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Installation Instructions |
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========================= |
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Since you are reading this I assume you already obtained one of the release |
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tarballs and successfully extracted it. The latest version of LEMON is |
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available at our web page (http://lemon.cs.elte.hu/). |
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In order to install LEMON from the extracted source tarball you have to |
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issue the following commands: |
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1. `cd lemon-x.y.z' |
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|
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This command changes to the directory which was created when you |
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extracted the sources. The x.y.z part is a version number. |
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2. `./configure' |
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This command runs the configure shell script, which does some checks and |
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creates the makefiles. |
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3. `make' |
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|
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This command compiles the non-template part of LEMON into libemon.a |
| 24 |
file. It also compiles the programs in the tools, benchmark and demo |
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subdirectories when enabled. |
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file. It also compiles the programs in the tools and demo subdirectories |
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when enabled. |
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|
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4. `make check' |
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This step is optional, but recommended. It runs the test programs that |
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we developed for LEMON to check whether the library works properly on |
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your platform. |
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|
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5. `make install' |
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|
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This command installs LEMON under /usr/local (you will need root |
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privileges to be able to do that). If you want to install it to some |
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other location, then pass the --prefix=DIRECTORY flag to configure in |
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step 2. For example: `./configure --prefix=/home/username/lemon'. |
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|
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6. `make install-html' |
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|
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This command installs the documentation under share/doc/lemon/docs. The |
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generated documentation is included in the tarball. If you want to |
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generate it yourself, then run `make html'. Note that for this you need |
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to have the following programs installed: Doxygen, Graphviz, Ghostscript, |
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Latex. |
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|
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|
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Configure Options and Variables |
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=============================== |
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In step 2 you can customize the actions of configure by setting variables |
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and passing options to it. This can be done like this: |
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`./configure [OPTION]... [VARIABLE=VALUE]...' |
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|
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Below you will find some useful variables and options (see |
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`./configure --help' for more): |
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Below you will find some useful variables and options (see `./configure --help' |
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for more): |
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|
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CXX='comp' |
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Change the C++ compiler to 'comp'. |
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CXXFLAGS='flags' |
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Pass the 'flags' to the compiler. For example CXXFLAGS='-O3 -march=pentium-m' |
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turns on generation of aggressively optimized Pentium-M specific code. |
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|
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--prefix=PREFIX |
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Set the installation prefix to PREFIX. By default it is /usr/local. |
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--enable-demo |
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Build the examples in the demo subdirectory. |
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--disable-demo |
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Do not build the examples in the demo subdirectory (default). |
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--enable-benchmark |
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Build the programs in the benchmark subdirectory. |
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--disable-benchmark |
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Do not build the programs in the benchmark subdirectory (default). |
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--enable-tools |
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Build the programs in the tools subdirectory (default). |
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|
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--disable-tools |
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Do not build the programs in the tools subdirectory. |
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|
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--with-glpk[=PREFIX] |
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Enable GLPK support (default). You should specify the prefix too if |
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you installed GLPK to some non-standard location (e.g. your home |
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directory). If it is not found, GLPK support will be disabled. |
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|
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--with-glpk-includedir=DIR |
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|
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The directory where the GLPK header files are located. This is only |
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useful when the GLPK headers and libraries are not under the same |
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prefix (which is unlikely). |
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|
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--with-glpk-libdir=DIR |
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|
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The directory where the GLPK libraries are located. This is only |
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useful when the GLPK headers and libraries are not under the same |
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prefix (which is unlikely). |
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|
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--without-glpk |
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|
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Disable GLPK support. |
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|
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--with-cplex[=PREFIX] |
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|
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Enable CPLEX support (default). You should specify the prefix too |
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if you installed CPLEX to some non-standard location |
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(e.g. /opt/ilog/cplex75). If it is not found, CPLEX support will be |
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disabled. |
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|
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--with-cplex-includedir=DIR |
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|
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The directory where the CPLEX header files are located. This is |
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only useful when the CPLEX headers and libraries are not under the |
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same prefix (e.g. /usr/local/cplex/cplex75/include). |
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|
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--with-cplex-libdir=DIR |
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|
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The directory where the CPLEX libraries are located. This is only |
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useful when the CPLEX headers and libraries are not under the same |
| 135 | 127 |
prefix (e.g. |
| 1 | 1 |
================================================================== |
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LEMON - a Library of Efficient Models and Optimization in Networks |
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================================================================== |
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|
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LEMON is an open source library written in C++. It provides |
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easy-to-use implementations of common data structures and algorithms |
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in the area of optimization and helps implementing new ones. The main |
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focus is on graphs and graph algorithms, thus it is especially |
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suitable for solving design and optimization problems of |
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telecommunication networks. To achieve wide usability its data |
| 11 | 11 |
structures and algorithms provide generic interfaces. |
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|
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Contents |
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======== |
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|
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LICENSE |
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|
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Copying, distribution and modification conditions and terms. |
| 19 | 19 |
|
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INSTALL |
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|
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General building and installation instructions. |
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|
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lemon/ |
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|
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Source code of LEMON library. |
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|
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doc/ |
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|
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Documentation of LEMON. The starting page is doc/html/index.html. |
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|
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demo/ |
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|
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Some example programs to make you easier to get familiar with LEMON. |
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|
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test/ |
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|
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|
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Programs to check the integrity and correctness of LEMON. |
|
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|
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tools/ |
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|
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Various utilities related to LEMON. |
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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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* |
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* Copyright (C) 2003-2008 |
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* Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport |
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* (Egervary Research Group on Combinatorial Optimization, EGRES). |
| 8 | 8 |
* |
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* Permission to use, modify and distribute this software is granted |
| 10 | 10 |
* 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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* |
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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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|
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/** |
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\dir demo |
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\brief A collection of demo |
|
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\brief A collection of demo applications. |
|
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|
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This directory contains several simple demo |
|
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This directory contains several simple demo applications, mainly |
|
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for educational purposes. |
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*/ |
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|
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/** |
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\dir doc |
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\brief Auxiliary (and the whole generated) documentation. |
| 30 | 30 |
|
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|
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This directory contains some auxiliary pages and the whole generated |
|
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documentation. |
|
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*/ |
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|
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/** |
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\dir test |
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\brief Test programs. |
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|
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This directory contains several test programs that check the consistency |
| 39 | 40 |
of the code. |
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*/ |
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|
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/** |
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\dir tools |
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\brief Some useful executables |
|
| 45 |
\brief Some useful executables. |
|
| 45 | 46 |
|
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This directory contains the sources of some useful complete executables. |
| 47 |
|
|
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*/ |
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|
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|
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|
|
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/** |
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\dir lemon |
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\brief Base include directory of LEMON |
|
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\brief Base include directory of LEMON. |
|
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|
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This is the base directory of |
|
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This is the base directory of LEMON includes, so each include file must be |
|
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prefixed with this, e.g. |
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\code |
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#include<lemon/list_graph.h> |
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#include<lemon/dijkstra.h> |
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\endcode |
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*/ |
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|
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/** |
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\dir concepts |
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\brief Concept descriptors and checking classes |
|
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\brief Concept descriptors and checking classes. |
|
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|
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This directory contains the concept descriptors and concept checkers. As a user |
|
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you typically don't have to deal with these files. |
|
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This directory contains the concept descriptors and concept checking tools. |
|
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For more information see the \ref concept "Concepts" module. |
|
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*/ |
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|
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/** |
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\dir bits |
| 74 |
\brief |
|
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\brief Auxiliary tools for implementation. |
|
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|
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This directory contains some helper classes to implement graphs, maps and |
|
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some other classes. As a user you typically don't have to deal with these |
|
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|
|
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This directory contains some auxiliary classes for implementing graphs, |
|
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maps and some other classes. |
|
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As a user you typically don't have to deal with these files. |
|
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*/ |
| ... | ... |
@@ -120,97 +120,97 @@ |
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} |
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|
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Digraph::NodeMap<int> degree_map(graph); |
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|
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graphToEps(graph, "graph.eps") |
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.coords(coords).scaleToA4().undirected() |
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.nodeColors(composeMap(functorToMap(nodeColor), degree_map)) |
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.run(); |
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\endcode |
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The \c functorToMap() function makes an \c int to \c Color map from the |
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\c nodeColor() function. The \c composeMap() compose the \c degree_map |
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and the previously created map. The composed map is a proper function to |
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get the color of each node. |
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|
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The usage with class type algorithms is little bit harder. In this |
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case the function type map adaptors can not be used, because the |
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function map adaptors give back temporary objects. |
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\code |
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Digraph graph; |
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|
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typedef Digraph::ArcMap<double> DoubleArcMap; |
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DoubleArcMap length(graph); |
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DoubleArcMap speed(graph); |
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|
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typedef DivMap<DoubleArcMap, DoubleArcMap> TimeMap; |
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TimeMap time(length, speed); |
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|
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Dijkstra<Digraph, TimeMap> dijkstra(graph, time); |
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dijkstra.run(source, target); |
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\endcode |
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We have a length map and a maximum speed map on the arcs of a digraph. |
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The minimum time to pass the arc can be calculated as the division of |
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the two maps which can be done implicitly with the \c DivMap template |
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class. We use the implicit minimum time map as the length map of the |
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\c Dijkstra algorithm. |
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*/ |
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|
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/** |
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@defgroup matrices Matrices |
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@ingroup datas |
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\brief Two dimensional data storages implemented in LEMON. |
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|
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This group describes two dimensional data storages implemented in LEMON. |
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*/ |
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|
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/** |
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@defgroup paths Path Structures |
| 167 | 167 |
@ingroup datas |
| 168 |
\brief Path structures implemented in LEMON. |
|
| 168 |
\brief %Path structures implemented in LEMON. |
|
| 169 | 169 |
|
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This group describes the path structures implemented in LEMON. |
| 171 | 171 |
|
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LEMON provides flexible data structures to work with paths. |
| 173 | 173 |
All of them have similar interfaces and they can be copied easily with |
| 174 | 174 |
assignment operators and copy constructors. This makes it easy and |
| 175 | 175 |
efficient to have e.g. the Dijkstra algorithm to store its result in |
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any kind of path structure. |
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|
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\sa lemon::concepts::Path |
| 179 | 179 |
*/ |
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|
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/** |
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@defgroup auxdat Auxiliary Data Structures |
| 183 | 183 |
@ingroup datas |
| 184 | 184 |
\brief Auxiliary data structures implemented in LEMON. |
| 185 | 185 |
|
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This group describes some data structures implemented in LEMON in |
| 187 | 187 |
order to make it easier to implement combinatorial algorithms. |
| 188 | 188 |
*/ |
| 189 | 189 |
|
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/** |
| 191 | 191 |
@defgroup algs Algorithms |
| 192 | 192 |
\brief This group describes the several algorithms |
| 193 | 193 |
implemented in LEMON. |
| 194 | 194 |
|
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This group describes the several algorithms |
| 196 | 196 |
implemented in LEMON. |
| 197 | 197 |
*/ |
| 198 | 198 |
|
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/** |
| 200 | 200 |
@defgroup search Graph Search |
| 201 | 201 |
@ingroup algs |
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\brief Common graph search algorithms. |
| 203 | 203 |
|
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This group describes the common graph search algorithms like |
| 205 | 205 |
Breadth-First Search (BFS) and Depth-First Search (DFS). |
| 206 | 206 |
*/ |
| 207 | 207 |
|
| 208 | 208 |
/** |
| 209 | 209 |
@defgroup shortest_path Shortest Path Algorithms |
| 210 | 210 |
@ingroup algs |
| 211 | 211 |
\brief Algorithms for finding shortest paths. |
| 212 | 212 |
|
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This group describes the algorithms for finding shortest paths in graphs. |
| 214 | 214 |
*/ |
| 215 | 215 |
|
| 216 | 216 |
/** |
| ... | ... |
@@ -445,102 +445,102 @@ |
| 445 | 445 |
of algorithms. |
| 446 | 446 |
*/ |
| 447 | 447 |
|
| 448 | 448 |
/** |
| 449 | 449 |
@defgroup exceptions Exceptions |
| 450 | 450 |
@ingroup utils |
| 451 | 451 |
\brief Exceptions defined in LEMON. |
| 452 | 452 |
|
| 453 | 453 |
This group describes the exceptions defined in LEMON. |
| 454 | 454 |
*/ |
| 455 | 455 |
|
| 456 | 456 |
/** |
| 457 | 457 |
@defgroup io_group Input-Output |
| 458 | 458 |
\brief Graph Input-Output methods |
| 459 | 459 |
|
| 460 | 460 |
This group describes the tools for importing and exporting graphs |
| 461 | 461 |
and graph related data. Now it supports the \ref lgf-format |
| 462 | 462 |
"LEMON Graph Format", the \c DIMACS format and the encapsulated |
| 463 | 463 |
postscript (EPS) format. |
| 464 | 464 |
*/ |
| 465 | 465 |
|
| 466 | 466 |
/** |
| 467 | 467 |
@defgroup lemon_io LEMON Input-Output |
| 468 | 468 |
@ingroup io_group |
| 469 | 469 |
\brief Reading and writing LEMON Graph Format. |
| 470 | 470 |
|
| 471 | 471 |
This group describes methods for reading and writing |
| 472 | 472 |
\ref lgf-format "LEMON Graph Format". |
| 473 | 473 |
*/ |
| 474 | 474 |
|
| 475 | 475 |
/** |
| 476 | 476 |
@defgroup eps_io Postscript Exporting |
| 477 | 477 |
@ingroup io_group |
| 478 | 478 |
\brief General \c EPS drawer and graph exporter |
| 479 | 479 |
|
| 480 | 480 |
This group describes general \c EPS drawing methods and special |
| 481 | 481 |
graph exporting tools. |
| 482 | 482 |
*/ |
| 483 | 483 |
|
| 484 | 484 |
/** |
| 485 | 485 |
@defgroup concept Concepts |
| 486 | 486 |
\brief Skeleton classes and concept checking classes |
| 487 | 487 |
|
| 488 | 488 |
This group describes the data/algorithm skeletons and concept checking |
| 489 | 489 |
classes implemented in LEMON. |
| 490 | 490 |
|
| 491 | 491 |
The purpose of the classes in this group is fourfold. |
| 492 | 492 |
|
| 493 |
- These classes contain the documentations of the concepts. In order |
|
| 493 |
- These classes contain the documentations of the %concepts. In order |
|
| 494 | 494 |
to avoid document multiplications, an implementation of a concept |
| 495 | 495 |
simply refers to the corresponding concept class. |
| 496 | 496 |
|
| 497 | 497 |
- These classes declare every functions, <tt>typedef</tt>s etc. an |
| 498 |
implementation of the concepts should provide, however completely |
|
| 498 |
implementation of the %concepts should provide, however completely |
|
| 499 | 499 |
without implementations and real data structures behind the |
| 500 | 500 |
interface. On the other hand they should provide nothing else. All |
| 501 | 501 |
the algorithms working on a data structure meeting a certain concept |
| 502 | 502 |
should compile with these classes. (Though it will not run properly, |
| 503 | 503 |
of course.) In this way it is easily to check if an algorithm |
| 504 | 504 |
doesn't use any extra feature of a certain implementation. |
| 505 | 505 |
|
| 506 | 506 |
- The concept descriptor classes also provide a <em>checker class</em> |
| 507 | 507 |
that makes it possible to check whether a certain implementation of a |
| 508 | 508 |
concept indeed provides all the required features. |
| 509 | 509 |
|
| 510 | 510 |
- Finally, They can serve as a skeleton of a new implementation of a concept. |
| 511 | 511 |
*/ |
| 512 | 512 |
|
| 513 | 513 |
/** |
| 514 | 514 |
@defgroup graph_concepts Graph Structure Concepts |
| 515 | 515 |
@ingroup concept |
| 516 | 516 |
\brief Skeleton and concept checking classes for graph structures |
| 517 | 517 |
|
| 518 | 518 |
This group describes the skeletons and concept checking classes of LEMON's |
| 519 | 519 |
graph structures and helper classes used to implement these. |
| 520 | 520 |
*/ |
| 521 | 521 |
|
| 522 | 522 |
/** |
| 523 | 523 |
@defgroup map_concepts Map Concepts |
| 524 | 524 |
@ingroup concept |
| 525 | 525 |
\brief Skeleton and concept checking classes for maps |
| 526 | 526 |
|
| 527 | 527 |
This group describes the skeletons and concept checking classes of maps. |
| 528 | 528 |
*/ |
| 529 | 529 |
|
| 530 | 530 |
/** |
| 531 | 531 |
\anchor demoprograms |
| 532 | 532 |
|
| 533 | 533 |
@defgroup demos Demo programs |
| 534 | 534 |
|
| 535 | 535 |
Some demo programs are listed here. Their full source codes can be found in |
| 536 | 536 |
the \c demo subdirectory of the source tree. |
| 537 | 537 |
|
| 538 | 538 |
It order to compile them, use <tt>--enable-demo</tt> configure option when |
| 539 | 539 |
build the library. |
| 540 | 540 |
*/ |
| 541 | 541 |
|
| 542 | 542 |
/** |
| 543 | 543 |
@defgroup tools Standalone utility applications |
| 544 | 544 |
|
| 545 | 545 |
Some utility applications are listed here. |
| 546 | 546 |
|
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