OR-Tools  9.6
cp_model_loader.h
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13 
14 #ifndef OR_TOOLS_SAT_CP_MODEL_LOADER_H_
15 #define OR_TOOLS_SAT_CP_MODEL_LOADER_H_
16 
17 #include <cstdint>
18 #include <functional>
19 #include <vector>
20 
21 #include "absl/container/flat_hash_set.h"
23 #include "ortools/base/logging.h"
25 #include "ortools/sat/cp_model.pb.h"
28 #include "ortools/sat/integer.h"
29 #include "ortools/sat/intervals.h"
31 #include "ortools/sat/model.h"
32 #include "ortools/sat/sat_base.h"
34 
35 namespace operations_research {
36 namespace sat {
37 
38 // Extracts all the used variables in the CpModelProto and creates a
39 // sat::Model representation for them. More precisely
40 // - All Boolean variables will be mapped.
41 // - All Interval variables will be mapped.
42 // - All non-Boolean variable will have a corresponding IntegerVariable, and
43 // depending on the view_all_booleans_as_integers, some or all of the
44 // BooleanVariable will also have an IntegerVariable corresponding to its
45 // "integer view".
46 //
47 // Note(user): We could create IntegerVariable on the fly as they are needed,
48 // but that loose the original variable order which might be useful in
49 // heuristics later.
50 void LoadVariables(const CpModelProto& model_proto,
51  bool view_all_booleans_as_integers, Model* m);
52 
53 // Automatically detect optional variables.
54 void DetectOptionalVariables(const CpModelProto& model_proto, Model* m);
55 
56 // Experimental. Loads the symmetry form the proto symmetry field, as long as
57 // they only involve Booleans.
58 //
59 // TODO(user): We currently only have the code for Booleans, it is why we
60 // currently ignore symmetries involving integer variables.
61 void LoadBooleanSymmetries(const CpModelProto& model_proto, Model* m);
62 
63 // Extract the encodings (IntegerVariable <-> Booleans) present in the model.
64 // This effectively load some linear constraints of size 1 that will be marked
65 // as already loaded.
66 void ExtractEncoding(const CpModelProto& model_proto, Model* m);
67 
68 // Extract element encodings from exactly_one constraints and
69 // lit => var == value constraints.
70 // This function must be called after ExtractEncoding() has been called.
71 void ExtractElementEncoding(const CpModelProto& model_proto, Model* m);
72 
73 // Process all affine relations of the form a*X + b*Y == cte. For each
74 // literals associated to (X >= bound) or (X == value) associate it to its
75 // corresponding relation on Y. Also do the other side.
76 //
77 // TODO(user): In an ideal world, all affine relations like this should be
78 // removed in the presolve.
80  Model* m);
81 
82 // Inspect the search strategy stored in the model, and adds a full encoding to
83 // variables appearing in a SELECT_MEDIAN_VALUE search strategy if the search
84 // branching is set to FIXED_SEARCH.
85 void AddFullEncodingFromSearchBranching(const CpModelProto& model_proto,
86  Model* m);
87 
88 // Calls one of the functions below.
89 // Returns false if we do not know how to load the given constraints.
90 bool LoadConstraint(const ConstraintProto& ct, Model* m);
91 
92 void LoadBoolOrConstraint(const ConstraintProto& ct, Model* m);
93 void LoadBoolAndConstraint(const ConstraintProto& ct, Model* m);
94 void LoadAtMostOneConstraint(const ConstraintProto& ct, Model* m);
95 void LoadExactlyOneConstraint(const ConstraintProto& ct, Model* m);
96 void LoadBoolXorConstraint(const ConstraintProto& ct, Model* m);
97 void LoadLinearConstraint(const ConstraintProto& ct, Model* m);
98 void LoadAllDiffConstraint(const ConstraintProto& ct, Model* m);
99 void LoadIntProdConstraint(const ConstraintProto& ct, Model* m);
100 void LoadIntDivConstraint(const ConstraintProto& ct, Model* m);
101 void LoadIntMinConstraint(const ConstraintProto& ct, Model* m);
102 void LoadLinMaxConstraint(const ConstraintProto& ct, Model* m);
103 void LoadIntMaxConstraint(const ConstraintProto& ct, Model* m);
104 void LoadNoOverlapConstraint(const ConstraintProto& ct, Model* m);
105 void LoadNoOverlap2dConstraint(const ConstraintProto& ct, Model* m);
106 void LoadCumulativeConstraint(const ConstraintProto& ct, Model* m);
107 void LoadCircuitConstraint(const ConstraintProto& ct, Model* m);
108 void LoadReservoirConstraint(const ConstraintProto& ct, Model* m);
109 void LoadRoutesConstraint(const ConstraintProto& ct, Model* m);
110 void LoadCircuitCoveringConstraint(const ConstraintProto& ct, Model* m);
111 
112 // Part of LoadLinearConstraint() that we reuse to load the objective.
113 //
114 // We split large constraints into a square root number of parts.
115 // This is to avoid a bad complexity while propagating them since our
116 // algorithm is not in O(num_changes).
117 //
118 // TODO(user): Alternatively, we could use a O(num_changes) propagation (a
119 // bit tricky to implement), or a decomposition into a tree with more than
120 // one level. Both requires experimentations.
121 void SplitAndLoadIntermediateConstraints(bool lb_required, bool ub_required,
122  std::vector<IntegerVariable>* vars,
123  std::vector<int64_t>* coeffs,
124  Model* m);
125 
126 } // namespace sat
127 } // namespace operations_research
128 
129 #endif // OR_TOOLS_SAT_CP_MODEL_LOADER_H_
Class that owns everything related to a particular optimization model.
Definition: sat/model.h:42
CpModelProto const * model_proto
const Constraint * ct
void LoadCircuitCoveringConstraint(const ConstraintProto &ct, Model *m)
void LoadExactlyOneConstraint(const ConstraintProto &ct, Model *m)
void LoadVariables(const CpModelProto &model_proto, bool view_all_booleans_as_integers, Model *m)
void LoadIntProdConstraint(const ConstraintProto &ct, Model *m)
bool LoadConstraint(const ConstraintProto &ct, Model *m)
void LoadBoolOrConstraint(const ConstraintProto &ct, Model *m)
void ExtractElementEncoding(const CpModelProto &model_proto, Model *m)
void LoadBooleanSymmetries(const CpModelProto &model_proto, Model *m)
void LoadCumulativeConstraint(const ConstraintProto &ct, Model *m)
void LoadRoutesConstraint(const ConstraintProto &ct, Model *m)
void LoadReservoirConstraint(const ConstraintProto &ct, Model *m)
void LoadBoolAndConstraint(const ConstraintProto &ct, Model *m)
void LoadLinMaxConstraint(const ConstraintProto &ct, Model *m)
void LoadBoolXorConstraint(const ConstraintProto &ct, Model *m)
void LoadIntDivConstraint(const ConstraintProto &ct, Model *m)
void LoadLinearConstraint(const ConstraintProto &ct, Model *m)
void SplitAndLoadIntermediateConstraints(bool lb_required, bool ub_required, std::vector< IntegerVariable > *vars, std::vector< int64_t > *coeffs, Model *m)
void LoadIntMinConstraint(const ConstraintProto &ct, Model *m)
void LoadAtMostOneConstraint(const ConstraintProto &ct, Model *m)
void LoadCircuitConstraint(const ConstraintProto &ct, Model *m)
void LoadNoOverlapConstraint(const ConstraintProto &ct, Model *m)
void DetectOptionalVariables(const CpModelProto &model_proto, Model *m)
void LoadAllDiffConstraint(const ConstraintProto &ct, Model *m)
void LoadNoOverlap2dConstraint(const ConstraintProto &ct, Model *m)
void LoadIntMaxConstraint(const ConstraintProto &ct, Model *m)
void AddFullEncodingFromSearchBranching(const CpModelProto &model_proto, Model *m)
void ExtractEncoding(const CpModelProto &model_proto, Model *m)
void PropagateEncodingFromEquivalenceRelations(const CpModelProto &model_proto, Model *m)
Collection of objects used to extend the Constraint Solver library.