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	 0ff29349e6
			
		
	
	
		0ff29349e6
		
	
	
	
	
		
			
			This change introduces a very basic GC graph dumper. The `dump_graph()`
function outputs JSON data that contains information about all nodes in
the graph, including their class types and edges.
Root nodes will have a property indicating their root type or source
location if the root is captured by a SafeFunction. It would be useful
to add source location for other types of roots in the future.
Output JSON dump have following format:
```json
    "4908721208": {
        "class_name": "Accessor",
        "edges": [
            "4909298232",
            "4909297976"
        ]
    },
    "4907520440": {
        "root": "SafeFunction Optional Optional.h:137",
        "class_name": "Realm",
        "edges": [
            "4908269624",
            "4924821560",
            "4908409240",
            "4908483960",
            "4924527672"
        ]
    },
    "4908251320": {
        "class_name": "CSSStyleRule",
        "edges": [
            "4908302648",
            "4925101656",
            "4908251192"
        ]
    },
```
		
	
			
		
			
				
	
	
		
			255 lines
		
	
	
	
		
			7.7 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			255 lines
		
	
	
	
		
			7.7 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| /*
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|  * Copyright (c) 2016 Apple Inc. All rights reserved.
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|  * Copyright (c) 2021, Gunnar Beutner <gbeutner@serenityos.org>
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|  * Copyright (c) 2022, Andreas Kling <kling@serenityos.org>
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|  *
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|  * SPDX-License-Identifier: BSD-2-Clause
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|  */
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| 
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| #pragma once
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| 
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| #include <AK/Function.h>
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| #include <AK/SourceLocation.h>
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| 
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| namespace JS {
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| 
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| void register_safe_function_closure(void*, size_t, SourceLocation*);
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| void unregister_safe_function_closure(void*, size_t, SourceLocation*);
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| 
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| template<typename>
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| class SafeFunction;
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| 
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| template<typename Out, typename... In>
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| class SafeFunction<Out(In...)> {
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|     AK_MAKE_NONCOPYABLE(SafeFunction);
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| 
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| public:
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|     SafeFunction() = default;
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|     SafeFunction(nullptr_t)
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|     {
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|     }
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| 
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|     ~SafeFunction()
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|     {
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|         clear(false);
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|     }
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| 
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|     void register_closure()
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|     {
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|         if (!m_size)
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|             return;
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|         if (auto* wrapper = callable_wrapper())
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|             register_safe_function_closure(wrapper, m_size, &m_location);
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|     }
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| 
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|     void unregister_closure()
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|     {
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|         if (!m_size)
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|             return;
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|         if (auto* wrapper = callable_wrapper())
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|             unregister_safe_function_closure(wrapper, m_size, &m_location);
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|     }
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| 
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|     template<typename CallableType>
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|     SafeFunction(CallableType&& callable, SourceLocation location = SourceLocation::current())
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|     requires((AK::IsFunctionObject<CallableType> && IsCallableWithArguments<CallableType, Out, In...> && !IsSame<RemoveCVReference<CallableType>, SafeFunction>))
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|         : m_location(location)
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|     {
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|         init_with_callable(forward<CallableType>(callable), CallableKind::FunctionObject);
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|     }
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| 
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|     template<typename FunctionType>
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|     SafeFunction(FunctionType f, SourceLocation location = SourceLocation::current())
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|     requires((AK::IsFunctionPointer<FunctionType> && IsCallableWithArguments<RemovePointer<FunctionType>, Out, In...> && !IsSame<RemoveCVReference<FunctionType>, SafeFunction>))
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|         : m_location(location)
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|     {
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|         init_with_callable(move(f), CallableKind::FunctionPointer);
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|     }
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| 
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|     SafeFunction(SafeFunction&& other)
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|         : m_location(move(other.m_location))
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|     {
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|         move_from(move(other));
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|     }
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| 
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|     // Note: Despite this method being const, a mutable lambda _may_ modify its own captures.
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|     Out operator()(In... in) const
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|     {
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|         auto* wrapper = callable_wrapper();
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|         VERIFY(wrapper);
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|         ++m_call_nesting_level;
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|         ScopeGuard guard([this] {
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|             if (--m_call_nesting_level == 0 && m_deferred_clear)
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|                 const_cast<SafeFunction*>(this)->clear(false);
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|         });
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|         return wrapper->call(forward<In>(in)...);
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|     }
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| 
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|     explicit operator bool() const { return !!callable_wrapper(); }
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| 
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|     SafeFunction& operator=(nullptr_t)
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|     {
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|         clear();
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|         return *this;
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|     }
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| 
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|     SafeFunction& operator=(SafeFunction&& other)
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|     {
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|         if (this != &other) {
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|             clear();
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|             move_from(move(other));
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|         }
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|         return *this;
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|     }
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| 
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| private:
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|     enum class CallableKind {
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|         FunctionPointer,
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|         FunctionObject,
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|     };
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| 
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|     class CallableWrapperBase {
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|     public:
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|         virtual ~CallableWrapperBase() = default;
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|         // Note: This is not const to allow storing mutable lambdas.
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|         virtual Out call(In...) = 0;
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|         virtual void destroy() = 0;
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|         virtual void init_and_swap(u8*, size_t) = 0;
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|     };
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| 
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|     template<typename CallableType>
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|     class CallableWrapper final : public CallableWrapperBase {
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|         AK_MAKE_NONMOVABLE(CallableWrapper);
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|         AK_MAKE_NONCOPYABLE(CallableWrapper);
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| 
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|     public:
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|         explicit CallableWrapper(CallableType&& callable)
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|             : m_callable(move(callable))
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|         {
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|         }
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| 
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|         Out call(In... in) final override
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|         {
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|             return m_callable(forward<In>(in)...);
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|         }
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| 
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|         void destroy() final override
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|         {
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|             delete this;
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|         }
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| 
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|         // NOLINTNEXTLINE(readability-non-const-parameter) False positive; destination is used in a placement new expression
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|         void init_and_swap(u8* destination, size_t size) final override
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|         {
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|             VERIFY(size >= sizeof(CallableWrapper));
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|             new (destination) CallableWrapper { move(m_callable) };
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|         }
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| 
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|     private:
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|         CallableType m_callable;
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|     };
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| 
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|     enum class FunctionKind {
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|         NullPointer,
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|         Inline,
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|         Outline,
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|     };
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| 
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|     CallableWrapperBase* callable_wrapper() const
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|     {
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|         switch (m_kind) {
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|         case FunctionKind::NullPointer:
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|             return nullptr;
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|         case FunctionKind::Inline:
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|             return bit_cast<CallableWrapperBase*>(&m_storage);
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|         case FunctionKind::Outline:
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|             return *bit_cast<CallableWrapperBase**>(&m_storage);
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|         default:
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|             VERIFY_NOT_REACHED();
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|         }
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|     }
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| 
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|     void clear(bool may_defer = true)
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|     {
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|         bool called_from_inside_function = m_call_nesting_level > 0;
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|         // NOTE: This VERIFY could fail because a Function is destroyed from within itself.
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|         VERIFY(may_defer || !called_from_inside_function);
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|         if (called_from_inside_function && may_defer) {
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|             m_deferred_clear = true;
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|             return;
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|         }
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|         m_deferred_clear = false;
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|         auto* wrapper = callable_wrapper();
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|         if (m_kind == FunctionKind::Inline) {
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|             VERIFY(wrapper);
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|             wrapper->~CallableWrapperBase();
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|             unregister_closure();
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|         } else if (m_kind == FunctionKind::Outline) {
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|             VERIFY(wrapper);
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|             wrapper->destroy();
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|             unregister_closure();
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|         }
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|         m_kind = FunctionKind::NullPointer;
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|     }
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| 
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|     template<typename Callable>
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|     void init_with_callable(Callable&& callable, CallableKind kind)
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|     {
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|         VERIFY(m_call_nesting_level == 0);
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|         VERIFY(m_kind == FunctionKind::NullPointer);
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|         using WrapperType = CallableWrapper<Callable>;
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|         if constexpr (sizeof(WrapperType) > inline_capacity) {
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|             *bit_cast<CallableWrapperBase**>(&m_storage) = new WrapperType(forward<Callable>(callable));
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|             m_kind = FunctionKind::Outline;
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|         } else {
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|             new (m_storage) WrapperType(forward<Callable>(callable));
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|             m_kind = FunctionKind::Inline;
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|         }
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|         if (kind == CallableKind::FunctionObject)
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|             m_size = sizeof(WrapperType);
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|         else
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|             m_size = 0;
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|         register_closure();
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|     }
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| 
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|     void move_from(SafeFunction&& other)
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|     {
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|         VERIFY(m_call_nesting_level == 0);
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|         VERIFY(other.m_call_nesting_level == 0);
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|         VERIFY(m_kind == FunctionKind::NullPointer);
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|         auto* other_wrapper = other.callable_wrapper();
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|         m_size = other.m_size;
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|         AK::TypedTransfer<SourceLocation>::move(&m_location, &other.m_location, 1);
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|         switch (other.m_kind) {
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|         case FunctionKind::NullPointer:
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|             break;
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|         case FunctionKind::Inline:
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|             other.unregister_closure();
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|             other_wrapper->init_and_swap(m_storage, inline_capacity);
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|             m_kind = FunctionKind::Inline;
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|             register_closure();
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|             break;
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|         case FunctionKind::Outline:
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|             other.unregister_closure();
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|             *bit_cast<CallableWrapperBase**>(&m_storage) = other_wrapper;
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|             m_kind = FunctionKind::Outline;
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|             register_closure();
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|             break;
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|         default:
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|             VERIFY_NOT_REACHED();
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|         }
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|         other.m_kind = FunctionKind::NullPointer;
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|     }
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| 
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|     FunctionKind m_kind { FunctionKind::NullPointer };
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|     bool m_deferred_clear { false };
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|     mutable Atomic<u16> m_call_nesting_level { 0 };
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|     size_t m_size { 0 };
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|     SourceLocation m_location;
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| 
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|     // Empirically determined to fit most lambdas and functions.
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|     static constexpr size_t inline_capacity = 4 * sizeof(void*);
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|     alignas(max(alignof(CallableWrapperBase), alignof(CallableWrapperBase*))) u8 m_storage[inline_capacity];
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| };
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| 
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| }
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