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@@ -27,206 +27,206 @@ |
| 27 | 27 |
#include <lemon/error.h> |
| 28 | 28 |
#include <lemon/bits/graph_extender.h> |
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|
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#include <vector> |
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#include <list> |
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|
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namespace lemon {
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|
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class ListDigraph; |
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class ListDigraphBase {
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protected: |
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struct NodeT {
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int first_in, first_out; |
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int prev, next; |
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}; |
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|
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struct ArcT {
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int target, source; |
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int prev_in, prev_out; |
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int next_in, next_out; |
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}; |
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|
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std::vector<NodeT> nodes; |
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|
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int first_node; |
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|
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int first_free_node; |
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|
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std::vector<ArcT> arcs; |
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|
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int first_free_arc; |
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|
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public: |
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typedef ListDigraphBase Digraph; |
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class Node {
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friend class ListDigraphBase; |
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friend class ListDigraph; |
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protected: |
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|
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int id; |
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explicit Node(int pid) { id = pid;}
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public: |
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Node() {}
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Node (Invalid) { id = -1; }
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bool operator==(const Node& node) const {return id == node.id;}
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bool operator!=(const Node& node) const {return id != node.id;}
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bool operator<(const Node& node) const {return id < node.id;}
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}; |
| 80 | 80 |
|
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class Arc {
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friend class ListDigraphBase; |
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friend class ListDigraph; |
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protected: |
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|
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int id; |
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explicit Arc(int pid) { id = pid;}
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public: |
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Arc() {}
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Arc (Invalid) { id = -1; }
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bool operator==(const Arc& arc) const {return id == arc.id;}
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bool operator!=(const Arc& arc) const {return id != arc.id;}
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bool operator<(const Arc& arc) const {return id < arc.id;}
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}; |
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|
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ListDigraphBase() |
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: nodes(), first_node(-1), |
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first_free_node(-1), arcs(), first_free_arc(-1) {}
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| 102 | 102 |
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| 103 | 103 |
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int maxNodeId() const { return nodes.size()-1; }
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| 105 | 105 |
int maxArcId() const { return arcs.size()-1; }
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| 106 | 106 |
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Node source(Arc e) const { return Node(arcs[e.id].source); }
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Node target(Arc e) const { return Node(arcs[e.id].target); }
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| 109 | 109 |
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| 110 | 110 |
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void first(Node& node) const {
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node.id = first_node; |
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} |
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void next(Node& node) const {
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node.id = nodes[node.id].next; |
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} |
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void first(Arc& arc) const {
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int n; |
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for(n = first_node; |
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n!=-1 && nodes[n]. |
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n != -1 && nodes[n].first_out == -1; |
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n = nodes[n].next) {}
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arc.id = (n == -1) ? -1 : nodes[n]. |
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arc.id = (n == -1) ? -1 : nodes[n].first_out; |
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} |
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void next(Arc& arc) const {
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if (arcs[arc.id].next_in != -1) {
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arc.id = arcs[arc.id].next_in; |
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if (arcs[arc.id].next_out != -1) {
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arc.id = arcs[arc.id].next_out; |
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} else {
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int n; |
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for(n = nodes[arcs[arc.id].target].next; |
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n!=-1 && nodes[n].first_in == -1; |
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for(n = nodes[arcs[arc.id].source].next; |
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n != -1 && nodes[n].first_out == -1; |
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| 135 | 135 |
n = nodes[n].next) {}
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arc.id = (n == -1) ? -1 : nodes[n]. |
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arc.id = (n == -1) ? -1 : nodes[n].first_out; |
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} |
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} |
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void firstOut(Arc &e, const Node& v) const {
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e.id = nodes[v.id].first_out; |
| 142 | 142 |
} |
| 143 | 143 |
void nextOut(Arc &e) const {
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e.id=arcs[e.id].next_out; |
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} |
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void firstIn(Arc &e, const Node& v) const {
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| 148 | 148 |
e.id = nodes[v.id].first_in; |
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} |
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void nextIn(Arc &e) const {
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e.id=arcs[e.id].next_in; |
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} |
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static int id(Node v) { return v.id; }
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| 156 | 156 |
static int id(Arc e) { return e.id; }
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| 157 | 157 |
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static Node nodeFromId(int id) { return Node(id);}
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| 159 | 159 |
static Arc arcFromId(int id) { return Arc(id);}
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| 160 | 160 |
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bool valid(Node n) const {
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| 162 | 162 |
return n.id >= 0 && n.id < static_cast<int>(nodes.size()) && |
| 163 | 163 |
nodes[n.id].prev != -2; |
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} |
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|
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bool valid(Arc a) const {
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return a.id >= 0 && a.id < static_cast<int>(arcs.size()) && |
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arcs[a.id].prev_in != -2; |
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} |
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|
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Node addNode() {
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int n; |
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|
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if(first_free_node==-1) {
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n = nodes.size(); |
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nodes.push_back(NodeT()); |
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} else {
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n = first_free_node; |
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first_free_node = nodes[n].next; |
| 180 | 180 |
} |
| 181 | 181 |
|
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nodes[n].next = first_node; |
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if(first_node != -1) nodes[first_node].prev = n; |
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first_node = n; |
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nodes[n].prev = -1; |
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nodes[n].first_in = nodes[n].first_out = -1; |
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return Node(n); |
| 190 | 190 |
} |
| 191 | 191 |
|
| 192 | 192 |
Arc addArc(Node u, Node v) {
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| 193 | 193 |
int n; |
| 194 | 194 |
|
| 195 | 195 |
if (first_free_arc == -1) {
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| 196 | 196 |
n = arcs.size(); |
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arcs.push_back(ArcT()); |
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} else {
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| 199 | 199 |
n = first_free_arc; |
| 200 | 200 |
first_free_arc = arcs[n].next_in; |
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} |
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|
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arcs[n].source = u.id; |
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arcs[n].target = v.id; |
| 205 | 205 |
|
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arcs[n].next_out = nodes[u.id].first_out; |
| 207 | 207 |
if(nodes[u.id].first_out != -1) {
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| 208 | 208 |
arcs[nodes[u.id].first_out].prev_out = n; |
| 209 | 209 |
} |
| 210 | 210 |
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arcs[n].next_in = nodes[v.id].first_in; |
| 212 | 212 |
if(nodes[v.id].first_in != -1) {
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| 213 | 213 |
arcs[nodes[v.id].first_in].prev_in = n; |
| 214 | 214 |
} |
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arcs[n].prev_in = arcs[n].prev_out = -1; |
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nodes[u.id].first_out = nodes[v.id].first_in = n; |
| 219 | 219 |
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return Arc(n); |
| 221 | 221 |
} |
| 222 | 222 |
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| 223 | 223 |
void erase(const Node& node) {
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| 224 | 224 |
int n = node.id; |
| 225 | 225 |
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| 226 | 226 |
if(nodes[n].next != -1) {
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nodes[nodes[n].next].prev = nodes[n].prev; |
| 228 | 228 |
} |
| 229 | 229 |
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| 230 | 230 |
if(nodes[n].prev != -1) {
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nodes[nodes[n].prev].next = nodes[n].next; |
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} else {
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