yading@10
|
1 /*
|
yading@10
|
2 * H.26L/H.264/AVC/JVT/14496-10/... direct mb/block decoding
|
yading@10
|
3 * Copyright (c) 2003 Michael Niedermayer <michaelni@gmx.at>
|
yading@10
|
4 *
|
yading@10
|
5 * This file is part of FFmpeg.
|
yading@10
|
6 *
|
yading@10
|
7 * FFmpeg is free software; you can redistribute it and/or
|
yading@10
|
8 * modify it under the terms of the GNU Lesser General Public
|
yading@10
|
9 * License as published by the Free Software Foundation; either
|
yading@10
|
10 * version 2.1 of the License, or (at your option) any later version.
|
yading@10
|
11 *
|
yading@10
|
12 * FFmpeg is distributed in the hope that it will be useful,
|
yading@10
|
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
|
yading@10
|
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
|
yading@10
|
15 * Lesser General Public License for more details.
|
yading@10
|
16 *
|
yading@10
|
17 * You should have received a copy of the GNU Lesser General Public
|
yading@10
|
18 * License along with FFmpeg; if not, write to the Free Software
|
yading@10
|
19 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
|
yading@10
|
20 */
|
yading@10
|
21
|
yading@10
|
22 /**
|
yading@10
|
23 * @file
|
yading@10
|
24 * H.264 / AVC / MPEG4 part10 direct mb/block decoding.
|
yading@10
|
25 * @author Michael Niedermayer <michaelni@gmx.at>
|
yading@10
|
26 */
|
yading@10
|
27
|
yading@10
|
28 #include "internal.h"
|
yading@10
|
29 #include "avcodec.h"
|
yading@10
|
30 #include "mpegvideo.h"
|
yading@10
|
31 #include "h264.h"
|
yading@10
|
32 #include "rectangle.h"
|
yading@10
|
33 #include "thread.h"
|
yading@10
|
34
|
yading@10
|
35 //#undef NDEBUG
|
yading@10
|
36 #include <assert.h>
|
yading@10
|
37
|
yading@10
|
38
|
yading@10
|
39 static int get_scale_factor(H264Context * const h, int poc, int poc1, int i){
|
yading@10
|
40 int poc0 = h->ref_list[0][i].poc;
|
yading@10
|
41 int td = av_clip(poc1 - poc0, -128, 127);
|
yading@10
|
42 if(td == 0 || h->ref_list[0][i].long_ref){
|
yading@10
|
43 return 256;
|
yading@10
|
44 }else{
|
yading@10
|
45 int tb = av_clip(poc - poc0, -128, 127);
|
yading@10
|
46 int tx = (16384 + (FFABS(td) >> 1)) / td;
|
yading@10
|
47 return av_clip((tb*tx + 32) >> 6, -1024, 1023);
|
yading@10
|
48 }
|
yading@10
|
49 }
|
yading@10
|
50
|
yading@10
|
51 void ff_h264_direct_dist_scale_factor(H264Context * const h){
|
yading@10
|
52 const int poc = h->cur_pic_ptr->field_poc[h->picture_structure == PICT_BOTTOM_FIELD];
|
yading@10
|
53 const int poc1 = h->ref_list[1][0].poc;
|
yading@10
|
54 int i, field;
|
yading@10
|
55
|
yading@10
|
56 if (FRAME_MBAFF(h))
|
yading@10
|
57 for (field = 0; field < 2; field++){
|
yading@10
|
58 const int poc = h->cur_pic_ptr->field_poc[field];
|
yading@10
|
59 const int poc1 = h->ref_list[1][0].field_poc[field];
|
yading@10
|
60 for (i = 0; i < 2 * h->ref_count[0]; i++)
|
yading@10
|
61 h->dist_scale_factor_field[field][i^field] =
|
yading@10
|
62 get_scale_factor(h, poc, poc1, i+16);
|
yading@10
|
63 }
|
yading@10
|
64
|
yading@10
|
65 for (i = 0; i < h->ref_count[0]; i++){
|
yading@10
|
66 h->dist_scale_factor[i] = get_scale_factor(h, poc, poc1, i);
|
yading@10
|
67 }
|
yading@10
|
68 }
|
yading@10
|
69
|
yading@10
|
70 static void fill_colmap(H264Context *h, int map[2][16+32], int list, int field, int colfield, int mbafi){
|
yading@10
|
71 Picture * const ref1 = &h->ref_list[1][0];
|
yading@10
|
72 int j, old_ref, rfield;
|
yading@10
|
73 int start= mbafi ? 16 : 0;
|
yading@10
|
74 int end = mbafi ? 16+2*h->ref_count[0] : h->ref_count[0];
|
yading@10
|
75 int interl= mbafi || h->picture_structure != PICT_FRAME;
|
yading@10
|
76
|
yading@10
|
77 /* bogus; fills in for missing frames */
|
yading@10
|
78 memset(map[list], 0, sizeof(map[list]));
|
yading@10
|
79
|
yading@10
|
80 for(rfield=0; rfield<2; rfield++){
|
yading@10
|
81 for(old_ref=0; old_ref<ref1->ref_count[colfield][list]; old_ref++){
|
yading@10
|
82 int poc = ref1->ref_poc[colfield][list][old_ref];
|
yading@10
|
83
|
yading@10
|
84 if (!interl)
|
yading@10
|
85 poc |= 3;
|
yading@10
|
86 else if( interl && (poc&3) == 3) // FIXME: store all MBAFF references so this is not needed
|
yading@10
|
87 poc= (poc&~3) + rfield + 1;
|
yading@10
|
88
|
yading@10
|
89 for(j=start; j<end; j++){
|
yading@10
|
90 if (4 * h->ref_list[0][j].frame_num + (h->ref_list[0][j].reference & 3) == poc) {
|
yading@10
|
91 int cur_ref= mbafi ? (j-16)^field : j;
|
yading@10
|
92 if (ref1->mbaff)
|
yading@10
|
93 map[list][2 * old_ref + (rfield^field) + 16] = cur_ref;
|
yading@10
|
94 if(rfield == field || !interl)
|
yading@10
|
95 map[list][old_ref] = cur_ref;
|
yading@10
|
96 break;
|
yading@10
|
97 }
|
yading@10
|
98 }
|
yading@10
|
99 }
|
yading@10
|
100 }
|
yading@10
|
101 }
|
yading@10
|
102
|
yading@10
|
103 void ff_h264_direct_ref_list_init(H264Context * const h){
|
yading@10
|
104 Picture * const ref1 = &h->ref_list[1][0];
|
yading@10
|
105 Picture * const cur = h->cur_pic_ptr;
|
yading@10
|
106 int list, j, field;
|
yading@10
|
107 int sidx= (h->picture_structure&1)^1;
|
yading@10
|
108 int ref1sidx = (ref1->reference&1)^1;
|
yading@10
|
109
|
yading@10
|
110 for(list=0; list<2; list++){
|
yading@10
|
111 cur->ref_count[sidx][list] = h->ref_count[list];
|
yading@10
|
112 for(j=0; j<h->ref_count[list]; j++)
|
yading@10
|
113 cur->ref_poc[sidx][list][j] = 4 * h->ref_list[list][j].frame_num + (h->ref_list[list][j].reference & 3);
|
yading@10
|
114 }
|
yading@10
|
115
|
yading@10
|
116 if(h->picture_structure == PICT_FRAME){
|
yading@10
|
117 memcpy(cur->ref_count[1], cur->ref_count[0], sizeof(cur->ref_count[0]));
|
yading@10
|
118 memcpy(cur->ref_poc [1], cur->ref_poc [0], sizeof(cur->ref_poc [0]));
|
yading@10
|
119 }
|
yading@10
|
120
|
yading@10
|
121 cur->mbaff = FRAME_MBAFF(h);
|
yading@10
|
122
|
yading@10
|
123 h->col_fieldoff= 0;
|
yading@10
|
124 if(h->picture_structure == PICT_FRAME){
|
yading@10
|
125 int cur_poc = h->cur_pic_ptr->poc;
|
yading@10
|
126 int *col_poc = h->ref_list[1]->field_poc;
|
yading@10
|
127 h->col_parity= (FFABS(col_poc[0] - cur_poc) >= FFABS(col_poc[1] - cur_poc));
|
yading@10
|
128 ref1sidx=sidx= h->col_parity;
|
yading@10
|
129 } else if (!(h->picture_structure & h->ref_list[1][0].reference) && !h->ref_list[1][0].mbaff) { // FL -> FL & differ parity
|
yading@10
|
130 h->col_fieldoff = 2 * h->ref_list[1][0].reference - 3;
|
yading@10
|
131 }
|
yading@10
|
132
|
yading@10
|
133 if (h->slice_type_nos != AV_PICTURE_TYPE_B || h->direct_spatial_mv_pred)
|
yading@10
|
134 return;
|
yading@10
|
135
|
yading@10
|
136 for(list=0; list<2; list++){
|
yading@10
|
137 fill_colmap(h, h->map_col_to_list0, list, sidx, ref1sidx, 0);
|
yading@10
|
138 if (FRAME_MBAFF(h))
|
yading@10
|
139 for(field=0; field<2; field++)
|
yading@10
|
140 fill_colmap(h, h->map_col_to_list0_field[field], list, field, field, 1);
|
yading@10
|
141 }
|
yading@10
|
142 }
|
yading@10
|
143
|
yading@10
|
144 static void await_reference_mb_row(H264Context * const h, Picture *ref, int mb_y)
|
yading@10
|
145 {
|
yading@10
|
146 int ref_field = ref->reference - 1;
|
yading@10
|
147 int ref_field_picture = ref->field_picture;
|
yading@10
|
148 int ref_height = 16*h->mb_height >> ref_field_picture;
|
yading@10
|
149
|
yading@10
|
150 if(!HAVE_THREADS || !(h->avctx->active_thread_type&FF_THREAD_FRAME))
|
yading@10
|
151 return;
|
yading@10
|
152
|
yading@10
|
153 //FIXME it can be safe to access mb stuff
|
yading@10
|
154 //even if pixels aren't deblocked yet
|
yading@10
|
155
|
yading@10
|
156 ff_thread_await_progress(&ref->tf,
|
yading@10
|
157 FFMIN(16 * mb_y >> ref_field_picture, ref_height - 1),
|
yading@10
|
158 ref_field_picture && ref_field);
|
yading@10
|
159 }
|
yading@10
|
160
|
yading@10
|
161 static void pred_spatial_direct_motion(H264Context * const h, int *mb_type){
|
yading@10
|
162 int b8_stride = 2;
|
yading@10
|
163 int b4_stride = h->b_stride;
|
yading@10
|
164 int mb_xy = h->mb_xy, mb_y = h->mb_y;
|
yading@10
|
165 int mb_type_col[2];
|
yading@10
|
166 const int16_t (*l1mv0)[2], (*l1mv1)[2];
|
yading@10
|
167 const int8_t *l1ref0, *l1ref1;
|
yading@10
|
168 const int is_b8x8 = IS_8X8(*mb_type);
|
yading@10
|
169 unsigned int sub_mb_type= MB_TYPE_L0L1;
|
yading@10
|
170 int i8, i4;
|
yading@10
|
171 int ref[2];
|
yading@10
|
172 int mv[2];
|
yading@10
|
173 int list;
|
yading@10
|
174
|
yading@10
|
175 assert(h->ref_list[1][0].reference & 3);
|
yading@10
|
176
|
yading@10
|
177 await_reference_mb_row(h, &h->ref_list[1][0], h->mb_y + !!IS_INTERLACED(*mb_type));
|
yading@10
|
178
|
yading@10
|
179 #define MB_TYPE_16x16_OR_INTRA (MB_TYPE_16x16|MB_TYPE_INTRA4x4|MB_TYPE_INTRA16x16|MB_TYPE_INTRA_PCM)
|
yading@10
|
180
|
yading@10
|
181
|
yading@10
|
182 /* ref = min(neighbors) */
|
yading@10
|
183 for(list=0; list<2; list++){
|
yading@10
|
184 int left_ref = h->ref_cache[list][scan8[0] - 1];
|
yading@10
|
185 int top_ref = h->ref_cache[list][scan8[0] - 8];
|
yading@10
|
186 int refc = h->ref_cache[list][scan8[0] - 8 + 4];
|
yading@10
|
187 const int16_t *C= h->mv_cache[list][ scan8[0] - 8 + 4];
|
yading@10
|
188 if(refc == PART_NOT_AVAILABLE){
|
yading@10
|
189 refc = h->ref_cache[list][scan8[0] - 8 - 1];
|
yading@10
|
190 C = h-> mv_cache[list][scan8[0] - 8 - 1];
|
yading@10
|
191 }
|
yading@10
|
192 ref[list] = FFMIN3((unsigned)left_ref, (unsigned)top_ref, (unsigned)refc);
|
yading@10
|
193 if(ref[list] >= 0){
|
yading@10
|
194 //this is just pred_motion() but with the cases removed that cannot happen for direct blocks
|
yading@10
|
195 const int16_t * const A= h->mv_cache[list][ scan8[0] - 1 ];
|
yading@10
|
196 const int16_t * const B= h->mv_cache[list][ scan8[0] - 8 ];
|
yading@10
|
197
|
yading@10
|
198 int match_count= (left_ref==ref[list]) + (top_ref==ref[list]) + (refc==ref[list]);
|
yading@10
|
199 if(match_count > 1){ //most common
|
yading@10
|
200 mv[list]= pack16to32(mid_pred(A[0], B[0], C[0]),
|
yading@10
|
201 mid_pred(A[1], B[1], C[1]) );
|
yading@10
|
202 }else {
|
yading@10
|
203 assert(match_count==1);
|
yading@10
|
204 if(left_ref==ref[list]){
|
yading@10
|
205 mv[list]= AV_RN32A(A);
|
yading@10
|
206 }else if(top_ref==ref[list]){
|
yading@10
|
207 mv[list]= AV_RN32A(B);
|
yading@10
|
208 }else{
|
yading@10
|
209 mv[list]= AV_RN32A(C);
|
yading@10
|
210 }
|
yading@10
|
211 }
|
yading@10
|
212 av_assert2(ref[list] < (h->ref_count[list] << !!FRAME_MBAFF(h)));
|
yading@10
|
213 }else{
|
yading@10
|
214 int mask= ~(MB_TYPE_L0 << (2*list));
|
yading@10
|
215 mv[list] = 0;
|
yading@10
|
216 ref[list] = -1;
|
yading@10
|
217 if(!is_b8x8)
|
yading@10
|
218 *mb_type &= mask;
|
yading@10
|
219 sub_mb_type &= mask;
|
yading@10
|
220 }
|
yading@10
|
221 }
|
yading@10
|
222 if(ref[0] < 0 && ref[1] < 0){
|
yading@10
|
223 ref[0] = ref[1] = 0;
|
yading@10
|
224 if(!is_b8x8)
|
yading@10
|
225 *mb_type |= MB_TYPE_L0L1;
|
yading@10
|
226 sub_mb_type |= MB_TYPE_L0L1;
|
yading@10
|
227 }
|
yading@10
|
228
|
yading@10
|
229 if(!(is_b8x8|mv[0]|mv[1])){
|
yading@10
|
230 fill_rectangle(&h->ref_cache[0][scan8[0]], 4, 4, 8, (uint8_t)ref[0], 1);
|
yading@10
|
231 fill_rectangle(&h->ref_cache[1][scan8[0]], 4, 4, 8, (uint8_t)ref[1], 1);
|
yading@10
|
232 fill_rectangle(&h->mv_cache[0][scan8[0]], 4, 4, 8, 0, 4);
|
yading@10
|
233 fill_rectangle(&h->mv_cache[1][scan8[0]], 4, 4, 8, 0, 4);
|
yading@10
|
234 *mb_type= (*mb_type & ~(MB_TYPE_8x8|MB_TYPE_16x8|MB_TYPE_8x16|MB_TYPE_P1L0|MB_TYPE_P1L1))|MB_TYPE_16x16|MB_TYPE_DIRECT2;
|
yading@10
|
235 return;
|
yading@10
|
236 }
|
yading@10
|
237
|
yading@10
|
238 if (IS_INTERLACED(h->ref_list[1][0].mb_type[mb_xy])) { // AFL/AFR/FR/FL -> AFL/FL
|
yading@10
|
239 if (!IS_INTERLACED(*mb_type)) { // AFR/FR -> AFL/FL
|
yading@10
|
240 mb_y = (h->mb_y&~1) + h->col_parity;
|
yading@10
|
241 mb_xy= h->mb_x + ((h->mb_y&~1) + h->col_parity)*h->mb_stride;
|
yading@10
|
242 b8_stride = 0;
|
yading@10
|
243 }else{
|
yading@10
|
244 mb_y += h->col_fieldoff;
|
yading@10
|
245 mb_xy += h->mb_stride*h->col_fieldoff; // non zero for FL -> FL & differ parity
|
yading@10
|
246 }
|
yading@10
|
247 goto single_col;
|
yading@10
|
248 }else{ // AFL/AFR/FR/FL -> AFR/FR
|
yading@10
|
249 if(IS_INTERLACED(*mb_type)){ // AFL /FL -> AFR/FR
|
yading@10
|
250 mb_y = h->mb_y&~1;
|
yading@10
|
251 mb_xy= h->mb_x + (h->mb_y&~1)*h->mb_stride;
|
yading@10
|
252 mb_type_col[0] = h->ref_list[1][0].mb_type[mb_xy];
|
yading@10
|
253 mb_type_col[1] = h->ref_list[1][0].mb_type[mb_xy + h->mb_stride];
|
yading@10
|
254 b8_stride = 2+4*h->mb_stride;
|
yading@10
|
255 b4_stride *= 6;
|
yading@10
|
256 if (IS_INTERLACED(mb_type_col[0]) != IS_INTERLACED(mb_type_col[1])) {
|
yading@10
|
257 mb_type_col[0] &= ~MB_TYPE_INTERLACED;
|
yading@10
|
258 mb_type_col[1] &= ~MB_TYPE_INTERLACED;
|
yading@10
|
259 }
|
yading@10
|
260
|
yading@10
|
261 sub_mb_type |= MB_TYPE_16x16|MB_TYPE_DIRECT2; /* B_SUB_8x8 */
|
yading@10
|
262 if( (mb_type_col[0] & MB_TYPE_16x16_OR_INTRA)
|
yading@10
|
263 && (mb_type_col[1] & MB_TYPE_16x16_OR_INTRA)
|
yading@10
|
264 && !is_b8x8){
|
yading@10
|
265 *mb_type |= MB_TYPE_16x8 |MB_TYPE_DIRECT2; /* B_16x8 */
|
yading@10
|
266 }else{
|
yading@10
|
267 *mb_type |= MB_TYPE_8x8;
|
yading@10
|
268 }
|
yading@10
|
269 }else{ // AFR/FR -> AFR/FR
|
yading@10
|
270 single_col:
|
yading@10
|
271 mb_type_col[0] =
|
yading@10
|
272 mb_type_col[1] = h->ref_list[1][0].mb_type[mb_xy];
|
yading@10
|
273
|
yading@10
|
274 sub_mb_type |= MB_TYPE_16x16|MB_TYPE_DIRECT2; /* B_SUB_8x8 */
|
yading@10
|
275 if(!is_b8x8 && (mb_type_col[0] & MB_TYPE_16x16_OR_INTRA)){
|
yading@10
|
276 *mb_type |= MB_TYPE_16x16|MB_TYPE_DIRECT2; /* B_16x16 */
|
yading@10
|
277 }else if(!is_b8x8 && (mb_type_col[0] & (MB_TYPE_16x8|MB_TYPE_8x16))){
|
yading@10
|
278 *mb_type |= MB_TYPE_DIRECT2 | (mb_type_col[0] & (MB_TYPE_16x8|MB_TYPE_8x16));
|
yading@10
|
279 }else{
|
yading@10
|
280 if(!h->sps.direct_8x8_inference_flag){
|
yading@10
|
281 /* FIXME save sub mb types from previous frames (or derive from MVs)
|
yading@10
|
282 * so we know exactly what block size to use */
|
yading@10
|
283 sub_mb_type += (MB_TYPE_8x8-MB_TYPE_16x16); /* B_SUB_4x4 */
|
yading@10
|
284 }
|
yading@10
|
285 *mb_type |= MB_TYPE_8x8;
|
yading@10
|
286 }
|
yading@10
|
287 }
|
yading@10
|
288 }
|
yading@10
|
289
|
yading@10
|
290 await_reference_mb_row(h, &h->ref_list[1][0], mb_y);
|
yading@10
|
291
|
yading@10
|
292 l1mv0 = (void*)&h->ref_list[1][0].motion_val[0][h->mb2b_xy [mb_xy]];
|
yading@10
|
293 l1mv1 = (void*)&h->ref_list[1][0].motion_val[1][h->mb2b_xy [mb_xy]];
|
yading@10
|
294 l1ref0 = &h->ref_list[1][0].ref_index [0][4 * mb_xy];
|
yading@10
|
295 l1ref1 = &h->ref_list[1][0].ref_index [1][4 * mb_xy];
|
yading@10
|
296 if(!b8_stride){
|
yading@10
|
297 if(h->mb_y&1){
|
yading@10
|
298 l1ref0 += 2;
|
yading@10
|
299 l1ref1 += 2;
|
yading@10
|
300 l1mv0 += 2*b4_stride;
|
yading@10
|
301 l1mv1 += 2*b4_stride;
|
yading@10
|
302 }
|
yading@10
|
303 }
|
yading@10
|
304
|
yading@10
|
305
|
yading@10
|
306 if(IS_INTERLACED(*mb_type) != IS_INTERLACED(mb_type_col[0])){
|
yading@10
|
307 int n=0;
|
yading@10
|
308 for(i8=0; i8<4; i8++){
|
yading@10
|
309 int x8 = i8&1;
|
yading@10
|
310 int y8 = i8>>1;
|
yading@10
|
311 int xy8 = x8+y8*b8_stride;
|
yading@10
|
312 int xy4 = 3*x8+y8*b4_stride;
|
yading@10
|
313 int a,b;
|
yading@10
|
314
|
yading@10
|
315 if(is_b8x8 && !IS_DIRECT(h->sub_mb_type[i8]))
|
yading@10
|
316 continue;
|
yading@10
|
317 h->sub_mb_type[i8] = sub_mb_type;
|
yading@10
|
318
|
yading@10
|
319 fill_rectangle(&h->ref_cache[0][scan8[i8*4]], 2, 2, 8, (uint8_t)ref[0], 1);
|
yading@10
|
320 fill_rectangle(&h->ref_cache[1][scan8[i8*4]], 2, 2, 8, (uint8_t)ref[1], 1);
|
yading@10
|
321 if(!IS_INTRA(mb_type_col[y8]) && !h->ref_list[1][0].long_ref
|
yading@10
|
322 && ( (l1ref0[xy8] == 0 && FFABS(l1mv0[xy4][0]) <= 1 && FFABS(l1mv0[xy4][1]) <= 1)
|
yading@10
|
323 || (l1ref0[xy8] < 0 && l1ref1[xy8] == 0 && FFABS(l1mv1[xy4][0]) <= 1 && FFABS(l1mv1[xy4][1]) <= 1))){
|
yading@10
|
324 a=b=0;
|
yading@10
|
325 if(ref[0] > 0)
|
yading@10
|
326 a= mv[0];
|
yading@10
|
327 if(ref[1] > 0)
|
yading@10
|
328 b= mv[1];
|
yading@10
|
329 n++;
|
yading@10
|
330 }else{
|
yading@10
|
331 a= mv[0];
|
yading@10
|
332 b= mv[1];
|
yading@10
|
333 }
|
yading@10
|
334 fill_rectangle(&h->mv_cache[0][scan8[i8*4]], 2, 2, 8, a, 4);
|
yading@10
|
335 fill_rectangle(&h->mv_cache[1][scan8[i8*4]], 2, 2, 8, b, 4);
|
yading@10
|
336 }
|
yading@10
|
337 if(!is_b8x8 && !(n&3))
|
yading@10
|
338 *mb_type= (*mb_type & ~(MB_TYPE_8x8|MB_TYPE_16x8|MB_TYPE_8x16|MB_TYPE_P1L0|MB_TYPE_P1L1))|MB_TYPE_16x16|MB_TYPE_DIRECT2;
|
yading@10
|
339 }else if(IS_16X16(*mb_type)){
|
yading@10
|
340 int a,b;
|
yading@10
|
341
|
yading@10
|
342 fill_rectangle(&h->ref_cache[0][scan8[0]], 4, 4, 8, (uint8_t)ref[0], 1);
|
yading@10
|
343 fill_rectangle(&h->ref_cache[1][scan8[0]], 4, 4, 8, (uint8_t)ref[1], 1);
|
yading@10
|
344 if(!IS_INTRA(mb_type_col[0]) && !h->ref_list[1][0].long_ref
|
yading@10
|
345 && ( (l1ref0[0] == 0 && FFABS(l1mv0[0][0]) <= 1 && FFABS(l1mv0[0][1]) <= 1)
|
yading@10
|
346 || (l1ref0[0] < 0 && l1ref1[0] == 0 && FFABS(l1mv1[0][0]) <= 1 && FFABS(l1mv1[0][1]) <= 1
|
yading@10
|
347 && h->x264_build>33U))){
|
yading@10
|
348 a=b=0;
|
yading@10
|
349 if(ref[0] > 0)
|
yading@10
|
350 a= mv[0];
|
yading@10
|
351 if(ref[1] > 0)
|
yading@10
|
352 b= mv[1];
|
yading@10
|
353 }else{
|
yading@10
|
354 a= mv[0];
|
yading@10
|
355 b= mv[1];
|
yading@10
|
356 }
|
yading@10
|
357 fill_rectangle(&h->mv_cache[0][scan8[0]], 4, 4, 8, a, 4);
|
yading@10
|
358 fill_rectangle(&h->mv_cache[1][scan8[0]], 4, 4, 8, b, 4);
|
yading@10
|
359 }else{
|
yading@10
|
360 int n=0;
|
yading@10
|
361 for(i8=0; i8<4; i8++){
|
yading@10
|
362 const int x8 = i8&1;
|
yading@10
|
363 const int y8 = i8>>1;
|
yading@10
|
364
|
yading@10
|
365 if(is_b8x8 && !IS_DIRECT(h->sub_mb_type[i8]))
|
yading@10
|
366 continue;
|
yading@10
|
367 h->sub_mb_type[i8] = sub_mb_type;
|
yading@10
|
368
|
yading@10
|
369 fill_rectangle(&h->mv_cache[0][scan8[i8*4]], 2, 2, 8, mv[0], 4);
|
yading@10
|
370 fill_rectangle(&h->mv_cache[1][scan8[i8*4]], 2, 2, 8, mv[1], 4);
|
yading@10
|
371 fill_rectangle(&h->ref_cache[0][scan8[i8*4]], 2, 2, 8, (uint8_t)ref[0], 1);
|
yading@10
|
372 fill_rectangle(&h->ref_cache[1][scan8[i8*4]], 2, 2, 8, (uint8_t)ref[1], 1);
|
yading@10
|
373
|
yading@10
|
374 assert(b8_stride==2);
|
yading@10
|
375 /* col_zero_flag */
|
yading@10
|
376 if(!IS_INTRA(mb_type_col[0]) && !h->ref_list[1][0].long_ref && ( l1ref0[i8] == 0
|
yading@10
|
377 || (l1ref0[i8] < 0 && l1ref1[i8] == 0
|
yading@10
|
378 && h->x264_build>33U))){
|
yading@10
|
379 const int16_t (*l1mv)[2]= l1ref0[i8] == 0 ? l1mv0 : l1mv1;
|
yading@10
|
380 if(IS_SUB_8X8(sub_mb_type)){
|
yading@10
|
381 const int16_t *mv_col = l1mv[x8*3 + y8*3*b4_stride];
|
yading@10
|
382 if(FFABS(mv_col[0]) <= 1 && FFABS(mv_col[1]) <= 1){
|
yading@10
|
383 if(ref[0] == 0)
|
yading@10
|
384 fill_rectangle(&h->mv_cache[0][scan8[i8*4]], 2, 2, 8, 0, 4);
|
yading@10
|
385 if(ref[1] == 0)
|
yading@10
|
386 fill_rectangle(&h->mv_cache[1][scan8[i8*4]], 2, 2, 8, 0, 4);
|
yading@10
|
387 n+=4;
|
yading@10
|
388 }
|
yading@10
|
389 }else{
|
yading@10
|
390 int m=0;
|
yading@10
|
391 for(i4=0; i4<4; i4++){
|
yading@10
|
392 const int16_t *mv_col = l1mv[x8*2 + (i4&1) + (y8*2 + (i4>>1))*b4_stride];
|
yading@10
|
393 if(FFABS(mv_col[0]) <= 1 && FFABS(mv_col[1]) <= 1){
|
yading@10
|
394 if(ref[0] == 0)
|
yading@10
|
395 AV_ZERO32(h->mv_cache[0][scan8[i8*4+i4]]);
|
yading@10
|
396 if(ref[1] == 0)
|
yading@10
|
397 AV_ZERO32(h->mv_cache[1][scan8[i8*4+i4]]);
|
yading@10
|
398 m++;
|
yading@10
|
399 }
|
yading@10
|
400 }
|
yading@10
|
401 if(!(m&3))
|
yading@10
|
402 h->sub_mb_type[i8]+= MB_TYPE_16x16 - MB_TYPE_8x8;
|
yading@10
|
403 n+=m;
|
yading@10
|
404 }
|
yading@10
|
405 }
|
yading@10
|
406 }
|
yading@10
|
407 if(!is_b8x8 && !(n&15))
|
yading@10
|
408 *mb_type= (*mb_type & ~(MB_TYPE_8x8|MB_TYPE_16x8|MB_TYPE_8x16|MB_TYPE_P1L0|MB_TYPE_P1L1))|MB_TYPE_16x16|MB_TYPE_DIRECT2;
|
yading@10
|
409 }
|
yading@10
|
410 }
|
yading@10
|
411
|
yading@10
|
412 static void pred_temp_direct_motion(H264Context * const h, int *mb_type){
|
yading@10
|
413 int b8_stride = 2;
|
yading@10
|
414 int b4_stride = h->b_stride;
|
yading@10
|
415 int mb_xy = h->mb_xy, mb_y = h->mb_y;
|
yading@10
|
416 int mb_type_col[2];
|
yading@10
|
417 const int16_t (*l1mv0)[2], (*l1mv1)[2];
|
yading@10
|
418 const int8_t *l1ref0, *l1ref1;
|
yading@10
|
419 const int is_b8x8 = IS_8X8(*mb_type);
|
yading@10
|
420 unsigned int sub_mb_type;
|
yading@10
|
421 int i8, i4;
|
yading@10
|
422
|
yading@10
|
423 assert(h->ref_list[1][0].reference & 3);
|
yading@10
|
424
|
yading@10
|
425 await_reference_mb_row(h, &h->ref_list[1][0], h->mb_y + !!IS_INTERLACED(*mb_type));
|
yading@10
|
426
|
yading@10
|
427 if (IS_INTERLACED(h->ref_list[1][0].mb_type[mb_xy])) { // AFL/AFR/FR/FL -> AFL/FL
|
yading@10
|
428 if (!IS_INTERLACED(*mb_type)) { // AFR/FR -> AFL/FL
|
yading@10
|
429 mb_y = (h->mb_y&~1) + h->col_parity;
|
yading@10
|
430 mb_xy= h->mb_x + ((h->mb_y&~1) + h->col_parity)*h->mb_stride;
|
yading@10
|
431 b8_stride = 0;
|
yading@10
|
432 }else{
|
yading@10
|
433 mb_y += h->col_fieldoff;
|
yading@10
|
434 mb_xy += h->mb_stride*h->col_fieldoff; // non zero for FL -> FL & differ parity
|
yading@10
|
435 }
|
yading@10
|
436 goto single_col;
|
yading@10
|
437 }else{ // AFL/AFR/FR/FL -> AFR/FR
|
yading@10
|
438 if(IS_INTERLACED(*mb_type)){ // AFL /FL -> AFR/FR
|
yading@10
|
439 mb_y = h->mb_y&~1;
|
yading@10
|
440 mb_xy= h->mb_x + (h->mb_y&~1)*h->mb_stride;
|
yading@10
|
441 mb_type_col[0] = h->ref_list[1][0].mb_type[mb_xy];
|
yading@10
|
442 mb_type_col[1] = h->ref_list[1][0].mb_type[mb_xy + h->mb_stride];
|
yading@10
|
443 b8_stride = 2+4*h->mb_stride;
|
yading@10
|
444 b4_stride *= 6;
|
yading@10
|
445 if (IS_INTERLACED(mb_type_col[0]) != IS_INTERLACED(mb_type_col[1])) {
|
yading@10
|
446 mb_type_col[0] &= ~MB_TYPE_INTERLACED;
|
yading@10
|
447 mb_type_col[1] &= ~MB_TYPE_INTERLACED;
|
yading@10
|
448 }
|
yading@10
|
449
|
yading@10
|
450 sub_mb_type = MB_TYPE_16x16|MB_TYPE_P0L0|MB_TYPE_P0L1|MB_TYPE_DIRECT2; /* B_SUB_8x8 */
|
yading@10
|
451
|
yading@10
|
452 if( (mb_type_col[0] & MB_TYPE_16x16_OR_INTRA)
|
yading@10
|
453 && (mb_type_col[1] & MB_TYPE_16x16_OR_INTRA)
|
yading@10
|
454 && !is_b8x8){
|
yading@10
|
455 *mb_type |= MB_TYPE_16x8 |MB_TYPE_L0L1|MB_TYPE_DIRECT2; /* B_16x8 */
|
yading@10
|
456 }else{
|
yading@10
|
457 *mb_type |= MB_TYPE_8x8|MB_TYPE_L0L1;
|
yading@10
|
458 }
|
yading@10
|
459 }else{ // AFR/FR -> AFR/FR
|
yading@10
|
460 single_col:
|
yading@10
|
461 mb_type_col[0] =
|
yading@10
|
462 mb_type_col[1] = h->ref_list[1][0].mb_type[mb_xy];
|
yading@10
|
463
|
yading@10
|
464 sub_mb_type = MB_TYPE_16x16|MB_TYPE_P0L0|MB_TYPE_P0L1|MB_TYPE_DIRECT2; /* B_SUB_8x8 */
|
yading@10
|
465 if(!is_b8x8 && (mb_type_col[0] & MB_TYPE_16x16_OR_INTRA)){
|
yading@10
|
466 *mb_type |= MB_TYPE_16x16|MB_TYPE_P0L0|MB_TYPE_P0L1|MB_TYPE_DIRECT2; /* B_16x16 */
|
yading@10
|
467 }else if(!is_b8x8 && (mb_type_col[0] & (MB_TYPE_16x8|MB_TYPE_8x16))){
|
yading@10
|
468 *mb_type |= MB_TYPE_L0L1|MB_TYPE_DIRECT2 | (mb_type_col[0] & (MB_TYPE_16x8|MB_TYPE_8x16));
|
yading@10
|
469 }else{
|
yading@10
|
470 if(!h->sps.direct_8x8_inference_flag){
|
yading@10
|
471 /* FIXME save sub mb types from previous frames (or derive from MVs)
|
yading@10
|
472 * so we know exactly what block size to use */
|
yading@10
|
473 sub_mb_type = MB_TYPE_8x8|MB_TYPE_P0L0|MB_TYPE_P0L1|MB_TYPE_DIRECT2; /* B_SUB_4x4 */
|
yading@10
|
474 }
|
yading@10
|
475 *mb_type |= MB_TYPE_8x8|MB_TYPE_L0L1;
|
yading@10
|
476 }
|
yading@10
|
477 }
|
yading@10
|
478 }
|
yading@10
|
479
|
yading@10
|
480 await_reference_mb_row(h, &h->ref_list[1][0], mb_y);
|
yading@10
|
481
|
yading@10
|
482 l1mv0 = (void*)&h->ref_list[1][0].motion_val[0][h->mb2b_xy [mb_xy]];
|
yading@10
|
483 l1mv1 = (void*)&h->ref_list[1][0].motion_val[1][h->mb2b_xy [mb_xy]];
|
yading@10
|
484 l1ref0 = &h->ref_list[1][0].ref_index [0][4 * mb_xy];
|
yading@10
|
485 l1ref1 = &h->ref_list[1][0].ref_index [1][4 * mb_xy];
|
yading@10
|
486 if(!b8_stride){
|
yading@10
|
487 if(h->mb_y&1){
|
yading@10
|
488 l1ref0 += 2;
|
yading@10
|
489 l1ref1 += 2;
|
yading@10
|
490 l1mv0 += 2*b4_stride;
|
yading@10
|
491 l1mv1 += 2*b4_stride;
|
yading@10
|
492 }
|
yading@10
|
493 }
|
yading@10
|
494
|
yading@10
|
495 {
|
yading@10
|
496 const int *map_col_to_list0[2] = {h->map_col_to_list0[0], h->map_col_to_list0[1]};
|
yading@10
|
497 const int *dist_scale_factor = h->dist_scale_factor;
|
yading@10
|
498 int ref_offset;
|
yading@10
|
499
|
yading@10
|
500 if (FRAME_MBAFF(h) && IS_INTERLACED(*mb_type)) {
|
yading@10
|
501 map_col_to_list0[0] = h->map_col_to_list0_field[h->mb_y&1][0];
|
yading@10
|
502 map_col_to_list0[1] = h->map_col_to_list0_field[h->mb_y&1][1];
|
yading@10
|
503 dist_scale_factor =h->dist_scale_factor_field[h->mb_y&1];
|
yading@10
|
504 }
|
yading@10
|
505 ref_offset = (h->ref_list[1][0].mbaff<<4) & (mb_type_col[0]>>3); //if(h->ref_list[1][0].mbaff && IS_INTERLACED(mb_type_col[0])) ref_offset=16 else 0
|
yading@10
|
506
|
yading@10
|
507 if(IS_INTERLACED(*mb_type) != IS_INTERLACED(mb_type_col[0])){
|
yading@10
|
508 int y_shift = 2*!IS_INTERLACED(*mb_type);
|
yading@10
|
509 assert(h->sps.direct_8x8_inference_flag);
|
yading@10
|
510
|
yading@10
|
511 for(i8=0; i8<4; i8++){
|
yading@10
|
512 const int x8 = i8&1;
|
yading@10
|
513 const int y8 = i8>>1;
|
yading@10
|
514 int ref0, scale;
|
yading@10
|
515 const int16_t (*l1mv)[2]= l1mv0;
|
yading@10
|
516
|
yading@10
|
517 if(is_b8x8 && !IS_DIRECT(h->sub_mb_type[i8]))
|
yading@10
|
518 continue;
|
yading@10
|
519 h->sub_mb_type[i8] = sub_mb_type;
|
yading@10
|
520
|
yading@10
|
521 fill_rectangle(&h->ref_cache[1][scan8[i8*4]], 2, 2, 8, 0, 1);
|
yading@10
|
522 if(IS_INTRA(mb_type_col[y8])){
|
yading@10
|
523 fill_rectangle(&h->ref_cache[0][scan8[i8*4]], 2, 2, 8, 0, 1);
|
yading@10
|
524 fill_rectangle(&h-> mv_cache[0][scan8[i8*4]], 2, 2, 8, 0, 4);
|
yading@10
|
525 fill_rectangle(&h-> mv_cache[1][scan8[i8*4]], 2, 2, 8, 0, 4);
|
yading@10
|
526 continue;
|
yading@10
|
527 }
|
yading@10
|
528
|
yading@10
|
529 ref0 = l1ref0[x8 + y8*b8_stride];
|
yading@10
|
530 if(ref0 >= 0)
|
yading@10
|
531 ref0 = map_col_to_list0[0][ref0 + ref_offset];
|
yading@10
|
532 else{
|
yading@10
|
533 ref0 = map_col_to_list0[1][l1ref1[x8 + y8*b8_stride] + ref_offset];
|
yading@10
|
534 l1mv= l1mv1;
|
yading@10
|
535 }
|
yading@10
|
536 scale = dist_scale_factor[ref0];
|
yading@10
|
537 fill_rectangle(&h->ref_cache[0][scan8[i8*4]], 2, 2, 8, ref0, 1);
|
yading@10
|
538
|
yading@10
|
539 {
|
yading@10
|
540 const int16_t *mv_col = l1mv[x8*3 + y8*b4_stride];
|
yading@10
|
541 int my_col = (mv_col[1]<<y_shift)/2;
|
yading@10
|
542 int mx = (scale * mv_col[0] + 128) >> 8;
|
yading@10
|
543 int my = (scale * my_col + 128) >> 8;
|
yading@10
|
544 fill_rectangle(&h->mv_cache[0][scan8[i8*4]], 2, 2, 8, pack16to32(mx,my), 4);
|
yading@10
|
545 fill_rectangle(&h->mv_cache[1][scan8[i8*4]], 2, 2, 8, pack16to32(mx-mv_col[0],my-my_col), 4);
|
yading@10
|
546 }
|
yading@10
|
547 }
|
yading@10
|
548 return;
|
yading@10
|
549 }
|
yading@10
|
550
|
yading@10
|
551 /* one-to-one mv scaling */
|
yading@10
|
552
|
yading@10
|
553 if(IS_16X16(*mb_type)){
|
yading@10
|
554 int ref, mv0, mv1;
|
yading@10
|
555
|
yading@10
|
556 fill_rectangle(&h->ref_cache[1][scan8[0]], 4, 4, 8, 0, 1);
|
yading@10
|
557 if(IS_INTRA(mb_type_col[0])){
|
yading@10
|
558 ref=mv0=mv1=0;
|
yading@10
|
559 }else{
|
yading@10
|
560 const int ref0 = l1ref0[0] >= 0 ? map_col_to_list0[0][l1ref0[0] + ref_offset]
|
yading@10
|
561 : map_col_to_list0[1][l1ref1[0] + ref_offset];
|
yading@10
|
562 const int scale = dist_scale_factor[ref0];
|
yading@10
|
563 const int16_t *mv_col = l1ref0[0] >= 0 ? l1mv0[0] : l1mv1[0];
|
yading@10
|
564 int mv_l0[2];
|
yading@10
|
565 mv_l0[0] = (scale * mv_col[0] + 128) >> 8;
|
yading@10
|
566 mv_l0[1] = (scale * mv_col[1] + 128) >> 8;
|
yading@10
|
567 ref= ref0;
|
yading@10
|
568 mv0= pack16to32(mv_l0[0],mv_l0[1]);
|
yading@10
|
569 mv1= pack16to32(mv_l0[0]-mv_col[0],mv_l0[1]-mv_col[1]);
|
yading@10
|
570 }
|
yading@10
|
571 fill_rectangle(&h->ref_cache[0][scan8[0]], 4, 4, 8, ref, 1);
|
yading@10
|
572 fill_rectangle(&h-> mv_cache[0][scan8[0]], 4, 4, 8, mv0, 4);
|
yading@10
|
573 fill_rectangle(&h-> mv_cache[1][scan8[0]], 4, 4, 8, mv1, 4);
|
yading@10
|
574 }else{
|
yading@10
|
575 for(i8=0; i8<4; i8++){
|
yading@10
|
576 const int x8 = i8&1;
|
yading@10
|
577 const int y8 = i8>>1;
|
yading@10
|
578 int ref0, scale;
|
yading@10
|
579 const int16_t (*l1mv)[2]= l1mv0;
|
yading@10
|
580
|
yading@10
|
581 if(is_b8x8 && !IS_DIRECT(h->sub_mb_type[i8]))
|
yading@10
|
582 continue;
|
yading@10
|
583 h->sub_mb_type[i8] = sub_mb_type;
|
yading@10
|
584 fill_rectangle(&h->ref_cache[1][scan8[i8*4]], 2, 2, 8, 0, 1);
|
yading@10
|
585 if(IS_INTRA(mb_type_col[0])){
|
yading@10
|
586 fill_rectangle(&h->ref_cache[0][scan8[i8*4]], 2, 2, 8, 0, 1);
|
yading@10
|
587 fill_rectangle(&h-> mv_cache[0][scan8[i8*4]], 2, 2, 8, 0, 4);
|
yading@10
|
588 fill_rectangle(&h-> mv_cache[1][scan8[i8*4]], 2, 2, 8, 0, 4);
|
yading@10
|
589 continue;
|
yading@10
|
590 }
|
yading@10
|
591
|
yading@10
|
592 assert(b8_stride == 2);
|
yading@10
|
593 ref0 = l1ref0[i8];
|
yading@10
|
594 if(ref0 >= 0)
|
yading@10
|
595 ref0 = map_col_to_list0[0][ref0 + ref_offset];
|
yading@10
|
596 else{
|
yading@10
|
597 ref0 = map_col_to_list0[1][l1ref1[i8] + ref_offset];
|
yading@10
|
598 l1mv= l1mv1;
|
yading@10
|
599 }
|
yading@10
|
600 scale = dist_scale_factor[ref0];
|
yading@10
|
601
|
yading@10
|
602 fill_rectangle(&h->ref_cache[0][scan8[i8*4]], 2, 2, 8, ref0, 1);
|
yading@10
|
603 if(IS_SUB_8X8(sub_mb_type)){
|
yading@10
|
604 const int16_t *mv_col = l1mv[x8*3 + y8*3*b4_stride];
|
yading@10
|
605 int mx = (scale * mv_col[0] + 128) >> 8;
|
yading@10
|
606 int my = (scale * mv_col[1] + 128) >> 8;
|
yading@10
|
607 fill_rectangle(&h->mv_cache[0][scan8[i8*4]], 2, 2, 8, pack16to32(mx,my), 4);
|
yading@10
|
608 fill_rectangle(&h->mv_cache[1][scan8[i8*4]], 2, 2, 8, pack16to32(mx-mv_col[0],my-mv_col[1]), 4);
|
yading@10
|
609 }else
|
yading@10
|
610 for(i4=0; i4<4; i4++){
|
yading@10
|
611 const int16_t *mv_col = l1mv[x8*2 + (i4&1) + (y8*2 + (i4>>1))*b4_stride];
|
yading@10
|
612 int16_t *mv_l0 = h->mv_cache[0][scan8[i8*4+i4]];
|
yading@10
|
613 mv_l0[0] = (scale * mv_col[0] + 128) >> 8;
|
yading@10
|
614 mv_l0[1] = (scale * mv_col[1] + 128) >> 8;
|
yading@10
|
615 AV_WN32A(h->mv_cache[1][scan8[i8*4+i4]],
|
yading@10
|
616 pack16to32(mv_l0[0]-mv_col[0],mv_l0[1]-mv_col[1]));
|
yading@10
|
617 }
|
yading@10
|
618 }
|
yading@10
|
619 }
|
yading@10
|
620 }
|
yading@10
|
621 }
|
yading@10
|
622
|
yading@10
|
623 void ff_h264_pred_direct_motion(H264Context * const h, int *mb_type){
|
yading@10
|
624 if(h->direct_spatial_mv_pred){
|
yading@10
|
625 pred_spatial_direct_motion(h, mb_type);
|
yading@10
|
626 }else{
|
yading@10
|
627 pred_temp_direct_motion(h, mb_type);
|
yading@10
|
628 }
|
yading@10
|
629 }
|