Maxwell3D/Puller: Fix regressions and syncing issues.
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@ -473,9 +473,7 @@ void Maxwell3D::ProcessQueryGet() {
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switch (regs.report_semaphore.query.operation) {
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switch (regs.report_semaphore.query.operation) {
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case Regs::ReportSemaphore::Operation::Release:
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case Regs::ReportSemaphore::Operation::Release:
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if (regs.report_semaphore.query.release ==
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if (regs.report_semaphore.query.short_query != 0) {
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Regs::ReportSemaphore::Release::AfterAllPreceedingWrites ||
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regs.report_semaphore.query.short_query != 0) {
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const GPUVAddr sequence_address{regs.report_semaphore.Address()};
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const GPUVAddr sequence_address{regs.report_semaphore.Address()};
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const u32 payload = regs.report_semaphore.payload;
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const u32 payload = regs.report_semaphore.payload;
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std::function<void()> operation([this, sequence_address, payload] {
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std::function<void()> operation([this, sequence_address, payload] {
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@ -489,11 +487,10 @@ void Maxwell3D::ProcessQueryGet() {
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};
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};
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const GPUVAddr sequence_address{regs.report_semaphore.Address()};
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const GPUVAddr sequence_address{regs.report_semaphore.Address()};
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const u32 payload = regs.report_semaphore.payload;
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const u32 payload = regs.report_semaphore.payload;
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std::function<void()> operation([this, sequence_address, payload] {
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[this, sequence_address, payload] {
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memory_manager.Write<u64>(sequence_address + sizeof(u64), system.GPU().GetTicks());
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memory_manager.Write<u64>(sequence_address + sizeof(u64), system.GPU().GetTicks());
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memory_manager.Write<u64>(sequence_address, payload);
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memory_manager.Write<u64>(sequence_address, payload);
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});
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}();
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rasterizer->SyncOperation(std::move(operation));
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}
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}
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break;
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break;
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case Regs::ReportSemaphore::Operation::Acquire:
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case Regs::ReportSemaphore::Operation::Acquire:
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@ -569,11 +566,11 @@ void Maxwell3D::ProcessCounterReset() {
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void Maxwell3D::ProcessSyncPoint() {
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void Maxwell3D::ProcessSyncPoint() {
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const u32 sync_point = regs.sync_info.sync_point.Value();
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const u32 sync_point = regs.sync_info.sync_point.Value();
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const auto condition = regs.sync_info.condition.Value();
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const u32 cache_flush = regs.sync_info.clean_l2.Value();
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[[maybe_unused]] const u32 cache_flush = regs.sync_info.clean_l2.Value();
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if (cache_flush != 0) {
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if (condition == Regs::SyncInfo::Condition::RopWritesDone) {
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rasterizer->InvalidateGPUCache();
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rasterizer->SignalSyncPoint(sync_point);
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}
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}
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rasterizer->SignalSyncPoint(sync_point);
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}
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}
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void Maxwell3D::DrawArrays() {
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void Maxwell3D::DrawArrays() {
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@ -75,11 +75,10 @@ void Puller::ProcessSemaphoreTriggerMethod() {
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if (op == GpuSemaphoreOperation::WriteLong) {
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if (op == GpuSemaphoreOperation::WriteLong) {
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const GPUVAddr sequence_address{regs.semaphore_address.SemaphoreAddress()};
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const GPUVAddr sequence_address{regs.semaphore_address.SemaphoreAddress()};
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const u32 payload = regs.semaphore_sequence;
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const u32 payload = regs.semaphore_sequence;
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std::function<void()> operation([this, sequence_address, payload] {
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[this, sequence_address, payload] {
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memory_manager.Write<u64>(sequence_address + sizeof(u64), gpu.GetTicks());
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memory_manager.Write<u64>(sequence_address + sizeof(u64), gpu.GetTicks());
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memory_manager.Write<u64>(sequence_address, payload);
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memory_manager.Write<u64>(sequence_address, payload);
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});
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}();
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rasterizer->SignalFence(std::move(operation));
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} else {
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} else {
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do {
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do {
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const u32 word{memory_manager.Read<u32>(regs.semaphore_address.SemaphoreAddress())};
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const u32 word{memory_manager.Read<u32>(regs.semaphore_address.SemaphoreAddress())};
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