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ivmai / bdwgc / 1482

10 Apr 2023 08:56PM UTC coverage: 76.447% (-0.3%) from 76.73%
1482

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ivmai
Eliminate duplicate use of GC_obj_kinds[k] in GC_generic_malloc_many
(refactoring)

* mallocx.c (GC_generic_malloc_many): Move assignment of ok local
variable down to the place just before use; use ok instead of getting
value of GC_obj_kinds[k] once more.

3 of 3 new or added lines in 1 file covered. (100.0%)

7741 of 10126 relevant lines covered (76.45%)

8588328.29 hits per line

Source File
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77.51
/alloc.c
1
/*
2
 * Copyright (c) 1988-1989 Hans-J. Boehm, Alan J. Demers
3
 * Copyright (c) 1991-1996 by Xerox Corporation.  All rights reserved.
4
 * Copyright (c) 1996-1999 by Silicon Graphics.  All rights reserved.
5
 * Copyright (c) 1999-2011 Hewlett-Packard Development Company, L.P.
6
 * Copyright (c) 2008-2022 Ivan Maidanski
7
 *
8
 * THIS MATERIAL IS PROVIDED AS IS, WITH ABSOLUTELY NO WARRANTY EXPRESSED
9
 * OR IMPLIED.  ANY USE IS AT YOUR OWN RISK.
10
 *
11
 * Permission is hereby granted to use or copy this program
12
 * for any purpose, provided the above notices are retained on all copies.
13
 * Permission to modify the code and to distribute modified code is granted,
14
 * provided the above notices are retained, and a notice that the code was
15
 * modified is included with the above copyright notice.
16
 *
17
 */
18

19
#include "private/gc_priv.h"
20

21
#if !defined(MACOS) && !defined(MSWINCE)
22
# include <signal.h>
23
# if !defined(GC_NO_TYPES) && !defined(SN_TARGET_PSP2) \
24
     && !defined(__CC_ARM)
25
#   include <sys/types.h>
26
# endif
27
#endif
28

29
/*
30
 * Separate free lists are maintained for different sized objects
31
 * up to MAXOBJBYTES.
32
 * The call GC_allocobj(i,k) ensures that the freelist for
33
 * kind k objects of size i points to a non-empty
34
 * free list. It returns a pointer to the first entry on the free list.
35
 * In a single-threaded world, GC_allocobj may be called to allocate
36
 * an object of small size lb (and NORMAL kind) as follows
37
 * (GC_generic_malloc_inner is a wrapper over GC_allocobj which also
38
 * fills in GC_size_map if needed):
39
 *
40
 *   lg = GC_size_map[lb];
41
 *   op = GC_objfreelist[lg];
42
 *   if (NULL == op) {
43
 *     op = GC_generic_malloc_inner(lb, NORMAL, 0);
44
 *   } else {
45
 *     GC_objfreelist[lg] = obj_link(op);
46
 *     GC_bytes_allocd += GRANULES_TO_BYTES((word)lg);
47
 *   }
48
 *
49
 * Note that this is very fast if the free list is non-empty; it should
50
 * only involve the execution of 4 or 5 simple instructions.
51
 * All composite objects on freelists are cleared, except for
52
 * their first word.
53
 */
54

55
/*
56
 * The allocator uses GC_allochblk to allocate large chunks of objects.
57
 * These chunks all start on addresses which are multiples of
58
 * HBLKSZ.   Each allocated chunk has an associated header,
59
 * which can be located quickly based on the address of the chunk.
60
 * (See headers.c for details.)
61
 * This makes it possible to check quickly whether an
62
 * arbitrary address corresponds to an object administered by the
63
 * allocator.
64
 */
65

66
word GC_non_gc_bytes = 0;  /* Number of bytes not intended to be collected */
67

68
word GC_gc_no = 0;
69

70
#ifndef NO_CLOCK
71
  static unsigned long full_gc_total_time = 0; /* in ms, may wrap */
72
  static unsigned full_gc_total_ns_frac = 0; /* fraction of 1 ms */
73
  static GC_bool measure_performance = FALSE;
74
                /* Do performance measurements if set to true (e.g.,    */
75
                /* accumulation of the total time of full collections). */
76

77
  GC_API void GC_CALL GC_start_performance_measurement(void)
2✔
78
  {
79
    measure_performance = TRUE;
2✔
80
  }
2✔
81

82
  GC_API unsigned long GC_CALL GC_get_full_gc_total_time(void)
2✔
83
  {
84
    return full_gc_total_time;
2✔
85
  }
86
#endif /* !NO_CLOCK */
87

88
#ifndef GC_DISABLE_INCREMENTAL
89
  GC_INNER GC_bool GC_incremental = FALSE; /* By default, stop the world. */
90
  STATIC GC_bool GC_should_start_incremental_collection = FALSE;
91
#endif
92

93
GC_API int GC_CALL GC_is_incremental_mode(void)
16✔
94
{
95
  return (int)GC_incremental;
16✔
96
}
97

98
#ifdef THREADS
99
  int GC_parallel = FALSE;      /* By default, parallel GC is off.      */
100
#endif
101

102
#if defined(GC_FULL_FREQ) && !defined(CPPCHECK)
103
  int GC_full_freq = GC_FULL_FREQ;
104
#else
105
  int GC_full_freq = 19;   /* Every 20th collection is a full   */
106
                           /* collection, whether we need it    */
107
                           /* or not.                           */
108
#endif
109

110
STATIC GC_bool GC_need_full_gc = FALSE;
111
                           /* Need full GC due to heap growth.  */
112

113
#ifdef THREAD_LOCAL_ALLOC
114
  GC_INNER GC_bool GC_world_stopped = FALSE;
115
#endif
116

117
STATIC GC_bool GC_disable_automatic_collection = FALSE;
118

119
GC_API void GC_CALL GC_set_disable_automatic_collection(int value)
2✔
120
{
121
  LOCK();
2✔
122
  GC_disable_automatic_collection = (GC_bool)value;
2✔
123
  UNLOCK();
2✔
124
}
2✔
125

126
GC_API int GC_CALL GC_get_disable_automatic_collection(void)
2✔
127
{
128
  int value;
129

130
  LOCK();
2✔
131
  value = (int)GC_disable_automatic_collection;
2✔
132
  UNLOCK();
2✔
133
  return value;
2✔
134
}
135

136
STATIC word GC_used_heap_size_after_full = 0;
137

138
/* Version macros are now defined in gc_version.h, which is included by */
139
/* gc.h, which is included by gc_priv.h.                                */
140
#ifndef GC_NO_VERSION_VAR
141
  EXTERN_C_BEGIN
142
  extern const unsigned GC_version;
143
  EXTERN_C_END
144
  const unsigned GC_version = ((GC_VERSION_MAJOR << 16) |
145
                        (GC_VERSION_MINOR << 8) | GC_VERSION_MICRO);
146
#endif
147

148
GC_API unsigned GC_CALL GC_get_version(void)
2✔
149
{
150
  return (GC_VERSION_MAJOR << 16) | (GC_VERSION_MINOR << 8) |
2✔
151
          GC_VERSION_MICRO;
152
}
153

154
/* some more variables */
155

156
#ifdef GC_DONT_EXPAND
157
  int GC_dont_expand = TRUE;
158
#else
159
  int GC_dont_expand = FALSE;
160
#endif
161

162
#if defined(GC_FREE_SPACE_DIVISOR) && !defined(CPPCHECK)
163
  word GC_free_space_divisor = GC_FREE_SPACE_DIVISOR; /* must be > 0 */
164
#else
165
  word GC_free_space_divisor = 3;
166
#endif
167

168
GC_INNER int GC_CALLBACK GC_never_stop_func(void)
7,164,259✔
169
{
170
  return FALSE;
7,164,259✔
171
}
172

173
#if defined(GC_TIME_LIMIT) && !defined(CPPCHECK)
174
  unsigned long GC_time_limit = GC_TIME_LIMIT;
175
                           /* We try to keep pause times from exceeding  */
176
                           /* this by much. In milliseconds.             */
177
#elif defined(PARALLEL_MARK)
178
  unsigned long GC_time_limit = GC_TIME_UNLIMITED;
179
                        /* The parallel marker cannot be interrupted for */
180
                        /* now, so the time limit is absent by default.  */
181
#else
182
  unsigned long GC_time_limit = 15;
183
#endif
184

185
#ifndef NO_CLOCK
186
  STATIC unsigned long GC_time_lim_nsec = 0;
187
                        /* The nanoseconds add-on to GC_time_limit      */
188
                        /* value.  Not updated by GC_set_time_limit().  */
189
                        /* Ignored if the value of GC_time_limit is     */
190
                        /* GC_TIME_UNLIMITED.                           */
191

192
# define TV_NSEC_LIMIT (1000UL * 1000) /* amount of nanoseconds in 1 ms */
193

194
  GC_API void GC_CALL GC_set_time_limit_tv(struct GC_timeval_s tv)
2✔
195
  {
196
    GC_ASSERT(tv.tv_ms <= GC_TIME_UNLIMITED);
2✔
197
    GC_ASSERT(tv.tv_nsec < TV_NSEC_LIMIT);
2✔
198
    GC_time_limit = tv.tv_ms;
2✔
199
    GC_time_lim_nsec = tv.tv_nsec;
2✔
200
  }
2✔
201

202
  GC_API struct GC_timeval_s GC_CALL GC_get_time_limit_tv(void)
2✔
203
  {
204
    struct GC_timeval_s tv;
205

206
    tv.tv_ms = GC_time_limit;
2✔
207
    tv.tv_nsec = GC_time_lim_nsec;
2✔
208
    return tv;
2✔
209
  }
210

211
  STATIC CLOCK_TYPE GC_start_time = CLOCK_TYPE_INITIALIZER;
212
                                /* Time at which we stopped world.      */
213
                                /* used only in GC_timeout_stop_func.   */
214
#endif /* !NO_CLOCK */
215

216
STATIC int GC_n_attempts = 0;   /* Number of attempts at finishing      */
217
                                /* collection within GC_time_limit.     */
218

219
STATIC GC_stop_func GC_default_stop_func = GC_never_stop_func;
220
                                /* Accessed holding the allocator lock. */
221

222
GC_API void GC_CALL GC_set_stop_func(GC_stop_func stop_func)
2✔
223
{
224
  GC_ASSERT(NONNULL_ARG_NOT_NULL(stop_func));
2✔
225
  LOCK();
2✔
226
  GC_default_stop_func = stop_func;
2✔
227
  UNLOCK();
2✔
228
}
2✔
229

230
GC_API GC_stop_func GC_CALL GC_get_stop_func(void)
2✔
231
{
232
  GC_stop_func stop_func;
233

234
  LOCK();
2✔
235
  stop_func = GC_default_stop_func;
2✔
236
  UNLOCK();
2✔
237
  return stop_func;
2✔
238
}
239

240
#if defined(GC_DISABLE_INCREMENTAL) || defined(NO_CLOCK)
241
# define GC_timeout_stop_func GC_default_stop_func
242
#else
243
  STATIC int GC_CALLBACK GC_timeout_stop_func(void)
6,325,121✔
244
  {
245
    CLOCK_TYPE current_time;
246
    static unsigned count = 0;
247
    unsigned long time_diff, nsec_diff;
248

249
    if (GC_default_stop_func())
6,325,121✔
250
      return TRUE;
6,325,121✔
251

252
    if (GC_time_limit == GC_TIME_UNLIMITED || (count++ & 3) != 0)
6,325,121✔
253
      return FALSE;
6,325,121✔
254

255
    GET_TIME(current_time);
×
256
    time_diff = MS_TIME_DIFF(current_time,GC_start_time);
×
257
    nsec_diff = NS_FRAC_TIME_DIFF(current_time, GC_start_time);
×
258
#   if defined(CPPCHECK)
259
      GC_noop1((word)&nsec_diff);
260
#   endif
261
    if (time_diff >= GC_time_limit
×
262
        && (time_diff > GC_time_limit || nsec_diff >= GC_time_lim_nsec)) {
×
263
      GC_COND_LOG_PRINTF("Abandoning stopped marking after %lu ms %lu ns"
×
264
                         " (attempt %d)\n",
265
                         time_diff, nsec_diff, GC_n_attempts);
266
      return TRUE;
×
267
    }
268

269
    return FALSE;
×
270
  }
271
#endif /* !GC_DISABLE_INCREMENTAL */
272

273
#ifdef THREADS
274
  GC_INNER word GC_total_stacksize = 0; /* updated on every push_all_stacks */
275
#endif
276

277
static size_t min_bytes_allocd_minimum = 1;
278
                        /* The lowest value returned by min_bytes_allocd(). */
279

280
GC_API void GC_CALL GC_set_min_bytes_allocd(size_t value)
2✔
281
{
282
    GC_ASSERT(value > 0);
2✔
283
    min_bytes_allocd_minimum = value;
2✔
284
}
2✔
285

286
GC_API size_t GC_CALL GC_get_min_bytes_allocd(void)
2✔
287
{
288
    return min_bytes_allocd_minimum;
2✔
289
}
290

291
/* Return the minimum number of bytes that must be allocated between    */
292
/* collections to amortize the collection cost.  Should be non-zero.    */
293
static word min_bytes_allocd(void)
43,624✔
294
{
295
    word result;
296
    word stack_size;
297
    word total_root_size;       /* includes double stack size,  */
298
                                /* since the stack is expensive */
299
                                /* to scan.                     */
300
    word scan_size;             /* Estimate of memory to be scanned     */
301
                                /* during normal GC.                    */
302

303
#   ifdef THREADS
304
      if (GC_need_to_lock) {
43,624✔
305
        /* We are multi-threaded... */
306
        stack_size = GC_total_stacksize;
19,384✔
307
        /* For now, we just use the value computed during the latest GC. */
308
#       ifdef DEBUG_THREADS
309
          GC_log_printf("Total stacks size: %lu\n",
310
                        (unsigned long)stack_size);
311
#       endif
312
      } else
313
#   endif
314
    /* else*/ {
315
#     ifdef STACK_NOT_SCANNED
316
        stack_size = 0;
317
#     elif defined(STACK_GROWS_UP)
318
        stack_size = GC_approx_sp() - GC_stackbottom;
319
#     else
320
        stack_size = GC_stackbottom - GC_approx_sp();
24,240✔
321
#     endif
322
    }
323

324
    total_root_size = 2 * stack_size + GC_root_size;
43,624✔
325
    scan_size = 2 * GC_composite_in_use + GC_atomic_in_use / 4
43,624✔
326
                + total_root_size;
327
    result = scan_size / GC_free_space_divisor;
43,624✔
328
    if (GC_incremental) {
43,624✔
329
      result /= 2;
35,155✔
330
    }
331
    return result > min_bytes_allocd_minimum
43,624✔
332
            ? result : min_bytes_allocd_minimum;
43,624✔
333
}
334

335
STATIC word GC_non_gc_bytes_at_gc = 0;
336
                /* Number of explicitly managed bytes of storage        */
337
                /* at last collection.                                  */
338

339
/* Return the number of bytes allocated, adjusted for explicit storage  */
340
/* management, etc..  This number is used in deciding when to trigger   */
341
/* collections.                                                         */
342
STATIC word GC_adj_bytes_allocd(void)
9,683,839✔
343
{
344
    signed_word result;
345
    signed_word expl_managed = (signed_word)GC_non_gc_bytes
19,367,678✔
346
                                - (signed_word)GC_non_gc_bytes_at_gc;
9,683,839✔
347

348
    /* Don't count what was explicitly freed, or newly allocated for    */
349
    /* explicit management.  Note that deallocating an explicitly       */
350
    /* managed object should not alter result, assuming the client      */
351
    /* is playing by the rules.                                         */
352
    result = (signed_word)GC_bytes_allocd
19,367,678✔
353
             + (signed_word)GC_bytes_dropped
9,683,839✔
354
             - (signed_word)GC_bytes_freed
9,683,839✔
355
             + (signed_word)GC_finalizer_bytes_freed
9,683,839✔
356
             - expl_managed;
357
    if (result > (signed_word)GC_bytes_allocd) {
9,683,839✔
358
        result = GC_bytes_allocd;
1,124,252✔
359
        /* probably client bug or unfortunate scheduling */
360
    }
361
    result += GC_bytes_finalized;
9,683,839✔
362
        /* We count objects enqueued for finalization as though they    */
363
        /* had been reallocated this round. Finalization is user        */
364
        /* visible progress.  And if we don't count this, we have       */
365
        /* stability problems for programs that finalize all objects.   */
366
    if (result < (signed_word)(GC_bytes_allocd >> 3)) {
9,683,839✔
367
        /* Always count at least 1/8 of the allocations.  We don't want */
368
        /* to collect too infrequently, since that would inhibit        */
369
        /* coalescing of free storage blocks.                           */
370
        /* This also makes us partially robust against client bugs.     */
371
        result = (signed_word)(GC_bytes_allocd >> 3);
38,477✔
372
    }
373
    return (word)result;
9,683,839✔
374
}
375

376

377
/* Clear up a few frames worth of garbage left at the top of the stack. */
378
/* This is used to prevent us from accidentally treating garbage left   */
379
/* on the stack by other parts of the collector as roots.  This         */
380
/* differs from the code in misc.c, which actually tries to keep the    */
381
/* stack clear of long-lived, client-generated garbage.                 */
382
STATIC void GC_clear_a_few_frames(void)
27,999✔
383
{
384
#   ifndef CLEAR_NWORDS
385
#     define CLEAR_NWORDS 64
386
#   endif
387
    volatile word frames[CLEAR_NWORDS];
388
    BZERO((word *)frames, CLEAR_NWORDS * sizeof(word));
27,999✔
389
}
27,999✔
390

391
GC_API void GC_CALL GC_start_incremental_collection(void)
×
392
{
393
# ifndef GC_DISABLE_INCREMENTAL
394
    if (!GC_incremental) return;
×
395

396
    LOCK();
×
397
    GC_should_start_incremental_collection = TRUE;
×
398
    ENTER_GC();
×
399
    GC_collect_a_little_inner(1);
×
400
    EXIT_GC();
×
401
    UNLOCK();
×
402
# endif
403
}
404

405
/* Have we allocated enough to amortize a collection? */
406
GC_INNER GC_bool GC_should_collect(void)
9,689,564✔
407
{
408
    static word last_min_bytes_allocd;
409
    static word last_gc_no;
410

411
    GC_ASSERT(I_HOLD_LOCK());
9,689,564✔
412
    if (last_gc_no != GC_gc_no) {
9,689,564✔
413
      last_min_bytes_allocd = min_bytes_allocd();
27,509✔
414
      last_gc_no = GC_gc_no;
27,509✔
415
    }
416
# ifndef GC_DISABLE_INCREMENTAL
417
    if (GC_should_start_incremental_collection) {
9,689,564✔
418
      GC_should_start_incremental_collection = FALSE;
×
419
      return TRUE;
×
420
    }
421
# endif
422
    if (GC_disable_automatic_collection) return FALSE;
9,689,564✔
423

424
    if (GC_last_heap_growth_gc_no == GC_gc_no)
9,689,564✔
425
      return TRUE; /* avoid expanding past limits used by blacklisting  */
5,725✔
426

427
    return GC_adj_bytes_allocd() >= last_min_bytes_allocd;
9,683,839✔
428
}
429

430
/* STATIC */ GC_start_callback_proc GC_start_call_back = 0;
431
                        /* Called at start of full collections.         */
432
                        /* Not called if 0.  Called with the allocation */
433
                        /* lock held.  Not used by GC itself.           */
434

435
GC_API void GC_CALL GC_set_start_callback(GC_start_callback_proc fn)
2✔
436
{
437
    LOCK();
2✔
438
    GC_start_call_back = fn;
2✔
439
    UNLOCK();
2✔
440
}
2✔
441

442
GC_API GC_start_callback_proc GC_CALL GC_get_start_callback(void)
2✔
443
{
444
    GC_start_callback_proc fn;
445

446
    LOCK();
2✔
447
    fn = GC_start_call_back;
2✔
448
    UNLOCK();
2✔
449
    return fn;
2✔
450
}
451

452
GC_INLINE void GC_notify_full_gc(void)
12,301✔
453
{
454
    if (GC_start_call_back != 0) {
12,301✔
455
        (*GC_start_call_back)();
×
456
    }
457
}
12,301✔
458

459
STATIC GC_bool GC_is_full_gc = FALSE;
460

461
STATIC GC_bool GC_stopped_mark(GC_stop_func stop_func);
462
STATIC void GC_finish_collection(void);
463

464
/* Initiate a garbage collection if appropriate.  Choose judiciously    */
465
/* between partial, full, and stop-world collections.                   */
466
STATIC void GC_maybe_gc(void)
7,894,465✔
467
{
468
  static int n_partial_gcs = 0;
469

470
  GC_ASSERT(I_HOLD_LOCK());
7,894,465✔
471
  ASSERT_CANCEL_DISABLED();
7,894,465✔
472
  if (!GC_should_collect()) return;
7,894,465✔
473

474
  if (!GC_incremental) {
17,378✔
475
    GC_gcollect_inner();
×
476
    return;
×
477
  }
478

479
  GC_ASSERT(!GC_collection_in_progress());
17,378✔
480
# ifdef PARALLEL_MARK
481
    if (GC_parallel)
17,378✔
482
      GC_wait_for_reclaim();
9,336✔
483
# endif
484
  if (GC_need_full_gc || n_partial_gcs >= GC_full_freq) {
17,378✔
485
    GC_COND_LOG_PRINTF(
1,682✔
486
                "***>Full mark for collection #%lu after %lu allocd bytes\n",
487
                (unsigned long)GC_gc_no + 1, (unsigned long)GC_bytes_allocd);
×
488
    GC_promote_black_lists();
1,682✔
489
    (void)GC_reclaim_all((GC_stop_func)0, TRUE);
1,682✔
490
    GC_notify_full_gc();
1,682✔
491
    GC_clear_marks();
1,682✔
492
    n_partial_gcs = 0;
1,682✔
493
    GC_is_full_gc = TRUE;
1,682✔
494
  } else {
495
    n_partial_gcs++;
15,696✔
496
  }
497

498
  /* Try to mark with the world stopped.  If we run out of      */
499
  /* time, this turns into an incremental marking.              */
500
# ifndef NO_CLOCK
501
    if (GC_time_limit != GC_TIME_UNLIMITED) GET_TIME(GC_start_time);
17,378✔
502
# endif
503
  if (GC_stopped_mark(GC_timeout_stop_func)) {
17,378✔
504
#   ifdef SAVE_CALL_CHAIN
505
      GC_save_callers(GC_last_stack);
506
#   endif
507
    GC_finish_collection();
17,385✔
508
  } else if (!GC_is_full_gc) {
×
509
    /* Count this as the first attempt. */
510
    GC_n_attempts++;
×
511
  }
512
}
513

514
STATIC GC_on_collection_event_proc GC_on_collection_event = 0;
515

516
GC_API void GC_CALL GC_set_on_collection_event(GC_on_collection_event_proc fn)
2✔
517
{
518
    /* fn may be 0 (means no event notifier). */
519
    LOCK();
2✔
520
    GC_on_collection_event = fn;
2✔
521
    UNLOCK();
2✔
522
}
2✔
523

524
GC_API GC_on_collection_event_proc GC_CALL GC_get_on_collection_event(void)
2✔
525
{
526
    GC_on_collection_event_proc fn;
527

528
    LOCK();
2✔
529
    fn = GC_on_collection_event;
2✔
530
    UNLOCK();
2✔
531
    return fn;
2✔
532
}
533

534
/* Stop the world garbage collection.  If stop_func is not      */
535
/* GC_never_stop_func then abort if stop_func returns TRUE.     */
536
/* Return TRUE if we successfully completed the collection.     */
537
GC_INNER GC_bool GC_try_to_collect_inner(GC_stop_func stop_func)
10,881✔
538
{
539
#   ifndef NO_CLOCK
540
      CLOCK_TYPE start_time = CLOCK_TYPE_INITIALIZER;
10,881✔
541
      GC_bool start_time_valid;
542
#   endif
543

544
    ASSERT_CANCEL_DISABLED();
10,881✔
545
    GC_ASSERT(I_HOLD_LOCK());
10,881✔
546
    GC_ASSERT(GC_is_initialized);
10,881✔
547
    if (GC_dont_gc || (*stop_func)()) return FALSE;
21,762✔
548
    if (GC_on_collection_event)
10,619✔
549
      GC_on_collection_event(GC_EVENT_START);
×
550
    if (GC_incremental && GC_collection_in_progress()) {
10,619✔
551
      GC_COND_LOG_PRINTF(
×
552
            "GC_try_to_collect_inner: finishing collection in progress\n");
553
      /* Just finish collection already in progress.    */
554
        while(GC_collection_in_progress()) {
×
555
            if ((*stop_func)()) {
×
556
              /* TODO: Notify GC_EVENT_ABANDON */
557
              return FALSE;
×
558
            }
559
            ENTER_GC();
×
560
            GC_collect_a_little_inner(1);
×
561
            EXIT_GC();
×
562
        }
563
    }
564
    GC_notify_full_gc();
10,619✔
565
#   ifndef NO_CLOCK
566
      start_time_valid = FALSE;
10,619✔
567
      if ((GC_print_stats | (int)measure_performance) != 0) {
10,619✔
568
        if (GC_print_stats)
2,048✔
569
          GC_log_printf("Initiating full world-stop collection!\n");
×
570
        start_time_valid = TRUE;
2,048✔
571
        GET_TIME(start_time);
2,048✔
572
      }
573
#   endif
574
    GC_promote_black_lists();
10,619✔
575
    /* Make sure all blocks have been reclaimed, so sweep routines      */
576
    /* don't see cleared mark bits.                                     */
577
    /* If we're guaranteed to finish, then this is unnecessary.         */
578
    /* In the find_leak case, we have to finish to guarantee that       */
579
    /* previously unmarked objects are not reported as leaks.           */
580
#       ifdef PARALLEL_MARK
581
          if (GC_parallel)
10,619✔
582
            GC_wait_for_reclaim();
3,435✔
583
#       endif
584
        if ((GC_find_leak || stop_func != GC_never_stop_func)
10,619✔
585
            && !GC_reclaim_all(stop_func, FALSE)) {
66✔
586
            /* Aborted.  So far everything is still consistent. */
587
            /* TODO: Notify GC_EVENT_ABANDON */
588
            return FALSE;
×
589
        }
590
    GC_invalidate_mark_state();  /* Flush mark stack.   */
10,619✔
591
    GC_clear_marks();
10,619✔
592
#   ifdef SAVE_CALL_CHAIN
593
        GC_save_callers(GC_last_stack);
594
#   endif
595
    GC_is_full_gc = TRUE;
10,619✔
596
    if (!GC_stopped_mark(stop_func)) {
10,619✔
597
      if (!GC_incremental) {
×
598
        /* We're partially done and have no way to complete or use      */
599
        /* current work.  Reestablish invariants as cheaply as          */
600
        /* possible.                                                    */
601
        GC_invalidate_mark_state();
×
602
        GC_unpromote_black_lists();
×
603
      } /* else we claim the world is already still consistent.  We'll  */
604
        /* finish incrementally.                                        */
605
      /* TODO: Notify GC_EVENT_ABANDON */
606
      return FALSE;
×
607
    }
608
    GC_finish_collection();
10,619✔
609
#   ifndef NO_CLOCK
610
      if (start_time_valid) {
10,619✔
611
        CLOCK_TYPE current_time;
612
        unsigned long time_diff, ns_frac_diff;
613

614
        GET_TIME(current_time);
2,048✔
615
        time_diff = MS_TIME_DIFF(current_time, start_time);
2,048✔
616
        ns_frac_diff = NS_FRAC_TIME_DIFF(current_time, start_time);
2,048✔
617
        if (measure_performance) {
2,048✔
618
          full_gc_total_time += time_diff; /* may wrap */
2,048✔
619
          full_gc_total_ns_frac += (unsigned)ns_frac_diff;
2,048✔
620
          if (full_gc_total_ns_frac >= 1000000U) {
2,048✔
621
            /* Overflow of the nanoseconds part. */
622
            full_gc_total_ns_frac -= 1000000U;
1,019✔
623
            full_gc_total_time++;
1,019✔
624
          }
625
        }
626
        if (GC_print_stats)
2,048✔
627
          GC_log_printf("Complete collection took %lu ms %lu ns\n",
×
628
                        time_diff, ns_frac_diff);
629
      }
630
#   endif
631
    if (GC_on_collection_event)
10,619✔
632
      GC_on_collection_event(GC_EVENT_END);
×
633
    return TRUE;
10,619✔
634
}
635

636
/* The number of extra calls to GC_mark_some that we have made. */
637
STATIC int GC_deficit = 0;
638

639
/* The default value of GC_rate.        */
640
#ifndef GC_RATE
641
# define GC_RATE 10
642
#endif
643

644
/* When GC_collect_a_little_inner() performs n units of GC work, a unit */
645
/* is intended to touch roughly GC_rate pages.  (But, every once in     */
646
/* a while, we do more than that.)  This needs to be a fairly large     */
647
/* number with our current incremental GC strategy, since otherwise we  */
648
/* allocate too much during GC, and the cleanup gets expensive.         */
649
STATIC int GC_rate = GC_RATE;
650

651
GC_API void GC_CALL GC_set_rate(int value)
2✔
652
{
653
    GC_ASSERT(value > 0);
2✔
654
    GC_rate = value;
2✔
655
}
2✔
656

657
GC_API int GC_CALL GC_get_rate(void)
2✔
658
{
659
    return GC_rate;
2✔
660
}
661

662
/* The default maximum number of prior attempts at world stop marking.  */
663
#ifndef MAX_PRIOR_ATTEMPTS
664
# define MAX_PRIOR_ATTEMPTS 3
665
#endif
666

667
/* The maximum number of prior attempts at world stop marking.          */
668
/* A value of 1 means that we finish the second time, no matter how     */
669
/* long it takes.  Does not count the initial root scan for a full GC.  */
670
static int max_prior_attempts = MAX_PRIOR_ATTEMPTS;
671

672
GC_API void GC_CALL GC_set_max_prior_attempts(int value)
2✔
673
{
674
    GC_ASSERT(value >= 0);
2✔
675
    max_prior_attempts = value;
2✔
676
}
2✔
677

678
GC_API int GC_CALL GC_get_max_prior_attempts(void)
2✔
679
{
680
    return max_prior_attempts;
2✔
681
}
682

683
GC_INNER void GC_collect_a_little_inner(int n)
9,156,603✔
684
{
685
    IF_CANCEL(int cancel_state;)
686

687
    GC_ASSERT(I_HOLD_LOCK());
9,156,603✔
688
    GC_ASSERT(GC_is_initialized);
9,156,603✔
689
    if (GC_dont_gc) return;
9,156,603✔
690

691
    DISABLE_CANCEL(cancel_state);
7,894,465✔
692
    if (GC_incremental && GC_collection_in_progress()) {
7,894,465✔
693
        int i;
694
        int max_deficit = GC_rate * n;
×
695

696
#       ifdef PARALLEL_MARK
697
            if (GC_time_limit != GC_TIME_UNLIMITED)
×
698
                GC_parallel_mark_disabled = TRUE;
×
699
#       endif
700
        for (i = GC_deficit; i < max_deficit; i++) {
×
701
            if (GC_mark_some(NULL))
×
702
                break;
×
703
        }
704
#       ifdef PARALLEL_MARK
705
            GC_parallel_mark_disabled = FALSE;
×
706
#       endif
707

708
        if (i < max_deficit) {
×
709
            GC_ASSERT(!GC_collection_in_progress());
×
710
            /* Need to follow up with a full collection.        */
711
#           ifdef SAVE_CALL_CHAIN
712
                GC_save_callers(GC_last_stack);
713
#           endif
714
#           ifdef PARALLEL_MARK
715
                if (GC_parallel)
×
716
                    GC_wait_for_reclaim();
×
717
#           endif
718
#           ifndef NO_CLOCK
719
                if (GC_time_limit != GC_TIME_UNLIMITED
×
720
                        && GC_n_attempts < max_prior_attempts)
×
721
                    GET_TIME(GC_start_time);
×
722
#           endif
723
            if (GC_stopped_mark(GC_n_attempts < max_prior_attempts ?
×
724
                                GC_timeout_stop_func : GC_never_stop_func)) {
725
                GC_finish_collection();
×
726
            } else {
727
                GC_n_attempts++;
×
728
            }
729
        }
730
        if (GC_deficit > 0) {
×
731
            GC_deficit -= max_deficit;
×
732
            if (GC_deficit < 0)
×
733
                GC_deficit = 0;
×
734
        }
735
    } else {
736
        GC_maybe_gc();
7,894,465✔
737
    }
738
    RESTORE_CANCEL(cancel_state);
7,894,470✔
739
}
740

741
GC_INNER void (*GC_check_heap)(void) = 0;
742
GC_INNER void (*GC_print_all_smashed)(void) = 0;
743

744
GC_API int GC_CALL GC_collect_a_little(void)
5,487,581✔
745
{
746
    int result;
747

748
    if (!EXPECT(GC_is_initialized, TRUE)) GC_init();
5,487,581✔
749
    LOCK();
5,487,589✔
750
    ENTER_GC();
5,487,595✔
751
    GC_collect_a_little_inner(1);
5,487,595✔
752
    EXIT_GC();
5,487,595✔
753
    result = (int)GC_collection_in_progress();
5,487,595✔
754
    UNLOCK();
5,487,595✔
755
    if (!result && GC_debugging_started) GC_print_all_smashed();
5,487,585✔
756
    return result;
5,487,585✔
757
}
758

759
#ifndef NO_CLOCK
760
  /* Variables for world-stop average delay time statistic computation. */
761
  /* "divisor" is incremented every world-stop and halved when reached  */
762
  /* its maximum (or upon "total_time" overflow).                       */
763
  static unsigned world_stopped_total_time = 0;
764
  static unsigned world_stopped_total_divisor = 0;
765
# ifndef MAX_TOTAL_TIME_DIVISOR
766
    /* We shall not use big values here (so "outdated" delay time       */
767
    /* values would have less impact on "average" delay time value than */
768
    /* newer ones).                                                     */
769
#   define MAX_TOTAL_TIME_DIVISOR 1000
770
# endif
771
#endif /* !NO_CLOCK */
772

773
#ifdef USE_MUNMAP
774
# ifndef MUNMAP_THRESHOLD
775
#   define MUNMAP_THRESHOLD 7
776
# endif
777
  GC_INNER unsigned GC_unmap_threshold = MUNMAP_THRESHOLD;
778

779
# define IF_USE_MUNMAP(x) x
780
# define COMMA_IF_USE_MUNMAP(x) /* comma */, x
781
#else
782
# define IF_USE_MUNMAP(x) /* empty */
783
# define COMMA_IF_USE_MUNMAP(x) /* empty */
784
#endif
785

786
/* We stop the world and mark from all roots.  If stop_func() ever      */
787
/* returns TRUE, we may fail and return FALSE.  Increment GC_gc_no if   */
788
/* we succeed.                                                          */
789
STATIC GC_bool GC_stopped_mark(GC_stop_func stop_func)
27,999✔
790
{
791
    int i;
792
    ptr_t cold_gc_frame = GC_approx_sp();
27,999✔
793
#   ifndef NO_CLOCK
794
      CLOCK_TYPE start_time = CLOCK_TYPE_INITIALIZER;
27,999✔
795
#   endif
796

797
    GC_ASSERT(I_HOLD_LOCK());
27,999✔
798
    GC_ASSERT(GC_is_initialized);
27,999✔
799
#   if !defined(REDIRECT_MALLOC) && defined(USE_WINALLOC)
800
        GC_add_current_malloc_heap();
801
#   endif
802
#   if defined(REGISTER_LIBRARIES_EARLY)
803
        GC_cond_register_dynamic_libraries();
27,999✔
804
#   endif
805

806
#   ifndef NO_CLOCK
807
      if (GC_PRINT_STATS_FLAG)
27,999✔
808
        GET_TIME(start_time);
×
809
#   endif
810

811
#   if !defined(GC_NO_FINALIZATION) && !defined(GC_TOGGLE_REFS_NOT_NEEDED)
812
      GC_process_togglerefs();
27,999✔
813
#   endif
814
#   ifdef THREADS
815
      if (GC_on_collection_event)
27,999✔
816
        GC_on_collection_event(GC_EVENT_PRE_STOP_WORLD);
×
817
#   endif
818
    STOP_WORLD();
27,999✔
819
#   ifdef THREADS
820
      if (GC_on_collection_event)
27,999✔
821
        GC_on_collection_event(GC_EVENT_POST_STOP_WORLD);
×
822
#   endif
823

824
#   ifdef THREAD_LOCAL_ALLOC
825
      GC_world_stopped = TRUE;
27,999✔
826
#   endif
827
        /* Output blank line for convenience here */
828
    GC_COND_LOG_PRINTF(
27,999✔
829
              "\n--> Marking for collection #%lu after %lu allocated bytes\n",
830
              (unsigned long)GC_gc_no + 1, (unsigned long) GC_bytes_allocd);
×
831
#   ifdef MAKE_BACK_GRAPH
832
      if (GC_print_back_height) {
833
        GC_build_back_graph();
834
      }
835
#   endif
836

837
    /* Mark from all roots.  */
838
        if (GC_on_collection_event)
27,999✔
839
          GC_on_collection_event(GC_EVENT_MARK_START);
×
840

841
        /* Minimize junk left in my registers and on the stack */
842
            GC_clear_a_few_frames();
27,999✔
843
            GC_noop6(0,0,0,0,0,0);
27,999✔
844

845
        GC_initiate_gc();
27,999✔
846
#       ifdef PARALLEL_MARK
847
          if (stop_func != GC_never_stop_func)
27,999✔
848
            GC_parallel_mark_disabled = TRUE;
17,380✔
849
#       endif
850
        for (i = 0; !(*stop_func)(); i++) {
7,153,041✔
851
          if (GC_mark_some(cold_gc_frame)) {
7,153,041✔
852
#           ifdef PARALLEL_MARK
853
              if (GC_parallel && GC_parallel_mark_disabled) {
27,999✔
854
                GC_COND_LOG_PRINTF("Stopped marking done after %d iterations"
9,338✔
855
                                   " with disabled parallel marker\n", i);
856
              }
857
#           endif
858
            i = -1;
27,999✔
859
            break;
27,999✔
860
          }
861
        }
862
#       ifdef PARALLEL_MARK
863
          GC_parallel_mark_disabled = FALSE;
27,999✔
864
#       endif
865

866
        if (i >= 0) {
27,999✔
867
          GC_COND_LOG_PRINTF("Abandoned stopped marking after"
×
868
                             " %d iterations\n", i);
869
          GC_deficit = i;       /* Give the mutator a chance.   */
×
870
#         ifdef THREAD_LOCAL_ALLOC
871
            GC_world_stopped = FALSE;
×
872
#         endif
873

874
#         ifdef THREADS
875
            if (GC_on_collection_event)
×
876
              GC_on_collection_event(GC_EVENT_PRE_START_WORLD);
×
877
#         endif
878

879
          START_WORLD();
×
880

881
#         ifdef THREADS
882
            if (GC_on_collection_event)
×
883
              GC_on_collection_event(GC_EVENT_POST_START_WORLD);
×
884
#         endif
885

886
          /* TODO: Notify GC_EVENT_MARK_ABANDON */
887
          return FALSE;
28,004✔
888
        }
889

890
    GC_gc_no++;
27,999✔
891
    /* Check all debugged objects for consistency */
892
    if (GC_debugging_started) {
27,999✔
893
      (*GC_check_heap)();
250✔
894
    }
895
    if (GC_on_collection_event) {
27,999✔
896
      GC_on_collection_event(GC_EVENT_MARK_END);
×
897
#     ifdef THREADS
898
        GC_on_collection_event(GC_EVENT_PRE_START_WORLD);
×
899
#     endif
900
    }
901
#   ifdef THREAD_LOCAL_ALLOC
902
      GC_world_stopped = FALSE;
27,999✔
903
#   endif
904

905
    START_WORLD();
27,999✔
906

907
#   ifdef THREADS
908
      if (GC_on_collection_event)
28,004✔
909
        GC_on_collection_event(GC_EVENT_POST_START_WORLD);
×
910
#   endif
911

912
#   ifndef NO_CLOCK
913
      if (GC_PRINT_STATS_FLAG) {
28,004✔
914
        unsigned long time_diff;
915
        unsigned total_time, divisor;
916
        CLOCK_TYPE current_time;
917

918
        GET_TIME(current_time);
×
919
        time_diff = MS_TIME_DIFF(current_time,start_time);
×
920

921
        /* Compute new world-stop delay total time */
922
        total_time = world_stopped_total_time;
×
923
        divisor = world_stopped_total_divisor;
×
924
        if (total_time > (((unsigned)-1) >> 1)
×
925
            || divisor >= MAX_TOTAL_TIME_DIVISOR) {
×
926
          /* Halve values if overflow occurs */
927
          total_time >>= 1;
×
928
          divisor >>= 1;
×
929
        }
930
        total_time += time_diff < (((unsigned)-1) >> 1) ?
×
931
                        (unsigned)time_diff : ((unsigned)-1) >> 1;
×
932
        /* Update old world_stopped_total_time and its divisor */
933
        world_stopped_total_time = total_time;
×
934
        world_stopped_total_divisor = ++divisor;
×
935

936
        GC_ASSERT(divisor != 0);
×
937
        GC_log_printf("World-stopped marking took %lu ms %lu ns"
×
938
                      " (%u ms in average)\n",
939
                      time_diff, NS_FRAC_TIME_DIFF(current_time, start_time),
×
940
                      total_time / divisor);
941
      }
942
#   endif
943
    return TRUE;
28,004✔
944
}
945

946
/* Set all mark bits for the free list whose first entry is q   */
947
GC_INNER void GC_set_fl_marks(ptr_t q)
1,244,926✔
948
{
949
    if (q /* != NULL */) { /* CPPCHECK */
1,244,926✔
950
      struct hblk *h = HBLKPTR(q);
1,244,926✔
951
      struct hblk *last_h = h;
1,244,926✔
952
      hdr *hhdr = HDR(h);
1,244,926✔
953
      IF_PER_OBJ(word sz = hhdr->hb_sz;)
954

955
      for (;;) {
956
        word bit_no = MARK_BIT_NO((ptr_t)q - (ptr_t)h, sz);
35,622,034✔
957

958
        if (!mark_bit_from_hdr(hhdr, bit_no)) {
35,622,034✔
959
          set_mark_bit_from_hdr(hhdr, bit_no);
16,590,667✔
960
          ++hhdr -> hb_n_marks;
16,590,667✔
961
        }
962

963
        q = (ptr_t)obj_link(q);
35,622,034✔
964
        if (q == NULL)
35,622,034✔
965
          break;
1,244,926✔
966

967
        h = HBLKPTR(q);
34,377,108✔
968
        if (h != last_h) {
34,377,108✔
969
          last_h = h;
94,277✔
970
          hhdr = HDR(h);
94,277✔
971
          IF_PER_OBJ(sz = hhdr->hb_sz;)
972
        }
973
      }
34,377,108✔
974
    }
975
}
1,244,926✔
976

977
#if defined(GC_ASSERTIONS) && defined(THREAD_LOCAL_ALLOC)
978
  /* Check that all mark bits for the free list whose first entry is    */
979
  /* (*pfreelist) are set.  Check skipped if points to a special value. */
980
  void GC_check_fl_marks(void **pfreelist)
21,429,059✔
981
  {
982
    /* TODO: There is a data race with GC_FAST_MALLOC_GRANS (which does */
983
    /* not do atomic updates to the free-list).  The race seems to be   */
984
    /* harmless, and for now we just skip this check in case of TSan.   */
985
#   if defined(AO_HAVE_load_acquire_read) && !defined(THREAD_SANITIZER)
986
      AO_t *list = (AO_t *)AO_load_acquire_read((AO_t *)pfreelist);
21,429,059✔
987
                /* Atomic operations are used because the world is running. */
988
      AO_t *prev;
989
      AO_t *p;
990

991
      if ((word)list <= HBLKSIZE) return;
21,429,059✔
992

993
      prev = (AO_t *)pfreelist;
1,244,587✔
994
      for (p = list; p != NULL;) {
38,102,087✔
995
        AO_t *next;
996

997
        if (!GC_is_marked(p)) {
35,612,913✔
998
          ABORT_ARG2("Unmarked local free list entry",
×
999
                     ": object %p on list %p", (void *)p, (void *)list);
1000
        }
1001

1002
        /* While traversing the free-list, it re-reads the pointer to   */
1003
        /* the current node before accepting its next pointer and       */
1004
        /* bails out if the latter has changed.  That way, it won't     */
1005
        /* try to follow the pointer which might be been modified       */
1006
        /* after the object was returned to the client.  It might       */
1007
        /* perform the mark-check on the just allocated object but      */
1008
        /* that should be harmless.                                     */
1009
        next = (AO_t *)AO_load_acquire_read(p);
35,612,913✔
1010
        if (AO_load(prev) != (AO_t)p)
35,612,913✔
1011
          break;
×
1012
        prev = p;
35,612,913✔
1013
        p = next;
35,612,913✔
1014
      }
1015
#   else
1016
      /* FIXME: Not implemented (just skipped). */
1017
      (void)pfreelist;
1018
#   endif
1019
  }
1020
#endif /* GC_ASSERTIONS && THREAD_LOCAL_ALLOC */
1021

1022
/* Clear all mark bits for the free list whose first entry is q */
1023
/* Decrement GC_bytes_found by number of bytes on free list.    */
1024
STATIC void GC_clear_fl_marks(ptr_t q)
50,471✔
1025
{
1026
      struct hblk *h = HBLKPTR(q);
50,471✔
1027
      struct hblk *last_h = h;
50,471✔
1028
      hdr *hhdr = HDR(h);
50,471✔
1029
      word sz = hhdr->hb_sz; /* Normally set only once. */
50,471✔
1030

1031
      for (;;) {
1032
        word bit_no = MARK_BIT_NO((ptr_t)q - (ptr_t)h, sz);
4,454,979✔
1033

1034
        if (mark_bit_from_hdr(hhdr, bit_no)) {
4,454,979✔
1035
          size_t n_marks = hhdr -> hb_n_marks;
1,113,346✔
1036

1037
          GC_ASSERT(n_marks != 0);
1,113,346✔
1038
          clear_mark_bit_from_hdr(hhdr, bit_no);
1,113,346✔
1039
          n_marks--;
1,113,346✔
1040
#         ifdef PARALLEL_MARK
1041
            /* Appr. count, don't decrement to zero! */
1042
            if (0 != n_marks || !GC_parallel) {
1,113,346✔
1043
              hhdr -> hb_n_marks = n_marks;
1,112,912✔
1044
            }
1045
#         else
1046
            hhdr -> hb_n_marks = n_marks;
1047
#         endif
1048
        }
1049
        GC_bytes_found -= sz;
4,454,979✔
1050

1051
        q = (ptr_t)obj_link(q);
4,454,979✔
1052
        if (q == NULL)
4,454,979✔
1053
          break;
50,471✔
1054

1055
        h = HBLKPTR(q);
4,404,508✔
1056
        if (h != last_h) {
4,404,508✔
1057
          last_h = h;
455,796✔
1058
          hhdr = HDR(h);
455,796✔
1059
          sz = hhdr->hb_sz;
455,796✔
1060
        }
1061
      }
4,404,508✔
1062
}
50,471✔
1063

1064
#if defined(GC_ASSERTIONS) && defined(THREAD_LOCAL_ALLOC)
1065
  void GC_check_tls(void);
1066
#endif
1067

1068
GC_on_heap_resize_proc GC_on_heap_resize = 0;
1069

1070
/* Used for logging only. */
1071
GC_INLINE int GC_compute_heap_usage_percent(void)
×
1072
{
1073
  word used = GC_composite_in_use + GC_atomic_in_use + GC_bytes_allocd;
×
1074
  word heap_sz = GC_heapsize - GC_unmapped_bytes;
×
1075
# if defined(CPPCHECK)
1076
    word limit = (GC_WORD_MAX >> 1) / 50; /* to avoid a false positive */
1077
# else
1078
    const word limit = GC_WORD_MAX / 100;
×
1079
# endif
1080

1081
  return used >= heap_sz ? 0 : used < limit ?
×
1082
                (int)((used * 100) / heap_sz) : (int)(used / (heap_sz / 100));
×
1083
}
1084

1085
#define GC_DBGLOG_PRINT_HEAP_IN_USE() \
1086
  GC_DBGLOG_PRINTF("In-use heap: %d%% (%lu KiB pointers + %lu KiB other)\n", \
1087
                   GC_compute_heap_usage_percent(), \
1088
                   TO_KiB_UL(GC_composite_in_use), \
1089
                   TO_KiB_UL(GC_atomic_in_use + GC_bytes_allocd))
1090

1091
/* Finish up a collection.  Assumes mark bits are consistent, but the   */
1092
/* world is otherwise running.                                          */
1093
STATIC void GC_finish_collection(void)
28,004✔
1094
{
1095
#   ifndef NO_CLOCK
1096
      CLOCK_TYPE start_time = CLOCK_TYPE_INITIALIZER;
28,004✔
1097
      CLOCK_TYPE finalize_time = CLOCK_TYPE_INITIALIZER;
28,004✔
1098
#   endif
1099

1100
    GC_ASSERT(I_HOLD_LOCK());
28,004✔
1101
#   if defined(GC_ASSERTIONS) \
1102
       && defined(THREAD_LOCAL_ALLOC) && !defined(DBG_HDRS_ALL)
1103
        /* Check that we marked some of our own data.           */
1104
        /* TODO: Add more checks. */
1105
        GC_check_tls();
28,004✔
1106
#   endif
1107

1108
#   ifndef NO_CLOCK
1109
      if (GC_print_stats)
28,003✔
1110
        GET_TIME(start_time);
×
1111
#   endif
1112
    if (GC_on_collection_event)
28,003✔
1113
      GC_on_collection_event(GC_EVENT_RECLAIM_START);
×
1114

1115
#   ifndef GC_GET_HEAP_USAGE_NOT_NEEDED
1116
      if (GC_bytes_found > 0)
28,003✔
1117
        GC_reclaimed_bytes_before_gc += (word)GC_bytes_found;
27,702✔
1118
#   endif
1119
    GC_bytes_found = 0;
28,003✔
1120
#   if defined(LINUX) && defined(__ELF__) && !defined(SMALL_CONFIG)
1121
        if (GETENV("GC_PRINT_ADDRESS_MAP") != 0) {
28,003✔
1122
          GC_print_address_map();
×
1123
        }
1124
#   endif
1125
    COND_DUMP;
28,003✔
1126
    if (GC_find_leak) {
28,003✔
1127
      /* Mark all objects on the free list.  All objects should be      */
1128
      /* marked when we're done.                                        */
1129
      word size;        /* current object size  */
1130
      unsigned kind;
1131
      ptr_t q;
1132

1133
      for (kind = 0; kind < GC_n_kinds; kind++) {
330✔
1134
        for (size = 1; size <= MAXOBJGRANULES; size++) {
34,056✔
1135
          q = (ptr_t)GC_obj_kinds[kind].ok_freelist[size];
33,792✔
1136
          if (q != NULL)
33,792✔
1137
            GC_set_fl_marks(q);
532✔
1138
        }
1139
      }
1140
      GC_start_reclaim(TRUE);
66✔
1141
        /* The above just checks; it doesn't really reclaim anything.   */
1142
    }
1143

1144
#   ifndef GC_NO_FINALIZATION
1145
      GC_finalize();
28,003✔
1146
#   endif
1147
#   ifndef NO_CLOCK
1148
      if (GC_print_stats)
28,003✔
1149
        GET_TIME(finalize_time);
×
1150
#   endif
1151

1152
    if (GC_print_back_height) {
28,003✔
1153
#     ifdef MAKE_BACK_GRAPH
1154
        GC_traverse_back_graph();
1155
#     elif !defined(SMALL_CONFIG)
1156
        GC_err_printf("Back height not available: "
×
1157
                      "Rebuild collector with -DMAKE_BACK_GRAPH\n");
1158
#     endif
1159
    }
1160

1161
    /* Clear free list mark bits, in case they got accidentally marked   */
1162
    /* (or GC_find_leak is set and they were intentionally marked).      */
1163
    /* Also subtract memory remaining from GC_bytes_found count.         */
1164
    /* Note that composite objects on free list are cleared.             */
1165
    /* Thus accidentally marking a free list is not a problem;  only     */
1166
    /* objects on the list itself will be marked, and that's fixed here. */
1167
    {
1168
      word size;        /* current object size          */
1169
      ptr_t q;          /* pointer to current object    */
1170
      unsigned kind;
1171

1172
      for (kind = 0; kind < GC_n_kinds; kind++) {
157,034✔
1173
        for (size = 1; size <= MAXOBJGRANULES; size++) {
16,644,999✔
1174
          q = (ptr_t)GC_obj_kinds[kind].ok_freelist[size];
16,515,968✔
1175
          if (q != NULL)
16,515,968✔
1176
            GC_clear_fl_marks(q);
50,471✔
1177
        }
1178
      }
1179
    }
1180

1181
    GC_VERBOSE_LOG_PRINTF("Bytes recovered before sweep - f.l. count = %ld\n",
28,003✔
1182
                          (long)GC_bytes_found);
1183

1184
    /* Reconstruct free lists to contain everything not marked */
1185
    GC_start_reclaim(FALSE);
28,003✔
1186

1187
#   ifdef USE_MUNMAP
1188
      if (GC_unmap_threshold > 0 /* unmapping enabled? */
28,002✔
1189
          && EXPECT(GC_gc_no != 1, TRUE)) /* do not unmap during GC init */
28,002✔
1190
        GC_unmap_old(GC_unmap_threshold);
27,970✔
1191

1192
      GC_ASSERT(GC_heapsize >= GC_unmapped_bytes);
28,002✔
1193
#   endif
1194
    GC_ASSERT(GC_our_mem_bytes >= GC_heapsize);
28,002✔
1195
    GC_DBGLOG_PRINTF("GC #%lu freed %ld bytes, heap %lu KiB ("
28,002✔
1196
                     IF_USE_MUNMAP("+ %lu KiB unmapped ")
1197
                     "+ %lu KiB internal)\n",
1198
                     (unsigned long)GC_gc_no, (long)GC_bytes_found,
1199
                     TO_KiB_UL(GC_heapsize - GC_unmapped_bytes) /*, */
×
1200
                     COMMA_IF_USE_MUNMAP(TO_KiB_UL(GC_unmapped_bytes)),
×
1201
                     TO_KiB_UL(GC_our_mem_bytes - GC_heapsize
×
1202
                               + sizeof(GC_arrays)));
1203
    GC_DBGLOG_PRINT_HEAP_IN_USE();
28,002✔
1204
    if (GC_is_full_gc) {
28,002✔
1205
        GC_used_heap_size_after_full = GC_heapsize - GC_large_free_bytes;
12,302✔
1206
        GC_need_full_gc = FALSE;
12,302✔
1207
    } else {
1208
        GC_need_full_gc = GC_heapsize - GC_used_heap_size_after_full
31,400✔
1209
                          > min_bytes_allocd() + GC_large_free_bytes;
15,700✔
1210
    }
1211

1212
    /* Reset or increment counters for next cycle */
1213
    GC_n_attempts = 0;
28,002✔
1214
    GC_is_full_gc = FALSE;
28,002✔
1215
    GC_bytes_allocd_before_gc += GC_bytes_allocd;
28,002✔
1216
    GC_non_gc_bytes_at_gc = GC_non_gc_bytes;
28,002✔
1217
    GC_bytes_allocd = 0;
28,002✔
1218
    GC_bytes_dropped = 0;
28,002✔
1219
    GC_bytes_freed = 0;
28,002✔
1220
    GC_finalizer_bytes_freed = 0;
28,002✔
1221

1222
    if (GC_on_collection_event)
28,002✔
1223
      GC_on_collection_event(GC_EVENT_RECLAIM_END);
×
1224
#   ifndef NO_CLOCK
1225
      if (GC_print_stats) {
28,002✔
1226
        CLOCK_TYPE done_time;
1227

1228
        GET_TIME(done_time);
×
1229
#       if !defined(SMALL_CONFIG) && !defined(GC_NO_FINALIZATION)
1230
          /* A convenient place to output finalization statistics.      */
1231
          GC_print_finalization_stats();
×
1232
#       endif
1233
        GC_log_printf("Finalize and initiate sweep took %lu ms %lu ns"
×
1234
                      " + %lu ms %lu ns\n",
1235
                      MS_TIME_DIFF(finalize_time, start_time),
×
1236
                      NS_FRAC_TIME_DIFF(finalize_time, start_time),
×
1237
                      MS_TIME_DIFF(done_time, finalize_time),
×
1238
                      NS_FRAC_TIME_DIFF(done_time, finalize_time));
×
1239
      }
1240
#   elif !defined(SMALL_CONFIG) && !defined(GC_NO_FINALIZATION)
1241
      if (GC_print_stats)
1242
        GC_print_finalization_stats();
1243
#   endif
1244
}
28,002✔
1245

1246
STATIC word GC_heapsize_at_forced_unmap = 0;
1247
                                /* accessed with the allocation lock held */
1248

1249
/* If stop_func == 0 then GC_default_stop_func is used instead.         */
1250
STATIC GC_bool GC_try_to_collect_general(GC_stop_func stop_func,
2,462✔
1251
                                         GC_bool force_unmap)
1252
{
1253
    GC_bool result;
1254
    IF_USE_MUNMAP(int old_unmap_threshold;)
1255
    IF_CANCEL(int cancel_state;)
1256

1257
    if (!EXPECT(GC_is_initialized, TRUE)) GC_init();
2,462✔
1258
    if (GC_debugging_started) GC_print_all_smashed();
2,462✔
1259
    GC_INVOKE_FINALIZERS();
2,462✔
1260
    LOCK();
2,461✔
1261
    if (force_unmap) {
2,461✔
1262
      /* Record current heap size to make heap growth more conservative */
1263
      /* afterwards (as if the heap is growing from zero size again).   */
1264
      GC_heapsize_at_forced_unmap = GC_heapsize;
70✔
1265
    }
1266
    DISABLE_CANCEL(cancel_state);
2,461✔
1267
#   ifdef USE_MUNMAP
1268
      old_unmap_threshold = GC_unmap_threshold;
2,462✔
1269
      if (force_unmap ||
4,854✔
1270
          (GC_force_unmap_on_gcollect && old_unmap_threshold > 0))
2,392✔
1271
        GC_unmap_threshold = 1; /* unmap as much as possible */
70✔
1272
#   endif
1273
    ENTER_GC();
2,462✔
1274
    /* Minimize junk left in my registers */
1275
      GC_noop6(0,0,0,0,0,0);
2,462✔
1276
    result = GC_try_to_collect_inner(stop_func != 0 ? stop_func :
2,462✔
1277
                                     GC_default_stop_func);
1278
    EXIT_GC();
2,462✔
1279
    IF_USE_MUNMAP(GC_unmap_threshold = old_unmap_threshold); /* restore */
2,462✔
1280
    RESTORE_CANCEL(cancel_state);
2,462✔
1281
    UNLOCK();
2,462✔
1282
    if (result) {
2,462✔
1283
        if (GC_debugging_started) GC_print_all_smashed();
2,200✔
1284
        GC_INVOKE_FINALIZERS();
2,200✔
1285
    }
1286
    return result;
2,462✔
1287
}
1288

1289
/* Externally callable routines to invoke full, stop-the-world collection. */
1290

1291
GC_API int GC_CALL GC_try_to_collect(GC_stop_func stop_func)
×
1292
{
1293
    GC_ASSERT(NONNULL_ARG_NOT_NULL(stop_func));
×
1294
    return (int)GC_try_to_collect_general(stop_func, FALSE);
×
1295
}
1296

1297
GC_API void GC_CALL GC_gcollect(void)
2,391✔
1298
{
1299
    /* 0 is passed as stop_func to get GC_default_stop_func value       */
1300
    /* while holding the allocation lock (to prevent data races).       */
1301
    (void)GC_try_to_collect_general(0, FALSE);
2,391✔
1302
    if (get_have_errors())
2,392✔
1303
      GC_print_all_errors();
56✔
1304
}
2,392✔
1305

1306
GC_API void GC_CALL GC_gcollect_and_unmap(void)
70✔
1307
{
1308
    /* Collect and force memory unmapping to OS. */
1309
    (void)GC_try_to_collect_general(GC_never_stop_func, TRUE);
70✔
1310
}
70✔
1311

1312
#ifdef USE_PROC_FOR_LIBRARIES
1313
  /* Add HBLKSIZE aligned, GET_MEM-generated block to GC_our_memory. */
1314
  GC_INNER void GC_add_to_our_memory(ptr_t p, size_t bytes)
1315
  {
1316
    GC_ASSERT(I_HOLD_LOCK());
1317
    GC_ASSERT(p != NULL);
1318
    if (GC_n_memory >= MAX_HEAP_SECTS)
1319
      ABORT("Too many GC-allocated memory sections: Increase MAX_HEAP_SECTS");
1320
    GC_our_memory[GC_n_memory].hs_start = p;
1321
    GC_our_memory[GC_n_memory].hs_bytes = bytes;
1322
    GC_n_memory++;
1323
    GC_our_mem_bytes += bytes;
1324
  }
1325
#endif
1326

1327
/* Use the chunk of memory starting at p of size bytes as part of the heap. */
1328
/* Assumes p is HBLKSIZE aligned, bytes argument is a multiple of HBLKSIZE. */
1329
STATIC void GC_add_to_heap(struct hblk *p, size_t bytes)
670✔
1330
{
1331
    hdr * phdr;
1332
    word endp;
1333
    size_t old_capacity = 0;
670✔
1334
    void *old_heap_sects = NULL;
670✔
1335
#   ifdef GC_ASSERTIONS
1336
      unsigned i;
1337
#   endif
1338

1339
    GC_ASSERT(I_HOLD_LOCK());
670✔
1340
    GC_ASSERT((word)p % HBLKSIZE == 0);
670✔
1341
    GC_ASSERT(bytes % HBLKSIZE == 0);
670✔
1342
    GC_ASSERT(bytes > 0);
670✔
1343
    GC_ASSERT(GC_all_nils != NULL);
670✔
1344

1345
    if (EXPECT(GC_n_heap_sects == GC_capacity_heap_sects, FALSE)) {
670✔
1346
      /* Allocate new GC_heap_sects with sufficient capacity.   */
1347
#     ifndef INITIAL_HEAP_SECTS
1348
#       define INITIAL_HEAP_SECTS 32
1349
#     endif
1350
      size_t new_capacity = GC_n_heap_sects > 0 ?
68✔
1351
                (size_t)GC_n_heap_sects * 2 : INITIAL_HEAP_SECTS;
34✔
1352
      void *new_heap_sects =
34✔
1353
                GC_scratch_alloc(new_capacity * sizeof(struct HeapSect));
34✔
1354

1355
      if (NULL == new_heap_sects) {
34✔
1356
        /* Retry with smaller yet sufficient capacity.  */
1357
        new_capacity = (size_t)GC_n_heap_sects + INITIAL_HEAP_SECTS;
×
1358
        new_heap_sects =
×
1359
                GC_scratch_alloc(new_capacity * sizeof(struct HeapSect));
×
1360
        if (NULL == new_heap_sects)
×
1361
          ABORT("Insufficient memory for heap sections");
×
1362
      }
1363
      old_capacity = GC_capacity_heap_sects;
34✔
1364
      old_heap_sects = GC_heap_sects;
34✔
1365
      /* Transfer GC_heap_sects contents to the newly allocated array.  */
1366
      if (GC_n_heap_sects > 0)
34✔
1367
        BCOPY(old_heap_sects, new_heap_sects,
2✔
1368
              GC_n_heap_sects * sizeof(struct HeapSect));
1369
      GC_capacity_heap_sects = new_capacity;
34✔
1370
      GC_heap_sects = (struct HeapSect *)new_heap_sects;
34✔
1371
      GC_COND_LOG_PRINTF("Grew heap sections array to %lu elements\n",
34✔
1372
                         (unsigned long)new_capacity);
1373
    }
1374

1375
    while (EXPECT((word)p <= HBLKSIZE, FALSE)) {
1,340✔
1376
        /* Can't handle memory near address zero. */
1377
        ++p;
×
1378
        bytes -= HBLKSIZE;
×
1379
        if (0 == bytes) return;
×
1380
    }
1381
    endp = (word)p + bytes;
670✔
1382
    if (EXPECT(endp <= (word)p, FALSE)) {
670✔
1383
        /* Address wrapped. */
1384
        bytes -= HBLKSIZE;
×
1385
        if (0 == bytes) return;
×
1386
        endp -= HBLKSIZE;
×
1387
    }
1388
    phdr = GC_install_header(p);
670✔
1389
    if (EXPECT(NULL == phdr, FALSE)) {
670✔
1390
        /* This is extremely unlikely. Can't add it.  This will         */
1391
        /* almost certainly result in a 0 return from the allocator,    */
1392
        /* which is entirely appropriate.                               */
1393
        return;
×
1394
    }
1395
    GC_ASSERT(endp > (word)p && endp == (word)p + bytes);
670✔
1396
#   ifdef GC_ASSERTIONS
1397
      /* Ensure no intersection between sections.       */
1398
      for (i = 0; i < GC_n_heap_sects; i++) {
10,908✔
1399
        word hs_start = (word)GC_heap_sects[i].hs_start;
10,238✔
1400
        word hs_end = hs_start + GC_heap_sects[i].hs_bytes;
10,238✔
1401

1402
        GC_ASSERT(!((hs_start <= (word)p && (word)p < hs_end)
10,238✔
1403
                    || (hs_start < endp && endp <= hs_end)
1404
                    || ((word)p < hs_start && hs_end < endp)));
1405
      }
1406
#   endif
1407
    GC_heap_sects[GC_n_heap_sects].hs_start = (ptr_t)p;
670✔
1408
    GC_heap_sects[GC_n_heap_sects].hs_bytes = bytes;
670✔
1409
    GC_n_heap_sects++;
670✔
1410
    phdr -> hb_sz = bytes;
670✔
1411
    phdr -> hb_flags = 0;
670✔
1412
    GC_freehblk(p);
670✔
1413
    GC_heapsize += bytes;
670✔
1414

1415
    if ((word)p <= (word)GC_least_plausible_heap_addr
670✔
1416
        || EXPECT(NULL == GC_least_plausible_heap_addr, FALSE)) {
633✔
1417
        GC_least_plausible_heap_addr = (void *)((ptr_t)p - sizeof(word));
37✔
1418
                /* Making it a little smaller than necessary prevents   */
1419
                /* us from getting a false hit from the variable        */
1420
                /* itself.  There's some unintentional reflection       */
1421
                /* here.                                                */
1422
    }
1423
    if (endp > (word)GC_greatest_plausible_heap_addr) {
670✔
1424
        GC_greatest_plausible_heap_addr = (void *)endp;
×
1425
    }
1426

1427
    if (EXPECT(old_capacity > 0, FALSE)) {
670✔
1428
#     ifndef GWW_VDB
1429
        /* Recycling may call GC_add_to_heap() again but should not     */
1430
        /* cause resizing of GC_heap_sects.                             */
1431
        GC_scratch_recycle_no_gww(old_heap_sects,
2✔
1432
                                  old_capacity * sizeof(struct HeapSect));
1433
#     else
1434
        /* TODO: implement GWW-aware recycling as in alloc_mark_stack */
1435
        GC_noop1((word)old_heap_sects);
1436
#     endif
1437
    }
1438
}
1439

1440
#if !defined(NO_DEBUGGING)
1441
  void GC_print_heap_sects(void)
×
1442
  {
1443
    unsigned i;
1444

1445
    GC_printf("Total heap size: %lu" IF_USE_MUNMAP(" (%lu unmapped)") "\n",
×
1446
              (unsigned long)GC_heapsize /*, */
×
1447
              COMMA_IF_USE_MUNMAP((unsigned long)GC_unmapped_bytes));
×
1448

1449
    for (i = 0; i < GC_n_heap_sects; i++) {
×
1450
      ptr_t start = GC_heap_sects[i].hs_start;
×
1451
      size_t len = GC_heap_sects[i].hs_bytes;
×
1452
      struct hblk *h;
1453
      unsigned nbl = 0;
×
1454

1455
      for (h = (struct hblk *)start; (word)h < (word)(start + len); h++) {
×
1456
        if (GC_is_black_listed(h, HBLKSIZE)) nbl++;
×
1457
      }
1458
      GC_printf("Section %d from %p to %p %u/%lu blacklisted\n",
×
1459
                i, (void *)start, (void *)&start[len],
1460
                nbl, (unsigned long)divHBLKSZ(len));
×
1461
    }
1462
  }
×
1463
#endif
1464

1465
void * GC_least_plausible_heap_addr = (void *)GC_WORD_MAX;
1466
void * GC_greatest_plausible_heap_addr = 0;
1467

1468
STATIC word GC_max_heapsize = 0;
1469

1470
GC_API void GC_CALL GC_set_max_heap_size(GC_word n)
2✔
1471
{
1472
    GC_max_heapsize = n;
2✔
1473
}
2✔
1474

1475
word GC_max_retries = 0;
1476

1477
GC_INNER void GC_scratch_recycle_inner(void *ptr, size_t bytes)
257✔
1478
{
1479
  size_t page_offset;
1480
  size_t displ = 0;
257✔
1481
  size_t recycled_bytes;
1482

1483
  GC_ASSERT(I_HOLD_LOCK());
257✔
1484
  if (NULL == ptr) return;
257✔
1485

1486
  GC_ASSERT(bytes != 0);
257✔
1487
  GC_ASSERT(GC_page_size != 0);
257✔
1488
  /* TODO: Assert correct memory flags if GWW_VDB */
1489
  page_offset = (word)ptr & (GC_page_size - 1);
257✔
1490
  if (page_offset != 0)
257✔
1491
    displ = GC_page_size - page_offset;
×
1492
  recycled_bytes = bytes > displ ? (bytes - displ) & ~(GC_page_size - 1) : 0;
257✔
1493
  GC_COND_LOG_PRINTF("Recycle %lu/%lu scratch-allocated bytes at %p\n",
257✔
1494
                (unsigned long)recycled_bytes, (unsigned long)bytes, ptr);
1495
  if (recycled_bytes > 0)
257✔
1496
    GC_add_to_heap((struct hblk *)((word)ptr + displ), recycled_bytes);
255✔
1497
}
1498

1499
/* This explicitly increases the size of the heap.  It is used          */
1500
/* internally, but may also be invoked from GC_expand_hp by the user.   */
1501
/* The argument is in units of HBLKSIZE (zero is treated as 1).         */
1502
/* Returns FALSE on failure.                                            */
1503
GC_INNER GC_bool GC_expand_hp_inner(word n)
433✔
1504
{
1505
    size_t bytes;
1506
    struct hblk * space;
1507
    word expansion_slop;        /* Number of bytes by which we expect   */
1508
                                /* the heap to expand soon.             */
1509

1510
    GC_ASSERT(I_HOLD_LOCK());
433✔
1511
    GC_ASSERT(GC_page_size != 0);
433✔
1512
    if (0 == n) n = 1;
433✔
1513
    bytes = ROUNDUP_PAGESIZE((size_t)n * HBLKSIZE);
433✔
1514
    GC_DBGLOG_PRINT_HEAP_IN_USE();
433✔
1515
    if (GC_max_heapsize != 0
433✔
1516
        && (GC_max_heapsize < (word)bytes
22✔
1517
            || GC_heapsize > GC_max_heapsize - (word)bytes)) {
4✔
1518
        /* Exceeded self-imposed limit */
1519
        return FALSE;
18✔
1520
    }
1521
    space = GET_MEM(bytes);
415✔
1522
    if (EXPECT(NULL == space, FALSE)) {
415✔
1523
        WARN("Failed to expand heap by %" WARN_PRIuPTR " KiB\n", bytes >> 10);
×
1524
        return FALSE;
×
1525
    }
1526
    GC_add_to_our_memory((ptr_t)space, bytes);
415✔
1527
    GC_last_heap_growth_gc_no = GC_gc_no;
415✔
1528
    GC_INFOLOG_PRINTF("Grow heap to %lu KiB after %lu bytes allocated\n",
415✔
1529
                      TO_KiB_UL(GC_heapsize + bytes),
×
1530
                      (unsigned long)GC_bytes_allocd);
×
1531

1532
    /* Adjust heap limits generously for blacklisting to work better.   */
1533
    /* GC_add_to_heap performs minimal adjustment needed for            */
1534
    /* correctness.                                                     */
1535
    expansion_slop = min_bytes_allocd() + 4 * MAXHINCR * HBLKSIZE;
415✔
1536
    if ((GC_last_heap_addr == 0 && !((word)space & SIGNB))
415✔
1537
        || (GC_last_heap_addr != 0
383✔
1538
            && (word)GC_last_heap_addr < (word)space)) {
425✔
1539
        /* Assume the heap is growing up. */
1540
        word new_limit = (word)space + (word)bytes + expansion_slop;
42✔
1541
        if (new_limit > (word)space
42✔
1542
            && (word)GC_greatest_plausible_heap_addr < new_limit)
42✔
1543
          GC_greatest_plausible_heap_addr = (void *)new_limit;
34✔
1544
    } else {
1545
        /* Heap is growing down. */
1546
        word new_limit = (word)space - expansion_slop;
373✔
1547
        if (new_limit < (word)space
373✔
1548
            && (word)GC_least_plausible_heap_addr > new_limit)
373✔
1549
          GC_least_plausible_heap_addr = (void *)new_limit;
358✔
1550
    }
1551
    GC_last_heap_addr = (ptr_t)space;
415✔
1552

1553
    GC_add_to_heap(space, bytes);
415✔
1554
    if (GC_on_heap_resize)
415✔
1555
        (*GC_on_heap_resize)(GC_heapsize);
×
1556

1557
    return TRUE;
415✔
1558
}
1559

1560
/* Really returns a bool, but it's externally visible, so that's clumsy. */
1561
GC_API int GC_CALL GC_expand_hp(size_t bytes)
4✔
1562
{
1563
    word n_blocks = OBJ_SZ_TO_BLOCKS_CHECKED(bytes);
4✔
1564
    word old_heapsize;
1565
    GC_bool result;
1566

1567
    if (!EXPECT(GC_is_initialized, TRUE)) GC_init();
4✔
1568
    LOCK();
4✔
1569
    old_heapsize = GC_heapsize;
4✔
1570
    result = GC_expand_hp_inner(n_blocks);
4✔
1571
    if (result) {
4✔
1572
      GC_requested_heapsize += bytes;
4✔
1573
      if (GC_dont_gc) {
4✔
1574
        /* Do not call WARN if the heap growth is intentional.  */
1575
        GC_ASSERT(GC_heapsize >= old_heapsize);
2✔
1576
        GC_heapsize_on_gc_disable += GC_heapsize - old_heapsize;
2✔
1577
      }
1578
    }
1579
    UNLOCK();
4✔
1580
    return (int)result;
4✔
1581
}
1582

1583
GC_INNER unsigned GC_fail_count = 0;
1584
                        /* How many consecutive GC/expansion failures?  */
1585
                        /* Reset by GC_allochblk.                       */
1586

1587
/* The minimum value of the ratio of allocated bytes since the latest   */
1588
/* GC to the amount of finalizers created since that GC which triggers  */
1589
/* the collection instead heap expansion.  Has no effect in the         */
1590
/* incremental mode.                                                    */
1591
#if defined(GC_ALLOCD_BYTES_PER_FINALIZER) && !defined(CPPCHECK)
1592
  STATIC word GC_allocd_bytes_per_finalizer = GC_ALLOCD_BYTES_PER_FINALIZER;
1593
#else
1594
  STATIC word GC_allocd_bytes_per_finalizer = 10000;
1595
#endif
1596

1597
GC_API void GC_CALL GC_set_allocd_bytes_per_finalizer(GC_word value)
2✔
1598
{
1599
  GC_allocd_bytes_per_finalizer = value;
2✔
1600
}
2✔
1601

1602
GC_API GC_word GC_CALL GC_get_allocd_bytes_per_finalizer(void)
2✔
1603
{
1604
  return GC_allocd_bytes_per_finalizer;
2✔
1605
}
1606

1607
static word last_fo_entries = 0;
1608
static word last_bytes_finalized = 0;
1609

1610
/* Collect or expand heap in an attempt make the indicated number of    */
1611
/* free blocks available.  Should be called until the blocks are        */
1612
/* available (setting retry value to TRUE unless this is the first call */
1613
/* in a loop) or until it fails by returning FALSE.  The flags argument */
1614
/* should be IGNORE_OFF_PAGE or 0.                                      */
1615
GC_INNER GC_bool GC_collect_or_expand(word needed_blocks,
8,719✔
1616
                                      unsigned flags,
1617
                                      GC_bool retry)
1618
{
1619
    GC_bool gc_not_stopped = TRUE;
8,719✔
1620
    word blocks_to_get;
1621
    IF_CANCEL(int cancel_state;)
1622

1623
    GC_ASSERT(I_HOLD_LOCK());
8,719✔
1624
    GC_ASSERT(GC_is_initialized);
8,719✔
1625
    DISABLE_CANCEL(cancel_state);
8,719✔
1626
    if (!GC_incremental && !GC_dont_gc &&
17,118✔
1627
        ((GC_dont_expand && GC_bytes_allocd > 0)
8,399✔
1628
         || (GC_fo_entries > last_fo_entries
8,399✔
1629
             && (last_bytes_finalized | GC_bytes_finalized) != 0
279✔
1630
             && (GC_fo_entries - last_fo_entries)
546✔
1631
                * GC_allocd_bytes_per_finalizer > GC_bytes_allocd)
273✔
1632
         || GC_should_collect())) {
8,126✔
1633
      /* Try to do a full collection using 'default' stop_func (unless  */
1634
      /* nothing has been allocated since the latest collection or heap */
1635
      /* expansion is disabled).                                        */
1636
      gc_not_stopped = GC_try_to_collect_inner(
16,644✔
1637
                        GC_bytes_allocd > 0 && (!GC_dont_expand || !retry) ?
16,644✔
1638
                        GC_default_stop_func : GC_never_stop_func);
1639
      if (gc_not_stopped == TRUE || !retry) {
8,322✔
1640
        /* Either the collection hasn't been aborted or this is the     */
1641
        /* first attempt (in a loop).                                   */
1642
        last_fo_entries = GC_fo_entries;
8,322✔
1643
        last_bytes_finalized = GC_bytes_finalized;
8,322✔
1644
        RESTORE_CANCEL(cancel_state);
8,322✔
1645
        return TRUE;
17,041✔
1646
      }
1647
    }
1648

1649
    blocks_to_get = (GC_heapsize - GC_heapsize_at_forced_unmap)
794✔
1650
                        / (HBLKSIZE * GC_free_space_divisor)
397✔
1651
                    + needed_blocks;
1652
    if (blocks_to_get > MAXHINCR) {
397✔
1653
      word slop;
1654

1655
      /* Get the minimum required to make it likely that we can satisfy */
1656
      /* the current request in the presence of black-listing.          */
1657
      /* This will probably be more than MAXHINCR.                      */
1658
      if ((flags & IGNORE_OFF_PAGE) != 0) {
30✔
1659
        slop = 4;
×
1660
      } else {
1661
        slop = 2 * divHBLKSZ(BL_LIMIT);
30✔
1662
        if (slop > needed_blocks) slop = needed_blocks;
30✔
1663
      }
1664
      if (needed_blocks + slop > MAXHINCR) {
30✔
1665
        blocks_to_get = needed_blocks + slop;
18✔
1666
      } else {
1667
        blocks_to_get = MAXHINCR;
12✔
1668
      }
1669
      if (blocks_to_get > divHBLKSZ(GC_WORD_MAX))
30✔
1670
        blocks_to_get = divHBLKSZ(GC_WORD_MAX);
10✔
1671
    } else if (blocks_to_get < MINHINCR) {
367✔
1672
      blocks_to_get = MINHINCR;
63✔
1673
    }
1674

1675
    if (GC_max_heapsize > GC_heapsize) {
397✔
1676
      word max_get_blocks = divHBLKSZ(GC_max_heapsize - GC_heapsize);
18✔
1677
      if (blocks_to_get > max_get_blocks)
18✔
1678
        blocks_to_get = max_get_blocks > needed_blocks
18✔
1679
                        ? max_get_blocks : needed_blocks;
1680
    }
1681

1682
#   ifdef USE_MUNMAP
1683
      if (GC_unmap_threshold > 1) {
397✔
1684
        /* Return as much memory to the OS as possible before   */
1685
        /* trying to get memory from it.                        */
1686
        GC_unmap_old(0);
397✔
1687
      }
1688
#   endif
1689
    if (!GC_expand_hp_inner(blocks_to_get)
397✔
1690
        && (blocks_to_get == needed_blocks
18✔
1691
            || !GC_expand_hp_inner(needed_blocks))) {
×
1692
      if (gc_not_stopped == FALSE) {
18✔
1693
        /* Don't increment GC_fail_count here (and no warning).     */
1694
        GC_gcollect_inner();
×
1695
        GC_ASSERT(GC_bytes_allocd == 0);
×
1696
      } else if (GC_fail_count++ < GC_max_retries) {
18✔
1697
        WARN("Out of Memory!  Trying to continue...\n", 0);
×
1698
        GC_gcollect_inner();
×
1699
      } else {
1700
#       if !defined(AMIGA) || !defined(GC_AMIGA_FASTALLOC)
1701
#         ifdef USE_MUNMAP
1702
            GC_ASSERT(GC_heapsize >= GC_unmapped_bytes);
18✔
1703
#         endif
1704
          WARN("Out of Memory! Heap size: %" WARN_PRIuPTR " MiB."
18✔
1705
               " Returning NULL!\n", (GC_heapsize - GC_unmapped_bytes) >> 20);
1706
#       endif
1707
        RESTORE_CANCEL(cancel_state);
18✔
1708
        return FALSE;
18✔
1709
      }
1710
    } else if (GC_fail_count) {
379✔
1711
      GC_COND_LOG_PRINTF("Memory available again...\n");
×
1712
    }
1713
    RESTORE_CANCEL(cancel_state);
379✔
1714
    return TRUE;
379✔
1715
}
1716

1717
/*
1718
 * Make sure the object free list for size gran (in granules) is not empty.
1719
 * Return a pointer to the first object on the free list.
1720
 * The object MUST BE REMOVED FROM THE FREE LIST BY THE CALLER.
1721
 */
1722
GC_INNER ptr_t GC_allocobj(size_t gran, int kind)
819,080✔
1723
{
1724
    void ** flh = &GC_obj_kinds[kind].ok_freelist[gran];
819,080✔
1725
    GC_bool tried_minor = FALSE;
819,080✔
1726
    GC_bool retry = FALSE;
819,080✔
1727

1728
    GC_ASSERT(I_HOLD_LOCK());
819,080✔
1729
    GC_ASSERT(GC_is_initialized);
819,080✔
1730
    if (0 == gran) return NULL;
819,080✔
1731

1732
    while (NULL == *flh) {
2,463,117✔
1733
      ENTER_GC();
824,957✔
1734
#     ifndef GC_DISABLE_INCREMENTAL
1735
        if (GC_incremental && GC_time_limit != GC_TIME_UNLIMITED) {
824,957✔
1736
          /* True incremental mode, not just generational.      */
1737
          /* Do our share of marking work.                      */
1738
          GC_collect_a_little_inner(1);
×
1739
        }
1740
#     endif
1741
      /* Sweep blocks for objects of this size */
1742
        GC_ASSERT(!GC_is_full_gc
824,957✔
1743
                  || NULL == GC_obj_kinds[kind].ok_reclaim_list
1744
                  || NULL == GC_obj_kinds[kind].ok_reclaim_list[gran]);
1745
        GC_continue_reclaim(gran, kind);
824,957✔
1746
      EXIT_GC();
824,957✔
1747
#     if defined(CPPCHECK)
1748
        GC_noop1((word)&flh);
1749
#     endif
1750
      if (NULL == *flh) {
824,957✔
1751
        GC_new_hblk(gran, kind);
473,092✔
1752
#       if defined(CPPCHECK)
1753
          GC_noop1((word)&flh);
1754
#       endif
1755
        if (NULL == *flh) {
473,092✔
1756
          ENTER_GC();
5,893✔
1757
          if (GC_incremental && GC_time_limit == GC_TIME_UNLIMITED
5,893✔
1758
              && !tried_minor) {
314✔
1759
            GC_collect_a_little_inner(1);
161✔
1760
            tried_minor = TRUE;
161✔
1761
          } else {
1762
            if (!GC_collect_or_expand(1, 0 /* flags */, retry)) {
5,732✔
1763
              EXIT_GC();
×
1764
              return NULL;
×
1765
            }
1766
            retry = TRUE;
5,732✔
1767
          }
1768
          EXIT_GC();
5,893✔
1769
        }
1770
      }
1771
    }
1772
    /* Successful allocation; reset failure count.      */
1773
    GC_fail_count = 0;
819,080✔
1774

1775
    return (ptr_t)(*flh);
819,080✔
1776
}
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