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582 lines
18 KiB
C++
582 lines
18 KiB
C++
/******************************************************************************
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The MIT License(MIT)
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Embedded Template Library.
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https://github.com/ETLCPP/etl
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https://www.etlcpp.com
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Copyright(c) 2018 jwellbelove
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files(the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and / or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions :
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The above copyright notice and this permission notice shall be included in all
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copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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SOFTWARE.
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******************************************************************************/
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#include "UnitTest++.h"
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#undef min
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#undef max
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#include "etl/stl/alternate/algorithm.h"
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#include <algorithm>
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#include <vector>
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#include <list>
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namespace
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{
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int dataEQ[10] = { 1, 1, 3, 3, 5, 5, 7, 7, 9, 9 };
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std::list<int> dataEQL = { 1, 1, 3, 3, 5, 5, 7, 7, 9, 9 };
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int dataS[10] = { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10 };
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std::list<int> dataSL = { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10 };
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int dataA[10] = { 2, 1, 4, 3, 6, 5, 8, 7, 10, 9 };
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typedef std::vector<int> Vector;
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Vector dataV = { 2, 1, 4, 3, 6, 5, 8, 7, 10, 9 };
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typedef std::list<int> List;
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List dataL = { 2, 1, 4, 3, 6, 5, 8, 7, 10, 9 };
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class Data
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{
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public:
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Data()
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: a(0),
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b(0)
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{
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}
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Data(int a, int b)
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: a(a),
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b(b)
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{
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}
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int a;
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int b;
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};
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Data dataD[10] = { Data(1, 2), Data(2, 1), Data(3, 4), Data(4, 3), Data(5, 6), Data(6, 5), Data(7, 8), Data(8, 7), Data(9, 10), Data(10, 9) };
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bool operator ==(const Data& lhs, const Data& rhs)
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{
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return (lhs.a == rhs.a) && (lhs.b == rhs.b);
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}
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struct StructDataPredicate
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{
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bool operator ()(const Data& lhs, const Data& rhs) const
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{
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return lhs.a < rhs.a;
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}
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};
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struct StructDataEquality
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{
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bool operator ()(const Data& lhs, const Data& rhs) const
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{
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return lhs.a == rhs.a;
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}
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};
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std::ostream& operator << (std::ostream& os, const Data& data_)
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{
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os << data_.a << "," << data_.b;
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return os;
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}
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struct Greater : public std::binary_function<int, int, bool>
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{
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bool operator()(int a, int b) const
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{
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return a > b;
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}
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};
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SUITE(test_no_stl_algorithm)
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{
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//*************************************************************************
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TEST(distance_non_random)
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{
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ptrdiff_t d1 = std::distance(dataL.begin(), dataL.end());
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ptrdiff_t d2 = etlstd::distance(dataL.begin(), dataL.end());
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CHECK_EQUAL(d1, d2);
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}
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//*************************************************************************
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TEST(distance_random)
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{
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ptrdiff_t d1 = std::distance(dataV.begin(), dataV.end());
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ptrdiff_t d2 = etlstd::distance(dataV.begin(), dataV.end());
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CHECK_EQUAL(d1, d2);
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}
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//*************************************************************************
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TEST(advance_non_random)
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{
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List::const_iterator itr1 = dataL.begin();
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List::const_iterator itr2 = dataL.begin();
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std::advance(itr1, 4);
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std::advance(itr2, 4);
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CHECK_EQUAL(*itr1, *itr2);
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}
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//*************************************************************************
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TEST(advance_random)
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{
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Vector::const_iterator itr1 = dataV.begin();
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Vector::const_iterator itr2 = dataV.begin();
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std::advance(itr1, 4);
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std::advance(itr2, 4);
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CHECK_EQUAL(*itr1, *itr2);
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}
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//*************************************************************************
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TEST(min)
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{
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int a = 1;
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int b = 2;
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CHECK_EQUAL((std::min(a, b)), (etlstd::min(a, b)));
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CHECK_EQUAL((std::min(b, a)), (etlstd::min(b, a)));
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}
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//*************************************************************************
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TEST(min_compare)
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{
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int a = 1;
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int b = 2;
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CHECK_EQUAL((std::min(a, b, Greater())), (etlstd::min(a, b, Greater())));
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CHECK_EQUAL((std::min(b, a, Greater())), (etlstd::min(b, a, Greater())));
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}
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//*************************************************************************
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TEST(max)
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{
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int a = 1;
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int b = 2;
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CHECK_EQUAL((std::max(a, b)), (etlstd::max(a, b)));
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CHECK_EQUAL((std::max(b, a)), (etlstd::max(b, a)));
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}
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//*************************************************************************
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TEST(max_compare)
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{
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int a = 1;
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int b = 2;
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CHECK_EQUAL((std::max(a, b, Greater())), (etlstd::max(a, b, Greater())));
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CHECK_EQUAL((std::max(b, a, Greater())), (etlstd::max(b, a, Greater())));
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}
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//*************************************************************************
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TEST(copy_pod_pointer)
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{
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int data1[10];
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int data2[10];
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std::copy(std::begin(dataA), std::end(dataA), std::begin(data1));
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etlstd::copy(std::begin(dataA), std::end(dataA), std::begin(data2));
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bool isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
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CHECK(isEqual);
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}
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//*************************************************************************
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TEST(copy_non_pod_pointer)
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{
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Data data1[10];
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Data data2[10];
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std::copy(std::begin(dataD), std::end(dataD), std::begin(data1));
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etlstd::copy(std::begin(dataD), std::end(dataD), std::begin(data2));
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bool isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
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CHECK(isEqual);
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}
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//*************************************************************************
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TEST(copy_non_random_iterator)
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{
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List data1(dataL.size());
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List data2(dataL.size());
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std::copy(std::begin(dataA), std::end(dataA), std::begin(data1));
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etlstd::copy(std::begin(dataA), std::end(dataA), std::begin(data2));
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bool isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
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CHECK(isEqual);
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}
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//*************************************************************************
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TEST(copy_n_pod_pointer)
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{
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int data1[10];
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int data2[10];
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std::copy_n(std::begin(dataA), 10, std::begin(data1));
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etlstd::copy_n(std::begin(dataA), 10, std::begin(data2));
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bool isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
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CHECK(isEqual);
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}
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//*************************************************************************
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TEST(copy_n_non_pod_pointer)
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{
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Data data1[10];
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Data data2[10];
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std::copy_n(std::begin(dataD), 10, std::begin(data1));
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etlstd::copy_n(std::begin(dataD), 10, std::begin(data2));
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bool isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
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CHECK(isEqual);
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}
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//*************************************************************************
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TEST(copy_n_non_random_iterator)
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{
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List data1(dataL.size());
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List data2(dataL.size());
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std::copy_n(std::begin(dataA), 10, std::begin(data1));
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etlstd::copy_n(std::begin(dataA), 10, std::begin(data2));
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bool isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
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CHECK(isEqual);
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}
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//*************************************************************************
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TEST(copy_backward_pod_pointer)
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{
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int data1[10];
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int data2[10];
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std::copy_backward(std::begin(dataA), std::end(dataA), std::end(data1));
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etlstd::copy_backward(std::begin(dataA), std::end(dataA), std::end(data2));
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bool isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
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CHECK(isEqual);
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}
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//*************************************************************************
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TEST(copy_backward_non_pod_pointer)
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{
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Data data1[10];
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Data data2[10];
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std::copy_backward(std::begin(dataD), std::end(dataD), std::end(data1));
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etlstd::copy_backward(std::begin(dataD), std::end(dataD), std::end(data2));
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bool isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
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CHECK(isEqual);
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}
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//*************************************************************************
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TEST(copy_backward_non_random_iterator)
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{
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List data1(dataL.size());
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List data2(dataL.size());
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std::copy_backward(std::begin(dataA), std::end(dataA), std::end(data1));
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etlstd::copy_backward(std::begin(dataA), std::end(dataA), std::end(data2));
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bool isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
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CHECK(isEqual);
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}
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//*************************************************************************
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TEST(lower_bound_random_iterator)
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{
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for (int i = 0; i < 11; ++i)
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{
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int* lb1 = std::lower_bound(std::begin(dataS), std::end(dataS), i);
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int* lb2 = etlstd::lower_bound(std::begin(dataS), std::end(dataS), i);
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CHECK_EQUAL(lb1, lb2);
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}
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}
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//*************************************************************************
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TEST(lower_bound_non_random_iterator)
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{
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for (int i = 0; i < 11; ++i)
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{
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std::list<int>::iterator lb1 = std::lower_bound(std::begin(dataSL), std::end(dataSL), i);
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std::list<int>::iterator lb2 = etlstd::lower_bound(std::begin(dataSL), std::end(dataSL), i);
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CHECK_EQUAL(std::distance(std::begin(dataSL), lb1), std::distance(std::begin(dataSL), lb2));
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}
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}
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//*************************************************************************
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TEST(upper_bound_random_iterator)
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{
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for (int i = 0; i < 11; ++i)
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{
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int* lb1 = std::upper_bound(std::begin(dataS), std::end(dataS), i);
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int* lb2 = etlstd::upper_bound(std::begin(dataS), std::end(dataS), i);
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CHECK_EQUAL(std::distance(std::begin(dataS), lb1), std::distance(std::begin(dataS), lb2));
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}
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}
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//*************************************************************************
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TEST(upper_bound_non_random_iterator)
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{
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for (int i = 0; i < 11; ++i)
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{
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std::list<int>::iterator lb1 = std::upper_bound(std::begin(dataSL), std::end(dataSL), i);
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std::list<int>::iterator lb2 = etlstd::upper_bound(std::begin(dataSL), std::end(dataSL), i);
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CHECK_EQUAL(std::distance(std::begin(dataSL), lb1), std::distance(std::begin(dataSL), lb2));
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}
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}
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//*************************************************************************
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TEST(equal_range_random_iterator)
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{
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for (int i = 0; i < 11; ++i)
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{
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std::pair<int*, int*> lb1 = std::equal_range(std::begin(dataEQ), std::end(dataEQ), i);
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std::pair<int*, int*> lb2 = etlstd::equal_range(std::begin(dataEQ), std::end(dataEQ), i);
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CHECK_EQUAL(std::distance(std::begin(dataEQ), lb1.first), std::distance(std::begin(dataEQ), lb2.first));
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CHECK_EQUAL(std::distance(lb1.first, lb1.second), std::distance(lb2.first, lb2.second));
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}
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}
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//*************************************************************************
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TEST(equal_range_non_random_iterator)
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{
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for (int i = 0; i < 11; ++i)
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{
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std::pair<std::list<int>::iterator, std::list<int>::iterator> lb1 = std::equal_range(std::begin(dataEQL), std::end(dataEQL), i);
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std::pair<std::list<int>::iterator, std::list<int>::iterator> lb2 = etlstd::equal_range(std::begin(dataEQL), std::end(dataEQL), i);
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CHECK_EQUAL(std::distance(std::begin(dataEQL), lb1.first), std::distance(std::begin(dataEQL), lb2.first));
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CHECK_EQUAL(std::distance(lb1.first, lb1.second), std::distance(lb2.first, lb2.second));
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}
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}
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//*************************************************************************
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TEST(fill_non_char)
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{
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int data1[10];
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int data2[10];
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std::fill(std::begin(data1), std::end(data1), 0x12345678);
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etlstd::fill(std::begin(data2), std::end(data2), 0x12345678);
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bool isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
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CHECK(isEqual);
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}
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//*************************************************************************
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TEST(fill_char)
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{
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unsigned char data1[10];
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unsigned char data2[10];
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std::fill(std::begin(data1), std::end(data1), char(0x12));
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etlstd::fill(std::begin(data2), std::end(data2), char(0x12));
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bool isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
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CHECK(isEqual);
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}
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//*************************************************************************
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TEST(swap)
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{
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int a = 1;
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int b = 2;
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etlstd::swap(a, b);
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CHECK_EQUAL(2, a);
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CHECK_EQUAL(1, b);
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}
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//*************************************************************************
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TEST(iter_swap)
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{
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int a = 1;
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int b = 2;
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etlstd::iter_swap(&a, &b);
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CHECK_EQUAL(2, a);
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CHECK_EQUAL(1, b);
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}
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//*************************************************************************
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TEST(equal)
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{
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CHECK(etlstd::equal(std::begin(dataV), std::end(dataV), std::begin(dataL)));
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CHECK(!etlstd::equal(std::begin(dataSL), std::end(dataSL), std::begin(dataL)));
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}
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//*************************************************************************
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TEST(lexicographical_compare)
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{
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std::string text1("Hello World");
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std::string text2("Hello Xorld");
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bool t1 = std::lexicographical_compare(text1.begin(), text1.end(), text2.begin(), text2.begin() + 7);
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bool t2 = etlstd::lexicographical_compare(text1.begin(), text1.end(), text2.begin(), text2.begin() + 7);
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CHECK(t1 == t2);
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}
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//*************************************************************************
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TEST(lexicographical_compare_greater)
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{
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std::string text1("Hello World");
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std::string text2("Hello Xorld");
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bool t1 = std::lexicographical_compare(text1.begin(), text1.end(), text2.begin(), text2.begin() + 7, Greater());
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bool t2 = etlstd::lexicographical_compare(text1.begin(), text1.end(), text2.begin(), text2.begin() + 7, Greater());
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CHECK(t1 == t2);
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}
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//*************************************************************************
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TEST(search)
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{
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std::string haystack = "ABCDFEGHIJKLMNOPQRSTUVWXYZ";
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std::string needle = "KLMNO";
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std::string::iterator itr1 = std::search(haystack.begin(), haystack.end(), needle.begin(), needle.begin());
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std::string::iterator itr2 = etlstd::search(haystack.begin(), haystack.end(), needle.begin(), needle.begin());
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CHECK(itr1 == itr2);
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}
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//*************************************************************************
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TEST(search_predicate)
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{
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std::string haystack = "ABCDFEGHIJKLMNOPQRSTUVWXYZ";
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std::string needle = "KLMNO";
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std::string::iterator itr1 = std::search(haystack.begin(), haystack.end(), needle.begin(), needle.begin(), std::equal_to<char>());
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std::string::iterator itr2 = etlstd::search(haystack.begin(), haystack.end(), needle.begin(), needle.begin(), std::equal_to<char>());
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CHECK(itr1 == itr2);
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}
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//*************************************************************************
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TEST(heap)
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{
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Vector data1 = dataV;
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Vector data2 = dataV;
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std::make_heap(data1.begin(), data1.end());
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etlstd::make_heap(data2.begin(), data2.end());
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bool isEqual;
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CHECK(std::is_heap(data2.begin(), data2.end()));
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isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
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CHECK(isEqual);
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std::pop_heap(data1.begin(), data1.end());
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etlstd::pop_heap(data2.begin(), data2.end());
|
|
|
|
data1.pop_back();
|
|
data2.pop_back();
|
|
|
|
CHECK(std::is_heap(data1.begin(), data1.end()));
|
|
CHECK(std::is_heap(data2.begin(), data2.end()));
|
|
|
|
isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
|
|
CHECK(isEqual);
|
|
|
|
CHECK(std::is_heap(data2.begin(), data2.end()));
|
|
|
|
isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
|
|
CHECK(isEqual);
|
|
|
|
data1.push_back(5);
|
|
data2.push_back(5);
|
|
|
|
std::push_heap(data1.begin(), data1.end());
|
|
etlstd::push_heap(data2.begin(), data2.end());
|
|
|
|
CHECK(std::is_heap(data2.begin(), data2.end()));
|
|
|
|
isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
|
|
CHECK(isEqual);
|
|
}
|
|
|
|
//*************************************************************************
|
|
TEST(heap_greater)
|
|
{
|
|
Vector data1 = dataV;
|
|
Vector data2 = dataV;
|
|
|
|
std::make_heap(data1.begin(), data1.end(), Greater());
|
|
etlstd::make_heap(data2.begin(), data2.end(), Greater());
|
|
|
|
bool isEqual;
|
|
|
|
CHECK(std::is_heap(data2.begin(), data2.end(), Greater()));
|
|
|
|
isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
|
|
CHECK(isEqual);
|
|
|
|
std::pop_heap(data1.begin(), data1.end(), Greater());
|
|
etlstd::pop_heap(data2.begin(), data2.end(), Greater());
|
|
|
|
data1.pop_back();
|
|
data2.pop_back();
|
|
|
|
CHECK(std::is_heap(data1.begin(), data1.end(), Greater()));
|
|
CHECK(std::is_heap(data2.begin(), data2.end(), Greater()));
|
|
|
|
isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
|
|
CHECK(isEqual);
|
|
|
|
CHECK(std::is_heap(data2.begin(), data2.end(), Greater()));
|
|
|
|
isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
|
|
CHECK(isEqual);
|
|
|
|
data1.push_back(5);
|
|
data2.push_back(5);
|
|
|
|
std::push_heap(data1.begin(), data1.end(), Greater());
|
|
etlstd::push_heap(data2.begin(), data2.end(), Greater());
|
|
|
|
CHECK(std::is_heap(data2.begin(), data2.end(), Greater()));
|
|
|
|
isEqual = std::equal(std::begin(data1), std::end(data1), std::begin(data2));
|
|
CHECK(isEqual);
|
|
}
|
|
};
|
|
}
|