Java Reference

Java Reference

DoubleLinearExpr.java
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13 
14 package com.google.ortools.sat;
15 
17 public class DoubleLinearExpr {
18  private final int[] variableIndices;
19  private final double[] coefficients;
20  private double offset;
21 
23  static DoubleLinearExpr sum(IntVar[] variables) {
24  return sumWithOffset(variables, 0.0);
25  }
26 
28  static DoubleLinearExpr sum(Literal[] literals) {
29  // We need the scalar product for the negative coefficient of negated Boolean variables.
30  return sumWithOffset(literals, 0.0);
31  }
32 
34  static DoubleLinearExpr sumWithOffset(IntVar[] variables, double offset) {
35  return new DoubleLinearExpr(variables, offset);
36  }
37 
39  static DoubleLinearExpr sumWithOffset(Literal[] literals, double offset) {
40  // We need the scalar product for the negative coefficient of negated Boolean variables.
41  return new DoubleLinearExpr(literals, offset);
42  }
43 
45  static DoubleLinearExpr weightedSum(IntVar[] variables, double[] coefficients) {
46  return weightedSumWithOffset(variables, coefficients, 0.0);
47  }
48 
50  static DoubleLinearExpr weightedSum(Literal[] literals, double[] coefficients) {
51  return weightedSumWithOffset(literals, coefficients, 0.0);
52  }
53 
55  static DoubleLinearExpr weightedSumWithOffset(
56  IntVar[] variables, double[] coefficients, double offset) {
57  if (variables.length != coefficients.length) {
59  "DoubleLinearExpr.weightedSum", "variables", "coefficients");
60  }
61  return new DoubleLinearExpr(variables, coefficients, offset);
62  }
63 
65  static DoubleLinearExpr weightedSumWithOffset(
66  Literal[] literals, double[] coefficients, double offset) {
67  if (literals.length != coefficients.length) {
69  "DoubleLinearExpr.weightedSum", "literals", "coefficients");
70  }
71  return new DoubleLinearExpr(literals, coefficients, offset);
72  }
73 
75  static DoubleLinearExpr term(IntVar variable, double coefficient) {
76  return new DoubleLinearExpr(variable, coefficient, 0.0);
77  }
78 
80  static DoubleLinearExpr term(Literal lit, double coefficient) {
81  return new DoubleLinearExpr(lit, coefficient, 0.0);
82  }
83 
85  static DoubleLinearExpr affine(IntVar variable, double coefficient, double offset) {
86  return new DoubleLinearExpr(variable, coefficient, offset);
87  }
88 
90  static DoubleLinearExpr affine(Literal lit, double coefficient, double offset) {
91  return new DoubleLinearExpr(lit, coefficient, offset);
92  }
93 
95  static DoubleLinearExpr constant(double value) {
96  return new DoubleLinearExpr(new IntVar[0], value);
97  }
98 
100  public int numElements() {
101  return variableIndices.length;
102  }
103 
105  public int getVariableIndex(int index) {
106  if (index < 0 || index >= variableIndices.length) {
107  throw new IllegalArgumentException("wrong index in LinearExpr.getVariable(): " + index);
108  }
109  return variableIndices[index];
110  }
111 
113  public double getCoefficient(int index) {
114  if (index < 0 || index >= variableIndices.length) {
115  throw new IllegalArgumentException("wrong index in LinearExpr.getCoefficient(): " + index);
116  }
117  return coefficients[index];
118  }
119 
121  public double getOffset() {
122  return offset;
123  }
124 
125  public DoubleLinearExpr(IntVar[] variables, double[] coefficients, double offset) {
126  this.variableIndices = new int[variables.length];
127  for (int i = 0; i < variables.length; ++i) {
128  this.variableIndices[i] = variables[i].getIndex();
129  }
130  this.coefficients = coefficients;
131  this.offset = offset;
132  }
133 
134  public DoubleLinearExpr(Literal[] literals, double[] coefficients, double offset) {
135  int size = literals.length;
136  this.variableIndices = new int[size];
137  this.coefficients = new double[size];
138  this.offset = offset;
139 
140  for (int i = 0; i < size; ++i) {
141  Literal lit = literals[i];
142  double coeff = coefficients[i];
143  if (lit.getIndex() >= 0) {
144  this.variableIndices[i] = lit.getIndex();
145  this.coefficients[i] = coeff;
146  } else {
147  this.variableIndices[i] = lit.not().getIndex();
148  this.coefficients[i] = -coeff;
149  this.offset -= coeff;
150  }
151  }
152  }
153 
154  public DoubleLinearExpr(IntVar var, double coefficient, double offset) {
155  this.variableIndices = new int[] {var.getIndex()};
156  this.coefficients = new double[] {coefficient};
157  this.offset = offset;
158  }
159 
160  public DoubleLinearExpr(Literal lit, double coefficient, double offset) {
161  if (lit.getIndex() >= 0) {
162  this.variableIndices = new int[] {lit.getIndex()};
163  this.coefficients = new double[] {coefficient};
164  this.offset = offset;
165  } else {
166  this.variableIndices = new int[] {lit.not().getIndex()};
167  this.coefficients = new double[] {-coefficient};
168  this.offset = offset + coefficient;
169  }
170  }
171 
172  public DoubleLinearExpr(IntVar[] vars, double offset) {
173  int size = vars.length;
174  this.variableIndices = new int[size];
175  this.coefficients = new double[size];
176  this.offset = offset;
177 
178  for (int i = 0; i < size; ++i) {
179  this.variableIndices[i] = vars[i].getIndex();
180  this.coefficients[i] = 1;
181  }
182  }
183 
184  public DoubleLinearExpr(Literal[] literals, double offset) {
185  int size = literals.length;
186  this.variableIndices = new int[size];
187  this.coefficients = new double[size];
188  this.offset = offset;
189 
190  for (int i = 0; i < size; ++i) {
191  Literal lit = literals[i];
192  if (lit.getIndex() >= 0) {
193  this.variableIndices[i] = lit.getIndex();
194  this.coefficients[i] = 1;
195  } else { // NotBoolVar.
196  this.variableIndices[i] = lit.not().getIndex();
197  this.coefficients[i] = -1.0;
198  this.offset -= 1.0;
199  }
200  }
201  }
202 }
Exception thrown when parallel arrays have mismatched lengths.
Definition: CpModel.java:51
Main modeling class.
Definition: CpModel.java:42
A linear expression interface that can be parsed.
DoubleLinearExpr(IntVar[] variables, double[] coefficients, double offset)
int numElements()
Returns the number of elements in the interface.
double getCoefficient(int index)
Returns the ith coefficient.
DoubleLinearExpr(IntVar var, double coefficient, double offset)
DoubleLinearExpr(Literal[] literals, double[] coefficients, double offset)
DoubleLinearExpr(IntVar[] vars, double offset)
DoubleLinearExpr(Literal lit, double coefficient, double offset)
double getOffset()
Returns the constant part of the expression.
DoubleLinearExpr(Literal[] literals, double offset)
int getVariableIndex(int index)
Returns the ith variable.
An integer variable.
Definition: IntVar.java:21
int getIndex()
Returns the index of the variable in the underlying CpModelProto.
Definition: IntVar.java:44
Interface to describe a boolean variable or its negation.
Definition: Literal.java:17
Literal not()
Returns the Boolean negation of the current literal.