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1------------------------------------------------------------------------------
2-- --
3-- GNAT COMPILER COMPONENTS --
4-- --
5-- E I N F O --
6-- --
7-- S p e c --
8-- --
e3c4580e 9-- Copyright (C) 1992-2011, Free Software Foundation, Inc. --
975c6896 10-- --
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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- --
748086b7 13-- ware Foundation; either version 3, or (at your option) any later ver- --
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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 --
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16-- or FITNESS FOR A PARTICULAR PURPOSE. --
17-- --
18-- As a special exception under Section 7 of GPL version 3, you are granted --
19-- additional permissions described in the GCC Runtime Library Exception, --
20-- version 3.1, as published by the Free Software Foundation. --
21-- --
22-- You should have received a copy of the GNU General Public License and --
23-- a copy of the GCC Runtime Library Exception along with this program; --
24-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
25-- <http://www.gnu.org/licenses/>. --
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26-- --
27-- GNAT was originally developed by the GNAT team at New York University. --
71ff80dc 28-- Extensive contributions were provided by Ada Core Technologies Inc. --
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29-- --
30------------------------------------------------------------------------------
31
0a36105d 32with Namet; use Namet;
07fc65c4 33with Snames; use Snames;
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34with Types; use Types;
35with Uintp; use Uintp;
36with Urealp; use Urealp;
37
38package Einfo is
39
40-- This package defines the annotations to the abstract syntax tree that
41-- are needed to support semantic processing of an Ada compilation.
42
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43-- Note that after editing this spec and the corresponding body it is
44-- required to run ceinfo to check the consistentcy of spec and body.
45-- See ceinfo.adb for more information about the checks made.
46
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47-- These annotations are for the most part attributes of declared entities,
48-- and they correspond to conventional symbol table information. Other
49-- attributes include sets of meanings for overloaded names, possible
50-- types for overloaded expressions, flags to indicate deferred constants,
51-- incomplete types, etc. These attributes are stored in available fields
52-- in tree nodes (i.e. fields not used by the parser, as defined by the
53-- Sinfo package specification), and accessed by means of a set of
54-- subprograms which define an abstract interface.
55
56-- There are two kinds of semantic information
57
58-- First, the tree nodes with the following Nkind values:
59
60-- N_Defining_Identifier
61-- N_Defining_Character_Literal
62-- N_Defining_Operator_Symbol
63
64-- are called Entities, and constitute the information that would often
65-- be stored separately in a symbol table. These nodes are all extended
66-- to provide extra space, and contain fields which depend on the entity
67-- kind, as defined by the contents of the Ekind field. The use of the
68-- Ekind field, and the associated fields in the entity, are defined
69-- in this package, as are the access functions to these fields.
70
71-- Second, in some cases semantic information is stored directly in other
72-- kinds of nodes, e.g. the Etype field, used to indicate the type of an
73-- expression. The access functions to these fields are defined in the
74-- Sinfo package, but their full documentation is to be found in
75-- the Einfo package specification.
76
77-- Declaration processing places information in the nodes of their defining
78-- identifiers. Name resolution places in all other occurrences of an
79-- identifier a pointer to the corresponding defining occurrence.
80
81--------------------------------
82-- The XEINFO Utility Program --
83--------------------------------
84
85-- XEINFO is a utility program which automatically produces a C header file,
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86-- einfo.h from the spec and body of package Einfo. It reads the input
87-- files einfo.ads and einfo.adb and produces the output file einfo.h.
88-- XEINFO is run automatically by the build scripts when you do a full
89-- bootstrap.
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90
91-- In order for this utility program to operate correctly, the form of the
92-- einfo.ads and einfo.adb files must meet certain requirements and be laid
93-- out in a specific manner.
94
95-- The general form of einfo.ads is as follows:
96
97-- type declaration for type Entity_Kind
98-- subtype declarations declaring subranges of Entity_Kind
99-- subtype declarations declaring synonyms for some standard types
100-- function specs for attributes
101-- procedure specs
102-- pragma Inline declarations
103
104-- This order must be observed. There are no restrictions on the procedures,
105-- since the C header file only includes functions (Gigi is not allowed to
106-- modify the generated tree). However, functions are required to have headers
107-- that fit on a single line.
108
109-- XEINFO reads and processes the function specs and the pragma Inlines. For
110-- functions that are declared as inlined, XEINFO reads the corresponding body
6e443c90 111-- from einfo.adb, and processes it into C code. This results in some strict
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112-- restrictions on which functions can be inlined:
113
114-- The function spec must be on a single line
115
116-- There can only be a single statement, contained on a single line,
117-- not counting any pragma Assert statements.
118
edd63e9b 119-- This single statement must either be a function call with simple,
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120-- single token arguments, or it must be a membership test of the form
121-- a in b, where a and b are single tokens.
122
123-- For functions that are not inlined, there is no restriction on the body,
124-- and XEINFO generates a direct reference in the C header file which allows
125-- the C code in Gigi to directly call the corresponding Ada body.
126
127----------------------------------
128-- Handling of Type'Size Values --
129----------------------------------
130
131-- The Ada 95 RM contains some rather peculiar (to us!) rules on the value
132-- of type'Size (see RM 13.3(55)). We have found that attempting to use
133-- these RM Size values generally, and in particular for determining the
00332244 134-- default size of objects, creates chaos, and major incompatibilities in
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135-- existing code.
136
137-- We proceed as follows, for discrete and fixed-point subtypes, we have
138-- two separate sizes for each subtype:
139
140-- The Object_Size, which is used for determining the default size of
141-- objects and components. This size value can be referred to using the
142-- Object_Size attribute. The phrase "is used" here means that it is
143-- the basis of the determination of the size. The backend is free to
144-- pad this up if necessary for efficiency, e.g. an 8-bit stand-alone
145-- character might be stored in 32 bits on a machine with no efficient
146-- byte access instructions such as the Alpha.
147
148-- The default rules for the value of Object_Size for fixed-point and
149-- discrete types are as follows:
150
151-- The Object_Size for base subtypes reflect the natural hardware
152-- size in bits (see Ttypes and Cstand for integer types). For
153-- enumeration and fixed-point base subtypes have 8. 16. 32 or 64
154-- bits for this size, depending on the range of values to be stored.
155
156-- The Object_Size of a subtype is the same as the Object_Size of
157-- the subtype from which it is obtained.
158
159-- The Object_Size of a derived base type is copied from the parent
160-- base type, and the Object_Size of a derived first subtype is copied
161-- from the parent first subtype.
162
163-- The Value_Size which is the number of bits required to store a value
164-- of the type. This size can be referred to using the Value_Size
165-- attribute. This value is used to determine how tightly to pack
166-- records or arrays with components of this type, and also affects
167-- the semantics of unchecked conversion (unchecked conversions where
168-- the Value_Size values differ generate a warning, and are potentially
169-- target dependent).
170
171-- The default rule for the value of Value_Size are as follows:
172
173-- The Value_Size for a base subtype is the minimum number of bits
174-- required to store all values of the type (including the sign bit
175-- only if negative values are possible).
176
177-- If a subtype statically matches the first subtype, then it has
178-- by default the same Value_Size as the first subtype. This is a
179-- consequence of RM 13.1(14) ("if two subtypes statically match,
180-- then their subtype-specific aspects are the same".)
181
182-- All other subtypes have a Value_Size corresponding to the minimum
183-- number of bits required to store all values of the subtype. For
184-- dynamic bounds, it is assumed that the value can range down or up
185-- to the corresponding bound of the ancestor
186
10b93b2e 187-- The RM defined attribute Size corresponds to the Value_Size attribute
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188
189-- The Size attribute may be defined for a first-named subtype. This sets
190-- the Value_Size of the first-named subtype to the given value, and the
191-- Object_Size of this first-named subtype to the given value padded up
192-- to an appropriate boundary. It is a consequence of the default rules
193-- above that this Object_Size will apply to all further subtypes. On the
5d37ba92 194-- other hand, Value_Size is affected only for the first subtype, any
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195-- dynamic subtypes obtained from it directly, and any statically matching
196-- subtypes. The Value_Size of any other static subtypes is not affected.
197
198-- Value_Size and Object_Size may be explicitly set for any subtype using
199-- an attribute definition clause. Note that the use of these attributes
200-- can cause the RM 13.1(14) rule to be violated. If two access types
201-- reference aliased objects whose subtypes have differing Object_Size
202-- values as a result of explicit attribute definition clauses, then it
203-- is erroneous to convert from one access subtype to the other.
204
205-- At the implementation level, Esize stores the Object_Size and the
206-- RM_Size field stores the Value_Size (and hence the value of the
207-- Size attribute, which, as noted above, is equivalent to Value_Size).
208
209-- To get a feel for the difference, consider the following examples (note
210-- that in each case the base is short_short_integer with a size of 8):
211
212-- Object_Size Value_Size
213
214-- type x1 is range 0..5; 8 3
215
216-- type x2 is range 0..5;
93c3fca7 217-- for x2'size use 12; 16 12
70482933 218
93c3fca7 219-- subtype x3 is x2 range 0 .. 3; 16 2
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220
221-- subtype x4 is x2'base range 0 .. 10; 8 4
222
93c3fca7 223-- subtype x5 is x2 range 0 .. dynamic; 16 (7)
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224
225-- subtype x6 is x2'base range 0 .. dynamic; 8 (7)
226
227-- Note: the entries marked (7) are not actually specified by the Ada 95 RM,
228-- but it seems in the spirit of the RM rules to allocate the minimum number
229-- of bits known to be large enough to hold the given range of values.
230
231-- So far, so good, but GNAT has to obey the RM rules, so the question is
232-- under what conditions must the RM Size be used. The following is a list
233-- of the occasions on which the RM Size must be used:
234
235-- Component size for packed arrays or records
236-- Value of the attribute Size for a type
237-- Warning about sizes not matching for unchecked conversion
238
239-- The RM_Size field keeps track of the RM Size as needed in these
240-- three situations.
241
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242-- For elementary types other than discrete and fixed-point types, the
243-- Object_Size and Value_Size are the same (and equivalent to the RM
f3b57ab0 244-- attribute Size). Only Size may be specified for such types.
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245
246-- For composite types, Object_Size and Value_Size are computed from their
247-- respective value for the type of each element as well as the layout.
70482933 248
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249-- All size attributes are stored as Uint values. Negative values are used to
250-- reference GCC expressions for the case of non-static sizes, as explained
251-- in Repinfo.
252
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253--------------------------------------
254-- Delayed Freezing and Elaboration --
255--------------------------------------
256
257-- The flag Has_Delayed_Freeze indicates that an entity carries an explicit
258-- freeze node, which appears later in the expanded tree.
259
260-- a) The flag is used by the front-end to trigger expansion actions which
261-- include the generation of that freeze node. Typically this happens at the
262-- end of the current compilation unit, or before the first subprogram body is
263-- encountered in the current unit. See files freeze and exp_ch13 for details
264-- on the actions triggered by a freeze node, which include the construction
265-- of initialization procedures and dispatch tables.
266
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267-- b) The presence of a freeze node on an entity is used by the backend to
268-- defer elaboration of the entity until its freeze node is seen. In the
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269-- absence of an explicit freeze node, an entity is frozen (and elaborated)
270-- at the point of declaration.
271
272-- For object declarations, the flag is set when an address clause for the
273-- object is encountered. Legality checks on the address expression only take
274-- place at the freeze point of the object.
275
276-- Most types have an explicit freeze node, because they cannot be elaborated
277-- until all representation and operational items that apply to them have been
278-- analyzed. Private types and incomplete types have the flag set as well, as
279-- do task and protected types.
280
281-- Implicit base types created for type derivations, as well as classwide
282-- types created for all tagged types, have the flag set.
283
284-- If a subprogram has an access parameter whose designated type is incomplete
285-- the subprogram has the flag set.
286
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287-----------------------
288-- Entity Attributes --
289-----------------------
290
291-- This section contains a complete list of the attributes that are defined
292-- on entities. Some attributes apply to all entities, others only to certain
293-- kinds of entities. In the latter case the attribute should only be set or
294-- accessed if the Ekind field indicates an appropriate entity.
295
296-- There are two kinds of attributes that apply to entities, stored and
297-- synthesized. Stored attributes correspond to a field or flag in the entity
298-- itself. Such attributes are identified in the table below by giving the
299-- field or flag in the attribute that is used to hold the attribute value.
300-- Synthesized attributes are not stored directly, but are rather computed as
301-- needed from other attributes, or from information in the tree. These are
302-- marked "synthesized" in the table below. The stored attributes have both
303-- access functions and set procedures to set the corresponding values, while
304-- synthesized attributes have only access functions.
305
306-- Note: in the case of Node, Uint, or Elist fields, there are cases where
307-- the same physical field is used for different purposes in different
308-- entities, so these access functions should only be referenced for the
309-- class of entities in which they are defined as being present. Flags are
310-- not overlapped in this way, but nevertheless as a matter of style and
311-- abstraction (which may or may not be checked by assertions in the body),
312-- this restriction should be observed for flag fields as well.
313
314-- Note: certain of the attributes on types apply only to base types, and
315-- are so noted by the notation [base type only]. These are cases where the
316-- attribute of any subtype is the same as the attribute of the base type.
317-- The attribute can be referenced on a subtype (and automatically retrieves
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318-- the value from the base type). However, it is an error to try to set the
319-- attribute on other than the base type, and if assertions are enabled,
320-- an attempt to set the attribute on a subtype will raise an assert error.
70482933 321
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322-- Other attributes are noted as applying to the [implementation base type
323-- only]. These are representation attributes which must always apply to a
324-- full non-private type, and where the attributes are always on the full
325-- type. The attribute can be referenced on a subtype (and automatically
326-- retries the value from the implementation base type). However, it is an
327-- error to try to set the attribute on other than the implementation base
328-- type, and if assertions are enabled, an attempt to set the attribute on a
07fc65c4 329-- subtype will raise an assert error.
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330
331-- Accept_Address (Elist21)
332-- Present in entries. If an accept has a statement sequence, then an
333-- address variable is created, which is used to hold the address of the
334-- parameters, as passed by the runtime. Accept_Address holds an element
335-- list which represents a stack of entities for these address variables.
336-- The current entry is the top of the stack, which is the last element
337-- on the list. A stack is required to handle the case of nested select
338-- statements referencing the same entry.
339
3fd9f17c 340-- Access_Disp_Table (Elist16) [implementation base type only]
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341-- Present in E_Record_Type and E_Record_Subtype entities. Set in tagged
342-- types to point to their dispatch tables. The first two entities are
343-- associated with the primary dispatch table: 1) primary dispatch table
344-- with user-defined primitives 2) primary dispatch table with predefined
345-- primitives. For each interface type covered by the tagged type we also
346-- have: 3) secondary dispatch table with thunks of primitives covering
347-- user-defined interface primitives, 4) secondary dispatch table with
348-- thunks of predefined primitives, 5) secondary dispatch table with user
349-- defined primitives, and 6) secondary dispatch table with predefined
350-- primitives. The last entity of this list is an access type declaration
351-- used to expand dispatching calls through the primary dispatch table.
352-- For a non-tagged record, contains No_Elist.
3fd9f17c 353
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354-- Actual_Subtype (Node17)
355-- Present in variables, constants, and formal parameters. This is the
356-- subtype imposed by the value of the object, as opposed to its nominal
357-- subtype, which is imposed by the declaration. The actual subtype
358-- differs from the nominal one when the latter is indefinite (as in the
359-- case of an unconstrained formal parameter, or a variable declared
360-- with an unconstrained type and an initial value). The nominal subtype
361-- is the Etype entry for the entity. The Actual_Subtype field is set
362-- only if the actual subtype differs from the nominal subtype. If the
363-- actual and nominal subtypes are the same, then the Actual_Subtype
364-- field is Empty, and Etype indicates both types.
980f237d 365--
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366-- For objects, the Actual_Subtype is set only if this is a discriminated
367-- type. For arrays, the bounds of the expression are obtained and the
368-- Etype of the object is directly the constrained subtype. This is
369-- rather irregular, and the semantic checks that depend on the nominal
370-- subtype being unconstrained use flag Is_Constr_Subt_For_U_Nominal(qv).
371
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372-- Address_Clause (synthesized)
373-- Applies to entries, objects and subprograms. Set if an address clause
374-- is present which references the object or subprogram and points to
375-- the N_Attribute_Definition_Clause node. Empty if no Address clause.
376-- The expression in the address clause is always a constant that is
377-- defined before the entity to which the address clause applies.
378-- Note: Gigi references this field in E_Task_Type entities???
379
380-- Address_Taken (Flag104)
381-- Present in all entities. Set if the Address or Unrestricted_Access
382-- attribute is applied directly to the entity, i.e. the entity is the
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383-- entity of the prefix of the attribute reference. Also set if the
384-- entity is the second argument of an Asm_Input or Asm_Output attribute,
385-- as the construct may entail taking its address. Used by Gigi to make
386-- sure that the address can be meaningfully taken, and also in the case
387-- of subprograms to control output of certain warnings.
70482933 388
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389-- Aft_Value (synthesized)
390-- Applies to fixed and decimal types. Computes a universal integer
391-- that holds value of the Aft attribute for the type.
392
70482933 393-- Alias (Node18)
544e7c17 394-- Present in overloadable entities (literals, subprograms, entries) and
6e443c90 395-- subprograms that cover a primitive operation of an abstract interface
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396-- (that is, subprograms with the Interface_Alias attribute). In case of
397-- overloaded entities it points to the parent subprogram of a derived
398-- subprogram. In case of abstract interface subprograms it points to the
399-- subprogram that covers the abstract interface primitive. Also used for
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400-- a subprogram renaming, where it points to the renamed subprogram. For
401-- an inherited operation (of a type extension) that is overridden in a
402-- private part, the Alias is the overriding operation. In this fashion a
403-- call from outside the package ends up executing the new body even if
404-- non-dispatching, and a call from inside calls the overriding operation
405-- because it hides the implicit one. Alias is always empty for entries.
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406
407-- Alignment (Uint14)
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408-- Present in entities for types and also in constants, variables
409-- (including exceptions where it refers to the static data allocated for
410-- an exception), loop parameters, and formal parameters. This indicates
411-- the desired alignment for a type, or the actual alignment for an
412-- object. A value of zero (Uint_0) indicates that the alignment has not
413-- been set yet. The alignment can be set by an explicit alignment
414-- clause, or set by the front-end in package Layout, or set by the
415-- back-end as part of the back end back-annotation process. The
416-- alignment field is also present in E_Exception entities, but there it
417-- is used only by the back-end for back annotation.
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418
419-- Alignment_Clause (synthesized)
ba673907 420-- Applies to all entities for types and objects. If an alignment
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421-- attribute definition clause is present for the entity, then this
422-- function returns the N_Attribute_Definition clause that specifies the
423-- alignment. If no alignment clause applies to the type, then the call
424-- to this function returns Empty. Note that the call can return a
425-- non-Empty value even if Has_Alignment_Clause is not set (happens with
426-- subtype and derived type declarations). Note also that a record
427-- definition clause with an (obsolescent) mod clause is converted
428-- into an attribute definition clause for this purpose.
429
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430-- Associated_Formal_Package (Node12)
431-- Present in packages that are the actuals of formal_packages. Points
432-- to the entity in the declaration for the formal package.
433
434-- Associated_Node_For_Itype (Node8)
435-- Present in all type and subtype entities. Set non-Empty only for
436-- Itypes. Set to point to the associated node for the Itype, i.e.
437-- the node whose elaboration generated the Itype. This is used for
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438-- copying trees, to determine whether or not to copy an Itype, and
439-- also for accessibility checks on anonymous access types. This
440-- node is typically an object declaration, component declaration,
441-- type or subtype declaration. For an access discriminant in a type
442-- declaration, the associated_node_for_itype is the discriminant
443-- specification. For an access parameter it is the enclosing subprogram
444-- declaration.
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445--
446-- Itypes have no explicit declaration, and therefore are not attached to
447-- the tree: their Parent field is always empty. The Associated_Node_For_
448-- Itype is the only way to determine the construct that leads to the
449-- creation of a given itype entity.
70482933 450
07fc65c4 451-- Associated_Storage_Pool (Node22) [root type only]
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452-- Present in simple and general access type entities. References the
453-- storage pool to be used for the corresponding collection. A value of
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454-- Empty means that the default pool is to be used. This is present
455-- only in the root type, since derived types must have the same pool
456-- as the parent type.
70482933 457
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458-- Barrier_Function (Node12)
459-- Present in protected entries and entry families. This is the
460-- subprogram declaration for the body of the function that returns
461-- the value of the entry barrier.
462
463-- Base_Type (synthesized)
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464-- Applies to all type and subtype entities. Returns the base type of a
465-- type or subtype. The base type of a type is the type itself. The base
466-- type of a subtype is the type that it constrains (which is always
467-- a type entity, not some other subtype). Note that in the case of a
468-- subtype of a private type, it is possible for the base type attribute
469-- to return a private type, even if the subtype to which it applies is
470-- non-private. See also Implementation_Base_Type. Note: it is allowed to
471-- apply Base_Type to other than a type, in which case it simply returns
472-- the entity unchanged.
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473
474-- Block_Node (Node11)
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475-- Present in block entities. Points to the identifier in the
476-- Block_Statement itself. Used when retrieving the block construct
477-- for finalization purposes, The block entity has an implicit label
478-- declaration in the enclosing declarative part, and has otherwise
4ba603e2 479-- no direct connection in the tree with the block statement. The
f3d0f304 480-- link is to the identifier (which is an occurrence of the entity)
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481-- and not to the block_statement itself, because the statement may
482-- be rewritten, e.g. in the process of removing dead code.
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483
484-- Body_Entity (Node19)
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485-- Present in package and generic package entities, points to the
486-- corresponding package body entity if one is present.
70482933 487
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488-- Body_Needed_For_SAL (Flag40)
489-- Present in package and subprogram entities that are compilation
490-- units. Indicates that the source for the body must be included
491-- when the unit is part of a standalone library.
492
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493-- C_Pass_By_Copy (Flag125) [implementation base type only]
494-- Present in record types. Set if a pragma Convention for the record
495-- type specifies convention C_Pass_By_Copy. This convention name is
496-- treated as identical in all respects to convention C, except that
497-- if it is specified for a record type, then the C_Pass_By_Copy flag
498-- is set, and if a foreign convention subprogram has a formal of the
499-- corresponding type, then the parameter passing mechanism will be
500-- set to By_Copy (unless specifically overridden by an Import or
501-- Export pragma).
502
fbf5a39b 503-- Can_Never_Be_Null (Flag38)
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504-- This flag is present in all entities, but can only be set in an object
505-- which can never have a null value. This is set True for constant
506-- access values initialized to a non-null value. This is also True for
507-- all access parameters in Ada 83 and Ada 95 modes, and for access
308e6f3a 508-- parameters that explicitly exclude null in Ada 2005.
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509--
510-- This is used to avoid unnecessary resetting of the Is_Known_Non_Null
511-- flag for such entities. In Ada 2005 mode, this is also used when
512-- determining subtype conformance of subprogram profiles to ensure
513-- that two formals have the same null-exclusion status.
514--
515-- ??? This is also set on some access types, eg the Etype of the
516-- anonymous access type of a controlling formal.
fbf5a39b 517
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518-- Can_Use_Internal_Rep (Flag229) [base type only]
519-- Present in Access_Subprogram_Kind nodes. This flag is set by the
520-- front end and used by the back end. False means that the back end
521-- must represent the type in the same way as Convention-C types (and
522-- other foreign-convention types). On many targets, this means that
523-- the back end will use dynamically generated trampolines for nested
524-- subprograms. True means that the back end can represent the type in
525-- some internal way. On the aforementioned targets, this means that the
526-- back end will not use dynamically generated trampolines. This flag
527-- must be False if Has_Foreign_Convention is True; otherwise, the front
528-- end is free to set the policy.
529--
530-- Setting this False in all cases corresponds to the traditional back
531-- end strategy, where all access-to-subprogram types are represented the
532-- same way, independent of the Convention. See also
533-- Always_Compatible_Rep in Targparm.
534--
535-- Efficiency note: On targets that use dynamically generated
536-- trampolines, False generally favors efficiency of top-level
537-- subprograms, whereas True generally favors efficiency of nested
538-- ones. On other targets, this flag has little or no effect on
539-- efficiency. The front end should take this into account. In
540-- particular, pragma Favor_Top_Level gives a hint that the flag should
541-- be False.
542--
543-- Note: We considered using Convention-C for this purpose, but we need
544-- this separate flag, because Convention-C implies that for
545-- P'[Unrestricted_]Access, P also have convention C. Sometimes we want
546-- to have Can_Use_Internal_Rep False for an access type, but allow P to
547-- have convention Ada.
548
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549-- Chars (Name1)
550-- Present in all entities. This field contains an entry into the names
551-- table that has the character string of the identifier, character
552-- literal or operator symbol. See Namet for further details. Note that
553-- throughout the processing of the front end, this name is the simple
554-- unqualified name. However, just before gigi is called, a call is made
555-- to Qualify_All_Entity_Names. This causes entity names to be qualified
556-- using the encoding described in exp_dbug.ads, and from that point on
557-- (including post gigi steps such as cross-reference generation), the
558-- entities will contain the encoded qualified names.
559
fbf5a39b
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560-- Checks_May_Be_Suppressed (Flag31)
561-- Present in all entities. Set if a pragma Suppress or Unsuppress
562-- mentions the entity specifically in the second argument. If this
16b05213 563-- flag is set the Global_Entity_Suppress and Local_Entity_Suppress
dbf04430 564-- tables must be consulted to determine if there actually is an active
fbf5a39b
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565-- Suppress or Unsuppress pragma that applies to the entity.
566
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567-- Class_Wide_Type (Node9)
568-- Present in all type entities. For a tagged type or subtype, returns
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AC
569-- the corresponding implicitly declared class-wide type. For a
570-- class-wide type, returns itself. Set to Empty for non-tagged types.
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571
572-- Cloned_Subtype (Node16)
573-- Present in E_Record_Subtype and E_Class_Wide_Subtype entities.
574-- Each such entity can either have a Discriminant_Constraint, in
575-- which case it represents a distinct type from the base type (and
576-- will have a list of components and discrimants in the list headed by
577-- First_Entity) or else no such constraint, in which case it will be a
578-- copy of the base type.
579--
580-- o Each element of the list in First_Entity is copied from the base
581-- type; in that case, this field is Empty.
582--
583-- o The list in First_Entity is shared with the base type; in that
584-- case, this field points to that entity.
585--
586-- A record or classwide subtype may also be a copy of some other
587-- subtype and share the entities in the First_Entity with that subtype.
588-- In that case, this field points to that subtype.
589--
590-- For E_Class_Wide_Subtype, the presence of Equivalent_Type overrides
591-- this field. Note that this field ONLY appears in subtype entries, not
592-- in type entries, it is not present, and it is an error to reference
593-- Cloned_Subtype in an E_Record_Type or E_Class_Wide_Type entity.
594
595-- Comes_From_Source
596-- This flag appears on all nodes, including entities, and indicates
597-- that the node was created by the scanner or parser from the original
598-- source. Thus for entities, it indicates that the entity is defined
599-- in the original source program.
600
601-- Component_Alignment (special field) [base type only]
602-- Present in array and record entities. Contains a value of type
603-- Component_Alignment_Kind indicating the alignment of components.
604-- Set to Calign_Default normally, but can be overridden by use of
605-- the Component_Alignment pragma. Note: this field is currently
606-- stored in a non-standard way, see body for details.
607
608-- Component_Bit_Offset (Uint11)
609-- Present in record components (E_Component, E_Discriminant) if a
610-- component clause applies to the component. First bit position of
611-- given component, computed from the first bit and position values
612-- given in the component clause. A value of No_Uint means that the
f3d0f304 613-- value is not yet known. The value can be set by the appearance of
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614-- an explicit component clause in a record representation clause,
615-- or it can be set by the front-end in package Layout, or it can be
616-- set by the backend. By the time backend processing is completed,
617-- this field is always set. A negative value is used to represent
618-- a value which is not known at compile time, and must be computed
619-- at run-time (this happens if fields of a record have variable
620-- lengths). See package Layout for details of these values.
621--
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AC
622-- Note: Component_Bit_Offset is redundant with respect to the fields
623-- Normalized_First_Bit and Normalized_Position, and could in principle
624-- be eliminated, but it is convenient in several situations, including
625-- use in Gigi, to have this redundant field.
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626
627-- Component_Clause (Node13)
628-- Present in record components and discriminants. If a record
5132708f
RD
629-- representation clause is present for the corresponding record type a
630-- that specifies a position for the component, then the Component_Clause
631-- field of the E_Component entity points to the N_Component_Clause node.
632-- Set to Empty if no record representation clause was present, or if
633-- there was no specification for this component.
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634
635-- Component_Size (Uint22) [implementation base type only]
636-- Present in array types. It contains the component size value for
82c80734 637-- the array. A value of No_Uint means that the value is not yet set.
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638-- The value can be set by the use of a component size clause, or
639-- by the front end in package Layout, or by the backend. A negative
640-- value is used to represent a value which is not known at compile
641-- time, and must be computed at run-time (this happens if the type
642-- of the component has a variable length size). See package Layout
643-- for details of these values.
644
645-- Component_Type (Node20) [implementation base type only]
07fc65c4 646-- Present in array types and string types. References component type.
70482933 647
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648-- Corresponding_Concurrent_Type (Node18)
649-- Present in record types that are constructed by the expander to
650-- represent task and protected types (Is_Concurrent_Record_Type flag
651-- set True). Points to the entity for the corresponding task type or
652-- protected type.
653
654-- Corresponding_Discriminant (Node19)
655-- Present in discriminants of a derived type, when the discriminant is
656-- used to constrain a discriminant of the parent type. Points to the
657-- corresponding discriminant in the parent type. Otherwise it is Empty.
658
659-- Corresponding_Equality (Node13)
660-- Present in function entities for implicit inequality operators.
661-- Denotes the explicit or derived equality operation that creates
662-- the implicit inequality. Note that this field is not present in
663-- other function entities, only in implicit inequality routines,
664-- where Comes_From_Source is always False.
665
5042f726 666-- Corresponding_Protected_Entry (Node18)
308e6f3a 667-- Present in subprogram bodies. Set for subprogram bodies that implement
bd29d519 668-- a protected type entry to point to the entity for the entry.
5042f726 669
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670-- Corresponding_Record_Type (Node18)
671-- Present in protected and task types and subtypes. References the
672-- entity for the corresponding record type constructed by the expander
673-- (see Exp_Ch9). This type is used to represent values of the task type.
674
675-- Corresponding_Remote_Type (Node22)
6e443c90 676-- Present in record types that describe the fat pointer structure for
308e6f3a
RW
677-- Remote_Access_To_Subprogram types. References the original access
678-- type.
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679
680-- CR_Discriminant (Node23)
6e443c90
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681-- Present in discriminants of concurrent types. Denotes the homologous
682-- discriminant of the corresponding record type. The CR_Discriminant is
683-- created at the same time as the discriminal, and used to replace
684-- occurrences of the discriminant within the type declaration.
70482933 685
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RD
686-- Current_Use_Clause (Node27)
687-- Present in packages and in types. For packages, denotes the use
688-- package clause currently in scope that makes the package use_visible.
689-- For types, it denotes the use_type clause that makes the operators of
690-- the type visible. Used for more precise warning messages on redundant
691-- use clauses.
f4d379b8 692
fbf5a39b 693-- Current_Value (Node9)
6e443c90
RD
694-- Present in all object entities. Set in E_Variable, E_Constant, formal
695-- parameters and E_Loop_Parameter entities if we have trackable current
696-- values. Set non-Empty if the (constant) current value of the variable
697-- is known, This value is valid only for references from the same
698-- sequential scope as the entity. The sequential scope of an entity
699-- includes the immediate scope and any contained scopes that are package
700-- specs, package bodies, blocks (at any nesting level) or statement
701-- sequences in IF or loop statements.
fbf5a39b 702--
6e443c90
RD
703-- Another related use of this field is to record information about the
704-- value obtained from an IF or WHILE statement condition. If the IF or
705-- ELSIF or WHILE condition has the form "NOT {,NOT] OBJ RELOP VAL ",
706-- or OBJ [AND [THEN]] expr, where OBJ refers to an entity with a
707-- Current_Value field, RELOP is one of the six relational operators, and
708-- VAL is a compile-time known value then the Current_Value field of OBJ
709-- points to the N_If_Statement, N_Elsif_Part, or N_Iteration_Scheme node
710-- of the relevant construct, and the Condition field of this can be
711-- consulted to give information about the value of OBJ. For more details
712-- on this usage, see the procedure Exp_Util.Get_Current_Value_Condition.
fbf5a39b 713
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714-- Debug_Info_Off (Flag166)
715-- Present in all entities. Set if a pragma Suppress_Debug_Info applies
716-- to the entity, or if internal processing in the compiler determines
fbf5a39b
AC
717-- that suppression of debug information is desirable. Note that this
718-- flag is only for use by the front end as part of the processing for
719-- determining if Needs_Debug_Info should be set. The back end should
720-- always test Needs_Debug_Info, it should never test Debug_Info_Off.
70482933 721
4c8e94ab
GD
722-- Debug_Renaming_Link (Node25)
723-- Used to link the variable associated with a debug renaming declaration
70482933
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724-- to the renamed entity. See Exp_Dbug.Debug_Renaming_Declaration for
725-- details of the use of this field.
726
727-- Declaration_Node (synthesized)
ea034236
AC
728-- Applies to all entities. Returns the tree node for the construct that
729-- declared the entity. Normally this is just the Parent of the entity.
730-- One exception arises with child units, where the parent of the entity
731-- is a selected component/defining program unit name. Another exception
732-- is that if the entity is an incomplete type that has been completed,
733-- then we obtain the declaration node denoted by the full type, i.e. the
734-- full type declaration node. Also note that for subprograms, this
735-- returns the {function,procedure}_specification, not the subprogram_
736-- declaration.
70482933
RK
737
738-- Default_Expr_Function (Node21)
739-- Present in parameters. It holds the entity of the parameterless
740-- function that is built to evaluate the default expression if it is
741-- more complex than a simple identifier or literal. For the latter
742-- simple cases or if there is no default value, this field is Empty.
743
744-- Default_Expressions_Processed (Flag108)
745-- A flag in subprograms (functions, operators, procedures) and in
746-- entries and entry families used to indicate that default expressions
747-- have been processed and to avoid multiple calls to process the
748-- default expressions (see Freeze.Process_Default_Expressions), which
749-- would not only waste time, but also generate false error messages.
750
751-- Default_Value (Node20)
752-- Present in formal parameters. Points to the node representing the
753-- expression for the default value for the parameter. Empty if the
754-- parameter has no default value (which is always the case for OUT
755-- and IN OUT parameters in the absence of errors).
756
757-- Delay_Cleanups (Flag114)
758-- Present in entities that have finalization lists (subprograms
759-- blocks, and tasks). Set if there are pending generic body
760-- instantiations for the corresponding entity. If this flag is
761-- set, then generation of cleanup actions for the corresponding
762-- entity must be delayed, since the insertion of the generic body
763-- may affect cleanup generation (see Inline for further details).
764
765-- Delay_Subprogram_Descriptors (Flag50)
766-- Present in entities for which exception subprogram descriptors
767-- are generated (subprograms, package declarations and package
768-- bodies). Present if there are pending generic body instantiations
769-- for the corresponding entity. If this flag is set, then generation
770-- of the subprogram descriptor for the corresponding enities must
771-- be delayed, since the insertion of the generic body may add entries
772-- to the list of handlers.
773--
774-- Note: for subprograms, Delay_Subprogram_Descriptors is set if and
775-- only if Delay_Cleanups is set. But Delay_Cleanups can be set for a
776-- a block (in which case Delay_Subprogram_Descriptors is set for the
777-- containing subprogram). In addition Delay_Subprogram_Descriptors is
778-- set for a library level package declaration or body which contains
779-- delayed instantiations (in this case the descriptor refers to the
780-- enclosing elaboration procedure).
781
782-- Delta_Value (Ureal18)
783-- Present in fixed and decimal types. Points to a universal real
784-- that holds value of delta for the type, as given in the declaration
785-- or as inherited by a subtype or derived type.
786
787-- Dependent_Instances (Elist8)
788-- Present in packages that are instances. Holds list of instances
789-- of inner generics. Used to place freeze nodes for those instances
790-- after that of the current one, i.e. after the corresponding generic
791-- bodies.
792
793-- Depends_On_Private (Flag14)
794-- Present in all type entities. Set if the type is private or if it
795-- depends on a private type.
796
797-- Designated_Type (synthesized)
798-- Applies to access types. Returns the designated type. Differs
799-- from Directly_Designated_Type in that if the access type refers
800-- to an incomplete type, and the full type is available, then this
801-- full type is returned instead of the incomplete type.
802
803-- Digits_Value (Uint17)
804-- Present in floating point types and subtypes and decimal types and
805-- subtypes. Contains the Digits value specified in the declaration.
806
46202729 807-- Direct_Primitive_Operations (Elist10)
fab2daeb
AC
808-- Present in tagged types and subtypes (including synchronized types),
809-- in tagged private types and in tagged incomplete types. Element list
810-- of entities for primitive operations of the tagged type. Not present
811-- in untagged types. In order to follow the C++ ABI, entities of
812-- primitives that come from source must be stored in this list in the
813-- order of their occurrence in the sources. For incomplete types the
ef2a63ba
JM
814-- list is always empty.
815
70482933
RK
816-- Directly_Designated_Type (Node20)
817-- Present in access types. This field points to the type that is
818-- directly designated by the access type. In the case of an access
819-- type to an incomplete type, this field references the incomplete
820-- type. Note that in the semantic processing, what is useful in
821-- nearly all cases is the full type designated by the access type.
822-- The function Designated_Type obtains this full type in the case of
823-- access to an incomplete type.
824
825-- Discard_Names (Flag88)
826-- Present in types and exception entities. Set if pragma Discard_Names
827-- applies to the entity. It is also set for declarative regions and
828-- package specs for which a Discard_Names pragma with zero arguments
829-- has been encountered. The purpose of setting this flag is to be able
830-- to set the Discard_Names attribute on enumeration types declared
fbf5a39b
AC
831-- after the pragma within the same declarative region. This flag is
832-- set to False if a Keep_Names pragma appears for an enumeration type.
70482933
RK
833
834-- Discriminal (Node17)
835-- Present in discriminants (Discriminant formal: GNAT's first
836-- coinage). The entity used as a formal parameter that corresponds
fbf5a39b
AC
837-- to a discriminant. See section "Handling of Discriminants" for
838-- full details of the use of discriminals.
70482933
RK
839
840-- Discriminal_Link (Node10)
841-- Present in discriminals (which have an Ekind of E_In_Parameter,
842-- or E_Constant), points back to corresponding discriminant.
843
844-- Discriminant_Checking_Func (Node20)
845-- Present in components. Points to the defining identifier of the
846-- function built by the expander returns a Boolean indicating whether
847-- the given record component exists for the current discriminant
848-- values.
849
850-- Discriminant_Constraint (Elist21)
851-- Present in entities whose Has_Discriminants flag is set (concurrent
852-- types, subtypes, record types and subtypes, private types and
853-- subtypes, limited private types and subtypes and incomplete types).
854-- It is an error to reference the Discriminant_Constraint field if
fbf5a39b 855-- Has_Discriminants is False.
70482933
RK
856--
857-- If the Is_Constrained flag is set, Discriminant_Constraint points
858-- to an element list containing the discriminant constraints in the
859-- same order in which the discriminants are declared.
860--
861-- If the Is_Constrained flag is not set but the discriminants of the
862-- unconstrained type have default initial values then this field
863-- points to an element list giving these default initial values in
864-- the same order in which the discriminants are declared. Note that
865-- in this case the entity cannot be a tagged record type, because
866-- discriminants in this case cannot have defaults.
867--
868-- If the entity is a tagged record implicit type, then this field is
869-- inherited from the first subtype (so that the itype is subtype
870-- conformant with its first subtype, which is needed when the first
871-- subtype overrides primitive operations inherited by the implicit
872-- base type).
873--
874-- In all other cases Discriminant_Constraint contains the empty
875-- Elist (ie it is initialized with a call to New_Elmt_List).
876
877-- Discriminant_Default_Value (Node20)
878-- Present in discriminants. Points to the node representing the
879-- expression for the default value of the discriminant. Set to
880-- Empty if the discriminant has no default value.
881
882-- Discriminant_Number (Uint15)
883-- Present in discriminants. Gives the ranking of a discriminant in
884-- the list of discriminants of the type, i.e. a sequential integer
a4100e55 885-- index starting at 1 and ranging up to number of discriminants.
70482933 886
b16d9747 887-- Dispatch_Table_Wrappers (Elist26) [implementation base type only]
0d53d36b
AC
888-- Present in E_Record_Type and E_Record_Subtype entities. Set in library
889-- level tagged type entities if we are generating statically allocated
890-- dispatch tables. Points to the list of dispatch table wrappers
891-- associated with the tagged type. For a non-tagged record, contains
892-- No_Elist.
e18d6a15 893
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RK
894-- DTC_Entity (Node16)
895-- Present in function and procedure entities. Set to Empty unless
896-- the subprogram is dispatching in which case it references the
897-- Dispatch Table pointer Component. That is to say the component _tag
898-- for regular Ada tagged types, for CPP_Class types and their
899-- descendants this field points to the component entity in the record
900-- that is the Vtable pointer for the Vtable containing the entry that
901-- references the subprogram.
902
903-- DT_Entry_Count (Uint15)
904-- Present in E_Component entities. Only used for component marked
905-- Is_Tag. Store the number of entries in the Vtable (or Dispatch Table)
906
6e443c90 907-- DT_Offset_To_Top_Func (Node25)
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JM
908-- Present in E_Component entities. Only used for component marked
909-- Is_Tag. If present it stores the Offset_To_Top function used to
910-- provide this value in tagged types whose ancestor has discriminants.
911
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RK
912-- DT_Position (Uint15)
913-- Present in function and procedure entities which are dispatching
914-- (should not be referenced without first checking that flag
915-- Is_Dispatching_Operation is True). Contains the offset into
916-- the Vtable for the entry that references the subprogram.
917
918-- Ekind (Ekind)
919-- Present in all entities. Contains a value of the enumeration type
920-- Entity_Kind declared in a subsequent section in this spec.
921
6e443c90
RD
922-- Elaborate_Body_Desirable (Flag210)
923-- Present in package entities. Set if the elaboration circuitry detects
924-- a case where there is a package body that modifies one or more visible
925-- entities in the package spec and there is no explicit Elaborate_Body
926-- pragma for the package. This information is passed on to the binder,
927-- which attempts, but does not promise, to elaborate the body as close
928-- to the spec as possible.
929
70482933 930-- Elaboration_Entity (Node13)
824e9320
AC
931-- Present in generic and non-generic package and subprogram entities.
932-- This is a counter associated with the unit that is initially set to
933-- zero, is incremented when an elaboration request for the unit is
934-- made, and is decremented when a finalization request for the unit
935-- is made. This is used for three purposes. First, it is used to
936-- implement access before elaboration checks (the counter must be
937-- non-zero to call a subprogram at elaboration time). Second, it is
938-- used to guard against repeated execution of the elaboration code.
939-- Third, it is used to ensure that the finalization code is executed
940-- only after all clients have requested it.
70482933 941--
824e9320 942-- Note that we always allocate this counter, and set this field, but
70482933 943-- we do not always actually use it. It is only used if it is needed
824e9320 944-- for access before elaboration use (see Elaboration_Entity_Required
70482933
RK
945-- flag) or if either the spec or the body has elaboration code. If
946-- neither of these two conditions holds, then the entity is still
947-- allocated (since we don't know early enough whether or not there
948-- is elaboration code), but is simply not used for any purpose.
949
950-- Elaboration_Entity_Required (Flag174)
824e9320
AC
951-- Present in generic and non-generic package and subprogram entities.
952-- Set only if Elaboration_Entity is non-Empty to indicate that the
953-- counter is required to be non-zero even if there is no other
954-- elaboration code. This occurs when the Elaboration_Entity counter
955-- is used for access before elaboration checks. If the counter is
956-- only used to prevent multiple execution of the elaboration code,
957-- then if there is no other elaboration code, obviously there is no
958-- need to set the flag.
70482933 959
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RK
960-- Enclosing_Scope (Node18)
961-- Present in labels. Denotes the innermost enclosing construct that
962-- contains the label. Identical to the scope of the label, except for
963-- labels declared in the body of an accept statement, in which case the
964-- entry_name is the Enclosing_Scope. Used to validate goto's within
965-- accept statements.
966
967-- Entry_Accepted (Flag152)
968-- Present in E_Entry and E_Entry_Family entities. Set if there is
969-- at least one accept for this entry in the task body. Used to
970-- generate warnings for missing accepts.
971
972-- Entry_Bodies_Array (Node15)
973-- Present in protected types for which Has_Entries is true.
974-- This is the defining identifier for the array of entry body
975-- action procedures and barrier functions used by the runtime to
976-- execute the user code associated with each entry.
977
978-- Entry_Cancel_Parameter (Node23)
979-- Present in blocks. This only applies to a block statement for
980-- which the Is_Asynchronous_Call_Block flag is set. It
981-- contains the defining identifier of an object that must be
982-- passed to the Cancel_Task_Entry_Call or Cancel_Protected_Entry_Call
983-- call in the cleanup handler added to the block by
984-- Exp_Ch7.Expand_Cleanup_Actions. This parameter is a Boolean
985-- object for task entry calls and a Communications_Block object
986-- in the case of protected entry calls. In both cases the objects
987-- are declared in outer scopes to this block.
988
989-- Entry_Component (Node11)
990-- Present in formal parameters (in, in out and out parameters). Used
991-- only for formals of entries. References the corresponding component
992-- of the entry parameter record for the entry.
993
994-- Entry_Formal (Node16)
995-- Present in components of the record built to correspond to entry
996-- parameters. This field points from the component to the formal. It
997-- is the back pointer corresponding to Entry_Component.
998
999-- Entry_Index_Constant (Node18)
1000-- Present in an entry index parameter. This is an identifier that
1001-- eventually becomes the name of a constant representing the index
1002-- of the entry family member whose entry body is being executed. Used
1003-- to expand references to the entry index specification identifier.
1004
1005-- Entry_Index_Type (synthesized)
1006-- Applies to an entry family. Denotes Etype of the subtype indication
1007-- in the entry declaration. Used to resolve the index expression in an
1008-- accept statement for a member of the family, and in the prefix of
1009-- 'COUNT when it applies to a family member.
1010
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YM
1011-- Contract (Node24)
1012-- Present in entries, and in subprogram and generic subprogram entities.
1013-- Points to the contract of the entity, holding both pre- and
1014-- postconditions as well as test-cases.
1015
70482933
RK
1016-- Entry_Parameters_Type (Node15)
1017-- Present in entries. Points to the access-to-record type that is
1018-- constructed by the expander to hold a reference to the parameter
1019-- values. This reference is manipulated (as an address) by the
1020-- tasking runtime. The designated record represents a packaging
1021-- up of the entry parameters (see Exp_Ch9.Expand_N_Entry_Declaration
1022-- for further details). Entry_Parameters_Type is Empty if the entry
1023-- has no parameters.
1024
1025-- Enumeration_Pos (Uint11)
1026-- Present in enumeration literals. Contains the position number
1027-- corresponding to the value of the enumeration literal.
1028
1029-- Enumeration_Rep (Uint12)
1030-- Present in enumeration literals. Contains the representation that
1031-- corresponds to the value of the enumeration literal. Note that
1032-- this is normally the same as Enumeration_Pos except in the presence
1033-- of representation clauses, where Pos will still represent the
1034-- position of the literal within the type and Rep will have be the
1035-- value given in the representation clause.
1036
1037-- Enumeration_Rep_Expr (Node22)
1038-- Present in enumeration literals. Points to the expression in an
1039-- associated enumeration rep clause that provides the representation
1040-- value for this literal. Empty if no enumeration rep clause for this
1041-- literal (or if rep clause does not have an entry for this literal,
1042-- an error situation). This is also used to catch duplicate entries
1043-- for the same literal.
1044
1045-- Enum_Pos_To_Rep (Node23)
1046-- Present in enumeration types (but not enumeration subtypes). Set to
1047-- Empty unless the enumeration type has a non-standard representation
1048-- (i.e. at least one literal has a representation value different from
1049-- its pos value). In this case, Enum_Pos_To_Rep is the entity for an
1050-- array constructed when the type is frozen that maps Pos values to
1051-- corresponding Rep values. The index type of this array is Natural,
1052-- and the component type is a suitable integer type that holds the
1053-- full range of representation values.
1054
1055-- Equivalent_Type (Node18)
1056-- Present in class wide types and subtypes, access to protected
21d27997 1057-- subprogram types, and in exception types. For a classwide type, it
70482933
RK
1058-- is always Empty. For a class wide subtype, it points to an entity
1059-- created by the expander which gives Gigi an easily understandable
1060-- equivalent of the class subtype with a known size (given by an
1061-- initial value). See Exp_Util.Expand_Class_Wide_Subtype for further
21d27997 1062-- details. For E_Exception_Type, this points to the record containing
70482933
RK
1063-- the data necessary to represent exceptions (for further details, see
1064-- System.Standard_Library. For access_to_protected subprograms, it
1065-- denotes a record that holds pointers to the operation and to the
1066-- protected object. For remote Access_To_Subprogram types, it denotes
1067-- the record that is the fat pointer representation of an RAST.
1068
1069-- Esize (Uint12)
9596236a 1070-- Present in all types and subtypes, and also for components, constants,
0a36105d
JM
1071-- and variables, including exceptions where it refers to the static data
1072-- allocated for an exception. Contains the Object_Size of the type or of
1073-- the object. A value of zero indicates that the value is not yet known.
70482933
RK
1074--
1075-- For the case of components where a component clause is present, the
1076-- value is the value from the component clause, which must be non-
1077-- negative (but may be zero, which is acceptable for the case of
1078-- a type with only one possible value). It is also possible for Esize
1079-- of a component to be set without a component clause present, which
1080-- means that the component size is specified, but not the position.
1081-- See also RM_Size and the section on "Handling of Type'Size Values".
1082-- During gigi processing, the value is back annotated for all zero
1083-- values, so that after the call to gigi, the value is properly set.
1084
1085-- Etype (Node5)
1086-- Present in all entities. Represents the type of the entity, which
1087-- is itself another entity. For a type entity, points to the parent
1088-- type for a derived type, or if the type is not derived, points to
fbf5a39b 1089-- itself. For a subtype entity, Etype points to the base type. For
8c889ae4
AC
1090-- a class wide type, points to the corresponding specific type. For a
1091-- subprogram or subprogram type, Etype has the return type of a function
1092-- or is set to Standard_Void_Type to represent a procedure.
fab2daeb
AC
1093--
1094-- Note one obscure case: for pragma Default_Storage_Pool (null), the
1095-- Etype of the N_Null node is Empty.
70482933
RK
1096
1097-- Exception_Code (Uint22)
308e6f3a 1098-- Present in exception entities. Set to zero unless either an
70482933
RK
1099-- Import_Exception or Export_Exception pragma applies to the
1100-- pragma and specifies a Code value. See description of these
1101-- pragmas for details. Note that this field is relevant only if
1102-- Is_VMS_Exception is set.
1103
1104-- Extra_Formal (Node15)
1105-- Present in formal parameters in the non-generic case. Certain
ce0bead3
HK
1106-- parameters require extra implicit information to be passed (e.g. the
1107-- flag indicating if an unconstrained variant record argument is
1108-- constrained, and the accessibility level for access parameters. See
1109-- description of Extra_Constrained, Extra_Accessibility fields for
1110-- further details. Extra formal parameters are constructed to represent
1111-- these values, and chained to the end of the list of formals using the
1112-- Extra_Formal field (i.e. the Extra_Formal field of the last "real"
1113-- formal points to the first extra formal, and the Extra_Formal field of
1114-- each extra formal points to the next one, with Empty indicating the
1115-- end of the list of extra formals.
70482933 1116
6e443c90
RD
1117-- Extra_Formals (Node28)
1118-- Applies to subprograms and subprogram types, and also in entries
1119-- and entry families. Returns first extra formal of the subprogram
1120-- or entry. Returns Empty if there are no extra formals.
1121
70482933 1122-- Extra_Accessibility (Node13)
ce0bead3
HK
1123-- Present in formal parameters in the non-generic case if expansion is
1124-- active. Normally Empty, but if a parameter is one for which a dynamic
1125-- accessibility check is required, then an extra formal of type
1126-- Natural is created (see description of field Extra_Formal), and the
1127-- Extra_Accessibility field of the formal parameter points to the entity
1128-- for this extra formal. Also present in variables when compiling
1129-- receiving stubs. In this case, a non Empty value means that this
1130-- variable's accessibility depth has been transmitted by the caller and
1131-- must be retrieved through the entity designed by this field instead of
1132-- being computed.
70482933 1133
63585f75
SB
1134-- Extra_Accessibility_Of_Result (Node19)
1135-- Present in (non-generic) Function, Operator, and Subprogram_Type
1136-- entities if expansion is active. Normally Empty, but if a function is
1137-- one for which "the accessibility level of the result ... determined
1138-- by the point of call" (AI05-0234) is needed, then an extra formal of
1139-- subtype Natural is created (see description of field Extra_Formal),
1140-- and the Extra_Accessibility_Of_Result field of the function points to
1141-- the entity for this extra formal.
1142
70482933 1143-- Extra_Constrained (Node23)
ce0bead3
HK
1144-- Present in formal parameters in the non-generic case if expansion is
1145-- active. Normally Empty, but if a parameter is one for which a dynamic
1146-- indication of its constrained status is required, then an extra formal
1147-- of type Boolean is created (see description of field Extra_Formal),
1148-- and the Extra_Constrained field of the formal parameter points to the
1149-- entity for this extra formal. Also present in variables when compiling
1150-- receiving stubs. In this case, a non empty value means that this
1151-- variable's constrained status has been transmitted by the caller and
1152-- must be retrieved through the entity designed by this field instead of
1153-- being computed.
1154
d3f70b35
AC
1155-- Finalization_Master (Node23) [root type only]
1156-- Present in access-to-controlled or access-to-class-wide types. The
1157-- field contains the entity of the finalization master which handles
1158-- dynamically allocated controlled objects referenced by the access
1159-- type. Empty for access-to-subprogram types. Empty for access types
1160-- whose designated type does not need finalization actions.
1161
70482933
RK
1162-- Finalize_Storage_Only (Flag158) [base type only]
1163-- Present in all types. Set on direct controlled types to which a
1164-- valid Finalize_Storage_Only pragma applies. This flag is also set on
1165-- composite types when they have at least one controlled component and
1166-- all their controlled components are Finalize_Storage_Only. It is also
1167-- inherited by type derivation except for direct controlled types where
1168-- the Finalize_Storage_Only pragma is required at each level of
1169-- derivation.
1170
df3e68b1
HK
1171-- Finalizer (Node24)
1172-- Applies to package declarations and bodies. Contains the entity of the
1173-- library-level program which finalizes all package-level controlled
1174-- objects.
1175
70482933 1176-- First_Component (synthesized)
f937473f
RD
1177-- Applies to record types. Returns the first component by following the
1178-- chain of declared entities for the record until a component is found
1179-- (one with an Ekind of E_Component). The discriminants are skipped. If
1180-- the record is null, then Empty is returned.
1181
1182-- First_Component_Or_Discriminant (synthesized)
1183-- Similar to First_Component, but discriminants are not skipped, so will
1184-- find the first discriminant if discriminants are present.
70482933 1185
70482933
RK
1186-- First_Entity (Node17)
1187-- Present in all entities which act as scopes to which a list of
1188-- associated entities is attached (blocks, class subtypes and types,
1189-- entries, functions, loops, packages, procedures, protected objects,
1190-- record types and subtypes, private types, task types and subtypes).
1191-- Points to a list of associated entities using the Next_Entity field
1192-- as a chain pointer with Empty marking the end of the list.
1193
51bf9bdf
AC
1194-- First_Exit_Statement (Node8)
1195-- Present in E_Loop entity. The exit statements for a loop are chained
308e6f3a 1196-- (in reverse order of appearance) using this field to point to the
51bf9bdf
AC
1197-- first entry in the chain (last exit statement in the loop). The
1198-- entries are chained through the Next_Exit_Statement field of the
1199-- N_Exit_Statement node with Empty marking the end of the list.
1200
70482933
RK
1201-- First_Formal (synthesized)
1202-- Applies to subprograms and subprogram types, and also in entries
1203-- and entry families. Returns first formal of the subprogram or entry.
1204-- The formals are the first entities declared in a subprogram or in
1205-- a subprogram type (the designated type of an Access_To_Subprogram
1206-- definition) or in an entry.
1207
6e443c90
RD
1208-- First_Formal_With_Extras (synthesized)
1209-- Applies to subprograms and subprogram types, and also in entries
1210-- and entry families. Returns first formal of the subprogram or entry.
1211-- Returns Empty if there are no formals. The list returned includes
1212-- all the extra formals (see description of Extra_Formals field).
1213
70482933
RK
1214-- First_Index (Node17)
1215-- Present in array types and subtypes and in string types and subtypes.
1216-- By introducing implicit subtypes for the index constraints, we have
1217-- the same structure for constrained and unconstrained arrays, subtype
1218-- marks and discrete ranges are both represented by a subtype. This
1219-- function returns the tree node corresponding to an occurrence of the
1220-- first index (NOT the entity for the type). Subsequent indexes are
1221-- obtained using Next_Index. Note that this field is present for the
1222-- case of string literal subtypes, but is always Empty.
1223
1224-- First_Literal (Node17)
1225-- Present in all enumeration types, including character and boolean
1226-- types. This field points to the first enumeration literal entity
1227-- for the type (i.e. it is set to First (Literals (N)) where N is
1228-- the enumeration type definition node. A special case occurs with
1229-- standard character and wide character types, where this field is
1230-- Empty, since there are no enumeration literal lists in these cases.
fbf5a39b
AC
1231-- Note that this field is set in enumeration subtypes, but it still
1232-- points to the first literal of the base type in this case.
70482933
RK
1233
1234-- First_Optional_Parameter (Node14)
1235-- Present in (non-generic) function and procedure entities. Set to a
1236-- non-null value only if a pragma Import_Function, Import_Procedure
1237-- or Import_Valued_Procedure specifies a First_Optional_Parameter
1238-- argument, in which case this field points to the parameter entity
1239-- corresponding to the specified parameter.
1240
1241-- First_Private_Entity (Node16)
ce0bead3
HK
1242-- Present in all entities containing private parts (packages, protected
1243-- types and subtypes, task types and subtypes). The entities on the
1244-- entity chain are in order of declaration, so the entries for private
1245-- entities are at the end of the chain. This field points to the first
1246-- entity for the private part. It is Empty if there are no entities
1247-- declared in the private part or if there is no private part.
70482933
RK
1248
1249-- First_Rep_Item (Node6)
1250-- Present in all entities. If non-empty, points to a linked list of
1251-- representation pragmas nodes and representation clause nodes that
1252-- apply to the entity, linked using Next_Rep_Item, with Empty marking
1253-- the end of the list. In the case of derived types and subtypes, the
60370fb1
AC
1254-- new entity inherits the chain at the point of declaration. This means
1255-- that it is possible to have multiple instances of the same kind of rep
1256-- item on the chain, in which case it is the first one that applies to
1257-- the entity.
70482933 1258--
ce0bead3
HK
1259-- Note: pragmas that can apply to more than one overloadable entity,
1260-- (Convention, Interface, Inline, Inline_Always, Import, Export,
1261-- External) are never present on this chain when they apply to
1262-- overloadable entities, since it is impossible for a given pragma
1263-- to be on more than one chain at a time.
1264--
70482933 1265-- For most representation items, the representation information is
ce0bead3
HK
1266-- reflected in other fields and flags in the entity. For example if a
1267-- record representation clause is present, the component entities
1268-- reflect the specified information. However, there are some items that
1269-- are only reflected in the chain. These include:
70482933
RK
1270--
1271-- Alignment attribute definition clause
1272-- Machine_Attribute pragma
1273-- Link_Alias pragma
6c946a9f 1274-- Linker_Section pragma
70482933
RK
1275-- Weak_External pragma
1276--
60370fb1
AC
1277-- If any of these items are present, then the flag Has_Gigi_Rep_Item is
1278-- set, indicating that Gigi should search the chain.
70482933
RK
1279--
1280-- Other representation items are included in the chain so that error
1281-- messages can easily locate the relevant nodes for posting errors.
1282-- Note in particular that size clauses are present only for this
1283-- purpose, and should only be accessed if Has_Size_Clause is set.
1284
26df19ce 1285-- Float_Rep (Uint10)
23c799b1
GB
1286-- Present in floating-point entities. Contains a value of type
1287-- Float_Rep_Kind. Together with the Digits_Value uniquely defines
1288-- the floating-point representation to be used.
1289
70482933 1290-- Freeze_Node (Node7)
60370fb1
AC
1291-- Present in all entities. If there is an associated freeze node for the
1292-- entity, this field references this freeze node. If no freeze node is
1293-- associated with the entity, then this field is Empty. See package
1294-- Freeze for further details.
70482933
RK
1295
1296-- From_With_Type (Flag159)
1297-- Present in package and type entities. Indicates that the entity
1298-- appears in a With_Type clause in the context of some other unit,
1299-- either as the prefix (which must be a package), or as a type name.
1300-- The package can only be used to retrieve such a type, and the type
1301-- can be used only in component declarations and access definitions.
1302-- The With_Type clause is used to construct mutually recursive
1303-- types, i.e. record types (Java classes) that hold pointers to each
1304-- other. If such a type is an access type, it has no explicit freeze
1305-- node, so that the back-end does not attempt to elaborate it.
0ab80019 1306-- Currently this flag is also used to implement Ada 2005 (AI-50217).
19f0526a
AC
1307-- It will be renamed to From_Limited_With after removal of the current
1308-- GNAT with_type clause???
70482933
RK
1309
1310-- Full_View (Node11)
1311-- Present in all type and subtype entities and in deferred constants.
1312-- References the entity for the corresponding full type declaration.
1313-- For all types other than private and incomplete types, this field
6191e212
AC
1314-- always contains Empty. If an incomplete type E1 is completed by a
1315-- private type E2 whose full type declaration entity is E3 then the
1316-- full view of E1 is E2, and the full view of E2 is E3. See also
1317-- Underlying_Type.
70482933 1318
fbf5a39b
AC
1319-- Generic_Homonym (Node11)
1320-- Present in generic packages. The generic homonym is the entity of
1321-- a renaming declaration inserted in every generic unit. It is used
1322-- to resolve the name of a local entity that is given by a qualified
1323-- name, when the generic entity itself is hidden by a local name.
1324
70482933
RK
1325-- Generic_Renamings (Elist23)
1326-- Present in package and subprogram instances. Holds mapping that
1327-- associates generic parameters with the corresponding instances, in
1328-- those cases where the instance is an entity.
1329
70482933
RK
1330-- Handler_Records (List10)
1331-- Present in subprogram and package entities. Points to a list of
1332-- identifiers referencing the handler record entities for the
1333-- corresponding unit.
1334
1335-- Has_Aliased_Components (Flag135) [implementation base type only]
1336-- Present in array type entities. Indicates that the component type
1337-- of the array is aliased.
1338
1339-- Has_Alignment_Clause (Flag46)
1340-- Present in all type entities and objects. Indicates if an alignment
1341-- clause has been given for the entity. If set, then Alignment_Clause
1342-- returns the N_Attribute_Definition node for the alignment attribute
1343-- definition clause. Note that it is possible for this flag to be False
1344-- even when Alignment_Clause returns non_Empty (this happens in the case
1345-- of derived type declarations).
1346
1347-- Has_All_Calls_Remote (Flag79)
1348-- Present in all library unit entities. Set true if the library unit
1349-- has an All_Calls_Remote pragma. Note that such entities must also
1350-- be RCI entities, so the flag Is_Remote_Call_Interface will always
1351-- be set if this flag is set.
1352
f4d379b8
HK
1353-- Has_Anon_Block_Suffix (Flag201)
1354-- Present in all entities. Set if the entity is nested within one or
1355-- more anonymous blocks and the Chars field contains a name with an
308e6f3a 1356-- anonymous block suffix (see Exp_Dbug for further details).
f4d379b8 1357
11fa950b
AC
1358-- Has_Anonymous_Master (Flag253)
1359-- Present in units (top-level functions and procedures, library-level
1360-- packages). Set to True if the associated unit contains a heterogeneous
1361-- finalization master. The master's name is of the form <unit>AM and it
1362-- services anonymous access-to-controlled types with an undetermined
1363-- lifetime.
1364
70482933
RK
1365-- Has_Atomic_Components (Flag86) [implementation base type only]
1366-- Present in all types and objects. Set only for an array type or
1367-- an array object if a valid pragma Atomic_Components applies to the
1368-- type or object. Note that in the case of an object, this flag is
1369-- only set on the object if there was an explicit pragma for the
1370-- object. In other words, the proper test for whether an object has
1371-- atomic components is to see if either the object or its base type
1372-- has this flag set. Note that in the case of a type, the pragma will
1373-- be chained to the rep item chain of the first subtype in the usual
1374-- manner.
1375
1376-- Has_Attach_Handler (synthesized)
1377-- Applies to record types that are constructed by the expander to
1378-- represent protected types. Returns True if there is at least one
1379-- Attach_Handler pragma in the corresponding specification.
1380
1381-- Has_Biased_Representation (Flag139)
1382-- Present in discrete types (where it applies to the type'size value),
1383-- and to objects (both stand-alone and components), where it applies to
1384-- the size of the object from a size or record component clause. In
1385-- all cases it indicates that the size in question is smaller than
1386-- would normally be required, but that the size requirement can be
1387-- satisfied by using a biased representation, in which stored values
1388-- have the low bound (Expr_Value (Type_Low_Bound (T)) subtracted to
1389-- reduce the required size. For example, a type with a range of 1..2
1390-- takes one bit, using 0 to represent 1 and 1 to represent 2.
1391--
ce0bead3
HK
1392-- Note that in the object and component cases, the flag is only set if
1393-- the type is unbiased, but the object specifies a smaller size than the
1394-- size of the type, forcing biased representation for the object, but
1395-- the subtype is still an unbiased type.
70482933
RK
1396
1397-- Has_Completion (Flag26)
1398-- Present in all entities that require a completion (functions,
1399-- procedures, private types, limited private types, incomplete types,
5453d5bd
AC
1400-- constants and packages that require a body). The flag is set if the
1401-- completion has been encountered and analyzed.
70482933
RK
1402
1403-- Has_Completion_In_Body (Flag71)
6e443c90
RD
1404-- Present in all entities for types and subtypes. Set only in "Taft
1405-- amendment types" (incomplete types whose full declaration appears in
1406-- the package body).
70482933
RK
1407
1408-- Has_Complex_Representation (Flag140) [implementation base type only]
1409-- Present in all type entities. Set only for a record base type to
1410-- which a valid pragma Complex_Representation applies.
1411
1412-- Has_Component_Size_Clause (Flag68) [implementation base type only]
1413-- Present in all type entities. Set if a component size clause is
1414-- present for the given type. Note that this flag can be False even
1415-- if Component_Size is non-zero (happens in the case of derived types).
1416
edd63e9b
ES
1417-- Has_Constrained_Partial_View (Flag187)
1418-- Present in private type and their completions, when the private
1419-- type has no discriminants and the full view has discriminants with
1420-- defaults. In Ada 2005 heap-allocated objects of such types are not
1421-- constrained, and can change their discriminants with full assignment.
1422
fbf5a39b
AC
1423-- Has_Contiguous_Rep (Flag181)
1424-- Present in enumeration types. True if the type as a representation
1425-- clause whose entries are successive integers.
1426
70482933 1427-- Has_Controlling_Result (Flag98)
0a36105d
JM
1428-- Present in E_Function entities. True if the function is a primitive
1429-- function of a tagged type which can dispatch on result.
70482933
RK
1430
1431-- Has_Controlled_Component (Flag43) [base type only]
a01b9df6
AC
1432-- Present in all type and subtype entities. Set only for composite type
1433-- entities which contain a component that either is a controlled type,
1434-- or itself contains controlled component (i.e. either Is_Controlled or
1435-- Has_Controlled_Component is set for at least one component).
70482933
RK
1436
1437-- Has_Convention_Pragma (Flag119)
fdce4bb7
JM
1438-- Present in all entities. Set true for an entity for which a valid
1439-- Convention, Import, or Export pragma has been given. Used to prevent
1440-- more than one such pragma appearing for a given entity (RM B.1(45)).
70482933 1441
c159409f
AC
1442-- Has_Delayed_Aspects (Flag200) Present in all entities. Set true if the
1443-- Rep_Item chain for the entity has one or more N_Aspect_Definition
1444-- nodes chained which are not to be evaluated till the freeze point.
1445-- The aspect definition expression clause has been preanalyzed to get
1446-- visibility at the point of use, but no other action has been taken.
1447
70482933
RK
1448-- Has_Delayed_Freeze (Flag18)
1449-- Present in all entities. Set to indicate that an explicit freeze
1450-- node must be generated for the entity at its freezing point. See
1451-- separate section ("Delayed Freezing and Elaboration") for details.
1452
a01b9df6
AC
1453-- Has_Default_Aspect (Flag39) [base type only]
1454-- Present in entities for types and subtypes, set for scalar types with
1455-- a Default_Value aspect and array types with a Default_Component_Value
1456-- apsect. If this flag is set, then a corresponding aspect specification
1457-- node will be present on the rep item chain for the entity.
19fb051c 1458
70482933
RK
1459-- Has_Discriminants (Flag5)
1460-- Present in all types and subtypes. For types that are allowed to have
1461-- discriminants (record types and subtypes, task types and subtypes,
1462-- protected types and subtypes, private types, limited private types,
1463-- and incomplete types), indicates if the corresponding type or subtype
1464-- has a known discriminant part. Always false for all other types.
1465
5d37ba92
ES
1466-- Has_Dispatch_Table (Flag220)
1467-- Present in E_Record_Types that are tagged. Set to indicate that the
1468-- corresponding dispatch table is already built. This flag is used to
1469-- avoid duplicate construction of library level dispatch tables (because
1470-- the declaration of library level objects cause premature construction
1471-- of the table); otherwise the code that builds the table is added at
1472-- the end of the list of declarations of the package.
1473
70482933
RK
1474-- Has_Entries (synthesized)
1475-- Applies to concurrent types. True if any entries are declared
1476-- within the task or protected definition for the type.
1477
1478-- Has_Enumeration_Rep_Clause (Flag66)
1479-- Present in enumeration types. Set if an enumeration representation
1480-- clause has been given for this enumeration type. Used to prevent more
1481-- than one enumeration representation clause for a given type. Note
1482-- that this does not imply a representation with holes, since the rep
1483-- clause may merely confirm the default 0..N representation.
1484
1485-- Has_External_Tag_Rep_Clause (Flag110)
1486-- Present in tagged types. Set if an external_tag rep. clause has been
1487-- given for this type. Use to avoid the generation of the default
1488-- external_tag.
1489
1490-- Has_Exit (Flag47)
1491-- Present in loop entities. Set if the loop contains an exit statement.
1492
1493-- Has_Foreign_Convention (synthesized)
1494-- Applies to all entities. Determines if the Convention for the
1495-- entity is a foreign convention (i.e. is other than Convention_Ada,
1496-- Convention_Intrinsic, Convention_Entry or Convention_Protected).
1497
1498-- Has_Forward_Instantiation (Flag175)
1499-- Present in package entities. Set true for packages that contain
1500-- instantiations of local generic entities, before the corresponding
1501-- generic body has been seen. If a package has a forward instantiation,
1502-- we cannot inline subprograms appearing in the same package because
1503-- the placement requirements of the instance will conflict with the
1504-- linear elaboration of front-end inlining.
1505
1506-- Has_Fully_Qualified_Name (Flag173)
ce0bead3
HK
1507-- Present in all entities. Set True if the name in the Chars field has
1508-- been replaced by the fully qualified name, as used for debug output.
1509-- See Exp_Dbug for a full description of the use of this flag and also
1510-- the related flag Has_Qualified_Name.
70482933
RK
1511
1512-- Has_Gigi_Rep_Item (Flag82)
fdce4bb7
JM
1513-- Present in all entities. Set if the rep item chain (referenced by
1514-- First_Rep_Item and linked through the Next_Rep_Item chain) contains a
1515-- representation item that needs to be specially processed by Gigi, i.e.
1516-- one of the following items:
70482933
RK
1517--
1518-- Machine_Attribute pragma
1519-- Linker_Alias pragma
1520-- Linker_Section pragma
d9e0a587
EB
1521-- Linker_Constructor pragma
1522-- Linker_Destructor pragma
70482933
RK
1523-- Weak_External pragma
1524--
1525-- If this flag is set, then Gigi should scan the rep item chain to
1526-- process any of these items that appear. At least one such item will
1527-- be present.
1528
1529-- Has_Homonym (Flag56)
1530-- Present in all entities. Set if an entity has a homonym in the same
1531-- scope. Used by Gigi to generate unique names for such entities.
383e179e 1532
0da80d7d
AC
1533-- Has_Implicit_Dereference (Flag251)
1534-- Present in types and discriminants. Set if the type has an aspect
1535-- Implicit_Dereference. Set also on the discriminant named in the aspect
1536-- clause, to simplify type resolution.
1537
5d37ba92
ES
1538-- Has_Initial_Value (Flag219)
1539-- Present in entities for variables and out parameters. Set if there
1540-- is an explicit initial value expression in the declaration of the
1541-- variable. Note that this is set only if this initial value is
1542-- explicit, it is not set for the case of implicit initialization
1543-- of access types or controlled types. Always set to False for out
1544-- parameters. Also present in entities for in and in-out parameters,
1545-- but always false in these cases.
383e179e 1546
70482933 1547-- Has_Interrupt_Handler (synthesized)
fbf5a39b 1548-- Applies to all protected type entities. Set if the protected type
70482933
RK
1549-- definition contains at least one procedure to which a pragma
1550-- Interrupt_Handler applies.
1551
e606088a 1552-- Has_Invariants (Flag232)
fd0ff1cf
RD
1553-- Present in all type entities and in subprogram entities. Set True in
1554-- private types if an Invariant or Invariant'Class aspect applies to the
1555-- type, or if the type inherits one or more Invariant'Class aspects.
1556-- Also set in the corresponding full type. Note: if this flag is set
1557-- True, then usually the Invariant_Procedure attribute is set once the
1558-- type is frozen, however this may not be true in some error situations.
1559-- Note that it might be the full type which has inheritable invariants,
1560-- and then the flag will also be set in the private type. Also set in
1561-- the invariant procedure entity, to distinguish it among entries in the
1562-- Subprograms_For_Type.
e606088a
AC
1563
1564-- Has_Inheritable_Invariants (Flag248)
1565-- Present in all type entities. Set True in private types from which one
1566-- or more Invariant'Class aspects will be inherited if a another type is
1567-- derived from the type (i.e. those types which have an Invariant'Class
1568-- aspect, or which inherit one or more Invariant'Class aspects). Also
1569-- set in the corresponding full types. Note that it might be the full
1570-- type which has inheritable invariants, and in this case the flag will
1571-- also be set in the private type.
1572
70482933
RK
1573-- Has_Machine_Radix_Clause (Flag83)
1574-- Present in decimal types and subtypes, set if a Machine_Radix
1575-- representation clause is present. This flag is used to detect
1576-- the error of multiple machine radix clauses for a single type.
1577
1578-- Has_Master_Entity (Flag21)
1579-- Present in entities that can appear in the scope stack (see spec
1580-- of Sem). It is set if a task master entity (_master) has been
1581-- declared and initialized in the corresponding scope.
1582
1583-- Has_Missing_Return (Flag142)
1584-- Present in functions and generic functions. Set if there is one or
1585-- more missing return statements in the function. This is used to
1586-- control wrapping of the body in Exp_Ch6 to ensure that the program
308e6f3a 1587-- error exception is correctly raised in this case at runtime.
70482933
RK
1588
1589-- Has_Nested_Block_With_Handler (Flag101)
1590-- Present in scope entities. Set if there is a nested block within the
1591-- scope that has an exception handler and the two scopes are in the
1592-- same procedure. This is used by the backend for controlling certain
1593-- optimizations to ensure that they are consistent with exceptions.
1594-- See documentation in Gigi for further details.
1595
1596-- Has_Non_Standard_Rep (Flag75) [implementation base type only]
1597-- Present in all type entities. Set when some representation clause
1598-- or pragma causes the representation of the item to be significantly
1599-- modified. In this category are changes of small or radix for a
1600-- fixed-point type, change of component size for an array, and record
1601-- or enumeration representation clauses, as well as packed pragmas.
1602-- All other representation clauses (e.g. Size and Alignment clauses)
1603-- are not considered to be significant since they do not affect
1604-- stored bit patterns.
1605
1606-- Has_Object_Size_Clause (Flag172)
1607-- Present in entities for types and subtypes. Set if an Object_Size
1608-- clause has been processed for the type Used to prevent multiple
1609-- Object_Size clauses for a given entity.
1610
1611-- Has_Per_Object_Constraint (Flag154)
1612-- Present in E_Component entities, true if the subtype of the
5d09245e
AC
1613-- component has a per object constraint. Per object constraints result
1614-- from the following situations:
1615--
1616-- 1. N_Attribute_Reference - when the prefix is the enclosing type and
1617-- the attribute is Access.
1618-- 2. N_Discriminant_Association - when the expression uses the
1619-- discriminant of the enclosing type.
1620-- 3. N_Index_Or_Discriminant_Constraint - when at least one of the
1621-- individual constraints is a per object constraint.
1622-- 4. N_Range - when the lower or upper bound uses the discriminant of
1623-- the enclosing type.
1624-- 5. N_Range_Constraint - when the range expression uses the
1625-- discriminant of the enclosing type.
70482933 1626
edd63e9b
ES
1627-- Has_Persistent_BSS (Flag188)
1628-- Present in all entities. Set True for entities to which a valid
1629-- pragma Persistent_BSS applies. Note that although the pragma is
1630-- only meaningful for objects, we set it for all entities in a unit
1631-- to which the pragma applies, as well as the unit entity itself, for
1632-- convenience in propagating the flag to contained entities.
1633
21d27997
RD
1634-- Has_Postconditions (Flag240)
1635-- Present in subprogram entities. Set if postconditions are active for
1636-- the procedure, and a _postconditions procedure has been generated.
1637
70482933
RK
1638-- Has_Pragma_Controlled (Flag27) [implementation base type only]
1639-- Present in access type entities. It is set if a pragma Controlled
1640-- applies to the access type.
1641
1642-- Has_Pragma_Elaborate_Body (Flag150)
1643-- Present in all entities. Set in compilation unit entities if a
1644-- pragma Elaborate_Body applies to the compilation unit.
1645
1646-- Has_Pragma_Inline (Flag157)
ce0bead3
HK
1647-- Present in all entities. Set for functions and procedures for which a
1648-- pragma Inline or Inline_Always applies to the subprogram. Note that
1649-- this flag can be set even if Is_Inlined is not set. This happens for
1650-- pragma Inline (if Inline_Active is False). In other words, the flag
1651-- Has_Pragma_Inline represents the formal semantic status, and is used
1652-- for checking semantic correctness. The flag Is_Inlined indicates
1653-- whether inlining is actually active for the entity.
1654
1655-- Has_Pragma_Inline_Always (Flag230)
1656-- Present in all entities. Set for functions and procedures for which a
1657-- pragma Inline_Always applies. Note that if this flag is set, the flag
1658-- Has_Pragma_Inline is also set.
70482933 1659
bd29d519
AC
1660-- Has_Pragma_Ordered (Flag198) [implementation base type only]
1661-- Present in entities for enumeration types. If set indicates that a
1662-- valid pragma Ordered was given for the type. This flag is inherited
1663-- by derived enumeration types. We don't need to distinguish the derived
1664-- case since we allow multiple occurrences of this pragma anyway.
1665
70482933 1666-- Has_Pragma_Pack (Flag121) [implementation base type only]
a01b9df6
AC
1667-- Present in array and record type entities. If set, indicates that a
1668-- valid pragma Pack was given for the type. Note that this flag is not
1669-- inherited by derived type. See also the Is_Packed flag.
70482933 1670
ba673907
JM
1671-- Has_Pragma_Pure (Flag203)
1672-- Present in all entities. If set, indicates that a valid pragma Pure
1673-- was given for the entity. In some cases, we need to test whether
1674-- Is_Pure was explicitly set using this pragma.
1675
5d37ba92
ES
1676-- Has_Pragma_Preelab_Init (Flag221)
1677-- Present in type and subtype entities. If set indicates that a valid
1678-- pragma Preelaborable_Initialization applies to the type.
1679
0839863c 1680-- Has_Pragma_Pure_Function (Flag179)
ba673907 1681-- Present in all entities. If set, indicates that a valid pragma
0839863c 1682-- Pure_Function was given for the entity. In some cases, we need to
39231404
AC
1683-- know that Is_Pure was explicitly set using this pragma. We also set
1684-- this flag for some internal entities that we know should be treated
1685-- as pure for optimization purposes.
0839863c 1686
4c8a5bb8
AC
1687-- Has_Pragma_Thread_Local_Storage (Flag169)
1688-- Present in all entities. If set, indicates that a valid pragma
1689-- Thread_Local_Storage was given for the entity.
1690
9d77af56
RD
1691-- Has_Pragma_Unmodified (Flag233)
1692-- Present in all entities. Can only be set for variables (E_Variable,
1693-- E_Out_Parameter, E_In_Out_Parameter). Set if a valid pragma Unmodified
1694-- applies to the variable, indicating that no warning should be given
0f282086
RD
1695-- if the entity is never modified. Note that clients should generally
1696-- not test this flag directly, but instead use function Has_Unmodified.
9d77af56 1697
07fc65c4
GB
1698-- Has_Pragma_Unreferenced (Flag180)
1699-- Present in all entities. Set if a valid pragma Unreferenced applies
9d77af56 1700-- to the entity, indicating that no warning should be given if the
07fc65c4 1701-- entity has no references, but a warning should be given if it is
f937473f 1702-- in fact referenced. For private types, this flag is set in both the
0f282086
RD
1703-- private entity and full entity if the pragma applies to either. Note
1704-- that clients should generally not test this flag directly, but instead
1705-- use function Has_Unreferenced.
f937473f
RD
1706
1707-- Has_Pragma_Unreferenced_Objects (Flag212)
1708-- Present in type and subtype entities. Set if a valid pragma
1709-- Unreferenced_Objects applies to the type, indicating that no warning
1710-- should be given for objects of such a type for being unreferenced
1711-- (but unlike the case with pragma Unreferenced, it is ok to reference
1712-- such an object and no warning is generated.
07fc65c4 1713
fd0ff1cf 1714-- Has_Predicates (Flag250)
2d4e0553
AC
1715-- Present in all entities. Set in type and subtype entities if a pragma
1716-- Predicate or Predicate aspect applies to the type, or if it inherits a
1717-- Predicate aspect from its parent or progenitor types. Also set in the
1718-- predicate function entity, to distinguish it among entries in the
1719-- Subprograms_For_Type.
fd0ff1cf 1720
70482933
RK
1721-- Has_Primitive_Operations (Flag120) [base type only]
1722-- Present in all type entities. Set if at least one primitive operation
07fc65c4 1723-- is defined for the type.
70482933 1724
87729e5a
AC
1725-- Has_Private_Ancestor (Flag151)
1726-- Applies to type extensions. True if some ancestor is derived from a
1727-- private type, making some components invisible and aggregates illegal.
1728-- This flag is set at the point of derivation. The legality of the
1729-- aggregate must be rechecked because it also depends on the visibility
1730-- at the point the aggregate is resolved. See sem_aggr.adb.
1731-- This is part of AI05-0115.
70482933
RK
1732
1733-- Has_Private_Declaration (Flag155)
1734-- Present in all entities. Returns True if it is the defining entity
1735-- of a private type declaration or its corresponding full declaration.
1736-- This flag is thus preserved when the full and the partial views are
1737-- exchanged, to indicate if a full type declaration is a completion.
fab2daeb 1738-- Used for semantic checks in E.4(18) and elsewhere.
70482933
RK
1739
1740-- Has_Qualified_Name (Flag161)
1741-- Present in all entities. Set True if the name in the Chars field
1742-- has been replaced by its qualified name, as used for debug output.
1743-- See Exp_Dbug for a full description of qualification requirements.
1744-- For some entities, the name is the fully qualified name, but there
1745-- are exceptions. In particular, for local variables in procedures,
1746-- we do not include the procedure itself or higher scopes. See also
1747-- the flag Has_Fully_Qualified_Name, which is set if the name does
1748-- indeed include the fully qualified name.
1749
f937473f
RD
1750-- Has_RACW (Flag214)
1751-- Present in package spec entities. Set if the spec contains the
1752-- declaration of a remote access-to-classwide type.
1753
07fc65c4 1754-- Has_Record_Rep_Clause (Flag65) [implementation base type only]
70482933
RK
1755-- Present in record types. Set if a record representation clause has
1756-- been given for this record type. Used to prevent more than one such
1757-- clause for a given record type. Note that this is initially cleared
1758-- for a derived type, even though the representation is inherited. See
1759-- also the flag Has_Specified_Layout.
1760
1761-- Has_Recursive_Call (Flag143)
1762-- Present in procedures. Set if a direct parameterless recursive call
1763-- is detected while analyzing the body. Used to activate some error
1764-- checks for infinite recursion.
1765
1766-- Has_Size_Clause (Flag29)
1767-- Present in entities for types and objects. Set if a size clause is
1768-- present for the entity. Used to prevent multiple Size clauses for a
1769-- given entity. Note that it is always initially cleared for a derived
1770-- type, even though the Size for such a type is inherited from a Size
1771-- clause given for the parent type.
1772
1773-- Has_Small_Clause (Flag67)
1774-- Present in ordinary fixed point types (but not subtypes). Indicates
1775-- that a small clause has been given for the entity. Used to prevent
1776-- multiple Small clauses for a given entity. Note that it is always
1777-- initially cleared for a derived type, even though the Small for such
1778-- a type is inherited from a Small clause given for the parent type.
1779
07fc65c4 1780-- Has_Specified_Layout (Flag100) [implementation base type only]
70482933
RK
1781-- Present in all type entities. Set for a record type or subtype if
1782-- the record layout has been specified by a record representation
1783-- clause. Note that this differs from the flag Has_Record_Rep_Clause
1784-- in that it is inherited by a derived type. Has_Record_Rep_Clause is
1785-- used to indicate that the type is mentioned explicitly in a record
1786-- representation clause, and thus is not inherited by a derived type.
1787-- This flag is always False for non-record types.
1788
e606088a 1789-- Has_Specified_Stream_Input (Flag190)
edd63e9b 1790-- Has_Specified_Stream_Output (Flag191)
e606088a
AC
1791-- Has_Specified_Stream_Read (Flag192)
1792-- Has_Specified_Stream_Write (Flag193)
edd63e9b
ES
1793-- Present in all type and subtype entities. Set for a given view if the
1794-- corresponding stream-oriented attribute has been defined by an
1795-- attribute definition clause. When such a clause occurs, a TSS is set
1796-- on the underlying full view; the flags are used to track visibility of
1797-- the attribute definition clause for partial or incomplete views.
383e179e 1798
6e443c90
RD
1799-- Has_Static_Discriminants (Flag211)
1800-- Present in record subtypes constrained by discriminant values. Set if
1801-- all the discriminant values have static values, meaning that in the
1802-- case of a variant record, the component list can be trimmed down to
1803-- include only the components corresponding to these discriminants.
383e179e 1804
70482933
RK
1805-- Has_Storage_Size_Clause (Flag23) [implementation base type only]
1806-- Present in task types and access types. It is set if a Storage_Size
1807-- clause is present for the type. Used to prevent multiple clauses for
1808-- one type. Note that this flag is initially cleared for a derived type
1809-- even though the Storage_Size for such a type is inherited from a
1810-- Storage_Size clause given for the parent type. Note that in the case
1811-- of access types, this flag is present only in the root type, since a
1812-- storage size clause cannot be given to a derived type.
1813
82c80734 1814-- Has_Stream_Size_Clause (Flag184)
fdce4bb7
JM
1815-- Present in all entities. It is set for types which have a Stream_Size
1816-- clause attribute. Used to prevent multiple Stream_Size clauses for a
1817-- given entity, and also whether it is necessary to check for a stream
1818-- size clause.
82c80734 1819
70482933
RK
1820-- Has_Subprogram_Descriptor (Flag93)
1821-- This flag is set on entities for which zero-cost exception subprogram
1822-- descriptors can be generated (subprograms and library level package
1823-- declarations and bodies). It indicates that a subprogram descriptor
1824-- has been generated, and is used to suppress generation of multiple
1825-- descriptors (e.g. when instantiating generic bodies).
1826
1827-- Has_Task (Flag30) [base type only]
1828-- Present in all type entities. Set on task types themselves, and also
1829-- (recursively) on any composite type which has a component for which
f937473f
RD
1830-- Has_Task is set. The meaning is that an allocator or declaration of
1831-- such an object must create the required tasks. Note: the flag is not
1832-- set on access types, even if they designate an object that Has_Task.
70482933 1833
ce0bead3
HK
1834-- Has_Thunks (Flag228)
1835-- Applies to E_Constant entities marked Is_Tag. True for secondary tag
1836-- referencing a dispatch table whose contents are pointers to thunks.
1837
70482933
RK
1838-- Has_Unchecked_Union (Flag123) [base type only]
1839-- Present in all type entities. Set on unchecked unions themselves
1840-- and (recursively) on any composite type which has a component for
1841-- which Has_Unchecked_Union is set. The meaning is that a comparison
1842-- operation for the type is not permitted. Note that the flag is not
1843-- set on access types, even if they designate an object that has
1844-- the flag Has_Unchecked_Union set.
1845
1846-- Has_Unknown_Discriminants (Flag72)
fdce4bb7
JM
1847-- Present in all entities. Set for types with unknown discriminants.
1848-- Types can have unknown discriminants either from their declaration or
1849-- through type derivation. The use of this flag exactly meets the spec
1850-- in RM 3.7(26). Note that all class-wide types are considered to have
1851-- unknown discriminants. Note that both Has_Discriminants and
1852-- Has_Unknown_Discriminants may be true for a type. Class-wide types and
1853-- their subtypes have unknown discriminants and can have declared ones
1854-- as well. Private types declared with unknown discriminants may have a
1855-- full view that has explicit discriminants, and both flag will be set
1856-- on the partial view, to insure that discriminants are properly
1857-- inherited in certain contexts.
70482933 1858
df3e68b1
HK
1859-- Has_Up_Level_Access (Flag215)
1860-- Present in E_Variable and E_Constant entities. Set if the entity
1861-- is a local variable declared in a subprogram p and is accessed in
1862-- a subprogram nested inside p. Currently this flag is only set when
1863-- VM_Target /= No_VM, for efficiency, since only the .NET back-end
1864-- makes use of it to generate proper code for up-level references.
1865
70482933 1866-- Has_Volatile_Components (Flag87) [implementation base type only]
ce0bead3
HK
1867-- Present in all types and objects. Set only for an array type or array
1868-- object if a valid pragma Volatile_Components or a valid pragma
1869-- Atomic_Components applies to the type or object. Note that in the case
1870-- of an object, this flag is only set on the object if there was an
1871-- explicit pragma for the object. In other words, the proper test for
1872-- whether an object has volatile components is to see if either the
1873-- object or its base type has this flag set. Note that in the case of a
1874-- type the pragma will be chained to the rep item chain of the first
1875-- subtype in the usual manner.
70482933 1876
fbf5a39b 1877-- Has_Xref_Entry (Flag182)
fdce4bb7
JM
1878-- Present in all entities. Set if an entity has an entry in the Xref
1879-- information generated in ali files. This is true for all source
1880-- entities in the extended main source file. It is also true of entities
1881-- in other packages that are referenced directly or indirectly from the
1882-- main source file (indirect reference occurs when the main source file
1883-- references an entity with a type reference. See package Lib.Xref for
1884-- further details).
fbf5a39b 1885
70482933
RK
1886-- Hiding_Loop_Variable (Node8)
1887-- Present in variables. Set only if a variable of a discrete type is
1888-- hidden by a loop variable in the same local scope, in which case
1889-- the Hiding_Loop_Variable field of the hidden variable points to
fbf5a39b 1890-- the E_Loop_Parameter entity doing the hiding. Used in processing
70482933
RK
1891-- warning messages if the hidden variable turns out to be unused
1892-- or is referenced without being set.
1893
1894-- Homonym (Node4)
1895-- Present in all entities. Link for list of entities that have the
1896-- same source name and that are declared in the same or enclosing
1897-- scopes. Homonyms in the same scope are overloaded. Used for name
1898-- resolution and for the generation of debugging information.
1899
1900-- Implementation_Base_Type (synthesized)
ce0bead3
HK
1901-- Applies to all entities. For types, similar to Base_Type, but never
1902-- returns a private type when applied to a non-private type. Instead in
1903-- this case, it always returns the Underlying_Type of the base type, so
1904-- that we still have a concrete type. For entities other than types,
6e443c90 1905-- returns the entity unchanged.
70482933 1906
ce2b6ba5
JM
1907-- Interface_Alias (Node25)
1908-- Present in subprograms that cover a primitive operation of an abstract
1909-- interface type. Can be set only if the Is_Hidden flag is also set,
1910-- since such entities are always hidden. Points to its associated
1911-- interface subprogram. It is used to register the subprogram in
1912-- secondary dispatch table of the interface (Ada 2005: AI-251).
1913
cdcb8ccb
RD
1914-- Interfaces (Elist25)
1915-- Present in record types and subtypes. List of abstract interfaces
1916-- implemented by a tagged type that are not already implemented by the
1917-- ancestors (Ada 2005: AI-251).
1918
70482933 1919-- In_Package_Body (Flag48)
fdce4bb7
JM
1920-- Present in package entities. Set on the entity that denotes the
1921-- package (the defining occurrence of the package declaration) while
1922-- analyzing and expanding the package body. Reset on completion of
1923-- analysis/expansion.
70482933
RK
1924
1925-- In_Private_Part (Flag45)
6e443c90
RD
1926-- Present in all entities. Can be set only in package entities and
1927-- objects. For package entities, this flag is set to indicate that the
1928-- private part of the package is being analyzed. The flag is reset at
1929-- the end of the package declaration. For objects it indicates that the
1930-- declaration of the object occurs in the private part of a package.
70482933
RK
1931
1932-- Inner_Instances (Elist23)
6e443c90
RD
1933-- Present in generic units. Contains element list of units that are
1934-- instantiated within the given generic. Used to diagnose circular
1935-- instantiations.
70482933
RK
1936
1937-- Interface_Name (Node21)
ded8909b
AC
1938-- Present in constants, variables, exceptions, functions, procedures,
1939-- packages, components (JGNAT only), discriminants (JGNAT only), and
1940-- access to subprograms (JGNAT only). Set to Empty unless an export,
1941-- import, or interface name pragma has explicitly specified an external
1942-- name, in which case it references an N_String_Literal node for the
1943-- specified external name. In the case of exceptions, the field is set
1944-- by Import_Exception/Export_Exception (which can be used in OpenVMS
70482933
RK
1945-- versions only). Note that if this field is Empty, and Is_Imported
1946-- or Is_Exported is set, then the default interface name is the name
1947-- of the entity, cased in a manner that is appropriate to the system
1948-- in use. Note that Interface_Name is ignored if an address clause
1949-- is present (since it is meaningless in this case).
1950--
1951-- An additional special case usage of this field is in JGNAT for
ce0bead3
HK
1952-- E_Component and E_Discriminant. JGNAT allows these entities to be
1953-- imported by specifying pragma Import within a component's containing
1954-- record definition. This supports interfacing to object fields defined
1955-- within Java classes, and such pragmas are generated by the jvm2ada
1956-- binding generator tool whenever it processes classes with public
1957-- object fields. A pragma Import for a component can define the
1958-- External_Name of the imported Java field (which is generally needed,
1959-- because Java names are case sensitive).
3fd9f17c 1960
fd0ff1cf 1961-- Invariant_Procedure (synthesized)
e606088a
AC
1962-- Present in types and subtypes. Set for private types if one or more
1963-- Invariant, or Invariant'Class, or inherited Invariant'Class aspects
1964-- apply to the type. Points to the entity for a procedure which checks
1965-- the invariant. This invariant procedure takes a single argument of the
1966-- given type, and returns if the invariant holds, or raises exception
1967-- Assertion_Error with an appropriate message if it does not hold. This
fd0ff1cf
RD
1968-- attribute is present but always empty for private subtypes. This
1969-- attribute is also set for the corresponding full type.
1970--
1971-- Note: the reason this is marked as a synthesized attribute is that the
1972-- way this is stored is as an element of the Subprograms_For_Type field.
e606088a 1973
70482933
RK
1974-- In_Use (Flag8)
1975-- Present in packages and types. Set when analyzing a use clause for
1976-- the corresponding entity. Reset at end of corresponding declarative
1977-- part. The flag on a type is also used to determine the visibility of
1978-- the primitive operators of the type.
1979
f937473f
RD
1980-- Is_Abstract_Subprogram (Flag19)
1981-- Present in all subprograms and entries. Set for abstract subprograms.
1982-- Always False for enumeration literals and entries. See also
1983-- Requires_Overriding.
1984
1985-- Is_Abstract_Type (Flag146)
1986-- Present in all types. Set for abstract types.
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RK
1987
1988-- Is_Access_Constant (Flag69)
1989-- Present in access types and subtypes. Indicates that the keyword
1990-- constant was present in the access type definition.
1991
f937473f
RD
1992-- Is_Access_Protected_Subprogram_Type (synthesized)
1993-- Applies to all types, true for named and anonymous access to
1994-- protected subprograms.
1995
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RK
1996-- Is_Access_Type (synthesized)
1997-- Applies to all entities, true for access types and subtypes
1998
6e443c90 1999-- Is_Ada_2005_Only (Flag185)
599a7411
AC
2000-- Present in all entities, true if a valid pragma Ada_05 or Ada_2005
2001-- applies to the entity which specifically names the entity, indicating
2002-- that the entity is Ada 2005 only. Note that this flag is not set if
2003-- the entity is part of a unit compiled with the normal no-argument form
2004-- of pragma Ada_05 or Ada_2005.
2005
2006-- Is_Ada_2012_Only (Flag199)
2007-- Present in all entities, true if a valid pragma Ada_12 or Ada_2012
2008-- applies to the entity which specifically names the entity, indicating
2009-- that the entity is Ada 2012 only. Note that this flag is not set if
2010-- the entity is part of a unit compiled with the normal no-argument form
2011-- of pragma Ada_12 or Ada_2012.
82c80734 2012
70482933 2013-- Is_Aliased (Flag15)
fecbd779
AC
2014-- Present in all entities. Set for objects and types whose declarations
2015-- carry the keyword aliased, and on record components that have the
2016-- keyword. For Ada 2012, also applies to formal parameters.
70482933 2017
70482933
RK
2018-- Is_AST_Entry (Flag132)
2019-- Present in entry entities. Set if a valid pragma AST_Entry applies
2020-- to the entry. This flag can only be set in OpenVMS versions of GNAT.
2021-- Note: we also allow the flag to appear in entry families, but given
2022-- the current implementation of the pragma AST_Entry, this flag will
2023-- always be False in entry families.
2024
2025-- Is_Atomic (Flag85)
2026-- Present in all type entities, and also in constants, components and
2027-- variables. Set if a pragma Atomic or Shared applies to the entity.
2028-- In the case of private and incomplete types, this flag is set in
2029-- both the partial view and the full view.
2030
2031-- Is_Array_Type (synthesized)
2032-- Applies to all entities, true for array types and subtypes
2033
2034-- Is_Asynchronous (Flag81)
2035-- Present in all type entities and in procedure entities. Set
2036-- if a pragma Asynchronous applies to the entity.
2037
d347f572
AC
2038-- Is_Base_Type (synthesized)
2039-- Applies to type and subtype entities. True if entity is a base type
2040
07fc65c4 2041-- Is_Bit_Packed_Array (Flag122) [implementation base type only]
ce0bead3
HK
2042-- Present in all entities. This flag is set for a packed array type that
2043-- is bit packed (i.e. the component size is known by the front end and
2044-- is in the range 1-7, 9-15, 17-31, or 33-63). Is_Packed is always set
2045-- if Is_Bit_Packed_Array is set, but it is possible for Is_Packed to be
2046-- set without Is_Bit_Packed_Array for the case of an array having one or
2047-- more index types that are enumeration types with non-standard
2048-- enumeration representations.
70482933
RK
2049
2050-- Is_Boolean_Type (synthesized)
2051-- Applies to all entities, true for boolean types and subtypes,
2052-- i.e. Standard.Boolean and all types ultimately derived from it.
2053
70482933
RK
2054-- Is_Called (Flag102)
2055-- Present in subprograms. Returns true if the subprogram is called
2056-- in the unit being compiled or in a unit in the context. Used for
2057-- inlining.
2058
2059-- Is_Character_Type (Flag63)
fdce4bb7 2060-- Present in all entities. Set for character types and subtypes,
70482933
RK
2061-- i.e. enumeration types that have at least one character literal.
2062
2063-- Is_Child_Unit (Flag73)
2064-- Present in all entities. Set only for defining entities of program
2065-- units that are child units (but False for subunits).
2066
2067-- Is_Class_Wide_Type (synthesized)
2068-- Applies to all entities, true for class wide types and subtypes
2069
fbf5a39b
AC
2070-- Is_Class_Wide_Equivalent_Type (Flag35)
2071-- Present in record types and subtypes. Set to True, if the type acts
2072-- as a class-wide equivalent type, i.e. the Equivalent_Type field of
2073-- some class-wide subtype entity references this record type.
2074
70482933
RK
2075-- Is_Compilation_Unit (Flag149)
2076-- Present in all entities. Set if the entity is a package or subprogram
2077-- entity for a compilation unit other than a subunit (since we treat
2078-- subunits as part of the same compilation operation as the ultimate
2079-- parent, we do not consider them to be separate units for this flag).
2080
2081-- Is_Completely_Hidden (Flag103)
fdce4bb7
JM
2082-- Present in all entities. This flag can be set only for E_Discriminant
2083-- entities. This flag can be set only for girder discriminants of
2084-- untagged types. When set, the entity is a girder discriminant of a
2085-- derived untagged type which is not directly visible in the derived
2086-- type because the derived type or one of its ancestors have renamed the
2087-- discriminants in the root type. Note: there are girder discriminants
2088-- which are not Completely_Hidden (e.g. discriminants of a root type).
70482933
RK
2089
2090-- Is_Composite_Type (synthesized)
2091-- Applies to all entities, true for all composite types and
2092-- subtypes. Either Is_Composite_Type or Is_Elementary_Type (but
2093-- not both) is true of any type.
2094
2095-- Is_Concurrent_Record_Type (Flag20)
2096-- Present in record types and subtypes. Set if the type was created
2097-- by the expander to represent a task or protected type. For every
2098-- concurrent type, such as record type is constructed, and task and
2099-- protected objects are instances of this record type at runtime
2100-- (Gigi will replace declarations of the concurrent type using the
2101-- declarations of the corresponding record type). See package Exp_Ch9
2102-- for further details.
2103
2104-- Is_Concurrent_Type (synthesized)
ce0bead3
HK
2105-- Applies to all entities, true for task types and subtypes and for
2106-- protected types and subtypes.
70482933 2107
21d27997
RD
2108-- Is_Constant_Object (synthesized)
2109-- Applies to all entities, true for E_Constant, E_Loop_Parameter, and
2110-- E_In_Parameter entities.
2111
70482933
RK
2112-- Is_Constrained (Flag12)
2113-- Present in types or subtypes which may have index, discriminant
2114-- or range constraint (i.e. array types and subtypes, record types
2115-- and subtypes, string types and subtypes, and all numeric types).
2116-- Set if the type or subtype is constrained.
2117
2118-- Is_Constr_Subt_For_U_Nominal (Flag80)
2119-- Present in all types and subtypes. Set true only for the constructed
2120-- subtype of an object whose nominal subtype is unconstrained. Note
2121-- that the constructed subtype itself will be constrained.
2122
2123-- Is_Constr_Subt_For_UN_Aliased (Flag141)
fdce4bb7
JM
2124-- Present in all types and subtypes. This flag can be set only if
2125-- Is_Constr_Subt_For_U_Nominal is also set. It indicates that in
2126-- addition the object concerned is aliased. This flag is used by
2127-- Gigi to determine whether a template must be constructed.
70482933
RK
2128
2129-- Is_Constructor (Flag76)
2130-- Present in function and procedure entities. Set if a pragma
2131-- CPP_Constructor applies to the subprogram.
2132
2133-- Is_Controlled (Flag42) [base type only]
2134-- Present in all type entities. Indicates that the type is controlled,
2135-- i.e. is either a descendant of Ada.Finalization.Controlled or of
2136-- Ada.Finalization.Limited_Controlled.
2137
2138-- Is_Controlling_Formal (Flag97)
fdce4bb7 2139-- Present in all Formal_Kind entities. Marks the controlling parameters
70482933
RK
2140-- of dispatching operations.
2141
2142-- Is_CPP_Class (Flag74)
f937473f
RD
2143-- Present in all type entities, set only for tagged types to which a
2144-- valid pragma Import (CPP, ...) or pragma CPP_Class has been applied.
70482933
RK
2145
2146-- Is_Decimal_Fixed_Point_Type (synthesized)
2147-- Applies to all type entities, true for decimal fixed point
2148-- types and subtypes.
2149
d5e96bc6 2150-- Is_Descendent_Of_Address (Flag223)
fdce4bb7
JM
2151-- Present in all type and subtype entities. Indicates that a type is an
2152-- address type that is visibly a numeric type. Used for semantic checks
2153-- on VMS to remove ambiguities in universal integer expressions that may
2154-- have an address interpretation
d5e96bc6 2155
70482933
RK
2156-- Is_Discrete_Type (synthesized)
2157-- Applies to all entities, true for all discrete types and subtypes
2158
ddc1515a 2159-- Is_Discrete_Or_Fixed_Point_Type (synthesized)
70482933
RK
2160-- Applies to all entities, true for all discrete types and subtypes
2161-- and all fixed-point types and subtypes.
2162
2163-- Is_Discrim_SO_Function (Flag176)
fdce4bb7 2164-- Present in all entities. Set only in E_Function entities that Layout
70482933
RK
2165-- creates to compute discriminant-dependent dynamic size/offset values.
2166
21d27997
RD
2167-- Is_Discriminal (synthesized)
2168-- Applies to all entities, true for renamings of discriminants. Such
2169-- entities appear as constants or in parameters.
2170
2171-- Is_Dispatch_Table_Entity (Flag234)
2172-- Applies to all entities. Set to indicate to the backend that this
2173-- entity is associated with a dispatch table.
2174
70482933
RK
2175-- Is_Dispatching_Operation (Flag6)
2176-- Present in all entities. Set true for procedures, functions,
2177-- generic procedures and generic functions if the corresponding
2178-- operation is dispatching.
2179
2180-- Is_Dynamic_Scope (synthesized)
2181-- Applies to all Entities. Returns True if the entity is a dynamic
6e443c90
RD
2182-- scope (i.e. a block, subprogram, task_type, entry
2183-- or extended return statement).
70482933
RK
2184
2185-- Is_Elementary_Type (synthesized)
2186-- Applies to all entities, true for all elementary types and
2187-- subtypes. Either Is_Composite_Type or Is_Elementary_Type (but
2188-- not both) is true of any type.
2189
2190-- Is_Eliminated (Flag124)
2191-- Present in type entities, subprogram entities, and object entities.
2192-- Indicates that the corresponding entity has been eliminated by use
07fc65c4
GB
2193-- of pragma Eliminate. Also used to mark subprogram entities whose
2194-- declaration and body are within unreachable code that is removed.
70482933
RK
2195
2196-- Is_Enumeration_Type (synthesized)
2197-- Present in all entities, true for enumeration types and subtypes
2198
2199-- Is_Entry (synthesized)
2200-- Applies to all entities, True only for entry and entry family
2201-- entities and False for all other entity kinds.
2202
2203-- Is_Entry_Formal (Flag52)
2204-- Present in all entities. Set only for entry formals (which can
2205-- only be in, in-out or out parameters). This flag is used to speed
2206-- up the test for the need to replace references in Exp_Ch2.
2207
2208-- Is_Exported (Flag99)
2209-- Present in all entities. Set if the entity is exported. For now we
2210-- only allow the export of constants, exceptions, functions, procedures
2211-- and variables, but that may well change later on. Exceptions can only
2212-- be exported in the OpenVMS and Java VM implementations of GNAT.
2213
df3e68b1
HK
2214-- Is_Finalizer (synthesized)
2215-- Applies to all entities, true for procedures containing finalization
2216-- code to process local or library level objects.
2217
70482933
RK
2218-- Is_First_Subtype (Flag70)
2219-- Present in all entities. True for first subtypes (RM 3.2.1(6)),
2220-- i.e. the entity in the type declaration that introduced the type.
2221-- This may be the base type itself (e.g. for record declarations and
2222-- enumeration type declarations), or it may be the first subtype of
2223-- an anonymous base type (e.g. for integer type declarations or
2224-- constrained array declarations).
2225
2226-- Is_Fixed_Point_Type (synthesized)
2227-- Applies to all entities, true for decimal and ordinary fixed
2228-- point types and subtypes
2229
2230-- Is_Floating_Point_Type (synthesized)
2231-- Applies to all entities, true for float types and subtypes
2232
2233-- Is_Formal (synthesized)
2234-- Applies to all entities, true for IN, IN OUT and OUT parameters
2235
6e443c90
RD
2236-- Is_Formal_Object (synthesized)
2237-- Applies to all entities, true for generic IN and IN OUT parameters
2238
70482933 2239-- Is_Formal_Subprogram (Flag111)
fdce4bb7 2240-- Present in all entities. Set for generic formal subprograms.
70482933
RK
2241
2242-- Is_For_Access_Subtype (Flag118)
ce0bead3
HK
2243-- Present in E_Private_Subtype and E_Record_Subtype entities. Means the
2244-- sole purpose of the type is to be designated by an Access_Subtype and
2245-- hence should not be expanded into components because the type may not
2246-- have been found or frozen yet.
70482933
RK
2247
2248-- Is_Frozen (Flag4)
fdce4bb7
JM
2249-- Present in all type and subtype entities. Set if type or subtype has
2250-- been frozen.
70482933
RK
2251
2252-- Is_Generic_Actual_Type (Flag94)
fdce4bb7
JM
2253-- Present in all type and subtype entities. Set in the subtype
2254-- declaration that renames the generic formal as a subtype of the
2255-- actual. Guarantees that the subtype is not static within the instance.
70482933
RK
2256
2257-- Is_Generic_Instance (Flag130)
2258-- Present in all entities. Set to indicate that the entity is an
6e443c90
RD
2259-- instance of a generic unit, or a formal package (which is an instance
2260-- of the template).
70482933 2261
fbf5a39b
AC
2262-- Is_Generic_Subprogram (synthesized)
2263-- Applies to all entities. Yields True for a generic subprogram
2264-- (generic function, generic subprogram), False for all other entities.
2265
70482933 2266-- Is_Generic_Type (Flag13)
93c3fca7
AC
2267-- Present in all entities. Set for types which are generic formal types.
2268-- Such types have an Ekind that corresponds to their classification, so
2269-- the Ekind cannot be used to identify generic types.
70482933
RK
2270
2271-- Is_Generic_Unit (synthesized)
2272-- Applies to all entities. Yields True for a generic unit (generic
2273-- package, generic function, generic procedure), and False for all
2274-- other entities.
2275
2276-- Is_Hidden (Flag57)
2277-- Present in all entities. Set true for all entities declared in the
2278-- private part or body of a package. Also marks generic formals of a
2279-- formal package declared without a box. For library level entities,
b7d5e87b
AC
2280-- this flag is set if the entity is not publicly visible. This flag
2281-- is reset when compiling the body of the package where the entity
2282-- is declared, when compiling the private part or body of a public
2283-- child unit, and when compiling a private child unit (see Install_
2284-- Private_Declaration in sem_ch7).
70482933
RK
2285
2286-- Is_Hidden_Open_Scope (Flag171)
2287-- Present in all entities. Set true for a scope that contains the
2288-- instantiation of a child unit, and whose entities are not visible
2289-- during analysis of the instance.
2290
2291-- Is_Immediately_Visible (Flag7)
2292-- Present in all entities. Set if entity is immediately visible, i.e.
2293-- is defined in some currently open scope (RM 8.3(4)).
2294
2295-- Is_Imported (Flag24)
2296-- Present in all entities. Set if the entity is imported. For now we
2297-- only allow the import of exceptions, functions, procedures, packages.
2298-- and variables. Exceptions can only be imported in the OpenVMS and
2299-- Java VM implementations of GNAT. Packages and types can only be
2300-- imported in the Java VM implementation.
2301
2302-- Is_Incomplete_Or_Private_Type (synthesized)
2303-- Applies to all entities, true for private and incomplete types
2304
6e443c90
RD
2305-- Is_Incomplete_Type (synthesized)
2306-- Applies to all entities, true for incomplete types and subtypes
2307
70482933
RK
2308-- Is_Inlined (Flag11)
2309-- Present in all entities. Set for functions and procedures which are
2310-- to be inlined. For subprograms created during expansion, this flag
2311-- may be set directly by the expander to request inlining. Also set
2312-- for packages that contain inlined subprograms, whose bodies must be
2313-- be compiled. Is_Inlined is also set on generic subprograms and is
2314-- inherited by their instances. It is also set on the body entities
2315-- of inlined subprograms. See also Has_Pragma_Inline.
2316
2317-- Is_Instantiated (Flag126)
2318-- Present in generic packages and generic subprograms. Set if the unit
2319-- is instantiated from somewhere in the extended main source unit. This
2320-- flag is used to control warnings about the unit being uninstantiated.
2321-- Also set in a package that is used as an actual for a generic package
2322-- formal in an instantiation. Also set on a parent instance, in the
2323-- instantiation of a child, which is implicitly declared in the parent.
2324
2325-- Is_Integer_Type (synthesized)
2326-- Applies to all entities, true for integer types and subtypes
2327
a9d8907c 2328-- Is_Interface (Flag186)
fdce4bb7 2329-- Present in record types and subtypes. Set to indicate that the current
a9d8907c
JM
2330-- entity corresponds with an abstract interface. Because abstract
2331-- interfaces are conceptually a special kind of abstract tagged types
2332-- we represent them by means of tagged record types and subtypes
2333-- marked with this attribute. This allows us to reuse most of the
2334-- compiler support for abstract tagged types to implement interfaces
2335-- (Ada 2005: AI-251).
2336
70482933
RK
2337-- Is_Internal (Flag17)
2338-- Present in all entities. Set to indicate an entity created during
edd63e9b 2339-- semantic processing (e.g. an implicit type, or a temporary). The
ce0bead3
HK
2340-- current uses of this flag are:
2341--
2342-- 1) Internal entities (such as temporaries generated for the result
2343-- of an inlined function call or dummy variables generated for the
2344-- debugger). Set to indicate that they need not be initialized, even
2345-- when scalars are initialized or normalized;
2346--
2347-- 2) Predefined primitives of tagged types. Set to mark that they
2348-- have specific properties: first they are primitives even if they
2349-- are not defined in the type scope (the freezing point is not
2350-- necessarily in the same scope), and second the predefined equality
2351-- can be overridden by a user-defined equality, no body will be
2352-- generated in this case.
2353--
2354-- 3) Object declarations generated by the expander that are implicitly
2355-- imported or exported so that they can be marked in Sprint output.
2356--
ce2b6ba5
JM
2357-- 4) Internal entities in the list of primitives of tagged types that
2358-- are used to handle secondary dispatch tables. These entities have
2359-- also the attribute Interface_Alias.
383e179e 2360
70482933 2361-- Is_Interrupt_Handler (Flag89)
fbf5a39b
AC
2362-- Present in procedures. Set if a pragma Interrupt_Handler applies
2363-- to the procedure. The procedure must be parameterless, and on all
2364-- targets except AAMP it must be a protected procedure.
70482933
RK
2365
2366-- Is_Intrinsic_Subprogram (Flag64)
2367-- Present in functions and procedures. It is set if a valid pragma
2368-- Interface or Import is present for this subprogram specifying pragma
2369-- Intrinsic. Valid means that the name and profile of the subprogram
2370-- match the requirements of one of the recognized intrinsic subprograms
2371-- (see package Sem_Intr for details). Note: the value of Convention for
2372-- such an entity will be set to Convention_Intrinsic, but it is the
2373-- setting of Is_Intrinsic_Subprogram, NOT simply having convention set
2374-- to intrinsic, which causes intrinsic code to be generated.
2375
2376-- Is_Itype (Flag91)
fdce4bb7
JM
2377-- Present in all entities. Set to indicate that a type is an Itype,
2378-- which means that the declaration for the type does not appear
2379-- explicitly in the tree. Instead gigi will elaborate the type when it
2380-- is first used. Has_Delayed_Freeze can be set for Itypes, and the
2381-- meaning is that the first use (the one which causes the type to be
2382-- defined) will be the freeze node. Note that an important restriction
2383-- on Itypes is that the first use of such a type (the one that causes it
2384-- to be defined) must be in the same scope as the type.
70482933 2385
fbf5a39b
AC
2386-- Is_Known_Non_Null (Flag37)
2387-- Present in all entities. Relevant (and can be set True) only for
2388-- objects of an access type. It is set if the object is currently
2389-- known to have a non-null value (meaning that no access checks
8a36a0cc 2390-- are needed). The indication can for example come from assignment
ba673907 2391-- of an access parameter or an allocator whose value is known non-null.
fbf5a39b
AC
2392--
2393-- Note: this flag is set according to the sequential flow of the
2394-- program, watching the current value of the variable. However,
8a36a0cc 2395-- this processing can miss cases of changing the value of an aliased
fbf5a39b
AC
2396-- or constant object, so even if this flag is set, it should not
2397-- be believed if the variable is aliased or volatile. It would
2398-- be a little neater to avoid the flag being set in the first
2399-- place in such cases, but that's trickier, and there is only
2400-- one place that tests the value anyway.
2401--
2402-- The flag is dynamically set and reset as semantic analysis and
2403-- expansion proceeds. Its value is meaningless once the tree is
2404-- fully constructed, since it simply indicates the last state.
2405-- Thus this flag has no meaning to the back end.
2406
ba673907
JM
2407-- Is_Known_Null (Flag204)
2408-- Present in all entities. Relevant (and can be set True) only for
2409-- objects of an access type. It is set if the object is currently known
2410-- to have a null value (meaning that a dereference will surely raise
2411-- constraint error exception). The indication can come from an
2412-- assignment or object declaration.
2413--
2414-- The comments above about sequential flow and aliased and volatile for
2415-- the Is_Known_Non_Null flag apply equally to the Is_Known_Null flag.
2416
70482933
RK
2417-- Is_Known_Valid (Flag170)
2418-- Present in all entities. Relevant for types (and subtype) and
2419-- for objects (and enumeration literals) of a discrete type.
2420--
2421-- The purpose of this flag is to implement the requirement stated
2422-- in (RM 13.9.1(9-11)) which require that the use of possibly invalid
2423-- values may not cause programs to become erroneous. See the function
47cb314a 2424-- Checks.Expr_Known_Valid for further details. Note that the setting
70482933
RK
2425-- is conservative, in the sense that if the flag is set, it must be
2426-- right. If the flag is not set, nothing is known about the validity.
2427--
2428-- For enumeration literals, the flag is always set, since clearly
2429-- an enumeration literal represents a valid value. Range checks
2430-- where necessary will ensure that this valid value is appropriate.
2431--
2432-- For objects, the flag indicates the state of knowledge about the
2433-- current value of the object. This may be modified during expansion,
2434-- and thus the final value is not relevant to gigi.
2435--
2436-- For types and subtypes, the flag is set if all possible bit patterns
2437-- of length Object_Size (i.e. Esize of the type) represent valid values
2438-- of the type. In general for such tytpes, all values are valid, the
2439-- only exception being the case where an object of the type has an
2440-- explicit size that is greater than Object_Size.
2441--
2442-- For non-discrete objects, the setting of the Is_Known_Valid flag is
2443-- not defined, and is not relevant, since the considerations of the
2444-- requirement in (RM 13.9.1(9-11)) do not apply.
fbf5a39b
AC
2445--
2446-- The flag is dynamically set and reset as semantic analysis and
2447-- expansion proceeds. Its value is meaningless once the tree is
2448-- fully constructed, since it simply indicates the last state.
2449-- Thus this flag has no meaning to the back end.
70482933
RK
2450
2451-- Is_Limited_Composite (Flag106)
c0b11850
AC
2452-- Present in all entities. Set for composite types that have a limited
2453-- component. Used to enforce the rule that operations on the composite
2454-- type that depend on the full view of the component do not become
2455-- visible until the immediate scope of the composite type itself
2456-- (RM 7.3.1 (5)).
70482933 2457
f4d379b8 2458-- Is_Limited_Interface (Flag197)
0a36105d
JM
2459-- Present in record types and subtypes. True for interface types, if
2460-- interface is declared limited, task, protected, or synchronized, or
2461-- is derived from a limited interface.
f4d379b8 2462
70482933
RK
2463-- Is_Limited_Record (Flag25)
2464-- Present in all entities. Set to true for record (sub)types if the
2465-- record is declared to be limited. Note that this flag is not set
2466-- simply because some components of the record are limited.
2467
ce0bead3
HK
2468-- Is_Local_Anonymous_Access (Flag194)
2469-- Present in access types. Set for an anonymous access type to indicate
2470-- that the type is created for a record component with an access
d15f9422
AC
2471-- definition, an array component, or (pre-Ada2012) a stand-alone object.
2472-- Such anonymous types have an accessibility level equal to that of the
ce0bead3 2473-- declaration in which they appear, unlike the anonymous access types
d15f9422
AC
2474-- that are created for access parameters, access discriminants, and
2475-- (as of Ada2012) stand-alone objects.
ce0bead3 2476
70482933
RK
2477-- Is_Machine_Code_Subprogram (Flag137)
2478-- Present in subprogram entities. Set to indicate that the subprogram
2479-- is a machine code subprogram (i.e. its body includes at least one
2480-- code statement). Also indicates that all necessary semantic checks
fbf5a39b
AC
2481-- as required by RM 13.8(3) have been performed.
2482
2483-- Is_Modular_Integer_Type (synthesized)
2484-- Applies to all entities. True if entity is a modular integer type
70482933
RK
2485
2486-- Is_Non_Static_Subtype (Flag109)
fdce4bb7
JM
2487-- Present in all type and subtype entities. It is set in some (but not
2488-- all) cases in which a subtype is known to be non-static. Before this
2489-- flag was added, the computation of whether a subtype was static was
2490-- entirely synthesized, by looking at the bounds, and the immediate
2491-- subtype parent. However, this method does not work for some Itypes
2492-- that have no parent set (and the only way to find the immediate
70482933
RK
2493-- subtype parent is to go through the tree). For now, this flay is set
2494-- conservatively, i.e. if it is set then for sure the subtype is non-
2495-- static, but if it is not set, then the type may or may not be static.
fdce4bb7
JM
2496-- Thus the test for a static subtype is that this flag is clear AND that
2497-- the bounds are static AND that the parent subtype (if available to be
2498-- tested) is static. Eventually we should make sure this flag is always
2499-- set right, at which point, these comments can be removed, and the
2500-- tests for static subtypes greatly simplified.
70482933
RK
2501
2502-- Is_Null_Init_Proc (Flag178)
fbf5a39b 2503-- Present in procedure entities. Set for generated init proc procedures
70482933
RK
2504-- (used to initialize composite types), if the code for the procedure
2505-- is null (i.e. is a return and nothing else). Such null initialization
2506-- procedures are generated in case some client is compiled using the
2507-- Initialize_Scalars pragma, generating a call to this null procedure,
2508-- but there is no need to call such procedures within a compilation
2509-- unit, and this flag is used to suppress such calls.
2510
2511-- Is_Numeric_Type (synthesized)
2512-- Applies to all entities, true for all numeric types and subtypes
2513-- (integer, fixed, float).
2514
2515-- Is_Object (synthesized)
2516-- Applies to all entities, true for entities representing objects,
2517-- including generic formal parameters.
2518
82c80734 2519-- Is_Obsolescent (Flag153)
6e443c90
RD
2520-- Present in all entities. Set for any entity for which a valid pragma
2521-- Obsolescent applies.
82c80734 2522
ce0bead3
HK
2523-- Is_Only_Out_Parameter (Flag226)
2524-- Present in formal parameter entities. Set if this parameter is the
2525-- only OUT parameter for this formal part. If there is more than one
2526-- out parameter, or if there is some other IN OUT parameter then this
2527-- flag is not set in any of them. Used in generation of warnings.
2528
70482933
RK
2529-- Is_Optional_Parameter (Flag134)
2530-- Present in parameter entities. Set if the parameter is specified as
2531-- optional by use of a First_Optional_Parameter argument to one of the
2532-- extended Import pragmas. Can only be set for OpenVMS versions of GNAT.
2533
2534-- Is_Ordinary_Fixed_Point_Type (synthesized)
9d77af56
RD
2535-- Applies to all entities, true for ordinary fixed point types and
2536-- subtypes.
70482933 2537
f4d379b8 2538-- Is_Package_Or_Generic_Package (synthesized)
70482933
RK
2539-- Applies to all entities. True for packages and generic packages.
2540-- False for all other entities.
2541
2542-- Is_Package_Body_Entity (Flag160)
2543-- Present in all entities. Set for entities defined at the top level
2544-- of a package body. Used to control externally generated names.
2545
2546-- Is_Packed (Flag51) [implementation base type only]
2547-- Present in all type entities. This flag is set only for record and
2548-- array types which have a packed representation. There are three
2549-- cases which cause packing:
2550--
2551-- 1. Explicit use of pragma Pack for an array of package components
2552-- 2. Explicit use of pragma Pack to pack a record
2553-- 4. Setting Component_Size of an array to a bit-packable value
2554-- 3. Indexing an array with a non-standard enumeration type.
2555--
40f07b4b 2556-- For records, Is_Packed is always set if Has_Pragma_Pack is set,
70482933
RK
2557-- and can also be set on its own in a derived type which inherited
2558-- its packed status.
2559--
2560-- For arrays, Is_Packed is set if an array is bit packed (i.e. the
2561-- component size is known at compile time and is 1-7, 9-15 or 17-31),
2562-- or if the array has one or more index types that are enumeration
2563-- types with non-standard representations (in GNAT, we store such
2564-- arrays compactly, using the Pos of the enumeration type value).
2565--
2566-- As for the case of records, Is_Packed can be set on its own for a
2567-- derived type, with the same dual before/after freeze meaning.
2568-- Is_Packed can also be set as the result of an explicit component
2569-- size clause that specifies an appropriate component size.
2570--
2571-- In the bit packed array case, Is_Bit_Packed_Array will be set in
2572-- the bit packed case once the array type is frozen.
2573--
2574-- Before an array type is frozen, Is_Packed will always be set if
40f07b4b 2575-- Has_Pragma_Pack is set. Before the freeze point, it is not possible
70482933
RK
2576-- to know the component size, since the component type is not frozen
2577-- until the array type is frozen. Thus Is_Packed for an array type
2578-- before it is frozen means that packed is required. Then if it turns
2579-- out that the component size is not suitable for bit packing, the
2580-- Is_Packed flag gets turned off.
2581
2582-- Is_Packed_Array_Type (Flag138)
2583-- Present in all entities. This flag is set on the entity for the type
2584-- used to implement a packed array (either a modular type, or a subtype
2585-- of Packed_Bytes{1,2,4} as appropriate). The flag is set if and only
2586-- if the type appears in the Packed_Array_Type field of some other type
2587-- entity. It is used by Gigi to activate the special processing for such
2588-- types (unchecked conversions that would not otherwise be allowed are
07fc65c4
GB
2589-- allowed for such types). If the Is_Packed_Array_Type flag is set in
2590-- an entity, then the Original_Array_Type field of this entity points
2591-- to the original array type for which this is the packed array type.
70482933
RK
2592
2593-- Is_Potentially_Use_Visible (Flag9)
2594-- Present in all entities. Set if entity is potentially use visible,
2595-- i.e. it is defined in a package that appears in a currently active
2596-- use clause (RM 8.4(8)). Note that potentially use visible entities
2597-- are not necessarily use visible (RM 8.4(9-11)).
2598
2599-- Is_Preelaborated (Flag59)
2600-- Present in all entities, set in E_Package and E_Generic_Package
2601-- entities to which a pragma Preelaborate is applied, and also in
2602-- all entities within such packages. Note that the fact that this
2603-- flag is set does not necesarily mean that no elaboration code is
2604-- generated for the package.
2605
5d37ba92
ES
2606-- Is_Primitive (Flag218)
2607-- Present in overloadable entities and in generic subprograms. Set to
9d77af56
RD
2608-- indicate that this is a primitive operation of some type, which may
2609-- be a tagged type or a non-tagged type. Used to verify overriding
5d37ba92
ES
2610-- indicators in bodies.
2611
10b93b2e 2612-- Is_Primitive_Wrapper (Flag195)
d44202ba
HK
2613-- Present in functions and procedures created by the expander to serve
2614-- as an indirection mechanism to overriding primitives of concurrent
2615-- types, entries and protected procedures.
10b93b2e 2616
21d27997
RD
2617-- Is_Prival (synthesized)
2618-- Applies to all entities, true for renamings of private protected
2619-- components. Such entities appear as constants or variables.
2620
70482933
RK
2621-- Is_Private_Composite (Flag107)
2622-- Present in composite types that have a private component. Used to
2623-- enforce the rule that operations on the composite type that depend
d9e0a587 2624-- on the full view of the component, do not become visible until the
70482933
RK
2625-- immediate scope of the composite type itself (7.3.1 (5)). Both this
2626-- flag and Is_Limited_Composite are needed.
2627
2628-- Is_Private_Descendant (Flag53)
2629-- Present in entities that can represent library units (packages,
2630-- functions, procedures). Set if the library unit is itself a private
2631-- child unit, or if it is the descendent of a private child unit.
2632
d44202ba 2633-- Is_Private_Primitive (Flag245)
b7d5e87b
AC
2634-- Present in subprograms. Set if the operation is a primitive of a
2635-- tagged type (procedure or function dispatching on result) whose
2636-- full view has not been seen. Used in particular for primitive
2637-- subprograms of a synchronized type declared between the two views
2638-- of the type, so that the wrapper built for such a subprogram can
2639-- be given the proper signature.
d44202ba 2640
70482933
RK
2641-- Is_Private_Type (synthesized)
2642-- Applies to all entities, true for private types and subtypes,
2643-- as well as for record with private types as subtypes
2644
df3e68b1
HK
2645-- Is_Processed_Transient (Flag252)
2646-- Present in entities of variables and constants. Set when a transient
2647-- object needs to be finalized and it has already been processed by the
2648-- transient scope machinery. This flag signals the general finalization
2649-- mechanism to ignore the transient object.
2650
21d27997
RD
2651-- Is_Protected_Component (synthesized)
2652-- Applicable to all entities, true if the entity denotes a private
2653-- component of a protected type.
2654
9e9df9da 2655-- Is_Protected_Interface (synthesized)
f4d379b8
HK
2656-- Present in types that are interfaces. True if interface is declared
2657-- protected, or is derived from protected interfaces.
2658
70482933
RK
2659-- Is_Protected_Type (synthesized)
2660-- Applies to all entities, true for protected types and subtypes
2661
70482933
RK
2662-- Is_Public (Flag10)
2663-- Present in all entities. Set to indicate that an entity defined in
2664-- one compilation unit can be referenced from other compilation units.
2665-- If this reference causes a reference in the generated variable, for
2666-- example in the case of a variable name, then Gigi will generate an
2667-- appropriate external name for use by the linker.
2668
70482933
RK
2669-- Is_Protected_Record_Type (synthesized)
2670-- Applies to all entities, true if Is_Concurrent_Record_Type
2671-- Corresponding_Concurrent_Type is a protected type.
2672
2673-- Is_Pure (Flag44)
2674-- Present in all entities. Set in all entities of a unit to which a
2675-- pragma Pure is applied, and also set for the entity of the unit
2676-- itself. In addition, this flag may be set for any other functions
2677-- or procedures that are known to be side effect free, so in the case
2678-- of subprograms, the Is_Pure flag may be used by the optimizer to
2679-- imply that it can assume freedom from side effects (other than those
2680-- resulting from assignment to out parameters, or to objects designated
2681-- by access parameters).
2682
edd63e9b
ES
2683-- Is_Pure_Unit_Access_Type (Flag189)
2684-- Present in access type and subtype entities. Set if the type or
2685-- subtype appears in a pure unit. Used to give an error message at
2686-- freeze time if the access type has a storage pool.
2687
685094bf
RD
2688-- Is_RACW_Stub_Type (Flag244)
2689-- Present in all types, true for the stub types generated for remote
2690-- access-to-class-wide types.
2691
d5e96bc6 2692-- Is_Raised (Flag224)
21d27997
RD
2693-- Present in exception entities. Set if the entity is referenced by a
2694-- a raise statement.
d5e96bc6 2695
70482933
RK
2696-- Is_Real_Type (synthesized)
2697-- Applies to all entities, true for real types and subtypes
2698
2699-- Is_Record_Type (synthesized)
2700-- Applies to all entities, true for record types and subtypes,
2701-- includes class-wide types and subtypes (which are also records)
2702
2703-- Is_Remote_Call_Interface (Flag62)
fdce4bb7 2704-- Present in all entities. Set in E_Package and E_Generic_Package
30783513 2705-- entities to which a pragma Remote_Call_Interface is applied, and
685094bf 2706-- also on entities declared in the visible part of such a package.
70482933
RK
2707
2708-- Is_Remote_Types (Flag61)
fdce4bb7 2709-- Present in all entities. Set in E_Package and E_Generic_Package
685094bf
RD
2710-- entities to which a pragma Remote_Types is applied, and also on
2711-- entities declared in the visible part of the spec of such a package.
70482933
RK
2712
2713-- Is_Renaming_Of_Object (Flag112)
2714-- Present in all entities, set only for a variable or constant for
2715-- which the Renamed_Object field is non-empty and for which the
2716-- renaming is handled by the front end, by macro substitution of
2717-- a copy of the (evaluated) name tree whereever the variable is used.
2718
6e443c90 2719-- Is_Return_Object (Flag209)
fdce4bb7 2720-- Present in all object entities. True if the object is the return
6e443c90 2721-- object of an extended_return_statement; False otherwise.
70482933 2722
273adcdf
AC
2723-- Is_Safe_To_Reevaluate (Flag249)
2724-- Present in all entities. Set in variables that are initialized by
2725-- means of an assignment statement. When initialized their contents
2726-- never change and hence they can be seen by the backend as constants.
2727-- See also Is_True_Constant.
2728
70482933
RK
2729-- Is_Scalar_Type (synthesized)
2730-- Applies to all entities, true for scalar types and subtypes
2731
2732-- Is_Shared_Passive (Flag60)
fdce4bb7 2733-- Present in all entities. Set in E_Package and E_Generic_Package
70482933
RK
2734-- entities to which a pragma Shared_Passive is applied, and also in
2735-- all entities within such packages.
2736
21d27997
RD
2737-- Is_Standard_Character_Type (synthesized)
2738-- Applies to all entities, true for types and subtypes whose root type
2739-- is one of the standard character types (Character, Wide_Character,
2740-- Wide_Wide_Character).
2741
70482933
RK
2742-- Is_Statically_Allocated (Flag28)
2743-- Present in all entities. This can only be set True for exception,
2744-- variable, constant, and type/subtype entities. If the flag is set,
2745-- then the variable or constant must be allocated statically rather
2746-- than on the local stack frame. For exceptions, the meaning is that
2747-- the exception data should be allocated statically (and indeed this
2748-- flag is always set for exceptions, since exceptions do not have
2749-- local scope). For a type, the meaning is that the type must be
2750-- elaborated at the global level rather than locally. No type marked
2751-- with this flag may depend on a local variable, or on any other type
2752-- which does not also have this flag set to True. For a variable or
2753-- or constant, if the flag is set, then the type of the object must
2754-- either be declared at the library level, or it must also have the
e14c931f 2755-- flag set (since to allocate the object statically, its type must
70482933
RK
2756-- also be elaborated globally).
2757
70482933
RK
2758-- Is_String_Type (synthesized)
2759-- Applies to all type entities. Determines if the given type is a
2760-- string type, i.e. it is directly a string type or string subtype,
2761-- or a string slice type, or an array type with one dimension and a
2762-- component type that is a character type.
2763
21d27997
RD
2764-- Is_Subprogram (synthesized)
2765-- Applies to all entities, true for function, procedure and operator
2766-- entities.
2767
fa5aa835 2768-- Is_Synchronized_Interface (synthesized)
0a36105d
JM
2769-- Present in types that are interfaces. True if interface is declared
2770-- synchronized, task, or protected, or is derived from a synchronized
2771-- interface.
f4d379b8 2772
70482933 2773-- Is_Tag (Flag78)
ce0bead3 2774-- Present in E_Component and E_Constant entities. For regular tagged
21d27997
RD
2775-- type this flag is set on the tag component (whose name is Name_uTag).
2776-- For CPP_Class tagged types, this flag marks the pointer to the main
2777-- vtable (i.e. the one to be extended by derivation).
70482933
RK
2778
2779-- Is_Tagged_Type (Flag55)
fdce4bb7 2780-- Present in all entities. Set for an entity for a tagged type.
70482933 2781
9e9df9da 2782-- Is_Task_Interface (synthesized)
21d27997
RD
2783-- Present in types that are interfaces. True if interface is declared as
2784-- a task interface, or if it is derived from task interfaces.
f4d379b8 2785
70482933 2786-- Is_Task_Record_Type (synthesized)
fdce4bb7 2787-- Applies to all entities. True if Is_Concurrent_Record_Type
70482933
RK
2788-- Corresponding_Concurrent_Type is a task type.
2789
2790-- Is_Task_Type (synthesized)
fdce4bb7
JM
2791-- Applies to all entities. True for task types and subtypes
2792
2793-- Is_Thunk (Flag225)
0f282086
RD
2794-- Present in all entities for subprograms (functions, procedures, and
2795-- operators). True for subprograms that are thunks, that is small
2796-- subprograms built by the expander for tagged types that cover
2797-- interface types. At run-time thunks displace the pointer to the object
2798-- (pointer named "this" in the C++ terminology) from a secondary
2799-- dispatch table to the primary dispatch table associated with a given
2800-- tagged type. Set by Expand_Interface Thunk and used by Expand_Call to
2801-- handle extra actuals associated with accessibility level.
2802
2803-- Is_Trivial_Subprogram (Flag235)
2804-- Present in all entities. Set in subprograms where either the body
2805-- consists of a single null statement, or the first or only statement
2806-- of the body raises an exception. This is used for suppressing certain
2807-- warnings, see Sem_Ch6.Analyze_Subprogram_Body discussion for details.
70482933
RK
2808
2809-- Is_True_Constant (Flag163)
9d77af56
RD
2810-- Present in all entities for constants and variables. Set in constants
2811-- and variables which have an initial value specified but which are
2812-- never assigned, partially or in the whole. For variables, it means
2813-- that the variable was initialized but never modified, and hence can be
2814-- treated as a constant by the code generator. For a constant, it means
2815-- that the constant was not modified by generated code (e.g. to set a
2816-- discriminant in an init proc). Assignments by user or generated code
273adcdf 2817-- will reset this flag. See also Is_Safe_To_Reevaluate.
70482933
RK
2818
2819-- Is_Type (synthesized)
2820-- Applies to all entities, true for a type entity
2821
ba673907 2822-- Is_Unchecked_Union (Flag117) [implementation base type only]
70482933
RK
2823-- Present in all entities. Set only in record types to which the
2824-- pragma Unchecked_Union has been validly applied.
2825
9013065b
AC
2826-- Is_Underlying_Record_View (Flag246) [base type only]
2827-- Present in all entities. Set only in record types that represent the
2828-- underlying record view. This view is built for derivations of types
2829-- with unknown discriminants; it is a record with the same structure
5987e59c 2830-- as its corresponding record type, but whose parent is the full view
9013065b
AC
2831-- of the parent in the original type extension.
2832
70482933
RK
2833-- Is_Unsigned_Type (Flag144)
2834-- Present in all types, but can be set only for discrete and fixed-point
2835-- type and subtype entities. This flag is only valid if the entity is
2836-- frozen. If set it indicates that the representation is known to be
2837-- unsigned (i.e. that no negative values appear in the range). This is
2838-- normally just a reflection of the lower bound of the subtype or base
2839-- type, but there is one case in which the setting is non-obvious,
2840-- namely the case of an unsigned subtype of a signed type from which
2841-- a further subtype is obtained using variable bounds. This further
2842-- subtype is still unsigned, but this cannot be determined by looking
2843-- at its bounds or the bounds of the corresponding base type.
2844
2845-- Is_Valued_Procedure (Flag127)
2846-- Present in procedure entities. Set if an Import_Valued_Procedure
2847-- or Export_Valued_Procedure pragma applies to the procedure entity.
2848
2849-- Is_Visible_Child_Unit (Flag116)
2850-- Present in compilation units that are child units. Once compiled,
2851-- child units remain chained to the entities in the parent unit, and
2852-- a separate flag must be used to indicate whether the names are
2853-- visible by selected notation, or not.
2854
6e443c90
RD
2855-- Is_Visible_Formal (Flag206)
2856-- Present in all entities. Set for instances of the formals of a formal
2857-- package. Indicates that the entity must be made visible in the body
2858-- of the instance, to reproduce the visibility of the generic. This
2859-- simplifies visibility settings in instance bodies.
e14c931f 2860-- ??? confusion in above comments between being present and being set
6e443c90 2861
70482933
RK
2862-- Is_VMS_Exception (Flag133)
2863-- Present in all entities. Set only for exception entities where the
2864-- exception was specified in an Import_Exception or Export_Exception
2865-- pragma with the VMS option for Form. See description of these pragmas
2866-- for details. This flag can only be set in OpenVMS versions of GNAT.
2867
2868-- Is_Volatile (Flag16)
2869-- Present in all type entities, and also in constants, components and
2870-- variables. Set if a pragma Volatile applies to the entity. Also set
2871-- if pragma Shared or pragma Atomic applies to entity. In the case of
2872-- private or incomplete types, this flag is set in both the private
fbf5a39b
AC
2873-- and full view. The flag is not set reliably on private subtypes,
2874-- and is always retrieved from the base type (but this is not a base-
2875-- type-only attribute because it applies to other entities). Note that
2876-- the back end should use Treat_As_Volatile, rather than Is_Volatile
2877-- to indicate code generation requirements for volatile variables.
2878-- Similarly, any front end test which is concerned with suppressing
2879-- optimizations on volatile objects should test Treat_As_Volatile
2880-- rather than testing this flag.
70482933
RK
2881
2882-- Is_Wrapper_Package (synthesized)
2883-- Present in package entities. Indicates that the package has been
2884-- created as a wrapper for a subprogram instantiation.
2885
653da906 2886-- Itype_Printed (Flag202)
fdce4bb7
JM
2887-- Present in all type and subtype entities. Set in Itypes if the Itype
2888-- has been printed by Sprint. This is used to avoid printing an Itype
2889-- more than once.
653da906 2890
fbf5a39b
AC
2891-- Kill_Elaboration_Checks (Flag32)
2892-- Present in all entities. Set by the expander to kill elaboration
2893-- checks which are known not to be needed. Equivalent in effect to
e14c931f 2894-- the use of pragma Suppress (Elaboration_Checks) for that entity
fbf5a39b
AC
2895-- except that the effect is permanent and cannot be undone by a
2896-- subsequent pragma Unsuppress.
2897
2898-- Kill_Range_Checks (Flag33)
6e443c90 2899-- Present in all entities. Equivalent in effect to the use of pragma
e14c931f 2900-- Suppress (Range_Checks) for that entity except that the result is
6e443c90
RD
2901-- permanent and cannot be undone by a subsequent pragma Unsuppress.
2902-- This is currently only used in one odd situation in Sem_Ch3 for
2903-- record types, and it would be good to get rid of it???
fbf5a39b
AC
2904
2905-- Kill_Tag_Checks (Flag34)
2906-- Present in all entities. Set by the expander to kill elaboration
2907-- checks which are known not to be needed. Equivalent in effect to
e14c931f 2908-- the use of pragma Suppress (Tag_Checks) for that entity except
fbf5a39b
AC
2909-- that the result is permanent and cannot be undone by a subsequent
2910-- pragma Unsuppress.
2911
fdce4bb7
JM
2912-- Known_To_Have_Preelab_Init (Flag207)
2913-- Present in all type and subtype entities. If set, then the type is
2914-- known to have preelaborable initialization. In the case of a partial
2915-- view of a private type, it is only possible for this to be set if a
2916-- pragma Preelaborable_Initialization is given for the type. For other
2917-- types, it is never set if the type does not have preelaborable
2918-- initialization, it may or may not be set if the type does have
2919-- preelaborable initialization.
2920
67ce0d7e
RD
2921-- Last_Assignment (Node26)
2922-- Present in entities for variables, and OUT or IN OUT formals. Set for
2923-- a local variable or formal to point to the left side of an assignment
2924-- statement assigning a value to the variable. Cleared if the value of
2925-- the entity is referenced. Used to warn about dubious assignment
2926-- statements whose value is not used.
6e443c90 2927
70482933
RK
2928-- Last_Entity (Node20)
2929-- Present in all entities which act as scopes to which a list of
2930-- associated entities is attached (blocks, class subtypes and types,
2931-- entries, functions, loops, packages, procedures, protected objects,
2932-- record types and subtypes, private types, task types and subtypes).
e14c931f 2933-- Points to the last entry in the list of associated entities chained
70482933
RK
2934-- through the Next_Entity field. Empty if no entities are chained.
2935
ea7f928b
AC
2936-- Last_Formal (synthesized)
2937-- Applies to subprograms and subprogram types, and also in entries
2938-- and entry families. Returns last formal of the subprogram or entry.
2939-- The formals are the first entities declared in a subprogram or in
2940-- a subprogram type (the designated type of an Access_To_Subprogram
2941-- definition) or in an entry.
2942
0fb2ea01
AC
2943-- Limited_View (Node23)
2944-- Present in non-generic package entities that are not instances. Bona
2945-- fide package with the limited-view list through the first_entity and
2946-- first_private attributes. The elements of this list are the shadow
2947-- entities created for the types and local packages that are declared
0ab80019 2948-- in a package appearing in a limited_with clause (Ada 2005: AI-50217)
fbf5a39b 2949
70482933
RK
2950-- Lit_Indexes (Node15)
2951-- Present in enumeration types and subtypes. Non-empty only for the
2952-- case of an enumeration root type, where it contains the entity for
2953-- the generated indexes entity. See unit Exp_Imgv for full details of
e14c931f 2954-- the nature and use of this entity for implementing the Image and
70482933 2955-- Value attributes for the enumeration type in question.
383e179e 2956
70482933
RK
2957-- Lit_Strings (Node16)
2958-- Present in enumeration types and subtypes. Non-empty only for the
2959-- case of an enumeration root type, where it contains the entity for
2960-- the literals string entity. See unit Exp_Imgv for full details of
2961-- the nature and use of this entity for implementing the Image and
2962-- Value attributes for the enumeration type in question.
2963
fad0600d 2964-- Low_Bound_Tested (Flag205)
6e443c90
RD
2965-- Present in all entities. Currently this can only be set True for
2966-- formal parameter entries of a standard unconstrained one-dimensional
fad0600d
AC
2967-- array or string type. Indicates that an explicit test of the low bound
2968-- of the formal appeared in the code, e.g. in a pragma Assert. If this
2969-- flag is set, warnings about assuming the index low bound to be one
2970-- are suppressed.
6e443c90 2971
70482933 2972-- Machine_Radix_10 (Flag84)
e917aec2
RD
2973-- Present in decimal types and subtypes, set if the Machine_Radix is 10,
2974-- as the result of the specification of a machine radix representation
2975-- clause. Note that it is possible for this flag to be set without
2976-- having Has_Machine_Radix_Clause True. This happens when a type is
2977-- derived from a type with a clause present.
70482933
RK
2978
2979-- Master_Id (Node17)
2980-- Present in access types and subtypes. Empty unless Has_Task is
2981-- set for the designated type, in which case it points to the entity
f937473f
RD
2982-- for the Master_Id for the access type master. Also set for access-to-
2983-- limited-class-wide types whose root may be extended with task
2984-- components, and for access-to-limited-interfaces because they can be
2985-- used to reference tasks implementing such interface.
70482933
RK
2986
2987-- Materialize_Entity (Flag168)
e526d0c7
AC
2988-- Present in all entities. Set only for renamed obects which should be
2989-- materialized for debugging purposes. This means that a memory location
2990-- containing the renamed address should be allocated. This is needed so
2991-- that the debugger can find the entity.
70482933
RK
2992
2993-- Mechanism (Uint8) (returned as Mechanism_Type)
2994-- Present in functions and non-generic formal parameters. Indicates
2995-- the mechanism to be used for the function return or for the formal
07fc65c4
GB
2996-- parameter. See separate section on passing mechanisms. This field
2997-- is also set (to the default value of zero) in a subprogram body
2998-- entity but not used in this context.
70482933
RK
2999
3000-- Modulus (Uint17) [base type only]
e917aec2
RD
3001-- Present in modular types. Contains the modulus. For the binary case,
3002-- this will be a power of 2, but if Non_Binary_Modulus is set, then it
3003-- will not be a power of 2.
70482933 3004
0da2c8ac 3005-- Must_Be_On_Byte_Boundary (Flag183)
e917aec2
RD
3006-- Present in entities for types and subtypes. Set if objects of the type
3007-- must always be allocated on a byte boundary (more accurately a storage
3008-- unit boundary). The front end checks that component clauses respect
3009-- this rule, and the back end ensures that record packing does not
3010-- violate this rule. Currently the flag is set only for packed arrays
3011-- longer than 64 bits where the component size is not a power of 2.
0da2c8ac 3012
6e443c90
RD
3013-- Must_Have_Preelab_Init (Flag208)
3014-- Present in entities for types and subtypes. Set in the full type of a
3015-- private type or subtype if a pragma Has_Preelaborable_Initialization
3016-- is present for the private type. Used to check that the full type has
3017-- preelaborable initialization at freeze time (this has to be deferred
3018-- to the freeze point because of the rule about overriding Initialize).
3019
70482933 3020-- Needs_Debug_Info (Flag147)
0f282086
RD
3021-- Present in all entities. Set if the entity requires normal debugging
3022-- information to be generated. This is true of all entities that have
3023-- Comes_From_Source set, and also transitively for entities associated
3024-- with such components (e.g. their types). It is true for all entities
3025-- in Debug_Generated_Code mode (-gnatD switch). This is the flag that
3026-- the back end should check to determine whether or not to generate
3027-- debugging information for an entity. Note that callers should always
3028-- use Sem_Util.Set_Debug_Info_Needed, rather than Set_Needs_Debug_Info,
3029-- so that the flag is set properly on subsidiary entities.
70482933
RK
3030
3031-- Needs_No_Actuals (Flag22)
3032-- Present in callable entities (subprograms, entries, access to
3033-- subprograms) which can be called without actuals because all of
3034-- their formals (if any) have default values. This flag simplifies the
3035-- resolution of the syntactic ambiguity involving a call to these
3036-- entities when the return type is an array type, and a call can be
3037-- interpreted as an indexing of the result of the call. It is also
3038-- used to resolve various cases of entry calls.
383e179e 3039
fbf5a39b 3040-- Never_Set_In_Source (Flag115)
fdce4bb7 3041-- Present in all entities, but can be set only for variables and
5d37ba92
ES
3042-- parameters. This flag is set if the object is never assigned a value
3043-- in user source code, either by assignment or by being used as an out
3044-- or in out parameter. Note that this flag is not reset from using an
3045-- initial value, so if you want to test for this case as well, test the
3046-- Has_Initial_Value flag also.
3047--
70482933
RK
3048-- This flag is only for the purposes of issuing warnings, it must not
3049-- be used by the code generator to indicate that the variable is in
3050-- fact a constant, since some assignments in generated code do not
fbf5a39b
AC
3051-- count (for example, the call to an init proc to assign some but
3052-- not all of the fields in a partially initialized record). The code
70482933
RK
3053-- generator should instead use the flag Is_True_Constant.
3054--
fbf5a39b
AC
3055-- For the purposes of this warning, the default assignment of
3056-- access variables to null is not considered the assignment of
3057-- of a value (so the warning can be given for code that relies
3058-- on this initial null value, when no other value is ever set).
3059--
70482933
RK
3060-- In variables and out parameters, if this flag is set after full
3061-- processing of the corresponding declarative unit, it indicates that
3062-- the variable or parameter was never set, and a warning message can
3063-- be issued.
3064--
3065-- Note: this flag is initially set, and then cleared on encountering
3066-- any construct that might conceivably legitimately set the value.
3067-- Thus during the analysis of a declarative region and its associated
fbf5a39b
AC
3068-- statement sequence, the meaning of the flag is "not set yet", and
3069-- once this analysis is complete the flag means "never assigned".
70482933
RK
3070
3071-- Note: for variables appearing in package declarations, this flag
3072-- is never set. That is because there is no way to tell if some
3073-- client modifies the variable (or in the case of variables in the
3074-- private part, if some child unit modifies the variables).
3075
3076-- Note: in the case of renamed objects, the flag must be set in the
3077-- ultimate renamed object. Clients noting a possible modification
3078-- should use the Note_Possible_Modification procedure in Sem_Util
fbf5a39b 3079-- rather than Set_Never_Set_In_Source precisely to deal properly with
70482933
RK
3080-- the renaming possibility.
3081
3082-- Next_Component (synthesized)
f937473f
RD
3083-- Applies to record components. Returns the next component by following
3084-- the chain of declared entities until one is found which corresponds to
3085-- a component (Ekind is E_Component). Any internal types generated from
3086-- the subtype indications of the record components are skipped. Returns
3087-- Empty if no more components.
3088
3089-- Next_Component_Or_Discriminant (synthesized)
3090-- Similar to Next_Component, but includes components and discriminants
3091-- so the input can have either E_Component or E_Discriminant, and the
3092-- same is true for the result. Returns Empty if no more components or
3093-- discriminants in the record.
70482933
RK
3094
3095-- Next_Discriminant (synthesized)
3096-- Applies to discriminants returned by First/Next_Discriminant.
3097-- Returns the next language-defined (ie: perhaps non-girder)
3098-- discriminant by following the chain of declared entities as long as
3099-- the kind of the entity corresponds to a discriminant. Note that the
3100-- discriminants might be the only components of the record.
3101-- Returns Empty if there are no more.
3102
3103-- Next_Entity (Node2)
3104-- Present in all entities. The entities of a scope are chained, with
3105-- the head of the list being in the First_Entity field of the scope
3106-- entity. All entities use the Next_Entity field as a forward pointer
3107-- for this list, with Empty indicating the end of the list. Since this
3108-- field is in the base part of the entity, the access routines for this
3109-- field are in Sinfo.
3110
3111-- Next_Formal (synthesized)
3112-- Applies to the entity for a formal parameter. Returns the next
3113-- formal parameter of the subprogram or subprogram type. Returns
3114-- Empty if there are no more formals.
3115
3116-- Next_Formal_With_Extras (synthesized)
3117-- Applies to the entity for a formal parameter. Returns the next
3118-- formal parameter of the subprogram or subprogram type. Returns
3119-- Empty if there are no more formals. The list returned includes
3120-- all the extra formals (see description of Extra_Formal field)
3121
70482933
RK
3122-- Next_Index (synthesized)
3123-- Applies to array types and subtypes and to string types and
3124-- subtypes. Yields the next index. The first index is obtained by
3125-- using the First_Index attribute, and then subsequent indexes are
3126-- obtained by applying Next_Index to the previous index. Empty is
3127-- returned to indicate that there are no more indexes. Note that
3128-- unlike most attributes in this package, Next_Index applies to
3129-- nodes for the indexes, not to entities.
3130
3131-- Next_Inlined_Subprogram (Node12)
3132-- Present in subprograms. Used to chain inlined subprograms used in
3133-- the current compilation, in the order in which they must be compiled
3134-- by Gigi to insure that all inlinings are performed.
3135
3136-- Next_Literal (synthesized)
3137-- Applies to enumeration literals, returns the next literal, or
3138-- Empty if applied to the last literal. This is actually a synonym
3139-- for Next, but its use is preferred in this context.
3140
3141-- Non_Binary_Modulus (Flag58) [base type only]
685094bf
RD
3142-- Present in all subtype and type entities. Set for modular integer
3143-- types if the modulus value is other than a power of 2.
70482933 3144
fbf5a39b 3145-- Non_Limited_View (Node17)
19f0526a 3146-- Present in incomplete types that are the shadow entities created
0ab80019 3147-- when analyzing a limited_with_clause (Ada 2005: AI-50217). Points to
19f0526a 3148-- the defining entity in the original declaration.
fbf5a39b 3149
70482933
RK
3150-- Nonzero_Is_True (Flag162) [base type only]
3151-- Present in enumeration types. True if any non-zero value is to be
3152-- interpreted as true. Currently this is set true for derived Boolean
3153-- types which have a convention of C, C++ or Fortran.
3154
19fb051c
AC
3155-- No_Pool_Assigned (Flag131) [root type only]
3156-- Present in access types. Set if a storage size clause applies to the
3157-- variable with a static expression value of zero. This flag is used to
3158-- generate errors if any attempt is made to allocate or free an instance
3159-- of such an access type. This is set only in the root type, since
3160-- derived types must have the same pool.
70482933
RK
3161
3162-- No_Return (Flag113)
ba673907
JM
3163-- Present in all entities. Always false except in the case of procedures
3164-- and generic procedures for which a pragma No_Return is given.
70482933
RK
3165
3166-- Normalized_First_Bit (Uint8)
3167-- Present in components and discriminants. Indicates the normalized
3168-- value of First_Bit for the component, i.e. the offset within the
3169-- lowest addressed storage unit containing part or all of the field.
91b1417d 3170-- Set to No_Uint if no first bit position is assigned yet.
70482933 3171
fbf5a39b 3172-- Normalized_Position (Uint14)
70482933
RK
3173-- Present in components and discriminants. Indicates the normalized
3174-- value of Position for the component, i.e. the offset in storage
3175-- units from the start of the record to the lowest addressed storage
3176-- unit containing part or all of the field.
3177
3178-- Normalized_Position_Max (Uint10)
3179-- Present in components and discriminants. For almost all cases, this
3180-- is the same as Normalized_Position. The one exception is for the case
3181-- of a discriminated record containing one or more arrays whose length
3182-- depends on discriminants. In this case, the Normalized_Position_Max
3183-- field represents the maximum possible value of Normalized_Position
3184-- assuming min/max values for discriminant subscripts in all fields.
3185-- This is used by Layout in front end layout mode to properly computed
3186-- the maximum size such records (needed for allocation purposes when
3187-- there are default discriminants, and also for the 'Size value).
3188
8a6a52dc
AC
3189-- No_Strict_Aliasing (Flag136) [base type only]
3190-- Present in access types. Set to direct the back end to avoid any
3191-- optimizations based on an assumption about the aliasing status of
3192-- objects designated by the access type. For the case of the gcc
3193-- back end, the effect is as though all references to objects of
3194-- the type were compiled with -fno-strict-aliasing. This flag is
3195-- set if an unchecked conversion with the access type as a target
3196-- type occurs in the same source unit as the declaration of the
3197-- access type, or if an explicit pragma No_Strict_Aliasing applies.
3198
70482933
RK
3199-- Number_Dimensions (synthesized)
3200-- Applies to array types and subtypes. Returns the number of dimensions
3201-- of the array type or subtype as a value of type Pos.
3202
70482933
RK
3203-- Number_Entries (synthesized)
3204-- Applies to concurrent types. Returns the number of entries that are
3205-- declared within the task or protected definition for the type.
3206
3207-- Number_Formals (synthesized)
3208-- Applies to subprograms and subprogram types. Yields the number of
3209-- formals as a value of type Pos.
3210
d1f453b7
RD
3211-- OK_To_Rename (Flag247)
3212-- Present only in entities for variables. If this flag is set, it
3213-- means that if the entity is used as the initial value of an object
3214-- declaration, the object declaration can be safely converted into a
3215-- renaming to avoid an extra copy. This is set for variables which are
3216-- generated by the expander to hold the result of evaluating some
3217-- expression. Most notably, the local variables used to store the result
3218-- of concatenations are so marked (see Exp_Ch4.Expand_Concatenate). It
3219-- is only worth setting this flag for composites, since for primitive
3220-- types, it is cheaper to do the copy.
3221
3222-- OK_To_Reorder_Components (Flag239) [base type only]
3223-- Present in record types. Set if the back end is permitted to reorder
3224-- the components. If not set, the record must be layed out in the order
3225-- in which the components are declared textually. Currently this flag
3226-- can only be set by debug switches.
3227
21d27997
RD
3228-- Optimize_Alignment_Space (Flag241)
3229-- A flag present in type, subtype, variable, and constant entities. This
3230-- flag records that the type or object is to be layed out in a manner
3231-- consistent with Optimize_Alignment (Space) mode. The compiler and
3232-- binder ensure a consistent view of any given type or object. If pragma
3233-- Optimize_Alignment (Off) mode applies to the type/object, then neither
3234-- of the flags Optimize_Alignment_Space/Optimize_Alignment_Time is set.
3235
3236-- Optimize_Alignment_Time (Flag242)
3237-- A flag present in type, subtype, variable, and constant entities. This
3238-- flag records that the type or object is to be layed out in a manner
3239-- consistent with Optimize_Alignment (Time) mode. The compiler and
3240-- binder ensure a consistent view of any given type or object. If pragma
3241-- Optimize_Alignment (Off) mode applies to the type/object, then neither
3242-- of the flags Optimize_Alignment_Space/Optimize_Alignment_Time is set.
82c80734 3243
ded8909b 3244-- Original_Access_Type (Node26)
aa1e353a
AC
3245-- Present in E_Access_Subprogram_Type entities. Set only if the access
3246-- type was generated by the expander as part of processing an access
3247-- to protected subprogram type. Points to the access to protected
3248-- subprogram type.
3249
07fc65c4
GB
3250-- Original_Array_Type (Node21)
3251-- Present in modular types and array types and subtypes. Set only
3252-- if the Is_Packed_Array_Type flag is set, indicating that the type
3253-- is the implementation type for a packed array, and in this case it
3254-- points to the original array type for which this is the packed
3255-- array implementation type.
3256
70482933
RK
3257-- Original_Record_Component (Node22)
3258-- Present in components, including discriminants. The usage depends
3259-- on whether the record is a base type and whether it is tagged.
3260--
3261-- In base tagged types:
3262-- When the component is inherited in a record extension, it points
3263-- to the original component (the entity of the ancestor component
3264-- which is not itself inherited) otherwise it points to itself.
3265-- Gigi uses this attribute to implement the automatic dereference in
3266-- the extension and to apply the transformation:
3267--
3268-- Rec_Ext.Comp -> Rec_Ext.Parent. ... .Parent.Comp
3269--
3270-- In base non-tagged types:
3271-- Always points to itself except for non-girder discriminants, where
3272-- it points to the girder discriminant it renames.
3273--
3274-- In subtypes (tagged and untagged):
3275-- Points to the component in the base type.
3276
21d27997
RD
3277-- Overlays_Constant (Flag243)
3278-- Present in all entities. Set only for a variable for which there is
3279-- an address clause which causes the variable to overlay a constant.
3280
10b93b2e
HK
3281-- Overridden_Operation (Node26)
3282-- Present in subprograms. For overriding operations, points to the
6320f5e1
AC
3283-- user-defined parent subprogram that is being overridden. Note: this
3284-- attribute uses the same field as Static_Initialization. The latter
3285-- is only defined for internal initialization procedures, for which
3286-- Overridden_Operation is irrelevant. Thus this attribute must not be
3287-- set for init_procs.
10b93b2e 3288
f4d379b8
HK
3289-- Package_Instantiation (Node26)
3290-- Present in packages and generic packages. When present, this field
60370fb1 3291-- references an N_Generic_Instantiation node associated with an
f4d379b8
HK
3292-- instantiated package. In the case where the referenced node has
3293-- been rewritten to an N_Package_Specification, the instantiation
3294-- node is available from the Original_Node field of the package spec
3295-- node. This is currently not guaranteed to be set in all cases, but
3296-- when set, the field is used in Get_Package_Instantiation_Node as
3297-- one of the means of obtaining the instantiation node. Eventually
3298-- it should be set in all cases, including package entities associated
3299-- with formal packages. ???
3300
70482933
RK
3301-- Packed_Array_Type (Node23)
3302-- Present in array types and subtypes, including the string literal
3303-- subtype case, if the corresponding type is packed (either bit packed
ae65d635
AC
3304-- or packed to eliminate holes in non-contiguous enumeration type index
3305-- types). References the type used to represent the packed array, which
3306-- is either a modular type for short static arrays, or an array of
3307-- System.Unsigned. Note that in some situations (internal types, and
3308-- references to fields of variant records), it is not always possible
3309-- to construct this type in advance of its use. If Packed_Array_Type
3310-- is empty, then the necessary type is declared on the fly for each
3311-- reference to the array.
70482933
RK
3312
3313-- Parameter_Mode (synthesized)
3314-- Applies to formal parameter entities. This is a synonym for Ekind,
3315-- used when obtaining the formal kind of a formal parameter (the result
e14c931f 3316-- is one of E_[In/Out/In_Out]_Parameter)
70482933 3317
6fb4cdde
AC
3318-- Parent_Subtype (Node19) [base type only]
3319-- Present in E_Record_Type. Set only for derived tagged types, in which
3320-- case it points to the subtype of the parent type. This is the type
3321-- that is used as the Etype of the _parent field.
70482933 3322
7ca78bba
RD
3323-- Postcondition_Proc (Node8)
3324-- Present only in procedure entities, saves the entity of the generated
3325-- postcondition proc if one is present, otherwise is set to Empty. Used
3326-- to generate the call to this procedure in case the expander inserts
3327-- implicit return statements.
3328
b7f17b20
ES
3329-- PPC_Wrapper (Node25)
3330-- Present in entries and entry families. Set only if pre- or post-
3331-- conditions are present. The precondition_wrapper body is the original
3332-- entry call, decorated with the given precondition for the entry.
3333
ef2a63ba
JM
3334-- Primitive_Operations (synthesized)
3335-- Present in concurrent types, tagged record types and subtypes, tagged
fab2daeb
AC
3336-- private types and tagged incomplete types. For concurrent types whose
3337-- Corresponding_Record_Type (CRT) is available, returns the list of
3338-- Direct_Primitive_Operations of its CRT; otherwise returns No_Elist.
3339-- For all the other types returns the Direct_Primitive_Operations.
70482933 3340
4818e7b9 3341-- Predicate_Function (synthesized)
fd0ff1cf
RD
3342-- Present in all types. Set for types for which (Has_Predicates is True)
3343-- and for which a predicate procedure has been built that tests that the
4818e7b9
RD
3344-- specified predicates are True. Contains the entity for the function
3345-- which takes a single argument of the given type, and returns True if
3346-- the predicate holds and False if it does not.
fd0ff1cf
RD
3347--
3348-- Note: the reason this is marked as a synthesized attribute is that the
3349-- way this is stored is as an element of the Subprograms_For_Type field.
3350
21d27997
RD
3351-- Prival (Node17)
3352-- Present in private components of protected types. Refers to the entity
3353-- of the component renaming declaration generated inside protected
3354-- subprograms, entries or barrier functions.
3355
3356-- Prival_Link (Node20)
3357-- Present in constants and variables which rename private components of
3358-- protected types. Set to the original private component.
3359
70482933 3360-- Private_Dependents (Elist18)
ae65d635
AC
3361-- Present in private (sub)types. Records the subtypes of the private
3362-- type, derivations from it, and records and arrays with components
3363-- dependent on the type.
70482933 3364--
ae65d635
AC
3365-- The subtypes are traversed when installing and deinstalling (the full
3366-- view of) a private type in order to ensure correct view of the
3367-- subtypes.
70482933
RK
3368--
3369-- Used in similar fashion for incomplete types: holds list of subtypes
3370-- of these incomplete types that have discriminant constraints. The
3371-- full views of these subtypes are constructed when the full view of
3372-- the incomplete type is processed.
3373
3374-- In addition, if the incomplete type is the designated type in an
3375-- access definition for an access parameter, the operation may be
3376-- a dispatching primitive operation, which is only known when the full
3377-- declaration of the type is seen. Subprograms that have such an
3378-- access parameter are also placed in the list of private_dependents.
3379
70482933
RK
3380-- Private_View (Node22)
3381-- For each private type, three entities are allocated, the private view,
3382-- the full view, and the shadow entity. The shadow entity contains a
3383-- copy of the private view and is used for restoring the proper private
3384-- view after a region in which the full view is visible (and is copied
3385-- into the entity normally used for the private view during this period
3386-- of visibility). The Private_View field is self-referential when the
3387-- private view lives in its normal entity, but in the copy that is made
3388-- in the shadow entity, it points to the proper location in which to
3389-- restore the private view saved in the shadow.
3390
3391-- Protected_Formal (Node22)
3392-- Present in formal parameters (in, in out and out parameters). Used
3393-- only for formals of protected operations. References corresponding
3394-- formal parameter in the unprotected version of the operation that
3395-- is created during expansion.
3396
3397-- Protected_Body_Subprogram (Node11)
3398-- Present in protected operations. References the entity for the
3399-- subprogram which implements the body of the operation.
3400
21d27997
RD
3401-- Protection_Object (Node23)
3402-- Applies to protected entries, entry families and subprograms. Denotes
3403-- the entity which is used to rename the _object component of protected
3404-- types.
70482933
RK
3405
3406-- Reachable (Flag49)
3407-- Present in labels. The flag is set over the range of statements in
3408-- which a goto to that label is legal.
3409
3410-- Referenced (Flag156)
ce0bead3 3411-- Present in all entities. Set if the entity is referenced, except for
e14c931f 3412-- the case of an appearance of a simple variable that is not a renaming
ce0bead3 3413-- as the left side of an assignment in which case Referenced_As_LHS is
e14c931f 3414-- set instead, or a similar appearance as an out parameter actual, in
8d12c865 3415-- which case Referenced_As_Out_Parameter is set.
fbf5a39b 3416
5d37ba92 3417-- Referenced_As_LHS (Flag36):
fdce4bb7
JM
3418-- Present in all entities. This flag is set instead of Referenced if a
3419-- simple variable that is not a renaming appears as the left side of an
3420-- assignment. The reason we distinguish this kind of reference is that
3421-- we have a separate warning for variables that are only assigned and
3422-- never read.
70482933 3423
ce0bead3
HK
3424-- Referenced_As_Out_Parameter (Flag227):
3425-- Present in all entities. This flag is set instead of Referenced if a
3426-- simple variable that is not a renaming appears as an actual for an out
3427-- formal. The reason we distinguish this kind of reference is that
3428-- we have a separate warning for variables that are only assigned and
3429-- never read, and out parameters are a special case.
3430
70482933
RK
3431-- Register_Exception_Call (Node20)
3432-- Present in exception entities. When an exception is declared,
3433-- a call is expanded to Register_Exception. This field points to
3434-- the expanded N_Procedure_Call_Statement node for this call. It
3435-- is used for Import/Export_Exception processing to modify the
3436-- register call to make appropriate entries in the special tables
3437-- used for handling these pragmas at runtime.
3438
3439-- Related_Array_Object (Node19)
3440-- Present in array types and subtypes. Used only for the base type
3441-- and subtype created for an anonymous array object. Set to point
3442-- to the entity of the corresponding array object. Currently used
3443-- only for type-related error messages.
3444
a4941eec 3445-- Related_Expression (Node24)
cf49bd32
TQ
3446-- Present in variables and types. Set only for internally generated
3447-- entities, where it may be used to denote the source expression whose
3448-- elaboration created the variable declaration. If set, it is used
3449-- for generating clearer messages from CodePeer.
3450--
3451-- Shouldn't it also be used for the same purpose in errout? It seems
3452-- odd to have two mechanisms here???
a4941eec 3453
70482933
RK
3454-- Related_Instance (Node15)
3455-- Present in the wrapper packages created for subprogram instances.
3456-- The internal subprogram that implements the instance is inside the
3457-- wrapper package, but for debugging purposes its external symbol
3458-- must correspond to the name and scope of the related instance.
3459
cefce34c
JM
3460-- Related_Type (Node27)
3461-- Present in components, constants and variables. Set when there is an
3462-- associated dispatch table to point to entities containing primary or
3463-- secondary tags. Not set in the _tag component of record types.
0a36105d 3464
21d27997
RD
3465-- Relative_Deadline_Variable (Node26) [implementation base type only]
3466-- Present in task type entities. This flag is set if a valid and
3467-- effective pragma Relative_Deadline applies to the base type. Points
3468-- to the entity for a variable that is created to hold the value given
3469-- in a Relative_Deadline pragma for a task type.
3470
70482933 3471-- Renamed_Entity (Node18)
0a36105d
JM
3472-- Present in exceptions, packages, subprograms and generic units. Set
3473-- for entities that are defined by a renaming declaration. Denotes the
e14c931f 3474-- renamed entity, or transitively the ultimate renamed entity if
0a36105d 3475-- there is a chain of renaming declarations. Empty if no renaming.
70482933 3476
ce0bead3
HK
3477-- Renamed_In_Spec (Flag231)
3478
3479-- Present in package entities. If a package renaming occurs within
3480-- a package spec, then this flag is set on the renamed package. The
3481-- purpose is to prevent a warning about unused entities in the renamed
3482-- package. Such a warning would be inappropriate since clients of the
3483-- package can see the entities in the package via the renaming.
3484
70482933
RK
3485-- Renamed_Object (Node18)
3486-- Present in all objects (constants, variables, components, formal
5d37ba92
ES
3487-- parameters, generic formal parameters, and loop parameters).
3488-- ??? Present in discriminants?
3489-- Set non-Empty if the object was declared by a renaming declaration,
3490-- in which case it references the tree node for the name of the renamed
70482933
RK
3491-- object. This is only possible for the variable and constant cases.
3492-- For formal parameters, this field is used in the course of inline
3493-- expansion, to map the formals of a subprogram into the corresponding
fbf5a39b 3494-- actuals. For formals of a task entry, it denotes the local renaming
5d37ba92
ES
3495-- that replaces the actual within the accept statement. The field is
3496-- Empty otherwise (it is always empty for loop parameters).
70482933
RK
3497
3498-- Renaming_Map (Uint9)
3499-- Present in generic subprograms, generic packages, and their
3500-- instances. Also present in the instances of the corresponding
3501-- bodies. Denotes the renaming map (generic entities => instance
3502-- entities) used to construct the instance by givin an index into
3503-- the tables used to represent these maps. See Sem_Ch12 for further
3504-- details. The maps for package instances are also used when the
3505-- instance is the actual corresponding to a formal package.
3506
f937473f
RD
3507-- Requires_Overriding (Flag213)
3508-- Present in all subprograms and entries. Set for subprograms that
3509-- require overriding as defined by RM-2005-3.9.3(6/2). Note that this
3510-- is True only for implicitly declare subprograms; it is not set on the
3511-- parent type's subprogram. See also Is_Abstract_Subprogram.
3512
35a1c212 3513-- Return_Flag_Or_Transient_Decl (Node15)
df3e68b1
HK
3514-- Applies to variables and constants. Set for objects which act as the
3515-- return value of an extended return statement. The node contains the
3516-- entity of a locally declared flag which controls the finalization of
35a1c212
AC
3517-- the return object should the function fail. Also set for access-to-
3518-- controlled objects used to provide a hook to controlled transients
3519-- declared inside an Expression_With_Actions. The node contains the
3520-- object declaration of the controlled transient.
df3e68b1 3521
70482933
RK
3522-- Return_Present (Flag54)
3523-- Present in function and generic function entities. Set if the
3524-- function contains a return statement (used for error checking).
3525-- This flag can also be set in procedure and generic procedure
3526-- entities (for convenience in setting it), but is only tested
3527-- for the function case.
3528
6e443c90
RD
3529-- Return_Applies_To (Node8)
3530-- Present in E_Return_Statement. Points to the entity representing
3531-- the construct to which the return statement applies, as defined in
3532-- RM-6.5(4/2). Note that a (simple) return statement within an
3533-- extended_return_statement applies to the extended_return_statement,
3534-- even though it causes the whole function to return.
3535
70482933
RK
3536-- Returns_By_Ref (Flag90)
3537-- Present in function entities, to indicate that the function
ba673907 3538-- returns the result by reference, either because its return type is a
70482933
RK
3539-- by-reference-type or because it uses explicitly the secondary stack.
3540
07fc65c4 3541-- Reverse_Bit_Order (Flag164) [base type only]
8f66cda7
AC
3542-- Present in all record type entities. Set if entity has a Bit_Order
3543-- aspect (set by an aspect clause or attribute definition clause) that
3544-- has reversed the order of bits from the default value. When this flag
3545-- is set, a component clause must specify a set of bits entirely within
3546-- a single storage unit (Ada 95) or within a single machine scalar (see
3547-- Ada 2005 AI-133), or must occupy an integral number of storage units.
70482933
RK
3548
3549-- RM_Size (Uint13)
3550-- Present in all type and subtype entities. Contains the value of
3551-- type'Size as defined in the RM. See also the Esize field and
3552-- and the description on "Handling of Type'Size Values". A value
9596236a 3553-- of zero in this field for a non-discrete type means that
70482933
RK
3554-- the front end has not yet determined the size value. For the
3555-- case of a discrete type, this field is always set by the front
3556-- end and zero is a legitimate value for a type with one value.
3557
3558-- Root_Type (synthesized)
3559-- Applies to all type entities. For class-wide types, return the root
3560-- type of the class covered by the CW type, otherwise returns the
3561-- ultimate derivation ancestor of the given type. This function
3562-- preserves the view, i.e. the Root_Type of a partial view is the
e14c931f 3563-- partial view of the ultimate ancestor, the Root_Type of a full view
70482933
RK
3564-- is the full view of the ultimate ancestor. Note that this function
3565-- does not correspond exactly to the use of root type in the RM, since
3566-- in the RM root type applies to a class of types, not to a type.
3567
3568-- Scalar_Range (Node20)
3569-- Present in all scalar types (including modular types, where the
3570-- bounds are 0 .. modulus - 1). References a node in the tree that
3571-- contains the bounds for the range. Note that this information
3572-- could be obtained by rummaging around the tree, but it is more
3573-- convenient to have it immediately at hand in the entity. The
3574-- contents of Scalar_Range can either be an N_Subtype_Indication
3575-- node (with a constraint), or a Range node, but not a simple
3576-- subtype reference (a subtype is converted into a range).
3577
3578-- Scale_Value (Uint15)
3579-- Present in decimal fixed-point types and subtypes. Contains the scale
3580-- for the type (i.e. the value of type'Scale = the number of decimal
3581-- digits after the decimal point).
3582
3583-- Scope (Node3)
3584-- Present in all entities. Points to the entity for the scope (block,
3585-- loop, subprogram, package etc.) in which the entity is declared.
3586-- Since this field is in the base part of the entity node, the access
ba673907
JM
3587-- routines for this field are in Sinfo. Note that for a child package,
3588-- the Scope will be the parent package, and for a non-child package,
3589-- the Scope will be Standard.
70482933 3590
9d77af56 3591-- Scope_Depth (synthesized)
e2534738
AC
3592-- Applies to program units, blocks, concurrent types and entries, and
3593-- also to record types, i.e. to any entity that can appear on the scope
3594-- stack. Yields the scope depth value, which for those entities other
3595-- than records is simply the scope depth value, for record entities, it
3596-- is the Scope_Depth of the record scope.
70482933
RK
3597
3598-- Scope_Depth_Value (Uint22)
e2534738
AC
3599-- Present in program units, blocks, concurrent types, and entries.
3600-- Indicates the number of scopes that statically enclose the declaration
3601-- of the unit or type. Library units have a depth of zero. Note that
3602-- record types can act as scopes but do NOT have this field set (see
3603-- Scope_Depth above)
70482933
RK
3604
3605-- Scope_Depth_Set (synthesized)
3606-- Applies to a special predicate function that returns a Boolean value
e2534738
AC
3607-- indicating whether or not the Scope_Depth field has been set. It is
3608-- needed, since returns an invalid value in this case!
70482933
RK
3609
3610-- Sec_Stack_Needed_For_Return (Flag167)
15ce9ca2 3611-- Present in scope entities (blocks, functions, procedures, tasks,
e2534738
AC
3612-- entries). Set to True when secondary stack is used to hold the
3613-- returned value of a function and thus should not be released on
3614-- scope exit.
70482933
RK
3615
3616-- Shadow_Entities (List14)
3617-- Present in package and generic package entities. Points to a list
3618-- of entities that correspond to private types. For each private type
3619-- a shadow entity is created that holds a copy of the private view.
3620-- In regions of the program where the full views of these private
3621-- entities are visible, the full view is copied into the entity that
3622-- is normally used to hold the private view, but the shadow entity
3623-- copy is unchanged. The shadow entities are then used to restore the
3624-- original private views at the end of the region. This list is a
3625-- standard format list (i.e. First (Shadow_Entities) is the first
3626-- entry and subsequent entries are obtained using Next.
3627
685094bf 3628-- Shared_Var_Procs_Instance (Node22)
70482933 3629-- Present in variables. Set non-Empty only if Is_Shared_Passive is
685094bf
RD
3630-- set, in which case this is the entity for the associated instance of
3631-- System.Shared_Storage.Shared_Var_Procs. See Exp_Smem for full details.
70482933 3632
fbf5a39b 3633-- Size_Check_Code (Node19)
70482933 3634-- Present in constants and variables. Normally Empty. Set if code is
fbf5a39b 3635-- generated to check the size of the object. This field is used to
70482933
RK
3636-- suppress this code if a subsequent address clause is encountered.
3637
3638-- Size_Clause (synthesized)
3639-- Applies to all entities. If a size clause is present in the rep
3640-- item chain for an entity then the attribute definition clause node
3641-- for the size clause is returned. Otherwise Size_Clause returns Empty
3642-- if no item is present. Usually this is only meaningful if the flag
3643-- Has_Size_Clause is set. This is because when the representation item
3644-- chain is copied for a derived type, it can inherit a size clause that
3645-- is not applicable to the entity.
3646
3647-- Size_Depends_On_Discriminant (Flag177)
3648-- Present in all entities for types and subtypes. Indicates that the
3649-- size of the type depends on the value of one or more discriminants.
e3c4580e
EB
3650-- Currently, this flag is only set for arrays which have one or more
3651-- bounds depending on a discriminant value.
70482933
RK
3652
3653-- Size_Known_At_Compile_Time (Flag92)
3654-- Present in all entities for types and subtypes. Indicates that the
3655-- size of objects of the type is known at compile time. This flag is
3656-- used to optimize some generated code sequences, and also to enable
3657-- some error checks (e.g. disallowing component clauses on variable
21d27997 3658-- length objects). It is set conservatively (i.e. if it is True, the
70482933
RK
3659-- size is certainly known at compile time, if it is False, then the
3660-- size may or may not be known at compile time, but the code will
3661-- assume that it is not known).
3662
3663-- Small_Value (Ureal21)
3664-- Present in fixed point types. Points to the universal real for the
3665-- Small of the type, either as given in a representation clause, or
3666-- as computed (as a power of two) by the compiler.
3667
3668-- Spec_Entity (Node19)
3669-- Present in package body entities. Points to corresponding package
3670-- spec entity. Also present in subprogram body parameters in the
3671-- case where there is a separate spec, where this field references
3672-- the corresponding parameter entities in the spec.
3673
86200f66 3674-- Static_Predicate (List25)
26df19ce 3675-- Present in discrete types/subtypes with predicates (Has_Predicates
86200f66
RD
3676-- set True). Points to a list of expression and N_Range nodes that
3677-- represent the predicate in canonical form. The canonical form has
3678-- entries sorted in ascending order, with all duplicates eliminated,
3679-- and adjacent ranges coalesced, so that there is always a gap in the
3680-- values between successive entries. The entries in this list are
66150d01
AC
3681-- fully analyzed and typed with the base type of the subtype. Note
3682-- that all entries are static and have values within the subtype range.
26df19ce 3683
70482933
RK
3684-- Storage_Size_Variable (Node15) [implementation base type only]
3685-- Present in access types and task type entities. This flag is set
3686-- if a valid and effective pragma Storage_Size applies to the base
3687-- type. Points to the entity for a variable that is created to
3688-- hold the value given in a Storage_Size pragma for an access
3689-- collection or a task type. Note that in the access type case,
3690-- this field is present only in the root type (since derived types
3691-- share the same storage pool).
3692
0a36105d
JM
3693-- Static_Elaboration_Desired (Flag77)
3694-- Present in library-level packages. Set by the pragma of the same
3695-- name, to indicate that static initialization must be attempted for
3696-- all types declared in the package, and that a warning must be emitted
3697-- for those types to which static initialization is not available.
3698
3699-- Static_Initialization (Node26)
3700-- Present in initialization procedures for types whose objects can be
3701-- initialized statically. The value of this attribute is a positional
3702-- aggregate whose components are compile-time static values. Used
3703-- when available in object declarations to eliminate the call to the
6320f5e1
AC
3704-- initialization procedure, and to minimize elaboration code. Note:
3705-- This attribute uses the same field as Overridden_Operation, which is
3706-- irrelevant in init_procs.
0a36105d 3707
fbf5a39b
AC
3708-- Stored_Constraint (Elist23)
3709-- Present in entities that can have discriminants (concurrent types
3710-- subtypes, record types and subtypes, private types and subtypes,
3711-- limited private types and subtypes and incomplete types). Points
3712-- to an element list containing the expressions for each of the
3713-- stored discriminants for the record (sub)type.
3714
70482933
RK
3715-- Strict_Alignment (Flag145) [implementation base type only]
3716-- Present in all type entities. Indicates that some containing part
3717-- is either aliased or tagged. This prohibits packing the object
3718-- tighter than its natural size and alignment.
3719
3720-- String_Literal_Length (Uint16)
3721-- Present in string literal subtypes (which are created to correspond
3722-- to string literals in the program). Contains the length of the string
3723-- literal.
3724
3725-- String_Literal_Low_Bound (Node15)
3726-- Present in string literal subtypes (which are created to correspond
3727-- to string literals in the program). Contains an expression whose
3728-- value represents the low bound of the literal. This is a copy of
3729-- the low bound of the applicable index constraint if there is one,
3730-- or a copy of the low bound of the index base type if not.
3731
fd0ff1cf
RD
3732-- Subprograms_For_Type (Node29)
3733-- Present in all type entities, and in subprogram entities. This is used
3734-- to hold a list of subprogram entities for subprograms associated with
308e6f3a 3735-- the type, linked through the Subprogram_List field of the subprogram
fd0ff1cf
RD
3736-- entity. Basically this is a way of multiplexing the single field to
3737-- hold more than one entity (since we ran out of space in some type
3738-- entities). This is currently used for Invariant_Procedure and also
4818e7b9 3739-- for Predicate_Function, and clients will always use the latter two
fd0ff1cf
RD
3740-- names to access entries in this list.
3741
70482933 3742-- Suppress_Elaboration_Warnings (Flag148)
fdce4bb7 3743-- Present in all entities, can be set only for subprogram entities and
6e443c90
RD
3744-- for variables. If this flag is set then Sem_Elab will not generate
3745-- elaboration warnings for the subprogram or variable. Suppression of
3746-- such warnings is automatic for subprograms for which elaboration
3747-- checks are suppressed (without the need to set this flag), but the
3748-- flag is also set for various internal entities (such as init procs)
3749-- which are known not to generate any possible access before
3750-- elaboration, and it is set on variables when a warning is given to
3751-- avoid multiple elaboration warnings for the same variable.
70482933 3752
5b1e6aca
RD
3753-- Suppress_Initialization (Flag105)
3754-- Present in all type and subtype entities. If set for the base type,
3755-- then the generation of initialization procedures is suppressed for the
3756-- type. Any other implicit initialiation (e.g. from the use of pragma
3757-- Initialize_Scalars) is also suppressed if this flag is set either for
3758-- the subtype in question, or for the base type. Set by use of pragma
3759-- Suppress_Initialization and also for internal entities where we know
3760-- that no initialization is required. For example, enumeration image
3761-- table entities set it.
70482933 3762
70482933
RK
3763-- Suppress_Style_Checks (Flag165)
3764-- Present in all entities. Suppresses any style checks specifically
3765-- associated with the given entity if set.
3766
0a36105d
JM
3767-- Suppress_Value_Tracking_On_Call (Flag217)
3768-- Present in all entities. Set in a scope entity if value tracking is to
3769-- be suppressed on any call within the scope. Used when an access to a
3770-- local subprogram is computed, to deal with the possibility that this
3771-- value may be passed around, and if used, may clobber a local variable.
3772
6e443c90 3773-- Task_Body_Procedure (Node25)
cf49bd32
TQ
3774-- Present in task types and subtypes. Points to the entity for the task
3775-- task body procedure (as further described in Exp_Ch9, task bodies are
3776-- expanded into procedures). A convenient function to retrieve this
3777-- field is Sem_Util.Get_Task_Body_Procedure.
3778--
3779-- The last sentence is odd??? Why not have Task_Body_Procedure go to the
3780-- Underlying_Type of the Root_Type???
a9d8907c 3781
fbf5a39b
AC
3782-- Treat_As_Volatile (Flag41)
3783-- Present in all type entities, and also in constants, components and
3784-- variables. Set if this entity is to be treated as volatile for code
3785-- generation purposes. Always set if Is_Volatile is set, but can also
3786-- be set as a result of situations (such as address overlays) where
3787-- the front end wishes to force volatile handling to inhibit aliasing
3788-- optimization which might be legally ok, but is undesirable. Note
3789-- that the back end always tests this flag rather than Is_Volatile.
3790-- The front end tests Is_Volatile if it is concerned with legality
3791-- checks associated with declared volatile variables, but if the test
3792-- is for the purposes of suppressing optimizations, then the front
3793-- end should test Treat_As_Volatile rather than Is_Volatile.
21d27997
RD
3794--
3795-- Note: before testing Treat_As_Volatile, consider whether it would
3796-- be more appropriate to use Exp_Util.Is_Volatile_Reference instead,
3797-- which catches more cases of volatile references.
fbf5a39b 3798
70482933 3799-- Type_High_Bound (synthesized)
6e443c90
RD
3800-- Applies to scalar types. Returns the tree node (Node_Id) that contains
3801-- the high bound of a scalar type. The returned value is literal for a
3802-- base type, but may be an expression in the case of scalar type with
3803-- dynamic bounds. Note that in the case of a fixed point type, the high
3804-- bound is in units of small, and is an integer.
70482933
RK
3805
3806-- Type_Low_Bound (synthesized)
6e443c90
RD
3807-- Applies to scalar types. Returns the tree node (Node_Id) that contains
3808-- the low bound of a scalar type. The returned value is literal for a
3809-- base type, but may be an expression in the case of scalar type with
3810-- dynamic bounds. Note that in the case of a fixed point type, the low
3811-- bound is in units of small, and is an integer.
70482933
RK
3812
3813-- Underlying_Full_View (Node19)
3814-- Present in private subtypes that are the completion of other private
6e443c90
RD
3815-- types, or in private types that are derived from private subtypes. If
3816-- the full view of a private type T is derived from another private type
3817-- with discriminants Td, the full view of T is also private, and there
3818-- is no way to attach to it a further full view that would convey the
3819-- structure of T to the back end. The Underlying_Full_ View is an
3820-- attribute of the full view that is a subtype of Td with the same
3821-- constraint as the declaration for T. The declaration for this subtype
3822-- is built at the point of the declaration of T, either as completion,
3823-- or as a subtype declaration where the base type is private and has a
3824-- private completion. If Td is already constrained, then its full view
3825-- can serve directly as the full view of T.
70482933 3826
cf49bd32 3827-- Underlying_Record_View (Node28)
39f346aa 3828-- Present in record types. Set for record types that are extensions of
9013065b
AC
3829-- types with unknown discriminants, and also set for internally built
3830-- underlying record views to reference its original record type. Record
3831-- types that are extensions of types with unknown discriminants do not
3832-- have a completion, but they cannot be used without having some
3833-- discriminated view at hand. This view is a record type with the same
3834-- structure, whose parent type is the full view of the parent in the
3835-- original type extension.
39f346aa 3836
70482933 3837-- Underlying_Type (synthesized)
6e443c90
RD
3838-- Applies to all entities. This is the identity function except in the
3839-- case where it is applied to an incomplete or private type, in which
3840-- case it is the underlying type of the type declared by the completion,
3841-- or Empty if the completion has not yet been encountered and analyzed.
70482933 3842--
6e443c90
RD
3843-- Note: the reason this attribute applies to all entities, and not just
3844-- types, is to legitimize code where Underlying_Type is applied to an
3845-- entity which may or may not be a type, with the intent that if it is a
3846-- type, its underlying type is taken.
70482933 3847
0a36105d
JM
3848-- Universal_Aliasing (Flag216) [base type only]
3849-- Present in all type entities. Set to direct the back-end to avoid
3850-- any optimizations based on type-based alias analysis for this type.
3851-- Indicates that objects of this type can alias objects of any other
3852-- types, which guarantees that any objects can be referenced through
3853-- access types designating this type safely, whatever the actual type
3854-- of these objects. In other words, the effect is as though access
3855-- types designating this type were subject to No_Strict_Aliasing.
3856
70482933 3857-- Unset_Reference (Node16)
6e443c90
RD
3858-- Present in variables and out parameters. This is normally Empty. It
3859-- is set to point to an identifier that represents a reference to the
3860-- entity before any value has been set. Only the first such reference
3861-- is identified. This field is used to generate a warning message if
3862-- necessary (see Sem_Warn.Check_Unset_Reference).
70482933 3863
5d37ba92
ES
3864-- Used_As_Generic_Actual (Flag222)
3865-- Present in all entities, set if the entity is used as an argument to
3866-- a generic instantiation. Used to tune certain warning messages.
3867
70482933
RK
3868-- Uses_Sec_Stack (Flag95)
3869-- Present in scope entities (blocks,functions, procedures, tasks,
3870-- entries). Set to True when secondary stack is used in this scope and
3871-- must be released on exit unless Sec_Stack_Needed_For_Return is set.
3872
70482933
RK
3873-- Warnings_Off (Flag96)
3874-- Present in all entities. Set if a pragma Warnings (Off, entity-name)
3875-- is used to suppress warnings for a given entity. It is also used by
0f282086
RD
3876-- the compiler in some situations to kill spurious warnings. Note that
3877-- clients should generally not test this flag directly, but instead
3878-- use function Has_Warnings_Off.
3879
3880-- Warnings_Off_Used (Flag236)
3881-- Present in all entities. Can only be set if Warnings_Off is set. If
3882-- set indicates that a warning was suppressed by the Warnings_Off flag,
3883-- and Unmodified/Unreferenced would not have suppressed the warning.
3884
3885-- Warnings_Off_Used_Unmodified (Flag237)
3886-- Present in all entities. Can only be set if Warnings_Off is set and
3887-- Has_Pragma_Unmodified is not set. If set indicates that a warning was
3888-- suppressed by the Warnings_Off status but that pragma Unmodified
3889-- would also have suppressed the warning.
3890
3891-- Warnings_Off_Used_Unreferenced (Flag238)
3892-- Present in all entities. Can only be set if Warnings_Off is set and
3893-- Has_Pragma_Unreferenced is not set. If set indicates that a warning
3894-- was suppressed by the Warnings_Off status but that pragma Unreferenced
3895-- would also have suppressed the warning.
70482933 3896
10b93b2e
HK
3897-- Was_Hidden (Flag196)
3898-- Present in all entities. Used to save the value of the Is_Hidden
3899-- attribute when the limited-view is installed (Ada 2005: AI-217).
3900
3901-- Wrapped_Entity (Node27)
d44202ba 3902-- Present in functions and procedures which have been classified as
df3e68b1
HK
3903-- Is_Primitive_Wrapper. Set to the entity being wrapper.
3904
3905--------------------------------------
3906-- Delayed Freezing and Elaboration --
3907--------------------------------------
3908
3909-- The flag Has_Delayed_Freeze indicates that an entity carries an explicit
3910-- freeze node, which appears later in the expanded tree.
3911
3912-- a) The flag is used by the front-end to trigger expansion actions
3913-- which include the generation of that freeze node. Typically this happens at
3914-- the end of the current compilation unit, or before the first subprogram
3915-- body is encountered in the current unit. See files freeze and exp_ch13 for
3916-- details on the actions triggered by a freeze node, which include the
3917-- construction of initialization procedures and dispatch tables.
3918
3919-- b) The flag is used by the backend to defer elaboration of the entity until
3920-- its freeze node is seen. In the absence of an explicit freeze node, an
3921-- entity is frozen (and elaborated) at the point of declaration.
3922
3923-- For object declarations, the flag is set when an address clause for the
3924-- object is encountered. Legality checks on the address expression only
3925-- take place at the freeze point of the object.
3926
3927-- Most types have an explicit freeze node, because they cannot be elaborated
3928-- until all representation and operational items that apply to them have been
3929-- analyzed. Private types and incomplete types have the flag set as well, as
3930-- do task and protected types.
3931
3932-- Implicit base types created for type derivations, as well as classwide
3933-- types created for all tagged types, have the flag set.
3934
3935-- If a subprogram has an access parameter whose designated type is incomplete
3936-- the subprogram has the flag set.
10b93b2e 3937
70482933
RK
3938 ------------------
3939 -- Access Kinds --
3940 ------------------
3941
ce0bead3
HK
3942 -- The following entity kinds are introduced by the corresponding type
3943 -- definitions:
70482933 3944
af4b9434
AC
3945 -- E_Access_Type,
3946 -- E_General_Access_Type,
ce0bead3 3947 -- E_Access_Subprogram_Type,
af4b9434 3948 -- E_Anonymous_Access_Subprogram_Type,
ce0bead3 3949 -- E_Access_Protected_Subprogram_Type,
af4b9434
AC
3950 -- E_Anonymous_Access_Protected_Subprogram_Type
3951 -- E_Anonymous_Access_Type.
70482933 3952
ce0bead3
HK
3953 -- E_Access_Subtype is for an access subtype created by a subtype
3954 -- declaration.
3955
e57ab550
AC
3956 -- In addition, we define the kind E_Allocator_Type to label allocators.
3957 -- This is because special resolution rules apply to this construct.
3958 -- Eventually the constructs are labeled with the access type imposed by
3959 -- the context. Gigi should never see the type E_Allocator.
3960
3961 -- Similarly, the type E_Access_Attribute_Type is used as the initial kind
3962 -- associated with an access attribute. After resolution a specific access
3963 -- type will be established as determined by the context.
70482933
RK
3964
3965 -- Finally, the type Any_Access is used to label -null- during type
3966 -- resolution. Any_Access is also replaced by the context type after
3967 -- resolution.
3968
3969 --------------------------------
3970 -- Classification of Entities --
3971 --------------------------------
3972
3973 -- The classification of program entities which follows is a refinement of
3974 -- the list given in RM 3.1(1). E.g., separate entities denote subtypes of
3975 -- different type classes. Ada 95 entities include class wide types,
3976 -- protected types, subprogram types, generalized access types, generic
3977 -- formal derived types and generic formal packages.
3978
3979 -- The order chosen for these kinds allows us to classify related entities
3980 -- so that they are contiguous. As a result, they do not appear in the
3981 -- exact same order as their order of first appearance in the LRM (For
3982 -- example, private types are listed before packages). The contiguity
3983 -- allows us to define useful subtypes (see below) such as type entities,
3984 -- overloaded entities, etc.
3985
3986 -- Each entity (explicitly or implicitly declared) has a kind, which is
3987 -- a value of the following type:
3988
3989 type Entity_Kind is (
3990
3991 E_Void,
fab2daeb
AC
3992 -- The initial Ekind value for a newly created entity. Also used as the
3993 -- Ekind for Standard_Void_Type, a type entity in Standard used as a
3994 -- dummy type for the return type of a procedure (the reason we create
3995 -- this type is to share the circuits for performing overload resolution
3996 -- on calls).
70482933
RK
3997
3998 -------------
3999 -- Objects --
4000 -------------
4001
70482933
RK
4002 E_Component,
4003 -- Components of a record declaration, private declarations of
4004 -- protected objects.
4005
4006 E_Constant,
4007 -- Constants created by an object declaration with a constant keyword
4008
4009 E_Discriminant,
4010 -- A discriminant, created by the use of a discriminant in a type
4011 -- declaration.
4012
4013 E_Loop_Parameter,
4014 -- A loop parameter created by a for loop
4015
67ce0d7e
RD
4016 E_Variable,
4017 -- Variables created by an object declaration with no constant keyword
4018
70482933
RK
4019 ------------------------
4020 -- Parameter Entities --
4021 ------------------------
4022
4023 -- Parameters are also objects
4024
70482933
RK
4025 E_Out_Parameter,
4026 -- An out parameter of a subprogram or entry
4027
4028 E_In_Out_Parameter,
4029 -- An in-out parameter of a subprogram or entry
4030
67ce0d7e
RD
4031 E_In_Parameter,
4032 -- An in parameter of a subprogram or entry
4033
70482933
RK
4034 --------------------------------
4035 -- Generic Parameter Entities --
4036 --------------------------------
4037
4038 -- Generic parameters are also objects
4039
4040 E_Generic_In_Out_Parameter,
4041 -- A generic in out parameter, created by the use of a generic in out
4042 -- parameter in a generic declaration.
4043
4044 E_Generic_In_Parameter,
4045 -- A generic in parameter, created by the use of a generic in
4046 -- parameter in a generic declaration.
4047
4048 -------------------
4049 -- Named Numbers --
4050 -------------------
4051
4052 E_Named_Integer,
4053 -- Named numbers created by a number declaration with an integer value
4054
4055 E_Named_Real,
4056 -- Named numbers created by a number declaration with a real value
4057
4058 -----------------------
4059 -- Enumeration Types --
4060 -----------------------
4061
4062 E_Enumeration_Type,
4063 -- Enumeration types, created by an enumeration type declaration
4064
4065 E_Enumeration_Subtype,
4066 -- Enumeration subtypes, created by an explicit or implicit subtype
4067 -- declaration applied to an enumeration type or subtype.
4068
4069 -------------------
4070 -- Numeric Types --
4071 -------------------
4072
4073 E_Signed_Integer_Type,
4074 -- Signed integer type, used for the anonymous base type of the
4075 -- integer subtype created by an integer type declaration.
4076
4077 E_Signed_Integer_Subtype,
4078 -- Signed integer subtype, created by either an integer subtype or
4079 -- integer type declaration (in the latter case an integer type is
4080 -- created for the base type, and this is the first named subtype).
4081
4082 E_Modular_Integer_Type,
4083 -- Modular integer type, used for the anonymous base type of the
4084 -- integer subtype created by a modular integer type declaration.
4085
4086 E_Modular_Integer_Subtype,
4087 -- Modular integer subtype, created by either an modular subtype
4088 -- or modular type declaration (in the latter case a modular type
4089 -- is created for the base type, and this is the first named subtype).
4090
4091 E_Ordinary_Fixed_Point_Type,
4092 -- Ordinary fixed type, used for the anonymous base type of the
4093 -- fixed subtype created by an ordinary fixed point type declaration.
4094
4095 E_Ordinary_Fixed_Point_Subtype,
4096 -- Ordinary fixed point subtype, created by either an ordinary fixed
4097 -- point subtype or ordinary fixed point type declaration (in the
4098 -- latter case a fixed point type is created for the base type, and
4099 -- this is the first named subtype).
4100
4101 E_Decimal_Fixed_Point_Type,
4102 -- Decimal fixed type, used for the anonymous base type of the decimal
4103 -- fixed subtype created by an ordinary fixed point type declaration.
4104
4105 E_Decimal_Fixed_Point_Subtype,
4106 -- Decimal fixed point subtype, created by either a decimal fixed point
4107 -- subtype or decimal fixed point type declaration (in the latter case
4108 -- a fixed point type is created for the base type, and this is the
4109 -- first named subtype).
4110
4111 E_Floating_Point_Type,
4112 -- Floating point type, used for the anonymous base type of the
4113 -- floating point subtype created by a floating point type declaration.
4114
4115 E_Floating_Point_Subtype,
4116 -- Floating point subtype, created by either a floating point subtype
4117 -- or floating point type declaration (in the latter case a floating
4118 -- point type is created for the base type, and this is the first
4119 -- named subtype).
4120
4121 ------------------
4122 -- Access Types --
4123 ------------------
4124
4125 E_Access_Type,
4126 -- An access type created by an access type declaration with no all
4127 -- keyword present. Note that the predefined type Any_Access, which
4128 -- has E_Access_Type Ekind, is used to label NULL in the upwards pass
4129 -- of type analysis, to be replaced by the true access type in the
4130 -- downwards resolution pass.
4131
4132 E_Access_Subtype,
4133 -- An access subtype created by a subtype declaration for any access
4134 -- type (whether or not it is a general access type).
4135
4136 E_Access_Attribute_Type,
4137 -- An access type created for an access attribute (such as 'Access,
4138 -- 'Unrestricted_Access and Unchecked_Access)
4139
4140 E_Allocator_Type,
4141 -- A special internal type used to label allocators and attribute
4142 -- references using 'Access. This is needed because special resolution
4143 -- rules apply to these constructs. On the resolution pass, this type
4144 -- is always replaced by the actual access type, so Gigi should never
4145 -- see types with this Ekind.
4146
4147 E_General_Access_Type,
4148 -- An access type created by an access type declaration with the all
4149 -- keyword present.
4150
4151 E_Access_Subprogram_Type,
4152 -- An access to subprogram type, created by an access to subprogram
4153 -- declaration.
4154
f937473f
RD
4155 E_Anonymous_Access_Subprogram_Type,
4156 -- An anonymous access to subprogram type, created by an access to
5320014a
ST
4157 -- subprogram declaration, or generated for a current instance of
4158 -- a type name appearing within a component definition that has an
4159 -- anonymous access to subprogram type.
f937473f 4160
70482933
RK
4161 E_Access_Protected_Subprogram_Type,
4162 -- An access to a protected subprogram, created by the corresponding
4163 -- declaration. Values of such a type denote both a protected object
4164 -- and a protected operation within, and have different compile-time
4165 -- and run-time properties than other access to subprograms.
4166
af4b9434
AC
4167 E_Anonymous_Access_Protected_Subprogram_Type,
4168 -- An anonymous access to protected subprogram type, created by an
4169 -- access to subprogram declaration.
4170
70482933
RK
4171 E_Anonymous_Access_Type,
4172 -- An anonymous access type created by an access parameter or access
4173 -- discriminant.
4174
4175 ---------------------
4176 -- Composite Types --
4177 ---------------------
4178
4179 E_Array_Type,
4180 -- An array type created by an array type declaration. Includes all
4181 -- cases of arrays, except for string types.
4182
4183 E_Array_Subtype,
4184 -- An array subtype, created by an explicit array subtype declaration,
4185 -- or the use of an anonymous array subtype.
4186
4187 E_String_Type,
4188 -- A string type, i.e. an array type whose component type is a character
4189 -- type, and for which string literals can thus be written.
4190
4191 E_String_Subtype,
4192 -- A string subtype, created by an explicit subtype declaration for a
4193 -- string type, or the use of an anonymous subtype of a string type,
4194
4195 E_String_Literal_Subtype,
4196 -- A special string subtype, used only to describe the type of a string
4197 -- literal (will always be one dimensional, with literal bounds).
4198
4199 E_Class_Wide_Type,
4200 -- A class wide type, created by any tagged type declaration (i.e. if
4201 -- a tagged type is declared, the corresponding class type is always
4202 -- created, using this Ekind value).
4203
4204 E_Class_Wide_Subtype,
4205 -- A subtype of a class wide type, created by a subtype declaration
4206 -- used to declare a subtype of a class type.
4207
4208 E_Record_Type,
4209 -- A record type, created by a record type declaration
4210
4211 E_Record_Subtype,
10b93b2e 4212 -- A record subtype, created by a record subtype declaration
70482933
RK
4213
4214 E_Record_Type_With_Private,
5950a3ac
AC
4215 -- Used for types defined by a private extension declaration, and
4216 -- for tagged private types. Includes the fields for both private
4217 -- types and for record types (with the sole exception of
4218 -- Corresponding_Concurrent_Type which is obviously not needed).
4219 -- This entity is considered to be both a record type and
70482933
RK
4220 -- a private type.
4221
4222 E_Record_Subtype_With_Private,
10b93b2e 4223 -- A subtype of a type defined by a private extension declaration
70482933
RK
4224
4225 E_Private_Type,
5950a3ac
AC
4226 -- A private type, created by a private type declaration
4227 -- that has neither the keyword limited nor the keyword tagged.
70482933
RK
4228
4229 E_Private_Subtype,
4230 -- A subtype of a private type, created by a subtype declaration used
4231 -- to declare a subtype of a private type.
4232
4233 E_Limited_Private_Type,
4234 -- A limited private type, created by a private type declaration that
5950a3ac 4235 -- has the keyword limited, but not the keyword tagged.
70482933
RK
4236
4237 E_Limited_Private_Subtype,
4238 -- A subtype of a limited private type, created by a subtype declaration
4239 -- used to declare a subtype of a limited private type.
4240
4241 E_Incomplete_Type,
4242 -- An incomplete type, created by an incomplete type declaration
4243
6e443c90
RD
4244 E_Incomplete_Subtype,
4245 -- An incomplete subtype, created by a subtype declaration where the
4246 -- subtype mark denotes an incomplete type.
4247
70482933
RK
4248 E_Task_Type,
4249 -- A task type, created by a task type declaration. An entity with this
4250 -- Ekind is also created to describe the anonymous type of a task that
4251 -- is created by a single task declaration.
4252
4253 E_Task_Subtype,
4254 -- A subtype of a task type, created by a subtype declaration used to
4255 -- declare a subtype of a task type.
4256
4257 E_Protected_Type,
4258 -- A protected type, created by a protected type declaration. An entity
4259 -- with this Ekind is also created to describe the anonymous type of
4260 -- a protected object created by a single protected declaration.
4261
4262 E_Protected_Subtype,
4263 -- A subtype of a protected type, created by a subtype declaration used
4264 -- to declare a subtype of a protected type.
4265
4266 -----------------
4267 -- Other Types --
4268 -----------------
4269
4270 E_Exception_Type,
4271 -- The type of an exception created by an exception declaration
4272
4273 E_Subprogram_Type,
4274 -- This is the designated type of an Access_To_Subprogram. Has type
4275 -- and signature like a subprogram entity, so can appear in calls,
4276 -- which are resolved like regular calls, except that such an entity
4277 -- is not overloadable.
4278
4279 ---------------------------
4280 -- Overloadable Entities --
4281 ---------------------------
4282
4283 E_Enumeration_Literal,
4284 -- An enumeration literal, created by the use of the literal in an
4285 -- enumeration type definition.
4286
4287 E_Function,
4288 -- A function, created by a function declaration or a function body
4289 -- that acts as its own declaration.
4290
4291 E_Operator,
4292 -- A predefined operator, appearing in Standard, or an implicitly
4293 -- defined concatenation operator created whenever an array is
4294 -- declared. We do not make normal derived operators explicit in
4295 -- the tree, but the concatenation operators are made explicit.
4296
4297 E_Procedure,
4298 -- A procedure, created by a procedure declaration or a procedure
4299 -- body that acts as its own declaration.
4300
4301 E_Entry,
4302 -- An entry, created by an entry declaration in a task or protected
4303 -- object.
4304
4305 --------------------
4306 -- Other Entities --
4307 --------------------
4308
4309 E_Entry_Family,
4310 -- An entry family, created by an entry family declaration in a
4311 -- task or protected type definition.
4312
4313 E_Block,
4314 -- A block identifier, created by an explicit or implicit label on
4315 -- a block or declare statement.
4316
4317 E_Entry_Index_Parameter,
4318 -- An entry index parameter created by an entry index specification
4319 -- for the body of a protected entry family.
4320
4321 E_Exception,
4322 -- An exception created by an exception declaration. The exception
4323 -- itself uses E_Exception for the Ekind, the implicit type that is
4324 -- created to represent its type uses the Ekind E_Exception_Type.
4325
4326 E_Generic_Function,
4327 -- A generic function. This is the entity for a generic function
4328 -- created by a generic subprogram declaration.
4329
70482933
RK
4330 E_Generic_Procedure,
4331 -- A generic function. This is the entity for a generic procedure
4332 -- created by a generic subprogram declaration.
4333
fbf5a39b
AC
4334 E_Generic_Package,
4335 -- A generic package, this is the entity for a generic package created
4336 -- by a generic package declaration.
4337
70482933
RK
4338 E_Label,
4339 -- The defining entity for a label. Note that this is created by the
4340 -- implicit label declaration, not the occurrence of the label itself,
4341 -- which is simply a direct name referring to the label.
4342
4343 E_Loop,
4344 -- A loop identifier, created by an explicit or implicit label on a
4345 -- loop statement.
4346
6e443c90
RD
4347 E_Return_Statement,
4348 -- A dummy entity created for each return statement. Used to hold
4349 -- information about the return statement (what it applies to) and in
4350 -- rules checking. For example, a simple_return_statement that applies
4351 -- to an extended_return_statement cannot have an expression; this
4352 -- requires putting the E_Return_Statement entity for the
4353 -- extended_return_statement on the scope stack.
4354
70482933
RK
4355 E_Package,
4356 -- A package, created by a package declaration
4357
4358 E_Package_Body,
4359 -- A package body. This entity serves only limited functions, since
4360 -- most semantic analysis uses the package entity (E_Package). However
4361 -- there are some attributes that are significant for the body entity.
4362 -- For example, collection of exception handlers.
4363
4364 E_Protected_Object,
4365 -- A protected object, created by an object declaration that declares
4366 -- an object of a protected type.
4367
4368 E_Protected_Body,
4369 -- A protected body. This entity serves almost no function, since all
4370 -- semantic analysis uses the protected entity (E_Protected_Type)
4371
4372 E_Task_Body,
4373 -- A task body. This entity serves almost no function, since all
4374 -- semantic analysis uses the protected entity (E_Task_Type).
4375
4376 E_Subprogram_Body
4377 -- A subprogram body. Used when a subprogram has a separate declaration
4378 -- to represent the entity for the body. This entity serves almost no
4379 -- function, since all semantic analysis uses the subprogram entity
4380 -- for the declaration (E_Function or E_Procedure).
4381 );
4382
4383 for Entity_Kind'Size use 8;
4384 -- The data structures in Atree assume this!
4385
4386 --------------------------
4387 -- Subtype Declarations --
4388 --------------------------
4389
6e443c90
RD
4390 -- The above entities are arranged so that they can be conveniently grouped
4391 -- into subtype ranges. Note that for each of the xxx_Kind ranges defined
4392 -- below, there is a corresponding Is_xxx (or for types, Is_xxx_Type)
4393 -- predicate which is to be used in preference to direct range tests using
4394 -- the subtype name. However, the subtype names are available for direct
70482933
RK
4395 -- use, e.g. as choices in case statements.
4396
4397 subtype Access_Kind is Entity_Kind range
4398 E_Access_Type ..
4399 -- E_Access_Subtype
4400 -- E_Access_Attribute_Type
4401 -- E_Allocator_Type
4402 -- E_General_Access_Type
4403 -- E_Access_Subprogram_Type
af4b9434 4404 -- E_Anonymous_Access_Subprogram_Type
f937473f 4405 -- E_Access_Protected_Subprogram_Type
af4b9434 4406 -- E_Anonymous_Access_Protected_Subprogram_Type
70482933
RK
4407 E_Anonymous_Access_Type;
4408
975c6896 4409 subtype Access_Subprogram_Kind is Entity_Kind range
ce0bead3
HK
4410 E_Access_Subprogram_Type ..
4411 -- E_Anonymous_Access_Subprogram_Type
4412 -- E_Access_Protected_Subprogram_Type
4413 E_Anonymous_Access_Protected_Subprogram_Type;
4414
f937473f
RD
4415 subtype Access_Protected_Kind is Entity_Kind range
4416 E_Access_Protected_Subprogram_Type ..
4417 E_Anonymous_Access_Protected_Subprogram_Type;
4418
7a963087
RD
4419 subtype Aggregate_Kind is Entity_Kind range
4420 E_Array_Type ..
4421 -- E_Array_Subtype
4422 -- E_String_Type
4423 -- E_String_Subtype
4424 -- E_String_Literal_Subtype
4425 -- E_Class_Wide_Type
4426 -- E_Class_Wide_Subtype
4427 -- E_Record_Type
4428 E_Record_Subtype;
4429
70482933
RK
4430 subtype Array_Kind is Entity_Kind range
4431 E_Array_Type ..
4432 -- E_Array_Subtype
4433 -- E_String_Type
4434 -- E_String_Subtype
4435 E_String_Literal_Subtype;
4436
67ce0d7e
RD
4437 subtype Assignable_Kind is Entity_Kind range
4438 E_Variable ..
4439 -- E_Out_Parameter
4440 E_In_Out_Parameter;
4441
70482933
RK
4442 subtype Class_Wide_Kind is Entity_Kind range
4443 E_Class_Wide_Type ..
4444 E_Class_Wide_Subtype;
4445
4446 subtype Composite_Kind is Entity_Kind range
4447 E_Array_Type ..
4448 -- E_Array_Subtype
4449 -- E_String_Type
4450 -- E_String_Subtype
4451 -- E_String_Literal_Subtype
4452 -- E_Class_Wide_Type
4453 -- E_Class_Wide_Subtype
4454 -- E_Record_Type
4455 -- E_Record_Subtype
4456 -- E_Record_Type_With_Private
4457 -- E_Record_Subtype_With_Private
4458 -- E_Private_Type
4459 -- E_Private_Subtype
4460 -- E_Limited_Private_Type
4461 -- E_Limited_Private_Subtype
4462 -- E_Incomplete_Type
6e443c90 4463 -- E_Incomplete_Subtype
70482933
RK
4464 -- E_Task_Type
4465 -- E_Task_Subtype,
4466 -- E_Protected_Type,
4467 E_Protected_Subtype;
4468
4469 subtype Concurrent_Kind is Entity_Kind range
4470 E_Task_Type ..
4471 -- E_Task_Subtype,
4472 -- E_Protected_Type,
4473 E_Protected_Subtype;
4474
4475 subtype Concurrent_Body_Kind is Entity_Kind range
4476 E_Protected_Body ..
4477 E_Task_Body;
4478
4479 subtype Decimal_Fixed_Point_Kind is Entity_Kind range
4480 E_Decimal_Fixed_Point_Type ..
4481 E_Decimal_Fixed_Point_Subtype;
4482
4483 subtype Digits_Kind is Entity_Kind range
4484 E_Decimal_Fixed_Point_Type ..
4485 -- E_Decimal_Fixed_Point_Subtype
4486 -- E_Floating_Point_Type
4487 E_Floating_Point_Subtype;
4488
4489 subtype Discrete_Kind is Entity_Kind range
4490 E_Enumeration_Type ..
4491 -- E_Enumeration_Subtype
4492 -- E_Signed_Integer_Type
4493 -- E_Signed_Integer_Subtype
4494 -- E_Modular_Integer_Type
4495 E_Modular_Integer_Subtype;
4496
4497 subtype Discrete_Or_Fixed_Point_Kind is Entity_Kind range
4498 E_Enumeration_Type ..
4499 -- E_Enumeration_Subtype
4500 -- E_Signed_Integer_Type
4501 -- E_Signed_Integer_Subtype
4502 -- E_Modular_Integer_Type
4503 -- E_Modular_Integer_Subtype
4504 -- E_Ordinary_Fixed_Point_Type
4505 -- E_Ordinary_Fixed_Point_Subtype
4506 -- E_Decimal_Fixed_Point_Type
4507 E_Decimal_Fixed_Point_Subtype;
4508
4509 subtype Elementary_Kind is Entity_Kind range
4510 E_Enumeration_Type ..
4511 -- E_Enumeration_Subtype
4512 -- E_Signed_Integer_Type
4513 -- E_Signed_Integer_Subtype
4514 -- E_Modular_Integer_Type
4515 -- E_Modular_Integer_Subtype
4516 -- E_Ordinary_Fixed_Point_Type
4517 -- E_Ordinary_Fixed_Point_Subtype
4518 -- E_Decimal_Fixed_Point_Type
4519 -- E_Decimal_Fixed_Point_Subtype
4520 -- E_Floating_Point_Type
4521 -- E_Floating_Point_Subtype
4522 -- E_Access_Type
4523 -- E_Access_Subtype
4524 -- E_Access_Attribute_Type
4525 -- E_Allocator_Type
4526 -- E_General_Access_Type
4527 -- E_Access_Subprogram_Type
4528 -- E_Access_Protected_Subprogram_Type
af4b9434
AC
4529 -- E_Anonymous_Access_Subprogram_Type
4530 -- E_Anonymous_Access_Protected_Subprogram_Type
70482933
RK
4531 E_Anonymous_Access_Type;
4532
4533 subtype Enumeration_Kind is Entity_Kind range
4534 E_Enumeration_Type ..
4535 E_Enumeration_Subtype;
4536
4537 subtype Entry_Kind is Entity_Kind range
4538 E_Entry ..
4539 E_Entry_Family;
4540
4541 subtype Fixed_Point_Kind is Entity_Kind range
4542 E_Ordinary_Fixed_Point_Type ..
4543 -- E_Ordinary_Fixed_Point_Subtype
4544 -- E_Decimal_Fixed_Point_Type
4545 E_Decimal_Fixed_Point_Subtype;
4546
4547 subtype Float_Kind is Entity_Kind range
4548 E_Floating_Point_Type ..
4549 E_Floating_Point_Subtype;
4550
4551 subtype Formal_Kind is Entity_Kind range
67ce0d7e
RD
4552 E_Out_Parameter ..
4553 -- E_In_Out_Parameter
4554 E_In_Parameter;
6e443c90
RD
4555
4556 subtype Formal_Object_Kind is Entity_Kind range
4557 E_Generic_In_Out_Parameter ..
4558 E_Generic_In_Parameter;
70482933 4559
fbf5a39b 4560 subtype Generic_Subprogram_Kind is Entity_Kind range
70482933 4561 E_Generic_Function ..
70482933
RK
4562 E_Generic_Procedure;
4563
fbf5a39b
AC
4564 subtype Generic_Unit_Kind is Entity_Kind range
4565 E_Generic_Function ..
4566 -- E_Generic_Procedure
4567 E_Generic_Package;
4568
6e443c90
RD
4569 subtype Incomplete_Kind is Entity_Kind range
4570 E_Incomplete_Type ..
4571 E_Incomplete_Subtype;
4572
70482933
RK
4573 subtype Incomplete_Or_Private_Kind is Entity_Kind range
4574 E_Record_Type_With_Private ..
4575 -- E_Record_Subtype_With_Private
4576 -- E_Private_Type
4577 -- E_Private_Subtype
4578 -- E_Limited_Private_Type
4579 -- E_Limited_Private_Subtype
6e443c90
RD
4580 -- E_Incomplete_Type
4581 E_Incomplete_Subtype;
70482933
RK
4582
4583 subtype Integer_Kind is Entity_Kind range
4584 E_Signed_Integer_Type ..
4585 -- E_Signed_Integer_Subtype
4586 -- E_Modular_Integer_Type
4587 E_Modular_Integer_Subtype;
4588
4589 subtype Modular_Integer_Kind is Entity_Kind range
4590 E_Modular_Integer_Type ..
4591 E_Modular_Integer_Subtype;
4592
4593 subtype Named_Kind is Entity_Kind range
4594 E_Named_Integer ..
4595 E_Named_Real;
4596
4597 subtype Numeric_Kind is Entity_Kind range
4598 E_Signed_Integer_Type ..
4599 -- E_Signed_Integer_Subtype
4600 -- E_Modular_Integer_Type
4601 -- E_Modular_Integer_Subtype
4602 -- E_Ordinary_Fixed_Point_Type
4603 -- E_Ordinary_Fixed_Point_Subtype
4604 -- E_Decimal_Fixed_Point_Type
4605 -- E_Decimal_Fixed_Point_Subtype
4606 -- E_Floating_Point_Type
4607 E_Floating_Point_Subtype;
4608
975c6896 4609 subtype Object_Kind is Entity_Kind range
67ce0d7e 4610 E_Component ..
70482933
RK
4611 -- E_Constant
4612 -- E_Discriminant
4613 -- E_Loop_Parameter
67ce0d7e 4614 -- E_Variable
70482933
RK
4615 -- E_Out_Parameter
4616 -- E_In_Out_Parameter
67ce0d7e 4617 -- E_In_Parameter
70482933
RK
4618 -- E_Generic_In_Out_Parameter
4619 E_Generic_In_Parameter;
4620
4621 subtype Ordinary_Fixed_Point_Kind is Entity_Kind range
4622 E_Ordinary_Fixed_Point_Type ..
4623 E_Ordinary_Fixed_Point_Subtype;
4624
4625 subtype Overloadable_Kind is Entity_Kind range
4626 E_Enumeration_Literal ..
4627 -- E_Function
4628 -- E_Operator
4629 -- E_Procedure
4630 E_Entry;
4631
4632 subtype Private_Kind is Entity_Kind range
4633 E_Record_Type_With_Private ..
4634 -- E_Record_Subtype_With_Private
4635 -- E_Private_Type
4636 -- E_Private_Subtype
4637 -- E_Limited_Private_Type
4638 E_Limited_Private_Subtype;
4639
4640 subtype Protected_Kind is Entity_Kind range
4641 E_Protected_Type ..
4642 E_Protected_Subtype;
4643
4644 subtype Real_Kind is Entity_Kind range
4645 E_Ordinary_Fixed_Point_Type ..
4646 -- E_Ordinary_Fixed_Point_Subtype
4647 -- E_Decimal_Fixed_Point_Type
4648 -- E_Decimal_Fixed_Point_Subtype
4649 -- E_Floating_Point_Type
4650 E_Floating_Point_Subtype;
4651
4652 subtype Record_Kind is Entity_Kind range
4653 E_Class_Wide_Type ..
4654 -- E_Class_Wide_Subtype
4655 -- E_Record_Type
4656 -- E_Record_Subtype
4657 -- E_Record_Type_With_Private
4658 E_Record_Subtype_With_Private;
4659
4660 subtype Scalar_Kind is Entity_Kind range
4661 E_Enumeration_Type ..
4662 -- E_Enumeration_Subtype
4663 -- E_Signed_Integer_Type
4664 -- E_Signed_Integer_Subtype
4665 -- E_Modular_Integer_Type
4666 -- E_Modular_Integer_Subtype
4667 -- E_Ordinary_Fixed_Point_Type
4668 -- E_Ordinary_Fixed_Point_Subtype
4669 -- E_Decimal_Fixed_Point_Type
4670 -- E_Decimal_Fixed_Point_Subtype
4671 -- E_Floating_Point_Type
4672 E_Floating_Point_Subtype;
4673
4674 subtype String_Kind is Entity_Kind range
4675 E_String_Type ..
4676 -- E_String_Subtype
4677 E_String_Literal_Subtype;
4678
4679 subtype Subprogram_Kind is Entity_Kind range
4680 E_Function ..
4681 -- E_Operator
4682 E_Procedure;
4683
4684 subtype Signed_Integer_Kind is Entity_Kind range
4685 E_Signed_Integer_Type ..
4686 E_Signed_Integer_Subtype;
4687
4688 subtype Task_Kind is Entity_Kind range
4689 E_Task_Type ..
4690 E_Task_Subtype;
4691
4692 subtype Type_Kind is Entity_Kind range
4693 E_Enumeration_Type ..
4694 -- E_Enumeration_Subtype
4695 -- E_Signed_Integer_Type
4696 -- E_Signed_Integer_Subtype
4697 -- E_Modular_Integer_Type
4698 -- E_Modular_Integer_Subtype
4699 -- E_Ordinary_Fixed_Point_Type
4700 -- E_Ordinary_Fixed_Point_Subtype
4701 -- E_Decimal_Fixed_Point_Type
4702 -- E_Decimal_Fixed_Point_Subtype
4703 -- E_Floating_Point_Type
4704 -- E_Floating_Point_Subtype
4705 -- E_Access_Type
4706 -- E_Access_Subtype
4707 -- E_Access_Attribute_Type
4708 -- E_Allocator_Type,
4709 -- E_General_Access_Type
4710 -- E_Access_Subprogram_Type,
4711 -- E_Access_Protected_Subprogram_Type
af4b9434
AC
4712 -- E_Anonymous_Access_Subprogram_Type
4713 -- E_Anonymous_Access_Protected_Subprogram_Type
70482933
RK
4714 -- E_Anonymous_Access_Type
4715 -- E_Array_Type
4716 -- E_Array_Subtype
4717 -- E_String_Type
4718 -- E_String_Subtype
4719 -- E_String_Literal_Subtype
4720 -- E_Class_Wide_Subtype
4721 -- E_Class_Wide_Type
4722 -- E_Record_Type
4723 -- E_Record_Subtype
4724 -- E_Record_Type_With_Private
4725 -- E_Record_Subtype_With_Private
4726 -- E_Private_Type
4727 -- E_Private_Subtype
4728 -- E_Limited_Private_Type
4729 -- E_Limited_Private_Subtype
4730 -- E_Incomplete_Type
6e443c90 4731 -- E_Incomplete_Subtype
70482933
RK
4732 -- E_Task_Type
4733 -- E_Task_Subtype
4734 -- E_Protected_Type
4735 -- E_Protected_Subtype
4736 -- E_Exception_Type
4737 E_Subprogram_Type;
4738
4739 --------------------------------------------------------
4740 -- Description of Defined Attributes for Entity_Kinds --
4741 --------------------------------------------------------
4742
4743 -- For each enumeration value defined in Entity_Kind we list all the
4744 -- attributes defined in Einfo which can legally be applied to an entity
4745 -- of that kind. The implementation of the attribute functions (and for
e14c931f 4746 -- non-synthesized attributes, of the corresponding set procedures) are
70482933
RK
4747 -- in the Einfo body.
4748
4749 -- The following attributes apply to all entities
4750
f937473f
RD
4751 -- Ekind (Ekind)
4752
4753 -- Chars (Name1)
4754 -- Next_Entity (Node2)
4755 -- Scope (Node3)
4756 -- Homonym (Node4)
4757 -- Etype (Node5)
4758 -- First_Rep_Item (Node6)
4759 -- Freeze_Node (Node7)
f937473f
RD
4760
4761 -- Address_Taken (Flag104)
4762 -- Can_Never_Be_Null (Flag38)
4763 -- Checks_May_Be_Suppressed (Flag31)
4764 -- Debug_Info_Off (Flag166)
4765 -- Has_Anon_Block_Suffix (Flag201)
f937473f 4766 -- Has_Convention_Pragma (Flag119)
c159409f 4767 -- Has_Delayed_Aspects (Flag200)
f937473f
RD
4768 -- Has_Delayed_Freeze (Flag18)
4769 -- Has_Fully_Qualified_Name (Flag173)
4770 -- Has_Gigi_Rep_Item (Flag82)
4771 -- Has_Homonym (Flag56)
4772 -- Has_Persistent_BSS (Flag188)
4773 -- Has_Pragma_Elaborate_Body (Flag150)
4774 -- Has_Pragma_Inline (Flag157)
ce0bead3 4775 -- Has_Pragma_Inline_Always (Flag230)
f937473f
RD
4776 -- Has_Pragma_Pure (Flag203)
4777 -- Has_Pragma_Pure_Function (Flag179)
4c8a5bb8 4778 -- Has_Pragma_Thread_Local_Storage (Flag169)
9d77af56 4779 -- Has_Pragma_Unmodified (Flag233)
f937473f 4780 -- Has_Pragma_Unreferenced (Flag180)
2d4e0553 4781 -- Has_Predicates (Flag250)
f937473f
RD
4782 -- Has_Private_Declaration (Flag155)
4783 -- Has_Qualified_Name (Flag161)
fdce4bb7 4784 -- Has_Stream_Size_Clause (Flag184)
f937473f
RD
4785 -- Has_Unknown_Discriminants (Flag72)
4786 -- Has_Xref_Entry (Flag182)
fdce4bb7 4787 -- In_Private_Part (Flag45)
f937473f 4788 -- Is_Ada_2005_Only (Flag185)
599a7411 4789 -- Is_Ada_2012_Only (Flag199)
f937473f 4790 -- Is_Bit_Packed_Array (Flag122) (base type only)
fecbd779 4791 -- Is_Aliased (Flag15)
fdce4bb7 4792 -- Is_Character_Type (Flag63)
f937473f
RD
4793 -- Is_Child_Unit (Flag73)
4794 -- Is_Compilation_Unit (Flag149)
4795 -- Is_Completely_Hidden (Flag103)
4796 -- Is_Discrim_SO_Function (Flag176)
21d27997 4797 -- Is_Dispatch_Table_Entity (Flag234)
f937473f 4798 -- Is_Dispatching_Operation (Flag6)
fdce4bb7 4799 -- Is_Entry_Formal (Flag52)
f937473f
RD
4800 -- Is_Exported (Flag99)
4801 -- Is_First_Subtype (Flag70)
4802 -- Is_Formal_Subprogram (Flag111)
4803 -- Is_Generic_Instance (Flag130)
93c3fca7 4804 -- Is_Generic_Type (Flag13)
f937473f
RD
4805 -- Is_Hidden (Flag57)
4806 -- Is_Hidden_Open_Scope (Flag171)
4807 -- Is_Immediately_Visible (Flag7)
4808 -- Is_Imported (Flag24)
4809 -- Is_Inlined (Flag11)
4810 -- Is_Internal (Flag17)
4811 -- Is_Itype (Flag91)
4812 -- Is_Known_Non_Null (Flag37)
4813 -- Is_Known_Null (Flag204)
4814 -- Is_Known_Valid (Flag170)
4815 -- Is_Limited_Composite (Flag106)
4816 -- Is_Limited_Record (Flag25)
4817 -- Is_Obsolescent (Flag153)
4818 -- Is_Package_Body_Entity (Flag160)
4819 -- Is_Packed_Array_Type (Flag138)
4820 -- Is_Potentially_Use_Visible (Flag9)
4821 -- Is_Preelaborated (Flag59)
4822 -- Is_Primitive_Wrapper (Flag195)
4823 -- Is_Public (Flag10)
4824 -- Is_Pure (Flag44)
4825 -- Is_Remote_Call_Interface (Flag62)
4826 -- Is_Remote_Types (Flag61)
fdce4bb7 4827 -- Is_Renaming_Of_Object (Flag112)
f937473f
RD
4828 -- Is_Shared_Passive (Flag60)
4829 -- Is_Statically_Allocated (Flag28)
fdce4bb7 4830 -- Is_Tagged_Type (Flag55)
0f282086 4831 -- Is_Trivial_Subprogram (Flag235)
f937473f
RD
4832 -- Is_Unchecked_Union (Flag117)
4833 -- Is_Visible_Formal (Flag206)
4834 -- Is_VMS_Exception (Flag133)
4835 -- Kill_Elaboration_Checks (Flag32)
4836 -- Kill_Range_Checks (Flag33)
4837 -- Kill_Tag_Checks (Flag34)
fad0600d 4838 -- Low_Bound_Tested (Flag205)
f937473f
RD
4839 -- Materialize_Entity (Flag168)
4840 -- Needs_Debug_Info (Flag147)
fdce4bb7 4841 -- Never_Set_In_Source (Flag115)
f937473f 4842 -- No_Return (Flag113)
21d27997 4843 -- Overlays_Constant (Flag243)
f937473f
RD
4844 -- Referenced (Flag156)
4845 -- Referenced_As_LHS (Flag36)
ce0bead3 4846 -- Referenced_As_Out_Parameter (Flag227)
f937473f
RD
4847 -- Suppress_Elaboration_Warnings (Flag148)
4848 -- Suppress_Style_Checks (Flag165)
0a36105d 4849 -- Suppress_Value_Tracking_On_Call (Flag217)
5d37ba92 4850 -- Used_As_Generic_Actual (Flag222)
fdce4bb7 4851 -- Warnings_Off (Flag96)
0f282086
RD
4852 -- Warnings_Off_Used (Flag236)
4853 -- Warnings_Off_Used_Unmodified (Flag237)
4854 -- Warnings_Off_Used_Unreferenced (Flag238)
f937473f
RD
4855 -- Was_Hidden (Flag196)
4856
4857 -- Declaration_Node (synth)
f937473f 4858 -- Has_Foreign_Convention (synth)
f937473f 4859 -- Is_Dynamic_Scope (synth)
21d27997 4860 -- Is_Standard_Character_Type (synth)
f937473f
RD
4861 -- Underlying_Type (synth)
4862 -- all classification attributes (synth)
70482933
RK
4863
4864 -- The following list of access functions applies to all entities for
4865 -- types and subtypes. References to this list appear subsequently as
4866 -- as "(plus type attributes)" for each appropriate Entity_Kind.
4867
f937473f
RD
4868 -- Associated_Node_For_Itype (Node8)
4869 -- Class_Wide_Type (Node9)
f937473f
RD
4870 -- Full_View (Node11)
4871 -- Esize (Uint12)
4872 -- RM_Size (Uint13)
4873 -- Alignment (Uint14)
cf49bd32 4874 -- Related_Expression (Node24)
6c946a9f 4875 -- Current_Use_Clause (Node27)
fd0ff1cf 4876 -- Subprograms_For_Type (Node29)
f937473f
RD
4877
4878 -- Depends_On_Private (Flag14)
4879 -- Discard_Names (Flag88)
4880 -- Finalize_Storage_Only (Flag158) (base type only)
4881 -- From_With_Type (Flag159)
4882 -- Has_Aliased_Components (Flag135) (base type only)
4883 -- Has_Alignment_Clause (Flag46)
4884 -- Has_Atomic_Components (Flag86) (base type only)
4885 -- Has_Completion_In_Body (Flag71)
4886 -- Has_Complex_Representation (Flag140) (base type only)
4887 -- Has_Constrained_Partial_View (Flag187)
a01b9df6
AC
4888 -- Has_Controlled_Component (Flag43) (base type only)
4889 -- Has_Default_Aspect (Flag39) (base type only)
f937473f 4890 -- Has_Discriminants (Flag5)
e606088a
AC
4891 -- Has_Inheritable_Invariants (Flag248)
4892 -- Has_Invariants (Flag232)
f937473f
RD
4893 -- Has_Non_Standard_Rep (Flag75) (base type only)
4894 -- Has_Object_Size_Clause (Flag172)
5d37ba92 4895 -- Has_Pragma_Preelab_Init (Flag221)
f937473f
RD
4896 -- Has_Pragma_Unreferenced_Objects (Flag212)
4897 -- Has_Primitive_Operations (Flag120) (base type only)
4898 -- Has_Size_Clause (Flag29)
4899 -- Has_Specified_Layout (Flag100) (base type only)
4900 -- Has_Specified_Stream_Input (Flag190)
4901 -- Has_Specified_Stream_Output (Flag191)
4902 -- Has_Specified_Stream_Read (Flag192)
4903 -- Has_Specified_Stream_Write (Flag193)
4904 -- Has_Task (Flag30) (base type only)
4905 -- Has_Unchecked_Union (Flag123) (base type only)
4906 -- Has_Volatile_Components (Flag87) (base type only)
4907 -- In_Use (Flag8)
4908 -- Is_Abstract_Type (Flag146)
4909 -- Is_Asynchronous (Flag81)
4910 -- Is_Atomic (Flag85)
4911 -- Is_Constr_Subt_For_U_Nominal (Flag80)
4912 -- Is_Constr_Subt_For_UN_Aliased (Flag141)
4913 -- Is_Controlled (Flag42) (base type only)
4914 -- Is_Eliminated (Flag124)
4915 -- Is_Frozen (Flag4)
4916 -- Is_Generic_Actual_Type (Flag94)
685094bf 4917 -- Is_RACW_Stub_Type (Flag244)
f937473f
RD
4918 -- Is_Non_Static_Subtype (Flag109)
4919 -- Is_Packed (Flag51) (base type only)
4920 -- Is_Private_Composite (Flag107)
f937473f
RD
4921 -- Is_Unsigned_Type (Flag144)
4922 -- Is_Volatile (Flag16)
4923 -- Itype_Printed (Flag202) (itypes only)
4924 -- Known_To_Have_Preelab_Init (Flag207)
4925 -- Must_Be_On_Byte_Boundary (Flag183)
4926 -- Must_Have_Preelab_Init (Flag208)
21d27997
RD
4927 -- Optimize_Alignment_Space (Flag241)
4928 -- Optimize_Alignment_Time (Flag242)
f937473f
RD
4929 -- Size_Depends_On_Discriminant (Flag177)
4930 -- Size_Known_At_Compile_Time (Flag92)
4931 -- Strict_Alignment (Flag145) (base type only)
5b1e6aca 4932 -- Suppress_Initialization (Flag105)
f937473f 4933 -- Treat_As_Volatile (Flag41)
0a36105d 4934 -- Universal_Aliasing (Flag216) (base type only)
f937473f
RD
4935
4936 -- Alignment_Clause (synth)
f937473f 4937 -- Base_Type (synth)
f937473f 4938 -- Implementation_Base_Type (synth)
fd0ff1cf 4939 -- Invariant_Procedure (synth)
f937473f 4940 -- Is_Access_Protected_Subprogram_Type (synth)
4818e7b9 4941 -- Predicate_Function (synth)
f937473f
RD
4942 -- Root_Type (synth)
4943 -- Size_Clause (synth)
70482933
RK
4944
4945 ------------------------------------------
4946 -- Applicable attributes by entity kind --
4947 ------------------------------------------
4948
4949 -- E_Access_Protected_Subprogram_Type
f937473f
RD
4950 -- Equivalent_Type (Node18)
4951 -- Directly_Designated_Type (Node20)
f937473f 4952 -- Needs_No_Actuals (Flag22)
ce0bead3 4953 -- Can_Use_Internal_Rep (Flag229)
21d27997 4954 -- (plus type attributes)
70482933
RK
4955
4956 -- E_Access_Subprogram_Type
f937473f
RD
4957 -- Equivalent_Type (Node18) (remote types only)
4958 -- Directly_Designated_Type (Node20)
ded8909b 4959 -- Interface_Name (Node21) (JGNAT usage only)
f937473f 4960 -- Needs_No_Actuals (Flag22)
ded8909b 4961 -- Original_Access_Type (Node26)
ce0bead3 4962 -- Can_Use_Internal_Rep (Flag229)
21d27997 4963 -- (plus type attributes)
70482933
RK
4964
4965 -- E_Access_Type
4966 -- E_Access_Subtype
f937473f
RD
4967 -- Storage_Size_Variable (Node15) (base type only)
4968 -- Master_Id (Node17)
4969 -- Directly_Designated_Type (Node20)
df3e68b1 4970 -- Associated_Storage_Pool (Node22) (base type only)
d3f70b35 4971 -- Finalization_Master (Node23) (base type only)
f937473f
RD
4972 -- Has_Pragma_Controlled (Flag27) (base type only)
4973 -- Has_Storage_Size_Clause (Flag23) (base type only)
f937473f 4974 -- Is_Access_Constant (Flag69)
ce0bead3 4975 -- Is_Local_Anonymous_Access (Flag194)
f937473f
RD
4976 -- Is_Pure_Unit_Access_Type (Flag189)
4977 -- No_Pool_Assigned (Flag131) (base type only)
4978 -- No_Strict_Aliasing (Flag136) (base type only)
70482933
RK
4979 -- (plus type attributes)
4980
4981 -- E_Access_Attribute_Type
f937473f 4982 -- Directly_Designated_Type (Node20)
70482933
RK
4983 -- (plus type attributes)
4984
4985 -- E_Allocator_Type
f937473f 4986 -- Directly_Designated_Type (Node20)
70482933
RK
4987 -- (plus type attributes)
4988
af4b9434
AC
4989 -- E_Anonymous_Access_Subprogram_Type
4990 -- E_Anonymous_Access_Protected_Subprogram_Type
ce0bead3
HK
4991 -- Storage_Size_Variable (Node15) ??? is this needed ???
4992 -- Directly_Designated_Type (Node20)
4993 -- Can_Use_Internal_Rep (Flag229)
4994 -- (plus type attributes)
4995
70482933 4996 -- E_Anonymous_Access_Type
f937473f
RD
4997 -- Storage_Size_Variable (Node15) ??? is this needed ???
4998 -- Directly_Designated_Type (Node20)
d3f70b35 4999 -- Finalization_Master (Node23)
70482933
RK
5000 -- (plus type attributes)
5001
5002 -- E_Array_Type
5003 -- E_Array_Subtype
f937473f
RD
5004 -- First_Index (Node17)
5005 -- Related_Array_Object (Node19)
5006 -- Component_Type (Node20) (base type only)
5007 -- Original_Array_Type (Node21)
5008 -- Component_Size (Uint22) (base type only)
5009 -- Packed_Array_Type (Node23)
5010 -- Component_Alignment (special) (base type only)
5011 -- Has_Component_Size_Clause (Flag68) (base type only)
a01b9df6 5012 -- Has_Pragma_Pack (Flag121) (impl base type only)
f937473f
RD
5013 -- Is_Constrained (Flag12)
5014 -- Next_Index (synth)
5015 -- Number_Dimensions (synth)
fdce4bb7 5016 -- (plus type attributes)
70482933
RK
5017
5018 -- E_Block
f937473f
RD
5019 -- Block_Node (Node11)
5020 -- First_Entity (Node17)
5021 -- Last_Entity (Node20)
f937473f
RD
5022 -- Scope_Depth_Value (Uint22)
5023 -- Entry_Cancel_Parameter (Node23)
5024 -- Delay_Cleanups (Flag114)
5025 -- Discard_Names (Flag88)
5026 -- Has_Master_Entity (Flag21)
5027 -- Has_Nested_Block_With_Handler (Flag101)
5028 -- Sec_Stack_Needed_For_Return (Flag167)
5029 -- Uses_Sec_Stack (Flag95)
5030 -- Scope_Depth (synth)
70482933
RK
5031
5032 -- E_Class_Wide_Type
5033 -- E_Class_Wide_Subtype
46202729 5034 -- Direct_Primitive_Operations (Elist10)
f937473f
RD
5035 -- Cloned_Subtype (Node16) (subtype case only)
5036 -- First_Entity (Node17)
5037 -- Equivalent_Type (Node18) (always Empty for type)
5038 -- Last_Entity (Node20)
5039 -- First_Component (synth)
5040 -- First_Component_Or_Discriminant (synth)
a4100e55 5041 -- (plus type attributes)
70482933
RK
5042
5043 -- E_Component
f937473f
RD
5044 -- Normalized_First_Bit (Uint8)
5045 -- Current_Value (Node9) (always Empty)
5046 -- Normalized_Position_Max (Uint10)
5047 -- Component_Bit_Offset (Uint11)
5048 -- Esize (Uint12)
5049 -- Component_Clause (Node13)
5050 -- Normalized_Position (Uint14)
5051 -- DT_Entry_Count (Uint15)
5052 -- Entry_Formal (Node16)
5053 -- Prival (Node17)
5054 -- Renamed_Object (Node18) (always Empty)
5055 -- Discriminant_Checking_Func (Node20)
5056 -- Interface_Name (Node21) (JGNAT usage only)
5057 -- Original_Record_Component (Node22)
f937473f 5058 -- DT_Offset_To_Top_Func (Node25)
cefce34c 5059 -- Related_Type (Node27)
f937473f
RD
5060 -- Has_Biased_Representation (Flag139)
5061 -- Has_Per_Object_Constraint (Flag154)
5062 -- Is_Atomic (Flag85)
5063 -- Is_Tag (Flag78)
5064 -- Is_Volatile (Flag16)
5065 -- Treat_As_Volatile (Flag41)
5066 -- Is_Return_Object (Flag209)
f937473f
RD
5067 -- Next_Component (synth)
5068 -- Next_Component_Or_Discriminant (synth)
70482933
RK
5069
5070 -- E_Constant
5071 -- E_Loop_Parameter
f937473f
RD
5072 -- Current_Value (Node9) (always Empty)
5073 -- Discriminal_Link (Node10) (discriminals only)
5074 -- Full_View (Node11)
5075 -- Esize (Uint12)
d15f9422 5076 -- Extra_Accessibility (Node13) (constants only)
f937473f 5077 -- Alignment (Uint14)
35a1c212 5078 -- Return_Flag_Or_Transient_Decl (Node15) (constants only)
f937473f
RD
5079 -- Actual_Subtype (Node17)
5080 -- Renamed_Object (Node18)
5081 -- Size_Check_Code (Node19) (constants only)
21d27997 5082 -- Prival_Link (Node20) (privals only)
ded8909b 5083 -- Interface_Name (Node21) (constants only)
cefce34c 5084 -- Related_Type (Node27) (constants only)
f937473f
RD
5085 -- Has_Alignment_Clause (Flag46)
5086 -- Has_Atomic_Components (Flag86)
5087 -- Has_Biased_Representation (Flag139)
5088 -- Has_Completion (Flag26) (constants only)
ce0bead3 5089 -- Has_Thunks (Flag228) (constants only)
f937473f 5090 -- Has_Size_Clause (Flag29)
0a36105d 5091 -- Has_Up_Level_Access (Flag215)
f937473f
RD
5092 -- Has_Volatile_Components (Flag87)
5093 -- Is_Atomic (Flag85)
5094 -- Is_Eliminated (Flag124)
df3e68b1 5095 -- Is_Processed_Transient (Flag252) (constants only)
21d27997 5096 -- Is_Return_Object (Flag209)
f937473f
RD
5097 -- Is_True_Constant (Flag163)
5098 -- Is_Volatile (Flag16)
21d27997
RD
5099 -- Optimize_Alignment_Space (Flag241) (constants only)
5100 -- Optimize_Alignment_Time (Flag242) (constants only)
f937473f 5101 -- Treat_As_Volatile (Flag41)
f937473f
RD
5102 -- Address_Clause (synth)
5103 -- Alignment_Clause (synth)
f937473f 5104 -- Size_Clause (synth)
70482933
RK
5105
5106 -- E_Decimal_Fixed_Point_Type
5107 -- E_Decimal_Fixed_Subtype
f937473f
RD
5108 -- Scale_Value (Uint15)
5109 -- Digits_Value (Uint17)
5110 -- Scalar_Range (Node20)
5111 -- Delta_Value (Ureal18)
5112 -- Small_Value (Ureal21)
5113 -- Has_Machine_Radix_Clause (Flag83)
5114 -- Machine_Radix_10 (Flag84)
5087048c 5115 -- Aft_Value (synth)
f937473f
RD
5116 -- Type_Low_Bound (synth)
5117 -- Type_High_Bound (synth)
a4100e55 5118 -- (plus type attributes)
70482933
RK
5119
5120 -- E_Discriminant
f937473f
RD
5121 -- Normalized_First_Bit (Uint8)
5122 -- Current_Value (Node9) (always Empty)
5123 -- Normalized_Position_Max (Uint10)
5124 -- Component_Bit_Offset (Uint11)
5125 -- Esize (Uint12)
5126 -- Component_Clause (Node13)
5127 -- Normalized_Position (Uint14)
5128 -- Discriminant_Number (Uint15)
5129 -- Discriminal (Node17)
5130 -- Renamed_Object (Node18) (always Empty)
5131 -- Corresponding_Discriminant (Node19)
5132 -- Discriminant_Default_Value (Node20)
5133 -- Interface_Name (Node21) (JGNAT usage only)
5134 -- Original_Record_Component (Node22)
5135 -- CR_Discriminant (Node23)
5136 -- Is_Return_Object (Flag209)
5137 -- Next_Component_Or_Discriminant (synth)
5138 -- Next_Discriminant (synth)
5139 -- Next_Stored_Discriminant (synth)
70482933
RK
5140
5141 -- E_Entry
5142 -- E_Entry_Family
f937473f
RD
5143 -- Protected_Body_Subprogram (Node11)
5144 -- Barrier_Function (Node12)
5145 -- Entry_Parameters_Type (Node15)
5146 -- First_Entity (Node17)
5147 -- Alias (Node18) (for entry only. Empty)
f937473f
RD
5148 -- Last_Entity (Node20)
5149 -- Accept_Address (Elist21)
5150 -- Scope_Depth_Value (Uint22)
21d27997 5151 -- Protection_Object (Node23) (protected kind)
dac3bede 5152 -- Contract (Node24) (for entry only)
b7f17b20 5153 -- PPC_Wrapper (Node25)
94bbf008 5154 -- Extra_Formals (Node28)
f937473f
RD
5155 -- Default_Expressions_Processed (Flag108)
5156 -- Entry_Accepted (Flag152)
5157 -- Is_AST_Entry (Flag132) (for entry only)
5158 -- Needs_No_Actuals (Flag22)
5159 -- Sec_Stack_Needed_For_Return (Flag167)
5160 -- Uses_Sec_Stack (Flag95)
5161 -- Address_Clause (synth)
ea7f928b 5162 -- Entry_Index_Type (synth)
f937473f
RD
5163 -- First_Formal (synth)
5164 -- First_Formal_With_Extras (synth)
ea7f928b 5165 -- Last_Formal (synth)
f937473f
RD
5166 -- Number_Formals (synth)
5167 -- Scope_Depth (synth)
70482933
RK
5168
5169 -- E_Entry_Index_Parameter
f937473f 5170 -- Entry_Index_Constant (Node18)
70482933
RK
5171
5172 -- E_Enumeration_Literal
f937473f
RD
5173 -- Enumeration_Pos (Uint11)
5174 -- Enumeration_Rep (Uint12)
f937473f
RD
5175 -- Alias (Node18)
5176 -- Enumeration_Rep_Expr (Node22)
5177 -- Next_Literal (synth)
70482933
RK
5178
5179 -- E_Enumeration_Type
5180 -- E_Enumeration_Subtype
f937473f
RD
5181 -- Lit_Indexes (Node15) (root type only)
5182 -- Lit_Strings (Node16) (root type only)
5183 -- First_Literal (Node17)
5184 -- Scalar_Range (Node20)
5185 -- Enum_Pos_To_Rep (Node23) (type only)
86200f66 5186 -- Static_Predicate (List25)
f937473f
RD
5187 -- Has_Biased_Representation (Flag139)
5188 -- Has_Contiguous_Rep (Flag181)
5189 -- Has_Enumeration_Rep_Clause (Flag66)
bd29d519 5190 -- Has_Pragma_Ordered (Flag198) (base type only)
f937473f
RD
5191 -- Nonzero_Is_True (Flag162) (base type only)
5192 -- Type_Low_Bound (synth)
5193 -- Type_High_Bound (synth)
a4100e55 5194 -- (plus type attributes)
70482933
RK
5195
5196 -- E_Exception
0a36105d 5197 -- Esize (Uint12)
f937473f
RD
5198 -- Alignment (Uint14)
5199 -- Renamed_Entity (Node18)
5200 -- Register_Exception_Call (Node20)
5201 -- Interface_Name (Node21)
5202 -- Exception_Code (Uint22)
5203 -- Discard_Names (Flag88)
5204 -- Is_VMS_Exception (Flag133)
d5e96bc6 5205 -- Is_Raised (Flag224)
70482933
RK
5206
5207 -- E_Exception_Type
f937473f 5208 -- Equivalent_Type (Node18)
a4100e55 5209 -- (plus type attributes)
70482933
RK
5210
5211 -- E_Floating_Point_Type
5212 -- E_Floating_Point_Subtype
f937473f 5213 -- Digits_Value (Uint17)
26df19ce 5214 -- Float_Rep (Uint10) (Float_Rep_Kind)
19fb051c 5215 -- Scalar_Range (Node20)
d32e3cee
GB
5216 -- Machine_Emax_Value (synth)
5217 -- Machine_Emin_Value (synth)
5218 -- Machine_Mantissa_Value (synth)
5219 -- Machine_Radix_Value (synth)
5220 -- Model_Emin_Value (synth)
5221 -- Model_Epsilon_Value (synth)
5222 -- Model_Mantissa_Value (synth)
5223 -- Model_Small_Value (synth)
5224 -- Safe_Emax_Value (synth)
5225 -- Safe_First_Value (synth)
5226 -- Safe_Last_Value (synth)
f937473f
RD
5227 -- Type_Low_Bound (synth)
5228 -- Type_High_Bound (synth)
23c799b1 5229 -- Vax_Float (synth)
a4100e55 5230 -- (plus type attributes)
70482933
RK
5231
5232 -- E_Function
5233 -- E_Generic_Function
f937473f
RD
5234 -- Mechanism (Uint8) (Mechanism_Type)
5235 -- Renaming_Map (Uint9)
5236 -- Handler_Records (List10) (non-generic case only)
5237 -- Protected_Body_Subprogram (Node11)
5238 -- Next_Inlined_Subprogram (Node12)
5239 -- Corresponding_Equality (Node13) (implicit /= only)
5240 -- Elaboration_Entity (Node13) (all other cases)
5241 -- First_Optional_Parameter (Node14) (non-generic case only)
5242 -- DT_Position (Uint15)
5243 -- DTC_Entity (Node16)
5244 -- First_Entity (Node17)
5245 -- Alias (Node18) (non-generic case only)
5246 -- Renamed_Entity (Node18) (generic case only)
63585f75 5247 -- Extra_Accessibility_Of_Result (Node19) (non-generic case only)
f937473f
RD
5248 -- Last_Entity (Node20)
5249 -- Interface_Name (Node21)
5250 -- Scope_Depth_Value (Uint22)
5251 -- Generic_Renamings (Elist23) (for an instance)
043ce308 5252 -- Inner_Instances (Elist23) (generic case only)
21d27997 5253 -- Protection_Object (Node23) (for concurrent kind)
dac3bede 5254 -- Contract (Node24)
ce2b6ba5 5255 -- Interface_Alias (Node25)
f937473f 5256 -- Overridden_Operation (Node26)
d44202ba 5257 -- Wrapped_Entity (Node27) (non-generic case only)
f937473f 5258 -- Extra_Formals (Node28)
fd0ff1cf 5259 -- Subprograms_For_Type (Node29)
f937473f
RD
5260 -- Body_Needed_For_SAL (Flag40)
5261 -- Elaboration_Entity_Required (Flag174)
f937473f
RD
5262 -- Default_Expressions_Processed (Flag108)
5263 -- Delay_Cleanups (Flag114)
5264 -- Delay_Subprogram_Descriptors (Flag50)
5265 -- Discard_Names (Flag88)
11fa950b 5266 -- Has_Anonymous_Master (Flag253)
f937473f
RD
5267 -- Has_Completion (Flag26)
5268 -- Has_Controlling_Result (Flag98)
fd0ff1cf 5269 -- Has_Invariants (Flag232)
f937473f
RD
5270 -- Has_Master_Entity (Flag21)
5271 -- Has_Missing_Return (Flag142)
5272 -- Has_Nested_Block_With_Handler (Flag101)
21d27997 5273 -- Has_Postconditions (Flag240)
f937473f
RD
5274 -- Has_Recursive_Call (Flag143)
5275 -- Has_Subprogram_Descriptor (Flag93)
5276 -- Is_Abstract_Subprogram (Flag19) (non-generic case only)
5277 -- Is_Called (Flag102) (non-generic case only)
5278 -- Is_Constructor (Flag76)
5279 -- Is_Discrim_SO_Function (Flag176)
5280 -- Is_Eliminated (Flag124)
5281 -- Is_Instantiated (Flag126) (generic case only)
5282 -- Is_Intrinsic_Subprogram (Flag64)
5283 -- Is_Machine_Code_Subprogram (Flag137) (non-generic case only)
5d37ba92 5284 -- Is_Primitive (Flag218)
d44202ba 5285 -- Is_Primitive_Wrapper (Flag195) (non-generic case only)
f937473f 5286 -- Is_Private_Descendant (Flag53)
d44202ba 5287 -- Is_Private_Primitive (Flag245) (non-generic case only)
f937473f 5288 -- Is_Pure (Flag44)
fdce4bb7 5289 -- Is_Thunk (Flag225)
f937473f
RD
5290 -- Is_Visible_Child_Unit (Flag116)
5291 -- Needs_No_Actuals (Flag22)
5292 -- Requires_Overriding (Flag213) (non-generic case only)
5293 -- Return_Present (Flag54)
5294 -- Returns_By_Ref (Flag90)
5295 -- Sec_Stack_Needed_For_Return (Flag167)
5296 -- Uses_Sec_Stack (Flag95)
5297 -- Address_Clause (synth)
5298 -- First_Formal (synth)
5299 -- First_Formal_With_Extras (synth)
ea7f928b 5300 -- Last_Formal (synth)
f937473f
RD
5301 -- Number_Formals (synth)
5302 -- Scope_Depth (synth)
70482933
RK
5303
5304 -- E_General_Access_Type
f937473f
RD
5305 -- Storage_Size_Variable (Node15) (base type only)
5306 -- Master_Id (Node17)
5307 -- Directly_Designated_Type (Node20)
a4100e55 5308 -- Associated_Storage_Pool (Node22) (root type only)
d3f70b35 5309 -- Finalization_Master (Node23) (root type only)
70482933
RK
5310 -- (plus type attributes)
5311
5312 -- E_Generic_In_Parameter
5313 -- E_Generic_In_Out_Parameter
f937473f
RD
5314 -- Current_Value (Node9) (always Empty)
5315 -- Entry_Component (Node11)
5316 -- Actual_Subtype (Node17)
5317 -- Renamed_Object (Node18) (always Empty)
5318 -- Default_Value (Node20)
5319 -- Protected_Formal (Node22)
5320 -- Is_Controlling_Formal (Flag97)
f937473f
RD
5321 -- Is_Return_Object (Flag209)
5322 -- Parameter_Mode (synth)
70482933
RK
5323
5324 -- E_Incomplete_Type
6e443c90 5325 -- E_Incomplete_Subtype
46202729 5326 -- Direct_Primitive_Operations (Elist10)
f937473f
RD
5327 -- Non_Limited_View (Node17)
5328 -- Private_Dependents (Elist18)
5329 -- Discriminant_Constraint (Elist21)
5330 -- Stored_Constraint (Elist23)
70482933
RK
5331 -- (plus type attributes)
5332
5333 -- E_In_Parameter
5334 -- E_In_Out_Parameter
5335 -- E_Out_Parameter
f937473f
RD
5336 -- Mechanism (Uint8) (Mechanism_Type)
5337 -- Current_Value (Node9)
5338 -- Discriminal_Link (Node10) (discriminals only)
5339 -- Entry_Component (Node11)
5340 -- Esize (Uint12)
5341 -- Extra_Accessibility (Node13)
5342 -- Alignment (Uint14)
5343 -- Extra_Formal (Node15)
5344 -- Unset_Reference (Node16)
5345 -- Actual_Subtype (Node17)
5346 -- Renamed_Object (Node18)
5347 -- Spec_Entity (Node19)
5348 -- Default_Value (Node20)
5349 -- Default_Expr_Function (Node21)
5350 -- Protected_Formal (Node22)
5351 -- Extra_Constrained (Node23)
67ce0d7e 5352 -- Last_Assignment (Node26) (OUT, IN-OUT only)
5d37ba92 5353 -- Has_Initial_Value (Flag219)
f937473f 5354 -- Is_Controlling_Formal (Flag97)
ce0bead3 5355 -- Is_Only_Out_Parameter (Flag226)
f937473f 5356 -- Is_Optional_Parameter (Flag134)
fad0600d 5357 -- Low_Bound_Tested (Flag205)
f937473f
RD
5358 -- Is_Return_Object (Flag209)
5359 -- Parameter_Mode (synth)
70482933
RK
5360
5361 -- E_Label
f937473f
RD
5362 -- Enclosing_Scope (Node18)
5363 -- Reachable (Flag49)
70482933
RK
5364
5365 -- E_Limited_Private_Type
5366 -- E_Limited_Private_Subtype
f937473f
RD
5367 -- First_Entity (Node17)
5368 -- Private_Dependents (Elist18)
5369 -- Underlying_Full_View (Node19)
5370 -- Last_Entity (Node20)
5371 -- Discriminant_Constraint (Elist21)
5372 -- Private_View (Node22)
5373 -- Stored_Constraint (Elist23)
5374 -- Has_Completion (Flag26)
70482933
RK
5375 -- (plus type attributes)
5376
5377 -- E_Loop
51bf9bdf 5378 -- First_Exit_Statement (Node8)
f937473f
RD
5379 -- Has_Exit (Flag47)
5380 -- Has_Master_Entity (Flag21)
5381 -- Has_Nested_Block_With_Handler (Flag101)
70482933
RK
5382
5383 -- E_Modular_Integer_Type
5384 -- E_Modular_Integer_Subtype
19fb051c 5385 -- Modulus (Uint17) (base type only)
f937473f
RD
5386 -- Original_Array_Type (Node21)
5387 -- Scalar_Range (Node20)
86200f66 5388 -- Static_Predicate (List25)
19fb051c 5389 -- Non_Binary_Modulus (Flag58) (base type only)
f937473f
RD
5390 -- Has_Biased_Representation (Flag139)
5391 -- Type_Low_Bound (synth)
5392 -- Type_High_Bound (synth)
70482933
RK
5393 -- (plus type attributes)
5394
5395 -- E_Named_Integer
70482933
RK
5396
5397 -- E_Named_Real
70482933
RK
5398
5399 -- E_Operator
f937473f
RD
5400 -- First_Entity (Node17)
5401 -- Alias (Node18)
63585f75 5402 -- Extra_Accessibility_Of_Result (Node19)
f937473f 5403 -- Last_Entity (Node20)
038140ed 5404 -- Overridden_Operation (Node26)
fd0ff1cf
RD
5405 -- Subprograms_For_Type (Node29)
5406 -- Has_Invariants (Flag232)
21d27997 5407 -- Has_Postconditions (Flag240)
f937473f
RD
5408 -- Is_Machine_Code_Subprogram (Flag137)
5409 -- Is_Pure (Flag44)
5410 -- Is_Intrinsic_Subprogram (Flag64)
5d37ba92 5411 -- Is_Primitive (Flag218)
fdce4bb7 5412 -- Is_Thunk (Flag225)
f937473f 5413 -- Default_Expressions_Processed (Flag108)
21d27997
RD
5414 -- Aren't there more flags and fields? seems like this list should be
5415 -- more similar to the E_Function list, which is much longer ???
70482933
RK
5416
5417 -- E_Ordinary_Fixed_Point_Type
5418 -- E_Ordinary_Fixed_Point_Subtype
f937473f
RD
5419 -- Delta_Value (Ureal18)
5420 -- Scalar_Range (Node20)
5421 -- Small_Value (Ureal21)
5422 -- Has_Small_Clause (Flag67)
5087048c 5423 -- Aft_Value (synth)
f937473f
RD
5424 -- Type_Low_Bound (synth)
5425 -- Type_High_Bound (synth)
a4100e55 5426 -- (plus type attributes)
70482933
RK
5427
5428 -- E_Package
5429 -- E_Generic_Package
f937473f
RD
5430 -- Dependent_Instances (Elist8) (for an instance)
5431 -- Renaming_Map (Uint9)
5432 -- Handler_Records (List10) (non-generic case only)
5433 -- Generic_Homonym (Node11) (generic case only)
5434 -- Associated_Formal_Package (Node12)
5435 -- Elaboration_Entity (Node13)
5436 -- Shadow_Entities (List14)
5437 -- Related_Instance (Node15) (non-generic case only)
5438 -- First_Private_Entity (Node16)
5439 -- First_Entity (Node17)
5440 -- Renamed_Entity (Node18)
5441 -- Body_Entity (Node19)
5442 -- Last_Entity (Node20)
5443 -- Interface_Name (Node21)
5444 -- Scope_Depth_Value (Uint22)
5445 -- Generic_Renamings (Elist23) (for an instance)
5446 -- Inner_Instances (Elist23) (generic case only)
5447 -- Limited_View (Node23) (non-generic/instance)
df3e68b1 5448 -- Finalizer (Node24) (non-generic case only)
21d27997 5449 -- Current_Use_Clause (Node27)
f937473f
RD
5450 -- Package_Instantiation (Node26)
5451 -- Delay_Subprogram_Descriptors (Flag50)
5452 -- Body_Needed_For_SAL (Flag40)
5453 -- Discard_Names (Flag88)
5454 -- Elaboration_Entity_Required (Flag174)
5455 -- Elaborate_Body_Desirable (Flag210) (non-generic case only)
5456 -- From_With_Type (Flag159)
5457 -- Has_All_Calls_Remote (Flag79)
11fa950b 5458 -- Has_Anonymous_Master (Flag253)
f937473f
RD
5459 -- Has_Completion (Flag26)
5460 -- Has_Forward_Instantiation (Flag175)
5461 -- Has_Master_Entity (Flag21)
5462 -- Has_RACW (Flag214) (non-generic case only)
5463 -- Has_Subprogram_Descriptor (Flag93)
5464 -- In_Package_Body (Flag48)
f937473f
RD
5465 -- In_Use (Flag8)
5466 -- Is_Instantiated (Flag126)
5467 -- Is_Private_Descendant (Flag53)
5468 -- Is_Visible_Child_Unit (Flag116)
ce0bead3 5469 -- Renamed_In_Spec (Flag231) (non-generic case only)
0a36105d 5470 -- Static_Elaboration_Desired (Flag77) (non-generic case only)
11fa950b
AC
5471 -- Is_Wrapper_Package (synth) (non-generic case only)
5472 -- Scope_Depth (synth)
70482933
RK
5473
5474 -- E_Package_Body
f937473f
RD
5475 -- Handler_Records (List10) (non-generic case only)
5476 -- Related_Instance (Node15) (non-generic case only)
5477 -- First_Entity (Node17)
5478 -- Spec_Entity (Node19)
5479 -- Last_Entity (Node20)
5480 -- Scope_Depth_Value (Uint22)
df3e68b1 5481 -- Finalizer (Node24) (non-generic case only)
f937473f 5482 -- Delay_Subprogram_Descriptors (Flag50)
11fa950b 5483 -- Has_Anonymous_Master (Flag253)
f937473f 5484 -- Has_Subprogram_Descriptor (Flag93)
11fa950b 5485 -- Scope_Depth (synth)
70482933
RK
5486
5487 -- E_Private_Type
5488 -- E_Private_Subtype
46202729 5489 -- Direct_Primitive_Operations (Elist10)
f937473f
RD
5490 -- First_Entity (Node17)
5491 -- Private_Dependents (Elist18)
5492 -- Underlying_Full_View (Node19)
5493 -- Last_Entity (Node20)
5494 -- Discriminant_Constraint (Elist21)
5495 -- Private_View (Node22)
5496 -- Stored_Constraint (Elist23)
5497 -- Has_Completion (Flag26)
5498 -- Is_Controlled (Flag42) (base type only)
5499 -- Is_For_Access_Subtype (Flag118) (subtype only)
70482933
RK
5500 -- (plus type attributes)
5501
5502 -- E_Procedure
5503 -- E_Generic_Procedure
701b7fbb 5504 -- Postcondition_Proc (Node8) (non-generic case only)
f937473f
RD
5505 -- Renaming_Map (Uint9)
5506 -- Handler_Records (List10) (non-generic case only)
5507 -- Protected_Body_Subprogram (Node11)
5508 -- Next_Inlined_Subprogram (Node12)
5509 -- Elaboration_Entity (Node13)
5510 -- First_Optional_Parameter (Node14) (non-generic case only)
5511 -- DT_Position (Uint15)
5512 -- DTC_Entity (Node16)
5513 -- First_Entity (Node17)
5514 -- Alias (Node18) (non-generic case only)
5515 -- Renamed_Entity (Node18) (generic case only)
f937473f
RD
5516 -- Last_Entity (Node20)
5517 -- Interface_Name (Node21)
5518 -- Scope_Depth_Value (Uint22)
043ce308
AC
5519 -- Generic_Renamings (Elist23) (for an instance)
5520 -- Inner_Instances (Elist23) (generic case only)
21d27997 5521 -- Protection_Object (Node23) (for concurrent kind)
dac3bede 5522 -- Contract (Node24)
ce2b6ba5 5523 -- Interface_Alias (Node25)
0a36105d 5524 -- Static_Initialization (Node26) (init_proc only)
c28408b7 5525 -- Overridden_Operation (Node26) (never for init proc)
f937473f
RD
5526 -- Wrapped_Entity (Node27) (non-generic case only)
5527 -- Extra_Formals (Node28)
5528 -- Body_Needed_For_SAL (Flag40)
5529 -- Delay_Cleanups (Flag114)
5530 -- Discard_Names (Flag88)
5531 -- Elaboration_Entity_Required (Flag174)
f937473f
RD
5532 -- Default_Expressions_Processed (Flag108)
5533 -- Delay_Cleanups (Flag114)
5534 -- Delay_Subprogram_Descriptors (Flag50)
5535 -- Discard_Names (Flag88)
11fa950b 5536 -- Has_Anonymous_Master (Flag253)
f937473f 5537 -- Has_Completion (Flag26)
fd0ff1cf 5538 -- Has_Invariants (Flag232)
f937473f
RD
5539 -- Has_Master_Entity (Flag21)
5540 -- Has_Nested_Block_With_Handler (Flag101)
21d27997 5541 -- Has_Postconditions (Flag240)
f937473f 5542 -- Has_Subprogram_Descriptor (Flag93)
f937473f
RD
5543 -- Is_Abstract_Subprogram (Flag19) (non-generic case only)
5544 -- Is_Asynchronous (Flag81)
043ce308 5545 -- Is_Called (Flag102) (non-generic case only)
f937473f
RD
5546 -- Is_Constructor (Flag76)
5547 -- Is_Eliminated (Flag124)
5548 -- Is_Instantiated (Flag126) (generic case only)
5549 -- Is_Interrupt_Handler (Flag89)
5550 -- Is_Intrinsic_Subprogram (Flag64)
5551 -- Is_Machine_Code_Subprogram (Flag137) (non-generic case only)
5552 -- Is_Null_Init_Proc (Flag178)
5d37ba92 5553 -- Is_Primitive (Flag218)
f937473f
RD
5554 -- Is_Primitive_Wrapper (Flag195) (non-generic case only)
5555 -- Is_Private_Descendant (Flag53)
d44202ba 5556 -- Is_Private_Primitive (Flag245) (non-generic case only)
f937473f 5557 -- Is_Pure (Flag44)
fdce4bb7 5558 -- Is_Thunk (Flag225)
f937473f
RD
5559 -- Is_Valued_Procedure (Flag127)
5560 -- Is_Visible_Child_Unit (Flag116)
5561 -- Needs_No_Actuals (Flag22)
5562 -- No_Return (Flag113)
5563 -- Requires_Overriding (Flag213) (non-generic case only)
5564 -- Sec_Stack_Needed_For_Return (Flag167)
5565 -- Address_Clause (synth)
5566 -- First_Formal (synth)
5567 -- First_Formal_With_Extras (synth)
df3e68b1 5568 -- Is_Finalizer (synth)
ea7f928b 5569 -- Last_Formal (synth)
f937473f 5570 -- Number_Formals (synth)
70482933
RK
5571
5572 -- E_Protected_Body
70482933
RK
5573 -- (any others??? First/Last Entity, Scope_Depth???)
5574
5575 -- E_Protected_Object
5576
5577 -- E_Protected_Type
5578 -- E_Protected_Subtype
46202729 5579 -- Direct_Primitive_Operations (Elist10)
f937473f
RD
5580 -- Entry_Bodies_Array (Node15)
5581 -- First_Private_Entity (Node16)
5582 -- First_Entity (Node17)
5583 -- Corresponding_Record_Type (Node18)
f937473f
RD
5584 -- Last_Entity (Node20)
5585 -- Discriminant_Constraint (Elist21)
5586 -- Scope_Depth_Value (Uint22)
5587 -- Scope_Depth (synth)
5588 -- Stored_Constraint (Elist23)
5589 -- Has_Interrupt_Handler (synth)
5590 -- Sec_Stack_Needed_For_Return (Flag167) ???
5591 -- Uses_Sec_Stack (Flag95) ???
5592 -- Has_Entries (synth)
5593 -- Number_Entries (synth)
70482933
RK
5594
5595 -- E_Record_Type
5596 -- E_Record_Subtype
46202729 5597 -- Direct_Primitive_Operations (Elist10)
f937473f
RD
5598 -- Access_Disp_Table (Elist16) (base type only)
5599 -- Cloned_Subtype (Node16) (subtype case only)
5600 -- First_Entity (Node17)
5601 -- Corresponding_Concurrent_Type (Node18)
6fb4cdde 5602 -- Parent_Subtype (Node19) (base type only)
f937473f
RD
5603 -- Last_Entity (Node20)
5604 -- Discriminant_Constraint (Elist21)
5605 -- Corresponding_Remote_Type (Node22)
5606 -- Stored_Constraint (Elist23)
ce2b6ba5 5607 -- Interfaces (Elist25)
04cbd48e 5608 -- Dispatch_Table_Wrappers (Elist26) (base type only)
cf49bd32 5609 -- Underlying_Record_View (Node28) (base type only)
f937473f
RD
5610 -- Component_Alignment (special) (base type only)
5611 -- C_Pass_By_Copy (Flag125) (base type only)
5d37ba92 5612 -- Has_Dispatch_Table (Flag220) (base tagged type only)
f937473f 5613 -- Has_External_Tag_Rep_Clause (Flag110)
a01b9df6 5614 -- Has_Pragma_Pack (Flag121) (impl base type only)
87729e5a 5615 -- Has_Private_Ancestor (Flag151)
f937473f
RD
5616 -- Has_Record_Rep_Clause (Flag65) (base type only)
5617 -- Has_Static_Discriminants (Flag211) (subtype only)
5618 -- Is_Class_Wide_Equivalent_Type (Flag35)
5619 -- Is_Concurrent_Record_Type (Flag20)
5620 -- Is_Constrained (Flag12)
5621 -- Is_Controlled (Flag42) (base type only)
5622 -- Is_Interface (Flag186)
0a36105d 5623 -- Is_Limited_Interface (Flag197)
0f282086 5624 -- OK_To_Reorder_Components (Flag239) (base type only)
f937473f
RD
5625 -- Reverse_Bit_Order (Flag164) (base type only)
5626 -- First_Component (synth)
5627 -- First_Component_Or_Discriminant (synth)
70482933
RK
5628 -- (plus type attributes)
5629
5630 -- E_Record_Type_With_Private
5631 -- E_Record_Subtype_With_Private
46202729 5632 -- Direct_Primitive_Operations (Elist10)
f937473f
RD
5633 -- First_Entity (Node17)
5634 -- Private_Dependents (Elist18)
5635 -- Underlying_Full_View (Node19)
5636 -- Last_Entity (Node20)
5637 -- Discriminant_Constraint (Elist21)
5638 -- Private_View (Node22)
5639 -- Stored_Constraint (Elist23)
ce2b6ba5 5640 -- Interfaces (Elist25)
f937473f 5641 -- Has_Completion (Flag26)
87729e5a 5642 -- Has_Private_Ancestor (Flag151)
f937473f
RD
5643 -- Has_Record_Rep_Clause (Flag65) (base type only)
5644 -- Has_External_Tag_Rep_Clause (Flag110)
5645 -- Is_Concurrent_Record_Type (Flag20)
5646 -- Is_Constrained (Flag12)
5647 -- Is_Controlled (Flag42) (base type only)
5648 -- Is_Interface (Flag186)
0a36105d 5649 -- Is_Limited_Interface (Flag197)
0f282086 5650 -- OK_To_Reorder_Components (Flag239) (base type only)
f937473f
RD
5651 -- Reverse_Bit_Order (Flag164) (base type only)
5652 -- First_Component (synth)
5653 -- First_Component_Or_Discriminant (synth)
70482933
RK
5654 -- (plus type attributes)
5655
6e443c90 5656 -- E_Return_Statement
f937473f 5657 -- Return_Applies_To (Node8)
6e443c90 5658
70482933
RK
5659 -- E_Signed_Integer_Type
5660 -- E_Signed_Integer_Subtype
f937473f 5661 -- Scalar_Range (Node20)
86200f66 5662 -- Static_Predicate (List25)
f937473f
RD
5663 -- Has_Biased_Representation (Flag139)
5664 -- Type_Low_Bound (synth)
5665 -- Type_High_Bound (synth)
70482933
RK
5666 -- (plus type attributes)
5667
5668 -- E_String_Type
5669 -- E_String_Subtype
f937473f
RD
5670 -- First_Index (Node17)
5671 -- Component_Type (Node20) (base type only)
5672 -- Is_Constrained (Flag12)
5673 -- Next_Index (synth)
5674 -- Number_Dimensions (synth)
70482933
RK
5675 -- (plus type attributes)
5676
5677 -- E_String_Literal_Subtype
f937473f
RD
5678 -- String_Literal_Low_Bound (Node15)
5679 -- String_Literal_Length (Uint16)
5680 -- First_Index (Node17) (always Empty)
5681 -- Packed_Array_Type (Node23)
70482933
RK
5682 -- (plus type attributes)
5683
5684 -- E_Subprogram_Body
f937473f
RD
5685 -- Mechanism (Uint8)
5686 -- First_Entity (Node17)
855f2f8c 5687 -- Corresponding_Protected_Entry (Node18)
f937473f
RD
5688 -- Last_Entity (Node20)
5689 -- Scope_Depth_Value (Uint22)
94bbf008 5690 -- Extra_Formals (Node28)
f937473f 5691 -- Scope_Depth (synth)
70482933
RK
5692
5693 -- E_Subprogram_Type
63585f75 5694 -- Extra_Accessibility_Of_Result (Node19)
f937473f 5695 -- Directly_Designated_Type (Node20)
94bbf008 5696 -- Extra_Formals (Node28)
f937473f
RD
5697 -- First_Formal (synth)
5698 -- First_Formal_With_Extras (synth)
ea7f928b 5699 -- Last_Formal (synth)
f937473f 5700 -- Number_Formals (synth)
70482933
RK
5701 -- (plus type attributes)
5702
5703 -- E_Task_Body
5704 -- (any others??? First/Last Entity, Scope_Depth???)
5705
5706 -- E_Task_Type
5707 -- E_Task_Subtype
46202729 5708 -- Direct_Primitive_Operations (Elist10)
f937473f
RD
5709 -- Storage_Size_Variable (Node15) (base type only)
5710 -- First_Private_Entity (Node16)
5711 -- First_Entity (Node17)
5712 -- Corresponding_Record_Type (Node18)
f937473f
RD
5713 -- Last_Entity (Node20)
5714 -- Discriminant_Constraint (Elist21)
5715 -- Scope_Depth_Value (Uint22)
5716 -- Scope_Depth (synth)
5717 -- Stored_Constraint (Elist23)
5718 -- Task_Body_Procedure (Node25)
5719 -- Delay_Cleanups (Flag114)
5720 -- Has_Master_Entity (Flag21)
5721 -- Has_Storage_Size_Clause (Flag23) (base type only)
5722 -- Uses_Sec_Stack (Flag95) ???
5723 -- Sec_Stack_Needed_For_Return (Flag167) ???
5724 -- Has_Entries (synth)
5725 -- Number_Entries (synth)
21d27997 5726 -- Relative_Deadline_Variable (Node26) (base type only)
70482933
RK
5727 -- (plus type attributes)
5728
5729 -- E_Variable
f937473f
RD
5730 -- Hiding_Loop_Variable (Node8)
5731 -- Current_Value (Node9)
5732 -- Esize (Uint12)
5733 -- Extra_Accessibility (Node13)
5734 -- Alignment (Uint14)
35a1c212 5735 -- Return_Flag_Or_Transient_Decl (Node15) (transient object only)
f937473f
RD
5736 -- Unset_Reference (Node16)
5737 -- Actual_Subtype (Node17)
5738 -- Renamed_Object (Node18)
5739 -- Size_Check_Code (Node19)
21d27997 5740 -- Prival_Link (Node20)
f937473f 5741 -- Interface_Name (Node21)
685094bf 5742 -- Shared_Var_Procs_Instance (Node22)
f937473f 5743 -- Extra_Constrained (Node23)
a4941eec 5744 -- Related_Expression (Node24)
4c8e94ab 5745 -- Debug_Renaming_Link (Node25)
67ce0d7e 5746 -- Last_Assignment (Node26)
cefce34c 5747 -- Related_Type (Node27)
f937473f
RD
5748 -- Has_Alignment_Clause (Flag46)
5749 -- Has_Atomic_Components (Flag86)
5750 -- Has_Biased_Representation (Flag139)
5d37ba92 5751 -- Has_Initial_Value (Flag219)
f937473f 5752 -- Has_Size_Clause (Flag29)
21d27997 5753 -- Has_Up_Level_Access (Flag215)
f937473f 5754 -- Has_Volatile_Components (Flag87)
f937473f
RD
5755 -- Is_Atomic (Flag85)
5756 -- Is_Eliminated (Flag124)
df3e68b1 5757 -- Is_Processed_Transient (Flag252)
273adcdf 5758 -- Is_Safe_To_Reevaluate (Flag249)
f937473f
RD
5759 -- Is_Shared_Passive (Flag60)
5760 -- Is_True_Constant (Flag163)
5761 -- Is_Volatile (Flag16)
f937473f 5762 -- Is_Return_Object (Flag209)
d1f453b7 5763 -- OK_To_Rename (Flag247)
21d27997
RD
5764 -- Optimize_Alignment_Space (Flag241)
5765 -- Optimize_Alignment_Time (Flag242)
5766 -- Treat_As_Volatile (Flag41)
f937473f
RD
5767 -- Address_Clause (synth)
5768 -- Alignment_Clause (synth)
f937473f 5769 -- Size_Clause (synth)
70482933
RK
5770
5771 -- E_Void
5772 -- Since E_Void is the initial Ekind value of an entity when it is first
5773 -- created, one might expect that no attributes would be defined on such
5774 -- an entity until its Ekind field is set. However, in practice, there
5775 -- are many instances in which fields of an E_Void entity are set in the
5776 -- code prior to setting the Ekind field. This is not well documented or
5777 -- well controlled, and needs cleaning up later. Meanwhile, the access
5778 -- procedures in the body of Einfo permit many, but not all, attributes
5779 -- to be applied to an E_Void entity, precisely so that this kind of
5780 -- pre-setting of attributes works. This is really a hole in the dynamic
5781 -- type checking, since there is no assurance that the eventual Ekind
5782 -- value will be appropriate for the attributes set, and the consequence
5783 -- is that the dynamic type checking in the Einfo body is unnecessarily
5784 -- weak. To be looked at systematically some time ???
5785
5786 ---------------------------------
5787 -- Component_Alignment Control --
5788 ---------------------------------
5789
5790 -- There are four types of alignment possible for array and record
5791 -- types, and a field in the type entities contains a value of the
5792 -- following type indicating which alignment choice applies. For full
e14c931f 5793 -- details of the meaning of these alignment types, see description
70482933
RK
5794 -- of the Component_Alignment pragma
5795
5796 type Component_Alignment_Kind is (
5797 Calign_Default, -- default alignment
5798 Calign_Component_Size, -- natural alignment for component size
5799 Calign_Component_Size_4, -- natural for size <= 4, 4 for size >= 4
5800 Calign_Storage_Unit); -- all components byte aligned
5801
308e6f3a
RW
5802 -----------------------------------
5803 -- Floating Point Representation --
5804 -----------------------------------
23c799b1
GB
5805
5806 type Float_Rep_Kind is (
5807 IEEE_Binary, -- IEEE 754p conform binary format
5808 VAX_Native, -- VAX D, F, G or H format
5809 AAMP); -- AAMP format
5810
70482933
RK
5811 ---------------
5812 -- Iterators --
5813 ---------------
5814
5815 -- In addition to attributes that are stored as plain data, other
5816 -- attributes are procedural, and require some small amount of
5817 -- computation. Of course, from the point of view of a user of this
5818 -- package, the distinction is not visible (even the field information
5819 -- provided below should be disregarded, as it is subject to change
5820 -- without notice!). A number of attributes appear as lists: lists of
5821 -- formals, lists of actuals, of discriminants, etc. For these, pairs
5822 -- of functions are defined, which take the form:
5823
5824 -- function First_Thing (E : Enclosing_Construct) return Thing;
5825 -- function Next_Thing (T : Thing) return Thing;
5826
5827 -- The end of iteration is always signaled by a value of Empty, so that
5828 -- loops over these chains invariably have the form:
5829
5830 -- This : Thing;
5831 -- ...
5832 -- This := First_Thing (E);
5833
5834 -- while Present (This) loop
5835 -- Do_Something_With (This);
5836 -- ...
5837 -- This := Next_Thing (This);
5838 -- end loop;
5839
5840 -----------------------------------
5841 -- Handling of Check Suppression --
5842 -----------------------------------
5843
5844 -- There are three ways that checks can be suppressed:
5845
fbf5a39b
AC
5846 -- 1. At the command line level
5847 -- 2. At the scope level.
5848 -- 3. At the entity level.
70482933 5849
fbf5a39b
AC
5850 -- See spec of Sem in sem.ads for details of the data structures used
5851 -- to keep track of these various methods for suppressing checks.
70482933
RK
5852
5853 -------------------------------
5854 -- Handling of Discriminants --
5855 -------------------------------
5856
5857 -- During semantic processing, discriminants are separate entities which
5858 -- reflect the semantic properties and allowed usage of discriminants in
5859 -- the language.
5860
5861 -- In the case of discriminants used as bounds, the references are handled
5862 -- directly, since special processing is needed in any case. However, there
5863 -- are two circumstances in which discriminants are referenced in a quite
5864 -- general manner, like any other variables:
5865
5866 -- In initialization expressions for records. Note that the expressions
21d27997
RD
5867 -- used in Priority, Storage_Size, Task_Info and Relative_Deadline
5868 -- pragmas are effectively in this category, since these pragmas are
5869 -- converted to initialized record fields in the Corresponding_Record_
5870 -- Type.
70482933
RK
5871
5872 -- In task and protected bodies, where the discriminant values may be
5873 -- referenced freely within these bodies. Discriminants can also appear
5874 -- in bounds of entry families and in defaults of operations.
5875
5876 -- In both these cases, the discriminants must be treated essentially as
5877 -- objects. The following approach is used to simplify and minimize the
5878 -- special processing that is required.
5879
21d27997
RD
5880 -- When a record type with discriminants is analyzed, semantic processing
5881 -- creates the entities for the discriminants. It also creates additional
5882 -- sets of entities called discriminals, one for each of the discriminants,
5883 -- and the Discriminal field of the discriminant entity points to this
5884 -- additional entity, which is initially created as an uninitialized
5885 -- (E_Void) entity.
70482933
RK
5886
5887 -- During expansion of expressions, any discriminant reference is replaced
5888 -- by a reference to the corresponding discriminal. When the initialization
5889 -- procedure for the record is created (there will always be one, since
5890 -- discriminants are present, see Exp_Ch3 for further details), the
5891 -- discriminals are used as the entities for the formal parameters of
5892 -- this initialization procedure. The references to these discriminants
5893 -- have already been replaced by references to these discriminals, which
5894 -- are now the formal parameters corresponding to the required objects.
5895
21d27997
RD
5896 -- In the case of a task or protected body, the semantics similarly creates
5897 -- a set of discriminals for the discriminants of the task or protected
5898 -- type. When the procedure is created for the task body, the parameter
5899 -- passed in is a reference to the task value type, which contains the
5900 -- required discriminant values. The expander creates a set of declarations
5901 -- of the form:
70482933 5902
f3d0f304 5903 -- discr_nameD : constant discr_type renames _task.discr_name;
70482933 5904
21d27997
RD
5905 -- where discr_nameD is the discriminal entity referenced by the task
5906 -- discriminant, and _task is the task value passed in as the parameter.
70482933
RK
5907 -- Again, any references to discriminants in the task body have been
5908 -- replaced by the discriminal reference, which is now an object that
5909 -- contains the required value.
5910
5911 -- This approach for tasks means that two sets of discriminals are needed
5912 -- for a task type, one for the initialization procedure, and one for the
5913 -- task body. This works out nicely, since the semantics allocates one set
5914 -- for the task itself, and one set for the corresponding record.
5915
5916 -- The one bit of trickiness arises in making sure that the right set of
5917 -- discriminals is used at the right time. First the task definition is
5918 -- processed. Any references to discriminants here are replaced by the
21d27997
RD
5919 -- corresponding *task* discriminals (the record type doesn't even exist
5920 -- yet, since it is constructed as part of the expansion of the task
5921 -- declaration, which happens after the semantic processing of the task
5922 -- definition). The discriminants to be used for the corresponding record
5923 -- are created at the same time as the other discriminals, and held in the
5924 -- CR_Discriminant field of the discriminant. A use of the discriminant in
5925 -- a bound for an entry family is replaced with the CR_Discriminant because
5926 -- it controls the bound of the entry queue array which is a component of
5927 -- the corresponding record.
70482933
RK
5928
5929 -- Just before the record initialization routine is constructed, the
5930 -- expander exchanges the task and record discriminals. This has two
5931 -- effects. First the generation of the record initialization routine
5932 -- uses the discriminals that are now on the record, which is the set
5933 -- that used to be on the task, which is what we want.
5934
5935 -- Second, a new set of (so far unused) discriminals is now on the task
5936 -- discriminants, and it is this set that will be used for expanding the
5937 -- task body, and also for the discriminal declarations at the start of
5938 -- the task body.
5939
21d27997
RD
5940 ---------------------------------------------------
5941 -- Handling of private data in protected objects --
5942 ---------------------------------------------------
5943
5944 -- Private components in protected types pose problems similar to those
5945 -- of discriminants. Private data is visible and can be directly referenced
5946 -- from protected bodies. However, when protected entries and subprograms
5947 -- are expanded into corresponding bodies and barrier functions, private
5948 -- components lose their original context and visibility.
5949
5950 -- To remedy this side effect of expansion, private components are expanded
5951 -- into renamings called "privals", by analogy with "discriminals".
5952
5953 -- private_comp : comp_type renames _object.private_comp;
5954
5955 -- Prival declarations are inserted during the analysis of subprogram and
5956 -- entry bodies to ensure proper visibility for any subsequent expansion.
5957 -- _Object is the formal parameter of the generated corresponding body or
5958 -- a local renaming which denotes the protected object obtained from entry
5959 -- parameter _O. Privals receive minimal decoration upon creation and are
5960 -- categorized as either E_Variable for the general case or E_Constant when
5961 -- they appear in functions.
5962
5963 -- Along with the local declarations, each private component carries a
5964 -- placeholder which references the prival entity in the current body. This
5965 -- form of indirection is used to resolve name clashes of privals and other
5966 -- locally visible entities such as parameters, local objects, entry family
5967 -- indexes or identifiers used in the barrier condition.
5968
5969 -- When analyzing the statements of a protected subprogram or entry, any
5970 -- reference to a private component must resolve to the locally declared
5971 -- prival through normal visibility. In case of name conflicts (the cases
5972 -- above), the prival is marked as hidden and acts as a weakly declared
5973 -- entity. As a result, the reference points to the correct entity. When a
5974 -- private component is denoted by an expanded name (prot_type.comp for
5975 -- example), the expansion mechanism uses the placeholder of the component
5976 -- to correct the Entity and Etype of the reference.
70482933
RK
5977
5978 -------------------
5979 -- Type Synonyms --
5980 -------------------
5981
5982 -- The following type synonyms are used to tidy up the function and
21d27997
RD
5983 -- procedure declarations that follow, and also to make it possible to meet
5984 -- the requirement for the XEINFO utility that all function specs must fit
5985 -- on a single source line.
70482933
RK
5986
5987 subtype B is Boolean;
5988 subtype C is Component_Alignment_Kind;
5989 subtype E is Entity_Id;
23c799b1 5990 subtype F is Float_Rep_Kind;
70482933
RK
5991 subtype M is Mechanism_Type;
5992 subtype N is Node_Id;
5993 subtype U is Uint;
5994 subtype R is Ureal;
5995 subtype L is Elist_Id;
5996 subtype S is List_Id;
5997
15ce9ca2
AC
5998 --------------------------------
5999 -- Attribute Access Functions --
6000 --------------------------------
70482933
RK
6001
6002 -- All attributes are manipulated through a procedural interface. This
6003 -- section contains the functions used to obtain attribute values which
6004 -- correspond to values in fields or flags in the entity itself.
6005
f937473f
RD
6006 function Accept_Address (Id : E) return L;
6007 function Access_Disp_Table (Id : E) return L;
6008 function Actual_Subtype (Id : E) return E;
6009 function Address_Taken (Id : E) return B;
6010 function Alias (Id : E) return E;
f937473f 6011 function Alignment (Id : E) return U;
f937473f
RD
6012 function Associated_Formal_Package (Id : E) return E;
6013 function Associated_Node_For_Itype (Id : E) return N;
6014 function Associated_Storage_Pool (Id : E) return E;
6015 function Barrier_Function (Id : E) return N;
6016 function Block_Node (Id : E) return N;
6017 function Body_Entity (Id : E) return E;
6018 function Body_Needed_For_SAL (Id : E) return B;
6019 function CR_Discriminant (Id : E) return E;
6020 function C_Pass_By_Copy (Id : E) return B;
6021 function Can_Never_Be_Null (Id : E) return B;
6022 function Checks_May_Be_Suppressed (Id : E) return B;
6023 function Class_Wide_Type (Id : E) return E;
6024 function Cloned_Subtype (Id : E) return E;
6025 function Component_Alignment (Id : E) return C;
6026 function Component_Clause (Id : E) return N;
6027 function Component_Bit_Offset (Id : E) return U;
6028 function Component_Size (Id : E) return U;
6029 function Component_Type (Id : E) return E;
6030 function Corresponding_Concurrent_Type (Id : E) return E;
6031 function Corresponding_Discriminant (Id : E) return E;
6032 function Corresponding_Equality (Id : E) return E;
5042f726 6033 function Corresponding_Protected_Entry (Id : E) return E;
f937473f
RD
6034 function Corresponding_Record_Type (Id : E) return E;
6035 function Corresponding_Remote_Type (Id : E) return E;
6036 function Current_Use_Clause (Id : E) return E;
6037 function Current_Value (Id : E) return N;
6038 function Debug_Info_Off (Id : E) return B;
6039 function Debug_Renaming_Link (Id : E) return E;
b16d9747 6040 function Dispatch_Table_Wrappers (Id : E) return L;
f937473f
RD
6041 function DTC_Entity (Id : E) return E;
6042 function DT_Entry_Count (Id : E) return U;
6043 function DT_Offset_To_Top_Func (Id : E) return E;
6044 function DT_Position (Id : E) return U;
6045 function Default_Expr_Function (Id : E) return E;
6046 function Default_Expressions_Processed (Id : E) return B;
6047 function Default_Value (Id : E) return N;
6048 function Delay_Cleanups (Id : E) return B;
6049 function Delay_Subprogram_Descriptors (Id : E) return B;
6050 function Delta_Value (Id : E) return R;
6051 function Dependent_Instances (Id : E) return L;
6052 function Depends_On_Private (Id : E) return B;
6053 function Digits_Value (Id : E) return U;
6054 function Directly_Designated_Type (Id : E) return E;
6055 function Discard_Names (Id : E) return B;
6056 function Discriminal (Id : E) return E;
6057 function Discriminal_Link (Id : E) return E;
6058 function Discriminant_Checking_Func (Id : E) return E;
6059 function Discriminant_Constraint (Id : E) return L;
6060 function Discriminant_Default_Value (Id : E) return N;
6061 function Discriminant_Number (Id : E) return U;
6062 function Elaborate_Body_Desirable (Id : E) return B;
6063 function Elaboration_Entity (Id : E) return E;
6064 function Elaboration_Entity_Required (Id : E) return B;
6065 function Enclosing_Scope (Id : E) return E;
6066 function Entry_Accepted (Id : E) return B;
6067 function Entry_Bodies_Array (Id : E) return E;
6068 function Entry_Cancel_Parameter (Id : E) return E;
6069 function Entry_Component (Id : E) return E;
6070 function Entry_Formal (Id : E) return E;
6071 function Entry_Index_Constant (Id : E) return E;
6072 function Entry_Index_Type (Id : E) return E;
dac3bede 6073 function Contract (Id : E) return N;
f937473f
RD
6074 function Entry_Parameters_Type (Id : E) return E;
6075 function Enum_Pos_To_Rep (Id : E) return E;
6076 function Enumeration_Pos (Id : E) return U;
6077 function Enumeration_Rep (Id : E) return U;
6078 function Enumeration_Rep_Expr (Id : E) return N;
6079 function Equivalent_Type (Id : E) return E;
6080 function Esize (Id : E) return U;
6081 function Exception_Code (Id : E) return U;
6082 function Extra_Accessibility (Id : E) return E;
63585f75 6083 function Extra_Accessibility_Of_Result (Id : E) return E;
f937473f
RD
6084 function Extra_Constrained (Id : E) return E;
6085 function Extra_Formal (Id : E) return E;
6086 function Extra_Formals (Id : E) return E;
ce0bead3 6087 function Can_Use_Internal_Rep (Id : E) return B;
d3f70b35 6088 function Finalization_Master (Id : E) return E;
f937473f 6089 function Finalize_Storage_Only (Id : E) return B;
df3e68b1 6090 function Finalizer (Id : E) return E;
f937473f 6091 function First_Entity (Id : E) return E;
51bf9bdf 6092 function First_Exit_Statement (Id : E) return N;
f937473f
RD
6093 function First_Index (Id : E) return N;
6094 function First_Literal (Id : E) return E;
6095 function First_Optional_Parameter (Id : E) return E;
6096 function First_Private_Entity (Id : E) return E;
6097 function First_Rep_Item (Id : E) return N;
23c799b1 6098 function Float_Rep (Id : E) return F;
f937473f
RD
6099 function Freeze_Node (Id : E) return N;
6100 function From_With_Type (Id : E) return B;
6101 function Full_View (Id : E) return E;
f937473f
RD
6102 function Generic_Homonym (Id : E) return E;
6103 function Generic_Renamings (Id : E) return L;
6104 function Handler_Records (Id : E) return S;
6105 function Has_Aliased_Components (Id : E) return B;
6106 function Has_Alignment_Clause (Id : E) return B;
6107 function Has_All_Calls_Remote (Id : E) return B;
6108 function Has_Anon_Block_Suffix (Id : E) return B;
11fa950b 6109 function Has_Anonymous_Master (Id : E) return B;
f937473f
RD
6110 function Has_Atomic_Components (Id : E) return B;
6111 function Has_Biased_Representation (Id : E) return B;
6112 function Has_Completion (Id : E) return B;
6113 function Has_Completion_In_Body (Id : E) return B;
6114 function Has_Complex_Representation (Id : E) return B;
6115 function Has_Component_Size_Clause (Id : E) return B;
6116 function Has_Constrained_Partial_View (Id : E) return B;
6117 function Has_Contiguous_Rep (Id : E) return B;
6118 function Has_Controlled_Component (Id : E) return B;
6119 function Has_Controlling_Result (Id : E) return B;
6120 function Has_Convention_Pragma (Id : E) return B;
a01b9df6 6121 function Has_Default_Aspect (Id : E) return B;
c159409f 6122 function Has_Delayed_Aspects (Id : E) return B;
f937473f
RD
6123 function Has_Delayed_Freeze (Id : E) return B;
6124 function Has_Discriminants (Id : E) return B;
5d37ba92 6125 function Has_Dispatch_Table (Id : E) return B;
f937473f
RD
6126 function Has_Enumeration_Rep_Clause (Id : E) return B;
6127 function Has_Exit (Id : E) return B;
6128 function Has_External_Tag_Rep_Clause (Id : E) return B;
df3e68b1 6129 function Has_Forward_Instantiation (Id : E) return B;
f937473f
RD
6130 function Has_Fully_Qualified_Name (Id : E) return B;
6131 function Has_Gigi_Rep_Item (Id : E) return B;
6132 function Has_Homonym (Id : E) return B;
0da80d7d 6133 function Has_Implicit_Dereference (Id : E) return B;
e606088a 6134 function Has_Inheritable_Invariants (Id : E) return B;
5d37ba92 6135 function Has_Initial_Value (Id : E) return B;
e606088a 6136 function Has_Invariants (Id : E) return B;
f937473f
RD
6137 function Has_Interrupt_Handler (Id : E) return B;
6138 function Has_Machine_Radix_Clause (Id : E) return B;
6139 function Has_Master_Entity (Id : E) return B;
6140 function Has_Missing_Return (Id : E) return B;
6141 function Has_Nested_Block_With_Handler (Id : E) return B;
f937473f
RD
6142 function Has_Non_Standard_Rep (Id : E) return B;
6143 function Has_Object_Size_Clause (Id : E) return B;
6144 function Has_Per_Object_Constraint (Id : E) return B;
6145 function Has_Persistent_BSS (Id : E) return B;
21d27997 6146 function Has_Postconditions (Id : E) return B;
f937473f
RD
6147 function Has_Pragma_Controlled (Id : E) return B;
6148 function Has_Pragma_Elaborate_Body (Id : E) return B;
6149 function Has_Pragma_Inline (Id : E) return B;
ce0bead3 6150 function Has_Pragma_Inline_Always (Id : E) return B;
bd29d519 6151 function Has_Pragma_Ordered (Id : E) return B;
f937473f 6152 function Has_Pragma_Pack (Id : E) return B;
5d37ba92 6153 function Has_Pragma_Preelab_Init (Id : E) return B;
f937473f
RD
6154 function Has_Pragma_Pure (Id : E) return B;
6155 function Has_Pragma_Pure_Function (Id : E) return B;
4c8a5bb8 6156 function Has_Pragma_Thread_Local_Storage (Id : E) return B;
9d77af56 6157 function Has_Pragma_Unmodified (Id : E) return B;
f937473f
RD
6158 function Has_Pragma_Unreferenced (Id : E) return B;
6159 function Has_Pragma_Unreferenced_Objects (Id : E) return B;
fd0ff1cf 6160 function Has_Predicates (Id : E) return B;
f937473f 6161 function Has_Primitive_Operations (Id : E) return B;
87729e5a 6162 function Has_Private_Ancestor (Id : E) return B;
f937473f
RD
6163 function Has_Qualified_Name (Id : E) return B;
6164 function Has_RACW (Id : E) return B;
6165 function Has_Record_Rep_Clause (Id : E) return B;
6166 function Has_Recursive_Call (Id : E) return B;
6167 function Has_Size_Clause (Id : E) return B;
6168 function Has_Small_Clause (Id : E) return B;
6169 function Has_Specified_Layout (Id : E) return B;
6170 function Has_Specified_Stream_Input (Id : E) return B;
6171 function Has_Specified_Stream_Output (Id : E) return B;
6172 function Has_Specified_Stream_Read (Id : E) return B;
6173 function Has_Specified_Stream_Write (Id : E) return B;
6174 function Has_Static_Discriminants (Id : E) return B;
6175 function Has_Storage_Size_Clause (Id : E) return B;
6176 function Has_Stream_Size_Clause (Id : E) return B;
6177 function Has_Subprogram_Descriptor (Id : E) return B;
6178 function Has_Task (Id : E) return B;
ce0bead3 6179 function Has_Thunks (Id : E) return B;
f937473f
RD
6180 function Has_Unchecked_Union (Id : E) return B;
6181 function Has_Unknown_Discriminants (Id : E) return B;
df3e68b1 6182 function Has_Up_Level_Access (Id : E) return B;
f937473f
RD
6183 function Has_Volatile_Components (Id : E) return B;
6184 function Has_Xref_Entry (Id : E) return B;
6185 function Hiding_Loop_Variable (Id : E) return E;
6186 function Homonym (Id : E) return E;
6187 function In_Package_Body (Id : E) return B;
6188 function In_Private_Part (Id : E) return B;
6189 function In_Use (Id : E) return B;
6190 function Inner_Instances (Id : E) return L;
ce2b6ba5 6191 function Interface_Alias (Id : E) return E;
cdcb8ccb 6192 function Interfaces (Id : E) return L;
f937473f
RD
6193 function Interface_Name (Id : E) return N;
6194 function Is_AST_Entry (Id : E) return B;
6195 function Is_Abstract_Subprogram (Id : E) return B;
6196 function Is_Abstract_Type (Id : E) return B;
f937473f
RD
6197 function Is_Access_Constant (Id : E) return B;
6198 function Is_Ada_2005_Only (Id : E) return B;
599a7411 6199 function Is_Ada_2012_Only (Id : E) return B;
f937473f
RD
6200 function Is_Aliased (Id : E) return B;
6201 function Is_Asynchronous (Id : E) return B;
6202 function Is_Atomic (Id : E) return B;
6203 function Is_Bit_Packed_Array (Id : E) return B;
6204 function Is_CPP_Class (Id : E) return B;
6205 function Is_Called (Id : E) return B;
6206 function Is_Character_Type (Id : E) return B;
6207 function Is_Child_Unit (Id : E) return B;
6208 function Is_Class_Wide_Equivalent_Type (Id : E) return B;
6209 function Is_Compilation_Unit (Id : E) return B;
6210 function Is_Completely_Hidden (Id : E) return B;
6211 function Is_Constr_Subt_For_UN_Aliased (Id : E) return B;
6212 function Is_Constr_Subt_For_U_Nominal (Id : E) return B;
6213 function Is_Constrained (Id : E) return B;
6214 function Is_Constructor (Id : E) return B;
6215 function Is_Controlled (Id : E) return B;
6216 function Is_Controlling_Formal (Id : E) return B;
6217 function Is_Discrim_SO_Function (Id : E) return B;
21d27997 6218 function Is_Dispatch_Table_Entity (Id : E) return B;
f937473f
RD
6219 function Is_Dispatching_Operation (Id : E) return B;
6220 function Is_Eliminated (Id : E) return B;
6221 function Is_Entry_Formal (Id : E) return B;
6222 function Is_Exported (Id : E) return B;
6223 function Is_First_Subtype (Id : E) return B;
6224 function Is_For_Access_Subtype (Id : E) return B;
6225 function Is_Frozen (Id : E) return B;
6226 function Is_Generic_Instance (Id : E) return B;
6227 function Is_Hidden (Id : E) return B;
6228 function Is_Hidden_Open_Scope (Id : E) return B;
6229 function Is_Immediately_Visible (Id : E) return B;
6230 function Is_Imported (Id : E) return B;
6231 function Is_Inlined (Id : E) return B;
6232 function Is_Interface (Id : E) return B;
6233 function Is_Instantiated (Id : E) return B;
6234 function Is_Internal (Id : E) return B;
6235 function Is_Interrupt_Handler (Id : E) return B;
6236 function Is_Intrinsic_Subprogram (Id : E) return B;
6237 function Is_Itype (Id : E) return B;
6238 function Is_Known_Non_Null (Id : E) return B;
6239 function Is_Known_Null (Id : E) return B;
6240 function Is_Known_Valid (Id : E) return B;
6241 function Is_Limited_Composite (Id : E) return B;
6242 function Is_Limited_Interface (Id : E) return B;
ce0bead3 6243 function Is_Local_Anonymous_Access (Id : E) return B;
f937473f
RD
6244 function Is_Machine_Code_Subprogram (Id : E) return B;
6245 function Is_Non_Static_Subtype (Id : E) return B;
6246 function Is_Null_Init_Proc (Id : E) return B;
6247 function Is_Obsolescent (Id : E) return B;
ce0bead3 6248 function Is_Only_Out_Parameter (Id : E) return B;
f937473f
RD
6249 function Is_Optional_Parameter (Id : E) return B;
6250 function Is_Package_Body_Entity (Id : E) return B;
6251 function Is_Packed (Id : E) return B;
6252 function Is_Packed_Array_Type (Id : E) return B;
6253 function Is_Potentially_Use_Visible (Id : E) return B;
6254 function Is_Preelaborated (Id : E) return B;
5d37ba92 6255 function Is_Primitive (Id : E) return B;
f937473f
RD
6256 function Is_Primitive_Wrapper (Id : E) return B;
6257 function Is_Private_Composite (Id : E) return B;
6258 function Is_Private_Descendant (Id : E) return B;
d44202ba 6259 function Is_Private_Primitive (Id : E) return B;
df3e68b1 6260 function Is_Processed_Transient (Id : E) return B;
f937473f
RD
6261 function Is_Public (Id : E) return B;
6262 function Is_Pure (Id : E) return B;
6263 function Is_Pure_Unit_Access_Type (Id : E) return B;
685094bf 6264 function Is_RACW_Stub_Type (Id : E) return B;
d5e96bc6 6265 function Is_Raised (Id : E) return B;
f937473f
RD
6266 function Is_Remote_Call_Interface (Id : E) return B;
6267 function Is_Remote_Types (Id : E) return B;
6268 function Is_Renaming_Of_Object (Id : E) return B;
6269 function Is_Return_Object (Id : E) return B;
273adcdf 6270 function Is_Safe_To_Reevaluate (Id : E) return B;
f937473f
RD
6271 function Is_Shared_Passive (Id : E) return B;
6272 function Is_Statically_Allocated (Id : E) return B;
f937473f
RD
6273 function Is_Tag (Id : E) return B;
6274 function Is_Tagged_Type (Id : E) return B;
ce0bead3 6275 function Is_Thunk (Id : E) return B;
0f282086 6276 function Is_Trivial_Subprogram (Id : E) return B;
f937473f
RD
6277 function Is_True_Constant (Id : E) return B;
6278 function Is_Unchecked_Union (Id : E) return B;
9013065b 6279 function Is_Underlying_Record_View (Id : E) return B;
f937473f
RD
6280 function Is_Unsigned_Type (Id : E) return B;
6281 function Is_VMS_Exception (Id : E) return B;
6282 function Is_Valued_Procedure (Id : E) return B;
6283 function Is_Visible_Child_Unit (Id : E) return B;
6284 function Is_Visible_Formal (Id : E) return B;
6285 function Is_Volatile (Id : E) return B;
6286 function Itype_Printed (Id : E) return B;
6287 function Kill_Elaboration_Checks (Id : E) return B;
6288 function Kill_Range_Checks (Id : E) return B;
6289 function Kill_Tag_Checks (Id : E) return B;
6290 function Known_To_Have_Preelab_Init (Id : E) return B;
6291 function Last_Assignment (Id : E) return N;
6292 function Last_Entity (Id : E) return E;
6293 function Limited_View (Id : E) return E;
6294 function Lit_Indexes (Id : E) return E;
6295 function Lit_Strings (Id : E) return E;
fad0600d 6296 function Low_Bound_Tested (Id : E) return B;
f937473f
RD
6297 function Machine_Radix_10 (Id : E) return B;
6298 function Master_Id (Id : E) return E;
6299 function Materialize_Entity (Id : E) return B;
6300 function Mechanism (Id : E) return M;
6301 function Modulus (Id : E) return U;
6302 function Must_Be_On_Byte_Boundary (Id : E) return B;
6303 function Must_Have_Preelab_Init (Id : E) return B;
6304 function Needs_Debug_Info (Id : E) return B;
6305 function Needs_No_Actuals (Id : E) return B;
6306 function Never_Set_In_Source (Id : E) return B;
6307 function Next_Inlined_Subprogram (Id : E) return E;
6308 function No_Pool_Assigned (Id : E) return B;
6309 function No_Return (Id : E) return B;
6310 function No_Strict_Aliasing (Id : E) return B;
6311 function Non_Binary_Modulus (Id : E) return B;
6312 function Non_Limited_View (Id : E) return E;
6313 function Nonzero_Is_True (Id : E) return B;
6314 function Normalized_First_Bit (Id : E) return U;
6315 function Normalized_Position (Id : E) return U;
6316 function Normalized_Position_Max (Id : E) return U;
d1f453b7 6317 function OK_To_Rename (Id : E) return B;
0f282086 6318 function OK_To_Reorder_Components (Id : E) return B;
21d27997
RD
6319 function Optimize_Alignment_Space (Id : E) return B;
6320 function Optimize_Alignment_Time (Id : E) return B;
aa1e353a 6321 function Original_Access_Type (Id : E) return E;
f937473f
RD
6322 function Original_Array_Type (Id : E) return E;
6323 function Original_Record_Component (Id : E) return E;
21d27997 6324 function Overlays_Constant (Id : E) return B;
f937473f
RD
6325 function Overridden_Operation (Id : E) return E;
6326 function Package_Instantiation (Id : E) return N;
6327 function Packed_Array_Type (Id : E) return E;
6328 function Parent_Subtype (Id : E) return E;
7ca78bba 6329 function Postcondition_Proc (Id : E) return E;
b7f17b20 6330 function PPC_Wrapper (Id : E) return E;
ef2a63ba 6331 function Direct_Primitive_Operations (Id : E) return L;
f937473f 6332 function Prival (Id : E) return E;
21d27997 6333 function Prival_Link (Id : E) return E;
f937473f
RD
6334 function Private_Dependents (Id : E) return L;
6335 function Private_View (Id : E) return N;
6336 function Protected_Body_Subprogram (Id : E) return E;
6337 function Protected_Formal (Id : E) return E;
21d27997 6338 function Protection_Object (Id : E) return E;
f937473f
RD
6339 function RM_Size (Id : E) return U;
6340 function Reachable (Id : E) return B;
6341 function Referenced (Id : E) return B;
6342 function Referenced_As_LHS (Id : E) return B;
ce0bead3 6343 function Referenced_As_Out_Parameter (Id : E) return B;
f937473f
RD
6344 function Register_Exception_Call (Id : E) return N;
6345 function Related_Array_Object (Id : E) return E;
a4941eec 6346 function Related_Expression (Id : E) return N;
f937473f 6347 function Related_Instance (Id : E) return E;
ce0bead3 6348 function Related_Type (Id : E) return E;
21d27997 6349 function Relative_Deadline_Variable (Id : E) return E;
f937473f 6350 function Renamed_Entity (Id : E) return N;
ce0bead3 6351 function Renamed_In_Spec (Id : E) return B;
f937473f
RD
6352 function Renamed_Object (Id : E) return N;
6353 function Renaming_Map (Id : E) return U;
6354 function Requires_Overriding (Id : E) return B;
35a1c212 6355 function Return_Flag_Or_Transient_Decl (Id : E) return E;
f937473f
RD
6356 function Return_Present (Id : E) return B;
6357 function Return_Applies_To (Id : E) return N;
6358 function Returns_By_Ref (Id : E) return B;
6359 function Reverse_Bit_Order (Id : E) return B;
6360 function Scalar_Range (Id : E) return N;
6361 function Scale_Value (Id : E) return U;
6362 function Scope_Depth_Value (Id : E) return U;
6363 function Sec_Stack_Needed_For_Return (Id : E) return B;
6364 function Shadow_Entities (Id : E) return S;
685094bf 6365 function Shared_Var_Procs_Instance (Id : E) return E;
f937473f
RD
6366 function Size_Check_Code (Id : E) return N;
6367 function Size_Known_At_Compile_Time (Id : E) return B;
6368 function Size_Depends_On_Discriminant (Id : E) return B;
6369 function Small_Value (Id : E) return R;
6370 function Spec_Entity (Id : E) return E;
86200f66 6371 function Static_Predicate (Id : E) return S;
f937473f 6372 function Storage_Size_Variable (Id : E) return E;
0a36105d
JM
6373 function Static_Elaboration_Desired (Id : E) return B;
6374 function Static_Initialization (Id : E) return N;
f937473f
RD
6375 function Stored_Constraint (Id : E) return L;
6376 function Strict_Alignment (Id : E) return B;
6377 function String_Literal_Length (Id : E) return U;
6378 function String_Literal_Low_Bound (Id : E) return N;
fd0ff1cf 6379 function Subprograms_For_Type (Id : E) return E;
f937473f 6380 function Suppress_Elaboration_Warnings (Id : E) return B;
5b1e6aca 6381 function Suppress_Initialization (Id : E) return B;
f937473f 6382 function Suppress_Style_Checks (Id : E) return B;
0a36105d 6383 function Suppress_Value_Tracking_On_Call (Id : E) return B;
f937473f
RD
6384 function Task_Body_Procedure (Id : E) return N;
6385 function Treat_As_Volatile (Id : E) return B;
6386 function Underlying_Full_View (Id : E) return E;
39f346aa 6387 function Underlying_Record_View (Id : E) return E;
0a36105d 6388 function Universal_Aliasing (Id : E) return B;
f937473f 6389 function Unset_Reference (Id : E) return N;
5d37ba92 6390 function Used_As_Generic_Actual (Id : E) return B;
f937473f
RD
6391 function Uses_Sec_Stack (Id : E) return B;
6392 function Vax_Float (Id : E) return B;
6393 function Warnings_Off (Id : E) return B;
0f282086
RD
6394 function Warnings_Off_Used (Id : E) return B;
6395 function Warnings_Off_Used_Unmodified (Id : E) return B;
6396 function Warnings_Off_Used_Unreferenced (Id : E) return B;
f937473f
RD
6397 function Was_Hidden (Id : E) return B;
6398 function Wrapped_Entity (Id : E) return E;
70482933
RK
6399
6400 -------------------------------
6401 -- Classification Attributes --
6402 -------------------------------
6403
6404 -- These functions provide a convenient functional notation for testing
6405 -- whether an Ekind value belongs to a specified kind, for example the
6406 -- function Is_Elementary_Type tests if its argument is in Elementary_Kind.
6407 -- In some cases, the test is of an entity attribute (e.g. in the case of
6408 -- Is_Generic_Type where the Ekind does not provide the needed information)
6409
f937473f
RD
6410 function Is_Access_Type (Id : E) return B;
6411 function Is_Access_Protected_Subprogram_Type (Id : E) return B;
0f282086 6412 function Is_Access_Subprogram_Type (Id : E) return B;
7a963087 6413 function Is_Aggregate_Type (Id : E) return B;
f937473f 6414 function Is_Array_Type (Id : E) return B;
67ce0d7e 6415 function Is_Assignable (Id : E) return B;
f937473f
RD
6416 function Is_Class_Wide_Type (Id : E) return B;
6417 function Is_Composite_Type (Id : E) return B;
6418 function Is_Concurrent_Body (Id : E) return B;
6419 function Is_Concurrent_Record_Type (Id : E) return B;
6420 function Is_Concurrent_Type (Id : E) return B;
6421 function Is_Decimal_Fixed_Point_Type (Id : E) return B;
6422 function Is_Digits_Type (Id : E) return B;
d5e96bc6 6423 function Is_Descendent_Of_Address (Id : E) return B;
f937473f
RD
6424 function Is_Discrete_Or_Fixed_Point_Type (Id : E) return B;
6425 function Is_Discrete_Type (Id : E) return B;
6426 function Is_Elementary_Type (Id : E) return B;
6427 function Is_Entry (Id : E) return B;
6428 function Is_Enumeration_Type (Id : E) return B;
6429 function Is_Fixed_Point_Type (Id : E) return B;
6430 function Is_Floating_Point_Type (Id : E) return B;
6431 function Is_Formal (Id : E) return B;
6432 function Is_Formal_Object (Id : E) return B;
6433 function Is_Formal_Subprogram (Id : E) return B;
6434 function Is_Generic_Actual_Type (Id : E) return B;
6435 function Is_Generic_Unit (Id : E) return B;
6436 function Is_Generic_Type (Id : E) return B;
6437 function Is_Generic_Subprogram (Id : E) return B;
6438 function Is_Incomplete_Or_Private_Type (Id : E) return B;
6439 function Is_Incomplete_Type (Id : E) return B;
6440 function Is_Integer_Type (Id : E) return B;
6441 function Is_Limited_Record (Id : E) return B;
6442 function Is_Modular_Integer_Type (Id : E) return B;
6443 function Is_Named_Number (Id : E) return B;
6444 function Is_Numeric_Type (Id : E) return B;
6445 function Is_Object (Id : E) return B;
6446 function Is_Ordinary_Fixed_Point_Type (Id : E) return B;
6447 function Is_Overloadable (Id : E) return B;
f937473f
RD
6448 function Is_Private_Type (Id : E) return B;
6449 function Is_Protected_Type (Id : E) return B;
6450 function Is_Real_Type (Id : E) return B;
6451 function Is_Record_Type (Id : E) return B;
6452 function Is_Scalar_Type (Id : E) return B;
6453 function Is_Signed_Integer_Type (Id : E) return B;
6454 function Is_Subprogram (Id : E) return B;
6455 function Is_Task_Type (Id : E) return B;
6456 function Is_Type (Id : E) return B;
70482933
RK
6457
6458 -------------------------------------
6459 -- Synthesized Attribute Functions --
6460 -------------------------------------
6461
6462 -- The functions in this section synthesize attributes from the tree,
6463 -- so they do not correspond to defined fields in the entity itself.
6464
f937473f 6465 function Address_Clause (Id : E) return N;
5087048c 6466 function Aft_Value (Id : E) return U;
f937473f 6467 function Alignment_Clause (Id : E) return N;
f937473f 6468 function Base_Type (Id : E) return E;
f937473f
RD
6469 function Declaration_Node (Id : E) return N;
6470 function Designated_Type (Id : E) return E;
f937473f
RD
6471 function First_Component (Id : E) return E;
6472 function First_Component_Or_Discriminant (Id : E) return E;
f937473f
RD
6473 function First_Formal (Id : E) return E;
6474 function First_Formal_With_Extras (Id : E) return E;
f937473f
RD
6475 function Has_Attach_Handler (Id : E) return B;
6476 function Has_Entries (Id : E) return B;
6477 function Has_Foreign_Convention (Id : E) return B;
f937473f
RD
6478 function Has_Private_Declaration (Id : E) return B;
6479 function Implementation_Base_Type (Id : E) return E;
d347f572 6480 function Is_Base_Type (Id : E) return B;
f937473f 6481 function Is_Boolean_Type (Id : E) return B;
21d27997 6482 function Is_Constant_Object (Id : E) return B;
21d27997 6483 function Is_Discriminal (Id : E) return B;
f937473f 6484 function Is_Dynamic_Scope (Id : E) return B;
df3e68b1 6485 function Is_Finalizer (Id : E) return B;
f937473f 6486 function Is_Package_Or_Generic_Package (Id : E) return B;
21d27997
RD
6487 function Is_Prival (Id : E) return B;
6488 function Is_Protected_Component (Id : E) return B;
fa5aa835 6489 function Is_Protected_Interface (Id : E) return B;
f937473f 6490 function Is_Protected_Record_Type (Id : E) return B;
21d27997 6491 function Is_Standard_Character_Type (Id : E) return B;
f937473f 6492 function Is_String_Type (Id : E) return B;
fa5aa835
AC
6493 function Is_Synchronized_Interface (Id : E) return B;
6494 function Is_Task_Interface (Id : E) return B;
f937473f
RD
6495 function Is_Task_Record_Type (Id : E) return B;
6496 function Is_Wrapper_Package (Id : E) return B;
ea7f928b 6497 function Last_Formal (Id : E) return E;
d32e3cee
GB
6498 function Machine_Emax_Value (Id : E) return U;
6499 function Machine_Emin_Value (Id : E) return U;
6500 function Machine_Mantissa_Value (Id : E) return U;
6501 function Machine_Radix_Value (Id : E) return U;
6502 function Model_Emin_Value (Id : E) return U;
6503 function Model_Epsilon_Value (Id : E) return R;
6504 function Model_Mantissa_Value (Id : E) return U;
6505 function Model_Small_Value (Id : E) return R;
f937473f
RD
6506 function Next_Component (Id : E) return E;
6507 function Next_Component_Or_Discriminant (Id : E) return E;
6508 function Next_Discriminant (Id : E) return E;
6509 function Next_Formal (Id : E) return E;
6510 function Next_Formal_With_Extras (Id : E) return E;
6511 function Next_Literal (Id : E) return E;
6512 function Next_Stored_Discriminant (Id : E) return E;
6513 function Number_Dimensions (Id : E) return Pos;
f937473f
RD
6514 function Number_Entries (Id : E) return Nat;
6515 function Number_Formals (Id : E) return Pos;
a4100e55 6516 function Parameter_Mode (Id : E) return Formal_Kind;
ef2a63ba
JM
6517 function Primitive_Operations (Id : E) return L;
6518 function Root_Type (Id : E) return E;
d32e3cee
GB
6519 function Safe_Emax_Value (Id : E) return U;
6520 function Safe_First_Value (Id : E) return R;
6521 function Safe_Last_Value (Id : E) return R;
f937473f
RD
6522 function Scope_Depth_Set (Id : E) return B;
6523 function Size_Clause (Id : E) return N;
6524 function Stream_Size_Clause (Id : E) return N;
f937473f
RD
6525 function Type_High_Bound (Id : E) return N;
6526 function Type_Low_Bound (Id : E) return N;
6527 function Underlying_Type (Id : E) return E;
70482933
RK
6528
6529 ----------------------------------------------
6530 -- Type Representation Attribute Predicates --
6531 ----------------------------------------------
6532
f937473f
RD
6533 -- These predicates test the setting of the indicated attribute. If the
6534 -- value has been set, then Known is True, and Unknown is False. If no
6535 -- value is set, then Known is False and Unknown is True. The Known_Static
6536 -- predicate is true only if the value is set (Known) and is set to a
6537 -- compile time known value. Note that in the case of Alignment and
6538 -- Normalized_First_Bit, dynamic values are not possible, so we do not
46202729 6539 -- need a separate Known_Static calls in these cases. The not set (unknown)
f937473f 6540 -- values are as follows:
70482933 6541
07fc65c4
GB
6542 -- Alignment Uint_0 or No_Uint
6543 -- Component_Size Uint_0 or No_Uint
70482933 6544 -- Component_Bit_Offset No_Uint
07fc65c4
GB
6545 -- Digits_Value Uint_0 or No_Uint
6546 -- Esize Uint_0 or No_Uint
70482933
RK
6547 -- Normalized_First_Bit No_Uint
6548 -- Normalized_Position No_Uint
6549 -- Normalized_Position_Max No_Uint
07fc65c4 6550 -- RM_Size Uint_0 or No_Uint
70482933
RK
6551
6552 -- It would be cleaner to use No_Uint in all these cases, but historically
6553 -- we chose to use Uint_0 at first, and the change over will take time ???
6554 -- This is particularly true for the RM_Size field, where a value of zero
6555 -- is legitimate. We deal with this by a nasty kludge that knows that the
6556 -- value is always known static for discrete types (and no other types can
6557 -- have an RM_Size value of zero).
6558
92252980 6559 -- In two cases, Known_Static_Esize and Known_Static_RM_Size, there is one
22cb89b5 6560 -- more consideration, which is that we always return False for generic
92252980
RD
6561 -- types. Within a template, the size can look known, because of the fake
6562 -- size values we put in template types, but they are not really known and
6563 -- anyone testing if they are known within the template should get False as
6564 -- a result to prevent incorrect assumptions.
6565
70482933
RK
6566 function Known_Alignment (E : Entity_Id) return B;
6567 function Known_Component_Bit_Offset (E : Entity_Id) return B;
6568 function Known_Component_Size (E : Entity_Id) return B;
6569 function Known_Esize (E : Entity_Id) return B;
6570 function Known_Normalized_First_Bit (E : Entity_Id) return B;
6571 function Known_Normalized_Position (E : Entity_Id) return B;
6572 function Known_Normalized_Position_Max (E : Entity_Id) return B;
6573 function Known_RM_Size (E : Entity_Id) return B;
6574
6575 function Known_Static_Component_Bit_Offset (E : Entity_Id) return B;
6576 function Known_Static_Component_Size (E : Entity_Id) return B;
6577 function Known_Static_Esize (E : Entity_Id) return B;
07fc65c4 6578 function Known_Static_Normalized_First_Bit (E : Entity_Id) return B;
70482933
RK
6579 function Known_Static_Normalized_Position (E : Entity_Id) return B;
6580 function Known_Static_Normalized_Position_Max (E : Entity_Id) return B;
6581 function Known_Static_RM_Size (E : Entity_Id) return B;
6582
6583 function Unknown_Alignment (E : Entity_Id) return B;
6584 function Unknown_Component_Bit_Offset (E : Entity_Id) return B;
6585 function Unknown_Component_Size (E : Entity_Id) return B;
6586 function Unknown_Esize (E : Entity_Id) return B;
6587 function Unknown_Normalized_First_Bit (E : Entity_Id) return B;
6588 function Unknown_Normalized_Position (E : Entity_Id) return B;
6589 function Unknown_Normalized_Position_Max (E : Entity_Id) return B;
6590 function Unknown_RM_Size (E : Entity_Id) return B;
6591
6592 ------------------------------
6593 -- Attribute Set Procedures --
6594 ------------------------------
6595
f937473f
RD
6596 procedure Set_Accept_Address (Id : E; V : L);
6597 procedure Set_Access_Disp_Table (Id : E; V : L);
b16d9747 6598 procedure Set_Dispatch_Table_Wrappers (Id : E; V : L);
f937473f
RD
6599 procedure Set_Actual_Subtype (Id : E; V : E);
6600 procedure Set_Address_Taken (Id : E; V : B := True);
6601 procedure Set_Alias (Id : E; V : E);
f937473f 6602 procedure Set_Alignment (Id : E; V : U);
f937473f
RD
6603 procedure Set_Associated_Formal_Package (Id : E; V : E);
6604 procedure Set_Associated_Node_For_Itype (Id : E; V : N);
6605 procedure Set_Associated_Storage_Pool (Id : E; V : E);
6606 procedure Set_Barrier_Function (Id : E; V : N);
6607 procedure Set_Block_Node (Id : E; V : N);
6608 procedure Set_Body_Entity (Id : E; V : E);
6609 procedure Set_Body_Needed_For_SAL (Id : E; V : B := True);
6610 procedure Set_CR_Discriminant (Id : E; V : E);
6611 procedure Set_C_Pass_By_Copy (Id : E; V : B := True);
6612 procedure Set_Can_Never_Be_Null (Id : E; V : B := True);
6613 procedure Set_Checks_May_Be_Suppressed (Id : E; V : B := True);
6614 procedure Set_Class_Wide_Type (Id : E; V : E);
6615 procedure Set_Cloned_Subtype (Id : E; V : E);
6616 procedure Set_Component_Alignment (Id : E; V : C);
6617 procedure Set_Component_Bit_Offset (Id : E; V : U);
6618 procedure Set_Component_Clause (Id : E; V : N);
6619 procedure Set_Component_Size (Id : E; V : U);
6620 procedure Set_Component_Type (Id : E; V : E);
6621 procedure Set_Corresponding_Concurrent_Type (Id : E; V : E);
6622 procedure Set_Corresponding_Discriminant (Id : E; V : E);
6623 procedure Set_Corresponding_Equality (Id : E; V : E);
5042f726 6624 procedure Set_Corresponding_Protected_Entry (Id : E; V : E);
f937473f
RD
6625 procedure Set_Corresponding_Record_Type (Id : E; V : E);
6626 procedure Set_Corresponding_Remote_Type (Id : E; V : E);
6627 procedure Set_Current_Use_Clause (Id : E; V : E);
6628 procedure Set_Current_Value (Id : E; V : N);
6629 procedure Set_Debug_Info_Off (Id : E; V : B := True);
6630 procedure Set_Debug_Renaming_Link (Id : E; V : E);
6631 procedure Set_DTC_Entity (Id : E; V : E);
6632 procedure Set_DT_Entry_Count (Id : E; V : U);
6633 procedure Set_DT_Offset_To_Top_Func (Id : E; V : E);
6634 procedure Set_DT_Position (Id : E; V : U);
6635 procedure Set_Default_Expr_Function (Id : E; V : E);
6636 procedure Set_Default_Expressions_Processed (Id : E; V : B := True);
6637 procedure Set_Default_Value (Id : E; V : N);
6638 procedure Set_Delay_Cleanups (Id : E; V : B := True);
6639 procedure Set_Delay_Subprogram_Descriptors (Id : E; V : B := True);
6640 procedure Set_Delta_Value (Id : E; V : R);
6641 procedure Set_Dependent_Instances (Id : E; V : L);
6642 procedure Set_Depends_On_Private (Id : E; V : B := True);
6643 procedure Set_Digits_Value (Id : E; V : U);
6644 procedure Set_Directly_Designated_Type (Id : E; V : E);
6645 procedure Set_Discard_Names (Id : E; V : B := True);
6646 procedure Set_Discriminal (Id : E; V : E);
6647 procedure Set_Discriminal_Link (Id : E; V : E);
6648 procedure Set_Discriminant_Checking_Func (Id : E; V : E);
6649 procedure Set_Discriminant_Constraint (Id : E; V : L);
6650 procedure Set_Discriminant_Default_Value (Id : E; V : N);
6651 procedure Set_Discriminant_Number (Id : E; V : U);
6652 procedure Set_Elaborate_Body_Desirable (Id : E; V : B := True);
6653 procedure Set_Elaboration_Entity (Id : E; V : E);
6654 procedure Set_Elaboration_Entity_Required (Id : E; V : B := True);
6655 procedure Set_Enclosing_Scope (Id : E; V : E);
6656 procedure Set_Entry_Accepted (Id : E; V : B := True);
6657 procedure Set_Entry_Bodies_Array (Id : E; V : E);
6658 procedure Set_Entry_Cancel_Parameter (Id : E; V : E);
6659 procedure Set_Entry_Component (Id : E; V : E);
6660 procedure Set_Entry_Formal (Id : E; V : E);
6661 procedure Set_Entry_Index_Constant (Id : E; V : E);
dac3bede 6662 procedure Set_Contract (Id : E; V : N);
f937473f
RD
6663 procedure Set_Entry_Parameters_Type (Id : E; V : E);
6664 procedure Set_Enum_Pos_To_Rep (Id : E; V : E);
6665 procedure Set_Enumeration_Pos (Id : E; V : U);
6666 procedure Set_Enumeration_Rep (Id : E; V : U);
6667 procedure Set_Enumeration_Rep_Expr (Id : E; V : N);
6668 procedure Set_Equivalent_Type (Id : E; V : E);
6669 procedure Set_Esize (Id : E; V : U);
6670 procedure Set_Exception_Code (Id : E; V : U);
6671 procedure Set_Extra_Accessibility (Id : E; V : E);
63585f75 6672 procedure Set_Extra_Accessibility_Of_Result (Id : E; V : E);
f937473f
RD
6673 procedure Set_Extra_Constrained (Id : E; V : E);
6674 procedure Set_Extra_Formal (Id : E; V : E);
6675 procedure Set_Extra_Formals (Id : E; V : E);
ce0bead3 6676 procedure Set_Can_Use_Internal_Rep (Id : E; V : B := True);
d3f70b35 6677 procedure Set_Finalization_Master (Id : E; V : E);
f937473f 6678 procedure Set_Finalize_Storage_Only (Id : E; V : B := True);
df3e68b1 6679 procedure Set_Finalizer (Id : E; V : E);
f937473f 6680 procedure Set_First_Entity (Id : E; V : E);
51bf9bdf 6681 procedure Set_First_Exit_Statement (Id : E; V : N);
f937473f
RD
6682 procedure Set_First_Index (Id : E; V : N);
6683 procedure Set_First_Literal (Id : E; V : E);
6684 procedure Set_First_Optional_Parameter (Id : E; V : E);
6685 procedure Set_First_Private_Entity (Id : E; V : E);
6686 procedure Set_First_Rep_Item (Id : E; V : N);
23c799b1 6687 procedure Set_Float_Rep (Id : E; V : F);
f937473f
RD
6688 procedure Set_Freeze_Node (Id : E; V : N);
6689 procedure Set_From_With_Type (Id : E; V : B := True);
6690 procedure Set_Full_View (Id : E; V : E);
f937473f
RD
6691 procedure Set_Generic_Homonym (Id : E; V : E);
6692 procedure Set_Generic_Renamings (Id : E; V : L);
6693 procedure Set_Handler_Records (Id : E; V : S);
6694 procedure Set_Has_Aliased_Components (Id : E; V : B := True);
6695 procedure Set_Has_Alignment_Clause (Id : E; V : B := True);
6696 procedure Set_Has_All_Calls_Remote (Id : E; V : B := True);
6697 procedure Set_Has_Anon_Block_Suffix (Id : E; V : B := True);
11fa950b 6698 procedure Set_Has_Anonymous_Master (Id : E; V : B := True);
f937473f
RD
6699 procedure Set_Has_Atomic_Components (Id : E; V : B := True);
6700 procedure Set_Has_Biased_Representation (Id : E; V : B := True);
6701 procedure Set_Has_Completion (Id : E; V : B := True);
6702 procedure Set_Has_Completion_In_Body (Id : E; V : B := True);
6703 procedure Set_Has_Complex_Representation (Id : E; V : B := True);
6704 procedure Set_Has_Component_Size_Clause (Id : E; V : B := True);
6705 procedure Set_Has_Constrained_Partial_View (Id : E; V : B := True);
6706 procedure Set_Has_Contiguous_Rep (Id : E; V : B := True);
6707 procedure Set_Has_Controlled_Component (Id : E; V : B := True);
6708 procedure Set_Has_Controlling_Result (Id : E; V : B := True);
6709 procedure Set_Has_Convention_Pragma (Id : E; V : B := True);
a01b9df6 6710 procedure Set_Has_Default_Aspect (Id : E; V : B := True);
c159409f 6711 procedure Set_Has_Delayed_Aspects (Id : E; V : B := True);
f937473f
RD
6712 procedure Set_Has_Delayed_Freeze (Id : E; V : B := True);
6713 procedure Set_Has_Discriminants (Id : E; V : B := True);
5d37ba92 6714 procedure Set_Has_Dispatch_Table (Id : E; V : B := True);
f937473f
RD
6715 procedure Set_Has_Enumeration_Rep_Clause (Id : E; V : B := True);
6716 procedure Set_Has_Exit (Id : E; V : B := True);
6717 procedure Set_Has_External_Tag_Rep_Clause (Id : E; V : B := True);
df3e68b1 6718 procedure Set_Has_Forward_Instantiation (Id : E; V : B := True);
f937473f
RD
6719 procedure Set_Has_Fully_Qualified_Name (Id : E; V : B := True);
6720 procedure Set_Has_Gigi_Rep_Item (Id : E; V : B := True);
6721 procedure Set_Has_Homonym (Id : E; V : B := True);
0da80d7d 6722 procedure Set_Has_Implicit_Dereference (Id : E; V : B := True);
e606088a 6723 procedure Set_Has_Inheritable_Invariants (Id : E; V : B := True);
5d37ba92 6724 procedure Set_Has_Initial_Value (Id : E; V : B := True);
e606088a 6725 procedure Set_Has_Invariants (Id : E; V : B := True);
f937473f
RD
6726 procedure Set_Has_Machine_Radix_Clause (Id : E; V : B := True);
6727 procedure Set_Has_Master_Entity (Id : E; V : B := True);
6728 procedure Set_Has_Missing_Return (Id : E; V : B := True);
6729 procedure Set_Has_Nested_Block_With_Handler (Id : E; V : B := True);
f937473f
RD
6730 procedure Set_Has_Non_Standard_Rep (Id : E; V : B := True);
6731 procedure Set_Has_Object_Size_Clause (Id : E; V : B := True);
6732 procedure Set_Has_Per_Object_Constraint (Id : E; V : B := True);
6733 procedure Set_Has_Persistent_BSS (Id : E; V : B := True);
21d27997 6734 procedure Set_Has_Postconditions (Id : E; V : B := True);
f937473f
RD
6735 procedure Set_Has_Pragma_Controlled (Id : E; V : B := True);
6736 procedure Set_Has_Pragma_Elaborate_Body (Id : E; V : B := True);
6737 procedure Set_Has_Pragma_Inline (Id : E; V : B := True);
ce0bead3 6738 procedure Set_Has_Pragma_Inline_Always (Id : E; V : B := True);
bd29d519 6739 procedure Set_Has_Pragma_Ordered (Id : E; V : B := True);
f937473f 6740 procedure Set_Has_Pragma_Pack (Id : E; V : B := True);
5d37ba92 6741 procedure Set_Has_Pragma_Preelab_Init (Id : E; V : B := True);
f937473f
RD
6742 procedure Set_Has_Pragma_Pure (Id : E; V : B := True);
6743 procedure Set_Has_Pragma_Pure_Function (Id : E; V : B := True);
4c8a5bb8 6744 procedure Set_Has_Pragma_Thread_Local_Storage (Id : E; V : B := True);
9d77af56 6745 procedure Set_Has_Pragma_Unmodified (Id : E; V : B := True);
f937473f
RD
6746 procedure Set_Has_Pragma_Unreferenced (Id : E; V : B := True);
6747 procedure Set_Has_Pragma_Unreferenced_Objects (Id : E; V : B := True);
fd0ff1cf 6748 procedure Set_Has_Predicates (Id : E; V : B := True);
f937473f 6749 procedure Set_Has_Primitive_Operations (Id : E; V : B := True);
87729e5a 6750 procedure Set_Has_Private_Ancestor (Id : E; V : B := True);
f937473f
RD
6751 procedure Set_Has_Private_Declaration (Id : E; V : B := True);
6752 procedure Set_Has_Qualified_Name (Id : E; V : B := True);
6753 procedure Set_Has_RACW (Id : E; V : B := True);
6754 procedure Set_Has_Record_Rep_Clause (Id : E; V : B := True);
6755 procedure Set_Has_Recursive_Call (Id : E; V : B := True);
6756 procedure Set_Has_Size_Clause (Id : E; V : B := True);
6757 procedure Set_Has_Small_Clause (Id : E; V : B := True);
6758 procedure Set_Has_Specified_Layout (Id : E; V : B := True);
6759 procedure Set_Has_Specified_Stream_Input (Id : E; V : B := True);
6760 procedure Set_Has_Specified_Stream_Output (Id : E; V : B := True);
6761 procedure Set_Has_Specified_Stream_Read (Id : E; V : B := True);
6762 procedure Set_Has_Specified_Stream_Write (Id : E; V : B := True);
6763 procedure Set_Has_Static_Discriminants (Id : E; V : B := True);
6764 procedure Set_Has_Storage_Size_Clause (Id : E; V : B := True);
6765 procedure Set_Has_Stream_Size_Clause (Id : E; V : B := True);
6766 procedure Set_Has_Subprogram_Descriptor (Id : E; V : B := True);
6767 procedure Set_Has_Task (Id : E; V : B := True);
ce0bead3 6768 procedure Set_Has_Thunks (Id : E; V : B := True);
f937473f
RD
6769 procedure Set_Has_Unchecked_Union (Id : E; V : B := True);
6770 procedure Set_Has_Unknown_Discriminants (Id : E; V : B := True);
df3e68b1 6771 procedure Set_Has_Up_Level_Access (Id : E; V : B := True);
f937473f
RD
6772 procedure Set_Has_Volatile_Components (Id : E; V : B := True);
6773 procedure Set_Has_Xref_Entry (Id : E; V : B := True);
6774 procedure Set_Hiding_Loop_Variable (Id : E; V : E);
6775 procedure Set_Homonym (Id : E; V : E);
ce2b6ba5 6776 procedure Set_Interfaces (Id : E; V : L);
f937473f
RD
6777 procedure Set_In_Package_Body (Id : E; V : B := True);
6778 procedure Set_In_Private_Part (Id : E; V : B := True);
6779 procedure Set_In_Use (Id : E; V : B := True);
6780 procedure Set_Inner_Instances (Id : E; V : L);
ce2b6ba5 6781 procedure Set_Interface_Alias (Id : E; V : E);
f937473f
RD
6782 procedure Set_Interface_Name (Id : E; V : N);
6783 procedure Set_Is_AST_Entry (Id : E; V : B := True);
6784 procedure Set_Is_Abstract_Subprogram (Id : E; V : B := True);
6785 procedure Set_Is_Abstract_Type (Id : E; V : B := True);
f937473f
RD
6786 procedure Set_Is_Access_Constant (Id : E; V : B := True);
6787 procedure Set_Is_Ada_2005_Only (Id : E; V : B := True);
599a7411 6788 procedure Set_Is_Ada_2012_Only (Id : E; V : B := True);
f937473f
RD
6789 procedure Set_Is_Aliased (Id : E; V : B := True);
6790 procedure Set_Is_Asynchronous (Id : E; V : B := True);
6791 procedure Set_Is_Atomic (Id : E; V : B := True);
6792 procedure Set_Is_Bit_Packed_Array (Id : E; V : B := True);
6793 procedure Set_Is_CPP_Class (Id : E; V : B := True);
6794 procedure Set_Is_Called (Id : E; V : B := True);
6795 procedure Set_Is_Character_Type (Id : E; V : B := True);
6796 procedure Set_Is_Child_Unit (Id : E; V : B := True);
6797 procedure Set_Is_Class_Wide_Equivalent_Type (Id : E; V : B := True);
6798 procedure Set_Is_Compilation_Unit (Id : E; V : B := True);
6799 procedure Set_Is_Completely_Hidden (Id : E; V : B := True);
6800 procedure Set_Is_Concurrent_Record_Type (Id : E; V : B := True);
6801 procedure Set_Is_Constr_Subt_For_UN_Aliased (Id : E; V : B := True);
6802 procedure Set_Is_Constr_Subt_For_U_Nominal (Id : E; V : B := True);
6803 procedure Set_Is_Constrained (Id : E; V : B := True);
6804 procedure Set_Is_Constructor (Id : E; V : B := True);
6805 procedure Set_Is_Controlled (Id : E; V : B := True);
6806 procedure Set_Is_Controlling_Formal (Id : E; V : B := True);
d5e96bc6 6807 procedure Set_Is_Descendent_Of_Address (Id : E; V : B := True);
f937473f 6808 procedure Set_Is_Discrim_SO_Function (Id : E; V : B := True);
21d27997 6809 procedure Set_Is_Dispatch_Table_Entity (Id : E; V : B := True);
f937473f
RD
6810 procedure Set_Is_Dispatching_Operation (Id : E; V : B := True);
6811 procedure Set_Is_Eliminated (Id : E; V : B := True);
6812 procedure Set_Is_Entry_Formal (Id : E; V : B := True);
6813 procedure Set_Is_Exported (Id : E; V : B := True);
6814 procedure Set_Is_First_Subtype (Id : E; V : B := True);
6815 procedure Set_Is_For_Access_Subtype (Id : E; V : B := True);
6816 procedure Set_Is_Formal_Subprogram (Id : E; V : B := True);
6817 procedure Set_Is_Frozen (Id : E; V : B := True);
6818 procedure Set_Is_Generic_Actual_Type (Id : E; V : B := True);
6819 procedure Set_Is_Generic_Instance (Id : E; V : B := True);
6820 procedure Set_Is_Generic_Type (Id : E; V : B := True);
6821 procedure Set_Is_Hidden (Id : E; V : B := True);
6822 procedure Set_Is_Hidden_Open_Scope (Id : E; V : B := True);
6823 procedure Set_Is_Immediately_Visible (Id : E; V : B := True);
6824 procedure Set_Is_Imported (Id : E; V : B := True);
6825 procedure Set_Is_Inlined (Id : E; V : B := True);
6826 procedure Set_Is_Interface (Id : E; V : B := True);
6827 procedure Set_Is_Instantiated (Id : E; V : B := True);
6828 procedure Set_Is_Internal (Id : E; V : B := True);
6829 procedure Set_Is_Interrupt_Handler (Id : E; V : B := True);
6830 procedure Set_Is_Intrinsic_Subprogram (Id : E; V : B := True);
6831 procedure Set_Is_Itype (Id : E; V : B := True);
6832 procedure Set_Is_Known_Non_Null (Id : E; V : B := True);
6833 procedure Set_Is_Known_Null (Id : E; V : B := True);
6834 procedure Set_Is_Known_Valid (Id : E; V : B := True);
6835 procedure Set_Is_Limited_Composite (Id : E; V : B := True);
6836 procedure Set_Is_Limited_Interface (Id : E; V : B := True);
6837 procedure Set_Is_Limited_Record (Id : E; V : B := True);
ce0bead3 6838 procedure Set_Is_Local_Anonymous_Access (Id : E; V : B := True);
f937473f
RD
6839 procedure Set_Is_Machine_Code_Subprogram (Id : E; V : B := True);
6840 procedure Set_Is_Non_Static_Subtype (Id : E; V : B := True);
6841 procedure Set_Is_Null_Init_Proc (Id : E; V : B := True);
6842 procedure Set_Is_Obsolescent (Id : E; V : B := True);
ce0bead3 6843 procedure Set_Is_Only_Out_Parameter (Id : E; V : B := True);
f937473f 6844 procedure Set_Is_Optional_Parameter (Id : E; V : B := True);
f937473f
RD
6845 procedure Set_Is_Package_Body_Entity (Id : E; V : B := True);
6846 procedure Set_Is_Packed (Id : E; V : B := True);
6847 procedure Set_Is_Packed_Array_Type (Id : E; V : B := True);
6848 procedure Set_Is_Potentially_Use_Visible (Id : E; V : B := True);
6849 procedure Set_Is_Preelaborated (Id : E; V : B := True);
5d37ba92 6850 procedure Set_Is_Primitive (Id : E; V : B := True);
f937473f
RD
6851 procedure Set_Is_Primitive_Wrapper (Id : E; V : B := True);
6852 procedure Set_Is_Private_Composite (Id : E; V : B := True);
6853 procedure Set_Is_Private_Descendant (Id : E; V : B := True);
d44202ba 6854 procedure Set_Is_Private_Primitive (Id : E; V : B := True);
df3e68b1 6855 procedure Set_Is_Processed_Transient (Id : E; V : B := True);
f937473f
RD
6856 procedure Set_Is_Public (Id : E; V : B := True);
6857 procedure Set_Is_Pure (Id : E; V : B := True);
6858 procedure Set_Is_Pure_Unit_Access_Type (Id : E; V : B := True);
685094bf 6859 procedure Set_Is_RACW_Stub_Type (Id : E; V : B := True);
d5e96bc6 6860 procedure Set_Is_Raised (Id : E; V : B := True);
f937473f
RD
6861 procedure Set_Is_Remote_Call_Interface (Id : E; V : B := True);
6862 procedure Set_Is_Remote_Types (Id : E; V : B := True);
6863 procedure Set_Is_Renaming_Of_Object (Id : E; V : B := True);
6864 procedure Set_Is_Return_Object (Id : E; V : B := True);
273adcdf 6865 procedure Set_Is_Safe_To_Reevaluate (Id : E; V : B := True);
f937473f
RD
6866 procedure Set_Is_Shared_Passive (Id : E; V : B := True);
6867 procedure Set_Is_Statically_Allocated (Id : E; V : B := True);
f937473f
RD
6868 procedure Set_Is_Tag (Id : E; V : B := True);
6869 procedure Set_Is_Tagged_Type (Id : E; V : B := True);
fdce4bb7 6870 procedure Set_Is_Thunk (Id : E; V : B := True);
0f282086 6871 procedure Set_Is_Trivial_Subprogram (Id : E; V : B := True);
f937473f
RD
6872 procedure Set_Is_True_Constant (Id : E; V : B := True);
6873 procedure Set_Is_Unchecked_Union (Id : E; V : B := True);
9013065b 6874 procedure Set_Is_Underlying_Record_View (Id : E; V : B := True);
f937473f
RD
6875 procedure Set_Is_Unsigned_Type (Id : E; V : B := True);
6876 procedure Set_Is_VMS_Exception (Id : E; V : B := True);
6877 procedure Set_Is_Valued_Procedure (Id : E; V : B := True);
6878 procedure Set_Is_Visible_Child_Unit (Id : E; V : B := True);
6879 procedure Set_Is_Visible_Formal (Id : E; V : B := True);
6880 procedure Set_Is_Volatile (Id : E; V : B := True);
6881 procedure Set_Itype_Printed (Id : E; V : B := True);
6882 procedure Set_Kill_Elaboration_Checks (Id : E; V : B := True);
6883 procedure Set_Kill_Range_Checks (Id : E; V : B := True);
6884 procedure Set_Kill_Tag_Checks (Id : E; V : B := True);
6885 procedure Set_Known_To_Have_Preelab_Init (Id : E; V : B := True);
6886 procedure Set_Last_Assignment (Id : E; V : N);
6887 procedure Set_Last_Entity (Id : E; V : E);
6888 procedure Set_Limited_View (Id : E; V : E);
6889 procedure Set_Lit_Indexes (Id : E; V : E);
6890 procedure Set_Lit_Strings (Id : E; V : E);
fad0600d 6891 procedure Set_Low_Bound_Tested (Id : E; V : B := True);
f937473f
RD
6892 procedure Set_Machine_Radix_10 (Id : E; V : B := True);
6893 procedure Set_Master_Id (Id : E; V : E);
6894 procedure Set_Materialize_Entity (Id : E; V : B := True);
6895 procedure Set_Mechanism (Id : E; V : M);
6896 procedure Set_Modulus (Id : E; V : U);
6897 procedure Set_Must_Be_On_Byte_Boundary (Id : E; V : B := True);
6898 procedure Set_Must_Have_Preelab_Init (Id : E; V : B := True);
6899 procedure Set_Needs_Debug_Info (Id : E; V : B := True);
6900 procedure Set_Needs_No_Actuals (Id : E; V : B := True);
6901 procedure Set_Never_Set_In_Source (Id : E; V : B := True);
6902 procedure Set_Next_Inlined_Subprogram (Id : E; V : E);
6903 procedure Set_No_Pool_Assigned (Id : E; V : B := True);
6904 procedure Set_No_Return (Id : E; V : B := True);
6905 procedure Set_No_Strict_Aliasing (Id : E; V : B := True);
6906 procedure Set_Non_Binary_Modulus (Id : E; V : B := True);
6907 procedure Set_Non_Limited_View (Id : E; V : E);
6908 procedure Set_Nonzero_Is_True (Id : E; V : B := True);
6909 procedure Set_Normalized_First_Bit (Id : E; V : U);
6910 procedure Set_Normalized_Position (Id : E; V : U);
6911 procedure Set_Normalized_Position_Max (Id : E; V : U);
d1f453b7 6912 procedure Set_OK_To_Rename (Id : E; V : B := True);
0f282086 6913 procedure Set_OK_To_Reorder_Components (Id : E; V : B := True);
21d27997
RD
6914 procedure Set_Optimize_Alignment_Space (Id : E; V : B := True);
6915 procedure Set_Optimize_Alignment_Time (Id : E; V : B := True);
aa1e353a 6916 procedure Set_Original_Access_Type (Id : E; V : E);
f937473f
RD
6917 procedure Set_Original_Array_Type (Id : E; V : E);
6918 procedure Set_Original_Record_Component (Id : E; V : E);
21d27997 6919 procedure Set_Overlays_Constant (Id : E; V : B := True);
f937473f
RD
6920 procedure Set_Overridden_Operation (Id : E; V : E);
6921 procedure Set_Package_Instantiation (Id : E; V : N);
6922 procedure Set_Packed_Array_Type (Id : E; V : E);
6923 procedure Set_Parent_Subtype (Id : E; V : E);
7ca78bba 6924 procedure Set_Postcondition_Proc (Id : E; V : E);
b7f17b20 6925 procedure Set_PPC_Wrapper (Id : E; V : E);
ef2a63ba 6926 procedure Set_Direct_Primitive_Operations (Id : E; V : L);
f937473f 6927 procedure Set_Prival (Id : E; V : E);
21d27997 6928 procedure Set_Prival_Link (Id : E; V : E);
f937473f
RD
6929 procedure Set_Private_Dependents (Id : E; V : L);
6930 procedure Set_Private_View (Id : E; V : N);
6931 procedure Set_Protected_Body_Subprogram (Id : E; V : E);
6932 procedure Set_Protected_Formal (Id : E; V : E);
21d27997 6933 procedure Set_Protection_Object (Id : E; V : E);
f937473f
RD
6934 procedure Set_RM_Size (Id : E; V : U);
6935 procedure Set_Reachable (Id : E; V : B := True);
6936 procedure Set_Referenced (Id : E; V : B := True);
6937 procedure Set_Referenced_As_LHS (Id : E; V : B := True);
ce0bead3 6938 procedure Set_Referenced_As_Out_Parameter (Id : E; V : B := True);
f937473f
RD
6939 procedure Set_Register_Exception_Call (Id : E; V : N);
6940 procedure Set_Related_Array_Object (Id : E; V : E);
a4941eec 6941 procedure Set_Related_Expression (Id : E; V : N);
f937473f 6942 procedure Set_Related_Instance (Id : E; V : E);
ce0bead3 6943 procedure Set_Related_Type (Id : E; V : E);
21d27997 6944 procedure Set_Relative_Deadline_Variable (Id : E; V : E);
f937473f 6945 procedure Set_Renamed_Entity (Id : E; V : N);
ce0bead3 6946 procedure Set_Renamed_In_Spec (Id : E; V : B := True);
f937473f
RD
6947 procedure Set_Renamed_Object (Id : E; V : N);
6948 procedure Set_Renaming_Map (Id : E; V : U);
6949 procedure Set_Requires_Overriding (Id : E; V : B := True);
35a1c212 6950 procedure Set_Return_Flag_Or_Transient_Decl (Id : E; V : E);
f937473f
RD
6951 procedure Set_Return_Present (Id : E; V : B := True);
6952 procedure Set_Return_Applies_To (Id : E; V : N);
6953 procedure Set_Returns_By_Ref (Id : E; V : B := True);
6954 procedure Set_Reverse_Bit_Order (Id : E; V : B := True);
6955 procedure Set_Scalar_Range (Id : E; V : N);
6956 procedure Set_Scale_Value (Id : E; V : U);
6957 procedure Set_Scope_Depth_Value (Id : E; V : U);
6958 procedure Set_Sec_Stack_Needed_For_Return (Id : E; V : B := True);
6959 procedure Set_Shadow_Entities (Id : E; V : S);
685094bf 6960 procedure Set_Shared_Var_Procs_Instance (Id : E; V : E);
f937473f
RD
6961 procedure Set_Size_Check_Code (Id : E; V : N);
6962 procedure Set_Size_Depends_On_Discriminant (Id : E; V : B := True);
6963 procedure Set_Size_Known_At_Compile_Time (Id : E; V : B := True);
6964 procedure Set_Small_Value (Id : E; V : R);
6965 procedure Set_Spec_Entity (Id : E; V : E);
86200f66 6966 procedure Set_Static_Predicate (Id : E; V : S);
f937473f 6967 procedure Set_Storage_Size_Variable (Id : E; V : E);
0a36105d
JM
6968 procedure Set_Static_Elaboration_Desired (Id : E; V : B);
6969 procedure Set_Static_Initialization (Id : E; V : N);
f937473f
RD
6970 procedure Set_Stored_Constraint (Id : E; V : L);
6971 procedure Set_Strict_Alignment (Id : E; V : B := True);
6972 procedure Set_String_Literal_Length (Id : E; V : U);
6973 procedure Set_String_Literal_Low_Bound (Id : E; V : N);
fd0ff1cf 6974 procedure Set_Subprograms_For_Type (Id : E; V : E);
f937473f 6975 procedure Set_Suppress_Elaboration_Warnings (Id : E; V : B := True);
5b1e6aca 6976 procedure Set_Suppress_Initialization (Id : E; V : B := True);
f937473f 6977 procedure Set_Suppress_Style_Checks (Id : E; V : B := True);
0a36105d 6978 procedure Set_Suppress_Value_Tracking_On_Call (Id : E; V : B := True);
f937473f
RD
6979 procedure Set_Task_Body_Procedure (Id : E; V : N);
6980 procedure Set_Treat_As_Volatile (Id : E; V : B := True);
6981 procedure Set_Underlying_Full_View (Id : E; V : E);
39f346aa 6982 procedure Set_Underlying_Record_View (Id : E; V : E);
0a36105d 6983 procedure Set_Universal_Aliasing (Id : E; V : B := True);
f937473f 6984 procedure Set_Unset_Reference (Id : E; V : N);
5d37ba92 6985 procedure Set_Used_As_Generic_Actual (Id : E; V : B := True);
f937473f 6986 procedure Set_Uses_Sec_Stack (Id : E; V : B := True);
f937473f 6987 procedure Set_Warnings_Off (Id : E; V : B := True);
0f282086
RD
6988 procedure Set_Warnings_Off_Used (Id : E; V : B := True);
6989 procedure Set_Warnings_Off_Used_Unmodified (Id : E; V : B := True);
6990 procedure Set_Warnings_Off_Used_Unreferenced (Id : E; V : B := True);
f937473f
RD
6991 procedure Set_Was_Hidden (Id : E; V : B := True);
6992 procedure Set_Wrapped_Entity (Id : E; V : E);
70482933 6993
fd0ff1cf
RD
6994 ---------------------------------------------------
6995 -- Access to Subprograms in Subprograms_For_Type --
6996 ---------------------------------------------------
6997
6998 function Invariant_Procedure (Id : E) return N;
4818e7b9 6999 function Predicate_Function (Id : E) return N;
fd0ff1cf
RD
7000
7001 procedure Set_Invariant_Procedure (Id : E; V : E);
4818e7b9 7002 procedure Set_Predicate_Function (Id : E; V : E);
fd0ff1cf 7003
70482933
RK
7004 -----------------------------------
7005 -- Field Initialization Routines --
7006 -----------------------------------
7007
7008 -- These routines are overloadings of some of the above Set procedures
7009 -- where the argument is normally a Uint. The overloadings take an Int
7010 -- parameter instead, and appropriately convert it. There are also
7011 -- versions that implicitly initialize to the appropriate "not set"
7012 -- value. The not set (unknown) values are as follows:
7013
7014 -- Alignment Uint_0
7015 -- Component_Size Uint_0
7016 -- Component_Bit_Offset No_Uint
7017 -- Digits_Value Uint_0
7018 -- Esize Uint_0
7019 -- Normalized_First_Bit No_Uint
7020 -- Normalized_Position No_Uint
7021 -- Normalized_Position_Max No_Uint
7022 -- RM_Size Uint_0
7023
7024 -- It would be cleaner to use No_Uint in all these cases, but historically
7025 -- we chose to use Uint_0 at first, and the change over will take time ???
7026 -- This is particularly true for the RM_Size field, where a value of zero
7027 -- is legitimate and causes some kludges around the code.
7028
5d37ba92
ES
7029 -- Contrary to the corresponding Set procedures above, these routines
7030 -- do NOT check the entity kind of their argument, instead they set the
7031 -- underlying Uint fields directly (this allows them to be used for
7032 -- entities whose Ekind has not been set yet).
7033
70482933
RK
7034 procedure Init_Alignment (Id : E; V : Int);
7035 procedure Init_Component_Size (Id : E; V : Int);
7036 procedure Init_Component_Bit_Offset (Id : E; V : Int);
7037 procedure Init_Digits_Value (Id : E; V : Int);
7038 procedure Init_Esize (Id : E; V : Int);
7039 procedure Init_Normalized_First_Bit (Id : E; V : Int);
7040 procedure Init_Normalized_Position (Id : E; V : Int);
7041 procedure Init_Normalized_Position_Max (Id : E; V : Int);
7042 procedure Init_RM_Size (Id : E; V : Int);
7043
7044 procedure Init_Alignment (Id : E);
7045 procedure Init_Component_Size (Id : E);
7046 procedure Init_Component_Bit_Offset (Id : E);
7047 procedure Init_Digits_Value (Id : E);
7048 procedure Init_Esize (Id : E);
7049 procedure Init_Normalized_First_Bit (Id : E);
7050 procedure Init_Normalized_Position (Id : E);
7051 procedure Init_Normalized_Position_Max (Id : E);
7052 procedure Init_RM_Size (Id : E);
7053
7054 procedure Init_Size_Align (Id : E);
7055 -- This procedure initializes both size fields and the alignment
7056 -- field to all be Unknown.
7057
d15f9422
AC
7058 procedure Init_Object_Size_Align (Id : E);
7059 -- Same as Init_Size_Align except RM_Size field (which is only for types)
7060 -- is unaffected.
7061
70482933
RK
7062 procedure Init_Size (Id : E; V : Int);
7063 -- Initialize both the Esize and RM_Size fields of E to V
7064
7065 procedure Init_Component_Location (Id : E);
7066 -- Initializes all fields describing the location of a component
7067 -- (Normalized_Position, Component_Bit_Offset, Normalized_First_Bit,
7068 -- Normalized_Position_Max, Esize) to all be Unknown.
7069
7070 ---------------
7071 -- Iterators --
7072 ---------------
7073
7074 -- The call to Next_xxx (obj) is equivalent to obj := Next_xxx (obj)
7075 -- We define the set of Proc_Next_xxx routines simply for the purposes
7076 -- of inlining them without necessarily inlining the function.
7077
f937473f
RD
7078 procedure Proc_Next_Component (N : in out Node_Id);
7079 procedure Proc_Next_Component_Or_Discriminant (N : in out Node_Id);
7080 procedure Proc_Next_Discriminant (N : in out Node_Id);
7081 procedure Proc_Next_Formal (N : in out Node_Id);
7082 procedure Proc_Next_Formal_With_Extras (N : in out Node_Id);
7083 procedure Proc_Next_Index (N : in out Node_Id);
7084 procedure Proc_Next_Inlined_Subprogram (N : in out Node_Id);
7085 procedure Proc_Next_Literal (N : in out Node_Id);
7086 procedure Proc_Next_Stored_Discriminant (N : in out Node_Id);
70482933
RK
7087
7088 pragma Inline (Proc_Next_Component);
f937473f 7089 pragma Inline (Proc_Next_Component_Or_Discriminant);
70482933
RK
7090 pragma Inline (Proc_Next_Discriminant);
7091 pragma Inline (Proc_Next_Formal);
7092 pragma Inline (Proc_Next_Formal_With_Extras);
70482933
RK
7093 pragma Inline (Proc_Next_Index);
7094 pragma Inline (Proc_Next_Inlined_Subprogram);
7095 pragma Inline (Proc_Next_Literal);
fbf5a39b 7096 pragma Inline (Proc_Next_Stored_Discriminant);
70482933 7097
f937473f 7098 procedure Next_Component (N : in out Node_Id)
70482933
RK
7099 renames Proc_Next_Component;
7100
f937473f 7101 procedure Next_Component_Or_Discriminant (N : in out Node_Id)
9d77af56 7102 renames Proc_Next_Component_Or_Discriminant;
f937473f
RD
7103
7104 procedure Next_Discriminant (N : in out Node_Id)
70482933
RK
7105 renames Proc_Next_Discriminant;
7106
f937473f 7107 procedure Next_Formal (N : in out Node_Id)
70482933
RK
7108 renames Proc_Next_Formal;
7109
f937473f 7110 procedure Next_Formal_With_Extras (N : in out Node_Id)
70482933
RK
7111 renames Proc_Next_Formal_With_Extras;
7112
f937473f 7113 procedure Next_Index (N : in out Node_Id)
70482933
RK
7114 renames Proc_Next_Index;
7115
f937473f 7116 procedure Next_Inlined_Subprogram (N : in out Node_Id)
70482933
RK
7117 renames Proc_Next_Inlined_Subprogram;
7118
f937473f 7119 procedure Next_Literal (N : in out Node_Id)
70482933
RK
7120 renames Proc_Next_Literal;
7121
f937473f 7122 procedure Next_Stored_Discriminant (N : in out Node_Id)
fbf5a39b
AC
7123 renames Proc_Next_Stored_Discriminant;
7124
0f282086
RD
7125 ---------------------------
7126 -- Testing Warning Flags --
7127 ---------------------------
7128
7129 -- These routines are to be used rather than testing flags Warnings_Off,
7130 -- Has_Pragma_Unmodified, Has_Pragma_Unreferenced. They deal with setting
7131 -- the flags Warnings_Off_Used[_Unmodified|Unreferenced] for later access.
7132
7133 function Has_Warnings_Off (E : Entity_Id) return Boolean;
7134 -- If Warnings_Off is set on E, then returns True and also sets the flag
7135 -- Warnings_Off_Used on E. If Warnings_Off is not set on E, returns False
7136 -- and has no side effect.
7137
7138 function Has_Unmodified (E : Entity_Id) return Boolean;
7139 -- If flag Has_Pragma_Unmodified is set on E, returns True with no side
7140 -- effects. Otherwise if Warnings_Off is set on E, returns True and also
7141 -- sets the flag Warnings_Off_Used_Unmodified on E. If neither of the flags
7142 -- Warnings_Off nor Has_Pragma_Unmodified is set, returns False with no
7143 -- side effects.
7144
7145 function Has_Unreferenced (E : Entity_Id) return Boolean;
7146 -- If flag Has_Pragma_Unreferenced is set on E, returns True with no side
7147 -- effects. Otherwise if Warnings_Off is set on E, returns True and also
7148 -- sets the flag Warnings_Off_Used_Unreferenced on E. If neither of the
7149 -- flags Warnings_Off nor Has_Pragma_Unreferenced is set, returns False
7150 -- with no side effects.
7151
1d571f3b
AC
7152 ----------------------------------------------
7153 -- Subprograms for Accessing Rep Item Chain --
7154 ----------------------------------------------
70482933 7155
c159409f
AC
7156 -- The First_Rep_Item field of every entity points to a linked list (linked
7157 -- through Next_Rep_Item) of representation pragmas, attribute definition
7158 -- clauses, representation clauses, and aspect specifications that apply to
7159 -- the item. Note that in the case of types, it is assumed that any such
7160 -- rep items for a base type also apply to all subtypes. This is achieved
7161 -- by having the chain for subtypes link onto the chain for the base type,
7162 -- so that new entries for the subtype are added at the start of the chain.
7163 --
7164 -- Note: aspect specification nodes are linked only when evaluation of the
7165 -- expression is deferred to the freeze point. For further details see
7166 -- Sem_Ch13.Analyze_Aspect_Specifications.
1d571f3b
AC
7167
7168 function Get_Attribute_Definition_Clause
7169 (E : Entity_Id;
7170 Id : Attribute_Id) return Node_Id;
f937473f
RD
7171 -- Searches the Rep_Item chain for a given entity E, for an instance of an
7172 -- attribute definition clause with the given attribute Id. If found, the
7173 -- value returned is the N_Attribute_Definition_Clause node, otherwise
7174 -- Empty is returned.
70482933 7175
c159409f
AC
7176 function Get_Rep_Item_For_Entity
7177 (E : Entity_Id;
7178 Nam : Name_Id) return Node_Id;
7179 -- Searches the Rep_Item chain for a given entity E, for an instance of a
308e6f3a 7180 -- rep item (pragma, attribute definition clause, or aspect specification)
c159409f
AC
7181 -- whose name matches the given name. If one is found, it is returned,
7182 -- otherwise Empty is returned. Unlike the other Get routines for the
7183 -- Rep_Item chain, this only returns items whose entity matches E (it
7184 -- does not return items from the parent chain).
7185
8a95f4e8 7186 function Get_Record_Representation_Clause (E : Entity_Id) return Node_Id;
8779dffa 7187 -- Searches the Rep_Item chain for a given entity E, for a record
8a95f4e8
RD
7188 -- representation clause, and if found, returns it. Returns Empty
7189 -- if no such clause is found.
7190
07fc65c4
GB
7191 function Get_Rep_Pragma (E : Entity_Id; Nam : Name_Id) return Node_Id;
7192 -- Searches the Rep_Item chain for the given entity E, for an instance
f937473f
RD
7193 -- a representation pragma with the given name Nam. If found then the
7194 -- value returned is the N_Pragma node, otherwise Empty is returned.
07fc65c4 7195
1d571f3b
AC
7196 function Has_Rep_Pragma (E : Entity_Id; Nam : Name_Id) return Boolean;
7197 -- Searches the Rep_Item chain for the given entity E, for an instance
7198 -- of representation pragma with the given name Nam. If found then True
7199 -- is returned, otherwise False indicates that no matching entry was found.
7200
7201 function Has_Attribute_Definition_Clause
7202 (E : Entity_Id;
7203 Id : Attribute_Id) return Boolean;
f937473f
RD
7204 -- Searches the Rep_Item chain for a given entity E, for an instance of an
7205 -- attribute definition clause with the given attribute Id. If found, True
7206 -- is returned, otherwise False indicates that no matching entry was found.
1d571f3b
AC
7207
7208 procedure Record_Rep_Item (E : Entity_Id; N : Node_Id);
c159409f
AC
7209 -- N is the node for a representation pragma, representation clause, an
7210 -- attribute definition clause, or an aspect specification that applies to
7211 -- entity E. This procedure links the node N onto the Rep_Item chain for
7212 -- entity E. Note that it is an error to call this procedure with E being
7213 -- overloadable, and N being a pragma that applies to multiple overloadable
7214 -- entities (Convention, Interface, Inline, Inline_Always, Import, Export,
7215 -- External). This is not allowed even in the case where the entity is not
7216 -- overloaded, since we can't rely on it being present in the overloaded
7217 -- case, it is not useful to have it present in the non-overloaded case.
1d571f3b
AC
7218
7219 -------------------------------
7220 -- Miscellaneous Subprograms --
7221 -------------------------------
7222
7223 procedure Append_Entity (Id : Entity_Id; V : Entity_Id);
7224 -- Add an entity to the list of entities declared in the scope V
07fc65c4 7225
5d37ba92 7226 function Get_Full_View (T : Entity_Id) return Entity_Id;
47d3b920
AC
7227 -- If T is an incomplete type and the full declaration has been seen, or
7228 -- is the name of a class_wide type whose root is incomplete, return the
7229 -- corresponding full declaration, else return T itself.
5d37ba92 7230
70482933
RK
7231 function Is_Entity_Name (N : Node_Id) return Boolean;
7232 -- Test if the node N is the name of an entity (i.e. is an identifier,
7233 -- expanded name, or an attribute reference that returns an entity).
7234
7235 function Next_Index (Id : Node_Id) return Node_Id;
7236 -- Given an index from a previous call to First_Index or Next_Index,
7237 -- returns a node representing the occurrence of the next index subtype,
7238 -- or Empty if there are no more index subtypes.
7239
7240 function Scope_Depth (Id : Entity_Id) return Uint;
7241 -- Returns the scope depth value of the Id, unless the Id is a record
7242 -- type, in which case it returns the scope depth of the record scope.
7243
7244 function Subtype_Kind (K : Entity_Kind) return Entity_Kind;
7245 -- Given an entity_kind K this function returns the entity_kind
7246 -- corresponding to subtype kind of the type represented by K. For
7247 -- example if K is E_Signed_Integer_Type then E_Signed_Integer_Subtype
7248 -- is returned. If K is already a subtype kind it itself is returned. An
7249 -- internal error is generated if no such correspondence exists for K.
7250
7251 ----------------------------------
7252 -- Debugging Output Subprograms --
7253 ----------------------------------
7254
7255 procedure Write_Entity_Flags (Id : Entity_Id; Prefix : String);
7256 -- Writes a series of entries giving a line for each flag that is
7257 -- set to True. Each line is prefixed by the given string
7258
7259 procedure Write_Entity_Info (Id : Entity_Id; Prefix : String);
7260 -- A debugging procedure to write out information about an entity
7261
7262 procedure Write_Field6_Name (Id : Entity_Id);
7263 procedure Write_Field7_Name (Id : Entity_Id);
7264 procedure Write_Field8_Name (Id : Entity_Id);
7265 procedure Write_Field9_Name (Id : Entity_Id);
7266 procedure Write_Field10_Name (Id : Entity_Id);
7267 procedure Write_Field11_Name (Id : Entity_Id);
7268 procedure Write_Field12_Name (Id : Entity_Id);
7269 procedure Write_Field13_Name (Id : Entity_Id);
7270 procedure Write_Field14_Name (Id : Entity_Id);
7271 procedure Write_Field15_Name (Id : Entity_Id);
7272 procedure Write_Field16_Name (Id : Entity_Id);
7273 procedure Write_Field17_Name (Id : Entity_Id);
7274 procedure Write_Field18_Name (Id : Entity_Id);
7275 procedure Write_Field19_Name (Id : Entity_Id);
7276 procedure Write_Field20_Name (Id : Entity_Id);
7277 procedure Write_Field21_Name (Id : Entity_Id);
7278 procedure Write_Field22_Name (Id : Entity_Id);
7279 procedure Write_Field23_Name (Id : Entity_Id);
165eab5f
AC
7280 procedure Write_Field24_Name (Id : Entity_Id);
7281 procedure Write_Field25_Name (Id : Entity_Id);
7282 procedure Write_Field26_Name (Id : Entity_Id);
7283 procedure Write_Field27_Name (Id : Entity_Id);
6e443c90 7284 procedure Write_Field28_Name (Id : Entity_Id);
e606088a
AC
7285 procedure Write_Field29_Name (Id : Entity_Id);
7286 -- These routines are used in Treepr to output a nice symbolic name for
7287 -- the given field, depending on the Ekind. No blanks or end of lines are
7288 -- output, just the characters of the field name.
70482933
RK
7289
7290 --------------------
7291 -- Inline Pragmas --
7292 --------------------
7293
7294 -- Note that these inline pragmas are referenced by the XEINFO utility
7295 -- program in preparing the corresponding C header, and only those
7296 -- subprograms meeting the requirements documented in the section on
7297 -- XEINFO may be referenced in this section.
7298
7299 pragma Inline (Accept_Address);
7300 pragma Inline (Access_Disp_Table);
7301 pragma Inline (Actual_Subtype);
7302 pragma Inline (Address_Taken);
7303 pragma Inline (Alias);
7304 pragma Inline (Alignment);
70482933
RK
7305 pragma Inline (Associated_Formal_Package);
7306 pragma Inline (Associated_Node_For_Itype);
7307 pragma Inline (Associated_Storage_Pool);
7308 pragma Inline (Barrier_Function);
7309 pragma Inline (Block_Node);
7310 pragma Inline (Body_Entity);
fbf5a39b 7311 pragma Inline (Body_Needed_For_SAL);
70482933
RK
7312 pragma Inline (CR_Discriminant);
7313 pragma Inline (C_Pass_By_Copy);
fbf5a39b
AC
7314 pragma Inline (Can_Never_Be_Null);
7315 pragma Inline (Checks_May_Be_Suppressed);
70482933
RK
7316 pragma Inline (Class_Wide_Type);
7317 pragma Inline (Cloned_Subtype);
7318 pragma Inline (Component_Bit_Offset);
7319 pragma Inline (Component_Clause);
7320 pragma Inline (Component_Size);
7321 pragma Inline (Component_Type);
dac3bede 7322 pragma Inline (Contract);
70482933
RK
7323 pragma Inline (Corresponding_Concurrent_Type);
7324 pragma Inline (Corresponding_Discriminant);
7325 pragma Inline (Corresponding_Equality);
5042f726 7326 pragma Inline (Corresponding_Protected_Entry);
70482933
RK
7327 pragma Inline (Corresponding_Record_Type);
7328 pragma Inline (Corresponding_Remote_Type);
f4d379b8 7329 pragma Inline (Current_Use_Clause);
fbf5a39b 7330 pragma Inline (Current_Value);
70482933
RK
7331 pragma Inline (Debug_Info_Off);
7332 pragma Inline (Debug_Renaming_Link);
b16d9747 7333 pragma Inline (Dispatch_Table_Wrappers);
70482933
RK
7334 pragma Inline (DTC_Entity);
7335 pragma Inline (DT_Entry_Count);
ba673907 7336 pragma Inline (DT_Offset_To_Top_Func);
70482933
RK
7337 pragma Inline (DT_Position);
7338 pragma Inline (Default_Expr_Function);
7339 pragma Inline (Default_Expressions_Processed);
7340 pragma Inline (Default_Value);
7341 pragma Inline (Delay_Cleanups);
7342 pragma Inline (Delay_Subprogram_Descriptors);
7343 pragma Inline (Delta_Value);
7344 pragma Inline (Dependent_Instances);
7345 pragma Inline (Depends_On_Private);
7346 pragma Inline (Digits_Value);
ef2a63ba 7347 pragma Inline (Direct_Primitive_Operations);
70482933
RK
7348 pragma Inline (Directly_Designated_Type);
7349 pragma Inline (Discard_Names);
7350 pragma Inline (Discriminal);
7351 pragma Inline (Discriminal_Link);
7352 pragma Inline (Discriminant_Checking_Func);
7353 pragma Inline (Discriminant_Constraint);
7354 pragma Inline (Discriminant_Default_Value);
7355 pragma Inline (Discriminant_Number);
6e443c90 7356 pragma Inline (Elaborate_Body_Desirable);
70482933
RK
7357 pragma Inline (Elaboration_Entity);
7358 pragma Inline (Elaboration_Entity_Required);
7359 pragma Inline (Enclosing_Scope);
7360 pragma Inline (Entry_Accepted);
7361 pragma Inline (Entry_Bodies_Array);
7362 pragma Inline (Entry_Cancel_Parameter);
7363 pragma Inline (Entry_Component);
7364 pragma Inline (Entry_Formal);
7365 pragma Inline (Entry_Index_Constant);
7366 pragma Inline (Entry_Index_Type);
7367 pragma Inline (Entry_Parameters_Type);
7368 pragma Inline (Enum_Pos_To_Rep);
7369 pragma Inline (Enumeration_Pos);
7370 pragma Inline (Enumeration_Rep);
7371 pragma Inline (Enumeration_Rep_Expr);
7372 pragma Inline (Equivalent_Type);
7373 pragma Inline (Esize);
7374 pragma Inline (Exception_Code);
7375 pragma Inline (Extra_Accessibility);
7376 pragma Inline (Extra_Constrained);
7377 pragma Inline (Extra_Formal);
6e443c90 7378 pragma Inline (Extra_Formals);
ce0bead3 7379 pragma Inline (Can_Use_Internal_Rep);
d3f70b35 7380 pragma Inline (Finalization_Master);
df3e68b1 7381 pragma Inline (Finalizer);
70482933 7382 pragma Inline (First_Entity);
51bf9bdf 7383 pragma Inline (First_Exit_Statement);
70482933
RK
7384 pragma Inline (First_Index);
7385 pragma Inline (First_Literal);
7386 pragma Inline (First_Optional_Parameter);
7387 pragma Inline (First_Private_Entity);
7388 pragma Inline (First_Rep_Item);
7389 pragma Inline (Freeze_Node);
7390 pragma Inline (From_With_Type);
7391 pragma Inline (Full_View);
fbf5a39b 7392 pragma Inline (Generic_Homonym);
70482933 7393 pragma Inline (Generic_Renamings);
70482933
RK
7394 pragma Inline (Handler_Records);
7395 pragma Inline (Has_Aliased_Components);
7396 pragma Inline (Has_Alignment_Clause);
7397 pragma Inline (Has_All_Calls_Remote);
f4d379b8 7398 pragma Inline (Has_Anon_Block_Suffix);
11fa950b 7399 pragma Inline (Has_Anonymous_Master);
70482933
RK
7400 pragma Inline (Has_Atomic_Components);
7401 pragma Inline (Has_Biased_Representation);
7402 pragma Inline (Has_Completion);
7403 pragma Inline (Has_Completion_In_Body);
7404 pragma Inline (Has_Complex_Representation);
7405 pragma Inline (Has_Component_Size_Clause);
edd63e9b 7406 pragma Inline (Has_Constrained_Partial_View);
fbf5a39b 7407 pragma Inline (Has_Contiguous_Rep);
70482933
RK
7408 pragma Inline (Has_Controlled_Component);
7409 pragma Inline (Has_Controlling_Result);
7410 pragma Inline (Has_Convention_Pragma);
a01b9df6 7411 pragma Inline (Has_Default_Aspect);
c159409f 7412 pragma Inline (Has_Delayed_Aspects);
70482933
RK
7413 pragma Inline (Has_Delayed_Freeze);
7414 pragma Inline (Has_Discriminants);
5d37ba92 7415 pragma Inline (Has_Dispatch_Table);
70482933
RK
7416 pragma Inline (Has_Enumeration_Rep_Clause);
7417 pragma Inline (Has_Exit);
7418 pragma Inline (Has_External_Tag_Rep_Clause);
df3e68b1 7419 pragma Inline (Has_Forward_Instantiation);
70482933
RK
7420 pragma Inline (Has_Fully_Qualified_Name);
7421 pragma Inline (Has_Gigi_Rep_Item);
7422 pragma Inline (Has_Homonym);
0da80d7d 7423 pragma Inline (Has_Implicit_Dereference);
e606088a 7424 pragma Inline (Has_Inheritable_Invariants);
5d37ba92 7425 pragma Inline (Has_Initial_Value);
e606088a 7426 pragma Inline (Has_Invariants);
70482933
RK
7427 pragma Inline (Has_Machine_Radix_Clause);
7428 pragma Inline (Has_Master_Entity);
7429 pragma Inline (Has_Missing_Return);
7430 pragma Inline (Has_Nested_Block_With_Handler);
70482933
RK
7431 pragma Inline (Has_Non_Standard_Rep);
7432 pragma Inline (Has_Object_Size_Clause);
7433 pragma Inline (Has_Per_Object_Constraint);
edd63e9b 7434 pragma Inline (Has_Persistent_BSS);
21d27997 7435 pragma Inline (Has_Postconditions);
70482933
RK
7436 pragma Inline (Has_Pragma_Controlled);
7437 pragma Inline (Has_Pragma_Elaborate_Body);
7438 pragma Inline (Has_Pragma_Inline);
ce0bead3 7439 pragma Inline (Has_Pragma_Inline_Always);
bd29d519 7440 pragma Inline (Has_Pragma_Ordered);
70482933 7441 pragma Inline (Has_Pragma_Pack);
5d37ba92 7442 pragma Inline (Has_Pragma_Preelab_Init);
ba673907 7443 pragma Inline (Has_Pragma_Pure);
0839863c 7444 pragma Inline (Has_Pragma_Pure_Function);
4c8a5bb8 7445 pragma Inline (Has_Pragma_Thread_Local_Storage);
9d77af56 7446 pragma Inline (Has_Pragma_Unmodified);
07fc65c4 7447 pragma Inline (Has_Pragma_Unreferenced);
f937473f 7448 pragma Inline (Has_Pragma_Unreferenced_Objects);
fd0ff1cf 7449 pragma Inline (Has_Predicates);
70482933 7450 pragma Inline (Has_Primitive_Operations);
87729e5a 7451 pragma Inline (Has_Private_Ancestor);
70482933
RK
7452 pragma Inline (Has_Private_Declaration);
7453 pragma Inline (Has_Qualified_Name);
f937473f 7454 pragma Inline (Has_RACW);
70482933
RK
7455 pragma Inline (Has_Record_Rep_Clause);
7456 pragma Inline (Has_Recursive_Call);
7457 pragma Inline (Has_Size_Clause);
7458 pragma Inline (Has_Small_Clause);
7459 pragma Inline (Has_Specified_Layout);
edd63e9b
ES
7460 pragma Inline (Has_Specified_Stream_Input);
7461 pragma Inline (Has_Specified_Stream_Output);
7462 pragma Inline (Has_Specified_Stream_Read);
7463 pragma Inline (Has_Specified_Stream_Write);
6e443c90 7464 pragma Inline (Has_Static_Discriminants);
70482933 7465 pragma Inline (Has_Storage_Size_Clause);
82c80734 7466 pragma Inline (Has_Stream_Size_Clause);
70482933
RK
7467 pragma Inline (Has_Subprogram_Descriptor);
7468 pragma Inline (Has_Task);
ce0bead3 7469 pragma Inline (Has_Thunks);
70482933
RK
7470 pragma Inline (Has_Unchecked_Union);
7471 pragma Inline (Has_Unknown_Discriminants);
0a36105d 7472 pragma Inline (Has_Up_Level_Access);
70482933 7473 pragma Inline (Has_Volatile_Components);
fbf5a39b 7474 pragma Inline (Has_Xref_Entry);
70482933
RK
7475 pragma Inline (Hiding_Loop_Variable);
7476 pragma Inline (Homonym);
ce2b6ba5 7477 pragma Inline (Interfaces);
70482933
RK
7478 pragma Inline (In_Package_Body);
7479 pragma Inline (In_Private_Part);
7480 pragma Inline (In_Use);
7481 pragma Inline (Inner_Instances);
ce2b6ba5 7482 pragma Inline (Interface_Alias);
70482933
RK
7483 pragma Inline (Interface_Name);
7484 pragma Inline (Is_AST_Entry);
f937473f
RD
7485 pragma Inline (Is_Abstract_Subprogram);
7486 pragma Inline (Is_Abstract_Type);
70482933 7487 pragma Inline (Is_Access_Constant);
6e443c90 7488 pragma Inline (Is_Ada_2005_Only);
599a7411 7489 pragma Inline (Is_Ada_2012_Only);
70482933 7490 pragma Inline (Is_Access_Type);
f937473f 7491 pragma Inline (Is_Access_Protected_Subprogram_Type);
0f282086 7492 pragma Inline (Is_Access_Subprogram_Type);
7a963087 7493 pragma Inline (Is_Aggregate_Type);
70482933
RK
7494 pragma Inline (Is_Aliased);
7495 pragma Inline (Is_Array_Type);
67ce0d7e 7496 pragma Inline (Is_Assignable);
70482933
RK
7497 pragma Inline (Is_Asynchronous);
7498 pragma Inline (Is_Atomic);
7499 pragma Inline (Is_Bit_Packed_Array);
7500 pragma Inline (Is_CPP_Class);
7501 pragma Inline (Is_Called);
7502 pragma Inline (Is_Character_Type);
7503 pragma Inline (Is_Child_Unit);
fbf5a39b 7504 pragma Inline (Is_Class_Wide_Equivalent_Type);
70482933
RK
7505 pragma Inline (Is_Class_Wide_Type);
7506 pragma Inline (Is_Compilation_Unit);
7507 pragma Inline (Is_Completely_Hidden);
7508 pragma Inline (Is_Composite_Type);
7509 pragma Inline (Is_Concurrent_Body);
7510 pragma Inline (Is_Concurrent_Record_Type);
7511 pragma Inline (Is_Concurrent_Type);
7512 pragma Inline (Is_Constr_Subt_For_UN_Aliased);
7513 pragma Inline (Is_Constr_Subt_For_U_Nominal);
7514 pragma Inline (Is_Constrained);
7515 pragma Inline (Is_Constructor);
7516 pragma Inline (Is_Controlled);
7517 pragma Inline (Is_Controlling_Formal);
7518 pragma Inline (Is_Decimal_Fixed_Point_Type);
70482933
RK
7519 pragma Inline (Is_Discrim_SO_Function);
7520 pragma Inline (Is_Digits_Type);
d5e96bc6 7521 pragma Inline (Is_Descendent_Of_Address);
70482933
RK
7522 pragma Inline (Is_Discrete_Or_Fixed_Point_Type);
7523 pragma Inline (Is_Discrete_Type);
21d27997 7524 pragma Inline (Is_Dispatch_Table_Entity);
70482933
RK
7525 pragma Inline (Is_Dispatching_Operation);
7526 pragma Inline (Is_Elementary_Type);
7527 pragma Inline (Is_Eliminated);
7528 pragma Inline (Is_Entry);
7529 pragma Inline (Is_Entry_Formal);
7530 pragma Inline (Is_Enumeration_Type);
7531 pragma Inline (Is_Exported);
7532 pragma Inline (Is_First_Subtype);
7533 pragma Inline (Is_Fixed_Point_Type);
7534 pragma Inline (Is_Floating_Point_Type);
7535 pragma Inline (Is_For_Access_Subtype);
7536 pragma Inline (Is_Formal);
6e443c90 7537 pragma Inline (Is_Formal_Object);
70482933
RK
7538 pragma Inline (Is_Formal_Subprogram);
7539 pragma Inline (Is_Frozen);
7540 pragma Inline (Is_Generic_Actual_Type);
7541 pragma Inline (Is_Generic_Instance);
fbf5a39b 7542 pragma Inline (Is_Generic_Subprogram);
70482933
RK
7543 pragma Inline (Is_Generic_Type);
7544 pragma Inline (Is_Generic_Unit);
7545 pragma Inline (Is_Hidden);
7546 pragma Inline (Is_Hidden_Open_Scope);
7547 pragma Inline (Is_Immediately_Visible);
7548 pragma Inline (Is_Imported);
7549 pragma Inline (Is_Incomplete_Or_Private_Type);
6e443c90 7550 pragma Inline (Is_Incomplete_Type);
70482933 7551 pragma Inline (Is_Inlined);
a9d8907c 7552 pragma Inline (Is_Interface);
70482933
RK
7553 pragma Inline (Is_Instantiated);
7554 pragma Inline (Is_Integer_Type);
7555 pragma Inline (Is_Internal);
7556 pragma Inline (Is_Interrupt_Handler);
7557 pragma Inline (Is_Intrinsic_Subprogram);
7558 pragma Inline (Is_Itype);
fbf5a39b 7559 pragma Inline (Is_Known_Non_Null);
ba673907 7560 pragma Inline (Is_Known_Null);
70482933
RK
7561 pragma Inline (Is_Known_Valid);
7562 pragma Inline (Is_Limited_Composite);
f4d379b8 7563 pragma Inline (Is_Limited_Interface);
70482933 7564 pragma Inline (Is_Limited_Record);
ce0bead3 7565 pragma Inline (Is_Local_Anonymous_Access);
70482933
RK
7566 pragma Inline (Is_Machine_Code_Subprogram);
7567 pragma Inline (Is_Modular_Integer_Type);
7568 pragma Inline (Is_Named_Number);
7569 pragma Inline (Is_Non_Static_Subtype);
7570 pragma Inline (Is_Null_Init_Proc);
82c80734 7571 pragma Inline (Is_Obsolescent);
ce0bead3 7572 pragma Inline (Is_Only_Out_Parameter);
70482933
RK
7573 pragma Inline (Is_Numeric_Type);
7574 pragma Inline (Is_Object);
7575 pragma Inline (Is_Optional_Parameter);
7576 pragma Inline (Is_Package_Body_Entity);
7577 pragma Inline (Is_Ordinary_Fixed_Point_Type);
7578 pragma Inline (Is_Overloadable);
7579 pragma Inline (Is_Packed);
7580 pragma Inline (Is_Packed_Array_Type);
7581 pragma Inline (Is_Potentially_Use_Visible);
7582 pragma Inline (Is_Preelaborated);
5d37ba92 7583 pragma Inline (Is_Primitive);
10b93b2e 7584 pragma Inline (Is_Primitive_Wrapper);
70482933
RK
7585 pragma Inline (Is_Private_Composite);
7586 pragma Inline (Is_Private_Descendant);
d44202ba 7587 pragma Inline (Is_Private_Primitive);
70482933 7588 pragma Inline (Is_Private_Type);
df3e68b1 7589 pragma Inline (Is_Processed_Transient);
70482933 7590 pragma Inline (Is_Protected_Type);
70482933
RK
7591 pragma Inline (Is_Public);
7592 pragma Inline (Is_Pure);
edd63e9b 7593 pragma Inline (Is_Pure_Unit_Access_Type);
685094bf 7594 pragma Inline (Is_RACW_Stub_Type);
d5e96bc6 7595 pragma Inline (Is_Raised);
70482933
RK
7596 pragma Inline (Is_Real_Type);
7597 pragma Inline (Is_Record_Type);
7598 pragma Inline (Is_Remote_Call_Interface);
7599 pragma Inline (Is_Remote_Types);
7600 pragma Inline (Is_Renaming_Of_Object);
6e443c90 7601 pragma Inline (Is_Return_Object);
273adcdf 7602 pragma Inline (Is_Safe_To_Reevaluate);
70482933
RK
7603 pragma Inline (Is_Scalar_Type);
7604 pragma Inline (Is_Shared_Passive);
7605 pragma Inline (Is_Signed_Integer_Type);
7606 pragma Inline (Is_Statically_Allocated);
7607 pragma Inline (Is_Subprogram);
7608 pragma Inline (Is_Tag);
7609 pragma Inline (Is_Tagged_Type);
7610 pragma Inline (Is_True_Constant);
7611 pragma Inline (Is_Task_Type);
fdce4bb7 7612 pragma Inline (Is_Thunk);
0f282086 7613 pragma Inline (Is_Trivial_Subprogram);
70482933
RK
7614 pragma Inline (Is_Type);
7615 pragma Inline (Is_Unchecked_Union);
9013065b 7616 pragma Inline (Is_Underlying_Record_View);
70482933
RK
7617 pragma Inline (Is_Unsigned_Type);
7618 pragma Inline (Is_VMS_Exception);
7619 pragma Inline (Is_Valued_Procedure);
7620 pragma Inline (Is_Visible_Child_Unit);
6e443c90 7621 pragma Inline (Is_Visible_Formal);
653da906 7622 pragma Inline (Itype_Printed);
fbf5a39b
AC
7623 pragma Inline (Kill_Elaboration_Checks);
7624 pragma Inline (Kill_Range_Checks);
7625 pragma Inline (Kill_Tag_Checks);
6e443c90
RD
7626 pragma Inline (Known_To_Have_Preelab_Init);
7627 pragma Inline (Last_Assignment);
70482933 7628 pragma Inline (Last_Entity);
0fb2ea01 7629 pragma Inline (Limited_View);
70482933
RK
7630 pragma Inline (Lit_Indexes);
7631 pragma Inline (Lit_Strings);
fad0600d 7632 pragma Inline (Low_Bound_Tested);
70482933
RK
7633 pragma Inline (Machine_Radix_10);
7634 pragma Inline (Master_Id);
7635 pragma Inline (Materialize_Entity);
7636 pragma Inline (Mechanism);
7637 pragma Inline (Modulus);
0da2c8ac 7638 pragma Inline (Must_Be_On_Byte_Boundary);
6e443c90 7639 pragma Inline (Must_Have_Preelab_Init);
70482933
RK
7640 pragma Inline (Needs_Debug_Info);
7641 pragma Inline (Needs_No_Actuals);
fbf5a39b 7642 pragma Inline (Never_Set_In_Source);
70482933
RK
7643 pragma Inline (Next_Index);
7644 pragma Inline (Next_Inlined_Subprogram);
7645 pragma Inline (Next_Literal);
7646 pragma Inline (No_Pool_Assigned);
7647 pragma Inline (No_Return);
8a6a52dc 7648 pragma Inline (No_Strict_Aliasing);
70482933 7649 pragma Inline (Non_Binary_Modulus);
fbf5a39b 7650 pragma Inline (Non_Limited_View);
70482933
RK
7651 pragma Inline (Nonzero_Is_True);
7652 pragma Inline (Normalized_First_Bit);
7653 pragma Inline (Normalized_Position);
7654 pragma Inline (Normalized_Position_Max);
d1f453b7 7655 pragma Inline (OK_To_Rename);
0f282086 7656 pragma Inline (OK_To_Reorder_Components);
21d27997
RD
7657 pragma Inline (Optimize_Alignment_Space);
7658 pragma Inline (Optimize_Alignment_Time);
aa1e353a 7659 pragma Inline (Original_Access_Type);
07fc65c4 7660 pragma Inline (Original_Array_Type);
70482933 7661 pragma Inline (Original_Record_Component);
21d27997 7662 pragma Inline (Overlays_Constant);
10b93b2e 7663 pragma Inline (Overridden_Operation);
f4d379b8 7664 pragma Inline (Package_Instantiation);
70482933
RK
7665 pragma Inline (Packed_Array_Type);
7666 pragma Inline (Parameter_Mode);
7667 pragma Inline (Parent_Subtype);
7ca78bba 7668 pragma Inline (Postcondition_Proc);
b7f17b20 7669 pragma Inline (PPC_Wrapper);
70482933 7670 pragma Inline (Prival);
21d27997 7671 pragma Inline (Prival_Link);
70482933
RK
7672 pragma Inline (Private_Dependents);
7673 pragma Inline (Private_View);
7674 pragma Inline (Protected_Body_Subprogram);
7675 pragma Inline (Protected_Formal);
21d27997 7676 pragma Inline (Protection_Object);
70482933
RK
7677 pragma Inline (RM_Size);
7678 pragma Inline (Reachable);
7679 pragma Inline (Referenced);
fbf5a39b 7680 pragma Inline (Referenced_As_LHS);
ce0bead3 7681 pragma Inline (Referenced_As_Out_Parameter);
70482933
RK
7682 pragma Inline (Register_Exception_Call);
7683 pragma Inline (Related_Array_Object);
a4941eec 7684 pragma Inline (Related_Expression);
70482933 7685 pragma Inline (Related_Instance);
ce0bead3 7686 pragma Inline (Related_Type);
21d27997 7687 pragma Inline (Relative_Deadline_Variable);
70482933 7688 pragma Inline (Renamed_Entity);
ce0bead3 7689 pragma Inline (Renamed_In_Spec);
70482933
RK
7690 pragma Inline (Renamed_Object);
7691 pragma Inline (Renaming_Map);
f937473f 7692 pragma Inline (Requires_Overriding);
35a1c212 7693 pragma Inline (Return_Flag_Or_Transient_Decl);
70482933 7694 pragma Inline (Return_Present);
6e443c90 7695 pragma Inline (Return_Applies_To);
70482933
RK
7696 pragma Inline (Returns_By_Ref);
7697 pragma Inline (Reverse_Bit_Order);
7698 pragma Inline (Scalar_Range);
7699 pragma Inline (Scale_Value);
7700 pragma Inline (Scope_Depth_Value);
7701 pragma Inline (Sec_Stack_Needed_For_Return);
7702 pragma Inline (Shadow_Entities);
685094bf 7703 pragma Inline (Shared_Var_Procs_Instance);
70482933
RK
7704 pragma Inline (Size_Check_Code);
7705 pragma Inline (Size_Depends_On_Discriminant);
7706 pragma Inline (Size_Known_At_Compile_Time);
7707 pragma Inline (Small_Value);
7708 pragma Inline (Spec_Entity);
26df19ce 7709 pragma Inline (Static_Predicate);
70482933 7710 pragma Inline (Storage_Size_Variable);
0a36105d
JM
7711 pragma Inline (Static_Elaboration_Desired);
7712 pragma Inline (Static_Initialization);
fbf5a39b 7713 pragma Inline (Stored_Constraint);
70482933
RK
7714 pragma Inline (Strict_Alignment);
7715 pragma Inline (String_Literal_Length);
7716 pragma Inline (String_Literal_Low_Bound);
fd0ff1cf 7717 pragma Inline (Subprograms_For_Type);
70482933 7718 pragma Inline (Suppress_Elaboration_Warnings);
5b1e6aca 7719 pragma Inline (Suppress_Initialization);
70482933 7720 pragma Inline (Suppress_Style_Checks);
0a36105d 7721 pragma Inline (Suppress_Value_Tracking_On_Call);
a9d8907c 7722 pragma Inline (Task_Body_Procedure);
fbf5a39b 7723 pragma Inline (Treat_As_Volatile);
70482933 7724 pragma Inline (Underlying_Full_View);
39f346aa 7725 pragma Inline (Underlying_Record_View);
0a36105d 7726 pragma Inline (Universal_Aliasing);
70482933 7727 pragma Inline (Unset_Reference);
5d37ba92 7728 pragma Inline (Used_As_Generic_Actual);
70482933 7729 pragma Inline (Uses_Sec_Stack);
70482933 7730 pragma Inline (Warnings_Off);
0f282086
RD
7731 pragma Inline (Warnings_Off_Used);
7732 pragma Inline (Warnings_Off_Used_Unmodified);
7733 pragma Inline (Warnings_Off_Used_Unreferenced);
10b93b2e
HK
7734 pragma Inline (Was_Hidden);
7735 pragma Inline (Wrapped_Entity);
70482933
RK
7736
7737 pragma Inline (Init_Alignment);
7738 pragma Inline (Init_Component_Bit_Offset);
7739 pragma Inline (Init_Component_Size);
7740 pragma Inline (Init_Digits_Value);
7741 pragma Inline (Init_Esize);
7742 pragma Inline (Init_RM_Size);
7743
70482933
RK
7744 pragma Inline (Set_Accept_Address);
7745 pragma Inline (Set_Access_Disp_Table);
7746 pragma Inline (Set_Actual_Subtype);
7747 pragma Inline (Set_Address_Taken);
7748 pragma Inline (Set_Alias);
7749 pragma Inline (Set_Alignment);
70482933
RK
7750 pragma Inline (Set_Associated_Formal_Package);
7751 pragma Inline (Set_Associated_Node_For_Itype);
7752 pragma Inline (Set_Associated_Storage_Pool);
7753 pragma Inline (Set_Barrier_Function);
7754 pragma Inline (Set_Block_Node);
7755 pragma Inline (Set_Body_Entity);
fbf5a39b 7756 pragma Inline (Set_Body_Needed_For_SAL);
70482933
RK
7757 pragma Inline (Set_CR_Discriminant);
7758 pragma Inline (Set_C_Pass_By_Copy);
fbf5a39b
AC
7759 pragma Inline (Set_Can_Never_Be_Null);
7760 pragma Inline (Set_Checks_May_Be_Suppressed);
70482933
RK
7761 pragma Inline (Set_Class_Wide_Type);
7762 pragma Inline (Set_Cloned_Subtype);
7763 pragma Inline (Set_Component_Bit_Offset);
7764 pragma Inline (Set_Component_Clause);
7765 pragma Inline (Set_Component_Size);
7766 pragma Inline (Set_Component_Type);
dac3bede 7767 pragma Inline (Set_Contract);
70482933
RK
7768 pragma Inline (Set_Corresponding_Concurrent_Type);
7769 pragma Inline (Set_Corresponding_Discriminant);
7770 pragma Inline (Set_Corresponding_Equality);
5042f726 7771 pragma Inline (Set_Corresponding_Protected_Entry);
70482933
RK
7772 pragma Inline (Set_Corresponding_Record_Type);
7773 pragma Inline (Set_Corresponding_Remote_Type);
f4d379b8 7774 pragma Inline (Set_Current_Use_Clause);
fbf5a39b 7775 pragma Inline (Set_Current_Value);
70482933
RK
7776 pragma Inline (Set_Debug_Info_Off);
7777 pragma Inline (Set_Debug_Renaming_Link);
b16d9747 7778 pragma Inline (Set_Dispatch_Table_Wrappers);
70482933 7779 pragma Inline (Set_DTC_Entity);
ba673907
JM
7780 pragma Inline (Set_DT_Entry_Count);
7781 pragma Inline (Set_DT_Offset_To_Top_Func);
70482933 7782 pragma Inline (Set_DT_Position);
21d27997 7783 pragma Inline (Set_Relative_Deadline_Variable);
70482933
RK
7784 pragma Inline (Set_Default_Expr_Function);
7785 pragma Inline (Set_Default_Expressions_Processed);
7786 pragma Inline (Set_Default_Value);
7787 pragma Inline (Set_Delay_Cleanups);
7788 pragma Inline (Set_Delay_Subprogram_Descriptors);
7789 pragma Inline (Set_Delta_Value);
7790 pragma Inline (Set_Dependent_Instances);
7791 pragma Inline (Set_Depends_On_Private);
7792 pragma Inline (Set_Digits_Value);
ef2a63ba 7793 pragma Inline (Set_Direct_Primitive_Operations);
70482933
RK
7794 pragma Inline (Set_Directly_Designated_Type);
7795 pragma Inline (Set_Discard_Names);
7796 pragma Inline (Set_Discriminal);
7797 pragma Inline (Set_Discriminal_Link);
7798 pragma Inline (Set_Discriminant_Checking_Func);
7799 pragma Inline (Set_Discriminant_Constraint);
7800 pragma Inline (Set_Discriminant_Default_Value);
7801 pragma Inline (Set_Discriminant_Number);
6e443c90 7802 pragma Inline (Set_Elaborate_Body_Desirable);
70482933
RK
7803 pragma Inline (Set_Elaboration_Entity);
7804 pragma Inline (Set_Elaboration_Entity_Required);
7805 pragma Inline (Set_Enclosing_Scope);
7806 pragma Inline (Set_Entry_Accepted);
7807 pragma Inline (Set_Entry_Bodies_Array);
7808 pragma Inline (Set_Entry_Cancel_Parameter);
7809 pragma Inline (Set_Entry_Component);
7810 pragma Inline (Set_Entry_Formal);
7811 pragma Inline (Set_Entry_Parameters_Type);
7812 pragma Inline (Set_Enum_Pos_To_Rep);
7813 pragma Inline (Set_Enumeration_Pos);
7814 pragma Inline (Set_Enumeration_Rep);
7815 pragma Inline (Set_Enumeration_Rep_Expr);
7816 pragma Inline (Set_Equivalent_Type);
7817 pragma Inline (Set_Esize);
7818 pragma Inline (Set_Exception_Code);
7819 pragma Inline (Set_Extra_Accessibility);
7820 pragma Inline (Set_Extra_Constrained);
7821 pragma Inline (Set_Extra_Formal);
6e443c90 7822 pragma Inline (Set_Extra_Formals);
ce0bead3 7823 pragma Inline (Set_Can_Use_Internal_Rep);
d3f70b35 7824 pragma Inline (Set_Finalization_Master);
df3e68b1 7825 pragma Inline (Set_Finalizer);
70482933 7826 pragma Inline (Set_First_Entity);
51bf9bdf 7827 pragma Inline (Set_First_Exit_Statement);
70482933
RK
7828 pragma Inline (Set_First_Index);
7829 pragma Inline (Set_First_Literal);
7830 pragma Inline (Set_First_Optional_Parameter);
7831 pragma Inline (Set_First_Private_Entity);
7832 pragma Inline (Set_First_Rep_Item);
7833 pragma Inline (Set_Freeze_Node);
7834 pragma Inline (Set_From_With_Type);
7835 pragma Inline (Set_Full_View);
fbf5a39b 7836 pragma Inline (Set_Generic_Homonym);
70482933 7837 pragma Inline (Set_Generic_Renamings);
70482933
RK
7838 pragma Inline (Set_Handler_Records);
7839 pragma Inline (Set_Has_Aliased_Components);
7840 pragma Inline (Set_Has_Alignment_Clause);
7841 pragma Inline (Set_Has_All_Calls_Remote);
f4d379b8 7842 pragma Inline (Set_Has_Anon_Block_Suffix);
11fa950b 7843 pragma Inline (Set_Has_Anonymous_Master);
70482933
RK
7844 pragma Inline (Set_Has_Atomic_Components);
7845 pragma Inline (Set_Has_Biased_Representation);
7846 pragma Inline (Set_Has_Completion);
7847 pragma Inline (Set_Has_Completion_In_Body);
7848 pragma Inline (Set_Has_Complex_Representation);
7849 pragma Inline (Set_Has_Component_Size_Clause);
edd63e9b 7850 pragma Inline (Set_Has_Constrained_Partial_View);
fbf5a39b 7851 pragma Inline (Set_Has_Contiguous_Rep);
70482933
RK
7852 pragma Inline (Set_Has_Controlled_Component);
7853 pragma Inline (Set_Has_Controlling_Result);
7854 pragma Inline (Set_Has_Convention_Pragma);
a01b9df6 7855 pragma Inline (Set_Has_Default_Aspect);
c159409f 7856 pragma Inline (Set_Has_Delayed_Aspects);
70482933
RK
7857 pragma Inline (Set_Has_Delayed_Freeze);
7858 pragma Inline (Set_Has_Discriminants);
5d37ba92 7859 pragma Inline (Set_Has_Dispatch_Table);
70482933
RK
7860 pragma Inline (Set_Has_Enumeration_Rep_Clause);
7861 pragma Inline (Set_Has_Exit);
7862 pragma Inline (Set_Has_External_Tag_Rep_Clause);
df3e68b1 7863 pragma Inline (Set_Has_Forward_Instantiation);
70482933
RK
7864 pragma Inline (Set_Has_Fully_Qualified_Name);
7865 pragma Inline (Set_Has_Gigi_Rep_Item);
7866 pragma Inline (Set_Has_Homonym);
0da80d7d 7867 pragma Inline (Set_Has_Implicit_Dereference);
e606088a 7868 pragma Inline (Set_Has_Inheritable_Invariants);
5d37ba92 7869 pragma Inline (Set_Has_Initial_Value);
e606088a 7870 pragma Inline (Set_Has_Invariants);
70482933
RK
7871 pragma Inline (Set_Has_Machine_Radix_Clause);
7872 pragma Inline (Set_Has_Master_Entity);
7873 pragma Inline (Set_Has_Missing_Return);
7874 pragma Inline (Set_Has_Nested_Block_With_Handler);
70482933
RK
7875 pragma Inline (Set_Has_Non_Standard_Rep);
7876 pragma Inline (Set_Has_Object_Size_Clause);
7877 pragma Inline (Set_Has_Per_Object_Constraint);
edd63e9b 7878 pragma Inline (Set_Has_Persistent_BSS);
21d27997 7879 pragma Inline (Set_Has_Postconditions);
70482933
RK
7880 pragma Inline (Set_Has_Pragma_Controlled);
7881 pragma Inline (Set_Has_Pragma_Elaborate_Body);
7882 pragma Inline (Set_Has_Pragma_Inline);
ce0bead3 7883 pragma Inline (Set_Has_Pragma_Inline_Always);
bd29d519 7884 pragma Inline (Set_Has_Pragma_Ordered);
70482933 7885 pragma Inline (Set_Has_Pragma_Pack);
5d37ba92 7886 pragma Inline (Set_Has_Pragma_Preelab_Init);
ba673907 7887 pragma Inline (Set_Has_Pragma_Pure);
0839863c 7888 pragma Inline (Set_Has_Pragma_Pure_Function);
4c8a5bb8 7889 pragma Inline (Set_Has_Pragma_Thread_Local_Storage);
9d77af56 7890 pragma Inline (Set_Has_Pragma_Unmodified);
07fc65c4 7891 pragma Inline (Set_Has_Pragma_Unreferenced);
f937473f 7892 pragma Inline (Set_Has_Pragma_Unreferenced_Objects);
fd0ff1cf 7893 pragma Inline (Set_Has_Predicates);
70482933 7894 pragma Inline (Set_Has_Primitive_Operations);
87729e5a 7895 pragma Inline (Set_Has_Private_Ancestor);
70482933
RK
7896 pragma Inline (Set_Has_Private_Declaration);
7897 pragma Inline (Set_Has_Qualified_Name);
f937473f 7898 pragma Inline (Set_Has_RACW);
70482933
RK
7899 pragma Inline (Set_Has_Record_Rep_Clause);
7900 pragma Inline (Set_Has_Recursive_Call);
7901 pragma Inline (Set_Has_Size_Clause);
7902 pragma Inline (Set_Has_Small_Clause);
7903 pragma Inline (Set_Has_Specified_Layout);
edd63e9b
ES
7904 pragma Inline (Set_Has_Specified_Stream_Input);
7905 pragma Inline (Set_Has_Specified_Stream_Output);
7906 pragma Inline (Set_Has_Specified_Stream_Read);
7907 pragma Inline (Set_Has_Specified_Stream_Write);
6e443c90 7908 pragma Inline (Set_Has_Static_Discriminants);
70482933 7909 pragma Inline (Set_Has_Storage_Size_Clause);
0a36105d 7910 pragma Inline (Set_Has_Stream_Size_Clause);
70482933
RK
7911 pragma Inline (Set_Has_Subprogram_Descriptor);
7912 pragma Inline (Set_Has_Task);
ce0bead3 7913 pragma Inline (Set_Has_Thunks);
70482933
RK
7914 pragma Inline (Set_Has_Unchecked_Union);
7915 pragma Inline (Set_Has_Unknown_Discriminants);
0a36105d 7916 pragma Inline (Set_Has_Up_Level_Access);
70482933 7917 pragma Inline (Set_Has_Volatile_Components);
fbf5a39b 7918 pragma Inline (Set_Has_Xref_Entry);
70482933
RK
7919 pragma Inline (Set_Hiding_Loop_Variable);
7920 pragma Inline (Set_Homonym);
ce2b6ba5 7921 pragma Inline (Set_Interfaces);
70482933
RK
7922 pragma Inline (Set_In_Package_Body);
7923 pragma Inline (Set_In_Private_Part);
7924 pragma Inline (Set_In_Use);
7925 pragma Inline (Set_Inner_Instances);
ce2b6ba5 7926 pragma Inline (Set_Interface_Alias);
70482933
RK
7927 pragma Inline (Set_Interface_Name);
7928 pragma Inline (Set_Is_AST_Entry);
f937473f
RD
7929 pragma Inline (Set_Is_Abstract_Subprogram);
7930 pragma Inline (Set_Is_Abstract_Type);
70482933 7931 pragma Inline (Set_Is_Access_Constant);
6e443c90 7932 pragma Inline (Set_Is_Ada_2005_Only);
599a7411 7933 pragma Inline (Set_Is_Ada_2012_Only);
70482933
RK
7934 pragma Inline (Set_Is_Aliased);
7935 pragma Inline (Set_Is_Asynchronous);
7936 pragma Inline (Set_Is_Atomic);
7937 pragma Inline (Set_Is_Bit_Packed_Array);
7938 pragma Inline (Set_Is_CPP_Class);
7939 pragma Inline (Set_Is_Called);
7940 pragma Inline (Set_Is_Character_Type);
7941 pragma Inline (Set_Is_Child_Unit);
fbf5a39b 7942 pragma Inline (Set_Is_Class_Wide_Equivalent_Type);
70482933
RK
7943 pragma Inline (Set_Is_Compilation_Unit);
7944 pragma Inline (Set_Is_Completely_Hidden);
7945 pragma Inline (Set_Is_Concurrent_Record_Type);
7946 pragma Inline (Set_Is_Constr_Subt_For_U_Nominal);
7947 pragma Inline (Set_Is_Constr_Subt_For_UN_Aliased);
7948 pragma Inline (Set_Is_Constrained);
7949 pragma Inline (Set_Is_Constructor);
7950 pragma Inline (Set_Is_Controlled);
7951 pragma Inline (Set_Is_Controlling_Formal);
d5e96bc6 7952 pragma Inline (Set_Is_Descendent_Of_Address);
70482933 7953 pragma Inline (Set_Is_Discrim_SO_Function);
21d27997 7954 pragma Inline (Set_Is_Dispatch_Table_Entity);
70482933
RK
7955 pragma Inline (Set_Is_Dispatching_Operation);
7956 pragma Inline (Set_Is_Eliminated);
7957 pragma Inline (Set_Is_Entry_Formal);
7958 pragma Inline (Set_Is_Exported);
7959 pragma Inline (Set_Is_First_Subtype);
7960 pragma Inline (Set_Is_For_Access_Subtype);
7961 pragma Inline (Set_Is_Formal_Subprogram);
7962 pragma Inline (Set_Is_Frozen);
7963 pragma Inline (Set_Is_Generic_Actual_Type);
7964 pragma Inline (Set_Is_Generic_Instance);
7965 pragma Inline (Set_Is_Generic_Type);
7966 pragma Inline (Set_Is_Hidden);
7967 pragma Inline (Set_Is_Hidden_Open_Scope);
7968 pragma Inline (Set_Is_Immediately_Visible);
7969 pragma Inline (Set_Is_Imported);
7970 pragma Inline (Set_Is_Inlined);
a9d8907c 7971 pragma Inline (Set_Is_Interface);
70482933
RK
7972 pragma Inline (Set_Is_Instantiated);
7973 pragma Inline (Set_Is_Internal);
7974 pragma Inline (Set_Is_Interrupt_Handler);
7975 pragma Inline (Set_Is_Intrinsic_Subprogram);
7976 pragma Inline (Set_Is_Itype);
fbf5a39b 7977 pragma Inline (Set_Is_Known_Non_Null);
ba673907 7978 pragma Inline (Set_Is_Known_Null);
70482933
RK
7979 pragma Inline (Set_Is_Known_Valid);
7980 pragma Inline (Set_Is_Limited_Composite);
f4d379b8 7981 pragma Inline (Set_Is_Limited_Interface);
70482933 7982 pragma Inline (Set_Is_Limited_Record);
ce0bead3 7983 pragma Inline (Set_Is_Local_Anonymous_Access);
70482933
RK
7984 pragma Inline (Set_Is_Machine_Code_Subprogram);
7985 pragma Inline (Set_Is_Non_Static_Subtype);
7986 pragma Inline (Set_Is_Null_Init_Proc);
82c80734 7987 pragma Inline (Set_Is_Obsolescent);
ce0bead3 7988 pragma Inline (Set_Is_Only_Out_Parameter);
70482933
RK
7989 pragma Inline (Set_Is_Optional_Parameter);
7990 pragma Inline (Set_Is_Package_Body_Entity);
7991 pragma Inline (Set_Is_Packed);
7992 pragma Inline (Set_Is_Packed_Array_Type);
7993 pragma Inline (Set_Is_Potentially_Use_Visible);
7994 pragma Inline (Set_Is_Preelaborated);
5d37ba92 7995 pragma Inline (Set_Is_Primitive);
10b93b2e 7996 pragma Inline (Set_Is_Primitive_Wrapper);
70482933
RK
7997 pragma Inline (Set_Is_Private_Composite);
7998 pragma Inline (Set_Is_Private_Descendant);
d44202ba 7999 pragma Inline (Set_Is_Private_Primitive);
df3e68b1 8000 pragma Inline (Set_Is_Processed_Transient);
70482933
RK
8001 pragma Inline (Set_Is_Public);
8002 pragma Inline (Set_Is_Pure);
edd63e9b 8003 pragma Inline (Set_Is_Pure_Unit_Access_Type);
685094bf 8004 pragma Inline (Set_Is_RACW_Stub_Type);
d5e96bc6 8005 pragma Inline (Set_Is_Raised);
70482933
RK
8006 pragma Inline (Set_Is_Remote_Call_Interface);
8007 pragma Inline (Set_Is_Remote_Types);
8008 pragma Inline (Set_Is_Renaming_Of_Object);
6e443c90 8009 pragma Inline (Set_Is_Return_Object);
273adcdf 8010 pragma Inline (Set_Is_Safe_To_Reevaluate);
70482933
RK
8011 pragma Inline (Set_Is_Shared_Passive);
8012 pragma Inline (Set_Is_Statically_Allocated);
8013 pragma Inline (Set_Is_Tag);
8014 pragma Inline (Set_Is_Tagged_Type);
fdce4bb7 8015 pragma Inline (Set_Is_Thunk);
0f282086 8016 pragma Inline (Set_Is_Trivial_Subprogram);
70482933
RK
8017 pragma Inline (Set_Is_True_Constant);
8018 pragma Inline (Set_Is_Unchecked_Union);
9013065b 8019 pragma Inline (Set_Is_Underlying_Record_View);
70482933
RK
8020 pragma Inline (Set_Is_Unsigned_Type);
8021 pragma Inline (Set_Is_VMS_Exception);
8022 pragma Inline (Set_Is_Valued_Procedure);
8023 pragma Inline (Set_Is_Visible_Child_Unit);
6e443c90 8024 pragma Inline (Set_Is_Visible_Formal);
70482933 8025 pragma Inline (Set_Is_Volatile);
653da906 8026 pragma Inline (Set_Itype_Printed);
fbf5a39b
AC
8027 pragma Inline (Set_Kill_Elaboration_Checks);
8028 pragma Inline (Set_Kill_Range_Checks);
8029 pragma Inline (Set_Kill_Tag_Checks);
0a36105d 8030 pragma Inline (Set_Known_To_Have_Preelab_Init);
6e443c90 8031 pragma Inline (Set_Last_Assignment);
70482933 8032 pragma Inline (Set_Last_Entity);
0fb2ea01 8033 pragma Inline (Set_Limited_View);
70482933
RK
8034 pragma Inline (Set_Lit_Indexes);
8035 pragma Inline (Set_Lit_Strings);
fad0600d 8036 pragma Inline (Set_Low_Bound_Tested);
70482933
RK
8037 pragma Inline (Set_Machine_Radix_10);
8038 pragma Inline (Set_Master_Id);
8039 pragma Inline (Set_Materialize_Entity);
8040 pragma Inline (Set_Mechanism);
8041 pragma Inline (Set_Modulus);
0da2c8ac 8042 pragma Inline (Set_Must_Be_On_Byte_Boundary);
6e443c90 8043 pragma Inline (Set_Must_Have_Preelab_Init);
70482933
RK
8044 pragma Inline (Set_Needs_Debug_Info);
8045 pragma Inline (Set_Needs_No_Actuals);
fbf5a39b 8046 pragma Inline (Set_Never_Set_In_Source);
70482933
RK
8047 pragma Inline (Set_Next_Inlined_Subprogram);
8048 pragma Inline (Set_No_Pool_Assigned);
8049 pragma Inline (Set_No_Return);
8a6a52dc 8050 pragma Inline (Set_No_Strict_Aliasing);
70482933 8051 pragma Inline (Set_Non_Binary_Modulus);
fbf5a39b 8052 pragma Inline (Set_Non_Limited_View);
70482933
RK
8053 pragma Inline (Set_Nonzero_Is_True);
8054 pragma Inline (Set_Normalized_First_Bit);
8055 pragma Inline (Set_Normalized_Position);
8056 pragma Inline (Set_Normalized_Position_Max);
0f282086 8057 pragma Inline (Set_OK_To_Reorder_Components);
d1f453b7 8058 pragma Inline (Set_OK_To_Rename);
21d27997
RD
8059 pragma Inline (Set_Optimize_Alignment_Space);
8060 pragma Inline (Set_Optimize_Alignment_Time);
aa1e353a 8061 pragma Inline (Set_Original_Access_Type);
07fc65c4 8062 pragma Inline (Set_Original_Array_Type);
70482933 8063 pragma Inline (Set_Original_Record_Component);
21d27997 8064 pragma Inline (Set_Overlays_Constant);
10b93b2e 8065 pragma Inline (Set_Overridden_Operation);
f4d379b8 8066 pragma Inline (Set_Package_Instantiation);
70482933
RK
8067 pragma Inline (Set_Packed_Array_Type);
8068 pragma Inline (Set_Parent_Subtype);
7ca78bba 8069 pragma Inline (Set_Postcondition_Proc);
b7f17b20 8070 pragma Inline (Set_PPC_Wrapper);
70482933 8071 pragma Inline (Set_Prival);
21d27997 8072 pragma Inline (Set_Prival_Link);
70482933
RK
8073 pragma Inline (Set_Private_Dependents);
8074 pragma Inline (Set_Private_View);
8075 pragma Inline (Set_Protected_Body_Subprogram);
8076 pragma Inline (Set_Protected_Formal);
21d27997 8077 pragma Inline (Set_Protection_Object);
70482933
RK
8078 pragma Inline (Set_RM_Size);
8079 pragma Inline (Set_Reachable);
8080 pragma Inline (Set_Referenced);
fbf5a39b 8081 pragma Inline (Set_Referenced_As_LHS);
ce0bead3 8082 pragma Inline (Set_Referenced_As_Out_Parameter);
70482933
RK
8083 pragma Inline (Set_Register_Exception_Call);
8084 pragma Inline (Set_Related_Array_Object);
a4941eec 8085 pragma Inline (Set_Related_Expression);
70482933 8086 pragma Inline (Set_Related_Instance);
ce0bead3 8087 pragma Inline (Set_Related_Type);
70482933 8088 pragma Inline (Set_Renamed_Entity);
ce0bead3 8089 pragma Inline (Set_Renamed_In_Spec);
70482933
RK
8090 pragma Inline (Set_Renamed_Object);
8091 pragma Inline (Set_Renaming_Map);
f937473f 8092 pragma Inline (Set_Requires_Overriding);
35a1c212 8093 pragma Inline (Set_Return_Flag_Or_Transient_Decl);
70482933 8094 pragma Inline (Set_Return_Present);
6e443c90 8095 pragma Inline (Set_Return_Applies_To);
70482933
RK
8096 pragma Inline (Set_Returns_By_Ref);
8097 pragma Inline (Set_Reverse_Bit_Order);
8098 pragma Inline (Set_Scalar_Range);
8099 pragma Inline (Set_Scale_Value);
8100 pragma Inline (Set_Scope_Depth_Value);
8101 pragma Inline (Set_Sec_Stack_Needed_For_Return);
8102 pragma Inline (Set_Shadow_Entities);
685094bf 8103 pragma Inline (Set_Shared_Var_Procs_Instance);
70482933
RK
8104 pragma Inline (Set_Size_Check_Code);
8105 pragma Inline (Set_Size_Depends_On_Discriminant);
8106 pragma Inline (Set_Size_Known_At_Compile_Time);
8107 pragma Inline (Set_Small_Value);
8108 pragma Inline (Set_Spec_Entity);
26df19ce 8109 pragma Inline (Set_Static_Predicate);
70482933 8110 pragma Inline (Set_Storage_Size_Variable);
0a36105d
JM
8111 pragma Inline (Set_Static_Elaboration_Desired);
8112 pragma Inline (Set_Static_Initialization);
fbf5a39b 8113 pragma Inline (Set_Stored_Constraint);
70482933
RK
8114 pragma Inline (Set_Strict_Alignment);
8115 pragma Inline (Set_String_Literal_Length);
8116 pragma Inline (Set_String_Literal_Low_Bound);
fd0ff1cf 8117 pragma Inline (Set_Subprograms_For_Type);
70482933 8118 pragma Inline (Set_Suppress_Elaboration_Warnings);
5b1e6aca 8119 pragma Inline (Set_Suppress_Initialization);
70482933 8120 pragma Inline (Set_Suppress_Style_Checks);
0a36105d 8121 pragma Inline (Set_Suppress_Value_Tracking_On_Call);
a9d8907c 8122 pragma Inline (Set_Task_Body_Procedure);
fbf5a39b 8123 pragma Inline (Set_Treat_As_Volatile);
70482933 8124 pragma Inline (Set_Underlying_Full_View);
39f346aa 8125 pragma Inline (Set_Underlying_Record_View);
0a36105d 8126 pragma Inline (Set_Universal_Aliasing);
70482933 8127 pragma Inline (Set_Unset_Reference);
5d37ba92 8128 pragma Inline (Set_Used_As_Generic_Actual);
70482933 8129 pragma Inline (Set_Uses_Sec_Stack);
70482933 8130 pragma Inline (Set_Warnings_Off);
0f282086
RD
8131 pragma Inline (Set_Warnings_Off_Used);
8132 pragma Inline (Set_Warnings_Off_Used_Unmodified);
8133 pragma Inline (Set_Warnings_Off_Used_Unreferenced);
10b93b2e
HK
8134 pragma Inline (Set_Was_Hidden);
8135 pragma Inline (Set_Wrapped_Entity);
70482933
RK
8136
8137 -- END XEINFO INLINES
8138
8139 -- The following Inline pragmas are *not* read by xeinfo when building
8140 -- the C version of this interface automatically (so the C version will
8141 -- end up making out of line calls). The pragma scan in xeinfo will be
8142 -- terminated on encountering the END XEINFO INLINES line. We inline
8143 -- things here which are small, but not of the canonical attribute
8144 -- access/set format that can be handled by xeinfo.
8145
d8b962d8 8146 pragma Inline (Base_Type);
d347f572 8147 pragma Inline (Is_Base_Type);
f4d379b8 8148 pragma Inline (Is_Package_Or_Generic_Package);
653da906 8149 pragma Inline (Is_Volatile);
70482933
RK
8150 pragma Inline (Is_Wrapper_Package);
8151 pragma Inline (Known_RM_Size);
8152 pragma Inline (Known_Static_Component_Bit_Offset);
8153 pragma Inline (Known_Static_RM_Size);
8154 pragma Inline (Scope_Depth);
8155 pragma Inline (Scope_Depth_Set);
8156 pragma Inline (Unknown_RM_Size);
8157
8158end Einfo;
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