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Bug: dawn:294 Change-Id: I966dd87bfc0584fdcfa734193d083fcaa6b50898 Reviewed-on: https://dawn-review.googlesource.com/c/dawn/+/14283 Commit-Queue: Natasha Lee <natlee@microsoft.com> Reviewed-by: Corentin Wallez <cwallez@chromium.org>
465 lines
17 KiB
C++
465 lines
17 KiB
C++
// Copyright 2018 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 "tests/unittests/validation/ValidationTest.h"
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#include "common/Constants.h"
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#include "utils/ComboRenderPipelineDescriptor.h"
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#include "utils/WGPUHelpers.h"
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namespace {
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class TextureValidationTest : public ValidationTest {
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protected:
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wgpu::TextureDescriptor CreateDefaultTextureDescriptor() {
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wgpu::TextureDescriptor descriptor;
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descriptor.size.width = kWidth;
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descriptor.size.height = kHeight;
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descriptor.size.depth = 1;
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descriptor.arrayLayerCount = kDefaultArraySize;
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descriptor.mipLevelCount = kDefaultMipLevels;
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descriptor.sampleCount = kDefaultSampleCount;
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descriptor.dimension = wgpu::TextureDimension::e2D;
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descriptor.format = kDefaultTextureFormat;
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descriptor.usage = wgpu::TextureUsage::OutputAttachment | wgpu::TextureUsage::Sampled;
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return descriptor;
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}
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wgpu::Queue queue = device.CreateQueue();
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private:
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static constexpr uint32_t kWidth = 32;
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static constexpr uint32_t kHeight = 32;
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static constexpr uint32_t kDefaultArraySize = 1;
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static constexpr uint32_t kDefaultMipLevels = 1;
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static constexpr uint32_t kDefaultSampleCount = 1;
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static constexpr wgpu::TextureFormat kDefaultTextureFormat = wgpu::TextureFormat::RGBA8Unorm;
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};
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// Test the validation of sample count
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TEST_F(TextureValidationTest, SampleCount) {
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wgpu::TextureDescriptor defaultDescriptor = CreateDefaultTextureDescriptor();
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// sampleCount == 1 is allowed.
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.sampleCount = 1;
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device.CreateTexture(&descriptor);
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}
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// sampleCount == 4 is allowed.
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.sampleCount = 4;
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device.CreateTexture(&descriptor);
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}
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// It is an error to create a texture with an invalid sampleCount.
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.sampleCount = 3;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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// It is an error to create a multisampled texture with mipLevelCount > 1.
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.sampleCount = 4;
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descriptor.mipLevelCount = 2;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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// Currently we do not support multisampled 2D array textures.
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.sampleCount = 4;
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descriptor.arrayLayerCount = 2;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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}
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// Test the validation of the mip level count
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TEST_F(TextureValidationTest, MipLevelCount) {
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wgpu::TextureDescriptor defaultDescriptor = CreateDefaultTextureDescriptor();
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// mipLevelCount == 1 is allowed
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.size.width = 32;
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descriptor.size.height = 32;
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descriptor.mipLevelCount = 1;
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device.CreateTexture(&descriptor);
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}
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// mipLevelCount == 0 is an error
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.size.width = 32;
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descriptor.size.height = 32;
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descriptor.mipLevelCount = 0;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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// Full mip chains are allowed
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.size.width = 32;
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descriptor.size.height = 32;
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// Mip level sizes: 32, 16, 8, 4, 2, 1
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descriptor.mipLevelCount = 6;
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device.CreateTexture(&descriptor);
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}
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// Too big mip chains on width are disallowed
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.size.width = 31;
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descriptor.size.height = 32;
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// Mip level width: 31, 15, 7, 3, 1, 1
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descriptor.mipLevelCount = 7;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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// Too big mip chains on height are disallowed
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.size.width = 32;
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descriptor.size.height = 31;
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// Mip level height: 31, 15, 7, 3, 1, 1
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descriptor.mipLevelCount = 7;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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// Undefined shift check if miplevel is bigger than the integer bit width.
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.size.width = 32;
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descriptor.size.height = 32;
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descriptor.mipLevelCount = 100;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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// Non square mip map halves the resolution until a 1x1 dimension.
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.size.width = 32;
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descriptor.size.height = 8;
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// Mip maps: 32 * 8, 16 * 4, 8 * 2, 4 * 1, 2 * 1, 1 * 1
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descriptor.mipLevelCount = 6;
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device.CreateTexture(&descriptor);
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}
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// Mip level exceeding kMaxTexture2DMipLevels not allowed
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.size.width = 1 >> kMaxTexture2DMipLevels;
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descriptor.size.height = 1 >> kMaxTexture2DMipLevels;
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descriptor.mipLevelCount = kMaxTexture2DMipLevels + 1u;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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}
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// Test the validation of array layer count
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TEST_F(TextureValidationTest, ArrayLayerCount) {
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wgpu::TextureDescriptor defaultDescriptor = CreateDefaultTextureDescriptor();
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// Array layer count exceeding kMaxTexture2DArrayLayers is not allowed
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.arrayLayerCount = kMaxTexture2DArrayLayers + 1u;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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// Array layer count less than kMaxTexture2DArrayLayers is allowed;
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.arrayLayerCount = kMaxTexture2DArrayLayers >> 1;
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device.CreateTexture(&descriptor);
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}
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// Array layer count equal to kMaxTexture2DArrayLayers is allowed;
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.arrayLayerCount = kMaxTexture2DArrayLayers;
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device.CreateTexture(&descriptor);
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}
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}
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// Test the validation of texture size
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TEST_F(TextureValidationTest, TextureSize) {
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wgpu::TextureDescriptor defaultDescriptor = CreateDefaultTextureDescriptor();
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// Texture size exceeding kMaxTextureSize is not allowed
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.size.width = kMaxTextureSize + 1u;
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descriptor.size.height = kMaxTextureSize + 1u;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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// Texture size less than kMaxTextureSize is allowed
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.size.width = kMaxTextureSize >> 1;
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descriptor.size.height = kMaxTextureSize >> 1;
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device.CreateTexture(&descriptor);
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}
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// Texture equal to kMaxTextureSize is allowed
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{
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wgpu::TextureDescriptor descriptor = defaultDescriptor;
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descriptor.size.width = kMaxTextureSize;
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descriptor.size.height = kMaxTextureSize;
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device.CreateTexture(&descriptor);
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}
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}
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// Test that it is valid to destroy a texture
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TEST_F(TextureValidationTest, DestroyTexture) {
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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wgpu::Texture texture = device.CreateTexture(&descriptor);
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texture.Destroy();
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}
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// Test that it's valid to destroy a destroyed texture
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TEST_F(TextureValidationTest, DestroyDestroyedTexture) {
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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wgpu::Texture texture = device.CreateTexture(&descriptor);
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texture.Destroy();
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texture.Destroy();
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}
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// Test that it's invalid to submit a destroyed texture in a queue
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// in the case of destroy, encode, submit
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TEST_F(TextureValidationTest, DestroyEncodeSubmit) {
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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wgpu::Texture texture = device.CreateTexture(&descriptor);
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wgpu::TextureView textureView = texture.CreateView();
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utils::ComboRenderPassDescriptor renderPass({textureView});
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// Destroy the texture
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texture.Destroy();
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wgpu::CommandEncoder encoder_post_destroy = device.CreateCommandEncoder();
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{
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wgpu::RenderPassEncoder pass = encoder_post_destroy.BeginRenderPass(&renderPass);
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pass.EndPass();
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}
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wgpu::CommandBuffer commands = encoder_post_destroy.Finish();
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// Submit should fail due to destroyed texture
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ASSERT_DEVICE_ERROR(queue.Submit(1, &commands));
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}
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// Test that it's invalid to submit a destroyed texture in a queue
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// in the case of encode, destroy, submit
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TEST_F(TextureValidationTest, EncodeDestroySubmit) {
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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wgpu::Texture texture = device.CreateTexture(&descriptor);
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wgpu::TextureView textureView = texture.CreateView();
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utils::ComboRenderPassDescriptor renderPass({textureView});
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wgpu::CommandEncoder encoder = device.CreateCommandEncoder();
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{
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wgpu::RenderPassEncoder pass = encoder.BeginRenderPass(&renderPass);
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pass.EndPass();
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}
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wgpu::CommandBuffer commands = encoder.Finish();
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// Destroy the texture
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texture.Destroy();
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// Submit should fail due to destroyed texture
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ASSERT_DEVICE_ERROR(queue.Submit(1, &commands));
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}
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// Test it is an error to create an OutputAttachment texture with a non-renderable format.
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TEST_F(TextureValidationTest, NonRenderableAndOutputAttachment) {
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wgpu::TextureDescriptor descriptor;
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descriptor.size = {1, 1, 1};
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descriptor.usage = wgpu::TextureUsage::OutputAttachment;
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// Succeeds because RGBA8Unorm is renderable
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descriptor.format = wgpu::TextureFormat::RGBA8Unorm;
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device.CreateTexture(&descriptor);
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wgpu::TextureFormat nonRenderableFormats[] = {
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wgpu::TextureFormat::RG11B10Float,
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wgpu::TextureFormat::R8Snorm,
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wgpu::TextureFormat::RG8Snorm,
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wgpu::TextureFormat::RGBA8Snorm,
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};
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for (wgpu::TextureFormat format : nonRenderableFormats) {
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// Fails because `format` is non-renderable
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descriptor.format = format;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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}
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// Test it is an error to create a texture with format "Undefined".
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TEST_F(TextureValidationTest, TextureFormatUndefined) {
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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descriptor.format = wgpu::TextureFormat::Undefined;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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// TODO(jiawei.shao@intel.com): add tests to verify we cannot create 1D or 3D textures with
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// compressed texture formats.
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class CompressedTextureFormatsValidationTests : public TextureValidationTest {
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public:
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CompressedTextureFormatsValidationTests() : TextureValidationTest() {
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device = CreateDeviceFromAdapter(adapter, {"texture_compression_bc"});
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}
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protected:
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wgpu::TextureDescriptor CreateDefaultTextureDescriptor() {
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wgpu::TextureDescriptor descriptor =
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TextureValidationTest::CreateDefaultTextureDescriptor();
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descriptor.usage =
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wgpu::TextureUsage::CopySrc | wgpu::TextureUsage::CopyDst | wgpu::TextureUsage::Sampled;
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return descriptor;
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}
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const std::array<wgpu::TextureFormat, 14> kBCFormats = {
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wgpu::TextureFormat::BC1RGBAUnorm, wgpu::TextureFormat::BC1RGBAUnormSrgb,
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wgpu::TextureFormat::BC2RGBAUnorm, wgpu::TextureFormat::BC2RGBAUnormSrgb,
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wgpu::TextureFormat::BC3RGBAUnorm, wgpu::TextureFormat::BC3RGBAUnormSrgb,
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wgpu::TextureFormat::BC4RUnorm, wgpu::TextureFormat::BC4RSnorm,
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wgpu::TextureFormat::BC5RGUnorm, wgpu::TextureFormat::BC5RGSnorm,
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wgpu::TextureFormat::BC6HRGBUfloat, wgpu::TextureFormat::BC6HRGBSfloat,
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wgpu::TextureFormat::BC7RGBAUnorm, wgpu::TextureFormat::BC7RGBAUnormSrgb};
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};
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// Test the validation of texture size when creating textures in compressed texture formats.
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TEST_F(CompressedTextureFormatsValidationTests, TextureSize) {
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// Test that it is invalid to use a number that is not a multiple of 4 (the compressed block
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// width and height of all BC formats) as the width or height of textures in BC formats.
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for (wgpu::TextureFormat format : kBCFormats) {
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{
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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descriptor.format = format;
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ASSERT_TRUE(descriptor.size.width % 4 == 0 && descriptor.size.height % 4 == 0);
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device.CreateTexture(&descriptor);
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}
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{
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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descriptor.format = format;
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descriptor.size.width = 31;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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{
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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descriptor.format = format;
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descriptor.size.height = 31;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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{
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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descriptor.format = format;
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descriptor.size.width = 12;
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descriptor.size.height = 32;
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device.CreateTexture(&descriptor);
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}
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}
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}
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// Test the creation of a texture with BC format will fail when the extension textureCompressionBC
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// is not enabled.
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TEST_F(CompressedTextureFormatsValidationTests, UseBCFormatWithoutEnablingExtension) {
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const std::vector<const char*> kEmptyVector;
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wgpu::Device deviceWithoutExtension = CreateDeviceFromAdapter(adapter, kEmptyVector);
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for (wgpu::TextureFormat format : kBCFormats) {
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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descriptor.format = format;
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ASSERT_DEVICE_ERROR(deviceWithoutExtension.CreateTexture(&descriptor));
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}
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}
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// Test the validation of texture usages when creating textures in compressed texture formats.
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TEST_F(CompressedTextureFormatsValidationTests, TextureUsage) {
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// Test that only CopySrc, CopyDst and Sampled are accepted as the texture usage of the
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// textures in BC formats.
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for (wgpu::TextureFormat format : kBCFormats) {
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{
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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descriptor.format = format;
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descriptor.usage = wgpu::TextureUsage::OutputAttachment;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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{
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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descriptor.format = format;
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descriptor.usage = wgpu::TextureUsage::Storage;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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{
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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descriptor.format = format;
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descriptor.usage = wgpu::TextureUsage::Present;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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}
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}
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// Test the validation of sample count when creating textures in compressed texture formats.
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TEST_F(CompressedTextureFormatsValidationTests, SampleCount) {
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// Test that it is invalid to specify SampleCount > 1 when we create a texture in BC formats.
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for (wgpu::TextureFormat format : kBCFormats) {
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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descriptor.format = format;
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descriptor.sampleCount = 4;
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ASSERT_DEVICE_ERROR(device.CreateTexture(&descriptor));
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}
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}
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// Test the validation of creating 2D array textures in compressed texture formats.
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TEST_F(CompressedTextureFormatsValidationTests, 2DArrayTexture) {
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// Test that it is allowed to create a 2D array texture in BC formats.
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for (wgpu::TextureFormat format : kBCFormats) {
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wgpu::TextureDescriptor descriptor = CreateDefaultTextureDescriptor();
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descriptor.format = format;
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descriptor.arrayLayerCount = 6;
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device.CreateTexture(&descriptor);
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}
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}
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} // namespace
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