371 lines
11 KiB
C#
371 lines
11 KiB
C#
// Copyright 2010-2018 Google LLC
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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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namespace Google.OrTools.ConstraintSolver
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{
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using System;
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using System.Collections.Generic;
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// IntVar[] helper class.
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public static class IntVarArrayHelper
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{
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// All Different
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public static Constraint AllDifferent(this IntVar[] vars)
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{
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Solver solver = GetSolver(vars);
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return solver.MakeAllDifferent(vars);
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}
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// Allowed assignment
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public static Constraint AllowedAssignments(this IntVar[] vars,
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IntTupleSet tuples)
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{
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Solver solver = GetSolver(vars);
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return solver.MakeAllowedAssignments(vars, tuples);
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}
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// sum of all vars.
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public static IntExpr Sum(this IntVar[] vars)
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{
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Solver solver = GetSolver(vars);
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return solver.MakeSum(vars);
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}
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// sum of all constraints.
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public static IntExpr Sum(this IConstraintWithStatus[] cts)
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{
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Solver solver = GetSolver(cts);
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IntVar[] vars = new IntVar[cts.Length];
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for (int i = 0; i < cts.Length; ++i)
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{
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vars[i] = cts[i].Var();
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}
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return solver.MakeSum(vars);
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}
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public static IntExpr Sum(this IntExpr[] exprs)
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{
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Solver solver = GetSolver(exprs);
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IntVar[] vars = new IntVar[exprs.Length];
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for (int i = 0; i < exprs.Length; ++i)
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{
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vars[i] = exprs[i].Var();
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}
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return solver.MakeSum(vars);
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}
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// scalar product
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public static IntExpr ScalProd(this IntVar[] vars, long[] coefs)
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{
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Solver solver = GetSolver(vars);
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return solver.MakeScalProd(vars, coefs);
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}
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// scalar product
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public static IntExpr ScalProd(this IntVar[] vars, int[] coefs)
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{
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Solver solver = GetSolver(vars);
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return solver.MakeScalProd(vars, coefs);
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}
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// get solver from array of integer variables
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private static Solver GetSolver(IntVar[] vars)
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{
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if (vars == null || vars.Length <= 0)
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throw new ArgumentException("Array <vars> cannot be null or empty");
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return vars[0].solver();
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}
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// get solver from array of integer expressions
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private static Solver GetSolver(IntExpr[] expressions)
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{
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if (expressions == null || expressions.Length <= 0)
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throw new ArgumentException("Array <expr> cannot be null or empty");
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return expressions[0].solver();
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}
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private static Solver GetSolver(IConstraintWithStatus[] cts)
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{
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if (cts == null || cts.Length <= 0)
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throw new ArgumentException("Array <cts> cannot be null or empty");
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return cts[0].solver();
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}
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public static IntExpr Element(this IntVar[] array, IntExpr index) {
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return index.solver().MakeElement(array, index.Var());
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}
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// min of all vars.
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public static IntExpr Min(this IntVar[] vars)
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{
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Solver solver = GetSolver(vars);
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return solver.MakeMin(vars);
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}
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// min of all vars.
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public static IntExpr Max(this IntVar[] vars)
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{
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Solver solver = GetSolver(vars);
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return solver.MakeMax(vars);
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}
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// count of all vars.
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public static Constraint Count(this IntVar[] vars, long value, long count)
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{
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Solver solver = GetSolver(vars);
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return solver.MakeCount(vars, value, count);
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}
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// count of all vars.
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public static Constraint Count(this IntVar[] vars,
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long value,
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IntExpr count)
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{
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Solver solver = GetSolver(vars);
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return solver.MakeCount(vars, value, count.Var());
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}
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public static Constraint Distribute(this IntVar[] vars,
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long[] values,
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IntVar[] cards)
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{
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Solver solver = GetSolver(vars);
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return solver.MakeDistribute(vars, values, cards);
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}
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public static Constraint Distribute(this IntVar[] vars,
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int[] values,
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IntVar[] cards)
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{
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Solver solver = GetSolver(vars);
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return solver.MakeDistribute(vars, values, cards);
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}
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public static Constraint Distribute(this IntVar[] vars,
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IntVar[] cards)
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{
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Solver solver = GetSolver(vars);
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return solver.MakeDistribute(vars, cards);
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}
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public static Constraint Distribute(this IntVar[] vars,
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long card_min,
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long card_max,
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long card_size)
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{
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Solver solver = GetSolver(vars);
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return solver.MakeDistribute(vars, card_min, card_max, card_size);
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}
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public static Constraint Transition(this IntVar[] vars,
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IntTupleSet transitions,
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long initial_state,
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long[] final_states) {
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Solver solver = GetSolver(vars);
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return solver.MakeTransitionConstraint(vars,
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transitions,
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initial_state,
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final_states);
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}
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public static Constraint Transition(this IntVar[] vars,
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IntTupleSet transitions,
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long initial_state,
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int[] final_states) {
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Solver solver = GetSolver(vars);
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return solver.MakeTransitionConstraint(vars,
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transitions,
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initial_state,
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final_states);
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}
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// Matrix API
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public static IntVar[] Flatten(this IntVar[,] vars)
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{
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int rows = vars.GetLength(0);
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int cols = vars.GetLength(1);
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IntVar[] flat = new IntVar[cols * rows];
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for(int i = 0; i < rows; i++) {
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for(int j = 0; j < cols; j++) {
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flat[i * cols + j] = vars[i, j];
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}
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}
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return flat;
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}
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}
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// TODO(user): Try to move this code back to the .swig with @define macros.
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public partial class IntVarVector: IDisposable, System.Collections.IEnumerable
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#if !SWIG_DOTNET_1
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, System.Collections.Generic.IList<IntVar>
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#endif
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{
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// cast from C# IntVar array
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public static implicit operator IntVarVector(IntVar[] inVal) {
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var outVal= new IntVarVector();
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foreach (IntVar element in inVal) {
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outVal.Add(element);
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}
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return outVal;
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}
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// cast to C# IntVar array
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public static implicit operator IntVar[](IntVarVector inVal) {
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var outVal= new IntVar[inVal.Count];
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inVal.CopyTo(outVal);
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return outVal;
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}
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}
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public partial class SearchMonitorVector: IDisposable, System.Collections.IEnumerable
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#if !SWIG_DOTNET_1
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, System.Collections.Generic.IList<SearchMonitor>
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#endif
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{
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// cast from C# SearchMonitor array
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public static implicit operator SearchMonitorVector(SearchMonitor[] inVal) {
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var outVal= new SearchMonitorVector();
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foreach (SearchMonitor element in inVal) {
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outVal.Add(element);
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}
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return outVal;
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}
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// cast to C# SearchMonitor array
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public static implicit operator SearchMonitor[](SearchMonitorVector inVal) {
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var outVal= new SearchMonitor[inVal.Count];
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inVal.CopyTo(outVal);
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return outVal;
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}
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}
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public partial class DecisionBuilderVector: IDisposable, System.Collections.IEnumerable
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#if !SWIG_DOTNET_1
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, System.Collections.Generic.IList<DecisionBuilder>
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#endif
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{
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// cast from C# DecisionBuilder array
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public static implicit operator DecisionBuilderVector(DecisionBuilder[] inVal) {
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var outVal= new DecisionBuilderVector();
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foreach (DecisionBuilder element in inVal) {
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outVal.Add(element);
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}
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return outVal;
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}
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// cast to C# DecisionBuilder array
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public static implicit operator DecisionBuilder[](DecisionBuilderVector inVal) {
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var outVal= new DecisionBuilder[inVal.Count];
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inVal.CopyTo(outVal);
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return outVal;
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}
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}
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public partial class IntervalVarVector: IDisposable, System.Collections.IEnumerable
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#if !SWIG_DOTNET_1
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, System.Collections.Generic.IList<IntervalVar>
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#endif
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{
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// cast from C# IntervalVar array
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public static implicit operator IntervalVarVector(IntervalVar[] inVal) {
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var outVal= new IntervalVarVector();
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foreach (IntervalVar element in inVal) {
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outVal.Add(element);
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}
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return outVal;
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}
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// cast to C# IntervalVar array
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public static implicit operator IntervalVar[](IntervalVarVector inVal) {
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var outVal= new IntervalVar[inVal.Count];
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inVal.CopyTo(outVal);
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return outVal;
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}
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}
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public partial class SequenceVarVector: IDisposable, System.Collections.IEnumerable
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#if !SWIG_DOTNET_1
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, System.Collections.Generic.IList<SequenceVar>
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#endif
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{
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// cast from C# SequenceVar array
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public static implicit operator SequenceVarVector(SequenceVar[] inVal) {
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var outVal= new SequenceVarVector();
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foreach (SequenceVar element in inVal) {
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outVal.Add(element);
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}
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return outVal;
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}
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// cast to C# SequenceVar array
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public static implicit operator SequenceVar[](SequenceVarVector inVal) {
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var outVal= new SequenceVar[inVal.Count];
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inVal.CopyTo(outVal);
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return outVal;
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}
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}
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public partial class LocalSearchOperatorVector: IDisposable, System.Collections.IEnumerable
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#if !SWIG_DOTNET_1
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, System.Collections.Generic.IList<LocalSearchOperator>
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#endif
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{
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// cast from C# LocalSearchOperator array
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public static implicit operator LocalSearchOperatorVector(LocalSearchOperator[] inVal) {
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var outVal= new LocalSearchOperatorVector();
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foreach (LocalSearchOperator element in inVal) {
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outVal.Add(element);
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}
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return outVal;
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}
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// cast to C# LocalSearchOperator array
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public static implicit operator LocalSearchOperator[](LocalSearchOperatorVector inVal) {
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var outVal= new LocalSearchOperator[inVal.Count];
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inVal.CopyTo(outVal);
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return outVal;
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}
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}
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public partial class LocalSearchFilterVector: IDisposable, System.Collections.IEnumerable
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#if !SWIG_DOTNET_1
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, System.Collections.Generic.IList<LocalSearchFilter>
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#endif
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{
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// cast from C# LocalSearchFilter array
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public static implicit operator LocalSearchFilterVector(LocalSearchFilter[] inVal) {
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var outVal= new LocalSearchFilterVector();
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foreach (LocalSearchFilter element in inVal) {
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outVal.Add(element);
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}
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return outVal;
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}
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// cast to C# LocalSearchFilter array
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public static implicit operator LocalSearchFilter[](LocalSearchFilterVector inVal) {
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var outVal= new LocalSearchFilter[inVal.Count];
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inVal.CopyTo(outVal);
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return outVal;
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}
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}
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public partial class SymmetryBreakerVector: IDisposable, System.Collections.IEnumerable
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#if !SWIG_DOTNET_1
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, System.Collections.Generic.IList<SymmetryBreaker>
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#endif
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{
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// cast from C# SymmetryBreaker array
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public static implicit operator SymmetryBreakerVector(SymmetryBreaker[] inVal) {
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var outVal= new SymmetryBreakerVector();
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foreach (SymmetryBreaker element in inVal) {
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outVal.Add(element);
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}
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return outVal;
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}
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// cast to C# SymmetryBreaker array
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public static implicit operator SymmetryBreaker[](SymmetryBreakerVector inVal) {
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var outVal= new SymmetryBreaker[inVal.Count];
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inVal.CopyTo(outVal);
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return outVal;
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}
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}
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} // namespace Google.OrTools.ConstraintSolver
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