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Lloyd Piquecc01a452018-12-04 17:24:00 -08001/*
2 * Copyright 2019 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
Lloyd Pique37c2c9b2018-12-04 17:25:10 -080017#include <android-base/stringprintf.h>
Lloyd Piquef5275482019-01-29 18:42:42 -080018#include <compositionengine/DisplayColorProfile.h>
Lloyd Pique9755fb72019-03-26 14:44:40 -070019#include <compositionengine/LayerFECompositionState.h>
Lloyd Piquecc01a452018-12-04 17:24:00 -080020#include <compositionengine/Output.h>
Lloyd Piquea83776c2019-01-29 18:42:32 -080021#include <compositionengine/impl/OutputCompositionState.h>
Lloyd Piquecc01a452018-12-04 17:24:00 -080022#include <compositionengine/impl/OutputLayer.h>
Lloyd Piquea83776c2019-01-29 18:42:32 -080023#include <compositionengine/impl/OutputLayerCompositionState.h>
Lloyd Piquecc01a452018-12-04 17:24:00 -080024
Lloyd Pique3b5a69e2020-01-16 17:51:01 -080025// TODO(b/129481165): remove the #pragma below and fix conversion issues
26#pragma clang diagnostic push
27#pragma clang diagnostic ignored "-Wconversion"
28
Lloyd Pique07e33212018-12-18 16:33:37 -080029#include "DisplayHardware/HWComposer.h"
30
Lloyd Pique3b5a69e2020-01-16 17:51:01 -080031// TODO(b/129481165): remove the #pragma below and fix conversion issues
32#pragma clang diagnostic pop // ignored "-Wconversion"
33
Lloyd Piquecc01a452018-12-04 17:24:00 -080034namespace android::compositionengine {
35
36OutputLayer::~OutputLayer() = default;
37
38namespace impl {
39
Lloyd Piquea83776c2019-01-29 18:42:32 -080040namespace {
41
42FloatRect reduce(const FloatRect& win, const Region& exclude) {
43 if (CC_LIKELY(exclude.isEmpty())) {
44 return win;
45 }
46 // Convert through Rect (by rounding) for lack of FloatRegion
47 return Region(Rect{win}).subtract(exclude).getBounds().toFloatRect();
48}
49
50} // namespace
51
Lloyd Piquede196652020-01-22 17:29:58 -080052std::unique_ptr<OutputLayer> createOutputLayer(const compositionengine::Output& output,
53 const sp<compositionengine::LayerFE>& layerFE) {
54 return createOutputLayerTemplated<OutputLayer>(output, layerFE);
Lloyd Piquecc01a452018-12-04 17:24:00 -080055}
56
Lloyd Piquecc01a452018-12-04 17:24:00 -080057OutputLayer::~OutputLayer() = default;
58
Lloyd Piquedf336d92019-03-07 21:38:42 -080059void OutputLayer::setHwcLayer(std::shared_ptr<HWC2::Layer> hwcLayer) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -070060 auto& state = editState();
Lloyd Piquedf336d92019-03-07 21:38:42 -080061 if (hwcLayer) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -070062 state.hwc.emplace(std::move(hwcLayer));
Lloyd Piquedf336d92019-03-07 21:38:42 -080063 } else {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -070064 state.hwc.reset();
Lloyd Pique07e33212018-12-18 16:33:37 -080065 }
Lloyd Pique07e33212018-12-18 16:33:37 -080066}
67
Lloyd Piquea83776c2019-01-29 18:42:32 -080068Rect OutputLayer::calculateInitialCrop() const {
Lloyd Piquede196652020-01-22 17:29:58 -080069 const auto& layerState = *getLayerFE().getCompositionState();
Lloyd Piquea83776c2019-01-29 18:42:32 -080070
71 // apply the projection's clipping to the window crop in
72 // layerstack space, and convert-back to layer space.
73 // if there are no window scaling involved, this operation will map to full
74 // pixels in the buffer.
75
76 FloatRect activeCropFloat =
Lloyd Piquec6687342019-03-07 21:34:57 -080077 reduce(layerState.geomLayerBounds, layerState.transparentRegionHint);
Lloyd Piquea83776c2019-01-29 18:42:32 -080078
Marin Shalamanov6ad317c2020-07-29 23:34:07 +020079 const Rect& viewport = getOutput().getState().layerStackSpace.content;
Lloyd Piquea83776c2019-01-29 18:42:32 -080080 const ui::Transform& layerTransform = layerState.geomLayerTransform;
81 const ui::Transform& inverseLayerTransform = layerState.geomInverseLayerTransform;
82 // Transform to screen space.
83 activeCropFloat = layerTransform.transform(activeCropFloat);
84 activeCropFloat = activeCropFloat.intersect(viewport.toFloatRect());
85 // Back to layer space to work with the content crop.
86 activeCropFloat = inverseLayerTransform.transform(activeCropFloat);
87
88 // This needs to be here as transform.transform(Rect) computes the
89 // transformed rect and then takes the bounding box of the result before
90 // returning. This means
91 // transform.inverse().transform(transform.transform(Rect)) != Rect
92 // in which case we need to make sure the final rect is clipped to the
93 // display bounds.
94 Rect activeCrop{activeCropFloat};
95 if (!activeCrop.intersect(layerState.geomBufferSize, &activeCrop)) {
96 activeCrop.clear();
97 }
98 return activeCrop;
99}
100
101FloatRect OutputLayer::calculateOutputSourceCrop() const {
Lloyd Piquede196652020-01-22 17:29:58 -0800102 const auto& layerState = *getLayerFE().getCompositionState();
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700103 const auto& outputState = getOutput().getState();
Lloyd Piquea83776c2019-01-29 18:42:32 -0800104
105 if (!layerState.geomUsesSourceCrop) {
106 return {};
107 }
108
109 // the content crop is the area of the content that gets scaled to the
110 // layer's size. This is in buffer space.
111 FloatRect crop = layerState.geomContentCrop.toFloatRect();
112
113 // In addition there is a WM-specified crop we pull from our drawing state.
114 Rect activeCrop = calculateInitialCrop();
115 const Rect& bufferSize = layerState.geomBufferSize;
116
117 int winWidth = bufferSize.getWidth();
118 int winHeight = bufferSize.getHeight();
119
120 // The bufferSize for buffer state layers can be unbounded ([0, 0, -1, -1])
121 // if display frame hasn't been set and the parent is an unbounded layer.
122 if (winWidth < 0 && winHeight < 0) {
123 return crop;
124 }
125
126 // Transform the window crop to match the buffer coordinate system,
127 // which means using the inverse of the current transform set on the
128 // SurfaceFlingerConsumer.
129 uint32_t invTransform = layerState.geomBufferTransform;
130 if (layerState.geomBufferUsesDisplayInverseTransform) {
131 /*
132 * the code below applies the primary display's inverse transform to the
133 * buffer
134 */
Marin Shalamanov68933fb2020-09-10 17:58:12 +0200135 uint32_t invTransformOrient =
136 ui::Transform::toRotationFlags(outputState.displaySpace.orientation);
Lloyd Piquea83776c2019-01-29 18:42:32 -0800137 // calculate the inverse transform
138 if (invTransformOrient & HAL_TRANSFORM_ROT_90) {
139 invTransformOrient ^= HAL_TRANSFORM_FLIP_V | HAL_TRANSFORM_FLIP_H;
140 }
141 // and apply to the current transform
142 invTransform =
143 (ui::Transform(invTransformOrient) * ui::Transform(invTransform)).getOrientation();
144 }
145
146 if (invTransform & HAL_TRANSFORM_ROT_90) {
147 // If the activeCrop has been rotate the ends are rotated but not
148 // the space itself so when transforming ends back we can't rely on
149 // a modification of the axes of rotation. To account for this we
150 // need to reorient the inverse rotation in terms of the current
151 // axes of rotation.
Marin Shalamanovcfeebd42020-05-15 15:23:49 +0200152 bool isHFlipped = (invTransform & HAL_TRANSFORM_FLIP_H) != 0;
153 bool isVFlipped = (invTransform & HAL_TRANSFORM_FLIP_V) != 0;
154 if (isHFlipped == isVFlipped) {
Lloyd Piquea83776c2019-01-29 18:42:32 -0800155 invTransform ^= HAL_TRANSFORM_FLIP_V | HAL_TRANSFORM_FLIP_H;
156 }
157 std::swap(winWidth, winHeight);
158 }
159 const Rect winCrop =
160 activeCrop.transform(invTransform, bufferSize.getWidth(), bufferSize.getHeight());
161
162 // below, crop is intersected with winCrop expressed in crop's coordinate space
Marin Shalamanovcfeebd42020-05-15 15:23:49 +0200163 const float xScale = crop.getWidth() / float(winWidth);
164 const float yScale = crop.getHeight() / float(winHeight);
Lloyd Piquea83776c2019-01-29 18:42:32 -0800165
Marin Shalamanovcfeebd42020-05-15 15:23:49 +0200166 const float insetLeft = winCrop.left * xScale;
167 const float insetTop = winCrop.top * yScale;
168 const float insetRight = (winWidth - winCrop.right) * xScale;
169 const float insetBottom = (winHeight - winCrop.bottom) * yScale;
Lloyd Piquea83776c2019-01-29 18:42:32 -0800170
Marin Shalamanovcfeebd42020-05-15 15:23:49 +0200171 crop.left += insetLeft;
172 crop.top += insetTop;
173 crop.right -= insetRight;
174 crop.bottom -= insetBottom;
Lloyd Piquea83776c2019-01-29 18:42:32 -0800175
176 return crop;
177}
178
179Rect OutputLayer::calculateOutputDisplayFrame() const {
Lloyd Piquede196652020-01-22 17:29:58 -0800180 const auto& layerState = *getLayerFE().getCompositionState();
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700181 const auto& outputState = getOutput().getState();
Lloyd Piquea83776c2019-01-29 18:42:32 -0800182
183 // apply the layer's transform, followed by the display's global transform
184 // here we're guaranteed that the layer's transform preserves rects
Lloyd Piquec6687342019-03-07 21:34:57 -0800185 Region activeTransparentRegion = layerState.transparentRegionHint;
Lloyd Piquea83776c2019-01-29 18:42:32 -0800186 const ui::Transform& layerTransform = layerState.geomLayerTransform;
187 const ui::Transform& inverseLayerTransform = layerState.geomInverseLayerTransform;
188 const Rect& bufferSize = layerState.geomBufferSize;
189 Rect activeCrop = layerState.geomCrop;
190 if (!activeCrop.isEmpty() && bufferSize.isValid()) {
191 activeCrop = layerTransform.transform(activeCrop);
Marin Shalamanov6ad317c2020-07-29 23:34:07 +0200192 if (!activeCrop.intersect(outputState.layerStackSpace.content, &activeCrop)) {
Lloyd Piquea83776c2019-01-29 18:42:32 -0800193 activeCrop.clear();
194 }
195 activeCrop = inverseLayerTransform.transform(activeCrop, true);
196 // This needs to be here as transform.transform(Rect) computes the
197 // transformed rect and then takes the bounding box of the result before
198 // returning. This means
199 // transform.inverse().transform(transform.transform(Rect)) != Rect
200 // in which case we need to make sure the final rect is clipped to the
201 // display bounds.
202 if (!activeCrop.intersect(bufferSize, &activeCrop)) {
203 activeCrop.clear();
204 }
205 // mark regions outside the crop as transparent
206 activeTransparentRegion.orSelf(Rect(0, 0, bufferSize.getWidth(), activeCrop.top));
207 activeTransparentRegion.orSelf(
208 Rect(0, activeCrop.bottom, bufferSize.getWidth(), bufferSize.getHeight()));
209 activeTransparentRegion.orSelf(Rect(0, activeCrop.top, activeCrop.left, activeCrop.bottom));
210 activeTransparentRegion.orSelf(
211 Rect(activeCrop.right, activeCrop.top, bufferSize.getWidth(), activeCrop.bottom));
212 }
213
214 // reduce uses a FloatRect to provide more accuracy during the
215 // transformation. We then round upon constructing 'frame'.
216 Rect frame{
217 layerTransform.transform(reduce(layerState.geomLayerBounds, activeTransparentRegion))};
Marin Shalamanov6ad317c2020-07-29 23:34:07 +0200218 if (!frame.intersect(outputState.layerStackSpace.content, &frame)) {
Lloyd Piquea83776c2019-01-29 18:42:32 -0800219 frame.clear();
220 }
221 const ui::Transform displayTransform{outputState.transform};
222
223 return displayTransform.transform(frame);
224}
225
Snild Dolkow9e217d62020-04-22 15:53:42 +0200226uint32_t OutputLayer::calculateOutputRelativeBufferTransform(
227 uint32_t internalDisplayRotationFlags) const {
Lloyd Piquede196652020-01-22 17:29:58 -0800228 const auto& layerState = *getLayerFE().getCompositionState();
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700229 const auto& outputState = getOutput().getState();
Lloyd Piquea83776c2019-01-29 18:42:32 -0800230
231 /*
232 * Transformations are applied in this order:
233 * 1) buffer orientation/flip/mirror
234 * 2) state transformation (window manager)
235 * 3) layer orientation (screen orientation)
236 * (NOTE: the matrices are multiplied in reverse order)
237 */
238 const ui::Transform& layerTransform = layerState.geomLayerTransform;
Rashed Abdel-Tawab6643cd82019-10-29 10:01:56 -0700239 const ui::Transform displayTransform{outputState.transform};
Lloyd Piquea83776c2019-01-29 18:42:32 -0800240 const ui::Transform bufferTransform{layerState.geomBufferTransform};
241 ui::Transform transform(displayTransform * layerTransform * bufferTransform);
242
243 if (layerState.geomBufferUsesDisplayInverseTransform) {
244 /*
Snild Dolkow9e217d62020-04-22 15:53:42 +0200245 * We must apply the internal display's inverse transform to the buffer
246 * transform, and not the one for the output this layer is on.
Lloyd Piquea83776c2019-01-29 18:42:32 -0800247 */
Snild Dolkow9e217d62020-04-22 15:53:42 +0200248 uint32_t invTransform = internalDisplayRotationFlags;
249
Lloyd Piquea83776c2019-01-29 18:42:32 -0800250 // calculate the inverse transform
251 if (invTransform & HAL_TRANSFORM_ROT_90) {
252 invTransform ^= HAL_TRANSFORM_FLIP_V | HAL_TRANSFORM_FLIP_H;
253 }
254
255 /*
256 * Here we cancel out the orientation component of the WM transform.
257 * The scaling and translate components are already included in our bounds
258 * computation so it's enough to just omit it in the composition.
259 * See comment in BufferLayer::prepareClientLayer with ref to b/36727915 for why.
260 */
Lloyd Pique546a2452019-03-18 20:53:27 +0000261 transform = ui::Transform(invTransform) * displayTransform * bufferTransform;
Lloyd Piquea83776c2019-01-29 18:42:32 -0800262 }
263
264 // this gives us only the "orientation" component of the transform
265 return transform.getOrientation();
Snild Dolkow9e217d62020-04-22 15:53:42 +0200266}
Lloyd Piquea83776c2019-01-29 18:42:32 -0800267
Snild Dolkow9e217d62020-04-22 15:53:42 +0200268void OutputLayer::updateCompositionState(
269 bool includeGeometry, bool forceClientComposition,
270 ui::Transform::RotationFlags internalDisplayRotationFlags) {
Lloyd Piquede196652020-01-22 17:29:58 -0800271 const auto* layerFEState = getLayerFE().getCompositionState();
272 if (!layerFEState) {
273 return;
274 }
275
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700276 const auto& outputState = getOutput().getState();
277 const auto& profile = *getOutput().getDisplayColorProfile();
278 auto& state = editState();
Lloyd Piquef5275482019-01-29 18:42:42 -0800279
Lloyd Piquea83776c2019-01-29 18:42:32 -0800280 if (includeGeometry) {
Lloyd Piquefe671022019-09-24 10:43:03 -0700281 // Clear the forceClientComposition flag before it is set for any
282 // reason. Note that since it can be set by some checks below when
283 // updating the geometry state, we only clear it when updating the
284 // geometry since those conditions for forcing client composition won't
285 // go away otherwise.
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700286 state.forceClientComposition = false;
Lloyd Piquefe671022019-09-24 10:43:03 -0700287
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700288 state.displayFrame = calculateOutputDisplayFrame();
289 state.sourceCrop = calculateOutputSourceCrop();
Snild Dolkow9e217d62020-04-22 15:53:42 +0200290 state.bufferTransform = static_cast<Hwc2::Transform>(
291 calculateOutputRelativeBufferTransform(internalDisplayRotationFlags));
Lloyd Piquea83776c2019-01-29 18:42:32 -0800292
Lloyd Piquede196652020-01-22 17:29:58 -0800293 if ((layerFEState->isSecure && !outputState.isSecure) ||
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700294 (state.bufferTransform & ui::Transform::ROT_INVALID)) {
295 state.forceClientComposition = true;
Lloyd Piquea83776c2019-01-29 18:42:32 -0800296 }
297 }
Lloyd Piquef5275482019-01-29 18:42:42 -0800298
299 // Determine the output dependent dataspace for this layer. If it is
300 // colorspace agnostic, it just uses the dataspace chosen for the output to
301 // avoid the need for color conversion.
Lloyd Piquede196652020-01-22 17:29:58 -0800302 state.dataspace = layerFEState->isColorspaceAgnostic &&
Lloyd Piquef5275482019-01-29 18:42:42 -0800303 outputState.targetDataspace != ui::Dataspace::UNKNOWN
304 ? outputState.targetDataspace
Lloyd Piquede196652020-01-22 17:29:58 -0800305 : layerFEState->dataspace;
Lloyd Piquef5275482019-01-29 18:42:42 -0800306
Lloyd Piquef5275482019-01-29 18:42:42 -0800307 // These are evaluated every frame as they can potentially change at any
308 // time.
Lloyd Piquede196652020-01-22 17:29:58 -0800309 if (layerFEState->forceClientComposition || !profile.isDataspaceSupported(state.dataspace) ||
Lloyd Pique7a234912019-10-03 11:54:27 -0700310 forceClientComposition) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700311 state.forceClientComposition = true;
Lloyd Piquef5275482019-01-29 18:42:42 -0800312 }
Lloyd Piquea83776c2019-01-29 18:42:32 -0800313}
314
Dan Stoza6166c312021-01-15 16:34:05 -0800315void OutputLayer::writeStateToHWC(bool includeGeometry, bool skipLayer) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700316 const auto& state = getState();
Lloyd Piquea83776c2019-01-29 18:42:32 -0800317 // Skip doing this if there is no HWC interface
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700318 if (!state.hwc) {
Lloyd Piquea83776c2019-01-29 18:42:32 -0800319 return;
320 }
321
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700322 auto& hwcLayer = (*state.hwc).hwcLayer;
Lloyd Piquea83776c2019-01-29 18:42:32 -0800323 if (!hwcLayer) {
324 ALOGE("[%s] failed to write composition state to HWC -- no hwcLayer for output %s",
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700325 getLayerFE().getDebugName(), getOutput().getName().c_str());
Lloyd Piquea83776c2019-01-29 18:42:32 -0800326 return;
327 }
328
Lloyd Piquede196652020-01-22 17:29:58 -0800329 const auto* outputIndependentState = getLayerFE().getCompositionState();
330 if (!outputIndependentState) {
331 return;
332 }
333
334 auto requestedCompositionType = outputIndependentState->compositionType;
Lloyd Piquef5275482019-01-29 18:42:42 -0800335
Lloyd Piquea83776c2019-01-29 18:42:32 -0800336 if (includeGeometry) {
Lloyd Piquef5275482019-01-29 18:42:42 -0800337 writeOutputDependentGeometryStateToHWC(hwcLayer.get(), requestedCompositionType);
Dan Stoza6166c312021-01-15 16:34:05 -0800338 writeOutputIndependentGeometryStateToHWC(hwcLayer.get(), *outputIndependentState,
339 skipLayer);
Lloyd Piquef5275482019-01-29 18:42:42 -0800340 }
Lloyd Piquea83776c2019-01-29 18:42:32 -0800341
Lloyd Piquef5275482019-01-29 18:42:42 -0800342 writeOutputDependentPerFrameStateToHWC(hwcLayer.get());
Lloyd Piquede196652020-01-22 17:29:58 -0800343 writeOutputIndependentPerFrameStateToHWC(hwcLayer.get(), *outputIndependentState);
Lloyd Piquea83776c2019-01-29 18:42:32 -0800344
Lloyd Piquef5275482019-01-29 18:42:42 -0800345 writeCompositionTypeToHWC(hwcLayer.get(), requestedCompositionType);
Lloyd Pique46b72df2019-10-29 13:19:27 -0700346
347 // Always set the layer color after setting the composition type.
Lloyd Piquede196652020-01-22 17:29:58 -0800348 writeSolidColorStateToHWC(hwcLayer.get(), *outputIndependentState);
Lloyd Piquef5275482019-01-29 18:42:42 -0800349}
Lloyd Piquea83776c2019-01-29 18:42:32 -0800350
Lloyd Piquef5275482019-01-29 18:42:42 -0800351void OutputLayer::writeOutputDependentGeometryStateToHWC(
Peiyong Line9d809e2020-04-14 13:10:48 -0700352 HWC2::Layer* hwcLayer, hal::Composition requestedCompositionType) {
Lloyd Piquef5275482019-01-29 18:42:42 -0800353 const auto& outputDependentState = getState();
354
Dan Stoza6166c312021-01-15 16:34:05 -0800355 Rect displayFrame = outputDependentState.displayFrame;
356 FloatRect sourceCrop = outputDependentState.sourceCrop;
357 if (outputDependentState.overrideInfo.buffer != nullptr) { // adyabr
358 displayFrame = outputDependentState.overrideInfo.displayFrame;
359 sourceCrop = displayFrame.toFloatRect();
Lloyd Piquef5275482019-01-29 18:42:42 -0800360 }
361
Dan Stoza6166c312021-01-15 16:34:05 -0800362 ALOGV("Writing display frame [%d, %d, %d, %d]", displayFrame.left, displayFrame.top,
363 displayFrame.right, displayFrame.bottom);
364
365 if (auto error = hwcLayer->setDisplayFrame(displayFrame); error != hal::Error::NONE) {
366 ALOGE("[%s] Failed to set display frame [%d, %d, %d, %d]: %s (%d)",
367 getLayerFE().getDebugName(), displayFrame.left, displayFrame.top, displayFrame.right,
368 displayFrame.bottom, to_string(error).c_str(), static_cast<int32_t>(error));
369 }
370
371 if (auto error = hwcLayer->setSourceCrop(sourceCrop); error != hal::Error::NONE) {
Lloyd Piquef5275482019-01-29 18:42:42 -0800372 ALOGE("[%s] Failed to set source crop [%.3f, %.3f, %.3f, %.3f]: "
373 "%s (%d)",
Dan Stoza6166c312021-01-15 16:34:05 -0800374 getLayerFE().getDebugName(), sourceCrop.left, sourceCrop.top, sourceCrop.right,
375 sourceCrop.bottom, to_string(error).c_str(), static_cast<int32_t>(error));
Lloyd Piquef5275482019-01-29 18:42:42 -0800376 }
377
Peiyong Line9d809e2020-04-14 13:10:48 -0700378 if (auto error = hwcLayer->setZOrder(outputDependentState.z); error != hal::Error::NONE) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700379 ALOGE("[%s] Failed to set Z %u: %s (%d)", getLayerFE().getDebugName(),
380 outputDependentState.z, to_string(error).c_str(), static_cast<int32_t>(error));
Lloyd Piquef5275482019-01-29 18:42:42 -0800381 }
382
383 // Solid-color layers should always use an identity transform.
Peiyong Line9d809e2020-04-14 13:10:48 -0700384 const auto bufferTransform = requestedCompositionType != hal::Composition::SOLID_COLOR
Lloyd Piquef5275482019-01-29 18:42:42 -0800385 ? outputDependentState.bufferTransform
Peiyong Line9d809e2020-04-14 13:10:48 -0700386 : static_cast<hal::Transform>(0);
387 if (auto error = hwcLayer->setTransform(static_cast<hal::Transform>(bufferTransform));
388 error != hal::Error::NONE) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700389 ALOGE("[%s] Failed to set transform %s: %s (%d)", getLayerFE().getDebugName(),
Lloyd Piquef5275482019-01-29 18:42:42 -0800390 toString(outputDependentState.bufferTransform).c_str(), to_string(error).c_str(),
391 static_cast<int32_t>(error));
392 }
393}
394
395void OutputLayer::writeOutputIndependentGeometryStateToHWC(
Dan Stoza6166c312021-01-15 16:34:05 -0800396 HWC2::Layer* hwcLayer, const LayerFECompositionState& outputIndependentState,
397 bool skipLayer) {
Peiyong Line9d809e2020-04-14 13:10:48 -0700398 if (auto error = hwcLayer->setBlendMode(outputIndependentState.blendMode);
399 error != hal::Error::NONE) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700400 ALOGE("[%s] Failed to set blend mode %s: %s (%d)", getLayerFE().getDebugName(),
Lloyd Piquef5275482019-01-29 18:42:42 -0800401 toString(outputIndependentState.blendMode).c_str(), to_string(error).c_str(),
402 static_cast<int32_t>(error));
403 }
404
Dan Stoza6166c312021-01-15 16:34:05 -0800405 const float alpha = skipLayer ? 0.0f : outputIndependentState.alpha;
406 ALOGV("Writing alpha %f", alpha);
407
408 if (auto error = hwcLayer->setPlaneAlpha(alpha); error != hal::Error::NONE) {
409 ALOGE("[%s] Failed to set plane alpha %.3f: %s (%d)", getLayerFE().getDebugName(), alpha,
410 to_string(error).c_str(), static_cast<int32_t>(error));
Lloyd Piquef5275482019-01-29 18:42:42 -0800411 }
412
Lloyd Pique8d9f8362020-02-11 19:13:09 -0800413 for (const auto& [name, entry] : outputIndependentState.metadata) {
414 if (auto error = hwcLayer->setLayerGenericMetadata(name, entry.mandatory, entry.value);
Peiyong Line9d809e2020-04-14 13:10:48 -0700415 error != hal::Error::NONE) {
Lloyd Pique8d9f8362020-02-11 19:13:09 -0800416 ALOGE("[%s] Failed to set generic metadata %s %s (%d)", getLayerFE().getDebugName(),
417 name.c_str(), to_string(error).c_str(), static_cast<int32_t>(error));
418 }
419 }
Lloyd Piquef5275482019-01-29 18:42:42 -0800420}
421
422void OutputLayer::writeOutputDependentPerFrameStateToHWC(HWC2::Layer* hwcLayer) {
423 const auto& outputDependentState = getState();
424
Lloyd Piquea2468662019-03-07 21:31:06 -0800425 // TODO(lpique): b/121291683 outputSpaceVisibleRegion is output-dependent geometry
Lloyd Piquef5275482019-01-29 18:42:42 -0800426 // state and should not change every frame.
Lloyd Piquea2468662019-03-07 21:31:06 -0800427 if (auto error = hwcLayer->setVisibleRegion(outputDependentState.outputSpaceVisibleRegion);
Peiyong Line9d809e2020-04-14 13:10:48 -0700428 error != hal::Error::NONE) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700429 ALOGE("[%s] Failed to set visible region: %s (%d)", getLayerFE().getDebugName(),
Lloyd Piquef5275482019-01-29 18:42:42 -0800430 to_string(error).c_str(), static_cast<int32_t>(error));
Lloyd Piquea2468662019-03-07 21:31:06 -0800431 outputDependentState.outputSpaceVisibleRegion.dump(LOG_TAG);
Lloyd Piquef5275482019-01-29 18:42:42 -0800432 }
433
Alec Mourib7edfc22021-03-17 16:20:26 -0700434 const auto dataspace = outputDependentState.overrideInfo.buffer
435 ? outputDependentState.overrideInfo.dataspace
436 : outputDependentState.dataspace;
437
438 if (auto error = hwcLayer->setDataspace(dataspace); error != hal::Error::NONE) {
439 ALOGE("[%s] Failed to set dataspace %d: %s (%d)", getLayerFE().getDebugName(), dataspace,
440 to_string(error).c_str(), static_cast<int32_t>(error));
Lloyd Piquef5275482019-01-29 18:42:42 -0800441 }
442}
443
444void OutputLayer::writeOutputIndependentPerFrameStateToHWC(
445 HWC2::Layer* hwcLayer, const LayerFECompositionState& outputIndependentState) {
446 switch (auto error = hwcLayer->setColorTransform(outputIndependentState.colorTransform)) {
Peiyong Line9d809e2020-04-14 13:10:48 -0700447 case hal::Error::NONE:
Lloyd Piquef5275482019-01-29 18:42:42 -0800448 break;
Peiyong Line9d809e2020-04-14 13:10:48 -0700449 case hal::Error::UNSUPPORTED:
Lloyd Piquef5275482019-01-29 18:42:42 -0800450 editState().forceClientComposition = true;
451 break;
452 default:
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700453 ALOGE("[%s] Failed to set color transform: %s (%d)", getLayerFE().getDebugName(),
Lloyd Piquea83776c2019-01-29 18:42:32 -0800454 to_string(error).c_str(), static_cast<int32_t>(error));
Lloyd Piquef5275482019-01-29 18:42:42 -0800455 }
Lloyd Piquea83776c2019-01-29 18:42:32 -0800456
Lloyd Piquef5275482019-01-29 18:42:42 -0800457 if (auto error = hwcLayer->setSurfaceDamage(outputIndependentState.surfaceDamage);
Peiyong Line9d809e2020-04-14 13:10:48 -0700458 error != hal::Error::NONE) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700459 ALOGE("[%s] Failed to set surface damage: %s (%d)", getLayerFE().getDebugName(),
Lloyd Piquef5275482019-01-29 18:42:42 -0800460 to_string(error).c_str(), static_cast<int32_t>(error));
461 outputIndependentState.surfaceDamage.dump(LOG_TAG);
462 }
463
464 // Content-specific per-frame state
465 switch (outputIndependentState.compositionType) {
Peiyong Line9d809e2020-04-14 13:10:48 -0700466 case hal::Composition::SOLID_COLOR:
Lloyd Pique46b72df2019-10-29 13:19:27 -0700467 // For compatibility, should be written AFTER the composition type.
Lloyd Piquef5275482019-01-29 18:42:42 -0800468 break;
Peiyong Line9d809e2020-04-14 13:10:48 -0700469 case hal::Composition::SIDEBAND:
Lloyd Piquef5275482019-01-29 18:42:42 -0800470 writeSidebandStateToHWC(hwcLayer, outputIndependentState);
471 break;
Peiyong Line9d809e2020-04-14 13:10:48 -0700472 case hal::Composition::CURSOR:
473 case hal::Composition::DEVICE:
Lloyd Piquef5275482019-01-29 18:42:42 -0800474 writeBufferStateToHWC(hwcLayer, outputIndependentState);
475 break;
Peiyong Line9d809e2020-04-14 13:10:48 -0700476 case hal::Composition::INVALID:
477 case hal::Composition::CLIENT:
Lloyd Piquef5275482019-01-29 18:42:42 -0800478 // Ignored
479 break;
480 }
481}
482
483void OutputLayer::writeSolidColorStateToHWC(HWC2::Layer* hwcLayer,
484 const LayerFECompositionState& outputIndependentState) {
Peiyong Line9d809e2020-04-14 13:10:48 -0700485 if (outputIndependentState.compositionType != hal::Composition::SOLID_COLOR) {
Lloyd Pique46b72df2019-10-29 13:19:27 -0700486 return;
487 }
488
Peiyong Line9d809e2020-04-14 13:10:48 -0700489 hal::Color color = {static_cast<uint8_t>(std::round(255.0f * outputIndependentState.color.r)),
490 static_cast<uint8_t>(std::round(255.0f * outputIndependentState.color.g)),
491 static_cast<uint8_t>(std::round(255.0f * outputIndependentState.color.b)),
492 255};
Lloyd Piquef5275482019-01-29 18:42:42 -0800493
Peiyong Line9d809e2020-04-14 13:10:48 -0700494 if (auto error = hwcLayer->setColor(color); error != hal::Error::NONE) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700495 ALOGE("[%s] Failed to set color: %s (%d)", getLayerFE().getDebugName(),
Lloyd Piquef5275482019-01-29 18:42:42 -0800496 to_string(error).c_str(), static_cast<int32_t>(error));
497 }
498}
499
500void OutputLayer::writeSidebandStateToHWC(HWC2::Layer* hwcLayer,
501 const LayerFECompositionState& outputIndependentState) {
502 if (auto error = hwcLayer->setSidebandStream(outputIndependentState.sidebandStream->handle());
Peiyong Line9d809e2020-04-14 13:10:48 -0700503 error != hal::Error::NONE) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700504 ALOGE("[%s] Failed to set sideband stream %p: %s (%d)", getLayerFE().getDebugName(),
Lloyd Piquef5275482019-01-29 18:42:42 -0800505 outputIndependentState.sidebandStream->handle(), to_string(error).c_str(),
506 static_cast<int32_t>(error));
507 }
508}
509
510void OutputLayer::writeBufferStateToHWC(HWC2::Layer* hwcLayer,
511 const LayerFECompositionState& outputIndependentState) {
512 auto supportedPerFrameMetadata =
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700513 getOutput().getDisplayColorProfile()->getSupportedPerFrameMetadata();
Lloyd Piquef5275482019-01-29 18:42:42 -0800514 if (auto error = hwcLayer->setPerFrameMetadata(supportedPerFrameMetadata,
515 outputIndependentState.hdrMetadata);
Peiyong Line9d809e2020-04-14 13:10:48 -0700516 error != hal::Error::NONE && error != hal::Error::UNSUPPORTED) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700517 ALOGE("[%s] Failed to set hdrMetadata: %s (%d)", getLayerFE().getDebugName(),
Lloyd Piquef5275482019-01-29 18:42:42 -0800518 to_string(error).c_str(), static_cast<int32_t>(error));
519 }
520
Dan Stoza6166c312021-01-15 16:34:05 -0800521 sp<GraphicBuffer> buffer = outputIndependentState.buffer;
522 sp<Fence> acquireFence = outputIndependentState.acquireFence;
523 if (getState().overrideInfo.buffer != nullptr) {
524 buffer = getState().overrideInfo.buffer;
525 acquireFence = getState().overrideInfo.acquireFence;
526 }
527
528 ALOGV("Writing buffer %p", buffer.get());
529
Lloyd Piquef5275482019-01-29 18:42:42 -0800530 uint32_t hwcSlot = 0;
531 sp<GraphicBuffer> hwcBuffer;
532 // We need access to the output-dependent state for the buffer cache there,
533 // though otherwise the buffer is not output-dependent.
Dan Stoza6166c312021-01-15 16:34:05 -0800534 editState().hwc->hwcBufferCache.getHwcBuffer(outputIndependentState.bufferSlot, buffer,
535 &hwcSlot, &hwcBuffer);
Lloyd Piquef5275482019-01-29 18:42:42 -0800536
Dan Stoza6166c312021-01-15 16:34:05 -0800537 if (auto error = hwcLayer->setBuffer(hwcSlot, hwcBuffer, acquireFence);
Peiyong Line9d809e2020-04-14 13:10:48 -0700538 error != hal::Error::NONE) {
Dan Stoza6166c312021-01-15 16:34:05 -0800539 ALOGE("[%s] Failed to set buffer %p: %s (%d)", getLayerFE().getDebugName(), buffer->handle,
540 to_string(error).c_str(), static_cast<int32_t>(error));
Lloyd Piquef5275482019-01-29 18:42:42 -0800541 }
542}
543
Peiyong Line9d809e2020-04-14 13:10:48 -0700544void OutputLayer::writeCompositionTypeToHWC(HWC2::Layer* hwcLayer,
545 hal::Composition requestedCompositionType) {
Lloyd Piquef5275482019-01-29 18:42:42 -0800546 auto& outputDependentState = editState();
547
548 // If we are forcing client composition, we need to tell the HWC
549 if (outputDependentState.forceClientComposition) {
Peiyong Line9d809e2020-04-14 13:10:48 -0700550 requestedCompositionType = hal::Composition::CLIENT;
Lloyd Piquef5275482019-01-29 18:42:42 -0800551 }
552
553 // Set the requested composition type with the HWC whenever it changes
554 if (outputDependentState.hwc->hwcCompositionType != requestedCompositionType) {
555 outputDependentState.hwc->hwcCompositionType = requestedCompositionType;
556
Peiyong Line9d809e2020-04-14 13:10:48 -0700557 if (auto error = hwcLayer->setCompositionType(requestedCompositionType);
558 error != hal::Error::NONE) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700559 ALOGE("[%s] Failed to set composition type %s: %s (%d)", getLayerFE().getDebugName(),
Lloyd Piquef5275482019-01-29 18:42:42 -0800560 toString(requestedCompositionType).c_str(), to_string(error).c_str(),
Lloyd Piquea83776c2019-01-29 18:42:32 -0800561 static_cast<int32_t>(error));
562 }
Lloyd Piquea83776c2019-01-29 18:42:32 -0800563 }
564}
565
Lloyd Piquec7b0c752019-03-07 20:59:59 -0800566void OutputLayer::writeCursorPositionToHWC() const {
567 // Skip doing this if there is no HWC interface
568 auto hwcLayer = getHwcLayer();
569 if (!hwcLayer) {
570 return;
571 }
572
Lloyd Piquede196652020-01-22 17:29:58 -0800573 const auto* layerFEState = getLayerFE().getCompositionState();
574 if (!layerFEState) {
575 return;
576 }
577
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700578 const auto& outputState = getOutput().getState();
Lloyd Piquec7b0c752019-03-07 20:59:59 -0800579
Lloyd Piquede196652020-01-22 17:29:58 -0800580 Rect frame = layerFEState->cursorFrame;
Marin Shalamanov6ad317c2020-07-29 23:34:07 +0200581 frame.intersect(outputState.layerStackSpace.content, &frame);
Lloyd Piquec7b0c752019-03-07 20:59:59 -0800582 Rect position = outputState.transform.transform(frame);
583
584 if (auto error = hwcLayer->setCursorPosition(position.left, position.top);
Peiyong Line9d809e2020-04-14 13:10:48 -0700585 error != hal::Error::NONE) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700586 ALOGE("[%s] Failed to set cursor position to (%d, %d): %s (%d)",
587 getLayerFE().getDebugName(), position.left, position.top, to_string(error).c_str(),
588 static_cast<int32_t>(error));
Lloyd Piquec7b0c752019-03-07 20:59:59 -0800589 }
590}
591
Lloyd Pique66d68602019-02-13 14:23:31 -0800592HWC2::Layer* OutputLayer::getHwcLayer() const {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700593 const auto& state = getState();
594 return state.hwc ? state.hwc->hwcLayer.get() : nullptr;
Lloyd Pique66d68602019-02-13 14:23:31 -0800595}
596
597bool OutputLayer::requiresClientComposition() const {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700598 const auto& state = getState();
Peiyong Line9d809e2020-04-14 13:10:48 -0700599 return !state.hwc || state.hwc->hwcCompositionType == hal::Composition::CLIENT;
Lloyd Pique66d68602019-02-13 14:23:31 -0800600}
601
Lloyd Piquec7b0c752019-03-07 20:59:59 -0800602bool OutputLayer::isHardwareCursor() const {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700603 const auto& state = getState();
Peiyong Line9d809e2020-04-14 13:10:48 -0700604 return state.hwc && state.hwc->hwcCompositionType == hal::Composition::CURSOR;
Lloyd Piquec7b0c752019-03-07 20:59:59 -0800605}
606
Peiyong Line9d809e2020-04-14 13:10:48 -0700607void OutputLayer::detectDisallowedCompositionTypeChange(hal::Composition from,
608 hal::Composition to) const {
Lloyd Pique66d68602019-02-13 14:23:31 -0800609 bool result = false;
610 switch (from) {
Peiyong Line9d809e2020-04-14 13:10:48 -0700611 case hal::Composition::INVALID:
612 case hal::Composition::CLIENT:
Lloyd Pique66d68602019-02-13 14:23:31 -0800613 result = false;
614 break;
615
Peiyong Line9d809e2020-04-14 13:10:48 -0700616 case hal::Composition::DEVICE:
617 case hal::Composition::SOLID_COLOR:
618 result = (to == hal::Composition::CLIENT);
Lloyd Pique66d68602019-02-13 14:23:31 -0800619 break;
620
Peiyong Line9d809e2020-04-14 13:10:48 -0700621 case hal::Composition::CURSOR:
622 case hal::Composition::SIDEBAND:
623 result = (to == hal::Composition::CLIENT || to == hal::Composition::DEVICE);
Lloyd Pique66d68602019-02-13 14:23:31 -0800624 break;
625 }
626
627 if (!result) {
628 ALOGE("[%s] Invalid device requested composition type change: %s (%d) --> %s (%d)",
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700629 getLayerFE().getDebugName(), toString(from).c_str(), static_cast<int>(from),
Lloyd Pique66d68602019-02-13 14:23:31 -0800630 toString(to).c_str(), static_cast<int>(to));
631 }
632}
633
Peiyong Line9d809e2020-04-14 13:10:48 -0700634void OutputLayer::applyDeviceCompositionTypeChange(hal::Composition compositionType) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700635 auto& state = editState();
636 LOG_FATAL_IF(!state.hwc);
637 auto& hwcState = *state.hwc;
Lloyd Pique66d68602019-02-13 14:23:31 -0800638
639 detectDisallowedCompositionTypeChange(hwcState.hwcCompositionType, compositionType);
640
641 hwcState.hwcCompositionType = compositionType;
642}
643
644void OutputLayer::prepareForDeviceLayerRequests() {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700645 auto& state = editState();
646 state.clearClientTarget = false;
Lloyd Pique66d68602019-02-13 14:23:31 -0800647}
648
Peiyong Line9d809e2020-04-14 13:10:48 -0700649void OutputLayer::applyDeviceLayerRequest(hal::LayerRequest request) {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700650 auto& state = editState();
Lloyd Pique66d68602019-02-13 14:23:31 -0800651 switch (request) {
Peiyong Line9d809e2020-04-14 13:10:48 -0700652 case hal::LayerRequest::CLEAR_CLIENT_TARGET:
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700653 state.clearClientTarget = true;
Lloyd Pique66d68602019-02-13 14:23:31 -0800654 break;
655
656 default:
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700657 ALOGE("[%s] Unknown device layer request %s (%d)", getLayerFE().getDebugName(),
Lloyd Pique66d68602019-02-13 14:23:31 -0800658 toString(request).c_str(), static_cast<int>(request));
659 break;
660 }
661}
662
Lloyd Pique688abd42019-02-15 15:42:24 -0800663bool OutputLayer::needsFiltering() const {
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700664 const auto& state = getState();
665 const auto& displayFrame = state.displayFrame;
666 const auto& sourceCrop = state.sourceCrop;
Lloyd Pique688abd42019-02-15 15:42:24 -0800667 return sourceCrop.getHeight() != displayFrame.getHeight() ||
668 sourceCrop.getWidth() != displayFrame.getWidth();
669}
670
Dan Stoza6166c312021-01-15 16:34:05 -0800671std::vector<LayerFE::LayerSettings> OutputLayer::getOverrideCompositionList() const {
672 if (getState().overrideInfo.buffer == nullptr) {
673 return {};
674 }
675
676 LayerFE::LayerSettings settings;
677 settings.geometry = renderengine::Geometry{
678 .boundaries = getState().overrideInfo.displayFrame.toFloatRect(),
679 };
680 settings.bufferId = getState().overrideInfo.buffer->getId();
681 settings.source =
682 renderengine::PixelSource{.buffer = renderengine::Buffer{
683 .buffer = getState().overrideInfo.buffer,
684 .fence = getState().overrideInfo.acquireFence,
685 }};
Alec Mouri9c8fce02021-03-12 18:30:42 -0800686 settings.sourceDataspace = getState().overrideInfo.dataspace;
Dan Stoza6166c312021-01-15 16:34:05 -0800687 settings.alpha = 1.0f;
688
689 return {static_cast<LayerFE::LayerSettings>(settings)};
690}
691
Lloyd Pique37c2c9b2018-12-04 17:25:10 -0800692void OutputLayer::dump(std::string& out) const {
693 using android::base::StringAppendF;
694
Lloyd Piquede196652020-01-22 17:29:58 -0800695 StringAppendF(&out, " - Output Layer %p(%s)\n", this, getLayerFE().getDebugName());
Lloyd Piquea38ea7e2019-04-16 18:10:26 -0700696 dumpState(out);
Lloyd Pique37c2c9b2018-12-04 17:25:10 -0800697}
698
Lloyd Piquecc01a452018-12-04 17:24:00 -0800699} // namespace impl
700} // namespace android::compositionengine