GCC Code Coverage Report
Directory: . Exec Total Coverage
File: src/prop/minisat/mtl/Heap.h Lines: 69 77 89.6 %
Date: 2021-09-12 Branches: 35 124 28.2 %

Line Exec Source
1
/******************************************************************************************[Heap.h]
2
Copyright (c) 2003-2006, Niklas Een, Niklas Sorensson
3
Copyright (c) 2007-2010, Niklas Sorensson
4
5
Permission is hereby granted, free of charge, to any person obtaining a copy of this software and
6
associated documentation files (the "Software"), to deal in the Software without restriction,
7
including without limitation the rights to use, copy, modify, merge, publish, distribute,
8
sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is
9
furnished to do so, subject to the following conditions:
10
11
The above copyright notice and this permission notice shall be included in all copies or
12
substantial portions of the Software.
13
14
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT
15
NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
16
NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,
17
DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT
18
OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
19
**************************************************************************************************/
20
21
#ifndef Minisat_Heap_h
22
#define Minisat_Heap_h
23
24
#include "base/check.h"
25
#include "prop/minisat/mtl/Vec.h"
26
27
namespace cvc5 {
28
namespace Minisat {
29
30
//=================================================================================================
31
// A heap implementation with support for decrease/increase key.
32
33
34
template<class Comp>
35
19958
class Heap {
36
    Comp     lt;       // The heap is a minimum-heap with respect to this comparator
37
    vec<int> heap;     // Heap of integers
38
    vec<int> indices;  // Each integers position (index) in the Heap
39
40
    // Index "traversal" functions
41
67560566
    static inline int left  (int i) { return i*2+1; }
42
61033269
    static inline int right (int i) { return (i+1)*2; }
43
103848805
    static inline int parent(int i) { return (i-1) >> 1; }
44
45
46
53325695
    void percolateUp(int i)
47
    {
48
53325695
        int x  = heap[i];
49
53325695
        int p  = parent(i);
50
51
154371915
        while (i != 0 && lt(x, heap[p])){
52
50523110
            heap[i]          = heap[p];
53
50523110
            indices[heap[p]] = i;
54
50523110
            i                = p;
55
50523110
            p                = parent(p);
56
        }
57
53325695
        heap   [i] = x;
58
53325695
        indices[x] = i;
59
53325695
    }
60
61
62
8182903
    void percolateDown(int i)
63
    {
64
8182903
        int x = heap[i];
65
47952399
        while (left(i) < heap.size()){
66
25265611
            int child = right(i) < heap.size() && lt(heap[right(i)], heap[left(i)]) ? right(i) : left(i);
67
25265611
            if (!lt(heap[child], x)) break;
68
19884748
            heap[i]          = heap[child];
69
19884748
            indices[heap[i]] = i;
70
19884748
            i                = child;
71
        }
72
8182903
        heap   [i] = x;
73
8182903
        indices[x] = i;
74
8182903
    }
75
76
77
  public:
78
19964
    Heap(const Comp& c) : lt(c) { }
79
80
919
    int  size      ()          const { return heap.size(); }
81
4936494
    bool empty     ()          const { return heap.size() == 0; }
82
235994337
    bool inHeap    (int n)     const { return n < indices.size() && indices[n] >= 0; }
83
    int operator[](int index) const
84
    {
85
      Assert(index < heap.size());
86
      return heap[index];
87
    }
88
89
46539789
    void decrease(int n)
90
    {
91
46539789
      Assert(inHeap(n));
92
46539789
      percolateUp(indices[n]);
93
46539789
    }
94
1572039
    void increase(int n)
95
    {
96
1572039
      Assert(inHeap(n));
97
1572039
      percolateDown(indices[n]);
98
1572039
    }
99
100
    // Safe variant of insert/decrease/increase:
101
690819
    void update(int n)
102
    {
103
690819
        if (!inHeap(n))
104
13073
            insert(n);
105
        else {
106
677746
            percolateUp(indices[n]);
107
677746
            percolateDown(indices[n]); }
108
690819
    }
109
110
111
6108160
    void insert(int n)
112
    {
113
6108160
        indices.growTo(n+1, -1);
114
6108160
        Assert(!inHeap(n));
115
116
6108160
        indices[n] = heap.size();
117
6108160
        heap.push(n);
118
6108160
        percolateUp(indices[n]);
119
6108160
    }
120
121
122
4860151
    int  removeMin()
123
    {
124
4860151
        int x            = heap[0];
125
4860151
        heap[0]          = heap.last();
126
4860151
        indices[heap[0]] = 0;
127
4860151
        indices[x]       = -1;
128
4860151
        heap.pop();
129
4860151
        if (heap.size() > 1) percolateDown(0);
130
4860151
        return x;
131
    }
132
133
134
    // Rebuild the heap from scratch, using the elements in 'ns':
135
18263
    void build(vec<int>& ns) {
136
2461593
        for (int i = 0; i < heap.size(); i++)
137
2443330
            indices[heap[i]] = -1;
138
18263
        heap.clear();
139
140
2245053
        for (int i = 0; i < ns.size(); i++){
141
2226790
            indices[ns[i]] = i;
142
2226790
            heap.push(ns[i]); }
143
144
1128393
        for (int i = heap.size() / 2 - 1; i >= 0; i--)
145
1110130
            percolateDown(i);
146
18263
    }
147
148
    void clear(bool dealloc = false)
149
    {
150
        for (int i = 0; i < heap.size(); i++)
151
            indices[heap[i]] = -1;
152
        heap.clear(dealloc);
153
    }
154
};
155
156
157
//=================================================================================================
158
}
159
}  // namespace cvc5
160
161
#endif