1 /*
2 * Copyright (C) 2012 Rob Clark <robclark@freedesktop.org>
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 (including the next
12 * paragraph) shall be included in all copies or substantial portions of the
13 * Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
18 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
20 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
21 * SOFTWARE.
22 *
23 * Authors:
24 * Rob Clark <robclark@freedesktop.org>
25 */
26
27 #include "freedreno_context.h"
28 #include "ir3/ir3_cache.h"
29 #include "util/u_upload_mgr.h"
30 #include "freedreno_blitter.h"
31 #include "freedreno_draw.h"
32 #include "freedreno_fence.h"
33 #include "freedreno_gmem.h"
34 #include "freedreno_program.h"
35 #include "freedreno_query.h"
36 #include "freedreno_query_hw.h"
37 #include "freedreno_resource.h"
38 #include "freedreno_state.h"
39 #include "freedreno_texture.h"
40 #include "freedreno_util.h"
41 #include "freedreno_tracepoints.h"
42 #include "util/u_trace_gallium.h"
43
44 static void
fd_context_flush(struct pipe_context * pctx,struct pipe_fence_handle ** fencep,unsigned flags)45 fd_context_flush(struct pipe_context *pctx, struct pipe_fence_handle **fencep,
46 unsigned flags) in_dt
47 {
48 struct fd_context *ctx = fd_context(pctx);
49 struct pipe_fence_handle *fence = NULL;
50 struct fd_batch *batch = NULL;
51
52 /* We want to lookup current batch if it exists, but not create a new
53 * one if not (unless we need a fence)
54 */
55 fd_batch_reference(&batch, ctx->batch);
56
57 DBG("%p: flush: flags=%x, fencep=%p", batch, flags, fencep);
58
59 if (fencep && !batch) {
60 batch = fd_context_batch(ctx);
61 } else if (!batch) {
62 if (ctx->screen->reorder)
63 fd_bc_flush(ctx, flags & PIPE_FLUSH_DEFERRED);
64 fd_bc_dump(ctx, "%p: NULL batch, remaining:\n", ctx);
65 return;
66 }
67
68 /* With TC_FLUSH_ASYNC, the fence will have been pre-created from
69 * the front-end thread. But not yet associated with a batch,
70 * because we cannot safely access ctx->batch outside of the driver
71 * thread. So instead, replace the existing batch->fence with the
72 * one created earlier
73 */
74 if ((flags & TC_FLUSH_ASYNC) && fencep) {
75 /* We don't currently expect async+flush in the fence-fd
76 * case.. for that to work properly we'd need TC to tell
77 * us in the create_fence callback that it needs an fd.
78 */
79 assert(!(flags & PIPE_FLUSH_FENCE_FD));
80
81 fd_fence_set_batch(*fencep, batch);
82 fd_fence_ref(&batch->fence, *fencep);
83
84 /* If we have nothing to flush, update the pre-created unflushed
85 * fence with the current state of the last-fence:
86 */
87 if (ctx->last_fence) {
88 fd_fence_repopulate(*fencep, ctx->last_fence);
89 fd_fence_ref(&fence, *fencep);
90 fd_bc_dump(ctx, "%p: (deferred) reuse last_fence, remaining:\n", ctx);
91 goto out;
92 }
93
94 /* async flush is not compatible with deferred flush, since
95 * nothing triggers the batch flush which fence_flush() would
96 * be waiting for
97 */
98 flags &= ~PIPE_FLUSH_DEFERRED;
99 } else if (!batch->fence) {
100 batch->fence = fd_fence_create(batch);
101 }
102
103 /* In some sequence of events, we can end up with a last_fence that is
104 * not an "fd" fence, which results in eglDupNativeFenceFDANDROID()
105 * errors.
106 */
107 if ((flags & PIPE_FLUSH_FENCE_FD) && ctx->last_fence &&
108 !fd_fence_is_fd(ctx->last_fence))
109 fd_fence_ref(&ctx->last_fence, NULL);
110
111 /* if no rendering since last flush, ie. app just decided it needed
112 * a fence, re-use the last one:
113 */
114 if (ctx->last_fence) {
115 fd_fence_ref(&fence, ctx->last_fence);
116 fd_bc_dump(ctx, "%p: reuse last_fence, remaining:\n", ctx);
117 goto out;
118 }
119
120 /* Take a ref to the batch's fence (batch can be unref'd when flushed: */
121 fd_fence_ref(&fence, batch->fence);
122
123 if (flags & PIPE_FLUSH_FENCE_FD)
124 fence->submit_fence.use_fence_fd = true;
125
126 fd_bc_dump(ctx, "%p: flushing %p<%u>, flags=0x%x, pending:\n", ctx,
127 batch, batch->seqno, flags);
128
129 /* If we get here, we need to flush for a fence, even if there is
130 * no rendering yet:
131 */
132 batch->needs_flush = true;
133
134 if (!ctx->screen->reorder) {
135 fd_batch_flush(batch);
136 } else {
137 fd_bc_flush(ctx, flags & PIPE_FLUSH_DEFERRED);
138 }
139
140 fd_bc_dump(ctx, "%p: remaining:\n", ctx);
141
142 out:
143 if (fencep)
144 fd_fence_ref(fencep, fence);
145
146 fd_fence_ref(&ctx->last_fence, fence);
147
148 fd_fence_ref(&fence, NULL);
149
150 fd_batch_reference(&batch, NULL);
151
152 u_trace_context_process(&ctx->trace_context,
153 !!(flags & PIPE_FLUSH_END_OF_FRAME));
154 }
155
156 static void
fd_texture_barrier(struct pipe_context * pctx,unsigned flags)157 fd_texture_barrier(struct pipe_context *pctx, unsigned flags) in_dt
158 {
159 if (flags == PIPE_TEXTURE_BARRIER_FRAMEBUFFER) {
160 struct fd_context *ctx = fd_context(pctx);
161
162 if (ctx->framebuffer_barrier) {
163 ctx->framebuffer_barrier(ctx);
164 return;
165 }
166 }
167
168 /* On devices that could sample from GMEM we could possibly do better.
169 * Or if we knew that we were doing GMEM bypass we could just emit a
170 * cache flush, perhaps? But we don't know if future draws would cause
171 * us to use GMEM, and a flush in bypass isn't the end of the world.
172 */
173 fd_context_flush(pctx, NULL, 0);
174 }
175
176 static void
fd_memory_barrier(struct pipe_context * pctx,unsigned flags)177 fd_memory_barrier(struct pipe_context *pctx, unsigned flags)
178 {
179 if (!(flags & ~PIPE_BARRIER_UPDATE))
180 return;
181
182 fd_context_flush(pctx, NULL, 0);
183
184 /* TODO do we need to check for persistently mapped buffers and
185 * fd_bo_cpu_prep()??
186 */
187 }
188
189 static void
emit_string_tail(struct fd_ringbuffer * ring,const char * string,int len)190 emit_string_tail(struct fd_ringbuffer *ring, const char *string, int len)
191 {
192 const uint32_t *buf = (const void *)string;
193
194 while (len >= 4) {
195 OUT_RING(ring, *buf);
196 buf++;
197 len -= 4;
198 }
199
200 /* copy remainder bytes without reading past end of input string: */
201 if (len > 0) {
202 uint32_t w = 0;
203 memcpy(&w, buf, len);
204 OUT_RING(ring, w);
205 }
206 }
207
208 /* for prior to a5xx: */
209 void
fd_emit_string(struct fd_ringbuffer * ring,const char * string,int len)210 fd_emit_string(struct fd_ringbuffer *ring, const char *string, int len)
211 {
212 /* max packet size is 0x3fff+1 dwords: */
213 len = MIN2(len, 0x4000 * 4);
214
215 OUT_PKT3(ring, CP_NOP, align(len, 4) / 4);
216 emit_string_tail(ring, string, len);
217 }
218
219 /* for a5xx+ */
220 void
fd_emit_string5(struct fd_ringbuffer * ring,const char * string,int len)221 fd_emit_string5(struct fd_ringbuffer *ring, const char *string, int len)
222 {
223 /* max packet size is 0x3fff dwords: */
224 len = MIN2(len, 0x3fff * 4);
225
226 OUT_PKT7(ring, CP_NOP, align(len, 4) / 4);
227 emit_string_tail(ring, string, len);
228 }
229
230 /**
231 * emit marker string as payload of a no-op packet, which can be
232 * decoded by cffdump.
233 */
234 static void
fd_emit_string_marker(struct pipe_context * pctx,const char * string,int len)235 fd_emit_string_marker(struct pipe_context *pctx, const char *string,
236 int len) in_dt
237 {
238 struct fd_context *ctx = fd_context(pctx);
239
240 DBG("%.*s", len, string);
241
242 if (!ctx->batch)
243 return;
244
245 struct fd_batch *batch = fd_context_batch_locked(ctx);
246
247 fd_batch_needs_flush(batch);
248
249 if (ctx->screen->gen >= 5) {
250 fd_emit_string5(batch->draw, string, len);
251 } else {
252 fd_emit_string(batch->draw, string, len);
253 }
254
255 fd_batch_unlock_submit(batch);
256 fd_batch_reference(&batch, NULL);
257 }
258
259 /**
260 * If we have a pending fence_server_sync() (GPU side sync), flush now.
261 * The alternative to try to track this with batch dependencies gets
262 * hairy quickly.
263 *
264 * Call this before switching to a different batch, to handle this case.
265 */
266 void
fd_context_switch_from(struct fd_context * ctx)267 fd_context_switch_from(struct fd_context *ctx)
268 {
269 if (ctx->batch && (ctx->batch->in_fence_fd != -1))
270 fd_batch_flush(ctx->batch);
271 }
272
273 /**
274 * If there is a pending fence-fd that we need to sync on, this will
275 * transfer the reference to the next batch we are going to render
276 * to.
277 */
278 void
fd_context_switch_to(struct fd_context * ctx,struct fd_batch * batch)279 fd_context_switch_to(struct fd_context *ctx, struct fd_batch *batch)
280 {
281 if (ctx->in_fence_fd != -1) {
282 sync_accumulate("freedreno", &batch->in_fence_fd, ctx->in_fence_fd);
283 close(ctx->in_fence_fd);
284 ctx->in_fence_fd = -1;
285 }
286 }
287
288 /**
289 * Return a reference to the current batch, caller must unref.
290 */
291 struct fd_batch *
fd_context_batch(struct fd_context * ctx)292 fd_context_batch(struct fd_context *ctx)
293 {
294 struct fd_batch *batch = NULL;
295
296 tc_assert_driver_thread(ctx->tc);
297
298 fd_batch_reference(&batch, ctx->batch);
299
300 if (unlikely(!batch)) {
301 batch =
302 fd_batch_from_fb(ctx, &ctx->framebuffer);
303 util_copy_framebuffer_state(&batch->framebuffer, &ctx->framebuffer);
304 fd_batch_reference(&ctx->batch, batch);
305 fd_context_all_dirty(ctx);
306 }
307 fd_context_switch_to(ctx, batch);
308
309 return batch;
310 }
311
312 /**
313 * Return a locked reference to the current batch. A batch with emit
314 * lock held is protected against flushing while the lock is held.
315 * The emit-lock should be acquired before screen-lock. The emit-lock
316 * should be held while emitting cmdstream.
317 */
318 struct fd_batch *
fd_context_batch_locked(struct fd_context * ctx)319 fd_context_batch_locked(struct fd_context *ctx)
320 {
321 struct fd_batch *batch = NULL;
322
323 while (!batch) {
324 batch = fd_context_batch(ctx);
325 if (!fd_batch_lock_submit(batch)) {
326 fd_batch_reference(&batch, NULL);
327 }
328 }
329
330 return batch;
331 }
332
333 void
fd_context_destroy(struct pipe_context * pctx)334 fd_context_destroy(struct pipe_context *pctx)
335 {
336 struct fd_context *ctx = fd_context(pctx);
337 unsigned i;
338
339 DBG("");
340
341 fd_screen_lock(ctx->screen);
342 list_del(&ctx->node);
343 fd_screen_unlock(ctx->screen);
344
345 fd_fence_ref(&ctx->last_fence, NULL);
346
347 if (ctx->in_fence_fd != -1)
348 close(ctx->in_fence_fd);
349
350 for (i = 0; i < ARRAY_SIZE(ctx->pvtmem); i++) {
351 if (ctx->pvtmem[i].bo)
352 fd_bo_del(ctx->pvtmem[i].bo);
353 }
354
355 util_copy_framebuffer_state(&ctx->framebuffer, NULL);
356 fd_batch_reference(&ctx->batch, NULL); /* unref current batch */
357
358 /* Make sure nothing in the batch cache references our context any more. */
359 fd_bc_flush(ctx, false);
360
361 fd_prog_fini(pctx);
362
363 if (ctx->blitter)
364 util_blitter_destroy(ctx->blitter);
365
366 if (pctx->stream_uploader)
367 u_upload_destroy(pctx->stream_uploader);
368
369 for (i = 0; i < ARRAY_SIZE(ctx->clear_rs_state); i++)
370 if (ctx->clear_rs_state[i])
371 pctx->delete_rasterizer_state(pctx, ctx->clear_rs_state[i]);
372
373 slab_destroy_child(&ctx->transfer_pool);
374 slab_destroy_child(&ctx->transfer_pool_unsync);
375
376 for (i = 0; i < ARRAY_SIZE(ctx->vsc_pipe_bo); i++) {
377 if (!ctx->vsc_pipe_bo[i])
378 break;
379 fd_bo_del(ctx->vsc_pipe_bo[i]);
380 }
381
382 fd_device_del(ctx->dev);
383 fd_pipe_purge(ctx->pipe);
384 fd_pipe_del(ctx->pipe);
385
386 simple_mtx_destroy(&ctx->gmem_lock);
387
388 u_trace_context_fini(&ctx->trace_context);
389
390 fd_autotune_fini(&ctx->autotune);
391
392 ir3_cache_destroy(ctx->shader_cache);
393
394 if (FD_DBG(BSTAT) || FD_DBG(MSGS)) {
395 mesa_logi(
396 "batch_total=%u, batch_sysmem=%u, batch_gmem=%u, batch_nondraw=%u, "
397 "batch_restore=%u\n",
398 (uint32_t)ctx->stats.batch_total, (uint32_t)ctx->stats.batch_sysmem,
399 (uint32_t)ctx->stats.batch_gmem, (uint32_t)ctx->stats.batch_nondraw,
400 (uint32_t)ctx->stats.batch_restore);
401 }
402 }
403
404 static void
fd_set_debug_callback(struct pipe_context * pctx,const struct util_debug_callback * cb)405 fd_set_debug_callback(struct pipe_context *pctx,
406 const struct util_debug_callback *cb)
407 {
408 struct fd_context *ctx = fd_context(pctx);
409 struct fd_screen *screen = ctx->screen;
410
411 util_queue_finish(&screen->compile_queue);
412
413 if (cb)
414 ctx->debug = *cb;
415 else
416 memset(&ctx->debug, 0, sizeof(ctx->debug));
417 }
418
419 static uint32_t
fd_get_reset_count(struct fd_context * ctx,bool per_context)420 fd_get_reset_count(struct fd_context *ctx, bool per_context)
421 {
422 uint64_t val;
423 enum fd_param_id param = per_context ? FD_CTX_FAULTS : FD_GLOBAL_FAULTS;
424 int ret = fd_pipe_get_param(ctx->pipe, param, &val);
425 assert(!ret);
426 return val;
427 }
428
429 static enum pipe_reset_status
fd_get_device_reset_status(struct pipe_context * pctx)430 fd_get_device_reset_status(struct pipe_context *pctx)
431 {
432 struct fd_context *ctx = fd_context(pctx);
433 int context_faults = fd_get_reset_count(ctx, true);
434 int global_faults = fd_get_reset_count(ctx, false);
435 enum pipe_reset_status status;
436
437 if (context_faults != ctx->context_reset_count) {
438 status = PIPE_GUILTY_CONTEXT_RESET;
439 } else if (global_faults != ctx->global_reset_count) {
440 status = PIPE_INNOCENT_CONTEXT_RESET;
441 } else {
442 status = PIPE_NO_RESET;
443 }
444
445 ctx->context_reset_count = context_faults;
446 ctx->global_reset_count = global_faults;
447
448 return status;
449 }
450
451 static void
fd_trace_record_ts(struct u_trace * ut,void * cs,void * timestamps,unsigned idx,bool end_of_pipe)452 fd_trace_record_ts(struct u_trace *ut, void *cs, void *timestamps,
453 unsigned idx, bool end_of_pipe)
454 {
455 struct fd_batch *batch = container_of(ut, struct fd_batch, trace);
456 struct fd_ringbuffer *ring = cs;
457 struct pipe_resource *buffer = timestamps;
458
459 if (ring->cur == batch->last_timestamp_cmd) {
460 uint64_t *ts = fd_bo_map(fd_resource(buffer)->bo);
461 ts[idx] = U_TRACE_NO_TIMESTAMP;
462 return;
463 }
464
465 unsigned ts_offset = idx * sizeof(uint64_t);
466 batch->ctx->record_timestamp(ring, fd_resource(buffer)->bo, ts_offset);
467 batch->last_timestamp_cmd = ring->cur;
468 }
469
470 static uint64_t
fd_trace_read_ts(struct u_trace_context * utctx,void * timestamps,unsigned idx,void * flush_data)471 fd_trace_read_ts(struct u_trace_context *utctx,
472 void *timestamps, unsigned idx, void *flush_data)
473 {
474 struct fd_context *ctx =
475 container_of(utctx, struct fd_context, trace_context);
476 struct pipe_resource *buffer = timestamps;
477 struct fd_bo *ts_bo = fd_resource(buffer)->bo;
478
479 /* Only need to stall on results for the first entry: */
480 if (idx == 0) {
481 /* Avoid triggering deferred submits from flushing, since that
482 * changes the behavior of what we are trying to measure:
483 */
484 while (fd_bo_cpu_prep(ts_bo, ctx->pipe, FD_BO_PREP_NOSYNC))
485 usleep(10000);
486 int ret = fd_bo_cpu_prep(ts_bo, ctx->pipe, FD_BO_PREP_READ);
487 if (ret)
488 return U_TRACE_NO_TIMESTAMP;
489 }
490
491 uint64_t *ts = fd_bo_map(ts_bo);
492
493 /* Don't translate the no-timestamp marker: */
494 if (ts[idx] == U_TRACE_NO_TIMESTAMP)
495 return U_TRACE_NO_TIMESTAMP;
496
497 return ctx->ts_to_ns(ts[idx]);
498 }
499
500 static void
fd_trace_delete_flush_data(struct u_trace_context * utctx,void * flush_data)501 fd_trace_delete_flush_data(struct u_trace_context *utctx, void *flush_data)
502 {
503 /* We don't use flush_data at the moment. */
504 }
505
506 /* TODO we could combine a few of these small buffers (solid_vbuf,
507 * blit_texcoord_vbuf, and vsc_size_mem, into a single buffer and
508 * save a tiny bit of memory
509 */
510
511 static struct pipe_resource *
create_solid_vertexbuf(struct pipe_context * pctx)512 create_solid_vertexbuf(struct pipe_context *pctx)
513 {
514 static const float init_shader_const[] = {
515 -1.000000f, +1.000000f, +1.000000f, +1.000000f, -1.000000f, +1.000000f,
516 };
517 struct pipe_resource *prsc =
518 pipe_buffer_create(pctx->screen, PIPE_BIND_CUSTOM, PIPE_USAGE_IMMUTABLE,
519 sizeof(init_shader_const));
520 pipe_buffer_write(pctx, prsc, 0, sizeof(init_shader_const),
521 init_shader_const);
522 return prsc;
523 }
524
525 static struct pipe_resource *
create_blit_texcoord_vertexbuf(struct pipe_context * pctx)526 create_blit_texcoord_vertexbuf(struct pipe_context *pctx)
527 {
528 struct pipe_resource *prsc = pipe_buffer_create(
529 pctx->screen, PIPE_BIND_CUSTOM, PIPE_USAGE_DYNAMIC, 16);
530 return prsc;
531 }
532
533 void
fd_context_setup_common_vbos(struct fd_context * ctx)534 fd_context_setup_common_vbos(struct fd_context *ctx)
535 {
536 struct pipe_context *pctx = &ctx->base;
537
538 ctx->solid_vbuf = create_solid_vertexbuf(pctx);
539 ctx->blit_texcoord_vbuf = create_blit_texcoord_vertexbuf(pctx);
540
541 /* setup solid_vbuf_state: */
542 ctx->solid_vbuf_state.vtx = pctx->create_vertex_elements_state(
543 pctx, 1,
544 (struct pipe_vertex_element[]){{
545 .vertex_buffer_index = 0,
546 .src_offset = 0,
547 .src_format = PIPE_FORMAT_R32G32B32_FLOAT,
548 }});
549 ctx->solid_vbuf_state.vertexbuf.count = 1;
550 ctx->solid_vbuf_state.vertexbuf.vb[0].stride = 12;
551 ctx->solid_vbuf_state.vertexbuf.vb[0].buffer.resource = ctx->solid_vbuf;
552
553 /* setup blit_vbuf_state: */
554 ctx->blit_vbuf_state.vtx = pctx->create_vertex_elements_state(
555 pctx, 2,
556 (struct pipe_vertex_element[]){
557 {
558 .vertex_buffer_index = 0,
559 .src_offset = 0,
560 .src_format = PIPE_FORMAT_R32G32_FLOAT,
561 },
562 {
563 .vertex_buffer_index = 1,
564 .src_offset = 0,
565 .src_format = PIPE_FORMAT_R32G32B32_FLOAT,
566 }});
567 ctx->blit_vbuf_state.vertexbuf.count = 2;
568 ctx->blit_vbuf_state.vertexbuf.vb[0].stride = 8;
569 ctx->blit_vbuf_state.vertexbuf.vb[0].buffer.resource =
570 ctx->blit_texcoord_vbuf;
571 ctx->blit_vbuf_state.vertexbuf.vb[1].stride = 12;
572 ctx->blit_vbuf_state.vertexbuf.vb[1].buffer.resource = ctx->solid_vbuf;
573 }
574
575 void
fd_context_cleanup_common_vbos(struct fd_context * ctx)576 fd_context_cleanup_common_vbos(struct fd_context *ctx)
577 {
578 struct pipe_context *pctx = &ctx->base;
579
580 pctx->delete_vertex_elements_state(pctx, ctx->solid_vbuf_state.vtx);
581 pctx->delete_vertex_elements_state(pctx, ctx->blit_vbuf_state.vtx);
582
583 pipe_resource_reference(&ctx->solid_vbuf, NULL);
584 pipe_resource_reference(&ctx->blit_texcoord_vbuf, NULL);
585 }
586
587 struct pipe_context *
fd_context_init(struct fd_context * ctx,struct pipe_screen * pscreen,void * priv,unsigned flags)588 fd_context_init(struct fd_context *ctx, struct pipe_screen *pscreen,
589 void *priv, unsigned flags)
590 disable_thread_safety_analysis
591 {
592 struct fd_screen *screen = fd_screen(pscreen);
593 struct pipe_context *pctx;
594 unsigned prio = 1;
595
596 /* lower numerical value == higher priority: */
597 if (FD_DBG(HIPRIO))
598 prio = 0;
599 else if (flags & PIPE_CONTEXT_HIGH_PRIORITY)
600 prio = 0;
601 else if (flags & PIPE_CONTEXT_LOW_PRIORITY)
602 prio = 2;
603
604 /* Some of the stats will get printed out at context destroy, so
605 * make sure they are collected:
606 */
607 if (FD_DBG(BSTAT) || FD_DBG(MSGS))
608 ctx->stats_users++;
609
610 ctx->flags = flags;
611 ctx->screen = screen;
612 ctx->pipe = fd_pipe_new2(screen->dev, FD_PIPE_3D, prio);
613
614 ctx->in_fence_fd = -1;
615
616 if (fd_device_version(screen->dev) >= FD_VERSION_ROBUSTNESS) {
617 ctx->context_reset_count = fd_get_reset_count(ctx, true);
618 ctx->global_reset_count = fd_get_reset_count(ctx, false);
619 }
620
621 simple_mtx_init(&ctx->gmem_lock, mtx_plain);
622
623 /* need some sane default in case gallium frontends don't
624 * set some state:
625 */
626 ctx->sample_mask = 0xffff;
627 ctx->active_queries = true;
628
629 pctx = &ctx->base;
630 pctx->screen = pscreen;
631 pctx->priv = priv;
632 pctx->flush = fd_context_flush;
633 pctx->emit_string_marker = fd_emit_string_marker;
634 pctx->set_debug_callback = fd_set_debug_callback;
635 pctx->get_device_reset_status = fd_get_device_reset_status;
636 pctx->create_fence_fd = fd_create_fence_fd;
637 pctx->fence_server_sync = fd_fence_server_sync;
638 pctx->fence_server_signal = fd_fence_server_signal;
639 pctx->texture_barrier = fd_texture_barrier;
640 pctx->memory_barrier = fd_memory_barrier;
641
642 pctx->stream_uploader = u_upload_create_default(pctx);
643 if (!pctx->stream_uploader)
644 goto fail;
645 pctx->const_uploader = pctx->stream_uploader;
646
647 slab_create_child(&ctx->transfer_pool, &screen->transfer_pool);
648 slab_create_child(&ctx->transfer_pool_unsync, &screen->transfer_pool);
649
650 fd_draw_init(pctx);
651 fd_resource_context_init(pctx);
652 fd_query_context_init(pctx);
653 fd_texture_init(pctx);
654 fd_state_init(pctx);
655
656 ctx->blitter = util_blitter_create(pctx);
657 if (!ctx->blitter)
658 goto fail;
659
660 list_inithead(&ctx->hw_active_queries);
661 list_inithead(&ctx->acc_active_queries);
662
663 fd_screen_lock(ctx->screen);
664 ctx->seqno = ++screen->ctx_seqno;
665 list_add(&ctx->node, &ctx->screen->context_list);
666 fd_screen_unlock(ctx->screen);
667
668 ctx->current_scissor = &ctx->disabled_scissor;
669
670 fd_gpu_tracepoint_config_variable();
671 u_trace_pipe_context_init(&ctx->trace_context, pctx,
672 fd_trace_record_ts,
673 fd_trace_read_ts,
674 fd_trace_delete_flush_data);
675
676 fd_autotune_init(&ctx->autotune, screen->dev);
677
678 return pctx;
679
680 fail:
681 pctx->destroy(pctx);
682 return NULL;
683 }
684
685 struct pipe_context *
fd_context_init_tc(struct pipe_context * pctx,unsigned flags)686 fd_context_init_tc(struct pipe_context *pctx, unsigned flags)
687 {
688 struct fd_context *ctx = fd_context(pctx);
689
690 if (!(flags & PIPE_CONTEXT_PREFER_THREADED))
691 return pctx;
692
693 /* Clover (compute-only) is unsupported. */
694 if (flags & PIPE_CONTEXT_COMPUTE_ONLY)
695 return pctx;
696
697 struct pipe_context *tc = threaded_context_create(
698 pctx, &ctx->screen->transfer_pool,
699 fd_replace_buffer_storage,
700 &(struct threaded_context_options){
701 .create_fence = fd_fence_create_unflushed,
702 .is_resource_busy = fd_resource_busy,
703 .unsynchronized_get_device_reset_status = true,
704 },
705 &ctx->tc);
706
707 if (tc && tc != pctx)
708 threaded_context_init_bytes_mapped_limit((struct threaded_context *)tc, 16);
709
710 return tc;
711 }
712