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[gcc.git] / gcc / ada / einfo.adb
1 ------------------------------------------------------------------------------
2 -- --
3 -- GNAT COMPILER COMPONENTS --
4 -- --
5 -- E I N F O --
6 -- --
7 -- B o d y --
8 -- --
9 -- Copyright (C) 1992-2005, 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, 51 Franklin Street, Fifth Floor, --
20 -- Boston, MA 02110-1301, USA. --
21 -- --
22 -- As a special exception, if other files instantiate generics from this --
23 -- unit, or you link this unit with other files to produce an executable, --
24 -- this unit does not by itself cause the resulting executable to be --
25 -- covered by the GNU General Public License. This exception does not --
26 -- however invalidate any other reasons why the executable file might be --
27 -- covered by the GNU Public License. --
28 -- --
29 -- GNAT was originally developed by the GNAT team at New York University. --
30 -- Extensive contributions were provided by Ada Core Technologies Inc. --
31 -- --
32 ------------------------------------------------------------------------------
33
34 pragma Style_Checks (All_Checks);
35 -- Turn off subprogram ordering, not used for this unit
36
37 with Atree; use Atree;
38 with Namet; use Namet;
39 with Nlists; use Nlists;
40 with Sinfo; use Sinfo;
41 with Stand; use Stand;
42 with Output; use Output;
43
44 package body Einfo is
45
46 use Atree.Unchecked_Access;
47 -- This is one of the packages that is allowed direct untyped access to
48 -- the fields in a node, since it provides the next level abstraction
49 -- which incorporates appropriate checks.
50
51 ----------------------------------------------
52 -- Usage of Fields in Defining Entity Nodes --
53 ----------------------------------------------
54
55 -- Four of these fields are defined in Sinfo, since they in are the
56 -- base part of the node. The access routines for these fields and
57 -- the corresponding set procedures are defined in Sinfo. These fields
58 -- are present in all entities. Note that Homonym is also in the base
59 -- part of the node, but has access routines that are more properly
60 -- part of Einfo, which is why they are defined here.
61
62 -- Chars Name1
63 -- Next_Entity Node2
64 -- Scope Node3
65 -- Etype Node5
66
67 -- Remaining fields are present only in extended nodes (i.e. entities)
68
69 -- The following fields are present in all entities
70
71 -- Homonym Node4
72 -- First_Rep_Item Node6
73 -- Freeze_Node Node7
74
75 -- The usage of each field (and the entity kinds to which it applies)
76 -- depends on the particular field (see Einfo spec for details).
77
78 -- Associated_Node_For_Itype Node8
79 -- Dependent_Instances Elist8
80 -- Hiding_Loop_Variable Node8
81 -- Mechanism Uint8 (but returns Mechanism_Type)
82 -- Normalized_First_Bit Uint8
83
84 -- Class_Wide_Type Node9
85 -- Current_Value Node9
86 -- Renaming_Map Uint9
87
88 -- Discriminal_Link Node10
89 -- Handler_Records List10
90 -- Normalized_Position_Max Uint10
91 -- Referenced_Object Node10
92
93 -- Component_Bit_Offset Uint11
94 -- Full_View Node11
95 -- Entry_Component Node11
96 -- Enumeration_Pos Uint11
97 -- Generic_Homonym Node11
98 -- Protected_Body_Subprogram Node11
99 -- Block_Node Node11
100
101 -- Barrier_Function Node12
102 -- Enumeration_Rep Uint12
103 -- Esize Uint12
104 -- Next_Inlined_Subprogram Node12
105
106 -- Corresponding_Equality Node13
107 -- Component_Clause Node13
108 -- Debug_Renaming_Link Node13
109 -- Elaboration_Entity Node13
110 -- Extra_Accessibility Node13
111 -- RM_Size Uint13
112
113 -- Alignment Uint14
114 -- First_Optional_Parameter Node14
115 -- Normalized_Position Uint14
116 -- Shadow_Entities List14
117
118 -- Discriminant_Number Uint15
119 -- DT_Position Uint15
120 -- DT_Entry_Count Uint15
121 -- Entry_Bodies_Array Node15
122 -- Entry_Parameters_Type Node15
123 -- Extra_Formal Node15
124 -- Lit_Indexes Node15
125 -- Primitive_Operations Elist15
126 -- Related_Instance Node15
127 -- Scale_Value Uint15
128 -- Storage_Size_Variable Node15
129 -- String_Literal_Low_Bound Node15
130 -- Shared_Var_Read_Proc Node15
131
132 -- Access_Disp_Table Elist16
133 -- Cloned_Subtype Node16
134 -- DTC_Entity Node16
135 -- Entry_Formal Node16
136 -- First_Private_Entity Node16
137 -- Lit_Strings Node16
138 -- String_Literal_Length Uint16
139 -- Unset_Reference Node16
140
141 -- Actual_Subtype Node17
142 -- Digits_Value Uint17
143 -- Discriminal Node17
144 -- First_Entity Node17
145 -- First_Index Node17
146 -- First_Literal Node17
147 -- Master_Id Node17
148 -- Modulus Uint17
149 -- Non_Limited_View Node17
150 -- Object_Ref Node17
151 -- Prival Node17
152
153 -- Alias Node18
154 -- Corresponding_Concurrent_Type Node18
155 -- Corresponding_Record_Type Node18
156 -- Delta_Value Ureal18
157 -- Enclosing_Scope Node18
158 -- Equivalent_Type Node18
159 -- Private_Dependents Elist18
160 -- Renamed_Entity Node18
161 -- Renamed_Object Node18
162
163 -- Body_Entity Node19
164 -- Corresponding_Discriminant Node19
165 -- Finalization_Chain_Entity Node19
166 -- Parent_Subtype Node19
167 -- Related_Array_Object Node19
168 -- Size_Check_Code Node19
169 -- Spec_Entity Node19
170 -- Underlying_Full_View Node19
171
172 -- Component_Type Node20
173 -- Default_Value Node20
174 -- Directly_Designated_Type Node20
175 -- Discriminant_Checking_Func Node20
176 -- Discriminant_Default_Value Node20
177 -- Last_Entity Node20
178 -- Register_Exception_Call Node20
179 -- Scalar_Range Node20
180
181 -- Accept_Address Elist21
182 -- Default_Expr_Function Node21
183 -- Discriminant_Constraint Elist21
184 -- Interface_Name Node21
185 -- Original_Array_Type Node21
186 -- Small_Value Ureal21
187
188 -- Associated_Storage_Pool Node22
189 -- Component_Size Uint22
190 -- Corresponding_Remote_Type Node22
191 -- Enumeration_Rep_Expr Node22
192 -- Exception_Code Uint22
193 -- Original_Record_Component Node22
194 -- Private_View Node22
195 -- Protected_Formal Node22
196 -- Scope_Depth_Value Uint22
197 -- Shared_Var_Assign_Proc Node22
198
199 -- Associated_Final_Chain Node23
200 -- CR_Discriminant Node23
201 -- Stored_Constraint Elist23
202 -- Entry_Cancel_Parameter Node23
203 -- Extra_Constrained Node23
204 -- Generic_Renamings Elist23
205 -- Inner_Instances Elist23
206 -- Enum_Pos_To_Rep Node23
207 -- Packed_Array_Type Node23
208 -- Limited_View Node23
209 -- Privals_Chain Elist23
210 -- Protected_Operation Node23
211
212 -- Obsolescent_Warning Node24
213 -- Task_Body_Procedure Node24
214 -- Abstract_Interfaces Elist24
215
216 -- Abstract_Interface_Alias Node25
217 -- Current_Use_Clause Node25
218
219 -- Overridden_Operation Node26
220 -- Package_Instantiation Node26
221
222 -- Wrapped_Entity Node27
223
224 ---------------------------------------------
225 -- Usage of Flags in Defining Entity Nodes --
226 ---------------------------------------------
227
228 -- All flags are unique, there is no overlaying, so each flag is physically
229 -- present in every entity. However, for many of the flags, it only makes
230 -- sense for them to be set true for certain subsets of entity kinds. See
231 -- the spec of Einfo for further details.
232
233 -- Note: Flag1-Flag3 are absent from this list, since these flag positions
234 -- are used for the flags Analyzed, Comes_From_Source, and Error_Posted,
235 -- which are common to all nodes, including entity nodes.
236
237 -- Is_Frozen Flag4
238 -- Has_Discriminants Flag5
239 -- Is_Dispatching_Operation Flag6
240 -- Is_Immediately_Visible Flag7
241 -- In_Use Flag8
242 -- Is_Potentially_Use_Visible Flag9
243 -- Is_Public Flag10
244
245 -- Is_Inlined Flag11
246 -- Is_Constrained Flag12
247 -- Is_Generic_Type Flag13
248 -- Depends_On_Private Flag14
249 -- Is_Aliased Flag15
250 -- Is_Volatile Flag16
251 -- Is_Internal Flag17
252 -- Has_Delayed_Freeze Flag18
253 -- Is_Abstract Flag19
254 -- Is_Concurrent_Record_Type Flag20
255
256 -- Has_Master_Entity Flag21
257 -- Needs_No_Actuals Flag22
258 -- Has_Storage_Size_Clause Flag23
259 -- Is_Imported Flag24
260 -- Is_Limited_Record Flag25
261 -- Has_Completion Flag26
262 -- Has_Pragma_Controlled Flag27
263 -- Is_Statically_Allocated Flag28
264 -- Has_Size_Clause Flag29
265 -- Has_Task Flag30
266
267 -- Checks_May_Be_Suppressed Flag31
268 -- Kill_Elaboration_Checks Flag32
269 -- Kill_Range_Checks Flag33
270 -- Kill_Tag_Checks Flag34
271 -- Is_Class_Wide_Equivalent_Type Flag35
272 -- Referenced_As_LHS Flag36
273 -- Is_Known_Non_Null Flag37
274 -- Can_Never_Be_Null Flag38
275 -- Is_Overriding_Operation Flag39
276 -- Body_Needed_For_SAL Flag40
277
278 -- Treat_As_Volatile Flag41
279 -- Is_Controlled Flag42
280 -- Has_Controlled_Component Flag43
281 -- Is_Pure Flag44
282 -- In_Private_Part Flag45
283 -- Has_Alignment_Clause Flag46
284 -- Has_Exit Flag47
285 -- In_Package_Body Flag48
286 -- Reachable Flag49
287 -- Delay_Subprogram_Descriptors Flag50
288
289 -- Is_Packed Flag51
290 -- Is_Entry_Formal Flag52
291 -- Is_Private_Descendant Flag53
292 -- Return_Present Flag54
293 -- Is_Tagged_Type Flag55
294 -- Has_Homonym Flag56
295 -- Is_Hidden Flag57
296 -- Non_Binary_Modulus Flag58
297 -- Is_Preelaborated Flag59
298 -- Is_Shared_Passive Flag60
299
300 -- Is_Remote_Types Flag61
301 -- Is_Remote_Call_Interface Flag62
302 -- Is_Character_Type Flag63
303 -- Is_Intrinsic_Subprogram Flag64
304 -- Has_Record_Rep_Clause Flag65
305 -- Has_Enumeration_Rep_Clause Flag66
306 -- Has_Small_Clause Flag67
307 -- Has_Component_Size_Clause Flag68
308 -- Is_Access_Constant Flag69
309 -- Is_First_Subtype Flag70
310
311 -- Has_Completion_In_Body Flag71
312 -- Has_Unknown_Discriminants Flag72
313 -- Is_Child_Unit Flag73
314 -- Is_CPP_Class Flag74
315 -- Has_Non_Standard_Rep Flag75
316 -- Is_Constructor Flag76
317 -- Is_Thread_Body Flag77
318 -- Is_Tag Flag78
319 -- Has_All_Calls_Remote Flag79
320 -- Is_Constr_Subt_For_U_Nominal Flag80
321
322 -- Is_Asynchronous Flag81
323 -- Has_Gigi_Rep_Item Flag82
324 -- Has_Machine_Radix_Clause Flag83
325 -- Machine_Radix_10 Flag84
326 -- Is_Atomic Flag85
327 -- Has_Atomic_Components Flag86
328 -- Has_Volatile_Components Flag87
329 -- Discard_Names Flag88
330 -- Is_Interrupt_Handler Flag89
331 -- Returns_By_Ref Flag90
332
333 -- Is_Itype Flag91
334 -- Size_Known_At_Compile_Time Flag92
335 -- Has_Subprogram_Descriptor Flag93
336 -- Is_Generic_Actual_Type Flag94
337 -- Uses_Sec_Stack Flag95
338 -- Warnings_Off Flag96
339 -- Is_Controlling_Formal Flag97
340 -- Has_Controlling_Result Flag98
341 -- Is_Exported Flag99
342 -- Has_Specified_Layout Flag100
343
344 -- Has_Nested_Block_With_Handler Flag101
345 -- Is_Called Flag102
346 -- Is_Completely_Hidden Flag103
347 -- Address_Taken Flag104
348 -- Suppress_Init_Proc Flag105
349 -- Is_Limited_Composite Flag106
350 -- Is_Private_Composite Flag107
351 -- Default_Expressions_Processed Flag108
352 -- Is_Non_Static_Subtype Flag109
353 -- Has_External_Tag_Rep_Clause Flag110
354
355 -- Is_Formal_Subprogram Flag111
356 -- Is_Renaming_Of_Object Flag112
357 -- No_Return Flag113
358 -- Delay_Cleanups Flag114
359 -- Never_Set_In_Source Flag115
360 -- Is_Visible_Child_Unit Flag116
361 -- Is_Unchecked_Union Flag117
362 -- Is_For_Access_Subtype Flag118
363 -- Has_Convention_Pragma Flag119
364 -- Has_Primitive_Operations Flag120
365
366 -- Has_Pragma_Pack Flag121
367 -- Is_Bit_Packed_Array Flag122
368 -- Has_Unchecked_Union Flag123
369 -- Is_Eliminated Flag124
370 -- C_Pass_By_Copy Flag125
371 -- Is_Instantiated Flag126
372 -- Is_Valued_Procedure Flag127
373 -- (used for Component_Alignment) Flag128
374 -- (used for Component_Alignment) Flag129
375 -- Is_Generic_Instance Flag130
376
377 -- No_Pool_Assigned Flag131
378 -- Is_AST_Entry Flag132
379 -- Is_VMS_Exception Flag133
380 -- Is_Optional_Parameter Flag134
381 -- Has_Aliased_Components Flag135
382 -- No_Strict_Aliasing Flag136
383 -- Is_Machine_Code_Subprogram Flag137
384 -- Is_Packed_Array_Type Flag138
385 -- Has_Biased_Representation Flag139
386 -- Has_Complex_Representation Flag140
387
388 -- Is_Constr_Subt_For_UN_Aliased Flag141
389 -- Has_Missing_Return Flag142
390 -- Has_Recursive_Call Flag143
391 -- Is_Unsigned_Type Flag144
392 -- Strict_Alignment Flag145
393 -- (unused) Flag146
394 -- Needs_Debug_Info Flag147
395 -- Suppress_Elaboration_Warnings Flag148
396 -- Is_Compilation_Unit Flag149
397 -- Has_Pragma_Elaborate_Body Flag150
398
399 -- Vax_Float Flag151
400 -- Entry_Accepted Flag152
401 -- Is_Obsolescent Flag153
402 -- Has_Per_Object_Constraint Flag154
403 -- Has_Private_Declaration Flag155
404 -- Referenced Flag156
405 -- Has_Pragma_Inline Flag157
406 -- Finalize_Storage_Only Flag158
407 -- From_With_Type Flag159
408 -- Is_Package_Body_Entity Flag160
409
410 -- Has_Qualified_Name Flag161
411 -- Nonzero_Is_True Flag162
412 -- Is_True_Constant Flag163
413 -- Reverse_Bit_Order Flag164
414 -- Suppress_Style_Checks Flag165
415 -- Debug_Info_Off Flag166
416 -- Sec_Stack_Needed_For_Return Flag167
417 -- Materialize_Entity Flag168
418 -- Function_Returns_With_DSP Flag169
419 -- Is_Known_Valid Flag170
420
421 -- Is_Hidden_Open_Scope Flag171
422 -- Has_Object_Size_Clause Flag172
423 -- Has_Fully_Qualified_Name Flag173
424 -- Elaboration_Entity_Required Flag174
425 -- Has_Forward_Instantiation Flag175
426 -- Is_Discrim_SO_Function Flag176
427 -- Size_Depends_On_Discriminant Flag177
428 -- Is_Null_Init_Proc Flag178
429 -- Has_Pragma_Pure_Function Flag179
430 -- Has_Pragma_Unreferenced Flag180
431
432 -- Has_Contiguous_Rep Flag181
433 -- Has_Xref_Entry Flag182
434 -- Must_Be_On_Byte_Boundary Flag183
435 -- Has_Stream_Size_Clause Flag184
436 -- Is_Ada_2005 Flag185
437 -- Is_Interface Flag186
438 -- Has_Constrained_Partial_View Flag187
439 -- Has_Persistent_BSS Flag188
440 -- Is_Pure_Unit_Access_Type Flag189
441 -- Has_Specified_Stream_Input Flag190
442
443 -- Has_Specified_Stream_Output Flag191
444 -- Has_Specified_Stream_Read Flag192
445 -- Has_Specified_Stream_Write Flag193
446 -- Is_Local_Anonymous_Access Flag194
447 -- Is_Primitive_Wrapper Flag195
448 -- Was_Hidden Flag196
449 -- Is_Limited_Interface Flag197
450 -- Is_Protected_Interface Flag198
451 -- Is_Synchronized_Interface Flag199
452 -- Is_Task_Interface Flag200
453
454 -- Has_Anon_Block_Suffix Flag201
455
456 -- (unused) Flag202
457 -- (unused) Flag203
458 -- (unused) Flag204
459 -- (unused) Flag205
460 -- (unused) Flag206
461 -- (unused) Flag207
462 -- (unused) Flag208
463 -- (unused) Flag209
464 -- (unused) Flag210
465 -- (unused) Flag211
466 -- (unused) Flag212
467 -- (unused) Flag213
468 -- (unused) Flag214
469 -- (unused) Flag215
470
471 -----------------------
472 -- Local subprograms --
473 -----------------------
474
475 function Rep_Clause (Id : E; Rep_Name : Name_Id) return N;
476 -- Returns the attribute definition clause whose name is Rep_Name. Returns
477 -- Empty if not found.
478
479 ----------------
480 -- Rep_Clause --
481 ----------------
482
483 function Rep_Clause (Id : E; Rep_Name : Name_Id) return N is
484 Ritem : Node_Id;
485
486 begin
487 Ritem := First_Rep_Item (Id);
488 while Present (Ritem) loop
489 if Nkind (Ritem) = N_Attribute_Definition_Clause
490 and then Chars (Ritem) = Rep_Name
491 then
492 return Ritem;
493 else
494 Ritem := Next_Rep_Item (Ritem);
495 end if;
496 end loop;
497
498 return Empty;
499 end Rep_Clause;
500
501 --------------------------------
502 -- Attribute Access Functions --
503 --------------------------------
504
505 function Abstract_Interfaces (Id : E) return L is
506 begin
507 pragma Assert
508 (Ekind (Id) = E_Record_Type
509 or else Ekind (Id) = E_Record_Subtype
510 or else Ekind (Id) = E_Record_Type_With_Private
511 or else Ekind (Id) = E_Record_Subtype_With_Private
512 or else Ekind (Id) = E_Class_Wide_Type);
513 return Elist24 (Id);
514 end Abstract_Interfaces;
515
516 function Abstract_Interface_Alias (Id : E) return E is
517 begin
518 pragma Assert (Is_Subprogram (Id));
519 return Node25 (Id);
520 end Abstract_Interface_Alias;
521
522 function Accept_Address (Id : E) return L is
523 begin
524 return Elist21 (Id);
525 end Accept_Address;
526
527 function Access_Disp_Table (Id : E) return L is
528 begin
529 pragma Assert (Is_Tagged_Type (Id));
530 return Elist16 (Implementation_Base_Type (Id));
531 end Access_Disp_Table;
532
533 function Actual_Subtype (Id : E) return E is
534 begin
535 pragma Assert
536 (Ekind (Id) = E_Constant
537 or else Ekind (Id) = E_Variable
538 or else Ekind (Id) = E_Generic_In_Out_Parameter
539 or else Ekind (Id) in E_In_Parameter .. E_In_Out_Parameter);
540 return Node17 (Id);
541 end Actual_Subtype;
542
543 function Address_Taken (Id : E) return B is
544 begin
545 return Flag104 (Id);
546 end Address_Taken;
547
548 function Alias (Id : E) return E is
549 begin
550 pragma Assert
551 (Is_Overloadable (Id) or else Ekind (Id) = E_Subprogram_Type);
552 return Node18 (Id);
553 end Alias;
554
555 function Alignment (Id : E) return U is
556 begin
557 pragma Assert (Is_Type (Id)
558 or else Is_Formal (Id)
559 or else Ekind (Id) = E_Loop_Parameter
560 or else Ekind (Id) = E_Constant
561 or else Ekind (Id) = E_Exception
562 or else Ekind (Id) = E_Variable);
563 return Uint14 (Id);
564 end Alignment;
565
566 function Associated_Final_Chain (Id : E) return E is
567 begin
568 pragma Assert (Is_Access_Type (Id));
569 return Node23 (Id);
570 end Associated_Final_Chain;
571
572 function Associated_Formal_Package (Id : E) return E is
573 begin
574 pragma Assert (Ekind (Id) = E_Package);
575 return Node12 (Id);
576 end Associated_Formal_Package;
577
578 function Associated_Node_For_Itype (Id : E) return N is
579 begin
580 return Node8 (Id);
581 end Associated_Node_For_Itype;
582
583 function Associated_Storage_Pool (Id : E) return E is
584 begin
585 pragma Assert (Is_Access_Type (Id));
586 return Node22 (Root_Type (Id));
587 end Associated_Storage_Pool;
588
589 function Barrier_Function (Id : E) return N is
590 begin
591 pragma Assert (Is_Entry (Id));
592 return Node12 (Id);
593 end Barrier_Function;
594
595 function Block_Node (Id : E) return N is
596 begin
597 pragma Assert (Ekind (Id) = E_Block);
598 return Node11 (Id);
599 end Block_Node;
600
601 function Body_Entity (Id : E) return E is
602 begin
603 pragma Assert
604 (Ekind (Id) = E_Package or else Ekind (Id) = E_Generic_Package);
605 return Node19 (Id);
606 end Body_Entity;
607
608 function Body_Needed_For_SAL (Id : E) return B is
609 begin
610 pragma Assert
611 (Ekind (Id) = E_Package
612 or else Is_Subprogram (Id)
613 or else Is_Generic_Unit (Id));
614 return Flag40 (Id);
615 end Body_Needed_For_SAL;
616
617 function C_Pass_By_Copy (Id : E) return B is
618 begin
619 pragma Assert (Is_Record_Type (Id));
620 return Flag125 (Implementation_Base_Type (Id));
621 end C_Pass_By_Copy;
622
623 function Can_Never_Be_Null (Id : E) return B is
624 begin
625 return Flag38 (Id);
626 end Can_Never_Be_Null;
627
628 function Checks_May_Be_Suppressed (Id : E) return B is
629 begin
630 return Flag31 (Id);
631 end Checks_May_Be_Suppressed;
632
633 function Class_Wide_Type (Id : E) return E is
634 begin
635 pragma Assert (Is_Type (Id));
636 return Node9 (Id);
637 end Class_Wide_Type;
638
639 function Cloned_Subtype (Id : E) return E is
640 begin
641 pragma Assert
642 (Ekind (Id) = E_Record_Subtype
643 or else Ekind (Id) = E_Class_Wide_Subtype);
644 return Node16 (Id);
645 end Cloned_Subtype;
646
647 function Component_Bit_Offset (Id : E) return U is
648 begin
649 pragma Assert
650 (Ekind (Id) = E_Component or else Ekind (Id) = E_Discriminant);
651 return Uint11 (Id);
652 end Component_Bit_Offset;
653
654 function Component_Clause (Id : E) return N is
655 begin
656 pragma Assert
657 (Ekind (Id) = E_Component or else Ekind (Id) = E_Discriminant);
658 return Node13 (Id);
659 end Component_Clause;
660
661 function Component_Size (Id : E) return U is
662 begin
663 pragma Assert (Is_Array_Type (Id));
664 return Uint22 (Implementation_Base_Type (Id));
665 end Component_Size;
666
667 function Component_Type (Id : E) return E is
668 begin
669 return Node20 (Implementation_Base_Type (Id));
670 end Component_Type;
671
672 function Corresponding_Concurrent_Type (Id : E) return E is
673 begin
674 pragma Assert (Ekind (Id) = E_Record_Type);
675 return Node18 (Id);
676 end Corresponding_Concurrent_Type;
677
678 function Corresponding_Discriminant (Id : E) return E is
679 begin
680 pragma Assert (Ekind (Id) = E_Discriminant);
681 return Node19 (Id);
682 end Corresponding_Discriminant;
683
684 function Corresponding_Equality (Id : E) return E is
685 begin
686 pragma Assert
687 (Ekind (Id) = E_Function
688 and then not Comes_From_Source (Id)
689 and then Chars (Id) = Name_Op_Ne);
690 return Node13 (Id);
691 end Corresponding_Equality;
692
693 function Corresponding_Record_Type (Id : E) return E is
694 begin
695 pragma Assert (Is_Concurrent_Type (Id));
696 return Node18 (Id);
697 end Corresponding_Record_Type;
698
699 function Corresponding_Remote_Type (Id : E) return E is
700 begin
701 return Node22 (Id);
702 end Corresponding_Remote_Type;
703
704 function Current_Use_Clause (Id : E) return E is
705 begin
706 pragma Assert (Ekind (Id) = E_Package);
707 return Node25 (Id);
708 end Current_Use_Clause;
709
710 function Current_Value (Id : E) return N is
711 begin
712 pragma Assert (Ekind (Id) in Object_Kind);
713 return Node9 (Id);
714 end Current_Value;
715
716 function CR_Discriminant (Id : E) return E is
717 begin
718 return Node23 (Id);
719 end CR_Discriminant;
720
721 function Debug_Info_Off (Id : E) return B is
722 begin
723 return Flag166 (Id);
724 end Debug_Info_Off;
725
726 function Debug_Renaming_Link (Id : E) return E is
727 begin
728 return Node13 (Id);
729 end Debug_Renaming_Link;
730
731 function Default_Expr_Function (Id : E) return E is
732 begin
733 pragma Assert (Is_Formal (Id));
734 return Node21 (Id);
735 end Default_Expr_Function;
736
737 function Default_Expressions_Processed (Id : E) return B is
738 begin
739 return Flag108 (Id);
740 end Default_Expressions_Processed;
741
742 function Default_Value (Id : E) return N is
743 begin
744 pragma Assert (Is_Formal (Id));
745 return Node20 (Id);
746 end Default_Value;
747
748 function Delay_Cleanups (Id : E) return B is
749 begin
750 return Flag114 (Id);
751 end Delay_Cleanups;
752
753 function Delay_Subprogram_Descriptors (Id : E) return B is
754 begin
755 return Flag50 (Id);
756 end Delay_Subprogram_Descriptors;
757
758 function Delta_Value (Id : E) return R is
759 begin
760 pragma Assert (Is_Fixed_Point_Type (Id));
761 return Ureal18 (Id);
762 end Delta_Value;
763
764 function Dependent_Instances (Id : E) return L is
765 begin
766 pragma Assert (Is_Generic_Instance (Id));
767 return Elist8 (Id);
768 end Dependent_Instances;
769
770 function Depends_On_Private (Id : E) return B is
771 begin
772 pragma Assert (Nkind (Id) in N_Entity);
773 return Flag14 (Id);
774 end Depends_On_Private;
775
776 function Digits_Value (Id : E) return U is
777 begin
778 pragma Assert
779 (Is_Floating_Point_Type (Id)
780 or else Is_Decimal_Fixed_Point_Type (Id));
781 return Uint17 (Id);
782 end Digits_Value;
783
784 function Directly_Designated_Type (Id : E) return E is
785 begin
786 return Node20 (Id);
787 end Directly_Designated_Type;
788
789 function Discard_Names (Id : E) return B is
790 begin
791 return Flag88 (Id);
792 end Discard_Names;
793
794 function Discriminal (Id : E) return E is
795 begin
796 pragma Assert (Ekind (Id) = E_Discriminant);
797 return Node17 (Id);
798 end Discriminal;
799
800 function Discriminal_Link (Id : E) return N is
801 begin
802 return Node10 (Id);
803 end Discriminal_Link;
804
805 function Discriminant_Checking_Func (Id : E) return E is
806 begin
807 pragma Assert (Ekind (Id) = E_Component);
808 return Node20 (Id);
809 end Discriminant_Checking_Func;
810
811 function Discriminant_Constraint (Id : E) return L is
812 begin
813 pragma Assert (Is_Composite_Type (Id) and then Has_Discriminants (Id));
814 return Elist21 (Id);
815 end Discriminant_Constraint;
816
817 function Discriminant_Default_Value (Id : E) return N is
818 begin
819 pragma Assert (Ekind (Id) = E_Discriminant);
820 return Node20 (Id);
821 end Discriminant_Default_Value;
822
823 function Discriminant_Number (Id : E) return U is
824 begin
825 pragma Assert (Ekind (Id) = E_Discriminant);
826 return Uint15 (Id);
827 end Discriminant_Number;
828
829 function DT_Entry_Count (Id : E) return U is
830 begin
831 pragma Assert (Ekind (Id) = E_Component and then Is_Tag (Id));
832 return Uint15 (Id);
833 end DT_Entry_Count;
834
835 function DT_Position (Id : E) return U is
836 begin
837 pragma Assert
838 ((Ekind (Id) = E_Function
839 or else Ekind (Id) = E_Procedure)
840 and then Present (DTC_Entity (Id)));
841 return Uint15 (Id);
842 end DT_Position;
843
844 function DTC_Entity (Id : E) return E is
845 begin
846 pragma Assert
847 (Ekind (Id) = E_Function or else Ekind (Id) = E_Procedure);
848 return Node16 (Id);
849 end DTC_Entity;
850
851 function Elaboration_Entity (Id : E) return E is
852 begin
853 pragma Assert
854 (Is_Subprogram (Id)
855 or else
856 Ekind (Id) = E_Package
857 or else
858 Is_Generic_Unit (Id));
859 return Node13 (Id);
860 end Elaboration_Entity;
861
862 function Elaboration_Entity_Required (Id : E) return B is
863 begin
864 pragma Assert
865 (Is_Subprogram (Id)
866 or else
867 Ekind (Id) = E_Package
868 or else
869 Is_Generic_Unit (Id));
870 return Flag174 (Id);
871 end Elaboration_Entity_Required;
872
873 function Enclosing_Scope (Id : E) return E is
874 begin
875 return Node18 (Id);
876 end Enclosing_Scope;
877
878 function Entry_Accepted (Id : E) return B is
879 begin
880 pragma Assert (Is_Entry (Id));
881 return Flag152 (Id);
882 end Entry_Accepted;
883
884 function Entry_Bodies_Array (Id : E) return E is
885 begin
886 return Node15 (Id);
887 end Entry_Bodies_Array;
888
889 function Entry_Cancel_Parameter (Id : E) return E is
890 begin
891 return Node23 (Id);
892 end Entry_Cancel_Parameter;
893
894 function Entry_Component (Id : E) return E is
895 begin
896 return Node11 (Id);
897 end Entry_Component;
898
899 function Entry_Formal (Id : E) return E is
900 begin
901 return Node16 (Id);
902 end Entry_Formal;
903
904 function Entry_Index_Constant (Id : E) return N is
905 begin
906 pragma Assert (Ekind (Id) = E_Entry_Index_Parameter);
907 return Node18 (Id);
908 end Entry_Index_Constant;
909
910 function Entry_Parameters_Type (Id : E) return E is
911 begin
912 return Node15 (Id);
913 end Entry_Parameters_Type;
914
915 function Enum_Pos_To_Rep (Id : E) return E is
916 begin
917 pragma Assert (Ekind (Id) = E_Enumeration_Type);
918 return Node23 (Id);
919 end Enum_Pos_To_Rep;
920
921 function Enumeration_Pos (Id : E) return Uint is
922 begin
923 pragma Assert (Ekind (Id) = E_Enumeration_Literal);
924 return Uint11 (Id);
925 end Enumeration_Pos;
926
927 function Enumeration_Rep (Id : E) return U is
928 begin
929 pragma Assert (Ekind (Id) = E_Enumeration_Literal);
930 return Uint12 (Id);
931 end Enumeration_Rep;
932
933 function Enumeration_Rep_Expr (Id : E) return N is
934 begin
935 pragma Assert (Ekind (Id) = E_Enumeration_Literal);
936 return Node22 (Id);
937 end Enumeration_Rep_Expr;
938
939 function Equivalent_Type (Id : E) return E is
940 begin
941 pragma Assert
942 (Ekind (Id) = E_Class_Wide_Subtype or else
943 Ekind (Id) = E_Access_Protected_Subprogram_Type or else
944 Ekind (Id) = E_Access_Subprogram_Type or else
945 Ekind (Id) = E_Exception_Type);
946 return Node18 (Id);
947 end Equivalent_Type;
948
949 function Esize (Id : E) return Uint is
950 begin
951 return Uint12 (Id);
952 end Esize;
953
954 function Exception_Code (Id : E) return Uint is
955 begin
956 pragma Assert (Ekind (Id) = E_Exception);
957 return Uint22 (Id);
958 end Exception_Code;
959
960 function Extra_Accessibility (Id : E) return E is
961 begin
962 pragma Assert (Is_Formal (Id) or else Ekind (Id) = E_Variable);
963 return Node13 (Id);
964 end Extra_Accessibility;
965
966 function Extra_Constrained (Id : E) return E is
967 begin
968 pragma Assert (Is_Formal (Id) or else Ekind (Id) = E_Variable);
969 return Node23 (Id);
970 end Extra_Constrained;
971
972 function Extra_Formal (Id : E) return E is
973 begin
974 return Node15 (Id);
975 end Extra_Formal;
976
977 function Finalization_Chain_Entity (Id : E) return E is
978 begin
979 return Node19 (Id);
980 end Finalization_Chain_Entity;
981
982 function Finalize_Storage_Only (Id : E) return B is
983 begin
984 pragma Assert (Is_Type (Id));
985 return Flag158 (Base_Type (Id));
986 end Finalize_Storage_Only;
987
988 function First_Entity (Id : E) return E is
989 begin
990 return Node17 (Id);
991 end First_Entity;
992
993 function First_Index (Id : E) return N is
994 begin
995 return Node17 (Id);
996 end First_Index;
997
998 function First_Literal (Id : E) return E is
999 begin
1000 return Node17 (Id);
1001 end First_Literal;
1002
1003 function First_Optional_Parameter (Id : E) return E is
1004 begin
1005 pragma Assert
1006 (Ekind (Id) = E_Function or else Ekind (Id) = E_Procedure);
1007 return Node14 (Id);
1008 end First_Optional_Parameter;
1009
1010 function First_Private_Entity (Id : E) return E is
1011 begin
1012 pragma Assert (Ekind (Id) = E_Package
1013 or else Ekind (Id) = E_Generic_Package
1014 or else Ekind (Id) = E_Protected_Type
1015 or else Ekind (Id) = E_Protected_Subtype
1016 or else Ekind (Id) = E_Task_Type
1017 or else Ekind (Id) = E_Task_Subtype);
1018 return Node16 (Id);
1019 end First_Private_Entity;
1020
1021 function First_Rep_Item (Id : E) return E is
1022 begin
1023 return Node6 (Id);
1024 end First_Rep_Item;
1025
1026 function Freeze_Node (Id : E) return N is
1027 begin
1028 return Node7 (Id);
1029 end Freeze_Node;
1030
1031 function From_With_Type (Id : E) return B is
1032 begin
1033 return Flag159 (Id);
1034 end From_With_Type;
1035
1036 function Full_View (Id : E) return E is
1037 begin
1038 pragma Assert (Is_Type (Id) or else Ekind (Id) = E_Constant);
1039 return Node11 (Id);
1040 end Full_View;
1041
1042 function Function_Returns_With_DSP (Id : E) return B is
1043 begin
1044 pragma Assert
1045 (Is_Subprogram (Id) or else Ekind (Id) = E_Subprogram_Type);
1046 return Flag169 (Id);
1047 end Function_Returns_With_DSP;
1048
1049 function Generic_Homonym (Id : E) return E is
1050 begin
1051 pragma Assert (Ekind (Id) = E_Generic_Package);
1052 return Node11 (Id);
1053 end Generic_Homonym;
1054
1055 function Generic_Renamings (Id : E) return L is
1056 begin
1057 return Elist23 (Id);
1058 end Generic_Renamings;
1059
1060 function Handler_Records (Id : E) return S is
1061 begin
1062 return List10 (Id);
1063 end Handler_Records;
1064
1065 function Has_Aliased_Components (Id : E) return B is
1066 begin
1067 return Flag135 (Implementation_Base_Type (Id));
1068 end Has_Aliased_Components;
1069
1070 function Has_Alignment_Clause (Id : E) return B is
1071 begin
1072 return Flag46 (Id);
1073 end Has_Alignment_Clause;
1074
1075 function Has_All_Calls_Remote (Id : E) return B is
1076 begin
1077 return Flag79 (Id);
1078 end Has_All_Calls_Remote;
1079
1080 function Has_Anon_Block_Suffix (Id : E) return B is
1081 begin
1082 return Flag201 (Id);
1083 end Has_Anon_Block_Suffix;
1084
1085 function Has_Atomic_Components (Id : E) return B is
1086 begin
1087 return Flag86 (Implementation_Base_Type (Id));
1088 end Has_Atomic_Components;
1089
1090 function Has_Biased_Representation (Id : E) return B is
1091 begin
1092 return Flag139 (Id);
1093 end Has_Biased_Representation;
1094
1095 function Has_Completion (Id : E) return B is
1096 begin
1097 return Flag26 (Id);
1098 end Has_Completion;
1099
1100 function Has_Completion_In_Body (Id : E) return B is
1101 begin
1102 pragma Assert (Is_Type (Id));
1103 return Flag71 (Id);
1104 end Has_Completion_In_Body;
1105
1106 function Has_Complex_Representation (Id : E) return B is
1107 begin
1108 pragma Assert (Is_Type (Id));
1109 return Flag140 (Implementation_Base_Type (Id));
1110 end Has_Complex_Representation;
1111
1112 function Has_Component_Size_Clause (Id : E) return B is
1113 begin
1114 pragma Assert (Is_Array_Type (Id));
1115 return Flag68 (Implementation_Base_Type (Id));
1116 end Has_Component_Size_Clause;
1117
1118 function Has_Constrained_Partial_View (Id : E) return B is
1119 begin
1120 pragma Assert (Is_Type (Id));
1121 return Flag187 (Id);
1122 end Has_Constrained_Partial_View;
1123
1124 function Has_Controlled_Component (Id : E) return B is
1125 begin
1126 return Flag43 (Base_Type (Id));
1127 end Has_Controlled_Component;
1128
1129 function Has_Contiguous_Rep (Id : E) return B is
1130 begin
1131 return Flag181 (Id);
1132 end Has_Contiguous_Rep;
1133
1134 function Has_Controlling_Result (Id : E) return B is
1135 begin
1136 return Flag98 (Id);
1137 end Has_Controlling_Result;
1138
1139 function Has_Convention_Pragma (Id : E) return B is
1140 begin
1141 return Flag119 (Id);
1142 end Has_Convention_Pragma;
1143
1144 function Has_Delayed_Freeze (Id : E) return B is
1145 begin
1146 pragma Assert (Nkind (Id) in N_Entity);
1147 return Flag18 (Id);
1148 end Has_Delayed_Freeze;
1149
1150 function Has_Discriminants (Id : E) return B is
1151 begin
1152 pragma Assert (Nkind (Id) in N_Entity);
1153 return Flag5 (Id);
1154 end Has_Discriminants;
1155
1156 function Has_Enumeration_Rep_Clause (Id : E) return B is
1157 begin
1158 pragma Assert (Is_Enumeration_Type (Id));
1159 return Flag66 (Id);
1160 end Has_Enumeration_Rep_Clause;
1161
1162 function Has_Exit (Id : E) return B is
1163 begin
1164 return Flag47 (Id);
1165 end Has_Exit;
1166
1167 function Has_External_Tag_Rep_Clause (Id : E) return B is
1168 begin
1169 pragma Assert (Is_Tagged_Type (Id));
1170 return Flag110 (Id);
1171 end Has_External_Tag_Rep_Clause;
1172
1173 function Has_Forward_Instantiation (Id : E) return B is
1174 begin
1175 return Flag175 (Id);
1176 end Has_Forward_Instantiation;
1177
1178 function Has_Fully_Qualified_Name (Id : E) return B is
1179 begin
1180 return Flag173 (Id);
1181 end Has_Fully_Qualified_Name;
1182
1183 function Has_Gigi_Rep_Item (Id : E) return B is
1184 begin
1185 return Flag82 (Id);
1186 end Has_Gigi_Rep_Item;
1187
1188 function Has_Homonym (Id : E) return B is
1189 begin
1190 return Flag56 (Id);
1191 end Has_Homonym;
1192
1193 function Has_Machine_Radix_Clause (Id : E) return B is
1194 begin
1195 pragma Assert (Is_Decimal_Fixed_Point_Type (Id));
1196 return Flag83 (Id);
1197 end Has_Machine_Radix_Clause;
1198
1199 function Has_Master_Entity (Id : E) return B is
1200 begin
1201 return Flag21 (Id);
1202 end Has_Master_Entity;
1203
1204 function Has_Missing_Return (Id : E) return B is
1205 begin
1206 pragma Assert
1207 (Ekind (Id) = E_Function or else Ekind (Id) = E_Generic_Function);
1208 return Flag142 (Id);
1209 end Has_Missing_Return;
1210
1211 function Has_Nested_Block_With_Handler (Id : E) return B is
1212 begin
1213 return Flag101 (Id);
1214 end Has_Nested_Block_With_Handler;
1215
1216 function Has_Non_Standard_Rep (Id : E) return B is
1217 begin
1218 return Flag75 (Implementation_Base_Type (Id));
1219 end Has_Non_Standard_Rep;
1220
1221 function Has_Object_Size_Clause (Id : E) return B is
1222 begin
1223 pragma Assert (Is_Type (Id));
1224 return Flag172 (Id);
1225 end Has_Object_Size_Clause;
1226
1227 function Has_Per_Object_Constraint (Id : E) return B is
1228 begin
1229 return Flag154 (Id);
1230 end Has_Per_Object_Constraint;
1231
1232 function Has_Persistent_BSS (Id : E) return B is
1233 begin
1234 return Flag188 (Id);
1235 end Has_Persistent_BSS;
1236
1237 function Has_Pragma_Controlled (Id : E) return B is
1238 begin
1239 pragma Assert (Is_Access_Type (Id));
1240 return Flag27 (Implementation_Base_Type (Id));
1241 end Has_Pragma_Controlled;
1242
1243 function Has_Pragma_Elaborate_Body (Id : E) return B is
1244 begin
1245 return Flag150 (Id);
1246 end Has_Pragma_Elaborate_Body;
1247
1248 function Has_Pragma_Inline (Id : E) return B is
1249 begin
1250 return Flag157 (Id);
1251 end Has_Pragma_Inline;
1252
1253 function Has_Pragma_Pack (Id : E) return B is
1254 begin
1255 pragma Assert (Is_Record_Type (Id) or else Is_Array_Type (Id));
1256 return Flag121 (Implementation_Base_Type (Id));
1257 end Has_Pragma_Pack;
1258
1259 function Has_Pragma_Pure_Function (Id : E) return B is
1260 begin
1261 pragma Assert (Is_Subprogram (Id));
1262 return Flag179 (Id);
1263 end Has_Pragma_Pure_Function;
1264
1265 function Has_Pragma_Unreferenced (Id : E) return B is
1266 begin
1267 return Flag180 (Id);
1268 end Has_Pragma_Unreferenced;
1269
1270 function Has_Primitive_Operations (Id : E) return B is
1271 begin
1272 pragma Assert (Is_Type (Id));
1273 return Flag120 (Base_Type (Id));
1274 end Has_Primitive_Operations;
1275
1276 function Has_Private_Declaration (Id : E) return B is
1277 begin
1278 return Flag155 (Id);
1279 end Has_Private_Declaration;
1280
1281 function Has_Qualified_Name (Id : E) return B is
1282 begin
1283 return Flag161 (Id);
1284 end Has_Qualified_Name;
1285
1286 function Has_Record_Rep_Clause (Id : E) return B is
1287 begin
1288 pragma Assert (Is_Record_Type (Id));
1289 return Flag65 (Implementation_Base_Type (Id));
1290 end Has_Record_Rep_Clause;
1291
1292 function Has_Recursive_Call (Id : E) return B is
1293 begin
1294 pragma Assert (Is_Subprogram (Id));
1295 return Flag143 (Id);
1296 end Has_Recursive_Call;
1297
1298 function Has_Size_Clause (Id : E) return B is
1299 begin
1300 return Flag29 (Id);
1301 end Has_Size_Clause;
1302
1303 function Has_Small_Clause (Id : E) return B is
1304 begin
1305 return Flag67 (Id);
1306 end Has_Small_Clause;
1307
1308 function Has_Specified_Layout (Id : E) return B is
1309 begin
1310 pragma Assert (Is_Type (Id));
1311 return Flag100 (Implementation_Base_Type (Id));
1312 end Has_Specified_Layout;
1313
1314 function Has_Specified_Stream_Input (Id : E) return B is
1315 begin
1316 pragma Assert (Is_Type (Id));
1317 return Flag190 (Id);
1318 end Has_Specified_Stream_Input;
1319
1320 function Has_Specified_Stream_Output (Id : E) return B is
1321 begin
1322 pragma Assert (Is_Type (Id));
1323 return Flag191 (Id);
1324 end Has_Specified_Stream_Output;
1325
1326 function Has_Specified_Stream_Read (Id : E) return B is
1327 begin
1328 pragma Assert (Is_Type (Id));
1329 return Flag192 (Id);
1330 end Has_Specified_Stream_Read;
1331
1332 function Has_Specified_Stream_Write (Id : E) return B is
1333 begin
1334 pragma Assert (Is_Type (Id));
1335 return Flag193 (Id);
1336 end Has_Specified_Stream_Write;
1337
1338 function Has_Storage_Size_Clause (Id : E) return B is
1339 begin
1340 pragma Assert (Is_Access_Type (Id) or else Is_Task_Type (Id));
1341 return Flag23 (Implementation_Base_Type (Id));
1342 end Has_Storage_Size_Clause;
1343
1344 function Has_Stream_Size_Clause (Id : E) return B is
1345 begin
1346 pragma Assert (Is_Elementary_Type (Id));
1347 return Flag184 (Id);
1348 end Has_Stream_Size_Clause;
1349
1350 function Has_Subprogram_Descriptor (Id : E) return B is
1351 begin
1352 return Flag93 (Id);
1353 end Has_Subprogram_Descriptor;
1354
1355 function Has_Task (Id : E) return B is
1356 begin
1357 return Flag30 (Base_Type (Id));
1358 end Has_Task;
1359
1360 function Has_Unchecked_Union (Id : E) return B is
1361 begin
1362 return Flag123 (Base_Type (Id));
1363 end Has_Unchecked_Union;
1364
1365 function Has_Unknown_Discriminants (Id : E) return B is
1366 begin
1367 pragma Assert (Is_Type (Id));
1368 return Flag72 (Id);
1369 end Has_Unknown_Discriminants;
1370
1371 function Has_Volatile_Components (Id : E) return B is
1372 begin
1373 return Flag87 (Implementation_Base_Type (Id));
1374 end Has_Volatile_Components;
1375
1376 function Has_Xref_Entry (Id : E) return B is
1377 begin
1378 return Flag182 (Implementation_Base_Type (Id));
1379 end Has_Xref_Entry;
1380
1381 function Hiding_Loop_Variable (Id : E) return E is
1382 begin
1383 pragma Assert (Ekind (Id) = E_Variable);
1384 return Node8 (Id);
1385 end Hiding_Loop_Variable;
1386
1387 function Homonym (Id : E) return E is
1388 begin
1389 return Node4 (Id);
1390 end Homonym;
1391
1392 function In_Package_Body (Id : E) return B is
1393 begin
1394 return Flag48 (Id);
1395 end In_Package_Body;
1396
1397 function In_Private_Part (Id : E) return B is
1398 begin
1399 return Flag45 (Id);
1400 end In_Private_Part;
1401
1402 function In_Use (Id : E) return B is
1403 begin
1404 pragma Assert (Nkind (Id) in N_Entity);
1405 return Flag8 (Id);
1406 end In_Use;
1407
1408 function Inner_Instances (Id : E) return L is
1409 begin
1410 return Elist23 (Id);
1411 end Inner_Instances;
1412
1413 function Interface_Name (Id : E) return N is
1414 begin
1415 return Node21 (Id);
1416 end Interface_Name;
1417
1418 function Is_Abstract (Id : E) return B is
1419 begin
1420 return Flag19 (Id);
1421 end Is_Abstract;
1422
1423 function Is_Local_Anonymous_Access (Id : E) return B is
1424 begin
1425 pragma Assert (Is_Access_Type (Id));
1426 return Flag194 (Id);
1427 end Is_Local_Anonymous_Access;
1428
1429 function Is_Access_Constant (Id : E) return B is
1430 begin
1431 pragma Assert (Is_Access_Type (Id));
1432 return Flag69 (Id);
1433 end Is_Access_Constant;
1434
1435 function Is_Ada_2005 (Id : E) return B is
1436 begin
1437 return Flag185 (Id);
1438 end Is_Ada_2005;
1439
1440 function Is_Aliased (Id : E) return B is
1441 begin
1442 pragma Assert (Nkind (Id) in N_Entity);
1443 return Flag15 (Id);
1444 end Is_Aliased;
1445
1446 function Is_AST_Entry (Id : E) return B is
1447 begin
1448 pragma Assert (Is_Entry (Id));
1449 return Flag132 (Id);
1450 end Is_AST_Entry;
1451
1452 function Is_Asynchronous (Id : E) return B is
1453 begin
1454 pragma Assert
1455 (Ekind (Id) = E_Procedure or else Is_Type (Id));
1456 return Flag81 (Id);
1457 end Is_Asynchronous;
1458
1459 function Is_Atomic (Id : E) return B is
1460 begin
1461 return Flag85 (Id);
1462 end Is_Atomic;
1463
1464 function Is_Bit_Packed_Array (Id : E) return B is
1465 begin
1466 return Flag122 (Implementation_Base_Type (Id));
1467 end Is_Bit_Packed_Array;
1468
1469 function Is_Called (Id : E) return B is
1470 begin
1471 pragma Assert
1472 (Ekind (Id) = E_Procedure or else Ekind (Id) = E_Function);
1473 return Flag102 (Id);
1474 end Is_Called;
1475
1476 function Is_Character_Type (Id : E) return B is
1477 begin
1478 return Flag63 (Id);
1479 end Is_Character_Type;
1480
1481 function Is_Child_Unit (Id : E) return B is
1482 begin
1483 return Flag73 (Id);
1484 end Is_Child_Unit;
1485
1486 function Is_Class_Wide_Equivalent_Type (Id : E) return B is
1487 begin
1488 return Flag35 (Id);
1489 end Is_Class_Wide_Equivalent_Type;
1490
1491 function Is_Compilation_Unit (Id : E) return B is
1492 begin
1493 return Flag149 (Id);
1494 end Is_Compilation_Unit;
1495
1496 function Is_Completely_Hidden (Id : E) return B is
1497 begin
1498 pragma Assert (Ekind (Id) = E_Discriminant);
1499 return Flag103 (Id);
1500 end Is_Completely_Hidden;
1501
1502 function Is_Constr_Subt_For_U_Nominal (Id : E) return B is
1503 begin
1504 return Flag80 (Id);
1505 end Is_Constr_Subt_For_U_Nominal;
1506
1507 function Is_Constr_Subt_For_UN_Aliased (Id : E) return B is
1508 begin
1509 return Flag141 (Id);
1510 end Is_Constr_Subt_For_UN_Aliased;
1511
1512 function Is_Constrained (Id : E) return B is
1513 begin
1514 pragma Assert (Nkind (Id) in N_Entity);
1515 return Flag12 (Id);
1516 end Is_Constrained;
1517
1518 function Is_Constructor (Id : E) return B is
1519 begin
1520 return Flag76 (Id);
1521 end Is_Constructor;
1522
1523 function Is_Controlled (Id : E) return B is
1524 begin
1525 return Flag42 (Base_Type (Id));
1526 end Is_Controlled;
1527
1528 function Is_Controlling_Formal (Id : E) return B is
1529 begin
1530 pragma Assert (Is_Formal (Id));
1531 return Flag97 (Id);
1532 end Is_Controlling_Formal;
1533
1534 function Is_CPP_Class (Id : E) return B is
1535 begin
1536 return Flag74 (Id);
1537 end Is_CPP_Class;
1538
1539 function Is_Discrim_SO_Function (Id : E) return B is
1540 begin
1541 return Flag176 (Id);
1542 end Is_Discrim_SO_Function;
1543
1544 function Is_Dispatching_Operation (Id : E) return B is
1545 begin
1546 pragma Assert (Nkind (Id) in N_Entity);
1547 return Flag6 (Id);
1548 end Is_Dispatching_Operation;
1549
1550 function Is_Eliminated (Id : E) return B is
1551 begin
1552 return Flag124 (Id);
1553 end Is_Eliminated;
1554
1555 function Is_Entry_Formal (Id : E) return B is
1556 begin
1557 return Flag52 (Id);
1558 end Is_Entry_Formal;
1559
1560 function Is_Exported (Id : E) return B is
1561 begin
1562 return Flag99 (Id);
1563 end Is_Exported;
1564
1565 function Is_First_Subtype (Id : E) return B is
1566 begin
1567 return Flag70 (Id);
1568 end Is_First_Subtype;
1569
1570 function Is_For_Access_Subtype (Id : E) return B is
1571 begin
1572 pragma Assert
1573 (Ekind (Id) = E_Record_Subtype
1574 or else
1575 Ekind (Id) = E_Private_Subtype);
1576 return Flag118 (Id);
1577 end Is_For_Access_Subtype;
1578
1579 function Is_Formal_Subprogram (Id : E) return B is
1580 begin
1581 return Flag111 (Id);
1582 end Is_Formal_Subprogram;
1583
1584 function Is_Frozen (Id : E) return B is
1585 begin
1586 return Flag4 (Id);
1587 end Is_Frozen;
1588
1589 function Is_Generic_Actual_Type (Id : E) return B is
1590 begin
1591 pragma Assert (Is_Type (Id));
1592 return Flag94 (Id);
1593 end Is_Generic_Actual_Type;
1594
1595 function Is_Generic_Instance (Id : E) return B is
1596 begin
1597 return Flag130 (Id);
1598 end Is_Generic_Instance;
1599
1600 function Is_Generic_Type (Id : E) return B is
1601 begin
1602 pragma Assert (Nkind (Id) in N_Entity);
1603 return Flag13 (Id);
1604 end Is_Generic_Type;
1605
1606 function Is_Hidden (Id : E) return B is
1607 begin
1608 return Flag57 (Id);
1609 end Is_Hidden;
1610
1611 function Is_Hidden_Open_Scope (Id : E) return B is
1612 begin
1613 return Flag171 (Id);
1614 end Is_Hidden_Open_Scope;
1615
1616 function Is_Immediately_Visible (Id : E) return B is
1617 begin
1618 pragma Assert (Nkind (Id) in N_Entity);
1619 return Flag7 (Id);
1620 end Is_Immediately_Visible;
1621
1622 function Is_Imported (Id : E) return B is
1623 begin
1624 return Flag24 (Id);
1625 end Is_Imported;
1626
1627 function Is_Inlined (Id : E) return B is
1628 begin
1629 return Flag11 (Id);
1630 end Is_Inlined;
1631
1632 function Is_Interface (Id : E) return B is
1633 begin
1634 return Flag186 (Id);
1635 end Is_Interface;
1636
1637 function Is_Instantiated (Id : E) return B is
1638 begin
1639 return Flag126 (Id);
1640 end Is_Instantiated;
1641
1642 function Is_Internal (Id : E) return B is
1643 begin
1644 pragma Assert (Nkind (Id) in N_Entity);
1645 return Flag17 (Id);
1646 end Is_Internal;
1647
1648 function Is_Interrupt_Handler (Id : E) return B is
1649 begin
1650 pragma Assert (Nkind (Id) in N_Entity);
1651 return Flag89 (Id);
1652 end Is_Interrupt_Handler;
1653
1654 function Is_Intrinsic_Subprogram (Id : E) return B is
1655 begin
1656 return Flag64 (Id);
1657 end Is_Intrinsic_Subprogram;
1658
1659 function Is_Itype (Id : E) return B is
1660 begin
1661 return Flag91 (Id);
1662 end Is_Itype;
1663
1664 function Is_Known_Non_Null (Id : E) return B is
1665 begin
1666 return Flag37 (Id);
1667 end Is_Known_Non_Null;
1668
1669 function Is_Known_Valid (Id : E) return B is
1670 begin
1671 return Flag170 (Id);
1672 end Is_Known_Valid;
1673
1674 function Is_Limited_Composite (Id : E) return B is
1675 begin
1676 return Flag106 (Id);
1677 end Is_Limited_Composite;
1678
1679 function Is_Limited_Interface (Id : E) return B is
1680 begin
1681 pragma Assert (Is_Interface (Id));
1682 return Flag197 (Id);
1683 end Is_Limited_Interface;
1684
1685 function Is_Limited_Record (Id : E) return B is
1686 begin
1687 return Flag25 (Id);
1688 end Is_Limited_Record;
1689
1690 function Is_Machine_Code_Subprogram (Id : E) return B is
1691 begin
1692 pragma Assert (Is_Subprogram (Id));
1693 return Flag137 (Id);
1694 end Is_Machine_Code_Subprogram;
1695
1696 function Is_Non_Static_Subtype (Id : E) return B is
1697 begin
1698 pragma Assert (Is_Type (Id));
1699 return Flag109 (Id);
1700 end Is_Non_Static_Subtype;
1701
1702 function Is_Null_Init_Proc (Id : E) return B is
1703 begin
1704 pragma Assert (Ekind (Id) = E_Procedure);
1705 return Flag178 (Id);
1706 end Is_Null_Init_Proc;
1707
1708 function Is_Obsolescent (Id : E) return B is
1709 begin
1710 return Flag153 (Id);
1711 end Is_Obsolescent;
1712
1713 function Is_Optional_Parameter (Id : E) return B is
1714 begin
1715 pragma Assert (Is_Formal (Id));
1716 return Flag134 (Id);
1717 end Is_Optional_Parameter;
1718
1719 function Is_Overriding_Operation (Id : E) return B is
1720 begin
1721 pragma Assert (Is_Subprogram (Id));
1722 return Flag39 (Id);
1723 end Is_Overriding_Operation;
1724
1725 function Is_Package_Body_Entity (Id : E) return B is
1726 begin
1727 return Flag160 (Id);
1728 end Is_Package_Body_Entity;
1729
1730 function Is_Packed (Id : E) return B is
1731 begin
1732 return Flag51 (Implementation_Base_Type (Id));
1733 end Is_Packed;
1734
1735 function Is_Packed_Array_Type (Id : E) return B is
1736 begin
1737 return Flag138 (Id);
1738 end Is_Packed_Array_Type;
1739
1740 function Is_Potentially_Use_Visible (Id : E) return B is
1741 begin
1742 pragma Assert (Nkind (Id) in N_Entity);
1743 return Flag9 (Id);
1744 end Is_Potentially_Use_Visible;
1745
1746 function Is_Preelaborated (Id : E) return B is
1747 begin
1748 return Flag59 (Id);
1749 end Is_Preelaborated;
1750
1751 function Is_Primitive_Wrapper (Id : E) return B is
1752 begin
1753 pragma Assert (Ekind (Id) = E_Procedure);
1754 return Flag195 (Id);
1755 end Is_Primitive_Wrapper;
1756
1757 function Is_Private_Composite (Id : E) return B is
1758 begin
1759 pragma Assert (Is_Type (Id));
1760 return Flag107 (Id);
1761 end Is_Private_Composite;
1762
1763 function Is_Private_Descendant (Id : E) return B is
1764 begin
1765 return Flag53 (Id);
1766 end Is_Private_Descendant;
1767
1768 function Is_Protected_Interface (Id : E) return B is
1769 begin
1770 pragma Assert (Is_Interface (Id));
1771 return Flag198 (Id);
1772 end Is_Protected_Interface;
1773
1774 function Is_Public (Id : E) return B is
1775 begin
1776 pragma Assert (Nkind (Id) in N_Entity);
1777 return Flag10 (Id);
1778 end Is_Public;
1779
1780 function Is_Pure (Id : E) return B is
1781 begin
1782 return Flag44 (Id);
1783 end Is_Pure;
1784
1785 function Is_Pure_Unit_Access_Type (Id : E) return B is
1786 begin
1787 pragma Assert (Is_Access_Type (Id));
1788 return Flag189 (Id);
1789 end Is_Pure_Unit_Access_Type;
1790
1791 function Is_Remote_Call_Interface (Id : E) return B is
1792 begin
1793 return Flag62 (Id);
1794 end Is_Remote_Call_Interface;
1795
1796 function Is_Remote_Types (Id : E) return B is
1797 begin
1798 return Flag61 (Id);
1799 end Is_Remote_Types;
1800
1801 function Is_Renaming_Of_Object (Id : E) return B is
1802 begin
1803 return Flag112 (Id);
1804 end Is_Renaming_Of_Object;
1805
1806 function Is_Shared_Passive (Id : E) return B is
1807 begin
1808 return Flag60 (Id);
1809 end Is_Shared_Passive;
1810
1811 function Is_Statically_Allocated (Id : E) return B is
1812 begin
1813 return Flag28 (Id);
1814 end Is_Statically_Allocated;
1815
1816 function Is_Synchronized_Interface (Id : E) return B is
1817 begin
1818 pragma Assert (Is_Interface (Id));
1819 return Flag199 (Id);
1820 end Is_Synchronized_Interface;
1821
1822 function Is_Tag (Id : E) return B is
1823 begin
1824 pragma Assert (Nkind (Id) in N_Entity);
1825 return Flag78 (Id);
1826 end Is_Tag;
1827
1828 function Is_Tagged_Type (Id : E) return B is
1829 begin
1830 return Flag55 (Id);
1831 end Is_Tagged_Type;
1832
1833 function Is_Task_Interface (Id : E) return B is
1834 begin
1835 pragma Assert (Is_Interface (Id));
1836 return Flag200 (Id);
1837 end Is_Task_Interface;
1838
1839 function Is_Thread_Body (Id : E) return B is
1840 begin
1841 return Flag77 (Id);
1842 end Is_Thread_Body;
1843
1844 function Is_True_Constant (Id : E) return B is
1845 begin
1846 return Flag163 (Id);
1847 end Is_True_Constant;
1848
1849 function Is_Unchecked_Union (Id : E) return B is
1850 begin
1851 return Flag117 (Id);
1852 end Is_Unchecked_Union;
1853
1854 function Is_Unsigned_Type (Id : E) return B is
1855 begin
1856 pragma Assert (Is_Type (Id));
1857 return Flag144 (Id);
1858 end Is_Unsigned_Type;
1859
1860 function Is_Valued_Procedure (Id : E) return B is
1861 begin
1862 pragma Assert (Ekind (Id) = E_Procedure);
1863 return Flag127 (Id);
1864 end Is_Valued_Procedure;
1865
1866 function Is_Visible_Child_Unit (Id : E) return B is
1867 begin
1868 pragma Assert (Is_Child_Unit (Id));
1869 return Flag116 (Id);
1870 end Is_Visible_Child_Unit;
1871
1872 function Is_VMS_Exception (Id : E) return B is
1873 begin
1874 return Flag133 (Id);
1875 end Is_VMS_Exception;
1876
1877 function Is_Volatile (Id : E) return B is
1878 begin
1879 pragma Assert (Nkind (Id) in N_Entity);
1880 if Is_Type (Id) then
1881 return Flag16 (Base_Type (Id));
1882 else
1883 return Flag16 (Id);
1884 end if;
1885 end Is_Volatile;
1886
1887 function Kill_Elaboration_Checks (Id : E) return B is
1888 begin
1889 return Flag32 (Id);
1890 end Kill_Elaboration_Checks;
1891
1892 function Kill_Range_Checks (Id : E) return B is
1893 begin
1894 return Flag33 (Id);
1895 end Kill_Range_Checks;
1896
1897 function Kill_Tag_Checks (Id : E) return B is
1898 begin
1899 return Flag34 (Id);
1900 end Kill_Tag_Checks;
1901
1902 function Last_Entity (Id : E) return E is
1903 begin
1904 return Node20 (Id);
1905 end Last_Entity;
1906
1907 function Limited_View (Id : E) return E is
1908 begin
1909 pragma Assert (Ekind (Id) = E_Package);
1910 return Node23 (Id);
1911 end Limited_View;
1912
1913 function Lit_Indexes (Id : E) return E is
1914 begin
1915 pragma Assert (Is_Enumeration_Type (Id));
1916 return Node15 (Id);
1917 end Lit_Indexes;
1918
1919 function Lit_Strings (Id : E) return E is
1920 begin
1921 pragma Assert (Is_Enumeration_Type (Id));
1922 return Node16 (Id);
1923 end Lit_Strings;
1924
1925 function Machine_Radix_10 (Id : E) return B is
1926 begin
1927 pragma Assert (Is_Decimal_Fixed_Point_Type (Id));
1928 return Flag84 (Id);
1929 end Machine_Radix_10;
1930
1931 function Master_Id (Id : E) return E is
1932 begin
1933 return Node17 (Id);
1934 end Master_Id;
1935
1936 function Materialize_Entity (Id : E) return B is
1937 begin
1938 return Flag168 (Id);
1939 end Materialize_Entity;
1940
1941 function Mechanism (Id : E) return M is
1942 begin
1943 pragma Assert (Ekind (Id) = E_Function or else Is_Formal (Id));
1944 return UI_To_Int (Uint8 (Id));
1945 end Mechanism;
1946
1947 function Modulus (Id : E) return Uint is
1948 begin
1949 pragma Assert (Is_Modular_Integer_Type (Id));
1950 return Uint17 (Base_Type (Id));
1951 end Modulus;
1952
1953 function Must_Be_On_Byte_Boundary (Id : E) return B is
1954 begin
1955 pragma Assert (Is_Type (Id));
1956 return Flag183 (Id);
1957 end Must_Be_On_Byte_Boundary;
1958
1959 function Needs_Debug_Info (Id : E) return B is
1960 begin
1961 return Flag147 (Id);
1962 end Needs_Debug_Info;
1963
1964 function Needs_No_Actuals (Id : E) return B is
1965 begin
1966 pragma Assert
1967 (Is_Overloadable (Id)
1968 or else Ekind (Id) = E_Subprogram_Type
1969 or else Ekind (Id) = E_Entry_Family);
1970 return Flag22 (Id);
1971 end Needs_No_Actuals;
1972
1973 function Never_Set_In_Source (Id : E) return B is
1974 begin
1975 return Flag115 (Id);
1976 end Never_Set_In_Source;
1977
1978 function Next_Inlined_Subprogram (Id : E) return E is
1979 begin
1980 return Node12 (Id);
1981 end Next_Inlined_Subprogram;
1982
1983 function No_Pool_Assigned (Id : E) return B is
1984 begin
1985 pragma Assert (Is_Access_Type (Id));
1986 return Flag131 (Root_Type (Id));
1987 end No_Pool_Assigned;
1988
1989 function No_Return (Id : E) return B is
1990 begin
1991 pragma Assert
1992 (Id = Any_Id
1993 or else Ekind (Id) = E_Procedure
1994 or else Ekind (Id) = E_Generic_Procedure);
1995 return Flag113 (Id);
1996 end No_Return;
1997
1998 function No_Strict_Aliasing (Id : E) return B is
1999 begin
2000 pragma Assert (Is_Access_Type (Id));
2001 return Flag136 (Base_Type (Id));
2002 end No_Strict_Aliasing;
2003
2004 function Non_Binary_Modulus (Id : E) return B is
2005 begin
2006 pragma Assert (Is_Modular_Integer_Type (Id));
2007 return Flag58 (Base_Type (Id));
2008 end Non_Binary_Modulus;
2009
2010 function Non_Limited_View (Id : E) return E is
2011 begin
2012 pragma Assert (False
2013 or else Ekind (Id) = E_Incomplete_Type);
2014 return Node17 (Id);
2015 end Non_Limited_View;
2016
2017 function Nonzero_Is_True (Id : E) return B is
2018 begin
2019 pragma Assert (Root_Type (Id) = Standard_Boolean);
2020 return Flag162 (Base_Type (Id));
2021 end Nonzero_Is_True;
2022
2023 function Normalized_First_Bit (Id : E) return U is
2024 begin
2025 pragma Assert
2026 (Ekind (Id) = E_Component or else Ekind (Id) = E_Discriminant);
2027 return Uint8 (Id);
2028 end Normalized_First_Bit;
2029
2030 function Normalized_Position (Id : E) return U is
2031 begin
2032 pragma Assert
2033 (Ekind (Id) = E_Component or else Ekind (Id) = E_Discriminant);
2034 return Uint14 (Id);
2035 end Normalized_Position;
2036
2037 function Normalized_Position_Max (Id : E) return U is
2038 begin
2039 pragma Assert
2040 (Ekind (Id) = E_Component or else Ekind (Id) = E_Discriminant);
2041 return Uint10 (Id);
2042 end Normalized_Position_Max;
2043
2044 function Object_Ref (Id : E) return E is
2045 begin
2046 pragma Assert (Ekind (Id) = E_Protected_Body);
2047 return Node17 (Id);
2048 end Object_Ref;
2049
2050 function Obsolescent_Warning (Id : E) return N is
2051 begin
2052 pragma Assert
2053 (Is_Subprogram (Id) or else Is_Package_Or_Generic_Package (Id));
2054 return Node24 (Id);
2055 end Obsolescent_Warning;
2056
2057 function Original_Access_Type (Id : E) return E is
2058 begin
2059 pragma Assert
2060 (Ekind (Id) = E_Access_Subprogram_Type
2061 or else Ekind (Id) = E_Access_Protected_Subprogram_Type);
2062 return Node21 (Id);
2063 end Original_Access_Type;
2064
2065 function Original_Array_Type (Id : E) return E is
2066 begin
2067 pragma Assert (Is_Array_Type (Id) or else Is_Modular_Integer_Type (Id));
2068 return Node21 (Id);
2069 end Original_Array_Type;
2070
2071 function Original_Record_Component (Id : E) return E is
2072 begin
2073 pragma Assert
2074 (Ekind (Id) = E_Void
2075 or else Ekind (Id) = E_Component
2076 or else Ekind (Id) = E_Discriminant);
2077 return Node22 (Id);
2078 end Original_Record_Component;
2079
2080 function Overridden_Operation (Id : E) return E is
2081 begin
2082 return Node26 (Id);
2083 end Overridden_Operation;
2084
2085 function Package_Instantiation (Id : E) return N is
2086 begin
2087 pragma Assert
2088 (False
2089 or else Ekind (Id) = E_Generic_Package
2090 or else Ekind (Id) = E_Package);
2091 return Node26 (Id);
2092 end Package_Instantiation;
2093
2094 function Packed_Array_Type (Id : E) return E is
2095 begin
2096 pragma Assert (Is_Array_Type (Id));
2097 return Node23 (Id);
2098 end Packed_Array_Type;
2099
2100 function Parent_Subtype (Id : E) return E is
2101 begin
2102 pragma Assert (Ekind (Id) = E_Record_Type);
2103 return Node19 (Id);
2104 end Parent_Subtype;
2105
2106 function Primitive_Operations (Id : E) return L is
2107 begin
2108 pragma Assert (Is_Tagged_Type (Id));
2109 return Elist15 (Id);
2110 end Primitive_Operations;
2111
2112 function Prival (Id : E) return E is
2113 begin
2114 pragma Assert (Is_Protected_Private (Id));
2115 return Node17 (Id);
2116 end Prival;
2117
2118 function Privals_Chain (Id : E) return L is
2119 begin
2120 pragma Assert (Is_Overloadable (Id)
2121 or else Ekind (Id) = E_Entry_Family);
2122 return Elist23 (Id);
2123 end Privals_Chain;
2124
2125 function Private_Dependents (Id : E) return L is
2126 begin
2127 pragma Assert (Is_Incomplete_Or_Private_Type (Id));
2128 return Elist18 (Id);
2129 end Private_Dependents;
2130
2131 function Private_View (Id : E) return N is
2132 begin
2133 pragma Assert (Is_Private_Type (Id));
2134 return Node22 (Id);
2135 end Private_View;
2136
2137 function Protected_Body_Subprogram (Id : E) return E is
2138 begin
2139 pragma Assert (Is_Subprogram (Id) or else Is_Entry (Id));
2140 return Node11 (Id);
2141 end Protected_Body_Subprogram;
2142
2143 function Protected_Formal (Id : E) return E is
2144 begin
2145 pragma Assert (Is_Formal (Id));
2146 return Node22 (Id);
2147 end Protected_Formal;
2148
2149 function Protected_Operation (Id : E) return N is
2150 begin
2151 pragma Assert (Is_Protected_Private (Id));
2152 return Node23 (Id);
2153 end Protected_Operation;
2154
2155 function Reachable (Id : E) return B is
2156 begin
2157 return Flag49 (Id);
2158 end Reachable;
2159
2160 function Referenced (Id : E) return B is
2161 begin
2162 return Flag156 (Id);
2163 end Referenced;
2164
2165 function Referenced_As_LHS (Id : E) return B is
2166 begin
2167 return Flag36 (Id);
2168 end Referenced_As_LHS;
2169
2170 function Referenced_Object (Id : E) return N is
2171 begin
2172 pragma Assert (Is_Type (Id));
2173 return Node10 (Id);
2174 end Referenced_Object;
2175
2176 function Register_Exception_Call (Id : E) return N is
2177 begin
2178 pragma Assert (Ekind (Id) = E_Exception);
2179 return Node20 (Id);
2180 end Register_Exception_Call;
2181
2182 function Related_Array_Object (Id : E) return E is
2183 begin
2184 pragma Assert (Is_Array_Type (Id));
2185 return Node19 (Id);
2186 end Related_Array_Object;
2187
2188 function Related_Instance (Id : E) return E is
2189 begin
2190 pragma Assert
2191 (Ekind (Id) = E_Package or else Ekind (Id) = E_Package_Body);
2192 return Node15 (Id);
2193 end Related_Instance;
2194
2195 function Renamed_Entity (Id : E) return N is
2196 begin
2197 return Node18 (Id);
2198 end Renamed_Entity;
2199
2200 function Renamed_Object (Id : E) return N is
2201 begin
2202 return Node18 (Id);
2203 end Renamed_Object;
2204
2205 function Renaming_Map (Id : E) return U is
2206 begin
2207 return Uint9 (Id);
2208 end Renaming_Map;
2209
2210 function Return_Present (Id : E) return B is
2211 begin
2212 return Flag54 (Id);
2213 end Return_Present;
2214
2215 function Returns_By_Ref (Id : E) return B is
2216 begin
2217 return Flag90 (Id);
2218 end Returns_By_Ref;
2219
2220 function Reverse_Bit_Order (Id : E) return B is
2221 begin
2222 pragma Assert (Is_Record_Type (Id));
2223 return Flag164 (Base_Type (Id));
2224 end Reverse_Bit_Order;
2225
2226 function RM_Size (Id : E) return U is
2227 begin
2228 pragma Assert (Is_Type (Id));
2229 return Uint13 (Id);
2230 end RM_Size;
2231
2232 function Scalar_Range (Id : E) return N is
2233 begin
2234 return Node20 (Id);
2235 end Scalar_Range;
2236
2237 function Scale_Value (Id : E) return U is
2238 begin
2239 return Uint15 (Id);
2240 end Scale_Value;
2241
2242 function Scope_Depth_Value (Id : E) return U is
2243 begin
2244 return Uint22 (Id);
2245 end Scope_Depth_Value;
2246
2247 function Sec_Stack_Needed_For_Return (Id : E) return B is
2248 begin
2249 return Flag167 (Id);
2250 end Sec_Stack_Needed_For_Return;
2251
2252 function Shadow_Entities (Id : E) return S is
2253 begin
2254 pragma Assert
2255 (Ekind (Id) = E_Package or else Ekind (Id) = E_Generic_Package);
2256 return List14 (Id);
2257 end Shadow_Entities;
2258
2259 function Shared_Var_Assign_Proc (Id : E) return E is
2260 begin
2261 pragma Assert (Ekind (Id) = E_Variable);
2262 return Node22 (Id);
2263 end Shared_Var_Assign_Proc;
2264
2265 function Shared_Var_Read_Proc (Id : E) return E is
2266 begin
2267 pragma Assert (Ekind (Id) = E_Variable);
2268 return Node15 (Id);
2269 end Shared_Var_Read_Proc;
2270
2271 function Size_Check_Code (Id : E) return N is
2272 begin
2273 pragma Assert (Ekind (Id) = E_Constant or else Ekind (Id) = E_Variable);
2274 return Node19 (Id);
2275 end Size_Check_Code;
2276
2277 function Size_Depends_On_Discriminant (Id : E) return B is
2278 begin
2279 return Flag177 (Id);
2280 end Size_Depends_On_Discriminant;
2281
2282 function Size_Known_At_Compile_Time (Id : E) return B is
2283 begin
2284 return Flag92 (Id);
2285 end Size_Known_At_Compile_Time;
2286
2287 function Small_Value (Id : E) return R is
2288 begin
2289 pragma Assert (Is_Fixed_Point_Type (Id));
2290 return Ureal21 (Id);
2291 end Small_Value;
2292
2293 function Spec_Entity (Id : E) return E is
2294 begin
2295 pragma Assert
2296 (Ekind (Id) = E_Package_Body or else Is_Formal (Id));
2297 return Node19 (Id);
2298 end Spec_Entity;
2299
2300 function Storage_Size_Variable (Id : E) return E is
2301 begin
2302 pragma Assert (Is_Access_Type (Id) or else Is_Task_Type (Id));
2303 return Node15 (Implementation_Base_Type (Id));
2304 end Storage_Size_Variable;
2305
2306 function Stored_Constraint (Id : E) return L is
2307 begin
2308 pragma Assert
2309 (Is_Composite_Type (Id) and then not Is_Array_Type (Id));
2310 return Elist23 (Id);
2311 end Stored_Constraint;
2312
2313 function Strict_Alignment (Id : E) return B is
2314 begin
2315 return Flag145 (Implementation_Base_Type (Id));
2316 end Strict_Alignment;
2317
2318 function String_Literal_Length (Id : E) return U is
2319 begin
2320 return Uint16 (Id);
2321 end String_Literal_Length;
2322
2323 function String_Literal_Low_Bound (Id : E) return N is
2324 begin
2325 return Node15 (Id);
2326 end String_Literal_Low_Bound;
2327
2328 function Suppress_Elaboration_Warnings (Id : E) return B is
2329 begin
2330 return Flag148 (Id);
2331 end Suppress_Elaboration_Warnings;
2332
2333 function Suppress_Init_Proc (Id : E) return B is
2334 begin
2335 return Flag105 (Base_Type (Id));
2336 end Suppress_Init_Proc;
2337
2338 function Suppress_Style_Checks (Id : E) return B is
2339 begin
2340 return Flag165 (Id);
2341 end Suppress_Style_Checks;
2342
2343 function Task_Body_Procedure (Id : E) return N is
2344 begin
2345 pragma Assert (Ekind (Id) = E_Task_Type
2346 or else Ekind (Id) = E_Task_Subtype);
2347 return Node24 (Id);
2348 end Task_Body_Procedure;
2349
2350 function Treat_As_Volatile (Id : E) return B is
2351 begin
2352 return Flag41 (Id);
2353 end Treat_As_Volatile;
2354
2355 function Underlying_Full_View (Id : E) return E is
2356 begin
2357 pragma Assert (Ekind (Id) in Private_Kind);
2358 return Node19 (Id);
2359 end Underlying_Full_View;
2360
2361 function Unset_Reference (Id : E) return N is
2362 begin
2363 return Node16 (Id);
2364 end Unset_Reference;
2365
2366 function Uses_Sec_Stack (Id : E) return B is
2367 begin
2368 return Flag95 (Id);
2369 end Uses_Sec_Stack;
2370
2371 function Vax_Float (Id : E) return B is
2372 begin
2373 return Flag151 (Base_Type (Id));
2374 end Vax_Float;
2375
2376 function Warnings_Off (Id : E) return B is
2377 begin
2378 return Flag96 (Id);
2379 end Warnings_Off;
2380
2381 function Wrapped_Entity (Id : E) return E is
2382 begin
2383 pragma Assert (Ekind (Id) = E_Procedure
2384 and then Is_Primitive_Wrapper (Id));
2385 return Node27 (Id);
2386 end Wrapped_Entity;
2387
2388 function Was_Hidden (Id : E) return B is
2389 begin
2390 return Flag196 (Id);
2391 end Was_Hidden;
2392
2393 ------------------------------
2394 -- Classification Functions --
2395 ------------------------------
2396
2397 function Is_Access_Type (Id : E) return B is
2398 begin
2399 return Ekind (Id) in Access_Kind;
2400 end Is_Access_Type;
2401
2402 function Is_Array_Type (Id : E) return B is
2403 begin
2404 return Ekind (Id) in Array_Kind;
2405 end Is_Array_Type;
2406
2407 function Is_Class_Wide_Type (Id : E) return B is
2408 begin
2409 return Ekind (Id) in Class_Wide_Kind;
2410 end Is_Class_Wide_Type;
2411
2412 function Is_Composite_Type (Id : E) return B is
2413 begin
2414 return Ekind (Id) in Composite_Kind;
2415 end Is_Composite_Type;
2416
2417 function Is_Concurrent_Body (Id : E) return B is
2418 begin
2419 return Ekind (Id) in
2420 Concurrent_Body_Kind;
2421 end Is_Concurrent_Body;
2422
2423 function Is_Concurrent_Record_Type (Id : E) return B is
2424 begin
2425 return Flag20 (Id);
2426 end Is_Concurrent_Record_Type;
2427
2428 function Is_Concurrent_Type (Id : E) return B is
2429 begin
2430 return Ekind (Id) in Concurrent_Kind;
2431 end Is_Concurrent_Type;
2432
2433 function Is_Decimal_Fixed_Point_Type (Id : E) return B is
2434 begin
2435 return Ekind (Id) in
2436 Decimal_Fixed_Point_Kind;
2437 end Is_Decimal_Fixed_Point_Type;
2438
2439 function Is_Digits_Type (Id : E) return B is
2440 begin
2441 return Ekind (Id) in Digits_Kind;
2442 end Is_Digits_Type;
2443
2444 function Is_Discrete_Or_Fixed_Point_Type (Id : E) return B is
2445 begin
2446 return Ekind (Id) in Discrete_Or_Fixed_Point_Kind;
2447 end Is_Discrete_Or_Fixed_Point_Type;
2448
2449 function Is_Discrete_Type (Id : E) return B is
2450 begin
2451 return Ekind (Id) in Discrete_Kind;
2452 end Is_Discrete_Type;
2453
2454 function Is_Elementary_Type (Id : E) return B is
2455 begin
2456 return Ekind (Id) in Elementary_Kind;
2457 end Is_Elementary_Type;
2458
2459 function Is_Entry (Id : E) return B is
2460 begin
2461 return Ekind (Id) in Entry_Kind;
2462 end Is_Entry;
2463
2464 function Is_Enumeration_Type (Id : E) return B is
2465 begin
2466 return Ekind (Id) in
2467 Enumeration_Kind;
2468 end Is_Enumeration_Type;
2469
2470 function Is_Fixed_Point_Type (Id : E) return B is
2471 begin
2472 return Ekind (Id) in
2473 Fixed_Point_Kind;
2474 end Is_Fixed_Point_Type;
2475
2476 function Is_Floating_Point_Type (Id : E) return B is
2477 begin
2478 return Ekind (Id) in Float_Kind;
2479 end Is_Floating_Point_Type;
2480
2481 function Is_Formal (Id : E) return B is
2482 begin
2483 return Ekind (Id) in Formal_Kind;
2484 end Is_Formal;
2485
2486 function Is_Generic_Subprogram (Id : E) return B is
2487 begin
2488 return Ekind (Id) in Generic_Subprogram_Kind;
2489 end Is_Generic_Subprogram;
2490
2491 function Is_Generic_Unit (Id : E) return B is
2492 begin
2493 return Ekind (Id) in Generic_Unit_Kind;
2494 end Is_Generic_Unit;
2495
2496 function Is_Incomplete_Or_Private_Type (Id : E) return B is
2497 begin
2498 return Ekind (Id) in
2499 Incomplete_Or_Private_Kind;
2500 end Is_Incomplete_Or_Private_Type;
2501
2502 function Is_Integer_Type (Id : E) return B is
2503 begin
2504 return Ekind (Id) in Integer_Kind;
2505 end Is_Integer_Type;
2506
2507 function Is_Modular_Integer_Type (Id : E) return B is
2508 begin
2509 return Ekind (Id) in
2510 Modular_Integer_Kind;
2511 end Is_Modular_Integer_Type;
2512
2513 function Is_Named_Number (Id : E) return B is
2514 begin
2515 return Ekind (Id) in Named_Kind;
2516 end Is_Named_Number;
2517
2518 function Is_Numeric_Type (Id : E) return B is
2519 begin
2520 return Ekind (Id) in Numeric_Kind;
2521 end Is_Numeric_Type;
2522
2523 function Is_Object (Id : E) return B is
2524 begin
2525 return Ekind (Id) in Object_Kind;
2526 end Is_Object;
2527
2528 function Is_Ordinary_Fixed_Point_Type (Id : E) return B is
2529 begin
2530 return Ekind (Id) in
2531 Ordinary_Fixed_Point_Kind;
2532 end Is_Ordinary_Fixed_Point_Type;
2533
2534 function Is_Overloadable (Id : E) return B is
2535 begin
2536 return Ekind (Id) in Overloadable_Kind;
2537 end Is_Overloadable;
2538
2539 function Is_Private_Type (Id : E) return B is
2540 begin
2541 return Ekind (Id) in Private_Kind;
2542 end Is_Private_Type;
2543
2544 function Is_Protected_Type (Id : E) return B is
2545 begin
2546 return Ekind (Id) in Protected_Kind;
2547 end Is_Protected_Type;
2548
2549 function Is_Real_Type (Id : E) return B is
2550 begin
2551 return Ekind (Id) in Real_Kind;
2552 end Is_Real_Type;
2553
2554 function Is_Record_Type (Id : E) return B is
2555 begin
2556 return Ekind (Id) in Record_Kind;
2557 end Is_Record_Type;
2558
2559 function Is_Scalar_Type (Id : E) return B is
2560 begin
2561 return Ekind (Id) in Scalar_Kind;
2562 end Is_Scalar_Type;
2563
2564 function Is_Signed_Integer_Type (Id : E) return B is
2565 begin
2566 return Ekind (Id) in
2567 Signed_Integer_Kind;
2568 end Is_Signed_Integer_Type;
2569
2570 function Is_Subprogram (Id : E) return B is
2571 begin
2572 return Ekind (Id) in Subprogram_Kind;
2573 end Is_Subprogram;
2574
2575 function Is_Task_Type (Id : E) return B is
2576 begin
2577 return Ekind (Id) in Task_Kind;
2578 end Is_Task_Type;
2579
2580 function Is_Type (Id : E) return B is
2581 begin
2582 return Ekind (Id) in Type_Kind;
2583 end Is_Type;
2584
2585 ------------------------------
2586 -- Attribute Set Procedures --
2587 ------------------------------
2588
2589 procedure Set_Abstract_Interfaces (Id : E; V : L) is
2590 begin
2591 pragma Assert
2592 (Ekind (Id) = E_Record_Type
2593 or else Ekind (Id) = E_Record_Subtype
2594 or else Ekind (Id) = E_Record_Type_With_Private
2595 or else Ekind (Id) = E_Record_Subtype_With_Private
2596 or else Ekind (Id) = E_Class_Wide_Type);
2597 Set_Elist24 (Id, V);
2598 end Set_Abstract_Interfaces;
2599
2600 procedure Set_Abstract_Interface_Alias (Id : E; V : E) is
2601 begin
2602 pragma Assert
2603 (Ekind (Id) = E_Procedure or Ekind (Id) = E_Function);
2604 Set_Node25 (Id, V);
2605 end Set_Abstract_Interface_Alias;
2606
2607 procedure Set_Accept_Address (Id : E; V : L) is
2608 begin
2609 Set_Elist21 (Id, V);
2610 end Set_Accept_Address;
2611
2612 procedure Set_Access_Disp_Table (Id : E; V : L) is
2613 begin
2614 pragma Assert (Is_Tagged_Type (Id) and then Id = Base_Type (Id));
2615 Set_Elist16 (Id, V);
2616 end Set_Access_Disp_Table;
2617
2618 procedure Set_Associated_Final_Chain (Id : E; V : E) is
2619 begin
2620 pragma Assert (Is_Access_Type (Id));
2621 Set_Node23 (Id, V);
2622 end Set_Associated_Final_Chain;
2623
2624 procedure Set_Associated_Formal_Package (Id : E; V : E) is
2625 begin
2626 Set_Node12 (Id, V);
2627 end Set_Associated_Formal_Package;
2628
2629 procedure Set_Associated_Node_For_Itype (Id : E; V : E) is
2630 begin
2631 Set_Node8 (Id, V);
2632 end Set_Associated_Node_For_Itype;
2633
2634 procedure Set_Associated_Storage_Pool (Id : E; V : E) is
2635 begin
2636 pragma Assert (Is_Access_Type (Id) and then Id = Base_Type (Id));
2637 Set_Node22 (Id, V);
2638 end Set_Associated_Storage_Pool;
2639
2640 procedure Set_Actual_Subtype (Id : E; V : E) is
2641 begin
2642 pragma Assert
2643 (Ekind (Id) = E_Constant
2644 or else Ekind (Id) = E_Variable
2645 or else Ekind (Id) = E_Generic_In_Out_Parameter
2646 or else Ekind (Id) in E_In_Parameter .. E_In_Out_Parameter);
2647 Set_Node17 (Id, V);
2648 end Set_Actual_Subtype;
2649
2650 procedure Set_Address_Taken (Id : E; V : B := True) is
2651 begin
2652 Set_Flag104 (Id, V);
2653 end Set_Address_Taken;
2654
2655 procedure Set_Alias (Id : E; V : E) is
2656 begin
2657 pragma Assert
2658 (Is_Overloadable (Id) or else Ekind (Id) = E_Subprogram_Type);
2659 Set_Node18 (Id, V);
2660 end Set_Alias;
2661
2662 procedure Set_Alignment (Id : E; V : U) is
2663 begin
2664 pragma Assert (Is_Type (Id)
2665 or else Is_Formal (Id)
2666 or else Ekind (Id) = E_Loop_Parameter
2667 or else Ekind (Id) = E_Constant
2668 or else Ekind (Id) = E_Exception
2669 or else Ekind (Id) = E_Variable);
2670 Set_Uint14 (Id, V);
2671 end Set_Alignment;
2672
2673 procedure Set_Barrier_Function (Id : E; V : N) is
2674 begin
2675 pragma Assert (Is_Entry (Id));
2676 Set_Node12 (Id, V);
2677 end Set_Barrier_Function;
2678
2679 procedure Set_Block_Node (Id : E; V : N) is
2680 begin
2681 pragma Assert (Ekind (Id) = E_Block);
2682 Set_Node11 (Id, V);
2683 end Set_Block_Node;
2684
2685 procedure Set_Body_Entity (Id : E; V : E) is
2686 begin
2687 pragma Assert
2688 (Ekind (Id) = E_Package or else Ekind (Id) = E_Generic_Package);
2689 Set_Node19 (Id, V);
2690 end Set_Body_Entity;
2691
2692 procedure Set_Body_Needed_For_SAL (Id : E; V : B := True) is
2693 begin
2694 pragma Assert
2695 (Ekind (Id) = E_Package
2696 or else Is_Subprogram (Id)
2697 or else Is_Generic_Unit (Id));
2698 Set_Flag40 (Id, V);
2699 end Set_Body_Needed_For_SAL;
2700
2701 procedure Set_C_Pass_By_Copy (Id : E; V : B := True) is
2702 begin
2703 pragma Assert (Is_Record_Type (Id) and then Id = Base_Type (Id));
2704 Set_Flag125 (Id, V);
2705 end Set_C_Pass_By_Copy;
2706
2707 procedure Set_Can_Never_Be_Null (Id : E; V : B := True) is
2708 begin
2709 Set_Flag38 (Id, V);
2710 end Set_Can_Never_Be_Null;
2711
2712 procedure Set_Checks_May_Be_Suppressed (Id : E; V : B := True) is
2713 begin
2714 Set_Flag31 (Id, V);
2715 end Set_Checks_May_Be_Suppressed;
2716
2717 procedure Set_Class_Wide_Type (Id : E; V : E) is
2718 begin
2719 pragma Assert (Is_Type (Id));
2720 Set_Node9 (Id, V);
2721 end Set_Class_Wide_Type;
2722
2723 procedure Set_Cloned_Subtype (Id : E; V : E) is
2724 begin
2725 pragma Assert
2726 (Ekind (Id) = E_Record_Subtype
2727 or else Ekind (Id) = E_Class_Wide_Subtype);
2728 Set_Node16 (Id, V);
2729 end Set_Cloned_Subtype;
2730
2731 procedure Set_Component_Bit_Offset (Id : E; V : U) is
2732 begin
2733 pragma Assert
2734 (Ekind (Id) = E_Component or else Ekind (Id) = E_Discriminant);
2735 Set_Uint11 (Id, V);
2736 end Set_Component_Bit_Offset;
2737
2738 procedure Set_Component_Clause (Id : E; V : N) is
2739 begin
2740 pragma Assert
2741 (Ekind (Id) = E_Component or else Ekind (Id) = E_Discriminant);
2742 Set_Node13 (Id, V);
2743 end Set_Component_Clause;
2744
2745 procedure Set_Component_Size (Id : E; V : U) is
2746 begin
2747 pragma Assert (Is_Array_Type (Id) and then Id = Base_Type (Id));
2748 Set_Uint22 (Id, V);
2749 end Set_Component_Size;
2750
2751 procedure Set_Component_Type (Id : E; V : E) is
2752 begin
2753 pragma Assert (Is_Array_Type (Id) and then Id = Base_Type (Id));
2754 Set_Node20 (Id, V);
2755 end Set_Component_Type;
2756
2757 procedure Set_Corresponding_Concurrent_Type (Id : E; V : E) is
2758 begin
2759 pragma Assert
2760 (Ekind (Id) = E_Record_Type and then Is_Concurrent_Type (V));
2761 Set_Node18 (Id, V);
2762 end Set_Corresponding_Concurrent_Type;
2763
2764 procedure Set_Corresponding_Discriminant (Id : E; V : E) is
2765 begin
2766 pragma Assert (Ekind (Id) = E_Discriminant);
2767 Set_Node19 (Id, V);
2768 end Set_Corresponding_Discriminant;
2769
2770 procedure Set_Corresponding_Equality (Id : E; V : E) is
2771 begin
2772 pragma Assert
2773 (Ekind (Id) = E_Function
2774 and then not Comes_From_Source (Id)
2775 and then Chars (Id) = Name_Op_Ne);
2776 Set_Node13 (Id, V);
2777 end Set_Corresponding_Equality;
2778
2779 procedure Set_Corresponding_Record_Type (Id : E; V : E) is
2780 begin
2781 pragma Assert (Is_Concurrent_Type (Id));
2782 Set_Node18 (Id, V);
2783 end Set_Corresponding_Record_Type;
2784
2785 procedure Set_Corresponding_Remote_Type (Id : E; V : E) is
2786 begin
2787 Set_Node22 (Id, V);
2788 end Set_Corresponding_Remote_Type;
2789
2790 procedure Set_Current_Use_Clause (Id : E; V : E) is
2791 begin
2792 pragma Assert (Ekind (Id) = E_Package);
2793 Set_Node25 (Id, V);
2794 end Set_Current_Use_Clause;
2795
2796 procedure Set_Current_Value (Id : E; V : N) is
2797 begin
2798 pragma Assert (Ekind (Id) in Object_Kind or else Ekind (Id) = E_Void);
2799 Set_Node9 (Id, V);
2800 end Set_Current_Value;
2801
2802 procedure Set_CR_Discriminant (Id : E; V : E) is
2803 begin
2804 Set_Node23 (Id, V);
2805 end Set_CR_Discriminant;
2806
2807 procedure Set_Debug_Info_Off (Id : E; V : B := True) is
2808 begin
2809 Set_Flag166 (Id, V);
2810 end Set_Debug_Info_Off;
2811
2812 procedure Set_Debug_Renaming_Link (Id : E; V : E) is
2813 begin
2814 Set_Node13 (Id, V);
2815 end Set_Debug_Renaming_Link;
2816
2817 procedure Set_Default_Expr_Function (Id : E; V : E) is
2818 begin
2819 pragma Assert (Is_Formal (Id));
2820 Set_Node21 (Id, V);
2821 end Set_Default_Expr_Function;
2822
2823 procedure Set_Default_Expressions_Processed (Id : E; V : B := True) is
2824 begin
2825 Set_Flag108 (Id, V);
2826 end Set_Default_Expressions_Processed;
2827
2828 procedure Set_Default_Value (Id : E; V : N) is
2829 begin
2830 pragma Assert (Is_Formal (Id));
2831 Set_Node20 (Id, V);
2832 end Set_Default_Value;
2833
2834 procedure Set_Delay_Cleanups (Id : E; V : B := True) is
2835 begin
2836 pragma Assert
2837 (Is_Subprogram (Id)
2838 or else Is_Task_Type (Id)
2839 or else Ekind (Id) = E_Block);
2840 Set_Flag114 (Id, V);
2841 end Set_Delay_Cleanups;
2842
2843 procedure Set_Delay_Subprogram_Descriptors (Id : E; V : B := True) is
2844 begin
2845 pragma Assert
2846 (Is_Subprogram (Id)
2847 or else Ekind (Id) = E_Package
2848 or else Ekind (Id) = E_Package_Body);
2849 Set_Flag50 (Id, V);
2850 end Set_Delay_Subprogram_Descriptors;
2851
2852 procedure Set_Delta_Value (Id : E; V : R) is
2853 begin
2854 pragma Assert (Is_Fixed_Point_Type (Id));
2855 Set_Ureal18 (Id, V);
2856 end Set_Delta_Value;
2857
2858 procedure Set_Dependent_Instances (Id : E; V : L) is
2859 begin
2860 pragma Assert (Is_Generic_Instance (Id));
2861 Set_Elist8 (Id, V);
2862 end Set_Dependent_Instances;
2863
2864 procedure Set_Depends_On_Private (Id : E; V : B := True) is
2865 begin
2866 pragma Assert (Nkind (Id) in N_Entity);
2867 Set_Flag14 (Id, V);
2868 end Set_Depends_On_Private;
2869
2870 procedure Set_Digits_Value (Id : E; V : U) is
2871 begin
2872 pragma Assert
2873 (Is_Floating_Point_Type (Id)
2874 or else Is_Decimal_Fixed_Point_Type (Id));
2875 Set_Uint17 (Id, V);
2876 end Set_Digits_Value;
2877
2878 procedure Set_Directly_Designated_Type (Id : E; V : E) is
2879 begin
2880 Set_Node20 (Id, V);
2881 end Set_Directly_Designated_Type;
2882
2883 procedure Set_Discard_Names (Id : E; V : B := True) is
2884 begin
2885 Set_Flag88 (Id, V);
2886 end Set_Discard_Names;
2887
2888 procedure Set_Discriminal (Id : E; V : E) is
2889 begin
2890 pragma Assert (Ekind (Id) = E_Discriminant);
2891 Set_Node17 (Id, V);
2892 end Set_Discriminal;
2893
2894 procedure Set_Discriminal_Link (Id : E; V : E) is
2895 begin
2896 Set_Node10 (Id, V);
2897 end Set_Discriminal_Link;
2898
2899 procedure Set_Discriminant_Checking_Func (Id : E; V : E) is
2900 begin
2901 pragma Assert (Ekind (Id) = E_Component);
2902 Set_Node20 (Id, V);
2903 end Set_Discriminant_Checking_Func;
2904
2905 procedure Set_Discriminant_Constraint (Id : E; V : L) is
2906 begin
2907 pragma Assert (Nkind (Id) in N_Entity);
2908 Set_Elist21 (Id, V);
2909 end Set_Discriminant_Constraint;
2910
2911 procedure Set_Discriminant_Default_Value (Id : E; V : N) is
2912 begin
2913 Set_Node20 (Id, V);
2914 end Set_Discriminant_Default_Value;
2915
2916 procedure Set_Discriminant_Number (Id : E; V : U) is
2917 begin
2918 Set_Uint15 (Id, V);
2919 end Set_Discriminant_Number;
2920
2921 procedure Set_DT_Entry_Count (Id : E; V : U) is
2922 begin
2923 pragma Assert (Ekind (Id) = E_Component);
2924 Set_Uint15 (Id, V);
2925 end Set_DT_Entry_Count;
2926
2927 procedure Set_DT_Position (Id : E; V : U) is
2928 begin
2929 pragma Assert (Ekind (Id) = E_Function or else Ekind (Id) = E_Procedure);
2930 Set_Uint15 (Id, V);
2931 end Set_DT_Position;
2932
2933 procedure Set_DTC_Entity (Id : E; V : E) is
2934 begin
2935 pragma Assert
2936 (Ekind (Id) = E_Function or else Ekind (Id) = E_Procedure);
2937 Set_Node16 (Id, V);
2938 end Set_DTC_Entity;
2939
2940 procedure Set_Elaboration_Entity (Id : E; V : E) is
2941 begin
2942 pragma Assert
2943 (Is_Subprogram (Id)
2944 or else
2945 Ekind (Id) = E_Package
2946 or else
2947 Is_Generic_Unit (Id));
2948 Set_Node13 (Id, V);
2949 end Set_Elaboration_Entity;
2950
2951 procedure Set_Elaboration_Entity_Required (Id : E; V : B := True) is
2952 begin
2953 pragma Assert
2954 (Is_Subprogram (Id)
2955 or else
2956 Ekind (Id) = E_Package
2957 or else
2958 Is_Generic_Unit (Id));
2959 Set_Flag174 (Id, V);
2960 end Set_Elaboration_Entity_Required;
2961
2962 procedure Set_Enclosing_Scope (Id : E; V : E) is
2963 begin
2964 Set_Node18 (Id, V);
2965 end Set_Enclosing_Scope;
2966
2967 procedure Set_Entry_Accepted (Id : E; V : B := True) is
2968 begin
2969 pragma Assert (Is_Entry (Id));
2970 Set_Flag152 (Id, V);
2971 end Set_Entry_Accepted;
2972
2973 procedure Set_Entry_Bodies_Array (Id : E; V : E) is
2974 begin
2975 Set_Node15 (Id, V);
2976 end Set_Entry_Bodies_Array;
2977
2978 procedure Set_Entry_Cancel_Parameter (Id : E; V : E) is
2979 begin
2980 Set_Node23 (Id, V);
2981 end Set_Entry_Cancel_Parameter;
2982
2983 procedure Set_Entry_Component (Id : E; V : E) is
2984 begin
2985 Set_Node11 (Id, V);
2986 end Set_Entry_Component;
2987
2988 procedure Set_Entry_Formal (Id : E; V : E) is
2989 begin
2990 Set_Node16 (Id, V);
2991 end Set_Entry_Formal;
2992
2993 procedure Set_Entry_Index_Constant (Id : E; V : E) is
2994 begin
2995 pragma Assert (Ekind (Id) = E_Entry_Index_Parameter);
2996 Set_Node18 (Id, V);
2997 end Set_Entry_Index_Constant;
2998
2999 procedure Set_Entry_Parameters_Type (Id : E; V : E) is
3000 begin
3001 Set_Node15 (Id, V);
3002 end Set_Entry_Parameters_Type;
3003
3004 procedure Set_Enum_Pos_To_Rep (Id : E; V : E) is
3005 begin
3006 pragma Assert (Ekind (Id) = E_Enumeration_Type);
3007 Set_Node23 (Id, V);
3008 end Set_Enum_Pos_To_Rep;
3009
3010 procedure Set_Enumeration_Pos (Id : E; V : U) is
3011 begin
3012 pragma Assert (Ekind (Id) = E_Enumeration_Literal);
3013 Set_Uint11 (Id, V);
3014 end Set_Enumeration_Pos;
3015
3016 procedure Set_Enumeration_Rep (Id : E; V : U) is
3017 begin
3018 pragma Assert (Ekind (Id) = E_Enumeration_Literal);
3019 Set_Uint12 (Id, V);
3020 end Set_Enumeration_Rep;
3021
3022 procedure Set_Enumeration_Rep_Expr (Id : E; V : N) is
3023 begin
3024 pragma Assert (Ekind (Id) = E_Enumeration_Literal);
3025 Set_Node22 (Id, V);
3026 end Set_Enumeration_Rep_Expr;
3027
3028 procedure Set_Equivalent_Type (Id : E; V : E) is
3029 begin
3030 pragma Assert
3031 (Ekind (Id) = E_Class_Wide_Type or else
3032 Ekind (Id) = E_Class_Wide_Subtype or else
3033 Ekind (Id) = E_Access_Protected_Subprogram_Type or else
3034 Ekind (Id) = E_Access_Subprogram_Type or else
3035 Ekind (Id) = E_Exception_Type);
3036 Set_Node18 (Id, V);
3037 end Set_Equivalent_Type;
3038
3039 procedure Set_Esize (Id : E; V : U) is
3040 begin
3041 Set_Uint12 (Id, V);
3042 end Set_Esize;
3043
3044 procedure Set_Exception_Code (Id : E; V : U) is
3045 begin
3046 pragma Assert (Ekind (Id) = E_Exception);
3047 Set_Uint22 (Id, V);
3048 end Set_Exception_Code;
3049
3050 procedure Set_Extra_Accessibility (Id : E; V : E) is
3051 begin
3052 pragma Assert (Is_Formal (Id) or else Ekind (Id) = E_Variable);
3053 Set_Node13 (Id, V);
3054 end Set_Extra_Accessibility;
3055
3056 procedure Set_Extra_Constrained (Id : E; V : E) is
3057 begin
3058 pragma Assert (Is_Formal (Id) or else Ekind (Id) = E_Variable);
3059 Set_Node23 (Id, V);
3060 end Set_Extra_Constrained;
3061
3062 procedure Set_Extra_Formal (Id : E; V : E) is
3063 begin
3064 Set_Node15 (Id, V);
3065 end Set_Extra_Formal;
3066
3067 procedure Set_Finalization_Chain_Entity (Id : E; V : E) is
3068 begin
3069 Set_Node19 (Id, V);
3070 end Set_Finalization_Chain_Entity;
3071
3072 procedure Set_Finalize_Storage_Only (Id : E; V : B := True) is
3073 begin
3074 pragma Assert (Is_Type (Id) and then Id = Base_Type (Id));
3075 Set_Flag158 (Id, V);
3076 end Set_Finalize_Storage_Only;
3077
3078 procedure Set_First_Entity (Id : E; V : E) is
3079 begin
3080 Set_Node17 (Id, V);
3081 end Set_First_Entity;
3082
3083 procedure Set_First_Index (Id : E; V : N) is
3084 begin
3085 Set_Node17 (Id, V);
3086 end Set_First_Index;
3087
3088 procedure Set_First_Literal (Id : E; V : E) is
3089 begin
3090 Set_Node17 (Id, V);
3091 end Set_First_Literal;
3092
3093 procedure Set_First_Optional_Parameter (Id : E; V : E) is
3094 begin
3095 pragma Assert
3096 (Ekind (Id) = E_Function or else Ekind (Id) = E_Procedure);
3097 Set_Node14 (Id, V);
3098 end Set_First_Optional_Parameter;
3099
3100 procedure Set_First_Private_Entity (Id : E; V : E) is
3101 begin
3102 pragma Assert (Ekind (Id) = E_Package
3103 or else Ekind (Id) = E_Generic_Package
3104 or else Ekind (Id) = E_Protected_Type
3105 or else Ekind (Id) = E_Protected_Subtype
3106 or else Ekind (Id) = E_Task_Type
3107 or else Ekind (Id) = E_Task_Subtype);
3108 Set_Node16 (Id, V);
3109 end Set_First_Private_Entity;
3110
3111 procedure Set_First_Rep_Item (Id : E; V : N) is
3112 begin
3113 Set_Node6 (Id, V);
3114 end Set_First_Rep_Item;
3115
3116 procedure Set_Freeze_Node (Id : E; V : N) is
3117 begin
3118 Set_Node7 (Id, V);
3119 end Set_Freeze_Node;
3120
3121 procedure Set_From_With_Type (Id : E; V : B := True) is
3122 begin
3123 pragma Assert
3124 (Is_Type (Id)
3125 or else Ekind (Id) = E_Package);
3126 Set_Flag159 (Id, V);
3127 end Set_From_With_Type;
3128
3129 procedure Set_Full_View (Id : E; V : E) is
3130 begin
3131 pragma Assert (Is_Type (Id) or else Ekind (Id) = E_Constant);
3132 Set_Node11 (Id, V);
3133 end Set_Full_View;
3134
3135 procedure Set_Function_Returns_With_DSP (Id : E; V : B := True) is
3136 begin
3137 pragma Assert
3138 (Is_Subprogram (Id) or else Ekind (Id) = E_Subprogram_Type);
3139 Set_Flag169 (Id, V);
3140 end Set_Function_Returns_With_DSP;
3141
3142 procedure Set_Generic_Homonym (Id : E; V : E) is
3143 begin
3144 Set_Node11 (Id, V);
3145 end Set_Generic_Homonym;
3146
3147 procedure Set_Generic_Renamings (Id : E; V : L) is
3148 begin
3149 Set_Elist23 (Id, V);
3150 end Set_Generic_Renamings;
3151
3152 procedure Set_Handler_Records (Id : E; V : S) is
3153 begin
3154 Set_List10 (Id, V);
3155 end Set_Handler_Records;
3156
3157 procedure Set_Has_Aliased_Components (Id : E; V : B := True) is
3158 begin
3159 pragma Assert (Base_Type (Id) = Id);
3160 Set_Flag135 (Id, V);
3161 end Set_Has_Aliased_Components;
3162
3163 procedure Set_Has_Alignment_Clause (Id : E; V : B := True) is
3164 begin
3165 Set_Flag46 (Id, V);
3166 end Set_Has_Alignment_Clause;
3167
3168 procedure Set_Has_All_Calls_Remote (Id : E; V : B := True) is
3169 begin
3170 Set_Flag79 (Id, V);
3171 end Set_Has_All_Calls_Remote;
3172
3173 procedure Set_Has_Anon_Block_Suffix (Id : E; V : B := True) is
3174 begin
3175 Set_Flag201 (Id, V);
3176 end Set_Has_Anon_Block_Suffix;
3177
3178 procedure Set_Has_Atomic_Components (Id : E; V : B := True) is
3179 begin
3180 pragma Assert (not Is_Type (Id) or else Base_Type (Id) = Id);
3181 Set_Flag86 (Id, V);
3182 end Set_Has_Atomic_Components;
3183
3184 procedure Set_Has_Biased_Representation (Id : E; V : B := True) is
3185 begin
3186 pragma Assert
3187 ((V = False) or else (Is_Discrete_Type (Id) or Is_Object (Id)));
3188 Set_Flag139 (Id, V);
3189 end Set_Has_Biased_Representation;
3190
3191 procedure Set_Has_Completion (Id : E; V : B := True) is
3192 begin
3193 Set_Flag26 (Id, V);
3194 end Set_Has_Completion;
3195
3196 procedure Set_Has_Completion_In_Body (Id : E; V : B := True) is
3197 begin
3198 pragma Assert (Ekind (Id) = E_Incomplete_Type);
3199 Set_Flag71 (Id, V);
3200 end Set_Has_Completion_In_Body;
3201
3202 procedure Set_Has_Complex_Representation (Id : E; V : B := True) is
3203 begin
3204 pragma Assert (Ekind (Id) = E_Record_Type);
3205 Set_Flag140 (Id, V);
3206 end Set_Has_Complex_Representation;
3207
3208 procedure Set_Has_Component_Size_Clause (Id : E; V : B := True) is
3209 begin
3210 pragma Assert (Ekind (Id) = E_Array_Type);
3211 Set_Flag68 (Id, V);
3212 end Set_Has_Component_Size_Clause;
3213
3214 procedure Set_Has_Constrained_Partial_View (Id : E; V : B := True) is
3215 begin
3216 pragma Assert (Is_Type (Id));
3217 Set_Flag187 (Id, V);
3218 end Set_Has_Constrained_Partial_View;
3219
3220 procedure Set_Has_Contiguous_Rep (Id : E; V : B := True) is
3221 begin
3222 Set_Flag181 (Id, V);
3223 end Set_Has_Contiguous_Rep;
3224
3225 procedure Set_Has_Controlled_Component (Id : E; V : B := True) is
3226 begin
3227 pragma Assert (Base_Type (Id) = Id);
3228 Set_Flag43 (Id, V);
3229 end Set_Has_Controlled_Component;
3230
3231 procedure Set_Has_Controlling_Result (Id : E; V : B := True) is
3232 begin
3233 Set_Flag98 (Id, V);
3234 end Set_Has_Controlling_Result;
3235
3236 procedure Set_Has_Convention_Pragma (Id : E; V : B := True) is
3237 begin
3238 Set_Flag119 (Id, V);
3239 end Set_Has_Convention_Pragma;
3240
3241 procedure Set_Has_Delayed_Freeze (Id : E; V : B := True) is
3242 begin
3243 pragma Assert (Nkind (Id) in N_Entity);
3244 Set_Flag18 (Id, V);
3245 end Set_Has_Delayed_Freeze;
3246
3247 procedure Set_Has_Discriminants (Id : E; V : B := True) is
3248 begin
3249 pragma Assert (Nkind (Id) in N_Entity);
3250 Set_Flag5 (Id, V);
3251 end Set_Has_Discriminants;
3252
3253 procedure Set_Has_Enumeration_Rep_Clause (Id : E; V : B := True) is
3254 begin
3255 pragma Assert (Is_Enumeration_Type (Id));
3256 Set_Flag66 (Id, V);
3257 end Set_Has_Enumeration_Rep_Clause;
3258
3259 procedure Set_Has_Exit (Id : E; V : B := True) is
3260 begin
3261 Set_Flag47 (Id, V);
3262 end Set_Has_Exit;
3263
3264 procedure Set_Has_External_Tag_Rep_Clause (Id : E; V : B := True) is
3265 begin
3266 pragma Assert (Is_Tagged_Type (Id));
3267 Set_Flag110 (Id, V);
3268 end Set_Has_External_Tag_Rep_Clause;
3269
3270 procedure Set_Has_Forward_Instantiation (Id : E; V : B := True) is
3271 begin
3272 Set_Flag175 (Id, V);
3273 end Set_Has_Forward_Instantiation;
3274
3275 procedure Set_Has_Fully_Qualified_Name (Id : E; V : B := True) is
3276 begin
3277 Set_Flag173 (Id, V);
3278 end Set_Has_Fully_Qualified_Name;
3279
3280 procedure Set_Has_Gigi_Rep_Item (Id : E; V : B := True) is
3281 begin
3282 Set_Flag82 (Id, V);
3283 end Set_Has_Gigi_Rep_Item;
3284
3285 procedure Set_Has_Homonym (Id : E; V : B := True) is
3286 begin
3287 Set_Flag56 (Id, V);
3288 end Set_Has_Homonym;
3289
3290 procedure Set_Has_Machine_Radix_Clause (Id : E; V : B := True) is
3291 begin
3292 pragma Assert (Is_Decimal_Fixed_Point_Type (Id));
3293 Set_Flag83 (Id, V);
3294 end Set_Has_Machine_Radix_Clause;
3295
3296 procedure Set_Has_Master_Entity (Id : E; V : B := True) is
3297 begin
3298 Set_Flag21 (Id, V);
3299 end Set_Has_Master_Entity;
3300
3301 procedure Set_Has_Missing_Return (Id : E; V : B := True) is
3302 begin
3303 pragma Assert
3304 (Ekind (Id) = E_Function or else Ekind (Id) = E_Generic_Function);
3305 Set_Flag142 (Id, V);
3306 end Set_Has_Missing_Return;
3307
3308 procedure Set_Has_Nested_Block_With_Handler (Id : E; V : B := True) is
3309 begin
3310 Set_Flag101 (Id, V);
3311 end Set_Has_Nested_Block_With_Handler;
3312
3313 procedure Set_Has_Non_Standard_Rep (Id : E; V : B := True) is
3314 begin
3315 pragma Assert (Base_Type (Id) = Id);
3316 Set_Flag75 (Id, V);
3317 end Set_Has_Non_Standard_Rep;
3318
3319 procedure Set_Has_Object_Size_Clause (Id : E; V : B := True) is
3320 begin
3321 pragma Assert (Is_Type (Id));
3322 Set_Flag172 (Id, V);
3323 end Set_Has_Object_Size_Clause;
3324
3325 procedure Set_Has_Per_Object_Constraint (Id : E; V : B := True) is
3326 begin
3327 Set_Flag154 (Id, V);
3328 end Set_Has_Per_Object_Constraint;
3329
3330 procedure Set_Has_Persistent_BSS (Id : E; V : B := True) is
3331 begin
3332 Set_Flag188 (Id, V);
3333 end Set_Has_Persistent_BSS;
3334
3335 procedure Set_Has_Pragma_Controlled (Id : E; V : B := True) is
3336 begin
3337 pragma Assert (Is_Access_Type (Id));
3338 Set_Flag27 (Base_Type (Id), V);
3339 end Set_Has_Pragma_Controlled;
3340
3341 procedure Set_Has_Pragma_Elaborate_Body (Id : E; V : B := True) is
3342 begin
3343 Set_Flag150 (Id, V);
3344 end Set_Has_Pragma_Elaborate_Body;
3345
3346 procedure Set_Has_Pragma_Inline (Id : E; V : B := True) is
3347 begin
3348 Set_Flag157 (Id, V);
3349 end Set_Has_Pragma_Inline;
3350
3351 procedure Set_Has_Pragma_Pack (Id : E; V : B := True) is
3352 begin
3353 pragma Assert (Is_Array_Type (Id) or else Is_Record_Type (Id));
3354 pragma Assert (Id = Base_Type (Id));
3355 Set_Flag121 (Id, V);
3356 end Set_Has_Pragma_Pack;
3357
3358 procedure Set_Has_Pragma_Pure_Function (Id : E; V : B := True) is
3359 begin
3360 pragma Assert (Is_Subprogram (Id));
3361 Set_Flag179 (Id, V);
3362 end Set_Has_Pragma_Pure_Function;
3363
3364 procedure Set_Has_Pragma_Unreferenced (Id : E; V : B := True) is
3365 begin
3366 Set_Flag180 (Id, V);
3367 end Set_Has_Pragma_Unreferenced;
3368
3369 procedure Set_Has_Primitive_Operations (Id : E; V : B := True) is
3370 begin
3371 pragma Assert (Id = Base_Type (Id));
3372 Set_Flag120 (Id, V);
3373 end Set_Has_Primitive_Operations;
3374
3375 procedure Set_Has_Private_Declaration (Id : E; V : B := True) is
3376 begin
3377 Set_Flag155 (Id, V);
3378 end Set_Has_Private_Declaration;
3379
3380 procedure Set_Has_Qualified_Name (Id : E; V : B := True) is
3381 begin
3382 Set_Flag161 (Id, V);
3383 end Set_Has_Qualified_Name;
3384
3385 procedure Set_Has_Record_Rep_Clause (Id : E; V : B := True) is
3386 begin
3387 pragma Assert (Id = Base_Type (Id));
3388 Set_Flag65 (Id, V);
3389 end Set_Has_Record_Rep_Clause;
3390
3391 procedure Set_Has_Recursive_Call (Id : E; V : B := True) is
3392 begin
3393 pragma Assert (Is_Subprogram (Id));
3394 Set_Flag143 (Id, V);
3395 end Set_Has_Recursive_Call;
3396
3397 procedure Set_Has_Size_Clause (Id : E; V : B := True) is
3398 begin
3399 Set_Flag29 (Id, V);
3400 end Set_Has_Size_Clause;
3401
3402 procedure Set_Has_Small_Clause (Id : E; V : B := True) is
3403 begin
3404 Set_Flag67 (Id, V);
3405 end Set_Has_Small_Clause;
3406
3407 procedure Set_Has_Specified_Layout (Id : E; V : B := True) is
3408 begin
3409 pragma Assert (Id = Base_Type (Id));
3410 Set_Flag100 (Id, V);
3411 end Set_Has_Specified_Layout;
3412
3413 procedure Set_Has_Specified_Stream_Input (Id : E; V : B := True) is
3414 begin
3415 pragma Assert (Is_Type (Id));
3416 Set_Flag190 (Id, V);
3417 end Set_Has_Specified_Stream_Input;
3418
3419 procedure Set_Has_Specified_Stream_Output (Id : E; V : B := True) is
3420 begin
3421 pragma Assert (Is_Type (Id));
3422 Set_Flag191 (Id, V);
3423 end Set_Has_Specified_Stream_Output;
3424
3425 procedure Set_Has_Specified_Stream_Read (Id : E; V : B := True) is
3426 begin
3427 pragma Assert (Is_Type (Id));
3428 Set_Flag192 (Id, V);
3429 end Set_Has_Specified_Stream_Read;
3430
3431 procedure Set_Has_Specified_Stream_Write (Id : E; V : B := True) is
3432 begin
3433 pragma Assert (Is_Type (Id));
3434 Set_Flag193 (Id, V);
3435 end Set_Has_Specified_Stream_Write;
3436
3437 procedure Set_Has_Storage_Size_Clause (Id : E; V : B := True) is
3438 begin
3439 pragma Assert (Is_Access_Type (Id) or else Is_Task_Type (Id));
3440 pragma Assert (Base_Type (Id) = Id);
3441 Set_Flag23 (Id, V);
3442 end Set_Has_Storage_Size_Clause;
3443
3444 procedure Set_Has_Stream_Size_Clause (Id : E; V : B := True) is
3445 begin
3446 pragma Assert (Is_Elementary_Type (Id));
3447 Set_Flag184 (Id, V);
3448 end Set_Has_Stream_Size_Clause;
3449
3450 procedure Set_Has_Subprogram_Descriptor (Id : E; V : B := True) is
3451 begin
3452 Set_Flag93 (Id, V);
3453 end Set_Has_Subprogram_Descriptor;
3454
3455 procedure Set_Has_Task (Id : E; V : B := True) is
3456 begin
3457 pragma Assert (Base_Type (Id) = Id);
3458 Set_Flag30 (Id, V);
3459 end Set_Has_Task;
3460
3461 procedure Set_Has_Unchecked_Union (Id : E; V : B := True) is
3462 begin
3463 pragma Assert (Base_Type (Id) = Id);
3464 Set_Flag123 (Id, V);
3465 end Set_Has_Unchecked_Union;
3466
3467 procedure Set_Has_Unknown_Discriminants (Id : E; V : B := True) is
3468 begin
3469 pragma Assert (Is_Type (Id));
3470 Set_Flag72 (Id, V);
3471 end Set_Has_Unknown_Discriminants;
3472
3473 procedure Set_Has_Volatile_Components (Id : E; V : B := True) is
3474 begin
3475 pragma Assert (not Is_Type (Id) or else Base_Type (Id) = Id);
3476 Set_Flag87 (Id, V);
3477 end Set_Has_Volatile_Components;
3478
3479 procedure Set_Has_Xref_Entry (Id : E; V : B := True) is
3480 begin
3481 Set_Flag182 (Id, V);
3482 end Set_Has_Xref_Entry;
3483
3484 procedure Set_Hiding_Loop_Variable (Id : E; V : E) is
3485 begin
3486 pragma Assert (Ekind (Id) = E_Variable);
3487 Set_Node8 (Id, V);
3488 end Set_Hiding_Loop_Variable;
3489
3490 procedure Set_Homonym (Id : E; V : E) is
3491 begin
3492 pragma Assert (Id /= V);
3493 Set_Node4 (Id, V);
3494 end Set_Homonym;
3495
3496 procedure Set_In_Package_Body (Id : E; V : B := True) is
3497 begin
3498 Set_Flag48 (Id, V);
3499 end Set_In_Package_Body;
3500
3501 procedure Set_In_Private_Part (Id : E; V : B := True) is
3502 begin
3503 Set_Flag45 (Id, V);
3504 end Set_In_Private_Part;
3505
3506 procedure Set_In_Use (Id : E; V : B := True) is
3507 begin
3508 pragma Assert (Nkind (Id) in N_Entity);
3509 Set_Flag8 (Id, V);
3510 end Set_In_Use;
3511
3512 procedure Set_Inner_Instances (Id : E; V : L) is
3513 begin
3514 Set_Elist23 (Id, V);
3515 end Set_Inner_Instances;
3516
3517 procedure Set_Interface_Name (Id : E; V : N) is
3518 begin
3519 Set_Node21 (Id, V);
3520 end Set_Interface_Name;
3521
3522 procedure Set_Is_Abstract (Id : E; V : B := True) is
3523 begin
3524 Set_Flag19 (Id, V);
3525 end Set_Is_Abstract;
3526
3527 procedure Set_Is_Local_Anonymous_Access (Id : E; V : B := True) is
3528 begin
3529 pragma Assert (Is_Access_Type (Id));
3530 Set_Flag194 (Id, V);
3531 end Set_Is_Local_Anonymous_Access;
3532
3533 procedure Set_Is_Access_Constant (Id : E; V : B := True) is
3534 begin
3535 pragma Assert (Is_Access_Type (Id));
3536 Set_Flag69 (Id, V);
3537 end Set_Is_Access_Constant;
3538
3539 procedure Set_Is_Ada_2005 (Id : E; V : B := True) is
3540 begin
3541 Set_Flag185 (Id, V);
3542 end Set_Is_Ada_2005;
3543
3544 procedure Set_Is_Aliased (Id : E; V : B := True) is
3545 begin
3546 pragma Assert (Nkind (Id) in N_Entity);
3547 Set_Flag15 (Id, V);
3548 end Set_Is_Aliased;
3549
3550 procedure Set_Is_AST_Entry (Id : E; V : B := True) is
3551 begin
3552 pragma Assert (Is_Entry (Id));
3553 Set_Flag132 (Id, V);
3554 end Set_Is_AST_Entry;
3555
3556 procedure Set_Is_Asynchronous (Id : E; V : B := True) is
3557 begin
3558 pragma Assert
3559 (Ekind (Id) = E_Procedure or else Is_Type (Id));
3560 Set_Flag81 (Id, V);
3561 end Set_Is_Asynchronous;
3562
3563 procedure Set_Is_Atomic (Id : E; V : B := True) is
3564 begin
3565 Set_Flag85 (Id, V);
3566 end Set_Is_Atomic;
3567
3568 procedure Set_Is_Bit_Packed_Array (Id : E; V : B := True) is
3569 begin
3570 pragma Assert ((not V)
3571 or else (Is_Array_Type (Id) and then Id = Base_Type (Id)));
3572
3573 Set_Flag122 (Id, V);
3574 end Set_Is_Bit_Packed_Array;
3575
3576 procedure Set_Is_Called (Id : E; V : B := True) is
3577 begin
3578 pragma Assert
3579 (Ekind (Id) = E_Procedure or else Ekind (Id) = E_Function);
3580 Set_Flag102 (Id, V);
3581 end Set_Is_Called;
3582
3583 procedure Set_Is_Character_Type (Id : E; V : B := True) is
3584 begin
3585 Set_Flag63 (Id, V);
3586 end Set_Is_Character_Type;
3587
3588 procedure Set_Is_Child_Unit (Id : E; V : B := True) is
3589 begin
3590 Set_Flag73 (Id, V);
3591 end Set_Is_Child_Unit;
3592
3593 procedure Set_Is_Class_Wide_Equivalent_Type (Id : E; V : B := True) is
3594 begin
3595 Set_Flag35 (Id, V);
3596 end Set_Is_Class_Wide_Equivalent_Type;
3597
3598 procedure Set_Is_Compilation_Unit (Id : E; V : B := True) is
3599 begin
3600 Set_Flag149 (Id, V);
3601 end Set_Is_Compilation_Unit;
3602
3603 procedure Set_Is_Completely_Hidden (Id : E; V : B := True) is
3604 begin
3605 pragma Assert (Ekind (Id) = E_Discriminant);
3606 Set_Flag103 (Id, V);
3607 end Set_Is_Completely_Hidden;
3608
3609 procedure Set_Is_Concurrent_Record_Type (Id : E; V : B := True) is
3610 begin
3611 Set_Flag20 (Id, V);
3612 end Set_Is_Concurrent_Record_Type;
3613
3614 procedure Set_Is_Constr_Subt_For_U_Nominal (Id : E; V : B := True) is
3615 begin
3616 Set_Flag80 (Id, V);
3617 end Set_Is_Constr_Subt_For_U_Nominal;
3618
3619 procedure Set_Is_Constr_Subt_For_UN_Aliased (Id : E; V : B := True) is
3620 begin
3621 Set_Flag141 (Id, V);
3622 end Set_Is_Constr_Subt_For_UN_Aliased;
3623
3624 procedure Set_Is_Constrained (Id : E; V : B := True) is
3625 begin
3626 pragma Assert (Nkind (Id) in N_Entity);
3627 Set_Flag12 (Id, V);
3628 end Set_Is_Constrained;
3629
3630 procedure Set_Is_Constructor (Id : E; V : B := True) is
3631 begin
3632 Set_Flag76 (Id, V);
3633 end Set_Is_Constructor;
3634
3635 procedure Set_Is_Controlled (Id : E; V : B := True) is
3636 begin
3637 pragma Assert (Id = Base_Type (Id));
3638 Set_Flag42 (Id, V);
3639 end Set_Is_Controlled;
3640
3641 procedure Set_Is_Controlling_Formal (Id : E; V : B := True) is
3642 begin
3643 pragma Assert (Is_Formal (Id));
3644 Set_Flag97 (Id, V);
3645 end Set_Is_Controlling_Formal;
3646
3647 procedure Set_Is_CPP_Class (Id : E; V : B := True) is
3648 begin
3649 Set_Flag74 (Id, V);
3650 end Set_Is_CPP_Class;
3651
3652 procedure Set_Is_Discrim_SO_Function (Id : E; V : B := True) is
3653 begin
3654 Set_Flag176 (Id, V);
3655 end Set_Is_Discrim_SO_Function;
3656
3657 procedure Set_Is_Dispatching_Operation (Id : E; V : B := True) is
3658 begin
3659 pragma Assert
3660 (V = False
3661 or else
3662 Is_Overloadable (Id)
3663 or else
3664 Ekind (Id) = E_Subprogram_Type);
3665
3666 Set_Flag6 (Id, V);
3667 end Set_Is_Dispatching_Operation;
3668
3669 procedure Set_Is_Eliminated (Id : E; V : B := True) is
3670 begin
3671 Set_Flag124 (Id, V);
3672 end Set_Is_Eliminated;
3673
3674 procedure Set_Is_Entry_Formal (Id : E; V : B := True) is
3675 begin
3676 Set_Flag52 (Id, V);
3677 end Set_Is_Entry_Formal;
3678
3679 procedure Set_Is_Exported (Id : E; V : B := True) is
3680 begin
3681 Set_Flag99 (Id, V);
3682 end Set_Is_Exported;
3683
3684 procedure Set_Is_First_Subtype (Id : E; V : B := True) is
3685 begin
3686 Set_Flag70 (Id, V);
3687 end Set_Is_First_Subtype;
3688
3689 procedure Set_Is_For_Access_Subtype (Id : E; V : B := True) is
3690 begin
3691 pragma Assert
3692 (Ekind (Id) = E_Record_Subtype
3693 or else
3694 Ekind (Id) = E_Private_Subtype);
3695 Set_Flag118 (Id, V);
3696 end Set_Is_For_Access_Subtype;
3697
3698 procedure Set_Is_Formal_Subprogram (Id : E; V : B := True) is
3699 begin
3700 Set_Flag111 (Id, V);
3701 end Set_Is_Formal_Subprogram;
3702
3703 procedure Set_Is_Frozen (Id : E; V : B := True) is
3704 begin
3705 pragma Assert (Nkind (Id) in N_Entity);
3706 Set_Flag4 (Id, V);
3707 end Set_Is_Frozen;
3708
3709 procedure Set_Is_Generic_Actual_Type (Id : E; V : B := True) is
3710 begin
3711 pragma Assert (Is_Type (Id));
3712 Set_Flag94 (Id, V);
3713 end Set_Is_Generic_Actual_Type;
3714
3715 procedure Set_Is_Generic_Instance (Id : E; V : B := True) is
3716 begin
3717 Set_Flag130 (Id, V);
3718 end Set_Is_Generic_Instance;
3719
3720 procedure Set_Is_Generic_Type (Id : E; V : B := True) is
3721 begin
3722 pragma Assert (Nkind (Id) in N_Entity);
3723 Set_Flag13 (Id, V);
3724 end Set_Is_Generic_Type;
3725
3726 procedure Set_Is_Hidden (Id : E; V : B := True) is
3727 begin
3728 Set_Flag57 (Id, V);
3729 end Set_Is_Hidden;
3730
3731 procedure Set_Is_Hidden_Open_Scope (Id : E; V : B := True) is
3732 begin
3733 Set_Flag171 (Id, V);
3734 end Set_Is_Hidden_Open_Scope;
3735
3736 procedure Set_Is_Immediately_Visible (Id : E; V : B := True) is
3737 begin
3738 pragma Assert (Nkind (Id) in N_Entity);
3739 Set_Flag7 (Id, V);
3740 end Set_Is_Immediately_Visible;
3741
3742 procedure Set_Is_Imported (Id : E; V : B := True) is
3743 begin
3744 Set_Flag24 (Id, V);
3745 end Set_Is_Imported;
3746
3747 procedure Set_Is_Inlined (Id : E; V : B := True) is
3748 begin
3749 Set_Flag11 (Id, V);
3750 end Set_Is_Inlined;
3751
3752 procedure Set_Is_Interface (Id : E; V : B := True) is
3753 begin
3754 pragma Assert
3755 (Ekind (Id) = E_Record_Type
3756 or else Ekind (Id) = E_Record_Subtype
3757 or else Ekind (Id) = E_Record_Type_With_Private
3758 or else Ekind (Id) = E_Record_Subtype_With_Private
3759 or else Ekind (Id) = E_Class_Wide_Type);
3760 Set_Flag186 (Id, V);
3761 end Set_Is_Interface;
3762
3763 procedure Set_Is_Instantiated (Id : E; V : B := True) is
3764 begin
3765 Set_Flag126 (Id, V);
3766 end Set_Is_Instantiated;
3767
3768 procedure Set_Is_Internal (Id : E; V : B := True) is
3769 begin
3770 pragma Assert (Nkind (Id) in N_Entity);
3771 Set_Flag17 (Id, V);
3772 end Set_Is_Internal;
3773
3774 procedure Set_Is_Interrupt_Handler (Id : E; V : B := True) is
3775 begin
3776 pragma Assert (Nkind (Id) in N_Entity);
3777 Set_Flag89 (Id, V);
3778 end Set_Is_Interrupt_Handler;
3779
3780 procedure Set_Is_Intrinsic_Subprogram (Id : E; V : B := True) is
3781 begin
3782 Set_Flag64 (Id, V);
3783 end Set_Is_Intrinsic_Subprogram;
3784
3785 procedure Set_Is_Itype (Id : E; V : B := True) is
3786 begin
3787 Set_Flag91 (Id, V);
3788 end Set_Is_Itype;
3789
3790 procedure Set_Is_Known_Non_Null (Id : E; V : B := True) is
3791 begin
3792 Set_Flag37 (Id, V);
3793 end Set_Is_Known_Non_Null;
3794
3795 procedure Set_Is_Known_Valid (Id : E; V : B := True) is
3796 begin
3797 Set_Flag170 (Id, V);
3798 end Set_Is_Known_Valid;
3799
3800 procedure Set_Is_Limited_Composite (Id : E; V : B := True) is
3801 begin
3802 pragma Assert (Is_Type (Id));
3803 Set_Flag106 (Id, V);
3804 end Set_Is_Limited_Composite;
3805
3806 procedure Set_Is_Limited_Interface (Id : E; V : B := True) is
3807 begin
3808 pragma Assert (Is_Interface (Id));
3809 Set_Flag197 (Id, V);
3810 end Set_Is_Limited_Interface;
3811
3812 procedure Set_Is_Limited_Record (Id : E; V : B := True) is
3813 begin
3814 Set_Flag25 (Id, V);
3815 end Set_Is_Limited_Record;
3816
3817 procedure Set_Is_Machine_Code_Subprogram (Id : E; V : B := True) is
3818 begin
3819 pragma Assert (Is_Subprogram (Id));
3820 Set_Flag137 (Id, V);
3821 end Set_Is_Machine_Code_Subprogram;
3822
3823 procedure Set_Is_Non_Static_Subtype (Id : E; V : B := True) is
3824 begin
3825 pragma Assert (Is_Type (Id));
3826 Set_Flag109 (Id, V);
3827 end Set_Is_Non_Static_Subtype;
3828
3829 procedure Set_Is_Null_Init_Proc (Id : E; V : B := True) is
3830 begin
3831 pragma Assert (Ekind (Id) = E_Procedure);
3832 Set_Flag178 (Id, V);
3833 end Set_Is_Null_Init_Proc;
3834
3835 procedure Set_Is_Obsolescent (Id : E; V : B := True) is
3836 begin
3837 Set_Flag153 (Id, V);
3838 end Set_Is_Obsolescent;
3839
3840 procedure Set_Is_Optional_Parameter (Id : E; V : B := True) is
3841 begin
3842 pragma Assert (Is_Formal (Id));
3843 Set_Flag134 (Id, V);
3844 end Set_Is_Optional_Parameter;
3845
3846 procedure Set_Is_Overriding_Operation (Id : E; V : B := True) is
3847 begin
3848 pragma Assert (Is_Subprogram (Id));
3849 Set_Flag39 (Id, V);
3850 end Set_Is_Overriding_Operation;
3851
3852 procedure Set_Is_Package_Body_Entity (Id : E; V : B := True) is
3853 begin
3854 Set_Flag160 (Id, V);
3855 end Set_Is_Package_Body_Entity;
3856
3857 procedure Set_Is_Packed (Id : E; V : B := True) is
3858 begin
3859 pragma Assert (Base_Type (Id) = Id);
3860 Set_Flag51 (Id, V);
3861 end Set_Is_Packed;
3862
3863 procedure Set_Is_Packed_Array_Type (Id : E; V : B := True) is
3864 begin
3865 Set_Flag138 (Id, V);
3866 end Set_Is_Packed_Array_Type;
3867
3868 procedure Set_Is_Potentially_Use_Visible (Id : E; V : B := True) is
3869 begin
3870 pragma Assert (Nkind (Id) in N_Entity);
3871 Set_Flag9 (Id, V);
3872 end Set_Is_Potentially_Use_Visible;
3873
3874 procedure Set_Is_Preelaborated (Id : E; V : B := True) is
3875 begin
3876 Set_Flag59 (Id, V);
3877 end Set_Is_Preelaborated;
3878
3879 procedure Set_Is_Primitive_Wrapper (Id : E; V : B := True) is
3880 begin
3881 pragma Assert (Ekind (Id) = E_Procedure);
3882 Set_Flag195 (Id, V);
3883 end Set_Is_Primitive_Wrapper;
3884
3885 procedure Set_Is_Private_Composite (Id : E; V : B := True) is
3886 begin
3887 pragma Assert (Is_Type (Id));
3888 Set_Flag107 (Id, V);
3889 end Set_Is_Private_Composite;
3890
3891 procedure Set_Is_Private_Descendant (Id : E; V : B := True) is
3892 begin
3893 Set_Flag53 (Id, V);
3894 end Set_Is_Private_Descendant;
3895
3896 procedure Set_Is_Protected_Interface (Id : E; V : B := True) is
3897 begin
3898 pragma Assert (Is_Interface (Id));
3899 Set_Flag198 (Id, V);
3900 end Set_Is_Protected_Interface;
3901
3902 procedure Set_Is_Public (Id : E; V : B := True) is
3903 begin
3904 pragma Assert (Nkind (Id) in N_Entity);
3905 Set_Flag10 (Id, V);
3906 end Set_Is_Public;
3907
3908 procedure Set_Is_Pure (Id : E; V : B := True) is
3909 begin
3910 Set_Flag44 (Id, V);
3911 end Set_Is_Pure;
3912
3913 procedure Set_Is_Pure_Unit_Access_Type (Id : E; V : B := True) is
3914 begin
3915 pragma Assert (Is_Access_Type (Id));
3916 Set_Flag189 (Id, V);
3917 end Set_Is_Pure_Unit_Access_Type;
3918
3919 procedure Set_Is_Remote_Call_Interface (Id : E; V : B := True) is
3920 begin
3921 Set_Flag62 (Id, V);
3922 end Set_Is_Remote_Call_Interface;
3923
3924 procedure Set_Is_Remote_Types (Id : E; V : B := True) is
3925 begin
3926 Set_Flag61 (Id, V);
3927 end Set_Is_Remote_Types;
3928
3929 procedure Set_Is_Renaming_Of_Object (Id : E; V : B := True) is
3930 begin
3931 Set_Flag112 (Id, V);
3932 end Set_Is_Renaming_Of_Object;
3933
3934 procedure Set_Is_Shared_Passive (Id : E; V : B := True) is
3935 begin
3936 Set_Flag60 (Id, V);
3937 end Set_Is_Shared_Passive;
3938
3939 procedure Set_Is_Statically_Allocated (Id : E; V : B := True) is
3940 begin
3941 pragma Assert
3942 (Ekind (Id) = E_Exception
3943 or else Ekind (Id) = E_Variable
3944 or else Ekind (Id) = E_Constant
3945 or else Is_Type (Id)
3946 or else Ekind (Id) = E_Void);
3947 Set_Flag28 (Id, V);
3948 end Set_Is_Statically_Allocated;
3949
3950 procedure Set_Is_Synchronized_Interface (Id : E; V : B := True) is
3951 begin
3952 pragma Assert (Is_Interface (Id));
3953 Set_Flag199 (Id, V);
3954 end Set_Is_Synchronized_Interface;
3955
3956 procedure Set_Is_Tag (Id : E; V : B := True) is
3957 begin
3958 pragma Assert (Nkind (Id) in N_Entity);
3959 Set_Flag78 (Id, V);
3960 end Set_Is_Tag;
3961
3962 procedure Set_Is_Tagged_Type (Id : E; V : B := True) is
3963 begin
3964 Set_Flag55 (Id, V);
3965 end Set_Is_Tagged_Type;
3966
3967 procedure Set_Is_Thread_Body (Id : E; V : B := True) is
3968 begin
3969 Set_Flag77 (Id, V);
3970 end Set_Is_Thread_Body;
3971
3972 procedure Set_Is_Task_Interface (Id : E; V : B := True) is
3973 begin
3974 pragma Assert (Is_Interface (Id));
3975 Set_Flag200 (Id, V);
3976 end Set_Is_Task_Interface;
3977
3978 procedure Set_Is_True_Constant (Id : E; V : B := True) is
3979 begin
3980 Set_Flag163 (Id, V);
3981 end Set_Is_True_Constant;
3982
3983 procedure Set_Is_Unchecked_Union (Id : E; V : B := True) is
3984 begin
3985 pragma Assert (Base_Type (Id) = Id);
3986 Set_Flag117 (Id, V);
3987 end Set_Is_Unchecked_Union;
3988
3989 procedure Set_Is_Unsigned_Type (Id : E; V : B := True) is
3990 begin
3991 pragma Assert (Is_Discrete_Or_Fixed_Point_Type (Id));
3992 Set_Flag144 (Id, V);
3993 end Set_Is_Unsigned_Type;
3994
3995 procedure Set_Is_Valued_Procedure (Id : E; V : B := True) is
3996 begin
3997 pragma Assert (Ekind (Id) = E_Procedure);
3998 Set_Flag127 (Id, V);
3999 end Set_Is_Valued_Procedure;
4000
4001 procedure Set_Is_Visible_Child_Unit (Id : E; V : B := True) is
4002 begin
4003 pragma Assert (Is_Child_Unit (Id));
4004 Set_Flag116 (Id, V);
4005 end Set_Is_Visible_Child_Unit;
4006
4007 procedure Set_Is_VMS_Exception (Id : E; V : B := True) is
4008 begin
4009 pragma Assert (Ekind (Id) = E_Exception);
4010 Set_Flag133 (Id, V);
4011 end Set_Is_VMS_Exception;
4012
4013 procedure Set_Is_Volatile (Id : E; V : B := True) is
4014 begin
4015 pragma Assert (Nkind (Id) in N_Entity);
4016 Set_Flag16 (Id, V);
4017 end Set_Is_Volatile;
4018
4019 procedure Set_Kill_Elaboration_Checks (Id : E; V : B := True) is
4020 begin
4021 Set_Flag32 (Id, V);
4022 end Set_Kill_Elaboration_Checks;
4023
4024 procedure Set_Kill_Range_Checks (Id : E; V : B := True) is
4025 begin
4026 Set_Flag33 (Id, V);
4027 end Set_Kill_Range_Checks;
4028
4029 procedure Set_Kill_Tag_Checks (Id : E; V : B := True) is
4030 begin
4031 Set_Flag34 (Id, V);
4032 end Set_Kill_Tag_Checks;
4033
4034 procedure Set_Last_Entity (Id : E; V : E) is
4035 begin
4036 Set_Node20 (Id, V);
4037 end Set_Last_Entity;
4038
4039 procedure Set_Limited_View (Id : E; V : E) is
4040 begin
4041 pragma Assert (Ekind (Id) = E_Package);
4042 Set_Node23 (Id, V);
4043 end Set_Limited_View;
4044
4045 procedure Set_Lit_Indexes (Id : E; V : E) is
4046 begin
4047 pragma Assert (Is_Enumeration_Type (Id) and then Root_Type (Id) = Id);
4048 Set_Node15 (Id, V);
4049 end Set_Lit_Indexes;
4050
4051 procedure Set_Lit_Strings (Id : E; V : E) is
4052 begin
4053 pragma Assert (Is_Enumeration_Type (Id) and then Root_Type (Id) = Id);
4054 Set_Node16 (Id, V);
4055 end Set_Lit_Strings;
4056
4057 procedure Set_Machine_Radix_10 (Id : E; V : B := True) is
4058 begin
4059 pragma Assert (Is_Decimal_Fixed_Point_Type (Id));
4060 Set_Flag84 (Id, V);
4061 end Set_Machine_Radix_10;
4062
4063 procedure Set_Master_Id (Id : E; V : E) is
4064 begin
4065 Set_Node17 (Id, V);
4066 end Set_Master_Id;
4067
4068 procedure Set_Materialize_Entity (Id : E; V : B := True) is
4069 begin
4070 Set_Flag168 (Id, V);
4071 end Set_Materialize_Entity;
4072
4073 procedure Set_Mechanism (Id : E; V : M) is
4074 begin
4075 pragma Assert (Ekind (Id) = E_Function or else Is_Formal (Id));
4076 Set_Uint8 (Id, UI_From_Int (V));
4077 end Set_Mechanism;
4078
4079 procedure Set_Modulus (Id : E; V : U) is
4080 begin
4081 pragma Assert (Ekind (Id) = E_Modular_Integer_Type);
4082 Set_Uint17 (Id, V);
4083 end Set_Modulus;
4084
4085 procedure Set_Must_Be_On_Byte_Boundary (Id : E; V : B := True) is
4086 begin
4087 pragma Assert (Is_Type (Id));
4088 Set_Flag183 (Id, V);
4089 end Set_Must_Be_On_Byte_Boundary;
4090
4091 procedure Set_Needs_Debug_Info (Id : E; V : B := True) is
4092 begin
4093 Set_Flag147 (Id, V);
4094 end Set_Needs_Debug_Info;
4095
4096 procedure Set_Needs_No_Actuals (Id : E; V : B := True) is
4097 begin
4098 pragma Assert
4099 (Is_Overloadable (Id)
4100 or else Ekind (Id) = E_Subprogram_Type
4101 or else Ekind (Id) = E_Entry_Family);
4102 Set_Flag22 (Id, V);
4103 end Set_Needs_No_Actuals;
4104
4105 procedure Set_Never_Set_In_Source (Id : E; V : B := True) is
4106 begin
4107 Set_Flag115 (Id, V);
4108 end Set_Never_Set_In_Source;
4109
4110 procedure Set_Next_Inlined_Subprogram (Id : E; V : E) is
4111 begin
4112 Set_Node12 (Id, V);
4113 end Set_Next_Inlined_Subprogram;
4114
4115 procedure Set_No_Pool_Assigned (Id : E; V : B := True) is
4116 begin
4117 pragma Assert (Is_Access_Type (Id) and then Base_Type (Id) = Id);
4118 Set_Flag131 (Id, V);
4119 end Set_No_Pool_Assigned;
4120
4121 procedure Set_No_Return (Id : E; V : B := True) is
4122 begin
4123 pragma Assert
4124 (Ekind (Id) = E_Procedure or else Ekind (Id) = E_Generic_Procedure);
4125 Set_Flag113 (Id, V);
4126 end Set_No_Return;
4127
4128 procedure Set_No_Strict_Aliasing (Id : E; V : B := True) is
4129 begin
4130 pragma Assert (Is_Access_Type (Id) and then Base_Type (Id) = Id);
4131 Set_Flag136 (Id, V);
4132 end Set_No_Strict_Aliasing;
4133
4134 procedure Set_Non_Binary_Modulus (Id : E; V : B := True) is
4135 begin
4136 pragma Assert (Ekind (Id) = E_Modular_Integer_Type);
4137 Set_Flag58 (Id, V);
4138 end Set_Non_Binary_Modulus;
4139
4140 procedure Set_Non_Limited_View (Id : E; V : E) is
4141 pragma Assert (False
4142 or else Ekind (Id) = E_Incomplete_Type);
4143 begin
4144 Set_Node17 (Id, V);
4145 end Set_Non_Limited_View;
4146
4147 procedure Set_Nonzero_Is_True (Id : E; V : B := True) is
4148 begin
4149 pragma Assert
4150 (Root_Type (Id) = Standard_Boolean
4151 and then Ekind (Id) = E_Enumeration_Type);
4152 Set_Flag162 (Id, V);
4153 end Set_Nonzero_Is_True;
4154
4155 procedure Set_Normalized_First_Bit (Id : E; V : U) is
4156 begin
4157 pragma Assert
4158 (Ekind (Id) = E_Component or else Ekind (Id) = E_Discriminant);
4159 Set_Uint8 (Id, V);
4160 end Set_Normalized_First_Bit;
4161
4162 procedure Set_Normalized_Position (Id : E; V : U) is
4163 begin
4164 pragma Assert
4165 (Ekind (Id) = E_Component or else Ekind (Id) = E_Discriminant);
4166 Set_Uint14 (Id, V);
4167 end Set_Normalized_Position;
4168
4169 procedure Set_Normalized_Position_Max (Id : E; V : U) is
4170 begin
4171 pragma Assert
4172 (Ekind (Id) = E_Component or else Ekind (Id) = E_Discriminant);
4173 Set_Uint10 (Id, V);
4174 end Set_Normalized_Position_Max;
4175
4176 procedure Set_Object_Ref (Id : E; V : E) is
4177 begin
4178 pragma Assert (Ekind (Id) = E_Protected_Body);
4179 Set_Node17 (Id, V);
4180 end Set_Object_Ref;
4181
4182 procedure Set_Obsolescent_Warning (Id : E; V : N) is
4183 begin
4184 pragma Assert
4185 (Is_Subprogram (Id) or else Is_Package_Or_Generic_Package (Id));
4186 Set_Node24 (Id, V);
4187 end Set_Obsolescent_Warning;
4188
4189 procedure Set_Original_Access_Type (Id : E; V : E) is
4190 begin
4191 pragma Assert
4192 (Ekind (Id) = E_Access_Subprogram_Type
4193 or else Ekind (Id) = E_Access_Protected_Subprogram_Type);
4194 Set_Node21 (Id, V);
4195 end Set_Original_Access_Type;
4196
4197 procedure Set_Original_Array_Type (Id : E; V : E) is
4198 begin
4199 pragma Assert (Is_Array_Type (Id) or else Is_Modular_Integer_Type (Id));
4200 Set_Node21 (Id, V);
4201 end Set_Original_Array_Type;
4202
4203 procedure Set_Original_Record_Component (Id : E; V : E) is
4204 begin
4205 pragma Assert
4206 (Ekind (Id) = E_Void
4207 or else Ekind (Id) = E_Component
4208 or else Ekind (Id) = E_Discriminant);
4209 Set_Node22 (Id, V);
4210 end Set_Original_Record_Component;
4211
4212 procedure Set_Overridden_Operation (Id : E; V : E) is
4213 begin
4214 Set_Node26 (Id, V);
4215 end Set_Overridden_Operation;
4216
4217 procedure Set_Package_Instantiation (Id : E; V : N) is
4218 begin
4219 pragma Assert
4220 (Ekind (Id) = E_Void
4221 or else Ekind (Id) = E_Generic_Package
4222 or else Ekind (Id) = E_Package);
4223 Set_Node26 (Id, V);
4224 end Set_Package_Instantiation;
4225
4226 procedure Set_Packed_Array_Type (Id : E; V : E) is
4227 begin
4228 pragma Assert (Is_Array_Type (Id));
4229 Set_Node23 (Id, V);
4230 end Set_Packed_Array_Type;
4231
4232 procedure Set_Parent_Subtype (Id : E; V : E) is
4233 begin
4234 pragma Assert (Ekind (Id) = E_Record_Type);
4235 Set_Node19 (Id, V);
4236 end Set_Parent_Subtype;
4237
4238 procedure Set_Primitive_Operations (Id : E; V : L) is
4239 begin
4240 pragma Assert (Is_Tagged_Type (Id));
4241 Set_Elist15 (Id, V);
4242 end Set_Primitive_Operations;
4243
4244 procedure Set_Prival (Id : E; V : E) is
4245 begin
4246 pragma Assert (Is_Protected_Private (Id));
4247 Set_Node17 (Id, V);
4248 end Set_Prival;
4249
4250 procedure Set_Privals_Chain (Id : E; V : L) is
4251 begin
4252 pragma Assert (Is_Overloadable (Id)
4253 or else Ekind (Id) = E_Entry_Family);
4254 Set_Elist23 (Id, V);
4255 end Set_Privals_Chain;
4256
4257 procedure Set_Private_Dependents (Id : E; V : L) is
4258 begin
4259 pragma Assert (Is_Incomplete_Or_Private_Type (Id));
4260 Set_Elist18 (Id, V);
4261 end Set_Private_Dependents;
4262
4263 procedure Set_Private_View (Id : E; V : N) is
4264 begin
4265 pragma Assert (Is_Private_Type (Id));
4266 Set_Node22 (Id, V);
4267 end Set_Private_View;
4268
4269 procedure Set_Protected_Body_Subprogram (Id : E; V : E) is
4270 begin
4271 pragma Assert (Is_Subprogram (Id) or else Is_Entry (Id));
4272 Set_Node11 (Id, V);
4273 end Set_Protected_Body_Subprogram;
4274
4275 procedure Set_Protected_Formal (Id : E; V : E) is
4276 begin
4277 pragma Assert (Is_Formal (Id));
4278 Set_Node22 (Id, V);
4279 end Set_Protected_Formal;
4280
4281 procedure Set_Protected_Operation (Id : E; V : N) is
4282 begin
4283 pragma Assert (Is_Protected_Private (Id));
4284 Set_Node23 (Id, V);
4285 end Set_Protected_Operation;
4286
4287 procedure Set_Reachable (Id : E; V : B := True) is
4288 begin
4289 Set_Flag49 (Id, V);
4290 end Set_Reachable;
4291
4292 procedure Set_Referenced (Id : E; V : B := True) is
4293 begin
4294 Set_Flag156 (Id, V);
4295 end Set_Referenced;
4296
4297 procedure Set_Referenced_As_LHS (Id : E; V : B := True) is
4298 begin
4299 Set_Flag36 (Id, V);
4300 end Set_Referenced_As_LHS;
4301
4302 procedure Set_Referenced_Object (Id : E; V : N) is
4303 begin
4304 pragma Assert (Is_Type (Id));
4305 Set_Node10 (Id, V);
4306 end Set_Referenced_Object;
4307
4308 procedure Set_Register_Exception_Call (Id : E; V : N) is
4309 begin
4310 pragma Assert (Ekind (Id) = E_Exception);
4311 Set_Node20 (Id, V);
4312 end Set_Register_Exception_Call;
4313
4314 procedure Set_Related_Array_Object (Id : E; V : E) is
4315 begin
4316 pragma Assert (Is_Array_Type (Id));
4317 Set_Node19 (Id, V);
4318 end Set_Related_Array_Object;
4319
4320 procedure Set_Related_Instance (Id : E; V : E) is
4321 begin
4322 pragma Assert
4323 (Ekind (Id) = E_Package or else Ekind (Id) = E_Package_Body);
4324 Set_Node15 (Id, V);
4325 end Set_Related_Instance;
4326
4327 procedure Set_Renamed_Entity (Id : E; V : N) is
4328 begin
4329 Set_Node18 (Id, V);
4330 end Set_Renamed_Entity;
4331
4332 procedure Set_Renamed_Object (Id : E; V : N) is
4333 begin
4334 Set_Node18 (Id, V);
4335 end Set_Renamed_Object;
4336
4337 procedure Set_Renaming_Map (Id : E; V : U) is
4338 begin
4339 Set_Uint9 (Id, V);
4340 end Set_Renaming_Map;
4341
4342 procedure Set_Return_Present (Id : E; V : B := True) is
4343 begin
4344 Set_Flag54 (Id, V);
4345 end Set_Return_Present;
4346
4347 procedure Set_Returns_By_Ref (Id : E; V : B := True) is
4348 begin
4349 Set_Flag90 (Id, V);
4350 end Set_Returns_By_Ref;
4351
4352 procedure Set_Reverse_Bit_Order (Id : E; V : B := True) is
4353 begin
4354 pragma Assert
4355 (Is_Record_Type (Id) and then Id = Base_Type (Id));
4356 Set_Flag164 (Id, V);
4357 end Set_Reverse_Bit_Order;
4358
4359 procedure Set_RM_Size (Id : E; V : U) is
4360 begin
4361 pragma Assert (Is_Type (Id));
4362 Set_Uint13 (Id, V);
4363 end Set_RM_Size;
4364
4365 procedure Set_Scalar_Range (Id : E; V : N) is
4366 begin
4367 Set_Node20 (Id, V);
4368 end Set_Scalar_Range;
4369
4370 procedure Set_Scale_Value (Id : E; V : U) is
4371 begin
4372 Set_Uint15 (Id, V);
4373 end Set_Scale_Value;
4374
4375 procedure Set_Scope_Depth_Value (Id : E; V : U) is
4376 begin
4377 pragma Assert (not Is_Record_Type (Id));
4378 Set_Uint22 (Id, V);
4379 end Set_Scope_Depth_Value;
4380
4381 procedure Set_Sec_Stack_Needed_For_Return (Id : E; V : B := True) is
4382 begin
4383 Set_Flag167 (Id, V);
4384 end Set_Sec_Stack_Needed_For_Return;
4385
4386 procedure Set_Shadow_Entities (Id : E; V : S) is
4387 begin
4388 pragma Assert
4389 (Ekind (Id) = E_Package or else Ekind (Id) = E_Generic_Package);
4390 Set_List14 (Id, V);
4391 end Set_Shadow_Entities;
4392
4393 procedure Set_Shared_Var_Assign_Proc (Id : E; V : E) is
4394 begin
4395 pragma Assert (Ekind (Id) = E_Variable);
4396 Set_Node22 (Id, V);
4397 end Set_Shared_Var_Assign_Proc;
4398
4399 procedure Set_Shared_Var_Read_Proc (Id : E; V : E) is
4400 begin
4401 pragma Assert (Ekind (Id) = E_Variable);
4402 Set_Node15 (Id, V);
4403 end Set_Shared_Var_Read_Proc;
4404
4405 procedure Set_Size_Check_Code (Id : E; V : N) is
4406 begin
4407 pragma Assert (Ekind (Id) = E_Constant or else Ekind (Id) = E_Variable);
4408 Set_Node19 (Id, V);
4409 end Set_Size_Check_Code;
4410
4411 procedure Set_Size_Depends_On_Discriminant (Id : E; V : B := True) is
4412 begin
4413 Set_Flag177 (Id, V);
4414 end Set_Size_Depends_On_Discriminant;
4415
4416 procedure Set_Size_Known_At_Compile_Time (Id : E; V : B := True) is
4417 begin
4418 Set_Flag92 (Id, V);
4419 end Set_Size_Known_At_Compile_Time;
4420
4421 procedure Set_Small_Value (Id : E; V : R) is
4422 begin
4423 pragma Assert (Is_Fixed_Point_Type (Id));
4424 Set_Ureal21 (Id, V);
4425 end Set_Small_Value;
4426
4427 procedure Set_Spec_Entity (Id : E; V : E) is
4428 begin
4429 pragma Assert (Ekind (Id) = E_Package_Body or else Is_Formal (Id));
4430 Set_Node19 (Id, V);
4431 end Set_Spec_Entity;
4432
4433 procedure Set_Storage_Size_Variable (Id : E; V : E) is
4434 begin
4435 pragma Assert (Is_Access_Type (Id) or else Is_Task_Type (Id));
4436 pragma Assert (Base_Type (Id) = Id);
4437 Set_Node15 (Id, V);
4438 end Set_Storage_Size_Variable;
4439
4440 procedure Set_Stored_Constraint (Id : E; V : L) is
4441 begin
4442 pragma Assert (Nkind (Id) in N_Entity);
4443 Set_Elist23 (Id, V);
4444 end Set_Stored_Constraint;
4445
4446 procedure Set_Strict_Alignment (Id : E; V : B := True) is
4447 begin
4448 pragma Assert (Base_Type (Id) = Id);
4449 Set_Flag145 (Id, V);
4450 end Set_Strict_Alignment;
4451
4452 procedure Set_String_Literal_Length (Id : E; V : U) is
4453 begin
4454 pragma Assert (Ekind (Id) = E_String_Literal_Subtype);
4455 Set_Uint16 (Id, V);
4456 end Set_String_Literal_Length;
4457
4458 procedure Set_String_Literal_Low_Bound (Id : E; V : N) is
4459 begin
4460 pragma Assert (Ekind (Id) = E_String_Literal_Subtype);
4461 Set_Node15 (Id, V);
4462 end Set_String_Literal_Low_Bound;
4463
4464 procedure Set_Suppress_Elaboration_Warnings (Id : E; V : B := True) is
4465 begin
4466 Set_Flag148 (Id, V);
4467 end Set_Suppress_Elaboration_Warnings;
4468
4469 procedure Set_Suppress_Init_Proc (Id : E; V : B := True) is
4470 begin
4471 pragma Assert (Id = Base_Type (Id));
4472 Set_Flag105 (Id, V);
4473 end Set_Suppress_Init_Proc;
4474
4475 procedure Set_Suppress_Style_Checks (Id : E; V : B := True) is
4476 begin
4477 Set_Flag165 (Id, V);
4478 end Set_Suppress_Style_Checks;
4479
4480 procedure Set_Task_Body_Procedure (Id : E; V : N) is
4481 begin
4482 pragma Assert (Ekind (Id) = E_Task_Type
4483 or else Ekind (Id) = E_Task_Subtype);
4484 Set_Node24 (Id, V);
4485 end Set_Task_Body_Procedure;
4486
4487 procedure Set_Treat_As_Volatile (Id : E; V : B := True) is
4488 begin
4489 Set_Flag41 (Id, V);
4490 end Set_Treat_As_Volatile;
4491
4492 procedure Set_Underlying_Full_View (Id : E; V : E) is
4493 begin
4494 pragma Assert (Ekind (Id) in Private_Kind);
4495 Set_Node19 (Id, V);
4496 end Set_Underlying_Full_View;
4497
4498 procedure Set_Unset_Reference (Id : E; V : N) is
4499 begin
4500 Set_Node16 (Id, V);
4501 end Set_Unset_Reference;
4502
4503 procedure Set_Uses_Sec_Stack (Id : E; V : B := True) is
4504 begin
4505 Set_Flag95 (Id, V);
4506 end Set_Uses_Sec_Stack;
4507
4508 procedure Set_Vax_Float (Id : E; V : B := True) is
4509 begin
4510 pragma Assert (Id = Base_Type (Id));
4511 Set_Flag151 (Id, V);
4512 end Set_Vax_Float;
4513
4514 procedure Set_Warnings_Off (Id : E; V : B := True) is
4515 begin
4516 Set_Flag96 (Id, V);
4517 end Set_Warnings_Off;
4518
4519 procedure Set_Was_Hidden (Id : E; V : B := True) is
4520 begin
4521 Set_Flag196 (Id, V);
4522 end Set_Was_Hidden;
4523
4524 procedure Set_Wrapped_Entity (Id : E; V : E) is
4525 begin
4526 pragma Assert (Ekind (Id) = E_Procedure
4527 and then Is_Primitive_Wrapper (Id));
4528 Set_Node27 (Id, V);
4529 end Set_Wrapped_Entity;
4530
4531 -----------------------------------
4532 -- Field Initialization Routines --
4533 -----------------------------------
4534
4535 procedure Init_Alignment (Id : E) is
4536 begin
4537 Set_Uint14 (Id, Uint_0);
4538 end Init_Alignment;
4539
4540 procedure Init_Alignment (Id : E; V : Int) is
4541 begin
4542 Set_Uint14 (Id, UI_From_Int (V));
4543 end Init_Alignment;
4544
4545 procedure Init_Component_Bit_Offset (Id : E) is
4546 begin
4547 Set_Uint11 (Id, No_Uint);
4548 end Init_Component_Bit_Offset;
4549
4550 procedure Init_Component_Bit_Offset (Id : E; V : Int) is
4551 begin
4552 Set_Uint11 (Id, UI_From_Int (V));
4553 end Init_Component_Bit_Offset;
4554
4555 procedure Init_Component_Size (Id : E) is
4556 begin
4557 Set_Uint22 (Id, Uint_0);
4558 end Init_Component_Size;
4559
4560 procedure Init_Component_Size (Id : E; V : Int) is
4561 begin
4562 Set_Uint22 (Id, UI_From_Int (V));
4563 end Init_Component_Size;
4564
4565 procedure Init_Digits_Value (Id : E) is
4566 begin
4567 Set_Uint17 (Id, Uint_0);
4568 end Init_Digits_Value;
4569
4570 procedure Init_Digits_Value (Id : E; V : Int) is
4571 begin
4572 Set_Uint17 (Id, UI_From_Int (V));
4573 end Init_Digits_Value;
4574
4575 procedure Init_Esize (Id : E) is
4576 begin
4577 Set_Uint12 (Id, Uint_0);
4578 end Init_Esize;
4579
4580 procedure Init_Esize (Id : E; V : Int) is
4581 begin
4582 Set_Uint12 (Id, UI_From_Int (V));
4583 end Init_Esize;
4584
4585 procedure Init_Normalized_First_Bit (Id : E) is
4586 begin
4587 Set_Uint8 (Id, No_Uint);
4588 end Init_Normalized_First_Bit;
4589
4590 procedure Init_Normalized_First_Bit (Id : E; V : Int) is
4591 begin
4592 Set_Uint8 (Id, UI_From_Int (V));
4593 end Init_Normalized_First_Bit;
4594
4595 procedure Init_Normalized_Position (Id : E) is
4596 begin
4597 Set_Uint14 (Id, No_Uint);
4598 end Init_Normalized_Position;
4599
4600 procedure Init_Normalized_Position (Id : E; V : Int) is
4601 begin
4602 Set_Uint14 (Id, UI_From_Int (V));
4603 end Init_Normalized_Position;
4604
4605 procedure Init_Normalized_Position_Max (Id : E) is
4606 begin
4607 Set_Uint10 (Id, No_Uint);
4608 end Init_Normalized_Position_Max;
4609
4610 procedure Init_Normalized_Position_Max (Id : E; V : Int) is
4611 begin
4612 Set_Uint10 (Id, UI_From_Int (V));
4613 end Init_Normalized_Position_Max;
4614
4615 procedure Init_RM_Size (Id : E) is
4616 begin
4617 Set_Uint13 (Id, Uint_0);
4618 end Init_RM_Size;
4619
4620 procedure Init_RM_Size (Id : E; V : Int) is
4621 begin
4622 Set_Uint13 (Id, UI_From_Int (V));
4623 end Init_RM_Size;
4624
4625 -----------------------------
4626 -- Init_Component_Location --
4627 -----------------------------
4628
4629 procedure Init_Component_Location (Id : E) is
4630 begin
4631 Set_Uint8 (Id, No_Uint); -- Normalized_First_Bit
4632 Set_Uint10 (Id, No_Uint); -- Normalized_Position_Max
4633 Set_Uint11 (Id, No_Uint); -- Component_First_Bit
4634 Set_Uint12 (Id, Uint_0); -- Esize
4635 Set_Uint14 (Id, No_Uint); -- Normalized_Position
4636 end Init_Component_Location;
4637
4638 ---------------
4639 -- Init_Size --
4640 ---------------
4641
4642 procedure Init_Size (Id : E; V : Int) is
4643 begin
4644 Set_Uint12 (Id, UI_From_Int (V)); -- Esize
4645 Set_Uint13 (Id, UI_From_Int (V)); -- RM_Size
4646 end Init_Size;
4647
4648 ---------------------
4649 -- Init_Size_Align --
4650 ---------------------
4651
4652 procedure Init_Size_Align (Id : E) is
4653 begin
4654 Set_Uint12 (Id, Uint_0); -- Esize
4655 Set_Uint13 (Id, Uint_0); -- RM_Size
4656 Set_Uint14 (Id, Uint_0); -- Alignment
4657 end Init_Size_Align;
4658
4659 ----------------------------------------------
4660 -- Type Representation Attribute Predicates --
4661 ----------------------------------------------
4662
4663 function Known_Alignment (E : Entity_Id) return B is
4664 begin
4665 return Uint14 (E) /= Uint_0
4666 and then Uint14 (E) /= No_Uint;
4667 end Known_Alignment;
4668
4669 function Known_Component_Bit_Offset (E : Entity_Id) return B is
4670 begin
4671 return Uint11 (E) /= No_Uint;
4672 end Known_Component_Bit_Offset;
4673
4674 function Known_Component_Size (E : Entity_Id) return B is
4675 begin
4676 return Uint22 (Base_Type (E)) /= Uint_0
4677 and then Uint22 (Base_Type (E)) /= No_Uint;
4678 end Known_Component_Size;
4679
4680 function Known_Esize (E : Entity_Id) return B is
4681 begin
4682 return Uint12 (E) /= Uint_0
4683 and then Uint12 (E) /= No_Uint;
4684 end Known_Esize;
4685
4686 function Known_Normalized_First_Bit (E : Entity_Id) return B is
4687 begin
4688 return Uint8 (E) /= No_Uint;
4689 end Known_Normalized_First_Bit;
4690
4691 function Known_Normalized_Position (E : Entity_Id) return B is
4692 begin
4693 return Uint14 (E) /= No_Uint;
4694 end Known_Normalized_Position;
4695
4696 function Known_Normalized_Position_Max (E : Entity_Id) return B is
4697 begin
4698 return Uint10 (E) /= No_Uint;
4699 end Known_Normalized_Position_Max;
4700
4701 function Known_RM_Size (E : Entity_Id) return B is
4702 begin
4703 return Uint13 (E) /= No_Uint
4704 and then (Uint13 (E) /= Uint_0
4705 or else Is_Discrete_Type (E)
4706 or else Is_Fixed_Point_Type (E));
4707 end Known_RM_Size;
4708
4709 function Known_Static_Component_Bit_Offset (E : Entity_Id) return B is
4710 begin
4711 return Uint11 (E) /= No_Uint
4712 and then Uint11 (E) >= Uint_0;
4713 end Known_Static_Component_Bit_Offset;
4714
4715 function Known_Static_Component_Size (E : Entity_Id) return B is
4716 begin
4717 return Uint22 (Base_Type (E)) > Uint_0;
4718 end Known_Static_Component_Size;
4719
4720 function Known_Static_Esize (E : Entity_Id) return B is
4721 begin
4722 return Uint12 (E) > Uint_0;
4723 end Known_Static_Esize;
4724
4725 function Known_Static_Normalized_First_Bit (E : Entity_Id) return B is
4726 begin
4727 return Uint8 (E) /= No_Uint
4728 and then Uint8 (E) >= Uint_0;
4729 end Known_Static_Normalized_First_Bit;
4730
4731 function Known_Static_Normalized_Position (E : Entity_Id) return B is
4732 begin
4733 return Uint14 (E) /= No_Uint
4734 and then Uint14 (E) >= Uint_0;
4735 end Known_Static_Normalized_Position;
4736
4737 function Known_Static_Normalized_Position_Max (E : Entity_Id) return B is
4738 begin
4739 return Uint10 (E) /= No_Uint
4740 and then Uint10 (E) >= Uint_0;
4741 end Known_Static_Normalized_Position_Max;
4742
4743 function Known_Static_RM_Size (E : Entity_Id) return B is
4744 begin
4745 return Uint13 (E) > Uint_0
4746 or else Is_Discrete_Type (E)
4747 or else Is_Fixed_Point_Type (E);
4748 end Known_Static_RM_Size;
4749
4750 function Unknown_Alignment (E : Entity_Id) return B is
4751 begin
4752 return Uint14 (E) = Uint_0
4753 or else Uint14 (E) = No_Uint;
4754 end Unknown_Alignment;
4755
4756 function Unknown_Component_Bit_Offset (E : Entity_Id) return B is
4757 begin
4758 return Uint11 (E) = No_Uint;
4759 end Unknown_Component_Bit_Offset;
4760
4761 function Unknown_Component_Size (E : Entity_Id) return B is
4762 begin
4763 return Uint22 (Base_Type (E)) = Uint_0
4764 or else
4765 Uint22 (Base_Type (E)) = No_Uint;
4766 end Unknown_Component_Size;
4767
4768 function Unknown_Esize (E : Entity_Id) return B is
4769 begin
4770 return Uint12 (E) = No_Uint
4771 or else
4772 Uint12 (E) = Uint_0;
4773 end Unknown_Esize;
4774
4775 function Unknown_Normalized_First_Bit (E : Entity_Id) return B is
4776 begin
4777 return Uint8 (E) = No_Uint;
4778 end Unknown_Normalized_First_Bit;
4779
4780 function Unknown_Normalized_Position (E : Entity_Id) return B is
4781 begin
4782 return Uint14 (E) = No_Uint;
4783 end Unknown_Normalized_Position;
4784
4785 function Unknown_Normalized_Position_Max (E : Entity_Id) return B is
4786 begin
4787 return Uint10 (E) = No_Uint;
4788 end Unknown_Normalized_Position_Max;
4789
4790 function Unknown_RM_Size (E : Entity_Id) return B is
4791 begin
4792 return (Uint13 (E) = Uint_0
4793 and then not Is_Discrete_Type (E)
4794 and then not Is_Fixed_Point_Type (E))
4795 or else Uint13 (E) = No_Uint;
4796 end Unknown_RM_Size;
4797
4798 --------------------
4799 -- Address_Clause --
4800 --------------------
4801
4802 function Address_Clause (Id : E) return N is
4803 begin
4804 return Rep_Clause (Id, Name_Address);
4805 end Address_Clause;
4806
4807 ----------------------
4808 -- Alignment_Clause --
4809 ----------------------
4810
4811 function Alignment_Clause (Id : E) return N is
4812 begin
4813 return Rep_Clause (Id, Name_Alignment);
4814 end Alignment_Clause;
4815
4816 ----------------------
4817 -- Ancestor_Subtype --
4818 ----------------------
4819
4820 function Ancestor_Subtype (Id : E) return E is
4821 begin
4822 -- If this is first subtype, or is a base type, then there is no
4823 -- ancestor subtype, so we return Empty to indicate this fact.
4824
4825 if Is_First_Subtype (Id) or else Id = Base_Type (Id) then
4826 return Empty;
4827 end if;
4828
4829 declare
4830 D : constant Node_Id := Declaration_Node (Id);
4831
4832 begin
4833 -- If we have a subtype declaration, get the ancestor subtype
4834
4835 if Nkind (D) = N_Subtype_Declaration then
4836 if Nkind (Subtype_Indication (D)) = N_Subtype_Indication then
4837 return Entity (Subtype_Mark (Subtype_Indication (D)));
4838 else
4839 return Entity (Subtype_Indication (D));
4840 end if;
4841
4842 -- If not, then no subtype indication is available
4843
4844 else
4845 return Empty;
4846 end if;
4847 end;
4848 end Ancestor_Subtype;
4849
4850 -------------------
4851 -- Append_Entity --
4852 -------------------
4853
4854 procedure Append_Entity (Id : Entity_Id; V : Entity_Id) is
4855 begin
4856 if Last_Entity (V) = Empty then
4857 Set_First_Entity (V, Id);
4858 else
4859 Set_Next_Entity (Last_Entity (V), Id);
4860 end if;
4861
4862 Set_Next_Entity (Id, Empty);
4863 Set_Scope (Id, V);
4864 Set_Last_Entity (V, Id);
4865 end Append_Entity;
4866
4867 ---------------
4868 -- Base_Type --
4869 ---------------
4870
4871 function Base_Type (Id : E) return E is
4872 begin
4873 case Ekind (Id) is
4874 when E_Enumeration_Subtype |
4875 E_Incomplete_Type |
4876 E_Signed_Integer_Subtype |
4877 E_Modular_Integer_Subtype |
4878 E_Floating_Point_Subtype |
4879 E_Ordinary_Fixed_Point_Subtype |
4880 E_Decimal_Fixed_Point_Subtype |
4881 E_Array_Subtype |
4882 E_String_Subtype |
4883 E_Record_Subtype |
4884 E_Private_Subtype |
4885 E_Record_Subtype_With_Private |
4886 E_Limited_Private_Subtype |
4887 E_Access_Subtype |
4888 E_Protected_Subtype |
4889 E_Task_Subtype |
4890 E_String_Literal_Subtype |
4891 E_Class_Wide_Subtype =>
4892 return Etype (Id);
4893
4894 when others =>
4895 return Id;
4896 end case;
4897 end Base_Type;
4898
4899 -------------------------
4900 -- Component_Alignment --
4901 -------------------------
4902
4903 -- Component Alignment is encoded using two flags, Flag128/129 as
4904 -- follows. Note that both flags False = Align_Default, so that the
4905 -- default initialization of flags to False initializes component
4906 -- alignment to the default value as required.
4907
4908 -- Flag128 Flag129 Value
4909 -- ------- ------- -----
4910 -- False False Calign_Default
4911 -- False True Calign_Component_Size
4912 -- True False Calign_Component_Size_4
4913 -- True True Calign_Storage_Unit
4914
4915 function Component_Alignment (Id : E) return C is
4916 BT : constant Node_Id := Base_Type (Id);
4917
4918 begin
4919 pragma Assert (Is_Array_Type (Id) or else Is_Record_Type (Id));
4920
4921 if Flag128 (BT) then
4922 if Flag129 (BT) then
4923 return Calign_Storage_Unit;
4924 else
4925 return Calign_Component_Size_4;
4926 end if;
4927
4928 else
4929 if Flag129 (BT) then
4930 return Calign_Component_Size;
4931 else
4932 return Calign_Default;
4933 end if;
4934 end if;
4935 end Component_Alignment;
4936
4937 --------------------
4938 -- Constant_Value --
4939 --------------------
4940
4941 function Constant_Value (Id : E) return N is
4942 D : constant Node_Id := Declaration_Node (Id);
4943 Full_D : Node_Id;
4944
4945 begin
4946 -- If we have no declaration node, then return no constant value.
4947 -- Not clear how this can happen, but it does sometimes ???
4948 -- To investigate, remove this check and compile discrim_po.adb.
4949
4950 if No (D) then
4951 return Empty;
4952
4953 -- Normal case where a declaration node is present
4954
4955 elsif Nkind (D) = N_Object_Renaming_Declaration then
4956 return Renamed_Object (Id);
4957
4958 -- If this is a component declaration whose entity is constant, it
4959 -- is a prival within a protected function. It does not have
4960 -- a constant value.
4961
4962 elsif Nkind (D) = N_Component_Declaration then
4963 return Empty;
4964
4965 -- If there is an expression, return it
4966
4967 elsif Present (Expression (D)) then
4968 return (Expression (D));
4969
4970 -- For a constant, see if we have a full view
4971
4972 elsif Ekind (Id) = E_Constant
4973 and then Present (Full_View (Id))
4974 then
4975 Full_D := Parent (Full_View (Id));
4976
4977 -- The full view may have been rewritten as an object renaming
4978
4979 if Nkind (Full_D) = N_Object_Renaming_Declaration then
4980 return Name (Full_D);
4981 else
4982 return Expression (Full_D);
4983 end if;
4984
4985 -- Otherwise we have no expression to return
4986
4987 else
4988 return Empty;
4989 end if;
4990 end Constant_Value;
4991
4992 ----------------------
4993 -- Declaration_Node --
4994 ----------------------
4995
4996 function Declaration_Node (Id : E) return N is
4997 P : Node_Id;
4998
4999 begin
5000 if Ekind (Id) = E_Incomplete_Type
5001 and then Present (Full_View (Id))
5002 then
5003 P := Parent (Full_View (Id));
5004 else
5005 P := Parent (Id);
5006 end if;
5007
5008 loop
5009 if Nkind (P) /= N_Selected_Component
5010 and then Nkind (P) /= N_Expanded_Name
5011 and then
5012 not (Nkind (P) = N_Defining_Program_Unit_Name
5013 and then Is_Child_Unit (Id))
5014 then
5015 return P;
5016 else
5017 P := Parent (P);
5018 end if;
5019 end loop;
5020
5021 end Declaration_Node;
5022
5023 ---------------------
5024 -- Designated_Type --
5025 ---------------------
5026
5027 function Designated_Type (Id : E) return E is
5028 Desig_Type : E;
5029
5030 begin
5031 Desig_Type := Directly_Designated_Type (Id);
5032
5033 if Ekind (Desig_Type) = E_Incomplete_Type
5034 and then Present (Full_View (Desig_Type))
5035 then
5036 return Full_View (Desig_Type);
5037
5038 elsif Is_Class_Wide_Type (Desig_Type)
5039 and then Ekind (Etype (Desig_Type)) = E_Incomplete_Type
5040 and then Present (Full_View (Etype (Desig_Type)))
5041 and then Present (Class_Wide_Type (Full_View (Etype (Desig_Type))))
5042 then
5043 return Class_Wide_Type (Full_View (Etype (Desig_Type)));
5044
5045 else
5046 return Desig_Type;
5047 end if;
5048 end Designated_Type;
5049
5050 -----------------------------
5051 -- Enclosing_Dynamic_Scope --
5052 -----------------------------
5053
5054 function Enclosing_Dynamic_Scope (Id : E) return E is
5055 S : Entity_Id;
5056
5057 begin
5058 -- The following test is an error defense against some syntax
5059 -- errors that can leave scopes very messed up.
5060
5061 if Id = Standard_Standard then
5062 return Id;
5063 end if;
5064
5065 -- Normal case, search enclosing scopes
5066
5067 S := Scope (Id);
5068 while S /= Standard_Standard
5069 and then not Is_Dynamic_Scope (S)
5070 loop
5071 S := Scope (S);
5072 end loop;
5073
5074 return S;
5075 end Enclosing_Dynamic_Scope;
5076
5077 ----------------------
5078 -- Entry_Index_Type --
5079 ----------------------
5080
5081 function Entry_Index_Type (Id : E) return N is
5082 begin
5083 pragma Assert (Ekind (Id) = E_Entry_Family);
5084 return Etype (Discrete_Subtype_Definition (Parent (Id)));
5085 end Entry_Index_Type;
5086
5087 ---------------------
5088 -- 1 --
5089 ---------------------
5090
5091 function First_Component (Id : E) return E is
5092 Comp_Id : E;
5093
5094 begin
5095 pragma Assert
5096 (Is_Record_Type (Id) or else Is_Incomplete_Or_Private_Type (Id));
5097
5098 Comp_Id := First_Entity (Id);
5099 while Present (Comp_Id) loop
5100 exit when Ekind (Comp_Id) = E_Component;
5101 Comp_Id := Next_Entity (Comp_Id);
5102 end loop;
5103
5104 return Comp_Id;
5105 end First_Component;
5106
5107 ------------------------
5108 -- First_Discriminant --
5109 ------------------------
5110
5111 function First_Discriminant (Id : E) return E is
5112 Ent : Entity_Id;
5113
5114 begin
5115 pragma Assert
5116 (Has_Discriminants (Id)
5117 or else Has_Unknown_Discriminants (Id));
5118
5119 Ent := First_Entity (Id);
5120
5121 -- The discriminants are not necessarily contiguous, because access
5122 -- discriminants will generate itypes. They are not the first entities
5123 -- either, because tag and controller record must be ahead of them.
5124
5125 if Chars (Ent) = Name_uTag then
5126 Ent := Next_Entity (Ent);
5127 end if;
5128
5129 if Chars (Ent) = Name_uController then
5130 Ent := Next_Entity (Ent);
5131 end if;
5132
5133 -- Skip all hidden stored discriminants if any
5134
5135 while Present (Ent) loop
5136 exit when Ekind (Ent) = E_Discriminant
5137 and then not Is_Completely_Hidden (Ent);
5138
5139 Ent := Next_Entity (Ent);
5140 end loop;
5141
5142 pragma Assert (Ekind (Ent) = E_Discriminant);
5143
5144 return Ent;
5145 end First_Discriminant;
5146
5147 ------------------
5148 -- First_Formal --
5149 ------------------
5150
5151 function First_Formal (Id : E) return E is
5152 Formal : E;
5153
5154 begin
5155 pragma Assert
5156 (Is_Overloadable (Id)
5157 or else Ekind (Id) = E_Entry_Family
5158 or else Ekind (Id) = E_Subprogram_Body
5159 or else Ekind (Id) = E_Subprogram_Type);
5160
5161 if Ekind (Id) = E_Enumeration_Literal then
5162 return Empty;
5163
5164 else
5165 Formal := First_Entity (Id);
5166
5167 if Present (Formal) and then Is_Formal (Formal) then
5168 return Formal;
5169 else
5170 return Empty;
5171 end if;
5172 end if;
5173 end First_Formal;
5174
5175 -------------------------------
5176 -- First_Stored_Discriminant --
5177 -------------------------------
5178
5179 function First_Stored_Discriminant (Id : E) return E is
5180 Ent : Entity_Id;
5181
5182 function Has_Completely_Hidden_Discriminant (Id : E) return Boolean;
5183 -- Scans the Discriminants to see whether any are Completely_Hidden
5184 -- (the mechanism for describing non-specified stored discriminants)
5185
5186 ----------------------------------------
5187 -- Has_Completely_Hidden_Discriminant --
5188 ----------------------------------------
5189
5190 function Has_Completely_Hidden_Discriminant (Id : E) return Boolean is
5191 Ent : Entity_Id := Id;
5192
5193 begin
5194 pragma Assert (Ekind (Id) = E_Discriminant);
5195
5196 while Present (Ent) and then Ekind (Ent) = E_Discriminant loop
5197 if Is_Completely_Hidden (Ent) then
5198 return True;
5199 end if;
5200
5201 Ent := Next_Entity (Ent);
5202 end loop;
5203
5204 return False;
5205 end Has_Completely_Hidden_Discriminant;
5206
5207 -- Start of processing for First_Stored_Discriminant
5208
5209 begin
5210 pragma Assert
5211 (Has_Discriminants (Id)
5212 or else Has_Unknown_Discriminants (Id));
5213
5214 Ent := First_Entity (Id);
5215
5216 if Chars (Ent) = Name_uTag then
5217 Ent := Next_Entity (Ent);
5218 end if;
5219
5220 if Chars (Ent) = Name_uController then
5221 Ent := Next_Entity (Ent);
5222 end if;
5223
5224 if Has_Completely_Hidden_Discriminant (Ent) then
5225
5226 while Present (Ent) loop
5227 exit when Is_Completely_Hidden (Ent);
5228 Ent := Next_Entity (Ent);
5229 end loop;
5230
5231 end if;
5232
5233 pragma Assert (Ekind (Ent) = E_Discriminant);
5234
5235 return Ent;
5236 end First_Stored_Discriminant;
5237
5238 -------------------
5239 -- First_Subtype --
5240 -------------------
5241
5242 function First_Subtype (Id : E) return E is
5243 B : constant Entity_Id := Base_Type (Id);
5244 F : constant Node_Id := Freeze_Node (B);
5245 Ent : Entity_Id;
5246
5247 begin
5248 -- If the base type has no freeze node, it is a type in standard,
5249 -- and always acts as its own first subtype unless it is one of
5250 -- the predefined integer types. If the type is formal, it is also
5251 -- a first subtype, and its base type has no freeze node. On the other
5252 -- hand, a subtype of a generic formal is not its own first_subtype.
5253 -- Its base type, if anonymous, is attached to the formal type decl.
5254 -- from which the first subtype is obtained.
5255
5256 if No (F) then
5257
5258 if B = Base_Type (Standard_Integer) then
5259 return Standard_Integer;
5260
5261 elsif B = Base_Type (Standard_Long_Integer) then
5262 return Standard_Long_Integer;
5263
5264 elsif B = Base_Type (Standard_Short_Short_Integer) then
5265 return Standard_Short_Short_Integer;
5266
5267 elsif B = Base_Type (Standard_Short_Integer) then
5268 return Standard_Short_Integer;
5269
5270 elsif B = Base_Type (Standard_Long_Long_Integer) then
5271 return Standard_Long_Long_Integer;
5272
5273 elsif Is_Generic_Type (Id) then
5274 if Present (Parent (B)) then
5275 return Defining_Identifier (Parent (B));
5276 else
5277 return Defining_Identifier (Associated_Node_For_Itype (B));
5278 end if;
5279
5280 else
5281 return B;
5282 end if;
5283
5284 -- Otherwise we check the freeze node, if it has a First_Subtype_Link
5285 -- then we use that link, otherwise (happens with some Itypes), we use
5286 -- the base type itself.
5287
5288 else
5289 Ent := First_Subtype_Link (F);
5290
5291 if Present (Ent) then
5292 return Ent;
5293 else
5294 return B;
5295 end if;
5296 end if;
5297 end First_Subtype;
5298
5299 -------------------------------------
5300 -- Get_Attribute_Definition_Clause --
5301 -------------------------------------
5302
5303 function Get_Attribute_Definition_Clause
5304 (E : Entity_Id;
5305 Id : Attribute_Id) return Node_Id
5306 is
5307 N : Node_Id;
5308
5309 begin
5310 N := First_Rep_Item (E);
5311 while Present (N) loop
5312 if Nkind (N) = N_Attribute_Definition_Clause
5313 and then Get_Attribute_Id (Chars (N)) = Id
5314 then
5315 return N;
5316 else
5317 Next_Rep_Item (N);
5318 end if;
5319 end loop;
5320
5321 return Empty;
5322 end Get_Attribute_Definition_Clause;
5323
5324 --------------------
5325 -- Get_Rep_Pragma --
5326 --------------------
5327
5328 function Get_Rep_Pragma (E : Entity_Id; Nam : Name_Id) return Node_Id is
5329 N : Node_Id;
5330
5331 begin
5332 N := First_Rep_Item (E);
5333 while Present (N) loop
5334 if Nkind (N) = N_Pragma and then Chars (N) = Nam then
5335 return N;
5336 end if;
5337
5338 Next_Rep_Item (N);
5339 end loop;
5340
5341 return Empty;
5342 end Get_Rep_Pragma;
5343
5344 ------------------------
5345 -- Has_Attach_Handler --
5346 ------------------------
5347
5348 function Has_Attach_Handler (Id : E) return B is
5349 Ritem : Node_Id;
5350
5351 begin
5352 pragma Assert (Is_Protected_Type (Id));
5353
5354 Ritem := First_Rep_Item (Id);
5355 while Present (Ritem) loop
5356 if Nkind (Ritem) = N_Pragma
5357 and then Chars (Ritem) = Name_Attach_Handler
5358 then
5359 return True;
5360 else
5361 Ritem := Next_Rep_Item (Ritem);
5362 end if;
5363 end loop;
5364
5365 return False;
5366 end Has_Attach_Handler;
5367
5368 -------------------------------------
5369 -- Has_Attribute_Definition_Clause --
5370 -------------------------------------
5371
5372 function Has_Attribute_Definition_Clause
5373 (E : Entity_Id;
5374 Id : Attribute_Id) return Boolean
5375 is
5376 begin
5377 return Present (Get_Attribute_Definition_Clause (E, Id));
5378 end Has_Attribute_Definition_Clause;
5379
5380 -----------------
5381 -- Has_Entries --
5382 -----------------
5383
5384 function Has_Entries (Id : E) return B is
5385 Result : Boolean := False;
5386 Ent : Entity_Id;
5387
5388 begin
5389 pragma Assert (Is_Concurrent_Type (Id));
5390
5391 Ent := First_Entity (Id);
5392 while Present (Ent) loop
5393 if Is_Entry (Ent) then
5394 Result := True;
5395 exit;
5396 end if;
5397
5398 Ent := Next_Entity (Ent);
5399 end loop;
5400
5401 return Result;
5402 end Has_Entries;
5403
5404 ----------------------------
5405 -- Has_Foreign_Convention --
5406 ----------------------------
5407
5408 function Has_Foreign_Convention (Id : E) return B is
5409 begin
5410 return Convention (Id) >= Foreign_Convention'First;
5411 end Has_Foreign_Convention;
5412
5413 ---------------------------
5414 -- Has_Interrupt_Handler --
5415 ---------------------------
5416
5417 function Has_Interrupt_Handler (Id : E) return B is
5418 Ritem : Node_Id;
5419
5420 begin
5421 pragma Assert (Is_Protected_Type (Id));
5422
5423 Ritem := First_Rep_Item (Id);
5424 while Present (Ritem) loop
5425 if Nkind (Ritem) = N_Pragma
5426 and then Chars (Ritem) = Name_Interrupt_Handler
5427 then
5428 return True;
5429 else
5430 Ritem := Next_Rep_Item (Ritem);
5431 end if;
5432 end loop;
5433
5434 return False;
5435 end Has_Interrupt_Handler;
5436
5437 --------------------------
5438 -- Has_Private_Ancestor --
5439 --------------------------
5440
5441 function Has_Private_Ancestor (Id : E) return B is
5442 R : constant Entity_Id := Root_Type (Id);
5443 T1 : Entity_Id := Id;
5444
5445 begin
5446 loop
5447 if Is_Private_Type (T1) then
5448 return True;
5449
5450 elsif T1 = R then
5451 return False;
5452
5453 else
5454 T1 := Etype (T1);
5455 end if;
5456 end loop;
5457 end Has_Private_Ancestor;
5458
5459 --------------------
5460 -- Has_Rep_Pragma --
5461 --------------------
5462
5463 function Has_Rep_Pragma (E : Entity_Id; Nam : Name_Id) return Boolean is
5464 begin
5465 return Present (Get_Rep_Pragma (E, Nam));
5466 end Has_Rep_Pragma;
5467
5468 ------------------------------
5469 -- Implementation_Base_Type --
5470 ------------------------------
5471
5472 function Implementation_Base_Type (Id : E) return E is
5473 Bastyp : Entity_Id;
5474 Imptyp : Entity_Id;
5475
5476 begin
5477 Bastyp := Base_Type (Id);
5478
5479 if Is_Incomplete_Or_Private_Type (Bastyp) then
5480 Imptyp := Underlying_Type (Bastyp);
5481
5482 -- If we have an implementation type, then just return it,
5483 -- otherwise we return the Base_Type anyway. This can only
5484 -- happen in error situations and should avoid some error bombs.
5485
5486 if Present (Imptyp) then
5487 return Base_Type (Imptyp);
5488 else
5489 return Bastyp;
5490 end if;
5491
5492 else
5493 return Bastyp;
5494 end if;
5495 end Implementation_Base_Type;
5496
5497 -----------------------
5498 -- Is_Always_Inlined --
5499 -----------------------
5500
5501 function Is_Always_Inlined (Id : E) return B is
5502 Item : Node_Id;
5503
5504 begin
5505 Item := First_Rep_Item (Id);
5506 while Present (Item) loop
5507 if Nkind (Item) = N_Pragma
5508 and then Get_Pragma_Id (Chars (Item)) = Pragma_Inline_Always
5509 then
5510 return True;
5511 end if;
5512
5513 Next_Rep_Item (Item);
5514 end loop;
5515
5516 return False;
5517 end Is_Always_Inlined;
5518
5519 ---------------------
5520 -- Is_Boolean_Type --
5521 ---------------------
5522
5523 function Is_Boolean_Type (Id : E) return B is
5524 begin
5525 return Root_Type (Id) = Standard_Boolean;
5526 end Is_Boolean_Type;
5527
5528 ---------------------
5529 -- Is_By_Copy_Type --
5530 ---------------------
5531
5532 function Is_By_Copy_Type (Id : E) return B is
5533 begin
5534 -- If Id is a private type whose full declaration has not been seen,
5535 -- we assume for now that it is not a By_Copy type. Clearly this
5536 -- attribute should not be used before the type is frozen, but it is
5537 -- needed to build the associated record of a protected type. Another
5538 -- place where some lookahead for a full view is needed ???
5539
5540 return
5541 Is_Elementary_Type (Id)
5542 or else (Is_Private_Type (Id)
5543 and then Present (Underlying_Type (Id))
5544 and then Is_Elementary_Type (Underlying_Type (Id)));
5545 end Is_By_Copy_Type;
5546
5547 --------------------------
5548 -- Is_By_Reference_Type --
5549 --------------------------
5550
5551 function Is_By_Reference_Type (Id : E) return B is
5552 Btype : constant Entity_Id := Base_Type (Id);
5553
5554 begin
5555 if Error_Posted (Id)
5556 or else Error_Posted (Btype)
5557 then
5558 return False;
5559
5560 elsif Is_Private_Type (Btype) then
5561 declare
5562 Utyp : constant Entity_Id := Underlying_Type (Btype);
5563
5564 begin
5565 if No (Utyp) then
5566 return False;
5567 else
5568 return Is_By_Reference_Type (Utyp);
5569 end if;
5570 end;
5571
5572 elsif Is_Concurrent_Type (Btype) then
5573 return True;
5574
5575 elsif Is_Record_Type (Btype) then
5576 if Is_Limited_Record (Btype)
5577 or else Is_Tagged_Type (Btype)
5578 or else Is_Volatile (Btype)
5579 then
5580 return True;
5581
5582 else
5583 declare
5584 C : Entity_Id;
5585
5586 begin
5587 C := First_Component (Btype);
5588 while Present (C) loop
5589 if Is_By_Reference_Type (Etype (C))
5590 or else Is_Volatile (Etype (C))
5591 then
5592 return True;
5593 end if;
5594
5595 C := Next_Component (C);
5596 end loop;
5597 end;
5598
5599 return False;
5600 end if;
5601
5602 elsif Is_Array_Type (Btype) then
5603 return
5604 Is_Volatile (Btype)
5605 or else Is_By_Reference_Type (Component_Type (Btype))
5606 or else Is_Volatile (Component_Type (Btype))
5607 or else Has_Volatile_Components (Btype);
5608
5609 else
5610 return False;
5611 end if;
5612 end Is_By_Reference_Type;
5613
5614 ---------------------
5615 -- Is_Derived_Type --
5616 ---------------------
5617
5618 function Is_Derived_Type (Id : E) return B is
5619 Par : Node_Id;
5620
5621 begin
5622 if Base_Type (Id) /= Root_Type (Id)
5623 and then not Is_Generic_Type (Id)
5624 and then not Is_Class_Wide_Type (Id)
5625 then
5626 if not Is_Numeric_Type (Root_Type (Id)) then
5627 return True;
5628
5629 else
5630 Par := Parent (First_Subtype (Id));
5631
5632 return Present (Par)
5633 and then Nkind (Par) = N_Full_Type_Declaration
5634 and then Nkind (Type_Definition (Par))
5635 = N_Derived_Type_Definition;
5636 end if;
5637
5638 else
5639 return False;
5640 end if;
5641 end Is_Derived_Type;
5642
5643 ----------------------
5644 -- Is_Dynamic_Scope --
5645 ----------------------
5646
5647 function Is_Dynamic_Scope (Id : E) return B is
5648 begin
5649 return
5650 Ekind (Id) = E_Block
5651 or else
5652 Ekind (Id) = E_Function
5653 or else
5654 Ekind (Id) = E_Procedure
5655 or else
5656 Ekind (Id) = E_Subprogram_Body
5657 or else
5658 Ekind (Id) = E_Task_Type
5659 or else
5660 Ekind (Id) = E_Entry
5661 or else
5662 Ekind (Id) = E_Entry_Family;
5663 end Is_Dynamic_Scope;
5664
5665 --------------------
5666 -- Is_Entity_Name --
5667 --------------------
5668
5669 function Is_Entity_Name (N : Node_Id) return Boolean is
5670 Kind : constant Node_Kind := Nkind (N);
5671
5672 begin
5673 -- Identifiers, operator symbols, expanded names are entity names
5674
5675 return Kind = N_Identifier
5676 or else Kind = N_Operator_Symbol
5677 or else Kind = N_Expanded_Name
5678
5679 -- Attribute references are entity names if they refer to an entity.
5680 -- Note that we don't do this by testing for the presence of the
5681 -- Entity field in the N_Attribute_Reference node, since it may not
5682 -- have been set yet.
5683
5684 or else (Kind = N_Attribute_Reference
5685 and then Is_Entity_Attribute_Name (Attribute_Name (N)));
5686 end Is_Entity_Name;
5687
5688 ---------------------------
5689 -- Is_Indefinite_Subtype --
5690 ---------------------------
5691
5692 function Is_Indefinite_Subtype (Id : Entity_Id) return B is
5693 K : constant Entity_Kind := Ekind (Id);
5694
5695 begin
5696 if Is_Constrained (Id) then
5697 return False;
5698
5699 elsif K in Array_Kind
5700 or else K in Class_Wide_Kind
5701 or else Has_Unknown_Discriminants (Id)
5702 then
5703 return True;
5704
5705 -- Known discriminants: indefinite if there are no default values
5706
5707 elsif K in Record_Kind
5708 or else Is_Incomplete_Or_Private_Type (Id)
5709 or else Is_Concurrent_Type (Id)
5710 then
5711 return (Has_Discriminants (Id)
5712 and then No (Discriminant_Default_Value (First_Discriminant (Id))));
5713
5714 else
5715 return False;
5716 end if;
5717 end Is_Indefinite_Subtype;
5718
5719 ---------------------
5720 -- Is_Limited_Type --
5721 ---------------------
5722
5723 function Is_Limited_Type (Id : E) return B is
5724 Btype : constant E := Base_Type (Id);
5725
5726 begin
5727 if not Is_Type (Id) then
5728 return False;
5729
5730 elsif Ekind (Btype) = E_Limited_Private_Type
5731 or else Is_Limited_Composite (Btype)
5732 then
5733 return True;
5734
5735 elsif Is_Concurrent_Type (Btype) then
5736 return True;
5737
5738 -- Otherwise we will look around to see if there is some other reason
5739 -- for it to be limited, except that if an error was posted on the
5740 -- entity, then just assume it is non-limited, because it can cause
5741 -- trouble to recurse into a murky erroneous entity!
5742
5743 elsif Error_Posted (Id) then
5744 return False;
5745
5746 elsif Is_Record_Type (Btype) then
5747 if Is_Limited_Record (Root_Type (Btype)) then
5748 return True;
5749
5750 elsif Is_Class_Wide_Type (Btype) then
5751 return Is_Limited_Type (Root_Type (Btype));
5752
5753 else
5754 declare
5755 C : E;
5756
5757 begin
5758 C := First_Component (Btype);
5759 while Present (C) loop
5760 if Is_Limited_Type (Etype (C)) then
5761 return True;
5762 end if;
5763
5764 C := Next_Component (C);
5765 end loop;
5766 end;
5767
5768 return False;
5769 end if;
5770
5771 elsif Is_Array_Type (Btype) then
5772 return Is_Limited_Type (Component_Type (Btype));
5773
5774 else
5775 return False;
5776 end if;
5777 end Is_Limited_Type;
5778
5779 -----------------------------------
5780 -- Is_Package_Or_Generic_Package --
5781 -----------------------------------
5782
5783 function Is_Package_Or_Generic_Package (Id : E) return B is
5784 begin
5785 return
5786 Ekind (Id) = E_Package
5787 or else
5788 Ekind (Id) = E_Generic_Package;
5789 end Is_Package_Or_Generic_Package;
5790
5791 --------------------------
5792 -- Is_Protected_Private --
5793 --------------------------
5794
5795 function Is_Protected_Private (Id : E) return B is
5796 begin
5797 pragma Assert (Ekind (Id) = E_Component);
5798 return Is_Protected_Type (Scope (Id));
5799 end Is_Protected_Private;
5800
5801 ------------------------------
5802 -- Is_Protected_Record_Type --
5803 ------------------------------
5804
5805 function Is_Protected_Record_Type (Id : E) return B is
5806 begin
5807 return
5808 Is_Concurrent_Record_Type (Id)
5809 and then Is_Protected_Type (Corresponding_Concurrent_Type (Id));
5810 end Is_Protected_Record_Type;
5811
5812 ---------------------------------
5813 -- Is_Return_By_Reference_Type --
5814 ---------------------------------
5815
5816 function Is_Return_By_Reference_Type (Id : E) return B is
5817 Btype : constant Entity_Id := Base_Type (Id);
5818
5819 begin
5820 if Is_Private_Type (Btype) then
5821 declare
5822 Utyp : constant Entity_Id := Underlying_Type (Btype);
5823
5824 begin
5825 if No (Utyp) then
5826 return False;
5827 else
5828 return Is_Return_By_Reference_Type (Utyp);
5829 end if;
5830 end;
5831
5832 elsif Is_Concurrent_Type (Btype) then
5833 return True;
5834
5835 elsif Is_Record_Type (Btype) then
5836 if Is_Limited_Record (Btype) then
5837 return True;
5838
5839 elsif Is_Class_Wide_Type (Btype) then
5840 return Is_Return_By_Reference_Type (Root_Type (Btype));
5841
5842 else
5843 declare
5844 C : Entity_Id;
5845
5846 begin
5847 C := First_Component (Btype);
5848 while Present (C) loop
5849 if Is_Return_By_Reference_Type (Etype (C)) then
5850 return True;
5851 end if;
5852
5853 C := Next_Component (C);
5854 end loop;
5855 end;
5856
5857 return False;
5858 end if;
5859
5860 elsif Is_Array_Type (Btype) then
5861 return Is_Return_By_Reference_Type (Component_Type (Btype));
5862
5863 else
5864 return False;
5865 end if;
5866 end Is_Return_By_Reference_Type;
5867
5868 --------------------
5869 -- Is_String_Type --
5870 --------------------
5871
5872 function Is_String_Type (Id : E) return B is
5873 begin
5874 return Ekind (Id) in String_Kind
5875 or else (Is_Array_Type (Id)
5876 and then Number_Dimensions (Id) = 1
5877 and then Is_Character_Type (Component_Type (Id)));
5878 end Is_String_Type;
5879
5880 -------------------------
5881 -- Is_Task_Record_Type --
5882 -------------------------
5883
5884 function Is_Task_Record_Type (Id : E) return B is
5885 begin
5886 return
5887 Is_Concurrent_Record_Type (Id)
5888 and then Is_Task_Type (Corresponding_Concurrent_Type (Id));
5889 end Is_Task_Record_Type;
5890
5891 ------------------------
5892 -- Is_Wrapper_Package --
5893 ------------------------
5894
5895 function Is_Wrapper_Package (Id : E) return B is
5896 begin
5897 return (Ekind (Id) = E_Package
5898 and then Present (Related_Instance (Id)));
5899 end Is_Wrapper_Package;
5900
5901 --------------------
5902 -- Next_Component --
5903 --------------------
5904
5905 function Next_Component (Id : E) return E is
5906 Comp_Id : E;
5907
5908 begin
5909 Comp_Id := Next_Entity (Id);
5910 while Present (Comp_Id) loop
5911 exit when Ekind (Comp_Id) = E_Component;
5912 Comp_Id := Next_Entity (Comp_Id);
5913 end loop;
5914
5915 return Comp_Id;
5916 end Next_Component;
5917
5918 -----------------------
5919 -- Next_Discriminant --
5920 -----------------------
5921
5922 -- This function actually implements both Next_Discriminant and
5923 -- Next_Stored_Discriminant by making sure that the Discriminant
5924 -- returned is of the same variety as Id.
5925
5926 function Next_Discriminant (Id : E) return E is
5927
5928 -- Derived Tagged types with private extensions look like this...
5929
5930 -- E_Discriminant d1
5931 -- E_Discriminant d2
5932 -- E_Component _tag
5933 -- E_Discriminant d1
5934 -- E_Discriminant d2
5935 -- ...
5936
5937 -- so it is critical not to go past the leading discriminants
5938
5939 D : E := Id;
5940
5941 begin
5942 pragma Assert (Ekind (Id) = E_Discriminant);
5943
5944 loop
5945 D := Next_Entity (D);
5946 if not Present (D)
5947 or else (Ekind (D) /= E_Discriminant
5948 and then not Is_Itype (D))
5949 then
5950 return Empty;
5951 end if;
5952
5953 exit when Ekind (D) = E_Discriminant
5954 and then (Is_Completely_Hidden (D) = Is_Completely_Hidden (Id));
5955 end loop;
5956
5957 return D;
5958 end Next_Discriminant;
5959
5960 -----------------
5961 -- Next_Formal --
5962 -----------------
5963
5964 function Next_Formal (Id : E) return E is
5965 P : E;
5966
5967 begin
5968 -- Follow the chain of declared entities as long as the kind of
5969 -- the entity corresponds to a formal parameter. Skip internal
5970 -- entities that may have been created for implicit subtypes,
5971 -- in the process of analyzing default expressions.
5972
5973 P := Id;
5974
5975 loop
5976 P := Next_Entity (P);
5977
5978 if No (P) or else Is_Formal (P) then
5979 return P;
5980 elsif not Is_Internal (P) then
5981 return Empty;
5982 end if;
5983 end loop;
5984 end Next_Formal;
5985
5986 -----------------------------
5987 -- Next_Formal_With_Extras --
5988 -----------------------------
5989
5990 function Next_Formal_With_Extras (Id : E) return E is
5991 begin
5992 if Present (Extra_Formal (Id)) then
5993 return Extra_Formal (Id);
5994 else
5995 return Next_Formal (Id);
5996 end if;
5997 end Next_Formal_With_Extras;
5998
5999 ----------------
6000 -- Next_Index --
6001 ----------------
6002
6003 function Next_Index (Id : Node_Id) return Node_Id is
6004 begin
6005 return Next (Id);
6006 end Next_Index;
6007
6008 ------------------
6009 -- Next_Literal --
6010 ------------------
6011
6012 function Next_Literal (Id : E) return E is
6013 begin
6014 pragma Assert (Nkind (Id) in N_Entity);
6015 return Next (Id);
6016 end Next_Literal;
6017
6018 ------------------------------
6019 -- Next_Stored_Discriminant --
6020 ------------------------------
6021
6022 function Next_Stored_Discriminant (Id : E) return E is
6023 begin
6024 -- See comment in Next_Discriminant
6025
6026 return Next_Discriminant (Id);
6027 end Next_Stored_Discriminant;
6028
6029 -----------------------
6030 -- Number_Dimensions --
6031 -----------------------
6032
6033 function Number_Dimensions (Id : E) return Pos is
6034 N : Int;
6035 T : Node_Id;
6036
6037 begin
6038 if Ekind (Id) in String_Kind then
6039 return 1;
6040
6041 else
6042 N := 0;
6043 T := First_Index (Id);
6044 while Present (T) loop
6045 N := N + 1;
6046 T := Next (T);
6047 end loop;
6048
6049 return N;
6050 end if;
6051 end Number_Dimensions;
6052
6053 --------------------------
6054 -- Number_Discriminants --
6055 --------------------------
6056
6057 function Number_Discriminants (Id : E) return Pos is
6058 N : Int;
6059 Discr : Entity_Id;
6060
6061 begin
6062 N := 0;
6063 Discr := First_Discriminant (Id);
6064 while Present (Discr) loop
6065 N := N + 1;
6066 Discr := Next_Discriminant (Discr);
6067 end loop;
6068
6069 return N;
6070 end Number_Discriminants;
6071
6072 --------------------
6073 -- Number_Entries --
6074 --------------------
6075
6076 function Number_Entries (Id : E) return Nat is
6077 N : Int;
6078 Ent : Entity_Id;
6079
6080 begin
6081 pragma Assert (Is_Concurrent_Type (Id));
6082
6083 N := 0;
6084 Ent := First_Entity (Id);
6085 while Present (Ent) loop
6086 if Is_Entry (Ent) then
6087 N := N + 1;
6088 end if;
6089
6090 Ent := Next_Entity (Ent);
6091 end loop;
6092
6093 return N;
6094 end Number_Entries;
6095
6096 --------------------
6097 -- Number_Formals --
6098 --------------------
6099
6100 function Number_Formals (Id : E) return Pos is
6101 N : Int;
6102 Formal : Entity_Id;
6103
6104 begin
6105 N := 0;
6106 Formal := First_Formal (Id);
6107 while Present (Formal) loop
6108 N := N + 1;
6109 Formal := Next_Formal (Formal);
6110 end loop;
6111
6112 return N;
6113 end Number_Formals;
6114
6115 --------------------
6116 -- Parameter_Mode --
6117 --------------------
6118
6119 function Parameter_Mode (Id : E) return Formal_Kind is
6120 begin
6121 return Ekind (Id);
6122 end Parameter_Mode;
6123
6124 ---------------------
6125 -- Record_Rep_Item --
6126 ---------------------
6127
6128 procedure Record_Rep_Item (E : Entity_Id; N : Node_Id) is
6129 begin
6130 Set_Next_Rep_Item (N, First_Rep_Item (E));
6131 Set_First_Rep_Item (E, N);
6132 end Record_Rep_Item;
6133
6134 ---------------
6135 -- Root_Type --
6136 ---------------
6137
6138 function Root_Type (Id : E) return E is
6139 T, Etyp : E;
6140
6141 begin
6142 pragma Assert (Nkind (Id) in N_Entity);
6143
6144 T := Base_Type (Id);
6145
6146 if Ekind (T) = E_Class_Wide_Type then
6147 return Etype (T);
6148
6149 -- All other cases
6150
6151 else
6152 loop
6153 Etyp := Etype (T);
6154
6155 if T = Etyp then
6156 return T;
6157
6158 -- Following test catches some error cases resulting from
6159 -- previous errors.
6160
6161 elsif No (Etyp) then
6162 return T;
6163
6164 elsif Is_Private_Type (T) and then Etyp = Full_View (T) then
6165 return T;
6166
6167 elsif Is_Private_Type (Etyp) and then Full_View (Etyp) = T then
6168 return T;
6169 end if;
6170
6171 T := Etyp;
6172
6173 -- Return if there is a circularity in the inheritance chain.
6174 -- This happens in some error situations and we do not want
6175 -- to get stuck in this loop.
6176
6177 if T = Base_Type (Id) then
6178 return T;
6179 end if;
6180 end loop;
6181 end if;
6182
6183 raise Program_Error;
6184 end Root_Type;
6185
6186 -----------------
6187 -- Scope_Depth --
6188 -----------------
6189
6190 function Scope_Depth (Id : E) return Uint is
6191 Scop : Entity_Id;
6192
6193 begin
6194 Scop := Id;
6195 while Is_Record_Type (Scop) loop
6196 Scop := Scope (Scop);
6197 end loop;
6198
6199 return Scope_Depth_Value (Scop);
6200 end Scope_Depth;
6201
6202 ---------------------
6203 -- Scope_Depth_Set --
6204 ---------------------
6205
6206 function Scope_Depth_Set (Id : E) return B is
6207 begin
6208 return not Is_Record_Type (Id)
6209 and then Field22 (Id) /= Union_Id (Empty);
6210 end Scope_Depth_Set;
6211
6212 -----------------------------
6213 -- Set_Component_Alignment --
6214 -----------------------------
6215
6216 -- Component Alignment is encoded using two flags, Flag128/129 as
6217 -- follows. Note that both flags False = Align_Default, so that the
6218 -- default initialization of flags to False initializes component
6219 -- alignment to the default value as required.
6220
6221 -- Flag128 Flag129 Value
6222 -- ------- ------- -----
6223 -- False False Calign_Default
6224 -- False True Calign_Component_Size
6225 -- True False Calign_Component_Size_4
6226 -- True True Calign_Storage_Unit
6227
6228 procedure Set_Component_Alignment (Id : E; V : C) is
6229 begin
6230 pragma Assert ((Is_Array_Type (Id) or else Is_Record_Type (Id))
6231 and then Id = Base_Type (Id));
6232
6233 case V is
6234 when Calign_Default =>
6235 Set_Flag128 (Id, False);
6236 Set_Flag129 (Id, False);
6237
6238 when Calign_Component_Size =>
6239 Set_Flag128 (Id, False);
6240 Set_Flag129 (Id, True);
6241
6242 when Calign_Component_Size_4 =>
6243 Set_Flag128 (Id, True);
6244 Set_Flag129 (Id, False);
6245
6246 when Calign_Storage_Unit =>
6247 Set_Flag128 (Id, True);
6248 Set_Flag129 (Id, True);
6249 end case;
6250 end Set_Component_Alignment;
6251
6252 -----------------
6253 -- Size_Clause --
6254 -----------------
6255
6256 function Size_Clause (Id : E) return N is
6257 begin
6258 return Rep_Clause (Id, Name_Size);
6259 end Size_Clause;
6260
6261 ------------------------
6262 -- Stream_Size_Clause --
6263 ------------------------
6264
6265 function Stream_Size_Clause (Id : E) return N is
6266 begin
6267 return Rep_Clause (Id, Name_Stream_Size);
6268 end Stream_Size_Clause;
6269
6270 ------------------
6271 -- Subtype_Kind --
6272 ------------------
6273
6274 function Subtype_Kind (K : Entity_Kind) return Entity_Kind is
6275 Kind : Entity_Kind;
6276
6277 begin
6278 case K is
6279 when Access_Kind =>
6280 Kind := E_Access_Subtype;
6281
6282 when E_Array_Type |
6283 E_Array_Subtype =>
6284 Kind := E_Array_Subtype;
6285
6286 when E_Class_Wide_Type |
6287 E_Class_Wide_Subtype =>
6288 Kind := E_Class_Wide_Subtype;
6289
6290 when E_Decimal_Fixed_Point_Type |
6291 E_Decimal_Fixed_Point_Subtype =>
6292 Kind := E_Decimal_Fixed_Point_Subtype;
6293
6294 when E_Ordinary_Fixed_Point_Type |
6295 E_Ordinary_Fixed_Point_Subtype =>
6296 Kind := E_Ordinary_Fixed_Point_Subtype;
6297
6298 when E_Private_Type |
6299 E_Private_Subtype =>
6300 Kind := E_Private_Subtype;
6301
6302 when E_Limited_Private_Type |
6303 E_Limited_Private_Subtype =>
6304 Kind := E_Limited_Private_Subtype;
6305
6306 when E_Record_Type_With_Private |
6307 E_Record_Subtype_With_Private =>
6308 Kind := E_Record_Subtype_With_Private;
6309
6310 when E_Record_Type |
6311 E_Record_Subtype =>
6312 Kind := E_Record_Subtype;
6313
6314 when E_String_Type |
6315 E_String_Subtype =>
6316 Kind := E_String_Subtype;
6317
6318 when Enumeration_Kind =>
6319 Kind := E_Enumeration_Subtype;
6320
6321 when Float_Kind =>
6322 Kind := E_Floating_Point_Subtype;
6323
6324 when Signed_Integer_Kind =>
6325 Kind := E_Signed_Integer_Subtype;
6326
6327 when Modular_Integer_Kind =>
6328 Kind := E_Modular_Integer_Subtype;
6329
6330 when Protected_Kind =>
6331 Kind := E_Protected_Subtype;
6332
6333 when Task_Kind =>
6334 Kind := E_Task_Subtype;
6335
6336 when others =>
6337 Kind := E_Void;
6338 raise Program_Error;
6339 end case;
6340
6341 return Kind;
6342 end Subtype_Kind;
6343
6344 -------------------------
6345 -- First_Tag_Component --
6346 -------------------------
6347
6348 function First_Tag_Component (Id : E) return E is
6349 Comp : Entity_Id;
6350 Typ : Entity_Id := Id;
6351
6352 begin
6353 pragma Assert (Is_Tagged_Type (Typ));
6354
6355 if Is_Class_Wide_Type (Typ) then
6356 Typ := Root_Type (Typ);
6357 end if;
6358
6359 if Is_Private_Type (Typ) then
6360 Typ := Underlying_Type (Typ);
6361 end if;
6362
6363 Comp := First_Entity (Typ);
6364 while Present (Comp) loop
6365 if Is_Tag (Comp) then
6366 return Comp;
6367 end if;
6368
6369 Comp := Next_Entity (Comp);
6370 end loop;
6371
6372 -- No tag component found
6373
6374 return Empty;
6375 end First_Tag_Component;
6376
6377 ------------------------
6378 -- Next_Tag_Component --
6379 ------------------------
6380
6381 function Next_Tag_Component (Id : E) return E is
6382 Comp : Entity_Id;
6383 Typ : constant Entity_Id := Scope (Id);
6384
6385 begin
6386 pragma Assert (Ekind (Id) = E_Component
6387 and then Is_Tagged_Type (Typ));
6388
6389 Comp := Next_Entity (Id);
6390 while Present (Comp) loop
6391 if Is_Tag (Comp) then
6392 pragma Assert (Chars (Comp) /= Name_uTag);
6393 return Comp;
6394 end if;
6395
6396 Comp := Next_Entity (Comp);
6397 end loop;
6398
6399 -- No tag component found
6400
6401 return Empty;
6402 end Next_Tag_Component;
6403
6404 ---------------------
6405 -- Type_High_Bound --
6406 ---------------------
6407
6408 function Type_High_Bound (Id : E) return Node_Id is
6409 begin
6410 if Nkind (Scalar_Range (Id)) = N_Subtype_Indication then
6411 return High_Bound (Range_Expression (Constraint (Scalar_Range (Id))));
6412 else
6413 return High_Bound (Scalar_Range (Id));
6414 end if;
6415 end Type_High_Bound;
6416
6417 --------------------
6418 -- Type_Low_Bound --
6419 --------------------
6420
6421 function Type_Low_Bound (Id : E) return Node_Id is
6422 begin
6423 if Nkind (Scalar_Range (Id)) = N_Subtype_Indication then
6424 return Low_Bound (Range_Expression (Constraint (Scalar_Range (Id))));
6425 else
6426 return Low_Bound (Scalar_Range (Id));
6427 end if;
6428 end Type_Low_Bound;
6429
6430 ---------------------
6431 -- Underlying_Type --
6432 ---------------------
6433
6434 function Underlying_Type (Id : E) return E is
6435 begin
6436 -- For record_with_private the underlying type is always the direct
6437 -- full view. Never try to take the full view of the parent it
6438 -- doesn't make sense.
6439
6440 if Ekind (Id) = E_Record_Type_With_Private then
6441 return Full_View (Id);
6442
6443 elsif Ekind (Id) in Incomplete_Or_Private_Kind then
6444
6445 -- If we have an incomplete or private type with a full view,
6446 -- then we return the Underlying_Type of this full view
6447
6448 if Present (Full_View (Id)) then
6449 if Id = Full_View (Id) then
6450
6451 -- Previous error in declaration
6452
6453 return Empty;
6454
6455 else
6456 return Underlying_Type (Full_View (Id));
6457 end if;
6458
6459 -- If we have an incomplete entity that comes from the limited
6460 -- view then we return the Underlying_Type of its non-limited
6461 -- view.
6462
6463 elsif From_With_Type (Id)
6464 and then Present (Non_Limited_View (Id))
6465 then
6466 return Underlying_Type (Non_Limited_View (Id));
6467
6468 -- Otherwise check for the case where we have a derived type or
6469 -- subtype, and if so get the Underlying_Type of the parent type.
6470
6471 elsif Etype (Id) /= Id then
6472 return Underlying_Type (Etype (Id));
6473
6474 -- Otherwise we have an incomplete or private type that has
6475 -- no full view, which means that we have not encountered the
6476 -- completion, so return Empty to indicate the underlying type
6477 -- is not yet known.
6478
6479 else
6480 return Empty;
6481 end if;
6482
6483 -- For non-incomplete, non-private types, return the type itself
6484 -- Also for entities that are not types at all return the entity
6485 -- itself.
6486
6487 else
6488 return Id;
6489 end if;
6490 end Underlying_Type;
6491
6492 ------------------------
6493 -- Write_Entity_Flags --
6494 ------------------------
6495
6496 procedure Write_Entity_Flags (Id : Entity_Id; Prefix : String) is
6497
6498 procedure W (Flag_Name : String; Flag : Boolean);
6499 -- Write out given flag if it is set
6500
6501 -------
6502 -- W --
6503 -------
6504
6505 procedure W (Flag_Name : String; Flag : Boolean) is
6506 begin
6507 if Flag then
6508 Write_Str (Prefix);
6509 Write_Str (Flag_Name);
6510 Write_Str (" = True");
6511 Write_Eol;
6512 end if;
6513 end W;
6514
6515 -- Start of processing for Write_Entity_Flags
6516
6517 begin
6518 if (Is_Array_Type (Id) or else Is_Record_Type (Id))
6519 and then Base_Type (Id) = Id
6520 then
6521 Write_Str (Prefix);
6522 Write_Str ("Component_Alignment = ");
6523
6524 case Component_Alignment (Id) is
6525 when Calign_Default =>
6526 Write_Str ("Calign_Default");
6527
6528 when Calign_Component_Size =>
6529 Write_Str ("Calign_Component_Size");
6530
6531 when Calign_Component_Size_4 =>
6532 Write_Str ("Calign_Component_Size_4");
6533
6534 when Calign_Storage_Unit =>
6535 Write_Str ("Calign_Storage_Unit");
6536 end case;
6537
6538 Write_Eol;
6539 end if;
6540
6541 W ("Address_Taken", Flag104 (Id));
6542 W ("Body_Needed_For_SAL", Flag40 (Id));
6543 W ("C_Pass_By_Copy", Flag125 (Id));
6544 W ("Can_Never_Be_Null", Flag38 (Id));
6545 W ("Checks_May_Be_Suppressed", Flag31 (Id));
6546 W ("Debug_Info_Off", Flag166 (Id));
6547 W ("Default_Expressions_Processed", Flag108 (Id));
6548 W ("Delay_Cleanups", Flag114 (Id));
6549 W ("Delay_Subprogram_Descriptors", Flag50 (Id));
6550 W ("Depends_On_Private", Flag14 (Id));
6551 W ("Discard_Names", Flag88 (Id));
6552 W ("Elaboration_Entity_Required", Flag174 (Id));
6553 W ("Entry_Accepted", Flag152 (Id));
6554 W ("Finalize_Storage_Only", Flag158 (Id));
6555 W ("From_With_Type", Flag159 (Id));
6556 W ("Function_Returns_With_DSP", Flag169 (Id));
6557 W ("Has_Aliased_Components", Flag135 (Id));
6558 W ("Has_Alignment_Clause", Flag46 (Id));
6559 W ("Has_All_Calls_Remote", Flag79 (Id));
6560 W ("Has_Anon_Block_Suffix", Flag201 (Id));
6561 W ("Has_Atomic_Components", Flag86 (Id));
6562 W ("Has_Biased_Representation", Flag139 (Id));
6563 W ("Has_Completion", Flag26 (Id));
6564 W ("Has_Completion_In_Body", Flag71 (Id));
6565 W ("Has_Complex_Representation", Flag140 (Id));
6566 W ("Has_Component_Size_Clause", Flag68 (Id));
6567 W ("Has_Contiguous_Rep", Flag181 (Id));
6568 W ("Has_Controlled_Component", Flag43 (Id));
6569 W ("Has_Controlling_Result", Flag98 (Id));
6570 W ("Has_Convention_Pragma", Flag119 (Id));
6571 W ("Has_Delayed_Freeze", Flag18 (Id));
6572 W ("Has_Discriminants", Flag5 (Id));
6573 W ("Has_Enumeration_Rep_Clause", Flag66 (Id));
6574 W ("Has_Exit", Flag47 (Id));
6575 W ("Has_External_Tag_Rep_Clause", Flag110 (Id));
6576 W ("Has_Forward_Instantiation", Flag175 (Id));
6577 W ("Has_Fully_Qualified_Name", Flag173 (Id));
6578 W ("Has_Gigi_Rep_Item", Flag82 (Id));
6579 W ("Has_Homonym", Flag56 (Id));
6580 W ("Has_Machine_Radix_Clause", Flag83 (Id));
6581 W ("Has_Master_Entity", Flag21 (Id));
6582 W ("Has_Missing_Return", Flag142 (Id));
6583 W ("Has_Nested_Block_With_Handler", Flag101 (Id));
6584 W ("Has_Non_Standard_Rep", Flag75 (Id));
6585 W ("Has_Object_Size_Clause", Flag172 (Id));
6586 W ("Has_Per_Object_Constraint", Flag154 (Id));
6587 W ("Has_Persistent_BSS", Flag188 (Id));
6588 W ("Has_Pragma_Controlled", Flag27 (Id));
6589 W ("Has_Pragma_Elaborate_Body", Flag150 (Id));
6590 W ("Has_Pragma_Inline", Flag157 (Id));
6591 W ("Has_Pragma_Pack", Flag121 (Id));
6592 W ("Has_Pragma_Pure_Function", Flag179 (Id));
6593 W ("Has_Pragma_Unreferenced", Flag180 (Id));
6594 W ("Has_Primitive_Operations", Flag120 (Id));
6595 W ("Has_Private_Declaration", Flag155 (Id));
6596 W ("Has_Qualified_Name", Flag161 (Id));
6597 W ("Has_Record_Rep_Clause", Flag65 (Id));
6598 W ("Has_Recursive_Call", Flag143 (Id));
6599 W ("Has_Size_Clause", Flag29 (Id));
6600 W ("Has_Small_Clause", Flag67 (Id));
6601 W ("Has_Specified_Layout", Flag100 (Id));
6602 W ("Has_Specified_Stream_Input", Flag190 (Id));
6603 W ("Has_Specified_Stream_Output", Flag191 (Id));
6604 W ("Has_Specified_Stream_Read", Flag192 (Id));
6605 W ("Has_Specified_Stream_Write", Flag193 (Id));
6606 W ("Has_Storage_Size_Clause", Flag23 (Id));
6607 W ("Has_Stream_Size_Clause", Flag184 (Id));
6608 W ("Has_Subprogram_Descriptor", Flag93 (Id));
6609 W ("Has_Task", Flag30 (Id));
6610 W ("Has_Unchecked_Union", Flag123 (Id));
6611 W ("Has_Unknown_Discriminants", Flag72 (Id));
6612 W ("Has_Volatile_Components", Flag87 (Id));
6613 W ("Has_Xref_Entry", Flag182 (Id));
6614 W ("In_Package_Body", Flag48 (Id));
6615 W ("In_Private_Part", Flag45 (Id));
6616 W ("In_Use", Flag8 (Id));
6617 W ("Is_AST_Entry", Flag132 (Id));
6618 W ("Is_Abstract", Flag19 (Id));
6619 W ("Is_Local_Anonymous_Access", Flag194 (Id));
6620 W ("Is_Access_Constant", Flag69 (Id));
6621 W ("Is_Ada_2005", Flag185 (Id));
6622 W ("Is_Aliased", Flag15 (Id));
6623 W ("Is_Asynchronous", Flag81 (Id));
6624 W ("Is_Atomic", Flag85 (Id));
6625 W ("Is_Bit_Packed_Array", Flag122 (Id));
6626 W ("Is_CPP_Class", Flag74 (Id));
6627 W ("Is_Called", Flag102 (Id));
6628 W ("Is_Character_Type", Flag63 (Id));
6629 W ("Is_Child_Unit", Flag73 (Id));
6630 W ("Is_Class_Wide_Equivalent_Type", Flag35 (Id));
6631 W ("Is_Compilation_Unit", Flag149 (Id));
6632 W ("Is_Completely_Hidden", Flag103 (Id));
6633 W ("Is_Concurrent_Record_Type", Flag20 (Id));
6634 W ("Is_Constr_Subt_For_UN_Aliased", Flag141 (Id));
6635 W ("Is_Constr_Subt_For_U_Nominal", Flag80 (Id));
6636 W ("Is_Constrained", Flag12 (Id));
6637 W ("Is_Constructor", Flag76 (Id));
6638 W ("Is_Controlled", Flag42 (Id));
6639 W ("Is_Controlling_Formal", Flag97 (Id));
6640 W ("Is_Discrim_SO_Function", Flag176 (Id));
6641 W ("Is_Dispatching_Operation", Flag6 (Id));
6642 W ("Is_Eliminated", Flag124 (Id));
6643 W ("Is_Entry_Formal", Flag52 (Id));
6644 W ("Is_Exported", Flag99 (Id));
6645 W ("Is_First_Subtype", Flag70 (Id));
6646 W ("Is_For_Access_Subtype", Flag118 (Id));
6647 W ("Is_Formal_Subprogram", Flag111 (Id));
6648 W ("Is_Frozen", Flag4 (Id));
6649 W ("Is_Generic_Actual_Type", Flag94 (Id));
6650 W ("Is_Generic_Instance", Flag130 (Id));
6651 W ("Is_Generic_Type", Flag13 (Id));
6652 W ("Is_Hidden", Flag57 (Id));
6653 W ("Is_Hidden_Open_Scope", Flag171 (Id));
6654 W ("Is_Immediately_Visible", Flag7 (Id));
6655 W ("Is_Imported", Flag24 (Id));
6656 W ("Is_Inlined", Flag11 (Id));
6657 W ("Is_Instantiated", Flag126 (Id));
6658 W ("Is_Interface", Flag186 (Id));
6659 W ("Is_Internal", Flag17 (Id));
6660 W ("Is_Interrupt_Handler", Flag89 (Id));
6661 W ("Is_Intrinsic_Subprogram", Flag64 (Id));
6662 W ("Is_Itype", Flag91 (Id));
6663 W ("Is_Known_Valid", Flag37 (Id));
6664 W ("Is_Known_Valid", Flag170 (Id));
6665 W ("Is_Limited_Composite", Flag106 (Id));
6666 W ("Is_Limited_Interface", Flag197 (Id));
6667 W ("Is_Limited_Record", Flag25 (Id));
6668 W ("Is_Machine_Code_Subprogram", Flag137 (Id));
6669 W ("Is_Non_Static_Subtype", Flag109 (Id));
6670 W ("Is_Null_Init_Proc", Flag178 (Id));
6671 W ("Is_Obsolescent", Flag153 (Id));
6672 W ("Is_Optional_Parameter", Flag134 (Id));
6673 W ("Is_Overriding_Operation", Flag39 (Id));
6674 W ("Is_Package_Body_Entity", Flag160 (Id));
6675 W ("Is_Packed", Flag51 (Id));
6676 W ("Is_Packed_Array_Type", Flag138 (Id));
6677 W ("Is_Potentially_Use_Visible", Flag9 (Id));
6678 W ("Is_Preelaborated", Flag59 (Id));
6679 W ("Is_Primitive_Wrapper", Flag195 (Id));
6680 W ("Is_Private_Composite", Flag107 (Id));
6681 W ("Is_Private_Descendant", Flag53 (Id));
6682 W ("Is_Protected_Interface", Flag198 (Id));
6683 W ("Is_Public", Flag10 (Id));
6684 W ("Is_Pure", Flag44 (Id));
6685 W ("Is_Pure_Unit_Access_Type", Flag189 (Id));
6686 W ("Is_Remote_Call_Interface", Flag62 (Id));
6687 W ("Is_Remote_Types", Flag61 (Id));
6688 W ("Is_Renaming_Of_Object", Flag112 (Id));
6689 W ("Is_Shared_Passive", Flag60 (Id));
6690 W ("Is_Synchronized_Interface", Flag199 (Id));
6691 W ("Is_Statically_Allocated", Flag28 (Id));
6692 W ("Is_Tag", Flag78 (Id));
6693 W ("Is_Tagged_Type", Flag55 (Id));
6694 W ("Is_Task_Interface", Flag200 (Id));
6695 W ("Is_Thread_Body", Flag77 (Id));
6696 W ("Is_True_Constant", Flag163 (Id));
6697 W ("Is_Unchecked_Union", Flag117 (Id));
6698 W ("Is_Unsigned_Type", Flag144 (Id));
6699 W ("Is_VMS_Exception", Flag133 (Id));
6700 W ("Is_Valued_Procedure", Flag127 (Id));
6701 W ("Is_Visible_Child_Unit", Flag116 (Id));
6702 W ("Is_Volatile", Flag16 (Id));
6703 W ("Kill_Elaboration_Checks", Flag32 (Id));
6704 W ("Kill_Range_Checks", Flag33 (Id));
6705 W ("Kill_Tag_Checks", Flag34 (Id));
6706 W ("Machine_Radix_10", Flag84 (Id));
6707 W ("Materialize_Entity", Flag168 (Id));
6708 W ("Must_Be_On_Byte_Boundary", Flag183 (Id));
6709 W ("Needs_Debug_Info", Flag147 (Id));
6710 W ("Needs_No_Actuals", Flag22 (Id));
6711 W ("Never_Set_In_Source", Flag115 (Id));
6712 W ("No_Pool_Assigned", Flag131 (Id));
6713 W ("No_Return", Flag113 (Id));
6714 W ("No_Strict_Aliasing", Flag136 (Id));
6715 W ("Non_Binary_Modulus", Flag58 (Id));
6716 W ("Nonzero_Is_True", Flag162 (Id));
6717 W ("Reachable", Flag49 (Id));
6718 W ("Referenced", Flag156 (Id));
6719 W ("Referenced_As_LHS", Flag36 (Id));
6720 W ("Return_Present", Flag54 (Id));
6721 W ("Returns_By_Ref", Flag90 (Id));
6722 W ("Reverse_Bit_Order", Flag164 (Id));
6723 W ("Sec_Stack_Needed_For_Return", Flag167 (Id));
6724 W ("Size_Depends_On_Discriminant", Flag177 (Id));
6725 W ("Size_Known_At_Compile_Time", Flag92 (Id));
6726 W ("Strict_Alignment", Flag145 (Id));
6727 W ("Suppress_Elaboration_Warnings", Flag148 (Id));
6728 W ("Suppress_Init_Proc", Flag105 (Id));
6729 W ("Suppress_Style_Checks", Flag165 (Id));
6730 W ("Treat_As_Volatile", Flag41 (Id));
6731 W ("Uses_Sec_Stack", Flag95 (Id));
6732 W ("Vax_Float", Flag151 (Id));
6733 W ("Warnings_Off", Flag96 (Id));
6734 W ("Was_Hidden", Flag196 (Id));
6735 end Write_Entity_Flags;
6736
6737 -----------------------
6738 -- Write_Entity_Info --
6739 -----------------------
6740
6741 procedure Write_Entity_Info (Id : Entity_Id; Prefix : String) is
6742
6743 procedure Write_Attribute (Which : String; Nam : E);
6744 -- Write attribute value with given string name
6745
6746 procedure Write_Kind (Id : Entity_Id);
6747 -- Write Ekind field of entity
6748
6749 procedure Write_Attribute (Which : String; Nam : E) is
6750 begin
6751 Write_Str (Prefix);
6752 Write_Str (Which);
6753 Write_Int (Int (Nam));
6754 Write_Str (" ");
6755 Write_Name (Chars (Nam));
6756 Write_Str (" ");
6757 end Write_Attribute;
6758
6759 procedure Write_Kind (Id : Entity_Id) is
6760 K : constant String := Entity_Kind'Image (Ekind (Id));
6761
6762 begin
6763 Write_Str (Prefix);
6764 Write_Str (" Kind ");
6765
6766 if Is_Type (Id) and then Is_Tagged_Type (Id) then
6767 Write_Str ("TAGGED ");
6768 end if;
6769
6770 Write_Str (K (3 .. K'Length));
6771 Write_Str (" ");
6772
6773 if Is_Type (Id) and then Depends_On_Private (Id) then
6774 Write_Str ("Depends_On_Private ");
6775 end if;
6776 end Write_Kind;
6777
6778 -- Start of processing for Write_Entity_Info
6779
6780 begin
6781 Write_Eol;
6782 Write_Attribute ("Name ", Id);
6783 Write_Int (Int (Id));
6784 Write_Eol;
6785 Write_Kind (Id);
6786 Write_Eol;
6787 Write_Attribute (" Type ", Etype (Id));
6788 Write_Eol;
6789 Write_Attribute (" Scope ", Scope (Id));
6790 Write_Eol;
6791
6792 case Ekind (Id) is
6793
6794 when Discrete_Kind =>
6795 Write_Str ("Bounds: Id = ");
6796
6797 if Present (Scalar_Range (Id)) then
6798 Write_Int (Int (Type_Low_Bound (Id)));
6799 Write_Str (" .. Id = ");
6800 Write_Int (Int (Type_High_Bound (Id)));
6801 else
6802 Write_Str ("Empty");
6803 end if;
6804
6805 Write_Eol;
6806
6807 when Array_Kind =>
6808 declare
6809 Index : E;
6810
6811 begin
6812 Write_Attribute
6813 (" Component Type ", Component_Type (Id));
6814 Write_Eol;
6815 Write_Str (Prefix);
6816 Write_Str (" Indices ");
6817
6818 Index := First_Index (Id);
6819 while Present (Index) loop
6820 Write_Attribute (" ", Etype (Index));
6821 Index := Next_Index (Index);
6822 end loop;
6823
6824 Write_Eol;
6825 end;
6826
6827 when Access_Kind =>
6828 Write_Attribute
6829 (" Directly Designated Type ",
6830 Directly_Designated_Type (Id));
6831 Write_Eol;
6832
6833 when Overloadable_Kind =>
6834 if Present (Homonym (Id)) then
6835 Write_Str (" Homonym ");
6836 Write_Name (Chars (Homonym (Id)));
6837 Write_Str (" ");
6838 Write_Int (Int (Homonym (Id)));
6839 Write_Eol;
6840 end if;
6841
6842 Write_Eol;
6843
6844 when E_Component =>
6845 if Ekind (Scope (Id)) in Record_Kind then
6846 Write_Attribute (
6847 " Original_Record_Component ",
6848 Original_Record_Component (Id));
6849 Write_Int (Int (Original_Record_Component (Id)));
6850 Write_Eol;
6851 end if;
6852
6853 when others => null;
6854 end case;
6855 end Write_Entity_Info;
6856
6857 -----------------------
6858 -- Write_Field6_Name --
6859 -----------------------
6860
6861 procedure Write_Field6_Name (Id : Entity_Id) is
6862 pragma Warnings (Off, Id);
6863
6864 begin
6865 Write_Str ("First_Rep_Item");
6866 end Write_Field6_Name;
6867
6868 -----------------------
6869 -- Write_Field7_Name --
6870 -----------------------
6871
6872 procedure Write_Field7_Name (Id : Entity_Id) is
6873 pragma Warnings (Off, Id);
6874
6875 begin
6876 Write_Str ("Freeze_Node");
6877 end Write_Field7_Name;
6878
6879 -----------------------
6880 -- Write_Field8_Name --
6881 -----------------------
6882
6883 procedure Write_Field8_Name (Id : Entity_Id) is
6884 begin
6885 case Ekind (Id) is
6886 when E_Component |
6887 E_Discriminant =>
6888 Write_Str ("Normalized_First_Bit");
6889
6890 when Formal_Kind |
6891 E_Function |
6892 E_Subprogram_Body =>
6893 Write_Str ("Mechanism");
6894
6895 when Type_Kind =>
6896 Write_Str ("Associated_Node_For_Itype");
6897
6898 when E_Package =>
6899 Write_Str ("Dependent_Instances");
6900
6901 when E_Variable =>
6902 Write_Str ("Hiding_Loop_Variable");
6903
6904 when others =>
6905 Write_Str ("Field8??");
6906 end case;
6907 end Write_Field8_Name;
6908
6909 -----------------------
6910 -- Write_Field9_Name --
6911 -----------------------
6912
6913 procedure Write_Field9_Name (Id : Entity_Id) is
6914 begin
6915 case Ekind (Id) is
6916 when Type_Kind =>
6917 Write_Str ("Class_Wide_Type");
6918
6919 when E_Function |
6920 E_Generic_Function |
6921 E_Generic_Package |
6922 E_Generic_Procedure |
6923 E_Package |
6924 E_Procedure =>
6925 Write_Str ("Renaming_Map");
6926
6927 when Object_Kind =>
6928 Write_Str ("Current_Value");
6929
6930 when others =>
6931 Write_Str ("Field9??");
6932 end case;
6933 end Write_Field9_Name;
6934
6935 ------------------------
6936 -- Write_Field10_Name --
6937 ------------------------
6938
6939 procedure Write_Field10_Name (Id : Entity_Id) is
6940 begin
6941 case Ekind (Id) is
6942 when Type_Kind =>
6943 Write_Str ("Referenced_Object");
6944
6945 when E_In_Parameter |
6946 E_Constant =>
6947 Write_Str ("Discriminal_Link");
6948
6949 when E_Function |
6950 E_Package |
6951 E_Package_Body |
6952 E_Procedure =>
6953 Write_Str ("Handler_Records");
6954
6955 when E_Component |
6956 E_Discriminant =>
6957 Write_Str ("Normalized_Position_Max");
6958
6959 when others =>
6960 Write_Str ("Field10??");
6961 end case;
6962 end Write_Field10_Name;
6963
6964 ------------------------
6965 -- Write_Field11_Name --
6966 ------------------------
6967
6968 procedure Write_Field11_Name (Id : Entity_Id) is
6969 begin
6970 case Ekind (Id) is
6971 when Formal_Kind =>
6972 Write_Str ("Entry_Component");
6973
6974 when E_Component |
6975 E_Discriminant =>
6976 Write_Str ("Component_Bit_Offset");
6977
6978 when E_Constant =>
6979 Write_Str ("Full_View");
6980
6981 when E_Enumeration_Literal =>
6982 Write_Str ("Enumeration_Pos");
6983
6984 when E_Block =>
6985 Write_Str ("Block_Node");
6986
6987 when E_Function |
6988 E_Procedure |
6989 E_Entry |
6990 E_Entry_Family =>
6991 Write_Str ("Protected_Body_Subprogram");
6992
6993 when E_Generic_Package =>
6994 Write_Str ("Generic_Homonym");
6995
6996 when Type_Kind =>
6997 Write_Str ("Full_View");
6998
6999 when others =>
7000 Write_Str ("Field11??");
7001 end case;
7002 end Write_Field11_Name;
7003
7004 ------------------------
7005 -- Write_Field12_Name --
7006 ------------------------
7007
7008 procedure Write_Field12_Name (Id : Entity_Id) is
7009 begin
7010 case Ekind (Id) is
7011 when Entry_Kind =>
7012 Write_Str ("Barrier_Function");
7013
7014 when E_Enumeration_Literal =>
7015 Write_Str ("Enumeration_Rep");
7016
7017 when Type_Kind |
7018 E_Component |
7019 E_Constant |
7020 E_Discriminant |
7021 E_In_Parameter |
7022 E_In_Out_Parameter |
7023 E_Out_Parameter |
7024 E_Loop_Parameter |
7025 E_Variable =>
7026 Write_Str ("Esize");
7027
7028 when E_Function |
7029 E_Procedure =>
7030 Write_Str ("Next_Inlined_Subprogram");
7031
7032 when E_Package =>
7033 Write_Str ("Associated_Formal_Package");
7034
7035 when others =>
7036 Write_Str ("Field12??");
7037 end case;
7038 end Write_Field12_Name;
7039
7040 ------------------------
7041 -- Write_Field13_Name --
7042 ------------------------
7043
7044 procedure Write_Field13_Name (Id : Entity_Id) is
7045 begin
7046 case Ekind (Id) is
7047 when Type_Kind =>
7048 Write_Str ("RM_Size");
7049
7050 when E_Component |
7051 E_Discriminant =>
7052 Write_Str ("Component_Clause");
7053
7054 when E_Enumeration_Literal =>
7055 Write_Str ("Debug_Renaming_Link");
7056
7057 when E_Function =>
7058 if not Comes_From_Source (Id)
7059 and then
7060 Chars (Id) = Name_Op_Ne
7061 then
7062 Write_Str ("Corresponding_Equality");
7063
7064 elsif Comes_From_Source (Id) then
7065 Write_Str ("Elaboration_Entity");
7066
7067 else
7068 Write_Str ("Field13??");
7069 end if;
7070
7071 when Formal_Kind |
7072 E_Variable =>
7073 Write_Str ("Extra_Accessibility");
7074
7075 when E_Procedure |
7076 E_Package |
7077 Generic_Unit_Kind =>
7078 Write_Str ("Elaboration_Entity");
7079
7080 when others =>
7081 Write_Str ("Field13??");
7082 end case;
7083 end Write_Field13_Name;
7084
7085 -----------------------
7086 -- Write_Field14_Name --
7087 -----------------------
7088
7089 procedure Write_Field14_Name (Id : Entity_Id) is
7090 begin
7091 case Ekind (Id) is
7092 when Type_Kind |
7093 Formal_Kind |
7094 E_Constant |
7095 E_Variable |
7096 E_Loop_Parameter =>
7097 Write_Str ("Alignment");
7098
7099 when E_Component |
7100 E_Discriminant =>
7101 Write_Str ("Normalized_Position");
7102
7103 when E_Function |
7104 E_Procedure =>
7105 Write_Str ("First_Optional_Parameter");
7106
7107 when E_Package |
7108 E_Generic_Package =>
7109 Write_Str ("Shadow_Entities");
7110
7111 when others =>
7112 Write_Str ("Field14??");
7113 end case;
7114 end Write_Field14_Name;
7115
7116 ------------------------
7117 -- Write_Field15_Name --
7118 ------------------------
7119
7120 procedure Write_Field15_Name (Id : Entity_Id) is
7121 begin
7122 case Ekind (Id) is
7123 when Access_Kind |
7124 Task_Kind =>
7125 Write_Str ("Storage_Size_Variable");
7126
7127 when Class_Wide_Kind |
7128 E_Record_Type |
7129 E_Record_Subtype |
7130 Private_Kind =>
7131 Write_Str ("Primitive_Operations");
7132
7133 when E_Component =>
7134 Write_Str ("DT_Entry_Count");
7135
7136 when Decimal_Fixed_Point_Kind =>
7137 Write_Str ("Scale_Value");
7138
7139 when E_Discriminant =>
7140 Write_Str ("Discriminant_Number");
7141
7142 when Formal_Kind =>
7143 Write_Str ("Extra_Formal");
7144
7145 when E_Function |
7146 E_Procedure =>
7147 Write_Str ("DT_Position");
7148
7149 when Entry_Kind =>
7150 Write_Str ("Entry_Parameters_Type");
7151
7152 when Enumeration_Kind =>
7153 Write_Str ("Lit_Indexes");
7154
7155 when E_Package |
7156 E_Package_Body =>
7157 Write_Str ("Related_Instance");
7158
7159 when E_Protected_Type =>
7160 Write_Str ("Entry_Bodies_Array");
7161
7162 when E_String_Literal_Subtype =>
7163 Write_Str ("String_Literal_Low_Bound");
7164
7165 when E_Variable =>
7166 Write_Str ("Shared_Var_Read_Proc");
7167
7168 when others =>
7169 Write_Str ("Field15??");
7170 end case;
7171 end Write_Field15_Name;
7172
7173 ------------------------
7174 -- Write_Field16_Name --
7175 ------------------------
7176
7177 procedure Write_Field16_Name (Id : Entity_Id) is
7178 begin
7179 case Ekind (Id) is
7180 when E_Component =>
7181 Write_Str ("Entry_Formal");
7182
7183 when E_Function |
7184 E_Procedure =>
7185 Write_Str ("DTC_Entity");
7186
7187 when E_Package |
7188 E_Generic_Package |
7189 Concurrent_Kind =>
7190 Write_Str ("First_Private_Entity");
7191
7192 when E_Record_Type |
7193 E_Record_Type_With_Private =>
7194 Write_Str ("Access_Disp_Table");
7195
7196 when E_String_Literal_Subtype =>
7197 Write_Str ("String_Literal_Length");
7198
7199 when Enumeration_Kind =>
7200 Write_Str ("Lit_Strings");
7201
7202 when E_Variable |
7203 E_Out_Parameter =>
7204 Write_Str ("Unset_Reference");
7205
7206 when E_Record_Subtype |
7207 E_Class_Wide_Subtype =>
7208 Write_Str ("Cloned_Subtype");
7209
7210 when others =>
7211 Write_Str ("Field16??");
7212 end case;
7213 end Write_Field16_Name;
7214
7215 ------------------------
7216 -- Write_Field17_Name --
7217 ------------------------
7218
7219 procedure Write_Field17_Name (Id : Entity_Id) is
7220 begin
7221 case Ekind (Id) is
7222 when Digits_Kind =>
7223 Write_Str ("Digits_Value");
7224
7225 when E_Component =>
7226 Write_Str ("Prival");
7227
7228 when E_Discriminant =>
7229 Write_Str ("Discriminal");
7230
7231 when E_Block |
7232 Class_Wide_Kind |
7233 Concurrent_Kind |
7234 Private_Kind |
7235 E_Entry |
7236 E_Entry_Family |
7237 E_Function |
7238 E_Generic_Function |
7239 E_Generic_Package |
7240 E_Generic_Procedure |
7241 E_Loop |
7242 E_Operator |
7243 E_Package |
7244 E_Package_Body |
7245 E_Procedure |
7246 E_Record_Type |
7247 E_Record_Subtype |
7248 E_Subprogram_Body |
7249 E_Subprogram_Type =>
7250 Write_Str ("First_Entity");
7251
7252 when Array_Kind =>
7253 Write_Str ("First_Index");
7254
7255 when E_Protected_Body =>
7256 Write_Str ("Object_Ref");
7257
7258 when Enumeration_Kind =>
7259 Write_Str ("First_Literal");
7260
7261 when Access_Kind =>
7262 Write_Str ("Master_Id");
7263
7264 when Modular_Integer_Kind =>
7265 Write_Str ("Modulus");
7266
7267 when Formal_Kind |
7268 E_Constant |
7269 E_Generic_In_Out_Parameter |
7270 E_Variable =>
7271 Write_Str ("Actual_Subtype");
7272
7273 when E_Incomplete_Type =>
7274 Write_Str ("Non-limited view");
7275
7276 when others =>
7277 Write_Str ("Field17??");
7278 end case;
7279 end Write_Field17_Name;
7280
7281 -----------------------
7282 -- Write_Field18_Name --
7283 -----------------------
7284
7285 procedure Write_Field18_Name (Id : Entity_Id) is
7286 begin
7287 case Ekind (Id) is
7288 when E_Enumeration_Literal |
7289 E_Function |
7290 E_Operator |
7291 E_Procedure =>
7292 Write_Str ("Alias");
7293
7294 when E_Record_Type =>
7295 Write_Str ("Corresponding_Concurrent_Type");
7296
7297 when E_Entry_Index_Parameter =>
7298 Write_Str ("Entry_Index_Constant");
7299
7300 when E_Class_Wide_Subtype |
7301 E_Access_Protected_Subprogram_Type |
7302 E_Access_Subprogram_Type |
7303 E_Exception_Type =>
7304 Write_Str ("Equivalent_Type");
7305
7306 when Fixed_Point_Kind =>
7307 Write_Str ("Delta_Value");
7308
7309 when E_Constant |
7310 E_Variable =>
7311 Write_Str ("Renamed_Object");
7312
7313 when E_Exception |
7314 E_Package |
7315 E_Generic_Function |
7316 E_Generic_Procedure |
7317 E_Generic_Package =>
7318 Write_Str ("Renamed_Entity");
7319
7320 when Incomplete_Or_Private_Kind =>
7321 Write_Str ("Private_Dependents");
7322
7323 when Concurrent_Kind =>
7324 Write_Str ("Corresponding_Record_Type");
7325
7326 when E_Label |
7327 E_Loop |
7328 E_Block =>
7329 Write_Str ("Enclosing_Scope");
7330
7331 when others =>
7332 Write_Str ("Field18??");
7333 end case;
7334 end Write_Field18_Name;
7335
7336 -----------------------
7337 -- Write_Field19_Name --
7338 -----------------------
7339
7340 procedure Write_Field19_Name (Id : Entity_Id) is
7341 begin
7342 case Ekind (Id) is
7343 when E_Array_Type |
7344 E_Array_Subtype =>
7345 Write_Str ("Related_Array_Object");
7346
7347 when E_Block |
7348 Concurrent_Kind |
7349 E_Function |
7350 E_Procedure |
7351 Entry_Kind =>
7352 Write_Str ("Finalization_Chain_Entity");
7353
7354 when E_Constant | E_Variable =>
7355 Write_Str ("Size_Check_Code");
7356
7357 when E_Discriminant =>
7358 Write_Str ("Corresponding_Discriminant");
7359
7360 when E_Package |
7361 E_Generic_Package =>
7362 Write_Str ("Body_Entity");
7363
7364 when E_Package_Body |
7365 Formal_Kind =>
7366 Write_Str ("Spec_Entity");
7367
7368 when Private_Kind =>
7369 Write_Str ("Underlying_Full_View");
7370
7371 when E_Record_Type =>
7372 Write_Str ("Parent_Subtype");
7373
7374 when others =>
7375 Write_Str ("Field19??");
7376 end case;
7377 end Write_Field19_Name;
7378
7379 -----------------------
7380 -- Write_Field20_Name --
7381 -----------------------
7382
7383 procedure Write_Field20_Name (Id : Entity_Id) is
7384 begin
7385 case Ekind (Id) is
7386 when Array_Kind =>
7387 Write_Str ("Component_Type");
7388
7389 when E_In_Parameter |
7390 E_Generic_In_Parameter =>
7391 Write_Str ("Default_Value");
7392
7393 when Access_Kind =>
7394 Write_Str ("Directly_Designated_Type");
7395
7396 when E_Component =>
7397 Write_Str ("Discriminant_Checking_Func");
7398
7399 when E_Discriminant =>
7400 Write_Str ("Discriminant_Default_Value");
7401
7402 when E_Block |
7403 Class_Wide_Kind |
7404 Concurrent_Kind |
7405 Private_Kind |
7406 E_Entry |
7407 E_Entry_Family |
7408 E_Function |
7409 E_Generic_Function |
7410 E_Generic_Package |
7411 E_Generic_Procedure |
7412 E_Loop |
7413 E_Operator |
7414 E_Package |
7415 E_Package_Body |
7416 E_Procedure |
7417 E_Record_Type |
7418 E_Record_Subtype |
7419 E_Subprogram_Body |
7420 E_Subprogram_Type =>
7421
7422 Write_Str ("Last_Entity");
7423
7424 when Scalar_Kind =>
7425 Write_Str ("Scalar_Range");
7426
7427 when E_Exception =>
7428 Write_Str ("Register_Exception_Call");
7429
7430 when others =>
7431 Write_Str ("Field20??");
7432 end case;
7433 end Write_Field20_Name;
7434
7435 -----------------------
7436 -- Write_Field21_Name --
7437 -----------------------
7438
7439 procedure Write_Field21_Name (Id : Entity_Id) is
7440 begin
7441 case Ekind (Id) is
7442 when E_Constant |
7443 E_Exception |
7444 E_Function |
7445 E_Generic_Function |
7446 E_Procedure |
7447 E_Generic_Procedure |
7448 E_Variable =>
7449 Write_Str ("Interface_Name");
7450
7451 when Concurrent_Kind |
7452 Incomplete_Or_Private_Kind |
7453 Class_Wide_Kind |
7454 E_Record_Type |
7455 E_Record_Subtype =>
7456 Write_Str ("Discriminant_Constraint");
7457
7458 when Entry_Kind =>
7459 Write_Str ("Accept_Address");
7460
7461 when Fixed_Point_Kind =>
7462 Write_Str ("Small_Value");
7463
7464 when E_In_Parameter =>
7465 Write_Str ("Default_Expr_Function");
7466
7467 when Array_Kind |
7468 Modular_Integer_Kind =>
7469 Write_Str ("Original_Array_Type");
7470
7471 when E_Access_Subprogram_Type |
7472 E_Access_Protected_Subprogram_Type =>
7473 Write_Str ("Original_Access_Type");
7474
7475 when others =>
7476 Write_Str ("Field21??");
7477 end case;
7478 end Write_Field21_Name;
7479
7480 -----------------------
7481 -- Write_Field22_Name --
7482 -----------------------
7483
7484 procedure Write_Field22_Name (Id : Entity_Id) is
7485 begin
7486 case Ekind (Id) is
7487 when Access_Kind =>
7488 Write_Str ("Associated_Storage_Pool");
7489
7490 when Array_Kind =>
7491 Write_Str ("Component_Size");
7492
7493 when E_Component |
7494 E_Discriminant =>
7495 Write_Str ("Original_Record_Component");
7496
7497 when E_Enumeration_Literal =>
7498 Write_Str ("Enumeration_Rep_Expr");
7499
7500 when E_Exception =>
7501 Write_Str ("Exception_Code");
7502
7503 when Formal_Kind =>
7504 Write_Str ("Protected_Formal");
7505
7506 when E_Record_Type =>
7507 Write_Str ("Corresponding_Remote_Type");
7508
7509 when E_Block |
7510 E_Entry |
7511 E_Entry_Family |
7512 E_Function |
7513 E_Loop |
7514 E_Package |
7515 E_Package_Body |
7516 E_Generic_Package |
7517 E_Generic_Function |
7518 E_Generic_Procedure |
7519 E_Procedure |
7520 E_Protected_Type |
7521 E_Subprogram_Body |
7522 E_Task_Type =>
7523 Write_Str ("Scope_Depth_Value");
7524
7525 when E_Record_Type_With_Private |
7526 E_Record_Subtype_With_Private |
7527 E_Private_Type |
7528 E_Private_Subtype |
7529 E_Limited_Private_Type |
7530 E_Limited_Private_Subtype =>
7531 Write_Str ("Private_View");
7532
7533 when E_Variable =>
7534 Write_Str ("Shared_Var_Assign_Proc");
7535
7536 when others =>
7537 Write_Str ("Field22??");
7538 end case;
7539 end Write_Field22_Name;
7540
7541 ------------------------
7542 -- Write_Field23_Name --
7543 ------------------------
7544
7545 procedure Write_Field23_Name (Id : Entity_Id) is
7546 begin
7547 case Ekind (Id) is
7548 when Access_Kind =>
7549 Write_Str ("Associated_Final_Chain");
7550
7551 when Array_Kind =>
7552 Write_Str ("Packed_Array_Type");
7553
7554 when E_Block =>
7555 Write_Str ("Entry_Cancel_Parameter");
7556
7557 when E_Component =>
7558 Write_Str ("Protected_Operation");
7559
7560 when E_Discriminant =>
7561 Write_Str ("CR_Discriminant");
7562
7563 when E_Enumeration_Type =>
7564 Write_Str ("Enum_Pos_To_Rep");
7565
7566 when Formal_Kind |
7567 E_Variable =>
7568 Write_Str ("Extra_Constrained");
7569
7570 when E_Generic_Function |
7571 E_Generic_Package |
7572 E_Generic_Procedure =>
7573 Write_Str ("Inner_Instances");
7574
7575 when Concurrent_Kind |
7576 Incomplete_Or_Private_Kind |
7577 Class_Wide_Kind |
7578 E_Record_Type |
7579 E_Record_Subtype =>
7580 Write_Str ("Stored_Constraint");
7581
7582 when E_Function |
7583 E_Procedure =>
7584 Write_Str ("Generic_Renamings");
7585
7586 when E_Package =>
7587 if Is_Generic_Instance (Id) then
7588 Write_Str ("Generic_Renamings");
7589 else
7590 Write_Str ("Limited Views");
7591 end if;
7592
7593 -- What about Privals_Chain for protected operations ???
7594
7595 when Entry_Kind =>
7596 Write_Str ("Privals_Chain");
7597
7598 when others =>
7599 Write_Str ("Field23??");
7600 end case;
7601 end Write_Field23_Name;
7602
7603 ------------------------
7604 -- Write_Field24_Name --
7605 ------------------------
7606
7607 procedure Write_Field24_Name (Id : Entity_Id) is
7608 begin
7609 case Ekind (Id) is
7610 when E_Record_Type |
7611 E_Record_Subtype |
7612 E_Record_Type_With_Private |
7613 E_Record_Subtype_With_Private =>
7614 Write_Str ("Abstract_Interfaces");
7615
7616 when Subprogram_Kind |
7617 E_Package |
7618 E_Generic_Package =>
7619 Write_Str ("Obsolescent_Warning");
7620
7621 when Task_Kind =>
7622 Write_Str ("Task_Body_Procedure");
7623
7624 when others =>
7625 Write_Str ("Field24??");
7626 end case;
7627 end Write_Field24_Name;
7628
7629 ------------------------
7630 -- Write_Field25_Name --
7631 ------------------------
7632
7633 procedure Write_Field25_Name (Id : Entity_Id) is
7634 begin
7635 case Ekind (Id) is
7636 when E_Procedure |
7637 E_Function =>
7638 Write_Str ("Abstract_Interface_Alias");
7639
7640 when E_Package =>
7641 Write_Str ("Current_Use_Clause");
7642
7643 when others =>
7644 Write_Str ("Field25??");
7645 end case;
7646 end Write_Field25_Name;
7647
7648 ------------------------
7649 -- Write_Field26_Name --
7650 ------------------------
7651
7652 procedure Write_Field26_Name (Id : Entity_Id) is
7653 begin
7654 case Ekind (Id) is
7655 when E_Generic_Package |
7656 E_Package =>
7657 Write_Str ("Package_Instantiation");
7658
7659 when E_Procedure |
7660 E_Function =>
7661 Write_Str ("Overridden_Operation");
7662
7663 when others =>
7664 Write_Str ("Field26??");
7665 end case;
7666 end Write_Field26_Name;
7667
7668 ------------------------
7669 -- Write_Field27_Name --
7670 ------------------------
7671
7672 procedure Write_Field27_Name (Id : Entity_Id) is
7673 begin
7674 case Ekind (Id) is
7675 when E_Procedure =>
7676 Write_Str ("Wrapped_Entity");
7677
7678 when others =>
7679 Write_Str ("Field27??");
7680 end case;
7681 end Write_Field27_Name;
7682
7683 -------------------------
7684 -- Iterator Procedures --
7685 -------------------------
7686
7687 procedure Proc_Next_Component (N : in out Node_Id) is
7688 begin
7689 N := Next_Component (N);
7690 end Proc_Next_Component;
7691
7692 procedure Proc_Next_Discriminant (N : in out Node_Id) is
7693 begin
7694 N := Next_Discriminant (N);
7695 end Proc_Next_Discriminant;
7696
7697 procedure Proc_Next_Formal (N : in out Node_Id) is
7698 begin
7699 N := Next_Formal (N);
7700 end Proc_Next_Formal;
7701
7702 procedure Proc_Next_Formal_With_Extras (N : in out Node_Id) is
7703 begin
7704 N := Next_Formal_With_Extras (N);
7705 end Proc_Next_Formal_With_Extras;
7706
7707 procedure Proc_Next_Index (N : in out Node_Id) is
7708 begin
7709 N := Next_Index (N);
7710 end Proc_Next_Index;
7711
7712 procedure Proc_Next_Inlined_Subprogram (N : in out Node_Id) is
7713 begin
7714 N := Next_Inlined_Subprogram (N);
7715 end Proc_Next_Inlined_Subprogram;
7716
7717 procedure Proc_Next_Literal (N : in out Node_Id) is
7718 begin
7719 N := Next_Literal (N);
7720 end Proc_Next_Literal;
7721
7722 procedure Proc_Next_Stored_Discriminant (N : in out Node_Id) is
7723 begin
7724 N := Next_Stored_Discriminant (N);
7725 end Proc_Next_Stored_Discriminant;
7726
7727 end Einfo;