mirror of
https://github.com/KhronosGroup/SPIRV-Cross.git
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430 lines
16 KiB
C++
430 lines
16 KiB
C++
/*
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* Copyright 2016-2018 The Brenwill Workshop Ltd.
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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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*/
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#ifndef SPIRV_CROSS_MSL_HPP
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#define SPIRV_CROSS_MSL_HPP
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#include "spirv_glsl.hpp"
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#include <limits>
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#include <map>
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#include <set>
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#include <unordered_map>
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#include <unordered_set>
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#include <vector>
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namespace spirv_cross
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{
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// Defines MSL characteristics of a vertex attribute at a particular location.
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// The used_by_shader flag is set to true during compilation of SPIR-V to MSL
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// if the shader makes use of this vertex attribute.
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struct MSLVertexAttr
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{
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uint32_t location = 0;
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uint32_t msl_buffer = 0;
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uint32_t msl_offset = 0;
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uint32_t msl_stride = 0;
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bool per_instance = false;
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bool used_by_shader = false;
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};
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// Matches the binding index of a MSL resource for a binding within a descriptor set.
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// Taken together, the stage, desc_set and binding combine to form a reference to a resource
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// descriptor used in a particular shading stage. Generally, only one of the buffer, texture,
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// or sampler elements will be populated. The used_by_shader flag is set to true during
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// compilation of SPIR-V to MSL if the shader makes use of this vertex attribute.
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struct MSLResourceBinding
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{
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spv::ExecutionModel stage;
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uint32_t desc_set = 0;
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uint32_t binding = 0;
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uint32_t msl_buffer = 0;
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uint32_t msl_texture = 0;
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uint32_t msl_sampler = 0;
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bool used_by_shader = false;
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};
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enum MSLSamplerCoord
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{
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MSL_SAMPLER_COORD_NORMALIZED,
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MSL_SAMPLER_COORD_PIXEL
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};
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enum MSLSamplerFilter
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{
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MSL_SAMPLER_FILTER_NEAREST,
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MSL_SAMPLER_FILTER_LINEAR
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};
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enum MSLSamplerMipFilter
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{
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MSL_SAMPLER_MIP_FILTER_NONE,
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MSL_SAMPLER_MIP_FILTER_NEAREST,
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MSL_SAMPLER_MIP_FILTER_LINEAR,
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};
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enum MSLSamplerAddress
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{
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MSL_SAMPLER_ADDRESS_CLAMP_TO_ZERO,
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MSL_SAMPLER_ADDRESS_CLAMP_TO_EDGE,
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MSL_SAMPLER_ADDRESS_CLAMP_TO_BORDER,
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MSL_SAMPLER_ADDRESS_REPEAT,
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MSL_SAMPLER_ADDRESS_MIRRORED_REPEAT
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};
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enum MSLSamplerCompareFunc
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{
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MSL_SAMPLER_COMPARE_FUNC_NEVER,
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MSL_SAMPLER_COMPARE_FUNC_LESS,
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MSL_SAMPLER_COMPARE_FUNC_LESS_EQUAL,
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MSL_SAMPLER_COMPARE_FUNC_GREATER,
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MSL_SAMPLER_COMPARE_FUNC_GREATER_EQUAL,
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MSL_SAMPLER_COMPARE_FUNC_EQUAL,
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MSL_SAMPLER_COMPARE_FUNC_NOT_EQUAL,
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MSL_SAMPLER_COMPARE_FUNC_ALWAYS
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};
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enum MSLSamplerBorderColor
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{
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MSL_SAMPLER_BORDER_COLOR_TRANSPARENT_BLACK,
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MSL_SAMPLER_BORDER_COLOR_OPAQUE_BLACK,
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MSL_SAMPLER_BORDER_COLOR_OPAQUE_WHITE
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};
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struct MSLConstexprSampler
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{
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MSLSamplerCoord coord = MSL_SAMPLER_COORD_NORMALIZED;
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MSLSamplerFilter min_filter = MSL_SAMPLER_FILTER_NEAREST;
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MSLSamplerFilter mag_filter = MSL_SAMPLER_FILTER_NEAREST;
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MSLSamplerMipFilter mip_filter = MSL_SAMPLER_MIP_FILTER_NONE;
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MSLSamplerAddress s_address = MSL_SAMPLER_ADDRESS_CLAMP_TO_EDGE;
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MSLSamplerAddress t_address = MSL_SAMPLER_ADDRESS_CLAMP_TO_EDGE;
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MSLSamplerAddress r_address = MSL_SAMPLER_ADDRESS_CLAMP_TO_EDGE;
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MSLSamplerCompareFunc compare_func = MSL_SAMPLER_COMPARE_FUNC_NEVER;
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MSLSamplerBorderColor border_color = MSL_SAMPLER_BORDER_COLOR_TRANSPARENT_BLACK;
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float lod_clamp_min = 0.0f;
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float lod_clamp_max = 1000.0f;
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int max_anisotropy = 1;
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bool compare_enable = false;
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bool lod_clamp_enable = false;
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bool anisotropy_enable = false;
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};
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// Tracks the type ID and member index of a struct member
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using MSLStructMemberKey = uint64_t;
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// Special constant used in a MSLResourceBinding desc_set
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// element to indicate the bindings for the push constants.
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static const uint32_t kPushConstDescSet = std::numeric_limits<uint32_t>::max();
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// Special constant used in a MSLResourceBinding binding
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// element to indicate the bindings for the push constants.
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static const uint32_t kPushConstBinding = 0;
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// Decompiles SPIR-V to Metal Shading Language
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class CompilerMSL : public CompilerGLSL
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{
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public:
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// Options for compiling to Metal Shading Language
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struct Options
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{
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typedef enum
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{
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iOS,
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macOS,
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} Platform;
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Platform platform = macOS;
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uint32_t msl_version = make_msl_version(1, 2);
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uint32_t texel_buffer_texture_width = 4096; // Width of 2D Metal textures used as 1D texel buffers
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bool enable_point_size_builtin = true;
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bool resolve_specialized_array_lengths = true;
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bool is_ios()
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{
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return platform == iOS;
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}
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bool is_macos()
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{
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return platform == macOS;
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}
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void set_msl_version(uint32_t major, uint32_t minor = 0, uint32_t patch = 0)
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{
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msl_version = make_msl_version(major, minor, patch);
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}
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bool supports_msl_version(uint32_t major, uint32_t minor = 0, uint32_t patch = 0)
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{
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return msl_version >= make_msl_version(major, minor, patch);
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}
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static uint32_t make_msl_version(uint32_t major, uint32_t minor = 0, uint32_t patch = 0)
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{
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return (major * 10000) + (minor * 100) + patch;
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}
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};
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SPIRV_CROSS_DEPRECATED("CompilerMSL::get_options() is obsolete, use get_msl_options() instead.")
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const Options &get_options() const
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{
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return msl_options;
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}
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const Options &get_msl_options() const
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{
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return msl_options;
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}
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SPIRV_CROSS_DEPRECATED("CompilerMSL::set_options() is obsolete, use set_msl_options() instead.")
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void set_options(Options &opts)
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{
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msl_options = opts;
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}
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void set_msl_options(const Options &opts)
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{
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msl_options = opts;
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}
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// An enum of SPIR-V functions that are implemented in additional
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// source code that is added to the shader if necessary.
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enum SPVFuncImpl
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{
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SPVFuncImplNone,
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SPVFuncImplMod,
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SPVFuncImplRadians,
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SPVFuncImplDegrees,
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SPVFuncImplFindILsb,
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SPVFuncImplFindSMsb,
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SPVFuncImplFindUMsb,
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SPVFuncImplArrayCopy,
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SPVFuncImplTexelBufferCoords,
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SPVFuncImplInverse4x4,
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SPVFuncImplInverse3x3,
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SPVFuncImplInverse2x2,
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SPVFuncImplRowMajor2x3,
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SPVFuncImplRowMajor2x4,
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SPVFuncImplRowMajor3x2,
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SPVFuncImplRowMajor3x4,
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SPVFuncImplRowMajor4x2,
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SPVFuncImplRowMajor4x3,
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};
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// Constructs an instance to compile the SPIR-V code into Metal Shading Language,
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// using the configuration parameters, if provided:
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// - p_vtx_attrs is an optional list of vertex attribute bindings used to match
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// vertex content locations to MSL attributes. If vertex attributes are provided,
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// the compiler will set the used_by_shader flag to true in any vertex attribute
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// actually used by the MSL code.
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// - p_res_bindings is a list of resource bindings to indicate the MSL buffer,
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// texture or sampler index to use for a particular SPIR-V description set
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// and binding. If resource bindings are provided, the compiler will set the
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// used_by_shader flag to true in any resource binding actually used by the MSL code.
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CompilerMSL(std::vector<uint32_t> spirv, std::vector<MSLVertexAttr> *p_vtx_attrs = nullptr,
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std::vector<MSLResourceBinding> *p_res_bindings = nullptr);
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// Alternate constructor avoiding use of std::vectors.
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CompilerMSL(const uint32_t *ir, size_t word_count, MSLVertexAttr *p_vtx_attrs = nullptr, size_t vtx_attrs_count = 0,
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MSLResourceBinding *p_res_bindings = nullptr, size_t res_bindings_count = 0);
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// Compiles the SPIR-V code into Metal Shading Language.
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std::string compile() override;
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// Compiles the SPIR-V code into Metal Shading Language, overriding configuration parameters.
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// Any of the parameters here may be null to indicate that the configuration provided in the
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// constructor should be used. They are not declared as optional to avoid a conflict with the
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// inherited and overridden zero-parameter compile() function.
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std::string compile(std::vector<MSLVertexAttr> *p_vtx_attrs, std::vector<MSLResourceBinding> *p_res_bindings);
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// This legacy method is deprecated.
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typedef Options MSLConfiguration;
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SPIRV_CROSS_DEPRECATED("Please use get_msl_options() and set_msl_options() instead.")
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std::string compile(MSLConfiguration &msl_cfg, std::vector<MSLVertexAttr> *p_vtx_attrs = nullptr,
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std::vector<MSLResourceBinding> *p_res_bindings = nullptr);
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// Remap a sampler with ID to a constexpr sampler.
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// Older iOS targets must use constexpr samplers in certain cases (PCF),
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// so a static sampler must be used.
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// The sampler will not consume a binding, but be declared in the entry point as a constexpr sampler.
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// This can be used on both combined image/samplers (sampler2D) or standalone samplers.
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// The remapped sampler must not be an array of samplers.
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void remap_constexpr_sampler(uint32_t id, const MSLConstexprSampler &sampler);
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protected:
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void emit_instruction(const Instruction &instr) override;
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void emit_glsl_op(uint32_t result_type, uint32_t result_id, uint32_t op, const uint32_t *args,
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uint32_t count) override;
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void emit_header() override;
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void emit_function_prototype(SPIRFunction &func, const Bitset &return_flags) override;
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void emit_sampled_image_op(uint32_t result_type, uint32_t result_id, uint32_t image_id, uint32_t samp_id) override;
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void emit_fixup() override;
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void emit_struct_member(const SPIRType &type, uint32_t member_type_id, uint32_t index,
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const std::string &qualifier = "", uint32_t base_offset = 0) override;
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std::string type_to_glsl(const SPIRType &type, uint32_t id = 0) override;
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std::string image_type_glsl(const SPIRType &type, uint32_t id = 0) override;
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std::string sampler_type(const SPIRType &type);
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std::string builtin_to_glsl(spv::BuiltIn builtin, spv::StorageClass storage) override;
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std::string constant_expression(const SPIRConstant &c) override;
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size_t get_declared_struct_member_size(const SPIRType &struct_type, uint32_t index) const override;
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std::string to_func_call_arg(uint32_t id) override;
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std::string to_name(uint32_t id, bool allow_alias = true) const override;
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std::string to_function_name(uint32_t img, const SPIRType &imgtype, bool is_fetch, bool is_gather, bool is_proj,
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bool has_array_offsets, bool has_offset, bool has_grad, bool has_dref,
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uint32_t lod) override;
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std::string to_function_args(uint32_t img, const SPIRType &imgtype, bool is_fetch, bool is_gather, bool is_proj,
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uint32_t coord, uint32_t coord_components, uint32_t dref, uint32_t grad_x,
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uint32_t grad_y, uint32_t lod, uint32_t coffset, uint32_t offset, uint32_t bias,
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uint32_t comp, uint32_t sample, bool *p_forward) override;
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std::string unpack_expression_type(std::string expr_str, const SPIRType &type) override;
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std::string bitcast_glsl_op(const SPIRType &result_type, const SPIRType &argument_type) override;
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bool skip_argument(uint32_t id) const override;
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std::string to_qualifiers_glsl(uint32_t id) override;
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void replace_illegal_names() override;
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void declare_undefined_values() override;
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void declare_constant_arrays();
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bool is_non_native_row_major_matrix(uint32_t id) override;
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bool member_is_non_native_row_major_matrix(const SPIRType &type, uint32_t index) override;
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std::string convert_row_major_matrix(std::string exp_str, const SPIRType &exp_type, bool is_packed) override;
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void preprocess_op_codes();
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void localize_global_variables();
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void extract_global_variables_from_functions();
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void resolve_specialized_array_lengths();
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void mark_packable_structs();
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void mark_as_packable(SPIRType &type);
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std::unordered_map<uint32_t, std::set<uint32_t>> function_global_vars;
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void extract_global_variables_from_function(uint32_t func_id, std::set<uint32_t> &added_arg_ids,
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std::unordered_set<uint32_t> &global_var_ids,
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std::unordered_set<uint32_t> &processed_func_ids);
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uint32_t add_interface_block(spv::StorageClass storage);
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void mark_location_as_used_by_shader(uint32_t location, spv::StorageClass storage);
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uint32_t ensure_correct_builtin_type(uint32_t type_id, spv::BuiltIn builtin);
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void emit_custom_functions();
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void emit_resources();
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void emit_specialization_constants();
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void emit_interface_block(uint32_t ib_var_id);
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bool maybe_emit_input_struct_assignment(uint32_t id_lhs, uint32_t id_rhs);
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bool maybe_emit_array_assignment(uint32_t id_lhs, uint32_t id_rhs);
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void add_convert_row_major_matrix_function(uint32_t cols, uint32_t rows);
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std::string func_type_decl(SPIRType &type);
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std::string entry_point_args(bool append_comma);
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std::string to_qualified_member_name(const SPIRType &type, uint32_t index);
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std::string ensure_valid_name(std::string name, std::string pfx);
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std::string to_sampler_expression(uint32_t id);
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std::string builtin_qualifier(spv::BuiltIn builtin);
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std::string builtin_type_decl(spv::BuiltIn builtin);
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std::string built_in_func_arg(spv::BuiltIn builtin, bool prefix_comma);
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std::string member_attribute_qualifier(const SPIRType &type, uint32_t index);
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std::string argument_decl(const SPIRFunction::Parameter &arg);
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std::string round_fp_tex_coords(std::string tex_coords, bool coord_is_fp);
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uint32_t get_metal_resource_index(SPIRVariable &var, SPIRType::BaseType basetype);
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uint32_t get_ordered_member_location(uint32_t type_id, uint32_t index);
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size_t get_declared_struct_member_alignment(const SPIRType &struct_type, uint32_t index) const;
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std::string to_component_argument(uint32_t id);
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void align_struct(SPIRType &ib_type);
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bool is_member_packable(SPIRType &ib_type, uint32_t index);
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MSLStructMemberKey get_struct_member_key(uint32_t type_id, uint32_t index);
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std::string get_argument_address_space(const SPIRVariable &argument);
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void emit_atomic_func_op(uint32_t result_type, uint32_t result_id, const char *op, uint32_t mem_order_1,
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uint32_t mem_order_2, bool has_mem_order_2, uint32_t op0, uint32_t op1 = 0,
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bool op1_is_pointer = false, uint32_t op2 = 0);
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const char *get_memory_order(uint32_t spv_mem_sem);
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void add_pragma_line(const std::string &line);
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void add_typedef_line(const std::string &line);
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void emit_barrier(uint32_t id_exe_scope, uint32_t id_mem_scope, uint32_t id_mem_sem);
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void emit_array_copy(const std::string &lhs, uint32_t rhs_id) override;
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void build_implicit_builtins();
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void emit_entry_point_declarations() override;
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uint32_t builtin_frag_coord_id = 0;
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void bitcast_to_builtin_store(uint32_t target_id, std::string &expr, const SPIRType &expr_type) override;
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void bitcast_from_builtin_load(uint32_t source_id, std::string &expr, const SPIRType &expr_type) override;
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Options msl_options;
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std::set<SPVFuncImpl> spv_function_implementations;
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std::unordered_map<uint32_t, MSLVertexAttr *> vtx_attrs_by_location;
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std::unordered_map<MSLStructMemberKey, uint32_t> struct_member_padding;
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std::set<std::string> pragma_lines;
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std::set<std::string> typedef_lines;
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std::vector<uint32_t> vars_needing_early_declaration;
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std::vector<MSLResourceBinding *> resource_bindings;
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MSLResourceBinding next_metal_resource_index;
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uint32_t stage_in_var_id = 0;
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uint32_t stage_out_var_id = 0;
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uint32_t stage_uniforms_var_id = 0;
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bool needs_vertex_idx_arg = false;
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bool needs_instance_idx_arg = false;
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std::string qual_pos_var_name;
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std::string stage_in_var_name = "in";
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std::string stage_out_var_name = "out";
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std::string stage_uniform_var_name = "uniforms";
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std::string sampler_name_suffix = "Smplr";
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spv::Op previous_instruction_opcode = spv::OpNop;
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std::unordered_map<uint32_t, MSLConstexprSampler> constexpr_samplers;
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// OpcodeHandler that handles several MSL preprocessing operations.
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struct OpCodePreprocessor : OpcodeHandler
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{
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OpCodePreprocessor(CompilerMSL &compiler_)
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: compiler(compiler_)
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{
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}
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bool handle(spv::Op opcode, const uint32_t *args, uint32_t length) override;
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CompilerMSL::SPVFuncImpl get_spv_func_impl(spv::Op opcode, const uint32_t *args);
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CompilerMSL &compiler;
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std::unordered_map<uint32_t, uint32_t> result_types;
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bool suppress_missing_prototypes = false;
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bool uses_atomics = false;
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};
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// Sorts the members of a SPIRType and associated Meta info based on a settable sorting
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// aspect, which defines which aspect of the struct members will be used to sort them.
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// Regardless of the sorting aspect, built-in members always appear at the end of the struct.
|
|
struct MemberSorter
|
|
{
|
|
enum SortAspect
|
|
{
|
|
Location,
|
|
LocationReverse,
|
|
Offset,
|
|
OffsetThenLocationReverse,
|
|
Alphabetical
|
|
};
|
|
|
|
void sort();
|
|
bool operator()(uint32_t mbr_idx1, uint32_t mbr_idx2);
|
|
MemberSorter(SPIRType &t, Meta &m, SortAspect sa);
|
|
|
|
SPIRType &type;
|
|
Meta &meta;
|
|
SortAspect sort_aspect;
|
|
};
|
|
};
|
|
} // namespace spirv_cross
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|
|
|
#endif
|