Add validation tests for WebGPU bind group "persistence"
A draw should be valid if the currently set bind groups match the current pipeline layout, irrespective of changes in pipeline layout. This is different from the descriptor set inheritance in Vulkan which Dawn used to follow. Bug: dawn:201 Change-Id: I1181ba80614ae40d665094f4ea742804565f6ed3 Reviewed-on: https://dawn-review.googlesource.com/c/dawn/+/11641 Commit-Queue: Corentin Wallez <cwallez@chromium.org> Reviewed-by: Corentin Wallez <cwallez@chromium.org>
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@ -14,6 +14,7 @@
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#include "tests/unittests/validation/ValidationTest.h"
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#include "tests/unittests/validation/ValidationTest.h"
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#include "common/Assert.h"
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#include "common/Constants.h"
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#include "common/Constants.h"
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#include "utils/ComboRenderPipelineDescriptor.h"
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#include "utils/ComboRenderPipelineDescriptor.h"
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#include "utils/DawnHelpers.h"
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#include "utils/DawnHelpers.h"
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@ -860,3 +861,197 @@ TEST_F(SetBindGroupValidationTest, ErrorBindGroup) {
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TestComputePassBindGroup(bindGroup, nullptr, 0, false);
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TestComputePassBindGroup(bindGroup, nullptr, 0, false);
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}
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}
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class SetBindGroupPersistenceValidationTest : public ValidationTest {
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protected:
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void SetUp() override {
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mVsModule = utils::CreateShaderModule(device, utils::SingleShaderStage::Vertex, R"(
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#version 450
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void main() {
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})");
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}
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dawn::Buffer CreateBuffer(uint64_t bufferSize, dawn::BufferUsage usage) {
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dawn::BufferDescriptor bufferDescriptor;
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bufferDescriptor.size = bufferSize;
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bufferDescriptor.usage = usage;
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return device.CreateBuffer(&bufferDescriptor);
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}
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// Generates bind group layouts and a pipeline from a 2D list of binding types.
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std::tuple<std::vector<dawn::BindGroupLayout>, dawn::RenderPipeline> SetUpLayoutsAndPipeline(
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std::vector<std::vector<dawn::BindingType>> layouts) {
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std::vector<dawn::BindGroupLayout> bindGroupLayouts(layouts.size());
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// Iterate through the desired bind group layouts.
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for (uint32_t l = 0; l < layouts.size(); ++l) {
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const auto& layout = layouts[l];
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std::vector<dawn::BindGroupLayoutBinding> bindings(layout.size());
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// Iterate through binding types and populate a list of BindGroupLayoutBindings.
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for (uint32_t b = 0; b < layout.size(); ++b) {
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bindings[b] = {b, dawn::ShaderStage::Fragment, layout[b], false};
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}
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// Create the bind group layout.
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dawn::BindGroupLayoutDescriptor bglDescriptor;
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bglDescriptor.bindingCount = static_cast<uint32_t>(bindings.size());
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bglDescriptor.bindings = bindings.data();
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bindGroupLayouts[l] = device.CreateBindGroupLayout(&bglDescriptor);
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}
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// Create a pipeline layout from the list of bind group layouts.
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dawn::PipelineLayoutDescriptor pipelineLayoutDescriptor;
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pipelineLayoutDescriptor.bindGroupLayoutCount =
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static_cast<uint32_t>(bindGroupLayouts.size());
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pipelineLayoutDescriptor.bindGroupLayouts = bindGroupLayouts.data();
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dawn::PipelineLayout pipelineLayout =
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device.CreatePipelineLayout(&pipelineLayoutDescriptor);
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std::stringstream ss;
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ss << "#version 450\n";
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// Build a shader which has bindings that match the pipeline layout.
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for (uint32_t l = 0; l < layouts.size(); ++l) {
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const auto& layout = layouts[l];
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for (uint32_t b = 0; b < layout.size(); ++b) {
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dawn::BindingType binding = layout[b];
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ss << "layout(std140, set = " << l << ", binding = " << b << ") ";
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switch (binding) {
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case dawn::BindingType::StorageBuffer:
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ss << "buffer SBuffer";
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break;
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case dawn::BindingType::UniformBuffer:
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ss << "uniform UBuffer";
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break;
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default:
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UNREACHABLE();
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}
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ss << l << "_" << b << " { vec2 set" << l << "_binding" << b << "; };\n";
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}
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}
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ss << "layout(location = 0) out vec4 fragColor;\n";
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ss << "void main() { fragColor = vec4(0.0, 1.0, 0.0, 1.0); }\n";
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dawn::ShaderModule fsModule =
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utils::CreateShaderModule(device, utils::SingleShaderStage::Fragment, ss.str().c_str());
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utils::ComboRenderPipelineDescriptor pipelineDescriptor(device);
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pipelineDescriptor.vertexStage.module = mVsModule;
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pipelineDescriptor.cFragmentStage.module = fsModule;
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pipelineDescriptor.layout = pipelineLayout;
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dawn::RenderPipeline pipeline = device.CreateRenderPipeline(&pipelineDescriptor);
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return std::make_tuple(bindGroupLayouts, pipeline);
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}
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private:
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dawn::ShaderModule mVsModule;
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};
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// Test it is valid to set bind groups before setting the pipeline.
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TEST_F(SetBindGroupPersistenceValidationTest, BindGroupBeforePipeline) {
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std::vector<dawn::BindGroupLayout> bindGroupLayouts;
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dawn::RenderPipeline pipeline;
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std::tie(bindGroupLayouts, pipeline) = SetUpLayoutsAndPipeline({{
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{{
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dawn::BindingType::UniformBuffer,
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dawn::BindingType::UniformBuffer,
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}},
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{{
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dawn::BindingType::StorageBuffer,
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dawn::BindingType::UniformBuffer,
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}},
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}});
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dawn::Buffer uniformBuffer = CreateBuffer(kBufferSize, dawn::BufferUsage::Uniform);
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dawn::Buffer storageBuffer = CreateBuffer(kBufferSize, dawn::BufferUsage::Storage);
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dawn::BindGroup bindGroup0 = utils::MakeBindGroup(
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device, bindGroupLayouts[0],
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{{0, uniformBuffer, 0, kBindingSize}, {1, uniformBuffer, 0, kBindingSize}});
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dawn::BindGroup bindGroup1 = utils::MakeBindGroup(
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device, bindGroupLayouts[1],
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{{0, storageBuffer, 0, kBindingSize}, {1, uniformBuffer, 0, kBindingSize}});
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DummyRenderPass renderPass(device);
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dawn::CommandEncoder commandEncoder = device.CreateCommandEncoder();
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dawn::RenderPassEncoder renderPassEncoder = commandEncoder.BeginRenderPass(&renderPass);
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renderPassEncoder.SetBindGroup(0, bindGroup0, 0, nullptr);
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renderPassEncoder.SetBindGroup(1, bindGroup1, 0, nullptr);
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renderPassEncoder.SetPipeline(pipeline);
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renderPassEncoder.Draw(3, 1, 0, 0);
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renderPassEncoder.EndPass();
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commandEncoder.Finish();
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}
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// Dawn does not have a concept of bind group inheritance though the backing APIs may.
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// Test that it is valid to draw with bind groups that are not "inherited". They persist
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// after a pipeline change.
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TEST_F(SetBindGroupPersistenceValidationTest, NotVulkanInheritance) {
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std::vector<dawn::BindGroupLayout> bindGroupLayoutsA;
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dawn::RenderPipeline pipelineA;
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std::tie(bindGroupLayoutsA, pipelineA) = SetUpLayoutsAndPipeline({{
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{{
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dawn::BindingType::UniformBuffer,
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dawn::BindingType::StorageBuffer,
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}},
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{{
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dawn::BindingType::UniformBuffer,
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dawn::BindingType::UniformBuffer,
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}},
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}});
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std::vector<dawn::BindGroupLayout> bindGroupLayoutsB;
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dawn::RenderPipeline pipelineB;
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std::tie(bindGroupLayoutsB, pipelineB) = SetUpLayoutsAndPipeline({{
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{{
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dawn::BindingType::StorageBuffer,
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dawn::BindingType::UniformBuffer,
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}},
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{{
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dawn::BindingType::UniformBuffer,
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dawn::BindingType::UniformBuffer,
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}},
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}});
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dawn::Buffer uniformBuffer = CreateBuffer(kBufferSize, dawn::BufferUsage::Uniform);
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dawn::Buffer storageBuffer = CreateBuffer(kBufferSize, dawn::BufferUsage::Storage);
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dawn::BindGroup bindGroupA0 = utils::MakeBindGroup(
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device, bindGroupLayoutsA[0],
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{{0, uniformBuffer, 0, kBindingSize}, {1, storageBuffer, 0, kBindingSize}});
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dawn::BindGroup bindGroupA1 = utils::MakeBindGroup(
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device, bindGroupLayoutsA[1],
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{{0, uniformBuffer, 0, kBindingSize}, {1, uniformBuffer, 0, kBindingSize}});
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dawn::BindGroup bindGroupB0 = utils::MakeBindGroup(
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device, bindGroupLayoutsB[0],
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{{0, storageBuffer, 0, kBindingSize}, {1, uniformBuffer, 0, kBindingSize}});
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DummyRenderPass renderPass(device);
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dawn::CommandEncoder commandEncoder = device.CreateCommandEncoder();
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dawn::RenderPassEncoder renderPassEncoder = commandEncoder.BeginRenderPass(&renderPass);
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renderPassEncoder.SetPipeline(pipelineA);
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renderPassEncoder.SetBindGroup(0, bindGroupA0, 0, nullptr);
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renderPassEncoder.SetBindGroup(1, bindGroupA1, 0, nullptr);
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renderPassEncoder.Draw(3, 1, 0, 0);
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renderPassEncoder.SetPipeline(pipelineB);
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renderPassEncoder.SetBindGroup(0, bindGroupB0, 0, nullptr);
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// This draw is valid.
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// Bind group 1 persists even though it is not "inherited".
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renderPassEncoder.Draw(3, 1, 0, 0);
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renderPassEncoder.EndPass();
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commandEncoder.Finish();
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}
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