Coverage Report

Created: 2026-07-25 07:52

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libvpx/vp8/decoder/threading.c
Line
Count
Source
1
/*
2
 *  Copyright (c) 2010 The WebM project authors. All Rights Reserved.
3
 *
4
 *  Use of this source code is governed by a BSD-style license
5
 *  that can be found in the LICENSE file in the root of the source
6
 *  tree. An additional intellectual property rights grant can be found
7
 *  in the file PATENTS.  All contributing project authors may
8
 *  be found in the AUTHORS file in the root of the source tree.
9
 */
10
11
#include "vpx_config.h"
12
#include "vp8_rtcd.h"
13
#if !defined(_WIN32) && CONFIG_OS_SUPPORT == 1
14
#include <unistd.h>
15
#endif
16
#include "onyxd_int.h"
17
#include "vpx_mem/vpx_mem.h"
18
#include "vpx_util/vpx_pthread.h"
19
#include "vp8/common/common.h"
20
#include "vp8/common/threading.h"
21
#include "vp8/common/loopfilter.h"
22
#include "vp8/common/extend.h"
23
#include "vpx_ports/vpx_timer.h"
24
#include "decoderthreading.h"
25
#include "detokenize.h"
26
#include "vp8/common/reconintra4x4.h"
27
#include "vp8/common/reconinter.h"
28
#include "vp8/common/reconintra.h"
29
#include "vp8/common/setupintrarecon.h"
30
#if CONFIG_ERROR_CONCEALMENT
31
#include "error_concealment.h"
32
#endif
33
34
#define CALLOC_ARRAY(p, n) \
35
0
  CHECK_MEM_ERROR(&pbi->common.error, (p), vpx_calloc(sizeof(*(p)), (n)))
36
#define CALLOC_ARRAY_ALIGNED(p, n, algn)                       \
37
0
  do {                                                         \
38
0
    CHECK_MEM_ERROR(&pbi->common.error, (p),                   \
39
0
                    vpx_memalign((algn), sizeof(*(p)) * (n))); \
40
0
    memset((p), 0, (n) * sizeof(*(p)));                        \
41
0
  } while (0)
42
43
static void setup_decoding_thread_data(VP8D_COMP *pbi, MACROBLOCKD *xd,
44
0
                                       MB_ROW_DEC *mbrd, int count) {
45
0
  VP8_COMMON *const pc = &pbi->common;
46
0
  int i;
47
48
0
  for (i = 0; i < count; ++i) {
49
0
    MACROBLOCKD *mbd = &mbrd[i].mbd;
50
51
    // The worker MACROBLOCKDs persist across frames, so reset the per-frame
52
    // error state in line with the main thread (see vp8_decode_frame()).
53
    // This should only be done for keyframes or when error concealment
54
    // is active.
55
0
    if (pc->frame_type == KEY_FRAME || pbi->ec_active) {
56
0
      mbd->corrupted = 0;
57
0
    }
58
59
0
    mbd->subpixel_predict = xd->subpixel_predict;
60
0
    mbd->subpixel_predict8x4 = xd->subpixel_predict8x4;
61
0
    mbd->subpixel_predict8x8 = xd->subpixel_predict8x8;
62
0
    mbd->subpixel_predict16x16 = xd->subpixel_predict16x16;
63
64
0
    mbd->frame_type = pc->frame_type;
65
0
    mbd->pre = xd->pre;
66
0
    mbd->dst = xd->dst;
67
68
0
    mbd->segmentation_enabled = xd->segmentation_enabled;
69
0
    mbd->mb_segment_abs_delta = xd->mb_segment_abs_delta;
70
0
    memcpy(mbd->segment_feature_data, xd->segment_feature_data,
71
0
           sizeof(xd->segment_feature_data));
72
73
    /*signed char ref_lf_deltas[MAX_REF_LF_DELTAS];*/
74
0
    memcpy(mbd->ref_lf_deltas, xd->ref_lf_deltas, sizeof(xd->ref_lf_deltas));
75
    /*signed char mode_lf_deltas[MAX_MODE_LF_DELTAS];*/
76
0
    memcpy(mbd->mode_lf_deltas, xd->mode_lf_deltas, sizeof(xd->mode_lf_deltas));
77
    /*unsigned char mode_ref_lf_delta_enabled;
78
    unsigned char mode_ref_lf_delta_update;*/
79
0
    mbd->mode_ref_lf_delta_enabled = xd->mode_ref_lf_delta_enabled;
80
0
    mbd->mode_ref_lf_delta_update = xd->mode_ref_lf_delta_update;
81
82
0
    mbd->current_bc = &pbi->mbc[0];
83
84
0
    memcpy(mbd->dequant_y1_dc, xd->dequant_y1_dc, sizeof(xd->dequant_y1_dc));
85
0
    memcpy(mbd->dequant_y1, xd->dequant_y1, sizeof(xd->dequant_y1));
86
0
    memcpy(mbd->dequant_y2, xd->dequant_y2, sizeof(xd->dequant_y2));
87
0
    memcpy(mbd->dequant_uv, xd->dequant_uv, sizeof(xd->dequant_uv));
88
89
0
    mbd->fullpixel_mask = ~0;
90
91
0
    if (pc->full_pixel) mbd->fullpixel_mask = ~7;
92
0
  }
93
94
0
  for (i = 0; i < pc->mb_rows; ++i)
95
0
    vpx_atomic_store_release(&pbi->mt_current_mb_col[i], -1);
96
0
}
97
98
static void mt_decode_macroblock(VP8D_COMP *pbi, MACROBLOCKD *xd,
99
0
                                 unsigned int mb_idx) {
100
0
  MB_PREDICTION_MODE mode;
101
0
  int i;
102
#if CONFIG_ERROR_CONCEALMENT
103
  int corruption_detected = 0;
104
#else
105
0
  (void)mb_idx;
106
0
#endif
107
108
0
  if (xd->mode_info_context->mbmi.mb_skip_coeff) {
109
0
    vp8_reset_mb_tokens_context(xd);
110
0
  } else if (!vp8dx_bool_error(xd->current_bc)) {
111
0
    int eobtotal;
112
0
    eobtotal = vp8_decode_mb_tokens(pbi, xd);
113
114
    /* Special case:  Force the loopfilter to skip when eobtotal is zero */
115
0
    xd->mode_info_context->mbmi.mb_skip_coeff = (eobtotal == 0);
116
0
  }
117
118
0
  mode = xd->mode_info_context->mbmi.mode;
119
120
0
  if (xd->segmentation_enabled) vp8_mb_init_dequantizer(pbi, xd);
121
122
#if CONFIG_ERROR_CONCEALMENT
123
124
  if (pbi->ec_active) {
125
    int throw_residual;
126
    /* When we have independent partitions we can apply residual even
127
     * though other partitions within the frame are corrupt.
128
     */
129
    throw_residual =
130
        (!pbi->independent_partitions && pbi->frame_corrupt_residual);
131
    throw_residual = (throw_residual || vp8dx_bool_error(xd->current_bc));
132
133
    if ((mb_idx >= pbi->mvs_corrupt_from_mb || throw_residual)) {
134
      /* MB with corrupt residuals or corrupt mode/motion vectors.
135
       * Better to use the predictor as reconstruction.
136
       */
137
      pbi->frame_corrupt_residual = 1;
138
      memset(xd->qcoeff, 0, sizeof(xd->qcoeff));
139
140
      corruption_detected = 1;
141
142
      /* force idct to be skipped for B_PRED and use the
143
       * prediction only for reconstruction
144
       * */
145
      memset(xd->eobs, 0, 25);
146
    }
147
  }
148
#endif
149
150
  /* do prediction */
151
0
  if (xd->mode_info_context->mbmi.ref_frame == INTRA_FRAME) {
152
0
    vp8_build_intra_predictors_mbuv_s(
153
0
        xd, xd->recon_above[1], xd->recon_above[2], xd->recon_left[1],
154
0
        xd->recon_left[2], xd->recon_left_stride[1], xd->dst.u_buffer,
155
0
        xd->dst.v_buffer, xd->dst.uv_stride);
156
157
0
    if (mode != B_PRED) {
158
0
      vp8_build_intra_predictors_mby_s(
159
0
          xd, xd->recon_above[0], xd->recon_left[0], xd->recon_left_stride[0],
160
0
          xd->dst.y_buffer, xd->dst.y_stride);
161
0
    } else {
162
0
      short *DQC = xd->dequant_y1;
163
0
      int dst_stride = xd->dst.y_stride;
164
165
      /* clear out residual eob info */
166
0
      if (xd->mode_info_context->mbmi.mb_skip_coeff) memset(xd->eobs, 0, 25);
167
168
0
      intra_prediction_down_copy(xd, xd->recon_above[0] + 16);
169
170
0
      for (i = 0; i < 16; ++i) {
171
0
        BLOCKD *b = &xd->block[i];
172
0
        unsigned char *dst = xd->dst.y_buffer + b->offset;
173
0
        B_PREDICTION_MODE b_mode = xd->mode_info_context->bmi[i].as_mode;
174
0
        unsigned char *Above;
175
0
        unsigned char *yleft;
176
0
        int left_stride;
177
0
        unsigned char top_left;
178
179
        /*Caution: For some b_mode, it needs 8 pixels (4 above + 4
180
         * above-right).*/
181
0
        if (i < 4 && pbi->common.filter_level) {
182
0
          Above = xd->recon_above[0] + b->offset;
183
0
        } else {
184
0
          Above = dst - dst_stride;
185
0
        }
186
187
0
        if (i % 4 == 0 && pbi->common.filter_level) {
188
0
          yleft = xd->recon_left[0] + i;
189
0
          left_stride = 1;
190
0
        } else {
191
0
          yleft = dst - 1;
192
0
          left_stride = dst_stride;
193
0
        }
194
195
0
        if ((i == 4 || i == 8 || i == 12) && pbi->common.filter_level) {
196
0
          top_left = *(xd->recon_left[0] + i - 1);
197
0
        } else {
198
0
          top_left = Above[-1];
199
0
        }
200
201
0
        vp8_intra4x4_predict(Above, yleft, left_stride, b_mode, dst, dst_stride,
202
0
                             top_left);
203
204
0
        if (xd->eobs[i]) {
205
0
          if (xd->eobs[i] > 1) {
206
0
            vp8_dequant_idct_add(b->qcoeff, DQC, dst, dst_stride);
207
0
          } else {
208
0
            vp8_dc_only_idct_add(b->qcoeff[0] * DQC[0], dst, dst_stride, dst,
209
0
                                 dst_stride);
210
0
            memset(b->qcoeff, 0, 2 * sizeof(b->qcoeff[0]));
211
0
          }
212
0
        }
213
0
      }
214
0
    }
215
0
  } else {
216
0
    vp8_build_inter_predictors_mb(xd);
217
0
  }
218
219
#if CONFIG_ERROR_CONCEALMENT
220
  if (corruption_detected) {
221
    return;
222
  }
223
#endif
224
225
0
  if (!xd->mode_info_context->mbmi.mb_skip_coeff) {
226
    /* dequantization and idct */
227
0
    if (mode != B_PRED) {
228
0
      short *DQC = xd->dequant_y1;
229
230
0
      if (mode != SPLITMV) {
231
0
        BLOCKD *b = &xd->block[24];
232
233
        /* do 2nd order transform on the dc block */
234
0
        if (xd->eobs[24] > 1) {
235
0
          vp8_dequantize_b(b, xd->dequant_y2);
236
237
0
          vp8_short_inv_walsh4x4(&b->dqcoeff[0], xd->qcoeff);
238
0
          memset(b->qcoeff, 0, 16 * sizeof(b->qcoeff[0]));
239
0
        } else {
240
0
          b->dqcoeff[0] = (short)(b->qcoeff[0] * xd->dequant_y2[0]);
241
0
          vp8_short_inv_walsh4x4_1(&b->dqcoeff[0], xd->qcoeff);
242
0
          memset(b->qcoeff, 0, 2 * sizeof(b->qcoeff[0]));
243
0
        }
244
245
        /* override the dc dequant constant in order to preserve the
246
         * dc components
247
         */
248
0
        DQC = xd->dequant_y1_dc;
249
0
      }
250
251
0
      vp8_dequant_idct_add_y_block(xd->qcoeff, DQC, xd->dst.y_buffer,
252
0
                                   xd->dst.y_stride, xd->eobs);
253
0
    }
254
255
0
    vp8_dequant_idct_add_uv_block(xd->qcoeff + 16 * 16, xd->dequant_uv,
256
0
                                  xd->dst.u_buffer, xd->dst.v_buffer,
257
0
                                  xd->dst.uv_stride, xd->eobs + 16);
258
0
  }
259
0
}
260
261
static void mt_decode_mb_rows(VP8D_COMP *pbi, MACROBLOCKD *xd,
262
0
                              int start_mb_row) {
263
0
  const vpx_atomic_int *last_row_current_mb_col;
264
0
  vpx_atomic_int *current_mb_col;
265
0
  int mb_row;
266
0
  VP8_COMMON *pc = &pbi->common;
267
0
  const int nsync = pbi->sync_range;
268
0
  const vpx_atomic_int first_row_no_sync_above =
269
0
      VPX_ATOMIC_INIT(pc->mb_cols + nsync);
270
0
  int num_part = 1 << pbi->common.multi_token_partition;
271
0
  int last_mb_row = start_mb_row;
272
273
0
  YV12_BUFFER_CONFIG *yv12_fb_new = pbi->dec_fb_ref[INTRA_FRAME];
274
0
  YV12_BUFFER_CONFIG *yv12_fb_lst = pbi->dec_fb_ref[LAST_FRAME];
275
276
0
  int recon_y_stride = yv12_fb_new->y_stride;
277
0
  int recon_uv_stride = yv12_fb_new->uv_stride;
278
279
0
  unsigned char *ref_buffer[MAX_REF_FRAMES][3];
280
0
  unsigned char *dst_buffer[3];
281
0
  int i;
282
0
  int ref_fb_corrupted[MAX_REF_FRAMES];
283
284
0
  ref_fb_corrupted[INTRA_FRAME] = 0;
285
286
0
  for (i = 1; i < MAX_REF_FRAMES; ++i) {
287
0
    YV12_BUFFER_CONFIG *this_fb = pbi->dec_fb_ref[i];
288
289
0
    ref_buffer[i][0] = this_fb->y_buffer;
290
0
    ref_buffer[i][1] = this_fb->u_buffer;
291
0
    ref_buffer[i][2] = this_fb->v_buffer;
292
293
0
    ref_fb_corrupted[i] = this_fb->corrupted;
294
0
  }
295
296
0
  dst_buffer[0] = yv12_fb_new->y_buffer;
297
0
  dst_buffer[1] = yv12_fb_new->u_buffer;
298
0
  dst_buffer[2] = yv12_fb_new->v_buffer;
299
300
0
  xd->up_available = (start_mb_row != 0);
301
302
0
  xd->mode_info_context = pc->mi + pc->mode_info_stride * start_mb_row;
303
0
  xd->mode_info_stride = pc->mode_info_stride;
304
305
0
  for (mb_row = start_mb_row; mb_row < pc->mb_rows;
306
0
       mb_row += (pbi->decoding_thread_count + 1)) {
307
0
    int recon_yoffset, recon_uvoffset;
308
0
    int mb_col;
309
0
    int filter_level;
310
0
    loop_filter_info_n *lfi_n = &pc->lf_info;
311
312
    /* save last row processed by this thread */
313
0
    last_mb_row = mb_row;
314
    /* select bool coder for current partition */
315
0
    xd->current_bc = &pbi->mbc[mb_row % num_part];
316
317
0
    if (mb_row > 0) {
318
0
      last_row_current_mb_col = &pbi->mt_current_mb_col[mb_row - 1];
319
0
    } else {
320
0
      last_row_current_mb_col = &first_row_no_sync_above;
321
0
    }
322
323
0
    current_mb_col = &pbi->mt_current_mb_col[mb_row];
324
325
0
    recon_yoffset = mb_row * recon_y_stride * 16;
326
0
    recon_uvoffset = mb_row * recon_uv_stride * 8;
327
328
    /* reset contexts */
329
0
    xd->above_context = pc->above_context;
330
0
    memset(xd->left_context, 0, sizeof(ENTROPY_CONTEXT_PLANES));
331
332
0
    xd->left_available = 0;
333
334
0
    xd->mb_to_top_edge = -((mb_row * 16) << 3);
335
0
    xd->mb_to_bottom_edge = ((pc->mb_rows - 1 - mb_row) * 16) << 3;
336
337
0
    if (pbi->common.filter_level) {
338
0
      xd->recon_above[0] = pbi->mt_yabove_row[mb_row] + 0 * 16 + 32;
339
0
      xd->recon_above[1] = pbi->mt_uabove_row[mb_row] + 0 * 8 + 16;
340
0
      xd->recon_above[2] = pbi->mt_vabove_row[mb_row] + 0 * 8 + 16;
341
342
0
      xd->recon_left[0] = pbi->mt_yleft_col[mb_row];
343
0
      xd->recon_left[1] = pbi->mt_uleft_col[mb_row];
344
0
      xd->recon_left[2] = pbi->mt_vleft_col[mb_row];
345
346
      /* TODO: move to outside row loop */
347
0
      xd->recon_left_stride[0] = 1;
348
0
      xd->recon_left_stride[1] = 1;
349
0
    } else {
350
0
      xd->recon_above[0] = dst_buffer[0] + recon_yoffset;
351
0
      xd->recon_above[1] = dst_buffer[1] + recon_uvoffset;
352
0
      xd->recon_above[2] = dst_buffer[2] + recon_uvoffset;
353
354
0
      xd->recon_left[0] = xd->recon_above[0] - 1;
355
0
      xd->recon_left[1] = xd->recon_above[1] - 1;
356
0
      xd->recon_left[2] = xd->recon_above[2] - 1;
357
358
0
      xd->recon_above[0] -= xd->dst.y_stride;
359
0
      xd->recon_above[1] -= xd->dst.uv_stride;
360
0
      xd->recon_above[2] -= xd->dst.uv_stride;
361
362
      /* TODO: move to outside row loop */
363
0
      xd->recon_left_stride[0] = xd->dst.y_stride;
364
0
      xd->recon_left_stride[1] = xd->dst.uv_stride;
365
366
0
      setup_intra_recon_left(xd->recon_left[0], xd->recon_left[1],
367
0
                             xd->recon_left[2], xd->dst.y_stride,
368
0
                             xd->dst.uv_stride);
369
0
    }
370
371
0
    for (mb_col = 0; mb_col < pc->mb_cols; ++mb_col) {
372
0
      if (((mb_col - 1) % nsync) == 0) {
373
0
        vpx_atomic_store_release(current_mb_col, mb_col - 1);
374
0
      }
375
376
0
      if (mb_row && !(mb_col & (nsync - 1))) {
377
0
        vp8_atomic_spin_wait(mb_col, last_row_current_mb_col, nsync);
378
0
      }
379
380
      /* Distance of MB to the various image edges.
381
       * These are specified to 8th pel as they are always
382
       * compared to values that are in 1/8th pel units.
383
       */
384
0
      xd->mb_to_left_edge = -((mb_col * 16) << 3);
385
0
      xd->mb_to_right_edge = ((pc->mb_cols - 1 - mb_col) * 16) << 3;
386
387
#if CONFIG_ERROR_CONCEALMENT
388
      {
389
        int corrupt_residual =
390
            (!pbi->independent_partitions && pbi->frame_corrupt_residual) ||
391
            vp8dx_bool_error(xd->current_bc);
392
        if (pbi->ec_active &&
393
            (xd->mode_info_context->mbmi.ref_frame == INTRA_FRAME) &&
394
            corrupt_residual) {
395
          /* We have an intra block with corrupt
396
           * coefficients, better to conceal with an inter
397
           * block.
398
           * Interpolate MVs from neighboring MBs
399
           *
400
           * Note that for the first mb with corrupt
401
           * residual in a frame, we might not discover
402
           * that before decoding the residual. That
403
           * happens after this check, and therefore no
404
           * inter concealment will be done.
405
           */
406
          vp8_interpolate_motion(xd, mb_row, mb_col, pc->mb_rows, pc->mb_cols);
407
        }
408
      }
409
#endif
410
411
0
      xd->dst.y_buffer = dst_buffer[0] + recon_yoffset;
412
0
      xd->dst.u_buffer = dst_buffer[1] + recon_uvoffset;
413
0
      xd->dst.v_buffer = dst_buffer[2] + recon_uvoffset;
414
415
      /* propagate errors from reference frames */
416
0
      xd->corrupted |= ref_fb_corrupted[xd->mode_info_context->mbmi.ref_frame];
417
418
0
      if (xd->corrupted) {
419
        // Move current decoding marcoblock to the end of row for all rows
420
        // assigned to this thread, such that other threads won't be waiting.
421
0
        for (; mb_row < pc->mb_rows;
422
0
             mb_row += (pbi->decoding_thread_count + 1)) {
423
0
          current_mb_col = &pbi->mt_current_mb_col[mb_row];
424
0
          vpx_atomic_store_release(current_mb_col, pc->mb_cols + nsync);
425
0
        }
426
0
        vpx_internal_error(&xd->error_info, VPX_CODEC_CORRUPT_FRAME,
427
0
                           "Corrupted reference frame");
428
0
      }
429
430
0
      if (xd->mode_info_context->mbmi.ref_frame >= LAST_FRAME) {
431
0
        const MV_REFERENCE_FRAME ref = xd->mode_info_context->mbmi.ref_frame;
432
0
        xd->pre.y_buffer = ref_buffer[ref][0] + recon_yoffset;
433
0
        xd->pre.u_buffer = ref_buffer[ref][1] + recon_uvoffset;
434
0
        xd->pre.v_buffer = ref_buffer[ref][2] + recon_uvoffset;
435
0
      } else {
436
        // ref_frame is INTRA_FRAME, pre buffer should not be used.
437
0
        xd->pre.y_buffer = 0;
438
0
        xd->pre.u_buffer = 0;
439
0
        xd->pre.v_buffer = 0;
440
0
      }
441
0
      mt_decode_macroblock(pbi, xd, 0);
442
443
0
      xd->left_available = 1;
444
445
      /* check if the boolean decoder has suffered an error */
446
0
      xd->corrupted |= vp8dx_bool_error(xd->current_bc);
447
448
0
      xd->recon_above[0] += 16;
449
0
      xd->recon_above[1] += 8;
450
0
      xd->recon_above[2] += 8;
451
452
0
      if (!pbi->common.filter_level) {
453
0
        xd->recon_left[0] += 16;
454
0
        xd->recon_left[1] += 8;
455
0
        xd->recon_left[2] += 8;
456
0
      }
457
458
0
      if (pbi->common.filter_level) {
459
0
        int skip_lf = (xd->mode_info_context->mbmi.mode != B_PRED &&
460
0
                       xd->mode_info_context->mbmi.mode != SPLITMV &&
461
0
                       xd->mode_info_context->mbmi.mb_skip_coeff);
462
463
0
        const int mode_index =
464
0
            lfi_n->mode_lf_lut[xd->mode_info_context->mbmi.mode];
465
0
        const int seg = xd->mode_info_context->mbmi.segment_id;
466
0
        const int ref_frame = xd->mode_info_context->mbmi.ref_frame;
467
468
0
        filter_level = lfi_n->lvl[seg][ref_frame][mode_index];
469
470
0
        if (mb_row != pc->mb_rows - 1) {
471
          /* Save decoded MB last row data for next-row decoding */
472
0
          memcpy((pbi->mt_yabove_row[mb_row + 1] + 32 + mb_col * 16),
473
0
                 (xd->dst.y_buffer + 15 * recon_y_stride), 16);
474
0
          memcpy((pbi->mt_uabove_row[mb_row + 1] + 16 + mb_col * 8),
475
0
                 (xd->dst.u_buffer + 7 * recon_uv_stride), 8);
476
0
          memcpy((pbi->mt_vabove_row[mb_row + 1] + 16 + mb_col * 8),
477
0
                 (xd->dst.v_buffer + 7 * recon_uv_stride), 8);
478
0
        }
479
480
        /* save left_col for next MB decoding */
481
0
        if (mb_col != pc->mb_cols - 1) {
482
0
          MODE_INFO *next = xd->mode_info_context + 1;
483
484
0
          if (next->mbmi.ref_frame == INTRA_FRAME) {
485
0
            for (i = 0; i < 16; ++i) {
486
0
              pbi->mt_yleft_col[mb_row][i] =
487
0
                  xd->dst.y_buffer[i * recon_y_stride + 15];
488
0
            }
489
0
            for (i = 0; i < 8; ++i) {
490
0
              pbi->mt_uleft_col[mb_row][i] =
491
0
                  xd->dst.u_buffer[i * recon_uv_stride + 7];
492
0
              pbi->mt_vleft_col[mb_row][i] =
493
0
                  xd->dst.v_buffer[i * recon_uv_stride + 7];
494
0
            }
495
0
          }
496
0
        }
497
498
        /* loopfilter on this macroblock. */
499
0
        if (filter_level) {
500
0
          if (pc->filter_type == NORMAL_LOOPFILTER) {
501
0
            loop_filter_info lfi;
502
0
            FRAME_TYPE frame_type = pc->frame_type;
503
0
            const int hev_index = lfi_n->hev_thr_lut[frame_type][filter_level];
504
0
            lfi.mblim = lfi_n->mblim[filter_level];
505
0
            lfi.blim = lfi_n->blim[filter_level];
506
0
            lfi.lim = lfi_n->lim[filter_level];
507
0
            lfi.hev_thr = lfi_n->hev_thr[hev_index];
508
509
0
            if (mb_col > 0)
510
0
              vp8_loop_filter_mbv(xd->dst.y_buffer, xd->dst.u_buffer,
511
0
                                  xd->dst.v_buffer, recon_y_stride,
512
0
                                  recon_uv_stride, &lfi);
513
514
0
            if (!skip_lf)
515
0
              vp8_loop_filter_bv(xd->dst.y_buffer, xd->dst.u_buffer,
516
0
                                 xd->dst.v_buffer, recon_y_stride,
517
0
                                 recon_uv_stride, &lfi);
518
519
            /* don't apply across umv border */
520
0
            if (mb_row > 0)
521
0
              vp8_loop_filter_mbh(xd->dst.y_buffer, xd->dst.u_buffer,
522
0
                                  xd->dst.v_buffer, recon_y_stride,
523
0
                                  recon_uv_stride, &lfi);
524
525
0
            if (!skip_lf)
526
0
              vp8_loop_filter_bh(xd->dst.y_buffer, xd->dst.u_buffer,
527
0
                                 xd->dst.v_buffer, recon_y_stride,
528
0
                                 recon_uv_stride, &lfi);
529
0
          } else {
530
0
            if (mb_col > 0)
531
0
              vp8_loop_filter_simple_mbv(xd->dst.y_buffer, recon_y_stride,
532
0
                                         lfi_n->mblim[filter_level]);
533
534
0
            if (!skip_lf)
535
0
              vp8_loop_filter_simple_bv(xd->dst.y_buffer, recon_y_stride,
536
0
                                        lfi_n->blim[filter_level]);
537
538
            /* don't apply across umv border */
539
0
            if (mb_row > 0)
540
0
              vp8_loop_filter_simple_mbh(xd->dst.y_buffer, recon_y_stride,
541
0
                                         lfi_n->mblim[filter_level]);
542
543
0
            if (!skip_lf)
544
0
              vp8_loop_filter_simple_bh(xd->dst.y_buffer, recon_y_stride,
545
0
                                        lfi_n->blim[filter_level]);
546
0
          }
547
0
        }
548
0
      }
549
550
0
      recon_yoffset += 16;
551
0
      recon_uvoffset += 8;
552
553
0
      ++xd->mode_info_context; /* next mb */
554
555
0
      xd->above_context++;
556
0
    }
557
558
    /* adjust to the next row of mbs */
559
0
    if (pbi->common.filter_level) {
560
0
      if (mb_row != pc->mb_rows - 1) {
561
0
        int lasty = yv12_fb_lst->y_width + VP8BORDERINPIXELS;
562
0
        int lastuv = (yv12_fb_lst->y_width >> 1) + (VP8BORDERINPIXELS >> 1);
563
564
0
        for (i = 0; i < 4; ++i) {
565
0
          pbi->mt_yabove_row[mb_row + 1][lasty + i] =
566
0
              pbi->mt_yabove_row[mb_row + 1][lasty - 1];
567
0
          pbi->mt_uabove_row[mb_row + 1][lastuv + i] =
568
0
              pbi->mt_uabove_row[mb_row + 1][lastuv - 1];
569
0
          pbi->mt_vabove_row[mb_row + 1][lastuv + i] =
570
0
              pbi->mt_vabove_row[mb_row + 1][lastuv - 1];
571
0
        }
572
0
      }
573
0
    } else {
574
0
      vp8_extend_mb_row(yv12_fb_new, xd->dst.y_buffer + 16,
575
0
                        xd->dst.u_buffer + 8, xd->dst.v_buffer + 8);
576
0
    }
577
578
    /* last MB of row is ready just after extension is done */
579
0
    vpx_atomic_store_release(current_mb_col, mb_col + nsync);
580
581
0
    ++xd->mode_info_context; /* skip prediction column */
582
0
    xd->up_available = 1;
583
584
    /* since we have multithread */
585
0
    xd->mode_info_context += xd->mode_info_stride * pbi->decoding_thread_count;
586
0
  }
587
588
  /* signal end of decoding of current thread for current frame */
589
0
  if (last_mb_row + (int)pbi->decoding_thread_count + 1 >= pc->mb_rows)
590
0
    vp8_sem_post(&pbi->h_event_end_decoding);
591
0
}
592
593
0
static THREADFN thread_decoding_proc(void *p_data) {
594
0
  int ithread = ((DECODETHREAD_DATA *)p_data)->ithread;
595
0
  VP8D_COMP *pbi = (VP8D_COMP *)(((DECODETHREAD_DATA *)p_data)->ptr1);
596
0
  MB_ROW_DEC *mbrd = (MB_ROW_DEC *)(((DECODETHREAD_DATA *)p_data)->ptr2);
597
0
  ENTROPY_CONTEXT_PLANES mb_row_left_context;
598
599
0
  while (1) {
600
0
    if (vpx_atomic_load_acquire(&pbi->b_multithreaded_rd) == 0) break;
601
602
0
    if (vp8_sem_wait(&pbi->h_event_start_decoding[ithread]) == 0) {
603
0
      if (vpx_atomic_load_acquire(&pbi->b_multithreaded_rd) == 0) {
604
0
        break;
605
0
      } else {
606
0
        MACROBLOCKD *xd = &mbrd->mbd;
607
0
        xd->left_context = &mb_row_left_context;
608
0
        if (setjmp(xd->error_info.jmp)) {
609
0
          xd->error_info.setjmp = 0;
610
          // Signal the end of decoding for current thread.
611
0
          vp8_sem_post(&pbi->h_event_end_decoding);
612
0
          continue;
613
0
        }
614
0
        xd->error_info.setjmp = 1;
615
0
        mt_decode_mb_rows(pbi, xd, ithread + 1);
616
0
        xd->error_info.setjmp = 0;
617
0
      }
618
0
    }
619
0
  }
620
621
0
  return THREAD_EXIT_SUCCESS;
622
0
}
623
624
5.96k
void vp8_decoder_create_threads(VP8D_COMP *pbi) {
625
5.96k
  int core_count = 0;
626
5.96k
  unsigned int ithread;
627
628
5.96k
  vpx_atomic_init(&pbi->b_multithreaded_rd, 0);
629
5.96k
  pbi->allocated_decoding_thread_count = 0;
630
631
  /* limit decoding threads to the max number of token partitions */
632
5.96k
  core_count = (pbi->max_threads > 8) ? 8 : pbi->max_threads;
633
634
  /* limit decoding threads to the available cores */
635
5.96k
  if (core_count > pbi->common.processor_core_count) {
636
0
    core_count = pbi->common.processor_core_count;
637
0
  }
638
639
5.96k
  if (core_count > 1) {
640
0
    vpx_atomic_init(&pbi->b_multithreaded_rd, 1);
641
0
    pbi->decoding_thread_count = core_count - 1;
642
643
0
    CALLOC_ARRAY(pbi->h_decoding_thread, pbi->decoding_thread_count);
644
0
    CALLOC_ARRAY(pbi->h_event_start_decoding, pbi->decoding_thread_count);
645
0
    CALLOC_ARRAY_ALIGNED(pbi->mb_row_di, pbi->decoding_thread_count, 32);
646
0
    CALLOC_ARRAY(pbi->de_thread_data, pbi->decoding_thread_count);
647
648
0
    if (vp8_sem_init(&pbi->h_event_end_decoding, 0, 0)) {
649
0
      vpx_internal_error(&pbi->common.error, VPX_CODEC_MEM_ERROR,
650
0
                         "Failed to initialize semaphore");
651
0
    }
652
653
0
    for (ithread = 0; ithread < pbi->decoding_thread_count; ++ithread) {
654
0
      if (vp8_sem_init(&pbi->h_event_start_decoding[ithread], 0, 0)) break;
655
656
0
      vp8_setup_block_dptrs(&pbi->mb_row_di[ithread].mbd);
657
658
0
      pbi->de_thread_data[ithread].ithread = ithread;
659
0
      pbi->de_thread_data[ithread].ptr1 = (void *)pbi;
660
0
      pbi->de_thread_data[ithread].ptr2 = (void *)&pbi->mb_row_di[ithread];
661
662
0
      if (pthread_create(&pbi->h_decoding_thread[ithread], 0,
663
0
                         thread_decoding_proc, &pbi->de_thread_data[ithread])) {
664
0
        vp8_sem_destroy(&pbi->h_event_start_decoding[ithread]);
665
0
        break;
666
0
      }
667
0
    }
668
669
0
    pbi->allocated_decoding_thread_count = ithread;
670
0
    if (pbi->allocated_decoding_thread_count !=
671
0
        (int)pbi->decoding_thread_count) {
672
      /* the remainder of cleanup cases will be handled in
673
       * vp8_decoder_remove_threads(). */
674
0
      if (pbi->allocated_decoding_thread_count == 0) {
675
0
        vp8_sem_destroy(&pbi->h_event_end_decoding);
676
0
      }
677
0
      vpx_internal_error(&pbi->common.error, VPX_CODEC_MEM_ERROR,
678
0
                         "Failed to create threads");
679
0
    }
680
0
  }
681
5.96k
}
682
683
0
void vp8mt_de_alloc_temp_buffers(VP8D_COMP *pbi, int mb_rows) {
684
0
  int i;
685
686
0
  vpx_free(pbi->mt_current_mb_col);
687
0
  pbi->mt_current_mb_col = NULL;
688
689
  /* Free above_row buffers. */
690
0
  if (pbi->mt_yabove_row) {
691
0
    for (i = 0; i < mb_rows; ++i) {
692
0
      vpx_free(pbi->mt_yabove_row[i]);
693
0
      pbi->mt_yabove_row[i] = NULL;
694
0
    }
695
0
    vpx_free(pbi->mt_yabove_row);
696
0
    pbi->mt_yabove_row = NULL;
697
0
  }
698
699
0
  if (pbi->mt_uabove_row) {
700
0
    for (i = 0; i < mb_rows; ++i) {
701
0
      vpx_free(pbi->mt_uabove_row[i]);
702
0
      pbi->mt_uabove_row[i] = NULL;
703
0
    }
704
0
    vpx_free(pbi->mt_uabove_row);
705
0
    pbi->mt_uabove_row = NULL;
706
0
  }
707
708
0
  if (pbi->mt_vabove_row) {
709
0
    for (i = 0; i < mb_rows; ++i) {
710
0
      vpx_free(pbi->mt_vabove_row[i]);
711
0
      pbi->mt_vabove_row[i] = NULL;
712
0
    }
713
0
    vpx_free(pbi->mt_vabove_row);
714
0
    pbi->mt_vabove_row = NULL;
715
0
  }
716
717
  /* Free left_col buffers. */
718
0
  if (pbi->mt_yleft_col) {
719
0
    for (i = 0; i < mb_rows; ++i) {
720
0
      vpx_free(pbi->mt_yleft_col[i]);
721
0
      pbi->mt_yleft_col[i] = NULL;
722
0
    }
723
0
    vpx_free(pbi->mt_yleft_col);
724
0
    pbi->mt_yleft_col = NULL;
725
0
  }
726
727
0
  if (pbi->mt_uleft_col) {
728
0
    for (i = 0; i < mb_rows; ++i) {
729
0
      vpx_free(pbi->mt_uleft_col[i]);
730
0
      pbi->mt_uleft_col[i] = NULL;
731
0
    }
732
0
    vpx_free(pbi->mt_uleft_col);
733
0
    pbi->mt_uleft_col = NULL;
734
0
  }
735
736
0
  if (pbi->mt_vleft_col) {
737
0
    for (i = 0; i < mb_rows; ++i) {
738
0
      vpx_free(pbi->mt_vleft_col[i]);
739
0
      pbi->mt_vleft_col[i] = NULL;
740
0
    }
741
0
    vpx_free(pbi->mt_vleft_col);
742
0
    pbi->mt_vleft_col = NULL;
743
0
  }
744
0
}
745
746
0
void vp8mt_alloc_temp_buffers(VP8D_COMP *pbi, int width, int prev_mb_rows) {
747
0
  VP8_COMMON *const pc = &pbi->common;
748
0
  int i;
749
0
  int uv_width;
750
751
0
  if (vpx_atomic_load_acquire(&pbi->b_multithreaded_rd)) {
752
0
    vp8mt_de_alloc_temp_buffers(pbi, prev_mb_rows);
753
754
    /* our internal buffers are always multiples of 16 */
755
0
    if ((width & 0xf) != 0) width += 16 - (width & 0xf);
756
757
0
    if (width < 640) {
758
0
      pbi->sync_range = 1;
759
0
    } else if (width <= 1280) {
760
0
      pbi->sync_range = 8;
761
0
    } else if (width <= 2560) {
762
0
      pbi->sync_range = 16;
763
0
    } else {
764
0
      pbi->sync_range = 32;
765
0
    }
766
767
0
    uv_width = width >> 1;
768
769
    /* Allocate a vpx_atomic_int for each mb row. */
770
0
    CHECK_MEM_ERROR(&pc->error, pbi->mt_current_mb_col,
771
0
                    vpx_malloc(sizeof(*pbi->mt_current_mb_col) * pc->mb_rows));
772
0
    for (i = 0; i < pc->mb_rows; ++i)
773
0
      vpx_atomic_init(&pbi->mt_current_mb_col[i], 0);
774
775
    /* Allocate memory for above_row buffers. */
776
0
    CALLOC_ARRAY(pbi->mt_yabove_row, pc->mb_rows);
777
0
    for (i = 0; i < pc->mb_rows; ++i) {
778
0
      CHECK_MEM_ERROR(&pc->error, pbi->mt_yabove_row[i],
779
0
                      vpx_memalign(16, sizeof(unsigned char) *
780
0
                                           (width + (VP8BORDERINPIXELS << 1))));
781
0
      vp8_zero_array(pbi->mt_yabove_row[i], width + (VP8BORDERINPIXELS << 1));
782
0
    }
783
784
0
    CALLOC_ARRAY(pbi->mt_uabove_row, pc->mb_rows);
785
0
    for (i = 0; i < pc->mb_rows; ++i) {
786
0
      CHECK_MEM_ERROR(&pc->error, pbi->mt_uabove_row[i],
787
0
                      vpx_memalign(16, sizeof(unsigned char) *
788
0
                                           (uv_width + VP8BORDERINPIXELS)));
789
0
      vp8_zero_array(pbi->mt_uabove_row[i], uv_width + VP8BORDERINPIXELS);
790
0
    }
791
792
0
    CALLOC_ARRAY(pbi->mt_vabove_row, pc->mb_rows);
793
0
    for (i = 0; i < pc->mb_rows; ++i) {
794
0
      CHECK_MEM_ERROR(&pc->error, pbi->mt_vabove_row[i],
795
0
                      vpx_memalign(16, sizeof(unsigned char) *
796
0
                                           (uv_width + VP8BORDERINPIXELS)));
797
0
      vp8_zero_array(pbi->mt_vabove_row[i], uv_width + VP8BORDERINPIXELS);
798
0
    }
799
800
    /* Allocate memory for left_col buffers. */
801
0
    CALLOC_ARRAY(pbi->mt_yleft_col, pc->mb_rows);
802
0
    for (i = 0; i < pc->mb_rows; ++i)
803
0
      CHECK_MEM_ERROR(&pc->error, pbi->mt_yleft_col[i],
804
0
                      vpx_calloc(sizeof(unsigned char) * 16, 1));
805
806
0
    CALLOC_ARRAY(pbi->mt_uleft_col, pc->mb_rows);
807
0
    for (i = 0; i < pc->mb_rows; ++i)
808
0
      CHECK_MEM_ERROR(&pc->error, pbi->mt_uleft_col[i],
809
0
                      vpx_calloc(sizeof(unsigned char) * 8, 1));
810
811
0
    CALLOC_ARRAY(pbi->mt_vleft_col, pc->mb_rows);
812
0
    for (i = 0; i < pc->mb_rows; ++i)
813
0
      CHECK_MEM_ERROR(&pc->error, pbi->mt_vleft_col[i],
814
0
                      vpx_calloc(sizeof(unsigned char) * 8, 1));
815
0
  }
816
0
}
817
818
5.96k
void vp8_decoder_remove_threads(VP8D_COMP *pbi) {
819
  /* shutdown MB Decoding thread; */
820
5.96k
  if (vpx_atomic_load_acquire(&pbi->b_multithreaded_rd)) {
821
0
    int i;
822
0
    vpx_atomic_store_release(&pbi->b_multithreaded_rd, 0);
823
824
    /* allow all threads to exit */
825
0
    for (i = 0; i < pbi->allocated_decoding_thread_count; ++i) {
826
0
      vp8_sem_post(&pbi->h_event_start_decoding[i]);
827
0
      pthread_join(pbi->h_decoding_thread[i], NULL);
828
0
    }
829
830
0
    for (i = 0; i < pbi->allocated_decoding_thread_count; ++i) {
831
0
      vp8_sem_destroy(&pbi->h_event_start_decoding[i]);
832
0
    }
833
834
0
    if (pbi->allocated_decoding_thread_count) {
835
0
      vp8_sem_destroy(&pbi->h_event_end_decoding);
836
0
    }
837
838
0
    vpx_free(pbi->h_decoding_thread);
839
0
    pbi->h_decoding_thread = NULL;
840
841
0
    vpx_free(pbi->h_event_start_decoding);
842
0
    pbi->h_event_start_decoding = NULL;
843
844
0
    vpx_free(pbi->mb_row_di);
845
0
    pbi->mb_row_di = NULL;
846
847
0
    vpx_free(pbi->de_thread_data);
848
0
    pbi->de_thread_data = NULL;
849
850
0
    vp8mt_de_alloc_temp_buffers(pbi, pbi->common.mb_rows);
851
0
  }
852
5.96k
}
853
854
0
int vp8mt_decode_mb_rows(VP8D_COMP *pbi, MACROBLOCKD *xd) {
855
0
  VP8_COMMON *pc = &pbi->common;
856
0
  unsigned int i;
857
0
  int j;
858
859
0
  int filter_level = pc->filter_level;
860
0
  YV12_BUFFER_CONFIG *yv12_fb_new = pbi->dec_fb_ref[INTRA_FRAME];
861
862
0
  if (filter_level) {
863
    /* Set above_row buffer to 127 for decoding first MB row */
864
0
    memset(pbi->mt_yabove_row[0] + VP8BORDERINPIXELS - 1, 127,
865
0
           yv12_fb_new->y_width + 5);
866
0
    memset(pbi->mt_uabove_row[0] + (VP8BORDERINPIXELS >> 1) - 1, 127,
867
0
           (yv12_fb_new->y_width >> 1) + 5);
868
0
    memset(pbi->mt_vabove_row[0] + (VP8BORDERINPIXELS >> 1) - 1, 127,
869
0
           (yv12_fb_new->y_width >> 1) + 5);
870
871
0
    for (j = 1; j < pc->mb_rows; ++j) {
872
0
      memset(pbi->mt_yabove_row[j] + VP8BORDERINPIXELS - 1, (unsigned char)129,
873
0
             1);
874
0
      memset(pbi->mt_uabove_row[j] + (VP8BORDERINPIXELS >> 1) - 1,
875
0
             (unsigned char)129, 1);
876
0
      memset(pbi->mt_vabove_row[j] + (VP8BORDERINPIXELS >> 1) - 1,
877
0
             (unsigned char)129, 1);
878
0
    }
879
880
    /* Set left_col to 129 initially */
881
0
    for (j = 0; j < pc->mb_rows; ++j) {
882
0
      memset(pbi->mt_yleft_col[j], (unsigned char)129, 16);
883
0
      memset(pbi->mt_uleft_col[j], (unsigned char)129, 8);
884
0
      memset(pbi->mt_vleft_col[j], (unsigned char)129, 8);
885
0
    }
886
887
    /* Initialize the loop filter for this frame. */
888
0
    vp8_loop_filter_frame_init(pc, &pbi->mb, filter_level);
889
0
  } else {
890
0
    vp8_setup_intra_recon_top_line(yv12_fb_new);
891
0
  }
892
893
0
  setup_decoding_thread_data(pbi, xd, pbi->mb_row_di,
894
0
                             pbi->decoding_thread_count);
895
896
0
  for (i = 0; i < pbi->decoding_thread_count; ++i) {
897
0
    vp8_sem_post(&pbi->h_event_start_decoding[i]);
898
0
  }
899
900
0
  if (setjmp(xd->error_info.jmp)) {
901
0
    xd->error_info.setjmp = 0;
902
0
    xd->corrupted = 1;
903
    // Wait for other threads to finish. This prevents other threads decoding
904
    // the current frame while the main thread starts decoding the next frame,
905
    // which causes a data race.
906
0
    for (i = 0; i < pbi->decoding_thread_count; ++i)
907
0
      vp8_sem_wait(&pbi->h_event_end_decoding);
908
0
    return -1;
909
0
  }
910
911
0
  xd->error_info.setjmp = 1;
912
0
  mt_decode_mb_rows(pbi, xd, 0);
913
0
  xd->error_info.setjmp = 0;
914
915
0
  for (i = 0; i < pbi->decoding_thread_count + 1; ++i)
916
0
    vp8_sem_wait(&pbi->h_event_end_decoding); /* add back for each frame */
917
918
0
  return 0;
919
0
}