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721 |
jeremybenn |
/*
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* Copyright 1988, 1989 Hans-J. Boehm, Alan J. Demers
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* Copyright (c) 1991-1996 by Xerox Corporation. All rights reserved.
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* Copyright (c) 1998 by Silicon Graphics. All rights reserved.
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* Copyright (c) 1999 by Hewlett-Packard Company. All rights reserved.
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*
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* THIS MATERIAL IS PROVIDED AS IS, WITH ABSOLUTELY NO WARRANTY EXPRESSED
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* OR IMPLIED. ANY USE IS AT YOUR OWN RISK.
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*
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* Permission is hereby granted to use or copy this program
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* for any purpose, provided the above notices are retained on all copies.
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* Permission to modify the code and to distribute modified code is granted,
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* provided the above notices are retained, and a notice that the code was
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* modified is included with the above copyright notice.
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*
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*/
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# include "private/gc_priv.h"
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# include <stdio.h>
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# if !defined(MACOS) && !defined(MSWINCE)
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# include <signal.h>
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# include <sys/types.h>
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# endif
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/*
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* Separate free lists are maintained for different sized objects
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* up to MAXOBJSZ.
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* The call GC_allocobj(i,k) ensures that the freelist for
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* kind k objects of size i points to a non-empty
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* free list. It returns a pointer to the first entry on the free list.
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* In a single-threaded world, GC_allocobj may be called to allocate
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* an object of (small) size i as follows:
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*
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* opp = &(GC_objfreelist[i]);
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* if (*opp == 0) GC_allocobj(i, NORMAL);
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* ptr = *opp;
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* *opp = obj_link(ptr);
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*
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* Note that this is very fast if the free list is non-empty; it should
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* only involve the execution of 4 or 5 simple instructions.
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* All composite objects on freelists are cleared, except for
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* their first word.
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*/
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/*
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* The allocator uses GC_allochblk to allocate large chunks of objects.
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* These chunks all start on addresses which are multiples of
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* HBLKSZ. Each allocated chunk has an associated header,
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* which can be located quickly based on the address of the chunk.
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* (See headers.c for details.)
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* This makes it possible to check quickly whether an
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* arbitrary address corresponds to an object administered by the
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* allocator.
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*/
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word GC_non_gc_bytes = 0; /* Number of bytes not intended to be collected */
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word GC_gc_no = 0;
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#ifndef SMALL_CONFIG
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int GC_incremental = 0; /* By default, stop the world. */
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#endif
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int GC_parallel = FALSE; /* By default, parallel GC is off. */
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int GC_full_freq = 19; /* Every 20th collection is a full */
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/* collection, whether we need it */
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/* or not. */
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GC_bool GC_need_full_gc = FALSE;
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/* Need full GC do to heap growth. */
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#ifdef THREADS
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GC_bool GC_world_stopped = FALSE;
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# define IF_THREADS(x) x
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#else
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# define IF_THREADS(x)
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#endif
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word GC_used_heap_size_after_full = 0;
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char * GC_copyright[] =
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{"Copyright 1988,1989 Hans-J. Boehm and Alan J. Demers ",
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"Copyright (c) 1991-1995 by Xerox Corporation. All rights reserved. ",
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"Copyright (c) 1996-1998 by Silicon Graphics. All rights reserved. ",
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"Copyright (c) 1999-2001 by Hewlett-Packard Company. All rights reserved. ",
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"THIS MATERIAL IS PROVIDED AS IS, WITH ABSOLUTELY NO WARRANTY",
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" EXPRESSED OR IMPLIED. ANY USE IS AT YOUR OWN RISK.",
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"See source code for details." };
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# include "version.h"
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#if defined(SAVE_CALL_CHAIN) && \
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!(defined(REDIRECT_MALLOC) && defined(GC_HAVE_BUILTIN_BACKTRACE))
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# define SAVE_CALL_CHAIN_IN_GC
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/* This is only safe if the call chain save mechanism won't end up */
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/* calling GC_malloc. The GNU C library documentation suggests */
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/* that backtrace doesn't use malloc, but at least the initial */
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/* call in some versions does seem to invoke the dynamic linker, */
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/* which uses malloc. */
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#endif
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/* some more variables */
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extern signed_word GC_mem_found; /* Number of reclaimed longwords */
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/* after garbage collection */
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GC_bool GC_dont_expand = 0;
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word GC_free_space_divisor = 3;
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extern GC_bool GC_collection_in_progress();
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/* Collection is in progress, or was abandoned. */
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int GC_never_stop_func GC_PROTO((void)) { return(0); }
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unsigned long GC_time_limit = TIME_LIMIT;
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CLOCK_TYPE GC_start_time; /* Time at which we stopped world. */
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/* used only in GC_timeout_stop_func. */
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int GC_n_attempts = 0; /* Number of attempts at finishing */
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/* collection within GC_time_limit. */
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#if defined(SMALL_CONFIG) || defined(NO_CLOCK)
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# define GC_timeout_stop_func GC_never_stop_func
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#else
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int GC_timeout_stop_func GC_PROTO((void))
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{
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CLOCK_TYPE current_time;
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static unsigned count = 0;
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unsigned long time_diff;
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if ((count++ & 3) != 0) return(0);
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GET_TIME(current_time);
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time_diff = MS_TIME_DIFF(current_time,GC_start_time);
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if (time_diff >= GC_time_limit) {
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# ifdef CONDPRINT
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if (GC_print_stats) {
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GC_printf0("Abandoning stopped marking after ");
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GC_printf1("%lu msecs", (unsigned long)time_diff);
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GC_printf1("(attempt %ld)\n", (unsigned long) GC_n_attempts);
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}
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# endif
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return(1);
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}
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return(0);
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}
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#endif /* !SMALL_CONFIG */
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/* Return the minimum number of words that must be allocated between */
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/* collections to amortize the collection cost. */
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static word min_words_allocd()
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{
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# ifdef THREADS
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/* We punt, for now. */
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register signed_word stack_size = 10000;
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# else
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int dummy;
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register signed_word stack_size = (ptr_t)(&dummy) - GC_stackbottom;
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# endif
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word total_root_size; /* includes double stack size, */
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/* since the stack is expensive */
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/* to scan. */
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word scan_size; /* Estimate of memory to be scanned */
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/* during normal GC. */
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if (stack_size < 0) stack_size = -stack_size;
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total_root_size = 2 * stack_size + GC_root_size;
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scan_size = BYTES_TO_WORDS(GC_heapsize - GC_large_free_bytes
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+ (GC_large_free_bytes >> 2)
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/* use a bit more of large empty heap */
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+ total_root_size);
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if (TRUE_INCREMENTAL) {
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return scan_size / (2 * GC_free_space_divisor);
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} else {
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return scan_size / GC_free_space_divisor;
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}
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}
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/* Return the number of words allocated, adjusted for explicit storage */
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/* management, etc.. This number is used in deciding when to trigger */
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/* collections. */
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word GC_adj_words_allocd()
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{
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register signed_word result;
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register signed_word expl_managed =
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BYTES_TO_WORDS((long)GC_non_gc_bytes
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- (long)GC_non_gc_bytes_at_gc);
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/* Don't count what was explicitly freed, or newly allocated for */
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/* explicit management. Note that deallocating an explicitly */
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/* managed object should not alter result, assuming the client */
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/* is playing by the rules. */
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result = (signed_word)GC_words_allocd
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- (signed_word)GC_mem_freed
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+ (signed_word)GC_finalizer_mem_freed - expl_managed;
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if (result > (signed_word)GC_words_allocd) {
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result = GC_words_allocd;
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/* probably client bug or unfortunate scheduling */
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}
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result += GC_words_finalized;
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/* We count objects enqueued for finalization as though they */
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/* had been reallocated this round. Finalization is user */
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/* visible progress. And if we don't count this, we have */
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/* stability problems for programs that finalize all objects. */
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if ((GC_words_wasted >> 3) < result)
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result += GC_words_wasted;
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/* This doesn't reflect useful work. But if there is lots of */
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/* new fragmentation, the same is probably true of the heap, */
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/* and the collection will be correspondingly cheaper. */
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if (result < (signed_word)(GC_words_allocd >> 3)) {
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/* Always count at least 1/8 of the allocations. We don't want */
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/* to collect too infrequently, since that would inhibit */
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/* coalescing of free storage blocks. */
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/* This also makes us partially robust against client bugs. */
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return(GC_words_allocd >> 3);
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} else {
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return(result);
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}
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}
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/* Clear up a few frames worth of garbage left at the top of the stack. */
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/* This is used to prevent us from accidentally treating garbade left */
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/* on the stack by other parts of the collector as roots. This */
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/* differs from the code in misc.c, which actually tries to keep the */
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/* stack clear of long-lived, client-generated garbage. */
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void GC_clear_a_few_frames()
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{
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# define NWORDS 64
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word frames[NWORDS];
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/* Some compilers will warn that frames was set but never used. */
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/* That's the whole idea ... */
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register int i;
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for (i = 0; i < NWORDS; i++) frames[i] = 0;
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}
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/* Heap size at which we need a collection to avoid expanding past */
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/* limits used by blacklisting. */
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static word GC_collect_at_heapsize = (word)(-1);
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/* Have we allocated enough to amortize a collection? */
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GC_bool GC_should_collect()
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{
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return(GC_adj_words_allocd() >= min_words_allocd()
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|| GC_heapsize >= GC_collect_at_heapsize);
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}
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void GC_notify_full_gc()
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{
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if (GC_start_call_back != (void (*) GC_PROTO((void)))0) {
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(*GC_start_call_back)();
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}
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}
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GC_bool GC_is_full_gc = FALSE;
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/*
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* Initiate a garbage collection if appropriate.
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* Choose judiciously
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* between partial, full, and stop-world collections.
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* Assumes lock held, signals disabled.
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*/
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void GC_maybe_gc()
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{
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static int n_partial_gcs = 0;
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if (GC_should_collect()) {
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if (!GC_incremental) {
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GC_gcollect_inner();
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n_partial_gcs = 0;
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return;
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} else {
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# ifdef PARALLEL_MARK
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GC_wait_for_reclaim();
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# endif
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if (GC_need_full_gc || n_partial_gcs >= GC_full_freq) {
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# ifdef CONDPRINT
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if (GC_print_stats) {
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GC_printf2(
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"***>Full mark for collection %lu after %ld allocd bytes\n",
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(unsigned long) GC_gc_no+1,
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(long)WORDS_TO_BYTES(GC_words_allocd));
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}
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# endif
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GC_promote_black_lists();
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(void)GC_reclaim_all((GC_stop_func)0, TRUE);
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GC_clear_marks();
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n_partial_gcs = 0;
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GC_notify_full_gc();
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GC_is_full_gc = TRUE;
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} else {
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n_partial_gcs++;
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}
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}
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/* We try to mark with the world stopped. */
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/* If we run out of time, this turns into */
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/* incremental marking. */
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# ifndef NO_CLOCK
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if (GC_time_limit != GC_TIME_UNLIMITED) { GET_TIME(GC_start_time); }
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# endif
|
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if (GC_stopped_mark(GC_time_limit == GC_TIME_UNLIMITED?
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GC_never_stop_func : GC_timeout_stop_func)) {
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# ifdef SAVE_CALL_CHAIN_IN_GC
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GC_save_callers(GC_last_stack);
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# endif
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GC_finish_collection();
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} else {
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314 |
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if (!GC_is_full_gc) {
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/* Count this as the first attempt */
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GC_n_attempts++;
|
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}
|
318 |
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}
|
319 |
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}
|
320 |
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}
|
321 |
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322 |
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/*
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324 |
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* Stop the world garbage collection. Assumes lock held, signals disabled.
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325 |
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* If stop_func is not GC_never_stop_func, then abort if stop_func returns TRUE.
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* Return TRUE if we successfully completed the collection.
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*/
|
328 |
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GC_bool GC_try_to_collect_inner(stop_func)
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GC_stop_func stop_func;
|
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{
|
331 |
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# ifdef CONDPRINT
|
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CLOCK_TYPE start_time, current_time;
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# endif
|
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|
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if (GC_dont_gc) return FALSE;
|
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|
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if (GC_incremental && GC_collection_in_progress()) {
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# ifdef CONDPRINT
|
337 |
|
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if (GC_print_stats) {
|
338 |
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GC_printf0(
|
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"GC_try_to_collect_inner: finishing collection in progress\n");
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}
|
341 |
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# endif /* CONDPRINT */
|
342 |
|
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/* Just finish collection already in progress. */
|
343 |
|
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while(GC_collection_in_progress()) {
|
344 |
|
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if (stop_func()) return(FALSE);
|
345 |
|
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GC_collect_a_little_inner(1);
|
346 |
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}
|
347 |
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}
|
348 |
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if (stop_func == GC_never_stop_func) GC_notify_full_gc();
|
349 |
|
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# ifdef CONDPRINT
|
350 |
|
|
if (GC_print_stats) {
|
351 |
|
|
if (GC_print_stats) GET_TIME(start_time);
|
352 |
|
|
GC_printf2(
|
353 |
|
|
"Initiating full world-stop collection %lu after %ld allocd bytes\n",
|
354 |
|
|
(unsigned long) GC_gc_no+1,
|
355 |
|
|
(long)WORDS_TO_BYTES(GC_words_allocd));
|
356 |
|
|
}
|
357 |
|
|
# endif
|
358 |
|
|
GC_promote_black_lists();
|
359 |
|
|
/* Make sure all blocks have been reclaimed, so sweep routines */
|
360 |
|
|
/* don't see cleared mark bits. */
|
361 |
|
|
/* If we're guaranteed to finish, then this is unnecessary. */
|
362 |
|
|
/* In the find_leak case, we have to finish to guarantee that */
|
363 |
|
|
/* previously unmarked objects are not reported as leaks. */
|
364 |
|
|
# ifdef PARALLEL_MARK
|
365 |
|
|
GC_wait_for_reclaim();
|
366 |
|
|
# endif
|
367 |
|
|
if ((GC_find_leak || stop_func != GC_never_stop_func)
|
368 |
|
|
&& !GC_reclaim_all(stop_func, FALSE)) {
|
369 |
|
|
/* Aborted. So far everything is still consistent. */
|
370 |
|
|
return(FALSE);
|
371 |
|
|
}
|
372 |
|
|
GC_invalidate_mark_state(); /* Flush mark stack. */
|
373 |
|
|
GC_clear_marks();
|
374 |
|
|
# ifdef SAVE_CALL_CHAIN_IN_GC
|
375 |
|
|
GC_save_callers(GC_last_stack);
|
376 |
|
|
# endif
|
377 |
|
|
GC_is_full_gc = TRUE;
|
378 |
|
|
if (!GC_stopped_mark(stop_func)) {
|
379 |
|
|
if (!GC_incremental) {
|
380 |
|
|
/* We're partially done and have no way to complete or use */
|
381 |
|
|
/* current work. Reestablish invariants as cheaply as */
|
382 |
|
|
/* possible. */
|
383 |
|
|
GC_invalidate_mark_state();
|
384 |
|
|
GC_unpromote_black_lists();
|
385 |
|
|
} /* else we claim the world is already still consistent. We'll */
|
386 |
|
|
/* finish incrementally. */
|
387 |
|
|
return(FALSE);
|
388 |
|
|
}
|
389 |
|
|
GC_finish_collection();
|
390 |
|
|
# if defined(CONDPRINT)
|
391 |
|
|
if (GC_print_stats) {
|
392 |
|
|
GET_TIME(current_time);
|
393 |
|
|
GC_printf1("Complete collection took %lu msecs\n",
|
394 |
|
|
MS_TIME_DIFF(current_time,start_time));
|
395 |
|
|
}
|
396 |
|
|
# endif
|
397 |
|
|
return(TRUE);
|
398 |
|
|
}
|
399 |
|
|
|
400 |
|
|
|
401 |
|
|
|
402 |
|
|
/*
|
403 |
|
|
* Perform n units of garbage collection work. A unit is intended to touch
|
404 |
|
|
* roughly GC_RATE pages. Every once in a while, we do more than that.
|
405 |
|
|
* This needa to be a fairly large number with our current incremental
|
406 |
|
|
* GC strategy, since otherwise we allocate too much during GC, and the
|
407 |
|
|
* cleanup gets expensive.
|
408 |
|
|
*/
|
409 |
|
|
# define GC_RATE 10
|
410 |
|
|
# define MAX_PRIOR_ATTEMPTS 1
|
411 |
|
|
/* Maximum number of prior attempts at world stop marking */
|
412 |
|
|
/* A value of 1 means that we finish the second time, no matter */
|
413 |
|
|
/* how long it takes. Doesn't count the initial root scan */
|
414 |
|
|
/* for a full GC. */
|
415 |
|
|
|
416 |
|
|
int GC_deficit = 0; /* The number of extra calls to GC_mark_some */
|
417 |
|
|
/* that we have made. */
|
418 |
|
|
|
419 |
|
|
void GC_collect_a_little_inner(n)
|
420 |
|
|
int n;
|
421 |
|
|
{
|
422 |
|
|
register int i;
|
423 |
|
|
|
424 |
|
|
if (GC_dont_gc) return;
|
425 |
|
|
if (GC_incremental && GC_collection_in_progress()) {
|
426 |
|
|
for (i = GC_deficit; i < GC_RATE*n; i++) {
|
427 |
|
|
if (GC_mark_some((ptr_t)0)) {
|
428 |
|
|
/* Need to finish a collection */
|
429 |
|
|
# ifdef SAVE_CALL_CHAIN_IN_GC
|
430 |
|
|
GC_save_callers(GC_last_stack);
|
431 |
|
|
# endif
|
432 |
|
|
# ifdef PARALLEL_MARK
|
433 |
|
|
GC_wait_for_reclaim();
|
434 |
|
|
# endif
|
435 |
|
|
if (GC_n_attempts < MAX_PRIOR_ATTEMPTS
|
436 |
|
|
&& GC_time_limit != GC_TIME_UNLIMITED) {
|
437 |
|
|
GET_TIME(GC_start_time);
|
438 |
|
|
if (!GC_stopped_mark(GC_timeout_stop_func)) {
|
439 |
|
|
GC_n_attempts++;
|
440 |
|
|
break;
|
441 |
|
|
}
|
442 |
|
|
} else {
|
443 |
|
|
(void)GC_stopped_mark(GC_never_stop_func);
|
444 |
|
|
}
|
445 |
|
|
GC_finish_collection();
|
446 |
|
|
break;
|
447 |
|
|
}
|
448 |
|
|
}
|
449 |
|
|
if (GC_deficit > 0) GC_deficit -= GC_RATE*n;
|
450 |
|
|
if (GC_deficit < 0) GC_deficit = 0;
|
451 |
|
|
} else {
|
452 |
|
|
GC_maybe_gc();
|
453 |
|
|
}
|
454 |
|
|
}
|
455 |
|
|
|
456 |
|
|
int GC_collect_a_little GC_PROTO(())
|
457 |
|
|
{
|
458 |
|
|
int result;
|
459 |
|
|
DCL_LOCK_STATE;
|
460 |
|
|
|
461 |
|
|
DISABLE_SIGNALS();
|
462 |
|
|
LOCK();
|
463 |
|
|
GC_collect_a_little_inner(1);
|
464 |
|
|
result = (int)GC_collection_in_progress();
|
465 |
|
|
UNLOCK();
|
466 |
|
|
ENABLE_SIGNALS();
|
467 |
|
|
if (!result && GC_debugging_started) GC_print_all_smashed();
|
468 |
|
|
return(result);
|
469 |
|
|
}
|
470 |
|
|
|
471 |
|
|
/*
|
472 |
|
|
* Assumes lock is held, signals are disabled.
|
473 |
|
|
* We stop the world.
|
474 |
|
|
* If stop_func() ever returns TRUE, we may fail and return FALSE.
|
475 |
|
|
* Increment GC_gc_no if we succeed.
|
476 |
|
|
*/
|
477 |
|
|
GC_bool GC_stopped_mark(stop_func)
|
478 |
|
|
GC_stop_func stop_func;
|
479 |
|
|
{
|
480 |
|
|
register int i;
|
481 |
|
|
int dummy;
|
482 |
|
|
# if defined(PRINTTIMES) || defined(CONDPRINT)
|
483 |
|
|
CLOCK_TYPE start_time, current_time;
|
484 |
|
|
# endif
|
485 |
|
|
|
486 |
|
|
# ifdef PRINTTIMES
|
487 |
|
|
GET_TIME(start_time);
|
488 |
|
|
# endif
|
489 |
|
|
# if defined(CONDPRINT) && !defined(PRINTTIMES)
|
490 |
|
|
if (GC_print_stats) GET_TIME(start_time);
|
491 |
|
|
# endif
|
492 |
|
|
# if defined(REGISTER_LIBRARIES_EARLY)
|
493 |
|
|
GC_cond_register_dynamic_libraries();
|
494 |
|
|
# endif
|
495 |
|
|
STOP_WORLD();
|
496 |
|
|
IF_THREADS(GC_world_stopped = TRUE);
|
497 |
|
|
# ifdef CONDPRINT
|
498 |
|
|
if (GC_print_stats) {
|
499 |
|
|
GC_printf1("--> Marking for collection %lu ",
|
500 |
|
|
(unsigned long) GC_gc_no + 1);
|
501 |
|
|
GC_printf2("after %lu allocd bytes + %lu wasted bytes\n",
|
502 |
|
|
(unsigned long) WORDS_TO_BYTES(GC_words_allocd),
|
503 |
|
|
(unsigned long) WORDS_TO_BYTES(GC_words_wasted));
|
504 |
|
|
}
|
505 |
|
|
# endif
|
506 |
|
|
# ifdef MAKE_BACK_GRAPH
|
507 |
|
|
if (GC_print_back_height) {
|
508 |
|
|
GC_build_back_graph();
|
509 |
|
|
}
|
510 |
|
|
# endif
|
511 |
|
|
|
512 |
|
|
/* Mark from all roots. */
|
513 |
|
|
/* Minimize junk left in my registers and on the stack */
|
514 |
|
|
GC_clear_a_few_frames();
|
515 |
|
|
GC_noop(0,0,0,0,0,0);
|
516 |
|
|
GC_initiate_gc();
|
517 |
|
|
for(i = 0;;i++) {
|
518 |
|
|
if ((*stop_func)()) {
|
519 |
|
|
# ifdef CONDPRINT
|
520 |
|
|
if (GC_print_stats) {
|
521 |
|
|
GC_printf0("Abandoned stopped marking after ");
|
522 |
|
|
GC_printf1("%lu iterations\n",
|
523 |
|
|
(unsigned long)i);
|
524 |
|
|
}
|
525 |
|
|
# endif
|
526 |
|
|
GC_deficit = i; /* Give the mutator a chance. */
|
527 |
|
|
IF_THREADS(GC_world_stopped = FALSE);
|
528 |
|
|
START_WORLD();
|
529 |
|
|
return(FALSE);
|
530 |
|
|
}
|
531 |
|
|
if (GC_mark_some((ptr_t)(&dummy))) break;
|
532 |
|
|
}
|
533 |
|
|
|
534 |
|
|
GC_gc_no++;
|
535 |
|
|
# ifdef PRINTSTATS
|
536 |
|
|
GC_printf2("Collection %lu reclaimed %ld bytes",
|
537 |
|
|
(unsigned long) GC_gc_no - 1,
|
538 |
|
|
(long)WORDS_TO_BYTES(GC_mem_found));
|
539 |
|
|
# else
|
540 |
|
|
# ifdef CONDPRINT
|
541 |
|
|
if (GC_print_stats) {
|
542 |
|
|
GC_printf1("Collection %lu finished", (unsigned long) GC_gc_no - 1);
|
543 |
|
|
}
|
544 |
|
|
# endif
|
545 |
|
|
# endif /* !PRINTSTATS */
|
546 |
|
|
# ifdef CONDPRINT
|
547 |
|
|
if (GC_print_stats) {
|
548 |
|
|
GC_printf1(" ---> heapsize = %lu bytes\n",
|
549 |
|
|
(unsigned long) GC_heapsize);
|
550 |
|
|
/* Printf arguments may be pushed in funny places. Clear the */
|
551 |
|
|
/* space. */
|
552 |
|
|
GC_printf0("");
|
553 |
|
|
}
|
554 |
|
|
# endif /* CONDPRINT */
|
555 |
|
|
|
556 |
|
|
/* Check all debugged objects for consistency */
|
557 |
|
|
if (GC_debugging_started) {
|
558 |
|
|
(*GC_check_heap)();
|
559 |
|
|
}
|
560 |
|
|
|
561 |
|
|
IF_THREADS(GC_world_stopped = FALSE);
|
562 |
|
|
START_WORLD();
|
563 |
|
|
# ifdef PRINTTIMES
|
564 |
|
|
GET_TIME(current_time);
|
565 |
|
|
GC_printf1("World-stopped marking took %lu msecs\n",
|
566 |
|
|
MS_TIME_DIFF(current_time,start_time));
|
567 |
|
|
# else
|
568 |
|
|
# ifdef CONDPRINT
|
569 |
|
|
if (GC_print_stats) {
|
570 |
|
|
GET_TIME(current_time);
|
571 |
|
|
GC_printf1("World-stopped marking took %lu msecs\n",
|
572 |
|
|
MS_TIME_DIFF(current_time,start_time));
|
573 |
|
|
}
|
574 |
|
|
# endif
|
575 |
|
|
# endif
|
576 |
|
|
return(TRUE);
|
577 |
|
|
}
|
578 |
|
|
|
579 |
|
|
/* Set all mark bits for the free list whose first entry is q */
|
580 |
|
|
#ifdef __STDC__
|
581 |
|
|
void GC_set_fl_marks(ptr_t q)
|
582 |
|
|
#else
|
583 |
|
|
void GC_set_fl_marks(q)
|
584 |
|
|
ptr_t q;
|
585 |
|
|
#endif
|
586 |
|
|
{
|
587 |
|
|
ptr_t p;
|
588 |
|
|
struct hblk * h, * last_h = 0;
|
589 |
|
|
hdr *hhdr;
|
590 |
|
|
int word_no;
|
591 |
|
|
|
592 |
|
|
for (p = q; p != 0; p = obj_link(p)){
|
593 |
|
|
h = HBLKPTR(p);
|
594 |
|
|
if (h != last_h) {
|
595 |
|
|
last_h = h;
|
596 |
|
|
hhdr = HDR(h);
|
597 |
|
|
}
|
598 |
|
|
word_no = (((word *)p) - ((word *)h));
|
599 |
|
|
set_mark_bit_from_hdr(hhdr, word_no);
|
600 |
|
|
}
|
601 |
|
|
}
|
602 |
|
|
|
603 |
|
|
/* Clear all mark bits for the free list whose first entry is q */
|
604 |
|
|
/* Decrement GC_mem_found by number of words on free list. */
|
605 |
|
|
#ifdef __STDC__
|
606 |
|
|
void GC_clear_fl_marks(ptr_t q)
|
607 |
|
|
#else
|
608 |
|
|
void GC_clear_fl_marks(q)
|
609 |
|
|
ptr_t q;
|
610 |
|
|
#endif
|
611 |
|
|
{
|
612 |
|
|
ptr_t p;
|
613 |
|
|
struct hblk * h, * last_h = 0;
|
614 |
|
|
hdr *hhdr;
|
615 |
|
|
int word_no;
|
616 |
|
|
|
617 |
|
|
for (p = q; p != 0; p = obj_link(p)){
|
618 |
|
|
h = HBLKPTR(p);
|
619 |
|
|
if (h != last_h) {
|
620 |
|
|
last_h = h;
|
621 |
|
|
hhdr = HDR(h);
|
622 |
|
|
}
|
623 |
|
|
word_no = (((word *)p) - ((word *)h));
|
624 |
|
|
clear_mark_bit_from_hdr(hhdr, word_no);
|
625 |
|
|
# ifdef GATHERSTATS
|
626 |
|
|
GC_mem_found -= hhdr -> hb_sz;
|
627 |
|
|
# endif
|
628 |
|
|
}
|
629 |
|
|
}
|
630 |
|
|
|
631 |
|
|
/* Finish up a collection. Assumes lock is held, signals are disabled, */
|
632 |
|
|
/* but the world is otherwise running. */
|
633 |
|
|
void GC_finish_collection()
|
634 |
|
|
{
|
635 |
|
|
# ifdef PRINTTIMES
|
636 |
|
|
CLOCK_TYPE start_time;
|
637 |
|
|
CLOCK_TYPE finalize_time;
|
638 |
|
|
CLOCK_TYPE done_time;
|
639 |
|
|
|
640 |
|
|
GET_TIME(start_time);
|
641 |
|
|
finalize_time = start_time;
|
642 |
|
|
# endif
|
643 |
|
|
|
644 |
|
|
# ifdef GATHERSTATS
|
645 |
|
|
GC_mem_found = 0;
|
646 |
|
|
# endif
|
647 |
|
|
# if defined(LINUX) && defined(__ELF__) && !defined(SMALL_CONFIG)
|
648 |
|
|
if (getenv("GC_PRINT_ADDRESS_MAP") != 0) {
|
649 |
|
|
GC_print_address_map();
|
650 |
|
|
}
|
651 |
|
|
# endif
|
652 |
|
|
COND_DUMP;
|
653 |
|
|
if (GC_find_leak) {
|
654 |
|
|
/* Mark all objects on the free list. All objects should be */
|
655 |
|
|
/* marked when we're done. */
|
656 |
|
|
{
|
657 |
|
|
register word size; /* current object size */
|
658 |
|
|
int kind;
|
659 |
|
|
ptr_t q;
|
660 |
|
|
|
661 |
|
|
for (kind = 0; kind < GC_n_kinds; kind++) {
|
662 |
|
|
for (size = 1; size <= MAXOBJSZ; size++) {
|
663 |
|
|
q = GC_obj_kinds[kind].ok_freelist[size];
|
664 |
|
|
if (q != 0) GC_set_fl_marks(q);
|
665 |
|
|
}
|
666 |
|
|
}
|
667 |
|
|
}
|
668 |
|
|
GC_start_reclaim(TRUE);
|
669 |
|
|
/* The above just checks; it doesn't really reclaim anything. */
|
670 |
|
|
}
|
671 |
|
|
|
672 |
|
|
GC_finalize();
|
673 |
|
|
# ifdef STUBBORN_ALLOC
|
674 |
|
|
GC_clean_changing_list();
|
675 |
|
|
# endif
|
676 |
|
|
|
677 |
|
|
# ifdef PRINTTIMES
|
678 |
|
|
GET_TIME(finalize_time);
|
679 |
|
|
# endif
|
680 |
|
|
|
681 |
|
|
if (GC_print_back_height) {
|
682 |
|
|
# ifdef MAKE_BACK_GRAPH
|
683 |
|
|
GC_traverse_back_graph();
|
684 |
|
|
# else
|
685 |
|
|
# ifndef SMALL_CONFIG
|
686 |
|
|
GC_err_printf0("Back height not available: "
|
687 |
|
|
"Rebuild collector with -DMAKE_BACK_GRAPH\n");
|
688 |
|
|
# endif
|
689 |
|
|
# endif
|
690 |
|
|
}
|
691 |
|
|
|
692 |
|
|
/* Clear free list mark bits, in case they got accidentally marked */
|
693 |
|
|
/* (or GC_find_leak is set and they were intentionally marked). */
|
694 |
|
|
/* Also subtract memory remaining from GC_mem_found count. */
|
695 |
|
|
/* Note that composite objects on free list are cleared. */
|
696 |
|
|
/* Thus accidentally marking a free list is not a problem; only */
|
697 |
|
|
/* objects on the list itself will be marked, and that's fixed here. */
|
698 |
|
|
{
|
699 |
|
|
register word size; /* current object size */
|
700 |
|
|
register ptr_t q; /* pointer to current object */
|
701 |
|
|
int kind;
|
702 |
|
|
|
703 |
|
|
for (kind = 0; kind < GC_n_kinds; kind++) {
|
704 |
|
|
for (size = 1; size <= MAXOBJSZ; size++) {
|
705 |
|
|
q = GC_obj_kinds[kind].ok_freelist[size];
|
706 |
|
|
if (q != 0) GC_clear_fl_marks(q);
|
707 |
|
|
}
|
708 |
|
|
}
|
709 |
|
|
}
|
710 |
|
|
|
711 |
|
|
|
712 |
|
|
# ifdef PRINTSTATS
|
713 |
|
|
GC_printf1("Bytes recovered before sweep - f.l. count = %ld\n",
|
714 |
|
|
(long)WORDS_TO_BYTES(GC_mem_found));
|
715 |
|
|
# endif
|
716 |
|
|
/* Reconstruct free lists to contain everything not marked */
|
717 |
|
|
GC_start_reclaim(FALSE);
|
718 |
|
|
if (GC_is_full_gc) {
|
719 |
|
|
GC_used_heap_size_after_full = USED_HEAP_SIZE;
|
720 |
|
|
GC_need_full_gc = FALSE;
|
721 |
|
|
} else {
|
722 |
|
|
GC_need_full_gc =
|
723 |
|
|
BYTES_TO_WORDS(USED_HEAP_SIZE - GC_used_heap_size_after_full)
|
724 |
|
|
> min_words_allocd();
|
725 |
|
|
}
|
726 |
|
|
|
727 |
|
|
# ifdef PRINTSTATS
|
728 |
|
|
GC_printf2(
|
729 |
|
|
"Immediately reclaimed %ld bytes in heap of size %lu bytes",
|
730 |
|
|
(long)WORDS_TO_BYTES(GC_mem_found),
|
731 |
|
|
(unsigned long)GC_heapsize);
|
732 |
|
|
# ifdef USE_MUNMAP
|
733 |
|
|
GC_printf1("(%lu unmapped)", GC_unmapped_bytes);
|
734 |
|
|
# endif
|
735 |
|
|
GC_printf2(
|
736 |
|
|
"\n%lu (atomic) + %lu (composite) collectable bytes in use\n",
|
737 |
|
|
(unsigned long)WORDS_TO_BYTES(GC_atomic_in_use),
|
738 |
|
|
(unsigned long)WORDS_TO_BYTES(GC_composite_in_use));
|
739 |
|
|
# endif
|
740 |
|
|
|
741 |
|
|
GC_n_attempts = 0;
|
742 |
|
|
GC_is_full_gc = FALSE;
|
743 |
|
|
/* Reset or increment counters for next cycle */
|
744 |
|
|
GC_words_allocd_before_gc += GC_words_allocd;
|
745 |
|
|
GC_non_gc_bytes_at_gc = GC_non_gc_bytes;
|
746 |
|
|
GC_words_allocd = 0;
|
747 |
|
|
GC_words_wasted = 0;
|
748 |
|
|
GC_mem_freed = 0;
|
749 |
|
|
GC_finalizer_mem_freed = 0;
|
750 |
|
|
|
751 |
|
|
# ifdef USE_MUNMAP
|
752 |
|
|
GC_unmap_old();
|
753 |
|
|
# endif
|
754 |
|
|
# ifdef PRINTTIMES
|
755 |
|
|
GET_TIME(done_time);
|
756 |
|
|
GC_printf2("Finalize + initiate sweep took %lu + %lu msecs\n",
|
757 |
|
|
MS_TIME_DIFF(finalize_time,start_time),
|
758 |
|
|
MS_TIME_DIFF(done_time,finalize_time));
|
759 |
|
|
# endif
|
760 |
|
|
}
|
761 |
|
|
|
762 |
|
|
/* Externally callable routine to invoke full, stop-world collection */
|
763 |
|
|
# if defined(__STDC__) || defined(__cplusplus)
|
764 |
|
|
int GC_try_to_collect(GC_stop_func stop_func)
|
765 |
|
|
# else
|
766 |
|
|
int GC_try_to_collect(stop_func)
|
767 |
|
|
GC_stop_func stop_func;
|
768 |
|
|
# endif
|
769 |
|
|
{
|
770 |
|
|
int result;
|
771 |
|
|
DCL_LOCK_STATE;
|
772 |
|
|
|
773 |
|
|
if (GC_debugging_started) GC_print_all_smashed();
|
774 |
|
|
GC_INVOKE_FINALIZERS();
|
775 |
|
|
DISABLE_SIGNALS();
|
776 |
|
|
LOCK();
|
777 |
|
|
ENTER_GC();
|
778 |
|
|
if (!GC_is_initialized) GC_init_inner();
|
779 |
|
|
/* Minimize junk left in my registers */
|
780 |
|
|
GC_noop(0,0,0,0,0,0);
|
781 |
|
|
result = (int)GC_try_to_collect_inner(stop_func);
|
782 |
|
|
EXIT_GC();
|
783 |
|
|
UNLOCK();
|
784 |
|
|
ENABLE_SIGNALS();
|
785 |
|
|
if(result) {
|
786 |
|
|
if (GC_debugging_started) GC_print_all_smashed();
|
787 |
|
|
GC_INVOKE_FINALIZERS();
|
788 |
|
|
}
|
789 |
|
|
return(result);
|
790 |
|
|
}
|
791 |
|
|
|
792 |
|
|
void GC_gcollect GC_PROTO(())
|
793 |
|
|
{
|
794 |
|
|
(void)GC_try_to_collect(GC_never_stop_func);
|
795 |
|
|
if (GC_have_errors) GC_print_all_errors();
|
796 |
|
|
}
|
797 |
|
|
|
798 |
|
|
word GC_n_heap_sects = 0; /* Number of sections currently in heap. */
|
799 |
|
|
|
800 |
|
|
/*
|
801 |
|
|
* Use the chunk of memory starting at p of size bytes as part of the heap.
|
802 |
|
|
* Assumes p is HBLKSIZE aligned, and bytes is a multiple of HBLKSIZE.
|
803 |
|
|
*/
|
804 |
|
|
void GC_add_to_heap(p, bytes)
|
805 |
|
|
struct hblk *p;
|
806 |
|
|
word bytes;
|
807 |
|
|
{
|
808 |
|
|
word words;
|
809 |
|
|
hdr * phdr;
|
810 |
|
|
|
811 |
|
|
if (GC_n_heap_sects >= MAX_HEAP_SECTS) {
|
812 |
|
|
ABORT("Too many heap sections: Increase MAXHINCR or MAX_HEAP_SECTS");
|
813 |
|
|
}
|
814 |
|
|
phdr = GC_install_header(p);
|
815 |
|
|
if (0 == phdr) {
|
816 |
|
|
/* This is extremely unlikely. Can't add it. This will */
|
817 |
|
|
/* almost certainly result in a 0 return from the allocator, */
|
818 |
|
|
/* which is entirely appropriate. */
|
819 |
|
|
return;
|
820 |
|
|
}
|
821 |
|
|
GC_heap_sects[GC_n_heap_sects].hs_start = (ptr_t)p;
|
822 |
|
|
GC_heap_sects[GC_n_heap_sects].hs_bytes = bytes;
|
823 |
|
|
GC_n_heap_sects++;
|
824 |
|
|
words = BYTES_TO_WORDS(bytes);
|
825 |
|
|
phdr -> hb_sz = words;
|
826 |
|
|
phdr -> hb_map = (unsigned char *)1; /* A value != GC_invalid_map */
|
827 |
|
|
phdr -> hb_flags = 0;
|
828 |
|
|
GC_freehblk(p);
|
829 |
|
|
GC_heapsize += bytes;
|
830 |
|
|
if ((ptr_t)p <= (ptr_t)GC_least_plausible_heap_addr
|
831 |
|
|
|| GC_least_plausible_heap_addr == 0) {
|
832 |
|
|
GC_least_plausible_heap_addr = (GC_PTR)((ptr_t)p - sizeof(word));
|
833 |
|
|
/* Making it a little smaller than necessary prevents */
|
834 |
|
|
/* us from getting a false hit from the variable */
|
835 |
|
|
/* itself. There's some unintentional reflection */
|
836 |
|
|
/* here. */
|
837 |
|
|
}
|
838 |
|
|
if ((ptr_t)p + bytes >= (ptr_t)GC_greatest_plausible_heap_addr) {
|
839 |
|
|
GC_greatest_plausible_heap_addr = (GC_PTR)((ptr_t)p + bytes);
|
840 |
|
|
}
|
841 |
|
|
}
|
842 |
|
|
|
843 |
|
|
# if !defined(NO_DEBUGGING)
|
844 |
|
|
void GC_print_heap_sects()
|
845 |
|
|
{
|
846 |
|
|
register unsigned i;
|
847 |
|
|
|
848 |
|
|
GC_printf1("Total heap size: %lu\n", (unsigned long) GC_heapsize);
|
849 |
|
|
for (i = 0; i < GC_n_heap_sects; i++) {
|
850 |
|
|
unsigned long start = (unsigned long) GC_heap_sects[i].hs_start;
|
851 |
|
|
unsigned long len = (unsigned long) GC_heap_sects[i].hs_bytes;
|
852 |
|
|
struct hblk *h;
|
853 |
|
|
unsigned nbl = 0;
|
854 |
|
|
|
855 |
|
|
GC_printf3("Section %ld from 0x%lx to 0x%lx ", (unsigned long)i,
|
856 |
|
|
start, (unsigned long)(start + len));
|
857 |
|
|
for (h = (struct hblk *)start; h < (struct hblk *)(start + len); h++) {
|
858 |
|
|
if (GC_is_black_listed(h, HBLKSIZE)) nbl++;
|
859 |
|
|
}
|
860 |
|
|
GC_printf2("%lu/%lu blacklisted\n", (unsigned long)nbl,
|
861 |
|
|
(unsigned long)(len/HBLKSIZE));
|
862 |
|
|
}
|
863 |
|
|
}
|
864 |
|
|
# endif
|
865 |
|
|
|
866 |
|
|
GC_PTR GC_least_plausible_heap_addr = (GC_PTR)ONES;
|
867 |
|
|
GC_PTR GC_greatest_plausible_heap_addr = 0;
|
868 |
|
|
|
869 |
|
|
ptr_t GC_max(x,y)
|
870 |
|
|
ptr_t x, y;
|
871 |
|
|
{
|
872 |
|
|
return(x > y? x : y);
|
873 |
|
|
}
|
874 |
|
|
|
875 |
|
|
ptr_t GC_min(x,y)
|
876 |
|
|
ptr_t x, y;
|
877 |
|
|
{
|
878 |
|
|
return(x < y? x : y);
|
879 |
|
|
}
|
880 |
|
|
|
881 |
|
|
# if defined(__STDC__) || defined(__cplusplus)
|
882 |
|
|
void GC_set_max_heap_size(GC_word n)
|
883 |
|
|
# else
|
884 |
|
|
void GC_set_max_heap_size(n)
|
885 |
|
|
GC_word n;
|
886 |
|
|
# endif
|
887 |
|
|
{
|
888 |
|
|
GC_max_heapsize = n;
|
889 |
|
|
}
|
890 |
|
|
|
891 |
|
|
GC_word GC_max_retries = 0;
|
892 |
|
|
|
893 |
|
|
/*
|
894 |
|
|
* this explicitly increases the size of the heap. It is used
|
895 |
|
|
* internally, but may also be invoked from GC_expand_hp by the user.
|
896 |
|
|
* The argument is in units of HBLKSIZE.
|
897 |
|
|
* Tiny values of n are rounded up.
|
898 |
|
|
* Returns FALSE on failure.
|
899 |
|
|
*/
|
900 |
|
|
GC_bool GC_expand_hp_inner(n)
|
901 |
|
|
word n;
|
902 |
|
|
{
|
903 |
|
|
word bytes;
|
904 |
|
|
struct hblk * space;
|
905 |
|
|
word expansion_slop; /* Number of bytes by which we expect the */
|
906 |
|
|
/* heap to expand soon. */
|
907 |
|
|
|
908 |
|
|
if (n < MINHINCR) n = MINHINCR;
|
909 |
|
|
bytes = n * HBLKSIZE;
|
910 |
|
|
/* Make sure bytes is a multiple of GC_page_size */
|
911 |
|
|
{
|
912 |
|
|
word mask = GC_page_size - 1;
|
913 |
|
|
bytes += mask;
|
914 |
|
|
bytes &= ~mask;
|
915 |
|
|
}
|
916 |
|
|
|
917 |
|
|
if (GC_max_heapsize != 0 && GC_heapsize + bytes > GC_max_heapsize) {
|
918 |
|
|
/* Exceeded self-imposed limit */
|
919 |
|
|
return(FALSE);
|
920 |
|
|
}
|
921 |
|
|
space = GET_MEM(bytes);
|
922 |
|
|
if( space == 0 ) {
|
923 |
|
|
# ifdef CONDPRINT
|
924 |
|
|
if (GC_print_stats) {
|
925 |
|
|
GC_printf1("Failed to expand heap by %ld bytes\n",
|
926 |
|
|
(unsigned long)bytes);
|
927 |
|
|
}
|
928 |
|
|
# endif
|
929 |
|
|
return(FALSE);
|
930 |
|
|
}
|
931 |
|
|
# ifdef CONDPRINT
|
932 |
|
|
if (GC_print_stats) {
|
933 |
|
|
GC_printf2("Increasing heap size by %lu after %lu allocated bytes\n",
|
934 |
|
|
(unsigned long)bytes,
|
935 |
|
|
(unsigned long)WORDS_TO_BYTES(GC_words_allocd));
|
936 |
|
|
# ifdef UNDEFINED
|
937 |
|
|
GC_printf1("Root size = %lu\n", GC_root_size);
|
938 |
|
|
GC_print_block_list(); GC_print_hblkfreelist();
|
939 |
|
|
GC_printf0("\n");
|
940 |
|
|
# endif
|
941 |
|
|
}
|
942 |
|
|
# endif
|
943 |
|
|
expansion_slop = WORDS_TO_BYTES(min_words_allocd()) + 4*MAXHINCR*HBLKSIZE;
|
944 |
|
|
if (GC_last_heap_addr == 0 && !((word)space & SIGNB)
|
945 |
|
|
|| (GC_last_heap_addr != 0 && GC_last_heap_addr < (ptr_t)space)) {
|
946 |
|
|
/* Assume the heap is growing up */
|
947 |
|
|
GC_greatest_plausible_heap_addr =
|
948 |
|
|
(GC_PTR)GC_max((ptr_t)GC_greatest_plausible_heap_addr,
|
949 |
|
|
(ptr_t)space + bytes + expansion_slop);
|
950 |
|
|
} else {
|
951 |
|
|
/* Heap is growing down */
|
952 |
|
|
GC_least_plausible_heap_addr =
|
953 |
|
|
(GC_PTR)GC_min((ptr_t)GC_least_plausible_heap_addr,
|
954 |
|
|
(ptr_t)space - expansion_slop);
|
955 |
|
|
}
|
956 |
|
|
# if defined(LARGE_CONFIG)
|
957 |
|
|
if (((ptr_t)GC_greatest_plausible_heap_addr <= (ptr_t)space + bytes
|
958 |
|
|
|| (ptr_t)GC_least_plausible_heap_addr >= (ptr_t)space)
|
959 |
|
|
&& GC_heapsize > 0) {
|
960 |
|
|
/* GC_add_to_heap will fix this, but ... */
|
961 |
|
|
WARN("Too close to address space limit: blacklisting ineffective\n", 0);
|
962 |
|
|
}
|
963 |
|
|
# endif
|
964 |
|
|
GC_prev_heap_addr = GC_last_heap_addr;
|
965 |
|
|
GC_last_heap_addr = (ptr_t)space;
|
966 |
|
|
GC_add_to_heap(space, bytes);
|
967 |
|
|
/* Force GC before we are likely to allocate past expansion_slop */
|
968 |
|
|
GC_collect_at_heapsize =
|
969 |
|
|
GC_heapsize + expansion_slop - 2*MAXHINCR*HBLKSIZE;
|
970 |
|
|
# if defined(LARGE_CONFIG)
|
971 |
|
|
if (GC_collect_at_heapsize < GC_heapsize /* wrapped */)
|
972 |
|
|
GC_collect_at_heapsize = (word)(-1);
|
973 |
|
|
# endif
|
974 |
|
|
return(TRUE);
|
975 |
|
|
}
|
976 |
|
|
|
977 |
|
|
/* Really returns a bool, but it's externally visible, so that's clumsy. */
|
978 |
|
|
/* Arguments is in bytes. */
|
979 |
|
|
# if defined(__STDC__) || defined(__cplusplus)
|
980 |
|
|
int GC_expand_hp(size_t bytes)
|
981 |
|
|
# else
|
982 |
|
|
int GC_expand_hp(bytes)
|
983 |
|
|
size_t bytes;
|
984 |
|
|
# endif
|
985 |
|
|
{
|
986 |
|
|
int result;
|
987 |
|
|
DCL_LOCK_STATE;
|
988 |
|
|
|
989 |
|
|
DISABLE_SIGNALS();
|
990 |
|
|
LOCK();
|
991 |
|
|
if (!GC_is_initialized) GC_init_inner();
|
992 |
|
|
result = (int)GC_expand_hp_inner(divHBLKSZ((word)bytes));
|
993 |
|
|
if (result) GC_requested_heapsize += bytes;
|
994 |
|
|
UNLOCK();
|
995 |
|
|
ENABLE_SIGNALS();
|
996 |
|
|
return(result);
|
997 |
|
|
}
|
998 |
|
|
|
999 |
|
|
unsigned GC_fail_count = 0;
|
1000 |
|
|
/* How many consecutive GC/expansion failures? */
|
1001 |
|
|
/* Reset by GC_allochblk. */
|
1002 |
|
|
|
1003 |
|
|
GC_bool GC_collect_or_expand(needed_blocks, ignore_off_page)
|
1004 |
|
|
word needed_blocks;
|
1005 |
|
|
GC_bool ignore_off_page;
|
1006 |
|
|
{
|
1007 |
|
|
if (!GC_incremental && !GC_dont_gc &&
|
1008 |
|
|
((GC_dont_expand && GC_words_allocd > 0) || GC_should_collect())) {
|
1009 |
|
|
GC_gcollect_inner();
|
1010 |
|
|
} else {
|
1011 |
|
|
word blocks_to_get = GC_heapsize/(HBLKSIZE*GC_free_space_divisor)
|
1012 |
|
|
+ needed_blocks;
|
1013 |
|
|
|
1014 |
|
|
if (blocks_to_get > MAXHINCR) {
|
1015 |
|
|
word slop;
|
1016 |
|
|
|
1017 |
|
|
/* Get the minimum required to make it likely that we */
|
1018 |
|
|
/* can satisfy the current request in the presence of black- */
|
1019 |
|
|
/* listing. This will probably be more than MAXHINCR. */
|
1020 |
|
|
if (ignore_off_page) {
|
1021 |
|
|
slop = 4;
|
1022 |
|
|
} else {
|
1023 |
|
|
slop = 2*divHBLKSZ(BL_LIMIT);
|
1024 |
|
|
if (slop > needed_blocks) slop = needed_blocks;
|
1025 |
|
|
}
|
1026 |
|
|
if (needed_blocks + slop > MAXHINCR) {
|
1027 |
|
|
blocks_to_get = needed_blocks + slop;
|
1028 |
|
|
} else {
|
1029 |
|
|
blocks_to_get = MAXHINCR;
|
1030 |
|
|
}
|
1031 |
|
|
}
|
1032 |
|
|
if (!GC_expand_hp_inner(blocks_to_get)
|
1033 |
|
|
&& !GC_expand_hp_inner(needed_blocks)) {
|
1034 |
|
|
if (GC_fail_count++ < GC_max_retries) {
|
1035 |
|
|
WARN("Out of Memory! Trying to continue ...\n", 0);
|
1036 |
|
|
GC_gcollect_inner();
|
1037 |
|
|
} else {
|
1038 |
|
|
# if !defined(AMIGA) || !defined(GC_AMIGA_FASTALLOC)
|
1039 |
|
|
WARN("Out of Memory! Returning NIL!\n", 0);
|
1040 |
|
|
# endif
|
1041 |
|
|
return(FALSE);
|
1042 |
|
|
}
|
1043 |
|
|
} else {
|
1044 |
|
|
# ifdef CONDPRINT
|
1045 |
|
|
if (GC_fail_count && GC_print_stats) {
|
1046 |
|
|
GC_printf0("Memory available again ...\n");
|
1047 |
|
|
}
|
1048 |
|
|
# endif
|
1049 |
|
|
}
|
1050 |
|
|
}
|
1051 |
|
|
return(TRUE);
|
1052 |
|
|
}
|
1053 |
|
|
|
1054 |
|
|
/*
|
1055 |
|
|
* Make sure the object free list for sz is not empty.
|
1056 |
|
|
* Return a pointer to the first object on the free list.
|
1057 |
|
|
* The object MUST BE REMOVED FROM THE FREE LIST BY THE CALLER.
|
1058 |
|
|
* Assumes we hold the allocator lock and signals are disabled.
|
1059 |
|
|
*
|
1060 |
|
|
*/
|
1061 |
|
|
ptr_t GC_allocobj(sz, kind)
|
1062 |
|
|
word sz;
|
1063 |
|
|
int kind;
|
1064 |
|
|
{
|
1065 |
|
|
ptr_t * flh = &(GC_obj_kinds[kind].ok_freelist[sz]);
|
1066 |
|
|
GC_bool tried_minor = FALSE;
|
1067 |
|
|
|
1068 |
|
|
if (sz == 0) return(0);
|
1069 |
|
|
|
1070 |
|
|
while (*flh == 0) {
|
1071 |
|
|
ENTER_GC();
|
1072 |
|
|
/* Do our share of marking work */
|
1073 |
|
|
if(TRUE_INCREMENTAL) GC_collect_a_little_inner(1);
|
1074 |
|
|
/* Sweep blocks for objects of this size */
|
1075 |
|
|
GC_continue_reclaim(sz, kind);
|
1076 |
|
|
EXIT_GC();
|
1077 |
|
|
if (*flh == 0) {
|
1078 |
|
|
GC_new_hblk(sz, kind);
|
1079 |
|
|
}
|
1080 |
|
|
if (*flh == 0) {
|
1081 |
|
|
ENTER_GC();
|
1082 |
|
|
if (GC_incremental && GC_time_limit == GC_TIME_UNLIMITED
|
1083 |
|
|
&& ! tried_minor ) {
|
1084 |
|
|
GC_collect_a_little_inner(1);
|
1085 |
|
|
tried_minor = TRUE;
|
1086 |
|
|
} else {
|
1087 |
|
|
if (!GC_collect_or_expand((word)1,FALSE)) {
|
1088 |
|
|
EXIT_GC();
|
1089 |
|
|
return(0);
|
1090 |
|
|
}
|
1091 |
|
|
}
|
1092 |
|
|
EXIT_GC();
|
1093 |
|
|
}
|
1094 |
|
|
}
|
1095 |
|
|
/* Successful allocation; reset failure count. */
|
1096 |
|
|
GC_fail_count = 0;
|
1097 |
|
|
|
1098 |
|
|
return(*flh);
|
1099 |
|
|
}
|