mirror of
https://github.com/yuzu-emu/sirit.git
synced 2025-11-05 15:14:50 +00:00
235 lines
7.4 KiB
C++
235 lines
7.4 KiB
C++
/* This file is part of the sirit project.
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* Copyright (c) 2018 ReinUsesLisp
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* This software may be used and distributed according to the terms of the GNU
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* General Public License version 2 or any later version.
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*/
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#include <cassert>
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#include "sirit/sirit.h"
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#include "opcodes.h"
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namespace Sirit {
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const Op* Module::TypeVoid() {
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return AddDeclaration(new Op(spv::Op::OpTypeVoid, bound));
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}
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const Op* Module::TypeBool() {
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return AddDeclaration(new Op(spv::Op::OpTypeBool, bound));
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}
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const Op* Module::TypeInt(int width, bool is_signed) {
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if (width == 8) {
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AddCapability(spv::Capability::Int8);
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} else if (width == 16) {
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AddCapability(spv::Capability::Int16);
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} else if (width == 64) {
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AddCapability(spv::Capability::Int64);
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}
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Op* op{new Op(spv::Op::OpTypeInt, bound)};
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op->Add(width);
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op->Add(is_signed ? 1 : 0);
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return AddDeclaration(op);
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}
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const Op* Module::TypeFloat(int width) {
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if (width == 16) {
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AddCapability(spv::Capability::Float16);
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} else if (width == 64) {
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AddCapability(spv::Capability::Float64);
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}
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Op* op{new Op(spv::Op::OpTypeFloat, bound)};
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op->Add(width);
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return AddDeclaration(op);
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}
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const Op* Module::TypeVector(const Op* component_type, int component_count) {
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assert(component_count >= 2);
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Op* op{new Op(spv::Op::OpTypeVector, bound)};
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op->Add(component_type);
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op->Add(component_count);
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return AddDeclaration(op);
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}
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const Op* Module::TypeMatrix(const Op* column_type, int column_count) {
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assert(column_count >= 2);
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AddCapability(spv::Capability::Matrix);
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Op* op{new Op(spv::Op::OpTypeMatrix, bound)};
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op->Add(column_type);
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op->Add(column_count);
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return AddDeclaration(op);
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}
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const Op* Module::TypeImage(const Op* sampled_type, spv::Dim dim, int depth, bool arrayed, bool ms,
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int sampled, spv::ImageFormat image_format,
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spv::AccessQualifier access_qualifier) {
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switch (dim) {
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case spv::Dim::Dim1D:
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AddCapability(spv::Capability::Sampled1D);
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break;
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case spv::Dim::Cube:
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AddCapability(spv::Capability::Shader);
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break;
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case spv::Dim::Rect:
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AddCapability(spv::Capability::SampledRect);
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break;
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case spv::Dim::Buffer:
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AddCapability(spv::Capability::SampledBuffer);
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break;
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case spv::Dim::SubpassData:
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AddCapability(spv::Capability::InputAttachment);
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break;
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}
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switch (image_format) {
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case spv::ImageFormat::Rgba32f:
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case spv::ImageFormat::Rgba16f:
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case spv::ImageFormat::R32f:
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case spv::ImageFormat::Rgba8:
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case spv::ImageFormat::Rgba8Snorm:
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case spv::ImageFormat::Rgba32i:
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case spv::ImageFormat::Rgba16i:
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case spv::ImageFormat::Rgba8i:
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case spv::ImageFormat::R32i:
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case spv::ImageFormat::Rgba32ui:
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case spv::ImageFormat::Rgba16ui:
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case spv::ImageFormat::Rgba8ui:
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case spv::ImageFormat::R32ui:
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AddCapability(spv::Capability::Shader);
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break;
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case spv::ImageFormat::Rg32f:
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case spv::ImageFormat::Rg16f:
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case spv::ImageFormat::R11fG11fB10f:
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case spv::ImageFormat::R16f:
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case spv::ImageFormat::Rgba16:
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case spv::ImageFormat::Rgb10A2:
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case spv::ImageFormat::Rg16:
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case spv::ImageFormat::Rg8:
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case spv::ImageFormat::R16:
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case spv::ImageFormat::R8:
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case spv::ImageFormat::Rgba16Snorm:
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case spv::ImageFormat::Rg16Snorm:
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case spv::ImageFormat::Rg8Snorm:
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case spv::ImageFormat::Rg32i:
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case spv::ImageFormat::Rg16i:
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case spv::ImageFormat::Rg8i:
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case spv::ImageFormat::R16i:
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case spv::ImageFormat::R8i:
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case spv::ImageFormat::Rgb10a2ui:
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case spv::ImageFormat::Rg32ui:
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case spv::ImageFormat::Rg16ui:
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case spv::ImageFormat::Rg8ui:
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case spv::ImageFormat::R16ui:
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case spv::ImageFormat::R8ui:
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AddCapability(spv::Capability::StorageImageExtendedFormats);
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break;
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}
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Op* op{new Op(spv::Op::OpTypeImage, bound)};
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op->Add(sampled_type);
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op->Add(static_cast<u32>(dim));
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op->Add(depth);
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op->Add(arrayed ? 1 : 0);
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op->Add(ms ? 1 : 0);
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op->Add(sampled);
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op->Add(static_cast<u32>(image_format));
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if (static_cast<u32>(access_qualifier) != Undefined) {
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AddCapability(spv::Capability::Kernel);
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op->Add(static_cast<u32>(access_qualifier));
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}
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return AddDeclaration(op);
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}
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const Op* Module::TypeSampler() {
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return AddDeclaration(new Op(spv::Op::OpTypeSampler, bound));
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}
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const Op* Module::TypeSampledImage(const Op* image_type) {
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Op* op{new Op(spv::Op::OpTypeSampledImage, bound)};
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op->Add(image_type);
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return AddDeclaration(op);
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}
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const Op* Module::TypeArray(const Op* element_type, const Op* length) {
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Op* op{new Op(spv::Op::OpTypeArray, bound)};
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op->Add(element_type);
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op->Add(length);
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return AddDeclaration(op);
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}
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const Op* Module::TypeRuntimeArray(const Op* element_type) {
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AddCapability(spv::Capability::Shader);
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Op* op{new Op(spv::Op::OpTypeRuntimeArray, bound)};
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op->Add(element_type);
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return AddDeclaration(op);
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}
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const Op* Module::TypeStruct(const std::vector<const Op*>& members) {
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Op* op{new Op(spv::Op::OpTypeStruct, bound)};
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op->Add(members);
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return AddDeclaration(op);
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}
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const Op* Module::TypeOpaque(const std::string& name) {
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AddCapability(spv::Capability::Kernel);
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Op* op{new Op(spv::Op::OpTypeOpaque, bound)};
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op->Add(name);
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return AddDeclaration(op);
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}
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const Op* Module::TypePointer(spv::StorageClass storage_class, const Op* type) {
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switch (storage_class) {
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case spv::StorageClass::Uniform:
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case spv::StorageClass::Output:
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case spv::StorageClass::Private:
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case spv::StorageClass::PushConstant:
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case spv::StorageClass::StorageBuffer:
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AddCapability(spv::Capability::Shader);
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break;
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case spv::StorageClass::Generic:
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AddCapability(spv::Capability::GenericPointer);
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break;
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case spv::StorageClass::AtomicCounter:
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AddCapability(spv::Capability::AtomicStorage);
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break;
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}
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Op* op{new Op(spv::Op::OpTypePointer, bound)};
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op->Add(static_cast<u32>(storage_class));
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op->Add(type);
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return AddDeclaration(op);
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}
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const Op* Module::TypeFunction(const Op* return_type, const std::vector<const Op*>& arguments) {
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Op* op{new Op(spv::Op::OpTypeFunction, bound)};
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op->Add(return_type);
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op->Add(arguments);
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return AddDeclaration(op);
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}
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const Op* Module::TypeEvent() {
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AddCapability(spv::Capability::Kernel);
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return AddDeclaration(new Op(spv::Op::OpTypeEvent, bound));
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}
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const Op* Module::TypeDeviceEvent() {
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AddCapability(spv::Capability::DeviceEnqueue);
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return AddDeclaration(new Op(spv::Op::OpTypeDeviceEvent, bound));
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}
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const Op* Module::TypeReserveId() {
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AddCapability(spv::Capability::Pipes);
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return AddDeclaration(new Op(spv::Op::OpTypeReserveId, bound));
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}
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const Op* Module::TypeQueue() {
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AddCapability(spv::Capability::DeviceEnqueue);
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return AddDeclaration(new Op(spv::Op::OpTypeQueue, bound));
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}
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const Op* Module::TypePipe(spv::AccessQualifier access_qualifier) {
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AddCapability(spv::Capability::Pipes);
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Op* op{new Op(spv::Op::OpTypePipe, bound)};
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op->Add(static_cast<u32>(access_qualifier);
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return AddDeclaration(op);
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}
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} // namespace Sirit
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