1 | import java.math.BigDecimal;
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2 | import java.util.Collection;
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3 | import java.util.HashMap;
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4 | import java.util.List;
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5 | import java.util.concurrent.ThreadLocalRandom;
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6 | import java.util.logging.Level;
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7 | import java.util.stream.Collectors;
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8 | import java.util.stream.StreamSupport;
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9 |
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10 | import geniusweb.actions.Accept;
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11 | import geniusweb.actions.Action;
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12 | import geniusweb.actions.EndNegotiation;
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13 | import geniusweb.actions.Offer;
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14 | import geniusweb.actions.PartyId;
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15 | import geniusweb.boa.BoaState;
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16 | import geniusweb.boa.biddingstrategy.BiddingStrategy;
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17 | import geniusweb.boa.biddingstrategy.ExtendedUtilSpace;
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18 | import geniusweb.inform.Settings;
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19 | import geniusweb.issuevalue.Bid;
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20 | import geniusweb.opponentmodel.FrequencyOpponentModel;
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21 | import geniusweb.opponentmodel.OpponentModel;
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22 | import geniusweb.profile.Profile;
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23 | import geniusweb.profile.utilityspace.LinearAdditive;
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24 | import tudelft.utilities.immutablelist.ImmutableList;
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25 |
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26 | import javax.swing.*;
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27 |
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28 | // Adapted Time dependent bidding strategy, given that class isn't subclassable
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29 | public class Group5BiddingStrategy implements BiddingStrategy {
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30 | // bidSpace=null means we're not yet initialized.
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31 | private ExtendedUtilSpace bidSpace = null;
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32 | private Double e, k, min, max; // min, max attainable utility
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33 | private PartyId me;
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34 |
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35 | protected ImmutableList<Bid> getPossibleOptions(BoaState state) {
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36 | if (bidSpace == null) {
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37 | init(state);
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38 | }
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39 |
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40 | double utilityGoal = p(
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41 | state.getProgress().get(System.currentTimeMillis()));
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42 |
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43 | // if there is no opponent model available
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44 | return bidSpace.getBids((BigDecimal.valueOf(utilityGoal)));
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45 |
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46 | }
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47 |
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48 | protected BigDecimal bidToUtility(Bid bid, OpponentModel model) {
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49 | if (!(model instanceof FrequencyOpponentModel)) {
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50 | return BigDecimal.ZERO;
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51 | }
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52 | return ((FrequencyOpponentModel) model).getUtility(bid);
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53 | }
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54 |
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55 | protected Bid rouletteWheel(Group5BoaState state, ImmutableList<Bid> bidOptions) {
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56 | Collection<OpponentModel> opponentModels = state.getOpponentModels().values();
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57 | BigDecimal numOpponents = BigDecimal.valueOf(opponentModels.size());
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58 | if (numOpponents.equals(BigDecimal.ZERO)) {
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59 | return bidOptions.get(0);
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60 | }
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61 | List<BigDecimal> utilities = StreamSupport.stream(bidOptions.spliterator(), false)
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62 | .map(bid -> opponentModels.stream()
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63 | .map(model -> bidToUtility(bid, model))
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64 | .reduce(BigDecimal.ZERO, BigDecimal::add)
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65 | .divide(numOpponents, 4, BigDecimal.ROUND_HALF_UP))
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66 | .collect(Collectors.toList());
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67 |
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68 | // Perform Roulette Wheel Selection
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69 | BigDecimal randomNumber = BigDecimal.valueOf(ThreadLocalRandom.current().nextDouble());
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70 | BigDecimal utilitiesSum = utilities.stream().reduce(BigDecimal.ZERO, BigDecimal::add);
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71 | BigDecimal cumSum = BigDecimal.ZERO;
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72 | for (int i = 0; i < utilities.size(); i++) {
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73 | cumSum = cumSum.add(utilities.get(i));
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74 | BigDecimal cumRelativeSum = cumSum.divide(utilitiesSum, 4, BigDecimal.ROUND_HALF_UP);
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75 | if (randomNumber.compareTo(cumRelativeSum) < 0) { // RandomNumber is smaller than cumRelativeSum
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76 | return bidOptions.get(i > 0 ? i - 1 : 0);
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77 | }
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78 | }
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79 | return bidOptions.get(utilities.size() - 1);
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80 | }
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81 |
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82 | public Action getAction(BoaState state) {
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83 | ImmutableList<Bid> bidOptions = getPossibleOptions(state);
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84 |
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85 | if (!(state instanceof Group5BoaState) || bidOptions.size().intValue() == 0) {
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86 | // should not happen, emergency exit
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87 | state.getReporter().log(Level.WARNING,
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88 | "No viable bids found around current utility target");
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89 | Bid lastBid = getLastBid(state.getActionHistory());
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90 | if (lastBid == null)
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91 | return new EndNegotiation(me);
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92 | return new Accept(me, lastBid);
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93 | }
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94 | return new Offer(me, rouletteWheel((Group5BoaState)state, bidOptions));
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95 |
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96 | }
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97 |
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98 | /**
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99 | * Overrideable for hard configuring this component.
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100 | *
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101 | * @param state the {@link BoaState}
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102 | * @return the parameter e for the time depemdency function
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103 | * {@link #f(double)}. The parameter is 1 by default, or the value
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104 | * for the "e" parameter in the {@link Settings} if available.
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105 | */
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106 | protected Double getE(BoaState state) {
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107 | HashMap<String, Object> params = state.getSettings().getParameters();
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108 | Double e = 1d;
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109 | if (params.containsKey("e")) {
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110 | e = (Double) params.get("e");
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111 | if (e < 0 || e > 1)
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112 | throw new IllegalArgumentException(
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113 | "e must be in [0,1] but got " + this.e);
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114 | }
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115 | return e;
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116 | }
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117 |
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118 | /**
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119 | * Overrideable for hard configuring this component.
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120 | *
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121 | * @param state the {@link BoaState}
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122 | * @return the parameter k for the time dependency function
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123 | * {@link #f(double)}. The parameter is 0 by default, or the value
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124 | * for the "k" parameter in the {@link Settings} if available.
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125 | */
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126 | protected Double getK(BoaState state) {
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127 | HashMap<String, Object> params = state.getSettings().getParameters();
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128 | Double k = 0d; // default
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129 | if (params.containsKey("k")) {
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130 | k = (Double) params.get("k");
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131 | if (k < 0 || k > 1)
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132 | throw new IllegalArgumentException(
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133 | "k must be in [0,1] but got " + this.e);
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134 | }
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135 | return k;
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136 | }
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137 |
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138 | /**
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139 | * Assumes {@link #bidSpace} has been initialized.
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140 | * <p>
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141 | * Overrideable for hard configuring this component.
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142 | *
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143 | * @param state the {@link BoaState}
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144 | * @return the min value for {@link #p(double)}. We use the "min" parameter
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145 | * in the {@link Settings} if available. If not available, the
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146 | * parameter is computed as the utility of the reservation bid. If
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147 | * there is no reservation bid, we use the minimum utility of the
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148 | * available profile.
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149 | */
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150 | protected Double getMin(BoaState state) {
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151 | HashMap<String, Object> params = state.getSettings().getParameters();
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152 | if (params.containsKey("min")) {
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153 | return Math.max(0f, Math.min(1f, (Double) params.get("min")));
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154 | }
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155 | LinearAdditive profile = (LinearAdditive) state.getProfile();
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156 | if (profile.getReservationBid() != null) {
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157 | return profile.getUtility(profile.getReservationBid())
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158 | .doubleValue();
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159 | }
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160 |
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161 | return bidSpace.getMin().doubleValue();
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162 | }
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163 |
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164 | /**
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165 | * Assumes {@link #bidSpace} has been initialized.
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166 | * <p>
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167 | * Overrideable for hard configuring this component.
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168 | *
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169 | * @param state the {@link BoaState}
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170 | * @return the max value for {@link #p(double)}. We use the "max" parameter
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171 | * in the {@link Settings} if available. If not available, we use
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172 | * the maximum utility of the available profile.
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173 | */
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174 | protected Double getMax(BoaState state) {
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175 | HashMap<String, Object> params = state.getSettings().getParameters();
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176 | if (params.containsKey("max")) {
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177 | return Math.max(0f, Math.min(1f, (Double) params.get("max")));
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178 | }
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179 | return bidSpace.getMax().doubleValue();
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180 |
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181 | }
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182 |
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183 | /**
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184 | * @return the most recent bid that was offered, or null if no offer has
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185 | * been done yet.
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186 | */
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187 | private Bid getLastBid(List<Action> history) {
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188 | for (int n = history.size() - 1; n >= 0; n--) {
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189 | Action action = history.get(n);
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190 | if (action instanceof Offer) {
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191 | return ((Offer) action).getBid();
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192 | }
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193 | }
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194 | return null;
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195 | }
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196 |
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197 | /**
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198 | * initializes bidSpace
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199 | *
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200 | * @param state
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201 | */
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202 | private void init(BoaState state) {
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203 | this.me = state.getSettings().getID();
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204 | Profile prof = state.getProfile();
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205 | if (!(prof instanceof LinearAdditive))
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206 | throw new IllegalArgumentException(
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207 | "Requires a LinearAdditive space but got " + prof);
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208 | LinearAdditive profile = (LinearAdditive) prof;
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209 |
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210 | this.bidSpace = getBidSpace(profile);
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211 | this.e = getE(state);
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212 | this.k = getK(state);
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213 | this.min = getMin(state);
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214 | this.max = getMax(state);
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215 |
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216 | state.getReporter().log(Level.INFO,
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217 | "BOA biddingstrategy min util = " + this.min);
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218 | }
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219 |
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220 | /**
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221 | * Makes sure the target utility with in the acceptable range according to
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222 | * the domain
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223 | *
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224 | * @param t the normalized current time in the negotiation, where t=9 at
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225 | * start of negotiation and t=1 at end of negotiation.
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226 | * @return double
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227 | */
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228 | private double p(double t) {
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229 | return this.min + (this.max - this.min) * (1.0 - f(t));
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230 | }
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231 |
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232 | /**
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233 | * From the paper:
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234 | *
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235 | * A wide range of time dependent functions can be defined by varying the
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236 | * way in which f(t) is computed. However, functions must ensure that 0 <=
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237 | * f(t) <= 1, f(0) = k, and f(1) = 1.
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238 | *
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239 | * That is, the offer will always be between the value range, at the
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240 | * beginning it will give the initial constant and when the deadline is
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241 | * reached, it will offer the reservation value.
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242 | *
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243 | * @param t the normalized current time in the negotiation, where t=9 at
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244 | * start of negotiation and t=1 at end of negotiation.
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245 | * @return
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246 | */
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247 | private double f(double t) {
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248 | double ft = k + (1.0 - k) * Math.pow(t, 1.0 / e);
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249 | return ft;
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250 | }
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251 |
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252 | /**
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253 | * Factory method to get the {@link ExtendedUtilSpace} helper class.
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254 | * Overridable eg for tests
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255 | *
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256 | * @param profile a {@link LinearAdditive} profile
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257 | *
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258 | * @return {@link ExtendedUtilSpace}
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259 | */
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260 | protected ExtendedUtilSpace getBidSpace(LinearAdditive profile) {
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261 | return new ExtendedUtilSpace(profile);
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262 | }
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263 |
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264 | }
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