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source: branches/OKBJavaConnector/ECJClient/src/ec/breed/MultiBreedingPipeline.java @ 10138

Last change on this file since 10138 was 6152, checked in by bfarka, 14 years ago

added ecj and custom statistics to communicate with the okb services #1441

File size: 4.7 KB
Line 
1/*
2  Copyright 2006 by Sean Luke
3  Licensed under the Academic Free License version 3.0
4  See the file "LICENSE" for more information
5*/
6
7
8package ec.breed;
9import ec.*;
10import ec.util.*;
11
12/*
13 * MultiBreedingPipeline.java
14 *
15 * Created: December 28, 1999
16 * By: Sean Luke
17 */
18
19/**
20 * MultiBreedingPipeline is a BreedingPipeline stores some <i>n</i> child sources;
21 * each time it must produce an individual or two,
22 * it picks one of these sources at random and has it do the production.
23 
24 <p><b>Typical Number of Individuals Produced Per <tt>produce(...)</tt> call</b><br>
25 If by <i>base</i>.<tt>generate-max</tt> is <tt>true</tt>, then always the maximum
26 number of the typical numbers of any child source.  If <tt>false</itt>, then varies
27 depending on the child source picked.
28
29 <p><b>Number of Sources</b><br>
30 Dynamic.  As many as the user specifies.
31
32 <p><b>Parameters</b><br>
33 <table>
34 <tr><td valign=top><i>base</i>.<tt>generate-max</tt><br>
35 <font size=-1> bool = <tt>true</tt> (default) or <tt>false</tt></font></td>
36 <td valign=top>(Each time produce(...) is called, should the MultiBreedingPipeline
37 force all its sources to produce exactly the same number of individuals as the largest
38 typical number of individuals produced by any source in the group?)</td></tr>
39 </table>
40
41 <p><b>Default Base</b><br>
42 breed.multibreed
43
44 *
45 * @author Sean Luke
46 * @version 1.0
47 */
48
49public class MultiBreedingPipeline extends BreedingPipeline
50    {
51    public static final String P_GEN_MAX = "generate-max";
52    public static final String P_MULTIBREED = "multibreed";
53
54    public int maxGeneratable;
55    public boolean generateMax;
56
57    public Parameter defaultBase()
58        {
59        return BreedDefaults.base().push(P_MULTIBREED);
60        }
61
62    public int numSources() { return DYNAMIC_SOURCES; }   
63
64    public void setup(final EvolutionState state, final Parameter base)
65        {
66        super.setup(state,base);
67
68        Parameter def = defaultBase();
69
70        float total = 0.0f;
71
72        for(int x=0;x<sources.length;x++)
73            {
74            // make sure the sources are actually breeding pipelines
75            if (!(sources[x] instanceof BreedingPipeline))
76                state.output.error("Source #" + x + "is not a BreedingPipeline",base);
77            else if (sources[x].probability<0.0) // null checked from state.output.error above
78                state.output.error("Pipe #" + x + " must have a probability >= 0.0",base);  // convenient that NO_PROBABILITY is -1...
79            else total += sources[x].probability;
80            }
81
82        state.output.exitIfErrors();
83
84        // Now check for nonzero probability (we know it's positive)
85        if (total == 0.0)
86            state.output.warning("MultiBreedingPipeline's children have all zero probabilities -- this will be treated as a uniform distribution.  This could be an error.", base);
87
88        // allow all zero probabilities
89        BreedingSource.setupProbabilities(sources);
90
91        generateMax = state.parameters.getBoolean(base.push(P_GEN_MAX),def.push(P_GEN_MAX),true);
92        maxGeneratable=0;  // indicates that I don't know what it is yet. 
93               
94        // declare that likelihood isn't used
95        if (likelihood < 1.0f)
96            state.output.warning("MultiBreedingPipeline does not respond to the 'likelihood' parameter.",
97                base.push(P_LIKELIHOOD), def.push(P_LIKELIHOOD));
98        }
99
100    /** Returns the max of typicalIndsProduced() of all its children */
101    public int typicalIndsProduced()
102        {
103        if (maxGeneratable==0) // not determined yet
104            maxGeneratable = maxChildProduction();
105        return maxGeneratable;
106        }
107
108
109    public int produce(final int min,
110        final int max,
111        final int start,
112        final int subpopulation,
113        final Individual[] inds,
114        final EvolutionState state,
115        final int thread)
116
117        {
118        BreedingSource s = sources[BreedingSource.pickRandom(
119                sources,state.random[thread].nextFloat())];
120        int total;
121       
122        if (generateMax)
123            {
124            if (maxGeneratable==0)
125                maxGeneratable = maxChildProduction();
126            int n = maxGeneratable;
127            if (n < min) n = min;
128            if (n > max) n = max;
129
130            total = s.produce(
131                n,n,start,subpopulation,inds,state,thread);
132            }
133        else
134            {
135            total = s.produce(
136                min,max,start,subpopulation,inds,state,thread);
137            }
138           
139        // clone if necessary
140        if (s instanceof SelectionMethod)
141            for(int q=start; q < total+start; q++)
142                inds[q] = (Individual)(inds[q].clone());
143       
144        return total;
145        }
146    }
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