2012-01-13 09:22:31 +08:00
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//===------------------------- dynamic_cast_stress.cpp --------------------------===//
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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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#include <cassert>
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#include <tuple>
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#include <chrono>
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#include <iostream>
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template <std::size_t Indx, std::size_t Depth>
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struct C
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: public virtual C<Indx, Depth-1>,
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public virtual C<Indx+1, Depth-1>
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{
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virtual ~C() {}
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};
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template <std::size_t Indx>
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struct C<Indx, 0>
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{
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virtual ~C() {}
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};
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template <std::size_t Indx, std::size_t Depth>
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struct B
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: public virtual C<Indx, Depth-1>,
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public virtual C<Indx+1, Depth-1>
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{
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};
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template <class Indx, std::size_t Depth>
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struct makeB;
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template <std::size_t ...Indx, std::size_t Depth>
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struct makeB<std::__tuple_indices<Indx...>, Depth>
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: public B<Indx, Depth>...
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{
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};
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template <std::size_t Width, std::size_t Depth>
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struct A
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: public makeB<typename std::__make_tuple_indices<Width>::type, Depth>
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{
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};
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void test()
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{
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typedef std::chrono::high_resolution_clock Clock;
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typedef std::chrono::duration<double, std::micro> US;
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const std::size_t Width = 20;
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const std::size_t Depth = 7;
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A<Width, Depth> a;
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typedef B<Width/2, Depth> Destination;
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// typedef A<Width, Depth> Destination;
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auto t0 = Clock::now();
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Destination* b = dynamic_cast<Destination*>((C<Width/2, 0>*)&a);
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auto t1 = Clock::now();
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std::cout << US(t1-t0).count() << " microseconds\n";
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assert(b != 0);
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}
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int main()
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{
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test();
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}
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/*
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Timing results I'm seeing (median of 3 microseconds):
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libc++abi gcc's dynamic_cast
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2012-01-16 08:13:46 +08:00
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B<Width/2, Depth> -O3 50.694 93.190 libc++abi 84% faster
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B<Width/2, Depth> -Os 55.235 94.103 libc++abi 70% faster
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A<Width, Depth> -O3 14.895 33.134 libc++abi 122% faster
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A<Width, Depth> -Os 16.515 31.553 libc++abi 91% faster
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2012-01-13 09:22:31 +08:00
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*/
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