Coverage Report

Created: 2026-06-10 06:58

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/dav1d/src/thread_task.c
Line
Count
Source
1
/*
2
 * Copyright © 2018, VideoLAN and dav1d authors
3
 * Copyright © 2018, Two Orioles, LLC
4
 * All rights reserved.
5
 *
6
 * Redistribution and use in source and binary forms, with or without
7
 * modification, are permitted provided that the following conditions are met:
8
 *
9
 * 1. Redistributions of source code must retain the above copyright notice, this
10
 *    list of conditions and the following disclaimer.
11
 *
12
 * 2. Redistributions in binary form must reproduce the above copyright notice,
13
 *    this list of conditions and the following disclaimer in the documentation
14
 *    and/or other materials provided with the distribution.
15
 *
16
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
17
 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
18
 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
19
 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
20
 * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
21
 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
22
 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
23
 * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
25
 * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26
 */
27
28
#include "config.h"
29
30
#include "common/frame.h"
31
32
#include "src/thread_task.h"
33
#include "src/fg_apply.h"
34
35
// This function resets the cur pointer to the first frame theoretically
36
// executable after a task completed (ie. each time we update some progress or
37
// insert some tasks in the queue).
38
// When frame_idx is set, it can be either from a completed task, or from tasks
39
// inserted in the queue, in which case we have to make sure the cur pointer
40
// isn't past this insert.
41
// The special case where frame_idx is UINT_MAX is to handle the reset after
42
// completing a task and locklessly signaling progress. In this case we don't
43
// enter a critical section, which is needed for this function, so we set an
44
// atomic for a delayed handling, happening here. Meaning we can call this
45
// function without any actual update other than what's in the atomic, hence
46
// this special case.
47
static inline int reset_task_cur(const Dav1dContext *const c,
48
                                 struct TaskThreadData *const ttd,
49
                                 unsigned frame_idx)
50
5.54M
{
51
5.54M
    const unsigned first = atomic_load(&ttd->first);
52
5.54M
    unsigned reset_frame_idx = atomic_exchange(&ttd->reset_task_cur, UINT_MAX);
53
5.54M
    if (reset_frame_idx < first) {
54
0
        if (frame_idx == UINT_MAX) return 0;
55
0
        reset_frame_idx = UINT_MAX;
56
0
    }
57
5.54M
    if (!ttd->cur && c->fc[first].task_thread.task_cur_prev == NULL)
58
1.16M
        return 0;
59
4.37M
    if (reset_frame_idx != UINT_MAX) {
60
107k
        if (frame_idx == UINT_MAX) {
61
48.9k
            if (reset_frame_idx > first + ttd->cur)
62
65
                return 0;
63
48.8k
            ttd->cur = reset_frame_idx - first;
64
48.8k
            goto cur_found;
65
48.9k
        }
66
4.27M
    } else if (frame_idx == UINT_MAX)
67
3.64M
        return 0;
68
679k
    if (frame_idx < first) frame_idx += c->n_fc;
69
679k
    const unsigned min_frame_idx = umin(reset_frame_idx, frame_idx);
70
679k
    const unsigned cur_frame_idx = first + ttd->cur;
71
679k
    if (ttd->cur < c->n_fc && cur_frame_idx < min_frame_idx)
72
6.34k
        return 0;
73
1.23M
    for (ttd->cur = min_frame_idx - first; ttd->cur < c->n_fc; ttd->cur++)
74
1.14M
        if (c->fc[(first + ttd->cur) % c->n_fc].task_thread.task_head)
75
581k
            break;
76
722k
cur_found:
77
4.26M
    for (unsigned i = ttd->cur; i < c->n_fc; i++)
78
3.54M
        c->fc[(first + i) % c->n_fc].task_thread.task_cur_prev = NULL;
79
722k
    return 1;
80
673k
}
81
82
static inline void reset_task_cur_async(struct TaskThreadData *const ttd,
83
                                        unsigned frame_idx, unsigned n_frames)
84
500k
{
85
500k
    const unsigned first = atomic_load(&ttd->first);
86
500k
    if (frame_idx < first) frame_idx += n_frames;
87
500k
    unsigned last_idx = frame_idx;
88
503k
    do {
89
503k
        frame_idx = last_idx;
90
503k
        last_idx = atomic_exchange(&ttd->reset_task_cur, frame_idx);
91
503k
    } while (last_idx < frame_idx);
92
500k
    if (frame_idx == first && atomic_load(&ttd->first) != first) {
93
0
        unsigned expected = frame_idx;
94
0
        atomic_compare_exchange_strong(&ttd->reset_task_cur, &expected, UINT_MAX);
95
0
    }
96
500k
}
97
98
static void insert_tasks_between(Dav1dFrameContext *const f,
99
                                 Dav1dTask *const first, Dav1dTask *const last,
100
                                 Dav1dTask *const a, Dav1dTask *const b,
101
                                 const int cond_signal)
102
898k
{
103
898k
    struct TaskThreadData *const ttd = f->task_thread.ttd;
104
898k
    if (atomic_load(f->c->flush)) return;
105
898k
    assert(!a || a->next == b);
106
898k
    if (!a) f->task_thread.task_head = first;
107
682k
    else a->next = first;
108
898k
    if (!b) f->task_thread.task_tail = last;
109
898k
    last->next = b;
110
898k
    reset_task_cur(f->c, ttd, first->frame_idx);
111
898k
    if (cond_signal && !atomic_fetch_or(&ttd->cond_signaled, 1))
112
41.9k
        pthread_cond_signal(&ttd->cond);
113
898k
}
114
115
static void insert_tasks(Dav1dFrameContext *const f,
116
                         Dav1dTask *const first, Dav1dTask *const last,
117
                         const int cond_signal)
118
898k
{
119
    // insert task back into task queue
120
898k
    Dav1dTask *t_ptr, *prev_t = NULL;
121
898k
    for (t_ptr = f->task_thread.task_head;
122
3.96M
         t_ptr; prev_t = t_ptr, t_ptr = t_ptr->next)
123
3.26M
    {
124
        // entropy coding precedes other steps
125
3.26M
        if (t_ptr->type == DAV1D_TASK_TYPE_TILE_ENTROPY) {
126
355k
            if (first->type > DAV1D_TASK_TYPE_TILE_ENTROPY) continue;
127
            // both are entropy
128
58.5k
            if (first->sby > t_ptr->sby) continue;
129
21.1k
            if (first->sby < t_ptr->sby) {
130
453
                insert_tasks_between(f, first, last, prev_t, t_ptr, cond_signal);
131
453
                return;
132
453
            }
133
            // same sby
134
2.91M
        } else {
135
2.91M
            if (first->type == DAV1D_TASK_TYPE_TILE_ENTROPY) {
136
101k
                insert_tasks_between(f, first, last, prev_t, t_ptr, cond_signal);
137
101k
                return;
138
101k
            }
139
2.80M
            if (first->sby > t_ptr->sby) continue;
140
482k
            if (first->sby < t_ptr->sby) {
141
93.2k
                insert_tasks_between(f, first, last, prev_t, t_ptr, cond_signal);
142
93.2k
                return;
143
93.2k
            }
144
            // same sby
145
389k
            if (first->type > t_ptr->type) continue;
146
24.5k
            if (first->type < t_ptr->type) {
147
3.13k
                insert_tasks_between(f, first, last, prev_t, t_ptr, cond_signal);
148
3.13k
                return;
149
3.13k
            }
150
            // same task type
151
24.5k
        }
152
153
        // sort by tile-id
154
42.2k
        assert(first->type == DAV1D_TASK_TYPE_TILE_RECONSTRUCTION ||
155
42.2k
               first->type == DAV1D_TASK_TYPE_TILE_ENTROPY);
156
42.2k
        assert(first->type == t_ptr->type);
157
42.2k
        assert(t_ptr->sby == first->sby);
158
42.2k
        const int p = first->type == DAV1D_TASK_TYPE_TILE_ENTROPY;
159
42.2k
        const int t_tile_idx = (int) (first - f->task_thread.tile_tasks[p]);
160
42.2k
        const int p_tile_idx = (int) (t_ptr - f->task_thread.tile_tasks[p]);
161
42.2k
        assert(t_tile_idx != p_tile_idx);
162
42.2k
        if (t_tile_idx > p_tile_idx) continue;
163
38
        insert_tasks_between(f, first, last, prev_t, t_ptr, cond_signal);
164
38
        return;
165
42.2k
    }
166
    // append at the end
167
700k
    insert_tasks_between(f, first, last, prev_t, NULL, cond_signal);
168
700k
}
169
170
static inline void insert_task(Dav1dFrameContext *const f,
171
                               Dav1dTask *const t, const int cond_signal)
172
898k
{
173
898k
    insert_tasks(f, t, t, cond_signal);
174
898k
}
175
176
202k
static inline void add_pending(Dav1dFrameContext *const f, Dav1dTask *const t) {
177
202k
    pthread_mutex_lock(&f->task_thread.pending_tasks.lock);
178
202k
    t->next = NULL;
179
202k
    if (!f->task_thread.pending_tasks.head)
180
197k
        f->task_thread.pending_tasks.head = t;
181
5.34k
    else
182
5.34k
        f->task_thread.pending_tasks.tail->next = t;
183
202k
    f->task_thread.pending_tasks.tail = t;
184
202k
    atomic_store(&f->task_thread.pending_tasks.merge, 1);
185
202k
    pthread_mutex_unlock(&f->task_thread.pending_tasks.lock);
186
202k
}
187
188
32.0M
static inline int merge_pending_frame(Dav1dFrameContext *const f) {
189
32.0M
    int const merge = atomic_load(&f->task_thread.pending_tasks.merge);
190
32.0M
    if (merge) {
191
249k
        pthread_mutex_lock(&f->task_thread.pending_tasks.lock);
192
249k
        Dav1dTask *t = f->task_thread.pending_tasks.head;
193
249k
        f->task_thread.pending_tasks.head = NULL;
194
249k
        f->task_thread.pending_tasks.tail = NULL;
195
249k
        atomic_store(&f->task_thread.pending_tasks.merge, 0);
196
249k
        pthread_mutex_unlock(&f->task_thread.pending_tasks.lock);
197
678k
        while (t) {
198
429k
            Dav1dTask *const tmp = t->next;
199
429k
            insert_task(f, t, 0);
200
429k
            t = tmp;
201
429k
        }
202
249k
    }
203
32.0M
    return merge;
204
32.0M
}
205
206
4.88M
static inline int merge_pending(const Dav1dContext *const c) {
207
4.88M
    int res = 0;
208
34.1M
    for (unsigned i = 0; i < c->n_fc; i++)
209
29.3M
        res |= merge_pending_frame(&c->fc[i]);
210
4.88M
    return res;
211
4.88M
}
212
213
static int create_filter_sbrow(Dav1dFrameContext *const f,
214
                               const int pass, Dav1dTask **res_t)
215
106k
{
216
106k
    const int has_deblock = f->frame_hdr->loopfilter.level_y[0] ||
217
47.2k
                            f->frame_hdr->loopfilter.level_y[1];
218
106k
    const int has_cdef = f->seq_hdr->cdef;
219
106k
    const int has_resize = f->frame_hdr->width[0] != f->frame_hdr->width[1];
220
106k
    const int has_lr = f->lf.restore_planes;
221
222
106k
    Dav1dTask *tasks = f->task_thread.tasks;
223
106k
    const int uses_2pass = f->c->n_fc > 1;
224
106k
    int num_tasks = f->sbh * (1 + uses_2pass);
225
106k
    if (num_tasks > f->task_thread.num_tasks) {
226
52.4k
        const size_t size = sizeof(Dav1dTask) * num_tasks;
227
52.4k
        tasks = dav1d_realloc(ALLOC_COMMON_CTX, f->task_thread.tasks, size);
228
52.4k
        if (!tasks) return -1;
229
52.4k
        memset(tasks, 0, size);
230
52.4k
        f->task_thread.tasks = tasks;
231
52.4k
        f->task_thread.num_tasks = num_tasks;
232
52.4k
    }
233
106k
    tasks += f->sbh * (pass & 1);
234
235
106k
    if (pass & 1) {
236
53.0k
        f->frame_thread.entropy_progress = 0;
237
53.0k
    } else {
238
53.0k
        const int prog_sz = ((f->sbh + 31) & ~31) >> 5;
239
53.0k
        if (prog_sz > f->frame_thread.prog_sz) {
240
52.4k
            atomic_uint *const prog = dav1d_realloc(ALLOC_COMMON_CTX, f->frame_thread.frame_progress,
241
52.4k
                                                    2 * prog_sz * sizeof(*prog));
242
52.4k
            if (!prog) return -1;
243
52.4k
            f->frame_thread.frame_progress = prog;
244
52.4k
            f->frame_thread.copy_lpf_progress = prog + prog_sz;
245
52.4k
        }
246
53.0k
        f->frame_thread.prog_sz = prog_sz;
247
53.0k
        memset(f->frame_thread.frame_progress, 0, prog_sz * sizeof(atomic_uint));
248
53.0k
        memset(f->frame_thread.copy_lpf_progress, 0, prog_sz * sizeof(atomic_uint));
249
53.0k
        atomic_store(&f->frame_thread.deblock_progress, 0);
250
53.0k
    }
251
106k
    f->frame_thread.next_tile_row[pass & 1] = 0;
252
253
106k
    Dav1dTask *t = &tasks[0];
254
106k
    t->sby = 0;
255
106k
    t->recon_progress = 1;
256
106k
    t->deblock_progress = 0;
257
106k
    t->type = pass == 1 ? DAV1D_TASK_TYPE_ENTROPY_PROGRESS :
258
106k
              has_deblock ? DAV1D_TASK_TYPE_DEBLOCK_COLS :
259
53.0k
              has_cdef || has_lr /* i.e. LR backup */ ? DAV1D_TASK_TYPE_DEBLOCK_ROWS :
260
19.7k
              has_resize ? DAV1D_TASK_TYPE_SUPER_RESOLUTION :
261
8.90k
              DAV1D_TASK_TYPE_RECONSTRUCTION_PROGRESS;
262
106k
    t->frame_idx = (int)(f - f->c->fc);
263
264
106k
    *res_t = t;
265
106k
    return 0;
266
106k
}
267
268
int dav1d_task_create_tile_sbrow(Dav1dFrameContext *const f, const int pass,
269
                                 const int cond_signal)
270
106k
{
271
106k
    Dav1dTask *tasks = f->task_thread.tile_tasks[0];
272
106k
    const int uses_2pass = f->c->n_fc > 1;
273
106k
    const int n_tasks_per_pass = f->frame_hdr->tiling.cols * f->frame_hdr->tiling.rows;
274
106k
    const int n_tasks = n_tasks_per_pass * (1 + uses_2pass);
275
106k
    if (pass < 2) {
276
53.0k
        if (n_tasks > f->task_thread.num_tile_tasks) {
277
52.4k
            const size_t size = sizeof(Dav1dTask) * n_tasks;
278
52.4k
            tasks = dav1d_realloc(ALLOC_COMMON_CTX, f->task_thread.tile_tasks[0], size);
279
52.4k
            if (!tasks) return -1;
280
52.4k
            memset(tasks, 0, size);
281
52.4k
            f->task_thread.tile_tasks[0] = tasks;
282
52.4k
            f->task_thread.num_tile_tasks = n_tasks;
283
52.4k
        }
284
53.0k
        f->task_thread.tile_tasks[1] = tasks + n_tasks_per_pass;
285
53.0k
    }
286
106k
    assert(n_tasks <= f->task_thread.num_tile_tasks);
287
288
106k
    Dav1dTask *pf_t;
289
106k
    if (create_filter_sbrow(f, pass, &pf_t))
290
0
        return -1;
291
292
106k
    Dav1dTask *const p1_tasks = f->task_thread.tile_tasks[1];
293
106k
    Dav1dTask *prev_t = NULL;
294
106k
    if (pass == 2) {
295
53.0k
        prev_t = &p1_tasks[n_tasks_per_pass - 1];
296
        // PF task is scheduled after the last sby=0 TILE task
297
53.0k
        if (f->frame_hdr->tiling.rows == 1)
298
51.4k
            prev_t = prev_t->next;
299
53.0k
    }
300
106k
    tasks += (pass & 1) * n_tasks_per_pass;
301
228k
    for (int tile_idx = 0; tile_idx < n_tasks_per_pass; tile_idx++) {
302
122k
        Dav1dTileState *const ts = &f->ts[tile_idx];
303
122k
        Dav1dTask *t = &tasks[tile_idx];
304
122k
        t->sby = ts->tiling.row_start >> f->sb_shift;
305
122k
        if (pf_t && t->sby) {
306
3.17k
            prev_t->next = pf_t;
307
3.17k
            prev_t = pf_t;
308
3.17k
            pf_t = NULL;
309
3.17k
        }
310
122k
        t->recon_progress = 0;
311
122k
        t->deblock_progress = 0;
312
122k
        t->deps_skip = 0;
313
122k
        t->type = pass != 1 ? DAV1D_TASK_TYPE_TILE_RECONSTRUCTION :
314
122k
                              DAV1D_TASK_TYPE_TILE_ENTROPY;
315
122k
        t->frame_idx = (int)(f - f->c->fc);
316
122k
        if (prev_t) prev_t->next = t;
317
122k
        prev_t = t;
318
122k
    }
319
106k
    if (pf_t) {
320
102k
        prev_t->next = pf_t;
321
102k
        prev_t = pf_t;
322
102k
    }
323
106k
    prev_t->next = NULL;
324
325
106k
    atomic_store(&f->task_thread.done[pass & 1], 0);
326
327
    // XXX in theory this could be done locklessly, at this point they are no
328
    // tasks in the frameQ, so no other runner should be using this lock, but
329
    // we must add both passes at once
330
106k
    if (!(pass & 1)) {
331
53.0k
        pthread_mutex_lock(&f->task_thread.pending_tasks.lock);
332
53.0k
        assert(f->task_thread.pending_tasks.head == NULL);
333
53.0k
        f->task_thread.pending_tasks.head = f->task_thread.tile_tasks[pass == 2];
334
53.0k
        f->task_thread.pending_tasks.tail = prev_t;
335
53.0k
        atomic_store(&f->task_thread.pending_tasks.merge, 1);
336
53.0k
        atomic_store(&f->task_thread.init_done, 1);
337
53.0k
        pthread_mutex_unlock(&f->task_thread.pending_tasks.lock);
338
53.0k
    }
339
106k
    return 0;
340
106k
}
341
342
56.0k
void dav1d_task_frame_init(Dav1dFrameContext *const f) {
343
56.0k
    const Dav1dContext *const c = f->c;
344
345
56.0k
    atomic_store(&f->task_thread.init_done, 0);
346
    // schedule init task, which will schedule the remaining tasks
347
56.0k
    Dav1dTask *const t = &f->task_thread.init_task;
348
56.0k
    t->type = DAV1D_TASK_TYPE_INIT;
349
56.0k
    t->frame_idx = (int)(f - c->fc);
350
56.0k
    t->sby = 0;
351
56.0k
    t->recon_progress = t->deblock_progress = 0;
352
56.0k
    insert_task(f, t, 1);
353
56.0k
}
354
355
void dav1d_task_delayed_fg(Dav1dContext *const c, Dav1dPicture *const out,
356
                           const Dav1dPicture *const in)
357
2.86k
{
358
2.86k
    struct TaskThreadData *const ttd = &c->task_thread;
359
2.86k
    ttd->delayed_fg.in = in;
360
2.86k
    ttd->delayed_fg.out = out;
361
2.86k
    ttd->delayed_fg.type = DAV1D_TASK_TYPE_FG_PREP;
362
2.86k
    atomic_init(&ttd->delayed_fg.progress[0], 0);
363
2.86k
    atomic_init(&ttd->delayed_fg.progress[1], 0);
364
2.86k
    pthread_mutex_lock(&ttd->lock);
365
2.86k
    ttd->delayed_fg.exec = 1;
366
2.86k
    ttd->delayed_fg.finished = 0;
367
2.86k
    pthread_cond_signal(&ttd->cond);
368
2.86k
    do {
369
2.86k
        pthread_cond_wait(&ttd->delayed_fg.cond, &ttd->lock);
370
2.86k
    } while (!ttd->delayed_fg.finished);
371
2.86k
    pthread_mutex_unlock(&ttd->lock);
372
2.86k
}
373
374
static inline int ensure_progress(struct TaskThreadData *const ttd,
375
                                  Dav1dFrameContext *const f,
376
                                  Dav1dTask *const t, const enum TaskType type,
377
                                  atomic_int *const state, int *const target)
378
107k
{
379
    // deblock_rows (non-LR portion) depends on deblock of previous sbrow,
380
    // so ensure that completed. if not, re-add to task-queue; else, fall-through
381
107k
    int p1 = atomic_load(state);
382
107k
    if (p1 < t->sby) {
383
7.78k
        t->type = type;
384
7.78k
        t->recon_progress = t->deblock_progress = 0;
385
7.78k
        *target = t->sby;
386
7.78k
        add_pending(f, t);
387
7.78k
        pthread_mutex_lock(&ttd->lock);
388
7.78k
        return 1;
389
7.78k
    }
390
99.6k
    return 0;
391
107k
}
392
393
static inline int check_tile(Dav1dTask *const t, Dav1dFrameContext *const f,
394
                             const int frame_mt)
395
844k
{
396
844k
    const int tp = t->type == DAV1D_TASK_TYPE_TILE_ENTROPY;
397
844k
    const int tile_idx = (int)(t - f->task_thread.tile_tasks[tp]);
398
844k
    Dav1dTileState *const ts = &f->ts[tile_idx];
399
844k
    const int p1 = atomic_load(&ts->progress[tp]);
400
844k
    if (p1 < t->sby) return 1;
401
658k
    int error = p1 == TILE_ERROR;
402
658k
    error |= atomic_fetch_or(&f->task_thread.error, error);
403
658k
    if (!error && frame_mt && !tp) {
404
222k
        const int p2 = atomic_load(&ts->progress[1]);
405
222k
        if (p2 <= t->sby) return 1;
406
131k
        error = p2 == TILE_ERROR;
407
131k
        error |= atomic_fetch_or(&f->task_thread.error, error);
408
131k
    }
409
567k
    if (!error && frame_mt && !IS_KEY_OR_INTRA(f->frame_hdr)) {
410
        // check reference state
411
47.9k
        const Dav1dThreadPicture *p = &f->sr_cur;
412
47.9k
        const int ss_ver = p->p.p.layout == DAV1D_PIXEL_LAYOUT_I420;
413
47.9k
        const unsigned p_b = (t->sby + 1) << (f->sb_shift + 2);
414
47.9k
        const int tile_sby = t->sby - (ts->tiling.row_start >> f->sb_shift);
415
47.9k
        const int (*const lowest_px)[2] = ts->lowest_pixel[tile_sby];
416
260k
        for (int n = t->deps_skip; n < 7; n++, t->deps_skip++) {
417
229k
            unsigned lowest;
418
229k
            if (tp) {
419
                // if temporal mv refs are disabled, we only need this
420
                // for the primary ref; if segmentation is disabled, we
421
                // don't even need that
422
131k
                lowest = p_b;
423
131k
            } else {
424
                // +8 is postfilter-induced delay
425
98.0k
                const int y = lowest_px[n][0] == INT_MIN ? INT_MIN :
426
98.0k
                              lowest_px[n][0] + 8;
427
98.0k
                const int uv = lowest_px[n][1] == INT_MIN ? INT_MIN :
428
98.0k
                               lowest_px[n][1] * (1 << ss_ver) + 8;
429
98.0k
                const int max = imax(y, uv);
430
98.0k
                if (max == INT_MIN) continue;
431
32.5k
                lowest = iclip(max, 1, f->refp[n].p.p.h);
432
32.5k
            }
433
164k
            const unsigned p3 = atomic_load(&f->refp[n].progress[!tp]);
434
164k
            if (p3 < lowest) return 1;
435
164k
            atomic_fetch_or(&f->task_thread.error, p3 == FRAME_ERROR);
436
146k
        }
437
47.9k
    }
438
550k
    return 0;
439
567k
}
440
441
static inline int get_frame_progress(const Dav1dContext *const c,
442
                                     const Dav1dFrameContext *const f)
443
253k
{
444
18.4E
    unsigned frame_prog = c->n_fc > 1 ? atomic_load(&f->sr_cur.progress[1]) : 0;
445
253k
    if (frame_prog >= FRAME_ERROR)
446
128k
        return f->sbh - 1;
447
125k
    int idx = frame_prog >> (f->sb_shift + 7);
448
125k
    int prog;
449
126k
    do {
450
126k
        atomic_uint *state = &f->frame_thread.frame_progress[idx];
451
126k
        const unsigned val = ~atomic_load(state);
452
126k
        prog = val ? ctz(val) : 32;
453
126k
        if (prog != 32) break;
454
1.36k
        prog = 0;
455
1.36k
    } while (++idx < f->frame_thread.prog_sz);
456
125k
    return ((idx << 5) | prog) - 1;
457
253k
}
458
459
2.37k
static inline void abort_frame(Dav1dFrameContext *const f, const int error) {
460
2.37k
    atomic_store(&f->task_thread.error, error == DAV1D_ERR(EINVAL) ? 1 : -1);
461
2.37k
    atomic_store(&f->task_thread.task_counter, 0);
462
2.37k
    atomic_store(&f->task_thread.done[0], 1);
463
2.37k
    atomic_store(&f->task_thread.done[1], 1);
464
2.37k
    atomic_store(&f->sr_cur.progress[0], FRAME_ERROR);
465
2.37k
    atomic_store(&f->sr_cur.progress[1], FRAME_ERROR);
466
2.37k
    dav1d_decode_frame_exit(f, error);
467
2.37k
    f->n_tile_data = 0;
468
2.37k
    pthread_cond_signal(&f->task_thread.cond);
469
2.37k
}
470
471
static inline void delayed_fg_task(const Dav1dContext *const c,
472
                                   struct TaskThreadData *const ttd)
473
16.2k
{
474
16.2k
    const Dav1dPicture *const in = ttd->delayed_fg.in;
475
16.2k
    Dav1dPicture *const out = ttd->delayed_fg.out;
476
16.2k
#if CONFIG_16BPC
477
16.2k
    int off;
478
16.2k
    if (out->p.bpc != 8)
479
8.30k
        off = (out->p.bpc >> 1) - 4;
480
16.2k
#endif
481
16.2k
    switch (ttd->delayed_fg.type) {
482
2.86k
    case DAV1D_TASK_TYPE_FG_PREP:
483
2.86k
        ttd->delayed_fg.exec = 0;
484
2.86k
        if (atomic_load(&ttd->cond_signaled))
485
8
            pthread_cond_signal(&ttd->cond);
486
2.86k
        pthread_mutex_unlock(&ttd->lock);
487
2.86k
        switch (out->p.bpc) {
488
0
#if CONFIG_8BPC
489
1.35k
        case 8:
490
1.35k
            dav1d_prep_grain_8bpc(&c->dsp[0].fg, out, in,
491
1.35k
                                  ttd->delayed_fg.scaling_8bpc,
492
1.35k
                                  ttd->delayed_fg.grain_lut_8bpc);
493
1.35k
            break;
494
0
#endif
495
0
#if CONFIG_16BPC
496
1.40k
        case 10:
497
1.51k
        case 12:
498
1.51k
            dav1d_prep_grain_16bpc(&c->dsp[off].fg, out, in,
499
1.51k
                                   ttd->delayed_fg.scaling_16bpc,
500
1.51k
                                   ttd->delayed_fg.grain_lut_16bpc);
501
1.51k
            break;
502
0
#endif
503
0
        default: abort();
504
2.86k
        }
505
2.86k
        ttd->delayed_fg.type = DAV1D_TASK_TYPE_FG_APPLY;
506
2.86k
        pthread_mutex_lock(&ttd->lock);
507
2.86k
        ttd->delayed_fg.exec = 1;
508
        // fall-through
509
16.2k
    case DAV1D_TASK_TYPE_FG_APPLY:;
510
16.2k
        int row = atomic_fetch_add(&ttd->delayed_fg.progress[0], 1);
511
16.2k
        pthread_mutex_unlock(&ttd->lock);
512
16.2k
        int progmax = (out->p.h + FG_BLOCK_SIZE - 1) / FG_BLOCK_SIZE;
513
41.1k
        while (row < progmax) {
514
27.8k
            if (row + 1 < progmax)
515
24.9k
                pthread_cond_signal(&ttd->cond);
516
2.85k
            else {
517
2.85k
                pthread_mutex_lock(&ttd->lock);
518
2.85k
                ttd->delayed_fg.exec = 0;
519
2.85k
                pthread_mutex_unlock(&ttd->lock);
520
2.85k
            }
521
27.8k
            switch (out->p.bpc) {
522
0
#if CONFIG_8BPC
523
13.7k
            case 8:
524
13.7k
                dav1d_apply_grain_row_8bpc(&c->dsp[0].fg, out, in,
525
13.7k
                                           ttd->delayed_fg.scaling_8bpc,
526
13.7k
                                           ttd->delayed_fg.grain_lut_8bpc, row);
527
13.7k
                break;
528
0
#endif
529
0
#if CONFIG_16BPC
530
13.4k
            case 10:
531
14.1k
            case 12:
532
14.1k
                dav1d_apply_grain_row_16bpc(&c->dsp[off].fg, out, in,
533
14.1k
                                            ttd->delayed_fg.scaling_16bpc,
534
14.1k
                                            ttd->delayed_fg.grain_lut_16bpc, row);
535
14.1k
                break;
536
0
#endif
537
0
            default: abort();
538
27.8k
            }
539
24.9k
            row = atomic_fetch_add(&ttd->delayed_fg.progress[0], 1);
540
24.9k
            atomic_fetch_add(&ttd->delayed_fg.progress[1], 1);
541
24.9k
        }
542
13.3k
        pthread_mutex_lock(&ttd->lock);
543
13.3k
        ttd->delayed_fg.exec = 0;
544
13.3k
        int done = atomic_fetch_add(&ttd->delayed_fg.progress[1], 1) + 1;
545
13.3k
        progmax = atomic_load(&ttd->delayed_fg.progress[0]);
546
        // signal for completion only once the last runner reaches this
547
13.3k
        if (done >= progmax) {
548
2.86k
            ttd->delayed_fg.finished = 1;
549
2.86k
            pthread_cond_signal(&ttd->delayed_fg.cond);
550
2.86k
        }
551
13.3k
        break;
552
0
    default: abort();
553
16.2k
    }
554
16.2k
}
555
556
1.25M
void *dav1d_worker_task(void *data) {
557
1.25M
    Dav1dTaskContext *const tc = data;
558
1.25M
    const Dav1dContext *const c = tc->c;
559
1.25M
    struct TaskThreadData *const ttd = tc->task_thread.ttd;
560
561
1.25M
    dav1d_set_thread_name("dav1d-worker");
562
563
1.25M
    pthread_mutex_lock(&ttd->lock);
564
4.19M
    for (;;) {
565
4.19M
        if (tc->task_thread.die) break;
566
2.93M
        if (atomic_load(c->flush)) goto park;
567
568
2.89M
        merge_pending(c);
569
2.89M
        if (ttd->delayed_fg.exec) { // run delayed film grain first
570
16.2k
            delayed_fg_task(c, ttd);
571
16.2k
            continue;
572
16.2k
        }
573
2.88M
        Dav1dFrameContext *f;
574
2.88M
        Dav1dTask *t, *prev_t = NULL;
575
2.88M
        if (c->n_fc > 1) { // run init tasks second
576
19.8M
            for (unsigned i = 0; i < c->n_fc; i++) {
577
17.0M
                const unsigned first = atomic_load(&ttd->first);
578
17.0M
                f = &c->fc[(first + i) % c->n_fc];
579
17.0M
                if (atomic_load(&f->task_thread.init_done)) continue;
580
14.8M
                t = f->task_thread.task_head;
581
14.8M
                if (!t) continue;
582
67.5k
                if (t->type == DAV1D_TASK_TYPE_INIT) goto found;
583
12.0k
                if (t->type == DAV1D_TASK_TYPE_INIT_CDF) {
584
                    // XXX This can be a simple else, if adding tasks of both
585
                    // passes at once (in dav1d_task_create_tile_sbrow).
586
                    // Adding the tasks to the pending Q can result in a
587
                    // thread merging them before setting init_done.
588
                    // We will need to set init_done before adding to the
589
                    // pending Q, so maybe return the tasks, set init_done,
590
                    // and add to pending Q only then.
591
12.0k
                    const int p1 = f->in_cdf.progress ?
592
12.0k
                        atomic_load(f->in_cdf.progress) : 1;
593
12.0k
                    if (p1) {
594
1.83k
                        atomic_fetch_or(&f->task_thread.error, p1 == TILE_ERROR);
595
1.83k
                        goto found;
596
1.83k
                    }
597
12.0k
                }
598
12.0k
            }
599
2.88M
        }
600
4.70M
        while (ttd->cur < c->n_fc) { // run decoding tasks last
601
2.70M
            const unsigned first = atomic_load(&ttd->first);
602
2.70M
            f = &c->fc[(first + ttd->cur) % c->n_fc];
603
2.70M
            merge_pending_frame(f);
604
2.70M
            prev_t = f->task_thread.task_cur_prev;
605
2.70M
            t = prev_t ? prev_t->next : f->task_thread.task_head;
606
5.56M
            while (t) {
607
3.68M
                if (t->type == DAV1D_TASK_TYPE_INIT_CDF) goto next;
608
3.68M
                else if (t->type == DAV1D_TASK_TYPE_TILE_ENTROPY ||
609
3.51M
                         t->type == DAV1D_TASK_TYPE_TILE_RECONSTRUCTION)
610
412k
                {
611
                    // if not bottom sbrow of tile, this task will be re-added
612
                    // after it's finished
613
412k
                    if (!check_tile(t, f, c->n_fc > 1))
614
304k
                        goto found;
615
3.27M
                } else if (t->recon_progress) {
616
1.03M
                    const int p = t->type == DAV1D_TASK_TYPE_ENTROPY_PROGRESS;
617
1.03M
                    int error = atomic_load(&f->task_thread.error);
618
1.03M
                    assert(!atomic_load(&f->task_thread.done[p]) || error);
619
1.03M
                    const int tile_row_base = f->frame_hdr->tiling.cols *
620
1.03M
                                              f->frame_thread.next_tile_row[p];
621
1.03M
                    if (p) {
622
421k
                        atomic_int *const prog = &f->frame_thread.entropy_progress;
623
421k
                        const int p1 = atomic_load(prog);
624
421k
                        if (p1 < t->sby) goto next;
625
421k
                        atomic_fetch_or(&f->task_thread.error, p1 == TILE_ERROR);
626
383k
                    }
627
1.54M
                    for (int tc = 0; tc < f->frame_hdr->tiling.cols; tc++) {
628
1.03M
                        Dav1dTileState *const ts = &f->ts[tile_row_base + tc];
629
1.03M
                        const int p2 = atomic_load(&ts->progress[p]);
630
1.03M
                        if (p2 < t->recon_progress) goto next;
631
1.03M
                        atomic_fetch_or(&f->task_thread.error, p2 == TILE_ERROR);
632
548k
                    }
633
510k
                    if (t->sby + 1 < f->sbh) {
634
                        // add sby+1 to list to replace this one
635
412k
                        Dav1dTask *next_t = &t[1];
636
412k
                        *next_t = *t;
637
412k
                        next_t->sby++;
638
412k
                        const int ntr = f->frame_thread.next_tile_row[p] + 1;
639
412k
                        const int start = f->frame_hdr->tiling.row_start_sb[ntr];
640
412k
                        if (next_t->sby == start)
641
6.54k
                            f->frame_thread.next_tile_row[p] = ntr;
642
412k
                        next_t->recon_progress = next_t->sby + 1;
643
412k
                        insert_task(f, next_t, 0);
644
412k
                    }
645
510k
                    goto found;
646
2.23M
                } else if (t->type == DAV1D_TASK_TYPE_CDEF) {
647
40.6k
                    atomic_uint *prog = f->frame_thread.copy_lpf_progress;
648
40.6k
                    const int p1 = atomic_load(&prog[(t->sby - 1) >> 5]);
649
40.6k
                    if (p1 & (1U << ((t->sby - 1) & 31)))
650
6.83k
                        goto found;
651
2.19M
                } else {
652
2.19M
                    assert(t->deblock_progress);
653
2.19M
                    const int p1 = atomic_load(&f->frame_thread.deblock_progress);
654
2.19M
                    if (p1 >= t->deblock_progress) {
655
7.79k
                        atomic_fetch_or(&f->task_thread.error, p1 == TILE_ERROR);
656
7.79k
                        goto found;
657
7.79k
                    }
658
2.19M
                }
659
2.85M
            next:
660
2.85M
                prev_t = t;
661
2.85M
                t = t->next;
662
2.85M
                f->task_thread.task_cur_prev = prev_t;
663
2.85M
            }
664
1.87M
            ttd->cur++;
665
1.87M
        }
666
1.99M
        if (reset_task_cur(c, ttd, UINT_MAX)) continue;
667
1.98M
        if (merge_pending(c)) continue;
668
2.02M
    park:
669
2.02M
        tc->task_thread.flushed = 1;
670
2.02M
        pthread_cond_signal(&tc->task_thread.td.cond);
671
        // we want to be woken up next time progress is signaled
672
2.02M
        atomic_store(&ttd->cond_signaled, 0);
673
2.02M
        pthread_cond_wait(&ttd->cond, &ttd->lock);
674
2.02M
        tc->task_thread.flushed = 0;
675
2.02M
        reset_task_cur(c, ttd, UINT_MAX);
676
2.02M
        continue;
677
678
886k
    found:
679
        // remove t from list
680
886k
        if (prev_t) prev_t->next = t->next;
681
733k
        else f->task_thread.task_head = t->next;
682
886k
        if (!t->next) f->task_thread.task_tail = prev_t;
683
886k
        if (t->type > DAV1D_TASK_TYPE_INIT_CDF && !f->task_thread.task_head)
684
47.6k
            ttd->cur++;
685
886k
        t->next = NULL;
686
        // we don't need to check cond_signaled here, since we found a task
687
        // after the last signal so we want to re-signal the next waiting thread
688
        // and again won't need to signal after that
689
886k
        atomic_store(&ttd->cond_signaled, 1);
690
886k
        pthread_cond_signal(&ttd->cond);
691
886k
        pthread_mutex_unlock(&ttd->lock);
692
1.18M
    found_unlocked:;
693
1.18M
        const int flush = atomic_load(c->flush);
694
1.18M
        int error = atomic_fetch_or(&f->task_thread.error, flush) | flush;
695
696
        // run it
697
1.18M
        tc->f = f;
698
1.18M
        int sby = t->sby;
699
1.18M
        switch (t->type) {
700
55.5k
        case DAV1D_TASK_TYPE_INIT: {
701
55.5k
            assert(c->n_fc > 1);
702
55.5k
            int res = dav1d_decode_frame_init(f);
703
55.5k
            int p1 = f->in_cdf.progress ? atomic_load(f->in_cdf.progress) : 1;
704
55.5k
            if (res || p1 == TILE_ERROR) {
705
71
                pthread_mutex_lock(&ttd->lock);
706
71
                abort_frame(f, res ? res : DAV1D_ERR(EINVAL));
707
71
                reset_task_cur(c, ttd, t->frame_idx);
708
55.4k
            } else {
709
55.4k
                t->type = DAV1D_TASK_TYPE_INIT_CDF;
710
55.4k
                if (p1) goto found_unlocked;
711
1.97k
                add_pending(f, t);
712
1.97k
                pthread_mutex_lock(&ttd->lock);
713
1.97k
            }
714
2.04k
            continue;
715
55.5k
        }
716
55.3k
        case DAV1D_TASK_TYPE_INIT_CDF: {
717
55.3k
            assert(c->n_fc > 1);
718
55.3k
            int res = DAV1D_ERR(EINVAL);
719
55.3k
            if (!atomic_load(&f->task_thread.error))
720
54.0k
                res = dav1d_decode_frame_init_cdf(f);
721
55.3k
            if (f->frame_hdr->refresh_context && !f->task_thread.update_set)
722
55.3k
                atomic_store(f->out_cdf.progress, res < 0 ? TILE_ERROR : 1);
723
161k
            for (int p = 1; p <= 2 && !res; p++)
724
106k
                res = dav1d_task_create_tile_sbrow(f, p, 0);
725
55.3k
            pthread_mutex_lock(&ttd->lock);
726
55.3k
            if (res) {
727
2.29k
                abort_frame(f, DAV1D_ERR(ENOMEM));
728
2.29k
                reset_task_cur(c, ttd, t->frame_idx);
729
2.29k
                atomic_store(&f->task_thread.init_done, 1);
730
2.29k
            }
731
55.3k
            continue;
732
55.3k
        }
733
277k
        case DAV1D_TASK_TYPE_TILE_ENTROPY:
734
552k
        case DAV1D_TASK_TYPE_TILE_RECONSTRUCTION: {
735
552k
            const int p = t->type == DAV1D_TASK_TYPE_TILE_ENTROPY;
736
552k
            const int tile_idx = (int)(t - f->task_thread.tile_tasks[p]);
737
552k
            Dav1dTileState *const ts = &f->ts[tile_idx];
738
739
552k
            tc->ts = ts;
740
552k
            tc->by = sby << f->sb_shift;
741
552k
            const int uses_2pass = c->n_fc > 1;
742
552k
            tc->frame_thread.pass = !uses_2pass ? 0 :
743
552k
                1 + (t->type == DAV1D_TASK_TYPE_TILE_RECONSTRUCTION);
744
552k
            if (!error) error = dav1d_decode_tile_sbrow(tc);
745
552k
            const int progress = error ? TILE_ERROR : 1 + sby;
746
747
            // signal progress
748
552k
            atomic_fetch_or(&f->task_thread.error, error);
749
552k
            if (((sby + 1) << f->sb_shift) < ts->tiling.row_end) {
750
433k
                t->sby++;
751
433k
                t->deps_skip = 0;
752
433k
                if (!check_tile(t, f, uses_2pass)) {
753
247k
                    atomic_store(&ts->progress[p], progress);
754
247k
                    reset_task_cur_async(ttd, t->frame_idx, c->n_fc);
755
247k
                    if (!atomic_fetch_or(&ttd->cond_signaled, 1))
756
73
                        pthread_cond_signal(&ttd->cond);
757
247k
                    goto found_unlocked;
758
247k
                }
759
433k
                atomic_store(&ts->progress[p], progress);
760
186k
                add_pending(f, t);
761
186k
                pthread_mutex_lock(&ttd->lock);
762
186k
            } else {
763
119k
                pthread_mutex_lock(&ttd->lock);
764
119k
                atomic_store(&ts->progress[p], progress);
765
119k
                reset_task_cur(c, ttd, t->frame_idx);
766
119k
                error = atomic_load(&f->task_thread.error);
767
119k
                if (f->frame_hdr->refresh_context &&
768
16.9k
                    tc->frame_thread.pass <= 1 && f->task_thread.update_set &&
769
8.77k
                    f->frame_hdr->tiling.update == tile_idx)
770
8.30k
                {
771
8.30k
                    if (!error)
772
6.86k
                        dav1d_cdf_thread_update(f->frame_hdr, f->out_cdf.data.cdf,
773
6.86k
                                                &f->ts[f->frame_hdr->tiling.update].cdf);
774
8.30k
                    if (c->n_fc > 1)
775
8.30k
                        atomic_store(f->out_cdf.progress, error ? TILE_ERROR : 1);
776
8.30k
                }
777
119k
                if (atomic_fetch_sub(&f->task_thread.task_counter, 1) - 1 == 0 &&
778
119k
                    atomic_load(&f->task_thread.done[0]) &&
779
965
                    (!uses_2pass || atomic_load(&f->task_thread.done[1])))
780
965
                {
781
965
                    error = atomic_load(&f->task_thread.error);
782
965
                    dav1d_decode_frame_exit(f, error == 1 ? DAV1D_ERR(EINVAL) :
783
965
                                            error ? DAV1D_ERR(ENOMEM) : 0);
784
965
                    f->n_tile_data = 0;
785
965
                    pthread_cond_signal(&f->task_thread.cond);
786
965
                }
787
119k
                assert(atomic_load(&f->task_thread.task_counter) >= 0);
788
119k
                if (!atomic_fetch_or(&ttd->cond_signaled, 1))
789
80.8k
                    pthread_cond_signal(&ttd->cond);
790
119k
            }
791
305k
            continue;
792
552k
        }
793
305k
        case DAV1D_TASK_TYPE_DEBLOCK_COLS:
794
107k
            if (!atomic_load(&f->task_thread.error))
795
70.4k
                f->bd_fn.filter_sbrow_deblock_cols(f, sby);
796
107k
            if (ensure_progress(ttd, f, t, DAV1D_TASK_TYPE_DEBLOCK_ROWS,
797
107k
                                &f->frame_thread.deblock_progress,
798
107k
                                &t->deblock_progress)) continue;
799
            // fall-through
800
187k
        case DAV1D_TASK_TYPE_DEBLOCK_ROWS:
801
187k
            if (!atomic_load(&f->task_thread.error))
802
101k
                f->bd_fn.filter_sbrow_deblock_rows(f, sby);
803
            // signal deblock progress
804
187k
            if (f->frame_hdr->loopfilter.level_y[0] ||
805
96.3k
                f->frame_hdr->loopfilter.level_y[1])
806
107k
            {
807
107k
                error = atomic_load(&f->task_thread.error);
808
107k
                atomic_store(&f->frame_thread.deblock_progress,
809
107k
                             error ? TILE_ERROR : sby + 1);
810
107k
                reset_task_cur_async(ttd, t->frame_idx, c->n_fc);
811
107k
                if (!atomic_fetch_or(&ttd->cond_signaled, 1))
812
30.1k
                    pthread_cond_signal(&ttd->cond);
813
107k
            } else if (f->seq_hdr->cdef || f->lf.restore_planes) {
814
80.3k
                atomic_fetch_or(&f->frame_thread.copy_lpf_progress[sby >> 5],
815
80.3k
                                1U << (sby & 31));
816
                // CDEF needs the top buffer to be saved by lr_copy_lpf of the
817
                // previous sbrow
818
80.3k
                if (sby) {
819
69.9k
                    int prog = atomic_load(&f->frame_thread.copy_lpf_progress[(sby - 1) >> 5]);
820
69.9k
                    if (~prog & (1U << ((sby - 1) & 31))) {
821
6.83k
                        t->type = DAV1D_TASK_TYPE_CDEF;
822
6.83k
                        t->recon_progress = t->deblock_progress = 0;
823
6.83k
                        add_pending(f, t);
824
6.83k
                        pthread_mutex_lock(&ttd->lock);
825
6.83k
                        continue;
826
6.83k
                    }
827
69.9k
                }
828
80.3k
            }
829
            // fall-through
830
187k
        case DAV1D_TASK_TYPE_CDEF:
831
187k
            if (f->seq_hdr->cdef) {
832
146k
                if (!atomic_load(&f->task_thread.error))
833
75.1k
                    f->bd_fn.filter_sbrow_cdef(tc, sby);
834
146k
                reset_task_cur_async(ttd, t->frame_idx, c->n_fc);
835
146k
                if (!atomic_fetch_or(&ttd->cond_signaled, 1))
836
27.7k
                    pthread_cond_signal(&ttd->cond);
837
146k
            }
838
            // fall-through
839
190k
        case DAV1D_TASK_TYPE_SUPER_RESOLUTION:
840
190k
            if (f->frame_hdr->width[0] != f->frame_hdr->width[1])
841
48.5k
                if (!atomic_load(&f->task_thread.error))
842
23.3k
                    f->bd_fn.filter_sbrow_resize(f, sby);
843
            // fall-through
844
190k
        case DAV1D_TASK_TYPE_LOOP_RESTORATION:
845
190k
            if (!atomic_load(&f->task_thread.error) && f->lf.restore_planes)
846
28.9k
                f->bd_fn.filter_sbrow_lr(f, sby);
847
            // fall-through
848
252k
        case DAV1D_TASK_TYPE_RECONSTRUCTION_PROGRESS:
849
            // dummy to cover for no post-filters
850
510k
        case DAV1D_TASK_TYPE_ENTROPY_PROGRESS:
851
            // dummy to convert tile progress to frame
852
510k
            break;
853
0
        default: abort();
854
1.18M
        }
855
        // if task completed [typically LR], signal picture progress as per below
856
508k
        const int uses_2pass = c->n_fc > 1;
857
508k
        const int sbh = f->sbh;
858
508k
        const int sbsz = f->sb_step * 4;
859
508k
        if (t->type == DAV1D_TASK_TYPE_ENTROPY_PROGRESS) {
860
257k
            error = atomic_load(&f->task_thread.error);
861
257k
            const unsigned y = sby + 1 == sbh ? UINT_MAX : (unsigned)(sby + 1) * sbsz;
862
257k
            assert(c->n_fc > 1);
863
257k
            if (f->sr_cur.p.data[0] /* upon flush, this can be free'ed already */)
864
257k
                atomic_store(&f->sr_cur.progress[0], error ? FRAME_ERROR : y);
865
257k
            atomic_store(&f->frame_thread.entropy_progress,
866
257k
                         error ? TILE_ERROR : sby + 1);
867
257k
            if (sby + 1 == sbh)
868
257k
                atomic_store(&f->task_thread.done[1], 1);
869
257k
            pthread_mutex_lock(&ttd->lock);
870
257k
            const int num_tasks = atomic_fetch_sub(&f->task_thread.task_counter, 1) - 1;
871
257k
            if (sby + 1 < sbh && num_tasks) {
872
205k
                reset_task_cur(c, ttd, t->frame_idx);
873
205k
                continue;
874
205k
            }
875
51.8k
            if (!num_tasks && atomic_load(&f->task_thread.done[0]) &&
876
51.8k
                atomic_load(&f->task_thread.done[1]))
877
6.84k
            {
878
6.84k
                error = atomic_load(&f->task_thread.error);
879
6.84k
                dav1d_decode_frame_exit(f, error == 1 ? DAV1D_ERR(EINVAL) :
880
6.84k
                                        error ? DAV1D_ERR(ENOMEM) : 0);
881
6.84k
                f->n_tile_data = 0;
882
6.84k
                pthread_cond_signal(&f->task_thread.cond);
883
6.84k
            }
884
51.8k
            reset_task_cur(c, ttd, t->frame_idx);
885
51.8k
            continue;
886
257k
        }
887
    // t->type != DAV1D_TASK_TYPE_ENTROPY_PROGRESS
888
508k
        atomic_fetch_or(&f->frame_thread.frame_progress[sby >> 5],
889
251k
                        1U << (sby & 31));
890
251k
        pthread_mutex_lock(&f->task_thread.lock);
891
251k
        sby = get_frame_progress(c, f);
892
251k
        error = atomic_load(&f->task_thread.error);
893
251k
        const unsigned y = sby + 1 == sbh ? UINT_MAX : (unsigned)(sby + 1) * sbsz;
894
253k
        if (c->n_fc > 1 && f->sr_cur.p.data[0] /* upon flush, this can be free'ed already */)
895
253k
            atomic_store(&f->sr_cur.progress[1], error ? FRAME_ERROR : y);
896
251k
        pthread_mutex_unlock(&f->task_thread.lock);
897
251k
        if (sby + 1 == sbh)
898
251k
            atomic_store(&f->task_thread.done[0], 1);
899
251k
        pthread_mutex_lock(&ttd->lock);
900
251k
        const int num_tasks = atomic_fetch_sub(&f->task_thread.task_counter, 1) - 1;
901
251k
        if (sby + 1 < sbh && num_tasks) {
902
84.0k
            reset_task_cur(c, ttd, t->frame_idx);
903
84.0k
            continue;
904
84.0k
        }
905
167k
        if (!num_tasks && atomic_load(&f->task_thread.done[0]) &&
906
39.4k
            (!uses_2pass || atomic_load(&f->task_thread.done[1])))
907
39.4k
        {
908
39.4k
            error = atomic_load(&f->task_thread.error);
909
39.4k
            dav1d_decode_frame_exit(f, error == 1 ? DAV1D_ERR(EINVAL) :
910
39.4k
                                    error ? DAV1D_ERR(ENOMEM) : 0);
911
39.4k
            f->n_tile_data = 0;
912
39.4k
            pthread_cond_signal(&f->task_thread.cond);
913
39.4k
        }
914
167k
        reset_task_cur(c, ttd, t->frame_idx);
915
167k
    }
916
1.25M
    pthread_mutex_unlock(&ttd->lock);
917
918
    return NULL;
919
1.25M
}