Accuracy Normal: reduce accuracy further for perf improvements in Project Lime
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@ -462,7 +462,7 @@ struct Memory::Impl {
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}
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}
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if (Settings::IsFastmemEnabled()) {
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if (Settings::IsFastmemEnabled()) {
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const bool is_read_enable = Settings::IsGPULevelHigh() || !cached;
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const bool is_read_enable = !Settings::IsGPULevelExtreme() || !cached;
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system.DeviceMemory().buffer.Protect(vaddr, size, is_read_enable, !cached);
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system.DeviceMemory().buffer.Protect(vaddr, size, is_read_enable, !cached);
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}
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}
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@ -64,19 +64,24 @@ public:
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}
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}
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void SignalFence(std::function<void()>&& func) {
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void SignalFence(std::function<void()>&& func) {
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bool delay_fence = Settings::IsGPULevelHigh();
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if constexpr (!can_async_check) {
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if constexpr (!can_async_check) {
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TryReleasePendingFences<false>();
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TryReleasePendingFences<false>();
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}
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}
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std::function<void()> callback = std::move(func);
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const bool should_flush = ShouldFlush();
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const bool should_flush = ShouldFlush();
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CommitAsyncFlushes();
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CommitAsyncFlushes();
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TFence new_fence = CreateFence(!should_flush);
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TFence new_fence = CreateFence(!should_flush);
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if constexpr (can_async_check) {
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if constexpr (can_async_check) {
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guard.lock();
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guard.lock();
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}
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}
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if (delay_fence) {
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uncommitted_operations.emplace_back(std::move(func));
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}
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pending_operations.emplace_back(std::move(uncommitted_operations));
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pending_operations.emplace_back(std::move(uncommitted_operations));
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QueueFence(new_fence);
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QueueFence(new_fence);
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callback();
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if (!delay_fence) {
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func();
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}
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fences.push(std::move(new_fence));
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fences.push(std::move(new_fence));
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if (should_flush) {
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if (should_flush) {
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rasterizer.FlushCommands();
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rasterizer.FlushCommands();
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@ -98,8 +98,9 @@ HostCounter::HostCounter(QueryCache& cache_, std::shared_ptr<HostCounter> depend
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query{cache_.AllocateQuery(type_)}, tick{cache_.GetScheduler().CurrentTick()} {
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query{cache_.AllocateQuery(type_)}, tick{cache_.GetScheduler().CurrentTick()} {
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const vk::Device* logical = &cache.GetDevice().GetLogical();
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const vk::Device* logical = &cache.GetDevice().GetLogical();
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cache.GetScheduler().Record([logical, query = query](vk::CommandBuffer cmdbuf) {
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cache.GetScheduler().Record([logical, query = query](vk::CommandBuffer cmdbuf) {
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const bool use_precise = Settings::IsGPULevelHigh();
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logical->ResetQueryPool(query.first, query.second, 1);
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logical->ResetQueryPool(query.first, query.second, 1);
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cmdbuf.BeginQuery(query.first, query.second, VK_QUERY_CONTROL_PRECISE_BIT);
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cmdbuf.BeginQuery(query.first, query.second, use_precise ? VK_QUERY_CONTROL_PRECISE_BIT : 0);
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});
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});
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}
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}
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@ -675,7 +675,7 @@ bool RasterizerVulkan::AccelerateConditionalRendering() {
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const GPUVAddr condition_address{maxwell3d->regs.render_enable.Address()};
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const GPUVAddr condition_address{maxwell3d->regs.render_enable.Address()};
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Maxwell::ReportSemaphore::Compare cmp;
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Maxwell::ReportSemaphore::Compare cmp;
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if (gpu_memory->IsMemoryDirty(condition_address, sizeof(cmp),
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if (gpu_memory->IsMemoryDirty(condition_address, sizeof(cmp),
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VideoCommon::CacheType::BufferCache)) {
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VideoCommon::CacheType::BufferCache | VideoCommon::CacheType::QueryCache)) {
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return true;
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return true;
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}
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}
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return false;
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return false;
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