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@ -174,6 +174,7 @@ ShaderCache::ShaderCache(RasterizerOpenGL& rasterizer_, Core::Frontend::EmuWindo
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texture_cache{texture_cache_}, buffer_cache{buffer_cache_}, program_manager{program_manager_},
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state_tracker{state_tracker_}, shader_notify{shader_notify_},
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use_asynchronous_shaders{device.UseAsynchronousShaders()},
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strict_context_required{device.StrictContextRequired()},
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profile{
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.supported_spirv = 0x00010000,
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@ -255,9 +256,14 @@ void ShaderCache::LoadDiskResources(u64 title_id, std::stop_token stop_loading,
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}
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shader_cache_filename = base_dir / "opengl.bin";
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if (!workers) {
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if (!workers && !strict_context_required) {
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workers = CreateWorkers();
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}
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std::optional<Context> strict_context;
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if (strict_context_required) {
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strict_context.emplace(emu_window);
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}
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struct {
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std::mutex mutex;
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size_t total{};
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@ -265,44 +271,49 @@ void ShaderCache::LoadDiskResources(u64 title_id, std::stop_token stop_loading,
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bool has_loaded{};
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} state;
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const auto queue_work{[&](Common::UniqueFunction<void, Context*>&& work) {
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if (strict_context_required) {
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work(&strict_context.value());
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} else {
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workers->QueueWork(std::move(work));
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}
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}};
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const auto load_compute{[&](std::ifstream& file, FileEnvironment env) {
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ComputePipelineKey key;
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file.read(reinterpret_cast<char*>(&key), sizeof(key));
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workers->QueueWork(
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[this, key, env = std::move(env), &state, &callback](Context* ctx) mutable {
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ctx->pools.ReleaseContents();
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auto pipeline{CreateComputePipeline(ctx->pools, key, env)};
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std::scoped_lock lock{state.mutex};
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if (pipeline) {
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compute_cache.emplace(key, std::move(pipeline));
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}
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++state.built;
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if (state.has_loaded) {
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callback(VideoCore::LoadCallbackStage::Build, state.built, state.total);
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}
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});
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queue_work([this, key, env = std::move(env), &state, &callback](Context* ctx) mutable {
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ctx->pools.ReleaseContents();
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auto pipeline{CreateComputePipeline(ctx->pools, key, env)};
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std::scoped_lock lock{state.mutex};
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if (pipeline) {
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compute_cache.emplace(key, std::move(pipeline));
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}
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++state.built;
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if (state.has_loaded) {
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callback(VideoCore::LoadCallbackStage::Build, state.built, state.total);
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}
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});
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++state.total;
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}};
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const auto load_graphics{[&](std::ifstream& file, std::vector<FileEnvironment> envs) {
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GraphicsPipelineKey key;
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file.read(reinterpret_cast<char*>(&key), sizeof(key));
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workers->QueueWork(
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[this, key, envs = std::move(envs), &state, &callback](Context* ctx) mutable {
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boost::container::static_vector<Shader::Environment*, 5> env_ptrs;
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for (auto& env : envs) {
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env_ptrs.push_back(&env);
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}
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ctx->pools.ReleaseContents();
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auto pipeline{CreateGraphicsPipeline(ctx->pools, key, MakeSpan(env_ptrs), false)};
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std::scoped_lock lock{state.mutex};
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if (pipeline) {
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graphics_cache.emplace(key, std::move(pipeline));
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}
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++state.built;
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if (state.has_loaded) {
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callback(VideoCore::LoadCallbackStage::Build, state.built, state.total);
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}
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});
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queue_work([this, key, envs = std::move(envs), &state, &callback](Context* ctx) mutable {
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boost::container::static_vector<Shader::Environment*, 5> env_ptrs;
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for (auto& env : envs) {
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env_ptrs.push_back(&env);
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}
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ctx->pools.ReleaseContents();
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auto pipeline{CreateGraphicsPipeline(ctx->pools, key, MakeSpan(env_ptrs), false)};
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std::scoped_lock lock{state.mutex};
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if (pipeline) {
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graphics_cache.emplace(key, std::move(pipeline));
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}
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++state.built;
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if (state.has_loaded) {
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callback(VideoCore::LoadCallbackStage::Build, state.built, state.total);
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}
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});
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++state.total;
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}};
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LoadPipelines(stop_loading, shader_cache_filename, CACHE_VERSION, load_compute, load_graphics);
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@ -314,6 +325,9 @@ void ShaderCache::LoadDiskResources(u64 title_id, std::stop_token stop_loading,
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state.has_loaded = true;
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lock.unlock();
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if (strict_context_required) {
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return;
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}
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workers->WaitForRequests(stop_loading);
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if (!use_asynchronous_shaders) {
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workers.reset();
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