2008-05-30 Vladimir Makarov <vmakarov@redhat.com>
[official-gcc.git] / gcc / ada / s-finimp.adb
blob2d6defb3e6b1b6eca9674b0433b56a878b97d4e7
1 ------------------------------------------------------------------------------
2 -- --
3 -- GNAT RUN-TIME COMPONENTS --
4 -- --
5 -- S Y S T E M . F I N A L I Z A T I O N _ I M P L E M E N T A T I O N --
6 -- --
7 -- B o d y --
8 -- --
9 -- Copyright (C) 1992-2007, 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 -- As a special exception, if other files instantiate generics from this --
23 -- unit, or you link this unit with other files to produce an executable, --
24 -- this unit does not by itself cause the resulting executable to be --
25 -- covered by the GNU General Public License. This exception does not --
26 -- however invalidate any other reasons why the executable file might be --
27 -- covered by the GNU Public License. --
28 -- --
29 -- GNAT was originally developed by the GNAT team at New York University. --
30 -- Extensive contributions were provided by Ada Core Technologies Inc. --
31 -- --
32 ------------------------------------------------------------------------------
34 with Ada.Exceptions;
35 with Ada.Tags;
37 with System.Soft_Links;
39 with System.Restrictions;
41 package body System.Finalization_Implementation is
43 use Ada.Exceptions;
44 use System.Finalization_Root;
46 package SSL renames System.Soft_Links;
48 use type SSE.Storage_Offset;
50 -----------------------
51 -- Local Subprograms --
52 -----------------------
54 type RC_Ptr is access all Record_Controller;
56 function To_RC_Ptr is
57 new Ada.Unchecked_Conversion (Address, RC_Ptr);
59 procedure Raise_From_Controlled_Operation (X : Exception_Occurrence);
60 pragma Import
61 (Ada, Raise_From_Controlled_Operation,
62 "ada__exceptions__raise_from_controlled_operation");
63 pragma No_Return (Raise_From_Controlled_Operation);
64 -- Raise Program_Error from an exception that occurred during an Adjust or
65 -- Finalize operation. We use this rather kludgy Ada Import interface
66 -- because this procedure is not available in the visible part of the
67 -- Ada.Exceptions spec.
69 procedure Raise_From_Finalize
70 (L : Finalizable_Ptr;
71 From_Abort : Boolean;
72 E_Occ : Exception_Occurrence);
73 -- Deal with an exception raised during finalization of a list. L is a
74 -- pointer to the list of element not yet finalized. From_Abort is true
75 -- if the finalization actions come from an abort rather than a normal
76 -- exit. E_Occ represents the exception being raised.
78 function RC_Offset (T : Ada.Tags.Tag) return SSE.Storage_Offset;
79 pragma Import (Ada, RC_Offset, "ada__tags__get_rc_offset");
81 function Parent_Size (Obj : Address; T : Ada.Tags.Tag)
82 return SSE.Storage_Count;
83 pragma Import (Ada, Parent_Size, "ada__tags__parent_size");
85 function Get_Deep_Controller (Obj : System.Address) return RC_Ptr;
86 -- Given the address (obj) of a tagged object, return a
87 -- pointer to the record controller of this object.
89 ------------
90 -- Adjust --
91 ------------
93 procedure Adjust (Object : in out Record_Controller) is
95 First_Comp : Finalizable_Ptr;
96 My_Offset : constant SSE.Storage_Offset :=
97 Object.My_Address - Object'Address;
99 procedure Ptr_Adjust (Ptr : in out Finalizable_Ptr);
100 -- Subtract the offset to the pointer
102 procedure Reverse_Adjust (P : Finalizable_Ptr);
103 -- Adjust the components in the reverse order in which they are stored
104 -- on the finalization list. (Adjust and Finalization are not done in
105 -- the same order)
107 ----------------
108 -- Ptr_Adjust --
109 ----------------
111 procedure Ptr_Adjust (Ptr : in out Finalizable_Ptr) is
112 begin
113 if Ptr /= null then
114 Ptr := To_Finalizable_Ptr (To_Addr (Ptr) - My_Offset);
115 end if;
116 end Ptr_Adjust;
118 --------------------
119 -- Reverse_Adjust --
120 --------------------
122 procedure Reverse_Adjust (P : Finalizable_Ptr) is
123 begin
124 if P /= null then
125 Ptr_Adjust (P.Next);
126 Reverse_Adjust (P.Next);
127 Adjust (P.all);
128 Object.F := P; -- Successfully adjusted, so place in list.
129 end if;
130 end Reverse_Adjust;
132 -- Start of processing for Adjust
134 begin
135 -- Adjust the components and their finalization pointers next. We must
136 -- protect against an exception in some call to Adjust, so we keep
137 -- pointing to the list of successfully adjusted components, which can
138 -- be finalized if an exception is raised.
140 First_Comp := Object.F;
141 Object.F := null; -- nothing adjusted yet.
142 Ptr_Adjust (First_Comp); -- set address of first component.
143 Reverse_Adjust (First_Comp);
145 -- Then Adjust the controller itself
147 Object.My_Address := Object'Address;
149 exception
150 when others =>
151 -- Finalize those components that were successfully adjusted, and
152 -- propagate exception. The object itself is not yet attached to
153 -- global finalization list, so we cannot rely on the outer call to
154 -- Clean to take care of these components.
156 Finalize (Object);
157 raise;
158 end Adjust;
160 --------------------------
161 -- Attach_To_Final_List --
162 --------------------------
164 procedure Attach_To_Final_List
165 (L : in out Finalizable_Ptr;
166 Obj : in out Finalizable;
167 Nb_Link : Short_Short_Integer)
169 begin
170 -- Simple case: attachment to a one way list
172 if Nb_Link = 1 then
173 Obj.Next := L;
174 L := Obj'Unchecked_Access;
176 -- Dynamically allocated objects: they are attached to a doubly linked
177 -- list, so that an element can be finalized at any moment by means of
178 -- an unchecked deallocation. Attachment is protected against
179 -- multi-threaded access.
181 elsif Nb_Link = 2 then
183 -- Raise Program_Error if we're trying to allocate an object in a
184 -- collection whose finalization has already started.
186 if L = Collection_Finalization_Started then
187 raise Program_Error with
188 "allocation after collection finalization started";
189 end if;
191 Locked_Processing : begin
192 SSL.Lock_Task.all;
193 Obj.Next := L.Next;
194 Obj.Prev := L.Next.Prev;
195 L.Next.Prev := Obj'Unchecked_Access;
196 L.Next := Obj'Unchecked_Access;
197 SSL.Unlock_Task.all;
199 exception
200 when others =>
201 SSL.Unlock_Task.all;
202 raise;
203 end Locked_Processing;
205 -- Attachment of arrays to the final list (used only for objects
206 -- returned by function). Obj, in this case is the last element,
207 -- but all other elements are already threaded after it. We just
208 -- attach the rest of the final list at the end of the array list.
210 elsif Nb_Link = 3 then
211 declare
212 P : Finalizable_Ptr := Obj'Unchecked_Access;
214 begin
215 while P.Next /= null loop
216 P := P.Next;
217 end loop;
219 P.Next := L;
220 L := Obj'Unchecked_Access;
221 end;
223 -- Make the object completely unattached (case of a library-level,
224 -- Finalize_Storage_Only object).
226 elsif Nb_Link = 4 then
227 Obj.Prev := null;
228 Obj.Next := null;
229 end if;
230 end Attach_To_Final_List;
232 ---------------------
233 -- Deep_Tag_Attach --
234 ----------------------
236 procedure Deep_Tag_Attach
237 (L : in out SFR.Finalizable_Ptr;
238 A : System.Address;
239 B : Short_Short_Integer)
241 V : constant SFR.Finalizable_Ptr := To_Finalizable_Ptr (A);
242 Controller : constant RC_Ptr := Get_Deep_Controller (A);
244 begin
245 if Controller /= null then
246 Attach_To_Final_List (L, Controller.all, B);
247 end if;
249 -- Is controlled
251 if V.all in Finalizable then
252 Attach_To_Final_List (L, V.all, B);
253 end if;
254 end Deep_Tag_Attach;
256 -----------------------------
257 -- Detach_From_Final_List --
258 -----------------------------
260 -- We know that the detach object is neither at the beginning nor at the
261 -- end of the list, thanks to the dummy First and Last Elements, but the
262 -- object may not be attached at all if it is Finalize_Storage_Only
264 procedure Detach_From_Final_List (Obj : in out Finalizable) is
265 begin
267 -- When objects are not properly attached to a doubly linked list do
268 -- not try to detach them. The only case where it can happen is when
269 -- dealing with Finalize_Storage_Only objects which are not always
270 -- attached to the finalization list.
272 if Obj.Next /= null and then Obj.Prev /= null then
273 SSL.Lock_Task.all;
274 Obj.Next.Prev := Obj.Prev;
275 Obj.Prev.Next := Obj.Next;
277 -- Reset the pointers so that a new finalization of the same object
278 -- has no effect on the finalization list.
280 Obj.Next := null;
281 Obj.Prev := null;
283 SSL.Unlock_Task.all;
284 end if;
286 exception
287 when others =>
288 SSL.Unlock_Task.all;
289 raise;
290 end Detach_From_Final_List;
292 --------------
293 -- Finalize --
294 --------------
296 procedure Finalize (Object : in out Limited_Record_Controller) is
297 begin
298 Finalize_List (Object.F);
299 end Finalize;
301 --------------------------
302 -- Finalize_Global_List --
303 --------------------------
305 procedure Finalize_Global_List is
306 begin
307 -- There are three case here:
309 -- a. the application uses tasks, in which case Finalize_Global_Tasks
310 -- will defer abort.
312 -- b. the application doesn't use tasks but uses other tasking
313 -- constructs, such as ATCs and protected objects. In this case,
314 -- the binder will call Finalize_Global_List instead of
315 -- Finalize_Global_Tasks, letting abort undeferred, and leading
316 -- to assertion failures in the GNULL
318 -- c. the application doesn't use any tasking construct in which case
319 -- deferring abort isn't necessary.
321 -- Until another solution is found to deal with case b, we need to
322 -- call abort_defer here to pass the checks, but we do not need to
323 -- undefer abort, since Finalize_Global_List is the last procedure
324 -- called before exiting the partition.
326 SSL.Abort_Defer.all;
327 Finalize_List (Global_Final_List);
328 end Finalize_Global_List;
330 -------------------
331 -- Finalize_List --
332 -------------------
334 procedure Finalize_List (L : Finalizable_Ptr) is
335 P : Finalizable_Ptr := L;
336 Q : Finalizable_Ptr;
338 type Fake_Exception_Occurence is record
339 Id : Exception_Id;
340 end record;
341 type Ptr is access all Fake_Exception_Occurence;
343 function To_Ptr is new
344 Ada.Unchecked_Conversion (Exception_Occurrence_Access, Ptr);
346 X : Exception_Id := Null_Id;
348 begin
349 -- If abort is allowed, we get the current exception before starting
350 -- to finalize in order to check if we are in the abort case if an
351 -- exception is raised. When abort is not allowed, avoid accessing the
352 -- current exception since this can be a pretty costly operation in
353 -- programs using controlled types heavily.
355 if System.Restrictions.Abort_Allowed then
356 X := To_Ptr (SSL.Get_Current_Excep.all).Id;
357 end if;
359 while P /= null loop
360 Q := P.Next;
361 Finalize (P.all);
362 P := Q;
363 end loop;
365 exception
366 when E_Occ : others =>
367 Raise_From_Finalize (
369 X = Standard'Abort_Signal'Identity,
370 E_Occ);
371 end Finalize_List;
373 ------------------
374 -- Finalize_One --
375 ------------------
377 procedure Finalize_One (Obj : in out Finalizable) is
378 begin
379 Detach_From_Final_List (Obj);
380 Finalize (Obj);
381 exception
382 when E_Occ : others => Raise_From_Finalize (null, False, E_Occ);
383 end Finalize_One;
385 -------------------------
386 -- Get_Deep_Controller --
387 -------------------------
389 function Get_Deep_Controller (Obj : System.Address) return RC_Ptr is
390 The_Tag : Ada.Tags.Tag := To_Finalizable_Ptr (Obj)'Tag;
391 Offset : SSE.Storage_Offset := RC_Offset (The_Tag);
393 begin
394 -- Fetch the controller from the Parent or above if necessary
395 -- when there are no controller at this level
397 while Offset = -2 loop
398 The_Tag := Ada.Tags.Parent_Tag (The_Tag);
399 Offset := RC_Offset (The_Tag);
400 end loop;
402 -- No Controlled component case
404 if Offset = 0 then
405 return null;
407 -- The _controller Offset is known statically
409 elsif Offset > 0 then
410 return To_RC_Ptr (Obj + Offset);
412 -- At this stage, we know that the controller is part of the
413 -- ancestor corresponding to the tag "The_Tag" and that its parent
414 -- is variable sized. We assume that the _controller is the first
415 -- component right after the parent.
417 -- ??? note that it may not be true if there are new discriminants
419 else -- Offset = -1
421 declare
422 -- define a faked record controller to avoid generating
423 -- unnecessary expanded code for controlled types
425 type Faked_Record_Controller is record
426 Tag, Prec, Next : Address;
427 end record;
429 -- Reconstruction of a type with characteristics
430 -- comparable to the original type
432 D : constant := SSE.Storage_Offset (Storage_Unit - 1);
434 type Parent_Type is new SSE.Storage_Array
435 (1 .. (Parent_Size (Obj, The_Tag) + D) /
436 SSE.Storage_Offset (Storage_Unit));
437 for Parent_Type'Alignment use Address'Alignment;
439 type Faked_Type_Of_Obj is record
440 Parent : Parent_Type;
441 Controller : Faked_Record_Controller;
442 end record;
444 type Obj_Ptr is access all Faked_Type_Of_Obj;
445 function To_Obj_Ptr is
446 new Ada.Unchecked_Conversion (Address, Obj_Ptr);
448 begin
449 return To_RC_Ptr (To_Obj_Ptr (Obj).Controller'Address);
450 end;
451 end if;
452 end Get_Deep_Controller;
454 ----------------
455 -- Initialize --
456 ----------------
458 procedure Initialize (Object : in out Limited_Record_Controller) is
459 pragma Warnings (Off, Object);
460 begin
461 null;
462 end Initialize;
464 procedure Initialize (Object : in out Record_Controller) is
465 begin
466 Object.My_Address := Object'Address;
467 end Initialize;
469 ---------------------
470 -- Move_Final_List --
471 ---------------------
473 procedure Move_Final_List
474 (From : in out SFR.Finalizable_Ptr;
475 To : Finalizable_Ptr_Ptr)
477 begin
478 -- This is currently called at the end of the return statement, and the
479 -- caller does NOT defer aborts. We need to defer aborts to prevent
480 -- mangling the finalization lists.
482 SSL.Abort_Defer.all;
484 -- Put the return statement's finalization list onto the caller's one,
485 -- thus transferring responsibility for finalization of the return
486 -- object to the caller.
488 Attach_To_Final_List (To.all, From.all, Nb_Link => 3);
490 -- Empty the return statement's finalization list, so that when the
491 -- cleanup code executes, there will be nothing to finalize.
492 From := null;
494 SSL.Abort_Undefer.all;
495 end Move_Final_List;
497 -------------------------
498 -- Raise_From_Finalize --
499 -------------------------
501 procedure Raise_From_Finalize
502 (L : Finalizable_Ptr;
503 From_Abort : Boolean;
504 E_Occ : Exception_Occurrence)
506 P : Finalizable_Ptr := L;
507 Q : Finalizable_Ptr;
509 begin
510 -- We already got an exception. We now finalize the remainder of
511 -- the list, ignoring all further exceptions.
513 while P /= null loop
514 Q := P.Next;
516 begin
517 Finalize (P.all);
518 exception
519 when others => null;
520 end;
522 P := Q;
523 end loop;
525 if From_Abort then
526 -- If finalization from an Abort, then nothing to do
528 null;
530 else
531 -- Else raise Program_Error with an appropriate message
533 Raise_From_Controlled_Operation (E_Occ);
534 end if;
535 end Raise_From_Finalize;
537 -- Initialization of package, set Adafinal soft link
539 begin
540 SSL.Finalize_Global_List := Finalize_Global_List'Access;
542 end System.Finalization_Implementation;