* gcc.c (getenv_spec_function): New function.
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1 ------------------------------------------------------------------------------
2 -- --
3 -- GNAT COMPILER COMPONENTS --
4 -- --
5 -- S E M _ C H 6 --
6 -- --
7 -- S p e c --
8 -- --
9 -- Copyright (C) 1992-2006, Free Software Foundation, Inc. --
10 -- --
11 -- GNAT is free software; you can redistribute it and/or modify it under --
12 -- terms of the GNU General Public License as published by the Free Soft- --
13 -- ware Foundation; either version 2, or (at your option) any later ver- --
14 -- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
15 -- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
16 -- or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License --
17 -- for more details. You should have received a copy of the GNU General --
18 -- Public License distributed with GNAT; see file COPYING. If not, write --
19 -- to the Free Software Foundation, 51 Franklin Street, Fifth Floor, --
20 -- Boston, MA 02110-1301, USA. --
21 -- --
22 -- GNAT was originally developed by the GNAT team at New York University. --
23 -- Extensive contributions were provided by Ada Core Technologies Inc. --
24 -- --
25 ------------------------------------------------------------------------------
27 with Types; use Types;
28 package Sem_Ch6 is
30 procedure Analyze_Abstract_Subprogram_Declaration (N : Node_Id);
31 procedure Analyze_Extended_Return_Statement (N : Node_Id);
32 procedure Analyze_Function_Call (N : Node_Id);
33 procedure Analyze_Operator_Symbol (N : Node_Id);
34 procedure Analyze_Parameter_Association (N : Node_Id);
35 procedure Analyze_Procedure_Call (N : Node_Id);
36 procedure Analyze_Return_Statement (N : Node_Id);
37 procedure Analyze_Subprogram_Declaration (N : Node_Id);
38 procedure Analyze_Subprogram_Body (N : Node_Id);
40 function Analyze_Subprogram_Specification (N : Node_Id) return Entity_Id;
41 -- Analyze subprogram specification in both subprogram declarations
42 -- and body declarations. Returns the defining entity for the spec.
44 procedure Cannot_Inline (Msg : String; N : Node_Id; Subp : Entity_Id);
45 -- This procedure is called if the node N, an instance of a call to
46 -- subprogram Subp, cannot be inlined. Msg is the message to be issued,
47 -- and has a ? as the last character. If Subp has a pragma Always_Inlined,
48 -- then an error message is issued (by removing the last character of Msg).
49 -- If Subp is not Always_Inlined, then a warning is issued if the flag
50 -- Ineffective_Inline_Warnings is set, and if not, the call has no effect.
52 procedure Check_Conventions (Typ : Entity_Id);
53 -- Ada 2005 (AI-430): Check that the conventions of all inherited and
54 -- overridden dispatching operations of type Typ are consistent with
55 -- their respective counterparts.
57 procedure Check_Delayed_Subprogram (Designator : Entity_Id);
58 -- Designator can be a E_Subrpgram_Type, E_Procedure or E_Function. If a
59 -- type in its profile depends on a private type without a full
60 -- declaration, indicate that the subprogram is delayed.
62 procedure Check_Discriminant_Conformance
63 (N : Node_Id;
64 Prev : Entity_Id;
65 Prev_Loc : Node_Id);
66 -- Check that the discriminants of a full type N fully conform to
67 -- the discriminants of the corresponding partial view Prev.
68 -- Prev_Loc indicates the source location of the partial view,
69 -- which may be different than Prev in the case of private types.
71 procedure Check_Fully_Conformant
72 (New_Id : Entity_Id;
73 Old_Id : Entity_Id;
74 Err_Loc : Node_Id := Empty);
75 -- Check that two callable entitites (subprograms, entries, literals)
76 -- are fully conformant, post error message if not (RM 6.3.1(17)) with
77 -- the flag being placed on the Err_Loc node if it is specified, and
78 -- on the appropriate component of the New_Id construct if not. Note:
79 -- when checking spec/body conformance, New_Id must be the body entity
80 -- and Old_Id is the spec entity (the code in the implementation relies
81 -- on this ordering, and in any case, this makes sense, since if flags
82 -- are to be placed on the construct, they clearly belong on the body.
84 procedure Check_Mode_Conformant
85 (New_Id : Entity_Id;
86 Old_Id : Entity_Id;
87 Err_Loc : Node_Id := Empty;
88 Get_Inst : Boolean := False);
89 -- Check that two callable entitites (subprograms, entries, literals)
90 -- are mode conformant, post error message if not (RM 6.3.1(15)) with
91 -- the flag being placed on the Err_Loc node if it is specified, and
92 -- on the appropriate component of the New_Id construct if not. The
93 -- argument Get_Inst is set to True when this is a check against a
94 -- formal access-to-subprogram type, indicating that mapping of types
95 -- is needed.
97 procedure Check_Subtype_Conformant
98 (New_Id : Entity_Id;
99 Old_Id : Entity_Id;
100 Err_Loc : Node_Id := Empty);
101 -- Check that two callable entitites (subprograms, entries, literals)
102 -- are subtype conformant, post error message if not (RM 6.3.1(16))
103 -- the flag being placed on the Err_Loc node if it is specified, and
104 -- on the appropriate component of the New_Id construct if not.
106 procedure Check_Type_Conformant
107 (New_Id : Entity_Id;
108 Old_Id : Entity_Id;
109 Err_Loc : Node_Id := Empty);
110 -- Check that two callable entitites (subprograms, entries, literals)
111 -- are type conformant, post error message if not (RM 6.3.1(14)) with
112 -- the flag being placed on the Err_Loc node if it is specified, and
113 -- on the appropriate component of the New_Id construct if not.
115 procedure Create_Extra_Formals (E : Entity_Id);
116 -- For each parameter of a subprogram or entry that requires an additional
117 -- formal (such as for access parameters and indefinite discriminated
118 -- parameters), creates the appropriate formal and attach it to its
119 -- associated parameter. Each extra formal will also be appended to
120 -- the end of Subp's parameter list (with each subsequent extra formal
121 -- being attached to the preceding extra formal).
123 function Find_Corresponding_Spec (N : Node_Id) return Entity_Id;
124 -- Use the subprogram specification in the body to retrieve the previous
125 -- subprogram declaration, if any.
127 function Fully_Conformant (New_Id, Old_Id : Entity_Id) return Boolean;
128 -- Determine whether two callable entities (subprograms, entries,
129 -- literals) are fully conformant (RM 6.3.1(17))
131 function Fully_Conformant_Expressions
132 (Given_E1 : Node_Id;
133 Given_E2 : Node_Id)
134 return Boolean;
135 -- Determines if two (non-empty) expressions are fully conformant
136 -- as defined by (RM 6.3.1(18-21))
138 function Fully_Conformant_Discrete_Subtypes
139 (Given_S1 : Node_Id;
140 Given_S2 : Node_Id)
141 return Boolean;
142 -- Determines if two subtype definitions are fully conformant. Used
143 -- for entry family conformance checks (RM 6.3.1 (24)).
145 function Mode_Conformant (New_Id, Old_Id : Entity_Id) return Boolean;
146 -- Determine whether two callable entities (subprograms, entries,
147 -- literals) are mode conformant (RM 6.3.1(15))
149 procedure New_Overloaded_Entity
150 (S : Entity_Id;
151 Derived_Type : Entity_Id := Empty);
152 -- Process new overloaded entity. Overloaded entities are created by
153 -- enumeration type declarations, subprogram specifications, entry
154 -- declarations, and (implicitly) by type derivations. Derived_Type non-
155 -- Empty indicates that this is subprogram derived for that type.
157 procedure Process_Formals (T : List_Id; Related_Nod : Node_Id);
158 -- Enter the formals in the scope of the subprogram or entry, and
159 -- analyze default expressions if any. The implicit types created for
160 -- access parameter are attached to the Related_Nod which comes from the
161 -- context.
163 procedure Set_Actual_Subtypes (N : Node_Id; Subp : Entity_Id);
164 -- If the formals of a subprogram are unconstrained, build a subtype
165 -- declaration that uses the bounds or discriminants of the actual to
166 -- construct an actual subtype for them. This is an optimization that
167 -- is done only in some cases where the actual subtype cannot change
168 -- during execution of the subprogram. By setting the actual subtype
169 -- once, we avoid recomputing it unnecessarily.
171 procedure Set_Formal_Mode (Formal_Id : Entity_Id);
172 -- Set proper Ekind to reflect formal mode (in, out, in out)
174 function Subtype_Conformant (New_Id, Old_Id : Entity_Id) return Boolean;
175 -- Determine whether two callable entities (subprograms, entries,
176 -- literals) are subtype conformant (RM6.3.1(16)).
178 function Type_Conformant
179 (New_Id : Entity_Id;
180 Old_Id : Entity_Id;
181 Skip_Controlling_Formals : Boolean := False) return Boolean;
182 -- Determine whether two callable entities (subprograms, entries,
183 -- literals) are type conformant (RM6.3.1(14)).
185 procedure Valid_Operator_Definition (Designator : Entity_Id);
186 -- Verify that an operator definition has the proper number of formals
188 end Sem_Ch6;