error
1244 uint_fast32_t inverse_class
= ff_inverse
[vr
->classifications
];
1245 for(j_times_ptns_to_read
=0, j
=0;j
<ch_used
;++j
) {
1246 if (!do_not_decode
[j
]) {
1247 uint_fast32_t temp
=get_vlc2(gb
, vc
->codebooks
[vr
->classbook
].vlc
.table
,
1248 vc
->codebooks
[vr
->classbook
].nb_bits
, 3);
1250 AV_DEBUG("Classword: %d \n", temp
);
1252 assert(vr
->classifications
> 1 && temp
<=65536); //needed for inverse[]
1253 for(i
=0;i
<c_p_c
;++i
) {
1254 uint_fast32_t temp2
;
1256 temp2
=(((uint_fast64_t)temp
) * inverse_class
)>>32;
1257 if (partition_count
+c_p_c
-1-i
< ptns_to_read
) {
1258 classifs
[j_times_ptns_to_read
+partition_count
+c_p_c
-1-i
]=temp
-temp2
*vr
->classifications
;
1263 j_times_ptns_to_read
+=ptns_to_read
;
1266 for(i
=0;(i
<c_p_c
) && (partition_count
<ptns_to_read
);++i
) {
1267 for(j_times_ptns_to_read
=0, j
=0;j
<ch_used
;++j
) {
1268 uint_fast16_t voffs
;
1270 if (!do_not_decode
[j
]) {
1271 uint_fast8_t vqclass
=classifs
[j_times_ptns_to_read
+partition_count
];
1272 int_fast16_t vqbook
=vr
->books
[vqclass
][pass
];
1274 if (vqbook
>=0 && vc
->codebooks
[vqbook
].codevectors
) {
1275 uint_fast16_t coffs
;
1276 unsigned dim
= vc
->codebooks
[vqbook
].dimensions
; // not uint_fast8_t: 64bit is slower here on amd64
1277 uint_fast16_t step
= dim
==1 ? vr
->partition_size
1278 : FASTDIV(vr
->partition_size
, dim
);
1279 vorbis_codebook codebook
= vc
->codebooks
[vqbook
];
1283 voffs
=voffset
+j
*vlen
;
1284 for(k
=0;k
<step
;++k
) {
1285 coffs
=get_vlc2(gb
, codebook
.vlc
.table
, codebook
.nb_bits
, 3) * dim
;
1286 for(l
=0;l
<dim
;++l
) {
1287 vec
[voffs
+k
+l
*step
]+=codebook
.codevectors
[coffs
+l
]; // FPMATH
1291 else if (vr_type
==1) {
1292 voffs
=voffset
+j
*vlen
;
1293 for(k
=0;k
<step
;++k
) {
1294 coffs
=get_vlc2(gb
, codebook
.vlc
.table
, codebook
.nb_bits
, 3) * dim
;
1295 for(l
=0;l
<dim
;++l
, ++voffs
) {
1296 vec
[voffs
]+=codebook
.codevectors
[coffs
+l
]; // FPMATH
1298 AV_DEBUG(" pass %d offs: %d curr: %f change: %f cv offs.: %d \n", pass
, voffs
, vec
[voffs
], codebook
.codevectors
[coffs
+l
], coffs
);
1302 else if (vr_type
==2 && ch
==2 && (voffset
&1)==0 && (dim
&1)==0) { // most frequent case optimized
1306 for(k
=0;k
<step
;++k
) {
1307 coffs
=get_vlc2(gb
, codebook
.vlc
.table
, codebook
.nb_bits
, 3) * 2;
1308 vec
[voffs
+k
]+=codebook
.codevectors
[coffs
]; // FPMATH
1309 vec
[voffs
+k
+vlen
]+=codebook
.codevectors
[coffs
+1]; // FPMATH
1312 for(k
=0;k
<step
;++k
, voffs
+=2) {
1313 coffs
=get_vlc2(gb
, codebook
.vlc
.table
, codebook
.nb_bits
, 3) * 4;
1314 vec
[voffs
]+=codebook
.codevectors
[coffs
]; // FPMATH
1315 vec
[voffs
+1 ]+=codebook
.codevectors
[coffs
+2]; // FPMATH
1316 vec
[voffs
+vlen
]+=codebook
.codevectors
[coffs
+1]; // FPMATH
1317 vec
[voffs
+vlen
+1]+=codebook
.codevectors
[coffs
+3]; // FPMATH
1320 for(k
=0;k
<step
;++k
) {
1321 coffs
=get_vlc2(gb
, codebook
.vlc
.table
, codebook
.nb_bits
, 3) * dim
;
1322 for(l
=0;l
<dim
;l
+=2, voffs
++) {
1323 vec
[voffs
]+=codebook
.codevectors
[coffs
+l
]; // FPMATH
1324 vec
[voffs
+vlen
]+=codebook
.codevectors
[coffs
+l
+1]; // FPMATH
1326 AV_DEBUG(" pass %d offs: %d curr: %f change: %f cv offs.: %d+%d \n", pass
, voffset
/ch
+(voffs
%ch
)*vlen
, vec
[voffset
/ch
+(voffs
%ch
)*vlen
], codebook
.codevectors
[coffs
+l
], coffs
, l
);
1331 else if (vr_type
==2) {
1334 for(k
=0;k
<step
;++k
) {
1335 coffs
=get_vlc2(gb
, codebook
.vlc
.table
, codebook
.nb_bits
, 3) * dim
;
1336 for(l
=0;l
<dim
;++l
, ++voffs
) {
1337 vec
[voffs
/ch
+(voffs
%ch
)*vlen
]+=codebook
.codevectors
[coffs
+l
]; // FPMATH FIXME use if and counter instead of / and %
1339 AV_DEBUG(" pass %d offs: %d curr: %f change: %f cv offs.: %d+%d \n", pass
, voffset
/ch
+(voffs
%ch
)*vlen
, vec
[voffset
/ch
+(voffs
%ch
)*vlen
], codebook
.codevectors
[coffs
+l
], coffs
, l
);
1345 j_times_ptns_to_read
+=ptns_to_read
;
1348 voffset
+=vr
->partition_size
;
1355 static inline int vorbis_residue_decode(vorbis_context
*vc
, vorbis_residue
*vr
, uint_fast8_t ch
, uint_fast8_t *do_not_decode
, float *vec
, uint_fast16_t vlen
)
1358 return vorbis_residue_decode_internal(vc
, vr
, ch
, do_not_decode
, vec
, vlen
, 2);
1359 else if (vr
->type
==1)
1360 return vorbis_residue_decode_internal(vc
, vr
, ch
, do_not_decode
, vec
, vlen
, 1);
1361 else if (vr
->type
==0)
1362 return vorbis_residue_decode_internal(vc
, vr
, ch
, do_not_decode
, vec
, vlen
, 0);
1364 av_log(vc
->avccontext
, AV_LOG_ERROR
, " Invalid residue type while residue decode?! \n");
1369 void vorbis_inverse_coupling(float *mag
, float *ang
, int blocksize
)
1372 for(i
=0; i
<blocksize
; i
++)
1376 ang
[i
]=mag
[i
]-ang
[i
];
1394 static void copy_normalize(float *dst
, float *src
, int len
, int exp_bias
, float add_bias
)
1398 memcpy(dst
, src
, len
* sizeof(float));
1400 for(i
=0; i
<len
; i
++)
1401 dst
[i
] = src
[i
] + add_bias
;
1405 // Decode the audio packet using the functions above
1407 static int vorbis_parse_audio_packet(vorbis_context
*vc
) {
1408 GetBitContext
*gb
=&vc
->gb
;
1410 uint_fast8_t previous_window
=vc
->previous_window
;
1411 uint_fast8_t mode_number
;
1412 uint_fast8_t blockflag
;
1413 uint_fast16_t blocksize
;
1415 uint_fast8_t no_residue
[vc
->audio_channels
];
1416 uint_fast8_t do_not_decode
[vc
->audio_channels
];
1417 vorbis_mapping
*mapping
;
1418 float *ch_res_ptr
=vc
->channel_residues
;
1419 float *ch_floor_ptr
=vc
->channel_floors
;
1420 uint_fast8_t res_chan
[vc
->audio_channels
];
1421 uint_fast8_t res_num
=0;
1422 int_fast16_t retlen
=0;
1423 float fadd_bias
= vc
->add_bias
;
1425 if (get_bits1(gb
)) {
1426 av_log(vc
->avccontext
, AV_LOG_ERROR
, "Not a Vorbis I audio packet.\n");
1427 return -1; // packet type not audio
1430 if (vc
->mode_count
==1) {
1433 mode_number
=get_bits(gb
, ilog(vc
->mode_count
-1));
1435 vc
->mode_number
=mode_number
;
1436 mapping
=&vc
->mappings
[vc
->modes
[mode_number
].mapping
];
1438 AV_DEBUG(" Mode number: %d , mapping: %d , blocktype %d \n", mode_number
, vc
->modes
[mode_number
].mapping
, vc
->modes
[mode_number
].blockflag
);
1440 blockflag
=vc
->modes
[mode_number
].blockflag
;
1441 blocksize
=vc
->blocksize
[blockflag
];
1443 skip_bits(gb
, 2); // previous_window, next_window
1446 memset(ch_res_ptr
, 0, sizeof(float)*vc
->audio_channels
*blocksize
/2); //FIXME can this be removed ?
1447 memset(ch_floor_ptr
, 0, sizeof(float)*vc
->audio_channels
*blocksize
/2); //FIXME can this be removed ?
1451 for(i
=0;i
<vc
->audio_channels
;++i
) {
1452 vorbis_floor
*floor
;
1453 if (mapping
->submaps
>1) {
1454 floor
=&vc
->floors
[mapping
->submap_floor
[mapping
->mux
[i
]]];
1456 floor
=&vc
->floors
[mapping
->submap_floor
[0]];
1459 no_residue
[i
]=floor
->decode(vc
, &floor
->data
, ch_floor_ptr
);
1460 ch_floor_ptr
+=blocksize
/2;
1463 // Nonzero vector propagate
1465 for(i
=mapping
->coupling_steps
-1;i
>=0;--i
) {
1466 if (!(no_residue
[mapping
->magnitude
[i
]] & no_residue
[mapping
->angle
[i
]])) {
1467 no_residue
[mapping
->magnitude
[i
]]=0;
1468 no_residue
[mapping
->angle
[i
]]=0;
1474 for(i
=0;i
<mapping
->submaps
;++i
) {
1475 vorbis_residue
*residue
;
1478 for(j
=0;j
<vc
->audio_channels
;++j
) {
1479 if ((mapping
->submaps
==1) || (i
=mapping
->mux
[j
])) {
1480 res_chan
[j
]=res_num
;
1481 if (no_residue
[j
]) {
1482 do_not_decode
[ch
]=1;
1484 do_not_decode
[ch
]=0;
1490 residue
=&vc
->residues
[mapping
->submap_residue
[i
]];
1491 vorbis_residue_decode(vc
, residue
, ch
, do_not_decode
, ch_res_ptr
, blocksize
/2);
1493 ch_res_ptr
+=ch
*blocksize
/2;
1498 for(i
=mapping
->coupling_steps
-1;i
>=0;--i
) { //warning: i has to be signed
1501 mag
=vc
->channel_residues
+res_chan
[mapping
->magnitude
[i
]]*blocksize
/2;
1502 ang
=vc
->channel_residues
+res_chan
[mapping
->angle
[i
]]*blocksize
/2;
1503 vc
->dsp
.vorbis_inverse_coupling(mag
, ang
, blocksize
/2);
1508 for(j
=vc
->audio_channels
-1;j
>=0;j
--) {
1509 ch_floor_ptr
=vc
->channel_floors
+j
*blocksize
/2;
1510 ch_res_ptr
=vc
->channel_residues
+res_chan
[j
]*blocksize
/2;
1511 vc
->dsp
.vector_fmul(ch_floor_ptr
, ch_res_ptr
, blocksize
/2);
1512 ff_imdct_half(&vc
->mdct
[blockflag
], ch_res_ptr
, ch_floor_ptr
);
1515 // Overlap/add, save data for next overlapping FPMATH
1517 retlen
= (blocksize
+ vc
->blocksize
[previous_window
])/4;
1518 for(j
=0;j
<vc
->audio_channels
;j
++) {
1519 uint_fast16_t bs0
=vc
->blocksize
[0];
1520 uint_fast16_t bs1
=vc
->blocksize
[1];
1521 float *residue
=vc
->channel_residues
+res_chan
[j
]*blocksize
/2;
1522 float *saved
=vc
->saved
+j
*bs1
/4;
1523 float *ret
=vc
->channel_floors
+j
*retlen
;
1525 const float *win
=vc
->win
[blockflag
&previous_window
];
1527 if(blockflag
== previous_window
) {
1528 vc
->dsp
.vector_fmul_window(ret
, saved
, buf
, win
, fadd_bias
, blocksize
/4);
1529 } else if(blockflag
> previous_window
) {
1530 vc
->dsp
.vector_fmul_window(ret
, saved
, buf
, win
, fadd_bias
, bs0
/4);
1531 copy_normalize(ret
+bs0
/2, buf
+bs0
/4, (bs1
-bs0
)/4, vc
->exp_bias
, fadd_bias
);
1533 copy_normalize(ret
, saved
, (bs1
-bs0
)/4, vc
->exp_bias
, fadd_bias
);
1534 vc
->dsp
.vector_fmul_window(ret
+(bs1
-bs0
)/4, saved
+(bs1
-bs0
)/4, buf
, win
, fadd_bias
, bs0
/4);
1536 memcpy(saved
, buf
+blocksize
/4, blocksize
/4*sizeof(float));
1539 vc
->previous_window
= blockflag
;
1543 // Return the decoded audio packet through the standard api
1545 static int vorbis_decode_frame(AVCodecContext
*avccontext
,
1546 void *data
, int *data_size
,
1549 const uint8_t *buf
= avpkt
->data
;
1550 int buf_size
= avpkt
->size
;
1551 vorbis_context
*vc
= avccontext
->priv_data
;
1552 GetBitContext
*gb
= &(vc
->gb
);
1553 const float *channel_ptrs
[vc
->audio_channels
];
1562 AV_DEBUG("packet length %d \n", buf_size
);
1564 init_get_bits(gb
, buf
, buf_size
*8);
1566 len
=vorbis_parse_audio_packet(vc
);
1573 if (!vc
->first_frame
) {
1579 AV_DEBUG("parsed %d bytes %d bits, returned %d samples (*ch*bits) \n", get_bits_count(gb
)/8, get_bits_count(gb
)%8, len
);
1581 for(i
=0; i
<vc
->audio_channels
; i
++)
1582 channel_ptrs
[i
] = vc
->channel_floors
+i
*len
;
1583 vc
->dsp
.float_to_int16_interleave(data
, channel_ptrs
, len
, vc
->audio_channels
);
1584 *data_size
=len
*2*vc
->audio_channels
;
1591 static av_cold
int vorbis_decode_close(AVCodecContext
*avccontext
) {
1592 vorbis_context
*vc
= avccontext
->priv_data
;
1599 AVCodec vorbis_decoder
= {
1603 sizeof(vorbis_context
),
1606 vorbis_decode_close
,
1607 vorbis_decode_frame
,
1608 .long_name
= NULL_IF_CONFIG_SMALL("Vorbis"),