Files
Xenia-Canary/src/xenia/gpu/gl4/gl4_shader_cache.cc
2016-02-05 16:31:01 -06:00

187 lines
6.1 KiB
C++

/**
******************************************************************************
* Xenia : Xbox 360 Emulator Research Project *
******************************************************************************
* Copyright 2016 Ben Vanik. All rights reserved. *
* Released under the BSD license - see LICENSE in the root for more details. *
******************************************************************************
*/
#include "xenia/gpu/gl4/gl4_shader_cache.h"
#include <cinttypes>
#include "xenia/base/filesystem.h"
#include "xenia/base/logging.h"
#include "xenia/base/mapped_memory.h"
#include "xenia/gpu/gl4/gl4_gpu_flags.h"
#include "xenia/gpu/gl4/gl4_shader.h"
#include "xenia/gpu/glsl_shader_translator.h"
#include "xenia/gpu/gpu_flags.h"
#include "third_party/xxhash/xxhash.h"
namespace xe {
namespace gpu {
namespace gl4 {
GL4ShaderCache::GL4ShaderCache(GlslShaderTranslator* shader_translator)
: shader_translator_(shader_translator) {}
GL4ShaderCache::~GL4ShaderCache() {}
void GL4ShaderCache::Reset() {
shader_map_.clear();
all_shaders_.clear();
}
GL4Shader* GL4ShaderCache::LookupOrInsertShader(ShaderType shader_type,
const uint32_t* dwords,
uint32_t dword_count) {
// Hash the input memory and lookup the shader.
GL4Shader* shader_ptr = nullptr;
uint64_t hash = XXH64(dwords, dword_count * sizeof(uint32_t), 0);
auto it = shader_map_.find(hash);
if (it != shader_map_.end()) {
// Shader has been previously loaded.
// TODO(benvanik): compare bytes? Likelihood of collision is low.
shader_ptr = it->second;
} else {
// Check filesystem cache.
shader_ptr = FindCachedShader(shader_type, hash, dwords, dword_count);
if (shader_ptr) {
// Found!
XELOGGPU("Loaded %s shader from cache (hash: %.16" PRIX64 ")",
shader_type == ShaderType::kVertex ? "vertex" : "pixel", hash);
return shader_ptr;
}
// Not found in cache - load from scratch.
auto shader =
std::make_unique<GL4Shader>(shader_type, hash, dwords, dword_count);
shader_ptr = shader.get();
shader_map_.insert({hash, shader_ptr});
all_shaders_.emplace_back(std::move(shader));
// Perform translation.
// If this fails the shader will be marked as invalid and ignored later.
if (shader_translator_->Translate(shader_ptr)) {
shader_ptr->Prepare();
if (shader_ptr->is_valid()) {
CacheShader(shader_ptr);
XELOGGPU("Generated %s shader at 0x%.16" PRIX64 " (%db):\n%s",
shader_type == ShaderType::kVertex ? "vertex" : "pixel",
dwords, dword_count * 4,
shader_ptr->ucode_disassembly().c_str());
}
// Dump shader files if desired.
if (!FLAGS_dump_shaders.empty()) {
shader_ptr->Dump(FLAGS_dump_shaders, "gl4");
}
} else {
XELOGE("Shader failed translation");
}
}
return shader_ptr;
}
void GL4ShaderCache::CacheShader(GL4Shader* shader) {
if (FLAGS_shader_cache_dir.empty()) {
// Cache disabled.
return;
}
GLenum binary_format = 0;
auto binary = shader->GetBinary(&binary_format);
if (binary.size() == 0) {
// No binary returned.
return;
}
auto cache_dir = xe::to_absolute_path(xe::to_wstring(FLAGS_shader_cache_dir));
xe::filesystem::CreateFolder(cache_dir);
auto filename =
cache_dir + xe::format_string(
L"%.16" PRIX64 ".%s", shader->ucode_data_hash(),
shader->type() == ShaderType::kPixel ? L"frag" : L"vert");
auto file = xe::filesystem::OpenFile(filename, "wb");
if (!file) {
// Not fatal, but not too good.
return;
}
std::vector<uint8_t> cached_shader_mem;
// Resize this vector to the final filesize (- 1 to account for dummy array
// in CachedShader)
cached_shader_mem.resize(sizeof(CachedShader) + binary.size() - 1);
auto cached_shader =
reinterpret_cast<CachedShader*>(cached_shader_mem.data());
cached_shader->magic = xe::byte_swap('XSHD');
cached_shader->version = 0; // TODO
cached_shader->shader_type = uint8_t(shader->type());
cached_shader->binary_len = uint32_t(binary.size());
cached_shader->binary_format = binary_format;
std::memcpy(cached_shader->binary, binary.data(), binary.size());
fwrite(cached_shader_mem.data(), cached_shader_mem.size(), 1, file);
fclose(file);
}
GL4Shader* GL4ShaderCache::FindCachedShader(ShaderType shader_type,
uint64_t hash,
const uint32_t* dwords,
uint32_t dword_count) {
if (FLAGS_shader_cache_dir.empty()) {
// Cache disabled.
return nullptr;
}
auto cache_dir = xe::to_absolute_path(xe::to_wstring(FLAGS_shader_cache_dir));
auto filename =
cache_dir +
xe::format_string(L"%.16" PRIX64 ".%s", hash,
shader_type == ShaderType::kPixel ? L"frag" : L"vert");
if (!xe::filesystem::PathExists(filename)) {
return nullptr;
}
// Shader is cached. Open it up.
auto map = xe::MappedMemory::Open(filename, MappedMemory::Mode::kRead);
if (!map) {
// Should not fail
assert_always();
return nullptr;
}
auto cached_shader = reinterpret_cast<CachedShader*>(map->data());
// TODO: Compare versions
if (cached_shader->magic != xe::byte_swap('XSHD')) {
return nullptr;
}
auto shader =
std::make_unique<GL4Shader>(shader_type, hash, dwords, dword_count);
// Gather the binding points.
// TODO: Make Shader do this on construction.
// TODO: Regenerate microcode disasm/etc on load.
shader_translator_->GatherAllBindingInformation(shader.get());
if (!shader->LoadFromBinary(cached_shader->binary,
cached_shader->binary_format,
cached_shader->binary_len)) {
// Failed to load from binary.
return nullptr;
}
auto shader_ptr = shader.get();
shader_map_.insert({hash, shader_ptr});
all_shaders_.emplace_back(std::move(shader));
return shader_ptr;
}
} // namespace gl4
} // namespace gpu
} // namespace xe