Coverage Report

Created: 2026-07-25 06:39

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/php-src/Zend/zend_gc.c
Line
Count
Source
1
/*
2
   +----------------------------------------------------------------------+
3
   | Zend Engine                                                          |
4
   +----------------------------------------------------------------------+
5
   | Copyright © Zend Technologies Ltd., a subsidiary company of          |
6
   |     Perforce Software, Inc., and Contributors.                       |
7
   +----------------------------------------------------------------------+
8
   | This source file is subject to the Modified BSD License that is      |
9
   | bundled with this package in the file LICENSE, and is available      |
10
   | through the World Wide Web at <https://www.php.net/license/>.        |
11
   |                                                                      |
12
   | SPDX-License-Identifier: BSD-3-Clause                                |
13
   +----------------------------------------------------------------------+
14
   | Authors: David Wang <planetbeing@gmail.com>                          |
15
   |          Dmitry Stogov <dmitry@php.net>                              |
16
   +----------------------------------------------------------------------+
17
*/
18
19
/**
20
 * zend_gc_collect_cycles
21
 * ======================
22
 *
23
 * Colors and its meaning
24
 * ----------------------
25
 *
26
 * BLACK  (GC_BLACK)   - In use or free.
27
 * GREY   (GC_GREY)    - Possible member of cycle.
28
 * WHITE  (GC_WHITE)   - Member of garbage cycle.
29
 * PURPLE (GC_PURPLE)  - Possible root of cycle.
30
 *
31
 * Colors described in the paper but not used
32
 * ------------------------------------------
33
 *
34
 * GREEN - Acyclic
35
 * RED   - Candidate cycle undergoing
36
 * ORANGE - Candidate cycle awaiting epoch boundary.
37
 *
38
 *
39
 * Flow
40
 * =====
41
 *
42
 * The garbage collect cycle starts from 'gc_mark_roots', which traverses the
43
 * possible roots, and calls mark_grey for roots are marked purple with
44
 * depth-first traverse.
45
 *
46
 * After all possible roots are traversed and marked,
47
 * gc_scan_roots will be called, and each root will be called with
48
 * gc_scan(root->ref)
49
 *
50
 * gc_scan checks the colors of possible members.
51
 *
52
 * If the node is marked as grey and the refcount > 0
53
 *    gc_scan_black will be called on that node to scan it's subgraph.
54
 * otherwise (refcount == 0), it marks the node white.
55
 *
56
 * A node MAY be added to possible roots when ZEND_UNSET_VAR happens or
57
 * zend_assign_to_variable is called only when possible garbage node is
58
 * produced.
59
 * gc_possible_root() will be called to add the nodes to possible roots.
60
 *
61
 *
62
 * For objects, we call their get_gc handler (by default 'zend_std_get_gc') to
63
 * get the object properties to scan.
64
 *
65
 *
66
 * @see http://researcher.watson.ibm.com/researcher/files/us-bacon/Bacon01Concurrent.pdf
67
 */
68
#include "zend.h"
69
#include "zend_API.h"
70
#include "zend_compile.h"
71
#include "zend_errors.h"
72
#include "zend_fibers.h"
73
#include "zend_hrtime.h"
74
#include "zend_portability.h"
75
#include "zend_types.h"
76
#include "zend_weakrefs.h"
77
#include "zend_string.h"
78
#include "zend_exceptions.h"
79
80
#ifndef GC_BENCH
81
# define GC_BENCH 0
82
#endif
83
84
#ifndef ZEND_GC_DEBUG
85
# define ZEND_GC_DEBUG 0
86
#endif
87
88
/* GC_INFO layout */
89
2.97M
#define GC_ADDRESS  0x0fffffu
90
15.0M
#define GC_COLOR    0x300000u
91
92
#define GC_BLACK    0x000000u /* must be zero */
93
#define GC_WHITE    0x100000u
94
#define GC_GREY     0x200000u
95
#define GC_PURPLE   0x300000u
96
97
/* Debug tracing */
98
#if ZEND_GC_DEBUG > 1
99
# define GC_TRACE(format, ...) fprintf(stderr, format "\n", ##__VA_ARGS__);
100
# define GC_TRACE_REF(ref, format, ...) \
101
  do { \
102
    gc_trace_ref((zend_refcounted *) ref); \
103
    fprintf(stderr, format "\n", ##__VA_ARGS__); \
104
  } while (0)
105
# define GC_TRACE_SET_COLOR(ref, color) \
106
  GC_TRACE_REF(ref, "->%s", gc_color_name(color))
107
#else
108
# define GC_TRACE_REF(ref, format, ...)
109
# define GC_TRACE_SET_COLOR(ref, new_color)
110
# define GC_TRACE(str)
111
#endif
112
113
/* GC_INFO access */
114
#define GC_REF_ADDRESS(ref) \
115
2.97M
  (((GC_TYPE_INFO(ref)) & (GC_ADDRESS << GC_INFO_SHIFT)) >> GC_INFO_SHIFT)
116
117
#define GC_REF_COLOR(ref) \
118
  (((GC_TYPE_INFO(ref)) & (GC_COLOR << GC_INFO_SHIFT)) >> GC_INFO_SHIFT)
119
120
#define GC_REF_CHECK_COLOR(ref, color) \
121
10.9M
  ((GC_TYPE_INFO(ref) & (GC_COLOR << GC_INFO_SHIFT)) == ((color) << GC_INFO_SHIFT))
122
123
6.09M
#define GC_REF_SET_INFO(ref, info) do { \
124
6.09M
    GC_TYPE_INFO(ref) = \
125
6.09M
      (GC_TYPE_INFO(ref) & (GC_TYPE_MASK | GC_FLAGS_MASK)) | \
126
6.09M
      ((info) << GC_INFO_SHIFT); \
127
6.09M
  } while (0)
128
129
2.70M
#define GC_REF_SET_COLOR(ref, c) do { \
130
2.70M
    GC_TRACE_SET_COLOR(ref, c); \
131
2.70M
    GC_TYPE_INFO(ref) = \
132
2.70M
      (GC_TYPE_INFO(ref) & ~(GC_COLOR << GC_INFO_SHIFT)) | \
133
2.70M
      ((c) << GC_INFO_SHIFT); \
134
2.70M
  } while (0)
135
136
1.43M
#define GC_REF_SET_BLACK(ref) do { \
137
1.43M
    GC_TRACE_SET_COLOR(ref, GC_BLACK); \
138
1.43M
    GC_TYPE_INFO(ref) &= ~(GC_COLOR << GC_INFO_SHIFT); \
139
1.43M
  } while (0)
140
141
#define GC_REF_SET_PURPLE(ref) do { \
142
    GC_TRACE_SET_COLOR(ref, GC_PURPLE); \
143
    GC_TYPE_INFO(ref) |= (GC_COLOR << GC_INFO_SHIFT); \
144
  } while (0)
145
146
/* bit stealing tags for gc_root_buffer.ref */
147
2.46M
#define GC_BITS    0x3
148
149
695k
#define GC_ROOT    0x0 /* possible root of circular garbage     */
150
3.19M
#define GC_UNUSED  0x1 /* part of linked list of unused buffers */
151
2.30M
#define GC_GARBAGE 0x2 /* garbage to delete                     */
152
15.5k
#define GC_DTOR_GARBAGE 0x3 /* garbage on which only the dtor should be invoked */
153
154
#define GC_GET_PTR(ptr) \
155
109k
  ((void*)(((uintptr_t)(ptr)) & ~GC_BITS))
156
157
#define GC_IS_ROOT(ptr) \
158
695k
  ((((uintptr_t)(ptr)) & GC_BITS) == GC_ROOT)
159
#define GC_IS_UNUSED(ptr) \
160
133k
  ((((uintptr_t)(ptr)) & GC_BITS) == GC_UNUSED)
161
#define GC_IS_GARBAGE(ptr) \
162
1.51M
  ((((uintptr_t)(ptr)) & GC_BITS) == GC_GARBAGE)
163
#define GC_IS_DTOR_GARBAGE(ptr) \
164
12.3k
  ((((uintptr_t)(ptr)) & GC_BITS) == GC_DTOR_GARBAGE)
165
166
#define GC_MAKE_GARBAGE(ptr) \
167
794k
  ((void*)(((uintptr_t)(ptr)) | GC_GARBAGE))
168
#define GC_MAKE_DTOR_GARBAGE(ptr) \
169
3.24k
  ((void*)(((uintptr_t)(ptr)) | GC_DTOR_GARBAGE))
170
171
/* GC address conversion */
172
8.20M
#define GC_IDX2PTR(idx)      (GC_G(buf) + (idx))
173
3.07M
#define GC_PTR2IDX(ptr)      ((ptr) - GC_G(buf))
174
175
/* Get the value to be placed in an unused buffer entry with the specified next unused list index */
176
3.06M
#define GC_IDX2LIST(idx)     ((void*)(uintptr_t)(((idx) * sizeof(void*)) | GC_UNUSED))
177
/* Get the index of the next item in the unused list from the given root buffer entry. */
178
838k
#define GC_LIST2IDX(list)    (((uint32_t)(uintptr_t)(list)) / sizeof(void*))
179
180
/* GC buffers */
181
1.31M
#define GC_INVALID           0
182
1.99M
#define GC_FIRST_ROOT        1
183
184
16
#define GC_DEFAULT_BUF_SIZE  (16 * 1024)
185
1
#define GC_BUF_GROW_STEP     (128 * 1024)
186
187
0
#define GC_MAX_UNCOMPRESSED  (512 * 1024)
188
2
#define GC_MAX_BUF_SIZE      0x40000000
189
190
16
#define GC_THRESHOLD_DEFAULT (10000 + GC_FIRST_ROOT)
191
0
#define GC_THRESHOLD_STEP    10000
192
0
#define GC_THRESHOLD_MAX     1000000000
193
0
#define GC_THRESHOLD_TRIGGER 100
194
195
/* GC flags */
196
8.43k
#define GC_HAS_DESTRUCTORS  (1<<0)
197
198
/* Weak maps */
199
1.80k
#define Z_FROM_WEAKMAP_KEY    (1<<0)
200
1.76k
#define Z_FROM_WEAKMAP      (1<<1)
201
202
/* The WeakMap entry zv is reachable from roots by following the virtual
203
 * reference from the a WeakMap key to the entry */
204
#define GC_FROM_WEAKMAP_KEY(zv) \
205
486
  (Z_TYPE_INFO_P((zv)) & (Z_FROM_WEAKMAP_KEY << Z_TYPE_INFO_EXTRA_SHIFT))
206
207
654
#define GC_SET_FROM_WEAKMAP_KEY(zv) do {                    \
208
654
  zval *_z = (zv);                               \
209
654
  Z_TYPE_INFO_P(_z) = Z_TYPE_INFO_P(_z) | (Z_FROM_WEAKMAP_KEY << Z_TYPE_INFO_EXTRA_SHIFT); \
210
654
} while (0)
211
212
664
#define GC_UNSET_FROM_WEAKMAP_KEY(zv) do {                    \
213
664
  zval *_z = (zv);                               \
214
664
  Z_TYPE_INFO_P(_z) = Z_TYPE_INFO_P(_z) & ~(Z_FROM_WEAKMAP_KEY << Z_TYPE_INFO_EXTRA_SHIFT); \
215
664
} while (0)
216
217
/* The WeakMap entry zv is reachable from roots by following the reference from
218
 * the WeakMap */
219
#define GC_FROM_WEAKMAP(zv) \
220
1.21k
  (Z_TYPE_INFO_P((zv)) & (Z_FROM_WEAKMAP << Z_TYPE_INFO_EXTRA_SHIFT))
221
222
257
#define GC_SET_FROM_WEAKMAP(zv) do {                        \
223
257
  zval *_z = (zv);                               \
224
257
  Z_TYPE_INFO_P(_z) = Z_TYPE_INFO_P(_z) | (Z_FROM_WEAKMAP << Z_TYPE_INFO_EXTRA_SHIFT); \
225
257
} while (0)
226
227
301
#define GC_UNSET_FROM_WEAKMAP(zv) do {                      \
228
301
  zval *_z = (zv);                               \
229
301
  Z_TYPE_INFO_P(_z) = Z_TYPE_INFO_P(_z) & ~(Z_FROM_WEAKMAP << Z_TYPE_INFO_EXTRA_SHIFT); \
230
301
} while (0)
231
232
/* unused buffers */
233
234
/* Are there any unused root buffer entries? */
235
#define GC_HAS_UNUSED() \
236
576k
  (GC_G(unused) != GC_INVALID)
237
238
/* Get the next unused entry and remove it from the list */
239
#define GC_FETCH_UNUSED() \
240
838k
  gc_fetch_unused()
241
242
/* Add a root buffer entry to the unused list */
243
#define GC_LINK_UNUSED(root) \
244
3.06M
  gc_link_unused(root)
245
246
#define GC_HAS_NEXT_UNUSED_UNDER_THRESHOLD() \
247
  (GC_G(first_unused) < GC_G(gc_threshold))
248
#define GC_HAS_NEXT_UNUSED() \
249
576k
  (GC_G(first_unused) != GC_G(buf_size))
250
#define GC_FETCH_NEXT_UNUSED() \
251
2.22M
  gc_fetch_next_unused()
252
253
ZEND_API int (*gc_collect_cycles)(void);
254
255
/* The type of a root buffer entry.
256
 *
257
 * The lower two bits are used for flags and need to be masked out to
258
 * reconstruct a pointer.
259
 *
260
 * When a node in the root buffer is removed, the non-flag bits of the
261
 * unused entry are used to store the index of the next entry in the unused
262
 * list. */
263
typedef struct _gc_root_buffer {
264
  zend_refcounted  *ref;
265
} gc_root_buffer;
266
267
typedef struct _zend_gc_globals {
268
  /* The root buffer, which stores possible roots of reference cycles. It is
269
   * also used to store garbage to be collected at the end of a run.
270
   * A single array which is reallocated as necessary. */
271
  gc_root_buffer   *buf;
272
273
  bool         gc_enabled;
274
  bool         gc_active;        /* GC currently running, forbid nested GC */
275
  bool         gc_protected;     /* GC protected, forbid root additions */
276
  bool         gc_full;
277
278
  uint32_t          unused;     /* linked list of unused buffers    */
279
  uint32_t          first_unused;   /* first unused buffer              */
280
  uint32_t          gc_threshold;     /* GC collection threshold          */
281
  uint32_t          buf_size;     /* size of the GC buffer            */
282
  uint32_t          num_roots;    /* number of roots in GC buffer     */
283
284
  uint32_t gc_runs;         /* number of GC runs since reset */
285
  uint32_t collected;         /* number of collected nodes since reset */
286
287
  zend_hrtime_t activated_at;     /* the timestamp of the last reset */
288
  zend_hrtime_t collector_time;   /* time spent running GC (ns) */
289
  zend_hrtime_t dtor_time;      /* time spent calling destructors (ns) */
290
  zend_hrtime_t free_time;      /* time spent destroying nodes and freeing memory (ns) */
291
292
  uint32_t dtor_idx;      /* root buffer index */
293
  uint32_t dtor_end;
294
  zend_fiber *dtor_fiber;
295
  bool dtor_fiber_running;
296
297
#if GC_BENCH
298
  uint32_t root_buf_length;
299
  uint32_t root_buf_peak;
300
  uint32_t zval_possible_root;
301
  uint32_t zval_buffered;
302
  uint32_t zval_remove_from_buffer;
303
  uint32_t zval_marked_grey;
304
#endif
305
} zend_gc_globals;
306
307
#ifdef ZTS
308
static int gc_globals_id;
309
static size_t gc_globals_offset;
310
#define GC_G(v) ZEND_TSRMG_FAST(gc_globals_offset, zend_gc_globals *, v)
311
#else
312
45.0M
#define GC_G(v) (gc_globals.v)
313
static zend_gc_globals gc_globals;
314
#endif
315
316
#if GC_BENCH
317
# define GC_BENCH_INC(counter) GC_G(counter)++
318
# define GC_BENCH_DEC(counter) GC_G(counter)--
319
# define GC_BENCH_PEAK(peak, counter) do {    \
320
    if (GC_G(counter) > GC_G(peak)) {   \
321
      GC_G(peak) = GC_G(counter);     \
322
    }                   \
323
  } while (0)
324
#else
325
# define GC_BENCH_INC(counter)
326
# define GC_BENCH_DEC(counter)
327
# define GC_BENCH_PEAK(peak, counter)
328
#endif
329
330
331
3.68k
#define GC_STACK_SEGMENT_SIZE (((4096 - ZEND_MM_OVERHEAD) / sizeof(void*)) - 2)
332
333
typedef struct _gc_stack gc_stack;
334
335
/* The stack used for graph traversal is stored as a linked list of segments */
336
struct _gc_stack {
337
  gc_stack        *prev;
338
  gc_stack        *next;
339
  zend_refcounted *data[GC_STACK_SEGMENT_SIZE];
340
};
341
342
#define GC_STACK_DCL(init) \
343
221k
  gc_stack *_stack = init; \
344
221k
  size_t    _top = 0;
345
346
#define GC_STACK_PUSH(ref) \
347
2.09M
  gc_stack_push(&_stack, &_top, ref);
348
349
#define GC_STACK_POP() \
350
2.31M
  gc_stack_pop(&_stack, &_top)
351
352
static zend_never_inline gc_stack* gc_stack_next(gc_stack *stack)
353
24.4k
{
354
24.4k
  if (UNEXPECTED(!stack->next)) {
355
23.0k
    gc_stack *segment = emalloc(sizeof(gc_stack));
356
23.0k
    segment->prev = stack;
357
23.0k
    segment->next = NULL;
358
23.0k
    stack->next = segment;
359
23.0k
  }
360
24.4k
  return stack->next;
361
24.4k
}
362
363
static zend_always_inline void gc_stack_push(gc_stack **stack, size_t *top, zend_refcounted *ref)
364
2.09M
{
365
2.09M
  if (UNEXPECTED(*top == GC_STACK_SEGMENT_SIZE)) {
366
1.84k
    (*stack) = gc_stack_next(*stack);
367
1.84k
    (*top) = 0;
368
1.84k
  }
369
2.09M
  (*stack)->data[(*top)++] = ref;
370
2.09M
}
371
372
static zend_always_inline zend_refcounted* gc_stack_pop(gc_stack **stack, size_t *top)
373
2.31M
{
374
2.31M
  if (UNEXPECTED((*top) == 0)) {
375
223k
    if (!(*stack)->prev) {
376
221k
      return NULL;
377
221k
    } else {
378
1.84k
      (*stack) = (*stack)->prev;
379
1.84k
      (*top) = GC_STACK_SEGMENT_SIZE - 1;
380
1.84k
      return (*stack)->data[GC_STACK_SEGMENT_SIZE - 1];
381
1.84k
    }
382
2.09M
  } else {
383
2.09M
    return (*stack)->data[--(*top)];
384
2.09M
  }
385
2.31M
}
386
387
static void gc_stack_free(gc_stack *stack)
388
26.7k
{
389
26.7k
  gc_stack *p = stack->next;
390
391
49.7k
  while (p) {
392
23.0k
    stack = p->next;
393
23.0k
    efree(p);
394
23.0k
    p = stack;
395
23.0k
  }
396
26.7k
}
397
398
/* Map a full index to a compressed index.
399
 *
400
 * The root buffer can have up to 2^30 entries, but we only have 20 bits to
401
 * store the index. So we use the 1<<19 bit as a compression flag and use the
402
 * other 19 bits to store the index modulo 2^19. */
403
static zend_always_inline uint32_t gc_compress(uint32_t idx)
404
3.07M
{
405
3.07M
  if (EXPECTED(idx < GC_MAX_UNCOMPRESSED)) {
406
3.07M
    return idx;
407
3.07M
  }
408
0
  return (idx % GC_MAX_UNCOMPRESSED) | GC_MAX_UNCOMPRESSED;
409
3.07M
}
410
411
/* Find the root buffer entry given a pointer and a compressed index.
412
 * Iterate through the root buffer in steps of 2^19 until the pointer
413
 * matches. */
414
static zend_always_inline gc_root_buffer* gc_decompress(zend_refcounted *ref, uint32_t idx)
415
0
{
416
0
  gc_root_buffer *root = GC_IDX2PTR(idx);
417
418
0
  if (EXPECTED(GC_GET_PTR(root->ref) == ref)) {
419
0
    return root;
420
0
  }
421
422
0
  while (1) {
423
0
    idx += GC_MAX_UNCOMPRESSED;
424
0
    ZEND_ASSERT(idx < GC_G(first_unused));
425
0
    root = GC_IDX2PTR(idx);
426
0
    if (GC_GET_PTR(root->ref) == ref) {
427
0
      return root;
428
0
    }
429
0
  }
430
0
}
431
432
/* Get the index of the next unused root buffer entry, and remove it from the
433
 * unused list. GC_HAS_UNUSED() must be true before calling this. */
434
static zend_always_inline uint32_t gc_fetch_unused(void)
435
838k
{
436
838k
  uint32_t idx;
437
838k
  gc_root_buffer *root;
438
439
838k
  ZEND_ASSERT(GC_HAS_UNUSED());
440
838k
  idx = GC_G(unused);
441
838k
  root = GC_IDX2PTR(idx);
442
838k
  ZEND_ASSERT(GC_IS_UNUSED(root->ref));
443
838k
  GC_G(unused) = GC_LIST2IDX(root->ref);
444
838k
  return idx;
445
838k
}
446
447
/* Add a root buffer entry to the unused list */
448
static zend_always_inline void gc_link_unused(gc_root_buffer *root)
449
3.06M
{
450
3.06M
  root->ref = GC_IDX2LIST(GC_G(unused));
451
3.06M
  GC_G(unused) = GC_PTR2IDX(root);
452
3.06M
}
453
454
static zend_always_inline uint32_t gc_fetch_next_unused(void)
455
2.22M
{
456
2.22M
  uint32_t idx;
457
458
2.22M
  ZEND_ASSERT(GC_HAS_NEXT_UNUSED());
459
2.22M
  idx = GC_G(first_unused);
460
2.22M
  GC_G(first_unused) = GC_G(first_unused) + 1;
461
2.22M
  return idx;
462
2.22M
}
463
464
#if ZEND_GC_DEBUG > 1
465
static const char *gc_color_name(uint32_t color) {
466
  switch (color) {
467
    case GC_BLACK: return "black";
468
    case GC_WHITE: return "white";
469
    case GC_GREY: return "grey";
470
    case GC_PURPLE: return "purple";
471
    default: return "unknown";
472
  }
473
}
474
static void gc_trace_ref(zend_refcounted *ref) {
475
  if (GC_TYPE(ref) == IS_OBJECT) {
476
    zend_object *obj = (zend_object *) ref;
477
    fprintf(stderr, "[%p] rc=%d addr=%d %s object(%s)#%d ",
478
      ref, GC_REFCOUNT(ref), GC_REF_ADDRESS(ref),
479
      gc_color_name(GC_REF_COLOR(ref)),
480
      obj->ce->name->val, obj->handle);
481
  } else if (GC_TYPE(ref) == IS_ARRAY) {
482
    zend_array *arr = (zend_array *) ref;
483
    fprintf(stderr, "[%p] rc=%d addr=%d %s array(%d) ",
484
      ref, GC_REFCOUNT(ref), GC_REF_ADDRESS(ref),
485
      gc_color_name(GC_REF_COLOR(ref)),
486
      zend_hash_num_elements(arr));
487
  } else {
488
    fprintf(stderr, "[%p] rc=%d addr=%d %s %s ",
489
      ref, GC_REFCOUNT(ref), GC_REF_ADDRESS(ref),
490
      gc_color_name(GC_REF_COLOR(ref)),
491
      GC_TYPE(ref) == IS_REFERENCE
492
        ? "reference" : zend_get_type_by_const(GC_TYPE(ref)));
493
  }
494
}
495
#endif
496
497
/* Mark a root buffer entry unused */
498
static zend_always_inline void gc_remove_from_roots(gc_root_buffer *root)
499
3.01M
{
500
3.01M
  GC_LINK_UNUSED(root);
501
3.01M
  GC_G(num_roots)--;
502
3.01M
  GC_BENCH_DEC(root_buf_length);
503
3.01M
}
504
505
static void root_buffer_dtor(zend_gc_globals *gc_globals)
506
0
{
507
0
  if (gc_globals->buf) {
508
0
    free(gc_globals->buf);
509
0
    gc_globals->buf = NULL;
510
0
  }
511
0
}
512
513
static void gc_globals_ctor_ex(zend_gc_globals *gc_globals)
514
16
{
515
16
  gc_globals->gc_enabled = false;
516
16
  gc_globals->gc_active = false;
517
16
  gc_globals->gc_protected = true;
518
16
  gc_globals->gc_full = false;
519
520
16
  gc_globals->buf = NULL;
521
16
  gc_globals->unused = GC_INVALID;
522
16
  gc_globals->first_unused = GC_INVALID;
523
16
  gc_globals->gc_threshold = GC_INVALID;
524
16
  gc_globals->buf_size = GC_INVALID;
525
16
  gc_globals->num_roots = 0;
526
527
16
  gc_globals->gc_runs = 0;
528
16
  gc_globals->collected = 0;
529
16
  gc_globals->collector_time = 0;
530
16
  gc_globals->dtor_time = 0;
531
16
  gc_globals->free_time = 0;
532
16
  gc_globals->activated_at = 0;
533
534
16
  gc_globals->dtor_idx = GC_FIRST_ROOT;
535
16
  gc_globals->dtor_end = 0;
536
16
  gc_globals->dtor_fiber = NULL;
537
16
  gc_globals->dtor_fiber_running = false;
538
539
#if GC_BENCH
540
  gc_globals->root_buf_length = 0;
541
  gc_globals->root_buf_peak = 0;
542
  gc_globals->zval_possible_root = 0;
543
  gc_globals->zval_buffered = 0;
544
  gc_globals->zval_remove_from_buffer = 0;
545
  gc_globals->zval_marked_grey = 0;
546
#endif
547
16
}
548
549
void gc_globals_ctor(void)
550
16
{
551
#ifdef ZTS
552
  ts_allocate_fast_id(&gc_globals_id, &gc_globals_offset, sizeof(zend_gc_globals), (ts_allocate_ctor) gc_globals_ctor_ex, (ts_allocate_dtor) root_buffer_dtor);
553
#else
554
16
  gc_globals_ctor_ex(&gc_globals);
555
16
#endif
556
16
}
557
558
void gc_globals_dtor(void)
559
0
{
560
0
#ifndef ZTS
561
0
  root_buffer_dtor(&gc_globals);
562
0
#endif
563
0
}
564
565
void gc_reset(void)
566
300k
{
567
300k
  if (GC_G(buf)) {
568
300k
    GC_G(gc_active) = 0;
569
300k
    GC_G(gc_protected) = 0;
570
300k
    GC_G(gc_full) = 0;
571
300k
    GC_G(unused) = GC_INVALID;
572
300k
    GC_G(first_unused) = GC_FIRST_ROOT;
573
300k
    GC_G(num_roots) = 0;
574
575
300k
    GC_G(gc_runs) = 0;
576
300k
    GC_G(collected) = 0;
577
578
300k
    GC_G(collector_time) = 0;
579
300k
    GC_G(dtor_time) = 0;
580
300k
    GC_G(free_time) = 0;
581
582
300k
    GC_G(dtor_idx) = GC_FIRST_ROOT;
583
300k
    GC_G(dtor_end) = 0;
584
300k
    GC_G(dtor_fiber) = NULL;
585
300k
    GC_G(dtor_fiber_running) = false;
586
587
#if GC_BENCH
588
    GC_G(root_buf_length) = 0;
589
    GC_G(root_buf_peak) = 0;
590
    GC_G(zval_possible_root) = 0;
591
    GC_G(zval_buffered) = 0;
592
    GC_G(zval_remove_from_buffer) = 0;
593
    GC_G(zval_marked_grey) = 0;
594
#endif
595
300k
  }
596
597
300k
  GC_G(activated_at) = zend_hrtime();
598
300k
}
599
600
/* Enable/disable the garbage collector.
601
 * Initialize globals if necessary. */
602
ZEND_API bool gc_enable(bool enable)
603
126k
{
604
126k
  bool old_enabled = GC_G(gc_enabled);
605
126k
  GC_G(gc_enabled) = enable;
606
126k
  if (enable && !old_enabled && GC_G(buf) == NULL) {
607
16
    GC_G(buf) = (gc_root_buffer*) pemalloc(sizeof(gc_root_buffer) * GC_DEFAULT_BUF_SIZE, 1);
608
16
    GC_G(buf)[0].ref = NULL;
609
16
    GC_G(buf_size) = GC_DEFAULT_BUF_SIZE;
610
16
    GC_G(gc_threshold) = GC_THRESHOLD_DEFAULT;
611
16
    gc_reset();
612
16
  }
613
126k
  return old_enabled;
614
126k
}
615
616
ZEND_API bool gc_enabled(void)
617
175
{
618
175
  return GC_G(gc_enabled);
619
175
}
620
621
/* Protect the GC root buffer (prevent additions) */
622
ZEND_API bool gc_protect(bool protect)
623
27.4k
{
624
27.4k
  bool old_protected = GC_G(gc_protected);
625
27.4k
  GC_G(gc_protected) = protect;
626
27.4k
  return old_protected;
627
27.4k
}
628
629
ZEND_API bool gc_protected(void)
630
0
{
631
0
  return GC_G(gc_protected);
632
0
}
633
634
static void gc_grow_root_buffer(void)
635
1
{
636
1
  size_t new_size;
637
638
1
  if (GC_G(buf_size) >= GC_MAX_BUF_SIZE) {
639
0
    if (!GC_G(gc_full)) {
640
0
      zend_error(E_WARNING, "GC buffer overflow (GC disabled)\n");
641
0
      GC_G(gc_active) = 1;
642
0
      GC_G(gc_protected) = 1;
643
0
      GC_G(gc_full) = 1;
644
0
      return;
645
0
    }
646
0
  }
647
1
  if (GC_G(buf_size) < GC_BUF_GROW_STEP) {
648
1
    new_size = GC_G(buf_size) * 2;
649
1
  } else {
650
0
    new_size = GC_G(buf_size) + GC_BUF_GROW_STEP;
651
0
  }
652
1
  if (new_size > GC_MAX_BUF_SIZE) {
653
0
    new_size = GC_MAX_BUF_SIZE;
654
0
  }
655
1
  GC_G(buf) = perealloc(GC_G(buf), sizeof(gc_root_buffer) * new_size, 1);
656
1
  GC_G(buf_size) = new_size;
657
1
}
658
659
/* Adjust the GC activation threshold given the number of nodes collected by the last run */
660
static void gc_adjust_threshold(int count)
661
0
{
662
0
  uint32_t new_threshold;
663
664
  /* TODO Very simple heuristic for dynamic GC buffer resizing:
665
   * If there are "too few" collections, increase the collection threshold
666
   * by a fixed step */
667
0
  if (count < GC_THRESHOLD_TRIGGER || GC_G(num_roots) >= GC_G(gc_threshold)) {
668
    /* increase */
669
0
    if (GC_G(gc_threshold) < GC_THRESHOLD_MAX) {
670
0
      new_threshold = GC_G(gc_threshold) + GC_THRESHOLD_STEP;
671
0
      if (new_threshold > GC_THRESHOLD_MAX) {
672
0
        new_threshold = GC_THRESHOLD_MAX;
673
0
      }
674
0
      if (new_threshold > GC_G(buf_size)) {
675
0
        gc_grow_root_buffer();
676
0
      }
677
0
      if (new_threshold <= GC_G(buf_size)) {
678
0
        GC_G(gc_threshold) = new_threshold;
679
0
      }
680
0
    }
681
0
  } else if (GC_G(gc_threshold) > GC_THRESHOLD_DEFAULT) {
682
0
    new_threshold = GC_G(gc_threshold) - GC_THRESHOLD_STEP;
683
0
    if (new_threshold < GC_THRESHOLD_DEFAULT) {
684
0
      new_threshold = GC_THRESHOLD_DEFAULT;
685
0
    }
686
0
    GC_G(gc_threshold) = new_threshold;
687
0
  }
688
0
}
689
690
/* Perform a GC run and then add a node as a possible root. */
691
static zend_never_inline void ZEND_FASTCALL gc_possible_root_when_full(zend_refcounted *ref)
692
0
{
693
0
  uint32_t idx;
694
0
  gc_root_buffer *newRoot;
695
696
0
  ZEND_ASSERT(GC_TYPE(ref) == IS_ARRAY || GC_TYPE(ref) == IS_OBJECT);
697
0
  ZEND_ASSERT(GC_INFO(ref) == 0);
698
699
0
  if (GC_G(gc_enabled) && !GC_G(gc_active)) {
700
0
    GC_ADDREF(ref);
701
0
    gc_adjust_threshold(gc_collect_cycles());
702
0
    if (UNEXPECTED(GC_DELREF(ref) == 0)) {
703
0
      rc_dtor_func(ref);
704
0
      return;
705
0
    } else if (UNEXPECTED(GC_INFO(ref))) {
706
0
      return;
707
0
    }
708
0
  }
709
710
0
  if (GC_HAS_UNUSED()) {
711
0
    idx = GC_FETCH_UNUSED();
712
0
  } else if (EXPECTED(GC_HAS_NEXT_UNUSED())) {
713
0
    idx = GC_FETCH_NEXT_UNUSED();
714
0
  } else {
715
0
    gc_grow_root_buffer();
716
0
    if (UNEXPECTED(!GC_HAS_NEXT_UNUSED())) {
717
0
      return;
718
0
    }
719
0
    idx = GC_FETCH_NEXT_UNUSED();
720
0
  }
721
722
0
  newRoot = GC_IDX2PTR(idx);
723
0
  newRoot->ref = ref; /* GC_ROOT tag is 0 */
724
0
  GC_TRACE_SET_COLOR(ref, GC_PURPLE);
725
726
0
  idx = gc_compress(idx);
727
0
  GC_REF_SET_INFO(ref, idx | GC_PURPLE);
728
0
  GC_G(num_roots)++;
729
730
0
  GC_BENCH_INC(zval_buffered);
731
0
  GC_BENCH_INC(root_buf_length);
732
0
  GC_BENCH_PEAK(root_buf_peak, root_buf_length);
733
0
}
734
735
/* Add a possible root node to the buffer.
736
 * Maybe perform a GC run. */
737
ZEND_API void ZEND_FASTCALL gc_possible_root(zend_refcounted *ref)
738
2.60M
{
739
2.60M
  uint32_t idx;
740
2.60M
  gc_root_buffer *newRoot;
741
742
2.60M
  if (UNEXPECTED(GC_G(gc_protected))) {
743
113k
    return;
744
113k
  }
745
746
2.48M
  GC_BENCH_INC(zval_possible_root);
747
748
2.48M
  if (EXPECTED(GC_HAS_UNUSED())) {
749
838k
    idx = GC_FETCH_UNUSED();
750
1.65M
  } else if (EXPECTED(GC_HAS_NEXT_UNUSED_UNDER_THRESHOLD())) {
751
1.65M
    idx = GC_FETCH_NEXT_UNUSED();
752
1.65M
  } else {
753
0
    gc_possible_root_when_full(ref);
754
0
    return;
755
0
  }
756
757
2.48M
  ZEND_ASSERT(GC_TYPE(ref) == IS_ARRAY || GC_TYPE(ref) == IS_OBJECT);
758
2.48M
  ZEND_ASSERT(GC_INFO(ref) == 0);
759
760
2.48M
  newRoot = GC_IDX2PTR(idx);
761
2.48M
  newRoot->ref = ref; /* GC_ROOT tag is 0 */
762
2.48M
  GC_TRACE_SET_COLOR(ref, GC_PURPLE);
763
764
2.48M
  idx = gc_compress(idx);
765
2.48M
  GC_REF_SET_INFO(ref, idx | GC_PURPLE);
766
2.48M
  GC_G(num_roots)++;
767
768
2.48M
  GC_BENCH_INC(zval_buffered);
769
2.48M
  GC_BENCH_INC(root_buf_length);
770
2.48M
  GC_BENCH_PEAK(root_buf_peak, root_buf_length);
771
2.48M
}
772
773
/* Add an extra root during a GC run */
774
static void ZEND_FASTCALL gc_extra_root(zend_refcounted *ref)
775
46
{
776
46
  uint32_t idx;
777
46
  gc_root_buffer *newRoot;
778
779
46
  if (EXPECTED(GC_HAS_UNUSED())) {
780
0
    idx = GC_FETCH_UNUSED();
781
46
  } else if (EXPECTED(GC_HAS_NEXT_UNUSED())) {
782
46
    idx = GC_FETCH_NEXT_UNUSED();
783
46
  } else {
784
0
    gc_grow_root_buffer();
785
0
    if (UNEXPECTED(!GC_HAS_NEXT_UNUSED())) {
786
      /* TODO: can this really happen? */
787
0
      return;
788
0
    }
789
0
    idx = GC_FETCH_NEXT_UNUSED();
790
0
  }
791
792
46
  ZEND_ASSERT(GC_TYPE(ref) == IS_ARRAY || GC_TYPE(ref) == IS_OBJECT);
793
46
  ZEND_ASSERT(GC_REF_ADDRESS(ref) == 0);
794
795
46
  newRoot = GC_IDX2PTR(idx);
796
46
  newRoot->ref = ref; /* GC_ROOT tag is 0 */
797
798
46
  idx = gc_compress(idx);
799
46
  GC_REF_SET_INFO(ref, idx | GC_REF_COLOR(ref));
800
46
  GC_G(num_roots)++;
801
802
46
  GC_BENCH_INC(zval_buffered);
803
46
  GC_BENCH_INC(root_buf_length);
804
46
  GC_BENCH_PEAK(root_buf_peak, root_buf_length);
805
46
}
806
807
/* Remove a node from the root buffer given its compressed index */
808
static zend_never_inline void ZEND_FASTCALL gc_remove_compressed(zend_refcounted *ref, uint32_t idx)
809
0
{
810
0
  gc_root_buffer *root = gc_decompress(ref, idx);
811
0
  gc_remove_from_roots(root);
812
0
}
813
814
ZEND_API void ZEND_FASTCALL gc_remove_from_buffer(zend_refcounted *ref)
815
2.96M
{
816
2.96M
  gc_root_buffer *root;
817
2.96M
  uint32_t idx = GC_REF_ADDRESS(ref);
818
819
2.96M
  GC_BENCH_INC(zval_remove_from_buffer);
820
821
2.96M
  if (!GC_REF_CHECK_COLOR(ref, GC_BLACK)) {
822
2.25M
    GC_TRACE_SET_COLOR(ref, GC_BLACK);
823
2.25M
  }
824
2.96M
  GC_REF_SET_INFO(ref, 0);
825
826
  /* Perform decompression only in case of large buffers */
827
2.96M
  if (UNEXPECTED(GC_G(first_unused) >= GC_MAX_UNCOMPRESSED)) {
828
0
    gc_remove_compressed(ref, idx);
829
0
    return;
830
0
  }
831
832
2.96M
  ZEND_ASSERT(idx);
833
2.96M
  root = GC_IDX2PTR(idx);
834
2.96M
  gc_remove_from_roots(root);
835
2.96M
}
836
837
/* Mark all nodes reachable from ref as black (live). Restore the reference
838
 * counts decremented by gc_mark_grey(). See ScanBlack() in Bacon & Rajan.
839
 * To implement a depth-first search, discovered nodes are added to a stack
840
 * which is processed iteratively. */
841
static void gc_scan_black(zend_refcounted *ref, gc_stack *stack)
842
40.6k
{
843
40.6k
  HashTable *ht;
844
40.6k
  Bucket *p;
845
40.6k
  zval *zv;
846
40.6k
  uint32_t n;
847
40.6k
  GC_STACK_DCL(stack);
848
849
211k
tail_call:
850
211k
  if (GC_TYPE(ref) == IS_OBJECT) {
851
43.2k
    zend_object *obj = (zend_object*)ref;
852
853
43.2k
    if (EXPECTED(!(OBJ_FLAGS(ref) & IS_OBJ_FREE_CALLED))) {
854
43.2k
      zval *table;
855
43.2k
      int len;
856
857
43.2k
      if (UNEXPECTED(GC_FLAGS(obj) & IS_OBJ_WEAKLY_REFERENCED)) {
858
815
        zend_weakmap_get_object_key_entry_gc(obj, &table, &len);
859
815
        n = len;
860
815
        zv = table;
861
1.49k
        for (; n != 0; n-=2) {
862
676
          ZEND_ASSERT(Z_TYPE_P(zv) == IS_PTR);
863
676
          zval *entry = (zval*) Z_PTR_P(zv);
864
676
          zval *weakmap = zv+1;
865
676
          ZEND_ASSERT(Z_REFCOUNTED_P(weakmap));
866
676
          if (Z_OPT_COLLECTABLE_P(entry)) {
867
545
            GC_UNSET_FROM_WEAKMAP_KEY(entry);
868
545
            if (GC_REF_CHECK_COLOR(Z_COUNTED_P(weakmap), GC_GREY)) {
869
              /* Weakmap was scanned in gc_mark_roots, we must
870
               * ensure that it's eventually scanned in
871
               * gc_scan_roots as well. */
872
63
              if (!GC_REF_ADDRESS(Z_COUNTED_P(weakmap))) {
873
38
                gc_extra_root(Z_COUNTED_P(weakmap));
874
38
              }
875
482
            } else if (/* GC_REF_CHECK_COLOR(Z_COUNTED_P(weakmap), GC_BLACK) && */ !GC_FROM_WEAKMAP(entry)) {
876
              /* Both the entry weakmap and key are BLACK, so we
877
               * can mark the entry BLACK as well.
878
               * !GC_FROM_WEAKMAP(entry) means that the weakmap
879
               * was already scanned black (or will not be
880
               * scanned), so it's our responsibility to mark the
881
               * entry */
882
441
              ZEND_ASSERT(GC_REF_CHECK_COLOR(Z_COUNTED_P(weakmap), GC_BLACK));
883
441
              ref = Z_COUNTED_P(entry);
884
441
              GC_ADDREF(ref);
885
441
              if (!GC_REF_CHECK_COLOR(ref, GC_BLACK)) {
886
70
                GC_REF_SET_BLACK(ref);
887
70
                GC_STACK_PUSH(ref);
888
70
              }
889
441
            }
890
545
          }
891
676
          zv+=2;
892
676
        }
893
815
      }
894
895
43.2k
      if (UNEXPECTED(obj->handlers->get_gc == zend_weakmap_get_gc)) {
896
182
        zend_weakmap_get_key_entry_gc(obj, &table, &len);
897
182
        n = len;
898
182
        zv = table;
899
473
        for (; n != 0; n-=2) {
900
291
          ZEND_ASSERT(Z_TYPE_P(zv+1) == IS_PTR);
901
291
          zval *key = zv;
902
291
          zval *entry = (zval*) Z_PTR_P(zv+1);
903
291
          if (Z_OPT_COLLECTABLE_P(entry)) {
904
182
            GC_UNSET_FROM_WEAKMAP(entry);
905
182
            if (GC_REF_CHECK_COLOR(Z_COUNTED_P(key), GC_GREY)) {
906
              /* Key was scanned in gc_mark_roots, we must
907
               * ensure that it's eventually scanned in
908
               * gc_scan_roots as well. */
909
62
              if (!GC_REF_ADDRESS(Z_COUNTED_P(key))) {
910
8
                gc_extra_root(Z_COUNTED_P(key));
911
8
              }
912
120
            } else if (/* GC_REF_CHECK_COLOR(Z_COUNTED_P(key), GC_BLACK) && */ !GC_FROM_WEAKMAP_KEY(entry)) {
913
              /* Both the entry weakmap and key are BLACK, so we
914
               * can mark the entry BLACK as well.
915
               * !GC_FROM_WEAKMAP_KEY(entry) means that the key
916
               * was already scanned black (or will not be
917
               * scanned), so it's our responsibility to mark the
918
               * entry */
919
107
              ZEND_ASSERT(GC_REF_CHECK_COLOR(Z_COUNTED_P(key), GC_BLACK));
920
107
              ref = Z_COUNTED_P(entry);
921
107
              GC_ADDREF(ref);
922
107
              if (!GC_REF_CHECK_COLOR(ref, GC_BLACK)) {
923
102
                GC_REF_SET_BLACK(ref);
924
102
                GC_STACK_PUSH(ref);
925
102
              }
926
107
            }
927
182
          }
928
291
          zv += 2;
929
291
        }
930
182
        goto next;
931
182
      }
932
933
43.1k
      ht = obj->handlers->get_gc(obj, &table, &len);
934
43.1k
      n = len;
935
43.1k
      zv = table;
936
43.1k
      if (UNEXPECTED(ht)) {
937
15.5k
        GC_ADDREF(ht);
938
15.5k
        if (!GC_REF_CHECK_COLOR(ht, GC_BLACK)) {
939
15.5k
          GC_REF_SET_BLACK(ht);
940
21.0k
          for (; n != 0; n--) {
941
5.46k
            if (Z_COLLECTABLE_P(zv)) {
942
1.05k
              ref = Z_COUNTED_P(zv);
943
1.05k
              GC_ADDREF(ref);
944
1.05k
              if (!GC_REF_CHECK_COLOR(ref, GC_BLACK)) {
945
790
                GC_REF_SET_BLACK(ref);
946
790
                GC_STACK_PUSH(ref);
947
790
              }
948
1.05k
            }
949
5.46k
            zv++;
950
5.46k
          }
951
15.5k
          goto handle_ht;
952
15.5k
        }
953
15.5k
      }
954
955
113k
handle_zvals:
956
2.50M
      for (; n != 0; n--) {
957
2.41M
        if (Z_COLLECTABLE_P(zv)) {
958
28.3k
          ref = Z_COUNTED_P(zv);
959
28.3k
          GC_ADDREF(ref);
960
28.3k
          if (!GC_REF_CHECK_COLOR(ref, GC_BLACK)) {
961
24.2k
            GC_REF_SET_BLACK(ref);
962
24.2k
            zv++;
963
106k
            while (--n) {
964
81.9k
              if (Z_COLLECTABLE_P(zv)) {
965
71.1k
                zend_refcounted *ref = Z_COUNTED_P(zv);
966
71.1k
                GC_ADDREF(ref);
967
71.1k
                if (!GC_REF_CHECK_COLOR(ref, GC_BLACK)) {
968
69.2k
                  GC_REF_SET_BLACK(ref);
969
69.2k
                  GC_STACK_PUSH(ref);
970
69.2k
                }
971
71.1k
              }
972
81.9k
              zv++;
973
81.9k
            }
974
24.2k
            goto tail_call;
975
24.2k
          }
976
28.3k
        }
977
2.39M
        zv++;
978
2.39M
      }
979
113k
    }
980
168k
  } else if (GC_TYPE(ref) == IS_ARRAY) {
981
163k
    ZEND_ASSERT((zend_array*)ref != &EG(symbol_table));
982
163k
    ht = (zend_array*)ref;
983
179k
handle_ht:
984
179k
    n = ht->nNumUsed;
985
179k
    zv = ht->arPacked;
986
179k
    if (HT_IS_PACKED(ht)) {
987
86.3k
      goto handle_zvals;
988
86.3k
    }
989
990
93.0k
    p = (Bucket*)zv;
991
270k
    for (; n != 0; n--) {
992
249k
      zv = &p->val;
993
249k
      if (Z_TYPE_P(zv) == IS_INDIRECT) {
994
7.72k
        zv = Z_INDIRECT_P(zv);
995
7.72k
      }
996
249k
      if (Z_COLLECTABLE_P(zv)) {
997
74.1k
        ref = Z_COUNTED_P(zv);
998
74.1k
        GC_ADDREF(ref);
999
74.1k
        if (!GC_REF_CHECK_COLOR(ref, GC_BLACK)) {
1000
72.0k
          GC_REF_SET_BLACK(ref);
1001
72.0k
          p++;
1002
142k
          while (--n) {
1003
70.7k
            zv = &p->val;
1004
70.7k
            if (Z_TYPE_P(zv) == IS_INDIRECT) {
1005
963
              zv = Z_INDIRECT_P(zv);
1006
963
            }
1007
70.7k
            if (Z_COLLECTABLE_P(zv)) {
1008
4.09k
              zend_refcounted *ref = Z_COUNTED_P(zv);
1009
4.09k
              GC_ADDREF(ref);
1010
4.09k
              if (!GC_REF_CHECK_COLOR(ref, GC_BLACK)) {
1011
2.79k
                GC_REF_SET_BLACK(ref);
1012
2.79k
                GC_STACK_PUSH(ref);
1013
2.79k
              }
1014
4.09k
            }
1015
70.7k
            p++;
1016
70.7k
          }
1017
72.0k
          goto tail_call;
1018
72.0k
        }
1019
74.1k
      }
1020
177k
      p++;
1021
177k
    }
1022
93.0k
  } else if (GC_TYPE(ref) == IS_REFERENCE) {
1023
4.45k
    if (Z_COLLECTABLE(((zend_reference*)ref)->val)) {
1024
1.77k
      ref = Z_COUNTED(((zend_reference*)ref)->val);
1025
1.77k
      GC_ADDREF(ref);
1026
1.77k
      if (!GC_REF_CHECK_COLOR(ref, GC_BLACK)) {
1027
1.62k
        GC_REF_SET_BLACK(ref);
1028
1.62k
        goto tail_call;
1029
1.62k
      }
1030
1.77k
    }
1031
4.45k
  }
1032
1033
113k
next:
1034
113k
  ref = GC_STACK_POP();
1035
113k
  if (ref) {
1036
73.0k
    goto tail_call;
1037
73.0k
  }
1038
113k
}
1039
1040
/* Traverse the graph of nodes referred to by ref. Decrement the reference
1041
 * counts and mark visited nodes grey. See MarkGray() in Bacon & Rajan. */
1042
static void gc_mark_grey(zend_refcounted *ref, gc_stack *stack)
1043
74.0k
{
1044
74.0k
  HashTable *ht;
1045
74.0k
  Bucket *p;
1046
74.0k
  zval *zv;
1047
74.0k
  uint32_t n;
1048
74.0k
  GC_STACK_DCL(stack);
1049
1050
982k
tail_call:
1051
982k
  GC_BENCH_INC(zval_marked_grey);
1052
1053
982k
  if (GC_TYPE(ref) == IS_OBJECT) {
1054
491k
    zend_object *obj = (zend_object*)ref;
1055
1056
491k
    if (EXPECTED(!(OBJ_FLAGS(ref) & IS_OBJ_FREE_CALLED))) {
1057
491k
      zval *table;
1058
491k
      int len;
1059
1060
491k
      if (UNEXPECTED(GC_FLAGS(obj) & IS_OBJ_WEAKLY_REFERENCED)) {
1061
1.25k
        zend_weakmap_get_object_key_entry_gc(obj, &table, &len);
1062
1.25k
        n = len;
1063
1.25k
        zv = table;
1064
2.04k
        for (; n != 0; n-=2) {
1065
790
          ZEND_ASSERT(Z_TYPE_P(zv) == IS_PTR);
1066
790
          zval *entry = (zval*) Z_PTR_P(zv);
1067
790
          zval *weakmap = zv+1;
1068
790
          ZEND_ASSERT(Z_REFCOUNTED_P(weakmap));
1069
790
          if (Z_COLLECTABLE_P(entry)) {
1070
654
            GC_SET_FROM_WEAKMAP_KEY(entry);
1071
654
            ref = Z_COUNTED_P(entry);
1072
            /* Only DELREF if the contribution from the weakmap has
1073
             * not been cancelled yet */
1074
654
            if (!GC_FROM_WEAKMAP(entry)) {
1075
538
              GC_DELREF(ref);
1076
538
            }
1077
654
            if (!GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1078
100
              GC_REF_SET_COLOR(ref, GC_GREY);
1079
100
              GC_STACK_PUSH(ref);
1080
100
            }
1081
654
          }
1082
790
          zv+=2;
1083
790
        }
1084
1.25k
      }
1085
1086
491k
      if (UNEXPECTED(obj->handlers->get_gc == zend_weakmap_get_gc)) {
1087
244
        zend_weakmap_get_entry_gc(obj, &table, &len);
1088
244
        n = len;
1089
244
        zv = table;
1090
610
        for (; n != 0; n--) {
1091
366
          ZEND_ASSERT(Z_TYPE_P(zv) == IS_PTR);
1092
366
          zval *entry = (zval*) Z_PTR_P(zv);
1093
366
          if (Z_COLLECTABLE_P(entry)) {
1094
257
            GC_SET_FROM_WEAKMAP(entry);
1095
257
            ref = Z_COUNTED_P(entry);
1096
            /* Only DELREF if the contribution from the weakmap key
1097
             * has not been cancelled yet */
1098
257
            if (!GC_FROM_WEAKMAP_KEY(entry)) {
1099
129
              GC_DELREF(ref);
1100
129
            }
1101
257
            if (!GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1102
117
              GC_REF_SET_COLOR(ref, GC_GREY);
1103
117
              GC_STACK_PUSH(ref);
1104
117
            }
1105
257
          }
1106
366
          zv++;
1107
366
        }
1108
244
        goto next;
1109
244
      }
1110
1111
491k
      ht = obj->handlers->get_gc(obj, &table, &len);
1112
491k
      n = len;
1113
491k
      zv = table;
1114
491k
      if (UNEXPECTED(ht)) {
1115
455k
        GC_DELREF(ht);
1116
455k
        if (!GC_REF_CHECK_COLOR(ht, GC_GREY)) {
1117
455k
          GC_REF_SET_COLOR(ht, GC_GREY);
1118
617k
          for (; n != 0; n--) {
1119
162k
            if (Z_COLLECTABLE_P(zv)) {
1120
156k
              ref = Z_COUNTED_P(zv);
1121
156k
              GC_DELREF(ref);
1122
156k
              if (!GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1123
153k
                GC_REF_SET_COLOR(ref, GC_GREY);
1124
153k
                GC_STACK_PUSH(ref);
1125
153k
              }
1126
156k
            }
1127
162k
            zv++;
1128
162k
          }
1129
455k
          goto handle_ht;
1130
455k
        }
1131
455k
      }
1132
142k
handle_zvals:
1133
2.65M
      for (; n != 0; n--) {
1134
2.54M
        if (Z_COLLECTABLE_P(zv)) {
1135
73.0k
          ref = Z_COUNTED_P(zv);
1136
73.0k
          GC_DELREF(ref);
1137
73.0k
          if (!GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1138
29.5k
            GC_REF_SET_COLOR(ref, GC_GREY);
1139
29.5k
            zv++;
1140
113k
            while (--n) {
1141
84.4k
              if (Z_COLLECTABLE_P(zv)) {
1142
72.9k
                zend_refcounted *ref = Z_COUNTED_P(zv);
1143
72.9k
                GC_DELREF(ref);
1144
72.9k
                if (!GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1145
68.7k
                  GC_REF_SET_COLOR(ref, GC_GREY);
1146
68.7k
                  GC_STACK_PUSH(ref);
1147
68.7k
                }
1148
72.9k
              }
1149
84.4k
              zv++;
1150
84.4k
            }
1151
29.5k
            goto tail_call;
1152
29.5k
          }
1153
73.0k
        }
1154
2.51M
        zv++;
1155
2.51M
      }
1156
142k
    }
1157
491k
  } else if (GC_TYPE(ref) == IS_ARRAY) {
1158
473k
    ZEND_ASSERT(((zend_array*)ref) != &EG(symbol_table));
1159
473k
    ht = (zend_array*)ref;
1160
928k
handle_ht:
1161
928k
    n = ht->nNumUsed;
1162
928k
    if (HT_IS_PACKED(ht)) {
1163
106k
            zv = ht->arPacked;
1164
106k
            goto handle_zvals;
1165
106k
    }
1166
1167
822k
    p = ht->arData;
1168
1.61M
    for (; n != 0; n--) {
1169
1.09M
      zv = &p->val;
1170
1.09M
      if (Z_TYPE_P(zv) == IS_INDIRECT) {
1171
322k
        zv = Z_INDIRECT_P(zv);
1172
322k
      }
1173
1.09M
      if (Z_COLLECTABLE_P(zv)) {
1174
449k
        ref = Z_COUNTED_P(zv);
1175
449k
        GC_DELREF(ref);
1176
449k
        if (!GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1177
302k
          GC_REF_SET_COLOR(ref, GC_GREY);
1178
302k
          p++;
1179
1.06M
          while (--n) {
1180
765k
            zv = &p->val;
1181
765k
            if (Z_TYPE_P(zv) == IS_INDIRECT) {
1182
53.6k
              zv = Z_INDIRECT_P(zv);
1183
53.6k
            }
1184
765k
            if (Z_COLLECTABLE_P(zv)) {
1185
570k
              zend_refcounted *ref = Z_COUNTED_P(zv);
1186
570k
              GC_DELREF(ref);
1187
570k
              if (!GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1188
350k
                GC_REF_SET_COLOR(ref, GC_GREY);
1189
350k
                GC_STACK_PUSH(ref);
1190
350k
              }
1191
570k
            }
1192
765k
            p++;
1193
765k
          }
1194
302k
          goto tail_call;
1195
302k
        }
1196
449k
      }
1197
793k
      p++;
1198
793k
    }
1199
822k
  } else if (GC_TYPE(ref) == IS_REFERENCE) {
1200
17.7k
    if (Z_COLLECTABLE(((zend_reference*)ref)->val)) {
1201
13.9k
      ref = Z_COUNTED(((zend_reference*)ref)->val);
1202
13.9k
      GC_DELREF(ref);
1203
13.9k
      if (!GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1204
3.83k
        GC_REF_SET_COLOR(ref, GC_GREY);
1205
3.83k
        goto tail_call;
1206
3.83k
      }
1207
13.9k
    }
1208
17.7k
  }
1209
1210
646k
next:
1211
646k
  ref = GC_STACK_POP();
1212
646k
  if (ref) {
1213
572k
    goto tail_call;
1214
572k
  }
1215
646k
}
1216
1217
/* Two-Finger compaction algorithm */
1218
static void gc_compact(void)
1219
897k
{
1220
897k
  if (GC_G(num_roots) + GC_FIRST_ROOT != GC_G(first_unused)) {
1221
433k
    if (GC_G(num_roots)) {
1222
12.1k
      gc_root_buffer *free = GC_IDX2PTR(GC_FIRST_ROOT);
1223
12.1k
      gc_root_buffer *scan = GC_IDX2PTR(GC_G(first_unused) - 1);
1224
12.1k
      gc_root_buffer *end  = GC_IDX2PTR(GC_G(num_roots));
1225
12.1k
      uint32_t idx;
1226
12.1k
      zend_refcounted *p;
1227
1228
23.6k
      while (free < scan) {
1229
102k
        while (!GC_IS_UNUSED(free->ref)) {
1230
86.8k
          free++;
1231
86.8k
        }
1232
30.8k
        while (GC_IS_UNUSED(scan->ref)) {
1233
14.8k
          scan--;
1234
14.8k
        }
1235
15.9k
        if (scan > free) {
1236
8.57k
          p = scan->ref;
1237
8.57k
          free->ref = p;
1238
8.57k
          p = GC_GET_PTR(p);
1239
8.57k
          idx = gc_compress(GC_PTR2IDX(free));
1240
8.57k
          GC_REF_SET_INFO(p, idx | GC_REF_COLOR(p));
1241
8.57k
          free++;
1242
8.57k
          scan--;
1243
8.57k
          if (scan <= end) {
1244
4.49k
            break;
1245
4.49k
          }
1246
8.57k
        }
1247
15.9k
      }
1248
12.1k
    }
1249
433k
    GC_G(unused) = GC_INVALID;
1250
433k
    GC_G(first_unused) = GC_G(num_roots) + GC_FIRST_ROOT;
1251
433k
  }
1252
897k
}
1253
1254
/* For all roots marked purple, traverse the graph, decrementing the reference
1255
 * count of their child nodes. Mark visited nodes grey so that they are not
1256
 * visited again. See MarkRoots() in Bacon & Rajan. */
1257
static void gc_mark_roots(gc_stack *stack)
1258
26.7k
{
1259
26.7k
  gc_root_buffer *current, *last;
1260
1261
26.7k
  gc_compact();
1262
1263
26.7k
  current = GC_IDX2PTR(GC_FIRST_ROOT);
1264
26.7k
  last = GC_IDX2PTR(GC_G(first_unused));
1265
258k
  while (current != last) {
1266
231k
    if (GC_IS_ROOT(current->ref)) {
1267
231k
      if (GC_REF_CHECK_COLOR(current->ref, GC_PURPLE)) {
1268
74.0k
        GC_REF_SET_COLOR(current->ref, GC_GREY);
1269
74.0k
        gc_mark_grey(current->ref, stack);
1270
74.0k
      }
1271
231k
    }
1272
231k
    current++;
1273
231k
  }
1274
26.7k
}
1275
1276
/* Traverse the reference graph of ref. Evaluate grey nodes and mark them
1277
 * black (to keep) or white (to free). Note that nodes initially marked white
1278
 * may later become black if they are visited from a live node.
1279
 * See Scan() in Bacon & Rajan. */
1280
static void gc_scan(zend_refcounted *ref, gc_stack *stack)
1281
74.1k
{
1282
74.1k
  HashTable *ht;
1283
74.1k
  Bucket *p;
1284
74.1k
  zval *zv;
1285
74.1k
  uint32_t n;
1286
74.1k
  GC_STACK_DCL(stack);
1287
1288
1.26M
tail_call:
1289
1.26M
  if (!GC_REF_CHECK_COLOR(ref, GC_WHITE)) {
1290
431
    goto next;
1291
431
  }
1292
1293
1.26M
  if (GC_REFCOUNT(ref) > 0) {
1294
40.6k
    if (!GC_REF_CHECK_COLOR(ref, GC_BLACK)) {
1295
40.6k
      GC_REF_SET_BLACK(ref);
1296
40.6k
      if (UNEXPECTED(!_stack->next)) {
1297
22.5k
        gc_stack_next(_stack);
1298
22.5k
      }
1299
      /* Split stack and reuse the tail */
1300
40.6k
      _stack->next->prev = NULL;
1301
40.6k
      gc_scan_black(ref, _stack->next);
1302
40.6k
      _stack->next->prev = _stack;
1303
40.6k
    }
1304
40.6k
    goto next;
1305
40.6k
  }
1306
1307
1.22M
  if (GC_TYPE(ref) == IS_OBJECT) {
1308
450k
    zend_object *obj = (zend_object*)ref;
1309
450k
    if (EXPECTED(!(OBJ_FLAGS(ref) & IS_OBJ_FREE_CALLED))) {
1310
450k
      zval *table;
1311
450k
      int len;
1312
1313
450k
      if (UNEXPECTED(GC_FLAGS(obj) & IS_OBJ_WEAKLY_REFERENCED)) {
1314
507
        zend_weakmap_get_object_entry_gc(obj, &table, &len);
1315
507
        n = len;
1316
507
        zv = table;
1317
684
        for (; n != 0; n--) {
1318
177
          ZEND_ASSERT(Z_TYPE_P(zv) == IS_PTR);
1319
177
          zval *entry = (zval*) Z_PTR_P(zv);
1320
177
          if (Z_OPT_COLLECTABLE_P(entry)) {
1321
114
            ref = Z_COUNTED_P(entry);
1322
114
            if (GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1323
25
              GC_REF_SET_COLOR(ref, GC_WHITE);
1324
25
              GC_STACK_PUSH(ref);
1325
25
            }
1326
114
          }
1327
177
          zv++;
1328
177
        }
1329
507
      }
1330
1331
450k
      ht = obj->handlers->get_gc(obj, &table, &len);
1332
450k
      n = len;
1333
450k
      zv = table;
1334
450k
      if (UNEXPECTED(ht)) {
1335
441k
        if (GC_REF_CHECK_COLOR(ht, GC_GREY)) {
1336
441k
          GC_REF_SET_COLOR(ht, GC_WHITE);
1337
441k
          GC_STACK_PUSH((zend_refcounted *) ht);
1338
598k
          for (; n != 0; n--) {
1339
156k
            if (Z_COLLECTABLE_P(zv)) {
1340
155k
              ref = Z_COUNTED_P(zv);
1341
155k
              if (GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1342
153k
                GC_REF_SET_COLOR(ref, GC_WHITE);
1343
153k
                GC_STACK_PUSH(ref);
1344
153k
              }
1345
155k
            }
1346
156k
            zv++;
1347
156k
          }
1348
441k
          goto handle_ht;
1349
441k
        }
1350
441k
      }
1351
1352
50.6k
handle_zvals:
1353
297k
      for (; n != 0; n--) {
1354
253k
        if (Z_COLLECTABLE_P(zv)) {
1355
77.9k
          ref = Z_COUNTED_P(zv);
1356
77.9k
          if (GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1357
7.44k
            GC_REF_SET_COLOR(ref, GC_WHITE);
1358
7.44k
            zv++;
1359
15.0k
            while (--n) {
1360
7.58k
              if (Z_COLLECTABLE_P(zv)) {
1361
6.04k
                zend_refcounted *ref = Z_COUNTED_P(zv);
1362
6.04k
                if (GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1363
3.71k
                  GC_REF_SET_COLOR(ref, GC_WHITE);
1364
3.71k
                  GC_STACK_PUSH(ref);
1365
3.71k
                }
1366
6.04k
              }
1367
7.58k
              zv++;
1368
7.58k
            }
1369
7.44k
            goto tail_call;
1370
7.44k
          }
1371
77.9k
        }
1372
246k
        zv++;
1373
246k
      }
1374
50.6k
    }
1375
771k
  } else if (GC_TYPE(ref) == IS_ARRAY) {
1376
757k
    ht = (HashTable *)ref;
1377
757k
    ZEND_ASSERT(ht != &EG(symbol_table));
1378
1379
1.19M
handle_ht:
1380
1.19M
    n = ht->nNumUsed;
1381
1.19M
    if (HT_IS_PACKED(ht)) {
1382
41.1k
            zv = ht->arPacked;
1383
41.1k
            goto handle_zvals;
1384
41.1k
    }
1385
1386
1.15M
    p = ht->arData;
1387
2.83M
    for (; n != 0; n--) {
1388
1.91M
      zv = &p->val;
1389
1.91M
      if (Z_TYPE_P(zv) == IS_INDIRECT) {
1390
683k
        zv = Z_INDIRECT_P(zv);
1391
683k
      }
1392
1.91M
      if (Z_COLLECTABLE_P(zv)) {
1393
909k
        ref = Z_COUNTED_P(zv);
1394
909k
        if (GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1395
231k
          GC_REF_SET_COLOR(ref, GC_WHITE);
1396
231k
          p++;
1397
930k
          while (--n) {
1398
698k
            zv = &p->val;
1399
698k
            if (Z_TYPE_P(zv) == IS_INDIRECT) {
1400
52.7k
              zv = Z_INDIRECT_P(zv);
1401
52.7k
            }
1402
698k
            if (Z_COLLECTABLE_P(zv)) {
1403
567k
              zend_refcounted *ref = Z_COUNTED_P(zv);
1404
567k
              if (GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1405
348k
                GC_REF_SET_COLOR(ref, GC_WHITE);
1406
348k
                GC_STACK_PUSH(ref);
1407
348k
              }
1408
567k
            }
1409
698k
            p++;
1410
698k
          }
1411
231k
          goto tail_call;
1412
231k
        }
1413
909k
      }
1414
1.67M
      p++;
1415
1.67M
    }
1416
1.15M
  } else if (GC_TYPE(ref) == IS_REFERENCE) {
1417
13.7k
    if (Z_COLLECTABLE(((zend_reference*)ref)->val)) {
1418
12.4k
      ref = Z_COUNTED(((zend_reference*)ref)->val);
1419
12.4k
      if (GC_REF_CHECK_COLOR(ref, GC_GREY)) {
1420
2.95k
        GC_REF_SET_COLOR(ref, GC_WHITE);
1421
2.95k
        goto tail_call;
1422
2.95k
      }
1423
12.4k
    }
1424
13.7k
  }
1425
1426
1.02M
next:
1427
1.02M
  ref = GC_STACK_POP();
1428
1.02M
  if (ref) {
1429
946k
    goto tail_call;
1430
946k
  }
1431
1.02M
}
1432
1433
/* Scan all roots, coloring grey nodes black or white */
1434
static void gc_scan_roots(gc_stack *stack)
1435
26.7k
{
1436
26.7k
  uint32_t idx, end;
1437
26.7k
  gc_root_buffer *current;
1438
1439
  /* Root buffer might be reallocated during gc_scan,
1440
   * make sure to reload pointers. */
1441
26.7k
  idx = GC_FIRST_ROOT;
1442
26.7k
  end = GC_G(first_unused);
1443
258k
  while (idx != end) {
1444
231k
    current = GC_IDX2PTR(idx);
1445
231k
    if (GC_IS_ROOT(current->ref)) {
1446
231k
      if (GC_REF_CHECK_COLOR(current->ref, GC_GREY)) {
1447
74.0k
        GC_REF_SET_COLOR(current->ref, GC_WHITE);
1448
74.0k
        gc_scan(current->ref, stack);
1449
74.0k
      }
1450
231k
    }
1451
231k
    idx++;
1452
231k
  }
1453
1454
  /* Scan extra roots added during gc_scan */
1455
26.8k
  while (idx != GC_G(first_unused)) {
1456
46
    current = GC_IDX2PTR(idx);
1457
46
    if (GC_IS_ROOT(current->ref)) {
1458
46
      if (GC_REF_CHECK_COLOR(current->ref, GC_GREY)) {
1459
46
        GC_REF_SET_COLOR(current->ref, GC_WHITE);
1460
46
        gc_scan(current->ref, stack);
1461
46
      }
1462
46
    }
1463
46
    idx++;
1464
46
  }
1465
26.7k
}
1466
1467
/* Add a node to the buffer with the garbage flag, so that it will be
1468
 * destroyed and freed when the scan is complete. */
1469
static void gc_add_garbage(zend_refcounted *ref)
1470
576k
{
1471
576k
  uint32_t idx;
1472
576k
  gc_root_buffer *buf;
1473
1474
576k
  if (GC_HAS_UNUSED()) {
1475
0
    idx = GC_FETCH_UNUSED();
1476
576k
  } else if (GC_HAS_NEXT_UNUSED()) {
1477
576k
    idx = GC_FETCH_NEXT_UNUSED();
1478
576k
  } else {
1479
1
    gc_grow_root_buffer();
1480
1
    if (UNEXPECTED(!GC_HAS_NEXT_UNUSED())) {
1481
0
      return;
1482
0
    }
1483
1
    idx = GC_FETCH_NEXT_UNUSED();
1484
1
  }
1485
1486
576k
  buf = GC_IDX2PTR(idx);
1487
576k
  buf->ref = GC_MAKE_GARBAGE(ref);
1488
1489
576k
  idx = gc_compress(idx);
1490
576k
  GC_REF_SET_INFO(ref, idx | GC_BLACK);
1491
576k
  GC_G(num_roots)++;
1492
576k
}
1493
1494
/* Traverse the reference graph from ref, marking any white nodes as garbage. */
1495
static int gc_collect_white(zend_refcounted *ref, uint32_t *flags, gc_stack *stack)
1496
29.4k
{
1497
29.4k
  int count = 0;
1498
29.4k
  HashTable *ht;
1499
29.4k
  Bucket *p;
1500
29.4k
  zval *zv;
1501
29.4k
  uint32_t n;
1502
29.4k
  GC_STACK_DCL(stack);
1503
1504
771k
tail_call:
1505
  /* don't count references for compatibility ??? */
1506
771k
  if (GC_TYPE(ref) != IS_REFERENCE) {
1507
758k
    count++;
1508
758k
  }
1509
1510
771k
  if (GC_TYPE(ref) == IS_OBJECT) {
1511
448k
    zend_object *obj = (zend_object*)ref;
1512
1513
448k
    if (EXPECTED(!(OBJ_FLAGS(ref) & IS_OBJ_FREE_CALLED))) {
1514
448k
      int len;
1515
448k
      zval *table;
1516
1517
      /* optimization: color is GC_BLACK (0) */
1518
448k
      if (!GC_INFO(ref)) {
1519
274k
        gc_add_garbage(ref);
1520
274k
      }
1521
448k
      if (!(OBJ_FLAGS(obj) & IS_OBJ_DESTRUCTOR_CALLED)
1522
375k
       && (obj->handlers->dtor_obj != zend_objects_destroy_object
1523
375k
        || obj->ce->destructor != NULL)) {
1524
3.24k
        *flags |= GC_HAS_DESTRUCTORS;
1525
3.24k
      }
1526
1527
448k
      if (UNEXPECTED(GC_FLAGS(obj) & IS_OBJ_WEAKLY_REFERENCED)) {
1528
441
        zend_weakmap_get_object_entry_gc(obj, &table, &len);
1529
441
        n = len;
1530
441
        zv = table;
1531
555
        for (; n != 0; n--) {
1532
114
          ZEND_ASSERT(Z_TYPE_P(zv) == IS_PTR);
1533
114
          zval *entry = (zval*) Z_PTR_P(zv);
1534
114
          if (Z_COLLECTABLE_P(entry) && GC_FROM_WEAKMAP_KEY(entry)) {
1535
68
            GC_UNSET_FROM_WEAKMAP_KEY(entry);
1536
68
            GC_UNSET_FROM_WEAKMAP(entry);
1537
68
            ref = Z_COUNTED_P(entry);
1538
68
            GC_ADDREF(ref);
1539
68
            if (GC_REF_CHECK_COLOR(ref, GC_WHITE)) {
1540
14
              GC_REF_SET_BLACK(ref);
1541
14
              GC_STACK_PUSH(ref);
1542
14
            }
1543
68
          }
1544
114
          zv++;
1545
114
        }
1546
441
      }
1547
1548
448k
      if (UNEXPECTED(obj->handlers->get_gc == zend_weakmap_get_gc)) {
1549
62
        zend_weakmap_get_entry_gc(obj, &table, &len);
1550
62
        n = len;
1551
62
        zv = table;
1552
137
        for (; n != 0; n--) {
1553
75
          ZEND_ASSERT(Z_TYPE_P(zv) == IS_PTR);
1554
75
          zval *entry = (zval*) Z_PTR_P(zv);
1555
75
          if (Z_COLLECTABLE_P(entry) && GC_FROM_WEAKMAP(entry)) {
1556
51
            GC_UNSET_FROM_WEAKMAP_KEY(entry);
1557
51
            GC_UNSET_FROM_WEAKMAP(entry);
1558
51
            ref = Z_COUNTED_P(entry);
1559
51
            GC_ADDREF(ref);
1560
51
            if (GC_REF_CHECK_COLOR(ref, GC_WHITE)) {
1561
46
              GC_REF_SET_BLACK(ref);
1562
46
              GC_STACK_PUSH(ref);
1563
46
            }
1564
51
          }
1565
75
          zv++;
1566
75
        }
1567
62
        goto next;
1568
62
      }
1569
1570
448k
      ht = obj->handlers->get_gc(obj, &table, &len);
1571
448k
      n = len;
1572
448k
      zv = table;
1573
448k
      if (UNEXPECTED(ht)) {
1574
439k
        GC_ADDREF(ht);
1575
439k
        if (GC_REF_CHECK_COLOR(ht, GC_WHITE)) {
1576
439k
          GC_REF_SET_BLACK(ht);
1577
596k
          for (; n != 0; n--) {
1578
156k
            if (Z_COLLECTABLE_P(zv)) {
1579
155k
              ref = Z_COUNTED_P(zv);
1580
155k
              GC_ADDREF(ref);
1581
155k
              if (GC_REF_CHECK_COLOR(ref, GC_WHITE)) {
1582
153k
                GC_REF_SET_BLACK(ref);
1583
153k
                GC_STACK_PUSH(ref);
1584
153k
              }
1585
155k
            }
1586
156k
            zv++;
1587
156k
          }
1588
439k
          goto handle_ht;
1589
439k
        }
1590
439k
      }
1591
1592
28.1k
handle_zvals:
1593
150k
      for (; n != 0; n--) {
1594
129k
        if (Z_COLLECTABLE_P(zv)) {
1595
44.0k
          ref = Z_COUNTED_P(zv);
1596
44.0k
          GC_ADDREF(ref);
1597
44.0k
          if (GC_REF_CHECK_COLOR(ref, GC_WHITE)) {
1598
6.47k
            GC_REF_SET_BLACK(ref);
1599
6.47k
            zv++;
1600
9.69k
            while (--n) {
1601
3.21k
              if (Z_COLLECTABLE_P(zv)) {
1602
2.50k
                zend_refcounted *ref = Z_COUNTED_P(zv);
1603
2.50k
                GC_ADDREF(ref);
1604
2.50k
                if (GC_REF_CHECK_COLOR(ref, GC_WHITE)) {
1605
577
                  GC_REF_SET_BLACK(ref);
1606
577
                  GC_STACK_PUSH(ref);
1607
577
                }
1608
2.50k
              }
1609
3.21k
              zv++;
1610
3.21k
            }
1611
6.47k
            goto tail_call;
1612
6.47k
          }
1613
44.0k
        }
1614
122k
        zv++;
1615
122k
      }
1616
28.1k
    }
1617
448k
  } else if (GC_TYPE(ref) == IS_ARRAY) {
1618
    /* optimization: color is GC_BLACK (0) */
1619
309k
    if (!GC_INFO(ref)) {
1620
301k
      gc_add_garbage(ref);
1621
301k
    }
1622
309k
    ht = (zend_array*)ref;
1623
1624
749k
handle_ht:
1625
749k
    n = ht->nNumUsed;
1626
749k
    if (HT_IS_PACKED(ht)) {
1627
19.6k
      zv = ht->arPacked;
1628
19.6k
      goto handle_zvals;
1629
19.6k
    }
1630
1631
729k
    p = ht->arData;
1632
1.34M
    for (; n != 0; n--) {
1633
844k
      zv = &p->val;
1634
844k
      if (Z_TYPE_P(zv) == IS_INDIRECT) {
1635
314k
        zv = Z_INDIRECT_P(zv);
1636
314k
      }
1637
844k
      if (Z_COLLECTABLE_P(zv)) {
1638
375k
        ref = Z_COUNTED_P(zv);
1639
375k
        GC_ADDREF(ref);
1640
375k
        if (GC_REF_CHECK_COLOR(ref, GC_WHITE)) {
1641
230k
          GC_REF_SET_BLACK(ref);
1642
230k
          p++;
1643
927k
          while (--n) {
1644
696k
            zv = &p->val;
1645
696k
            if (Z_TYPE_P(zv) == IS_INDIRECT) {
1646
52.6k
              zv = Z_INDIRECT_P(zv);
1647
52.6k
            }
1648
696k
            if (Z_COLLECTABLE_P(zv)) {
1649
566k
              zend_refcounted *ref = Z_COUNTED_P(zv);
1650
566k
              GC_ADDREF(ref);
1651
566k
              if (GC_REF_CHECK_COLOR(ref, GC_WHITE)) {
1652
347k
                GC_REF_SET_BLACK(ref);
1653
347k
                GC_STACK_PUSH(ref);
1654
347k
              }
1655
566k
            }
1656
696k
            p++;
1657
696k
          }
1658
230k
          goto tail_call;
1659
230k
        }
1660
375k
      }
1661
613k
      p++;
1662
613k
    }
1663
729k
  } else if (GC_TYPE(ref) == IS_REFERENCE) {
1664
13.3k
    if (Z_COLLECTABLE(((zend_reference*)ref)->val)) {
1665
12.1k
      ref = Z_COUNTED(((zend_reference*)ref)->val);
1666
12.1k
      GC_ADDREF(ref);
1667
12.1k
      if (GC_REF_CHECK_COLOR(ref, GC_WHITE)) {
1668
2.83k
        GC_REF_SET_BLACK(ref);
1669
2.83k
        goto tail_call;
1670
2.83k
      }
1671
12.1k
    }
1672
13.3k
  }
1673
1674
531k
next:
1675
531k
  ref = GC_STACK_POP();
1676
531k
  if (ref) {
1677
501k
    goto tail_call;
1678
501k
  }
1679
1680
29.4k
  return count;
1681
531k
}
1682
1683
/* Traverse the reference graph from all roots, marking white nodes as garbage. */
1684
static int gc_collect_roots(uint32_t *flags, gc_stack *stack)
1685
26.7k
{
1686
26.7k
  uint32_t idx, end;
1687
26.7k
  zend_refcounted *ref;
1688
26.7k
  int count = 0;
1689
26.7k
  gc_root_buffer *current = GC_IDX2PTR(GC_FIRST_ROOT);
1690
26.7k
  gc_root_buffer *last = GC_IDX2PTR(GC_G(first_unused));
1691
1692
  /* remove non-garbage from the list */
1693
258k
  while (current != last) {
1694
231k
    if (GC_IS_ROOT(current->ref)) {
1695
231k
      if (GC_REF_CHECK_COLOR(current->ref, GC_BLACK)) {
1696
50.2k
        GC_REF_SET_INFO(current->ref, 0); /* reset GC_ADDRESS() and keep GC_BLACK */
1697
50.2k
        gc_remove_from_roots(current);
1698
50.2k
      }
1699
231k
    }
1700
231k
    current++;
1701
231k
  }
1702
1703
26.7k
  gc_compact();
1704
1705
  /* Root buffer might be reallocated during gc_collect_white,
1706
   * make sure to reload pointers. */
1707
26.7k
  idx = GC_FIRST_ROOT;
1708
26.7k
  end = GC_G(first_unused);
1709
208k
  while (idx != end) {
1710
181k
    current = GC_IDX2PTR(idx);
1711
181k
    ref = current->ref;
1712
181k
    ZEND_ASSERT(GC_IS_ROOT(ref));
1713
181k
    current->ref = GC_MAKE_GARBAGE(ref);
1714
181k
    if (GC_REF_CHECK_COLOR(ref, GC_WHITE)) {
1715
29.4k
      GC_REF_SET_BLACK(ref);
1716
29.4k
      count += gc_collect_white(ref, flags, stack);
1717
29.4k
    }
1718
181k
    idx++;
1719
181k
  }
1720
1721
26.7k
  return count;
1722
26.7k
}
1723
1724
static int gc_remove_nested_data_from_buffer(zend_refcounted *ref, gc_root_buffer *root, gc_stack *stack)
1725
3.24k
{
1726
3.24k
  HashTable *ht;
1727
3.24k
  Bucket *p;
1728
3.24k
  zval *zv;
1729
3.24k
  uint32_t n;
1730
3.24k
  int count = 0;
1731
3.24k
  GC_STACK_DCL(stack);
1732
1733
9.17k
tail_call:
1734
9.17k
  if (root) {
1735
3.24k
    root = NULL;
1736
3.24k
    count++;
1737
5.93k
  } else if (GC_REF_ADDRESS(ref) != 0
1738
4.87k
   && GC_REF_CHECK_COLOR(ref, GC_BLACK)) {
1739
1.88k
    GC_TRACE_REF(ref, "removing from buffer");
1740
1.88k
    GC_REMOVE_FROM_BUFFER(ref);
1741
1.88k
    count++;
1742
4.04k
  } else if (GC_TYPE(ref) == IS_REFERENCE) {
1743
660
    if (Z_COLLECTABLE(((zend_reference*)ref)->val)) {
1744
328
      ref = Z_COUNTED(((zend_reference*)ref)->val);
1745
328
      goto tail_call;
1746
328
    }
1747
332
    goto next;
1748
3.38k
  } else {
1749
3.38k
    goto next;
1750
3.38k
  }
1751
1752
5.13k
  if (GC_TYPE(ref) == IS_OBJECT) {
1753
4.46k
    zend_object *obj = (zend_object*)ref;
1754
1755
4.46k
    if (EXPECTED(!(OBJ_FLAGS(ref) & IS_OBJ_FREE_CALLED))) {
1756
4.46k
      int len;
1757
4.46k
      zval *table;
1758
1759
4.46k
      if (UNEXPECTED(GC_FLAGS(obj) & IS_OBJ_WEAKLY_REFERENCED)) {
1760
180
        zend_weakmap_get_object_entry_gc(obj, &table, &len);
1761
180
        n = len;
1762
180
        zv = table;
1763
185
        for (; n != 0; n--) {
1764
5
          ZEND_ASSERT(Z_TYPE_P(zv) == IS_PTR);
1765
5
          zval *entry = (zval*) Z_PTR_P(zv);
1766
5
          if (Z_OPT_COLLECTABLE_P(entry)) {
1767
5
            ref = Z_COUNTED_P(entry);
1768
5
            GC_STACK_PUSH(ref);
1769
5
          }
1770
5
          zv++;
1771
5
        }
1772
180
      }
1773
1774
4.46k
      ht = obj->handlers->get_gc(obj, &table, &len);
1775
4.46k
      n = len;
1776
4.46k
      zv = table;
1777
4.46k
      if (UNEXPECTED(ht)) {
1778
1.97k
        for (; n != 0; n--) {
1779
730
          if (Z_COLLECTABLE_P(zv)) {
1780
455
            ref = Z_COUNTED_P(zv);
1781
455
            GC_STACK_PUSH(ref);
1782
455
          }
1783
730
          zv++;
1784
730
        }
1785
1.24k
        if (GC_REF_ADDRESS(ht) != 0 && GC_REF_CHECK_COLOR(ht, GC_BLACK)) {
1786
5
          GC_TRACE_REF(ht, "removing from buffer");
1787
5
          GC_REMOVE_FROM_BUFFER(ht);
1788
5
        }
1789
1.24k
        goto handle_ht;
1790
1.24k
      }
1791
1792
3.84k
handle_zvals:
1793
3.98k
      for (; n != 0; n--) {
1794
3.22k
        if (Z_COLLECTABLE_P(zv)) {
1795
3.08k
          ref = Z_COUNTED_P(zv);
1796
3.08k
          zv++;
1797
3.77k
          while (--n) {
1798
687
            if (Z_COLLECTABLE_P(zv)) {
1799
524
              zend_refcounted *ref = Z_COUNTED_P(zv);
1800
524
              GC_STACK_PUSH(ref);
1801
524
            }
1802
687
            zv++;
1803
687
          }
1804
3.08k
          goto tail_call;
1805
3.08k
        }
1806
142
        zv++;
1807
142
      }
1808
3.84k
    }
1809
4.46k
  } else if (GC_TYPE(ref) == IS_ARRAY) {
1810
671
    ht = (zend_array*)ref;
1811
1812
1.91k
handle_ht:
1813
1.91k
    n = ht->nNumUsed;
1814
1.91k
    if (HT_IS_PACKED(ht)) {
1815
628
      zv = ht->arPacked;
1816
628
      goto handle_zvals;
1817
628
    }
1818
1819
1.29k
    p = ht->arData;
1820
1.76k
    for (; n != 0; n--) {
1821
1.60k
      zv = &p->val;
1822
1.60k
      if (Z_TYPE_P(zv) == IS_INDIRECT) {
1823
548
        zv = Z_INDIRECT_P(zv);
1824
548
      }
1825
1.60k
      if (Z_COLLECTABLE_P(zv)) {
1826
1.12k
        ref = Z_COUNTED_P(zv);
1827
1.12k
        p++;
1828
1.57k
        while (--n) {
1829
454
          zv = &p->val;
1830
454
          if (Z_TYPE_P(zv) == IS_INDIRECT) {
1831
38
            zv = Z_INDIRECT_P(zv);
1832
38
          }
1833
454
          if (Z_COLLECTABLE_P(zv)) {
1834
412
            zend_refcounted *ref = Z_COUNTED_P(zv);
1835
412
            GC_STACK_PUSH(ref);
1836
412
          }
1837
454
          p++;
1838
454
        }
1839
1.12k
        goto tail_call;
1840
1.12k
      }
1841
478
      p++;
1842
478
    }
1843
1.29k
  }
1844
1845
4.63k
next:
1846
4.63k
  ref = GC_STACK_POP();
1847
4.63k
  if (ref) {
1848
1.39k
    goto tail_call;
1849
1.39k
  }
1850
1851
3.24k
  return count;
1852
4.63k
}
1853
1854
static void zend_get_gc_buffer_release(void);
1855
static void zend_gc_check_root_tmpvars(void);
1856
static void zend_gc_remove_root_tmpvars(void);
1857
1858
static zend_internal_function gc_destructor_fiber;
1859
1860
static ZEND_COLD ZEND_NORETURN void gc_create_destructor_fiber_error(void)
1861
0
{
1862
0
  zend_error_noreturn(E_ERROR, "Unable to create destructor fiber");
1863
0
}
1864
1865
static ZEND_COLD ZEND_NORETURN void gc_start_destructor_fiber_error(void)
1866
0
{
1867
0
  zend_error_noreturn(E_ERROR, "Unable to start destructor fiber");
1868
0
}
1869
1870
/* Call destructors for garbage in the buffer. */
1871
static zend_always_inline zend_result gc_call_destructors(uint32_t idx, uint32_t end, zend_fiber *fiber)
1872
893
{
1873
893
  gc_root_buffer *current;
1874
893
  zend_refcounted *p;
1875
1876
  /* The root buffer might be reallocated during destructors calls,
1877
   * make sure to reload pointers as necessary. */
1878
6.39k
  while (idx != end) {
1879
5.62k
    current = GC_IDX2PTR(idx);
1880
5.62k
    if (GC_IS_DTOR_GARBAGE(current->ref)) {
1881
2.53k
      p = GC_GET_PTR(current->ref);
1882
      /* Mark this is as a normal root for the next GC run */
1883
2.53k
      current->ref = p;
1884
      /* Double check that the destructor hasn't been called yet. It
1885
       * could have already been invoked indirectly by some other
1886
       * destructor. */
1887
2.53k
      if (!(OBJ_FLAGS(p) & IS_OBJ_DESTRUCTOR_CALLED)) {
1888
2.53k
        if (fiber != NULL) {
1889
294
          GC_G(dtor_idx) = idx;
1890
294
        }
1891
2.53k
        zend_object *obj = (zend_object*)p;
1892
2.53k
        GC_TRACE_REF(obj, "calling destructor");
1893
2.53k
        GC_ADD_FLAGS(obj, IS_OBJ_DESTRUCTOR_CALLED);
1894
2.53k
        GC_ADDREF(obj);
1895
2.53k
        obj->handlers->dtor_obj(obj);
1896
2.53k
        GC_TRACE_REF(obj, "returned from destructor");
1897
2.53k
        GC_DELREF(obj);
1898
2.53k
        if (UNEXPECTED(fiber != NULL && GC_G(dtor_fiber) != fiber)) {
1899
          /* We resumed after suspension */
1900
123
          gc_check_possible_root((zend_refcounted*)&obj->gc);
1901
123
          return FAILURE;
1902
123
        }
1903
2.53k
      }
1904
2.53k
    }
1905
5.50k
    idx++;
1906
5.50k
  }
1907
1908
770
  return SUCCESS;
1909
893
}
1910
1911
static zend_fiber *gc_create_destructor_fiber(void)
1912
236
{
1913
236
  zval zobj;
1914
236
  zend_fiber *fiber;
1915
1916
236
  GC_TRACE("starting destructor fiber");
1917
1918
236
  if (UNEXPECTED(object_init_ex(&zobj, zend_ce_fiber) == FAILURE)) {
1919
0
    gc_create_destructor_fiber_error();
1920
0
  }
1921
1922
236
  fiber = (zend_fiber *)Z_OBJ(zobj);
1923
236
  fiber->fci.size = sizeof(fiber->fci);
1924
236
  fiber->fci_cache.function_handler = (zend_function*) &gc_destructor_fiber;
1925
1926
236
  GC_G(dtor_fiber) = fiber;
1927
1928
236
  if (UNEXPECTED(zend_fiber_start(fiber, NULL) == FAILURE)) {
1929
0
    gc_start_destructor_fiber_error();
1930
0
  }
1931
1932
236
  return fiber;
1933
236
}
1934
1935
static void remember_prev_exception(zend_object **prev_exception)
1936
490
{
1937
490
  if (EG(exception)) {
1938
77
    if (*prev_exception) {
1939
14
      zend_exception_set_previous(EG(exception), *prev_exception);
1940
14
    }
1941
77
    *prev_exception = EG(exception);
1942
77
    EG(exception) = NULL;
1943
77
  }
1944
490
}
1945
1946
static zend_never_inline void gc_call_destructors_in_fiber(void)
1947
122
{
1948
122
  ZEND_ASSERT(!GC_G(dtor_fiber_running));
1949
1950
122
  zend_fiber *fiber = GC_G(dtor_fiber);
1951
1952
122
  GC_G(dtor_idx) = GC_FIRST_ROOT;
1953
122
  GC_G(dtor_end) = GC_G(first_unused);
1954
1955
122
  zend_object *exception = NULL;
1956
122
  remember_prev_exception(&exception);
1957
1958
122
  if (UNEXPECTED(!fiber)) {
1959
113
    fiber = gc_create_destructor_fiber();
1960
113
  } else {
1961
9
    zend_fiber_resume(fiber, NULL, NULL);
1962
9
  }
1963
1964
122
  remember_prev_exception(&exception);
1965
1966
245
  for (;;) {
1967
    /* At this point, fiber has executed until suspension */
1968
245
    GC_TRACE("resumed from destructor fiber");
1969
1970
245
    if (UNEXPECTED(GC_G(dtor_fiber_running))) {
1971
      /* Fiber was suspended by a destructor. Start a new one for the
1972
       * remaining destructors. */
1973
123
      GC_TRACE("destructor fiber suspended by destructor");
1974
123
      GC_G(dtor_fiber) = NULL;
1975
123
      GC_G(dtor_idx)++;
1976
      /* We do not own the fiber anymore. It may be collected if the
1977
       * application does not reference it. */
1978
123
      zend_object_release(&fiber->std);
1979
123
      remember_prev_exception(&exception);
1980
123
      fiber = gc_create_destructor_fiber();
1981
123
      remember_prev_exception(&exception);
1982
123
      continue;
1983
123
    } else {
1984
      /* Fiber suspended itself after calling all destructors */
1985
122
      GC_TRACE("destructor fiber suspended itself");
1986
122
      break;
1987
122
    }
1988
245
  }
1989
1990
122
  EG(exception) = exception;
1991
122
}
1992
1993
/* Perform a garbage collection run. The default implementation of gc_collect_cycles. */
1994
ZEND_API int zend_gc_collect_cycles(void)
1995
865k
{
1996
865k
  int total_count = 0;
1997
865k
  bool should_rerun_gc = false;
1998
865k
  bool did_rerun_gc = false;
1999
2000
865k
  zend_hrtime_t start_time = zend_hrtime();
2001
865k
  if (GC_G(num_roots) && !GC_G(gc_active)) {
2002
26.2k
    zend_gc_remove_root_tmpvars();
2003
26.2k
  }
2004
2005
866k
rerun_gc:
2006
866k
  if (GC_G(num_roots)) {
2007
26.8k
    int count;
2008
26.8k
    gc_root_buffer *current, *last;
2009
26.8k
    zend_refcounted *p;
2010
26.8k
    uint32_t gc_flags = 0;
2011
26.8k
    uint32_t idx, end;
2012
26.8k
    gc_stack stack;
2013
2014
26.8k
    stack.prev = NULL;
2015
26.8k
    stack.next = NULL;
2016
2017
26.8k
    if (GC_G(gc_active)) {
2018
34
      GC_G(collector_time) += zend_hrtime() - start_time;
2019
34
      return 0;
2020
34
    }
2021
2022
26.7k
    GC_TRACE("Collecting cycles");
2023
26.7k
    GC_G(gc_runs)++;
2024
26.7k
    GC_G(gc_active) = 1;
2025
2026
26.7k
    GC_TRACE("Marking roots");
2027
26.7k
    gc_mark_roots(&stack);
2028
26.7k
    GC_TRACE("Scanning roots");
2029
26.7k
    gc_scan_roots(&stack);
2030
2031
26.7k
    GC_TRACE("Collecting roots");
2032
26.7k
    count = gc_collect_roots(&gc_flags, &stack);
2033
2034
26.7k
    if (!GC_G(num_roots)) {
2035
      /* nothing to free */
2036
21.5k
      GC_TRACE("Nothing to free");
2037
21.5k
      gc_stack_free(&stack);
2038
21.5k
      GC_G(gc_active) = 0;
2039
21.5k
      goto finish;
2040
21.5k
    }
2041
2042
5.19k
    end = GC_G(first_unused);
2043
2044
5.19k
    if (gc_flags & GC_HAS_DESTRUCTORS) {
2045
770
      GC_TRACE("Calling destructors");
2046
2047
      /* During a destructor call, new externally visible references to nested data may
2048
       * be introduced. These references can be introduced in a way that does not
2049
       * modify any refcounts, so we have no real way to detect this situation
2050
       * short of rerunning full GC tracing. What we do instead is to only run
2051
       * destructors at this point and automatically re-run GC afterwards. */
2052
770
      should_rerun_gc = true;
2053
2054
      /* Mark all roots for which a dtor will be invoked as DTOR_GARBAGE. Additionally
2055
       * color them purple. This serves a double purpose: First, they should be
2056
       * considered new potential roots for the next GC run. Second, it will prevent
2057
       * their removal from the root buffer by nested data removal. */
2058
770
      idx = GC_FIRST_ROOT;
2059
770
      current = GC_IDX2PTR(GC_FIRST_ROOT);
2060
7.49k
      while (idx != end) {
2061
6.72k
        if (GC_IS_GARBAGE(current->ref)) {
2062
6.72k
          p = GC_GET_PTR(current->ref);
2063
6.72k
          if (GC_TYPE(p) == IS_OBJECT && !(OBJ_FLAGS(p) & IS_OBJ_DESTRUCTOR_CALLED)) {
2064
5.39k
            zend_object *obj = (zend_object *) p;
2065
5.39k
            if (obj->handlers->dtor_obj != zend_objects_destroy_object
2066
5.11k
              || obj->ce->destructor) {
2067
3.24k
              current->ref = GC_MAKE_DTOR_GARBAGE(obj);
2068
3.24k
              GC_REF_SET_COLOR(obj, GC_PURPLE);
2069
3.24k
            } else {
2070
2.15k
              GC_ADD_FLAGS(obj, IS_OBJ_DESTRUCTOR_CALLED);
2071
2.15k
            }
2072
5.39k
          }
2073
6.72k
        }
2074
6.72k
        current++;
2075
6.72k
        idx++;
2076
6.72k
      }
2077
2078
      /* Remove nested data for objects on which a destructor will be called.
2079
       * This will not remove the objects themselves, as they have been colored
2080
       * purple. */
2081
770
      idx = GC_FIRST_ROOT;
2082
770
      current = GC_IDX2PTR(GC_FIRST_ROOT);
2083
7.49k
      while (idx != end) {
2084
6.72k
        if (GC_IS_DTOR_GARBAGE(current->ref)) {
2085
3.24k
          p = GC_GET_PTR(current->ref);
2086
3.24k
          count -= gc_remove_nested_data_from_buffer(p, current, &stack);
2087
3.24k
        }
2088
6.72k
        current++;
2089
6.72k
        idx++;
2090
6.72k
      }
2091
2092
      /* Actually call destructors. */
2093
770
      zend_hrtime_t dtor_start_time = zend_hrtime();
2094
770
      if (EXPECTED(!EG(active_fiber))) {
2095
648
        gc_call_destructors(GC_FIRST_ROOT, end, NULL);
2096
648
      } else {
2097
122
        gc_call_destructors_in_fiber();
2098
122
      }
2099
770
      GC_G(dtor_time) += zend_hrtime() - dtor_start_time;
2100
2101
770
      if (GC_G(gc_protected)) {
2102
        /* something went wrong */
2103
14
        zend_get_gc_buffer_release();
2104
14
        GC_G(collector_time) += zend_hrtime() - start_time;
2105
14
        return 0;
2106
14
      }
2107
770
    }
2108
2109
5.17k
    gc_stack_free(&stack);
2110
2111
    /* Destroy zvals. The root buffer may be reallocated. */
2112
5.17k
    GC_TRACE("Destroying zvals");
2113
5.17k
    zend_hrtime_t free_start_time = zend_hrtime();
2114
5.17k
    idx = GC_FIRST_ROOT;
2115
759k
    while (idx != end) {
2116
754k
      current = GC_IDX2PTR(idx);
2117
754k
      if (GC_IS_GARBAGE(current->ref)) {
2118
44.1k
        p = GC_GET_PTR(current->ref);
2119
44.1k
        GC_TRACE_REF(p, "destroying");
2120
44.1k
        if (GC_TYPE(p) == IS_OBJECT) {
2121
36.7k
          zend_object *obj = (zend_object*)p;
2122
2123
36.7k
          EG(objects_store).object_buckets[obj->handle] = SET_OBJ_INVALID(obj);
2124
36.7k
          GC_TYPE_INFO(obj) = GC_NULL |
2125
36.7k
            (GC_TYPE_INFO(obj) & ~GC_TYPE_MASK);
2126
          /* Modify current before calling free_obj (bug #78811: free_obj() can cause the root buffer (with current) to be reallocated.) */
2127
36.7k
          current->ref = GC_MAKE_GARBAGE(((char*)obj) - obj->handlers->offset);
2128
36.7k
          if (!(OBJ_FLAGS(obj) & IS_OBJ_FREE_CALLED)) {
2129
36.7k
            GC_ADD_FLAGS(obj, IS_OBJ_FREE_CALLED);
2130
36.7k
            GC_ADDREF(obj);
2131
36.7k
            obj->handlers->free_obj(obj);
2132
36.7k
            GC_DELREF(obj);
2133
36.7k
          }
2134
2135
36.7k
          ZEND_OBJECTS_STORE_ADD_TO_FREE_LIST(obj->handle);
2136
36.7k
        } else if (GC_TYPE(p) == IS_ARRAY) {
2137
7.44k
          zend_array *arr = (zend_array*)p;
2138
2139
7.44k
          GC_TYPE_INFO(arr) = GC_NULL |
2140
7.44k
            (GC_TYPE_INFO(arr) & ~GC_TYPE_MASK);
2141
2142
          /* GC may destroy arrays with rc>1. This is valid and safe. */
2143
7.44k
          HT_ALLOW_COW_VIOLATION(arr);
2144
2145
7.44k
          zend_hash_destroy(arr);
2146
7.44k
        }
2147
44.1k
      }
2148
754k
      idx++;
2149
754k
    }
2150
2151
    /* Free objects */
2152
5.17k
    current = GC_IDX2PTR(GC_FIRST_ROOT);
2153
5.17k
    last = GC_IDX2PTR(end);
2154
759k
    while (current != last) {
2155
754k
      if (GC_IS_GARBAGE(current->ref)) {
2156
44.1k
        p = GC_GET_PTR(current->ref);
2157
44.1k
        GC_LINK_UNUSED(current);
2158
44.1k
        GC_G(num_roots)--;
2159
44.1k
        efree(p);
2160
44.1k
      }
2161
754k
      current++;
2162
754k
    }
2163
2164
5.17k
    GC_G(free_time) += zend_hrtime() - free_start_time;
2165
2166
5.17k
    GC_TRACE("Collection finished");
2167
5.17k
    GC_G(collected) += count;
2168
5.17k
    total_count += count;
2169
5.17k
    GC_G(gc_active) = 0;
2170
5.17k
  }
2171
2172
844k
  gc_compact();
2173
2174
  /* Objects with destructors were removed from this GC run. Rerun GC right away to clean them
2175
   * up. We do this only once: If we encounter more destructors on the second run, we'll not
2176
   * run GC another time. */
2177
844k
  if (should_rerun_gc && !did_rerun_gc) {
2178
602
    did_rerun_gc = true;
2179
602
    goto rerun_gc;
2180
602
  }
2181
2182
865k
finish:
2183
865k
  zend_get_gc_buffer_release();
2184
2185
  /* Prevent GC from running during zend_gc_check_root_tmpvars, before
2186
   * gc_threshold is adjusted, as this may result in unbounded recursion */
2187
865k
  GC_G(gc_active) = 1;
2188
865k
  zend_gc_check_root_tmpvars();
2189
865k
  GC_G(gc_active) = 0;
2190
2191
865k
  GC_G(collector_time) += zend_hrtime() - start_time;
2192
865k
  return total_count;
2193
844k
}
2194
2195
ZEND_API void zend_gc_get_status(zend_gc_status *status)
2196
285
{
2197
285
  status->active = GC_G(gc_active);
2198
285
  status->gc_protected = GC_G(gc_protected);
2199
285
  status->full = GC_G(gc_full);
2200
285
  status->runs = GC_G(gc_runs);
2201
285
  status->collected = GC_G(collected);
2202
285
  status->threshold = GC_G(gc_threshold);
2203
285
  status->buf_size = GC_G(buf_size);
2204
285
  status->num_roots = GC_G(num_roots);
2205
285
  status->application_time = zend_hrtime() - GC_G(activated_at);
2206
285
  status->collector_time = GC_G(collector_time);
2207
285
  status->dtor_time = GC_G(dtor_time);
2208
285
  status->free_time = GC_G(free_time);
2209
285
}
2210
2211
86.8k
ZEND_API zend_get_gc_buffer *zend_get_gc_buffer_create(void) {
2212
  /* There can only be one get_gc() call active at a time,
2213
   * so there only needs to be one buffer. */
2214
86.8k
  zend_get_gc_buffer *gc_buffer = &EG(get_gc_buffer);
2215
86.8k
  gc_buffer->cur = gc_buffer->start;
2216
86.8k
  return gc_buffer;
2217
86.8k
}
2218
2219
2.52k
ZEND_API void zend_get_gc_buffer_grow(zend_get_gc_buffer *gc_buffer) {
2220
2.52k
  size_t old_capacity = gc_buffer->end - gc_buffer->start;
2221
2.52k
  size_t new_capacity = old_capacity == 0 ? 64 : old_capacity * 2;
2222
2.52k
  gc_buffer->start = erealloc(gc_buffer->start, new_capacity * sizeof(zval));
2223
2.52k
  gc_buffer->end = gc_buffer->start + new_capacity;
2224
2.52k
  gc_buffer->cur = gc_buffer->start + old_capacity;
2225
2.52k
}
2226
2227
865k
static void zend_get_gc_buffer_release(void) {
2228
865k
  zend_get_gc_buffer *gc_buffer = &EG(get_gc_buffer);
2229
865k
  efree(gc_buffer->start);
2230
865k
  gc_buffer->start = gc_buffer->end = gc_buffer->cur = NULL;
2231
865k
}
2232
2233
/* TMPVAR operands are destroyed using zval_ptr_dtor_nogc(), because they usually cannot contain
2234
 * cycles. However, there are some rare exceptions where this is possible, in which case we rely
2235
 * on the producing code to root the value. If a GC run occurs between the rooting and consumption
2236
 * of the value, we would end up leaking it. To avoid this, root all live TMPVAR values here. */
2237
865k
static void zend_gc_check_root_tmpvars(void) {
2238
865k
  zend_execute_data *ex = EG(current_execute_data);
2239
1.08M
  for (; ex; ex = ex->prev_execute_data) {
2240
224k
    zend_function *func = ex->func;
2241
224k
    if (!func || !ZEND_USER_CODE(func->type)) {
2242
221k
      continue;
2243
221k
    }
2244
2245
2.93k
    uint32_t op_num = ex->opline - ex->func->op_array.opcodes;
2246
11.3k
    for (uint32_t i = 0; i < func->op_array.last_live_range; i++) {
2247
8.81k
      const zend_live_range *range = &func->op_array.live_range[i];
2248
8.81k
      if (range->start > op_num) {
2249
367
        break;
2250
367
      }
2251
8.44k
      if (range->end <= op_num) {
2252
8.06k
        continue;
2253
8.06k
      }
2254
2255
384
      uint32_t kind = range->var & ZEND_LIVE_MASK;
2256
384
      if (kind == ZEND_LIVE_TMPVAR || kind == ZEND_LIVE_LOOP) {
2257
288
        uint32_t var_num = range->var & ~ZEND_LIVE_MASK;
2258
288
        zval *var = ZEND_CALL_VAR(ex, var_num);
2259
288
        if (Z_COLLECTABLE_P(var)) {
2260
236
          gc_check_possible_root(Z_COUNTED_P(var));
2261
236
        }
2262
288
      }
2263
384
    }
2264
2.93k
  }
2265
865k
}
2266
2267
26.2k
static void zend_gc_remove_root_tmpvars(void) {
2268
26.2k
  zend_execute_data *ex = EG(current_execute_data);
2269
32.6k
  for (; ex; ex = ex->prev_execute_data) {
2270
6.39k
    zend_function *func = ex->func;
2271
6.39k
    if (!func || !ZEND_USER_CODE(func->type)) {
2272
3.82k
      continue;
2273
3.82k
    }
2274
2275
2.57k
    uint32_t op_num = ex->opline - ex->func->op_array.opcodes;
2276
10.7k
    for (uint32_t i = 0; i < func->op_array.last_live_range; i++) {
2277
8.47k
      const zend_live_range *range = &func->op_array.live_range[i];
2278
8.47k
      if (range->start > op_num) {
2279
328
        break;
2280
328
      }
2281
8.14k
      if (range->end <= op_num) {
2282
7.88k
        continue;
2283
7.88k
      }
2284
2285
260
      uint32_t kind = range->var & ZEND_LIVE_MASK;
2286
260
      if (kind == ZEND_LIVE_TMPVAR || kind == ZEND_LIVE_LOOP) {
2287
260
        uint32_t var_num = range->var & ~ZEND_LIVE_MASK;
2288
260
        zval *var = ZEND_CALL_VAR(ex, var_num);
2289
260
        if (Z_COLLECTABLE_P(var)) {
2290
236
          GC_REMOVE_FROM_BUFFER(Z_COUNTED_P(var));
2291
236
        }
2292
260
      }
2293
260
    }
2294
2.57k
  }
2295
26.2k
}
2296
2297
#if GC_BENCH
2298
void gc_bench_print(void)
2299
{
2300
  fprintf(stderr, "GC Statistics\n");
2301
  fprintf(stderr, "-------------\n");
2302
  fprintf(stderr, "Runs:               %d\n", GC_G(gc_runs));
2303
  fprintf(stderr, "Collected:          %d\n", GC_G(collected));
2304
  fprintf(stderr, "Root buffer length: %d\n", GC_G(root_buf_length));
2305
  fprintf(stderr, "Root buffer peak:   %d\n\n", GC_G(root_buf_peak));
2306
  fprintf(stderr, "      Possible            Remove from  Marked\n");
2307
  fprintf(stderr, "        Root    Buffered     buffer     grey\n");
2308
  fprintf(stderr, "      --------  --------  -----------  ------\n");
2309
  fprintf(stderr, "ZVAL  %8d  %8d  %9d  %8d\n", GC_G(zval_possible_root), GC_G(zval_buffered), GC_G(zval_remove_from_buffer), GC_G(zval_marked_grey));
2310
}
2311
#endif
2312
2313
#ifdef ZTS
2314
size_t zend_gc_globals_size(void)
2315
{
2316
  return sizeof(zend_gc_globals);
2317
}
2318
#endif
2319
2320
static ZEND_FUNCTION(gc_destructor_fiber)
2321
236
{
2322
236
  uint32_t idx, end;
2323
2324
236
  zend_fiber *fiber = GC_G(dtor_fiber);
2325
236
  ZEND_ASSERT(fiber != NULL);
2326
236
  ZEND_ASSERT(fiber == EG(active_fiber));
2327
2328
245
  for (;;) {
2329
245
    GC_G(dtor_fiber_running) = true;
2330
2331
245
    idx = GC_G(dtor_idx);
2332
245
    end = GC_G(dtor_end);
2333
245
    if (UNEXPECTED(gc_call_destructors(idx, end, fiber) == FAILURE)) {
2334
      /* We resumed after being suspended by a destructor */
2335
123
      return;
2336
123
    }
2337
2338
    /* We have called all destructors. Suspend fiber until the next GC run
2339
     */
2340
122
    GC_G(dtor_fiber_running) = false;
2341
122
    zend_fiber_suspend(fiber, NULL, NULL);
2342
2343
122
    if (UNEXPECTED(fiber->flags & ZEND_FIBER_FLAG_DESTROYED)) {
2344
      /* Fiber is being destroyed by shutdown sequence */
2345
113
      if (GC_G(dtor_fiber) == fiber) {
2346
113
        GC_G(dtor_fiber) = NULL;
2347
113
      }
2348
113
      GC_DELREF(&fiber->std);
2349
113
      gc_check_possible_root((zend_refcounted*)&fiber->std.gc);
2350
113
      return;
2351
113
    }
2352
122
  }
2353
236
}
2354
2355
static zend_internal_function gc_destructor_fiber = {
2356
  .type = ZEND_INTERNAL_FUNCTION,
2357
  .fn_flags = ZEND_ACC_PUBLIC,
2358
  .handler = ZEND_FN(gc_destructor_fiber),
2359
};
2360
2361
void gc_init(void)
2362
16
{
2363
16
  gc_destructor_fiber.function_name = zend_string_init_interned(
2364
16
      "gc_destructor_fiber",
2365
16
      strlen("gc_destructor_fiber"),
2366
      true);
2367
16
}