1 /*
2 * Copyright (C) 2015 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 #define ATRACE_TAG ATRACE_TAG_GRAPHICS
18 #define LOG_TAG "hwc-drm-display-compositor"
19
20 #include "drmdisplaycompositor.h"
21
22 #include <pthread.h>
23 #include <sched.h>
24 #include <stdlib.h>
25 #include <time.h>
26 #include <sstream>
27 #include <vector>
28
29 #include <cutils/log.h>
30 #include <drm/drm_mode.h>
31 #include <sync/sync.h>
32 #include <utils/Trace.h>
33
34 #include "autolock.h"
35 #include "drmcrtc.h"
36 #include "drmplane.h"
37 #include "drmresources.h"
38 #include "glworker.h"
39
40 #define DRM_DISPLAY_COMPOSITOR_MAX_QUEUE_DEPTH 2
41
42 namespace android {
43
Init(DrmHwcLayer * layers,size_t num_layers)44 void SquashState::Init(DrmHwcLayer *layers, size_t num_layers) {
45 generation_number_++;
46 valid_history_ = 0;
47 regions_.clear();
48 last_handles_.clear();
49
50 std::vector<DrmHwcRect<int>> in_rects;
51 for (size_t i = 0; i < num_layers; i++) {
52 DrmHwcLayer *layer = &layers[i];
53 in_rects.emplace_back(layer->display_frame);
54 last_handles_.push_back(layer->sf_handle);
55 }
56
57 std::vector<separate_rects::RectSet<uint64_t, int>> out_regions;
58 separate_rects::separate_rects_64(in_rects, &out_regions);
59
60 for (const separate_rects::RectSet<uint64_t, int> &out_region : out_regions) {
61 regions_.emplace_back();
62 Region ®ion = regions_.back();
63 region.rect = out_region.rect;
64 region.layer_refs = out_region.id_set.getBits();
65 }
66 }
67
GenerateHistory(DrmHwcLayer * layers,size_t num_layers,std::vector<bool> & changed_regions) const68 void SquashState::GenerateHistory(DrmHwcLayer *layers, size_t num_layers,
69 std::vector<bool> &changed_regions) const {
70 changed_regions.resize(regions_.size());
71 if (num_layers != last_handles_.size()) {
72 ALOGE("SquashState::GenerateHistory expected %zu layers but got %zu layers",
73 last_handles_.size(), num_layers);
74 return;
75 }
76 std::bitset<kMaxLayers> changed_layers;
77 for (size_t i = 0; i < last_handles_.size(); i++) {
78 DrmHwcLayer *layer = &layers[i];
79 // Protected layers can't be squashed so we treat them as constantly
80 // changing.
81 if (layer->protected_usage() || last_handles_[i] != layer->sf_handle)
82 changed_layers.set(i);
83 }
84
85 for (size_t i = 0; i < regions_.size(); i++) {
86 changed_regions[i] = (regions_[i].layer_refs & changed_layers).any();
87 }
88 }
89
StableRegionsWithMarginalHistory(const std::vector<bool> & changed_regions,std::vector<bool> & stable_regions) const90 void SquashState::StableRegionsWithMarginalHistory(
91 const std::vector<bool> &changed_regions,
92 std::vector<bool> &stable_regions) const {
93 stable_regions.resize(regions_.size());
94 for (size_t i = 0; i < regions_.size(); i++) {
95 stable_regions[i] = !changed_regions[i] && is_stable(i);
96 }
97 }
98
RecordHistory(DrmHwcLayer * layers,size_t num_layers,const std::vector<bool> & changed_regions)99 void SquashState::RecordHistory(DrmHwcLayer *layers, size_t num_layers,
100 const std::vector<bool> &changed_regions) {
101 if (num_layers != last_handles_.size()) {
102 ALOGE("SquashState::RecordHistory expected %zu layers but got %zu layers",
103 last_handles_.size(), num_layers);
104 return;
105 }
106 if (changed_regions.size() != regions_.size()) {
107 ALOGE("SquashState::RecordHistory expected %zu regions but got %zu regions",
108 regions_.size(), changed_regions.size());
109 return;
110 }
111
112 for (size_t i = 0; i < last_handles_.size(); i++) {
113 DrmHwcLayer *layer = &layers[i];
114 last_handles_[i] = layer->sf_handle;
115 }
116
117 for (size_t i = 0; i < regions_.size(); i++) {
118 regions_[i].change_history <<= 1;
119 regions_[i].change_history.set(/* LSB */ 0, changed_regions[i]);
120 }
121
122 valid_history_++;
123 }
124
RecordAndCompareSquashed(const std::vector<bool> & squashed_regions)125 bool SquashState::RecordAndCompareSquashed(
126 const std::vector<bool> &squashed_regions) {
127 if (squashed_regions.size() != regions_.size()) {
128 ALOGE(
129 "SquashState::RecordAndCompareSquashed expected %zu regions but got "
130 "%zu regions",
131 regions_.size(), squashed_regions.size());
132 return false;
133 }
134 bool changed = false;
135 for (size_t i = 0; i < regions_.size(); i++) {
136 if (regions_[i].squashed != squashed_regions[i]) {
137 regions_[i].squashed = squashed_regions[i];
138 changed = true;
139 }
140 }
141 return changed;
142 }
143
Dump(std::ostringstream * out) const144 void SquashState::Dump(std::ostringstream *out) const {
145 *out << "----SquashState generation=" << generation_number_
146 << " history=" << valid_history_ << "\n"
147 << " Regions: count=" << regions_.size() << "\n";
148 for (size_t i = 0; i < regions_.size(); i++) {
149 const Region ®ion = regions_[i];
150 *out << " [" << i << "]"
151 << " history=" << region.change_history << " rect";
152 region.rect.Dump(out);
153 *out << " layers=(";
154 bool first = true;
155 for (size_t layer_index = 0; layer_index < kMaxLayers; layer_index++) {
156 if ((region.layer_refs &
157 std::bitset<kMaxLayers>((size_t)1 << layer_index))
158 .any()) {
159 if (!first)
160 *out << " ";
161 first = false;
162 *out << layer_index;
163 }
164 }
165 *out << ")";
166 if (region.squashed)
167 *out << " squashed";
168 *out << "\n";
169 }
170 }
171
UsesSquash(const std::vector<DrmCompositionPlane> & comp_planes)172 static bool UsesSquash(const std::vector<DrmCompositionPlane> &comp_planes) {
173 return std::any_of(comp_planes.begin(), comp_planes.end(),
174 [](const DrmCompositionPlane &plane) {
175 return plane.type() == DrmCompositionPlane::Type::kSquash;
176 });
177 }
178
FrameWorker(DrmDisplayCompositor * compositor)179 DrmDisplayCompositor::FrameWorker::FrameWorker(DrmDisplayCompositor *compositor)
180 : Worker("frame-worker", HAL_PRIORITY_URGENT_DISPLAY),
181 compositor_(compositor) {
182 }
183
~FrameWorker()184 DrmDisplayCompositor::FrameWorker::~FrameWorker() {
185 }
186
Init()187 int DrmDisplayCompositor::FrameWorker::Init() {
188 return InitWorker();
189 }
190
QueueFrame(std::unique_ptr<DrmDisplayComposition> composition,int status)191 void DrmDisplayCompositor::FrameWorker::QueueFrame(
192 std::unique_ptr<DrmDisplayComposition> composition, int status) {
193 Lock();
194
195 // Block queue if it gets too large. Otherwise composition will
196 // start stacking up and eat limited resources (file descriptors)
197 // allocated for these.
198 while (frame_queue_.size() >= DRM_DISPLAY_COMPOSITOR_MAX_QUEUE_DEPTH) {
199 Unlock();
200 sched_yield();
201 Lock();
202 }
203
204 FrameState frame;
205 frame.composition = std::move(composition);
206 frame.status = status;
207 frame_queue_.push(std::move(frame));
208 SignalLocked();
209 Unlock();
210 }
211
Routine()212 void DrmDisplayCompositor::FrameWorker::Routine() {
213 int ret = Lock();
214 if (ret) {
215 ALOGE("Failed to lock worker, %d", ret);
216 return;
217 }
218
219 int wait_ret = 0;
220 if (frame_queue_.empty()) {
221 wait_ret = WaitForSignalOrExitLocked();
222 }
223
224 FrameState frame;
225 if (!frame_queue_.empty()) {
226 frame = std::move(frame_queue_.front());
227 frame_queue_.pop();
228 }
229
230 ret = Unlock();
231 if (ret) {
232 ALOGE("Failed to unlock worker, %d", ret);
233 return;
234 }
235
236 if (wait_ret == -EINTR) {
237 return;
238 } else if (wait_ret) {
239 ALOGE("Failed to wait for signal, %d", wait_ret);
240 return;
241 }
242
243 compositor_->ApplyFrame(std::move(frame.composition), frame.status);
244 }
245
DrmDisplayCompositor()246 DrmDisplayCompositor::DrmDisplayCompositor()
247 : drm_(NULL),
248 display_(-1),
249 worker_(this),
250 frame_worker_(this),
251 initialized_(false),
252 active_(false),
253 use_hw_overlays_(true),
254 framebuffer_index_(0),
255 squash_framebuffer_index_(0),
256 dump_frames_composited_(0),
257 dump_last_timestamp_ns_(0) {
258 struct timespec ts;
259 if (clock_gettime(CLOCK_MONOTONIC, &ts))
260 return;
261 dump_last_timestamp_ns_ = ts.tv_sec * 1000 * 1000 * 1000 + ts.tv_nsec;
262 }
263
~DrmDisplayCompositor()264 DrmDisplayCompositor::~DrmDisplayCompositor() {
265 if (!initialized_)
266 return;
267
268 worker_.Exit();
269 frame_worker_.Exit();
270
271 int ret = pthread_mutex_lock(&lock_);
272 if (ret)
273 ALOGE("Failed to acquire compositor lock %d", ret);
274
275 if (mode_.blob_id)
276 drm_->DestroyPropertyBlob(mode_.blob_id);
277 if (mode_.old_blob_id)
278 drm_->DestroyPropertyBlob(mode_.old_blob_id);
279
280 while (!composite_queue_.empty()) {
281 composite_queue_.front().reset();
282 composite_queue_.pop();
283 }
284 active_composition_.reset();
285
286 ret = pthread_mutex_unlock(&lock_);
287 if (ret)
288 ALOGE("Failed to acquire compositor lock %d", ret);
289
290 pthread_mutex_destroy(&lock_);
291 }
292
Init(DrmResources * drm,int display)293 int DrmDisplayCompositor::Init(DrmResources *drm, int display) {
294 drm_ = drm;
295 display_ = display;
296
297 int ret = pthread_mutex_init(&lock_, NULL);
298 if (ret) {
299 ALOGE("Failed to initialize drm compositor lock %d\n", ret);
300 return ret;
301 }
302 ret = worker_.Init();
303 if (ret) {
304 pthread_mutex_destroy(&lock_);
305 ALOGE("Failed to initialize compositor worker %d\n", ret);
306 return ret;
307 }
308 ret = frame_worker_.Init();
309 if (ret) {
310 pthread_mutex_destroy(&lock_);
311 ALOGE("Failed to initialize frame worker %d\n", ret);
312 return ret;
313 }
314
315 initialized_ = true;
316 return 0;
317 }
318
CreateComposition() const319 std::unique_ptr<DrmDisplayComposition> DrmDisplayCompositor::CreateComposition()
320 const {
321 return std::unique_ptr<DrmDisplayComposition>(new DrmDisplayComposition());
322 }
323
QueueComposition(std::unique_ptr<DrmDisplayComposition> composition)324 int DrmDisplayCompositor::QueueComposition(
325 std::unique_ptr<DrmDisplayComposition> composition) {
326 switch (composition->type()) {
327 case DRM_COMPOSITION_TYPE_FRAME:
328 if (!active_)
329 return -ENODEV;
330 break;
331 case DRM_COMPOSITION_TYPE_DPMS:
332 /*
333 * Update the state as soon as we get it so we can start/stop queuing
334 * frames asap.
335 */
336 active_ = (composition->dpms_mode() == DRM_MODE_DPMS_ON);
337 break;
338 case DRM_COMPOSITION_TYPE_MODESET:
339 break;
340 case DRM_COMPOSITION_TYPE_EMPTY:
341 return 0;
342 default:
343 ALOGE("Unknown composition type %d/%d", composition->type(), display_);
344 return -ENOENT;
345 }
346
347 int ret = pthread_mutex_lock(&lock_);
348 if (ret) {
349 ALOGE("Failed to acquire compositor lock %d", ret);
350 return ret;
351 }
352
353 // Block the queue if it gets too large. Otherwise, SurfaceFlinger will start
354 // to eat our buffer handles when we get about 1 second behind.
355 while (composite_queue_.size() >= DRM_DISPLAY_COMPOSITOR_MAX_QUEUE_DEPTH) {
356 pthread_mutex_unlock(&lock_);
357 sched_yield();
358 pthread_mutex_lock(&lock_);
359 }
360
361 composite_queue_.push(std::move(composition));
362
363 ret = pthread_mutex_unlock(&lock_);
364 if (ret) {
365 ALOGE("Failed to release compositor lock %d", ret);
366 return ret;
367 }
368
369 worker_.Signal();
370 return 0;
371 }
372
373 std::tuple<uint32_t, uint32_t, int>
GetActiveModeResolution()374 DrmDisplayCompositor::GetActiveModeResolution() {
375 DrmConnector *connector = drm_->GetConnectorForDisplay(display_);
376 if (connector == NULL) {
377 ALOGE("Failed to determine display mode: no connector for display %d",
378 display_);
379 return std::make_tuple(0, 0, -ENODEV);
380 }
381
382 const DrmMode &mode = connector->active_mode();
383 return std::make_tuple(mode.h_display(), mode.v_display(), 0);
384 }
385
PrepareFramebuffer(DrmFramebuffer & fb,DrmDisplayComposition * display_comp)386 int DrmDisplayCompositor::PrepareFramebuffer(
387 DrmFramebuffer &fb, DrmDisplayComposition *display_comp) {
388 int ret = fb.WaitReleased(-1);
389 if (ret) {
390 ALOGE("Failed to wait for framebuffer release %d", ret);
391 return ret;
392 }
393 uint32_t width, height;
394 std::tie(width, height, ret) = GetActiveModeResolution();
395 if (ret) {
396 ALOGE(
397 "Failed to allocate framebuffer because the display resolution could "
398 "not be determined %d",
399 ret);
400 return ret;
401 }
402
403 fb.set_release_fence_fd(-1);
404 if (!fb.Allocate(width, height)) {
405 ALOGE("Failed to allocate framebuffer with size %dx%d", width, height);
406 return -ENOMEM;
407 }
408
409 display_comp->layers().emplace_back();
410 DrmHwcLayer &pre_comp_layer = display_comp->layers().back();
411 pre_comp_layer.sf_handle = fb.buffer()->handle;
412 pre_comp_layer.blending = DrmHwcBlending::kPreMult;
413 pre_comp_layer.source_crop = DrmHwcRect<float>(0, 0, width, height);
414 pre_comp_layer.display_frame = DrmHwcRect<int>(0, 0, width, height);
415 ret = pre_comp_layer.buffer.ImportBuffer(fb.buffer()->handle,
416 display_comp->importer());
417 if (ret) {
418 ALOGE("Failed to import framebuffer for display %d", ret);
419 return ret;
420 }
421
422 return ret;
423 }
424
ApplySquash(DrmDisplayComposition * display_comp)425 int DrmDisplayCompositor::ApplySquash(DrmDisplayComposition *display_comp) {
426 int ret = 0;
427
428 DrmFramebuffer &fb = squash_framebuffers_[squash_framebuffer_index_];
429 ret = PrepareFramebuffer(fb, display_comp);
430 if (ret) {
431 ALOGE("Failed to prepare framebuffer for squash %d", ret);
432 return ret;
433 }
434
435 std::vector<DrmCompositionRegion> ®ions = display_comp->squash_regions();
436 ret = pre_compositor_->Composite(display_comp->layers().data(),
437 regions.data(), regions.size(), fb.buffer());
438 pre_compositor_->Finish();
439
440 if (ret) {
441 ALOGE("Failed to squash layers");
442 return ret;
443 }
444
445 ret = display_comp->CreateNextTimelineFence();
446 if (ret <= 0) {
447 ALOGE("Failed to create squash framebuffer release fence %d", ret);
448 return ret;
449 }
450
451 fb.set_release_fence_fd(ret);
452 display_comp->SignalSquashDone();
453
454 return 0;
455 }
456
ApplyPreComposite(DrmDisplayComposition * display_comp)457 int DrmDisplayCompositor::ApplyPreComposite(
458 DrmDisplayComposition *display_comp) {
459 int ret = 0;
460
461 DrmFramebuffer &fb = framebuffers_[framebuffer_index_];
462 ret = PrepareFramebuffer(fb, display_comp);
463 if (ret) {
464 ALOGE("Failed to prepare framebuffer for pre-composite %d", ret);
465 return ret;
466 }
467
468 std::vector<DrmCompositionRegion> ®ions = display_comp->pre_comp_regions();
469 ret = pre_compositor_->Composite(display_comp->layers().data(),
470 regions.data(), regions.size(), fb.buffer());
471 pre_compositor_->Finish();
472
473 if (ret) {
474 ALOGE("Failed to pre-composite layers");
475 return ret;
476 }
477
478 ret = display_comp->CreateNextTimelineFence();
479 if (ret <= 0) {
480 ALOGE("Failed to create pre-composite framebuffer release fence %d", ret);
481 return ret;
482 }
483
484 fb.set_release_fence_fd(ret);
485 display_comp->SignalPreCompDone();
486
487 return 0;
488 }
489
DisablePlanes(DrmDisplayComposition * display_comp)490 int DrmDisplayCompositor::DisablePlanes(DrmDisplayComposition *display_comp) {
491 drmModeAtomicReqPtr pset = drmModeAtomicAlloc();
492 if (!pset) {
493 ALOGE("Failed to allocate property set");
494 return -ENOMEM;
495 }
496
497 int ret;
498 std::vector<DrmCompositionPlane> &comp_planes =
499 display_comp->composition_planes();
500 for (DrmCompositionPlane &comp_plane : comp_planes) {
501 DrmPlane *plane = comp_plane.plane();
502 ret = drmModeAtomicAddProperty(pset, plane->id(),
503 plane->crtc_property().id(), 0) < 0 ||
504 drmModeAtomicAddProperty(pset, plane->id(), plane->fb_property().id(),
505 0) < 0;
506 if (ret) {
507 ALOGE("Failed to add plane %d disable to pset", plane->id());
508 drmModeAtomicFree(pset);
509 return ret;
510 }
511 }
512
513 ret = drmModeAtomicCommit(drm_->fd(), pset, 0, drm_);
514 if (ret) {
515 ALOGE("Failed to commit pset ret=%d\n", ret);
516 drmModeAtomicFree(pset);
517 return ret;
518 }
519
520 drmModeAtomicFree(pset);
521 return 0;
522 }
523
PrepareFrame(DrmDisplayComposition * display_comp)524 int DrmDisplayCompositor::PrepareFrame(DrmDisplayComposition *display_comp) {
525 int ret = 0;
526
527 std::vector<DrmHwcLayer> &layers = display_comp->layers();
528 std::vector<DrmCompositionPlane> &comp_planes =
529 display_comp->composition_planes();
530 std::vector<DrmCompositionRegion> &squash_regions =
531 display_comp->squash_regions();
532 std::vector<DrmCompositionRegion> &pre_comp_regions =
533 display_comp->pre_comp_regions();
534
535 int squash_layer_index = -1;
536 if (squash_regions.size() > 0) {
537 squash_framebuffer_index_ = (squash_framebuffer_index_ + 1) % 2;
538 ret = ApplySquash(display_comp);
539 if (ret)
540 return ret;
541
542 squash_layer_index = layers.size() - 1;
543 } else {
544 if (UsesSquash(comp_planes)) {
545 DrmFramebuffer &fb = squash_framebuffers_[squash_framebuffer_index_];
546 layers.emplace_back();
547 squash_layer_index = layers.size() - 1;
548 DrmHwcLayer &squash_layer = layers.back();
549 ret = squash_layer.buffer.ImportBuffer(fb.buffer()->handle,
550 display_comp->importer());
551 if (ret) {
552 ALOGE("Failed to import old squashed framebuffer %d", ret);
553 return ret;
554 }
555 squash_layer.sf_handle = fb.buffer()->handle;
556 squash_layer.blending = DrmHwcBlending::kPreMult;
557 squash_layer.source_crop = DrmHwcRect<float>(
558 0, 0, squash_layer.buffer->width, squash_layer.buffer->height);
559 squash_layer.display_frame = DrmHwcRect<int>(
560 0, 0, squash_layer.buffer->width, squash_layer.buffer->height);
561 ret = display_comp->CreateNextTimelineFence();
562
563 if (ret <= 0) {
564 ALOGE("Failed to create squash framebuffer release fence %d", ret);
565 return ret;
566 }
567
568 fb.set_release_fence_fd(ret);
569 ret = 0;
570 }
571 }
572
573 bool do_pre_comp = pre_comp_regions.size() > 0;
574 int pre_comp_layer_index = -1;
575 if (do_pre_comp) {
576 ret = ApplyPreComposite(display_comp);
577 if (ret)
578 return ret;
579
580 pre_comp_layer_index = layers.size() - 1;
581 framebuffer_index_ = (framebuffer_index_ + 1) % DRM_DISPLAY_BUFFERS;
582 }
583
584 for (DrmCompositionPlane &comp_plane : comp_planes) {
585 std::vector<size_t> &source_layers = comp_plane.source_layers();
586 switch (comp_plane.type()) {
587 case DrmCompositionPlane::Type::kSquash:
588 if (source_layers.size())
589 ALOGE("Squash source_layers is expected to be empty (%zu/%d)",
590 source_layers[0], squash_layer_index);
591 source_layers.push_back(squash_layer_index);
592 break;
593 case DrmCompositionPlane::Type::kPrecomp:
594 if (!do_pre_comp) {
595 ALOGE(
596 "Can not use pre composite framebuffer with no pre composite "
597 "regions");
598 return -EINVAL;
599 }
600 // Replace source_layers with the output of the precomposite
601 source_layers.clear();
602 source_layers.push_back(pre_comp_layer_index);
603 break;
604 default:
605 break;
606 }
607 }
608
609 return ret;
610 }
611
CommitFrame(DrmDisplayComposition * display_comp,bool test_only)612 int DrmDisplayCompositor::CommitFrame(DrmDisplayComposition *display_comp,
613 bool test_only) {
614 ATRACE_CALL();
615
616 int ret = 0;
617
618 std::vector<DrmHwcLayer> &layers = display_comp->layers();
619 std::vector<DrmCompositionPlane> &comp_planes =
620 display_comp->composition_planes();
621 std::vector<DrmCompositionRegion> &pre_comp_regions =
622 display_comp->pre_comp_regions();
623
624 DrmConnector *connector = drm_->GetConnectorForDisplay(display_);
625 if (!connector) {
626 ALOGE("Could not locate connector for display %d", display_);
627 return -ENODEV;
628 }
629 DrmCrtc *crtc = drm_->GetCrtcForDisplay(display_);
630 if (!crtc) {
631 ALOGE("Could not locate crtc for display %d", display_);
632 return -ENODEV;
633 }
634
635 drmModeAtomicReqPtr pset = drmModeAtomicAlloc();
636 if (!pset) {
637 ALOGE("Failed to allocate property set");
638 return -ENOMEM;
639 }
640
641 if (mode_.needs_modeset) {
642 ret = drmModeAtomicAddProperty(pset, crtc->id(), crtc->mode_property().id(),
643 mode_.blob_id) < 0 ||
644 drmModeAtomicAddProperty(pset, connector->id(),
645 connector->crtc_id_property().id(),
646 crtc->id()) < 0;
647 if (ret) {
648 ALOGE("Failed to add blob %d to pset", mode_.blob_id);
649 drmModeAtomicFree(pset);
650 return ret;
651 }
652 }
653
654 for (DrmCompositionPlane &comp_plane : comp_planes) {
655 DrmPlane *plane = comp_plane.plane();
656 DrmCrtc *crtc = comp_plane.crtc();
657 std::vector<size_t> &source_layers = comp_plane.source_layers();
658
659 int fb_id = -1;
660 DrmHwcRect<int> display_frame;
661 DrmHwcRect<float> source_crop;
662 uint64_t rotation = 0;
663 uint64_t alpha = 0xFF;
664
665 if (comp_plane.type() != DrmCompositionPlane::Type::kDisable) {
666 if (source_layers.size() > 1) {
667 ALOGE("Can't handle more than one source layer sz=%zu type=%d",
668 source_layers.size(), comp_plane.type());
669 continue;
670 }
671
672 if (source_layers.empty() || source_layers.front() >= layers.size()) {
673 ALOGE("Source layer index %zu out of bounds %zu type=%d",
674 source_layers.front(), layers.size(), comp_plane.type());
675 break;
676 }
677 DrmHwcLayer &layer = layers[source_layers.front()];
678 if (!test_only && layer.acquire_fence.get() >= 0) {
679 int acquire_fence = layer.acquire_fence.get();
680 int total_fence_timeout = 0;
681 for (int i = 0; i < kAcquireWaitTries; ++i) {
682 int fence_timeout = kAcquireWaitTimeoutMs * (1 << i);
683 total_fence_timeout += fence_timeout;
684 ret = sync_wait(acquire_fence, fence_timeout);
685 if (ret)
686 ALOGW("Acquire fence %d wait %d failed (%d). Total time %d",
687 acquire_fence, i, ret, total_fence_timeout);
688 }
689 if (ret) {
690 ALOGE("Failed to wait for acquire %d/%d", acquire_fence, ret);
691 break;
692 }
693 layer.acquire_fence.Close();
694 }
695 if (!layer.buffer) {
696 ALOGE("Expected a valid framebuffer for pset");
697 break;
698 }
699 fb_id = layer.buffer->fb_id;
700 display_frame = layer.display_frame;
701 source_crop = layer.source_crop;
702 if (layer.blending == DrmHwcBlending::kPreMult)
703 alpha = layer.alpha;
704
705 rotation = 0;
706 if (layer.transform & DrmHwcTransform::kFlipH)
707 rotation |= 1 << DRM_REFLECT_X;
708 if (layer.transform & DrmHwcTransform::kFlipV)
709 rotation |= 1 << DRM_REFLECT_Y;
710 if (layer.transform & DrmHwcTransform::kRotate90)
711 rotation |= 1 << DRM_ROTATE_90;
712 else if (layer.transform & DrmHwcTransform::kRotate180)
713 rotation |= 1 << DRM_ROTATE_180;
714 else if (layer.transform & DrmHwcTransform::kRotate270)
715 rotation |= 1 << DRM_ROTATE_270;
716 }
717 // Disable the plane if there's no framebuffer
718 if (fb_id < 0) {
719 ret = drmModeAtomicAddProperty(pset, plane->id(),
720 plane->crtc_property().id(), 0) < 0 ||
721 drmModeAtomicAddProperty(pset, plane->id(),
722 plane->fb_property().id(), 0) < 0;
723 if (ret) {
724 ALOGE("Failed to add plane %d disable to pset", plane->id());
725 break;
726 }
727 continue;
728 }
729
730 // TODO: Once we have atomic test, this should fall back to GL
731 if (rotation && plane->rotation_property().id() == 0) {
732 ALOGE("Rotation is not supported on plane %d", plane->id());
733 ret = -EINVAL;
734 break;
735 }
736
737 // TODO: Once we have atomic test, this should fall back to GL
738 if (alpha != 0xFF && plane->alpha_property().id() == 0) {
739 ALOGE("Alpha is not supported on plane %d", plane->id());
740 ret = -EINVAL;
741 break;
742 }
743
744 ret = drmModeAtomicAddProperty(pset, plane->id(),
745 plane->crtc_property().id(), crtc->id()) < 0;
746 ret |= drmModeAtomicAddProperty(pset, plane->id(),
747 plane->fb_property().id(), fb_id) < 0;
748 ret |= drmModeAtomicAddProperty(pset, plane->id(),
749 plane->crtc_x_property().id(),
750 display_frame.left) < 0;
751 ret |= drmModeAtomicAddProperty(pset, plane->id(),
752 plane->crtc_y_property().id(),
753 display_frame.top) < 0;
754 ret |= drmModeAtomicAddProperty(
755 pset, plane->id(), plane->crtc_w_property().id(),
756 display_frame.right - display_frame.left) < 0;
757 ret |= drmModeAtomicAddProperty(
758 pset, plane->id(), plane->crtc_h_property().id(),
759 display_frame.bottom - display_frame.top) < 0;
760 ret |= drmModeAtomicAddProperty(pset, plane->id(),
761 plane->src_x_property().id(),
762 (int)(source_crop.left) << 16) < 0;
763 ret |= drmModeAtomicAddProperty(pset, plane->id(),
764 plane->src_y_property().id(),
765 (int)(source_crop.top) << 16) < 0;
766 ret |= drmModeAtomicAddProperty(
767 pset, plane->id(), plane->src_w_property().id(),
768 (int)(source_crop.right - source_crop.left) << 16) < 0;
769 ret |= drmModeAtomicAddProperty(
770 pset, plane->id(), plane->src_h_property().id(),
771 (int)(source_crop.bottom - source_crop.top) << 16) < 0;
772 if (ret) {
773 ALOGE("Failed to add plane %d to set", plane->id());
774 break;
775 }
776
777 if (plane->rotation_property().id()) {
778 ret = drmModeAtomicAddProperty(pset, plane->id(),
779 plane->rotation_property().id(),
780 rotation) < 0;
781 if (ret) {
782 ALOGE("Failed to add rotation property %d to plane %d",
783 plane->rotation_property().id(), plane->id());
784 break;
785 }
786 }
787
788 if (plane->alpha_property().id()) {
789 ret = drmModeAtomicAddProperty(pset, plane->id(),
790 plane->alpha_property().id(),
791 alpha) < 0;
792 if (ret) {
793 ALOGE("Failed to add alpha property %d to plane %d",
794 plane->alpha_property().id(), plane->id());
795 break;
796 }
797 }
798 }
799
800 out:
801 if (!ret) {
802 uint32_t flags = DRM_MODE_ATOMIC_ALLOW_MODESET;
803 if (test_only)
804 flags |= DRM_MODE_ATOMIC_TEST_ONLY;
805
806 ret = drmModeAtomicCommit(drm_->fd(), pset, flags, drm_);
807 if (ret) {
808 if (test_only)
809 ALOGI("Commit test pset failed ret=%d\n", ret);
810 else
811 ALOGE("Failed to commit pset ret=%d\n", ret);
812 drmModeAtomicFree(pset);
813 return ret;
814 }
815 }
816 if (pset)
817 drmModeAtomicFree(pset);
818
819 if (!test_only && mode_.needs_modeset) {
820 ret = drm_->DestroyPropertyBlob(mode_.old_blob_id);
821 if (ret) {
822 ALOGE("Failed to destroy old mode property blob %" PRIu32 "/%d",
823 mode_.old_blob_id, ret);
824 return ret;
825 }
826
827 /* TODO: Add dpms to the pset when the kernel supports it */
828 ret = ApplyDpms(display_comp);
829 if (ret) {
830 ALOGE("Failed to apply DPMS after modeset %d\n", ret);
831 return ret;
832 }
833
834 connector->set_active_mode(mode_.mode);
835 mode_.old_blob_id = mode_.blob_id;
836 mode_.blob_id = 0;
837 mode_.needs_modeset = false;
838 }
839
840 return ret;
841 }
842
ApplyDpms(DrmDisplayComposition * display_comp)843 int DrmDisplayCompositor::ApplyDpms(DrmDisplayComposition *display_comp) {
844 DrmConnector *conn = drm_->GetConnectorForDisplay(display_);
845 if (!conn) {
846 ALOGE("Failed to get DrmConnector for display %d", display_);
847 return -ENODEV;
848 }
849
850 const DrmProperty &prop = conn->dpms_property();
851 int ret = drmModeConnectorSetProperty(drm_->fd(), conn->id(), prop.id(),
852 display_comp->dpms_mode());
853 if (ret) {
854 ALOGE("Failed to set DPMS property for connector %d", conn->id());
855 return ret;
856 }
857 return 0;
858 }
859
CreateModeBlob(const DrmMode & mode)860 std::tuple<int, uint32_t> DrmDisplayCompositor::CreateModeBlob(
861 const DrmMode &mode) {
862 struct drm_mode_modeinfo drm_mode;
863 memset(&drm_mode, 0, sizeof(drm_mode));
864 mode.ToDrmModeModeInfo(&drm_mode);
865
866 uint32_t id = 0;
867 int ret = drm_->CreatePropertyBlob(&drm_mode,
868 sizeof(struct drm_mode_modeinfo), &id);
869 if (ret) {
870 ALOGE("Failed to create mode property blob %d", ret);
871 return std::make_tuple(ret, 0);
872 }
873 ALOGE("Create blob_id %" PRIu32 "\n", id);
874 return std::make_tuple(ret, id);
875 }
876
ClearDisplay()877 void DrmDisplayCompositor::ClearDisplay() {
878 AutoLock lock(&lock_, "compositor");
879 int ret = lock.Lock();
880 if (ret)
881 return;
882
883 if (!active_composition_)
884 return;
885
886 if (DisablePlanes(active_composition_.get()))
887 return;
888
889 active_composition_->SignalCompositionDone();
890
891 active_composition_.reset(NULL);
892 }
893
ApplyFrame(std::unique_ptr<DrmDisplayComposition> composition,int status)894 void DrmDisplayCompositor::ApplyFrame(
895 std::unique_ptr<DrmDisplayComposition> composition, int status) {
896 int ret = status;
897
898 if (!ret)
899 ret = CommitFrame(composition.get(), false);
900
901 if (ret) {
902 ALOGE("Composite failed for display %d", display_);
903 // Disable the hw used by the last active composition. This allows us to
904 // signal the release fences from that composition to avoid hanging.
905 ClearDisplay();
906 return;
907 }
908 ++dump_frames_composited_;
909
910 if (active_composition_)
911 active_composition_->SignalCompositionDone();
912
913 ret = pthread_mutex_lock(&lock_);
914 if (ret)
915 ALOGE("Failed to acquire lock for active_composition swap");
916
917 active_composition_.swap(composition);
918
919 if (!ret)
920 ret = pthread_mutex_unlock(&lock_);
921 if (ret)
922 ALOGE("Failed to release lock for active_composition swap");
923 }
924
Composite()925 int DrmDisplayCompositor::Composite() {
926 ATRACE_CALL();
927
928 if (!pre_compositor_) {
929 pre_compositor_.reset(new GLWorkerCompositor());
930 int ret = pre_compositor_->Init();
931 if (ret) {
932 ALOGE("Failed to initialize OpenGL compositor %d", ret);
933 return ret;
934 }
935 }
936
937 int ret = pthread_mutex_lock(&lock_);
938 if (ret) {
939 ALOGE("Failed to acquire compositor lock %d", ret);
940 return ret;
941 }
942 if (composite_queue_.empty()) {
943 ret = pthread_mutex_unlock(&lock_);
944 if (ret)
945 ALOGE("Failed to release compositor lock %d", ret);
946 return ret;
947 }
948
949 std::unique_ptr<DrmDisplayComposition> composition(
950 std::move(composite_queue_.front()));
951
952 composite_queue_.pop();
953
954 ret = pthread_mutex_unlock(&lock_);
955 if (ret) {
956 ALOGE("Failed to release compositor lock %d", ret);
957 return ret;
958 }
959
960 switch (composition->type()) {
961 case DRM_COMPOSITION_TYPE_FRAME:
962 ret = PrepareFrame(composition.get());
963 if (ret) {
964 ALOGE("Failed to prepare frame for display %d", display_);
965 return ret;
966 }
967 if (composition->geometry_changed()) {
968 // Send the composition to the kernel to ensure we can commit it. This
969 // is just a test, it won't actually commit the frame. If rejected,
970 // squash the frame into one layer and use the squashed composition
971 ret = CommitFrame(composition.get(), true);
972 if (ret)
973 ALOGI("Commit test failed, squashing frame for display %d", display_);
974 use_hw_overlays_ = !ret;
975 }
976
977 // If use_hw_overlays_ is false, we can't use hardware to composite the
978 // frame. So squash all layers into a single composition and queue that
979 // instead.
980 if (!use_hw_overlays_) {
981 std::unique_ptr<DrmDisplayComposition> squashed = CreateComposition();
982 ret = SquashFrame(composition.get(), squashed.get());
983 if (!ret) {
984 composition = std::move(squashed);
985 } else {
986 ALOGE("Failed to squash frame for display %d", display_);
987 // Disable the hw used by the last active composition. This allows us
988 // to signal the release fences from that composition to avoid
989 // hanging.
990 ClearDisplay();
991 return ret;
992 }
993 }
994 frame_worker_.QueueFrame(std::move(composition), ret);
995 break;
996 case DRM_COMPOSITION_TYPE_DPMS:
997 ret = ApplyDpms(composition.get());
998 if (ret)
999 ALOGE("Failed to apply dpms for display %d", display_);
1000 return ret;
1001 case DRM_COMPOSITION_TYPE_MODESET:
1002 mode_.mode = composition->display_mode();
1003 if (mode_.blob_id)
1004 drm_->DestroyPropertyBlob(mode_.blob_id);
1005 std::tie(ret, mode_.blob_id) = CreateModeBlob(mode_.mode);
1006 if (ret) {
1007 ALOGE("Failed to create mode blob for display %d", display_);
1008 return ret;
1009 }
1010 mode_.needs_modeset = true;
1011 return 0;
1012 default:
1013 ALOGE("Unknown composition type %d", composition->type());
1014 return -EINVAL;
1015 }
1016
1017 return ret;
1018 }
1019
HaveQueuedComposites() const1020 bool DrmDisplayCompositor::HaveQueuedComposites() const {
1021 int ret = pthread_mutex_lock(&lock_);
1022 if (ret) {
1023 ALOGE("Failed to acquire compositor lock %d", ret);
1024 return false;
1025 }
1026
1027 bool empty_ret = !composite_queue_.empty();
1028
1029 ret = pthread_mutex_unlock(&lock_);
1030 if (ret) {
1031 ALOGE("Failed to release compositor lock %d", ret);
1032 return false;
1033 }
1034
1035 return empty_ret;
1036 }
1037
SquashAll()1038 int DrmDisplayCompositor::SquashAll() {
1039 AutoLock lock(&lock_, "compositor");
1040 int ret = lock.Lock();
1041 if (ret)
1042 return ret;
1043
1044 if (!active_composition_)
1045 return 0;
1046
1047 std::unique_ptr<DrmDisplayComposition> comp = CreateComposition();
1048 ret = SquashFrame(active_composition_.get(), comp.get());
1049
1050 // ApplyFrame needs the lock
1051 lock.Unlock();
1052
1053 if (!ret)
1054 ApplyFrame(std::move(comp), 0);
1055
1056 return ret;
1057 }
1058
1059 // Returns:
1060 // - 0 if src is successfully squashed into dst
1061 // - -EALREADY if the src is already squashed
1062 // - Appropriate error if the squash fails
SquashFrame(DrmDisplayComposition * src,DrmDisplayComposition * dst)1063 int DrmDisplayCompositor::SquashFrame(DrmDisplayComposition *src,
1064 DrmDisplayComposition *dst) {
1065 if (src->type() != DRM_COMPOSITION_TYPE_FRAME)
1066 return -ENOTSUP;
1067
1068 std::vector<DrmCompositionPlane> &src_planes = src->composition_planes();
1069 std::vector<DrmHwcLayer> &src_layers = src->layers();
1070
1071 // Make sure there is more than one layer to squash.
1072 size_t src_planes_with_layer = std::count_if(
1073 src_planes.begin(), src_planes.end(), [](DrmCompositionPlane &p) {
1074 return p.type() != DrmCompositionPlane::Type::kDisable;
1075 });
1076 if (src_planes_with_layer <= 1)
1077 return -EALREADY;
1078
1079 int pre_comp_layer_index;
1080
1081 int ret = dst->Init(drm_, src->crtc(), src->importer(), src->planner(),
1082 src->frame_no());
1083 if (ret) {
1084 ALOGE("Failed to init squash all composition %d", ret);
1085 return ret;
1086 }
1087
1088 DrmCompositionPlane squashed_comp(DrmCompositionPlane::Type::kPrecomp, NULL,
1089 src->crtc());
1090 std::vector<DrmHwcLayer> dst_layers;
1091 for (DrmCompositionPlane &comp_plane : src_planes) {
1092 // Composition planes without DRM planes should never happen
1093 if (comp_plane.plane() == NULL) {
1094 ALOGE("Skipping squash all because of NULL plane");
1095 ret = -EINVAL;
1096 goto move_layers_back;
1097 }
1098
1099 if (comp_plane.type() == DrmCompositionPlane::Type::kDisable) {
1100 dst->AddPlaneDisable(comp_plane.plane());
1101 continue;
1102 }
1103
1104 for (auto i : comp_plane.source_layers()) {
1105 DrmHwcLayer &layer = src_layers[i];
1106
1107 // Squashing protected layers is impossible.
1108 if (layer.protected_usage()) {
1109 ret = -ENOTSUP;
1110 goto move_layers_back;
1111 }
1112
1113 // The OutputFds point to freed memory after hwc_set returns. They are
1114 // returned to the default to prevent DrmDisplayComposition::Plan from
1115 // filling the OutputFds.
1116 layer.release_fence = OutputFd();
1117 dst_layers.emplace_back(std::move(layer));
1118 squashed_comp.source_layers().push_back(
1119 squashed_comp.source_layers().size());
1120 }
1121
1122 if (comp_plane.plane()->type() == DRM_PLANE_TYPE_PRIMARY)
1123 squashed_comp.set_plane(comp_plane.plane());
1124 else
1125 dst->AddPlaneDisable(comp_plane.plane());
1126 }
1127
1128 ret = dst->SetLayers(dst_layers.data(), dst_layers.size(), false);
1129 if (ret) {
1130 ALOGE("Failed to set layers for squash all composition %d", ret);
1131 goto move_layers_back;
1132 }
1133
1134 ret = dst->AddPlaneComposition(std::move(squashed_comp));
1135 if (ret) {
1136 ALOGE("Failed to add squashed plane composition %d", ret);
1137 goto move_layers_back;
1138 }
1139
1140 ret = dst->FinalizeComposition();
1141 if (ret) {
1142 ALOGE("Failed to plan for squash all composition %d", ret);
1143 goto move_layers_back;
1144 }
1145
1146 ret = ApplyPreComposite(dst);
1147 if (ret) {
1148 ALOGE("Failed to pre-composite for squash all composition %d", ret);
1149 goto move_layers_back;
1150 }
1151
1152 pre_comp_layer_index = dst->layers().size() - 1;
1153 framebuffer_index_ = (framebuffer_index_ + 1) % DRM_DISPLAY_BUFFERS;
1154
1155 for (DrmCompositionPlane &plane : dst->composition_planes()) {
1156 if (plane.type() == DrmCompositionPlane::Type::kPrecomp) {
1157 // Replace source_layers with the output of the precomposite
1158 plane.source_layers().clear();
1159 plane.source_layers().push_back(pre_comp_layer_index);
1160 break;
1161 }
1162 }
1163
1164 return 0;
1165
1166 // TODO(zachr): think of a better way to transfer ownership back to the active
1167 // composition.
1168 move_layers_back:
1169 for (size_t plane_index = 0;
1170 plane_index < src_planes.size() && plane_index < dst_layers.size();) {
1171 if (src_planes[plane_index].source_layers().empty()) {
1172 plane_index++;
1173 continue;
1174 }
1175 for (auto i : src_planes[plane_index].source_layers())
1176 src_layers[i] = std::move(dst_layers[plane_index++]);
1177 }
1178
1179 return ret;
1180 }
1181
Dump(std::ostringstream * out) const1182 void DrmDisplayCompositor::Dump(std::ostringstream *out) const {
1183 int ret = pthread_mutex_lock(&lock_);
1184 if (ret)
1185 return;
1186
1187 uint64_t num_frames = dump_frames_composited_;
1188 dump_frames_composited_ = 0;
1189
1190 struct timespec ts;
1191 ret = clock_gettime(CLOCK_MONOTONIC, &ts);
1192 if (ret) {
1193 pthread_mutex_unlock(&lock_);
1194 return;
1195 }
1196
1197 uint64_t cur_ts = ts.tv_sec * 1000 * 1000 * 1000 + ts.tv_nsec;
1198 uint64_t num_ms = (cur_ts - dump_last_timestamp_ns_) / (1000 * 1000);
1199 float fps = num_ms ? (num_frames * 1000.0f) / (num_ms) : 0.0f;
1200
1201 *out << "--DrmDisplayCompositor[" << display_
1202 << "]: num_frames=" << num_frames << " num_ms=" << num_ms
1203 << " fps=" << fps << "\n";
1204
1205 dump_last_timestamp_ns_ = cur_ts;
1206
1207 if (active_composition_)
1208 active_composition_->Dump(out);
1209
1210 squash_state_.Dump(out);
1211
1212 pthread_mutex_unlock(&lock_);
1213 }
1214 }
1215