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1 /*
2  * Copyright (C) 2022 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 "hwc-display"
18 #define ATRACE_TAG ATRACE_TAG_GRAPHICS
19 
20 #include "HwcDisplay.h"
21 
22 #include "DrmHwcTwo.h"
23 #include "backend/Backend.h"
24 #include "backend/BackendManager.h"
25 #include "bufferinfo/BufferInfoGetter.h"
26 #include "utils/log.h"
27 #include "utils/properties.h"
28 
29 namespace android {
30 
DumpDelta(HwcDisplay::Stats delta)31 std::string HwcDisplay::DumpDelta(HwcDisplay::Stats delta) {
32   if (delta.total_pixops_ == 0)
33     return "No stats yet";
34   double ratio = 1.0 - double(delta.gpu_pixops_) / double(delta.total_pixops_);
35 
36   std::stringstream ss;
37   ss << " Total frames count: " << delta.total_frames_ << "\n"
38      << " Failed to test commit frames: " << delta.failed_kms_validate_ << "\n"
39      << " Failed to commit frames: " << delta.failed_kms_present_ << "\n"
40      << ((delta.failed_kms_present_ > 0)
41              ? " !!! Internal failure, FIX it please\n"
42              : "")
43      << " Flattened frames: " << delta.frames_flattened_ << "\n"
44      << " Pixel operations (free units)"
45      << " : [TOTAL: " << delta.total_pixops_ << " / GPU: " << delta.gpu_pixops_
46      << "]\n"
47      << " Composition efficiency: " << ratio;
48 
49   return ss.str();
50 }
51 
Dump()52 std::string HwcDisplay::Dump() {
53   std::string flattening_state_str;
54   switch (flattenning_state_) {
55     case ClientFlattenningState::Disabled:
56       flattening_state_str = "Disabled";
57       break;
58     case ClientFlattenningState::NotRequired:
59       flattening_state_str = "Not needed";
60       break;
61     case ClientFlattenningState::Flattened:
62       flattening_state_str = "Active";
63       break;
64     case ClientFlattenningState::ClientRefreshRequested:
65       flattening_state_str = "Refresh requested";
66       break;
67     default:
68       flattening_state_str = std::to_string(flattenning_state_) +
69                              " VSync remains";
70   }
71 
72   std::string connector_name = IsInHeadlessMode()
73                                    ? "NULL-DISPLAY"
74                                    : GetPipe().connector->Get()->GetName();
75 
76   std::stringstream ss;
77   ss << "- Display on: " << connector_name << "\n"
78      << "  Flattening state: " << flattening_state_str << "\n"
79      << "Statistics since system boot:\n"
80      << DumpDelta(total_stats_) << "\n\n"
81      << "Statistics since last dumpsys request:\n"
82      << DumpDelta(total_stats_.minus(prev_stats_)) << "\n\n";
83 
84   memcpy(&prev_stats_, &total_stats_, sizeof(Stats));
85   return ss.str();
86 }
87 
HwcDisplay(hwc2_display_t handle,HWC2::DisplayType type,DrmHwcTwo * hwc2)88 HwcDisplay::HwcDisplay(hwc2_display_t handle, HWC2::DisplayType type,
89                        DrmHwcTwo *hwc2)
90     : hwc2_(hwc2),
91       handle_(handle),
92       type_(type),
93       client_layer_(this),
94       color_transform_hint_(HAL_COLOR_TRANSFORM_IDENTITY) {
95   // clang-format off
96   color_transform_matrix_ = {1.0, 0.0, 0.0, 0.0,
97                              0.0, 1.0, 0.0, 0.0,
98                              0.0, 0.0, 1.0, 0.0,
99                              0.0, 0.0, 0.0, 1.0};
100   // clang-format on
101 }
102 
103 HwcDisplay::~HwcDisplay() = default;
104 
SetPipeline(DrmDisplayPipeline * pipeline)105 void HwcDisplay::SetPipeline(DrmDisplayPipeline *pipeline) {
106   Deinit();
107 
108   pipeline_ = pipeline;
109 
110   if (pipeline != nullptr || handle_ == kPrimaryDisplay) {
111     Init();
112     hwc2_->ScheduleHotplugEvent(handle_, /*connected = */ true);
113   } else {
114     hwc2_->ScheduleHotplugEvent(handle_, /*connected = */ false);
115   }
116 }
117 
Deinit()118 void HwcDisplay::Deinit() {
119   if (pipeline_ != nullptr) {
120     AtomicCommitArgs a_args{};
121     a_args.composition = std::make_shared<DrmKmsPlan>();
122     GetPipe().atomic_state_manager->ExecuteAtomicCommit(a_args);
123 /*
124  *  TODO:
125  *  Unfortunately the following causes regressions on db845c
126  *  with VtsHalGraphicsComposerV2_3TargetTest due to the display
127  *  never coming back. Patches to avoiding that issue on the
128  *  the kernel side unfortunately causes further crashes in
129  *  drm_hwcomposer, because the client detach takes longer then the
130  *  1 second max VTS expects. So for now as a workaround, lets skip
131  *  deactivating the display on deinit, which matches previous
132  *  behavior prior to commit d0494d9b8097
133  */
134 #if 0
135     a_args.composition = {};
136     a_args.active = false;
137     GetPipe().atomic_state_manager->ExecuteAtomicCommit(a_args);
138 #endif
139 
140     vsync_worker_.Init(nullptr, [](int64_t) {});
141     current_plan_.reset();
142     backend_.reset();
143   }
144 
145   SetClientTarget(nullptr, -1, 0, {});
146 }
147 
Init()148 HWC2::Error HwcDisplay::Init() {
149   ChosePreferredConfig();
150 
151   int ret = vsync_worker_.Init(pipeline_, [this](int64_t timestamp) {
152     const std::lock_guard<std::mutex> lock(hwc2_->GetResMan().GetMainLock());
153     if (vsync_event_en_) {
154       uint32_t period_ns{};
155       GetDisplayVsyncPeriod(&period_ns);
156       hwc2_->SendVsyncEventToClient(handle_, timestamp, period_ns);
157     }
158     if (vsync_flattening_en_) {
159       ProcessFlatenningVsyncInternal();
160     }
161     if (vsync_tracking_en_) {
162       last_vsync_ts_ = timestamp;
163     }
164     if (!vsync_event_en_ && !vsync_flattening_en_ && !vsync_tracking_en_) {
165       vsync_worker_.VSyncControl(false);
166     }
167   });
168   if (ret && ret != -EALREADY) {
169     ALOGE("Failed to create event worker for d=%d %d\n", int(handle_), ret);
170     return HWC2::Error::BadDisplay;
171   }
172 
173   if (!IsInHeadlessMode()) {
174     ret = BackendManager::GetInstance().SetBackendForDisplay(this);
175     if (ret) {
176       ALOGE("Failed to set backend for d=%d %d\n", int(handle_), ret);
177       return HWC2::Error::BadDisplay;
178     }
179   }
180 
181   client_layer_.SetLayerBlendMode(HWC2_BLEND_MODE_PREMULTIPLIED);
182 
183   return HWC2::Error::None;
184 }
185 
ChosePreferredConfig()186 HWC2::Error HwcDisplay::ChosePreferredConfig() {
187   HWC2::Error err{};
188   if (!IsInHeadlessMode()) {
189     err = configs_.Update(*pipeline_->connector->Get());
190   } else {
191     configs_.FillHeadless();
192   }
193   if (!IsInHeadlessMode() && err != HWC2::Error::None) {
194     return HWC2::Error::BadDisplay;
195   }
196 
197   return SetActiveConfig(configs_.preferred_config_id);
198 }
199 
AcceptDisplayChanges()200 HWC2::Error HwcDisplay::AcceptDisplayChanges() {
201   for (std::pair<const hwc2_layer_t, HwcLayer> &l : layers_)
202     l.second.AcceptTypeChange();
203   return HWC2::Error::None;
204 }
205 
CreateLayer(hwc2_layer_t * layer)206 HWC2::Error HwcDisplay::CreateLayer(hwc2_layer_t *layer) {
207   layers_.emplace(static_cast<hwc2_layer_t>(layer_idx_), HwcLayer(this));
208   *layer = static_cast<hwc2_layer_t>(layer_idx_);
209   ++layer_idx_;
210   return HWC2::Error::None;
211 }
212 
DestroyLayer(hwc2_layer_t layer)213 HWC2::Error HwcDisplay::DestroyLayer(hwc2_layer_t layer) {
214   if (!get_layer(layer)) {
215     return HWC2::Error::BadLayer;
216   }
217 
218   layers_.erase(layer);
219   return HWC2::Error::None;
220 }
221 
GetActiveConfig(hwc2_config_t * config) const222 HWC2::Error HwcDisplay::GetActiveConfig(hwc2_config_t *config) const {
223   if (configs_.hwc_configs.count(staged_mode_config_id_) == 0)
224     return HWC2::Error::BadConfig;
225 
226   *config = staged_mode_config_id_;
227   return HWC2::Error::None;
228 }
229 
GetChangedCompositionTypes(uint32_t * num_elements,hwc2_layer_t * layers,int32_t * types)230 HWC2::Error HwcDisplay::GetChangedCompositionTypes(uint32_t *num_elements,
231                                                    hwc2_layer_t *layers,
232                                                    int32_t *types) {
233   if (IsInHeadlessMode()) {
234     *num_elements = 0;
235     return HWC2::Error::None;
236   }
237 
238   uint32_t num_changes = 0;
239   for (std::pair<const hwc2_layer_t, HwcLayer> &l : layers_) {
240     if (l.second.IsTypeChanged()) {
241       if (layers && num_changes < *num_elements)
242         layers[num_changes] = l.first;
243       if (types && num_changes < *num_elements)
244         types[num_changes] = static_cast<int32_t>(l.second.GetValidatedType());
245       ++num_changes;
246     }
247   }
248   if (!layers && !types)
249     *num_elements = num_changes;
250   return HWC2::Error::None;
251 }
252 
GetClientTargetSupport(uint32_t width,uint32_t height,int32_t,int32_t dataspace)253 HWC2::Error HwcDisplay::GetClientTargetSupport(uint32_t width, uint32_t height,
254                                                int32_t /*format*/,
255                                                int32_t dataspace) {
256   if (IsInHeadlessMode()) {
257     return HWC2::Error::None;
258   }
259 
260   std::pair<uint32_t, uint32_t> min = pipeline_->device->GetMinResolution();
261   std::pair<uint32_t, uint32_t> max = pipeline_->device->GetMaxResolution();
262 
263   if (width < min.first || height < min.second)
264     return HWC2::Error::Unsupported;
265 
266   if (width > max.first || height > max.second)
267     return HWC2::Error::Unsupported;
268 
269   if (dataspace != HAL_DATASPACE_UNKNOWN)
270     return HWC2::Error::Unsupported;
271 
272   // TODO(nobody): Validate format can be handled by either GL or planes
273   return HWC2::Error::None;
274 }
275 
GetColorModes(uint32_t * num_modes,int32_t * modes)276 HWC2::Error HwcDisplay::GetColorModes(uint32_t *num_modes, int32_t *modes) {
277   if (!modes)
278     *num_modes = 1;
279 
280   if (modes)
281     *modes = HAL_COLOR_MODE_NATIVE;
282 
283   return HWC2::Error::None;
284 }
285 
GetDisplayAttribute(hwc2_config_t config,int32_t attribute_in,int32_t * value)286 HWC2::Error HwcDisplay::GetDisplayAttribute(hwc2_config_t config,
287                                             int32_t attribute_in,
288                                             int32_t *value) {
289   int conf = static_cast<int>(config);
290 
291   if (configs_.hwc_configs.count(conf) == 0) {
292     ALOGE("Could not find mode #%d", conf);
293     return HWC2::Error::BadConfig;
294   }
295 
296   auto &hwc_config = configs_.hwc_configs[conf];
297 
298   static const int32_t kUmPerInch = 25400;
299   uint32_t mm_width = configs_.mm_width;
300   uint32_t mm_height = configs_.mm_height;
301   auto attribute = static_cast<HWC2::Attribute>(attribute_in);
302   switch (attribute) {
303     case HWC2::Attribute::Width:
304       *value = static_cast<int>(hwc_config.mode.h_display());
305       break;
306     case HWC2::Attribute::Height:
307       *value = static_cast<int>(hwc_config.mode.v_display());
308       break;
309     case HWC2::Attribute::VsyncPeriod:
310       // in nanoseconds
311       *value = static_cast<int>(1E9 / hwc_config.mode.v_refresh());
312       break;
313     case HWC2::Attribute::DpiX:
314       // Dots per 1000 inches
315       *value = mm_width ? static_cast<int>(hwc_config.mode.h_display() *
316                                            kUmPerInch / mm_width)
317                         : -1;
318       break;
319     case HWC2::Attribute::DpiY:
320       // Dots per 1000 inches
321       *value = mm_height ? static_cast<int>(hwc_config.mode.v_display() *
322                                             kUmPerInch / mm_height)
323                          : -1;
324       break;
325 #if PLATFORM_SDK_VERSION > 29
326     case HWC2::Attribute::ConfigGroup:
327       /* Dispite ConfigGroup is a part of HWC2.4 API, framework
328        * able to request it even if service @2.1 is used */
329       *value = int(hwc_config.group_id);
330       break;
331 #endif
332     default:
333       *value = -1;
334       return HWC2::Error::BadConfig;
335   }
336   return HWC2::Error::None;
337 }
338 
GetDisplayConfigs(uint32_t * num_configs,hwc2_config_t * configs)339 HWC2::Error HwcDisplay::GetDisplayConfigs(uint32_t *num_configs,
340                                           hwc2_config_t *configs) {
341   uint32_t idx = 0;
342   for (auto &hwc_config : configs_.hwc_configs) {
343     if (hwc_config.second.disabled) {
344       continue;
345     }
346 
347     if (configs != nullptr) {
348       if (idx >= *num_configs) {
349         break;
350       }
351       configs[idx] = hwc_config.second.id;
352     }
353 
354     idx++;
355   }
356   *num_configs = idx;
357   return HWC2::Error::None;
358 }
359 
GetDisplayName(uint32_t * size,char * name)360 HWC2::Error HwcDisplay::GetDisplayName(uint32_t *size, char *name) {
361   std::ostringstream stream;
362   if (IsInHeadlessMode()) {
363     stream << "null-display";
364   } else {
365     stream << "display-" << GetPipe().connector->Get()->GetId();
366   }
367   std::string string = stream.str();
368   size_t length = string.length();
369   if (!name) {
370     *size = length;
371     return HWC2::Error::None;
372   }
373 
374   *size = std::min<uint32_t>(static_cast<uint32_t>(length - 1), *size);
375   strncpy(name, string.c_str(), *size);
376   return HWC2::Error::None;
377 }
378 
GetDisplayRequests(int32_t *,uint32_t * num_elements,hwc2_layer_t *,int32_t *)379 HWC2::Error HwcDisplay::GetDisplayRequests(int32_t * /*display_requests*/,
380                                            uint32_t *num_elements,
381                                            hwc2_layer_t * /*layers*/,
382                                            int32_t * /*layer_requests*/) {
383   // TODO(nobody): I think virtual display should request
384   //      HWC2_DISPLAY_REQUEST_WRITE_CLIENT_TARGET_TO_OUTPUT here
385   *num_elements = 0;
386   return HWC2::Error::None;
387 }
388 
GetDisplayType(int32_t * type)389 HWC2::Error HwcDisplay::GetDisplayType(int32_t *type) {
390   *type = static_cast<int32_t>(type_);
391   return HWC2::Error::None;
392 }
393 
GetDozeSupport(int32_t * support)394 HWC2::Error HwcDisplay::GetDozeSupport(int32_t *support) {
395   *support = 0;
396   return HWC2::Error::None;
397 }
398 
GetHdrCapabilities(uint32_t * num_types,int32_t *,float *,float *,float *)399 HWC2::Error HwcDisplay::GetHdrCapabilities(uint32_t *num_types,
400                                            int32_t * /*types*/,
401                                            float * /*max_luminance*/,
402                                            float * /*max_average_luminance*/,
403                                            float * /*min_luminance*/) {
404   *num_types = 0;
405   return HWC2::Error::None;
406 }
407 
408 /* Find API details at:
409  * https://cs.android.com/android/platform/superproject/+/android-11.0.0_r3:hardware/libhardware/include/hardware/hwcomposer2.h;l=1767
410  *
411  * Called after PresentDisplay(), CLIENT is expecting release fence for the
412  * prior buffer (not the one assigned to the layer at the moment).
413  */
GetReleaseFences(uint32_t * num_elements,hwc2_layer_t * layers,int32_t * fences)414 HWC2::Error HwcDisplay::GetReleaseFences(uint32_t *num_elements,
415                                          hwc2_layer_t *layers,
416                                          int32_t *fences) {
417   if (IsInHeadlessMode()) {
418     *num_elements = 0;
419     return HWC2::Error::None;
420   }
421 
422   uint32_t num_layers = 0;
423 
424   for (auto &l : layers_) {
425     if (!l.second.GetPriorBufferScanOutFlag() || !present_fence_) {
426       continue;
427     }
428 
429     ++num_layers;
430 
431     if (layers == nullptr || fences == nullptr)
432       continue;
433 
434     if (num_layers > *num_elements) {
435       ALOGW("Overflow num_elements %d/%d", num_layers, *num_elements);
436       return HWC2::Error::None;
437     }
438 
439     layers[num_layers - 1] = l.first;
440     fences[num_layers - 1] = UniqueFd::Dup(present_fence_.Get()).Release();
441   }
442   *num_elements = num_layers;
443 
444   return HWC2::Error::None;
445 }
446 
CreateComposition(AtomicCommitArgs & a_args)447 HWC2::Error HwcDisplay::CreateComposition(AtomicCommitArgs &a_args) {
448   if (IsInHeadlessMode()) {
449     ALOGE("%s: Display is in headless mode, should never reach here", __func__);
450     return HWC2::Error::None;
451   }
452 
453   int PrevModeVsyncPeriodNs = static_cast<int>(
454       1E9 / GetPipe().connector->Get()->GetActiveMode().v_refresh());
455 
456   auto mode_update_commited_ = false;
457   if (staged_mode_ &&
458       staged_mode_change_time_ <= ResourceManager::GetTimeMonotonicNs()) {
459     client_layer_.SetLayerDisplayFrame(
460         (hwc_rect_t){.left = 0,
461                      .top = 0,
462                      .right = static_cast<int>(staged_mode_->h_display()),
463                      .bottom = static_cast<int>(staged_mode_->v_display())});
464 
465     configs_.active_config_id = staged_mode_config_id_;
466 
467     a_args.display_mode = *staged_mode_;
468     if (!a_args.test_only) {
469       mode_update_commited_ = true;
470     }
471   }
472 
473   // order the layers by z-order
474   bool use_client_layer = false;
475   uint32_t client_z_order = UINT32_MAX;
476   std::map<uint32_t, HwcLayer *> z_map;
477   for (std::pair<const hwc2_layer_t, HwcLayer> &l : layers_) {
478     switch (l.second.GetValidatedType()) {
479       case HWC2::Composition::Device:
480         z_map.emplace(std::make_pair(l.second.GetZOrder(), &l.second));
481         break;
482       case HWC2::Composition::Client:
483         // Place it at the z_order of the lowest client layer
484         use_client_layer = true;
485         client_z_order = std::min(client_z_order, l.second.GetZOrder());
486         break;
487       default:
488         continue;
489     }
490   }
491   if (use_client_layer)
492     z_map.emplace(std::make_pair(client_z_order, &client_layer_));
493 
494   if (z_map.empty())
495     return HWC2::Error::BadLayer;
496 
497   std::vector<LayerData> composition_layers;
498 
499   /* Import & populate */
500   for (std::pair<const uint32_t, HwcLayer *> &l : z_map) {
501     l.second->PopulateLayerData(a_args.test_only);
502   }
503 
504   // now that they're ordered by z, add them to the composition
505   for (std::pair<const uint32_t, HwcLayer *> &l : z_map) {
506     if (!l.second->IsLayerUsableAsDevice()) {
507       /* This will be normally triggered on validation of the first frame
508        * containing CLIENT layer. At this moment client buffer is not yet
509        * provided by the CLIENT.
510        * This may be triggered once in HwcLayer lifecycle in case FB can't be
511        * imported. For example when non-contiguous buffer is imported into
512        * contiguous-only DRM/KMS driver.
513        */
514       return HWC2::Error::BadLayer;
515     }
516     composition_layers.emplace_back(l.second->GetLayerData().Clone());
517   }
518 
519   /* Store plan to ensure shared planes won't be stolen by other display
520    * in between of ValidateDisplay() and PresentDisplay() calls
521    */
522   current_plan_ = DrmKmsPlan::CreateDrmKmsPlan(GetPipe(),
523                                                std::move(composition_layers));
524   if (!current_plan_) {
525     if (!a_args.test_only) {
526       ALOGE("Failed to create DrmKmsPlan");
527     }
528     return HWC2::Error::BadConfig;
529   }
530 
531   a_args.composition = current_plan_;
532 
533   int ret = GetPipe().atomic_state_manager->ExecuteAtomicCommit(a_args);
534 
535   if (ret) {
536     if (!a_args.test_only)
537       ALOGE("Failed to apply the frame composition ret=%d", ret);
538     return HWC2::Error::BadParameter;
539   }
540 
541   if (mode_update_commited_) {
542     staged_mode_.reset();
543     vsync_tracking_en_ = false;
544     if (last_vsync_ts_ != 0) {
545       hwc2_->SendVsyncPeriodTimingChangedEventToClient(
546           handle_, last_vsync_ts_ + PrevModeVsyncPeriodNs);
547     }
548   }
549 
550   return HWC2::Error::None;
551 }
552 
553 /* Find API details at:
554  * https://cs.android.com/android/platform/superproject/+/android-11.0.0_r3:hardware/libhardware/include/hardware/hwcomposer2.h;l=1805
555  */
PresentDisplay(int32_t * out_present_fence)556 HWC2::Error HwcDisplay::PresentDisplay(int32_t *out_present_fence) {
557   if (IsInHeadlessMode()) {
558     *out_present_fence = -1;
559     return HWC2::Error::None;
560   }
561   HWC2::Error ret{};
562 
563   ++total_stats_.total_frames_;
564 
565   AtomicCommitArgs a_args{};
566   ret = CreateComposition(a_args);
567 
568   if (ret != HWC2::Error::None)
569     ++total_stats_.failed_kms_present_;
570 
571   if (ret == HWC2::Error::BadLayer) {
572     // Can we really have no client or device layers?
573     *out_present_fence = -1;
574     return HWC2::Error::None;
575   }
576   if (ret != HWC2::Error::None)
577     return ret;
578 
579   this->present_fence_ = UniqueFd::Dup(a_args.out_fence.Get());
580   *out_present_fence = a_args.out_fence.Release();
581 
582   ++frame_no_;
583   return HWC2::Error::None;
584 }
585 
SetActiveConfigInternal(uint32_t config,int64_t change_time)586 HWC2::Error HwcDisplay::SetActiveConfigInternal(uint32_t config,
587                                                 int64_t change_time) {
588   if (configs_.hwc_configs.count(config) == 0) {
589     ALOGE("Could not find active mode for %u", config);
590     return HWC2::Error::BadConfig;
591   }
592 
593   staged_mode_ = configs_.hwc_configs[config].mode;
594   staged_mode_change_time_ = change_time;
595   staged_mode_config_id_ = config;
596 
597   return HWC2::Error::None;
598 }
599 
SetActiveConfig(hwc2_config_t config)600 HWC2::Error HwcDisplay::SetActiveConfig(hwc2_config_t config) {
601   return SetActiveConfigInternal(config, ResourceManager::GetTimeMonotonicNs());
602 }
603 
604 /* Find API details at:
605  * https://cs.android.com/android/platform/superproject/+/android-11.0.0_r3:hardware/libhardware/include/hardware/hwcomposer2.h;l=1861
606  */
SetClientTarget(buffer_handle_t target,int32_t acquire_fence,int32_t dataspace,hwc_region_t)607 HWC2::Error HwcDisplay::SetClientTarget(buffer_handle_t target,
608                                         int32_t acquire_fence,
609                                         int32_t dataspace,
610                                         hwc_region_t /*damage*/) {
611   client_layer_.SetLayerBuffer(target, acquire_fence);
612   client_layer_.SetLayerDataspace(dataspace);
613 
614   /*
615    * target can be nullptr, this does mean the Composer Service is calling
616    * cleanDisplayResources() on after receiving HOTPLUG event. See more at:
617    * https://cs.android.com/android/platform/superproject/+/master:hardware/interfaces/graphics/composer/2.1/utils/hal/include/composer-hal/2.1/ComposerClient.h;l=350;drc=944b68180b008456ed2eb4d4d329e33b19bd5166
618    */
619   if (target == nullptr) {
620     client_layer_.SwChainClearCache();
621     return HWC2::Error::None;
622   }
623 
624   if (IsInHeadlessMode()) {
625     return HWC2::Error::None;
626   }
627 
628   client_layer_.PopulateLayerData(/*test = */ true);
629   if (!client_layer_.IsLayerUsableAsDevice()) {
630     ALOGE("Client layer must be always usable by DRM/KMS");
631     return HWC2::Error::BadLayer;
632   }
633 
634   auto &bi = client_layer_.GetLayerData().bi;
635   hwc_frect_t source_crop = {.left = 0.0F,
636                              .top = 0.0F,
637                              .right = static_cast<float>(bi->width),
638                              .bottom = static_cast<float>(bi->height)};
639   client_layer_.SetLayerSourceCrop(source_crop);
640 
641   return HWC2::Error::None;
642 }
643 
SetColorMode(int32_t mode)644 HWC2::Error HwcDisplay::SetColorMode(int32_t mode) {
645   if (mode < HAL_COLOR_MODE_NATIVE || mode > HAL_COLOR_MODE_BT2100_HLG)
646     return HWC2::Error::BadParameter;
647 
648   if (mode != HAL_COLOR_MODE_NATIVE)
649     return HWC2::Error::Unsupported;
650 
651   color_mode_ = mode;
652   return HWC2::Error::None;
653 }
654 
SetColorTransform(const float * matrix,int32_t hint)655 HWC2::Error HwcDisplay::SetColorTransform(const float *matrix, int32_t hint) {
656   if (hint < HAL_COLOR_TRANSFORM_IDENTITY ||
657       hint > HAL_COLOR_TRANSFORM_CORRECT_TRITANOPIA)
658     return HWC2::Error::BadParameter;
659 
660   if (!matrix && hint == HAL_COLOR_TRANSFORM_ARBITRARY_MATRIX)
661     return HWC2::Error::BadParameter;
662 
663   color_transform_hint_ = static_cast<android_color_transform_t>(hint);
664   if (color_transform_hint_ == HAL_COLOR_TRANSFORM_ARBITRARY_MATRIX)
665     std::copy(matrix, matrix + MATRIX_SIZE, color_transform_matrix_.begin());
666 
667   return HWC2::Error::None;
668 }
669 
SetOutputBuffer(buffer_handle_t,int32_t)670 HWC2::Error HwcDisplay::SetOutputBuffer(buffer_handle_t /*buffer*/,
671                                         int32_t /*release_fence*/) {
672   // TODO(nobody): Need virtual display support
673   return HWC2::Error::Unsupported;
674 }
675 
SetPowerMode(int32_t mode_in)676 HWC2::Error HwcDisplay::SetPowerMode(int32_t mode_in) {
677   auto mode = static_cast<HWC2::PowerMode>(mode_in);
678 
679   AtomicCommitArgs a_args{};
680 
681   switch (mode) {
682     case HWC2::PowerMode::Off:
683       a_args.active = false;
684       break;
685     case HWC2::PowerMode::On:
686       a_args.active = true;
687       break;
688     case HWC2::PowerMode::Doze:
689     case HWC2::PowerMode::DozeSuspend:
690       return HWC2::Error::Unsupported;
691     default:
692       ALOGE("Incorrect power mode value (%d)\n", mode);
693       return HWC2::Error::BadParameter;
694   }
695 
696   if (IsInHeadlessMode()) {
697     return HWC2::Error::None;
698   }
699 
700   if (a_args.active) {
701     /*
702      * Setting the display to active before we have a composition
703      * can break some drivers, so skip setting a_args.active to
704      * true, as the next composition frame will implicitly activate
705      * the display
706      */
707     return GetPipe().atomic_state_manager->ActivateDisplayUsingDPMS() == 0
708                ? HWC2::Error::None
709                : HWC2::Error::BadParameter;
710   };
711 
712   int err = GetPipe().atomic_state_manager->ExecuteAtomicCommit(a_args);
713   if (err) {
714     ALOGE("Failed to apply the dpms composition err=%d", err);
715     return HWC2::Error::BadParameter;
716   }
717   return HWC2::Error::None;
718 }
719 
SetVsyncEnabled(int32_t enabled)720 HWC2::Error HwcDisplay::SetVsyncEnabled(int32_t enabled) {
721   vsync_event_en_ = HWC2_VSYNC_ENABLE == enabled;
722   if (vsync_event_en_) {
723     vsync_worker_.VSyncControl(true);
724   }
725   return HWC2::Error::None;
726 }
727 
ValidateDisplay(uint32_t * num_types,uint32_t * num_requests)728 HWC2::Error HwcDisplay::ValidateDisplay(uint32_t *num_types,
729                                         uint32_t *num_requests) {
730   if (IsInHeadlessMode()) {
731     *num_types = *num_requests = 0;
732     return HWC2::Error::None;
733   }
734 
735   /* In current drm_hwc design in case previous frame layer was not validated as
736    * a CLIENT, it is used by display controller (Front buffer). We have to store
737    * this state to provide the CLIENT with the release fences for such buffers.
738    */
739   for (auto &l : layers_) {
740     l.second.SetPriorBufferScanOutFlag(l.second.GetValidatedType() !=
741                                        HWC2::Composition::Client);
742   }
743 
744   return backend_->ValidateDisplay(this, num_types, num_requests);
745 }
746 
GetOrderLayersByZPos()747 std::vector<HwcLayer *> HwcDisplay::GetOrderLayersByZPos() {
748   std::vector<HwcLayer *> ordered_layers;
749   ordered_layers.reserve(layers_.size());
750 
751   for (auto &[handle, layer] : layers_) {
752     ordered_layers.emplace_back(&layer);
753   }
754 
755   std::sort(std::begin(ordered_layers), std::end(ordered_layers),
756             [](const HwcLayer *lhs, const HwcLayer *rhs) {
757               return lhs->GetZOrder() < rhs->GetZOrder();
758             });
759 
760   return ordered_layers;
761 }
762 
GetDisplayVsyncPeriod(uint32_t * outVsyncPeriod)763 HWC2::Error HwcDisplay::GetDisplayVsyncPeriod(
764     uint32_t *outVsyncPeriod /* ns */) {
765   return GetDisplayAttribute(configs_.active_config_id,
766                              HWC2_ATTRIBUTE_VSYNC_PERIOD,
767                              (int32_t *)(outVsyncPeriod));
768 }
769 
770 #if PLATFORM_SDK_VERSION > 29
GetDisplayConnectionType(uint32_t * outType)771 HWC2::Error HwcDisplay::GetDisplayConnectionType(uint32_t *outType) {
772   if (IsInHeadlessMode()) {
773     *outType = static_cast<uint32_t>(HWC2::DisplayConnectionType::Internal);
774     return HWC2::Error::None;
775   }
776   /* Primary display should be always internal,
777    * otherwise SF will be unhappy and will crash
778    */
779   if (GetPipe().connector->Get()->IsInternal() || handle_ == kPrimaryDisplay)
780     *outType = static_cast<uint32_t>(HWC2::DisplayConnectionType::Internal);
781   else if (GetPipe().connector->Get()->IsExternal())
782     *outType = static_cast<uint32_t>(HWC2::DisplayConnectionType::External);
783   else
784     return HWC2::Error::BadConfig;
785 
786   return HWC2::Error::None;
787 }
788 
SetActiveConfigWithConstraints(hwc2_config_t config,hwc_vsync_period_change_constraints_t * vsyncPeriodChangeConstraints,hwc_vsync_period_change_timeline_t * outTimeline)789 HWC2::Error HwcDisplay::SetActiveConfigWithConstraints(
790     hwc2_config_t config,
791     hwc_vsync_period_change_constraints_t *vsyncPeriodChangeConstraints,
792     hwc_vsync_period_change_timeline_t *outTimeline) {
793   if (vsyncPeriodChangeConstraints == nullptr || outTimeline == nullptr) {
794     return HWC2::Error::BadParameter;
795   }
796 
797   uint32_t current_vsync_period{};
798   GetDisplayVsyncPeriod(&current_vsync_period);
799 
800   if (vsyncPeriodChangeConstraints->seamlessRequired) {
801     return HWC2::Error::SeamlessNotAllowed;
802   }
803 
804   outTimeline->refreshTimeNanos = vsyncPeriodChangeConstraints
805                                       ->desiredTimeNanos -
806                                   current_vsync_period;
807   auto ret = SetActiveConfigInternal(config, outTimeline->refreshTimeNanos);
808   if (ret != HWC2::Error::None) {
809     return ret;
810   }
811 
812   outTimeline->refreshRequired = true;
813   outTimeline->newVsyncAppliedTimeNanos = vsyncPeriodChangeConstraints
814                                               ->desiredTimeNanos;
815 
816   last_vsync_ts_ = 0;
817   vsync_tracking_en_ = true;
818   vsync_worker_.VSyncControl(true);
819 
820   return HWC2::Error::None;
821 }
822 
SetAutoLowLatencyMode(bool)823 HWC2::Error HwcDisplay::SetAutoLowLatencyMode(bool /*on*/) {
824   return HWC2::Error::Unsupported;
825 }
826 
GetSupportedContentTypes(uint32_t * outNumSupportedContentTypes,const uint32_t * outSupportedContentTypes)827 HWC2::Error HwcDisplay::GetSupportedContentTypes(
828     uint32_t *outNumSupportedContentTypes,
829     const uint32_t *outSupportedContentTypes) {
830   if (outSupportedContentTypes == nullptr)
831     *outNumSupportedContentTypes = 0;
832 
833   return HWC2::Error::None;
834 }
835 
SetContentType(int32_t contentType)836 HWC2::Error HwcDisplay::SetContentType(int32_t contentType) {
837   if (contentType != HWC2_CONTENT_TYPE_NONE)
838     return HWC2::Error::Unsupported;
839 
840   /* TODO: Map to the DRM Connector property:
841    * https://elixir.bootlin.com/linux/v5.4-rc5/source/drivers/gpu/drm/drm_connector.c#L809
842    */
843 
844   return HWC2::Error::None;
845 }
846 #endif
847 
848 #if PLATFORM_SDK_VERSION > 28
GetDisplayIdentificationData(uint8_t * outPort,uint32_t * outDataSize,uint8_t * outData)849 HWC2::Error HwcDisplay::GetDisplayIdentificationData(uint8_t *outPort,
850                                                      uint32_t *outDataSize,
851                                                      uint8_t *outData) {
852   if (IsInHeadlessMode()) {
853     return HWC2::Error::Unsupported;
854   }
855 
856   auto blob = GetPipe().connector->Get()->GetEdidBlob();
857   if (!blob) {
858     return HWC2::Error::Unsupported;
859   }
860 
861   *outPort = handle_; /* TDOD(nobody): What should be here? */
862 
863   if (outData) {
864     *outDataSize = std::min(*outDataSize, blob->length);
865     memcpy(outData, blob->data, *outDataSize);
866   } else {
867     *outDataSize = blob->length;
868   }
869 
870   return HWC2::Error::None;
871 }
872 
GetDisplayCapabilities(uint32_t * outNumCapabilities,uint32_t *)873 HWC2::Error HwcDisplay::GetDisplayCapabilities(uint32_t *outNumCapabilities,
874                                                uint32_t * /*outCapabilities*/) {
875   if (outNumCapabilities == nullptr) {
876     return HWC2::Error::BadParameter;
877   }
878 
879   *outNumCapabilities = 0;
880 
881   return HWC2::Error::None;
882 }
883 
GetDisplayBrightnessSupport(bool * supported)884 HWC2::Error HwcDisplay::GetDisplayBrightnessSupport(bool *supported) {
885   *supported = false;
886   return HWC2::Error::None;
887 }
888 
SetDisplayBrightness(float)889 HWC2::Error HwcDisplay::SetDisplayBrightness(float /* brightness */) {
890   return HWC2::Error::Unsupported;
891 }
892 
893 #endif /* PLATFORM_SDK_VERSION > 28 */
894 
895 #if PLATFORM_SDK_VERSION > 27
896 
GetRenderIntents(int32_t mode,uint32_t * outNumIntents,int32_t * outIntents)897 HWC2::Error HwcDisplay::GetRenderIntents(
898     int32_t mode, uint32_t *outNumIntents,
899     int32_t * /*android_render_intent_v1_1_t*/ outIntents) {
900   if (mode != HAL_COLOR_MODE_NATIVE) {
901     return HWC2::Error::BadParameter;
902   }
903 
904   if (outIntents == nullptr) {
905     *outNumIntents = 1;
906     return HWC2::Error::None;
907   }
908   *outNumIntents = 1;
909   outIntents[0] = HAL_RENDER_INTENT_COLORIMETRIC;
910   return HWC2::Error::None;
911 }
912 
SetColorModeWithIntent(int32_t mode,int32_t intent)913 HWC2::Error HwcDisplay::SetColorModeWithIntent(int32_t mode, int32_t intent) {
914   if (intent < HAL_RENDER_INTENT_COLORIMETRIC ||
915       intent > HAL_RENDER_INTENT_TONE_MAP_ENHANCE)
916     return HWC2::Error::BadParameter;
917 
918   if (mode < HAL_COLOR_MODE_NATIVE || mode > HAL_COLOR_MODE_BT2100_HLG)
919     return HWC2::Error::BadParameter;
920 
921   if (mode != HAL_COLOR_MODE_NATIVE)
922     return HWC2::Error::Unsupported;
923 
924   if (intent != HAL_RENDER_INTENT_COLORIMETRIC)
925     return HWC2::Error::Unsupported;
926 
927   color_mode_ = mode;
928   return HWC2::Error::None;
929 }
930 
931 #endif /* PLATFORM_SDK_VERSION > 27 */
932 
backend() const933 const Backend *HwcDisplay::backend() const {
934   return backend_.get();
935 }
936 
set_backend(std::unique_ptr<Backend> backend)937 void HwcDisplay::set_backend(std::unique_ptr<Backend> backend) {
938   backend_ = std::move(backend);
939 }
940 
941 /* returns true if composition should be sent to client */
ProcessClientFlatteningState(bool skip)942 bool HwcDisplay::ProcessClientFlatteningState(bool skip) {
943   int flattenning_state = flattenning_state_;
944   if (flattenning_state == ClientFlattenningState::Disabled) {
945     return false;
946   }
947 
948   if (skip) {
949     flattenning_state_ = ClientFlattenningState::NotRequired;
950     return false;
951   }
952 
953   if (flattenning_state == ClientFlattenningState::ClientRefreshRequested) {
954     flattenning_state_ = ClientFlattenningState::Flattened;
955     return true;
956   }
957 
958   vsync_flattening_en_ = true;
959   vsync_worker_.VSyncControl(true);
960   flattenning_state_ = ClientFlattenningState::VsyncCountdownMax;
961   return false;
962 }
963 
ProcessFlatenningVsyncInternal()964 void HwcDisplay::ProcessFlatenningVsyncInternal() {
965   if (flattenning_state_ > ClientFlattenningState::ClientRefreshRequested &&
966       --flattenning_state_ == ClientFlattenningState::ClientRefreshRequested &&
967       hwc2_->refresh_callback_.first != nullptr &&
968       hwc2_->refresh_callback_.second != nullptr) {
969     hwc2_->refresh_callback_.first(hwc2_->refresh_callback_.second, handle_);
970     vsync_flattening_en_ = false;
971   }
972 }
973 
974 }  // namespace android
975