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LLVM uses .h as its extension for header files. Files renamed using: for f in libcxx/test/support/*.hpp; do git mv $f ${f%.hpp}.h; done References to the files updated using: for f in $(git diff master | grep 'rename from' | cut -f 3 -d ' '); do a=$(basename $f); echo $a; rg -l $a libcxx | xargs sed -i '' "s/$a/${a%.hpp}.h/"; done HPP include guards updated manually using: for f in $(git diff master | grep 'rename from' | cut -f 3 -d ' '); do echo ${f%.hpp}.h ; done | xargs mvim Differential Revision: https://reviews.llvm.org/D66104 git-svn-id: https://llvm.org/svn/llvm-project/libcxx/trunk@369481 91177308-0d34-0410-b5e6-96231b3b80d8
197 lines
5.1 KiB
C++
197 lines
5.1 KiB
C++
//===----------------------------------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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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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// void swap(function& other);
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#include <functional>
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#include <cassert>
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#include "count_new.h"
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#include "test_macros.h"
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class A {
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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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++count;
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data_[0] = j;
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}
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A(const A &a) {
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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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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 operator()() const { return -1; }
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int operator()(int, int) const { return -2; }
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int operator()(int, int, int) const { return -3; }
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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 g0() { return 0; }
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int g(int) { return 0; }
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int h(int) { return 1; }
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int g2(int, int) { return 2; }
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int g3(int, int, int) { return 3; }
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int main(int, char**) {
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assert(globalMemCounter.checkOutstandingNewEq(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(globalMemCounter.checkOutstandingNewEq(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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f1.swap(f2);
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assert(A::count == 2);
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assert(globalMemCounter.checkOutstandingNewEq(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(globalMemCounter.checkOutstandingNewEq(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(globalMemCounter.checkOutstandingNewEq(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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f1.swap(f2);
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assert(A::count == 1);
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assert(globalMemCounter.checkOutstandingNewEq(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(globalMemCounter.checkOutstandingNewEq(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(globalMemCounter.checkOutstandingNewEq(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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f1.swap(f2);
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assert(A::count == 1);
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assert(globalMemCounter.checkOutstandingNewEq(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(globalMemCounter.checkOutstandingNewEq(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(globalMemCounter.checkOutstandingNewEq(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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f1.swap(f2);
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assert(A::count == 0);
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assert(globalMemCounter.checkOutstandingNewEq(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(globalMemCounter.checkOutstandingNewEq(0));
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{
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std::function<int(int)> f1 = A(1);
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assert(A::count == 1);
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{
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DisableAllocationGuard guard;
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((void)guard);
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f1.swap(f1);
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}
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assert(A::count == 1);
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assert(f1.target<A>()->id() == 1);
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}
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assert(A::count == 0);
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assert(globalMemCounter.checkOutstandingNewEq(0));
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{
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std::function<int()> f1 = g0;
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DisableAllocationGuard guard;
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((void)guard);
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f1.swap(f1);
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assert(*f1.target<int (*)()>() == g0);
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}
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assert(globalMemCounter.checkOutstandingNewEq(0));
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{
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std::function<int(int, int)> f1 = g2;
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DisableAllocationGuard guard;
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((void)guard);
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f1.swap(f1);
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assert(*f1.target<int (*)(int, int)>() == g2);
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}
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assert(globalMemCounter.checkOutstandingNewEq(0));
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{
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std::function<int(int, int, int)> f1 = g3;
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DisableAllocationGuard guard;
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((void)guard);
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f1.swap(f1);
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assert(*f1.target<int (*)(int, int, int)>() == g3);
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}
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assert(globalMemCounter.checkOutstandingNewEq(0));
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{
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std::function<int()> f1 = A(1);
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assert(A::count == 1);
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DisableAllocationGuard guard;
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((void)guard);
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f1.swap(f1);
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assert(A::count == 1);
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assert(f1.target<A>()->id() == 1);
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}
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assert(globalMemCounter.checkOutstandingNewEq(0));
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assert(A::count == 0);
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{
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std::function<int(int, int)> f1 = A(2);
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assert(A::count == 1);
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DisableAllocationGuard guard;
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((void)guard);
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f1.swap(f1);
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assert(A::count == 1);
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assert(f1.target<A>()->id() == 2);
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}
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assert(globalMemCounter.checkOutstandingNewEq(0));
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assert(A::count == 0);
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{
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std::function<int(int, int, int)> f1 = A(3);
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assert(A::count == 1);
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DisableAllocationGuard guard;
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((void)guard);
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f1.swap(f1);
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assert(A::count == 1);
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assert(f1.target<A>()->id() == 3);
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}
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assert(globalMemCounter.checkOutstandingNewEq(0));
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assert(A::count == 0);
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return 0;
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}
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