PR sanitizer/80403
[official-gcc.git] / gcc / ada / exp_dbug.adb
bloba2ddfc369d42706da2c3f87bb777cefbc983554e
1 ------------------------------------------------------------------------------
2 -- --
3 -- GNAT COMPILER COMPONENTS --
4 -- --
5 -- E X P _ D B U G --
6 -- --
7 -- B o d y --
8 -- --
9 -- Copyright (C) 1996-2016, 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 3, or (at your option) any later ver- --
14 -- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
15 -- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
16 -- or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License --
17 -- for more details. You should have received a copy of the GNU General --
18 -- Public License distributed with GNAT; see file COPYING3. If not, go to --
19 -- http://www.gnu.org/licenses for a complete copy of the license. --
20 -- --
21 -- GNAT was originally developed by the GNAT team at New York University. --
22 -- Extensive contributions were provided by Ada Core Technologies Inc. --
23 -- --
24 ------------------------------------------------------------------------------
26 with Alloc; use Alloc;
27 with Atree; use Atree;
28 with Debug; use Debug;
29 with Einfo; use Einfo;
30 with Nlists; use Nlists;
31 with Nmake; use Nmake;
32 with Opt; use Opt;
33 with Output; use Output;
34 with Sem_Aux; use Sem_Aux;
35 with Sem_Eval; use Sem_Eval;
36 with Sem_Util; use Sem_Util;
37 with Sinfo; use Sinfo;
38 with Stand; use Stand;
39 with Stringt; use Stringt;
40 with Table;
41 with Tbuild; use Tbuild;
42 with Urealp; use Urealp;
44 package body Exp_Dbug is
46 -- The following table is used to queue up the entities passed as
47 -- arguments to Qualify_Entity_Names for later processing when
48 -- Qualify_All_Entity_Names is called.
50 package Name_Qualify_Units is new Table.Table (
51 Table_Component_Type => Node_Id,
52 Table_Index_Type => Nat,
53 Table_Low_Bound => 1,
54 Table_Initial => Alloc.Name_Qualify_Units_Initial,
55 Table_Increment => Alloc.Name_Qualify_Units_Increment,
56 Table_Name => "Name_Qualify_Units");
58 --------------------------------
59 -- Use of Qualification Flags --
60 --------------------------------
62 -- There are two flags used to keep track of qualification of entities
64 -- Has_Fully_Qualified_Name
65 -- Has_Qualified_Name
67 -- The difference between these is as follows. Has_Qualified_Name is
68 -- set to indicate that the name has been qualified as required by the
69 -- spec of this package. As described there, this may involve the full
70 -- qualification for the name, but for some entities, notably procedure
71 -- local variables, this full qualification is not required.
73 -- The flag Has_Fully_Qualified_Name is set if indeed the name has been
74 -- fully qualified in the Ada sense. If Has_Fully_Qualified_Name is set,
75 -- then Has_Qualified_Name is also set, but the other way round is not
76 -- the case.
78 -- Consider the following example:
80 -- with ...
81 -- procedure X is
82 -- B : Ddd.Ttt;
83 -- procedure Y is ..
85 -- Here B is a procedure local variable, so it does not need fully
86 -- qualification. The flag Has_Qualified_Name will be set on the
87 -- first attempt to qualify B, to indicate that the job is done
88 -- and need not be redone.
90 -- But Y is qualified as x__y, since procedures are always fully
91 -- qualified, so the first time that an attempt is made to qualify
92 -- the name y, it will be replaced by x__y, and both flags are set.
94 -- Why the two flags? Well there are cases where we derive type names
95 -- from object names. As noted in the spec, type names are always
96 -- fully qualified. Suppose for example that the backend has to build
97 -- a padded type for variable B. then it will construct the PAD name
98 -- from B, but it requires full qualification, so the fully qualified
99 -- type name will be x__b___PAD. The two flags allow the circuit for
100 -- building this name to realize efficiently that b needs further
101 -- qualification.
103 --------------------
104 -- Homonym_Suffix --
105 --------------------
107 -- The string defined here (and its associated length) is used to gather
108 -- the homonym string that will be appended to Name_Buffer when the name
109 -- is complete. Strip_Suffixes appends to this string as does
110 -- Append_Homonym_Number, and Output_Homonym_Numbers_Suffix appends the
111 -- string to the end of Name_Buffer.
113 Homonym_Numbers : String (1 .. 256);
114 Homonym_Len : Natural := 0;
116 ----------------------
117 -- Local Procedures --
118 ----------------------
120 procedure Add_Uint_To_Buffer (U : Uint);
121 -- Add image of universal integer to Name_Buffer, updating Name_Len
123 procedure Add_Real_To_Buffer (U : Ureal);
124 -- Add nnn_ddd to Name_Buffer, where nnn and ddd are integer values of
125 -- the normalized numerator and denominator of the given real value.
127 procedure Append_Homonym_Number (E : Entity_Id);
128 -- If the entity E has homonyms in the same scope, then make an entry
129 -- in the Homonym_Numbers array, bumping Homonym_Count accordingly.
131 function Bounds_Match_Size (E : Entity_Id) return Boolean;
132 -- Determine whether the bounds of E match the size of the type. This is
133 -- used to determine whether encoding is required for a discrete type.
135 function Is_Handled_Scale_Factor (U : Ureal) return Boolean;
136 -- The argument U is the Small_Value of a fixed-point type. This function
137 -- determines whether the back-end can handle this scale factor. When it
138 -- cannot, we have to output a GNAT encoding for the corresponding type.
140 procedure Output_Homonym_Numbers_Suffix;
141 -- If homonym numbers are stored, then output them into Name_Buffer
143 procedure Prepend_String_To_Buffer (S : String);
144 -- Prepend given string to the contents of the string buffer, updating
145 -- the value in Name_Len (i.e. string is added at start of buffer).
147 procedure Prepend_Uint_To_Buffer (U : Uint);
148 -- Prepend image of universal integer to Name_Buffer, updating Name_Len
150 procedure Qualify_Entity_Name (Ent : Entity_Id);
151 -- If not already done, replaces the Chars field of the given entity
152 -- with the appropriate fully qualified name.
154 procedure Reset_Buffers;
155 -- Reset the contents of Name_Buffer and Homonym_Numbers by setting their
156 -- respective lengths to zero.
158 procedure Strip_Suffixes (BNPE_Suffix_Found : in out Boolean);
159 -- Given an qualified entity name in Name_Buffer, remove any plain X or
160 -- X{nb} qualification suffix. The contents of Name_Buffer is not changed
161 -- but Name_Len may be adjusted on return to remove the suffix. If a
162 -- BNPE suffix is found and stripped, then BNPE_Suffix_Found is set to
163 -- True. If no suffix is found, then BNPE_Suffix_Found is not modified.
164 -- This routine also searches for a homonym suffix, and if one is found
165 -- it is also stripped, and the entries are added to the global homonym
166 -- list (Homonym_Numbers) so that they can later be put back.
168 ------------------------
169 -- Add_Real_To_Buffer --
170 ------------------------
172 procedure Add_Real_To_Buffer (U : Ureal) is
173 begin
174 Add_Uint_To_Buffer (Norm_Num (U));
175 Add_Str_To_Name_Buffer ("_");
176 Add_Uint_To_Buffer (Norm_Den (U));
177 end Add_Real_To_Buffer;
179 ------------------------
180 -- Add_Uint_To_Buffer --
181 ------------------------
183 procedure Add_Uint_To_Buffer (U : Uint) is
184 begin
185 if U < 0 then
186 Add_Uint_To_Buffer (-U);
187 Add_Char_To_Name_Buffer ('m');
188 else
189 UI_Image (U, Decimal);
190 Add_Str_To_Name_Buffer (UI_Image_Buffer (1 .. UI_Image_Length));
191 end if;
192 end Add_Uint_To_Buffer;
194 ---------------------------
195 -- Append_Homonym_Number --
196 ---------------------------
198 procedure Append_Homonym_Number (E : Entity_Id) is
200 procedure Add_Nat_To_H (Nr : Nat);
201 -- Little procedure to append Nr to Homonym_Numbers
203 ------------------
204 -- Add_Nat_To_H --
205 ------------------
207 procedure Add_Nat_To_H (Nr : Nat) is
208 begin
209 if Nr >= 10 then
210 Add_Nat_To_H (Nr / 10);
211 end if;
213 Homonym_Len := Homonym_Len + 1;
214 Homonym_Numbers (Homonym_Len) :=
215 Character'Val (Nr mod 10 + Character'Pos ('0'));
216 end Add_Nat_To_H;
218 -- Start of processing for Append_Homonym_Number
220 begin
221 if Has_Homonym (E) then
222 declare
223 H : Entity_Id := Homonym (E);
224 Nr : Nat := 1;
226 begin
227 while Present (H) loop
228 if Scope (H) = Scope (E) then
229 Nr := Nr + 1;
230 end if;
232 H := Homonym (H);
233 end loop;
235 if Homonym_Len > 0 then
236 Homonym_Len := Homonym_Len + 1;
237 Homonym_Numbers (Homonym_Len) := '_';
238 end if;
240 Add_Nat_To_H (Nr);
241 end;
242 end if;
243 end Append_Homonym_Number;
245 -----------------------
246 -- Bounds_Match_Size --
247 -----------------------
249 function Bounds_Match_Size (E : Entity_Id) return Boolean is
250 Siz : Uint;
252 begin
253 if not Is_OK_Static_Subtype (E) then
254 return False;
256 elsif Is_Integer_Type (E)
257 and then Subtypes_Statically_Match (E, Base_Type (E))
258 then
259 return True;
261 -- Here we check if the static bounds match the natural size, which is
262 -- the size passed through with the debugging information. This is the
263 -- Esize rounded up to 8, 16, 32 or 64 as appropriate.
265 else
266 declare
267 Umark : constant Uintp.Save_Mark := Uintp.Mark;
268 Result : Boolean;
270 begin
271 if Esize (E) <= 8 then
272 Siz := Uint_8;
273 elsif Esize (E) <= 16 then
274 Siz := Uint_16;
275 elsif Esize (E) <= 32 then
276 Siz := Uint_32;
277 else
278 Siz := Uint_64;
279 end if;
281 if Is_Modular_Integer_Type (E) or else Is_Enumeration_Type (E) then
282 Result :=
283 Expr_Rep_Value (Type_Low_Bound (E)) = 0
284 and then
285 2 ** Siz - Expr_Rep_Value (Type_High_Bound (E)) = 1;
287 else
288 Result :=
289 Expr_Rep_Value (Type_Low_Bound (E)) + 2 ** (Siz - 1) = 0
290 and then
291 2 ** (Siz - 1) - Expr_Rep_Value (Type_High_Bound (E)) = 1;
292 end if;
294 Release (Umark);
295 return Result;
296 end;
297 end if;
298 end Bounds_Match_Size;
300 --------------------------------
301 -- Debug_Renaming_Declaration --
302 --------------------------------
304 function Debug_Renaming_Declaration (N : Node_Id) return Node_Id is
305 Loc : constant Source_Ptr := Sloc (N);
306 Ent : constant Node_Id := Defining_Entity (N);
307 Nam : constant Node_Id := Name (N);
308 Ren : Node_Id;
309 Typ : Entity_Id;
310 Obj : Entity_Id;
311 Res : Node_Id;
313 Enable : Boolean := Nkind (N) = N_Package_Renaming_Declaration;
314 -- By default, we do not generate an encoding for renaming. This is
315 -- however done (in which case this is set to True) in a few cases:
316 -- - when a package is renamed,
317 -- - when the renaming involves a packed array,
318 -- - when the renaming involves a packed record.
320 procedure Enable_If_Packed_Array (N : Node_Id);
321 -- Enable encoding generation if N is a packed array
323 function Output_Subscript (N : Node_Id; S : String) return Boolean;
324 -- Outputs a single subscript value as ?nnn (subscript is compile time
325 -- known value with value nnn) or as ?e (subscript is local constant
326 -- with name e), where S supplies the proper string to use for ?.
327 -- Returns False if the subscript is not of an appropriate type to
328 -- output in one of these two forms. The result is prepended to the
329 -- name stored in Name_Buffer.
331 ----------------------------
332 -- Enable_If_Packed_Array --
333 ----------------------------
335 procedure Enable_If_Packed_Array (N : Node_Id) is
336 T : constant Entity_Id := Underlying_Type (Etype (N));
338 begin
339 Enable :=
340 Enable or else (Ekind (T) in Array_Kind
341 and then Present (Packed_Array_Impl_Type (T)));
342 end Enable_If_Packed_Array;
344 ----------------------
345 -- Output_Subscript --
346 ----------------------
348 function Output_Subscript (N : Node_Id; S : String) return Boolean is
349 begin
350 if Compile_Time_Known_Value (N) then
351 Prepend_Uint_To_Buffer (Expr_Value (N));
353 elsif Nkind (N) = N_Identifier
354 and then Scope (Entity (N)) = Scope (Ent)
355 and then Ekind (Entity (N)) = E_Constant
356 then
357 Prepend_String_To_Buffer (Get_Name_String (Chars (Entity (N))));
359 else
360 return False;
361 end if;
363 Prepend_String_To_Buffer (S);
364 return True;
365 end Output_Subscript;
367 -- Start of processing for Debug_Renaming_Declaration
369 begin
370 if not Comes_From_Source (N)
371 and then not Needs_Debug_Info (Ent)
372 then
373 return Empty;
374 end if;
376 -- Get renamed entity and compute suffix
378 Name_Len := 0;
379 Ren := Nam;
380 loop
381 case Nkind (Ren) is
382 when N_Identifier =>
383 exit;
385 when N_Expanded_Name =>
387 -- The entity field for an N_Expanded_Name is on the expanded
388 -- name node itself, so we are done here too.
390 exit;
392 when N_Selected_Component =>
393 declare
394 First_Bit : constant Uint :=
395 Normalized_First_Bit
396 (Entity (Selector_Name (Ren)));
398 begin
399 Enable :=
400 Enable
401 or else Is_Packed
402 (Underlying_Type (Etype (Prefix (Ren))))
403 or else (First_Bit /= No_Uint
404 and then First_Bit /= Uint_0);
405 end;
407 Prepend_String_To_Buffer
408 (Get_Name_String (Chars (Selector_Name (Ren))));
409 Prepend_String_To_Buffer ("XR");
410 Ren := Prefix (Ren);
412 when N_Indexed_Component =>
413 declare
414 X : Node_Id;
416 begin
417 Enable_If_Packed_Array (Prefix (Ren));
419 X := Last (Expressions (Ren));
420 while Present (X) loop
421 if not Output_Subscript (X, "XS") then
422 Set_Materialize_Entity (Ent);
423 return Empty;
424 end if;
426 Prev (X);
427 end loop;
428 end;
430 Ren := Prefix (Ren);
432 when N_Slice =>
433 Enable_If_Packed_Array (Prefix (Ren));
434 Typ := Etype (First_Index (Etype (Nam)));
436 if not Output_Subscript (Type_High_Bound (Typ), "XS") then
437 Set_Materialize_Entity (Ent);
438 return Empty;
439 end if;
441 if not Output_Subscript (Type_Low_Bound (Typ), "XL") then
442 Set_Materialize_Entity (Ent);
443 return Empty;
444 end if;
446 Ren := Prefix (Ren);
448 when N_Explicit_Dereference =>
449 Prepend_String_To_Buffer ("XA");
450 Ren := Prefix (Ren);
452 -- For now, anything else simply results in no translation
454 when others =>
455 Set_Materialize_Entity (Ent);
456 return Empty;
457 end case;
458 end loop;
460 -- If we found no reason here to emit an encoding, stop now
462 if not Enable then
463 Set_Materialize_Entity (Ent);
464 return Empty;
465 end if;
467 Prepend_String_To_Buffer ("___XE");
469 -- Include the designation of the form of renaming
471 case Nkind (N) is
472 when N_Object_Renaming_Declaration =>
473 Prepend_String_To_Buffer ("___XR");
475 when N_Exception_Renaming_Declaration =>
476 Prepend_String_To_Buffer ("___XRE");
478 when N_Package_Renaming_Declaration =>
479 Prepend_String_To_Buffer ("___XRP");
481 when others =>
482 return Empty;
483 end case;
485 -- Add the name of the renaming entity to the front
487 Prepend_String_To_Buffer (Get_Name_String (Chars (Ent)));
489 -- If it is a child unit create a fully qualified name, to disambiguate
490 -- multiple child units with the same name and different parents.
492 if Nkind (N) = N_Package_Renaming_Declaration
493 and then Is_Child_Unit (Ent)
494 then
495 Prepend_String_To_Buffer ("__");
496 Prepend_String_To_Buffer
497 (Get_Name_String (Chars (Scope (Ent))));
498 end if;
500 -- Create the special object whose name is the debug encoding for the
501 -- renaming declaration.
503 -- For now, the object name contains the suffix encoding for the renamed
504 -- object, but not the name of the leading entity. The object is linked
505 -- the renamed entity using the Debug_Renaming_Link field. Then the
506 -- Qualify_Entity_Name procedure uses this link to create the proper
507 -- fully qualified name.
509 -- The reason we do things this way is that we really need to copy the
510 -- qualification of the renamed entity, and it is really much easier to
511 -- do this after the renamed entity has itself been fully qualified.
513 Obj := Make_Defining_Identifier (Loc, Chars => Name_Enter);
514 Res :=
515 Make_Object_Declaration (Loc,
516 Defining_Identifier => Obj,
517 Object_Definition => New_Occurrence_Of
518 (Standard_Debug_Renaming_Type, Loc));
520 Set_Debug_Renaming_Link (Obj, Entity (Ren));
522 Set_Debug_Info_Needed (Obj);
524 -- The renamed entity may be a temporary, e.g. the result of an
525 -- implicit dereference in an iterator. Indicate that the temporary
526 -- itself requires debug information. If the renamed entity comes
527 -- from source this is a no-op.
529 Set_Debug_Info_Needed (Entity (Ren));
531 -- Mark the object as internal so that it won't be initialized when
532 -- pragma Initialize_Scalars or Normalize_Scalars is in use.
534 Set_Is_Internal (Obj);
536 return Res;
538 -- If we get an exception, just figure it is a case that we cannot
539 -- successfully handle using our current approach, since this is
540 -- only for debugging, no need to take the compilation with us.
542 exception
543 when others =>
544 return Make_Null_Statement (Loc);
545 end Debug_Renaming_Declaration;
547 -----------------------------
548 -- Is_Handled_Scale_Factor --
549 -----------------------------
551 function Is_Handled_Scale_Factor (U : Ureal) return Boolean is
552 begin
553 -- Keep in sync with gigi (see E_*_Fixed_Point_Type handling in
554 -- decl.c:gnat_to_gnu_entity).
556 if UI_Eq (Numerator (U), Uint_1) then
557 if Rbase (U) = 2 or else Rbase (U) = 10 then
558 return True;
559 end if;
560 end if;
562 return
563 (UI_Is_In_Int_Range (Norm_Num (U))
564 and then
565 UI_Is_In_Int_Range (Norm_Den (U)));
566 end Is_Handled_Scale_Factor;
568 ----------------------
569 -- Get_Encoded_Name --
570 ----------------------
572 -- Note: see spec for details on encodings
574 procedure Get_Encoded_Name (E : Entity_Id) is
575 Has_Suffix : Boolean;
577 begin
578 -- If not generating code, there is no need to create encoded names, and
579 -- problems when the back-end is called to annotate types without full
580 -- code generation. See comments in Get_External_Name for additional
581 -- details.
583 -- However we do create encoded names if the back end is active, even
584 -- if Operating_Mode got reset. Otherwise any serious error reported
585 -- by the backend calling Error_Msg changes the Compilation_Mode to
586 -- Check_Semantics, which disables the functionality of this routine,
587 -- causing the generation of spurious additional errors.
589 -- Couldn't we just test Original_Operating_Mode here? ???
591 if Operating_Mode /= Generate_Code and then not Generating_Code then
592 return;
593 end if;
595 Get_Name_String (Chars (E));
597 -- Nothing to do if we do not have a type
599 if not Is_Type (E)
601 -- Or if this is an enumeration base type
603 or else (Is_Enumeration_Type (E) and then Is_Base_Type (E))
605 -- Or if this is a dummy type for a renaming
607 or else (Name_Len >= 3 and then
608 Name_Buffer (Name_Len - 2 .. Name_Len) = "_XR")
610 or else (Name_Len >= 4 and then
611 (Name_Buffer (Name_Len - 3 .. Name_Len) = "_XRE"
612 or else
613 Name_Buffer (Name_Len - 3 .. Name_Len) = "_XRP"))
615 -- For all these cases, just return the name unchanged
617 then
618 Name_Buffer (Name_Len + 1) := ASCII.NUL;
619 return;
620 end if;
622 Has_Suffix := True;
624 -- Fixed-point case: generate GNAT encodings when asked to or when we
625 -- know the back-end will not be able to handle the scale factor.
627 if Is_Fixed_Point_Type (E)
628 and then (GNAT_Encodings /= DWARF_GNAT_Encodings_Minimal
629 or else not Is_Handled_Scale_Factor (Small_Value (E)))
630 then
631 Get_External_Name (E, True, "XF_");
632 Add_Real_To_Buffer (Delta_Value (E));
634 if Small_Value (E) /= Delta_Value (E) then
635 Add_Str_To_Name_Buffer ("_");
636 Add_Real_To_Buffer (Small_Value (E));
637 end if;
639 -- Discrete case where bounds do not match size. Not necessary if we can
640 -- emit standard DWARF.
642 elsif GNAT_Encodings /= DWARF_GNAT_Encodings_Minimal
643 and then Is_Discrete_Type (E)
644 and then not Bounds_Match_Size (E)
645 then
646 declare
647 Lo : constant Node_Id := Type_Low_Bound (E);
648 Hi : constant Node_Id := Type_High_Bound (E);
650 Lo_Con : constant Boolean := Compile_Time_Known_Value (Lo);
651 Hi_Con : constant Boolean := Compile_Time_Known_Value (Hi);
653 Lo_Discr : constant Boolean :=
654 Nkind (Lo) = N_Identifier
655 and then Ekind (Entity (Lo)) = E_Discriminant;
657 Hi_Discr : constant Boolean :=
658 Nkind (Hi) = N_Identifier
659 and then Ekind (Entity (Hi)) = E_Discriminant;
661 Lo_Encode : constant Boolean := Lo_Con or Lo_Discr;
662 Hi_Encode : constant Boolean := Hi_Con or Hi_Discr;
664 Biased : constant Boolean := Has_Biased_Representation (E);
666 begin
667 if Biased then
668 Get_External_Name (E, True, "XB");
669 else
670 Get_External_Name (E, True, "XD");
671 end if;
673 if Lo_Encode or Hi_Encode then
674 if Biased then
675 Add_Str_To_Name_Buffer ("_");
676 else
677 if Lo_Encode then
678 if Hi_Encode then
679 Add_Str_To_Name_Buffer ("LU_");
680 else
681 Add_Str_To_Name_Buffer ("L_");
682 end if;
683 else
684 Add_Str_To_Name_Buffer ("U_");
685 end if;
686 end if;
688 if Lo_Con then
689 Add_Uint_To_Buffer (Expr_Rep_Value (Lo));
690 elsif Lo_Discr then
691 Get_Name_String_And_Append (Chars (Entity (Lo)));
692 end if;
694 if Lo_Encode and Hi_Encode then
695 Add_Str_To_Name_Buffer ("__");
696 end if;
698 if Hi_Con then
699 Add_Uint_To_Buffer (Expr_Rep_Value (Hi));
700 elsif Hi_Discr then
701 Get_Name_String_And_Append (Chars (Entity (Hi)));
702 end if;
703 end if;
704 end;
706 -- For all other cases, the encoded name is the normal type name
708 else
709 Has_Suffix := False;
710 Get_External_Name (E);
711 end if;
713 if Debug_Flag_B and then Has_Suffix then
714 Write_Str ("**** type ");
715 Write_Name (Chars (E));
716 Write_Str (" is encoded as ");
717 Write_Str (Name_Buffer (1 .. Name_Len));
718 Write_Eol;
719 end if;
721 Name_Buffer (Name_Len + 1) := ASCII.NUL;
722 end Get_Encoded_Name;
724 -----------------------
725 -- Get_External_Name --
726 -----------------------
728 procedure Get_External_Name
729 (Entity : Entity_Id;
730 Has_Suffix : Boolean := False;
731 Suffix : String := "")
733 procedure Get_Qualified_Name_And_Append (Entity : Entity_Id);
734 -- Appends fully qualified name of given entity to Name_Buffer
736 -----------------------------------
737 -- Get_Qualified_Name_And_Append --
738 -----------------------------------
740 procedure Get_Qualified_Name_And_Append (Entity : Entity_Id) is
741 begin
742 -- If the entity is a compilation unit, its scope is Standard,
743 -- there is no outer scope, and the no further qualification
744 -- is required.
746 -- If the front end has already computed a fully qualified name,
747 -- then it is also the case that no further qualification is
748 -- required.
750 if Present (Scope (Scope (Entity)))
751 and then not Has_Fully_Qualified_Name (Entity)
752 then
753 Get_Qualified_Name_And_Append (Scope (Entity));
754 Add_Str_To_Name_Buffer ("__");
755 Get_Name_String_And_Append (Chars (Entity));
756 Append_Homonym_Number (Entity);
758 else
759 Get_Name_String_And_Append (Chars (Entity));
760 end if;
761 end Get_Qualified_Name_And_Append;
763 -- Local variables
765 E : Entity_Id := Entity;
767 -- Start of processing for Get_External_Name
769 begin
770 -- If we are not in code generation mode, this procedure may still be
771 -- called from Back_End (more specifically - from gigi for doing type
772 -- representation annotation or some representation-specific checks).
773 -- But in this mode there is no need to mess with external names.
775 -- Furthermore, the call causes difficulties in this case because the
776 -- string representing the homonym number is not correctly reset as a
777 -- part of the call to Output_Homonym_Numbers_Suffix (which is not
778 -- called in gigi).
780 if Operating_Mode /= Generate_Code then
781 return;
782 end if;
784 Reset_Buffers;
786 -- If this is a child unit, we want the child
788 if Nkind (E) = N_Defining_Program_Unit_Name then
789 E := Defining_Identifier (Entity);
790 end if;
792 -- Case of interface name being used
794 if Ekind_In (E, E_Constant,
795 E_Exception,
796 E_Function,
797 E_Procedure,
798 E_Variable)
799 and then Present (Interface_Name (E))
800 and then No (Address_Clause (E))
801 and then not Has_Suffix
802 then
803 Add_String_To_Name_Buffer (Strval (Interface_Name (E)));
805 -- All other cases besides the interface name case
807 else
808 -- If this is a library level subprogram (i.e. a subprogram that is a
809 -- compilation unit other than a subunit), then we prepend _ada_ to
810 -- ensure distinctions required as described in the spec.
812 -- Check explicitly for child units, because those are not flagged
813 -- as Compilation_Units by lib. Should they be ???
815 if Is_Subprogram (E)
816 and then (Is_Compilation_Unit (E) or Is_Child_Unit (E))
817 and then not Has_Suffix
818 then
819 Add_Str_To_Name_Buffer ("_ada_");
820 end if;
822 -- If the entity is a subprogram instance that is not a compilation
823 -- unit, generate the name of the original Ada entity, which is the
824 -- one gdb needs.
826 if Is_Generic_Instance (E)
827 and then Is_Subprogram (E)
828 and then not Is_Compilation_Unit (Scope (E))
829 and then Ekind_In (Scope (E), E_Package, E_Package_Body)
830 and then Present (Related_Instance (Scope (E)))
831 then
832 E := Related_Instance (Scope (E));
833 end if;
835 Get_Qualified_Name_And_Append (E);
836 end if;
838 if Has_Suffix then
839 Add_Str_To_Name_Buffer ("___");
840 Add_Str_To_Name_Buffer (Suffix);
841 end if;
843 Name_Buffer (Name_Len + 1) := ASCII.NUL;
844 end Get_External_Name;
846 --------------------------
847 -- Get_Variant_Encoding --
848 --------------------------
850 procedure Get_Variant_Encoding (V : Node_Id) is
851 Choice : Node_Id;
853 procedure Choice_Val (Typ : Character; Choice : Node_Id);
854 -- Output encoded value for a single choice value. Typ is the key
855 -- character ('S', 'F', or 'T') that precedes the choice value.
857 ----------------
858 -- Choice_Val --
859 ----------------
861 procedure Choice_Val (Typ : Character; Choice : Node_Id) is
862 begin
863 if Nkind (Choice) = N_Integer_Literal then
864 Add_Char_To_Name_Buffer (Typ);
865 Add_Uint_To_Buffer (Intval (Choice));
867 -- Character literal with no entity present (this is the case
868 -- Standard.Character or Standard.Wide_Character as root type)
870 elsif Nkind (Choice) = N_Character_Literal
871 and then No (Entity (Choice))
872 then
873 Add_Char_To_Name_Buffer (Typ);
874 Add_Uint_To_Buffer (Char_Literal_Value (Choice));
876 else
877 declare
878 Ent : constant Entity_Id := Entity (Choice);
880 begin
881 if Ekind (Ent) = E_Enumeration_Literal then
882 Add_Char_To_Name_Buffer (Typ);
883 Add_Uint_To_Buffer (Enumeration_Rep (Ent));
885 else
886 pragma Assert (Ekind (Ent) = E_Constant);
887 Choice_Val (Typ, Constant_Value (Ent));
888 end if;
889 end;
890 end if;
891 end Choice_Val;
893 -- Start of processing for Get_Variant_Encoding
895 begin
896 Name_Len := 0;
898 Choice := First (Discrete_Choices (V));
899 while Present (Choice) loop
900 if Nkind (Choice) = N_Others_Choice then
901 Add_Char_To_Name_Buffer ('O');
903 elsif Nkind (Choice) = N_Range then
904 Choice_Val ('R', Low_Bound (Choice));
905 Choice_Val ('T', High_Bound (Choice));
907 elsif Is_Entity_Name (Choice)
908 and then Is_Type (Entity (Choice))
909 then
910 Choice_Val ('R', Type_Low_Bound (Entity (Choice)));
911 Choice_Val ('T', Type_High_Bound (Entity (Choice)));
913 elsif Nkind (Choice) = N_Subtype_Indication then
914 declare
915 Rang : constant Node_Id :=
916 Range_Expression (Constraint (Choice));
917 begin
918 Choice_Val ('R', Low_Bound (Rang));
919 Choice_Val ('T', High_Bound (Rang));
920 end;
922 else
923 Choice_Val ('S', Choice);
924 end if;
926 Next (Choice);
927 end loop;
929 Name_Buffer (Name_Len + 1) := ASCII.NUL;
931 if Debug_Flag_B then
932 declare
933 VP : constant Node_Id := Parent (V); -- Variant_Part
934 CL : constant Node_Id := Parent (VP); -- Component_List
935 RD : constant Node_Id := Parent (CL); -- Record_Definition
936 FT : constant Node_Id := Parent (RD); -- Full_Type_Declaration
938 begin
939 Write_Str ("**** variant for type ");
940 Write_Name (Chars (Defining_Identifier (FT)));
941 Write_Str (" is encoded as ");
942 Write_Str (Name_Buffer (1 .. Name_Len));
943 Write_Eol;
944 end;
945 end if;
946 end Get_Variant_Encoding;
948 -----------------------------------------
949 -- Build_Subprogram_Instance_Renamings --
950 -----------------------------------------
952 procedure Build_Subprogram_Instance_Renamings
953 (N : Node_Id;
954 Wrapper : Entity_Id)
956 Loc : Source_Ptr;
957 Decl : Node_Id;
958 E : Entity_Id;
960 begin
961 E := First_Entity (Wrapper);
962 while Present (E) loop
963 if Nkind (Parent (E)) = N_Object_Declaration
964 and then Is_Elementary_Type (Etype (E))
965 then
966 Loc := Sloc (Expression (Parent (E)));
967 Decl := Make_Object_Renaming_Declaration (Loc,
968 Defining_Identifier =>
969 Make_Defining_Identifier (Loc, Chars (E)),
970 Subtype_Mark => New_Occurrence_Of (Etype (E), Loc),
971 Name => New_Occurrence_Of (E, Loc));
973 Append (Decl, Declarations (N));
974 Set_Needs_Debug_Info (Defining_Identifier (Decl));
975 end if;
977 Next_Entity (E);
978 end loop;
979 end Build_Subprogram_Instance_Renamings;
981 ------------------------------------
982 -- Get_Secondary_DT_External_Name --
983 ------------------------------------
985 procedure Get_Secondary_DT_External_Name
986 (Typ : Entity_Id;
987 Ancestor_Typ : Entity_Id;
988 Suffix_Index : Int)
990 begin
991 Get_External_Name (Typ);
993 if Ancestor_Typ /= Typ then
994 declare
995 Len : constant Natural := Name_Len;
996 Save_Str : constant String (1 .. Name_Len)
997 := Name_Buffer (1 .. Name_Len);
998 begin
999 Get_External_Name (Ancestor_Typ);
1001 -- Append the extended name of the ancestor to the
1002 -- extended name of Typ
1004 Name_Buffer (Len + 2 .. Len + Name_Len + 1) :=
1005 Name_Buffer (1 .. Name_Len);
1006 Name_Buffer (1 .. Len) := Save_Str;
1007 Name_Buffer (Len + 1) := '_';
1008 Name_Len := Len + Name_Len + 1;
1009 end;
1010 end if;
1012 Add_Nat_To_Name_Buffer (Suffix_Index);
1013 end Get_Secondary_DT_External_Name;
1015 ---------------------------------
1016 -- Make_Packed_Array_Impl_Type_Name --
1017 ---------------------------------
1019 function Make_Packed_Array_Impl_Type_Name
1020 (Typ : Entity_Id;
1021 Csize : Uint)
1022 return Name_Id
1024 begin
1025 Get_Name_String (Chars (Typ));
1026 Add_Str_To_Name_Buffer ("___XP");
1027 Add_Uint_To_Buffer (Csize);
1028 return Name_Find;
1029 end Make_Packed_Array_Impl_Type_Name;
1031 -----------------------------------
1032 -- Output_Homonym_Numbers_Suffix --
1033 -----------------------------------
1035 procedure Output_Homonym_Numbers_Suffix is
1036 J : Natural;
1038 begin
1039 if Homonym_Len > 0 then
1041 -- Check for all 1's, in which case we do not output
1043 J := 1;
1044 loop
1045 exit when Homonym_Numbers (J) /= '1';
1047 -- If we reached end of string we do not output
1049 if J = Homonym_Len then
1050 Homonym_Len := 0;
1051 return;
1052 end if;
1054 exit when Homonym_Numbers (J + 1) /= '_';
1055 J := J + 2;
1056 end loop;
1058 -- If we exit the loop then suffix must be output
1060 Add_Str_To_Name_Buffer ("__");
1061 Add_Str_To_Name_Buffer (Homonym_Numbers (1 .. Homonym_Len));
1062 Homonym_Len := 0;
1063 end if;
1064 end Output_Homonym_Numbers_Suffix;
1066 ------------------------------
1067 -- Prepend_String_To_Buffer --
1068 ------------------------------
1070 procedure Prepend_String_To_Buffer (S : String) is
1071 N : constant Integer := S'Length;
1072 begin
1073 Name_Buffer (1 + N .. Name_Len + N) := Name_Buffer (1 .. Name_Len);
1074 Name_Buffer (1 .. N) := S;
1075 Name_Len := Name_Len + N;
1076 end Prepend_String_To_Buffer;
1078 ----------------------------
1079 -- Prepend_Uint_To_Buffer --
1080 ----------------------------
1082 procedure Prepend_Uint_To_Buffer (U : Uint) is
1083 begin
1084 if U < 0 then
1085 Prepend_String_To_Buffer ("m");
1086 Prepend_Uint_To_Buffer (-U);
1087 else
1088 UI_Image (U, Decimal);
1089 Prepend_String_To_Buffer (UI_Image_Buffer (1 .. UI_Image_Length));
1090 end if;
1091 end Prepend_Uint_To_Buffer;
1093 ------------------------------
1094 -- Qualify_All_Entity_Names --
1095 ------------------------------
1097 procedure Qualify_All_Entity_Names is
1098 E : Entity_Id;
1099 Ent : Entity_Id;
1100 Nod : Node_Id;
1102 begin
1103 for J in Name_Qualify_Units.First .. Name_Qualify_Units.Last loop
1104 Nod := Name_Qualify_Units.Table (J);
1106 -- When a scoping construct is ignored Ghost, it is rewritten as
1107 -- a null statement. Skip such constructs as they no longer carry
1108 -- names.
1110 if Nkind (Nod) = N_Null_Statement then
1111 goto Continue;
1112 end if;
1114 E := Defining_Entity (Nod);
1115 Reset_Buffers;
1116 Qualify_Entity_Name (E);
1118 -- Normally entities in the qualification list are scopes, but in the
1119 -- case of a library-level package renaming there is an associated
1120 -- variable that encodes the debugger name and that variable is
1121 -- entered in the list since it occurs in the Aux_Decls list of the
1122 -- compilation and doesn't have a normal scope.
1124 if Ekind (E) /= E_Variable then
1125 Ent := First_Entity (E);
1126 while Present (Ent) loop
1127 Reset_Buffers;
1128 Qualify_Entity_Name (Ent);
1129 Next_Entity (Ent);
1131 -- There are odd cases where Last_Entity (E) = E. This happens
1132 -- in the case of renaming of packages. This test avoids
1133 -- getting stuck in such cases.
1135 exit when Ent = E;
1136 end loop;
1137 end if;
1139 <<Continue>>
1140 null;
1141 end loop;
1142 end Qualify_All_Entity_Names;
1144 -------------------------
1145 -- Qualify_Entity_Name --
1146 -------------------------
1148 procedure Qualify_Entity_Name (Ent : Entity_Id) is
1150 Full_Qualify_Name : String (1 .. Name_Buffer'Length);
1151 Full_Qualify_Len : Natural := 0;
1152 -- Used to accumulate fully qualified name of subprogram
1154 procedure Fully_Qualify_Name (E : Entity_Id);
1155 -- Used to qualify a subprogram or type name, where full
1156 -- qualification up to Standard is always used. Name is set
1157 -- in Full_Qualify_Name with the length in Full_Qualify_Len.
1158 -- Note that this routine does not prepend the _ada_ string
1159 -- required for library subprograms (this is done in the back end).
1161 function Is_BNPE (S : Entity_Id) return Boolean;
1162 -- Determines if S is a BNPE, i.e. Body-Nested Package Entity, which
1163 -- is defined to be a package which is immediately nested within a
1164 -- package body.
1166 function Qualify_Needed (S : Entity_Id) return Boolean;
1167 -- Given a scope, determines if the scope is to be included in the
1168 -- fully qualified name, True if so, False if not. Blocks and loops
1169 -- are excluded from a qualified name.
1171 procedure Set_BNPE_Suffix (E : Entity_Id);
1172 -- Recursive routine to append the BNPE qualification suffix. Works
1173 -- from right to left with E being the current entity in the list.
1174 -- The result does NOT have the trailing n's and trailing b stripped.
1175 -- The caller must do this required stripping.
1177 procedure Set_Entity_Name (E : Entity_Id);
1178 -- Internal recursive routine that does most of the work. This routine
1179 -- leaves the result sitting in Name_Buffer and Name_Len.
1181 BNPE_Suffix_Needed : Boolean := False;
1182 -- Set true if a body-nested package entity suffix is required
1184 Save_Chars : constant Name_Id := Chars (Ent);
1185 -- Save original name
1187 ------------------------
1188 -- Fully_Qualify_Name --
1189 ------------------------
1191 procedure Fully_Qualify_Name (E : Entity_Id) is
1192 Discard : Boolean := False;
1194 begin
1195 -- Ignore empty entry (can happen in error cases)
1197 if No (E) then
1198 return;
1200 -- If this we are qualifying entities local to a generic instance,
1201 -- use the name of the original instantiation, not that of the
1202 -- anonymous subprogram in the wrapper package, so that gdb doesn't
1203 -- have to know about these.
1205 elsif Is_Generic_Instance (E)
1206 and then Is_Subprogram (E)
1207 and then not Comes_From_Source (E)
1208 and then not Is_Compilation_Unit (Scope (E))
1209 then
1210 Fully_Qualify_Name (Related_Instance (Scope (E)));
1211 return;
1212 end if;
1214 -- If we reached fully qualified name, then just copy it
1216 if Has_Fully_Qualified_Name (E) then
1217 Get_Name_String (Chars (E));
1218 Strip_Suffixes (Discard);
1219 Full_Qualify_Name (1 .. Name_Len) := Name_Buffer (1 .. Name_Len);
1220 Full_Qualify_Len := Name_Len;
1221 Set_Has_Fully_Qualified_Name (Ent);
1223 -- Case of non-fully qualified name
1225 else
1226 if Scope (E) = Standard_Standard then
1227 Set_Has_Fully_Qualified_Name (Ent);
1228 else
1229 Fully_Qualify_Name (Scope (E));
1230 Full_Qualify_Name (Full_Qualify_Len + 1) := '_';
1231 Full_Qualify_Name (Full_Qualify_Len + 2) := '_';
1232 Full_Qualify_Len := Full_Qualify_Len + 2;
1233 end if;
1235 if Has_Qualified_Name (E) then
1236 Get_Unqualified_Name_String (Chars (E));
1237 else
1238 Get_Name_String (Chars (E));
1239 end if;
1241 -- Here we do one step of the qualification
1243 Full_Qualify_Name
1244 (Full_Qualify_Len + 1 .. Full_Qualify_Len + Name_Len) :=
1245 Name_Buffer (1 .. Name_Len);
1246 Full_Qualify_Len := Full_Qualify_Len + Name_Len;
1247 Append_Homonym_Number (E);
1248 end if;
1250 if Is_BNPE (E) then
1251 BNPE_Suffix_Needed := True;
1252 end if;
1253 end Fully_Qualify_Name;
1255 -------------
1256 -- Is_BNPE --
1257 -------------
1259 function Is_BNPE (S : Entity_Id) return Boolean is
1260 begin
1261 return Ekind (S) = E_Package and then Is_Package_Body_Entity (S);
1262 end Is_BNPE;
1264 --------------------
1265 -- Qualify_Needed --
1266 --------------------
1268 function Qualify_Needed (S : Entity_Id) return Boolean is
1269 begin
1270 -- If we got all the way to Standard, then we have certainly
1271 -- fully qualified the name, so set the flag appropriately,
1272 -- and then return False, since we are most certainly done.
1274 if S = Standard_Standard then
1275 Set_Has_Fully_Qualified_Name (Ent, True);
1276 return False;
1278 -- Otherwise figure out if further qualification is required
1280 else
1281 return Is_Subprogram (Ent)
1282 or else Ekind (Ent) = E_Subprogram_Body
1283 or else (Ekind (S) /= E_Block
1284 and then Ekind (S) /= E_Loop
1285 and then not Is_Dynamic_Scope (S));
1286 end if;
1287 end Qualify_Needed;
1289 ---------------------
1290 -- Set_BNPE_Suffix --
1291 ---------------------
1293 procedure Set_BNPE_Suffix (E : Entity_Id) is
1294 S : constant Entity_Id := Scope (E);
1296 begin
1297 if Qualify_Needed (S) then
1298 Set_BNPE_Suffix (S);
1300 if Is_BNPE (E) then
1301 Add_Char_To_Name_Buffer ('b');
1302 else
1303 Add_Char_To_Name_Buffer ('n');
1304 end if;
1306 else
1307 Add_Char_To_Name_Buffer ('X');
1308 end if;
1309 end Set_BNPE_Suffix;
1311 ---------------------
1312 -- Set_Entity_Name --
1313 ---------------------
1315 procedure Set_Entity_Name (E : Entity_Id) is
1316 S : constant Entity_Id := Scope (E);
1318 begin
1319 -- If we reach an already qualified name, just take the encoding
1320 -- except that we strip the package body suffixes, since these
1321 -- will be separately put on later.
1323 if Has_Qualified_Name (E) then
1324 Get_Name_String_And_Append (Chars (E));
1325 Strip_Suffixes (BNPE_Suffix_Needed);
1327 -- If the top level name we are adding is itself fully
1328 -- qualified, then that means that the name that we are
1329 -- preparing for the Fully_Qualify_Name call will also
1330 -- generate a fully qualified name.
1332 if Has_Fully_Qualified_Name (E) then
1333 Set_Has_Fully_Qualified_Name (Ent);
1334 end if;
1336 -- Case where upper level name is not encoded yet
1338 else
1339 -- Recurse if further qualification required
1341 if Qualify_Needed (S) then
1342 Set_Entity_Name (S);
1343 Add_Str_To_Name_Buffer ("__");
1344 end if;
1346 -- Otherwise get name and note if it is a BNPE
1348 Get_Name_String_And_Append (Chars (E));
1350 if Is_BNPE (E) then
1351 BNPE_Suffix_Needed := True;
1352 end if;
1354 Append_Homonym_Number (E);
1355 end if;
1356 end Set_Entity_Name;
1358 -- Start of processing for Qualify_Entity_Name
1360 begin
1361 if Has_Qualified_Name (Ent) then
1362 return;
1364 -- In formal verification mode, simply append a suffix for homonyms.
1365 -- We used to qualify entity names as full expansion does, but this was
1366 -- removed as this prevents the verification back-end from using a short
1367 -- name for debugging and user interaction. The verification back-end
1368 -- already takes care of qualifying names when needed. Still mark the
1369 -- name as being qualified, as Qualify_Entity_Name may be called more
1370 -- than once on the same entity.
1372 elsif GNATprove_Mode then
1373 if Has_Homonym (Ent) then
1374 Get_Name_String (Chars (Ent));
1375 Append_Homonym_Number (Ent);
1376 Output_Homonym_Numbers_Suffix;
1377 Set_Chars (Ent, Name_Enter);
1378 end if;
1380 Set_Has_Qualified_Name (Ent);
1381 return;
1383 -- If the entity is a variable encoding the debug name for an object
1384 -- renaming, then the qualified name of the entity associated with the
1385 -- renamed object can now be incorporated in the debug name.
1387 elsif Ekind (Ent) = E_Variable
1388 and then Present (Debug_Renaming_Link (Ent))
1389 then
1390 Name_Len := 0;
1391 Qualify_Entity_Name (Debug_Renaming_Link (Ent));
1392 Get_Name_String (Chars (Ent));
1394 -- Retrieve the now-qualified name of the renamed entity and insert
1395 -- it in the middle of the name, just preceding the suffix encoding
1396 -- describing the renamed object.
1398 declare
1399 Renamed_Id : constant String :=
1400 Get_Name_String (Chars (Debug_Renaming_Link (Ent)));
1401 Insert_Len : constant Integer := Renamed_Id'Length + 1;
1402 Index : Natural := Name_Len - 3;
1404 begin
1405 -- Loop backwards through the name to find the start of the "___"
1406 -- sequence associated with the suffix.
1408 while Index >= Name_Buffer'First
1409 and then (Name_Buffer (Index + 1) /= '_'
1410 or else Name_Buffer (Index + 2) /= '_'
1411 or else Name_Buffer (Index + 3) /= '_')
1412 loop
1413 Index := Index - 1;
1414 end loop;
1416 pragma Assert (Name_Buffer (Index + 1 .. Index + 3) = "___");
1418 -- Insert an underscore separator and the entity name just in
1419 -- front of the suffix.
1421 Name_Buffer (Index + 1 + Insert_Len .. Name_Len + Insert_Len) :=
1422 Name_Buffer (Index + 1 .. Name_Len);
1423 Name_Buffer (Index + 1) := '_';
1424 Name_Buffer (Index + 2 .. Index + Insert_Len) := Renamed_Id;
1425 Name_Len := Name_Len + Insert_Len;
1426 end;
1428 -- Reset the name of the variable to the new name that includes the
1429 -- name of the renamed entity.
1431 Set_Chars (Ent, Name_Enter);
1433 -- If the entity needs qualification by its scope then develop it
1434 -- here, add the variable's name, and again reset the entity name.
1436 if Qualify_Needed (Scope (Ent)) then
1437 Name_Len := 0;
1438 Set_Entity_Name (Scope (Ent));
1439 Add_Str_To_Name_Buffer ("__");
1441 Get_Name_String_And_Append (Chars (Ent));
1443 Set_Chars (Ent, Name_Enter);
1444 end if;
1446 Set_Has_Qualified_Name (Ent);
1447 return;
1449 elsif Is_Subprogram (Ent)
1450 or else Ekind (Ent) = E_Subprogram_Body
1451 or else Is_Type (Ent)
1452 then
1453 Fully_Qualify_Name (Ent);
1454 Name_Len := Full_Qualify_Len;
1455 Name_Buffer (1 .. Name_Len) := Full_Qualify_Name (1 .. Name_Len);
1457 -- Qualification needed for enumeration literals when generating C code
1458 -- (to simplify their management in the backend).
1460 elsif Modify_Tree_For_C
1461 and then Ekind (Ent) = E_Enumeration_Literal
1462 and then Scope (Ultimate_Alias (Ent)) /= Standard_Standard
1463 then
1464 Fully_Qualify_Name (Ent);
1465 Name_Len := Full_Qualify_Len;
1466 Name_Buffer (1 .. Name_Len) := Full_Qualify_Name (1 .. Name_Len);
1468 elsif Qualify_Needed (Scope (Ent)) then
1469 Name_Len := 0;
1470 Set_Entity_Name (Ent);
1472 else
1473 Set_Has_Qualified_Name (Ent);
1475 -- If a variable is hidden by a subsequent loop variable, qualify
1476 -- the name of that loop variable to prevent visibility issues when
1477 -- translating to C. Note that gdb probably never handled properly
1478 -- this accidental hiding, given that loops are not scopes at
1479 -- runtime. We also qualify a name if it hides an outer homonym,
1480 -- and both are declared in blocks.
1482 if Modify_Tree_For_C and then Ekind (Ent) = E_Variable then
1483 if Present (Hiding_Loop_Variable (Ent)) then
1484 declare
1485 Var : constant Entity_Id := Hiding_Loop_Variable (Ent);
1487 begin
1488 Set_Entity_Name (Var);
1489 Add_Str_To_Name_Buffer ("L");
1490 Set_Chars (Var, Name_Enter);
1491 end;
1493 elsif Present (Homonym (Ent))
1494 and then Ekind (Scope (Ent)) = E_Block
1495 and then Ekind (Scope (Homonym (Ent))) = E_Block
1496 then
1497 Set_Entity_Name (Ent);
1498 Add_Str_To_Name_Buffer ("B");
1499 Set_Chars (Ent, Name_Enter);
1500 end if;
1501 end if;
1503 return;
1504 end if;
1506 -- Fall through with a fully qualified name in Name_Buffer/Name_Len
1508 Output_Homonym_Numbers_Suffix;
1510 -- Add body-nested package suffix if required
1512 if BNPE_Suffix_Needed
1513 and then Ekind (Ent) /= E_Enumeration_Literal
1514 then
1515 Set_BNPE_Suffix (Ent);
1517 -- Strip trailing n's and last trailing b as required. note that
1518 -- we know there is at least one b, or no suffix would be generated.
1520 while Name_Buffer (Name_Len) = 'n' loop
1521 Name_Len := Name_Len - 1;
1522 end loop;
1524 Name_Len := Name_Len - 1;
1525 end if;
1527 Set_Chars (Ent, Name_Enter);
1528 Set_Has_Qualified_Name (Ent);
1530 if Debug_Flag_BB then
1531 Write_Str ("*** ");
1532 Write_Name (Save_Chars);
1533 Write_Str (" qualified as ");
1534 Write_Name (Chars (Ent));
1535 Write_Eol;
1536 end if;
1537 end Qualify_Entity_Name;
1539 --------------------------
1540 -- Qualify_Entity_Names --
1541 --------------------------
1543 procedure Qualify_Entity_Names (N : Node_Id) is
1544 begin
1545 Name_Qualify_Units.Append (N);
1546 end Qualify_Entity_Names;
1548 -------------------
1549 -- Reset_Buffers --
1550 -------------------
1552 procedure Reset_Buffers is
1553 begin
1554 Name_Len := 0;
1555 Homonym_Len := 0;
1556 end Reset_Buffers;
1558 --------------------
1559 -- Strip_Suffixes --
1560 --------------------
1562 procedure Strip_Suffixes (BNPE_Suffix_Found : in out Boolean) is
1563 SL : Natural;
1565 pragma Warnings (Off, BNPE_Suffix_Found);
1566 -- Since this procedure only ever sets the flag
1568 begin
1569 -- Search for and strip BNPE suffix
1571 for J in reverse 2 .. Name_Len loop
1572 if Name_Buffer (J) = 'X' then
1573 Name_Len := J - 1;
1574 BNPE_Suffix_Found := True;
1575 exit;
1576 end if;
1578 exit when Name_Buffer (J) /= 'b' and then Name_Buffer (J) /= 'n';
1579 end loop;
1581 -- Search for and strip homonym numbers suffix
1583 for J in reverse 2 .. Name_Len - 2 loop
1584 if Name_Buffer (J) = '_'
1585 and then Name_Buffer (J + 1) = '_'
1586 then
1587 if Name_Buffer (J + 2) in '0' .. '9' then
1588 if Homonym_Len > 0 then
1589 Homonym_Len := Homonym_Len + 1;
1590 Homonym_Numbers (Homonym_Len) := '-';
1591 end if;
1593 SL := Name_Len - (J + 1);
1595 Homonym_Numbers (Homonym_Len + 1 .. Homonym_Len + SL) :=
1596 Name_Buffer (J + 2 .. Name_Len);
1597 Name_Len := J - 1;
1598 Homonym_Len := Homonym_Len + SL;
1599 end if;
1601 exit;
1602 end if;
1603 end loop;
1604 end Strip_Suffixes;
1606 end Exp_Dbug;