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fxc.cpp
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fxc.cpp
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/**
* Copyright (C) 2014 Patrick Mours. All rights reserved.
* License: https://github.com/crosire/reshade#license
*/
#include "effect_parser.hpp"
#include "effect_codegen.hpp"
#include "effect_preprocessor.hpp"
#include "version.h"
#include <cstdlib>
#include <cstring>
#include <fstream>
#include <iostream>
static void print_usage(const char *path)
{
printf(R"(usage: %s [options] <filename>
Options:
-h, --help Print this help.
--version Print ReShade version.
-D <id>=<text> Define a preprocessor macro.
-I <path> Add directory to include search path.
-P <path> Pre-process to file. If <path> is "-", then result is written to standard output instead.
-Fo <file> Output SPIR-V binary to the given file.
-Fe <file> Output warnings and errors to the given file.
--glsl Print GLSL code for the previously specified entry point.
--hlsl Print HLSL code for the previously specified entry point.
--shader-model <value> HLSL shader model version. Can be 30, 40, 41, 50, ...
--width <value> Value of the 'BUFFER_WIDTH' preprocessor macro.
--height <value> Value of the 'BUFFER_HEIGHT' preprocessor macro.
--invert-y Insert code to invert the Y component of the output position in vertex shaders (only applies to SPIR-V).
--spec-constants Convert uniform variables to specialization constants.
--vulkan-semantics Generate GLSL/SPIR-V code under Vulkan semantics, instead of OpenGL semantics.
-Zi Enable debug information.
)", path);
}
int main(int argc, char *argv[])
{
const char *filename = nullptr;
const char *preprocess = nullptr;
const char *errorfile = nullptr;
const char *objectfile = nullptr;
const char *buffer_width = "800";
const char *buffer_height = "600";
bool print_glsl = false;
bool print_hlsl = false;
bool debug_info = false;
bool invert_y_axis = false;
bool spec_constants = false;
bool vulkan_semantics = false;
unsigned int shader_model = 50;
reshadefx::parser parser;
reshadefx::preprocessor pp;
pp.add_macro_definition("__RESHADE__", std::to_string(VERSION_MAJOR * 10000 + VERSION_MINOR * 100 + VERSION_REVISION));
pp.add_macro_definition("__RESHADE_PERFORMANCE_MODE__", "0");
// Parse command-line arguments
for (int i = 1; i < argc; ++i)
{
if (const char *arg = argv[i]; arg[0] == '-')
{
if (0 == std::strcmp(arg, "-h") || 0 == std::strcmp(arg, "--help"))
{
print_usage(argv[0]);
return 0;
}
if (0 == std::strcmp(arg, "--version"))
{
printf("%s\n", VERSION_STRING_PRODUCT);
return 0;
}
if (0 == std::strcmp(arg, "-D"))
{
char *macro = argv[++i];
char *value = std::strchr(macro, '=');
if (value) *value++ = '\0';
pp.add_macro_definition(macro, value ? value : "1");
continue;
}
if (0 == std::strcmp(arg, "-I"))
{
pp.add_include_path(argv[++i]);
continue;
}
if (0 == std::strcmp(arg, "-Zi"))
debug_info = true;
else if (0 == std::strcmp(arg, "--glsl"))
print_glsl = true;
else if (0 == std::strcmp(arg, "--hlsl"))
print_hlsl = true;
else if (0 == std::strcmp(arg, "--invert-y"))
invert_y_axis = true;
else if (0 == std::strcmp(arg, "--spec-constants"))
spec_constants = true;
else if (0 == std::strcmp(arg, "--vulkan-semantics"))
vulkan_semantics = true;
if (i + 1 >= argc)
continue;
else if (0 == std::strcmp(arg, "-P"))
preprocess = argv[++i];
else if (0 == std::strcmp(arg, "-Fe"))
errorfile = argv[++i];
else if (0 == std::strcmp(arg, "-Fo"))
objectfile = argv[++i];
else if (0 == std::strcmp(arg, "--shader-model"))
shader_model = std::strtol(argv[++i], nullptr, 10);
else if (0 == std::strcmp(arg, "--width"))
buffer_width = argv[++i];
else if (0 == std::strcmp(arg, "--height"))
buffer_height = argv[++i];
}
else
{
if (filename != nullptr)
{
std::cout << "error: More than one input file specified" << std::endl;
return 1;
}
filename = arg;
}
}
if (filename == nullptr)
{
print_usage(argv[0]);
return 1;
}
pp.add_macro_definition("BUFFER_WIDTH", buffer_width);
pp.add_macro_definition("BUFFER_HEIGHT", buffer_height);
pp.add_macro_definition("BUFFER_RCP_WIDTH", "(1.0 / BUFFER_WIDTH)");
pp.add_macro_definition("BUFFER_RCP_HEIGHT", "(1.0 / BUFFER_HEIGHT)");
if (!pp.append_file(filename))
{
if (errorfile == nullptr)
std::cout << pp.errors() << std::endl;
else
std::ofstream(errorfile) << pp.errors();
return 1;
}
if (preprocess != nullptr)
{
if (std::strcmp(preprocess, "-") == 0)
std::cout << pp.output() << std::endl;
else
std::ofstream(preprocess) << pp.output();
return 0;
}
std::unique_ptr<reshadefx::codegen> backend;
if (print_glsl)
backend.reset(reshadefx::create_codegen_glsl(vulkan_semantics, debug_info, spec_constants, invert_y_axis));
else if (print_hlsl)
backend.reset(reshadefx::create_codegen_hlsl(shader_model, debug_info, spec_constants));
else
backend.reset(reshadefx::create_codegen_spirv(vulkan_semantics, debug_info, spec_constants, invert_y_axis));
if (!parser.parse(pp.output(), backend.get()))
{
if (errorfile == nullptr)
std::cout << pp.errors() << parser.errors() << std::endl;
else
std::ofstream(errorfile) << pp.errors() << parser.errors();
return 1;
}
reshadefx::module module;
backend->write_result(module);
if (print_glsl || print_hlsl)
{
std::cout << module.hlsl << std::endl;
}
else if (objectfile != nullptr)
{
std::ofstream(objectfile, std::ios::binary).write(
reinterpret_cast<const char *>(module.spirv.data()), module.spirv.size() * sizeof(uint32_t));
}
return 0;
}