test/heap_test.h
author deba
Tue, 31 Jan 2006 19:33:48 +0000
changeset 1931 6abf67b02ff5
parent 1745 d356e54bdafc
child 1956 a055123339d5
permissions -rw-r--r--
New iterable map with comparable values
it uses linked lists and balanced binary tree

IterableBoolMap has ItemIt type as the other iterable maps

InvertableMap got ValueIterator
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// -*- c++ -*-
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#include <vector>
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#include <algorithm>
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#include <lemon/dijkstra.h>
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class IntIntMap : public std::vector<int> {
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public:
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  typedef std::vector<int> Parent;
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  IntIntMap() : Parent() {}
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  IntIntMap(int n) : Parent(n) {}
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  IntIntMap(int n, int v) : Parent(n, v) {}
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  void set(int key, int value) {
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    Parent::operator[](key) = value;
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  }
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};
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template <typename _Heap>
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void heapSortTest(int n) {
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  typedef _Heap Heap;
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  IntIntMap map(n, -1);
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  Heap heap(map);
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  std::vector<int> v(n);
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  for (int i = 0; i < n; ++i) {
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    v[i] = rand() % 1000;
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    heap.push(i, v[i]);
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  }
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  std::sort(v.begin(), v.end());
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  for (int i = 0; i < n; ++i) {
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    check(v[i] == heap.prio() ,"Wrong order in heap sort.");
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    heap.pop();
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  }
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}
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template <typename _Heap>
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void heapIncreaseTest(int n) {
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  typedef _Heap Heap;
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  IntIntMap map(n, -1);
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  Heap heap(map);
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  std::vector<int> v(n);
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  for (int i = 0; i < n; ++i) {
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    v[i] = rand() % 1000;
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    heap.push(i, v[i]);
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  }
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  for (int i = 0; i < n; ++i) {
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    v[i] += rand() % 1000;
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    heap.increase(i, v[i]);
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  }
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  std::sort(v.begin(), v.end());
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  for (int i = 0; i < n; ++i) {
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    check(v[i] == heap.prio() ,"Wrong order in heap increase test.");
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    heap.pop();
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  }
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}
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template <typename _Graph, typename _LengthMap, typename _Heap>
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void dijkstraHeapTest(_Graph& graph, _LengthMap& length,
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		      typename _Graph::Node& start) {
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  typedef _Heap Heap;
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  typedef _Graph Graph;
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  typedef _LengthMap LengthMap;
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  typedef typename Graph::Node Node;
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  typedef typename Graph::Edge Edge;
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  typedef typename Graph::NodeIt NodeIt;
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  typedef typename Graph::EdgeIt EdgeIt;
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  typename Dijkstra<Graph, LengthMap>::template DefStandardHeap<Heap>::
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    Create dijkstra(graph, length);
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  dijkstra.run(start);
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  for(EdgeIt e(graph); e!=INVALID; ++e) {
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    Node u=graph.source(e); 
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    Node v=graph.target(e);
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    if (dijkstra.reached(u)) {
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      check( dijkstra.dist(v) - dijkstra.dist(u) <= length[e],
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      	     "Error in a shortest path tree edge!");
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    }
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  }
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  for(NodeIt v(graph); v!=INVALID; ++v) {
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    if ( dijkstra.reached(v) && dijkstra.predEdge(v) != INVALID ) {
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      Edge e=dijkstra.predEdge(v);
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      Node u=graph.source(e);
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      check( dijkstra.dist(v) - dijkstra .dist(u) == length[e],
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	     "Error in a shortest path tree edge!");
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    }
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  }
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}