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@ -737,8 +737,8 @@ static ResultCode GetInfo(Core::System& system, u64* result, u64 info_id, u64 ha
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// 5.0.0+
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UserExceptionContextAddr = 20,
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// 6.0.0+
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TotalPhysicalMemoryAvailableWithoutMmHeap = 21,
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TotalPhysicalMemoryUsedWithoutMmHeap = 22,
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TotalPhysicalMemoryAvailableWithoutSystemResource = 21,
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TotalPhysicalMemoryUsedWithoutSystemResource = 22,
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};
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const auto info_id_type = static_cast<GetInfoType>(info_id);
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@ -760,8 +760,8 @@ static ResultCode GetInfo(Core::System& system, u64* result, u64 info_id, u64 ha
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case GetInfoType::SystemResourceUsage:
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case GetInfoType::TitleId:
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case GetInfoType::UserExceptionContextAddr:
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case GetInfoType::TotalPhysicalMemoryAvailableWithoutMmHeap:
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case GetInfoType::TotalPhysicalMemoryUsedWithoutMmHeap: {
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case GetInfoType::TotalPhysicalMemoryAvailableWithoutSystemResource:
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case GetInfoType::TotalPhysicalMemoryUsedWithoutSystemResource: {
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if (info_sub_id != 0) {
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return ERR_INVALID_ENUM_VALUE;
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}
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@ -827,17 +827,9 @@ static ResultCode GetInfo(Core::System& system, u64* result, u64 info_id, u64 ha
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return RESULT_SUCCESS;
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case GetInfoType::SystemResourceUsage:
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// On hardware, this returns the amount of system resource memory that has
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// been used by the kernel. This is problematic for Yuzu to emulate, because
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// system resource memory is used for page tables -- and yuzu doesn't really
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// have a way to calculate how much memory is required for page tables for
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// the current process at any given time.
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// TODO: Is this even worth implementing? No game should ever use it, since
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// the amount of remaining page table space should never be relevant except
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// for diagnostics. Is returning a value other than zero wise?
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LOG_WARNING(Kernel_SVC,
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"(STUBBED) Attempted to query system resource usage, returned 0");
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*result = 0;
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"(STUBBED) Attempted to query system resource usage");
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*result = process->GetSystemResourceUsage();
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return RESULT_SUCCESS;
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case GetInfoType::TitleId:
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@ -850,12 +842,12 @@ static ResultCode GetInfo(Core::System& system, u64* result, u64 info_id, u64 ha
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*result = 0;
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return RESULT_SUCCESS;
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case GetInfoType::TotalPhysicalMemoryAvailableWithoutMmHeap:
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*result = process->GetTotalPhysicalMemoryAvailable();
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case GetInfoType::TotalPhysicalMemoryAvailableWithoutSystemResource:
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*result = process->GetTotalPhysicalMemoryAvailableWithoutSystemResource();
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return RESULT_SUCCESS;
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case GetInfoType::TotalPhysicalMemoryUsedWithoutMmHeap:
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*result = process->GetTotalPhysicalMemoryUsedWithoutMmHeap();
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case GetInfoType::TotalPhysicalMemoryUsedWithoutSystemResource:
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*result = process->GetTotalPhysicalMemoryUsedWithoutSystemResource();
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return RESULT_SUCCESS;
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default:
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@ -984,7 +976,7 @@ static ResultCode MapPhysicalMemory(Core::System& system, VAddr addr, u64 size)
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return ERR_INVALID_MEMORY_RANGE;
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}
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auto* const current_process = Core::CurrentProcess();
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Process* const current_process = system.Kernel().CurrentProcess();
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auto& vm_manager = current_process->VMManager();
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if (current_process->GetSystemResourceSize() == 0) {
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@ -1024,7 +1016,7 @@ static ResultCode UnmapPhysicalMemory(Core::System& system, VAddr addr, u64 size
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return ERR_INVALID_MEMORY_RANGE;
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}
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auto* const current_process = Core::CurrentProcess();
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Process* const current_process = system.Kernel().CurrentProcess();
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auto& vm_manager = current_process->VMManager();
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if (current_process->GetSystemResourceSize() == 0) {
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