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kernel/svc: Implement svcGetThreadList

Similarly like svcGetProcessList, this retrieves the list of threads
from the current process. In the kernel itself, a process instance
maintains a list of threads, which are used within this function.

Threads are registered to a process' thread list at thread
initialization, and unregistered from the list upon thread destruction
(if said thread has a non-null owning process).

We assert on the debug event case, as we currently don't implement
kernel debug objects.
This commit is contained in:
Lioncash 2019-03-20 18:53:48 -04:00
parent cb2bce8006
commit 28719ee3b4
4 changed files with 70 additions and 1 deletions

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@ -80,6 +80,14 @@ u64 Process::GetTotalPhysicalMemoryUsed() const {
return vm_manager.GetCurrentHeapSize() + main_thread_stack_size + code_memory_size; return vm_manager.GetCurrentHeapSize() + main_thread_stack_size + code_memory_size;
} }
void Process::RegisterThread(const Thread* thread) {
thread_list.push_back(thread);
}
void Process::UnregisterThread(const Thread* thread) {
thread_list.remove(thread);
}
ResultCode Process::ClearSignalState() { ResultCode Process::ClearSignalState() {
if (status == ProcessStatus::Exited) { if (status == ProcessStatus::Exited) {
LOG_ERROR(Kernel, "called on a terminated process instance."); LOG_ERROR(Kernel, "called on a terminated process instance.");

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@ -7,6 +7,7 @@
#include <array> #include <array>
#include <bitset> #include <bitset>
#include <cstddef> #include <cstddef>
#include <list>
#include <string> #include <string>
#include <vector> #include <vector>
#include <boost/container/static_vector.hpp> #include <boost/container/static_vector.hpp>
@ -189,6 +190,19 @@ public:
/// Retrieves the total physical memory used by this process in bytes. /// Retrieves the total physical memory used by this process in bytes.
u64 GetTotalPhysicalMemoryUsed() const; u64 GetTotalPhysicalMemoryUsed() const;
/// Gets the list of all threads created with this process as their owner.
const std::list<const Thread*>& GetThreadList() const {
return thread_list;
}
/// Registers a thread as being created under this process,
/// adding it to this process' thread list.
void RegisterThread(const Thread* thread);
/// Unregisters a thread from this process, removing it
/// from this process' thread list.
void UnregisterThread(const Thread* thread);
/// Clears the signaled state of the process if and only if it's signaled. /// Clears the signaled state of the process if and only if it's signaled.
/// ///
/// @pre The process must not be already terminated. If this is called on a /// @pre The process must not be already terminated. If this is called on a
@ -308,6 +322,9 @@ private:
/// Random values for svcGetInfo RandomEntropy /// Random values for svcGetInfo RandomEntropy
std::array<u64, RANDOM_ENTROPY_SIZE> random_entropy; std::array<u64, RANDOM_ENTROPY_SIZE> random_entropy;
/// List of threads that are running with this process as their owner.
std::list<const Thread*> thread_list;
/// System context /// System context
Core::System& system; Core::System& system;

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@ -2020,6 +2020,46 @@ static ResultCode GetProcessList(u32* out_num_processes, VAddr out_process_ids,
return RESULT_SUCCESS; return RESULT_SUCCESS;
} }
ResultCode GetThreadList(u32* out_num_threads, VAddr out_thread_ids, u32 out_thread_ids_size,
Handle debug_handle) {
// TODO: Handle this case when debug events are supported.
UNIMPLEMENTED_IF(debug_handle != InvalidHandle);
LOG_DEBUG(Kernel_SVC, "called. out_thread_ids=0x{:016X}, out_thread_ids_size={}",
out_thread_ids, out_thread_ids_size);
// If the size is negative or larger than INT32_MAX / sizeof(u64)
if ((out_thread_ids_size & 0xF0000000) != 0) {
LOG_ERROR(Kernel_SVC, "Supplied size outside [0, 0x0FFFFFFF] range. size={}",
out_thread_ids_size);
return ERR_OUT_OF_RANGE;
}
const auto* const current_process = Core::System::GetInstance().Kernel().CurrentProcess();
const auto& vm_manager = current_process->VMManager();
const auto total_copy_size = out_thread_ids_size * sizeof(u64);
if (out_thread_ids_size > 0 &&
!vm_manager.IsWithinAddressSpace(out_thread_ids, total_copy_size)) {
LOG_ERROR(Kernel_SVC, "Address range outside address space. begin=0x{:016X}, end=0x{:016X}",
out_thread_ids, out_thread_ids + total_copy_size);
return ERR_INVALID_ADDRESS_STATE;
}
const auto& thread_list = current_process->GetThreadList();
const auto num_threads = thread_list.size();
const auto copy_amount = std::min(std::size_t{out_thread_ids_size}, num_threads);
auto list_iter = thread_list.cbegin();
for (std::size_t i = 0; i < copy_amount; ++i, ++list_iter) {
Memory::Write64(out_thread_ids, (*list_iter)->GetThreadID());
out_thread_ids += sizeof(u64);
}
*out_num_threads = static_cast<u32>(num_threads);
return RESULT_SUCCESS;
}
namespace { namespace {
struct FunctionDef { struct FunctionDef {
using Func = void(); using Func = void();
@ -2133,7 +2173,7 @@ static const FunctionDef SVC_Table[] = {
{0x63, nullptr, "GetDebugEvent"}, {0x63, nullptr, "GetDebugEvent"},
{0x64, nullptr, "ContinueDebugEvent"}, {0x64, nullptr, "ContinueDebugEvent"},
{0x65, SvcWrap<GetProcessList>, "GetProcessList"}, {0x65, SvcWrap<GetProcessList>, "GetProcessList"},
{0x66, nullptr, "GetThreadList"}, {0x66, SvcWrap<GetThreadList>, "GetThreadList"},
{0x67, nullptr, "GetDebugThreadContext"}, {0x67, nullptr, "GetDebugThreadContext"},
{0x68, nullptr, "SetDebugThreadContext"}, {0x68, nullptr, "SetDebugThreadContext"},
{0x69, nullptr, "QueryDebugProcessMemory"}, {0x69, nullptr, "QueryDebugProcessMemory"},

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@ -62,6 +62,8 @@ void Thread::Stop() {
} }
wait_objects.clear(); wait_objects.clear();
owner_process->UnregisterThread(this);
// Mark the TLS slot in the thread's page as free. // Mark the TLS slot in the thread's page as free.
owner_process->FreeTLSSlot(tls_address); owner_process->FreeTLSSlot(tls_address);
} }
@ -202,6 +204,8 @@ ResultVal<SharedPtr<Thread>> Thread::Create(KernelCore& kernel, std::string name
thread->scheduler->AddThread(thread); thread->scheduler->AddThread(thread);
thread->tls_address = thread->owner_process->MarkNextAvailableTLSSlotAsUsed(*thread); thread->tls_address = thread->owner_process->MarkNextAvailableTLSSlotAsUsed(*thread);
thread->owner_process->RegisterThread(thread.get());
// TODO(peachum): move to ScheduleThread() when scheduler is added so selected core is used // TODO(peachum): move to ScheduleThread() when scheduler is added so selected core is used
// to initialize the context // to initialize the context
ResetThreadContext(thread->context, stack_top, entry_point, arg); ResetThreadContext(thread->context, stack_top, entry_point, arg);