/* * Copyright (C) 2020 The Android Open Source Project * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ #include "Backend.h" #include #include "BackendManager.h" #include "bufferinfo/BufferInfoGetter.h" namespace android { HWC2::Error Backend::ValidateDisplay(HwcDisplay *display, uint32_t *num_types, uint32_t *num_requests) { *num_types = 0; *num_requests = 0; auto layers = display->GetOrderLayersByZPos(); int client_start = -1; size_t client_size = 0; if (display->ProcessClientFlatteningState(layers.size() <= 1)) { display->total_stats().frames_flattened_++; client_start = 0; client_size = layers.size(); MarkValidated(layers, client_start, client_size); } else { std::tie(client_start, client_size) = GetClientLayers(display, layers); MarkValidated(layers, client_start, client_size); bool testing_needed = !(client_start == 0 && client_size == layers.size()); AtomicCommitArgs a_args = {.test_only = true}; if (testing_needed && display->CreateComposition(a_args) != HWC2::Error::None) { ++display->total_stats().failed_kms_validate_; client_start = 0; client_size = layers.size(); MarkValidated(layers, 0, client_size); } } *num_types = client_size; display->total_stats().gpu_pixops_ += CalcPixOps(layers, client_start, client_size); display->total_stats().total_pixops_ += CalcPixOps(layers, 0, layers.size()); return *num_types != 0 ? HWC2::Error::HasChanges : HWC2::Error::None; } std::tuple Backend::GetClientLayers( HwcDisplay *display, const std::vector &layers) { int client_start = -1; size_t client_size = 0; for (size_t z_order = 0; z_order < layers.size(); ++z_order) { if (IsClientLayer(display, layers[z_order])) { if (client_start < 0) client_start = (int)z_order; client_size = (z_order - client_start) + 1; } } return GetExtraClientRange(display, layers, client_start, client_size); } bool Backend::IsClientLayer(HwcDisplay *display, HwcLayer *layer) { return !HardwareSupportsLayerType(layer->GetSfType()) || !BufferInfoGetter::GetInstance()->IsHandleUsable(layer->GetBuffer()) || display->color_transform_hint() != HAL_COLOR_TRANSFORM_IDENTITY || (layer->RequireScalingOrPhasing() && display->GetHwc2()->GetResMan().ForcedScalingWithGpu()); } bool Backend::HardwareSupportsLayerType(HWC2::Composition comp_type) { return comp_type == HWC2::Composition::Device || comp_type == HWC2::Composition::Cursor; } uint32_t Backend::CalcPixOps(const std::vector &layers, size_t first_z, size_t size) { uint32_t pixops = 0; for (size_t z_order = 0; z_order < layers.size(); ++z_order) { if (z_order >= first_z && z_order < first_z + size) { hwc_rect_t df = layers[z_order]->GetDisplayFrame(); pixops += (df.right - df.left) * (df.bottom - df.top); } } return pixops; } void Backend::MarkValidated(std::vector &layers, size_t client_first_z, size_t client_size) { for (size_t z_order = 0; z_order < layers.size(); ++z_order) { if (z_order >= client_first_z && z_order < client_first_z + client_size) layers[z_order]->SetValidatedType(HWC2::Composition::Client); else layers[z_order]->SetValidatedType(HWC2::Composition::Device); } } std::tuple Backend::GetExtraClientRange( HwcDisplay *display, const std::vector &layers, int client_start, size_t client_size) { size_t avail_planes = 1 /* primary planes count*/ + display->GetPipe().overlay_planes.size(); /* * If more layers then planes, save one plane * for client composited layers */ if (avail_planes < display->layers().size()) avail_planes--; int extra_client = int(layers.size() - client_size) - int(avail_planes); if (extra_client > 0) { int start = 0; size_t steps = 0; if (client_size != 0) { int prepend = std::min(client_start, extra_client); int append = std::min(int(layers.size()) - int(client_start + client_size), extra_client); start = client_start - (int)prepend; client_size += extra_client; steps = 1 + std::min(std::min(append, prepend), int(layers.size()) - int(start + client_size)); } else { client_size = extra_client; steps = 1 + layers.size() - extra_client; } uint32_t gpu_pixops = UINT32_MAX; for (size_t i = 0; i < steps; i++) { uint32_t po = CalcPixOps(layers, start + i, client_size); if (po < gpu_pixops) { gpu_pixops = po; client_start = start + int(i); } } } return std::make_tuple(client_start, client_size); } // clang-format off // NOLINTNEXTLINE(cppcoreguidelines-avoid-non-const-global-variables, cert-err58-cpp) REGISTER_BACKEND("generic", Backend); // clang-format on } // namespace android