Class: Nendo::Evaluator
- Inherits:
-
Object
- Object
- Nendo::Evaluator
- Includes:
- BuiltinFunctions
- Defined in:
- lib/nendo/ruby/evaluator.rb,
lib/nendo/ruby/optimized_func.rb
Overview
Translate S expression to Ruby expression and Evaluation
Constant Summary collapse
- EXEC_TYPE_NORMAL =
1
- EXEC_TYPE_ANONYMOUS =
2
- EXEC_TYPE_TAILCALL =
3
Instance Attribute Summary collapse
-
#runtimeCheck ⇒ Object
Returns the value of attribute runtimeCheck.
Instance Method Summary collapse
-
#__evalSyntaxRules(rules, lexicalVars) ⇒ Object
eval (syntax-rules …) sexp.
-
#__expandSyntaxRules(rules, syntaxArray, lexicalVars) ⇒ Object
expand (syntax-rules …) => (%syntax-rules …).
-
#__macroexpandEngine(sexp, syntaxArray, lexicalVars) ⇒ Object
args:.
- #__PAMARKexport_MIMARKto_MIMARKruby(origname, pred) ⇒ Object
- #__PAMARKload(filename) ⇒ Object
- #__PAMARKload_MIMARKcompiled_MIMARKcode(filename) ⇒ Object
- #__removeSameLexicalScopeVariables(frame) ⇒ Object
- #__setupLexicalScopeVariables(lexicalVars) ⇒ Object
-
#__wrapNestedLet(sexp, lexicalVars) ⇒ Object
warp sexp by lexicalVars.
- #_clean_MIMARKcompiled_MIMARKcode ⇒ Object
- #_disable_MIMARKidebug ⇒ Object
- #_disable_MIMARKtrace ⇒ Object
- #_enable_MIMARKidebug ⇒ Object
- #_enable_MIMARKtrace ⇒ Object
- #_eval(sexp) ⇒ Object
- #_gensym ⇒ Object
- #_get_MIMARKcompiled_MIMARKcode ⇒ Object
- #_get_MIMARKoptimize_MIMARKlevel ⇒ Object
- #_get_MIMARKsource_MIMARKinfo(varname) ⇒ Object
- #_load_MIMARKcompiled_MIMARKcode_MIMARKfrom_MIMARKstring(rubyExp) ⇒ Object
- #_make_MIMARKsyntactic_MIMARKclosure(mac_env, use_env, identifier) ⇒ Object
- #_set_MIMARKoptimize_MIMARKlevel(level) ⇒ Object
- #_strip_MIMARKlet_MIMARKsyntax_MIMARKkeyword(sexp) ⇒ Object
- #_strip_MIMARKsyntactic_MIMARKclosures(sexp) ⇒ Object
- #_strip_MIMARKsyntax_MIMARKquote(sexp) ⇒ Object
- #_symbol_MIMARKinclude_QUMARK(sexp, sym) ⇒ Object
- #apply(car, cdr, sourcefile, lineno, locals, sourceInfo, execType) ⇒ Object
- #callProcedure(rubysym, origname, pred, args) ⇒ Object
- #castParsedSymbol(arg) ⇒ Object
- #defMethodStr(name, _log) ⇒ Object
- #delayCall(rubysym, origname, pred, args) ⇒ Object
- #displayBacktrace(exception) ⇒ Object
- #displayTopOfCalls(exception) ⇒ Object
- #embedBacktraceInfo(sourcefile, lineno) ⇒ Object
- #errorMessageOf_toRubyArgument(origname, no, req, got) ⇒ Object
- #execFunc(funcname, args, sourcefile, lineno, locals, sourceInfo, execType) ⇒ Object
- #forward_gensym_counter ⇒ Object
- #generateEmbedBacktraceInfo(sourcefile, lineno, arr) ⇒ Object
- #genQuote(sexp, str = "") ⇒ Object
- #getOptimizeLevel ⇒ Object
- #global_lisp_define(rubySymbol, val) ⇒ Object
-
#initialize(core, debug = false) ⇒ Evaluator
constructor
A new instance of Evaluator.
- #isDefines(sym) ⇒ Object
- #isRubyInterface(name) ⇒ Object
- #lispEval(sexp, sourcefile, lineno) ⇒ Object
- #lispMethodEntry(name, _log) ⇒ Object
- #lispMethodExit(name, _log) ⇒ Object
- #lispSymbolReference(sym, locals, translatedArr, sourcefile, lineno) ⇒ Object
- #macroexpandEngine(sexp, syntaxArray, lexicalVars) ⇒ Object
- #macroexpandEngineLoop(sexp, syntaxArray, lexicalVars) ⇒ Object
- #macroexpandInit(initVal) ⇒ Object
- #macroexpandPhase(sexp) ⇒ Object
- #makeBegin(args, locals) ⇒ Object
- #makeClosure(sym, args, locals) ⇒ Object
- #makeGuard(args, locals) ⇒ Object
- #makeIf(args, locals) ⇒ Object
- #makeLet(args, locals) ⇒ Object
- #makeLetrec(args, locals) ⇒ Object
- #makeSetVariable(car, cdr, locals, sourceInfo) ⇒ Object
- #method_missing(name, *args) ⇒ Object
- #optimizedFunc(origname, rubysym, args) ⇒ Object
- #ppRubyExp(level, exp) ⇒ Object
-
#separateWith(arr, str) ⇒ Object
for code generation of Ruby’s argument values in case: str = “,” [1,“2”,3] => [ [ 1, “,”] [“2”, “,”] [ 3 ] ].
- #setArgv(argv) ⇒ Object
- #setDisplayErrors(flag) ⇒ Object
- #setOptimizeLevel(level) ⇒ Object
- #toLispSymbol(name) ⇒ Object
- #toRubyArgument(origname, pred, args) ⇒ Object
-
#toRubyParameter(argform) ⇒ Object
returns [ argsyms[], string ].
- #toRubySymbol(name) ⇒ Object
- #toRubyValue(val) ⇒ Object
- #trampCall(result) ⇒ Object
- #trampCallCap(sym) ⇒ Object
-
#translate(sexpArg, locals, sourceInfo = nil) ⇒ Object
Lisp->Ruby translater - locals is array of closure’s local variable list when S-expression is (let ((a 1) (b 2)) (let ((c 3)) (print (+ a b c)))) => locals must be [[“_a” “_b”]] value.
Methods included from BuiltinFunctions
#__ASMARK, #__ASMARKFILE_ASMARK, #__ASMARKLINE_ASMARK, #__ASMARK_ARGS0, #__ASMARK_ARGS1, #__ASMARK_ARGS2, #__ASMARK_ARGS3, #__EQMARK, #__GTMARK, #__GTMARK_EQMARK, #__LTMARK, #__LTMARK_EQMARK, #__MIMARK, #__MIMARK_ARGS0, #__MIMARK_ARGS1, #__MIMARK_ARGS2, #__MIMARK_ARGS3, #__PAMARK, #__PAMARKlist_QUMARK, #__PAMARKraise, #__PLMARK, #__PLMARK_ARGS0, #__PLMARK_ARGS1, #__PLMARK_ARGS2, #__PLMARK_ARGS3, #__SLMARK, #__assertFlat, #__assertList, #_apply1, #_car, #_cdr, #_cons, #_core_MIMARKsyntax_QUMARK, #_display, #_eq_QUMARK, #_equal_QUMARK, #_eqv_QUMARK, #_exit, #_ge_QUMARK, #_global_MIMARKvariables, #_gt_QUMARK, #_hash_MIMARKtable_MIMARKexist_QUMARK, #_hash_MIMARKtable_MIMARKget, #_hash_MIMARKtable_MIMARKput_EXMARK, #_integer_QUMARK, #_intern, #_keyword_MIMARK_GTMARKstring, #_keyword_QUMARK, #_le_QUMARK, #_length, #_list, #_lt_QUMARK, #_macro_QUMARK, #_macroexpand_MIMARK1, #_make_MIMARKkeyword, #_make_MIMARKrecord_MIMARKtype, #_make_MIMARKvalues, #_modulo, #_newline, #_nil_QUMARK, #_not, #_null_QUMARK, #_number_QUMARK, #_pair_QUMARK, #_print, #_printf, #_procedure_QUMARK, #_quotient, #_range, #_read, #_read_MIMARKfrom_MIMARKstring, #_remainder, #_require, #_reverse, #_set_MIMARKcar_EXMARK, #_set_MIMARKcdr_EXMARK, #_sprintf, #_string_MIMARK_GTMARKsymbol, #_string_MIMARKjoin, #_string_QUMARK, #_symbol_MIMARK_GTMARKstring, #_symbol_QUMARK, #_syntax_QUMARK, #_to_MIMARKarr, #_to_MIMARKi, #_to_MIMARKlist, #_to_MIMARKs, #_to_arr, #_to_i, #_to_list, #_to_s, #_uniq, #_values_MIMARKvalues, #_values_QUMARK, #_vector_MIMARKset_EXMARK, #_write, #_write_MIMARKto_MIMARKstring
Constructor Details
#initialize(core, debug = false) ⇒ Evaluator
Returns a new instance of Evaluator.
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# File 'lib/nendo/ruby/evaluator.rb', line 46 def initialize( core, debug = false ) @core = core @indent = " " @binding = binding @debug = debug @trace_debug = false @lexicalVars = [] @syntaxHash = {} @optimize_level = 2 @runtimeCheck = true @backtrace = [] @backtrace_last = "" @displayErrorsFlag = true; @char_table_lisp_to_ruby = { # list (! $ % & * + - . / : < = > ? @ ^ _ ~ ...) '!' => '_EXMARK', '$' => '_DOMARK', '%' => '_PAMARK', '&' => '_ANMARK', '*' => '_ASMARK', '+' => '_PLMARK', '-' => '_MIMARK', # '.' '/' => '_SLMARK', ':' => '_COMARK', '<' => '_LTMARK', '=' => '_EQMARK', '>' => '_GTMARK', '?' => '_QUMARK', '@' => '_ATMARK', '^' => '_NKMARK', # '_' '~' => '_CHMARK', '...' => '_DOTDOTDOT', } @char_table_ruby_to_lisp = @char_table_lisp_to_ruby.invert @core_syntax_list = [ :quote, :"syntax-quote", :if , :begin , :lambda , :macro , :"&block" , :"%let" , :letrec , :define, :set!, :error, :"%syntax", :"define-syntax", :"let-syntax", :"%guard" ] @core_syntax_hash = Hash.new @core_syntax_list.each { |x| renamed = ("/nendo/core/" + x.to_s).intern @core_syntax_hash[ x ] = renamed } # toplevel binding @global_lisp_binding = Hash.new # initialize builtin functions as Proc objects rubyExp = self.methods.select { |x| x.to_s.match( /^_/ ) }.map { |name| [ defMethodStr( name, false ), sprintf( "@%s = self.method( :%s ).to_proc", name, name ), sprintf( "@global_lisp_binding['%s'] = self.method( :%s_METHOD ).to_proc", name, name ), ].join( " ; " ) }.join( " ; " ) eval( rubyExp, @binding ) # initialize builtin syntax as LispCoreSyntax rubyExp = @core_syntax_hash.map { |k,v| name1 = toRubySymbol( k ) name2 = toRubySymbol( v ) [ sprintf( "@%s = LispCoreSyntax.new( :\"%s\" ) ", name1, k ), sprintf( "@global_lisp_binding['%s'] = @%s ", name1, name1 ), sprintf( "@%s = @%s ", name2, name1 ), sprintf( "@global_lisp_binding['%s'] = @%s ", name1, name2 ) ].join( " ; " ) }.join( " ; " ) eval( rubyExp, @binding ) # reset gensym counter @gensym_counter = 0 # call depth counter @call_depth = 0 @call_counters = Hash.new # compiled ruby code # { 'filename1' => [ 'code1' 'code2' ... ], # 'filename2' => [ 'code1' 'code2' ... ], ... } @compiled_code = Hash.new @source_info_hash = Hash.new global_lisp_define( toRubySymbol( "%compile-phase-functions" ), Cell.new()) load_path = $LOAD_PATH + [ File.dirname(__FILE__) ] global_lisp_define( toRubySymbol( "*load-path*" ), load_path.to_list ) global_lisp_define( toRubySymbol( "*nendo-version*" ), Nendo::Core.version ) end |
Dynamic Method Handling
This class handles dynamic methods through the method_missing method
#method_missing(name, *args) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 298 def method_missing( name, *args ) if @global_lisp_binding[name].is_a? Proc @global_lisp_binding[name].call( args[0], args[1], args[2] ) else callProcedure( name, args[0], args[1], args[2] ) end end |
Instance Attribute Details
#runtimeCheck ⇒ Object
Returns the value of attribute runtimeCheck.
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# File 'lib/nendo/ruby/evaluator.rb', line 44 def runtimeCheck @runtimeCheck end |
Instance Method Details
#__evalSyntaxRules(rules, lexicalVars) ⇒ Object
eval (syntax-rules …) sexp
return:
(%syntax-rules
((v1 <<@syntaxHash's key1>>)
(v2 <<@syntaxHash's key2>>)
body))
example:
(%syntax-rules
((v1 "x = 10 // (+ x v1)")
(v2 "y = 20 // (+ y v2)"))
(+ v1 v2))
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# File 'lib/nendo/ruby/evaluator.rb', line 920 def __evalSyntaxRules( rules, lexicalVars ) if :"%syntax-rules" == rules.car rules.second else lexvars = lexicalVars.select { |x| if _symbol_MIMARKinclude_QUMARK( rules, x[0].intern ) x elsif lexicalVars.find {|y| _symbol_MIMARKinclude_QUMARK( y[1], x[0].intern ) } x else false end } __setupLexicalScopeVariables( lexvars ) keyStr = lexvars.map {|z| z[0].to_s + " / " + write_to_string( z[1] ) }.join( " / " ) keyStr += " // " + write_to_string( rules ) if @syntaxHash.has_key?( keyStr ) true else @syntaxHash[ keyStr ] = [ lexvars, self.lispEval( rules, "dynamic syntax-rules sexp (no source) ", 1 ) ] end __setupLexicalScopeVariables( [] ) keyStr end end |
#__expandSyntaxRules(rules, syntaxArray, lexicalVars) ⇒ Object
expand (syntax-rules …) => (%syntax-rules …)
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# File 'lib/nendo/ruby/evaluator.rb', line 885 def ( rules, syntaxArray, lexicalVars ) if :"%syntax-rules" == rules.car rules else ellipse = rules.second pattern_body_list = rules.cdr.cdr lst = [] lst << :"syntax-rules" lst << ellipse pattern_body_list.each {|xx| pattern_body = xx.car pattern = pattern_body.first body = pattern_body.second new_pattern_body = [ pattern, ( body, syntaxArray, lexicalVars ) ].to_list lst << new_pattern_body } lst.to_list end end |
#__macroexpandEngine(sexp, syntaxArray, lexicalVars) ⇒ Object
args:
syntaxArray ... let-syntax's identifiers
[
[ identifier-name, key of @syntaxHash, sexp of (syntax-rules ...), frame_of_let-syntax ],
.
.
]
lexicalVars ... let's identifiers
[
[ identifier-name, macroexpandEngine( let's body ) ],
]
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# File 'lib/nendo/ruby/evaluator.rb', line 964 def ( sexp, syntaxArray, lexicalVars ) sexp == castParsedSymbol( sexp ) case sexp when Cell car = castParsedSymbol( sexp.car ) if :quote == car or :"syntax-quote" == car or @core_syntax_hash[ :quote ] == car or @core_syntax_hash[ :"syntax-quote" ] == car sexp elsif :"%let" == car or :letrec == car or @core_syntax_hash[ :"%let" ] == car or @core_syntax_hash[ :letrec ] == car # catch lexical identifiers of `let' and `letrec'. arr = sexp.second.map { |x| [ castParsedSymbol( x.car.car ), ( x.car.cdr, syntaxArray, lexicalVars ) ] } lst = arr.map {|x| Cell.new( x[0], x[1] ) }.to_list ret = Cell.new( car, Cell.new( lst, ( sexp.cdr.cdr, syntaxArray, lexicalVars + arr ))) ret elsif :"let-syntax" == car sexp.second.each {|x| if not x.car.second.is_a? Cell raise SyntaxError, "Error: let-syntax get only '((name (syntax-rules ...)))' form but got: " + write_to_string( x ) elsif not ( castParsedSymbol( x.car.second.first ) == :"syntax-rules" or castParsedSymbol( x.car.second.first ) == :"%syntax-rules") raise SyntaxError, "Error: let-syntax get only '((name (syntax-rules ...)))' form but got: " + write_to_string( x ) end } arr_tmp = sexp.second.map { |x| [ castParsedSymbol( x.car.first ), castParsedSymbol( ( x.car.second, syntaxArray, lexicalVars )) ] } arr = arr_tmp.map {|x| [ castParsedSymbol( x[0] ), castParsedSymbol( __evalSyntaxRules( x[1], lexicalVars )), castParsedSymbol( x[1] ), castParsedSymbol( lexicalVars ) ] } # trial (expand recursively) arr_tmp = arr.map { |x| [ castParsedSymbol( x[0] ), castParsedSymbol( ( x[2], syntaxArray + arr, lexicalVars )) ] } arr = arr_tmp.map {|x| [ castParsedSymbol( x[0] ), castParsedSymbol( __evalSyntaxRules( x[1], lexicalVars )), castParsedSymbol( x[1] ), castParsedSymbol( lexicalVars ) ] } # keywords = ((let-syntax-keyword ( let-syntax-body )) # (let-syntax-keyword ( let-syntax-body )) # ..) newKeywords = arr.map { |e| [ castParsedSymbol(e[0]), [ :"%syntax-rules", e[1]].to_list ].to_list }.to_list ret = Cell.new( :"let-syntax", Cell.new( newKeywords, ( sexp.cdr.cdr, syntaxArray + arr, lexicalVars ))) ret else car = castParsedSymbol( car ) sym = toRubySymbol( car.to_s ) newSexp = sexp if isRubyInterface( sym ) # do nothing sexp elsif _symbol_QUMARK( car ) and eval( sprintf( "(defined? @%s and LispMacro == @%s.class)", sym,sym ), @binding ) eval( sprintf( "@__macro = @%s", sym ), @binding ) newSexp = trampCall( callProcedure( nil, sym, @__macro, sexp.cdr.to_arr )) elsif _symbol_QUMARK( car ) and eval( sprintf( "(defined? @%s and LispSyntax == @%s.class)", sym,sym ), @binding ) # expected input is # (syntaxName arg1 arg2 ...) # will be transformed # (syntaxName (syntaxName arg1 arg2 ...) () (global-variables)) eval( sprintf( "@__syntax = @%s", sym ), @binding ) newSexp = trampCall( callProcedure( nil, sym, @__syntax, [ sexp, Cell.new(), _global_MIMARKvariables( ) ] )) elsif _symbol_QUMARK( car ) and syntaxArray.map {|arr| arr[0].intern }.include?( car.intern ) # lexical macro expandeding symbol_and_syntaxObj = syntaxArray.reverse.find {|arr| car == castParsedSymbol( arr[0] ) } keys = syntaxArray.reverse.map { |arr| castParsedSymbol( arr[0] ) } if not symbol_and_syntaxObj raise "can't find valid syntaxObject" end vars = symbol_and_syntaxObj[3].map { |arr| castParsedSymbol( arr[0] ) } lexvars = @syntaxHash[ symbol_and_syntaxObj[1] ][0] lispSyntax = @syntaxHash[ symbol_and_syntaxObj[1] ][1] newSexp = trampCall( callProcedure( nil, castParsedSymbol( symbol_and_syntaxObj[0] ), lispSyntax, [ sexp, Cell.new(), (_global_MIMARKvariables( ).to_arr + keys + vars).to_list ] )) newSexp = __wrapNestedLet( newSexp, __removeSameLexicalScopeVariables( lexicalVars + lexvars )) end if _equal_QUMARK( newSexp, sexp ) sexp.map { |x| if x.car.is_a? Cell ( x.car, syntaxArray, lexicalVars ) else x.car end }.to_list( sexp.lastAtom, sexp.getLastAtom ) else @macroExpandCount -= 1 newSexp end end else sexp end end |
#__PAMARKexport_MIMARKto_MIMARKruby(origname, pred) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1258 def __PAMARKexport_MIMARKto_MIMARKruby( origname, pred ) if toRubySymbol( origname ) != ("_" + origname) raise ArgumentError, "Error: %export-to-ruby requires function name in ruby method naming rule." end if not _procedure_QUMARK( pred ) raise ArgumentError, "Error: %export-to-ruby requires 'pred' as a Proc instance." end if 0 > pred.arity raise ArgumentError, "Error: %export-to-ruby requires only a function that have fixed length argument." end if self.methods.include?( origname.intern ) or @core.methods.include?( origname.intern ) raise RuntimeError, "Error: %export-to-ruby: Nendo::Core." + origname + " method was already deifned." end argsStr = (1..(pred.arity)).map { |n| "arg" + n.to_s }.join( "," ) str = [ "def self." + origname + "(" + argsStr + ")", sprintf( " trampCall( callProcedure( nil, '%s', @_%s, [ " + argsStr + " ] )) ", origname, origname ), "end ;", "def @core." + origname + "(" + argsStr + ")", " @evaluator." + origname + "(" + argsStr + ") ", "end" ].join eval( str, @binding ) true end |
#__PAMARKload(filename) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1176 def __PAMARKload( filename ) printer = Printer.new( @debug ) open( filename, "r:utf-8" ) {|f| reader = Reader.new( f, filename, false ) while true lineno = reader.lineno s = reader._read if s[1] # EOF? break elsif Nil != s[0].class printf( "\n readExp=<<< %s >>>\n", printer._print(s[0]) ) if @debug self.lispEval( s[0], reader.sourcefile, lineno ) end end } forward_gensym_counter() end |
#__PAMARKload_MIMARKcompiled_MIMARKcode(filename) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1199 def __PAMARKload_MIMARKcompiled_MIMARKcode( filename ) open( filename, "r:utf-8" ) { |f| eval( f.read, @binding ) } forward_gensym_counter() end |
#__removeSameLexicalScopeVariables(frame) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 846 def __removeSameLexicalScopeVariables( frame ) frame.select {|x| # search same varname and different value found = frame.any? {|y| x[0] == y[0] and (not _equal_QUMARK( x[1], y[1] )) } if found x else false end } end |
#__setupLexicalScopeVariables(lexicalVars) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1285 def __setupLexicalScopeVariables( lexicalVars ) @lexicalVars = lexicalVars.clone end |
#__wrapNestedLet(sexp, lexicalVars) ⇒ Object
warp sexp by lexicalVars
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# File 'lib/nendo/ruby/evaluator.rb', line 833 def __wrapNestedLet( sexp, lexicalVars ) if 0 == lexicalVars.size sexp else elem = lexicalVars.shift Cell.new( :"%let", Cell.new( Cell.new( Cell.new( elem[0], elem[1] )), Cell.new( __wrapNestedLet( sexp, lexicalVars ) ))) end end |
#_clean_MIMARKcompiled_MIMARKcode ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1206 def _clean_MIMARKcompiled_MIMARKcode @compiled_code = Hash.new end |
#_disable_MIMARKidebug ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1227 def _disable_MIMARKidebug() @debug = false end |
#_disable_MIMARKtrace ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1233 def _disable_MIMARKtrace() @trace_debug = false end |
#_enable_MIMARKidebug ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1224 def _enable_MIMARKidebug() @debug = true end |
#_enable_MIMARKtrace ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1230 def _enable_MIMARKtrace() @trace_debug = true end |
#_eval(sexp) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1220 def _eval( sexp ) self.lispEval( sexp, "dynamic S-expression ( no source )", 1 ) end |
#_gensym ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 179 def _gensym( ) @gensym_counter += 1 filename = if @lastSourcefile.is_a? String Digest::SHA1.hexdigest( @lastSourcefile ) else "" end sprintf( "__gensym__%s_%d", filename, @gensym_counter ).intern end |
#_get_MIMARKcompiled_MIMARKcode ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1210 def _get_MIMARKcompiled_MIMARKcode @compiled_code ret = Hash.new @compiled_code.each_key { |key| ret[key] = @compiled_code[key].to_list ret[key] } ret.to_list end |
#_get_MIMARKoptimize_MIMARKlevel ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1239 def _get_MIMARKoptimize_MIMARKlevel() self.getOptimizeLevel end |
#_get_MIMARKsource_MIMARKinfo(varname) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1243 def _get_MIMARKsource_MIMARKinfo( varname ) info = @source_info_hash[ varname.to_s ] if info [ Cell.new( "varname", info.varname ), Cell.new( "sourcefile", info.sourcefile ), Cell.new( "lineno", info.lineno ), Cell.new( "source", info.source_sexp ), Cell.new( "expanded", info. ), Cell.new( "compiled_str", info.compiled_str ) ].to_list else raise NameError, sprintf( "Error: not found variable [%s]. \n", varname.to_s ) end end |
#_load_MIMARKcompiled_MIMARKcode_MIMARKfrom_MIMARKstring(rubyExp) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1194 def _load_MIMARKcompiled_MIMARKcode_MIMARKfrom_MIMARKstring( rubyExp ) eval( rubyExp, @binding ) forward_gensym_counter() end |
#_make_MIMARKsyntactic_MIMARKclosure(mac_env, use_env, identifier) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1289 def _make_MIMARKsyntactic_MIMARKclosure( mac_env, use_env, identifier ) if _pair_QUMARK( identifier ) if :"syntax-quote" == castParsedSymbol( identifier.car ) identifier else raise TypeError, "make-syntactic-closure requires symbol or (syntax-quote sexp) only. but got: " + write_to_string( identifier ) end elsif _symbol_QUMARK( identifier ) # pp [ "identifier: ", identifier, "include?=", mac_env.to_arr.include?( identifier.intern ) ] # pp [ "mac_env: ", mac_env.to_arr ] if mac_env.to_arr.include?( identifier.intern ) found = @lexicalVars.find { |x| identifier == x[0] } if found lexvars = @lexicalVars.clone __wrapNestedLet( identifier, lexvars ) else identifier end else SyntacticClosure.new( identifier, (toRubySymbol( identifier ) + _gensym( ).to_s).intern ) end else raise TypeError, "make-syntactic-closure requires symbol or (syntax-quote sexp) type." end end |
#_set_MIMARKoptimize_MIMARKlevel(level) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1236 def _set_MIMARKoptimize_MIMARKlevel(level) self.setOptimizeLevel( level ) end |
#_strip_MIMARKlet_MIMARKsyntax_MIMARKkeyword(sexp) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1336 def _strip_MIMARKlet_MIMARKsyntax_MIMARKkeyword( sexp ) case sexp when Cell if _null_QUMARK( sexp ) sexp else car = sexp.car if :"quote" == car or @core_syntax_hash[ :"quote" ] == car sexp elsif :"let-syntax" == car or @core_syntax_hash[ :"let-syntax" ] == car Cell.new( :begin, _strip_MIMARKlet_MIMARKsyntax_MIMARKkeyword( sexp.cdr.cdr )) else Cell.new( _strip_MIMARKlet_MIMARKsyntax_MIMARKkeyword( sexp.car ), _strip_MIMARKlet_MIMARKsyntax_MIMARKkeyword( sexp.cdr )) end end else sexp end end |
#_strip_MIMARKsyntactic_MIMARKclosures(sexp) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1359 def _strip_MIMARKsyntactic_MIMARKclosures( sexp ) case sexp when Cell if _null_QUMARK( sexp ) sexp else Cell.new( _strip_MIMARKsyntactic_MIMARKclosures( sexp.car ), _strip_MIMARKsyntactic_MIMARKclosures( sexp.cdr )) end else if sexp.is_a? SyntacticClosure sexp.intern else sexp end end end |
#_strip_MIMARKsyntax_MIMARKquote(sexp) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1315 def _strip_MIMARKsyntax_MIMARKquote( sexp ) case sexp when Cell if _null_QUMARK( sexp ) sexp else car = sexp.car car = castParsedSymbol( car ) if :"syntax-quote" == car or @core_syntax_hash[ :"syntax-quote" ] == car Cell.new( :quote, sexp.cdr ) else Cell.new( _strip_MIMARKsyntax_MIMARKquote( sexp.car ), _strip_MIMARKsyntax_MIMARKquote( sexp.cdr )) end end else sexp end end |
#_symbol_MIMARKinclude_QUMARK(sexp, sym) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1378 def _symbol_MIMARKinclude_QUMARK( sexp, sym ) case sexp when Cell if _null_QUMARK( sexp ) false else _symbol_MIMARKinclude_QUMARK( sexp.car, sym ) or _symbol_MIMARKinclude_QUMARK( sexp.cdr, sym ) end else if _symbol_QUMARK( sexp ) sym.intern == sexp.intern else false end end end |
#apply(car, cdr, sourcefile, lineno, locals, sourceInfo, execType) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 624 def apply( car, cdr, sourcefile, lineno, locals, sourceInfo, execType ) cdr.each { |x| if Cell == x.class x.car = translate( x.car, locals, sourceInfo ) end } execFunc( car, cdr, sourcefile, lineno, locals, sourceInfo, execType ) end |
#callProcedure(rubysym, origname, pred, args) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 315 def callProcedure( rubysym, origname, pred, args ) if @runtimeCheck if @call_counters.has_key?( origname ) @call_counters[ origname ] += 1 else @call_counters[ origname ] = 1 end end result = pred.call( *toRubyArgument( origname, pred, args )) if @runtimeCheck @call_counters[ origname ] -= 1 end result end |
#castParsedSymbol(arg) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1070 def castParsedSymbol( arg ) if arg.class == ParsedSymbol arg.intern else arg end end |
#defMethodStr(name, _log) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 170 def defMethodStr( name, _log ) [ "def self." + name.to_s + "_METHOD( origname, pred, args ) ", " lispMethodEntry( origname, " + _log.to_s + " ) ; ", " ret = callProcedure( '" + name.to_s + "', origname, pred, args ) ;", " lispMethodExit( origname, " + _log.to_s + " ) ; ", " return ret ", "end " ].join end |
#delayCall(rubysym, origname, pred, args) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 306 def delayCall( rubysym, origname, pred, args ) case @optimize_level when 0 # no optimize callProcedure( rubysym, origname, pred, args ) else # tail call optimization DelayedCallPacket.new( rubysym, origname, pred, args ) end end |
#displayBacktrace(exception) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1120 def displayBacktrace( exception ) if @displayErrorsFlag STDERR.puts( "\n <<< Backtrace of Nendo >>>" ) @backtrace.reverse.each { |x| STDERR.printf( " from %s \n", x ) } STDERR.puts( " ...\n\n" ) end end |
#displayTopOfCalls(exception) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1105 def displayTopOfCalls( exception ) if @displayErrorsFlag STDERR.puts( "\n <<< Top of calls >>>" ) strs = [] @call_counters.each_key { |funcname| if 0 < @call_counters[ funcname ] strs << sprintf( " %7d : %-20s", @call_counters[ funcname ], funcname ) end } strs.sort.reverse.each { |str| STDERR.puts( str ) } end end |
#embedBacktraceInfo(sourcefile, lineno) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 354 def ( sourcefile, lineno ) str = sourcefile + ":" + lineno.to_s if @backtrace_last != str @backtrace << str if ( 10 < @backtrace.size ) @backtrace.shift end #p @backtrace end @backtrace_last = str end |
#errorMessageOf_toRubyArgument(origname, no, req, got) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 249 def errorMessageOf_toRubyArgument( origname, no, req, got ) sprintf( "Error: [%s] wrong number of arguments for closure `%s' (requires %d, but got %d)", no, origname, req, got ) end |
#execFunc(funcname, args, sourcefile, lineno, locals, sourceInfo, execType) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 383 def execFunc( funcname, args, sourcefile, lineno, locals, sourceInfo, execType ) funcname = castParsedSymbol( funcname ) if isDefines( funcname ) ar = args.cdr.map { |x| x.car } variable_sym = toRubySymbol( args.car.to_s.sub( /^:/, "" )) global_cap = locals.flatten.include?( variable_sym.split( /[.]/ )[0] ) ? nil : "@" if global_cap and sourceInfo sourceInfo.setVarname( toLispSymbol( variable_sym )) end [ "begin #execFunc", [ if global_cap [ defMethodStr( variable_sym, true ), sprintf( "@global_lisp_binding['%s'] = self.method( :%s_METHOD )", variable_sym, variable_sym ) ] else "" end, sprintf( "%s%s = ", global_cap, variable_sym ), "trampCall(", [ ar ], ")"], "end" ] elsif :error == funcname or @core_syntax_hash[ :error ] == funcname arr = if args.length < 2 args.car else [ args.car + " ' ' + ", "_write_MIMARKto_MIMARKstring(", args.cdr.car, ")" ] end [ 'begin raise RuntimeError, ', arr, "rescue => __e ", sprintf( " __e.set_backtrace( [\"%s:%d\"] + __e.backtrace )", sourcefile, lineno ), " raise __e", "end "] else if (EXEC_TYPE_ANONYMOUS != execType) and isRubyInterface( funcname ) # Ruby method # 1) convert arguments translatedArr = args.map { |x| x.car } # 2) generate caller code part lispSymbolReference( toRubySymbol( funcname ), locals, translatedArr, sourcefile, lineno ) else # Nendo function arr = separateWith( args.map { |x| x.car }, "," ) origname = funcname.to_s sym = toRubySymbol( origname ) if EXEC_TYPE_ANONYMOUS == execType [sprintf( "trampCall( callProcedure( nil, 'anonymouse', " ), [ funcname ] + [ "," ], "[", arr, "]", " ))"] else result = false if (execType == EXEC_TYPE_NORMAL) and (not locals.flatten.include?( sym )) if 1 < @optimize_level result = optimizedFunc( origname, sym, arr ) end end if result # puts "result:" # pp result generateEmbedBacktraceInfo( sourcefile, lineno, result ) else _call = case execType when EXEC_TYPE_NORMAL if locals.flatten.include?( sym ) [ "trampCall( callProcedure( '" + sym + "', ", "))" ] # local function else [ sprintf( "trampCall( self.%s_METHOD( ", sym ), "))" ] # toplevel function end when EXEC_TYPE_TAILCALL [ sprintf( "delayCall( '%s', ", sym ), ")" ] end temp = [ sprintf( "%s '%s',", _call[0], origname ), [lispSymbolReference( sym, locals, nil, sourcefile, lineno )] + [","], "[", arr, "]", sprintf( " %s", _call[1] )] generateEmbedBacktraceInfo( sourcefile, lineno, temp ) end end end end end |
#forward_gensym_counter ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 189 def forward_gensym_counter( ) @gensym_counter += 10000 end |
#generateEmbedBacktraceInfo(sourcefile, lineno, arr) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 366 def generateEmbedBacktraceInfo( sourcefile, lineno, arr ) if sourcefile and lineno if @runtimeCheck ["begin", [ sprintf( 'embedBacktraceInfo( "%s", %s );', sourcefile, lineno ), arr], "end" ] else [arr] end else arr end end |
#genQuote(sexp, str = "") ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 633 def genQuote( sexp, str = "" ) origStr = str case sexp when Cell if sexp.isNull str += "Cell.new()" else arr = sexp.map { |x| genQuote( x.car ) } str += "Cell.new(" str += arr.join( ",Cell.new(" ) str += "," + genQuote( sexp.getLastAtom ) if sexp.lastAtom str += arr.map{ |e| ")" }.join end when Array arr = sexp.map { |x| genQuote( x ) } str += "[" + arr.join(",") + "]" when Symbol str += sprintf( ":\"%s\"", sexp.to_s ) when ParsedSymbol str += sprintf( ":\"%s\"", sexp.to_s ) when String, LispString str += sprintf( "\"%s\"", LispString.escape( sexp )) when LispKeyword str += sprintf( "LispKeyword.new( \"%s\" )", sexp.key.to_s ) when TrueClass, FalseClass, NilClass # reserved symbols str += toRubyValue( sexp ) when SyntacticClosure str += sprintf( ":\"%s\"", sexp.originalSymbol.to_s ) when Nil str += "Cell.new()" else str += sprintf( "%s", sexp ) end str end |
#getOptimizeLevel ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 149 def getOptimizeLevel @optimize_level end |
#global_lisp_define(rubySymbol, val) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 135 def global_lisp_define( rubySymbol, val ) @___tmp = val eval( sprintf( "@%s = @___tmp;", rubySymbol ), @binding ) eval( sprintf( "@global_lisp_binding['%s'] = @___tmp;", rubySymbol ), @binding ) end |
#isDefines(sym) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 348 def isDefines( sym ) sym = castParsedSymbol( sym ) result = [ :define, :set!, :"define-syntax", @core_syntax_hash[ :define ], @core_syntax_hash[ :set! ], @core_syntax_hash[ :"define-syntax" ] ].include?( sym ) return result end |
#isRubyInterface(name) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 234 def isRubyInterface( name ) name.to_s.match( /[.]/ ) end |
#lispEval(sexp, sourcefile, lineno) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1130 def lispEval( sexp, sourcefile, lineno ) begin sourceInfo = SourceInfo.new @lastSourcefile = sourcefile @lastLineno = lineno sourceInfo.setSource( sourcefile, lineno, sexp ) # macro expand phase sexp = ( sexp ) if @debug printf( "\n expaneded=<<< %s >>>\n", (Printer.new())._print(sexp)) end # compiling phase written origsym = "%compile-phase" sym = toRubySymbol( origsym ) if ( eval( sprintf( "(defined? @%s and Proc == @%s.class)", sym,sym ), @binding )) eval( sprintf( "@___tmp = @%s", sym ), @binding ) sexp = trampCall( callProcedure( nil, origsym, @___tmp, [ sexp ])) if @debug printf( "\n compiled= <<< %s >>>\n", (Printer.new())._print(sexp)) end end sourceInfo.setExpanded( sexp ) arr = [ "trampCall( ", translate( sexp, [], sourceInfo ), " )" ] rubyExp = ppRubyExp( 0, arr ).flatten.join sourceInfo.setCompiled( rubyExp ) if not @compiled_code.has_key?( sourcefile ) @compiled_code[ sourcefile ] = Array.new end @compiled_code[ sourcefile ] << rubyExp if sourceInfo.varname @source_info_hash[ sourceInfo.varname ] = sourceInfo end printf( " rubyExp=<<<\n%s\n>>>\n", rubyExp ) if @debug eval( rubyExp, @binding, @lastSourcefile, @lastLineno ) rescue SystemStackError => e displayTopOfCalls( e ) raise e rescue => e displayBacktrace( e ) raise e end end |
#lispMethodEntry(name, _log) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 157 def lispMethodEntry( name, _log ) @call_depth += 1 if @trace_debug and _log puts " " * @call_depth + "ENTRY: " + name end end |
#lispMethodExit(name, _log) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 163 def lispMethodExit( name, _log ) if @trace_debug and _log puts " " * @call_depth + "exit: " + name end @call_depth -= 1 end |
#lispSymbolReference(sym, locals, translatedArr, sourcefile, lineno) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 679 def lispSymbolReference( sym, locals, translatedArr, sourcefile, lineno ) variable_sym = sym.split( /[.]/ )[0] global_cap = if variable_sym.match( /^[A-Z]/ ) nil else locals.flatten.include?( variable_sym ) ? nil : "@" end expression = if translatedArr [trampCallCap( sprintf( "%s%s(", global_cap, sym )), separateWith( translatedArr, "," ), sprintf( " )" )] else [trampCallCap( sprintf( "%s%s", global_cap, sym ))] end if global_cap if @runtimeCheck ["begin", [sprintf( "if @global_lisp_binding.has_key?('%s') then", variable_sym ), expression, sprintf( 'else raise NameError.new( "Error: undefined variable %s", "%s" ) end', toLispSymbol( variable_sym ), toLispSymbol( variable_sym )), sprintf( 'rescue => __e ; __e.set_backtrace( ["%s:%d"] + __e.backtrace ) ; raise __e', sourcefile, lineno )], "end"] else expression end else if @runtimeCheck ["begin", [expression, sprintf( 'rescue => __e ; __e.set_backtrace( ["%s:%d"] + __e.backtrace ) ; raise __e', sourcefile, lineno )], "end"] else expression end end end |
#macroexpandEngine(sexp, syntaxArray, lexicalVars) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 874 def ( sexp, syntaxArray, lexicalVars ) if @macroExpandCount <= 0 sexp else ( sexp, syntaxArray, lexicalVars ) end end |
#macroexpandEngineLoop(sexp, syntaxArray, lexicalVars) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 864 def ( sexp, syntaxArray, lexicalVars ) converge = true begin newSexp = ( sexp, syntaxArray, lexicalVars ) converge = _equal_QUMARK( newSexp, sexp ) sexp = newSexp end until converge or (@macroExpandCount <= 0) sexp end |
#macroexpandInit(initVal) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 860 def ( initVal ) @macroExpandCount = initVal end |
#macroexpandPhase(sexp) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1078 def ( sexp ) ( 100000 ) _strip_MIMARKlet_MIMARKsyntax_MIMARKkeyword( _strip_MIMARKsyntax_MIMARKquote( ( sexp, [], [] ))) end |
#makeBegin(args, locals) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 483 def makeBegin( args, locals ) ar = args.map { |e| translate( e.car, locals ) } if ar.size < 2 ar else ["begin #makeBegin", ar, "end"] end end |
#makeClosure(sym, args, locals) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 518 def makeClosure( sym, args, locals ) first = args.car rest = args.cdr ( _locals, argStr ) = toRubyParameter( first ) str = case sym when :macro sprintf( "LispMacro.new { %s ", argStr ) when :lambda sprintf( "Proc.new { %s ", argStr ) when :"%syntax" sprintf( "LispSyntax.new { %s ", argStr ) when :"&block" sprintf( "&Proc.new { %s ", argStr ) else raise "Error: makeClosure: unknown symbol type " + sym end ar = rest.map { |e| translate( e.car, locals.clone + [_locals]) } [ str, ar, "}" ] end |
#makeGuard(args, locals) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 612 def makeGuard( args, locals ) _var = toRubySymbol( args.car ) _locals = locals.clone + [_var] _case = translate( args.cdr.car, _locals ) _thunk = translate( args.cdr.cdr.car, _locals ) ["begin #makeGuard", [ _thunk ], "rescue => " + _var, [ _case ], "end" ] end |
#makeIf(args, locals) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 540 def makeIf( args, locals ) _condition = translate( args.car, locals ) _then = translate( args.cdr.car, locals ) _else = nil if 2 < args.length _else = translate( args.cdr.cdr.car, locals ) end if _else ["if ( ", _condition, " ) then", [ _then ], "else", [ _else ], "end"] else ["if ( ", _condition, " ) then", [ _then ], "end"] end end |
#makeLet(args, locals) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 560 def makeLet( args, locals ) _name = "___lambda" argvals = [] rest = args.cdr if _null_QUMARK( args.car ) # nothing to do lambda_head = sprintf( "%s = lambda { || ", _name ) else argsyms = args.car.map { |x| toRubySymbol( x.car.car.to_s ) } argvals = args.car.map.with_index { |x,i| translate( x.car.cdr.car, locals ) } lambda_head = sprintf( "%s = lambda { |%s| ", _name, argsyms.join( "," )) end ["begin #makeLet", [lambda_head, rest.map { |e| translate( e.car, locals.clone + [argsyms] ) }, sprintf( "} ; %s.call(", _name ), separateWith( argvals, "," ), sprintf( " )")], "end"] end |
#makeLetrec(args, locals) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 585 def makeLetrec( args, locals ) _name = "___lambda" argvals = [] argsyms = [] rest = args.cdr if _null_QUMARK( args.car ) # nothing to do lambda_head = sprintf( "%s = lambda { || ", _name ) else argsyms = args.car.map { |x| toRubySymbol( x.car.car.to_s ) } argvals = args.car.map { |x| translate( x.car.cdr.car, locals.clone + [argsyms] ) } lambda_head = sprintf( "%s = lambda { |%s| ", _name, argsyms.join( "," )) end ["begin #makeLetrec", [lambda_head, argsyms.zip( argvals ).map { |x| [ x[0], " = ", x[1] ] }, rest.map { |e| translate( e.car, locals.clone + [argsyms] ) }, sprintf( "} ; %s.call(", _name ), argsyms.map { |x| "nil" }.join( "," ), sprintf( " )")], "end"] end |
#makeSetVariable(car, cdr, locals, sourceInfo) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 474 def makeSetVariable( car, cdr, locals, sourceInfo ) cdr.cdr.each { |x| if Cell == x.class x.car = translate( x.car, locals, sourceInfo ) end } execFunc( car, cdr, car.sourcefile, car.lineno, locals, sourceInfo, EXEC_TYPE_ANONYMOUS ) end |
#optimizedFunc(origname, rubysym, args) ⇒ Object
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# File 'lib/nendo/ruby/optimized_func.rb', line 39 def optimizedFunc( origname, rubysym, args ) case origname when '+' case args.length when 0 [ "#{rubysym}_ARGS0()" ] when 1 ["( ", args[0][0]," ) "] when 2 ["( ", args[0][0], "+", args[1][0], " ) "] when 3 ["( ", args[0][0], "+", args[1][0], "+", args[2][0], " ) "] else false end when '-' case args.length when 0 [ "#{rubysym}_ARGS0()" ] when 1 ["( - ", args[0][0]," ) "] when 2 ["( ", args[0][0], "-", args[1][0], " ) "] when 3 ["( ", args[0][0], "-", args[1][0], "-", args[2][0], " ) "] else false end when '*' case args.length when 0 [ "#{rubysym}_ARGS0()" ] when 1 ["( ", args[0][0]," ) "] when 2 ["( ", args[0][0], "*", args[1][0], " ) "] when 3 ["( ", args[0][0], "*", args[1][0], "*", args[2][0], " ) "] else false end when 'car', 'cdr', 'not', 'length', 'null?', 'reverse', 'uniq', 'write', 'write-to-string', 'display', 'print', 'procedure?', 'macro?', 'symbol?', 'keyword?', 'syntax?', 'core-syntax?', 'pair?', '%list?', 'integer?', 'number?', 'string?', 'macroexpand-1', 'to-s', 'to-i', 'nil?', 'to-list', 'to-arr', 'intern', 'string->symbol', 'symbol->string', 'read-from-string' raise ArgumentError, "Error: #{origname} requires 1 argument. " unless 1 == args.length [ "#{rubysym}(", args[0], ")" ] when ">", ">=", "<", "<=" ["( ", args[0][0], origname, args[1][0], " ) "] when 'cons', '=', "eq?", "equal?", 'set-car!', 'set-cdr!' raise ArgumentError, "Error: #{origname} requires 2 arguments. " unless 2 == args.length [ "#{rubysym}(", args[0], args[1], ")" ] else false end end |
#ppRubyExp(level, exp) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 1085 def ppRubyExp( level, exp ) indent = @indent * level exp.map { |x| if Array == x.class ppRubyExp( level+1, x ) else str = sprintf( "%s", x ) if str.match( /^[*+-]$/ ) sprintf( "%s%s", indent, str ) elsif str == ">" or str == ">=" or str == "<" or str == "<=" sprintf( "%s%s", indent, str ) elsif str.match( /^[,]/ ) or str.match( /^ = / ) sprintf( "%s%s", indent, str ) else sprintf( "\n%s%s", indent, str ) end end } end |
#separateWith(arr, str) ⇒ Object
for code generation of Ruby’s argument values in case: str = “,”
- 1,“2”,3
-
> [
[ 1, ","] ["2", ","] [ 3 ] ]
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# File 'lib/nendo/ruby/evaluator.rb', line 340 def separateWith( arr, str ) seps = [] (arr.length-1).times {|n| seps << str } arr.zip( seps ).map{ |x| x.select { |elem| elem } } end |
#setArgv(argv) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 141 def setArgv( argv ) self.global_lisp_define( toRubySymbol( "*argv*"), argv.to_list ) end |
#setDisplayErrors(flag) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 153 def setDisplayErrors( flag ) @displayErrorsFlag = flag end |
#setOptimizeLevel(level) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 145 def setOptimizeLevel( level ) @optimize_level = level end |
#toLispSymbol(name) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 238 def toLispSymbol( name ) name = name.to_s if Symbol == name.class name = name.to_s if ParsedSymbol == name.class raise ArgumentError, sprintf( "Error: `%s' is not a lisp symbol", name ) if not ('_' == name[0]) name = name[1..-1] @char_table_ruby_to_lisp.each_pair { |key,val| name = name.gsub( Regexp.new( key ), val ) } name end |
#toRubyArgument(origname, pred, args) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 253 def toRubyArgument( origname, pred, args ) len = args.length num = pred.arity if 0 == num raise ArgumentError, errorMessageOf_toRubyArgument( origname, 1, num, len ) if 0 != len [] elsif 0 < num if 0 == len raise ArgumentError, errorMessageOf_toRubyArgument( origname, 4, num, len ) else raise ArgumentError, errorMessageOf_toRubyArgument( origname, 2, num, len ) if num != len args end else num = num.abs( )-1 raise ArgumentError, errorMessageOf_toRubyArgument( origname, 3, num, len ) if num > len params = [] rest = [] args.each_with_index { |x,i| if i < num params << x else rest << x end } result = [] if 0 < params.length result = params end if 0 == rest.length result << Cell.new else result << rest.to_list end result end end |
#toRubyParameter(argform) ⇒ Object
returns [ argsyms[], string ]
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# File 'lib/nendo/ruby/evaluator.rb', line 495 def toRubyParameter( argform ) argsyms = [] locals = [] rest = false if _symbol_QUMARK( argform ) rest = argform else argsyms = argform.map { |x| toRubySymbol( x.car ) } locals = argsyms.clone if argform.lastAtom rest = argform.getLastAtom end end if rest rest = toRubySymbol( rest ) locals << rest argsyms << "*__rest__" [ locals, sprintf( "|%s| %s = __rest__[0] ; ", argsyms.join( "," ), rest ) ] else [ locals, sprintf( "|%s|", argsyms.join( "," )) ] end end |
#toRubySymbol(name) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 205 def toRubySymbol( name ) if SyntacticClosure == name.class "_" + name.to_s else name = name.to_s if Symbol == name.class name = name.to_s if ParsedSymbol == name.class if 0 == name.length "" else name.gsub!( Regexp.new( Regexp.escape( '...' )), @char_table_lisp_to_ruby[ '...' ] ) arr = name.gsub( /["]/, '' ).split( /[.]/ ) tmp = arr[0] tmp.gsub!( /[:][:]/, " " ) # save '::' @char_table_lisp_to_ruby.each_pair { |key,val| tmp.gsub!( Regexp.new( Regexp.escape( key )), val ) } arr[0] = tmp.gsub( /[ ][ ]/, "::" ) if arr[0].match( /^[A-Z]/ ) # nothing to do elsif arr[0] == "" arr[0] = 'Kernel' else arr[0] = '_' + arr[0] end arr.join( "." ) end end end |
#toRubyValue(val) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 193 def toRubyValue( val ) if NilClass == val.class "nil" elsif TrueClass == val.class val.to_s elsif FalseClass == val.class val.to_s else val.to_s end end |
#trampCall(result) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 291 def trampCall( result ) while result.class == DelayedCallPacket result = __send__( result.rubysym + "_METHOD", result.origname, result.pred, result.args ) end result end |
#trampCallCap(sym) ⇒ Object
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# File 'lib/nendo/ruby/evaluator.rb', line 669 def trampCallCap( sym ) if isRubyInterface( sym ) arr = sym.split( /[.]/ ) arr[0] = sprintf( "trampCall(%s)", arr[0] ) arr.join( "." ) else "trampCall(" + sym + ")" end end |
#translate(sexpArg, locals, sourceInfo = nil) ⇒ Object
Lisp->Ruby translater
- locals is array of closure's local variable list
when S-expression is
(let ((a 1)
(b 2))
(let ((c 3))
(print (+ a b c))))
=> locals must be [["_a" "_b"]["_c"]] value.
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# File 'lib/nendo/ruby/evaluator.rb', line 724 def translate( sexpArg, locals, sourceInfo = nil ) sexp = castParsedSymbol( sexpArg ) case sexp when Cell inv = @core_syntax_hash.invert # if sexp.car.to_s.match( /begin/ ) and sexp.car.to_s.match( /core/ ) # p inv # p inv.keys # p sexp.car.class # p castParsedSymbol( sexp.car ).intern, inv.has_key?( castParsedSymbol( sexp.car ).intern ) # p inv[ castParsedSymbol( sexp.car ).intern ] # end if ParsedSymbol == sexp.car.class or Symbol == sexp.car.class car = if inv.has_key?( castParsedSymbol( sexp.car ).intern ) inv[ castParsedSymbol( sexp.car ).intern ] else castParsedSymbol( sexp.car ) end else car = sexp.car end car = castParsedSymbol( car ) if :quote == car genQuote( sexp.second ) elsif :"syntax-quote" == car [ "Cell.new(:\"syntax-quote\", ", genQuote( sexp.cdr ), ")" ] elsif sexp.isDotted raise NameError, "Error: can't eval dotted pair." elsif sexp.isNull [ "Cell.new()" ] elsif isDefines( car ) self.makeSetVariable( car, sexp.cdr, locals, sourceInfo ) elsif :begin == car self.makeBegin( sexp.cdr, locals ) elsif :lambda == car self.makeClosure( :lambda, sexp.cdr, locals ) elsif :macro == car self.makeClosure( :macro, sexp.cdr, locals ) elsif :"%syntax" == car self.makeClosure( :"%syntax", sexp.cdr, locals ) elsif :"&block" == car self.makeClosure( :"&block", sexp.cdr, locals ) elsif :if == car self.makeIf( sexp.cdr, locals ) elsif :"%let" == car self.makeLet( sexp.cdr, locals ) elsif :letrec == car self.makeLetrec( sexp.cdr, locals ) elsif :"%guard" == car self.makeGuard( sexp.cdr, locals ) elsif :"%tailcall" == car if sexp.cdr.car.is_a? Cell sexp = sexp.cdr.car if isDefines( sexp.car ) translate( sexp, locals, sourceInfo ) else if sexp.car.is_a? Cell self.apply( translate( sexp.car, locals, sourceInfo ), sexp.cdr, sexp.car.car.sourcefile, sexp.car.car.lineno, locals, sourceInfo, EXEC_TYPE_ANONYMOUS ) else self.apply( sexp.car, sexp.cdr, sexp.car.sourcefile, sexp.car.lineno, locals, sourceInfo, EXEC_TYPE_TAILCALL ) end end else raise RuntimeError, "Error: special form tailcall expects function call expression." end elsif Cell == sexp.car.class self.apply( translate( sexp.car, locals, sourceInfo ), sexp.cdr, sexp.car.car.sourcefile, sexp.car.car.lineno, locals, sourceInfo, EXEC_TYPE_ANONYMOUS ) else self.apply( sexp.car, sexp.cdr, sexp.car.sourcefile, sexp.car.lineno, locals, sourceInfo, EXEC_TYPE_NORMAL ) end when Array raise RuntimeError, "Error: can't eval unquoted vector." else case sexpArg when Symbol sym = sexp.to_s sym = toRubySymbol( sym ) lispSymbolReference( sym, locals, nil, sexp.sourcefile, sexp.lineno ) when ParsedSymbol sym = sexp.to_s sym = toRubySymbol( sym ) lispSymbolReference( sym, locals, nil, sexpArg.sourcefile, sexpArg.lineno ) when Fixnum sexp.to_s when String, LispString sprintf( "\"%s\"", LispString.escape( sexp )) when LispRegexp if sexp.ignoreCase sprintf( "Regexp.new( \"%s\", Regexp::IGNORECASE)", sexp.escape ) else sprintf( "Regexp.new( \"%s\")", sexp.escape ) end when LispKeyword sprintf( "LispKeyword.new( \"%s\" )", sexp.key ) when Nil "Nil.new" when TrueClass, FalseClass, NilClass # reserved symbols toRubyValue( sexp ) when SyntacticClosure toRubySymbol( sexp ) else sexp.to_s end end end |