275 lines
6.1 KiB
C++
275 lines
6.1 KiB
C++
#ifndef HORUS_LIFTEDCIRCUIT_H
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#define HORUS_LIFTEDCIRCUIT_H
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#include <stack>
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#include "LiftedWCNF.h"
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enum CircuitNodeType {
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OR_NODE,
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AND_NODE,
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SET_OR_NODE,
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SET_AND_NODE,
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INC_EXC_NODE,
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LEAF_NODE,
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SMOOTH_NODE,
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TRUE_NODE,
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COMPILATION_FAILED_NODE
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};
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class CircuitNode
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{
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public:
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CircuitNode (const Clauses& clauses, string explanation = "")
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: clauses_(clauses), explanation_(explanation) { }
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const Clauses& clauses (void) const { return clauses_; }
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Clauses clauses (void) { return clauses_; }
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virtual double weight (void) const = 0;
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string explanation (void) const { return explanation_; }
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private:
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Clauses clauses_;
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string explanation_;
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};
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class OrNode : public CircuitNode
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{
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public:
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OrNode (const Clauses& clauses, string explanation = "")
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: CircuitNode (clauses, explanation),
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leftBranch_(0), rightBranch_(0) { }
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CircuitNode** leftBranch (void) { return &leftBranch_; }
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CircuitNode** rightBranch (void) { return &rightBranch_; }
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double weight (void) const;
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private:
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CircuitNode* leftBranch_;
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CircuitNode* rightBranch_;
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};
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class AndNode : public CircuitNode
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{
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public:
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AndNode (const Clauses& clauses, string explanation = "")
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: CircuitNode (clauses, explanation),
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leftBranch_(0), rightBranch_(0) { }
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AndNode (
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const Clauses& clauses,
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CircuitNode* leftBranch,
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CircuitNode* rightBranch,
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string explanation = "")
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: CircuitNode (clauses, explanation),
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leftBranch_(leftBranch), rightBranch_(rightBranch) { }
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AndNode (
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CircuitNode* leftBranch,
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CircuitNode* rightBranch,
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string explanation = "")
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: CircuitNode ({}, explanation),
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leftBranch_(leftBranch), rightBranch_(rightBranch) { }
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CircuitNode** leftBranch (void) { return &leftBranch_; }
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CircuitNode** rightBranch (void) { return &rightBranch_; }
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double weight (void) const;
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private:
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CircuitNode* leftBranch_;
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CircuitNode* rightBranch_;
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};
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class SetOrNode : public CircuitNode
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{
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public:
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SetOrNode (unsigned nrGroundings, const Clauses& clauses)
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: CircuitNode (clauses, " AC"), follow_(0),
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nrGroundings_(nrGroundings) { }
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CircuitNode** follow (void) { return &follow_; }
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static unsigned nrPositives (void) { return nrGrsStack.top().first; }
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static unsigned nrNegatives (void) { return nrGrsStack.top().second; }
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double weight (void) const;
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private:
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CircuitNode* follow_;
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unsigned nrGroundings_;
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static stack<pair<unsigned, unsigned>> nrGrsStack;
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};
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class SetAndNode : public CircuitNode
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{
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public:
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SetAndNode (unsigned nrGroundings, const Clauses& clauses)
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: CircuitNode (clauses, " IPG"), follow_(0),
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nrGroundings_(nrGroundings) { }
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CircuitNode** follow (void) { return &follow_; }
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double weight (void) const;
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private:
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CircuitNode* follow_;
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unsigned nrGroundings_;
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};
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class IncExcNode : public CircuitNode
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{
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public:
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IncExcNode (const Clauses& clauses, string explanation)
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: CircuitNode (clauses, explanation), plus1Branch_(0),
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plus2Branch_(0), minusBranch_(0) { }
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CircuitNode** plus1Branch (void) { return &plus1Branch_; }
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CircuitNode** plus2Branch (void) { return &plus2Branch_; }
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CircuitNode** minusBranch (void) { return &minusBranch_; }
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double weight (void) const;
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private:
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CircuitNode* plus1Branch_;
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CircuitNode* plus2Branch_;
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CircuitNode* minusBranch_;
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};
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class LeafNode : public CircuitNode
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{
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public:
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LeafNode (const Clause& clause, const LiftedWCNF& lwcnf)
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: CircuitNode (Clauses() = {clause}), lwcnf_(lwcnf) { }
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double weight (void) const;
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private:
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const LiftedWCNF& lwcnf_;
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};
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class SmoothNode : public CircuitNode
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{
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public:
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SmoothNode (const Clauses& clauses, const LiftedWCNF& lwcnf)
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: CircuitNode (clauses), lwcnf_(lwcnf) { }
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double weight (void) const;
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private:
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const LiftedWCNF& lwcnf_;
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};
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class TrueNode : public CircuitNode
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{
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public:
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TrueNode (void) : CircuitNode ({}) { }
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double weight (void) const;
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};
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class CompilationFailedNode : public CircuitNode
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{
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public:
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CompilationFailedNode (const Clauses& clauses)
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: CircuitNode (clauses) { }
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double weight (void) const;
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};
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class LiftedCircuit
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{
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public:
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LiftedCircuit (const LiftedWCNF* lwcnf);
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double getWeightedModelCount (void) const;
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void exportToGraphViz (const char*);
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private:
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void compile (CircuitNode** follow, Clauses& clauses);
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bool tryUnitPropagation (CircuitNode** follow, Clauses& clauses);
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bool tryIndependence (CircuitNode** follow, Clauses& clauses);
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bool tryShannonDecomp (CircuitNode** follow, Clauses& clauses);
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bool tryInclusionExclusion (CircuitNode** follow, Clauses& clauses);
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bool tryIndepPartialGrounding (CircuitNode** follow, Clauses& clauses);
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bool tryIndepPartialGroundingAux (Clauses& clauses, ConstraintTree& ct,
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LogVars& rootLogVars);
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bool tryAtomCounting (CircuitNode** follow, Clauses& clauses);
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bool tryGrounding (CircuitNode** follow, Clauses& clauses);
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void shatterCountedLogVars (Clauses& clauses);
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bool shatterCountedLogVarsAux (Clauses& clauses);
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bool shatterCountedLogVarsAux (Clauses& clauses, size_t idx1, size_t idx2);
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bool independentClause (Clause& clause, Clauses& otherClauses) const;
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bool independentLiteral (const Literal& lit,
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const Literals& otherLits) const;
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LitLvTypesSet smoothCircuit (CircuitNode* node);
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void createSmoothNode (const LitLvTypesSet& lids,
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CircuitNode** prev);
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vector<LogVarTypes> getAllPossibleTypes (unsigned nrLogVars) const;
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bool containsTypes (const LogVarTypes& typesA,
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const LogVarTypes& typesB) const;
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CircuitNodeType getCircuitNodeType (const CircuitNode* node) const;
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void exportToGraphViz (CircuitNode* node, ofstream&);
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void printClauses (const CircuitNode* node, ofstream&,
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string extraOptions = "");
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string escapeNode (const CircuitNode* node) const;
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CircuitNode* root_;
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const LiftedWCNF* lwcnf_;
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};
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#endif // HORUS_LIFTEDCIRCUIT_H
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