alpar@209
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/* -*- mode: C++; indent-tabs-mode: nil; -*-
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*
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* This file is a part of LEMON, a generic C++ optimization library.
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alpar@25
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*
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alpar@1092
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* Copyright (C) 2003-2013
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* Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
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* (Egervary Research Group on Combinatorial Optimization, EGRES).
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*
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* Permission to use, modify and distribute this software is granted
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* provided that this copyright notice appears in all copies. For
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* precise terms see the accompanying LICENSE file.
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alpar@25
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*
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* This software is provided "AS IS" with no warranty of any kind,
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* express or implied, and with no claim as to its suitability for any
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* purpose.
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*
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*/
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#include <deque>
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alpar@25
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#include <set>
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#include <lemon/concept_check.h>
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#include <lemon/concepts/maps.h>
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#include <lemon/maps.h>
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#include <lemon/list_graph.h>
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#include <lemon/smart_graph.h>
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#include <lemon/adaptors.h>
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#include <lemon/dfs.h>
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#include <algorithm>
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#include "test_tools.h"
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using namespace lemon;
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using namespace lemon::concepts;
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struct A {};
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inline bool operator<(A, A) { return true; }
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struct B {};
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class C {
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int _x;
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public:
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C(int x) : _x(x) {}
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int get() const { return _x; }
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};
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inline bool operator<(C c1, C c2) { return c1.get() < c2.get(); }
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inline bool operator==(C c1, C c2) { return c1.get() == c2.get(); }
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C createC(int x) { return C(x); }
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template <typename T>
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class Less {
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T _t;
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public:
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Less(T t): _t(t) {}
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bool operator()(const T& t) const { return t < _t; }
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};
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class F {
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public:
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typedef A argument_type;
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typedef B result_type;
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B operator()(const A&) const { return B(); }
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private:
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F& operator=(const F&);
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};
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int func(A) { return 3; }
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int binc(int a, B) { return a+1; }
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template <typename T>
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class Sum {
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T& _sum;
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public:
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Sum(T& sum) : _sum(sum) {}
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void operator()(const T& t) { _sum += t; }
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};
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typedef ReadMap<A, double> DoubleMap;
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typedef ReadWriteMap<A, double> DoubleWriteMap;
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typedef ReferenceMap<A, double, double&, const double&> DoubleRefMap;
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typedef ReadMap<A, bool> BoolMap;
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typedef ReadWriteMap<A, bool> BoolWriteMap;
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typedef ReferenceMap<A, bool, bool&, const bool&> BoolRefMap;
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int main()
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{
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// Map concepts
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checkConcept<ReadMap<A,B>, ReadMap<A,B> >();
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checkConcept<ReadMap<A,C>, ReadMap<A,C> >();
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checkConcept<WriteMap<A,B>, WriteMap<A,B> >();
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checkConcept<WriteMap<A,C>, WriteMap<A,C> >();
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checkConcept<ReadWriteMap<A,B>, ReadWriteMap<A,B> >();
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kpeter@94
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checkConcept<ReadWriteMap<A,C>, ReadWriteMap<A,C> >();
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alpar@25
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checkConcept<ReferenceMap<A,B,B&,const B&>, ReferenceMap<A,B,B&,const B&> >();
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kpeter@94
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checkConcept<ReferenceMap<A,C,C&,const C&>, ReferenceMap<A,C,C&,const C&> >();
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alpar@25
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kpeter@80
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// NullMap
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{
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kpeter@80
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checkConcept<ReadWriteMap<A,B>, NullMap<A,B> >();
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kpeter@80
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NullMap<A,B> map1;
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NullMap<A,B> map2 = map1;
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::lemon::ignore_unused_variable_warning(map2);
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map1 = nullMap<A,B>();
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}
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// ConstMap
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{
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checkConcept<ReadWriteMap<A,B>, ConstMap<A,B> >();
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checkConcept<ReadWriteMap<A,C>, ConstMap<A,C> >();
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ConstMap<A,B> map1;
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ConstMap<A,B> map2 = B();
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ConstMap<A,B> map3 = map1;
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::lemon::ignore_unused_variable_warning(map2,map3);
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map1 = constMap<A>(B());
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map1 = constMap<A,B>();
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map1.setAll(B());
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kpeter@123
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ConstMap<A,C> map4(C(1));
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ConstMap<A,C> map5 = map4;
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::lemon::ignore_unused_variable_warning(map5);
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alpar@997
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kpeter@123
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map4 = constMap<A>(C(2));
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map4.setAll(C(3));
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kpeter@82
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checkConcept<ReadWriteMap<A,int>, ConstMap<A,int> >();
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check(constMap<A>(10)[A()] == 10, "Something is wrong with ConstMap");
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kpeter@80
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checkConcept<ReadWriteMap<A,int>, ConstMap<A,Const<int,10> > >();
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ConstMap<A,Const<int,10> > map6;
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ConstMap<A,Const<int,10> > map7 = map6;
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map6 = constMap<A,int,10>();
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map7 = constMap<A,Const<int,10> >();
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check(map6[A()] == 10 && map7[A()] == 10,
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"Something is wrong with ConstMap");
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}
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kpeter@80
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kpeter@80
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// IdentityMap
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{
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kpeter@80
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checkConcept<ReadMap<A,A>, IdentityMap<A> >();
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kpeter@80
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IdentityMap<A> map1;
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IdentityMap<A> map2 = map1;
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alpar@1083
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::lemon::ignore_unused_variable_warning(map2);
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alpar@997
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kpeter@80
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map1 = identityMap<A>();
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kpeter@82
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kpeter@80
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checkConcept<ReadMap<double,double>, IdentityMap<double> >();
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alpar@210
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check(identityMap<double>()[1.0] == 1.0 &&
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identityMap<double>()[3.14] == 3.14,
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"Something is wrong with IdentityMap");
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kpeter@80
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}
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kpeter@80
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kpeter@80
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// RangeMap
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{
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kpeter@80
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checkConcept<ReferenceMap<int,B,B&,const B&>, RangeMap<B> >();
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kpeter@80
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RangeMap<B> map1;
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kpeter@80
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RangeMap<B> map2(10);
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kpeter@80
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RangeMap<B> map3(10,B());
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kpeter@80
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RangeMap<B> map4 = map1;
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kpeter@80
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RangeMap<B> map5 = rangeMap<B>();
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kpeter@80
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RangeMap<B> map6 = rangeMap<B>(10);
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kpeter@80
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RangeMap<B> map7 = rangeMap(10,B());
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kpeter@80
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kpeter@80
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checkConcept< ReferenceMap<int, double, double&, const double&>,
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kpeter@80
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RangeMap<double> >();
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kpeter@80
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std::vector<double> v(10, 0);
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v[5] = 100;
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kpeter@80
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RangeMap<double> map8(v);
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kpeter@80
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RangeMap<double> map9 = rangeMap(v);
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kpeter@80
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check(map9.size() == 10 && map9[2] == 0 && map9[5] == 100,
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"Something is wrong with RangeMap");
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kpeter@80
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}
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kpeter@80
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kpeter@80
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// SparseMap
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kpeter@80
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{
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kpeter@80
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checkConcept<ReferenceMap<A,B,B&,const B&>, SparseMap<A,B> >();
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kpeter@80
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SparseMap<A,B> map1;
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deba@136
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SparseMap<A,B> map2 = B();
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kpeter@80
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SparseMap<A,B> map3 = sparseMap<A,B>();
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kpeter@80
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SparseMap<A,B> map4 = sparseMap<A>(B());
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kpeter@80
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184 |
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kpeter@80
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checkConcept< ReferenceMap<double, int, int&, const int&>,
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kpeter@80
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186 |
SparseMap<double, int> >();
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kpeter@80
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187 |
std::map<double, int> m;
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kpeter@80
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188 |
SparseMap<double, int> map5(m);
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kpeter@80
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189 |
SparseMap<double, int> map6(m,10);
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kpeter@80
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190 |
SparseMap<double, int> map7 = sparseMap(m);
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kpeter@80
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SparseMap<double, int> map8 = sparseMap(m,10);
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kpeter@80
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alpar@210
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check(map5[1.0] == 0 && map5[3.14] == 0 &&
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alpar@210
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map6[1.0] == 10 && map6[3.14] == 10,
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kpeter@80
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"Something is wrong with SparseMap");
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kpeter@80
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map5[1.0] = map6[3.14] = 100;
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alpar@210
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197 |
check(map5[1.0] == 100 && map5[3.14] == 0 &&
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alpar@210
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map6[1.0] == 10 && map6[3.14] == 100,
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kpeter@80
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"Something is wrong with SparseMap");
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kpeter@80
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200 |
}
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kpeter@80
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201 |
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kpeter@80
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202 |
// ComposeMap
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kpeter@80
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203 |
{
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kpeter@80
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204 |
typedef ComposeMap<DoubleMap, ReadMap<B,A> > CompMap;
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kpeter@80
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205 |
checkConcept<ReadMap<B,double>, CompMap>();
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alpar@507
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206 |
CompMap map1 = CompMap(DoubleMap(),ReadMap<B,A>());
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alpar@1083
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207 |
::lemon::ignore_unused_variable_warning(map1);
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kpeter@80
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208 |
CompMap map2 = composeMap(DoubleMap(), ReadMap<B,A>());
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alpar@1083
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::lemon::ignore_unused_variable_warning(map2);
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kpeter@82
|
210 |
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kpeter@80
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211 |
SparseMap<double, bool> m1(false); m1[3.14] = true;
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kpeter@80
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212 |
RangeMap<double> m2(2); m2[0] = 3.0; m2[1] = 3.14;
|
alpar@210
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213 |
check(!composeMap(m1,m2)[0] && composeMap(m1,m2)[1],
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alpar@210
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214 |
"Something is wrong with ComposeMap")
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kpeter@80
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215 |
}
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kpeter@80
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216 |
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kpeter@80
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217 |
// CombineMap
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kpeter@80
|
218 |
{
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kpeter@80
|
219 |
typedef CombineMap<DoubleMap, DoubleMap, std::plus<double> > CombMap;
|
kpeter@80
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220 |
checkConcept<ReadMap<A,double>, CombMap>();
|
alpar@507
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221 |
CombMap map1 = CombMap(DoubleMap(), DoubleMap());
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alpar@1083
|
222 |
::lemon::ignore_unused_variable_warning(map1);
|
kpeter@80
|
223 |
CombMap map2 = combineMap(DoubleMap(), DoubleMap(), std::plus<double>());
|
alpar@1083
|
224 |
::lemon::ignore_unused_variable_warning(map2);
|
kpeter@80
|
225 |
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kpeter@80
|
226 |
check(combineMap(constMap<B,int,2>(), identityMap<B>(), &binc)[B()] == 3,
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kpeter@80
|
227 |
"Something is wrong with CombineMap");
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kpeter@80
|
228 |
}
|
kpeter@80
|
229 |
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kpeter@80
|
230 |
// FunctorToMap, MapToFunctor
|
kpeter@80
|
231 |
{
|
kpeter@80
|
232 |
checkConcept<ReadMap<A,B>, FunctorToMap<F,A,B> >();
|
kpeter@80
|
233 |
checkConcept<ReadMap<A,B>, FunctorToMap<F> >();
|
kpeter@80
|
234 |
FunctorToMap<F> map1;
|
alpar@507
|
235 |
FunctorToMap<F> map2 = FunctorToMap<F>(F());
|
alpar@1083
|
236 |
::lemon::ignore_unused_variable_warning(map2);
|
alpar@997
|
237 |
|
kpeter@80
|
238 |
B b = functorToMap(F())[A()];
|
alpar@1083
|
239 |
::lemon::ignore_unused_variable_warning(b);
|
kpeter@80
|
240 |
|
kpeter@80
|
241 |
checkConcept<ReadMap<A,B>, MapToFunctor<ReadMap<A,B> > >();
|
alpar@997
|
242 |
MapToFunctor<ReadMap<A,B> > map =
|
alpar@997
|
243 |
MapToFunctor<ReadMap<A,B> >(ReadMap<A,B>());
|
alpar@1083
|
244 |
::lemon::ignore_unused_variable_warning(map);
|
kpeter@80
|
245 |
|
alpar@210
|
246 |
check(functorToMap(&func)[A()] == 3,
|
alpar@210
|
247 |
"Something is wrong with FunctorToMap");
|
alpar@210
|
248 |
check(mapToFunctor(constMap<A,int>(2))(A()) == 2,
|
alpar@210
|
249 |
"Something is wrong with MapToFunctor");
|
alpar@210
|
250 |
check(mapToFunctor(functorToMap(&func))(A()) == 3 &&
|
alpar@210
|
251 |
mapToFunctor(functorToMap(&func))[A()] == 3,
|
kpeter@80
|
252 |
"Something is wrong with FunctorToMap or MapToFunctor");
|
kpeter@80
|
253 |
check(functorToMap(mapToFunctor(constMap<A,int>(2)))[A()] == 2,
|
kpeter@80
|
254 |
"Something is wrong with FunctorToMap or MapToFunctor");
|
kpeter@80
|
255 |
}
|
kpeter@80
|
256 |
|
kpeter@80
|
257 |
// ConvertMap
|
kpeter@80
|
258 |
{
|
alpar@210
|
259 |
checkConcept<ReadMap<double,double>,
|
alpar@210
|
260 |
ConvertMap<ReadMap<double, int>, double> >();
|
kpeter@80
|
261 |
ConvertMap<RangeMap<bool>, int> map1(rangeMap(1, true));
|
alpar@1083
|
262 |
::lemon::ignore_unused_variable_warning(map1);
|
kpeter@80
|
263 |
ConvertMap<RangeMap<bool>, int> map2 = convertMap<int>(rangeMap(2, false));
|
alpar@1083
|
264 |
::lemon::ignore_unused_variable_warning(map2);
|
alpar@997
|
265 |
|
kpeter@80
|
266 |
}
|
kpeter@80
|
267 |
|
kpeter@80
|
268 |
// ForkMap
|
kpeter@80
|
269 |
{
|
kpeter@80
|
270 |
checkConcept<DoubleWriteMap, ForkMap<DoubleWriteMap, DoubleWriteMap> >();
|
kpeter@82
|
271 |
|
kpeter@80
|
272 |
typedef RangeMap<double> RM;
|
kpeter@80
|
273 |
typedef SparseMap<int, double> SM;
|
kpeter@80
|
274 |
RM m1(10, -1);
|
kpeter@80
|
275 |
SM m2(-1);
|
kpeter@80
|
276 |
checkConcept<ReadWriteMap<int, double>, ForkMap<RM, SM> >();
|
kpeter@80
|
277 |
checkConcept<ReadWriteMap<int, double>, ForkMap<SM, RM> >();
|
kpeter@80
|
278 |
ForkMap<RM, SM> map1(m1,m2);
|
kpeter@80
|
279 |
ForkMap<SM, RM> map2 = forkMap(m2,m1);
|
kpeter@80
|
280 |
map2.set(5, 10);
|
alpar@210
|
281 |
check(m1[1] == -1 && m1[5] == 10 && m2[1] == -1 &&
|
alpar@210
|
282 |
m2[5] == 10 && map2[1] == -1 && map2[5] == 10,
|
kpeter@80
|
283 |
"Something is wrong with ForkMap");
|
kpeter@80
|
284 |
}
|
kpeter@82
|
285 |
|
kpeter@80
|
286 |
// Arithmetic maps:
|
kpeter@80
|
287 |
// - AddMap, SubMap, MulMap, DivMap
|
kpeter@80
|
288 |
// - ShiftMap, ShiftWriteMap, ScaleMap, ScaleWriteMap
|
kpeter@80
|
289 |
// - NegMap, NegWriteMap, AbsMap
|
kpeter@80
|
290 |
{
|
kpeter@80
|
291 |
checkConcept<DoubleMap, AddMap<DoubleMap,DoubleMap> >();
|
kpeter@80
|
292 |
checkConcept<DoubleMap, SubMap<DoubleMap,DoubleMap> >();
|
kpeter@80
|
293 |
checkConcept<DoubleMap, MulMap<DoubleMap,DoubleMap> >();
|
kpeter@80
|
294 |
checkConcept<DoubleMap, DivMap<DoubleMap,DoubleMap> >();
|
kpeter@82
|
295 |
|
kpeter@80
|
296 |
ConstMap<int, double> c1(1.0), c2(3.14);
|
kpeter@80
|
297 |
IdentityMap<int> im;
|
kpeter@80
|
298 |
ConvertMap<IdentityMap<int>, double> id(im);
|
alpar@210
|
299 |
check(addMap(c1,id)[0] == 1.0 && addMap(c1,id)[10] == 11.0,
|
alpar@210
|
300 |
"Something is wrong with AddMap");
|
alpar@210
|
301 |
check(subMap(id,c1)[0] == -1.0 && subMap(id,c1)[10] == 9.0,
|
alpar@210
|
302 |
"Something is wrong with SubMap");
|
alpar@210
|
303 |
check(mulMap(id,c2)[0] == 0 && mulMap(id,c2)[2] == 6.28,
|
alpar@210
|
304 |
"Something is wrong with MulMap");
|
alpar@210
|
305 |
check(divMap(c2,id)[1] == 3.14 && divMap(c2,id)[2] == 1.57,
|
alpar@210
|
306 |
"Something is wrong with DivMap");
|
kpeter@82
|
307 |
|
kpeter@80
|
308 |
checkConcept<DoubleMap, ShiftMap<DoubleMap> >();
|
kpeter@80
|
309 |
checkConcept<DoubleWriteMap, ShiftWriteMap<DoubleWriteMap> >();
|
kpeter@80
|
310 |
checkConcept<DoubleMap, ScaleMap<DoubleMap> >();
|
kpeter@80
|
311 |
checkConcept<DoubleWriteMap, ScaleWriteMap<DoubleWriteMap> >();
|
kpeter@80
|
312 |
checkConcept<DoubleMap, NegMap<DoubleMap> >();
|
kpeter@80
|
313 |
checkConcept<DoubleWriteMap, NegWriteMap<DoubleWriteMap> >();
|
kpeter@80
|
314 |
checkConcept<DoubleMap, AbsMap<DoubleMap> >();
|
alpar@25
|
315 |
|
kpeter@80
|
316 |
check(shiftMap(id, 2.0)[1] == 3.0 && shiftMap(id, 2.0)[10] == 12.0,
|
kpeter@80
|
317 |
"Something is wrong with ShiftMap");
|
alpar@210
|
318 |
check(shiftWriteMap(id, 2.0)[1] == 3.0 &&
|
alpar@210
|
319 |
shiftWriteMap(id, 2.0)[10] == 12.0,
|
kpeter@80
|
320 |
"Something is wrong with ShiftWriteMap");
|
kpeter@80
|
321 |
check(scaleMap(id, 2.0)[1] == 2.0 && scaleMap(id, 2.0)[10] == 20.0,
|
kpeter@80
|
322 |
"Something is wrong with ScaleMap");
|
alpar@210
|
323 |
check(scaleWriteMap(id, 2.0)[1] == 2.0 &&
|
alpar@210
|
324 |
scaleWriteMap(id, 2.0)[10] == 20.0,
|
kpeter@80
|
325 |
"Something is wrong with ScaleWriteMap");
|
kpeter@80
|
326 |
check(negMap(id)[1] == -1.0 && negMap(id)[-10] == 10.0,
|
kpeter@80
|
327 |
"Something is wrong with NegMap");
|
kpeter@80
|
328 |
check(negWriteMap(id)[1] == -1.0 && negWriteMap(id)[-10] == 10.0,
|
kpeter@80
|
329 |
"Something is wrong with NegWriteMap");
|
kpeter@80
|
330 |
check(absMap(id)[1] == 1.0 && absMap(id)[-10] == 10.0,
|
kpeter@80
|
331 |
"Something is wrong with AbsMap");
|
kpeter@80
|
332 |
}
|
kpeter@82
|
333 |
|
kpeter@82
|
334 |
// Logical maps:
|
kpeter@82
|
335 |
// - TrueMap, FalseMap
|
kpeter@82
|
336 |
// - AndMap, OrMap
|
kpeter@82
|
337 |
// - NotMap, NotWriteMap
|
kpeter@82
|
338 |
// - EqualMap, LessMap
|
kpeter@80
|
339 |
{
|
kpeter@82
|
340 |
checkConcept<BoolMap, TrueMap<A> >();
|
kpeter@82
|
341 |
checkConcept<BoolMap, FalseMap<A> >();
|
kpeter@82
|
342 |
checkConcept<BoolMap, AndMap<BoolMap,BoolMap> >();
|
kpeter@82
|
343 |
checkConcept<BoolMap, OrMap<BoolMap,BoolMap> >();
|
kpeter@80
|
344 |
checkConcept<BoolMap, NotMap<BoolMap> >();
|
kpeter@80
|
345 |
checkConcept<BoolWriteMap, NotWriteMap<BoolWriteMap> >();
|
kpeter@82
|
346 |
checkConcept<BoolMap, EqualMap<DoubleMap,DoubleMap> >();
|
kpeter@82
|
347 |
checkConcept<BoolMap, LessMap<DoubleMap,DoubleMap> >();
|
kpeter@82
|
348 |
|
kpeter@82
|
349 |
TrueMap<int> tm;
|
kpeter@82
|
350 |
FalseMap<int> fm;
|
kpeter@80
|
351 |
RangeMap<bool> rm(2);
|
kpeter@80
|
352 |
rm[0] = true; rm[1] = false;
|
alpar@210
|
353 |
check(andMap(tm,rm)[0] && !andMap(tm,rm)[1] &&
|
alpar@210
|
354 |
!andMap(fm,rm)[0] && !andMap(fm,rm)[1],
|
kpeter@82
|
355 |
"Something is wrong with AndMap");
|
alpar@210
|
356 |
check(orMap(tm,rm)[0] && orMap(tm,rm)[1] &&
|
alpar@210
|
357 |
orMap(fm,rm)[0] && !orMap(fm,rm)[1],
|
kpeter@82
|
358 |
"Something is wrong with OrMap");
|
alpar@210
|
359 |
check(!notMap(rm)[0] && notMap(rm)[1],
|
alpar@210
|
360 |
"Something is wrong with NotMap");
|
alpar@210
|
361 |
check(!notWriteMap(rm)[0] && notWriteMap(rm)[1],
|
alpar@210
|
362 |
"Something is wrong with NotWriteMap");
|
kpeter@82
|
363 |
|
kpeter@82
|
364 |
ConstMap<int, double> cm(2.0);
|
kpeter@82
|
365 |
IdentityMap<int> im;
|
kpeter@82
|
366 |
ConvertMap<IdentityMap<int>, double> id(im);
|
kpeter@82
|
367 |
check(lessMap(id,cm)[1] && !lessMap(id,cm)[2] && !lessMap(id,cm)[3],
|
kpeter@82
|
368 |
"Something is wrong with LessMap");
|
kpeter@82
|
369 |
check(!equalMap(id,cm)[1] && equalMap(id,cm)[2] && !equalMap(id,cm)[3],
|
kpeter@82
|
370 |
"Something is wrong with EqualMap");
|
kpeter@80
|
371 |
}
|
alpar@209
|
372 |
|
kpeter@167
|
373 |
// LoggerBoolMap
|
kpeter@159
|
374 |
{
|
kpeter@159
|
375 |
typedef std::vector<int> vec;
|
kpeter@720
|
376 |
checkConcept<WriteMap<int, bool>, LoggerBoolMap<vec::iterator> >();
|
kpeter@720
|
377 |
checkConcept<WriteMap<int, bool>,
|
kpeter@720
|
378 |
LoggerBoolMap<std::back_insert_iterator<vec> > >();
|
kpeter@720
|
379 |
|
kpeter@159
|
380 |
vec v1;
|
kpeter@159
|
381 |
vec v2(10);
|
alpar@210
|
382 |
LoggerBoolMap<std::back_insert_iterator<vec> >
|
alpar@210
|
383 |
map1(std::back_inserter(v1));
|
kpeter@167
|
384 |
LoggerBoolMap<vec::iterator> map2(v2.begin());
|
kpeter@159
|
385 |
map1.set(10, false);
|
kpeter@159
|
386 |
map1.set(20, true); map2.set(20, true);
|
kpeter@159
|
387 |
map1.set(30, false); map2.set(40, false);
|
kpeter@159
|
388 |
map1.set(50, true); map2.set(50, true);
|
kpeter@159
|
389 |
map1.set(60, true); map2.set(60, true);
|
kpeter@159
|
390 |
check(v1.size() == 3 && v2.size() == 10 &&
|
alpar@210
|
391 |
v1[0]==20 && v1[1]==50 && v1[2]==60 &&
|
alpar@210
|
392 |
v2[0]==20 && v2[1]==50 && v2[2]==60,
|
kpeter@167
|
393 |
"Something is wrong with LoggerBoolMap");
|
alpar@209
|
394 |
|
kpeter@159
|
395 |
int i = 0;
|
kpeter@167
|
396 |
for ( LoggerBoolMap<vec::iterator>::Iterator it = map2.begin();
|
kpeter@159
|
397 |
it != map2.end(); ++it )
|
kpeter@167
|
398 |
check(v1[i++] == *it, "Something is wrong with LoggerBoolMap");
|
alpar@877
|
399 |
|
kpeter@723
|
400 |
typedef ListDigraph Graph;
|
kpeter@723
|
401 |
DIGRAPH_TYPEDEFS(Graph);
|
kpeter@723
|
402 |
Graph gr;
|
kpeter@723
|
403 |
|
kpeter@723
|
404 |
Node n0 = gr.addNode();
|
kpeter@723
|
405 |
Node n1 = gr.addNode();
|
kpeter@723
|
406 |
Node n2 = gr.addNode();
|
kpeter@723
|
407 |
Node n3 = gr.addNode();
|
alpar@877
|
408 |
|
kpeter@723
|
409 |
gr.addArc(n3, n0);
|
kpeter@723
|
410 |
gr.addArc(n3, n2);
|
kpeter@723
|
411 |
gr.addArc(n0, n2);
|
kpeter@723
|
412 |
gr.addArc(n2, n1);
|
kpeter@723
|
413 |
gr.addArc(n0, n1);
|
alpar@877
|
414 |
|
kpeter@723
|
415 |
{
|
kpeter@723
|
416 |
std::vector<Node> v;
|
kpeter@723
|
417 |
dfs(gr).processedMap(loggerBoolMap(std::back_inserter(v))).run();
|
kpeter@723
|
418 |
|
kpeter@723
|
419 |
check(v.size()==4 && v[0]==n1 && v[1]==n2 && v[2]==n0 && v[3]==n3,
|
kpeter@723
|
420 |
"Something is wrong with LoggerBoolMap");
|
kpeter@723
|
421 |
}
|
kpeter@723
|
422 |
{
|
kpeter@723
|
423 |
std::vector<Node> v(countNodes(gr));
|
kpeter@723
|
424 |
dfs(gr).processedMap(loggerBoolMap(v.begin())).run();
|
alpar@877
|
425 |
|
kpeter@723
|
426 |
check(v.size()==4 && v[0]==n1 && v[1]==n2 && v[2]==n0 && v[3]==n3,
|
kpeter@723
|
427 |
"Something is wrong with LoggerBoolMap");
|
kpeter@723
|
428 |
}
|
kpeter@159
|
429 |
}
|
alpar@877
|
430 |
|
kpeter@720
|
431 |
// IdMap, RangeIdMap
|
kpeter@720
|
432 |
{
|
kpeter@720
|
433 |
typedef ListDigraph Graph;
|
kpeter@720
|
434 |
DIGRAPH_TYPEDEFS(Graph);
|
kpeter@720
|
435 |
|
kpeter@720
|
436 |
checkConcept<ReadMap<Node, int>, IdMap<Graph, Node> >();
|
kpeter@720
|
437 |
checkConcept<ReadMap<Arc, int>, IdMap<Graph, Arc> >();
|
kpeter@720
|
438 |
checkConcept<ReadMap<Node, int>, RangeIdMap<Graph, Node> >();
|
kpeter@720
|
439 |
checkConcept<ReadMap<Arc, int>, RangeIdMap<Graph, Arc> >();
|
alpar@877
|
440 |
|
kpeter@720
|
441 |
Graph gr;
|
kpeter@720
|
442 |
IdMap<Graph, Node> nmap(gr);
|
kpeter@720
|
443 |
IdMap<Graph, Arc> amap(gr);
|
kpeter@720
|
444 |
RangeIdMap<Graph, Node> nrmap(gr);
|
kpeter@720
|
445 |
RangeIdMap<Graph, Arc> armap(gr);
|
alpar@877
|
446 |
|
kpeter@720
|
447 |
Node n0 = gr.addNode();
|
kpeter@720
|
448 |
Node n1 = gr.addNode();
|
kpeter@720
|
449 |
Node n2 = gr.addNode();
|
alpar@877
|
450 |
|
kpeter@720
|
451 |
Arc a0 = gr.addArc(n0, n1);
|
kpeter@720
|
452 |
Arc a1 = gr.addArc(n0, n2);
|
kpeter@720
|
453 |
Arc a2 = gr.addArc(n2, n1);
|
kpeter@720
|
454 |
Arc a3 = gr.addArc(n2, n0);
|
alpar@877
|
455 |
|
kpeter@720
|
456 |
check(nmap[n0] == gr.id(n0) && nmap(gr.id(n0)) == n0, "Wrong IdMap");
|
kpeter@720
|
457 |
check(nmap[n1] == gr.id(n1) && nmap(gr.id(n1)) == n1, "Wrong IdMap");
|
kpeter@720
|
458 |
check(nmap[n2] == gr.id(n2) && nmap(gr.id(n2)) == n2, "Wrong IdMap");
|
kpeter@720
|
459 |
|
kpeter@720
|
460 |
check(amap[a0] == gr.id(a0) && amap(gr.id(a0)) == a0, "Wrong IdMap");
|
kpeter@720
|
461 |
check(amap[a1] == gr.id(a1) && amap(gr.id(a1)) == a1, "Wrong IdMap");
|
kpeter@720
|
462 |
check(amap[a2] == gr.id(a2) && amap(gr.id(a2)) == a2, "Wrong IdMap");
|
kpeter@720
|
463 |
check(amap[a3] == gr.id(a3) && amap(gr.id(a3)) == a3, "Wrong IdMap");
|
kpeter@720
|
464 |
|
kpeter@720
|
465 |
check(nmap.inverse()[gr.id(n0)] == n0, "Wrong IdMap::InverseMap");
|
kpeter@720
|
466 |
check(amap.inverse()[gr.id(a0)] == a0, "Wrong IdMap::InverseMap");
|
alpar@877
|
467 |
|
kpeter@720
|
468 |
check(nrmap.size() == 3 && armap.size() == 4,
|
kpeter@720
|
469 |
"Wrong RangeIdMap::size()");
|
kpeter@720
|
470 |
|
kpeter@720
|
471 |
check(nrmap[n0] == 0 && nrmap(0) == n0, "Wrong RangeIdMap");
|
kpeter@720
|
472 |
check(nrmap[n1] == 1 && nrmap(1) == n1, "Wrong RangeIdMap");
|
kpeter@720
|
473 |
check(nrmap[n2] == 2 && nrmap(2) == n2, "Wrong RangeIdMap");
|
alpar@877
|
474 |
|
kpeter@720
|
475 |
check(armap[a0] == 0 && armap(0) == a0, "Wrong RangeIdMap");
|
kpeter@720
|
476 |
check(armap[a1] == 1 && armap(1) == a1, "Wrong RangeIdMap");
|
kpeter@720
|
477 |
check(armap[a2] == 2 && armap(2) == a2, "Wrong RangeIdMap");
|
kpeter@720
|
478 |
check(armap[a3] == 3 && armap(3) == a3, "Wrong RangeIdMap");
|
kpeter@720
|
479 |
|
kpeter@720
|
480 |
check(nrmap.inverse()[0] == n0, "Wrong RangeIdMap::InverseMap");
|
kpeter@720
|
481 |
check(armap.inverse()[0] == a0, "Wrong RangeIdMap::InverseMap");
|
alpar@877
|
482 |
|
kpeter@720
|
483 |
gr.erase(n1);
|
alpar@877
|
484 |
|
kpeter@720
|
485 |
if (nrmap[n0] == 1) nrmap.swap(n0, n2);
|
kpeter@720
|
486 |
nrmap.swap(n2, n0);
|
kpeter@720
|
487 |
if (armap[a1] == 1) armap.swap(a1, a3);
|
kpeter@720
|
488 |
armap.swap(a3, a1);
|
alpar@877
|
489 |
|
kpeter@720
|
490 |
check(nrmap.size() == 2 && armap.size() == 2,
|
kpeter@720
|
491 |
"Wrong RangeIdMap::size()");
|
kpeter@720
|
492 |
|
kpeter@720
|
493 |
check(nrmap[n0] == 1 && nrmap(1) == n0, "Wrong RangeIdMap");
|
kpeter@720
|
494 |
check(nrmap[n2] == 0 && nrmap(0) == n2, "Wrong RangeIdMap");
|
alpar@877
|
495 |
|
kpeter@720
|
496 |
check(armap[a1] == 1 && armap(1) == a1, "Wrong RangeIdMap");
|
kpeter@720
|
497 |
check(armap[a3] == 0 && armap(0) == a3, "Wrong RangeIdMap");
|
kpeter@720
|
498 |
|
kpeter@720
|
499 |
check(nrmap.inverse()[0] == n2, "Wrong RangeIdMap::InverseMap");
|
kpeter@720
|
500 |
check(armap.inverse()[0] == a3, "Wrong RangeIdMap::InverseMap");
|
kpeter@720
|
501 |
}
|
alpar@877
|
502 |
|
kpeter@723
|
503 |
// SourceMap, TargetMap, ForwardMap, BackwardMap, InDegMap, OutDegMap
|
kpeter@723
|
504 |
{
|
kpeter@723
|
505 |
typedef ListGraph Graph;
|
kpeter@723
|
506 |
GRAPH_TYPEDEFS(Graph);
|
alpar@877
|
507 |
|
kpeter@723
|
508 |
checkConcept<ReadMap<Arc, Node>, SourceMap<Graph> >();
|
kpeter@723
|
509 |
checkConcept<ReadMap<Arc, Node>, TargetMap<Graph> >();
|
kpeter@723
|
510 |
checkConcept<ReadMap<Edge, Arc>, ForwardMap<Graph> >();
|
kpeter@723
|
511 |
checkConcept<ReadMap<Edge, Arc>, BackwardMap<Graph> >();
|
kpeter@723
|
512 |
checkConcept<ReadMap<Node, int>, InDegMap<Graph> >();
|
kpeter@723
|
513 |
checkConcept<ReadMap<Node, int>, OutDegMap<Graph> >();
|
kpeter@723
|
514 |
|
kpeter@723
|
515 |
Graph gr;
|
kpeter@723
|
516 |
Node n0 = gr.addNode();
|
kpeter@723
|
517 |
Node n1 = gr.addNode();
|
kpeter@723
|
518 |
Node n2 = gr.addNode();
|
alpar@877
|
519 |
|
kpeter@723
|
520 |
gr.addEdge(n0,n1);
|
kpeter@723
|
521 |
gr.addEdge(n1,n2);
|
kpeter@723
|
522 |
gr.addEdge(n0,n2);
|
kpeter@723
|
523 |
gr.addEdge(n2,n1);
|
kpeter@723
|
524 |
gr.addEdge(n1,n2);
|
kpeter@723
|
525 |
gr.addEdge(n0,n1);
|
alpar@877
|
526 |
|
kpeter@723
|
527 |
for (EdgeIt e(gr); e != INVALID; ++e) {
|
kpeter@723
|
528 |
check(forwardMap(gr)[e] == gr.direct(e, true), "Wrong ForwardMap");
|
kpeter@723
|
529 |
check(backwardMap(gr)[e] == gr.direct(e, false), "Wrong BackwardMap");
|
kpeter@723
|
530 |
}
|
alpar@877
|
531 |
|
kpeter@789
|
532 |
check(mapCompare(gr,
|
kpeter@789
|
533 |
sourceMap(orienter(gr, constMap<Edge, bool>(true))),
|
kpeter@789
|
534 |
targetMap(orienter(gr, constMap<Edge, bool>(false)))),
|
kpeter@789
|
535 |
"Wrong SourceMap or TargetMap");
|
kpeter@723
|
536 |
|
kpeter@723
|
537 |
typedef Orienter<Graph, const ConstMap<Edge, bool> > Digraph;
|
alpar@1067
|
538 |
ConstMap<Edge, bool> true_edge_map(true);
|
alpar@1067
|
539 |
Digraph dgr(gr, true_edge_map);
|
kpeter@723
|
540 |
OutDegMap<Digraph> odm(dgr);
|
kpeter@723
|
541 |
InDegMap<Digraph> idm(dgr);
|
alpar@877
|
542 |
|
kpeter@723
|
543 |
check(odm[n0] == 3 && odm[n1] == 2 && odm[n2] == 1, "Wrong OutDegMap");
|
kpeter@723
|
544 |
check(idm[n0] == 0 && idm[n1] == 3 && idm[n2] == 3, "Wrong InDegMap");
|
alpar@877
|
545 |
|
kpeter@723
|
546 |
gr.addEdge(n2, n0);
|
kpeter@723
|
547 |
|
kpeter@723
|
548 |
check(odm[n0] == 3 && odm[n1] == 2 && odm[n2] == 2, "Wrong OutDegMap");
|
kpeter@723
|
549 |
check(idm[n0] == 1 && idm[n1] == 3 && idm[n2] == 3, "Wrong InDegMap");
|
kpeter@723
|
550 |
}
|
alpar@877
|
551 |
|
kpeter@684
|
552 |
// CrossRefMap
|
kpeter@684
|
553 |
{
|
kpeter@684
|
554 |
typedef ListDigraph Graph;
|
kpeter@684
|
555 |
DIGRAPH_TYPEDEFS(Graph);
|
kpeter@684
|
556 |
|
kpeter@684
|
557 |
checkConcept<ReadWriteMap<Node, int>,
|
kpeter@684
|
558 |
CrossRefMap<Graph, Node, int> >();
|
kpeter@720
|
559 |
checkConcept<ReadWriteMap<Node, bool>,
|
kpeter@720
|
560 |
CrossRefMap<Graph, Node, bool> >();
|
kpeter@720
|
561 |
checkConcept<ReadWriteMap<Node, double>,
|
kpeter@720
|
562 |
CrossRefMap<Graph, Node, double> >();
|
alpar@877
|
563 |
|
kpeter@684
|
564 |
Graph gr;
|
kpeter@684
|
565 |
typedef CrossRefMap<Graph, Node, char> CRMap;
|
kpeter@684
|
566 |
CRMap map(gr);
|
alpar@877
|
567 |
|
kpeter@684
|
568 |
Node n0 = gr.addNode();
|
kpeter@684
|
569 |
Node n1 = gr.addNode();
|
kpeter@684
|
570 |
Node n2 = gr.addNode();
|
alpar@877
|
571 |
|
kpeter@684
|
572 |
map.set(n0, 'A');
|
kpeter@684
|
573 |
map.set(n1, 'B');
|
kpeter@684
|
574 |
map.set(n2, 'C');
|
alpar@877
|
575 |
|
kpeter@720
|
576 |
check(map[n0] == 'A' && map('A') == n0 && map.inverse()['A'] == n0,
|
kpeter@720
|
577 |
"Wrong CrossRefMap");
|
kpeter@720
|
578 |
check(map[n1] == 'B' && map('B') == n1 && map.inverse()['B'] == n1,
|
kpeter@720
|
579 |
"Wrong CrossRefMap");
|
kpeter@720
|
580 |
check(map[n2] == 'C' && map('C') == n2 && map.inverse()['C'] == n2,
|
kpeter@720
|
581 |
"Wrong CrossRefMap");
|
kpeter@720
|
582 |
check(map.count('A') == 1 && map.count('B') == 1 && map.count('C') == 1,
|
kpeter@720
|
583 |
"Wrong CrossRefMap::count()");
|
alpar@877
|
584 |
|
kpeter@724
|
585 |
CRMap::ValueIt it = map.beginValue();
|
kpeter@720
|
586 |
check(*it++ == 'A' && *it++ == 'B' && *it++ == 'C' &&
|
kpeter@720
|
587 |
it == map.endValue(), "Wrong value iterator");
|
alpar@877
|
588 |
|
kpeter@684
|
589 |
map.set(n2, 'A');
|
kpeter@720
|
590 |
|
kpeter@720
|
591 |
check(map[n0] == 'A' && map[n1] == 'B' && map[n2] == 'A',
|
kpeter@720
|
592 |
"Wrong CrossRefMap");
|
kpeter@720
|
593 |
check(map('A') == n0 && map.inverse()['A'] == n0, "Wrong CrossRefMap");
|
kpeter@720
|
594 |
check(map('B') == n1 && map.inverse()['B'] == n1, "Wrong CrossRefMap");
|
kpeter@720
|
595 |
check(map('C') == INVALID && map.inverse()['C'] == INVALID,
|
kpeter@720
|
596 |
"Wrong CrossRefMap");
|
kpeter@720
|
597 |
check(map.count('A') == 2 && map.count('B') == 1 && map.count('C') == 0,
|
kpeter@720
|
598 |
"Wrong CrossRefMap::count()");
|
kpeter@720
|
599 |
|
kpeter@720
|
600 |
it = map.beginValue();
|
kpeter@720
|
601 |
check(*it++ == 'A' && *it++ == 'A' && *it++ == 'B' &&
|
kpeter@720
|
602 |
it == map.endValue(), "Wrong value iterator");
|
kpeter@720
|
603 |
|
kpeter@684
|
604 |
map.set(n0, 'C');
|
kpeter@684
|
605 |
|
kpeter@684
|
606 |
check(map[n0] == 'C' && map[n1] == 'B' && map[n2] == 'A',
|
kpeter@684
|
607 |
"Wrong CrossRefMap");
|
kpeter@684
|
608 |
check(map('A') == n2 && map.inverse()['A'] == n2, "Wrong CrossRefMap");
|
kpeter@684
|
609 |
check(map('B') == n1 && map.inverse()['B'] == n1, "Wrong CrossRefMap");
|
kpeter@684
|
610 |
check(map('C') == n0 && map.inverse()['C'] == n0, "Wrong CrossRefMap");
|
kpeter@720
|
611 |
check(map.count('A') == 1 && map.count('B') == 1 && map.count('C') == 1,
|
kpeter@720
|
612 |
"Wrong CrossRefMap::count()");
|
kpeter@684
|
613 |
|
kpeter@720
|
614 |
it = map.beginValue();
|
kpeter@684
|
615 |
check(*it++ == 'A' && *it++ == 'B' && *it++ == 'C' &&
|
kpeter@684
|
616 |
it == map.endValue(), "Wrong value iterator");
|
alpar@507
|
617 |
}
|
alpar@507
|
618 |
|
kpeter@684
|
619 |
// CrossRefMap
|
kpeter@684
|
620 |
{
|
alpar@695
|
621 |
typedef SmartDigraph Graph;
|
kpeter@684
|
622 |
DIGRAPH_TYPEDEFS(Graph);
|
kpeter@684
|
623 |
|
kpeter@684
|
624 |
checkConcept<ReadWriteMap<Node, int>,
|
kpeter@684
|
625 |
CrossRefMap<Graph, Node, int> >();
|
alpar@877
|
626 |
|
kpeter@684
|
627 |
Graph gr;
|
kpeter@684
|
628 |
typedef CrossRefMap<Graph, Node, char> CRMap;
|
kpeter@684
|
629 |
typedef CRMap::ValueIterator ValueIt;
|
kpeter@684
|
630 |
CRMap map(gr);
|
alpar@877
|
631 |
|
kpeter@684
|
632 |
Node n0 = gr.addNode();
|
kpeter@684
|
633 |
Node n1 = gr.addNode();
|
kpeter@684
|
634 |
Node n2 = gr.addNode();
|
alpar@877
|
635 |
|
kpeter@684
|
636 |
map.set(n0, 'A');
|
kpeter@684
|
637 |
map.set(n1, 'B');
|
kpeter@684
|
638 |
map.set(n2, 'C');
|
kpeter@684
|
639 |
map.set(n2, 'A');
|
kpeter@684
|
640 |
map.set(n0, 'C');
|
kpeter@684
|
641 |
|
kpeter@684
|
642 |
check(map[n0] == 'C' && map[n1] == 'B' && map[n2] == 'A',
|
kpeter@684
|
643 |
"Wrong CrossRefMap");
|
kpeter@684
|
644 |
check(map('A') == n2 && map.inverse()['A'] == n2, "Wrong CrossRefMap");
|
kpeter@684
|
645 |
check(map('B') == n1 && map.inverse()['B'] == n1, "Wrong CrossRefMap");
|
kpeter@684
|
646 |
check(map('C') == n0 && map.inverse()['C'] == n0, "Wrong CrossRefMap");
|
kpeter@684
|
647 |
|
kpeter@684
|
648 |
ValueIt it = map.beginValue();
|
kpeter@684
|
649 |
check(*it++ == 'A' && *it++ == 'B' && *it++ == 'C' &&
|
kpeter@684
|
650 |
it == map.endValue(), "Wrong value iterator");
|
kpeter@684
|
651 |
}
|
alpar@25
|
652 |
|
deba@693
|
653 |
// Iterable bool map
|
deba@693
|
654 |
{
|
deba@693
|
655 |
typedef SmartGraph Graph;
|
deba@693
|
656 |
typedef SmartGraph::Node Item;
|
deba@693
|
657 |
|
deba@693
|
658 |
typedef IterableBoolMap<SmartGraph, SmartGraph::Node> Ibm;
|
kpeter@694
|
659 |
checkConcept<ReferenceMap<Item, bool, bool&, const bool&>, Ibm>();
|
deba@693
|
660 |
|
deba@693
|
661 |
const int num = 10;
|
deba@693
|
662 |
Graph g;
|
deba@942
|
663 |
Ibm map0(g, true);
|
deba@693
|
664 |
std::vector<Item> items;
|
deba@693
|
665 |
for (int i = 0; i < num; ++i) {
|
deba@693
|
666 |
items.push_back(g.addNode());
|
deba@693
|
667 |
}
|
deba@693
|
668 |
|
deba@693
|
669 |
Ibm map1(g, true);
|
deba@693
|
670 |
int n = 0;
|
deba@693
|
671 |
for (Ibm::TrueIt it(map1); it != INVALID; ++it) {
|
deba@693
|
672 |
check(map1[static_cast<Item>(it)], "Wrong TrueIt");
|
deba@693
|
673 |
++n;
|
deba@693
|
674 |
}
|
deba@693
|
675 |
check(n == num, "Wrong number");
|
deba@693
|
676 |
|
deba@693
|
677 |
n = 0;
|
deba@693
|
678 |
for (Ibm::ItemIt it(map1, true); it != INVALID; ++it) {
|
deba@693
|
679 |
check(map1[static_cast<Item>(it)], "Wrong ItemIt for true");
|
deba@693
|
680 |
++n;
|
deba@693
|
681 |
}
|
deba@693
|
682 |
check(n == num, "Wrong number");
|
deba@693
|
683 |
check(Ibm::FalseIt(map1) == INVALID, "Wrong FalseIt");
|
deba@693
|
684 |
check(Ibm::ItemIt(map1, false) == INVALID, "Wrong ItemIt for false");
|
deba@693
|
685 |
|
deba@693
|
686 |
map1[items[5]] = true;
|
deba@693
|
687 |
|
deba@693
|
688 |
n = 0;
|
deba@693
|
689 |
for (Ibm::ItemIt it(map1, true); it != INVALID; ++it) {
|
deba@693
|
690 |
check(map1[static_cast<Item>(it)], "Wrong ItemIt for true");
|
deba@693
|
691 |
++n;
|
deba@693
|
692 |
}
|
deba@693
|
693 |
check(n == num, "Wrong number");
|
deba@693
|
694 |
|
deba@693
|
695 |
map1[items[num / 2]] = false;
|
deba@693
|
696 |
check(map1[items[num / 2]] == false, "Wrong map value");
|
deba@693
|
697 |
|
deba@693
|
698 |
n = 0;
|
deba@693
|
699 |
for (Ibm::TrueIt it(map1); it != INVALID; ++it) {
|
deba@693
|
700 |
check(map1[static_cast<Item>(it)], "Wrong TrueIt for true");
|
deba@693
|
701 |
++n;
|
deba@693
|
702 |
}
|
deba@693
|
703 |
check(n == num - 1, "Wrong number");
|
deba@693
|
704 |
|
deba@693
|
705 |
n = 0;
|
deba@693
|
706 |
for (Ibm::FalseIt it(map1); it != INVALID; ++it) {
|
deba@693
|
707 |
check(!map1[static_cast<Item>(it)], "Wrong FalseIt for true");
|
deba@693
|
708 |
++n;
|
deba@693
|
709 |
}
|
deba@693
|
710 |
check(n == 1, "Wrong number");
|
deba@693
|
711 |
|
deba@693
|
712 |
map1[items[0]] = false;
|
deba@693
|
713 |
check(map1[items[0]] == false, "Wrong map value");
|
deba@693
|
714 |
|
deba@693
|
715 |
map1[items[num - 1]] = false;
|
deba@693
|
716 |
check(map1[items[num - 1]] == false, "Wrong map value");
|
deba@693
|
717 |
|
deba@693
|
718 |
n = 0;
|
deba@693
|
719 |
for (Ibm::TrueIt it(map1); it != INVALID; ++it) {
|
deba@693
|
720 |
check(map1[static_cast<Item>(it)], "Wrong TrueIt for true");
|
deba@693
|
721 |
++n;
|
deba@693
|
722 |
}
|
deba@693
|
723 |
check(n == num - 3, "Wrong number");
|
deba@693
|
724 |
check(map1.trueNum() == num - 3, "Wrong number");
|
deba@693
|
725 |
|
deba@693
|
726 |
n = 0;
|
deba@693
|
727 |
for (Ibm::FalseIt it(map1); it != INVALID; ++it) {
|
deba@693
|
728 |
check(!map1[static_cast<Item>(it)], "Wrong FalseIt for true");
|
deba@693
|
729 |
++n;
|
deba@693
|
730 |
}
|
deba@693
|
731 |
check(n == 3, "Wrong number");
|
deba@693
|
732 |
check(map1.falseNum() == 3, "Wrong number");
|
deba@693
|
733 |
}
|
deba@693
|
734 |
|
deba@693
|
735 |
// Iterable int map
|
deba@693
|
736 |
{
|
deba@693
|
737 |
typedef SmartGraph Graph;
|
deba@693
|
738 |
typedef SmartGraph::Node Item;
|
deba@693
|
739 |
typedef IterableIntMap<SmartGraph, SmartGraph::Node> Iim;
|
deba@693
|
740 |
|
kpeter@694
|
741 |
checkConcept<ReferenceMap<Item, int, int&, const int&>, Iim>();
|
deba@693
|
742 |
|
deba@693
|
743 |
const int num = 10;
|
deba@693
|
744 |
Graph g;
|
deba@942
|
745 |
Iim map0(g, 0);
|
deba@693
|
746 |
std::vector<Item> items;
|
deba@693
|
747 |
for (int i = 0; i < num; ++i) {
|
deba@693
|
748 |
items.push_back(g.addNode());
|
deba@693
|
749 |
}
|
deba@693
|
750 |
|
deba@693
|
751 |
Iim map1(g);
|
deba@693
|
752 |
check(map1.size() == 0, "Wrong size");
|
deba@693
|
753 |
|
deba@693
|
754 |
for (int i = 0; i < num; ++i) {
|
deba@693
|
755 |
map1[items[i]] = i;
|
deba@693
|
756 |
}
|
deba@693
|
757 |
check(map1.size() == num, "Wrong size");
|
deba@693
|
758 |
|
deba@693
|
759 |
for (int i = 0; i < num; ++i) {
|
deba@693
|
760 |
Iim::ItemIt it(map1, i);
|
deba@693
|
761 |
check(static_cast<Item>(it) == items[i], "Wrong value");
|
deba@693
|
762 |
++it;
|
deba@693
|
763 |
check(static_cast<Item>(it) == INVALID, "Wrong value");
|
deba@693
|
764 |
}
|
deba@693
|
765 |
|
deba@693
|
766 |
for (int i = 0; i < num; ++i) {
|
deba@693
|
767 |
map1[items[i]] = i % 2;
|
deba@693
|
768 |
}
|
deba@693
|
769 |
check(map1.size() == 2, "Wrong size");
|
deba@693
|
770 |
|
deba@693
|
771 |
int n = 0;
|
deba@693
|
772 |
for (Iim::ItemIt it(map1, 0); it != INVALID; ++it) {
|
kpeter@694
|
773 |
check(map1[static_cast<Item>(it)] == 0, "Wrong value");
|
deba@693
|
774 |
++n;
|
deba@693
|
775 |
}
|
deba@693
|
776 |
check(n == (num + 1) / 2, "Wrong number");
|
deba@693
|
777 |
|
deba@693
|
778 |
for (Iim::ItemIt it(map1, 1); it != INVALID; ++it) {
|
kpeter@694
|
779 |
check(map1[static_cast<Item>(it)] == 1, "Wrong value");
|
deba@693
|
780 |
++n;
|
deba@693
|
781 |
}
|
deba@693
|
782 |
check(n == num, "Wrong number");
|
deba@693
|
783 |
|
deba@693
|
784 |
}
|
deba@693
|
785 |
|
deba@693
|
786 |
// Iterable value map
|
deba@693
|
787 |
{
|
deba@693
|
788 |
typedef SmartGraph Graph;
|
deba@693
|
789 |
typedef SmartGraph::Node Item;
|
deba@693
|
790 |
typedef IterableValueMap<SmartGraph, SmartGraph::Node, double> Ivm;
|
deba@693
|
791 |
|
deba@693
|
792 |
checkConcept<ReadWriteMap<Item, double>, Ivm>();
|
deba@693
|
793 |
|
deba@693
|
794 |
const int num = 10;
|
deba@693
|
795 |
Graph g;
|
deba@942
|
796 |
Ivm map0(g, 0.0);
|
deba@693
|
797 |
std::vector<Item> items;
|
deba@693
|
798 |
for (int i = 0; i < num; ++i) {
|
deba@693
|
799 |
items.push_back(g.addNode());
|
deba@693
|
800 |
}
|
deba@693
|
801 |
|
deba@693
|
802 |
Ivm map1(g, 0.0);
|
deba@693
|
803 |
check(distance(map1.beginValue(), map1.endValue()) == 1, "Wrong size");
|
deba@693
|
804 |
check(*map1.beginValue() == 0.0, "Wrong value");
|
deba@693
|
805 |
|
deba@693
|
806 |
for (int i = 0; i < num; ++i) {
|
deba@693
|
807 |
map1.set(items[i], static_cast<double>(i));
|
deba@693
|
808 |
}
|
deba@693
|
809 |
check(distance(map1.beginValue(), map1.endValue()) == num, "Wrong size");
|
deba@693
|
810 |
|
deba@693
|
811 |
for (int i = 0; i < num; ++i) {
|
deba@693
|
812 |
Ivm::ItemIt it(map1, static_cast<double>(i));
|
deba@693
|
813 |
check(static_cast<Item>(it) == items[i], "Wrong value");
|
deba@693
|
814 |
++it;
|
deba@693
|
815 |
check(static_cast<Item>(it) == INVALID, "Wrong value");
|
deba@693
|
816 |
}
|
deba@693
|
817 |
|
kpeter@724
|
818 |
for (Ivm::ValueIt vit = map1.beginValue();
|
deba@693
|
819 |
vit != map1.endValue(); ++vit) {
|
deba@693
|
820 |
check(map1[static_cast<Item>(Ivm::ItemIt(map1, *vit))] == *vit,
|
kpeter@724
|
821 |
"Wrong ValueIt");
|
deba@693
|
822 |
}
|
deba@693
|
823 |
|
deba@693
|
824 |
for (int i = 0; i < num; ++i) {
|
deba@693
|
825 |
map1.set(items[i], static_cast<double>(i % 2));
|
deba@693
|
826 |
}
|
deba@693
|
827 |
check(distance(map1.beginValue(), map1.endValue()) == 2, "Wrong size");
|
deba@693
|
828 |
|
deba@693
|
829 |
int n = 0;
|
deba@693
|
830 |
for (Ivm::ItemIt it(map1, 0.0); it != INVALID; ++it) {
|
kpeter@694
|
831 |
check(map1[static_cast<Item>(it)] == 0.0, "Wrong value");
|
deba@693
|
832 |
++n;
|
deba@693
|
833 |
}
|
deba@693
|
834 |
check(n == (num + 1) / 2, "Wrong number");
|
deba@693
|
835 |
|
deba@693
|
836 |
for (Ivm::ItemIt it(map1, 1.0); it != INVALID; ++it) {
|
kpeter@694
|
837 |
check(map1[static_cast<Item>(it)] == 1.0, "Wrong value");
|
deba@693
|
838 |
++n;
|
deba@693
|
839 |
}
|
deba@693
|
840 |
check(n == num, "Wrong number");
|
deba@693
|
841 |
|
deba@693
|
842 |
}
|
alpar@877
|
843 |
|
kpeter@789
|
844 |
// Graph map utilities:
|
kpeter@789
|
845 |
// mapMin(), mapMax(), mapMinValue(), mapMaxValue()
|
kpeter@789
|
846 |
// mapFind(), mapFindIf(), mapCount(), mapCountIf()
|
kpeter@789
|
847 |
// mapCopy(), mapCompare(), mapFill()
|
kpeter@789
|
848 |
{
|
kpeter@789
|
849 |
DIGRAPH_TYPEDEFS(SmartDigraph);
|
kpeter@789
|
850 |
|
kpeter@789
|
851 |
SmartDigraph g;
|
kpeter@789
|
852 |
Node n1 = g.addNode();
|
kpeter@789
|
853 |
Node n2 = g.addNode();
|
kpeter@789
|
854 |
Node n3 = g.addNode();
|
alpar@877
|
855 |
|
kpeter@789
|
856 |
SmartDigraph::NodeMap<int> map1(g);
|
kpeter@789
|
857 |
SmartDigraph::ArcMap<char> map2(g);
|
kpeter@789
|
858 |
ConstMap<Node, A> cmap1 = A();
|
kpeter@789
|
859 |
ConstMap<Arc, C> cmap2 = C(0);
|
alpar@877
|
860 |
|
kpeter@789
|
861 |
map1[n1] = 10;
|
kpeter@789
|
862 |
map1[n2] = 5;
|
kpeter@789
|
863 |
map1[n3] = 12;
|
alpar@877
|
864 |
|
kpeter@789
|
865 |
// mapMin(), mapMax(), mapMinValue(), mapMaxValue()
|
kpeter@789
|
866 |
check(mapMin(g, map1) == n2, "Wrong mapMin()");
|
kpeter@789
|
867 |
check(mapMax(g, map1) == n3, "Wrong mapMax()");
|
kpeter@789
|
868 |
check(mapMin(g, map1, std::greater<int>()) == n3, "Wrong mapMin()");
|
kpeter@789
|
869 |
check(mapMax(g, map1, std::greater<int>()) == n2, "Wrong mapMax()");
|
kpeter@789
|
870 |
check(mapMinValue(g, map1) == 5, "Wrong mapMinValue()");
|
kpeter@789
|
871 |
check(mapMaxValue(g, map1) == 12, "Wrong mapMaxValue()");
|
kpeter@789
|
872 |
|
kpeter@789
|
873 |
check(mapMin(g, map2) == INVALID, "Wrong mapMin()");
|
kpeter@789
|
874 |
check(mapMax(g, map2) == INVALID, "Wrong mapMax()");
|
kpeter@789
|
875 |
|
kpeter@789
|
876 |
check(mapMin(g, cmap1) != INVALID, "Wrong mapMin()");
|
kpeter@789
|
877 |
check(mapMax(g, cmap2) == INVALID, "Wrong mapMax()");
|
kpeter@789
|
878 |
|
kpeter@789
|
879 |
Arc a1 = g.addArc(n1, n2);
|
kpeter@789
|
880 |
Arc a2 = g.addArc(n1, n3);
|
kpeter@789
|
881 |
Arc a3 = g.addArc(n2, n3);
|
kpeter@789
|
882 |
Arc a4 = g.addArc(n3, n1);
|
alpar@877
|
883 |
|
kpeter@789
|
884 |
map2[a1] = 'b';
|
kpeter@789
|
885 |
map2[a2] = 'a';
|
kpeter@789
|
886 |
map2[a3] = 'b';
|
kpeter@789
|
887 |
map2[a4] = 'c';
|
kpeter@789
|
888 |
|
kpeter@789
|
889 |
// mapMin(), mapMax(), mapMinValue(), mapMaxValue()
|
kpeter@789
|
890 |
check(mapMin(g, map2) == a2, "Wrong mapMin()");
|
kpeter@789
|
891 |
check(mapMax(g, map2) == a4, "Wrong mapMax()");
|
kpeter@789
|
892 |
check(mapMin(g, map2, std::greater<int>()) == a4, "Wrong mapMin()");
|
kpeter@789
|
893 |
check(mapMax(g, map2, std::greater<int>()) == a2, "Wrong mapMax()");
|
kpeter@789
|
894 |
check(mapMinValue(g, map2, std::greater<int>()) == 'c',
|
kpeter@789
|
895 |
"Wrong mapMinValue()");
|
kpeter@789
|
896 |
check(mapMaxValue(g, map2, std::greater<int>()) == 'a',
|
kpeter@789
|
897 |
"Wrong mapMaxValue()");
|
kpeter@789
|
898 |
|
kpeter@789
|
899 |
check(mapMin(g, cmap1) != INVALID, "Wrong mapMin()");
|
kpeter@789
|
900 |
check(mapMax(g, cmap2) != INVALID, "Wrong mapMax()");
|
kpeter@789
|
901 |
check(mapMaxValue(g, cmap2) == C(0), "Wrong mapMaxValue()");
|
kpeter@789
|
902 |
|
kpeter@789
|
903 |
check(mapMin(g, composeMap(functorToMap(&createC), map2)) == a2,
|
kpeter@789
|
904 |
"Wrong mapMin()");
|
kpeter@789
|
905 |
check(mapMax(g, composeMap(functorToMap(&createC), map2)) == a4,
|
kpeter@789
|
906 |
"Wrong mapMax()");
|
kpeter@789
|
907 |
check(mapMinValue(g, composeMap(functorToMap(&createC), map2)) == C('a'),
|
kpeter@789
|
908 |
"Wrong mapMinValue()");
|
kpeter@789
|
909 |
check(mapMaxValue(g, composeMap(functorToMap(&createC), map2)) == C('c'),
|
kpeter@789
|
910 |
"Wrong mapMaxValue()");
|
kpeter@789
|
911 |
|
kpeter@789
|
912 |
// mapFind(), mapFindIf()
|
kpeter@789
|
913 |
check(mapFind(g, map1, 5) == n2, "Wrong mapFind()");
|
kpeter@789
|
914 |
check(mapFind(g, map1, 6) == INVALID, "Wrong mapFind()");
|
kpeter@789
|
915 |
check(mapFind(g, map2, 'a') == a2, "Wrong mapFind()");
|
kpeter@789
|
916 |
check(mapFind(g, map2, 'e') == INVALID, "Wrong mapFind()");
|
kpeter@789
|
917 |
check(mapFind(g, cmap2, C(0)) == ArcIt(g), "Wrong mapFind()");
|
kpeter@789
|
918 |
check(mapFind(g, cmap2, C(1)) == INVALID, "Wrong mapFind()");
|
kpeter@789
|
919 |
|
kpeter@789
|
920 |
check(mapFindIf(g, map1, Less<int>(7)) == n2,
|
kpeter@789
|
921 |
"Wrong mapFindIf()");
|
kpeter@789
|
922 |
check(mapFindIf(g, map1, Less<int>(5)) == INVALID,
|
kpeter@789
|
923 |
"Wrong mapFindIf()");
|
kpeter@789
|
924 |
check(mapFindIf(g, map2, Less<char>('d')) == ArcIt(g),
|
kpeter@789
|
925 |
"Wrong mapFindIf()");
|
kpeter@789
|
926 |
check(mapFindIf(g, map2, Less<char>('a')) == INVALID,
|
kpeter@789
|
927 |
"Wrong mapFindIf()");
|
kpeter@789
|
928 |
|
kpeter@789
|
929 |
// mapCount(), mapCountIf()
|
kpeter@789
|
930 |
check(mapCount(g, map1, 5) == 1, "Wrong mapCount()");
|
kpeter@789
|
931 |
check(mapCount(g, map1, 6) == 0, "Wrong mapCount()");
|
kpeter@789
|
932 |
check(mapCount(g, map2, 'a') == 1, "Wrong mapCount()");
|
kpeter@789
|
933 |
check(mapCount(g, map2, 'b') == 2, "Wrong mapCount()");
|
kpeter@789
|
934 |
check(mapCount(g, map2, 'e') == 0, "Wrong mapCount()");
|
kpeter@789
|
935 |
check(mapCount(g, cmap2, C(0)) == 4, "Wrong mapCount()");
|
kpeter@789
|
936 |
check(mapCount(g, cmap2, C(1)) == 0, "Wrong mapCount()");
|
kpeter@789
|
937 |
|
kpeter@789
|
938 |
check(mapCountIf(g, map1, Less<int>(11)) == 2,
|
kpeter@789
|
939 |
"Wrong mapCountIf()");
|
kpeter@789
|
940 |
check(mapCountIf(g, map1, Less<int>(13)) == 3,
|
kpeter@789
|
941 |
"Wrong mapCountIf()");
|
kpeter@789
|
942 |
check(mapCountIf(g, map1, Less<int>(5)) == 0,
|
kpeter@789
|
943 |
"Wrong mapCountIf()");
|
kpeter@789
|
944 |
check(mapCountIf(g, map2, Less<char>('d')) == 4,
|
kpeter@789
|
945 |
"Wrong mapCountIf()");
|
kpeter@789
|
946 |
check(mapCountIf(g, map2, Less<char>('c')) == 3,
|
kpeter@789
|
947 |
"Wrong mapCountIf()");
|
kpeter@789
|
948 |
check(mapCountIf(g, map2, Less<char>('a')) == 0,
|
kpeter@789
|
949 |
"Wrong mapCountIf()");
|
alpar@877
|
950 |
|
kpeter@789
|
951 |
// MapIt, ConstMapIt
|
kpeter@789
|
952 |
/*
|
kpeter@789
|
953 |
These tests can be used after applying bugfix #330
|
kpeter@789
|
954 |
typedef SmartDigraph::NodeMap<int>::MapIt MapIt;
|
kpeter@789
|
955 |
typedef SmartDigraph::NodeMap<int>::ConstMapIt ConstMapIt;
|
kpeter@789
|
956 |
check(*std::min_element(MapIt(map1), MapIt(INVALID)) == 5,
|
kpeter@789
|
957 |
"Wrong NodeMap<>::MapIt");
|
kpeter@789
|
958 |
check(*std::max_element(ConstMapIt(map1), ConstMapIt(INVALID)) == 12,
|
kpeter@789
|
959 |
"Wrong NodeMap<>::MapIt");
|
alpar@877
|
960 |
|
kpeter@789
|
961 |
int sum = 0;
|
kpeter@789
|
962 |
std::for_each(MapIt(map1), MapIt(INVALID), Sum<int>(sum));
|
kpeter@789
|
963 |
check(sum == 27, "Wrong NodeMap<>::MapIt");
|
kpeter@789
|
964 |
std::for_each(ConstMapIt(map1), ConstMapIt(INVALID), Sum<int>(sum));
|
kpeter@789
|
965 |
check(sum == 54, "Wrong NodeMap<>::ConstMapIt");
|
kpeter@789
|
966 |
*/
|
kpeter@789
|
967 |
|
kpeter@789
|
968 |
// mapCopy(), mapCompare(), mapFill()
|
kpeter@789
|
969 |
check(mapCompare(g, map1, map1), "Wrong mapCompare()");
|
kpeter@789
|
970 |
check(mapCompare(g, cmap2, cmap2), "Wrong mapCompare()");
|
kpeter@789
|
971 |
check(mapCompare(g, map1, shiftMap(map1, 0)), "Wrong mapCompare()");
|
kpeter@789
|
972 |
check(mapCompare(g, map2, scaleMap(map2, 1)), "Wrong mapCompare()");
|
kpeter@789
|
973 |
check(!mapCompare(g, map1, shiftMap(map1, 1)), "Wrong mapCompare()");
|
kpeter@789
|
974 |
|
kpeter@789
|
975 |
SmartDigraph::NodeMap<int> map3(g, 0);
|
kpeter@789
|
976 |
SmartDigraph::ArcMap<char> map4(g, 'a');
|
alpar@877
|
977 |
|
kpeter@789
|
978 |
check(!mapCompare(g, map1, map3), "Wrong mapCompare()");
|
alpar@877
|
979 |
check(!mapCompare(g, map2, map4), "Wrong mapCompare()");
|
alpar@877
|
980 |
|
kpeter@789
|
981 |
mapCopy(g, map1, map3);
|
kpeter@789
|
982 |
mapCopy(g, map2, map4);
|
kpeter@789
|
983 |
|
kpeter@789
|
984 |
check(mapCompare(g, map1, map3), "Wrong mapCompare() or mapCopy()");
|
alpar@877
|
985 |
check(mapCompare(g, map2, map4), "Wrong mapCompare() or mapCopy()");
|
alpar@877
|
986 |
|
kpeter@789
|
987 |
Undirector<SmartDigraph> ug(g);
|
kpeter@789
|
988 |
Undirector<SmartDigraph>::EdgeMap<char> umap1(ug, 'x');
|
kpeter@789
|
989 |
Undirector<SmartDigraph>::ArcMap<double> umap2(ug, 3.14);
|
alpar@877
|
990 |
|
kpeter@789
|
991 |
check(!mapCompare(g, map2, umap1), "Wrong mapCompare() or mapCopy()");
|
kpeter@789
|
992 |
check(!mapCompare(g, umap1, map2), "Wrong mapCompare() or mapCopy()");
|
kpeter@789
|
993 |
check(!mapCompare(ug, map2, umap1), "Wrong mapCompare() or mapCopy()");
|
kpeter@789
|
994 |
check(!mapCompare(ug, umap1, map2), "Wrong mapCompare() or mapCopy()");
|
alpar@877
|
995 |
|
kpeter@789
|
996 |
mapCopy(g, map2, umap1);
|
kpeter@789
|
997 |
|
kpeter@789
|
998 |
check(mapCompare(g, map2, umap1), "Wrong mapCompare() or mapCopy()");
|
kpeter@789
|
999 |
check(mapCompare(g, umap1, map2), "Wrong mapCompare() or mapCopy()");
|
kpeter@789
|
1000 |
check(mapCompare(ug, map2, umap1), "Wrong mapCompare() or mapCopy()");
|
kpeter@789
|
1001 |
check(mapCompare(ug, umap1, map2), "Wrong mapCompare() or mapCopy()");
|
alpar@877
|
1002 |
|
kpeter@789
|
1003 |
mapCopy(g, map2, umap1);
|
kpeter@789
|
1004 |
mapCopy(g, umap1, map2);
|
kpeter@789
|
1005 |
mapCopy(ug, map2, umap1);
|
kpeter@789
|
1006 |
mapCopy(ug, umap1, map2);
|
alpar@877
|
1007 |
|
kpeter@789
|
1008 |
check(!mapCompare(ug, umap1, umap2), "Wrong mapCompare() or mapCopy()");
|
kpeter@789
|
1009 |
mapCopy(ug, umap1, umap2);
|
kpeter@789
|
1010 |
check(mapCompare(ug, umap1, umap2), "Wrong mapCompare() or mapCopy()");
|
alpar@877
|
1011 |
|
kpeter@789
|
1012 |
check(!mapCompare(g, map1, constMap<Node>(2)), "Wrong mapCompare()");
|
kpeter@789
|
1013 |
mapFill(g, map1, 2);
|
kpeter@789
|
1014 |
check(mapCompare(g, constMap<Node>(2), map1), "Wrong mapFill()");
|
kpeter@789
|
1015 |
|
kpeter@789
|
1016 |
check(!mapCompare(g, map2, constMap<Arc>('z')), "Wrong mapCompare()");
|
kpeter@789
|
1017 |
mapCopy(g, constMap<Arc>('z'), map2);
|
kpeter@789
|
1018 |
check(mapCompare(g, constMap<Arc>('z'), map2), "Wrong mapCopy()");
|
kpeter@789
|
1019 |
}
|
alpar@877
|
1020 |
|
alpar@25
|
1021 |
return 0;
|
alpar@25
|
1022 |
}
|