- Fix examples using MPConstraint::Activity instead of MPSolver - Move all examples to exmaples/dotnet - remove netfx sub-directories - Add all examples to target test_dotnet - still few disabled since they are too long - Add tools/generate_examples_csproj.sh to generate .*proj files
125 lines
3.2 KiB
C#
125 lines
3.2 KiB
C#
// Copyright 2010-2017 Google
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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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using System;
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using System.Collections;
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using System.IO;
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using System.Linq;
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using System.Text.RegularExpressions;
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using Google.OrTools.ConstraintSolver;
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public class OrganizeDay
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{
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/**
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*
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*
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* Organizing a day.
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*
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* Simple scheduling problem.
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*
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* Problem formulation from ECLiPSe:
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* Slides on (Finite Domain) Constraint Logic Programming, page 38f
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* http://eclipseclp.org/reports/eclipse.ppt
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*
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*
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* Also see http://www.hakank.org/google_or_tools/organize_day.py
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*
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*/
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private static void Solve()
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{
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Solver solver = new Solver("OrganizeDayIntervals");
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int n = 4;
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int work = 0;
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int mail = 1;
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int shop = 2;
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int bank = 3;
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// the valid times of the day
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int begin = 9;
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int end = 17;
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// tasks
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int[] tasks = {work, mail, shop, bank};
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// durations
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int[] durations = {4,1,2,1};
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// Arrays for interval variables.
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int[] starts_max = { begin,begin,begin,begin };
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int[] ends_max = { end -4, end - 1, end - 2, end - 1 };
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// task [i,0] must be finished before task [i,1]
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int[,] before_tasks = {
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{bank, shop},
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{mail, work}
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};
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//
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// Decision variables
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//
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IntervalVar[] intervals =
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solver.MakeFixedDurationIntervalVarArray(n,
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starts_max,
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ends_max,
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durations,
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false,
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"task");
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//
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// Constraints
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//
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DisjunctiveConstraint disjunctive = intervals.Disjunctive("Sequence");
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solver.Add(disjunctive);
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// specific constraints
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for(int t = 0; t < before_tasks.GetLength(0); t++) {
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int before = before_tasks[t, 0];
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int after = before_tasks[t, 1];
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solver.Add(intervals[after].StartsAfterEnd(intervals[before]));
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}
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solver.Add(intervals[work].StartsAfter(11));
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//
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// Search
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//
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SequenceVar var = disjunctive.SequenceVar();
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SequenceVar[] seq_array = new SequenceVar[] { var };
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DecisionBuilder db = solver.MakePhase(seq_array, Solver.SEQUENCE_DEFAULT);
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solver.NewSearch(db);
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while (solver.NextSolution()) {
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foreach(int t in tasks) {
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Console.WriteLine(intervals[t].ToString());
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}
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Console.WriteLine();
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}
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Console.WriteLine("\nSolutions: {0}", solver.Solutions());
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Console.WriteLine("WallTime: {0}ms", solver.WallTime());
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Console.WriteLine("Failures: {0}", solver.Failures());
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Console.WriteLine("Branches: {0} ", solver.Branches());
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solver.EndSearch();
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}
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public static void Main(String[] args)
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{
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Solve();
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}
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}
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