mirror of
https://github.com/encounter/dawn-cmake.git
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Mip map level starts with the size of texture image and halves the size until a 1x1 dimension. BUG=chromium:954769 Change-Id: I59e51af216d65c721a3d2c2023306883e524820d Reviewed-on: https://dawn-review.googlesource.com/c/dawn/+/7000 Reviewed-by: Corentin Wallez <cwallez@chromium.org> Reviewed-by: Kai Ninomiya <kainino@chromium.org> Commit-Queue: Yizhou Jiang <yizhou.jiang@intel.com>
485 lines
17 KiB
C++
485 lines
17 KiB
C++
// Copyright 2017 The Dawn Authors
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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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#include "dawn_native/Texture.h"
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#include <algorithm>
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#include "common/Assert.h"
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#include "common/Math.h"
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#include "dawn_native/Device.h"
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#include "dawn_native/ValidationUtils_autogen.h"
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namespace dawn_native {
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namespace {
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// TODO(jiawei.shao@intel.com): implement texture view format compatibility rule
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MaybeError ValidateTextureViewFormatCompatibility(const TextureBase* texture,
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const TextureViewDescriptor* descriptor) {
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if (texture->GetFormat() != descriptor->format) {
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return DAWN_VALIDATION_ERROR(
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"The format of texture view is not compatible to the original texture");
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}
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return {};
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}
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// TODO(jiawei.shao@intel.com): support validation on all texture view dimensions
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bool IsTextureViewDimensionCompatibleWithTextureDimension(
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dawn::TextureViewDimension textureViewDimension,
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dawn::TextureDimension textureDimension) {
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switch (textureViewDimension) {
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case dawn::TextureViewDimension::e2D:
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case dawn::TextureViewDimension::e2DArray:
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case dawn::TextureViewDimension::Cube:
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case dawn::TextureViewDimension::CubeArray:
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return textureDimension == dawn::TextureDimension::e2D;
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default:
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UNREACHABLE();
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return false;
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}
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}
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// TODO(jiawei.shao@intel.com): support validation on all texture view dimensions
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bool IsArrayLayerValidForTextureViewDimension(
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dawn::TextureViewDimension textureViewDimension,
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uint32_t textureViewArrayLayer) {
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switch (textureViewDimension) {
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case dawn::TextureViewDimension::e2D:
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return textureViewArrayLayer == 1u;
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case dawn::TextureViewDimension::e2DArray:
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return true;
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case dawn::TextureViewDimension::Cube:
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return textureViewArrayLayer == 6u;
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case dawn::TextureViewDimension::CubeArray:
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return textureViewArrayLayer % 6 == 0;
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default:
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UNREACHABLE();
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return false;
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}
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}
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bool IsTextureSizeValidForTextureViewDimension(
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dawn::TextureViewDimension textureViewDimension,
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const Extent3D& textureSize) {
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switch (textureViewDimension) {
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case dawn::TextureViewDimension::Cube:
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case dawn::TextureViewDimension::CubeArray:
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return textureSize.width == textureSize.height;
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case dawn::TextureViewDimension::e2D:
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case dawn::TextureViewDimension::e2DArray:
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return true;
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default:
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UNREACHABLE();
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return false;
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}
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}
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// TODO(jiawei.shao@intel.com): support more sample count.
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MaybeError ValidateSampleCount(const TextureDescriptor* descriptor) {
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if (!IsValidSampleCount(descriptor->sampleCount)) {
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return DAWN_VALIDATION_ERROR("The sample count of the texture is not supported.");
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}
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if (descriptor->sampleCount > 1) {
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if (descriptor->mipLevelCount > 1) {
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return DAWN_VALIDATION_ERROR(
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"The mipmap level count of a multisampled texture must be 1.");
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}
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// Multisampled 2D array texture is not supported because on Metal it requires the
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// version of macOS be greater than 10.14.
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if (descriptor->arrayLayerCount > 1) {
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return DAWN_VALIDATION_ERROR("Multisampled 2D array texture is not supported.");
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}
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}
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return {};
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}
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MaybeError ValidateTextureViewDimensionCompatibility(
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const TextureBase* texture,
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const TextureViewDescriptor* descriptor) {
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if (!IsArrayLayerValidForTextureViewDimension(descriptor->dimension,
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descriptor->arrayLayerCount)) {
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return DAWN_VALIDATION_ERROR(
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"The dimension of the texture view is not compatible with the layer count");
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}
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if (!IsTextureViewDimensionCompatibleWithTextureDimension(descriptor->dimension,
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texture->GetDimension())) {
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return DAWN_VALIDATION_ERROR(
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"The dimension of the texture view is not compatible with the dimension of the"
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"original texture");
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}
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if (!IsTextureSizeValidForTextureViewDimension(descriptor->dimension,
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texture->GetSize())) {
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return DAWN_VALIDATION_ERROR(
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"The dimension of the texture view is not compatible with the size of the"
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"original texture");
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}
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return {};
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}
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TextureViewDescriptor MakeDefaultTextureViewDescriptor(const TextureBase* texture) {
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TextureViewDescriptor descriptor;
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descriptor.format = texture->GetFormat();
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descriptor.baseArrayLayer = 0;
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descriptor.arrayLayerCount = texture->GetArrayLayers();
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descriptor.baseMipLevel = 0;
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descriptor.mipLevelCount = texture->GetNumMipLevels();
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// TODO(jiawei.shao@intel.com): support all texture dimensions.
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switch (texture->GetDimension()) {
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case dawn::TextureDimension::e2D:
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if (texture->GetArrayLayers() == 1u) {
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descriptor.dimension = dawn::TextureViewDimension::e2D;
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} else {
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descriptor.dimension = dawn::TextureViewDimension::e2DArray;
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}
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break;
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default:
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UNREACHABLE();
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}
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return descriptor;
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}
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} // anonymous namespace
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MaybeError ValidateTextureDescriptor(DeviceBase*, const TextureDescriptor* descriptor) {
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if (descriptor->nextInChain != nullptr) {
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return DAWN_VALIDATION_ERROR("nextInChain must be nullptr");
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}
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DAWN_TRY(ValidateTextureUsageBit(descriptor->usage));
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DAWN_TRY(ValidateTextureDimension(descriptor->dimension));
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DAWN_TRY(ValidateTextureFormat(descriptor->format));
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DAWN_TRY(ValidateSampleCount(descriptor));
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// TODO(jiawei.shao@intel.com): check stuff based on the dimension
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if (descriptor->size.width == 0 || descriptor->size.height == 0 ||
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descriptor->size.depth == 0 || descriptor->arrayLayerCount == 0 ||
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descriptor->mipLevelCount == 0) {
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return DAWN_VALIDATION_ERROR("Cannot create an empty texture");
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}
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if (Log2(std::max(descriptor->size.width, descriptor->size.height)) + 1 <
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descriptor->mipLevelCount) {
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return DAWN_VALIDATION_ERROR("Texture has too many mip levels");
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}
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return {};
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}
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MaybeError ValidateTextureViewDescriptor(const DeviceBase* device,
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const TextureBase* texture,
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const TextureViewDescriptor* descriptor) {
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if (descriptor->nextInChain != nullptr) {
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return DAWN_VALIDATION_ERROR("nextInChain must be nullptr");
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}
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DAWN_TRY(device->ValidateObject(texture));
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if (texture->GetTextureState() == TextureBase::TextureState::Destroyed) {
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return DAWN_VALIDATION_ERROR("Destroyed texture used to create texture view");
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}
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DAWN_TRY(ValidateTextureViewDimension(descriptor->dimension));
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DAWN_TRY(ValidateTextureFormat(descriptor->format));
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// TODO(jiawei.shao@intel.com): check stuff based on resource limits
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if (descriptor->arrayLayerCount == 0 || descriptor->mipLevelCount == 0) {
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return DAWN_VALIDATION_ERROR("Cannot create an empty texture view");
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}
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if (uint64_t(descriptor->baseArrayLayer) + uint64_t(descriptor->arrayLayerCount) >
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uint64_t(texture->GetArrayLayers())) {
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return DAWN_VALIDATION_ERROR("Texture view array-layer out of range");
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}
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if (uint64_t(descriptor->baseMipLevel) + uint64_t(descriptor->mipLevelCount) >
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uint64_t(texture->GetNumMipLevels())) {
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return DAWN_VALIDATION_ERROR("Texture view mip-level out of range");
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}
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DAWN_TRY(ValidateTextureViewFormatCompatibility(texture, descriptor));
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DAWN_TRY(ValidateTextureViewDimensionCompatibility(texture, descriptor));
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return {};
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}
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uint32_t TextureFormatPixelSize(dawn::TextureFormat format) {
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switch (format) {
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case dawn::TextureFormat::R8Unorm:
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case dawn::TextureFormat::R8Uint:
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return 1;
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case dawn::TextureFormat::R8G8Unorm:
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case dawn::TextureFormat::R8G8Uint:
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return 2;
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case dawn::TextureFormat::R8G8B8A8Unorm:
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case dawn::TextureFormat::R8G8B8A8Uint:
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case dawn::TextureFormat::B8G8R8A8Unorm:
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return 4;
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case dawn::TextureFormat::D32FloatS8Uint:
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return 8;
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default:
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UNREACHABLE();
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}
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}
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bool TextureFormatHasDepth(dawn::TextureFormat format) {
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switch (format) {
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case dawn::TextureFormat::D32FloatS8Uint:
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return true;
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default:
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return false;
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}
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}
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bool TextureFormatHasStencil(dawn::TextureFormat format) {
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switch (format) {
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case dawn::TextureFormat::D32FloatS8Uint:
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return true;
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default:
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return false;
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}
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}
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bool TextureFormatHasDepthOrStencil(dawn::TextureFormat format) {
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switch (format) {
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case dawn::TextureFormat::D32FloatS8Uint:
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return true;
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default:
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return false;
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}
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}
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bool IsColorRenderableTextureFormat(dawn::TextureFormat format) {
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switch (format) {
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case dawn::TextureFormat::B8G8R8A8Unorm:
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case dawn::TextureFormat::R8G8B8A8Uint:
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case dawn::TextureFormat::R8G8B8A8Unorm:
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case dawn::TextureFormat::R8G8Uint:
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case dawn::TextureFormat::R8G8Unorm:
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case dawn::TextureFormat::R8Uint:
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case dawn::TextureFormat::R8Unorm:
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return true;
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case dawn::TextureFormat::D32FloatS8Uint:
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return false;
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default:
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UNREACHABLE();
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return false;
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}
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}
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bool IsDepthStencilRenderableTextureFormat(dawn::TextureFormat format) {
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switch (format) {
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case dawn::TextureFormat::D32FloatS8Uint:
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return true;
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case dawn::TextureFormat::B8G8R8A8Unorm:
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case dawn::TextureFormat::R8G8B8A8Uint:
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case dawn::TextureFormat::R8G8B8A8Unorm:
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case dawn::TextureFormat::R8G8Uint:
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case dawn::TextureFormat::R8G8Unorm:
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case dawn::TextureFormat::R8Uint:
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case dawn::TextureFormat::R8Unorm:
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return false;
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default:
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UNREACHABLE();
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return false;
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}
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}
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bool IsValidSampleCount(uint32_t sampleCount) {
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switch (sampleCount) {
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case 1:
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case 4:
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return true;
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default:
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return false;
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}
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}
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// TextureBase
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TextureBase::TextureBase(DeviceBase* device,
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const TextureDescriptor* descriptor,
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TextureState state)
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: ObjectBase(device),
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mDimension(descriptor->dimension),
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mFormat(descriptor->format),
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mSize(descriptor->size),
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mArrayLayerCount(descriptor->arrayLayerCount),
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mMipLevelCount(descriptor->mipLevelCount),
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mSampleCount(descriptor->sampleCount),
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mUsage(descriptor->usage),
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mState(state) {
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}
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TextureBase::TextureBase(DeviceBase* device, ObjectBase::ErrorTag tag)
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: ObjectBase(device, tag) {
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}
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// static
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TextureBase* TextureBase::MakeError(DeviceBase* device) {
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return new TextureBase(device, ObjectBase::kError);
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}
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dawn::TextureDimension TextureBase::GetDimension() const {
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ASSERT(!IsError());
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return mDimension;
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}
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dawn::TextureFormat TextureBase::GetFormat() const {
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ASSERT(!IsError());
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return mFormat;
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}
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const Extent3D& TextureBase::GetSize() const {
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ASSERT(!IsError());
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return mSize;
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}
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uint32_t TextureBase::GetArrayLayers() const {
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ASSERT(!IsError());
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return mArrayLayerCount;
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}
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uint32_t TextureBase::GetNumMipLevels() const {
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ASSERT(!IsError());
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return mMipLevelCount;
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}
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uint32_t TextureBase::GetSampleCount() const {
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ASSERT(!IsError());
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return mSampleCount;
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}
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dawn::TextureUsageBit TextureBase::GetUsage() const {
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ASSERT(!IsError());
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return mUsage;
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}
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TextureBase::TextureState TextureBase::GetTextureState() const {
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ASSERT(!IsError());
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return mState;
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}
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MaybeError TextureBase::ValidateCanUseInSubmitNow() const {
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ASSERT(!IsError());
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if (mState == TextureState::Destroyed) {
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return DAWN_VALIDATION_ERROR("Destroyed texture used in a submit");
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}
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return {};
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}
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bool TextureBase::IsMultisampledTexture() const {
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ASSERT(!IsError());
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return mSampleCount > 1;
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}
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TextureViewBase* TextureBase::CreateDefaultView() {
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TextureViewDescriptor descriptor = {};
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if (!IsError()) {
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descriptor = MakeDefaultTextureViewDescriptor(this);
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}
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return GetDevice()->CreateTextureView(this, &descriptor);
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}
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TextureViewBase* TextureBase::CreateView(const TextureViewDescriptor* descriptor) {
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return GetDevice()->CreateTextureView(this, descriptor);
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}
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void TextureBase::Destroy() {
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if (GetDevice()->ConsumedError(ValidateDestroy())) {
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return;
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}
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ASSERT(!IsError());
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DestroyInternal();
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}
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void TextureBase::DestroyImpl() {
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}
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void TextureBase::DestroyInternal() {
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if (mState == TextureState::OwnedInternal) {
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DestroyImpl();
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}
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mState = TextureState::Destroyed;
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}
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MaybeError TextureBase::ValidateDestroy() const {
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DAWN_TRY(GetDevice()->ValidateObject(this));
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return {};
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}
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// TextureViewBase
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TextureViewBase::TextureViewBase(TextureBase* texture, const TextureViewDescriptor* descriptor)
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: ObjectBase(texture->GetDevice()),
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mTexture(texture),
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mFormat(descriptor->format),
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mBaseMipLevel(descriptor->baseMipLevel),
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mMipLevelCount(descriptor->mipLevelCount),
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mBaseArrayLayer(descriptor->baseArrayLayer),
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mArrayLayerCount(descriptor->arrayLayerCount) {
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}
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TextureViewBase::TextureViewBase(DeviceBase* device, ObjectBase::ErrorTag tag)
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: ObjectBase(device, tag) {
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}
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// static
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TextureViewBase* TextureViewBase::MakeError(DeviceBase* device) {
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return new TextureViewBase(device, ObjectBase::kError);
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}
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const TextureBase* TextureViewBase::GetTexture() const {
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ASSERT(!IsError());
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return mTexture.Get();
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}
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TextureBase* TextureViewBase::GetTexture() {
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ASSERT(!IsError());
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return mTexture.Get();
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}
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dawn::TextureFormat TextureViewBase::GetFormat() const {
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ASSERT(!IsError());
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return mFormat;
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}
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uint32_t TextureViewBase::GetBaseMipLevel() const {
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ASSERT(!IsError());
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return mBaseMipLevel;
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}
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uint32_t TextureViewBase::GetLevelCount() const {
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ASSERT(!IsError());
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return mMipLevelCount;
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}
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uint32_t TextureViewBase::GetBaseArrayLayer() const {
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ASSERT(!IsError());
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return mBaseArrayLayer;
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}
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uint32_t TextureViewBase::GetLayerCount() const {
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ASSERT(!IsError());
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return mArrayLayerCount;
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}
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} // namespace dawn_native
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