1 ------------------------------------------------------------------------------
3 -- GNAT COMPILER COMPONENTS --
9 -- Copyright (C) 1992-2016, Free Software Foundation, Inc. --
11 -- GNAT is free software; you can redistribute it and/or modify it under --
12 -- terms of the GNU General Public License as published by the Free Soft- --
13 -- ware Foundation; either version 3, or (at your option) any later ver- --
14 -- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
15 -- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
16 -- or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License --
17 -- for more details. You should have received a copy of the GNU General --
18 -- Public License distributed with GNAT; see file COPYING3. If not, go to --
19 -- http://www.gnu.org/licenses for a complete copy of the license. --
21 -- GNAT was originally developed by the GNAT team at New York University. --
22 -- Extensive contributions were provided by Ada Core Technologies Inc. --
24 ------------------------------------------------------------------------------
26 with Atree
; use Atree
;
27 with Debug
; use Debug
;
28 with Einfo
; use Einfo
;
29 with Elists
; use Elists
;
30 with Errout
; use Errout
;
31 with Exp_Disp
; use Exp_Disp
;
32 with Fname
; use Fname
;
34 with Namet
; use Namet
;
35 with Nlists
; use Nlists
;
38 with Sem_Attr
; use Sem_Attr
;
39 with Sem_Aux
; use Sem_Aux
;
40 with Sem_Dist
; use Sem_Dist
;
41 with Sem_Eval
; use Sem_Eval
;
42 with Sem_Util
; use Sem_Util
;
43 with Sinfo
; use Sinfo
;
44 with Snames
; use Snames
;
45 with Stand
; use Stand
;
47 package body Sem_Cat
is
49 -----------------------
50 -- Local Subprograms --
51 -----------------------
53 procedure Check_Categorization_Dependencies
54 (Unit_Entity
: Entity_Id
;
55 Depended_Entity
: Entity_Id
;
57 Is_Subunit
: Boolean);
58 -- This procedure checks that the categorization of a lib unit and that
59 -- of the depended unit satisfy dependency restrictions.
60 -- The depended_entity can be the entity in a with_clause item, in which
61 -- case Info_Node denotes that item. The depended_entity can also be the
62 -- parent unit of a child unit, in which case Info_Node is the declaration
63 -- of the child unit. The error message is posted on Info_Node, and is
64 -- specialized if Is_Subunit is true.
66 procedure Check_Non_Static_Default_Expr
69 -- Iterate through the component list of a record definition, check
70 -- that no component is declared with a nonstatic default value.
71 -- If a nonstatic default exists, report an error on Obj_Decl.
73 function Has_Read_Write_Attributes
(E
: Entity_Id
) return Boolean;
74 -- Return True if entity has attribute definition clauses for Read and
75 -- Write attributes that are visible at some place.
77 function Is_Non_Remote_Access_Type
(E
: Entity_Id
) return Boolean;
78 -- Returns true if the entity is a type whose full view is a non-remote
79 -- access type, for the purpose of enforcing E.2.2(8) rules.
81 function Has_Non_Remote_Access
(Typ
: Entity_Id
) return Boolean;
82 -- Return true if Typ or the type of any of its subcomponents is a non
83 -- remote access type and doesn't have user-defined stream attributes.
85 function No_External_Streaming
(E
: Entity_Id
) return Boolean;
86 -- Return True if the entity or one of its subcomponents does not support
87 -- external streaming.
89 function In_RCI_Declaration
return Boolean;
90 function In_RT_Declaration
return Boolean;
91 -- Determine if current scope is within the declaration of a Remote Call
92 -- Interface or Remote Types unit, for semantic checking purposes.
94 function In_Package_Declaration
return Boolean;
95 -- Shared supporting routine for In_RCI_Declaration and In_RT_Declaration
97 function In_Shared_Passive_Unit
return Boolean;
98 -- Determines if current scope is within a Shared Passive compilation unit
100 function Static_Discriminant_Expr
(L
: List_Id
) return Boolean;
101 -- Iterate through the list of discriminants to check if any of them
102 -- contains non-static default expression, which is a violation in
103 -- a preelaborated library unit.
105 procedure Validate_Remote_Access_Object_Type_Declaration
(T
: Entity_Id
);
106 -- Check validity of declaration if RCI or RT unit. It should not contain
107 -- the declaration of an access-to-object type unless it is a general
108 -- access type that designates a class-wide limited private type. There are
109 -- also constraints about the primitive subprograms of the class-wide type.
110 -- RM E.2 (9, 13, 14)
112 procedure Validate_RACW_Primitive
115 -- Check legality of the declaration of primitive Subp of the designated
116 -- type of the given RACW type.
118 ---------------------------------------
119 -- Check_Categorization_Dependencies --
120 ---------------------------------------
122 procedure Check_Categorization_Dependencies
123 (Unit_Entity
: Entity_Id
;
124 Depended_Entity
: Entity_Id
;
126 Is_Subunit
: Boolean)
128 N
: constant Node_Id
:= Info_Node
;
131 -- Here we define an enumeration type to represent categorization types,
132 -- ordered so that a unit with a given categorization can only WITH
133 -- units with lower or equal categorization type.
135 type Categorization
is
139 Remote_Call_Interface
,
142 function Get_Categorization
(E
: Entity_Id
) return Categorization
;
143 -- Check categorization flags from entity, and return in the form
144 -- of the lowest value of the Categorization type that applies to E.
146 ------------------------
147 -- Get_Categorization --
148 ------------------------
150 function Get_Categorization
(E
: Entity_Id
) return Categorization
is
152 -- Get the lowest categorization that corresponds to E. Note that
153 -- nothing prevents several (different) categorization pragmas
154 -- to apply to the same library unit, in which case the unit has
155 -- all associated categories, so we need to be careful here to
156 -- check pragmas in proper Categorization order in order to
157 -- return the lowest applicable value.
159 -- Ignore Pure specification if set by pragma Pure_Function
163 (Has_Pragma_Pure_Function
(E
) and not Has_Pragma_Pure
(E
))
167 elsif Is_Shared_Passive
(E
) then
168 return Shared_Passive
;
170 elsif Is_Remote_Types
(E
) then
173 elsif Is_Remote_Call_Interface
(E
) then
174 return Remote_Call_Interface
;
179 end Get_Categorization
;
181 Unit_Category
: Categorization
;
182 With_Category
: Categorization
;
184 -- Start of processing for Check_Categorization_Dependencies
187 -- Intrinsic subprograms are preelaborated, so do not impose any
188 -- categorization dependencies. Also, ignore categorization
189 -- dependencies when compilation switch -gnatdu is used.
191 if Is_Intrinsic_Subprogram
(Depended_Entity
) or else Debug_Flag_U
then
195 -- First check 10.2.1 (11/1) rules on preelaborate packages
197 if Is_Preelaborated
(Unit_Entity
)
198 and then not Is_Preelaborated
(Depended_Entity
)
199 and then not Is_Pure
(Depended_Entity
)
206 -- Check categorization rules of RM E.2(5)
208 Unit_Category
:= Get_Categorization
(Unit_Entity
);
209 With_Category
:= Get_Categorization
(Depended_Entity
);
211 if With_Category
> Unit_Category
then
213 -- Special case: Remote_Types and Remote_Call_Interface are allowed
214 -- to WITH anything in the package body, per (RM E.2(5)).
216 if (Unit_Category
= Remote_Types
217 or else Unit_Category
= Remote_Call_Interface
)
218 and then In_Package_Body
(Unit_Entity
)
222 -- Special case: Remote_Types and Remote_Call_Interface declarations
223 -- can depend on a preelaborated unit via a private with_clause, per
226 elsif (Unit_Category
= Remote_Types
228 Unit_Category
= Remote_Call_Interface
)
229 and then Nkind
(N
) = N_With_Clause
230 and then Private_Present
(N
)
231 and then Is_Preelaborated
(Depended_Entity
)
235 -- All other cases, we do have an error
242 -- Here if we have an error
246 -- These messages are warnings in GNAT mode or if the -gnateP switch
247 -- was set. Otherwise these are real errors for real illegalities.
249 -- The reason we suppress these errors in GNAT mode is that the run-
250 -- time has several instances of violations of the categorization
251 -- errors (e.g. Pure units withing Preelaborate units. All these
252 -- violations are harmless in the cases where we intend them, and
253 -- we suppress the warnings with Warnings (Off). In cases where we
254 -- do not intend the violation, warnings are errors in GNAT mode
255 -- anyway, so we will still get an error.
258 Treat_Categorization_Errors_As_Warnings
or GNAT_Mode
;
260 -- Don't give error if main unit is not an internal unit, and the
261 -- unit generating the message is an internal unit. This is the
262 -- situation in which such messages would be ignored in any case,
263 -- so it is convenient not to generate them (since it causes
264 -- annoying interference with debugging).
266 if Is_Internal_File_Name
(Unit_File_Name
(Current_Sem_Unit
))
267 and then not Is_Internal_File_Name
(Unit_File_Name
(Main_Unit
))
271 -- Dependence of Remote_Types or Remote_Call_Interface declaration
272 -- on a preelaborated unit with a normal with_clause.
274 elsif (Unit_Category
= Remote_Types
276 Unit_Category
= Remote_Call_Interface
)
277 and then Is_Preelaborated
(Depended_Entity
)
280 ("<<must use private with clause for preelaborated unit& ",
285 elsif Is_Subunit
then
287 ("<subunit cannot depend on& " &
288 "(parent has wrong categorization)", N
, Depended_Entity
);
290 -- Normal unit, not subunit
294 ("<<cannot depend on& " &
295 "(wrong categorization)", N
, Depended_Entity
);
298 -- Add further explanation for Pure/Preelaborate common cases
300 if Unit_Category
= Pure
then
302 ("\<<pure unit cannot depend on non-pure unit",
305 elsif Is_Preelaborated
(Unit_Entity
)
306 and then not Is_Preelaborated
(Depended_Entity
)
307 and then not Is_Pure
(Depended_Entity
)
310 ("\<<preelaborated unit cannot depend on "
311 & "non-preelaborated unit",
315 end Check_Categorization_Dependencies
;
317 -----------------------------------
318 -- Check_Non_Static_Default_Expr --
319 -----------------------------------
321 procedure Check_Non_Static_Default_Expr
326 Component_Decl
: Node_Id
;
329 if Nkind
(Type_Def
) = N_Derived_Type_Definition
then
330 Recdef
:= Record_Extension_Part
(Type_Def
);
340 -- Check that component declarations do not involve:
342 -- a. a non-static default expression, where the object is
343 -- declared to be default initialized.
345 -- b. a dynamic Itype (discriminants and constraints)
347 if Null_Present
(Recdef
) then
350 Component_Decl
:= First
(Component_Items
(Component_List
(Recdef
)));
353 while Present
(Component_Decl
)
354 and then Nkind
(Component_Decl
) = N_Component_Declaration
356 if Present
(Expression
(Component_Decl
))
357 and then Nkind
(Expression
(Component_Decl
)) /= N_Null
358 and then not Is_OK_Static_Expression
(Expression
(Component_Decl
))
360 Error_Msg_Sloc
:= Sloc
(Component_Decl
);
362 ("object in preelaborated unit has non-static default#",
365 -- Fix this later ???
367 -- elsif Has_Dynamic_Itype (Component_Decl) then
369 -- ("dynamic type discriminant," &
370 -- " constraint in preelaborated unit",
374 Next
(Component_Decl
);
376 end Check_Non_Static_Default_Expr
;
378 ---------------------------
379 -- Has_Non_Remote_Access --
380 ---------------------------
382 function Has_Non_Remote_Access
(Typ
: Entity_Id
) return Boolean is
383 Component
: Entity_Id
;
384 Comp_Type
: Entity_Id
;
385 U_Typ
: constant Entity_Id
:= Underlying_Type
(Typ
);
391 elsif Has_Read_Write_Attributes
(Typ
)
392 or else Has_Read_Write_Attributes
(U_Typ
)
396 elsif Is_Non_Remote_Access_Type
(U_Typ
) then
400 if Is_Record_Type
(U_Typ
) then
401 Component
:= First_Entity
(U_Typ
);
402 while Present
(Component
) loop
403 if not Is_Tag
(Component
) then
404 Comp_Type
:= Etype
(Component
);
406 if Has_Non_Remote_Access
(Comp_Type
) then
411 Next_Entity
(Component
);
414 elsif Is_Array_Type
(U_Typ
) then
415 return Has_Non_Remote_Access
(Component_Type
(U_Typ
));
420 end Has_Non_Remote_Access
;
422 -------------------------------
423 -- Has_Read_Write_Attributes --
424 -------------------------------
426 function Has_Read_Write_Attributes
(E
: Entity_Id
) return Boolean is
429 and then Has_Stream_Attribute_Definition
430 (E
, TSS_Stream_Read
, At_Any_Place
=> True)
431 and then Has_Stream_Attribute_Definition
432 (E
, TSS_Stream_Write
, At_Any_Place
=> True);
433 end Has_Read_Write_Attributes
;
435 -------------------------------------
436 -- Has_Stream_Attribute_Definition --
437 -------------------------------------
439 function Has_Stream_Attribute_Definition
442 At_Any_Place
: Boolean := False) return Boolean
447 -- The stream operation may be specified by an attribute definition
448 -- clause in the source, or by an aspect that generates such an
449 -- attribute definition. For an aspect, the generated attribute
450 -- definition may be placed at the freeze point of the full view of
451 -- the type, but the aspect specification makes the operation visible
452 -- to a client wherever the partial view is visible.
455 -- We start from the declaration node and then loop until the end of
456 -- the list until we find the requested attribute definition clause.
457 -- In Ada 2005 mode, clauses are ignored if they are not currently
458 -- visible (this is tested using the corresponding Entity, which is
459 -- inserted by the expander at the point where the clause occurs),
460 -- unless At_Any_Place is true.
462 Rep_Item
:= First_Rep_Item
(Typ
);
463 while Present
(Rep_Item
) loop
464 Real_Rep
:= Rep_Item
;
466 -- If the representation item is an aspect specification, retrieve
467 -- the corresponding pragma or attribute definition.
469 if Nkind
(Rep_Item
) = N_Aspect_Specification
then
470 Real_Rep
:= Aspect_Rep_Item
(Rep_Item
);
473 if Nkind
(Real_Rep
) = N_Attribute_Definition_Clause
then
474 case Chars
(Real_Rep
) is
476 exit when Nam
= TSS_Stream_Read
;
479 exit when Nam
= TSS_Stream_Write
;
482 exit when Nam
= TSS_Stream_Input
;
485 exit when Nam
= TSS_Stream_Output
;
492 Next_Rep_Item
(Rep_Item
);
495 -- If not found, and the type is derived from a private view, check
496 -- for a stream attribute inherited from parent. Any specified stream
497 -- attributes will be attached to the derived type's underlying type
498 -- rather the derived type entity itself (which is itself private).
501 and then Is_Private_Type
(Typ
)
502 and then Is_Derived_Type
(Typ
)
503 and then Present
(Full_View
(Typ
))
505 return Has_Stream_Attribute_Definition
506 (Underlying_Type
(Typ
), Nam
, At_Any_Place
);
508 -- Otherwise, if At_Any_Place is true, return True if the attribute is
509 -- available at any place; if it is false, return True only if the
510 -- attribute is currently visible.
513 return Present
(Rep_Item
)
514 and then (Ada_Version
< Ada_2005
516 or else not Is_Hidden
(Entity
(Rep_Item
)));
518 end Has_Stream_Attribute_Definition
;
520 ----------------------------
521 -- In_Package_Declaration --
522 ----------------------------
524 function In_Package_Declaration
return Boolean is
525 Unit_Kind
: constant Node_Kind
:=
526 Nkind
(Unit
(Cunit
(Current_Sem_Unit
)));
529 -- There are no restrictions on the body of an RCI or RT unit
531 return Is_Package_Or_Generic_Package
(Current_Scope
)
532 and then Unit_Kind
/= N_Package_Body
533 and then not In_Package_Body
(Current_Scope
)
534 and then not In_Instance
;
535 end In_Package_Declaration
;
537 ---------------------------
538 -- In_Preelaborated_Unit --
539 ---------------------------
541 function In_Preelaborated_Unit
return Boolean is
542 Unit_Entity
: Entity_Id
:= Current_Scope
;
543 Unit_Kind
: constant Node_Kind
:=
544 Nkind
(Unit
(Cunit
(Current_Sem_Unit
)));
547 -- If evaluating actuals for a child unit instantiation, then ignore
548 -- the preelaboration status of the parent; use the child instead.
550 if Is_Compilation_Unit
(Unit_Entity
)
551 and then Unit_Kind
in N_Generic_Instantiation
552 and then not In_Same_Source_Unit
(Unit_Entity
,
553 Cunit
(Current_Sem_Unit
))
555 Unit_Entity
:= Cunit_Entity
(Current_Sem_Unit
);
558 -- There are no constraints on the body of Remote_Call_Interface or
559 -- Remote_Types packages.
561 return (Unit_Entity
/= Standard_Standard
)
562 and then (Is_Preelaborated
(Unit_Entity
)
563 or else Is_Pure
(Unit_Entity
)
564 or else Is_Shared_Passive
(Unit_Entity
)
566 ((Is_Remote_Types
(Unit_Entity
)
567 or else Is_Remote_Call_Interface
(Unit_Entity
))
568 and then Ekind
(Unit_Entity
) = E_Package
569 and then Unit_Kind
/= N_Package_Body
570 and then not In_Package_Body
(Unit_Entity
)
571 and then not In_Instance
));
572 end In_Preelaborated_Unit
;
578 function In_Pure_Unit
return Boolean is
580 return Is_Pure
(Current_Scope
);
583 ------------------------
584 -- In_RCI_Declaration --
585 ------------------------
587 function In_RCI_Declaration
return Boolean is
589 return Is_Remote_Call_Interface
(Current_Scope
)
590 and then In_Package_Declaration
;
591 end In_RCI_Declaration
;
593 -----------------------
594 -- In_RT_Declaration --
595 -----------------------
597 function In_RT_Declaration
return Boolean is
599 return Is_Remote_Types
(Current_Scope
) and then In_Package_Declaration
;
600 end In_RT_Declaration
;
602 ----------------------------
603 -- In_Shared_Passive_Unit --
604 ----------------------------
606 function In_Shared_Passive_Unit
return Boolean is
607 Unit_Entity
: constant Entity_Id
:= Current_Scope
;
610 return Is_Shared_Passive
(Unit_Entity
);
611 end In_Shared_Passive_Unit
;
613 ---------------------------------------
614 -- In_Subprogram_Task_Protected_Unit --
615 ---------------------------------------
617 function In_Subprogram_Task_Protected_Unit
return Boolean is
621 -- The following is to verify that a declaration is inside
622 -- subprogram, generic subprogram, task unit, protected unit.
623 -- Used to validate if a lib. unit is Pure. RM 10.2.1(16).
625 -- Use scope chain to check successively outer scopes
629 if Is_Subprogram_Or_Generic_Subprogram
(E
)
631 Is_Concurrent_Type
(E
)
635 elsif E
= Standard_Standard
then
641 end In_Subprogram_Task_Protected_Unit
;
643 -------------------------------
644 -- Is_Non_Remote_Access_Type --
645 -------------------------------
647 function Is_Non_Remote_Access_Type
(E
: Entity_Id
) return Boolean is
648 U_E
: constant Entity_Id
:= Underlying_Type
(Base_Type
(E
));
649 -- Use full view of base type to handle subtypes properly.
654 -- This case arises for the case of a generic formal type, in which
655 -- case E.2.2(8) rules will be enforced at instantiation time.
660 return Is_Access_Type
(U_E
)
661 and then not Is_Remote_Access_To_Class_Wide_Type
(U_E
)
662 and then not Is_Remote_Access_To_Subprogram_Type
(U_E
);
663 end Is_Non_Remote_Access_Type
;
665 ---------------------------
666 -- No_External_Streaming --
667 ---------------------------
669 function No_External_Streaming
(E
: Entity_Id
) return Boolean is
670 U_E
: constant Entity_Id
:= Underlying_Type
(E
);
676 elsif Has_Read_Write_Attributes
(E
) then
678 -- Note: availability of stream attributes is tested on E, not U_E.
679 -- There may be stream attributes defined on U_E that are not visible
680 -- at the place where support of external streaming is tested.
684 elsif Has_Non_Remote_Access
(U_E
) then
688 return Is_Limited_Type
(E
);
689 end No_External_Streaming
;
691 -------------------------------------
692 -- Set_Categorization_From_Pragmas --
693 -------------------------------------
695 procedure Set_Categorization_From_Pragmas
(N
: Node_Id
) is
696 P
: constant Node_Id
:= Parent
(N
);
697 S
: constant Entity_Id
:= Current_Scope
;
699 procedure Set_Parents
(Visibility
: Boolean);
700 -- If this is a child instance, the parents are not immediately
701 -- visible during analysis. Make them momentarily visible so that
702 -- the argument of the pragma can be resolved properly, and reset
709 procedure Set_Parents
(Visibility
: Boolean) is
713 while Present
(Par
) and then Par
/= Standard_Standard
loop
714 Set_Is_Immediately_Visible
(Par
, Visibility
);
719 -- Start of processing for Set_Categorization_From_Pragmas
722 -- Deal with categorization pragmas in Pragmas of Compilation_Unit.
723 -- The purpose is to set categorization flags before analyzing the
724 -- unit itself, so as to diagnose violations of categorization as
725 -- we process each declaration, even though the pragma appears after
728 if Nkind
(P
) /= N_Compilation_Unit
then
736 if Is_Child_Unit
(S
) and then Is_Generic_Instance
(S
) then
740 PN
:= First
(Pragmas_After
(Aux_Decls_Node
(P
)));
741 while Present
(PN
) loop
743 -- Skip implicit types that may have been introduced by
744 -- previous analysis.
746 if Nkind
(PN
) = N_Pragma
then
747 case Get_Pragma_Id
(PN
) is
748 when Pragma_All_Calls_Remote
749 | Pragma_Preelaborate
751 | Pragma_Remote_Call_Interface
752 | Pragma_Remote_Types
753 | Pragma_Shared_Passive
765 if Is_Child_Unit
(S
) and then Is_Generic_Instance
(S
) then
769 end Set_Categorization_From_Pragmas
;
771 -----------------------------------
772 -- Set_Categorization_From_Scope --
773 -----------------------------------
775 procedure Set_Categorization_From_Scope
(E
: Entity_Id
; Scop
: Entity_Id
) is
776 Declaration
: Node_Id
:= Empty
;
777 Specification
: Node_Id
:= Empty
;
780 -- Do not modify the purity of an internally generated entity if it has
781 -- been explicitly marked as pure for optimization purposes.
783 if not Has_Pragma_Pure_Function
(E
) then
785 (E
, Is_Pure
(Scop
) and then Is_Library_Level_Entity
(E
));
788 if not Is_Remote_Call_Interface
(E
) then
789 if Ekind
(E
) in Subprogram_Kind
then
790 Declaration
:= Unit_Declaration_Node
(E
);
792 if Nkind_In
(Declaration
, N_Subprogram_Body
,
793 N_Subprogram_Renaming_Declaration
)
795 Specification
:= Corresponding_Spec
(Declaration
);
799 -- A subprogram body or renaming-as-body is a remote call interface
800 -- if it serves as the completion of a subprogram declaration that
801 -- is a remote call interface.
803 if Nkind
(Specification
) in N_Entity
then
804 Set_Is_Remote_Call_Interface
805 (E
, Is_Remote_Call_Interface
(Specification
));
807 -- A subprogram declaration is a remote call interface when it is
808 -- declared within the visible part of, or declared by, a library
809 -- unit declaration that is a remote call interface.
812 Set_Is_Remote_Call_Interface
813 (E
, Is_Remote_Call_Interface
(Scop
)
814 and then not (In_Private_Part
(Scop
)
815 or else In_Package_Body
(Scop
)));
820 (E
, Is_Remote_Types
(Scop
)
821 and then not (In_Private_Part
(Scop
)
822 or else In_Package_Body
(Scop
)));
823 end Set_Categorization_From_Scope
;
825 ------------------------------
826 -- Static_Discriminant_Expr --
827 ------------------------------
829 -- We need to accommodate a Why_Not_Static call somehow here ???
831 function Static_Discriminant_Expr
(L
: List_Id
) return Boolean is
832 Discriminant_Spec
: Node_Id
;
835 Discriminant_Spec
:= First
(L
);
836 while Present
(Discriminant_Spec
) loop
837 if Present
(Expression
(Discriminant_Spec
))
839 not Is_OK_Static_Expression
(Expression
(Discriminant_Spec
))
844 Next
(Discriminant_Spec
);
848 end Static_Discriminant_Expr
;
850 --------------------------------------
851 -- Validate_Access_Type_Declaration --
852 --------------------------------------
854 procedure Validate_Access_Type_Declaration
(T
: Entity_Id
; N
: Node_Id
) is
855 Def
: constant Node_Id
:= Type_Definition
(N
);
860 -- Access to subprogram case
862 when N_Access_To_Subprogram_Definition
=>
864 -- A pure library_item must not contain the declaration of a
865 -- named access type, except within a subprogram, generic
866 -- subprogram, task unit, or protected unit (RM 10.2.1(16)).
868 -- This test is skipped in Ada 2005 (see AI-366)
870 if Ada_Version
< Ada_2005
871 and then Comes_From_Source
(T
)
872 and then In_Pure_Unit
873 and then not In_Subprogram_Task_Protected_Unit
875 Error_Msg_N
("named access type not allowed in pure unit", T
);
878 -- Access to object case
880 when N_Access_To_Object_Definition
=>
881 if Comes_From_Source
(T
)
882 and then In_Pure_Unit
883 and then not In_Subprogram_Task_Protected_Unit
885 -- We can't give the message yet, since the type is not frozen
886 -- and in Ada 2005 mode, access types are allowed in pure units
887 -- if the type has no storage pool (see AI-366). So we set a
888 -- flag which will be checked at freeze time.
890 Set_Is_Pure_Unit_Access_Type
(T
);
893 -- Check for RCI or RT unit type declaration: declaration of an
894 -- access-to-object type is illegal unless it is a general access
895 -- type that designates a class-wide limited private type.
896 -- Note that constraints on the primitive subprograms of the
897 -- designated tagged type are not enforced here but in
898 -- Validate_RACW_Primitives, which is done separately because the
899 -- designated type might not be frozen (and therefore its
900 -- primitive operations might not be completely known) at the
901 -- point of the RACW declaration.
903 Validate_Remote_Access_Object_Type_Declaration
(T
);
905 -- Check for shared passive unit type declaration. It should
906 -- not contain the declaration of access to class wide type,
907 -- access to task type and access to protected type with entry.
909 Validate_SP_Access_Object_Type_Decl
(T
);
915 -- Set categorization flag from package on entity as well, to allow
916 -- easy checks later on for required validations of RCI or RT units.
917 -- This is only done for entities that are in the original source.
919 if Comes_From_Source
(T
)
920 and then not (In_Package_Body
(Scope
(T
))
921 or else In_Private_Part
(Scope
(T
)))
923 Set_Is_Remote_Call_Interface
924 (T
, Is_Remote_Call_Interface
(Scope
(T
)));
926 (T
, Is_Remote_Types
(Scope
(T
)));
928 end Validate_Access_Type_Declaration
;
930 ----------------------------
931 -- Validate_Ancestor_Part --
932 ----------------------------
934 procedure Validate_Ancestor_Part
(N
: Node_Id
) is
935 A
: constant Node_Id
:= Ancestor_Part
(N
);
936 T
: constant Entity_Id
:= Entity
(A
);
939 if In_Preelaborated_Unit
940 and then not In_Subprogram_Or_Concurrent_Unit
941 and then (not Inside_A_Generic
942 or else Present
(Enclosing_Generic_Body
(N
)))
944 -- If the type is private, it must have the Ada 2005 pragma
945 -- Has_Preelaborable_Initialization.
947 -- The check is omitted within predefined units. This is probably
948 -- obsolete code to fix the Ada 95 weakness in this area ???
950 if Is_Private_Type
(T
)
951 and then not Has_Pragma_Preelab_Init
(T
)
952 and then not Is_Internal_File_Name
953 (Unit_File_Name
(Get_Source_Unit
(N
)))
956 ("private ancestor type not allowed in preelaborated unit", A
);
958 elsif Is_Record_Type
(T
) then
959 if Nkind
(Parent
(T
)) = N_Full_Type_Declaration
then
960 Check_Non_Static_Default_Expr
961 (Type_Definition
(Parent
(T
)), A
);
965 end Validate_Ancestor_Part
;
967 ----------------------------------------
968 -- Validate_Categorization_Dependency --
969 ----------------------------------------
971 procedure Validate_Categorization_Dependency
975 K
: constant Node_Kind
:= Nkind
(N
);
976 P
: Node_Id
:= Parent
(N
);
978 Is_Subunit
: constant Boolean := Nkind
(P
) = N_Subunit
;
981 -- Only validate library units and subunits. For subunits, checks
982 -- concerning withed units apply to the parent compilation unit.
989 and then not Is_Compilation_Unit
(U
)
990 and then not Is_Child_Unit
(U
)
996 if Nkind
(P
) /= N_Compilation_Unit
then
1000 -- Body of RCI unit does not need validation
1002 if Is_Remote_Call_Interface
(E
)
1003 and then Nkind_In
(N
, N_Package_Body
, N_Subprogram_Body
)
1008 -- Ada 2005 (AI-50217): Process explicit non-limited with_clauses
1012 Entity_Of_Withed
: Entity_Id
;
1015 Item
:= First
(Context_Items
(P
));
1016 while Present
(Item
) loop
1017 if Nkind
(Item
) = N_With_Clause
1019 not (Implicit_With
(Item
)
1020 or else Limited_Present
(Item
)
1022 -- Skip if error already posted on the WITH clause (in
1023 -- which case the Name attribute may be invalid). In
1024 -- particular, this fixes the problem of hanging in the
1025 -- presence of a WITH clause on a child that is an
1026 -- illegal generic instantiation.
1028 or else Error_Posted
(Item
))
1032 -- Skip processing malformed trees
1034 and then Nkind
(Name
(Item
)) not in N_Has_Entity
)
1036 Entity_Of_Withed
:= Entity
(Name
(Item
));
1037 Check_Categorization_Dependencies
1038 (U
, Entity_Of_Withed
, Item
, Is_Subunit
);
1045 -- Child depends on parent; therefore parent should also be categorized
1046 -- and satisfy the dependency hierarchy.
1048 -- Check if N is a child spec
1050 if (K
in N_Generic_Declaration
or else
1051 K
in N_Generic_Instantiation
or else
1052 K
in N_Generic_Renaming_Declaration
or else
1053 K
= N_Package_Declaration
or else
1054 K
= N_Package_Renaming_Declaration
or else
1055 K
= N_Subprogram_Declaration
or else
1056 K
= N_Subprogram_Renaming_Declaration
)
1057 and then Present
(Parent_Spec
(N
))
1059 Check_Categorization_Dependencies
(E
, Scope
(E
), N
, False);
1061 -- Verify that public child of an RCI library unit must also be an
1062 -- RCI library unit (RM E.2.3(15)).
1064 if Is_Remote_Call_Interface
(Scope
(E
))
1065 and then not Private_Present
(P
)
1066 and then not Is_Remote_Call_Interface
(E
)
1068 Error_Msg_N
("public child of rci unit must also be rci unit", N
);
1071 end Validate_Categorization_Dependency
;
1073 --------------------------------
1074 -- Validate_Controlled_Object --
1075 --------------------------------
1077 procedure Validate_Controlled_Object
(E
: Entity_Id
) is
1079 -- Don't need this check in Ada 2005 mode, where this is all taken
1080 -- care of by the mechanism for Preelaborable Initialization.
1082 if Ada_Version
>= Ada_2005
then
1086 -- For now, never apply this check for internal GNAT units, since we
1087 -- have a number of cases in the library where we are stuck with objects
1088 -- of this type, and the RM requires Preelaborate.
1090 -- For similar reasons, we only do this check for source entities, since
1091 -- we generate entities of this type in some situations.
1093 -- Note that the 10.2.1(9) restrictions are not relevant to us anyway.
1094 -- We have to enforce them for RM compatibility, but we have no trouble
1095 -- accepting these objects and doing the right thing. Note that there is
1096 -- no requirement that Preelaborate not actually generate any code.
1098 if In_Preelaborated_Unit
1099 and then not Debug_Flag_PP
1100 and then Comes_From_Source
(E
)
1102 Is_Internal_File_Name
(Unit_File_Name
(Get_Source_Unit
(E
)))
1103 and then (not Inside_A_Generic
1104 or else Present
(Enclosing_Generic_Body
(E
)))
1105 and then not Is_Protected_Type
(Etype
(E
))
1108 ("library level controlled object not allowed in " &
1109 "preelaborated unit", E
);
1111 end Validate_Controlled_Object
;
1113 --------------------------------------
1114 -- Validate_Null_Statement_Sequence --
1115 --------------------------------------
1117 procedure Validate_Null_Statement_Sequence
(N
: Node_Id
) is
1121 if In_Preelaborated_Unit
then
1122 Item
:= First
(Statements
(Handled_Statement_Sequence
(N
)));
1123 while Present
(Item
) loop
1124 if Nkind
(Item
) /= N_Label
1125 and then Nkind
(Item
) /= N_Null_Statement
1127 -- In GNAT mode, this is a warning, allowing the run-time
1128 -- to judiciously bypass this error condition.
1130 Error_Msg_Warn
:= GNAT_Mode
;
1132 ("<<statements not allowed in preelaborated unit", Item
);
1140 end Validate_Null_Statement_Sequence
;
1142 ---------------------------------
1143 -- Validate_Object_Declaration --
1144 ---------------------------------
1146 procedure Validate_Object_Declaration
(N
: Node_Id
) is
1147 Id
: constant Entity_Id
:= Defining_Identifier
(N
);
1148 E
: constant Node_Id
:= Expression
(N
);
1149 Odf
: constant Node_Id
:= Object_Definition
(N
);
1150 T
: constant Entity_Id
:= Etype
(Id
);
1153 -- Verify that any access to subprogram object does not have in its
1154 -- subprogram profile access type parameters or limited parameters
1155 -- without Read and Write attributes (E.2.3(13)).
1157 Validate_RCI_Subprogram_Declaration
(N
);
1159 -- Check that if we are in preelaborated elaboration code, then we
1160 -- do not have an instance of a default initialized private, task or
1161 -- protected object declaration which would violate (RM 10.2.1(9)).
1162 -- Note that constants are never default initialized (and the test
1163 -- below also filters out deferred constants). A variable is default
1164 -- initialized if it does *not* have an initialization expression.
1166 -- Filter out cases that are not declaration of a variable from source
1168 if Nkind
(N
) /= N_Object_Declaration
1169 or else Constant_Present
(N
)
1170 or else not Comes_From_Source
(Id
)
1175 -- Exclude generic specs from the checks (this will get rechecked
1176 -- on instantiations).
1178 if Inside_A_Generic
and then No
(Enclosing_Generic_Body
(Id
)) then
1182 -- Required checks for declaration that is in a preelaborated package
1183 -- and is not within some subprogram.
1185 if In_Preelaborated_Unit
1186 and then not In_Subprogram_Or_Concurrent_Unit
1188 -- Check for default initialized variable case. Note that in
1189 -- accordance with (RM B.1(24)) imported objects are not subject to
1190 -- default initialization.
1191 -- If the initialization does not come from source and is an
1192 -- aggregate, it is a static initialization that replaces an
1193 -- implicit call, and must be treated as such.
1196 and then (Comes_From_Source
(E
) or else Nkind
(E
) /= N_Aggregate
)
1200 elsif Is_Imported
(Id
) then
1205 Ent
: Entity_Id
:= T
;
1208 -- An array whose component type is a record with nonstatic
1209 -- default expressions is a violation, so we get the array's
1212 if Is_Array_Type
(Ent
) then
1214 Comp_Type
: Entity_Id
;
1217 Comp_Type
:= Component_Type
(Ent
);
1218 while Is_Array_Type
(Comp_Type
) loop
1219 Comp_Type
:= Component_Type
(Comp_Type
);
1226 -- Object decl. that is of record type and has no default expr.
1227 -- should check if there is any non-static default expression
1228 -- in component decl. of the record type decl.
1230 if Is_Record_Type
(Ent
) then
1231 if Nkind
(Parent
(Ent
)) = N_Full_Type_Declaration
then
1232 Check_Non_Static_Default_Expr
1233 (Type_Definition
(Parent
(Ent
)), N
);
1235 elsif Nkind
(Odf
) = N_Subtype_Indication
1236 and then not Is_Array_Type
(T
)
1237 and then not Is_Private_Type
(T
)
1239 Check_Non_Static_Default_Expr
(Type_Definition
1240 (Parent
(Entity
(Subtype_Mark
(Odf
)))), N
);
1244 -- Check for invalid use of private object. Note that Ada 2005
1245 -- AI-161 modifies the rules for Ada 2005, including the use of
1246 -- the new pragma Preelaborable_Initialization.
1248 if Is_Private_Type
(Ent
)
1249 or else Depends_On_Private
(Ent
)
1251 -- Case where type has preelaborable initialization which
1252 -- means that a pragma Preelaborable_Initialization was
1253 -- given for the private type.
1255 if Relaxed_RM_Semantics
then
1257 -- In relaxed mode, do not issue these messages, this
1258 -- is basically similar to the GNAT_Mode test below.
1262 elsif Has_Preelaborable_Initialization
(Ent
) then
1264 -- But for the predefined units, we will ignore this
1265 -- status unless we are in Ada 2005 mode since we want
1266 -- Ada 95 compatible behavior, in which the entities
1267 -- marked with this pragma in the predefined library are
1268 -- not treated specially.
1270 if Ada_Version
< Ada_2005
then
1272 ("private object not allowed in preelaborated unit",
1274 Error_Msg_N
("\(would be legal in Ada 2005 mode)", N
);
1277 -- Type does not have preelaborable initialization
1280 -- We allow this when compiling in GNAT mode to make life
1281 -- easier for some cases where it would otherwise be hard
1282 -- to be exactly valid Ada.
1284 if not GNAT_Mode
then
1286 ("private object not allowed in preelaborated unit",
1289 -- Add a message if it would help to provide a pragma
1290 -- Preelaborable_Initialization on the type of the
1291 -- object (which would make it legal in Ada 2005).
1293 -- If the type has no full view (generic type, or
1294 -- previous error), the warning does not apply.
1296 if Is_Private_Type
(Ent
)
1297 and then Present
(Full_View
(Ent
))
1299 Has_Preelaborable_Initialization
(Full_View
(Ent
))
1301 Error_Msg_Sloc
:= Sloc
(Ent
);
1303 if Ada_Version
>= Ada_2005
then
1305 ("\would be legal if pragma Preelaborable_" &
1306 "Initialization given for & #", N
, Ent
);
1309 ("\would be legal in Ada 2005 if pragma " &
1310 "Preelaborable_Initialization given for & #",
1317 -- Access to Task or Protected type
1319 elsif Is_Entity_Name
(Odf
)
1320 and then Present
(Etype
(Odf
))
1321 and then Is_Access_Type
(Etype
(Odf
))
1323 Ent
:= Designated_Type
(Etype
(Odf
));
1325 elsif Is_Entity_Name
(Odf
) then
1326 Ent
:= Entity
(Odf
);
1328 elsif Nkind
(Odf
) = N_Subtype_Indication
then
1329 Ent
:= Etype
(Subtype_Mark
(Odf
));
1331 elsif Nkind
(Odf
) = N_Constrained_Array_Definition
then
1332 Ent
:= Component_Type
(T
);
1335 if Is_Task_Type
(Ent
)
1336 or else (Is_Protected_Type
(Ent
) and then Has_Entries
(Ent
))
1339 ("concurrent object not allowed in preelaborated unit",
1346 -- Non-static discriminants not allowed in preelaborated unit.
1347 -- Objects of a controlled type with a user-defined Initialize
1348 -- are forbidden as well.
1350 if Is_Record_Type
(Etype
(Id
)) then
1352 ET
: constant Entity_Id
:= Etype
(Id
);
1353 EE
: constant Entity_Id
:= Etype
(Etype
(Id
));
1357 if Has_Discriminants
(ET
) and then Present
(EE
) then
1360 if Nkind
(PEE
) = N_Full_Type_Declaration
1361 and then not Static_Discriminant_Expr
1362 (Discriminant_Specifications
(PEE
))
1365 ("non-static discriminant in preelaborated unit",
1370 -- For controlled type or type with controlled component, check
1371 -- preelaboration flag, as there may be a non-null Initialize
1372 -- primitive. For language versions earlier than Ada 2005,
1373 -- there is no notion of preelaborable initialization, and
1374 -- Validate_Controlled_Object is used to enforce rules for
1375 -- controlled objects.
1377 if (Is_Controlled
(ET
) or else Has_Controlled_Component
(ET
))
1378 and then Ada_Version
>= Ada_2005
1379 and then not Has_Preelaborable_Initialization
(ET
)
1382 ("controlled type& does not have"
1383 & " preelaborable initialization", N
, ET
);
1390 -- A pure library_item must not contain the declaration of any variable
1391 -- except within a subprogram, generic subprogram, task unit, or
1392 -- protected unit (RM 10.2.1(16)).
1394 if In_Pure_Unit
and then not In_Subprogram_Task_Protected_Unit
then
1395 Error_Msg_N
("declaration of variable not allowed in pure unit", N
);
1397 elsif not In_Private_Part
(Id
) then
1399 -- The visible part of an RCI library unit must not contain the
1400 -- declaration of a variable (RM E.1.3(9)).
1402 if In_RCI_Declaration
then
1403 Error_Msg_N
("visible variable not allowed in 'R'C'I unit", N
);
1405 -- The visible part of a Shared Passive library unit must not contain
1406 -- the declaration of a variable (RM E.2.2(7)).
1408 elsif In_RT_Declaration
then
1410 ("visible variable not allowed in remote types unit", N
);
1413 end Validate_Object_Declaration
;
1415 -----------------------------
1416 -- Validate_RACW_Primitive --
1417 -----------------------------
1419 procedure Validate_RACW_Primitive
1423 procedure Illegal_Remote_Subp
(Msg
: String; N
: Node_Id
);
1424 -- Diagnose illegality on N. If RACW is present, report the error on it
1425 -- rather than on N.
1427 -------------------------
1428 -- Illegal_Remote_Subp --
1429 -------------------------
1431 procedure Illegal_Remote_Subp
(Msg
: String; N
: Node_Id
) is
1433 if Present
(RACW
) then
1434 if not Error_Posted
(RACW
) then
1436 ("illegal remote access to class-wide type&", RACW
);
1439 Error_Msg_Sloc
:= Sloc
(N
);
1440 Error_Msg_NE
("\\" & Msg
& " in primitive& #", RACW
, Subp
);
1443 Error_Msg_NE
(Msg
& " in remote subprogram&", N
, Subp
);
1445 end Illegal_Remote_Subp
;
1449 Param_Spec
: Node_Id
;
1450 Param_Type
: Entity_Id
;
1452 -- Start of processing for Validate_RACW_Primitive
1455 -- Check return type
1457 if Ekind
(Subp
) = E_Function
then
1458 Rtyp
:= Etype
(Subp
);
1460 -- AI05-0101 (Binding Interpretation): The result type of a remote
1461 -- function must either support external streaming or be a
1462 -- controlling access result type.
1464 if Has_Controlling_Result
(Subp
) then
1467 elsif Ekind
(Rtyp
) = E_Anonymous_Access_Type
then
1468 Illegal_Remote_Subp
("anonymous access result", Rtyp
);
1470 elsif Is_Limited_Type
(Rtyp
) then
1471 if No
(TSS
(Rtyp
, TSS_Stream_Read
))
1473 No
(TSS
(Rtyp
, TSS_Stream_Write
))
1476 ("limited return type must have Read and Write attributes",
1478 Explain_Limited_Type
(Rtyp
, Parent
(Subp
));
1481 -- Check that the return type supports external streaming
1483 elsif No_External_Streaming
(Rtyp
)
1484 and then not Error_Posted
(Rtyp
)
1486 Illegal_Remote_Subp
("return type containing non-remote access "
1487 & "must have Read and Write attributes",
1492 Param
:= First_Formal
(Subp
);
1493 while Present
(Param
) loop
1495 -- Now find out if this parameter is a controlling parameter
1497 Param_Spec
:= Parent
(Param
);
1498 Param_Type
:= Etype
(Param
);
1500 if Is_Controlling_Formal
(Param
) then
1502 -- It is a controlling parameter, so specific checks below do not
1507 elsif Ekind_In
(Param_Type
, E_Anonymous_Access_Type
,
1508 E_Anonymous_Access_Subprogram_Type
)
1510 -- From RM E.2.2(14), no anonymous access parameter other than
1511 -- controlling ones may be used (because an anonymous access
1512 -- type never supports external streaming).
1515 ("non-controlling access parameter", Param_Spec
);
1517 elsif No_External_Streaming
(Param_Type
)
1518 and then not Error_Posted
(Param_Type
)
1520 Illegal_Remote_Subp
("formal parameter in remote subprogram must "
1521 & "support external streaming", Param_Spec
);
1524 -- Check next parameter in this subprogram
1526 Next_Formal
(Param
);
1528 end Validate_RACW_Primitive
;
1530 ------------------------------
1531 -- Validate_RACW_Primitives --
1532 ------------------------------
1534 procedure Validate_RACW_Primitives
(T
: Entity_Id
) is
1535 Desig_Type
: Entity_Id
;
1536 Primitive_Subprograms
: Elist_Id
;
1537 Subprogram_Elmt
: Elmt_Id
;
1538 Subprogram
: Entity_Id
;
1541 Desig_Type
:= Etype
(Designated_Type
(T
));
1543 -- No action needed for concurrent types
1545 if Is_Concurrent_Type
(Desig_Type
) then
1549 Primitive_Subprograms
:= Primitive_Operations
(Desig_Type
);
1551 Subprogram_Elmt
:= First_Elmt
(Primitive_Subprograms
);
1552 while Subprogram_Elmt
/= No_Elmt
loop
1553 Subprogram
:= Node
(Subprogram_Elmt
);
1555 if Is_Predefined_Dispatching_Operation
(Subprogram
)
1556 or else Is_Hidden
(Subprogram
)
1558 goto Next_Subprogram
;
1561 Validate_RACW_Primitive
(Subp
=> Subprogram
, RACW
=> T
);
1564 Next_Elmt
(Subprogram_Elmt
);
1566 end Validate_RACW_Primitives
;
1568 -------------------------------
1569 -- Validate_RCI_Declarations --
1570 -------------------------------
1572 procedure Validate_RCI_Declarations
(P
: Entity_Id
) is
1576 E
:= First_Entity
(P
);
1577 while Present
(E
) loop
1578 if Comes_From_Source
(E
) then
1579 if Is_Limited_Type
(E
) then
1581 ("limited type not allowed in rci unit", Parent
(E
));
1582 Explain_Limited_Type
(E
, Parent
(E
));
1584 elsif Ekind_In
(E
, E_Generic_Function
,
1586 E_Generic_Procedure
)
1588 Error_Msg_N
("generic declaration not allowed in rci unit",
1591 elsif (Ekind
(E
) = E_Function
or else Ekind
(E
) = E_Procedure
)
1592 and then Has_Pragma_Inline
(E
)
1595 ("inlined subprogram not allowed in rci unit", Parent
(E
));
1597 -- Inner packages that are renamings need not be checked. Generic
1598 -- RCI packages are subject to the checks, but entities that come
1599 -- from formal packages are not part of the visible declarations
1600 -- of the package and are not checked.
1602 elsif Ekind
(E
) = E_Package
then
1603 if Present
(Renamed_Entity
(E
)) then
1606 elsif Ekind
(P
) /= E_Generic_Package
1607 or else List_Containing
(Unit_Declaration_Node
(E
)) /=
1608 Generic_Formal_Declarations
1609 (Unit_Declaration_Node
(P
))
1611 Validate_RCI_Declarations
(E
);
1618 end Validate_RCI_Declarations
;
1620 -----------------------------------------
1621 -- Validate_RCI_Subprogram_Declaration --
1622 -----------------------------------------
1624 procedure Validate_RCI_Subprogram_Declaration
(N
: Node_Id
) is
1625 K
: constant Node_Kind
:= Nkind
(N
);
1627 Id
: constant Entity_Id
:= Defining_Entity
(N
);
1628 Param_Spec
: Node_Id
;
1629 Param_Type
: Entity_Id
;
1630 Error_Node
: Node_Id
:= N
;
1633 -- This procedure enforces rules on subprogram and access to subprogram
1634 -- declarations in RCI units. These rules do not apply to expander
1635 -- generated routines, which are not remote subprograms. It is called:
1637 -- 1. from Analyze_Subprogram_Declaration.
1638 -- 2. from Validate_Object_Declaration (access to subprogram).
1640 if not (Comes_From_Source
(N
)
1641 and then In_RCI_Declaration
1642 and then not In_Private_Part
(Scope
(Id
)))
1647 if K
= N_Subprogram_Declaration
then
1648 Profile
:= Parameter_Specifications
(Specification
(N
));
1651 pragma Assert
(K
= N_Object_Declaration
);
1653 -- The above assertion is dubious, the visible declarations of an
1654 -- RCI unit never contain an object declaration, this should be an
1655 -- ACCESS-to-object declaration???
1657 if Nkind
(Id
) = N_Defining_Identifier
1658 and then Nkind
(Parent
(Etype
(Id
))) = N_Full_Type_Declaration
1659 and then Ekind
(Etype
(Id
)) = E_Access_Subprogram_Type
1662 Parameter_Specifications
(Type_Definition
(Parent
(Etype
(Id
))));
1668 -- Iterate through the parameter specification list, checking that
1669 -- no access parameter and no limited type parameter in the list.
1672 if Present
(Profile
) then
1673 Param_Spec
:= First
(Profile
);
1674 while Present
(Param_Spec
) loop
1675 Param_Type
:= Etype
(Defining_Identifier
(Param_Spec
));
1677 if Ekind
(Param_Type
) = E_Anonymous_Access_Type
then
1678 if K
= N_Subprogram_Declaration
then
1679 Error_Node
:= Param_Spec
;
1682 -- Report error only if declaration is in source program
1684 if Comes_From_Source
(Id
) then
1686 ("subprogram in 'R'C'I unit cannot have access parameter",
1690 -- For a limited private type parameter, we check only the private
1691 -- declaration and ignore full type declaration, unless this is
1692 -- the only declaration for the type, e.g., as a limited record.
1694 elsif No_External_Streaming
(Param_Type
) then
1695 if K
= N_Subprogram_Declaration
then
1696 Error_Node
:= Param_Spec
;
1700 ("formal of remote subprogram& "
1701 & "must support external streaming",
1703 if Is_Limited_Type
(Param_Type
) then
1704 Explain_Limited_Type
(Param_Type
, Error_Node
);
1712 if Ekind
(Id
) = E_Function
1713 and then Ekind
(Etype
(Id
)) = E_Anonymous_Access_Type
1714 and then Comes_From_Source
(Id
)
1717 ("function in 'R'C'I unit cannot have access result",
1720 end Validate_RCI_Subprogram_Declaration
;
1722 ----------------------------------------------------
1723 -- Validate_Remote_Access_Object_Type_Declaration --
1724 ----------------------------------------------------
1726 procedure Validate_Remote_Access_Object_Type_Declaration
(T
: Entity_Id
) is
1727 Direct_Designated_Type
: Entity_Id
;
1728 Desig_Type
: Entity_Id
;
1731 -- We are called from Analyze_Full_Type_Declaration, and the Nkind of
1732 -- the given node is N_Access_To_Object_Definition.
1734 if not Comes_From_Source
(T
)
1735 or else (not In_RCI_Declaration
and then not In_RT_Declaration
)
1740 -- An access definition in the private part of a package is not a
1741 -- remote access type. Restrictions related to external streaming
1742 -- support for non-remote access types are enforced elsewhere. Note
1743 -- that In_Private_Part is never set on type entities: check flag
1744 -- on enclosing scope.
1746 if In_Private_Part
(Scope
(T
)) then
1750 -- Check RCI or RT unit type declaration. It may not contain the
1751 -- declaration of an access-to-object type unless it is a general access
1752 -- type that designates a class-wide limited private type or subtype.
1753 -- There are also constraints on the primitive subprograms of the
1754 -- class-wide type (RM E.2.2(14), see Validate_RACW_Primitives).
1756 if Ekind
(T
) /= E_General_Access_Type
1757 or else not Is_Class_Wide_Type
(Designated_Type
(T
))
1759 if In_RCI_Declaration
then
1761 ("error in access type in Remote_Call_Interface unit", T
);
1764 ("error in access type in Remote_Types unit", T
);
1767 Error_Msg_N
("\must be general access to class-wide type", T
);
1771 Direct_Designated_Type
:= Designated_Type
(T
);
1772 Desig_Type
:= Etype
(Direct_Designated_Type
);
1774 -- Why is this check not in Validate_Remote_Access_To_Class_Wide_Type???
1776 if not Is_Valid_Remote_Object_Type
(Desig_Type
) then
1778 ("error in designated type of remote access to class-wide type", T
);
1780 ("\must be tagged limited private or private extension", T
);
1783 end Validate_Remote_Access_Object_Type_Declaration
;
1785 -----------------------------------------------
1786 -- Validate_Remote_Access_To_Class_Wide_Type --
1787 -----------------------------------------------
1789 procedure Validate_Remote_Access_To_Class_Wide_Type
(N
: Node_Id
) is
1790 K
: constant Node_Kind
:= Nkind
(N
);
1791 PK
: constant Node_Kind
:= Nkind
(Parent
(N
));
1795 -- This subprogram enforces the checks in (RM E.2.2(8)) for certain uses
1796 -- of class-wide limited private types.
1798 -- Storage_Pool and Storage_Size are not defined for such types
1800 -- The expected type of allocator must not be such a type.
1802 -- The actual parameter of generic instantiation must not be such a
1803 -- type if the formal parameter is of an access type.
1805 -- On entry, there are several cases:
1807 -- 1. called from sem_attr Analyze_Attribute where attribute name is
1808 -- either Storage_Pool or Storage_Size.
1810 -- 2. called from exp_ch4 Expand_N_Allocator
1812 -- 3. called from sem_ch4 Analyze_Explicit_Dereference
1814 -- 4. called from sem_res Resolve_Actuals
1816 if K
= N_Attribute_Reference
then
1817 E
:= Etype
(Prefix
(N
));
1819 if Is_Remote_Access_To_Class_Wide_Type
(E
) then
1820 Error_Msg_N
("incorrect attribute of remote operand", N
);
1824 elsif K
= N_Allocator
then
1827 if Is_Remote_Access_To_Class_Wide_Type
(E
) then
1828 Error_Msg_N
("incorrect expected remote type of allocator", N
);
1832 -- This subprogram also enforces the checks in E.2.2(13). A value of
1833 -- such type must not be dereferenced unless as controlling operand of
1834 -- a dispatching call. Explicit dereferences not coming from source are
1835 -- exempted from this checking because the expander produces them in
1836 -- some cases (such as for tag checks on dispatching calls with multiple
1837 -- controlling operands). However we do check in the case of an implicit
1838 -- dereference that is expanded to an explicit dereference (hence the
1839 -- test of whether Original_Node (N) comes from source).
1841 elsif K
= N_Explicit_Dereference
1842 and then Comes_From_Source
(Original_Node
(N
))
1844 E
:= Etype
(Prefix
(N
));
1846 -- If the class-wide type is not a remote one, the restrictions
1849 if not Is_Remote_Access_To_Class_Wide_Type
(E
) then
1853 -- If we have a true dereference that comes from source and that
1854 -- is a controlling argument for a dispatching call, accept it.
1856 if Is_Actual_Parameter
(N
) and then Is_Controlling_Actual
(N
) then
1860 -- If we are just within a procedure or function call and the
1861 -- dereference has not been analyzed, return because this procedure
1862 -- will be called again from sem_res Resolve_Actuals. The same can
1863 -- apply in the case of dereference that is the prefix of a selected
1864 -- component, which can be a call given in prefixed form.
1866 if (Is_Actual_Parameter
(N
) or else PK
= N_Selected_Component
)
1867 and then not Analyzed
(N
)
1872 -- We must allow expanded code to generate a reference to the tag of
1873 -- the designated object (may be either the actual tag, or the stub
1874 -- tag in the case of a remote object).
1876 if PK
= N_Selected_Component
1877 and then Is_Tag
(Entity
(Selector_Name
(Parent
(N
))))
1883 ("invalid dereference of a remote access-to-class-wide value", N
);
1885 end Validate_Remote_Access_To_Class_Wide_Type
;
1887 ------------------------------------------
1888 -- Validate_Remote_Type_Type_Conversion --
1889 ------------------------------------------
1891 procedure Validate_Remote_Type_Type_Conversion
(N
: Node_Id
) is
1892 S
: constant Entity_Id
:= Etype
(N
);
1893 E
: constant Entity_Id
:= Etype
(Expression
(N
));
1896 -- This test is required in the case where a conversion appears inside a
1897 -- normal package, it does not necessarily have to be inside an RCI,
1898 -- Remote_Types unit (RM E.2.2(9,12)).
1900 if Is_Remote_Access_To_Subprogram_Type
(E
)
1901 and then not Is_Remote_Access_To_Subprogram_Type
(S
)
1904 ("incorrect conversion of remote operand to local type", N
);
1907 elsif not Is_Remote_Access_To_Subprogram_Type
(E
)
1908 and then Is_Remote_Access_To_Subprogram_Type
(S
)
1911 ("incorrect conversion of local operand to remote type", N
);
1914 elsif Is_Remote_Access_To_Class_Wide_Type
(E
)
1915 and then not Is_Remote_Access_To_Class_Wide_Type
(S
)
1918 ("incorrect conversion of remote operand to local type", N
);
1922 -- If a local access type is converted into a RACW type, then the
1923 -- current unit has a pointer that may now be exported to another
1926 if Is_Remote_Access_To_Class_Wide_Type
(S
)
1927 and then not Is_Remote_Access_To_Class_Wide_Type
(E
)
1929 Set_Has_RACW
(Current_Sem_Unit
);
1931 end Validate_Remote_Type_Type_Conversion
;
1933 -------------------------------
1934 -- Validate_RT_RAT_Component --
1935 -------------------------------
1937 procedure Validate_RT_RAT_Component
(N
: Node_Id
) is
1938 Spec
: constant Node_Id
:= Specification
(N
);
1939 Name_U
: constant Entity_Id
:= Defining_Entity
(Spec
);
1942 First_Priv_Ent
: constant Entity_Id
:= First_Private_Entity
(Name_U
);
1944 function Stream_Attributes_Available
(Typ
: Entity_Id
) return Boolean;
1945 -- True if any stream attribute is available for Typ
1947 ---------------------------------
1948 -- Stream_Attributes_Available --
1949 ---------------------------------
1951 function Stream_Attributes_Available
(Typ
: Entity_Id
) return Boolean
1954 return Stream_Attribute_Available
(Typ
, TSS_Stream_Read
)
1956 Stream_Attribute_Available
(Typ
, TSS_Stream_Write
)
1958 Stream_Attribute_Available
(Typ
, TSS_Stream_Input
)
1960 Stream_Attribute_Available
(Typ
, TSS_Stream_Output
);
1961 end Stream_Attributes_Available
;
1963 -- Start of processing for Validate_RT_RAT_Component
1966 if not Is_Remote_Types
(Name_U
) then
1970 Typ
:= First_Entity
(Name_U
);
1971 while Present
(Typ
) and then Typ
/= First_Priv_Ent
loop
1972 U_Typ
:= Underlying_Type
(Base_Type
(Typ
));
1978 if Comes_From_Source
(Typ
) and then Is_Type
(Typ
) then
1980 -- Check that the type can be meaningfully transmitted to another
1981 -- partition (E.2.2(8)).
1983 if (Ada_Version
< Ada_2005
and then Has_Non_Remote_Access
(U_Typ
))
1984 or else (Stream_Attributes_Available
(Typ
)
1985 and then No_External_Streaming
(U_Typ
))
1987 if Is_Non_Remote_Access_Type
(Typ
) then
1988 Error_Msg_N
("error in non-remote access type", U_Typ
);
1991 ("error in record type containing a component of a " &
1992 "non-remote access type", U_Typ
);
1995 if Ada_Version
>= Ada_2005
then
1997 ("\must have visible Read and Write attribute " &
1998 "definition clauses (RM E.2.2(8))", U_Typ
);
2001 ("\must have Read and Write attribute " &
2002 "definition clauses (RM E.2.2(8))", U_Typ
);
2009 end Validate_RT_RAT_Component
;
2011 -----------------------------------------
2012 -- Validate_SP_Access_Object_Type_Decl --
2013 -----------------------------------------
2015 procedure Validate_SP_Access_Object_Type_Decl
(T
: Entity_Id
) is
2016 Direct_Designated_Type
: Entity_Id
;
2018 function Has_Entry_Declarations
(E
: Entity_Id
) return Boolean;
2019 -- Return true if the protected type designated by T has entry
2022 ----------------------------
2023 -- Has_Entry_Declarations --
2024 ----------------------------
2026 function Has_Entry_Declarations
(E
: Entity_Id
) return Boolean is
2030 if Nkind
(Parent
(E
)) = N_Protected_Type_Declaration
then
2031 Ety
:= First_Entity
(E
);
2032 while Present
(Ety
) loop
2033 if Ekind
(Ety
) = E_Entry
then
2042 end Has_Entry_Declarations
;
2044 -- Start of processing for Validate_SP_Access_Object_Type_Decl
2047 -- We are called from Sem_Ch3.Analyze_Full_Type_Declaration, and the
2048 -- Nkind of the given entity is N_Access_To_Object_Definition.
2050 if not Comes_From_Source
(T
)
2051 or else not In_Shared_Passive_Unit
2052 or else In_Subprogram_Task_Protected_Unit
2057 -- Check Shared Passive unit. It should not contain the declaration
2058 -- of an access-to-object type whose designated type is a class-wide
2059 -- type, task type or protected type with entry (RM E.2.1(7)).
2061 Direct_Designated_Type
:= Designated_Type
(T
);
2063 if Ekind
(Direct_Designated_Type
) = E_Class_Wide_Type
then
2065 ("invalid access-to-class-wide type in shared passive unit", T
);
2068 elsif Ekind
(Direct_Designated_Type
) in Task_Kind
then
2070 ("invalid access-to-task type in shared passive unit", T
);
2073 elsif Ekind
(Direct_Designated_Type
) in Protected_Kind
2074 and then Has_Entry_Declarations
(Direct_Designated_Type
)
2077 ("invalid access-to-protected type in shared passive unit", T
);
2080 end Validate_SP_Access_Object_Type_Decl
;
2082 ---------------------------------
2083 -- Validate_Static_Object_Name --
2084 ---------------------------------
2086 procedure Validate_Static_Object_Name
(N
: Node_Id
) is
2090 function Is_Primary
(N
: Node_Id
) return Boolean;
2091 -- Determine whether node is syntactically a primary in an expression
2092 -- This function should probably be somewhere else ???
2094 -- Also it does not do what it says, e.g if N is a binary operator
2095 -- whose parent is a binary operator, Is_Primary returns True ???
2101 function Is_Primary
(N
: Node_Id
) return Boolean is
2102 K
: constant Node_Kind
:= Nkind
(Parent
(N
));
2107 | N_Component_Association
2108 | N_Index_Or_Discriminant_Constraint
2114 when N_Attribute_Reference
=>
2116 Attr
: constant Name_Id
:= Attribute_Name
(Parent
(N
));
2119 return Attr
/= Name_Address
2120 and then Attr
/= Name_Access
2121 and then Attr
/= Name_Unchecked_Access
2122 and then Attr
/= Name_Unrestricted_Access
;
2125 when N_Indexed_Component
=>
2126 return N
/= Prefix
(Parent
(N
)) or else Is_Primary
(Parent
(N
));
2128 when N_Qualified_Expression
2131 return Is_Primary
(Parent
(N
));
2133 when N_Assignment_Statement
2134 | N_Object_Declaration
2136 return N
= Expression
(Parent
(N
));
2138 when N_Selected_Component
=>
2139 return Is_Primary
(Parent
(N
));
2146 -- Start of processing for Validate_Static_Object_Name
2149 if not In_Preelaborated_Unit
2150 or else not Comes_From_Source
(N
)
2151 or else In_Subprogram_Or_Concurrent_Unit
2152 or else Ekind
(Current_Scope
) = E_Block
2156 -- Filter out cases where primary is default in a component declaration,
2157 -- discriminant specification, or actual in a record type initialization
2160 -- Initialization call of internal types
2162 elsif Nkind
(Parent
(N
)) = N_Procedure_Call_Statement
then
2164 if Present
(Parent
(Parent
(N
)))
2165 and then Nkind
(Parent
(Parent
(N
))) = N_Freeze_Entity
2170 if Nkind
(Name
(Parent
(N
))) = N_Identifier
2171 and then not Comes_From_Source
(Entity
(Name
(Parent
(N
))))
2177 -- Error if the name is a primary in an expression. The parent must not
2178 -- be an operator, or a selected component or an indexed component that
2179 -- is itself a primary. Entities that are actuals do not need to be
2180 -- checked, because the call itself will be diagnosed. Entities in a
2181 -- generic unit or within a preanalyzed expression are not checked:
2182 -- only their use in executable code matters.
2185 and then (not Inside_A_Generic
2186 or else Present
(Enclosing_Generic_Body
(N
)))
2187 and then not In_Spec_Expression
2189 if Ekind
(Entity
(N
)) = E_Variable
2190 or else Ekind
(Entity
(N
)) in Formal_Object_Kind
2192 Flag_Non_Static_Expr
2193 ("non-static object name in preelaborated unit", N
);
2195 -- Give an error for a reference to a nonstatic constant, unless the
2196 -- constant is in another GNAT library unit that is preelaborable.
2198 elsif Ekind
(Entity
(N
)) = E_Constant
2199 and then not Is_Static_Expression
(N
)
2202 Val
:= Constant_Value
(E
);
2204 if Is_Internal_File_Name
(Unit_File_Name
(Get_Source_Unit
(N
)))
2206 Enclosing_Comp_Unit_Node
(N
) /= Enclosing_Comp_Unit_Node
(E
)
2207 and then (Is_Preelaborated
(Scope
(E
))
2208 or else Is_Pure
(Scope
(E
))
2209 or else (Present
(Renamed_Object
(E
))
2210 and then Is_Entity_Name
(Renamed_Object
(E
))
2213 (Scope
(Renamed_Object
(E
)))
2216 (Scope
(Renamed_Object
(E
))))))
2220 -- If the value of the constant is a local variable that renames
2221 -- an aggregate, this is in itself legal. The aggregate may be
2222 -- expanded into a loop, but this does not affect preelaborability
2223 -- in itself. If some aggregate components are non-static, that is
2224 -- to say if they involve non static primaries, they will be
2225 -- flagged when analyzed.
2228 and then Is_Entity_Name
(Val
)
2229 and then Is_Array_Type
(Etype
(Val
))
2230 and then not Comes_From_Source
(Val
)
2231 and then Nkind
(Original_Node
(Val
)) = N_Aggregate
2235 -- This is the error case
2238 -- In GNAT mode or Relaxed RM Semantic mode, this is just a
2239 -- warning, to allow it to be judiciously turned off.
2240 -- Otherwise it is a real error.
2242 if GNAT_Mode
or Relaxed_RM_Semantics
then
2244 ("??non-static constant in preelaborated unit", N
);
2246 Flag_Non_Static_Expr
2247 ("non-static constant in preelaborated unit", N
);
2252 end Validate_Static_Object_Name
;