benchmark/graph-bench.cc
author deba
Mon, 03 Apr 2006 09:45:23 +0000
changeset 2031 080d51024ac5
parent 1855 c72636dcf0bd
child 2391 14a343be7a5a
permissions -rw-r--r--
Correcting the structure of the graph's and adaptor's map.
The template assign operators and map iterators can be used for adaptors also.

Some bugfix in the adaptors

New class SwapBpUGraphAdaptor which swaps the two nodeset of the graph.
     1 /* -*- C++ -*-
     2  *
     3  * This file is a part of LEMON, a generic C++ optimization library
     4  *
     5  * Copyright (C) 2003-2006
     6  * Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
     7  * (Egervary Research Group on Combinatorial Optimization, EGRES).
     8  *
     9  * Permission to use, modify and distribute this software is granted
    10  * provided that this copyright notice appears in all copies. For
    11  * precise terms see the accompanying LICENSE file.
    12  *
    13  * This software is provided "AS IS" with no warranty of any kind,
    14  * express or implied, and with no claim as to its suitability for any
    15  * purpose.
    16  *
    17  */
    18 
    19 #include<lemon/list_graph.h>
    20 
    21 #include"bench_tools.h"
    22 
    23 using namespace lemon;
    24 
    25 ///Makes a full graph by adding and deleting a lot of edges;
    26 
    27 ///\param n Number of nodes.
    28 ///\param rat The funcion will make \f$rat\timesn^2\f$ edge addition and
    29 ///\f$(rat-1)\timesn^2\f$ deletion.
    30 ///\param p Tuning parameters.
    31 ///\warning \c rat, \c p, and \c n must be pairwise relative primes. 
    32 template <class Graph>
    33 void makeFullGraph(int n, int rat, int p)
    34 {
    35   GRAPH_TYPEDEFS(typename Graph);
    36 
    37   Graph G;
    38   
    39   //  Node nodes[n];
    40   std::vector<Node> nodes(n);
    41   for(int i=0;i<n;i++) nodes[i]=G.addNode();
    42   
    43   //Edge equ[rat];
    44   std::vector<Edge> equ(rat);
    45   
    46   long long int count;
    47   
    48   for(count=0;count<rat;count++) {
    49     equ[int(count%rat)]=G.addEdge(nodes[int((count*p)%n)],
    50 				  nodes[int((count*p/n)%n)]);
    51   }
    52   for(;(count%rat)||((count*p)%n)||((count*p/n)%n);count++) {
    53     //    if(!(count%1000000)) fprintf(stderr,"%d\r",count);
    54     if(count%rat) G.erase(equ[count%rat]);
    55     equ[int(count%rat)]=G.addEdge(nodes[int((count*p)%n)],
    56 				  nodes[int((count*p/n)%n)]);
    57   }
    58 //   std::cout << "Added " << count
    59 // 	    << " ( " << n << "^2 * " << rat << " ) edges\n";
    60 
    61 
    62   //  for(int i=0;1;i++) ;
    63 }
    64 
    65 int main()
    66 {
    67   lemon::Timer T;
    68   makeFullGraph<ListGraph>(nextPrim(1000),nextPrim(300),nextPrim(100));
    69   
    70   PrintTime("BIG",T);
    71   T.restart();
    72   makeFullGraph<ListGraph>(nextPrim(100),nextPrim(30000),nextPrim(150));
    73 
    74   PrintTime("SMALL",T);
    75 }