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// Copyright 2017 The Dawn Authors
//
// 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 "dawn_native/utils/WGPUHelpers.h"
#include "common/Assert.h"
#include "common/Constants.h"
#include "dawn_native/BindGroup.h"
#include "dawn_native/BindGroupLayout.h"
#include "dawn_native/Buffer.h"
#include "dawn_native/Device.h"
#include "dawn_native/PipelineLayout.h"
#include "dawn_native/Queue.h"
#include "dawn_native/Sampler.h"
#include "dawn_native/ShaderModule.h"
#include <cstring>
#include <iomanip>
#include <limits>
#include <mutex>
#include <sstream>
namespace dawn::native::utils {
ResultOrError<Ref<ShaderModuleBase>> CreateShaderModule(DeviceBase* device,
const char* source) {
ShaderModuleWGSLDescriptor wgslDesc;
wgslDesc.source = source;
ShaderModuleDescriptor descriptor;
descriptor.nextInChain = &wgslDesc;
return device->CreateShaderModule(&descriptor);
}
ResultOrError<Ref<BufferBase>> CreateBufferFromData(DeviceBase* device,
wgpu::BufferUsage usage,
const void* data,
uint64_t size) {
BufferDescriptor descriptor;
descriptor.size = size;
descriptor.usage = usage;
descriptor.mappedAtCreation = true;
Ref<BufferBase> buffer;
DAWN_TRY_ASSIGN(buffer, device->CreateBuffer(&descriptor));
memcpy(buffer->GetMappedRange(0, size), data, size);
buffer->Unmap();
return buffer;
}
ResultOrError<Ref<PipelineLayoutBase>> MakeBasicPipelineLayout(
DeviceBase* device,
const Ref<BindGroupLayoutBase>& bindGroupLayout) {
PipelineLayoutDescriptor descriptor;
descriptor.bindGroupLayoutCount = 1;
BindGroupLayoutBase* bgl = bindGroupLayout.Get();
descriptor.bindGroupLayouts = &bgl;
return device->CreatePipelineLayout(&descriptor);
}
ResultOrError<Ref<BindGroupLayoutBase>> MakeBindGroupLayout(
DeviceBase* device,
std::initializer_list<BindingLayoutEntryInitializationHelper> entriesInitializer,
bool allowInternalBinding) {
std::vector<BindGroupLayoutEntry> entries;
for (const BindingLayoutEntryInitializationHelper& entry : entriesInitializer) {
entries.push_back(entry);
}
BindGroupLayoutDescriptor descriptor;
descriptor.entryCount = static_cast<uint32_t>(entries.size());
descriptor.entries = entries.data();
return device->CreateBindGroupLayout(&descriptor, allowInternalBinding);
}
BindingLayoutEntryInitializationHelper::BindingLayoutEntryInitializationHelper(
uint32_t entryBinding,
wgpu::ShaderStage entryVisibility,
wgpu::BufferBindingType bufferType,
bool bufferHasDynamicOffset,
uint64_t bufferMinBindingSize) {
binding = entryBinding;
visibility = entryVisibility;
buffer.type = bufferType;
buffer.hasDynamicOffset = bufferHasDynamicOffset;
buffer.minBindingSize = bufferMinBindingSize;
}
BindingLayoutEntryInitializationHelper::BindingLayoutEntryInitializationHelper(
uint32_t entryBinding,
wgpu::ShaderStage entryVisibility,
wgpu::SamplerBindingType samplerType) {
binding = entryBinding;
visibility = entryVisibility;
sampler.type = samplerType;
}
BindingLayoutEntryInitializationHelper::BindingLayoutEntryInitializationHelper(
uint32_t entryBinding,
wgpu::ShaderStage entryVisibility,
wgpu::TextureSampleType textureSampleType,
wgpu::TextureViewDimension textureViewDimension,
bool textureMultisampled) {
binding = entryBinding;
visibility = entryVisibility;
texture.sampleType = textureSampleType;
texture.viewDimension = textureViewDimension;
texture.multisampled = textureMultisampled;
}
BindingLayoutEntryInitializationHelper::BindingLayoutEntryInitializationHelper(
uint32_t entryBinding,
wgpu::ShaderStage entryVisibility,
wgpu::StorageTextureAccess storageTextureAccess,
wgpu::TextureFormat format,
wgpu::TextureViewDimension textureViewDimension) {
binding = entryBinding;
visibility = entryVisibility;
storageTexture.access = storageTextureAccess;
storageTexture.format = format;
storageTexture.viewDimension = textureViewDimension;
}
BindingLayoutEntryInitializationHelper::BindingLayoutEntryInitializationHelper(
const BindGroupLayoutEntry& entry)
: BindGroupLayoutEntry(entry) {
}
BindingInitializationHelper::BindingInitializationHelper(uint32_t binding,
const Ref<SamplerBase>& sampler)
: binding(binding), sampler(sampler) {
}
BindingInitializationHelper::BindingInitializationHelper(
uint32_t binding,
const Ref<TextureViewBase>& textureView)
: binding(binding), textureView(textureView) {
}
BindingInitializationHelper::BindingInitializationHelper(uint32_t binding,
const Ref<BufferBase>& buffer,
uint64_t offset,
uint64_t size)
: binding(binding), buffer(buffer), offset(offset), size(size) {
}
BindingInitializationHelper::~BindingInitializationHelper() = default;
BindGroupEntry BindingInitializationHelper::GetAsBinding() const {
BindGroupEntry result;
result.binding = binding;
result.sampler = sampler.Get();
result.textureView = textureView.Get();
result.buffer = buffer.Get();
result.offset = offset;
result.size = size;
return result;
}
ResultOrError<Ref<BindGroupBase>> MakeBindGroup(
DeviceBase* device,
const Ref<BindGroupLayoutBase>& layout,
std::initializer_list<BindingInitializationHelper> entriesInitializer) {
std::vector<BindGroupEntry> entries;
for (const BindingInitializationHelper& helper : entriesInitializer) {
entries.push_back(helper.GetAsBinding());
}
BindGroupDescriptor descriptor;
descriptor.layout = layout.Get();
descriptor.entryCount = entries.size();
descriptor.entries = entries.data();
return device->CreateBindGroup(&descriptor);
}
const char* GetLabelForTrace(const char* label) {
return (label == nullptr || strlen(label) == 0) ? "None" : label;
}
} // namespace dawn::native::utils