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https://github.com/PabloMK7/citra.git
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Implement svcGetHandleInfo, svcOpenProcess/Thread, svcGetProcessList (#6243)
* Implement svcGetHandleInfo, svcOpenProcess/Thread, svcGetProcessList * Apply suggestions * Add comment to stubbed enum values in svcGetHandleInfo * Revert u32 -> size_t
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@ -224,6 +224,10 @@ public:
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/// Retrieves a process from the current list of processes.
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std::shared_ptr<Process> GetProcessById(u32 process_id) const;
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const std::vector<std::shared_ptr<Process>>& GetProcessList() const {
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return process_list;
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}
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std::shared_ptr<Process> GetCurrentProcess() const;
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void SetCurrentProcess(std::shared_ptr<Process> process);
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void SetCurrentProcessForCPU(std::shared_ptr<Process> process, u32 core_id);
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@ -44,6 +44,7 @@ void Process::serialize(Archive& ar, const unsigned int file_version) {
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ar& ideal_processor;
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ar& status;
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ar& process_id;
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ar& creation_time_ticks;
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ar& vm_manager;
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ar& memory_used;
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ar& memory_region;
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@ -72,6 +73,7 @@ std::shared_ptr<Process> KernelSystem::CreateProcess(std::shared_ptr<CodeSet> co
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process->flags.memory_region.Assign(MemoryRegion::APPLICATION);
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process->status = ProcessStatus::Created;
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process->process_id = ++next_process_id;
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process->creation_time_ticks = timing.GetTicks();
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process_list.push_back(process);
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return process;
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@ -185,6 +185,9 @@ public:
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/// The id of this process
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u32 process_id;
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// Creation time in ticks of the process.
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u64 creation_time_ticks;
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/**
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* Parses a list of kernel capability descriptors (as found in the ExHeader) and applies them
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* to this process.
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@ -80,6 +80,22 @@ struct PageInfo {
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u32 flags;
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};
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// Values accepted by svcGetHandleInfo.
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enum class HandleInfoType {
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/**
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* Returns the time in ticks the KProcess referenced by the handle was created.
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*/
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KPROCESS_ELAPSED_TICKS = 0,
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/**
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* Get internal refcount for kernel object.
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*/
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REFERENCE_COUNT = 1,
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STUBBED_1 = 2,
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STUBBED_2 = 0x32107,
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};
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/// Values accepted by svcGetSystemInfo's type parameter.
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enum class SystemInfoType {
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/**
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@ -358,6 +374,8 @@ private:
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ResultCode UnmapMemoryBlock(Handle handle, u32 addr);
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ResultCode ConnectToPort(Handle* out_handle, VAddr port_name_address);
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ResultCode SendSyncRequest(Handle handle);
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ResultCode OpenProcess(Handle* out_handle, u32 process_id);
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ResultCode OpenThread(Handle* out_handle, Handle process_handle, u32 thread_id);
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ResultCode CloseHandle(Handle handle);
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ResultCode WaitSynchronization1(Handle handle, s64 nano_seconds);
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ResultCode WaitSynchronizationN(s32* out, VAddr handles_address, s32 handle_count,
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@ -399,6 +417,7 @@ private:
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ResultCode CancelTimer(Handle handle);
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void SleepThread(s64 nanoseconds);
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s64 GetSystemTick();
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ResultCode GetHandleInfo(s64* out, Handle handle, u32 type);
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ResultCode CreateMemoryBlock(Handle* out_handle, u32 addr, u32 size, u32 my_permission,
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u32 other_permission);
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ResultCode CreatePort(Handle* server_port, Handle* client_port, VAddr name_address,
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@ -409,6 +428,8 @@ private:
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ResultCode GetSystemInfo(s64* out, u32 type, s32 param);
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ResultCode GetProcessInfo(s64* out, Handle process_handle, u32 type);
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ResultCode GetThreadInfo(s64* out, Handle thread_handle, u32 type);
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ResultCode GetProcessList(s32* process_count, VAddr out_process_array,
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s32 out_process_array_count);
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ResultCode InvalidateInstructionCacheRange(u32 addr, u32 size);
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ResultCode InvalidateEntireInstructionCache();
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u32 ConvertVaToPa(u32 addr);
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@ -594,14 +615,16 @@ ResultCode SVC::UnmapMemoryBlock(Handle handle, u32 addr) {
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/// Connect to an OS service given the port name, returns the handle to the port to out
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ResultCode SVC::ConnectToPort(Handle* out_handle, VAddr port_name_address) {
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if (!memory.IsValidVirtualAddress(*kernel.GetCurrentProcess(), port_name_address))
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if (!memory.IsValidVirtualAddress(*kernel.GetCurrentProcess(), port_name_address)) {
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return ERR_NOT_FOUND;
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}
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static constexpr std::size_t PortNameMaxLength = 11;
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// Read 1 char beyond the max allowed port name to detect names that are too long.
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std::string port_name = memory.ReadCString(port_name_address, PortNameMaxLength + 1);
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if (port_name.size() > PortNameMaxLength)
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if (port_name.size() > PortNameMaxLength) {
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return ERR_PORT_NAME_TOO_LONG;
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}
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LOG_TRACE(Kernel_SVC, "called port_name={}", port_name);
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@ -642,6 +665,50 @@ ResultCode SVC::SendSyncRequest(Handle handle) {
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return session->SendSyncRequest(thread);
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}
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ResultCode SVC::OpenProcess(Handle* out_handle, u32 process_id) {
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std::shared_ptr<Process> process = kernel.GetProcessById(process_id);
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if (!process) {
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// Result 0xd9001818 (process not found?)
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return ResultCode(24, ErrorModule::OS, ErrorSummary::WrongArgument, ErrorLevel::Permanent);
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}
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auto result_handle = kernel.GetCurrentProcess()->handle_table.Create(process);
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if (result_handle.empty()) {
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return result_handle.Code();
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}
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*out_handle = result_handle.Unwrap();
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return RESULT_SUCCESS;
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}
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ResultCode SVC::OpenThread(Handle* out_handle, Handle process_handle, u32 thread_id) {
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if (process_handle == 0) {
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LOG_ERROR(Kernel_SVC, "Uninplemented svcOpenThread process_handle=0");
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// Result 0xd9001819 (thread not found?)
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return ResultCode(25, ErrorModule::OS, ErrorSummary::WrongArgument, ErrorLevel::Permanent);
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}
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std::shared_ptr<Process> process =
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kernel.GetCurrentProcess()->handle_table.Get<Process>(process_handle);
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if (!process) {
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return ERR_INVALID_HANDLE;
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}
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for (u32 core_id = 0; core_id < system.GetNumCores(); core_id++) {
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auto& thread_list = kernel.GetThreadManager(core_id).GetThreadList();
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for (auto& thread : thread_list) {
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if (thread->owner_process.lock() == process && thread.get()->thread_id == thread_id) {
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auto result_handle = kernel.GetCurrentProcess()->handle_table.Create(thread);
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if (result_handle.empty()) {
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return result_handle.Code();
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}
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*out_handle = result_handle.Unwrap();
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return RESULT_SUCCESS;
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}
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}
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}
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// Result 0xd9001819 (thread not found?)
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return ResultCode(25, ErrorModule::OS, ErrorSummary::WrongArgument, ErrorLevel::Permanent);
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}
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/// Close a handle
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ResultCode SVC::CloseHandle(Handle handle) {
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LOG_TRACE(Kernel_SVC, "Closing handle 0x{:08X}", handle);
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@ -761,16 +828,18 @@ ResultCode SVC::WaitSynchronizationN(s32* out, VAddr handles_address, s32 handle
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bool wait_all, s64 nano_seconds) {
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Thread* thread = kernel.GetCurrentThreadManager().GetCurrentThread();
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if (!memory.IsValidVirtualAddress(*kernel.GetCurrentProcess(), handles_address))
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if (!memory.IsValidVirtualAddress(*kernel.GetCurrentProcess(), handles_address)) {
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return ERR_INVALID_POINTER;
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}
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// NOTE: on real hardware, there is no nullptr check for 'out' (tested with firmware 4.4). If
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// this happens, the running application will crash.
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ASSERT_MSG(out != nullptr, "invalid output pointer specified!");
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// Check if 'handle_count' is invalid
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if (handle_count < 0)
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if (handle_count < 0) {
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return ERR_OUT_OF_RANGE;
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}
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using ObjectPtr = std::shared_ptr<WaitObject>;
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std::vector<ObjectPtr> objects(handle_count);
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@ -907,12 +976,14 @@ static ResultCode ReceiveIPCRequest(Kernel::KernelSystem& kernel, Memory::Memory
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/// In a single operation, sends a IPC reply and waits for a new request.
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ResultCode SVC::ReplyAndReceive(s32* index, VAddr handles_address, s32 handle_count,
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Handle reply_target) {
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if (!memory.IsValidVirtualAddress(*kernel.GetCurrentProcess(), handles_address))
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if (!memory.IsValidVirtualAddress(*kernel.GetCurrentProcess(), handles_address)) {
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return ERR_INVALID_POINTER;
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}
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// Check if 'handle_count' is invalid
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if (handle_count < 0)
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if (handle_count < 0) {
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return ERR_OUT_OF_RANGE;
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}
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using ObjectPtr = std::shared_ptr<WaitObject>;
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std::vector<ObjectPtr> objects(handle_count);
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@ -1522,6 +1593,40 @@ s64 SVC::GetSystemTick() {
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return result;
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}
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// Returns information of the specified handle
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ResultCode SVC::GetHandleInfo(s64* out, Handle handle, u32 type) {
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std::shared_ptr<Object> KObject = kernel.GetCurrentProcess()->handle_table.GetGeneric(handle);
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if (!KObject) {
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return ERR_INVALID_HANDLE;
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}
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// Not initialized in real kernel, but we don't want to leak memory.
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s64 value = 0;
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std::shared_ptr<Process> process;
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switch (static_cast<HandleInfoType>(type)) {
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case HandleInfoType::KPROCESS_ELAPSED_TICKS:
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process = DynamicObjectCast<Process>(KObject);
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if (process) {
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value = process->creation_time_ticks;
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}
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break;
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case HandleInfoType::REFERENCE_COUNT:
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// This is the closest approximation we can get without a full KObject impl.
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value = KObject.use_count() - 1;
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break;
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// These values are stubbed in real kernel, they do nothing.
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case HandleInfoType::STUBBED_1:
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case HandleInfoType::STUBBED_2:
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break;
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default:
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return ERR_INVALID_ENUM_VALUE;
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}
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*out = value;
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return RESULT_SUCCESS;
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}
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/// Creates a memory block at the specified address with the specified permissions and size
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ResultCode SVC::CreateMemoryBlock(Handle* out_handle, u32 addr, u32 size, u32 my_permission,
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u32 other_permission) {
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@ -1833,6 +1938,25 @@ ResultCode SVC::GetThreadInfo(s64* out, Handle thread_handle, u32 type) {
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return RESULT_SUCCESS;
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}
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ResultCode SVC::GetProcessList(s32* process_count, VAddr out_process_array,
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s32 out_process_array_count) {
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if (!memory.IsValidVirtualAddress(*kernel.GetCurrentProcess(), out_process_array)) {
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return ERR_INVALID_POINTER;
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}
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s32 written = 0;
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for (const auto process : kernel.GetProcessList()) {
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if (written >= out_process_array_count) {
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break;
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}
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if (process) {
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memory.Write32(out_process_array + written++ * sizeof(u32), process->process_id);
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}
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}
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*process_count = written;
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return RESULT_SUCCESS;
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}
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ResultCode SVC::InvalidateInstructionCacheRange(u32 addr, u32 size) {
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Core::GetRunningCore().InvalidateCacheRange(addr, size);
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return RESULT_SUCCESS;
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@ -1952,8 +2076,8 @@ ResultCode SVC::ControlProcess(Handle process_handle, u32 process_OP, u32 varg2,
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return RESULT_SUCCESS;
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}
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case ControlProcessOP::PROCESSOP_SCHEDULE_THREADS_WITHOUT_TLS_MAGIC: {
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for (u32 i = 0; i < system.GetNumCores(); i++) {
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auto& thread_list = kernel.GetThreadManager(i).GetThreadList();
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for (u32 core_id = 0; core_id < system.GetNumCores(); core_id++) {
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auto& thread_list = kernel.GetThreadManager(core_id).GetThreadList();
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for (auto& thread : thread_list) {
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if (thread->owner_process.lock() != process) {
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continue;
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@ -2026,7 +2150,7 @@ const std::array<SVC::FunctionDef, 180> SVC::SVC_Table{{
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{0x26, nullptr, "SignalAndWait"},
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{0x27, &SVC::Wrap<&SVC::DuplicateHandle>, "DuplicateHandle"},
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{0x28, &SVC::Wrap<&SVC::GetSystemTick>, "GetSystemTick"},
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{0x29, nullptr, "GetHandleInfo"},
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{0x29, &SVC::Wrap<&SVC::GetHandleInfo>, "GetHandleInfo"},
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{0x2A, &SVC::Wrap<&SVC::GetSystemInfo>, "GetSystemInfo"},
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{0x2B, &SVC::Wrap<&SVC::GetProcessInfo>, "GetProcessInfo"},
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{0x2C, &SVC::Wrap<&SVC::GetThreadInfo>, "GetThreadInfo"},
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@ -2036,8 +2160,8 @@ const std::array<SVC::FunctionDef, 180> SVC::SVC_Table{{
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{0x30, nullptr, "SendSyncRequest3"},
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{0x31, nullptr, "SendSyncRequest4"},
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{0x32, &SVC::Wrap<&SVC::SendSyncRequest>, "SendSyncRequest"},
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{0x33, nullptr, "OpenProcess"},
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{0x34, nullptr, "OpenThread"},
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{0x33, &SVC::Wrap<&SVC::OpenProcess>, "OpenProcess"},
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{0x34, &SVC::Wrap<&SVC::OpenThread>, "OpenThread"},
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{0x35, &SVC::Wrap<&SVC::GetProcessId>, "GetProcessId"},
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{0x36, &SVC::Wrap<&SVC::GetProcessIdOfThread>, "GetProcessIdOfThread"},
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{0x37, &SVC::Wrap<&SVC::GetThreadId>, "GetThreadId"},
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@ -2086,7 +2210,7 @@ const std::array<SVC::FunctionDef, 180> SVC::SVC_Table{{
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{0x62, nullptr, "TerminateDebugProcess"},
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{0x63, nullptr, "GetProcessDebugEvent"},
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{0x64, nullptr, "ContinueDebugEvent"},
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{0x65, nullptr, "GetProcessList"},
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{0x65, &SVC::Wrap<&SVC::GetProcessList>, "GetProcessList"},
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{0x66, nullptr, "GetThreadList"},
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{0x67, nullptr, "GetDebugThreadContext"},
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{0x68, nullptr, "SetDebugThreadContext"},
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