0
6
0
3
3
... | ... |
@@ -23,49 +23,49 @@ |
23 | 23 |
# C4250: 'class1' : inherits 'class2::member' via dominance |
24 | 24 |
# C4355: 'this' : used in base member initializer list |
25 | 25 |
# C4800: 'type' : forcing value to bool 'true' or 'false' (performance warning) |
26 | 26 |
# C4996: 'function': was declared deprecated |
27 | 27 |
ENDIF(MSVC) |
28 | 28 |
|
29 | 29 |
INCLUDE(CheckTypeSize) |
30 | 30 |
CHECK_TYPE_SIZE("long long" LEMON_LONG_LONG) |
31 | 31 |
|
32 | 32 |
ENABLE_TESTING() |
33 | 33 |
|
34 | 34 |
ADD_SUBDIRECTORY(lemon) |
35 | 35 |
IF(${CMAKE_SOURCE_DIR} STREQUAL ${PROJECT_SOURCE_DIR}) |
36 | 36 |
ADD_SUBDIRECTORY(demo) |
37 | 37 |
ADD_SUBDIRECTORY(tools) |
38 | 38 |
ADD_SUBDIRECTORY(doc) |
39 | 39 |
ADD_SUBDIRECTORY(test) |
40 | 40 |
ENDIF(${CMAKE_SOURCE_DIR} STREQUAL ${PROJECT_SOURCE_DIR}) |
41 | 41 |
|
42 | 42 |
IF(${CMAKE_SOURCE_DIR} STREQUAL ${PROJECT_SOURCE_DIR}) |
43 | 43 |
IF(WIN32) |
44 | 44 |
SET(CPACK_PACKAGE_NAME ${PROJECT_NAME}) |
45 | 45 |
SET(CPACK_PACKAGE_VENDOR "EGRES") |
46 | 46 |
SET(CPACK_PACKAGE_DESCRIPTION_SUMMARY |
47 |
"LEMON - Library |
|
47 |
"LEMON - Library for Efficient Modeling and Optimization in Networks") |
|
48 | 48 |
SET(CPACK_RESOURCE_FILE_LICENSE "${PROJECT_SOURCE_DIR}/LICENSE") |
49 | 49 |
|
50 | 50 |
SET(CPACK_PACKAGE_VERSION ${PROJECT_VERSION}) |
51 | 51 |
|
52 | 52 |
SET(CPACK_PACKAGE_INSTALL_DIRECTORY |
53 | 53 |
"${PROJECT_NAME} ${PROJECT_VERSION}") |
54 | 54 |
SET(CPACK_PACKAGE_INSTALL_REGISTRY_KEY |
55 | 55 |
"${PROJECT_NAME} ${PROJECT_VERSION}") |
56 | 56 |
|
57 | 57 |
SET(CPACK_COMPONENTS_ALL headers library html_documentation bin) |
58 | 58 |
|
59 | 59 |
SET(CPACK_COMPONENT_HEADERS_DISPLAY_NAME "C++ headers") |
60 | 60 |
SET(CPACK_COMPONENT_LIBRARY_DISPLAY_NAME "Dynamic-link library") |
61 | 61 |
SET(CPACK_COMPONENT_BIN_DISPLAY_NAME "Command line utilities") |
62 | 62 |
SET(CPACK_COMPONENT_HTML_DOCUMENTATION_DISPLAY_NAME "HTML documentation") |
63 | 63 |
|
64 | 64 |
SET(CPACK_COMPONENT_HEADERS_DESCRIPTION |
65 | 65 |
"C++ header files") |
66 | 66 |
SET(CPACK_COMPONENT_LIBRARY_DESCRIPTION |
67 | 67 |
"DLL and import library") |
68 | 68 |
SET(CPACK_COMPONENT_BIN_DESCRIPTION |
69 | 69 |
"Command line utilities") |
70 | 70 |
SET(CPACK_COMPONENT_HTML_DOCUMENTATION_DESCRIPTION |
71 | 71 |
"Doxygen generated documentation") |
1 |
================================================================== |
|
2 |
LEMON - a Library of Efficient Models and Optimization in Networks |
|
3 |
================================================================== |
|
1 |
===================================================================== |
|
2 |
LEMON - a Library for Efficient Modeling and Optimization in Networks |
|
3 |
===================================================================== |
|
4 | 4 |
|
5 | 5 |
LEMON is an open source library written in C++. It provides |
6 | 6 |
easy-to-use implementations of common data structures and algorithms |
7 | 7 |
in the area of optimization and helps implementing new ones. The main |
8 | 8 |
focus is on graphs and graph algorithms, thus it is especially |
9 | 9 |
suitable for solving design and optimization problems of |
10 | 10 |
telecommunication networks. To achieve wide usability its data |
11 | 11 |
structures and algorithms provide generic interfaces. |
12 | 12 |
|
13 | 13 |
Contents |
14 | 14 |
======== |
15 | 15 |
|
16 | 16 |
LICENSE |
17 | 17 |
|
18 | 18 |
Copying, distribution and modification conditions and terms. |
19 | 19 |
|
20 | 20 |
INSTALL |
21 | 21 |
|
22 | 22 |
General building and installation instructions. |
23 | 23 |
|
24 | 24 |
lemon/ |
25 | 25 |
|
26 | 26 |
Source code of LEMON library. |
27 | 27 |
... | ... |
@@ -117,58 +117,48 @@ |
117 | 117 |
meaningless. This means that the concepts that they meet depend |
118 | 118 |
on the graph adaptor, and the wrapped graph. |
119 | 119 |
For example, if an arc of a reversed digraph is deleted, this is carried |
120 | 120 |
out by deleting the corresponding arc of the original digraph, thus the |
121 | 121 |
adaptor modifies the original digraph. |
122 | 122 |
However in case of a residual digraph, this operation has no sense. |
123 | 123 |
|
124 | 124 |
Let us stand one more example here to simplify your work. |
125 | 125 |
ReverseDigraph has constructor |
126 | 126 |
\code |
127 | 127 |
ReverseDigraph(Digraph& digraph); |
128 | 128 |
\endcode |
129 | 129 |
This means that in a situation, when a <tt>const %ListDigraph&</tt> |
130 | 130 |
reference to a graph is given, then it have to be instantiated with |
131 | 131 |
<tt>Digraph=const %ListDigraph</tt>. |
132 | 132 |
\code |
133 | 133 |
int algorithm1(const ListDigraph& g) { |
134 | 134 |
ReverseDigraph<const ListDigraph> rg(g); |
135 | 135 |
return algorithm2(rg); |
136 | 136 |
} |
137 | 137 |
\endcode |
138 | 138 |
*/ |
139 | 139 |
|
140 | 140 |
/** |
141 |
@defgroup semi_adaptors Semi-Adaptor Classes for Graphs |
|
142 |
@ingroup graphs |
|
143 |
\brief Graph types between real graphs and graph adaptors. |
|
144 |
|
|
145 |
This group contains some graph types between real graphs and graph adaptors. |
|
146 |
These classes wrap graphs to give new functionality as the adaptors do it. |
|
147 |
On the other hand they are not light-weight structures as the adaptors. |
|
148 |
*/ |
|
149 |
|
|
150 |
/** |
|
151 | 141 |
@defgroup maps Maps |
152 | 142 |
@ingroup datas |
153 | 143 |
\brief Map structures implemented in LEMON. |
154 | 144 |
|
155 | 145 |
This group contains the map structures implemented in LEMON. |
156 | 146 |
|
157 | 147 |
LEMON provides several special purpose maps and map adaptors that e.g. combine |
158 | 148 |
new maps from existing ones. |
159 | 149 |
|
160 | 150 |
<b>See also:</b> \ref map_concepts "Map Concepts". |
161 | 151 |
*/ |
162 | 152 |
|
163 | 153 |
/** |
164 | 154 |
@defgroup graph_maps Graph Maps |
165 | 155 |
@ingroup maps |
166 | 156 |
\brief Special graph-related maps. |
167 | 157 |
|
168 | 158 |
This group contains maps that are specifically designed to assign |
169 | 159 |
values to the nodes and arcs/edges of graphs. |
170 | 160 |
|
171 | 161 |
If you are looking for the standard graph maps (\c NodeMap, \c ArcMap, |
172 | 162 |
\c EdgeMap), see the \ref graph_concepts "Graph Structure Concepts". |
173 | 163 |
*/ |
174 | 164 |
... | ... |
@@ -2,50 +2,49 @@ |
2 | 2 |
* |
3 | 3 |
* This file is a part of LEMON, a generic C++ optimization library. |
4 | 4 |
* |
5 | 5 |
* Copyright (C) 2003-2009 |
6 | 6 |
* Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport |
7 | 7 |
* (Egervary Research Group on Combinatorial Optimization, EGRES). |
8 | 8 |
* |
9 | 9 |
* Permission to use, modify and distribute this software is granted |
10 | 10 |
* provided that this copyright notice appears in all copies. For |
11 | 11 |
* precise terms see the accompanying LICENSE file. |
12 | 12 |
* |
13 | 13 |
* This software is provided "AS IS" with no warranty of any kind, |
14 | 14 |
* express or implied, and with no claim as to its suitability for any |
15 | 15 |
* purpose. |
16 | 16 |
* |
17 | 17 |
*/ |
18 | 18 |
|
19 | 19 |
/** |
20 | 20 |
\mainpage LEMON Documentation |
21 | 21 |
|
22 | 22 |
\section intro Introduction |
23 | 23 |
|
24 | 24 |
\subsection whatis What is LEMON |
25 | 25 |
|
26 |
LEMON stands for |
|
27 |
<b>L</b>ibrary of <b>E</b>fficient <b>M</b>odels |
|
26 |
LEMON stands for <b>L</b>ibrary for <b>E</b>fficient <b>M</b>odeling |
|
28 | 27 |
and <b>O</b>ptimization in <b>N</b>etworks. |
29 | 28 |
It is a C++ template |
30 | 29 |
library aimed at combinatorial optimization tasks which |
31 | 30 |
often involve in working |
32 | 31 |
with graphs. |
33 | 32 |
|
34 | 33 |
<b> |
35 | 34 |
LEMON is an <a class="el" href="http://opensource.org/">open source</a> |
36 | 35 |
project. |
37 | 36 |
You are free to use it in your commercial or |
38 | 37 |
non-commercial applications under very permissive |
39 | 38 |
\ref license "license terms". |
40 | 39 |
</b> |
41 | 40 |
|
42 | 41 |
\subsection howtoread How to read the documentation |
43 | 42 |
|
44 | 43 |
If you would like to get to know the library, see |
45 | 44 |
<a class="el" href="http://lemon.cs.elte.hu/pub/tutorial/">LEMON Tutorial</a>. |
46 | 45 |
|
47 | 46 |
If you know what you are looking for, then try to find it under the |
48 | 47 |
<a class="el" href="modules.html">Modules</a> section. |
49 | 48 |
|
50 | 49 |
If you are a user of the old (0.x) series of LEMON, please check out the |
51 | 50 |
\ref migration "Migration Guide" for the backward incompatibilities. |
1 | 1 |
/* -*- mode: C++; indent-tabs-mode: nil; -*- |
2 | 2 |
* |
3 | 3 |
* This file is a part of LEMON, a generic C++ optimization library. |
4 | 4 |
* |
5 | 5 |
* Copyright (C) 2003-2008 |
6 | 6 |
* Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport |
7 | 7 |
* (Egervary Research Group on Combinatorial Optimization, EGRES). |
8 | 8 |
* |
9 | 9 |
* Permission to use, modify and distribute this software is granted |
10 | 10 |
* provided that this copyright notice appears in all copies. For |
11 | 11 |
* precise terms see the accompanying LICENSE file. |
12 | 12 |
* |
13 | 13 |
* This software is provided "AS IS" with no warranty of any kind, |
14 | 14 |
* express or implied, and with no claim as to its suitability for any |
15 | 15 |
* purpose. |
16 | 16 |
* |
17 | 17 |
*/ |
18 | 18 |
|
19 | 19 |
#ifndef LEMON_EDGE_SET_H |
20 | 20 |
#define LEMON_EDGE_SET_H |
21 | 21 |
|
22 | 22 |
#include <lemon/core.h> |
23 | 23 |
#include <lemon/bits/edge_set_extender.h> |
24 | 24 |
|
25 |
/// \ingroup |
|
25 |
/// \ingroup graphs |
|
26 | 26 |
/// \file |
27 | 27 |
/// \brief ArcSet and EdgeSet classes. |
28 | 28 |
/// |
29 | 29 |
/// Graphs which use another graph's node-set as own. |
30 | 30 |
namespace lemon { |
31 | 31 |
|
32 | 32 |
template <typename GR> |
33 | 33 |
class ListArcSetBase { |
34 | 34 |
public: |
35 | 35 |
|
36 | 36 |
typedef typename GR::Node Node; |
37 | 37 |
typedef typename GR::NodeIt NodeIt; |
38 | 38 |
|
39 | 39 |
protected: |
40 | 40 |
|
41 | 41 |
struct NodeT { |
42 | 42 |
int first_out, first_in; |
43 | 43 |
NodeT() : first_out(-1), first_in(-1) {} |
44 | 44 |
}; |
45 | 45 |
|
46 | 46 |
typedef typename ItemSetTraits<GR, Node>:: |
47 | 47 |
template Map<NodeT>::Type NodesImplBase; |
48 | 48 |
|
49 | 49 |
NodesImplBase* _nodes; |
... | ... |
@@ -209,49 +209,49 @@ |
209 | 209 |
class NodeMap : public GR::template NodeMap<V> { |
210 | 210 |
typedef typename GR::template NodeMap<V> Parent; |
211 | 211 |
|
212 | 212 |
public: |
213 | 213 |
|
214 | 214 |
explicit NodeMap(const ListArcSetBase<GR>& arcset) |
215 | 215 |
: Parent(*arcset._graph) {} |
216 | 216 |
|
217 | 217 |
NodeMap(const ListArcSetBase<GR>& arcset, const V& value) |
218 | 218 |
: Parent(*arcset._graph, value) {} |
219 | 219 |
|
220 | 220 |
NodeMap& operator=(const NodeMap& cmap) { |
221 | 221 |
return operator=<NodeMap>(cmap); |
222 | 222 |
} |
223 | 223 |
|
224 | 224 |
template <typename CMap> |
225 | 225 |
NodeMap& operator=(const CMap& cmap) { |
226 | 226 |
Parent::operator=(cmap); |
227 | 227 |
return *this; |
228 | 228 |
} |
229 | 229 |
}; |
230 | 230 |
|
231 | 231 |
}; |
232 | 232 |
|
233 |
/// \ingroup |
|
233 |
/// \ingroup graphs |
|
234 | 234 |
/// |
235 | 235 |
/// \brief Digraph using a node set of another digraph or graph and |
236 | 236 |
/// an own arc set. |
237 | 237 |
/// |
238 | 238 |
/// This structure can be used to establish another directed graph |
239 | 239 |
/// over a node set of an existing one. This class uses the same |
240 | 240 |
/// Node type as the underlying graph, and each valid node of the |
241 | 241 |
/// original graph is valid in this arc set, therefore the node |
242 | 242 |
/// objects of the original graph can be used directly with this |
243 | 243 |
/// class. The node handling functions (id handling, observing, and |
244 | 244 |
/// iterators) works equivalently as in the original graph. |
245 | 245 |
/// |
246 | 246 |
/// This implementation is based on doubly-linked lists, from each |
247 | 247 |
/// node the outgoing and the incoming arcs make up lists, therefore |
248 | 248 |
/// one arc can be erased in constant time. It also makes possible, |
249 | 249 |
/// that node can be removed from the underlying graph, in this case |
250 | 250 |
/// all arcs incident to the given node is erased from the arc set. |
251 | 251 |
/// |
252 | 252 |
/// \param GR The type of the graph which shares its node set with |
253 | 253 |
/// this class. Its interface must conform to the |
254 | 254 |
/// \ref concepts::Digraph "Digraph" or \ref concepts::Graph "Graph" |
255 | 255 |
/// concept. |
256 | 256 |
/// |
257 | 257 |
/// This class fully conforms to the \ref concepts::Digraph |
... | ... |
@@ -633,49 +633,49 @@ |
633 | 633 |
class NodeMap : public GR::template NodeMap<V> { |
634 | 634 |
typedef typename GR::template NodeMap<V> Parent; |
635 | 635 |
|
636 | 636 |
public: |
637 | 637 |
|
638 | 638 |
explicit NodeMap(const ListEdgeSetBase<GR>& arcset) |
639 | 639 |
: Parent(*arcset._graph) {} |
640 | 640 |
|
641 | 641 |
NodeMap(const ListEdgeSetBase<GR>& arcset, const V& value) |
642 | 642 |
: Parent(*arcset._graph, value) {} |
643 | 643 |
|
644 | 644 |
NodeMap& operator=(const NodeMap& cmap) { |
645 | 645 |
return operator=<NodeMap>(cmap); |
646 | 646 |
} |
647 | 647 |
|
648 | 648 |
template <typename CMap> |
649 | 649 |
NodeMap& operator=(const CMap& cmap) { |
650 | 650 |
Parent::operator=(cmap); |
651 | 651 |
return *this; |
652 | 652 |
} |
653 | 653 |
}; |
654 | 654 |
|
655 | 655 |
}; |
656 | 656 |
|
657 |
/// \ingroup |
|
657 |
/// \ingroup graphs |
|
658 | 658 |
/// |
659 | 659 |
/// \brief Graph using a node set of another digraph or graph and an |
660 | 660 |
/// own edge set. |
661 | 661 |
/// |
662 | 662 |
/// This structure can be used to establish another graph over a |
663 | 663 |
/// node set of an existing one. This class uses the same Node type |
664 | 664 |
/// as the underlying graph, and each valid node of the original |
665 | 665 |
/// graph is valid in this arc set, therefore the node objects of |
666 | 666 |
/// the original graph can be used directly with this class. The |
667 | 667 |
/// node handling functions (id handling, observing, and iterators) |
668 | 668 |
/// works equivalently as in the original graph. |
669 | 669 |
/// |
670 | 670 |
/// This implementation is based on doubly-linked lists, from each |
671 | 671 |
/// node the incident edges make up lists, therefore one edge can be |
672 | 672 |
/// erased in constant time. It also makes possible, that node can |
673 | 673 |
/// be removed from the underlying graph, in this case all edges |
674 | 674 |
/// incident to the given node is erased from the arc set. |
675 | 675 |
/// |
676 | 676 |
/// \param GR The type of the graph which shares its node set |
677 | 677 |
/// with this class. Its interface must conform to the |
678 | 678 |
/// \ref concepts::Digraph "Digraph" or \ref concepts::Graph "Graph" |
679 | 679 |
/// concept. |
680 | 680 |
/// |
681 | 681 |
/// This class fully conforms to the \ref concepts::Graph "Graph" |
... | ... |
@@ -892,49 +892,49 @@ |
892 | 892 |
typedef typename GR::template NodeMap<V> Parent; |
893 | 893 |
|
894 | 894 |
public: |
895 | 895 |
|
896 | 896 |
explicit NodeMap(const SmartArcSetBase<GR>& arcset) |
897 | 897 |
: Parent(*arcset._graph) { } |
898 | 898 |
|
899 | 899 |
NodeMap(const SmartArcSetBase<GR>& arcset, const V& value) |
900 | 900 |
: Parent(*arcset._graph, value) { } |
901 | 901 |
|
902 | 902 |
NodeMap& operator=(const NodeMap& cmap) { |
903 | 903 |
return operator=<NodeMap>(cmap); |
904 | 904 |
} |
905 | 905 |
|
906 | 906 |
template <typename CMap> |
907 | 907 |
NodeMap& operator=(const CMap& cmap) { |
908 | 908 |
Parent::operator=(cmap); |
909 | 909 |
return *this; |
910 | 910 |
} |
911 | 911 |
}; |
912 | 912 |
|
913 | 913 |
}; |
914 | 914 |
|
915 | 915 |
|
916 |
/// \ingroup |
|
916 |
/// \ingroup graphs |
|
917 | 917 |
/// |
918 | 918 |
/// \brief Digraph using a node set of another digraph or graph and |
919 | 919 |
/// an own arc set. |
920 | 920 |
/// |
921 | 921 |
/// This structure can be used to establish another directed graph |
922 | 922 |
/// over a node set of an existing one. This class uses the same |
923 | 923 |
/// Node type as the underlying graph, and each valid node of the |
924 | 924 |
/// original graph is valid in this arc set, therefore the node |
925 | 925 |
/// objects of the original graph can be used directly with this |
926 | 926 |
/// class. The node handling functions (id handling, observing, and |
927 | 927 |
/// iterators) works equivalently as in the original graph. |
928 | 928 |
/// |
929 | 929 |
/// \param GR The type of the graph which shares its node set with |
930 | 930 |
/// this class. Its interface must conform to the |
931 | 931 |
/// \ref concepts::Digraph "Digraph" or \ref concepts::Graph "Graph" |
932 | 932 |
/// concept. |
933 | 933 |
/// |
934 | 934 |
/// This implementation is slightly faster than the \c ListArcSet, |
935 | 935 |
/// because it uses continuous storage for arcs and it uses just |
936 | 936 |
/// single-linked lists for enumerate outgoing and incoming |
937 | 937 |
/// arcs. Therefore the arcs cannot be erased from the arc sets. |
938 | 938 |
/// |
939 | 939 |
/// \warning If a node is erased from the underlying graph and this |
940 | 940 |
/// node is the source or target of one arc in the arc set, then |
... | ... |
@@ -1236,49 +1236,49 @@ |
1236 | 1236 |
class NodeMap : public GR::template NodeMap<V> { |
1237 | 1237 |
typedef typename GR::template NodeMap<V> Parent; |
1238 | 1238 |
|
1239 | 1239 |
public: |
1240 | 1240 |
|
1241 | 1241 |
explicit NodeMap(const SmartEdgeSetBase<GR>& arcset) |
1242 | 1242 |
: Parent(*arcset._graph) { } |
1243 | 1243 |
|
1244 | 1244 |
NodeMap(const SmartEdgeSetBase<GR>& arcset, const V& value) |
1245 | 1245 |
: Parent(*arcset._graph, value) { } |
1246 | 1246 |
|
1247 | 1247 |
NodeMap& operator=(const NodeMap& cmap) { |
1248 | 1248 |
return operator=<NodeMap>(cmap); |
1249 | 1249 |
} |
1250 | 1250 |
|
1251 | 1251 |
template <typename CMap> |
1252 | 1252 |
NodeMap& operator=(const CMap& cmap) { |
1253 | 1253 |
Parent::operator=(cmap); |
1254 | 1254 |
return *this; |
1255 | 1255 |
} |
1256 | 1256 |
}; |
1257 | 1257 |
|
1258 | 1258 |
}; |
1259 | 1259 |
|
1260 |
/// \ingroup |
|
1260 |
/// \ingroup graphs |
|
1261 | 1261 |
/// |
1262 | 1262 |
/// \brief Graph using a node set of another digraph or graph and an |
1263 | 1263 |
/// own edge set. |
1264 | 1264 |
/// |
1265 | 1265 |
/// This structure can be used to establish another graph over a |
1266 | 1266 |
/// node set of an existing one. This class uses the same Node type |
1267 | 1267 |
/// as the underlying graph, and each valid node of the original |
1268 | 1268 |
/// graph is valid in this arc set, therefore the node objects of |
1269 | 1269 |
/// the original graph can be used directly with this class. The |
1270 | 1270 |
/// node handling functions (id handling, observing, and iterators) |
1271 | 1271 |
/// works equivalently as in the original graph. |
1272 | 1272 |
/// |
1273 | 1273 |
/// \param GR The type of the graph which shares its node set |
1274 | 1274 |
/// with this class. Its interface must conform to the |
1275 | 1275 |
/// \ref concepts::Digraph "Digraph" or \ref concepts::Graph "Graph" |
1276 | 1276 |
/// concept. |
1277 | 1277 |
/// |
1278 | 1278 |
/// This implementation is slightly faster than the \c ListEdgeSet, |
1279 | 1279 |
/// because it uses continuous storage for edges and it uses just |
1280 | 1280 |
/// single-linked lists for enumerate incident edges. Therefore the |
1281 | 1281 |
/// edges cannot be erased from the edge sets. |
1282 | 1282 |
/// |
1283 | 1283 |
/// \warning If a node is erased from the underlying graph and this |
1284 | 1284 |
/// node is incident to one edge in the edge set, then the edge set |
1 | 1 |
prefix=@prefix@ |
2 | 2 |
exec_prefix=@exec_prefix@ |
3 | 3 |
libdir=@libdir@ |
4 | 4 |
includedir=@includedir@ |
5 | 5 |
|
6 | 6 |
Name: @PACKAGE_NAME@ |
7 |
Description: Library |
|
7 |
Description: Library for Efficient Modeling and Optimization in Networks |
|
8 | 8 |
Version: @PACKAGE_VERSION@ |
9 | 9 |
Libs: -L${libdir} -lemon @GLPK_LIBS@ @CPLEX_LIBS@ @SOPLEX_LIBS@ @CLP_LIBS@ @CBC_LIBS@ |
10 | 10 |
Cflags: -I${includedir} |
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