1 /*
2 * Copyright (C) 2017-2019 Lima Project
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice shall be included in
12 * all copies or substantial portions of the Software.
13 *
14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
17 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
18 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
20 * OTHER DEALINGS IN THE SOFTWARE.
21 *
22 */
23
24 #include <stdlib.h>
25 #include <string.h>
26
27 #include "xf86drm.h"
28 #include "drm-uapi/lima_drm.h"
29
30 #include "util/u_math.h"
31 #include "util/ralloc.h"
32 #include "util/os_time.h"
33 #include "util/hash_table.h"
34 #include "util/format/u_format.h"
35 #include "util/u_upload_mgr.h"
36 #include "util/u_inlines.h"
37
38 #include "lima_screen.h"
39 #include "lima_context.h"
40 #include "lima_job.h"
41 #include "lima_bo.h"
42 #include "lima_util.h"
43 #include "lima_format.h"
44 #include "lima_resource.h"
45 #include "lima_texture.h"
46 #include "lima_fence.h"
47 #include "lima_gpu.h"
48
49 #define VOID2U64(x) ((uint64_t)(unsigned long)(x))
50
51 static void
lima_get_fb_info(struct lima_job * job)52 lima_get_fb_info(struct lima_job *job)
53 {
54 struct lima_context *ctx = job->ctx;
55 struct lima_job_fb_info *fb = &job->fb;
56
57 fb->width = ctx->framebuffer.base.width;
58 fb->height = ctx->framebuffer.base.height;
59
60 int width = align(fb->width, 16) >> 4;
61 int height = align(fb->height, 16) >> 4;
62
63 struct lima_screen *screen = lima_screen(ctx->base.screen);
64
65 fb->tiled_w = width;
66 fb->tiled_h = height;
67
68 fb->shift_h = 0;
69 fb->shift_w = 0;
70
71 int limit = screen->plb_max_blk;
72 while ((width * height) > limit) {
73 if (width >= height) {
74 width = (width + 1) >> 1;
75 fb->shift_w++;
76 } else {
77 height = (height + 1) >> 1;
78 fb->shift_h++;
79 }
80 }
81
82 fb->block_w = width;
83 fb->block_h = height;
84
85 fb->shift_min = MIN3(fb->shift_w, fb->shift_h, 2);
86 }
87
88 static struct lima_job *
lima_job_create(struct lima_context * ctx)89 lima_job_create(struct lima_context *ctx)
90 {
91 struct lima_job *s;
92
93 s = rzalloc(ctx, struct lima_job);
94 if (!s)
95 return NULL;
96
97 s->fd = lima_screen(ctx->base.screen)->fd;
98 s->ctx = ctx;
99
100 s->damage_rect.minx = s->damage_rect.miny = 0xffff;
101 s->damage_rect.maxx = s->damage_rect.maxy = 0;
102
103 s->clear.depth = 0x00ffffff;
104
105 for (int i = 0; i < 2; i++) {
106 util_dynarray_init(s->gem_bos + i, s);
107 util_dynarray_init(s->bos + i, s);
108 }
109
110 util_dynarray_init(&s->vs_cmd_array, s);
111 util_dynarray_init(&s->plbu_cmd_array, s);
112 util_dynarray_init(&s->plbu_cmd_head, s);
113
114 struct lima_context_framebuffer *fb = &ctx->framebuffer;
115 pipe_surface_reference(&s->key.cbuf, fb->base.cbufs[0]);
116 pipe_surface_reference(&s->key.zsbuf, fb->base.zsbuf);
117
118 lima_get_fb_info(s);
119
120 s->dump = lima_dump_create();
121
122 return s;
123 }
124
125 static void
lima_job_free(struct lima_job * job)126 lima_job_free(struct lima_job *job)
127 {
128 struct lima_context *ctx = job->ctx;
129
130 _mesa_hash_table_remove_key(ctx->jobs, &job->key);
131
132 if (job->key.cbuf && (job->resolve & PIPE_CLEAR_COLOR0))
133 _mesa_hash_table_remove_key(ctx->write_jobs, job->key.cbuf->texture);
134 if (job->key.zsbuf && (job->resolve & (PIPE_CLEAR_DEPTH | PIPE_CLEAR_STENCIL)))
135 _mesa_hash_table_remove_key(ctx->write_jobs, job->key.zsbuf->texture);
136
137 pipe_surface_reference(&job->key.cbuf, NULL);
138 pipe_surface_reference(&job->key.zsbuf, NULL);
139
140 lima_dump_free(job->dump);
141 job->dump = NULL;
142
143 /* TODO: do we need a cache for job? */
144 ralloc_free(job);
145 }
146
147 static struct lima_job *
_lima_job_get(struct lima_context * ctx)148 _lima_job_get(struct lima_context *ctx)
149 {
150 struct lima_context_framebuffer *fb = &ctx->framebuffer;
151 struct lima_job_key local_key = {
152 .cbuf = fb->base.cbufs[0],
153 .zsbuf = fb->base.zsbuf,
154 };
155
156 struct hash_entry *entry = _mesa_hash_table_search(ctx->jobs, &local_key);
157 if (entry)
158 return entry->data;
159
160 struct lima_job *job = lima_job_create(ctx);
161 if (!job)
162 return NULL;
163
164 _mesa_hash_table_insert(ctx->jobs, &job->key, job);
165
166 return job;
167 }
168
169 /*
170 * Note: this function can only be called in draw code path,
171 * must not exist in flush code path.
172 */
173 struct lima_job *
lima_job_get(struct lima_context * ctx)174 lima_job_get(struct lima_context *ctx)
175 {
176 if (ctx->job)
177 return ctx->job;
178
179 ctx->job = _lima_job_get(ctx);
180 return ctx->job;
181 }
182
lima_job_add_bo(struct lima_job * job,int pipe,struct lima_bo * bo,uint32_t flags)183 bool lima_job_add_bo(struct lima_job *job, int pipe,
184 struct lima_bo *bo, uint32_t flags)
185 {
186 util_dynarray_foreach(job->gem_bos + pipe, struct drm_lima_gem_submit_bo, gem_bo) {
187 if (bo->handle == gem_bo->handle) {
188 gem_bo->flags |= flags;
189 return true;
190 }
191 }
192
193 struct drm_lima_gem_submit_bo *job_bo =
194 util_dynarray_grow(job->gem_bos + pipe, struct drm_lima_gem_submit_bo, 1);
195 job_bo->handle = bo->handle;
196 job_bo->flags = flags;
197
198 struct lima_bo **jbo = util_dynarray_grow(job->bos + pipe, struct lima_bo *, 1);
199 *jbo = bo;
200
201 /* prevent bo from being freed when job start */
202 lima_bo_reference(bo);
203
204 return true;
205 }
206
207 static bool
lima_job_start(struct lima_job * job,int pipe,void * frame,uint32_t size)208 lima_job_start(struct lima_job *job, int pipe, void *frame, uint32_t size)
209 {
210 struct lima_context *ctx = job->ctx;
211 struct drm_lima_gem_submit req = {
212 .ctx = ctx->id,
213 .pipe = pipe,
214 .nr_bos = job->gem_bos[pipe].size / sizeof(struct drm_lima_gem_submit_bo),
215 .bos = VOID2U64(util_dynarray_begin(job->gem_bos + pipe)),
216 .frame = VOID2U64(frame),
217 .frame_size = size,
218 .out_sync = ctx->out_sync[pipe],
219 };
220
221 if (ctx->in_sync_fd >= 0) {
222 int err = drmSyncobjImportSyncFile(job->fd, ctx->in_sync[pipe],
223 ctx->in_sync_fd);
224 if (err)
225 return false;
226
227 req.in_sync[0] = ctx->in_sync[pipe];
228 close(ctx->in_sync_fd);
229 ctx->in_sync_fd = -1;
230 }
231
232 bool ret = drmIoctl(job->fd, DRM_IOCTL_LIMA_GEM_SUBMIT, &req) == 0;
233
234 util_dynarray_foreach(job->bos + pipe, struct lima_bo *, bo) {
235 lima_bo_unreference(*bo);
236 }
237
238 return ret;
239 }
240
241 static bool
lima_job_wait(struct lima_job * job,int pipe,uint64_t timeout_ns)242 lima_job_wait(struct lima_job *job, int pipe, uint64_t timeout_ns)
243 {
244 int64_t abs_timeout = os_time_get_absolute_timeout(timeout_ns);
245 if (abs_timeout == OS_TIMEOUT_INFINITE)
246 abs_timeout = INT64_MAX;
247
248 struct lima_context *ctx = job->ctx;
249 return !drmSyncobjWait(job->fd, ctx->out_sync + pipe, 1, abs_timeout, 0, NULL);
250 }
251
252 static bool
lima_job_has_bo(struct lima_job * job,struct lima_bo * bo,bool all)253 lima_job_has_bo(struct lima_job *job, struct lima_bo *bo, bool all)
254 {
255 for (int i = 0; i < 2; i++) {
256 util_dynarray_foreach(job->gem_bos + i, struct drm_lima_gem_submit_bo, gem_bo) {
257 if (bo->handle == gem_bo->handle) {
258 if (all || gem_bo->flags & LIMA_SUBMIT_BO_WRITE)
259 return true;
260 else
261 break;
262 }
263 }
264 }
265
266 return false;
267 }
268
269 void *
lima_job_create_stream_bo(struct lima_job * job,int pipe,unsigned size,uint32_t * va)270 lima_job_create_stream_bo(struct lima_job *job, int pipe,
271 unsigned size, uint32_t *va)
272 {
273 struct lima_context *ctx = job->ctx;
274
275 void *cpu;
276 unsigned offset;
277 struct pipe_resource *pres = NULL;
278 u_upload_alloc(ctx->uploader, 0, size, 0x40, &offset, &pres, &cpu);
279
280 struct lima_resource *res = lima_resource(pres);
281 *va = res->bo->va + offset;
282
283 lima_job_add_bo(job, pipe, res->bo, LIMA_SUBMIT_BO_READ);
284
285 pipe_resource_reference(&pres, NULL);
286
287 return cpu;
288 }
289
290 static inline struct lima_damage_region *
lima_job_get_damage(struct lima_job * job)291 lima_job_get_damage(struct lima_job *job)
292 {
293 if (!(job->key.cbuf && (job->resolve & PIPE_CLEAR_COLOR0)))
294 return NULL;
295
296 struct lima_surface *surf = lima_surface(job->key.cbuf);
297 struct lima_resource *res = lima_resource(surf->base.texture);
298 return &res->damage;
299 }
300
301 static bool
lima_fb_cbuf_needs_reload(struct lima_job * job)302 lima_fb_cbuf_needs_reload(struct lima_job *job)
303 {
304 if (!(job->key.cbuf && (job->resolve & PIPE_CLEAR_COLOR0)))
305 return false;
306
307 struct lima_surface *surf = lima_surface(job->key.cbuf);
308 struct lima_resource *res = lima_resource(surf->base.texture);
309 if (res->damage.region) {
310 /* for EGL_KHR_partial_update, when EGL_EXT_buffer_age is enabled,
311 * we need to reload damage region, otherwise just want to reload
312 * the region not aligned to tile boundary */
313 //if (!res->damage.aligned)
314 // return true;
315 return true;
316 }
317 else if (surf->reload & PIPE_CLEAR_COLOR0)
318 return true;
319
320 return false;
321 }
322
323 static bool
lima_fb_zsbuf_needs_reload(struct lima_job * job)324 lima_fb_zsbuf_needs_reload(struct lima_job *job)
325 {
326 if (!(job->key.zsbuf && (job->resolve & (PIPE_CLEAR_DEPTH | PIPE_CLEAR_STENCIL))))
327 return false;
328
329 struct lima_surface *surf = lima_surface(job->key.zsbuf);
330 if (surf->reload & (PIPE_CLEAR_DEPTH | PIPE_CLEAR_STENCIL))
331 return true;
332
333 return false;
334 }
335
336 static void
lima_pack_reload_plbu_cmd(struct lima_job * job,struct pipe_surface * psurf)337 lima_pack_reload_plbu_cmd(struct lima_job *job, struct pipe_surface *psurf)
338 {
339 #define lima_reload_render_state_offset 0x0000
340 #define lima_reload_gl_pos_offset 0x0040
341 #define lima_reload_varying_offset 0x0080
342 #define lima_reload_tex_desc_offset 0x00c0
343 #define lima_reload_tex_array_offset 0x0100
344 #define lima_reload_buffer_size 0x0140
345
346 struct lima_context *ctx = job->ctx;
347 struct lima_surface *surf = lima_surface(psurf);
348
349 struct pipe_surface *cbuf = job->key.cbuf;
350 int level = cbuf->u.tex.level;
351 unsigned first_layer = cbuf->u.tex.first_layer;
352
353 uint32_t va;
354 void *cpu = lima_job_create_stream_bo(
355 job, LIMA_PIPE_PP, lima_reload_buffer_size, &va);
356
357 struct lima_screen *screen = lima_screen(ctx->base.screen);
358
359 uint32_t reload_shader_first_instr_size =
360 ((uint32_t *)(screen->pp_buffer->map + pp_reload_program_offset))[0] & 0x1f;
361 uint32_t reload_shader_va = screen->pp_buffer->va + pp_reload_program_offset;
362
363 struct lima_render_state reload_render_state = {
364 .alpha_blend = 0xf03b1ad2,
365 .depth_test = 0x0000000e,
366 .depth_range = 0xffff0000,
367 .stencil_front = 0x00000007,
368 .stencil_back = 0x00000007,
369 .multi_sample = 0x0000f007,
370 .shader_address = reload_shader_va | reload_shader_first_instr_size,
371 .varying_types = 0x00000001,
372 .textures_address = va + lima_reload_tex_array_offset,
373 .aux0 = 0x00004021,
374 .varyings_address = va + lima_reload_varying_offset,
375 };
376
377 if (util_format_is_depth_or_stencil(psurf->format)) {
378 reload_render_state.alpha_blend &= 0x0fffffff;
379 reload_render_state.depth_test |= 0x400;
380 if (surf->reload & PIPE_CLEAR_DEPTH)
381 reload_render_state.depth_test |= 0x801;
382 if (surf->reload & PIPE_CLEAR_STENCIL) {
383 reload_render_state.depth_test |= 0x1000;
384 reload_render_state.stencil_front = 0x0000024f;
385 reload_render_state.stencil_back = 0x0000024f;
386 reload_render_state.stencil_test = 0x0000ffff;
387 }
388 }
389
390 memcpy(cpu + lima_reload_render_state_offset, &reload_render_state,
391 sizeof(reload_render_state));
392
393 lima_tex_desc *td = cpu + lima_reload_tex_desc_offset;
394 memset(td, 0, lima_min_tex_desc_size);
395 lima_texture_desc_set_res(ctx, td, psurf->texture, level, level, first_layer);
396 td->format = lima_format_get_texel_reload(psurf->format);
397 td->unnorm_coords = 1;
398 td->texture_type = LIMA_TEXTURE_TYPE_2D;
399 td->min_img_filter_nearest = 1;
400 td->mag_img_filter_nearest = 1;
401 td->wrap_s_clamp_to_edge = 1;
402 td->wrap_t_clamp_to_edge = 1;
403 td->unknown_2_2 = 0x1;
404
405 uint32_t *ta = cpu + lima_reload_tex_array_offset;
406 ta[0] = va + lima_reload_tex_desc_offset;
407
408 struct lima_job_fb_info *fb = &job->fb;
409 float reload_gl_pos[] = {
410 fb->width, 0, 0, 1,
411 0, 0, 0, 1,
412 0, fb->height, 0, 1,
413 };
414 memcpy(cpu + lima_reload_gl_pos_offset, reload_gl_pos,
415 sizeof(reload_gl_pos));
416
417 float reload_varying[] = {
418 fb->width, 0, 0, 0,
419 0, fb->height, 0, 0,
420 };
421 memcpy(cpu + lima_reload_varying_offset, reload_varying,
422 sizeof(reload_varying));
423
424 PLBU_CMD_BEGIN(&job->plbu_cmd_head, 20);
425
426 PLBU_CMD_VIEWPORT_LEFT(0);
427 PLBU_CMD_VIEWPORT_RIGHT(fui(fb->width));
428 PLBU_CMD_VIEWPORT_BOTTOM(0);
429 PLBU_CMD_VIEWPORT_TOP(fui(fb->height));
430
431 PLBU_CMD_RSW_VERTEX_ARRAY(
432 va + lima_reload_render_state_offset,
433 va + lima_reload_gl_pos_offset);
434
435 PLBU_CMD_UNKNOWN2();
436 PLBU_CMD_UNKNOWN1();
437
438 PLBU_CMD_INDICES(screen->pp_buffer->va + pp_shared_index_offset);
439 PLBU_CMD_INDEXED_DEST(va + lima_reload_gl_pos_offset);
440 PLBU_CMD_DRAW_ELEMENTS(0xf, 0, 3);
441
442 PLBU_CMD_END();
443 }
444
445 static void
lima_pack_head_plbu_cmd(struct lima_job * job)446 lima_pack_head_plbu_cmd(struct lima_job *job)
447 {
448 struct lima_context *ctx = job->ctx;
449 struct lima_job_fb_info *fb = &job->fb;
450
451 PLBU_CMD_BEGIN(&job->plbu_cmd_head, 10);
452
453 PLBU_CMD_UNKNOWN2();
454 PLBU_CMD_BLOCK_STEP(fb->shift_min, fb->shift_h, fb->shift_w);
455 PLBU_CMD_TILED_DIMENSIONS(fb->tiled_w, fb->tiled_h);
456 PLBU_CMD_BLOCK_STRIDE(fb->block_w);
457
458 PLBU_CMD_ARRAY_ADDRESS(
459 ctx->plb_gp_stream->va + ctx->plb_index * ctx->plb_gp_size,
460 fb->block_w * fb->block_h);
461
462 PLBU_CMD_END();
463
464 if (lima_fb_cbuf_needs_reload(job))
465 lima_pack_reload_plbu_cmd(job, job->key.cbuf);
466
467 if (lima_fb_zsbuf_needs_reload(job))
468 lima_pack_reload_plbu_cmd(job, job->key.zsbuf);
469 }
470
471 static void
hilbert_rotate(int n,int * x,int * y,int rx,int ry)472 hilbert_rotate(int n, int *x, int *y, int rx, int ry)
473 {
474 if (ry == 0) {
475 if (rx == 1) {
476 *x = n-1 - *x;
477 *y = n-1 - *y;
478 }
479
480 /* Swap x and y */
481 int t = *x;
482 *x = *y;
483 *y = t;
484 }
485 }
486
487 static void
hilbert_coords(int n,int d,int * x,int * y)488 hilbert_coords(int n, int d, int *x, int *y)
489 {
490 int rx, ry, i, t=d;
491
492 *x = *y = 0;
493
494 for (i = 0; (1 << i) < n; i++) {
495
496 rx = 1 & (t / 2);
497 ry = 1 & (t ^ rx);
498
499 hilbert_rotate(1 << i, x, y, rx, ry);
500
501 *x += rx << i;
502 *y += ry << i;
503
504 t /= 4;
505 }
506 }
507
508 static int
lima_get_pp_stream_size(int num_pp,int tiled_w,int tiled_h,uint32_t * off)509 lima_get_pp_stream_size(int num_pp, int tiled_w, int tiled_h, uint32_t *off)
510 {
511 /* carefully calculate each stream start address:
512 * 1. overflow: each stream size may be different due to
513 * fb->tiled_w * fb->tiled_h can't be divided by num_pp,
514 * extra size should be added to the preceeding stream
515 * 2. alignment: each stream address should be 0x20 aligned
516 */
517 int delta = tiled_w * tiled_h / num_pp * 16 + 16;
518 int remain = tiled_w * tiled_h % num_pp;
519 int offset = 0;
520
521 for (int i = 0; i < num_pp; i++) {
522 off[i] = offset;
523
524 offset += delta;
525 if (remain) {
526 offset += 16;
527 remain--;
528 }
529 offset = align(offset, 0x20);
530 }
531
532 return offset;
533 }
534
535 static void
lima_generate_pp_stream(struct lima_job * job,int off_x,int off_y,int tiled_w,int tiled_h)536 lima_generate_pp_stream(struct lima_job *job, int off_x, int off_y,
537 int tiled_w, int tiled_h)
538 {
539 struct lima_context *ctx = job->ctx;
540 struct lima_pp_stream_state *ps = &ctx->pp_stream;
541 struct lima_job_fb_info *fb = &job->fb;
542 struct lima_screen *screen = lima_screen(ctx->base.screen);
543 int i, num_pp = screen->num_pp;
544
545 /* use hilbert_coords to generates 1D to 2D relationship.
546 * 1D for pp stream index and 2D for plb block x/y on framebuffer.
547 * if multi pp, interleave the 1D index to make each pp's render target
548 * close enough which should result close workload
549 */
550 int max = MAX2(tiled_w, tiled_h);
551 int index = 0;
552 uint32_t *stream[4];
553 int si[4] = {0};
554 int dim = 0;
555 int count = 0;
556
557 /* Don't update count if we get zero rect. We'll just generate
558 * PP stream with just terminators in it.
559 */
560 if ((tiled_w * tiled_h) != 0) {
561 dim = util_logbase2_ceil(max);
562 count = 1 << (dim + dim);
563 }
564
565 for (i = 0; i < num_pp; i++)
566 stream[i] = ps->map + ps->offset[i];
567
568 for (i = 0; i < count; i++) {
569 int x, y;
570 hilbert_coords(max, i, &x, &y);
571 if (x < tiled_w && y < tiled_h) {
572 x += off_x;
573 y += off_y;
574
575 int pp = index % num_pp;
576 int offset = ((y >> fb->shift_h) * fb->block_w +
577 (x >> fb->shift_w)) * LIMA_CTX_PLB_BLK_SIZE;
578 int plb_va = ctx->plb[ctx->plb_index]->va + offset;
579
580 stream[pp][si[pp]++] = 0;
581 stream[pp][si[pp]++] = 0xB8000000 | x | (y << 8);
582 stream[pp][si[pp]++] = 0xE0000002 | ((plb_va >> 3) & ~0xE0000003);
583 stream[pp][si[pp]++] = 0xB0000000;
584
585 index++;
586 }
587 }
588
589 for (i = 0; i < num_pp; i++) {
590 stream[i][si[i]++] = 0;
591 stream[i][si[i]++] = 0xBC000000;
592 stream[i][si[i]++] = 0;
593 stream[i][si[i]++] = 0;
594
595 lima_dump_command_stream_print(
596 job->dump, stream[i], si[i] * 4,
597 false, "pp plb stream %d at va %x\n",
598 i, ps->va + ps->offset[i]);
599 }
600 }
601
602 static void
lima_free_stale_pp_stream_bo(struct lima_context * ctx)603 lima_free_stale_pp_stream_bo(struct lima_context *ctx)
604 {
605 list_for_each_entry_safe(struct lima_ctx_plb_pp_stream, entry,
606 &ctx->plb_pp_stream_lru_list, lru_list) {
607 if (ctx->plb_stream_cache_size <= lima_plb_pp_stream_cache_size)
608 break;
609
610 struct hash_entry *hash_entry =
611 _mesa_hash_table_search(ctx->plb_pp_stream, &entry->key);
612 if (hash_entry)
613 _mesa_hash_table_remove(ctx->plb_pp_stream, hash_entry);
614 list_del(&entry->lru_list);
615
616 ctx->plb_stream_cache_size -= entry->bo->size;
617 lima_bo_unreference(entry->bo);
618
619 ralloc_free(entry);
620 }
621 }
622
623 static void
lima_update_damage_pp_stream(struct lima_job * job)624 lima_update_damage_pp_stream(struct lima_job *job)
625 {
626 struct lima_context *ctx = job->ctx;
627 struct lima_damage_region *ds = lima_job_get_damage(job);
628 struct lima_job_fb_info *fb = &job->fb;
629 struct pipe_scissor_state bound;
630 struct pipe_scissor_state *dr = &job->damage_rect;
631
632 if (ds && ds->region) {
633 struct pipe_scissor_state *dbound = &ds->bound;
634 bound.minx = MAX2(dbound->minx, dr->minx >> 4);
635 bound.miny = MAX2(dbound->miny, dr->miny >> 4);
636 bound.maxx = MIN2(dbound->maxx, (dr->maxx + 0xf) >> 4);
637 bound.maxy = MIN2(dbound->maxy, (dr->maxy + 0xf) >> 4);
638 } else {
639 bound.minx = dr->minx >> 4;
640 bound.miny = dr->miny >> 4;
641 bound.maxx = (dr->maxx + 0xf) >> 4;
642 bound.maxy = (dr->maxy + 0xf) >> 4;
643 }
644
645 /* Clamp to FB size */
646 bound.minx = MIN2(bound.minx, fb->tiled_w);
647 bound.miny = MIN2(bound.miny, fb->tiled_h);
648 bound.maxx = MIN2(bound.maxx, fb->tiled_w);
649 bound.maxy = MIN2(bound.maxy, fb->tiled_h);
650
651 struct lima_ctx_plb_pp_stream_key key = {
652 .plb_index = ctx->plb_index,
653 .minx = bound.minx,
654 .miny = bound.miny,
655 .maxx = bound.maxx,
656 .maxy = bound.maxy,
657 .shift_w = fb->shift_w,
658 .shift_h = fb->shift_h,
659 .block_w = fb->block_w,
660 .block_h = fb->block_h,
661 };
662
663 struct hash_entry *entry =
664 _mesa_hash_table_search(ctx->plb_pp_stream, &key);
665 if (entry) {
666 struct lima_ctx_plb_pp_stream *s = entry->data;
667
668 list_del(&s->lru_list);
669 list_addtail(&s->lru_list, &ctx->plb_pp_stream_lru_list);
670
671 ctx->pp_stream.map = lima_bo_map(s->bo);
672 ctx->pp_stream.va = s->bo->va;
673 memcpy(ctx->pp_stream.offset, s->offset, sizeof(s->offset));
674
675 lima_job_add_bo(job, LIMA_PIPE_PP, s->bo, LIMA_SUBMIT_BO_READ);
676
677 return;
678 }
679
680 lima_free_stale_pp_stream_bo(ctx);
681
682 struct lima_screen *screen = lima_screen(ctx->base.screen);
683 struct lima_ctx_plb_pp_stream *s =
684 rzalloc(ctx->plb_pp_stream, struct lima_ctx_plb_pp_stream);
685
686 list_inithead(&s->lru_list);
687 s->key.plb_index = ctx->plb_index;
688 s->key.minx = bound.minx;
689 s->key.maxx = bound.maxx;
690 s->key.miny = bound.miny;
691 s->key.maxy = bound.maxy;
692 s->key.shift_w = fb->shift_w;
693 s->key.shift_h = fb->shift_h;
694 s->key.block_w = fb->block_w;
695 s->key.block_h = fb->block_h;
696
697 int tiled_w = bound.maxx - bound.minx;
698 int tiled_h = bound.maxy - bound.miny;
699 int size = lima_get_pp_stream_size(
700 screen->num_pp, tiled_w, tiled_h, s->offset);
701
702 s->bo = lima_bo_create(screen, size, 0);
703
704 ctx->pp_stream.map = lima_bo_map(s->bo);
705 ctx->pp_stream.va = s->bo->va;
706 memcpy(ctx->pp_stream.offset, s->offset, sizeof(s->offset));
707
708 lima_generate_pp_stream(job, bound.minx, bound.miny, tiled_w, tiled_h);
709
710 ctx->plb_stream_cache_size += size;
711 list_addtail(&s->lru_list, &ctx->plb_pp_stream_lru_list);
712 _mesa_hash_table_insert(ctx->plb_pp_stream, &s->key, s);
713
714 lima_job_add_bo(job, LIMA_PIPE_PP, s->bo, LIMA_SUBMIT_BO_READ);
715 }
716
717 static bool
lima_damage_fullscreen(struct lima_job * job)718 lima_damage_fullscreen(struct lima_job *job)
719 {
720 struct pipe_scissor_state *dr = &job->damage_rect;
721
722 return dr->minx == 0 &&
723 dr->miny == 0 &&
724 dr->maxx == job->fb.width &&
725 dr->maxy == job->fb.height;
726 }
727
728 static void
lima_update_pp_stream(struct lima_job * job)729 lima_update_pp_stream(struct lima_job *job)
730 {
731 struct lima_context *ctx = job->ctx;
732 struct lima_screen *screen = lima_screen(ctx->base.screen);
733 struct lima_damage_region *damage = lima_job_get_damage(job);
734 if ((screen->gpu_type == DRM_LIMA_PARAM_GPU_ID_MALI400) ||
735 (damage && damage->region) || !lima_damage_fullscreen(job))
736 lima_update_damage_pp_stream(job);
737 else
738 /* Mali450 doesn't need full PP stream */
739 ctx->pp_stream.map = NULL;
740 }
741
742 static void
lima_update_job_bo(struct lima_job * job)743 lima_update_job_bo(struct lima_job *job)
744 {
745 struct lima_context *ctx = job->ctx;
746
747 lima_job_add_bo(job, LIMA_PIPE_GP, ctx->plb_gp_stream,
748 LIMA_SUBMIT_BO_READ);
749 lima_job_add_bo(job, LIMA_PIPE_GP, ctx->plb[ctx->plb_index],
750 LIMA_SUBMIT_BO_WRITE);
751 lima_job_add_bo(job, LIMA_PIPE_GP, ctx->gp_tile_heap[ctx->plb_index],
752 LIMA_SUBMIT_BO_WRITE);
753
754 lima_dump_command_stream_print(
755 job->dump, ctx->plb_gp_stream->map + ctx->plb_index * ctx->plb_gp_size,
756 ctx->plb_gp_size, false, "gp plb stream at va %x\n",
757 ctx->plb_gp_stream->va + ctx->plb_index * ctx->plb_gp_size);
758
759 lima_job_add_bo(job, LIMA_PIPE_PP, ctx->plb[ctx->plb_index],
760 LIMA_SUBMIT_BO_READ);
761 lima_job_add_bo(job, LIMA_PIPE_PP, ctx->gp_tile_heap[ctx->plb_index],
762 LIMA_SUBMIT_BO_READ);
763
764 struct lima_screen *screen = lima_screen(ctx->base.screen);
765 lima_job_add_bo(job, LIMA_PIPE_PP, screen->pp_buffer, LIMA_SUBMIT_BO_READ);
766 }
767
768 static void
lima_finish_plbu_cmd(struct util_dynarray * plbu_cmd_array)769 lima_finish_plbu_cmd(struct util_dynarray *plbu_cmd_array)
770 {
771 int i = 0;
772 uint32_t *plbu_cmd = util_dynarray_ensure_cap(plbu_cmd_array, plbu_cmd_array->size + 2 * 4);
773
774 plbu_cmd[i++] = 0x00000000;
775 plbu_cmd[i++] = 0x50000000; /* END */
776
777 plbu_cmd_array->size += i * 4;
778 }
779
780 static void
lima_pack_wb_zsbuf_reg(struct lima_job * job,uint32_t * wb_reg,int wb_idx)781 lima_pack_wb_zsbuf_reg(struct lima_job *job, uint32_t *wb_reg, int wb_idx)
782 {
783 struct lima_job_fb_info *fb = &job->fb;
784 struct pipe_surface *zsbuf = job->key.zsbuf;
785 struct lima_resource *res = lima_resource(zsbuf->texture);
786 int level = zsbuf->u.tex.level;
787 uint32_t format = lima_format_get_pixel(zsbuf->format);
788
789 struct lima_pp_wb_reg *wb = (void *)wb_reg;
790 wb[wb_idx].type = 0x01; /* 1 for depth, stencil */
791 wb[wb_idx].address = res->bo->va + res->levels[level].offset;
792 wb[wb_idx].pixel_format = format;
793 if (res->tiled) {
794 wb[wb_idx].pixel_layout = 0x2;
795 wb[wb_idx].pitch = fb->tiled_w;
796 } else {
797 wb[wb_idx].pixel_layout = 0x0;
798 wb[wb_idx].pitch = res->levels[level].stride / 8;
799 }
800 wb[wb_idx].mrt_bits = 0;
801 }
802
803 static void
lima_pack_wb_cbuf_reg(struct lima_job * job,uint32_t * frame_reg,uint32_t * wb_reg,int wb_idx)804 lima_pack_wb_cbuf_reg(struct lima_job *job, uint32_t *frame_reg,
805 uint32_t *wb_reg, int wb_idx)
806 {
807 struct lima_job_fb_info *fb = &job->fb;
808 struct pipe_surface *cbuf = job->key.cbuf;
809 struct lima_resource *res = lima_resource(cbuf->texture);
810 int level = cbuf->u.tex.level;
811 unsigned layer = cbuf->u.tex.first_layer;
812 uint32_t format = lima_format_get_pixel(cbuf->format);
813 bool swap_channels = lima_format_get_pixel_swap_rb(cbuf->format);
814
815 struct lima_pp_frame_reg *frame = (void *)frame_reg;
816 frame->channel_layout = lima_format_get_channel_layout(cbuf->format);
817
818 struct lima_pp_wb_reg *wb = (void *)wb_reg;
819 wb[wb_idx].type = 0x02; /* 2 for color buffer */
820 wb[wb_idx].address = res->bo->va + res->levels[level].offset + layer * res->levels[level].layer_stride;
821 wb[wb_idx].pixel_format = format;
822 if (res->tiled) {
823 wb[wb_idx].pixel_layout = 0x2;
824 wb[wb_idx].pitch = fb->tiled_w;
825 } else {
826 wb[wb_idx].pixel_layout = 0x0;
827 wb[wb_idx].pitch = res->levels[level].stride / 8;
828 }
829 wb[wb_idx].mrt_bits = swap_channels ? 0x4 : 0x0;
830 }
831
832 static void
lima_pack_pp_frame_reg(struct lima_job * job,uint32_t * frame_reg,uint32_t * wb_reg)833 lima_pack_pp_frame_reg(struct lima_job *job, uint32_t *frame_reg,
834 uint32_t *wb_reg)
835 {
836 struct lima_context *ctx = job->ctx;
837 struct lima_job_fb_info *fb = &job->fb;
838 struct lima_pp_frame_reg *frame = (void *)frame_reg;
839 struct lima_screen *screen = lima_screen(ctx->base.screen);
840 int wb_idx = 0;
841
842 frame->render_address = screen->pp_buffer->va + pp_frame_rsw_offset;
843 frame->flags = 0x02;
844 frame->clear_value_depth = job->clear.depth;
845 frame->clear_value_stencil = job->clear.stencil;
846 frame->clear_value_color = job->clear.color_8pc;
847 frame->clear_value_color_1 = job->clear.color_8pc;
848 frame->clear_value_color_2 = job->clear.color_8pc;
849 frame->clear_value_color_3 = job->clear.color_8pc;
850 frame->one = 1;
851
852 frame->width = fb->width - 1;
853 frame->height = fb->height - 1;
854
855 /* frame->fragment_stack_address is overwritten per-pp in the kernel
856 * by the values of pp_frame.fragment_stack_address[i] */
857
858 /* These are "stack size" and "stack offset" shifted,
859 * here they are assumed to be always the same. */
860 frame->fragment_stack_size = job->pp_max_stack_size << 16 | job->pp_max_stack_size;
861
862 /* related with MSAA and different value when r4p0/r7p0 */
863 frame->supersampled_height = fb->height * 2 - 1;
864 frame->scale = 0xE0C;
865
866 frame->dubya = 0x77;
867 frame->onscreen = 1;
868 frame->blocking = (fb->shift_min << 28) | (fb->shift_h << 16) | fb->shift_w;
869
870 /* Set default layout to 8888 */
871 frame->channel_layout = 0x8888;
872
873 if (job->key.cbuf && (job->resolve & PIPE_CLEAR_COLOR0))
874 lima_pack_wb_cbuf_reg(job, frame_reg, wb_reg, wb_idx++);
875
876 if (job->key.zsbuf &&
877 (job->resolve & (PIPE_CLEAR_DEPTH | PIPE_CLEAR_STENCIL)))
878 lima_pack_wb_zsbuf_reg(job, wb_reg, wb_idx++);
879 }
880
881 void
lima_do_job(struct lima_job * job)882 lima_do_job(struct lima_job *job)
883 {
884 #define pp_stack_pp_size 0x400
885
886 struct lima_context *ctx = job->ctx;
887
888 lima_pack_head_plbu_cmd(job);
889 lima_finish_plbu_cmd(&job->plbu_cmd_array);
890
891 lima_update_job_bo(job);
892
893 int vs_cmd_size = job->vs_cmd_array.size;
894 uint32_t vs_cmd_va = 0;
895
896 if (vs_cmd_size) {
897 void *vs_cmd = lima_job_create_stream_bo(
898 job, LIMA_PIPE_GP, vs_cmd_size, &vs_cmd_va);
899 memcpy(vs_cmd, util_dynarray_begin(&job->vs_cmd_array), vs_cmd_size);
900
901 lima_dump_command_stream_print(
902 job->dump, vs_cmd, vs_cmd_size, false, "flush vs cmd at va %x\n", vs_cmd_va);
903 lima_dump_vs_command_stream_print(job->dump, vs_cmd, vs_cmd_size, vs_cmd_va);
904 }
905
906 uint32_t plbu_cmd_va;
907 int plbu_cmd_size = job->plbu_cmd_array.size + job->plbu_cmd_head.size;
908 void *plbu_cmd = lima_job_create_stream_bo(
909 job, LIMA_PIPE_GP, plbu_cmd_size, &plbu_cmd_va);
910 memcpy(plbu_cmd,
911 util_dynarray_begin(&job->plbu_cmd_head),
912 job->plbu_cmd_head.size);
913 memcpy(plbu_cmd + job->plbu_cmd_head.size,
914 util_dynarray_begin(&job->plbu_cmd_array),
915 job->plbu_cmd_array.size);
916
917 lima_dump_command_stream_print(
918 job->dump, plbu_cmd, plbu_cmd_size, false, "flush plbu cmd at va %x\n", plbu_cmd_va);
919 lima_dump_plbu_command_stream_print(job->dump, plbu_cmd, plbu_cmd_size, plbu_cmd_va);
920
921 struct lima_screen *screen = lima_screen(ctx->base.screen);
922 struct drm_lima_gp_frame gp_frame;
923 struct lima_gp_frame_reg *gp_frame_reg = (void *)gp_frame.frame;
924 gp_frame_reg->vs_cmd_start = vs_cmd_va;
925 gp_frame_reg->vs_cmd_end = vs_cmd_va + vs_cmd_size;
926 gp_frame_reg->plbu_cmd_start = plbu_cmd_va;
927 gp_frame_reg->plbu_cmd_end = plbu_cmd_va + plbu_cmd_size;
928 gp_frame_reg->tile_heap_start = ctx->gp_tile_heap[ctx->plb_index]->va;
929 gp_frame_reg->tile_heap_end = ctx->gp_tile_heap[ctx->plb_index]->va + ctx->gp_tile_heap_size;
930
931 lima_dump_command_stream_print(
932 job->dump, &gp_frame, sizeof(gp_frame), false, "add gp frame\n");
933
934 if (!lima_job_start(job, LIMA_PIPE_GP, &gp_frame, sizeof(gp_frame)))
935 fprintf(stderr, "gp job error\n");
936
937 if (job->dump) {
938 if (lima_job_wait(job, LIMA_PIPE_GP, PIPE_TIMEOUT_INFINITE)) {
939 if (ctx->gp_output) {
940 float *pos = lima_bo_map(ctx->gp_output);
941 lima_dump_command_stream_print(
942 job->dump, pos, 4 * 4 * 16, true, "gl_pos dump at va %x\n",
943 ctx->gp_output->va);
944 }
945
946 uint32_t *plb = lima_bo_map(ctx->plb[ctx->plb_index]);
947 lima_dump_command_stream_print(
948 job->dump, plb, LIMA_CTX_PLB_BLK_SIZE, false, "plb dump at va %x\n",
949 ctx->plb[ctx->plb_index]->va);
950 }
951 else {
952 fprintf(stderr, "gp job wait error\n");
953 exit(1);
954 }
955 }
956
957 uint32_t pp_stack_va = 0;
958 if (job->pp_max_stack_size) {
959 lima_job_create_stream_bo(
960 job, LIMA_PIPE_PP,
961 screen->num_pp * job->pp_max_stack_size * pp_stack_pp_size,
962 &pp_stack_va);
963 }
964
965 lima_update_pp_stream(job);
966
967 struct lima_pp_stream_state *ps = &ctx->pp_stream;
968 if (screen->gpu_type == DRM_LIMA_PARAM_GPU_ID_MALI400) {
969 struct drm_lima_m400_pp_frame pp_frame = {0};
970 lima_pack_pp_frame_reg(job, pp_frame.frame, pp_frame.wb);
971 pp_frame.num_pp = screen->num_pp;
972
973 for (int i = 0; i < screen->num_pp; i++) {
974 pp_frame.plbu_array_address[i] = ps->va + ps->offset[i];
975 if (job->pp_max_stack_size)
976 pp_frame.fragment_stack_address[i] = pp_stack_va +
977 job->pp_max_stack_size * pp_stack_pp_size * i;
978 }
979
980 lima_dump_command_stream_print(
981 job->dump, &pp_frame, sizeof(pp_frame), false, "add pp frame\n");
982
983 if (!lima_job_start(job, LIMA_PIPE_PP, &pp_frame, sizeof(pp_frame)))
984 fprintf(stderr, "pp job error\n");
985 }
986 else {
987 struct drm_lima_m450_pp_frame pp_frame = {0};
988 lima_pack_pp_frame_reg(job, pp_frame.frame, pp_frame.wb);
989 pp_frame.num_pp = screen->num_pp;
990
991 if (job->pp_max_stack_size)
992 for (int i = 0; i < screen->num_pp; i++)
993 pp_frame.fragment_stack_address[i] = pp_stack_va +
994 job->pp_max_stack_size * pp_stack_pp_size * i;
995
996 if (ps->map) {
997 for (int i = 0; i < screen->num_pp; i++)
998 pp_frame.plbu_array_address[i] = ps->va + ps->offset[i];
999 }
1000 else {
1001 pp_frame.use_dlbu = true;
1002
1003 struct lima_job_fb_info *fb = &job->fb;
1004 pp_frame.dlbu_regs[0] = ctx->plb[ctx->plb_index]->va;
1005 pp_frame.dlbu_regs[1] = ((fb->tiled_h - 1) << 16) | (fb->tiled_w - 1);
1006 unsigned s = util_logbase2(LIMA_CTX_PLB_BLK_SIZE) - 7;
1007 pp_frame.dlbu_regs[2] = (s << 28) | (fb->shift_h << 16) | fb->shift_w;
1008 pp_frame.dlbu_regs[3] = ((fb->tiled_h - 1) << 24) | ((fb->tiled_w - 1) << 16);
1009 }
1010
1011 lima_dump_command_stream_print(
1012 job->dump, &pp_frame, sizeof(pp_frame), false, "add pp frame\n");
1013
1014 if (!lima_job_start(job, LIMA_PIPE_PP, &pp_frame, sizeof(pp_frame)))
1015 fprintf(stderr, "pp job error\n");
1016 }
1017
1018 if (job->dump) {
1019 if (!lima_job_wait(job, LIMA_PIPE_PP, PIPE_TIMEOUT_INFINITE)) {
1020 fprintf(stderr, "pp wait error\n");
1021 exit(1);
1022 }
1023 }
1024
1025 ctx->plb_index = (ctx->plb_index + 1) % lima_ctx_num_plb;
1026
1027 /* Set reload flags for next draw. It'll be unset if buffer is cleared */
1028 if (job->key.cbuf && (job->resolve & PIPE_CLEAR_COLOR0)) {
1029 struct lima_surface *surf = lima_surface(job->key.cbuf);
1030 surf->reload = PIPE_CLEAR_COLOR0;
1031 }
1032
1033 if (job->key.zsbuf && (job->resolve & (PIPE_CLEAR_DEPTH | PIPE_CLEAR_STENCIL))) {
1034 struct lima_surface *surf = lima_surface(job->key.zsbuf);
1035 surf->reload = (job->resolve & (PIPE_CLEAR_DEPTH | PIPE_CLEAR_STENCIL));
1036 }
1037
1038 if (ctx->job == job)
1039 ctx->job = NULL;
1040
1041 lima_job_free(job);
1042 }
1043
1044 void
lima_flush(struct lima_context * ctx)1045 lima_flush(struct lima_context *ctx)
1046 {
1047 hash_table_foreach(ctx->jobs, entry) {
1048 struct lima_job *job = entry->data;
1049 lima_do_job(job);
1050 }
1051 }
1052
1053 void
lima_flush_job_accessing_bo(struct lima_context * ctx,struct lima_bo * bo,bool write)1054 lima_flush_job_accessing_bo(
1055 struct lima_context *ctx, struct lima_bo *bo, bool write)
1056 {
1057 hash_table_foreach(ctx->jobs, entry) {
1058 struct lima_job *job = entry->data;
1059 if (lima_job_has_bo(job, bo, write))
1060 lima_do_job(job);
1061 }
1062 }
1063
1064 /*
1065 * This is for current job flush previous job which write to the resource it wants
1066 * to read. Tipical usage is flush the FBO which is used as current task's texture.
1067 */
1068 void
lima_flush_previous_job_writing_resource(struct lima_context * ctx,struct pipe_resource * prsc)1069 lima_flush_previous_job_writing_resource(
1070 struct lima_context *ctx, struct pipe_resource *prsc)
1071 {
1072 struct hash_entry *entry = _mesa_hash_table_search(ctx->write_jobs, prsc);
1073
1074 if (entry) {
1075 struct lima_job *job = entry->data;
1076
1077 /* do not flush current job */
1078 if (job != ctx->job)
1079 lima_do_job(job);
1080 }
1081 }
1082
1083 static void
lima_pipe_flush(struct pipe_context * pctx,struct pipe_fence_handle ** fence,unsigned flags)1084 lima_pipe_flush(struct pipe_context *pctx, struct pipe_fence_handle **fence,
1085 unsigned flags)
1086 {
1087 struct lima_context *ctx = lima_context(pctx);
1088
1089 lima_flush(ctx);
1090
1091 if (fence) {
1092 int drm_fd = lima_screen(ctx->base.screen)->fd;
1093 int fd;
1094
1095 if (!drmSyncobjExportSyncFile(drm_fd, ctx->out_sync[LIMA_PIPE_PP], &fd))
1096 *fence = lima_fence_create(fd);
1097 }
1098 }
1099
1100 static bool
lima_job_compare(const void * s1,const void * s2)1101 lima_job_compare(const void *s1, const void *s2)
1102 {
1103 return memcmp(s1, s2, sizeof(struct lima_job_key)) == 0;
1104 }
1105
1106 static uint32_t
lima_job_hash(const void * key)1107 lima_job_hash(const void *key)
1108 {
1109 return _mesa_hash_data(key, sizeof(struct lima_job_key));
1110 }
1111
lima_job_init(struct lima_context * ctx)1112 bool lima_job_init(struct lima_context *ctx)
1113 {
1114 int fd = lima_screen(ctx->base.screen)->fd;
1115
1116 ctx->jobs = _mesa_hash_table_create(ctx, lima_job_hash, lima_job_compare);
1117 if (!ctx->jobs)
1118 return false;
1119
1120 ctx->write_jobs = _mesa_hash_table_create(
1121 ctx, _mesa_hash_pointer, _mesa_key_pointer_equal);
1122 if (!ctx->write_jobs)
1123 return false;
1124
1125 ctx->in_sync_fd = -1;
1126
1127 for (int i = 0; i < 2; i++) {
1128 if (drmSyncobjCreate(fd, DRM_SYNCOBJ_CREATE_SIGNALED, ctx->in_sync + i) ||
1129 drmSyncobjCreate(fd, DRM_SYNCOBJ_CREATE_SIGNALED, ctx->out_sync + i))
1130 return false;
1131 }
1132
1133 ctx->base.flush = lima_pipe_flush;
1134
1135 return true;
1136 }
1137
lima_job_fini(struct lima_context * ctx)1138 void lima_job_fini(struct lima_context *ctx)
1139 {
1140 int fd = lima_screen(ctx->base.screen)->fd;
1141
1142 lima_flush(ctx);
1143
1144 for (int i = 0; i < 2; i++) {
1145 if (ctx->in_sync[i])
1146 drmSyncobjDestroy(fd, ctx->in_sync[i]);
1147 if (ctx->out_sync[i])
1148 drmSyncobjDestroy(fd, ctx->out_sync[i]);
1149 }
1150
1151 if (ctx->in_sync_fd >= 0)
1152 close(ctx->in_sync_fd);
1153 }
1154