1 /*
2 * Copyright (C) 2010 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 // TODO(b/129481165): remove the #pragma below and fix conversion issues
18 #include <chrono>
19 #pragma clang diagnostic push
20 #pragma clang diagnostic ignored "-Wconversion"
21
22 // #define LOG_NDEBUG 0
23
24 #undef LOG_TAG
25 #define LOG_TAG "HWComposer"
26 #define ATRACE_TAG ATRACE_TAG_GRAPHICS
27
28 #include "HWComposer.h"
29
30 #include <android-base/properties.h>
31 #include <compositionengine/Output.h>
32 #include <compositionengine/OutputLayer.h>
33 #include <compositionengine/impl/OutputLayerCompositionState.h>
34 #include <ftl/concat.h>
35 #include <gui/TraceUtils.h>
36 #include <log/log.h>
37 #include <ui/DebugUtils.h>
38 #include <ui/GraphicBuffer.h>
39 #include <utils/Errors.h>
40 #include <utils/Trace.h>
41
42 #include "../Layer.h" // needed only for debugging
43 #include "../SurfaceFlingerProperties.h"
44 #include "ComposerHal.h"
45 #include "HWC2.h"
46
47 #define LOG_HWC_DISPLAY_ERROR(hwcDisplayId, msg) \
48 ALOGE("%s failed for HWC display %" PRIu64 ": %s", __FUNCTION__, hwcDisplayId, msg)
49
50 #define LOG_DISPLAY_ERROR(displayId, msg) \
51 ALOGE("%s failed for display %s: %s", __FUNCTION__, to_string(displayId).c_str(), msg)
52
53 #define LOG_HWC_ERROR(what, error, displayId) \
54 ALOGE("%s: %s failed for display %s: %s (%d)", __FUNCTION__, what, \
55 to_string(displayId).c_str(), to_string(error).c_str(), static_cast<int32_t>(error))
56
57 #define RETURN_IF_INVALID_DISPLAY(displayId, ...) \
58 do { \
59 if (mDisplayData.count(displayId) == 0) { \
60 LOG_DISPLAY_ERROR(displayId, "Invalid display"); \
61 return __VA_ARGS__; \
62 } \
63 } while (false)
64
65 #define RETURN_IF_HWC_ERROR_FOR(what, error, displayId, ...) \
66 do { \
67 if (error != hal::Error::NONE) { \
68 LOG_HWC_ERROR(what, error, displayId); \
69 return __VA_ARGS__; \
70 } \
71 } while (false)
72
73 #define RETURN_IF_HWC_ERROR(error, displayId, ...) \
74 RETURN_IF_HWC_ERROR_FOR(__FUNCTION__, error, displayId, __VA_ARGS__)
75
76 using aidl::android::hardware::graphics::common::HdrConversionCapability;
77 using aidl::android::hardware::graphics::common::HdrConversionStrategy;
78 using aidl::android::hardware::graphics::composer3::Capability;
79 using aidl::android::hardware::graphics::composer3::DisplayCapability;
80 using namespace std::string_literals;
81
82 namespace android {
83
84 HWComposer::~HWComposer() = default;
85
86 namespace impl {
87
HWComposer(std::unique_ptr<Hwc2::Composer> composer)88 HWComposer::HWComposer(std::unique_ptr<Hwc2::Composer> composer)
89 : mComposer(std::move(composer)),
90 mMaxVirtualDisplayDimension(static_cast<size_t>(sysprop::max_virtual_display_dimension(0))),
91 mUpdateDeviceProductInfoOnHotplugReconnect(
92 sysprop::update_device_product_info_on_hotplug_reconnect(false)),
93 mEnableVrrTimeout(base::GetBoolProperty("debug.sf.vrr_timeout_hint_enabled"s, true)) {}
94
HWComposer(const std::string & composerServiceName)95 HWComposer::HWComposer(const std::string& composerServiceName)
96 : HWComposer(Hwc2::Composer::create(composerServiceName)) {}
97
~HWComposer()98 HWComposer::~HWComposer() {
99 mDisplayData.clear();
100 }
101
setCallback(HWC2::ComposerCallback & callback)102 void HWComposer::setCallback(HWC2::ComposerCallback& callback) {
103 loadCapabilities();
104 loadLayerMetadataSupport();
105 loadOverlayProperties();
106 loadHdrConversionCapabilities();
107
108 if (mRegisteredCallback) {
109 ALOGW("Callback already registered. Ignored extra registration attempt.");
110 return;
111 }
112 mRegisteredCallback = true;
113
114 mComposer->registerCallback(callback);
115 }
116
getDisplayIdentificationData(hal::HWDisplayId hwcDisplayId,uint8_t * outPort,DisplayIdentificationData * outData) const117 bool HWComposer::getDisplayIdentificationData(hal::HWDisplayId hwcDisplayId, uint8_t* outPort,
118 DisplayIdentificationData* outData) const {
119 const auto error = static_cast<hal::Error>(
120 mComposer->getDisplayIdentificationData(hwcDisplayId, outPort, outData));
121 if (error != hal::Error::NONE) {
122 if (error != hal::Error::UNSUPPORTED) {
123 LOG_HWC_DISPLAY_ERROR(hwcDisplayId, to_string(error).c_str());
124 }
125 return false;
126 }
127 return true;
128 }
129
hasCapability(Capability capability) const130 bool HWComposer::hasCapability(Capability capability) const {
131 return mCapabilities.count(capability) > 0;
132 }
133
hasDisplayCapability(HalDisplayId displayId,DisplayCapability capability) const134 bool HWComposer::hasDisplayCapability(HalDisplayId displayId, DisplayCapability capability) const {
135 RETURN_IF_INVALID_DISPLAY(displayId, false);
136 return mDisplayData.at(displayId).hwcDisplay->hasCapability(capability);
137 }
138
onHotplug(hal::HWDisplayId hwcDisplayId,hal::Connection connection)139 std::optional<DisplayIdentificationInfo> HWComposer::onHotplug(hal::HWDisplayId hwcDisplayId,
140 hal::Connection connection) {
141 switch (connection) {
142 case hal::Connection::CONNECTED:
143 return onHotplugConnect(hwcDisplayId);
144 case hal::Connection::DISCONNECTED:
145 return onHotplugDisconnect(hwcDisplayId);
146 case hal::Connection::INVALID:
147 return {};
148 }
149 }
150
updatesDeviceProductInfoOnHotplugReconnect() const151 bool HWComposer::updatesDeviceProductInfoOnHotplugReconnect() const {
152 return mUpdateDeviceProductInfoOnHotplugReconnect;
153 }
154
onVsync(hal::HWDisplayId hwcDisplayId,nsecs_t timestamp)155 std::optional<PhysicalDisplayId> HWComposer::onVsync(hal::HWDisplayId hwcDisplayId,
156 nsecs_t timestamp) {
157 const auto displayIdOpt = toPhysicalDisplayId(hwcDisplayId);
158 if (!displayIdOpt) {
159 LOG_HWC_DISPLAY_ERROR(hwcDisplayId, "Invalid HWC display");
160 return {};
161 }
162
163 RETURN_IF_INVALID_DISPLAY(*displayIdOpt, {});
164
165 auto& displayData = mDisplayData[*displayIdOpt];
166
167 {
168 // There have been reports of HWCs that signal several vsync events
169 // with the same timestamp when turning the display off and on. This
170 // is a bug in the HWC implementation, but filter the extra events
171 // out here so they don't cause havoc downstream.
172 if (timestamp == displayData.lastPresentTimestamp) {
173 ALOGW("Ignoring duplicate VSYNC event from HWC for display %s (t=%" PRId64 ")",
174 to_string(*displayIdOpt).c_str(), timestamp);
175 return {};
176 }
177
178 displayData.lastPresentTimestamp = timestamp;
179 }
180
181 ATRACE_INT(ftl::Concat("HW_VSYNC_", displayIdOpt->value).c_str(),
182 displayData.vsyncTraceToggle);
183 displayData.vsyncTraceToggle = !displayData.vsyncTraceToggle;
184
185 return displayIdOpt;
186 }
187
getMaxVirtualDisplayCount() const188 size_t HWComposer::getMaxVirtualDisplayCount() const {
189 return mComposer->getMaxVirtualDisplayCount();
190 }
191
getMaxVirtualDisplayDimension() const192 size_t HWComposer::getMaxVirtualDisplayDimension() const {
193 return mMaxVirtualDisplayDimension;
194 }
195
allocateVirtualDisplay(HalVirtualDisplayId displayId,ui::Size resolution,ui::PixelFormat * format)196 bool HWComposer::allocateVirtualDisplay(HalVirtualDisplayId displayId, ui::Size resolution,
197 ui::PixelFormat* format) {
198 if (!resolution.isValid()) {
199 ALOGE("%s: Invalid resolution %dx%d", __func__, resolution.width, resolution.height);
200 return false;
201 }
202
203 const uint32_t width = static_cast<uint32_t>(resolution.width);
204 const uint32_t height = static_cast<uint32_t>(resolution.height);
205
206 if (mMaxVirtualDisplayDimension > 0 &&
207 (width > mMaxVirtualDisplayDimension || height > mMaxVirtualDisplayDimension)) {
208 ALOGE("%s: Resolution %ux%u exceeds maximum dimension %zu", __func__, width, height,
209 mMaxVirtualDisplayDimension);
210 return false;
211 }
212
213 hal::HWDisplayId hwcDisplayId;
214 const auto error = static_cast<hal::Error>(
215 mComposer->createVirtualDisplay(width, height, format, &hwcDisplayId));
216 RETURN_IF_HWC_ERROR_FOR("createVirtualDisplay", error, displayId, false);
217
218 auto display = std::make_unique<HWC2::impl::Display>(*mComposer.get(), mCapabilities,
219 hwcDisplayId, hal::DisplayType::VIRTUAL);
220 display->setConnected(true);
221 auto& displayData = mDisplayData[displayId];
222 displayData.hwcDisplay = std::move(display);
223 return true;
224 }
225
allocatePhysicalDisplay(hal::HWDisplayId hwcDisplayId,PhysicalDisplayId displayId)226 void HWComposer::allocatePhysicalDisplay(hal::HWDisplayId hwcDisplayId,
227 PhysicalDisplayId displayId) {
228 mPhysicalDisplayIdMap[hwcDisplayId] = displayId;
229
230 if (!mPrimaryHwcDisplayId) {
231 mPrimaryHwcDisplayId = hwcDisplayId;
232 }
233
234 auto& displayData = mDisplayData[displayId];
235 auto newDisplay =
236 std::make_unique<HWC2::impl::Display>(*mComposer.get(), mCapabilities, hwcDisplayId,
237 hal::DisplayType::PHYSICAL);
238 newDisplay->setConnected(true);
239 displayData.hwcDisplay = std::move(newDisplay);
240 }
241
getAttribute(hal::HWDisplayId hwcDisplayId,hal::HWConfigId configId,hal::Attribute attribute) const242 int32_t HWComposer::getAttribute(hal::HWDisplayId hwcDisplayId, hal::HWConfigId configId,
243 hal::Attribute attribute) const {
244 int32_t value = 0;
245 auto error = static_cast<hal::Error>(
246 mComposer->getDisplayAttribute(hwcDisplayId, configId, attribute, &value));
247
248 RETURN_IF_HWC_ERROR_FOR("getDisplayAttribute", error, *toPhysicalDisplayId(hwcDisplayId), -1);
249 return value;
250 }
251
createLayer(HalDisplayId displayId)252 std::shared_ptr<HWC2::Layer> HWComposer::createLayer(HalDisplayId displayId) {
253 RETURN_IF_INVALID_DISPLAY(displayId, nullptr);
254
255 auto expected = mDisplayData[displayId].hwcDisplay->createLayer();
256 if (!expected.has_value()) {
257 auto error = std::move(expected).error();
258 RETURN_IF_HWC_ERROR(error, displayId, nullptr);
259 }
260 return std::move(expected).value();
261 }
262
isConnected(PhysicalDisplayId displayId) const263 bool HWComposer::isConnected(PhysicalDisplayId displayId) const {
264 return mDisplayData.count(displayId) && mDisplayData.at(displayId).hwcDisplay->isConnected();
265 }
266
getModes(PhysicalDisplayId displayId,int32_t maxFrameIntervalNs) const267 std::vector<HWComposer::HWCDisplayMode> HWComposer::getModes(PhysicalDisplayId displayId,
268 int32_t maxFrameIntervalNs) const {
269 RETURN_IF_INVALID_DISPLAY(displayId, {});
270
271 const auto hwcDisplayId = mDisplayData.at(displayId).hwcDisplay->getId();
272
273 if (mComposer->isVrrSupported()) {
274 return getModesFromDisplayConfigurations(hwcDisplayId, maxFrameIntervalNs);
275 }
276
277 return getModesFromLegacyDisplayConfigs(hwcDisplayId);
278 }
279
getModesFromDisplayConfigurations(uint64_t hwcDisplayId,int32_t maxFrameIntervalNs) const280 std::vector<HWComposer::HWCDisplayMode> HWComposer::getModesFromDisplayConfigurations(
281 uint64_t hwcDisplayId, int32_t maxFrameIntervalNs) const {
282 std::vector<hal::DisplayConfiguration> configs;
283 auto error = static_cast<hal::Error>(
284 mComposer->getDisplayConfigurations(hwcDisplayId, maxFrameIntervalNs, &configs));
285 RETURN_IF_HWC_ERROR_FOR("getDisplayConfigurations", error, *toPhysicalDisplayId(hwcDisplayId),
286 {});
287
288 std::vector<HWCDisplayMode> modes;
289 modes.reserve(configs.size());
290 for (auto config : configs) {
291 auto hwcMode = HWCDisplayMode{.hwcId = static_cast<hal::HWConfigId>(config.configId),
292 .width = config.width,
293 .height = config.height,
294 .vsyncPeriod = config.vsyncPeriod,
295 .configGroup = config.configGroup,
296 .vrrConfig = config.vrrConfig};
297
298 if (config.dpi) {
299 hwcMode.dpiX = config.dpi->x;
300 hwcMode.dpiY = config.dpi->y;
301 }
302
303 if (!mEnableVrrTimeout) {
304 hwcMode.vrrConfig->notifyExpectedPresentConfig = {};
305 }
306
307 modes.push_back(hwcMode);
308 }
309
310 return modes;
311 }
312
getModesFromLegacyDisplayConfigs(uint64_t hwcDisplayId) const313 std::vector<HWComposer::HWCDisplayMode> HWComposer::getModesFromLegacyDisplayConfigs(
314 uint64_t hwcDisplayId) const {
315 std::vector<hal::HWConfigId> configIds;
316 auto error = static_cast<hal::Error>(mComposer->getDisplayConfigs(hwcDisplayId, &configIds));
317 RETURN_IF_HWC_ERROR_FOR("getDisplayConfigs", error, *toPhysicalDisplayId(hwcDisplayId), {});
318
319 std::vector<HWCDisplayMode> modes;
320 modes.reserve(configIds.size());
321 for (auto configId : configIds) {
322 auto hwcMode = HWCDisplayMode{
323 .hwcId = configId,
324 .width = getAttribute(hwcDisplayId, configId, hal::Attribute::WIDTH),
325 .height = getAttribute(hwcDisplayId, configId, hal::Attribute::HEIGHT),
326 .vsyncPeriod = getAttribute(hwcDisplayId, configId, hal::Attribute::VSYNC_PERIOD),
327 .configGroup = getAttribute(hwcDisplayId, configId, hal::Attribute::CONFIG_GROUP),
328 };
329
330 const int32_t dpiX = getAttribute(hwcDisplayId, configId, hal::Attribute::DPI_X);
331 const int32_t dpiY = getAttribute(hwcDisplayId, configId, hal::Attribute::DPI_Y);
332 if (dpiX != -1) {
333 hwcMode.dpiX = static_cast<float>(dpiX) / 1000.f;
334 }
335 if (dpiY != -1) {
336 hwcMode.dpiY = static_cast<float>(dpiY) / 1000.f;
337 }
338
339 modes.push_back(hwcMode);
340 }
341 return modes;
342 }
343
getActiveMode(PhysicalDisplayId displayId) const344 ftl::Expected<hal::HWConfigId, status_t> HWComposer::getActiveMode(
345 PhysicalDisplayId displayId) const {
346 RETURN_IF_INVALID_DISPLAY(displayId, ftl::Unexpected(BAD_INDEX));
347 const auto hwcId = *fromPhysicalDisplayId(displayId);
348
349 hal::HWConfigId configId;
350 const auto error = static_cast<hal::Error>(mComposer->getActiveConfig(hwcId, &configId));
351 if (error == hal::Error::BAD_CONFIG) {
352 return ftl::Unexpected(NO_INIT);
353 }
354
355 RETURN_IF_HWC_ERROR_FOR("getActiveConfig", error, displayId, ftl::Unexpected(UNKNOWN_ERROR));
356 return configId;
357 }
358
359 // Composer 2.4
360
getDisplayConnectionType(PhysicalDisplayId displayId) const361 ui::DisplayConnectionType HWComposer::getDisplayConnectionType(PhysicalDisplayId displayId) const {
362 RETURN_IF_INVALID_DISPLAY(displayId, ui::DisplayConnectionType::Internal);
363 const auto& hwcDisplay = mDisplayData.at(displayId).hwcDisplay;
364
365 if (const auto connectionType = hwcDisplay->getConnectionType()) {
366 return connectionType.value();
367 } else {
368 LOG_HWC_ERROR(__func__, connectionType.error(), displayId);
369 return hwcDisplay->getId() == mPrimaryHwcDisplayId ? ui::DisplayConnectionType::Internal
370 : ui::DisplayConnectionType::External;
371 }
372 }
373
isVsyncPeriodSwitchSupported(PhysicalDisplayId displayId) const374 bool HWComposer::isVsyncPeriodSwitchSupported(PhysicalDisplayId displayId) const {
375 RETURN_IF_INVALID_DISPLAY(displayId, false);
376 return mDisplayData.at(displayId).hwcDisplay->isVsyncPeriodSwitchSupported();
377 }
378
getDisplayVsyncPeriod(PhysicalDisplayId displayId) const379 ftl::Expected<nsecs_t, status_t> HWComposer::getDisplayVsyncPeriod(
380 PhysicalDisplayId displayId) const {
381 RETURN_IF_INVALID_DISPLAY(displayId, ftl::Unexpected(BAD_INDEX));
382
383 if (!isVsyncPeriodSwitchSupported(displayId)) {
384 return ftl::Unexpected(INVALID_OPERATION);
385 }
386
387 const auto hwcId = *fromPhysicalDisplayId(displayId);
388 Hwc2::VsyncPeriodNanos vsyncPeriodNanos = 0;
389 const auto error =
390 static_cast<hal::Error>(mComposer->getDisplayVsyncPeriod(hwcId, &vsyncPeriodNanos));
391 RETURN_IF_HWC_ERROR(error, displayId, ftl::Unexpected(UNKNOWN_ERROR));
392 return static_cast<nsecs_t>(vsyncPeriodNanos);
393 }
394
getColorModes(PhysicalDisplayId displayId) const395 std::vector<ui::ColorMode> HWComposer::getColorModes(PhysicalDisplayId displayId) const {
396 RETURN_IF_INVALID_DISPLAY(displayId, {});
397
398 std::vector<ui::ColorMode> modes;
399 auto error = mDisplayData.at(displayId).hwcDisplay->getColorModes(&modes);
400 RETURN_IF_HWC_ERROR(error, displayId, {});
401 return modes;
402 }
403
setActiveColorMode(PhysicalDisplayId displayId,ui::ColorMode mode,ui::RenderIntent renderIntent)404 status_t HWComposer::setActiveColorMode(PhysicalDisplayId displayId, ui::ColorMode mode,
405 ui::RenderIntent renderIntent) {
406 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
407
408 auto& displayData = mDisplayData[displayId];
409 auto error = displayData.hwcDisplay->setColorMode(mode, renderIntent);
410 RETURN_IF_HWC_ERROR_FOR(("setColorMode(" + decodeColorMode(mode) + ", " +
411 decodeRenderIntent(renderIntent) + ")")
412 .c_str(),
413 error, displayId, UNKNOWN_ERROR);
414
415 return NO_ERROR;
416 }
417
setVsyncEnabled(PhysicalDisplayId displayId,hal::Vsync enabled)418 void HWComposer::setVsyncEnabled(PhysicalDisplayId displayId, hal::Vsync enabled) {
419 RETURN_IF_INVALID_DISPLAY(displayId);
420 auto& displayData = mDisplayData[displayId];
421
422 // NOTE: we use our own internal lock here because we have to call
423 // into the HWC with the lock held, and we want to make sure
424 // that even if HWC blocks (which it shouldn't), it won't
425 // affect other threads.
426 std::lock_guard lock(displayData.vsyncEnabledLock);
427 if (enabled == displayData.vsyncEnabled) {
428 return;
429 }
430
431 ATRACE_CALL();
432 auto error = displayData.hwcDisplay->setVsyncEnabled(enabled);
433 RETURN_IF_HWC_ERROR(error, displayId);
434
435 displayData.vsyncEnabled = enabled;
436
437 ATRACE_INT(ftl::Concat("HW_VSYNC_ON_", displayId.value).c_str(),
438 enabled == hal::Vsync::ENABLE ? 1 : 0);
439 }
440
setClientTarget(HalDisplayId displayId,uint32_t slot,const sp<Fence> & acquireFence,const sp<GraphicBuffer> & target,ui::Dataspace dataspace,float hdrSdrRatio)441 status_t HWComposer::setClientTarget(HalDisplayId displayId, uint32_t slot,
442 const sp<Fence>& acquireFence, const sp<GraphicBuffer>& target,
443 ui::Dataspace dataspace, float hdrSdrRatio) {
444 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
445
446 ALOGV("%s for display %s", __FUNCTION__, to_string(displayId).c_str());
447 auto& hwcDisplay = mDisplayData[displayId].hwcDisplay;
448 auto error = hwcDisplay->setClientTarget(slot, target, acquireFence, dataspace, hdrSdrRatio);
449 RETURN_IF_HWC_ERROR(error, displayId, BAD_VALUE);
450 return NO_ERROR;
451 }
452
getDeviceCompositionChanges(HalDisplayId displayId,bool frameUsesClientComposition,std::optional<std::chrono::steady_clock::time_point> earliestPresentTime,nsecs_t expectedPresentTime,Fps frameInterval,std::optional<android::HWComposer::DeviceRequestedChanges> * outChanges)453 status_t HWComposer::getDeviceCompositionChanges(
454 HalDisplayId displayId, bool frameUsesClientComposition,
455 std::optional<std::chrono::steady_clock::time_point> earliestPresentTime,
456 nsecs_t expectedPresentTime, Fps frameInterval,
457 std::optional<android::HWComposer::DeviceRequestedChanges>* outChanges) {
458 ATRACE_CALL();
459
460 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
461
462 auto& displayData = mDisplayData[displayId];
463 auto& hwcDisplay = displayData.hwcDisplay;
464 if (!hwcDisplay->isConnected()) {
465 return NO_ERROR;
466 }
467
468 uint32_t numTypes = 0;
469 uint32_t numRequests = 0;
470
471 hal::Error error = hal::Error::NONE;
472
473 // First try to skip validate altogether. We can do that when
474 // 1. The previous frame has not been presented yet or already passed the
475 // earliest time to present. Otherwise, we may present a frame too early.
476 // 2. There is no client composition. Otherwise, we first need to render the
477 // client target buffer.
478 const bool canSkipValidate = [&] {
479 // We must call validate if we have client composition
480 if (frameUsesClientComposition) {
481 return false;
482 }
483
484 // If composer supports getting the expected present time, we can skip
485 // as composer will make sure to prevent early presentation
486 if (!earliestPresentTime) {
487 return true;
488 }
489
490 // composer doesn't support getting the expected present time. We can only
491 // skip validate if we know that we are not going to present early.
492 return std::chrono::steady_clock::now() >= *earliestPresentTime;
493 }();
494
495 displayData.validateWasSkipped = false;
496 ATRACE_FORMAT("NextFrameInterval %d_Hz", frameInterval.getIntValue());
497 if (canSkipValidate) {
498 sp<Fence> outPresentFence = Fence::NO_FENCE;
499 uint32_t state = UINT32_MAX;
500 error = hwcDisplay->presentOrValidate(expectedPresentTime, frameInterval.getPeriodNsecs(),
501 &numTypes, &numRequests, &outPresentFence, &state);
502 if (!hasChangesError(error)) {
503 RETURN_IF_HWC_ERROR_FOR("presentOrValidate", error, displayId, UNKNOWN_ERROR);
504 }
505 if (state == 1) { //Present Succeeded.
506 std::unordered_map<HWC2::Layer*, sp<Fence>> releaseFences;
507 error = hwcDisplay->getReleaseFences(&releaseFences);
508 displayData.releaseFences = std::move(releaseFences);
509 displayData.lastPresentFence = outPresentFence;
510 displayData.validateWasSkipped = true;
511 displayData.presentError = error;
512 return NO_ERROR;
513 }
514 // Present failed but Validate ran.
515 } else {
516 error = hwcDisplay->validate(expectedPresentTime, frameInterval.getPeriodNsecs(), &numTypes,
517 &numRequests);
518 }
519 ALOGV("SkipValidate failed, Falling back to SLOW validate/present");
520 if (!hasChangesError(error)) {
521 RETURN_IF_HWC_ERROR_FOR("validate", error, displayId, BAD_INDEX);
522 }
523
524 android::HWComposer::DeviceRequestedChanges::ChangedTypes changedTypes;
525 changedTypes.reserve(numTypes);
526 error = hwcDisplay->getChangedCompositionTypes(&changedTypes);
527 RETURN_IF_HWC_ERROR_FOR("getChangedCompositionTypes", error, displayId, BAD_INDEX);
528
529 auto displayRequests = static_cast<hal::DisplayRequest>(0);
530 android::HWComposer::DeviceRequestedChanges::LayerRequests layerRequests;
531 layerRequests.reserve(numRequests);
532 error = hwcDisplay->getRequests(&displayRequests, &layerRequests);
533 RETURN_IF_HWC_ERROR_FOR("getRequests", error, displayId, BAD_INDEX);
534
535 DeviceRequestedChanges::ClientTargetProperty clientTargetProperty;
536 error = hwcDisplay->getClientTargetProperty(&clientTargetProperty);
537
538 outChanges->emplace(DeviceRequestedChanges{std::move(changedTypes), std::move(displayRequests),
539 std::move(layerRequests),
540 std::move(clientTargetProperty)});
541 error = hwcDisplay->acceptChanges();
542 RETURN_IF_HWC_ERROR_FOR("acceptChanges", error, displayId, BAD_INDEX);
543
544 return NO_ERROR;
545 }
546
getPresentFence(HalDisplayId displayId) const547 sp<Fence> HWComposer::getPresentFence(HalDisplayId displayId) const {
548 RETURN_IF_INVALID_DISPLAY(displayId, Fence::NO_FENCE);
549 return mDisplayData.at(displayId).lastPresentFence;
550 }
551
getPresentTimestamp(PhysicalDisplayId displayId) const552 nsecs_t HWComposer::getPresentTimestamp(PhysicalDisplayId displayId) const {
553 RETURN_IF_INVALID_DISPLAY(displayId, 0);
554 return mDisplayData.at(displayId).lastPresentTimestamp;
555 }
556
getLayerReleaseFence(HalDisplayId displayId,HWC2::Layer * layer) const557 sp<Fence> HWComposer::getLayerReleaseFence(HalDisplayId displayId, HWC2::Layer* layer) const {
558 RETURN_IF_INVALID_DISPLAY(displayId, Fence::NO_FENCE);
559 const auto& displayFences = mDisplayData.at(displayId).releaseFences;
560 auto fence = displayFences.find(layer);
561 if (fence == displayFences.end()) {
562 ALOGV("getLayerReleaseFence: Release fence not found");
563 return Fence::NO_FENCE;
564 }
565 return fence->second;
566 }
567
presentAndGetReleaseFences(HalDisplayId displayId,std::optional<std::chrono::steady_clock::time_point> earliestPresentTime)568 status_t HWComposer::presentAndGetReleaseFences(
569 HalDisplayId displayId,
570 std::optional<std::chrono::steady_clock::time_point> earliestPresentTime) {
571 ATRACE_CALL();
572
573 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
574
575 auto& displayData = mDisplayData[displayId];
576 auto& hwcDisplay = displayData.hwcDisplay;
577
578 if (displayData.validateWasSkipped) {
579 // explicitly flush all pending commands
580 auto error = static_cast<hal::Error>(mComposer->executeCommands(hwcDisplay->getId()));
581 RETURN_IF_HWC_ERROR_FOR("executeCommands", error, displayId, UNKNOWN_ERROR);
582 RETURN_IF_HWC_ERROR_FOR("present", displayData.presentError, displayId, UNKNOWN_ERROR);
583 return NO_ERROR;
584 }
585
586 if (earliestPresentTime) {
587 ATRACE_NAME("wait for earliest present time");
588 std::this_thread::sleep_until(*earliestPresentTime);
589 }
590
591 auto error = hwcDisplay->present(&displayData.lastPresentFence);
592 RETURN_IF_HWC_ERROR_FOR("present", error, displayId, UNKNOWN_ERROR);
593
594 std::unordered_map<HWC2::Layer*, sp<Fence>> releaseFences;
595 error = hwcDisplay->getReleaseFences(&releaseFences);
596 RETURN_IF_HWC_ERROR_FOR("getReleaseFences", error, displayId, UNKNOWN_ERROR);
597
598 displayData.releaseFences = std::move(releaseFences);
599
600 return NO_ERROR;
601 }
602
executeCommands(HalDisplayId displayId)603 status_t HWComposer::executeCommands(HalDisplayId displayId) {
604 auto& hwcDisplay = mDisplayData[displayId].hwcDisplay;
605 auto error = static_cast<hal::Error>(mComposer->executeCommands(hwcDisplay->getId()));
606 RETURN_IF_HWC_ERROR_FOR("executeCommands", error, displayId, UNKNOWN_ERROR);
607 return NO_ERROR;
608 }
609
setPowerMode(PhysicalDisplayId displayId,hal::PowerMode mode)610 status_t HWComposer::setPowerMode(PhysicalDisplayId displayId, hal::PowerMode mode) {
611 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
612
613 if (mode == hal::PowerMode::OFF) {
614 setVsyncEnabled(displayId, hal::Vsync::DISABLE);
615 }
616
617 const auto& displayData = mDisplayData[displayId];
618 auto& hwcDisplay = displayData.hwcDisplay;
619 switch (mode) {
620 case hal::PowerMode::OFF:
621 case hal::PowerMode::ON:
622 ALOGV("setPowerMode: Calling HWC %s", to_string(mode).c_str());
623 {
624 auto error = hwcDisplay->setPowerMode(mode);
625 if (error != hal::Error::NONE) {
626 LOG_HWC_ERROR(("setPowerMode(" + to_string(mode) + ")").c_str(), error,
627 displayId);
628 }
629 }
630 break;
631 case hal::PowerMode::DOZE:
632 case hal::PowerMode::DOZE_SUSPEND:
633 ALOGV("setPowerMode: Calling HWC %s", to_string(mode).c_str());
634 {
635 bool supportsDoze = false;
636 const auto queryDozeError = hwcDisplay->supportsDoze(&supportsDoze);
637
638 // queryDozeError might be NO_RESOURCES, in the case of a display that has never
639 // been turned on. In that case, attempt to set to DOZE anyway.
640 if (!supportsDoze && queryDozeError == hal::Error::NONE) {
641 mode = hal::PowerMode::ON;
642 }
643
644 auto error = hwcDisplay->setPowerMode(mode);
645 if (error != hal::Error::NONE) {
646 LOG_HWC_ERROR(("setPowerMode(" + to_string(mode) + ")").c_str(), error,
647 displayId);
648 // If the display had never been turned on, so its doze
649 // support was unknown, it may truly not support doze. Try
650 // switching it to ON instead.
651 if (queryDozeError == hal::Error::NO_RESOURCES) {
652 ALOGD("%s: failed to set %s to %s. Trying again with ON", __func__,
653 to_string(displayId).c_str(), to_string(mode).c_str());
654 error = hwcDisplay->setPowerMode(hal::PowerMode::ON);
655 if (error != hal::Error::NONE) {
656 LOG_HWC_ERROR("setPowerMode(ON)", error, displayId);
657 }
658 }
659 }
660 }
661 break;
662 default:
663 ALOGV("setPowerMode: Not calling HWC");
664 break;
665 }
666
667 return NO_ERROR;
668 }
669
setActiveModeWithConstraints(PhysicalDisplayId displayId,hal::HWConfigId hwcModeId,const hal::VsyncPeriodChangeConstraints & constraints,hal::VsyncPeriodChangeTimeline * outTimeline)670 status_t HWComposer::setActiveModeWithConstraints(
671 PhysicalDisplayId displayId, hal::HWConfigId hwcModeId,
672 const hal::VsyncPeriodChangeConstraints& constraints,
673 hal::VsyncPeriodChangeTimeline* outTimeline) {
674 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
675
676 auto error = mDisplayData[displayId].hwcDisplay->setActiveConfigWithConstraints(hwcModeId,
677 constraints,
678 outTimeline);
679 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
680 return NO_ERROR;
681 }
682
setColorTransform(HalDisplayId displayId,const mat4 & transform)683 status_t HWComposer::setColorTransform(HalDisplayId displayId, const mat4& transform) {
684 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
685
686 auto& displayData = mDisplayData[displayId];
687 auto error = displayData.hwcDisplay->setColorTransform(transform);
688 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
689 return NO_ERROR;
690 }
691
disconnectDisplay(HalDisplayId displayId)692 void HWComposer::disconnectDisplay(HalDisplayId displayId) {
693 RETURN_IF_INVALID_DISPLAY(displayId);
694 auto& displayData = mDisplayData[displayId];
695 const auto hwcDisplayId = displayData.hwcDisplay->getId();
696
697 mPhysicalDisplayIdMap.erase(hwcDisplayId);
698 mDisplayData.erase(displayId);
699
700 // Reset the primary display ID if we're disconnecting it.
701 // This way isHeadless() will return false, which is necessary
702 // because getPrimaryDisplayId() will crash.
703 if (mPrimaryHwcDisplayId == hwcDisplayId) {
704 mPrimaryHwcDisplayId.reset();
705 }
706 }
707
setOutputBuffer(HalVirtualDisplayId displayId,const sp<Fence> & acquireFence,const sp<GraphicBuffer> & buffer)708 status_t HWComposer::setOutputBuffer(HalVirtualDisplayId displayId, const sp<Fence>& acquireFence,
709 const sp<GraphicBuffer>& buffer) {
710 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
711 const auto& displayData = mDisplayData[displayId];
712
713 auto error = displayData.hwcDisplay->setOutputBuffer(buffer, acquireFence);
714 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
715 return NO_ERROR;
716 }
717
clearReleaseFences(HalDisplayId displayId)718 void HWComposer::clearReleaseFences(HalDisplayId displayId) {
719 RETURN_IF_INVALID_DISPLAY(displayId);
720 mDisplayData[displayId].releaseFences.clear();
721 }
722
getHdrCapabilities(HalDisplayId displayId,HdrCapabilities * outCapabilities)723 status_t HWComposer::getHdrCapabilities(HalDisplayId displayId, HdrCapabilities* outCapabilities) {
724 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
725
726 auto& hwcDisplay = mDisplayData[displayId].hwcDisplay;
727 auto error = hwcDisplay->getHdrCapabilities(outCapabilities);
728 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
729 return NO_ERROR;
730 }
731
732 const aidl::android::hardware::graphics::composer3::OverlayProperties&
getOverlaySupport() const733 HWComposer::getOverlaySupport() const {
734 return mOverlayProperties;
735 }
736
getSupportedPerFrameMetadata(HalDisplayId displayId) const737 int32_t HWComposer::getSupportedPerFrameMetadata(HalDisplayId displayId) const {
738 RETURN_IF_INVALID_DISPLAY(displayId, 0);
739 return mDisplayData.at(displayId).hwcDisplay->getSupportedPerFrameMetadata();
740 }
741
getRenderIntents(HalDisplayId displayId,ui::ColorMode colorMode) const742 std::vector<ui::RenderIntent> HWComposer::getRenderIntents(HalDisplayId displayId,
743 ui::ColorMode colorMode) const {
744 RETURN_IF_INVALID_DISPLAY(displayId, {});
745
746 std::vector<ui::RenderIntent> renderIntents;
747 auto error = mDisplayData.at(displayId).hwcDisplay->getRenderIntents(colorMode, &renderIntents);
748 RETURN_IF_HWC_ERROR(error, displayId, {});
749 return renderIntents;
750 }
751
getDataspaceSaturationMatrix(HalDisplayId displayId,ui::Dataspace dataspace)752 mat4 HWComposer::getDataspaceSaturationMatrix(HalDisplayId displayId, ui::Dataspace dataspace) {
753 RETURN_IF_INVALID_DISPLAY(displayId, {});
754
755 mat4 matrix;
756 auto error = mDisplayData[displayId].hwcDisplay->getDataspaceSaturationMatrix(dataspace,
757 &matrix);
758 RETURN_IF_HWC_ERROR(error, displayId, {});
759 return matrix;
760 }
761
getDisplayedContentSamplingAttributes(HalDisplayId displayId,ui::PixelFormat * outFormat,ui::Dataspace * outDataspace,uint8_t * outComponentMask)762 status_t HWComposer::getDisplayedContentSamplingAttributes(HalDisplayId displayId,
763 ui::PixelFormat* outFormat,
764 ui::Dataspace* outDataspace,
765 uint8_t* outComponentMask) {
766 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
767 const auto error =
768 mDisplayData[displayId]
769 .hwcDisplay->getDisplayedContentSamplingAttributes(outFormat, outDataspace,
770 outComponentMask);
771 if (error == hal::Error::UNSUPPORTED) RETURN_IF_HWC_ERROR(error, displayId, INVALID_OPERATION);
772 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
773 return NO_ERROR;
774 }
775
setDisplayContentSamplingEnabled(HalDisplayId displayId,bool enabled,uint8_t componentMask,uint64_t maxFrames)776 status_t HWComposer::setDisplayContentSamplingEnabled(HalDisplayId displayId, bool enabled,
777 uint8_t componentMask, uint64_t maxFrames) {
778 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
779 const auto error =
780 mDisplayData[displayId].hwcDisplay->setDisplayContentSamplingEnabled(enabled,
781 componentMask,
782 maxFrames);
783
784 if (error == hal::Error::UNSUPPORTED) RETURN_IF_HWC_ERROR(error, displayId, INVALID_OPERATION);
785 if (error == hal::Error::BAD_PARAMETER) RETURN_IF_HWC_ERROR(error, displayId, BAD_VALUE);
786 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
787 return NO_ERROR;
788 }
789
getDisplayedContentSample(HalDisplayId displayId,uint64_t maxFrames,uint64_t timestamp,DisplayedFrameStats * outStats)790 status_t HWComposer::getDisplayedContentSample(HalDisplayId displayId, uint64_t maxFrames,
791 uint64_t timestamp, DisplayedFrameStats* outStats) {
792 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
793 const auto error =
794 mDisplayData[displayId].hwcDisplay->getDisplayedContentSample(maxFrames, timestamp,
795 outStats);
796 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
797 return NO_ERROR;
798 }
799
setDisplayBrightness(PhysicalDisplayId displayId,float brightness,float brightnessNits,const Hwc2::Composer::DisplayBrightnessOptions & options)800 ftl::Future<status_t> HWComposer::setDisplayBrightness(
801 PhysicalDisplayId displayId, float brightness, float brightnessNits,
802 const Hwc2::Composer::DisplayBrightnessOptions& options) {
803 RETURN_IF_INVALID_DISPLAY(displayId, ftl::yield<status_t>(BAD_INDEX));
804 auto& display = mDisplayData[displayId].hwcDisplay;
805
806 return display->setDisplayBrightness(brightness, brightnessNits, options)
807 .then([displayId](hal::Error error) -> status_t {
808 if (error == hal::Error::UNSUPPORTED) {
809 RETURN_IF_HWC_ERROR(error, displayId, INVALID_OPERATION);
810 }
811 if (error == hal::Error::BAD_PARAMETER) {
812 RETURN_IF_HWC_ERROR(error, displayId, BAD_VALUE);
813 }
814 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
815 return NO_ERROR;
816 });
817 }
818
getValidateSkipped(HalDisplayId displayId) const819 bool HWComposer::getValidateSkipped(HalDisplayId displayId) const {
820 if (mDisplayData.count(displayId) == 0) {
821 return false;
822 }
823 return mDisplayData.at(displayId).validateWasSkipped;
824 }
825
setBootDisplayMode(PhysicalDisplayId displayId,hal::HWConfigId displayModeId)826 status_t HWComposer::setBootDisplayMode(PhysicalDisplayId displayId,
827 hal::HWConfigId displayModeId) {
828 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
829 const auto error = mDisplayData[displayId].hwcDisplay->setBootDisplayConfig(displayModeId);
830 if (error == hal::Error::UNSUPPORTED) {
831 RETURN_IF_HWC_ERROR(error, displayId, INVALID_OPERATION);
832 }
833 if (error == hal::Error::BAD_PARAMETER) {
834 RETURN_IF_HWC_ERROR(error, displayId, BAD_VALUE);
835 }
836 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
837 return NO_ERROR;
838 }
839
clearBootDisplayMode(PhysicalDisplayId displayId)840 status_t HWComposer::clearBootDisplayMode(PhysicalDisplayId displayId) {
841 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
842 const auto error = mDisplayData[displayId].hwcDisplay->clearBootDisplayConfig();
843 if (error == hal::Error::UNSUPPORTED) {
844 RETURN_IF_HWC_ERROR(error, displayId, INVALID_OPERATION);
845 }
846 if (error == hal::Error::BAD_PARAMETER) {
847 RETURN_IF_HWC_ERROR(error, displayId, BAD_VALUE);
848 }
849 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
850 return NO_ERROR;
851 }
852
getPreferredBootDisplayMode(PhysicalDisplayId displayId)853 std::optional<hal::HWConfigId> HWComposer::getPreferredBootDisplayMode(
854 PhysicalDisplayId displayId) {
855 RETURN_IF_INVALID_DISPLAY(displayId, std::nullopt);
856 hal::HWConfigId displayModeId;
857 const auto error =
858 mDisplayData[displayId].hwcDisplay->getPreferredBootDisplayConfig(&displayModeId);
859 if (error != hal::Error::NONE) {
860 LOG_DISPLAY_ERROR(displayId, to_string(error).c_str());
861 return std::nullopt;
862 }
863 return displayModeId;
864 }
865
getHdrConversionCapabilities() const866 std::vector<HdrConversionCapability> HWComposer::getHdrConversionCapabilities() const {
867 return mHdrConversionCapabilities;
868 }
869
setHdrConversionStrategy(HdrConversionStrategy hdrConversionStrategy,aidl::android::hardware::graphics::common::Hdr * outPreferredHdrOutputType)870 status_t HWComposer::setHdrConversionStrategy(
871 HdrConversionStrategy hdrConversionStrategy,
872 aidl::android::hardware::graphics::common::Hdr* outPreferredHdrOutputType) {
873 const auto error =
874 mComposer->setHdrConversionStrategy(hdrConversionStrategy, outPreferredHdrOutputType);
875 if (error != hal::Error::NONE) {
876 ALOGE("Error in setting HDR conversion strategy %s", to_string(error).c_str());
877 return INVALID_OPERATION;
878 }
879 return NO_ERROR;
880 }
881
setRefreshRateChangedCallbackDebugEnabled(PhysicalDisplayId displayId,bool enabled)882 status_t HWComposer::setRefreshRateChangedCallbackDebugEnabled(PhysicalDisplayId displayId,
883 bool enabled) {
884 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
885 const auto error =
886 mComposer->setRefreshRateChangedCallbackDebugEnabled(mDisplayData[displayId]
887 .hwcDisplay->getId(),
888 enabled);
889 if (error != hal::Error::NONE) {
890 ALOGE("Error in setting refresh refresh rate change callback debug enabled %s",
891 to_string(error).c_str());
892 return INVALID_OPERATION;
893 }
894 return NO_ERROR;
895 }
896
notifyExpectedPresent(PhysicalDisplayId displayId,TimePoint expectedPresentTime,Fps frameInterval)897 status_t HWComposer::notifyExpectedPresent(PhysicalDisplayId displayId,
898 TimePoint expectedPresentTime, Fps frameInterval) {
899 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
900 ATRACE_FORMAT("%s ExpectedPresentTime in %.2fms frameInterval %.2fms", __func__,
901 ticks<std::milli, float>(expectedPresentTime - TimePoint::now()),
902 ticks<std::milli, float>(Duration::fromNs(frameInterval.getPeriodNsecs())));
903 const auto error = mComposer->notifyExpectedPresent(mDisplayData[displayId].hwcDisplay->getId(),
904 expectedPresentTime.ns(),
905 frameInterval.getPeriodNsecs());
906 if (error != hal::Error::NONE) {
907 ALOGE("Error in notifyExpectedPresent call %s", to_string(error).c_str());
908 return INVALID_OPERATION;
909 }
910 return NO_ERROR;
911 }
912
getDisplayDecorationSupport(PhysicalDisplayId displayId,std::optional<aidl::android::hardware::graphics::common::DisplayDecorationSupport> * support)913 status_t HWComposer::getDisplayDecorationSupport(
914 PhysicalDisplayId displayId,
915 std::optional<aidl::android::hardware::graphics::common::DisplayDecorationSupport>*
916 support) {
917 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
918 const auto error = mDisplayData[displayId].hwcDisplay->getDisplayDecorationSupport(support);
919 if (error == hal::Error::UNSUPPORTED) {
920 RETURN_IF_HWC_ERROR(error, displayId, INVALID_OPERATION);
921 }
922 if (error == hal::Error::BAD_PARAMETER) {
923 RETURN_IF_HWC_ERROR(error, displayId, BAD_VALUE);
924 }
925 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
926 return NO_ERROR;
927 }
928
setAutoLowLatencyMode(PhysicalDisplayId displayId,bool on)929 status_t HWComposer::setAutoLowLatencyMode(PhysicalDisplayId displayId, bool on) {
930 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
931 const auto error = mDisplayData[displayId].hwcDisplay->setAutoLowLatencyMode(on);
932 if (error == hal::Error::UNSUPPORTED) {
933 RETURN_IF_HWC_ERROR(error, displayId, INVALID_OPERATION);
934 }
935 if (error == hal::Error::BAD_PARAMETER) {
936 RETURN_IF_HWC_ERROR(error, displayId, BAD_VALUE);
937 }
938 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
939 return NO_ERROR;
940 }
941
getSupportedContentTypes(PhysicalDisplayId displayId,std::vector<hal::ContentType> * outSupportedContentTypes) const942 status_t HWComposer::getSupportedContentTypes(
943 PhysicalDisplayId displayId,
944 std::vector<hal::ContentType>* outSupportedContentTypes) const {
945 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
946 const auto error = mDisplayData.at(displayId).hwcDisplay->getSupportedContentTypes(
947 outSupportedContentTypes);
948
949 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
950
951 return NO_ERROR;
952 }
953
setContentType(PhysicalDisplayId displayId,hal::ContentType contentType)954 status_t HWComposer::setContentType(PhysicalDisplayId displayId, hal::ContentType contentType) {
955 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
956 const auto error = mDisplayData[displayId].hwcDisplay->setContentType(contentType);
957 if (error == hal::Error::UNSUPPORTED) {
958 RETURN_IF_HWC_ERROR(error, displayId, INVALID_OPERATION);
959 }
960 if (error == hal::Error::BAD_PARAMETER) {
961 RETURN_IF_HWC_ERROR(error, displayId, BAD_VALUE);
962 }
963 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
964
965 return NO_ERROR;
966 }
967
getSupportedLayerGenericMetadata() const968 const std::unordered_map<std::string, bool>& HWComposer::getSupportedLayerGenericMetadata() const {
969 return mSupportedLayerGenericMetadata;
970 }
971
dumpOverlayProperties(std::string & result) const972 void HWComposer::dumpOverlayProperties(std::string& result) const {
973 // dump overlay properties
974 result.append("OverlayProperties:\n");
975 base::StringAppendF(&result, "supportMixedColorSpaces: %d\n",
976 mOverlayProperties.supportMixedColorSpaces);
977 base::StringAppendF(&result, "SupportedBufferCombinations(%zu entries)\n",
978 mOverlayProperties.combinations.size());
979 for (const auto& combination : mOverlayProperties.combinations) {
980 result.append(" pixelFormats=\n");
981 for (const auto& pixelFormat : combination.pixelFormats) {
982 base::StringAppendF(&result, " %s (%d)\n",
983 decodePixelFormat(static_cast<PixelFormat>(pixelFormat)).c_str(),
984 static_cast<uint32_t>(pixelFormat));
985 }
986 result.append(" standards=\n");
987 for (const auto& standard : combination.standards) {
988 base::StringAppendF(&result, " %s (%d)\n",
989 decodeStandardOnly(static_cast<uint32_t>(standard)).c_str(),
990 static_cast<uint32_t>(standard));
991 }
992 result.append(" transfers=\n");
993 for (const auto& transfer : combination.transfers) {
994 base::StringAppendF(&result, " %s (%d)\n",
995 decodeTransferOnly(static_cast<uint32_t>(transfer)).c_str(),
996 static_cast<uint32_t>(transfer));
997 }
998 result.append(" ranges=\n");
999 for (const auto& range : combination.ranges) {
1000 base::StringAppendF(&result, " %s (%d)\n",
1001 decodeRangeOnly(static_cast<uint32_t>(range)).c_str(),
1002 static_cast<uint32_t>(range));
1003 }
1004 result.append("\n");
1005 }
1006 }
1007
dump(std::string & result) const1008 void HWComposer::dump(std::string& result) const {
1009 result.append(mComposer->dumpDebugInfo());
1010 dumpOverlayProperties(result);
1011 }
1012
toPhysicalDisplayId(hal::HWDisplayId hwcDisplayId) const1013 std::optional<PhysicalDisplayId> HWComposer::toPhysicalDisplayId(
1014 hal::HWDisplayId hwcDisplayId) const {
1015 if (const auto it = mPhysicalDisplayIdMap.find(hwcDisplayId);
1016 it != mPhysicalDisplayIdMap.end()) {
1017 return it->second;
1018 }
1019 return {};
1020 }
1021
fromPhysicalDisplayId(PhysicalDisplayId displayId) const1022 std::optional<hal::HWDisplayId> HWComposer::fromPhysicalDisplayId(
1023 PhysicalDisplayId displayId) const {
1024 if (const auto it = mDisplayData.find(displayId); it != mDisplayData.end()) {
1025 return it->second.hwcDisplay->getId();
1026 }
1027 return {};
1028 }
1029
shouldIgnoreHotplugConnect(hal::HWDisplayId hwcDisplayId,bool hasDisplayIdentificationData) const1030 bool HWComposer::shouldIgnoreHotplugConnect(hal::HWDisplayId hwcDisplayId,
1031 bool hasDisplayIdentificationData) const {
1032 if (mHasMultiDisplaySupport && !hasDisplayIdentificationData) {
1033 ALOGE("Ignoring connection of display %" PRIu64 " without identification data",
1034 hwcDisplayId);
1035 return true;
1036 }
1037
1038 // Legacy mode only supports IDs LEGACY_DISPLAY_TYPE_PRIMARY and LEGACY_DISPLAY_TYPE_EXTERNAL.
1039 if (!mHasMultiDisplaySupport && mPhysicalDisplayIdMap.size() == 2) {
1040 ALOGE("Ignoring connection of tertiary display %" PRIu64, hwcDisplayId);
1041 return true;
1042 }
1043
1044 return false;
1045 }
1046
onHotplugConnect(hal::HWDisplayId hwcDisplayId)1047 std::optional<DisplayIdentificationInfo> HWComposer::onHotplugConnect(
1048 hal::HWDisplayId hwcDisplayId) {
1049 std::optional<DisplayIdentificationInfo> info;
1050 if (const auto displayId = toPhysicalDisplayId(hwcDisplayId)) {
1051 info = DisplayIdentificationInfo{.id = *displayId,
1052 .name = std::string(),
1053 .deviceProductInfo = std::nullopt};
1054 if (mUpdateDeviceProductInfoOnHotplugReconnect) {
1055 uint8_t port;
1056 DisplayIdentificationData data;
1057 getDisplayIdentificationData(hwcDisplayId, &port, &data);
1058 if (auto newInfo = parseDisplayIdentificationData(port, data)) {
1059 info->deviceProductInfo = std::move(newInfo->deviceProductInfo);
1060 } else {
1061 ALOGE("Failed to parse identification data for display %" PRIu64, hwcDisplayId);
1062 }
1063 }
1064 } else {
1065 uint8_t port;
1066 DisplayIdentificationData data;
1067 const bool hasDisplayIdentificationData =
1068 getDisplayIdentificationData(hwcDisplayId, &port, &data);
1069 if (mPhysicalDisplayIdMap.empty()) {
1070 mHasMultiDisplaySupport = hasDisplayIdentificationData;
1071 ALOGI("Switching to %s multi-display mode",
1072 mHasMultiDisplaySupport ? "generalized" : "legacy");
1073 }
1074
1075 if (shouldIgnoreHotplugConnect(hwcDisplayId, hasDisplayIdentificationData)) {
1076 return {};
1077 }
1078
1079 info = [this, hwcDisplayId, &port, &data, hasDisplayIdentificationData] {
1080 const bool isPrimary = !mPrimaryHwcDisplayId;
1081 if (mHasMultiDisplaySupport) {
1082 if (const auto info = parseDisplayIdentificationData(port, data)) {
1083 return *info;
1084 }
1085 ALOGE("Failed to parse identification data for display %" PRIu64, hwcDisplayId);
1086 } else {
1087 ALOGW_IF(hasDisplayIdentificationData,
1088 "Ignoring identification data for display %" PRIu64, hwcDisplayId);
1089 port = isPrimary ? LEGACY_DISPLAY_TYPE_PRIMARY : LEGACY_DISPLAY_TYPE_EXTERNAL;
1090 }
1091
1092 return DisplayIdentificationInfo{.id = PhysicalDisplayId::fromPort(port),
1093 .name = isPrimary ? "Primary display"
1094 : "Secondary display",
1095 .deviceProductInfo = std::nullopt};
1096 }();
1097
1098 mComposer->onHotplugConnect(hwcDisplayId);
1099 }
1100
1101 if (!isConnected(info->id)) {
1102 allocatePhysicalDisplay(hwcDisplayId, info->id);
1103 }
1104 return info;
1105 }
1106
onHotplugDisconnect(hal::HWDisplayId hwcDisplayId)1107 std::optional<DisplayIdentificationInfo> HWComposer::onHotplugDisconnect(
1108 hal::HWDisplayId hwcDisplayId) {
1109 LOG_ALWAYS_FATAL_IF(hwcDisplayId == mPrimaryHwcDisplayId,
1110 "Primary display cannot be disconnected.");
1111
1112 const auto displayId = toPhysicalDisplayId(hwcDisplayId);
1113 if (!displayId) {
1114 LOG_HWC_DISPLAY_ERROR(hwcDisplayId, "Invalid HWC display");
1115 return {};
1116 }
1117
1118 if (!isConnected(*displayId)) {
1119 LOG_HWC_DISPLAY_ERROR(hwcDisplayId, "Already disconnected");
1120 return {};
1121 }
1122
1123 // The display will later be destroyed by a call to HWComposer::disconnectDisplay. For now, mark
1124 // it as disconnected.
1125 mDisplayData.at(*displayId).hwcDisplay->setConnected(false);
1126 mComposer->onHotplugDisconnect(hwcDisplayId);
1127 return DisplayIdentificationInfo{.id = *displayId};
1128 }
1129
loadCapabilities()1130 void HWComposer::loadCapabilities() {
1131 static_assert(sizeof(hal::Capability) == sizeof(int32_t), "Capability size has changed");
1132 auto capabilities = mComposer->getCapabilities();
1133 for (auto capability : capabilities) {
1134 mCapabilities.emplace(capability);
1135 }
1136 }
1137
loadOverlayProperties()1138 void HWComposer::loadOverlayProperties() {
1139 mComposer->getOverlaySupport(&mOverlayProperties);
1140 }
1141
loadHdrConversionCapabilities()1142 void HWComposer::loadHdrConversionCapabilities() {
1143 const auto error = mComposer->getHdrConversionCapabilities(&mHdrConversionCapabilities);
1144 if (error != hal::Error::NONE) {
1145 ALOGE("Error in fetching HDR conversion capabilities %s", to_string(error).c_str());
1146 mHdrConversionCapabilities = {};
1147 }
1148 }
1149
setIdleTimerEnabled(PhysicalDisplayId displayId,std::chrono::milliseconds timeout)1150 status_t HWComposer::setIdleTimerEnabled(PhysicalDisplayId displayId,
1151 std::chrono::milliseconds timeout) {
1152 ATRACE_CALL();
1153 RETURN_IF_INVALID_DISPLAY(displayId, BAD_INDEX);
1154 const auto error = mDisplayData[displayId].hwcDisplay->setIdleTimerEnabled(timeout);
1155 if (error == hal::Error::UNSUPPORTED) {
1156 RETURN_IF_HWC_ERROR(error, displayId, INVALID_OPERATION);
1157 }
1158 if (error == hal::Error::BAD_PARAMETER) {
1159 RETURN_IF_HWC_ERROR(error, displayId, BAD_VALUE);
1160 }
1161 RETURN_IF_HWC_ERROR(error, displayId, UNKNOWN_ERROR);
1162 return NO_ERROR;
1163 }
1164
hasDisplayIdleTimerCapability(PhysicalDisplayId displayId) const1165 bool HWComposer::hasDisplayIdleTimerCapability(PhysicalDisplayId displayId) const {
1166 RETURN_IF_INVALID_DISPLAY(displayId, false);
1167 return mDisplayData.at(displayId).hwcDisplay->hasDisplayIdleTimerCapability();
1168 }
1169
getPhysicalDisplayOrientation(PhysicalDisplayId displayId) const1170 Hwc2::AidlTransform HWComposer::getPhysicalDisplayOrientation(PhysicalDisplayId displayId) const {
1171 ATRACE_CALL();
1172 RETURN_IF_INVALID_DISPLAY(displayId, Hwc2::AidlTransform::NONE);
1173 Hwc2::AidlTransform outTransform;
1174 const auto& hwcDisplay = mDisplayData.at(displayId).hwcDisplay;
1175 const auto error = hwcDisplay->getPhysicalDisplayOrientation(&outTransform);
1176 RETURN_IF_HWC_ERROR(error, displayId, Hwc2::AidlTransform::NONE);
1177 return outTransform;
1178 }
1179
loadLayerMetadataSupport()1180 void HWComposer::loadLayerMetadataSupport() {
1181 mSupportedLayerGenericMetadata.clear();
1182
1183 std::vector<Hwc2::IComposerClient::LayerGenericMetadataKey> supportedMetadataKeyInfo;
1184 const auto error = mComposer->getLayerGenericMetadataKeys(&supportedMetadataKeyInfo);
1185 if (error != hardware::graphics::composer::V2_4::Error::NONE) {
1186 if (error != hardware::graphics::composer::V2_4::Error::UNSUPPORTED) {
1187 ALOGE("%s: %s failed: %s (%d)", __FUNCTION__, "getLayerGenericMetadataKeys",
1188 toString(error).c_str(), static_cast<int32_t>(error));
1189 }
1190 return;
1191 }
1192
1193 for (const auto& [name, mandatory] : supportedMetadataKeyInfo) {
1194 mSupportedLayerGenericMetadata.emplace(name, mandatory);
1195 }
1196 }
1197
1198 } // namespace impl
1199 } // namespace android
1200
1201 // TODO(b/129481165): remove the #pragma below and fix conversion issues
1202 #pragma clang diagnostic pop // ignored "-Wconversion"
1203