3 * Copyright (c) 2005 Roine Gustafsson
4 * Copyright (c) 2006 Konstantin Shishkov
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 * Lossless Fraps 'FPS1' decoder
26 * @author Roine Gustafsson <roine at users sf net>
27 * @author Konstantin Shishkov
29 * Codec algorithm for version 0 is taken from Transcode <www.transcoding.org>
31 * Version 2 files support by Konstantin Shishkov
35 #include "bitstream.h"
37 #include "bytestream.h"
40 #define FPS_TAG MKTAG('F', 'P', 'S', 'x')
43 * local variable storage
45 typedef struct FrapsContext
{
46 AVCodecContext
*avctx
;
55 * @param avctx codec context
56 * @return 0 on success or negative if fails
58 static av_cold
int decode_init(AVCodecContext
*avctx
)
60 FrapsContext
* const s
= avctx
->priv_data
;
62 avctx
->coded_frame
= (AVFrame
*)&s
->frame
;
63 avctx
->pix_fmt
= PIX_FMT_NONE
; /* set in decode_frame */
66 s
->frame
.data
[0] = NULL
;
69 dsputil_init(&s
->dsp
, avctx
);
75 * Comparator - our nodes should ascend by count
76 * but with preserved symbol order
78 static int huff_cmp(const void *va
, const void *vb
){
79 const Node
*a
= va
, *b
= vb
;
80 return (a
->count
- b
->count
)*256 + a
->sym
- b
->sym
;
84 * decode Fraps v2 packed plane
86 static int fraps2_decode_plane(FrapsContext
*s
, uint8_t *dst
, int stride
, int w
,
87 int h
, const uint8_t *src
, int size
, int Uoff
,
95 for(i
= 0; i
< 256; i
++)
96 nodes
[i
].count
= bytestream_get_le32(&src
);
98 if (ff_huff_build_tree(s
->avctx
, &vlc
, 256, nodes
, huff_cmp
,
99 FF_HUFFMAN_FLAG_ZERO_COUNT
) < 0)
101 /* we have built Huffman table and are ready to decode plane */
103 /* convert bits so they may be used by standard bitreader */
104 s
->dsp
.bswap_buf((uint32_t *)s
->tmpbuf
, (const uint32_t *)src
, size
>> 2);
106 init_get_bits(&gb
, s
->tmpbuf
, size
* 8);
107 for(j
= 0; j
< h
; j
++){
108 for(i
= 0; i
< w
*step
; i
+= step
){
109 dst
[i
] = get_vlc2(&gb
, vlc
.table
, 9, 3);
110 /* lines are stored as deltas between previous lines
111 * and we need to add 0x80 to the first lines of chroma planes
113 if(j
) dst
[i
] += dst
[i
- stride
];
114 else if(Uoff
) dst
[i
] += 0x80;
124 * @param avctx codec context
125 * @param data output AVFrame
126 * @param data_size size of output data or 0 if no picture is returned
127 * @param buf input data frame
128 * @param buf_size size of input data frame
129 * @return number of consumed bytes on success or negative if decode fails
131 static int decode_frame(AVCodecContext
*avctx
,
132 void *data
, int *data_size
,
133 const uint8_t *buf
, int buf_size
)
135 FrapsContext
* const s
= avctx
->priv_data
;
136 AVFrame
*frame
= data
;
137 AVFrame
* const f
= (AVFrame
*)&s
->frame
;
139 unsigned int version
,header_size
;
141 const uint32_t *buf32
;
142 uint32_t *luma1
,*luma2
,*cb
,*cr
;
144 int i
, is_chroma
, planes
;
147 header
= AV_RL32(buf
);
148 version
= header
& 0xff;
149 header_size
= (header
& (1<<30))? 8 : 4; /* bit 30 means pad to 8 bytes */
151 if (version
> 2 && version
!= 4 && version
!= 5) {
152 av_log(avctx
, AV_LOG_ERROR
,
153 "This file is encoded with Fraps version %d. " \
154 "This codec can only decode version 0, 1, 2 and 4.\n", version
);
159 if (header_size
== 8)
165 /* Fraps v0 is a reordered YUV420 */
166 avctx
->pix_fmt
= PIX_FMT_YUV420P
;
168 if ( (buf_size
!= avctx
->width
*avctx
->height
*3/2+header_size
) &&
169 (buf_size
!= header_size
) ) {
170 av_log(avctx
, AV_LOG_ERROR
,
171 "Invalid frame length %d (should be %d)\n",
172 buf_size
, avctx
->width
*avctx
->height
*3/2+header_size
);
176 if (( (avctx
->width
% 8) != 0) || ( (avctx
->height
% 2) != 0 )) {
177 av_log(avctx
, AV_LOG_ERROR
, "Invalid frame size %dx%d\n",
178 avctx
->width
, avctx
->height
);
183 f
->buffer_hints
= FF_BUFFER_HINTS_VALID
|
184 FF_BUFFER_HINTS_PRESERVE
|
185 FF_BUFFER_HINTS_REUSABLE
;
186 if (avctx
->reget_buffer(avctx
, f
)) {
187 av_log(avctx
, AV_LOG_ERROR
, "reget_buffer() failed\n");
190 /* bit 31 means same as previous pic */
191 f
->pict_type
= (header
& (1<<31))? FF_P_TYPE
: FF_I_TYPE
;
192 f
->key_frame
= f
->pict_type
== FF_I_TYPE
;
194 if (f
->pict_type
== FF_I_TYPE
) {
195 buf32
=(const uint32_t*)buf
;
196 for(y
=0; y
<avctx
->height
/2; y
++){
197 luma1
=(uint32_t*)&f
->data
[0][ y
*2*f
->linesize
[0] ];
198 luma2
=(uint32_t*)&f
->data
[0][ (y
*2+1)*f
->linesize
[0] ];
199 cr
=(uint32_t*)&f
->data
[1][ y
*f
->linesize
[1] ];
200 cb
=(uint32_t*)&f
->data
[2][ y
*f
->linesize
[2] ];
201 for(x
=0; x
<avctx
->width
; x
+=8){
202 *(luma1
++) = *(buf32
++);
203 *(luma1
++) = *(buf32
++);
204 *(luma2
++) = *(buf32
++);
205 *(luma2
++) = *(buf32
++);
206 *(cr
++) = *(buf32
++);
207 *(cb
++) = *(buf32
++);
214 /* Fraps v1 is an upside-down BGR24 */
215 avctx
->pix_fmt
= PIX_FMT_BGR24
;
217 if ( (buf_size
!= avctx
->width
*avctx
->height
*3+header_size
) &&
218 (buf_size
!= header_size
) ) {
219 av_log(avctx
, AV_LOG_ERROR
,
220 "Invalid frame length %d (should be %d)\n",
221 buf_size
, avctx
->width
*avctx
->height
*3+header_size
);
226 f
->buffer_hints
= FF_BUFFER_HINTS_VALID
|
227 FF_BUFFER_HINTS_PRESERVE
|
228 FF_BUFFER_HINTS_REUSABLE
;
229 if (avctx
->reget_buffer(avctx
, f
)) {
230 av_log(avctx
, AV_LOG_ERROR
, "reget_buffer() failed\n");
233 /* bit 31 means same as previous pic */
234 f
->pict_type
= (header
& (1<<31))? FF_P_TYPE
: FF_I_TYPE
;
235 f
->key_frame
= f
->pict_type
== FF_I_TYPE
;
237 if (f
->pict_type
== FF_I_TYPE
) {
238 for(y
=0; y
<avctx
->height
; y
++)
239 memcpy(&f
->data
[0][ (avctx
->height
-y
)*f
->linesize
[0] ],
240 &buf
[y
*avctx
->width
*3],
248 * Fraps v2 is Huffman-coded YUV420 planes
249 * Fraps v4 is virtually the same
251 avctx
->pix_fmt
= PIX_FMT_YUV420P
;
254 f
->buffer_hints
= FF_BUFFER_HINTS_VALID
|
255 FF_BUFFER_HINTS_PRESERVE
|
256 FF_BUFFER_HINTS_REUSABLE
;
257 if (avctx
->reget_buffer(avctx
, f
)) {
258 av_log(avctx
, AV_LOG_ERROR
, "reget_buffer() failed\n");
263 f
->pict_type
= FF_P_TYPE
;
267 f
->pict_type
= FF_I_TYPE
;
269 if ((AV_RL32(buf
) != FPS_TAG
)||(buf_size
< (planes
*1024 + 24))) {
270 av_log(avctx
, AV_LOG_ERROR
, "Fraps: error in data stream\n");
273 for(i
= 0; i
< planes
; i
++) {
274 offs
[i
] = AV_RL32(buf
+ 4 + i
* 4);
275 if(offs
[i
] >= buf_size
|| (i
&& offs
[i
] <= offs
[i
- 1] + 1024)) {
276 av_log(avctx
, AV_LOG_ERROR
, "Fraps: plane %i offset is out of bounds\n", i
);
280 offs
[planes
] = buf_size
;
281 for(i
= 0; i
< planes
; i
++){
283 s
->tmpbuf
= av_realloc(s
->tmpbuf
, offs
[i
+ 1] - offs
[i
] - 1024 + FF_INPUT_BUFFER_PADDING_SIZE
);
284 if(fraps2_decode_plane(s
, f
->data
[i
], f
->linesize
[i
], avctx
->width
>> is_chroma
,
285 avctx
->height
>> is_chroma
, buf
+ offs
[i
], offs
[i
+ 1] - offs
[i
], is_chroma
, 1) < 0) {
286 av_log(avctx
, AV_LOG_ERROR
, "Error decoding plane %i\n", i
);
292 /* Virtually the same as version 4, but is for RGB24 */
293 avctx
->pix_fmt
= PIX_FMT_BGR24
;
296 f
->buffer_hints
= FF_BUFFER_HINTS_VALID
|
297 FF_BUFFER_HINTS_PRESERVE
|
298 FF_BUFFER_HINTS_REUSABLE
;
299 if (avctx
->reget_buffer(avctx
, f
)) {
300 av_log(avctx
, AV_LOG_ERROR
, "reget_buffer() failed\n");
305 f
->pict_type
= FF_P_TYPE
;
309 f
->pict_type
= FF_I_TYPE
;
311 if ((AV_RL32(buf
) != FPS_TAG
)||(buf_size
< (planes
*1024 + 24))) {
312 av_log(avctx
, AV_LOG_ERROR
, "Fraps: error in data stream\n");
315 for(i
= 0; i
< planes
; i
++) {
316 offs
[i
] = AV_RL32(buf
+ 4 + i
* 4);
317 if(offs
[i
] >= buf_size
|| (i
&& offs
[i
] <= offs
[i
- 1] + 1024)) {
318 av_log(avctx
, AV_LOG_ERROR
, "Fraps: plane %i offset is out of bounds\n", i
);
322 offs
[planes
] = buf_size
;
323 for(i
= 0; i
< planes
; i
++){
324 s
->tmpbuf
= av_realloc(s
->tmpbuf
, offs
[i
+ 1] - offs
[i
] - 1024 + FF_INPUT_BUFFER_PADDING_SIZE
);
325 if(fraps2_decode_plane(s
, f
->data
[0] + i
+ (f
->linesize
[0] * (avctx
->height
- 1)), -f
->linesize
[0],
326 avctx
->width
, avctx
->height
, buf
+ offs
[i
], offs
[i
+ 1] - offs
[i
], 1, 3) < 0) {
327 av_log(avctx
, AV_LOG_ERROR
, "Error decoding plane %i\n", i
);
335 *data_size
= sizeof(AVFrame
);
343 * @param avctx codec context
344 * @return 0 on success or negative if fails
346 static av_cold
int decode_end(AVCodecContext
*avctx
)
348 FrapsContext
*s
= (FrapsContext
*)avctx
->priv_data
;
350 if (s
->frame
.data
[0])
351 avctx
->release_buffer(avctx
, &s
->frame
);
353 av_freep(&s
->tmpbuf
);
358 AVCodec fraps_decoder
= {
362 sizeof(FrapsContext
),
368 .long_name
= "Fraps",