lib: Update libs to use correctly ascii and code_point
[nit.git] / src / interpreter / naive_interpreter.nit
1 # This file is part of NIT ( http://www.nitlanguage.org ).
2 #
3 # Copyright 2012 Jean Privat <jean@pryen.org>
4 #
5 # Licensed under the Apache License, Version 2.0 (the "License");
6 # you may not use this file except in compliance with the License.
7 # You may obtain a copy of the License at
8 #
9 # http://www.apache.org/licenses/LICENSE-2.0
10 #
11 # Unless required by applicable law or agreed to in writing, software
12 # distributed under the License is distributed on an "AS IS" BASIS,
13 # WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14 # See the License for the specific language governing permissions and
15 # limitations under the License.
16
17 # Interpretation of a Nit program directly on the AST
18 module naive_interpreter
19
20 import literal
21 import semantize
22 private import parser::tables
23 import mixin
24 import primitive_types
25
26 redef class ToolContext
27 # --discover-call-trace
28 var opt_discover_call_trace = new OptionBool("Trace calls of the first invocation of a method", "--discover-call-trace")
29
30 redef init
31 do
32 super
33 self.option_context.add_option(self.opt_discover_call_trace)
34 end
35 end
36
37 redef class ModelBuilder
38 # Execute the program from the entry point (`Sys::main`) of the `mainmodule`
39 # `arguments` are the command-line arguments in order
40 # REQUIRE that:
41 # 1. the AST is fully loaded.
42 # 2. the model is fully built.
43 # 3. the instructions are fully analysed.
44 fun run_naive_interpreter(mainmodule: MModule, arguments: Array[String])
45 do
46 var time0 = get_time
47 self.toolcontext.info("*** START INTERPRETING ***", 1)
48
49 var interpreter = new NaiveInterpreter(self, mainmodule, arguments)
50 interpreter.start(mainmodule)
51
52 var time1 = get_time
53 self.toolcontext.info("*** END INTERPRETING: {time1-time0} ***", 2)
54 end
55 end
56
57 # The visitor that interprets the Nit Program by walking on the AST
58 class NaiveInterpreter
59 # The modelbuilder that know the AST and its associations with the model
60 var modelbuilder: ModelBuilder
61
62 # The main module of the program (used to lookup method)
63 var mainmodule: MModule
64
65 # The command line arguments of the interpreted program
66 # arguments.first is the program name
67 # arguments[1] is the first argument
68 var arguments: Array[String]
69
70 # The main Sys instance
71 var mainobj: nullable Instance is noinit
72
73 init
74 do
75 if mainmodule.model.get_mclasses_by_name("Bool") != null then
76 self.true_instance = new PrimitiveInstance[Bool](mainmodule.bool_type, true)
77 init_instance_primitive(self.true_instance)
78 self.false_instance = new PrimitiveInstance[Bool](mainmodule.bool_type, false)
79 init_instance_primitive(self.false_instance)
80 end
81 self.null_instance = new PrimitiveInstance[nullable Object](mainmodule.model.null_type, null)
82 end
83
84 # Starts the interpreter on the main module of a program
85 fun start(mainmodule: MModule) do
86 var interpreter = self
87 var sys_type = mainmodule.sys_type
88 if sys_type == null then return # no class Sys
89 var mainobj = new MutableInstance(sys_type)
90 interpreter.mainobj = mainobj
91 interpreter.init_instance(mainobj)
92 var initprop = mainmodule.try_get_primitive_method("init", sys_type.mclass)
93 if initprop != null then
94 interpreter.send(initprop, [mainobj])
95 end
96 var mainprop = mainmodule.try_get_primitive_method("run", sys_type.mclass) or else
97 mainmodule.try_get_primitive_method("main", sys_type.mclass)
98 if mainprop != null then
99 interpreter.send(mainprop, [mainobj])
100 end
101 end
102
103 # Subtype test in the context of the mainmodule
104 fun is_subtype(sub, sup: MType): Bool
105 do
106 return sub.is_subtype(self.mainmodule, current_receiver_class, sup)
107 end
108
109 # Get a primitive method in the context of the main module
110 fun force_get_primitive_method(name: String, recv: MType): MMethod
111 do
112 assert recv isa MClassType
113 return self.modelbuilder.force_get_primitive_method(current_node, name, recv.mclass, self.mainmodule)
114 end
115
116 # Is a return executed?
117 # Set this mark to skip the evaluation until the end of the specified method frame
118 var returnmark: nullable FRAME = null
119
120 # Is a break or a continue executed?
121 # Set this mark to skip the evaluation until a labeled statement catch it with `is_escape`
122 var escapemark: nullable EscapeMark = null
123
124 # Is a return or a break or a continue executed?
125 # Use this function to know if you must skip the evaluation of statements
126 fun is_escaping: Bool do return returnmark != null or escapemark != null
127
128 # The value associated with the current return/break/continue, if any.
129 # Set the value when you set a escapemark.
130 # Read the value when you catch a mark or reach the end of a method
131 var escapevalue: nullable Instance = null
132
133 # If there is a break/continue and is associated with `escapemark`, then return true and clear the mark.
134 # If there is no break/continue or if `escapemark` is null then return false.
135 # Use this function to catch a potential break/continue.
136 fun is_escape(escapemark: nullable EscapeMark): Bool
137 do
138 if escapemark != null and self.escapemark == escapemark then
139 self.escapemark = null
140 return true
141 else
142 return false
143 end
144 end
145
146 # Evaluate `n` as an expression in the current context.
147 # Return the value of the expression.
148 # If `n` cannot be evaluated, then aborts.
149 fun expr(n: AExpr): nullable Instance
150 do
151 var frame = self.frame
152 var old = frame.current_node
153 frame.current_node = n
154 #n.debug("IN Execute expr")
155 var i = n.expr(self)
156 if i == null and not self.is_escaping then
157 n.debug("inconsitance: no value and not escaping.")
158 end
159 var implicit_cast_to = n.implicit_cast_to
160 if implicit_cast_to != null then
161 var mtype = self.unanchor_type(implicit_cast_to)
162 if not self.is_subtype(i.mtype, mtype) then n.fatal(self, "Cast failed. Expected `{implicit_cast_to}`, got `{i.mtype}`")
163 end
164
165 #n.debug("OUT Execute expr: value is {i}")
166 #if not is_subtype(i.mtype, n.mtype.as(not null)) then n.debug("Expected {n.mtype.as(not null)} got {i}")
167 frame.current_node = old
168 return i
169 end
170
171 # Evaluate `n` as a statement in the current context.
172 # Do nothing if `n` is null.
173 # If `n` cannot be evaluated, then aborts.
174 fun stmt(n: nullable AExpr)
175 do
176 if n == null then return
177
178 if n.comprehension != null then
179 var comprehension = frame.comprehension.as(not null)
180 var i = expr(n)
181 if i != null then comprehension.add(i)
182 return
183 end
184
185 var frame = self.frame
186 var old = frame.current_node
187 frame.current_node = n
188 n.stmt(self)
189 frame.current_node = old
190 end
191
192 # Map used to store values of nodes that must be evaluated once in the system (`AOnceExpr`)
193 var onces: Map[ANode, Instance] = new HashMap[ANode, Instance]
194
195 # Return the boolean instance associated with `val`.
196 fun bool_instance(val: Bool): Instance
197 do
198 if val then return self.true_instance else return self.false_instance
199 end
200
201 # Return the integer instance associated with `val`.
202 fun int_instance(val: Int): Instance
203 do
204 var t = mainmodule.int_type
205 var instance = new PrimitiveInstance[Int](t, val)
206 init_instance_primitive(instance)
207 return instance
208 end
209
210 # Return the byte instance associated with `val`.
211 fun byte_instance(val: Byte): Instance
212 do
213 var t = mainmodule.byte_type
214 var instance = new PrimitiveInstance[Byte](t, val)
215 init_instance_primitive(instance)
216 return instance
217 end
218
219 # Return the int8 instance associated with `val`.
220 fun int8_instance(val: Int8): Instance
221 do
222 var t = mainmodule.int8_type
223 var instance = new PrimitiveInstance[Int8](t, val)
224 init_instance_primitive(instance)
225 return instance
226 end
227
228 # Return the int16 instance associated with `val`.
229 fun int16_instance(val: Int16): Instance
230 do
231 var t = mainmodule.int16_type
232 var instance = new PrimitiveInstance[Int16](t, val)
233 init_instance_primitive(instance)
234 return instance
235 end
236
237 # Return the uint16 instance associated with `val`.
238 fun uint16_instance(val: UInt16): Instance
239 do
240 var t = mainmodule.uint16_type
241 var instance = new PrimitiveInstance[UInt16](t, val)
242 init_instance_primitive(instance)
243 return instance
244 end
245
246 # Return the int32 instance associated with `val`.
247 fun int32_instance(val: Int32): Instance
248 do
249 var t = mainmodule.int32_type
250 var instance = new PrimitiveInstance[Int32](t, val)
251 init_instance_primitive(instance)
252 return instance
253 end
254
255 # Return the uint32 instance associated with `val`.
256 fun uint32_instance(val: UInt32): Instance
257 do
258 var t = mainmodule.uint32_type
259 var instance = new PrimitiveInstance[UInt32](t, val)
260 init_instance_primitive(instance)
261 return instance
262 end
263
264 # Return the char instance associated with `val`.
265 fun char_instance(val: Char): Instance
266 do
267 var t = mainmodule.char_type
268 var instance = new PrimitiveInstance[Char](t, val)
269 init_instance_primitive(instance)
270 return instance
271 end
272
273 # Return the float instance associated with `val`.
274 fun float_instance(val: Float): Instance
275 do
276 var t = mainmodule.float_type
277 var instance = new PrimitiveInstance[Float](t, val)
278 init_instance_primitive(instance)
279 return instance
280 end
281
282 # The unique instance of the `true` value.
283 var true_instance: Instance is noinit
284
285 # The unique instance of the `false` value.
286 var false_instance: Instance is noinit
287
288 # The unique instance of the `null` value.
289 var null_instance: Instance is noinit
290
291 # Return a new array made of `values`.
292 # The dynamic type of the result is Array[elttype].
293 fun array_instance(values: Array[Instance], elttype: MType): Instance
294 do
295 assert not elttype.need_anchor
296 var nat = new PrimitiveInstance[Array[Instance]](mainmodule.native_array_type(elttype), values)
297 init_instance_primitive(nat)
298 var mtype = mainmodule.array_type(elttype)
299 var res = new MutableInstance(mtype)
300 self.init_instance(res)
301 self.send(self.force_get_primitive_method("with_native", mtype), [res, nat, self.int_instance(values.length)])
302 return res
303 end
304
305 # Return a instance associated to a primitive class
306 # Current primitive classes are `Int`, `Bool`, and `String`
307 fun value_instance(object: Object): Instance
308 do
309 if object isa Int then
310 return int_instance(object)
311 else if object isa Bool then
312 return bool_instance(object)
313 else if object isa String then
314 return string_instance(object)
315 else
316 abort
317 end
318 end
319
320 # Return a new native string initialized with `txt`
321 fun native_string_instance(txt: String): Instance
322 do
323 var instance = native_string_instance_len(txt.bytelen+1)
324 var val = instance.val
325 val[txt.bytelen] = 0u8
326 txt.to_cstring.copy_to(val, txt.bytelen, 0, 0)
327
328 return instance
329 end
330
331 # Return a new native string initialized of `length`
332 fun native_string_instance_len(length: Int): PrimitiveInstance[NativeString]
333 do
334 var val = new NativeString(length)
335
336 var t = mainmodule.native_string_type
337 var instance = new PrimitiveInstance[NativeString](t, val)
338 init_instance_primitive(instance)
339 return instance
340 end
341
342 # Return a new String instance for `txt`
343 fun string_instance(txt: String): Instance
344 do
345 var nat = native_string_instance(txt)
346 var res = self.send(self.force_get_primitive_method("to_s_full", nat.mtype), [nat, self.int_instance(txt.bytelen), self.int_instance(txt.length)])
347 assert res != null
348 return res
349 end
350
351 # The virtual type of the frames used in the execution engine
352 type FRAME: Frame
353
354 # The current frame used to store local variables of the current method executed
355 fun frame: FRAME do return frames.first
356
357 # The stack of all frames. The first one is the current one.
358 var frames = new List[FRAME]
359
360 # Return a stack trace. One line per function
361 fun stack_trace: String
362 do
363 var b = new FlatBuffer
364 b.append(",---- Stack trace -- - - -\n")
365 for f in frames do
366 b.append("| {f.mpropdef} ({f.current_node.location})\n")
367 end
368 b.append("`------------------- - - -")
369 return b.to_s
370 end
371
372 # The current node, used to print errors, debug and stack-traces
373 fun current_node: nullable ANode
374 do
375 if frames.is_empty then return null
376 return frames.first.current_node
377 end
378
379 # The dynamic type of the current `self`
380 fun current_receiver_class: MClassType
381 do
382 return frames.first.arguments.first.mtype.as(MClassType)
383 end
384
385 # Initialize the environment for a call and return a new Frame
386 # *`node` The AST node
387 # *`mpropdef` The corresponding mpropdef
388 # *`args` Arguments of the call
389 fun new_frame(node: ANode, mpropdef: MPropDef, args: Array[Instance]): FRAME
390 do
391 return new InterpreterFrame(node, mpropdef, args)
392 end
393
394 # Exit the program with a message
395 fun fatal(message: String)
396 do
397 var node = current_node
398 if node == null then
399 print message
400 else
401 node.fatal(self, message)
402 end
403 exit(1)
404 end
405
406 # Debug on the current node
407 fun debug(message: String)
408 do
409 var node = current_node
410 if node == null then
411 print message
412 else
413 node.debug(message)
414 end
415 end
416
417 # Retrieve the value of the variable in the current frame
418 fun read_variable(v: Variable): Instance
419 do
420 var f = frames.first.as(InterpreterFrame)
421 return f.map[v]
422 end
423
424 # Assign the value of the variable in the current frame
425 fun write_variable(v: Variable, value: Instance)
426 do
427 var f = frames.first.as(InterpreterFrame)
428 f.map[v] = value
429 end
430
431 # Store known methods, used to trace methods as they are reached
432 var discover_call_trace: Set[MMethodDef] = new HashSet[MMethodDef]
433
434 # Evaluate `args` as expressions in the call of `mpropdef` on `recv`.
435 # This method is used to manage varargs in signatures and returns the real array
436 # of instances to use in the call.
437 # Return `null` if one of the evaluation of the arguments return null.
438 fun varargize(mpropdef: MMethodDef, map: nullable SignatureMap, recv: Instance, args: SequenceRead[AExpr]): nullable Array[Instance]
439 do
440 var msignature = mpropdef.new_msignature or else mpropdef.msignature.as(not null)
441 var res = new Array[Instance]
442 res.add(recv)
443
444 if msignature.arity == 0 then return res
445
446 if map == null then
447 assert args.length == msignature.arity else debug("Expected {msignature.arity} args, got {args.length}")
448 for ne in args do
449 var e = self.expr(ne)
450 if e == null then return null
451 res.add e
452 end
453 return res
454 end
455
456 # Eval in order of arguments, not parameters
457 var exprs = new Array[Instance].with_capacity(args.length)
458 for ne in args do
459 var e = self.expr(ne)
460 if e == null then return null
461 exprs.add e
462 end
463
464
465 # Fill `res` with the result of the evaluation according to the mapping
466 for i in [0..msignature.arity[ do
467 var param = msignature.mparameters[i]
468 var j = map.map.get_or_null(i)
469 if j == null then
470 # default value
471 res.add(null_instance)
472 continue
473 end
474 if param.is_vararg and map.vararg_decl > 0 then
475 var vararg = exprs.sub(j, map.vararg_decl)
476 var elttype = param.mtype.anchor_to(self.mainmodule, recv.mtype.as(MClassType))
477 var arg = self.array_instance(vararg, elttype)
478 res.add(arg)
479 continue
480 end
481 res.add exprs[j]
482 end
483 return res
484 end
485
486 # Execute `mpropdef` for a `args` (where `args[0]` is the receiver).
487 # Return a value if `mpropdef` is a function, or null if it is a procedure.
488 # The call is direct/static. There is no message-sending/late-binding.
489 fun call(mpropdef: MMethodDef, args: Array[Instance]): nullable Instance
490 do
491 if self.modelbuilder.toolcontext.opt_discover_call_trace.value and not self.discover_call_trace.has(mpropdef) then
492 self.discover_call_trace.add mpropdef
493 self.debug("Discovered {mpropdef}")
494 end
495 assert args.length == mpropdef.msignature.arity + 1 else debug("Invalid arity for {mpropdef}. {args.length} arguments given.")
496
497 # Look for the AST node that implements the property
498 var val = mpropdef.constant_value
499
500 var node = modelbuilder.mpropdef2node(mpropdef)
501 if mpropdef.is_abstract then
502 if node != null then
503 self.frames.unshift new_frame(node, mpropdef, args)
504 end
505 fatal("Abstract method `{mpropdef.mproperty.name}` called on `{args.first.mtype}`")
506 abort
507 end
508
509 if node isa APropdef then
510 self.parameter_check(node, mpropdef, args)
511 return node.call(self, mpropdef, args)
512 else if node isa AClassdef then
513 self.parameter_check(node, mpropdef, args)
514 return node.call(self, mpropdef, args)
515 else if node != null then
516 fatal("Fatal Error: method {mpropdef} associated to unexpected AST node {node.location}")
517 abort
518 else if val != null then
519 return value_instance(val)
520 else
521 fatal("Fatal Error: method {mpropdef} not found in the AST")
522 abort
523 end
524 end
525
526 # Execute type checks of covariant parameters
527 fun parameter_check(node: ANode, mpropdef: MMethodDef, args: Array[Instance])
528 do
529 var msignature = mpropdef.msignature
530 for i in [0..msignature.arity[ do
531 # skip test for vararg since the array is instantiated with the correct polymorphic type
532 if msignature.vararg_rank == i then continue
533
534 # skip if the cast is not required
535 var origmtype = mpropdef.mproperty.intro.msignature.mparameters[i].mtype
536 if not origmtype.need_anchor then continue
537
538 #print "{mpropdef}: {mpropdef.mproperty.intro.msignature.mparameters[i]}"
539
540 # get the parameter type
541 var mtype = msignature.mparameters[i].mtype
542 var anchor = args.first.mtype.as(MClassType)
543 var amtype = mtype.anchor_to(self.mainmodule, anchor)
544 if not args[i+1].mtype.is_subtype(self.mainmodule, anchor, amtype) then
545 node.fatal(self, "Cast failed. Expected `{mtype}`, got `{args[i+1].mtype}`")
546 end
547 end
548 end
549
550 # Common code for runtime injected calls and normal calls
551 fun send_commons(mproperty: MMethod, args: Array[Instance], mtype: MType): nullable Instance
552 do
553 if mtype isa MNullType then
554 if mproperty.name == "==" or mproperty.name == "is_same_instance" then
555 return self.bool_instance(args[0] == args[1])
556 else if mproperty.name == "!=" then
557 return self.bool_instance(args[0] != args[1])
558 end
559 #fatal("Receiver is null. {mproperty}. {args.join(" ")} {self.frame.current_node.class_name}")
560 fatal("Receiver is null")
561 end
562 return null
563 end
564
565 # Execute a full `callsite` for given `args`
566 # Use this method, instead of `send` to execute and control the additional behavior of the call-sites
567 fun callsite(callsite: nullable CallSite, arguments: Array[Instance]): nullable Instance
568 do
569 var initializers = callsite.mpropdef.initializers
570 if not initializers.is_empty then
571 var recv = arguments.first
572 var i = 1
573 for p in initializers do
574 if p isa MMethod then
575 var args = [recv]
576 for x in p.intro.msignature.mparameters do
577 args.add arguments[i]
578 i += 1
579 end
580 self.send(p, args)
581 else if p isa MAttribute then
582 assert recv isa MutableInstance
583 write_attribute(p, recv, arguments[i])
584 i += 1
585 else abort
586 end
587 assert i == arguments.length
588
589 return send(callsite.mproperty, [recv])
590 end
591 return send(callsite.mproperty, arguments)
592 end
593
594 # Execute `mproperty` for a `args` (where `args[0]` is the receiver).
595 # Return a value if `mproperty` is a function, or null if it is a procedure.
596 # The call is polymorphic. There is a message-sending/late-binding according to the receiver (args[0]).
597 fun send(mproperty: MMethod, args: Array[Instance]): nullable Instance
598 do
599 var recv = args.first
600 var mtype = recv.mtype
601 var ret = send_commons(mproperty, args, mtype)
602 if ret != null then return ret
603 var propdef = mproperty.lookup_first_definition(self.mainmodule, mtype)
604 return self.call(propdef, args)
605 end
606
607 # Read the attribute `mproperty` of an instance `recv` and return its value.
608 # If the attribute in not yet initialized, then aborts with an error message.
609 fun read_attribute(mproperty: MAttribute, recv: Instance): Instance
610 do
611 assert recv isa MutableInstance
612 if not recv.attributes.has_key(mproperty) then
613 fatal("Uninitialized attribute {mproperty.name}")
614 abort
615 end
616 return recv.attributes[mproperty]
617 end
618
619 # Replace in `recv` the value of the attribute `mproperty` by `value`
620 fun write_attribute(mproperty: MAttribute, recv: Instance, value: Instance)
621 do
622 assert recv isa MutableInstance
623 recv.attributes[mproperty] = value
624 end
625
626 # Is the attribute `mproperty` initialized the instance `recv`?
627 fun isset_attribute(mproperty: MAttribute, recv: Instance): Bool
628 do
629 assert recv isa MutableInstance
630 return recv.attributes.has_key(mproperty)
631 end
632
633 # Collect attributes of a type in the order of their init
634 fun collect_attr_propdef(mtype: MType): Array[AAttrPropdef]
635 do
636 var cache = self.collect_attr_propdef_cache
637 if cache.has_key(mtype) then return cache[mtype]
638
639 var res = new Array[AAttrPropdef]
640 var cds = mtype.collect_mclassdefs(self.mainmodule).to_a
641 self.mainmodule.linearize_mclassdefs(cds)
642 for cd in cds do
643 res.add_all(modelbuilder.collect_attr_propdef(cd))
644 end
645
646 cache[mtype] = res
647 return res
648 end
649
650 private var collect_attr_propdef_cache = new HashMap[MType, Array[AAttrPropdef]]
651
652 # Fill the initial values of the newly created instance `recv`.
653 # `recv.mtype` is used to know what must be filled.
654 fun init_instance(recv: Instance)
655 do
656 for npropdef in collect_attr_propdef(recv.mtype) do
657 npropdef.init_expr(self, recv)
658 end
659 end
660
661 # A hook to initialize a `PrimitiveInstance`
662 fun init_instance_primitive(recv: Instance) do end
663
664 # This function determines the correct type according to the receiver of the current propdef (self).
665 fun unanchor_type(mtype: MType): MType
666 do
667 return mtype.anchor_to(self.mainmodule, current_receiver_class)
668 end
669
670 # Placebo instance used to mark internal error result when `null` already have a meaning.
671 # TODO: replace with multiple return or something better
672 var error_instance = new MutableInstance(modelbuilder.model.null_type) is lazy
673 end
674
675 # An instance represents a value of the executed program.
676 abstract class Instance
677 # The dynamic type of the instance
678 # ASSERT: not self.mtype.is_anchored
679 var mtype: MType
680
681 # return true if the instance is the true value.
682 # return false if the instance is the true value.
683 # else aborts
684 fun is_true: Bool do abort
685
686 # Return true if `self` IS `o` (using the Nit semantic of is)
687 fun eq_is(o: Instance): Bool do return self.is_same_instance(o)
688
689 # Human readable object identity "Type#number"
690 redef fun to_s do return "{mtype}"
691
692 # Return the integer value if the instance is an integer.
693 # else aborts
694 fun to_i: Int do abort
695
696 # Return the integer value if the instance is a float.
697 # else aborts
698 fun to_f: Float do abort
699
700 # Return the integer value if the instance is a byte.
701 # else aborts
702 fun to_b: Byte do abort
703
704 # Return the integer value if the instance is a int8.
705 # else aborts
706 fun to_i8: Int8 do abort
707
708 # Return the integer value if the instance is a int16.
709 # else aborts
710 fun to_i16: Int16 do abort
711
712 # Return the integer value if the instance is a uint16.
713 # else aborts
714 fun to_u16: UInt16 do abort
715
716 # Return the integer value if the instance is a int32.
717 # else aborts
718 fun to_i32: Int32 do abort
719
720 # Return the integer value if the instance is a uint32.
721 # else aborts
722 fun to_u32: UInt32 do abort
723
724 # The real value encapsulated if the instance is primitive.
725 # Else aborts.
726 fun val: nullable Object do abort
727 end
728
729 # A instance with attribute (standards objects)
730 class MutableInstance
731 super Instance
732
733 # The values of the attributes
734 var attributes: Map[MAttribute, Instance] = new HashMap[MAttribute, Instance]
735 end
736
737 # Special instance to handle primitives values (int, bool, etc.)
738 # The trick it just to encapsulate the <<real>> value
739 class PrimitiveInstance[E]
740 super Instance
741
742 # The real value encapsulated
743 redef var val: E
744
745 redef fun is_true
746 do
747 if val == true then return true
748 if val == false then return false
749 abort
750 end
751
752 redef fun ==(o)
753 do
754 if not o isa PrimitiveInstance[nullable Object] then return false
755 return self.val == o.val
756 end
757
758 redef fun eq_is(o)
759 do
760 if not o isa PrimitiveInstance[nullable Object] then return false
761 return self.val.is_same_instance(o.val)
762 end
763
764 redef fun to_s do return "{mtype}#{val.object_id}({val or else "null"})"
765
766 redef fun to_i do return val.as(Int)
767
768 redef fun to_f do return val.as(Float)
769
770 redef fun to_b do return val.as(Byte)
771
772 redef fun to_i8 do return val.as(Int8)
773
774 redef fun to_i16 do return val.as(Int16)
775
776 redef fun to_u16 do return val.as(UInt16)
777
778 redef fun to_i32 do return val.as(Int32)
779
780 redef fun to_u32 do return val.as(UInt32)
781 end
782
783 # Information about local variables in a running method
784 abstract class Frame
785 # The current visited node
786 # The node is stored by frame to keep a stack trace
787 var current_node: ANode
788 # The executed property.
789 # A Method in case of a call, an attribute in case of a default initialization.
790 var mpropdef: MPropDef
791 # Arguments of the method (the first is the receiver)
792 var arguments: Array[Instance]
793 # Indicate if the expression has an array comprehension form
794 var comprehension: nullable Array[Instance] = null
795 end
796
797 # Implementation of a Frame with a Hashmap to store local variables
798 class InterpreterFrame
799 super Frame
800
801 # Mapping between a variable and the current value
802 private var map: Map[Variable, Instance] = new HashMap[Variable, Instance]
803 end
804
805 redef class ANode
806 # Aborts the program with a message
807 # `v` is used to know if a colored message is displayed or not
808 fun fatal(v: NaiveInterpreter, message: String)
809 do
810 if v.modelbuilder.toolcontext.opt_no_color.value == true then
811 sys.stderr.write("Runtime error: {message} ({location.file.filename}:{location.line_start})\n")
812 else
813 sys.stderr.write("{location}: Runtime error: {message}\n{location.colored_line("0;31")}\n")
814 sys.stderr.write(v.stack_trace)
815 sys.stderr.write("\n")
816 end
817 exit(1)
818 end
819 end
820
821 redef class APropdef
822 # Execute a `mpropdef` associated with the current node.
823 private fun call(v: NaiveInterpreter, mpropdef: MMethodDef, args: Array[Instance]): nullable Instance
824 do
825 fatal(v, "NOT YET IMPLEMENTED method kind {class_name}. {mpropdef}")
826 abort
827 end
828 end
829
830 redef class AMethPropdef
831 super TablesCapable
832
833 redef fun call(v, mpropdef, args)
834 do
835 var f = v.new_frame(self, mpropdef, args)
836 var res = call_commons(v, mpropdef, args, f)
837 v.frames.shift
838 if v.returnmark == f then
839 v.returnmark = null
840 res = v.escapevalue
841 v.escapevalue = null
842 return res
843 end
844 return res
845 end
846
847 private fun call_commons(v: NaiveInterpreter, mpropdef: MMethodDef, arguments: Array[Instance], f: Frame): nullable Instance
848 do
849 v.frames.unshift(f)
850
851 for i in [0..mpropdef.msignature.arity[ do
852 var variable = self.n_signature.n_params[i].variable
853 assert variable != null
854 v.write_variable(variable, arguments[i+1])
855 end
856
857 # Call the implicit super-init
858 var auto_super_inits = self.auto_super_inits
859 if auto_super_inits != null then
860 var args = [arguments.first]
861 for auto_super_init in auto_super_inits do
862 args.clear
863 for i in [0..auto_super_init.msignature.arity+1[ do
864 args.add(arguments[i])
865 end
866 assert auto_super_init.mproperty != mpropdef.mproperty
867 v.callsite(auto_super_init, args)
868 end
869 end
870 if auto_super_call then
871 # standard call-next-method
872 var superpd = mpropdef.lookup_next_definition(v.mainmodule, arguments.first.mtype)
873 v.call(superpd, arguments)
874 end
875
876 if mpropdef.is_intern or mpropdef.is_extern then
877 var res = intern_call(v, mpropdef, arguments)
878 if res != v.error_instance then return res
879 end
880
881 if n_block != null then
882 v.stmt(self.n_block)
883 return null
884 end
885
886 if mpropdef.is_intern then
887 fatal(v, "NOT YET IMPLEMENTED intern {mpropdef}")
888 else if mpropdef.is_extern then
889 var res = call_extern(v, mpropdef, arguments, f)
890 if res != v.error_instance then return res
891 else
892 fatal(v, "NOT YET IMPLEMENTED <wat?> {mpropdef}")
893 end
894 abort
895 end
896
897 # Call this extern method
898 protected fun call_extern(v: NaiveInterpreter, mpropdef: MMethodDef, arguments: Array[Instance], f: Frame): nullable Instance
899 do
900 fatal(v, "NOT YET IMPLEMENTED extern {mpropdef}")
901 return v.error_instance
902 end
903
904 # Interprets a intern or a shortcut extern method.
905 # Returns the result for a function, `null` for a procedure, or `error_instance` if the method is unknown.
906 private fun intern_call(v: NaiveInterpreter, mpropdef: MMethodDef, args: Array[Instance]): nullable Instance
907 do
908 var pname = mpropdef.mproperty.name
909 var cname = mpropdef.mclassdef.mclass.name
910 if pname == "output" then
911 var recv = args.first
912 recv.val.output
913 return null
914 else if pname == "object_id" then
915 var recv = args.first
916 if recv isa PrimitiveInstance[Object] then
917 return v.int_instance(recv.val.object_id)
918 else
919 return v.int_instance(recv.object_id)
920 end
921 else if pname == "output_class_name" then
922 var recv = args.first
923 print recv.mtype
924 return null
925 else if pname == "native_class_name" then
926 var recv = args.first
927 var txt = recv.mtype.to_s
928 return v.native_string_instance(txt)
929 else if pname == "==" then
930 # == is correctly redefined for instances
931 return v.bool_instance(args[0] == args[1])
932 else if pname == "!=" then
933 return v.bool_instance(args[0] != args[1])
934 else if pname == "is_same_type" then
935 return v.bool_instance(args[0].mtype == args[1].mtype)
936 else if pname == "is_same_instance" then
937 return v.bool_instance(args[0].eq_is(args[1]))
938 else if pname == "exit" then
939 exit(args[1].to_i)
940 abort
941 else if pname == "buffer_mode_full" then
942 return v.int_instance(sys.buffer_mode_full)
943 else if pname == "buffer_mode_line" then
944 return v.int_instance(sys.buffer_mode_line)
945 else if pname == "buffer_mode_none" then
946 return v.int_instance(sys.buffer_mode_none)
947 else if pname == "sys" then
948 return v.mainobj
949 else if cname == "Int" then
950 var recvval = args[0].to_i
951 if pname == "unary -" then
952 return v.int_instance(-recvval)
953 else if pname == "unary +" then
954 return args[0]
955 else if pname == "+" then
956 return v.int_instance(recvval + args[1].to_i)
957 else if pname == "-" then
958 return v.int_instance(recvval - args[1].to_i)
959 else if pname == "*" then
960 return v.int_instance(recvval * args[1].to_i)
961 else if pname == "%" then
962 return v.int_instance(recvval % args[1].to_i)
963 else if pname == "/" then
964 return v.int_instance(recvval / args[1].to_i)
965 else if pname == "<" then
966 return v.bool_instance(recvval < args[1].to_i)
967 else if pname == ">" then
968 return v.bool_instance(recvval > args[1].to_i)
969 else if pname == "<=" then
970 return v.bool_instance(recvval <= args[1].to_i)
971 else if pname == ">=" then
972 return v.bool_instance(recvval >= args[1].to_i)
973 else if pname == "<=>" then
974 return v.int_instance(recvval <=> args[1].to_i)
975 else if pname == "to_f" then
976 return v.float_instance(recvval.to_f)
977 else if pname == "to_b" then
978 return v.byte_instance(recvval.to_b)
979 else if pname == "<<" then
980 return v.int_instance(recvval << args[1].to_i)
981 else if pname == ">>" then
982 return v.int_instance(recvval >> args[1].to_i)
983 else if pname == "to_i8" then
984 return v.int8_instance(recvval.to_i8)
985 else if pname == "to_i16" then
986 return v.int16_instance(recvval.to_i16)
987 else if pname == "to_u16" then
988 return v.uint16_instance(recvval.to_u16)
989 else if pname == "to_i32" then
990 return v.int32_instance(recvval.to_i32)
991 else if pname == "to_u32" then
992 return v.uint32_instance(recvval.to_u32)
993 else if pname == "rand" then
994 var res = recvval.rand
995 return v.int_instance(res)
996 end
997 else if cname == "Byte" then
998 var recvval = args[0].to_b
999 if pname == "unary -" then
1000 return v.byte_instance(-recvval)
1001 else if pname == "unary +" then
1002 return args[0]
1003 else if pname == "+" then
1004 return v.byte_instance(recvval + args[1].to_b)
1005 else if pname == "-" then
1006 return v.byte_instance(recvval - args[1].to_b)
1007 else if pname == "*" then
1008 return v.byte_instance(recvval * args[1].to_b)
1009 else if pname == "%" then
1010 return v.byte_instance(recvval % args[1].to_b)
1011 else if pname == "/" then
1012 return v.byte_instance(recvval / args[1].to_b)
1013 else if pname == "<" then
1014 return v.bool_instance(recvval < args[1].to_b)
1015 else if pname == ">" then
1016 return v.bool_instance(recvval > args[1].to_b)
1017 else if pname == "<=" then
1018 return v.bool_instance(recvval <= args[1].to_b)
1019 else if pname == ">=" then
1020 return v.bool_instance(recvval >= args[1].to_b)
1021 else if pname == "<=>" then
1022 return v.int_instance(recvval <=> args[1].to_b)
1023 else if pname == "to_f" then
1024 return v.float_instance(recvval.to_f)
1025 else if pname == "to_i" then
1026 return v.int_instance(recvval.to_i)
1027 else if pname == "<<" then
1028 return v.byte_instance(recvval << args[1].to_i)
1029 else if pname == ">>" then
1030 return v.byte_instance(recvval >> args[1].to_i)
1031 else if pname == "to_i8" then
1032 return v.int8_instance(recvval.to_i8)
1033 else if pname == "to_i16" then
1034 return v.int16_instance(recvval.to_i16)
1035 else if pname == "to_u16" then
1036 return v.uint16_instance(recvval.to_u16)
1037 else if pname == "to_i32" then
1038 return v.int32_instance(recvval.to_i32)
1039 else if pname == "to_u32" then
1040 return v.uint32_instance(recvval.to_u32)
1041 else if pname == "byte_to_s_len" then
1042 return v.int_instance(recvval.to_s.length)
1043 end
1044 else if cname == "Char" then
1045 var recv = args[0].val.as(Char)
1046 if pname == "successor" then
1047 return v.char_instance(recv.successor(args[1].to_i))
1048 else if pname == "predecessor" then
1049 return v.char_instance(recv.predecessor(args[1].to_i))
1050 else if pname == "<" then
1051 return v.bool_instance(recv < args[1].val.as(Char))
1052 else if pname == ">" then
1053 return v.bool_instance(recv > args[1].val.as(Char))
1054 else if pname == "<=" then
1055 return v.bool_instance(recv <= args[1].val.as(Char))
1056 else if pname == ">=" then
1057 return v.bool_instance(recv >= args[1].val.as(Char))
1058 else if pname == "<=>" then
1059 return v.int_instance(recv <=> args[1].val.as(Char))
1060 end
1061 else if cname == "Float" then
1062 var recv = args[0].to_f
1063 if pname == "unary -" then
1064 return v.float_instance(-recv)
1065 else if pname == "unary +" then
1066 return args[0]
1067 else if pname == "+" then
1068 return v.float_instance(recv + args[1].to_f)
1069 else if pname == "-" then
1070 return v.float_instance(recv - args[1].to_f)
1071 else if pname == "*" then
1072 return v.float_instance(recv * args[1].to_f)
1073 else if pname == "/" then
1074 return v.float_instance(recv / args[1].to_f)
1075 else if pname == "<" then
1076 return v.bool_instance(recv < args[1].to_f)
1077 else if pname == ">" then
1078 return v.bool_instance(recv > args[1].to_f)
1079 else if pname == "<=" then
1080 return v.bool_instance(recv <= args[1].to_f)
1081 else if pname == ">=" then
1082 return v.bool_instance(recv >= args[1].to_f)
1083 else if pname == "to_i" then
1084 return v.int_instance(recv.to_i)
1085 else if pname == "to_b" then
1086 return v.byte_instance(recv.to_b)
1087 else if pname == "to_i8" then
1088 return v.int8_instance(recv.to_i8)
1089 else if pname == "to_i16" then
1090 return v.int16_instance(recv.to_i16)
1091 else if pname == "to_u16" then
1092 return v.uint16_instance(recv.to_u16)
1093 else if pname == "to_i32" then
1094 return v.int32_instance(recv.to_i32)
1095 else if pname == "to_u32" then
1096 return v.uint32_instance(recv.to_u32)
1097 else if pname == "cos" then
1098 return v.float_instance(args[0].to_f.cos)
1099 else if pname == "sin" then
1100 return v.float_instance(args[0].to_f.sin)
1101 else if pname == "tan" then
1102 return v.float_instance(args[0].to_f.tan)
1103 else if pname == "acos" then
1104 return v.float_instance(args[0].to_f.acos)
1105 else if pname == "asin" then
1106 return v.float_instance(args[0].to_f.asin)
1107 else if pname == "atan" then
1108 return v.float_instance(args[0].to_f.atan)
1109 else if pname == "sqrt" then
1110 return v.float_instance(args[0].to_f.sqrt)
1111 else if pname == "exp" then
1112 return v.float_instance(args[0].to_f.exp)
1113 else if pname == "log" then
1114 return v.float_instance(args[0].to_f.log)
1115 else if pname == "pow" then
1116 return v.float_instance(args[0].to_f.pow(args[1].to_f))
1117 else if pname == "rand" then
1118 return v.float_instance(args[0].to_f.rand)
1119 else if pname == "abs" then
1120 return v.float_instance(args[0].to_f.abs)
1121 else if pname == "hypot_with" then
1122 return v.float_instance(args[0].to_f.hypot_with(args[1].to_f))
1123 else if pname == "is_nan" then
1124 return v.bool_instance(args[0].to_f.is_nan)
1125 else if pname == "is_inf_extern" then
1126 return v.bool_instance(args[0].to_f.is_inf != 0)
1127 else if pname == "round" then
1128 return v.float_instance(args[0].to_f.round)
1129 end
1130 else if cname == "NativeString" then
1131 if pname == "new" then
1132 return v.native_string_instance_len(args[1].to_i)
1133 end
1134 var recvval = args.first.val.as(NativeString)
1135 if pname == "[]" then
1136 var arg1 = args[1].to_i
1137 return v.byte_instance(recvval[arg1])
1138 else if pname == "[]=" then
1139 var arg1 = args[1].to_i
1140 recvval[arg1] = args[2].val.as(Byte)
1141 return null
1142 else if pname == "copy_to" then
1143 # sig= copy_to(dest: NativeString, length: Int, from: Int, to: Int)
1144 var destval = args[1].val.as(NativeString)
1145 var lenval = args[2].to_i
1146 var fromval = args[3].to_i
1147 var toval = args[4].to_i
1148 recvval.copy_to(destval, lenval, fromval, toval)
1149 return null
1150 else if pname == "atoi" then
1151 return v.int_instance(recvval.atoi)
1152 else if pname == "fast_cstring" then
1153 var ns = recvval.fast_cstring(args[1].to_i)
1154 return v.native_string_instance(ns.to_s)
1155 end
1156 else if pname == "calloc_string" then
1157 return v.native_string_instance_len(args[1].to_i)
1158 else if cname == "NativeArray" then
1159 if pname == "new" then
1160 var val = new Array[Instance].filled_with(v.null_instance, args[1].to_i)
1161 var instance = new PrimitiveInstance[Array[Instance]](args[0].mtype, val)
1162 v.init_instance_primitive(instance)
1163 return instance
1164 end
1165 var recvval = args.first.val.as(Array[Instance])
1166 if pname == "[]" then
1167 return recvval[args[1].to_i]
1168 else if pname == "[]=" then
1169 recvval[args[1].to_i] = args[2]
1170 return null
1171 else if pname == "length" then
1172 return v.int_instance(recvval.length)
1173 else if pname == "copy_to" then
1174 recvval.copy_to(0, args[2].to_i, args[1].val.as(Array[Instance]), 0)
1175 return null
1176 end
1177 else if cname == "Int8" then
1178 var recvval = args[0].to_i8
1179 if pname == "unary -" then
1180 return v.int8_instance(-recvval)
1181 else if pname == "unary +" then
1182 return args[0]
1183 else if pname == "+" then
1184 return v.int8_instance(recvval + args[1].to_i8)
1185 else if pname == "-" then
1186 return v.int8_instance(recvval - args[1].to_i8)
1187 else if pname == "*" then
1188 return v.int8_instance(recvval * args[1].to_i8)
1189 else if pname == "%" then
1190 return v.int8_instance(recvval % args[1].to_i8)
1191 else if pname == "/" then
1192 return v.int8_instance(recvval / args[1].to_i8)
1193 else if pname == "<" then
1194 return v.bool_instance(recvval < args[1].to_i8)
1195 else if pname == ">" then
1196 return v.bool_instance(recvval > args[1].to_i8)
1197 else if pname == "<=" then
1198 return v.bool_instance(recvval <= args[1].to_i8)
1199 else if pname == ">=" then
1200 return v.bool_instance(recvval >= args[1].to_i8)
1201 else if pname == "<=>" then
1202 return v.int_instance(recvval <=> args[1].to_i8)
1203 else if pname == "to_f" then
1204 return v.float_instance(recvval.to_f)
1205 else if pname == "to_i" then
1206 return v.int_instance(recvval.to_i)
1207 else if pname == "to_b" then
1208 return v.byte_instance(recvval.to_b)
1209 else if pname == "to_i16" then
1210 return v.int16_instance(recvval.to_i16)
1211 else if pname == "to_u16" then
1212 return v.uint16_instance(recvval.to_u16)
1213 else if pname == "to_i32" then
1214 return v.int32_instance(recvval.to_i32)
1215 else if pname == "to_u32" then
1216 return v.uint32_instance(recvval.to_u32)
1217 else if pname == "<<" then
1218 return v.int8_instance(recvval << (args[1].to_i))
1219 else if pname == ">>" then
1220 return v.int8_instance(recvval >> (args[1].to_i))
1221 else if pname == "&" then
1222 return v.int8_instance(recvval & args[1].to_i8)
1223 else if pname == "|" then
1224 return v.int8_instance(recvval | args[1].to_i8)
1225 else if pname == "^" then
1226 return v.int8_instance(recvval ^ args[1].to_i8)
1227 else if pname == "unary ~" then
1228 return v.int8_instance(~recvval)
1229 end
1230 else if cname == "Int16" then
1231 var recvval = args[0].to_i16
1232 if pname == "unary -" then
1233 return v.int16_instance(-recvval)
1234 else if pname == "unary +" then
1235 return args[0]
1236 else if pname == "+" then
1237 return v.int16_instance(recvval + args[1].to_i16)
1238 else if pname == "-" then
1239 return v.int16_instance(recvval - args[1].to_i16)
1240 else if pname == "*" then
1241 return v.int16_instance(recvval * args[1].to_i16)
1242 else if pname == "%" then
1243 return v.int16_instance(recvval % args[1].to_i16)
1244 else if pname == "/" then
1245 return v.int16_instance(recvval / args[1].to_i16)
1246 else if pname == "<" then
1247 return v.bool_instance(recvval < args[1].to_i16)
1248 else if pname == ">" then
1249 return v.bool_instance(recvval > args[1].to_i16)
1250 else if pname == "<=" then
1251 return v.bool_instance(recvval <= args[1].to_i16)
1252 else if pname == ">=" then
1253 return v.bool_instance(recvval >= args[1].to_i16)
1254 else if pname == "<=>" then
1255 return v.int_instance(recvval <=> args[1].to_i16)
1256 else if pname == "to_f" then
1257 return v.float_instance(recvval.to_f)
1258 else if pname == "to_i" then
1259 return v.int_instance(recvval.to_i)
1260 else if pname == "to_b" then
1261 return v.byte_instance(recvval.to_b)
1262 else if pname == "to_i8" then
1263 return v.int8_instance(recvval.to_i8)
1264 else if pname == "to_u16" then
1265 return v.uint16_instance(recvval.to_u16)
1266 else if pname == "to_i32" then
1267 return v.int32_instance(recvval.to_i32)
1268 else if pname == "to_u32" then
1269 return v.uint32_instance(recvval.to_u32)
1270 else if pname == "<<" then
1271 return v.int16_instance(recvval << (args[1].to_i))
1272 else if pname == ">>" then
1273 return v.int16_instance(recvval >> (args[1].to_i))
1274 else if pname == "&" then
1275 return v.int16_instance(recvval & args[1].to_i16)
1276 else if pname == "|" then
1277 return v.int16_instance(recvval | args[1].to_i16)
1278 else if pname == "^" then
1279 return v.int16_instance(recvval ^ args[1].to_i16)
1280 else if pname == "unary ~" then
1281 return v.int16_instance(~recvval)
1282 end
1283 else if cname == "UInt16" then
1284 var recvval = args[0].to_u16
1285 if pname == "unary -" then
1286 return v.uint16_instance(-recvval)
1287 else if pname == "unary +" then
1288 return args[0]
1289 else if pname == "+" then
1290 return v.uint16_instance(recvval + args[1].to_u16)
1291 else if pname == "-" then
1292 return v.uint16_instance(recvval - args[1].to_u16)
1293 else if pname == "*" then
1294 return v.uint16_instance(recvval * args[1].to_u16)
1295 else if pname == "%" then
1296 return v.uint16_instance(recvval % args[1].to_u16)
1297 else if pname == "/" then
1298 return v.uint16_instance(recvval / args[1].to_u16)
1299 else if pname == "<" then
1300 return v.bool_instance(recvval < args[1].to_u16)
1301 else if pname == ">" then
1302 return v.bool_instance(recvval > args[1].to_u16)
1303 else if pname == "<=" then
1304 return v.bool_instance(recvval <= args[1].to_u16)
1305 else if pname == ">=" then
1306 return v.bool_instance(recvval >= args[1].to_u16)
1307 else if pname == "<=>" then
1308 return v.int_instance(recvval <=> args[1].to_u16)
1309 else if pname == "to_f" then
1310 return v.float_instance(recvval.to_f)
1311 else if pname == "to_i" then
1312 return v.int_instance(recvval.to_i)
1313 else if pname == "to_b" then
1314 return v.byte_instance(recvval.to_b)
1315 else if pname == "to_i8" then
1316 return v.int8_instance(recvval.to_i8)
1317 else if pname == "to_i16" then
1318 return v.int16_instance(recvval.to_i16)
1319 else if pname == "to_i32" then
1320 return v.int32_instance(recvval.to_i32)
1321 else if pname == "to_u32" then
1322 return v.uint32_instance(recvval.to_u32)
1323 else if pname == "<<" then
1324 return v.uint16_instance(recvval << (args[1].to_i))
1325 else if pname == ">>" then
1326 return v.uint16_instance(recvval >> (args[1].to_i))
1327 else if pname == "&" then
1328 return v.uint16_instance(recvval & args[1].to_u16)
1329 else if pname == "|" then
1330 return v.uint16_instance(recvval | args[1].to_u16)
1331 else if pname == "^" then
1332 return v.uint16_instance(recvval ^ args[1].to_u16)
1333 else if pname == "unary ~" then
1334 return v.uint16_instance(~recvval)
1335 end
1336 else if cname == "Int32" then
1337 var recvval = args[0].to_i32
1338 if pname == "unary -" then
1339 return v.int32_instance(-recvval)
1340 else if pname == "unary +" then
1341 return args[0]
1342 else if pname == "+" then
1343 return v.int32_instance(recvval + args[1].to_i32)
1344 else if pname == "-" then
1345 return v.int32_instance(recvval - args[1].to_i32)
1346 else if pname == "*" then
1347 return v.int32_instance(recvval * args[1].to_i32)
1348 else if pname == "%" then
1349 return v.int32_instance(recvval % args[1].to_i32)
1350 else if pname == "/" then
1351 return v.int32_instance(recvval / args[1].to_i32)
1352 else if pname == "<" then
1353 return v.bool_instance(recvval < args[1].to_i32)
1354 else if pname == ">" then
1355 return v.bool_instance(recvval > args[1].to_i32)
1356 else if pname == "<=" then
1357 return v.bool_instance(recvval <= args[1].to_i32)
1358 else if pname == ">=" then
1359 return v.bool_instance(recvval >= args[1].to_i32)
1360 else if pname == "<=>" then
1361 return v.int_instance(recvval <=> args[1].to_i32)
1362 else if pname == "to_f" then
1363 return v.float_instance(recvval.to_f)
1364 else if pname == "to_i" then
1365 return v.int_instance(recvval.to_i)
1366 else if pname == "to_b" then
1367 return v.byte_instance(recvval.to_b)
1368 else if pname == "to_i8" then
1369 return v.int8_instance(recvval.to_i8)
1370 else if pname == "to_i16" then
1371 return v.int16_instance(recvval.to_i16)
1372 else if pname == "to_u16" then
1373 return v.uint16_instance(recvval.to_u16)
1374 else if pname == "to_u32" then
1375 return v.uint32_instance(recvval.to_u32)
1376 else if pname == "<<" then
1377 return v.int32_instance(recvval << (args[1].to_i))
1378 else if pname == ">>" then
1379 return v.int32_instance(recvval >> (args[1].to_i))
1380 else if pname == "&" then
1381 return v.int32_instance(recvval & args[1].to_i32)
1382 else if pname == "|" then
1383 return v.int32_instance(recvval | args[1].to_i32)
1384 else if pname == "^" then
1385 return v.int32_instance(recvval ^ args[1].to_i32)
1386 else if pname == "unary ~" then
1387 return v.int32_instance(~recvval)
1388 end
1389 else if cname == "UInt32" then
1390 var recvval = args[0].to_u32
1391 if pname == "unary -" then
1392 return v.uint32_instance(-recvval)
1393 else if pname == "unary +" then
1394 return args[0]
1395 else if pname == "+" then
1396 return v.uint32_instance(recvval + args[1].to_u32)
1397 else if pname == "-" then
1398 return v.uint32_instance(recvval - args[1].to_u32)
1399 else if pname == "*" then
1400 return v.uint32_instance(recvval * args[1].to_u32)
1401 else if pname == "%" then
1402 return v.uint32_instance(recvval % args[1].to_u32)
1403 else if pname == "/" then
1404 return v.uint32_instance(recvval / args[1].to_u32)
1405 else if pname == "<" then
1406 return v.bool_instance(recvval < args[1].to_u32)
1407 else if pname == ">" then
1408 return v.bool_instance(recvval > args[1].to_u32)
1409 else if pname == "<=" then
1410 return v.bool_instance(recvval <= args[1].to_u32)
1411 else if pname == ">=" then
1412 return v.bool_instance(recvval >= args[1].to_u32)
1413 else if pname == "<=>" then
1414 return v.int_instance(recvval <=> args[1].to_u32)
1415 else if pname == "to_f" then
1416 return v.float_instance(recvval.to_f)
1417 else if pname == "to_i" then
1418 return v.int_instance(recvval.to_i)
1419 else if pname == "to_b" then
1420 return v.byte_instance(recvval.to_b)
1421 else if pname == "to_i8" then
1422 return v.int8_instance(recvval.to_i8)
1423 else if pname == "to_i16" then
1424 return v.int16_instance(recvval.to_i16)
1425 else if pname == "to_u16" then
1426 return v.uint16_instance(recvval.to_u16)
1427 else if pname == "to_i32" then
1428 return v.int32_instance(recvval.to_i32)
1429 else if pname == "<<" then
1430 return v.uint32_instance(recvval << (args[1].to_i))
1431 else if pname == ">>" then
1432 return v.uint32_instance(recvval >> (args[1].to_i))
1433 else if pname == "&" then
1434 return v.uint32_instance(recvval & args[1].to_u32)
1435 else if pname == "|" then
1436 return v.uint32_instance(recvval | args[1].to_u32)
1437 else if pname == "^" then
1438 return v.uint32_instance(recvval ^ args[1].to_u32)
1439 else if pname == "unary ~" then
1440 return v.uint32_instance(~recvval)
1441 end
1442 else if pname == "native_argc" then
1443 return v.int_instance(v.arguments.length)
1444 else if pname == "native_argv" then
1445 var txt = v.arguments[args[1].to_i]
1446 return v.native_string_instance(txt)
1447 else if pname == "native_argc" then
1448 return v.int_instance(v.arguments.length)
1449 else if pname == "native_argv" then
1450 var txt = v.arguments[args[1].to_i]
1451 return v.native_string_instance(txt)
1452 else if pname == "lexer_goto" then
1453 return v.int_instance(lexer_goto(args[1].to_i, args[2].to_i))
1454 else if pname == "lexer_accept" then
1455 return v.int_instance(lexer_accept(args[1].to_i))
1456 else if pname == "parser_goto" then
1457 return v.int_instance(parser_goto(args[1].to_i, args[2].to_i))
1458 else if pname == "parser_action" then
1459 return v.int_instance(parser_action(args[1].to_i, args[2].to_i))
1460 end
1461 return v.error_instance
1462 end
1463 end
1464
1465 redef class AAttrPropdef
1466 redef fun call(v, mpropdef, args)
1467 do
1468 var recv = args.first
1469 assert recv isa MutableInstance
1470 var attr = self.mpropdef.mproperty
1471 if mpropdef == mreadpropdef then
1472 assert args.length == 1
1473 if not is_lazy or v.isset_attribute(attr, recv) then return v.read_attribute(attr, recv)
1474 var f = v.new_frame(self, mpropdef, args)
1475 return evaluate_expr(v, recv, f)
1476 else if mpropdef == mwritepropdef then
1477 assert args.length == 2
1478 v.write_attribute(attr, recv, args[1])
1479 return null
1480 else
1481 abort
1482 end
1483 end
1484
1485 # Evaluate and set the default value of the attribute in `recv`
1486 private fun init_expr(v: NaiveInterpreter, recv: Instance)
1487 do
1488 if is_lazy then return
1489 if has_value then
1490 var f = v.new_frame(self, mreadpropdef.as(not null), [recv])
1491 evaluate_expr(v, recv, f)
1492 return
1493 end
1494 var mpropdef = self.mpropdef
1495 if mpropdef == null then return
1496 var mtype = self.mtype.as(not null)
1497 mtype = mtype.anchor_to(v.mainmodule, recv.mtype.as(MClassType))
1498 if mtype isa MNullableType then
1499 v.write_attribute(self.mpropdef.mproperty, recv, v.null_instance)
1500 end
1501 end
1502
1503 private fun evaluate_expr(v: NaiveInterpreter, recv: Instance, f: Frame): Instance
1504 do
1505 assert recv isa MutableInstance
1506 v.frames.unshift(f)
1507
1508 var val
1509
1510 var nexpr = self.n_expr
1511 var nblock = self.n_block
1512 if nexpr != null then
1513 val = v.expr(nexpr)
1514 else if nblock != null then
1515 v.stmt(nblock)
1516 assert v.returnmark == f
1517 val = v.escapevalue
1518 v.returnmark = null
1519 v.escapevalue = null
1520 else
1521 abort
1522 end
1523 assert val != null
1524
1525 v.frames.shift
1526 assert not v.is_escaping
1527 v.write_attribute(self.mpropdef.mproperty, recv, val)
1528 return val
1529 end
1530 end
1531
1532 redef class AClassdef
1533 # Execute an implicit `mpropdef` associated with the current node.
1534 private fun call(v: NaiveInterpreter, mpropdef: MMethodDef, args: Array[Instance]): nullable Instance
1535 do
1536 if mpropdef.mproperty.is_root_init then
1537 assert args.length == 1
1538 if not mpropdef.is_intro then
1539 # standard call-next-method
1540 var superpd = mpropdef.lookup_next_definition(v.mainmodule, args.first.mtype)
1541 v.call(superpd, args)
1542 end
1543 return null
1544 else
1545 abort
1546 end
1547 end
1548 end
1549
1550 redef class AExpr
1551 # Evaluate the node as a possible expression.
1552 # Return a possible value
1553 # NOTE: Do not call this method directly, but use `v.expr`
1554 # This method is here to be implemented by subclasses.
1555 protected fun expr(v: NaiveInterpreter): nullable Instance
1556 do
1557 fatal(v, "NOT YET IMPLEMENTED expr {class_name}")
1558 abort
1559 end
1560
1561 # Evaluate the node as a statement.
1562 # NOTE: Do not call this method directly, but use `v.stmt`
1563 # This method is here to be implemented by subclasses (no need to return something).
1564 protected fun stmt(v: NaiveInterpreter)
1565 do
1566 expr(v)
1567 end
1568
1569 end
1570
1571 redef class ABlockExpr
1572 redef fun expr(v)
1573 do
1574 var last = self.n_expr.last
1575 for e in self.n_expr do
1576 if e == last then break
1577 v.stmt(e)
1578 if v.is_escaping then return null
1579 end
1580 return last.expr(v)
1581 end
1582
1583 redef fun stmt(v)
1584 do
1585 for e in self.n_expr do
1586 v.stmt(e)
1587 if v.is_escaping then return
1588 end
1589 end
1590 end
1591
1592 redef class AVardeclExpr
1593 redef fun expr(v)
1594 do
1595 var ne = self.n_expr
1596 if ne != null then
1597 var i = v.expr(ne)
1598 if i == null then return null
1599 v.write_variable(self.variable.as(not null), i)
1600 return i
1601 end
1602 return null
1603 end
1604 end
1605
1606 redef class AVarExpr
1607 redef fun expr(v)
1608 do
1609 return v.read_variable(self.variable.as(not null))
1610 end
1611 end
1612
1613 redef class AVarAssignExpr
1614 redef fun expr(v)
1615 do
1616 var i = v.expr(self.n_value)
1617 if i == null then return null
1618 v.write_variable(self.variable.as(not null), i)
1619 return i
1620 end
1621 end
1622
1623 redef class AVarReassignExpr
1624 redef fun stmt(v)
1625 do
1626 var variable = self.variable.as(not null)
1627 var vari = v.read_variable(variable)
1628 var value = v.expr(self.n_value)
1629 if value == null then return
1630 var res = v.callsite(reassign_callsite, [vari, value])
1631 assert res != null
1632 v.write_variable(variable, res)
1633 end
1634 end
1635
1636 redef class ASelfExpr
1637 redef fun expr(v)
1638 do
1639 return v.frame.arguments.first
1640 end
1641 end
1642
1643 redef class AImplicitSelfExpr
1644 redef fun expr(v)
1645 do
1646 if not is_sys then return super
1647 return v.mainobj
1648 end
1649 end
1650
1651 redef class AEscapeExpr
1652 redef fun stmt(v)
1653 do
1654 var ne = self.n_expr
1655 if ne != null then
1656 var i = v.expr(ne)
1657 if i == null then return
1658 v.escapevalue = i
1659 end
1660 v.escapemark = self.escapemark
1661 end
1662 end
1663
1664 redef class AReturnExpr
1665 redef fun stmt(v)
1666 do
1667 var ne = self.n_expr
1668 if ne != null then
1669 var i = v.expr(ne)
1670 if i == null then return
1671 v.escapevalue = i
1672 end
1673 v.returnmark = v.frame
1674 end
1675 end
1676
1677 redef class AAbortExpr
1678 redef fun stmt(v)
1679 do
1680 fatal(v, "Aborted")
1681 exit(1)
1682 end
1683 end
1684
1685 redef class AIfExpr
1686 redef fun expr(v)
1687 do
1688 var cond = v.expr(self.n_expr)
1689 if cond == null then return null
1690 if cond.is_true then
1691 return v.expr(self.n_then.as(not null))
1692 else
1693 return v.expr(self.n_else.as(not null))
1694 end
1695 end
1696
1697 redef fun stmt(v)
1698 do
1699 var cond = v.expr(self.n_expr)
1700 if cond == null then return
1701 if cond.is_true then
1702 v.stmt(self.n_then)
1703 else
1704 v.stmt(self.n_else)
1705 end
1706 end
1707 end
1708
1709 redef class AIfexprExpr
1710 redef fun expr(v)
1711 do
1712 var cond = v.expr(self.n_expr)
1713 if cond == null then return null
1714 if cond.is_true then
1715 return v.expr(self.n_then)
1716 else
1717 return v.expr(self.n_else)
1718 end
1719 end
1720 end
1721
1722 redef class ADoExpr
1723 redef fun stmt(v)
1724 do
1725 v.stmt(self.n_block)
1726 v.is_escape(self.break_mark) # Clear the break (if any)
1727 end
1728 end
1729
1730 redef class AWhileExpr
1731 redef fun stmt(v)
1732 do
1733 loop
1734 var cond = v.expr(self.n_expr)
1735 if cond == null then return
1736 if not cond.is_true then return
1737 v.stmt(self.n_block)
1738 if v.is_escape(self.break_mark) then return
1739 v.is_escape(self.continue_mark) # Clear the break
1740 if v.is_escaping then return
1741 end
1742 end
1743 end
1744
1745 redef class ALoopExpr
1746 redef fun stmt(v)
1747 do
1748 loop
1749 v.stmt(self.n_block)
1750 if v.is_escape(self.break_mark) then return
1751 v.is_escape(self.continue_mark) # Clear the break
1752 if v.is_escaping then return
1753 end
1754 end
1755 end
1756
1757 redef class AForExpr
1758 redef fun stmt(v)
1759 do
1760 var col = v.expr(self.n_expr)
1761 if col == null then return
1762 if col.mtype isa MNullType then fatal(v, "Receiver is null")
1763
1764 #self.debug("col {col}")
1765 var iter = v.callsite(method_iterator, [col]).as(not null)
1766 #self.debug("iter {iter}")
1767 loop
1768 var isok = v.callsite(method_is_ok, [iter]).as(not null)
1769 if not isok.is_true then break
1770 if self.variables.length == 1 then
1771 var item = v.callsite(method_item, [iter]).as(not null)
1772 #self.debug("item {item}")
1773 v.write_variable(self.variables.first, item)
1774 else if self.variables.length == 2 then
1775 var key = v.callsite(method_key, [iter]).as(not null)
1776 v.write_variable(self.variables[0], key)
1777 var item = v.callsite(method_item, [iter]).as(not null)
1778 v.write_variable(self.variables[1], item)
1779 else
1780 abort
1781 end
1782 v.stmt(self.n_block)
1783 if v.is_escape(self.break_mark) then break
1784 v.is_escape(self.continue_mark) # Clear the break
1785 if v.is_escaping then break
1786 v.callsite(method_next, [iter])
1787 end
1788 var method_finish = self.method_finish
1789 if method_finish != null then
1790 v.callsite(method_finish, [iter])
1791 end
1792 end
1793 end
1794
1795 redef class AWithExpr
1796 redef fun stmt(v)
1797 do
1798 var expr = v.expr(self.n_expr)
1799 if expr == null then return
1800
1801 v.callsite(method_start, [expr])
1802 v.stmt(self.n_block)
1803 v.is_escape(self.break_mark) # Clear the break
1804 v.callsite(method_finish, [expr])
1805 end
1806 end
1807
1808 redef class AAssertExpr
1809 redef fun stmt(v)
1810 do
1811 var cond = v.expr(self.n_expr)
1812 if cond == null then return
1813 if not cond.is_true then
1814 v.stmt(self.n_else)
1815 if v.is_escaping then return
1816 var nid = self.n_id
1817 if nid != null then
1818 fatal(v, "Assert '{nid.text}' failed")
1819 else
1820 fatal(v, "Assert failed")
1821 end
1822 exit(1)
1823 end
1824 end
1825 end
1826
1827 redef class AOrExpr
1828 redef fun expr(v)
1829 do
1830 var cond = v.expr(self.n_expr)
1831 if cond == null then return null
1832 if cond.is_true then return cond
1833 return v.expr(self.n_expr2)
1834 end
1835 end
1836
1837 redef class AImpliesExpr
1838 redef fun expr(v)
1839 do
1840 var cond = v.expr(self.n_expr)
1841 if cond == null then return null
1842 if not cond.is_true then return v.true_instance
1843 return v.expr(self.n_expr2)
1844 end
1845 end
1846
1847 redef class AAndExpr
1848 redef fun expr(v)
1849 do
1850 var cond = v.expr(self.n_expr)
1851 if cond == null then return null
1852 if not cond.is_true then return cond
1853 return v.expr(self.n_expr2)
1854 end
1855 end
1856
1857 redef class ANotExpr
1858 redef fun expr(v)
1859 do
1860 var cond = v.expr(self.n_expr)
1861 if cond == null then return null
1862 return v.bool_instance(not cond.is_true)
1863 end
1864 end
1865
1866 redef class AOrElseExpr
1867 redef fun expr(v)
1868 do
1869 var i = v.expr(self.n_expr)
1870 if i == null then return null
1871 if i != v.null_instance then return i
1872 return v.expr(self.n_expr2)
1873 end
1874 end
1875
1876 redef class AIntegerExpr
1877 redef fun expr(v)
1878 do
1879 if value isa Int then return v.int_instance(value.as(Int))
1880 if value isa Byte then return v.byte_instance(value.as(Byte))
1881 if value isa Int8 then return v.int8_instance(value.as(Int8))
1882 if value isa Int16 then return v.int16_instance(value.as(Int16))
1883 if value isa UInt16 then return v.uint16_instance(value.as(UInt16))
1884 if value isa Int32 then return v.int32_instance(value.as(Int32))
1885 if value isa UInt32 then return v.uint32_instance(value.as(UInt32))
1886 return null
1887 end
1888 end
1889
1890 redef class AFloatExpr
1891 redef fun expr(v)
1892 do
1893 return v.float_instance(self.value.as(not null))
1894 end
1895 end
1896
1897 redef class ACharExpr
1898 redef fun expr(v)
1899 do
1900 return v.char_instance(self.value.as(not null))
1901 end
1902 end
1903
1904 redef class AArrayExpr
1905 redef fun expr(v)
1906 do
1907 var val = new Array[Instance]
1908 var old_comprehension = v.frame.comprehension
1909 v.frame.comprehension = val
1910 for nexpr in self.n_exprs do
1911 if nexpr isa AForExpr then
1912 v.stmt(nexpr)
1913 else
1914 var i = v.expr(nexpr)
1915 if i == null then return null
1916 val.add(i)
1917 end
1918 end
1919 v.frame.comprehension = old_comprehension
1920 var mtype = v.unanchor_type(self.mtype.as(not null)).as(MClassType)
1921 var elttype = mtype.arguments.first
1922 return v.array_instance(val, elttype)
1923 end
1924 end
1925
1926 redef class AStringFormExpr
1927 redef fun expr(v)
1928 do
1929 var txt = self.value.as(not null)
1930 return v.string_instance(txt)
1931 end
1932 end
1933
1934 redef class ASuperstringExpr
1935 redef fun expr(v)
1936 do
1937 var array = new Array[Instance]
1938 for nexpr in n_exprs do
1939 var i = v.expr(nexpr)
1940 if i == null then return null
1941 array.add(i)
1942 end
1943 var i = v.array_instance(array, v.mainmodule.object_type)
1944 var res = v.send(v.force_get_primitive_method("plain_to_s", i.mtype), [i])
1945 assert res != null
1946 return res
1947 end
1948 end
1949
1950 redef class ACrangeExpr
1951 redef fun expr(v)
1952 do
1953 var e1 = v.expr(self.n_expr)
1954 if e1 == null then return null
1955 var e2 = v.expr(self.n_expr2)
1956 if e2 == null then return null
1957 var mtype = v.unanchor_type(self.mtype.as(not null))
1958 var res = new MutableInstance(mtype)
1959 v.init_instance(res)
1960 v.callsite(init_callsite, [res, e1, e2])
1961 return res
1962 end
1963 end
1964
1965 redef class AOrangeExpr
1966 redef fun expr(v)
1967 do
1968 var e1 = v.expr(self.n_expr)
1969 if e1 == null then return null
1970 var e2 = v.expr(self.n_expr2)
1971 if e2 == null then return null
1972 var mtype = v.unanchor_type(self.mtype.as(not null))
1973 var res = new MutableInstance(mtype)
1974 v.init_instance(res)
1975 v.callsite(init_callsite, [res, e1, e2])
1976 return res
1977 end
1978 end
1979
1980 redef class ATrueExpr
1981 redef fun expr(v)
1982 do
1983 return v.bool_instance(true)
1984 end
1985 end
1986
1987 redef class AFalseExpr
1988 redef fun expr(v)
1989 do
1990 return v.bool_instance(false)
1991 end
1992 end
1993
1994 redef class ANullExpr
1995 redef fun expr(v)
1996 do
1997 return v.null_instance
1998 end
1999 end
2000
2001 redef class AIsaExpr
2002 redef fun expr(v)
2003 do
2004 var i = v.expr(self.n_expr)
2005 if i == null then return null
2006 var mtype = v.unanchor_type(self.cast_type.as(not null))
2007 return v.bool_instance(v.is_subtype(i.mtype, mtype))
2008 end
2009 end
2010
2011 redef class AAsCastExpr
2012 redef fun expr(v)
2013 do
2014 var i = v.expr(self.n_expr)
2015 if i == null then return null
2016 var mtype = self.mtype.as(not null)
2017 var amtype = v.unanchor_type(mtype)
2018 if not v.is_subtype(i.mtype, amtype) then
2019 fatal(v, "Cast failed. Expected `{amtype}`, got `{i.mtype}`")
2020 end
2021 return i
2022 end
2023 end
2024
2025 redef class AAsNotnullExpr
2026 redef fun expr(v)
2027 do
2028 var i = v.expr(self.n_expr)
2029 if i == null then return null
2030 if i.mtype isa MNullType then
2031 fatal(v, "Cast failed")
2032 end
2033 return i
2034 end
2035 end
2036
2037 redef class AParExpr
2038 redef fun expr(v)
2039 do
2040 return v.expr(self.n_expr)
2041 end
2042 end
2043
2044 redef class AOnceExpr
2045 redef fun expr(v)
2046 do
2047 if v.onces.has_key(self) then
2048 return v.onces[self]
2049 else
2050 var res = v.expr(self.n_expr)
2051 if res == null then return null
2052 v.onces[self] = res
2053 return res
2054 end
2055 end
2056 end
2057
2058 redef class ASendExpr
2059 redef fun expr(v)
2060 do
2061 var recv = v.expr(self.n_expr)
2062 if recv == null then return null
2063 var args = v.varargize(callsite.mpropdef, callsite.signaturemap, recv, self.raw_arguments)
2064 if args == null then return null
2065
2066 var res = v.callsite(callsite, args)
2067 return res
2068 end
2069 end
2070
2071 redef class ASendReassignFormExpr
2072 redef fun stmt(v)
2073 do
2074 var recv = v.expr(self.n_expr)
2075 if recv == null then return
2076 var args = v.varargize(callsite.mpropdef, callsite.signaturemap, recv, self.raw_arguments)
2077 if args == null then return
2078 var value = v.expr(self.n_value)
2079 if value == null then return
2080
2081 var read = v.callsite(callsite, args)
2082 assert read != null
2083
2084 var write = v.callsite(reassign_callsite, [read, value])
2085 assert write != null
2086
2087 args.add(write)
2088
2089 v.callsite(write_callsite, args)
2090 end
2091 end
2092
2093 redef class ASuperExpr
2094 redef fun expr(v)
2095 do
2096 var recv = v.frame.arguments.first
2097
2098 var callsite = self.callsite
2099 if callsite != null then
2100 var args
2101 if self.n_args.n_exprs.is_empty then
2102 # Add automatic arguments for the super init call
2103 args = [recv]
2104 for i in [0..callsite.msignature.arity[ do
2105 args.add(v.frame.arguments[i+1])
2106 end
2107 else
2108 args = v.varargize(callsite.mpropdef, callsite.signaturemap, recv, self.n_args.n_exprs)
2109 if args == null then return null
2110 end
2111
2112 # Super init call
2113 var res = v.callsite(callsite, args)
2114 return res
2115 end
2116
2117 # Standard call-next-method
2118 var mpropdef = self.mpropdef
2119 mpropdef = mpropdef.lookup_next_definition(v.mainmodule, recv.mtype)
2120
2121 var args
2122 if self.n_args.n_exprs.is_empty then
2123 args = v.frame.arguments
2124 else
2125 args = v.varargize(mpropdef, signaturemap, recv, self.n_args.n_exprs)
2126 if args == null then return null
2127 end
2128
2129 var res = v.call(mpropdef, args)
2130 return res
2131 end
2132 end
2133
2134 redef class ANewExpr
2135 redef fun expr(v)
2136 do
2137 var mtype = v.unanchor_type(self.recvtype.as(not null))
2138 var recv: Instance = new MutableInstance(mtype)
2139 v.init_instance(recv)
2140 var callsite = self.callsite
2141 if callsite == null then return recv
2142
2143 var args = v.varargize(callsite.mpropdef, callsite.signaturemap, recv, self.n_args.n_exprs)
2144 if args == null then return null
2145 var res2 = v.callsite(callsite, args)
2146 if res2 != null then
2147 #self.debug("got {res2} from {mproperty}. drop {recv}")
2148 return res2
2149 end
2150 return recv
2151 end
2152 end
2153
2154 redef class AAttrExpr
2155 redef fun expr(v)
2156 do
2157 var recv = v.expr(self.n_expr)
2158 if recv == null then return null
2159 if recv.mtype isa MNullType then fatal(v, "Receiver is null")
2160 var mproperty = self.mproperty.as(not null)
2161 return v.read_attribute(mproperty, recv)
2162 end
2163 end
2164
2165 redef class AAttrAssignExpr
2166 redef fun stmt(v)
2167 do
2168 var recv = v.expr(self.n_expr)
2169 if recv == null then return
2170 if recv.mtype isa MNullType then fatal(v, "Receiver is null")
2171 var i = v.expr(self.n_value)
2172 if i == null then return
2173 var mproperty = self.mproperty.as(not null)
2174 v.write_attribute(mproperty, recv, i)
2175 end
2176 end
2177
2178 redef class AAttrReassignExpr
2179 redef fun stmt(v)
2180 do
2181 var recv = v.expr(self.n_expr)
2182 if recv == null then return
2183 if recv.mtype isa MNullType then fatal(v, "Receiver is null")
2184 var value = v.expr(self.n_value)
2185 if value == null then return
2186 var mproperty = self.mproperty.as(not null)
2187 var attr = v.read_attribute(mproperty, recv)
2188 var res = v.callsite(reassign_callsite, [attr, value])
2189 assert res != null
2190 v.write_attribute(mproperty, recv, res)
2191 end
2192 end
2193
2194 redef class AIssetAttrExpr
2195 redef fun expr(v)
2196 do
2197 var recv = v.expr(self.n_expr)
2198 if recv == null then return null
2199 if recv.mtype isa MNullType then fatal(v, "Receiver is null")
2200 var mproperty = self.mproperty.as(not null)
2201 return v.bool_instance(v.isset_attribute(mproperty, recv))
2202 end
2203 end
2204
2205 redef class AVarargExpr
2206 redef fun expr(v)
2207 do
2208 return v.expr(self.n_expr)
2209 end
2210 end
2211
2212 redef class ANamedargExpr
2213 redef fun expr(v)
2214 do
2215 return v.expr(self.n_expr)
2216 end
2217 end
2218
2219 redef class ADebugTypeExpr
2220 redef fun stmt(v)
2221 do
2222 # do nothing
2223 end
2224 end