fe94742e6e3f90e95b7112e7699725dee32068c0
[gcc.git] / gcc / ada / sinfo.ads
1 ------------------------------------------------------------------------------
2 -- --
3 -- GNAT COMPILER COMPONENTS --
4 -- --
5 -- S I N F O --
6 -- --
7 -- S p e c --
8 -- --
9 -- Copyright (C) 1992-2003, Free Software Foundation, Inc. --
10 -- --
11 -- GNAT is free software; you can redistribute it and/or modify it under --
12 -- terms of the GNU General Public License as published by the Free Soft- --
13 -- ware Foundation; either version 2, or (at your option) any later ver- --
14 -- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
15 -- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
16 -- or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License --
17 -- for more details. You should have received a copy of the GNU General --
18 -- Public License distributed with GNAT; see file COPYING. If not, write --
19 -- to the Free Software Foundation, 59 Temple Place - Suite 330, Boston, --
20 -- MA 02111-1307, USA. --
21 -- --
22 -- 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 -- This package defines the structure of the abstract syntax tree. The Tree
35 -- package provides a basic tree structure. Sinfo describes how this
36 -- structure is used to represent the syntax of an Ada program.
37
38 -- Note: the grammar used here is taken from Version 5.95 of the RM, dated
39 -- November 1994. The grammar in the RM is followed very closely in the tree
40 -- design, and is repeated as part of this source file.
41
42 -- The tree contains not only the full syntactic representation of the
43 -- program, but also the results of semantic analysis. In particular, the
44 -- nodes for defining identifiers, defining character literals and defining
45 -- operator symbols, collectively referred to as entities, represent what
46 -- would normally be regarded as the symbol table information. In addition
47 -- a number of the tree nodes contain semantic information.
48
49 -- WARNING: There is a C version of this package. Any changes to this
50 -- source file must be properly reflected in this C header file sinfo.h
51 -- which is created automatically from sinfo.ads using xsinfo.spt.
52
53 with Types; use Types;
54 with Uintp; use Uintp;
55 with Urealp; use Urealp;
56
57 package Sinfo is
58
59 ---------------------------------
60 -- Making Changes to This File --
61 ---------------------------------
62
63 -- If changes are made to this file, a number of related steps must be
64 -- carried out to ensure consistency. First, if a field access function
65 -- is added, it appears in seven places:
66
67 -- The documentation associated with the node
68 -- The spec of the access function in sinfo.ads
69 -- The body of the access function in sinfo.adb
70 -- The pragma Inline at the end of sinfo.ads for the access function
71 -- The spec of the set procedure in sinfo.ads
72 -- The body of the set procedure in sinfo.adb
73 -- The pragma Inline at the end of sinfo.ads for the set procedure
74
75 -- The field chosen must be consistent in all places, and, for a node
76 -- that is a subexpression, must not overlap any of the standard
77 -- expression fields.
78
79 -- In addition, if any of the standard expression fields is changed, then
80 -- the utiliy program which creates the Treeprs spec (in file treeprs.ads)
81 -- must be updated appropriately, since it special cases expression fields.
82
83 -- If a new tree node is added, then the following changes are made
84
85 -- Add it to the documentation in the appropriate place
86 -- Add its fields to this documentation section
87 -- Define it in the appropriate classification in Node_Kind
88 -- In the body (sinfo), add entries to the access functions for all
89 -- its fields (except standard expression fields) to include the new
90 -- node in the checks.
91 -- Add an appropriate section to the case statement in sprint.adb
92 -- Add an appropriate section to the case statement in sem.adb
93 -- Add an appropraite section to the case statement in exp_util.adb
94 -- (Insert_Actions procedure)
95 -- For a subexpression, add an appropriate sections to the case
96 -- statement in sem_eval.adb
97 -- For a subexpression, add an appropriate sections to the case
98 -- statement in sem_res.adb
99
100 -- Finally, four utility programs must be run:
101
102 -- Run CSinfo to check that you have made the changes consistently.
103 -- It checks most of the rules given above, with clear error messages.
104 -- This utility reads sinfo.ads and sinfo.adb and generates a report
105 -- to standard output.
106
107 -- Run XSinfo to create a-sinfo.h, the corresponding C header. This
108 -- utility reads sinfo.ads and generates a-sinfo.h. Note that it
109 -- does not need to read sinfo.adb, since the contents of the body
110 -- are algorithmically determinable from the spec.
111
112 -- Run XTreeprs to create treeprs.ads, an updated version of
113 -- the module that is used to drive the tree print routine. This
114 -- utility reads (but does not modify) treeprs.adt, the template
115 -- that provides the basic structure of the file, and then fills
116 -- in the data from the comments in sinfo.ads.
117
118 -- Run XNmake to create nmake.ads and nmake.adb, the package body
119 -- and spec of the Nmake package which contains functions for
120 -- constructing nodes.
121
122 -- Note: sometime we could write a utility that actually generated the
123 -- body of sinfo from the spec instead of simply checking it, since, as
124 -- noted above, the contents of the body can be determined from the spec.
125
126 --------------------------------
127 -- Implicit Nodes in the Tree --
128 --------------------------------
129
130 -- Generally the structure of the tree very closely follows the grammar
131 -- as defined in the RM. However, certain nodes are omitted to save
132 -- space and simplify semantic processing. Two general classes of such
133 -- omitted nodes are as follows:
134
135 -- If the only possibilities for a non-terminal are one or more other
136 -- non terminals (i.e. the rule is a "skinny" rule), then usually the
137 -- corresponding node is omitted from the tree, and the target construct
138 -- appears directly. For example, a real type definition is either a
139 -- floating point definition or a fixed point definition. No explicit
140 -- node appears for real type definition. Instead either the floating
141 -- point definition or fixed point definition appears directly.
142
143 -- If a non-terminal corresponds to a list of some other non-terminal
144 -- (possibly with separating punctuation), then usually it is omitted
145 -- from the tree, and a list of components appears instead. For
146 -- example, sequence of statements does not appear explicitly in the
147 -- tree. Instead a list of statements appears directly.
148
149 -- Some additional cases of omitted nodes occur and are documented
150 -- individually. In particular, many nodes are omitted in the tree
151 -- generated for an expression.
152
153 -------------------------------------------
154 -- Handling of Defining Identifier Lists --
155 -------------------------------------------
156
157 -- In several declarative forms in the syntax, lists of defining
158 -- identifiers appear (object declarations, component declarations,
159 -- number declarations etc.)
160
161 -- The semantics of such statements are equivalent to a series of
162 -- identical declarations of single defining identifiers (except that
163 -- conformance checks require the same grouping of identifiers in the
164 -- parameter case).
165
166 -- To simplify semantic processing, the parser breaks down such multiple
167 -- declaration cases into sequences of single declarations, duplicating
168 -- type and initialization information as required. The flags More_Ids
169 -- and Prev_Ids are used to record the original form of the source in
170 -- the case where the original source used a list of names, More_Ids
171 -- being set on all but the last name and Prev_Ids being set on all
172 -- but the first name. These flags are used to reconstruct the original
173 -- source (e.g. in the Sprint package), and also are included in the
174 -- conformance checks, but otherwise have no semantic significance.
175
176 -- Note: the reason that we use More_Ids and Prev_Ids rather than
177 -- First_Name and Last_Name flags is so that the flags are off in the
178 -- normal one identifier case, which minimizes tree print output.
179
180 -----------------------
181 -- Use of Node Lists --
182 -----------------------
183
184 -- With a few exceptions, if a construction of the form {non-terminal}
185 -- appears in the tree, lists are used in the corresponding tree node
186 -- (see package Nlists for handling of node lists). In this case a field
187 -- of the parent node points to a list of nodes for the non-terminal. The
188 -- field name for such fields has a plural name which always ends in "s".
189 -- For example, a case statement has a field Alternatives pointing to a
190 -- list of case statement alternative nodes.
191
192 -- Only fields pointing to lists have names ending in "s", so generally
193 -- the structure is strongly typed, fields not ending in s point to
194 -- single nodes, and fields ending in s point to lists.
195
196 -- The following example shows how a traversal of a list is written. We
197 -- suppose here that Stmt points to a N_Case_Statement node which has
198 -- a list field called Alternatives:
199
200 -- Alt := First (Alternatives (Stmt));
201 -- while Present (Alt) loop
202 -- ..
203 -- -- processing for case statement alternative Alt
204 -- ..
205 -- Alt := Next (Alt);
206 -- end loop;
207
208 -- The Present function tests for Empty, which in this case signals the
209 -- end of the list. First returns Empty immediately if the list is empty.
210 -- Present is defined in Atree, First and Next are defined in Nlists.
211
212 -- The exceptions to this rule occur with {DEFINING_IDENTIFIERS} in all
213 -- contexts, which is handled as described in the previous section, and
214 -- with {,library_unit_NAME} in the N_With_Clause mode, which is handled
215 -- using the First_Name and Last_Name flags, as further detailed in the
216 -- description of the N_With_Clause node.
217
218 -------------
219 -- Pragmas --
220 -------------
221
222 -- Pragmas can appear in many different context, but are not included
223 -- in the grammar. Still they must appear in the tree, so they can be
224 -- properly processed.
225
226 -- Two approaches are used. In some cases, an extra field is defined
227 -- in an appropriate node that contains a list of pragmas appearing
228 -- in the expected context. For example pragmas can appear before an
229 -- Accept_Alternative in a Selective_Accept_Statement, and these pragmas
230 -- appear in the Pragmas_Before field of the N_Accept_Alternative node.
231
232 -- The other approach is to simply allow pragmas to appear in syntactic
233 -- lists where the grammar (of course) does not include the possibility.
234 -- For example, the Variants field of an N_Variant_Part node points to
235 -- a list that can contain both N_Pragma and N_Variant nodes.
236
237 -- To make processing easier in the latter case, the Nlists package
238 -- provides a set of routines (First_Non_Pragma, Last_Non_Pragma,
239 -- Next_Non_Pragma, Prev_Non_Pragma) that allow such lists to be
240 -- handled ignoring all pragmas.
241
242 -- In the case of the variants list, we can either write:
243
244 -- Variant := First (Variants (N));
245 -- while Present (Variant) loop
246 -- ...
247 -- Alt := Next (Alt);
248 -- end loop;
249
250 -- or
251
252 -- Variant := First_Non_Pragma (Variants (N));
253 -- while Present (Variant) loop
254 -- ...
255 -- Alt := Next_Non_Pragma (Alt);
256 -- end loop;
257
258 -- In the first form of the loop, Variant can either be an N_Pragma or
259 -- an N_Variant node. In the second form, Variant can only be N_Variant
260 -- since all pragmas are skipped.
261
262 ---------------------
263 -- Optional Fields --
264 ---------------------
265
266 -- Fields which correspond to a section of the syntax enclosed in square
267 -- brackets are generally omitted (and the corresponding field set to
268 -- Empty for a node, or No_List for a list). The documentation of such
269 -- fields notes these cases. One exception to this rule occurs in the
270 -- case of possibly empty statement sequences (such as the sequence of
271 -- statements in an entry call alternative). Such cases appear in the
272 -- syntax rules as [SEQUENCE_OF_STATEMENTS] and the fields corresponding
273 -- to such optional statement sequences always contain an empty list (not
274 -- No_List) if no statements are present.
275
276 -- Note: the utility program that constructs the body and spec of the
277 -- Nmake package relies on the format of the comments to determine if
278 -- a field should have a default value in the corresponding make routine.
279 -- The rule is that if the first line of the description of the field
280 -- contains the string "(set to xxx if", then a default value of xxx is
281 -- provided for this field in the corresponding Make_yyy routine.
282
283 -----------------------------------
284 -- Note on Body/Spec Terminology --
285 -----------------------------------
286
287 -- In informal discussions about Ada, it is customary to refer to package
288 -- and subprogram specs and bodies. However, this is not technically
289 -- correct, what is normally referred to as a spec or specification is in
290 -- fact a package declaration or subprogram declaration. We are careful
291 -- in GNAT to use the correct terminology and in particular, the full
292 -- word specification is never used as an incorrect substitute for
293 -- declaration. The structure and terminology used in the tree also
294 -- reflects the grammar and thus uses declaration and specification in
295 -- the technically correct manner.
296
297 -- However, there are contexts in which the informal terminology is
298 -- useful. We have the word "body" to refer to the Interp_Etype declared by
299 -- the declaration of a unit body, and in some contexts we need a
300 -- similar term to refer to the entity declared by the package or
301 -- subprogram declaration, and simply using declaration can be confusing
302 -- since the body also has a declaration.
303
304 -- An example of such a context is the link between the package body
305 -- and its declaration. With_Declaration is confusing, since
306 -- the package body itself is a declaration.
307
308 -- To deal with this problem, we reserve the informal term Spec, i.e.
309 -- the popular abbreviation used in this context, to refer to the entity
310 -- declared by the package or subprogram declaration. So in the above
311 -- example case, the field in the body is called With_Spec.
312
313 -- Another important context for the use of the word Spec is in error
314 -- messages, where a hyper-correct use of declaration would be confusing
315 -- to a typical Ada programmer, and even for an expert programmer can
316 -- cause confusion since the body has a declaration as well.
317
318 -- So, to summarize:
319
320 -- Declaration always refers to the syntactic entity that is called
321 -- a declaration. In particular, subprogram declaration
322 -- and package declaration are used to describe the
323 -- syntactic entity that includes the semicolon.
324
325 -- Specification always refers to the syntactic entity that is called
326 -- a specification. In particular, the terms procedure
327 -- specification, function specification, package
328 -- specification, subprogram specification always refer
329 -- to the syntactic entity that has no semicolon.
330
331 -- Spec is an informal term, used to refer to the entity
332 -- that is declared by a task declaration, protected
333 -- declaration, generic declaration, subprogram
334 -- declaration or package declaration.
335
336 -- This convention is followed throughout the GNAT documentation
337 -- both internal and external, and in all error message text.
338
339 ------------------------
340 -- Internal Use Nodes --
341 ------------------------
342
343 -- These are Node_Kind settings used in the internal implementation
344 -- which are not logically part of the specification.
345
346 -- N_Unused_At_Start
347 -- Completely unused entry at the start of the enumeration type. This
348 -- is inserted so that no legitimate value is zero, which helps to get
349 -- better debugging behavior, since zero is a likely uninitialized value).
350
351 -- N_Unused_At_End
352 -- Completely unused entry at the end of the enumeration type. This is
353 -- handy so that arrays with Node_Kind as the index type have an extra
354 -- entry at the end (see for example the use of the Pchar_Pos_Array in
355 -- Treepr, where the extra entry provides the limit value when dealing
356 -- with the last used entry in the array).
357
358 -----------------------------------------
359 -- Note on the settings of Sloc fields --
360 -----------------------------------------
361
362 -- The Sloc field of nodes that come from the source is set by the
363 -- parser. For internal nodes, and nodes generated during expansion
364 -- the Sloc is usually set in the call to the constructor for the node.
365 -- In general the Sloc value chosen for an internal node is the Sloc of
366 -- the source node whose processing is responsible for the expansion. For
367 -- example, the Sloc of an inherited primitive operation is the Sloc of
368 -- the corresponding derived type declaration.
369
370 -- For the nodes of a generic instantiation, the Sloc value is encoded
371 -- to represent both the original Sloc in the generic unit, and the Sloc
372 -- of the instantiation itself. See Sinput.ads for details.
373
374 -- Subprogram instances create two callable entities: one is the visible
375 -- subprogram instance, and the other is an anonymous subprogram nested
376 -- within a wrapper package that contains the renamings for the actuals.
377 -- Both of these entities have the Sloc of the defining entity in the
378 -- instantiation node. This simplifies some ASIS queries.
379
380 -----------------------
381 -- Field Definitions --
382 -----------------------
383
384 -- In the following node definitions, all fields, both syntactic and
385 -- semantic, are documented. The one exception is in the case of entities
386 -- (defining indentifiers, character literals and operator symbols),
387 -- where the usage of the fields depends on the entity kind. Entity
388 -- fields are fully documented in the separate package Einfo.
389
390 -- In the node definitions, three common sets of fields are abbreviated
391 -- to save both space in the documentation, and also space in the string
392 -- (defined in Tree_Print_Strings) used to print trees. The following
393 -- abbreviations are used:
394
395 -- Note: the utility program that creates the Treeprs spec (in the file
396 -- treeprs.ads) knows about the special fields here, so it must be
397 -- modified if any change is made to these fields.
398
399 -- "plus fields for binary operator"
400 -- Chars (Name1) Name_Id for the operator
401 -- Left_Opnd (Node2) left operand expression
402 -- Right_Opnd (Node3) right operand expression
403 -- Entity (Node4-Sem) defining entity for operator
404 -- Associated_Node (Node4-Sem) for generic processing
405 -- Do_Overflow_Check (Flag17-Sem) set if overflow check needed
406 -- Has_Private_View (Flag11-Sem) set in generic units.
407
408 -- "plus fields for unary operator"
409 -- Chars (Name1) Name_Id for the operator
410 -- Right_Opnd (Node3) right operand expression
411 -- Entity (Node4-Sem) defining entity for operator
412 -- Associated_Node (Node4-Sem) for generic processing
413 -- Do_Overflow_Check (Flag17-Sem) set if overflow check needed
414 -- Has_Private_View (Flag11-Sem) set in generic units.
415
416 -- "plus fields for expression"
417 -- Paren_Count number of parentheses levels
418 -- Etype (Node5-Sem) type of the expression
419 -- Is_Overloaded (Flag5-Sem) >1 type interpretation exists
420 -- Is_Static_Expression (Flag6-Sem) set for static expression
421 -- Raises_Constraint_Error (Flag7-Sem) evaluation raises CE
422 -- Must_Not_Freeze (Flag8-Sem) set if must not freeze
423 -- Do_Range_Check (Flag9-Sem) set if a range check needed
424 -- Assignment_OK (Flag15-Sem) set if modification is OK
425 -- Is_Controlling_Actual (Flag16-Sem) set for controlling argument
426
427 -- Note: see under (EXPRESSION) for further details on the use of
428 -- the Paren_Count field to record the number of parentheses levels.
429
430 -- Node_Kind is the type used in the Nkind field to indicate the node
431 -- kind. The actual definition of this type is given later (the reason
432 -- for this is that we want the descriptions ordered by logical chapter
433 -- in the RM, but the type definition is reordered to facilitate the
434 -- definition of some subtype ranges. The individual descriptions of
435 -- the nodes show how the various fields are used in each node kind,
436 -- as well as providing logical names for the fields. Functions and
437 -- procedures are provided for accessing and setting these fields
438 -- using these logical names.
439
440 -----------------------
441 -- Gigi Restrictions --
442 -----------------------
443
444 -- The tree passed to Gigi is more restricted than the general tree form.
445 -- For example, as a result of expansion, most of the tasking nodes can
446 -- never appear. For each node to which either a complete or partial
447 -- restriction applies, a note entitled "Gigi restriction" appears which
448 -- documents the restriction.
449
450 -- Note that most of these restrictions apply only to trees generated when
451 -- code is being generated, since they involved expander actions that
452 -- destroy the tree.
453
454 ------------------------
455 -- Common Flag Fields --
456 ------------------------
457
458 -- The following flag fields appear in all nodes
459
460 -- Analyzed
461 -- This flag is used to indicate that a node (and all its children
462 -- have been analyzed. It is used to avoid reanalysis of a node that
463 -- has already been analyzed, both for efficiency and functional
464 -- correctness reasons.
465
466 -- Error_Posted
467 -- This flag is used to avoid multiple error messages being posted
468 -- on or referring to the same node. This flag is set if an error
469 -- message refers to a node or is posted on its source location,
470 -- and has the effect of inhibiting further messages involving
471 -- this same node.
472
473 -- Comes_From_Source
474 -- This flag is on for any nodes built by the scanner or parser from
475 -- the source program, and off for any nodes built by the analyzer or
476 -- expander. It indicates that a node comes from the original source.
477 -- This flag is defined in Atree.
478
479 -- Has_Dynamic_Length_Check and Has_Dynamic_Range_Check also appear on
480 -- all nodes. They are fully described in the next section.
481
482 ------------------------------------
483 -- Description of Semantic Fields --
484 ------------------------------------
485
486 -- The meaning of the syntactic fields is generally clear from their
487 -- names without any further description, since the names are chosen
488 -- to correspond very closely to the syntax in the reference manual.
489 -- This section describes the usage of the semantic fields, which are
490 -- used to contain additional information determined during semantic
491 -- analysis.
492
493 -- ABE_Is_Certain (Flag18-Sem)
494 -- This flag is set in an instantiation node or a call node is
495 -- determined to be sure to raise an ABE. This is used to trigger
496 -- special handling of such cases, particularly in the instantiation
497 -- case where we avoid instantiating the body if this flag is set.
498 -- This flag is also present in an N_Formal_Package_Declaration_Node
499 -- since formal package declarations are treated like instantiations,
500 -- but it is always set to False in this context.
501
502 -- Accept_Handler_Records (List5-Sem)
503 -- This field is present only in an N_Accept_Alternative node. It is
504 -- used to temporarily hold the exception handler records from an
505 -- accept statement in a selective accept. These exception handlers
506 -- will eventually be placed in the Handler_Records list of the
507 -- procedure built for this accept (see Expand_N_Selective_Accept
508 -- procedure in Exp_Ch9 for further details).
509
510 -- Access_Types_To_Process (Elist2-Sem)
511 -- Present in N_Freeze_Entity nodes for Incomplete or private types.
512 -- Contains the list of access types which may require specific
513 -- treatment when the nature of the type completion is completely
514 -- known. An example of such treatement is the generation of the
515 -- associated_final_chain.
516
517 -- Actions (List1-Sem)
518 -- This field contains a sequence of actions that are associated
519 -- with the node holding the field. See the individual node types
520 -- for details of how this field is used, as well as the description
521 -- of the specific use for a particular node type.
522
523 -- Activation_Chain_Entity (Node3-Sem)
524 -- This is used in tree nodes representing task activators (blocks,
525 -- subprogram bodies, package declarations, and task bodies). It is
526 -- initially Empty, and then gets set to point to the entity for the
527 -- declared Activation_Chain variable when the first task is declared.
528 -- When tasks are declared in the corresponding declarative region
529 -- this entity is located by name (its name is always _Chain) and
530 -- the declared tasks are added to the chain.
531
532 -- Acts_As_Spec (Flag4-Sem)
533 -- A flag set in the N_Subprogram_Body node for a subprogram body
534 -- which is acting as its own spec. This flag also appears in the
535 -- compilation unit node at the library level for such a subprogram
536 -- (see further description in spec of Lib package).
537
538 -- Aggregate_Bounds (Node3-Sem)
539 -- Present in array N_Aggregate nodes. If the aggregate contains
540 -- component associations this field points to an N_Range node whose
541 -- bounds give the lowest and highest discrete choice values. If the
542 -- named aggregate contains a dynamic or null choice this field is
543 -- empty. If the aggregate contains positional elements this field
544 -- points to an N_Integer_Literal node giving the number of positional
545 -- elements. Note that if the aggregate contains positional elements
546 -- and an other choice the N_Integer_Literal only accounts for the
547 -- number of positional elements.
548
549 -- All_Others (Flag11-Sem)
550 -- Present in an N_Others_Choice node. This flag is set in the case
551 -- of an others exception where all exceptions are to be caught, even
552 -- those that are not normally handled (in particular the tasking abort
553 -- signal). This is used for translation of the at end handler into
554 -- a normal exception handler.
555
556 -- Assignment_OK (Flag15-Sem)
557 -- This flag is set in a subexpression node for an object, indicating
558 -- that the associated object can be modified, even if this would not
559 -- normally be permissible (either by direct assignment, or by being
560 -- passed as an out or in-out parameter). This is used by the expander
561 -- for a number of purposes, including initialzation of constants and
562 -- limited type objects (such as tasks), setting discriminant fields,
563 -- setting tag values, etc. N_Object_Declaration nodes also have this
564 -- flag defined. Here it is used to indicate that an initialization
565 -- expression is valid, even where it would normally not be allowed
566 -- (e.g. where the type involved is limited).
567
568 -- Associated_Node (Node4-Sem)
569 -- Present in nodes that can denote an entity: identifiers, character
570 -- literals, operator symbols, expanded names, operator nodes and
571 -- attribute reference nodes (all these nodes have an Entity field).
572 -- This field is also present in N_Aggregate, N_Selected_Component,
573 -- and N_Extension_Aggregate nodes. This field is used during generic
574 -- processing to relate nodes in the original template to nodes in the
575 -- generic copy. It overlaps the Entity field, and is used to capture
576 -- global references in the analyzed copy and place them in the instance.
577 -- See description in Sem_Ch12 for further details on this usage.
578
579 -- At_End_Proc (Node1)
580 -- This field is present in an N_Handled_Sequence_Of_Statements node.
581 -- It contains an identifier reference for the cleanup procedure to
582 -- be called. See description of this node for further details.
583
584 -- Backwards_OK (Flag6-Sem)
585 -- A flag present in the N_Assignment_Statement node. It is used only
586 -- if the type being assigned is an array type, and is set if analysis
587 -- determines that it is definitely safe to do the copy backwards, i.e.
588 -- starting at the highest addressed element. Note that if neither of
589 -- the flags Forwards_OK or Backwards_OK is set, it means that the
590 -- front end could not determine that either direction is definitely
591 -- safe, and a runtime check is required.
592
593 -- Body_To_Inline (Node3-Sem)
594 -- present in subprogram declarations. Denotes analyzed but unexpanded
595 -- body of subprogram, to be used when inlining calls. Present when the
596 -- subprogram has an Inline pragma and inlining is enabled. If the
597 -- declaration is completed by a renaming_as_body, and the renamed en-
598 -- tity is a subprogram, the Body_To_Inline is the name of that entity,
599 -- which is used directly in later calls to the original subprogram.
600
601 -- Body_Required (Flag13-Sem)
602 -- A flag that appears in the N_Compilation_Unit node indicating that
603 -- the corresponding unit requires a body. For the package case, this
604 -- indicates that a completion is required. In Ada 95, if the flag
605 -- is not set for the package case, then a body may not be present.
606 -- In Ada 83, if the flag is not set for the package case, then a
607 -- body is optional. For a subprogram declaration, the flag is set
608 -- except in the case where a pragma Import or Interface applies,
609 -- in which case no body is permitted (in Ada 83 or Ada 95).
610
611 -- By_Ref (Flag5-Sem)
612 -- A flag present in the N_Return_Statement_Node. It is set when the
613 -- returned expression is already allocated on the secondary stack
614 -- and thus the result is passed by reference rather than copied
615 -- another time.
616
617 -- Check_Address_Alignment (Flag11-Sem)
618 -- A flag present in N_Attribute_Definition clause for a 'Address
619 -- attribute definition. This flag is set if a dynamic check should
620 -- be generated at the freeze point for the entity to which this
621 -- address clause applies. The reason that we need this flag is that
622 -- we want to check for range checks being suppressed at the point
623 -- where the attribute definition clause is given, rather than
624 -- testing this at the freeze point.
625
626 -- Compile_Time_Known_Aggregate (Flag18-Sem)
627 -- Present in N_Aggregate nodes. Set for aggregates which can be
628 -- fully evaluated at compile time without raising constraint error.
629 -- Such aggregates can be passed as is to Gigi without any expansion.
630 -- See Sem_Aggr for the specific conditions under which an aggregate
631 -- has this flag set. See also the flag Static_Processing_OK.
632
633 -- Condition_Actions (List3-Sem)
634 -- This field appears in else-if nodes and in the iteration scheme
635 -- node for while loops. This field is only used during semantic
636 -- processing to temporarily hold actions inserted into the tree.
637 -- In the tree passed to gigi, the condition actions field is always
638 -- set to No_List. For details on how this field is used, see the
639 -- routine Insert_Actions in package Exp_Util, and also the expansion
640 -- routines for the relevant nodes.
641
642 -- Controlling_Argument (Node1-Sem)
643 -- This field is set in procedure and function call nodes if the call
644 -- is a dispatching call (it is Empty for a non-dispatching call).
645 -- It indicates the source of the controlling tag for the call. For
646 -- Procedure calls, the Controlling_Argument is one of the actuals.
647 -- For a function that has a dispatching result, it is an entity in
648 -- the context of the call that can provide a tag, or else it is the
649 -- tag of the root type of the class.
650
651 -- Conversion_OK (Flag14-Sem)
652 -- A flag set on type conversion nodes to indicate that the conversion
653 -- is to be considered as being valid, even though it is the case that
654 -- the conversion is not valid Ada. This is used for the Enum_Rep,
655 -- Fixed_Value and Integer_Value attributes, for internal conversions
656 -- done for fixed-point operations, and for certain conversions for
657 -- calls to initialization procedures. If Conversion_OK is set, then
658 -- Etype must be set (the analyzer assumes that Etype has been set).
659 -- For the case of fixed-point operands, it also indicates that the
660 -- conversion is to be a direct conversion of the underlying integer
661 -- result, with no regard to the small operand.
662
663 -- Corresponding_Body (Node5-Sem)
664 -- This field is set in subprogram declarations, package declarations,
665 -- entry declarations of protected types, and in generic units. It
666 -- points to the defining entity for the corresponding body (NOT the
667 -- node for the body itself).
668
669 -- Corresponding_Generic_Association (Node5-Sem)
670 -- This field is defined for object declarations and object renaming
671 -- declarations. It is set for the declarations within an instance that
672 -- map generic formals to their actuals. If set, the field points to
673 -- a generic_association which is the original parent of the expression
674 -- or name appearing in the declaration. This simplifies ASIS queries.
675
676 -- Corresponding_Integer_Value (Uint4-Sem)
677 -- This field is set in real literals of fixed-point types (it is not
678 -- used for floating-point types). It contains the integer value used
679 -- to represent the fixed-point value. It is also set on the universal
680 -- real literals used to represent bounds of fixed-point base types
681 -- and their first named subtypes.
682
683 -- Corresponding_Spec (Node5-Sem)
684 -- This field is set in subprogram, package, task, and protected body
685 -- nodes, where it points to the defining entity in the corresponding
686 -- spec. The attribute is also set in N_With_Clause nodes, where
687 -- it points to the defining entity for the with'ed spec, and in
688 -- a subprogram renaming declaration when it is a Renaming_As_Body.
689 -- The field is Empty if there is no corresponding spec, as in the
690 -- case of a subprogram body that serves as its own spec.
691
692 -- Corresponding_Stub (Node3-Sem)
693 -- This field is present in an N_Subunit node. It holds the node in
694 -- the parent unit that is the stub declaration for the subunit. it is
695 -- set when analysis of the stub forces loading of the proper body. If
696 -- expansion of the proper body creates new declarative nodes, they are
697 -- inserted at the point of the corresponding_stub.
698
699 -- Dcheck_Function (Node5-Sem)
700 -- This field is present in an N_Variant node, It references the entity
701 -- for the discriminant checking function for the variant.
702
703 -- Debug_Statement (Node3)
704 -- This field is present in an N_Pragma node. It is used only for
705 -- a Debug pragma or pragma Assert with a second parameter. The
706 -- parameter is of the form of an expression, as required by the
707 -- pragma syntax, but is actually a procedure call. To simplify
708 -- semantic processing, the parser creates a copy of the argument
709 -- rearranged into a procedure call statement and places it in the
710 -- Debug_Statement field. Note that this field is considered a
711 -- syntactic field, since it is created by the parser.
712
713 -- Default_Expression (Node5-Sem)
714 -- This field is Empty if there is no default expression. If there
715 -- is a simple default expression (one with no side effects), then
716 -- this field simply contains a copy of the Expression field (both
717 -- point to the tree for the default expression). Default_Expression
718 -- is used for conformance checking.
719
720 -- Delay_Finalize_Attach (Flag14-Sem)
721 -- This flag is present in an N_Object_Declaration node. If it is set,
722 -- then in the case of a controlled type being declared and initialized,
723 -- the normal code for attaching the result to the appropriate local
724 -- finalization list is suppressed. This is used for functions that
725 -- return controlled types without using the secondary stack, where
726 -- it is the caller who must do the attachment.
727
728 -- Discr_Check_Funcs_Built (Flag11-Sem)
729 -- This flag is present in N_Full_Type_Declaration nodes. It is set when
730 -- discriminant checking functions are constructed. The purpose is to
731 -- avoid attempting to set these functions more than once.
732
733 -- Do_Accessibility_Check (Flag13-Sem)
734 -- This flag is set on N_Parameter_Specification nodes to indicate
735 -- that an accessibility check is required for the parameter. It is
736 -- not yet decided who takes care of this check (TBD ???).
737
738 -- Do_Discriminant_Check (Flag13-Sem)
739 -- This flag is set on N_Selected_Component nodes to indicate that a
740 -- discriminant check is required using the discriminant check routine
741 -- associated with the selector. The actual check is generated by the
742 -- expander when processing selected components.
743
744 -- Do_Division_Check (Flag13-Sem)
745 -- This flag is set on a division operator (/ mod rem) to indicate
746 -- that a zero divide check is required. The actual check is dealt
747 -- with by the backend (all the front end does is to set the flag).
748
749 -- Do_Length_Check (Flag4-Sem)
750 -- This flag is set in an N_Assignment_Statement, N_Op_And, N_Op_Or,
751 -- N_Op_Xor, or N_Type_Conversion node to indicate that a length check
752 -- is required. It is not determined who deals with this flag (???).
753
754 -- Do_Overflow_Check (Flag17-Sem)
755 -- This flag is set on an operator where an overflow check is required
756 -- on the operation. The actual check is dealt with by the backend
757 -- (all the front end does is to set the flag). The other cases where
758 -- this flag is used is on a Type_Conversion node and for attribute
759 -- reference nodes. For a type conversion, it means that the conversion
760 -- is from one base type to another, and the value may not fit in the
761 -- target base type. See also the description of Do_Range_Check for
762 -- this case. The only attribute references which use this flag are
763 -- Pred and Succ, where it means that the result should be checked
764 -- for going outside the base range.
765
766 -- Do_Range_Check (Flag9-Sem)
767 -- This flag is set on an expression which appears in a context where
768 -- a range check is required. The target type is clear from the
769 -- context. The contexts in which this flag can appear are limited to
770 -- the following.
771
772 -- Right side of an assignment. In this case the target type is
773 -- taken from the left side of the assignment, which is referenced
774 -- by the Name of the N_Assignment_Statement node.
775
776 -- Subscript expressions in an indexed component. In this case the
777 -- target type is determined from the type of the array, which is
778 -- referenced by the Prefix of the N_Indexed_Component node.
779
780 -- Argument expression for a parameter, appearing either directly
781 -- in the Parameter_Associations list of a call or as the Expression
782 -- of an N_Parameter_Association node that appears in this list. In
783 -- either case, the check is against the type of the formal. Note
784 -- that the flag is relevant only in IN and IN OUT parameters, and
785 -- will be ignored for OUT parameters, where no check is required
786 -- in the call, and if a check is required on the return, it is
787 -- generated explicitly with a type conversion.
788
789 -- Initialization expression for the initial value in an object
790 -- declaration. In this case the Do_Range_Check flag is set on
791 -- the initialization expression, and the check is against the
792 -- range of the type of the object being declared.
793
794 -- The expression of a type conversion. In this case the range check
795 -- is against the target type of the conversion. See also the use of
796 -- Do_Overflow_Check on a type conversion. The distinction is that
797 -- the overflow check protects against a value that is outside the
798 -- range of the target base type, whereas a range check checks that
799 -- the resulting value (which is a value of the base type of the
800 -- target type), satisfies the range constraint of the target type.
801
802 -- Note: when a range check is required in contexts other than those
803 -- listed above (e.g. in a return statement), an additional type
804 -- conversion node is introduced to represent the required check.
805
806 -- Do_Storage_Check (Flag17-Sem)
807 -- This flag is set in an N_Allocator node to indicate that a storage
808 -- check is required for the allocation, or in an N_Subprogram_Body
809 -- node to indicate that a stack check is required in the subprogram
810 -- prolog. The N_Allocator case is handled by the routine that expands
811 -- the call to the runtime routine. The N_Subprogram_Body case is
812 -- handled by the backend, and all the semantics does is set the flag.
813
814 -- Do_Tag_Check (Flag13-Sem)
815 -- This flag is set on an N_Assignment_Statement, N_Function_Call,
816 -- N_Procedure_Call_Statement, N_Type_Conversion or N_Return_Statememt
817 -- node to indicate that the tag check can be suppressed. It is not
818 -- yet decided how this flag is used (TBD ???).
819
820 -- Elaborate_Present (Flag4-Sem)
821 -- This flag is set in the N_With_Clause node to indicate that a
822 -- pragma Elaborate pragma appears for the with'ed units.
823
824 -- Elaborate_All_Present (Flag15-Sem)
825 -- This flag is set in the N_With_Clause node to indicate that a
826 -- pragma Elaborate_All pragma appears for the with'ed units.
827
828 -- Elaboration_Boolean (Node2-Sem)
829 -- This field is present in function and procedure specification
830 -- nodes. If set, it points to the entity for a Boolean flag that
831 -- must be tested for certain calls to check for access before
832 -- elaboration. See body of Sem_Elab for further details. This
833 -- field is Empty if no elaboration boolean is required.
834
835 -- Else_Actions (List3-Sem)
836 -- This field is present in conditional expression nodes. During code
837 -- expansion we use the Insert_Actions procedure (in Exp_Util) to insert
838 -- actions at an appropriate place in the tree to get elaborated at the
839 -- right time. For conditional expressions, we have to be sure that the
840 -- actions for the Else branch are only elaborated if the condition is
841 -- False. The Else_Actions field is used as a temporary parking place
842 -- for these actions. The final tree is always rewritten to eliminate
843 -- the need for this field, so in the tree passed to Gigi, this field
844 -- is always set to No_List.
845
846 -- Enclosing_Variant (Node2-Sem)
847 -- This field is present in the N_Variant node and identifies the
848 -- Node_Id corresponding to the immediately enclosing variant when
849 -- the variant is nested, and N_Empty otherwise. Set during semantic
850 -- processing of the variant part of a record type.
851
852 -- Entity (Node4-Sem)
853 -- Appears in all direct names (identifier, character literal,
854 -- operator symbol), as well as expanded names, and attributes that
855 -- denote entities, such as 'Class. Points to the entity for the
856 -- corresponding defining occurrence. Set after name resolution.
857 -- In the case of identifiers in a WITH list, the corresponding
858 -- defining occurrence is in a separately compiled file, and this
859 -- pointer must be set using the library Load procedure. Note that
860 -- during name resolution, the value in Entity may be temporarily
861 -- incorrect (e.g. during overload resolution, Entity is initially
862 -- set to the first possible correct interpretation, and then later
863 -- modified if necessary to contain the correct value after resolution).
864 -- Note that Associated_Node overlays this field during the processing
865 -- of generics. See Sem_Ch12 for further details.
866
867 -- Etype (Node5-Sem)
868 -- Appears in all expression nodes, all direct names, and all
869 -- entities. Points to the entity for the related type. Set after
870 -- type resolution. Normally this is the actual subtype of the
871 -- expression. However, in certain contexts such as the right side
872 -- of an assignment, subscripts, arguments to calls, returned value
873 -- in a function, initial value etc. it is the desired target type.
874 -- In the event that this is different from the actual type, the
875 -- Do_Range_Check flag will be set if a range check is required.
876 -- Note: if the Is_Overloaded flag is set, then Etype points to
877 -- an essentially arbitrary choice from the possible set of types.
878
879 -- Exception_Junk (Flag11-Sem)
880 -- This flag is set in a various nodes appearing in a statement
881 -- sequence to indicate that the corresponding node is an artifact
882 -- of the generated code for exception handling, and should be
883 -- ignored when analyzing the control flow of the relevant sequence
884 -- of statements (e.g. to check that it does not end with a bad
885 -- return statement).
886
887 -- Expansion_Delayed (Flag11-Sem)
888 -- Set on aggregates and extension aggregates that need a top-down
889 -- rather than bottom up expansion. Typically aggregate expansion
890 -- happens bottom up. For nested aggregates the expansion is delayed
891 -- until the enclosing aggregate itself is expanded, e.g. in the context
892 -- of a declaration. To delay it we set this flag. This is done to
893 -- avoid creating a temporary for each level of a nested aggregates,
894 -- and also to prevent the premature generation of constraint checks.
895 -- This is also a requirement if we want to generate the proper
896 -- attachment to the internal finalization lists (for record with
897 -- controlled components). Top down expansion of aggregates is also
898 -- used for in-place array aggregate assignment or initialization.
899 -- When the full context is known, the target of the assignment or
900 -- initialization is used to generate the left-hand side of individual
901 -- assignment to each sub-component.
902
903 -- First_Inlined_Subprogram (Node3-Sem)
904 -- Present in the N_Compilation_Unit node for the main program. Points
905 -- to a chain of entities for subprograms that are to be inlined. The
906 -- Next_Inlined_Subprogram field of these entities is used as a link
907 -- pointer with Empty marking the end of the list. This field is Empty
908 -- if there are no inlined subprograms or inlining is not active.
909
910 -- First_Named_Actual (Node4-Sem)
911 -- Present in procedure call statement and function call nodes, and
912 -- also in Intrinsic nodes. Set during semantic analysis to point to
913 -- the first named parameter where parameters are ordered by declaration
914 -- order (as opposed to the actual order in the call which may be
915 -- different due to named associations). Note: this field points to the
916 -- explicit actual parameter itself, not the N_Parameter_Association
917 -- node (its parent).
918
919 -- First_Real_Statement (Node2-Sem)
920 -- Present in N_Handled_Sequence_Of_Statements node. Normally set to
921 -- Empty. Used only when declarations are moved into the statement
922 -- part of a construct as a result of wrapping an AT END handler that
923 -- is required to cover the declarations. In this case, this field is
924 -- used to remember the location in the statements list of the first
925 -- real statement, i.e. the statement that used to be first in the
926 -- statement list before the declarations were prepended.
927
928 -- First_Subtype_Link (Node5-Sem)
929 -- Present in N_Freeze_Entity node for an anonymous base type that
930 -- is implicitly created by the declaration of a first subtype. It
931 -- points to the entity for the first subtype.
932
933 -- Float_Truncate (Flag11-Sem)
934 -- A flag present in type conversion nodes. This is used for float
935 -- to integer conversions where truncation is required rather than
936 -- rounding. Note that Gigi does not handle type conversions from real
937 -- to integer with rounding (see Expand_N_Type_Conversion).
938
939 -- Forwards_OK (Flag5-Sem)
940 -- A flag present in the N_Assignment_Statement node. It is used only
941 -- if the type being assigned is an array type, and is set if analysis
942 -- determines that it is definitely safe to do the copy forwards, i.e.
943 -- starting at the lowest addressed element. Note that if neither of
944 -- the flags Forwards_OK or Backwards_OK is set, it means that the
945 -- front end could not determine that either direction is definitely
946 -- safe, and a runtime check is required.
947
948 -- From_At_Mod (Flag4-Sem)
949 -- This flag is set on the attribute definition clause node that is
950 -- generated by a transformation of an at mod phrase in a record
951 -- representation clause. This is used to give slightly different
952 -- (Ada 83 compatible) semantics to such a clause, namely it is
953 -- used to specify a minimum acceptable alignment for the base type
954 -- and all subtypes. In Ada 95 terms, the actual alignment of the
955 -- base type and all subtypes must be a multiple of the given value,
956 -- and the representation clause is considered to be type specific
957 -- instead of subtype specific.
958
959 -- Generic_Parent (Node5-Sem)
960 -- Generic_parent is defined on declaration nodes that are instances.
961 -- The value of Generic_Parent is the generic entity from which the
962 -- instance is obtained. Generic_Parent is also defined for the renaming
963 -- declarations and object declarations created for the actuals in an
964 -- instantiation. The generic parent of such a declaration is the
965 -- corresponding generic association in the Instantiation node.
966
967 -- Generic_Parent_Type (Node4-Sem)
968 -- Generic_Parent_Type is defined on Subtype_Declaration nodes for
969 -- the actuals of formal private and derived types. Within the instance,
970 -- the operations on the actual are those inherited from the parent.
971 -- For a formal private type, the parent type is the generic type
972 -- itself. The Generic_Parent_Type is also used in an instance to
973 -- determine whether a private operation overrides an inherited one.
974
975 -- Handler_List_Entry (Node2-Sem)
976 -- This field is present in N_Object_Declaration nodes. It is set only
977 -- for the Handler_Record entry generated for an exception in zero cost
978 -- exception handling mode. It references the corresponding item in the
979 -- handler list, and is used to delete this entry if the corresponding
980 -- handler is deleted during optimization. For further details on why
981 -- this is required, see Exp_Ch11.Remove_Handler_Entries.
982
983 -- Has_Dynamic_Length_Check (Flag10-Sem)
984 -- This flag is present on all nodes. It is set to indicate that one
985 -- of the routines in unit Checks has generated a length check action
986 -- which has been inserted at the flagged node. This is used to avoid
987 -- the generation of duplicate checks.
988
989 -- Has_Dynamic_Range_Check (Flag12-Sem)
990 -- This flag is present on all nodes. It is set to indicate that one
991 -- of the routines in unit Checks has generated a range check action
992 -- which has been inserted at the flagged node. This is used to avoid
993 -- the generation of duplicate checks.
994
995 -- Has_No_Elaboration_Code (Flag17-Sem)
996 -- A flag that appears in the N_Compilation_Unit node to indicate
997 -- whether or not elaboration code is present for this unit. It is
998 -- initially set true for subprogram specs and bodies and for all
999 -- generic units and false for non-generic package specs and bodies.
1000 -- Gigi may set the flag in the non-generic package case if it
1001 -- determines that no elaboration code is generated. Note that this
1002 -- flag is not related to the Is_Preelaborated status, there can be
1003 -- preelaborated packages that generate elaboration code, and non-
1004 -- preelaborated packages which do not generate elaboration code.
1005
1006 -- Has_Priority_Pragma (Flag6-Sem)
1007 -- A flag present in N_Subprogram_Body, N_Task_Definition and
1008 -- N_Protected_Definition nodes to flag the presence of either
1009 -- a Priority or Interrupt_Priority pragma in the declaration
1010 -- sequence (public or private in the task and protected cases)
1011
1012 -- Has_Private_View (Flag11-Sem)
1013 -- A flag present in generic nodes that have an entity, to indicate
1014 -- that the node has a private type. Used to exchange private
1015 -- and full declarations if the visibility at instantiation is
1016 -- different from the visibility at generic definition.
1017
1018 -- Has_Storage_Size_Pragma (Flag5-Sem)
1019 -- A flag present in an N_Task_Definition node to flag the presence
1020 -- of a Storage_Size pragma
1021
1022 -- Has_Task_Info_Pragma (Flag7-Sem)
1023 -- A flag present in an N_Task_Definition node to flag the presence
1024 -- of a Task_Info pragma. Used to detect duplicate pragmas.
1025
1026 -- Has_Task_Name_Pragma (Flag8-Sem)
1027 -- A flag present in N_Task_Definition nodes to flag the presence
1028 -- of a Task_Name pragma in the declaration sequence for the task.
1029
1030 -- Has_Wide_Character (Flag11-Sem)
1031 -- Present in string literals, set if any wide character (i.e. a
1032 -- character code outside the Character range) appears in the string.
1033
1034 -- Hidden_By_Use_Clause (Elist4-Sem)
1035 -- An entity list present in use clauses that appear within
1036 -- instantiations. For the resolution of local entities, entities
1037 -- introduced by these use clauses have priority over global ones,
1038 -- and outer entities must be explicitly hidden/restored on exit.
1039
1040 -- Implicit_With (Flag16-Sem)
1041 -- This flag is set in the N_With_Clause node that is implicitly
1042 -- generated for runtime units that are loaded by the expander, and
1043 -- also for package System, if it is loaded implicitly by a use of
1044 -- the 'Address or 'Tag attribute
1045
1046 -- Includes_Infinities (Flag11-Sem)
1047 -- This flag is present in N_Range nodes. It is set for the range
1048 -- of unconstrained float types defined in Standard, which include
1049 -- not only the given range of values, but also legtitimately can
1050 -- include infinite values. This flag is false for any float type
1051 -- for which an explicit range is given by the programmer, even if
1052 -- that range is identical to the range for float.
1053
1054 -- Instance_Spec (Node5-Sem)
1055 -- This field is present in generic instantiation nodes, and also in
1056 -- formal package declaration nodes (formal package declarations are
1057 -- treated in a manner very similar to package instantiations). It
1058 -- points to the node for the spec of the instance, inserted as part
1059 -- of the semantic processing for instantiations in Sem_Ch12.
1060
1061 -- Is_Asynchronous_Call_Block (Flag7-Sem)
1062 -- A flag set in a Block_Statement node to indicate that it is the
1063 -- expansion of an asynchronous entry call. Such a block needs a
1064 -- cleanup handler to assure that the call is cancelled.
1065
1066 -- Is_Component_Left_Opnd (Flag13-Sem)
1067 -- Is_Component_Right_Opnd (Flag14-Sem)
1068 -- Present in concatenation nodes, to indicate that the corresponding
1069 -- operand is of the component type of the result. Used in resolving
1070 -- concatenation nodes in instances.
1071
1072 -- Is_Controlling_Actual (Flag16-Sem)
1073 -- This flag is set on in an expression that is a controlling argument
1074 -- in a dispatching call. It is off in all other cases. See Sem_Disp
1075 -- for details of its use.
1076
1077 -- Is_In_Discriminant_Check (Flag11-Sem)
1078 -- This flag is present in a selected component, and is used to
1079 -- indicate that the reference occurs within a discriminant check.
1080 -- The significance is that optimizations based on assuming that
1081 -- the discriminant check has a correct value cannot be performed
1082 -- in this case (or the disriminant check may be optimized away!)
1083
1084 -- Is_Machine_Number (Flag11-Sem)
1085 -- This flag is set in an N_Real_Literal node to indicate that the
1086 -- value is a machine number. This avoids some unnecessary cases
1087 -- of converting real literals to machine numbers.
1088
1089 -- Is_Null_Loop (Flag16-Sem)
1090 -- This flag is set in an N_Loop_Statement node if the corresponding
1091 -- loop can be determined to be null at compile time. This is used to
1092 -- suppress any warnings that would otherwise be issued inside the
1093 -- loop since they are probably not useful.
1094
1095 -- Is_Power_Of_2_For_Shift (Flag13-Sem)
1096 -- A flag present only in N_Op_Expon nodes. It is set when the
1097 -- exponentiation is of the forma 2 ** N, where the type of N is
1098 -- an unsigned integral subtype whose size does not exceed the size
1099 -- of Standard_Integer (i.e. a type that can be safely converted to
1100 -- Natural), and the exponentiation appears as the right operand of
1101 -- an integer multiplication or an integer division where the dividend
1102 -- is unsigned. It is also required that overflow checking is off for
1103 -- both the exponentiation and the multiply/divide node. If this set
1104 -- of conditions holds, and the flag is set, then the division or
1105 -- multiplication can be (and is) converted to a shift.
1106
1107 -- Is_Overloaded (Flag5-Sem)
1108 -- A flag present in all expression nodes. Used temporarily during
1109 -- overloading determination. The setting of this flag is not
1110 -- relevant once overloading analysis is complete.
1111
1112 -- Is_Protected_Subprogram_Body (Flag7-Sem)
1113 -- A flag set in a Subprogram_Body block to indicate that it is the
1114 -- implemenation of a protected subprogram. Such a body needs a
1115 -- cleanup handler to make sure that the associated protected object
1116 -- is unlocked when the subprogram completes.
1117
1118 -- Is_Static_Expression (Flag6-Sem)
1119 -- Indicates that an expression is a static expression (RM 4.9). See
1120 -- spec of package Sem_Eval for full details on the use of this flag.
1121
1122 -- Is_Subprogram_Descriptor (Flag16-Sem)
1123 -- Present in N_Object_Declaration, and set only for the object
1124 -- declaration generated for a subprogram descriptor in fast exception
1125 -- mode. See Exp_Ch11 for details of use.
1126
1127 -- Is_Task_Allocation_Block (Flag6-Sem)
1128 -- A flag set in a Block_Statement node to indicate that it is the
1129 -- expansion of a task allocator, or the allocator of an object
1130 -- containing tasks. Such a block requires a cleanup handler to call
1131 -- Expunge_Unactivted_Tasks to complete any tasks that have been
1132 -- allocated but not activated when the allocator completes abnormally.
1133
1134 -- Is_Task_Master (Flag5-Sem)
1135 -- A flag set in a Subprogram_Body, Block_Statement or Task_Body node
1136 -- to indicate that the construct is a task master (i.e. has declared
1137 -- tasks or declares an access to a task type).
1138
1139 -- Itype (Node1-Sem)
1140 -- Used in N_Itype_Reference node to reference an itype for which it
1141 -- is important to ensure that it is defined. See description of this
1142 -- node for further details.
1143
1144 -- Kill_Range_Check (Flag11-Sem)
1145 -- Used in an N_Unchecked_Type_Conversion node to indicate that the
1146 -- result should not be subjected to range checks. This is used for
1147 -- the implementation of Normalize_Scalars.
1148
1149 -- Label_Construct (Node2-Sem)
1150 -- Used in an N_Implicit_Label_Declaration node. Refers to an N_Label,
1151 -- N_Block_Statement or N_Loop_Statement node to which the label
1152 -- declaration applies. This is not currently used in the compiler
1153 -- itself, but it is useful in the implementation of ASIS queries.
1154
1155 -- Library_Unit (Node4-Sem)
1156 -- In a stub node, the Library_Unit field points to the compilation unit
1157 -- node of the corresponding subunit.
1158 --
1159 -- In a with clause node, the Library_Unit field points to the spec
1160 -- of the with'ed unit.
1161 --
1162 -- In a compilation unit node, the use of this field depends on
1163 -- the unit type:
1164 --
1165 -- For a subprogram body, the Library_Unit field points to the
1166 -- compilation unit node of the corresponding spec, unless
1167 -- Acts_As_Spec is set, in which case it points to itself.
1168 --
1169 -- For a package body, the Library_Unit field points to the
1170 -- compilation unit node of the corresponding spec.
1171 --
1172 -- For a subprogram spec to which pragma Inline applies, the
1173 -- Library_Unit field points to the compilation unit node of
1174 -- the corresponding body, if inlining is active.
1175 --
1176 -- For a generic declaration, the Library_Unit field points
1177 -- to the compilation unit node of the corresponding generic body.
1178 --
1179 -- For a subunit, the Library_Unit field points to the compilation
1180 -- unit node of the parent body.
1181 --
1182 -- Note that this field is not used to hold the parent pointer for a
1183 -- child unit (which might in any case need to use it for some other
1184 -- purpose as described above). Instead for a child unit, implicit
1185 -- with's are generated for all parents.
1186
1187 -- Loop_Actions (List2-Sem)
1188 -- A list present in Component_Association nodes in array aggregates.
1189 -- Used to collect actions that must be executed within the loop because
1190 -- they may need to be evaluated anew each time through.
1191
1192 -- Limited_View_Installed (Flag18-Sem)
1193 -- Present in With_Clauses and in package specifications. If set on a
1194 -- with_clause, it indicates that this clause has created the current
1195 -- limited view of the designated package. On a package specification,
1196 -- it indicates that the limited view has already been created because
1197 -- the package is mentioned in a limited_with_clause in the closure of
1198 -- the unit being compiled.
1199
1200 -- Must_Be_Byte_Aligned (Flag14-Sem)
1201 -- This flag is present in N_Attribute_Reference nodes. It can be set
1202 -- only for the Address and Unrestricted_Access attributes. If set it
1203 -- means that the object for which the address/access is given must be
1204 -- on a byte (more accurately a storage unit) boundary. If necessary,
1205 -- a copy of the object is to be made before taking the address (this
1206 -- copy is in the current scope on the stack frame). This is used for
1207 -- certain cases of code generated by the expander that passes
1208 -- parameters by address.
1209 --
1210 -- The reason the copy is not made by the front end is that the back
1211 -- end has more information about type layout and may be able to (but
1212 -- is not guaranteed to) prevent making unnecessary copies.
1213
1214 -- Must_Not_Freeze (Flag8-Sem)
1215 -- A flag present in all expression nodes. Normally expressions cause
1216 -- freezing as described in the RM. If this flag is set, then this
1217 -- is inhibited. This is used by the analyzer and expander to label
1218 -- nodes that are created by semantic analysis or expansion and which
1219 -- must not cause freezing even though they normally would. This flag
1220 -- is also present in an N_Subtype_Indication node, since we also use
1221 -- these in calls to Freeze_Expression.
1222
1223 -- Next_Entity (Node2-Sem)
1224 -- Present in defining identifiers, defining character literals and
1225 -- defining operator symbols (i.e. in all entities). The entities of
1226 -- a scope are chained, and this field is used as the forward pointer
1227 -- for this list. See Einfo for further details.
1228
1229 -- Next_Named_Actual (Node4-Sem)
1230 -- Present in parameter association node. Set during semantic
1231 -- analysis to point to the next named parameter, where parameters
1232 -- are ordered by declaration order (as opposed to the actual order
1233 -- in the call, which may be different due to named associations).
1234 -- Not that this field points to the explicit actual parameter itself,
1235 -- not to the N_Parameter_Association node (its parent).
1236
1237 -- Next_Rep_Item (Node4-Sem)
1238 -- Present in pragma nodes and attribute definition nodes. Used to
1239 -- link representation items that apply to an entity. See description
1240 -- of First_Rep_Item field in Einfo for full details.
1241
1242 -- Next_Use_Clause (Node3-Sem)
1243 -- While use clauses are active during semantic processing, they
1244 -- are chained from the scope stack entry, using Next_Use_Clause
1245 -- as a link pointer, with Empty marking the end of the list. The
1246 -- head pointer is in the scope stack entry (First_Use_Clause). At
1247 -- the end of semantic processing (i.e. when Gigi sees the tree,
1248 -- the contents of this field is undefined and should not be read).
1249
1250 -- No_Ctrl_Actions (Flag7-Sem)
1251 -- Present in N_Assignment_Statement to indicate that no finalize nor
1252 -- nor adjust should take place on this assignment eventhough the rhs
1253 -- is controlled. This is used in init procs and aggregate expansions
1254 -- where the generated assignments are more initialisations than real
1255 -- assignments.
1256
1257 -- No_Entities_Ref_In_Spec (Flag8-Sem)
1258 -- Present in N_With_Clause nodes. Set if the with clause is on the
1259 -- package or subprogram spec where the main unit is the corresponding
1260 -- body, and no entities of the with'ed unit are referenced by the spec
1261 -- (an entity may still be referenced in the body, so this flag is used
1262 -- to generate the proper message (see Sem_Util.Check_Unused_Withs for
1263 -- full details)
1264
1265 -- No_Initialization (Flag13-Sem)
1266 -- Present in N_Object_Declaration & N_Allocator to indicate
1267 -- that the object must not be initialized (by Initialize or a
1268 -- call to an init proc). This is needed for controlled aggregates.
1269 -- When the Object declaration has an expression, this flag means
1270 -- that this expression should not be taken into account (needed
1271 -- for in place initialization with aggregates)
1272
1273 -- No_Truncation (Flag17-Sem)
1274 -- Present in N_Unchecked_Type_Conversion node. This flag has an effect
1275 -- only if the RM_Size of the source is greater than the RM_Size of the
1276 -- target for scalar operands. Normally in such a case we truncate some
1277 -- higher order bits of the source, and then sign/zero extend the result
1278 -- to form the output value. But if this flag is set, then we do not do
1279 -- any truncation, so for example, if an 8 bit input is converted to a
1280 -- 5 bit result which is in fact stored in 8 bits, then the high order
1281 -- three bits of the target result will be copied from the source. This
1282 -- is used for properly setting out of range values for use by pragmas
1283 -- Initialize_Scalars and Normalize_Scalars.
1284
1285 -- OK_For_Stream (Flag4-Sem)
1286 -- Present in N_Attribute_Definition clauses for stream attributes. If
1287 -- set, indicates that the attribute is permitted even though the type
1288 -- involved is a limited type. In the case of a protected type, the
1289 -- result is to stream all components (including discriminants) in
1290 -- lexical order. For other limited types, the effect is simply to
1291 -- use the corresponding stream routine for the full type. This flag
1292 -- is used for internally generated code, where the streaming of these
1293 -- types is required, even though not normally allowed by the language.
1294
1295 -- Original_Discriminant (Node2-Sem)
1296 -- Present in identifiers. Used in references to discriminants that
1297 -- appear in generic units. Because the names of the discriminants
1298 -- may be different in an instance, we use this field to recover the
1299 -- position of the discriminant in the original type, and replace it
1300 -- with the discriminant at the same position in the instantiated type.
1301
1302 -- Original_Entity (Node2-Sem)
1303 -- Present in numeric literals. Used to denote the named number that
1304 -- has been constant-folded into the given literal. If literal is from
1305 -- source, or the result of some other constant-folding operation, then
1306 -- Original_Entity is empty. This field is needed to handle properly
1307 -- named numbers in generic units, where the Associated_Node field
1308 -- interferes with the Entity field, making it impossible to preserve
1309 -- the original entity at the point of instantiation (ASIS problem).
1310
1311 -- Others_Discrete_Choices (List1-Sem)
1312 -- When a case statement or variant is analyzed, the semantic checks
1313 -- determine the actual list of choices that correspond to an others
1314 -- choice. This list is materialized for later use by the expander
1315 -- and the Others_Discrete_Choices field of an N_Others_Choice node
1316 -- points to this materialized list of choices, which is in standard
1317 -- format for a list of discrete choices, except that of course it
1318 -- cannot contain an N_Others_Choice entry.
1319
1320 -- Parameter_List_Truncated (Flag17-Sem)
1321 -- Present in N_Function_Call and N_Procedure_Call_Statement nodes.
1322 -- Set (for OpenVMS ports of GNAT only) if the parameter list is
1323 -- truncated as a result of a First_Optional_Parameter specification
1324 -- in an Import_Function, Import_Procedure, or Import_Valued_Procedure
1325 -- pragma. The truncation is done by the expander by removing trailing
1326 -- parameters from the argument list, in accordance with the set of
1327 -- rules allowing such parameter removal. In particular, parameters
1328 -- can be removed working from the end of the parameter list backwards
1329 -- up to and including the entry designated by First_Optional_Parameter
1330 -- in the Import pragma. Parameters can be removed if they are implicit
1331 -- and the default value is a known-at-compile-time value, including
1332 -- the use of the Null_Parameter attribute, or if explicit parameter
1333 -- values are present that match the corresponding defaults.
1334
1335 -- Parent_Spec (Node4-Sem)
1336 -- For a library unit that is a child unit spec (package or subprogram
1337 -- declaration, generic declaration or instantiation, or library level
1338 -- rename, this field points to the compilation unit node for the parent
1339 -- package specification. This field is Empty for library bodies (the
1340 -- parent spec in this case can be found from the corresponding spec).
1341
1342 -- Present_Expr (Uint3-Sem)
1343 -- Present in an N_Variant node. This has a meaningful value only after
1344 -- Gigi has back annotated the tree with representation information.
1345 -- At this point, it contains a reference to a gcc expression that
1346 -- depends on the values of one or more discriminants. Give a set of
1347 -- discriminant values, this expression evaluates to False (zero) if
1348 -- variant is not present, and True (non-zero) if it is present. See
1349 -- unit Repinfo for further details on gigi back annotation. This
1350 -- field is used during ASIS processing (data decomposition annex)
1351 -- to determine if a field is present or not.
1352
1353 -- Print_In_Hex (Flag13-Sem)
1354 -- Set on an N_Integer_Literal node to indicate that the value should
1355 -- be printed in hexadecimal in the sprint listing. Has no effect on
1356 -- legality or semantics of program, only on the displayed output.
1357 -- This is used to clarify output from the packed array cases.
1358
1359 -- Procedure_To_Call (Node4-Sem)
1360 -- Present in N_Allocator. N_Free_Statement, and N_Return_Statement
1361 -- nodes. References the entity for the declaration of the procedure
1362 -- to be called to accomplish the required operation (i.e. for the
1363 -- Allocate procedure in the case of N_Allocator and N_Return_Statement
1364 -- (for allocating the return value), and for the Deallocate procedure
1365 -- in the case of N_Free_Statement.
1366
1367 -- Raises_Constraint_Error (Flag7-Sem)
1368 -- Set on an expression whose evaluation will definitely fail a
1369 -- constraint error check. In the case of static expressions, this
1370 -- flag must be set accurately (and if it is set, the expression is
1371 -- typically illegal unless it appears as a non-elaborated branch of
1372 -- a short-circuit form). For a non-static expression, this flag may
1373 -- be set whenever an expression (e.g. an aggregate) is known to raise
1374 -- constraint error. If set, the expression definitely will raise CE
1375 -- if elaborated at runtime. If not set, the expression may or may
1376 -- not raise CE. In other words, on static expressions, the flag is
1377 -- set accurately, on non-static expressions it is set conservatively.
1378
1379 -- Redundant_Use (Flag13-Sem)
1380 -- A flag present in nodes that can appear as an operand in a use
1381 -- clause or use type clause (identifiers, expanded names, attribute
1382 -- references). Set to indicate that a use is redundant (and therefore
1383 -- need not be undone on scope exit).
1384
1385 -- Return_Type (Node2-Sem)
1386 -- Present in N_Return_Statement node. For a procedure, this is set
1387 -- to Standard_Void_Type. For a function it references the entity
1388 -- for the returned type.
1389
1390 -- Rounded_Result (Flag18-Sem)
1391 -- Present in N_Type_Conversion, N_Op_Divide and N_Op_Multiply nodes.
1392 -- Used in the fixed-point cases to indicate that the result must be
1393 -- rounded as a result of the use of the 'Round attribute. Also used
1394 -- for integer N_Op_Divide nodes to indicate that the result should
1395 -- be rounded to the nearest integer (breaking ties away from zero),
1396 -- rather than truncated towards zero as usual. These rounded integer
1397 -- operations are the result of expansion of rounded fixed-point
1398 -- divide, conersion and multiplication operations.
1399
1400 -- Scope (Node3-Sem)
1401 -- Present in defining identifiers, defining character literals and
1402 -- defining operator symbols (i.e. in all entities). The entities of
1403 -- a scope all use this field to reference the corresponding scope
1404 -- entity. See Einfo for further details.
1405
1406 -- Shift_Count_OK (Flag4-Sem)
1407 -- A flag present in shift nodes to indicate that the shift count is
1408 -- known to be in range, i.e. is in the range from zero to word length
1409 -- minus one. If this flag is not set, then the shift count may be
1410 -- outside this range, i.e. larger than the word length, and the code
1411 -- must ensure that such shift counts give the appropriate result.
1412
1413 -- Source_Type (Node1-Sem)
1414 -- Used in an N_Validate_Unchecked_Conversion node to point to the
1415 -- source type entity for the unchecked conversion instantiation
1416 -- which gigi must do size validation for.
1417
1418 -- Static_Processing_OK (Flag4-Sem)
1419 -- Present in N_Aggregate nodes. When the Compile_Time_Known_Aggregate
1420 -- flag is set, the full value of the aggregate can be determined at
1421 -- compile time and the aggregate can be passed as is to the back-end.
1422 -- In this event it is irrelevant whether this flag is set or not.
1423 -- However, if the Compile_Time_Known_Aggregate flag is not set but
1424 -- Static_Processing_OK is set, the aggregate can (but need not) be
1425 -- converted into a compile time known aggregate by the expander.
1426 -- See Sem_Aggr for the specific conditions under which an aggregate
1427 -- has its Static_Processing_OK flag set.
1428
1429 -- Storage_Pool (Node1-Sem)
1430 -- Present in N_Allocator, N_Free_Statement and N_Return_Statement
1431 -- nodes. References the entity for the storage pool to be used for
1432 -- the allocate or free call or for the allocation of the returned
1433 -- value from a function. Empty indicates that the global default
1434 -- default pool is to be used. Note that in the case of a return
1435 -- statement, this field is set only if the function returns a
1436 -- value of a type whose size is not known at compile time on the
1437 -- secondary stack. It is never set on targets for which the target
1438 -- parameter Targparm.Functions_Return_By_DSP_On_Target is True.
1439
1440 -- Target_Type (Node2-Sem)
1441 -- Used in an N_Validate_Unchecked_Conversion node to point to the
1442 -- target type entity for the unchecked conversion instantiation
1443 -- which gigi must do size validation for.
1444
1445 -- Task_Body_Procedure (Node2-Sem)
1446 -- Present in task type declaration nodes. Points to the entity for
1447 -- the task body procedure (as further described in Exp_Ch9, task
1448 -- bodies are expanded into procedures). A convenient function to
1449 -- retrieve this field is Sem_Util.Get_Task_Body_Procedure.
1450
1451 -- Then_Actions (List3-Sem)
1452 -- This field is present in conditional expression nodes. During code
1453 -- expansion we use the Insert_Actions procedure (in Exp_Util) to insert
1454 -- actions at an appropriate place in the tree to get elaborated at the
1455 -- right time. For conditional expressions, we have to be sure that the
1456 -- actions for the Then branch are only elaborated if the condition is
1457 -- True. The Then_Actions field is used as a temporary parking place
1458 -- for these actions. The final tree is always rewritten to eliminate
1459 -- the need for this field, so in the tree passed to Gigi, this field
1460 -- is always set to No_List.
1461
1462 -- Treat_Fixed_As_Integer (Flag14-Sem)
1463 -- This flag appears in operator nodes for divide, multiply, mod and
1464 -- rem on fixed-point operands. It indicates that the operands are
1465 -- to be treated as integer values, ignoring small values. This flag
1466 -- is only set as a result of expansion of fixed-point operations.
1467 -- Typically a fixed-point multplication in the source generates
1468 -- subsidiary multiplication and division operations that work with
1469 -- the underlying integer values and have this flag set. Note that
1470 -- this flag is not needed on other arithmetic operations (add, neg,
1471 -- subtract etc) since in these cases it is always the case that fixed
1472 -- is treated as integer. The Etype field MUST be set if this flag
1473 -- is set. The analyzer knows to leave such nodes alone, and whoever
1474 -- makes them must set the correct Etype value.
1475
1476 -- TSS_Elist (Elist3-Sem)
1477 -- Present in N_Freeze_Entity nodes. Holds an element list containing
1478 -- entries for each TSS (type support subprogram) associated with the
1479 -- frozen type. The elements of the list are the entities for the
1480 -- subprograms (see package Exp_TSS for further details). Set to
1481 -- No_Elist if there are no type support subprograms for the type
1482 -- or if the freeze node is not for a type.
1483
1484 -- Unreferenced_In_Spec (Flag7-Sem)
1485 -- Present in N_With_Clause nodes. Set if the with clause is on the
1486 -- package or subprogram spec where the main unit is the corresponding
1487 -- body, and is not referenced by the spec (it may still be referenced
1488 -- by the body, so this flag is used to generate the proper message
1489 -- (see Sem_Util.Check_Unused_Withs for details)
1490
1491 -- Was_Originally_Stub (Flag13-Sem)
1492 -- This flag is set in the node for a proper body that replaces a
1493 -- stub. During the analysis procedure, stubs in some situations
1494 -- get rewritten by the corresponding bodies, and we set this flag
1495 -- to remember that this happened. Note that it is not good enough
1496 -- to rely on the use of Original_Tree here because of the case of
1497 -- nested instantiations where the substituted node can be copied.
1498
1499 -- Zero_Cost_Handling (Flag5-Sem)
1500 -- This flag is set in all handled sequence of statement and exception
1501 -- handler nodes if eceptions are to be handled using the zero-cost
1502 -- mechanism (see Ada.Exceptions and System.Exceptions in files
1503 -- a-except.ads/adb and s-except.ads for full details). What gigi
1504 -- needs to do for such a handler is simply to put the code in the
1505 -- handler somewhere. The front end has generated all necessary labels.
1506
1507 --------------------------------------------------
1508 -- Note on Use of End_Label and End_Span Fields --
1509 --------------------------------------------------
1510
1511 -- Several constructs have end lines:
1512
1513 -- Loop Statement end loop [loop_IDENTIFIER];
1514 -- Package Specification end [[PARENT_UNIT_NAME .] IDENTIFIER]
1515 -- Task Definition end [task_IDENTIFIER]
1516 -- Protected Definition end [protected_IDENTIFIER]
1517 -- Protected Body end [protected_IDENTIFIER]
1518
1519 -- Block Statement end [block_IDENTIFIER];
1520 -- Subprogram Body end [DESIGNATOR];
1521 -- Package Body end [[PARENT_UNIT_NAME .] IDENTIFIER];
1522 -- Task Body end [task_IDENTIFIER];
1523 -- Accept Statement end [entry_IDENTIFIER]];
1524 -- Entry Body end [entry_IDENTIFIER];
1525
1526 -- If Statement end if;
1527 -- Case Statement end case;
1528
1529 -- Record Definition end record;
1530 -- Enumeration Definition );
1531
1532 -- The End_Label and End_Span fields are used to mark the locations
1533 -- of these lines, and also keep track of the label in the case where
1534 -- a label is present.
1535
1536 -- For the first group above, the End_Label field of the corresponding
1537 -- node is used to point to the label identifier. In the case where
1538 -- there is no label in the source, the parser supplies a dummy
1539 -- identifier (with Comes_From_Source set to False), and the Sloc
1540 -- of this dummy identifier marks the location of the token following
1541 -- the END token.
1542
1543 -- For the second group, the use of End_Label is similar, but the
1544 -- End_Label is found in the N_Handled_Sequence_Of_Statements node.
1545 -- This is done simply because in some cases there is no room in
1546 -- the parent node.
1547
1548 -- For the third group, there is never any label, and instead of
1549 -- using End_Label, we use the End_Span field which gives the
1550 -- location of the token following END, relative to the starting
1551 -- Sloc of the construct, i.e. add Sloc (Node) + End_Span (Node)
1552 -- to get the Sloc of the IF or CASE following the End_Label.
1553
1554 -- The record definition case is handled specially, we treat it
1555 -- as though it required an optional label which is never present,
1556 -- and so the parser always builds a dummy identifier with Comes
1557 -- From Source set False. The reason we do this, rather than using
1558 -- End_Span in this case, is that we want to generate a cross-ref
1559 -- entry for the end of a record, since it represents a scope for
1560 -- name declaration purposes.
1561
1562 -- The enumeration definition case is handled in an exactly similar
1563 -- manner, building a dummy identifier to get a cross-reference.
1564
1565 -- Note: the reason we store the difference as a Uint, instead of
1566 -- storing the Source_Ptr value directly, is that Source_Ptr values
1567 -- cannot be distinguished from other types of values, and we count
1568 -- on all general use fields being self describing. To make things
1569 -- easier for clients, note that we provide function End_Location,
1570 -- and procedure Set_End_Location to allow access to the logical
1571 -- value (which is the Source_Ptr value for the end token).
1572
1573 ---------------------
1574 -- Syntactic Nodes --
1575 ---------------------
1576
1577 ---------------------
1578 -- 2.3 Identifier --
1579 ---------------------
1580
1581 -- IDENTIFIER ::= IDENTIFIER_LETTER {[UNDERLINE] LETTER_OR_DIGIT}
1582 -- LETTER_OR_DIGIT ::= IDENTIFIER_LETTER | DIGIT
1583
1584 -- An IDENTIFIER shall not be a reserved word
1585
1586 -- In the Ada grammar identifiers are the bottom level tokens which
1587 -- have very few semantics. Actual program identifiers are direct
1588 -- names. If we were being 100% honest with the grammar, then we would
1589 -- have a node called N_Direct_Name which would point to an identifier.
1590 -- However, that's too many extra nodes, so we just use the N_Identifier
1591 -- node directly as a direct name, and it contains the expression fields
1592 -- and Entity field that correspond to its use as a direct name. In
1593 -- those few cases where identifiers appear in contexts where they are
1594 -- not direct names (pragmas, pragma argument associations, attribute
1595 -- references and attribute definition clauses), the Chars field of the
1596 -- node contains the Name_Id for the identifier name.
1597
1598 -- Note: in GNAT, a reserved word can be treated as an identifier
1599 -- in two cases. First, an incorrect use of a reserved word as an
1600 -- identifier is diagnosed and then treated as a normal identifier.
1601 -- Second, an attribute designator of the form of a reserved word
1602 -- (access, delta, digits, range) is treated as an identifier.
1603
1604 -- Note: The set of letters that is permitted in an identifier depends
1605 -- on the character set in use. See package Csets for full details.
1606
1607 -- N_Identifier
1608 -- Sloc points to identifier
1609 -- Chars (Name1) contains the Name_Id for the identifier
1610 -- Entity (Node4-Sem)
1611 -- Associated_Node (Node4-Sem)
1612 -- Original_Discriminant (Node2-Sem)
1613 -- Redundant_Use (Flag13-Sem)
1614 -- Has_Private_View (Flag11-Sem) (set in generic units)
1615 -- plus fields for expression
1616
1617 --------------------------
1618 -- 2.4 Numeric Literal --
1619 --------------------------
1620
1621 -- NUMERIC_LITERAL ::= DECIMAL_LITERAL | BASED_LITERAL
1622
1623 ----------------------------
1624 -- 2.4.1 Decimal Literal --
1625 ----------------------------
1626
1627 -- DECIMAL_LITERAL ::= NUMERAL [.NUMERAL] [EXPONENT]
1628
1629 -- NUMERAL ::= DIGIT {[UNDERLINE] DIGIT}
1630
1631 -- EXPONENT ::= E [+] NUMERAL | E - NUMERAL
1632
1633 -- Decimal literals appear in the tree as either integer literal nodes
1634 -- or real literal nodes, depending on whether a period is present.
1635
1636 -- Note: literal nodes appear as a result of direct use of literals
1637 -- in the source program, and also as the result of evaluating
1638 -- expressions at compile time. In the latter case, it is possible
1639 -- to construct real literals that have no syntactic representation
1640 -- using the standard literal format. Such literals are listed by
1641 -- Sprint using the notation [numerator / denominator].
1642
1643 -- N_Integer_Literal
1644 -- Sloc points to literal
1645 -- Original_Entity (Node2-Sem) If not Empty, holds Named_Number that
1646 -- has been constant-folded into its literal value.
1647 -- Intval (Uint3) contains integer value of literal
1648 -- plus fields for expression
1649 -- Print_In_Hex (Flag13-Sem)
1650
1651 -- N_Real_Literal
1652 -- Sloc points to literal
1653 -- Original_Entity (Node2-Sem) If not Empty, holds Named_Number that
1654 -- has been constant-folded into its literal value.
1655 -- Realval (Ureal3) contains real value of literal
1656 -- Corresponding_Integer_Value (Uint4-Sem)
1657 -- Is_Machine_Number (Flag11-Sem)
1658 -- plus fields for expression
1659
1660 --------------------------
1661 -- 2.4.2 Based Literal --
1662 --------------------------
1663
1664 -- BASED_LITERAL ::=
1665 -- BASE # BASED_NUMERAL [.BASED_NUMERAL] # [EXPONENT]
1666
1667 -- BASE ::= NUMERAL
1668
1669 -- BASED_NUMERAL ::=
1670 -- EXTENDED_DIGIT {[UNDERLINE] EXTENDED_DIGIT}
1671
1672 -- EXTENDED_DIGIT ::= DIGIT | A | B | C | D | E | F
1673
1674 -- Based literals appear in the tree as either integer literal nodes
1675 -- or real literal nodes, depending on whether a period is present.
1676
1677 ----------------------------
1678 -- 2.5 Character Literal --
1679 ----------------------------
1680
1681 -- CHARACTER_LITERAL ::= ' GRAPHIC_CHARACTER '
1682
1683 -- N_Character_Literal
1684 -- Sloc points to literal
1685 -- Chars (Name1) contains the Name_Id for the identifier
1686 -- Char_Literal_Value (Char_Code2) contains the literal value
1687 -- Entity (Node4-Sem)
1688 -- Associated_Node (Node4-Sem)
1689 -- Has_Private_View (Flag11-Sem) set in generic units.
1690 -- plus fields for expression
1691
1692 -- Note: the Entity field will be missing (and set to Empty) for
1693 -- character literals whose type is Standard.Wide_Character or
1694 -- Standard.Character or a type derived from one of these two.
1695 -- In this case the character literal stands for its own coding.
1696 -- The reason we take this irregular short cut is to avoid the
1697 -- need to build lots of junk defining character literal nodes.
1698
1699 -------------------------
1700 -- 2.6 String Literal --
1701 -------------------------
1702
1703 -- STRING LITERAL ::= "{STRING_ELEMENT}"
1704
1705 -- A STRING_ELEMENT is either a pair of quotation marks ("), or a
1706 -- single GRAPHIC_CHARACTER other than a quotation mark.
1707
1708 -- N_String_Literal
1709 -- Sloc points to literal
1710 -- Strval (Str3) contains Id of string value
1711 -- Has_Wide_Character (Flag11-Sem)
1712 -- plus fields for expression
1713
1714 ------------------
1715 -- 2.7 Comment --
1716 ------------------
1717
1718 -- A COMMENT starts with two adjacent hyphens and extends up to the
1719 -- end of the line. A COMMENT may appear on any line of a program.
1720
1721 -- Comments are skipped by the scanner and do not appear in the tree.
1722 -- It is possible to reconstruct the position of comments with respect
1723 -- to the elements of the tree by using the source position (Sloc)
1724 -- pointers that appear in every tree node.
1725
1726 -----------------
1727 -- 2.8 Pragma --
1728 -----------------
1729
1730 -- PRAGMA ::= pragma IDENTIFIER
1731 -- [(PRAGMA_ARGUMENT_ASSOCIATION {, PRAGMA_ARGUMENT_ASSOCIATION})];
1732
1733 -- Note that a pragma may appear in the tree anywhere a declaration
1734 -- or a statement may appear, as well as in some other situations
1735 -- which are explicitly documented.
1736
1737 -- N_Pragma
1738 -- Sloc points to PRAGMA
1739 -- Chars (Name1) identifier name from pragma identifier
1740 -- Pragma_Argument_Associations (List2) (set to No_List if none)
1741 -- Debug_Statement (Node3) (set to Empty if not Debug, Assert)
1742 -- Next_Rep_Item (Node4-Sem)
1743
1744 --------------------------------------
1745 -- 2.8 Pragma Argument Association --
1746 --------------------------------------
1747
1748 -- PRAGMA_ARGUMENT_ASSOCIATION ::=
1749 -- [pragma_argument_IDENTIFIER =>] NAME
1750 -- | [pragma_argument_IDENTIFIER =>] EXPRESSION
1751
1752 -- N_Pragma_Argument_Association
1753 -- Sloc points to first token in association
1754 -- Chars (Name1) (set to No_Name if no pragma argument identifier)
1755 -- Expression (Node3)
1756
1757 ------------------------
1758 -- 2.9 Reserved Word --
1759 ------------------------
1760
1761 -- Reserved words are parsed by the scanner, and returned as the
1762 -- corresponding token types (e.g. PACKAGE is returned as Tok_Package)
1763
1764 ----------------------------
1765 -- 3.1 Basic Declaration --
1766 ----------------------------
1767
1768 -- BASIC_DECLARATION ::=
1769 -- TYPE_DECLARATION | SUBTYPE_DECLARATION
1770 -- | OBJECT_DECLARATION | NUMBER_DECLARATION
1771 -- | SUBPROGRAM_DECLARATION | ABSTRACT_SUBPROGRAM_DECLARATION
1772 -- | PACKAGE_DECLARATION | RENAMING_DECLARATION
1773 -- | EXCEPTION_DECLARATION | GENERIC_DECLARATION
1774 -- | GENERIC_INSTANTIATION
1775
1776 -- Basic declaration also includes IMPLICIT_LABEL_DECLARATION
1777 -- see further description in section on semantic nodes.
1778
1779 -- Also, in the tree that is constructed, a pragma may appear
1780 -- anywhere that a declaration may appear.
1781
1782 ------------------------------
1783 -- 3.1 Defining Identifier --
1784 ------------------------------
1785
1786 -- DEFINING_IDENTIFIER ::= IDENTIFIER
1787
1788 -- A defining identifier is an entity, which has additional fields
1789 -- depending on the setting of the Ekind field. These additional
1790 -- fields are defined (and access subprograms declared) in package
1791 -- Einfo.
1792
1793 -- Note: N_Defining_Identifier is an extended node whose fields are
1794 -- deliberate layed out to match the layout of fields in an ordinary
1795 -- N_Identifier node allowing for easy alteration of an identifier
1796 -- node into a defining identifier node. For details, see procedure
1797 -- Sinfo.CN.Change_Identifier_To_Defining_Identifier.
1798
1799 -- N_Defining_Identifier
1800 -- Sloc points to identifier
1801 -- Chars (Name1) contains the Name_Id for the identifier
1802 -- Next_Entity (Node2-Sem)
1803 -- Scope (Node3-Sem)
1804 -- Etype (Node5-Sem)
1805
1806 -----------------------------
1807 -- 3.2.1 Type Declaration --
1808 -----------------------------
1809
1810 -- TYPE_DECLARATION ::=
1811 -- FULL_TYPE_DECLARATION
1812 -- | INCOMPLETE_TYPE_DECLARATION
1813 -- | PRIVATE_TYPE_DECLARATION
1814 -- | PRIVATE_EXTENSION_DECLARATION
1815
1816 ----------------------------------
1817 -- 3.2.1 Full Type Declaration --
1818 ----------------------------------
1819
1820 -- FULL_TYPE_DECLARATION ::=
1821 -- type DEFINING_IDENTIFIER [KNOWN_DISCRIMINANT_PART]
1822 -- is TYPE_DEFINITION;
1823 -- | TASK_TYPE_DECLARATION
1824 -- | PROTECTED_TYPE_DECLARATION
1825
1826 -- The full type declaration node is used only for the first case. The
1827 -- second case (concurrent type declaration), is represented directly
1828 -- by a task type declaration or a protected type declaration.
1829
1830 -- N_Full_Type_Declaration
1831 -- Sloc points to TYPE
1832 -- Defining_Identifier (Node1)
1833 -- Discriminant_Specifications (List4) (set to No_List if none)
1834 -- Type_Definition (Node3)
1835 -- Discr_Check_Funcs_Built (Flag11-Sem)
1836
1837 ----------------------------
1838 -- 3.2.1 Type Definition --
1839 ----------------------------
1840
1841 -- TYPE_DEFINITION ::=
1842 -- ENUMERATION_TYPE_DEFINITION | INTEGER_TYPE_DEFINITION
1843 -- | REAL_TYPE_DEFINITION | ARRAY_TYPE_DEFINITION
1844 -- | RECORD_TYPE_DEFINITION | ACCESS_TYPE_DEFINITION
1845 -- | DERIVED_TYPE_DEFINITION
1846
1847 --------------------------------
1848 -- 3.2.2 Subtype Declaration --
1849 --------------------------------
1850
1851 -- SUBTYPE_DECLARATION ::=
1852 -- subtype DEFINING_IDENTIFIER is SUBTYPE_INDICATION;
1853
1854 -- The subtype indication field is set to Empty for subtypes
1855 -- declared in package Standard (Positive, Natural).
1856
1857 -- N_Subtype_Declaration
1858 -- Sloc points to SUBTYPE
1859 -- Defining_Identifier (Node1)
1860 -- Subtype_Indication (Node5)
1861 -- Generic_Parent_Type (Node4-Sem) (set for an actual derived type).
1862 -- Exception_Junk (Flag11-Sem)
1863
1864 -------------------------------
1865 -- 3.2.2 Subtype Indication --
1866 -------------------------------
1867
1868 -- SUBTYPE_INDICATION ::= SUBTYPE_MARK [CONSTRAINT]
1869
1870 -- Note: if no constraint is present, the subtype indication appears
1871 -- directly in the tree as a subtype mark. The N_Subtype_Indication
1872 -- node is used only if a constraint is present.
1873
1874 -- Note: the reason that this node has expression fields is that a
1875 -- subtype indication can appear as an operand of a membership test.
1876
1877 -- N_Subtype_Indication
1878 -- Sloc points to first token of subtype mark
1879 -- Subtype_Mark (Node4)
1880 -- Constraint (Node3)
1881 -- Etype (Node5-Sem)
1882 -- Must_Not_Freeze (Flag8-Sem)
1883
1884 -- Note: Etype is a copy of the Etype field of the Subtype_Mark. The
1885 -- reason for this redundancy is so that in a list of array index types,
1886 -- the Etype can be uniformly accessed to determine the subscript type.
1887 -- This means that no Itype is constructed for the actual subtype that
1888 -- is created by the subtype indication. If such an Itype is required,
1889 -- it is constructed in the context in which the indication appears.
1890
1891 -------------------------
1892 -- 3.2.2 Subtype Mark --
1893 -------------------------
1894
1895 -- SUBTYPE_MARK ::= subtype_NAME
1896
1897 -----------------------
1898 -- 3.2.2 Constraint --
1899 -----------------------
1900
1901 -- CONSTRAINT ::= SCALAR_CONSTRAINT | COMPOSITE_CONSTRAINT
1902
1903 ------------------------------
1904 -- 3.2.2 Scalar Constraint --
1905 ------------------------------
1906
1907 -- SCALAR_CONSTRAINT ::=
1908 -- RANGE_CONSTRAINT | DIGITS_CONSTRAINT | DELTA_CONSTRAINT
1909
1910 ---------------------------------
1911 -- 3.2.2 Composite Constraint --
1912 ---------------------------------
1913
1914 -- COMPOSITE_CONSTRAINT ::=
1915 -- INDEX_CONSTRAINT | DISCRIMINANT_CONSTRAINT
1916
1917 -------------------------------
1918 -- 3.3.1 Object Declaration --
1919 -------------------------------
1920
1921 -- OBJECT_DECLARATION ::=
1922 -- DEFINING_IDENTIFIER_LIST : [aliased] [constant]
1923 -- SUBTYPE_INDICATION [:= EXPRESSION];
1924 -- | DEFINING_IDENTIFIER_LIST : [aliased] [constant]
1925 -- ARRAY_TYPE_DEFINITION [:= EXPRESSION];
1926 -- | SINGLE_TASK_DECLARATION
1927 -- | SINGLE_PROTECTED_DECLARATION
1928
1929 -- Note: aliased is not permitted in Ada 83 mode
1930
1931 -- The N_Object_Declaration node is only for the first two cases.
1932 -- Single task declaration is handled by P_Task (9.1)
1933 -- Single protected declaration is handled by P_protected (9.5)
1934
1935 -- Although the syntax allows multiple identifiers in the list, the
1936 -- semantics is as though successive declarations were given with
1937 -- identical type definition and expression components. To simplify
1938 -- semantic processing, the parser represents a multiple declaration
1939 -- case as a sequence of single declarations, using the More_Ids and
1940 -- Prev_Ids flags to preserve the original source form as described
1941 -- in the section on "Handling of Defining Identifier Lists".
1942
1943 -- Note: if a range check is required for the initialization
1944 -- expression then the Do_Range_Check flag is set in the Expression,
1945 -- with the check being done against the type given by the object
1946 -- definition, which is also the Etype of the defining identifier.
1947
1948 -- Note: the contents of the Expression field must be ignored (i.e.
1949 -- treated as though it were Empty) if No_Initialization is set True.
1950
1951 -- Note: the back end places some restrictions on the form of the
1952 -- Expression field. If the object being declared is Atomic, then
1953 -- the Expression may not have the form of an aggregate (since this
1954 -- might cause the back end to generate separate assignments). It
1955 -- also cannot be a reference to an object marked as a true constant
1956 -- (Is_True_Constant flag set), where the object is itself initalized
1957 -- with an aggregate. If necessary the front end must generate an
1958 -- extra temporary (with Is_True_Constant set False), and initialize
1959 -- this temporary as required (the temporary itself is not atomic).
1960
1961 -- N_Object_Declaration
1962 -- Sloc points to first identifier
1963 -- Defining_Identifier (Node1)
1964 -- Aliased_Present (Flag4) set if ALIASED appears
1965 -- Constant_Present (Flag17) set if CONSTANT appears
1966 -- Object_Definition (Node4) subtype indication/array type definition
1967 -- Expression (Node3) (set to Empty if not present)
1968 -- Handler_List_Entry (Node2-Sem)
1969 -- Corresponding_Generic_Association (Node5-Sem)
1970 -- More_Ids (Flag5) (set to False if no more identifiers in list)
1971 -- Prev_Ids (Flag6) (set to False if no previous identifiers in list)
1972 -- No_Initialization (Flag13-Sem)
1973 -- Assignment_OK (Flag15-Sem)
1974 -- Exception_Junk (Flag11-Sem)
1975 -- Delay_Finalize_Attach (Flag14-Sem)
1976 -- Is_Subprogram_Descriptor (Flag16-Sem)
1977
1978 -------------------------------------
1979 -- 3.3.1 Defining Identifier List --
1980 -------------------------------------
1981
1982 -- DEFINING_IDENTIFIER_LIST ::=
1983 -- DEFINING_IDENTIFIER {, DEFINING_IDENTIFIER}
1984
1985 -------------------------------
1986 -- 3.3.2 Number Declaration --
1987 -------------------------------
1988
1989 -- NUMBER_DECLARATION ::=
1990 -- DEFINING_IDENTIFIER_LIST : constant := static_EXPRESSION;
1991
1992 -- Although the syntax allows multiple identifiers in the list, the
1993 -- semantics is as though successive declarations were given with
1994 -- identical expressions. To simplify semantic processing, the parser
1995 -- represents a multiple declaration case as a sequence of single
1996 -- declarations, using the More_Ids and Prev_Ids flags to preserve
1997 -- the original source form as described in the section on "Handling
1998 -- of Defining Identifier Lists".
1999
2000 -- N_Number_Declaration
2001 -- Sloc points to first identifier
2002 -- Defining_Identifier (Node1)
2003 -- Expression (Node3)
2004 -- More_Ids (Flag5) (set to False if no more identifiers in list)
2005 -- Prev_Ids (Flag6) (set to False if no previous identifiers in list)
2006
2007 ----------------------------------
2008 -- 3.4 Derived Type Definition --
2009 ----------------------------------
2010
2011 -- DERIVED_TYPE_DEFINITION ::=
2012 -- [abstract] new parent_SUBTYPE_INDICATION [RECORD_EXTENSION_PART]
2013
2014 -- Note: ABSTRACT, record extension part not permitted in Ada 83 mode
2015
2016 -- Note: a record extension part is required if ABSTRACT is present
2017
2018 -- N_Derived_Type_Definition
2019 -- Sloc points to NEW
2020 -- Abstract_Present (Flag4)
2021 -- Subtype_Indication (Node5)
2022 -- Record_Extension_Part (Node3) (set to Empty if not present)
2023
2024 ---------------------------
2025 -- 3.5 Range Constraint --
2026 ---------------------------
2027
2028 -- RANGE_CONSTRAINT ::= range RANGE
2029
2030 -- N_Range_Constraint
2031 -- Sloc points to RANGE
2032 -- Range_Expression (Node4)
2033
2034 ----------------
2035 -- 3.5 Range --
2036 ----------------
2037
2038 -- RANGE ::=
2039 -- RANGE_ATTRIBUTE_REFERENCE
2040 -- | SIMPLE_EXPRESSION .. SIMPLE_EXPRESSION
2041
2042 -- Note: the case of a range given as a range attribute reference
2043 -- appears directly in the tree as an attribute reference.
2044
2045 -- Note: the field name for a reference to a range is Range_Expression
2046 -- rather than Range, because range is a reserved keyword in Ada!
2047
2048 -- Note: the reason that this node has expression fields is that a
2049 -- range can appear as an operand of a membership test. The Etype
2050 -- field is the type of the range (we do NOT construct an implicit
2051 -- subtype to represent the range exactly).
2052
2053 -- N_Range
2054 -- Sloc points to ..
2055 -- Low_Bound (Node1)
2056 -- High_Bound (Node2)
2057 -- Includes_Infinities (Flag11)
2058 -- plus fields for expression
2059
2060 -- Note: if the range appears in a context, such as a subtype
2061 -- declaration, where range checks are required on one or both of
2062 -- the expression fields, then type conversion nodes are inserted
2063 -- to represent the required checks.
2064
2065 ----------------------------------------
2066 -- 3.5.1 Enumeration Type Definition --
2067 ----------------------------------------
2068
2069 -- ENUMERATION_TYPE_DEFINITION ::=
2070 -- (ENUMERATION_LITERAL_SPECIFICATION
2071 -- {, ENUMERATION_LITERAL_SPECIFICATION})
2072
2073 -- Note: the Literals field in the node described below is null for
2074 -- the case of the standard types CHARACTER and WIDE_CHARACTER, for
2075 -- which special processing handles these types as special cases.
2076
2077 -- N_Enumeration_Type_Definition
2078 -- Sloc points to left parenthesis
2079 -- Literals (List1) (Empty for CHARACTER or WIDE_CHARACTER)
2080 -- End_Label (Node4) (set to Empty if internally generated record)
2081
2082 ----------------------------------------------
2083 -- 3.5.1 Enumeration Literal Specification --
2084 ----------------------------------------------
2085
2086 -- ENUMERATION_LITERAL_SPECIFICATION ::=
2087 -- DEFINING_IDENTIFIER | DEFINING_CHARACTER_LITERAL
2088
2089 ---------------------------------------
2090 -- 3.5.1 Defining Character Literal --
2091 ---------------------------------------
2092
2093 -- DEFINING_CHARACTER_LITERAL ::= CHARACTER_LITERAL
2094
2095 -- A defining character literal is an entity, which has additional
2096 -- fields depending on the setting of the Ekind field. These
2097 -- additional fields are defined (and access subprograms declared)
2098 -- in package Einfo.
2099
2100 -- Note: N_Defining_Character_Literal is an extended node whose fields
2101 -- are deliberate layed out to match the layout of fields in an ordinary
2102 -- N_Character_Literal node allowing for easy alteration of a character
2103 -- literal node into a defining character literal node. For details, see
2104 -- Sinfo.CN.Change_Character_Literal_To_Defining_Character_Literal.
2105
2106 -- N_Defining_Character_Literal
2107 -- Sloc points to literal
2108 -- Chars (Name1) contains the Name_Id for the identifier
2109 -- Next_Entity (Node2-Sem)
2110 -- Scope (Node3-Sem)
2111 -- Etype (Node5-Sem)
2112
2113 ------------------------------------
2114 -- 3.5.4 Integer Type Definition --
2115 ------------------------------------
2116
2117 -- Note: there is an error in this rule in the latest version of the
2118 -- grammar, so we have retained the old rule pending clarification.
2119
2120 -- INTEGER_TYPE_DEFINITION ::=
2121 -- SIGNED_INTEGER_TYPE_DEFINITION
2122 -- MODULAR_TYPE_DEFINITION
2123
2124 -------------------------------------------
2125 -- 3.5.4 Signed Integer Type Definition --
2126 -------------------------------------------
2127
2128 -- SIGNED_INTEGER_TYPE_DEFINITION ::=
2129 -- range static_SIMPLE_EXPRESSION .. static_SIMPLE_EXPRESSION
2130
2131 -- Note: the Low_Bound and High_Bound fields are set to Empty for
2132 -- integer types defined in package Standard.
2133
2134 -- N_Signed_Integer_Type_Definition
2135 -- Sloc points to RANGE
2136 -- Low_Bound (Node1)
2137 -- High_Bound (Node2)
2138
2139 -----------------------------------------
2140 -- 3.5.4 Unsigned Range Specification --
2141 -----------------------------------------
2142
2143 -- MODULAR_TYPE_DEFINITION ::= mod static_EXPRESSION
2144
2145 -- N_Modular_Type_Definition
2146 -- Sloc points to MOD
2147 -- Expression (Node3)
2148
2149 ---------------------------------
2150 -- 3.5.6 Real Type Definition --
2151 ---------------------------------
2152
2153 -- REAL_TYPE_DEFINITION ::=
2154 -- FLOATING_POINT_DEFINITION | FIXED_POINT_DEFINITION
2155
2156 --------------------------------------
2157 -- 3.5.7 Floating Point Definition --
2158 --------------------------------------
2159
2160 -- FLOATING_POINT_DEFINITION ::=
2161 -- digits static_SIMPLE_EXPRESSION [REAL_RANGE_SPECIFICATION]
2162
2163 -- Note: The Digits_Expression and Real_Range_Specifications fields
2164 -- are set to Empty for floating-point types declared in Standard.
2165
2166 -- N_Floating_Point_Definition
2167 -- Sloc points to DIGITS
2168 -- Digits_Expression (Node2)
2169 -- Real_Range_Specification (Node4) (set to Empty if not present)
2170
2171 -------------------------------------
2172 -- 3.5.7 Real Range Specification --
2173 -------------------------------------
2174
2175 -- REAL_RANGE_SPECIFICATION ::=
2176 -- range static_SIMPLE_EXPRESSION .. static_SIMPLE_EXPRESSION
2177
2178 -- N_Real_Range_Specification
2179 -- Sloc points to RANGE
2180 -- Low_Bound (Node1)
2181 -- High_Bound (Node2)
2182
2183 -----------------------------------
2184 -- 3.5.9 Fixed Point Definition --
2185 -----------------------------------
2186
2187 -- FIXED_POINT_DEFINITION ::=
2188 -- ORDINARY_FIXED_POINT_DEFINITION | DECIMAL_FIXED_POINT_DEFINITION
2189
2190 --------------------------------------------
2191 -- 3.5.9 Ordinary Fixed Point Definition --
2192 --------------------------------------------
2193
2194 -- ORDINARY_FIXED_POINT_DEFINITION ::=
2195 -- delta static_EXPRESSION REAL_RANGE_SPECIFICATION
2196
2197 -- Note: In Ada 83, the EXPRESSION must be a SIMPLE_EXPRESSION
2198
2199 -- Note: the Delta_Expression and Real_Range_Specification fields
2200 -- are set to Empty for fixed point types declared in Standard.
2201
2202 -- N_Ordinary_Fixed_Point_Definition
2203 -- Sloc points to DELTA
2204 -- Delta_Expression (Node3)
2205 -- Real_Range_Specification (Node4)
2206
2207 -------------------------------------------
2208 -- 3.5.9 Decimal Fixed Point Definition --
2209 -------------------------------------------
2210
2211 -- DECIMAL_FIXED_POINT_DEFINITION ::=
2212 -- delta static_EXPRESSION
2213 -- digits static_EXPRESSION [REAL_RANGE_SPECIFICATION]
2214
2215 -- Note: decimal types are not permitted in Ada 83 mode
2216
2217 -- N_Decimal_Fixed_Point_Definition
2218 -- Sloc points to DELTA
2219 -- Delta_Expression (Node3)
2220 -- Digits_Expression (Node2)
2221 -- Real_Range_Specification (Node4) (set to Empty if not present)
2222
2223 ------------------------------
2224 -- 3.5.9 Digits Constraint --
2225 ------------------------------
2226
2227 -- DIGITS_CONSTRAINT ::=
2228 -- digits static_EXPRESSION [RANGE_CONSTRAINT]
2229
2230 -- Note: in Ada 83, the EXPRESSION must be a SIMPLE_EXPRESSION
2231 -- Note: in Ada 95, reduced accuracy subtypes are obsolescent
2232
2233 -- N_Digits_Constraint
2234 -- Sloc points to DIGITS
2235 -- Digits_Expression (Node2)
2236 -- Range_Constraint (Node4) (set to Empty if not present)
2237
2238 --------------------------------
2239 -- 3.6 Array Type Definition --
2240 --------------------------------
2241
2242 -- ARRAY_TYPE_DEFINITION ::=
2243 -- UNCONSTRAINED_ARRAY_DEFINITION | CONSTRAINED_ARRAY_DEFINITION
2244
2245 -----------------------------------------
2246 -- 3.6 Unconstrained Array Definition --
2247 -----------------------------------------
2248
2249 -- UNCONSTRAINED_ARRAY_DEFINITION ::=
2250 -- array (INDEX_SUBTYPE_DEFINITION {, INDEX_SUBTYPE_DEFINITION}) of
2251 -- COMPONENT_DEFINITION
2252
2253 -- Note: dimensionality of array is indicated by number of entries in
2254 -- the Subtype_Marks list, which has one entry for each dimension.
2255
2256 -- N_Unconstrained_Array_Definition
2257 -- Sloc points to ARRAY
2258 -- Subtype_Marks (List2)
2259 -- Aliased_Present (Flag4) from component definition
2260 -- Subtype_Indication (Node5) from component definition
2261
2262 -----------------------------------
2263 -- 3.6 Index Subtype Definition --
2264 -----------------------------------
2265
2266 -- INDEX_SUBTYPE_DEFINITION ::= SUBTYPE_MARK range <>
2267
2268 -- There is no explicit node in the tree for an index subtype
2269 -- definition since the N_Unconstrained_Array_Definition node
2270 -- incorporates the type marks which appear in this context.
2271
2272 ---------------------------------------
2273 -- 3.6 Constrained Array Definition --
2274 ---------------------------------------
2275
2276 -- CONSTRAINED_ARRAY_DEFINITION ::=
2277 -- array (DISCRETE_SUBTYPE_DEFINITION
2278 -- {, DISCRETE_SUBTYPE_DEFINITION})
2279 -- of COMPONENT_DEFINITION
2280
2281 -- Note: dimensionality of array is indicated by number of entries
2282 -- in the Discrete_Subtype_Definitions list, which has one entry
2283 -- for each dimension.
2284
2285 -- N_Constrained_Array_Definition
2286 -- Sloc points to ARRAY
2287 -- Discrete_Subtype_Definitions (List2)
2288 -- Aliased_Present (Flag4) from component definition
2289 -- Subtype_Indication (Node5) from component definition
2290
2291 --------------------------------------
2292 -- 3.6 Discrete Subtype Definition --
2293 --------------------------------------
2294
2295 -- DISCRETE_SUBTYPE_DEFINITION ::=
2296 -- discrete_SUBTYPE_INDICATION | RANGE
2297
2298 -------------------------------
2299 -- 3.6 Component Definition --
2300 -------------------------------
2301
2302 -- COMPONENT_DEFINITION ::= [aliased] SUBTYPE_INDICATION
2303
2304 -- There is no explicit node in the tree for a component definition.
2305 -- Instead the subtype indication appears directly, and the ALIASED
2306 -- indication (Aliased_Present flag) is in the parent node.
2307
2308 -- Note: although the syntax does not permit a component definition to
2309 -- be an anonymous array (and the parser will diagnose such an attempt
2310 -- with an appropriate message), it is possible for anonymous arrays
2311 -- to appear as component definitions. The semantics and back end handle
2312 -- this case properly, and the expander in fact generates such cases.
2313
2314 -----------------------------
2315 -- 3.6.1 Index Constraint --
2316 -----------------------------
2317
2318 -- INDEX_CONSTRAINT ::= (DISCRETE_RANGE {, DISCRETE_RANGE})
2319
2320 -- It is not in general possible to distinguish between discriminant
2321 -- constraints and index constraints at parse time, since a simple
2322 -- name could be either the subtype mark of a discrete range, or an
2323 -- expression in a discriminant association with no name. Either
2324 -- entry appears simply as the name, and the semantic parse must
2325 -- distinguish between the two cases. Thus we use a common tree
2326 -- node format for both of these constraint types.
2327
2328 -- See Discriminant_Constraint for format of node
2329
2330 ---------------------------
2331 -- 3.6.1 Discrete Range --
2332 ---------------------------
2333
2334 -- DISCRETE_RANGE ::= discrete_SUBTYPE_INDICATION | RANGE
2335
2336 ----------------------------
2337 -- 3.7 Discriminant Part --
2338 ----------------------------
2339
2340 -- DISCRIMINANT_PART ::=
2341 -- UNKNOWN_DISCRIMINANT_PART | KNOWN_DISCRIMINANT_PART
2342
2343 ------------------------------------
2344 -- 3.7 Unknown Discriminant Part --
2345 ------------------------------------
2346
2347 -- UNKNOWN_DISCRIMINANT_PART ::= (<>)
2348
2349 -- Note: unknown discriminant parts are not permitted in Ada 83 mode
2350
2351 -- There is no explicit node in the tree for an unknown discriminant
2352 -- part. Instead the Unknown_Discriminants_Present flag is set in the
2353 -- parent node.
2354
2355 ----------------------------------
2356 -- 3.7 Known Discriminant Part --
2357 ----------------------------------
2358
2359 -- KNOWN_DISCRIMINANT_PART ::=
2360 -- (DISCRIMINANT_SPECIFICATION {; DISCRIMINANT_SPECIFICATION})
2361
2362 -------------------------------------
2363 -- 3.7 Discriminant Specification --
2364 -------------------------------------
2365
2366 -- DISCRIMINANT_SPECIFICATION ::=
2367 -- DEFINING_IDENTIFIER_LIST : SUBTYPE_MARK
2368 -- [:= DEFAULT_EXPRESSION]
2369 -- | DEFINING_IDENTIFIER_LIST : ACCESS_DEFINITION
2370 -- [:= DEFAULT_EXPRESSION]
2371
2372 -- Although the syntax allows multiple identifiers in the list, the
2373 -- semantics is as though successive specifications were given with
2374 -- identical type definition and expression components. To simplify
2375 -- semantic processing, the parser represents a multiple declaration
2376 -- case as a sequence of single specifications, using the More_Ids and
2377 -- Prev_Ids flags to preserve the original source form as described
2378 -- in the section on "Handling of Defining Identifier Lists".
2379
2380 -- N_Discriminant_Specification
2381 -- Sloc points to first identifier
2382 -- Defining_Identifier (Node1)
2383 -- Discriminant_Type (Node5) subtype mark or
2384 -- access parameter definition
2385 -- Expression (Node3) (set to Empty if no default expression)
2386 -- More_Ids (Flag5) (set to False if no more identifiers in list)
2387 -- Prev_Ids (Flag6) (set to False if no previous identifiers in list)
2388
2389 -----------------------------
2390 -- 3.7 Default Expression --
2391 -----------------------------
2392
2393 -- DEFAULT_EXPRESSION ::= EXPRESSION
2394
2395 ------------------------------------
2396 -- 3.7.1 Discriminant Constraint --
2397 ------------------------------------
2398
2399 -- DISCRIMINANT_CONSTRAINT ::=
2400 -- (DISCRIMINANT_ASSOCIATION {, DISCRIMINANT_ASSOCIATION})
2401
2402 -- It is not in general possible to distinguish between discriminant
2403 -- constraints and index constraints at parse time, since a simple
2404 -- name could be either the subtype mark of a discrete range, or an
2405 -- expression in a discriminant association with no name. Either
2406 -- entry appears simply as the name, and the semantic parse must
2407 -- distinguish between the two cases. Thus we use a common tree
2408 -- node format for both of these constraint types.
2409
2410 -- N_Index_Or_Discriminant_Constraint
2411 -- Sloc points to left paren
2412 -- Constraints (List1) points to list of discrete ranges or
2413 -- discriminant associations
2414
2415 -------------------------------------
2416 -- 3.7.1 Discriminant Association --
2417 -------------------------------------
2418
2419 -- DISCRIMINANT_ASSOCIATION ::=
2420 -- [discriminant_SELECTOR_NAME
2421 -- {| discriminant_SELECTOR_NAME} =>] EXPRESSION
2422
2423 -- Note: a discriminant association that has no selector name list
2424 -- appears directly as an expression in the tree.
2425
2426 -- N_Discriminant_Association
2427 -- Sloc points to first token of discriminant association
2428 -- Selector_Names (List1) (always non-empty, since if no selector
2429 -- names are present, this node is not used, see comment above)
2430 -- Expression (Node3)
2431
2432 ---------------------------------
2433 -- 3.8 Record Type Definition --
2434 ---------------------------------
2435
2436 -- RECORD_TYPE_DEFINITION ::=
2437 -- [[abstract] tagged] [limited] RECORD_DEFINITION
2438
2439 -- Note: ABSTRACT, TAGGED, LIMITED are not permitted in Ada 83 mode
2440
2441 -- There is no explicit node in the tree for a record type definition.
2442 -- Instead the flags for Tagged_Present and Limited_Present appear in
2443 -- the N_Record_Definition node for a record definition appearing in
2444 -- the context of a record type definition.
2445
2446 ----------------------------
2447 -- 3.8 Record Definition --
2448 ----------------------------
2449
2450 -- RECORD_DEFINITION ::=
2451 -- record
2452 -- COMPONENT_LIST
2453 -- end record
2454 -- | null record
2455
2456 -- Note: the Abstract_Present, Tagged_Present and Limited_Present
2457 -- flags appear only for a record definition appearing in a record
2458 -- type definition.
2459
2460 -- Note: the NULL RECORD case is not permitted in Ada 83
2461
2462 -- N_Record_Definition
2463 -- Sloc points to RECORD or NULL
2464 -- End_Label (Node4) (set to Empty if internally generated record)
2465 -- Abstract_Present (Flag4)
2466 -- Tagged_Present (Flag15)
2467 -- Limited_Present (Flag17)
2468 -- Component_List (Node1) empty in null record case
2469 -- Null_Present (Flag13) set in null record case
2470
2471 -------------------------
2472 -- 3.8 Component List --
2473 -------------------------
2474
2475 -- COMPONENT_LIST ::=
2476 -- COMPONENT_ITEM {COMPONENT_ITEM}
2477 -- | {COMPONENT_ITEM} VARIANT_PART
2478 -- | null;
2479
2480 -- N_Component_List
2481 -- Sloc points to first token of component list
2482 -- Component_Items (List3)
2483 -- Variant_Part (Node4) (set to Empty if no variant part)
2484 -- Null_Present (Flag13)
2485
2486 -------------------------
2487 -- 3.8 Component Item --
2488 -------------------------
2489
2490 -- COMPONENT_ITEM ::= COMPONENT_DECLARATION | REPRESENTATION_CLAUSE
2491
2492 -- Note: A component item can also be a pragma, and in the tree
2493 -- that is obtained after semantic processing, a component item
2494 -- can be an N_Null node resulting from a non-recognized pragma.
2495
2496 --------------------------------
2497 -- 3.8 Component Declaration --
2498 --------------------------------
2499
2500 -- COMPONENT_DECLARATION ::=
2501 -- DEFINING_IDENTIFIER_LIST : COMPONENT_DEFINITION
2502 -- [:= DEFAULT_EXPRESSION]
2503
2504 -- Note: although the syntax does not permit a component definition to
2505 -- be an anonymous array (and the parser will diagnose such an attempt
2506 -- with an appropriate message), it is possible for anonymous arrays
2507 -- to appear as component definitions. The semantics and back end handle
2508 -- this case properly, and the expander in fact generates such cases.
2509
2510 -- Although the syntax allows multiple identifiers in the list, the
2511 -- semantics is as though successive declarations were given with the
2512 -- same component definition and expression components. To simplify
2513 -- semantic processing, the parser represents a multiple declaration
2514 -- case as a sequence of single declarations, using the More_Ids and
2515 -- Prev_Ids flags to preserve the original source form as described
2516 -- in the section on "Handling of Defining Identifier Lists".
2517
2518 -- N_Component_Declaration
2519 -- Sloc points to first identifier
2520 -- Defining_Identifier (Node1)
2521 -- Aliased_Present (Flag4) from component definition
2522 -- Subtype_Indication (Node5) from component definition
2523 -- Expression (Node3) (set to Empty if no default expression)
2524 -- More_Ids (Flag5) (set to False if no more identifiers in list)
2525 -- Prev_Ids (Flag6) (set to False if no previous identifiers in list)
2526
2527 -------------------------
2528 -- 3.8.1 Variant Part --
2529 -------------------------
2530
2531 -- VARIANT_PART ::=
2532 -- case discriminant_DIRECT_NAME is
2533 -- VARIANT
2534 -- {VARIANT}
2535 -- end case;
2536
2537 -- Note: the variants list can contain pragmas as well as variants.
2538 -- In a properly formed program there is at least one variant.
2539
2540 -- N_Variant_Part
2541 -- Sloc points to CASE
2542 -- Name (Node2)
2543 -- Variants (List1)
2544
2545 --------------------
2546 -- 3.8.1 Variant --
2547 --------------------
2548
2549 -- VARIANT ::=
2550 -- when DISCRETE_CHOICE_LIST =>
2551 -- COMPONENT_LIST
2552
2553 -- N_Variant
2554 -- Sloc points to WHEN
2555 -- Discrete_Choices (List4)
2556 -- Component_List (Node1)
2557 -- Enclosing_Variant (Node2-Sem)
2558 -- Present_Expr (Uint3-Sem)
2559 -- Dcheck_Function (Node5-Sem)
2560
2561 ---------------------------------
2562 -- 3.8.1 Discrete Choice List --
2563 ---------------------------------
2564
2565 -- DISCRETE_CHOICE_LIST ::= DISCRETE_CHOICE {| DISCRETE_CHOICE}
2566
2567 ----------------------------
2568 -- 3.8.1 Discrete Choice --
2569 ----------------------------
2570
2571 -- DISCRETE_CHOICE ::= EXPRESSION | DISCRETE_RANGE | others
2572
2573 -- Note: in Ada 83 mode, the expression must be a simple expression
2574
2575 -- The only choice that appears explicitly is the OTHERS choice, as
2576 -- defined here. Other cases of discrete choice (expression and
2577 -- discrete range) appear directly. This production is also used
2578 -- for the OTHERS possibility of an exception choice.
2579
2580 -- Note: in accordance with the syntax, the parser does not check that
2581 -- OTHERS appears at the end on its own in a choice list context. This
2582 -- is a semantic check.
2583
2584 -- N_Others_Choice
2585 -- Sloc points to OTHERS
2586 -- Others_Discrete_Choices (List1-Sem)
2587 -- All_Others (Flag11-Sem)
2588
2589 ----------------------------------
2590 -- 3.9.1 Record Extension Part --
2591 ----------------------------------
2592
2593 -- RECORD_EXTENSION_PART ::= with RECORD_DEFINITION
2594
2595 -- Note: record extension parts are not permitted in Ada 83 mode
2596
2597 ----------------------------------
2598 -- 3.10 Access Type Definition --
2599 ----------------------------------
2600
2601 -- ACCESS_TYPE_DEFINITION ::=
2602 -- ACCESS_TO_OBJECT_DEFINITION
2603 -- | ACCESS_TO_SUBPROGRAM_DEFINITION
2604
2605 ---------------------------------------
2606 -- 3.10 Access To Object Definition --
2607 ---------------------------------------
2608
2609 -- ACCESS_TO_OBJECT_DEFINITION ::=
2610 -- access [GENERAL_ACCESS_MODIFIER] SUBTYPE_INDICATION
2611
2612 -- N_Access_To_Object_Definition
2613 -- Sloc points to ACCESS
2614 -- All_Present (Flag15)
2615 -- Subtype_Indication (Node5)
2616 -- Constant_Present (Flag17)
2617
2618 -----------------------------------
2619 -- 3.10 General Access Modifier --
2620 -----------------------------------
2621
2622 -- GENERAL_ACCESS_MODIFIER ::= all | constant
2623
2624 -- Note: general access modifiers are not permitted in Ada 83 mode
2625
2626 -- There is no explicit node in the tree for general access modifier.
2627 -- Instead the All_Present or Constant_Present flags are set in the
2628 -- parent node.
2629
2630 -------------------------------------------
2631 -- 3.10 Access To Subprogram Definition --
2632 -------------------------------------------
2633
2634 -- ACCESS_TO_SUBPROGRAM_DEFINITION
2635 -- access [protected] procedure PARAMETER_PROFILE
2636 -- | access [protected] function PARAMETER_AND_RESULT_PROFILE
2637
2638 -- Note: access to subprograms are not permitted in Ada 83 mode
2639
2640 -- N_Access_Function_Definition
2641 -- Sloc points to ACCESS
2642 -- Protected_Present (Flag15)
2643 -- Parameter_Specifications (List3) (set to No_List if no formal part)
2644 -- Subtype_Mark (Node4) result subtype
2645
2646 -- N_Access_Procedure_Definition
2647 -- Sloc points to ACCESS
2648 -- Protected_Present (Flag15)
2649 -- Parameter_Specifications (List3) (set to No_List if no formal part)
2650
2651 -----------------------------
2652 -- 3.10 Access Definition --
2653 -----------------------------
2654
2655 -- ACCESS_DEFINITION ::= access SUBTYPE_MARK
2656
2657 -- N_Access_Definition
2658 -- Sloc points to ACCESS
2659 -- Subtype_Mark (Node4)
2660
2661 -----------------------------------------
2662 -- 3.10.1 Incomplete Type Declaration --
2663 -----------------------------------------
2664
2665 -- INCOMPLETE_TYPE_DECLARATION ::=
2666 -- type DEFINING_IDENTIFIER [DISCRIMINANT_PART];
2667
2668 -- N_Incomplete_Type_Declaration
2669 -- Sloc points to TYPE
2670 -- Defining_Identifier (Node1)
2671 -- Discriminant_Specifications (List4) (set to No_List if no
2672 -- discriminant part, or if the discriminant part is an
2673 -- unknown discriminant part)
2674 -- Unknown_Discriminants_Present (Flag13) set if (<>) discriminant
2675
2676 ----------------------------
2677 -- 3.11 Declarative Part --
2678 ----------------------------
2679
2680 -- DECLARATIVE_PART ::= {DECLARATIVE_ITEM}
2681
2682 -- Note: although the parser enforces the syntactic requirement that
2683 -- a declarative part can contain only declarations, the semantic
2684 -- processing may add statements to the list of actions in a
2685 -- declarative part, so the code generator should be prepared
2686 -- to accept a statement in this position.
2687
2688 ----------------------------
2689 -- 3.11 Declarative Item --
2690 ----------------------------
2691
2692 -- DECLARATIVE_ITEM ::= BASIC_DECLARATIVE_ITEM | BODY
2693
2694 ----------------------------------
2695 -- 3.11 Basic Declarative Item --
2696 ----------------------------------
2697
2698 -- BASIC_DECLARATIVE_ITEM ::=
2699 -- BASIC_DECLARATION | REPRESENTATION_CLAUSE | USE_CLAUSE
2700
2701 ----------------
2702 -- 3.11 Body --
2703 ----------------
2704
2705 -- BODY ::= PROPER_BODY | BODY_STUB
2706
2707 -----------------------
2708 -- 3.11 Proper Body --
2709 -----------------------
2710
2711 -- PROPER_BODY ::=
2712 -- SUBPROGRAM_BODY | PACKAGE_BODY | TASK_BODY | PROTECTED_BODY
2713
2714 ---------------
2715 -- 4.1 Name --
2716 ---------------
2717
2718 -- NAME ::=
2719 -- DIRECT_NAME | EXPLICIT_DEREFERENCE
2720 -- | INDEXED_COMPONENT | SLICE
2721 -- | SELECTED_COMPONENT | ATTRIBUTE_REFERENCE
2722 -- | TYPE_CONVERSION | FUNCTION_CALL
2723 -- | CHARACTER_LITERAL
2724
2725 ----------------------
2726 -- 4.1 Direct Name --
2727 ----------------------
2728
2729 -- DIRECT_NAME ::= IDENTIFIER | OPERATOR_SYMBOL
2730
2731 -----------------
2732 -- 4.1 Prefix --
2733 -----------------
2734
2735 -- PREFIX ::= NAME | IMPLICIT_DEREFERENCE
2736
2737 -------------------------------
2738 -- 4.1 Explicit Dereference --
2739 -------------------------------
2740
2741 -- EXPLICIT_DEREFERENCE ::= NAME . all
2742
2743 -- N_Explicit_Dereference
2744 -- Sloc points to ALL
2745 -- Prefix (Node3)
2746 -- plus fields for expression
2747
2748 -------------------------------
2749 -- 4.1 Implicit Dereference --
2750 -------------------------------
2751
2752 -- IMPLICIT_DEREFERENCE ::= NAME
2753
2754 ------------------------------
2755 -- 4.1.1 Indexed Component --
2756 ------------------------------
2757
2758 -- INDEXED_COMPONENT ::= PREFIX (EXPRESSION {, EXPRESSION})
2759
2760 -- Note: the parser may generate this node in some situations where it
2761 -- should be a function call. The semantic pass must correct this
2762 -- misidentification (which is inevitable at the parser level).
2763
2764 -- N_Indexed_Component
2765 -- Sloc contains a copy of the Sloc value of the Prefix
2766 -- Prefix (Node3)
2767 -- Expressions (List1)
2768 -- plus fields for expression
2769
2770 -- Note: if any of the subscripts requires a range check, then the
2771 -- Do_Range_Check flag is set on the corresponding expression, with
2772 -- the index type being determined from the type of the Prefix, which
2773 -- references the array being indexed.
2774
2775 -- Note: in a fully analyzed and expanded indexed component node, and
2776 -- hence in any such node that gigi sees, if the prefix is an access
2777 -- type, then an explicit dereference operation has been inserted.
2778
2779 ------------------
2780 -- 4.1.2 Slice --
2781 ------------------
2782
2783 -- SLICE ::= PREFIX (DISCRETE_RANGE)
2784
2785 -- Note: an implicit subtype is created to describe the resulting
2786 -- type, so that the bounds of this type are the bounds of the slice.
2787
2788 -- N_Slice
2789 -- Sloc points to first token of prefix
2790 -- Prefix (Node3)
2791 -- Discrete_Range (Node4)
2792 -- plus fields for expression
2793
2794 -------------------------------
2795 -- 4.1.3 Selected Component --
2796 -------------------------------
2797
2798 -- SELECTED_COMPONENT ::= PREFIX . SELECTOR_NAME
2799
2800 -- Note: selected components that are semantically expanded names get
2801 -- changed during semantic processing into the separate N_Expanded_Name
2802 -- node. See description of this node in the section on semantic nodes.
2803
2804 -- N_Selected_Component
2805 -- Sloc points to period
2806 -- Prefix (Node3)
2807 -- Selector_Name (Node2)
2808 -- Associated_Node (Node4-Sem)
2809 -- Do_Discriminant_Check (Flag13-Sem)
2810 -- Is_In_Discriminant_Check (Flag11-Sem)
2811 -- plus fields for expression
2812
2813 --------------------------
2814 -- 4.1.3 Selector Name --
2815 --------------------------
2816
2817 -- SELECTOR_NAME ::= IDENTIFIER | CHARACTER_LITERAL | OPERATOR_SYMBOL
2818
2819 --------------------------------
2820 -- 4.1.4 Attribute Reference --
2821 --------------------------------
2822
2823 -- ATTRIBUTE_REFERENCE ::= PREFIX ' ATTRIBUTE_DESIGNATOR
2824
2825 -- Note: the syntax is quite ambiguous at this point. Consider:
2826
2827 -- A'Length (X) X is part of the attribute designator
2828 -- A'Pos (X) X is an explicit actual parameter of function A'Pos
2829 -- A'Class (X) X is the expression of a type conversion
2830
2831 -- It would be possible for the parser to distinguish these cases
2832 -- by looking at the attribute identifier. However, that would mean
2833 -- more work in introducing new implementation defined attributes,
2834 -- and also it would mean that special processing for attributes
2835 -- would be scattered around, instead of being centralized in the
2836 -- semantic routine that handles an N_Attribute_Reference node.
2837 -- Consequently, the parser in all the above cases stores the
2838 -- expression (X in these examples) as a single element list in
2839 -- in the Expressions field of the N_Attribute_Reference node.
2840
2841 -- Similarly, for attributes like Max which take two arguments,
2842 -- we store the two arguments as a two element list in the
2843 -- Expressions field. Of course it is clear at parse time that
2844 -- this case is really a function call with an attribute as the
2845 -- prefix, but it turns out to be convenient to handle the two
2846 -- argument case in a similar manner to the one argument case,
2847 -- and indeed in general the parser will accept any number of
2848 -- expressions in this position and store them as a list in the
2849 -- attribute reference node. This allows for future addition of
2850 -- attributes that take more than two arguments.
2851
2852 -- Note: named associates are not permitted in function calls where
2853 -- the function is an attribute (see RM 6.4(3)) so it is legitimate
2854 -- to skip the normal subprogram argument processing.
2855
2856 -- Note: for the attributes whose designators are technically keywords,
2857 -- i.e. digits, access, delta, range, the Attribute_Name field contains
2858 -- the corresponding name, even though no identifier is involved.
2859
2860 -- The flag OK_For_Stream is used in generated code to indicate that
2861 -- a stream attribute is permissible for a limited type, and results
2862 -- in the use of the stream attribute for the underlying full type,
2863 -- or in the case of a protected type, the components (including any
2864 -- disriminants) are merely streamed in order.
2865
2866 -- See Exp_Attr for a complete description of which attributes are
2867 -- passed onto Gigi, and which are handled entirely by the front end.
2868
2869 -- Gigi restriction: For the Pos attribute, the prefix cannot be
2870 -- a non-standard enumeration type or a nonzero/zero semantics
2871 -- boolean type, so the value is simply the stored representation.
2872
2873 -- Note: In generated code, the Address and Unrestricted_Access
2874 -- attributes can be applied to any expression, and the meaning is
2875 -- to create an object containing the value (the object is in the
2876 -- current stack frame), and pass the address of this value. If the
2877 -- Must_Be_Byte_Aligned flag is set, then the object whose address
2878 -- is taken must be on a byte (storage unit) boundary, and if it is
2879 -- not (or may not be), then the generated code must create a copy
2880 -- that is byte aligned, and pass the address of this copy.
2881
2882 -- N_Attribute_Reference
2883 -- Sloc points to apostrophe
2884 -- Prefix (Node3)
2885 -- Attribute_Name (Name2) identifier name from attribute designator
2886 -- Expressions (List1) (set to No_List if no associated expressions)
2887 -- Entity (Node4-Sem) used if the attribute yields a type
2888 -- Associated_Node (Node4-Sem)
2889 -- Do_Overflow_Check (Flag17-Sem)
2890 -- Redundant_Use (Flag13-Sem)
2891 -- OK_For_Stream (Flag4-Sem)
2892 -- Must_Be_Byte_Aligned (Flag14)
2893 -- plus fields for expression
2894
2895 ---------------------------------
2896 -- 4.1.4 Attribute Designator --
2897 ---------------------------------
2898
2899 -- ATTRIBUTE_DESIGNATOR ::=
2900 -- IDENTIFIER [(static_EXPRESSION)]
2901 -- | access | delta | digits
2902
2903 -- There is no explicit node in the tree for an attribute designator.
2904 -- Instead the Attribute_Name and Expressions fields of the parent
2905 -- node (N_Attribute_Reference node) hold the information.
2906
2907 -- Note: if ACCESS, DELTA or DIGITS appears in an attribute
2908 -- designator, then they are treated as identifiers internally
2909 -- rather than the keywords of the same name.
2910
2911 --------------------------------------
2912 -- 4.1.4 Range Attribute Reference --
2913 --------------------------------------
2914
2915 -- RANGE_ATTRIBUTE_REFERENCE ::= PREFIX ' RANGE_ATTRIBUTE_DESIGNATOR
2916
2917 -- A range attribute reference is represented in the tree using the
2918 -- normal N_Attribute_Reference node.
2919
2920 ---------------------------------------
2921 -- 4.1.4 Range Attribute Designator --
2922 ---------------------------------------
2923
2924 -- RANGE_ATTRIBUTE_DESIGNATOR ::= Range [(static_EXPRESSION)]
2925
2926 -- A range attribute designator is represented in the tree using the
2927 -- normal N_Attribute_Reference node.
2928
2929 --------------------
2930 -- 4.3 Aggregate --
2931 --------------------
2932
2933 -- AGGREGATE ::=
2934 -- RECORD_AGGREGATE | EXTENSION_AGGREGATE | ARRAY_AGGREGATE
2935
2936 -----------------------------
2937 -- 4.3.1 Record Aggregate --
2938 -----------------------------
2939
2940 -- RECORD_AGGREGATE ::= (RECORD_COMPONENT_ASSOCIATION_LIST)
2941
2942 -- N_Aggregate
2943 -- Sloc points to left parenthesis
2944 -- Expressions (List1) (set to No_List if none or null record case)
2945 -- Component_Associations (List2) (set to No_List if none)
2946 -- Null_Record_Present (Flag17)
2947 -- Aggregate_Bounds (Node3-Sem)
2948 -- Associated_Node (Node4-Sem)
2949 -- Static_Processing_OK (Flag4-Sem)
2950 -- Compile_Time_Known_Aggregate (Flag18-Sem)
2951 -- Expansion_Delayed (Flag11-Sem)
2952 -- plus fields for expression
2953
2954 -- Note: this structure is used for both record and array aggregates
2955 -- since the two cases are not separable by the parser. The parser
2956 -- makes no attempt to enforce consistency here, so it is up to the
2957 -- semantic phase to make sure that the aggregate is consistent (i.e.
2958 -- that it is not a "half-and-half" case that mixes record and array
2959 -- syntax. In particular, for a record aggregate, the expressions
2960 -- field will be set if there are positional associations.
2961
2962 -- Note: gigi/gcc can handle array aggregates correctly providing that
2963 -- they are entirely positional, and the array subtype involved has a
2964 -- known at compile time length and is not bit packed, or a convention
2965 -- Fortran array with more than one dimension. If these conditions
2966 -- are not met, then the front end must translate the aggregate into
2967 -- an appropriate set of assignments into a temporary.
2968
2969 -- Note: for the record aggregate case, gigi/gcc can handle all cases
2970 -- of record aggregates, including those for packed, and rep-claused
2971 -- records, and also variant records, providing that there are no
2972 -- variable length fields whose size is not known at runtime, and
2973 -- providing that the aggregate is presented in fully named form.
2974
2975 ----------------------------------------------
2976 -- 4.3.1 Record Component Association List --
2977 ----------------------------------------------
2978
2979 -- RECORD_COMPONENT_ASSOCIATION_LIST ::=
2980 -- RECORD_COMPONENT_ASSOCIATION {, RECORD_COMPONENT_ASSOCIATION}
2981 -- | null record
2982
2983 -- There is no explicit node in the tree for a record component
2984 -- association list. Instead the Null_Record_Present flag is set in
2985 -- the parent node for the NULL RECORD case.
2986
2987 ------------------------------------------------------
2988 -- 4.3.1 Record Component Association (also 4.3.3) --
2989 ------------------------------------------------------
2990
2991 -- RECORD_COMPONENT_ASSOCIATION ::=
2992 -- [COMPONENT_CHOICE_LIST =>] EXPRESSION
2993
2994 -- N_Component_Association
2995 -- Sloc points to first selector name
2996 -- Choices (List1)
2997 -- Loop_Actions (List2-Sem)
2998 -- Expression (Node3)
2999
3000 -- Note: this structure is used for both record component associations
3001 -- and array component associations, since the two cases aren't always
3002 -- separable by the parser. The choices list may represent either a
3003 -- list of selector names in the record aggregate case, or a list of
3004 -- discrete choices in the array aggregate case or an N_Others_Choice
3005 -- node (which appears as a singleton list).
3006
3007 ------------------------------------
3008 -- 4.3.1 Commponent Choice List --
3009 ------------------------------------
3010
3011 -- COMPONENT_CHOICE_LIST ::=
3012 -- component_SELECTOR_NAME {| component_SELECTOR_NAME}
3013 -- | others
3014
3015 -- The entries of a component choice list appear in the Choices list
3016 -- of the associated N_Component_Association, as either selector
3017 -- names, or as an N_Others_Choice node.
3018
3019 --------------------------------
3020 -- 4.3.2 Extension Aggregate --
3021 --------------------------------
3022
3023 -- EXTENSION_AGGREGATE ::=
3024 -- (ANCESTOR_PART with RECORD_COMPONENT_ASSOCIATION_LIST)
3025
3026 -- Note: extension aggregates are not permitted in Ada 83 mode
3027
3028 -- N_Extension_Aggregate
3029 -- Sloc points to left parenthesis
3030 -- Ancestor_Part (Node3)
3031 -- Associated_Node (Node4-Sem)
3032 -- Expressions (List1) (set to No_List if none or null record case)
3033 -- Component_Associations (List2) (set to No_List if none)
3034 -- Null_Record_Present (Flag17)
3035 -- Expansion_Delayed (Flag11-Sem)
3036 -- plus fields for expression
3037
3038 --------------------------
3039 -- 4.3.2 Ancestor Part --
3040 --------------------------
3041
3042 -- ANCESTOR_PART ::= EXPRESSION | SUBTYPE_MARK
3043
3044 ----------------------------
3045 -- 4.3.3 Array Aggregate --
3046 ----------------------------
3047
3048 -- ARRAY_AGGREGATE ::=
3049 -- POSITIONAL_ARRAY_AGGREGATE | NAMED_ARRAY_AGGREGATE
3050
3051 ---------------------------------------
3052 -- 4.3.3 Positional Array Aggregate --
3053 ---------------------------------------
3054
3055 -- POSITIONAL_ARRAY_AGGREGATE ::=
3056 -- (EXPRESSION, EXPRESSION {, EXPRESSION})
3057 -- | (EXPRESSION {, EXPRESSION}, others => EXPRESSION)
3058
3059 -- See Record_Aggregate (4.3.1) for node structure
3060
3061 ----------------------------------
3062 -- 4.3.3 Named Array Aggregate --
3063 ----------------------------------
3064
3065 -- NAMED_ARRAY_AGGREGATE ::=
3066 -- | (ARRAY_COMPONENT_ASSOCIATION {, ARRAY_COMPONENT_ASSOCIATION})
3067
3068 -- See Record_Aggregate (4.3.1) for node structure
3069
3070 ----------------------------------------
3071 -- 4.3.3 Array Component Association --
3072 ----------------------------------------
3073
3074 -- ARRAY_COMPONENT_ASSOCIATION ::=
3075 -- DISCRETE_CHOICE_LIST => EXPRESSION
3076
3077 -- See Record_Component_Association (4.3.1) for node structure
3078
3079 --------------------------------------------------
3080 -- 4.4 Expression/Relation/Term/Factor/Primary --
3081 --------------------------------------------------
3082
3083 -- EXPRESSION ::=
3084 -- RELATION {and RELATION} | RELATION {and then RELATION}
3085 -- | RELATION {or RELATION} | RELATION {or else RELATION}
3086 -- | RELATION {xor RELATION}
3087
3088 -- RELATION ::=
3089 -- SIMPLE_EXPRESSION [RELATIONAL_OPERATOR SIMPLE_EXPRESSION]
3090 -- | SIMPLE_EXPRESSION [not] in RANGE
3091 -- | SIMPLE_EXPRESSION [not] in SUBTYPE_MARK
3092
3093 -- SIMPLE_EXPRESSION ::=
3094 -- [UNARY_ADDING_OPERATOR] TERM {BINARY_ADDING_OPERATOR TERM}
3095
3096 -- TERM ::= FACTOR {MULTIPLYING_OPERATOR FACTOR}
3097
3098 -- FACTOR ::= PRIMARY [** PRIMARY] | abs PRIMARY | not PRIMARY
3099
3100 -- No nodes are generated for any of these constructs. Instead, the
3101 -- node for the operator appears directly. When we refer to an
3102 -- expression in this description, we mean any of the possible
3103 -- consistuent components of an expression (e.g. identifier is
3104 -- an example of an expression).
3105
3106 ------------------
3107 -- 4.4 Primary --
3108 ------------------
3109
3110 -- PRIMARY ::=
3111 -- NUMERIC_LITERAL | null
3112 -- | STRING_LITERAL | AGGREGATE
3113 -- | NAME | QUALIFIED_EXPRESSION
3114 -- | ALLOCATOR | (EXPRESSION)
3115
3116 -- Usually there is no explicit node in the tree for primary. Instead
3117 -- the constituent (e.g. AGGREGATE) appears directly. There are two
3118 -- exceptions. First, there is an explicit node for a null primary.
3119
3120 -- N_Null
3121 -- Sloc points to NULL
3122 -- plus fields for expression
3123
3124 -- Second, the case of (EXPRESSION) is handled specially. Ada requires
3125 -- that the parser keep track of which subexpressions are enclosed
3126 -- in parentheses, and how many levels of parentheses are used. This
3127 -- information is required for optimization purposes, and also for
3128 -- some semantic checks (e.g. (((1))) in a procedure spec does not
3129 -- conform with ((((1)))) in the body).
3130
3131 -- The parentheses are recorded by keeping a Paren_Count field in every
3132 -- subexpression node (it is actually present in all nodes, but only
3133 -- used in subexpression nodes). This count records the number of
3134 -- levels of parentheses. If the number of levels in the source exceeds
3135 -- the maximum accomodated by this count, then the count is simply left
3136 -- at the maximum value. This means that there are some pathalogical
3137 -- cases of failure to detect conformance failures (e.g. an expression
3138 -- with 500 levels of parens will conform with one with 501 levels),
3139 -- but we do not need to lose sleep over this.
3140
3141 -- Historical note: in versions of GNAT prior to 1.75, there was a node
3142 -- type N_Parenthesized_Expression used to accurately record unlimited
3143 -- numbers of levels of parentheses. However, it turned out to be a
3144 -- real nuisance to have to take into account the possible presence of
3145 -- this node during semantic analysis, since basically parentheses have
3146 -- zero relevance to semantic analysis.
3147
3148 -- Note: the level of parentheses always present in things like
3149 -- aggregates does not count, only the parentheses in the primary
3150 -- (EXPRESSION) affect the setting of the Paren_Count field.
3151
3152 -- 2nd Note: the contents of the Expression field must be ignored (i.e.
3153 -- treated as though it were Empty) if No_Initialization is set True.
3154
3155 --------------------------------------
3156 -- 4.5 Short Circuit Control Forms --
3157 --------------------------------------
3158
3159 -- EXPRESSION ::=
3160 -- RELATION {and then RELATION} | RELATION {or else RELATION}
3161
3162 -- Gigi restriction: For both these control forms, the operand and
3163 -- result types are always Standard.Boolean. The expander inserts the
3164 -- required conversion operations where needed to ensure this is the
3165 -- case.
3166
3167 -- N_And_Then
3168 -- Sloc points to AND of AND THEN
3169 -- Left_Opnd (Node2)
3170 -- Right_Opnd (Node3)
3171 -- Actions (List1-Sem)
3172 -- plus fields for expression
3173
3174 -- N_Or_Else
3175 -- Sloc points to OR of OR ELSE
3176 -- Left_Opnd (Node2)
3177 -- Right_Opnd (Node3)
3178 -- Actions (List1-Sem)
3179 -- plus fields for expression
3180
3181 -- Note: The Actions field is used to hold actions associated with
3182 -- the right hand operand. These have to be treated specially since
3183 -- they are not unconditionally executed. See Insert_Actions for a
3184 -- more detailed description of how these actions are handled.
3185
3186 ---------------------------
3187 -- 4.5 Membership Tests --
3188 ---------------------------
3189
3190 -- RELATION ::=
3191 -- SIMPLE_EXPRESSION [not] in RANGE
3192 -- | SIMPLE_EXPRESSION [not] in SUBTYPE_MARK
3193
3194 -- Note: although the grammar above allows only a range or a
3195 -- subtype mark, the parser in fact will accept any simple
3196 -- expression in place of a subtype mark. This means that the
3197 -- semantic analyzer must be prepared to deal with, and diagnose
3198 -- a simple expression other than a name for the right operand.
3199 -- This simplifies error recovery in the parser.
3200
3201 -- N_In
3202 -- Sloc points to IN
3203 -- Left_Opnd (Node2)
3204 -- Right_Opnd (Node3)
3205 -- plus fields for expression
3206
3207 -- N_Not_In
3208 -- Sloc points to NOT of NOT IN
3209 -- Left_Opnd (Node2)
3210 -- Right_Opnd (Node3)
3211 -- plus fields for expression
3212
3213 --------------------
3214 -- 4.5 Operators --
3215 --------------------
3216
3217 -- LOGICAL_OPERATOR ::= and | or | xor
3218
3219 -- RELATIONAL_OPERATOR ::= = | /= | < | <= | > | >=
3220
3221 -- BINARY_ADDING_OPERATOR ::= + | - | &
3222
3223 -- UNARY_ADDING_OPERATOR ::= + | -
3224
3225 -- MULTIPLYING_OPERATOR ::= * | / | mod | rem
3226
3227 -- HIGHEST_PRECEDENCE_OPERATOR ::= ** | abs | not
3228
3229 -- Sprint syntax if Treat_Fixed_As_Integer is set:
3230
3231 -- x #* y
3232 -- x #/ y
3233 -- x #mod y
3234 -- x #rem y
3235
3236 -- Gigi restriction: For * / mod rem with fixed-point operands, Gigi
3237 -- will only be given nodes with the Treat_Fixed_As_Integer flag set.
3238 -- All handling of smalls for multiplication and division is handled
3239 -- by the front end (mod and rem result only from expansion). Gigi
3240 -- thus never needs to worry about small values (for other operators
3241 -- operating on fixed-point, e.g. addition, the small value does not
3242 -- have any semantic effect anyway, these are always integer operations.
3243
3244 -- Gigi restriction: For all operators taking Boolean operands, the
3245 -- type is always Standard.Boolean. The expander inserts the required
3246 -- conversion operations where needed to ensure this is the case.
3247
3248 -- N_Op_And
3249 -- Sloc points to AND
3250 -- Do_Length_Check (Flag4-Sem)
3251 -- plus fields for binary operator
3252 -- plus fields for expression
3253
3254 -- N_Op_Or
3255 -- Sloc points to OR
3256 -- Do_Length_Check (Flag4-Sem)
3257 -- plus fields for binary operator
3258 -- plus fields for expression
3259
3260 -- N_Op_Xor
3261 -- Sloc points to XOR
3262 -- Do_Length_Check (Flag4-Sem)
3263 -- plus fields for binary operator
3264 -- plus fields for expression
3265
3266 -- N_Op_Eq
3267 -- Sloc points to =
3268 -- plus fields for binary operator
3269 -- plus fields for expression
3270
3271 -- N_Op_Ne
3272 -- Sloc points to /=
3273 -- plus fields for binary operator
3274 -- plus fields for expression
3275
3276 -- N_Op_Lt
3277 -- Sloc points to <
3278 -- plus fields for binary operator
3279 -- plus fields for expression
3280
3281 -- N_Op_Le
3282 -- Sloc points to <=
3283 -- plus fields for binary operator
3284 -- plus fields for expression
3285
3286 -- N_Op_Gt
3287 -- Sloc points to >
3288 -- plus fields for binary operator
3289 -- plus fields for expression
3290
3291 -- N_Op_Ge
3292 -- Sloc points to >=
3293 -- plus fields for binary operator
3294 -- plus fields for expression
3295
3296 -- N_Op_Add
3297 -- Sloc points to + (binary)
3298 -- plus fields for binary operator
3299 -- plus fields for expression
3300
3301 -- N_Op_Subtract
3302 -- Sloc points to - (binary)
3303 -- plus fields for binary operator
3304 -- plus fields for expression
3305
3306 -- N_Op_Concat
3307 -- Sloc points to &
3308 -- Is_Component_Left_Opnd (Flag13-Sem)
3309 -- Is_Component_Right_Opnd (Flag14-Sem)
3310 -- plus fields for binary operator
3311 -- plus fields for expression
3312
3313 -- N_Op_Multiply
3314 -- Sloc points to *
3315 -- Treat_Fixed_As_Integer (Flag14-Sem)
3316 -- Rounded_Result (Flag18-Sem)
3317 -- plus fields for binary operator
3318 -- plus fields for expression
3319
3320 -- N_Op_Divide
3321 -- Sloc points to /
3322 -- Treat_Fixed_As_Integer (Flag14-Sem)
3323 -- Do_Division_Check (Flag13-Sem)
3324 -- Rounded_Result (Flag18-Sem)
3325 -- plus fields for binary operator
3326 -- plus fields for expression
3327
3328 -- N_Op_Mod
3329 -- Sloc points to MOD
3330 -- Treat_Fixed_As_Integer (Flag14-Sem)
3331 -- Do_Division_Check (Flag13-Sem)
3332 -- plus fields for binary operator
3333 -- plus fields for expression
3334
3335 -- N_Op_Rem
3336 -- Sloc points to REM
3337 -- Treat_Fixed_As_Integer (Flag14-Sem)
3338 -- Do_Division_Check (Flag13-Sem)
3339 -- plus fields for binary operator
3340 -- plus fields for expression
3341
3342 -- N_Op_Expon
3343 -- Is_Power_Of_2_For_Shift (Flag13-Sem)
3344 -- Sloc points to **
3345 -- plus fields for binary operator
3346 -- plus fields for expression
3347
3348 -- N_Op_Plus
3349 -- Sloc points to + (unary)
3350 -- plus fields for unary operator
3351 -- plus fields for expression
3352
3353 -- N_Op_Minus
3354 -- Sloc points to - (unary)
3355 -- plus fields for unary operator
3356 -- plus fields for expression
3357
3358 -- N_Op_Abs
3359 -- Sloc points to ABS
3360 -- plus fields for unary operator
3361 -- plus fields for expression
3362
3363 -- N_Op_Not
3364 -- Sloc points to NOT
3365 -- plus fields for unary operator
3366 -- plus fields for expression
3367
3368 -- See also shift operators in section B.2
3369
3370 -- Note on fixed-point operations passed to Gigi: For adding operators,
3371 -- the semantics is to treat these simply as integer operations, with
3372 -- the small values being ignored (the bounds are already stored in
3373 -- units of small, so that constraint checking works as usual). For the
3374 -- case of multiply/divide/rem/mod operations, Gigi will only see fixed
3375 -- point operands if the Treat_Fixed_As_Integer flag is set and will
3376 -- thus treat these nodes in identical manner, ignoring small values.
3377
3378 --------------------------
3379 -- 4.6 Type Conversion --
3380 --------------------------
3381
3382 -- TYPE_CONVERSION ::=
3383 -- SUBTYPE_MARK (EXPRESSION) | SUBTYPE_MARK (NAME)
3384
3385 -- In the (NAME) case, the name is stored as the expression
3386
3387 -- Note: the parser never generates a type conversion node, since it
3388 -- looks like an indexed component which is generated by preference.
3389 -- The semantic pass must correct this misidentification.
3390
3391 -- Gigi handles conversions that involve no change in the root type,
3392 -- and also all conversions from integer to floating-point types.
3393 -- Conversions from floating-point to integer are only handled in
3394 -- the case where Float_Truncate flag set. Other conversions from
3395 -- floating-point to integer (involving rounding) and all conversions
3396 -- involving fixed-point types are handled by the expander.
3397
3398 -- Sprint syntax if Float_Truncate set: X^(Y)
3399 -- Sprint syntax if Conversion_OK set X?(Y)
3400 -- Sprint syntax if both flags set X?^(Y)
3401
3402 -- Note: If either the operand or result type is fixed-point, Gigi will
3403 -- only see a type conversion node with Conversion_OK set. The front end
3404 -- takes care of all handling of small's for fixed-point conversions.
3405
3406 -- N_Type_Conversion
3407 -- Sloc points to first token of subtype mark
3408 -- Subtype_Mark (Node4)
3409 -- Expression (Node3)
3410 -- Do_Tag_Check (Flag13-Sem)
3411 -- Do_Length_Check (Flag4-Sem)
3412 -- Do_Overflow_Check (Flag17-Sem)
3413 -- Float_Truncate (Flag11-Sem)
3414 -- Rounded_Result (Flag18-Sem)
3415 -- Conversion_OK (Flag14-Sem)
3416 -- plus fields for expression
3417
3418 -- Note: if a range check is required, then the Do_Range_Check flag
3419 -- is set in the Expression with the check being done against the
3420 -- target type range (after the base type conversion, if any).
3421
3422 -------------------------------
3423 -- 4.7 Qualified Expression --
3424 -------------------------------
3425
3426 -- QUALIFIED_EXPRESSION ::=
3427 -- SUBTYPE_MARK ' (EXPRESSION) | SUBTYPE_MARK ' AGGREGATE
3428
3429 -- Note: the parentheses in the (EXPRESSION) case are deemed to enclose
3430 -- the expression, so the Expression field of this node always points
3431 -- to a parenthesized expression in this case (i.e. Paren_Count will
3432 -- always be non-zero for the referenced expression if it is not an
3433 -- aggregate).
3434
3435 -- N_Qualified_Expression
3436 -- Sloc points to apostrophe
3437 -- Subtype_Mark (Node4)
3438 -- Expression (Node3) expression or aggregate
3439 -- plus fields for expression
3440
3441 --------------------
3442 -- 4.8 Allocator --
3443 --------------------
3444
3445 -- ALLOCATOR ::=
3446 -- new SUBTYPE_INDICATION | new QUALIFIED_EXPRESSION
3447
3448 -- Sprint syntax (when storage pool present)
3449 -- new xxx (storage_pool = pool)
3450
3451 -- N_Allocator
3452 -- Sloc points to NEW
3453 -- Expression (Node3) subtype indication or qualified expression
3454 -- Storage_Pool (Node1-Sem)
3455 -- Procedure_To_Call (Node4-Sem)
3456 -- No_Initialization (Flag13-Sem)
3457 -- Do_Storage_Check (Flag17-Sem)
3458 -- plus fields for expression
3459
3460 ---------------------------------
3461 -- 5.1 Sequence Of Statements --
3462 ---------------------------------
3463
3464 -- SEQUENCE_OF_STATEMENTS ::= STATEMENT {STATEMENT}
3465
3466 -- Note: Although the parser will not accept a declaration as a
3467 -- statement, the semantic analyzer may insert declarations (e.g.
3468 -- declarations of implicit types needed for execution of other
3469 -- statements) into a sequence of statements, so the code genmerator
3470 -- should be prepared to accept a declaration where a statement is
3471 -- expected. Note also that pragmas can appear as statements.
3472
3473 --------------------
3474 -- 5.1 Statement --
3475 --------------------
3476
3477 -- STATEMENT ::=
3478 -- {LABEL} SIMPLE_STATEMENT | {LABEL} COMPOUND_STATEMENT
3479
3480 -- There is no explicit node in the tree for a statement. Instead, the
3481 -- individual statement appears directly. Labels are treated as a
3482 -- kind of statement, i.e. they are linked into a statement list at
3483 -- the point they appear, so the labeled statement appears following
3484 -- the label or labels in the statement list.
3485
3486 ---------------------------
3487 -- 5.1 Simple Statement --
3488 ---------------------------
3489
3490 -- SIMPLE_STATEMENT ::= NULL_STATEMENT
3491 -- | ASSIGNMENT_STATEMENT | EXIT_STATEMENT
3492 -- | GOTO_STATEMENT | PROCEDURE_CALL_STATEMENT
3493 -- | RETURN_STATEMENT | ENTRY_CALL_STATEMENT
3494 -- | REQUEUE_STATEMENT | DELAY_STATEMENT
3495 -- | ABORT_STATEMENT | RAISE_STATEMENT
3496 -- | CODE_STATEMENT
3497
3498 -----------------------------
3499 -- 5.1 Compound Statement --
3500 -----------------------------
3501
3502 -- COMPOUND_STATEMENT ::=
3503 -- IF_STATEMENT | CASE_STATEMENT
3504 -- | LOOP_STATEMENT | BLOCK_STATEMENT
3505 -- | ACCEPT_STATEMENT | SELECT_STATEMENT
3506
3507 -------------------------
3508 -- 5.1 Null Statement --
3509 -------------------------
3510
3511 -- NULL_STATEMENT ::= null;
3512
3513 -- N_Null_Statement
3514 -- Sloc points to NULL
3515
3516 ----------------
3517 -- 5.1 Label --
3518 ----------------
3519
3520 -- LABEL ::= <<label_STATEMENT_IDENTIFIER>>
3521
3522 -- Note that the occurrence of a label is not a defining identifier,
3523 -- but rather a referencing occurrence. The defining occurrence is
3524 -- in the implicit label declaration which occurs in the innermost
3525 -- enclosing block.
3526
3527 -- N_Label
3528 -- Sloc points to <<
3529 -- Identifier (Node1) direct name of statement identifier
3530 -- Exception_Junk (Flag11-Sem)
3531
3532 -------------------------------
3533 -- 5.1 Statement Identifier --
3534 -------------------------------
3535
3536 -- STATEMENT_INDENTIFIER ::= DIRECT_NAME
3537
3538 -- The IDENTIFIER of a STATEMENT_IDENTIFIER shall be an identifier
3539 -- (not an OPERATOR_SYMBOL)
3540
3541 -------------------------------
3542 -- 5.2 Assignment Statement --
3543 -------------------------------
3544
3545 -- ASSIGNMENT_STATEMENT ::=
3546 -- variable_NAME := EXPRESSION;
3547
3548 -- N_Assignment_Statement
3549 -- Sloc points to :=
3550 -- Name (Node2)
3551 -- Expression (Node3)
3552 -- Do_Tag_Check (Flag13-Sem)
3553 -- Do_Length_Check (Flag4-Sem)
3554 -- Forwards_OK (Flag5-Sem)
3555 -- Backwards_OK (Flag6-Sem)
3556 -- No_Ctrl_Actions (Flag7-Sem)
3557
3558 -- Note: if a range check is required, then the Do_Range_Check flag
3559 -- is set in the Expression (right hand side), with the check being
3560 -- done against the type of the Name (left hand side).
3561
3562 -- Note: the back end places some restrictions on the form of the
3563 -- Expression field. If the object being assigned to is Atomic, then
3564 -- the Expression may not have the form of an aggregate (since this
3565 -- might cause the back end to generate separate assignments). It
3566 -- also cannot be a reference to an object marked as a true constant
3567 -- (Is_True_Constant flag set), where the object is itself initalized
3568 -- with an aggregate. If necessary the front end must generate an
3569 -- extra temporary (with Is_True_Constant set False), and initialize
3570 -- this temporary as required (the temporary itself is not atomic).
3571
3572 -----------------------
3573 -- 5.3 If Statement --
3574 -----------------------
3575
3576 -- IF_STATEMENT ::=
3577 -- if CONDITION then
3578 -- SEQUENCE_OF_STATEMENTS
3579 -- {elsif CONDITION then
3580 -- SEQUENCE_OF_STATEMENTS}
3581 -- [else
3582 -- SEQUENCE_OF_STATEMENTS]
3583 -- end if;
3584
3585 -- Gigi restriction: This expander ensures that the type of the
3586 -- Condition fields is always Standard.Boolean, even if the type
3587 -- in the source is some non-standard boolean type.
3588
3589 -- N_If_Statement
3590 -- Sloc points to IF
3591 -- Condition (Node1)
3592 -- Then_Statements (List2)
3593 -- Elsif_Parts (List3) (set to No_List if none present)
3594 -- Else_Statements (List4) (set to No_List if no else part present)
3595 -- End_Span (Uint5) (set to No_Uint if expander generated)
3596
3597 -- N_Elsif_Part
3598 -- Sloc points to ELSIF
3599 -- Condition (Node1)
3600 -- Then_Statements (List2)
3601 -- Condition_Actions (List3-Sem)
3602
3603 --------------------
3604 -- 5.3 Condition --
3605 --------------------
3606
3607 -- CONDITION ::= boolean_EXPRESSION
3608
3609 -------------------------
3610 -- 5.4 Case Statement --
3611 -------------------------
3612
3613 -- CASE_STATEMENT ::=
3614 -- case EXPRESSION is
3615 -- CASE_STATEMENT_ALTERNATIVE
3616 -- {CASE_STATEMENT_ALTERNATIVE}
3617 -- end case;
3618
3619 -- Note: the Alternatives can contain pragmas. These only occur at
3620 -- the start of the list, since any pragmas occurring after the first
3621 -- alternative are absorbed into the corresponding statement sequence.
3622
3623 -- N_Case_Statement
3624 -- Sloc points to CASE
3625 -- Expression (Node3)
3626 -- Alternatives (List4)
3627 -- End_Span (Uint5) (set to No_Uint if expander generated)
3628
3629 -------------------------------------
3630 -- 5.4 Case Statement Alternative --
3631 -------------------------------------
3632
3633 -- CASE_STATEMENT_ALTERNATIVE ::=
3634 -- when DISCRETE_CHOICE_LIST =>
3635 -- SEQUENCE_OF_STATEMENTS
3636
3637 -- N_Case_Statement_Alternative
3638 -- Sloc points to WHEN
3639 -- Discrete_Choices (List4)
3640 -- Statements (List3)
3641
3642 -------------------------
3643 -- 5.5 Loop Statement --
3644 -------------------------
3645
3646 -- LOOP_STATEMENT ::=
3647 -- [loop_STATEMENT_IDENTIFIER :]
3648 -- [ITERATION_SCHEME] loop
3649 -- SEQUENCE_OF_STATEMENTS
3650 -- end loop [loop_IDENTIFIER];
3651
3652 -- Note: The occurrence of a loop label is not a defining identifier
3653 -- but rather a referencing occurrence. The defining occurrence is in
3654 -- the implicit label declaration which occurs in the innermost
3655 -- enclosing block.
3656
3657 -- Note: there is always a loop statement identifier present in
3658 -- the tree, even if none was given in the source. In the case where
3659 -- no loop identifier is given in the source, the parser creates
3660 -- a name of the form _Loop_n, where n is a decimal integer (the
3661 -- two underlines ensure that the loop names created in this manner
3662 -- do not conflict with any user defined identifiers), and the flag
3663 -- Has_Created_Identifier is set to True. The only exception to the
3664 -- rule that all loop statement nodes have identifiers occurs for
3665 -- loops constructed by the expander, and the semantic analyzer will
3666 -- create and supply dummy loop identifiers in these cases.
3667
3668 -- N_Loop_Statement
3669 -- Sloc points to LOOP
3670 -- Identifier (Node1) loop identifier (set to Empty if no identifier)
3671 -- Iteration_Scheme (Node2) (set to Empty if no iteration scheme)
3672 -- Statements (List3)
3673 -- End_Label (Node4)
3674 -- Has_Created_Identifier (Flag15)
3675 -- Is_Null_Loop (Flag16)
3676
3677 --------------------------
3678 -- 5.5 Iteration Scheme --
3679 --------------------------
3680
3681 -- ITERATION_SCHEME ::=
3682 -- while CONDITION | for LOOP_PARAMETER_SPECIFICATION
3683
3684 -- Gigi restriction: This expander ensures that the type of the
3685 -- Condition field is always Standard.Boolean, even if the type
3686 -- in the source is some non-standard boolean type.
3687
3688 -- N_Iteration_Scheme
3689 -- Sloc points to WHILE or FOR
3690 -- Condition (Node1) (set to Empty if FOR case)
3691 -- Condition_Actions (List3-Sem)
3692 -- Loop_Parameter_Specification (Node4) (set to Empty if WHILE case)
3693
3694 ---------------------------------------
3695 -- 5.5 Loop parameter specification --
3696 ---------------------------------------
3697
3698 -- LOOP_PARAMETER_SPECIFICATION ::=
3699 -- DEFINING_IDENTIFIER in [reverse] DISCRETE_SUBTYPE_DEFINITION
3700
3701 -- N_Loop_Parameter_Specification
3702 -- Sloc points to first identifier
3703 -- Defining_Identifier (Node1)
3704 -- Reverse_Present (Flag15)
3705 -- Discrete_Subtype_Definition (Node4)
3706
3707 --------------------------
3708 -- 5.6 Block Statement --
3709 --------------------------
3710
3711 -- BLOCK_STATEMENT ::=
3712 -- [block_STATEMENT_IDENTIFIER:]
3713 -- [declare
3714 -- DECLARATIVE_PART]
3715 -- begin
3716 -- HANDLED_SEQUENCE_OF_STATEMENTS
3717 -- end [block_IDENTIFIER];
3718
3719 -- Note that the occurrence of a block identifier is not a defining
3720 -- identifier, but rather a referencing occurrence. The defining
3721 -- occurrence is in the implicit label declaration which occurs in
3722 -- the innermost enclosing block.
3723
3724 -- Note: there is always a block statement identifier present in
3725 -- the tree, even if none was given in the source. In the case where
3726 -- no block identifier is given in the source, the parser creates
3727 -- a name of the form _Block_n, where n is a decimal integer (the
3728 -- two underlines ensure that the block names created in this manner
3729 -- do not conflict with any user defined identifiers), and the flag
3730 -- Has_Created_Identifier is set to True. The only exception to the
3731 -- rule that all loop statement nodes have identifiers occurs for
3732 -- blocks constructed by the expander, and the semantic analyzer
3733 -- creates and supplies dummy names for the blocks).
3734
3735 -- N_Block_Statement
3736 -- Sloc points to DECLARE or BEGIN
3737 -- Identifier (Node1) block direct name (set to Empty if not present)
3738 -- Declarations (List2) (set to No_List if no DECLARE part)
3739 -- Handled_Statement_Sequence (Node4)
3740 -- Is_Task_Master (Flag5-Sem)
3741 -- Activation_Chain_Entity (Node3-Sem)
3742 -- Has_Created_Identifier (Flag15)
3743 -- Is_Task_Allocation_Block (Flag6)
3744 -- Is_Asynchronous_Call_Block (Flag7)
3745
3746 -------------------------
3747 -- 5.7 Exit Statement --
3748 -------------------------
3749
3750 -- EXIT_STATEMENT ::= exit [loop_NAME] [when CONDITION];
3751
3752 -- Gigi restriction: This expander ensures that the type of the
3753 -- Condition field is always Standard.Boolean, even if the type
3754 -- in the source is some non-standard boolean type.
3755
3756 -- N_Exit_Statement
3757 -- Sloc points to EXIT
3758 -- Name (Node2) (set to Empty if no loop name present)
3759 -- Condition (Node1) (set to Empty if no when part present)
3760
3761 -------------------------
3762 -- 5.9 Goto Statement --
3763 -------------------------
3764
3765 -- GOTO_STATEMENT ::= goto label_NAME;
3766
3767 -- N_Goto_Statement
3768 -- Sloc points to GOTO
3769 -- Name (Node2)
3770 -- Exception_Junk (Flag11-Sem)
3771
3772 ---------------------------------
3773 -- 6.1 Subprogram Declaration --
3774 ---------------------------------
3775
3776 -- SUBPROGRAM_DECLARATION ::= SUBPROGRAM_SPECIFICATION;
3777
3778 -- N_Subprogram_Declaration
3779 -- Sloc points to FUNCTION or PROCEDURE
3780 -- Specification (Node1)
3781 -- Body_To_Inline (Node3-Sem)
3782 -- Corresponding_Body (Node5-Sem)
3783 -- Parent_Spec (Node4-Sem)
3784
3785 ------------------------------------------
3786 -- 6.1 Abstract Subprogram Declaration --
3787 ------------------------------------------
3788
3789 -- ABSTRACT_SUBPROGRAM_DECLARATION ::=
3790 -- SUBPROGRAM_SPECIFICATION is abstract;
3791
3792 -- N_Abstract_Subprogram_Declaration
3793 -- Sloc points to ABSTRACT
3794 -- Specification (Node1)
3795
3796 -----------------------------------
3797 -- 6.1 Subprogram Specification --
3798 -----------------------------------
3799
3800 -- SUBPROGRAM_SPECIFICATION ::=
3801 -- procedure DEFINING_PROGRAM_UNIT_NAME PARAMETER_PROFILE
3802 -- | function DEFINING_DESIGNATOR PARAMETER_AND_RESULT_PROFILE
3803
3804 -- Note: there are no separate nodes for the profiles, instead the
3805 -- information appears directly in the following nodes.
3806
3807 -- N_Function_Specification
3808 -- Sloc points to FUNCTION
3809 -- Defining_Unit_Name (Node1) (the designator)
3810 -- Elaboration_Boolean (Node2-Sem)
3811 -- Parameter_Specifications (List3) (set to No_List if no formal part)
3812 -- Subtype_Mark (Node4) for return type
3813 -- Generic_Parent (Node5-Sem)
3814
3815 -- N_Procedure_Specification
3816 -- Sloc points to PROCEDURE
3817 -- Defining_Unit_Name (Node1)
3818 -- Elaboration_Boolean (Node2-Sem)
3819 -- Parameter_Specifications (List3) (set to No_List if no formal part)
3820 -- Generic_Parent (Node5-Sem)
3821
3822 ---------------------
3823 -- 6.1 Designator --
3824 ---------------------
3825
3826 -- DESIGNATOR ::=
3827 -- [PARENT_UNIT_NAME .] IDENTIFIER | OPERATOR_SYMBOL
3828
3829 -- Designators that are simply identifiers or operator symbols appear
3830 -- directly in the tree in this form. The following node is used only
3831 -- in the case where the designator has a parent unit name component.
3832
3833 -- N_Designator
3834 -- Sloc points to period
3835 -- Name (Node2) holds the parent unit name. Note that this is always
3836 -- non-Empty, since this node is only used for the case where a
3837 -- parent library unit package name is present.
3838 -- Identifier (Node1)
3839
3840 -- Note that the identifier can also be an operator symbol here.
3841
3842 ------------------------------
3843 -- 6.1 Defining Designator --
3844 ------------------------------
3845
3846 -- DEFINING_DESIGNATOR ::=
3847 -- DEFINING_PROGRAM_UNIT_NAME | DEFINING_OPERATOR_SYMBOL
3848
3849 -------------------------------------
3850 -- 6.1 Defining Program Unit Name --
3851 -------------------------------------
3852
3853 -- DEFINING_PROGRAM_UNIT_NAME ::=
3854 -- [PARENT_UNIT_NAME .] DEFINING_IDENTIFIER
3855
3856 -- The parent unit name is present only in the case of a child unit
3857 -- name (permissible only for Ada 95 for a library level unit, i.e.
3858 -- a unit at scope level one). If no such name is present, the defining
3859 -- program unit name is represented simply as the defining identifier.
3860 -- In the child unit case, the following node is used to represent the
3861 -- child unit name.
3862
3863 -- N_Defining_Program_Unit_Name
3864 -- Sloc points to period
3865 -- Name (Node2) holds the parent unit name. Note that this is always
3866 -- non-Empty, since this node is only used for the case where a
3867 -- parent unit name is present.
3868 -- Defining_Identifier (Node1)
3869
3870 --------------------------
3871 -- 6.1 Operator Symbol --
3872 --------------------------
3873
3874 -- OPERATOR_SYMBOL ::= STRING_LITERAL
3875
3876 -- Note: the fields of the N_Operator_Symbol node are laid out to
3877 -- match the corresponding fields of an N_Character_Literal node. This
3878 -- allows easy conversion of the operator symbol node into a character
3879 -- literal node in the case where a string constant of the form of an
3880 -- operator symbol is scanned out as such, but turns out semantically
3881 -- to be a string literal that is not an operator. For details see
3882 -- Sinfo.CN.Change_Operator_Symbol_To_String_Literal.
3883
3884 -- N_Operator_Symbol
3885 -- Sloc points to literal
3886 -- Chars (Name1) contains the Name_Id for the operator symbol
3887 -- Strval (Str3) Id of string value. This is used if the operator
3888 -- symbol turns out to be a normal string after all.
3889 -- Entity (Node4-Sem)
3890 -- Associated_Node (Node4-Sem)
3891 -- Has_Private_View (Flag11-Sem) set in generic units.
3892 -- Etype (Node5-Sem)
3893
3894 -- Note: the Strval field may be set to No_String for generated
3895 -- operator symbols that are known not to be string literals
3896 -- semantically.
3897
3898 -----------------------------------
3899 -- 6.1 Defining Operator Symbol --
3900 -----------------------------------
3901
3902 -- DEFINING_OPERATOR_SYMBOL ::= OPERATOR_SYMBOL
3903
3904 -- A defining operator symbol is an entity, which has additional
3905 -- fields depending on the setting of the Ekind field. These
3906 -- additional fields are defined (and access subprograms declared)
3907 -- in package Einfo.
3908
3909 -- Note: N_Defining_Operator_Symbol is an extended node whose fields
3910 -- are deliberately layed out to match the layout of fields in an
3911 -- ordinary N_Operator_Symbol node allowing for easy alteration of
3912 -- an operator symbol node into a defining operator symbol node.
3913 -- See Sinfo.CN.Change_Operator_Symbol_To_Defining_Operator_Symbol
3914 -- for further details.
3915
3916 -- N_Defining_Operator_Symbol
3917 -- Sloc points to literal
3918 -- Chars (Name1) contains the Name_Id for the operator symbol
3919 -- Next_Entity (Node2-Sem)
3920 -- Scope (Node3-Sem)
3921 -- Etype (Node5-Sem)
3922
3923 ----------------------------
3924 -- 6.1 Parameter Profile --
3925 ----------------------------
3926
3927 -- PARAMETER_PROFILE ::= [FORMAL_PART]
3928
3929 ---------------------------------------
3930 -- 6.1 Parameter and Result Profile --
3931 ---------------------------------------
3932
3933 -- PARAMETER_AND_RESULT_PROFILE ::= [FORMAL_PART] return SUBTYPE_MARK
3934
3935 -- There is no explicit node in the tree for a parameter and result
3936 -- profile. Instead the information appears directly in the parent.
3937
3938 ----------------------
3939 -- 6.1 Formal part --
3940 ----------------------
3941
3942 -- FORMAL_PART ::=
3943 -- (PARAMETER_SPECIFICATION {; PARAMETER_SPECIFICATION})
3944
3945 ----------------------------------
3946 -- 6.1 Parameter specification --
3947 ----------------------------------
3948
3949 -- PARAMETER_SPECIFICATION ::=
3950 -- DEFINING_IDENTIFIER_LIST : MODE SUBTYPE_MARK
3951 -- [:= DEFAULT_EXPRESSION]
3952 -- | DEFINING_IDENTIFIER_LIST : ACCESS_DEFINITION
3953 -- [:= DEFAULT_EXPRESSION]
3954
3955 -- Although the syntax allows multiple identifiers in the list, the
3956 -- semantics is as though successive specifications were given with
3957 -- identical type definition and expression components. To simplify
3958 -- semantic processing, the parser represents a multiple declaration
3959 -- case as a sequence of single Specifications, using the More_Ids and
3960 -- Prev_Ids flags to preserve the original source form as described
3961 -- in the section on "Handling of Defining Identifier Lists".
3962
3963 -- N_Parameter_Specification
3964 -- Sloc points to first identifier
3965 -- Defining_Identifier (Node1)
3966 -- In_Present (Flag15)
3967 -- Out_Present (Flag17)
3968 -- Parameter_Type (Node2) subtype mark or access definition
3969 -- Expression (Node3) (set to Empty if no default expression present)
3970 -- Do_Accessibility_Check (Flag13-Sem)
3971 -- More_Ids (Flag5) (set to False if no more identifiers in list)
3972 -- Prev_Ids (Flag6) (set to False if no previous identifiers in list)
3973 -- Default_Expression (Node5-Sem)
3974
3975 ---------------
3976 -- 6.1 Mode --
3977 ---------------
3978
3979 -- MODE ::= [in] | in out | out
3980
3981 -- There is no explicit node in the tree for the Mode. Instead the
3982 -- In_Present and Out_Present flags are set in the parent node to
3983 -- record the presence of keywords specifying the mode.
3984
3985 --------------------------
3986 -- 6.3 Subprogram Body --
3987 --------------------------
3988
3989 -- SUBPROGRAM_BODY ::=
3990 -- SUBPROGRAM_SPECIFICATION is
3991 -- DECLARATIVE_PART
3992 -- begin
3993 -- HANDLED_SEQUENCE_OF_STATEMENTS
3994 -- end [DESIGNATOR];
3995
3996 -- N_Subprogram_Body
3997 -- Sloc points to FUNCTION or PROCEDURE
3998 -- Specification (Node1)
3999 -- Declarations (List2)
4000 -- Handled_Statement_Sequence (Node4)
4001 -- Activation_Chain_Entity (Node3-Sem)
4002 -- Corresponding_Spec (Node5-Sem)
4003 -- Acts_As_Spec (Flag4-Sem)
4004 -- Bad_Is_Detected (Flag15) used only by parser
4005 -- Do_Storage_Check (Flag17-Sem)
4006 -- Has_Priority_Pragma (Flag6-Sem)
4007 -- Is_Protected_Subprogram_Body (Flag7-Sem)
4008 -- Is_Task_Master (Flag5-Sem)
4009 -- Was_Originally_Stub (Flag13-Sem)
4010
4011 -----------------------------------
4012 -- 6.4 Procedure Call Statement --
4013 -----------------------------------
4014
4015 -- PROCEDURE_CALL_STATEMENT ::=
4016 -- procedure_NAME; | procedure_PREFIX ACTUAL_PARAMETER_PART;
4017
4018 -- Note: the reason that a procedure call has expression fields is
4019 -- that it semantically resembles an expression, e.g. overloading is
4020 -- allowed and a type is concocted for semantic processing purposes.
4021 -- Certain of these fields, such as Parens are not relevant, but it
4022 -- is easier to just supply all of them together!
4023
4024 -- N_Procedure_Call_Statement
4025 -- Sloc points to first token of name or prefix
4026 -- Name (Node2) stores name or prefix
4027 -- Parameter_Associations (List3) (set to No_List if no
4028 -- actual parameter part)
4029 -- First_Named_Actual (Node4-Sem)
4030 -- Controlling_Argument (Node1-Sem) (set to Empty if not dispatching)
4031 -- Do_Tag_Check (Flag13-Sem)
4032 -- Parameter_List_Truncated (Flag17-Sem)
4033 -- ABE_Is_Certain (Flag18-Sem)
4034 -- plus fields for expression
4035
4036 -- If any IN parameter requires a range check, then the corresponding
4037 -- argument expression has the Do_Range_Check flag set, and the range
4038 -- check is done against the formal type. Note that this argument
4039 -- expression may appear directly in the Parameter_Associations list,
4040 -- or may be a descendent of an N_Parameter_Association node that
4041 -- appears in this list.
4042
4043 ------------------------
4044 -- 6.4 Function Call --
4045 ------------------------
4046
4047 -- FUNCTION_CALL ::=
4048 -- function_NAME | function_PREFIX ACTUAL_PARAMETER_PART
4049
4050 -- Note: the parser may generate an indexed component node or simply
4051 -- a name node instead of a function call node. The semantic pass must
4052 -- correct this misidentification.
4053
4054 -- N_Function_Call
4055 -- Sloc points to first token of name or prefix
4056 -- Name (Node2) stores name or prefix
4057 -- Parameter_Associations (List3) (set to No_List if no
4058 -- actual parameter part)
4059 -- First_Named_Actual (Node4-Sem)
4060 -- Controlling_Argument (Node1-Sem) (set to Empty if not dispatching)
4061 -- Do_Tag_Check (Flag13-Sem)
4062 -- Parameter_List_Truncated (Flag17-Sem)
4063 -- ABE_Is_Certain (Flag18-Sem)
4064 -- plus fields for expression
4065
4066 --------------------------------
4067 -- 6.4 Actual Parameter Part --
4068 --------------------------------
4069
4070 -- ACTUAL_PARAMETER_PART ::=
4071 -- (PARAMETER_ASSOCIATION {,PARAMETER_ASSOCIATION})
4072
4073 --------------------------------
4074 -- 6.4 Parameter Association --
4075 --------------------------------
4076
4077 -- PARAMETER_ASSOCIATION ::=
4078 -- [formal_parameter_SELECTOR_NAME =>] EXPLICIT_ACTUAL_PARAMETER
4079
4080 -- Note: the N_Parameter_Association node is built only if a formal
4081 -- parameter selector name is present, otherwise the parameter
4082 -- association appears in the tree simply as the node for the
4083 -- explicit actual parameter.
4084
4085 -- N_Parameter_Association
4086 -- Sloc points to formal parameter
4087 -- Selector_Name (Node2) (always non-Empty, since this node is
4088 -- only used if a formal parameter selector name is present)
4089 -- Explicit_Actual_Parameter (Node3)
4090 -- Next_Named_Actual (Node4-Sem)
4091
4092 ---------------------------
4093 -- 6.4 Actual Parameter --
4094 ---------------------------
4095
4096 -- EXPLICIT_ACTUAL_PARAMETER ::= EXPRESSION | variable_NAME
4097
4098 ---------------------------
4099 -- 6.5 Return Statement --
4100 ---------------------------
4101
4102 -- RETURN_STATEMENT ::= return [EXPRESSION];
4103
4104 -- N_Return_Statement
4105 -- Sloc points to RETURN
4106 -- Expression (Node3) (set to Empty if no expression present)
4107 -- Storage_Pool (Node1-Sem)
4108 -- Procedure_To_Call (Node4-Sem)
4109 -- Do_Tag_Check (Flag13-Sem)
4110 -- Return_Type (Node2-Sem)
4111 -- By_Ref (Flag5-Sem)
4112
4113 -- Note: if a range check is required, then Do_Range_Check is set
4114 -- on the Expression. The range check is against Return_Type.
4115
4116 ------------------------------
4117 -- 7.1 Package Declaration --
4118 ------------------------------
4119
4120 -- PACKAGE_DECLARATION ::= PACKAGE_SPECIFICATION;
4121
4122 -- Note: the activation chain entity for a package spec is used for
4123 -- all tasks declared in the package spec, or in the package body.
4124
4125 -- N_Package_Declaration
4126 -- Sloc points to PACKAGE
4127 -- Specification (Node1)
4128 -- Corresponding_Body (Node5-Sem)
4129 -- Parent_Spec (Node4-Sem)
4130 -- Activation_Chain_Entity (Node3-Sem)
4131
4132 --------------------------------
4133 -- 7.1 Package Specification --
4134 --------------------------------
4135
4136 -- PACKAGE_SPECIFICATION ::=
4137 -- package DEFINING_PROGRAM_UNIT_NAME is
4138 -- {BASIC_DECLARATIVE_ITEM}
4139 -- [private
4140 -- {BASIC_DECLARATIVE_ITEM}]
4141 -- end [[PARENT_UNIT_NAME .] IDENTIFIER]
4142
4143 -- N_Package_Specification
4144 -- Sloc points to PACKAGE
4145 -- Defining_Unit_Name (Node1)
4146 -- Visible_Declarations (List2)
4147 -- Private_Declarations (List3) (set to No_List if no private
4148 -- part present)
4149 -- End_Label (Node4)
4150 -- Generic_Parent (Node5-Sem)
4151 -- Limited_View_Installed (Flag18-Sem)
4152
4153 -----------------------
4154 -- 7.1 Package Body --
4155 -----------------------
4156
4157 -- PACKAGE_BODY ::=
4158 -- package body DEFINING_PROGRAM_UNIT_NAME is
4159 -- DECLARATIVE_PART
4160 -- [begin
4161 -- HANDLED_SEQUENCE_OF_STATEMENTS]
4162 -- end [[PARENT_UNIT_NAME .] IDENTIFIER];
4163
4164 -- N_Package_Body
4165 -- Sloc points to PACKAGE
4166 -- Defining_Unit_Name (Node1)
4167 -- Declarations (List2)
4168 -- Handled_Statement_Sequence (Node4) (set to Empty if no HSS present)
4169 -- Corresponding_Spec (Node5-Sem)
4170 -- Was_Originally_Stub (Flag13-Sem)
4171
4172 -- Note: if a source level package does not contain a handled sequence
4173 -- of statements, then the parser supplies a dummy one with a null
4174 -- sequence of statements. Comes_From_Source will be False in this
4175 -- constructed sequence. The reason we need this is for the End_Label
4176 -- field in the HSS.
4177
4178 -----------------------------------
4179 -- 7.4 Private Type Declaration --
4180 -----------------------------------
4181
4182 -- PRIVATE_TYPE_DECLARATION ::=
4183 -- type DEFINING_IDENTIFIER [DISCRIMINANT_PART]
4184 -- is [[abstract] tagged] [limited] private;
4185
4186 -- Note: TAGGED is not permitted in Ada 83 mode
4187
4188 -- N_Private_Type_Declaration
4189 -- Sloc points to TYPE
4190 -- Defining_Identifier (Node1)
4191 -- Discriminant_Specifications (List4) (set to No_List if no
4192 -- discriminant part)
4193 -- Unknown_Discriminants_Present (Flag13) set if (<>) discriminant
4194 -- Abstract_Present (Flag4)
4195 -- Tagged_Present (Flag15)
4196 -- Limited_Present (Flag17)
4197
4198 ----------------------------------------
4199 -- 7.4 Private Extension Declaration --
4200 ----------------------------------------
4201
4202 -- PRIVATE_EXTENSION_DECLARATION ::=
4203 -- type DEFINING_IDENTIFIER [DISCRIMINANT_PART] is
4204 -- [abstract] new ancestor_SUBTYPE_INDICATION with private;
4205
4206 -- Note: private extension declarations are not allowed in Ada 83 mode
4207
4208 -- N_Private_Extension_Declaration
4209 -- Sloc points to TYPE
4210 -- Defining_Identifier (Node1)
4211 -- Discriminant_Specifications (List4) (set to No_List if no
4212 -- discriminant part)
4213 -- Unknown_Discriminants_Present (Flag13) set if (<>) discriminant
4214 -- Abstract_Present (Flag4)
4215 -- Subtype_Indication (Node5)
4216
4217 ---------------------
4218 -- 8.4 Use Clause --
4219 ---------------------
4220
4221 -- USE_CLAUSE ::= USE_PACKAGE_CLAUSE | USE_TYPE_CLAUSE
4222
4223 -----------------------------
4224 -- 8.4 Use Package Clause --
4225 -----------------------------
4226
4227 -- USE_PACKAGE_CLAUSE ::= use package_NAME {, package_NAME};
4228
4229 -- N_Use_Package_Clause
4230 -- Sloc points to USE
4231 -- Names (List2)
4232 -- Next_Use_Clause (Node3-Sem)
4233 -- Hidden_By_Use_Clause (Elist4-Sem)
4234
4235 --------------------------
4236 -- 8.4 Use Type Clause --
4237 --------------------------
4238
4239 -- USE_TYPE_CLAUSE ::= use type SUBTYPE_MARK {, SUBTYPE_MARK};
4240
4241 -- Note: use type clause is not permitted in Ada 83 mode
4242
4243 -- N_Use_Type_Clause
4244 -- Sloc points to USE
4245 -- Subtype_Marks (List2)
4246 -- Next_Use_Clause (Node3-Sem)
4247 -- Hidden_By_Use_Clause (Elist4-Sem)
4248
4249 -------------------------------
4250 -- 8.5 Renaming Declaration --
4251 -------------------------------
4252
4253 -- RENAMING_DECLARATION ::=
4254 -- OBJECT_RENAMING_DECLARATION
4255 -- | EXCEPTION_RENAMING_DECLARATION
4256 -- | PACKAGE_RENAMING_DECLARATION
4257 -- | SUBPROGRAM_RENAMING_DECLARATION
4258 -- | GENERIC_RENAMING_DECLARATION
4259
4260 --------------------------------------
4261 -- 8.5 Object Renaming Declaration --
4262 --------------------------------------
4263
4264 -- OBJECT_RENAMING_DECLARATION ::=
4265 -- DEFINING_IDENTIFIER : SUBTYPE_MARK renames object_NAME;
4266
4267 -- N_Object_Renaming_Declaration
4268 -- Sloc points to first identifier
4269 -- Defining_Identifier (Node1)
4270 -- Subtype_Mark (Node4)
4271 -- Name (Node2)
4272 -- Corresponding_Generic_Association (Node5-Sem)
4273
4274 -----------------------------------------
4275 -- 8.5 Exception Renaming Declaration --
4276 -----------------------------------------
4277
4278 -- EXCEPTION_RENAMING_DECLARATION ::=
4279 -- DEFINING_IDENTIFIER : exception renames exception_NAME;
4280
4281 -- N_Exception_Renaming_Declaration
4282 -- Sloc points to first identifier
4283 -- Defining_Identifier (Node1)
4284 -- Name (Node2)
4285
4286 ---------------------------------------
4287 -- 8.5 Package Renaming Declaration --
4288 ---------------------------------------
4289
4290 -- PACKAGE_RENAMING_DECLARATION ::=
4291 -- package DEFINING_PROGRAM_UNIT_NAME renames package_NAME;
4292
4293 -- N_Package_Renaming_Declaration
4294 -- Sloc points to PACKAGE
4295 -- Defining_Unit_Name (Node1)
4296 -- Name (Node2)
4297 -- Parent_Spec (Node4-Sem)
4298
4299 ------------------------------------------
4300 -- 8.5 Subprogram Renaming Declaration --
4301 ------------------------------------------
4302
4303 -- SUBPROGRAM_RENAMING_DECLARATION ::=
4304 -- SUBPROGRAM_SPECIFICATION renames callable_entity_NAME;
4305
4306 -- N_Subprogram_Renaming_Declaration
4307 -- Sloc points to RENAMES
4308 -- Specification (Node1)
4309 -- Name (Node2)
4310 -- Parent_Spec (Node4-Sem)
4311 -- Corresponding_Spec (Node5-Sem)
4312
4313 -----------------------------------------
4314 -- 8.5.5 Generic Renaming Declaration --
4315 -----------------------------------------
4316
4317 -- GENERIC_RENAMING_DECLARATION ::=
4318 -- generic package DEFINING_PROGRAM_UNIT_NAME
4319 -- renames generic_package_NAME
4320 -- | generic procedure DEFINING_PROGRAM_UNIT_NAME
4321 -- renames generic_procedure_NAME
4322 -- | generic function DEFINING_PROGRAM_UNIT_NAME
4323 -- renames generic_function_NAME
4324
4325 -- N_Generic_Package_Renaming_Declaration
4326 -- Sloc points to GENERIC
4327 -- Defining_Unit_Name (Node1)
4328 -- Name (Node2)
4329 -- Parent_Spec (Node4-Sem)
4330
4331 -- N_Generic_Procedure_Renaming_Declaration
4332 -- Sloc points to GENERIC
4333 -- Defining_Unit_Name (Node1)
4334 -- Name (Node2)
4335 -- Parent_Spec (Node4-Sem)
4336
4337 -- N_Generic_Function_Renaming_Declaration
4338 -- Sloc points to GENERIC
4339 -- Defining_Unit_Name (Node1)
4340 -- Name (Node2)
4341 -- Parent_Spec (Node4-Sem)
4342
4343 --------------------------------
4344 -- 9.1 Task Type Declaration --
4345 --------------------------------
4346
4347 -- TASK_TYPE_DECLARATION ::=
4348 -- task type DEFINING_IDENTIFIER [KNOWN_DISCRIMINANT_PART]
4349 -- [is TASK_DEFINITITION];
4350
4351 -- N_Task_Type_Declaration
4352 -- Sloc points to TASK
4353 -- Defining_Identifier (Node1)
4354 -- Task_Body_Procedure (Node2-Sem)
4355 -- Discriminant_Specifications (List4) (set to No_List if no
4356 -- discriminant part)
4357 -- Task_Definition (Node3) (set to Empty if not present)
4358 -- Corresponding_Body (Node5-Sem)
4359
4360 ----------------------------------
4361 -- 9.1 Single Task Declaration --
4362 ----------------------------------
4363
4364 -- SINGLE_TASK_DECLARATION ::=
4365 -- task DEFINING_IDENTIFIER [is TASK_DEFINITION];
4366
4367 -- N_Single_Task_Declaration
4368 -- Sloc points to TASK
4369 -- Defining_Identifier (Node1)
4370 -- Task_Definition (Node3) (set to Empty if not present)
4371
4372 --------------------------
4373 -- 9.1 Task Definition --
4374 --------------------------
4375
4376 -- TASK_DEFINITION ::=
4377 -- {TASK_ITEM}
4378 -- [private
4379 -- {TASK_ITEM}]
4380 -- end [task_IDENTIFIER]
4381
4382 -- Note: as a result of semantic analysis, the list of task items can
4383 -- include implicit type declarations resulting from entry families.
4384
4385 -- N_Task_Definition
4386 -- Sloc points to first token of task definition
4387 -- Visible_Declarations (List2)
4388 -- Private_Declarations (List3) (set to No_List if no private part)
4389 -- End_Label (Node4)
4390 -- Has_Priority_Pragma (Flag6-Sem)
4391 -- Has_Storage_Size_Pragma (Flag5-Sem)
4392 -- Has_Task_Info_Pragma (Flag7-Sem)
4393 -- Has_Task_Name_Pragma (Flag8-Sem)
4394
4395 --------------------
4396 -- 9.1 Task Item --
4397 --------------------
4398
4399 -- TASK_ITEM ::= ENTRY_DECLARATION | REPRESENTATION_CLAUSE
4400
4401 --------------------
4402 -- 9.1 Task Body --
4403 --------------------
4404
4405 -- TASK_BODY ::=
4406 -- task body task_DEFINING_IDENTIFIER is
4407 -- DECLARATIVE_PART
4408 -- begin
4409 -- HANDLED_SEQUENCE_OF_STATEMENTS
4410 -- end [task_IDENTIFIER];
4411
4412 -- Gigi restriction: This node never appears.
4413
4414 -- N_Task_Body
4415 -- Sloc points to TASK
4416 -- Defining_Identifier (Node1)
4417 -- Declarations (List2)
4418 -- Handled_Statement_Sequence (Node4)
4419 -- Is_Task_Master (Flag5-Sem)
4420 -- Activation_Chain_Entity (Node3-Sem)
4421 -- Corresponding_Spec (Node5-Sem)
4422 -- Was_Originally_Stub (Flag13-Sem)
4423
4424 -------------------------------------
4425 -- 9.4 Protected Type Declaration --
4426 -------------------------------------
4427
4428 -- PROTECTED_TYPE_DECLARATION ::=
4429 -- protected type DEFINING_IDENTIFIER [KNOWN_DISCRIMINANT_PART]
4430 -- is PROTECTED_DEFINITION;
4431
4432 -- Note: protected type declarations are not permitted in Ada 83 mode
4433
4434 -- N_Protected_Type_Declaration
4435 -- Sloc points to PROTECTED
4436 -- Defining_Identifier (Node1)
4437 -- Discriminant_Specifications (List4) (set to No_List if no
4438 -- discriminant part)
4439 -- Protected_Definition (Node3)
4440 -- Corresponding_Body (Node5-Sem)
4441
4442 ---------------------------------------
4443 -- 9.4 Single Protected Declaration --
4444 ---------------------------------------
4445
4446 -- SINGLE_PROTECTED_DECLARATION ::=
4447 -- protected DEFINING_IDENTIFIER is PROTECTED_DEFINITION;
4448
4449 -- Note: single protected declarations are not allowed in Ada 83 mode
4450
4451 -- N_Single_Protected_Declaration
4452 -- Sloc points to PROTECTED
4453 -- Defining_Identifier (Node1)
4454 -- Protected_Definition (Node3)
4455
4456 -------------------------------
4457 -- 9.4 Protected Definition --
4458 -------------------------------
4459
4460 -- PROTECTED_DEFINITION ::=
4461 -- {PROTECTED_OPERATION_DECLARATION}
4462 -- [private
4463 -- {PROTECTED_ELEMENT_DECLARATION}]
4464 -- end [protected_IDENTIFIER]
4465
4466 -- N_Protected_Definition
4467 -- Sloc points to first token of protected definition
4468 -- Visible_Declarations (List2)
4469 -- Private_Declarations (List3) (set to No_List if no private part)
4470 -- End_Label (Node4)
4471 -- Has_Priority_Pragma (Flag6-Sem)
4472
4473 ------------------------------------------
4474 -- 9.4 Protected Operation Declaration --
4475 ------------------------------------------
4476
4477 -- PROTECTED_OPERATION_DECLARATION ::=
4478 -- SUBPROGRAM_DECLARATION
4479 -- | ENTRY_DECLARATION
4480 -- | REPRESENTATION_CLAUSE
4481
4482 ----------------------------------------
4483 -- 9.4 Protected Element Declaration --
4484 ----------------------------------------
4485
4486 -- PROTECTED_ELEMENT_DECLARATION ::=
4487 -- PROTECTED_OPERATION_DECLARATION | COMPONENT_DECLARATION
4488
4489 -------------------------
4490 -- 9.4 Protected Body --
4491 -------------------------
4492
4493 -- PROTECTED_BODY ::=
4494 -- protected body DEFINING_IDENTIFIER is
4495 -- {PROTECTED_OPERATION_ITEM}
4496 -- end [protected_IDENTIFIER];
4497
4498 -- Note: protected bodies are not allowed in Ada 83 mode
4499
4500 -- Gigi restriction: This node never appears.
4501
4502 -- N_Protected_Body
4503 -- Sloc points to PROTECTED
4504 -- Defining_Identifier (Node1)
4505 -- Declarations (List2) protected operation items (and pragmas)
4506 -- End_Label (Node4)
4507 -- Corresponding_Spec (Node5-Sem)
4508 -- Was_Originally_Stub (Flag13-Sem)
4509
4510 -----------------------------------
4511 -- 9.4 Protected Operation Item --
4512 -----------------------------------
4513
4514 -- PROTECTED_OPERATION_ITEM ::=
4515 -- SUBPROGRAM_DECLARATION
4516 -- | SUBPROGRAM_BODY
4517 -- | ENTRY_BODY
4518 -- | REPRESENTATION_CLAUSE
4519
4520 ------------------------------
4521 -- 9.5.2 Entry Declaration --
4522 ------------------------------
4523
4524 -- ENTRY_DECLARATION ::=
4525 -- entry DEFINING_IDENTIFIER
4526 -- [(DISCRETE_SUBTYPE_DEFINITION)] PARAMETER_PROFILE;
4527
4528 -- N_Entry_Declaration
4529 -- Sloc points to ENTRY
4530 -- Defining_Identifier (Node1)
4531 -- Discrete_Subtype_Definition (Node4) (set to Empty if not present)
4532 -- Parameter_Specifications (List3) (set to No_List if no formal part)
4533 -- Corresponding_Body (Node5-Sem)
4534
4535 -----------------------------
4536 -- 9.5.2 Accept statement --
4537 -----------------------------
4538
4539 -- ACCEPT_STATEMENT ::=
4540 -- accept entry_DIRECT_NAME
4541 -- [(ENTRY_INDEX)] PARAMETER_PROFILE [do
4542 -- HANDLED_SEQUENCE_OF_STATEMENTS
4543 -- end [entry_IDENTIFIER]];
4544
4545 -- Gigi restriction: This node never appears.
4546
4547 -- Note: there are no explicit declarations allowed in an accept
4548 -- statement. However, the implicit declarations for any statement
4549 -- identifiers (labels and block/loop identifiers) are declarations
4550 -- that belong logically to the accept statement, and that is why
4551 -- there is a Declarations field in this node.
4552
4553 -- N_Accept_Statement
4554 -- Sloc points to ACCEPT
4555 -- Entry_Direct_Name (Node1)
4556 -- Entry_Index (Node5) (set to Empty if not present)
4557 -- Parameter_Specifications (List3) (set to No_List if no formal part)
4558 -- Handled_Statement_Sequence (Node4)
4559 -- Declarations (List2) (set to No_List if no declarations)
4560
4561 ------------------------
4562 -- 9.5.2 Entry Index --
4563 ------------------------
4564
4565 -- ENTRY_INDEX ::= EXPRESSION
4566
4567 -----------------------
4568 -- 9.5.2 Entry Body --
4569 -----------------------
4570
4571 -- ENTRY_BODY ::=
4572 -- entry DEFINING_IDENTIFIER ENTRY_BODY_FORMAL_PART ENTRY_BARRIER is
4573 -- DECLARATIVE_PART
4574 -- begin
4575 -- HANDLED_SEQUENCE_OF_STATEMENTS
4576 -- end [entry_IDENTIFIER];
4577
4578 -- ENTRY_BARRIER ::= when CONDITION
4579
4580 -- Note: we store the CONDITION of the ENTRY_BARRIER in the node for
4581 -- the ENTRY_BODY_FORMAL_PART to avoid the N_Entry_Body node getting
4582 -- too full (it would otherwise have too many fields)
4583
4584 -- Gigi restriction: This node never appears.
4585
4586 -- N_Entry_Body
4587 -- Sloc points to ENTRY
4588 -- Defining_Identifier (Node1)
4589 -- Entry_Body_Formal_Part (Node5)
4590 -- Declarations (List2)
4591 -- Handled_Statement_Sequence (Node4)
4592 -- Activation_Chain_Entity (Node3-Sem)
4593
4594 -----------------------------------
4595 -- 9.5.2 Entry Body Formal Part --
4596 -----------------------------------
4597
4598 -- ENTRY_BODY_FORMAL_PART ::=
4599 -- [(ENTRY_INDEX_SPECIFICATION)] PARAMETER_PROFILE
4600
4601 -- Note that an entry body formal part node is present even if it is
4602 -- empty. This reflects the grammar, in which it is the components of
4603 -- the entry body formal part that are optional, not the entry body
4604 -- formal part itself. Also this means that the barrier condition
4605 -- always has somewhere to be stored.
4606
4607 -- Gigi restriction: This node never appears.
4608
4609 -- N_Entry_Body_Formal_Part
4610 -- Sloc points to first token
4611 -- Entry_Index_Specification (Node4) (set to Empty if not present)
4612 -- Parameter_Specifications (List3) (set to No_List if no formal part)
4613 -- Condition (Node1) from entry barrier of entry body
4614
4615 --------------------------
4616 -- 9.5.2 Entry Barrier --
4617 --------------------------
4618
4619 -- ENTRY_BARRIER ::= when CONDITION
4620
4621 --------------------------------------
4622 -- 9.5.2 Entry Index Specification --
4623 --------------------------------------
4624
4625 -- ENTRY_INDEX_SPECIFICATION ::=
4626 -- for DEFINING_IDENTIFIER in DISCRETE_SUBTYPE_DEFINITION
4627
4628 -- Gigi restriction: This node never appears.
4629
4630 -- N_Entry_Index_Specification
4631 -- Sloc points to FOR
4632 -- Defining_Identifier (Node1)
4633 -- Discrete_Subtype_Definition (Node4)
4634
4635 ---------------------------------
4636 -- 9.5.3 Entry Call Statement --
4637 ---------------------------------
4638
4639 -- ENTRY_CALL_STATEMENT ::= entry_NAME [ACTUAL_PARAMETER_PART];
4640
4641 -- The parser may generate a procedure call for this construct. The
4642 -- semantic pass must correct this misidentification where needed.
4643
4644 -- Gigi restriction: This node never appears.
4645
4646 -- N_Entry_Call_Statement
4647 -- Sloc points to first token of name
4648 -- Name (Node2)
4649 -- Parameter_Associations (List3) (set to No_List if no
4650 -- actual parameter part)
4651 -- First_Named_Actual (Node4-Sem)
4652
4653 ------------------------------
4654 -- 9.5.4 Requeue Statement --
4655 ------------------------------
4656
4657 -- REQUEUE_STATEMENT ::= requeue entry_NAME [with abort];
4658
4659 -- Note: requeue statements are not permitted in Ada 83 mode
4660
4661 -- Gigi restriction: This node never appears.
4662
4663 -- N_Requeue_Statement
4664 -- Sloc points to REQUEUE
4665 -- Name (Node2)
4666 -- Abort_Present (Flag15)
4667
4668 --------------------------
4669 -- 9.6 Delay Statement --
4670 --------------------------
4671
4672 -- DELAY_STATEMENT ::=
4673 -- DELAY_UNTIL_STATEMENT
4674 -- | DELAY_RELATIVE_STATEMENT
4675
4676 --------------------------------
4677 -- 9.6 Delay Until Statement --
4678 --------------------------------
4679
4680 -- DELAY_UNTIL_STATEMENT ::= delay until delay_EXPRESSION;
4681
4682 -- Note: delay until statements are not permitted in Ada 83 mode
4683
4684 -- Gigi restriction: This node never appears.
4685
4686 -- N_Delay_Until_Statement
4687 -- Sloc points to DELAY
4688 -- Expression (Node3)
4689
4690 -----------------------------------
4691 -- 9.6 Delay Relative Statement --
4692 -----------------------------------
4693
4694 -- DELAY_RELATIVE_STATEMENT ::= delay delay_EXPRESSION;
4695
4696 -- Gigi restriction: This node never appears.
4697
4698 -- N_Delay_Relative_Statement
4699 -- Sloc points to DELAY
4700 -- Expression (Node3)
4701
4702 ---------------------------
4703 -- 9.7 Select Statement --
4704 ---------------------------
4705
4706 -- SELECT_STATEMENT ::=
4707 -- SELECTIVE_ACCEPT
4708 -- | TIMED_ENTRY_CALL
4709 -- | CONDITIONAL_ENTRY_CALL
4710 -- | ASYNCHRONOUS_SELECT
4711
4712 -----------------------------
4713 -- 9.7.1 Selective Accept --
4714 -----------------------------
4715
4716 -- SELECTIVE_ACCEPT ::=
4717 -- select
4718 -- [GUARD]
4719 -- SELECT_ALTERNATIVE
4720 -- {or
4721 -- [GUARD]
4722 -- SELECT_ALTERNATIVE}
4723 -- [else
4724 -- SEQUENCE_OF_STATEMENTS]
4725 -- end select;
4726
4727 -- Gigi restriction: This node never appears.
4728
4729 -- Note: the guard expression, if present, appears in the node for
4730 -- the select alternative.
4731
4732 -- N_Selective_Accept
4733 -- Sloc points to SELECT
4734 -- Select_Alternatives (List1)
4735 -- Else_Statements (List4) (set to No_List if no else part)
4736
4737 ------------------
4738 -- 9.7.1 Guard --
4739 ------------------
4740
4741 -- GUARD ::= when CONDITION =>
4742
4743 -- As noted above, the CONDITION that is part of a GUARD is included
4744 -- in the node for the select alernative for convenience.
4745
4746 -------------------------------
4747 -- 9.7.1 Select Alternative --
4748 -------------------------------
4749
4750 -- SELECT_ALTERNATIVE ::=
4751 -- ACCEPT_ALTERNATIVE
4752 -- | DELAY_ALTERNATIVE
4753 -- | TERMINATE_ALTERNATIVE
4754
4755 -------------------------------
4756 -- 9.7.1 Accept Alternative --
4757 -------------------------------
4758
4759 -- ACCEPT_ALTERNATIVE ::=
4760 -- ACCEPT_STATEMENT [SEQUENCE_OF_STATEMENTS]
4761
4762 -- Gigi restriction: This node never appears.
4763
4764 -- N_Accept_Alternative
4765 -- Sloc points to ACCEPT
4766 -- Accept_Statement (Node2)
4767 -- Condition (Node1) from the guard (set to Empty if no guard present)
4768 -- Statements (List3) (set to Empty_List if no statements)
4769 -- Pragmas_Before (List4) pragmas before alt (set to No_List if none)
4770 -- Accept_Handler_Records (List5-Sem)
4771
4772 ------------------------------
4773 -- 9.7.1 Delay Alternative --
4774 ------------------------------
4775
4776 -- DELAY_ALTERNATIVE ::=
4777 -- DELAY_STATEMENT [SEQUENCE_OF_STATEMENTS]
4778
4779 -- Gigi restriction: This node never appears.
4780
4781 -- N_Delay_Alternative
4782 -- Sloc points to DELAY
4783 -- Delay_Statement (Node2)
4784 -- Condition (Node1) from the guard (set to Empty if no guard present)
4785 -- Statements (List3) (set to Empty_List if no statements)
4786 -- Pragmas_Before (List4) pragmas before alt (set to No_List if none)
4787
4788 ----------------------------------
4789 -- 9.7.1 Terminate Alternative --
4790 ----------------------------------
4791
4792 -- TERMINATE_ALTERNATIVE ::= terminate;
4793
4794 -- Gigi restriction: This node never appears.
4795
4796 -- N_Terminate_Alternative
4797 -- Sloc points to TERMINATE
4798 -- Condition (Node1) from the guard (set to Empty if no guard present)
4799 -- Pragmas_Before (List4) pragmas before alt (set to No_List if none)
4800 -- Pragmas_After (List5) pragmas after alt (set to No_List if none)
4801
4802 -----------------------------
4803 -- 9.7.2 Timed Entry Call --
4804 -----------------------------
4805
4806 -- TIMED_ENTRY_CALL ::=
4807 -- select
4808 -- ENTRY_CALL_ALTERNATIVE
4809 -- or
4810 -- DELAY_ALTERNATIVE
4811 -- end select;
4812
4813 -- Gigi restriction: This node never appears.
4814
4815 -- N_Timed_Entry_Call
4816 -- Sloc points to SELECT
4817 -- Entry_Call_Alternative (Node1)
4818 -- Delay_Alternative (Node4)
4819
4820 -----------------------------------
4821 -- 9.7.2 Entry Call Alternative --
4822 -----------------------------------
4823
4824 -- ENTRY_CALL_ALTERNATIVE ::=
4825 -- ENTRY_CALL_STATEMENT [SEQUENCE_OF_STATEMENTS]
4826
4827 -- Gigi restriction: This node never appears.
4828
4829 -- N_Entry_Call_Alternative
4830 -- Sloc points to first token of entry call statement
4831 -- Entry_Call_Statement (Node1)
4832 -- Statements (List3) (set to Empty_List if no statements)
4833 -- Pragmas_Before (List4) pragmas before alt (set to No_List if none)
4834
4835 -----------------------------------
4836 -- 9.7.3 Conditional Entry Call --
4837 -----------------------------------
4838
4839 -- CONDITIONAL_ENTRY_CALL ::=
4840 -- select
4841 -- ENTRY_CALL_ALTERNATIVE
4842 -- else
4843 -- SEQUENCE_OF_STATEMENTS
4844 -- end select;
4845
4846 -- Gigi restriction: This node never appears.
4847
4848 -- N_Conditional_Entry_Call
4849 -- Sloc points to SELECT
4850 -- Entry_Call_Alternative (Node1)
4851 -- Else_Statements (List4)
4852
4853 --------------------------------
4854 -- 9.7.4 Asynchronous Select --
4855 --------------------------------
4856
4857 -- ASYNCHRONOUS_SELECT ::=
4858 -- select
4859 -- TRIGGERING_ALTERNATIVE
4860 -- then abort
4861 -- ABORTABLE_PART
4862 -- end select;
4863
4864 -- Note: asynchronous select is not permitted in Ada 83 mode
4865
4866 -- Gigi restriction: This node never appears.
4867
4868 -- N_Asynchronous_Select
4869 -- Sloc points to SELECT
4870 -- Triggering_Alternative (Node1)
4871 -- Abortable_Part (Node2)
4872
4873 -----------------------------------
4874 -- 9.7.4 Triggering Alternative --
4875 -----------------------------------
4876
4877 -- TRIGGERING_ALTERNATIVE ::=
4878 -- TRIGGERING_STATEMENT [SEQUENCE_OF_STATEMENTS]
4879
4880 -- Gigi restriction: This node never appears.
4881
4882 -- N_Triggering_Alternative
4883 -- Sloc points to first token of triggering statement
4884 -- Triggering_Statement (Node1)
4885 -- Statements (List3) (set to Empty_List if no statements)
4886 -- Pragmas_Before (List4) pragmas before alt (set to No_List if none)
4887
4888 ---------------------------------
4889 -- 9.7.4 Triggering Statement --
4890 ---------------------------------
4891
4892 -- TRIGGERING_STATEMENT ::= ENTRY_CALL_STATEMENT | DELAY_STATEMENT
4893
4894 ---------------------------
4895 -- 9.7.4 Abortable Part --
4896 ---------------------------
4897
4898 -- ABORTABLE_PART ::= SEQUENCE_OF_STATEMENTS
4899
4900 -- Gigi restriction: This node never appears.
4901
4902 -- N_Abortable_Part
4903 -- Sloc points to ABORT
4904 -- Statements (List3)
4905
4906 --------------------------
4907 -- 9.8 Abort Statement --
4908 --------------------------
4909
4910 -- ABORT_STATEMENT ::= abort task_NAME {, task_NAME};
4911
4912 -- Gigi restriction: This node never appears.
4913
4914 -- N_Abort_Statement
4915 -- Sloc points to ABORT
4916 -- Names (List2)
4917
4918 -------------------------
4919 -- 10.1.1 Compilation --
4920 -------------------------
4921
4922 -- COMPILATION ::= {COMPILATION_UNIT}
4923
4924 -- There is no explicit node in the tree for a compilation, since in
4925 -- general the compiler is processing only a single compilation unit
4926 -- at a time. It is possible to parse multiple units in syntax check
4927 -- only mode, but they the trees are discarded in any case.
4928
4929 ------------------------------
4930 -- 10.1.1 Compilation Unit --
4931 ------------------------------
4932
4933 -- COMPILATION_UNIT ::=
4934 -- CONTEXT_CLAUSE LIBRARY_ITEM
4935 -- | CONTEXT_CLAUSE SUBUNIT
4936
4937 -- The N_Compilation_Unit node itself respresents the above syntax.
4938 -- However, there are two additional items not reflected in the above
4939 -- syntax. First we have the global declarations that are added by the
4940 -- code generator. These are outer level declarations (so they cannot
4941 -- be represented as being inside the units). An example is the wrapper
4942 -- subprograms that are created to do ABE checking. As always a list of
4943 -- declarations can contain actions as well (i.e. statements), and such
4944 -- statements are executed as part of the elaboration of the unit. Note
4945 -- that all such declarations are elaborated before the library unit.
4946
4947 -- Similarly, certain actions need to be elaborated at the completion
4948 -- of elaboration of the library unit (notably the statement that sets
4949 -- the Boolean flag indicating that elaboration is complete).
4950
4951 -- The third item not reflected in the syntax is pragmas that appear
4952 -- after the compilation unit. As always pragmas are a problem since
4953 -- they are not part of the formal syntax, but can be stuck into the
4954 -- source following a set of ad hoc rules, and we have to find an ad
4955 -- hoc way of sticking them into the tree. For pragmas that appear
4956 -- before the library unit, we just consider them to be part of the
4957 -- context clause, and pragmas can appear in the Context_Items list
4958 -- of the compilation unit. However, pragmas can also appear after
4959 -- the library item.
4960
4961 -- To deal with all these problems, we create an auxiliary node for
4962 -- a compilation unit, referenced from the N_Compilation_Unit node
4963 -- that contains these three items.
4964
4965 -- N_Compilation_Unit
4966 -- Sloc points to first token of defining unit name
4967 -- Library_Unit (Node4-Sem) corresponding/parent spec/body
4968 -- Context_Items (List1) context items and pragmas preceding unit
4969 -- Private_Present (Flag15) set if library unit has private keyword
4970 -- Unit (Node2) library item or subunit
4971 -- Aux_Decls_Node (Node5) points to the N_Compilation_Unit_Aux node
4972 -- Has_No_Elaboration_Code (Flag17-Sem)
4973 -- Body_Required (Flag13-Sem) set for spec if body is required
4974 -- Acts_As_Spec (Flag4-Sem) flag for subprogram body with no spec
4975 -- First_Inlined_Subprogram (Node3-Sem)
4976
4977 -- N_Compilation_Unit_Aux
4978 -- Sloc is a copy of the Sloc from the N_Compilation_Unit node
4979 -- Declarations (List2) (set to No_List if no global declarations)
4980 -- Actions (List1) (set to No_List if no actions)
4981 -- Pragmas_After (List5) pragmas after unit (set to No_List if none)
4982 -- Config_Pragmas (List4) config pragmas (set to Empty_List if none)
4983
4984 --------------------------
4985 -- 10.1.1 Library Item --
4986 --------------------------
4987
4988 -- LIBRARY_ITEM ::=
4989 -- [private] LIBRARY_UNIT_DECLARATION
4990 -- | LIBRARY_UNIT_BODY
4991 -- | [private] LIBRARY_UNIT_RENAMING_DECLARATION
4992
4993 -- Note: PRIVATE is not allowed in Ada 83 mode
4994
4995 -- There is no explicit node in the tree for library item, instead
4996 -- the declaration or body, and the flag for private if present,
4997 -- appear in the N_Compilation_Unit clause.
4998
4999 ----------------------------------------
5000 -- 10.1.1 Library Unit Declararation --
5001 ----------------------------------------
5002
5003 -- LIBRARY_UNIT_DECLARATION ::=
5004 -- SUBPROGRAM_DECLARATION | PACKAGE_DECLARATION
5005 -- | GENERIC_DECLARATION | GENERIC_INSTANTIATION
5006
5007 -------------------------------------------------
5008 -- 10.1.1 Library Unit Renaming Declararation --
5009 -------------------------------------------------
5010
5011 -- LIBRARY_UNIT_RENAMING_DECLARATION ::=
5012 -- PACKAGE_RENAMING_DECLARATION
5013 -- | GENERIC_RENAMING_DECLARATION
5014 -- | SUBPROGRAM_RENAMING_DECLARATION
5015
5016 -------------------------------
5017 -- 10.1.1 Library unit body --
5018 -------------------------------
5019
5020 -- LIBRARY_UNIT_BODY ::= SUBPROGRAM_BODY | PACKAGE_BODY
5021
5022 ------------------------------
5023 -- 10.1.1 Parent Unit Name --
5024 ------------------------------
5025
5026 -- PARENT_UNIT_NAME ::= NAME
5027
5028 ----------------------------
5029 -- 10.1.2 Context clause --
5030 ----------------------------
5031
5032 -- CONTEXT_CLAUSE ::= {CONTEXT_ITEM}
5033
5034 -- The context clause can include pragmas, and any pragmas that appear
5035 -- before the context clause proper (i.e. all configuration pragmas,
5036 -- also appear at the front of this list).
5037
5038 --------------------------
5039 -- 10.1.2 Context_Item --
5040 --------------------------
5041
5042 -- CONTEXT_ITEM ::= WITH_CLAUSE | USE_CLAUSE | WITH_TYPE_CLAUSE
5043
5044 -------------------------
5045 -- 10.1.2 With clause --
5046 -------------------------
5047
5048 -- WITH_CLAUSE ::=
5049 -- with library_unit_NAME {,library_unit_NAME};
5050
5051 -- A separate With clause is built for each name, so that we have
5052 -- a Corresponding_Spec field for each with'ed spec. The flags
5053 -- First_Name and Last_Name are used to reconstruct the exact
5054 -- source form. When a list of names appears in one with clause,
5055 -- the first name in the list has First_Name set, and the last
5056 -- has Last_Name set. If the with clause has only one name, then
5057 -- both of the flags First_Name and Last_Name are set in this name.
5058
5059 -- Note: in the case of implicit with's that are installed by the
5060 -- Rtsfind routine, Implicit_With is set, and the Sloc is typically
5061 -- set to Standard_Location, but it is incorrect to test the Sloc
5062 -- to find out if a with clause is implicit, test the flag instead.
5063
5064 -- N_With_Clause
5065 -- Sloc points to first token of library unit name
5066 -- Name (Node2)
5067 -- Library_Unit (Node4-Sem)
5068 -- Corresponding_Spec (Node5-Sem)
5069 -- First_Name (Flag5) (set to True if first name or only one name)
5070 -- Last_Name (Flag6) (set to True if last name or only one name)
5071 -- Context_Installed (Flag13-Sem)
5072 -- Elaborate_Present (Flag4-Sem)
5073 -- Elaborate_All_Present (Flag15-Sem)
5074 -- Implicit_With (Flag16-Sem)
5075 -- Limited_Present (Flag17) set if LIMITED is present
5076 -- Limited_View_Installed (Flag18-Sem)
5077 -- Unreferenced_In_Spec (Flag7-Sem)
5078 -- No_Entities_Ref_In_Spec (Flag8-Sem)
5079
5080 ----------------------
5081 -- With_Type clause --
5082 ----------------------
5083
5084 -- This is a GNAT extension, used to implement mutually recursive
5085 -- types declared in different packages.
5086
5087 -- WITH_TYPE_CLAUSE ::=
5088 -- with type type_NAME is access | with type type_NAME is tagged
5089
5090 -- N_With_Type_Clause
5091 -- Sloc points to first token of type name
5092 -- Name (Node2)
5093 -- Tagged_Present (Flag15)
5094
5095 ---------------------
5096 -- 10.2 Body stub --
5097 ---------------------
5098
5099 -- BODY_STUB ::=
5100 -- SUBPROGRAM_BODY_STUB
5101 -- | PACKAGE_BODY_STUB
5102 -- | TASK_BODY_STUB
5103 -- | PROTECTED_BODY_STUB
5104
5105 ----------------------------------
5106 -- 10.1.3 Subprogram Body Stub --
5107 ----------------------------------
5108
5109 -- SUBPROGRAM_BODY_STUB ::=
5110 -- SUBPROGRAM_SPECIFICATION is separate;
5111
5112 -- N_Subprogram_Body_Stub
5113 -- Sloc points to FUNCTION or PROCEDURE
5114 -- Specification (Node1)
5115 -- Library_Unit (Node4-Sem) points to the subunit
5116 -- Corresponding_Body (Node5-Sem)
5117
5118 -------------------------------
5119 -- 10.1.3 Package Body Stub --
5120 -------------------------------
5121
5122 -- PACKAGE_BODY_STUB ::=
5123 -- package body DEFINING_IDENTIFIER is separate;
5124
5125 -- N_Package_Body_Stub
5126 -- Sloc points to PACKAGE
5127 -- Defining_Identifier (Node1)
5128 -- Library_Unit (Node4-Sem) points to the subunit
5129 -- Corresponding_Body (Node5-Sem)
5130
5131 ----------------------------
5132 -- 10.1.3 Task Body Stub --
5133 ----------------------------
5134
5135 -- TASK_BODY_STUB ::=
5136 -- task body DEFINING_IDENTIFIER is separate;
5137
5138 -- N_Task_Body_Stub
5139 -- Sloc points to TASK
5140 -- Defining_Identifier (Node1)
5141 -- Library_Unit (Node4-Sem) points to the subunit
5142 -- Corresponding_Body (Node5-Sem)
5143
5144 ---------------------------------
5145 -- 10.1.3 Protected Body Stub --
5146 ---------------------------------
5147
5148 -- PROTECTED_BODY_STUB ::=
5149 -- protected body DEFINING_IDENTIFIER is separate;
5150
5151 -- Note: protected body stubs are not allowed in Ada 83 mode
5152
5153 -- N_Protected_Body_Stub
5154 -- Sloc points to PROTECTED
5155 -- Defining_Identifier (Node1)
5156 -- Library_Unit (Node4-Sem) points to the subunit
5157 -- Corresponding_Body (Node5-Sem)
5158
5159 ---------------------
5160 -- 10.1.3 Subunit --
5161 ---------------------
5162
5163 -- SUBUNIT ::= separate (PARENT_UNIT_NAME) PROPER_BODY
5164
5165 -- N_Subunit
5166 -- Sloc points to SEPARATE
5167 -- Name (Node2) is the name of the parent unit
5168 -- Proper_Body (Node1) is the subunit body
5169 -- Corresponding_Stub (Node3-Sem) is the stub declaration for the unit.
5170
5171 ---------------------------------
5172 -- 11.1 Exception Declaration --
5173 ---------------------------------
5174
5175 -- EXCEPTION_DECLARATION ::= DEFINING_IDENTIFIER_LIST : exception;
5176
5177 -- For consistency with object declarations etc, the parser converts
5178 -- the case of multiple identifiers being declared to a series of
5179 -- declarations in which the expression is copied, using the More_Ids
5180 -- and Prev_Ids flags to remember the souce form as described in the
5181 -- section on "Handling of Defining Identifier Lists".
5182
5183 -- N_Exception_Declaration
5184 -- Sloc points to EXCEPTION
5185 -- Defining_Identifier (Node1)
5186 -- Expression (Node3-Sem)
5187 -- More_Ids (Flag5) (set to False if no more identifiers in list)
5188 -- Prev_Ids (Flag6) (set to False if no previous identifiers in list)
5189
5190 ------------------------------------------
5191 -- 11.2 Handled Sequence Of Statements --
5192 ------------------------------------------
5193
5194 -- HANDLED_SEQUENCE_OF_STATEMENTS ::=
5195 -- SEQUENCE_OF_STATEMENTS
5196 -- [exception
5197 -- EXCEPTION_HANDLER
5198 -- {EXCEPTION_HANDLER}]
5199 -- [at end
5200 -- cleanup_procedure_call (param, param, param, ...);]
5201
5202 -- The AT END phrase is a GNAT extension to provide for cleanups. It is
5203 -- used only internally currently, but is considered to be syntactic.
5204 -- At the moment, the only cleanup action allowed is a single call to
5205 -- a parameterless procedure, and the Identifier field of the node is
5206 -- the procedure to be called. Also there is a current restriction
5207 -- that exception handles and a cleanup cannot be present in the same
5208 -- frame, so at least one of Exception_Handlers or the Identifier must
5209 -- be missing.
5210
5211 -- Actually, more accurately, this restriction applies to the original
5212 -- source program. In the expanded tree, if the At_End_Proc field is
5213 -- present, then there will also be an exception handler of the form:
5214
5215 -- when all others =>
5216 -- cleanup;
5217 -- raise;
5218
5219 -- where cleanup is the procedure to be generated. The reason we do
5220 -- this is so that the front end can handle the necessary entries in
5221 -- the exception tables, and other exception handler actions required
5222 -- as part of the normal handling for exception handlers.
5223
5224 -- The AT END cleanup handler protects only the sequence of statements
5225 -- (not the associated declarations of the parent), just like exception
5226 -- handlers. The big difference is that the cleanup procedure is called
5227 -- on either a normal or an abnormal exit from the statement sequence.
5228
5229 -- Note: the list of Exception_Handlers can contain pragmas as well
5230 -- as actual handlers. In practice these pragmas can only occur at
5231 -- the start of the list, since any pragmas occurring later on will
5232 -- be included in the statement list of the corresponding handler.
5233
5234 -- Note: although in the Ada syntax, the sequence of statements in
5235 -- a handled sequence of statements can only contain statements, we
5236 -- allow free mixing of declarations and statements in the resulting
5237 -- expanded tree. This is for example used to deal with the case of
5238 -- a cleanup procedure that must handle declarations as well as the
5239 -- statements of a block.
5240
5241 -- N_Handled_Sequence_Of_Statements
5242 -- Sloc points to first token of first statement
5243 -- Statements (List3)
5244 -- End_Label (Node4) (set to Empty if expander generated)
5245 -- Exception_Handlers (List5) (set to No_List if none present)
5246 -- At_End_Proc (Node1) (set to Empty if no clean up procedure)
5247 -- First_Real_Statement (Node2-Sem)
5248 -- Zero_Cost_Handling (Flag5-Sem)
5249
5250 -- Note: the parent always contains a Declarations field which contains
5251 -- declarations associated with the handled sequence of statements. This
5252 -- is true even in the case of an accept statement (see description of
5253 -- the N_Accept_Statement node).
5254
5255 -- End_Label refers to the containing construct.
5256
5257 -----------------------------
5258 -- 11.2 Exception Handler --
5259 -----------------------------
5260
5261 -- EXCEPTION_HANDLER ::=
5262 -- when [CHOICE_PARAMETER_SPECIFICATION :]
5263 -- EXCEPTION_CHOICE {| EXCEPTION_CHOICE} =>
5264 -- SEQUENCE_OF_STATEMENTS
5265
5266 -- Note: choice parameter specification is not allowed in Ada 83 mode
5267
5268 -- N_Exception_Handler
5269 -- Sloc points to WHEN
5270 -- Choice_Parameter (Node2) (set to Empty if not present)
5271 -- Exception_Choices (List4)
5272 -- Statements (List3)
5273 -- Zero_Cost_Handling (Flag5-Sem)
5274
5275 ------------------------------------------
5276 -- 11.2 Choice parameter specification --
5277 ------------------------------------------
5278
5279 -- CHOICE_PARAMETER_SPECIFICATION ::= DEFINING_IDENTIFIER
5280
5281 ----------------------------
5282 -- 11.2 Exception Choice --
5283 ----------------------------
5284
5285 -- EXCEPTION_CHOICE ::= exception_NAME | others
5286
5287 -- Except in the case of OTHERS, no explicit node appears in the tree
5288 -- for exception choice. Instead the exception name appears directly.
5289 -- An OTHERS choice is represented by a N_Others_Choice node (see
5290 -- section 3.8.1.
5291
5292 -- Note: for the exception choice created for an at end handler, the
5293 -- exception choice is an N_Others_Choice node with All_Others set.
5294
5295 ---------------------------
5296 -- 11.3 Raise Statement --
5297 ---------------------------
5298
5299 -- RAISE_STATEMENT ::= raise [exception_NAME];
5300
5301 -- N_Raise_Statement
5302 -- Sloc points to RAISE
5303 -- Name (Node2) (set to Empty if no exception name present)
5304
5305 -------------------------------
5306 -- 12.1 Generic Declaration --
5307 -------------------------------
5308
5309 -- GENERIC_DECLARATION ::=
5310 -- GENERIC_SUBPROGRAM_DECLARATION | GENERIC_PACKAGE_DECLARATION
5311
5312 ------------------------------------------
5313 -- 12.1 Generic Subprogram Declaration --
5314 ------------------------------------------
5315
5316 -- GENERIC_SUBPROGRAM_DECLARATION ::=
5317 -- GENERIC_FORMAL_PART SUBPROGRAM_SPECIFICATION;
5318
5319 -- Note: Generic_Formal_Declarations can include pragmas
5320
5321 -- N_Generic_Subprogram_Declaration
5322 -- Sloc points to GENERIC
5323 -- Specification (Node1) subprogram specification
5324 -- Corresponding_Body (Node5-Sem)
5325 -- Generic_Formal_Declarations (List2) from generic formal part
5326 -- Parent_Spec (Node4-Sem)
5327
5328 ---------------------------------------
5329 -- 12.1 Generic Package Declaration --
5330 ---------------------------------------
5331
5332 -- GENERIC_PACKAGE_DECLARATION ::=
5333 -- GENERIC_FORMAL_PART PACKAGE_SPECIFICATION;
5334
5335 -- Note: when we do generics right, the Activation_Chain_Entity entry
5336 -- for this node can be removed (since the expander won't see generic
5337 -- units any more)???.
5338
5339 -- Note: Generic_Formal_Declarations can include pragmas
5340
5341 -- N_Generic_Package_Declaration
5342 -- Sloc points to GENERIC
5343 -- Specification (Node1) package specification
5344 -- Corresponding_Body (Node5-Sem)
5345 -- Generic_Formal_Declarations (List2) from generic formal part
5346 -- Parent_Spec (Node4-Sem)
5347 -- Activation_Chain_Entity (Node3-Sem)
5348
5349 -------------------------------
5350 -- 12.1 Generic Formal Part --
5351 -------------------------------
5352
5353 -- GENERIC_FORMAL_PART ::=
5354 -- generic {GENERIC_FORMAL_PARAMETER_DECLARATION | USE_CLAUSE}
5355
5356 ------------------------------------------------
5357 -- 12.1 Generic Formal Parameter Declaration --
5358 ------------------------------------------------
5359
5360 -- GENERIC_FORMAL_PARAMETER_DECLARATION ::=
5361 -- FORMAL_OBJECT_DECLARATION
5362 -- | FORMAL_TYPE_DECLARATION
5363 -- | FORMAL_SUBPROGRAM_DECLARATION
5364 -- | FORMAL_PACKAGE_DECLARATION
5365
5366 ---------------------------------
5367 -- 12.3 Generic Instantiation --
5368 ---------------------------------
5369
5370 -- GENERIC_INSTANTIATION ::=
5371 -- package DEFINING_PROGRAM_UNIT_NAME is
5372 -- new generic_package_NAME [GENERIC_ACTUAL_PART];
5373 -- | procedure DEFINING_PROGRAM_UNIT_NAME is
5374 -- new generic_procedure_NAME [GENERIC_ACTUAL_PART];
5375 -- | function DEFINING_DESIGNATOR is
5376 -- new generic_function_NAME [GENERIC_ACTUAL_PART];
5377
5378 -- N_Package_Instantiation
5379 -- Sloc points to PACKAGE
5380 -- Defining_Unit_Name (Node1)
5381 -- Name (Node2)
5382 -- Generic_Associations (List3) (set to No_List if no
5383 -- generic actual part)
5384 -- Parent_Spec (Node4-Sem)
5385 -- Instance_Spec (Node5-Sem)
5386 -- ABE_Is_Certain (Flag18-Sem)
5387
5388 -- N_Procedure_Instantiation
5389 -- Sloc points to PROCEDURE
5390 -- Defining_Unit_Name (Node1)
5391 -- Name (Node2)
5392 -- Parent_Spec (Node4-Sem)
5393 -- Generic_Associations (List3) (set to No_List if no
5394 -- generic actual part)
5395 -- Instance_Spec (Node5-Sem)
5396 -- ABE_Is_Certain (Flag18-Sem)
5397
5398 -- N_Function_Instantiation
5399 -- Sloc points to FUNCTION
5400 -- Defining_Unit_Name (Node1)
5401 -- Name (Node2)
5402 -- Generic_Associations (List3) (set to No_List if no
5403 -- generic actual part)
5404 -- Parent_Spec (Node4-Sem)
5405 -- Instance_Spec (Node5-Sem)
5406 -- ABE_Is_Certain (Flag18-Sem)
5407
5408 ------------------------------
5409 -- 12.3 Generic Actual Part --
5410 ------------------------------
5411
5412 -- GENERIC_ACTUAL_PART ::=
5413 -- (GENERIC_ASSOCIATION {, GENERIC_ASSOCIATION})
5414
5415 -------------------------------
5416 -- 12.3 Generic Association --
5417 -------------------------------
5418
5419 -- GENERIC_ASSOCIATION ::=
5420 -- [generic_formal_parameter_SELECTOR_NAME =>]
5421 -- EXPLICIT_GENERIC_ACTUAL_PARAMETER
5422
5423 -- Note: unlike the procedure call case, a generic association node
5424 -- is generated for every association, even if no formal is present.
5425 -- In this case the parser will leave the Selector_Name field set
5426 -- to Empty, to be filled in later by the semantic pass.
5427
5428 -- N_Generic_Association
5429 -- Sloc points to first token of generic association
5430 -- Selector_Name (Node2) (set to Empty if no formal
5431 -- parameter selector name)
5432 -- Explicit_Generic_Actual_Parameter (Node1)
5433
5434 ---------------------------------------------
5435 -- 12.3 Explicit Generic Actual Parameter --
5436 ---------------------------------------------
5437
5438 -- EXPLICIT_GENERIC_ACTUAL_PARAMETER ::=
5439 -- EXPRESSION | variable_NAME | subprogram_NAME
5440 -- | entry_NAME | SUBTYPE_MARK | package_instance_NAME
5441
5442 -------------------------------------
5443 -- 12.4 Formal Object Declaration --
5444 -------------------------------------
5445
5446 -- FORMAL_OBJECT_DECLARATION ::=
5447 -- DEFINING_IDENTIFIER_LIST :
5448 -- MODE SUBTYPE_MARK [:= DEFAULT_EXPRESSION];
5449
5450 -- Although the syntax allows multiple identifiers in the list, the
5451 -- semantics is as though successive declarations were given with
5452 -- identical type definition and expression components. To simplify
5453 -- semantic processing, the parser represents a multiple declaration
5454 -- case as a sequence of single declarations, using the More_Ids and
5455 -- Prev_Ids flags to preserve the original source form as described
5456 -- in the section on "Handling of Defining Identifier Lists".
5457
5458 -- N_Formal_Object_Declaration
5459 -- Sloc points to first identifier
5460 -- Defining_Identifier (Node1)
5461 -- In_Present (Flag15)
5462 -- Out_Present (Flag17)
5463 -- Subtype_Mark (Node4)
5464 -- Expression (Node3) (set to Empty if no default expression)
5465 -- More_Ids (Flag5) (set to False if no more identifiers in list)
5466 -- Prev_Ids (Flag6) (set to False if no previous identifiers in list)
5467
5468 -----------------------------------
5469 -- 12.5 Formal Type Declaration --
5470 -----------------------------------
5471
5472 -- FORMAL_TYPE_DECLARATION ::=
5473 -- type DEFINING_IDENTIFIER [DISCRIMINANT_PART]
5474 -- is FORMAL_TYPE_DEFINITION;
5475
5476 -- N_Formal_Type_Declaration
5477 -- Sloc points to TYPE
5478 -- Defining_Identifier (Node1)
5479 -- Formal_Type_Definition (Node3)
5480 -- Discriminant_Specifications (List4) (set to No_List if no
5481 -- discriminant part)
5482 -- Unknown_Discriminants_Present (Flag13) set if (<>) discriminant
5483
5484 ----------------------------------
5485 -- 12.5 Formal type definition --
5486 ----------------------------------
5487
5488 -- FORMAL_TYPE_DEFINITION ::=
5489 -- FORMAL_PRIVATE_TYPE_DEFINITION
5490 -- | FORMAL_DERIVED_TYPE_DEFINITION
5491 -- | FORMAL_DISCRETE_TYPE_DEFINITION
5492 -- | FORMAL_SIGNED_INTEGER_TYPE_DEFINITION
5493 -- | FORMAL_MODULAR_TYPE_DEFINITION
5494 -- | FORMAL_FLOATING_POINT_DEFINITION
5495 -- | FORMAL_ORDINARY_FIXED_POINT_DEFINITION
5496 -- | FORMAL_DECIMAL_FIXED_POINT_DEFINITION
5497 -- | FORMAL_ARRAY_TYPE_DEFINITION
5498 -- | FORMAL_ACCESS_TYPE_DEFINITION
5499
5500 ---------------------------------------------
5501 -- 12.5.1 Formal Private Type Definition --
5502 ---------------------------------------------
5503
5504 -- FORMAL_PRIVATE_TYPE_DEFINITION ::=
5505 -- [[abstract] tagged] [limited] private
5506
5507 -- Note: TAGGED is not allowed in Ada 83 mode
5508
5509 -- N_Formal_Private_Type_Definition
5510 -- Sloc points to PRIVATE
5511 -- Abstract_Present (Flag4)
5512 -- Tagged_Present (Flag15)
5513 -- Limited_Present (Flag17)
5514
5515 --------------------------------------------
5516 -- 12.5.1 Formal Derived Type Definition --
5517 --------------------------------------------
5518
5519 -- FORMAL_DERIVED_TYPE_DEFINITION ::=
5520 -- [abstract] new SUBTYPE_MARK [with private]
5521
5522 -- Note: this construct is not allowed in Ada 83 mode
5523
5524 -- N_Formal_Derived_Type_Definition
5525 -- Sloc points to NEW
5526 -- Subtype_Mark (Node4)
5527 -- Private_Present (Flag15)
5528 -- Abstract_Present (Flag4)
5529
5530 ---------------------------------------------
5531 -- 12.5.2 Formal Discrete Type Definition --
5532 ---------------------------------------------
5533
5534 -- FORMAL_DISCRETE_TYPE_DEFINITION ::= (<>)
5535
5536 -- N_Formal_Discrete_Type_Definition
5537 -- Sloc points to (
5538
5539 ---------------------------------------------------
5540 -- 12.5.2 Formal Signed Integer Type Definition --
5541 ---------------------------------------------------
5542
5543 -- FORMAL_SIGNED_INTEGER_TYPE_DEFINITION ::= range <>
5544
5545 -- N_Formal_Signed_Integer_Type_Definition
5546 -- Sloc points to RANGE
5547
5548 --------------------------------------------
5549 -- 12.5.2 Formal Modular Type Definition --
5550 --------------------------------------------
5551
5552 -- FORMAL_MODULAR_TYPE_DEFINITION ::= mod <>
5553
5554 -- N_Formal_Modular_Type_Definition
5555 -- Sloc points to MOD
5556
5557 ----------------------------------------------
5558 -- 12.5.2 Formal Floating Point Definition --
5559 ----------------------------------------------
5560
5561 -- FORMAL_FLOATING_POINT_DEFINITION ::= digits <>
5562
5563 -- N_Formal_Floating_Point_Definition
5564 -- Sloc points to DIGITS
5565
5566 ----------------------------------------------------
5567 -- 12.5.2 Formal Ordinary Fixed Point Definition --
5568 ----------------------------------------------------
5569
5570 -- FORMAL_ORDINARY_FIXED_POINT_DEFINITION ::= delta <>
5571
5572 -- N_Formal_Ordinary_Fixed_Point_Definition
5573 -- Sloc points to DELTA
5574
5575 ---------------------------------------------------
5576 -- 12.5.2 Formal Decimal Fixed Point Definition --
5577 ---------------------------------------------------
5578
5579 -- FORMAL_DECIMAL_FIXED_POINT_DEFINITION ::= delta <> digits <>
5580
5581 -- Note: formal decimal fixed point definition not allowed in Ada 83
5582
5583 -- N_Formal_Decimal_Fixed_Point_Definition
5584 -- Sloc points to DELTA
5585
5586 ------------------------------------------
5587 -- 12.5.3 Formal Array Type Definition --
5588 ------------------------------------------
5589
5590 -- FORMAL_ARRAY_TYPE_DEFINITION ::= ARRAY_TYPE_DEFINITION
5591
5592 -------------------------------------------
5593 -- 12.5.4 Formal Access Type Definition --
5594 -------------------------------------------
5595
5596 -- FORMAL_ACCESS_TYPE_DEFINITION ::= ACCESS_TYPE_DEFINITION
5597
5598 -----------------------------------------
5599 -- 12.6 Formal Subprogram Declaration --
5600 -----------------------------------------
5601
5602 -- FORMAL_SUBPROGRAM_DECLARATION ::=
5603 -- with SUBPROGRAM_SPECIFICATION [is SUBPROGRAM_DEFAULT];
5604
5605 -- N_Formal_Subprogram_Declaration
5606 -- Sloc points to WITH
5607 -- Specification (Node1)
5608 -- Default_Name (Node2) (set to Empty if no subprogram default)
5609 -- Box_Present (Flag15)
5610
5611 -- Note: if no subprogram default is present, then Name is set
5612 -- to Empty, and Box_Present is False.
5613
5614 ------------------------------
5615 -- 12.6 Subprogram Default --
5616 ------------------------------
5617
5618 -- SUBPROGRAM_DEFAULT ::= DEFAULT_NAME | <>
5619
5620 -- There is no separate node in the tree for a subprogram default.
5621 -- Instead the parent (N_Formal_Subprogram_Declaration) node contains
5622 -- the default name or box indication, as needed.
5623
5624 ------------------------
5625 -- 12.6 Default Name --
5626 ------------------------
5627
5628 -- DEFAULT_NAME ::= NAME
5629
5630 --------------------------------------
5631 -- 12.7 Formal Package Declaration --
5632 --------------------------------------
5633
5634 -- FORMAL_PACKAGE_DECLARATION ::=
5635 -- with package DEFINING_IDENTIFIER
5636 -- is new generic_package_NAME FORMAL_PACKAGE_ACTUAL_PART;
5637
5638 -- Note: formal package declarations not allowed in Ada 83 mode
5639
5640 -- N_Formal_Package_Declaration
5641 -- Sloc points to WITH
5642 -- Defining_Identifier (Node1)
5643 -- Name (Node2)
5644 -- Generic_Associations (List3) (set to No_List if (<>) case or
5645 -- empty generic actual part)
5646 -- Box_Present (Flag15)
5647 -- Instance_Spec (Node5-Sem)
5648 -- ABE_Is_Certain (Flag18-Sem)
5649
5650 --------------------------------------
5651 -- 12.7 Formal Package Actual Part --
5652 --------------------------------------
5653
5654 -- FORMAL_PACKAGE_ACTUAL_PART ::=
5655 -- (<>) | [GENERIC_ACTUAL_PART]
5656
5657 -- There is no explicit node in the tree for a formal package
5658 -- actual part. Instead the information appears in the parent node
5659 -- (i.e. the formal package declaration node itself).
5660
5661 ---------------------------------
5662 -- 13.1 Representation clause --
5663 ---------------------------------
5664
5665 -- REPRESENTATION_CLAUSE ::=
5666 -- ATTRIBUTE_DEFINITION_CLAUSE
5667 -- | ENUMERATION_REPRESENTATION_CLAUSE
5668 -- | RECORD_REPRESENTATION_CLAUSE
5669 -- | AT_CLAUSE
5670
5671 ----------------------
5672 -- 13.1 Local Name --
5673 ----------------------
5674
5675 -- LOCAL_NAME :=
5676 -- DIRECT_NAME
5677 -- | DIRECT_NAME'ATTRIBUTE_DESIGNATOR
5678 -- | library_unit_NAME
5679
5680 -- The construct DIRECT_NAME'ATTRIBUTE_DESIGNATOR appears in the tree
5681 -- as an attribute reference, which has essentially the same form.
5682
5683 ---------------------------------------
5684 -- 13.3 Attribute definition clause --
5685 ---------------------------------------
5686
5687 -- ATTRIBUTE_DEFINITION_CLAUSE ::=
5688 -- for LOCAL_NAME'ATTRIBUTE_DESIGNATOR use EXPRESSION;
5689 -- | for LOCAL_NAME'ATTRIBUTE_DESIGNATOR use NAME;
5690
5691 -- In Ada 83, the expression must be a simple expression and the
5692 -- local name must be a direct name.
5693
5694 -- Note: the only attribute definition clause that is processed by
5695 -- gigi is an address clause. For all other cases, the information
5696 -- is extracted by the front end and either results in setting entity
5697 -- information, e.g. Esize for the Size clause, or in appropriate
5698 -- expansion actions (e.g. in the case of Storage_Size).
5699
5700 -- For an address clause, Gigi constructs the appropriate addressing
5701 -- code. It also ensures that no aliasing optimizations are made
5702 -- for the object for which the address clause appears.
5703
5704 -- Note: for an address clause used to achieve an overlay:
5705
5706 -- A : Integer;
5707 -- B : Integer;
5708 -- for B'Address use A'Address;
5709
5710 -- the above rule means that Gigi will ensure that no optimizations
5711 -- will be made for B that would violate the implementation advice
5712 -- of RM 13.3(19). However, this advice applies only to B and not
5713 -- to A, which seems unfortunate. The GNAT front end will mark the
5714 -- object A as volatile to also prevent unwanted optimization
5715 -- assumptions based on no aliasing being made for B.
5716
5717 -- N_Attribute_Definition_Clause
5718 -- Sloc points to FOR
5719 -- Name (Node2) the local name
5720 -- Chars (Name1) the identifier name from the attribute designator
5721 -- Expression (Node3) the expression or name
5722 -- Next_Rep_Item (Node4-Sem)
5723 -- From_At_Mod (Flag4-Sem)
5724 -- Check_Address_Alignment (Flag11-Sem)
5725
5726 ---------------------------------------------
5727 -- 13.4 Enumeration representation clause --
5728 ---------------------------------------------
5729
5730 -- ENUMERATION_REPRESENTATION_CLAUSE ::=
5731 -- for first_subtype_LOCAL_NAME use ENUMERATION_AGGREGATE;
5732
5733 -- In Ada 83, the name must be a direct name
5734
5735 -- N_Enumeration_Representation_Clause
5736 -- Sloc points to FOR
5737 -- Identifier (Node1) direct name
5738 -- Array_Aggregate (Node3)
5739 -- Next_Rep_Item (Node4-Sem)
5740
5741 ---------------------------------
5742 -- 13.4 Enumeration aggregate --
5743 ---------------------------------
5744
5745 -- ENUMERATION_AGGREGATE ::= ARRAY_AGGREGATE
5746
5747 ------------------------------------------
5748 -- 13.5.1 Record representation clause --
5749 ------------------------------------------
5750
5751 -- RECORD_REPRESENTATION_CLAUSE ::=
5752 -- for first_subtype_LOCAL_NAME use
5753 -- record [MOD_CLAUSE]
5754 -- {COMPONENT_CLAUSE}
5755 -- end record;
5756
5757 -- Gigi restriction: Mod_Clause is always Empty (if present it is
5758 -- replaced by a corresponding Alignment attribute definition clause).
5759
5760 -- Note: Component_Clauses can include pragmas
5761
5762 -- N_Record_Representation_Clause
5763 -- Sloc points to FOR
5764 -- Identifier (Node1) direct name
5765 -- Mod_Clause (Node2) (set to Empty if no mod clause present)
5766 -- Component_Clauses (List3)
5767 -- Next_Rep_Item (Node4-Sem)
5768
5769 ------------------------------
5770 -- 13.5.1 Component clause --
5771 ------------------------------
5772
5773 -- COMPONENT_CLAUSE ::=
5774 -- component_LOCAL_NAME at POSITION
5775 -- range FIRST_BIT .. LAST_BIT;
5776
5777 -- N_Component_Clause
5778 -- Sloc points to AT
5779 -- Component_Name (Node1) points to Name or Attribute_Reference
5780 -- Position (Node2)
5781 -- First_Bit (Node3)
5782 -- Last_Bit (Node4)
5783
5784 ----------------------
5785 -- 13.5.1 Position --
5786 ----------------------
5787
5788 -- POSITION ::= static_EXPRESSION
5789
5790 -----------------------
5791 -- 13.5.1 First_Bit --
5792 -----------------------
5793
5794 -- FIRST_BIT ::= static_SIMPLE_EXPRESSION
5795
5796 ----------------------
5797 -- 13.5.1 Last_Bit --
5798 ----------------------
5799
5800 -- LAST_BIT ::= static_SIMPLE_EXPRESSION
5801
5802 --------------------------
5803 -- 13.8 Code statement --
5804 --------------------------
5805
5806 -- CODE_STATEMENT ::= QUALIFIED_EXPRESSION;
5807
5808 -- Note: in GNAT, the qualified expression has the form
5809
5810 -- Asm_Insn'(Asm (...));
5811
5812 -- or
5813
5814 -- Asm_Insn'(Asm_Volatile (...))
5815
5816 -- See package System.Machine_Code in file s-maccod.ads for details
5817 -- on the allowed parameters to Asm[_Volatile]. There are two ways
5818 -- this node can arise, as a code statement, in which case the
5819 -- expression is the qualified expression, or as a result of the
5820 -- expansion of an intrinsic call to the Asm or Asm_Input procedure.
5821
5822 -- N_Code_Statement
5823 -- Sloc points to first token of the expression
5824 -- Expression (Node3)
5825
5826 -- Note: package Exp_Code contains an abstract functional interface
5827 -- for use by Gigi in accessing the data from N_Code_Statement nodes.
5828
5829 ------------------------
5830 -- 13.12 Restriction --
5831 ------------------------
5832
5833 -- RESTRICTION ::=
5834 -- restriction_IDENTIFIER
5835 -- | restriction_parameter_IDENTIFIER => EXPRESSION
5836
5837 -- There is no explicit node for restrictions. Instead the restriction
5838 -- appears in normal pragma syntax as a pragma argument association,
5839 -- which has the same syntactic form.
5840
5841 --------------------------
5842 -- B.2 Shift Operators --
5843 --------------------------
5844
5845 -- Calls to the intrinsic shift functions are converted to one of
5846 -- the following shift nodes, which have the form of normal binary
5847 -- operator names. Note that for a given shift operation, one node
5848 -- covers all possible types, as for normal operators.
5849
5850 -- Note: it is perfectly permissible for the expander to generate
5851 -- shift operation nodes directly, in which case they will be analyzed
5852 -- and parsed in the usual manner.
5853
5854 -- Sprint syntax: shift-function-name!(expr, count)
5855
5856 -- Note: the Left_Opnd field holds the first argument (the value to
5857 -- be shifted). The Right_Opnd field holds the second argument (the
5858 -- shift count). The Chars field is the name of the intrinsic function.
5859
5860 -- N_Op_Rotate_Left
5861 -- Sloc points to the function name
5862 -- plus fields for binary operator
5863 -- plus fields for expression
5864 -- Shift_Count_OK (Flag4-Sem)
5865
5866 -- N_Op_Rotate_Right
5867 -- Sloc points to the function name
5868 -- plus fields for binary operator
5869 -- plus fields for expression
5870 -- Shift_Count_OK (Flag4-Sem)
5871
5872 -- N_Op_Shift_Left
5873 -- Sloc points to the function name
5874 -- plus fields for binary operator
5875 -- plus fields for expression
5876 -- Shift_Count_OK (Flag4-Sem)
5877
5878 -- N_Op_Shift_Right_Arithmetic
5879 -- Sloc points to the function name
5880 -- plus fields for binary operator
5881 -- plus fields for expression
5882 -- Shift_Count_OK (Flag4-Sem)
5883
5884 -- N_Op_Shift_Right
5885 -- Sloc points to the function name
5886 -- plus fields for binary operator
5887 -- plus fields for expression
5888 -- Shift_Count_OK (Flag4-Sem)
5889
5890 --------------------------
5891 -- Obsolescent Features --
5892 --------------------------
5893
5894 -- The syntax descriptions and tree nodes for obsolescent features are
5895 -- grouped together, corresponding to their location in appendix I in
5896 -- the RM. However, parsing and semantic analysis for these constructs
5897 -- is located in an appropriate chapter (see individual notes).
5898
5899 ---------------------------
5900 -- J.3 Delta Constraint --
5901 ---------------------------
5902
5903 -- Note: the parse routine for this construct is located in section
5904 -- 3.5.9 of Par-Ch3, and semantic analysis is in Sem_Ch3, which is
5905 -- where delta constraint logically belongs.
5906
5907 -- DELTA_CONSTRAINT ::= DELTA static_EXPRESSION [RANGE_CONSTRAINT]
5908
5909 -- N_Delta_Constraint
5910 -- Sloc points to DELTA
5911 -- Delta_Expression (Node3)
5912 -- Range_Constraint (Node4) (set to Empty if not present)
5913
5914 --------------------
5915 -- J.7 At Clause --
5916 --------------------
5917
5918 -- AT_CLAUSE ::= for DIRECT_NAME use at EXPRESSION;
5919
5920 -- Note: the parse routine for this construct is located in Par-Ch13,
5921 -- and the semantic analysis is in Sem_Ch13, where at clause logically
5922 -- belongs if it were not obsolescent.
5923
5924 -- Note: in Ada 83 the expression must be a simple expression
5925
5926 -- Gigi restriction: This node never appears, it is rewritten as an
5927 -- address attribute definition clause.
5928
5929 -- N_At_Clause
5930 -- Sloc points to FOR
5931 -- Identifier (Node1)
5932 -- Expression (Node3)
5933
5934 ---------------------
5935 -- J.8 Mod clause --
5936 ---------------------
5937
5938 -- MOD_CLAUSE ::= at mod static_EXPRESSION;
5939
5940 -- Note: the parse routine for this construct is located in Par-Ch13,
5941 -- and the semantic analysis is in Sem_Ch13, where mod clause logically
5942 -- belongs if it were not obsolescent.
5943
5944 -- Note: in Ada 83, the expression must be a simple expression
5945
5946 -- Gigi restriction: this node never appears. It is replaced
5947 -- by a corresponding Alignment attribute definition clause.
5948
5949 -- Note: pragmas can appear before and after the MOD_CLAUSE since
5950 -- its name has "clause" in it. This is rather strange, but is quite
5951 -- definitely specified. The pragmas before are collected in the
5952 -- Pragmas_Before field of the mod clause node itself, and pragmas
5953 -- after are simply swallowed up in the list of component clauses.
5954
5955 -- N_Mod_Clause
5956 -- Sloc points to AT
5957 -- Expression (Node3)
5958 -- Pragmas_Before (List4) Pragmas before mod clause (No_List if none)
5959
5960 --------------------
5961 -- Semantic Nodes --
5962 --------------------
5963
5964 -- These semantic nodes are used to hold additional semantic information.
5965 -- They are inserted into the tree as a result of semantic processing.
5966 -- Although there are no legitimate source syntax constructions that
5967 -- correspond directly to these nodes, we need a source syntax for the
5968 -- reconstructed tree printed by Sprint, and the node descriptions here
5969 -- show this syntax.
5970
5971 ----------------------------
5972 -- Conditional Expression --
5973 ----------------------------
5974
5975 -- This node is used to represent an expression corresponding to the
5976 -- C construct (condition ? then-expression : else_expression), where
5977 -- Expressions is a three element list, whose first expression is the
5978 -- condition, and whose second and third expressions are the then and
5979 -- else expressions respectively.
5980
5981 -- Note: the Then_Actions and Else_Actions fields are always set to
5982 -- No_List in the tree passed to Gigi. These fields are used only
5983 -- for temporary processing purposes in the expander.
5984
5985 -- Sprint syntax: (if expr then expr else expr)
5986
5987 -- N_Conditional_Expression
5988 -- Sloc points to related node
5989 -- Expressions (List1)
5990 -- Then_Actions (List2-Sem)
5991 -- Else_Actions (List3-Sem)
5992 -- plus fields for expression
5993
5994 -- Note: in the case where a debug source file is generated, the Sloc
5995 -- for this node points to the IF keyword in the Sprint file output.
5996
5997 -------------------
5998 -- Expanded_Name --
5999 -------------------
6000
6001 -- The N_Expanded_Name node is used to represent a selected component
6002 -- name that has been resolved to an expanded name. The semantic phase
6003 -- replaces N_Selected_Component nodes that represent names by the use
6004 -- of this node, leaving the N_Selected_Component node used only when
6005 -- the prefix is a record or protected type.
6006
6007 -- The fields of the N_Expanded_Name node are layed out identically
6008 -- to those of the N_Selected_Component node, allowing conversion of
6009 -- an expanded name node to a selected component node to be done
6010 -- easily, see Sinfo.CN.Change_Selected_Component_To_Expanded_Name.
6011
6012 -- There is no special sprint syntax for an expanded name.
6013
6014 -- N_Expanded_Name
6015 -- Sloc points to the period
6016 -- Chars (Name1) copy of Chars field of selector name
6017 -- Prefix (Node3)
6018 -- Selector_Name (Node2)
6019 -- Entity (Node4-Sem)
6020 -- Associated_Node (Node4-Sem)
6021 -- Redundant_Use (Flag13-Sem)
6022 -- Has_Private_View (Flag11-Sem) set in generic units.
6023 -- plus fields for expression
6024
6025 --------------------
6026 -- Free Statement --
6027 --------------------
6028
6029 -- The N_Free_Statement node is generated as a result of a call to an
6030 -- instantiation of Unchecked_Deallocation. The instantiation of this
6031 -- generic is handled specially and generates this node directly.
6032
6033 -- Sprint syntax: free expression
6034
6035 -- N_Free_Statement
6036 -- Sloc is copied from the unchecked deallocation call
6037 -- Expression (Node3) argument to unchecked deallocation call
6038 -- Storage_Pool (Node1-Sem)
6039 -- Procedure_To_Call (Node4-Sem)
6040
6041 -- Note: in the case where a debug source file is generated, the Sloc
6042 -- for this node points to the FREE keyword in the Sprint file output.
6043
6044 -------------------
6045 -- Freeze Entity --
6046 -------------------
6047
6048 -- This node marks the point in a declarative part at which an entity
6049 -- declared therein becomes frozen. The expander places initialization
6050 -- procedures for types at those points. Gigi uses the freezing point
6051 -- to elaborate entities that may depend on previous private types.
6052
6053 -- See the section in Einfo "Delayed Freezing and Elaboration" for
6054 -- a full description of the use of this node.
6055
6056 -- The Entity field points back to the entity for the type (whose
6057 -- Freeze_Node field points back to this freeze node).
6058
6059 -- The Actions field contains a list of declarations and statements
6060 -- generated by the expander which are associated with the freeze
6061 -- node, and are elaborated as though the freeze node were replaced
6062 -- by this sequence of actions.
6063
6064 -- Note: the Sloc field in the freeze node references a construct
6065 -- associated with the freezing point. This is used for posting
6066 -- messages in some error/warning situations, e.g. the case where
6067 -- a primitive operation of a tagged type is declared too late.
6068
6069 -- Sprint syntax: freeze entity-name [
6070 -- freeze actions
6071 -- ]
6072
6073 -- N_Freeze_Entity
6074 -- Sloc points near freeze point (see above special note)
6075 -- Entity (Node4-Sem)
6076 -- Access_Types_To_Process (Elist2-Sem) (set to No_Elist if none)
6077 -- TSS_Elist (Elist3-Sem) (set to No_Elist if no associated TSS's)
6078 -- Actions (List1) (set to No_List if no freeze actions)
6079 -- First_Subtype_Link (Node5-Sem) (set to Empty if no link)
6080
6081 -- The Actions field holds actions associated with the freeze. These
6082 -- actions are elaborated at the point where the type is frozen.
6083
6084 -- Note: in the case where a debug source file is generated, the Sloc
6085 -- for this node points to the FREEZE keyword in the Sprint file output.
6086
6087 --------------------------------
6088 -- Implicit Label Declaration --
6089 --------------------------------
6090
6091 -- An implicit label declaration is created for every occurrence of a
6092 -- label on a statement or a label on a block or loop. It is chained
6093 -- in the declarations of the innermost enclosing block as specified
6094 -- in RM section 5.1 (3).
6095
6096 -- The Defining_Identifier is the actual identifier for the
6097 -- statement identifier. Note that the occurrence of the label
6098 -- is a reference, NOT the defining occurrence. The defining
6099 -- occurrence occurs at the head of the innermost enclosing
6100 -- block, and is represented by this node.
6101
6102 -- Note: from the grammar, this might better be called an implicit
6103 -- statement identifier declaration, but the term we choose seems
6104 -- friendlier, since at least informally statement identifiers are
6105 -- called labels in both cases (i.e. when used in labels, and when
6106 -- used as the identifiers of blocks and loops).
6107
6108 -- Note: although this is logically a semantic node, since it does
6109 -- not correspond directly to a source syntax construction, these
6110 -- nodes are actually created by the parser in a post pass done just
6111 -- after parsing is complete, before semantic analysis is started (see
6112 -- the Par.Labl subunit in file par-labl.adb).
6113
6114 -- Sprint syntax: labelname : label;
6115
6116 -- N_Implicit_Label_Declaration
6117 -- Sloc points to the << of the label
6118 -- Defining_Identifier (Node1)
6119 -- Label_Construct (Node2-Sem)
6120
6121 -- Note: in the case where a debug source file is generated, the Sloc
6122 -- for this node points to the label name in the generated declaration.
6123
6124 ---------------------
6125 -- Itype_Reference --
6126 ---------------------
6127
6128 -- This node is used to create a reference to an Itype. The only
6129 -- purpose is to make sure that the Itype is defined if this is the
6130 -- first reference.
6131
6132 -- A typical use of this node is when an Itype is to be referenced in
6133 -- two branches of an if statement. In this case it is important that
6134 -- the first use of the Itype not be inside the conditional, since
6135 -- then it might not be defined if the wrong branch of the if is
6136 -- taken in the case where the definition generates elaboration code.
6137
6138 -- The Itype field points to the referenced Itype
6139
6140 -- sprint syntax: reference itype-name
6141
6142 -- N_Itype_Reference
6143 -- Sloc points to the node generating the reference
6144 -- Itype (Node1-Sem)
6145
6146 -- Note: in the case where a debug source file is generated, the Sloc
6147 -- for this node points to the REFERENCE keyword in the file output.
6148
6149 ---------------------
6150 -- Raise_xxx_Error --
6151 ---------------------
6152
6153 -- One of these nodes is created during semantic analysis to replace
6154 -- a node for an expression that is determined to definitely raise
6155 -- the corresponding exception.
6156
6157 -- The N_Raise_xxx_Error node may also stand alone in place
6158 -- of a declaration or statement, in which case it simply causes
6159 -- the exception to be raised (i.e. it is equivalent to a raise
6160 -- statement that raises the corresponding exception). This use
6161 -- is distinguished by the fact that the Etype in this case is
6162 -- Standard_Void_Type, In the subexprssion case, the Etype is the
6163 -- same as the type of the subexpression which it replaces.
6164
6165 -- If Condition is empty, then the raise is unconditional. If the
6166 -- Condition field is non-empty, it is a boolean expression which
6167 -- is first evaluated, and the exception is raised only if the
6168 -- value of the expression is True. In the unconditional case, the
6169 -- creation of this node is usually accompanied by a warning message
6170 -- error. The creation of this node will usually be accompanied by a
6171 -- message (unless it appears within the right operand of a short
6172 -- circuit form whose left argument is static and decisively
6173 -- eliminates elaboration of the raise operation.
6174
6175 -- The exception is generated with a message that contains the
6176 -- file name and line number, and then appended text. The Reason
6177 -- code shows the text to be added. The Reason code is an element
6178 -- of the type Types.RT_Exception_Code, and indicates both the
6179 -- message to be added, and the exception to be raised (which must
6180 -- match the node type). The value is stored by storing a Uint which
6181 -- is the Pos value of the enumeration element in this type.
6182
6183 -- Gigi restriction: This expander ensures that the type of the
6184 -- Condition field is always Standard.Boolean, even if the type
6185 -- in the source is some non-standard boolean type.
6186
6187 -- Sprint syntax: [xxx_error "msg"]
6188 -- or: [xxx_error when condition "msg"]
6189
6190 -- N_Raise_Constraint_Error
6191 -- Sloc references related construct
6192 -- Condition (Node1) (set to Empty if no condition)
6193 -- Reason (Uint3)
6194 -- plus fields for expression
6195
6196 -- N_Raise_Program_Error
6197 -- Sloc references related construct
6198 -- Condition (Node1) (set to Empty if no condition)
6199 -- Reason (Uint3)
6200 -- plus fields for expression
6201
6202 -- N_Raise_Storage_Error
6203 -- Sloc references related construct
6204 -- Condition (Node1) (set to Empty if no condition)
6205 -- Reason (Uint3)
6206 -- plus fields for expression
6207
6208 -- Note: Sloc is copied from the expression generating the exception.
6209 -- In the case where a debug source file is generated, the Sloc for
6210 -- this node points to the left bracket in the Sprint file output.
6211
6212 ---------------
6213 -- Reference --
6214 ---------------
6215
6216 -- For a number of purposes, we need to construct references to objects.
6217 -- These references are subsequently treated as normal access values.
6218 -- An example is the construction of the parameter block passed to a
6219 -- task entry. The N_Reference node is provided for this purpose. It is
6220 -- similar in effect to the use of the Unrestricted_Access attribute,
6221 -- and like Unrestricted_Access can be applied to objects which would
6222 -- not be valid prefixes for the Unchecked_Access attribute (e.g.
6223 -- objects which are not aliased, and slices). In addition it can be
6224 -- applied to composite type values as well as objects, including string
6225 -- values and aggregates.
6226
6227 -- Note: we use the Prefix field for this expression so that the
6228 -- resulting node can be treated using common code with the attribute
6229 -- nodes for the 'Access and related attributes. Logically it would make
6230 -- more sense to call it an Expression field, but then we would have to
6231 -- special case the treatment of the N_Reference node.
6232
6233 -- Sprint syntax: prefix'reference
6234
6235 -- N_Reference
6236 -- Sloc is copied from the expression
6237 -- Prefix (Node3)
6238 -- plus fields for expression
6239
6240 -- Note: in the case where a debug source file is generated, the Sloc
6241 -- for this node points to the quote in the Sprint file output.
6242
6243 ---------------------
6244 -- Subprogram_Info --
6245 ---------------------
6246
6247 -- This node generates the appropriate Subprogram_Info value for a
6248 -- given procedure. See Ada.Exceptions for further details
6249
6250 -- Sprint syntax: subprog'subprogram_info
6251
6252 -- N_Subprogram_Info
6253 -- Sloc points to the entity for the procedure
6254 -- Identifier (Node1) identifier referencing the procedure
6255 -- Etype (Node5-Sem) type (always set to Ada.Exceptions.Code_Loc
6256
6257 -- Note: in the case where a debug source file is generated, the Sloc
6258 -- for this node points to the quote in the Sprint file output.
6259
6260 --------------------------
6261 -- Unchecked Expression --
6262 --------------------------
6263
6264 -- An unchecked expression is one that must be analyzed and resolved
6265 -- with all checks off, regardless of the current setting of scope
6266 -- suppress flags.
6267
6268 -- Sprint syntax: `(expression).
6269
6270 -- Note: this node is always removed from the tree (and replaced by
6271 -- its constituent expression) on completion of analysis, so it only
6272 -- appears in intermediate trees, and will never be seen by Gigi.
6273
6274 -- N_Unchecked_Expression
6275 -- Sloc is a copy of the Sloc of the expression
6276 -- Expression (Node3)
6277 -- plus fields for expression
6278
6279 -- Note: in the case where a debug source file is generated, the Sloc
6280 -- for this node points to the back quote in the Sprint file output.
6281
6282 -------------------------------
6283 -- Unchecked Type Conversion --
6284 -------------------------------
6285
6286 -- An unchecked type conversion node represents the semantic action
6287 -- corresponding to a call to an instantiation of Unchecked_Conversion.
6288 -- It is generated as a result of actual use of Unchecked_Conversion
6289 -- and also the expander generates unchecked type conversion nodes
6290 -- directly for expansion of complex semantic actions.
6291
6292 -- Note: an unchecked type conversion is a variable as far as the
6293 -- semantics are concerned, which is convenient for the expander.
6294 -- This does not change what Ada source programs are legal, since
6295 -- clearly a function call to an instantiation of Unchecked_Conversion
6296 -- is not a variable in any case.
6297
6298 -- Sprint syntax: subtype-mark!(expression).
6299
6300 -- N_Unchecked_Type_Conversion
6301 -- Sloc points to related node in source
6302 -- Subtype_Mark (Node4)
6303 -- Expression (Node3)
6304 -- Kill_Range_Check (Flag11-Sem)
6305 -- No_Truncation (Flag17-Sem)
6306 -- plus fields for expression
6307
6308 -- Note: in the case where a debug source file is generated, the Sloc
6309 -- for this node points to the exclamation in the Sprint file output.
6310
6311 -----------------------------------
6312 -- Validate_Unchecked_Conversion --
6313 -----------------------------------
6314
6315 -- The front end does most of the validation of unchecked conversion,
6316 -- including checking sizes (this is done after the back end is called
6317 -- to take advantage of back-annotation of calculated sizes).
6318
6319 -- The front end also deals with specific cases that are not allowed
6320 -- e.g. involving unconstrained array types.
6321
6322 -- For the case of the standard gigi backend, this means that all
6323 -- checks are done in the front-end.
6324
6325 -- However, in the case of specialized back-ends, notably the JVM
6326 -- backend for JGNAT, additional requirements and restrictions apply
6327 -- to unchecked conversion, and these are most conveniently performed
6328 -- in the specialized back-end.
6329
6330 -- To accommodate this requirement, for such back ends, the following
6331 -- special node is generated recording an unchecked conversion that
6332 -- needs to be validated. The back end should post an appropriate
6333 -- error message if the unchecked conversion is invalid or warrants
6334 -- a special warning message.
6335
6336 -- Source_Type and Target_Type point to the entities for the two
6337 -- types involved in the unchecked conversion instantiation that
6338 -- is to be validated.
6339
6340 -- Sprint syntax: validate Unchecked_Conversion (source, target);
6341
6342 -- N_Validate_Unchecked_Conversion
6343 -- Sloc points to instantiation (location for warning message)
6344 -- Source_Type (Node1-Sem)
6345 -- Target_Type (Node2-Sem)
6346
6347 -- Note: in the case where a debug source file is generated, the Sloc
6348 -- for this node points to the VALIDATE keyword in the file output.
6349
6350 -----------
6351 -- Empty --
6352 -----------
6353
6354 -- Used as the contents of the Nkind field of the dummy Empty node
6355 -- and in some other situations to indicate an uninitialized value.
6356
6357 -- N_Empty
6358 -- Chars (Name1) is set to No_Name
6359
6360 -----------
6361 -- Error --
6362 -----------
6363
6364 -- Used as the contents of the Nkind field of the dummy Error node.
6365 -- Has an Etype field, which gets set to Any_Type later on, to help
6366 -- error recovery (Error_Posted is also set in the Error node).
6367
6368 -- N_Error
6369 -- Chars (Name1) is set to Error_Name
6370 -- Etype (Node5-Sem)
6371
6372 --------------------------
6373 -- Node Type Definition --
6374 --------------------------
6375
6376 -- The following is the definition of the Node_Kind type. As previously
6377 -- discussed, this is separated off to allow rearrangement of the order
6378 -- to facilitiate definition of subtype ranges. The comments show the
6379 -- subtype classes which apply to each set of node kinds. The first
6380 -- entry in the comment characterizes the following list of nodes.
6381
6382 type Node_Kind is (
6383 N_Unused_At_Start,
6384
6385 -- N_Representation_Clause
6386 N_At_Clause,
6387 N_Component_Clause,
6388 N_Enumeration_Representation_Clause,
6389 N_Mod_Clause,
6390 N_Record_Representation_Clause,
6391
6392 -- N_Representation_Clause, N_Has_Chars
6393 N_Attribute_Definition_Clause,
6394
6395 -- N_Has_Chars
6396 N_Empty,
6397 N_Pragma,
6398 N_Pragma_Argument_Association,
6399
6400 -- N_Has_Etype
6401 N_Error,
6402
6403 -- N_Entity, N_Has_Etype, N_Has_Chars
6404 N_Defining_Character_Literal,
6405 N_Defining_Identifier,
6406 N_Defining_Operator_Symbol,
6407
6408 -- N_Subexpr, N_Has_Etype, N_Has_Chars, N_Has_Entity
6409 N_Expanded_Name,
6410
6411 -- N_Direct_Name, N_Subexpr, N_Has_Etype,
6412 -- N_Has_Chars, N_Has_Entity
6413 N_Identifier,
6414 N_Operator_Symbol,
6415
6416 -- N_Direct_Name, N_Subexpr, N_Has_Etype,
6417 -- N_Has_Chars, N_Has_Entity
6418 N_Character_Literal,
6419
6420 -- N_Binary_Op, N_Op, N_Subexpr,
6421 -- N_Has_Etype, N_Has_Chars, N_Has_Entity
6422 N_Op_Add,
6423 N_Op_Concat,
6424 N_Op_Expon,
6425 N_Op_Subtract,
6426
6427 -- N_Binary_Op, N_Op, N_Subexpr, N_Has_Treat_Fixed_As_Integer
6428 -- N_Has_Etype, N_Has_Chars, N_Has_Entity
6429
6430 N_Op_Divide,
6431 N_Op_Mod,
6432 N_Op_Multiply,
6433 N_Op_Rem,
6434
6435 -- N_Binary_Op, N_Op, N_Subexpr, N_Has_Etype
6436 -- N_Has_Entity, N_Has_Chars, N_Op_Boolean
6437 N_Op_And,
6438
6439 -- N_Binary_Op, N_Op, N_Subexpr, N_Has_Etype
6440 -- N_Has_Entity, N_Has_Chars, N_Op_Boolean,
6441 -- N_Op_Compare
6442 N_Op_Eq,
6443 N_Op_Ge,
6444 N_Op_Gt,
6445 N_Op_Le,
6446 N_Op_Lt,
6447 N_Op_Ne,
6448
6449 -- N_Binary_Op, N_Op, N_Subexpr, N_Has_Etype
6450 -- N_Has_Entity, N_Has_Chars, N_Op_Boolean
6451 N_Op_Or,
6452 N_Op_Xor,
6453
6454 -- N_Binary_Op, N_Op, N_Subexpr, N_Has_Etype,
6455 -- N_Op_Shift, N_Has_Chars, N_Has_Entity
6456 N_Op_Rotate_Left,
6457 N_Op_Rotate_Right,
6458 N_Op_Shift_Left,
6459 N_Op_Shift_Right,
6460 N_Op_Shift_Right_Arithmetic,
6461
6462 -- N_Unary_Op, N_Op, N_Subexpr, N_Has_Etype,
6463 -- N_Has_Chars, N_Has_Entity
6464 N_Op_Abs,
6465 N_Op_Minus,
6466 N_Op_Not,
6467 N_Op_Plus,
6468
6469 -- N_Subexpr, N_Has_Etype, N_Has_Entity
6470 N_Attribute_Reference,
6471
6472 -- N_Subexpr, N_Has_Etype
6473 N_And_Then,
6474 N_Conditional_Expression,
6475 N_Explicit_Dereference,
6476 N_Function_Call,
6477 N_In,
6478 N_Indexed_Component,
6479 N_Integer_Literal,
6480 N_Not_In,
6481 N_Null,
6482 N_Or_Else,
6483 N_Procedure_Call_Statement,
6484 N_Qualified_Expression,
6485
6486 -- N_Raise_xxx_Error, N_Subexpr, N_Has_Etype
6487
6488 N_Raise_Constraint_Error,
6489 N_Raise_Program_Error,
6490 N_Raise_Storage_Error,
6491
6492 -- N_Subexpr, N_Has_Etype
6493
6494 N_Aggregate,
6495 N_Allocator,
6496 N_Extension_Aggregate,
6497 N_Range,
6498 N_Real_Literal,
6499 N_Reference,
6500 N_Selected_Component,
6501 N_Slice,
6502 N_String_Literal,
6503 N_Subprogram_Info,
6504 N_Type_Conversion,
6505 N_Unchecked_Expression,
6506 N_Unchecked_Type_Conversion,
6507
6508 -- N_Has_Etype
6509 N_Subtype_Indication,
6510
6511 -- N_Declaration
6512 N_Component_Declaration,
6513 N_Entry_Declaration,
6514 N_Formal_Object_Declaration,
6515 N_Formal_Type_Declaration,
6516 N_Full_Type_Declaration,
6517 N_Incomplete_Type_Declaration,
6518 N_Loop_Parameter_Specification,
6519 N_Object_Declaration,
6520 N_Protected_Type_Declaration,
6521 N_Private_Extension_Declaration,
6522 N_Private_Type_Declaration,
6523 N_Subtype_Declaration,
6524
6525 -- N_Subprogram_Specification, N_Declaration
6526 N_Function_Specification,
6527 N_Procedure_Specification,
6528
6529 -- (nothing special)
6530 N_Entry_Index_Specification,
6531 N_Freeze_Entity,
6532
6533 -- N_Access_To_Subprogram_Definition
6534 N_Access_Function_Definition,
6535 N_Access_Procedure_Definition,
6536
6537 -- N_Later_Decl_Item,
6538 N_Task_Type_Declaration,
6539
6540 -- N_Body_Stub, N_Later_Decl_Item
6541 N_Package_Body_Stub,
6542 N_Protected_Body_Stub,
6543 N_Subprogram_Body_Stub,
6544 N_Task_Body_Stub,
6545
6546 -- N_Generic_Instantiation, N_Later_Decl_Item
6547 N_Function_Instantiation,
6548 N_Package_Instantiation,
6549 N_Procedure_Instantiation,
6550
6551 -- N_Unit_Body, N_Later_Decl_Item, N_Proper_Body
6552 N_Package_Body,
6553 N_Subprogram_Body,
6554
6555 -- N_Later_Decl_Item, N_Proper_Body
6556 N_Protected_Body,
6557 N_Task_Body,
6558
6559 -- N_Later_Decl_Item
6560 N_Implicit_Label_Declaration,
6561 N_Package_Declaration,
6562 N_Single_Task_Declaration,
6563 N_Subprogram_Declaration,
6564 N_Use_Package_Clause,
6565
6566 -- N_Generic_Declaration, N_Later_Decl_Item
6567 N_Generic_Package_Declaration,
6568 N_Generic_Subprogram_Declaration,
6569
6570 -- N_Array_Type_Definition
6571 N_Constrained_Array_Definition,
6572 N_Unconstrained_Array_Definition,
6573
6574 -- N_Renaming_Declaration
6575 N_Exception_Renaming_Declaration,
6576 N_Object_Renaming_Declaration,
6577 N_Package_Renaming_Declaration,
6578 N_Subprogram_Renaming_Declaration,
6579
6580 -- N_Generic_Renaming_Declarations, N_Renaming_Declaration
6581 N_Generic_Function_Renaming_Declaration,
6582 N_Generic_Package_Renaming_Declaration,
6583 N_Generic_Procedure_Renaming_Declaration,
6584
6585 -- N_Statement_Other_Than_Procedure_Call
6586 N_Abort_Statement,
6587 N_Accept_Statement,
6588 N_Assignment_Statement,
6589 N_Asynchronous_Select,
6590 N_Block_Statement,
6591 N_Case_Statement,
6592 N_Code_Statement,
6593 N_Conditional_Entry_Call,
6594 N_Delay_Relative_Statement,
6595 N_Delay_Until_Statement,
6596 N_Entry_Call_Statement,
6597 N_Free_Statement,
6598 N_Goto_Statement,
6599 N_Loop_Statement,
6600 N_Null_Statement,
6601 N_Raise_Statement,
6602 N_Requeue_Statement,
6603 N_Return_Statement,
6604 N_Selective_Accept,
6605 N_Timed_Entry_Call,
6606
6607 -- N_Statement_Other_Than_Procedure_Call, N_Has_Condition
6608 N_Exit_Statement,
6609 N_If_Statement,
6610
6611 -- N_Has_Condition
6612 N_Accept_Alternative,
6613 N_Delay_Alternative,
6614 N_Elsif_Part,
6615 N_Entry_Body_Formal_Part,
6616 N_Iteration_Scheme,
6617 N_Terminate_Alternative,
6618
6619 -- Other nodes (not part of any subtype class)
6620 N_Abortable_Part,
6621 N_Abstract_Subprogram_Declaration,
6622 N_Access_Definition,
6623 N_Access_To_Object_Definition,
6624 N_Case_Statement_Alternative,
6625 N_Compilation_Unit,
6626 N_Compilation_Unit_Aux,
6627 N_Component_Association,
6628 N_Component_List,
6629 N_Derived_Type_Definition,
6630 N_Decimal_Fixed_Point_Definition,
6631 N_Defining_Program_Unit_Name,
6632 N_Delta_Constraint,
6633 N_Designator,
6634 N_Digits_Constraint,
6635 N_Discriminant_Association,
6636 N_Discriminant_Specification,
6637 N_Enumeration_Type_Definition,
6638 N_Entry_Body,
6639 N_Entry_Call_Alternative,
6640 N_Exception_Declaration,
6641 N_Exception_Handler,
6642 N_Floating_Point_Definition,
6643 N_Formal_Decimal_Fixed_Point_Definition,
6644 N_Formal_Derived_Type_Definition,
6645 N_Formal_Discrete_Type_Definition,
6646 N_Formal_Floating_Point_Definition,
6647 N_Formal_Modular_Type_Definition,
6648 N_Formal_Ordinary_Fixed_Point_Definition,
6649 N_Formal_Package_Declaration,
6650 N_Formal_Private_Type_Definition,
6651 N_Formal_Signed_Integer_Type_Definition,
6652 N_Formal_Subprogram_Declaration,
6653 N_Generic_Association,
6654 N_Handled_Sequence_Of_Statements,
6655 N_Index_Or_Discriminant_Constraint,
6656 N_Itype_Reference,
6657 N_Label,
6658 N_Modular_Type_Definition,
6659 N_Number_Declaration,
6660 N_Ordinary_Fixed_Point_Definition,
6661 N_Others_Choice,
6662 N_Package_Specification,
6663 N_Parameter_Association,
6664 N_Parameter_Specification,
6665 N_Protected_Definition,
6666 N_Range_Constraint,
6667 N_Real_Range_Specification,
6668 N_Record_Definition,
6669 N_Signed_Integer_Type_Definition,
6670 N_Single_Protected_Declaration,
6671 N_Subunit,
6672 N_Task_Definition,
6673 N_Triggering_Alternative,
6674 N_Use_Type_Clause,
6675 N_Validate_Unchecked_Conversion,
6676 N_Variant,
6677 N_Variant_Part,
6678 N_With_Clause,
6679 N_With_Type_Clause,
6680 N_Unused_At_End);
6681
6682 for Node_Kind'Size use 8;
6683 -- The data structures in Atree assume this!
6684
6685 ----------------------------
6686 -- Node Class Definitions --
6687 ----------------------------
6688
6689 subtype N_Access_To_Subprogram_Definition is Node_Kind range
6690 N_Access_Function_Definition ..
6691 N_Access_Procedure_Definition;
6692
6693 subtype N_Array_Type_Definition is Node_Kind range
6694 N_Constrained_Array_Definition ..
6695 N_Unconstrained_Array_Definition;
6696
6697 subtype N_Binary_Op is Node_Kind range
6698 N_Op_Add ..
6699 N_Op_Shift_Right_Arithmetic;
6700
6701 subtype N_Body_Stub is Node_Kind range
6702 N_Package_Body_Stub ..
6703 N_Task_Body_Stub;
6704
6705 subtype N_Declaration is Node_Kind range
6706 N_Component_Declaration ..
6707 N_Procedure_Specification;
6708 -- Note: this includes all constructs normally thought of as declarations
6709 -- except those which are separately grouped as later declarations.
6710
6711 subtype N_Direct_Name is Node_Kind range
6712 N_Identifier ..
6713 N_Character_Literal;
6714
6715 subtype N_Entity is Node_Kind range
6716 N_Defining_Character_Literal ..
6717 N_Defining_Operator_Symbol;
6718
6719 subtype N_Generic_Declaration is Node_Kind range
6720 N_Generic_Package_Declaration ..
6721 N_Generic_Subprogram_Declaration;
6722
6723 subtype N_Generic_Instantiation is Node_Kind range
6724 N_Function_Instantiation ..
6725 N_Procedure_Instantiation;
6726
6727 subtype N_Generic_Renaming_Declaration is Node_Kind range
6728 N_Generic_Function_Renaming_Declaration ..
6729 N_Generic_Procedure_Renaming_Declaration;
6730
6731 subtype N_Has_Chars is Node_Kind range
6732 N_Attribute_Definition_Clause ..
6733 N_Op_Plus;
6734
6735 subtype N_Has_Entity is Node_Kind range
6736 N_Expanded_Name ..
6737 N_Attribute_Reference;
6738 -- Nodes that have Entity fields
6739 -- Warning: DOES NOT INCLUDE N_Freeze_Entity!
6740
6741 subtype N_Has_Etype is Node_Kind range
6742 N_Error ..
6743 N_Subtype_Indication;
6744
6745 subtype N_Has_Treat_Fixed_As_Integer is Node_Kind range
6746 N_Op_Divide ..
6747 N_Op_Rem;
6748
6749 subtype N_Later_Decl_Item is Node_Kind range
6750 N_Task_Type_Declaration ..
6751 N_Generic_Subprogram_Declaration;
6752 -- Note: this is Ada 83 relevant only (see Ada 83 RM 3.9 (2)) and
6753 -- includes only those items which can appear as later declarative
6754 -- items. This also includes N_Implicit_Label_Declaration which is
6755 -- not specifically in the grammar but may appear as a valid later
6756 -- declarative items. It does NOT include N_Pragma which can also
6757 -- appear among later declarative items. It does however include
6758 -- N_Protected_Body, which is a bit peculiar, but harmless since
6759 -- this cannot appear in Ada 83 mode anyway.
6760
6761 subtype N_Op is Node_Kind range
6762 N_Op_Add ..
6763 N_Op_Plus;
6764
6765 subtype N_Op_Boolean is Node_Kind range
6766 N_Op_And ..
6767 N_Op_Xor;
6768 -- Binary operators which take operands of a boolean type, and yield
6769 -- a result of a boolean type.
6770
6771 subtype N_Op_Compare is Node_Kind range
6772 N_Op_Eq ..
6773 N_Op_Ne;
6774
6775 subtype N_Op_Shift is Node_Kind range
6776 N_Op_Rotate_Left ..
6777 N_Op_Shift_Right_Arithmetic;
6778
6779 subtype N_Proper_Body is Node_Kind range
6780 N_Package_Body ..
6781 N_Task_Body;
6782
6783 subtype N_Raise_xxx_Error is Node_Kind range
6784 N_Raise_Constraint_Error ..
6785 N_Raise_Storage_Error;
6786
6787 subtype N_Renaming_Declaration is Node_Kind range
6788 N_Exception_Renaming_Declaration ..
6789 N_Generic_Procedure_Renaming_Declaration;
6790
6791 subtype N_Representation_Clause is Node_Kind range
6792 N_At_Clause ..
6793 N_Attribute_Definition_Clause;
6794
6795 subtype N_Statement_Other_Than_Procedure_Call is Node_Kind range
6796 N_Abort_Statement ..
6797 N_If_Statement;
6798 -- Note that this includes all statement types except for the cases of the
6799 -- N_Procedure_Call_Statement which is considered to be a subexpression
6800 -- (since overloading is possible, so it needs to go through the normal
6801 -- overloading resolution for expressions).
6802
6803 subtype N_Has_Condition is Node_Kind range
6804 N_Exit_Statement ..
6805 N_Terminate_Alternative;
6806 -- Nodes with condition fields (does not include N_Raise_xxx_Error)
6807
6808 subtype N_Subexpr is Node_Kind range
6809 N_Expanded_Name ..
6810 N_Unchecked_Type_Conversion;
6811 -- Nodes with expression fields
6812
6813 subtype N_Subprogram_Specification is Node_Kind range
6814 N_Function_Specification ..
6815 N_Procedure_Specification;
6816
6817 subtype N_Unary_Op is Node_Kind range
6818 N_Op_Abs ..
6819 N_Op_Plus;
6820
6821 subtype N_Unit_Body is Node_Kind range
6822 N_Package_Body ..
6823 N_Subprogram_Body;
6824
6825 ---------------------------
6826 -- Node Access Functions --
6827 ---------------------------
6828
6829 -- The following functions return the contents of the indicated field of
6830 -- the node referenced by the argument, which is a Node_Id. They provide
6831 -- logical access to fields in the node which could be accessed using the
6832 -- Atree.Unchecked_Access package, but the idea is always to use these
6833 -- higher level routines which preserve strong typing. In debug mode,
6834 -- these routines check that they are being applied to an appropriate
6835 -- node, as well as checking that the node is in range.
6836
6837 function ABE_Is_Certain
6838 (N : Node_Id) return Boolean; -- Flag18
6839
6840 function Abort_Present
6841 (N : Node_Id) return Boolean; -- Flag15
6842
6843 function Abortable_Part
6844 (N : Node_Id) return Node_Id; -- Node2
6845
6846 function Abstract_Present
6847 (N : Node_Id) return Boolean; -- Flag4
6848
6849 function Accept_Handler_Records
6850 (N : Node_Id) return List_Id; -- List5
6851
6852 function Accept_Statement
6853 (N : Node_Id) return Node_Id; -- Node2
6854
6855 function Access_Types_To_Process
6856 (N : Node_Id) return Elist_Id; -- Elist2
6857
6858 function Actions
6859 (N : Node_Id) return List_Id; -- List1
6860
6861 function Activation_Chain_Entity
6862 (N : Node_Id) return Node_Id; -- Node3
6863
6864 function Acts_As_Spec
6865 (N : Node_Id) return Boolean; -- Flag4
6866
6867 function Aggregate_Bounds
6868 (N : Node_Id) return Node_Id; -- Node3
6869
6870 function Aliased_Present
6871 (N : Node_Id) return Boolean; -- Flag4
6872
6873 function All_Others
6874 (N : Node_Id) return Boolean; -- Flag11
6875
6876 function All_Present
6877 (N : Node_Id) return Boolean; -- Flag15
6878
6879 function Alternatives
6880 (N : Node_Id) return List_Id; -- List4
6881
6882 function Ancestor_Part
6883 (N : Node_Id) return Node_Id; -- Node3
6884
6885 function Array_Aggregate
6886 (N : Node_Id) return Node_Id; -- Node3
6887
6888 function Assignment_OK
6889 (N : Node_Id) return Boolean; -- Flag15
6890
6891 function Associated_Node
6892 (N : Node_Id) return Node_Id; -- Node4
6893
6894 function At_End_Proc
6895 (N : Node_Id) return Node_Id; -- Node1
6896
6897 function Attribute_Name
6898 (N : Node_Id) return Name_Id; -- Name2
6899
6900 function Aux_Decls_Node
6901 (N : Node_Id) return Node_Id; -- Node5
6902
6903 function Backwards_OK
6904 (N : Node_Id) return Boolean; -- Flag6
6905
6906 function Bad_Is_Detected
6907 (N : Node_Id) return Boolean; -- Flag15
6908
6909 function By_Ref
6910 (N : Node_Id) return Boolean; -- Flag5
6911
6912 function Body_Required
6913 (N : Node_Id) return Boolean; -- Flag13
6914
6915 function Body_To_Inline
6916 (N : Node_Id) return Node_Id; -- Node3
6917
6918 function Box_Present
6919 (N : Node_Id) return Boolean; -- Flag15
6920
6921 function Char_Literal_Value
6922 (N : Node_Id) return Char_Code; -- Char_Code2
6923
6924 function Chars
6925 (N : Node_Id) return Name_Id; -- Name1
6926
6927 function Check_Address_Alignment
6928 (N : Node_Id) return Boolean; -- Flag11
6929
6930 function Choice_Parameter
6931 (N : Node_Id) return Node_Id; -- Node2
6932
6933 function Choices
6934 (N : Node_Id) return List_Id; -- List1
6935
6936 function Compile_Time_Known_Aggregate
6937 (N : Node_Id) return Boolean; -- Flag18
6938
6939 function Component_Associations
6940 (N : Node_Id) return List_Id; -- List2
6941
6942 function Component_Clauses
6943 (N : Node_Id) return List_Id; -- List3
6944
6945 function Component_Items
6946 (N : Node_Id) return List_Id; -- List3
6947
6948 function Component_List
6949 (N : Node_Id) return Node_Id; -- Node1
6950
6951 function Component_Name
6952 (N : Node_Id) return Node_Id; -- Node1
6953
6954 function Condition
6955 (N : Node_Id) return Node_Id; -- Node1
6956
6957 function Condition_Actions
6958 (N : Node_Id) return List_Id; -- List3
6959
6960 function Config_Pragmas
6961 (N : Node_Id) return List_Id; -- List4
6962
6963 function Constant_Present
6964 (N : Node_Id) return Boolean; -- Flag17
6965
6966 function Constraint
6967 (N : Node_Id) return Node_Id; -- Node3
6968
6969 function Constraints
6970 (N : Node_Id) return List_Id; -- List1
6971
6972 function Context_Installed
6973 (N : Node_Id) return Boolean; -- Flag13
6974
6975 function Context_Items
6976 (N : Node_Id) return List_Id; -- List1
6977
6978 function Controlling_Argument
6979 (N : Node_Id) return Node_Id; -- Node1
6980
6981 function Conversion_OK
6982 (N : Node_Id) return Boolean; -- Flag14
6983
6984 function Corresponding_Body
6985 (N : Node_Id) return Node_Id; -- Node5
6986
6987 function Corresponding_Generic_Association
6988 (N : Node_Id) return Node_Id; -- Node5
6989
6990 function Corresponding_Integer_Value
6991 (N : Node_Id) return Uint; -- Uint4
6992
6993 function Corresponding_Spec
6994 (N : Node_Id) return Node_Id; -- Node5
6995
6996 function Corresponding_Stub
6997 (N : Node_Id) return Node_Id; -- Node3
6998
6999 function Dcheck_Function
7000 (N : Node_Id) return Entity_Id; -- Node5
7001
7002 function Debug_Statement
7003 (N : Node_Id) return Node_Id; -- Node3
7004
7005 function Declarations
7006 (N : Node_Id) return List_Id; -- List2
7007
7008 function Default_Expression
7009 (N : Node_Id) return Node_Id; -- Node5
7010
7011 function Default_Name
7012 (N : Node_Id) return Node_Id; -- Node2
7013
7014 function Defining_Identifier
7015 (N : Node_Id) return Entity_Id; -- Node1
7016
7017 function Defining_Unit_Name
7018 (N : Node_Id) return Node_Id; -- Node1
7019
7020 function Delay_Alternative
7021 (N : Node_Id) return Node_Id; -- Node4
7022
7023 function Delay_Finalize_Attach
7024 (N : Node_Id) return Boolean; -- Flag14
7025
7026 function Delay_Statement
7027 (N : Node_Id) return Node_Id; -- Node2
7028
7029 function Delta_Expression
7030 (N : Node_Id) return Node_Id; -- Node3
7031
7032 function Digits_Expression
7033 (N : Node_Id) return Node_Id; -- Node2
7034
7035 function Discr_Check_Funcs_Built
7036 (N : Node_Id) return Boolean; -- Flag11
7037
7038 function Discrete_Choices
7039 (N : Node_Id) return List_Id; -- List4
7040
7041 function Discrete_Range
7042 (N : Node_Id) return Node_Id; -- Node4
7043
7044 function Discrete_Subtype_Definition
7045 (N : Node_Id) return Node_Id; -- Node4
7046
7047 function Discrete_Subtype_Definitions
7048 (N : Node_Id) return List_Id; -- List2
7049
7050 function Discriminant_Specifications
7051 (N : Node_Id) return List_Id; -- List4
7052
7053 function Discriminant_Type
7054 (N : Node_Id) return Node_Id; -- Node5
7055
7056 function Do_Accessibility_Check
7057 (N : Node_Id) return Boolean; -- Flag13
7058
7059 function Do_Discriminant_Check
7060 (N : Node_Id) return Boolean; -- Flag13
7061
7062 function Do_Division_Check
7063 (N : Node_Id) return Boolean; -- Flag13
7064
7065 function Do_Length_Check
7066 (N : Node_Id) return Boolean; -- Flag4
7067
7068 function Do_Overflow_Check
7069 (N : Node_Id) return Boolean; -- Flag17
7070
7071 function Do_Range_Check
7072 (N : Node_Id) return Boolean; -- Flag9
7073
7074 function Do_Storage_Check
7075 (N : Node_Id) return Boolean; -- Flag17
7076
7077 function Do_Tag_Check
7078 (N : Node_Id) return Boolean; -- Flag13
7079
7080 function Elaborate_All_Present
7081 (N : Node_Id) return Boolean; -- Flag15
7082
7083 function Elaborate_Present
7084 (N : Node_Id) return Boolean; -- Flag4
7085
7086 function Elaboration_Boolean
7087 (N : Node_Id) return Node_Id; -- Node2
7088
7089 function Else_Actions
7090 (N : Node_Id) return List_Id; -- List3
7091
7092 function Else_Statements
7093 (N : Node_Id) return List_Id; -- List4
7094
7095 function Elsif_Parts
7096 (N : Node_Id) return List_Id; -- List3
7097
7098 function Enclosing_Variant
7099 (N : Node_Id) return Node_Id; -- Node2
7100
7101 function End_Label
7102 (N : Node_Id) return Node_Id; -- Node4
7103
7104 function End_Span
7105 (N : Node_Id) return Uint; -- Uint5
7106
7107 function Entity
7108 (N : Node_Id) return Node_Id; -- Node4
7109
7110 function Entry_Body_Formal_Part
7111 (N : Node_Id) return Node_Id; -- Node5
7112
7113 function Entry_Call_Alternative
7114 (N : Node_Id) return Node_Id; -- Node1
7115
7116 function Entry_Call_Statement
7117 (N : Node_Id) return Node_Id; -- Node1
7118
7119 function Entry_Direct_Name
7120 (N : Node_Id) return Node_Id; -- Node1
7121
7122 function Entry_Index
7123 (N : Node_Id) return Node_Id; -- Node5
7124
7125 function Entry_Index_Specification
7126 (N : Node_Id) return Node_Id; -- Node4
7127
7128 function Etype
7129 (N : Node_Id) return Node_Id; -- Node5
7130
7131 function Exception_Choices
7132 (N : Node_Id) return List_Id; -- List4
7133
7134 function Exception_Handlers
7135 (N : Node_Id) return List_Id; -- List5
7136
7137 function Exception_Junk
7138 (N : Node_Id) return Boolean; -- Flag11
7139
7140 function Explicit_Actual_Parameter
7141 (N : Node_Id) return Node_Id; -- Node3
7142
7143 function Expansion_Delayed
7144 (N : Node_Id) return Boolean; -- Flag11
7145
7146 function Explicit_Generic_Actual_Parameter
7147 (N : Node_Id) return Node_Id; -- Node1
7148
7149 function Expression
7150 (N : Node_Id) return Node_Id; -- Node3
7151
7152 function Expressions
7153 (N : Node_Id) return List_Id; -- List1
7154
7155 function First_Bit
7156 (N : Node_Id) return Node_Id; -- Node3
7157
7158 function First_Inlined_Subprogram
7159 (N : Node_Id) return Entity_Id; -- Node3
7160
7161 function First_Name
7162 (N : Node_Id) return Boolean; -- Flag5
7163
7164 function First_Named_Actual
7165 (N : Node_Id) return Node_Id; -- Node4
7166
7167 function First_Real_Statement
7168 (N : Node_Id) return Node_Id; -- Node2
7169
7170 function First_Subtype_Link
7171 (N : Node_Id) return Entity_Id; -- Node5
7172
7173 function Float_Truncate
7174 (N : Node_Id) return Boolean; -- Flag11
7175
7176 function Formal_Type_Definition
7177 (N : Node_Id) return Node_Id; -- Node3
7178
7179 function Forwards_OK
7180 (N : Node_Id) return Boolean; -- Flag5
7181
7182 function From_At_Mod
7183 (N : Node_Id) return Boolean; -- Flag4
7184
7185 function Generic_Associations
7186 (N : Node_Id) return List_Id; -- List3
7187
7188 function Generic_Formal_Declarations
7189 (N : Node_Id) return List_Id; -- List2
7190
7191 function Generic_Parent
7192 (N : Node_Id) return Node_Id; -- Node5
7193
7194 function Generic_Parent_Type
7195 (N : Node_Id) return Node_Id; -- Node4
7196
7197 function Handled_Statement_Sequence
7198 (N : Node_Id) return Node_Id; -- Node4
7199
7200 function Handler_List_Entry
7201 (N : Node_Id) return Node_Id; -- Node2
7202
7203 function Has_Created_Identifier
7204 (N : Node_Id) return Boolean; -- Flag15
7205
7206 function Has_Dynamic_Length_Check
7207 (N : Node_Id) return Boolean; -- Flag10
7208
7209 function Has_Dynamic_Range_Check
7210 (N : Node_Id) return Boolean; -- Flag12
7211
7212 function Has_No_Elaboration_Code
7213 (N : Node_Id) return Boolean; -- Flag17
7214
7215 function Has_Priority_Pragma
7216 (N : Node_Id) return Boolean; -- Flag6
7217
7218 function Has_Private_View
7219 (N : Node_Id) return Boolean; -- Flag11
7220
7221 function Has_Storage_Size_Pragma
7222 (N : Node_Id) return Boolean; -- Flag5
7223
7224 function Has_Task_Info_Pragma
7225 (N : Node_Id) return Boolean; -- Flag7
7226
7227 function Has_Task_Name_Pragma
7228 (N : Node_Id) return Boolean; -- Flag8
7229
7230 function Has_Wide_Character
7231 (N : Node_Id) return Boolean; -- Flag11
7232
7233 function Hidden_By_Use_Clause
7234 (N : Node_Id) return Elist_Id; -- Elist4
7235
7236 function High_Bound
7237 (N : Node_Id) return Node_Id; -- Node2
7238
7239 function Identifier
7240 (N : Node_Id) return Node_Id; -- Node1
7241
7242 function Implicit_With
7243 (N : Node_Id) return Boolean; -- Flag16
7244
7245 function In_Present
7246 (N : Node_Id) return Boolean; -- Flag15
7247
7248 function Includes_Infinities
7249 (N : Node_Id) return Boolean; -- Flag11
7250
7251 function Instance_Spec
7252 (N : Node_Id) return Node_Id; -- Node5
7253
7254 function Intval
7255 (N : Node_Id) return Uint; -- Uint3
7256
7257 function Is_Asynchronous_Call_Block
7258 (N : Node_Id) return Boolean; -- Flag7
7259
7260 function Is_Component_Left_Opnd
7261 (N : Node_Id) return Boolean; -- Flag13
7262
7263 function Is_Component_Right_Opnd
7264 (N : Node_Id) return Boolean; -- Flag14
7265
7266 function Is_Controlling_Actual
7267 (N : Node_Id) return Boolean; -- Flag16
7268
7269 function Is_In_Discriminant_Check
7270 (N : Node_Id) return Boolean; -- Flag11
7271
7272 function Is_Machine_Number
7273 (N : Node_Id) return Boolean; -- Flag11
7274
7275 function Is_Null_Loop
7276 (N : Node_Id) return Boolean; -- Flag16
7277
7278 function Is_Overloaded
7279 (N : Node_Id) return Boolean; -- Flag5
7280
7281 function Is_Power_Of_2_For_Shift
7282 (N : Node_Id) return Boolean; -- Flag13
7283
7284 function Is_Protected_Subprogram_Body
7285 (N : Node_Id) return Boolean; -- Flag7
7286
7287 function Is_Static_Expression
7288 (N : Node_Id) return Boolean; -- Flag6
7289
7290 function Is_Subprogram_Descriptor
7291 (N : Node_Id) return Boolean; -- Flag16
7292
7293 function Is_Task_Allocation_Block
7294 (N : Node_Id) return Boolean; -- Flag6
7295
7296 function Is_Task_Master
7297 (N : Node_Id) return Boolean; -- Flag5
7298
7299 function Iteration_Scheme
7300 (N : Node_Id) return Node_Id; -- Node2
7301
7302 function Itype
7303 (N : Node_Id) return Entity_Id; -- Node1
7304
7305 function Kill_Range_Check
7306 (N : Node_Id) return Boolean; -- Flag11
7307
7308 function Label_Construct
7309 (N : Node_Id) return Node_Id; -- Node2
7310
7311 function Left_Opnd
7312 (N : Node_Id) return Node_Id; -- Node2
7313
7314 function Last_Bit
7315 (N : Node_Id) return Node_Id; -- Node4
7316
7317 function Last_Name
7318 (N : Node_Id) return Boolean; -- Flag6
7319
7320 function Library_Unit
7321 (N : Node_Id) return Node_Id; -- Node4
7322
7323 function Limited_View_Installed
7324 (N : Node_Id) return Boolean; -- Flag18
7325
7326 function Limited_Present
7327 (N : Node_Id) return Boolean; -- Flag17
7328
7329 function Literals
7330 (N : Node_Id) return List_Id; -- List1
7331
7332 function Loop_Actions
7333 (N : Node_Id) return List_Id; -- List2
7334
7335 function Loop_Parameter_Specification
7336 (N : Node_Id) return Node_Id; -- Node4
7337
7338 function Low_Bound
7339 (N : Node_Id) return Node_Id; -- Node1
7340
7341 function Mod_Clause
7342 (N : Node_Id) return Node_Id; -- Node2
7343
7344 function More_Ids
7345 (N : Node_Id) return Boolean; -- Flag5
7346
7347 function Must_Be_Byte_Aligned
7348 (N : Node_Id) return Boolean; -- Flag14
7349
7350 function Must_Not_Freeze
7351 (N : Node_Id) return Boolean; -- Flag8
7352
7353 function Name
7354 (N : Node_Id) return Node_Id; -- Node2
7355
7356 function Names
7357 (N : Node_Id) return List_Id; -- List2
7358
7359 function Next_Entity
7360 (N : Node_Id) return Node_Id; -- Node2
7361
7362 function Next_Named_Actual
7363 (N : Node_Id) return Node_Id; -- Node4
7364
7365 function Next_Rep_Item
7366 (N : Node_Id) return Node_Id; -- Node4
7367
7368 function Next_Use_Clause
7369 (N : Node_Id) return Node_Id; -- Node3
7370
7371 function No_Ctrl_Actions
7372 (N : Node_Id) return Boolean; -- Flag7
7373
7374 function No_Entities_Ref_In_Spec
7375 (N : Node_Id) return Boolean; -- Flag8
7376
7377 function No_Initialization
7378 (N : Node_Id) return Boolean; -- Flag13
7379
7380 function No_Truncation
7381 (N : Node_Id) return Boolean; -- Flag17
7382
7383 function Null_Present
7384 (N : Node_Id) return Boolean; -- Flag13
7385
7386 function Null_Record_Present
7387 (N : Node_Id) return Boolean; -- Flag17
7388
7389 function Object_Definition
7390 (N : Node_Id) return Node_Id; -- Node4
7391
7392 function OK_For_Stream
7393 (N : Node_Id) return Boolean; -- Flag4
7394
7395 function Original_Discriminant
7396 (N : Node_Id) return Node_Id; -- Node2
7397
7398 function Original_Entity
7399 (N : Node_Id) return Entity_Id; -- Node2
7400
7401 function Others_Discrete_Choices
7402 (N : Node_Id) return List_Id; -- List1
7403
7404 function Out_Present
7405 (N : Node_Id) return Boolean; -- Flag17
7406
7407 function Parameter_Associations
7408 (N : Node_Id) return List_Id; -- List3
7409
7410 function Parameter_List_Truncated
7411 (N : Node_Id) return Boolean; -- Flag17
7412
7413 function Parameter_Specifications
7414 (N : Node_Id) return List_Id; -- List3
7415
7416 function Parameter_Type
7417 (N : Node_Id) return Node_Id; -- Node2
7418
7419 function Parent_Spec
7420 (N : Node_Id) return Node_Id; -- Node4
7421
7422 function Position
7423 (N : Node_Id) return Node_Id; -- Node2
7424
7425 function Pragma_Argument_Associations
7426 (N : Node_Id) return List_Id; -- List2
7427
7428 function Pragmas_After
7429 (N : Node_Id) return List_Id; -- List5
7430
7431 function Pragmas_Before
7432 (N : Node_Id) return List_Id; -- List4
7433
7434 function Prefix
7435 (N : Node_Id) return Node_Id; -- Node3
7436
7437 function Present_Expr
7438 (N : Node_Id) return Uint; -- Uint3
7439
7440 function Prev_Ids
7441 (N : Node_Id) return Boolean; -- Flag6
7442
7443 function Print_In_Hex
7444 (N : Node_Id) return Boolean; -- Flag13
7445
7446 function Private_Declarations
7447 (N : Node_Id) return List_Id; -- List3
7448
7449 function Private_Present
7450 (N : Node_Id) return Boolean; -- Flag15
7451
7452 function Procedure_To_Call
7453 (N : Node_Id) return Node_Id; -- Node4
7454
7455 function Proper_Body
7456 (N : Node_Id) return Node_Id; -- Node1
7457
7458 function Protected_Definition
7459 (N : Node_Id) return Node_Id; -- Node3
7460
7461 function Protected_Present
7462 (N : Node_Id) return Boolean; -- Flag15
7463
7464 function Raises_Constraint_Error
7465 (N : Node_Id) return Boolean; -- Flag7
7466
7467 function Range_Constraint
7468 (N : Node_Id) return Node_Id; -- Node4
7469
7470 function Range_Expression
7471 (N : Node_Id) return Node_Id; -- Node4
7472
7473 function Real_Range_Specification
7474 (N : Node_Id) return Node_Id; -- Node4
7475
7476 function Realval
7477 (N : Node_Id) return Ureal; -- Ureal3
7478
7479 function Reason
7480 (N : Node_Id) return Uint; -- Uint3
7481
7482 function Record_Extension_Part
7483 (N : Node_Id) return Node_Id; -- Node3
7484
7485 function Redundant_Use
7486 (N : Node_Id) return Boolean; -- Flag13
7487
7488 function Return_Type
7489 (N : Node_Id) return Node_Id; -- Node2
7490
7491 function Reverse_Present
7492 (N : Node_Id) return Boolean; -- Flag15
7493
7494 function Right_Opnd
7495 (N : Node_Id) return Node_Id; -- Node3
7496
7497 function Rounded_Result
7498 (N : Node_Id) return Boolean; -- Flag18
7499
7500 function Scope
7501 (N : Node_Id) return Node_Id; -- Node3
7502
7503 function Select_Alternatives
7504 (N : Node_Id) return List_Id; -- List1
7505
7506 function Selector_Name
7507 (N : Node_Id) return Node_Id; -- Node2
7508
7509 function Selector_Names
7510 (N : Node_Id) return List_Id; -- List1
7511
7512 function Shift_Count_OK
7513 (N : Node_Id) return Boolean; -- Flag4
7514
7515 function Source_Type
7516 (N : Node_Id) return Entity_Id; -- Node1
7517
7518 function Specification
7519 (N : Node_Id) return Node_Id; -- Node1
7520
7521 function Statements
7522 (N : Node_Id) return List_Id; -- List3
7523
7524 function Static_Processing_OK
7525 (N : Node_Id) return Boolean; -- Flag4
7526
7527 function Storage_Pool
7528 (N : Node_Id) return Node_Id; -- Node1
7529
7530 function Strval
7531 (N : Node_Id) return String_Id; -- Str3
7532
7533 function Subtype_Indication
7534 (N : Node_Id) return Node_Id; -- Node5
7535
7536 function Subtype_Mark
7537 (N : Node_Id) return Node_Id; -- Node4
7538
7539 function Subtype_Marks
7540 (N : Node_Id) return List_Id; -- List2
7541
7542 function Tagged_Present
7543 (N : Node_Id) return Boolean; -- Flag15
7544
7545 function Target_Type
7546 (N : Node_Id) return Entity_Id; -- Node2
7547
7548 function Task_Body_Procedure
7549 (N : Node_Id) return Entity_Id; -- Node2
7550
7551 function Task_Definition
7552 (N : Node_Id) return Node_Id; -- Node3
7553
7554 function Then_Actions
7555 (N : Node_Id) return List_Id; -- List2
7556
7557 function Then_Statements
7558 (N : Node_Id) return List_Id; -- List2
7559
7560 function Treat_Fixed_As_Integer
7561 (N : Node_Id) return Boolean; -- Flag14
7562
7563 function Triggering_Alternative
7564 (N : Node_Id) return Node_Id; -- Node1
7565
7566 function Triggering_Statement
7567 (N : Node_Id) return Node_Id; -- Node1
7568
7569 function TSS_Elist
7570 (N : Node_Id) return Elist_Id; -- Elist3
7571
7572 function Type_Definition
7573 (N : Node_Id) return Node_Id; -- Node3
7574
7575 function Unit
7576 (N : Node_Id) return Node_Id; -- Node2
7577
7578 function Unknown_Discriminants_Present
7579 (N : Node_Id) return Boolean; -- Flag13
7580
7581 function Unreferenced_In_Spec
7582 (N : Node_Id) return Boolean; -- Flag7
7583
7584 function Variant_Part
7585 (N : Node_Id) return Node_Id; -- Node4
7586
7587 function Variants
7588 (N : Node_Id) return List_Id; -- List1
7589
7590 function Visible_Declarations
7591 (N : Node_Id) return List_Id; -- List2
7592
7593 function Was_Originally_Stub
7594 (N : Node_Id) return Boolean; -- Flag13
7595
7596 function Zero_Cost_Handling
7597 (N : Node_Id) return Boolean; -- Flag5
7598
7599 -- End functions (note used by xsinfo utility program to end processing)
7600
7601 ----------------------------
7602 -- Node Update Procedures --
7603 ----------------------------
7604
7605 -- These are the corresponding node update routines, which again provide
7606 -- a high level logical access with type checking. In addition to setting
7607 -- the indicated field of the node N to the given Val, in the case of
7608 -- tree pointers (List1-4), the parent pointer of the Val node is set to
7609 -- point back to node N. This automates the setting of the parent pointer.
7610
7611 procedure Set_ABE_Is_Certain
7612 (N : Node_Id; Val : Boolean := True); -- Flag18
7613
7614 procedure Set_Abort_Present
7615 (N : Node_Id; Val : Boolean := True); -- Flag15
7616
7617 procedure Set_Abortable_Part
7618 (N : Node_Id; Val : Node_Id); -- Node2
7619
7620 procedure Set_Abstract_Present
7621 (N : Node_Id; Val : Boolean := True); -- Flag4
7622
7623 procedure Set_Accept_Handler_Records
7624 (N : Node_Id; Val : List_Id); -- List5
7625
7626 procedure Set_Accept_Statement
7627 (N : Node_Id; Val : Node_Id); -- Node2
7628
7629 procedure Set_Access_Types_To_Process
7630 (N : Node_Id; Val : Elist_Id); -- Elist2
7631
7632 procedure Set_Actions
7633 (N : Node_Id; Val : List_Id); -- List1
7634
7635 procedure Set_Activation_Chain_Entity
7636 (N : Node_Id; Val : Node_Id); -- Node3
7637
7638 procedure Set_Acts_As_Spec
7639 (N : Node_Id; Val : Boolean := True); -- Flag4
7640
7641 procedure Set_Aggregate_Bounds
7642 (N : Node_Id; Val : Node_Id); -- Node3
7643
7644 procedure Set_Aliased_Present
7645 (N : Node_Id; Val : Boolean := True); -- Flag4
7646
7647 procedure Set_All_Others
7648 (N : Node_Id; Val : Boolean := True); -- Flag11
7649
7650 procedure Set_All_Present
7651 (N : Node_Id; Val : Boolean := True); -- Flag15
7652
7653 procedure Set_Alternatives
7654 (N : Node_Id; Val : List_Id); -- List4
7655
7656 procedure Set_Ancestor_Part
7657 (N : Node_Id; Val : Node_Id); -- Node3
7658
7659 procedure Set_Array_Aggregate
7660 (N : Node_Id; Val : Node_Id); -- Node3
7661
7662 procedure Set_Assignment_OK
7663 (N : Node_Id; Val : Boolean := True); -- Flag15
7664
7665 procedure Set_Associated_Node
7666 (N : Node_Id; Val : Node_Id); -- Node4
7667
7668 procedure Set_Attribute_Name
7669 (N : Node_Id; Val : Name_Id); -- Name2
7670
7671 procedure Set_At_End_Proc
7672 (N : Node_Id; Val : Node_Id); -- Node1
7673
7674 procedure Set_Aux_Decls_Node
7675 (N : Node_Id; Val : Node_Id); -- Node5
7676
7677 procedure Set_Backwards_OK
7678 (N : Node_Id; Val : Boolean := True); -- Flag6
7679
7680 procedure Set_Bad_Is_Detected
7681 (N : Node_Id; Val : Boolean := True); -- Flag15
7682
7683 procedure Set_Body_Required
7684 (N : Node_Id; Val : Boolean := True); -- Flag13
7685
7686 procedure Set_Body_To_Inline
7687 (N : Node_Id; Val : Node_Id); -- Node3
7688
7689 procedure Set_Box_Present
7690 (N : Node_Id; Val : Boolean := True); -- Flag15
7691
7692 procedure Set_By_Ref
7693 (N : Node_Id; Val : Boolean := True); -- Flag5
7694
7695 procedure Set_Char_Literal_Value
7696 (N : Node_Id; Val : Char_Code); -- Char_Code2
7697
7698 procedure Set_Chars
7699 (N : Node_Id; Val : Name_Id); -- Name1
7700
7701 procedure Set_Check_Address_Alignment
7702 (N : Node_Id; Val : Boolean := True); -- Flag11
7703
7704 procedure Set_Choice_Parameter
7705 (N : Node_Id; Val : Node_Id); -- Node2
7706
7707 procedure Set_Choices
7708 (N : Node_Id; Val : List_Id); -- List1
7709
7710 procedure Set_Compile_Time_Known_Aggregate
7711 (N : Node_Id; Val : Boolean := True); -- Flag18
7712
7713 procedure Set_Component_Associations
7714 (N : Node_Id; Val : List_Id); -- List2
7715
7716 procedure Set_Component_Clauses
7717 (N : Node_Id; Val : List_Id); -- List3
7718
7719 procedure Set_Component_Items
7720 (N : Node_Id; Val : List_Id); -- List3
7721
7722 procedure Set_Component_List
7723 (N : Node_Id; Val : Node_Id); -- Node1
7724
7725 procedure Set_Component_Name
7726 (N : Node_Id; Val : Node_Id); -- Node1
7727
7728 procedure Set_Condition
7729 (N : Node_Id; Val : Node_Id); -- Node1
7730
7731 procedure Set_Condition_Actions
7732 (N : Node_Id; Val : List_Id); -- List3
7733
7734 procedure Set_Config_Pragmas
7735 (N : Node_Id; Val : List_Id); -- List4
7736
7737 procedure Set_Constant_Present
7738 (N : Node_Id; Val : Boolean := True); -- Flag17
7739
7740 procedure Set_Constraint
7741 (N : Node_Id; Val : Node_Id); -- Node3
7742
7743 procedure Set_Constraints
7744 (N : Node_Id; Val : List_Id); -- List1
7745
7746 procedure Set_Context_Installed
7747 (N : Node_Id; Val : Boolean := True); -- Flag13
7748
7749 procedure Set_Context_Items
7750 (N : Node_Id; Val : List_Id); -- List1
7751
7752 procedure Set_Controlling_Argument
7753 (N : Node_Id; Val : Node_Id); -- Node1
7754
7755 procedure Set_Conversion_OK
7756 (N : Node_Id; Val : Boolean := True); -- Flag14
7757
7758 procedure Set_Corresponding_Body
7759 (N : Node_Id; Val : Node_Id); -- Node5
7760
7761 procedure Set_Corresponding_Generic_Association
7762 (N : Node_Id; Val : Node_Id); -- Node5
7763
7764 procedure Set_Corresponding_Integer_Value
7765 (N : Node_Id; Val : Uint); -- Uint4
7766
7767 procedure Set_Corresponding_Spec
7768 (N : Node_Id; Val : Node_Id); -- Node5
7769
7770 procedure Set_Corresponding_Stub
7771 (N : Node_Id; Val : Node_Id); -- Node3
7772
7773 procedure Set_Dcheck_Function
7774 (N : Node_Id; Val : Entity_Id); -- Node5
7775
7776 procedure Set_Debug_Statement
7777 (N : Node_Id; Val : Node_Id); -- Node3
7778
7779 procedure Set_Declarations
7780 (N : Node_Id; Val : List_Id); -- List2
7781
7782 procedure Set_Default_Expression
7783 (N : Node_Id; Val : Node_Id); -- Node5
7784
7785 procedure Set_Default_Name
7786 (N : Node_Id; Val : Node_Id); -- Node2
7787
7788 procedure Set_Defining_Identifier
7789 (N : Node_Id; Val : Entity_Id); -- Node1
7790
7791 procedure Set_Defining_Unit_Name
7792 (N : Node_Id; Val : Node_Id); -- Node1
7793
7794 procedure Set_Delay_Alternative
7795 (N : Node_Id; Val : Node_Id); -- Node4
7796
7797 procedure Set_Delay_Finalize_Attach
7798 (N : Node_Id; Val : Boolean := True); -- Flag14
7799
7800 procedure Set_Delay_Statement
7801 (N : Node_Id; Val : Node_Id); -- Node2
7802
7803 procedure Set_Delta_Expression
7804 (N : Node_Id; Val : Node_Id); -- Node3
7805
7806 procedure Set_Digits_Expression
7807 (N : Node_Id; Val : Node_Id); -- Node2
7808
7809 procedure Set_Discr_Check_Funcs_Built
7810 (N : Node_Id; Val : Boolean := True); -- Flag11
7811
7812 procedure Set_Discrete_Choices
7813 (N : Node_Id; Val : List_Id); -- List4
7814
7815 procedure Set_Discrete_Range
7816 (N : Node_Id; Val : Node_Id); -- Node4
7817
7818 procedure Set_Discrete_Subtype_Definition
7819 (N : Node_Id; Val : Node_Id); -- Node4
7820
7821 procedure Set_Discrete_Subtype_Definitions
7822 (N : Node_Id; Val : List_Id); -- List2
7823
7824 procedure Set_Discriminant_Specifications
7825 (N : Node_Id; Val : List_Id); -- List4
7826
7827 procedure Set_Discriminant_Type
7828 (N : Node_Id; Val : Node_Id); -- Node5
7829
7830 procedure Set_Do_Accessibility_Check
7831 (N : Node_Id; Val : Boolean := True); -- Flag13
7832
7833 procedure Set_Do_Discriminant_Check
7834 (N : Node_Id; Val : Boolean := True); -- Flag13
7835
7836 procedure Set_Do_Division_Check
7837 (N : Node_Id; Val : Boolean := True); -- Flag13
7838
7839 procedure Set_Do_Length_Check
7840 (N : Node_Id; Val : Boolean := True); -- Flag4
7841
7842 procedure Set_Do_Overflow_Check
7843 (N : Node_Id; Val : Boolean := True); -- Flag17
7844
7845 procedure Set_Do_Range_Check
7846 (N : Node_Id; Val : Boolean := True); -- Flag9
7847
7848 procedure Set_Do_Storage_Check
7849 (N : Node_Id; Val : Boolean := True); -- Flag17
7850
7851 procedure Set_Do_Tag_Check
7852 (N : Node_Id; Val : Boolean := True); -- Flag13
7853
7854 procedure Set_Elaborate_All_Present
7855 (N : Node_Id; Val : Boolean := True); -- Flag15
7856
7857 procedure Set_Elaborate_Present
7858 (N : Node_Id; Val : Boolean := True); -- Flag4
7859
7860 procedure Set_Elaboration_Boolean
7861 (N : Node_Id; Val : Node_Id); -- Node2
7862
7863 procedure Set_Else_Actions
7864 (N : Node_Id; Val : List_Id); -- List3
7865
7866 procedure Set_Else_Statements
7867 (N : Node_Id; Val : List_Id); -- List4
7868
7869 procedure Set_Elsif_Parts
7870 (N : Node_Id; Val : List_Id); -- List3
7871
7872 procedure Set_Enclosing_Variant
7873 (N : Node_Id; Val : Node_Id); -- Node2
7874
7875 procedure Set_End_Label
7876 (N : Node_Id; Val : Node_Id); -- Node4
7877
7878 procedure Set_End_Span
7879 (N : Node_Id; Val : Uint); -- Uint5
7880
7881 procedure Set_Entity
7882 (N : Node_Id; Val : Node_Id); -- Node4
7883
7884 procedure Set_Entry_Body_Formal_Part
7885 (N : Node_Id; Val : Node_Id); -- Node5
7886
7887 procedure Set_Entry_Call_Alternative
7888 (N : Node_Id; Val : Node_Id); -- Node1
7889
7890 procedure Set_Entry_Call_Statement
7891 (N : Node_Id; Val : Node_Id); -- Node1
7892
7893 procedure Set_Entry_Direct_Name
7894 (N : Node_Id; Val : Node_Id); -- Node1
7895
7896 procedure Set_Entry_Index
7897 (N : Node_Id; Val : Node_Id); -- Node5
7898
7899 procedure Set_Entry_Index_Specification
7900 (N : Node_Id; Val : Node_Id); -- Node4
7901
7902 procedure Set_Etype
7903 (N : Node_Id; Val : Node_Id); -- Node5
7904
7905 procedure Set_Exception_Choices
7906 (N : Node_Id; Val : List_Id); -- List4
7907
7908 procedure Set_Exception_Handlers
7909 (N : Node_Id; Val : List_Id); -- List5
7910
7911 procedure Set_Exception_Junk
7912 (N : Node_Id; Val : Boolean := True); -- Flag11
7913
7914 procedure Set_Expansion_Delayed
7915 (N : Node_Id; Val : Boolean := True); -- Flag11
7916
7917 procedure Set_Explicit_Actual_Parameter
7918 (N : Node_Id; Val : Node_Id); -- Node3
7919
7920 procedure Set_Explicit_Generic_Actual_Parameter
7921 (N : Node_Id; Val : Node_Id); -- Node1
7922
7923 procedure Set_Expression
7924 (N : Node_Id; Val : Node_Id); -- Node3
7925
7926 procedure Set_Expressions
7927 (N : Node_Id; Val : List_Id); -- List1
7928
7929 procedure Set_First_Bit
7930 (N : Node_Id; Val : Node_Id); -- Node3
7931
7932 procedure Set_First_Inlined_Subprogram
7933 (N : Node_Id; Val : Entity_Id); -- Node3
7934
7935 procedure Set_First_Name
7936 (N : Node_Id; Val : Boolean := True); -- Flag5
7937
7938 procedure Set_First_Named_Actual
7939 (N : Node_Id; Val : Node_Id); -- Node4
7940
7941 procedure Set_First_Real_Statement
7942 (N : Node_Id; Val : Node_Id); -- Node2
7943
7944 procedure Set_First_Subtype_Link
7945 (N : Node_Id; Val : Entity_Id); -- Node5
7946
7947 procedure Set_Float_Truncate
7948 (N : Node_Id; Val : Boolean := True); -- Flag11
7949
7950 procedure Set_Formal_Type_Definition
7951 (N : Node_Id; Val : Node_Id); -- Node3
7952
7953 procedure Set_Forwards_OK
7954 (N : Node_Id; Val : Boolean := True); -- Flag5
7955
7956 procedure Set_From_At_Mod
7957 (N : Node_Id; Val : Boolean := True); -- Flag4
7958
7959 procedure Set_Generic_Associations
7960 (N : Node_Id; Val : List_Id); -- List3
7961
7962 procedure Set_Generic_Formal_Declarations
7963 (N : Node_Id; Val : List_Id); -- List2
7964
7965 procedure Set_Generic_Parent
7966 (N : Node_Id; Val : Node_Id); -- Node5
7967
7968 procedure Set_Generic_Parent_Type
7969 (N : Node_Id; Val : Node_Id); -- Node4
7970
7971 procedure Set_Handled_Statement_Sequence
7972 (N : Node_Id; Val : Node_Id); -- Node4
7973
7974 procedure Set_Handler_List_Entry
7975 (N : Node_Id; Val : Node_Id); -- Node2
7976
7977 procedure Set_Has_Created_Identifier
7978 (N : Node_Id; Val : Boolean := True); -- Flag15
7979
7980 procedure Set_Has_Dynamic_Length_Check
7981 (N : Node_Id; Val : Boolean := True); -- Flag10
7982
7983 procedure Set_Has_Dynamic_Range_Check
7984 (N : Node_Id; Val : Boolean := True); -- Flag12
7985
7986 procedure Set_Has_No_Elaboration_Code
7987 (N : Node_Id; Val : Boolean := True); -- Flag17
7988
7989 procedure Set_Has_Priority_Pragma
7990 (N : Node_Id; Val : Boolean := True); -- Flag6
7991
7992 procedure Set_Has_Private_View
7993 (N : Node_Id; Val : Boolean := True); -- Flag11
7994
7995 procedure Set_Has_Storage_Size_Pragma
7996 (N : Node_Id; Val : Boolean := True); -- Flag5
7997
7998 procedure Set_Has_Task_Info_Pragma
7999 (N : Node_Id; Val : Boolean := True); -- Flag7
8000
8001 procedure Set_Has_Task_Name_Pragma
8002 (N : Node_Id; Val : Boolean := True); -- Flag8
8003
8004 procedure Set_Has_Wide_Character
8005 (N : Node_Id; Val : Boolean := True); -- Flag11
8006
8007 procedure Set_Hidden_By_Use_Clause
8008 (N : Node_Id; Val : Elist_Id); -- Elist4
8009
8010 procedure Set_High_Bound
8011 (N : Node_Id; Val : Node_Id); -- Node2
8012
8013 procedure Set_Identifier
8014 (N : Node_Id; Val : Node_Id); -- Node1
8015
8016 procedure Set_Implicit_With
8017 (N : Node_Id; Val : Boolean := True); -- Flag16
8018
8019 procedure Set_In_Present
8020 (N : Node_Id; Val : Boolean := True); -- Flag15
8021
8022 procedure Set_Includes_Infinities
8023 (N : Node_Id; Val : Boolean := True); -- Flag11
8024
8025 procedure Set_Instance_Spec
8026 (N : Node_Id; Val : Node_Id); -- Node5
8027
8028 procedure Set_Intval
8029 (N : Node_Id; Val : Uint); -- Uint3
8030
8031 procedure Set_Is_Asynchronous_Call_Block
8032 (N : Node_Id; Val : Boolean := True); -- Flag7
8033
8034 procedure Set_Is_Component_Left_Opnd
8035 (N : Node_Id; Val : Boolean := True); -- Flag13
8036
8037 procedure Set_Is_Component_Right_Opnd
8038 (N : Node_Id; Val : Boolean := True); -- Flag14
8039
8040 procedure Set_Is_Controlling_Actual
8041 (N : Node_Id; Val : Boolean := True); -- Flag16
8042
8043 procedure Set_Is_In_Discriminant_Check
8044 (N : Node_Id; Val : Boolean := True); -- Flag11
8045
8046 procedure Set_Is_Machine_Number
8047 (N : Node_Id; Val : Boolean := True); -- Flag11
8048
8049 procedure Set_Is_Null_Loop
8050 (N : Node_Id; Val : Boolean := True); -- Flag16
8051
8052 procedure Set_Is_Overloaded
8053 (N : Node_Id; Val : Boolean := True); -- Flag5
8054
8055 procedure Set_Is_Power_Of_2_For_Shift
8056 (N : Node_Id; Val : Boolean := True); -- Flag13
8057
8058 procedure Set_Is_Protected_Subprogram_Body
8059 (N : Node_Id; Val : Boolean := True); -- Flag7
8060
8061 procedure Set_Is_Static_Expression
8062 (N : Node_Id; Val : Boolean := True); -- Flag6
8063
8064 procedure Set_Is_Subprogram_Descriptor
8065 (N : Node_Id; Val : Boolean := True); -- Flag16
8066
8067 procedure Set_Is_Task_Allocation_Block
8068 (N : Node_Id; Val : Boolean := True); -- Flag6
8069
8070 procedure Set_Is_Task_Master
8071 (N : Node_Id; Val : Boolean := True); -- Flag5
8072
8073 procedure Set_Iteration_Scheme
8074 (N : Node_Id; Val : Node_Id); -- Node2
8075
8076 procedure Set_Itype
8077 (N : Node_Id; Val : Entity_Id); -- Node1
8078
8079 procedure Set_Kill_Range_Check
8080 (N : Node_Id; Val : Boolean := True); -- Flag11
8081
8082 procedure Set_Last_Bit
8083 (N : Node_Id; Val : Node_Id); -- Node4
8084
8085 procedure Set_Last_Name
8086 (N : Node_Id; Val : Boolean := True); -- Flag6
8087
8088 procedure Set_Library_Unit
8089 (N : Node_Id; Val : Node_Id); -- Node4
8090
8091 procedure Set_Label_Construct
8092 (N : Node_Id; Val : Node_Id); -- Node2
8093
8094 procedure Set_Left_Opnd
8095 (N : Node_Id; Val : Node_Id); -- Node2
8096
8097 procedure Set_Limited_View_Installed
8098 (N : Node_Id; Val : Boolean := True); -- Flag18
8099
8100 procedure Set_Limited_Present
8101 (N : Node_Id; Val : Boolean := True); -- Flag17
8102
8103 procedure Set_Literals
8104 (N : Node_Id; Val : List_Id); -- List1
8105
8106 procedure Set_Loop_Actions
8107 (N : Node_Id; Val : List_Id); -- List2
8108
8109 procedure Set_Loop_Parameter_Specification
8110 (N : Node_Id; Val : Node_Id); -- Node4
8111
8112 procedure Set_Low_Bound
8113 (N : Node_Id; Val : Node_Id); -- Node1
8114
8115 procedure Set_Mod_Clause
8116 (N : Node_Id; Val : Node_Id); -- Node2
8117
8118 procedure Set_More_Ids
8119 (N : Node_Id; Val : Boolean := True); -- Flag5
8120
8121 procedure Set_Must_Be_Byte_Aligned
8122 (N : Node_Id; Val : Boolean := True); -- Flag14
8123
8124 procedure Set_Must_Not_Freeze
8125 (N : Node_Id; Val : Boolean := True); -- Flag8
8126
8127 procedure Set_Name
8128 (N : Node_Id; Val : Node_Id); -- Node2
8129
8130 procedure Set_Names
8131 (N : Node_Id; Val : List_Id); -- List2
8132
8133 procedure Set_Next_Entity
8134 (N : Node_Id; Val : Node_Id); -- Node2
8135
8136 procedure Set_Next_Named_Actual
8137 (N : Node_Id; Val : Node_Id); -- Node4
8138
8139 procedure Set_Next_Rep_Item
8140 (N : Node_Id; Val : Node_Id); -- Node4
8141
8142 procedure Set_Next_Use_Clause
8143 (N : Node_Id; Val : Node_Id); -- Node3
8144
8145 procedure Set_No_Ctrl_Actions
8146 (N : Node_Id; Val : Boolean := True); -- Flag7
8147
8148 procedure Set_No_Entities_Ref_In_Spec
8149 (N : Node_Id; Val : Boolean := True); -- Flag8
8150
8151 procedure Set_No_Initialization
8152 (N : Node_Id; Val : Boolean := True); -- Flag13
8153
8154 procedure Set_No_Truncation
8155 (N : Node_Id; Val : Boolean := True); -- Flag17
8156
8157 procedure Set_Null_Present
8158 (N : Node_Id; Val : Boolean := True); -- Flag13
8159
8160 procedure Set_Null_Record_Present
8161 (N : Node_Id; Val : Boolean := True); -- Flag17
8162
8163 procedure Set_Object_Definition
8164 (N : Node_Id; Val : Node_Id); -- Node4
8165
8166 procedure Set_OK_For_Stream
8167 (N : Node_Id; Val : Boolean := True); -- Flag4
8168
8169 procedure Set_Original_Discriminant
8170 (N : Node_Id; Val : Node_Id); -- Node2
8171
8172 procedure Set_Original_Entity
8173 (N : Node_Id; Val : Entity_Id); -- Node2
8174
8175 procedure Set_Others_Discrete_Choices
8176 (N : Node_Id; Val : List_Id); -- List1
8177
8178 procedure Set_Out_Present
8179 (N : Node_Id; Val : Boolean := True); -- Flag17
8180
8181 procedure Set_Parameter_Associations
8182 (N : Node_Id; Val : List_Id); -- List3
8183
8184 procedure Set_Parameter_List_Truncated
8185 (N : Node_Id; Val : Boolean := True); -- Flag17
8186
8187 procedure Set_Parameter_Specifications
8188 (N : Node_Id; Val : List_Id); -- List3
8189
8190 procedure Set_Parameter_Type
8191 (N : Node_Id; Val : Node_Id); -- Node2
8192
8193 procedure Set_Parent_Spec
8194 (N : Node_Id; Val : Node_Id); -- Node4
8195
8196 procedure Set_Position
8197 (N : Node_Id; Val : Node_Id); -- Node2
8198
8199 procedure Set_Pragma_Argument_Associations
8200 (N : Node_Id; Val : List_Id); -- List2
8201
8202 procedure Set_Pragmas_After
8203 (N : Node_Id; Val : List_Id); -- List5
8204
8205 procedure Set_Pragmas_Before
8206 (N : Node_Id; Val : List_Id); -- List4
8207
8208 procedure Set_Prefix
8209 (N : Node_Id; Val : Node_Id); -- Node3
8210
8211 procedure Set_Present_Expr
8212 (N : Node_Id; Val : Uint); -- Uint3
8213
8214 procedure Set_Prev_Ids
8215 (N : Node_Id; Val : Boolean := True); -- Flag6
8216
8217 procedure Set_Print_In_Hex
8218 (N : Node_Id; Val : Boolean := True); -- Flag13
8219
8220 procedure Set_Private_Declarations
8221 (N : Node_Id; Val : List_Id); -- List3
8222
8223 procedure Set_Private_Present
8224 (N : Node_Id; Val : Boolean := True); -- Flag15
8225
8226 procedure Set_Procedure_To_Call
8227 (N : Node_Id; Val : Node_Id); -- Node4
8228
8229 procedure Set_Proper_Body
8230 (N : Node_Id; Val : Node_Id); -- Node1
8231
8232 procedure Set_Protected_Definition
8233 (N : Node_Id; Val : Node_Id); -- Node3
8234
8235 procedure Set_Protected_Present
8236 (N : Node_Id; Val : Boolean := True); -- Flag15
8237
8238 procedure Set_Raises_Constraint_Error
8239 (N : Node_Id; Val : Boolean := True); -- Flag7
8240
8241 procedure Set_Range_Constraint
8242 (N : Node_Id; Val : Node_Id); -- Node4
8243
8244 procedure Set_Range_Expression
8245 (N : Node_Id; Val : Node_Id); -- Node4
8246
8247 procedure Set_Real_Range_Specification
8248 (N : Node_Id; Val : Node_Id); -- Node4
8249
8250 procedure Set_Realval
8251 (N : Node_Id; Val : Ureal); -- Ureal3
8252
8253 procedure Set_Reason
8254 (N : Node_Id; Val : Uint); -- Uint3
8255
8256 procedure Set_Record_Extension_Part
8257 (N : Node_Id; Val : Node_Id); -- Node3
8258
8259 procedure Set_Redundant_Use
8260 (N : Node_Id; Val : Boolean := True); -- Flag13
8261
8262 procedure Set_Return_Type
8263 (N : Node_Id; Val : Node_Id); -- Node2
8264
8265 procedure Set_Reverse_Present
8266 (N : Node_Id; Val : Boolean := True); -- Flag15
8267
8268 procedure Set_Right_Opnd
8269 (N : Node_Id; Val : Node_Id); -- Node3
8270
8271 procedure Set_Rounded_Result
8272 (N : Node_Id; Val : Boolean := True); -- Flag18
8273
8274 procedure Set_Scope
8275 (N : Node_Id; Val : Node_Id); -- Node3
8276
8277 procedure Set_Select_Alternatives
8278 (N : Node_Id; Val : List_Id); -- List1
8279
8280 procedure Set_Selector_Name
8281 (N : Node_Id; Val : Node_Id); -- Node2
8282
8283 procedure Set_Selector_Names
8284 (N : Node_Id; Val : List_Id); -- List1
8285
8286 procedure Set_Shift_Count_OK
8287 (N : Node_Id; Val : Boolean := True); -- Flag4
8288
8289 procedure Set_Source_Type
8290 (N : Node_Id; Val : Entity_Id); -- Node1
8291
8292 procedure Set_Specification
8293 (N : Node_Id; Val : Node_Id); -- Node1
8294
8295 procedure Set_Statements
8296 (N : Node_Id; Val : List_Id); -- List3
8297
8298 procedure Set_Static_Processing_OK
8299 (N : Node_Id; Val : Boolean); -- Flag4
8300
8301 procedure Set_Storage_Pool
8302 (N : Node_Id; Val : Node_Id); -- Node1
8303
8304 procedure Set_Strval
8305 (N : Node_Id; Val : String_Id); -- Str3
8306
8307 procedure Set_Subtype_Indication
8308 (N : Node_Id; Val : Node_Id); -- Node5
8309
8310 procedure Set_Subtype_Mark
8311 (N : Node_Id; Val : Node_Id); -- Node4
8312
8313 procedure Set_Subtype_Marks
8314 (N : Node_Id; Val : List_Id); -- List2
8315
8316 procedure Set_Tagged_Present
8317 (N : Node_Id; Val : Boolean := True); -- Flag15
8318
8319 procedure Set_Target_Type
8320 (N : Node_Id; Val : Entity_Id); -- Node2
8321
8322 procedure Set_Task_Body_Procedure
8323 (N : Node_Id; Val : Entity_Id); -- Node2
8324
8325 procedure Set_Task_Definition
8326 (N : Node_Id; Val : Node_Id); -- Node3
8327
8328 procedure Set_Then_Actions
8329 (N : Node_Id; Val : List_Id); -- List2
8330
8331 procedure Set_Then_Statements
8332 (N : Node_Id; Val : List_Id); -- List2
8333
8334 procedure Set_Treat_Fixed_As_Integer
8335 (N : Node_Id; Val : Boolean := True); -- Flag14
8336
8337 procedure Set_Triggering_Alternative
8338 (N : Node_Id; Val : Node_Id); -- Node1
8339
8340 procedure Set_Triggering_Statement
8341 (N : Node_Id; Val : Node_Id); -- Node1
8342
8343 procedure Set_TSS_Elist
8344 (N : Node_Id; Val : Elist_Id); -- Elist3
8345
8346 procedure Set_Type_Definition
8347 (N : Node_Id; Val : Node_Id); -- Node3
8348
8349 procedure Set_Unit
8350 (N : Node_Id; Val : Node_Id); -- Node2
8351
8352 procedure Set_Unknown_Discriminants_Present
8353 (N : Node_Id; Val : Boolean := True); -- Flag13
8354
8355 procedure Set_Unreferenced_In_Spec
8356 (N : Node_Id; Val : Boolean := True); -- Flag7
8357
8358 procedure Set_Variant_Part
8359 (N : Node_Id; Val : Node_Id); -- Node4
8360
8361 procedure Set_Variants
8362 (N : Node_Id; Val : List_Id); -- List1
8363
8364 procedure Set_Visible_Declarations
8365 (N : Node_Id; Val : List_Id); -- List2
8366
8367 procedure Set_Was_Originally_Stub
8368 (N : Node_Id; Val : Boolean := True); -- Flag13
8369
8370 procedure Set_Zero_Cost_Handling
8371 (N : Node_Id; Val : Boolean := True); -- Flag5
8372
8373 -------------------------
8374 -- Iterator Procedures --
8375 -------------------------
8376
8377 -- The call to Next_xxx (N) is equivalent to N := Next_xxx (N)
8378
8379 procedure Next_Entity (N : in out Node_Id);
8380 procedure Next_Named_Actual (N : in out Node_Id);
8381 procedure Next_Rep_Item (N : in out Node_Id);
8382 procedure Next_Use_Clause (N : in out Node_Id);
8383
8384 --------------------------------------
8385 -- Logical Access to End_Span Field --
8386 --------------------------------------
8387
8388 function End_Location (N : Node_Id) return Source_Ptr;
8389 -- N is an N_If_Statement or N_Case_Statement node, and this
8390 -- function returns the location of the IF token in the END IF
8391 -- sequence by translating the value of the End_Span field.
8392
8393 procedure Set_End_Location (N : Node_Id; S : Source_Ptr);
8394 -- N is an N_If_Statement or N_Case_Statement node. This procedure
8395 -- sets the End_Span field to correspond to the given value S. In
8396 -- other words, End_Span is set to the difference between S and
8397 -- Sloc (N), the starting location.
8398
8399 --------------------
8400 -- Inline Pragmas --
8401 --------------------
8402
8403 pragma Inline (ABE_Is_Certain);
8404 pragma Inline (Abort_Present);
8405 pragma Inline (Abortable_Part);
8406 pragma Inline (Abstract_Present);
8407 pragma Inline (Accept_Handler_Records);
8408 pragma Inline (Accept_Statement);
8409 pragma Inline (Access_Types_To_Process);
8410 pragma Inline (Actions);
8411 pragma Inline (Activation_Chain_Entity);
8412 pragma Inline (Acts_As_Spec);
8413 pragma Inline (Aggregate_Bounds);
8414 pragma Inline (Aliased_Present);
8415 pragma Inline (All_Others);
8416 pragma Inline (All_Present);
8417 pragma Inline (Alternatives);
8418 pragma Inline (Ancestor_Part);
8419 pragma Inline (Array_Aggregate);
8420 pragma Inline (Assignment_OK);
8421 pragma Inline (Associated_Node);
8422 pragma Inline (At_End_Proc);
8423 pragma Inline (Attribute_Name);
8424 pragma Inline (Aux_Decls_Node);
8425 pragma Inline (Backwards_OK);
8426 pragma Inline (Bad_Is_Detected);
8427 pragma Inline (Body_To_Inline);
8428 pragma Inline (Body_Required);
8429 pragma Inline (By_Ref);
8430 pragma Inline (Box_Present);
8431 pragma Inline (Char_Literal_Value);
8432 pragma Inline (Chars);
8433 pragma Inline (Check_Address_Alignment);
8434 pragma Inline (Choice_Parameter);
8435 pragma Inline (Choices);
8436 pragma Inline (Compile_Time_Known_Aggregate);
8437 pragma Inline (Component_Associations);
8438 pragma Inline (Component_Clauses);
8439 pragma Inline (Component_Items);
8440 pragma Inline (Component_List);
8441 pragma Inline (Component_Name);
8442 pragma Inline (Condition);
8443 pragma Inline (Condition_Actions);
8444 pragma Inline (Config_Pragmas);
8445 pragma Inline (Constant_Present);
8446 pragma Inline (Constraint);
8447 pragma Inline (Constraints);
8448 pragma Inline (Context_Installed);
8449 pragma Inline (Context_Items);
8450 pragma Inline (Controlling_Argument);
8451 pragma Inline (Conversion_OK);
8452 pragma Inline (Corresponding_Body);
8453 pragma Inline (Corresponding_Generic_Association);
8454 pragma Inline (Corresponding_Integer_Value);
8455 pragma Inline (Corresponding_Spec);
8456 pragma Inline (Corresponding_Stub);
8457 pragma Inline (Dcheck_Function);
8458 pragma Inline (Debug_Statement);
8459 pragma Inline (Declarations);
8460 pragma Inline (Default_Expression);
8461 pragma Inline (Default_Name);
8462 pragma Inline (Defining_Identifier);
8463 pragma Inline (Defining_Unit_Name);
8464 pragma Inline (Delay_Alternative);
8465 pragma Inline (Delay_Finalize_Attach);
8466 pragma Inline (Delay_Statement);
8467 pragma Inline (Delta_Expression);
8468 pragma Inline (Digits_Expression);
8469 pragma Inline (Discr_Check_Funcs_Built);
8470 pragma Inline (Discrete_Choices);
8471 pragma Inline (Discrete_Range);
8472 pragma Inline (Discrete_Subtype_Definition);
8473 pragma Inline (Discrete_Subtype_Definitions);
8474 pragma Inline (Discriminant_Specifications);
8475 pragma Inline (Discriminant_Type);
8476 pragma Inline (Do_Accessibility_Check);
8477 pragma Inline (Do_Discriminant_Check);
8478 pragma Inline (Do_Length_Check);
8479 pragma Inline (Do_Division_Check);
8480 pragma Inline (Do_Overflow_Check);
8481 pragma Inline (Do_Range_Check);
8482 pragma Inline (Do_Storage_Check);
8483 pragma Inline (Do_Tag_Check);
8484 pragma Inline (Elaborate_Present);
8485 pragma Inline (Elaborate_All_Present);
8486 pragma Inline (Elaboration_Boolean);
8487 pragma Inline (Else_Actions);
8488 pragma Inline (Else_Statements);
8489 pragma Inline (Elsif_Parts);
8490 pragma Inline (Enclosing_Variant);
8491 pragma Inline (End_Label);
8492 pragma Inline (End_Span);
8493 pragma Inline (Entity);
8494 pragma Inline (Entry_Body_Formal_Part);
8495 pragma Inline (Entry_Call_Alternative);
8496 pragma Inline (Entry_Call_Statement);
8497 pragma Inline (Entry_Direct_Name);
8498 pragma Inline (Entry_Index);
8499 pragma Inline (Entry_Index_Specification);
8500 pragma Inline (Etype);
8501 pragma Inline (Exception_Choices);
8502 pragma Inline (Exception_Junk);
8503 pragma Inline (Exception_Handlers);
8504 pragma Inline (Expansion_Delayed);
8505 pragma Inline (Explicit_Actual_Parameter);
8506 pragma Inline (Explicit_Generic_Actual_Parameter);
8507 pragma Inline (Expression);
8508 pragma Inline (Expressions);
8509 pragma Inline (First_Bit);
8510 pragma Inline (First_Inlined_Subprogram);
8511 pragma Inline (First_Name);
8512 pragma Inline (First_Named_Actual);
8513 pragma Inline (First_Real_Statement);
8514 pragma Inline (First_Subtype_Link);
8515 pragma Inline (Float_Truncate);
8516 pragma Inline (Formal_Type_Definition);
8517 pragma Inline (Forwards_OK);
8518 pragma Inline (From_At_Mod);
8519 pragma Inline (Generic_Associations);
8520 pragma Inline (Generic_Formal_Declarations);
8521 pragma Inline (Generic_Parent);
8522 pragma Inline (Generic_Parent_Type);
8523 pragma Inline (Handled_Statement_Sequence);
8524 pragma Inline (Handler_List_Entry);
8525 pragma Inline (Has_Created_Identifier);
8526 pragma Inline (Has_Dynamic_Length_Check);
8527 pragma Inline (Has_Dynamic_Range_Check);
8528 pragma Inline (Has_No_Elaboration_Code);
8529 pragma Inline (Has_Priority_Pragma);
8530 pragma Inline (Has_Private_View);
8531 pragma Inline (Has_Storage_Size_Pragma);
8532 pragma Inline (Has_Task_Info_Pragma);
8533 pragma Inline (Has_Task_Name_Pragma);
8534 pragma Inline (Has_Wide_Character);
8535 pragma Inline (Hidden_By_Use_Clause);
8536 pragma Inline (High_Bound);
8537 pragma Inline (Identifier);
8538 pragma Inline (Implicit_With);
8539 pragma Inline (Includes_Infinities);
8540 pragma Inline (In_Present);
8541 pragma Inline (Instance_Spec);
8542 pragma Inline (Intval);
8543 pragma Inline (Is_Asynchronous_Call_Block);
8544 pragma Inline (Is_Component_Left_Opnd);
8545 pragma Inline (Is_Component_Right_Opnd);
8546 pragma Inline (Is_Controlling_Actual);
8547 pragma Inline (Is_In_Discriminant_Check);
8548 pragma Inline (Is_Machine_Number);
8549 pragma Inline (Is_Null_Loop);
8550 pragma Inline (Is_Overloaded);
8551 pragma Inline (Is_Power_Of_2_For_Shift);
8552 pragma Inline (Is_Protected_Subprogram_Body);
8553 pragma Inline (Is_Static_Expression);
8554 pragma Inline (Is_Subprogram_Descriptor);
8555 pragma Inline (Is_Task_Allocation_Block);
8556 pragma Inline (Is_Task_Master);
8557 pragma Inline (Iteration_Scheme);
8558 pragma Inline (Itype);
8559 pragma Inline (Kill_Range_Check);
8560 pragma Inline (Last_Bit);
8561 pragma Inline (Last_Name);
8562 pragma Inline (Library_Unit);
8563 pragma Inline (Label_Construct);
8564 pragma Inline (Left_Opnd);
8565 pragma Inline (Limited_View_Installed);
8566 pragma Inline (Limited_Present);
8567 pragma Inline (Literals);
8568 pragma Inline (Loop_Actions);
8569 pragma Inline (Loop_Parameter_Specification);
8570 pragma Inline (Low_Bound);
8571 pragma Inline (Mod_Clause);
8572 pragma Inline (More_Ids);
8573 pragma Inline (Must_Be_Byte_Aligned);
8574 pragma Inline (Must_Not_Freeze);
8575 pragma Inline (Name);
8576 pragma Inline (Names);
8577 pragma Inline (Next_Entity);
8578 pragma Inline (Next_Named_Actual);
8579 pragma Inline (Next_Rep_Item);
8580 pragma Inline (Next_Use_Clause);
8581 pragma Inline (No_Ctrl_Actions);
8582 pragma Inline (No_Entities_Ref_In_Spec);
8583 pragma Inline (No_Initialization);
8584 pragma Inline (No_Truncation);
8585 pragma Inline (Null_Present);
8586 pragma Inline (Null_Record_Present);
8587 pragma Inline (Object_Definition);
8588 pragma Inline (OK_For_Stream);
8589 pragma Inline (Original_Discriminant);
8590 pragma Inline (Original_Entity);
8591 pragma Inline (Others_Discrete_Choices);
8592 pragma Inline (Out_Present);
8593 pragma Inline (Parameter_Associations);
8594 pragma Inline (Parameter_Specifications);
8595 pragma Inline (Parameter_List_Truncated);
8596 pragma Inline (Parameter_Type);
8597 pragma Inline (Parent_Spec);
8598 pragma Inline (Position);
8599 pragma Inline (Pragma_Argument_Associations);
8600 pragma Inline (Pragmas_After);
8601 pragma Inline (Pragmas_Before);
8602 pragma Inline (Prefix);
8603 pragma Inline (Present_Expr);
8604 pragma Inline (Prev_Ids);
8605 pragma Inline (Print_In_Hex);
8606 pragma Inline (Private_Declarations);
8607 pragma Inline (Private_Present);
8608 pragma Inline (Procedure_To_Call);
8609 pragma Inline (Proper_Body);
8610 pragma Inline (Protected_Definition);
8611 pragma Inline (Protected_Present);
8612 pragma Inline (Raises_Constraint_Error);
8613 pragma Inline (Range_Constraint);
8614 pragma Inline (Range_Expression);
8615 pragma Inline (Real_Range_Specification);
8616 pragma Inline (Realval);
8617 pragma Inline (Reason);
8618 pragma Inline (Record_Extension_Part);
8619 pragma Inline (Redundant_Use);
8620 pragma Inline (Return_Type);
8621 pragma Inline (Reverse_Present);
8622 pragma Inline (Right_Opnd);
8623 pragma Inline (Rounded_Result);
8624 pragma Inline (Scope);
8625 pragma Inline (Select_Alternatives);
8626 pragma Inline (Selector_Name);
8627 pragma Inline (Selector_Names);
8628 pragma Inline (Shift_Count_OK);
8629 pragma Inline (Source_Type);
8630 pragma Inline (Specification);
8631 pragma Inline (Statements);
8632 pragma Inline (Static_Processing_OK);
8633 pragma Inline (Storage_Pool);
8634 pragma Inline (Strval);
8635 pragma Inline (Subtype_Indication);
8636 pragma Inline (Subtype_Mark);
8637 pragma Inline (Subtype_Marks);
8638 pragma Inline (Tagged_Present);
8639 pragma Inline (Target_Type);
8640 pragma Inline (Task_Body_Procedure);
8641 pragma Inline (Task_Definition);
8642 pragma Inline (Then_Actions);
8643 pragma Inline (Then_Statements);
8644 pragma Inline (Triggering_Alternative);
8645 pragma Inline (Triggering_Statement);
8646 pragma Inline (Treat_Fixed_As_Integer);
8647 pragma Inline (TSS_Elist);
8648 pragma Inline (Type_Definition);
8649 pragma Inline (Unit);
8650 pragma Inline (Unknown_Discriminants_Present);
8651 pragma Inline (Unreferenced_In_Spec);
8652 pragma Inline (Variant_Part);
8653 pragma Inline (Variants);
8654 pragma Inline (Visible_Declarations);
8655 pragma Inline (Was_Originally_Stub);
8656 pragma Inline (Zero_Cost_Handling);
8657
8658 pragma Inline (Set_ABE_Is_Certain);
8659 pragma Inline (Set_Abort_Present);
8660 pragma Inline (Set_Abortable_Part);
8661 pragma Inline (Set_Abstract_Present);
8662 pragma Inline (Set_Accept_Handler_Records);
8663 pragma Inline (Set_Accept_Statement);
8664 pragma Inline (Set_Access_Types_To_Process);
8665 pragma Inline (Set_Actions);
8666 pragma Inline (Set_Activation_Chain_Entity);
8667 pragma Inline (Set_Acts_As_Spec);
8668 pragma Inline (Set_Aggregate_Bounds);
8669 pragma Inline (Set_Aliased_Present);
8670 pragma Inline (Set_All_Others);
8671 pragma Inline (Set_All_Present);
8672 pragma Inline (Set_Alternatives);
8673 pragma Inline (Set_Ancestor_Part);
8674 pragma Inline (Set_Array_Aggregate);
8675 pragma Inline (Set_Assignment_OK);
8676 pragma Inline (Set_Associated_Node);
8677 pragma Inline (Set_At_End_Proc);
8678 pragma Inline (Set_Attribute_Name);
8679 pragma Inline (Set_Aux_Decls_Node);
8680 pragma Inline (Set_Backwards_OK);
8681 pragma Inline (Set_Bad_Is_Detected);
8682 pragma Inline (Set_Body_To_Inline);
8683 pragma Inline (Set_Body_Required);
8684 pragma Inline (Set_By_Ref);
8685 pragma Inline (Set_Box_Present);
8686 pragma Inline (Set_Char_Literal_Value);
8687 pragma Inline (Set_Chars);
8688 pragma Inline (Set_Check_Address_Alignment);
8689 pragma Inline (Set_Choice_Parameter);
8690 pragma Inline (Set_Choices);
8691 pragma Inline (Set_Compile_Time_Known_Aggregate);
8692 pragma Inline (Set_Component_Associations);
8693 pragma Inline (Set_Component_Clauses);
8694 pragma Inline (Set_Component_Items);
8695 pragma Inline (Set_Component_List);
8696 pragma Inline (Set_Component_Name);
8697 pragma Inline (Set_Condition);
8698 pragma Inline (Set_Condition_Actions);
8699 pragma Inline (Set_Config_Pragmas);
8700 pragma Inline (Set_Constant_Present);
8701 pragma Inline (Set_Constraint);
8702 pragma Inline (Set_Constraints);
8703 pragma Inline (Set_Context_Installed);
8704 pragma Inline (Set_Context_Items);
8705 pragma Inline (Set_Controlling_Argument);
8706 pragma Inline (Set_Conversion_OK);
8707 pragma Inline (Set_Corresponding_Body);
8708 pragma Inline (Set_Corresponding_Generic_Association);
8709 pragma Inline (Set_Corresponding_Integer_Value);
8710 pragma Inline (Set_Corresponding_Spec);
8711 pragma Inline (Set_Corresponding_Stub);
8712 pragma Inline (Set_Dcheck_Function);
8713 pragma Inline (Set_Debug_Statement);
8714 pragma Inline (Set_Declarations);
8715 pragma Inline (Set_Default_Expression);
8716 pragma Inline (Set_Default_Name);
8717 pragma Inline (Set_Defining_Identifier);
8718 pragma Inline (Set_Defining_Unit_Name);
8719 pragma Inline (Set_Delay_Alternative);
8720 pragma Inline (Set_Delay_Finalize_Attach);
8721 pragma Inline (Set_Delay_Statement);
8722 pragma Inline (Set_Delta_Expression);
8723 pragma Inline (Set_Digits_Expression);
8724 pragma Inline (Set_Discr_Check_Funcs_Built);
8725 pragma Inline (Set_Discrete_Choices);
8726 pragma Inline (Set_Discrete_Range);
8727 pragma Inline (Set_Discrete_Subtype_Definition);
8728 pragma Inline (Set_Discrete_Subtype_Definitions);
8729 pragma Inline (Set_Discriminant_Specifications);
8730 pragma Inline (Set_Discriminant_Type);
8731 pragma Inline (Set_Do_Accessibility_Check);
8732 pragma Inline (Set_Do_Discriminant_Check);
8733 pragma Inline (Set_Do_Length_Check);
8734 pragma Inline (Set_Do_Division_Check);
8735 pragma Inline (Set_Do_Overflow_Check);
8736 pragma Inline (Set_Do_Range_Check);
8737 pragma Inline (Set_Do_Storage_Check);
8738 pragma Inline (Set_Do_Tag_Check);
8739 pragma Inline (Set_Elaborate_Present);
8740 pragma Inline (Set_Elaborate_All_Present);
8741 pragma Inline (Set_Elaboration_Boolean);
8742 pragma Inline (Set_Else_Actions);
8743 pragma Inline (Set_Else_Statements);
8744 pragma Inline (Set_Elsif_Parts);
8745 pragma Inline (Set_Enclosing_Variant);
8746 pragma Inline (Set_End_Label);
8747 pragma Inline (Set_End_Span);
8748 pragma Inline (Set_Entity);
8749 pragma Inline (Set_Entry_Body_Formal_Part);
8750 pragma Inline (Set_Entry_Call_Alternative);
8751 pragma Inline (Set_Entry_Call_Statement);
8752 pragma Inline (Set_Entry_Direct_Name);
8753 pragma Inline (Set_Entry_Index);
8754 pragma Inline (Set_Entry_Index_Specification);
8755 pragma Inline (Set_Etype);
8756 pragma Inline (Set_Exception_Choices);
8757 pragma Inline (Set_Exception_Junk);
8758 pragma Inline (Set_Exception_Handlers);
8759 pragma Inline (Set_Expansion_Delayed);
8760 pragma Inline (Set_Explicit_Actual_Parameter);
8761 pragma Inline (Set_Explicit_Generic_Actual_Parameter);
8762 pragma Inline (Set_Expression);
8763 pragma Inline (Set_Expressions);
8764 pragma Inline (Set_First_Bit);
8765 pragma Inline (Set_First_Inlined_Subprogram);
8766 pragma Inline (Set_First_Name);
8767 pragma Inline (Set_First_Named_Actual);
8768 pragma Inline (Set_First_Real_Statement);
8769 pragma Inline (Set_First_Subtype_Link);
8770 pragma Inline (Set_Float_Truncate);
8771 pragma Inline (Set_Formal_Type_Definition);
8772 pragma Inline (Set_Forwards_OK);
8773 pragma Inline (Set_From_At_Mod);
8774 pragma Inline (Set_Generic_Associations);
8775 pragma Inline (Set_Generic_Formal_Declarations);
8776 pragma Inline (Set_Generic_Parent);
8777 pragma Inline (Set_Generic_Parent_Type);
8778 pragma Inline (Set_Handled_Statement_Sequence);
8779 pragma Inline (Set_Handler_List_Entry);
8780 pragma Inline (Set_Has_Created_Identifier);
8781 pragma Inline (Set_Has_Dynamic_Length_Check);
8782 pragma Inline (Set_Has_Dynamic_Range_Check);
8783 pragma Inline (Set_Has_No_Elaboration_Code);
8784 pragma Inline (Set_Has_Priority_Pragma);
8785 pragma Inline (Set_Has_Private_View);
8786 pragma Inline (Set_Has_Storage_Size_Pragma);
8787 pragma Inline (Set_Has_Task_Info_Pragma);
8788 pragma Inline (Set_Has_Task_Name_Pragma);
8789 pragma Inline (Set_Has_Wide_Character);
8790 pragma Inline (Set_Hidden_By_Use_Clause);
8791 pragma Inline (Set_High_Bound);
8792 pragma Inline (Set_Identifier);
8793 pragma Inline (Set_Implicit_With);
8794 pragma Inline (Set_Includes_Infinities);
8795 pragma Inline (Set_In_Present);
8796 pragma Inline (Set_Instance_Spec);
8797 pragma Inline (Set_Intval);
8798 pragma Inline (Set_Is_Asynchronous_Call_Block);
8799 pragma Inline (Set_Is_Component_Left_Opnd);
8800 pragma Inline (Set_Is_Component_Right_Opnd);
8801 pragma Inline (Set_Is_Controlling_Actual);
8802 pragma Inline (Set_Is_In_Discriminant_Check);
8803 pragma Inline (Set_Is_Machine_Number);
8804 pragma Inline (Set_Is_Null_Loop);
8805 pragma Inline (Set_Is_Overloaded);
8806 pragma Inline (Set_Is_Power_Of_2_For_Shift);
8807 pragma Inline (Set_Is_Protected_Subprogram_Body);
8808 pragma Inline (Set_Is_Static_Expression);
8809 pragma Inline (Set_Is_Subprogram_Descriptor);
8810 pragma Inline (Set_Is_Task_Allocation_Block);
8811 pragma Inline (Set_Is_Task_Master);
8812 pragma Inline (Set_Iteration_Scheme);
8813 pragma Inline (Set_Itype);
8814 pragma Inline (Set_Kill_Range_Check);
8815 pragma Inline (Set_Last_Bit);
8816 pragma Inline (Set_Last_Name);
8817 pragma Inline (Set_Library_Unit);
8818 pragma Inline (Set_Label_Construct);
8819 pragma Inline (Set_Left_Opnd);
8820 pragma Inline (Set_Limited_View_Installed);
8821 pragma Inline (Set_Limited_Present);
8822 pragma Inline (Set_Literals);
8823 pragma Inline (Set_Loop_Actions);
8824 pragma Inline (Set_Loop_Parameter_Specification);
8825 pragma Inline (Set_Low_Bound);
8826 pragma Inline (Set_Mod_Clause);
8827 pragma Inline (Set_More_Ids);
8828 pragma Inline (Set_Must_Be_Byte_Aligned);
8829 pragma Inline (Set_Must_Not_Freeze);
8830 pragma Inline (Set_Name);
8831 pragma Inline (Set_Names);
8832 pragma Inline (Set_Next_Entity);
8833 pragma Inline (Set_Next_Named_Actual);
8834 pragma Inline (Set_Next_Use_Clause);
8835 pragma Inline (Set_No_Ctrl_Actions);
8836 pragma Inline (Set_No_Entities_Ref_In_Spec);
8837 pragma Inline (Set_No_Initialization);
8838 pragma Inline (Set_No_Truncation);
8839 pragma Inline (Set_Null_Present);
8840 pragma Inline (Set_Null_Record_Present);
8841 pragma Inline (Set_Object_Definition);
8842 pragma Inline (Set_OK_For_Stream);
8843 pragma Inline (Set_Original_Discriminant);
8844 pragma Inline (Set_Original_Entity);
8845 pragma Inline (Set_Others_Discrete_Choices);
8846 pragma Inline (Set_Out_Present);
8847 pragma Inline (Set_Parameter_Associations);
8848 pragma Inline (Set_Parameter_Specifications);
8849 pragma Inline (Set_Parameter_List_Truncated);
8850 pragma Inline (Set_Parameter_Type);
8851 pragma Inline (Set_Parent_Spec);
8852 pragma Inline (Set_Position);
8853 pragma Inline (Set_Pragma_Argument_Associations);
8854 pragma Inline (Set_Pragmas_After);
8855 pragma Inline (Set_Pragmas_Before);
8856 pragma Inline (Set_Prefix);
8857 pragma Inline (Set_Present_Expr);
8858 pragma Inline (Set_Prev_Ids);
8859 pragma Inline (Set_Print_In_Hex);
8860 pragma Inline (Set_Private_Declarations);
8861 pragma Inline (Set_Private_Present);
8862 pragma Inline (Set_Procedure_To_Call);
8863 pragma Inline (Set_Proper_Body);
8864 pragma Inline (Set_Protected_Definition);
8865 pragma Inline (Set_Protected_Present);
8866 pragma Inline (Set_Raises_Constraint_Error);
8867 pragma Inline (Set_Range_Constraint);
8868 pragma Inline (Set_Range_Expression);
8869 pragma Inline (Set_Real_Range_Specification);
8870 pragma Inline (Set_Realval);
8871 pragma Inline (Set_Reason);
8872 pragma Inline (Set_Record_Extension_Part);
8873 pragma Inline (Set_Redundant_Use);
8874 pragma Inline (Set_Return_Type);
8875 pragma Inline (Set_Reverse_Present);
8876 pragma Inline (Set_Right_Opnd);
8877 pragma Inline (Set_Rounded_Result);
8878 pragma Inline (Set_Scope);
8879 pragma Inline (Set_Select_Alternatives);
8880 pragma Inline (Set_Selector_Name);
8881 pragma Inline (Set_Selector_Names);
8882 pragma Inline (Set_Shift_Count_OK);
8883 pragma Inline (Set_Source_Type);
8884 pragma Inline (Set_Specification);
8885 pragma Inline (Set_Statements);
8886 pragma Inline (Set_Static_Processing_OK);
8887 pragma Inline (Set_Storage_Pool);
8888 pragma Inline (Set_Strval);
8889 pragma Inline (Set_Subtype_Indication);
8890 pragma Inline (Set_Subtype_Mark);
8891 pragma Inline (Set_Subtype_Marks);
8892 pragma Inline (Set_Tagged_Present);
8893 pragma Inline (Set_Target_Type);
8894 pragma Inline (Set_Task_Body_Procedure);
8895 pragma Inline (Set_Task_Definition);
8896 pragma Inline (Set_Then_Actions);
8897 pragma Inline (Set_Then_Statements);
8898 pragma Inline (Set_Triggering_Alternative);
8899 pragma Inline (Set_Triggering_Statement);
8900 pragma Inline (Set_Treat_Fixed_As_Integer);
8901 pragma Inline (Set_TSS_Elist);
8902 pragma Inline (Set_Type_Definition);
8903 pragma Inline (Set_Unit);
8904 pragma Inline (Set_Unknown_Discriminants_Present);
8905 pragma Inline (Set_Unreferenced_In_Spec);
8906 pragma Inline (Set_Variant_Part);
8907 pragma Inline (Set_Variants);
8908 pragma Inline (Set_Visible_Declarations);
8909 pragma Inline (Set_Was_Originally_Stub);
8910 pragma Inline (Set_Zero_Cost_Handling);
8911
8912 end Sinfo;