2 * Delphine Software International CIN Audio/Video Decoders
3 * Copyright (c) 2006 Gregory Montoir (cyx@users.sourceforge.net)
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
23 * @file libavcodec/dsicinav.c
24 * Delphine Software International CIN audio/video decoders
28 #include "bytestream.h"
31 typedef enum CinVideoBitmapIndex
{
32 CIN_CUR_BMP
= 0, /* current */
33 CIN_PRE_BMP
= 1, /* previous */
34 CIN_INT_BMP
= 2 /* intermediate */
35 } CinVideoBitmapIndex
;
37 typedef struct CinVideoContext
{
38 AVCodecContext
*avctx
;
40 unsigned int bitmap_size
;
41 uint32_t palette
[256];
42 uint8_t *bitmap_table
[3];
45 typedef struct CinAudioContext
{
46 AVCodecContext
*avctx
;
47 int initial_decode_frame
;
52 /* table defining a geometric sequence with multiplier = 32767 ^ (1 / 128) */
53 static const int16_t cinaudio_delta16_table
[256] = {
54 0, 0, 0, 0, 0, 0, 0, 0,
55 0, 0, 0, 0, 0, 0, 0, 0,
56 0, 0, 0, -30210, -27853, -25680, -23677, -21829,
57 -20126, -18556, -17108, -15774, -14543, -13408, -12362, -11398,
58 -10508, -9689, -8933, -8236, -7593, -7001, -6455, -5951,
59 -5487, -5059, -4664, -4300, -3964, -3655, -3370, -3107,
60 -2865, -2641, -2435, -2245, -2070, -1908, -1759, -1622,
61 -1495, -1379, -1271, -1172, -1080, -996, -918, -847,
62 -781, -720, -663, -612, -564, -520, -479, -442,
63 -407, -376, -346, -319, -294, -271, -250, -230,
64 -212, -196, -181, -166, -153, -141, -130, -120,
65 -111, -102, -94, -87, -80, -74, -68, -62,
66 -58, -53, -49, -45, -41, -38, -35, -32,
67 -30, -27, -25, -23, -21, -20, -18, -17,
68 -15, -14, -13, -12, -11, -10, -9, -8,
69 -7, -6, -5, -4, -3, -2, -1, 0,
70 0, 1, 2, 3, 4, 5, 6, 7,
71 8, 9, 10, 11, 12, 13, 14, 15,
72 17, 18, 20, 21, 23, 25, 27, 30,
73 32, 35, 38, 41, 45, 49, 53, 58,
74 62, 68, 74, 80, 87, 94, 102, 111,
75 120, 130, 141, 153, 166, 181, 196, 212,
76 230, 250, 271, 294, 319, 346, 376, 407,
77 442, 479, 520, 564, 612, 663, 720, 781,
78 847, 918, 996, 1080, 1172, 1271, 1379, 1495,
79 1622, 1759, 1908, 2070, 2245, 2435, 2641, 2865,
80 3107, 3370, 3655, 3964, 4300, 4664, 5059, 5487,
81 5951, 6455, 7001, 7593, 8236, 8933, 9689, 10508,
82 11398, 12362, 13408, 14543, 15774, 17108, 18556, 20126,
83 21829, 23677, 25680, 27853, 30210, 0, 0, 0,
84 0, 0, 0, 0, 0, 0, 0, 0,
85 0, 0, 0, 0, 0, 0, 0, 0
89 static av_cold
int cinvideo_decode_init(AVCodecContext
*avctx
)
91 CinVideoContext
*cin
= avctx
->priv_data
;
95 avctx
->pix_fmt
= PIX_FMT_PAL8
;
97 cin
->frame
.data
[0] = NULL
;
99 cin
->bitmap_size
= avctx
->width
* avctx
->height
;
100 for (i
= 0; i
< 3; ++i
) {
101 cin
->bitmap_table
[i
] = av_mallocz(cin
->bitmap_size
);
102 if (!cin
->bitmap_table
[i
])
103 av_log(avctx
, AV_LOG_ERROR
, "Can't allocate bitmap buffers.\n");
109 static void cin_apply_delta_data(const unsigned char *src
, unsigned char *dst
, int size
)
115 static int cin_decode_huffman(const unsigned char *src
, int src_size
, unsigned char *dst
, int dst_size
)
117 int b
, huff_code
= 0;
118 unsigned char huff_code_table
[15];
119 unsigned char *dst_cur
= dst
;
120 unsigned char *dst_end
= dst
+ dst_size
;
121 const unsigned char *src_end
= src
+ src_size
;
123 memcpy(huff_code_table
, src
, 15); src
+= 15; src_size
-= 15;
125 while (src
< src_end
) {
127 if ((huff_code
>> 4) == 15) {
130 *dst_cur
++ = b
| (huff_code
>> 4);
132 *dst_cur
++ = huff_code_table
[huff_code
>> 4];
133 if (dst_cur
>= dst_end
)
137 if (huff_code
== 15) {
140 *dst_cur
++ = huff_code_table
[huff_code
];
141 if (dst_cur
>= dst_end
)
145 return dst_cur
- dst
;
148 static void cin_decode_lzss(const unsigned char *src
, int src_size
, unsigned char *dst
, int dst_size
)
151 int i
, sz
, offset
, code
;
152 unsigned char *dst_end
= dst
+ dst_size
;
153 const unsigned char *src_end
= src
+ src_size
;
155 while (src
< src_end
&& dst
< dst_end
) {
157 for (i
= 0; i
< 8 && src
< src_end
&& dst
< dst_end
; ++i
) {
158 if (code
& (1 << i
)) {
161 cmd
= AV_RL16(src
); src
+= 2;
163 sz
= (cmd
& 0xF) + 2;
164 /* don't use memcpy/memmove here as the decoding routine (ab)uses */
165 /* buffer overlappings to repeat bytes in the destination */
166 sz
= FFMIN(sz
, dst_end
- dst
);
168 *dst
= *(dst
- offset
- 1);
176 static void cin_decode_rle(const unsigned char *src
, int src_size
, unsigned char *dst
, int dst_size
)
179 unsigned char *dst_end
= dst
+ dst_size
;
180 const unsigned char *src_end
= src
+ src_size
;
182 while (src
< src_end
&& dst
< dst_end
) {
186 memset(dst
, *src
++, FFMIN(len
, dst_end
- dst
));
189 memcpy(dst
, src
, FFMIN(len
, dst_end
- dst
));
196 static int cinvideo_decode_frame(AVCodecContext
*avctx
,
197 void *data
, int *data_size
,
200 const uint8_t *buf
= avpkt
->data
;
201 int buf_size
= avpkt
->size
;
202 CinVideoContext
*cin
= avctx
->priv_data
;
203 int i
, y
, palette_type
, palette_colors_count
, bitmap_frame_type
, bitmap_frame_size
;
205 cin
->frame
.buffer_hints
= FF_BUFFER_HINTS_VALID
| FF_BUFFER_HINTS_PRESERVE
| FF_BUFFER_HINTS_REUSABLE
;
206 if (avctx
->reget_buffer(avctx
, &cin
->frame
)) {
207 av_log(cin
->avctx
, AV_LOG_ERROR
, "delphinecinvideo: reget_buffer() failed to allocate a frame\n");
211 palette_type
= buf
[0];
212 palette_colors_count
= AV_RL16(buf
+1);
213 bitmap_frame_type
= buf
[3];
216 bitmap_frame_size
= buf_size
- 4;
219 if (palette_type
== 0) {
220 for (i
= 0; i
< palette_colors_count
; ++i
) {
221 cin
->palette
[i
] = bytestream_get_le24(&buf
);
222 bitmap_frame_size
-= 3;
225 for (i
= 0; i
< palette_colors_count
; ++i
) {
226 cin
->palette
[buf
[0]] = AV_RL24(buf
+1);
228 bitmap_frame_size
-= 4;
231 memcpy(cin
->frame
.data
[1], cin
->palette
, sizeof(cin
->palette
));
232 cin
->frame
.palette_has_changed
= 1;
234 /* note: the decoding routines below assumes that surface.width = surface.pitch */
235 switch (bitmap_frame_type
) {
237 cin_decode_rle(buf
, bitmap_frame_size
,
238 cin
->bitmap_table
[CIN_CUR_BMP
], cin
->bitmap_size
);
241 cin_decode_rle(buf
, bitmap_frame_size
,
242 cin
->bitmap_table
[CIN_CUR_BMP
], cin
->bitmap_size
);
243 cin_apply_delta_data(cin
->bitmap_table
[CIN_PRE_BMP
],
244 cin
->bitmap_table
[CIN_CUR_BMP
], cin
->bitmap_size
);
247 cin_decode_huffman(buf
, bitmap_frame_size
,
248 cin
->bitmap_table
[CIN_INT_BMP
], cin
->bitmap_size
);
249 cin_decode_rle(cin
->bitmap_table
[CIN_INT_BMP
], bitmap_frame_size
,
250 cin
->bitmap_table
[CIN_CUR_BMP
], cin
->bitmap_size
);
253 bitmap_frame_size
= cin_decode_huffman(buf
, bitmap_frame_size
,
254 cin
->bitmap_table
[CIN_INT_BMP
], cin
->bitmap_size
);
255 cin_decode_rle(cin
->bitmap_table
[CIN_INT_BMP
], bitmap_frame_size
,
256 cin
->bitmap_table
[CIN_CUR_BMP
], cin
->bitmap_size
);
257 cin_apply_delta_data(cin
->bitmap_table
[CIN_PRE_BMP
],
258 cin
->bitmap_table
[CIN_CUR_BMP
], cin
->bitmap_size
);
261 cin_decode_huffman(buf
, bitmap_frame_size
,
262 cin
->bitmap_table
[CIN_CUR_BMP
], cin
->bitmap_size
);
265 cin_decode_lzss(buf
, bitmap_frame_size
,
266 cin
->bitmap_table
[CIN_CUR_BMP
], cin
->bitmap_size
);
269 cin_decode_lzss(buf
, bitmap_frame_size
,
270 cin
->bitmap_table
[CIN_CUR_BMP
], cin
->bitmap_size
);
271 cin_apply_delta_data(cin
->bitmap_table
[CIN_PRE_BMP
],
272 cin
->bitmap_table
[CIN_CUR_BMP
], cin
->bitmap_size
);
276 for (y
= 0; y
< cin
->avctx
->height
; ++y
)
277 memcpy(cin
->frame
.data
[0] + (cin
->avctx
->height
- 1 - y
) * cin
->frame
.linesize
[0],
278 cin
->bitmap_table
[CIN_CUR_BMP
] + y
* cin
->avctx
->width
,
281 FFSWAP(uint8_t *, cin
->bitmap_table
[CIN_CUR_BMP
], cin
->bitmap_table
[CIN_PRE_BMP
]);
283 *data_size
= sizeof(AVFrame
);
284 *(AVFrame
*)data
= cin
->frame
;
289 static av_cold
int cinvideo_decode_end(AVCodecContext
*avctx
)
291 CinVideoContext
*cin
= avctx
->priv_data
;
294 if (cin
->frame
.data
[0])
295 avctx
->release_buffer(avctx
, &cin
->frame
);
297 for (i
= 0; i
< 3; ++i
)
298 av_free(cin
->bitmap_table
[i
]);
303 static av_cold
int cinaudio_decode_init(AVCodecContext
*avctx
)
305 CinAudioContext
*cin
= avctx
->priv_data
;
308 cin
->initial_decode_frame
= 1;
310 avctx
->sample_fmt
= SAMPLE_FMT_S16
;
315 static int cinaudio_decode_frame(AVCodecContext
*avctx
,
316 void *data
, int *data_size
,
319 const uint8_t *buf
= avpkt
->data
;
320 int buf_size
= avpkt
->size
;
321 CinAudioContext
*cin
= avctx
->priv_data
;
322 const uint8_t *src
= buf
;
323 int16_t *samples
= (int16_t *)data
;
325 buf_size
= FFMIN(buf_size
, *data_size
/2);
327 if (cin
->initial_decode_frame
) {
328 cin
->initial_decode_frame
= 0;
329 cin
->delta
= (int16_t)AV_RL16(src
); src
+= 2;
330 *samples
++ = cin
->delta
;
333 while (buf_size
> 0) {
334 cin
->delta
+= cinaudio_delta16_table
[*src
++];
335 cin
->delta
= av_clip_int16(cin
->delta
);
336 *samples
++ = cin
->delta
;
340 *data_size
= (uint8_t *)samples
- (uint8_t *)data
;
346 AVCodec dsicinvideo_decoder
= {
349 CODEC_ID_DSICINVIDEO
,
350 sizeof(CinVideoContext
),
351 cinvideo_decode_init
,
354 cinvideo_decode_frame
,
356 .long_name
= NULL_IF_CONFIG_SMALL("Delphine Software International CIN video"),
359 AVCodec dsicinaudio_decoder
= {
362 CODEC_ID_DSICINAUDIO
,
363 sizeof(CinAudioContext
),
364 cinaudio_decode_init
,
367 cinaudio_decode_frame
,
368 .long_name
= NULL_IF_CONFIG_SMALL("Delphine Software International CIN audio"),