rta: store real types in live_cast_type
[nit.git] / src / typing.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 # Intraprocedural resolution of static types and OO-services
18 # By OO-services we mean message sending, attribute access, instantiation, etc.
19 module typing
20
21 import flow
22 import modelize_property
23 import phase
24 import local_var_init
25
26 redef class ToolContext
27 var typing_phase: Phase = new TypingPhase(self, [flow_phase, modelize_property_phase, local_var_init_phase])
28 end
29
30 redef class MPropDef
31 # Does the MPropDef contains a call to super or a call of a super-constructor?
32 var has_supercall: Bool = false
33 end
34
35 private class TypingPhase
36 super Phase
37 redef fun process_npropdef(npropdef) do npropdef.do_typing(toolcontext.modelbuilder)
38 end
39
40 private class TypeVisitor
41 var modelbuilder: ModelBuilder
42 var nclassdef: AClassdef
43 var mpropdef: MPropDef
44
45 var selfvariable: Variable = new Variable("self")
46
47 init(modelbuilder: ModelBuilder, nclassdef: AClassdef, mpropdef: MPropDef)
48 do
49 self.modelbuilder = modelbuilder
50 self.nclassdef = nclassdef
51 self.mpropdef = mpropdef
52
53 var mclass = nclassdef.mclassdef.mclass
54
55 var selfvariable = new Variable("self")
56 self.selfvariable = selfvariable
57 selfvariable.declared_type = mclass.mclass_type
58 end
59
60 fun mmodule: MModule do return self.nclassdef.mclassdef.mmodule
61
62 fun anchor: MClassType do return self.nclassdef.mclassdef.bound_mtype
63
64 fun anchor_to(mtype: MType): MType
65 do
66 var mmodule = self.nclassdef.mclassdef.mmodule
67 var anchor = self.nclassdef.mclassdef.bound_mtype
68 return mtype.anchor_to(mmodule, anchor)
69 end
70
71 fun is_subtype(sub, sup: MType): Bool
72 do
73 var mmodule = self.nclassdef.mclassdef.mmodule
74 var anchor = self.nclassdef.mclassdef.bound_mtype
75 return sub.is_subtype(mmodule, anchor, sup)
76 end
77
78 fun resolve_for(mtype, subtype: MType, for_self: Bool): MType
79 do
80 var mmodule = self.nclassdef.mclassdef.mmodule
81 var anchor = self.nclassdef.mclassdef.bound_mtype
82 #print "resolve_for {mtype} sub={subtype} forself={for_self} mmodule={mmodule} anchor={anchor}"
83 var res = mtype.resolve_for(subtype, anchor, mmodule, not for_self)
84 return res
85 end
86
87 # Retrieve the signature of a `MMethodDef` resolved for a specific call.
88 # This method is an helper to symplify the query on the model.
89 #
90 # Note: `for_self` indicates if the reciever is self or not.
91 # If yes, virtual types are not resolved.
92 fun resolve_signature_for(mmethoddef: MMethodDef, recv: MType, for_self: Bool): MSignature
93 do
94 return self.resolve_for(mmethoddef.msignature.as(not null), recv, for_self).as(MSignature)
95 end
96
97 # Check that `sub` is a subtype of `sup`.
98 # If `sub` is not a valud suptype, then display an error on `node` an return null.
99 # If `sub` is a safe subtype of `sup` then return `sub`.
100 # If `sub` is an insafe subtype (ie an imlicit cast is required), then return `sup`.
101 #
102 # The point of the return type is to determinate the usable type on an expression:
103 # If the suptype is safe, then the return type is the one on the expression typed by `sub`.
104 # Is the subtype is unsafe, then the return type is the one of an implicit cast on `sup`.
105 fun check_subtype(node: ANode, sub, sup: MType): nullable MType
106 do
107 if self.is_subtype(sub, sup) then return sub
108 if self.is_subtype(sub, self.anchor_to(sup)) then
109 # FIXME workarround to the current unsafe typing policy. To remove once fixed virtual types exists.
110 #node.debug("Unsafe typing: expected {sup}, got {sub}")
111 return sup
112 end
113 self.modelbuilder.error(node, "Type error: expected {sup}, got {sub}")
114 return null
115 end
116
117 # Visit an expression and do not care about the return value
118 fun visit_stmt(nexpr: nullable AExpr)
119 do
120 if nexpr == null then return
121 nexpr.accept_typing(self)
122 end
123
124 # Visit an expression and expects that it is not a statement
125 # Return the type of the expression
126 # Display an error and return null if:
127 # * the type cannot be determined or
128 # * `nexpr` is a statement
129 fun visit_expr(nexpr: AExpr): nullable MType
130 do
131 nexpr.accept_typing(self)
132 var mtype = nexpr.mtype
133 if mtype != null then return mtype
134 if not nexpr.is_typed then
135 if not self.modelbuilder.toolcontext.error_count > 0 then # check that there is really an error
136 if self.modelbuilder.toolcontext.verbose_level > 1 then
137 nexpr.debug("No return type but no error.")
138 end
139 end
140 return null # forward error
141 end
142 self.error(nexpr, "Type error: expected expression.")
143 return null
144 end
145
146 # Visit an expression and expect its static type is a least a `sup`
147 # Return the type of the expression or null if
148 # * the type cannot be determined or
149 # * `nexpr` is a statement or
150 # * `nexpr` is not a `sup`
151 fun visit_expr_subtype(nexpr: AExpr, sup: nullable MType): nullable MType
152 do
153 var sub = visit_expr(nexpr)
154 if sub == null then return null # Forward error
155
156 if sup == null then return null # Forward error
157
158 var res = check_subtype(nexpr, sub, sup)
159 if res != sub then
160 nexpr.implicit_cast_to = res
161 end
162 return res
163 end
164
165 # Visit an expression and expect its static type is a `Bool`
166 # Return the type of the expression or null if
167 # * the type cannot be determined or
168 # * `nexpr` is a statement or
169 # * `nexpr` is not a `Bool`
170 fun visit_expr_bool(nexpr: AExpr): nullable MType
171 do
172 return self.visit_expr_subtype(nexpr, self.type_bool(nexpr))
173 end
174
175
176 private fun visit_expr_cast(node: ANode, nexpr: AExpr, ntype: AType): nullable MType
177 do
178 var sub = visit_expr(nexpr)
179 if sub == null then return null # Forward error
180
181 var sup = self.resolve_mtype(ntype)
182 if sup == null then return null # Forward error
183
184 var mmodule = self.nclassdef.mclassdef.mmodule
185 var anchor = self.nclassdef.mclassdef.bound_mtype
186 if sup == sub then
187 self.modelbuilder.warning(node, "Warning: Expression is already a {sup}.")
188 else if self.is_subtype(sub, sup) and not sup.need_anchor then
189 self.modelbuilder.warning(node, "Warning: Expression is already a {sup} since it is a {sub}.")
190 end
191 return sup
192 end
193
194 fun try_get_mproperty_by_name2(anode: ANode, mtype: MType, name: String): nullable MProperty
195 do
196 return self.modelbuilder.try_get_mproperty_by_name2(anode, self.nclassdef.mclassdef.mmodule, mtype, name)
197 end
198
199 fun resolve_mtype(node: AType): nullable MType
200 do
201 return self.modelbuilder.resolve_mtype(self.nclassdef, node)
202 end
203
204 fun try_get_mclass(node: ANode, name: String): nullable MClass
205 do
206 var mmodule = self.nclassdef.mclassdef.mmodule
207 var mclass = modelbuilder.try_get_mclass_by_name(node, mmodule, name)
208 return mclass
209 end
210
211 fun get_mclass(node: ANode, name: String): nullable MClass
212 do
213 var mmodule = self.nclassdef.mclassdef.mmodule
214 var mclass = modelbuilder.try_get_mclass_by_name(node, mmodule, name)
215 if mclass == null then
216 self.modelbuilder.error(node, "Type Error: missing primitive class `{name}'.")
217 end
218 return mclass
219 end
220
221 fun type_bool(node: ANode): nullable MType
222 do
223 var mclass = self.get_mclass(node, "Bool")
224 if mclass == null then return null
225 return mclass.mclass_type
226 end
227
228 fun get_method(node: ANode, recvtype: MType, name: String, recv_is_self: Bool): nullable CallSite
229 do
230 var unsafe_type = self.anchor_to(recvtype)
231
232 #debug("recv: {recvtype} (aka {unsafe_type})")
233 if recvtype isa MNullType then
234 self.error(node, "Error: Method '{name}' call on 'null'.")
235 return null
236 end
237
238 var mproperty = self.try_get_mproperty_by_name2(node, unsafe_type, name)
239 if mproperty == null then
240 #self.modelbuilder.error(node, "Type error: property {name} not found in {unsafe_type} (ie {recvtype})")
241 if recv_is_self then
242 self.modelbuilder.error(node, "Error: Method or variable '{name}' unknown in {recvtype}.")
243 else
244 self.modelbuilder.error(node, "Error: Method '{name}' doesn't exists in {recvtype}.")
245 end
246 return null
247 end
248
249 assert mproperty isa MMethod
250 if mproperty.visibility == protected_visibility and not recv_is_self and self.mmodule.visibility_for(mproperty.intro_mclassdef.mmodule) < intrude_visibility then
251 self.modelbuilder.error(node, "Error: Method '{name}' is protected and can only acceded by self. {mproperty.intro_mclassdef.mmodule.visibility_for(self.mmodule)}")
252 return null
253 end
254
255 var propdefs = mproperty.lookup_definitions(self.mmodule, unsafe_type)
256 var mpropdef
257 if propdefs.length == 0 then
258 self.modelbuilder.error(node, "Type error: no definition found for property {name} in {unsafe_type}")
259 return null
260 else if propdefs.length == 1 then
261 mpropdef = propdefs.first
262 else
263 self.modelbuilder.warning(node, "Warning: confliting property definitions for property {name} in {unsafe_type}: {propdefs.join(" ")}")
264 mpropdef = mproperty.intro
265 end
266
267
268 var msignature = self.resolve_signature_for(mpropdef, recvtype, recv_is_self)
269
270 var erasure_cast = false
271 var rettype = mpropdef.msignature.return_mtype
272 if not recv_is_self and rettype != null then
273 if rettype isa MNullableType then rettype = rettype.mtype
274 if rettype isa MParameterType then
275 var erased_rettype = msignature.return_mtype
276 assert erased_rettype != null
277 #node.debug("Erasure cast: Really a {rettype} but unsafely a {erased_rettype}")
278 erasure_cast = true
279 end
280 end
281
282 var callsite = new CallSite(node, recvtype, recv_is_self, mproperty, mpropdef, msignature, erasure_cast)
283 return callsite
284 end
285
286 # Visit the expressions of args and cheik their conformity with the corresponding typi in signature
287 # The point of this method is to handle varargs correctly
288 # Note: The signature must be correctly adapted
289 fun check_signature(node: ANode, args: Array[AExpr], name: String, msignature: MSignature): Bool
290 do
291 var vararg_rank = msignature.vararg_rank
292 if vararg_rank >= 0 then
293 if args.length < msignature.arity then
294 #self.modelbuilder.error(node, "Error: Incorrect number of parameters. Got {args.length}, expected at least {msignature.arity}. Signature is {msignature}")
295 self.modelbuilder.error(node, "Error: arity mismatch; prototype is '{name}{msignature}'")
296 return false
297 end
298 else if args.length != msignature.arity then
299 self.modelbuilder.error(node, "Error: Incorrect number of parameters. Got {args.length}, expected {msignature.arity}. Signature is {msignature}")
300 return false
301 end
302
303 #debug("CALL {unsafe_type}.{msignature}")
304
305 var vararg_decl = args.length - msignature.arity
306 for i in [0..msignature.arity[ do
307 var j = i
308 if i == vararg_rank then continue # skip the vararg
309 if i > vararg_rank then
310 j = i + vararg_decl
311 end
312 var paramtype = msignature.mparameters[i].mtype
313 self.visit_expr_subtype(args[j], paramtype)
314 end
315 if vararg_rank >= 0 then
316 var varargs = new Array[AExpr]
317 var paramtype = msignature.mparameters[vararg_rank].mtype
318 for j in [vararg_rank..vararg_rank+vararg_decl] do
319 varargs.add(args[j])
320 self.visit_expr_subtype(args[j], paramtype)
321 end
322 end
323 return true
324 end
325
326 fun error(node: ANode, message: String)
327 do
328 self.modelbuilder.toolcontext.error(node.hot_location, message)
329 end
330
331 fun get_variable(node: AExpr, variable: Variable): nullable MType
332 do
333 var flow = node.after_flow_context
334 if flow == null then
335 self.error(node, "No context!")
336 return null
337 end
338
339 if flow.vars.has_key(variable) then
340 return flow.vars[variable]
341 else
342 #node.debug("*** START Collected for {variable}")
343 var mtypes = flow.collect_types(variable)
344 #node.debug("**** END Collected for {variable}")
345 if mtypes == null or mtypes.length == 0 then
346 return variable.declared_type
347 else if mtypes.length == 1 then
348 return mtypes.first
349 else
350 var res = merge_types(node,mtypes)
351 if res == null then res = variable.declared_type
352 return res
353 end
354 end
355 end
356
357 fun set_variable(node: AExpr, variable: Variable, mtype: nullable MType)
358 do
359 var flow = node.after_flow_context
360 assert flow != null
361
362 flow.set_var(variable, mtype)
363 end
364
365 fun merge_types(node: ANode, col: Array[nullable MType]): nullable MType
366 do
367 if col.length == 1 then return col.first
368 var res = new Array[nullable MType]
369 for t1 in col do
370 if t1 == null then continue # return null
371 var found = true
372 for t2 in col do
373 if t2 == null then continue # return null
374 if t2 isa MNullableType or t2 isa MNullType then
375 t1 = t1.as_nullable
376 end
377 if not is_subtype(t2, t1) then found = false
378 end
379 if found then
380 #print "merge {col.join(" ")} -> {t1}"
381 return t1
382 end
383 end
384 #self.modelbuilder.warning(node, "Type Error: {col.length} conflicting types: <{col.join(", ")}>")
385 return null
386 end
387 end
388
389 # A specific method call site with its associated informations.
390 class CallSite
391 # The assiciated node for location
392 var node: ANode
393
394 # The statis type of the receiver
395 var recv: MType
396
397 # Is the receiver self?
398 # If "for_self", virtual types of the signature are keeped
399 # If "not_for_self", virtual type are erased
400 var recv_is_self: Bool
401
402 # The designated method
403 var mproperty: MMethod
404
405 # The statically designated method definition
406 # The most specif one, it is.
407 var mpropdef: MMethodDef
408
409 # The resolved signature for the receiver
410 var msignature: MSignature
411
412 # Is a implicit cast required on erasure typing policy?
413 var erasure_cast: Bool
414
415 private fun check_signature(v: TypeVisitor, args: Array[AExpr]): Bool
416 do
417 return v.check_signature(self.node, args, self.mproperty.name, self.msignature)
418 end
419 end
420
421 redef class Variable
422 # The declared type of the variable
423 var declared_type: nullable MType
424 end
425
426 redef class FlowContext
427 # Store changes of types because of type evolution
428 private var vars: HashMap[Variable, nullable MType] = new HashMap[Variable, nullable MType]
429 private var cache: HashMap[Variable, nullable Array[nullable MType]] = new HashMap[Variable, nullable Array[nullable MType]]
430
431 # Adapt the variable to a static type
432 # Warning1: do not modify vars directly.
433 # Warning2: sub-flow may have cached a unadapted variabial
434 private fun set_var(variable: Variable, mtype: nullable MType)
435 do
436 self.vars[variable] = mtype
437 self.cache.keys.remove(variable)
438 end
439
440 private fun collect_types(variable: Variable): nullable Array[nullable MType]
441 do
442 if cache.has_key(variable) then
443 return cache[variable]
444 end
445 var res: nullable Array[nullable MType] = null
446 if vars.has_key(variable) then
447 var mtype = vars[variable]
448 res = [mtype]
449 else if self.previous.is_empty then
450 # Root flow
451 res = [variable.declared_type]
452 else
453 for flow in self.previous do
454 if flow.is_unreachable then continue
455 var r2 = flow.collect_types(variable)
456 if r2 == null then continue
457 if res == null then
458 res = r2.to_a
459 else
460 for t in r2 do
461 if not res.has(t) then res.add(t)
462 end
463 end
464 end
465 end
466 cache[variable] = res
467 return res
468 end
469 end
470
471 redef class APropdef
472 # The entry point of the whole typing analysis
473 fun do_typing(modelbuilder: ModelBuilder)
474 do
475 end
476
477 # The variable associated to the reciever (if any)
478 var selfvariable: nullable Variable
479 end
480
481 redef class AConcreteMethPropdef
482 redef fun do_typing(modelbuilder: ModelBuilder)
483 do
484 var nclassdef = self.parent.as(AClassdef)
485 var mpropdef = self.mpropdef.as(not null)
486 var v = new TypeVisitor(modelbuilder, nclassdef, mpropdef)
487 self.selfvariable = v.selfvariable
488
489 var nblock = self.n_block
490 if nblock == null then return
491
492 var mmethoddef = self.mpropdef.as(not null)
493 for i in [0..mmethoddef.msignature.arity[ do
494 var mtype = mmethoddef.msignature.mparameters[i].mtype
495 if mmethoddef.msignature.vararg_rank == i then
496 var arrayclass = v.get_mclass(self.n_signature.n_params[i], "Array")
497 if arrayclass == null then return # Skip error
498 mtype = arrayclass.get_mtype([mtype])
499 end
500 var variable = self.n_signature.n_params[i].variable
501 assert variable != null
502 variable.declared_type = mtype
503 end
504 v.visit_stmt(nblock)
505
506 if not nblock.after_flow_context.is_unreachable and mmethoddef.msignature.return_mtype != null then
507 # We reach the end of the function without having a return, it is bad
508 v.error(self, "Control error: Reached end of function (a 'return' with a value was expected).")
509 end
510 end
511 end
512
513 redef class AAttrPropdef
514 redef fun do_typing(modelbuilder: ModelBuilder)
515 do
516 var nclassdef = self.parent.as(AClassdef)
517 var v = new TypeVisitor(modelbuilder, nclassdef, self.mpropdef.as(not null))
518 self.selfvariable = v.selfvariable
519
520 var nexpr = self.n_expr
521 if nexpr != null then
522 var mtype = self.mpropdef.static_mtype
523 v.visit_expr_subtype(nexpr, mtype)
524 end
525 end
526 end
527
528 ###
529
530 redef class AExpr
531 # The static type of the expression.
532 # null if self is a statement of in case of error
533 var mtype: nullable MType = null
534
535 # Is the statement correctly typed?
536 # Used to distinguish errors and statements when `mtype == null`
537 var is_typed: Bool = false
538
539 # If required, the following implicit cast `.as(XXX)`
540 # Such a cast may by required after evaluating the expression when
541 # a unsafe operation is detected (silently accepted by the Nit language).
542 # The attribute is computed by `check_subtype`
543 var implicit_cast_to: nullable MType = null
544
545 # Return the variable read (if any)
546 # Used to perform adaptive typing
547 fun its_variable: nullable Variable do return null
548
549 private fun accept_typing(v: TypeVisitor)
550 do
551 v.error(self, "no implemented accept_typing for {self.class_name}")
552 end
553 end
554
555 redef class ABlockExpr
556 redef fun accept_typing(v)
557 do
558 for e in self.n_expr do v.visit_stmt(e)
559 self.is_typed = true
560 end
561
562 # The type of a blockexpr is the one of the last expression (or null if empty)
563 redef fun mtype
564 do
565 if self.n_expr.is_empty then return null
566 return self.n_expr.last.mtype
567 end
568 end
569
570 redef class AVardeclExpr
571 redef fun accept_typing(v)
572 do
573 var variable = self.variable
574 if variable == null then return # Skip error
575
576 var ntype = self.n_type
577 var mtype: nullable MType
578 if ntype == null then
579 mtype = null
580 else
581 mtype = v.resolve_mtype(ntype)
582 if mtype == null then return # Skip error
583 end
584
585 var nexpr = self.n_expr
586 if nexpr != null then
587 if mtype != null then
588 v.visit_expr_subtype(nexpr, mtype)
589 else
590 mtype = v.visit_expr(nexpr)
591 if mtype == null then return # Skip error
592 end
593 end
594
595 var decltype = mtype
596 if mtype == null or mtype isa MNullType then
597 decltype = v.get_mclass(self, "Object").mclass_type.as_nullable
598 if mtype == null then mtype = decltype
599 end
600
601 variable.declared_type = decltype
602 v.set_variable(self, variable, mtype)
603
604 #debug("var {variable}: {mtype}")
605
606 self.is_typed = true
607 end
608 end
609
610 redef class AVarExpr
611 redef fun its_variable do return self.variable
612 redef fun accept_typing(v)
613 do
614 var variable = self.variable
615 if variable == null then return # Skip error
616
617 var mtype = v.get_variable(self, variable)
618 if mtype != null then
619 #debug("{variable} is {mtype}")
620 else
621 #debug("{variable} is untyped")
622 end
623
624 self.mtype = mtype
625 end
626 end
627
628 redef class AVarAssignExpr
629 redef fun accept_typing(v)
630 do
631 var variable = self.variable
632 assert variable != null
633
634 var mtype = v.visit_expr_subtype(n_value, variable.declared_type)
635
636 v.set_variable(self, variable, mtype)
637
638 self.is_typed = true
639 end
640 end
641
642 redef class AReassignFormExpr
643 # The method designed by the reassign operator.
644 var reassign_callsite: nullable CallSite
645
646 var read_type: nullable MType = null
647
648 # Determine the `reassign_property`
649 # `readtype` is the type of the reading of the left value.
650 # `writetype` is the type of the writing of the left value.
651 # (Because of `ACallReassignExpr`, both can be different.
652 # Return the static type of the value to store.
653 private fun resolve_reassignment(v: TypeVisitor, readtype, writetype: MType): nullable MType
654 do
655 var reassign_name: String
656 if self.n_assign_op isa APlusAssignOp then
657 reassign_name = "+"
658 else if self.n_assign_op isa AMinusAssignOp then
659 reassign_name = "-"
660 else
661 abort
662 end
663
664 self.read_type = readtype
665
666 if readtype isa MNullType then
667 v.error(self, "Error: Method '{reassign_name}' call on 'null'.")
668 return null
669 end
670
671 var callsite = v.get_method(self, readtype, reassign_name, false)
672 if callsite == null then return null # Skip error
673 self.reassign_callsite = callsite
674
675 var msignature = callsite.msignature
676 var rettype = msignature.return_mtype
677 assert msignature.arity == 1 and rettype != null
678
679 var value_type = v.visit_expr_subtype(self.n_value, msignature.mparameters.first.mtype)
680 if value_type == null then return null # Skip error
681
682 v.check_subtype(self, rettype, writetype)
683 return rettype
684 end
685 end
686
687 redef class AVarReassignExpr
688 redef fun accept_typing(v)
689 do
690 var variable = self.variable
691 assert variable != null
692
693 var readtype = v.get_variable(self, variable)
694 if readtype == null then return
695
696 read_type = readtype
697
698 var writetype = variable.declared_type
699 if writetype == null then return
700
701 var rettype = self.resolve_reassignment(v, readtype, writetype)
702
703 v.set_variable(self, variable, rettype)
704
705 self.is_typed = true
706 end
707 end
708
709
710 redef class AContinueExpr
711 redef fun accept_typing(v)
712 do
713 var nexpr = self.n_expr
714 if nexpr != null then
715 var mtype = v.visit_expr(nexpr)
716 end
717 self.is_typed = true
718 end
719 end
720
721 redef class ABreakExpr
722 redef fun accept_typing(v)
723 do
724 var nexpr = self.n_expr
725 if nexpr != null then
726 var mtype = v.visit_expr(nexpr)
727 end
728 self.is_typed = true
729 end
730 end
731
732 redef class AReturnExpr
733 redef fun accept_typing(v)
734 do
735 var nexpr = self.n_expr
736 var ret_type = v.mpropdef.as(MMethodDef).msignature.return_mtype
737 if nexpr != null then
738 if ret_type != null then
739 var mtype = v.visit_expr_subtype(nexpr, ret_type)
740 else
741 var mtype = v.visit_expr(nexpr)
742 v.error(self, "Error: Return with value in a procedure.")
743 end
744 else if ret_type != null then
745 v.error(self, "Error: Return without value in a function.")
746 end
747 self.is_typed = true
748 end
749 end
750
751 redef class AAbortExpr
752 redef fun accept_typing(v)
753 do
754 self.is_typed = true
755 end
756 end
757
758 redef class AIfExpr
759 redef fun accept_typing(v)
760 do
761 v.visit_expr_bool(n_expr)
762
763 v.visit_stmt(n_then)
764 v.visit_stmt(n_else)
765 self.is_typed = true
766 end
767 end
768
769 redef class AIfexprExpr
770 redef fun accept_typing(v)
771 do
772 v.visit_expr_bool(n_expr)
773
774 var t1 = v.visit_expr(n_then)
775 var t2 = v.visit_expr(n_else)
776
777 if t1 == null or t2 == null then
778 return # Skip error
779 end
780
781 var t = v.merge_types(self, [t1, t2])
782 if t == null then
783 v.error(self, "Type Error: ambiguous type {t1} vs {t2}")
784 end
785 self.mtype = t
786 end
787 end
788
789 redef class ADoExpr
790 redef fun accept_typing(v)
791 do
792 v.visit_stmt(n_block)
793 self.is_typed = true
794 end
795 end
796
797 redef class AWhileExpr
798 redef fun accept_typing(v)
799 do
800 v.visit_expr_bool(n_expr)
801
802 v.visit_stmt(n_block)
803 self.is_typed = true
804 end
805 end
806
807 redef class ALoopExpr
808 redef fun accept_typing(v)
809 do
810 v.visit_stmt(n_block)
811 self.is_typed = true
812 end
813 end
814
815 redef class AForExpr
816 var coltype: nullable MClassType
817
818 var method_iterator: nullable MMethod
819 var method_is_ok: nullable MMethod
820 var method_item: nullable MMethod
821 var method_next: nullable MMethod
822 var method_key: nullable MMethod
823
824 private fun do_type_iterator(v: TypeVisitor, mtype: MType)
825 do
826 # get obj class
827 var objcla = v.get_mclass(self, "Object")
828 if objcla == null then return
829
830 # check iterator method
831 var unsafe_type = v.anchor_to(mtype)
832 if v.try_get_mproperty_by_name2(self, unsafe_type, "iterator") == null then
833 if v.try_get_mproperty_by_name2(self, unsafe_type, "iterate") == null then
834 v.error(self, "Type Error: Expected method 'iterator' in type {mtype}")
835 else
836 v.modelbuilder.error(self, "NOT YET IMPLEMENTED: Do 'for' on {mtype}")
837 end
838 return
839 end
840
841 var itdef = v.get_method(self, mtype, "iterator", true)
842 if itdef == null then
843 v.error(self, "Type Error: Expected method 'iterator' in type {mtype}")
844 return
845 end
846 self.method_iterator = itdef.mproperty
847
848 # check that iterator return something
849 var ittype = itdef.msignature.return_mtype
850 if ittype == null then
851 v.error(self, "Type Error: Expected method 'iterator' to return an Iterator or MapIterator type")
852 return
853 end
854
855 # get iterator type
856 var colit_cla = v.try_get_mclass(self, "Iterator")
857 var mapit_cla = v.try_get_mclass(self, "MapIterator")
858 var is_col = false
859 var is_map = false
860
861 if colit_cla != null and v.is_subtype(ittype, colit_cla.get_mtype([objcla.mclass_type.as_nullable])) then
862 # Iterator
863 var coltype = ittype.supertype_to(v.mmodule, v.anchor, colit_cla)
864 var variables = self.variables
865 if variables.length != 1 then
866 v.error(self, "Type Error: Expected one variable")
867 else
868 variables.first.declared_type = coltype.arguments.first
869 end
870 is_col = true
871 end
872
873 if mapit_cla != null and v.is_subtype(ittype, mapit_cla.get_mtype([objcla.mclass_type, objcla.mclass_type.as_nullable])) then
874 # Map Iterator
875 var coltype = ittype.supertype_to(v.mmodule, v.anchor, mapit_cla)
876 var variables = self.variables
877 if variables.length != 2 then
878 v.error(self, "Type Error: Expected two variables")
879 else
880 variables[0].declared_type = coltype.arguments[0]
881 variables[1].declared_type = coltype.arguments[1]
882 end
883 is_map = true
884 end
885
886 if not is_col and not is_map then
887 v.error(self, "Type Error: Expected method 'iterator' to return an Iterator of MapIterator type")
888 return
889 end
890
891 # anchor formal and virtual types
892 if mtype.need_anchor then mtype = v.anchor_to(mtype)
893
894 self.coltype = mtype.as(MClassType)
895
896 # get methods is_ok, next, item
897 var ikdef = v.get_method(self, ittype, "is_ok", false)
898 if ikdef == null then
899 v.error(self, "Type Error: Expected method 'is_ok' in Iterator type {ittype}")
900 return
901 end
902 self.method_is_ok = ikdef.mproperty
903
904 var itemdef = v.get_method(self, ittype, "item", false)
905 if itemdef == null then
906 v.error(self, "Type Error: Expected method 'item' in Iterator type {ittype}")
907 return
908 end
909 self.method_item = itemdef.mproperty
910
911 var nextdef = v.get_method(self, ittype, "next", false)
912 if nextdef == null then
913 v.error(self, "Type Error: Expected method 'next' in Iterator type {ittype}")
914 return
915 end
916 self.method_next = nextdef.mproperty
917
918 if is_map then
919 var keydef = v.get_method(self, ittype, "key", false)
920 if keydef == null then
921 v.error(self, "Type Error: Expected method 'key' in Iterator type {ittype}")
922 return
923 end
924 self.method_key = keydef.mproperty
925 end
926 end
927
928 redef fun accept_typing(v)
929 do
930 var mtype = v.visit_expr(n_expr)
931 if mtype == null then return
932
933 self.do_type_iterator(v, mtype)
934
935 v.visit_stmt(n_block)
936 self.is_typed = true
937 end
938 end
939
940 redef class AAssertExpr
941 redef fun accept_typing(v)
942 do
943 v.visit_expr_bool(n_expr)
944
945 v.visit_stmt(n_else)
946 self.is_typed = true
947 end
948 end
949
950 redef class AOrExpr
951 redef fun accept_typing(v)
952 do
953 v.visit_expr_bool(n_expr)
954 v.visit_expr_bool(n_expr2)
955 self.mtype = v.type_bool(self)
956 end
957 end
958
959 redef class AImpliesExpr
960 redef fun accept_typing(v)
961 do
962 v.visit_expr_bool(n_expr)
963 v.visit_expr_bool(n_expr2)
964 self.mtype = v.type_bool(self)
965 end
966 end
967
968 redef class AAndExpr
969 redef fun accept_typing(v)
970 do
971 v.visit_expr_bool(n_expr)
972 v.visit_expr_bool(n_expr2)
973 self.mtype = v.type_bool(self)
974 end
975 end
976
977
978 redef class ANotExpr
979 redef fun accept_typing(v)
980 do
981 v.visit_expr_bool(n_expr)
982 self.mtype = v.type_bool(self)
983 end
984 end
985
986 redef class AOrElseExpr
987 redef fun accept_typing(v)
988 do
989 var t1 = v.visit_expr(n_expr)
990 var t2 = v.visit_expr(n_expr2)
991
992 if t1 == null or t2 == null then
993 return # Skip error
994 end
995
996 if t1 isa MNullableType then
997 t1 = t1.mtype
998 end
999
1000 var t = v.merge_types(self, [t1, t2])
1001 if t == null then
1002 t = v.mmodule.object_type
1003 if t2 isa MNullableType then
1004 t = t.as_nullable
1005 end
1006 #v.error(self, "Type Error: ambiguous type {t1} vs {t2}")
1007 end
1008 self.mtype = t
1009 end
1010 end
1011
1012 redef class ATrueExpr
1013 redef fun accept_typing(v)
1014 do
1015 self.mtype = v.type_bool(self)
1016 end
1017 end
1018
1019 redef class AFalseExpr
1020 redef fun accept_typing(v)
1021 do
1022 self.mtype = v.type_bool(self)
1023 end
1024 end
1025
1026 redef class AIntExpr
1027 redef fun accept_typing(v)
1028 do
1029 var mclass = v.get_mclass(self, "Int")
1030 if mclass == null then return # Forward error
1031 self.mtype = mclass.mclass_type
1032 end
1033 end
1034
1035 redef class AFloatExpr
1036 redef fun accept_typing(v)
1037 do
1038 var mclass = v.get_mclass(self, "Float")
1039 if mclass == null then return # Forward error
1040 self.mtype = mclass.mclass_type
1041 end
1042 end
1043
1044 redef class ACharExpr
1045 redef fun accept_typing(v)
1046 do
1047 var mclass = v.get_mclass(self, "Char")
1048 if mclass == null then return # Forward error
1049 self.mtype = mclass.mclass_type
1050 end
1051 end
1052
1053 redef class AStringFormExpr
1054 redef fun accept_typing(v)
1055 do
1056 var mclass = v.get_mclass(self, "String")
1057 if mclass == null then return # Forward error
1058 self.mtype = mclass.mclass_type
1059 end
1060 end
1061
1062 redef class ASuperstringExpr
1063 redef fun accept_typing(v)
1064 do
1065 var mclass = v.get_mclass(self, "String")
1066 if mclass == null then return # Forward error
1067 self.mtype = mclass.mclass_type
1068 for nexpr in self.n_exprs do
1069 var t = v.visit_expr(nexpr)
1070 end
1071 end
1072 end
1073
1074 redef class AArrayExpr
1075 redef fun accept_typing(v)
1076 do
1077 var mtypes = new Array[nullable MType]
1078 for e in self.n_exprs.n_exprs do
1079 var t = v.visit_expr(e)
1080 if t == null then
1081 return # Skip error
1082 end
1083 mtypes.add(t)
1084 end
1085 var mtype = v.merge_types(self, mtypes)
1086 if mtype == null then
1087 v.error(self, "Type Error: ambiguous array type {mtypes.join(" ")}")
1088 return
1089 end
1090 var mclass = v.get_mclass(self, "Array")
1091 if mclass == null then return # Forward error
1092 self.mtype = mclass.get_mtype([mtype])
1093 end
1094 end
1095
1096 redef class ARangeExpr
1097 redef fun accept_typing(v)
1098 do
1099 var discrete_class = v.get_mclass(self, "Discrete")
1100 if discrete_class == null then return # Forward error
1101 var discrete_type = discrete_class.intro.bound_mtype
1102 var t1 = v.visit_expr_subtype(self.n_expr, discrete_type)
1103 var t2 = v.visit_expr_subtype(self.n_expr2, discrete_type)
1104 if t1 == null or t2 == null then return
1105 var mclass = v.get_mclass(self, "Range")
1106 if mclass == null then return # Forward error
1107 if v.is_subtype(t1, t2) then
1108 self.mtype = mclass.get_mtype([t2])
1109 else if v.is_subtype(t2, t1) then
1110 self.mtype = mclass.get_mtype([t1])
1111 else
1112 v.error(self, "Type Error: Cannot create range: {t1} vs {t2}")
1113 end
1114 end
1115 end
1116
1117 redef class ANullExpr
1118 redef fun accept_typing(v)
1119 do
1120 self.mtype = v.mmodule.model.null_type
1121 end
1122 end
1123
1124 redef class AIsaExpr
1125 # The static type to cast to.
1126 # (different from the static type of the expression that is `Bool`).
1127 var cast_type: nullable MType
1128 redef fun accept_typing(v)
1129 do
1130 var mtype = v.visit_expr_cast(self, self.n_expr, self.n_type)
1131 self.cast_type = mtype
1132
1133 var variable = self.n_expr.its_variable
1134 if variable != null then
1135 var orig = self.n_expr.mtype
1136 var from = if orig != null then orig.to_s else "invalid"
1137 var to = if mtype != null then mtype.to_s else "invalid"
1138 #debug("adapt {variable}: {from} -> {to}")
1139 self.after_flow_context.when_true.set_var(variable, mtype)
1140 end
1141
1142 self.mtype = v.type_bool(self)
1143 end
1144 end
1145
1146 redef class AAsCastExpr
1147 redef fun accept_typing(v)
1148 do
1149 self.mtype = v.visit_expr_cast(self, self.n_expr, self.n_type)
1150 end
1151 end
1152
1153 redef class AAsNotnullExpr
1154 redef fun accept_typing(v)
1155 do
1156 var mtype = v.visit_expr(self.n_expr)
1157 if mtype isa MNullType then
1158 v.error(self, "Type error: as(not null) on null")
1159 return
1160 end
1161 if mtype isa MNullableType then
1162 self.mtype = mtype.mtype
1163 return
1164 end
1165 # TODO: warn on useless as not null
1166 self.mtype = mtype
1167 end
1168 end
1169
1170 redef class AProxyExpr
1171 redef fun accept_typing(v)
1172 do
1173 self.mtype = v.visit_expr(self.n_expr)
1174 end
1175 end
1176
1177 redef class ASelfExpr
1178 redef var its_variable: nullable Variable
1179 redef fun accept_typing(v)
1180 do
1181 var variable = v.selfvariable
1182 self.its_variable = variable
1183 self.mtype = v.get_variable(self, variable)
1184 end
1185 end
1186
1187 ## MESSAGE SENDING AND PROPERTY
1188
1189 redef class ASendExpr
1190 # The property invoked by the send.
1191 var callsite: nullable CallSite
1192
1193 redef fun accept_typing(v)
1194 do
1195 var recvtype = v.visit_expr(self.n_expr)
1196 var name = self.property_name
1197
1198 if recvtype == null then return # Forward error
1199 if recvtype isa MNullType then
1200 v.error(self, "Error: Method '{name}' call on 'null'.")
1201 return
1202 end
1203
1204 var callsite = v.get_method(self, recvtype, name, self.n_expr isa ASelfExpr)
1205 if callsite == null then return
1206 self.callsite = callsite
1207 var msignature = callsite.msignature
1208
1209 var args = compute_raw_arguments
1210 self.raw_arguments = args
1211
1212 callsite.check_signature(v, args)
1213
1214 if callsite.mproperty.is_init then
1215 var vmpropdef = v.mpropdef
1216 if not (vmpropdef isa MMethodDef and vmpropdef.mproperty.is_init) then
1217 v.error(self, "Can call a init only in another init")
1218 end
1219 end
1220
1221 var ret = msignature.return_mtype
1222 if ret != null then
1223 self.mtype = ret
1224 else
1225 self.is_typed = true
1226 end
1227 end
1228
1229 # The name of the property
1230 # Each subclass simply provide the correct name.
1231 private fun property_name: String is abstract
1232
1233 # An array of all arguments (excluding self)
1234 var raw_arguments: nullable Array[AExpr]
1235
1236 private fun compute_raw_arguments: Array[AExpr] is abstract
1237 end
1238
1239 redef class ABinopExpr
1240 redef fun compute_raw_arguments do return [n_expr2]
1241 end
1242 redef class AEqExpr
1243 redef fun property_name do return "=="
1244 redef fun accept_typing(v)
1245 do
1246 super
1247
1248 var variable = self.n_expr.its_variable
1249 if variable == null then return
1250 var mtype = self.n_expr2.mtype
1251 if not mtype isa MNullType then return
1252 var vartype = v.get_variable(self, variable)
1253 if not vartype isa MNullableType then return
1254 self.after_flow_context.when_true.set_var(variable, mtype)
1255 self.after_flow_context.when_false.set_var(variable, vartype.mtype)
1256 #debug("adapt {variable}:{vartype} ; true->{mtype} false->{vartype.mtype}")
1257 end
1258 end
1259 redef class ANeExpr
1260 redef fun property_name do return "!="
1261 redef fun accept_typing(v)
1262 do
1263 super
1264
1265 var variable = self.n_expr.its_variable
1266 if variable == null then return
1267 var mtype = self.n_expr2.mtype
1268 if not mtype isa MNullType then return
1269 var vartype = v.get_variable(self, variable)
1270 if not vartype isa MNullableType then return
1271 self.after_flow_context.when_false.set_var(variable, mtype)
1272 self.after_flow_context.when_true.set_var(variable, vartype.mtype)
1273 #debug("adapt {variable}:{vartype} ; true->{vartype.mtype} false->{mtype}")
1274 end
1275 end
1276 redef class ALtExpr
1277 redef fun property_name do return "<"
1278 end
1279 redef class ALeExpr
1280 redef fun property_name do return "<="
1281 end
1282 redef class ALlExpr
1283 redef fun property_name do return "<<"
1284 end
1285 redef class AGtExpr
1286 redef fun property_name do return ">"
1287 end
1288 redef class AGeExpr
1289 redef fun property_name do return ">="
1290 end
1291 redef class AGgExpr
1292 redef fun property_name do return ">>"
1293 end
1294 redef class APlusExpr
1295 redef fun property_name do return "+"
1296 end
1297 redef class AMinusExpr
1298 redef fun property_name do return "-"
1299 end
1300 redef class AStarshipExpr
1301 redef fun property_name do return "<=>"
1302 end
1303 redef class AStarExpr
1304 redef fun property_name do return "*"
1305 end
1306 redef class ASlashExpr
1307 redef fun property_name do return "/"
1308 end
1309 redef class APercentExpr
1310 redef fun property_name do return "%"
1311 end
1312
1313 redef class AUminusExpr
1314 redef fun property_name do return "unary -"
1315 redef fun compute_raw_arguments do return new Array[AExpr]
1316 end
1317
1318
1319 redef class ACallExpr
1320 redef fun property_name do return n_id.text
1321 redef fun compute_raw_arguments do return n_args.to_a
1322 end
1323
1324 redef class ACallAssignExpr
1325 redef fun property_name do return n_id.text + "="
1326 redef fun compute_raw_arguments
1327 do
1328 var res = n_args.to_a
1329 res.add(n_value)
1330 return res
1331 end
1332 end
1333
1334 redef class ABraExpr
1335 redef fun property_name do return "[]"
1336 redef fun compute_raw_arguments do return n_args.to_a
1337 end
1338
1339 redef class ABraAssignExpr
1340 redef fun property_name do return "[]="
1341 redef fun compute_raw_arguments
1342 do
1343 var res = n_args.to_a
1344 res.add(n_value)
1345 return res
1346 end
1347 end
1348
1349 redef class ASendReassignFormExpr
1350 # The property invoked for the writing
1351 var write_callsite: nullable CallSite
1352
1353 redef fun accept_typing(v)
1354 do
1355 var recvtype = v.visit_expr(self.n_expr)
1356 var name = self.property_name
1357
1358 if recvtype == null then return # Forward error
1359 if recvtype isa MNullType then
1360 v.error(self, "Error: Method '{name}' call on 'null'.")
1361 return
1362 end
1363
1364 var for_self = self.n_expr isa ASelfExpr
1365 var callsite = v.get_method(self, recvtype, name, for_self)
1366
1367 if callsite == null then return
1368 self.callsite = callsite
1369
1370 var args = compute_raw_arguments
1371 self.raw_arguments = args
1372
1373 callsite.check_signature(v, args)
1374
1375 var readtype = callsite.msignature.return_mtype
1376 if readtype == null then
1377 v.error(self, "Error: {name} is not a function")
1378 return
1379 end
1380
1381 var wcallsite = v.get_method(self, recvtype, name + "=", self.n_expr isa ASelfExpr)
1382 if wcallsite == null then return
1383 self.write_callsite = wcallsite
1384
1385 var wtype = self.resolve_reassignment(v, readtype, wcallsite.msignature.mparameters.last.mtype)
1386 if wtype == null then return
1387
1388 args = args.to_a # duplicate so raw_arguments keeps only the getter args
1389 args.add(self.n_value)
1390 wcallsite.check_signature(v, args)
1391
1392 self.is_typed = true
1393 end
1394 end
1395
1396 redef class ACallReassignExpr
1397 redef fun property_name do return n_id.text
1398 redef fun compute_raw_arguments do return n_args.to_a
1399 end
1400
1401 redef class ABraReassignExpr
1402 redef fun property_name do return "[]"
1403 redef fun compute_raw_arguments do return n_args.to_a
1404 end
1405
1406 redef class AInitExpr
1407 redef fun property_name do return "init"
1408 redef fun compute_raw_arguments do return n_args.to_a
1409 end
1410
1411 redef class AExprs
1412 fun to_a: Array[AExpr] do return self.n_exprs.to_a
1413 end
1414
1415 ###
1416
1417 redef class ASuperExpr
1418 # The method to call if the super is in fact a 'super init call'
1419 # Note: if the super is a normal call-next-method, then this attribute is null
1420 var callsite: nullable CallSite
1421
1422 redef fun accept_typing(v)
1423 do
1424 var recvtype = v.nclassdef.mclassdef.bound_mtype
1425 var mproperty = v.mpropdef.mproperty
1426 if not mproperty isa MMethod then
1427 v.error(self, "Error: super only usable in a method")
1428 return
1429 end
1430 var superprops = mproperty.lookup_super_definitions(v.mmodule, recvtype)
1431 if superprops.length == 0 then
1432 if mproperty.is_init and v.mpropdef.is_intro then
1433 process_superinit(v)
1434 return
1435 end
1436 v.error(self, "Error: No super method to call for {mproperty}.")
1437 return
1438 end
1439 # FIXME: covariance of return type in linear extension?
1440 var superprop = superprops.first
1441
1442 var msignature = v.resolve_signature_for(superprop, recvtype, true)
1443 var args = self.n_args.to_a
1444 if args.length > 0 then
1445 v.check_signature(self, args, mproperty.name, msignature)
1446 end
1447 self.mtype = msignature.return_mtype
1448 self.is_typed = true
1449 v.mpropdef.has_supercall = true
1450 end
1451
1452 private fun process_superinit(v: TypeVisitor)
1453 do
1454 var recvtype = v.nclassdef.mclassdef.bound_mtype
1455 var mproperty = v.mpropdef.mproperty
1456 var superprop: nullable MMethodDef = null
1457 for msupertype in v.nclassdef.mclassdef.supertypes do
1458 msupertype = msupertype.anchor_to(v.mmodule, recvtype)
1459 var errcount = v.modelbuilder.toolcontext.error_count
1460 var candidate = v.try_get_mproperty_by_name2(self, msupertype, mproperty.name).as(nullable MMethod)
1461 if candidate == null then
1462 if v.modelbuilder.toolcontext.error_count > errcount then return # Forard error
1463 continue # Try next super-class
1464 end
1465 if superprop != null and superprop.mproperty != candidate then
1466 v.error(self, "Error: conflicting super constructor to call for {mproperty}: {candidate.full_name}, {superprop.mproperty.full_name}")
1467 return
1468 end
1469 var candidatedefs = candidate.lookup_definitions(v.mmodule, recvtype)
1470 if superprop != null then
1471 if superprop == candidatedefs.first then continue
1472 candidatedefs.add(superprop)
1473 end
1474 if candidatedefs.length > 1 then
1475 v.error(self, "Error: confliting property definitions for property {mproperty} in {recvtype}: {candidatedefs.join(", ")}")
1476 return
1477 end
1478 superprop = candidatedefs.first
1479 end
1480 if superprop == null then
1481 v.error(self, "Error: No super method to call for {mproperty}.")
1482 return
1483 end
1484
1485 var msignature = v.resolve_signature_for(superprop, recvtype, true)
1486 var callsite = new CallSite(self, recvtype, true, superprop.mproperty, superprop, msignature, false)
1487 self.callsite = callsite
1488
1489 var args = self.n_args.to_a
1490 if args.length > 0 then
1491 callsite.check_signature(v, args)
1492 else
1493 # TODO: Check signature
1494 end
1495
1496 self.is_typed = true
1497 end
1498 end
1499
1500 ####
1501
1502 redef class ANewExpr
1503 # The constructor invoked by the new.
1504 var callsite: nullable CallSite
1505
1506 redef fun accept_typing(v)
1507 do
1508 var recvtype = v.resolve_mtype(self.n_type)
1509 if recvtype == null then return
1510 self.mtype = recvtype
1511
1512 if not recvtype isa MClassType then
1513 if recvtype isa MNullableType then
1514 v.error(self, "Type error: cannot instantiate the nullable type {recvtype}.")
1515 return
1516 else
1517 v.error(self, "Type error: cannot instantiate the formal type {recvtype}.")
1518 return
1519 end
1520 else
1521 if recvtype.mclass.kind == abstract_kind then
1522 v.error(self, "Cannot instantiate abstract class {recvtype}.")
1523 return
1524 else if recvtype.mclass.kind == interface_kind then
1525 v.error(self, "Cannot instantiate interface {recvtype}.")
1526 return
1527 end
1528 end
1529
1530 var name: String
1531 var nid = self.n_id
1532 if nid != null then
1533 name = nid.text
1534 else
1535 name = "init"
1536 end
1537 var callsite = v.get_method(self, recvtype, name, false)
1538 if callsite == null then return
1539
1540 self.callsite = callsite
1541
1542 if not callsite.mproperty.is_init_for(recvtype.mclass) then
1543 v.error(self, "Error: {name} is not a constructor.")
1544 return
1545 end
1546
1547 var args = n_args.to_a
1548 callsite.check_signature(v, args)
1549 end
1550 end
1551
1552 ####
1553
1554 redef class AAttrFormExpr
1555 # The attribute acceded.
1556 var mproperty: nullable MAttribute
1557
1558 # The static type of the attribute.
1559 var attr_type: nullable MType
1560
1561 # Resolve the attribute acceded.
1562 private fun resolve_property(v: TypeVisitor)
1563 do
1564 var recvtype = v.visit_expr(self.n_expr)
1565 if recvtype == null then return # Skip error
1566 var name = self.n_id.text
1567 if recvtype isa MNullType then
1568 v.error(self, "Error: Attribute '{name}' access on 'null'.")
1569 return
1570 end
1571
1572 var unsafe_type = v.anchor_to(recvtype)
1573 var mproperty = v.try_get_mproperty_by_name2(self, unsafe_type, name)
1574 if mproperty == null then
1575 v.modelbuilder.error(self, "Error: Attribute {name} doesn't exists in {recvtype}.")
1576 return
1577 end
1578 assert mproperty isa MAttribute
1579 self.mproperty = mproperty
1580
1581 var mpropdefs = mproperty.lookup_definitions(v.mmodule, unsafe_type)
1582 assert mpropdefs.length == 1
1583 var mpropdef = mpropdefs.first
1584 var attr_type = mpropdef.static_mtype.as(not null)
1585 attr_type = v.resolve_for(attr_type, recvtype, self.n_expr isa ASelfExpr)
1586 self.attr_type = attr_type
1587 end
1588 end
1589
1590 redef class AAttrExpr
1591 redef fun accept_typing(v)
1592 do
1593 self.resolve_property(v)
1594 self.mtype = self.attr_type
1595 end
1596 end
1597
1598
1599 redef class AAttrAssignExpr
1600 redef fun accept_typing(v)
1601 do
1602 self.resolve_property(v)
1603 var mtype = self.attr_type
1604
1605 v.visit_expr_subtype(self.n_value, mtype)
1606 self.is_typed = true
1607 end
1608 end
1609
1610 redef class AAttrReassignExpr
1611 redef fun accept_typing(v)
1612 do
1613 self.resolve_property(v)
1614 var mtype = self.attr_type
1615 if mtype == null then return # Skip error
1616
1617 self.resolve_reassignment(v, mtype, mtype)
1618
1619 self.is_typed = true
1620 end
1621 end
1622
1623 redef class AIssetAttrExpr
1624 redef fun accept_typing(v)
1625 do
1626 self.resolve_property(v)
1627 var mtype = self.attr_type
1628 if mtype == null then return # Skip error
1629
1630 var recvtype = self.n_expr.mtype.as(not null)
1631 var bound = v.resolve_for(mtype, recvtype, false)
1632 if bound isa MNullableType then
1633 v.error(self, "Error: isset on a nullable attribute.")
1634 end
1635 self.mtype = v.type_bool(self)
1636 end
1637 end
1638
1639 ###
1640
1641 redef class ADebugTypeExpr
1642 redef fun accept_typing(v)
1643 do
1644 var expr = v.visit_expr(self.n_expr)
1645 if expr == null then return
1646 var unsafe = v.anchor_to(expr)
1647 var ntype = self.n_type
1648 var mtype = v.resolve_mtype(ntype)
1649 if mtype != null and mtype != expr then
1650 var umtype = v.anchor_to(mtype)
1651 v.modelbuilder.warning(self, "Found type {expr} (-> {unsafe}), expected {mtype} (-> {umtype})")
1652 end
1653 self.is_typed = true
1654 end
1655 end