2005-01-22 Thomas Koenig <Thomas.Koenig@online.de>
[official-gcc.git] / gcc / ada / sem_ch10.adb
blob5d9e5caa34d243c289f15f305be1222ff2e00461
1 ------------------------------------------------------------------------------
2 -- --
3 -- GNAT COMPILER COMPONENTS --
4 -- --
5 -- S E M _ C H 1 0 --
6 -- --
7 -- B o d y --
8 -- --
9 -- Copyright (C) 1992-2004 Free Software Foundation, Inc. --
10 -- --
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 2, 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 COPYING. If not, write --
19 -- to the Free Software Foundation, 59 Temple Place - Suite 330, Boston, --
20 -- MA 02111-1307, USA. --
21 -- --
22 -- GNAT was originally developed by the GNAT team at New York University. --
23 -- Extensive contributions were provided by Ada Core Technologies Inc. --
24 -- --
25 ------------------------------------------------------------------------------
27 with Atree; use Atree;
28 with Debug; use Debug;
29 with Einfo; use Einfo;
30 with Errout; use Errout;
31 with Exp_Util; use Exp_Util;
32 with Fname; use Fname;
33 with Fname.UF; use Fname.UF;
34 with Freeze; use Freeze;
35 with Impunit; use Impunit;
36 with Inline; use Inline;
37 with Lib; use Lib;
38 with Lib.Load; use Lib.Load;
39 with Lib.Xref; use Lib.Xref;
40 with Namet; use Namet;
41 with Nlists; use Nlists;
42 with Nmake; use Nmake;
43 with Opt; use Opt;
44 with Output; use Output;
45 with Restrict; use Restrict;
46 with Rtsfind; use Rtsfind;
47 with Sem; use Sem;
48 with Sem_Ch6; use Sem_Ch6;
49 with Sem_Ch7; use Sem_Ch7;
50 with Sem_Ch8; use Sem_Ch8;
51 with Sem_Dist; use Sem_Dist;
52 with Sem_Prag; use Sem_Prag;
53 with Sem_Util; use Sem_Util;
54 with Sem_Warn; use Sem_Warn;
55 with Stand; use Stand;
56 with Sinfo; use Sinfo;
57 with Sinfo.CN; use Sinfo.CN;
58 with Sinput; use Sinput;
59 with Snames; use Snames;
60 with Style; use Style;
61 with Stylesw; use Stylesw;
62 with Tbuild; use Tbuild;
63 with Ttypes; use Ttypes;
64 with Uname; use Uname;
66 package body Sem_Ch10 is
68 -----------------------
69 -- Local Subprograms --
70 -----------------------
72 procedure Analyze_Context (N : Node_Id);
73 -- Analyzes items in the context clause of compilation unit
75 procedure Build_Limited_Views (N : Node_Id);
76 -- Build and decorate the list of shadow entities for a package mentioned
77 -- in a limited_with clause. If the package was not previously analyzed
78 -- then it also performs a basic decoration of the real entities; this
79 -- is required to do not pass non-decorated entities to the back-end.
80 -- Implements Ada 2005 (AI-50217).
82 procedure Check_Body_Needed_For_SAL (Unit_Name : Entity_Id);
83 -- Check whether the source for the body of a compilation unit must
84 -- be included in a standalone library.
86 procedure Check_With_Type_Clauses (N : Node_Id);
87 -- If N is a body, verify that any with_type clauses on the spec, or
88 -- on the spec of any parent, have a matching with_clause.
90 procedure Check_Private_Child_Unit (N : Node_Id);
91 -- If a with_clause mentions a private child unit, the compilation
92 -- unit must be a member of the same family, as described in 10.1.2 (8).
94 procedure Check_Stub_Level (N : Node_Id);
95 -- Verify that a stub is declared immediately within a compilation unit,
96 -- and not in an inner frame.
98 procedure Expand_Limited_With_Clause (Nam : Node_Id; N : Node_Id);
99 -- If a child unit appears in a limited_with clause, there are implicit
100 -- limited_with clauses on all parents that are not already visible
101 -- through a regular with clause. This procedure creates the implicit
102 -- limited with_clauses for the parents and loads the corresponding units.
103 -- The shadow entities are created when the inserted clause is analyzed.
104 -- Implements Ada 2005 (AI-50217).
106 procedure Expand_With_Clause (Nam : Node_Id; N : Node_Id);
107 -- When a child unit appears in a context clause, the implicit withs on
108 -- parents are made explicit, and with clauses are inserted in the context
109 -- clause before the one for the child. If a parent in the with_clause
110 -- is a renaming, the implicit with_clause is on the renaming whose name
111 -- is mentioned in the with_clause, and not on the package it renames.
112 -- N is the compilation unit whose list of context items receives the
113 -- implicit with_clauses.
115 function Get_Parent_Entity (Unit : Node_Id) return Entity_Id;
116 -- Get defining entity of parent unit of a child unit. In most cases this
117 -- is the defining entity of the unit, but for a child instance whose
118 -- parent needs a body for inlining, the instantiation node of the parent
119 -- has not yet been rewritten as a package declaration, and the entity has
120 -- to be retrieved from the Instance_Spec of the unit.
122 procedure Implicit_With_On_Parent (Child_Unit : Node_Id; N : Node_Id);
123 -- If the main unit is a child unit, implicit withs are also added for
124 -- all its ancestors.
126 procedure Install_Context_Clauses (N : Node_Id);
127 -- Subsidiary to previous one. Process only with_ and use_clauses for
128 -- current unit and its library unit if any.
130 procedure Install_Limited_Context_Clauses (N : Node_Id);
131 -- Subsidiary to Install_Context. Process only limited with_clauses
132 -- for current unit. Implements Ada 2005 (AI-50217).
134 procedure Install_Limited_Withed_Unit (N : Node_Id);
135 -- Place shadow entities for a limited_with package in the visibility
136 -- structures for the current compilation. Implements Ada 2005 (AI-50217).
138 procedure Install_Withed_Unit
139 (With_Clause : Node_Id;
140 Private_With_OK : Boolean := False);
142 -- If the unit is not a child unit, make unit immediately visible.
143 -- The caller ensures that the unit is not already currently installed.
144 -- The flag Private_With_OK is set true in Install_Private_With_Clauses,
145 -- which is called when compiling the private part of a package, or
146 -- installing the private declarations of a parent unit.
148 procedure Install_Parents (Lib_Unit : Node_Id; Is_Private : Boolean);
149 -- This procedure establishes the context for the compilation of a child
150 -- unit. If Lib_Unit is a child library spec then the context of the parent
151 -- is installed, and the parent itself made immediately visible, so that
152 -- the child unit is processed in the declarative region of the parent.
153 -- Install_Parents makes a recursive call to itself to ensure that all
154 -- parents are loaded in the nested case. If Lib_Unit is a library body,
155 -- the only effect of Install_Parents is to install the private decls of
156 -- the parents, because the visible parent declarations will have been
157 -- installed as part of the context of the corresponding spec.
159 procedure Install_Siblings (U_Name : Entity_Id; N : Node_Id);
160 -- In the compilation of a child unit, a child of any of the ancestor
161 -- units is directly visible if it is visible, because the parent is in
162 -- an enclosing scope. Iterate over context to find child units of U_Name
163 -- or of some ancestor of it.
165 function Is_Child_Spec (Lib_Unit : Node_Id) return Boolean;
166 -- Lib_Unit is a library unit which may be a spec or a body. Is_Child_Spec
167 -- returns True if Lib_Unit is a library spec which is a child spec, i.e.
168 -- a library spec that has a parent. If the call to Is_Child_Spec returns
169 -- True, then Parent_Spec (Lib_Unit) is non-Empty and points to the
170 -- compilation unit for the parent spec.
172 -- Lib_Unit can also be a subprogram body that acts as its own spec. If
173 -- the Parent_Spec is non-empty, this is also a child unit.
175 procedure Remove_With_Type_Clause (Name : Node_Id);
176 -- Remove imported type and its enclosing package from visibility, and
177 -- remove attributes of imported type so they don't interfere with its
178 -- analysis (should it appear otherwise in the context).
180 procedure Remove_Context_Clauses (N : Node_Id);
181 -- Subsidiary of previous one. Remove use_ and with_clauses
183 procedure Remove_Limited_With_Clause (N : Node_Id);
184 -- Remove from visibility the shadow entities introduced for a package
185 -- mentioned in a limited_with clause. Implements Ada 2005 (AI-50217).
187 procedure Remove_Parents (Lib_Unit : Node_Id);
188 -- Remove_Parents checks if Lib_Unit is a child spec. If so then the parent
189 -- contexts established by the corresponding call to Install_Parents are
190 -- removed. Remove_Parents contains a recursive call to itself to ensure
191 -- that all parents are removed in the nested case.
193 procedure Remove_Unit_From_Visibility (Unit_Name : Entity_Id);
194 -- Reset all visibility flags on unit after compiling it, either as a
195 -- main unit or as a unit in the context.
197 procedure Unchain (E : Entity_Id);
198 -- Remove single entity from visibility list
200 procedure Analyze_Proper_Body (N : Node_Id; Nam : Entity_Id);
201 -- Common processing for all stubs (subprograms, tasks, packages, and
202 -- protected cases). N is the stub to be analyzed. Once the subunit
203 -- name is established, load and analyze. Nam is the non-overloadable
204 -- entity for which the proper body provides a completion. Subprogram
205 -- stubs are handled differently because they can be declarations.
207 --------------------------
208 -- Limited_With_Clauses --
209 --------------------------
211 -- Limited_With clauses are the mechanism chosen for Ada05 to support
212 -- mutually recursive types declared in different units. A limited_with
213 -- clause that names package P in the context of unit U makes the types
214 -- declared in the visible part of P available within U, but with the
215 -- restriction that these types can only be used as incomplete types.
216 -- The limited_with clause does not impose a semantic dependence on P,
217 -- and it is possible for two packages to have limited_with_clauses on
218 -- each other without creating an elaboration circularity.
220 -- To support this feature, the analysis of a limited_with clause must
221 -- create an abbreviated view of the package, without performing any
222 -- semantic analysis on it. This "package abstract" contains shadow
223 -- types that are in one-one correspondence with the real types in the
224 -- package, and that have the properties of incomplete types.
226 -- The implementation creates two element lists: one to chain the shadow
227 -- entities, and one to chain the corresponding type entities in the tree
228 -- of the package. Links between corresponding entities in both chains
229 -- allow the compiler to select the proper view of a given type, depending
230 -- on the context. Note that in contrast with the handling of private
231 -- types, the limited view and the non-limited view of a type are treated
232 -- as separate entities, and no entity exchange needs to take place, which
233 -- makes the implementation must simpler than could be feared.
235 ------------------------------
236 -- Analyze_Compilation_Unit --
237 ------------------------------
239 procedure Analyze_Compilation_Unit (N : Node_Id) is
240 Unit_Node : constant Node_Id := Unit (N);
241 Lib_Unit : Node_Id := Library_Unit (N);
242 Spec_Id : Node_Id;
243 Main_Cunit : constant Node_Id := Cunit (Main_Unit);
244 Par_Spec_Name : Unit_Name_Type;
245 Unum : Unit_Number_Type;
247 procedure Generate_Parent_References (N : Node_Id; P_Id : Entity_Id);
248 -- Generate cross-reference information for the parents of child units.
249 -- N is a defining_program_unit_name, and P_Id is the immediate parent.
251 --------------------------------
252 -- Generate_Parent_References --
253 --------------------------------
255 procedure Generate_Parent_References (N : Node_Id; P_Id : Entity_Id) is
256 Pref : Node_Id;
257 P_Name : Entity_Id := P_Id;
259 begin
260 Pref := Name (Parent (Defining_Entity (N)));
262 if Nkind (Pref) = N_Expanded_Name then
264 -- Done already, if the unit has been compiled indirectly as
265 -- part of the closure of its context because of inlining.
267 return;
268 end if;
270 while Nkind (Pref) = N_Selected_Component loop
271 Change_Selected_Component_To_Expanded_Name (Pref);
272 Set_Entity (Pref, P_Name);
273 Set_Etype (Pref, Etype (P_Name));
274 Generate_Reference (P_Name, Pref, 'r');
275 Pref := Prefix (Pref);
276 P_Name := Scope (P_Name);
277 end loop;
279 -- The guard here on P_Name is to handle the error condition where
280 -- the parent unit is missing because the file was not found.
282 if Present (P_Name) then
283 Set_Entity (Pref, P_Name);
284 Set_Etype (Pref, Etype (P_Name));
285 Generate_Reference (P_Name, Pref, 'r');
286 Style.Check_Identifier (Pref, P_Name);
287 end if;
288 end Generate_Parent_References;
290 -- Start of processing for Analyze_Compilation_Unit
292 begin
293 Process_Compilation_Unit_Pragmas (N);
295 -- If the unit is a subunit whose parent has not been analyzed (which
296 -- indicates that the main unit is a subunit, either the current one or
297 -- one of its descendents) then the subunit is compiled as part of the
298 -- analysis of the parent, which we proceed to do. Basically this gets
299 -- handled from the top down and we don't want to do anything at this
300 -- level (i.e. this subunit will be handled on the way down from the
301 -- parent), so at this level we immediately return. If the subunit
302 -- ends up not analyzed, it means that the parent did not contain a
303 -- stub for it, or that there errors were dectected in some ancestor.
305 if Nkind (Unit_Node) = N_Subunit
306 and then not Analyzed (Lib_Unit)
307 then
308 Semantics (Lib_Unit);
310 if not Analyzed (Proper_Body (Unit_Node)) then
311 if Serious_Errors_Detected > 0 then
312 Error_Msg_N ("subunit not analyzed (errors in parent unit)", N);
313 else
314 Error_Msg_N ("missing stub for subunit", N);
315 end if;
316 end if;
318 return;
319 end if;
321 -- Analyze context (this will call Sem recursively for with'ed units)
323 Analyze_Context (N);
325 -- If the unit is a package body, the spec is already loaded and must
326 -- be analyzed first, before we analyze the body.
328 if Nkind (Unit_Node) = N_Package_Body then
330 -- If no Lib_Unit, then there was a serious previous error, so
331 -- just ignore the entire analysis effort
333 if No (Lib_Unit) then
334 return;
336 else
337 Semantics (Lib_Unit);
338 Check_Unused_Withs (Get_Cunit_Unit_Number (Lib_Unit));
340 -- Verify that the library unit is a package declaration
342 if Nkind (Unit (Lib_Unit)) /= N_Package_Declaration
343 and then
344 Nkind (Unit (Lib_Unit)) /= N_Generic_Package_Declaration
345 then
346 Error_Msg_N
347 ("no legal package declaration for package body", N);
348 return;
350 -- Otherwise, the entity in the declaration is visible. Update
351 -- the version to reflect dependence of this body on the spec.
353 else
354 Spec_Id := Defining_Entity (Unit (Lib_Unit));
355 Set_Is_Immediately_Visible (Spec_Id, True);
356 Version_Update (N, Lib_Unit);
358 if Nkind (Defining_Unit_Name (Unit_Node))
359 = N_Defining_Program_Unit_Name
360 then
361 Generate_Parent_References (Unit_Node, Scope (Spec_Id));
362 end if;
363 end if;
364 end if;
366 -- If the unit is a subprogram body, then we similarly need to analyze
367 -- its spec. However, things are a little simpler in this case, because
368 -- here, this analysis is done only for error checking and consistency
369 -- purposes, so there's nothing else to be done.
371 elsif Nkind (Unit_Node) = N_Subprogram_Body then
372 if Acts_As_Spec (N) then
374 -- If the subprogram body is a child unit, we must create a
375 -- declaration for it, in order to properly load the parent(s).
376 -- After this, the original unit does not acts as a spec, because
377 -- there is an explicit one. If this unit appears in a context
378 -- clause, then an implicit with on the parent will be added when
379 -- installing the context. If this is the main unit, there is no
380 -- Unit_Table entry for the declaration, (It has the unit number
381 -- of the main unit) and code generation is unaffected.
383 Unum := Get_Cunit_Unit_Number (N);
384 Par_Spec_Name := Get_Parent_Spec_Name (Unit_Name (Unum));
386 if Par_Spec_Name /= No_Name then
387 Unum :=
388 Load_Unit
389 (Load_Name => Par_Spec_Name,
390 Required => True,
391 Subunit => False,
392 Error_Node => N);
394 if Unum /= No_Unit then
396 -- Build subprogram declaration and attach parent unit to it
397 -- This subprogram declaration does not come from source,
398 -- Nevertheless the backend must generate debugging info for
399 -- it, and this must be indicated explicitly.
401 declare
402 Loc : constant Source_Ptr := Sloc (N);
403 SCS : constant Boolean :=
404 Get_Comes_From_Source_Default;
406 begin
407 Set_Comes_From_Source_Default (False);
408 Lib_Unit :=
409 Make_Compilation_Unit (Loc,
410 Context_Items => New_Copy_List (Context_Items (N)),
411 Unit =>
412 Make_Subprogram_Declaration (Sloc (N),
413 Specification =>
414 Copy_Separate_Tree
415 (Specification (Unit_Node))),
416 Aux_Decls_Node =>
417 Make_Compilation_Unit_Aux (Loc));
419 Set_Library_Unit (N, Lib_Unit);
420 Set_Parent_Spec (Unit (Lib_Unit), Cunit (Unum));
421 Semantics (Lib_Unit);
422 Set_Acts_As_Spec (N, False);
423 Set_Needs_Debug_Info (Defining_Entity (Unit (Lib_Unit)));
424 Set_Comes_From_Source_Default (SCS);
425 end;
426 end if;
427 end if;
429 -- Here for subprogram with separate declaration
431 else
432 Semantics (Lib_Unit);
433 Check_Unused_Withs (Get_Cunit_Unit_Number (Lib_Unit));
434 Version_Update (N, Lib_Unit);
435 end if;
437 if Nkind (Defining_Unit_Name (Specification (Unit_Node))) =
438 N_Defining_Program_Unit_Name
439 then
440 Generate_Parent_References (
441 Specification (Unit_Node),
442 Scope (Defining_Entity (Unit (Lib_Unit))));
443 end if;
444 end if;
446 -- If it is a child unit, the parent must be elaborated first
447 -- and we update version, since we are dependent on our parent.
449 if Is_Child_Spec (Unit_Node) then
451 -- The analysis of the parent is done with style checks off
453 declare
454 Save_Style_Check : constant Boolean := Style_Check;
455 Save_C_Restrict : constant Save_Cunit_Boolean_Restrictions :=
456 Cunit_Boolean_Restrictions_Save;
458 begin
459 if not GNAT_Mode then
460 Style_Check := False;
461 end if;
463 Semantics (Parent_Spec (Unit_Node));
464 Version_Update (N, Parent_Spec (Unit_Node));
465 Style_Check := Save_Style_Check;
466 Cunit_Boolean_Restrictions_Restore (Save_C_Restrict);
467 end;
468 end if;
470 -- With the analysis done, install the context. Note that we can't
471 -- install the context from the with clauses as we analyze them,
472 -- because each with clause must be analyzed in a clean visibility
473 -- context, so we have to wait and install them all at once.
475 Install_Context (N);
477 if Is_Child_Spec (Unit_Node) then
479 -- Set the entities of all parents in the program_unit_name
481 Generate_Parent_References (
482 Unit_Node, Get_Parent_Entity (Unit (Parent_Spec (Unit_Node))));
483 end if;
485 -- All components of the context: with-clauses, library unit, ancestors
486 -- if any, (and their context) are analyzed and installed. Now analyze
487 -- the unit itself, which is either a package, subprogram spec or body.
489 Analyze (Unit_Node);
491 -- The above call might have made Unit_Node an N_Subprogram_Body
492 -- from something else, so propagate any Acts_As_Spec flag.
494 if Nkind (Unit_Node) = N_Subprogram_Body
495 and then Acts_As_Spec (Unit_Node)
496 then
497 Set_Acts_As_Spec (N);
498 end if;
500 -- Register predefined units in Rtsfind
502 declare
503 Unum : constant Unit_Number_Type := Get_Source_Unit (Sloc (N));
504 begin
505 if Is_Predefined_File_Name (Unit_File_Name (Unum)) then
506 Set_RTU_Loaded (Unit_Node);
507 end if;
508 end;
510 -- Treat compilation unit pragmas that appear after the library unit
512 if Present (Pragmas_After (Aux_Decls_Node (N))) then
513 declare
514 Prag_Node : Node_Id := First (Pragmas_After (Aux_Decls_Node (N)));
516 begin
517 while Present (Prag_Node) loop
518 Analyze (Prag_Node);
519 Next (Prag_Node);
520 end loop;
521 end;
522 end if;
524 -- Generate distribution stubs if requested and no error
526 if N = Main_Cunit
527 and then (Distribution_Stub_Mode = Generate_Receiver_Stub_Body
528 or else
529 Distribution_Stub_Mode = Generate_Caller_Stub_Body)
530 and then not Fatal_Error (Main_Unit)
531 then
532 if Is_RCI_Pkg_Spec_Or_Body (N) then
534 -- Regular RCI package
536 Add_Stub_Constructs (N);
538 elsif (Nkind (Unit_Node) = N_Package_Declaration
539 and then Is_Shared_Passive (Defining_Entity
540 (Specification (Unit_Node))))
541 or else (Nkind (Unit_Node) = N_Package_Body
542 and then
543 Is_Shared_Passive (Corresponding_Spec (Unit_Node)))
544 then
545 -- Shared passive package
547 Add_Stub_Constructs (N);
549 elsif Nkind (Unit_Node) = N_Package_Instantiation
550 and then
551 Is_Remote_Call_Interface
552 (Defining_Entity (Specification (Instance_Spec (Unit_Node))))
553 then
554 -- Instantiation of a RCI generic package
556 Add_Stub_Constructs (N);
557 end if;
559 end if;
561 if Nkind (Unit_Node) = N_Package_Declaration
562 or else Nkind (Unit_Node) in N_Generic_Declaration
563 or else Nkind (Unit_Node) = N_Package_Renaming_Declaration
564 or else Nkind (Unit_Node) = N_Subprogram_Declaration
565 then
566 Remove_Unit_From_Visibility (Defining_Entity (Unit_Node));
568 -- If the unit is an instantiation whose body will be elaborated
569 -- for inlining purposes, use the the proper entity of the instance.
571 elsif Nkind (Unit_Node) = N_Package_Instantiation
572 and then not Error_Posted (Unit_Node)
573 then
574 Remove_Unit_From_Visibility
575 (Defining_Entity (Instance_Spec (Unit_Node)));
577 elsif Nkind (Unit_Node) = N_Package_Body
578 or else (Nkind (Unit_Node) = N_Subprogram_Body
579 and then not Acts_As_Spec (Unit_Node))
580 then
581 -- Bodies that are not the main unit are compiled if they
582 -- are generic or contain generic or inlined units. Their
583 -- analysis brings in the context of the corresponding spec
584 -- (unit declaration) which must be removed as well, to
585 -- return the compilation environment to its proper state.
587 Remove_Context (Lib_Unit);
588 Set_Is_Immediately_Visible (Defining_Entity (Unit (Lib_Unit)), False);
589 end if;
591 -- Last step is to deinstall the context we just installed
592 -- as well as the unit just compiled.
594 Remove_Context (N);
596 -- If this is the main unit and we are generating code, we must
597 -- check that all generic units in the context have a body if they
598 -- need it, even if they have not been instantiated. In the absence
599 -- of .ali files for generic units, we must force the load of the body,
600 -- just to produce the proper error if the body is absent. We skip this
601 -- verification if the main unit itself is generic.
603 if Get_Cunit_Unit_Number (N) = Main_Unit
604 and then Operating_Mode = Generate_Code
605 and then Expander_Active
606 then
607 -- Check whether the source for the body of the unit must be
608 -- included in a standalone library.
610 Check_Body_Needed_For_SAL (Cunit_Entity (Main_Unit));
612 -- Indicate that the main unit is now analyzed, to catch possible
613 -- circularities between it and generic bodies. Remove main unit
614 -- from visibility. This might seem superfluous, but the main unit
615 -- must not be visible in the generic body expansions that follow.
617 Set_Analyzed (N, True);
618 Set_Is_Immediately_Visible (Cunit_Entity (Main_Unit), False);
620 declare
621 Item : Node_Id;
622 Nam : Entity_Id;
623 Un : Unit_Number_Type;
625 Save_Style_Check : constant Boolean := Style_Check;
626 Save_C_Restrict : constant Save_Cunit_Boolean_Restrictions :=
627 Cunit_Boolean_Restrictions_Save;
629 begin
630 Item := First (Context_Items (N));
631 while Present (Item) loop
633 -- Ada 2005 (AI-50217): Do not consider limited-withed units
635 if Nkind (Item) = N_With_Clause
636 and then not Implicit_With (Item)
637 and then not Limited_Present (Item)
638 then
639 Nam := Entity (Name (Item));
641 if (Is_Generic_Subprogram (Nam)
642 and then not Is_Intrinsic_Subprogram (Nam))
643 or else (Ekind (Nam) = E_Generic_Package
644 and then Unit_Requires_Body (Nam))
645 then
646 Style_Check := False;
648 if Present (Renamed_Object (Nam)) then
649 Un :=
650 Load_Unit
651 (Load_Name => Get_Body_Name
652 (Get_Unit_Name
653 (Unit_Declaration_Node
654 (Renamed_Object (Nam)))),
655 Required => False,
656 Subunit => False,
657 Error_Node => N,
658 Renamings => True);
659 else
660 Un :=
661 Load_Unit
662 (Load_Name => Get_Body_Name
663 (Get_Unit_Name (Item)),
664 Required => False,
665 Subunit => False,
666 Error_Node => N,
667 Renamings => True);
668 end if;
670 if Un = No_Unit then
671 Error_Msg_NE
672 ("body of generic unit& not found", Item, Nam);
673 exit;
675 elsif not Analyzed (Cunit (Un))
676 and then Un /= Main_Unit
677 and then not Fatal_Error (Un)
678 then
679 Style_Check := False;
680 Semantics (Cunit (Un));
681 end if;
682 end if;
683 end if;
685 Next (Item);
686 end loop;
688 Style_Check := Save_Style_Check;
689 Cunit_Boolean_Restrictions_Restore (Save_C_Restrict);
690 end;
691 end if;
693 -- Deal with creating elaboration Boolean if needed. We create an
694 -- elaboration boolean only for units that come from source since
695 -- units manufactured by the compiler never need elab checks.
697 if Comes_From_Source (N)
698 and then
699 (Nkind (Unit (N)) = N_Package_Declaration or else
700 Nkind (Unit (N)) = N_Generic_Package_Declaration or else
701 Nkind (Unit (N)) = N_Subprogram_Declaration or else
702 Nkind (Unit (N)) = N_Generic_Subprogram_Declaration)
703 then
704 declare
705 Loc : constant Source_Ptr := Sloc (N);
706 Unum : constant Unit_Number_Type := Get_Source_Unit (Loc);
708 begin
709 Spec_Id := Defining_Entity (Unit (N));
710 Generate_Definition (Spec_Id);
712 -- See if an elaboration entity is required for possible
713 -- access before elaboration checking. Note that we must
714 -- allow for this even if -gnatE is not set, since a client
715 -- may be compiled in -gnatE mode and reference the entity.
717 -- Case of units which do not require elaboration checks
720 -- Pure units do not need checks
722 Is_Pure (Spec_Id)
724 -- Preelaborated units do not need checks
726 or else Is_Preelaborated (Spec_Id)
728 -- No checks needed if pagma Elaborate_Body present
730 or else Has_Pragma_Elaborate_Body (Spec_Id)
732 -- No checks needed if unit does not require a body
734 or else not Unit_Requires_Body (Spec_Id)
736 -- No checks needed for predefined files
738 or else Is_Predefined_File_Name (Unit_File_Name (Unum))
740 -- No checks required if no separate spec
742 or else Acts_As_Spec (N)
743 then
744 -- This is a case where we only need the entity for
745 -- checking to prevent multiple elaboration checks.
747 Set_Elaboration_Entity_Required (Spec_Id, False);
749 -- Case of elaboration entity is required for access before
750 -- elaboration checking (so certainly we must build it!)
752 else
753 Set_Elaboration_Entity_Required (Spec_Id, True);
754 end if;
756 Build_Elaboration_Entity (N, Spec_Id);
757 end;
758 end if;
760 -- Finally, freeze the compilation unit entity. This for sure is needed
761 -- because of some warnings that can be output (see Freeze_Subprogram),
762 -- but may in general be required. If freezing actions result, place
763 -- them in the compilation unit actions list, and analyze them.
765 declare
766 Loc : constant Source_Ptr := Sloc (N);
767 L : constant List_Id :=
768 Freeze_Entity (Cunit_Entity (Current_Sem_Unit), Loc);
770 begin
771 while Is_Non_Empty_List (L) loop
772 Insert_Library_Level_Action (Remove_Head (L));
773 end loop;
774 end;
776 Set_Analyzed (N);
778 if Nkind (Unit_Node) = N_Package_Declaration
779 and then Get_Cunit_Unit_Number (N) /= Main_Unit
780 and then Expander_Active
781 then
782 declare
783 Save_Style_Check : constant Boolean := Style_Check;
784 Save_Warning : constant Warning_Mode_Type := Warning_Mode;
785 Options : Style_Check_Options;
787 begin
788 Save_Style_Check_Options (Options);
789 Reset_Style_Check_Options;
790 Opt.Warning_Mode := Suppress;
791 Check_Body_For_Inlining (N, Defining_Entity (Unit_Node));
793 Reset_Style_Check_Options;
794 Set_Style_Check_Options (Options);
795 Style_Check := Save_Style_Check;
796 Warning_Mode := Save_Warning;
797 end;
798 end if;
799 end Analyze_Compilation_Unit;
801 ---------------------
802 -- Analyze_Context --
803 ---------------------
805 procedure Analyze_Context (N : Node_Id) is
806 Item : Node_Id;
808 begin
809 -- Loop through context items. This is done is three passes:
810 -- a) The first pass analyze non-limited with-clauses.
811 -- b) The second pass add implicit limited_with clauses for
812 -- the parents of child units (Ada 2005: AI-50217)
813 -- c) The third pass analyzes limited_with clauses (Ada 2005: AI-50217)
815 Item := First (Context_Items (N));
816 while Present (Item) loop
818 -- For with clause, analyze the with clause, and then update
819 -- the version, since we are dependent on a unit that we with.
821 if Nkind (Item) = N_With_Clause
822 and then not Limited_Present (Item)
823 then
825 -- Skip analyzing with clause if no unit, nothing to do (this
826 -- happens for a with that references a non-existant unit)
828 if Present (Library_Unit (Item)) then
829 Analyze (Item);
830 end if;
832 if not Implicit_With (Item) then
833 Version_Update (N, Library_Unit (Item));
834 end if;
836 -- But skip use clauses at this stage, since we don't want to do
837 -- any installing of potentially use visible entities until we
838 -- we actually install the complete context (in Install_Context).
839 -- Otherwise things can get installed in the wrong context.
840 -- Similarly, pragmas are analyzed in Install_Context, after all
841 -- the implicit with's on parent units are generated.
843 else
844 null;
845 end if;
847 Next (Item);
848 end loop;
850 -- Second pass: add implicit limited_with_clauses for parents of
851 -- child units mentioned in limited_with clauses.
853 Item := First (Context_Items (N));
855 while Present (Item) loop
856 if Nkind (Item) = N_With_Clause
857 and then Limited_Present (Item)
858 and then Nkind (Name (Item)) = N_Selected_Component
859 then
860 Expand_Limited_With_Clause
861 (Nam => Prefix (Name (Item)), N => Item);
862 end if;
864 Next (Item);
865 end loop;
867 -- Third pass: examine all limited_with clauses
869 Item := First (Context_Items (N));
871 while Present (Item) loop
872 if Nkind (Item) = N_With_Clause
873 and then Limited_Present (Item)
874 then
876 if Nkind (Unit (N)) /= N_Package_Declaration then
877 Error_Msg_N ("limited with_clause only allowed in"
878 & " package specification", Item);
879 end if;
881 -- Skip analyzing with clause if no unit, see above
883 if Present (Library_Unit (Item)) then
884 Analyze (Item);
885 end if;
887 -- A limited_with does not impose an elaboration order, but
888 -- there is a semantic dependency for recompilation purposes.
890 if not Implicit_With (Item) then
891 Version_Update (N, Library_Unit (Item));
892 end if;
893 end if;
895 Next (Item);
896 end loop;
897 end Analyze_Context;
899 -------------------------------
900 -- Analyze_Package_Body_Stub --
901 -------------------------------
903 procedure Analyze_Package_Body_Stub (N : Node_Id) is
904 Id : constant Entity_Id := Defining_Identifier (N);
905 Nam : Entity_Id;
907 begin
908 -- The package declaration must be in the current declarative part
910 Check_Stub_Level (N);
911 Nam := Current_Entity_In_Scope (Id);
913 if No (Nam) or else not Is_Package (Nam) then
914 Error_Msg_N ("missing specification for package stub", N);
916 elsif Has_Completion (Nam)
917 and then Present (Corresponding_Body (Unit_Declaration_Node (Nam)))
918 then
919 Error_Msg_N ("duplicate or redundant stub for package", N);
921 else
922 -- Indicate that the body of the package exists. If we are doing
923 -- only semantic analysis, the stub stands for the body. If we are
924 -- generating code, the existence of the body will be confirmed
925 -- when we load the proper body.
927 Set_Has_Completion (Nam);
928 Set_Scope (Defining_Entity (N), Current_Scope);
929 Generate_Reference (Nam, Id, 'b');
930 Analyze_Proper_Body (N, Nam);
931 end if;
932 end Analyze_Package_Body_Stub;
934 -------------------------
935 -- Analyze_Proper_Body --
936 -------------------------
938 procedure Analyze_Proper_Body (N : Node_Id; Nam : Entity_Id) is
939 Subunit_Name : constant Unit_Name_Type := Get_Unit_Name (N);
940 Unum : Unit_Number_Type;
942 procedure Optional_Subunit;
943 -- This procedure is called when the main unit is a stub, or when we
944 -- are not generating code. In such a case, we analyze the subunit if
945 -- present, which is user-friendly and in fact required for ASIS, but
946 -- we don't complain if the subunit is missing.
948 ----------------------
949 -- Optional_Subunit --
950 ----------------------
952 procedure Optional_Subunit is
953 Comp_Unit : Node_Id;
955 begin
956 -- Try to load subunit, but ignore any errors that occur during
957 -- the loading of the subunit, by using the special feature in
958 -- Errout to ignore all errors. Note that Fatal_Error will still
959 -- be set, so we will be able to check for this case below.
961 if not ASIS_Mode then
962 Ignore_Errors_Enable := Ignore_Errors_Enable + 1;
963 end if;
965 Unum :=
966 Load_Unit
967 (Load_Name => Subunit_Name,
968 Required => False,
969 Subunit => True,
970 Error_Node => N);
972 if not ASIS_Mode then
973 Ignore_Errors_Enable := Ignore_Errors_Enable - 1;
974 end if;
976 -- All done if we successfully loaded the subunit
978 if Unum /= No_Unit
979 and then (not Fatal_Error (Unum) or else Try_Semantics)
980 then
981 Comp_Unit := Cunit (Unum);
983 -- If the file was empty or seriously mangled, the unit
984 -- itself may be missing.
986 if No (Unit (Comp_Unit)) then
987 Error_Msg_N
988 ("subunit does not contain expected proper body", N);
990 elsif Nkind (Unit (Comp_Unit)) /= N_Subunit then
991 Error_Msg_N
992 ("expected SEPARATE subunit, found child unit",
993 Cunit_Entity (Unum));
994 else
995 Set_Corresponding_Stub (Unit (Comp_Unit), N);
996 Analyze_Subunit (Comp_Unit);
997 Set_Library_Unit (N, Comp_Unit);
998 end if;
1000 elsif Unum = No_Unit
1001 and then Present (Nam)
1002 then
1003 if Is_Protected_Type (Nam) then
1004 Set_Corresponding_Body (Parent (Nam), Defining_Identifier (N));
1005 else
1006 Set_Corresponding_Body (
1007 Unit_Declaration_Node (Nam), Defining_Identifier (N));
1008 end if;
1009 end if;
1010 end Optional_Subunit;
1012 -- Start of processing for Analyze_Proper_Body
1014 begin
1015 -- If the subunit is already loaded, it means that the main unit
1016 -- is a subunit, and that the current unit is one of its parents
1017 -- which was being analyzed to provide the needed context for the
1018 -- analysis of the subunit. In this case we analyze the subunit and
1019 -- continue with the parent, without looking a subsequent subunits.
1021 if Is_Loaded (Subunit_Name) then
1023 -- If the proper body is already linked to the stub node,
1024 -- the stub is in a generic unit and just needs analyzing.
1026 if Present (Library_Unit (N)) then
1027 Set_Corresponding_Stub (Unit (Library_Unit (N)), N);
1028 Analyze_Subunit (Library_Unit (N));
1030 -- Otherwise we must load the subunit and link to it
1032 else
1033 -- Load the subunit, this must work, since we originally
1034 -- loaded the subunit earlier on. So this will not really
1035 -- load it, just give access to it.
1037 Unum :=
1038 Load_Unit
1039 (Load_Name => Subunit_Name,
1040 Required => True,
1041 Subunit => False,
1042 Error_Node => N);
1044 -- And analyze the subunit in the parent context (note that we
1045 -- do not call Semantics, since that would remove the parent
1046 -- context). Because of this, we have to manually reset the
1047 -- compiler state to Analyzing since it got destroyed by Load.
1049 if Unum /= No_Unit then
1050 Compiler_State := Analyzing;
1052 -- Check that the proper body is a subunit and not a child
1053 -- unit. If the unit was previously loaded, the error will
1054 -- have been emitted when copying the generic node, so we
1055 -- just return to avoid cascaded errors.
1057 if Nkind (Unit (Cunit (Unum))) /= N_Subunit then
1058 return;
1059 end if;
1061 Set_Corresponding_Stub (Unit (Cunit (Unum)), N);
1062 Analyze_Subunit (Cunit (Unum));
1063 Set_Library_Unit (N, Cunit (Unum));
1064 end if;
1065 end if;
1067 -- If the main unit is a subunit, then we are just performing semantic
1068 -- analysis on that subunit, and any other subunits of any parent unit
1069 -- should be ignored, except that if we are building trees for ASIS
1070 -- usage we want to annotate the stub properly.
1072 elsif Nkind (Unit (Cunit (Main_Unit))) = N_Subunit
1073 and then Subunit_Name /= Unit_Name (Main_Unit)
1074 then
1075 if ASIS_Mode then
1076 Optional_Subunit;
1077 end if;
1079 -- But before we return, set the flag for unloaded subunits. This
1080 -- will suppress junk warnings of variables in the same declarative
1081 -- part (or a higher level one) that are in danger of looking unused
1082 -- when in fact there might be a declaration in the subunit that we
1083 -- do not intend to load.
1085 Unloaded_Subunits := True;
1086 return;
1088 -- If the subunit is not already loaded, and we are generating code,
1089 -- then this is the case where compilation started from the parent,
1090 -- and we are generating code for an entire subunit tree. In that
1091 -- case we definitely need to load the subunit.
1093 -- In order to continue the analysis with the rest of the parent,
1094 -- and other subunits, we load the unit without requiring its
1095 -- presence, and emit a warning if not found, rather than terminating
1096 -- the compilation abruptly, as for other missing file problems.
1098 elsif Original_Operating_Mode = Generate_Code then
1100 -- If the proper body is already linked to the stub node,
1101 -- the stub is in a generic unit and just needs analyzing.
1103 -- We update the version. Although we are not technically
1104 -- semantically dependent on the subunit, given our approach
1105 -- of macro substitution of subunits, it makes sense to
1106 -- include it in the version identification.
1108 if Present (Library_Unit (N)) then
1109 Set_Corresponding_Stub (Unit (Library_Unit (N)), N);
1110 Analyze_Subunit (Library_Unit (N));
1111 Version_Update (Cunit (Main_Unit), Library_Unit (N));
1113 -- Otherwise we must load the subunit and link to it
1115 else
1116 Unum :=
1117 Load_Unit
1118 (Load_Name => Subunit_Name,
1119 Required => False,
1120 Subunit => True,
1121 Error_Node => N);
1123 if Original_Operating_Mode = Generate_Code
1124 and then Unum = No_Unit
1125 then
1126 Error_Msg_Name_1 := Subunit_Name;
1127 Error_Msg_Name_2 :=
1128 Get_File_Name (Subunit_Name, Subunit => True);
1129 Error_Msg_N
1130 ("subunit% in file{ not found!?", N);
1131 Subunits_Missing := True;
1132 end if;
1134 -- Load_Unit may reset Compiler_State, since it may have been
1135 -- necessary to parse an additional units, so we make sure
1136 -- that we reset it to the Analyzing state.
1138 Compiler_State := Analyzing;
1140 if Unum /= No_Unit
1141 and then (not Fatal_Error (Unum) or else Try_Semantics)
1142 then
1143 if Debug_Flag_L then
1144 Write_Str ("*** Loaded subunit from stub. Analyze");
1145 Write_Eol;
1146 end if;
1148 declare
1149 Comp_Unit : constant Node_Id := Cunit (Unum);
1151 begin
1152 -- Check for child unit instead of subunit
1154 if Nkind (Unit (Comp_Unit)) /= N_Subunit then
1155 Error_Msg_N
1156 ("expected SEPARATE subunit, found child unit",
1157 Cunit_Entity (Unum));
1159 -- OK, we have a subunit, so go ahead and analyze it,
1160 -- and set Scope of entity in stub, for ASIS use.
1162 else
1163 Set_Corresponding_Stub (Unit (Comp_Unit), N);
1164 Analyze_Subunit (Comp_Unit);
1165 Set_Library_Unit (N, Comp_Unit);
1167 -- We update the version. Although we are not technically
1168 -- semantically dependent on the subunit, given our
1169 -- approach of macro substitution of subunits, it makes
1170 -- sense to include it in the version identification.
1172 Version_Update (Cunit (Main_Unit), Comp_Unit);
1173 end if;
1174 end;
1175 end if;
1176 end if;
1178 -- The remaining case is when the subunit is not already loaded and
1179 -- we are not generating code. In this case we are just performing
1180 -- semantic analysis on the parent, and we are not interested in
1181 -- the subunit. For subprograms, analyze the stub as a body. For
1182 -- other entities the stub has already been marked as completed.
1184 else
1185 Optional_Subunit;
1186 end if;
1188 end Analyze_Proper_Body;
1190 ----------------------------------
1191 -- Analyze_Protected_Body_Stub --
1192 ----------------------------------
1194 procedure Analyze_Protected_Body_Stub (N : Node_Id) is
1195 Nam : Entity_Id := Current_Entity_In_Scope (Defining_Identifier (N));
1197 begin
1198 Check_Stub_Level (N);
1200 -- First occurence of name may have been as an incomplete type
1202 if Present (Nam) and then Ekind (Nam) = E_Incomplete_Type then
1203 Nam := Full_View (Nam);
1204 end if;
1206 if No (Nam)
1207 or else not Is_Protected_Type (Etype (Nam))
1208 then
1209 Error_Msg_N ("missing specification for Protected body", N);
1210 else
1211 Set_Scope (Defining_Entity (N), Current_Scope);
1212 Set_Has_Completion (Etype (Nam));
1213 Generate_Reference (Nam, Defining_Identifier (N), 'b');
1214 Analyze_Proper_Body (N, Etype (Nam));
1215 end if;
1216 end Analyze_Protected_Body_Stub;
1218 ----------------------------------
1219 -- Analyze_Subprogram_Body_Stub --
1220 ----------------------------------
1222 -- A subprogram body stub can appear with or without a previous
1223 -- specification. If there is one, the analysis of the body will
1224 -- find it and verify conformance. The formals appearing in the
1225 -- specification of the stub play no role, except for requiring an
1226 -- additional conformance check. If there is no previous subprogram
1227 -- declaration, the stub acts as a spec, and provides the defining
1228 -- entity for the subprogram.
1230 procedure Analyze_Subprogram_Body_Stub (N : Node_Id) is
1231 Decl : Node_Id;
1233 begin
1234 Check_Stub_Level (N);
1236 -- Verify that the identifier for the stub is unique within this
1237 -- declarative part.
1239 if Nkind (Parent (N)) = N_Block_Statement
1240 or else Nkind (Parent (N)) = N_Package_Body
1241 or else Nkind (Parent (N)) = N_Subprogram_Body
1242 then
1243 Decl := First (Declarations (Parent (N)));
1245 while Present (Decl)
1246 and then Decl /= N
1247 loop
1248 if Nkind (Decl) = N_Subprogram_Body_Stub
1249 and then (Chars (Defining_Unit_Name (Specification (Decl)))
1250 = Chars (Defining_Unit_Name (Specification (N))))
1251 then
1252 Error_Msg_N ("identifier for stub is not unique", N);
1253 end if;
1255 Next (Decl);
1256 end loop;
1257 end if;
1259 -- Treat stub as a body, which checks conformance if there is a previous
1260 -- declaration, or else introduces entity and its signature.
1262 Analyze_Subprogram_Body (N);
1263 Analyze_Proper_Body (N, Empty);
1264 end Analyze_Subprogram_Body_Stub;
1266 ---------------------
1267 -- Analyze_Subunit --
1268 ---------------------
1270 -- A subunit is compiled either by itself (for semantic checking)
1271 -- or as part of compiling the parent (for code generation). In
1272 -- either case, by the time we actually process the subunit, the
1273 -- parent has already been installed and analyzed. The node N is
1274 -- a compilation unit, whose context needs to be treated here,
1275 -- because we come directly here from the parent without calling
1276 -- Analyze_Compilation_Unit.
1278 -- The compilation context includes the explicit context of the
1279 -- subunit, and the context of the parent, together with the parent
1280 -- itself. In order to compile the current context, we remove the
1281 -- one inherited from the parent, in order to have a clean visibility
1282 -- table. We restore the parent context before analyzing the proper
1283 -- body itself. On exit, we remove only the explicit context of the
1284 -- subunit.
1286 procedure Analyze_Subunit (N : Node_Id) is
1287 Lib_Unit : constant Node_Id := Library_Unit (N);
1288 Par_Unit : constant Entity_Id := Current_Scope;
1290 Lib_Spec : Node_Id := Library_Unit (Lib_Unit);
1291 Num_Scopes : Int := 0;
1292 Use_Clauses : array (1 .. Scope_Stack.Last) of Node_Id;
1293 Enclosing_Child : Entity_Id := Empty;
1294 Svg : constant Suppress_Array := Scope_Suppress;
1296 procedure Analyze_Subunit_Context;
1297 -- Capture names in use clauses of the subunit. This must be done
1298 -- before re-installing parent declarations, because items in the
1299 -- context must not be hidden by declarations local to the parent.
1301 procedure Re_Install_Parents (L : Node_Id; Scop : Entity_Id);
1302 -- Recursive procedure to restore scope of all ancestors of subunit,
1303 -- from outermost in. If parent is not a subunit, the call to install
1304 -- context installs context of spec and (if parent is a child unit)
1305 -- the context of its parents as well. It is confusing that parents
1306 -- should be treated differently in both cases, but the semantics are
1307 -- just not identical.
1309 procedure Re_Install_Use_Clauses;
1310 -- As part of the removal of the parent scope, the use clauses are
1311 -- removed, to be reinstalled when the context of the subunit has
1312 -- been analyzed. Use clauses may also have been affected by the
1313 -- analysis of the context of the subunit, so they have to be applied
1314 -- again, to insure that the compilation environment of the rest of
1315 -- the parent unit is identical.
1317 procedure Remove_Scope;
1318 -- Remove current scope from scope stack, and preserve the list
1319 -- of use clauses in it, to be reinstalled after context is analyzed.
1321 -----------------------------
1322 -- Analyze_Subunit_Context --
1323 -----------------------------
1325 procedure Analyze_Subunit_Context is
1326 Item : Node_Id;
1327 Nam : Node_Id;
1328 Unit_Name : Entity_Id;
1330 begin
1331 Analyze_Context (N);
1332 Item := First (Context_Items (N));
1334 -- make withed units immediately visible. If child unit, make the
1335 -- ultimate parent immediately visible.
1337 while Present (Item) loop
1339 if Nkind (Item) = N_With_Clause then
1340 Unit_Name := Entity (Name (Item));
1342 while Is_Child_Unit (Unit_Name) loop
1343 Set_Is_Visible_Child_Unit (Unit_Name);
1344 Unit_Name := Scope (Unit_Name);
1345 end loop;
1347 if not Is_Immediately_Visible (Unit_Name) then
1348 Set_Is_Immediately_Visible (Unit_Name);
1349 Set_Context_Installed (Item);
1350 end if;
1352 elsif Nkind (Item) = N_Use_Package_Clause then
1353 Nam := First (Names (Item));
1355 while Present (Nam) loop
1356 Analyze (Nam);
1357 Next (Nam);
1358 end loop;
1360 elsif Nkind (Item) = N_Use_Type_Clause then
1361 Nam := First (Subtype_Marks (Item));
1363 while Present (Nam) loop
1364 Analyze (Nam);
1365 Next (Nam);
1366 end loop;
1367 end if;
1369 Next (Item);
1370 end loop;
1372 Item := First (Context_Items (N));
1374 -- reset visibility of withed units. They will be made visible
1375 -- again when we install the subunit context.
1377 while Present (Item) loop
1379 if Nkind (Item) = N_With_Clause then
1380 Unit_Name := Entity (Name (Item));
1382 while Is_Child_Unit (Unit_Name) loop
1383 Set_Is_Visible_Child_Unit (Unit_Name, False);
1384 Unit_Name := Scope (Unit_Name);
1385 end loop;
1387 if Context_Installed (Item) then
1388 Set_Is_Immediately_Visible (Unit_Name, False);
1389 Set_Context_Installed (Item, False);
1390 end if;
1391 end if;
1393 Next (Item);
1394 end loop;
1396 end Analyze_Subunit_Context;
1398 ------------------------
1399 -- Re_Install_Parents --
1400 ------------------------
1402 procedure Re_Install_Parents (L : Node_Id; Scop : Entity_Id) is
1403 E : Entity_Id;
1405 begin
1406 if Nkind (Unit (L)) = N_Subunit then
1407 Re_Install_Parents (Library_Unit (L), Scope (Scop));
1408 end if;
1410 Install_Context (L);
1412 -- If the subunit occurs within a child unit, we must restore the
1413 -- immediate visibility of any siblings that may occur in context.
1415 if Present (Enclosing_Child) then
1416 Install_Siblings (Enclosing_Child, L);
1417 end if;
1419 New_Scope (Scop);
1421 if Scop /= Par_Unit then
1422 Set_Is_Immediately_Visible (Scop);
1423 end if;
1425 E := First_Entity (Current_Scope);
1427 while Present (E) loop
1428 Set_Is_Immediately_Visible (E);
1429 Next_Entity (E);
1430 end loop;
1432 -- A subunit appears within a body, and for a nested subunits
1433 -- all the parents are bodies. Restore full visibility of their
1434 -- private entities.
1436 if Ekind (Scop) = E_Package then
1437 Set_In_Package_Body (Scop);
1438 Install_Private_Declarations (Scop);
1439 end if;
1440 end Re_Install_Parents;
1442 ----------------------------
1443 -- Re_Install_Use_Clauses --
1444 ----------------------------
1446 procedure Re_Install_Use_Clauses is
1447 U : Node_Id;
1449 begin
1450 for J in reverse 1 .. Num_Scopes loop
1451 U := Use_Clauses (J);
1452 Scope_Stack.Table (Scope_Stack.Last - J + 1).First_Use_Clause := U;
1453 Install_Use_Clauses (U, Force_Installation => True);
1454 end loop;
1455 end Re_Install_Use_Clauses;
1457 ------------------
1458 -- Remove_Scope --
1459 ------------------
1461 procedure Remove_Scope is
1462 E : Entity_Id;
1464 begin
1465 Num_Scopes := Num_Scopes + 1;
1466 Use_Clauses (Num_Scopes) :=
1467 Scope_Stack.Table (Scope_Stack.Last).First_Use_Clause;
1468 E := First_Entity (Current_Scope);
1470 while Present (E) loop
1471 Set_Is_Immediately_Visible (E, False);
1472 Next_Entity (E);
1473 end loop;
1475 if Is_Child_Unit (Current_Scope) then
1476 Enclosing_Child := Current_Scope;
1477 end if;
1479 Pop_Scope;
1480 end Remove_Scope;
1482 -- Start of processing for Analyze_Subunit
1484 begin
1485 if not Is_Empty_List (Context_Items (N)) then
1487 -- Save current use clauses
1489 Remove_Scope;
1490 Remove_Context (Lib_Unit);
1492 -- Now remove parents and their context, including enclosing
1493 -- subunits and the outer parent body which is not a subunit.
1495 if Present (Lib_Spec) then
1496 Remove_Context (Lib_Spec);
1498 while Nkind (Unit (Lib_Spec)) = N_Subunit loop
1499 Lib_Spec := Library_Unit (Lib_Spec);
1500 Remove_Scope;
1501 Remove_Context (Lib_Spec);
1502 end loop;
1504 if Nkind (Unit (Lib_Unit)) = N_Subunit then
1505 Remove_Scope;
1506 end if;
1508 if Nkind (Unit (Lib_Spec)) = N_Package_Body then
1509 Remove_Context (Library_Unit (Lib_Spec));
1510 end if;
1511 end if;
1513 Set_Is_Immediately_Visible (Par_Unit, False);
1515 Analyze_Subunit_Context;
1517 Re_Install_Parents (Lib_Unit, Par_Unit);
1518 Set_Is_Immediately_Visible (Par_Unit);
1520 -- If the context includes a child unit of the parent of the
1521 -- subunit, the parent will have been removed from visibility,
1522 -- after compiling that cousin in the context. The visibility
1523 -- of the parent must be restored now. This also applies if the
1524 -- context includes another subunit of the same parent which in
1525 -- turn includes a child unit in its context.
1527 if Ekind (Par_Unit) = E_Package then
1528 if not Is_Immediately_Visible (Par_Unit)
1529 or else (Present (First_Entity (Par_Unit))
1530 and then not Is_Immediately_Visible
1531 (First_Entity (Par_Unit)))
1532 then
1533 Set_Is_Immediately_Visible (Par_Unit);
1534 Install_Visible_Declarations (Par_Unit);
1535 Install_Private_Declarations (Par_Unit);
1536 end if;
1537 end if;
1539 Re_Install_Use_Clauses;
1540 Install_Context (N);
1542 -- Restore state of suppress flags for current body
1544 Scope_Suppress := Svg;
1546 -- If the subunit is within a child unit, then siblings of any
1547 -- parent unit that appear in the context clause of the subunit
1548 -- must also be made immediately visible.
1550 if Present (Enclosing_Child) then
1551 Install_Siblings (Enclosing_Child, N);
1552 end if;
1554 end if;
1556 Analyze (Proper_Body (Unit (N)));
1557 Remove_Context (N);
1558 end Analyze_Subunit;
1560 ----------------------------
1561 -- Analyze_Task_Body_Stub --
1562 ----------------------------
1564 procedure Analyze_Task_Body_Stub (N : Node_Id) is
1565 Nam : Entity_Id := Current_Entity_In_Scope (Defining_Identifier (N));
1566 Loc : constant Source_Ptr := Sloc (N);
1568 begin
1569 Check_Stub_Level (N);
1571 -- First occurence of name may have been as an incomplete type
1573 if Present (Nam) and then Ekind (Nam) = E_Incomplete_Type then
1574 Nam := Full_View (Nam);
1575 end if;
1577 if No (Nam)
1578 or else not Is_Task_Type (Etype (Nam))
1579 then
1580 Error_Msg_N ("missing specification for task body", N);
1581 else
1582 Set_Scope (Defining_Entity (N), Current_Scope);
1583 Generate_Reference (Nam, Defining_Identifier (N), 'b');
1584 Set_Has_Completion (Etype (Nam));
1585 Analyze_Proper_Body (N, Etype (Nam));
1587 -- Set elaboration flag to indicate that entity is callable.
1588 -- This cannot be done in the expansion of the body itself,
1589 -- because the proper body is not in a declarative part. This
1590 -- is only done if expansion is active, because the context
1591 -- may be generic and the flag not defined yet.
1593 if Expander_Active then
1594 Insert_After (N,
1595 Make_Assignment_Statement (Loc,
1596 Name =>
1597 Make_Identifier (Loc,
1598 New_External_Name (Chars (Etype (Nam)), 'E')),
1599 Expression => New_Reference_To (Standard_True, Loc)));
1600 end if;
1602 end if;
1603 end Analyze_Task_Body_Stub;
1605 -------------------------
1606 -- Analyze_With_Clause --
1607 -------------------------
1609 -- Analyze the declaration of a unit in a with clause. At end,
1610 -- label the with clause with the defining entity for the unit.
1612 procedure Analyze_With_Clause (N : Node_Id) is
1614 -- Retrieve the original kind of the unit node, before analysis.
1615 -- If it is a subprogram instantiation, its analysis below will
1616 -- rewrite as the declaration of the wrapper package. If the same
1617 -- instantiation appears indirectly elsewhere in the context, it
1618 -- will have been analyzed already.
1620 Unit_Kind : constant Node_Kind :=
1621 Nkind (Original_Node (Unit (Library_Unit (N))));
1623 E_Name : Entity_Id;
1624 Par_Name : Entity_Id;
1625 Pref : Node_Id;
1626 U : Node_Id;
1628 Intunit : Boolean;
1629 -- Set True if the unit currently being compiled is an internal unit
1631 Save_Style_Check : constant Boolean := Opt.Style_Check;
1632 Save_C_Restrict : constant Save_Cunit_Boolean_Restrictions :=
1633 Cunit_Boolean_Restrictions_Save;
1635 begin
1636 if Limited_Present (N) then
1637 -- Ada 2005 (AI-50217): Build visibility structures but do not
1638 -- analyze unit
1640 Build_Limited_Views (N);
1641 return;
1642 end if;
1644 -- We reset ordinary style checking during the analysis of a with'ed
1645 -- unit, but we do NOT reset GNAT special analysis mode (the latter
1646 -- definitely *does* apply to with'ed units).
1648 if not GNAT_Mode then
1649 Style_Check := False;
1650 end if;
1652 -- If the library unit is a predefined unit, and we are in high
1653 -- integrity mode, then temporarily reset Configurable_Run_Time_Mode
1654 -- for the analysis of the with'ed unit. This mode does not prevent
1655 -- explicit with'ing of run-time units.
1657 if Configurable_Run_Time_Mode
1658 and then
1659 Is_Predefined_File_Name
1660 (Unit_File_Name (Get_Source_Unit (Unit (Library_Unit (N)))))
1661 then
1662 Configurable_Run_Time_Mode := False;
1663 Semantics (Library_Unit (N));
1664 Configurable_Run_Time_Mode := True;
1666 else
1667 Semantics (Library_Unit (N));
1668 end if;
1670 U := Unit (Library_Unit (N));
1671 Check_Restriction_No_Dependence (Name (N), N);
1672 Intunit := Is_Internal_File_Name (Unit_File_Name (Current_Sem_Unit));
1674 -- Following checks are skipped for dummy packages (those supplied
1675 -- for with's where no matching file could be found). Such packages
1676 -- are identified by the Sloc value being set to No_Location
1678 if Sloc (U) /= No_Location then
1680 -- Check restrictions, except that we skip the check if this
1681 -- is an internal unit unless we are compiling the internal
1682 -- unit as the main unit. We also skip this for dummy packages.
1684 if not Intunit or else Current_Sem_Unit = Main_Unit then
1685 Check_Restricted_Unit (Unit_Name (Get_Source_Unit (U)), N);
1686 end if;
1688 -- Check for inappropriate with of internal implementation unit
1689 -- if we are currently compiling the main unit and the main unit
1690 -- is itself not an internal unit. We do not issue this message
1691 -- for implicit with's generated by the compiler itself.
1693 if Implementation_Unit_Warnings
1694 and then Current_Sem_Unit = Main_Unit
1695 and then Implementation_Unit (Get_Source_Unit (U))
1696 and then not Intunit
1697 and then not Implicit_With (N)
1698 then
1699 Error_Msg_N ("& is an internal 'G'N'A'T unit?", Name (N));
1700 Error_Msg_N
1701 ("\use of this unit is non-portable and version-dependent?",
1702 Name (N));
1703 end if;
1704 end if;
1706 -- Semantic analysis of a generic unit is performed on a copy of
1707 -- the original tree. Retrieve the entity on which semantic info
1708 -- actually appears.
1710 if Unit_Kind in N_Generic_Declaration then
1711 E_Name := Defining_Entity (U);
1713 -- Note: in the following test, Unit_Kind is the original Nkind, but
1714 -- in the case of an instantiation, semantic analysis above will
1715 -- have replaced the unit by its instantiated version. If the instance
1716 -- body has been generated, the instance now denotes the body entity.
1717 -- For visibility purposes we need the entity of its spec.
1719 elsif (Unit_Kind = N_Package_Instantiation
1720 or else Nkind (Original_Node (Unit (Library_Unit (N)))) =
1721 N_Package_Instantiation)
1722 and then Nkind (U) = N_Package_Body
1723 then
1724 E_Name := Corresponding_Spec (U);
1726 elsif Unit_Kind = N_Package_Instantiation
1727 and then Nkind (U) = N_Package_Instantiation
1728 then
1729 -- If the instance has not been rewritten as a package declaration,
1730 -- then it appeared already in a previous with clause. Retrieve
1731 -- the entity from the previous instance.
1733 E_Name := Defining_Entity (Specification (Instance_Spec (U)));
1735 elsif Unit_Kind = N_Procedure_Instantiation
1736 or else Unit_Kind = N_Function_Instantiation
1737 then
1738 -- Instantiation node is replaced with a package that contains
1739 -- renaming declarations and instance itself. The subprogram
1740 -- Instance is declared in the visible part of the wrapper package.
1742 E_Name := First_Entity (Defining_Entity (U));
1744 while Present (E_Name) loop
1745 exit when Is_Subprogram (E_Name)
1746 and then Is_Generic_Instance (E_Name);
1747 E_Name := Next_Entity (E_Name);
1748 end loop;
1750 elsif Unit_Kind = N_Package_Renaming_Declaration
1751 or else Unit_Kind in N_Generic_Renaming_Declaration
1752 then
1753 E_Name := Defining_Entity (U);
1755 elsif Unit_Kind = N_Subprogram_Body
1756 and then Nkind (Name (N)) = N_Selected_Component
1757 and then not Acts_As_Spec (Library_Unit (N))
1758 then
1759 -- For a child unit that has no spec, one has been created and
1760 -- analyzed. The entity required is that of the spec.
1762 E_Name := Corresponding_Spec (U);
1764 else
1765 E_Name := Defining_Entity (U);
1766 end if;
1768 if Nkind (Name (N)) = N_Selected_Component then
1770 -- Child unit in a with clause
1772 Change_Selected_Component_To_Expanded_Name (Name (N));
1773 end if;
1775 -- Restore style checks and restrictions
1777 Style_Check := Save_Style_Check;
1778 Cunit_Boolean_Restrictions_Restore (Save_C_Restrict);
1780 -- Record the reference, but do NOT set the unit as referenced, we
1781 -- want to consider the unit as unreferenced if this is the only
1782 -- reference that occurs.
1784 Set_Entity_With_Style_Check (Name (N), E_Name);
1785 Generate_Reference (E_Name, Name (N), 'w', Set_Ref => False);
1787 if Is_Child_Unit (E_Name) then
1788 Pref := Prefix (Name (N));
1789 Par_Name := Scope (E_Name);
1791 while Nkind (Pref) = N_Selected_Component loop
1792 Change_Selected_Component_To_Expanded_Name (Pref);
1793 Set_Entity_With_Style_Check (Pref, Par_Name);
1795 Generate_Reference (Par_Name, Pref);
1796 Pref := Prefix (Pref);
1798 -- If E_Name is the dummy entity for a nonexistent unit,
1799 -- its scope is set to Standard_Standard, and no attempt
1800 -- should be made to further unwind scopes.
1802 if Par_Name /= Standard_Standard then
1803 Par_Name := Scope (Par_Name);
1804 end if;
1805 end loop;
1807 if Present (Entity (Pref))
1808 and then not Analyzed (Parent (Parent (Entity (Pref))))
1809 then
1810 -- If the entity is set without its unit being compiled,
1811 -- the original parent is a renaming, and Par_Name is the
1812 -- renamed entity. For visibility purposes, we need the
1813 -- original entity, which must be analyzed now, because
1814 -- Load_Unit retrieves directly the renamed unit, and the
1815 -- renaming declaration itself has not been analyzed.
1817 Analyze (Parent (Parent (Entity (Pref))));
1818 pragma Assert (Renamed_Object (Entity (Pref)) = Par_Name);
1819 Par_Name := Entity (Pref);
1820 end if;
1822 Set_Entity_With_Style_Check (Pref, Par_Name);
1823 Generate_Reference (Par_Name, Pref);
1824 end if;
1826 -- If the withed unit is System, and a system extension pragma is
1827 -- present, compile the extension now, rather than waiting for
1828 -- a visibility check on a specific entity.
1830 if Chars (E_Name) = Name_System
1831 and then Scope (E_Name) = Standard_Standard
1832 and then Present (System_Extend_Unit)
1833 and then Present_System_Aux (N)
1834 then
1835 -- If the extension is not present, an error will have been emitted
1837 null;
1838 end if;
1840 -- Ada 2005 (AI-262): Remove from visibility the entity corresponding
1841 -- to private_with units; they will be made visible later (just before
1842 -- the private part is analyzed)
1844 if Private_Present (N) then
1845 Set_Is_Immediately_Visible (E_Name, False);
1846 end if;
1847 end Analyze_With_Clause;
1849 ------------------------------
1850 -- Analyze_With_Type_Clause --
1851 ------------------------------
1853 procedure Analyze_With_Type_Clause (N : Node_Id) is
1854 Loc : constant Source_Ptr := Sloc (N);
1855 Nam : constant Node_Id := Name (N);
1856 Pack : Node_Id;
1857 Decl : Node_Id;
1858 P : Entity_Id;
1859 Unum : Unit_Number_Type;
1860 Sel : Node_Id;
1862 procedure Decorate_Tagged_Type (T : Entity_Id);
1863 -- Set basic attributes of type, including its class_wide type
1865 function In_Chain (E : Entity_Id) return Boolean;
1866 -- Check that the imported type is not already in the homonym chain,
1867 -- for example through a with_type clause in a parent unit.
1869 --------------------------
1870 -- Decorate_Tagged_Type --
1871 --------------------------
1873 procedure Decorate_Tagged_Type (T : Entity_Id) is
1874 CW : Entity_Id;
1876 begin
1877 Set_Ekind (T, E_Record_Type);
1878 Set_Is_Tagged_Type (T);
1879 Set_Etype (T, T);
1880 Set_From_With_Type (T);
1881 Set_Scope (T, P);
1883 if not In_Chain (T) then
1884 Set_Homonym (T, Current_Entity (T));
1885 Set_Current_Entity (T);
1886 end if;
1888 -- Build bogus class_wide type, if not previously done
1890 if No (Class_Wide_Type (T)) then
1891 CW := Make_Defining_Identifier (Loc, New_Internal_Name ('S'));
1893 Set_Ekind (CW, E_Class_Wide_Type);
1894 Set_Etype (CW, T);
1895 Set_Scope (CW, P);
1896 Set_Is_Tagged_Type (CW);
1897 Set_Is_First_Subtype (CW, True);
1898 Init_Size_Align (CW);
1899 Set_Has_Unknown_Discriminants
1900 (CW, True);
1901 Set_Class_Wide_Type (CW, CW);
1902 Set_Equivalent_Type (CW, Empty);
1903 Set_From_With_Type (CW);
1905 Set_Class_Wide_Type (T, CW);
1906 end if;
1907 end Decorate_Tagged_Type;
1909 --------------
1910 -- In_Chain --
1911 --------------
1913 function In_Chain (E : Entity_Id) return Boolean is
1914 H : Entity_Id := Current_Entity (E);
1916 begin
1917 while Present (H) loop
1919 if H = E then
1920 return True;
1921 else
1922 H := Homonym (H);
1923 end if;
1924 end loop;
1926 return False;
1927 end In_Chain;
1929 -- Start of processing for Analyze_With_Type_Clause
1931 begin
1932 if Nkind (Nam) = N_Selected_Component then
1933 Pack := New_Copy_Tree (Prefix (Nam));
1934 Sel := Selector_Name (Nam);
1936 else
1937 Error_Msg_N ("illegal name for imported type", Nam);
1938 return;
1939 end if;
1941 Decl :=
1942 Make_Package_Declaration (Loc,
1943 Specification =>
1944 (Make_Package_Specification (Loc,
1945 Defining_Unit_Name => Pack,
1946 Visible_Declarations => New_List,
1947 End_Label => Empty)));
1949 Unum :=
1950 Load_Unit
1951 (Load_Name => Get_Unit_Name (Decl),
1952 Required => True,
1953 Subunit => False,
1954 Error_Node => Nam);
1956 if Unum = No_Unit
1957 or else Nkind (Unit (Cunit (Unum))) /= N_Package_Declaration
1958 then
1959 Error_Msg_N ("imported type must be declared in package", Nam);
1960 return;
1962 elsif Unum = Current_Sem_Unit then
1964 -- If type is defined in unit being analyzed, then the clause
1965 -- is redundant.
1967 return;
1969 else
1970 P := Cunit_Entity (Unum);
1971 end if;
1973 -- Find declaration for imported type, and set its basic attributes
1974 -- if it has not been analyzed (which will be the case if there is
1975 -- circular dependence).
1977 declare
1978 Decl : Node_Id;
1979 Typ : Entity_Id;
1981 begin
1982 if not Analyzed (Cunit (Unum))
1983 and then not From_With_Type (P)
1984 then
1985 Set_Ekind (P, E_Package);
1986 Set_Etype (P, Standard_Void_Type);
1987 Set_From_With_Type (P);
1988 Set_Scope (P, Standard_Standard);
1989 Set_Homonym (P, Current_Entity (P));
1990 Set_Current_Entity (P);
1992 elsif Analyzed (Cunit (Unum))
1993 and then Is_Child_Unit (P)
1994 then
1995 -- If the child unit is already in scope, indicate that it is
1996 -- visible, and remains so after intervening calls to rtsfind.
1998 Set_Is_Visible_Child_Unit (P);
1999 end if;
2001 if Nkind (Parent (P)) = N_Defining_Program_Unit_Name then
2003 -- Make parent packages visible
2005 declare
2006 Parent_Comp : Node_Id;
2007 Parent_Id : Entity_Id;
2008 Child : Entity_Id;
2010 begin
2011 Child := P;
2012 Parent_Comp := Parent_Spec (Unit (Cunit (Unum)));
2014 loop
2015 Parent_Id := Defining_Entity (Unit (Parent_Comp));
2016 Set_Scope (Child, Parent_Id);
2018 -- The type may be imported from a child unit, in which
2019 -- case the current compilation appears in the name. Do
2020 -- not change its visibility here because it will conflict
2021 -- with the subsequent normal processing.
2023 if not Analyzed (Unit_Declaration_Node (Parent_Id))
2024 and then Parent_Id /= Cunit_Entity (Current_Sem_Unit)
2025 then
2026 Set_Ekind (Parent_Id, E_Package);
2027 Set_Etype (Parent_Id, Standard_Void_Type);
2029 -- The same package may appear is several with_type
2030 -- clauses.
2032 if not From_With_Type (Parent_Id) then
2033 Set_Homonym (Parent_Id, Current_Entity (Parent_Id));
2034 Set_Current_Entity (Parent_Id);
2035 Set_From_With_Type (Parent_Id);
2036 end if;
2037 end if;
2039 Set_Is_Immediately_Visible (Parent_Id);
2041 Child := Parent_Id;
2042 Parent_Comp := Parent_Spec (Unit (Parent_Comp));
2043 exit when No (Parent_Comp);
2044 end loop;
2046 Set_Scope (Parent_Id, Standard_Standard);
2047 end;
2048 end if;
2050 -- Even if analyzed, the package may not be currently visible. It
2051 -- must be while the with_type clause is active.
2053 Set_Is_Immediately_Visible (P);
2055 Decl :=
2056 First (Visible_Declarations (Specification (Unit (Cunit (Unum)))));
2058 while Present (Decl) loop
2060 if Nkind (Decl) = N_Full_Type_Declaration
2061 and then Chars (Defining_Identifier (Decl)) = Chars (Sel)
2062 then
2063 Typ := Defining_Identifier (Decl);
2065 if Tagged_Present (N) then
2067 -- The declaration must indicate that this is a tagged
2068 -- type or a type extension.
2070 if (Nkind (Type_Definition (Decl)) = N_Record_Definition
2071 and then Tagged_Present (Type_Definition (Decl)))
2072 or else
2073 (Nkind (Type_Definition (Decl))
2074 = N_Derived_Type_Definition
2075 and then Present
2076 (Record_Extension_Part (Type_Definition (Decl))))
2077 then
2078 null;
2079 else
2080 Error_Msg_N ("imported type is not a tagged type", Nam);
2081 return;
2082 end if;
2084 if not Analyzed (Decl) then
2086 -- Unit is not currently visible. Add basic attributes
2087 -- to type and build its class-wide type.
2089 Init_Size_Align (Typ);
2090 Decorate_Tagged_Type (Typ);
2091 end if;
2093 else
2094 if Nkind (Type_Definition (Decl))
2095 /= N_Access_To_Object_Definition
2096 then
2097 Error_Msg_N
2098 ("imported type is not an access type", Nam);
2100 elsif not Analyzed (Decl) then
2101 Set_Ekind (Typ, E_Access_Type);
2102 Set_Etype (Typ, Typ);
2103 Set_Scope (Typ, P);
2104 Init_Size (Typ, System_Address_Size);
2105 Init_Alignment (Typ);
2106 Set_Directly_Designated_Type (Typ, Standard_Integer);
2107 Set_From_With_Type (Typ);
2109 if not In_Chain (Typ) then
2110 Set_Homonym (Typ, Current_Entity (Typ));
2111 Set_Current_Entity (Typ);
2112 end if;
2113 end if;
2114 end if;
2116 Set_Entity (Sel, Typ);
2117 return;
2119 elsif ((Nkind (Decl) = N_Private_Type_Declaration
2120 and then Tagged_Present (Decl))
2121 or else (Nkind (Decl) = N_Private_Extension_Declaration))
2122 and then Chars (Defining_Identifier (Decl)) = Chars (Sel)
2123 then
2124 Typ := Defining_Identifier (Decl);
2126 if not Tagged_Present (N) then
2127 Error_Msg_N ("type must be declared tagged", N);
2129 elsif not Analyzed (Decl) then
2130 Decorate_Tagged_Type (Typ);
2131 end if;
2133 Set_Entity (Sel, Typ);
2134 Set_From_With_Type (Typ);
2135 return;
2136 end if;
2138 Decl := Next (Decl);
2139 end loop;
2141 Error_Msg_NE ("not a visible access or tagged type in&", Nam, P);
2142 end;
2143 end Analyze_With_Type_Clause;
2145 -----------------------------
2146 -- Check_With_Type_Clauses --
2147 -----------------------------
2149 procedure Check_With_Type_Clauses (N : Node_Id) is
2150 Lib_Unit : constant Node_Id := Unit (N);
2152 procedure Check_Parent_Context (U : Node_Id);
2153 -- Examine context items of parent unit to locate with_type clauses
2155 --------------------------
2156 -- Check_Parent_Context --
2157 --------------------------
2159 procedure Check_Parent_Context (U : Node_Id) is
2160 Item : Node_Id;
2162 begin
2163 Item := First (Context_Items (U));
2164 while Present (Item) loop
2165 if Nkind (Item) = N_With_Type_Clause
2166 and then not Error_Posted (Item)
2167 and then
2168 From_With_Type (Scope (Entity (Selector_Name (Name (Item)))))
2169 then
2170 Error_Msg_Sloc := Sloc (Item);
2171 Error_Msg_N ("Missing With_Clause for With_Type_Clause#", N);
2172 end if;
2174 Next (Item);
2175 end loop;
2176 end Check_Parent_Context;
2178 -- Start of processing for Check_With_Type_Clauses
2180 begin
2181 if Extensions_Allowed
2182 and then (Nkind (Lib_Unit) = N_Package_Body
2183 or else Nkind (Lib_Unit) = N_Subprogram_Body)
2184 then
2185 Check_Parent_Context (Library_Unit (N));
2187 if Is_Child_Spec (Unit (Library_Unit (N))) then
2188 Check_Parent_Context (Parent_Spec (Unit (Library_Unit (N))));
2189 end if;
2190 end if;
2191 end Check_With_Type_Clauses;
2193 ------------------------------
2194 -- Check_Private_Child_Unit --
2195 ------------------------------
2197 procedure Check_Private_Child_Unit (N : Node_Id) is
2198 Lib_Unit : constant Node_Id := Unit (N);
2199 Item : Node_Id;
2200 Curr_Unit : Entity_Id;
2201 Sub_Parent : Node_Id;
2202 Priv_Child : Entity_Id;
2203 Par_Lib : Entity_Id;
2204 Par_Spec : Node_Id;
2206 function Is_Private_Library_Unit (Unit : Entity_Id) return Boolean;
2207 -- Returns true if and only if the library unit is declared with
2208 -- an explicit designation of private.
2210 function Is_Private_Library_Unit (Unit : Entity_Id) return Boolean is
2211 Comp_Unit : constant Node_Id := Parent (Unit_Declaration_Node (Unit));
2213 begin
2214 return Private_Present (Comp_Unit);
2215 end Is_Private_Library_Unit;
2217 -- Start of processing for Check_Private_Child_Unit
2219 begin
2220 if Nkind (Lib_Unit) = N_Package_Body
2221 or else Nkind (Lib_Unit) = N_Subprogram_Body
2222 then
2223 Curr_Unit := Defining_Entity (Unit (Library_Unit (N)));
2224 Par_Lib := Curr_Unit;
2226 elsif Nkind (Lib_Unit) = N_Subunit then
2228 -- The parent is itself a body. The parent entity is to be found
2229 -- in the corresponding spec.
2231 Sub_Parent := Library_Unit (N);
2232 Curr_Unit := Defining_Entity (Unit (Library_Unit (Sub_Parent)));
2234 -- If the parent itself is a subunit, Curr_Unit is the entity
2235 -- of the enclosing body, retrieve the spec entity which is
2236 -- the proper ancestor we need for the following tests.
2238 if Ekind (Curr_Unit) = E_Package_Body then
2239 Curr_Unit := Spec_Entity (Curr_Unit);
2240 end if;
2242 Par_Lib := Curr_Unit;
2244 else
2245 Curr_Unit := Defining_Entity (Lib_Unit);
2247 Par_Lib := Curr_Unit;
2248 Par_Spec := Parent_Spec (Lib_Unit);
2250 if No (Par_Spec) then
2251 Par_Lib := Empty;
2252 else
2253 Par_Lib := Defining_Entity (Unit (Par_Spec));
2254 end if;
2255 end if;
2257 -- Loop through context items
2259 Item := First (Context_Items (N));
2260 while Present (Item) loop
2262 -- Ada 2005 (AI-262): Allow private_with of a private child package
2263 -- in public siblings
2265 if Nkind (Item) = N_With_Clause
2266 and then not Implicit_With (Item)
2267 and then not Private_Present (Item)
2268 and then Is_Private_Descendant (Entity (Name (Item)))
2269 then
2270 Priv_Child := Entity (Name (Item));
2272 declare
2273 Curr_Parent : Entity_Id := Par_Lib;
2274 Child_Parent : Entity_Id := Scope (Priv_Child);
2275 Prv_Ancestor : Entity_Id := Child_Parent;
2276 Curr_Private : Boolean := Is_Private_Library_Unit (Curr_Unit);
2278 begin
2279 -- If the child unit is a public child then locate
2280 -- the nearest private ancestor; Child_Parent will
2281 -- then be set to the parent of that ancestor.
2283 if not Is_Private_Library_Unit (Priv_Child) then
2284 while Present (Prv_Ancestor)
2285 and then not Is_Private_Library_Unit (Prv_Ancestor)
2286 loop
2287 Prv_Ancestor := Scope (Prv_Ancestor);
2288 end loop;
2290 if Present (Prv_Ancestor) then
2291 Child_Parent := Scope (Prv_Ancestor);
2292 end if;
2293 end if;
2295 while Present (Curr_Parent)
2296 and then Curr_Parent /= Standard_Standard
2297 and then Curr_Parent /= Child_Parent
2298 loop
2299 Curr_Private :=
2300 Curr_Private or else Is_Private_Library_Unit (Curr_Parent);
2301 Curr_Parent := Scope (Curr_Parent);
2302 end loop;
2304 if not Present (Curr_Parent) then
2305 Curr_Parent := Standard_Standard;
2306 end if;
2308 if Curr_Parent /= Child_Parent then
2310 if Ekind (Priv_Child) = E_Generic_Package
2311 and then Chars (Priv_Child) in Text_IO_Package_Name
2312 and then Chars (Scope (Scope (Priv_Child))) = Name_Ada
2313 then
2314 Error_Msg_NE
2315 ("& is a nested package, not a compilation unit",
2316 Name (Item), Priv_Child);
2318 else
2319 Error_Msg_N
2320 ("unit in with clause is private child unit!", Item);
2321 Error_Msg_NE
2322 ("current unit must also have parent&!",
2323 Item, Child_Parent);
2324 end if;
2326 elsif not Curr_Private
2327 and then Nkind (Lib_Unit) /= N_Package_Body
2328 and then Nkind (Lib_Unit) /= N_Subprogram_Body
2329 and then Nkind (Lib_Unit) /= N_Subunit
2330 then
2331 Error_Msg_NE
2332 ("current unit must also be private descendant of&",
2333 Item, Child_Parent);
2334 end if;
2335 end;
2336 end if;
2338 Next (Item);
2339 end loop;
2341 end Check_Private_Child_Unit;
2343 ----------------------
2344 -- Check_Stub_Level --
2345 ----------------------
2347 procedure Check_Stub_Level (N : Node_Id) is
2348 Par : constant Node_Id := Parent (N);
2349 Kind : constant Node_Kind := Nkind (Par);
2351 begin
2352 if (Kind = N_Package_Body
2353 or else Kind = N_Subprogram_Body
2354 or else Kind = N_Task_Body
2355 or else Kind = N_Protected_Body)
2357 and then (Nkind (Parent (Par)) = N_Compilation_Unit
2358 or else Nkind (Parent (Par)) = N_Subunit)
2359 then
2360 null;
2362 -- In an instance, a missing stub appears at any level. A warning
2363 -- message will have been emitted already for the missing file.
2365 elsif not In_Instance then
2366 Error_Msg_N ("stub cannot appear in an inner scope", N);
2368 elsif Expander_Active then
2369 Error_Msg_N ("missing proper body", N);
2370 end if;
2371 end Check_Stub_Level;
2373 ------------------------
2374 -- Expand_With_Clause --
2375 ------------------------
2377 procedure Expand_With_Clause (Nam : Node_Id; N : Node_Id) is
2378 Loc : constant Source_Ptr := Sloc (Nam);
2379 Ent : constant Entity_Id := Entity (Nam);
2380 Withn : Node_Id;
2381 P : Node_Id;
2383 function Build_Unit_Name (Nam : Node_Id) return Node_Id;
2385 function Build_Unit_Name (Nam : Node_Id) return Node_Id is
2386 Result : Node_Id;
2388 begin
2389 if Nkind (Nam) = N_Identifier then
2390 return New_Occurrence_Of (Entity (Nam), Loc);
2392 else
2393 Result :=
2394 Make_Expanded_Name (Loc,
2395 Chars => Chars (Entity (Nam)),
2396 Prefix => Build_Unit_Name (Prefix (Nam)),
2397 Selector_Name => New_Occurrence_Of (Entity (Nam), Loc));
2398 Set_Entity (Result, Entity (Nam));
2399 return Result;
2400 end if;
2401 end Build_Unit_Name;
2403 begin
2404 New_Nodes_OK := New_Nodes_OK + 1;
2405 Withn :=
2406 Make_With_Clause (Loc, Name => Build_Unit_Name (Nam));
2408 P := Parent (Unit_Declaration_Node (Ent));
2409 Set_Library_Unit (Withn, P);
2410 Set_Corresponding_Spec (Withn, Ent);
2411 Set_First_Name (Withn, True);
2412 Set_Implicit_With (Withn, True);
2414 Prepend (Withn, Context_Items (N));
2415 Mark_Rewrite_Insertion (Withn);
2416 Install_Withed_Unit (Withn);
2418 if Nkind (Nam) = N_Expanded_Name then
2419 Expand_With_Clause (Prefix (Nam), N);
2420 end if;
2422 New_Nodes_OK := New_Nodes_OK - 1;
2423 end Expand_With_Clause;
2425 --------------------------------
2426 -- Expand_Limited_With_Clause --
2427 --------------------------------
2429 procedure Expand_Limited_With_Clause (Nam : Node_Id; N : Node_Id) is
2430 Loc : constant Source_Ptr := Sloc (Nam);
2431 Unum : Unit_Number_Type;
2432 Withn : Node_Id;
2434 begin
2435 New_Nodes_OK := New_Nodes_OK + 1;
2437 if Nkind (Nam) = N_Identifier then
2438 Withn :=
2439 Make_With_Clause (Loc, Name => Nam);
2440 Set_Limited_Present (Withn);
2441 Set_First_Name (Withn);
2442 Set_Implicit_With (Withn);
2444 -- Load the corresponding parent unit
2446 Unum :=
2447 Load_Unit
2448 (Load_Name => Get_Spec_Name (Get_Unit_Name (Nam)),
2449 Required => True,
2450 Subunit => False,
2451 Error_Node => Nam);
2453 if not Analyzed (Cunit (Unum)) then
2454 Set_Library_Unit (Withn, Cunit (Unum));
2455 Set_Corresponding_Spec
2456 (Withn, Specification (Unit (Cunit (Unum))));
2458 Prepend (Withn, Context_Items (Parent (N)));
2459 Mark_Rewrite_Insertion (Withn);
2460 end if;
2462 else pragma Assert (Nkind (Nam) = N_Selected_Component);
2463 Withn :=
2464 Make_With_Clause
2465 (Loc,
2466 Name =>
2467 Make_Selected_Component
2468 (Loc,
2469 Prefix => Prefix (Nam),
2470 Selector_Name => Selector_Name (Nam)));
2472 Set_Parent (Withn, Parent (N));
2473 Set_Limited_Present (Withn);
2474 Set_First_Name (Withn);
2475 Set_Implicit_With (Withn);
2477 Unum :=
2478 Load_Unit
2479 (Load_Name => Get_Spec_Name (Get_Unit_Name (Nam)),
2480 Required => True,
2481 Subunit => False,
2482 Error_Node => Nam);
2484 if not Analyzed (Cunit (Unum)) then
2485 Set_Library_Unit (Withn, Cunit (Unum));
2486 Set_Corresponding_Spec
2487 (Withn, Specification (Unit (Cunit (Unum))));
2488 Prepend (Withn, Context_Items (Parent (N)));
2489 Mark_Rewrite_Insertion (Withn);
2491 Expand_Limited_With_Clause (Prefix (Nam), N);
2492 end if;
2493 end if;
2495 New_Nodes_OK := New_Nodes_OK - 1;
2496 end Expand_Limited_With_Clause;
2498 -----------------------
2499 -- Get_Parent_Entity --
2500 -----------------------
2502 function Get_Parent_Entity (Unit : Node_Id) return Entity_Id is
2503 begin
2504 if Nkind (Unit) = N_Package_Body
2505 and then Nkind (Original_Node (Unit)) = N_Package_Instantiation
2506 then
2507 return
2508 Defining_Entity
2509 (Specification (Instance_Spec (Original_Node (Unit))));
2511 elsif Nkind (Unit) = N_Package_Instantiation then
2512 return Defining_Entity (Specification (Instance_Spec (Unit)));
2514 else
2515 return Defining_Entity (Unit);
2516 end if;
2517 end Get_Parent_Entity;
2519 -----------------------------
2520 -- Implicit_With_On_Parent --
2521 -----------------------------
2523 procedure Implicit_With_On_Parent
2524 (Child_Unit : Node_Id;
2525 N : Node_Id)
2527 Loc : constant Source_Ptr := Sloc (N);
2528 P : constant Node_Id := Parent_Spec (Child_Unit);
2530 P_Unit : Node_Id := Unit (P);
2532 P_Name : constant Entity_Id := Get_Parent_Entity (P_Unit);
2533 Withn : Node_Id;
2535 function Build_Ancestor_Name (P : Node_Id) return Node_Id;
2536 -- Build prefix of child unit name. Recurse if needed
2538 function Build_Unit_Name return Node_Id;
2539 -- If the unit is a child unit, build qualified name with all
2540 -- ancestors.
2542 -------------------------
2543 -- Build_Ancestor_Name --
2544 -------------------------
2546 function Build_Ancestor_Name (P : Node_Id) return Node_Id is
2547 P_Ref : constant Node_Id :=
2548 New_Reference_To (Defining_Entity (P), Loc);
2549 begin
2550 if No (Parent_Spec (P)) then
2551 return P_Ref;
2552 else
2553 return
2554 Make_Selected_Component (Loc,
2555 Prefix => Build_Ancestor_Name (Unit (Parent_Spec (P))),
2556 Selector_Name => P_Ref);
2557 end if;
2558 end Build_Ancestor_Name;
2560 ---------------------
2561 -- Build_Unit_Name --
2562 ---------------------
2564 function Build_Unit_Name return Node_Id is
2565 Result : Node_Id;
2566 begin
2567 if No (Parent_Spec (P_Unit)) then
2568 return New_Reference_To (P_Name, Loc);
2569 else
2570 Result :=
2571 Make_Expanded_Name (Loc,
2572 Chars => Chars (P_Name),
2573 Prefix => Build_Ancestor_Name (Unit (Parent_Spec (P_Unit))),
2574 Selector_Name => New_Reference_To (P_Name, Loc));
2575 Set_Entity (Result, P_Name);
2576 return Result;
2577 end if;
2578 end Build_Unit_Name;
2580 -- Start of processing for Implicit_With_On_Parent
2582 begin
2583 -- The unit of the current compilation may be a package body
2584 -- that replaces an instance node. In this case we need the
2585 -- original instance node to construct the proper parent name.
2587 if Nkind (P_Unit) = N_Package_Body
2588 and then Nkind (Original_Node (P_Unit)) = N_Package_Instantiation
2589 then
2590 P_Unit := Original_Node (P_Unit);
2591 end if;
2593 New_Nodes_OK := New_Nodes_OK + 1;
2594 Withn := Make_With_Clause (Loc, Name => Build_Unit_Name);
2596 Set_Library_Unit (Withn, P);
2597 Set_Corresponding_Spec (Withn, P_Name);
2598 Set_First_Name (Withn, True);
2599 Set_Implicit_With (Withn, True);
2601 -- Node is placed at the beginning of the context items, so that
2602 -- subsequent use clauses on the parent can be validated.
2604 Prepend (Withn, Context_Items (N));
2605 Mark_Rewrite_Insertion (Withn);
2606 Install_Withed_Unit (Withn);
2608 if Is_Child_Spec (P_Unit) then
2609 Implicit_With_On_Parent (P_Unit, N);
2610 end if;
2612 New_Nodes_OK := New_Nodes_OK - 1;
2613 end Implicit_With_On_Parent;
2615 ---------------------
2616 -- Install_Context --
2617 ---------------------
2619 procedure Install_Context (N : Node_Id) is
2620 Lib_Unit : constant Node_Id := Unit (N);
2622 begin
2623 Install_Context_Clauses (N);
2625 if Is_Child_Spec (Lib_Unit) then
2626 Install_Parents (Lib_Unit, Private_Present (Parent (Lib_Unit)));
2627 end if;
2629 Install_Limited_Context_Clauses (N);
2631 Check_With_Type_Clauses (N);
2632 end Install_Context;
2634 -----------------------------
2635 -- Install_Context_Clauses --
2636 -----------------------------
2638 procedure Install_Context_Clauses (N : Node_Id) is
2639 Lib_Unit : constant Node_Id := Unit (N);
2640 Item : Node_Id;
2641 Uname_Node : Entity_Id;
2642 Check_Private : Boolean := False;
2643 Decl_Node : Node_Id;
2644 Lib_Parent : Entity_Id;
2646 begin
2647 -- Loop through context clauses to find the with/use clauses.
2648 -- This is done twice, first for everything except limited_with
2649 -- clauses, and then for those, if any are present.
2651 Item := First (Context_Items (N));
2652 while Present (Item) loop
2654 -- Case of explicit WITH clause
2656 if Nkind (Item) = N_With_Clause
2657 and then not Implicit_With (Item)
2658 then
2659 if Limited_Present (Item) then
2661 -- Limited withed units will be installed later
2663 goto Continue;
2665 -- If Name (Item) is not an entity name, something is wrong, and
2666 -- this will be detected in due course, for now ignore the item
2668 elsif not Is_Entity_Name (Name (Item)) then
2669 goto Continue;
2671 elsif No (Entity (Name (Item))) then
2672 Set_Entity (Name (Item), Any_Id);
2673 goto Continue;
2674 end if;
2676 Uname_Node := Entity (Name (Item));
2678 if Is_Private_Descendant (Uname_Node) then
2679 Check_Private := True;
2680 end if;
2682 Install_Withed_Unit (Item);
2684 Decl_Node := Unit_Declaration_Node (Uname_Node);
2686 -- If the unit is a subprogram instance, it appears nested
2687 -- within a package that carries the parent information.
2689 if Is_Generic_Instance (Uname_Node)
2690 and then Ekind (Uname_Node) /= E_Package
2691 then
2692 Decl_Node := Parent (Parent (Decl_Node));
2693 end if;
2695 if Is_Child_Spec (Decl_Node) then
2696 if Nkind (Name (Item)) = N_Expanded_Name then
2697 Expand_With_Clause (Prefix (Name (Item)), N);
2698 else
2699 -- if not an expanded name, the child unit must be a
2700 -- renaming, nothing to do.
2702 null;
2703 end if;
2705 elsif Nkind (Decl_Node) = N_Subprogram_Body
2706 and then not Acts_As_Spec (Parent (Decl_Node))
2707 and then Is_Child_Spec (Unit (Library_Unit (Parent (Decl_Node))))
2708 then
2709 Implicit_With_On_Parent
2710 (Unit (Library_Unit (Parent (Decl_Node))), N);
2711 end if;
2713 -- Check license conditions unless this is a dummy unit
2715 if Sloc (Library_Unit (Item)) /= No_Location then
2716 License_Check : declare
2717 Withl : constant License_Type :=
2718 License (Source_Index
2719 (Get_Source_Unit
2720 (Library_Unit (Item))));
2722 Unitl : constant License_Type :=
2723 License (Source_Index (Current_Sem_Unit));
2725 procedure License_Error;
2726 -- Signal error of bad license
2728 -------------------
2729 -- License_Error --
2730 -------------------
2732 procedure License_Error is
2733 begin
2734 Error_Msg_N
2735 ("?license of with'ed unit & is incompatible",
2736 Name (Item));
2737 end License_Error;
2739 -- Start of processing for License_Check
2741 begin
2742 case Unitl is
2743 when Unknown =>
2744 null;
2746 when Restricted =>
2747 if Withl = GPL then
2748 License_Error;
2749 end if;
2751 when GPL =>
2752 if Withl = Restricted then
2753 License_Error;
2754 end if;
2756 when Modified_GPL =>
2757 if Withl = Restricted or else Withl = GPL then
2758 License_Error;
2759 end if;
2761 when Unrestricted =>
2762 null;
2763 end case;
2764 end License_Check;
2765 end if;
2767 -- Case of USE PACKAGE clause
2769 elsif Nkind (Item) = N_Use_Package_Clause then
2770 Analyze_Use_Package (Item);
2772 -- Case of USE TYPE clause
2774 elsif Nkind (Item) = N_Use_Type_Clause then
2775 Analyze_Use_Type (Item);
2777 -- Case of WITH TYPE clause
2779 -- A With_Type_Clause is processed when installing the context,
2780 -- because it is a visibility mechanism and does not create a
2781 -- semantic dependence on other units, as a With_Clause does.
2783 elsif Nkind (Item) = N_With_Type_Clause then
2784 Analyze_With_Type_Clause (Item);
2786 -- case of PRAGMA
2788 elsif Nkind (Item) = N_Pragma then
2789 Analyze (Item);
2790 end if;
2792 <<Continue>>
2793 Next (Item);
2794 end loop;
2796 if Is_Child_Spec (Lib_Unit) then
2798 -- The unit also has implicit withs on its own parents
2800 if No (Context_Items (N)) then
2801 Set_Context_Items (N, New_List);
2802 end if;
2804 Implicit_With_On_Parent (Lib_Unit, N);
2805 end if;
2807 -- If the unit is a body, the context of the specification must also
2808 -- be installed.
2810 if Nkind (Lib_Unit) = N_Package_Body
2811 or else (Nkind (Lib_Unit) = N_Subprogram_Body
2812 and then not Acts_As_Spec (N))
2813 then
2814 Install_Context (Library_Unit (N));
2816 if Is_Child_Spec (Unit (Library_Unit (N))) then
2818 -- If the unit is the body of a public child unit, the private
2819 -- declarations of the parent must be made visible. If the child
2820 -- unit is private, the private declarations have been installed
2821 -- already in the call to Install_Parents for the spec. Installing
2822 -- private declarations must be done for all ancestors of public
2823 -- child units. In addition, sibling units mentioned in the
2824 -- context clause of the body are directly visible.
2826 declare
2827 Lib_Spec : Node_Id := Unit (Library_Unit (N));
2828 P : Node_Id;
2829 P_Name : Entity_Id;
2831 begin
2832 while Is_Child_Spec (Lib_Spec) loop
2833 P := Unit (Parent_Spec (Lib_Spec));
2835 if not (Private_Present (Parent (Lib_Spec))) then
2836 P_Name := Defining_Entity (P);
2837 Install_Private_Declarations (P_Name);
2838 Install_Private_With_Clauses (P_Name);
2839 Set_Use (Private_Declarations (Specification (P)));
2840 end if;
2842 Lib_Spec := P;
2843 end loop;
2844 end;
2845 end if;
2847 -- For a package body, children in context are immediately visible
2849 Install_Siblings (Defining_Entity (Unit (Library_Unit (N))), N);
2850 end if;
2852 if Nkind (Lib_Unit) = N_Generic_Package_Declaration
2853 or else Nkind (Lib_Unit) = N_Generic_Subprogram_Declaration
2854 or else Nkind (Lib_Unit) = N_Package_Declaration
2855 or else Nkind (Lib_Unit) = N_Subprogram_Declaration
2856 then
2857 if Is_Child_Spec (Lib_Unit) then
2858 Lib_Parent := Defining_Entity (Unit (Parent_Spec (Lib_Unit)));
2859 Set_Is_Private_Descendant
2860 (Defining_Entity (Lib_Unit),
2861 Is_Private_Descendant (Lib_Parent)
2862 or else Private_Present (Parent (Lib_Unit)));
2864 else
2865 Set_Is_Private_Descendant
2866 (Defining_Entity (Lib_Unit),
2867 Private_Present (Parent (Lib_Unit)));
2868 end if;
2869 end if;
2871 if Check_Private then
2872 Check_Private_Child_Unit (N);
2873 end if;
2874 end Install_Context_Clauses;
2876 -------------------------------------
2877 -- Install_Limited_Context_Clauses --
2878 -------------------------------------
2880 procedure Install_Limited_Context_Clauses (N : Node_Id) is
2881 Item : Node_Id;
2883 procedure Check_Parent (P : Node_Id; W : Node_Id);
2884 -- Check that the unlimited view of a given compilation_unit is not
2885 -- already visible in the parents (neither immediately through the
2886 -- context clauses, nor indirectly through "use + renamings").
2888 procedure Check_Private_Limited_Withed_Unit (N : Node_Id);
2889 -- Check that if a limited_with clause of a given compilation_unit
2890 -- mentions a private child of some library unit, then the given
2891 -- compilation_unit shall be the declaration of a private descendant
2892 -- of that library unit.
2894 procedure Check_Withed_Unit (W : Node_Id);
2895 -- Check that a limited with_clause does not appear in the same
2896 -- context_clause as a nonlimited with_clause that mentions
2897 -- the same library.
2899 ------------------
2900 -- Check_Parent --
2901 ------------------
2903 procedure Check_Parent (P : Node_Id; W : Node_Id) is
2904 Item : Node_Id;
2905 Spec : Node_Id;
2906 WEnt : Entity_Id;
2907 Nam : Node_Id;
2908 E : Entity_Id;
2909 E2 : Entity_Id;
2911 begin
2912 pragma Assert (Nkind (W) = N_With_Clause);
2914 -- Step 1: Check if the unlimited view is installed in the parent
2916 Item := First (Context_Items (P));
2917 while Present (Item) loop
2918 if Nkind (Item) = N_With_Clause
2919 and then not Limited_Present (Item)
2920 and then not Implicit_With (Item)
2921 and then Library_Unit (Item) = Library_Unit (W)
2922 then
2923 Error_Msg_N ("unlimited view visible in ancestor", W);
2924 return;
2925 end if;
2927 Next (Item);
2928 end loop;
2930 -- Step 2: Check "use + renamings"
2932 WEnt := Defining_Unit_Name (Specification (Unit (Library_Unit (W))));
2933 Spec := Specification (Unit (P));
2935 -- We tried to traverse the list of entities corresponding to the
2936 -- defining entity of the package spec. However, first_entity was
2937 -- found to be 'empty'. Don't know why???
2939 -- Def := Defining_Unit_Name (Spec);
2940 -- Ent := First_Entity (Def);
2942 -- As a workaround we traverse the list of visible declarations ???
2944 Item := First (Visible_Declarations (Spec));
2945 while Present (Item) loop
2947 if Nkind (Item) = N_Use_Package_Clause then
2949 -- Traverse the list of packages
2951 Nam := First (Names (Item));
2953 while Present (Nam) loop
2954 E := Entity (Nam);
2956 pragma Assert (Present (Parent (E)));
2958 if Nkind (Parent (E))
2959 = N_Package_Renaming_Declaration
2960 and then Renamed_Entity (E) = WEnt
2961 then
2962 Error_Msg_N ("unlimited view visible through "
2963 & "use_clause + renamings", W);
2964 return;
2966 elsif Nkind (Parent (E)) = N_Package_Specification then
2968 -- The use clause may refer to a local package.
2969 -- Check all the enclosing scopes.
2971 E2 := E;
2972 while E2 /= Standard_Standard
2973 and then E2 /= WEnt loop
2974 E2 := Scope (E2);
2975 end loop;
2977 if E2 = WEnt then
2978 Error_Msg_N ("unlimited view visible through "
2979 & "use_clause ", W);
2980 return;
2981 end if;
2983 end if;
2984 Next (Nam);
2985 end loop;
2987 end if;
2989 Next (Item);
2990 end loop;
2992 -- Recursive call to check all the ancestors
2994 if Is_Child_Spec (Unit (P)) then
2995 Check_Parent (P => Parent_Spec (Unit (P)), W => W);
2996 end if;
2997 end Check_Parent;
2999 ---------------------------------------
3000 -- Check_Private_Limited_Withed_Unit --
3001 ---------------------------------------
3003 procedure Check_Private_Limited_Withed_Unit (N : Node_Id) is
3004 C : Node_Id;
3005 P : Node_Id;
3006 Found : Boolean := False;
3008 begin
3009 -- If the current compilation unit is not private we don't
3010 -- need to check anything else.
3012 if not Private_Present (Parent (N)) then
3013 Found := False;
3015 else
3016 -- Compilation unit of the parent of the withed library unit
3018 P := Parent_Spec (Unit (Library_Unit (N)));
3020 -- Traverse all the ancestors of the current compilation
3021 -- unit to check if it is a descendant of named library unit.
3023 C := Parent (N);
3024 while Present (Parent_Spec (Unit (C))) loop
3025 C := Parent_Spec (Unit (C));
3027 if C = P then
3028 Found := True;
3029 exit;
3030 end if;
3031 end loop;
3032 end if;
3034 if not Found then
3035 Error_Msg_N ("current unit is not a private descendant"
3036 & " of the withed unit ('R'M 10.1.2(8)", N);
3037 end if;
3038 end Check_Private_Limited_Withed_Unit;
3040 -----------------------
3041 -- Check_Withed_Unit --
3042 -----------------------
3044 procedure Check_Withed_Unit (W : Node_Id) is
3045 Item : Node_Id;
3047 begin
3048 -- A limited with_clause can not appear in the same context_clause
3049 -- as a nonlimited with_clause which mentions the same library.
3051 Item := First (Context_Items (N));
3052 while Present (Item) loop
3053 if Nkind (Item) = N_With_Clause
3054 and then not Limited_Present (Item)
3055 and then not Implicit_With (Item)
3056 and then Library_Unit (Item) = Library_Unit (W)
3057 then
3058 Error_Msg_N ("limited and unlimited view "
3059 & "not allowed in the same context clauses", W);
3060 return;
3061 end if;
3063 Next (Item);
3064 end loop;
3065 end Check_Withed_Unit;
3067 -- Start of processing for Install_Limited_Context_Clauses
3069 begin
3070 Item := First (Context_Items (N));
3071 while Present (Item) loop
3072 if Nkind (Item) = N_With_Clause
3073 and then Limited_Present (Item)
3074 then
3075 Check_Withed_Unit (Item);
3077 if Private_Present (Library_Unit (Item)) then
3078 Check_Private_Limited_Withed_Unit (Item);
3079 end if;
3081 if Is_Child_Spec (Unit (N)) then
3082 Check_Parent (Parent_Spec (Unit (N)), Item);
3083 end if;
3085 Install_Limited_Withed_Unit (Item);
3086 end if;
3088 Next (Item);
3089 end loop;
3090 end Install_Limited_Context_Clauses;
3092 ---------------------
3093 -- Install_Parents --
3094 ---------------------
3096 procedure Install_Parents (Lib_Unit : Node_Id; Is_Private : Boolean) is
3097 P : Node_Id;
3098 E_Name : Entity_Id;
3099 P_Name : Entity_Id;
3100 P_Spec : Node_Id;
3102 begin
3103 P := Unit (Parent_Spec (Lib_Unit));
3104 P_Name := Get_Parent_Entity (P);
3106 if Etype (P_Name) = Any_Type then
3107 return;
3108 end if;
3110 if Ekind (P_Name) = E_Generic_Package
3111 and then Nkind (Lib_Unit) /= N_Generic_Subprogram_Declaration
3112 and then Nkind (Lib_Unit) /= N_Generic_Package_Declaration
3113 and then Nkind (Lib_Unit) not in N_Generic_Renaming_Declaration
3114 then
3115 Error_Msg_N
3116 ("child of a generic package must be a generic unit", Lib_Unit);
3118 elsif not Is_Package (P_Name) then
3119 Error_Msg_N
3120 ("parent unit must be package or generic package", Lib_Unit);
3121 raise Unrecoverable_Error;
3123 elsif Present (Renamed_Object (P_Name)) then
3124 Error_Msg_N ("parent unit cannot be a renaming", Lib_Unit);
3125 raise Unrecoverable_Error;
3127 -- Verify that a child of an instance is itself an instance, or
3128 -- the renaming of one. Given that an instance that is a unit is
3129 -- replaced with a package declaration, check against the original
3130 -- node.
3132 elsif Nkind (Original_Node (P)) = N_Package_Instantiation
3133 and then Nkind (Lib_Unit)
3134 not in N_Renaming_Declaration
3135 and then Nkind (Original_Node (Lib_Unit))
3136 not in N_Generic_Instantiation
3137 then
3138 Error_Msg_N
3139 ("child of an instance must be an instance or renaming", Lib_Unit);
3140 end if;
3142 -- This is the recursive call that ensures all parents are loaded
3144 if Is_Child_Spec (P) then
3145 Install_Parents (P,
3146 Is_Private or else Private_Present (Parent (Lib_Unit)));
3147 end if;
3149 -- Now we can install the context for this parent
3151 Install_Context_Clauses (Parent_Spec (Lib_Unit));
3152 Install_Siblings (P_Name, Parent (Lib_Unit));
3154 -- The child unit is in the declarative region of the parent. The
3155 -- parent must therefore appear in the scope stack and be visible,
3156 -- as when compiling the corresponding body. If the child unit is
3157 -- private or it is a package body, private declarations must be
3158 -- accessible as well. Use declarations in the parent must also
3159 -- be installed. Finally, other child units of the same parent that
3160 -- are in the context are immediately visible.
3162 -- Find entity for compilation unit, and set its private descendant
3163 -- status as needed.
3165 E_Name := Defining_Entity (Lib_Unit);
3167 Set_Is_Child_Unit (E_Name);
3169 Set_Is_Private_Descendant (E_Name,
3170 Is_Private_Descendant (P_Name)
3171 or else Private_Present (Parent (Lib_Unit)));
3173 P_Spec := Specification (Unit_Declaration_Node (P_Name));
3174 New_Scope (P_Name);
3176 -- Save current visibility of unit
3178 Scope_Stack.Table (Scope_Stack.Last).Previous_Visibility :=
3179 Is_Immediately_Visible (P_Name);
3180 Set_Is_Immediately_Visible (P_Name);
3181 Install_Visible_Declarations (P_Name);
3182 Set_Use (Visible_Declarations (P_Spec));
3184 -- If the parent is a generic unit, its formal part may contain
3185 -- formal packages and use clauses for them.
3187 if Ekind (P_Name) = E_Generic_Package then
3188 Set_Use (Generic_Formal_Declarations (Parent (P_Spec)));
3189 end if;
3191 if Is_Private
3192 or else Private_Present (Parent (Lib_Unit))
3193 then
3194 Install_Private_Declarations (P_Name);
3195 Install_Private_With_Clauses (P_Name);
3196 Set_Use (Private_Declarations (P_Spec));
3197 end if;
3198 end Install_Parents;
3200 ----------------------------------
3201 -- Install_Private_With_Clauses --
3202 ----------------------------------
3204 procedure Install_Private_With_Clauses (P : Entity_Id) is
3205 Decl : constant Node_Id := Unit_Declaration_Node (P);
3206 Item : Node_Id;
3208 begin
3209 if Debug_Flag_I then
3210 Write_Str ("install private with clauses of ");
3211 Write_Name (Chars (P));
3212 Write_Eol;
3213 end if;
3215 if Nkind (Parent (Decl)) = N_Compilation_Unit then
3216 Item := First (Context_Items (Parent (Decl)));
3218 while Present (Item) loop
3219 if Nkind (Item) = N_With_Clause
3220 and then Private_Present (Item)
3221 then
3222 if Limited_Present (Item) then
3223 Install_Limited_Withed_Unit (Item);
3224 else
3225 Install_Withed_Unit (Item, Private_With_OK => True);
3226 end if;
3227 end if;
3229 Next (Item);
3230 end loop;
3231 end if;
3232 end Install_Private_With_Clauses;
3234 ----------------------
3235 -- Install_Siblings --
3236 ----------------------
3238 procedure Install_Siblings (U_Name : Entity_Id; N : Node_Id) is
3239 Item : Node_Id;
3240 Id : Entity_Id;
3241 Prev : Entity_Id;
3242 begin
3243 -- Iterate over explicit with clauses, and check whether the
3244 -- scope of each entity is an ancestor of the current unit.
3246 Item := First (Context_Items (N));
3247 while Present (Item) loop
3248 if Nkind (Item) = N_With_Clause
3249 and then not Implicit_With (Item)
3250 and then not Limited_Present (Item)
3251 then
3252 Id := Entity (Name (Item));
3254 if Is_Child_Unit (Id)
3255 and then Is_Ancestor_Package (Scope (Id), U_Name)
3256 then
3257 Set_Is_Immediately_Visible (Id);
3259 -- Check for the presence of another unit in the context,
3260 -- that may be inadvertently hidden by the child.
3262 Prev := Current_Entity (Id);
3264 if Present (Prev)
3265 and then Is_Immediately_Visible (Prev)
3266 and then not Is_Child_Unit (Prev)
3267 then
3268 declare
3269 Clause : Node_Id;
3271 begin
3272 Clause := First (Context_Items (N));
3274 while Present (Clause) loop
3275 if Nkind (Clause) = N_With_Clause
3276 and then Entity (Name (Clause)) = Prev
3277 then
3278 Error_Msg_NE
3279 ("child unit& hides compilation unit " &
3280 "with the same name?",
3281 Name (Item), Id);
3282 exit;
3283 end if;
3285 Next (Clause);
3286 end loop;
3287 end;
3288 end if;
3290 -- the With_Clause may be on a grand-child, which makes
3291 -- the child immediately visible.
3293 elsif Is_Child_Unit (Scope (Id))
3294 and then Is_Ancestor_Package (Scope (Scope (Id)), U_Name)
3295 then
3296 Set_Is_Immediately_Visible (Scope (Id));
3297 end if;
3298 end if;
3300 Next (Item);
3301 end loop;
3302 end Install_Siblings;
3304 -------------------------------
3305 -- Install_Limited_With_Unit --
3306 -------------------------------
3308 procedure Install_Limited_Withed_Unit (N : Node_Id) is
3309 Unum : constant Unit_Number_Type :=
3310 Get_Source_Unit (Library_Unit (N));
3311 P_Unit : constant Entity_Id := Unit (Library_Unit (N));
3312 P : Entity_Id;
3313 Is_Child_Package : Boolean := False;
3315 Lim_Header : Entity_Id;
3316 Lim_Typ : Entity_Id;
3318 function In_Chain (E : Entity_Id) return Boolean;
3319 -- Check that the shadow entity is not already in the homonym
3320 -- chain, for example through a limited_with clause in a parent unit.
3322 --------------
3323 -- In_Chain --
3324 --------------
3326 function In_Chain (E : Entity_Id) return Boolean is
3327 H : Entity_Id := Current_Entity (E);
3329 begin
3330 while Present (H) loop
3331 if H = E then
3332 return True;
3333 else
3334 H := Homonym (H);
3335 end if;
3336 end loop;
3338 return False;
3339 end In_Chain;
3341 -- Start of processing for Install_Limited_Withed_Unit
3343 begin
3344 -- In case of limited with_clause on subprograms, generics, instances,
3345 -- or generic renamings, the corresponding error was previously posted
3346 -- and we have nothing to do here.
3348 case Nkind (P_Unit) is
3350 when N_Package_Declaration =>
3351 null;
3353 when N_Subprogram_Declaration |
3354 N_Generic_Package_Declaration |
3355 N_Generic_Subprogram_Declaration |
3356 N_Package_Instantiation |
3357 N_Function_Instantiation |
3358 N_Procedure_Instantiation |
3359 N_Generic_Package_Renaming_Declaration |
3360 N_Generic_Procedure_Renaming_Declaration |
3361 N_Generic_Function_Renaming_Declaration =>
3362 return;
3364 when others =>
3365 raise Program_Error;
3366 end case;
3368 P := Defining_Unit_Name (Specification (P_Unit));
3370 if Nkind (P) = N_Defining_Program_Unit_Name then
3372 -- Retrieve entity of child package
3374 Is_Child_Package := True;
3375 P := Defining_Identifier (P);
3376 end if;
3378 -- A common usage of the limited-with is to have a limited-with
3379 -- in the package spec, and a normal with in its package body.
3380 -- For example:
3382 -- limited with X; -- [1]
3383 -- package A is ...
3385 -- with X; -- [2]
3386 -- package body A is ...
3388 -- The compilation of A's body installs the entities of its
3389 -- withed packages (the context clauses found at [2]) and
3390 -- then the context clauses of its specification (found at [1]).
3392 -- As a consequence, at point [1] the specification of X has been
3393 -- analyzed and it is immediately visible. According to the semantics
3394 -- of the limited-with context clauses we don't install the limited
3395 -- view because the full view of X supersedes its limited view.
3397 if Analyzed (Cunit (Unum))
3398 and then (Is_Immediately_Visible (P)
3399 or else (Is_Child_Package
3400 and then Is_Visible_Child_Unit (P)))
3401 then
3402 -- Ada 2005 (AI-262): Install the private declarations of P
3404 if Private_Present (N)
3405 and then not In_Private_Part (P)
3406 then
3407 declare
3408 Id : Entity_Id;
3409 begin
3410 Id := First_Private_Entity (P);
3412 while Present (Id) loop
3413 if not Is_Internal (Id)
3414 and then not Is_Child_Unit (Id)
3415 then
3416 if not In_Chain (Id) then
3417 Set_Homonym (Id, Current_Entity (Id));
3418 Set_Current_Entity (Id);
3419 end if;
3421 Set_Is_Immediately_Visible (Id);
3422 end if;
3424 Next_Entity (Id);
3425 end loop;
3427 Set_In_Private_Part (P);
3428 end;
3429 end if;
3431 return;
3432 end if;
3434 if Debug_Flag_I then
3435 Write_Str ("install limited view of ");
3436 Write_Name (Chars (P));
3437 Write_Eol;
3438 end if;
3440 if not Analyzed (Cunit (Unum)) then
3441 Set_Ekind (P, E_Package);
3442 Set_Etype (P, Standard_Void_Type);
3443 Set_Scope (P, Standard_Standard);
3445 -- Place entity on visibility structure
3447 if Current_Entity (P) /= P then
3448 Set_Homonym (P, Current_Entity (P));
3449 Set_Current_Entity (P);
3451 if Debug_Flag_I then
3452 Write_Str (" (homonym) chain ");
3453 Write_Name (Chars (P));
3454 Write_Eol;
3455 end if;
3457 end if;
3459 if Is_Child_Package then
3460 Set_Is_Child_Unit (P);
3461 Set_Is_Visible_Child_Unit (P);
3463 declare
3464 Parent_Comp : Node_Id;
3465 Parent_Id : Entity_Id;
3467 begin
3468 Parent_Comp := Parent_Spec (Unit (Cunit (Unum)));
3469 Parent_Id := Defining_Entity (Unit (Parent_Comp));
3471 Set_Scope (P, Parent_Id);
3472 end;
3473 end if;
3475 else
3477 -- If the unit appears in a previous regular with_clause, the
3478 -- regular entities must be unchained before the shadow ones
3479 -- are made accessible.
3481 declare
3482 Ent : Entity_Id;
3483 begin
3484 Ent := First_Entity (P);
3486 while Present (Ent) loop
3487 Unchain (Ent);
3488 Next_Entity (Ent);
3489 end loop;
3490 end;
3492 end if;
3494 -- The package must be visible while the with_type clause is active,
3495 -- because references to the type P.T must resolve in the usual way.
3497 Set_Is_Immediately_Visible (P);
3499 -- Install each incomplete view. The first element of the limited view
3500 -- is a header (an E_Package entity) that is used to reference the first
3501 -- shadow entity in the private part of the package
3503 Lim_Header := Limited_View (P);
3504 Lim_Typ := First_Entity (Lim_Header);
3506 while Present (Lim_Typ) loop
3508 exit when not Private_Present (N)
3509 and then Lim_Typ = First_Private_Entity (Lim_Header);
3511 if not In_Chain (Lim_Typ) then
3512 Set_Homonym (Lim_Typ, Current_Entity (Lim_Typ));
3513 Set_Current_Entity (Lim_Typ);
3515 if Debug_Flag_I then
3516 Write_Str (" (homonym) chain ");
3517 Write_Name (Chars (Lim_Typ));
3518 Write_Eol;
3519 end if;
3520 end if;
3522 Next_Entity (Lim_Typ);
3523 end loop;
3525 -- The context clause has installed a limited-view, mark it
3526 -- accordingly, to uninstall it when the context is removed.
3528 Set_Limited_View_Installed (N);
3529 Set_From_With_Type (P);
3530 end Install_Limited_Withed_Unit;
3532 -------------------------
3533 -- Install_Withed_Unit --
3534 -------------------------
3536 procedure Install_Withed_Unit
3537 (With_Clause : Node_Id;
3538 Private_With_OK : Boolean := False)
3540 Uname : constant Entity_Id := Entity (Name (With_Clause));
3541 P : constant Entity_Id := Scope (Uname);
3543 begin
3544 -- Ada 2005 (AI-262): Do not install the private withed unit if we are
3545 -- compiling a package declaration and the Private_With_OK flag was not
3546 -- set by the caller. These declarations will be installed later (before
3547 -- analyzing the private part of the package).
3549 if Private_Present (With_Clause)
3550 and then Nkind (Cunit (Current_Sem_Unit)) = N_Package_Declaration
3551 and then not (Private_With_OK)
3552 then
3553 return;
3554 end if;
3556 if Debug_Flag_I then
3557 if Private_Present (With_Clause) then
3558 Write_Str ("install private withed unit ");
3559 else
3560 Write_Str ("install withed unit ");
3561 end if;
3563 Write_Name (Chars (Uname));
3564 Write_Eol;
3565 end if;
3567 -- We do not apply the restrictions to an internal unit unless
3568 -- we are compiling the internal unit as a main unit. This check
3569 -- is also skipped for dummy units (for missing packages).
3571 if Sloc (Uname) /= No_Location
3572 and then (not Is_Internal_File_Name (Unit_File_Name (Current_Sem_Unit))
3573 or else Current_Sem_Unit = Main_Unit)
3574 then
3575 Check_Restricted_Unit
3576 (Unit_Name (Get_Source_Unit (Uname)), With_Clause);
3577 end if;
3579 if P /= Standard_Standard then
3581 -- If the unit is not analyzed after analysis of the with clause,
3582 -- and it is an instantiation, then it awaits a body and is the main
3583 -- unit. Its appearance in the context of some other unit indicates
3584 -- a circular dependency (DEC suite perversity).
3586 if not Analyzed (Uname)
3587 and then Nkind (Parent (Uname)) = N_Package_Instantiation
3588 then
3589 Error_Msg_N
3590 ("instantiation depends on itself", Name (With_Clause));
3592 elsif not Is_Visible_Child_Unit (Uname) then
3593 Set_Is_Visible_Child_Unit (Uname);
3595 if Is_Generic_Instance (Uname)
3596 and then Ekind (Uname) in Subprogram_Kind
3597 then
3598 -- Set flag as well on the visible entity that denotes the
3599 -- instance, which renames the current one.
3601 Set_Is_Visible_Child_Unit
3602 (Related_Instance
3603 (Defining_Entity (Unit (Library_Unit (With_Clause)))));
3604 end if;
3606 -- The parent unit may have been installed already, and
3607 -- may have appeared in a use clause.
3609 if In_Use (Scope (Uname)) then
3610 Set_Is_Potentially_Use_Visible (Uname);
3611 end if;
3613 Set_Context_Installed (With_Clause);
3614 end if;
3616 elsif not Is_Immediately_Visible (Uname) then
3617 if not Private_Present (With_Clause)
3618 or else Private_With_OK
3619 then
3620 Set_Is_Immediately_Visible (Uname);
3621 end if;
3623 Set_Context_Installed (With_Clause);
3624 end if;
3626 -- A with-clause overrides a with-type clause: there are no restric-
3627 -- tions on the use of package entities.
3629 if Ekind (Uname) = E_Package then
3630 Set_From_With_Type (Uname, False);
3631 end if;
3633 -- Ada 2005 (AI-377): it is illegal for a with_clause to name a child
3634 -- unit if there is a visible homograph for it declared in the same
3635 -- declarative region. This pathological case can only arise when an
3636 -- instance I1 of a generic unit G1 has an explicit child unit I1.G2,
3637 -- G1 has a generic child also named G2, and the context includes with_
3638 -- clauses for both I1.G2 and for G1.G2, making an implicit declaration
3639 -- of I1.G2 visible as well.
3641 if Is_Child_Unit (Uname)
3642 and then Is_Visible_Child_Unit (Uname)
3643 and then Ada_Version >= Ada_05
3644 then
3645 declare
3646 Decl1 : constant Node_Id := Unit_Declaration_Node (P);
3647 Decl2 : Node_Id;
3648 P2 : Entity_Id;
3649 U2 : Entity_Id;
3651 begin
3652 U2 := Homonym (Uname);
3653 while Present (U2) loop
3654 P2 := Scope (U2);
3655 Decl2 := Unit_Declaration_Node (P2);
3657 if Is_Child_Unit (U2)
3658 and then Is_Visible_Child_Unit (U2)
3659 then
3660 if Is_Generic_Instance (P)
3661 and then Nkind (Decl1) = N_Package_Declaration
3662 and then Generic_Parent (Specification (Decl1)) = P2
3663 then
3664 Error_Msg_N ("illegal with_clause", With_Clause);
3665 Error_Msg_N
3666 ("\child unit has visible homograph" &
3667 " ('R'M 8.3(26), 10.1.1(19))",
3668 With_Clause);
3669 exit;
3671 elsif Is_Generic_Instance (P2)
3672 and then Nkind (Decl2) = N_Package_Declaration
3673 and then Generic_Parent (Specification (Decl2)) = P
3674 then
3675 -- With_clause for child unit of instance appears before
3676 -- in the context. We want to place the error message on
3677 -- it, not on the generic child unit itself.
3679 declare
3680 Prev_Clause : Node_Id;
3682 begin
3683 Prev_Clause := First (List_Containing (With_Clause));
3684 while Entity (Name (Prev_Clause)) /= U2 loop
3685 Next (Prev_Clause);
3686 end loop;
3688 pragma Assert (Present (Prev_Clause));
3689 Error_Msg_N ("illegal with_clause", Prev_Clause);
3690 Error_Msg_N
3691 ("\child unit has visible homograph" &
3692 " ('R'M 8.3(26), 10.1.1(19))",
3693 Prev_Clause);
3694 exit;
3695 end;
3696 end if;
3697 end if;
3699 U2 := Homonym (U2);
3700 end loop;
3701 end;
3702 end if;
3703 end Install_Withed_Unit;
3705 -------------------
3706 -- Is_Child_Spec --
3707 -------------------
3709 function Is_Child_Spec (Lib_Unit : Node_Id) return Boolean is
3710 K : constant Node_Kind := Nkind (Lib_Unit);
3712 begin
3713 return (K in N_Generic_Declaration or else
3714 K in N_Generic_Instantiation or else
3715 K in N_Generic_Renaming_Declaration or else
3716 K = N_Package_Declaration or else
3717 K = N_Package_Renaming_Declaration or else
3718 K = N_Subprogram_Declaration or else
3719 K = N_Subprogram_Renaming_Declaration)
3720 and then Present (Parent_Spec (Lib_Unit));
3721 end Is_Child_Spec;
3723 -----------------------
3724 -- Load_Needed_Body --
3725 -----------------------
3727 -- N is a generic unit named in a with clause, or else it is
3728 -- a unit that contains a generic unit or an inlined function.
3729 -- In order to perform an instantiation, the body of the unit
3730 -- must be present. If the unit itself is generic, we assume
3731 -- that an instantiation follows, and load and analyze the body
3732 -- unconditionally. This forces analysis of the spec as well.
3734 -- If the unit is not generic, but contains a generic unit, it
3735 -- is loaded on demand, at the point of instantiation (see ch12).
3737 procedure Load_Needed_Body (N : Node_Id; OK : out Boolean) is
3738 Body_Name : Unit_Name_Type;
3739 Unum : Unit_Number_Type;
3741 Save_Style_Check : constant Boolean := Opt.Style_Check;
3742 -- The loading and analysis is done with style checks off
3744 begin
3745 if not GNAT_Mode then
3746 Style_Check := False;
3747 end if;
3749 Body_Name := Get_Body_Name (Get_Unit_Name (Unit (N)));
3750 Unum :=
3751 Load_Unit
3752 (Load_Name => Body_Name,
3753 Required => False,
3754 Subunit => False,
3755 Error_Node => N,
3756 Renamings => True);
3758 if Unum = No_Unit then
3759 OK := False;
3761 else
3762 Compiler_State := Analyzing; -- reset after load
3764 if not Fatal_Error (Unum) or else Try_Semantics then
3765 if Debug_Flag_L then
3766 Write_Str ("*** Loaded generic body");
3767 Write_Eol;
3768 end if;
3770 Semantics (Cunit (Unum));
3771 end if;
3773 OK := True;
3774 end if;
3776 Style_Check := Save_Style_Check;
3777 end Load_Needed_Body;
3779 -------------------------
3780 -- Build_Limited_Views --
3781 -------------------------
3783 procedure Build_Limited_Views (N : Node_Id) is
3784 Unum : constant Unit_Number_Type := Get_Source_Unit (Library_Unit (N));
3785 P : constant Entity_Id := Cunit_Entity (Unum);
3787 Spec : Node_Id; -- To denote a package specification
3788 Lim_Typ : Entity_Id; -- To denote shadow entities
3789 Comp_Typ : Entity_Id; -- To denote real entities
3791 Lim_Header : Entity_Id; -- Package entity
3792 Last_Lim_E : Entity_Id := Empty; -- Last limited entity built
3793 Last_Pub_Lim_E : Entity_Id; -- To set the first private entity
3795 procedure Decorate_Incomplete_Type
3796 (E : Entity_Id;
3797 Scop : Entity_Id);
3798 -- Add attributes of an incomplete type to a shadow entity. The same
3799 -- attributes are placed on the real entity, so that gigi receives
3800 -- a consistent view.
3802 procedure Decorate_Package_Specification (P : Entity_Id);
3803 -- Add attributes of a package entity to the entity in a package
3804 -- declaration
3806 procedure Decorate_Tagged_Type
3807 (Loc : Source_Ptr;
3808 T : Entity_Id;
3809 Scop : Entity_Id);
3810 -- Set basic attributes of tagged type T, including its class_wide type.
3811 -- The parameters Loc, Scope are used to decorate the class_wide type.
3813 procedure Build_Chain
3814 (Scope : Entity_Id;
3815 First_Decl : Node_Id);
3816 -- Construct list of shadow entities and attach it to entity of
3817 -- package that is mentioned in a limited_with clause.
3819 function New_Internal_Shadow_Entity
3820 (Kind : Entity_Kind;
3821 Sloc_Value : Source_Ptr;
3822 Id_Char : Character) return Entity_Id;
3823 -- Build a new internal entity and append it to the list of shadow
3824 -- entities available through the limited-header
3826 ------------------------------
3827 -- Decorate_Incomplete_Type --
3828 ------------------------------
3830 procedure Decorate_Incomplete_Type
3831 (E : Entity_Id;
3832 Scop : Entity_Id)
3834 begin
3835 Set_Ekind (E, E_Incomplete_Type);
3836 Set_Scope (E, Scop);
3837 Set_Etype (E, E);
3838 Set_Is_First_Subtype (E, True);
3839 Set_Stored_Constraint (E, No_Elist);
3840 Set_Full_View (E, Empty);
3841 Init_Size_Align (E);
3842 end Decorate_Incomplete_Type;
3844 --------------------------
3845 -- Decorate_Tagged_Type --
3846 --------------------------
3848 procedure Decorate_Tagged_Type
3849 (Loc : Source_Ptr;
3850 T : Entity_Id;
3851 Scop : Entity_Id)
3853 CW : Entity_Id;
3855 begin
3856 Decorate_Incomplete_Type (T, Scop);
3857 Set_Is_Tagged_Type (T);
3859 -- Build corresponding class_wide type, if not previously done
3861 if No (Class_Wide_Type (T)) then
3862 CW := Make_Defining_Identifier (Loc, New_Internal_Name ('S'));
3864 Set_Ekind (CW, E_Class_Wide_Type);
3865 Set_Etype (CW, T);
3866 Set_Scope (CW, Scop);
3867 Set_Is_Tagged_Type (CW);
3868 Set_Is_First_Subtype (CW, True);
3869 Init_Size_Align (CW);
3870 Set_Has_Unknown_Discriminants (CW, True);
3871 Set_Class_Wide_Type (CW, CW);
3872 Set_Equivalent_Type (CW, Empty);
3873 Set_From_With_Type (CW, From_With_Type (T));
3875 Set_Class_Wide_Type (T, CW);
3876 end if;
3877 end Decorate_Tagged_Type;
3879 ------------------------------------
3880 -- Decorate_Package_Specification --
3881 ------------------------------------
3883 procedure Decorate_Package_Specification (P : Entity_Id) is
3884 begin
3885 -- Place only the most basic attributes
3887 Set_Ekind (P, E_Package);
3888 Set_Etype (P, Standard_Void_Type);
3889 end Decorate_Package_Specification;
3891 -------------------------
3892 -- New_Internal_Entity --
3893 -------------------------
3895 function New_Internal_Shadow_Entity
3896 (Kind : Entity_Kind;
3897 Sloc_Value : Source_Ptr;
3898 Id_Char : Character) return Entity_Id
3900 E : constant Entity_Id :=
3901 Make_Defining_Identifier (Sloc_Value,
3902 Chars => New_Internal_Name (Id_Char));
3904 begin
3905 Set_Ekind (E, Kind);
3906 Set_Is_Internal (E, True);
3908 if Kind in Type_Kind then
3909 Init_Size_Align (E);
3910 end if;
3912 Append_Entity (E, Lim_Header);
3913 Last_Lim_E := E;
3914 return E;
3915 end New_Internal_Shadow_Entity;
3917 -----------------
3918 -- Build_Chain --
3919 -----------------
3921 procedure Build_Chain
3922 (Scope : Entity_Id;
3923 First_Decl : Node_Id)
3925 Analyzed_Unit : constant Boolean := Analyzed (Cunit (Unum));
3926 Is_Tagged : Boolean;
3927 Decl : Node_Id;
3929 begin
3930 Decl := First_Decl;
3932 while Present (Decl) loop
3934 -- For each library_package_declaration in the environment, there
3935 -- is an implicit declaration of a *limited view* of that library
3936 -- package. The limited view of a package contains:
3938 -- * For each nested package_declaration, a declaration of the
3939 -- limited view of that package, with the same defining-
3940 -- program-unit name.
3942 -- * For each type_declaration in the visible part, an incomplete
3943 -- type-declaration with the same defining_identifier, whose
3944 -- completion is the type_declaration. If the type_declaration
3945 -- is tagged, then the incomplete_type_declaration is tagged
3946 -- incomplete.
3948 if Nkind (Decl) = N_Full_Type_Declaration then
3949 Is_Tagged :=
3950 Nkind (Type_Definition (Decl)) = N_Record_Definition
3951 and then Tagged_Present (Type_Definition (Decl));
3953 Comp_Typ := Defining_Identifier (Decl);
3955 if not Analyzed_Unit then
3956 if Is_Tagged then
3957 Decorate_Tagged_Type (Sloc (Decl), Comp_Typ, Scope);
3958 else
3959 Decorate_Incomplete_Type (Comp_Typ, Scope);
3960 end if;
3961 end if;
3963 -- Create shadow entity for type
3965 Lim_Typ := New_Internal_Shadow_Entity
3966 (Kind => Ekind (Comp_Typ),
3967 Sloc_Value => Sloc (Comp_Typ),
3968 Id_Char => 'Z');
3970 Set_Chars (Lim_Typ, Chars (Comp_Typ));
3971 Set_Parent (Lim_Typ, Parent (Comp_Typ));
3972 Set_From_With_Type (Lim_Typ);
3974 if Is_Tagged then
3975 Decorate_Tagged_Type (Sloc (Decl), Lim_Typ, Scope);
3976 else
3977 Decorate_Incomplete_Type (Lim_Typ, Scope);
3978 end if;
3980 Set_Non_Limited_View (Lim_Typ, Comp_Typ);
3982 elsif Nkind (Decl) = N_Private_Type_Declaration
3983 and then Tagged_Present (Decl)
3984 then
3985 Comp_Typ := Defining_Identifier (Decl);
3987 if not Analyzed_Unit then
3988 Decorate_Tagged_Type (Sloc (Decl), Comp_Typ, Scope);
3989 end if;
3991 Lim_Typ := New_Internal_Shadow_Entity
3992 (Kind => Ekind (Comp_Typ),
3993 Sloc_Value => Sloc (Comp_Typ),
3994 Id_Char => 'Z');
3996 Set_Chars (Lim_Typ, Chars (Comp_Typ));
3997 Set_Parent (Lim_Typ, Parent (Comp_Typ));
3998 Set_From_With_Type (Lim_Typ);
4000 Decorate_Tagged_Type (Sloc (Decl), Lim_Typ, Scope);
4002 Set_Non_Limited_View (Lim_Typ, Comp_Typ);
4004 elsif Nkind (Decl) = N_Package_Declaration then
4006 -- Local package
4008 declare
4009 Spec : constant Node_Id := Specification (Decl);
4011 begin
4012 Comp_Typ := Defining_Unit_Name (Spec);
4014 if not Analyzed (Cunit (Unum)) then
4015 Decorate_Package_Specification (Comp_Typ);
4016 Set_Scope (Comp_Typ, Scope);
4017 end if;
4019 Lim_Typ := New_Internal_Shadow_Entity
4020 (Kind => Ekind (Comp_Typ),
4021 Sloc_Value => Sloc (Comp_Typ),
4022 Id_Char => 'Z');
4024 Decorate_Package_Specification (Lim_Typ);
4025 Set_Scope (Lim_Typ, Scope);
4027 Set_Chars (Lim_Typ, Chars (Comp_Typ));
4028 Set_Parent (Lim_Typ, Parent (Comp_Typ));
4029 Set_From_With_Type (Lim_Typ);
4031 -- Note: The non_limited_view attribute is not used
4032 -- for local packages.
4034 Build_Chain
4035 (Scope => Lim_Typ,
4036 First_Decl => First (Visible_Declarations (Spec)));
4037 end;
4038 end if;
4040 Next (Decl);
4041 end loop;
4042 end Build_Chain;
4044 -- Start of processing for Build_Limited_Views
4046 begin
4047 pragma Assert (Limited_Present (N));
4049 -- A library_item mentioned in a limited_with_clause shall be
4050 -- a package_declaration, not a subprogram_declaration,
4051 -- generic_declaration, generic_instantiation, or
4052 -- package_renaming_declaration
4054 case Nkind (Unit (Library_Unit (N))) is
4056 when N_Package_Declaration =>
4057 null;
4059 when N_Subprogram_Declaration =>
4060 Error_Msg_N ("subprograms not allowed in "
4061 & "limited with_clauses", N);
4062 return;
4064 when N_Generic_Package_Declaration |
4065 N_Generic_Subprogram_Declaration =>
4066 Error_Msg_N ("generics not allowed in "
4067 & "limited with_clauses", N);
4068 return;
4070 when N_Package_Instantiation |
4071 N_Function_Instantiation |
4072 N_Procedure_Instantiation =>
4073 Error_Msg_N ("generic instantiations not allowed in "
4074 & "limited with_clauses", N);
4075 return;
4077 when N_Generic_Package_Renaming_Declaration |
4078 N_Generic_Procedure_Renaming_Declaration |
4079 N_Generic_Function_Renaming_Declaration =>
4080 Error_Msg_N ("generic renamings not allowed in "
4081 & "limited with_clauses", N);
4082 return;
4084 when others =>
4085 raise Program_Error;
4086 end case;
4088 -- Check if the chain is already built
4090 Spec := Specification (Unit (Library_Unit (N)));
4092 if Limited_View_Installed (Spec) then
4093 return;
4094 end if;
4096 Set_Ekind (P, E_Package);
4098 -- Build the header of the limited_view
4100 Lim_Header := Make_Defining_Identifier (Sloc (N),
4101 Chars => New_Internal_Name (Id_Char => 'Z'));
4102 Set_Ekind (Lim_Header, E_Package);
4103 Set_Is_Internal (Lim_Header);
4104 Set_Limited_View (P, Lim_Header);
4106 -- Create the auxiliary chain. All the shadow entities are appended
4107 -- to the list of entities of the limited-view header
4109 Build_Chain
4110 (Scope => P,
4111 First_Decl => First (Visible_Declarations (Spec)));
4113 -- Save the last built shadow entity. It is needed later to set the
4114 -- reference to the first shadow entity in the private part
4116 Last_Pub_Lim_E := Last_Lim_E;
4118 -- Ada 2005 (AI-262): Add the limited view of the private declarations
4119 -- Required to give support to limited-private-with clauses
4121 Build_Chain (Scope => P,
4122 First_Decl => First (Private_Declarations (Spec)));
4124 if Last_Pub_Lim_E /= Empty then
4125 Set_First_Private_Entity (Lim_Header,
4126 Next_Entity (Last_Pub_Lim_E));
4127 else
4128 Set_First_Private_Entity (Lim_Header,
4129 First_Entity (P));
4130 end if;
4132 Set_Limited_View_Installed (Spec);
4133 end Build_Limited_Views;
4135 -------------------------------
4136 -- Check_Body_Needed_For_SAL --
4137 -------------------------------
4139 procedure Check_Body_Needed_For_SAL (Unit_Name : Entity_Id) is
4141 function Entity_Needs_Body (E : Entity_Id) return Boolean;
4142 -- Determine whether use of entity E might require the presence
4143 -- of its body. For a package this requires a recursive traversal
4144 -- of all nested declarations.
4146 ---------------------------
4147 -- Entity_Needed_For_SAL --
4148 ---------------------------
4150 function Entity_Needs_Body (E : Entity_Id) return Boolean is
4151 Ent : Entity_Id;
4153 begin
4154 if Is_Subprogram (E)
4155 and then Has_Pragma_Inline (E)
4156 then
4157 return True;
4159 elsif Ekind (E) = E_Generic_Function
4160 or else Ekind (E) = E_Generic_Procedure
4161 then
4162 return True;
4164 elsif Ekind (E) = E_Generic_Package
4165 and then
4166 Nkind (Unit_Declaration_Node (E)) = N_Generic_Package_Declaration
4167 and then Present (Corresponding_Body (Unit_Declaration_Node (E)))
4168 then
4169 return True;
4171 elsif Ekind (E) = E_Package
4172 and then
4173 Nkind (Unit_Declaration_Node (E)) = N_Package_Declaration
4174 and then Present (Corresponding_Body (Unit_Declaration_Node (E)))
4175 then
4176 Ent := First_Entity (E);
4178 while Present (Ent) loop
4179 if Entity_Needs_Body (Ent) then
4180 return True;
4181 end if;
4183 Next_Entity (Ent);
4184 end loop;
4186 return False;
4188 else
4189 return False;
4190 end if;
4191 end Entity_Needs_Body;
4193 -- Start of processing for Check_Body_Needed_For_SAL
4195 begin
4196 if Ekind (Unit_Name) = E_Generic_Package
4197 and then
4198 Nkind (Unit_Declaration_Node (Unit_Name)) =
4199 N_Generic_Package_Declaration
4200 and then
4201 Present (Corresponding_Body (Unit_Declaration_Node (Unit_Name)))
4202 then
4203 Set_Body_Needed_For_SAL (Unit_Name);
4205 elsif Ekind (Unit_Name) = E_Generic_Procedure
4206 or else Ekind (Unit_Name) = E_Generic_Function
4207 then
4208 Set_Body_Needed_For_SAL (Unit_Name);
4210 elsif Is_Subprogram (Unit_Name)
4211 and then Nkind (Unit_Declaration_Node (Unit_Name)) =
4212 N_Subprogram_Declaration
4213 and then Has_Pragma_Inline (Unit_Name)
4214 then
4215 Set_Body_Needed_For_SAL (Unit_Name);
4217 elsif Ekind (Unit_Name) = E_Subprogram_Body then
4218 Check_Body_Needed_For_SAL
4219 (Corresponding_Spec (Unit_Declaration_Node (Unit_Name)));
4221 elsif Ekind (Unit_Name) = E_Package
4222 and then Entity_Needs_Body (Unit_Name)
4223 then
4224 Set_Body_Needed_For_SAL (Unit_Name);
4226 elsif Ekind (Unit_Name) = E_Package_Body
4227 and then Nkind (Unit_Declaration_Node (Unit_Name)) = N_Package_Body
4228 then
4229 Check_Body_Needed_For_SAL
4230 (Corresponding_Spec (Unit_Declaration_Node (Unit_Name)));
4231 end if;
4232 end Check_Body_Needed_For_SAL;
4234 --------------------
4235 -- Remove_Context --
4236 --------------------
4238 procedure Remove_Context (N : Node_Id) is
4239 Lib_Unit : constant Node_Id := Unit (N);
4241 begin
4242 -- If this is a child unit, first remove the parent units
4244 if Is_Child_Spec (Lib_Unit) then
4245 Remove_Parents (Lib_Unit);
4246 end if;
4248 Remove_Context_Clauses (N);
4249 end Remove_Context;
4251 ----------------------------
4252 -- Remove_Context_Clauses --
4253 ----------------------------
4255 procedure Remove_Context_Clauses (N : Node_Id) is
4256 Item : Node_Id;
4257 Unit_Name : Entity_Id;
4259 begin
4260 -- Ada 2005 (AI-50217): We remove the context clauses in two phases:
4261 -- limited-views first and regular-views later (to maintain the
4262 -- stack model).
4264 -- First Phase: Remove limited_with context clauses
4266 Item := First (Context_Items (N));
4267 while Present (Item) loop
4269 -- We are interested only in with clauses which got installed
4270 -- on entry.
4272 if Nkind (Item) = N_With_Clause
4273 and then Limited_Present (Item)
4274 and then Limited_View_Installed (Item)
4275 then
4276 Remove_Limited_With_Clause (Item);
4277 end if;
4279 Next (Item);
4280 end loop;
4282 -- Second Phase: Loop through context items and undo regular
4283 -- with_clauses and use_clauses.
4285 Item := First (Context_Items (N));
4286 while Present (Item) loop
4288 -- We are interested only in with clauses which got installed
4289 -- on entry, as indicated by their Context_Installed flag set
4291 if Nkind (Item) = N_With_Clause
4292 and then Limited_Present (Item)
4293 and then Limited_View_Installed (Item)
4294 then
4295 null;
4297 elsif Nkind (Item) = N_With_Clause
4298 and then Context_Installed (Item)
4299 then
4300 -- Remove items from one with'ed unit
4302 Unit_Name := Entity (Name (Item));
4303 Remove_Unit_From_Visibility (Unit_Name);
4304 Set_Context_Installed (Item, False);
4306 elsif Nkind (Item) = N_Use_Package_Clause then
4307 End_Use_Package (Item);
4309 elsif Nkind (Item) = N_Use_Type_Clause then
4310 End_Use_Type (Item);
4312 elsif Nkind (Item) = N_With_Type_Clause then
4313 Remove_With_Type_Clause (Name (Item));
4314 end if;
4316 Next (Item);
4317 end loop;
4318 end Remove_Context_Clauses;
4320 --------------------------------
4321 -- Remove_Limited_With_Clause --
4322 --------------------------------
4324 procedure Remove_Limited_With_Clause (N : Node_Id) is
4325 P_Unit : constant Entity_Id := Unit (Library_Unit (N));
4326 P : Entity_Id := Defining_Unit_Name (Specification (P_Unit));
4327 Lim_Typ : Entity_Id;
4329 begin
4330 if Nkind (P) = N_Defining_Program_Unit_Name then
4332 -- Retrieve entity of Child package
4334 P := Defining_Identifier (P);
4335 end if;
4337 if Debug_Flag_I then
4338 Write_Str ("remove limited view of ");
4339 Write_Name (Chars (P));
4340 Write_Str (" from visibility");
4341 Write_Eol;
4342 end if;
4344 -- Remove all shadow entities from visibility. The first element of the
4345 -- limited view is a header (an E_Package entity) that is used to
4346 -- reference the first shadow entity in the private part of the package
4348 Lim_Typ := First_Entity (Limited_View (P));
4350 while Present (Lim_Typ) loop
4351 Unchain (Lim_Typ);
4352 Next_Entity (Lim_Typ);
4353 end loop;
4355 -- Indicate that the limited view of the package is not installed
4357 Set_From_With_Type (P, False);
4358 Set_Limited_View_Installed (N, False);
4360 -- If the exporting package has previously been analyzed, it
4361 -- has appeared in the closure already and should be left alone.
4362 -- Otherwise, remove package itself from visibility.
4364 if not Analyzed (P_Unit) then
4365 Unchain (P);
4366 Set_First_Entity (P, Empty);
4367 Set_Last_Entity (P, Empty);
4368 Set_Ekind (P, E_Void);
4369 Set_Scope (P, Empty);
4370 Set_Is_Immediately_Visible (P, False);
4372 else
4374 -- Reinstall visible entities (entities removed from visibility in
4375 -- Install_Limited_Withed to install the shadow entities).
4377 declare
4378 Ent : Entity_Id;
4380 begin
4381 Ent := First_Entity (P);
4382 while Present (Ent) and then Ent /= First_Private_Entity (P) loop
4384 -- Shadow entities have not been added to the list of
4385 -- entities associated to the package spec. Therefore we
4386 -- just have to re-chain all its visible entities.
4388 if not Is_Class_Wide_Type (Ent) then
4390 Set_Homonym (Ent, Current_Entity (Ent));
4391 Set_Current_Entity (Ent);
4393 if Debug_Flag_I then
4394 Write_Str (" (homonym) chain ");
4395 Write_Name (Chars (Ent));
4396 Write_Eol;
4397 end if;
4398 end if;
4400 Next_Entity (Ent);
4401 end loop;
4402 end;
4403 end if;
4404 end Remove_Limited_With_Clause;
4406 --------------------
4407 -- Remove_Parents --
4408 --------------------
4410 procedure Remove_Parents (Lib_Unit : Node_Id) is
4411 P : Node_Id;
4412 P_Name : Entity_Id;
4413 P_Spec : Node_Id := Empty;
4414 E : Entity_Id;
4415 Vis : constant Boolean :=
4416 Scope_Stack.Table (Scope_Stack.Last).Previous_Visibility;
4418 begin
4419 if Is_Child_Spec (Lib_Unit) then
4420 P_Spec := Parent_Spec (Lib_Unit);
4422 elsif Nkind (Lib_Unit) = N_Package_Body
4423 and then Nkind (Original_Node (Lib_Unit)) = N_Package_Instantiation
4424 then
4425 P_Spec := Parent_Spec (Original_Node (Lib_Unit));
4426 end if;
4428 if Present (P_Spec) then
4430 P := Unit (P_Spec);
4431 P_Name := Get_Parent_Entity (P);
4432 Remove_Context_Clauses (P_Spec);
4433 End_Package_Scope (P_Name);
4434 Set_Is_Immediately_Visible (P_Name, Vis);
4436 -- Remove from visibility the siblings as well, which are directly
4437 -- visible while the parent is in scope.
4439 E := First_Entity (P_Name);
4441 while Present (E) loop
4443 if Is_Child_Unit (E) then
4444 Set_Is_Immediately_Visible (E, False);
4445 end if;
4447 Next_Entity (E);
4448 end loop;
4450 Set_In_Package_Body (P_Name, False);
4452 -- This is the recursive call to remove the context of any
4453 -- higher level parent. This recursion ensures that all parents
4454 -- are removed in the reverse order of their installation.
4456 Remove_Parents (P);
4457 end if;
4458 end Remove_Parents;
4460 -----------------------------
4461 -- Remove_With_Type_Clause --
4462 -----------------------------
4464 procedure Remove_With_Type_Clause (Name : Node_Id) is
4465 Typ : Entity_Id;
4466 P : Entity_Id;
4468 procedure Unchain (E : Entity_Id);
4469 -- Remove entity from visibility list
4471 -------------
4472 -- Unchain --
4473 -------------
4475 procedure Unchain (E : Entity_Id) is
4476 Prev : Entity_Id;
4478 begin
4479 Prev := Current_Entity (E);
4481 -- Package entity may appear is several with_type_clauses, and
4482 -- may have been removed already.
4484 if No (Prev) then
4485 return;
4487 elsif Prev = E then
4488 Set_Name_Entity_Id (Chars (E), Homonym (E));
4490 else
4491 while Present (Prev)
4492 and then Homonym (Prev) /= E
4493 loop
4494 Prev := Homonym (Prev);
4495 end loop;
4497 if Present (Prev) then
4498 Set_Homonym (Prev, Homonym (E));
4499 end if;
4500 end if;
4501 end Unchain;
4503 -- Start of processing for Remove_With_Type_Clause
4505 begin
4506 if Nkind (Name) = N_Selected_Component then
4507 Typ := Entity (Selector_Name (Name));
4509 -- If no Typ, then error in declaration, ignore
4511 if No (Typ) then
4512 return;
4513 end if;
4514 else
4515 return;
4516 end if;
4518 P := Scope (Typ);
4520 -- If the exporting package has been analyzed, it has appeared in the
4521 -- context already and should be left alone. Otherwise, remove from
4522 -- visibility.
4524 if not Analyzed (Unit_Declaration_Node (P)) then
4525 Unchain (P);
4526 Unchain (Typ);
4527 Set_Is_Frozen (Typ, False);
4528 end if;
4530 if Ekind (Typ) = E_Record_Type then
4531 Set_From_With_Type (Class_Wide_Type (Typ), False);
4532 Set_From_With_Type (Typ, False);
4533 end if;
4535 Set_From_With_Type (P, False);
4537 -- If P is a child unit, remove parents as well
4539 P := Scope (P);
4541 while Present (P)
4542 and then P /= Standard_Standard
4543 loop
4544 Set_From_With_Type (P, False);
4546 if not Analyzed (Unit_Declaration_Node (P)) then
4547 Unchain (P);
4548 end if;
4550 P := Scope (P);
4551 end loop;
4553 -- The back-end needs to know that an access type is imported, so it
4554 -- does not need elaboration and can appear in a mutually recursive
4555 -- record definition, so the imported flag on an access type is
4556 -- preserved.
4558 end Remove_With_Type_Clause;
4560 ---------------------------------
4561 -- Remove_Unit_From_Visibility --
4562 ---------------------------------
4564 procedure Remove_Unit_From_Visibility (Unit_Name : Entity_Id) is
4565 P : constant Entity_Id := Scope (Unit_Name);
4567 begin
4569 if Debug_Flag_I then
4570 Write_Str ("remove unit ");
4571 Write_Name (Chars (Unit_Name));
4572 Write_Str (" from visibility");
4573 Write_Eol;
4574 end if;
4576 if P /= Standard_Standard then
4577 Set_Is_Visible_Child_Unit (Unit_Name, False);
4578 end if;
4580 Set_Is_Potentially_Use_Visible (Unit_Name, False);
4581 Set_Is_Immediately_Visible (Unit_Name, False);
4583 end Remove_Unit_From_Visibility;
4585 -------------
4586 -- Unchain --
4587 -------------
4589 procedure Unchain (E : Entity_Id) is
4590 Prev : Entity_Id;
4592 begin
4593 Prev := Current_Entity (E);
4595 if No (Prev) then
4596 return;
4598 elsif Prev = E then
4599 Set_Name_Entity_Id (Chars (E), Homonym (E));
4601 else
4602 while Present (Prev)
4603 and then Homonym (Prev) /= E
4604 loop
4605 Prev := Homonym (Prev);
4606 end loop;
4608 if Present (Prev) then
4609 Set_Homonym (Prev, Homonym (E));
4610 end if;
4611 end if;
4613 if Debug_Flag_I then
4614 Write_Str (" (homonym) unchain ");
4615 Write_Name (Chars (E));
4616 Write_Eol;
4617 end if;
4619 end Unchain;
4620 end Sem_Ch10;