hle: kernel: Improve MapSharedMemory and implement UnmapSharedMemory.
This commit is contained in:
parent
2a7eff57a8
commit
0b27c721c9
@ -134,6 +134,10 @@ enum class KMemoryPermission : u8 {
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};
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DECLARE_ENUM_FLAG_OPERATORS(KMemoryPermission);
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constexpr KMemoryPermission ConvertToKMemoryPermission(Svc::MemoryPermission perm) {
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return static_cast<KMemoryPermission>(perm);
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}
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enum class KMemoryAttribute : u8 {
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None = 0x00,
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Mask = 0x7F,
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@ -641,6 +641,45 @@ ResultCode KPageTable::MapPages(VAddr addr, KPageLinkedList& page_linked_list, K
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return RESULT_SUCCESS;
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}
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ResultCode KPageTable::UnmapPages(VAddr addr, const KPageLinkedList& page_linked_list) {
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VAddr cur_addr{addr};
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for (const auto& node : page_linked_list.Nodes()) {
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const std::size_t num_pages{(addr - cur_addr) / PageSize};
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if (const auto result{
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Operate(addr, num_pages, KMemoryPermission::None, OperationType::Unmap)};
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result.IsError()) {
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return result;
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}
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cur_addr += node.GetNumPages() * PageSize;
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}
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return RESULT_SUCCESS;
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}
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ResultCode KPageTable::UnmapPages(VAddr addr, KPageLinkedList& page_linked_list,
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KMemoryState state) {
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std::lock_guard lock{page_table_lock};
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const std::size_t num_pages{page_linked_list.GetNumPages()};
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const std::size_t size{num_pages * PageSize};
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if (!CanContain(addr, size, state)) {
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return ResultInvalidCurrentMemory;
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}
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if (IsRegionMapped(addr, num_pages * PageSize)) {
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return ResultInvalidCurrentMemory;
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}
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CASCADE_CODE(UnmapPages(addr, page_linked_list));
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block_manager->Update(addr, num_pages, state, KMemoryPermission::None);
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return RESULT_SUCCESS;
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}
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ResultCode KPageTable::SetCodeMemoryPermission(VAddr addr, std::size_t size,
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KMemoryPermission perm) {
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@ -40,6 +40,7 @@ public:
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ResultCode Unmap(VAddr dst_addr, VAddr src_addr, std::size_t size);
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ResultCode MapPages(VAddr addr, KPageLinkedList& page_linked_list, KMemoryState state,
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KMemoryPermission perm);
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ResultCode UnmapPages(VAddr addr, KPageLinkedList& page_linked_list, KMemoryState state);
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ResultCode SetCodeMemoryPermission(VAddr addr, std::size_t size, KMemoryPermission perm);
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KMemoryInfo QueryInfo(VAddr addr);
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ResultCode ReserveTransferMemory(VAddr addr, std::size_t size, KMemoryPermission perm);
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@ -63,6 +64,8 @@ public:
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return page_table_impl;
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}
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constexpr bool CanContain(VAddr addr, std::size_t size, KMemoryState state) const;
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private:
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enum class OperationType : u32 {
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Map,
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@ -79,6 +82,7 @@ private:
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ResultCode InitializeMemoryLayout(VAddr start, VAddr end);
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ResultCode MapPages(VAddr addr, const KPageLinkedList& page_linked_list,
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KMemoryPermission perm);
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ResultCode UnmapPages(VAddr addr, const KPageLinkedList& page_linked_list);
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void MapPhysicalMemory(KPageLinkedList& page_linked_list, VAddr start, VAddr end);
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bool IsRegionMapped(VAddr address, u64 size);
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bool IsRegionContiguous(VAddr addr, u64 size) const;
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@ -92,7 +96,6 @@ private:
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OperationType operation, PAddr map_addr = 0);
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constexpr VAddr GetRegionAddress(KMemoryState state) const;
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constexpr std::size_t GetRegionSize(KMemoryState state) const;
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constexpr bool CanContain(VAddr addr, std::size_t size, KMemoryState state) const;
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constexpr ResultCode CheckMemoryState(const KMemoryInfo& info, KMemoryState state_mask,
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KMemoryState state, KMemoryPermission perm_mask,
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@ -21,6 +21,7 @@
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#include "core/hle/kernel/k_resource_limit.h"
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#include "core/hle/kernel/k_scheduler.h"
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#include "core/hle/kernel/k_scoped_resource_reservation.h"
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#include "core/hle/kernel/k_shared_memory.h"
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#include "core/hle/kernel/k_slab_heap.h"
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#include "core/hle/kernel/k_thread.h"
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#include "core/hle/kernel/kernel.h"
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@ -247,6 +248,30 @@ void KProcess::UnpinCurrentThread() {
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KScheduler::SetSchedulerUpdateNeeded(kernel);
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}
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ResultCode KProcess::AddSharedMemory(KSharedMemory* shmem, [[maybe_unused]] VAddr address,
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[[maybe_unused]] size_t size) {
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// Lock ourselves, to prevent concurrent access.
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KScopedLightLock lk(state_lock);
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// TODO(bunnei): Manage KSharedMemoryInfo list here.
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// Open a reference to the shared memory.
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shmem->Open();
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return RESULT_SUCCESS;
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}
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void KProcess::RemoveSharedMemory(KSharedMemory* shmem, [[maybe_unused]] VAddr address,
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[[maybe_unused]] size_t size) {
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// Lock ourselves, to prevent concurrent access.
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KScopedLightLock lk(state_lock);
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// TODO(bunnei): Manage KSharedMemoryInfo list here.
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// Close a reference to the shared memory.
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shmem->Close();
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}
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void KProcess::RegisterThread(const KThread* thread) {
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thread_list.push_back(thread);
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}
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@ -352,6 +352,9 @@ public:
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return state_lock;
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}
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ResultCode AddSharedMemory(KSharedMemory* shmem, VAddr address, size_t size);
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void RemoveSharedMemory(KSharedMemory* shmem, VAddr address, size_t size);
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///////////////////////////////////////////////////////////////////////////////////////////////
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// Thread-local storage management
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@ -20,9 +20,10 @@ KSharedMemory::~KSharedMemory() {
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ResultCode KSharedMemory::Initialize(KernelCore& kernel_, Core::DeviceMemory& device_memory_,
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KProcess* owner_process_, KPageLinkedList&& page_list_,
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KMemoryPermission owner_permission_,
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KMemoryPermission user_permission_, PAddr physical_address_,
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std::size_t size_, std::string name_) {
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Svc::MemoryPermission owner_permission_,
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Svc::MemoryPermission user_permission_,
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PAddr physical_address_, std::size_t size_,
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std::string name_) {
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// Set members.
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owner_process = owner_process_;
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device_memory = &device_memory_;
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@ -58,14 +59,6 @@ ResultCode KSharedMemory::Initialize(KernelCore& kernel_, Core::DeviceMemory& de
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}
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void KSharedMemory::Finalize() {
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///* Get the number of pages. */
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// const size_t num_pages = m_page_group.GetNumPages();
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// const size_t size = num_pages * PageSize;
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///* Close and finalize the page group. */
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// m_page_group.Close();
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// m_page_group.Finalize();
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// Release the memory reservation.
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resource_limit->Release(LimitableResource::PhysicalMemory, size);
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resource_limit->Close();
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@ -75,14 +68,14 @@ void KSharedMemory::Finalize() {
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}
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ResultCode KSharedMemory::Map(KProcess& target_process, VAddr address, std::size_t size,
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KMemoryPermission permissions) {
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Svc::MemoryPermission permissions) {
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const u64 page_count{(size + PageSize - 1) / PageSize};
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if (page_list.GetNumPages() != page_count) {
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UNIMPLEMENTED_MSG("Page count does not match");
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}
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const KMemoryPermission expected =
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const Svc::MemoryPermission expected =
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&target_process == owner_process ? owner_permission : user_permission;
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if (permissions != expected) {
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@ -90,7 +83,17 @@ ResultCode KSharedMemory::Map(KProcess& target_process, VAddr address, std::size
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}
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return target_process.PageTable().MapPages(address, page_list, KMemoryState::Shared,
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permissions);
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ConvertToKMemoryPermission(permissions));
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}
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ResultCode KSharedMemory::Unmap(KProcess& target_process, VAddr address, std::size_t size) {
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const u64 page_count{(size + PageSize - 1) / PageSize};
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if (page_list.GetNumPages() != page_count) {
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UNIMPLEMENTED_MSG("Page count does not match");
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}
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return target_process.PageTable().UnmapPages(address, page_list, KMemoryState::Shared);
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}
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} // namespace Kernel
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@ -29,8 +29,9 @@ public:
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ResultCode Initialize(KernelCore& kernel_, Core::DeviceMemory& device_memory_,
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KProcess* owner_process_, KPageLinkedList&& page_list_,
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KMemoryPermission owner_permission_, KMemoryPermission user_permission_,
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PAddr physical_address_, std::size_t size_, std::string name_);
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Svc::MemoryPermission owner_permission_,
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Svc::MemoryPermission user_permission_, PAddr physical_address_,
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std::size_t size_, std::string name_);
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/**
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* Maps a shared memory block to an address in the target process' address space
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@ -40,7 +41,15 @@ public:
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* @param permissions Memory block map permissions (specified by SVC field)
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*/
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ResultCode Map(KProcess& target_process, VAddr address, std::size_t size,
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KMemoryPermission permissions);
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Svc::MemoryPermission permissions);
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/**
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* Unmaps a shared memory block from an address in the target process' address space
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* @param target_process Process on which to unmap the memory block
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* @param address Address in system memory to unmap shared memory block
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* @param size Size of the shared memory block to unmap
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*/
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ResultCode Unmap(KProcess& target_process, VAddr address, std::size_t size);
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/**
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* Gets a pointer to the shared memory block
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@ -71,8 +80,8 @@ private:
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Core::DeviceMemory* device_memory;
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KProcess* owner_process{};
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KPageLinkedList page_list;
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KMemoryPermission owner_permission{};
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KMemoryPermission user_permission{};
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Svc::MemoryPermission owner_permission{};
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Svc::MemoryPermission user_permission{};
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PAddr physical_address{};
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std::size_t size{};
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KResourceLimit* resource_limit{};
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@ -599,21 +599,21 @@ struct KernelCore::Impl {
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time_shared_mem = KSharedMemory::Create(system.Kernel());
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hid_shared_mem->Initialize(system.Kernel(), system.DeviceMemory(), nullptr,
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{hid_phys_addr, hid_size / PageSize}, KMemoryPermission::None,
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KMemoryPermission::Read, hid_phys_addr, hid_size,
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"HID:SharedMemory");
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{hid_phys_addr, hid_size / PageSize},
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Svc::MemoryPermission::None, Svc::MemoryPermission::Read,
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hid_phys_addr, hid_size, "HID:SharedMemory");
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font_shared_mem->Initialize(system.Kernel(), system.DeviceMemory(), nullptr,
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{font_phys_addr, font_size / PageSize}, KMemoryPermission::None,
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KMemoryPermission::Read, font_phys_addr, font_size,
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"Font:SharedMemory");
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{font_phys_addr, font_size / PageSize},
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Svc::MemoryPermission::None, Svc::MemoryPermission::Read,
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font_phys_addr, font_size, "Font:SharedMemory");
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irs_shared_mem->Initialize(system.Kernel(), system.DeviceMemory(), nullptr,
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{irs_phys_addr, irs_size / PageSize}, KMemoryPermission::None,
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KMemoryPermission::Read, irs_phys_addr, irs_size,
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"IRS:SharedMemory");
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{irs_phys_addr, irs_size / PageSize},
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Svc::MemoryPermission::None, Svc::MemoryPermission::Read,
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irs_phys_addr, irs_size, "IRS:SharedMemory");
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time_shared_mem->Initialize(system.Kernel(), system.DeviceMemory(), nullptr,
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{time_phys_addr, time_size / PageSize}, KMemoryPermission::None,
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KMemoryPermission::Read, time_phys_addr, time_size,
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"Time:SharedMemory");
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{time_phys_addr, time_size / PageSize},
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Svc::MemoryPermission::None, Svc::MemoryPermission::Read,
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time_phys_addr, time_size, "Time:SharedMemory");
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}
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void InitializePageSlab() {
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@ -1183,79 +1183,97 @@ static u32 GetCurrentProcessorNumber32(Core::System& system) {
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return GetCurrentProcessorNumber(system);
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}
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static ResultCode MapSharedMemory(Core::System& system, Handle shared_memory_handle, VAddr addr,
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u64 size, u32 permissions) {
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std::lock_guard lock{HLE::g_hle_lock};
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constexpr bool IsValidSharedMemoryPermission(Svc::MemoryPermission perm) {
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switch (perm) {
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case Svc::MemoryPermission::Read:
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case Svc::MemoryPermission::ReadWrite:
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return true;
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default:
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return false;
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}
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}
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constexpr bool IsValidRemoteSharedMemoryPermission(Svc::MemoryPermission perm) {
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return IsValidSharedMemoryPermission(perm) || perm == Svc::MemoryPermission::DontCare;
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}
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static ResultCode MapSharedMemory(Core::System& system, Handle shmem_handle, VAddr address,
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u64 size, Svc::MemoryPermission map_perm) {
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LOG_TRACE(Kernel_SVC,
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"called, shared_memory_handle=0x{:X}, addr=0x{:X}, size=0x{:X}, permissions=0x{:08X}",
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shared_memory_handle, addr, size, permissions);
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shmem_handle, address, size, map_perm);
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if (!Common::Is4KBAligned(addr)) {
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LOG_ERROR(Kernel_SVC, "Address is not aligned to 4KB, addr=0x{:016X}", addr);
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return ResultInvalidAddress;
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// Validate the address/size.
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R_UNLESS(Common::IsAligned(address, PageSize), ResultInvalidAddress);
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R_UNLESS(Common::IsAligned(size, PageSize), ResultInvalidSize);
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R_UNLESS(size > 0, ResultInvalidSize);
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R_UNLESS((address < address + size), ResultInvalidCurrentMemory);
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// Validate the permission.
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R_UNLESS(IsValidSharedMemoryPermission(map_perm), ResultInvalidNewMemoryPermission);
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// Get the current process.
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auto& process = *system.Kernel().CurrentProcess();
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auto& page_table = process.PageTable();
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// Get the shared memory.
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KScopedAutoObject shmem = process.GetHandleTable().GetObject<KSharedMemory>(shmem_handle);
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R_UNLESS(shmem.IsNotNull(), ResultInvalidHandle);
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// Verify that the mapping is in range.
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R_UNLESS(page_table.CanContain(address, size, KMemoryState::Shared), ResultInvalidMemoryRegion);
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// Add the shared memory to the process.
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R_TRY(process.AddSharedMemory(shmem.GetPointerUnsafe(), address, size));
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// Ensure that we clean up the shared memory if we fail to map it.
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auto guard =
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SCOPE_GUARD({ process.RemoveSharedMemory(shmem.GetPointerUnsafe(), address, size); });
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// Map the shared memory.
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R_TRY(shmem->Map(process, address, size, map_perm));
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// We succeeded.
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guard.Cancel();
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return RESULT_SUCCESS;
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}
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if (size == 0) {
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LOG_ERROR(Kernel_SVC, "Size is 0");
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return ResultInvalidSize;
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static ResultCode MapSharedMemory32(Core::System& system, Handle shmem_handle, u32 address,
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u32 size, Svc::MemoryPermission map_perm) {
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return MapSharedMemory(system, shmem_handle, address, size, map_perm);
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}
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if (!Common::Is4KBAligned(size)) {
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LOG_ERROR(Kernel_SVC, "Size is not aligned to 4KB, size=0x{:016X}", size);
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return ResultInvalidSize;
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static ResultCode UnmapSharedMemory(Core::System& system, Handle shmem_handle, VAddr address,
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u64 size) {
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// Validate the address/size.
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R_UNLESS(Common::IsAligned(address, PageSize), ResultInvalidAddress);
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R_UNLESS(Common::IsAligned(size, PageSize), ResultInvalidSize);
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R_UNLESS(size > 0, ResultInvalidSize);
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R_UNLESS((address < address + size), ResultInvalidCurrentMemory);
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// Get the current process.
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auto& process = *system.Kernel().CurrentProcess();
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auto& page_table = process.PageTable();
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// Get the shared memory.
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KScopedAutoObject shmem = process.GetHandleTable().GetObject<KSharedMemory>(shmem_handle);
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R_UNLESS(shmem.IsNotNull(), ResultInvalidHandle);
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// Verify that the mapping is in range.
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R_UNLESS(page_table.CanContain(address, size, KMemoryState::Shared), ResultInvalidMemoryRegion);
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// Unmap the shared memory.
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R_TRY(shmem->Unmap(process, address, size));
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// Remove the shared memory from the process.
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process.RemoveSharedMemory(shmem.GetPointerUnsafe(), address, size);
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return RESULT_SUCCESS;
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}
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if (!IsValidAddressRange(addr, size)) {
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LOG_ERROR(Kernel_SVC, "Region is not a valid address range, addr=0x{:016X}, size=0x{:016X}",
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addr, size);
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return ResultInvalidCurrentMemory;
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}
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const auto permission_type = static_cast<MemoryPermission>(permissions);
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if ((permission_type | MemoryPermission::Write) != MemoryPermission::ReadWrite) {
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LOG_ERROR(Kernel_SVC, "Expected Read or ReadWrite permission but got permissions=0x{:08X}",
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permissions);
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return ResultInvalidNewMemoryPermission;
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}
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auto* const current_process{system.Kernel().CurrentProcess()};
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auto& page_table{current_process->PageTable()};
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if (page_table.IsInvalidRegion(addr, size)) {
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LOG_ERROR(Kernel_SVC,
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"Addr does not fit within the valid region, addr=0x{:016X}, "
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"size=0x{:016X}",
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addr, size);
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return ResultInvalidMemoryRegion;
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}
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if (page_table.IsInsideHeapRegion(addr, size)) {
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LOG_ERROR(Kernel_SVC,
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"Addr does not fit within the heap region, addr=0x{:016X}, "
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"size=0x{:016X}",
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addr, size);
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return ResultInvalidMemoryRegion;
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}
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if (page_table.IsInsideAliasRegion(addr, size)) {
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LOG_ERROR(Kernel_SVC,
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"Address does not fit within the map region, addr=0x{:016X}, "
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"size=0x{:016X}",
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addr, size);
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return ResultInvalidMemoryRegion;
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}
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auto shared_memory{
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current_process->GetHandleTable().GetObject<KSharedMemory>(shared_memory_handle)};
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R_UNLESS(shared_memory.IsNotNull(), ResultInvalidHandle);
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return shared_memory->Map(*current_process, addr, size,
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static_cast<KMemoryPermission>(permission_type));
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}
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static ResultCode MapSharedMemory32(Core::System& system, Handle shared_memory_handle, u32 addr,
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u32 size, u32 permissions) {
|
||||
return MapSharedMemory(system, shared_memory_handle, addr, size, permissions);
|
||||
static ResultCode UnmapSharedMemory32(Core::System& system, Handle shmem_handle, u32 address,
|
||||
u32 size) {
|
||||
return UnmapSharedMemory(system, shmem_handle, address, size);
|
||||
}
|
||||
|
||||
static ResultCode QueryProcessMemory(Core::System& system, VAddr memory_info_address,
|
||||
@ -2297,7 +2315,7 @@ static const FunctionDef SVC_Table_32[] = {
|
||||
{0x11, SvcWrap32<SignalEvent32>, "SignalEvent32"},
|
||||
{0x12, SvcWrap32<ClearEvent32>, "ClearEvent32"},
|
||||
{0x13, SvcWrap32<MapSharedMemory32>, "MapSharedMemory32"},
|
||||
{0x14, nullptr, "UnmapSharedMemory32"},
|
||||
{0x14, SvcWrap32<UnmapSharedMemory32>, "UnmapSharedMemory32"},
|
||||
{0x15, SvcWrap32<CreateTransferMemory32>, "CreateTransferMemory32"},
|
||||
{0x16, SvcWrap32<CloseHandle32>, "CloseHandle32"},
|
||||
{0x17, SvcWrap32<ResetSignal32>, "ResetSignal32"},
|
||||
@ -2492,7 +2510,7 @@ static const FunctionDef SVC_Table_64[] = {
|
||||
{0x11, SvcWrap64<SignalEvent>, "SignalEvent"},
|
||||
{0x12, SvcWrap64<ClearEvent>, "ClearEvent"},
|
||||
{0x13, SvcWrap64<MapSharedMemory>, "MapSharedMemory"},
|
||||
{0x14, nullptr, "UnmapSharedMemory"},
|
||||
{0x14, SvcWrap64<UnmapSharedMemory>, "UnmapSharedMemory"},
|
||||
{0x15, SvcWrap64<CreateTransferMemory>, "CreateTransferMemory"},
|
||||
{0x16, SvcWrap64<CloseHandle>, "CloseHandle"},
|
||||
{0x17, SvcWrap64<ResetSignal>, "ResetSignal"},
|
||||
|
@ -232,10 +232,11 @@ void SvcWrap64(Core::System& system) {
|
||||
func(system, Param(system, 0), Param(system, 1), static_cast<u32>(Param(system, 2))).raw);
|
||||
}
|
||||
|
||||
template <ResultCode func(Core::System&, u32, u64, u64, u32)>
|
||||
// Used by MapSharedMemory
|
||||
template <ResultCode func(Core::System&, Handle, u64, u64, Svc::MemoryPermission)>
|
||||
void SvcWrap64(Core::System& system) {
|
||||
FuncReturn(system, func(system, static_cast<u32>(Param(system, 0)), Param(system, 1),
|
||||
Param(system, 2), static_cast<u32>(Param(system, 3)))
|
||||
FuncReturn(system, func(system, static_cast<Handle>(Param(system, 0)), Param(system, 1),
|
||||
Param(system, 2), static_cast<Svc::MemoryPermission>(Param(system, 3)))
|
||||
.raw);
|
||||
}
|
||||
|
||||
@ -553,6 +554,16 @@ void SvcWrap32(Core::System& system) {
|
||||
FuncReturn(system, retval);
|
||||
}
|
||||
|
||||
// Used by MapSharedMemory32
|
||||
template <ResultCode func(Core::System&, Handle, u32, u32, Svc::MemoryPermission)>
|
||||
void SvcWrap32(Core::System& system) {
|
||||
const u32 retval =
|
||||
func(system, static_cast<Handle>(Param(system, 0)), static_cast<u32>(Param(system, 1)), static_cast<u32>(Param(system, 2)),
|
||||
static_cast<Svc::MemoryPermission>(Param(system, 3)))
|
||||
.raw;
|
||||
FuncReturn(system, retval);
|
||||
}
|
||||
|
||||
// Used by SetThreadCoreMask32
|
||||
template <ResultCode func(Core::System&, Handle, s32, u32, u32)>
|
||||
void SvcWrap32(Core::System& system) {
|
||||
|
Loading…
Reference in New Issue
Block a user