// (a l a0 s) protected PCond2ALA0(PrimitiveCombination2AL predicate, Argument0 consequent, SCode alternative) : base(predicate, consequent, alternative) { }
public static SCode Make(PrimitiveCombination2AL predicate, Quotation consequent, SCode alternative) { return (alternative is LexicalVariable) ? PCond2ALQL.Make (predicate, consequent, (LexicalVariable) alternative) : (alternative is Quotation) ? PCond2ALQQ.Make (predicate, consequent, (Quotation) alternative) : new PCond2ALQ (predicate, consequent, alternative); }
PCond2ALSQ(PrimitiveCombination2AL predicate, SCode consequent, Quotation alternative) : base(predicate, consequent, alternative) { this.alternativeValue = alternative.Quoted; }
protected PCond2AL(PrimitiveCombination2AL predicate, SCode consequent, SCode alternative) : base(predicate, consequent, alternative) { this.rand1Name = predicate.rand1Name; this.rand1Depth = predicate.rand1Depth; this.rand1Offset = predicate.rand1Offset; }
protected PCond2ALSL(PrimitiveCombination2AL predicate, SCode consequent, LexicalVariable alternative) : base(predicate, consequent, alternative) { this.alternativeName = alternative.Name; this.alternativeDepth = alternative.Depth; this.alternativeOffset = alternative.Offset; }
PCond2ALSL1(PrimitiveCombination2AL predicate, SCode consequent, LexicalVariable1 alternative) : base(predicate, consequent, alternative) { }
public static SCode Make(PrimitiveCombination2AL predicate, LexicalVariable consequent, SCode alternative) { return (consequent is Argument) ? PCond2ALA.Make (predicate, (Argument) consequent, alternative) : (consequent is LexicalVariable1) ? PCond2ALL1.Make (predicate, (LexicalVariable1) consequent, alternative) : (alternative is LexicalVariable) ? PCond2ALLL.Make (predicate, consequent, (LexicalVariable) alternative) : (alternative is Quotation) ? PCond2ALLQ.Make (predicate, consequent, (Quotation) alternative) : new PCond2ALL (predicate, consequent, alternative); }
public static SCode Make(PrimitiveCombination2AL predicate, SCode consequent, Argument alternative) { return (alternative is Argument0) ? PCond2ALSA0.Make (predicate, consequent, (Argument0) alternative) : (alternative is Argument1) ? PCond2ALSA1.Make (predicate, consequent, (Argument1) alternative) : new PCond2ALSA (predicate, consequent, alternative); }
// (a l a a0) PCond2ALAA0(PrimitiveCombination2AL predicate, Argument consequent, Argument0 alternative) : base(predicate, consequent, alternative) { }
protected PCond2ALL(PrimitiveCombination2AL predicate, LexicalVariable consequent, SCode alternative) : base(predicate, consequent, alternative) { this.consequentName = consequent.Name; this.consequentDepth = consequent.Depth; this.consequentOffset = consequent.Offset; }
public static SCode Make(PrimitiveCombination2AL predicate, Argument1 consequent, Argument0 alternative) { return new PCond2ALA1A0 (predicate, consequent, alternative); }
// (a l a1 l1) protected PCond2ALA1A(PrimitiveCombination2AL predicate, Argument1 consequent, Argument alternative) : base(predicate, consequent, alternative) { }
// (a l a0 l1) PCond2ALA0L1(PrimitiveCombination2AL predicate, Argument0 consequent, LexicalVariable1 alternative) : base(predicate, consequent, alternative) { }
// (a l q a1) PCond2ALQA1(PrimitiveCombination2AL predicate, Quotation consequent, Argument1 alternative) : base(predicate, consequent, alternative) { }
// (a l l1 l1) protected PCond2ALL1A(PrimitiveCombination2AL predicate, LexicalVariable1 consequent, Argument alternative) : base(predicate, consequent, alternative) { }
public static SCode Make(PrimitiveCombination2AL predicate, Quotation consequent, Argument1 alternative) { return new PCond2ALQA1 (predicate, consequent, alternative); }
public static SCode Make(PrimitiveCombination2AL predicate, LexicalVariable1 consequent, Quotation alternative) { return new PCond2ALL1Q (predicate, consequent, alternative); }
PCond2ALSA1(PrimitiveCombination2AL predicate, SCode consequent, Argument1 alternative) : base(predicate, consequent, alternative) { }
public static SCode Make(PrimitiveCombination2AL predicate, LexicalVariable consequent, Argument0 alternative) { return new PCond2ALLA0 (predicate, consequent, alternative); }
public static SCode Make(PrimitiveCombination2AL predicate, SCode consequent, LexicalVariable alternative) { return (alternative is Argument) ? PCond2ALSA.Make (predicate, consequent, (Argument) alternative) : (alternative is LexicalVariable1) ? PCond2ALSL1.Make (predicate, consequent, (LexicalVariable1) alternative) : new PCond2ALSL (predicate, consequent, alternative); }
// (a l l a1) PCond2ALLA1(PrimitiveCombination2AL predicate, LexicalVariable consequent, Argument1 alternative) : base(predicate, consequent, alternative) { }
public static SCode Make(PrimitiveCombination2AL predicate, SCode consequent, LexicalVariable1 alternative) { return new PCond2ALSL1 (predicate, consequent, alternative); }
PCond2ALLQ(PrimitiveCombination2AL predicate, LexicalVariable consequent, Quotation alternative) : base(predicate, consequent, alternative) { this.alternativeValue = alternative.Quoted; }
public static SCode Make(PrimitiveCombination2AL predicate, SCode consequent, Quotation alternative) { return new PCond2ALSQ (predicate, consequent, alternative); }
protected PCond2ALQ(PrimitiveCombination2AL predicate, Quotation consequent, SCode alternative) : base(predicate, consequent, alternative) { this.consequentValue = consequent.Quoted; }
public static SCode Make(PrimitiveCombination2AL predicate, SCode consequent, SCode alternative) { return (predicate is PrimitiveCombination2AA) ? PCond2AA.Make ((PrimitiveCombination2AA) predicate, consequent, alternative) : (predicate is PrimitiveCombination2AL1) ? PCond2AL1.Make ((PrimitiveCombination2AL1) predicate, consequent, alternative) : (consequent is LexicalVariable) ? PCond2ALL.Make (predicate, (LexicalVariable) consequent, alternative) : (consequent is Quotation) ? PCond2ALQ.Make (predicate, (Quotation) consequent, alternative) : (alternative is LexicalVariable) ? PCond2ALSL.Make (predicate, consequent, (LexicalVariable) alternative) : (alternative is Quotation) ? PCond2ALSQ.Make (predicate, consequent, (Quotation) alternative) : new PCond2AL (predicate, consequent, alternative); }
public static SCode Make(PrimitiveCombination2AL predicate, Argument consequent, SCode alternative) { return (consequent is Argument0) ? PCond2ALA0.Make (predicate, (Argument0) consequent, alternative) : (consequent is Argument1) ? PCond2ALA1.Make (predicate, (Argument1) consequent, alternative) : (alternative is LexicalVariable) ? PCond2ALAL.Make (predicate, consequent, (LexicalVariable) alternative) : (alternative is Quotation) ? PCond2ALAQ.Make (predicate, consequent, (Quotation) alternative) : new PCond2ALA (predicate, consequent, alternative); }