1 ------------------------------------------------------------------------------
3 -- GNAT COMPILER COMPONENTS --
9 -- Copyright (C) 1992-2015, Free Software Foundation, Inc. --
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 3, 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 COPYING3. If not, go to --
19 -- http://www.gnu.org/licenses for a complete copy of the license. --
21 -- GNAT was originally developed by the GNAT team at New York University. --
22 -- Extensive contributions were provided by Ada Core Technologies Inc. --
24 ------------------------------------------------------------------------------
26 -- Generally the parser checks the basic syntax of pragmas, but does not
27 -- do specialized syntax checks for individual pragmas, these are deferred
28 -- to semantic analysis time (see unit Sem_Prag). There are some pragmas
29 -- which require recognition and either partial or complete processing
30 -- during parsing, and this unit performs this required processing.
32 with Fname
.UF
; use Fname
.UF
;
33 with Osint
; use Osint
;
34 with Rident
; use Rident
;
35 with Restrict
; use Restrict
;
36 with Stringt
; use Stringt
;
37 with Stylesw
; use Stylesw
;
38 with Uintp
; use Uintp
;
39 with Uname
; use Uname
;
41 with System
.WCh_Con
; use System
.WCh_Con
;
45 function Prag
(Pragma_Node
: Node_Id
; Semi
: Source_Ptr
) return Node_Id
is
46 Prag_Name
: constant Name_Id
:= Pragma_Name
(Pragma_Node
);
47 Prag_Id
: constant Pragma_Id
:= Get_Pragma_Id
(Prag_Name
);
48 Pragma_Sloc
: constant Source_Ptr
:= Sloc
(Pragma_Node
);
52 -----------------------
53 -- Local Subprograms --
54 -----------------------
56 procedure Add_List_Pragma_Entry
(PT
: List_Pragma_Type
; Loc
: Source_Ptr
);
57 -- Make a new entry in the List_Pragmas table if this entry is not already
58 -- in the table (it will always be the last one if there is a duplication
59 -- resulting from the use of Save/Restore_Scan_State).
61 function Arg1
return Node_Id
;
62 function Arg2
return Node_Id
;
63 function Arg3
return Node_Id
;
64 -- Obtain specified Pragma_Argument_Association. It is allowable to call
65 -- the routine for the argument one past the last present argument, but
66 -- that is the only case in which a non-present argument can be referenced.
68 procedure Check_Arg_Count
(Required
: Int
);
69 -- Check argument count for pragma = Required. If not give error and raise
72 procedure Check_Arg_Is_String_Literal
(Arg
: Node_Id
);
73 -- Check the expression of the specified argument to make sure that it
74 -- is a string literal. If not give error and raise Error_Resync.
76 procedure Check_Arg_Is_On_Or_Off
(Arg
: Node_Id
);
77 -- Check the expression of the specified argument to make sure that it
78 -- is an identifier which is either ON or OFF, and if not, then issue
79 -- an error message and raise Error_Resync.
81 procedure Check_No_Identifier
(Arg
: Node_Id
);
82 -- Checks that the given argument does not have an identifier. If
83 -- an identifier is present, then an error message is issued, and
84 -- Error_Resync is raised.
86 procedure Check_Optional_Identifier
(Arg
: Node_Id
; Id
: Name_Id
);
87 -- Checks if the given argument has an identifier, and if so, requires
88 -- it to match the given identifier name. If there is a non-matching
89 -- identifier, then an error message is given and Error_Resync raised.
91 procedure Check_Required_Identifier
(Arg
: Node_Id
; Id
: Name_Id
);
92 -- Same as Check_Optional_Identifier, except that the name is required
93 -- to be present and to match the given Id value.
95 procedure Process_Restrictions_Or_Restriction_Warnings
;
96 -- Common processing for Restrictions and Restriction_Warnings pragmas.
97 -- For the most part, restrictions need not be processed at parse time,
98 -- since they only affect semantic processing. This routine handles the
99 -- exceptions as follows
101 -- No_Obsolescent_Features must be processed at parse time, since there
102 -- are some obsolescent features (e.g. character replacements) which are
103 -- handled at parse time.
105 -- SPARK must be processed at parse time, since this restriction controls
106 -- whether the scanner recognizes a spark HIDE directive formatted as an
107 -- Ada comment (and generates a Tok_SPARK_Hide token for the directive).
109 -- No_Dependence must be processed at parse time, since otherwise it gets
112 -- Note that we don't need to do full error checking for badly formed cases
113 -- of restrictions, since these will be caught during semantic analysis.
115 ---------------------------
116 -- Add_List_Pragma_Entry --
117 ---------------------------
119 procedure Add_List_Pragma_Entry
(PT
: List_Pragma_Type
; Loc
: Source_Ptr
) is
121 if List_Pragmas
.Last
< List_Pragmas
.First
122 or else (List_Pragmas
.Table
(List_Pragmas
.Last
)) /= ((PT
, Loc
))
124 List_Pragmas
.Append
((PT
, Loc
));
126 end Add_List_Pragma_Entry
;
132 function Arg1
return Node_Id
is
134 return First
(Pragma_Argument_Associations
(Pragma_Node
));
141 function Arg2
return Node_Id
is
150 function Arg3
return Node_Id
is
155 ---------------------
156 -- Check_Arg_Count --
157 ---------------------
159 procedure Check_Arg_Count
(Required
: Int
) is
161 if Arg_Count
/= Required
then
162 Error_Msg
("wrong number of arguments for pragma%", Pragma_Sloc
);
167 ----------------------------
168 -- Check_Arg_Is_On_Or_Off --
169 ----------------------------
171 procedure Check_Arg_Is_On_Or_Off
(Arg
: Node_Id
) is
172 Argx
: constant Node_Id
:= Expression
(Arg
);
175 if Nkind
(Expression
(Arg
)) /= N_Identifier
176 or else not Nam_In
(Chars
(Argx
), Name_On
, Name_Off
)
178 Error_Msg_Name_2
:= Name_On
;
179 Error_Msg_Name_3
:= Name_Off
;
181 Error_Msg
("argument for pragma% must be% or%", Sloc
(Argx
));
184 end Check_Arg_Is_On_Or_Off
;
186 ---------------------------------
187 -- Check_Arg_Is_String_Literal --
188 ---------------------------------
190 procedure Check_Arg_Is_String_Literal
(Arg
: Node_Id
) is
192 if Nkind
(Expression
(Arg
)) /= N_String_Literal
then
194 ("argument for pragma% must be string literal",
195 Sloc
(Expression
(Arg
)));
198 end Check_Arg_Is_String_Literal
;
200 -------------------------
201 -- Check_No_Identifier --
202 -------------------------
204 procedure Check_No_Identifier
(Arg
: Node_Id
) is
206 if Chars
(Arg
) /= No_Name
then
207 Error_Msg_N
("pragma% does not permit named arguments", Arg
);
210 end Check_No_Identifier
;
212 -------------------------------
213 -- Check_Optional_Identifier --
214 -------------------------------
216 procedure Check_Optional_Identifier
(Arg
: Node_Id
; Id
: Name_Id
) is
218 if Present
(Arg
) and then Chars
(Arg
) /= No_Name
then
219 if Chars
(Arg
) /= Id
then
220 Error_Msg_Name_2
:= Id
;
221 Error_Msg_N
("pragma% argument expects identifier%", Arg
);
224 end Check_Optional_Identifier
;
226 -------------------------------
227 -- Check_Required_Identifier --
228 -------------------------------
230 procedure Check_Required_Identifier
(Arg
: Node_Id
; Id
: Name_Id
) is
232 if Chars
(Arg
) /= Id
then
233 Error_Msg_Name_2
:= Id
;
234 Error_Msg_N
("pragma% argument must have identifier%", Arg
);
236 end Check_Required_Identifier
;
238 --------------------------------------------------
239 -- Process_Restrictions_Or_Restriction_Warnings --
240 --------------------------------------------------
242 procedure Process_Restrictions_Or_Restriction_Warnings
is
249 while Present
(Arg
) loop
251 Expr
:= Expression
(Arg
);
253 if Id
= No_Name
and then Nkind
(Expr
) = N_Identifier
then
255 when Name_No_Obsolescent_Features
=>
256 Set_Restriction
(No_Obsolescent_Features
, Pragma_Node
);
257 Restriction_Warnings
(No_Obsolescent_Features
) :=
258 Prag_Id
= Pragma_Restriction_Warnings
;
260 when Name_SPARK | Name_SPARK_05
=>
261 Set_Restriction
(SPARK_05
, Pragma_Node
);
262 Restriction_Warnings
(SPARK_05
) :=
263 Prag_Id
= Pragma_Restriction_Warnings
;
269 elsif Id
= Name_No_Dependence
then
270 Set_Restriction_No_Dependence
272 Warn
=> Prag_Id
= Pragma_Restriction_Warnings
273 or else Treat_Restrictions_As_Warnings
);
278 end Process_Restrictions_Or_Restriction_Warnings
;
280 -- Start of processing for Prag
283 Error_Msg_Name_1
:= Prag_Name
;
285 -- Ignore unrecognized pragma. We let Sem post the warning for this, since
286 -- it is a semantic error, not a syntactic one (we have already checked
287 -- the syntax for the unrecognized pragma as required by (RM 2.8(11)).
289 if Prag_Id
= Unknown_Pragma
then
293 -- Count number of arguments. This loop also checks if any of the arguments
294 -- are Error, indicating a syntax error as they were parsed. If so, we
295 -- simply return, because we get into trouble with cascaded errors if we
296 -- try to perform our error checks on junk arguments.
300 if Present
(Pragma_Argument_Associations
(Pragma_Node
)) then
302 while Arg_Node
/= Empty
loop
303 Arg_Count
:= Arg_Count
+ 1;
305 if Expression
(Arg_Node
) = Error
then
313 -- Remaining processing is pragma dependent
321 -- This pragma must be processed at parse time, since we want to set
322 -- the Ada version properly at parse time to recognize the appropriate
323 -- Ada version syntax.
325 when Pragma_Ada_83
=>
326 Ada_Version
:= Ada_83
;
327 Ada_Version_Explicit
:= Ada_83
;
328 Ada_Version_Pragma
:= Pragma_Node
;
334 -- This pragma must be processed at parse time, since we want to set
335 -- the Ada version properly at parse time to recognize the appropriate
336 -- Ada version syntax.
338 when Pragma_Ada_95
=>
339 Ada_Version
:= Ada_95
;
340 Ada_Version_Explicit
:= Ada_95
;
341 Ada_Version_Pragma
:= Pragma_Node
;
343 ---------------------
344 -- Ada_05/Ada_2005 --
345 ---------------------
347 -- These pragmas must be processed at parse time, since we want to set
348 -- the Ada version properly at parse time to recognize the appropriate
349 -- Ada version syntax. However, it is only the zero argument form that
350 -- must be processed at parse time.
352 when Pragma_Ada_05 | Pragma_Ada_2005
=>
353 if Arg_Count
= 0 then
354 Ada_Version
:= Ada_2005
;
355 Ada_Version_Explicit
:= Ada_2005
;
356 Ada_Version_Pragma
:= Pragma_Node
;
359 ---------------------
360 -- Ada_12/Ada_2012 --
361 ---------------------
363 -- These pragmas must be processed at parse time, since we want to set
364 -- the Ada version properly at parse time to recognize the appropriate
365 -- Ada version syntax. However, it is only the zero argument form that
366 -- must be processed at parse time.
368 when Pragma_Ada_12 | Pragma_Ada_2012
=>
369 if Arg_Count
= 0 then
370 Ada_Version
:= Ada_2012
;
371 Ada_Version_Explicit
:= Ada_2012
;
372 Ada_Version_Pragma
:= Pragma_Node
;
375 ---------------------------
376 -- Compiler_Unit_Warning --
377 ---------------------------
379 -- This pragma must be processed at parse time, since the resulting
380 -- status may be tested during the parsing of the program.
382 when Pragma_Compiler_Unit | Pragma_Compiler_Unit_Warning
=>
385 -- Only recognized in main unit
387 if Current_Source_Unit
= Main_Unit
then
388 Compiler_Unit
:= True;
395 -- pragma Debug ([boolean_EXPRESSION,] PROCEDURE_CALL_STATEMENT);
398 Check_No_Identifier
(Arg1
);
400 if Arg_Count
= 2 then
401 Check_No_Identifier
(Arg2
);
406 -------------------------------
407 -- Extensions_Allowed (GNAT) --
408 -------------------------------
410 -- pragma Extensions_Allowed (Off | On)
412 -- The processing for pragma Extensions_Allowed must be done at
413 -- parse time, since extensions mode may affect what is accepted.
415 when Pragma_Extensions_Allowed
=>
417 Check_No_Identifier
(Arg1
);
418 Check_Arg_Is_On_Or_Off
(Arg1
);
420 if Chars
(Expression
(Arg1
)) = Name_On
then
421 Extensions_Allowed
:= True;
422 Ada_Version
:= Ada_2012
;
424 Extensions_Allowed
:= False;
425 Ada_Version
:= Ada_Version_Explicit
;
432 -- pragma List (Off | On)
434 -- The processing for pragma List must be done at parse time, since a
435 -- listing can be generated in parse only mode.
439 Check_No_Identifier
(Arg1
);
440 Check_Arg_Is_On_Or_Off
(Arg1
);
442 -- We unconditionally make a List_On entry for the pragma, so that
443 -- in the List (Off) case, the pragma will print even in a region
444 -- of code with listing turned off (this is required).
446 Add_List_Pragma_Entry
(List_On
, Sloc
(Pragma_Node
));
448 -- Now generate the list off entry for pragma List (Off)
450 if Chars
(Expression
(Arg1
)) = Name_Off
then
451 Add_List_Pragma_Entry
(List_Off
, Semi
);
460 -- Processing for this pragma must be done at parse time, since a
461 -- listing can be generated in parse only mode with semantics off.
465 Add_List_Pragma_Entry
(Page
, Semi
);
471 -- pragma Restrictions (RESTRICTION {, RESTRICTION});
474 -- restriction_IDENTIFIER
475 -- | restriction_parameter_IDENTIFIER => EXPRESSION
477 -- We process the case of No_Obsolescent_Features, since this has
478 -- a syntactic effect that we need to detect at parse time (the use
479 -- of replacement characters such as colon for pound sign).
481 when Pragma_Restrictions
=>
482 Process_Restrictions_Or_Restriction_Warnings
;
484 --------------------------
485 -- Restriction_Warnings --
486 --------------------------
488 -- pragma Restriction_Warnings (RESTRICTION {, RESTRICTION});
491 -- restriction_IDENTIFIER
492 -- | restriction_parameter_IDENTIFIER => EXPRESSION
494 -- See above comment for pragma Restrictions
496 when Pragma_Restriction_Warnings
=>
497 Process_Restrictions_Or_Restriction_Warnings
;
499 ----------------------------------------------------------
500 -- Source_File_Name and Source_File_Name_Project (GNAT) --
501 ----------------------------------------------------------
503 -- These two pragmas have the same syntax and semantics.
504 -- There are five forms of these pragmas:
506 -- pragma Source_File_Name[_Project] (
507 -- [UNIT_NAME =>] unit_NAME,
508 -- BODY_FILE_NAME => STRING_LITERAL
509 -- [, [INDEX =>] INTEGER_LITERAL]);
511 -- pragma Source_File_Name[_Project] (
512 -- [UNIT_NAME =>] unit_NAME,
513 -- SPEC_FILE_NAME => STRING_LITERAL
514 -- [, [INDEX =>] INTEGER_LITERAL]);
516 -- pragma Source_File_Name[_Project] (
517 -- BODY_FILE_NAME => STRING_LITERAL
518 -- [, DOT_REPLACEMENT => STRING_LITERAL]
519 -- [, CASING => CASING_SPEC]);
521 -- pragma Source_File_Name[_Project] (
522 -- SPEC_FILE_NAME => STRING_LITERAL
523 -- [, DOT_REPLACEMENT => STRING_LITERAL]
524 -- [, CASING => CASING_SPEC]);
526 -- pragma Source_File_Name[_Project] (
527 -- SUBUNIT_FILE_NAME => STRING_LITERAL
528 -- [, DOT_REPLACEMENT => STRING_LITERAL]
529 -- [, CASING => CASING_SPEC]);
531 -- CASING_SPEC ::= Uppercase | Lowercase | Mixedcase
533 -- Pragma Source_File_Name_Project (SFNP) is equivalent to pragma
534 -- Source_File_Name (SFN), however their usage is exclusive:
535 -- SFN can only be used when no project file is used, while
536 -- SFNP can only be used when a project file is used.
538 -- The Project Manager produces a configuration pragmas file that
539 -- is communicated to the compiler with -gnatec switch. This file
540 -- contains only SFNP pragmas (at least two for the default naming
541 -- scheme. As this configuration pragmas file is always the first
542 -- processed by the compiler, it prevents the use of pragmas SFN in
543 -- other config files when a project file is in use.
545 -- Note: we process this during parsing, since we need to have the
546 -- source file names set well before the semantic analysis starts,
547 -- since we load the spec and with'ed packages before analysis.
549 when Pragma_Source_File_Name | Pragma_Source_File_Name_Project
=>
550 Source_File_Name
: declare
551 Unam
: Unit_Name_Type
;
561 function Get_Fname
(Arg
: Node_Id
) return File_Name_Type
;
562 -- Process file name from unit name form of pragma
564 function Get_String_Argument
(Arg
: Node_Id
) return String_Ptr
;
565 -- Process string literal value from argument
567 procedure Process_Casing
(Arg
: Node_Id
);
568 -- Process Casing argument of pattern form of pragma
570 procedure Process_Dot_Replacement
(Arg
: Node_Id
);
571 -- Process Dot_Replacement argument of pattern form of pragma
577 function Get_Fname
(Arg
: Node_Id
) return File_Name_Type
is
579 String_To_Name_Buffer
(Strval
(Expression
(Arg
)));
581 for J
in 1 .. Name_Len
loop
582 if Is_Directory_Separator
(Name_Buffer
(J
)) then
584 ("directory separator character not allowed",
585 Sloc
(Expression
(Arg
)) + Source_Ptr
(J
));
592 -------------------------
593 -- Get_String_Argument --
594 -------------------------
596 function Get_String_Argument
(Arg
: Node_Id
) return String_Ptr
is
600 if Nkind
(Expression
(Arg
)) /= N_String_Literal
602 Nkind
(Expression
(Arg
)) /= N_Operator_Symbol
605 ("argument for pragma% must be string literal", Arg
);
609 Str
:= Strval
(Expression
(Arg
));
611 -- Check string has no wide chars
613 for J
in 1 .. String_Length
(Str
) loop
614 if Get_String_Char
(Str
, J
) > 255 then
616 ("wide character not allowed in pattern for pragma%",
617 Sloc
(Expression
(Arg2
)) + Text_Ptr
(J
) - 1);
623 String_To_Name_Buffer
(Str
);
624 return new String'(Name_Buffer (1 .. Name_Len));
625 end Get_String_Argument;
631 procedure Process_Casing (Arg : Node_Id) is
632 Expr : constant Node_Id := Expression (Arg);
635 Check_Required_Identifier (Arg, Name_Casing);
637 if Nkind (Expr) = N_Identifier then
638 if Chars (Expr) = Name_Lowercase then
639 Cas := All_Lower_Case;
641 elsif Chars (Expr) = Name_Uppercase then
642 Cas := All_Upper_Case;
644 elsif Chars (Expr) = Name_Mixedcase then
651 ("Casing argument for pragma% must be " &
652 "one of Mixedcase, Lowercase, Uppercase",
656 -----------------------------
657 -- Process_Dot_Replacement --
658 -----------------------------
660 procedure Process_Dot_Replacement (Arg : Node_Id) is
662 Check_Required_Identifier (Arg, Name_Dot_Replacement);
663 Dot := Get_String_Argument (Arg);
664 end Process_Dot_Replacement;
666 -- Start of processing for Source_File_Name and
667 -- Source_File_Name_Project pragmas.
670 if Prag_Id = Pragma_Source_File_Name then
671 if Project_File_In_Use = In_Use then
673 ("pragma Source_File_Name cannot be used " &
674 "with a project file", Pragma_Sloc);
677 Project_File_In_Use := Not_In_Use;
681 if Project_File_In_Use = Not_In_Use then
683 ("pragma Source_File_Name_Project should only be used " &
684 "with a project file", Pragma_Sloc);
686 Project_File_In_Use := In_Use;
690 -- We permit from 1 to 3 arguments
692 if Arg_Count not in 1 .. 3 then
696 Expr1 := Expression (Arg1);
698 -- If first argument is identifier or selected component, then
699 -- we have the specific file case of the Source_File_Name pragma,
700 -- and the first argument is a unit name.
702 if Nkind (Expr1) = N_Identifier
704 (Nkind (Expr1) = N_Selected_Component
706 Nkind (Selector_Name (Expr1)) = N_Identifier)
708 if Nkind (Expr1) = N_Identifier
709 and then Chars (Expr1) = Name_System
712 ("pragma Source_File_Name may not be used for System",
717 -- Process index argument if present
719 if Arg_Count = 3 then
720 Expr := Expression (Arg3);
722 if Nkind (Expr) /= N_Integer_Literal
723 or else not UI_Is_In_Int_Range (Intval (Expr))
724 or else Intval (Expr) > 999
725 or else Intval (Expr) <= 0
728 ("pragma% index must be integer literal" &
729 " in range 1 .. 999", Sloc (Expr));
732 Index := UI_To_Int (Intval (Expr));
735 -- No index argument present
742 Check_Optional_Identifier (Arg1, Name_Unit_Name);
743 Unam := Get_Unit_Name (Expr1);
745 Check_Arg_Is_String_Literal (Arg2);
747 if Chars (Arg2) = Name_Spec_File_Name then
749 (Get_Spec_Name (Unam), Get_Fname (Arg2), Index);
751 elsif Chars (Arg2) = Name_Body_File_Name then
753 (Unam, Get_Fname (Arg2), Index);
757 ("pragma% argument has incorrect identifier", Arg2);
761 -- If the first argument is not an identifier, then we must have
762 -- the pattern form of the pragma, and the first argument must be
763 -- the pattern string with an appropriate name.
766 if Chars (Arg1) = Name_Spec_File_Name then
769 elsif Chars (Arg1) = Name_Body_File_Name then
772 elsif Chars (Arg1) = Name_Subunit_File_Name then
775 elsif Chars (Arg1) = Name_Unit_Name then
777 ("Unit_Name parameter for pragma% must be an identifier",
783 ("pragma% argument has incorrect identifier", Arg1);
787 Pat := Get_String_Argument (Arg1);
789 -- Check pattern has exactly one asterisk
792 for J in Pat'Range loop
793 if Pat (J) = '*' then
800 ("file name pattern must have exactly one * character",
805 -- Set defaults for Casing and Dot_Separator parameters
807 Cas := All_Lower_Case;
808 Dot := new String'(".");
810 -- Process second and third arguments if present
812 if Arg_Count
> 1 then
813 if Chars
(Arg2
) = Name_Casing
then
814 Process_Casing
(Arg2
);
816 if Arg_Count
= 3 then
817 Process_Dot_Replacement
(Arg3
);
821 Process_Dot_Replacement
(Arg2
);
823 if Arg_Count
= 3 then
824 Process_Casing
(Arg3
);
829 Set_File_Name_Pattern
(Pat
, Typ
, Dot
, Cas
);
831 end Source_File_Name
;
833 -----------------------------
834 -- Source_Reference (GNAT) --
835 -----------------------------
837 -- pragma Source_Reference
838 -- (INTEGER_LITERAL [, STRING_LITERAL] );
840 -- Processing for this pragma must be done at parse time, since error
841 -- messages needing the proper line numbers can be generated in parse
842 -- only mode with semantic checking turned off, and indeed we usually
843 -- turn off semantic checking anyway if any parse errors are found.
845 when Pragma_Source_Reference
=> Source_Reference
: declare
846 Fname
: File_Name_Type
;
849 if Arg_Count
/= 1 then
851 Check_No_Identifier
(Arg2
);
854 -- Check that this is first line of file. We skip this test if
855 -- we are in syntax check only mode, since we may be dealing with
856 -- multiple compilation units.
858 if Get_Physical_Line_Number
(Pragma_Sloc
) /= 1
859 and then Num_SRef_Pragmas
(Current_Source_File
) = 0
860 and then Operating_Mode
/= Check_Syntax
863 ("first % pragma must be first line of file", Pragma_Sloc
);
867 Check_No_Identifier
(Arg1
);
869 if Arg_Count
= 1 then
870 if Num_SRef_Pragmas
(Current_Source_File
) = 0 then
872 ("file name required for first % pragma in file",
882 Check_Arg_Is_String_Literal
(Arg2
);
883 String_To_Name_Buffer
(Strval
(Expression
(Arg2
)));
886 if Num_SRef_Pragmas
(Current_Source_File
) > 0 then
887 if Fname
/= Full_Ref_Name
(Current_Source_File
) then
889 ("file name must be same in all % pragmas", Pragma_Sloc
);
895 if Nkind
(Expression
(Arg1
)) /= N_Integer_Literal
then
897 ("argument for pragma% must be integer literal",
898 Sloc
(Expression
(Arg1
)));
901 -- OK, this source reference pragma is effective, however, we
902 -- ignore it if it is not in the first unit in the multiple unit
903 -- case. This is because the only purpose in this case is to
904 -- provide source pragmas for subsequent use by gnatchop.
907 if Num_Library_Units
= 1 then
908 Register_Source_Ref_Pragma
910 Strip_Directory
(Fname
),
911 UI_To_Int
(Intval
(Expression
(Arg1
))),
912 Get_Physical_Line_Number
(Pragma_Sloc
) + 1);
915 end Source_Reference
;
917 -------------------------
918 -- Style_Checks (GNAT) --
919 -------------------------
921 -- pragma Style_Checks (On | Off | ALL_CHECKS | STRING_LITERAL);
923 -- This is processed by the parser since some of the style
924 -- checks take place during source scanning and parsing.
926 when Pragma_Style_Checks
=> Style_Checks
: declare
930 OK
: Boolean := True;
933 -- Two argument case is only for semantics
935 if Arg_Count
= 2 then
940 Check_No_Identifier
(Arg1
);
941 A
:= Expression
(Arg1
);
943 if Nkind
(A
) = N_String_Literal
then
947 Slen
: constant Natural := Natural (String_Length
(S
));
948 Options
: String (1 .. Slen
);
955 C
:= Get_String_Char
(S
, Int
(J
));
957 if not In_Character_Range
(C
) then
963 Options
(J
) := Get_Character
(C
);
967 if not Ignore_Style_Checks_Pragmas
then
968 Set_Style_Check_Options
(Options
, OK
, Ptr
);
980 (Style_Msg_Buf
(1 .. Style_Msg_Len
),
981 Sloc
(Expression
(Arg1
)) + Source_Ptr
(Ptr
));
986 elsif Nkind
(A
) /= N_Identifier
then
989 elsif Chars
(A
) = Name_All_Checks
then
990 if not Ignore_Style_Checks_Pragmas
then
992 Stylesw
.Set_GNAT_Style_Check_Options
;
994 Stylesw
.Set_Default_Style_Check_Options
;
998 elsif Chars
(A
) = Name_On
then
999 if not Ignore_Style_Checks_Pragmas
then
1000 Style_Check
:= True;
1003 elsif Chars
(A
) = Name_Off
then
1004 if not Ignore_Style_Checks_Pragmas
then
1005 Style_Check
:= False;
1013 Error_Msg
("incorrect argument for pragma%", Sloc
(A
));
1019 -------------------------
1020 -- Suppress_All (GNAT) --
1021 -------------------------
1023 -- pragma Suppress_All
1025 -- This is a rather odd pragma, because other compilers allow it in
1026 -- strange places. DEC allows it at the end of units, and Rational
1027 -- allows it as a program unit pragma, when it would be more natural
1028 -- if it were a configuration pragma.
1030 -- Since the reason we provide this pragma is for compatibility with
1031 -- these other compilers, we want to accommodate these strange placement
1032 -- rules, and the easiest thing is simply to allow it anywhere in a
1033 -- unit. If this pragma appears anywhere within a unit, then the effect
1034 -- is as though a pragma Suppress (All_Checks) had appeared as the first
1035 -- line of the current file, i.e. as the first configuration pragma in
1036 -- the current unit.
1038 -- To get this effect, we set the flag Has_Pragma_Suppress_All in the
1039 -- compilation unit node for the current source file then in the last
1040 -- stage of parsing a file, if this flag is set, we materialize the
1041 -- Suppress (All_Checks) pragma, marked as not coming from Source.
1043 when Pragma_Suppress_All
=>
1044 Set_Has_Pragma_Suppress_All
(Cunit
(Current_Source_Unit
));
1046 ---------------------
1047 -- Warnings (GNAT) --
1048 ---------------------
1050 -- pragma Warnings ([TOOL_NAME,] DETAILS [, REASON]);
1052 -- DETAILS ::= On | Off
1053 -- DETAILS ::= On | Off, local_NAME
1054 -- DETAILS ::= static_string_EXPRESSION
1055 -- DETAILS ::= On | Off, static_string_EXPRESSION
1057 -- TOOL_NAME ::= GNAT | GNATProve
1059 -- REASON ::= Reason => STRING_LITERAL {& STRING_LITERAL}
1061 -- Note: If the first argument matches an allowed tool name, it is
1062 -- always considered to be a tool name, even if there is a string
1063 -- variable of that name.
1065 -- The one argument ON/OFF case is processed by the parser, since it may
1066 -- control parser warnings as well as semantic warnings, and in any case
1067 -- we want to be absolutely sure that the range in the warnings table is
1068 -- set well before any semantic analysis is performed. Note that we
1069 -- ignore this pragma if debug flag -gnatd.i is set.
1071 -- Also note that the "one argument" case may have two or three
1072 -- arguments if the first one is a tool name, and/or the last one is a
1075 when Pragma_Warnings
=> Warnings
: declare
1076 function First_Arg_Is_Matching_Tool_Name
return Boolean;
1077 -- Returns True if the first argument is a tool name matching the
1078 -- current tool being run.
1080 function Last_Arg
return Node_Id
;
1081 -- Returns the last argument
1083 function Last_Arg_Is_Reason
return Boolean;
1084 -- Returns True if the last argument is a reason argument
1086 function Get_Reason
return String_Id
;
1087 -- Analyzes Reason argument and returns corresponding String_Id
1088 -- value, or null if there is no Reason argument, or if the
1089 -- argument is not of the required form.
1091 -------------------------------------
1092 -- First_Arg_Is_Matching_Tool_Name --
1093 -------------------------------------
1095 function First_Arg_Is_Matching_Tool_Name
return Boolean is
1097 return Nkind
(Arg1
) = N_Identifier
1099 -- Return True if the tool name is GNAT, and we're not in
1100 -- GNATprove or CodePeer or ASIS mode...
1102 and then ((Chars
(Arg1
) = Name_Gnat
1104 (CodePeer_Mode
or GNATprove_Mode
or ASIS_Mode
))
1106 -- or if the tool name is GNATprove, and we're in GNATprove
1110 (Chars
(Arg1
) = Name_Gnatprove
1111 and then GNATprove_Mode
));
1112 end First_Arg_Is_Matching_Tool_Name
;
1118 function Get_Reason
return String_Id
is
1119 Arg
: constant Node_Id
:= Last_Arg
;
1121 if Last_Arg_Is_Reason
then
1123 Get_Reason_String
(Expression
(Arg
));
1126 return Null_String_Id
;
1134 function Last_Arg
return Node_Id
is
1138 if Arg_Count
= 1 then
1140 elsif Arg_Count
= 2 then
1142 elsif Arg_Count
= 3 then
1144 elsif Arg_Count
= 4 then
1145 Last_Arg
:= Next
(Arg3
);
1147 -- Illegal case, error issued in semantic analysis
1156 ------------------------
1157 -- Last_Arg_Is_Reason --
1158 ------------------------
1160 function Last_Arg_Is_Reason
return Boolean is
1161 Arg
: constant Node_Id
:= Last_Arg
;
1163 return Nkind
(Arg
) in N_Has_Chars
1164 and then Chars
(Arg
) = Name_Reason
;
1165 end Last_Arg_Is_Reason
;
1167 The_Arg
: Node_Id
; -- On/Off argument
1170 -- Start of processing for Warnings
1173 if not Debug_Flag_Dot_I
1174 and then (Arg_Count
= 1
1175 or else (Arg_Count
= 2
1176 and then (First_Arg_Is_Matching_Tool_Name
1178 Last_Arg_Is_Reason
))
1179 or else (Arg_Count
= 3
1180 and then First_Arg_Is_Matching_Tool_Name
1181 and then Last_Arg_Is_Reason
))
1183 if First_Arg_Is_Matching_Tool_Name
then
1189 Check_No_Identifier
(The_Arg
);
1190 Argx
:= Expression
(The_Arg
);
1192 if Nkind
(Argx
) = N_Identifier
then
1193 if Chars
(Argx
) = Name_On
then
1194 Set_Warnings_Mode_On
(Pragma_Sloc
);
1195 elsif Chars
(Argx
) = Name_Off
then
1196 Set_Warnings_Mode_Off
(Pragma_Sloc
, Get_Reason
);
1202 -----------------------------
1203 -- Wide_Character_Encoding --
1204 -----------------------------
1206 -- pragma Wide_Character_Encoding (IDENTIFIER | CHARACTER_LITERAL);
1208 -- This is processed by the parser, since the scanner is affected
1210 when Pragma_Wide_Character_Encoding
=> Wide_Character_Encoding
: declare
1214 Check_Arg_Count
(1);
1215 Check_No_Identifier
(Arg1
);
1216 A
:= Expression
(Arg1
);
1218 if Nkind
(A
) = N_Identifier
then
1219 Get_Name_String
(Chars
(A
));
1220 Wide_Character_Encoding_Method
:=
1221 Get_WC_Encoding_Method
(Name_Buffer
(1 .. Name_Len
));
1223 elsif Nkind
(A
) = N_Character_Literal
then
1225 R
: constant Char_Code
:=
1226 Char_Code
(UI_To_Int
(Char_Literal_Value
(A
)));
1228 if In_Character_Range
(R
) then
1229 Wide_Character_Encoding_Method
:=
1230 Get_WC_Encoding_Method
(Get_Character
(R
));
1232 raise Constraint_Error
;
1237 raise Constraint_Error
;
1240 Upper_Half_Encoding
:=
1241 Wide_Character_Encoding_Method
in
1242 WC_Upper_Half_Encoding_Method
;
1245 when Constraint_Error
=>
1246 Error_Msg_N
("invalid argument for pragma%", Arg1
);
1247 end Wide_Character_Encoding
;
1249 -----------------------
1250 -- All Other Pragmas --
1251 -----------------------
1253 -- For all other pragmas, checking and processing is handled
1254 -- entirely in Sem_Prag, and no further checking is done by Par.
1256 when Pragma_Abort_Defer |
1257 Pragma_Abstract_State |
1258 Pragma_Async_Readers |
1259 Pragma_Async_Writers |
1260 Pragma_Assertion_Policy |
1262 Pragma_Assume_No_Invalid_Values |
1263 Pragma_All_Calls_Remote |
1264 Pragma_Allow_Integer_Address |
1267 Pragma_Assert_And_Cut |
1268 Pragma_Asynchronous |
1270 Pragma_Atomic_Components |
1271 Pragma_Attach_Handler |
1272 Pragma_Attribute_Definition |
1274 Pragma_Check_Float_Overflow |
1276 Pragma_Check_Policy |
1277 Pragma_CIL_Constructor |
1278 Pragma_Compile_Time_Error |
1279 Pragma_Compile_Time_Warning |
1280 Pragma_Contract_Cases |
1281 Pragma_Convention_Identifier |
1283 Pragma_CPP_Constructor |
1284 Pragma_CPP_Virtual |
1287 Pragma_C_Pass_By_Copy |
1289 Pragma_Common_Object |
1290 Pragma_Complete_Representation |
1291 Pragma_Complex_Representation |
1292 Pragma_Component_Alignment |
1295 Pragma_Debug_Policy |
1297 Pragma_Detect_Blocking |
1298 Pragma_Default_Initial_Condition |
1299 Pragma_Default_Scalar_Storage_Order |
1300 Pragma_Default_Storage_Pool |
1301 Pragma_Disable_Atomic_Synchronization |
1302 Pragma_Discard_Names |
1303 Pragma_Dispatching_Domain |
1304 Pragma_Effective_Reads |
1305 Pragma_Effective_Writes |
1308 Pragma_Elaborate_All |
1309 Pragma_Elaborate_Body |
1310 Pragma_Elaboration_Checks |
1311 Pragma_Enable_Atomic_Synchronization |
1313 Pragma_Export_Function |
1314 Pragma_Export_Object |
1315 Pragma_Export_Procedure |
1316 Pragma_Export_Value |
1317 Pragma_Export_Valued_Procedure |
1318 Pragma_Extend_System |
1319 Pragma_Extensions_Visible |
1321 Pragma_External_Name_Casing |
1322 Pragma_Favor_Top_Level |
1324 Pragma_Finalize_Storage_Only |
1328 Pragma_Implementation_Defined |
1329 Pragma_Implemented |
1330 Pragma_Implicit_Packing |
1332 Pragma_Import_Function |
1333 Pragma_Import_Object |
1334 Pragma_Import_Procedure |
1335 Pragma_Import_Valued_Procedure |
1336 Pragma_Independent |
1337 Pragma_Independent_Components |
1338 Pragma_Initial_Condition |
1339 Pragma_Initialize_Scalars |
1340 Pragma_Initializes |
1342 Pragma_Inline_Always |
1343 Pragma_Inline_Generic |
1344 Pragma_Inspection_Point |
1346 Pragma_Interface_Name |
1347 Pragma_Interrupt_Handler |
1348 Pragma_Interrupt_State |
1349 Pragma_Interrupt_Priority |
1351 Pragma_Java_Constructor |
1352 Pragma_Java_Interface |
1356 Pragma_Linker_Alias |
1357 Pragma_Linker_Constructor |
1358 Pragma_Linker_Destructor |
1359 Pragma_Linker_Options |
1360 Pragma_Linker_Section |
1362 Pragma_Locking_Policy |
1363 Pragma_Loop_Invariant |
1364 Pragma_Loop_Optimize |
1365 Pragma_Loop_Variant |
1366 Pragma_Machine_Attribute |
1368 Pragma_Main_Storage |
1369 Pragma_Memory_Size |
1371 Pragma_No_Elaboration_Code_All |
1374 Pragma_No_Run_Time |
1375 Pragma_No_Strict_Aliasing |
1376 Pragma_No_Tagged_Streams |
1377 Pragma_Normalize_Scalars |
1378 Pragma_Obsolescent |
1381 Pragma_Optimize_Alignment |
1382 Pragma_Overflow_Mode |
1383 Pragma_Overriding_Renamings |
1386 Pragma_Partition_Elaboration_Policy |
1388 Pragma_Preelaborable_Initialization |
1390 Pragma_Prefix_Exception_Messages |
1391 Pragma_Persistent_BSS |
1393 Pragma_Postcondition |
1396 Pragma_Precondition |
1398 Pragma_Preelaborate |
1401 Pragma_Priority_Specific_Dispatching |
1403 Pragma_Profile_Warnings |
1404 Pragma_Propagate_Exceptions |
1405 Pragma_Provide_Shift_Operators |
1406 Pragma_Psect_Object |
1408 Pragma_Pure_Function |
1409 Pragma_Queuing_Policy |
1410 Pragma_Refined_Depends |
1411 Pragma_Refined_Global |
1412 Pragma_Refined_Post |
1413 Pragma_Refined_State |
1414 Pragma_Relative_Deadline |
1415 Pragma_Remote_Access_Type |
1416 Pragma_Remote_Call_Interface |
1417 Pragma_Remote_Types |
1418 Pragma_Restricted_Run_Time |
1422 Pragma_Share_Generic |
1424 Pragma_Shared_Passive |
1425 Pragma_Short_Circuit_And_Or |
1426 Pragma_Short_Descriptors |
1427 Pragma_Simple_Storage_Pool_Type |
1429 Pragma_Storage_Size |
1430 Pragma_Storage_Unit |
1431 Pragma_Static_Elaboration_Desired |
1432 Pragma_Stream_Convert |
1435 Pragma_Suppress_Debug_Info |
1436 Pragma_Suppress_Exception_Locations |
1437 Pragma_Suppress_Initialization |
1438 Pragma_System_Name |
1439 Pragma_Task_Dispatching_Policy |
1442 Pragma_Task_Storage |
1444 Pragma_Thread_Local_Storage |
1447 Pragma_Type_Invariant |
1448 Pragma_Type_Invariant_Class |
1449 Pragma_Unchecked_Union |
1450 Pragma_Unevaluated_Use_Of_Old |
1451 Pragma_Unimplemented_Unit |
1452 Pragma_Universal_Aliasing |
1453 Pragma_Universal_Data |
1455 Pragma_Unreferenced |
1456 Pragma_Unreferenced_Objects |
1457 Pragma_Unreserve_All_Interrupts |
1459 Pragma_Use_VADS_Size |
1461 Pragma_Volatile_Components |
1462 Pragma_Warning_As_Error |
1463 Pragma_Weak_External |
1464 Pragma_Validity_Checks
=>
1467 --------------------
1468 -- Unknown_Pragma --
1469 --------------------
1471 -- Should be impossible, since we excluded this case earlier on
1473 when Unknown_Pragma
=>
1474 raise Program_Error
;
1480 --------------------
1481 -- Error Handling --
1482 --------------------
1485 when Error_Resync
=>