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	Kernel: Introduce unique Object ids for debugging
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				@ -14,6 +14,8 @@
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namespace Kernel {
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					namespace Kernel {
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					unsigned int Object::next_object_id = 0;
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SharedPtr<Thread> g_main_thread = nullptr;
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					SharedPtr<Thread> g_main_thread = nullptr;
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HandleTable g_handle_table;
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					HandleTable g_handle_table;
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u64 g_program_id = 0;
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					u64 g_program_id = 0;
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@ -67,6 +67,9 @@ public:
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    virtual ~Object() {}
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					    virtual ~Object() {}
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    Handle GetHandle() const { return handle; }
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					    Handle GetHandle() const { return handle; }
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					    /// Returns a unique identifier for the object. For debugging purposes only.
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					    unsigned int GetObjectId() const { return object_id; }
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    virtual std::string GetTypeName() const { return "[BAD KERNEL OBJECT TYPE]"; }
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					    virtual std::string GetTypeName() const { return "[BAD KERNEL OBJECT TYPE]"; }
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    virtual std::string GetName() const { return "[UNKNOWN KERNEL OBJECT]"; }
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					    virtual std::string GetName() const { return "[UNKNOWN KERNEL OBJECT]"; }
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    virtual Kernel::HandleType GetHandleType() const = 0;
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					    virtual Kernel::HandleType GetHandleType() const = 0;
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@ -101,7 +104,10 @@ private:
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    friend void intrusive_ptr_add_ref(Object*);
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					    friend void intrusive_ptr_add_ref(Object*);
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    friend void intrusive_ptr_release(Object*);
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					    friend void intrusive_ptr_release(Object*);
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					    static unsigned int next_object_id;
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    unsigned int ref_count = 0;
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					    unsigned int ref_count = 0;
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					    unsigned int object_id = next_object_id++;
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};
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					};
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// Special functions used by boost::instrusive_ptr to do automatic ref-counting
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					// Special functions used by boost::instrusive_ptr to do automatic ref-counting
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@ -23,8 +23,8 @@ ResultCode SharedMemory::Map(VAddr address, MemoryPermission permissions,
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        MemoryPermission other_permissions) {
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					        MemoryPermission other_permissions) {
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    if (address < Memory::SHARED_MEMORY_VADDR || address >= Memory::SHARED_MEMORY_VADDR_END) {
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					    if (address < Memory::SHARED_MEMORY_VADDR || address >= Memory::SHARED_MEMORY_VADDR_END) {
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        LOG_ERROR(Kernel, "cannot map handle=0x%08X, address=0x%08X outside of shared mem bounds!",
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					        LOG_ERROR(Kernel, "cannot map id=%u, address=0x%08X outside of shared mem bounds!",
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                GetHandle(), address);
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					                GetObjectId(), address);
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        // TODO: Verify error code with hardware
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					        // TODO: Verify error code with hardware
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        return ResultCode(ErrorDescription::InvalidAddress, ErrorModule::Kernel,
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					        return ResultCode(ErrorDescription::InvalidAddress, ErrorModule::Kernel,
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                ErrorSummary::InvalidArgument, ErrorLevel::Permanent);
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					                ErrorSummary::InvalidArgument, ErrorLevel::Permanent);
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@ -41,7 +41,7 @@ ResultVal<u8*> SharedMemory::GetPointer(u32 offset) {
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    if (base_address != 0)
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					    if (base_address != 0)
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        return MakeResult<u8*>(Memory::GetPointer(base_address + offset));
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					        return MakeResult<u8*>(Memory::GetPointer(base_address + offset));
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    LOG_ERROR(Kernel_SVC, "memory block handle=0x%08X not mapped!", GetHandle());
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					    LOG_ERROR(Kernel_SVC, "memory block id=%u not mapped!", GetObjectId());
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    // TODO(yuriks): Verify error code.
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					    // TODO(yuriks): Verify error code.
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    return ResultCode(ErrorDescription::InvalidAddress, ErrorModule::Kernel,
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					    return ResultCode(ErrorDescription::InvalidAddress, ErrorModule::Kernel,
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            ErrorSummary::InvalidState, ErrorLevel::Permanent);
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					            ErrorSummary::InvalidState, ErrorLevel::Permanent);
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@ -326,11 +326,11 @@ static void DebugThreadQueue() {
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    if (!thread) {
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					    if (!thread) {
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        return;
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					        return;
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    }
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					    }
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    LOG_DEBUG(Kernel, "0x%02X 0x%08X (current)", thread->current_priority, GetCurrentThread()->GetHandle());
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					    LOG_DEBUG(Kernel, "0x%02X %u (current)", thread->current_priority, GetCurrentThread()->GetObjectId());
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    for (auto& t : thread_list) {
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					    for (auto& t : thread_list) {
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        s32 priority = thread_ready_queue.contains(t.get());
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					        s32 priority = thread_ready_queue.contains(t.get());
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        if (priority != -1) {
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					        if (priority != -1) {
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            LOG_DEBUG(Kernel, "0x%02X 0x%08X", priority, t->GetHandle());
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					            LOG_DEBUG(Kernel, "0x%02X %u", priority, t->GetObjectId());
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        }
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					        }
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    }
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					    }
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}
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					}
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@ -459,13 +459,13 @@ void Reschedule() {
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    HLE::g_reschedule = false;
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					    HLE::g_reschedule = false;
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    if (next != nullptr) {
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					    if (next != nullptr) {
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        LOG_TRACE(Kernel, "context switch 0x%08X -> 0x%08X", prev->GetHandle(), next->GetHandle());
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					        LOG_TRACE(Kernel, "context switch %u -> %u", prev->GetObjectId(), next->GetObjectId());
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        SwitchContext(next);
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					        SwitchContext(next);
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    } else {
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					    } else {
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        LOG_TRACE(Kernel, "cannot context switch from 0x%08X, no higher priority thread!", prev->GetHandle());
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					        LOG_TRACE(Kernel, "cannot context switch from %u, no higher priority thread!", prev->GetObjectId());
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        for (auto& thread : thread_list) {
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					        for (auto& thread : thread_list) {
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            LOG_TRACE(Kernel, "\thandle=0x%08X prio=0x%02X, status=0x%08X", thread->GetHandle(), 
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					            LOG_TRACE(Kernel, "\tid=%u prio=0x%02X, status=0x%08X", thread->GetObjectId(), 
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                      thread->current_priority, thread->status);
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					                      thread->current_priority, thread->status);
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        }
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					        }
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    }
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					    }
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