forked from OSchip/llvm-project
				
			
		
			
				
	
	
		
			136 lines
		
	
	
		
			3.1 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			136 lines
		
	
	
		
			3.1 KiB
		
	
	
	
		
			C++
		
	
	
	
//===----------------------------------------------------------------------===//
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//
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//                     The LLVM Compiler Infrastructure
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//
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// This file is dual licensed under the MIT and the University of Illinois Open
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// Source Licenses. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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// <functional>
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// class function<R(ArgTypes...)>
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// template <MoveConstructible  R, MoveConstructible ... ArgTypes>
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//   void swap(function<R(ArgTypes...)>&, function<R(ArgTypes...)>&);
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#include <functional>
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#include <new>
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#include <cstdlib>
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#include <cassert>
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int new_called = 0;
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void* operator new(std::size_t s) throw(std::bad_alloc)
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{
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    ++new_called;
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    return std::malloc(s);
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}
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void  operator delete(void* p) throw()
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{
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    --new_called;
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    std::free(p);
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}
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class A
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{
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    int data_[10];
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public:
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    static int count;
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    explicit A(int j)
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    {
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        ++count;
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        data_[0] = j;
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    }
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    A(const A& a)
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    {
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        ++count;
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        for (int i = 0; i < 10; ++i)
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            data_[i] = a.data_[i];
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    }
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    ~A() {--count;}
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    int operator()(int i) const
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    {
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        for (int j = 0; j < 10; ++j)
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            i += data_[j];
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        return i;
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    }
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    int id() const {return data_[0];}
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};
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int A::count = 0;
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int g(int) {return 0;}
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int h(int) {return 1;}
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int main()
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{
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    assert(new_called == 0);
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    {
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    std::function<int(int)> f1 = A(1);
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    std::function<int(int)> f2 = A(2);
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    assert(A::count == 2);
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    assert(new_called == 2);
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    assert(f1.target<A>()->id() == 1);
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    assert(f2.target<A>()->id() == 2);
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    swap(f1, f2);
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    assert(A::count == 2);
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    assert(new_called == 2);
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    assert(f1.target<A>()->id() == 2);
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    assert(f2.target<A>()->id() == 1);
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    }
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    assert(A::count == 0);
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    assert(new_called == 0);
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    {
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    std::function<int(int)> f1 = A(1);
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    std::function<int(int)> f2 = g;
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    assert(A::count == 1);
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    assert(new_called == 1);
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    assert(f1.target<A>()->id() == 1);
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    assert(*f2.target<int(*)(int)>() == g);
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    swap(f1, f2);
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    assert(A::count == 1);
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    assert(new_called == 1);
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    assert(*f1.target<int(*)(int)>() == g);
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    assert(f2.target<A>()->id() == 1);
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    }
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    assert(A::count == 0);
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    assert(new_called == 0);
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    {
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    std::function<int(int)> f1 = g;
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    std::function<int(int)> f2 = A(1);
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    assert(A::count == 1);
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    assert(new_called == 1);
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    assert(*f1.target<int(*)(int)>() == g);
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    assert(f2.target<A>()->id() == 1);
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    swap(f1, f2);
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    assert(A::count == 1);
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    assert(new_called == 1);
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    assert(f1.target<A>()->id() == 1);
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    assert(*f2.target<int(*)(int)>() == g);
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    }
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    assert(A::count == 0);
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    assert(new_called == 0);
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    {
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    std::function<int(int)> f1 = g;
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    std::function<int(int)> f2 = h;
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    assert(A::count == 0);
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    assert(new_called == 0);
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    assert(*f1.target<int(*)(int)>() == g);
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    assert(*f2.target<int(*)(int)>() == h);
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    swap(f1, f2);
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    assert(A::count == 0);
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    assert(new_called == 0);
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    assert(*f1.target<int(*)(int)>() == h);
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    assert(*f2.target<int(*)(int)>() == g);
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    }
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    assert(A::count == 0);
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    assert(new_called == 0);
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}
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