|  | package jp.ac.kobe_u.cs.prolog.builtin; | 
|  | import jp.ac.kobe_u.cs.prolog.lang.*; | 
|  | /** | 
|  | <code>'$get_prolog_impl_flag'/2</code><br> | 
|  | @author Mutsunori Banbara (banbara@kobe-u.ac.jp) | 
|  | @author Naoyuki Tamura (tamura@kobe-u.ac.jp) | 
|  | @version 1.0 | 
|  | */ | 
|  | class PRED_$get_prolog_impl_flag_2 extends Predicate { | 
|  | static SymbolTerm TRUE                      = SymbolTerm.makeSymbol("true"); | 
|  | static SymbolTerm FALSE                     = SymbolTerm.makeSymbol("false"); | 
|  | static SymbolTerm BOUNDED                   = SymbolTerm.makeSymbol("bounded"); | 
|  | static SymbolTerm MAX_INTEGER               = SymbolTerm.makeSymbol("max_integer"); | 
|  | static SymbolTerm MIN_INTEGER               = SymbolTerm.makeSymbol("min_integer"); | 
|  | static SymbolTerm INTEGER_ROUNDING_FUNCTION = SymbolTerm.makeSymbol("integer_rounding_function"); | 
|  | static SymbolTerm CHAR_CONVERSION           = SymbolTerm.makeSymbol("char_conversion"); | 
|  | static SymbolTerm DEBUG                     = SymbolTerm.makeSymbol("debug"); | 
|  | static SymbolTerm MAX_ARITY                 = SymbolTerm.makeSymbol("max_arity"); | 
|  | static SymbolTerm UNKNOWN                   = SymbolTerm.makeSymbol("unknown"); | 
|  | static SymbolTerm DOUBLE_QUOTES             = SymbolTerm.makeSymbol("double_quotes"); | 
|  | static SymbolTerm PRINT_STACK_TRACE         = SymbolTerm.makeSymbol("print_stack_trace"); | 
|  |  | 
|  | public Term arg1, arg2; | 
|  |  | 
|  | public PRED_$get_prolog_impl_flag_2(Term a1, Term a2, Predicate cont) { | 
|  | arg1 = a1; | 
|  | arg2 = a2; | 
|  | this.cont = cont; | 
|  | } | 
|  |  | 
|  | public PRED_$get_prolog_impl_flag_2(){} | 
|  |  | 
|  | public void setArgument(Term[] args, Predicate cont) { | 
|  | arg1 = args[0]; | 
|  | arg2 = args[1]; | 
|  | this.cont = cont; | 
|  | } | 
|  |  | 
|  | public int arity() { return 2; } | 
|  |  | 
|  | public String toString() { | 
|  | return "$get_prolog_impl_flag(" + arg1 + "," + arg2 + ")"; | 
|  | } | 
|  |  | 
|  | public Predicate exec(Prolog engine) { | 
|  | engine.setB0(); | 
|  | Term a1, a2; | 
|  | a1 = arg1; | 
|  | a2 = arg2; | 
|  | a1 = a1.dereference(); | 
|  | a2 = a2.dereference(); | 
|  |  | 
|  | if (a1.equals(BOUNDED)) { | 
|  | if (engine.isBounded()) { | 
|  | if (! a2.unify(TRUE, engine.trail)) | 
|  | return engine.fail(); | 
|  | } else { | 
|  | if (! a2.unify(FALSE, engine.trail)) | 
|  | return engine.fail(); | 
|  | } | 
|  | } else if (a1.equals(MAX_INTEGER)) { | 
|  | if (! a2.unify(new IntegerTerm(engine.getMaxInteger()), engine.trail)) | 
|  | return engine.fail(); | 
|  | } else if (a1.equals(MIN_INTEGER)) { | 
|  | if (! a2.unify(new IntegerTerm(engine.getMinInteger()), engine.trail)) | 
|  | return engine.fail(); | 
|  | } else if (a1.equals(INTEGER_ROUNDING_FUNCTION)) { | 
|  | if (! a2.unify(SymbolTerm.makeSymbol(engine.getIntegerRoundingFunction()), engine.trail)) | 
|  | return engine.fail(); | 
|  | } else if (a1.equals(CHAR_CONVERSION)) { | 
|  | if (! a2.unify(SymbolTerm.makeSymbol(engine.getCharConversion()), engine.trail)) | 
|  | return engine.fail(); | 
|  | } else if (a1.equals(DEBUG)) { | 
|  | if (! a2.unify(SymbolTerm.makeSymbol(engine.getDebug()), engine.trail)) | 
|  | return engine.fail(); | 
|  | } else if (a1.equals(MAX_ARITY)) { | 
|  | if (! a2.unify(new IntegerTerm(engine.getMaxArity()), engine.trail)) | 
|  | return engine.fail(); | 
|  | } else if (a1.equals(UNKNOWN)) { | 
|  | if (! a2.unify(SymbolTerm.makeSymbol(engine.getUnknown()), engine.trail)) | 
|  | return engine.fail(); | 
|  | } else if (a1.equals(DOUBLE_QUOTES)) { | 
|  | if (! a2.unify(SymbolTerm.makeSymbol(engine.getDoubleQuotes()), engine.trail)) | 
|  | return engine.fail(); | 
|  | } else if (a1.equals(PRINT_STACK_TRACE)) { | 
|  | if (! a2.unify(SymbolTerm.makeSymbol(engine.getPrintStackTrace()), engine.trail)) | 
|  | return engine.fail(); | 
|  | } else { | 
|  | return engine.fail(); | 
|  | } | 
|  | return cont; | 
|  | } | 
|  | } |