Merge pull request #2232 from lioncash/transfer-memory
core/hle/kernel: Split transfer memory handling out into its own class
This commit is contained in:
commit
3f74518e19
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@ -146,6 +146,8 @@ add_library(core STATIC
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hle/kernel/svc_wrap.h
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hle/kernel/thread.cpp
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hle/kernel/thread.h
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hle/kernel/transfer_memory.cpp
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hle/kernel/transfer_memory.h
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hle/kernel/vm_manager.cpp
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hle/kernel/vm_manager.h
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hle/kernel/wait_object.cpp
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@ -23,6 +23,7 @@ bool Object::IsWaitable() const {
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case HandleType::Unknown:
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case HandleType::WritableEvent:
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case HandleType::SharedMemory:
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case HandleType::TransferMemory:
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case HandleType::AddressArbiter:
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case HandleType::ResourceLimit:
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case HandleType::ClientPort:
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@ -22,6 +22,7 @@ enum class HandleType : u32 {
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WritableEvent,
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ReadableEvent,
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SharedMemory,
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TransferMemory,
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Thread,
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Process,
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AddressArbiter,
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@ -32,6 +32,7 @@
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#include "core/hle/kernel/svc.h"
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#include "core/hle/kernel/svc_wrap.h"
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#include "core/hle/kernel/thread.h"
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#include "core/hle/kernel/transfer_memory.h"
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#include "core/hle/kernel/writable_event.h"
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#include "core/hle/lock.h"
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#include "core/hle/result.h"
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@ -1586,14 +1587,121 @@ static ResultCode CreateTransferMemory(Handle* handle, VAddr addr, u64 size, u32
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}
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auto& kernel = Core::System::GetInstance().Kernel();
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auto process = kernel.CurrentProcess();
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auto& handle_table = process->GetHandleTable();
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const auto shared_mem_handle = SharedMemory::Create(kernel, process, size, perms, perms, addr);
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auto transfer_mem_handle = TransferMemory::Create(kernel, addr, size, perms);
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CASCADE_RESULT(*handle, handle_table.Create(shared_mem_handle));
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auto& handle_table = kernel.CurrentProcess()->GetHandleTable();
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const auto result = handle_table.Create(std::move(transfer_mem_handle));
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if (result.Failed()) {
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return result.Code();
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}
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*handle = *result;
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return RESULT_SUCCESS;
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}
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static ResultCode MapTransferMemory(Handle handle, VAddr address, u64 size, u32 permission_raw) {
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LOG_DEBUG(Kernel_SVC,
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"called. handle=0x{:08X}, address=0x{:016X}, size=0x{:016X}, permissions=0x{:08X}",
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handle, address, size, permission_raw);
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if (!Common::Is4KBAligned(address)) {
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LOG_ERROR(Kernel_SVC, "Transfer memory addresses must be 4KB aligned (size=0x{:016X}).",
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address);
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return ERR_INVALID_ADDRESS;
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}
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if (size == 0 || !Common::Is4KBAligned(size)) {
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LOG_ERROR(Kernel_SVC,
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"Transfer memory sizes must be 4KB aligned and not be zero (size=0x{:016X}).",
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size);
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return ERR_INVALID_SIZE;
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}
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if (!IsValidAddressRange(address, size)) {
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LOG_ERROR(Kernel_SVC,
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"Given address and size overflows the 64-bit range (address=0x{:016X}, "
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"size=0x{:016X}).",
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address, size);
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return ERR_INVALID_ADDRESS_STATE;
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}
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const auto permissions = static_cast<MemoryPermission>(permission_raw);
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if (permissions != MemoryPermission::None && permissions != MemoryPermission::Read &&
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permissions != MemoryPermission::ReadWrite) {
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LOG_ERROR(Kernel_SVC, "Invalid transfer memory permissions given (permissions=0x{:08X}).",
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permission_raw);
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return ERR_INVALID_STATE;
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}
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const auto& kernel = Core::System::GetInstance().Kernel();
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const auto* const current_process = kernel.CurrentProcess();
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const auto& handle_table = current_process->GetHandleTable();
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auto transfer_memory = handle_table.Get<TransferMemory>(handle);
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if (!transfer_memory) {
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LOG_ERROR(Kernel_SVC, "Nonexistent transfer memory handle given (handle=0x{:08X}).",
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handle);
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return ERR_INVALID_HANDLE;
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}
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if (!current_process->VMManager().IsWithinASLRRegion(address, size)) {
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LOG_ERROR(Kernel_SVC,
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"Given address and size don't fully fit within the ASLR region "
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"(address=0x{:016X}, size=0x{:016X}).",
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address, size);
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return ERR_INVALID_MEMORY_RANGE;
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}
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return transfer_memory->MapMemory(address, size, permissions);
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}
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static ResultCode UnmapTransferMemory(Handle handle, VAddr address, u64 size) {
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LOG_DEBUG(Kernel_SVC, "called. handle=0x{:08X}, address=0x{:016X}, size=0x{:016X}", handle,
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address, size);
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if (!Common::Is4KBAligned(address)) {
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LOG_ERROR(Kernel_SVC, "Transfer memory addresses must be 4KB aligned (size=0x{:016X}).",
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address);
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return ERR_INVALID_ADDRESS;
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}
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if (size == 0 || !Common::Is4KBAligned(size)) {
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LOG_ERROR(Kernel_SVC,
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"Transfer memory sizes must be 4KB aligned and not be zero (size=0x{:016X}).",
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size);
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return ERR_INVALID_SIZE;
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}
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if (!IsValidAddressRange(address, size)) {
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LOG_ERROR(Kernel_SVC,
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"Given address and size overflows the 64-bit range (address=0x{:016X}, "
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"size=0x{:016X}).",
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address, size);
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return ERR_INVALID_ADDRESS_STATE;
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}
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const auto& kernel = Core::System::GetInstance().Kernel();
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const auto* const current_process = kernel.CurrentProcess();
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const auto& handle_table = current_process->GetHandleTable();
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auto transfer_memory = handle_table.Get<TransferMemory>(handle);
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if (!transfer_memory) {
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LOG_ERROR(Kernel_SVC, "Nonexistent transfer memory handle given (handle=0x{:08X}).",
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handle);
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return ERR_INVALID_HANDLE;
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}
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if (!current_process->VMManager().IsWithinASLRRegion(address, size)) {
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LOG_ERROR(Kernel_SVC,
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"Given address and size don't fully fit within the ASLR region "
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"(address=0x{:016X}, size=0x{:016X}).",
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address, size);
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return ERR_INVALID_MEMORY_RANGE;
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}
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return transfer_memory->UnmapMemory(address, size);
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}
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static ResultCode GetThreadCoreMask(Handle thread_handle, u32* core, u64* mask) {
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LOG_TRACE(Kernel_SVC, "called, handle=0x{:08X}", thread_handle);
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@ -1969,8 +2077,8 @@ static const FunctionDef SVC_Table[] = {
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{0x4E, nullptr, "ReadWriteRegister"},
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{0x4F, nullptr, "SetProcessActivity"},
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{0x50, SvcWrap<CreateSharedMemory>, "CreateSharedMemory"},
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{0x51, nullptr, "MapTransferMemory"},
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{0x52, nullptr, "UnmapTransferMemory"},
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{0x51, SvcWrap<MapTransferMemory>, "MapTransferMemory"},
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{0x52, SvcWrap<UnmapTransferMemory>, "UnmapTransferMemory"},
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{0x53, nullptr, "CreateInterruptEvent"},
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{0x54, nullptr, "QueryPhysicalAddress"},
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{0x55, nullptr, "QueryIoMapping"},
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@ -0,0 +1,73 @@
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// Copyright 2019 yuzu emulator team
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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#include "core/hle/kernel/errors.h"
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#include "core/hle/kernel/kernel.h"
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#include "core/hle/kernel/process.h"
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#include "core/hle/kernel/shared_memory.h"
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#include "core/hle/kernel/transfer_memory.h"
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#include "core/hle/result.h"
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namespace Kernel {
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TransferMemory::TransferMemory(KernelCore& kernel) : Object{kernel} {}
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TransferMemory::~TransferMemory() = default;
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SharedPtr<TransferMemory> TransferMemory::Create(KernelCore& kernel, VAddr base_address,
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size_t size, MemoryPermission permissions) {
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SharedPtr<TransferMemory> transfer_memory{new TransferMemory(kernel)};
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transfer_memory->base_address = base_address;
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transfer_memory->memory_size = size;
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transfer_memory->owner_permissions = permissions;
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transfer_memory->owner_process = kernel.CurrentProcess();
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return transfer_memory;
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}
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ResultCode TransferMemory::MapMemory(VAddr address, size_t size, MemoryPermission permissions) {
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if (memory_size != size) {
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return ERR_INVALID_SIZE;
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}
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if (owner_permissions != permissions) {
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return ERR_INVALID_STATE;
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}
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if (is_mapped) {
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return ERR_INVALID_STATE;
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}
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const auto map_state = owner_permissions == MemoryPermission::None
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? MemoryState::TransferMemoryIsolated
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: MemoryState::TransferMemory;
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auto& vm_manager = owner_process->VMManager();
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const auto map_result = vm_manager.MapMemoryBlock(
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address, std::make_shared<std::vector<u8>>(size), 0, size, map_state);
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if (map_result.Failed()) {
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return map_result.Code();
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}
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is_mapped = true;
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return RESULT_SUCCESS;
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}
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ResultCode TransferMemory::UnmapMemory(VAddr address, size_t size) {
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if (memory_size != size) {
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return ERR_INVALID_SIZE;
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}
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auto& vm_manager = owner_process->VMManager();
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const auto result = vm_manager.UnmapRange(address, size);
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if (result.IsError()) {
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return result;
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}
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is_mapped = false;
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return RESULT_SUCCESS;
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}
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} // namespace Kernel
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@ -0,0 +1,91 @@
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// Copyright 2019 yuzu emulator team
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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#pragma once
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#include "core/hle/kernel/object.h"
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union ResultCode;
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namespace Kernel {
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class KernelCore;
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class Process;
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enum class MemoryPermission : u32;
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/// Defines the interface for transfer memory objects.
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///
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/// Transfer memory is typically used for the purpose of
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/// transferring memory between separate process instances,
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/// thus the name.
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///
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class TransferMemory final : public Object {
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public:
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static constexpr HandleType HANDLE_TYPE = HandleType::TransferMemory;
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static SharedPtr<TransferMemory> Create(KernelCore& kernel, VAddr base_address, size_t size,
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MemoryPermission permissions);
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TransferMemory(const TransferMemory&) = delete;
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TransferMemory& operator=(const TransferMemory&) = delete;
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TransferMemory(TransferMemory&&) = delete;
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TransferMemory& operator=(TransferMemory&&) = delete;
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std::string GetTypeName() const override {
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return "TransferMemory";
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}
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std::string GetName() const override {
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return GetTypeName();
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}
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HandleType GetHandleType() const override {
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return HANDLE_TYPE;
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}
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/// Attempts to map transfer memory with the given range and memory permissions.
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///
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/// @param address The base address to being mapping memory at.
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/// @param size The size of the memory to map, in bytes.
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/// @param permissions The memory permissions to check against when mapping memory.
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///
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/// @pre The given address, size, and memory permissions must all match
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/// the same values that were given when creating the transfer memory
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/// instance.
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///
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ResultCode MapMemory(VAddr address, size_t size, MemoryPermission permissions);
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/// Unmaps the transfer memory with the given range
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///
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/// @param address The base address to begin unmapping memory at.
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/// @param size The size of the memory to unmap, in bytes.
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///
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/// @pre The given address and size must be the same as the ones used
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/// to create the transfer memory instance.
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///
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ResultCode UnmapMemory(VAddr address, size_t size);
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private:
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explicit TransferMemory(KernelCore& kernel);
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~TransferMemory() override;
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/// The base address for the memory managed by this instance.
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VAddr base_address = 0;
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/// Size of the memory, in bytes, that this instance manages.
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size_t memory_size = 0;
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/// The memory permissions that are applied to this instance.
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MemoryPermission owner_permissions{};
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/// The process that this transfer memory instance was created under.
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Process* owner_process = nullptr;
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/// Whether or not this transfer memory instance has mapped memory.
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bool is_mapped = false;
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};
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} // namespace Kernel
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