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@ -51,7 +51,8 @@ void KeplerCompute::CallMethod(const GPU::MethodCall& method_call) {
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}
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}
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void KeplerCompute::CallMultiMethod(u32 method, const u32* base_start, u32 amount, u32 methods_pending) {
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void KeplerCompute::CallMultiMethod(u32 method, const u32* base_start, u32 amount,
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u32 methods_pending) {
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for (std::size_t i = 0; i < amount; i++) {
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CallMethod({method, base_start[i], 0, methods_pending - static_cast<u32>(i)});
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}
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@ -41,7 +41,8 @@ void KeplerMemory::CallMethod(const GPU::MethodCall& method_call) {
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}
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}
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void KeplerMemory::CallMultiMethod(u32 method, const u32* base_start, u32 amount, u32 methods_pending) {
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void KeplerMemory::CallMultiMethod(u32 method, const u32* base_start, u32 amount,
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u32 methods_pending) {
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for (std::size_t i = 0; i < amount; i++) {
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CallMethod({method, base_start[i], 0, methods_pending - static_cast<u32>(i)});
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}
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@ -36,7 +36,8 @@ void MaxwellDMA::CallMethod(const GPU::MethodCall& method_call) {
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#undef MAXWELLDMA_REG_INDEX
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}
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void MaxwellDMA::CallMultiMethod(u32 method, const u32* base_start, u32 amount, u32 methods_pending) {
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void MaxwellDMA::CallMultiMethod(u32 method, const u32* base_start, u32 amount,
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u32 methods_pending) {
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for (std::size_t i = 0; i < amount; i++) {
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CallMethod({method, base_start[i], 0, methods_pending - static_cast<u32>(i)});
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}
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@ -220,9 +220,9 @@ void GPU::CallMethod(const MethodCall& method_call) {
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}
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}
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void GPU::CallMultiMethod(u32 method, u32 subchannel, const u32* base_start, u32 amount, u32 methods_pending) {
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LOG_TRACE(HW_GPU, "Processing method {:08X} on subchannel {}", method,
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subchannel);
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void GPU::CallMultiMethod(u32 method, u32 subchannel, const u32* base_start, u32 amount,
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u32 methods_pending) {
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LOG_TRACE(HW_GPU, "Processing method {:08X} on subchannel {}", method, subchannel);
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ASSERT(subchannel < bound_engines.size());
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@ -230,7 +230,8 @@ void GPU::CallMultiMethod(u32 method, u32 subchannel, const u32* base_start, u32
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CallEngineMultiMethod(method, subchannel, base_start, amount, methods_pending);
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} else {
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for (std::size_t i = 0; i < amount; i++) {
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CallPullerMethod({method, base_start[i], subchannel, methods_pending - static_cast<u32>(i)});
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CallPullerMethod(
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{method, base_start[i], subchannel, methods_pending - static_cast<u32>(i)});
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}
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}
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}
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@ -317,7 +318,8 @@ void GPU::CallEngineMethod(const MethodCall& method_call) {
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}
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}
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void GPU::CallEngineMultiMethod(u32 method, u32 subchannel, const u32* base_start, u32 amount, u32 methods_pending) {
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void GPU::CallEngineMultiMethod(u32 method, u32 subchannel, const u32* base_start, u32 amount,
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u32 methods_pending) {
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const EngineID engine = bound_engines[subchannel];
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switch (engine) {
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@ -156,7 +156,8 @@ public:
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void CallMethod(const MethodCall& method_call);
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/// Calls a GPU multivalue method.
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void CallMultiMethod(u32 method, u32 subchannel, const u32* base_start, u32 amount, u32 methods_pending);
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void CallMultiMethod(u32 method, u32 subchannel, const u32* base_start, u32 amount,
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u32 methods_pending);
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/// Flush all current written commands into the host GPU for execution.
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void FlushCommands();
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@ -313,7 +314,8 @@ private:
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void CallEngineMethod(const MethodCall& method_call);
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/// Calls a GPU engine multivalue method.
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void CallEngineMultiMethod(u32 method, u32 subchannel, const u32* base_start, u32 amount, u32 methods_pending);
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void CallEngineMultiMethod(u32 method, u32 subchannel, const u32* base_start, u32 amount,
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u32 methods_pending);
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/// Determines where the method should be executed.
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bool ExecuteMethodOnEngine(u32 method);
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@ -644,7 +644,8 @@ void Config::ReadRendererValues() {
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Settings::values.use_asynchronous_gpu_emulation =
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ReadSetting(QStringLiteral("use_asynchronous_gpu_emulation"), false).toBool();
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Settings::values.use_vsync = ReadSetting(QStringLiteral("use_vsync"), true).toBool();
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Settings::values.use_fast_gpu_time = ReadSetting(QStringLiteral("use_fast_gpu_time"), true).toBool();
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Settings::values.use_fast_gpu_time =
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ReadSetting(QStringLiteral("use_fast_gpu_time"), true).toBool();
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Settings::values.force_30fps_mode =
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ReadSetting(QStringLiteral("force_30fps_mode"), false).toBool();
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