2 * Indeo Video Interactive v4 compatible decoder
3 * Copyright (c) 2009-2011 Maxim Poliakovski
5 * This file is part of Libav.
7 * Libav 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 * Libav 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 Libav; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
24 * Indeo Video Interactive version 4 decoder
26 * Indeo 4 data is usually transported within .avi or .mov files.
27 * Known FOURCCs: 'IV41'
30 #define BITSTREAM_READER_LE
34 #include "ivi_common.h"
35 #include "indeo4data.h"
38 * Indeo 4 frame types.
42 FRAMETYPE_INTRA1
= 1, ///< intra frame with slightly different bitstream coding
43 FRAMETYPE_INTER
= 2, ///< non-droppable P-frame
44 FRAMETYPE_BIDIR
= 3, ///< bidirectional frame
45 FRAMETYPE_INTER_NOREF
= 4, ///< droppable P-frame
46 FRAMETYPE_NULL_FIRST
= 5, ///< empty frame with no data
47 FRAMETYPE_NULL_LAST
= 6 ///< empty frame with no data
50 #define IVI4_PIC_SIZE_ESC 7
54 InvTransformPtr
*inv_trans
;
55 DCTransformPtr
*dc_trans
;
58 { ff_ivi_inverse_haar_8x8
, ff_ivi_dc_haar_2d
, 1 },
59 { NULL
, NULL
, 0 }, /* inverse Haar 8x1 */
60 { NULL
, NULL
, 0 }, /* inverse Haar 1x8 */
61 { ff_ivi_put_pixels_8x8
, ff_ivi_put_dc_pixel_8x8
, 1 },
62 { ff_ivi_inverse_slant_8x8
, ff_ivi_dc_slant_2d
, 1 },
63 { ff_ivi_row_slant8
, ff_ivi_dc_row_slant
, 1 },
64 { ff_ivi_col_slant8
, ff_ivi_dc_col_slant
, 1 },
65 { NULL
, NULL
, 0 }, /* inverse DCT 8x8 */
66 { NULL
, NULL
, 0 }, /* inverse DCT 8x1 */
67 { NULL
, NULL
, 0 }, /* inverse DCT 1x8 */
68 { NULL
, NULL
, 0 }, /* inverse Haar 4x4 */
69 { ff_ivi_inverse_slant_4x4
, ff_ivi_dc_slant_2d
, 1 },
70 { NULL
, NULL
, 0 }, /* no transform 4x4 */
71 { NULL
, NULL
, 0 }, /* inverse Haar 1x4 */
72 { NULL
, NULL
, 0 }, /* inverse Haar 4x1 */
73 { NULL
, NULL
, 0 }, /* inverse slant 1x4 */
74 { NULL
, NULL
, 0 }, /* inverse slant 4x1 */
75 { NULL
, NULL
, 0 }, /* inverse DCT 4x4 */
79 * Decode subdivision of a plane.
80 * This is a simplified version that checks for two supported subdivisions:
81 * - 1 wavelet band per plane, size factor 1:1, code pattern: 3
82 * - 4 wavelet bands per plane, size factor 1:4, code pattern: 2,3,3,3,3
83 * Anything else is either unsupported or corrupt.
85 * @param[in,out] gb the GetBit context
86 * @return number of wavelet bands or 0 on error
88 static int decode_plane_subdivision(GetBitContext
*gb
)
92 switch (get_bits(gb
, 2)) {
96 for (i
= 0; i
< 4; i
++)
97 if (get_bits(gb
, 2) != 3)
105 static inline int scale_tile_size(int def_size
, int size_factor
)
107 return size_factor
== 15 ? def_size
: (size_factor
+ 1) << 5;
111 * Decode Indeo 4 picture header.
113 * @param[in,out] ctx pointer to the decoder context
114 * @param[in] avctx pointer to the AVCodecContext
115 * @return result code: 0 = OK, negative number = error
117 static int decode_pic_hdr(IVI45DecContext
*ctx
, AVCodecContext
*avctx
)
119 int pic_size_indx
, i
, p
;
120 IVIPicConfig pic_conf
;
122 if (get_bits(&ctx
->gb
, 18) != 0x3FFF8) {
123 av_log(avctx
, AV_LOG_ERROR
, "Invalid picture start code!\n");
124 return AVERROR_INVALIDDATA
;
127 ctx
->prev_frame_type
= ctx
->frame_type
;
128 ctx
->frame_type
= get_bits(&ctx
->gb
, 3);
129 if (ctx
->frame_type
== 7) {
130 av_log(avctx
, AV_LOG_ERROR
, "Invalid frame type: %d\n", ctx
->frame_type
);
131 return AVERROR_INVALIDDATA
;
134 #if IVI4_STREAM_ANALYSER
135 if (ctx
->frame_type
== FRAMETYPE_BIDIR
)
136 ctx
->has_b_frames
= 1;
139 ctx
->transp_status
= get_bits1(&ctx
->gb
);
140 #if IVI4_STREAM_ANALYSER
141 if (ctx
->transp_status
) {
146 /* unknown bit: Mac decoder ignores this bit, XANIM returns error */
147 if (get_bits1(&ctx
->gb
)) {
148 av_log(avctx
, AV_LOG_ERROR
, "Sync bit is set!\n");
149 return AVERROR_INVALIDDATA
;
152 ctx
->data_size
= get_bits1(&ctx
->gb
) ? get_bits(&ctx
->gb
, 24) : 0;
154 /* null frames don't contain anything else so we just return */
155 if (ctx
->frame_type
>= FRAMETYPE_NULL_FIRST
) {
156 av_dlog(avctx
, "Null frame encountered!\n");
160 /* Check key lock status. If enabled - ignore lock word. */
161 /* Usually we have to prompt the user for the password, but */
162 /* we don't do that because Indeo 4 videos can be decoded anyway */
163 if (get_bits1(&ctx
->gb
)) {
164 skip_bits_long(&ctx
->gb
, 32);
165 av_dlog(avctx
, "Password-protected clip!\n");
168 pic_size_indx
= get_bits(&ctx
->gb
, 3);
169 if (pic_size_indx
== IVI4_PIC_SIZE_ESC
) {
170 pic_conf
.pic_height
= get_bits(&ctx
->gb
, 16);
171 pic_conf
.pic_width
= get_bits(&ctx
->gb
, 16);
173 pic_conf
.pic_height
= ivi4_common_pic_sizes
[pic_size_indx
* 2 + 1];
174 pic_conf
.pic_width
= ivi4_common_pic_sizes
[pic_size_indx
* 2 ];
177 /* Decode tile dimensions. */
178 if (get_bits1(&ctx
->gb
)) {
179 pic_conf
.tile_height
= scale_tile_size(pic_conf
.pic_height
, get_bits(&ctx
->gb
, 4));
180 pic_conf
.tile_width
= scale_tile_size(pic_conf
.pic_width
, get_bits(&ctx
->gb
, 4));
181 #if IVI4_STREAM_ANALYSER
182 ctx
->uses_tiling
= 1;
185 pic_conf
.tile_height
= pic_conf
.pic_height
;
186 pic_conf
.tile_width
= pic_conf
.pic_width
;
189 /* Decode chroma subsampling. We support only 4:4 aka YVU9. */
190 if (get_bits(&ctx
->gb
, 2)) {
191 av_log(avctx
, AV_LOG_ERROR
, "Only YVU9 picture format is supported!\n");
192 return AVERROR_INVALIDDATA
;
194 pic_conf
.chroma_height
= (pic_conf
.pic_height
+ 3) >> 2;
195 pic_conf
.chroma_width
= (pic_conf
.pic_width
+ 3) >> 2;
197 /* decode subdivision of the planes */
198 pic_conf
.luma_bands
= decode_plane_subdivision(&ctx
->gb
);
199 if (pic_conf
.luma_bands
)
200 pic_conf
.chroma_bands
= decode_plane_subdivision(&ctx
->gb
);
201 ctx
->is_scalable
= pic_conf
.luma_bands
!= 1 || pic_conf
.chroma_bands
!= 1;
202 if (ctx
->is_scalable
&& (pic_conf
.luma_bands
!= 4 || pic_conf
.chroma_bands
!= 1)) {
203 av_log(avctx
, AV_LOG_ERROR
, "Scalability: unsupported subdivision! Luma bands: %d, chroma bands: %d\n",
204 pic_conf
.luma_bands
, pic_conf
.chroma_bands
);
205 return AVERROR_INVALIDDATA
;
208 /* check if picture layout was changed and reallocate buffers */
209 if (ivi_pic_config_cmp(&pic_conf
, &ctx
->pic_conf
)) {
210 if (ff_ivi_init_planes(ctx
->planes
, &pic_conf
)) {
211 av_log(avctx
, AV_LOG_ERROR
, "Couldn't reallocate color planes!\n");
212 return AVERROR(ENOMEM
);
215 ctx
->pic_conf
= pic_conf
;
217 /* set default macroblock/block dimensions */
218 for (p
= 0; p
<= 2; p
++) {
219 for (i
= 0; i
< (!p
? pic_conf
.luma_bands
: pic_conf
.chroma_bands
); i
++) {
220 ctx
->planes
[p
].bands
[i
].mb_size
= !p
? (!ctx
->is_scalable
? 16 : 8) : 4;
221 ctx
->planes
[p
].bands
[i
].blk_size
= !p
? 8 : 4;
225 if (ff_ivi_init_tiles(ctx
->planes
, ctx
->pic_conf
.tile_width
,
226 ctx
->pic_conf
.tile_height
)) {
227 av_log(avctx
, AV_LOG_ERROR
,
228 "Couldn't reallocate internal structures!\n");
229 return AVERROR(ENOMEM
);
233 ctx
->frame_num
= get_bits1(&ctx
->gb
) ? get_bits(&ctx
->gb
, 20) : 0;
235 /* skip decTimeEst field if present */
236 if (get_bits1(&ctx
->gb
))
237 skip_bits(&ctx
->gb
, 8);
239 /* decode macroblock and block huffman codebooks */
240 if (ff_ivi_dec_huff_desc(&ctx
->gb
, get_bits1(&ctx
->gb
), IVI_MB_HUFF
, &ctx
->mb_vlc
, avctx
) ||
241 ff_ivi_dec_huff_desc(&ctx
->gb
, get_bits1(&ctx
->gb
), IVI_BLK_HUFF
, &ctx
->blk_vlc
, avctx
))
242 return AVERROR_INVALIDDATA
;
244 ctx
->rvmap_sel
= get_bits1(&ctx
->gb
) ? get_bits(&ctx
->gb
, 3) : 8;
246 ctx
->in_imf
= get_bits1(&ctx
->gb
);
247 ctx
->in_q
= get_bits1(&ctx
->gb
);
249 ctx
->pic_glob_quant
= get_bits(&ctx
->gb
, 5);
251 /* TODO: ignore this parameter if unused */
252 ctx
->unknown1
= get_bits1(&ctx
->gb
) ? get_bits(&ctx
->gb
, 3) : 0;
254 ctx
->checksum
= get_bits1(&ctx
->gb
) ? get_bits(&ctx
->gb
, 16) : 0;
256 /* skip picture header extension if any */
257 while (get_bits1(&ctx
->gb
)) {
258 av_dlog(avctx
, "Pic hdr extension encountered!\n");
259 skip_bits(&ctx
->gb
, 8);
262 if (get_bits1(&ctx
->gb
)) {
263 av_log(avctx
, AV_LOG_ERROR
, "Bad blocks bits encountered!\n");
266 align_get_bits(&ctx
->gb
);
273 * Decode Indeo 4 band header.
275 * @param[in,out] ctx pointer to the decoder context
276 * @param[in,out] band pointer to the band descriptor
277 * @param[in] avctx pointer to the AVCodecContext
278 * @return result code: 0 = OK, negative number = error
280 static int decode_band_hdr(IVI45DecContext
*ctx
, IVIBandDesc
*band
,
281 AVCodecContext
*avctx
)
283 int plane
, band_num
, indx
, transform_id
, scan_indx
;
286 plane
= get_bits(&ctx
->gb
, 2);
287 band_num
= get_bits(&ctx
->gb
, 4);
288 if (band
->plane
!= plane
|| band
->band_num
!= band_num
) {
289 av_log(avctx
, AV_LOG_ERROR
, "Invalid band header sequence!\n");
290 return AVERROR_INVALIDDATA
;
293 band
->is_empty
= get_bits1(&ctx
->gb
);
294 if (!band
->is_empty
) {
296 * If header size is not given, header size is 4 bytes. */
297 if (get_bits1(&ctx
->gb
))
298 skip_bits(&ctx
->gb
, 16);
300 band
->is_halfpel
= get_bits(&ctx
->gb
, 2);
301 if (band
->is_halfpel
>= 2) {
302 av_log(avctx
, AV_LOG_ERROR
, "Invalid/unsupported mv resolution: %d!\n",
304 return AVERROR_INVALIDDATA
;
306 #if IVI4_STREAM_ANALYSER
307 if (!band
->is_halfpel
)
308 ctx
->uses_fullpel
= 1;
311 band
->checksum_present
= get_bits1(&ctx
->gb
);
312 if (band
->checksum_present
)
313 band
->checksum
= get_bits(&ctx
->gb
, 16);
315 indx
= get_bits(&ctx
->gb
, 2);
317 av_log(avctx
, AV_LOG_ERROR
, "Invalid block size!\n");
318 return AVERROR_INVALIDDATA
;
320 band
->mb_size
= 16 >> indx
;
321 band
->blk_size
= 8 >> (indx
>> 1);
323 band
->inherit_mv
= get_bits1(&ctx
->gb
);
324 band
->inherit_qdelta
= get_bits1(&ctx
->gb
);
326 band
->glob_quant
= get_bits(&ctx
->gb
, 5);
328 if (!get_bits1(&ctx
->gb
) || ctx
->frame_type
== FRAMETYPE_INTRA
) {
329 transform_id
= get_bits(&ctx
->gb
, 5);
330 if (transform_id
>= FF_ARRAY_ELEMS(transforms
) ||
331 !transforms
[transform_id
].inv_trans
) {
332 av_log_ask_for_sample(avctx
, "Unimplemented transform: %d!\n", transform_id
);
333 return AVERROR_PATCHWELCOME
;
335 if ((transform_id
>= 7 && transform_id
<= 9) ||
336 transform_id
== 17) {
337 av_log_ask_for_sample(avctx
, "DCT transform not supported yet!\n");
338 return AVERROR_PATCHWELCOME
;
341 #if IVI4_STREAM_ANALYSER
342 if ((transform_id
>= 0 && transform_id
<= 2) || transform_id
== 10)
346 band
->inv_transform
= transforms
[transform_id
].inv_trans
;
347 band
->dc_transform
= transforms
[transform_id
].dc_trans
;
348 band
->is_2d_trans
= transforms
[transform_id
].is_2d_trans
;
350 scan_indx
= get_bits(&ctx
->gb
, 4);
351 if (scan_indx
== 15) {
352 av_log(avctx
, AV_LOG_ERROR
, "Custom scan pattern encountered!\n");
353 return AVERROR_INVALIDDATA
;
355 band
->scan
= scan_index_to_tab
[scan_indx
];
357 band
->quant_mat
= get_bits(&ctx
->gb
, 5);
358 if (band
->quant_mat
== 31) {
359 av_log(avctx
, AV_LOG_ERROR
, "Custom quant matrix encountered!\n");
360 return AVERROR_INVALIDDATA
;
364 /* decode block huffman codebook */
365 if (ff_ivi_dec_huff_desc(&ctx
->gb
, get_bits1(&ctx
->gb
), IVI_BLK_HUFF
,
366 &band
->blk_vlc
, avctx
))
367 return AVERROR_INVALIDDATA
;
369 /* select appropriate rvmap table for this band */
370 band
->rvmap_sel
= get_bits1(&ctx
->gb
) ? get_bits(&ctx
->gb
, 3) : 8;
372 /* decode rvmap probability corrections if any */
373 band
->num_corr
= 0; /* there is no corrections */
374 if (get_bits1(&ctx
->gb
)) {
375 band
->num_corr
= get_bits(&ctx
->gb
, 8); /* get number of correction pairs */
376 if (band
->num_corr
> 61) {
377 av_log(avctx
, AV_LOG_ERROR
, "Too many corrections: %d\n",
379 return AVERROR_INVALIDDATA
;
382 /* read correction pairs */
383 for (i
= 0; i
< band
->num_corr
* 2; i
++)
384 band
->corr
[i
] = get_bits(&ctx
->gb
, 8);
388 if (band
->blk_size
== 8) {
389 band
->intra_base
= &ivi4_quant_8x8_intra
[quant_index_to_tab
[band
->quant_mat
]][0];
390 band
->inter_base
= &ivi4_quant_8x8_inter
[quant_index_to_tab
[band
->quant_mat
]][0];
392 band
->intra_base
= &ivi4_quant_4x4_intra
[quant_index_to_tab
[band
->quant_mat
]][0];
393 band
->inter_base
= &ivi4_quant_4x4_inter
[quant_index_to_tab
[band
->quant_mat
]][0];
396 /* Indeo 4 doesn't use scale tables */
397 band
->intra_scale
= NULL
;
398 band
->inter_scale
= NULL
;
400 align_get_bits(&ctx
->gb
);
407 * Decode information (block type, cbp, quant delta, motion vector)
408 * for all macroblocks in the current tile.
410 * @param[in,out] ctx pointer to the decoder context
411 * @param[in,out] band pointer to the band descriptor
412 * @param[in,out] tile pointer to the tile descriptor
413 * @param[in] avctx pointer to the AVCodecContext
414 * @return result code: 0 = OK, negative number = error
416 static int decode_mb_info(IVI45DecContext
*ctx
, IVIBandDesc
*band
,
417 IVITile
*tile
, AVCodecContext
*avctx
)
419 int x
, y
, mv_x
, mv_y
, mv_delta
, offs
, mb_offset
, blks_per_mb
,
420 mv_scale
, mb_type_bits
;
421 IVIMbInfo
*mb
, *ref_mb
;
422 int row_offset
= band
->mb_size
* band
->pitch
;
425 ref_mb
= tile
->ref_mbs
;
426 offs
= tile
->ypos
* band
->pitch
+ tile
->xpos
;
428 blks_per_mb
= band
->mb_size
!= band
->blk_size
? 4 : 1;
429 mb_type_bits
= ctx
->frame_type
== FRAMETYPE_BIDIR
? 2 : 1;
431 /* scale factor for motion vectors */
432 mv_scale
= (ctx
->planes
[0].bands
[0].mb_size
>> 3) - (band
->mb_size
>> 3);
435 for (y
= tile
->ypos
; y
< tile
->ypos
+ tile
->height
; y
+= band
->mb_size
) {
438 for (x
= tile
->xpos
; x
< tile
->xpos
+ tile
->width
; x
+= band
->mb_size
) {
441 mb
->buf_offs
= mb_offset
;
443 if (get_bits1(&ctx
->gb
)) {
444 if (ctx
->frame_type
== FRAMETYPE_INTRA
) {
445 av_log(avctx
, AV_LOG_ERROR
, "Empty macroblock in an INTRA picture!\n");
446 return AVERROR_INVALIDDATA
;
448 mb
->type
= 1; /* empty macroblocks are always INTER */
449 mb
->cbp
= 0; /* all blocks are empty */
452 if (!band
->plane
&& !band
->band_num
&& ctx
->in_q
) {
453 mb
->q_delta
= get_vlc2(&ctx
->gb
, ctx
->mb_vlc
.tab
->table
,
455 mb
->q_delta
= IVI_TOSIGNED(mb
->q_delta
);
458 mb
->mv_x
= mb
->mv_y
= 0; /* no motion vector coded */
459 if (band
->inherit_mv
) {
460 /* motion vector inheritance */
462 mb
->mv_x
= ivi_scale_mv(ref_mb
->mv_x
, mv_scale
);
463 mb
->mv_y
= ivi_scale_mv(ref_mb
->mv_y
, mv_scale
);
465 mb
->mv_x
= ref_mb
->mv_x
;
466 mb
->mv_y
= ref_mb
->mv_y
;
470 if (band
->inherit_mv
) {
471 mb
->type
= ref_mb
->type
; /* copy mb_type from corresponding reference mb */
472 } else if (ctx
->frame_type
== FRAMETYPE_INTRA
||
473 ctx
->frame_type
== FRAMETYPE_INTRA1
) {
474 mb
->type
= 0; /* mb_type is always INTRA for intra-frames */
476 mb
->type
= get_bits(&ctx
->gb
, mb_type_bits
);
479 mb
->cbp
= get_bits(&ctx
->gb
, blks_per_mb
);
482 if (band
->inherit_qdelta
) {
483 if (ref_mb
) mb
->q_delta
= ref_mb
->q_delta
;
484 } else if (mb
->cbp
|| (!band
->plane
&& !band
->band_num
&&
486 mb
->q_delta
= get_vlc2(&ctx
->gb
, ctx
->mb_vlc
.tab
->table
,
488 mb
->q_delta
= IVI_TOSIGNED(mb
->q_delta
);
492 mb
->mv_x
= mb
->mv_y
= 0; /* there is no motion vector in intra-macroblocks */
494 if (band
->inherit_mv
) {
495 /* motion vector inheritance */
497 mb
->mv_x
= ivi_scale_mv(ref_mb
->mv_x
, mv_scale
);
498 mb
->mv_y
= ivi_scale_mv(ref_mb
->mv_y
, mv_scale
);
500 mb
->mv_x
= ref_mb
->mv_x
;
501 mb
->mv_y
= ref_mb
->mv_y
;
504 /* decode motion vector deltas */
505 mv_delta
= get_vlc2(&ctx
->gb
, ctx
->mb_vlc
.tab
->table
,
507 mv_y
+= IVI_TOSIGNED(mv_delta
);
508 mv_delta
= get_vlc2(&ctx
->gb
, ctx
->mb_vlc
.tab
->table
,
510 mv_x
+= IVI_TOSIGNED(mv_delta
);
520 mb_offset
+= band
->mb_size
;
526 align_get_bits(&ctx
->gb
);
533 * Rearrange decoding and reference buffers.
535 * @param[in,out] ctx pointer to the decoder context
537 static void switch_buffers(IVI45DecContext
*ctx
)
539 switch (ctx
->prev_frame_type
) {
540 case FRAMETYPE_INTRA
:
541 case FRAMETYPE_INTRA1
:
542 case FRAMETYPE_INTER
:
543 ctx
->buf_switch
^= 1;
544 ctx
->dst_buf
= ctx
->buf_switch
;
545 ctx
->ref_buf
= ctx
->buf_switch
^ 1;
547 case FRAMETYPE_INTER_NOREF
:
551 switch (ctx
->frame_type
) {
552 case FRAMETYPE_INTRA
:
553 case FRAMETYPE_INTRA1
:
556 case FRAMETYPE_INTER
:
557 ctx
->dst_buf
= ctx
->buf_switch
;
558 ctx
->ref_buf
= ctx
->buf_switch
^ 1;
560 case FRAMETYPE_INTER_NOREF
:
561 case FRAMETYPE_NULL_FIRST
:
562 case FRAMETYPE_NULL_LAST
:
568 static int is_nonnull_frame(IVI45DecContext
*ctx
)
570 return ctx
->frame_type
< FRAMETYPE_NULL_FIRST
;
574 static av_cold
int decode_init(AVCodecContext
*avctx
)
576 IVI45DecContext
*ctx
= avctx
->priv_data
;
578 ff_ivi_init_static_vlc();
580 /* copy rvmap tables in our context so we can apply changes to them */
581 memcpy(ctx
->rvmap_tabs
, ff_ivi_rvmap_tabs
, sizeof(ff_ivi_rvmap_tabs
));
583 /* Force allocation of the internal buffers */
584 /* during picture header decoding. */
585 ctx
->pic_conf
.pic_width
= 0;
586 ctx
->pic_conf
.pic_height
= 0;
588 avctx
->pix_fmt
= AV_PIX_FMT_YUV410P
;
590 ctx
->decode_pic_hdr
= decode_pic_hdr
;
591 ctx
->decode_band_hdr
= decode_band_hdr
;
592 ctx
->decode_mb_info
= decode_mb_info
;
593 ctx
->switch_buffers
= switch_buffers
;
594 ctx
->is_nonnull_frame
= is_nonnull_frame
;
600 AVCodec ff_indeo4_decoder
= {
602 .type
= AVMEDIA_TYPE_VIDEO
,
603 .id
= AV_CODEC_ID_INDEO4
,
604 .priv_data_size
= sizeof(IVI45DecContext
),
606 .close
= ff_ivi_decode_close
,
607 .decode
= ff_ivi_decode_frame
,
608 .long_name
= NULL_IF_CONFIG_SMALL("Intel Indeo Video Interactive 4"),
609 .capabilities
= CODEC_CAP_DR1
,