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hle: kernel: svc_results: Update naming..
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c2f6f2ba7a
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269d233a94
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@ -21,7 +21,7 @@ std::shared_ptr<ServerPort> ClientPort::GetServerPort() const {
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ResultVal<std::shared_ptr<ClientSession>> ClientPort::Connect() {
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if (active_sessions >= max_sessions) {
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return ResultMaxConnectionsReached;
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return ResultOutOfSessions;
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}
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active_sessions++;
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@ -42,7 +42,7 @@ ResultCode ClientSession::SendSyncRequest(KThread* thread, Core::Memory::Memory&
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Core::Timing::CoreTiming& core_timing) {
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// Keep ServerSession alive until we're done working with it.
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if (!parent->Server()) {
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return ResultSessionClosedByRemote;
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return ResultSessionClosed;
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}
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// Signal the server session that new data is available
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@ -68,7 +68,7 @@ ResultVal<Handle> HandleTable::Create(Object* obj) {
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const u16 slot = next_free_slot;
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if (slot >= table_size) {
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LOG_ERROR(Kernel, "Unable to allocate Handle, too many slots in use.");
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return ResultHandleTableFull;
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return ResultOutOfHandles;
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}
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next_free_slot = generations[slot];
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@ -93,7 +93,7 @@ ResultCode HandleTable::Add(Handle* out_handle, KAutoObject* obj, u16 type) {
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const u16 slot = next_free_slot;
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if (slot >= table_size) {
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LOG_ERROR(Kernel, "Unable to allocate Handle, too many slots in use.");
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return ResultHandleTableFull;
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return ResultOutOfHandles;
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}
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next_free_slot = generations[slot];
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@ -420,7 +420,7 @@ ResultCode KPageTable::MapPhysicalMemory(VAddr addr, std::size_t size) {
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remaining_size);
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if (!memory_reservation.Succeeded()) {
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LOG_ERROR(Kernel, "Could not reserve remaining {:X} bytes", remaining_size);
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return ResultResourceLimitedExceeded;
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return ResultLimitReached;
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}
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KPageLinkedList page_linked_list;
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@ -578,7 +578,7 @@ ResultCode KPageTable::Unmap(VAddr dst_addr, VAddr src_addr, std::size_t size) {
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AddRegionToPages(dst_addr, num_pages, dst_pages);
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if (!dst_pages.IsEqual(src_pages)) {
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return ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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{
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@ -790,7 +790,7 @@ ResultVal<VAddr> KPageTable::SetHeapSize(std::size_t size) {
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if (!memory_reservation.Succeeded()) {
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LOG_ERROR(Kernel, "Could not reserve heap extension of size {:X} bytes", delta);
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return ResultResourceLimitedExceeded;
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return ResultLimitReached;
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}
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KPageLinkedList page_linked_list;
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@ -276,7 +276,7 @@ ResultCode Process::LoadFromMetadata(const FileSys::ProgramMetadata& metadata,
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if (!memory_reservation.Succeeded()) {
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LOG_ERROR(Kernel, "Could not reserve process memory requirements of size {:X} bytes",
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code_size + system_resource_size);
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return ResultResourceLimitedExceeded;
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return ResultLimitReached;
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}
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// Initialize proces address space
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if (const ResultCode result{
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@ -159,7 +159,7 @@ ResultCode ProcessCapabilities::ParseSingleFlagCapability(u32& set_flags, u32& s
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const auto type = GetCapabilityType(flag);
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if (type == CapabilityType::Unset) {
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return ResultInvalidCapabilityDescriptor;
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return ResultInvalidArgument;
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}
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// Bail early on ignorable entries, as one would expect,
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@ -202,7 +202,7 @@ ResultCode ProcessCapabilities::ParseSingleFlagCapability(u32& set_flags, u32& s
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}
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LOG_ERROR(Kernel, "Invalid capability type! type={}", type);
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return ResultInvalidCapabilityDescriptor;
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return ResultInvalidArgument;
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}
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void ProcessCapabilities::Clear() {
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@ -225,7 +225,7 @@ ResultCode ProcessCapabilities::HandlePriorityCoreNumFlags(u32 flags) {
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if (priority_mask != 0 || core_mask != 0) {
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LOG_ERROR(Kernel, "Core or priority mask are not zero! priority_mask={}, core_mask={}",
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priority_mask, core_mask);
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return ResultInvalidCapabilityDescriptor;
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return ResultInvalidArgument;
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}
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const u32 core_num_min = (flags >> 16) & 0xFF;
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@ -329,7 +329,7 @@ ResultCode ProcessCapabilities::HandleProgramTypeFlags(u32 flags) {
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const u32 reserved = flags >> 17;
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if (reserved != 0) {
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LOG_ERROR(Kernel, "Reserved value is non-zero! reserved={}", reserved);
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return ResultReservedValue;
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return ResultReservedUsed;
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}
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program_type = static_cast<ProgramType>((flags >> 14) & 0b111);
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@ -349,7 +349,7 @@ ResultCode ProcessCapabilities::HandleKernelVersionFlags(u32 flags) {
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LOG_ERROR(Kernel,
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"Kernel version is non zero or flags are too small! major_version={}, flags={}",
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major_version, flags);
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return ResultInvalidCapabilityDescriptor;
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return ResultInvalidArgument;
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}
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kernel_version = flags;
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@ -360,7 +360,7 @@ ResultCode ProcessCapabilities::HandleHandleTableFlags(u32 flags) {
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const u32 reserved = flags >> 26;
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if (reserved != 0) {
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LOG_ERROR(Kernel, "Reserved value is non-zero! reserved={}", reserved);
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return ResultReservedValue;
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return ResultReservedUsed;
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}
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handle_table_size = static_cast<s32>((flags >> 16) & 0x3FF);
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@ -371,7 +371,7 @@ ResultCode ProcessCapabilities::HandleDebugFlags(u32 flags) {
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const u32 reserved = flags >> 19;
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if (reserved != 0) {
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LOG_ERROR(Kernel, "Reserved value is non-zero! reserved={}", reserved);
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return ResultReservedValue;
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return ResultReservedUsed;
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}
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is_debuggable = (flags & 0x20000) != 0;
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@ -113,7 +113,7 @@ ResultCode MapUnmapMemorySanityChecks(const KPageTable& manager, VAddr dst_addr,
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LOG_ERROR(Kernel_SVC,
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"Destination is not within the stack region, addr=0x{:016X}, size=0x{:016X}",
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dst_addr, size);
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return ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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if (manager.IsInsideHeapRegion(dst_addr, size)) {
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@ -121,7 +121,7 @@ ResultCode MapUnmapMemorySanityChecks(const KPageTable& manager, VAddr dst_addr,
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"Destination does not fit within the heap region, addr=0x{:016X}, "
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"size=0x{:016X}",
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dst_addr, size);
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return ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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if (manager.IsInsideAliasRegion(dst_addr, size)) {
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@ -129,7 +129,7 @@ ResultCode MapUnmapMemorySanityChecks(const KPageTable& manager, VAddr dst_addr,
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"Destination does not fit within the map region, addr=0x{:016X}, "
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"size=0x{:016X}",
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dst_addr, size);
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return ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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return RESULT_SUCCESS;
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@ -943,7 +943,7 @@ static ResultCode MapPhysicalMemory(Core::System& system, VAddr addr, u64 size)
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if (!(addr < addr + size)) {
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LOG_ERROR(Kernel_SVC, "Size causes 64-bit overflow of address");
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return ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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Process* const current_process{system.Kernel().CurrentProcess()};
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@ -958,14 +958,14 @@ static ResultCode MapPhysicalMemory(Core::System& system, VAddr addr, u64 size)
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LOG_ERROR(Kernel_SVC,
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"Address is not within the address space, addr=0x{:016X}, size=0x{:016X}", addr,
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size);
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return ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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if (page_table.IsOutsideAliasRegion(addr, size)) {
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LOG_ERROR(Kernel_SVC,
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"Address is not within the alias region, addr=0x{:016X}, size=0x{:016X}", addr,
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size);
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return ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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return page_table.MapPhysicalMemory(addr, size);
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@ -997,7 +997,7 @@ static ResultCode UnmapPhysicalMemory(Core::System& system, VAddr addr, u64 size
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if (!(addr < addr + size)) {
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LOG_ERROR(Kernel_SVC, "Size causes 64-bit overflow of address");
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return ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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Process* const current_process{system.Kernel().CurrentProcess()};
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@ -1012,14 +1012,14 @@ static ResultCode UnmapPhysicalMemory(Core::System& system, VAddr addr, u64 size
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LOG_ERROR(Kernel_SVC,
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"Address is not within the address space, addr=0x{:016X}, size=0x{:016X}", addr,
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size);
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return ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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if (page_table.IsOutsideAliasRegion(addr, size)) {
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LOG_ERROR(Kernel_SVC,
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"Address is not within the alias region, addr=0x{:016X}, size=0x{:016X}", addr,
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size);
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return ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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return page_table.UnmapPhysicalMemory(addr, size);
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@ -1138,7 +1138,7 @@ static ResultCode MapSharedMemory(Core::System& system, Handle shared_memory_han
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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 ResultInvalidMemoryPermissions;
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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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@ -1149,7 +1149,7 @@ static ResultCode MapSharedMemory(Core::System& system, Handle shared_memory_han
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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 ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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if (page_table.IsInsideHeapRegion(addr, size)) {
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@ -1157,7 +1157,7 @@ static ResultCode MapSharedMemory(Core::System& system, Handle shared_memory_han
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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 ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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if (page_table.IsInsideAliasRegion(addr, size)) {
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@ -1165,7 +1165,7 @@ static ResultCode MapSharedMemory(Core::System& system, Handle shared_memory_han
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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 ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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auto shared_memory{
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@ -1290,7 +1290,7 @@ static ResultCode MapProcessCodeMemory(Core::System& system, Handle process_hand
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"Destination address range is not within the ASLR region (dst_address=0x{:016X}, "
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"size=0x{:016X}).",
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dst_address, size);
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return ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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return page_table.MapProcessCodeMemory(dst_address, src_address, size);
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@ -1358,7 +1358,7 @@ static ResultCode UnmapProcessCodeMemory(Core::System& system, Handle process_ha
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"Destination address range is not within the ASLR region (dst_address=0x{:016X}, "
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"size=0x{:016X}).",
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dst_address, size);
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return ResultInvalidMemoryRange;
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return ResultInvalidMemoryRegion;
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}
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return page_table.UnmapProcessCodeMemory(dst_address, src_address, size);
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@ -1427,7 +1427,7 @@ static ResultCode CreateThread(Core::System& system, Handle* out_handle, VAddr e
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system.CoreTiming().GetGlobalTimeNs().count() + 100000000);
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if (!thread_reservation.Succeeded()) {
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LOG_ERROR(Kernel_SVC, "Could not reserve a new thread");
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return ResultResourceLimitedExceeded;
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return ResultLimitReached;
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}
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// Create the thread.
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@ -1795,7 +1795,7 @@ static ResultCode CreateTransferMemory(Core::System& system, Handle* handle, VAd
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if (perms > MemoryPermission::ReadWrite || perms == MemoryPermission::Write) {
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LOG_ERROR(Kernel_SVC, "Invalid memory permissions for transfer memory! (perms={:08X})",
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permissions);
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return ResultInvalidMemoryPermissions;
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return ResultInvalidNewMemoryPermission;
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}
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auto& kernel = system.Kernel();
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@ -1804,7 +1804,7 @@ static ResultCode CreateTransferMemory(Core::System& system, Handle* handle, VAd
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LimitableResource::TransferMemory);
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if (!trmem_reservation.Succeeded()) {
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LOG_ERROR(Kernel_SVC, "Could not reserve a new transfer memory");
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return ResultResourceLimitedExceeded;
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return ResultLimitReached;
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}
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auto transfer_mem_handle = TransferMemory::Create(kernel, system.Memory(), addr, size,
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static_cast<KMemoryPermission>(perms));
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@ -1940,7 +1940,7 @@ static ResultCode CreateEvent(Core::System& system, Handle* out_write, Handle* o
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// Reserve a new event from the process resource limit
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KScopedResourceReservation event_reservation(kernel.CurrentProcess(),
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LimitableResource::Events);
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R_UNLESS(event_reservation.Succeeded(), ResultResourceLimitedExceeded);
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R_UNLESS(event_reservation.Succeeded(), ResultLimitReached);
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// Create a new event.
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KEvent* event = KEvent::Create(kernel);
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@ -10,18 +10,18 @@ namespace Kernel {
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// Confirmed Switch kernel error codes
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constexpr ResultCode ResultMaxConnectionsReached{ErrorModule::Kernel, 7};
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constexpr ResultCode ResultInvalidCapabilityDescriptor{ErrorModule::Kernel, 14};
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constexpr ResultCode ResultOutOfSessions{ErrorModule::Kernel, 7};
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constexpr ResultCode ResultInvalidArgument{ErrorModule::Kernel, 14};
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constexpr ResultCode ResultNoSynchronizationObject{ErrorModule::Kernel, 57};
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constexpr ResultCode ResultTerminationRequested{ErrorModule::Kernel, 59};
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constexpr ResultCode ResultInvalidSize{ErrorModule::Kernel, 101};
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constexpr ResultCode ResultInvalidAddress{ErrorModule::Kernel, 102};
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constexpr ResultCode ResultOutOfResource{ErrorModule::Kernel, 103};
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constexpr ResultCode ResultOutOfMemory{ErrorModule::Kernel, 104};
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constexpr ResultCode ResultHandleTableFull{ErrorModule::Kernel, 105};
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constexpr ResultCode ResultOutOfHandles{ErrorModule::Kernel, 105};
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constexpr ResultCode ResultInvalidCurrentMemory{ErrorModule::Kernel, 106};
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constexpr ResultCode ResultInvalidMemoryPermissions{ErrorModule::Kernel, 108};
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constexpr ResultCode ResultInvalidMemoryRange{ErrorModule::Kernel, 110};
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constexpr ResultCode ResultInvalidNewMemoryPermission{ErrorModule::Kernel, 108};
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constexpr ResultCode ResultInvalidMemoryRegion{ErrorModule::Kernel, 110};
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constexpr ResultCode ResultInvalidPriority{ErrorModule::Kernel, 112};
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constexpr ResultCode ResultInvalidCoreId{ErrorModule::Kernel, 113};
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constexpr ResultCode ResultInvalidHandle{ErrorModule::Kernel, 114};
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@ -33,9 +33,10 @@ constexpr ResultCode ResultOutOfRange{ErrorModule::Kernel, 119};
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constexpr ResultCode ResultInvalidEnumValue{ErrorModule::Kernel, 120};
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constexpr ResultCode ResultNotFound{ErrorModule::Kernel, 121};
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constexpr ResultCode ResultBusy{ErrorModule::Kernel, 122};
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constexpr ResultCode ResultSessionClosedByRemote{ErrorModule::Kernel, 123};
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constexpr ResultCode ResultSessionClosed{ErrorModule::Kernel, 123};
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constexpr ResultCode ResultInvalidState{ErrorModule::Kernel, 125};
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constexpr ResultCode ResultReservedValue{ErrorModule::Kernel, 126};
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constexpr ResultCode ResultResourceLimitedExceeded{ErrorModule::Kernel, 132};
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constexpr ResultCode ResultReservedUsed{ErrorModule::Kernel, 126};
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constexpr ResultCode ResultLimitReached{ErrorModule::Kernel, 132};
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constexpr ResultCode ResultInvalidId{ErrorModule::Kernel, 519};
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} // namespace Kernel
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