Partially revert r20233, exp2f is not available on some BSDs, DOS and AVR32.
[FFMpeg-mirror/lagarith.git] / libavcodec / cavs.h
blob5ae664dd33b9d36dde386e52725bae14529b969f
1 /*
2 * Chinese AVS video (AVS1-P2, JiZhun profile) decoder.
3 * Copyright (c) 2006 Stefan Gehrer <stefan.gehrer@gmx.de>
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
22 #ifndef AVCODEC_CAVS_H
23 #define AVCODEC_CAVS_H
25 #include "dsputil.h"
26 #include "mpegvideo.h"
28 #define SLICE_MAX_START_CODE 0x000001af
29 #define EXT_START_CODE 0x000001b5
30 #define USER_START_CODE 0x000001b2
31 #define CAVS_START_CODE 0x000001b0
32 #define PIC_I_START_CODE 0x000001b3
33 #define PIC_PB_START_CODE 0x000001b6
35 #define A_AVAIL 1
36 #define B_AVAIL 2
37 #define C_AVAIL 4
38 #define D_AVAIL 8
39 #define NOT_AVAIL -1
40 #define REF_INTRA -2
41 #define REF_DIR -3
43 #define ESCAPE_CODE 59
45 #define FWD0 0x01
46 #define FWD1 0x02
47 #define BWD0 0x04
48 #define BWD1 0x08
49 #define SYM0 0x10
50 #define SYM1 0x20
51 #define SPLITH 0x40
52 #define SPLITV 0x80
54 #define MV_BWD_OFFS 12
55 #define MV_STRIDE 4
57 enum cavs_mb {
58 I_8X8 = 0,
59 P_SKIP,
60 P_16X16,
61 P_16X8,
62 P_8X16,
63 P_8X8,
64 B_SKIP,
65 B_DIRECT,
66 B_FWD_16X16,
67 B_BWD_16X16,
68 B_SYM_16X16,
69 B_8X8 = 29
72 enum cavs_sub_mb {
73 B_SUB_DIRECT,
74 B_SUB_FWD,
75 B_SUB_BWD,
76 B_SUB_SYM
79 enum cavs_intra_luma {
80 INTRA_L_VERT,
81 INTRA_L_HORIZ,
82 INTRA_L_LP,
83 INTRA_L_DOWN_LEFT,
84 INTRA_L_DOWN_RIGHT,
85 INTRA_L_LP_LEFT,
86 INTRA_L_LP_TOP,
87 INTRA_L_DC_128
90 enum cavs_intra_chroma {
91 INTRA_C_LP,
92 INTRA_C_HORIZ,
93 INTRA_C_VERT,
94 INTRA_C_PLANE,
95 INTRA_C_LP_LEFT,
96 INTRA_C_LP_TOP,
97 INTRA_C_DC_128,
100 enum cavs_mv_pred {
101 MV_PRED_MEDIAN,
102 MV_PRED_LEFT,
103 MV_PRED_TOP,
104 MV_PRED_TOPRIGHT,
105 MV_PRED_PSKIP,
106 MV_PRED_BSKIP
109 enum cavs_block {
110 BLK_16X16,
111 BLK_16X8,
112 BLK_8X16,
113 BLK_8X8
116 enum cavs_mv_loc {
117 MV_FWD_D3 = 0,
118 MV_FWD_B2,
119 MV_FWD_B3,
120 MV_FWD_C2,
121 MV_FWD_A1,
122 MV_FWD_X0,
123 MV_FWD_X1,
124 MV_FWD_A3 = 8,
125 MV_FWD_X2,
126 MV_FWD_X3,
127 MV_BWD_D3 = MV_BWD_OFFS,
128 MV_BWD_B2,
129 MV_BWD_B3,
130 MV_BWD_C2,
131 MV_BWD_A1,
132 MV_BWD_X0,
133 MV_BWD_X1,
134 MV_BWD_A3 = MV_BWD_OFFS+8,
135 MV_BWD_X2,
136 MV_BWD_X3
139 DECLARE_ALIGNED_8(typedef, struct) {
140 int16_t x;
141 int16_t y;
142 int16_t dist;
143 int16_t ref;
144 } cavs_vector;
146 struct dec_2dvlc {
147 int8_t rltab[59][3];
148 int8_t level_add[27];
149 int8_t golomb_order;
150 int inc_limit;
151 int8_t max_run;
154 typedef struct {
155 MpegEncContext s;
156 Picture picture; ///< currently decoded frame
157 Picture DPB[2]; ///< reference frames
158 int dist[2]; ///< temporal distances from current frame to ref frames
159 int profile, level;
160 int aspect_ratio;
161 int mb_width, mb_height;
162 int pic_type;
163 int progressive;
164 int pic_structure;
165 int skip_mode_flag; ///< select between skip_count or one skip_flag per MB
166 int loop_filter_disable;
167 int alpha_offset, beta_offset;
168 int ref_flag;
169 int mbx, mby, mbidx; ///< macroblock coordinates
170 int flags; ///< availability flags of neighbouring macroblocks
171 int stc; ///< last start code
172 uint8_t *cy, *cu, *cv; ///< current MB sample pointers
173 int left_qp;
174 uint8_t *top_qp;
176 /** mv motion vector cache
177 0: D3 B2 B3 C2
178 4: A1 X0 X1 -
179 8: A3 X2 X3 -
181 X are the vectors in the current macroblock (5,6,9,10)
182 A is the macroblock to the left (4,8)
183 B is the macroblock to the top (1,2)
184 C is the macroblock to the top-right (3)
185 D is the macroblock to the top-left (0)
187 the same is repeated for backward motion vectors */
188 cavs_vector mv[2*4*3];
189 cavs_vector *top_mv[2];
190 cavs_vector *col_mv;
192 /** luma pred mode cache
193 0: -- B2 B3
194 3: A1 X0 X1
195 6: A3 X2 X3 */
196 int pred_mode_Y[3*3];
197 int *top_pred_Y;
198 int l_stride, c_stride;
199 int luma_scan[4];
200 int qp;
201 int qp_fixed;
202 int cbp;
203 ScanTable scantable;
205 /** intra prediction is done with un-deblocked samples
206 they are saved here before deblocking the MB */
207 uint8_t *top_border_y, *top_border_u, *top_border_v;
208 uint8_t left_border_y[26], left_border_u[10], left_border_v[10];
209 uint8_t intern_border_y[26];
210 uint8_t topleft_border_y, topleft_border_u, topleft_border_v;
212 void (*intra_pred_l[8])(uint8_t *d,uint8_t *top,uint8_t *left,int stride);
213 void (*intra_pred_c[7])(uint8_t *d,uint8_t *top,uint8_t *left,int stride);
214 uint8_t *col_type_base;
216 /* scaling factors for MV prediction */
217 int sym_factor; ///< for scaling in symmetrical B block
218 int direct_den[2]; ///< for scaling in direct B block
219 int scale_den[2]; ///< for scaling neighbouring MVs
221 int got_keyframe;
222 DCTELEM *block;
223 } AVSContext;
225 extern const uint8_t ff_cavs_dequant_shift[64];
226 extern const uint16_t ff_cavs_dequant_mul[64];
227 extern const struct dec_2dvlc ff_cavs_intra_dec[7];
228 extern const struct dec_2dvlc ff_cavs_inter_dec[7];
229 extern const struct dec_2dvlc ff_cavs_chroma_dec[5];
230 extern const uint8_t ff_cavs_chroma_qp[64];
231 extern const uint8_t ff_cavs_scan3x3[4];
232 extern const uint8_t ff_cavs_partition_flags[30];
233 extern const int_fast8_t ff_left_modifier_l[8];
234 extern const int_fast8_t ff_top_modifier_l[8];
235 extern const int_fast8_t ff_left_modifier_c[7];
236 extern const int_fast8_t ff_top_modifier_c[7];
237 extern const cavs_vector ff_cavs_intra_mv;
238 extern const cavs_vector ff_cavs_un_mv;
239 extern const cavs_vector ff_cavs_dir_mv;
241 static inline void modify_pred(const int_fast8_t *mod_table, int *mode) {
242 *mode = mod_table[*mode];
243 if(*mode < 0) {
244 av_log(NULL, AV_LOG_ERROR, "Illegal intra prediction mode\n");
245 *mode = 0;
249 static inline void set_intra_mode_default(AVSContext *h) {
250 h->pred_mode_Y[3] = h->pred_mode_Y[6] = INTRA_L_LP;
251 h->top_pred_Y[h->mbx*2+0] = h->top_pred_Y[h->mbx*2+1] = INTRA_L_LP;
254 static inline void set_mvs(cavs_vector *mv, enum cavs_block size) {
255 switch(size) {
256 case BLK_16X16:
257 mv[MV_STRIDE ] = mv[0];
258 mv[MV_STRIDE+1] = mv[0];
259 case BLK_16X8:
260 mv[1] = mv[0];
261 break;
262 case BLK_8X16:
263 mv[MV_STRIDE] = mv[0];
264 break;
268 static inline void set_mv_intra(AVSContext *h) {
269 h->mv[MV_FWD_X0] = ff_cavs_intra_mv;
270 set_mvs(&h->mv[MV_FWD_X0], BLK_16X16);
271 h->mv[MV_BWD_X0] = ff_cavs_intra_mv;
272 set_mvs(&h->mv[MV_BWD_X0], BLK_16X16);
273 if(h->pic_type != FF_B_TYPE)
274 h->col_type_base[h->mbidx] = I_8X8;
277 static inline int dequant(AVSContext *h, DCTELEM *level_buf, uint8_t *run_buf,
278 DCTELEM *dst, int mul, int shift, int coeff_num) {
279 int round = 1 << (shift - 1);
280 int pos = -1;
281 const uint8_t *scantab = h->scantable.permutated;
283 /* inverse scan and dequantization */
284 while(--coeff_num >= 0){
285 pos += run_buf[coeff_num];
286 if(pos > 63) {
287 av_log(h->s.avctx, AV_LOG_ERROR,
288 "position out of block bounds at pic %d MB(%d,%d)\n",
289 h->picture.poc, h->mbx, h->mby);
290 return -1;
292 dst[scantab[pos]] = (level_buf[coeff_num]*mul + round) >> shift;
294 return 0;
297 void ff_cavs_filter(AVSContext *h, enum cavs_mb mb_type);
298 void ff_cavs_load_intra_pred_luma(AVSContext *h, uint8_t *top, uint8_t **left,
299 int block);
300 void ff_cavs_load_intra_pred_chroma(AVSContext *h);
301 void ff_cavs_modify_mb_i(AVSContext *h, int *pred_mode_uv);
302 void ff_cavs_inter(AVSContext *h, enum cavs_mb mb_type);
303 void ff_cavs_mv(AVSContext *h, enum cavs_mv_loc nP, enum cavs_mv_loc nC,
304 enum cavs_mv_pred mode, enum cavs_block size, int ref);
305 void ff_cavs_init_mb(AVSContext *h);
306 int ff_cavs_next_mb(AVSContext *h);
307 void ff_cavs_init_pic(AVSContext *h);
308 void ff_cavs_init_top_lines(AVSContext *h);
309 int ff_cavs_init(AVCodecContext *avctx);
310 int ff_cavs_end (AVCodecContext *avctx);
312 #endif /* AVCODEC_CAVS_H */