50 uint32_t v32 = v * 0x01010101;
59 uint64_t v64 = v * 0x0101010101010101ULL;
65 uint32_t v32 = v * 0x01010101;
80 0x0, 0x8, 0x0, 0x8, 0xc, 0x8, 0xc, 0xe, 0xc, 0xe, 0xf, 0xe, 0xf
83 0x0, 0x0, 0x8, 0x8, 0x8, 0xc, 0xc, 0xc, 0xe, 0xe, 0xe, 0xf, 0xf
85 static const uint8_t max_tx_for_bl_bp[
N_BS_SIZES] = {
91 int row =
td->row, col =
td->col, row7 =
td->row7;
92 enum TxfmMode max_tx = max_tx_for_bl_bp[
b->bs];
95 int have_a = row > 0, have_l = col >
td->tile_col_start;
98 if (!
s->s.h.segmentation.enabled) {
100 }
else if (
s->s.h.keyframe ||
s->s.h.intraonly) {
101 b->seg_id = !
s->s.h.segmentation.update_map ? 0 :
103 }
else if (!
s->s.h.segmentation.update_map ||
104 (
s->s.h.segmentation.temporal &&
106 s->s.h.segmentation.pred_prob[
s->above_segpred_ctx[col] +
107 td->left_segpred_ctx[row7]]))) {
114 for (y = 0; y < h4; y++) {
115 int idx_base = (y + row) * 8 *
s->sb_cols + col;
116 for (x = 0; x < w4; x++)
125 memset(&
s->above_segpred_ctx[col], 1, w4);
126 memset(&
td->left_segpred_ctx[row7], 1, h4);
129 s->s.h.segmentation.prob);
131 memset(&
s->above_segpred_ctx[col], 0, w4);
132 memset(&
td->left_segpred_ctx[row7], 0, h4);
134 if (
s->s.h.segmentation.enabled &&
135 (
s->s.h.segmentation.update_map ||
s->s.h.keyframe ||
s->s.h.intraonly)) {
137 bw4, bh4, 8 *
s->sb_cols,
b->seg_id);
140 b->skip =
s->s.h.segmentation.enabled &&
141 s->s.h.segmentation.feat[
b->seg_id].skip_enabled;
143 int c =
td->left_skip_ctx[row7] +
s->above_skip_ctx[col];
145 td->counts.skip[
c][
b->skip]++;
148 if (
s->s.h.keyframe ||
s->s.h.intraonly) {
150 }
else if (
s->s.h.segmentation.enabled &&
s->s.h.segmentation.feat[
b->seg_id].ref_enabled) {
151 b->intra = !
s->s.h.segmentation.feat[
b->seg_id].ref_val;
155 if (have_a && have_l) {
156 c =
s->above_intra_ctx[col] +
td->left_intra_ctx[row7];
159 c = have_a ? 2 *
s->above_intra_ctx[col] :
160 have_l ? 2 *
td->left_intra_ctx[row7] : 0;
163 td->counts.intra[
c][
bit]++;
171 c = (
s->above_skip_ctx[col] ? max_tx :
172 s->above_txfm_ctx[col]) +
173 (
td->left_skip_ctx[row7] ? max_tx :
174 td->left_txfm_ctx[row7]) > max_tx;
176 c =
s->above_skip_ctx[col] ? 1 :
177 (
s->above_txfm_ctx[col] * 2 > max_tx);
180 c =
td->left_skip_ctx[row7] ? 1 :
181 (
td->left_txfm_ctx[row7] * 2 > max_tx);
193 td->counts.tx32p[
c][
b->tx]++;
199 td->counts.tx16p[
c][
b->tx]++;
203 td->counts.tx8p[
c][
b->tx]++;
210 b->tx =
FFMIN(max_tx,
s->s.h.txfmmode);
213 if (
s->s.h.keyframe ||
s->s.h.intraonly) {
214 uint8_t *
a = &
s->above_mode_ctx[col * 2];
215 uint8_t *l = &
td->left_mode_ctx[(row7) << 1];
233 b->mode[1] =
b->mode[0];
247 b->mode[3] =
b->mode[2];
250 b->mode[2] =
b->mode[0];
253 b->mode[3] =
b->mode[1];
260 b->mode[1] =
b->mode[0];
267 }
else if (
b->intra) {
271 s->prob.p.y_mode[0]);
272 td->counts.y_mode[0][
b->mode[0]]++;
275 s->prob.p.y_mode[0]);
276 td->counts.y_mode[0][
b->mode[1]]++;
278 b->mode[1] =
b->mode[0];
282 s->prob.p.y_mode[0]);
283 td->counts.y_mode[0][
b->mode[2]]++;
286 s->prob.p.y_mode[0]);
287 td->counts.y_mode[0][
b->mode[3]]++;
289 b->mode[3] =
b->mode[2];
292 b->mode[2] =
b->mode[0];
293 b->mode[3] =
b->mode[1];
296 static const uint8_t size_group[10] = {
297 3, 3, 3, 3, 2, 2, 2, 1, 1, 1
299 int sz = size_group[
b->bs];
302 s->prob.p.y_mode[sz]);
305 b->mode[3] =
b->mode[0];
306 td->counts.y_mode[sz][
b->mode[3]]++;
309 s->prob.p.uv_mode[
b->mode[3]]);
310 td->counts.uv_mode[
b->mode[3]][
b->uvmode]++;
312 static const uint8_t inter_mode_ctx_lut[14][14] = {
313 { 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 5, 5, 5, 5 },
314 { 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 5, 5, 5, 5 },
315 { 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 5, 5, 5, 5 },
316 { 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 5, 5, 5, 5 },
317 { 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 5, 5, 5, 5 },
318 { 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 5, 5, 5, 5 },
319 { 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 5, 5, 5, 5 },
320 { 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 5, 5, 5, 5 },
321 { 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 5, 5, 5, 5 },
322 { 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 5, 5, 5, 5 },
323 { 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 2, 2, 1, 3 },
324 { 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 2, 2, 1, 3 },
325 { 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 1, 1, 0, 3 },
326 { 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 3, 3, 3, 4 },
329 if (
s->s.h.segmentation.enabled &&
s->s.h.segmentation.feat[
b->seg_id].ref_enabled) {
330 av_assert2(
s->s.h.segmentation.feat[
b->seg_id].ref_val != 0);
332 b->ref[0] =
s->s.h.segmentation.feat[
b->seg_id].ref_val - 1;
343 if (
s->above_comp_ctx[col] &&
td->left_comp_ctx[row7]) {
345 }
else if (
s->above_comp_ctx[col]) {
346 c = 2 + (
td->left_intra_ctx[row7] ||
347 td->left_ref_ctx[row7] ==
s->s.h.fixcompref);
348 }
else if (
td->left_comp_ctx[row7]) {
349 c = 2 + (
s->above_intra_ctx[col] ||
350 s->above_ref_ctx[col] ==
s->s.h.fixcompref);
352 c = (!
s->above_intra_ctx[col] &&
353 s->above_ref_ctx[col] ==
s->s.h.fixcompref) ^
354 (!
td->left_intra_ctx[row7] &&
355 td->left_ref_ctx[row & 7] ==
s->s.h.fixcompref);
358 c =
s->above_comp_ctx[col] ? 3 :
359 (!
s->above_intra_ctx[col] &&
s->above_ref_ctx[col] ==
s->s.h.fixcompref);
362 c =
td->left_comp_ctx[row7] ? 3 :
363 (!
td->left_intra_ctx[row7] &&
td->left_ref_ctx[row7] ==
s->s.h.fixcompref);
368 td->counts.comp[
c][
b->comp]++;
375 int fix_idx =
s->s.h.signbias[
s->s.h.fixcompref], var_idx = !fix_idx,
c,
bit;
377 b->ref[fix_idx] =
s->s.h.fixcompref;
381 if (
s->above_intra_ctx[col]) {
382 if (
td->left_intra_ctx[row7]) {
385 c = 1 + 2 * (
td->left_ref_ctx[row7] !=
s->s.h.varcompref[1]);
387 }
else if (
td->left_intra_ctx[row7]) {
388 c = 1 + 2 * (
s->above_ref_ctx[col] !=
s->s.h.varcompref[1]);
390 int refl =
td->left_ref_ctx[row7], refa =
s->above_ref_ctx[col];
392 if (refl == refa && refa ==
s->s.h.varcompref[1]) {
394 }
else if (!
td->left_comp_ctx[row7] && !
s->above_comp_ctx[col]) {
395 if ((refa ==
s->s.h.fixcompref && refl ==
s->s.h.varcompref[0]) ||
396 (refl ==
s->s.h.fixcompref && refa ==
s->s.h.varcompref[0])) {
399 c = (refa == refl) ? 3 : 1;
401 }
else if (!
td->left_comp_ctx[row7]) {
402 if (refa ==
s->s.h.varcompref[1] && refl !=
s->s.h.varcompref[1]) {
405 c = (refl ==
s->s.h.varcompref[1] &&
406 refa !=
s->s.h.varcompref[1]) ? 2 : 4;
408 }
else if (!
s->above_comp_ctx[col]) {
409 if (refl ==
s->s.h.varcompref[1] && refa !=
s->s.h.varcompref[1]) {
412 c = (refa ==
s->s.h.varcompref[1] &&
413 refl !=
s->s.h.varcompref[1]) ? 2 : 4;
416 c = (refl == refa) ? 4 : 2;
420 if (
s->above_intra_ctx[col]) {
422 }
else if (
s->above_comp_ctx[col]) {
423 c = 4 * (
s->above_ref_ctx[col] !=
s->s.h.varcompref[1]);
425 c = 3 * (
s->above_ref_ctx[col] !=
s->s.h.varcompref[1]);
429 if (
td->left_intra_ctx[row7]) {
431 }
else if (
td->left_comp_ctx[row7]) {
432 c = 4 * (
td->left_ref_ctx[row7] !=
s->s.h.varcompref[1]);
434 c = 3 * (
td->left_ref_ctx[row7] !=
s->s.h.varcompref[1]);
440 b->ref[var_idx] =
s->s.h.varcompref[
bit];
441 td->counts.comp_ref[
c][
bit]++;
445 if (have_a && !
s->above_intra_ctx[col]) {
446 if (have_l && !
td->left_intra_ctx[row7]) {
447 if (
td->left_comp_ctx[row7]) {
448 if (
s->above_comp_ctx[col]) {
449 c = 1 + (!
s->s.h.fixcompref || !
td->left_ref_ctx[row7] ||
450 !
s->above_ref_ctx[col]);
452 c = (3 * !
s->above_ref_ctx[col]) +
453 (!
s->s.h.fixcompref || !
td->left_ref_ctx[row7]);
455 }
else if (
s->above_comp_ctx[col]) {
456 c = (3 * !
td->left_ref_ctx[row7]) +
457 (!
s->s.h.fixcompref || !
s->above_ref_ctx[col]);
459 c = 2 * !
td->left_ref_ctx[row7] + 2 * !
s->above_ref_ctx[col];
461 }
else if (
s->above_intra_ctx[col]) {
463 }
else if (
s->above_comp_ctx[col]) {
464 c = 1 + (!
s->s.h.fixcompref || !
s->above_ref_ctx[col]);
466 c = 4 * (!
s->above_ref_ctx[col]);
468 }
else if (have_l && !
td->left_intra_ctx[row7]) {
469 if (
td->left_intra_ctx[row7]) {
471 }
else if (
td->left_comp_ctx[row7]) {
472 c = 1 + (!
s->s.h.fixcompref || !
td->left_ref_ctx[row7]);
474 c = 4 * (!
td->left_ref_ctx[row7]);
480 td->counts.single_ref[
c][0][
bit]++;
487 if (
td->left_intra_ctx[row7]) {
488 if (
s->above_intra_ctx[col]) {
490 }
else if (
s->above_comp_ctx[col]) {
491 c = 1 + 2 * (
s->s.h.fixcompref == 1 ||
492 s->above_ref_ctx[col] == 1);
493 }
else if (!
s->above_ref_ctx[col]) {
496 c = 4 * (
s->above_ref_ctx[col] == 1);
498 }
else if (
s->above_intra_ctx[col]) {
499 if (
td->left_intra_ctx[row7]) {
501 }
else if (
td->left_comp_ctx[row7]) {
502 c = 1 + 2 * (
s->s.h.fixcompref == 1 ||
503 td->left_ref_ctx[row7] == 1);
504 }
else if (!
td->left_ref_ctx[row7]) {
507 c = 4 * (
td->left_ref_ctx[row7] == 1);
509 }
else if (
s->above_comp_ctx[col]) {
510 if (
td->left_comp_ctx[row7]) {
511 if (
td->left_ref_ctx[row7] ==
s->above_ref_ctx[col]) {
512 c = 3 * (
s->s.h.fixcompref == 1 ||
513 td->left_ref_ctx[row7] == 1);
517 }
else if (!
td->left_ref_ctx[row7]) {
518 c = 1 + 2 * (
s->s.h.fixcompref == 1 ||
519 s->above_ref_ctx[col] == 1);
521 c = 3 * (
td->left_ref_ctx[row7] == 1) +
522 (
s->s.h.fixcompref == 1 ||
s->above_ref_ctx[col] == 1);
524 }
else if (
td->left_comp_ctx[row7]) {
525 if (!
s->above_ref_ctx[col]) {
526 c = 1 + 2 * (
s->s.h.fixcompref == 1 ||
527 td->left_ref_ctx[row7] == 1);
529 c = 3 * (
s->above_ref_ctx[col] == 1) +
530 (
s->s.h.fixcompref == 1 ||
td->left_ref_ctx[row7] == 1);
532 }
else if (!
s->above_ref_ctx[col]) {
533 if (!
td->left_ref_ctx[row7]) {
536 c = 4 * (
td->left_ref_ctx[row7] == 1);
538 }
else if (!
td->left_ref_ctx[row7]) {
539 c = 4 * (
s->above_ref_ctx[col] == 1);
541 c = 2 * (
td->left_ref_ctx[row7] == 1) +
542 2 * (
s->above_ref_ctx[col] == 1);
545 if (
s->above_intra_ctx[col] ||
546 (!
s->above_comp_ctx[col] && !
s->above_ref_ctx[col])) {
548 }
else if (
s->above_comp_ctx[col]) {
549 c = 3 * (
s->s.h.fixcompref == 1 ||
s->above_ref_ctx[col] == 1);
551 c = 4 * (
s->above_ref_ctx[col] == 1);
555 if (
td->left_intra_ctx[row7] ||
556 (!
td->left_comp_ctx[row7] && !
td->left_ref_ctx[row7])) {
558 }
else if (
td->left_comp_ctx[row7]) {
559 c = 3 * (
s->s.h.fixcompref == 1 ||
td->left_ref_ctx[row7] == 1);
561 c = 4 * (
td->left_ref_ctx[row7] == 1);
567 td->counts.single_ref[
c][1][
bit]++;
574 if (
s->s.h.segmentation.enabled &&
s->s.h.segmentation.feat[
b->seg_id].skip_enabled) {
580 static const uint8_t off[10] = {
581 3, 0, 0, 1, 0, 0, 0, 0, 0, 0
586 int c = inter_mode_ctx_lut[
s->above_mode_ctx[col + off[
b->bs]]]
587 [
td->left_mode_ctx[row7 + off[
b->bs]]];
590 s->prob.p.mv_mode[
c]);
593 b->mode[3] =
b->mode[0];
594 td->counts.mv_mode[
c][
b->mode[0] - 10]++;
601 if (have_a &&
s->above_mode_ctx[col] >=
NEARESTMV) {
602 if (have_l &&
td->left_mode_ctx[row7] >=
NEARESTMV) {
603 c =
s->above_filter_ctx[col] ==
td->left_filter_ctx[row7] ?
604 td->left_filter_ctx[row7] : 3;
606 c =
s->above_filter_ctx[col];
608 }
else if (have_l &&
td->left_mode_ctx[row7] >=
NEARESTMV) {
609 c =
td->left_filter_ctx[row7];
615 s->prob.p.filter[
c]);
616 td->counts.filter[
c][filter_id]++;
619 b->filter =
s->s.h.filtermode;
623 int c = inter_mode_ctx_lut[
s->above_mode_ctx[col]][
td->left_mode_ctx[row7]];
626 s->prob.p.mv_mode[
c]);
627 td->counts.mv_mode[
c][
b->mode[0] - 10]++;
632 s->prob.p.mv_mode[
c]);
633 td->counts.mv_mode[
c][
b->mode[1] - 10]++;
636 b->mode[1] =
b->mode[0];
643 s->prob.p.mv_mode[
c]);
644 td->counts.mv_mode[
c][
b->mode[2] - 10]++;
649 s->prob.p.mv_mode[
c]);
650 td->counts.mv_mode[
c][
b->mode[3] - 10]++;
653 b->mode[3] =
b->mode[2];
658 b->mode[2] =
b->mode[0];
661 b->mode[3] =
b->mode[1];
675 vref =
b->ref[
b->comp ?
s->s.h.signbias[
s->s.h.varcompref[0]] : 0];
679 #define SPLAT_CTX(var, val, n) \
681 case 1: var = val; break; \
682 case 2: AV_WN16A(&var, val * 0x0101); break; \
683 case 4: AV_WN32A(&var, val * 0x01010101); break; \
684 case 8: AV_WN64A(&var, val * 0x0101010101010101ULL); break; \
686 uint64_t v64 = val * 0x0101010101010101ULL; \
687 AV_WN64A( &var, v64); \
688 AV_WN64A(&((uint8_t *) &var)[8], v64); \
693 #define SPLAT_CTX(var, val, n) \
695 case 1: var = val; break; \
696 case 2: AV_WN16A(&var, val * 0x0101); break; \
697 case 4: AV_WN32A(&var, val * 0x01010101); break; \
699 uint32_t v32 = val * 0x01010101; \
700 AV_WN32A( &var, v32); \
701 AV_WN32A(&((uint8_t *) &var)[4], v32); \
705 uint32_t v32 = val * 0x01010101; \
706 AV_WN32A( &var, v32); \
707 AV_WN32A(&((uint8_t *) &var)[4], v32); \
708 AV_WN32A(&((uint8_t *) &var)[8], v32); \
709 AV_WN32A(&((uint8_t *) &var)[12], v32); \
716 #define SET_CTXS(perf, dir, off, n) \
718 SPLAT_CTX(perf->dir##_skip_ctx[off], b->skip, n); \
719 SPLAT_CTX(perf->dir##_txfm_ctx[off], b->tx, n); \
720 SPLAT_CTX(perf->dir##_partition_ctx[off], dir##_ctx[b->bs], n); \
721 if (!s->s.h.keyframe && !s->s.h.intraonly) { \
722 SPLAT_CTX(perf->dir##_intra_ctx[off], b->intra, n); \
723 SPLAT_CTX(perf->dir##_comp_ctx[off], b->comp, n); \
724 SPLAT_CTX(perf->dir##_mode_ctx[off], b->mode[3], n); \
726 SPLAT_CTX(perf->dir##_ref_ctx[off], vref, n); \
727 if (s->s.h.filtermode == FILTER_SWITCHABLE) { \
728 SPLAT_CTX(perf->dir##_filter_ctx[off], filter_id, n); \
733 case 1:
SET_CTXS(
s, above, col, 1);
break;
734 case 2:
SET_CTXS(
s, above, col, 2);
break;
735 case 4:
SET_CTXS(
s, above, col, 4);
break;
736 case 8:
SET_CTXS(
s, above, col, 8);
break;
747 if (!
s->s.h.keyframe && !
s->s.h.intraonly) {
751 AV_COPY32(&
td->left_mv_ctx[row7 * 2 + 0][0], &
b->mv[1][0]);
752 AV_COPY32(&
td->left_mv_ctx[row7 * 2 + 0][1], &
b->mv[1][1]);
753 AV_WN32A(&
td->left_mv_ctx[row7 * 2 + 1][0], mv0);
754 AV_WN32A(&
td->left_mv_ctx[row7 * 2 + 1][1], mv1);
755 AV_COPY32(&
s->above_mv_ctx[col * 2 + 0][0], &
b->mv[2][0]);
756 AV_COPY32(&
s->above_mv_ctx[col * 2 + 0][1], &
b->mv[2][1]);
757 AV_WN32A(&
s->above_mv_ctx[col * 2 + 1][0], mv0);
758 AV_WN32A(&
s->above_mv_ctx[col * 2 + 1][1], mv1);
762 for (n = 0; n < w4 * 2; n++) {
763 AV_WN32A(&
s->above_mv_ctx[col * 2 + n][0], mv0);
764 AV_WN32A(&
s->above_mv_ctx[col * 2 + n][1], mv1);
766 for (n = 0; n < h4 * 2; n++) {
767 AV_WN32A(&
td->left_mv_ctx[row7 * 2 + n][0], mv0);
768 AV_WN32A(&
td->left_mv_ctx[row7 * 2 + n][1], mv1);
774 for (y = 0; y < h4; y++) {
775 int x, o = (row + y) *
s->sb_cols * 8 + col;
779 for (x = 0; x < w4; x++) {
783 }
else if (
b->comp) {
784 for (x = 0; x < w4; x++) {
785 mv[x].ref[0] =
b->ref[0];
786 mv[x].ref[1] =
b->ref[1];
791 for (x = 0; x < w4; x++) {
792 mv[x].ref[0] =
b->ref[0];
803 int is_tx32x32,
int is8bitsperpixel,
int bpp,
unsigned (*cnt)[6][3],
804 unsigned (*eob)[6][2], uint8_t (*p)[6][11],
805 int nnz,
const int16_t *scan,
const int16_t (*nb)[2],
806 const int16_t *band_counts, int16_t *qmul)
808 int i = 0, band = 0, band_left = band_counts[band];
809 const uint8_t *tp = p[0][nnz];
816 eob[band][nnz][
val]++;
824 band_left = band_counts[++band];
826 nnz = (1 + cache[nb[
i][0]] + cache[nb[
i][1]]) >> 1;
876 if (!is8bitsperpixel) {
901 #define STORE_COEF(c, i, v) do { \
902 if (is8bitsperpixel) { \
905 AV_WN32A(&c[i * 2], v); \
909 band_left = band_counts[++band];
914 nnz = (1 + cache[nb[
i][0]] + cache[nb[
i][1]]) >> 1;
916 }
while (++
i < n_coeffs);
922 unsigned (*cnt)[6][3],
unsigned (*eob)[6][2],
923 uint8_t (*p)[6][11],
int nnz,
const int16_t *scan,
924 const int16_t (*nb)[2],
const int16_t *band_counts,
928 nnz, scan, nb, band_counts, qmul);
932 unsigned (*cnt)[6][3],
unsigned (*eob)[6][2],
933 uint8_t (*p)[6][11],
int nnz,
const int16_t *scan,
934 const int16_t (*nb)[2],
const int16_t *band_counts,
938 nnz, scan, nb, band_counts, qmul);
942 unsigned (*cnt)[6][3],
unsigned (*eob)[6][2],
943 uint8_t (*p)[6][11],
int nnz,
const int16_t *scan,
944 const int16_t (*nb)[2],
const int16_t *band_counts,
948 nnz, scan, nb, band_counts, qmul);
952 unsigned (*cnt)[6][3],
unsigned (*eob)[6][2],
953 uint8_t (*p)[6][11],
int nnz,
const int16_t *scan,
954 const int16_t (*nb)[2],
const int16_t *band_counts,
958 nnz, scan, nb, band_counts, qmul);
965 int row =
td->row, col =
td->col;
966 uint8_t (*p)[6][11] =
s->prob.coef[
b->tx][0 ][!
b->intra];
967 unsigned (*
c)[6][3] =
td->counts.coef[
b->tx][0 ][!
b->intra];
968 unsigned (*e)[6][2] =
td->counts.eob[
b->tx][0 ][!
b->intra];
970 int end_x =
FFMIN(2 * (
s->cols - col), w4);
971 int end_y =
FFMIN(2 * (
s->rows - row), h4);
972 int n, pl, x, y,
ret;
973 int16_t (*qmul)[2] =
s->s.h.segmentation.feat[
b->seg_id].qmul;
974 int tx = 4 *
s->s.h.lossless +
b->tx;
979 uint8_t *
a = &
s->above_y_nnz_ctx[col * 2];
980 uint8_t *l = &
td->left_y_nnz_ctx[(row & 7) << 1];
981 static const int16_t band_counts[4][8] = {
982 { 1, 2, 3, 4, 3, 16 - 13 },
983 { 1, 2, 3, 4, 11, 64 - 21 },
984 { 1, 2, 3, 4, 11, 256 - 21 },
985 { 1, 2, 3, 4, 11, 1024 - 21 },
987 const int16_t *y_band_counts = band_counts[
b->tx];
988 const int16_t *uv_band_counts = band_counts[
b->uvtx];
989 int bytesperpixel = is8bitsperpixel ? 1 : 2;
992 #define MERGE(la, end, step, rd) \
993 for (n = 0; n < end; n += step) \
995 #define MERGE_CTX(step, rd) \
997 MERGE(l, end_y, step, rd); \
998 MERGE(a, end_x, step, rd); \
1001 #define DECODE_Y_COEF_LOOP(step, mode_index, v) \
1002 for (n = 0, y = 0; y < end_y; y += step) { \
1003 for (x = 0; x < end_x; x += step, n += step * step) { \
1004 enum TxfmType txtp = ff_vp9_intra_txfm_type[b->mode[mode_index]]; \
1005 ret = (is8bitsperpixel ? decode_coeffs_b##v##_8bpp : decode_coeffs_b##v##_16bpp) \
1006 (td, td->block + 16 * n * bytesperpixel, 16 * step * step, \
1007 c, e, p, a[x] + l[y], yscans[txtp], \
1008 ynbs[txtp], y_band_counts, qmul[0]); \
1009 a[x] = l[y] = !!ret; \
1010 total_coeff |= !!ret; \
1012 AV_WN16A(&td->eob[n], ret); \
1019 #define SPLAT(la, end, step, cond) \
1021 for (n = 1; n < end; n += step) \
1022 la[n] = la[n - 1]; \
1023 } else if (step == 4) { \
1025 for (n = 0; n < end; n += step) \
1026 AV_WN32A(&la[n], la[n] * 0x01010101); \
1028 for (n = 0; n < end; n += step) \
1029 memset(&la[n + 1], la[n], FFMIN(end - n - 1, 3)); \
1033 if (HAVE_FAST_64BIT) { \
1034 for (n = 0; n < end; n += step) \
1035 AV_WN64A(&la[n], la[n] * 0x0101010101010101ULL); \
1037 for (n = 0; n < end; n += step) { \
1038 uint32_t v32 = la[n] * 0x01010101; \
1039 AV_WN32A(&la[n], v32); \
1040 AV_WN32A(&la[n + 4], v32); \
1044 for (n = 0; n < end; n += step) \
1045 memset(&la[n + 1], la[n], FFMIN(end - n - 1, 7)); \
1048 #define SPLAT_CTX(step) \
1050 SPLAT(a, end_x, step, end_x == w4); \
1051 SPLAT(l, end_y, step, end_y == h4); \
1076 #define DECODE_UV_COEF_LOOP(step, v) \
1077 for (n = 0, y = 0; y < end_y; y += step) { \
1078 for (x = 0; x < end_x; x += step, n += step * step) { \
1079 ret = (is8bitsperpixel ? decode_coeffs_b##v##_8bpp : decode_coeffs_b##v##_16bpp) \
1080 (td, td->uvblock[pl] + 16 * n * bytesperpixel, \
1081 16 * step * step, c, e, p, a[x] + l[y], \
1082 uvscan, uvnb, uv_band_counts, qmul[1]); \
1083 a[x] = l[y] = !!ret; \
1084 total_coeff |= !!ret; \
1086 AV_WN16A(&td->uveob[pl][n], ret); \
1088 td->uveob[pl][n] = ret; \
1093 p =
s->prob.coef[
b->uvtx][1 ][!
b->intra];
1094 c =
td->counts.coef[
b->uvtx][1 ][!
b->intra];
1095 e =
td->counts.eob[
b->uvtx][1 ][!
b->intra];
1100 for (pl = 0; pl < 2; pl++) {
1101 a = &
s->above_uv_nnz_ctx[pl][col << !
s->ss_h];
1102 l = &
td->left_uv_nnz_ctx[pl][(row & 7) << !
s->ss_v];
1139 int row_and_7,
int col_and_7,
1140 int w,
int h,
int col_end,
int row_end,
1143 static const unsigned wide_filter_col_mask[2] = { 0x11, 0x01 };
1144 static const unsigned wide_filter_row_mask[2] = { 0x03, 0x07 };
1156 if (tx ==
TX_4X4 && (ss_v | ss_h)) {
1171 if (tx ==
TX_4X4 && !skip_inter) {
1172 int t = 1 << col_and_7, m_col = (t <<
w) - t, y;
1174 int m_row_8 = m_col & wide_filter_col_mask[ss_h], m_row_4 = m_col - m_row_8;
1176 for (y = row_and_7; y <
h + row_and_7; y++) {
1177 int col_mask_id = 2 - !(y & wide_filter_row_mask[ss_v]);
1179 mask[0][y][1] |= m_row_8;
1180 mask[0][y][2] |= m_row_4;
1191 if ((ss_h & ss_v) && (col_end & 1) && (y & 1)) {
1192 mask[1][y][col_mask_id] |= (t << (
w - 1)) - t;
1194 mask[1][y][col_mask_id] |= m_col;
1197 mask[0][y][3] |= m_col;
1199 if (ss_h && (col_end & 1))
1200 mask[1][y][3] |= (t << (
w - 1)) - t;
1202 mask[1][y][3] |= m_col;
1206 int y, t = 1 << col_and_7, m_col = (t <<
w) - t;
1209 int mask_id = (tx ==
TX_8X8);
1210 int l2 = tx + ss_h - 1, step1d;
1211 static const unsigned masks[4] = { 0xff, 0x55, 0x11, 0x01 };
1212 int m_row = m_col & masks[l2];
1216 if (ss_h && tx >
TX_8X8 && (
w ^ (
w - 1)) == 1) {
1217 int m_row_16 = ((t << (
w - 1)) - t) & masks[l2];
1218 int m_row_8 = m_row - m_row_16;
1220 for (y = row_and_7; y <
h + row_and_7; y++) {
1221 mask[0][y][0] |= m_row_16;
1222 mask[0][y][1] |= m_row_8;
1225 for (y = row_and_7; y <
h + row_and_7; y++)
1226 mask[0][y][mask_id] |= m_row;
1231 if (ss_v && tx >
TX_8X8 && (
h ^ (
h - 1)) == 1) {
1232 for (y = row_and_7; y <
h + row_and_7 - 1; y += step1d)
1233 mask[1][y][0] |= m_col;
1234 if (y - row_and_7 ==
h - 1)
1235 mask[1][y][1] |= m_col;
1237 for (y = row_and_7; y <
h + row_and_7; y += step1d)
1238 mask[1][y][mask_id] |= m_col;
1240 }
else if (tx !=
TX_4X4) {
1243 mask_id = (tx ==
TX_8X8) || (
h == ss_v);
1244 mask[1][row_and_7][mask_id] |= m_col;
1245 mask_id = (tx ==
TX_8X8) || (
w == ss_h);
1246 for (y = row_and_7; y <
h + row_and_7; y++)
1247 mask[0][y][mask_id] |= t;
1249 int t8 = t & wide_filter_col_mask[ss_h],
t4 = t -
t8;
1251 for (y = row_and_7; y <
h + row_and_7; y++) {
1255 mask[1][row_and_7][2 - !(row_and_7 & wide_filter_row_mask[ss_v])] |= m_col;
1261 VP9Filter *lflvl, ptrdiff_t yoff, ptrdiff_t uvoff,
1267 int bytesperpixel =
s->bytesperpixel;
1277 td->min_mv.x = -(128 + col * 64);
1278 td->min_mv.y = -(128 + row * 64);
1279 td->max_mv.x = 128 + (
s->cols - col - w4) * 64;
1280 td->max_mv.y = 128 + (
s->rows - row - h4) * 64;
1287 b->uvtx =
b->tx - ((
s->ss_h && w4 * 2 == (1 <<
b->tx)) ||
1288 (
s->ss_v && h4 * 2 == (1 <<
b->tx)));
1290 if (
td->block_structure) {
1291 td->block_structure[
td->nb_block_structure].row = row;
1292 td->block_structure[
td->nb_block_structure].col = col;
1293 td->block_structure[
td->nb_block_structure].block_size_idx_x =
av_log2(w4);
1294 td->block_structure[
td->nb_block_structure].block_size_idx_y =
av_log2(h4);
1295 td->nb_block_structure++;
1301 if (bytesperpixel == 1) {
1306 if (!has_coeffs &&
b->bs <=
BS_8x8 && !
b->intra) {
1308 memset(&
s->above_skip_ctx[col], 1, w4);
1309 memset(&
td->left_skip_ctx[
td->row7], 1, h4);
1312 int row7 =
td->row7;
1314 #define SPLAT_ZERO_CTX(v, n) \
1316 case 1: v = 0; break; \
1317 case 2: AV_ZERO16(&v); break; \
1318 case 4: AV_ZERO32(&v); break; \
1319 case 8: AV_ZERO64(&v); break; \
1320 case 16: AV_ZERO128(&v); break; \
1322 #define SPLAT_ZERO_YUV(dir, var, off, n, dir2) \
1324 SPLAT_ZERO_CTX(dir##_y_##var[off * 2], n * 2); \
1325 if (s->ss_##dir2) { \
1326 SPLAT_ZERO_CTX(dir##_uv_##var[0][off], n); \
1327 SPLAT_ZERO_CTX(dir##_uv_##var[1][off], n); \
1329 SPLAT_ZERO_CTX(dir##_uv_##var[0][off * 2], n * 2); \
1330 SPLAT_ZERO_CTX(dir##_uv_##var[1][off * 2], n * 2); \
1350 s->td[0].block += w4 * h4 * 64 * bytesperpixel;
1351 s->td[0].uvblock[0] += w4 * h4 * 64 * bytesperpixel >> (
s->ss_h +
s->ss_v);
1352 s->td[0].uvblock[1] += w4 * h4 * 64 * bytesperpixel >> (
s->ss_h +
s->ss_v);
1353 s->td[0].eob += 4 * w4 * h4;
1354 s->td[0].uveob[0] += 4 * w4 * h4 >> (
s->ss_h +
s->ss_v);
1355 s->td[0].uveob[1] += 4 * w4 * h4 >> (
s->ss_h +
s->ss_v);
1364 emu[0] = (col + w4) * 8 * bytesperpixel >
f->linesize[0] ||
1365 (row + h4) >
s->rows;
1366 emu[1] = ((col + w4) * 8 >>
s->ss_h) * bytesperpixel >
f->linesize[1] ||
1367 (row + h4) >
s->rows;
1369 td->dst[0] =
td->tmp_y;
1372 td->dst[0] =
f->data[0] + yoff;
1373 td->y_stride =
f->linesize[0];
1376 td->dst[1] =
td->tmp_uv[0];
1377 td->dst[2] =
td->tmp_uv[1];
1378 td->uv_stride = 128;
1380 td->dst[1] =
f->data[1] + uvoff;
1381 td->dst[2] =
f->data[2] + uvoff;
1382 td->uv_stride =
f->linesize[1];
1385 if (
s->s.h.bpp > 8) {
1391 if (
s->s.h.bpp > 8) {
1398 int w =
FFMIN(
s->cols - col, w4) * 8,
h =
FFMIN(
s->rows - row, h4) * 8, n, o = 0;
1400 for (n = 0; o <
w; n++) {
1405 s->dsp.mc[n][0][0][0][0](
f->data[0] + yoff + o * bytesperpixel,
f->linesize[0],
1406 td->tmp_y + o * bytesperpixel, 128,
h, 0, 0);
1412 int w =
FFMIN(
s->cols - col, w4) * 8 >>
s->ss_h;
1413 int h =
FFMIN(
s->rows - row, h4) * 8 >>
s->ss_v, n, o = 0;
1415 for (n =
s->ss_h; o <
w; n++) {
1420 s->dsp.mc[n][0][0][0][0](
f->data[1] + uvoff + o * bytesperpixel,
f->linesize[1],
1421 td->tmp_uv[0] + o * bytesperpixel, 128,
h, 0, 0);
1422 s->dsp.mc[n][0][0][0][0](
f->data[2] + uvoff + o * bytesperpixel,
f->linesize[2],
1423 td->tmp_uv[1] + o * bytesperpixel, 128,
h, 0, 0);
1430 if (
s->s.h.filter.level &&
1431 (lvl =
s->s.h.segmentation.feat[
b->seg_id].lflvl[
b->intra ? 0 :
b->ref[0] + 1]
1432 [
b->mode[3] !=
ZEROMV]) > 0) {
1433 int x_end =
FFMIN(
s->cols - col, w4), y_end =
FFMIN(
s->rows - row, h4);
1434 int skip_inter = !
b->intra &&
b->skip, col7 =
td->col7, row7 =
td->row7;
1437 mask_edges(lflvl->
mask[0], 0, 0, row7, col7, x_end, y_end, 0, 0,
b->tx, skip_inter);
1438 if (
s->ss_h ||
s->ss_v)
1440 s->cols & 1 && col + w4 >=
s->cols ?
s->cols & 7 : 0,
1441 s->rows & 1 && row + h4 >=
s->rows ?
s->rows & 7 : 0,
1442 b->uvtx, skip_inter);
1447 s->td[0].block += w4 * h4 * 64 * bytesperpixel;
1448 s->td[0].uvblock[0] += w4 * h4 * 64 * bytesperpixel >> (
s->ss_v +
s->ss_h);
1449 s->td[0].uvblock[1] += w4 * h4 * 64 * bytesperpixel >> (
s->ss_v +
s->ss_h);
1450 s->td[0].eob += 4 * w4 * h4;
1451 s->td[0].uveob[0] += 4 * w4 * h4 >> (
s->ss_v +
s->ss_h);
1452 s->td[0].uveob[1] += 4 * w4 * h4 >> (
s->ss_v +
s->ss_h);