OR-Tools  9.2
integer_search.h
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1// Copyright 2010-2021 Google LLC
2// Licensed under the Apache License, Version 2.0 (the "License");
3// you may not use this file except in compliance with the License.
4// You may obtain a copy of the License at
5//
6// http://www.apache.org/licenses/LICENSE-2.0
7//
8// Unless required by applicable law or agreed to in writing, software
9// distributed under the License is distributed on an "AS IS" BASIS,
10// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
11// See the License for the specific language governing permissions and
12// limitations under the License.
13
14// This file contains all the top-level logic responsible for driving the search
15// of a satisfiability integer problem. What decision we take next, which new
16// Literal associated to an IntegerLiteral we create and when we restart.
17//
18// For an optimization problem, our algorithm solves a sequence of decision
19// problem using this file as an entry point. Note that some heuristics here
20// still use the objective if there is one in order to orient the search towards
21// good feasible solution though.
22
23#ifndef OR_TOOLS_SAT_INTEGER_SEARCH_H_
24#define OR_TOOLS_SAT_INTEGER_SEARCH_H_
25
26#include <vector>
27
28#include "ortools/sat/integer.h"
33
34namespace operations_research {
35namespace sat {
36
37// This is used to hold the next decision the solver will take. It is either
38// a pure Boolean literal decision or correspond to an IntegerLiteral one.
39//
40// At most one of the two options should be set.
43 explicit BooleanOrIntegerLiteral(LiteralIndex index)
46 : integer_literal(i_lit) {}
47
48 bool HasValue() const {
51 }
52
55};
56
57// Model struct that contains the search heuristics used to find a feasible
58// solution to an integer problem.
59//
60// This is reset by ConfigureSearchHeuristics() and used by
61// SolveIntegerProblem(), see below.
63 // Decision and restart heuristics. The two vectors must be of the same size
64 // and restart_policies[i] will always be used in conjunction with
65 // decision_policies[i].
66 std::vector<std::function<BooleanOrIntegerLiteral()>> decision_policies;
67 std::vector<std::function<bool()>> restart_policies;
68
69 // Index in the vectors above that indicate the current configuration.
71
72 // Two special decision functions that are constructed at loading time.
73 // These are used by ConfigureSearchHeuristics() to fill the policies above.
74 std::function<BooleanOrIntegerLiteral()> fixed_search = nullptr;
75 std::function<BooleanOrIntegerLiteral()> hint_search = nullptr;
76
77 // Some search strategy need to take more than one decision at once. They can
78 // set this function that will be called on the next decision. It will be
79 // automatically deleted the first time it returns an empty decision.
81};
82
83// Given a base "fixed_search" function that should mainly control in which
84// order integer variables are lazily instantiated (and at what value), this
85// uses the current solver parameters to set the SearchHeuristics class in the
86// given model.
88
89// Callbacks that will be called when the search goes back to level 0.
90// Callbacks should return false if the propagation fails.
92 std::vector<std::function<bool()>> callbacks;
93};
94
95// Tries to find a feasible solution to the current model.
96//
97// This function continues from the current state of the solver and loop until
98// all variables are instantiated (i.e. the next decision is kNoLiteralIndex) or
99// a search limit is reached. It uses the heuristic from the SearchHeuristics
100// class in the model to decide when to restart and what next decision to take.
101//
102// Each time a restart happen, this increment the policy index modulo the number
103// of heuristics to act as a portfolio search.
105
106// Resets the solver to the given assumptions before calling
107// SolveIntegerProblem().
109 const std::vector<Literal>& assumptions, Model* model);
110
111// Only used in tests. Move to a test utility file.
112//
113// This configures the model SearchHeuristics with a simple default heuristic
114// and then call ResetAndSolveIntegerProblem() without any assumptions.
116
117// Returns decision corresponding to var at its lower bound.
118// Returns an invalid literal if the variable is fixed.
119IntegerLiteral AtMinValue(IntegerVariable var, IntegerTrail* integer_trail);
120
121// If a variable appear in the objective, branch on its best objective value.
123
124// Returns decision corresponding to var >= lb + max(1, (ub - lb) / 2). It also
125// CHECKs that the variable is not fixed.
127 IntegerTrail* integer_trail);
128
129// This method first tries var <= value. If this does not reduce the domain it
130// tries var >= value. If that also does not reduce the domain then returns
131// an invalid literal.
132IntegerLiteral SplitAroundGivenValue(IntegerVariable var, IntegerValue value,
133 Model* model);
134
135// Returns decision corresponding to var <= round(lp_value). If the variable
136// does not appear in the LP, this method returns an invalid literal.
138
139// Returns decision corresponding to var <= best_solution[var]. If no solution
140// has been found, this method returns a literal with kNoIntegerVariable. This
141// was suggested in paper: "Solution-Based Phase Saving for CP" (2018) by Emir
142// Demirovic, Geoffrey Chu, and Peter J. Stuckey.
144 Model* model);
145
146// Decision heuristic for SolveIntegerProblemWithLazyEncoding(). Returns a
147// function that will return the literal corresponding to the fact that the
148// first currently non-fixed variable value is <= its min. The function will
149// return kNoLiteralIndex if all the given variables are fixed.
150//
151// Note that this function will create the associated literal if needed.
153 const std::vector<IntegerVariable>& vars, Model* model);
154
155// Decision heuristic for SolveIntegerProblemWithLazyEncoding(). Like
156// FirstUnassignedVarAtItsMinHeuristic() but the function will return the
157// literal corresponding to the fact that the currently non-assigned variable
158// with the lowest min has a value <= this min.
159std::function<BooleanOrIntegerLiteral()>
161 const std::vector<IntegerVariable>& vars, Model* model);
162
163// Set the first unassigned Literal/Variable to its value.
164//
165// TODO(user): This is currently quadratic as we scan all variables to find the
166// first unassigned one. Fix. Note that this is also the case in many other
167// heuristics and should be fixed.
169 BooleanVariable bool_var = kNoBooleanVariable;
170 IntegerVariable int_var = kNoIntegerVariable;
171};
172std::function<BooleanOrIntegerLiteral()> FollowHint(
173 const std::vector<BooleanOrIntegerVariable>& vars,
174 const std::vector<IntegerValue>& values, Model* model);
175
176// Combines search heuristics in order: if the i-th one returns kNoLiteralIndex,
177// ask the (i+1)-th. If every heuristic returned kNoLiteralIndex,
178// returns kNoLiteralIndex.
180 std::vector<std::function<BooleanOrIntegerLiteral()>> heuristics);
181
182// Changes the value of the given decision by 'var_selection_heuristic'. We try
183// to see if the decision is "associated" with an IntegerVariable, and if it is
184// the case, we choose the new value by the first 'value_selection_heuristics'
185// that is applicable. If none of the heuristics are applicable then the given
186// decision by 'var_selection_heuristic' is returned.
188 std::vector<std::function<IntegerLiteral(IntegerVariable)>>
189 value_selection_heuristics,
190 std::function<BooleanOrIntegerLiteral()> var_selection_heuristic,
191 Model* model);
192
193// Changes the value of the given decision by 'var_selection_heuristic'
194// according to various value selection heuristics. Looks at the code to know
195// exactly what heuristic we use.
197 std::function<BooleanOrIntegerLiteral()> var_selection_heuristic,
198 Model* model);
199
200// Returns the BooleanOrIntegerLiteral advised by the underliying SAT solver.
202
203// Gets the branching variable using pseudo costs and combines it with a value
204// for branching.
206
207// Simple scheduling heuristic that looks at all the no-overlap constraints
208// and try to assign and perform the intervals that can be scheduled first.
210 Model* model);
211
212// Returns true if the number of variables in the linearized part represent
213// a large enough proportion of all the problem variables.
215
216// A restart policy that restarts every k failures.
217std::function<bool()> RestartEveryKFailures(int k, SatSolver* solver);
218
219// A restart policy that uses the underlying sat solver's policy.
220std::function<bool()> SatSolverRestartPolicy(Model* model);
221
222// Concatenates each input_heuristic with a default heuristic that instantiate
223// all the problem's Boolean variables, into a new vector.
224std::vector<std::function<BooleanOrIntegerLiteral()>> CompleteHeuristics(
225 const std::vector<std::function<BooleanOrIntegerLiteral()>>&
226 incomplete_heuristics,
227 const std::function<BooleanOrIntegerLiteral()>& completion_heuristic);
228
229// Specialized search that will continuously probe Boolean variables and bounds
230// of integer variables.
232 const std::vector<BooleanVariable>& bool_vars,
233 const std::vector<IntegerVariable>& int_vars,
234 const std::function<void()>& feasible_solution_observer, Model* model);
235
236// An helper class to share the code used by the different kind of search.
238 public:
240
241 // Executes some code before a new decision.
242 // Returns false if model is UNSAT.
244
245 // Calls the decision heuristics and extract a non-fixed literal.
246 // Note that we do not want to copy the function here.
247 LiteralIndex GetDecision(const std::function<BooleanOrIntegerLiteral()>& f);
248
249 // Tries to take the current decision, this might backjump.
250 // Returns false if the model is UNSAT.
251 bool TakeDecision(Literal decision);
252
253 private:
254 Model* model_;
255 SatSolver* sat_solver_;
256 IntegerTrail* integer_trail_;
257 IntegerEncoder* encoder_;
258 ImpliedBounds* implied_bounds_;
259 TimeLimit* time_limit_;
260 PseudoCosts* pseudo_costs_;
261 IntegerVariable objective_var_ = kNoIntegerVariable;
262};
263
264} // namespace sat
265} // namespace operations_research
266
267#endif // OR_TOOLS_SAT_INTEGER_SEARCH_H_
A simple class to enforce both an elapsed time limit and a deterministic time limit in the same threa...
Definition: time_limit.h:106
LiteralIndex GetDecision(const std::function< BooleanOrIntegerLiteral()> &f)
Class that owns everything related to a particular optimization model.
Definition: sat/model.h:38
int64_t value
IntVar * var
Definition: expr_array.cc:1874
GRBmodel * model
std::vector< std::function< BooleanOrIntegerLiteral()> > CompleteHeuristics(const std::vector< std::function< BooleanOrIntegerLiteral()> > &incomplete_heuristics, const std::function< BooleanOrIntegerLiteral()> &completion_heuristic)
std::function< BooleanOrIntegerLiteral()> FirstUnassignedVarAtItsMinHeuristic(const std::vector< IntegerVariable > &vars, Model *model)
SatSolver::Status ResetAndSolveIntegerProblem(const std::vector< Literal > &assumptions, Model *model)
std::function< BooleanOrIntegerLiteral()> SequentialValueSelection(std::vector< std::function< IntegerLiteral(IntegerVariable)> > value_selection_heuristics, std::function< BooleanOrIntegerLiteral()> var_selection_heuristic, Model *model)
std::function< BooleanOrIntegerLiteral()> SequentialSearch(std::vector< std::function< BooleanOrIntegerLiteral()> > heuristics)
const LiteralIndex kNoLiteralIndex(-1)
IntegerLiteral AtMinValue(IntegerVariable var, IntegerTrail *integer_trail)
IntegerLiteral GreaterOrEqualToMiddleValue(IntegerVariable var, IntegerTrail *integer_trail)
IntegerLiteral SplitAroundGivenValue(IntegerVariable var, IntegerValue value, Model *model)
std::function< BooleanOrIntegerLiteral()> UnassignedVarWithLowestMinAtItsMinHeuristic(const std::vector< IntegerVariable > &vars, Model *model)
SatSolver::Status SolveIntegerProblemWithLazyEncoding(Model *model)
std::function< bool()> SatSolverRestartPolicy(Model *model)
const IntegerVariable kNoIntegerVariable(-1)
std::function< BooleanOrIntegerLiteral()> FollowHint(const std::vector< BooleanOrIntegerVariable > &vars, const std::vector< IntegerValue > &values, Model *model)
std::function< bool()> RestartEveryKFailures(int k, SatSolver *solver)
std::function< BooleanOrIntegerLiteral()> SchedulingSearchHeuristic(Model *model)
IntegerLiteral ChooseBestObjectiveValue(IntegerVariable var, Model *model)
void ConfigureSearchHeuristics(Model *model)
IntegerLiteral SplitDomainUsingBestSolutionValue(IntegerVariable var, Model *model)
std::function< BooleanOrIntegerLiteral()> IntegerValueSelectionHeuristic(std::function< BooleanOrIntegerLiteral()> var_selection_heuristic, Model *model)
SatSolver::Status SolveIntegerProblem(Model *model)
std::function< BooleanOrIntegerLiteral()> SatSolverHeuristic(Model *model)
SatSolver::Status ContinuousProbing(const std::vector< BooleanVariable > &bool_vars, const std::vector< IntegerVariable > &int_vars, const std::function< void()> &feasible_solution_observer, Model *model)
IntegerLiteral SplitAroundLpValue(IntegerVariable var, Model *model)
const BooleanVariable kNoBooleanVariable(-1)
bool LinearizedPartIsLarge(Model *model)
std::function< BooleanOrIntegerLiteral()> PseudoCost(Model *model)
Collection of objects used to extend the Constraint Solver library.
int index
Definition: pack.cc:509
std::vector< std::function< bool()> > callbacks
std::vector< std::function< bool()> > restart_policies
std::function< BooleanOrIntegerLiteral()> hint_search
std::function< BooleanOrIntegerLiteral()> fixed_search
std::function< BooleanOrIntegerLiteral()> next_decision_override
std::vector< std::function< BooleanOrIntegerLiteral()> > decision_policies