Add x prefix to v850e case for handling --with-cpu=v850e.
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1 ------------------------------------------------------------------------------
2 -- --
3 -- GNAT COMPILER COMPONENTS --
4 -- --
5 -- S E M _ U T I L --
6 -- --
7 -- S p e c --
8 -- --
9 -- --
10 -- Copyright (C) 1992-2002, Free Software Foundation, Inc. --
11 -- --
12 -- GNAT is free software; you can redistribute it and/or modify it under --
13 -- terms of the GNU General Public License as published by the Free Soft- --
14 -- ware Foundation; either version 2, or (at your option) any later ver- --
15 -- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
16 -- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
17 -- or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License --
18 -- for more details. You should have received a copy of the GNU General --
19 -- Public License distributed with GNAT; see file COPYING. If not, write --
20 -- to the Free Software Foundation, 59 Temple Place - Suite 330, Boston, --
21 -- MA 02111-1307, USA. --
22 -- --
23 -- GNAT was originally developed by the GNAT team at New York University. --
24 -- It is now maintained by Ada Core Technologies Inc (http://www.gnat.com). --
25 -- --
26 ------------------------------------------------------------------------------
28 -- Package containing utility procedures used throughout the semantics
30 with Einfo; use Einfo;
31 with Types; use Types;
32 with Uintp; use Uintp;
33 with Urealp; use Urealp;
35 package Sem_Util is
37 procedure Add_Access_Type_To_Process (E : Entity_Id; A : Entity_Id);
38 -- Add A to the list of access types to process when expanding the
39 -- freeze node of E.
41 function Alignment_In_Bits (E : Entity_Id) return Uint;
42 -- If the alignment of the type or object E is currently known to the
43 -- compiler, then this function returns the alignment value in bits.
44 -- Otherwise Uint_0 is returned, indicating that the alignment of the
45 -- entity is not yet known to the compiler.
47 procedure Apply_Compile_Time_Constraint_Error
48 (N : Node_Id;
49 Msg : String;
50 Reason : RT_Exception_Code;
51 Ent : Entity_Id := Empty;
52 Typ : Entity_Id := Empty;
53 Loc : Source_Ptr := No_Location;
54 Rep : Boolean := True);
55 -- N is a subexpression which will raise constraint error when evaluated
56 -- at runtime. Msg is a message that explains the reason for raising the
57 -- exception. The last character is ? if the message is always a warning,
58 -- even in Ada 95, and is not a ? if the message represents an illegality
59 -- (because of violation of static expression rules) in Ada 95 (but not
60 -- in Ada 83). Typically this routine posts all messages at the Sloc of
61 -- node N. However, if Loc /= No_Location, Loc is the Sloc used to output
62 -- the message. After posting the appropriate message, and if the flag
63 -- Rep is set, this routine replaces the expression with an appropriate
64 -- N_Raise_Constraint_Error node using the given Reason code. This node
65 -- is then marked as being static if the original node is static, but
66 -- sets the flag Raises_Constraint_Error, preventing further evaluation.
67 -- The error message may contain a } or & insertion character. This
68 -- normally references Etype (N), unless the Ent argument is given
69 -- explicitly, in which case it is used instead. The type of the raise
70 -- node that is built is normally Etype (N), but if the Typ parameter
71 -- is present, this is used instead.
73 function Build_Actual_Subtype
74 (T : Entity_Id;
75 N : Node_Or_Entity_Id)
76 return Node_Id;
77 -- Build an anonymous subtype for an entity or expression, using the
78 -- bounds of the entity or the discriminants of the enclosing record.
79 -- T is the type for which the actual subtype is required, and N is either
80 -- a defining identifier, or any subexpression.
82 function Build_Actual_Subtype_Of_Component
83 (T : Entity_Id;
84 N : Node_Id)
85 return Node_Id;
86 -- Determine whether a selected component has a type that depends on
87 -- discriminants, and build actual subtype for it if so.
89 function Build_Discriminal_Subtype_Of_Component
90 (T : Entity_Id)
91 return Node_Id;
92 -- Determine whether a record component has a type that depends on
93 -- discriminants, and build actual subtype for it if so.
95 procedure Build_Elaboration_Entity (N : Node_Id; Spec_Id : Entity_Id);
96 -- Given a compilation unit node N, allocate an elaboration boolean for
97 -- the compilation unit, and install it in the Elaboration_Entity field
98 -- of Spec_Id, the entity for the compilation unit.
100 function Cannot_Raise_Constraint_Error (Expr : Node_Id) return Boolean;
101 -- Returns True if the expression cannot possibly raise Constraint_Error.
102 -- The response is conservative in the sense that a result of False does
103 -- not necessarily mean that CE could be raised, but a response of True
104 -- means that for sure CE cannot be raised.
106 procedure Check_Fully_Declared (T : Entity_Id; N : Node_Id);
107 -- Verify that the full declaration of type T has been seen. If not,
108 -- place error message on node N. Used in object declarations, type
109 -- conversions, qualified expressions.
111 procedure Check_Potentially_Blocking_Operation (N : Node_Id);
112 -- N is one of the statement forms that is a potentially blocking
113 -- operation. If it appears within a protected action, emit warning
114 -- and raise Program_Error.
116 procedure Check_VMS (Construct : Node_Id);
117 -- Check that this the target is OpenVMS, and if so, return with
118 -- no effect, otherwise post an error noting this can only be used
119 -- with OpenVMS ports. The argument is the construct in question
120 -- and is used to post the error message.
122 function Collect_Primitive_Operations (T : Entity_Id) return Elist_Id;
123 -- Called upon type derivation and extension. We scan the declarative
124 -- part in which the type appears, and collect subprograms that have
125 -- one subsidiary subtype of the type. These subprograms can only
126 -- appear after the type itself.
128 function Compile_Time_Constraint_Error
129 (N : Node_Id;
130 Msg : String;
131 Ent : Entity_Id := Empty;
132 Loc : Source_Ptr := No_Location)
133 return Node_Id;
134 -- Subsidiary to Apply_Compile_Time_Constraint_Error and Checks routines.
135 -- Does not modify any nodes, but generates a warning (or error) message.
136 -- For convenience, the function always returns its first argument.
138 procedure Conditional_Delay (New_Ent, Old_Ent : Entity_Id);
139 -- Sets the Has_Delayed_Freeze flag of New if the Delayed_Freeze flag
140 -- of Old is set and Old has no yet been Frozen (i.e. Is_Frozen is false);
142 function Current_Entity (N : Node_Id) return Entity_Id;
143 -- Find the currently visible definition for a given identifier, that is to
144 -- say the first entry in the visibility chain for the Chars of N.
146 function Current_Entity_In_Scope (N : Node_Id) return Entity_Id;
147 -- Find whether there is a previous definition for identifier N in the
148 -- current scope. Because declarations for a scope are not necessarily
149 -- contiguous (e.g. for packages) the first entry on the visibility chain
150 -- for N is not necessarily in the current scope.
152 function Current_Scope return Entity_Id;
153 -- Get entity representing current scope
155 function Current_Subprogram return Entity_Id;
156 -- Returns current enclosing subprogram. If Current_Scope is a subprogram,
157 -- then that is what is returned, otherwise the Enclosing_Subprogram of
158 -- the Current_Scope is returned. The returned value is Empty if this
159 -- is called from a library package which is not within any subprogram.
161 function Defining_Entity (N : Node_Id) return Entity_Id;
162 -- Given a declaration N, returns the associated defining entity. If
163 -- the declaration has a specification, the entity is obtained from
164 -- the specification. If the declaration has a defining unit name,
165 -- then the defining entity is obtained from the defining unit name
166 -- ignoring any child unit prefixes.
168 function Denotes_Discriminant (N : Node_Id) return Boolean;
169 -- Returns True if node N is an N_Identifier node for a discriminant.
170 -- Returns False for any other kind of node, or for an N_Identifier
171 -- node that does not denote a discriminant.
173 function Depends_On_Discriminant (N : Node_Id) return Boolean;
174 -- Returns True if N denotes a discriminant or if N is a range, a subtype
175 -- indication or a scalar subtype where one of the bounds is a
176 -- discriminant.
178 function Designate_Same_Unit
179 (Name1 : Node_Id;
180 Name2 : Node_Id)
181 return Boolean;
182 -- Return true if Name1 and Name2 designate the same unit name;
183 -- each of these names is supposed to be a selected component name,
184 -- an expanded name, a defining program unit name or an identifier
186 function Enclosing_Generic_Body
187 (E : Entity_Id)
188 return Node_Id;
189 -- Returns the Node_Id associated with the innermost enclosing
190 -- generic body, if any. If none, then returns Empty.
192 function Enclosing_Lib_Unit_Entity return Entity_Id;
193 -- Returns the entity of enclosing N_Compilation_Unit Node which is the
194 -- root of the current scope (which must not be Standard_Standard, and
195 -- the caller is responsible for ensuring this condition).
197 function Enclosing_Lib_Unit_Node (N : Node_Id) return Node_Id;
198 -- Returns the enclosing N_Compilation_Unit Node that is the root
199 -- of a subtree containing N.
201 function Enclosing_Subprogram (E : Entity_Id) return Entity_Id;
202 -- Utility function to return the Ada entity of the subprogram enclosing
203 -- the entity E, if any. Returns Empty if no enclosing subprogram.
205 procedure Ensure_Freeze_Node (E : Entity_Id);
206 -- Make sure a freeze node is allocated for entity E. If necessary,
207 -- build and initialize a new freeze node and set Has_Delayed_Freeze
208 -- true for entity E.
210 procedure Enter_Name (Def_Id : Node_Id);
211 -- Insert new name in symbol table of current scope with check for
212 -- duplications (error message is issued if a conflict is found)
213 -- Note: Enter_Name is not used for overloadable entities, instead
214 -- these are entered using Sem_Ch6.Enter_Overloadable_Entity.
216 function Find_Corresponding_Discriminant
217 (Id : Node_Id;
218 Typ : Entity_Id)
219 return Entity_Id;
220 -- Because discriminants may have different names in a generic unit
221 -- and in an instance, they are resolved positionally when possible.
222 -- A reference to a discriminant carries the discriminant that it
223 -- denotes when analyzed. Subsequent uses of this id on a different
224 -- type denote the discriminant at the same position in this new type.
226 function First_Actual (Node : Node_Id) return Node_Id;
227 -- Node is an N_Function_Call or N_Procedure_Call_Statement node. The
228 -- result returned is the first actual parameter in declaration order
229 -- (not the order of parameters as they appeared in the source, which
230 -- can be quite different as a result of the use of named parameters).
231 -- Empty is returned for a call with no parameters. The procedure for
232 -- iterating through the actuals in declaration order is to use this
233 -- function to find the first actual, and then use Next_Actual to obtain
234 -- the next actual in declaration order. Note that the value returned
235 -- is always the expression (not the N_Parameter_Association nodes
236 -- even if named association is used).
238 function Full_Qualified_Name (E : Entity_Id) return String_Id;
239 -- Generates the string literal corresponding to the E's full qualified
240 -- name in upper case. An ASCII.NUL is appended as the last character
242 procedure Gather_Components
243 (Typ : Entity_Id;
244 Comp_List : Node_Id;
245 Governed_By : List_Id;
246 Into : Elist_Id;
247 Report_Errors : out Boolean);
248 -- The purpose of this procedure is to gather the valid components
249 -- in a record type according to the values of its discriminants, in order
250 -- to validate the components of a record aggregate.
252 -- Typ is the type of the aggregate when its constrained discriminants
253 -- need to be collected, otherwise it is Empty.
255 -- Comp_List is an N_Component_List node.
257 -- Governed_By is a list of N_Component_Association nodes,
258 -- where each choice list contains the name of a discriminant and
259 -- the expression field gives its value. The values of the
260 -- discriminants governing the (possibly nested) variant parts in
261 -- Comp_List are found in this Component_Association List.
263 -- Into is the list where the valid components are appended.
264 -- Note that Into need not be an Empty list. If it's not, components
265 -- are attached to its tail.
267 -- Report_Errors is set to True if the values of the discriminants
268 -- are non-static.
270 -- This procedure is also used when building a record subtype. If the
271 -- discriminant constraint of the subtype is static, the components of the
272 -- subtype are only those of the variants selected by the values of the
273 -- discriminants. Otherwise all components of the parent must be included
274 -- in the subtype for semantic analysis.
276 function Get_Actual_Subtype (N : Node_Id) return Entity_Id;
277 -- Given a node for an expression, obtain the actual subtype of the
278 -- expression. In the case of a parameter where the formal is an
279 -- unconstrained array or discriminated type, this will be the
280 -- previously constructed subtype of the actual. Note that this is
281 -- not quite the "Actual Subtype" of the RM, since it is always
282 -- a constrained type, i.e. it is the subtype of the value of the
283 -- actual. The actual subtype is also returned in other cases where
284 -- it has already been constructed for an object. Otherwise the
285 -- expression type is returned unchanged, except for the case of an
286 -- unconstrained array type, where an actual subtype is created, using
287 -- Insert_Actions if necessary to insert any associated actions.
289 function Get_Actual_Subtype_If_Available (N : Node_Id) return Entity_Id;
290 -- This is like Get_Actual_Subtype, except that it never constructs an
291 -- actual subtype. If an actual subtype is already available, i.e. the
292 -- Actual_Subtype field of the corresponding entity is set, then it is
293 -- returned. Otherwise the Etype of the node is returned.
295 function Get_Default_External_Name (E : Node_Or_Entity_Id) return Node_Id;
296 -- This is used to construct the string literal node representing a
297 -- default external name, i.e. one that is constructed from the name
298 -- of an entity, or (in the case of extended DEC import/export pragmas,
299 -- an identifier provided as the external name. Letters in the name are
300 -- according to the setting of Opt.External_Name_Default_Casing.
302 function Get_Generic_Entity (N : Node_Id) return Entity_Id;
303 -- Returns the true generic entity in an instantiation. If the name in
304 -- the instantiation is a renaming, the function returns the renamed
305 -- generic.
307 procedure Get_Index_Bounds (N : Node_Id; L, H : out Node_Id);
308 -- This procedure assigns to L and H respectively the values of the
309 -- low and high bounds of node N, which must be a range, subtype
310 -- indication, or the name of a scalar subtype. The result in L, H
311 -- may be set to Error if there was an earlier error in the range.
313 function Get_Enum_Lit_From_Pos
314 (T : Entity_Id;
315 Pos : Uint;
316 Loc : Source_Ptr)
317 return Entity_Id;
318 -- This function obtains the E_Enumeration_Literal entity for the
319 -- specified value from the enumneration type or subtype T. The
320 -- second argument is the Pos value, which is assumed to be in range.
321 -- The third argument supplies a source location for constructed
322 -- nodes returned by this function.
324 function Get_Name_Entity_Id (Id : Name_Id) return Entity_Id;
325 -- An entity value is associated with each name in the name table. The
326 -- Get_Name_Entity_Id function fetches the Entity_Id of this entity,
327 -- which is the innermost visible entity with the given name. See the
328 -- body of Sem_Ch8 for further details on handling of entity visibility.
330 function Get_Referenced_Object (N : Node_Id) return Node_Id;
331 -- Given a node, return the renamed object if the node represents
332 -- a renamed object, otherwise return the node unchanged. The node
333 -- may represent an arbitrary expression.
335 function Get_Subprogram_Body (E : Entity_Id) return Node_Id;
336 -- Given the entity for a subprogram (E_Function or E_Procedure),
337 -- return the corresponding N_Subprogram_Body node. If the corresponding
338 -- body of the declaration is missing (as for an imported subprogram)
339 -- return Empty.
341 function Get_Task_Body_Procedure (E : Entity_Id) return Node_Id;
342 pragma Inline (Get_Task_Body_Procedure);
343 -- Given an entity for a task type or subtype, retrieves the
344 -- Task_Body_Procedure field from the corresponding task type
345 -- declaration.
347 function Has_Infinities (E : Entity_Id) return Boolean;
348 -- Determines if the range of the floating-point type E includes
349 -- infinities. Returns False if E is not a floating-point type.
351 function Has_Private_Component (Type_Id : Entity_Id) return Boolean;
352 -- Check if a type has a (sub)component of a private type that has not
353 -- yet received a full declaration.
355 function Has_Tagged_Component (Typ : Entity_Id) return Boolean;
356 -- Typ must be a composite type (array or record). This function is used
357 -- to check if '=' has to be expanded into a bunch component comparaisons.
359 function In_Instance return Boolean;
360 -- Returns True if the current scope is within a generic instance.
362 function In_Instance_Body return Boolean;
363 -- Returns True if current scope is within the body of an instance, where
364 -- several semantic checks (e.g. accessibility checks) are relaxed.
366 function In_Instance_Not_Visible return Boolean;
367 -- Returns True if current scope is with the private part or the body of
368 -- an instance. Other semantic checks are suppressed in this context.
370 function In_Instance_Visible_Part return Boolean;
371 -- Returns True if current scope is within the visible part of a package
372 -- instance, where several additional semantic checks apply.
374 function In_Subprogram_Or_Concurrent_Unit return Boolean;
375 -- Determines if the current scope is within a subprogram compilation
376 -- unit (inside a subprogram declaration, subprogram body, or generic
377 -- subprogram declaration) or within a task or protected body. The test
378 -- is for appearing anywhere within such a construct (that is it does not
379 -- need to be directly within).
381 function In_Visible_Part (Scope_Id : Entity_Id) return Boolean;
382 -- Determine whether a declaration occurs within the visible part of a
383 -- package specification. The package must be on the scope stack, and the
384 -- corresponding private part must not.
386 function Is_AAMP_Float (E : Entity_Id) return Boolean;
387 -- Defined for all type entities. Returns True only for the base type
388 -- of float types with AAMP format. The particular format is determined
389 -- by the Digits_Value value which is 6 for the 32-bit floating point type,
390 -- or 9 for the 48-bit type. This is not an attribute function (like
391 -- VAX_Float) in order to not use up an extra flag and to prevent
392 -- the dependency of Einfo on Targparm which would be required for a
393 -- synthesized attribute.
395 function Is_Dependent_Component_Of_Mutable_Object
396 (Object : Node_Id)
397 return Boolean;
398 -- Returns True if Object is the name of a subcomponent that
399 -- depends on discriminants of a variable whose nominal subtype
400 -- is unconstrained and not indefinite, and the variable is
401 -- not aliased. Otherwise returns False. The nodes passed
402 -- to this function are assumed to denote objects.
404 function Is_Actual_Parameter (N : Node_Id) return Boolean;
405 -- Determines if N is an actual parameter in a subprogram call.
407 function Is_Aliased_View (Obj : Node_Id) return Boolean;
408 -- Determine if Obj is an aliased view, i.e. the name of an
409 -- object to which 'Access or 'Unchecked_Access can apply.
411 function Is_Atomic_Object (N : Node_Id) return Boolean;
412 -- Determines if the given node denotes an atomic object in the sense
413 -- of the legality checks described in RM C.6(12).
415 function Is_False (U : Uint) return Boolean;
416 -- The argument is a Uint value which is the Boolean'Pos value of a
417 -- Boolean operand (i.e. is either 0 for False, or 1 for True). This
418 -- function simply tests if it is False (i.e. zero)
420 function Is_Fixed_Model_Number (U : Ureal; T : Entity_Id) return Boolean;
421 -- Returns True iff the number U is a model number of the fixed-
422 -- point type T, i.e. if it is an exact multiple of Small.
424 function Is_Fully_Initialized_Type (Typ : Entity_Id) return Boolean;
425 -- Typ is a type entity. This function returns true if this type is
426 -- fully initialized, meaning that an object of the type is fully
427 -- initialized. Note that initialization resulting from the use of
428 -- pragma Normalized_Scalars does not count.
430 function Is_Inherited_Operation (E : Entity_Id) return Boolean;
431 -- E is a subprogram. Return True is E is an implicit operation inherited
432 -- by a derived type declarations.
434 function Is_Library_Level_Entity (E : Entity_Id) return Boolean;
435 -- A library-level declaration is one that is accessible from Standard,
436 -- i.e. a library unit or an entity declared in a library package.
438 function Is_Local_Variable_Reference (Expr : Node_Id) return Boolean;
439 -- Determines whether Expr is a refeference to a variable or IN OUT
440 -- mode parameter of the current enclosing subprogram.
442 function Is_Object_Reference (N : Node_Id) return Boolean;
443 -- Determines if the tree referenced by N represents an object. Both
444 -- variable and constant objects return True (compare Is_Variable).
446 function Is_OK_Variable_For_Out_Formal (AV : Node_Id) return Boolean;
447 -- Used to test if AV is an acceptable formal for an OUT or IN OUT
448 -- formal. Note that the Is_Variable function is not quite the right
449 -- test because this is a case in which conversions whose expression
450 -- is a variable (in the Is_Variable sense) with a non-tagged type
451 -- target are considered view conversions and hence variables.
453 function Is_Partially_Initialized_Type (Typ : Entity_Id) return Boolean;
454 -- Typ is a type entity. This function returns true if this type is
455 -- partly initialized, meaning that an object of the type is at least
456 -- partly initialized (in particular in the record case, that at least
457 -- one field has an initialization expression). Note that initialization
458 -- resulting from the use of pragma Normalized_Scalars does not count.
460 function Is_RCI_Pkg_Spec_Or_Body (Cunit : Node_Id) return Boolean;
461 -- Return True if a compilation unit is the specification or the
462 -- body of a remote call interface package.
464 function Is_Remote_Access_To_Class_Wide_Type (E : Entity_Id) return Boolean;
465 -- Return True if E is a remote access-to-class-wide-limited_private type
467 function Is_Remote_Access_To_Subprogram_Type (E : Entity_Id) return Boolean;
468 -- Return True if E is a remote access to subprogram type.
470 function Is_Remote_Call (N : Node_Id) return Boolean;
471 -- Return True if N denotes a potentially remote call
473 function Is_Selector_Name (N : Node_Id) return Boolean;
474 -- Given an N_Identifier node N, determines if it is a Selector_Name.
475 -- As described in Sinfo, Selector_Names are special because they
476 -- represent use of the N_Identifier node for a true identifier, when
477 -- normally such nodes represent a direct name.
479 function Is_Statement (N : Node_Id) return Boolean;
480 -- Check if the node N is a statement node. Note that this includes
481 -- the case of procedure call statements (unlike the direct use of
482 -- the N_Statement_Other_Than_Procedure_Call subtype from Sinfo)
484 function Is_Transfer (N : Node_Id) return Boolean;
485 -- Returns True if the node N is a statement which is known to cause
486 -- an unconditional transfer of control at runtime, i.e. the following
487 -- statement definitely will not be executed.
489 function Is_True (U : Uint) return Boolean;
490 -- The argument is a Uint value which is the Boolean'Pos value of a
491 -- Boolean operand (i.e. is either 0 for False, or 1 for True). This
492 -- function simply tests if it is True (i.e. non-zero)
494 function Is_Variable (N : Node_Id) return Boolean;
495 -- Determines if the tree referenced by N represents a variable, i.e.
496 -- can appear on the left side of an assignment. There is one situation,
497 -- namely formal parameters, in which non-tagged type conversions are
498 -- also considered variables, but Is_Variable returns False for such
499 -- cases, since it has no knowledge of the context. Note that this is
500 -- the point at which Assignment_OK is checked, and True is returned
501 -- for any tree thus marked.
503 function Is_Volatile_Object (N : Node_Id) return Boolean;
504 -- Determines if the given node denotes an volatile object in the sense
505 -- of the legality checks described in RM C.6(12).
507 procedure Kill_Size_Check_Code (E : Entity_Id);
508 -- Called when an address clause or pragma Import is applied to an
509 -- entity. If the entity is a variable or a constant, and size check
510 -- code is present, this size check code is killed, since the object
511 -- will not be allocated by the program.
513 function New_External_Entity
514 (Kind : Entity_Kind;
515 Scope_Id : Entity_Id;
516 Sloc_Value : Source_Ptr;
517 Related_Id : Entity_Id;
518 Suffix : Character;
519 Suffix_Index : Nat := 0;
520 Prefix : Character := ' ')
521 return Entity_Id;
522 -- This function creates an N_Defining_Identifier node for an internal
523 -- created entity, such as an implicit type or subtype, or a record
524 -- initialization procedure. The entity name is constructed with a call
525 -- to New_External_Name (Related_Id, Suffix, Suffix_Index, Prefix), so
526 -- that the generated name may be referenced as a public entry, and the
527 -- Is_Public flag is set if needed (using Set_Public_Status). If the
528 -- entity is for a type or subtype, the size/align fields are initialized
529 -- to unknown (Uint_0).
531 function New_Internal_Entity
532 (Kind : Entity_Kind;
533 Scope_Id : Entity_Id;
534 Sloc_Value : Source_Ptr;
535 Id_Char : Character)
536 return Entity_Id;
537 -- This function is similar to New_External_Entity, except that the
538 -- name is constructed by New_Internal_Name (Id_Char). This is used
539 -- when the resulting entity does not have to be referenced as a
540 -- public entity (and in this case Is_Public is not set).
542 procedure Next_Actual (Actual_Id : in out Node_Id);
543 pragma Inline (Next_Actual);
544 -- Next_Actual (N) is equivalent to N := Next_Actual (N)
546 function Next_Actual (Actual_Id : Node_Id) return Node_Id;
547 -- Find next actual parameter in declaration order. As described for
548 -- First_Actual, this is the next actual in the declaration order, not
549 -- the call order, so this does not correspond to simply taking the
550 -- next entry of the Parameter_Associations list. The argument is an
551 -- actual previously returned by a call to First_Actual or Next_Actual.
552 -- Note tha the result produced is always an expression, not a parameter
553 -- assciation node, even if named notation was used.
555 procedure Normalize_Actuals
556 (N : Node_Id;
557 S : Entity_Id;
558 Report : Boolean;
559 Success : out Boolean);
560 -- Reorders lists of actuals according to names of formals, value returned
561 -- in Success indicates success of reordering. For more details, see body.
562 -- Errors are reported only if Report is set to True.
564 procedure Note_Possible_Modification (N : Node_Id);
565 -- This routine is called if the sub-expression N maybe the target of
566 -- an assignment (e.g. it is the left side of an assignment, used as
567 -- an out parameters, or used as prefixes of access attributes). It
568 -- sets May_Be_Modified in the associated entity if there is one,
569 -- taking into account the rule that in the case of renamed objects,
570 -- it is the flag in the renamed object that must be set.
572 function Object_Access_Level (Obj : Node_Id) return Uint;
573 -- Return the accessibility level of the view of the object Obj.
574 -- For convenience, qualified expressions applied to object names
575 -- are also allowed as actuals for this function.
577 function Private_Component (Type_Id : Entity_Id) return Entity_Id;
578 -- Returns some private component (if any) of the given Type_Id.
579 -- Used to enforce the rules on visibility of operations on composite
580 -- types, that depend on the full view of the component type. For a
581 -- record type there may be several such components, we just return
582 -- the first one.
584 procedure Process_End_Label
585 (N : Node_Id;
586 Typ : Character;
587 Ent : Entity_Id);
588 -- N is a node whose End_Label is to be processed, generating all
589 -- appropriate cross-reference entries, and performing style checks
590 -- for any identifier references in the end label. Typ is either
591 -- 'e' or 't indicating the type of the cross-reference entity
592 -- (e for spec, t for body, see Lib.Xref spec for details). The
593 -- parameter Ent gives the entity to which the End_Label refers,
594 -- and to which cross-references are to be generated.
596 function Real_Convert (S : String) return Node_Id;
597 -- S is a possibly signed syntactically valid real literal. The result
598 -- returned is an N_Real_Literal node representing the literal value.
600 function Requires_Transient_Scope (Id : Entity_Id) return Boolean;
601 -- E is a type entity. The result is True when temporaries of this
602 -- type need to be wrapped in a transient scope to be reclaimed
603 -- properly when a secondary stack is in use. Examples of types
604 -- requiring such wrapping are controlled types and variable-sized
605 -- types including unconstrained arrays
607 procedure Reset_Analyzed_Flags (N : Node_Id);
608 -- Reset the Analyzed flags in all nodes of the tree whose root is N
610 function Same_Name (N1, N2 : Node_Id) return Boolean;
611 -- Determine if two (possibly expanded) names are the same name
613 function Same_Type (T1, T2 : Entity_Id) return Boolean;
614 -- Determines if T1 and T2 represent exactly the same type. Two types
615 -- are the same if they are identical, or if one is an unconstrained
616 -- subtype of the other, or they are both common subtypes of the same
617 -- type with identical constraints. The result returned is conservative.
618 -- It is True if the types are known to be the same, but a result of
619 -- False is indecisive (e.g. the compiler may not be able to tell that
620 -- two constraints are identical).
622 function Scope_Within_Or_Same (Scope1, Scope2 : Entity_Id) return Boolean;
623 -- Determines if the entity Scope1 is the same as Scope2, or if it is
624 -- inside it, where both entities represent scopes. Note that scopes
625 -- are only partially ordered, so Scope_Within_Or_Same (A,B) and
626 -- Scope_Within_Or_Same (B,A) can both be False for a given pair A,B.
628 function Scope_Within (Scope1, Scope2 : Entity_Id) return Boolean;
629 -- Like Scope_Within_Or_Same, except that this function returns
630 -- False in the case where Scope1 and Scope2 are the same scope.
632 procedure Set_Current_Entity (E : Entity_Id);
633 -- Establish the entity E as the currently visible definition of its
634 -- associated name (i.e. the Node_Id associated with its name)
636 procedure Set_Entity_With_Style_Check (N : Node_Id; Val : Entity_Id);
637 -- This procedure has the same calling sequence as Set_Entity, but
638 -- if Style_Check is set, then it calls a style checking routine which
639 -- can check identifier spelling style.
641 procedure Set_Name_Entity_Id (Id : Name_Id; Val : Entity_Id);
642 -- Sets the Entity_Id value associated with the given name, which is the
643 -- Id of the innermost visible entity with the given name. See the body
644 -- of package Sem_Ch8 for further details on the handling of visibility.
646 procedure Set_Next_Actual (Ass1_Id : Node_Id; Ass2_Id : Node_Id);
647 -- The arguments may be parameter associations, whose descendants
648 -- are the optional formal name and the actual parameter. Positional
649 -- parameters are already members of a list, and do not need to be
650 -- chained separately. See also First_Actual and Next_Actual.
652 procedure Set_Public_Status (Id : Entity_Id);
653 -- If an entity (visible or otherwise) is defined in a library
654 -- package, or a package that is itself public, then this subprogram
655 -- labels the entity public as well.
657 procedure Set_Scope_Is_Transient (V : Boolean := True);
658 -- Set the flag Is_Transient of the current scope
660 procedure Set_Size_Info (T1, T2 : Entity_Id);
661 -- Copies the Esize field and Has_Biased_Representation flag from
662 -- (sub)type entity T2 to (sub)type entity T1. Also copies the
663 -- Is_Unsigned_Type flag in the fixed-point and discrete cases,
664 -- and also copies the alignment value from T2 to T1. It does NOT
665 -- copy the RM_Size field, which must be separately set if this
666 -- is required to be copied also.
668 function Scope_Is_Transient return Boolean;
669 -- True if the current scope is transient.
671 function Static_Integer (N : Node_Id) return Uint;
672 -- This function analyzes the given expression node and then resolves it
673 -- as any integer type. If the result is static, then the value of the
674 -- universal expression is returned, otherwise an error message is output
675 -- and a value of No_Uint is returned.
677 function Statically_Different (E1, E2 : Node_Id) return Boolean;
678 -- Return True if it can be statically determined that the Expressions
679 -- E1 and E2 refer to different objects
681 function Subprogram_Access_Level (Subp : Entity_Id) return Uint;
682 -- Return the accessibility level of the view denoted by Subp.
684 procedure Trace_Scope (N : Node_Id; E : Entity_Id; Msg : String);
685 -- Print debugging information on entry to each unit being analyzed.
687 procedure Transfer_Entities (From : Entity_Id; To : Entity_Id);
688 -- Move a list of entities from one scope to another, and recompute
689 -- Is_Public based upon the new scope.
691 function Type_Access_Level (Typ : Entity_Id) return Uint;
692 -- Return the accessibility level of Typ.
694 function Unit_Declaration_Node (Unit_Id : Entity_Id) return Node_Id;
695 -- Unit_Id is the simple name of a program unit, this function returns
696 -- the corresponding xxx_Declaration node for the entity. Also applies
697 -- to the body entities for subprograms in tasks, in which case it
698 -- returns the subprogram or task body node for it. The unit may be
699 -- a child unit with any number of ancestors.
701 function Within_Init_Proc return Boolean;
702 -- Determines if Current_Scope is within an Init_Proc
704 procedure Wrong_Type (Expr : Node_Id; Expected_Type : Entity_Id);
705 -- Output error message for incorrectly typed expression. Expr is the
706 -- node for the incorrectly typed construct (Etype (Expr) is the type
707 -- found), and Expected_Type is the entity for the expected type. Note
708 -- that Expr does not have to be a subexpression, anything with an
709 -- Etype field may be used.
711 private
712 pragma Inline (Current_Entity);
713 pragma Inline (Get_Name_Entity_Id);
714 pragma Inline (Is_False);
715 pragma Inline (Is_Statement);
716 pragma Inline (Is_True);
717 pragma Inline (Set_Current_Entity);
718 pragma Inline (Set_Name_Entity_Id);
719 pragma Inline (Set_Size_Info);
721 end Sem_Util;