Merge from mainline (gomp-merge-2005-02-26).
[official-gcc.git] / gcc / ada / rtsfind.adb
blob15a2fd1c86d02a688033bd95b61be5126137f9e1
1 ------------------------------------------------------------------------------
2 -- --
3 -- GNAT COMPILER COMPONENTS --
4 -- --
5 -- R T S F I N D --
6 -- --
7 -- B o d y --
8 -- --
9 -- Copyright (C) 1992-2005, Free Software Foundation, Inc. --
10 -- --
11 -- GNAT is free software; you can redistribute it and/or modify it under --
12 -- terms of the GNU General Public License as published by the Free Soft- --
13 -- ware Foundation; either version 2, or (at your option) any later ver- --
14 -- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
15 -- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
16 -- or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License --
17 -- for more details. You should have received a copy of the GNU General --
18 -- Public License distributed with GNAT; see file COPYING. If not, write --
19 -- to the Free Software Foundation, 59 Temple Place - Suite 330, Boston, --
20 -- MA 02111-1307, USA. --
21 -- --
22 -- 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 Atree; use Atree;
28 with Casing; use Casing;
29 with Csets; use Csets;
30 with Debug; use Debug;
31 with Einfo; use Einfo;
32 with Elists; use Elists;
33 with Errout; use Errout;
34 with Fname; use Fname;
35 with Fname.UF; use Fname.UF;
36 with Lib; use Lib;
37 with Lib.Load; use Lib.Load;
38 with Namet; use Namet;
39 with Nlists; use Nlists;
40 with Nmake; use Nmake;
41 with Output; use Output;
42 with Opt; use Opt;
43 with Restrict; use Restrict;
44 with Sem; use Sem;
45 with Sem_Ch7; use Sem_Ch7;
46 with Sem_Util; use Sem_Util;
47 with Sinfo; use Sinfo;
48 with Stand; use Stand;
49 with Snames; use Snames;
50 with Tbuild; use Tbuild;
51 with Uname; use Uname;
53 package body Rtsfind is
55 RTE_Available_Call : Boolean := False;
56 -- Set True during call to RTE from RTE_Available. Tells RTE to set
57 -- RTE_Is_Available to False rather than generating an error message.
59 RTE_Is_Available : Boolean;
60 -- Set True by RTE_Available on entry. When RTE_Available_Call is set
61 -- True, set False if RTE would otherwise generate an error message.
63 ----------------
64 -- Unit table --
65 ----------------
67 -- The unit table has one entry for each unit included in the definition
68 -- of the type RTU_Id in the spec. The table entries are initialized in
69 -- Initialize to set the Entity field to Empty, indicating that the
70 -- corresponding unit has not yet been loaded. The fields are set when
71 -- a unit is loaded to contain the defining entity for the unit, the
72 -- unit name, and the unit number.
74 -- Note that a unit can be loaded either by a call to find an entity
75 -- within the unit (e.g. RTE), or by an explicit with of the unit. In
76 -- the latter case it is critical to make a call to Set_RTU_Loaded to
77 -- ensure that the entry in this table reflects the load.
79 type RT_Unit_Table_Record is record
80 Entity : Entity_Id;
81 Uname : Unit_Name_Type;
82 Unum : Unit_Number_Type;
83 Withed : Boolean;
84 end record;
86 RT_Unit_Table : array (RTU_Id) of RT_Unit_Table_Record;
88 --------------------------
89 -- Runtime Entity Table --
90 --------------------------
92 -- There is one entry in the runtime entity table for each entity that is
93 -- included in the definition of the RE_Id type in the spec. The entries
94 -- are set by Initialize_Rtsfind to contain Empty, indicating that the
95 -- entity has not yet been located. Once the entity is located for the
96 -- first time, its ID is stored in this array, so that subsequent calls
97 -- for the same entity can be satisfied immediately.
99 RE_Table : array (RE_Id) of Entity_Id;
101 --------------------------
102 -- Generation of WITH's --
103 --------------------------
105 -- When a unit is implicitly loaded as a result of a call to RTE, it
106 -- is necessary to create an implicit WITH to ensure that the object
107 -- is correctly loaded by the binder. Such WITH statements are only
108 -- required when the request is from the extended main unit (if a
109 -- client needs a WITH, that will be taken care of when the client
110 -- is compiled).
112 -- We always attach the WITH to the main unit. This is not perfectly
113 -- accurate in terms of elaboration requirements, but it is close
114 -- enough, since the units that are accessed using rtsfind do not
115 -- have delicate elaboration requirements.
117 -- The flag Withed in the unit table record is initially set to False.
118 -- It is set True if a WITH has been generated for the main unit for
119 -- the corresponding unit.
121 -----------------------
122 -- Local Subprograms --
123 -----------------------
125 procedure Entity_Not_Defined (Id : RE_Id);
126 -- Outputs error messages for an entity that is not defined in the
127 -- run-time library (the form of the error message is tailored for
128 -- no run time/configurable run time mode as required).
130 procedure Load_Fail (S : String; U_Id : RTU_Id; Id : RE_Id);
131 -- Internal procedure called if we can't sucessfully locate or
132 -- process a run-time unit. The parameters give information about
133 -- the error message to be given. S is a reason for failing to
134 -- compile the file and U_Id is the unit id. RE_Id is the RE_Id
135 -- originally passed to RTE. The message in S is one of the
136 -- following:
138 -- "not found"
139 -- "had parser errors"
140 -- "had semantic errors"
142 -- The "not found" case is treated specially in that it is considered
143 -- a normal situation in configurable run-time mode (and the message in
144 -- this case is suppressed unless we are operating in All_Errors_Mode).
146 function Get_Unit_Name (U_Id : RTU_Id) return Unit_Name_Type;
147 -- Retrieves the Unit Name given a unit id represented by its
148 -- enumeration value in RTU_Id.
150 procedure Load_RTU
151 (U_Id : RTU_Id;
152 Id : RE_Id := RE_Null;
153 Use_Setting : Boolean := False);
154 -- Load the unit whose Id is given if not already loaded. The unit is
155 -- loaded, analyzed, and added to the WITH list, and the entry in
156 -- RT_Unit_Table is updated to reflect the load. Use_Setting is used
157 -- to indicate the initial setting for the Is_Potentially_Use_Visible
158 -- flag of the entity for the loaded unit (if it is indeed loaded).
159 -- A value of False means nothing special need be done. A value of
160 -- True indicates that this flag must be set to True. It is needed
161 -- only in the Text_IO_Kludge procedure, which may materialize an
162 -- entity of Text_IO (or [Wide_]Wide_Text_IO) that was previously unknown.
163 -- Id is the RE_Id value of the entity which was originally requested.
164 -- Id is used only for error message detail, and if it is RE_Null, then
165 -- the attempt to output the entity name is ignored.
167 procedure Output_Entity_Name (Id : RE_Id; Msg : String);
168 -- Output continuation error message giving qualified name of entity
169 -- corresponding to Id, appending the string given by Msg. This call
170 -- is only effective in All_Errors mode.
172 function RE_Chars (E : RE_Id) return Name_Id;
173 -- Given a RE_Id value returns the Chars of the corresponding entity.
175 procedure RTE_Error_Msg (Msg : String);
176 -- Generates a message by calling Error_Msg_N specifying Current_Error_Node
177 -- as the node location using the given Msg text. Special processing in the
178 -- case where RTE_Available_Call is set. In this case, no message is output
179 -- and instead RTE_Is_Available is set to False. Note that this can only be
180 -- used if you are sure that the message comes directly or indirectly from
181 -- a call to the RTE function.
183 ------------------------
184 -- Entity_Not_Defined --
185 ------------------------
187 procedure Entity_Not_Defined (Id : RE_Id) is
188 begin
189 if No_Run_Time_Mode then
191 -- If the error occurs when compiling the body of a predefined
192 -- unit for inlining purposes, the body must be illegal in this
193 -- mode, and there is no point in continuing.
195 if Is_Predefined_File_Name
196 (Unit_File_Name (Get_Source_Unit (Sloc (Current_Error_Node))))
197 then
198 Error_Msg_N
199 ("construct not allowed in no run time mode!",
200 Current_Error_Node);
201 raise Unrecoverable_Error;
203 else
204 RTE_Error_Msg ("|construct not allowed in no run time mode");
205 end if;
207 elsif Configurable_Run_Time_Mode then
208 RTE_Error_Msg ("|construct not allowed in this configuration>");
209 else
210 RTE_Error_Msg ("run-time configuration error");
211 end if;
213 Output_Entity_Name (Id, "not defined");
214 end Entity_Not_Defined;
216 -------------------
217 -- Get_Unit_Name --
218 -------------------
220 function Get_Unit_Name (U_Id : RTU_Id) return Unit_Name_Type is
221 Uname_Chars : constant String := RTU_Id'Image (U_Id);
223 begin
224 Name_Len := Uname_Chars'Length;
225 Name_Buffer (1 .. Name_Len) := Uname_Chars;
226 Set_Casing (All_Lower_Case);
228 if U_Id in Ada_Child then
229 Name_Buffer (4) := '.';
231 if U_Id in Ada_Calendar_Child then
232 Name_Buffer (13) := '.';
234 elsif U_Id in Ada_Finalization_Child then
235 Name_Buffer (17) := '.';
237 elsif U_Id in Ada_Interrupts_Child then
238 Name_Buffer (15) := '.';
240 elsif U_Id in Ada_Real_Time_Child then
241 Name_Buffer (14) := '.';
243 elsif U_Id in Ada_Streams_Child then
244 Name_Buffer (12) := '.';
246 elsif U_Id in Ada_Text_IO_Child then
247 Name_Buffer (12) := '.';
249 elsif U_Id in Ada_Wide_Text_IO_Child then
250 Name_Buffer (17) := '.';
252 elsif U_Id in Ada_Wide_Wide_Text_IO_Child then
253 Name_Buffer (22) := '.';
254 end if;
256 elsif U_Id in Interfaces_Child then
257 Name_Buffer (11) := '.';
259 elsif U_Id in System_Child then
260 Name_Buffer (7) := '.';
262 if U_Id in System_Tasking_Child then
263 Name_Buffer (15) := '.';
264 end if;
266 if U_Id in System_Tasking_Restricted_Child then
267 Name_Buffer (26) := '.';
268 end if;
270 if U_Id in System_Tasking_Protected_Objects_Child then
271 Name_Buffer (33) := '.';
272 end if;
274 if U_Id in System_Tasking_Async_Delays_Child then
275 Name_Buffer (28) := '.';
276 end if;
277 end if;
279 -- Add %s at end for spec
281 Name_Buffer (Name_Len + 1) := '%';
282 Name_Buffer (Name_Len + 2) := 's';
283 Name_Len := Name_Len + 2;
285 return Name_Find;
286 end Get_Unit_Name;
288 ----------------
289 -- Initialize --
290 ----------------
292 procedure Initialize is
293 begin
294 -- Initialize the unit table
296 for J in RTU_Id loop
297 RT_Unit_Table (J).Entity := Empty;
298 end loop;
300 for J in RE_Id loop
301 RE_Table (J) := Empty;
302 end loop;
304 RTE_Is_Available := False;
305 end Initialize;
307 ------------
308 -- Is_RTE --
309 ------------
311 function Is_RTE (Ent : Entity_Id; E : RE_Id) return Boolean is
312 E_Unit_Name : Unit_Name_Type;
313 Ent_Unit_Name : Unit_Name_Type;
315 S : Entity_Id;
316 E1 : Entity_Id;
317 E2 : Entity_Id;
319 begin
320 if No (Ent) then
321 return False;
323 -- If E has already a corresponding entity, check it directly,
324 -- going to full views if they exist to deal with the incomplete
325 -- and private type cases properly.
327 elsif Present (RE_Table (E)) then
328 E1 := Ent;
330 if Is_Type (E1) and then Present (Full_View (E1)) then
331 E1 := Full_View (E1);
332 end if;
334 E2 := RE_Table (E);
336 if Is_Type (E2) and then Present (Full_View (E2)) then
337 E2 := Full_View (E2);
338 end if;
340 return E1 = E2;
341 end if;
343 -- If the unit containing E is not loaded, we already know that
344 -- the entity we have cannot have come from this unit.
346 E_Unit_Name := Get_Unit_Name (RE_Unit_Table (E));
348 if not Is_Loaded (E_Unit_Name) then
349 return False;
350 end if;
352 -- Here the unit containing the entity is loaded. We have not made
353 -- an explicit call to RTE to get the entity in question, but we may
354 -- have obtained a reference to it indirectly from some other entity
355 -- in the same unit, or some other unit that references it.
357 -- Get the defining unit of the entity
359 S := Scope (Ent);
361 if Ekind (S) /= E_Package then
362 return False;
363 end if;
365 Ent_Unit_Name := Get_Unit_Name (Unit_Declaration_Node (S));
367 -- If the defining unit of the entity we are testing is not the
368 -- unit containing E, then they cannot possibly match.
370 if Ent_Unit_Name /= E_Unit_Name then
371 return False;
372 end if;
374 -- If the units match, then compare the names (remember that no
375 -- overloading is permitted in entities fetched using Rtsfind).
377 if RE_Chars (E) = Chars (Ent) then
378 RE_Table (E) := Ent;
380 -- If front-end inlining is enabled, we may be within a body that
381 -- contains inlined functions, which has not been retrieved through
382 -- rtsfind, and therefore is not yet recorded in the RT_Unit_Table.
383 -- Add the unit information now, it must be fully available.
385 declare
386 U : RT_Unit_Table_Record
387 renames RT_Unit_Table (RE_Unit_Table (E));
388 begin
389 if No (U.Entity) then
390 U.Entity := S;
391 U.Uname := E_Unit_Name;
392 U.Unum := Get_Source_Unit (S);
393 end if;
394 end;
396 return True;
397 else
398 return False;
399 end if;
400 end Is_RTE;
402 ------------
403 -- Is_RTU --
404 ------------
406 function Is_RTU (Ent : Entity_Id; U : RTU_Id) return Boolean is
407 E : constant Entity_Id := RT_Unit_Table (U).Entity;
408 begin
409 return Present (E) and then E = Ent;
410 end Is_RTU;
412 ----------------------------
413 -- Is_Text_IO_Kludge_Unit --
414 ----------------------------
416 function Is_Text_IO_Kludge_Unit (Nam : Node_Id) return Boolean is
417 Prf : Node_Id;
418 Sel : Node_Id;
420 begin
421 if Nkind (Nam) /= N_Expanded_Name then
422 return False;
423 end if;
425 Prf := Prefix (Nam);
426 Sel := Selector_Name (Nam);
428 if Nkind (Sel) /= N_Expanded_Name
429 or else Nkind (Prf) /= N_Identifier
430 or else Chars (Prf) /= Name_Ada
431 then
432 return False;
433 end if;
435 Prf := Prefix (Sel);
436 Sel := Selector_Name (Sel);
438 return
439 Nkind (Prf) = N_Identifier
440 and then
441 (Chars (Prf) = Name_Text_IO
442 or else
443 Chars (Prf) = Name_Wide_Text_IO
444 or else
445 Chars (Prf) = Name_Wide_Wide_Text_IO)
446 and then
447 Nkind (Sel) = N_Identifier
448 and then
449 Chars (Sel) in Text_IO_Package_Name;
450 end Is_Text_IO_Kludge_Unit;
452 ---------------
453 -- Load_Fail --
454 ---------------
456 procedure Load_Fail (S : String; U_Id : RTU_Id; Id : RE_Id) is
457 M : String (1 .. 100);
458 P : Natural := 0;
460 begin
461 -- Output header message
463 if Configurable_Run_Time_Mode then
464 RTE_Error_Msg ("construct not allowed in configurable run-time mode");
465 else
466 RTE_Error_Msg ("run-time library configuration error");
467 end if;
469 -- Output file name and reason string
471 if S /= "not found"
472 or else not Configurable_Run_Time_Mode
473 or else All_Errors_Mode
474 then
475 M (1 .. 6) := "\file ";
476 P := 6;
478 Get_Name_String
479 (Get_File_Name (RT_Unit_Table (U_Id).Uname, Subunit => False));
480 M (P + 1 .. P + Name_Len) := Name_Buffer (1 .. Name_Len);
481 P := P + Name_Len;
483 M (P + 1) := ' ';
484 P := P + 1;
486 M (P + 1 .. P + S'Length) := S;
487 P := P + S'Length;
489 RTE_Error_Msg (M (1 .. P));
491 -- Output entity name
493 Output_Entity_Name (Id, "not available");
494 end if;
496 raise RE_Not_Available;
497 end Load_Fail;
499 --------------
500 -- Load_RTU --
501 --------------
503 procedure Load_RTU
504 (U_Id : RTU_Id;
505 Id : RE_Id := RE_Null;
506 Use_Setting : Boolean := False)
508 U : RT_Unit_Table_Record renames RT_Unit_Table (U_Id);
509 Priv_Par : constant Elist_Id := New_Elmt_List;
510 Lib_Unit : Node_Id;
512 procedure Save_Private_Visibility;
513 -- If the current unit is the body of child unit or the spec of a
514 -- private child unit, the private declarations of the parent (s)
515 -- are visible. If the unit to be loaded is another public sibling,
516 -- its compilation will affect the visibility of the common ancestors.
517 -- Indicate those that must be restored.
519 procedure Restore_Private_Visibility;
520 -- Restore the visibility of ancestors after compiling RTU.
522 --------------------------------
523 -- Restore_Private_Visibility --
524 --------------------------------
526 procedure Restore_Private_Visibility is
527 E_Par : Elmt_Id;
529 begin
530 E_Par := First_Elmt (Priv_Par);
532 while Present (E_Par) loop
533 if not In_Private_Part (Node (E_Par)) then
534 Install_Private_Declarations (Node (E_Par));
535 end if;
537 Next_Elmt (E_Par);
538 end loop;
539 end Restore_Private_Visibility;
541 -----------------------------
542 -- Save_Private_Visibility --
543 -----------------------------
545 procedure Save_Private_Visibility is
546 Par : Entity_Id;
548 begin
549 Par := Scope (Current_Scope);
551 while Present (Par)
552 and then Par /= Standard_Standard
553 loop
554 if Ekind (Par) = E_Package
555 and then Is_Compilation_Unit (Par)
556 and then In_Private_Part (Par)
557 then
558 Append_Elmt (Par, Priv_Par);
559 end if;
561 Par := Scope (Par);
562 end loop;
563 end Save_Private_Visibility;
565 -- Start of processing for Load_RTU
567 begin
568 -- Nothing to do if unit is already loaded
570 if Present (U.Entity) then
571 return;
572 end if;
574 -- Note if secondary stack is used
576 if U_Id = System_Secondary_Stack then
577 Opt.Sec_Stack_Used := True;
578 end if;
580 -- Otherwise we need to load the unit, First build unit name
581 -- from the enumeration literal name in type RTU_Id.
583 U.Uname := Get_Unit_Name (U_Id);
584 U.Withed := False;
586 declare
587 Loaded : Boolean;
588 pragma Warnings (Off, Loaded);
589 begin
590 Loaded := Is_Loaded (U.Uname);
591 end;
593 -- Now do the load call, note that setting Error_Node to Empty is
594 -- a signal to Load_Unit that we will regard a failure to find the
595 -- file as a fatal error, and that it should not output any kind
596 -- of diagnostics, since we will take care of it here.
598 U.Unum :=
599 Load_Unit
600 (Load_Name => U.Uname,
601 Required => False,
602 Subunit => False,
603 Error_Node => Empty);
605 if U.Unum = No_Unit then
606 Load_Fail ("not found", U_Id, Id);
607 elsif Fatal_Error (U.Unum) then
608 Load_Fail ("had parser errors", U_Id, Id);
609 end if;
611 -- Make sure that the unit is analyzed
613 declare
614 Was_Analyzed : constant Boolean :=
615 Analyzed (Cunit (Current_Sem_Unit));
617 begin
618 -- Pretend that the current unit is analyzed, in case it is System
619 -- or some such. This allows us to put some declarations, such as
620 -- exceptions and packed arrays of Boolean, into System even though
621 -- expanding them requires System...
623 -- This is a bit odd but works fine. If the RTS unit does not depend
624 -- in any way on the current unit, then it never gets back into the
625 -- current unit's tree, and the change we make to the current unit
626 -- tree is never noticed by anyone (it is undone in a moment). That
627 -- is the normal situation.
629 -- If the RTS Unit *does* depend on the current unit, for instance,
630 -- when you are compiling System, then you had better have finished
631 -- analyzing the part of System that is depended on before you try
632 -- to load the RTS Unit. This means having the System ordered in an
633 -- appropriate manner.
635 Set_Analyzed (Cunit (Current_Sem_Unit), True);
637 if not Analyzed (Cunit (U.Unum)) then
638 Save_Private_Visibility;
639 Semantics (Cunit (U.Unum));
640 Restore_Private_Visibility;
642 if Fatal_Error (U.Unum) then
643 Load_Fail ("had semantic errors", U_Id, Id);
644 end if;
645 end if;
647 -- Undo the pretence
649 Set_Analyzed (Cunit (Current_Sem_Unit), Was_Analyzed);
650 end;
652 Lib_Unit := Unit (Cunit (U.Unum));
653 U.Entity := Defining_Entity (Lib_Unit);
655 if Use_Setting then
656 Set_Is_Potentially_Use_Visible (U.Entity, True);
657 end if;
658 end Load_RTU;
660 -----------------------
661 -- Output_Entity_Name --
662 ------------------------
664 procedure Output_Entity_Name (Id : RE_Id; Msg : String) is
665 M : String (1 .. 2048);
666 P : Natural := 0;
667 -- M (1 .. P) is current message to be output
669 RE_Image : constant String := RE_Id'Image (Id);
671 begin
672 if Id = RE_Null or else not All_Errors_Mode then
673 return;
674 end if;
676 M (1 .. 9) := "\entity """;
677 P := 9;
679 -- Add unit name to message, excluding %s or %b at end
681 Get_Name_String (Get_Unit_Name (RE_Unit_Table (Id)));
682 Name_Len := Name_Len - 2;
683 Set_Casing (Mixed_Case);
684 M (P + 1 .. P + Name_Len) := Name_Buffer (1 .. Name_Len);
685 P := P + Name_Len;
687 -- Add a qualifying period
689 M (P + 1) := '.';
690 P := P + 1;
692 -- Add entity name and closing quote to message
694 Name_Len := RE_Image'Length - 3;
695 Name_Buffer (1 .. Name_Len) := RE_Image (4 .. RE_Image'Length);
696 Set_Casing (Mixed_Case);
697 M (P + 1 .. P + Name_Len) := Name_Buffer (1 .. Name_Len);
698 P := P + Name_Len;
699 M (P + 1) := '"';
700 P := P + 1;
702 -- Add message
704 M (P + 1) := ' ';
705 P := P + 1;
706 M (P + 1 .. P + Msg'Length) := Msg;
707 P := P + Msg'Length;
709 -- Output message at current error node location
711 RTE_Error_Msg (M (1 .. P));
712 end Output_Entity_Name;
714 --------------
715 -- RE_Chars --
716 --------------
718 function RE_Chars (E : RE_Id) return Name_Id is
719 RE_Name_Chars : constant String := RE_Id'Image (E);
721 begin
722 -- Copy name skipping initial RE_ or RO_XX characters
724 if RE_Name_Chars (1 .. 2) = "RE" then
725 for J in 4 .. RE_Name_Chars'Last loop
726 Name_Buffer (J - 3) := Fold_Lower (RE_Name_Chars (J));
727 end loop;
729 Name_Len := RE_Name_Chars'Length - 3;
731 else
732 for J in 7 .. RE_Name_Chars'Last loop
733 Name_Buffer (J - 6) := Fold_Lower (RE_Name_Chars (J));
734 end loop;
736 Name_Len := RE_Name_Chars'Length - 6;
737 end if;
739 return Name_Find;
740 end RE_Chars;
742 ---------
743 -- RTE --
744 ---------
746 function RTE (E : RE_Id) return Entity_Id is
747 U_Id : constant RTU_Id := RE_Unit_Table (E);
748 U : RT_Unit_Table_Record renames RT_Unit_Table (U_Id);
750 Lib_Unit : Node_Id;
751 Pkg_Ent : Entity_Id;
752 Ename : Name_Id;
754 -- The following flag is used to disable front-end inlining when RTE
755 -- is invoked. This prevents the analysis of other runtime bodies when
756 -- a particular spec is loaded through Rtsfind. This is both efficient,
757 -- and it prevents spurious visibility conflicts between use-visible
758 -- user entities, and entities in run-time packages.
760 -- In configurable run-time mode, subprograms marked Inlined_Always must
761 -- be inlined, so in the case we retain the Front_End_Inlining mode.
763 Save_Front_End_Inlining : Boolean;
765 function Check_CRT (Eid : Entity_Id) return Entity_Id;
766 -- Check entity Eid to ensure that configurable run-time restrictions
767 -- are met. May generate an error message and raise RE_Not_Available
768 -- if the entity E does not exist (i.e. Eid is Empty)
770 procedure Check_RPC;
771 -- Reject programs that make use of distribution features not supported
772 -- on the current target. On such targets (VMS, Vxworks, others?) we
773 -- only provide a minimal body for System.Rpc that only supplies an
774 -- implementation of partition_id.
776 function Find_Local_Entity (E : RE_Id) return Entity_Id;
777 -- This function is used when entity E is in this compilation's main
778 -- unit. It gets the value from the already compiled declaration.
780 function Make_Unit_Name (N : Node_Id) return Node_Id;
781 -- If the unit is a child unit, build fully qualified name for use
782 -- in With_Clause.
784 ---------------
785 -- Check_CRT --
786 ---------------
788 function Check_CRT (Eid : Entity_Id) return Entity_Id is
789 begin
790 if No (Eid) then
791 Entity_Not_Defined (E);
792 raise RE_Not_Available;
794 -- Entity is available
796 else
797 -- If in No_Run_Time mode and entity is not in one of the
798 -- specially permitted units, raise the exception.
800 if No_Run_Time_Mode
801 and then not OK_No_Run_Time_Unit (U_Id)
802 then
803 Entity_Not_Defined (E);
804 raise RE_Not_Available;
805 end if;
807 -- Otherwise entity is accessible
809 return Eid;
810 end if;
811 end Check_CRT;
813 ---------------
814 -- Check_RPC --
815 ---------------
817 procedure Check_RPC is
818 begin
819 -- Bypass this check if debug flag -gnatdR set
821 if Debug_Flag_RR then
822 return;
823 end if;
825 -- Otherwise we need the check if we are going after one of
826 -- the critical entities in System.RPC in stubs mode.
828 -- ??? Should we do this for other s-parint/s-polint entities
829 -- too?
831 if (Distribution_Stub_Mode = Generate_Receiver_Stub_Body
832 or else
833 Distribution_Stub_Mode = Generate_Caller_Stub_Body)
834 and then (E = RE_Do_Rpc
835 or else
836 E = RE_Do_Apc
837 or else
838 E = RE_Params_Stream_Type
839 or else
840 E = RE_Request_Access)
841 then
842 declare
843 DSA_Implementation : constant Entity_Id :=
844 RTE (RE_DSA_Implementation);
845 begin
846 if Chars (Entity (Expression
847 (Parent (DSA_Implementation)))) = Name_No_DSA
848 then
849 Set_Standard_Error;
850 Write_Str ("distribution feature not supported");
851 Write_Eol;
852 raise Unrecoverable_Error;
853 end if;
854 end;
855 end if;
856 end Check_RPC;
858 ------------------------
859 -- Find_System_Entity --
860 ------------------------
862 function Find_Local_Entity (E : RE_Id) return Entity_Id is
863 RE_Str : String renames RE_Id'Image (E);
864 Ent : Entity_Id;
866 Save_Nam : constant String := Name_Buffer (1 .. Name_Len);
867 -- Save name buffer and length over call
869 begin
870 Name_Len := Natural'Max (0, RE_Str'Length - 3);
871 Name_Buffer (1 .. Name_Len) :=
872 RE_Str (RE_Str'First + 3 .. RE_Str'Last);
874 Ent := Entity_Id (Get_Name_Table_Info (Name_Find));
876 Name_Len := Save_Nam'Length;
877 Name_Buffer (1 .. Name_Len) := Save_Nam;
879 return Ent;
880 end Find_Local_Entity;
882 --------------------
883 -- Make_Unit_Name --
884 --------------------
886 function Make_Unit_Name (N : Node_Id) return Node_Id is
887 Nam : Node_Id;
888 Scop : Entity_Id;
890 begin
891 Nam := New_Reference_To (U.Entity, Standard_Location);
892 Scop := Scope (U.Entity);
894 if Nkind (N) = N_Defining_Program_Unit_Name then
895 while Scop /= Standard_Standard loop
896 Nam :=
897 Make_Expanded_Name (Standard_Location,
898 Chars => Chars (U.Entity),
899 Prefix => New_Reference_To (Scop, Standard_Location),
900 Selector_Name => Nam);
901 Set_Entity (Nam, U.Entity);
903 Scop := Scope (Scop);
904 end loop;
905 end if;
907 return Nam;
908 end Make_Unit_Name;
910 -- Start of processing for RTE
912 begin
913 -- Doing a rtsfind in system.ads is special, as we cannot do this
914 -- when compiling System itself. So if we are compiling system then
915 -- we should already have acquired and processed the declaration
916 -- of the entity. The test is to see if this compilation's main unit
917 -- is System. If so, return the value from the already compiled
918 -- declaration and otherwise do a regular find.
920 -- Not pleasant, but these kinds of annoying recursion when
921 -- writing an Ada compiler in Ada have to be broken somewhere!
923 if Present (Main_Unit_Entity)
924 and then Chars (Main_Unit_Entity) = Name_System
925 and then Analyzed (Main_Unit_Entity)
926 and then not Is_Child_Unit (Main_Unit_Entity)
927 then
928 return Check_CRT (Find_Local_Entity (E));
929 end if;
931 Save_Front_End_Inlining := Front_End_Inlining;
932 Front_End_Inlining := Configurable_Run_Time_Mode;
934 -- Load unit if unit not previously loaded
936 if No (RE_Table (E)) then
937 Load_RTU (U_Id, Id => E);
938 Lib_Unit := Unit (Cunit (U.Unum));
940 -- In the subprogram case, we are all done, the entity we want
941 -- is the entity for the subprogram itself. Note that we do not
942 -- bother to check that it is the entity that was requested.
943 -- the only way that could fail to be the case is if runtime is
944 -- hopelessly misconfigured, and it isn't worth testing for this.
946 if Nkind (Lib_Unit) = N_Subprogram_Declaration then
947 RE_Table (E) := U.Entity;
949 -- Otherwise we must have the package case. First check package
950 -- entity itself (e.g. RTE_Name for System.Interrupts.Name)
952 else
953 pragma Assert (Nkind (Lib_Unit) = N_Package_Declaration);
954 Ename := RE_Chars (E);
956 -- First we search the package entity chain
958 Pkg_Ent := First_Entity (U.Entity);
959 while Present (Pkg_Ent) loop
960 if Ename = Chars (Pkg_Ent) then
961 RE_Table (E) := Pkg_Ent;
962 Check_RPC;
963 goto Found;
964 end if;
966 Next_Entity (Pkg_Ent);
967 end loop;
969 -- If we did not find the entity in the package entity chain,
970 -- then check if the package entity itself matches. Note that
971 -- we do this check after searching the entity chain, since
972 -- the rule is that in case of ambiguity, we prefer the entity
973 -- defined within the package, rather than the package itself.
975 if Ename = Chars (U.Entity) then
976 RE_Table (E) := U.Entity;
977 end if;
979 -- If we didn't find the entity we want, something is wrong.
980 -- We just leave RE_Table (E) set to Empty and the appropriate
981 -- action will be taken by Check_CRT when we exit.
983 end if;
984 end if;
986 -- See if we have to generate a WITH for this entity. We generate
987 -- a WITH if the current unit is part of the extended main code
988 -- unit, and if we have not already added the with. The WITH is
989 -- added to the appropriate unit (the current one). We do not need
990 -- to generate a WITH for an ????
992 <<Found>>
993 if (not U.Withed)
994 and then
995 In_Extended_Main_Code_Unit (Cunit_Entity (Current_Sem_Unit))
996 and then not RTE_Available_Call
997 then
998 U.Withed := True;
1000 declare
1001 Withn : Node_Id;
1002 Lib_Unit : Node_Id;
1004 begin
1005 Lib_Unit := Unit (Cunit (U.Unum));
1006 Withn :=
1007 Make_With_Clause (Standard_Location,
1008 Name =>
1009 Make_Unit_Name
1010 (Defining_Unit_Name (Specification (Lib_Unit))));
1011 Set_Library_Unit (Withn, Cunit (U.Unum));
1012 Set_Corresponding_Spec (Withn, U.Entity);
1013 Set_First_Name (Withn, True);
1014 Set_Implicit_With (Withn, True);
1016 Mark_Rewrite_Insertion (Withn);
1017 Append (Withn, Context_Items (Cunit (Current_Sem_Unit)));
1018 Check_Restriction_No_Dependence (Name (Withn), Current_Error_Node);
1019 end;
1020 end if;
1022 Front_End_Inlining := Save_Front_End_Inlining;
1023 return Check_CRT (RE_Table (E));
1024 end RTE;
1026 -------------------
1027 -- RTE_Available --
1028 -------------------
1030 function RTE_Available (E : RE_Id) return Boolean is
1031 Dummy : Entity_Id;
1032 pragma Warnings (Off, Dummy);
1034 Result : Boolean;
1036 Save_RTE_Available_Call : constant Boolean := RTE_Available_Call;
1037 Save_RTE_Is_Available : constant Boolean := RTE_Is_Available;
1038 -- These are saved recursively because the call to load a unit
1039 -- caused by an upper level call may perform a recursive call
1040 -- to this routine during analysis of the corresponding unit.
1042 begin
1043 RTE_Available_Call := True;
1044 RTE_Is_Available := True;
1045 Dummy := RTE (E);
1046 Result := RTE_Is_Available;
1047 RTE_Available_Call := Save_RTE_Available_Call;
1048 RTE_Is_Available := Save_RTE_Is_Available;
1049 return Result;
1051 exception
1052 when RE_Not_Available =>
1053 RTE_Available_Call := Save_RTE_Available_Call;
1054 RTE_Is_Available := Save_RTE_Is_Available;
1055 return False;
1056 end RTE_Available;
1058 -------------------
1059 -- RTE_Error_Msg --
1060 -------------------
1062 procedure RTE_Error_Msg (Msg : String) is
1063 begin
1064 if RTE_Available_Call then
1065 RTE_Is_Available := False;
1066 else
1067 Error_Msg_N (Msg, Current_Error_Node);
1069 -- Bump count of violations if we are in configurable run-time
1070 -- mode and this is not a continuation message.
1072 if Configurable_Run_Time_Mode and then Msg (1) /= '\' then
1073 Configurable_Run_Time_Violations :=
1074 Configurable_Run_Time_Violations + 1;
1075 end if;
1076 end if;
1077 end RTE_Error_Msg;
1079 ----------------
1080 -- RTU_Loaded --
1081 ----------------
1083 function RTU_Loaded (U : RTU_Id) return Boolean is
1084 begin
1085 return Present (RT_Unit_Table (U).Entity);
1086 end RTU_Loaded;
1088 --------------------
1089 -- Set_RTU_Loaded --
1090 --------------------
1092 procedure Set_RTU_Loaded (N : Node_Id) is
1093 Loc : constant Source_Ptr := Sloc (N);
1094 Unum : constant Unit_Number_Type := Get_Source_Unit (Loc);
1095 Uname : constant Unit_Name_Type := Unit_Name (Unum);
1096 E : constant Entity_Id :=
1097 Defining_Entity (Unit (Cunit (Unum)));
1098 begin
1099 pragma Assert (Is_Predefined_File_Name (Unit_File_Name (Unum)));
1101 -- Loop through entries in RTU table looking for matching entry
1103 for U_Id in RTU_Id'Range loop
1105 -- Here we have a match
1107 if Get_Unit_Name (U_Id) = Uname then
1108 declare
1109 U : RT_Unit_Table_Record renames RT_Unit_Table (U_Id);
1110 -- The RT_Unit_Table entry that may need updating
1112 begin
1113 -- If entry is not set, set it now
1115 if not Present (U.Entity) then
1116 U.Entity := E;
1117 U.Uname := Get_Unit_Name (U_Id);
1118 U.Unum := Unum;
1119 U.Withed := False;
1120 end if;
1122 return;
1123 end;
1124 end if;
1125 end loop;
1126 end Set_RTU_Loaded;
1128 --------------------
1129 -- Text_IO_Kludge --
1130 --------------------
1132 procedure Text_IO_Kludge (Nam : Node_Id) is
1133 Chrs : Name_Id;
1135 type Name_Map_Type is array (Text_IO_Package_Name) of RTU_Id;
1137 Name_Map : constant Name_Map_Type := Name_Map_Type'(
1138 Name_Decimal_IO => Ada_Text_IO_Decimal_IO,
1139 Name_Enumeration_IO => Ada_Text_IO_Enumeration_IO,
1140 Name_Fixed_IO => Ada_Text_IO_Fixed_IO,
1141 Name_Float_IO => Ada_Text_IO_Float_IO,
1142 Name_Integer_IO => Ada_Text_IO_Integer_IO,
1143 Name_Modular_IO => Ada_Text_IO_Modular_IO);
1145 Wide_Name_Map : constant Name_Map_Type := Name_Map_Type'(
1146 Name_Decimal_IO => Ada_Wide_Text_IO_Decimal_IO,
1147 Name_Enumeration_IO => Ada_Wide_Text_IO_Enumeration_IO,
1148 Name_Fixed_IO => Ada_Wide_Text_IO_Fixed_IO,
1149 Name_Float_IO => Ada_Wide_Text_IO_Float_IO,
1150 Name_Integer_IO => Ada_Wide_Text_IO_Integer_IO,
1151 Name_Modular_IO => Ada_Wide_Text_IO_Modular_IO);
1153 Wide_Wide_Name_Map : constant Name_Map_Type := Name_Map_Type'(
1154 Name_Decimal_IO => Ada_Wide_Wide_Text_IO_Decimal_IO,
1155 Name_Enumeration_IO => Ada_Wide_Wide_Text_IO_Enumeration_IO,
1156 Name_Fixed_IO => Ada_Wide_Wide_Text_IO_Fixed_IO,
1157 Name_Float_IO => Ada_Wide_Wide_Text_IO_Float_IO,
1158 Name_Integer_IO => Ada_Wide_Wide_Text_IO_Integer_IO,
1159 Name_Modular_IO => Ada_Wide_Wide_Text_IO_Modular_IO);
1161 begin
1162 -- Nothing to do if name is not identifier or a selected component
1163 -- whose selector_name is not an identifier.
1165 if Nkind (Nam) = N_Identifier then
1166 Chrs := Chars (Nam);
1168 elsif Nkind (Nam) = N_Selected_Component
1169 and then Nkind (Selector_Name (Nam)) = N_Identifier
1170 then
1171 Chrs := Chars (Selector_Name (Nam));
1173 else
1174 return;
1175 end if;
1177 -- Nothing to do if name is not one of the Text_IO subpackages
1178 -- Otherwise look through loaded units, and if we find Text_IO
1179 -- or [Wide_]Wide_Text_IO already loaded, then load the proper child.
1181 if Chrs in Text_IO_Package_Name then
1182 for U in Main_Unit .. Last_Unit loop
1183 Get_Name_String (Unit_File_Name (U));
1185 if Name_Len = 12 then
1187 -- Here is where we do the loads if we find one of the units
1188 -- Ada.Text_IO or Ada.[Wide_]Wide_Text_IO. An interesting
1189 -- detail is that these units may already be used (i.e. their
1190 -- In_Use flags may be set). Normally when the In_Use flag is
1191 -- set, the Is_Potentially_Use_Visible flag of all entities in
1192 -- the package is set, but the new entity we are mysteriously
1193 -- adding was not there to have its flag set at the time. So
1194 -- that's why we pass the extra parameter to RTU_Find, to make
1195 -- sure the flag does get set now. Given that those generic
1196 -- packages are in fact child units, we must indicate that
1197 -- they are visible.
1199 if Name_Buffer (1 .. 12) = "a-textio.ads" then
1200 Load_RTU
1201 (Name_Map (Chrs),
1202 Use_Setting => In_Use (Cunit_Entity (U)));
1203 Set_Is_Visible_Child_Unit
1204 (RT_Unit_Table (Name_Map (Chrs)).Entity);
1206 elsif Name_Buffer (1 .. 12) = "a-witeio.ads" then
1207 Load_RTU
1208 (Wide_Name_Map (Chrs),
1209 Use_Setting => In_Use (Cunit_Entity (U)));
1210 Set_Is_Visible_Child_Unit
1211 (RT_Unit_Table (Wide_Name_Map (Chrs)).Entity);
1213 elsif Name_Buffer (1 .. 12) = "a-ztexio.ads" then
1214 Load_RTU
1215 (Wide_Wide_Name_Map (Chrs),
1216 Use_Setting => In_Use (Cunit_Entity (U)));
1217 Set_Is_Visible_Child_Unit
1218 (RT_Unit_Table (Wide_Wide_Name_Map (Chrs)).Entity);
1219 end if;
1220 end if;
1221 end loop;
1222 end if;
1223 end Text_IO_Kludge;
1225 end Rtsfind;