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<h2>DotNet Reference</h2>
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<li><a href="../dotnet/namespaceGoogle_1_1OrTools_1_1Sat.html">CP-SAT</a></li>
<li><a href="../dotnet/namespaceGoogle_1_1OrTools_1_1Graph.html">Graph</a></li>
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<h1 style="color: #145A32;">.Net Reference</h1>
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<div class="title">Class Hierarchy</div> </div>
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<p><a href="inherits.html">Go to the graphical class hierarchy</a></p>
This inheritance list is sorted roughly, but not completely, alphabetically:</div><div class="directory">
<div class="levels">[detail level <span onclick="javascript:toggleLevel(1);">1</span><span onclick="javascript:toggleLevel(2);">2</span><span onclick="javascript:toggleLevel(3);">3</span><span onclick="javascript:toggleLevel(4);">4</span><span onclick="javascript:toggleLevel(5);">5</span><span onclick="javascript:toggleLevel(6);">6</span>]</div><table class="directory">
<tr id="row_0_" class="even"><td class="entry"><span style="width:16px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1BoundedLinearExpression.html" target="_self">BoundedLinearExpression</a></td><td class="desc"></td></tr>
<tr id="row_1_"><td class="entry"><span style="width:16px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1Constraint.html" target="_self">Constraint</a></td><td class="desc"></td></tr>
<tr id="row_2_" class="even"><td class="entry"><span style="width:16px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CpModel.html" target="_self">CpModel</a></td><td class="desc">Wrapper class around the cp_model proto </td></tr>
<tr id="row_3_"><td class="entry"><span style="width:16px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CpModelReflection.html" target="_self">CpModelReflection</a></td><td class="desc">Holder for reflection information generated from ortools/sat/cp_model.proto </td></tr>
<tr id="row_4_" class="even"><td class="entry"><span style="width:16px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CpSolver.html" target="_self">CpSolver</a></td><td class="desc"></td></tr>
<tr id="row_5_"><td class="entry"><span style="width:0px;display:inline-block;">&#160;</span><span id="arr_5_" class="arrow" onclick="toggleFolder('5_')">&#9658;</span><span class="icona"><span class="icon">C</span></span><b>IBufferMessage</b></td><td class="desc"></td></tr>
<tr id="row_5_0_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1ConstraintSolverParameters.html" target="_self">ConstraintSolverParameters</a></td><td class="desc"><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1Solver.html">Solver</a> parameters </td></tr>
<tr id="row_5_1_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1FirstSolutionStrategy.html" target="_self">FirstSolutionStrategy</a></td><td class="desc">First solution strategies, used as starting point of local search </td></tr>
<tr id="row_5_2_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1LocalSearchMetaheuristic.html" target="_self">LocalSearchMetaheuristic</a></td><td class="desc">Local search metaheuristics used to guide the search </td></tr>
<tr id="row_5_3_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1RegularLimitParameters.html" target="_self">RegularLimitParameters</a></td><td class="desc">A search limit The default values for int64 fields is the maxima value, i.e., 2^63-1 </td></tr>
<tr id="row_5_4_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1RoutingModelParameters.html" target="_self">RoutingModelParameters</a></td><td class="desc">Parameters which have to be set when creating a <a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1RoutingModel.html">RoutingModel</a> </td></tr>
<tr id="row_5_5_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1RoutingSearchParameters.html" target="_self">RoutingSearchParameters</a></td><td class="desc">Parameters defining the search used to solve vehicle routing problems </td></tr>
<tr id="row_5_6_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1RoutingSearchParameters_1_1Types_1_1LocalSearchNeighborhoodOperators.html" target="_self">RoutingSearchParameters.Types.LocalSearchNeighborhoodOperators</a></td><td class="desc">Local search neighborhood operators used to build a solutions neighborhood </td></tr>
<tr id="row_5_7_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1AllDifferentConstraintProto.html" target="_self">AllDifferentConstraintProto</a></td><td class="desc">All variables must take different values </td></tr>
<tr id="row_5_8_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1AutomatonConstraintProto.html" target="_self">AutomatonConstraintProto</a></td><td class="desc">This constraint forces a sequence of variables to be accepted by an automaton </td></tr>
<tr id="row_5_9_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1BoolArgumentProto.html" target="_self">BoolArgumentProto</a></td><td class="desc">Argument of the constraints of the form OP(literals) </td></tr>
<tr id="row_5_10_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CircuitConstraintProto.html" target="_self">CircuitConstraintProto</a></td><td class="desc">The circuit constraint is defined on a graph where the arc presence are controlled by literals </td></tr>
<tr id="row_5_11_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CircuitCoveringConstraintProto.html" target="_self">CircuitCoveringConstraintProto</a></td><td class="desc">Another routing constraint </td></tr>
<tr id="row_5_12_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1ConstraintProto.html" target="_self">ConstraintProto</a></td><td class="desc">Next id: 29 </td></tr>
<tr id="row_5_13_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CpModelProto.html" target="_self">CpModelProto</a></td><td class="desc">A constraint programming problem </td></tr>
<tr id="row_5_14_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CpObjectiveProto.html" target="_self">CpObjectiveProto</a></td><td class="desc">Optimization objective </td></tr>
<tr id="row_5_15_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CpSolverResponse.html" target="_self">CpSolverResponse</a></td><td class="desc">The response returned by a solver trying to solve a <a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CpModelProto.html" title="A constraint programming problem.">CpModelProto</a> </td></tr>
<tr id="row_5_16_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CumulativeConstraintProto.html" target="_self">CumulativeConstraintProto</a></td><td class="desc">The sum of the demands of the intervals at each interval point cannot exceed a capacity </td></tr>
<tr id="row_5_17_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1DecisionStrategyProto.html" target="_self">DecisionStrategyProto</a></td><td class="desc">Define the strategy to follow when the solver needs to take a new decision </td></tr>
<tr id="row_5_18_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1DecisionStrategyProto_1_1Types_1_1AffineTransformation.html" target="_self">DecisionStrategyProto.Types.AffineTransformation</a></td><td class="desc">Advanced usage </td></tr>
<tr id="row_5_19_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1ElementConstraintProto.html" target="_self">ElementConstraintProto</a></td><td class="desc">The constraint target = vars[index] </td></tr>
<tr id="row_5_20_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1IntegerArgumentProto.html" target="_self">IntegerArgumentProto</a></td><td class="desc">Argument of the constraints of the form target_var = OP(vars) </td></tr>
<tr id="row_5_21_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1IntegerVariableProto.html" target="_self">IntegerVariableProto</a></td><td class="desc">An integer variable </td></tr>
<tr id="row_5_22_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1IntervalConstraintProto.html" target="_self">IntervalConstraintProto</a></td><td class="desc">This "special" constraint not only enforces (start + size == end) but can also be referred by other constraints using this "interval" concept </td></tr>
<tr id="row_5_23_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1InverseConstraintProto.html" target="_self">InverseConstraintProto</a></td><td class="desc">The two arrays of variable each represent a function, the second is the inverse of the first: f_direct[i] == j &lt;=&gt; f_inverse[j] == i </td></tr>
<tr id="row_5_24_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1LinearArgumentProto.html" target="_self">LinearArgumentProto</a></td><td class="desc"></td></tr>
<tr id="row_5_25_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1LinearConstraintProto.html" target="_self">LinearConstraintProto</a></td><td class="desc">The linear sum vars[i] * coeffs[i] must fall in the given domain </td></tr>
<tr id="row_5_26_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1LinearExpressionProto.html" target="_self">LinearExpressionProto</a></td><td class="desc"></td></tr>
<tr id="row_5_27_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1NoOverlap2DConstraintProto.html" target="_self">NoOverlap2DConstraintProto</a></td><td class="desc">The boxes defined by [start_x, end_x) * [start_y, end_y) cannot overlap </td></tr>
<tr id="row_5_28_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1NoOverlapConstraintProto.html" target="_self">NoOverlapConstraintProto</a></td><td class="desc">All the intervals (index of <a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1IntervalConstraintProto.html" title="This &quot;special&quot; constraint not only enforces (start + size == end) but can also be referred by other c...">IntervalConstraintProto</a>) must be disjoint </td></tr>
<tr id="row_5_29_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1PartialVariableAssignment.html" target="_self">PartialVariableAssignment</a></td><td class="desc">This message encodes a partial (or full) assignment of the variables of a <a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CpModelProto.html" title="A constraint programming problem.">CpModelProto</a> </td></tr>
<tr id="row_5_30_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1ReservoirConstraintProto.html" target="_self">ReservoirConstraintProto</a></td><td class="desc">Maintain a reservoir level within bounds </td></tr>
<tr id="row_5_31_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1RoutesConstraintProto.html" target="_self">RoutesConstraintProto</a></td><td class="desc">The "VRP" (Vehicle Routing Problem) constraint </td></tr>
<tr id="row_5_32_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1TableConstraintProto.html" target="_self">TableConstraintProto</a></td><td class="desc">The values of the n-tuple formed by the given variables can only be one of the listed n-tuples in values </td></tr>
<tr id="row_6_" class="even"><td class="entry"><span style="width:0px;display:inline-block;">&#160;</span><span id="arr_6_" class="arrow" onclick="toggleFolder('6_')">&#9658;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="interfaceGoogle_1_1OrTools_1_1ConstraintSolver_1_1IConstraintWithStatus.html" target="_self">IConstraintWithStatus</a></td><td class="desc"></td></tr>
<tr id="row_6_0_" style="display:none;"><td class="entry"><span style="width:16px;display:inline-block;">&#160;</span><span id="arr_6_0_" class="arrow" onclick="toggleFolder('6_0_')">&#9658;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1BaseEquality.html" target="_self">BaseEquality</a></td><td class="desc"></td></tr>
<tr id="row_6_0_0_" style="display:none;"><td class="entry"><span style="width:48px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1ConstraintEquality.html" target="_self">ConstraintEquality</a></td><td class="desc"></td></tr>
<tr id="row_6_0_1_" style="display:none;"><td class="entry"><span style="width:48px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1IntExprEquality.html" target="_self">IntExprEquality</a></td><td class="desc"></td></tr>
<tr id="row_6_0_2_" style="display:none;"><td class="entry"><span style="width:48px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1WrappedConstraint.html" target="_self">WrappedConstraint</a></td><td class="desc"></td></tr>
<tr id="row_6_1_" style="display:none;"><td class="entry"><span style="width:16px;display:inline-block;">&#160;</span><span id="arr_6_1_" class="arrow" onclick="toggleFolder('6_1_')">&#9658;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1Constraint.html" target="_self">Constraint</a></td><td class="desc"></td></tr>
<tr id="row_6_1_0_" style="display:none;"><td class="entry"><span style="width:48px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1CastConstraint.html" target="_self">CastConstraint</a></td><td class="desc"></td></tr>
<tr id="row_6_1_1_" style="display:none;"><td class="entry"><span style="width:48px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1DisjunctiveConstraint.html" target="_self">DisjunctiveConstraint</a></td><td class="desc"></td></tr>
<tr id="row_6_1_2_" style="display:none;"><td class="entry"><span style="width:48px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1GlobalVehicleBreaksConstraint.html" target="_self">GlobalVehicleBreaksConstraint</a></td><td class="desc"></td></tr>
<tr id="row_6_1_3_" style="display:none;"><td class="entry"><span style="width:48px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1NetConstraint.html" target="_self">NetConstraint</a></td><td class="desc"></td></tr>
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<tr id="row_16_11_" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CircuitCoveringConstraintProto.html" target="_self">CircuitCoveringConstraintProto</a></td><td class="desc">Another routing constraint </td></tr>
<tr id="row_16_12_" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1ConstraintProto.html" target="_self">ConstraintProto</a></td><td class="desc">Next id: 29 </td></tr>
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<tr id="row_16_14_" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CpObjectiveProto.html" target="_self">CpObjectiveProto</a></td><td class="desc">Optimization objective </td></tr>
<tr id="row_16_15_" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CpSolverResponse.html" target="_self">CpSolverResponse</a></td><td class="desc">The response returned by a solver trying to solve a <a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CpModelProto.html" title="A constraint programming problem.">CpModelProto</a> </td></tr>
<tr id="row_16_16_" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1CumulativeConstraintProto.html" target="_self">CumulativeConstraintProto</a></td><td class="desc">The sum of the demands of the intervals at each interval point cannot exceed a capacity </td></tr>
<tr id="row_16_17_" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1DecisionStrategyProto.html" target="_self">DecisionStrategyProto</a></td><td class="desc">Define the strategy to follow when the solver needs to take a new decision </td></tr>
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<tr id="row_16_27_" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1Sat_1_1NoOverlap2DConstraintProto.html" target="_self">NoOverlap2DConstraintProto</a></td><td class="desc">The boxes defined by [start_x, end_x) * [start_y, end_y) cannot overlap </td></tr>
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<tr id="row_17_"><td class="entry"><span style="width:16px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classGoogle_1_1OrTools_1_1ConstraintSolver_1_1IntArrayHelper.html" target="_self">IntArrayHelper</a></td><td class="desc"></td></tr>
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