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explicit what happens. * guardians.c (TCONC_IN): Use SCM_SET_CELL_OBJECT_x rather than SCM_SET_CELL_WORD_x when writing scheme objets to cell elements.
616 lines
17 KiB
C
616 lines
17 KiB
C
/* Copyright (C) 1998,1999,2000,2001 Free Software Foundation, Inc.
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*/
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/* This is an implementation of guardians as described in
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* R. Kent Dybvig, Carl Bruggeman, and David Eby (1993) "Guardians in
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* a Generation-Based Garbage Collector" ACM SIGPLAN Conference on
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* Programming Language Design and Implementation, June 1993
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* ftp://ftp.cs.indiana.edu/pub/scheme-repository/doc/pubs/guardians.ps.gz
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*
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* By this point, the semantics are actually quite different from
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* those described in the abovementioned paper. The semantic changes
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* are there to improve safety and intuitiveness. The interface is
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* still (mostly) the one described by the paper, however.
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*
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* Original design: Mikael Djurfeldt
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* Original implementation: Michael Livshin
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* Hacked on since by: everybody
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*/
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#include "libguile/_scm.h"
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#include "libguile/ports.h"
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#include "libguile/print.h"
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#include "libguile/smob.h"
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#include "libguile/validate.h"
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#include "libguile/root.h"
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#include "libguile/hashtab.h"
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#include "libguile/weaks.h"
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#include "libguile/guardians.h"
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/* The live and zombies FIFOs are implemented as tconcs as described
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in Dybvig's paper. This decouples addition and removal of elements
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so that no synchronization between these needs to take place.
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*/
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typedef struct t_tconc
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{
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SCM head;
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SCM tail;
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} t_tconc;
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#define TCONC_EMPTYP(tc) (SCM_EQ_P ((tc).head, (tc).tail))
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#define TCONC_IN(tc, obj, pair) \
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do { \
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SCM_SETCAR ((tc).tail, obj); \
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SCM_SET_CELL_OBJECT_1 (pair, SCM_EOL); \
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SCM_SET_CELL_OBJECT_0 (pair, SCM_BOOL_F); \
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SCM_SETCDR ((tc).tail, pair); \
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(tc).tail = pair; \
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} while (0)
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#define TCONC_OUT(tc, res) \
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do { \
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(res) = SCM_CAR ((tc).head); \
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(tc).head = SCM_CDR ((tc).head); \
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} while (0)
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static scm_t_bits tc16_guardian;
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typedef struct t_guardian
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{
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t_tconc live;
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t_tconc zombies;
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struct t_guardian *next;
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unsigned long flags;
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} t_guardian;
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#define GUARDIAN_P(x) SCM_SMOB_PREDICATE(tc16_guardian, x)
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#define GUARDIAN_DATA(x) ((t_guardian *) SCM_CELL_WORD_1 (x))
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#define F_GREEDY 1L
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#define F_LISTED (1L << 1)
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#define F_DESTROYED (1L << 2)
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#define GREEDY_P(x) (((x)->flags & F_GREEDY) != 0)
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#define SET_GREEDY(x) ((x)->flags |= F_GREEDY)
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#define LISTED_P(x) (((x)->flags & F_LISTED) != 0)
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#define SET_LISTED(x) ((x)->flags |= F_LISTED)
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#define CLR_LISTED(x) ((x)->flags &= ~F_LISTED)
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#define DESTROYED_P(x) (((x)->flags & F_DESTROYED) != 0)
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#define SET_DESTROYED(x) ((x)->flags |= F_DESTROYED)
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/* during the gc mark phase, live guardians are linked into the lists
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here. */
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static t_guardian *greedy_guardians = NULL;
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static t_guardian *sharing_guardians = NULL;
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static SCM greedily_guarded_whash = SCM_EOL;
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/* this is the list of guarded objects that are parts of cycles. we
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don't know in which order to return them from guardians, so we just
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unguard them and whine about it in after-gc-hook */
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static SCM self_centered_zombies = SCM_EOL;
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static void
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add_to_live_list (t_guardian *g)
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{
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if (LISTED_P (g))
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return;
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if (GREEDY_P (g))
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{
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g->next = greedy_guardians;
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greedy_guardians = g;
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}
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else
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{
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g->next = sharing_guardians;
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sharing_guardians = g;
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}
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SET_LISTED (g);
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}
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/* mark a guardian by adding it to the live guardian list. */
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static SCM
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guardian_mark (SCM ptr)
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{
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add_to_live_list (GUARDIAN_DATA (ptr));
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/* the objects protected by the guardian are not marked here: that
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would prevent them from ever getting collected. instead marking
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is done at the end of the mark phase by guardian_zombify. */
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return SCM_BOOL_F;
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}
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static size_t
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guardian_free (SCM ptr)
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{
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scm_gc_free (GUARDIAN_DATA (ptr), sizeof (t_guardian), "guardian");
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return 0;
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}
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static int
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guardian_print (SCM guardian, SCM port, scm_print_state *pstate SCM_UNUSED)
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{
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t_guardian *g = GUARDIAN_DATA (guardian);
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scm_puts ("#<", port);
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if (DESTROYED_P (g))
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scm_puts ("destroyed ", port);
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if (GREEDY_P (g))
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scm_puts ("greedy", port);
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else
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scm_puts ("sharing", port);
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scm_puts (" guardian 0x", port);
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scm_intprint ((long) g, 16, port);
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if (! DESTROYED_P (g))
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{
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scm_puts (" (reachable: ", port);
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scm_display (scm_length (SCM_CDR (g->live.head)), port);
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scm_puts (" unreachable: ", port);
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scm_display (scm_length (SCM_CDR (g->zombies.head)), port);
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scm_puts (")", port);
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}
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scm_puts (">", port);
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return 1;
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}
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/* This is the Scheme entry point for each guardian: If OBJ is an
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* object, it's added to the guardian's live list. If OBJ is unbound,
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* the next available unreachable object (or #f if none) is returned.
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*
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* If the second optional argument THROW_P is true (the default), then
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* an error is raised if GUARDIAN is greedy and OBJ is already greedily
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* guarded. If THROW_P is false, #f is returned instead of raising the
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* error, and #t is returned if everything is fine.
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*/
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static SCM
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guardian_apply (SCM guardian, SCM obj, SCM throw_p)
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{
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if (DESTROYED_P (GUARDIAN_DATA (guardian)))
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scm_misc_error ("guard", "attempted use of destroyed guardian: ~A",
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scm_list_1 (guardian));
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if (!SCM_UNBNDP (obj))
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return scm_guard (guardian, obj,
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(SCM_UNBNDP (throw_p)
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? 1
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: !SCM_FALSEP (throw_p)));
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else
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return scm_get_one_zombie (guardian);
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}
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SCM
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scm_guard (SCM guardian, SCM obj, int throw_p)
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{
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t_guardian *g = GUARDIAN_DATA (guardian);
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if (!SCM_IMP (obj))
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{
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SCM z;
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/* This critical section barrier will be replaced by a mutex. */
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SCM_DEFER_INTS;
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if (GREEDY_P (g))
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{
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if (!SCM_FALSEP (scm_hashq_get_handle
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(greedily_guarded_whash, obj)))
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{
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SCM_ALLOW_INTS;
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if (throw_p)
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scm_misc_error ("guard",
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"object is already greedily guarded: ~A",
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scm_list_1 (obj));
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else
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return SCM_BOOL_F;
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}
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else
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scm_hashq_create_handle_x (greedily_guarded_whash,
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obj, guardian);
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}
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z = scm_cons (SCM_BOOL_F, SCM_BOOL_F);
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TCONC_IN (g->live, obj, z);
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SCM_ALLOW_INTS;
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}
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return throw_p ? SCM_UNSPECIFIED : SCM_BOOL_T;
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}
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SCM
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scm_get_one_zombie (SCM guardian)
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{
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t_guardian *g = GUARDIAN_DATA (guardian);
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SCM res = SCM_BOOL_F;
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/* This critical section barrier will be replaced by a mutex. */
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SCM_DEFER_INTS;
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if (!TCONC_EMPTYP (g->zombies))
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TCONC_OUT (g->zombies, res);
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if (!SCM_FALSEP (res) && GREEDY_P (g))
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scm_hashq_remove_x (greedily_guarded_whash, res);
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SCM_ALLOW_INTS;
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return res;
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}
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SCM_DEFINE (scm_make_guardian, "make-guardian", 0, 1, 0,
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(SCM greedy_p),
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"Create a new guardian.\n"
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"A guardian protects a set of objects from garbage collection,\n"
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"allowing a program to apply cleanup or other actions.\n\n"
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"@code{make-guardian} returns a procedure representing the guardian.\n"
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"Calling the guardian procedure with an argument adds the\n"
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"argument to the guardian's set of protected objects.\n"
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"Calling the guardian procedure without an argument returns\n"
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"one of the protected objects which are ready for garbage\n"
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"collection, or @code{#f} if no such object is available.\n"
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"Objects which are returned in this way are removed from\n"
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"the guardian.\n\n"
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"@code{make-guardian} takes one optional argument that says whether the\n"
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"new guardian should be greedy or sharing. If there is any chance\n"
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"that any object protected by the guardian may be resurrected,\n"
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"then you should make the guardian greedy (this is the default).\n\n"
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"See R. Kent Dybvig, Carl Bruggeman, and David Eby (1993)\n"
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"\"Guardians in a Generation-Based Garbage Collector\".\n"
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"ACM SIGPLAN Conference on Programming Language Design\n"
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"and Implementation, June 1993.\n\n"
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"(the semantics are slightly different at this point, but the\n"
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"paper still (mostly) accurately describes the interface).")
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#define FUNC_NAME s_scm_make_guardian
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{
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t_guardian *g = scm_gc_malloc (sizeof (t_guardian), "guardian");
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SCM z1 = scm_cons (SCM_BOOL_F, SCM_EOL);
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SCM z2 = scm_cons (SCM_BOOL_F, SCM_EOL);
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SCM z;
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/* A tconc starts out with one tail pair. */
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g->live.head = g->live.tail = z1;
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g->zombies.head = g->zombies.tail = z2;
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g->next = NULL;
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g->flags = 0L;
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/* [cmm] the UNBNDP check below is redundant but I like it. */
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if (SCM_UNBNDP (greedy_p) || !SCM_FALSEP (greedy_p))
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SET_GREEDY (g);
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SCM_NEWSMOB (z, tc16_guardian, g);
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return z;
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}
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#undef FUNC_NAME
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SCM_DEFINE (scm_guardian_destroyed_p, "guardian-destroyed?", 1, 0, 0,
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(SCM guardian),
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"Return @code{#t} if @var{guardian} has been destroyed, otherwise @code{#f}.")
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#define FUNC_NAME s_scm_guardian_destroyed_p
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{
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SCM res = SCM_BOOL_F;
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/* This critical section barrier will be replaced by a mutex. */
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SCM_DEFER_INTS;
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res = SCM_BOOL (DESTROYED_P (GUARDIAN_DATA (guardian)));
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SCM_ALLOW_INTS;
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return res;
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}
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#undef FUNC_NAME
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SCM_DEFINE (scm_guardian_greedy_p, "guardian-greedy?", 1, 0, 0,
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(SCM guardian),
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"Return @code{#t} if @var{guardian} is a greedy guardian, otherwise @code{#f}.")
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#define FUNC_NAME s_scm_guardian_greedy_p
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{
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return SCM_BOOL (GREEDY_P (GUARDIAN_DATA (guardian)));
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}
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#undef FUNC_NAME
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SCM_DEFINE (scm_destroy_guardian_x, "destroy-guardian!", 1, 0, 0,
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(SCM guardian),
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"Destroys @var{guardian}, by making it impossible to put any more\n"
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"objects in it or get any objects from it. It also unguards any\n"
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"objects guarded by @var{guardian}.")
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#define FUNC_NAME s_scm_destroy_guardian_x
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{
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t_guardian *g = GUARDIAN_DATA (guardian);
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/* This critical section barrier will be replaced by a mutex. */
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SCM_DEFER_INTS;
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if (DESTROYED_P (g))
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{
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SCM_ALLOW_INTS;
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SCM_MISC_ERROR ("guardian is already destroyed: ~A",
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scm_list_1 (guardian));
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}
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if (GREEDY_P (g))
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{
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/* clear the "greedily guarded" property of the objects */
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SCM pair;
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for (pair = g->live.head; pair != g->live.tail; pair = SCM_CDR (pair))
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scm_hashq_remove_x (greedily_guarded_whash, SCM_CAR (pair));
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for (pair = g->zombies.head; pair != g->zombies.tail; pair = SCM_CDR (pair))
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scm_hashq_remove_x (greedily_guarded_whash, SCM_CAR (pair));
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}
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/* empty the lists */
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g->live.head = g->live.tail;
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g->zombies.head = g->zombies.tail;
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SET_DESTROYED (g);
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SCM_ALLOW_INTS;
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return SCM_UNSPECIFIED;
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}
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#undef FUNC_NAME
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/* called before gc mark phase begins to initialise the live guardian list. */
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static void *
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guardian_gc_init (void *dummy1 SCM_UNUSED,
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void *dummy2 SCM_UNUSED,
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void *dummy3 SCM_UNUSED)
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{
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greedy_guardians = sharing_guardians = NULL;
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return 0;
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}
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static void
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mark_dependencies_in_tconc (t_tconc *tc)
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{
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SCM pair, next_pair;
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SCM *prev_ptr;
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/* scan the list for unmarked objects, and mark their
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dependencies */
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for (pair = tc->head, prev_ptr = &tc->head;
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! SCM_EQ_P (pair, tc->tail);
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pair = next_pair)
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{
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SCM obj = SCM_CAR (pair);
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next_pair = SCM_CDR (pair);
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if (! SCM_GC_MARK_P (obj))
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{
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/* a candidate for finalizing */
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scm_gc_mark_dependencies (obj);
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if (SCM_GC_MARK_P (obj))
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{
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/* uh oh. a cycle. transfer this object (the
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spine cell, to be exact) to
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self_centered_zombies, so we'll be able to
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complain about it later. */
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*prev_ptr = next_pair;
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SCM_SET_GC_MARK (pair);
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SCM_SETCDR (pair, self_centered_zombies);
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self_centered_zombies = pair;
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}
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else
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{
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/* see if this is a guardian. if yes, list it (but don't
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mark it yet). */
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if (GUARDIAN_P (obj))
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add_to_live_list (GUARDIAN_DATA (obj));
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prev_ptr = SCM_CDRLOC (pair);
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}
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}
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}
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}
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static void
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mark_dependencies (t_guardian *g)
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{
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mark_dependencies_in_tconc (&g->zombies);
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mark_dependencies_in_tconc (&g->live);
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}
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static void
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mark_and_zombify (t_guardian *g)
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{
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SCM tconc_tail = g->live.tail;
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SCM *prev_ptr = &g->live.head;
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SCM pair = g->live.head;
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while (! SCM_EQ_P (pair, tconc_tail))
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{
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SCM next_pair = SCM_CDR (pair);
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if (!SCM_GC_MARK_P (SCM_CAR (pair)))
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{
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/* got you, zombie! */
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/* out of the live list! */
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*prev_ptr = next_pair;
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if (GREEDY_P (g))
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/* if the guardian is greedy, mark this zombie now. this
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way it won't be zombified again this time around. */
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SCM_SET_GC_MARK (SCM_CAR (pair));
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/* into the zombie list! */
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TCONC_IN (g->zombies, SCM_CAR (pair), pair);
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}
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else
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prev_ptr = SCM_CDRLOC (pair);
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pair = next_pair;
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}
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/* Mark the cells of the live list (yes, the cells in the list, we
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don't care about objects pointed to by the list cars, since we
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know they are already marked). */
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for (pair = g->live.head; !SCM_NULLP (pair); pair = SCM_CDR (pair))
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SCM_SET_GC_MARK (pair);
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}
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/* this is called by the garbage collector between the mark and sweep
|
||
phases. for each marked guardian, it moves any unmarked object in
|
||
its live list (tconc) to its zombie list (tconc). */
|
||
static void *
|
||
guardian_zombify (void *dummy1 SCM_UNUSED,
|
||
void *dummy2 SCM_UNUSED,
|
||
void *dummy3 SCM_UNUSED)
|
||
{
|
||
t_guardian *last_greedy_guardian = NULL;
|
||
t_guardian *last_sharing_guardian = NULL;
|
||
t_guardian *first_greedy_guardian = NULL;
|
||
t_guardian *first_sharing_guardian = NULL;
|
||
t_guardian *g;
|
||
|
||
/* First, find all newly unreachable objects and mark their
|
||
dependencies.
|
||
|
||
Note that new guardians may be stuck on the end of the live
|
||
guardian lists as we run this loop, since guardians might be
|
||
guarded too. When we mark a guarded guardian, its mark function
|
||
sticks in the appropriate live guardian list. The loop
|
||
terminates when no new guardians are found. */
|
||
|
||
do {
|
||
first_greedy_guardian = greedy_guardians;
|
||
first_sharing_guardian = sharing_guardians;
|
||
|
||
for (g = greedy_guardians; g != last_greedy_guardian;
|
||
g = g->next)
|
||
mark_dependencies (g);
|
||
for (g = sharing_guardians; g != last_sharing_guardian;
|
||
g = g->next)
|
||
mark_dependencies (g);
|
||
|
||
last_greedy_guardian = first_greedy_guardian;
|
||
last_sharing_guardian = first_sharing_guardian;
|
||
} while (first_greedy_guardian != greedy_guardians
|
||
|| first_sharing_guardian != sharing_guardians);
|
||
|
||
/* now, scan all the guardians that are currently known to be live
|
||
and move their unmarked objects to zombie lists. */
|
||
|
||
for (g = greedy_guardians; g; g = g->next)
|
||
{
|
||
mark_and_zombify (g);
|
||
CLR_LISTED (g);
|
||
}
|
||
for (g = sharing_guardians; g; g = g->next)
|
||
{
|
||
mark_and_zombify (g);
|
||
CLR_LISTED (g);
|
||
}
|
||
|
||
/* Preserve the zombies in their undead state, by marking to prevent
|
||
collection. */
|
||
for (g = greedy_guardians; g; g = g->next)
|
||
scm_gc_mark (g->zombies.head);
|
||
for (g = sharing_guardians; g; g = g->next)
|
||
scm_gc_mark (g->zombies.head);
|
||
|
||
return 0;
|
||
}
|
||
|
||
static void *
|
||
whine_about_self_centered_zombies (void *dummy1 SCM_UNUSED,
|
||
void *dummy2 SCM_UNUSED,
|
||
void *dummy3 SCM_UNUSED)
|
||
{
|
||
if (!SCM_NULLP (self_centered_zombies))
|
||
{
|
||
SCM pair;
|
||
|
||
scm_puts ("** WARNING: the following guarded objects were unguarded due to cycles:",
|
||
scm_cur_errp);
|
||
scm_newline (scm_cur_errp);
|
||
for (pair = self_centered_zombies;
|
||
!SCM_NULLP (pair); pair = SCM_CDR (pair))
|
||
{
|
||
scm_display (SCM_CAR (pair), scm_cur_errp);
|
||
scm_newline (scm_cur_errp);
|
||
}
|
||
|
||
self_centered_zombies = SCM_EOL;
|
||
}
|
||
|
||
return 0;
|
||
}
|
||
|
||
void
|
||
scm_init_guardians ()
|
||
{
|
||
tc16_guardian = scm_make_smob_type ("guardian", 0);
|
||
scm_set_smob_mark (tc16_guardian, guardian_mark);
|
||
scm_set_smob_free (tc16_guardian, guardian_free);
|
||
scm_set_smob_print (tc16_guardian, guardian_print);
|
||
scm_set_smob_apply (tc16_guardian, guardian_apply, 0, 2, 0);
|
||
|
||
scm_c_hook_add (&scm_before_mark_c_hook, guardian_gc_init, 0, 0);
|
||
scm_c_hook_add (&scm_before_sweep_c_hook, guardian_zombify, 0, 0);
|
||
|
||
scm_gc_register_root (&self_centered_zombies);
|
||
scm_c_hook_add (&scm_after_gc_c_hook,
|
||
whine_about_self_centered_zombies, 0, 0);
|
||
|
||
greedily_guarded_whash =
|
||
scm_permanent_object (scm_make_doubly_weak_hash_table (SCM_MAKINUM (31)));
|
||
|
||
#include "libguile/guardians.x"
|
||
}
|
||
|
||
/*
|
||
Local Variables:
|
||
c-file-style: "gnu"
|
||
End:
|
||
*/
|