44 #define P_TOPRIGHT P[3]
48 #define ME_MAP_SHIFT 3
49 #define ME_MAP_MV_BITS 11
52 int *mx_ptr,
int *my_ptr,
int dmin,
53 int src_index,
int ref_index,
80 #define FLAG_QPEL 1 //must be 1
92 c->
src[0][i]= src [i] + offset[i];
93 c->
ref[0][i]= ref [i] + offset[i];
97 c->
ref[ref_index][i]= ref2[i] + offset[i];
109 const int size,
const int h,
int ref_index,
int src_index,
113 const int hx= subx + (x<<(1+qpel));
114 const int hy= suby + (y<<(1+qpel));
115 uint8_t *
const *
const ref= c->
ref[ref_index];
119 av_assert2(x >= c->
xmin && hx <= c->xmax<<(qpel+1) && y >= c->
ymin && hy <= c->ymax<<(qpel+1));
120 if(x >= c->
xmin && hx <= c->xmax<<(qpel+1) && y >= c->
ymin && hy <= c->ymax<<(qpel+1)){
123 const int mask= 2*qpel+1;
131 int fxy= (fx&
mask) + ((fy&mask)<<(qpel+1));
132 int bxy= (bx&
mask) + ((by&mask)<<(qpel+1));
136 c->
qpel_put[1][fxy](dst, ref[0] + (fx>>2) + (fy>>2)*stride, stride);
137 c->
qpel_avg[1][bxy](dst, ref[8] + (bx>>2) + (by>>2)*stride, stride);
139 c->
hpel_put[1][fxy](dst, ref[0] + (fx>>1) + (fy>>1)*stride, stride, 8);
140 c->
hpel_avg[1][bxy](dst, ref[8] + (bx>>1) + (by>>1)*stride, stride, 8);
148 int fxy= (fx&
mask) + ((fy&mask)<<(qpel+1));
149 int bxy= (bx&
mask) + ((by&mask)<<(qpel+1));
152 c->
qpel_put[1][fxy](c->
temp , ref[0] + (fx>>2) + (fy>>2)*stride , stride);
153 c->
qpel_put[1][fxy](c->
temp + 8 , ref[0] + (fx>>2) + (fy>>2)*stride + 8 , stride);
154 c->
qpel_put[1][fxy](c->
temp + 8*stride, ref[0] + (fx>>2) + (fy>>2)*stride + 8*stride, stride);
155 c->
qpel_put[1][fxy](c->
temp + 8 + 8*stride, ref[0] + (fx>>2) + (fy>>2)*stride + 8 + 8*stride, stride);
156 c->
qpel_avg[1][bxy](c->
temp , ref[8] + (bx>>2) + (by>>2)*stride , stride);
157 c->
qpel_avg[1][bxy](c->
temp + 8 , ref[8] + (bx>>2) + (by>>2)*stride + 8 , stride);
158 c->
qpel_avg[1][bxy](c->
temp + 8*stride, ref[8] + (bx>>2) + (by>>2)*stride + 8*stride, stride);
159 c->
qpel_avg[1][bxy](c->
temp + 8 + 8*stride, ref[8] + (bx>>2) + (by>>2)*stride + 8 + 8*stride, stride);
170 c->
hpel_put[0][fxy](c->
temp, ref[0] + (fx>>1) + (fy>>1)*stride, stride, 16);
171 c->
hpel_avg[0][bxy](c->
temp, ref[8] + (bx>>1) + (by>>1)*stride, stride, 16);
174 d = cmp_func(s, c->
temp, src[0], stride, 16);
181 const int size,
const int h,
int ref_index,
int src_index,
186 const int dxy= subx + (suby<<(1+qpel));
187 const int hx= subx + (x<<(1+qpel));
188 const int hy= suby + (y<<(1+qpel));
189 uint8_t *
const *
const ref= c->
ref[ref_index];
196 if (h << size == 16) {
198 }
else if (size == 0 && h == 8) {
199 c->
qpel_put[1][dxy](c->
temp , ref[0] + x + y*stride , stride);
200 c->
qpel_put[1][dxy](c->
temp + 8, ref[0] + x + y*stride + 8, stride);
208 uvdxy= (cx&1) + 2*(cy&1);
214 uvdxy= dxy | (x&1) | (2*(y&1));
216 d = cmp_func(s, c->
temp, src[0], stride, h);
218 d = cmp_func(s, src[0], ref[0] + x + y*stride, stride, h);
220 uvdxy= (x&1) + 2*(y&1);
224 c->
hpel_put[size+1][uvdxy](uvtemp , ref[1] + (x>>1) + (y>>1)*uvstride, uvstride, h>>1);
225 c->
hpel_put[size+1][uvdxy](uvtemp+8, ref[2] + (x>>1) + (y>>1)*uvstride, uvstride, h>>1);
226 d += chroma_cmp_func(s, uvtemp , src[1], uvstride, h>>1);
227 d += chroma_cmp_func(s, uvtemp+8, src[2], uvstride, h>>1);
233 int ref_index,
int src_index,
235 return cmp_inline(s,x,y,0,0,0,16,ref_index,src_index, cmp_func, chroma_cmp_func, 0, 0);
239 const int size,
const int h,
int ref_index,
int src_index,
242 return cmp_direct_inline(s,x,y,0,0,size,h,ref_index,src_index, cmp_func, chroma_cmp_func, flags&
FLAG_QPEL);
244 return cmp_inline(s,x,y,0,0,size,h,ref_index,src_index, cmp_func, chroma_cmp_func, 0, flags&
FLAG_CHROMA);
249 const int size,
const int h,
int ref_index,
int src_index,
252 return cmp_direct_inline(s,x,y,subx,suby,size,h,ref_index,src_index, cmp_func, chroma_cmp_func, flags&
FLAG_QPEL);
254 return cmp_inline(s,x,y,subx,suby,size,h,ref_index,src_index, cmp_func, chroma_cmp_func, flags&
FLAG_QPEL, flags&
FLAG_CHROMA);
262 const int size,
const int h,
int ref_index,
int src_index,
266 && flags==0 && h==16 && size==0 && subx==0 && suby==0){
267 return cmp_simple(s,x,y,ref_index,src_index, cmp_func, chroma_cmp_func);
269 && subx==0 && suby==0){
270 return cmp_fpel_internal(s,x,y,size,h,ref_index,src_index, cmp_func, chroma_cmp_func,flags);
272 return cmp_internal(s,x,y,subx,suby,size,h,ref_index,src_index, cmp_func, chroma_cmp_func, flags);
277 const int size,
const int h,
int ref_index,
int src_index,
280 return cmp_direct_inline(s,x,y,subx,suby,size,h,ref_index,src_index, cmp_func, chroma_cmp_func, 0);
282 return cmp_inline(s,x,y,subx,suby,size,h,ref_index,src_index, cmp_func, chroma_cmp_func, 0, flags&
FLAG_CHROMA);
287 const int size,
const int h,
int ref_index,
int src_index,
290 return cmp_direct_inline(s,x,y,subx,suby,size,h,ref_index,src_index, cmp_func, chroma_cmp_func, 1);
292 return cmp_inline(s,x,y,subx,suby,size,h,ref_index,src_index, cmp_func, chroma_cmp_func, 1, flags&
FLAG_CHROMA);
318 av_log(s->
avctx,
AV_LOG_ERROR,
"me_method is only allowed to be set to zero and epzs; for hex,umh,full and others see dia_size\n");
324 if(cache_size < 2*dia_size && !c->
stride){
388 #define CHECK_SAD_HALF_MV(suffix, x, y) \
390 d = s->mecc.pix_abs[size][(x ? 1 : 0) + (y ? 2 : 0)](NULL, pix, ptr + ((x) >> 1), stride, h); \
391 d += (mv_penalty[pen_x + x] + mv_penalty[pen_y + y])*penalty_factor;\
392 COPY3_IF_LT(dminh, d, dx, x, dy, y)\
396 int *mx_ptr,
int *my_ptr,
int dmin,
397 int src_index,
int ref_index,
415 pix = c->
src[src_index][0];
419 ptr = c->
ref[ref_index][0] + (my * stride) + mx;
423 if (mx > xmin && mx < xmax &&
424 my > ymin && my < ymax) {
429 const int l= score_map[(index- 1 )&(
ME_MAP_SIZE-1)];
543 c->
xmin = (x > 15) ? - 15 : 0;
544 c->
ymin = (y > 15) ? - 15 : 0;
553 if(!range || range > max_range)
566 c->
ref[1][0] = c->
ref[0][0] + 8;
567 c->
ref[2][0] = c->
ref[0][0] + 8*stride;
568 c->
ref[3][0] = c->
ref[2][0] + 8;
569 c->
src[1][0] = c->
src[0][0] + 8;
570 c->
src[2][0] = c->
src[0][0] + 8*stride;
571 c->
src[3][0] = c->
src[2][0] + 8;
581 int dmin_sum=0, mx4_sum=0, my4_sum=0, i;
589 for(block=0; block<4; block++){
591 int pred_x4, pred_y4;
593 static const int off[4]= {2, 1, 1, -1};
636 if(P[i][1] > (c->
ymax<<shift)) P[i][1]= (c->
ymax<<shift);
645 const int offset= ((block&1) + (block>>1)*stride)*8;
649 dxy = ((my4 & 3) << 2) | (mx4 & 3);
657 dxy = ((my4 & 1) << 1) | (mx4 & 1);
664 dmin_sum+= (mv_penalty[mx4-pred_x4] + mv_penalty[my4-pred_y4])*c->
mb_penalty_factor;
679 if(mx4 != mx || my4 != my) same=0;
688 s->
mb_x * 16 + s->
mb_y * 16 * stride,
699 dxy = ((my & 1) << 1) | (mx & 1);
742 int16_t (*mv_tables[2][2])[2],
uint8_t *field_select_tables[2],
int mx,
int my,
int user_field_select)
754 const int xy= s->
mb_x + s->
mb_y*mot_stride;
762 for(block=0; block<2; block++){
764 int best_dmin= INT_MAX;
767 for(field_select=0; field_select<2; field_select++){
768 int dmin, mx_i, my_i;
769 int16_t (*mv_table)[2]= mv_tables[
block][field_select];
771 if(user_field_select){
772 av_assert1(field_select==0 || field_select==1);
773 av_assert1(field_select_tables[block][xy]==0 || field_select_tables[block][xy]==1);
774 if(field_select_tables[block][xy] != field_select)
778 P_LEFT[0] = mv_table[xy - 1][0];
779 P_LEFT[1] = mv_table[xy - 1][1];
786 P_TOP[0] = mv_table[xy - mot_stride][0];
787 P_TOP[1] = mv_table[xy - mot_stride][1];
788 P_TOPRIGHT[0] = mv_table[xy - mot_stride + 1][0];
789 P_TOPRIGHT[1] = mv_table[xy - mot_stride + 1][1];
801 dmin =
epzs_motion_search2(s, &mx_i, &my_i, P, block, field_select+ref_index, mv_table, (1<<16)>>1);
803 dmin= c->
sub_motion_search(s, &mx_i, &my_i, dmin, block, field_select+ref_index, size, h);
805 mv_table[xy][0]= mx_i;
806 mv_table[xy][1]= my_i;
812 uint8_t *ref= c->
ref[field_select+ref_index][0] + (mx_i>>1) + (my_i>>1)*stride;
813 dxy = ((my_i & 1) << 1) | (mx_i & 1);
825 dmin += field_select !=
block;
827 if(dmin < best_dmin){
829 best_field= field_select;
833 int16_t (*mv_table)[2]= mv_tables[
block][best_field];
835 if(mv_table[xy][0] != mx) same=0;
836 if(mv_table[xy][1]&1) same=0;
837 if(mv_table[xy][1]*2 != my) same=0;
838 if(best_field != block) same=0;
841 field_select_tables[
block][xy]= best_field;
842 dmin_sum += best_dmin;
869 return (3*lambda)>>(FF_LAMBDA_SHIFT+1);
892 int sum, mx, my, dmin;
918 (((unsigned) sum * sum) >> 8) + 500;
985 if (vard*2 + 200*256 > varc)
987 if (varc*2 + 200*256 > vard || s->
qscale > 24){
999 && !c->
skip && varc>50<<8 && vard>10<<8){
1020 && !c->
skip && varc>50<<8 && vard>10<<8){
1040 intra_score= varc - 500;
1042 unsigned mean = (sum+128)>>8;
1045 for(i=0; i<16; i++){
1056 if(intra_score < dmin){
1126 int16_t (*mv_table)[2],
int ref_index,
int f_code)
1133 const int mot_xy = mb_y*mot_stride + mb_x;
1153 P_LEFT[0] = mv_table[mot_xy - 1][0];
1154 P_LEFT[1] = mv_table[mot_xy - 1][1];
1160 P_TOP[0] = mv_table[mot_xy - mot_stride ][0];
1161 P_TOP[1] = mv_table[mot_xy - mot_stride ][1];
1162 P_TOPRIGHT[0] = mv_table[mot_xy - mot_stride + 1][0];
1163 P_TOPRIGHT[1] = mv_table[mot_xy - mot_stride + 1][1];
1191 mv_table[mot_xy][0]= mx;
1192 mv_table[mot_xy][1]= my;
1198 int motion_fx,
int motion_fy,
1199 int motion_bx,
int motion_by,
1200 int pred_fx,
int pred_fy,
1201 int pred_bx,
int pred_by,
1221 dxy = ((motion_fy & 3) << 2) | (motion_fx & 3);
1222 src_x = motion_fx >> 2;
1223 src_y = motion_fy >> 2;
1225 ptr = ref_data[0] + (src_y * stride) + src_x;
1228 dxy = ((motion_by & 3) << 2) | (motion_bx & 3);
1229 src_x = motion_bx >> 2;
1230 src_y = motion_by >> 2;
1232 ptr = ref2_data[0] + (src_y * stride) + src_x;
1235 dxy = ((motion_fy & 1) << 1) | (motion_fx & 1);
1236 src_x = motion_fx >> 1;
1237 src_y = motion_fy >> 1;
1239 ptr = ref_data[0] + (src_y * stride) + src_x;
1242 dxy = ((motion_by & 1) << 1) | (motion_bx & 1);
1243 src_x = motion_bx >> 1;
1244 src_y = motion_by >> 1;
1246 ptr = ref2_data[0] + (src_y * stride) + src_x;
1250 fbmin = (mv_penalty_f[motion_fx-pred_fx] + mv_penalty_f[motion_fy-pred_fy])*c->
mb_penalty_factor
1251 +(mv_penalty_b[motion_bx-pred_bx] + mv_penalty_b[motion_by-pred_by])*c->
mb_penalty_factor
1266 const int xy = mb_y *mot_stride + mb_x;
1278 const int shift= 1+qpel;
1283 #define HASH(fx,fy,bx,by) ((fx)+17*(fy)+63*(bx)+117*(by))
1284 #define HASH8(fx,fy,bx,by) ((uint8_t)HASH(fx,fy,bx,by))
1285 int hashidx=
HASH(motion_fx,motion_fy, motion_bx, motion_by);
1288 map[hashidx&255] = 1;
1291 motion_bx, motion_by,
1298 static const uint8_t limittab[5]={0,8,32,64,80};
1300 static const int8_t vect[][4]={
1301 { 0, 0, 0, 1}, { 0, 0, 0,-1}, { 0, 0, 1, 0}, { 0, 0,-1, 0}, { 0, 1, 0, 0}, { 0,-1, 0, 0}, { 1, 0, 0, 0}, {-1, 0, 0, 0},
1303 { 0, 0, 1, 1}, { 0, 0,-1,-1}, { 0, 1, 1, 0}, { 0,-1,-1, 0}, { 1, 1, 0, 0}, {-1,-1, 0, 0}, { 1, 0, 0, 1}, {-1, 0, 0,-1},
1304 { 0, 1, 0, 1}, { 0,-1, 0,-1}, { 1, 0, 1, 0}, {-1, 0,-1, 0},
1305 { 0, 0,-1, 1}, { 0, 0, 1,-1}, { 0,-1, 1, 0}, { 0, 1,-1, 0}, {-1, 1, 0, 0}, { 1,-1, 0, 0}, { 1, 0, 0,-1}, {-1, 0, 0, 1},
1306 { 0,-1, 0, 1}, { 0, 1, 0,-1}, {-1, 0, 1, 0}, { 1, 0,-1, 0},
1308 { 0, 1, 1, 1}, { 0,-1,-1,-1}, { 1, 1, 1, 0}, {-1,-1,-1, 0}, { 1, 1, 0, 1}, {-1,-1, 0,-1}, { 1, 0, 1, 1}, {-1, 0,-1,-1},
1309 { 0,-1, 1, 1}, { 0, 1,-1,-1}, {-1, 1, 1, 0}, { 1,-1,-1, 0}, { 1, 1, 0,-1}, {-1,-1, 0, 1}, { 1, 0,-1, 1}, {-1, 0, 1,-1},
1310 { 0, 1,-1, 1}, { 0,-1, 1,-1}, { 1,-1, 1, 0}, {-1, 1,-1, 0}, {-1, 1, 0, 1}, { 1,-1, 0,-1}, { 1, 0, 1,-1}, {-1, 0,-1, 1},
1311 { 0, 1, 1,-1}, { 0,-1,-1, 1}, { 1, 1,-1, 0}, {-1,-1, 1, 0}, { 1,-1, 0, 1}, {-1, 1, 0,-1}, {-1, 0, 1, 1}, { 1, 0,-1,-1},
1313 { 1, 1, 1, 1}, {-1,-1,-1,-1},
1314 { 1, 1, 1,-1}, {-1,-1,-1, 1}, { 1, 1,-1, 1}, {-1,-1, 1,-1}, { 1,-1, 1, 1}, {-1, 1,-1,-1}, {-1, 1, 1, 1}, { 1,-1,-1,-1},
1315 { 1, 1,-1,-1}, {-1,-1, 1, 1}, { 1,-1,-1, 1}, {-1, 1, 1,-1}, { 1,-1, 1,-1}, {-1, 1,-1, 1},
1318 HASH8( 0, 0, 0, 1),
HASH8( 0, 0, 0,-1),
HASH8( 0, 0, 1, 0),
HASH8( 0, 0,-1, 0),
HASH8( 0, 1, 0, 0),
HASH8( 0,-1, 0, 0),
HASH8( 1, 0, 0, 0),
HASH8(-1, 0, 0, 0),
1320 HASH8( 0, 0, 1, 1),
HASH8( 0, 0,-1,-1),
HASH8( 0, 1, 1, 0),
HASH8( 0,-1,-1, 0),
HASH8( 1, 1, 0, 0),
HASH8(-1,-1, 0, 0),
HASH8( 1, 0, 0, 1),
HASH8(-1, 0, 0,-1),
1321 HASH8( 0, 1, 0, 1),
HASH8( 0,-1, 0,-1),
HASH8( 1, 0, 1, 0),
HASH8(-1, 0,-1, 0),
1322 HASH8( 0, 0,-1, 1),
HASH8( 0, 0, 1,-1),
HASH8( 0,-1, 1, 0),
HASH8( 0, 1,-1, 0),
HASH8(-1, 1, 0, 0),
HASH8( 1,-1, 0, 0),
HASH8( 1, 0, 0,-1),
HASH8(-1, 0, 0, 1),
1323 HASH8( 0,-1, 0, 1),
HASH8( 0, 1, 0,-1),
HASH8(-1, 0, 1, 0),
HASH8( 1, 0,-1, 0),
1325 HASH8( 0, 1, 1, 1),
HASH8( 0,-1,-1,-1),
HASH8( 1, 1, 1, 0),
HASH8(-1,-1,-1, 0),
HASH8( 1, 1, 0, 1),
HASH8(-1,-1, 0,-1),
HASH8( 1, 0, 1, 1),
HASH8(-1, 0,-1,-1),
1326 HASH8( 0,-1, 1, 1),
HASH8( 0, 1,-1,-1),
HASH8(-1, 1, 1, 0),
HASH8( 1,-1,-1, 0),
HASH8( 1, 1, 0,-1),
HASH8(-1,-1, 0, 1),
HASH8( 1, 0,-1, 1),
HASH8(-1, 0, 1,-1),
1327 HASH8( 0, 1,-1, 1),
HASH8( 0,-1, 1,-1),
HASH8( 1,-1, 1, 0),
HASH8(-1, 1,-1, 0),
HASH8(-1, 1, 0, 1),
HASH8( 1,-1, 0,-1),
HASH8( 1, 0, 1,-1),
HASH8(-1, 0,-1, 1),
1328 HASH8( 0, 1, 1,-1),
HASH8( 0,-1,-1, 1),
HASH8( 1, 1,-1, 0),
HASH8(-1,-1, 1, 0),
HASH8( 1,-1, 0, 1),
HASH8(-1, 1, 0,-1),
HASH8(-1, 0, 1, 1),
HASH8( 1, 0,-1,-1),
1331 HASH8( 1, 1, 1,-1),
HASH8(-1,-1,-1, 1),
HASH8( 1, 1,-1, 1),
HASH8(-1,-1, 1,-1),
HASH8( 1,-1, 1, 1),
HASH8(-1, 1,-1,-1),
HASH8(-1, 1, 1, 1),
HASH8( 1,-1,-1,-1),
1332 HASH8( 1, 1,-1,-1),
HASH8(-1,-1, 1, 1),
HASH8( 1,-1,-1, 1),
HASH8(-1, 1, 1,-1),
HASH8( 1,-1, 1,-1),
HASH8(-1, 1,-1, 1),
1335 #define CHECK_BIDIR(fx,fy,bx,by)\
1336 if( !map[(hashidx+HASH(fx,fy,bx,by))&255]\
1337 &&(fx<=0 || motion_fx+fx<=xmax) && (fy<=0 || motion_fy+fy<=ymax) && (bx<=0 || motion_bx+bx<=xmax) && (by<=0 || motion_by+by<=ymax)\
1338 &&(fx>=0 || motion_fx+fx>=xmin) && (fy>=0 || motion_fy+fy>=ymin) && (bx>=0 || motion_bx+bx>=xmin) && (by>=0 || motion_by+by>=ymin)){\
1340 map[(hashidx+HASH(fx,fy,bx,by))&255] = 1;\
1341 score= check_bidir_mv(s, motion_fx+fx, motion_fy+fy, motion_bx+bx, motion_by+by, pred_fx, pred_fy, pred_bx, pred_by, 0, 16);\
1343 hashidx += HASH(fx,fy,bx,by);\
1352 #define CHECK_BIDIR2(a,b,c,d)\
1353 CHECK_BIDIR(a,b,c,d)\
1354 CHECK_BIDIR(-(a),-(b),-(c),-(d))
1366 for(i=8; i<limit; i++){
1367 int fx= motion_fx+vect[i][0];
1368 int fy= motion_fy+vect[i][1];
1369 int bx= motion_bx+vect[i][2];
1370 int by= motion_by+vect[i][3];
1372 int a= (xmax -
FFMAX(fx,bx))|(
FFMIN(fx,bx) - xmin);
1373 int b= (ymax -
FFMAX(fy,by))|(
FFMIN(fy,by) - ymin);
1375 map[(hashidx+hash[i])&255] = 1;
1377 if(!map[(hashidx+hash[i])&255]){
1379 map[(hashidx+hash[i])&255] = 1;
1380 score=
check_bidir_mv(s, fx, fy, bx, by, pred_fx, pred_fy, pred_bx, pred_by, 0, 16);
1393 borderdist=
FFMIN(a,b);
1414 const int mot_xy = mb_y*mot_stride + mb_x;
1417 const int time_pp= s->
pp_time;
1418 const int time_pb= s->
pb_time;
1419 int mx, my, xmin, xmax, ymin, ymax;
1423 ymin= xmin=(-32)>>shift;
1424 ymax= xmax= 31>>
shift;
1448 xmin=
FFMAX(xmin, - 16 - min);
1455 ymin=
FFMAX(ymin, - 16 - min);
1460 av_assert2(xmax <= 15 && ymax <= 15 && xmin >= -16 && ymin >= -16);
1462 if(xmax < 0 || xmin >0 || ymax < 0 || ymin > 0){
1466 return 256*256*256*64;
1478 P_LEFT[0] = av_clip(mv_table[mot_xy - 1][0], xmin<<shift, xmax<<shift);
1479 P_LEFT[1] = av_clip(mv_table[mot_xy - 1][1], ymin<<shift, ymax<<shift);
1483 P_TOP[0] = av_clip(mv_table[mot_xy - mot_stride ][0], xmin<<shift, xmax<<shift);
1484 P_TOP[1] = av_clip(mv_table[mot_xy - mot_stride ][1], ymin<<shift, ymax<<shift);
1485 P_TOPRIGHT[0] = av_clip(mv_table[mot_xy - mot_stride + 1 ][0], xmin<<shift, xmax<<shift);
1486 P_TOPRIGHT[1] = av_clip(mv_table[mot_xy - mot_stride + 1 ][1], ymin<<shift, ymax<<shift);
1503 mv_table[mot_xy][0]= mx;
1504 mv_table[mot_xy][1]= my;
1516 int fmin, bmin, dmin, fbmin, bimin, fimin;
1518 const int xy = mb_y*s->
mb_stride + mb_x;
1529 score= ((unsigned)(score*score + 128*256))>>16;
1553 av_dlog(s,
"%d %d %d %d\n", dmin, fmin, bmin, fbmin);
1567 fimin= bimin= INT_MAX;
1594 score= ((unsigned)(score*score + 128*256))>>16;
1605 if(fimin < INT_MAX && bimin < INT_MAX){
1626 int best_score=-10000000;
1629 range=
FFMIN(range, 16);
1631 range=
FFMIN(range, 256);
1633 for(i=0; i<8; i++) score[i]= s->
mb_num*(8-i);
1640 int mx= mv_table[xy][0];
1641 int my= mv_table[xy][1];
1646 if(mx >= range || mx < -range ||
1647 my >= range || my < -range)
1650 for(j=0; j<fcode && j<8; j++){
1660 if(score[i] > best_score){
1661 best_score= score[i];
1675 const int f_code= s->
f_code;
1681 av_assert0(range <= 16 || !s->msmpeg4_version);
1698 for(block=0; block<4; block++){
1699 int off= (block& 1) + (block>>1)*
wrap;
1703 if( mx >=range || mx <-range
1704 || my >=range || my <-range){
1705 s->
mb_type[i] &= ~CANDIDATE_MB_TYPE_INTER4V;
1723 int16_t (*mv_table)[2],
int f_code,
int type,
int truncate)
1726 int y, h_range, v_range;
1734 v_range= field_select_table ? range>>1 : range;
1742 if (!field_select_table || field_select_table[xy] == field_select) {
1743 if( mv_table[xy][0] >=h_range || mv_table[xy][0] <-h_range
1744 || mv_table[xy][1] >=v_range || mv_table[xy][1] <-v_range){
1747 if (mv_table[xy][0] > h_range-1) mv_table[xy][0]= h_range-1;
1748 else if(mv_table[xy][0] < -h_range ) mv_table[xy][0]= -h_range;
1749 if (mv_table[xy][1] > v_range-1) mv_table[xy][1]= v_range-1;
1750 else if(mv_table[xy][1] < -v_range ) mv_table[xy][1]= -v_range;