master > master: codego - Formulae package
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@ -1,5 +1,7 @@
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package formulae
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package formulae
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import "logik/core/utils"
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/* ---------------------------------------------------------------- *
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/* ---------------------------------------------------------------- *
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* METHOD Get Atoms
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* METHOD Get Atoms
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* ---------------------------------------------------------------- */
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* ---------------------------------------------------------------- */
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@ -21,3 +23,156 @@ var fnGetAtoms = CreateFromSchemeFmlsValued(schemeGetAtoms)
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func (fml Formula) GetAtoms() []Formula {
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func (fml Formula) GetAtoms() []Formula {
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return *fnGetAtoms(fml)
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return *fnGetAtoms(fml)
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}
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}
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/* ---------------------------------------------------------------- *
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* TYPE FormulaPair, FormulaPairs
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* ---------------------------------------------------------------- */
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type FormulaPair struct {
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Pos Formula
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Neg Formula
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}
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type FormulaPairs []FormulaPair
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/* ---------------------------------------------------------------- *
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* Methods for FormulaPairs
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* ---------------------------------------------------------------- */
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func NewFormulaPairs(pairs []FormulaPair) FormulaPairs { return pairs }
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func (pairs FormulaPairs) Pos() []Formula {
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var fmls = make([]Formula, len(pairs))
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for i, pair := range pairs {
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fmls[i] = pair.Pos
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}
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return fmls
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}
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func (pairs FormulaPairs) Neg() []Formula {
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var fmls = make([]Formula, len(pairs))
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for i, pair := range pairs {
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fmls[i] = pair.Neg
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}
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return fmls
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}
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/* ---------------------------------------------------------------- *
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* TYPE KNF, DNF, Horn
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* ---------------------------------------------------------------- */
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type FormulaConjunct []Formula
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type FormulaDisjunct []Formula
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type FormulaKNF []FormulaDisjunct
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type FormulaDNF []FormulaConjunct
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type FormulaHornClause struct {
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Pos FormulaDisjunct
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Neg FormulaConjunct
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}
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type FormulaHorn []FormulaHornClause
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/* ---------------------------------------------------------------- *
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* Methods for KNF, DNF, Horn
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* ---------------------------------------------------------------- */
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func (fml FormulaDisjunct) ToFormula() Formula {
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return Disjunction(fml)
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}
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func (fml FormulaConjunct) ToFormula() Formula {
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return Conjunction(fml)
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}
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func (fml FormulaKNF) ToFormula() Formula {
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var termsAsFormulae = make([]Formula, len(fml))
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for i, term := range fml {
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termsAsFormulae[i] = term.ToFormula()
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}
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return Conjunction(termsAsFormulae)
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}
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func (fml FormulaDNF) ToFormula() Formula {
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var termsAsFormulae = make([]Formula, len(fml))
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for i, term := range fml {
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termsAsFormulae[i] = term.ToFormula()
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}
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return Disjunction(termsAsFormulae)
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}
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func (fml FormulaHornClause) ToFormula() Formula {
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return Implies(fml.Neg.ToFormula(), fml.Pos.ToFormula())
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}
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func (fml FormulaHorn) ToFormula() Formula {
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var hornclausesAsFormulae = make([]Formula, len(fml))
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for i, hornclause := range fml {
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hornclausesAsFormulae[i] = hornclause.ToFormula()
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}
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return Conjunction(hornclausesAsFormulae)
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}
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func getAtomsFromArrayOfLiterals(fmls []Formula) []string {
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var atoms = []string{}
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var m = map[string]bool{}
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for _, fml := range fmls {
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if fml.IsLiteral() {
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m[fml.GetName()] = true
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}
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}
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for name, _ := range m {
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atoms = append(atoms, name)
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}
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utils.SortStrings(&atoms)
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return atoms
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}
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func getAtomsFromArrayOfArraysOfLiterals(fmlArrays [][]Formula) []string {
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var atoms = []string{}
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var m = map[string]bool{}
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for _, fmls := range fmlArrays {
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for _, atom := range getAtomsFromArrayOfLiterals(fmls) {
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m[atom] = true
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}
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}
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for name, _ := range m {
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atoms = append(atoms, name)
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}
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utils.SortStrings(&atoms)
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return atoms
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}
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func (fml FormulaConjunct) GetAtoms() []string {
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return getAtomsFromArrayOfLiterals(fml)
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}
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func (fml FormulaDisjunct) GetAtoms() []string {
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return getAtomsFromArrayOfLiterals(fml)
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}
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func (fml FormulaHornClause) GetAtoms() []string {
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return getAtomsFromArrayOfArraysOfLiterals([][]Formula{fml.Pos, fml.Neg})
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}
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func (fml FormulaKNF) GetAtoms() []string {
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var fmlArrays = make([][]Formula, len(fml))
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for i, term := range fml {
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fmlArrays[i] = term
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}
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return getAtomsFromArrayOfArraysOfLiterals(fmlArrays)
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}
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func (fml FormulaDNF) GetAtoms() []string {
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var fmlArrays = make([][]Formula, len(fml))
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for i, term := range fml {
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fmlArrays[i] = term
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}
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return getAtomsFromArrayOfArraysOfLiterals(fmlArrays)
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}
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func (fml FormulaHorn) GetAtoms() []string {
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var fmlArrays = make([][]Formula, 2*len(fml))
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for i, hornclause := range fml {
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fmlArrays[i] = append(hornclause.Neg, hornclause.Pos...)
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}
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return getAtomsFromArrayOfArraysOfLiterals(fmlArrays)
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}
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@ -31,33 +31,33 @@ func (fml Formula) GetExpr() string { return fml.expr }
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func (fml Formula) GetName() string { return fml.name }
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func (fml Formula) GetName() string { return fml.name }
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func (fml *Formula) SetSubformulae(subfmls [](*Formula)) {
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func (fml *Formula) SetSubformulae(subFmls [](*Formula)) {
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fml.subformulae = subfmls
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fml.subformulae = subFmls
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fml.valence = len(subfmls)
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fml.valence = len(subFmls)
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}
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}
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func (fml Formula) GetSubFormulae() []Formula {
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func (fml Formula) GetSubFormulae() []Formula {
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var n int = fml.valence
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var n int = fml.valence
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var subfmls = make([]Formula, n)
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var subFmls = make([]Formula, n)
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for i, subfml := range fml.subformulae {
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for i, subFml := range fml.subformulae {
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subfmls[i] = *subfml
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subFmls[i] = *subFml
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}
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}
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return subfmls
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return subFmls
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}
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}
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func (fml Formula) GetAllSubFormulae() []Formula {
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func (fml Formula) GetAllSubFormulae() []Formula {
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var subfml = fml.GetSubFormulae()
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var subFml = fml.GetSubFormulae()
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var result = []Formula{fml.Copy()}
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var result = []Formula{fml.Copy()}
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for _, child := range subfml {
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for _, child := range subFml {
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result = append(result, child.GetAllSubFormulae()...)
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result = append(result, child.GetAllSubFormulae()...)
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}
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}
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return result
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return result
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}
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}
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func (fml Formula) GetAllSubFormulaeStrict() []Formula {
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func (fml Formula) GetAllSubFormulaeStrict() []Formula {
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var subfml = fml.GetSubFormulae()
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var subFml = fml.GetSubFormulae()
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var result = []Formula{}
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var result = []Formula{}
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for _, child := range subfml {
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for _, child := range subFml {
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result = append(result, child.GetAllSubFormulae()...)
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result = append(result, child.GetAllSubFormulae()...)
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}
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}
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return result
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return result
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@ -68,13 +68,13 @@ func (fml Formula) GetChild(indexOpt ...int) Formula {
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if len(indexOpt) > 0 {
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if len(indexOpt) > 0 {
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index = indexOpt[0]
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index = indexOpt[0]
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}
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}
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var subfml Formula
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var subFml Formula
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if 0 <= index && index < fml.valence {
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if 0 <= index && index < fml.valence {
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subfml = *(fml.subformulae[index])
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subFml = *(fml.subformulae[index])
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} else {
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} else {
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panic(fmt.Sprintf("Instance has no child of index %d !", index))
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panic(fmt.Sprintf("Instance has no child of index %d !", index))
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}
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}
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return subfml
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return subFml
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}
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}
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func (fml Formula) Pretty(preindentOpt ...string) string {
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func (fml Formula) Pretty(preindentOpt ...string) string {
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@ -98,8 +98,8 @@ func (fml Formula) pretty(preindent string, tab string, prepend string, depth in
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default:
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default:
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var lines string = indent + prepend + fml.kind
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var lines string = indent + prepend + fml.kind
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prepend = "|__ "
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prepend = "|__ "
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for _, subfml := range fml.subformulae {
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for _, subFml := range fml.subformulae {
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lines += "\n" + subfml.pretty(preindent, tab, prepend, depth+1)
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lines += "\n" + subFml.pretty(preindent, tab, prepend, depth+1)
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}
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}
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return lines
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return lines
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}
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}
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@ -116,16 +116,16 @@ func (fml Formula) Copy() Formula {
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}
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}
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func (fml Formula) Deepcopy() Formula {
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func (fml Formula) Deepcopy() Formula {
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var subfmls = make([](*Formula), len(fml.subformulae))
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var subFmls = make([](*Formula), len(fml.subformulae))
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for i, subfml := range fml.subformulae {
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for i, subFml := range fml.subformulae {
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subfmlCopy := subfml.Deepcopy()
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subFmlCopy := subFml.Deepcopy()
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subfmls[i] = &subfmlCopy
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subFmls[i] = &subFmlCopy
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}
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}
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return Formula{
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return Formula{
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expr: fml.expr,
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expr: fml.expr,
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kind: fml.kind,
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kind: fml.kind,
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valence: fml.valence,
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valence: fml.valence,
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subformulae: subfmls,
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subformulae: subFmls,
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}
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}
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}
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}
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@ -47,9 +47,16 @@ func Generic(name string) Formula {
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}
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}
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func Negation(fml Formula) Formula {
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func Negation(fml Formula) Formula {
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var name string
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if fml.IsAtom() {
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name = fml.GetName()
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}
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var expr = fml.expr
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expr = "!" + expr
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return Formula{
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return Formula{
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kind: "not",
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kind: "not",
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expr: "!" + " " + fml.expr,
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name: name, // preserves name of negated atoms
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expr: expr,
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valence: 1,
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valence: 1,
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subformulae: [](*Formula){&fml},
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subformulae: [](*Formula){&fml},
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}
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}
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@ -65,20 +72,26 @@ func Conjunction2(fml1 Formula, fml2 Formula) Formula {
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}
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}
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func Conjunction(fmls []Formula) Formula {
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func Conjunction(fmls []Formula) Formula {
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switch len(fmls) {
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case 0:
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return Tautology
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case 1:
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return fmls[0]
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}
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var expr string = ""
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var expr string = ""
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var children = make([](*Formula), len(fmls))
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var subFmls = make([](*Formula), len(fmls))
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for i, fml := range fmls {
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for i, fml := range fmls {
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(func(i int, subFml Formula) { subFmls[i] = &subFml })(i, fml)
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if i > 0 {
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if i > 0 {
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expr += " && "
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expr += " && "
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}
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}
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expr += fml.expr
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expr += fml.expr
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children[i] = &fml
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}
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}
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return Formula{
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return Formula{
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kind: "and",
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kind: "and",
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expr: "(" + expr + ")",
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expr: "(" + expr + ")",
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valence: len(children),
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valence: len(subFmls),
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subformulae: children,
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subformulae: subFmls,
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}
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}
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}
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}
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@ -92,20 +105,26 @@ func Disjunction2(fml1 Formula, fml2 Formula) Formula {
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}
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}
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func Disjunction(fmls []Formula) Formula {
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func Disjunction(fmls []Formula) Formula {
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switch len(fmls) {
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case 0:
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return Contradiction
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case 1:
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return fmls[0]
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}
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var expr string = ""
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var expr string = ""
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var children = make([](*Formula), len(fmls))
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var subFmls = make([](*Formula), len(fmls))
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for i, fml := range fmls {
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for i, fml := range fmls {
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(func(i int, subFml Formula) { subFmls[i] = &subFml })(i, fml)
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if i > 0 {
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if i > 0 {
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expr += " || "
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expr += " || "
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}
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}
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expr += fml.expr
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expr += fml.expr
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children[i] = &fml
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}
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}
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return Formula{
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return Formula{
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kind: "or",
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kind: "or",
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expr: "(" + expr + ")",
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expr: "(" + expr + ")",
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valence: len(children),
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valence: len(subFmls),
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subformulae: children,
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subformulae: subFmls,
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}
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}
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}
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}
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@ -8,16 +8,16 @@ package formulae
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func CreateFromSchemeIntValued(scheme func(fml Formula, prevValues []int) int) func(fml Formula) int {
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func CreateFromSchemeIntValued(scheme func(fml Formula, prevValues []int) int) func(fml Formula) int {
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var fn func(fml Formula) int
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var fn func(fml Formula) int
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var subFn = func(ch chan int, subfml Formula) { ch <- fn(subfml) }
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var subFn = func(ch chan int, subFml Formula) { ch <- fn(subFml) }
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fn = func(fml Formula) int {
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fn = func(fml Formula) int {
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var subfmls = fml.GetSubFormulae()
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var subFmls = fml.GetSubFormulae()
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var n = len(subfmls)
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var n = len(subFmls)
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var subChan = make([](chan int), n)
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var subChan = make([](chan int), n)
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var prevValues = make([]int, len(subfmls))
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var prevValues = make([]int, len(subFmls))
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// start parallel computations on subformulas
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// start parallel computations on subformulas
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for i, subfml := range subfmls {
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for i, subFml := range subFmls {
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subChan[i] = make(chan int) // create Channel, since currently nil
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subChan[i] = make(chan int) // create Channel, since currently nil
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go subFn(subChan[i], subfml)
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go subFn(subChan[i], subFml)
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}
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}
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// successively read values
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// successively read values
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for i := 0; i < n; i++ {
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for i := 0; i < n; i++ {
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@ -35,16 +35,16 @@ func CreateFromSchemeIntValued(scheme func(fml Formula, prevValues []int) int) f
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func CreateFromSchemeStringValued(scheme func(fml Formula, prevValues []string) string) func(fml Formula) string {
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func CreateFromSchemeStringValued(scheme func(fml Formula, prevValues []string) string) func(fml Formula) string {
|
||||||
var fn func(fml Formula) string
|
var fn func(fml Formula) string
|
||||||
var subFn = func(ch chan string, subfml Formula) { ch <- fn(subfml) }
|
var subFn = func(ch chan string, subFml Formula) { ch <- fn(subFml) }
|
||||||
fn = func(fml Formula) string {
|
fn = func(fml Formula) string {
|
||||||
var subfmls = fml.GetSubFormulae()
|
var subFmls = fml.GetSubFormulae()
|
||||||
var n = len(subfmls)
|
var n = len(subFmls)
|
||||||
var subChan = make([](chan string), n)
|
var subChan = make([](chan string), n)
|
||||||
var prevValues = make([]string, len(subfmls))
|
var prevValues = make([]string, len(subFmls))
|
||||||
// start parallel computations on subformulas
|
// start parallel computations on subformulas
|
||||||
for i, subfml := range subfmls {
|
for i, subFml := range subFmls {
|
||||||
subChan[i] = make(chan string) // create Channel, since currently nil
|
subChan[i] = make(chan string) // create Channel, since currently nil
|
||||||
go subFn(subChan[i], subfml)
|
go subFn(subChan[i], subFml)
|
||||||
}
|
}
|
||||||
// successively read values
|
// successively read values
|
||||||
for i := 0; i < n; i++ {
|
for i := 0; i < n; i++ {
|
||||||
@ -62,16 +62,16 @@ func CreateFromSchemeStringValued(scheme func(fml Formula, prevValues []string)
|
|||||||
|
|
||||||
func CreateFromSchemeStringsValued(scheme func(fml Formula, prevValues [][]string) []string) func(fml Formula) []string {
|
func CreateFromSchemeStringsValued(scheme func(fml Formula, prevValues [][]string) []string) func(fml Formula) []string {
|
||||||
var fn func(fml Formula) []string
|
var fn func(fml Formula) []string
|
||||||
var subFn = func(ch chan []string, subfml Formula) { ch <- fn(subfml) }
|
var subFn = func(ch chan []string, subFml Formula) { ch <- fn(subFml) }
|
||||||
fn = func(fml Formula) []string {
|
fn = func(fml Formula) []string {
|
||||||
var subfmls = fml.GetSubFormulae()
|
var subFmls = fml.GetSubFormulae()
|
||||||
var n = len(subfmls)
|
var n = len(subFmls)
|
||||||
var subChan = make([](chan []string), n)
|
var subChan = make([](chan []string), n)
|
||||||
var prevValues = make([][]string, len(subfmls))
|
var prevValues = make([][]string, len(subFmls))
|
||||||
// start parallel computations on subformulas
|
// start parallel computations on subformulas
|
||||||
for i, subfml := range subfmls {
|
for i, subFml := range subFmls {
|
||||||
subChan[i] = make(chan []string) // create Channel, since currently nil
|
subChan[i] = make(chan []string) // create Channel, since currently nil
|
||||||
go subFn(subChan[i], subfml)
|
go subFn(subChan[i], subFml)
|
||||||
}
|
}
|
||||||
// successively read values
|
// successively read values
|
||||||
for i := 0; i < n; i++ {
|
for i := 0; i < n; i++ {
|
||||||
@ -89,16 +89,16 @@ func CreateFromSchemeStringsValued(scheme func(fml Formula, prevValues [][]strin
|
|||||||
|
|
||||||
func CreateFromSchemeFmlValued(scheme func(fml Formula, prevValues []Formula) Formula) func(fml Formula) Formula {
|
func CreateFromSchemeFmlValued(scheme func(fml Formula, prevValues []Formula) Formula) func(fml Formula) Formula {
|
||||||
var fn func(fml Formula) Formula
|
var fn func(fml Formula) Formula
|
||||||
var subFn = func(ch chan Formula, subfml Formula) { ch <- fn(subfml) }
|
var subFn = func(ch chan Formula, subFml Formula) { ch <- fn(subFml) }
|
||||||
fn = func(fml Formula) Formula {
|
fn = func(fml Formula) Formula {
|
||||||
var subfmls = fml.GetSubFormulae()
|
var subFmls = fml.GetSubFormulae()
|
||||||
var n = len(subfmls)
|
var n = len(subFmls)
|
||||||
var subChan = make([](chan Formula), n)
|
var subChan = make([](chan Formula), n)
|
||||||
var prevValues = make([]Formula, len(subfmls))
|
var prevValues = make([]Formula, len(subFmls))
|
||||||
// start parallel computations on subformulas
|
// start parallel computations on subformulas
|
||||||
for i, subfml := range subfmls {
|
for i, subFml := range subFmls {
|
||||||
subChan[i] = make(chan Formula) // create Channel, since currently nil
|
subChan[i] = make(chan Formula) // create Channel, since currently nil
|
||||||
go subFn(subChan[i], subfml)
|
go subFn(subChan[i], subFml)
|
||||||
}
|
}
|
||||||
// successively read values
|
// successively read values
|
||||||
for i := 0; i < n; i++ {
|
for i := 0; i < n; i++ {
|
||||||
@ -116,16 +116,16 @@ func CreateFromSchemeFmlValued(scheme func(fml Formula, prevValues []Formula) Fo
|
|||||||
|
|
||||||
func CreateFromSchemeFmlsValued(scheme func(fml Formula, prevValues [](*[]Formula)) *[]Formula) func(fml Formula) *[]Formula {
|
func CreateFromSchemeFmlsValued(scheme func(fml Formula, prevValues [](*[]Formula)) *[]Formula) func(fml Formula) *[]Formula {
|
||||||
var fn func(fml Formula) *[]Formula
|
var fn func(fml Formula) *[]Formula
|
||||||
var subFn = func(ch chan *[]Formula, subfml Formula) { ch <- fn(subfml) }
|
var subFn = func(ch chan *[]Formula, subFml Formula) { ch <- fn(subFml) }
|
||||||
fn = func(fml Formula) *[]Formula {
|
fn = func(fml Formula) *[]Formula {
|
||||||
var subfmls = fml.GetSubFormulae()
|
var subFmls = fml.GetSubFormulae()
|
||||||
var n = len(subfmls)
|
var n = len(subFmls)
|
||||||
var subChan = make([](chan *[]Formula), n)
|
var subChan = make([](chan *[]Formula), n)
|
||||||
var prevValues = make([](*[]Formula), len(subfmls))
|
var prevValues = make([](*[]Formula), len(subFmls))
|
||||||
// start parallel computations on subformulas
|
// start parallel computations on subformulas
|
||||||
for i, subfml := range subfmls {
|
for i, subFml := range subFmls {
|
||||||
subChan[i] = make(chan *[]Formula) // create Channel, since currently nil
|
subChan[i] = make(chan *[]Formula) // create Channel, since currently nil
|
||||||
go subFn(subChan[i], subfml)
|
go subFn(subChan[i], subFml)
|
||||||
}
|
}
|
||||||
// successively read values
|
// successively read values
|
||||||
for i := 0; i < n; i++ {
|
for i := 0; i < n; i++ {
|
||||||
@ -143,16 +143,16 @@ func CreateFromSchemeFmlsValued(scheme func(fml Formula, prevValues [](*[]Formul
|
|||||||
|
|
||||||
func CreateFromSchemeFmlPairValued(scheme func(fml Formula, prevValues []FormulaPair) FormulaPair) func(fml Formula) FormulaPair {
|
func CreateFromSchemeFmlPairValued(scheme func(fml Formula, prevValues []FormulaPair) FormulaPair) func(fml Formula) FormulaPair {
|
||||||
var fn func(fml Formula) FormulaPair
|
var fn func(fml Formula) FormulaPair
|
||||||
var subFn = func(ch chan FormulaPair, subfml Formula) { ch <- fn(subfml) }
|
var subFn = func(ch chan FormulaPair, subFml Formula) { ch <- fn(subFml) }
|
||||||
fn = func(fml Formula) FormulaPair {
|
fn = func(fml Formula) FormulaPair {
|
||||||
var subfmls = fml.GetSubFormulae()
|
var subFmls = fml.GetSubFormulae()
|
||||||
var n = len(subfmls)
|
var n = len(subFmls)
|
||||||
var subChan = make([](chan FormulaPair), n)
|
var subChan = make([](chan FormulaPair), n)
|
||||||
var prevValues = make([]FormulaPair, len(subfmls))
|
var prevValues = make([]FormulaPair, len(subFmls))
|
||||||
// start parallel computations on subformulas
|
// start parallel computations on subformulas
|
||||||
for i, subfml := range subfmls {
|
for i, subFml := range subFmls {
|
||||||
subChan[i] = make(chan FormulaPair) // create Channel, since currently nil
|
subChan[i] = make(chan FormulaPair) // create Channel, since currently nil
|
||||||
go subFn(subChan[i], subfml)
|
go subFn(subChan[i], subFml)
|
||||||
}
|
}
|
||||||
// successively read values
|
// successively read values
|
||||||
for i := 0; i < n; i++ {
|
for i := 0; i < n; i++ {
|
||||||
|
151
codego/aussagenlogik/formulae/formulae_normalforms.go
Normal file
151
codego/aussagenlogik/formulae/formulae_normalforms.go
Normal file
@ -0,0 +1,151 @@
|
|||||||
|
package formulae
|
||||||
|
|
||||||
|
/* ---------------------------------------------------------------- *
|
||||||
|
* METHODS: get KNF/DNF
|
||||||
|
* ---------------------------------------------------------------- */
|
||||||
|
|
||||||
|
func (fml Formula) GetKNFparts() FormulaKNF {
|
||||||
|
var subFmls []Formula
|
||||||
|
if fml.IsDisjunctOfLiterals() {
|
||||||
|
subFmls = []Formula{fml}
|
||||||
|
} else if fml.IsKNF() {
|
||||||
|
subFmls = fml.GetSubFormulae()
|
||||||
|
} else {
|
||||||
|
panic("Formula not in KNF!")
|
||||||
|
}
|
||||||
|
var terms = make([]FormulaDisjunct, len(subFmls))
|
||||||
|
for i, subFml := range subFmls {
|
||||||
|
if subFml.IsLiteral() {
|
||||||
|
terms[i] = []Formula{subFml}
|
||||||
|
} else {
|
||||||
|
terms[i] = subFml.GetSubFormulae()
|
||||||
|
}
|
||||||
|
}
|
||||||
|
return terms
|
||||||
|
}
|
||||||
|
|
||||||
|
func (fml Formula) GetDNFparts() FormulaDNF {
|
||||||
|
var subFmls []Formula
|
||||||
|
if fml.IsDisjunctOfLiterals() {
|
||||||
|
subFmls = []Formula{fml}
|
||||||
|
} else if fml.IsKNF() {
|
||||||
|
subFmls = fml.GetSubFormulae()
|
||||||
|
} else {
|
||||||
|
panic("Formula not in DNF!")
|
||||||
|
}
|
||||||
|
var terms = make([]FormulaConjunct, len(subFmls))
|
||||||
|
for i, subFml := range subFmls {
|
||||||
|
if subFml.IsLiteral() {
|
||||||
|
terms[i] = []Formula{subFml}
|
||||||
|
} else {
|
||||||
|
terms[i] = subFml.GetSubFormulae()
|
||||||
|
}
|
||||||
|
}
|
||||||
|
return terms
|
||||||
|
}
|
||||||
|
|
||||||
|
func (fml Formula) GetHornParts() FormulaHorn {
|
||||||
|
var subFmls []Formula
|
||||||
|
if fml.IsHornClause() {
|
||||||
|
subFmls = []Formula{fml}
|
||||||
|
} else if fml.IsHornFml() {
|
||||||
|
subFmls = fml.GetSubFormulae()
|
||||||
|
} else {
|
||||||
|
panic("Formula not a Horn-Formula!")
|
||||||
|
}
|
||||||
|
var parts = make([]FormulaHornClause, len(subFmls))
|
||||||
|
for i, subFml := range subFmls {
|
||||||
|
Pos := []Formula{}
|
||||||
|
Neg := []Formula{}
|
||||||
|
var subSubFml []Formula
|
||||||
|
if subFml.IsLiteral() {
|
||||||
|
subSubFml = []Formula{subFml}
|
||||||
|
} else {
|
||||||
|
subSubFml = subFml.GetSubFormulae()
|
||||||
|
}
|
||||||
|
for _, L := range subSubFml {
|
||||||
|
if L.IsPositiveLiteral() {
|
||||||
|
Pos = append(Pos, L)
|
||||||
|
} else {
|
||||||
|
Neg = append(Neg, L.GetChild())
|
||||||
|
}
|
||||||
|
}
|
||||||
|
parts[i] = FormulaHornClause{Pos, Neg}
|
||||||
|
}
|
||||||
|
return parts
|
||||||
|
}
|
||||||
|
|
||||||
|
/* ---------------------------------------------------------------- *
|
||||||
|
* METHODS: check if KNF/DNF
|
||||||
|
* ---------------------------------------------------------------- */
|
||||||
|
|
||||||
|
func onlyLiterals(fmls []Formula) bool {
|
||||||
|
for _, fml := range fmls {
|
||||||
|
if !fml.IsLiteral() {
|
||||||
|
return false
|
||||||
|
}
|
||||||
|
}
|
||||||
|
return true
|
||||||
|
}
|
||||||
|
|
||||||
|
func numPositiveLiterals(fmls []Formula) int {
|
||||||
|
var n = 0
|
||||||
|
for _, fml := range fmls {
|
||||||
|
if fml.IsPositiveLiteral() {
|
||||||
|
n++
|
||||||
|
}
|
||||||
|
}
|
||||||
|
return n
|
||||||
|
}
|
||||||
|
|
||||||
|
func (fml Formula) IsConjunctOfLiterals() bool {
|
||||||
|
return fml.IsLiteral() || (fml.IsConjunction() && onlyLiterals(fml.GetSubFormulae()))
|
||||||
|
}
|
||||||
|
|
||||||
|
func (fml Formula) IsDisjunctOfLiterals() bool {
|
||||||
|
return fml.IsLiteral() || (fml.IsDisjunction() && onlyLiterals(fml.GetSubFormulae()))
|
||||||
|
}
|
||||||
|
|
||||||
|
func (fml Formula) IsHornClause() bool {
|
||||||
|
var literals = fml.GetSubFormulae()
|
||||||
|
return fml.IsLiteral() || (fml.IsDisjunction() && onlyLiterals(literals) && (numPositiveLiterals(literals) <= 1))
|
||||||
|
}
|
||||||
|
|
||||||
|
func (fml Formula) IsKNF() bool {
|
||||||
|
if fml.IsConjunction() {
|
||||||
|
for _, subFml := range fml.GetSubFormulae() {
|
||||||
|
if !subFml.IsDisjunctOfLiterals() {
|
||||||
|
return false
|
||||||
|
}
|
||||||
|
}
|
||||||
|
return true
|
||||||
|
} else {
|
||||||
|
return fml.IsDisjunctOfLiterals()
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
func (fml Formula) IsDNF() bool {
|
||||||
|
if fml.IsDisjunction() {
|
||||||
|
for _, subFml := range fml.GetSubFormulae() {
|
||||||
|
if !subFml.IsConjunctOfLiterals() {
|
||||||
|
return false
|
||||||
|
}
|
||||||
|
}
|
||||||
|
return true
|
||||||
|
} else {
|
||||||
|
return fml.IsConjunctOfLiterals()
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
func (fml Formula) IsHornFml() bool {
|
||||||
|
if fml.IsConjunction() {
|
||||||
|
for _, subFml := range fml.GetSubFormulae() {
|
||||||
|
if !subFml.IsHornClause() {
|
||||||
|
return false
|
||||||
|
}
|
||||||
|
}
|
||||||
|
return true
|
||||||
|
} else {
|
||||||
|
return fml.IsHornClause()
|
||||||
|
}
|
||||||
|
}
|
@ -1,34 +0,0 @@
|
|||||||
package formulae
|
|
||||||
|
|
||||||
/* ---------------------------------------------------------------- *
|
|
||||||
* TYPE FormulaPair, FormulaPairs
|
|
||||||
* ---------------------------------------------------------------- */
|
|
||||||
|
|
||||||
type FormulaPair struct {
|
|
||||||
Pos Formula
|
|
||||||
Neg Formula
|
|
||||||
}
|
|
||||||
|
|
||||||
type FormulaPairs []FormulaPair
|
|
||||||
|
|
||||||
/* ---------------------------------------------------------------- *
|
|
||||||
* Methods for FormulaPairs
|
|
||||||
* ---------------------------------------------------------------- */
|
|
||||||
|
|
||||||
func NewFormulaPairs(pairs []FormulaPair) FormulaPairs { return pairs }
|
|
||||||
|
|
||||||
func (pairs FormulaPairs) Pos() []Formula {
|
|
||||||
var fmls = make([]Formula, len(pairs))
|
|
||||||
for i, pair := range pairs {
|
|
||||||
fmls[i] = pair.Pos
|
|
||||||
}
|
|
||||||
return fmls
|
|
||||||
}
|
|
||||||
|
|
||||||
func (pairs FormulaPairs) Neg() []Formula {
|
|
||||||
var fmls = make([]Formula, len(pairs))
|
|
||||||
for i, pair := range pairs {
|
|
||||||
fmls[i] = pair.Neg
|
|
||||||
}
|
|
||||||
return fmls
|
|
||||||
}
|
|
158
codego/aussagenlogik/formulae/formulae_test.go
Normal file
158
codego/aussagenlogik/formulae/formulae_test.go
Normal file
@ -0,0 +1,158 @@
|
|||||||
|
package formulae_test
|
||||||
|
|
||||||
|
/* ---------------------------------------------------------------- *
|
||||||
|
* UNIT TESTING
|
||||||
|
* ---------------------------------------------------------------- */
|
||||||
|
|
||||||
|
import (
|
||||||
|
"logik/aussagenlogik/formulae"
|
||||||
|
"logik/aussagenlogik/schema"
|
||||||
|
"testing"
|
||||||
|
|
||||||
|
"github.com/stretchr/testify/assert"
|
||||||
|
)
|
||||||
|
|
||||||
|
/* ---------------------------------------------------------------- *
|
||||||
|
* TESTCASE KNF
|
||||||
|
* ---------------------------------------------------------------- */
|
||||||
|
|
||||||
|
func TestRecogniseKNF(test *testing.T) {
|
||||||
|
var assert = assert.New(test)
|
||||||
|
var fml formulae.Formula
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("A7")
|
||||||
|
assert.True(fml.IsKNF())
|
||||||
|
fml = schema.ParseExpr("! A7")
|
||||||
|
assert.True(fml.IsKNF())
|
||||||
|
fml = schema.ParseExpr("!! A7")
|
||||||
|
assert.False(fml.IsKNF())
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("(A0 || ! A1 || A7)")
|
||||||
|
assert.True(fml.IsKNF())
|
||||||
|
fml = schema.ParseExpr("(A0 && ! A1 && A7)")
|
||||||
|
assert.True(fml.IsKNF())
|
||||||
|
fml = schema.ParseExpr("(A0 && !! A1 && A7)")
|
||||||
|
assert.False(fml.IsKNF())
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("(A0 || ! A1 || A7) && (A4 || ! A5) && A1")
|
||||||
|
assert.True(fml.IsKNF())
|
||||||
|
fml = schema.ParseExpr("(A0 && ! A1 && A7) || (A4 && ! A5) || A1")
|
||||||
|
assert.False(fml.IsKNF())
|
||||||
|
fml = schema.ParseExpr("((A0 || ! A1 || A7) && (A4 || ! A5)) || A8")
|
||||||
|
assert.False(fml.IsKNF())
|
||||||
|
}
|
||||||
|
|
||||||
|
func TestRecogniseDNF(test *testing.T) {
|
||||||
|
var assert = assert.New(test)
|
||||||
|
var fml formulae.Formula
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("A7")
|
||||||
|
assert.True(fml.IsDNF())
|
||||||
|
fml = schema.ParseExpr("! A7")
|
||||||
|
assert.True(fml.IsDNF())
|
||||||
|
fml = schema.ParseExpr("!! A7")
|
||||||
|
assert.False(fml.IsDNF())
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("(A0 && ! A1 && A7)")
|
||||||
|
assert.True(fml.IsDNF())
|
||||||
|
fml = schema.ParseExpr("(A0 || ! A1 || A7)")
|
||||||
|
assert.True(fml.IsDNF())
|
||||||
|
fml = schema.ParseExpr("(A0 || !! A1 || A7)")
|
||||||
|
assert.False(fml.IsDNF())
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("(A0 && ! A1 && A7) || (A4 && ! A5) || A1")
|
||||||
|
assert.True(fml.IsDNF())
|
||||||
|
fml = schema.ParseExpr("(A0 || ! A1 || A7) && (A4 || ! A5) && A1")
|
||||||
|
assert.False(fml.IsDNF())
|
||||||
|
fml = schema.ParseExpr("((A0 && ! A1 && A7) || (A4 && ! A5)) && A8")
|
||||||
|
assert.False(fml.IsDNF())
|
||||||
|
}
|
||||||
|
|
||||||
|
/* ---------------------------------------------------------------- *
|
||||||
|
* TESTCASE Horn
|
||||||
|
* ---------------------------------------------------------------- */
|
||||||
|
|
||||||
|
func TestRecogniseHorn(test *testing.T) {
|
||||||
|
var assert = assert.New(test)
|
||||||
|
var fml formulae.Formula
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("A7")
|
||||||
|
assert.True(fml.IsHornFml())
|
||||||
|
fml = schema.ParseExpr("! A7")
|
||||||
|
assert.True(fml.IsHornFml())
|
||||||
|
fml = schema.ParseExpr("!! A7")
|
||||||
|
assert.False(fml.IsHornFml())
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("(! A0 || ! A1 || A7)")
|
||||||
|
assert.True(fml.IsHornFml())
|
||||||
|
fml = schema.ParseExpr("(A0 && ! A1 && A7)")
|
||||||
|
assert.True(fml.IsHornFml())
|
||||||
|
fml = schema.ParseExpr("(A0 && !! A1 && A7)")
|
||||||
|
assert.False(fml.IsHornFml())
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("(A0 && ! A1 && ! A7) || (A4 && ! A5) || (! A1 && ! A8)")
|
||||||
|
assert.False(fml.IsHornFml())
|
||||||
|
fml = schema.ParseExpr("(A0 && ! A1 && ! A7) || (A4 && ! A5) || (! A1 && ! A8)")
|
||||||
|
assert.False(fml.IsHornFml())
|
||||||
|
fml = schema.ParseExpr("(A0 || ! A1 || ! A7) && (A4 || ! A5) && (! A1 || ! A8)")
|
||||||
|
assert.True(fml.IsHornFml())
|
||||||
|
fml = schema.ParseExpr("((A0 || ! A1 || A7) && (A4 || ! A5)) || A8")
|
||||||
|
assert.False(fml.IsHornFml())
|
||||||
|
}
|
||||||
|
|
||||||
|
func TestTransformHornToFormula(test *testing.T) {
|
||||||
|
var assert = assert.New(test)
|
||||||
|
var fml formulae.Formula
|
||||||
|
var horn formulae.FormulaHorn
|
||||||
|
var hornClauses []formulae.FormulaHornClause
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("A8")
|
||||||
|
assert.True(fml.IsHornFml())
|
||||||
|
horn = fml.GetHornParts()
|
||||||
|
hornClauses = horn
|
||||||
|
assert.Equal(1, len(hornClauses))
|
||||||
|
assert.ElementsMatch([]string{"A8"}, hornClauses[0].Pos.GetAtoms())
|
||||||
|
assert.ElementsMatch([]string{}, hornClauses[0].Neg.GetAtoms())
|
||||||
|
assert.Equal("(1 -> A8)", horn.ToFormula().GetExpr())
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("!A8")
|
||||||
|
assert.True(fml.IsHornFml())
|
||||||
|
horn = fml.GetHornParts()
|
||||||
|
hornClauses = horn
|
||||||
|
assert.Equal(1, len(hornClauses))
|
||||||
|
assert.ElementsMatch([]string{}, hornClauses[0].Pos.GetAtoms())
|
||||||
|
assert.ElementsMatch([]string{"A8"}, hornClauses[0].Neg.GetAtoms())
|
||||||
|
assert.Equal("(A8 -> 0)", horn.ToFormula().GetExpr())
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("!A3 || A2 || !A7 || !A9")
|
||||||
|
assert.True(fml.IsHornFml())
|
||||||
|
horn = fml.GetHornParts()
|
||||||
|
hornClauses = horn
|
||||||
|
assert.Equal(1, len(hornClauses))
|
||||||
|
assert.ElementsMatch([]string{"A2"}, hornClauses[0].Pos.GetAtoms())
|
||||||
|
assert.ElementsMatch([]string{"A3", "A7", "A9"}, hornClauses[0].Neg.GetAtoms())
|
||||||
|
assert.Equal("((A3 && A7 && A9) -> A2)", horn.ToFormula().GetExpr())
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("!A3 || !A2 || !A7 || !A9")
|
||||||
|
assert.True(fml.IsHornFml())
|
||||||
|
horn = fml.GetHornParts()
|
||||||
|
hornClauses = horn
|
||||||
|
assert.Equal(1, len(hornClauses))
|
||||||
|
assert.ElementsMatch([]string{}, hornClauses[0].Pos.GetAtoms())
|
||||||
|
assert.ElementsMatch([]string{"A2", "A3", "A7", "A9"}, hornClauses[0].Neg.GetAtoms())
|
||||||
|
assert.Equal("((A3 && A2 && A7 && A9) -> 0)", horn.ToFormula().GetExpr())
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("!A3 && A2 && !A7 && A9 && A7")
|
||||||
|
assert.True(fml.IsHornFml())
|
||||||
|
horn = fml.GetHornParts()
|
||||||
|
hornClauses = horn
|
||||||
|
assert.Equal(5, len(hornClauses))
|
||||||
|
assert.Equal("((A3 -> 0) && (1 -> A2) && (A7 -> 0) && (1 -> A9) && (1 -> A7))", horn.ToFormula().GetExpr())
|
||||||
|
|
||||||
|
fml = schema.ParseExpr("(A0 || ! A1 || ! A7) && (A4 || ! A5) && (! A1 || ! A8)")
|
||||||
|
assert.True(fml.IsHornFml())
|
||||||
|
horn = fml.GetHornParts()
|
||||||
|
hornClauses = horn
|
||||||
|
assert.Equal(3, len(hornClauses))
|
||||||
|
assert.Equal("(((A1 && A7) -> A0) && (A5 -> A4) && ((A1 && A8) -> 0))", horn.ToFormula().GetExpr())
|
||||||
|
}
|
Loading…
x
Reference in New Issue
Block a user