185 lines
5.1 KiB
Java
185 lines
5.1 KiB
Java
// Copyright 2011 Hakan Kjellerstrand hakank@gmail.com
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package com.google.ortools.contrib;
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import com.google.ortools.Loader;
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import com.google.ortools.constraintsolver.DecisionBuilder;
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import com.google.ortools.constraintsolver.IntVar;
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import com.google.ortools.constraintsolver.Solver;
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import java.io.*;
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import java.text.*;
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import java.util.*;
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public class Crossword {
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/** Solving a simple crossword. See http://www.hakank.org/google_or_tools/crossword2.py */
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private static void solve() {
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Solver solver = new Solver("Crossword");
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//
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// data
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//
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String[] alpha = {"_", "a", "b", "c", "d", "e", "f", "g", "h", "i", "j", "k", "l", "m", "n",
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"o", "p", "q", "r", "s", "t", "u", "v", "w", "x", "y", "z"};
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int a = 1;
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int b = 2;
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int c = 3;
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int d = 4;
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int e = 5;
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int f = 6;
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int g = 7;
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int h = 8;
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int i = 9;
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int j = 10;
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int k = 11;
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int l = 12;
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int m = 13;
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int n = 14;
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int o = 15;
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int p = 16;
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int q = 17;
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int r = 18;
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int s = 19;
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int t = 20;
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int u = 21;
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int v = 22;
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int w = 23;
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int x = 24;
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int y = 25;
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int z = 26;
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int num_words = 15;
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int word_len = 5;
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int[][] AA = {{h, o, s, e, s}, // HOSES
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{l, a, s, e, r}, // LASER
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{s, a, i, l, s}, // SAILS
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{s, h, e, e, t}, // SHEET
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{s, t, e, e, r}, // STEER
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{h, e, e, l, 0}, // HEEL
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{h, i, k, e, 0}, // HIKE
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{k, e, e, l, 0}, // KEEL
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{k, n, o, t, 0}, // KNOT
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{l, i, n, e, 0}, // LINE
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{a, f, t, 0, 0}, // AFT
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{a, l, e, 0, 0}, // ALE
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{e, e, l, 0, 0}, // EEL
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{l, e, e, 0, 0}, // LEE
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{t, i, e, 0, 0}}; // TIE
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int num_overlapping = 12;
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int[][] overlapping = {{0, 2, 1, 0}, // s
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{0, 4, 2, 0}, // s
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{3, 1, 1, 2}, // i
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{3, 2, 4, 0}, // k
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{3, 3, 2, 2}, // e
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{6, 0, 1, 3}, // l
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{6, 1, 4, 1}, // e
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{6, 2, 2, 3}, // e
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{7, 0, 5, 1}, // l
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{7, 2, 1, 4}, // s
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{7, 3, 4, 2}, // e
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{7, 4, 2, 4}}; // r
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int N = 8;
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//
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// variables
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//
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IntVar[][] A = new IntVar[num_words][word_len];
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IntVar[] A_flat = new IntVar[num_words * word_len];
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// for labeling on A and E
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IntVar[] all = new IntVar[(num_words * word_len) + N];
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for (int I = 0; I < num_words; I++) {
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for (int J = 0; J < word_len; J++) {
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A[I][J] = solver.makeIntVar(0, 26, "A[" + I + "," + J + "]");
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A_flat[I * word_len + J] = A[I][J];
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all[I * word_len + J] = A[I][J];
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}
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}
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IntVar[] E = solver.makeIntVarArray(N, 0, num_words, "E");
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for (int I = 0; I < N; I++) {
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all[num_words * word_len + I] = E[I];
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}
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//
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// constraints
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//
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solver.addConstraint(solver.makeAllDifferent(E));
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for (int I = 0; I < num_words; I++) {
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for (int J = 0; J < word_len; J++) {
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solver.addConstraint(solver.makeEquality(A[I][J], AA[I][J]));
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}
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}
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for (int I = 0; I < num_overlapping; I++) {
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solver.addConstraint(solver.makeEquality(
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solver
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.makeElement(A_flat,
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solver
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.makeSum(
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solver.makeProd(E[overlapping[I][0]], word_len).var(), overlapping[I][1])
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.var())
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.var(),
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solver
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.makeElement(A_flat,
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solver
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.makeSum(
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solver.makeProd(E[overlapping[I][2]], word_len).var(), overlapping[I][3])
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.var())
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.var()));
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}
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//
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// search
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//
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DecisionBuilder db = solver.makePhase(all, solver.INT_VAR_DEFAULT, solver.INT_VALUE_DEFAULT);
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solver.newSearch(db);
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//
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// output
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//
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while (solver.nextSolution()) {
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System.out.println("E:");
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for (int ee = 0; ee < N; ee++) {
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int e_val = (int) E[ee].value();
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System.out.print(ee + ": (" + e_val + ") ");
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for (int ii = 0; ii < word_len; ii++) {
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System.out.print(alpha[(int) A[ee][ii].value()]);
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}
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System.out.println();
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}
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System.out.println();
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}
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solver.endSearch();
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// Statistics
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System.out.println();
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System.out.println("Solutions: " + solver.solutions());
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System.out.println("Failures: " + solver.failures());
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System.out.println("Branches: " + solver.branches());
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System.out.println("Wall time: " + solver.wallTime() + "ms");
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}
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public static void main(String[] args) throws Exception {
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Loader.loadNativeLibraries();
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Crossword.solve();
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}
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}
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