mirror of
https://github.com/Atmosphere-NX/Atmosphere.git
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262 lines
13 KiB
C++
262 lines
13 KiB
C++
/*
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* Copyright (c) 2018-2020 Atmosphère-NX
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2, as published by the Free Software Foundation.
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*
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* This program is distributed in the hope it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <mesosphere.hpp>
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namespace ams::kern::KDumpObject {
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namespace {
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constexpr const char * const ThreadStates[] = {
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[KThread::ThreadState_Initialized] = "Initialized",
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[KThread::ThreadState_Waiting] = "Waiting",
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[KThread::ThreadState_Runnable] = "Runnable",
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[KThread::ThreadState_Terminated] = "Terminated",
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};
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void DumpThread(KThread *thread) {
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if (KProcess *process = thread->GetOwnerProcess(); process != nullptr) {
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MESOSPHERE_RELEASE_LOG("Thread ID=%5lu pid=%3lu %-11s Pri=%2d %-11s KernelStack=%4zu/%4zu Run=%d Ideal=%d (%d) Affinity=%016lx (%016lx)\n",
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thread->GetId(), process->GetId(), process->GetName(), thread->GetPriority(), ThreadStates[thread->GetState()],
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thread->GetKernelStackUsage(), PageSize, thread->GetActiveCore(), thread->GetIdealVirtualCore(), thread->GetIdealPhysicalCore(),
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thread->GetVirtualAffinityMask(), thread->GetAffinityMask().GetAffinityMask());
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MESOSPHERE_RELEASE_LOG(" State: 0x%04x Suspend: 0x%04x Dpc: 0x%x\n", thread->GetRawState(), thread->GetSuspendFlags(), thread->GetDpc());
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MESOSPHERE_RELEASE_LOG(" TLS: %p (%p)\n", GetVoidPointer(thread->GetThreadLocalRegionAddress()), thread->GetThreadLocalRegionHeapAddress());
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} else {
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MESOSPHERE_RELEASE_LOG("Thread ID=%5lu pid=%3d %-11s Pri=%2d %-11s KernelStack=%4zu/%4zu Run=%d Ideal=%d (%d) Affinity=%016lx (%016lx)\n",
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thread->GetId(), -1, "(kernel)", thread->GetPriority(), ThreadStates[thread->GetState()],
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thread->GetKernelStackUsage(), PageSize, thread->GetActiveCore(), thread->GetIdealVirtualCore(), thread->GetIdealPhysicalCore(),
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thread->GetVirtualAffinityMask(), thread->GetAffinityMask().GetAffinityMask());
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}
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}
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void DumpThreadCallStack(KThread *thread) {
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if (KProcess *process = thread->GetOwnerProcess(); process != nullptr) {
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MESOSPHERE_RELEASE_LOG("Thread ID=%5lu pid=%3lu %-11s Pri=%2d %-11s KernelStack=%4zu/%4zu\n",
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thread->GetId(), process->GetId(), process->GetName(), thread->GetPriority(), ThreadStates[thread->GetState()], thread->GetKernelStackUsage(), PageSize);
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KDebug::PrintRegister(thread);
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KDebug::PrintBacktrace(thread);
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} else {
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MESOSPHERE_RELEASE_LOG("Thread ID=%5lu pid=%3d %-11s Pri=%2d %-11s KernelStack=%4zu/%4zu\n",
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thread->GetId(), -1, "(kernel)", thread->GetPriority(), ThreadStates[thread->GetState()], thread->GetKernelStackUsage(), PageSize);
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}
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}
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void DumpHandle(const KProcess::ListAccessor &accessor, KProcess *process) {
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MESOSPHERE_RELEASE_LOG("Process ID=%lu (%s)\n", process->GetId(), process->GetName());
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const auto end = accessor.end();
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const auto &handle_table = process->GetHandleTable();
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const size_t max_handles = handle_table.GetMaxCount();
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for (size_t i = 0; i < max_handles; ++i) {
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/* Get the object + handle. */
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ams::svc::Handle handle = ams::svc::InvalidHandle;
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KScopedAutoObject obj = handle_table.GetObjectByIndex(std::addressof(handle), i);
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if (obj.IsNotNull()) {
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if (auto *target = obj->DynamicCast<KServerSession *>(); target != nullptr) {
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MESOSPHERE_RELEASE_LOG("Handle %08x Obj=%p Ref=%d Type=%s Client=%p\n", handle, obj.GetPointerUnsafe(), obj->GetReferenceCount() - 1, obj->GetTypeName(), std::addressof(target->GetParent()->GetClientSession()));
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target->Dump();
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} else if (auto *target = obj->DynamicCast<KClientSession *>(); target != nullptr) {
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MESOSPHERE_RELEASE_LOG("Handle %08x Obj=%p Ref=%d Type=%s Server=%p\n", handle, obj.GetPointerUnsafe(), obj->GetReferenceCount() - 1, obj->GetTypeName(), std::addressof(target->GetParent()->GetServerSession()));
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} else if (auto *target = obj->DynamicCast<KThread *>(); target != nullptr) {
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KProcess *target_owner = target->GetOwnerProcess();
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const s32 owner_pid = target_owner != nullptr ? static_cast<s32>(target_owner->GetId()) : -1;
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MESOSPHERE_RELEASE_LOG("Handle %08x Obj=%p Ref=%d Type=%s ID=%d PID=%d\n", handle, obj.GetPointerUnsafe(), obj->GetReferenceCount() - 1, obj->GetTypeName(), static_cast<s32>(target->GetId()), owner_pid);
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} else if (auto *target = obj->DynamicCast<KProcess *>(); target != nullptr) {
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MESOSPHERE_RELEASE_LOG("Handle %08x Obj=%p Ref=%d Type=%s ID=%d\n", handle, obj.GetPointerUnsafe(), obj->GetReferenceCount() - 1, obj->GetTypeName(), static_cast<s32>(target->GetId()));
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} else if (auto *target = obj->DynamicCast<KSharedMemory *>(); target != nullptr) {
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/* Find the owner. */
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KProcess *target_owner = nullptr;
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for (auto it = accessor.begin(); it != end; ++it) {
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if (static_cast<KProcess *>(std::addressof(*it))->GetId() == target->GetOwnerProcessId()) {
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target_owner = static_cast<KProcess *>(std::addressof(*it));
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break;
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}
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}
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MESOSPHERE_ASSERT(target_owner != nullptr);
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MESOSPHERE_RELEASE_LOG("Handle %08x Obj=%p Ref=%d Type=%s Size=%zu KB OwnerPID=%d (%s)\n", handle, obj.GetPointerUnsafe(), obj->GetReferenceCount() - 1, obj->GetTypeName(), target->GetSize() / 1_KB, static_cast<s32>(target_owner->GetId()), target_owner->GetName());
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} else if (auto *target = obj->DynamicCast<KTransferMemory *>(); target != nullptr) {
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KProcess *target_owner = target->GetOwner();
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MESOSPHERE_RELEASE_LOG("Handle %08x Obj=%p Ref=%d Type=%s OwnerPID=%d (%s) OwnerAddress=%lx Size=%zu KB\n", handle, obj.GetPointerUnsafe(), obj->GetReferenceCount() - 1, obj->GetTypeName(), static_cast<s32>(target_owner->GetId()), target_owner->GetName(), GetInteger(target->GetSourceAddress()), target->GetSize() / 1_KB);
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} else if (auto *target = obj->DynamicCast<KCodeMemory *>(); target != nullptr) {
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KProcess *target_owner = target->GetOwner();
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MESOSPHERE_RELEASE_LOG("Handle %08x Obj=%p Ref=%d Type=%s OwnerPID=%d (%s) OwnerAddress=%lx Size=%zu KB\n", handle, obj.GetPointerUnsafe(), obj->GetReferenceCount() - 1, obj->GetTypeName(), static_cast<s32>(target_owner->GetId()), target_owner->GetName(), GetInteger(target->GetSourceAddress()), target->GetSize() / 1_KB);
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} else if (auto *target = obj->DynamicCast<KInterruptEvent *>(); target != nullptr) {
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MESOSPHERE_RELEASE_LOG("Handle %08x Obj=%p Ref=%d Type=%s irq=%d\n", handle, obj.GetPointerUnsafe(), obj->GetReferenceCount() - 1, obj->GetTypeName(), target->GetInterruptId());
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} else if (auto *target = obj->DynamicCast<KWritableEvent *>(); target != nullptr) {
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if (KEvent *event = target->GetParent(); event != nullptr) {
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MESOSPHERE_RELEASE_LOG("Handle %08x Obj=%p Ref=%d Type=%s Pair=%p\n", handle, obj.GetPointerUnsafe(), obj->GetReferenceCount() - 1, obj->GetTypeName(), std::addressof(event->GetReadableEvent()));
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} else {
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MESOSPHERE_RELEASE_LOG("Handle %08x Obj=%p Ref=%d Type=%s\n", handle, obj.GetPointerUnsafe(), obj->GetReferenceCount() - 1, obj->GetTypeName());
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}
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} else if (auto *target = obj->DynamicCast<KReadableEvent *>(); target != nullptr) {
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if (KEvent *event = target->GetParent(); event != nullptr) {
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MESOSPHERE_RELEASE_LOG("Handle %08x Obj=%p Ref=%d Type=%s Pair=%p\n", handle, obj.GetPointerUnsafe(), obj->GetReferenceCount() - 1, obj->GetTypeName(), std::addressof(event->GetWritableEvent()));
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} else {
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MESOSPHERE_RELEASE_LOG("Handle %08x Obj=%p Ref=%d Type=%s\n", handle, obj.GetPointerUnsafe(), obj->GetReferenceCount() - 1, obj->GetTypeName());
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}
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} else {
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MESOSPHERE_RELEASE_LOG("Handle %08x Obj=%p Ref=%d Type=%s\n", handle, obj.GetPointerUnsafe(), obj->GetReferenceCount() - 1, obj->GetTypeName());
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}
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if (auto *sync = obj->DynamicCast<KSynchronizationObject *>(); sync != nullptr) {
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sync->DumpWaiters();
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}
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}
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}
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MESOSPHERE_RELEASE_LOG("%zu(max %zu)/%zu used.\n", handle_table.GetCount(), max_handles, handle_table.GetTableSize());
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MESOSPHERE_RELEASE_LOG("\n\n");
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}
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void DumpProcess(KProcess *process) {
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MESOSPHERE_RELEASE_LOG("Process ID=%3lu index=%3zu State=%d (%s)\n", process->GetId(), process->GetSlabIndex(), process->GetState(), process->GetName());
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}
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}
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void DumpThread() {
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MESOSPHERE_RELEASE_LOG("Dump Thread\n");
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{
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/* Lock the list. */
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KThread::ListAccessor accessor;
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const auto end = accessor.end();
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/* Dump each thread. */
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for (auto it = accessor.begin(); it != end; ++it) {
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DumpThread(static_cast<KThread *>(std::addressof(*it)));
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}
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}
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MESOSPHERE_RELEASE_LOG("\n");
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}
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void DumpThread(u64 thread_id) {
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MESOSPHERE_RELEASE_LOG("Dump Thread\n");
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{
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/* Find and dump the target thread. */
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if (KThread *thread = KThread::GetThreadFromId(thread_id); thread != nullptr) {
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ON_SCOPE_EXIT { thread->Close(); };
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DumpThread(thread);
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}
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}
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MESOSPHERE_RELEASE_LOG("\n");
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}
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void DumpThreadCallStack() {
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MESOSPHERE_RELEASE_LOG("Dump Thread\n");
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{
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/* Lock the list. */
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KThread::ListAccessor accessor;
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const auto end = accessor.end();
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/* Dump each thread. */
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for (auto it = accessor.begin(); it != end; ++it) {
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DumpThreadCallStack(static_cast<KThread *>(std::addressof(*it)));
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}
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}
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MESOSPHERE_RELEASE_LOG("\n");
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}
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void DumpThreadCallStack(u64 thread_id) {
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MESOSPHERE_RELEASE_LOG("Dump Thread\n");
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{
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/* Find and dump the target thread. */
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if (KThread *thread = KThread::GetThreadFromId(thread_id); thread != nullptr) {
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ON_SCOPE_EXIT { thread->Close(); };
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DumpThreadCallStack(thread);
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}
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}
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MESOSPHERE_RELEASE_LOG("\n");
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}
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void DumpHandle() {
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MESOSPHERE_RELEASE_LOG("Dump Handle\n");
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{
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/* Lock the list. */
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KProcess::ListAccessor accessor;
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const auto end = accessor.end();
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/* Dump each process. */
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for (auto it = accessor.begin(); it != end; ++it) {
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DumpHandle(accessor, static_cast<KProcess *>(std::addressof(*it)));
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}
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}
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MESOSPHERE_RELEASE_LOG("\n");
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}
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void DumpHandle(u64 process_id) {
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MESOSPHERE_RELEASE_LOG("Dump Handle\n");
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{
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/* Find and dump the target process. */
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if (KProcess *process = KProcess::GetProcessFromId(process_id); process != nullptr) {
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ON_SCOPE_EXIT { process->Close(); };
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/* Lock the list. */
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KProcess::ListAccessor accessor;
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DumpHandle(accessor, process);
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}
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}
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MESOSPHERE_RELEASE_LOG("\n");
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}
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void DumpProcess() {
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MESOSPHERE_RELEASE_LOG("Dump Process\n");
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{
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/* Lock the list. */
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KProcess::ListAccessor accessor;
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const auto end = accessor.end();
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/* Dump each process. */
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for (auto it = accessor.begin(); it != end; ++it) {
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DumpProcess(static_cast<KProcess *>(std::addressof(*it)));
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}
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}
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MESOSPHERE_RELEASE_LOG("\n");
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}
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void DumpProcess(u64 process_id) {
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MESOSPHERE_RELEASE_LOG("Dump Process\n");
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{
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/* Find and dump the target process. */
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if (KProcess *process = KProcess::GetProcessFromId(process_id); process != nullptr) {
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ON_SCOPE_EXIT { process->Close(); };
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DumpProcess(process);
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}
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}
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MESOSPHERE_RELEASE_LOG("\n");
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}
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}
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