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608 lines
19 KiB
608 lines
19 KiB
/* |
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* Copyright (C) 2015 The Android Open Source Project |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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*/ |
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#define LOG_TAG "hwc-drm-display-composition" |
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#include "drmdisplaycomposition.h" |
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#include "drmcrtc.h" |
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#include "drmplane.h" |
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#include "drmresources.h" |
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#include "platform.h" |
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#include <stdlib.h> |
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#include <algorithm> |
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#include <unordered_set> |
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#include <cutils/log.h> |
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#include <sw_sync.h> |
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#include <sync/sync.h> |
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#include <xf86drmMode.h> |
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namespace android { |
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DrmDisplayComposition::~DrmDisplayComposition() { |
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if (timeline_fd_ >= 0) { |
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SignalCompositionDone(); |
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close(timeline_fd_); |
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} |
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} |
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int DrmDisplayComposition::Init(DrmResources *drm, DrmCrtc *crtc, |
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Importer *importer, Planner *planner, |
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uint64_t frame_no) { |
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drm_ = drm; |
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crtc_ = crtc; // Can be NULL if we haven't modeset yet |
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importer_ = importer; |
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planner_ = planner; |
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frame_no_ = frame_no; |
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int ret = sw_sync_timeline_create(); |
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if (ret < 0) { |
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ALOGE("Failed to create sw sync timeline %d", ret); |
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return ret; |
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} |
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timeline_fd_ = ret; |
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return 0; |
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} |
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bool DrmDisplayComposition::validate_composition_type(DrmCompositionType des) { |
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return type_ == DRM_COMPOSITION_TYPE_EMPTY || type_ == des; |
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} |
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int DrmDisplayComposition::CreateNextTimelineFence() { |
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++timeline_; |
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return sw_sync_fence_create(timeline_fd_, "hwc drm display composition fence", |
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timeline_); |
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} |
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int DrmDisplayComposition::IncreaseTimelineToPoint(int point) { |
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int timeline_increase = point - timeline_current_; |
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if (timeline_increase <= 0) |
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return 0; |
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int ret = sw_sync_timeline_inc(timeline_fd_, timeline_increase); |
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if (ret) |
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ALOGE("Failed to increment sync timeline %d", ret); |
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else |
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timeline_current_ = point; |
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return ret; |
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} |
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int DrmDisplayComposition::SetLayers(DrmHwcLayer *layers, size_t num_layers, |
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bool geometry_changed) { |
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if (!validate_composition_type(DRM_COMPOSITION_TYPE_FRAME)) |
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return -EINVAL; |
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geometry_changed_ = geometry_changed; |
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for (size_t layer_index = 0; layer_index < num_layers; layer_index++) { |
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layers_.emplace_back(std::move(layers[layer_index])); |
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} |
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type_ = DRM_COMPOSITION_TYPE_FRAME; |
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return 0; |
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} |
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int DrmDisplayComposition::SetDpmsMode(uint32_t dpms_mode) { |
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if (!validate_composition_type(DRM_COMPOSITION_TYPE_DPMS)) |
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return -EINVAL; |
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dpms_mode_ = dpms_mode; |
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type_ = DRM_COMPOSITION_TYPE_DPMS; |
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return 0; |
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} |
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int DrmDisplayComposition::SetDisplayMode(const DrmMode &display_mode) { |
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if (!validate_composition_type(DRM_COMPOSITION_TYPE_MODESET)) |
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return -EINVAL; |
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display_mode_ = display_mode; |
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dpms_mode_ = DRM_MODE_DPMS_ON; |
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type_ = DRM_COMPOSITION_TYPE_MODESET; |
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return 0; |
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} |
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int DrmDisplayComposition::AddPlaneDisable(DrmPlane *plane) { |
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composition_planes_.emplace_back(DrmCompositionPlane::Type::kDisable, plane, |
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crtc_); |
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return 0; |
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} |
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static std::vector<size_t> SetBitsToVector( |
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uint64_t in, const std::vector<size_t> &index_map) { |
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std::vector<size_t> out; |
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size_t msb = sizeof(in) * 8 - 1; |
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uint64_t mask = (uint64_t)1 << msb; |
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for (size_t i = msb; mask != (uint64_t)0; i--, mask >>= 1) |
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if (in & mask) |
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out.push_back(index_map[i]); |
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return out; |
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} |
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int DrmDisplayComposition::AddPlaneComposition(DrmCompositionPlane plane) { |
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composition_planes_.emplace_back(std::move(plane)); |
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return 0; |
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} |
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void DrmDisplayComposition::SeparateLayers(DrmHwcRect<int> *exclude_rects, |
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size_t num_exclude_rects) { |
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DrmCompositionPlane *comp = NULL; |
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std::vector<size_t> dedicated_layers; |
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// Go through the composition and find the precomp layer as well as any |
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// layers that have a dedicated plane located below the precomp layer. |
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for (auto &i : composition_planes_) { |
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if (i.type() == DrmCompositionPlane::Type::kLayer) { |
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dedicated_layers.insert(dedicated_layers.end(), i.source_layers().begin(), |
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i.source_layers().end()); |
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} else if (i.type() == DrmCompositionPlane::Type::kPrecomp) { |
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comp = &i; |
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break; |
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} |
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} |
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if (!comp) |
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return; |
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const std::vector<size_t> &comp_layers = comp->source_layers(); |
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if (comp_layers.size() > 64) { |
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ALOGE("Failed to separate layers because there are more than 64"); |
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return; |
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} |
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// Index at which the actual layers begin |
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size_t layer_offset = num_exclude_rects + dedicated_layers.size(); |
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if (comp_layers.size() + layer_offset > 64) { |
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ALOGW( |
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"Exclusion rectangles are being truncated to make the rectangle count " |
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"fit into 64"); |
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num_exclude_rects = 64 - comp_layers.size() - dedicated_layers.size(); |
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} |
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// We inject all the exclude rects into the rects list. Any resulting rect |
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// that includes ANY of the first num_exclude_rects is rejected. After the |
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// exclude rects, we add the lower layers. The rects that intersect with |
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// these layers will be inspected and only those which are to be composited |
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// above the layer will be included in the composition regions. |
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std::vector<DrmHwcRect<int>> layer_rects(comp_layers.size() + layer_offset); |
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std::copy(exclude_rects, exclude_rects + num_exclude_rects, |
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layer_rects.begin()); |
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std::transform( |
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dedicated_layers.begin(), dedicated_layers.end(), |
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layer_rects.begin() + num_exclude_rects, |
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[=](size_t layer_index) { return layers_[layer_index].display_frame; }); |
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std::transform(comp_layers.begin(), comp_layers.end(), |
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layer_rects.begin() + layer_offset, [=](size_t layer_index) { |
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return layers_[layer_index].display_frame; |
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}); |
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std::vector<separate_rects::RectSet<uint64_t, int>> separate_regions; |
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separate_rects::separate_rects_64(layer_rects, &separate_regions); |
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uint64_t exclude_mask = ((uint64_t)1 << num_exclude_rects) - 1; |
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uint64_t dedicated_mask = (((uint64_t)1 << dedicated_layers.size()) - 1) |
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<< num_exclude_rects; |
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for (separate_rects::RectSet<uint64_t, int> ®ion : separate_regions) { |
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if (region.id_set.getBits() & exclude_mask) |
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continue; |
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// If a rect intersects one of the dedicated layers, we need to remove the |
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// layers from the composition region which appear *below* the dedicated |
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// layer. This effectively punches a hole through the composition layer such |
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// that the dedicated layer can be placed below the composition and not |
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// be occluded. |
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uint64_t dedicated_intersect = region.id_set.getBits() & dedicated_mask; |
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for (size_t i = 0; dedicated_intersect && i < dedicated_layers.size(); |
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++i) { |
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// Only exclude layers if they intersect this particular dedicated layer |
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if (!(dedicated_intersect & (1 << (i + num_exclude_rects)))) |
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continue; |
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for (size_t j = 0; j < comp_layers.size(); ++j) { |
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if (comp_layers[j] < dedicated_layers[i]) |
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region.id_set.subtract(j + layer_offset); |
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} |
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} |
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if (!(region.id_set.getBits() >> layer_offset)) |
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continue; |
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pre_comp_regions_.emplace_back(DrmCompositionRegion{ |
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region.rect, |
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SetBitsToVector(region.id_set.getBits() >> layer_offset, comp_layers)}); |
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} |
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} |
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int DrmDisplayComposition::CreateAndAssignReleaseFences() { |
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std::unordered_set<DrmHwcLayer *> squash_layers; |
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std::unordered_set<DrmHwcLayer *> pre_comp_layers; |
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std::unordered_set<DrmHwcLayer *> comp_layers; |
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for (const DrmCompositionRegion ®ion : squash_regions_) { |
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for (size_t source_layer_index : region.source_layers) { |
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DrmHwcLayer *source_layer = &layers_[source_layer_index]; |
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squash_layers.emplace(source_layer); |
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} |
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} |
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for (const DrmCompositionRegion ®ion : pre_comp_regions_) { |
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for (size_t source_layer_index : region.source_layers) { |
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DrmHwcLayer *source_layer = &layers_[source_layer_index]; |
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pre_comp_layers.emplace(source_layer); |
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squash_layers.erase(source_layer); |
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} |
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} |
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for (const DrmCompositionPlane &plane : composition_planes_) { |
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if (plane.type() == DrmCompositionPlane::Type::kLayer) { |
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for (auto i : plane.source_layers()) { |
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DrmHwcLayer *source_layer = &layers_[i]; |
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comp_layers.emplace(source_layer); |
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pre_comp_layers.erase(source_layer); |
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} |
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} |
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} |
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for (DrmHwcLayer *layer : squash_layers) { |
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if (!layer->release_fence) |
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continue; |
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int ret = layer->release_fence.Set(CreateNextTimelineFence()); |
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if (ret < 0) |
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return ret; |
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} |
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timeline_squash_done_ = timeline_; |
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for (DrmHwcLayer *layer : pre_comp_layers) { |
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if (!layer->release_fence) |
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continue; |
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int ret = layer->release_fence.Set(CreateNextTimelineFence()); |
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if (ret < 0) |
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return ret; |
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} |
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timeline_pre_comp_done_ = timeline_; |
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for (DrmHwcLayer *layer : comp_layers) { |
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if (!layer->release_fence) |
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continue; |
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int ret = layer->release_fence.Set(CreateNextTimelineFence()); |
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if (ret < 0) |
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return ret; |
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} |
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return 0; |
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} |
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int DrmDisplayComposition::Plan(SquashState *squash, |
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std::vector<DrmPlane *> *primary_planes, |
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std::vector<DrmPlane *> *overlay_planes) { |
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if (type_ != DRM_COMPOSITION_TYPE_FRAME) |
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return 0; |
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// Used to track which layers should be sent to the planner. We exclude layers |
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// that are entirely squashed so the planner can provision a precomposition |
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// layer as appropriate (ex: if 5 layers are squashed and 1 is not, we don't |
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// want to plan a precomposition layer that will be comprised of the already |
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// squashed layers). |
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std::map<size_t, DrmHwcLayer *> to_composite; |
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bool use_squash_framebuffer = false; |
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// Used to determine which layers were entirely squashed |
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std::vector<int> layer_squash_area(layers_.size(), 0); |
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// Used to avoid rerendering regions that were squashed |
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std::vector<DrmHwcRect<int>> exclude_rects; |
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if (squash != NULL) { |
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if (geometry_changed_) { |
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squash->Init(layers_.data(), layers_.size()); |
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} else { |
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std::vector<bool> changed_regions; |
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squash->GenerateHistory(layers_.data(), layers_.size(), changed_regions); |
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std::vector<bool> stable_regions; |
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squash->StableRegionsWithMarginalHistory(changed_regions, stable_regions); |
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// Only if SOME region is stable |
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use_squash_framebuffer = |
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std::find(stable_regions.begin(), stable_regions.end(), true) != |
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stable_regions.end(); |
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squash->RecordHistory(layers_.data(), layers_.size(), changed_regions); |
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// Changes in which regions are squashed triggers a rerender via |
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// squash_regions. |
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bool render_squash = squash->RecordAndCompareSquashed(stable_regions); |
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for (size_t region_index = 0; region_index < stable_regions.size(); |
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region_index++) { |
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const SquashState::Region ®ion = squash->regions()[region_index]; |
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if (!stable_regions[region_index]) |
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continue; |
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exclude_rects.emplace_back(region.rect); |
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if (render_squash) { |
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squash_regions_.emplace_back(); |
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squash_regions_.back().frame = region.rect; |
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} |
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int frame_area = region.rect.area(); |
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// Source layers are sorted front to back i.e. top layer has lowest |
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// index. |
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for (size_t layer_index = layers_.size(); |
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layer_index-- > 0; // Yes, I double checked this |
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/* See condition */) { |
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if (!region.layer_refs[layer_index]) |
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continue; |
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layer_squash_area[layer_index] += frame_area; |
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if (render_squash) |
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squash_regions_.back().source_layers.push_back(layer_index); |
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} |
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} |
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} |
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for (size_t i = 0; i < layers_.size(); ++i) { |
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if (layer_squash_area[i] < layers_[i].display_frame.area()) |
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to_composite.emplace(std::make_pair(i, &layers_[i])); |
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} |
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} else { |
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for (size_t i = 0; i < layers_.size(); ++i) |
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to_composite.emplace(std::make_pair(i, &layers_[i])); |
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} |
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int ret; |
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std::vector<DrmCompositionPlane> plan; |
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std::tie(ret, composition_planes_) = |
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planner_->ProvisionPlanes(to_composite, use_squash_framebuffer, crtc_, |
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primary_planes, overlay_planes); |
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if (ret) { |
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ALOGE("Planner failed provisioning planes ret=%d", ret); |
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return ret; |
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} |
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// Remove the planes we used from the pool before returning. This ensures they |
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// won't be reused by another display in the composition. |
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for (auto &i : composition_planes_) { |
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if (!i.plane()) |
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continue; |
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// make sure that source layers are ordered based on zorder |
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std::sort(i.source_layers().begin(), i.source_layers().end()); |
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std::vector<DrmPlane *> *container; |
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if (i.plane()->type() == DRM_PLANE_TYPE_PRIMARY) |
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container = primary_planes; |
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else |
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container = overlay_planes; |
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for (auto j = container->begin(); j != container->end(); ++j) { |
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if (*j == i.plane()) { |
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container->erase(j); |
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break; |
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} |
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} |
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} |
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return FinalizeComposition(exclude_rects.data(), exclude_rects.size()); |
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} |
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int DrmDisplayComposition::FinalizeComposition() { |
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return FinalizeComposition(NULL, 0); |
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} |
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int DrmDisplayComposition::FinalizeComposition(DrmHwcRect<int> *exclude_rects, |
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size_t num_exclude_rects) { |
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SeparateLayers(exclude_rects, num_exclude_rects); |
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return CreateAndAssignReleaseFences(); |
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} |
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static const char *DrmCompositionTypeToString(DrmCompositionType type) { |
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switch (type) { |
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case DRM_COMPOSITION_TYPE_EMPTY: |
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return "EMPTY"; |
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case DRM_COMPOSITION_TYPE_FRAME: |
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return "FRAME"; |
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case DRM_COMPOSITION_TYPE_DPMS: |
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return "DPMS"; |
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case DRM_COMPOSITION_TYPE_MODESET: |
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return "MODESET"; |
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default: |
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return "<invalid>"; |
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} |
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} |
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static const char *DPMSModeToString(int dpms_mode) { |
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switch (dpms_mode) { |
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case DRM_MODE_DPMS_ON: |
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return "ON"; |
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case DRM_MODE_DPMS_OFF: |
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return "OFF"; |
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default: |
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return "<invalid>"; |
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} |
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} |
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static void DumpBuffer(const DrmHwcBuffer &buffer, std::ostringstream *out) { |
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if (!buffer) { |
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*out << "buffer=<invalid>"; |
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return; |
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} |
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*out << "buffer[w/h/format]="; |
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*out << buffer->width << "/" << buffer->height << "/" << buffer->format; |
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} |
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static void DumpTransform(uint32_t transform, std::ostringstream *out) { |
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*out << "["; |
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if (transform == 0) |
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*out << "IDENTITY"; |
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bool separator = false; |
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if (transform & DrmHwcTransform::kFlipH) { |
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*out << "FLIPH"; |
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separator = true; |
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} |
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if (transform & DrmHwcTransform::kFlipV) { |
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if (separator) |
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*out << "|"; |
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*out << "FLIPV"; |
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separator = true; |
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} |
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if (transform & DrmHwcTransform::kRotate90) { |
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if (separator) |
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*out << "|"; |
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*out << "ROTATE90"; |
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separator = true; |
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} |
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if (transform & DrmHwcTransform::kRotate180) { |
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if (separator) |
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*out << "|"; |
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*out << "ROTATE180"; |
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separator = true; |
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} |
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if (transform & DrmHwcTransform::kRotate270) { |
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if (separator) |
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*out << "|"; |
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*out << "ROTATE270"; |
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separator = true; |
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} |
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uint32_t valid_bits = DrmHwcTransform::kFlipH | DrmHwcTransform::kFlipH | |
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DrmHwcTransform::kRotate90 | |
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DrmHwcTransform::kRotate180 | |
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DrmHwcTransform::kRotate270; |
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if (transform & ~valid_bits) { |
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if (separator) |
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*out << "|"; |
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*out << "INVALID"; |
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} |
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*out << "]"; |
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} |
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static const char *BlendingToString(DrmHwcBlending blending) { |
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switch (blending) { |
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case DrmHwcBlending::kNone: |
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return "NONE"; |
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case DrmHwcBlending::kPreMult: |
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return "PREMULT"; |
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case DrmHwcBlending::kCoverage: |
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return "COVERAGE"; |
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default: |
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return "<invalid>"; |
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} |
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} |
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static void DumpRegion(const DrmCompositionRegion ®ion, |
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std::ostringstream *out) { |
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*out << "frame"; |
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region.frame.Dump(out); |
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*out << " source_layers=("; |
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const std::vector<size_t> &source_layers = region.source_layers; |
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for (size_t i = 0; i < source_layers.size(); i++) { |
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*out << source_layers[i]; |
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if (i < source_layers.size() - 1) { |
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*out << " "; |
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} |
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} |
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*out << ")"; |
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} |
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void DrmDisplayComposition::Dump(std::ostringstream *out) const { |
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*out << "----DrmDisplayComposition" |
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<< " crtc=" << (crtc_ ? crtc_->id() : -1) |
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<< " type=" << DrmCompositionTypeToString(type_); |
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switch (type_) { |
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case DRM_COMPOSITION_TYPE_DPMS: |
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*out << " dpms_mode=" << DPMSModeToString(dpms_mode_); |
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break; |
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case DRM_COMPOSITION_TYPE_MODESET: |
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*out << " display_mode=" << display_mode_.h_display() << "x" |
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<< display_mode_.v_display(); |
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break; |
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default: |
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break; |
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} |
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|
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*out << " timeline[current/squash/pre-comp/done]=" << timeline_current_ << "/" |
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<< timeline_squash_done_ << "/" << timeline_pre_comp_done_ << "/" |
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<< timeline_ << "\n"; |
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|
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*out << " Layers: count=" << layers_.size() << "\n"; |
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for (size_t i = 0; i < layers_.size(); i++) { |
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const DrmHwcLayer &layer = layers_[i]; |
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*out << " [" << i << "] "; |
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|
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DumpBuffer(layer.buffer, out); |
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|
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if (layer.protected_usage()) |
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*out << " protected"; |
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|
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*out << " transform="; |
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DumpTransform(layer.transform, out); |
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*out << " blending[a=" << (int)layer.alpha |
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<< "]=" << BlendingToString(layer.blending) << " source_crop"; |
|
layer.source_crop.Dump(out); |
|
*out << " display_frame"; |
|
layer.display_frame.Dump(out); |
|
|
|
*out << "\n"; |
|
} |
|
|
|
*out << " Planes: count=" << composition_planes_.size() << "\n"; |
|
for (size_t i = 0; i < composition_planes_.size(); i++) { |
|
const DrmCompositionPlane &comp_plane = composition_planes_[i]; |
|
*out << " [" << i << "]" |
|
<< " plane=" << (comp_plane.plane() ? comp_plane.plane()->id() : -1) |
|
<< " type="; |
|
switch (comp_plane.type()) { |
|
case DrmCompositionPlane::Type::kDisable: |
|
*out << "DISABLE"; |
|
break; |
|
case DrmCompositionPlane::Type::kLayer: |
|
*out << "LAYER"; |
|
break; |
|
case DrmCompositionPlane::Type::kPrecomp: |
|
*out << "PRECOMP"; |
|
break; |
|
case DrmCompositionPlane::Type::kSquash: |
|
*out << "SQUASH"; |
|
break; |
|
default: |
|
*out << "<invalid>"; |
|
break; |
|
} |
|
|
|
*out << " source_layer="; |
|
for (auto i : comp_plane.source_layers()) { |
|
*out << i << " "; |
|
} |
|
*out << "\n"; |
|
} |
|
|
|
*out << " Squash Regions: count=" << squash_regions_.size() << "\n"; |
|
for (size_t i = 0; i < squash_regions_.size(); i++) { |
|
*out << " [" << i << "] "; |
|
DumpRegion(squash_regions_[i], out); |
|
*out << "\n"; |
|
} |
|
|
|
*out << " Pre-Comp Regions: count=" << pre_comp_regions_.size() << "\n"; |
|
for (size_t i = 0; i < pre_comp_regions_.size(); i++) { |
|
*out << " [" << i << "] "; |
|
DumpRegion(pre_comp_regions_[i], out); |
|
*out << "\n"; |
|
} |
|
} |
|
}
|
|
|