3 * Copyright (c) 2002-2007 The FFmpeg Project.
5 * This file is part of FFmpeg.
7 * FFmpeg is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU Lesser General Public
9 * License as published by the Free Software Foundation; either
10 * version 2.1 of the License, or (at your option) any later version.
12 * FFmpeg is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * Lesser General Public License for more details.
17 * You should have received a copy of the GNU Lesser General Public
18 * License along with FFmpeg; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
29 /* XXX: use same run/length optimization as mpeg decoders */
30 //FIXME maybe split decode / encode or pass flag
31 static void init_coef_vlc(VLC
*vlc
,
32 uint16_t **prun_table
, uint16_t **plevel_table
, uint16_t **pint_table
,
33 const CoefVLCTable
*vlc_table
)
36 const uint8_t *table_bits
= vlc_table
->huffbits
;
37 const uint32_t *table_codes
= vlc_table
->huffcodes
;
38 const uint16_t *levels_table
= vlc_table
->levels
;
39 uint16_t *run_table
, *level_table
, *int_table
;
40 int i
, l
, j
, k
, level
;
42 init_vlc(vlc
, VLCBITS
, n
, table_bits
, 1, 1, table_codes
, 4, 4, 0);
44 run_table
= av_malloc(n
* sizeof(uint16_t));
45 level_table
= av_malloc(n
* sizeof(uint16_t));
46 int_table
= av_malloc(n
* sizeof(uint16_t));
52 l
= levels_table
[k
++];
55 level_table
[i
] = level
;
60 *prun_table
= run_table
;
61 *plevel_table
= level_table
;
62 *pint_table
= int_table
;
65 int ff_wma_init(AVCodecContext
* avctx
, int flags2
)
67 WMACodecContext
*s
= avctx
->priv_data
;
70 float bps1
, high_freq
;
75 if( avctx
->sample_rate
<=0 || avctx
->sample_rate
>50000
76 || avctx
->channels
<=0 || avctx
->channels
>8
77 || avctx
->bit_rate
<=0)
80 s
->sample_rate
= avctx
->sample_rate
;
81 s
->nb_channels
= avctx
->channels
;
82 s
->bit_rate
= avctx
->bit_rate
;
83 s
->block_align
= avctx
->block_align
;
85 dsputil_init(&s
->dsp
, avctx
);
87 if (avctx
->codec
->id
== CODEC_ID_WMAV1
) {
93 /* compute MDCT block size */
94 if (s
->sample_rate
<= 16000) {
95 s
->frame_len_bits
= 9;
96 } else if (s
->sample_rate
<= 22050 ||
97 (s
->sample_rate
<= 32000 && s
->version
== 1)) {
98 s
->frame_len_bits
= 10;
100 s
->frame_len_bits
= 11;
102 s
->frame_len
= 1 << s
->frame_len_bits
;
103 if (s
->use_variable_block_len
) {
105 nb
= ((flags2
>> 3) & 3) + 1;
106 if ((s
->bit_rate
/ s
->nb_channels
) >= 32000)
108 nb_max
= s
->frame_len_bits
- BLOCK_MIN_BITS
;
111 s
->nb_block_sizes
= nb
+ 1;
113 s
->nb_block_sizes
= 1;
116 /* init rate dependent parameters */
117 s
->use_noise_coding
= 1;
118 high_freq
= s
->sample_rate
* 0.5;
120 /* if version 2, then the rates are normalized */
121 sample_rate1
= s
->sample_rate
;
122 if (s
->version
== 2) {
123 if (sample_rate1
>= 44100)
124 sample_rate1
= 44100;
125 else if (sample_rate1
>= 22050)
126 sample_rate1
= 22050;
127 else if (sample_rate1
>= 16000)
128 sample_rate1
= 16000;
129 else if (sample_rate1
>= 11025)
130 sample_rate1
= 11025;
131 else if (sample_rate1
>= 8000)
135 bps
= (float)s
->bit_rate
/ (float)(s
->nb_channels
* s
->sample_rate
);
136 s
->byte_offset_bits
= av_log2((int)(bps
* s
->frame_len
/ 8.0 + 0.5)) + 2;
138 /* compute high frequency value and choose if noise coding should
141 if (s
->nb_channels
== 2)
143 if (sample_rate1
== 44100) {
145 s
->use_noise_coding
= 0;
147 high_freq
= high_freq
* 0.4;
148 } else if (sample_rate1
== 22050) {
150 s
->use_noise_coding
= 0;
151 else if (bps1
>= 0.72)
152 high_freq
= high_freq
* 0.7;
154 high_freq
= high_freq
* 0.6;
155 } else if (sample_rate1
== 16000) {
157 high_freq
= high_freq
* 0.5;
159 high_freq
= high_freq
* 0.3;
160 } else if (sample_rate1
== 11025) {
161 high_freq
= high_freq
* 0.7;
162 } else if (sample_rate1
== 8000) {
164 high_freq
= high_freq
* 0.5;
165 } else if (bps
> 0.75) {
166 s
->use_noise_coding
= 0;
168 high_freq
= high_freq
* 0.65;
172 high_freq
= high_freq
* 0.75;
173 } else if (bps
>= 0.6) {
174 high_freq
= high_freq
* 0.6;
176 high_freq
= high_freq
* 0.5;
179 dprintf(s
->avctx
, "flags2=0x%x\n", flags2
);
180 dprintf(s
->avctx
, "version=%d channels=%d sample_rate=%d bitrate=%d block_align=%d\n",
181 s
->version
, s
->nb_channels
, s
->sample_rate
, s
->bit_rate
,
183 dprintf(s
->avctx
, "bps=%f bps1=%f high_freq=%f bitoffset=%d\n",
184 bps
, bps1
, high_freq
, s
->byte_offset_bits
);
185 dprintf(s
->avctx
, "use_noise_coding=%d use_exp_vlc=%d nb_block_sizes=%d\n",
186 s
->use_noise_coding
, s
->use_exp_vlc
, s
->nb_block_sizes
);
188 /* compute the scale factor band sizes for each MDCT block size */
190 int a
, b
, pos
, lpos
, k
, block_len
, i
, j
, n
;
191 const uint8_t *table
;
193 if (s
->version
== 1) {
198 for(k
= 0; k
< s
->nb_block_sizes
; k
++) {
199 block_len
= s
->frame_len
>> k
;
201 if (s
->version
== 1) {
204 a
= wma_critical_freqs
[i
];
206 pos
= ((block_len
* 2 * a
) + (b
>> 1)) / b
;
209 s
->exponent_bands
[0][i
] = pos
- lpos
;
210 if (pos
>= block_len
) {
216 s
->exponent_sizes
[0] = i
;
218 /* hardcoded tables */
220 a
= s
->frame_len_bits
- BLOCK_MIN_BITS
- k
;
222 if (s
->sample_rate
>= 44100)
223 table
= exponent_band_44100
[a
];
224 else if (s
->sample_rate
>= 32000)
225 table
= exponent_band_32000
[a
];
226 else if (s
->sample_rate
>= 22050)
227 table
= exponent_band_22050
[a
];
232 s
->exponent_bands
[k
][i
] = table
[i
];
233 s
->exponent_sizes
[k
] = n
;
238 a
= wma_critical_freqs
[i
];
240 pos
= ((block_len
* 2 * a
) + (b
<< 1)) / (4 * b
);
245 s
->exponent_bands
[k
][j
++] = pos
- lpos
;
246 if (pos
>= block_len
)
250 s
->exponent_sizes
[k
] = j
;
254 /* max number of coefs */
255 s
->coefs_end
[k
] = (s
->frame_len
- ((s
->frame_len
* 9) / 100)) >> k
;
256 /* high freq computation */
257 s
->high_band_start
[k
] = (int)((block_len
* 2 * high_freq
) /
258 s
->sample_rate
+ 0.5);
259 n
= s
->exponent_sizes
[k
];
265 pos
+= s
->exponent_bands
[k
][i
];
267 if (start
< s
->high_band_start
[k
])
268 start
= s
->high_band_start
[k
];
269 if (end
> s
->coefs_end
[k
])
270 end
= s
->coefs_end
[k
];
272 s
->exponent_high_bands
[k
][j
++] = end
- start
;
274 s
->exponent_high_sizes
[k
] = j
;
276 tprintf(s
->avctx
, "%5d: coefs_end=%d high_band_start=%d nb_high_bands=%d: ",
279 s
->high_band_start
[k
],
280 s
->exponent_high_sizes
[k
]);
281 for(j
=0;j
<s
->exponent_high_sizes
[k
];j
++)
282 tprintf(s
->avctx
, " %d", s
->exponent_high_bands
[k
][j
]);
283 tprintf(s
->avctx
, "\n");
291 for(i
= 0; i
< s
->nb_block_sizes
; i
++) {
292 tprintf(s
->avctx
, "%5d: n=%2d:",
294 s
->exponent_sizes
[i
]);
295 for(j
=0;j
<s
->exponent_sizes
[i
];j
++)
296 tprintf(s
->avctx
, " %d", s
->exponent_bands
[i
][j
]);
297 tprintf(s
->avctx
, "\n");
302 /* init MDCT windows : simple sinus window */
303 for(i
= 0; i
< s
->nb_block_sizes
; i
++) {
306 n
= 1 << (s
->frame_len_bits
- i
);
307 window
= av_malloc(sizeof(float) * n
);
308 alpha
= M_PI
/ (2.0 * n
);
310 window
[j
] = sin((j
+ 0.5) * alpha
);
312 s
->windows
[i
] = window
;
315 s
->reset_block_lengths
= 1;
317 if (s
->use_noise_coding
) {
319 /* init the noise generator */
321 s
->noise_mult
= 0.02;
323 s
->noise_mult
= 0.04;
326 for(i
=0;i
<NOISE_TAB_SIZE
;i
++)
327 s
->noise_table
[i
] = 1.0 * s
->noise_mult
;
333 norm
= (1.0 / (float)(1LL << 31)) * sqrt(3) * s
->noise_mult
;
334 for(i
=0;i
<NOISE_TAB_SIZE
;i
++) {
335 seed
= seed
* 314159 + 1;
336 s
->noise_table
[i
] = (float)((int)seed
) * norm
;
342 /* choose the VLC tables for the coefficients */
344 if (s
->sample_rate
>= 32000) {
347 else if (bps1
< 1.16)
350 s
->coef_vlcs
[0]= &coef_vlcs
[coef_vlc_table
* 2 ];
351 s
->coef_vlcs
[1]= &coef_vlcs
[coef_vlc_table
* 2 + 1];
352 init_coef_vlc(&s
->coef_vlc
[0], &s
->run_table
[0], &s
->level_table
[0], &s
->int_table
[0],
354 init_coef_vlc(&s
->coef_vlc
[1], &s
->run_table
[1], &s
->level_table
[1], &s
->int_table
[1],
360 int ff_wma_total_gain_to_bits(int total_gain
){
361 if (total_gain
< 15) return 13;
362 else if (total_gain
< 32) return 12;
363 else if (total_gain
< 40) return 11;
364 else if (total_gain
< 45) return 10;
368 int ff_wma_end(AVCodecContext
*avctx
)
370 WMACodecContext
*s
= avctx
->priv_data
;
373 for(i
= 0; i
< s
->nb_block_sizes
; i
++)
374 ff_mdct_end(&s
->mdct_ctx
[i
]);
375 for(i
= 0; i
< s
->nb_block_sizes
; i
++)
376 av_free(s
->windows
[i
]);
378 if (s
->use_exp_vlc
) {
379 free_vlc(&s
->exp_vlc
);
381 if (s
->use_noise_coding
) {
382 free_vlc(&s
->hgain_vlc
);
384 for(i
= 0;i
< 2; i
++) {
385 free_vlc(&s
->coef_vlc
[i
]);
386 av_free(s
->run_table
[i
]);
387 av_free(s
->level_table
[i
]);
388 av_free(s
->int_table
[i
]);