1 /*
2 * Copyright (C) 2024 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 LOG_TAG "drmhwc"
18 #define ATRACE_TAG (ATRACE_TAG_GRAPHICS | ATRACE_TAG_HAL)
19
20 #include "ComposerClient.h"
21
22 #include <cinttypes>
23 #include <cmath>
24 #include <memory>
25 #include <unordered_map>
26 #include <vector>
27
28 #include <aidl/android/hardware/graphics/common/Transform.h>
29 #include <aidl/android/hardware/graphics/composer3/ClientTarget.h>
30 #include <aidl/android/hardware/graphics/composer3/Composition.h>
31 #include <aidl/android/hardware/graphics/composer3/DisplayRequest.h>
32 #include <aidl/android/hardware/graphics/composer3/IComposerClient.h>
33 #include <aidl/android/hardware/graphics/composer3/Luts.h>
34 #include <aidl/android/hardware/graphics/composer3/PowerMode.h>
35 #include <aidl/android/hardware/graphics/composer3/PresentOrValidate.h>
36 #include <aidl/android/hardware/graphics/composer3/RenderIntent.h>
37 #include <aidlcommonsupport/NativeHandle.h>
38 #include <android-base/logging.h>
39 #include <android/binder_auto_utils.h>
40 #include <android/binder_ibinder_platform.h>
41 #include <cutils/native_handle.h>
42 #include <hardware/hwcomposer2.h>
43 #include <hardware/hwcomposer_defs.h>
44
45 #include "bufferinfo/BufferInfo.h"
46 #include "compositor/DisplayInfo.h"
47 #include "hwc2_device/HwcDisplay.h"
48 #include "hwc2_device/HwcDisplayConfigs.h"
49 #include "hwc2_device/HwcLayer.h"
50 #include "hwc3/DrmHwcThree.h"
51 #include "hwc3/Utils.h"
52
53 using ::android::HwcDisplay;
54 using ::android::HwcDisplayConfig;
55 using ::android::HwcDisplayConfigs;
56 using ::android::HwcLayer;
57 using ::android::LayerTransform;
58
59 #include "utils/log.h"
60
61 namespace aidl::android::hardware::graphics::composer3::impl {
62 namespace {
63
64 // clang-format off
65 constexpr std::array<float, 16> kIdentityMatrix = {
66 1.0F, 0.0F, 0.0F, 0.0F,
67 0.0F, 1.0F, 0.0F, 0.0F,
68 0.0F, 0.0F, 1.0F, 0.0F,
69 0.0F, 0.0F, 0.0F, 1.0F,
70 };
71 // clang-format on
72
AidlToBlendMode(const std::optional<ParcelableBlendMode> & aidl_blend_mode)73 std::optional<BufferBlendMode> AidlToBlendMode(
74 const std::optional<ParcelableBlendMode>& aidl_blend_mode) {
75 if (!aidl_blend_mode) {
76 return std::nullopt;
77 }
78
79 switch (aidl_blend_mode->blendMode) {
80 case common::BlendMode::NONE:
81 return BufferBlendMode::kNone;
82 case common::BlendMode::PREMULTIPLIED:
83 return BufferBlendMode::kPreMult;
84 case common::BlendMode::COVERAGE:
85 return BufferBlendMode::kCoverage;
86 case common::BlendMode::INVALID:
87 ALOGE("Invalid BlendMode");
88 return std::nullopt;
89 }
90 }
91
AidlToColorSpace(const std::optional<ParcelableDataspace> & dataspace)92 std::optional<BufferColorSpace> AidlToColorSpace(
93 const std::optional<ParcelableDataspace>& dataspace) {
94 if (!dataspace) {
95 return std::nullopt;
96 }
97
98 int32_t standard = static_cast<int32_t>(dataspace->dataspace) &
99 static_cast<int32_t>(common::Dataspace::STANDARD_MASK);
100 switch (standard) {
101 case static_cast<int32_t>(common::Dataspace::STANDARD_BT709):
102 return BufferColorSpace::kItuRec709;
103 case static_cast<int32_t>(common::Dataspace::STANDARD_BT601_625):
104 case static_cast<int32_t>(common::Dataspace::STANDARD_BT601_625_UNADJUSTED):
105 case static_cast<int32_t>(common::Dataspace::STANDARD_BT601_525):
106 case static_cast<int32_t>(common::Dataspace::STANDARD_BT601_525_UNADJUSTED):
107 return BufferColorSpace::kItuRec601;
108 case static_cast<int32_t>(common::Dataspace::STANDARD_BT2020):
109 case static_cast<int32_t>(
110 common::Dataspace::STANDARD_BT2020_CONSTANT_LUMINANCE):
111 return BufferColorSpace::kItuRec2020;
112 case static_cast<int32_t>(common::Dataspace::UNKNOWN):
113 return BufferColorSpace::kUndefined;
114 default:
115 ALOGE("Unsupported standard: %d", standard);
116 return std::nullopt;
117 }
118 }
119
AidlToSampleRange(const std::optional<ParcelableDataspace> & dataspace)120 std::optional<BufferSampleRange> AidlToSampleRange(
121 const std::optional<ParcelableDataspace>& dataspace) {
122 if (!dataspace) {
123 return std::nullopt;
124 }
125
126 int32_t sample_range = static_cast<int32_t>(dataspace->dataspace) &
127 static_cast<int32_t>(common::Dataspace::RANGE_MASK);
128 switch (sample_range) {
129 case static_cast<int32_t>(common::Dataspace::RANGE_FULL):
130 return BufferSampleRange::kFullRange;
131 case static_cast<int32_t>(common::Dataspace::RANGE_LIMITED):
132 return BufferSampleRange::kLimitedRange;
133 case static_cast<int32_t>(common::Dataspace::UNKNOWN):
134 return BufferSampleRange::kUndefined;
135 default:
136 ALOGE("Unsupported sample range: %d", sample_range);
137 return std::nullopt;
138 }
139 }
140
IsSupportedCompositionType(const std::optional<ParcelableComposition> composition)141 bool IsSupportedCompositionType(
142 const std::optional<ParcelableComposition> composition) {
143 if (!composition) {
144 return true;
145 }
146 switch (composition->composition) {
147 case Composition::INVALID:
148 case Composition::CLIENT:
149 case Composition::DEVICE:
150 case Composition::SOLID_COLOR:
151 case Composition::CURSOR:
152 return true;
153
154 // Unsupported composition types. Set an error for the current
155 // DisplayCommand and return.
156 case Composition::DISPLAY_DECORATION:
157 case Composition::SIDEBAND:
158 #if __ANDROID_API__ >= 34
159 case Composition::REFRESH_RATE_INDICATOR:
160 #endif
161 return false;
162 }
163 }
164
ValidateLayerBrightness(const std::optional<LayerBrightness> & brightness)165 bool ValidateLayerBrightness(const std::optional<LayerBrightness>& brightness) {
166 if (!brightness) {
167 return true;
168 }
169 return !(std::signbit(brightness->brightness) ||
170 std::isnan(brightness->brightness));
171 }
172
AidlToCompositionType(const std::optional<ParcelableComposition> composition)173 std::optional<HWC2::Composition> AidlToCompositionType(
174 const std::optional<ParcelableComposition> composition) {
175 if (!composition) {
176 return std::nullopt;
177 }
178
179 switch (composition->composition) {
180 case Composition::INVALID:
181 return HWC2::Composition::Invalid;
182 case Composition::CLIENT:
183 return HWC2::Composition::Client;
184 case Composition::DEVICE:
185 return HWC2::Composition::Device;
186 case Composition::SOLID_COLOR:
187 return HWC2::Composition::SolidColor;
188 case Composition::CURSOR:
189 return HWC2::Composition::Cursor;
190
191 // Unsupported composition types.
192 case Composition::DISPLAY_DECORATION:
193 case Composition::SIDEBAND:
194 #if __ANDROID_API__ >= 34
195 case Composition::REFRESH_RATE_INDICATOR:
196 #endif
197 ALOGE("Unsupported composition type: %s",
198 toString(composition->composition).c_str());
199 return std::nullopt;
200 }
201 }
202
203 #if __ANDROID_API__ < 35
204
205 class DisplayConfiguration {
206 public:
207 class Dpi {
208 public:
209 float x = 0.000000F;
210 float y = 0.000000F;
211 };
212 // NOLINTNEXTLINE(readability-identifier-naming)
213 int32_t configId = 0;
214 int32_t width = 0;
215 int32_t height = 0;
216 std::optional<Dpi> dpi;
217 // NOLINTNEXTLINE(readability-identifier-naming)
218 int32_t configGroup = 0;
219 // NOLINTNEXTLINE(readability-identifier-naming)
220 int32_t vsyncPeriod = 0;
221 };
222
223 #endif
224
HwcDisplayConfigToAidlConfiguration(const HwcDisplayConfigs & configs,const HwcDisplayConfig & config)225 DisplayConfiguration HwcDisplayConfigToAidlConfiguration(
226 const HwcDisplayConfigs& configs, const HwcDisplayConfig& config) {
227 DisplayConfiguration aidl_configuration =
228 {.configId = static_cast<int32_t>(config.id),
229 .width = config.mode.GetRawMode().hdisplay,
230 .height = config.mode.GetRawMode().vdisplay,
231 .configGroup = static_cast<int32_t>(config.group_id),
232 .vsyncPeriod = config.mode.GetVSyncPeriodNs()};
233
234 if (configs.mm_width != 0) {
235 // ideally this should be vdisplay/mm_heigth, however mm_height
236 // comes from edid parsing and is highly unreliable. Viewing the
237 // rarity of anisotropic displays, falling back to a single value
238 // for dpi yield more correct output.
239 static const float kMmPerInch = 25.4;
240 float dpi = float(config.mode.GetRawMode().hdisplay) * kMmPerInch /
241 float(configs.mm_width);
242 aidl_configuration.dpi = {.x = dpi, .y = dpi};
243 }
244 // TODO: Populate vrrConfig.
245 return aidl_configuration;
246 }
247
AidlToRect(const std::optional<common::Rect> & rect)248 std::optional<hwc_rect> AidlToRect(const std::optional<common::Rect>& rect) {
249 if (!rect) {
250 return std::nullopt;
251 }
252 return hwc_rect{rect->left, rect->top, rect->right, rect->bottom};
253 }
254
AidlToFRect(const std::optional<common::FRect> & rect)255 std::optional<hwc_frect> AidlToFRect(const std::optional<common::FRect>& rect) {
256 if (!rect) {
257 return std::nullopt;
258 }
259 return hwc_frect{rect->left, rect->top, rect->right, rect->bottom};
260 }
261
AidlToAlpha(const std::optional<PlaneAlpha> & alpha)262 std::optional<float> AidlToAlpha(const std::optional<PlaneAlpha>& alpha) {
263 if (!alpha) {
264 return std::nullopt;
265 }
266 return alpha->alpha;
267 }
268
AidlToZOrder(const std::optional<ZOrder> & z_order)269 std::optional<uint32_t> AidlToZOrder(const std::optional<ZOrder>& z_order) {
270 if (!z_order) {
271 return std::nullopt;
272 }
273 return z_order->z;
274 }
275
AidlToLayerTransform(const std::optional<ParcelableTransform> & aidl_transform)276 std::optional<LayerTransform> AidlToLayerTransform(
277 const std::optional<ParcelableTransform>& aidl_transform) {
278 if (!aidl_transform) {
279 return std::nullopt;
280 }
281
282 uint32_t transform = LayerTransform::kIdentity;
283 // 270* and 180* cannot be combined with flips. More specifically, they
284 // already contain both horizontal and vertical flips, so those fields are
285 // redundant in this case. 90* rotation can be combined with either horizontal
286 // flip or vertical flip, so treat it differently
287 if (aidl_transform->transform == common::Transform::ROT_270) {
288 transform = LayerTransform::kRotate270;
289 } else if (aidl_transform->transform == common::Transform::ROT_180) {
290 transform = LayerTransform::kRotate180;
291 } else {
292 auto aidl_transform_bits = static_cast<uint32_t>(aidl_transform->transform);
293 if ((aidl_transform_bits &
294 static_cast<uint32_t>(common::Transform::FLIP_H)) != 0)
295 transform |= LayerTransform::kFlipH;
296 if ((aidl_transform_bits &
297 static_cast<uint32_t>(common::Transform::FLIP_V)) != 0)
298 transform |= LayerTransform::kFlipV;
299 if ((aidl_transform_bits &
300 static_cast<uint32_t>(common::Transform::ROT_90)) != 0)
301 transform |= LayerTransform::kRotate90;
302 }
303 return static_cast<LayerTransform>(transform);
304 }
305
306 } // namespace
307
ComposerClient()308 ComposerClient::ComposerClient() {
309 DEBUG_FUNC();
310 }
311
Init()312 bool ComposerClient::Init() {
313 DEBUG_FUNC();
314 composer_resources_ = ComposerResources::Create();
315 if (composer_resources_) {
316 hwc_ = std::make_unique<DrmHwcThree>(composer_resources_.get());
317 }
318 return composer_resources_ != nullptr;
319 }
320
~ComposerClient()321 ComposerClient::~ComposerClient() {
322 DEBUG_FUNC();
323 {
324 // First Deinit the displays to start shutting down the Display's dependent
325 // threads such as VSyncWorker.
326 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
327 hwc_->DeinitDisplays();
328 }
329 // Sleep to wait for threads to complete and exit.
330 const int time_for_threads_to_exit_us = 200000;
331 usleep(time_for_threads_to_exit_us);
332 {
333 // Hold the lock while destructing the hwc_ and the objects that it owns.
334 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
335 hwc_.reset();
336 }
337 LOG(DEBUG) << "removed composer client";
338 }
339
createLayer(int64_t display_id,int32_t buffer_slot_count,int64_t * layer_id)340 ndk::ScopedAStatus ComposerClient::createLayer(int64_t display_id,
341 int32_t buffer_slot_count,
342 int64_t* layer_id) {
343 DEBUG_FUNC();
344 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
345
346 HwcDisplay* display = GetDisplay(display_id);
347 if (display == nullptr) {
348 return ToBinderStatus(hwc3::Error::kBadDisplay);
349 }
350
351 hwc2_layer_t hwc2_layer_id = 0;
352 auto err = Hwc2toHwc3Error(display->CreateLayer(&hwc2_layer_id));
353 if (err != hwc3::Error::kNone) {
354 return ToBinderStatus(err);
355 }
356
357 const int64_t created_layer_id = Hwc2LayerToHwc3(hwc2_layer_id);
358 err = composer_resources_->AddLayer(display_id, created_layer_id,
359 buffer_slot_count);
360 if (err != hwc3::Error::kNone) {
361 destroyLayer(display_id, created_layer_id);
362 return ToBinderStatus(err);
363 }
364
365 *layer_id = created_layer_id;
366 return ndk::ScopedAStatus::ok();
367 }
368
createVirtualDisplay(int32_t width,int32_t height,AidlPixelFormat format_hint,int32_t output_buffer_slot_count,VirtualDisplay * out_display)369 ndk::ScopedAStatus ComposerClient::createVirtualDisplay(
370 int32_t width, int32_t height, AidlPixelFormat format_hint,
371 int32_t output_buffer_slot_count, VirtualDisplay* out_display) {
372 DEBUG_FUNC();
373 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
374
375 hwc2_display_t hwc2_display_id = 0;
376 // TODO: Format is currently not used in drm_hwcomposer.
377 int32_t hwc2_format = 0;
378 auto err = Hwc2toHwc3Error(hwc_->CreateVirtualDisplay(width, height,
379 &hwc2_format,
380 &hwc2_display_id));
381 if (err != hwc3::Error::kNone) {
382 return ToBinderStatus(err);
383 }
384
385 const int64_t created_display_id = Hwc2DisplayToHwc3(hwc2_display_id);
386 err = composer_resources_->AddVirtualDisplay(hwc2_display_id,
387 output_buffer_slot_count);
388 if (err != hwc3::Error::kNone) {
389 hwc_->DestroyVirtualDisplay(hwc2_display_id);
390 return ToBinderStatus(err);
391 }
392
393 out_display->display = created_display_id;
394 out_display->format = format_hint;
395 return ndk::ScopedAStatus::ok();
396 }
397
destroyLayer(int64_t display_id,int64_t layer_id)398 ndk::ScopedAStatus ComposerClient::destroyLayer(int64_t display_id,
399 int64_t layer_id) {
400 DEBUG_FUNC();
401 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
402 HwcDisplay* display = GetDisplay(display_id);
403 if (display == nullptr) {
404 return ToBinderStatus(hwc3::Error::kBadDisplay);
405 }
406
407 auto err = Hwc2toHwc3Error(display->DestroyLayer(Hwc3LayerToHwc2(layer_id)));
408 if (err != hwc3::Error::kNone) {
409 return ToBinderStatus(err);
410 }
411
412 err = composer_resources_->RemoveLayer(display_id, layer_id);
413 return ToBinderStatus(err);
414 }
415
destroyVirtualDisplay(int64_t display_id)416 ndk::ScopedAStatus ComposerClient::destroyVirtualDisplay(int64_t display_id) {
417 DEBUG_FUNC();
418 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
419 auto err = Hwc2toHwc3Error(hwc_->DestroyVirtualDisplay(display_id));
420 return ToBinderStatus(err);
421 }
422
ValidateDisplayInternal(HwcDisplay & display,std::vector<int64_t> * out_changed_layers,std::vector<Composition> * out_composition_types,int32_t * out_display_request_mask,std::vector<int64_t> * out_requested_layers,std::vector<int32_t> * out_request_masks,ClientTargetProperty *,DimmingStage *)423 hwc3::Error ComposerClient::ValidateDisplayInternal(
424 HwcDisplay& display, std::vector<int64_t>* out_changed_layers,
425 std::vector<Composition>* out_composition_types,
426 int32_t* out_display_request_mask,
427 std::vector<int64_t>* out_requested_layers,
428 std::vector<int32_t>* out_request_masks,
429 ClientTargetProperty* /*out_client_target_property*/,
430 DimmingStage* /*out_dimming_stage*/) {
431 DEBUG_FUNC();
432
433 uint32_t num_types = 0;
434 uint32_t num_requests = 0;
435 const HWC2::Error hwc2_error = display.ValidateDisplay(&num_types,
436 &num_requests);
437
438 /* Check if display has pending changes and no errors */
439 if (hwc2_error != HWC2::Error::None &&
440 hwc2_error != HWC2::Error::HasChanges) {
441 return Hwc2toHwc3Error(hwc2_error);
442 }
443
444 hwc3::Error error = Hwc2toHwc3Error(
445 display.GetChangedCompositionTypes(&num_types, nullptr, nullptr));
446 if (error != hwc3::Error::kNone) {
447 return error;
448 }
449
450 std::vector<hwc2_layer_t> hwc_changed_layers(num_types);
451 std::vector<int32_t> hwc_composition_types(num_types);
452 error = Hwc2toHwc3Error(
453 display.GetChangedCompositionTypes(&num_types, hwc_changed_layers.data(),
454 hwc_composition_types.data()));
455 if (error != hwc3::Error::kNone) {
456 return error;
457 }
458
459 int32_t display_reqs = 0;
460 out_request_masks->resize(num_requests);
461 std::vector<hwc2_layer_t> hwc_requested_layers(num_requests);
462 error = Hwc2toHwc3Error(
463 display.GetDisplayRequests(&display_reqs, &num_requests,
464 hwc_requested_layers.data(),
465 out_request_masks->data()));
466 if (error != hwc3::Error::kNone) {
467 return error;
468 }
469
470 for (const auto& layer : hwc_changed_layers) {
471 out_changed_layers->emplace_back(Hwc2LayerToHwc3(layer));
472 }
473 for (const auto& type : hwc_composition_types) {
474 out_composition_types->emplace_back(Hwc2CompositionTypeToHwc3(type));
475 }
476 for (const auto& layer : hwc_requested_layers) {
477 out_requested_layers->emplace_back(Hwc2LayerToHwc3(layer));
478 }
479 *out_display_request_mask = display_reqs;
480
481 /* Client target property/dimming stage unsupported */
482 return hwc3::Error::kNone;
483 }
484
PresentDisplayInternal(uint64_t display_id,::android::base::unique_fd & out_display_fence,std::unordered_map<int64_t,::android::base::unique_fd> & out_release_fences)485 hwc3::Error ComposerClient::PresentDisplayInternal(
486 uint64_t display_id, ::android::base::unique_fd& out_display_fence,
487 std::unordered_map<int64_t, ::android::base::unique_fd>&
488 out_release_fences) {
489 DEBUG_FUNC();
490 auto* display = GetDisplay(display_id);
491 if (display == nullptr) {
492 return hwc3::Error::kBadDisplay;
493 }
494
495 if (composer_resources_->MustValidateDisplay(display_id)) {
496 return hwc3::Error::kNotValidated;
497 }
498
499 int32_t present_fence = -1;
500 auto error = Hwc2toHwc3Error(display->PresentDisplay(&present_fence));
501 if (error != hwc3::Error::kNone) {
502 return error;
503 }
504 out_display_fence.reset(present_fence);
505
506 uint32_t release_fence_count = 0;
507 error = Hwc2toHwc3Error(
508 display->GetReleaseFences(&release_fence_count, nullptr, nullptr));
509 if (error != hwc3::Error::kNone) {
510 return error;
511 }
512
513 std::vector<hwc2_layer_t> hwc_layers(release_fence_count);
514 std::vector<int32_t> hwc_fences(release_fence_count);
515 error = Hwc2toHwc3Error(display->GetReleaseFences(&release_fence_count,
516 hwc_layers.data(),
517 hwc_fences.data()));
518 if (error != hwc3::Error::kNone) {
519 return error;
520 }
521
522 for (size_t i = 0; i < hwc_layers.size(); i++) {
523 auto layer = Hwc2LayerToHwc3(hwc_layers[i]);
524 out_release_fences[layer] = ::android::base::unique_fd{hwc_fences[i]};
525 }
526
527 return hwc3::Error::kNone;
528 }
529
GetDisplay(uint64_t display_id)530 ::android::HwcDisplay* ComposerClient::GetDisplay(uint64_t display_id) {
531 return hwc_->GetDisplay(display_id);
532 }
533
DispatchLayerCommand(int64_t display_id,const LayerCommand & command)534 void ComposerClient::DispatchLayerCommand(int64_t display_id,
535 const LayerCommand& command) {
536 auto* display = GetDisplay(display_id);
537 if (display == nullptr) {
538 cmd_result_writer_->AddError(hwc3::Error::kBadDisplay);
539 return;
540 }
541
542 auto* layer = display->get_layer(command.layer);
543 if (layer == nullptr) {
544 cmd_result_writer_->AddError(hwc3::Error::kBadLayer);
545 return;
546 }
547
548 // If the requested composition type is not supported, the HWC should return
549 // an error and not process any further commands.
550 if (!IsSupportedCompositionType(command.composition)) {
551 cmd_result_writer_->AddError(hwc3::Error::kUnsupported);
552 return;
553 }
554
555 // For some invalid parameters, the HWC should return an error and not process
556 // any further commands.
557 if (!ValidateLayerBrightness(command.brightness)) {
558 cmd_result_writer_->AddError(hwc3::Error::kBadParameter);
559 return;
560 }
561
562 HwcLayer::LayerProperties properties;
563 if (command.buffer) {
564 HwcLayer::Buffer buffer;
565 auto err = ImportLayerBuffer(display_id, command.layer, *command.buffer,
566 &buffer.buffer_handle);
567 if (err != hwc3::Error::kNone) {
568 cmd_result_writer_->AddError(err);
569 return;
570 }
571 buffer.acquire_fence = ::android::MakeSharedFd(
572 command.buffer->fence.dup().release());
573 properties.buffer.emplace(buffer);
574 }
575
576 properties.blend_mode = AidlToBlendMode(command.blendMode);
577 properties.color_space = AidlToColorSpace(command.dataspace);
578 properties.sample_range = AidlToSampleRange(command.dataspace);
579 properties.composition_type = AidlToCompositionType(command.composition);
580 properties.display_frame = AidlToRect(command.displayFrame);
581 properties.alpha = AidlToAlpha(command.planeAlpha);
582 properties.source_crop = AidlToFRect(command.sourceCrop);
583 properties.transform = AidlToLayerTransform(command.transform);
584 properties.z_order = AidlToZOrder(command.z);
585
586 layer->SetLayerProperties(properties);
587
588 // Some unsupported functionality returns kUnsupported, and others
589 // are just a no-op.
590 // TODO: Audit whether some of these should actually return kUnsupported
591 // instead.
592 if (command.sidebandStream) {
593 cmd_result_writer_->AddError(hwc3::Error::kUnsupported);
594 }
595 if (command.luts) {
596 cmd_result_writer_->AddError(hwc3::Error::kUnsupported);
597 }
598 // TODO: Blocking region handling missing.
599 // TODO: Layer surface damage.
600 // TODO: Layer visible region.
601 // TODO: Per-frame metadata.
602 // TODO: Layer color transform.
603 // TODO: Layer cursor position.
604 // TODO: Layer color.
605 }
606
ExecuteDisplayCommand(const DisplayCommand & command)607 void ComposerClient::ExecuteDisplayCommand(const DisplayCommand& command) {
608 const int64_t display_id = command.display;
609 if (hwc_->GetDisplay(display_id) == nullptr) {
610 cmd_result_writer_->AddError(hwc3::Error::kBadDisplay);
611 return;
612 }
613
614 if (command.brightness) {
615 // TODO: Implement support for display brightness.
616 cmd_result_writer_->AddError(hwc3::Error::kUnsupported);
617 return;
618 }
619
620 for (const auto& layer_cmd : command.layers) {
621 DispatchLayerCommand(command.display, layer_cmd);
622 }
623
624 if (command.colorTransformMatrix) {
625 ExecuteSetDisplayColorTransform(command.display,
626 *command.colorTransformMatrix);
627 }
628 if (command.clientTarget) {
629 ExecuteSetDisplayClientTarget(command.display, *command.clientTarget);
630 }
631 if (command.virtualDisplayOutputBuffer) {
632 ExecuteSetDisplayOutputBuffer(command.display,
633 *command.virtualDisplayOutputBuffer);
634 }
635 if (command.validateDisplay) {
636 ExecuteValidateDisplay(command.display, command.expectedPresentTime);
637 }
638 if (command.acceptDisplayChanges) {
639 ExecuteAcceptDisplayChanges(command.display);
640 }
641 if (command.presentDisplay) {
642 ExecutePresentDisplay(command.display);
643 }
644 if (command.presentOrValidateDisplay) {
645 ExecutePresentOrValidateDisplay(command.display,
646 command.expectedPresentTime);
647 }
648 }
649
executeCommands(const std::vector<DisplayCommand> & commands,std::vector<CommandResultPayload> * results)650 ndk::ScopedAStatus ComposerClient::executeCommands(
651 const std::vector<DisplayCommand>& commands,
652 std::vector<CommandResultPayload>* results) {
653 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
654 DEBUG_FUNC();
655 cmd_result_writer_ = std::make_unique<CommandResultWriter>(results);
656 for (const auto& cmd : commands) {
657 ExecuteDisplayCommand(cmd);
658 cmd_result_writer_->IncrementCommand();
659 }
660 cmd_result_writer_.reset();
661
662 return ndk::ScopedAStatus::ok();
663 }
664
getActiveConfig(int64_t display_id,int32_t * config_id)665 ndk::ScopedAStatus ComposerClient::getActiveConfig(int64_t display_id,
666 int32_t* config_id) {
667 DEBUG_FUNC();
668 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
669 HwcDisplay* display = GetDisplay(display_id);
670 if (display == nullptr) {
671 return ToBinderStatus(hwc3::Error::kBadDisplay);
672 }
673
674 const HwcDisplayConfig* config = display->GetLastRequestedConfig();
675 if (config == nullptr) {
676 return ToBinderStatus(hwc3::Error::kBadConfig);
677 }
678
679 *config_id = Hwc2ConfigIdToHwc3(config->id);
680 return ndk::ScopedAStatus::ok();
681 }
682
getColorModes(int64_t display_id,std::vector<ColorMode> * color_modes)683 ndk::ScopedAStatus ComposerClient::getColorModes(
684 int64_t display_id, std::vector<ColorMode>* color_modes) {
685 DEBUG_FUNC();
686 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
687 HwcDisplay* display = GetDisplay(display_id);
688 if (display == nullptr) {
689 return ToBinderStatus(hwc3::Error::kBadDisplay);
690 }
691
692 uint32_t num_modes = 0;
693 auto error = Hwc2toHwc3Error(display->GetColorModes(&num_modes, nullptr));
694 if (error != hwc3::Error::kNone) {
695 return ToBinderStatus(error);
696 }
697
698 std::vector<int32_t> hwc2_color_modes(num_modes);
699 error = Hwc2toHwc3Error(
700 display->GetColorModes(&num_modes, hwc2_color_modes.data()));
701 if (error != hwc3::Error::kNone) {
702 return ToBinderStatus(error);
703 }
704
705 for (const auto& mode : hwc2_color_modes) {
706 color_modes->push_back(Hwc2ColorModeToHwc3(mode));
707 }
708
709 return ndk::ScopedAStatus::ok();
710 }
711
getDataspaceSaturationMatrix(common::Dataspace dataspace,std::vector<float> * matrix)712 ndk::ScopedAStatus ComposerClient::getDataspaceSaturationMatrix(
713 common::Dataspace dataspace, std::vector<float>* matrix) {
714 DEBUG_FUNC();
715 if (dataspace != common::Dataspace::SRGB_LINEAR) {
716 return ToBinderStatus(hwc3::Error::kBadParameter);
717 }
718
719 matrix->clear();
720 matrix->insert(matrix->begin(), kIdentityMatrix.begin(),
721 kIdentityMatrix.end());
722
723 return ndk::ScopedAStatus::ok();
724 }
725
getDisplayAttribute(int64_t display_id,int32_t config_id,DisplayAttribute attribute,int32_t * value)726 ndk::ScopedAStatus ComposerClient::getDisplayAttribute(
727 int64_t display_id, int32_t config_id, DisplayAttribute attribute,
728 int32_t* value) {
729 DEBUG_FUNC();
730 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
731 HwcDisplay* display = GetDisplay(display_id);
732 if (display == nullptr) {
733 return ToBinderStatus(hwc3::Error::kBadDisplay);
734 }
735
736 const HwcDisplayConfigs& configs = display->GetDisplayConfigs();
737 auto config = configs.hwc_configs.find(config_id);
738 if (config == configs.hwc_configs.end()) {
739 return ToBinderStatus(hwc3::Error::kBadConfig);
740 }
741
742 DisplayConfiguration
743 aidl_configuration = HwcDisplayConfigToAidlConfiguration(configs,
744 config->second);
745 // Legacy API for querying DPI uses units of dots per 1000 inches.
746 static const int kLegacyDpiUnit = 1000;
747 switch (attribute) {
748 case DisplayAttribute::WIDTH:
749 *value = aidl_configuration.width;
750 break;
751 case DisplayAttribute::HEIGHT:
752 *value = aidl_configuration.height;
753 break;
754 case DisplayAttribute::VSYNC_PERIOD:
755 *value = aidl_configuration.vsyncPeriod;
756 break;
757 case DisplayAttribute::DPI_X:
758 *value = aidl_configuration.dpi
759 ? static_cast<int>(aidl_configuration.dpi->x *
760 kLegacyDpiUnit)
761 : -1;
762 break;
763 case DisplayAttribute::DPI_Y:
764 *value = aidl_configuration.dpi
765 ? static_cast<int>(aidl_configuration.dpi->y *
766 kLegacyDpiUnit)
767 : -1;
768 break;
769 case DisplayAttribute::CONFIG_GROUP:
770 *value = aidl_configuration.configGroup;
771 break;
772 case DisplayAttribute::INVALID:
773 return ToBinderStatus(hwc3::Error::kUnsupported);
774 }
775 return ndk::ScopedAStatus::ok();
776 }
777
getDisplayCapabilities(int64_t display_id,std::vector<DisplayCapability> * caps)778 ndk::ScopedAStatus ComposerClient::getDisplayCapabilities(
779 int64_t display_id, std::vector<DisplayCapability>* caps) {
780 DEBUG_FUNC();
781 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
782 HwcDisplay* display = GetDisplay(display_id);
783 if (display == nullptr) {
784 return ToBinderStatus(hwc3::Error::kBadDisplay);
785 }
786
787 uint32_t num_capabilities = 0;
788 hwc3::Error error = Hwc2toHwc3Error(
789 display->GetDisplayCapabilities(&num_capabilities, nullptr));
790 if (error != hwc3::Error::kNone) {
791 return ToBinderStatus(error);
792 }
793
794 std::vector<uint32_t> out_caps(num_capabilities);
795 error = Hwc2toHwc3Error(
796 display->GetDisplayCapabilities(&num_capabilities, out_caps.data()));
797 if (error != hwc3::Error::kNone) {
798 return ToBinderStatus(error);
799 }
800
801 caps->reserve(num_capabilities);
802 for (const auto cap : out_caps) {
803 caps->emplace_back(Hwc2DisplayCapabilityToHwc3(cap));
804 }
805 return ndk::ScopedAStatus::ok();
806 }
807
getDisplayConfigs(int64_t display_id,std::vector<int32_t> * out_configs)808 ndk::ScopedAStatus ComposerClient::getDisplayConfigs(
809 int64_t display_id, std::vector<int32_t>* out_configs) {
810 DEBUG_FUNC();
811 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
812 HwcDisplay* display = GetDisplay(display_id);
813 if (display == nullptr) {
814 return ToBinderStatus(hwc3::Error::kBadDisplay);
815 }
816
817 const HwcDisplayConfigs& configs = display->GetDisplayConfigs();
818 for (const auto& [id, config] : configs.hwc_configs) {
819 out_configs->push_back(static_cast<int32_t>(id));
820 }
821 return ndk::ScopedAStatus::ok();
822 }
823
getDisplayConnectionType(int64_t display_id,DisplayConnectionType * type)824 ndk::ScopedAStatus ComposerClient::getDisplayConnectionType(
825 int64_t display_id, DisplayConnectionType* type) {
826 DEBUG_FUNC();
827 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
828 HwcDisplay* display = GetDisplay(display_id);
829 if (display == nullptr) {
830 return ToBinderStatus(hwc3::Error::kBadDisplay);
831 }
832
833 uint32_t out_type = 0;
834 const hwc3::Error error = Hwc2toHwc3Error(
835 display->GetDisplayConnectionType(&out_type));
836 if (error != hwc3::Error::kNone) {
837 return ToBinderStatus(error);
838 }
839
840 *type = Hwc2DisplayConnectionTypeToHwc3(out_type);
841 return ndk::ScopedAStatus::ok();
842 }
843
getDisplayIdentificationData(int64_t display_id,DisplayIdentification * id)844 ndk::ScopedAStatus ComposerClient::getDisplayIdentificationData(
845 int64_t display_id, DisplayIdentification* id) {
846 DEBUG_FUNC();
847 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
848 HwcDisplay* display = GetDisplay(display_id);
849 if (display == nullptr) {
850 return ToBinderStatus(hwc3::Error::kBadDisplay);
851 }
852
853 uint8_t port = 0;
854 uint32_t data_size = 0;
855 hwc3::Error error = Hwc2toHwc3Error(
856 display->GetDisplayIdentificationData(&port, &data_size, nullptr));
857 if (error != hwc3::Error::kNone) {
858 return ToBinderStatus(error);
859 }
860
861 id->data.resize(data_size);
862 error = Hwc2toHwc3Error(
863 display->GetDisplayIdentificationData(&port, &data_size,
864 id->data.data()));
865 if (error != hwc3::Error::kNone) {
866 return ToBinderStatus(error);
867 }
868
869 id->port = static_cast<int8_t>(port);
870 return ndk::ScopedAStatus::ok();
871 }
872
getDisplayName(int64_t display_id,std::string * name)873 ndk::ScopedAStatus ComposerClient::getDisplayName(int64_t display_id,
874 std::string* name) {
875 DEBUG_FUNC();
876 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
877 HwcDisplay* display = GetDisplay(display_id);
878 if (display == nullptr) {
879 return ToBinderStatus(hwc3::Error::kBadDisplay);
880 }
881
882 uint32_t size = 0;
883 auto error = Hwc2toHwc3Error(display->GetDisplayName(&size, nullptr));
884 if (error != hwc3::Error::kNone) {
885 return ToBinderStatus(error);
886 }
887
888 name->resize(size);
889 error = Hwc2toHwc3Error(display->GetDisplayName(&size, name->data()));
890 return ToBinderStatus(error);
891 }
892
getDisplayVsyncPeriod(int64_t display_id,int32_t * vsync_period)893 ndk::ScopedAStatus ComposerClient::getDisplayVsyncPeriod(
894 int64_t display_id, int32_t* vsync_period) {
895 DEBUG_FUNC();
896 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
897 HwcDisplay* display = GetDisplay(display_id);
898 if (display == nullptr) {
899 return ToBinderStatus(hwc3::Error::kBadDisplay);
900 }
901
902 // getDisplayVsyncPeriod should return the vsync period of the config that
903 // is currently committed to the kernel. If a config change is pending due to
904 // setActiveConfigWithConstraints, return the pre-change vsync period.
905 const HwcDisplayConfig* config = display->GetCurrentConfig();
906 if (config == nullptr) {
907 return ToBinderStatus(hwc3::Error::kBadConfig);
908 }
909
910 *vsync_period = config->mode.GetVSyncPeriodNs();
911 return ndk::ScopedAStatus::ok();
912 }
913
getDisplayedContentSample(int64_t,int64_t,int64_t,DisplayContentSample *)914 ndk::ScopedAStatus ComposerClient::getDisplayedContentSample(
915 int64_t /*display_id*/, int64_t /*max_frames*/, int64_t /*timestamp*/,
916 DisplayContentSample* /*samples*/) {
917 DEBUG_FUNC();
918 return ToBinderStatus(hwc3::Error::kUnsupported);
919 }
920
getDisplayedContentSamplingAttributes(int64_t,DisplayContentSamplingAttributes *)921 ndk::ScopedAStatus ComposerClient::getDisplayedContentSamplingAttributes(
922 int64_t /*display_id*/, DisplayContentSamplingAttributes* /*attrs*/) {
923 DEBUG_FUNC();
924 return ToBinderStatus(hwc3::Error::kUnsupported);
925 }
926
getDisplayPhysicalOrientation(int64_t display_id,common::Transform * orientation)927 ndk::ScopedAStatus ComposerClient::getDisplayPhysicalOrientation(
928 int64_t display_id, common::Transform* orientation) {
929 DEBUG_FUNC();
930
931 if (orientation == nullptr) {
932 ALOGE("Invalid 'orientation' pointer.");
933 return ToBinderStatus(hwc3::Error::kBadParameter);
934 }
935
936 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
937 HwcDisplay* display = GetDisplay(display_id);
938 if (display == nullptr) {
939 return ToBinderStatus(hwc3::Error::kBadDisplay);
940 }
941
942 PanelOrientation
943 drm_orientation = display->getDisplayPhysicalOrientation().value_or(
944 PanelOrientation::kModePanelOrientationNormal);
945
946 switch (drm_orientation) {
947 case PanelOrientation::kModePanelOrientationNormal:
948 *orientation = common::Transform::NONE;
949 break;
950 case PanelOrientation::kModePanelOrientationBottomUp:
951 *orientation = common::Transform::ROT_180;
952 break;
953 case PanelOrientation::kModePanelOrientationLeftUp:
954 *orientation = common::Transform::ROT_270;
955 break;
956 case PanelOrientation::kModePanelOrientationRightUp:
957 *orientation = common::Transform::ROT_90;
958 break;
959 default:
960 ALOGE("Unknown panel orientation value: %d", drm_orientation);
961 return ToBinderStatus(hwc3::Error::kBadDisplay);
962 }
963
964 return ndk::ScopedAStatus::ok();
965 }
966
getHdrCapabilities(int64_t display_id,HdrCapabilities * caps)967 ndk::ScopedAStatus ComposerClient::getHdrCapabilities(int64_t display_id,
968 HdrCapabilities* caps) {
969 DEBUG_FUNC();
970 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
971 HwcDisplay* display = GetDisplay(display_id);
972 if (display == nullptr) {
973 return ToBinderStatus(hwc3::Error::kBadDisplay);
974 }
975
976 /* No HDR capabilities */
977 caps->types.clear();
978 return ndk::ScopedAStatus::ok();
979 }
980
getMaxVirtualDisplayCount(int32_t * count)981 ndk::ScopedAStatus ComposerClient::getMaxVirtualDisplayCount(int32_t* count) {
982 DEBUG_FUNC();
983 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
984 *count = static_cast<int32_t>(hwc_->GetMaxVirtualDisplayCount());
985 return ndk::ScopedAStatus::ok();
986 }
987
getPerFrameMetadataKeys(int64_t,std::vector<PerFrameMetadataKey> *)988 ndk::ScopedAStatus ComposerClient::getPerFrameMetadataKeys(
989 int64_t /*display_id*/, std::vector<PerFrameMetadataKey>* /*keys*/) {
990 DEBUG_FUNC();
991 return ToBinderStatus(hwc3::Error::kUnsupported);
992 }
993
getReadbackBufferAttributes(int64_t,ReadbackBufferAttributes *)994 ndk::ScopedAStatus ComposerClient::getReadbackBufferAttributes(
995 int64_t /*display_id*/, ReadbackBufferAttributes* /*attrs*/) {
996 DEBUG_FUNC();
997 return ToBinderStatus(hwc3::Error::kUnsupported);
998 }
999
getReadbackBufferFence(int64_t,ndk::ScopedFileDescriptor *)1000 ndk::ScopedAStatus ComposerClient::getReadbackBufferFence(
1001 int64_t /*display_id*/, ndk::ScopedFileDescriptor* /*acquireFence*/) {
1002 DEBUG_FUNC();
1003 return ToBinderStatus(hwc3::Error::kUnsupported);
1004 }
1005
getRenderIntents(int64_t display_id,ColorMode mode,std::vector<RenderIntent> * intents)1006 ndk::ScopedAStatus ComposerClient::getRenderIntents(
1007 int64_t display_id, ColorMode mode, std::vector<RenderIntent>* intents) {
1008 DEBUG_FUNC();
1009 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
1010 HwcDisplay* display = GetDisplay(display_id);
1011 if (display == nullptr) {
1012 return ToBinderStatus(hwc3::Error::kBadDisplay);
1013 }
1014
1015 const int32_t hwc2_color_mode = Hwc3ColorModeToHwc2(mode);
1016 uint32_t out_num_intents = 0;
1017 auto error = Hwc2toHwc3Error(
1018 display->GetRenderIntents(hwc2_color_mode, &out_num_intents, nullptr));
1019 if (error != hwc3::Error::kNone) {
1020 return ToBinderStatus(error);
1021 }
1022
1023 std::vector<int32_t> out_intents(out_num_intents);
1024 error = Hwc2toHwc3Error(display->GetRenderIntents(hwc2_color_mode,
1025 &out_num_intents,
1026 out_intents.data()));
1027 if (error != hwc3::Error::kNone) {
1028 return ToBinderStatus(error);
1029 }
1030
1031 intents->reserve(out_num_intents);
1032 for (const auto intent : out_intents) {
1033 intents->emplace_back(Hwc2RenderIntentToHwc3(intent));
1034 }
1035 return ndk::ScopedAStatus::ok();
1036 }
1037
getSupportedContentTypes(int64_t display_id,std::vector<ContentType> * types)1038 ndk::ScopedAStatus ComposerClient::getSupportedContentTypes(
1039 int64_t display_id, std::vector<ContentType>* types) {
1040 DEBUG_FUNC();
1041 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
1042 HwcDisplay* display = GetDisplay(display_id);
1043 if (display == nullptr) {
1044 return ToBinderStatus(hwc3::Error::kBadDisplay);
1045 }
1046
1047 // Support for ContentType is not implemented.
1048 types->clear();
1049 return ndk::ScopedAStatus::ok();
1050 }
1051
getDisplayDecorationSupport(int64_t,std::optional<common::DisplayDecorationSupport> *)1052 ndk::ScopedAStatus ComposerClient::getDisplayDecorationSupport(
1053 int64_t /*display_id*/,
1054 std::optional<common::DisplayDecorationSupport>* /*support_struct*/) {
1055 DEBUG_FUNC();
1056 return ToBinderStatus(hwc3::Error::kUnsupported);
1057 }
1058
registerCallback(const std::shared_ptr<IComposerCallback> & callback)1059 ndk::ScopedAStatus ComposerClient::registerCallback(
1060 const std::shared_ptr<IComposerCallback>& callback) {
1061 DEBUG_FUNC();
1062 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
1063 // This function is specified to be called exactly once.
1064 hwc_->Init(callback);
1065 return ndk::ScopedAStatus::ok();
1066 }
1067
setActiveConfig(int64_t display_id,int32_t config)1068 ndk::ScopedAStatus ComposerClient::setActiveConfig(int64_t display_id,
1069 int32_t config) {
1070 DEBUG_FUNC();
1071
1072 VsyncPeriodChangeTimeline timeline;
1073 VsyncPeriodChangeConstraints constraints = {
1074 .desiredTimeNanos = ::android::ResourceManager::GetTimeMonotonicNs(),
1075 .seamlessRequired = false,
1076 };
1077 return setActiveConfigWithConstraints(display_id, config, constraints,
1078 &timeline);
1079 }
1080
setActiveConfigWithConstraints(int64_t display_id,int32_t config,const VsyncPeriodChangeConstraints & constraints,VsyncPeriodChangeTimeline * timeline)1081 ndk::ScopedAStatus ComposerClient::setActiveConfigWithConstraints(
1082 int64_t display_id, int32_t config,
1083 const VsyncPeriodChangeConstraints& constraints,
1084 VsyncPeriodChangeTimeline* timeline) {
1085 DEBUG_FUNC();
1086 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
1087 HwcDisplay* display = GetDisplay(display_id);
1088 if (display == nullptr) {
1089 return ToBinderStatus(hwc3::Error::kBadDisplay);
1090 }
1091
1092 if (constraints.seamlessRequired) {
1093 return ToBinderStatus(hwc3::Error::kSeamlessNotAllowed);
1094 }
1095
1096 const bool future_config = constraints.desiredTimeNanos >
1097 ::android::ResourceManager::GetTimeMonotonicNs();
1098 const HwcDisplayConfig* current_config = display->GetCurrentConfig();
1099 const HwcDisplayConfig* next_config = display->GetConfig(config);
1100 const bool same_config_group = current_config != nullptr &&
1101 next_config != nullptr &&
1102 current_config->group_id ==
1103 next_config->group_id;
1104 // If the contraints dictate that this is to be applied in the future, it
1105 // must be queued. If the new config is in the same config group as the
1106 // current one, then queue it to reduce jank.
1107 HwcDisplay::ConfigError result{};
1108 if (future_config || same_config_group) {
1109 QueuedConfigTiming timing = {};
1110 result = display->QueueConfig(config, constraints.desiredTimeNanos,
1111 constraints.seamlessRequired, &timing);
1112 timeline->newVsyncAppliedTimeNanos = timing.new_vsync_time_ns;
1113 timeline->refreshTimeNanos = timing.refresh_time_ns;
1114 timeline->refreshRequired = true;
1115 } else {
1116 // Fall back to a blocking commit, which may modeset.
1117 result = display->SetConfig(config);
1118 timeline->newVsyncAppliedTimeNanos = ::android::ResourceManager::
1119 GetTimeMonotonicNs();
1120 timeline->refreshRequired = false;
1121 }
1122
1123 switch (result) {
1124 case HwcDisplay::ConfigError::kBadConfig:
1125 return ToBinderStatus(hwc3::Error::kBadConfig);
1126 case HwcDisplay::ConfigError::kSeamlessNotAllowed:
1127 return ToBinderStatus(hwc3::Error::kSeamlessNotAllowed);
1128 case HwcDisplay::ConfigError::kSeamlessNotPossible:
1129 return ToBinderStatus(hwc3::Error::kSeamlessNotPossible);
1130 case HwcDisplay::ConfigError::kNone:
1131 return ndk::ScopedAStatus::ok();
1132 }
1133 }
1134
setBootDisplayConfig(int64_t,int32_t)1135 ndk::ScopedAStatus ComposerClient::setBootDisplayConfig(int64_t /*display_id*/,
1136 int32_t /*config*/) {
1137 DEBUG_FUNC();
1138 return ToBinderStatus(hwc3::Error::kUnsupported);
1139 }
1140
clearBootDisplayConfig(int64_t)1141 ndk::ScopedAStatus ComposerClient::clearBootDisplayConfig(
1142 int64_t /*display_id*/) {
1143 DEBUG_FUNC();
1144 return ToBinderStatus(hwc3::Error::kUnsupported);
1145 }
1146
getPreferredBootDisplayConfig(int64_t,int32_t *)1147 ndk::ScopedAStatus ComposerClient::getPreferredBootDisplayConfig(
1148 int64_t /*display_id*/, int32_t* /*config*/) {
1149 DEBUG_FUNC();
1150 return ToBinderStatus(hwc3::Error::kUnsupported);
1151 }
1152
setAutoLowLatencyMode(int64_t display_id,bool on)1153 ndk::ScopedAStatus ComposerClient::setAutoLowLatencyMode(int64_t display_id,
1154 bool on) {
1155 DEBUG_FUNC();
1156 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
1157 HwcDisplay* display = GetDisplay(display_id);
1158 if (display == nullptr) {
1159 return ToBinderStatus(hwc3::Error::kBadDisplay);
1160 }
1161
1162 auto error = Hwc2toHwc3Error(display->SetAutoLowLatencyMode(on));
1163 return ToBinderStatus(error);
1164 }
1165
setClientTargetSlotCount(int64_t display_id,int32_t count)1166 ndk::ScopedAStatus ComposerClient::setClientTargetSlotCount(int64_t display_id,
1167 int32_t count) {
1168 DEBUG_FUNC();
1169 return ToBinderStatus(
1170 composer_resources_->SetDisplayClientTargetCacheSize(display_id, count));
1171 }
1172
setColorMode(int64_t display_id,ColorMode mode,RenderIntent intent)1173 ndk::ScopedAStatus ComposerClient::setColorMode(int64_t display_id,
1174 ColorMode mode,
1175 RenderIntent intent) {
1176 DEBUG_FUNC();
1177 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
1178 HwcDisplay* display = GetDisplay(display_id);
1179 if (display == nullptr) {
1180 return ToBinderStatus(hwc3::Error::kBadDisplay);
1181 }
1182
1183 auto error = display->SetColorModeWithIntent(Hwc3ColorModeToHwc2(mode),
1184 Hwc3RenderIntentToHwc2(intent));
1185 return ToBinderStatus(Hwc2toHwc3Error(error));
1186 }
1187
setContentType(int64_t display_id,ContentType type)1188 ndk::ScopedAStatus ComposerClient::setContentType(int64_t display_id,
1189 ContentType type) {
1190 DEBUG_FUNC();
1191 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
1192 HwcDisplay* display = GetDisplay(display_id);
1193 if (display == nullptr) {
1194 return ToBinderStatus(hwc3::Error::kBadDisplay);
1195 }
1196
1197 if (type == ContentType::NONE) {
1198 return ndk::ScopedAStatus::ok();
1199 }
1200 return ToBinderStatus(hwc3::Error::kUnsupported);
1201 }
1202
setDisplayedContentSamplingEnabled(int64_t,bool,FormatColorComponent,int64_t)1203 ndk::ScopedAStatus ComposerClient::setDisplayedContentSamplingEnabled(
1204 int64_t /*display_id*/, bool /*enable*/,
1205 FormatColorComponent /*componentMask*/, int64_t /*maxFrames*/) {
1206 DEBUG_FUNC();
1207 return ToBinderStatus(hwc3::Error::kUnsupported);
1208 }
1209
setPowerMode(int64_t display_id,PowerMode mode)1210 ndk::ScopedAStatus ComposerClient::setPowerMode(int64_t display_id,
1211 PowerMode mode) {
1212 DEBUG_FUNC();
1213 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
1214 HwcDisplay* display = GetDisplay(display_id);
1215 if (display == nullptr) {
1216 return ToBinderStatus(hwc3::Error::kBadDisplay);
1217 }
1218
1219 if (mode == PowerMode::ON_SUSPEND) {
1220 return ToBinderStatus(hwc3::Error::kUnsupported);
1221 }
1222
1223 auto error = display->SetPowerMode(Hwc3PowerModeToHwc2(mode));
1224 return ToBinderStatus(Hwc2toHwc3Error(error));
1225 }
1226
setReadbackBuffer(int64_t,const AidlNativeHandle &,const ndk::ScopedFileDescriptor &)1227 ndk::ScopedAStatus ComposerClient::setReadbackBuffer(
1228 int64_t /*display_id*/, const AidlNativeHandle& /*aidlBuffer*/,
1229 const ndk::ScopedFileDescriptor& /*releaseFence*/) {
1230 DEBUG_FUNC();
1231 return ToBinderStatus(hwc3::Error::kUnsupported);
1232 }
1233
setVsyncEnabled(int64_t display_id,bool enabled)1234 ndk::ScopedAStatus ComposerClient::setVsyncEnabled(int64_t display_id,
1235 bool enabled) {
1236 DEBUG_FUNC();
1237 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
1238 HwcDisplay* display = GetDisplay(display_id);
1239 if (display == nullptr) {
1240 return ToBinderStatus(hwc3::Error::kBadDisplay);
1241 }
1242
1243 auto error = display->SetVsyncEnabled(static_cast<int32_t>(enabled));
1244 return ToBinderStatus(Hwc2toHwc3Error(error));
1245 }
1246
setIdleTimerEnabled(int64_t,int32_t)1247 ndk::ScopedAStatus ComposerClient::setIdleTimerEnabled(int64_t /*display_id*/,
1248 int32_t /*timeout*/) {
1249 DEBUG_FUNC();
1250 return ToBinderStatus(hwc3::Error::kUnsupported);
1251 }
1252
1253 #if __ANDROID_API__ >= 34
1254
getOverlaySupport(OverlayProperties *)1255 ndk::ScopedAStatus ComposerClient::getOverlaySupport(
1256 OverlayProperties* /*out_overlay_properties*/) {
1257 return ToBinderStatus(hwc3::Error::kUnsupported);
1258 }
1259
getHdrConversionCapabilities(std::vector<common::HdrConversionCapability> *)1260 ndk::ScopedAStatus ComposerClient::getHdrConversionCapabilities(
1261 std::vector<common::HdrConversionCapability>* /*out_capabilities*/) {
1262 return ToBinderStatus(hwc3::Error::kUnsupported);
1263 }
1264
setHdrConversionStrategy(const common::HdrConversionStrategy &,common::Hdr *)1265 ndk::ScopedAStatus ComposerClient::setHdrConversionStrategy(
1266 const common::HdrConversionStrategy& /*conversion_strategy*/,
1267 common::Hdr* /*out_hdr*/) {
1268 return ToBinderStatus(hwc3::Error::kUnsupported);
1269 }
1270
setRefreshRateChangedCallbackDebugEnabled(int64_t,bool)1271 ndk::ScopedAStatus ComposerClient::setRefreshRateChangedCallbackDebugEnabled(
1272 int64_t /*display*/, bool /*enabled*/) {
1273 return ToBinderStatus(hwc3::Error::kUnsupported);
1274 }
1275
1276 #endif
1277
1278 #if __ANDROID_API__ >= 35
1279
getDisplayConfigurations(int64_t display_id,int32_t,std::vector<DisplayConfiguration> * configurations)1280 ndk::ScopedAStatus ComposerClient::getDisplayConfigurations(
1281 int64_t display_id, int32_t /*max_frame_interval_ns*/,
1282 std::vector<DisplayConfiguration>* configurations) {
1283 DEBUG_FUNC();
1284 const std::unique_lock lock(hwc_->GetResMan().GetMainLock());
1285 HwcDisplay* display = GetDisplay(display_id);
1286 if (display == nullptr) {
1287 return ToBinderStatus(hwc3::Error::kBadDisplay);
1288 }
1289
1290 const HwcDisplayConfigs& configs = display->GetDisplayConfigs();
1291 for (const auto& [id, config] : configs.hwc_configs) {
1292 configurations->push_back(
1293 HwcDisplayConfigToAidlConfiguration(configs, config));
1294 }
1295 return ndk::ScopedAStatus::ok();
1296 }
1297
notifyExpectedPresent(int64_t,const ClockMonotonicTimestamp &,int32_t)1298 ndk::ScopedAStatus ComposerClient::notifyExpectedPresent(
1299 int64_t /*display*/, const ClockMonotonicTimestamp& /*expected_present_time*/,
1300 int32_t /*frame_interval_ns*/) {
1301 return ToBinderStatus(hwc3::Error::kUnsupported);
1302 }
1303
startHdcpNegotiation(int64_t,const AidlHdcpLevels &)1304 ndk::ScopedAStatus ComposerClient::startHdcpNegotiation(
1305 int64_t /*display*/, const AidlHdcpLevels& /*levels*/) {
1306 return ToBinderStatus(hwc3::Error::kUnsupported);
1307 }
1308
1309 #endif
1310
getMaxLayerPictureProfiles(int64_t,int32_t *)1311 ndk::ScopedAStatus ComposerClient::getMaxLayerPictureProfiles(int64_t, int32_t*) {
1312 return ToBinderStatus(hwc3::Error::kUnsupported);
1313 }
1314
getLuts(int64_t,const std::vector<Buffer> &,std::vector<Luts> *)1315 ndk::ScopedAStatus ComposerClient::getLuts(int64_t, const std::vector<Buffer>&,
1316 std::vector<Luts>*) {
1317 return ToBinderStatus(hwc3::Error::kUnsupported);
1318 }
1319
Dump()1320 std::string ComposerClient::Dump() {
1321 uint32_t size = 0;
1322 hwc_->Dump(&size, nullptr);
1323
1324 std::string buffer(size, '\0');
1325 hwc_->Dump(&size, &buffer.front());
1326 return buffer;
1327 }
1328
createBinder()1329 ::ndk::SpAIBinder ComposerClient::createBinder() {
1330 auto binder = BnComposerClient::createBinder();
1331 AIBinder_setInheritRt(binder.get(), true);
1332 return binder;
1333 }
1334
ImportLayerBuffer(int64_t display_id,int64_t layer_id,const Buffer & buffer,buffer_handle_t * out_imported_buffer)1335 hwc3::Error ComposerClient::ImportLayerBuffer(
1336 int64_t display_id, int64_t layer_id, const Buffer& buffer,
1337 buffer_handle_t* out_imported_buffer) {
1338 *out_imported_buffer = nullptr;
1339
1340 auto releaser = composer_resources_->CreateResourceReleaser(true);
1341 auto err = composer_resources_->GetLayerBuffer(display_id, layer_id, buffer,
1342 out_imported_buffer,
1343 releaser.get());
1344 return err;
1345 }
1346
ExecuteSetDisplayColorTransform(uint64_t display_id,const std::vector<float> & matrix)1347 void ComposerClient::ExecuteSetDisplayColorTransform(
1348 uint64_t display_id, const std::vector<float>& matrix) {
1349 auto* display = GetDisplay(display_id);
1350 if (display == nullptr) {
1351 cmd_result_writer_->AddError(hwc3::Error::kBadDisplay);
1352 return;
1353 }
1354
1355 auto almost_equal = [](auto a, auto b) {
1356 const float epsilon = 0.001F;
1357 return std::abs(a - b) < epsilon;
1358 };
1359 const bool is_identity = std::equal(matrix.begin(), matrix.end(),
1360 kIdentityMatrix.begin(), almost_equal);
1361
1362 const int32_t hint = is_identity ? HAL_COLOR_TRANSFORM_IDENTITY
1363 : HAL_COLOR_TRANSFORM_ARBITRARY_MATRIX;
1364
1365 auto error = Hwc2toHwc3Error(display->SetColorTransform(matrix.data(), hint));
1366 if (error != hwc3::Error::kNone) {
1367 cmd_result_writer_->AddError(error);
1368 }
1369 }
ExecuteSetDisplayClientTarget(uint64_t display_id,const ClientTarget & command)1370 void ComposerClient::ExecuteSetDisplayClientTarget(
1371 uint64_t display_id, const ClientTarget& command) {
1372 auto* display = GetDisplay(display_id);
1373 if (display == nullptr) {
1374 cmd_result_writer_->AddError(hwc3::Error::kBadDisplay);
1375 return;
1376 }
1377
1378 hwc_region_t damage_regions;
1379 damage_regions.numRects = command.damage.size();
1380
1381 std::vector<hwc_rect_t> regions(command.damage.size());
1382 for (const auto& region : command.damage) {
1383 regions.push_back({region.left, region.top, region.right, region.bottom});
1384 }
1385 damage_regions.rects = regions.data();
1386
1387 buffer_handle_t imported_buffer = nullptr;
1388 auto buf_releaser = composer_resources_->CreateResourceReleaser(true);
1389
1390 auto error = composer_resources_->GetDisplayClientTarget(display_id,
1391 command.buffer,
1392 &imported_buffer,
1393 buf_releaser.get());
1394 if (error != hwc3::Error::kNone) {
1395 cmd_result_writer_->AddError(error);
1396 return;
1397 }
1398
1399 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-const-cast)
1400 auto fence = const_cast<::ndk::ScopedFileDescriptor&>(command.buffer.fence)
1401 .release();
1402 error = Hwc2toHwc3Error(
1403 display->SetClientTarget(imported_buffer, fence,
1404 Hwc3DataspaceToHwc2(command.dataspace),
1405 damage_regions));
1406 if (error != hwc3::Error::kNone) {
1407 cmd_result_writer_->AddError(error);
1408 }
1409 }
1410
ExecuteSetDisplayOutputBuffer(uint64_t display_id,const Buffer & buffer)1411 void ComposerClient::ExecuteSetDisplayOutputBuffer(uint64_t display_id,
1412 const Buffer& buffer) {
1413 auto* display = GetDisplay(display_id);
1414 if (display == nullptr) {
1415 cmd_result_writer_->AddError(hwc3::Error::kBadDisplay);
1416 return;
1417 }
1418
1419 buffer_handle_t imported_buffer = nullptr;
1420 auto buf_releaser = composer_resources_->CreateResourceReleaser(true);
1421
1422 auto error = composer_resources_->GetDisplayOutputBuffer(display_id, buffer,
1423 &imported_buffer,
1424 buf_releaser.get());
1425 if (error != hwc3::Error::kNone) {
1426 cmd_result_writer_->AddError(error);
1427 return;
1428 }
1429
1430 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-const-cast)
1431 auto fence = const_cast<::ndk::ScopedFileDescriptor&>(buffer.fence).release();
1432 error = Hwc2toHwc3Error(display->SetOutputBuffer(imported_buffer, fence));
1433 if (error != hwc3::Error::kNone) {
1434 cmd_result_writer_->AddError(error);
1435 return;
1436 }
1437 }
ExecuteValidateDisplay(int64_t display_id,std::optional<ClockMonotonicTimestamp>)1438 void ComposerClient::ExecuteValidateDisplay(
1439 int64_t display_id,
1440 std::optional<ClockMonotonicTimestamp> /*expected_present_time*/
1441 ) {
1442 auto* display = GetDisplay(display_id);
1443 if (display == nullptr) {
1444 cmd_result_writer_->AddError(hwc3::Error::kBadDisplay);
1445 return;
1446 }
1447
1448 /* TODO: Handle expectedPresentTime */
1449 /* This can be implemented in multiple ways. For example, the expected present
1450 * time property can be implemented by the DRM driver directly as a CRTC
1451 * property. See:
1452 * https://cs.android.com/android/platform/superproject/main/+/b8b3b1646e64d0235f77b9e717a3e4082e26f2a8:hardware/google/graphics/common/libhwc2.1/libdrmresource/drm/drmcrtc.cpp;drc=468f6172546ab98983de18210222f231f16b21e1;l=88
1453 * Unfortunately there doesn't seem to be a standardised way of delaying
1454 * presentation with a timestamp in the DRM API. What we can do alternatively
1455 * is to spawn a separate presentation thread that could handle the VBlank
1456 * events by using DRM_MODE_PAGE_FLIP_EVENT and schedule them appropriately.
1457 */
1458
1459 std::vector<int64_t> changed_layers;
1460 std::vector<Composition> composition_types;
1461 int32_t display_request_mask = 0;
1462 std::vector<int64_t> requested_layers;
1463 std::vector<int32_t> request_masks;
1464
1465 const hwc3::Error error = ValidateDisplayInternal(*display, &changed_layers,
1466 &composition_types,
1467 &display_request_mask,
1468 &requested_layers,
1469 &request_masks, nullptr,
1470 nullptr);
1471
1472 if (error != hwc3::Error::kNone) {
1473 cmd_result_writer_->AddError(error);
1474 }
1475
1476 // If a CommandError has been been set for the current DisplayCommand, then
1477 // no other results should be returned besides the error.
1478 if (cmd_result_writer_->HasError()) {
1479 return;
1480 }
1481
1482 DisplayChanges changes{};
1483 for (size_t i = 0; i < composition_types.size(); i++) {
1484 changes.AddLayerCompositionChange(display_id, changed_layers[i],
1485 composition_types[i]);
1486 }
1487
1488 std::vector<DisplayRequest::LayerRequest> layer_requests;
1489 for (size_t i = 0; i < requested_layers.size(); i++) {
1490 layer_requests.push_back({requested_layers[i], request_masks[i]});
1491 }
1492
1493 const DisplayRequest request_changes{display_id, display_request_mask,
1494 layer_requests};
1495 changes.display_request_changes = request_changes;
1496
1497 cmd_result_writer_->AddChanges(changes);
1498 composer_resources_->SetDisplayMustValidateState(display_id, false);
1499 }
1500
ExecuteAcceptDisplayChanges(int64_t display_id)1501 void ComposerClient::ExecuteAcceptDisplayChanges(int64_t display_id) {
1502 auto* display = GetDisplay(display_id);
1503 if (display == nullptr) {
1504 cmd_result_writer_->AddError(hwc3::Error::kBadDisplay);
1505 return;
1506 }
1507
1508 auto error = Hwc2toHwc3Error(display->AcceptDisplayChanges());
1509 if (error != hwc3::Error::kNone) {
1510 cmd_result_writer_->AddError(error);
1511 return;
1512 }
1513 }
1514
ExecutePresentDisplay(int64_t display_id)1515 void ComposerClient::ExecutePresentDisplay(int64_t display_id) {
1516 auto* display = GetDisplay(display_id);
1517 if (display == nullptr) {
1518 cmd_result_writer_->AddError(hwc3::Error::kBadDisplay);
1519 return;
1520 }
1521
1522 ::android::base::unique_fd display_fence;
1523 std::unordered_map<int64_t, ::android::base::unique_fd> release_fences;
1524 auto error = PresentDisplayInternal(display_id, display_fence,
1525 release_fences);
1526 if (error != hwc3::Error::kNone) {
1527 cmd_result_writer_->AddError(error);
1528 }
1529 if (cmd_result_writer_->HasError()) {
1530 return;
1531 }
1532
1533 cmd_result_writer_->AddPresentFence(display_id, std::move(display_fence));
1534 cmd_result_writer_->AddReleaseFence(display_id, release_fences);
1535 }
1536
ExecutePresentOrValidateDisplay(int64_t display_id,std::optional<ClockMonotonicTimestamp> expected_present_time)1537 void ComposerClient::ExecutePresentOrValidateDisplay(
1538 int64_t display_id,
1539 std::optional<ClockMonotonicTimestamp> expected_present_time) {
1540 auto* display = GetDisplay(display_id);
1541 if (display == nullptr) {
1542 cmd_result_writer_->AddError(hwc3::Error::kBadDisplay);
1543 return;
1544 }
1545
1546 /* TODO: Handle expectedPresentTime */
1547 /* This can be implemented in multiple ways. For example, the expected present
1548 * time property can be implemented by the DRM driver directly as a CRTC
1549 * property. See:
1550 * https://cs.android.com/android/platform/superproject/main/+/b8b3b1646e64d0235f77b9e717a3e4082e26f2a8:hardware/google/graphics/common/libhwc2.1/libdrmresource/drm/drmcrtc.cpp;drc=468f6172546ab98983de18210222f231f16b21e1;l=88
1551 * Unfortunately there doesn't seem to be a standardised way of delaying
1552 * presentation with a timestamp in the DRM API. What we can do alternatively
1553 * is to spawn a separate presentation thread that could handle the VBlank
1554 * events by using DRM_MODE_PAGE_FLIP_EVENT and schedule them appropriately.
1555 */
1556
1557 /* TODO: Add check if it's possible to skip display validation */
1558 ExecuteValidateDisplay(display_id, expected_present_time);
1559 cmd_result_writer_
1560 ->AddPresentOrValidateResult(display_id,
1561 PresentOrValidate::Result::Validated);
1562 }
1563
1564 } // namespace aidl::android::hardware::graphics::composer3::impl
1565