2010-05-11 21:42:16 +02:00
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//===----------------------------------------------------------------------===//
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//
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2010-05-11 23:36:01 +02:00
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// The LLVM Compiler Infrastructure
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2010-05-11 21:42:16 +02:00
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//
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2010-11-16 23:09:02 +01:00
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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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2010-05-11 21:42:16 +02:00
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//
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//===----------------------------------------------------------------------===//
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// <unordered_set>
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// template <class Key, class Hash, class Pred, class Alloc>
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// bool
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// operator==(const unordered_multiset<Key, Hash, Pred, Alloc>& x,
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// const unordered_multiset<Key, Hash, Pred, Alloc>& y);
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//
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// template <class Key, class Hash, class Pred, class Alloc>
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// bool
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// operator!=(const unordered_multiset<Key, Hash, Pred, Alloc>& x,
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// const unordered_multiset<Key, Hash, Pred, Alloc>& y);
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#include <unordered_set>
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#include <cassert>
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int main()
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{
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{
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typedef std::unordered_multiset<int> C;
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typedef int P;
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P a[] =
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{
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P(10),
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P(20),
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P(20),
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P(30),
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P(40),
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P(50),
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P(50),
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P(50),
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P(60),
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P(70),
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P(80)
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};
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const C c1(std::begin(a), std::end(a));
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const C c2;
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assert(!(c1 == c2));
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assert( (c1 != c2));
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}
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{
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typedef std::unordered_multiset<int> C;
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typedef int P;
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P a[] =
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{
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P(10),
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P(20),
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P(20),
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P(30),
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P(40),
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P(50),
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P(50),
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P(50),
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P(60),
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P(70),
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P(80)
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};
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const C c1(std::begin(a), std::end(a));
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const C c2 = c1;
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assert( (c1 == c2));
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assert(!(c1 != c2));
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}
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{
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typedef std::unordered_multiset<int> C;
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typedef int P;
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P a[] =
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{
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P(10),
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P(20),
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P(20),
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P(30),
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P(40),
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P(50),
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P(50),
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P(50),
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P(60),
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P(70),
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P(80)
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};
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C c1(std::begin(a), std::end(a));
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C c2 = c1;
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c2.rehash(30);
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assert( (c1 == c2));
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assert(!(c1 != c2));
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c2.insert(P(90));
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assert(!(c1 == c2));
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assert( (c1 != c2));
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c1.insert(P(90));
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assert( (c1 == c2));
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assert(!(c1 != c2));
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}
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}
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