Coverage Report

Created: 2026-06-02 06:36

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/php-src/Zend/zend_alloc.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: Andi Gutmans <andi@php.net>                                 |
15
   |          Zeev Suraski <zeev@php.net>                                 |
16
   |          Dmitry Stogov <dmitry@php.net>                              |
17
   +----------------------------------------------------------------------+
18
*/
19
20
/*
21
 * zend_alloc is designed to be a modern CPU cache friendly memory manager
22
 * for PHP. Most ideas are taken from jemalloc and tcmalloc implementations.
23
 *
24
 * All allocations are split into 3 categories:
25
 *
26
 * Huge  - the size is greater than CHUNK size (~2M by default), allocation is
27
 *         performed using mmap(). The result is aligned on 2M boundary.
28
 *
29
 * Large - a number of 4096K pages inside a CHUNK. Large blocks
30
 *         are always aligned on page boundary.
31
 *
32
 * Small - less than 3/4 of page size. Small sizes are rounded up to nearest
33
 *         greater predefined small size (there are 30 predefined sizes:
34
 *         8, 16, 24, 32, ... 3072). Small blocks are allocated from
35
 *         RUNs. Each RUN is allocated as a single or few following pages.
36
 *         Allocation inside RUNs implemented using linked list of free
37
 *         elements. The result is aligned to 8 bytes.
38
 *
39
 * zend_alloc allocates memory from OS by CHUNKs, these CHUNKs and huge memory
40
 * blocks are always aligned to CHUNK boundary. So it's very easy to determine
41
 * the CHUNK owning the certain pointer. Regular CHUNKs reserve a single
42
 * page at start for special purpose. It contains bitset of free pages,
43
 * few bitset for available runs of predefined small sizes, map of pages that
44
 * keeps information about usage of each page in this CHUNK, etc.
45
 *
46
 * zend_alloc provides familiar emalloc/efree/erealloc API, but in addition it
47
 * provides specialized and optimized routines to allocate blocks of predefined
48
 * sizes (e.g. emalloc_2(), emallc_4(), ..., emalloc_large(), etc)
49
 * The library uses C preprocessor tricks that substitute calls to emalloc()
50
 * with more specialized routines when the requested size is known.
51
 */
52
53
#include "zend.h"
54
#include "zend_alloc.h"
55
#include "zend_globals.h"
56
#include "zend_hrtime.h"
57
#include "zend_operators.h"
58
#include "zend_multiply.h"
59
#include "zend_bitset.h"
60
#include "zend_mmap.h"
61
#include "zend_portability.h"
62
#include <signal.h>
63
64
#ifdef HAVE_UNISTD_H
65
# include <unistd.h>
66
#endif
67
68
#ifdef ZEND_WIN32
69
# include <wincrypt.h>
70
# include <process.h>
71
# include "win32/winutil.h"
72
# define getpid _getpid
73
typedef int pid_t;
74
#endif
75
76
#include <stdio.h>
77
#include <stdlib.h>
78
#include <string.h>
79
80
#include <sys/types.h>
81
#include <sys/stat.h>
82
#include <limits.h>
83
#include <fcntl.h>
84
#include <errno.h>
85
#ifdef __SANITIZE_ADDRESS__
86
# include <sanitizer/asan_interface.h>
87
#endif
88
89
#ifndef _WIN32
90
# include <sys/mman.h>
91
# ifndef MAP_ANON
92
#  ifdef MAP_ANONYMOUS
93
#   define MAP_ANON MAP_ANONYMOUS
94
#  endif
95
# endif
96
# ifndef MAP_FAILED
97
#  define MAP_FAILED ((void*)-1)
98
# endif
99
# ifndef MAP_POPULATE
100
#  define MAP_POPULATE 0
101
# endif
102
#  if defined(_SC_PAGESIZE) || (_SC_PAGE_SIZE)
103
2
#    define REAL_PAGE_SIZE _real_page_size
104
static size_t _real_page_size = ZEND_MM_PAGE_SIZE;
105
#  endif
106
# ifdef MAP_ALIGNED_SUPER
107
#    define MAP_HUGETLB MAP_ALIGNED_SUPER
108
# endif
109
#endif
110
111
#ifndef REAL_PAGE_SIZE
112
# define REAL_PAGE_SIZE ZEND_MM_PAGE_SIZE
113
#endif
114
115
/* NetBSD has an mremap() function with a signature that is incompatible with Linux (WTF?),
116
 * so pretend it doesn't exist. */
117
#ifndef __linux__
118
# undef HAVE_MREMAP
119
#endif
120
121
#ifndef __APPLE__
122
0
# define ZEND_MM_FD -1
123
#else
124
# include <mach/vm_statistics.h>
125
/* Mac allows to track anonymous page via vmmap per TAG id.
126
 * user land applications are allowed to take from 240 to 255.
127
 */
128
# define ZEND_MM_FD VM_MAKE_TAG(250U)
129
#endif
130
131
#ifndef ZEND_MM_STAT
132
# define ZEND_MM_STAT 1    /* track current and peak memory usage            */
133
#endif
134
#ifndef ZEND_MM_LIMIT
135
# define ZEND_MM_LIMIT 1   /* support for user-defined memory limit          */
136
#endif
137
#ifndef ZEND_MM_CUSTOM
138
# define ZEND_MM_CUSTOM 1  /* support for custom memory allocator            */
139
                           /* USE_ZEND_ALLOC=0 may switch to system malloc() */
140
#endif
141
#ifndef ZEND_MM_STORAGE
142
# define ZEND_MM_STORAGE 1 /* support for custom memory storage              */
143
#endif
144
#ifndef ZEND_MM_ERROR
145
# define ZEND_MM_ERROR 1   /* report system errors                           */
146
#endif
147
#ifndef ZEND_MM_HEAP_PROTECTION
148
# define ZEND_MM_HEAP_PROTECTION 1 /* protect heap against corruptions       */
149
#endif
150
151
#if ZEND_MM_HEAP_PROTECTION
152
/* Define ZEND_MM_MIN_USEABLE_BIN_SIZE to the size of two pointers */
153
# if UINTPTR_MAX == UINT64_MAX
154
0
#  define ZEND_MM_MIN_USEABLE_BIN_SIZE 16
155
# elif UINTPTR_MAX == UINT32_MAX
156
#  define ZEND_MM_MIN_USEABLE_BIN_SIZE 8
157
# else
158
#  error
159
# endif
160
# if ZEND_MM_MIN_USEABLE_BIN_SIZE < ZEND_MM_MIN_SMALL_SIZE
161
#  error
162
# endif
163
#else /* ZEND_MM_HEAP_PROTECTION */
164
# define ZEND_MM_MIN_USEABLE_BIN_SIZE ZEND_MM_MIN_SMALL_SIZE
165
#endif /* ZEND_MM_HEAP_PROTECTION */
166
167
#ifndef ZEND_MM_CHECK
168
0
# define ZEND_MM_CHECK(condition, message)  do { \
169
0
    if (UNEXPECTED(!(condition))) { \
170
0
      zend_mm_panic(message); \
171
0
    } \
172
0
  } while (0)
173
#endif
174
175
typedef uint32_t   zend_mm_page_info; /* 4-byte integer */
176
typedef zend_ulong zend_mm_bitset;    /* 4-byte or 8-byte integer */
177
178
#define ZEND_MM_ALIGNED_OFFSET(size, alignment) \
179
0
  (((size_t)(size)) & ((alignment) - 1))
180
#define ZEND_MM_ALIGNED_BASE(size, alignment) \
181
0
  (((size_t)(size)) & ~((alignment) - 1))
182
#define ZEND_MM_SIZE_TO_NUM(size, alignment) \
183
0
  (((size_t)(size) + ((alignment) - 1)) / (alignment))
184
185
0
#define ZEND_MM_BITSET_LEN    (sizeof(zend_mm_bitset) * 8)       /* 32 or 64 */
186
#define ZEND_MM_PAGE_MAP_LEN  (ZEND_MM_PAGES / ZEND_MM_BITSET_LEN) /* 16 or 8 */
187
188
typedef zend_mm_bitset zend_mm_page_map[ZEND_MM_PAGE_MAP_LEN];     /* 64B */
189
190
#define ZEND_MM_IS_FRUN                  0x00000000
191
0
#define ZEND_MM_IS_LRUN                  0x40000000
192
0
#define ZEND_MM_IS_SRUN                  0x80000000
193
194
0
#define ZEND_MM_LRUN_PAGES_MASK          0x000003ff
195
0
#define ZEND_MM_LRUN_PAGES_OFFSET        0
196
197
0
#define ZEND_MM_SRUN_BIN_NUM_MASK        0x0000001f
198
0
#define ZEND_MM_SRUN_BIN_NUM_OFFSET      0
199
200
0
#define ZEND_MM_SRUN_FREE_COUNTER_MASK   0x01ff0000
201
0
#define ZEND_MM_SRUN_FREE_COUNTER_OFFSET 16
202
203
0
#define ZEND_MM_NRUN_OFFSET_MASK         0x01ff0000
204
0
#define ZEND_MM_NRUN_OFFSET_OFFSET       16
205
206
0
#define ZEND_MM_LRUN_PAGES(info)         (((info) & ZEND_MM_LRUN_PAGES_MASK) >> ZEND_MM_LRUN_PAGES_OFFSET)
207
0
#define ZEND_MM_SRUN_BIN_NUM(info)       (((info) & ZEND_MM_SRUN_BIN_NUM_MASK) >> ZEND_MM_SRUN_BIN_NUM_OFFSET)
208
0
#define ZEND_MM_SRUN_FREE_COUNTER(info)  (((info) & ZEND_MM_SRUN_FREE_COUNTER_MASK) >> ZEND_MM_SRUN_FREE_COUNTER_OFFSET)
209
0
#define ZEND_MM_NRUN_OFFSET(info)        (((info) & ZEND_MM_NRUN_OFFSET_MASK) >> ZEND_MM_NRUN_OFFSET_OFFSET)
210
211
#define ZEND_MM_FRUN()                   ZEND_MM_IS_FRUN
212
0
#define ZEND_MM_LRUN(count)              (ZEND_MM_IS_LRUN | ((count) << ZEND_MM_LRUN_PAGES_OFFSET))
213
0
#define ZEND_MM_SRUN(bin_num)            (ZEND_MM_IS_SRUN | ((bin_num) << ZEND_MM_SRUN_BIN_NUM_OFFSET))
214
0
#define ZEND_MM_SRUN_EX(bin_num, count)  (ZEND_MM_IS_SRUN | ((bin_num) << ZEND_MM_SRUN_BIN_NUM_OFFSET) | ((count) << ZEND_MM_SRUN_FREE_COUNTER_OFFSET))
215
0
#define ZEND_MM_NRUN(bin_num, offset)    (ZEND_MM_IS_SRUN | ZEND_MM_IS_LRUN | ((bin_num) << ZEND_MM_SRUN_BIN_NUM_OFFSET) | ((offset) << ZEND_MM_NRUN_OFFSET_OFFSET))
216
217
0
#define ZEND_MM_BINS 30
218
219
#if UINTPTR_MAX == UINT64_MAX
220
0
#  define BSWAPPTR(u) ZEND_BYTES_SWAP64(u)
221
#else
222
#  define BSWAPPTR(u) ZEND_BYTES_SWAP32(u)
223
#endif
224
225
typedef struct  _zend_mm_page      zend_mm_page;
226
typedef struct  _zend_mm_bin       zend_mm_bin;
227
typedef struct  _zend_mm_free_slot zend_mm_free_slot;
228
typedef struct  _zend_mm_chunk     zend_mm_chunk;
229
typedef struct  _zend_mm_huge_list zend_mm_huge_list;
230
231
static bool zend_mm_use_huge_pages = false;
232
233
/*
234
 * Memory is retrieved from OS by chunks of fixed size 2MB.
235
 * Inside chunk it's managed by pages of fixed size 4096B.
236
 * So each chunk consists from 512 pages.
237
 * The first page of each chunk is reserved for chunk header.
238
 * It contains service information about all pages.
239
 *
240
 * free_pages - current number of free pages in this chunk
241
 *
242
 * free_tail  - number of continuous free pages at the end of chunk
243
 *
244
 * free_map   - bitset (a bit for each page). The bit is set if the corresponding
245
 *              page is allocated. Allocator for "large sizes" may easily find a
246
 *              free page (or a continuous number of pages) searching for zero
247
 *              bits.
248
 *
249
 * map        - contains service information for each page. (32-bits for each
250
 *              page).
251
 *    usage:
252
 *        (2 bits)
253
 *        FRUN - free page,
254
 *              LRUN - first page of "large" allocation
255
 *              SRUN - first page of a bin used for "small" allocation
256
 *
257
 *    lrun_pages:
258
 *              (10 bits) number of allocated pages
259
 *
260
 *    srun_bin_num:
261
 *              (5 bits) bin number (e.g. 0 for sizes 0-2, 1 for 3-4,
262
 *               2 for 5-8, 3 for 9-16 etc) see zend_alloc_sizes.h
263
 */
264
265
struct _zend_mm_heap {
266
#if ZEND_MM_CUSTOM
267
  int                use_custom_heap;
268
#endif
269
#if ZEND_MM_STORAGE
270
  zend_mm_storage   *storage;
271
#endif
272
#if ZEND_MM_STAT
273
  size_t             size;                    /* current memory usage */
274
  size_t             peak;                    /* peak memory usage */
275
#endif
276
  uintptr_t          shadow_key;              /* free slot shadow ptr xor key */
277
  zend_mm_free_slot *free_slot[ZEND_MM_BINS]; /* free lists for small sizes */
278
#if ZEND_MM_STAT || ZEND_MM_LIMIT
279
  size_t             real_size;               /* current size of allocated pages */
280
#endif
281
#if ZEND_MM_STAT
282
  size_t             real_peak;               /* peak size of allocated pages */
283
#endif
284
#if ZEND_MM_LIMIT
285
  size_t             limit;                   /* memory limit */
286
  int                overflow;                /* memory overflow flag */
287
#endif
288
289
  zend_mm_huge_list *huge_list;               /* list of huge allocated blocks */
290
291
  zend_mm_chunk     *main_chunk;
292
  zend_mm_chunk     *cached_chunks;     /* list of unused chunks */
293
  int                chunks_count;      /* number of allocated chunks */
294
  int                peak_chunks_count;   /* peak number of allocated chunks for current request */
295
  int                cached_chunks_count;   /* number of cached chunks */
296
  double             avg_chunks_count;    /* average number of chunks allocated per request */
297
  int                last_chunks_delete_boundary; /* number of chunks after last deletion */
298
  int                last_chunks_delete_count;    /* number of deletion over the last boundary */
299
#if ZEND_MM_CUSTOM
300
  struct {
301
    void      *(*_malloc)(size_t ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
302
    void       (*_free)(void*  ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
303
    void      *(*_realloc)(void*, size_t  ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
304
    size_t     (*_gc)(void);
305
    void       (*_shutdown)(bool full, bool silent);
306
  } custom_heap;
307
  union {
308
    HashTable *tracked_allocs;
309
    struct {
310
      bool    poison_alloc;
311
      uint8_t poison_alloc_value;
312
      bool    poison_free;
313
      uint8_t poison_free_value;
314
      uint8_t padding;
315
      bool    check_freelists_on_shutdown;
316
    } debug;
317
  };
318
#endif
319
#if ZEND_DEBUG
320
  pid_t pid;
321
#endif
322
  zend_random_bytes_insecure_state rand_state;
323
};
324
325
struct _zend_mm_chunk {
326
  zend_mm_heap      *heap;
327
  zend_mm_chunk     *next;
328
  zend_mm_chunk     *prev;
329
  uint32_t           free_pages;        /* number of free pages */
330
  uint32_t           free_tail;               /* number of free pages at the end of chunk */
331
  uint32_t           num;
332
  char               reserve[64 - (sizeof(void*) * 3 + sizeof(uint32_t) * 3)];
333
  zend_mm_heap       heap_slot;               /* used only in main chunk */
334
  zend_mm_page_map   free_map;                /* 512 bits or 64 bytes */
335
  zend_mm_page_info  map[ZEND_MM_PAGES];      /* 2 KB = 512 * 4 */
336
};
337
338
struct _zend_mm_page {
339
  char               bytes[ZEND_MM_PAGE_SIZE];
340
};
341
342
/*
343
 * bin - is one or few continuous pages (up to 8) used for allocation of
344
 * a particular "small size".
345
 */
346
struct _zend_mm_bin {
347
  char               bytes[ZEND_MM_PAGE_SIZE * 8];
348
};
349
350
struct _zend_mm_free_slot {
351
  zend_mm_free_slot *next_free_slot;
352
};
353
354
struct _zend_mm_huge_list {
355
  void              *ptr;
356
  size_t             size;
357
  zend_mm_huge_list *next;
358
#if ZEND_DEBUG
359
  zend_mm_debug_info dbg;
360
#endif
361
};
362
363
#define ZEND_MM_PAGE_ADDR(chunk, page_num) \
364
0
  ((void*)(((zend_mm_page*)(chunk)) + (page_num)))
365
366
#define _BIN_DATA_SIZE(num, size, elements, pages, x, y) size,
367
static const uint32_t bin_data_size[] = {
368
  ZEND_MM_BINS_INFO(_BIN_DATA_SIZE, x, y)
369
};
370
371
#define _BIN_DATA_ELEMENTS(num, size, elements, pages, x, y) elements,
372
static const uint32_t bin_elements[] = {
373
  ZEND_MM_BINS_INFO(_BIN_DATA_ELEMENTS, x, y)
374
};
375
376
#define _BIN_DATA_PAGES(num, size, elements, pages, x, y) pages,
377
static const uint32_t bin_pages[] = {
378
  ZEND_MM_BINS_INFO(_BIN_DATA_PAGES, x, y)
379
};
380
381
static ZEND_COLD ZEND_NORETURN void zend_mm_panic(const char *message)
382
0
{
383
0
  fprintf(stderr, "%s\n", message);
384
/* See http://support.microsoft.com/kb/190351 */
385
#ifdef ZEND_WIN32
386
  fflush(stderr);
387
#endif
388
0
#if ZEND_DEBUG && defined(HAVE_KILL) && defined(HAVE_GETPID)
389
0
  kill(getpid(), SIGSEGV);
390
0
#endif
391
0
  abort();
392
0
}
393
394
static ZEND_COLD ZEND_NORETURN void zend_mm_safe_error(zend_mm_heap *heap,
395
  const char *format,
396
  size_t limit,
397
#if ZEND_DEBUG
398
  const char *filename,
399
  uint32_t lineno,
400
#endif
401
  size_t size)
402
19
{
403
404
19
  heap->overflow = 1;
405
19
  zend_try {
406
19
    zend_error_noreturn(E_ERROR,
407
19
      format,
408
19
      limit,
409
19
#if ZEND_DEBUG
410
19
      filename,
411
19
      lineno,
412
19
#endif
413
19
      size);
414
19
  } zend_catch {
415
19
  }  zend_end_try();
416
19
  heap->overflow = 0;
417
19
  zend_bailout();
418
0
  exit(1);
419
19
}
420
421
#ifdef _WIN32
422
static void stderr_last_error(char *msg)
423
{
424
  DWORD err = GetLastError();
425
  char *buf = php_win32_error_to_msg(err);
426
427
  if (!buf[0]) {
428
    fprintf(stderr, "\n%s: [0x%08lx]\n", msg, err);
429
  }
430
  else {
431
    fprintf(stderr, "\n%s: [0x%08lx] %s\n", msg, err, buf);
432
  }
433
434
  php_win32_error_msg_free(buf);
435
}
436
#endif
437
438
/*****************/
439
/* OS Allocation */
440
/*****************/
441
442
static void zend_mm_munmap(void *addr, size_t size)
443
0
{
444
#ifdef _WIN32
445
  if (VirtualFree(addr, 0, MEM_RELEASE) == 0) {
446
    /** ERROR_INVALID_ADDRESS is expected when addr is not range start address */
447
    if (GetLastError() != ERROR_INVALID_ADDRESS) {
448
#if ZEND_MM_ERROR
449
      stderr_last_error("VirtualFree() failed");
450
#endif
451
      return;
452
    }
453
    SetLastError(0);
454
455
    MEMORY_BASIC_INFORMATION mbi;
456
    if (VirtualQuery(addr, &mbi, sizeof(mbi)) == 0) {
457
#if ZEND_MM_ERROR
458
      stderr_last_error("VirtualQuery() failed");
459
#endif
460
      return;
461
    }
462
    addr = mbi.AllocationBase;
463
464
    if (VirtualFree(addr, 0, MEM_RELEASE) == 0) {
465
#if ZEND_MM_ERROR
466
      stderr_last_error("VirtualFree() failed");
467
#endif
468
    }
469
  }
470
#else
471
0
  if (munmap(addr, size) != 0) {
472
0
#if ZEND_MM_ERROR
473
0
    fprintf(stderr, "\nmunmap() failed: [%d] %s\n", errno, strerror(errno));
474
0
#endif
475
0
  }
476
0
#endif
477
0
}
478
479
#ifndef HAVE_MREMAP
480
static void *zend_mm_mmap_fixed(void *addr, size_t size)
481
{
482
#ifdef _WIN32
483
  void *ptr = VirtualAlloc(addr, size, MEM_COMMIT | MEM_RESERVE, PAGE_READWRITE);
484
485
  if (ptr == NULL) {
486
    /** ERROR_INVALID_ADDRESS is expected when fixed addr range is not free */
487
    if (GetLastError() != ERROR_INVALID_ADDRESS) {
488
#if ZEND_MM_ERROR
489
      stderr_last_error("VirtualAlloc() fixed failed");
490
#endif
491
    }
492
    SetLastError(0);
493
    return NULL;
494
  }
495
  ZEND_ASSERT(ptr == addr);
496
  return ptr;
497
#else
498
  int flags = MAP_PRIVATE | MAP_ANON;
499
#if defined(MAP_EXCL)
500
  flags |= MAP_FIXED | MAP_EXCL;
501
#elif defined(MAP_TRYFIXED)
502
  flags |= MAP_TRYFIXED;
503
#endif
504
  /* MAP_FIXED leads to discarding of the old mapping, so it can't be used. */
505
  void *ptr = mmap(addr, size, PROT_READ | PROT_WRITE, flags /*| MAP_POPULATE | MAP_HUGETLB*/, ZEND_MM_FD, 0);
506
507
  if (ptr == MAP_FAILED) {
508
#if ZEND_MM_ERROR && !defined(MAP_EXCL) && !defined(MAP_TRYFIXED)
509
    fprintf(stderr, "\nmmap() fixed failed: [%d] %s\n", errno, strerror(errno));
510
#endif
511
    return NULL;
512
  } else if (ptr != addr) {
513
    zend_mm_munmap(ptr, size);
514
    return NULL;
515
  }
516
  return ptr;
517
#endif
518
}
519
#endif
520
521
static void *zend_mm_mmap(size_t size)
522
0
{
523
#ifdef _WIN32
524
  void *ptr = VirtualAlloc(NULL, size, MEM_COMMIT | MEM_RESERVE, PAGE_READWRITE);
525
526
  if (ptr == NULL) {
527
#if ZEND_MM_ERROR
528
    stderr_last_error("VirtualAlloc() failed");
529
#endif
530
    return NULL;
531
  }
532
  return ptr;
533
#else
534
0
  void *ptr;
535
536
0
#if defined(MAP_HUGETLB) || defined(VM_FLAGS_SUPERPAGE_SIZE_2MB)
537
0
  if (zend_mm_use_huge_pages && size == ZEND_MM_CHUNK_SIZE) {
538
0
    int fd = -1;
539
0
    int mflags = MAP_PRIVATE | MAP_ANON;
540
0
#if defined(MAP_HUGETLB)
541
0
    mflags |= MAP_HUGETLB;
542
#else
543
    fd = VM_FLAGS_SUPERPAGE_SIZE_2MB;
544
#endif
545
0
    ptr = mmap(NULL, size, PROT_READ | PROT_WRITE, mflags, fd, 0);
546
0
    if (ptr != MAP_FAILED) {
547
0
      zend_mmap_set_name(ptr, size, "zend_alloc");
548
0
      return ptr;
549
0
    }
550
0
  }
551
0
#endif
552
553
0
  ptr = mmap(NULL, size, PROT_READ | PROT_WRITE, MAP_PRIVATE | MAP_ANON, ZEND_MM_FD, 0);
554
555
0
  if (ptr == MAP_FAILED) {
556
0
#if ZEND_MM_ERROR
557
0
    fprintf(stderr, "\nmmap() failed: [%d] %s\n", errno, strerror(errno));
558
0
#endif
559
0
    return NULL;
560
0
  }
561
0
  zend_mmap_set_name(ptr, size, "zend_alloc");
562
0
  return ptr;
563
0
#endif
564
0
}
565
566
/***********/
567
/* Bitmask */
568
/***********/
569
570
/* number of trailing set (1) bits */
571
ZEND_ATTRIBUTE_CONST static zend_always_inline int zend_mm_bitset_nts(zend_mm_bitset bitset)
572
0
{
573
0
#if (defined(__GNUC__) || __has_builtin(__builtin_ctzl)) && SIZEOF_ZEND_LONG == SIZEOF_LONG && defined(PHP_HAVE_BUILTIN_CTZL)
574
0
  return __builtin_ctzl(~bitset);
575
#elif (defined(__GNUC__) || __has_builtin(__builtin_ctzll)) && defined(PHP_HAVE_BUILTIN_CTZLL)
576
  return __builtin_ctzll(~bitset);
577
#elif defined(_WIN32)
578
  unsigned long index;
579
580
#if defined(_WIN64)
581
  if (!BitScanForward64(&index, ~bitset)) {
582
#else
583
  if (!BitScanForward(&index, ~bitset)) {
584
#endif
585
    /* undefined behavior */
586
    return 32;
587
  }
588
589
  return (int)index;
590
#else
591
  int n;
592
593
  if (bitset == (zend_mm_bitset)-1) return ZEND_MM_BITSET_LEN;
594
595
  n = 0;
596
#if SIZEOF_ZEND_LONG == 8
597
  if (sizeof(zend_mm_bitset) == 8) {
598
    if ((bitset & 0xffffffff) == 0xffffffff) {n += 32; bitset = bitset >> Z_UL(32);}
599
  }
600
#endif
601
  if ((bitset & 0x0000ffff) == 0x0000ffff) {n += 16; bitset = bitset >> 16;}
602
  if ((bitset & 0x000000ff) == 0x000000ff) {n +=  8; bitset = bitset >>  8;}
603
  if ((bitset & 0x0000000f) == 0x0000000f) {n +=  4; bitset = bitset >>  4;}
604
  if ((bitset & 0x00000003) == 0x00000003) {n +=  2; bitset = bitset >>  2;}
605
  return n + (bitset & 1);
606
#endif
607
0
}
608
609
static zend_always_inline int zend_mm_bitset_is_set(zend_mm_bitset *bitset, int bit)
610
0
{
611
0
  return ZEND_BIT_TEST(bitset, bit);
612
0
}
613
614
static zend_always_inline void zend_mm_bitset_set_bit(zend_mm_bitset *bitset, int bit)
615
0
{
616
0
  bitset[bit / ZEND_MM_BITSET_LEN] |= (Z_UL(1) << (bit & (ZEND_MM_BITSET_LEN-1)));
617
0
}
618
619
static zend_always_inline void zend_mm_bitset_reset_bit(zend_mm_bitset *bitset, int bit)
620
0
{
621
0
  bitset[bit / ZEND_MM_BITSET_LEN] &= ~(Z_UL(1) << (bit & (ZEND_MM_BITSET_LEN-1)));
622
0
}
623
624
static zend_always_inline void zend_mm_bitset_set_range(zend_mm_bitset *bitset, int start, int len)
625
0
{
626
0
  if (len == 1) {
627
0
    zend_mm_bitset_set_bit(bitset, start);
628
0
  } else {
629
0
    int pos = start / ZEND_MM_BITSET_LEN;
630
0
    int end = (start + len - 1) / ZEND_MM_BITSET_LEN;
631
0
    int bit = start & (ZEND_MM_BITSET_LEN - 1);
632
0
    zend_mm_bitset tmp;
633
634
0
    if (pos != end) {
635
      /* set bits from "bit" to ZEND_MM_BITSET_LEN-1 */
636
0
      tmp = (zend_mm_bitset)-1 << bit;
637
0
      bitset[pos++] |= tmp;
638
0
      while (pos != end) {
639
        /* set all bits */
640
0
        bitset[pos++] = (zend_mm_bitset)-1;
641
0
      }
642
0
      end = (start + len - 1) & (ZEND_MM_BITSET_LEN - 1);
643
      /* set bits from "0" to "end" */
644
0
      tmp = (zend_mm_bitset)-1 >> ((ZEND_MM_BITSET_LEN - 1) - end);
645
0
      bitset[pos] |= tmp;
646
0
    } else {
647
0
      end = (start + len - 1) & (ZEND_MM_BITSET_LEN - 1);
648
      /* set bits from "bit" to "end" */
649
0
      tmp = (zend_mm_bitset)-1 << bit;
650
0
      tmp &= (zend_mm_bitset)-1 >> ((ZEND_MM_BITSET_LEN - 1) - end);
651
0
      bitset[pos] |= tmp;
652
0
    }
653
0
  }
654
0
}
655
656
static zend_always_inline void zend_mm_bitset_reset_range(zend_mm_bitset *bitset, int start, int len)
657
0
{
658
0
  if (len == 1) {
659
0
    zend_mm_bitset_reset_bit(bitset, start);
660
0
  } else {
661
0
    int pos = start / ZEND_MM_BITSET_LEN;
662
0
    int end = (start + len - 1) / ZEND_MM_BITSET_LEN;
663
0
    int bit = start & (ZEND_MM_BITSET_LEN - 1);
664
0
    zend_mm_bitset tmp;
665
666
0
    if (pos != end) {
667
      /* reset bits from "bit" to ZEND_MM_BITSET_LEN-1 */
668
0
      tmp = ~((Z_UL(1) << bit) - 1);
669
0
      bitset[pos++] &= ~tmp;
670
0
      while (pos != end) {
671
        /* set all bits */
672
0
        bitset[pos++] = 0;
673
0
      }
674
0
      end = (start + len - 1) & (ZEND_MM_BITSET_LEN - 1);
675
      /* reset bits from "0" to "end" */
676
0
      tmp = (zend_mm_bitset)-1 >> ((ZEND_MM_BITSET_LEN - 1) - end);
677
0
      bitset[pos] &= ~tmp;
678
0
    } else {
679
0
      end = (start + len - 1) & (ZEND_MM_BITSET_LEN - 1);
680
      /* reset bits from "bit" to "end" */
681
0
      tmp = (zend_mm_bitset)-1 << bit;
682
0
      tmp &= (zend_mm_bitset)-1 >> ((ZEND_MM_BITSET_LEN - 1) - end);
683
0
      bitset[pos] &= ~tmp;
684
0
    }
685
0
  }
686
0
}
687
688
static zend_always_inline int zend_mm_bitset_is_free_range(zend_mm_bitset *bitset, int start, int len)
689
0
{
690
0
  if (len == 1) {
691
0
    return !zend_mm_bitset_is_set(bitset, start);
692
0
  } else {
693
0
    int pos = start / ZEND_MM_BITSET_LEN;
694
0
    int end = (start + len - 1) / ZEND_MM_BITSET_LEN;
695
0
    int bit = start & (ZEND_MM_BITSET_LEN - 1);
696
0
    zend_mm_bitset tmp;
697
698
0
    if (pos != end) {
699
      /* set bits from "bit" to ZEND_MM_BITSET_LEN-1 */
700
0
      tmp = (zend_mm_bitset)-1 << bit;
701
0
      if ((bitset[pos++] & tmp) != 0) {
702
0
        return 0;
703
0
      }
704
0
      while (pos != end) {
705
        /* set all bits */
706
0
        if (bitset[pos++] != 0) {
707
0
          return 0;
708
0
        }
709
0
      }
710
0
      end = (start + len - 1) & (ZEND_MM_BITSET_LEN - 1);
711
      /* set bits from "0" to "end" */
712
0
      tmp = (zend_mm_bitset)-1 >> ((ZEND_MM_BITSET_LEN - 1) - end);
713
0
      return (bitset[pos] & tmp) == 0;
714
0
    } else {
715
0
      end = (start + len - 1) & (ZEND_MM_BITSET_LEN - 1);
716
      /* set bits from "bit" to "end" */
717
0
      tmp = (zend_mm_bitset)-1 << bit;
718
0
      tmp &= (zend_mm_bitset)-1 >> ((ZEND_MM_BITSET_LEN - 1) - end);
719
0
      return (bitset[pos] & tmp) == 0;
720
0
    }
721
0
  }
722
0
}
723
724
/**********/
725
/* Chunks */
726
/**********/
727
728
static zend_always_inline void zend_mm_hugepage(void* ptr, size_t size)
729
0
{
730
0
#if defined(MADV_HUGEPAGE)
731
0
  (void)madvise(ptr, size, MADV_HUGEPAGE);
732
#elif defined(HAVE_MEMCNTL)
733
  struct memcntl_mha m = {.mha_cmd = MHA_MAPSIZE_VA, .mha_pagesize = ZEND_MM_CHUNK_SIZE, .mha_flags = 0};
734
  (void)memcntl(ptr, size, MC_HAT_ADVISE, (char *)&m, 0, 0);
735
#elif !defined(VM_FLAGS_SUPERPAGE_SIZE_2MB) && !defined(MAP_ALIGNED_SUPER)
736
  zend_error_noreturn(E_ERROR, "huge_pages: thp unsupported on this platform");
737
#endif
738
0
}
739
740
static void *zend_mm_chunk_alloc_int(size_t size, size_t alignment)
741
0
{
742
0
  void *ptr = zend_mm_mmap(size);
743
744
0
  if (ptr == NULL) {
745
0
    return NULL;
746
0
  } else if (ZEND_MM_ALIGNED_OFFSET(ptr, alignment) == 0) {
747
0
    if (zend_mm_use_huge_pages) {
748
0
      zend_mm_hugepage(ptr, size);
749
0
    }
750
#ifdef __SANITIZE_ADDRESS__
751
    ASAN_UNPOISON_MEMORY_REGION(ptr, size);
752
#endif
753
0
    return ptr;
754
0
  } else {
755
0
    size_t offset;
756
757
    /* chunk has to be aligned */
758
0
    zend_mm_munmap(ptr, size);
759
0
    ptr = zend_mm_mmap(size + alignment - REAL_PAGE_SIZE);
760
#ifdef _WIN32
761
    offset = ZEND_MM_ALIGNED_OFFSET(ptr, alignment);
762
    if (offset != 0) {
763
      offset = alignment - offset;
764
    }
765
    zend_mm_munmap(ptr, size + alignment - REAL_PAGE_SIZE);
766
    ptr = zend_mm_mmap_fixed((void*)((char*)ptr + offset), size);
767
    if (ptr == NULL) { // fix GH-9650, fixed addr range is not free
768
      ptr = zend_mm_mmap(size + alignment - REAL_PAGE_SIZE);
769
      if (ptr == NULL) {
770
        return NULL;
771
      }
772
      offset = ZEND_MM_ALIGNED_OFFSET(ptr, alignment);
773
      if (offset != 0) {
774
        ptr = (void*)((char*)ptr + alignment - offset);
775
      }
776
    }
777
    return ptr;
778
#else
779
0
    offset = ZEND_MM_ALIGNED_OFFSET(ptr, alignment);
780
0
    if (offset != 0) {
781
0
      offset = alignment - offset;
782
0
      zend_mm_munmap(ptr, offset);
783
0
      ptr = (char*)ptr + offset;
784
0
      alignment -= offset;
785
0
    }
786
0
    if (alignment > REAL_PAGE_SIZE) {
787
0
      zend_mm_munmap((char*)ptr + size, alignment - REAL_PAGE_SIZE);
788
0
    }
789
0
    if (zend_mm_use_huge_pages) {
790
0
      zend_mm_hugepage(ptr, size);
791
0
    }
792
# ifdef __SANITIZE_ADDRESS__
793
    ASAN_UNPOISON_MEMORY_REGION(ptr, size);
794
# endif
795
0
#endif
796
0
    return ptr;
797
0
  }
798
0
}
799
800
static void *zend_mm_chunk_alloc(zend_mm_heap *heap, size_t size, size_t alignment)
801
0
{
802
0
#if ZEND_MM_STORAGE
803
0
  if (UNEXPECTED(heap->storage)) {
804
0
    void *ptr = heap->storage->handlers.chunk_alloc(heap->storage, size, alignment);
805
0
    ZEND_ASSERT(((uintptr_t)((char*)ptr + (alignment-1)) & (alignment-1)) == (uintptr_t)ptr);
806
0
    return ptr;
807
0
  }
808
0
#endif
809
0
  return zend_mm_chunk_alloc_int(size, alignment);
810
0
}
811
812
static void zend_mm_chunk_free(zend_mm_heap *heap, void *addr, size_t size)
813
0
{
814
0
#if ZEND_MM_STORAGE
815
0
  if (UNEXPECTED(heap->storage)) {
816
0
    heap->storage->handlers.chunk_free(heap->storage, addr, size);
817
0
    return;
818
0
  }
819
0
#endif
820
0
  zend_mm_munmap(addr, size);
821
0
}
822
823
static int zend_mm_chunk_truncate(zend_mm_heap *heap, void *addr, size_t old_size, size_t new_size)
824
0
{
825
0
#if ZEND_MM_STORAGE
826
0
  if (UNEXPECTED(heap->storage)) {
827
0
    if (heap->storage->handlers.chunk_truncate) {
828
0
      return heap->storage->handlers.chunk_truncate(heap->storage, addr, old_size, new_size);
829
0
    } else {
830
0
      return 0;
831
0
    }
832
0
  }
833
0
#endif
834
0
#ifndef _WIN32
835
0
  zend_mm_munmap((char*)addr + new_size, old_size - new_size);
836
0
  return 1;
837
#else
838
  return 0;
839
#endif
840
0
}
841
842
static int zend_mm_chunk_extend(zend_mm_heap *heap, void *addr, size_t old_size, size_t new_size)
843
0
{
844
0
#if ZEND_MM_STORAGE
845
0
  if (UNEXPECTED(heap->storage)) {
846
0
    if (heap->storage->handlers.chunk_extend) {
847
0
      return heap->storage->handlers.chunk_extend(heap->storage, addr, old_size, new_size);
848
0
    } else {
849
0
      return 0;
850
0
    }
851
0
  }
852
0
#endif
853
0
#ifdef HAVE_MREMAP
854
  /* We don't use MREMAP_MAYMOVE due to alignment requirements. */
855
0
  void *ptr = mremap(addr, old_size, new_size, 0);
856
0
  if (ptr == MAP_FAILED) {
857
0
    return 0;
858
0
  }
859
  /* Sanity check: The mapping shouldn't have moved. */
860
0
  ZEND_ASSERT(ptr == addr);
861
0
  return 1;
862
#elif !defined(_WIN32)
863
  return (zend_mm_mmap_fixed((char*)addr + old_size, new_size - old_size) != NULL);
864
#else
865
  return 0;
866
#endif
867
0
}
868
869
static zend_always_inline void zend_mm_chunk_init(zend_mm_heap *heap, zend_mm_chunk *chunk)
870
0
{
871
0
  chunk->heap = heap;
872
0
  chunk->next = heap->main_chunk;
873
0
  chunk->prev = heap->main_chunk->prev;
874
0
  chunk->prev->next = chunk;
875
0
  chunk->next->prev = chunk;
876
  /* mark first pages as allocated */
877
0
  chunk->free_pages = ZEND_MM_PAGES - ZEND_MM_FIRST_PAGE;
878
0
  chunk->free_tail = ZEND_MM_FIRST_PAGE;
879
  /* the younger chunks have bigger number */
880
0
  chunk->num = chunk->prev->num + 1;
881
  /* mark first pages as allocated */
882
0
  chunk->free_map[0] = (1L << ZEND_MM_FIRST_PAGE) - 1;
883
0
  chunk->map[0] = ZEND_MM_LRUN(ZEND_MM_FIRST_PAGE);
884
0
}
885
886
/***********************/
887
/* Huge Runs (forward) */
888
/***********************/
889
890
static size_t zend_mm_get_huge_block_size(zend_mm_heap *heap, void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
891
static void *zend_mm_alloc_huge(zend_mm_heap *heap, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
892
static void zend_mm_free_huge(zend_mm_heap *heap, void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
893
894
#if ZEND_DEBUG
895
static void zend_mm_change_huge_block_size(zend_mm_heap *heap, void *ptr, size_t size, size_t dbg_size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
896
#else
897
static void zend_mm_change_huge_block_size(zend_mm_heap *heap, void *ptr, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
898
#endif
899
900
/**************/
901
/* Large Runs */
902
/**************/
903
904
#if ZEND_DEBUG
905
static void *zend_mm_alloc_pages(zend_mm_heap *heap, uint32_t pages_count, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
906
#else
907
static void *zend_mm_alloc_pages(zend_mm_heap *heap, uint32_t pages_count ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
908
#endif
909
0
{
910
0
  zend_mm_chunk *chunk = heap->main_chunk;
911
0
  uint32_t page_num, len;
912
0
  int steps = 0;
913
914
0
  while (1) {
915
0
    if (UNEXPECTED(chunk->free_pages < pages_count)) {
916
0
      goto not_found;
917
#if 0
918
    } else if (UNEXPECTED(chunk->free_pages + chunk->free_tail == ZEND_MM_PAGES)) {
919
      if (UNEXPECTED(ZEND_MM_PAGES - chunk->free_tail < pages_count)) {
920
        goto not_found;
921
      } else {
922
        page_num = chunk->free_tail;
923
        goto found;
924
      }
925
    } else if (0) {
926
      /* First-Fit Search */
927
      int free_tail = chunk->free_tail;
928
      zend_mm_bitset *bitset = chunk->free_map;
929
      zend_mm_bitset tmp = *(bitset++);
930
      int i = 0;
931
932
      while (1) {
933
        /* skip allocated blocks */
934
        while (tmp == (zend_mm_bitset)-1) {
935
          i += ZEND_MM_BITSET_LEN;
936
          if (i == ZEND_MM_PAGES) {
937
            goto not_found;
938
          }
939
          tmp = *(bitset++);
940
        }
941
        /* find first 0 bit */
942
        page_num = i + zend_mm_bitset_nts(tmp);
943
        /* reset bits from 0 to "bit" */
944
        tmp &= tmp + 1;
945
        /* skip free blocks */
946
        while (tmp == 0) {
947
          i += ZEND_MM_BITSET_LEN;
948
          len = i - page_num;
949
          if (len >= pages_count) {
950
            goto found;
951
          } else if (i >= free_tail) {
952
            goto not_found;
953
          }
954
          tmp = *(bitset++);
955
        }
956
        /* find first 1 bit */
957
        len = (i + zend_ulong_ntz(tmp)) - page_num;
958
        if (len >= pages_count) {
959
          goto found;
960
        }
961
        /* set bits from 0 to "bit" */
962
        tmp |= tmp - 1;
963
      }
964
#endif
965
0
    } else {
966
      /* Best-Fit Search */
967
0
      int best = -1;
968
0
      uint32_t best_len = ZEND_MM_PAGES;
969
0
      uint32_t free_tail = chunk->free_tail;
970
0
      zend_mm_bitset *bitset = chunk->free_map;
971
0
      zend_mm_bitset tmp = *(bitset++);
972
0
      uint32_t i = 0;
973
974
0
      while (1) {
975
        /* skip allocated blocks */
976
0
        while (tmp == (zend_mm_bitset)-1) {
977
0
          i += ZEND_MM_BITSET_LEN;
978
0
          if (i == ZEND_MM_PAGES) {
979
0
            if (best > 0) {
980
0
              page_num = best;
981
0
              goto found;
982
0
            } else {
983
0
              goto not_found;
984
0
            }
985
0
          }
986
0
          tmp = *(bitset++);
987
0
        }
988
        /* find first 0 bit */
989
0
        page_num = i + zend_mm_bitset_nts(tmp);
990
        /* reset bits from 0 to "bit" */
991
0
        tmp &= tmp + 1;
992
        /* skip free blocks */
993
0
        while (tmp == 0) {
994
0
          i += ZEND_MM_BITSET_LEN;
995
0
          if (i >= free_tail || i == ZEND_MM_PAGES) {
996
0
            len = ZEND_MM_PAGES - page_num;
997
0
            if (len >= pages_count && len < best_len) {
998
0
              chunk->free_tail = page_num + pages_count;
999
0
              goto found;
1000
0
            } else {
1001
              /* set accurate value */
1002
0
              chunk->free_tail = page_num;
1003
0
              if (best > 0) {
1004
0
                page_num = best;
1005
0
                goto found;
1006
0
              } else {
1007
0
                goto not_found;
1008
0
              }
1009
0
            }
1010
0
          }
1011
0
          tmp = *(bitset++);
1012
0
        }
1013
        /* find first 1 bit */
1014
0
        len = i + zend_ulong_ntz(tmp) - page_num;
1015
0
        if (len >= pages_count) {
1016
0
          if (len == pages_count) {
1017
0
            goto found;
1018
0
          } else if (len < best_len) {
1019
0
            best_len = len;
1020
0
            best = page_num;
1021
0
          }
1022
0
        }
1023
        /* set bits from 0 to "bit" */
1024
0
        tmp |= tmp - 1;
1025
0
      }
1026
0
    }
1027
1028
0
not_found:
1029
0
    if (chunk->next == heap->main_chunk) {
1030
0
get_chunk:
1031
0
      if (heap->cached_chunks) {
1032
0
        heap->cached_chunks_count--;
1033
0
        chunk = heap->cached_chunks;
1034
0
        heap->cached_chunks = chunk->next;
1035
0
      } else {
1036
0
#if ZEND_MM_LIMIT
1037
0
        if (UNEXPECTED(ZEND_MM_CHUNK_SIZE > heap->limit - heap->real_size)) {
1038
0
          if (zend_mm_gc(heap)) {
1039
0
            goto get_chunk;
1040
0
          } else if (heap->overflow == 0) {
1041
0
#if ZEND_DEBUG
1042
0
            zend_mm_safe_error(heap, "Allowed memory size of %zu bytes exhausted at %s:%d (tried to allocate %zu bytes)", heap->limit, __zend_filename, __zend_lineno, size);
1043
#else
1044
            zend_mm_safe_error(heap, "Allowed memory size of %zu bytes exhausted (tried to allocate %zu bytes)", heap->limit, ZEND_MM_PAGE_SIZE * pages_count);
1045
#endif
1046
0
            return NULL;
1047
0
          }
1048
0
        }
1049
0
#endif
1050
0
        chunk = (zend_mm_chunk*)zend_mm_chunk_alloc(heap, ZEND_MM_CHUNK_SIZE, ZEND_MM_CHUNK_SIZE);
1051
0
        if (UNEXPECTED(chunk == NULL)) {
1052
          /* insufficient memory */
1053
0
          if (zend_mm_gc(heap) &&
1054
0
              (chunk = (zend_mm_chunk*)zend_mm_chunk_alloc(heap, ZEND_MM_CHUNK_SIZE, ZEND_MM_CHUNK_SIZE)) != NULL) {
1055
            /* pass */
1056
0
          } else {
1057
#if !ZEND_MM_LIMIT
1058
            zend_mm_safe_error(heap, "Out of memory");
1059
#elif ZEND_DEBUG
1060
            zend_mm_safe_error(heap, "Out of memory (allocated %zu bytes) at %s:%d (tried to allocate %zu bytes)", heap->real_size, __zend_filename, __zend_lineno, size);
1061
#else
1062
            zend_mm_safe_error(heap, "Out of memory (allocated %zu bytes) (tried to allocate %zu bytes)", heap->real_size, ZEND_MM_PAGE_SIZE * pages_count);
1063
#endif
1064
0
            return NULL;
1065
0
          }
1066
0
        }
1067
0
#if ZEND_MM_STAT
1068
0
        do {
1069
0
          size_t size = heap->real_size + ZEND_MM_CHUNK_SIZE;
1070
0
          size_t peak = MAX(heap->real_peak, size);
1071
0
          heap->real_size = size;
1072
0
          heap->real_peak = peak;
1073
0
        } while (0);
1074
#elif ZEND_MM_LIMIT
1075
        heap->real_size += ZEND_MM_CHUNK_SIZE;
1076
1077
#endif
1078
0
      }
1079
0
      heap->chunks_count++;
1080
0
      if (heap->chunks_count > heap->peak_chunks_count) {
1081
0
        heap->peak_chunks_count = heap->chunks_count;
1082
0
      }
1083
0
      zend_mm_chunk_init(heap, chunk);
1084
0
      page_num = ZEND_MM_FIRST_PAGE;
1085
0
      len = ZEND_MM_PAGES - ZEND_MM_FIRST_PAGE;
1086
0
      goto found;
1087
0
    } else {
1088
0
      chunk = chunk->next;
1089
0
      steps++;
1090
0
    }
1091
0
  }
1092
1093
0
found:
1094
0
  if (steps > 2 && pages_count < 8) {
1095
0
    ZEND_MM_CHECK(chunk->next->prev == chunk, "zend_mm_heap corrupted");
1096
0
    ZEND_MM_CHECK(chunk->prev->next == chunk, "zend_mm_heap corrupted");
1097
1098
    /* move chunk into the head of the linked-list */
1099
0
    chunk->prev->next = chunk->next;
1100
0
    chunk->next->prev = chunk->prev;
1101
0
    chunk->next = heap->main_chunk->next;
1102
0
    chunk->prev = heap->main_chunk;
1103
0
    chunk->prev->next = chunk;
1104
0
    chunk->next->prev = chunk;
1105
0
  }
1106
  /* mark run as allocated */
1107
0
  chunk->free_pages -= pages_count;
1108
0
  zend_mm_bitset_set_range(chunk->free_map, page_num, pages_count);
1109
0
  chunk->map[page_num] = ZEND_MM_LRUN(pages_count);
1110
0
  if (page_num == chunk->free_tail) {
1111
0
    chunk->free_tail = page_num + pages_count;
1112
0
  }
1113
0
  return ZEND_MM_PAGE_ADDR(chunk, page_num);
1114
0
}
1115
1116
static zend_always_inline void *zend_mm_alloc_large_ex(zend_mm_heap *heap, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1117
0
{
1118
0
  int pages_count = (int)ZEND_MM_SIZE_TO_NUM(size, ZEND_MM_PAGE_SIZE);
1119
0
#if ZEND_DEBUG
1120
0
  void *ptr = zend_mm_alloc_pages(heap, pages_count, size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1121
#else
1122
  void *ptr = zend_mm_alloc_pages(heap, pages_count ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1123
#endif
1124
0
#if ZEND_MM_STAT
1125
0
  do {
1126
0
    size_t size = heap->size + pages_count * ZEND_MM_PAGE_SIZE;
1127
0
    size_t peak = MAX(heap->peak, size);
1128
0
    heap->size = size;
1129
0
    heap->peak = peak;
1130
0
  } while (0);
1131
0
#endif
1132
0
  return ptr;
1133
0
}
1134
1135
static zend_never_inline void *zend_mm_alloc_large(zend_mm_heap *heap, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1136
0
{
1137
0
  return zend_mm_alloc_large_ex(heap, size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1138
0
}
1139
1140
static zend_always_inline void zend_mm_delete_chunk(zend_mm_heap *heap, zend_mm_chunk *chunk)
1141
0
{
1142
0
  ZEND_MM_CHECK(chunk->next->prev == chunk, "zend_mm_heap corrupted");
1143
0
  ZEND_MM_CHECK(chunk->prev->next == chunk, "zend_mm_heap corrupted");
1144
1145
0
  chunk->next->prev = chunk->prev;
1146
0
  chunk->prev->next = chunk->next;
1147
0
  heap->chunks_count--;
1148
0
  if (heap->chunks_count + heap->cached_chunks_count < heap->avg_chunks_count + 0.1
1149
0
   || (heap->chunks_count == heap->last_chunks_delete_boundary
1150
0
    && heap->last_chunks_delete_count >= 4)) {
1151
    /* delay deletion */
1152
0
    heap->cached_chunks_count++;
1153
0
    chunk->next = heap->cached_chunks;
1154
0
    heap->cached_chunks = chunk;
1155
0
  } else {
1156
0
#if ZEND_MM_STAT || ZEND_MM_LIMIT
1157
0
    heap->real_size -= ZEND_MM_CHUNK_SIZE;
1158
0
#endif
1159
0
    if (!heap->cached_chunks) {
1160
0
      if (heap->chunks_count != heap->last_chunks_delete_boundary) {
1161
0
        heap->last_chunks_delete_boundary = heap->chunks_count;
1162
0
        heap->last_chunks_delete_count = 0;
1163
0
      } else {
1164
0
        heap->last_chunks_delete_count++;
1165
0
      }
1166
0
    }
1167
0
    if (!heap->cached_chunks || chunk->num > heap->cached_chunks->num) {
1168
0
      zend_mm_chunk_free(heap, chunk, ZEND_MM_CHUNK_SIZE);
1169
0
    } else {
1170
//TODO: select the best chunk to delete???
1171
0
      chunk->next = heap->cached_chunks->next;
1172
0
      zend_mm_chunk_free(heap, heap->cached_chunks, ZEND_MM_CHUNK_SIZE);
1173
0
      heap->cached_chunks = chunk;
1174
0
    }
1175
0
  }
1176
0
}
1177
1178
static zend_always_inline void zend_mm_free_pages_ex(zend_mm_heap *heap, zend_mm_chunk *chunk, uint32_t page_num, uint32_t pages_count, int free_chunk)
1179
0
{
1180
0
  chunk->free_pages += pages_count;
1181
0
  zend_mm_bitset_reset_range(chunk->free_map, page_num, pages_count);
1182
0
  chunk->map[page_num] = 0;
1183
0
  if (chunk->free_tail == page_num + pages_count) {
1184
    /* this setting may be not accurate */
1185
0
    chunk->free_tail = page_num;
1186
0
  }
1187
0
  if (free_chunk && chunk != heap->main_chunk && chunk->free_pages == ZEND_MM_PAGES - ZEND_MM_FIRST_PAGE) {
1188
0
    zend_mm_delete_chunk(heap, chunk);
1189
0
  }
1190
0
}
1191
1192
static zend_never_inline void zend_mm_free_pages(zend_mm_heap *heap, zend_mm_chunk *chunk, int page_num, int pages_count)
1193
0
{
1194
0
  zend_mm_free_pages_ex(heap, chunk, page_num, pages_count, 1);
1195
0
}
1196
1197
static zend_always_inline void zend_mm_free_large(zend_mm_heap *heap, zend_mm_chunk *chunk, int page_num, int pages_count)
1198
0
{
1199
0
#if ZEND_MM_STAT
1200
0
  heap->size -= pages_count * ZEND_MM_PAGE_SIZE;
1201
0
#endif
1202
0
  zend_mm_free_pages(heap, chunk, page_num, pages_count);
1203
0
}
1204
1205
/**************/
1206
/* Small Runs */
1207
/**************/
1208
1209
/* higher set bit number (0->N/A, 1->1, 2->2, 4->3, 8->4, 127->7, 128->8 etc) */
1210
static zend_always_inline int zend_mm_small_size_to_bit(int size)
1211
0
{
1212
0
#if (defined(__GNUC__) || __has_builtin(__builtin_clz))  && defined(PHP_HAVE_BUILTIN_CLZ)
1213
0
  return (__builtin_clz(size) ^ 0x1f) + 1;
1214
#elif defined(_WIN32)
1215
  unsigned long index;
1216
1217
  if (!BitScanReverse(&index, (unsigned long)size)) {
1218
    /* undefined behavior */
1219
    return 64;
1220
  }
1221
1222
  return (((31 - (int)index) ^ 0x1f) + 1);
1223
#else
1224
  int n = 16;
1225
  if (size <= 0x00ff) {n -= 8; size = size << 8;}
1226
  if (size <= 0x0fff) {n -= 4; size = size << 4;}
1227
  if (size <= 0x3fff) {n -= 2; size = size << 2;}
1228
  if (size <= 0x7fff) {n -= 1;}
1229
  return n;
1230
#endif
1231
0
}
1232
1233
#ifndef MAX
1234
# define MAX(a, b) (((a) > (b)) ? (a) : (b))
1235
#endif
1236
1237
#ifndef MIN
1238
# define MIN(a, b) (((a) < (b)) ? (a) : (b))
1239
#endif
1240
1241
static zend_always_inline int zend_mm_small_size_to_bin(size_t size)
1242
0
{
1243
#if 0
1244
  int n;
1245
                            /*0,  1,  2,  3,  4,  5,  6,  7,  8,  9  10, 11, 12*/
1246
  static const int f1[] = { 3,  3,  3,  3,  3,  3,  3,  4,  5,  6,  7,  8,  9};
1247
  static const int f2[] = { 0,  0,  0,  0,  0,  0,  0,  4,  8, 12, 16, 20, 24};
1248
1249
  if (UNEXPECTED(size <= 2)) return 0;
1250
  n = zend_mm_small_size_to_bit(size - 1);
1251
  return ((size-1) >> f1[n]) + f2[n];
1252
#else
1253
0
  unsigned int t1, t2;
1254
1255
0
  if (size <= 64) {
1256
    /* we need to support size == 0 ... */
1257
0
    return (size - !!size) >> 3;
1258
0
  } else {
1259
0
    t1 = size - 1;
1260
0
    t2 = zend_mm_small_size_to_bit(t1) - 3;
1261
0
    t1 = t1 >> t2;
1262
0
    t2 = t2 - 3;
1263
0
    t2 = t2 << 2;
1264
0
    return (int)(t1 + t2);
1265
0
  }
1266
0
#endif
1267
0
}
1268
1269
0
#define ZEND_MM_SMALL_SIZE_TO_BIN(size)  zend_mm_small_size_to_bin(size)
1270
1271
#if ZEND_MM_HEAP_PROTECTION
1272
/* We keep track of free slots by organizing them in a linked list, with the
1273
 * first word of every free slot being a pointer to the next one.
1274
 *
1275
 * In order to frustrate corruptions, we check the consistency of these pointers
1276
 * before dereference by comparing them with a shadow.
1277
 *
1278
 * The shadow is a copy of the pointer, stored at the end of the slot. It is
1279
 * XOR'ed with a random key, and converted to big-endian so that smaller
1280
 * corruptions affect the most significant bytes, which has a high chance of
1281
 * resulting in an invalid address instead of pointing to an adjacent slot.
1282
 */
1283
1284
#define ZEND_MM_FREE_SLOT_PTR_SHADOW(free_slot, bin_num) \
1285
0
  *((zend_mm_free_slot**)((char*)(free_slot) + bin_data_size[(bin_num)] - sizeof(zend_mm_free_slot*)))
1286
1287
static zend_always_inline zend_mm_free_slot* zend_mm_encode_free_slot(const zend_mm_heap *heap, const zend_mm_free_slot *slot)
1288
0
{
1289
#ifdef WORDS_BIGENDIAN
1290
  return (zend_mm_free_slot*)(((uintptr_t)slot) ^ heap->shadow_key);
1291
#else
1292
0
  return (zend_mm_free_slot*)(BSWAPPTR((uintptr_t)slot) ^ heap->shadow_key);
1293
0
#endif
1294
0
}
1295
1296
static zend_always_inline zend_mm_free_slot* zend_mm_decode_free_slot_key(uintptr_t shadow_key, zend_mm_free_slot *slot)
1297
0
{
1298
#ifdef WORDS_BIGENDIAN
1299
  return (zend_mm_free_slot*)((uintptr_t)slot ^ shadow_key);
1300
#else
1301
0
  return (zend_mm_free_slot*)(BSWAPPTR((uintptr_t)slot ^ shadow_key));
1302
0
#endif
1303
0
}
1304
1305
static zend_always_inline zend_mm_free_slot* zend_mm_decode_free_slot(zend_mm_heap *heap, zend_mm_free_slot *slot)
1306
0
{
1307
0
  return zend_mm_decode_free_slot_key(heap->shadow_key, slot);
1308
0
}
1309
1310
static zend_always_inline void zend_mm_set_next_free_slot(zend_mm_heap *heap, uint32_t bin_num, zend_mm_free_slot *slot, zend_mm_free_slot *next)
1311
0
{
1312
0
  ZEND_ASSERT(bin_data_size[bin_num] >= ZEND_MM_MIN_USEABLE_BIN_SIZE);
1313
1314
0
  slot->next_free_slot = next;
1315
0
  ZEND_MM_FREE_SLOT_PTR_SHADOW(slot, bin_num) = zend_mm_encode_free_slot(heap, next);
1316
0
}
1317
1318
static zend_always_inline zend_mm_free_slot *zend_mm_get_next_free_slot(zend_mm_heap *heap, uint32_t bin_num, zend_mm_free_slot* slot)
1319
0
{
1320
0
  zend_mm_free_slot *next = slot->next_free_slot;
1321
0
  if (EXPECTED(next != NULL)) {
1322
0
    zend_mm_free_slot *shadow = ZEND_MM_FREE_SLOT_PTR_SHADOW(slot, bin_num);
1323
0
    if (UNEXPECTED(next != zend_mm_decode_free_slot(heap, shadow))) {
1324
0
      zend_mm_panic("zend_mm_heap corrupted");
1325
0
    }
1326
0
  }
1327
0
  return (zend_mm_free_slot*)next;
1328
0
}
1329
1330
#else /* ZEND_MM_HEAP_PROTECTION */
1331
# define zend_mm_set_next_free_slot(heap, bin_num, slot, next) do { \
1332
    (slot)->next_free_slot = (next);                            \
1333
  } while (0)
1334
# define zend_mm_get_next_free_slot(heap, bin_num, slot) (slot)->next_free_slot
1335
#endif /* ZEND_MM_HEAP_PROTECTION */
1336
1337
static zend_never_inline void *zend_mm_alloc_small_slow(zend_mm_heap *heap, uint32_t bin_num ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1338
0
{
1339
0
  zend_mm_chunk *chunk;
1340
0
  int page_num;
1341
0
  zend_mm_bin *bin;
1342
0
  zend_mm_free_slot *p, *end;
1343
1344
0
#if ZEND_DEBUG
1345
0
  bin = (zend_mm_bin*)zend_mm_alloc_pages(heap, bin_pages[bin_num], bin_data_size[bin_num] ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1346
#else
1347
  bin = (zend_mm_bin*)zend_mm_alloc_pages(heap, bin_pages[bin_num] ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1348
#endif
1349
0
  if (UNEXPECTED(bin == NULL)) {
1350
    /* insufficient memory */
1351
0
    return NULL;
1352
0
  }
1353
1354
0
  chunk = (zend_mm_chunk*)ZEND_MM_ALIGNED_BASE(bin, ZEND_MM_CHUNK_SIZE);
1355
0
  page_num = ZEND_MM_ALIGNED_OFFSET(bin, ZEND_MM_CHUNK_SIZE) / ZEND_MM_PAGE_SIZE;
1356
0
  chunk->map[page_num] = ZEND_MM_SRUN(bin_num);
1357
0
  if (bin_pages[bin_num] > 1) {
1358
0
    uint32_t i = 1;
1359
1360
0
    do {
1361
0
      chunk->map[page_num+i] = ZEND_MM_NRUN(bin_num, i);
1362
0
      i++;
1363
0
    } while (i < bin_pages[bin_num]);
1364
0
  }
1365
1366
  /* create a linked list of elements from 1 to last */
1367
0
  end = (zend_mm_free_slot*)((char*)bin + (bin_data_size[bin_num] * (bin_elements[bin_num] - 1)));
1368
0
  heap->free_slot[bin_num] = p = (zend_mm_free_slot*)((char*)bin + bin_data_size[bin_num]);
1369
0
  do {
1370
0
    zend_mm_set_next_free_slot(heap, bin_num, p, (zend_mm_free_slot*)((char*)p + bin_data_size[bin_num]));
1371
0
#if ZEND_DEBUG
1372
0
    do {
1373
0
      zend_mm_debug_info *dbg = (zend_mm_debug_info*)((char*)p + bin_data_size[bin_num] - ZEND_MM_ALIGNED_SIZE(sizeof(zend_mm_debug_info)));
1374
0
      dbg->size = 0;
1375
0
    } while (0);
1376
0
#endif
1377
0
    p = (zend_mm_free_slot*)((char*)p + bin_data_size[bin_num]);
1378
0
  } while (p != end);
1379
1380
  /* terminate list using NULL */
1381
0
  p->next_free_slot = NULL;
1382
0
#if ZEND_DEBUG
1383
0
    do {
1384
0
      zend_mm_debug_info *dbg = (zend_mm_debug_info*)((char*)p + bin_data_size[bin_num] - ZEND_MM_ALIGNED_SIZE(sizeof(zend_mm_debug_info)));
1385
0
      dbg->size = 0;
1386
0
    } while (0);
1387
0
#endif
1388
1389
  /* return first element */
1390
0
  return bin;
1391
0
}
1392
1393
static zend_always_inline void *zend_mm_alloc_small(zend_mm_heap *heap, int bin_num ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1394
0
{
1395
0
  ZEND_ASSERT(bin_data_size[bin_num] >= ZEND_MM_MIN_USEABLE_BIN_SIZE);
1396
1397
0
#if ZEND_MM_STAT
1398
0
  do {
1399
0
    size_t size = heap->size + bin_data_size[bin_num];
1400
0
    size_t peak = MAX(heap->peak, size);
1401
0
    heap->size = size;
1402
0
    heap->peak = peak;
1403
0
  } while (0);
1404
0
#endif
1405
1406
0
  if (EXPECTED(heap->free_slot[bin_num] != NULL)) {
1407
0
    zend_mm_free_slot *p = heap->free_slot[bin_num];
1408
0
    heap->free_slot[bin_num] = zend_mm_get_next_free_slot(heap, bin_num, p);
1409
0
    return p;
1410
0
  } else {
1411
0
    return zend_mm_alloc_small_slow(heap, bin_num ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1412
0
  }
1413
0
}
1414
1415
static zend_always_inline void zend_mm_free_small(zend_mm_heap *heap, void *ptr, int bin_num)
1416
0
{
1417
0
  ZEND_ASSERT(bin_data_size[bin_num] >= ZEND_MM_MIN_USEABLE_BIN_SIZE);
1418
1419
0
  zend_mm_free_slot *p;
1420
1421
0
#if ZEND_MM_STAT
1422
0
  heap->size -= bin_data_size[bin_num];
1423
0
#endif
1424
1425
0
#if ZEND_DEBUG
1426
0
  do {
1427
0
    zend_mm_debug_info *dbg = (zend_mm_debug_info*)((char*)ptr + bin_data_size[bin_num] - ZEND_MM_ALIGNED_SIZE(sizeof(zend_mm_debug_info)));
1428
0
    dbg->size = 0;
1429
0
  } while (0);
1430
0
#endif
1431
1432
0
  p = (zend_mm_free_slot*)ptr;
1433
0
  zend_mm_set_next_free_slot(heap, bin_num, p, heap->free_slot[bin_num]);
1434
0
  heap->free_slot[bin_num] = p;
1435
0
}
1436
1437
/********/
1438
/* Heap */
1439
/********/
1440
1441
#if ZEND_DEBUG
1442
static zend_always_inline zend_mm_debug_info *zend_mm_get_debug_info(zend_mm_heap *heap, void *ptr)
1443
0
{
1444
0
  size_t page_offset = ZEND_MM_ALIGNED_OFFSET(ptr, ZEND_MM_CHUNK_SIZE);
1445
0
  zend_mm_chunk *chunk;
1446
0
  int page_num;
1447
0
  zend_mm_page_info info;
1448
1449
0
  ZEND_MM_CHECK(page_offset != 0, "zend_mm_heap corrupted");
1450
0
  chunk = (zend_mm_chunk*)ZEND_MM_ALIGNED_BASE(ptr, ZEND_MM_CHUNK_SIZE);
1451
0
  page_num = (int)(page_offset / ZEND_MM_PAGE_SIZE);
1452
0
  info = chunk->map[page_num];
1453
0
  ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
1454
0
  if (EXPECTED(info & ZEND_MM_IS_SRUN)) {
1455
0
    int bin_num = ZEND_MM_SRUN_BIN_NUM(info);
1456
0
    return (zend_mm_debug_info*)((char*)ptr + bin_data_size[bin_num] - ZEND_MM_ALIGNED_SIZE(sizeof(zend_mm_debug_info)));
1457
0
  } else /* if (info & ZEND_MM_IS_LRUN) */ {
1458
0
    int pages_count = ZEND_MM_LRUN_PAGES(info);
1459
1460
0
    return (zend_mm_debug_info*)((char*)ptr + ZEND_MM_PAGE_SIZE * pages_count - ZEND_MM_ALIGNED_SIZE(sizeof(zend_mm_debug_info)));
1461
0
  }
1462
0
}
1463
#endif
1464
1465
static zend_always_inline void *zend_mm_alloc_heap(zend_mm_heap *heap, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1466
0
{
1467
0
  void *ptr;
1468
0
#if ZEND_MM_HEAP_PROTECTION
1469
0
  if (size < ZEND_MM_MIN_USEABLE_BIN_SIZE) {
1470
0
    size = ZEND_MM_MIN_USEABLE_BIN_SIZE;
1471
0
  }
1472
0
#endif /* ZEND_MM_HEAP_PROTECTION */
1473
0
#if ZEND_DEBUG
1474
0
  size_t real_size = size;
1475
0
  zend_mm_debug_info *dbg;
1476
1477
  /* special handling for zero-size allocation */
1478
0
  size = MAX(size, 1);
1479
0
  size = ZEND_MM_ALIGNED_SIZE(size) + ZEND_MM_ALIGNED_SIZE(sizeof(zend_mm_debug_info));
1480
0
  if (UNEXPECTED(size < real_size)) {
1481
0
    zend_error_noreturn(E_ERROR, "Possible integer overflow in memory allocation (%zu + %zu)", ZEND_MM_ALIGNED_SIZE(real_size), ZEND_MM_ALIGNED_SIZE(sizeof(zend_mm_debug_info)));
1482
0
  }
1483
0
#endif
1484
0
  if (EXPECTED(size <= ZEND_MM_MAX_SMALL_SIZE)) {
1485
0
    ptr = zend_mm_alloc_small(heap, ZEND_MM_SMALL_SIZE_TO_BIN(size) ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1486
0
#if ZEND_DEBUG
1487
0
    dbg = zend_mm_get_debug_info(heap, ptr);
1488
0
    dbg->size = real_size;
1489
0
    dbg->filename = __zend_filename;
1490
0
    dbg->orig_filename = __zend_orig_filename;
1491
0
    dbg->lineno = __zend_lineno;
1492
0
    dbg->orig_lineno = __zend_orig_lineno;
1493
0
#endif
1494
0
    return ptr;
1495
0
  } else if (EXPECTED(size <= ZEND_MM_MAX_LARGE_SIZE)) {
1496
0
    ptr = zend_mm_alloc_large(heap, size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1497
0
#if ZEND_DEBUG
1498
0
    dbg = zend_mm_get_debug_info(heap, ptr);
1499
0
    dbg->size = real_size;
1500
0
    dbg->filename = __zend_filename;
1501
0
    dbg->orig_filename = __zend_orig_filename;
1502
0
    dbg->lineno = __zend_lineno;
1503
0
    dbg->orig_lineno = __zend_orig_lineno;
1504
0
#endif
1505
0
    return ptr;
1506
0
  } else {
1507
0
#if ZEND_DEBUG
1508
0
    size = real_size;
1509
0
#endif
1510
0
    return zend_mm_alloc_huge(heap, size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1511
0
  }
1512
0
}
1513
1514
static zend_always_inline void zend_mm_free_heap(zend_mm_heap *heap, void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1515
0
{
1516
0
  size_t page_offset = ZEND_MM_ALIGNED_OFFSET(ptr, ZEND_MM_CHUNK_SIZE);
1517
1518
0
  if (UNEXPECTED(page_offset == 0)) {
1519
0
    if (ptr != NULL) {
1520
0
      zend_mm_free_huge(heap, ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1521
0
    }
1522
0
  } else {
1523
0
    zend_mm_chunk *chunk = (zend_mm_chunk*)ZEND_MM_ALIGNED_BASE(ptr, ZEND_MM_CHUNK_SIZE);
1524
0
    int page_num = (int)(page_offset / ZEND_MM_PAGE_SIZE);
1525
0
    zend_mm_page_info info = chunk->map[page_num];
1526
1527
0
    ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
1528
0
    if (EXPECTED(info & ZEND_MM_IS_SRUN)) {
1529
0
      zend_mm_free_small(heap, ptr, ZEND_MM_SRUN_BIN_NUM(info));
1530
0
    } else /* if (info & ZEND_MM_IS_LRUN) */ {
1531
0
      int pages_count = ZEND_MM_LRUN_PAGES(info);
1532
1533
0
      ZEND_MM_CHECK(ZEND_MM_ALIGNED_OFFSET(page_offset, ZEND_MM_PAGE_SIZE) == 0, "zend_mm_heap corrupted");
1534
0
      zend_mm_free_large(heap, chunk, page_num, pages_count);
1535
0
    }
1536
0
  }
1537
0
}
1538
1539
static size_t zend_mm_size(zend_mm_heap *heap, void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1540
0
{
1541
0
  size_t page_offset = ZEND_MM_ALIGNED_OFFSET(ptr, ZEND_MM_CHUNK_SIZE);
1542
1543
0
  if (UNEXPECTED(page_offset == 0)) {
1544
0
    return zend_mm_get_huge_block_size(heap, ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1545
0
  } else {
1546
0
    zend_mm_chunk *chunk;
1547
#if 0 && ZEND_DEBUG
1548
    zend_mm_debug_info *dbg = zend_mm_get_debug_info(heap, ptr);
1549
    return dbg->size;
1550
#else
1551
0
    int page_num;
1552
0
    zend_mm_page_info info;
1553
1554
0
    chunk = (zend_mm_chunk*)ZEND_MM_ALIGNED_BASE(ptr, ZEND_MM_CHUNK_SIZE);
1555
0
    page_num = (int)(page_offset / ZEND_MM_PAGE_SIZE);
1556
0
    info = chunk->map[page_num];
1557
0
    ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
1558
0
    if (EXPECTED(info & ZEND_MM_IS_SRUN)) {
1559
0
      return bin_data_size[ZEND_MM_SRUN_BIN_NUM(info)];
1560
0
    } else /* if (info & ZEND_MM_IS_LARGE_RUN) */ {
1561
0
      return ZEND_MM_LRUN_PAGES(info) * ZEND_MM_PAGE_SIZE;
1562
0
    }
1563
0
#endif
1564
0
  }
1565
0
}
1566
1567
static zend_never_inline void *zend_mm_realloc_slow(zend_mm_heap *heap, void *ptr, size_t size, size_t copy_size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1568
0
{
1569
0
  void *ret;
1570
1571
0
#if ZEND_MM_STAT
1572
0
  do {
1573
0
    size_t orig_peak = heap->peak;
1574
0
#endif
1575
0
    ret = zend_mm_alloc_heap(heap, size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1576
0
    memcpy(ret, ptr, copy_size);
1577
0
    zend_mm_free_heap(heap, ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1578
0
#if ZEND_MM_STAT
1579
0
    heap->peak = MAX(orig_peak, heap->size);
1580
0
  } while (0);
1581
0
#endif
1582
0
  return ret;
1583
0
}
1584
1585
static zend_never_inline void *zend_mm_realloc_huge(zend_mm_heap *heap, void *ptr, size_t size, size_t copy_size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1586
0
{
1587
0
  size_t old_size;
1588
0
  size_t new_size;
1589
0
#if ZEND_DEBUG
1590
0
  size_t real_size;
1591
0
#endif
1592
1593
0
  old_size = zend_mm_get_huge_block_size(heap, ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1594
0
#if ZEND_DEBUG
1595
0
  real_size = size;
1596
0
  size = ZEND_MM_ALIGNED_SIZE(size) + ZEND_MM_ALIGNED_SIZE(sizeof(zend_mm_debug_info));
1597
0
#endif
1598
0
  if (size > ZEND_MM_MAX_LARGE_SIZE) {
1599
0
#if ZEND_DEBUG
1600
0
    size = real_size;
1601
0
#endif
1602
#ifdef ZEND_WIN32
1603
    /* On Windows we don't have ability to extend huge blocks in-place.
1604
     * We allocate them with 2MB size granularity, to avoid many
1605
     * reallocations when they are extended by small pieces
1606
     */
1607
    new_size = ZEND_MM_ALIGNED_SIZE_EX(size, MAX(REAL_PAGE_SIZE, ZEND_MM_CHUNK_SIZE));
1608
#else
1609
0
    new_size = ZEND_MM_ALIGNED_SIZE_EX(size, REAL_PAGE_SIZE);
1610
0
#endif
1611
0
    if (new_size == old_size) {
1612
0
#if ZEND_DEBUG
1613
0
      zend_mm_change_huge_block_size(heap, ptr, new_size, real_size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1614
#else
1615
      zend_mm_change_huge_block_size(heap, ptr, new_size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1616
#endif
1617
0
      return ptr;
1618
0
    } else if (new_size < old_size) {
1619
      /* unmup tail */
1620
0
      if (zend_mm_chunk_truncate(heap, ptr, old_size, new_size)) {
1621
0
#if ZEND_MM_STAT || ZEND_MM_LIMIT
1622
0
        heap->real_size -= old_size - new_size;
1623
0
#endif
1624
0
#if ZEND_MM_STAT
1625
0
        heap->size -= old_size - new_size;
1626
0
#endif
1627
0
#if ZEND_DEBUG
1628
0
        zend_mm_change_huge_block_size(heap, ptr, new_size, real_size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1629
#else
1630
        zend_mm_change_huge_block_size(heap, ptr, new_size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1631
#endif
1632
0
        return ptr;
1633
0
      }
1634
0
    } else /* if (new_size > old_size) */ {
1635
0
#if ZEND_MM_LIMIT
1636
0
      if (UNEXPECTED(new_size - old_size > heap->limit - heap->real_size)) {
1637
0
        if (zend_mm_gc(heap) && new_size - old_size <= heap->limit - heap->real_size) {
1638
          /* pass */
1639
0
        } else if (heap->overflow == 0) {
1640
0
#if ZEND_DEBUG
1641
0
          zend_mm_safe_error(heap, "Allowed memory size of %zu bytes exhausted at %s:%d (tried to allocate %zu bytes)", heap->limit, __zend_filename, __zend_lineno, size);
1642
#else
1643
          zend_mm_safe_error(heap, "Allowed memory size of %zu bytes exhausted (tried to allocate %zu bytes)", heap->limit, size);
1644
#endif
1645
0
          return NULL;
1646
0
        }
1647
0
      }
1648
0
#endif
1649
      /* try to map tail right after this block */
1650
0
      if (zend_mm_chunk_extend(heap, ptr, old_size, new_size)) {
1651
0
#if ZEND_MM_STAT || ZEND_MM_LIMIT
1652
0
        heap->real_size += new_size - old_size;
1653
0
#endif
1654
0
#if ZEND_MM_STAT
1655
0
        heap->real_peak = MAX(heap->real_peak, heap->real_size);
1656
0
        heap->size += new_size - old_size;
1657
0
        heap->peak = MAX(heap->peak, heap->size);
1658
0
#endif
1659
0
#if ZEND_DEBUG
1660
0
        zend_mm_change_huge_block_size(heap, ptr, new_size, real_size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1661
#else
1662
        zend_mm_change_huge_block_size(heap, ptr, new_size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1663
#endif
1664
0
        return ptr;
1665
0
      }
1666
0
    }
1667
0
  }
1668
1669
0
  return zend_mm_realloc_slow(heap, ptr, size, MIN(old_size, copy_size) ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1670
0
}
1671
1672
static zend_always_inline void *zend_mm_realloc_heap(zend_mm_heap *heap, void *ptr, size_t size, bool use_copy_size, size_t copy_size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1673
0
{
1674
0
  size_t page_offset;
1675
0
  size_t old_size;
1676
0
  size_t new_size;
1677
0
  void *ret;
1678
0
#if ZEND_DEBUG
1679
0
  zend_mm_debug_info *dbg;
1680
0
#endif
1681
1682
0
  page_offset = ZEND_MM_ALIGNED_OFFSET(ptr, ZEND_MM_CHUNK_SIZE);
1683
0
  if (UNEXPECTED(page_offset == 0)) {
1684
0
    if (EXPECTED(ptr == NULL)) {
1685
0
      return _zend_mm_alloc(heap, size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1686
0
    } else {
1687
0
      return zend_mm_realloc_huge(heap, ptr, size, copy_size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1688
0
    }
1689
0
  } else {
1690
0
    zend_mm_chunk *chunk = (zend_mm_chunk*)ZEND_MM_ALIGNED_BASE(ptr, ZEND_MM_CHUNK_SIZE);
1691
0
    int page_num = (int)(page_offset / ZEND_MM_PAGE_SIZE);
1692
0
    zend_mm_page_info info = chunk->map[page_num];
1693
0
#if ZEND_MM_HEAP_PROTECTION
1694
0
    if (size < ZEND_MM_MIN_USEABLE_BIN_SIZE) {
1695
0
      size = ZEND_MM_MIN_USEABLE_BIN_SIZE;
1696
0
    }
1697
0
#endif /* ZEND_MM_HEAP_PROTECTION */
1698
0
#if ZEND_DEBUG
1699
0
    size_t real_size = size;
1700
1701
0
    size = ZEND_MM_ALIGNED_SIZE(size) + ZEND_MM_ALIGNED_SIZE(sizeof(zend_mm_debug_info));
1702
0
#endif
1703
1704
0
    ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
1705
0
    if (info & ZEND_MM_IS_SRUN) {
1706
0
      int old_bin_num = ZEND_MM_SRUN_BIN_NUM(info);
1707
1708
0
      do {
1709
0
        old_size = bin_data_size[old_bin_num];
1710
1711
        /* Check if requested size fits into current bin */
1712
0
        if (size <= old_size) {
1713
          /* Check if truncation is necessary */
1714
0
          if (old_bin_num > 0 && size < bin_data_size[old_bin_num - 1]) {
1715
            /* truncation */
1716
0
            ret = zend_mm_alloc_small(heap, ZEND_MM_SMALL_SIZE_TO_BIN(size) ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1717
0
            copy_size = use_copy_size ? MIN(size, copy_size) : size;
1718
0
            memcpy(ret, ptr, copy_size);
1719
0
            zend_mm_free_small(heap, ptr, old_bin_num);
1720
0
          } else {
1721
            /* reallocation in-place */
1722
0
            ret = ptr;
1723
0
          }
1724
0
        } else if (size <= ZEND_MM_MAX_SMALL_SIZE) {
1725
          /* small extension */
1726
1727
0
#if ZEND_MM_STAT
1728
0
          do {
1729
0
            size_t orig_peak = heap->peak;
1730
0
#endif
1731
0
            ret = zend_mm_alloc_small(heap, ZEND_MM_SMALL_SIZE_TO_BIN(size) ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1732
0
            copy_size = use_copy_size ? MIN(old_size, copy_size) : old_size;
1733
0
            memcpy(ret, ptr, copy_size);
1734
0
            zend_mm_free_small(heap, ptr, old_bin_num);
1735
0
#if ZEND_MM_STAT
1736
0
            heap->peak = MAX(orig_peak, heap->size);
1737
0
          } while (0);
1738
0
#endif
1739
0
        } else {
1740
          /* slow reallocation */
1741
0
          break;
1742
0
        }
1743
1744
0
#if ZEND_DEBUG
1745
0
        dbg = zend_mm_get_debug_info(heap, ret);
1746
0
        dbg->size = real_size;
1747
0
        dbg->filename = __zend_filename;
1748
0
        dbg->orig_filename = __zend_orig_filename;
1749
0
        dbg->lineno = __zend_lineno;
1750
0
        dbg->orig_lineno = __zend_orig_lineno;
1751
0
#endif
1752
0
        return ret;
1753
0
      }  while (0);
1754
1755
0
    } else /* if (info & ZEND_MM_IS_LARGE_RUN) */ {
1756
0
      ZEND_MM_CHECK(ZEND_MM_ALIGNED_OFFSET(page_offset, ZEND_MM_PAGE_SIZE) == 0, "zend_mm_heap corrupted");
1757
0
      old_size = ZEND_MM_LRUN_PAGES(info) * ZEND_MM_PAGE_SIZE;
1758
0
      if (size > ZEND_MM_MAX_SMALL_SIZE && size <= ZEND_MM_MAX_LARGE_SIZE) {
1759
0
        new_size = ZEND_MM_ALIGNED_SIZE_EX(size, ZEND_MM_PAGE_SIZE);
1760
0
        if (new_size == old_size) {
1761
0
#if ZEND_DEBUG
1762
0
          dbg = zend_mm_get_debug_info(heap, ptr);
1763
0
          dbg->size = real_size;
1764
0
          dbg->filename = __zend_filename;
1765
0
          dbg->orig_filename = __zend_orig_filename;
1766
0
          dbg->lineno = __zend_lineno;
1767
0
          dbg->orig_lineno = __zend_orig_lineno;
1768
0
#endif
1769
0
          return ptr;
1770
0
        } else if (new_size < old_size) {
1771
          /* free tail pages */
1772
0
          int new_pages_count = (int)(new_size / ZEND_MM_PAGE_SIZE);
1773
0
          int rest_pages_count = (int)((old_size - new_size) / ZEND_MM_PAGE_SIZE);
1774
1775
0
#if ZEND_MM_STAT
1776
0
          heap->size -= rest_pages_count * ZEND_MM_PAGE_SIZE;
1777
0
#endif
1778
0
          chunk->map[page_num] = ZEND_MM_LRUN(new_pages_count);
1779
0
          chunk->free_pages += rest_pages_count;
1780
0
          zend_mm_bitset_reset_range(chunk->free_map, page_num + new_pages_count, rest_pages_count);
1781
0
#if ZEND_DEBUG
1782
0
          dbg = zend_mm_get_debug_info(heap, ptr);
1783
0
          dbg->size = real_size;
1784
0
          dbg->filename = __zend_filename;
1785
0
          dbg->orig_filename = __zend_orig_filename;
1786
0
          dbg->lineno = __zend_lineno;
1787
0
          dbg->orig_lineno = __zend_orig_lineno;
1788
0
#endif
1789
0
          return ptr;
1790
0
        } else /* if (new_size > old_size) */ {
1791
0
          int new_pages_count = (int)(new_size / ZEND_MM_PAGE_SIZE);
1792
0
          int old_pages_count = (int)(old_size / ZEND_MM_PAGE_SIZE);
1793
1794
          /* try to allocate tail pages after this block */
1795
0
          if (page_num + new_pages_count <= ZEND_MM_PAGES &&
1796
0
              zend_mm_bitset_is_free_range(chunk->free_map, page_num + old_pages_count, new_pages_count - old_pages_count)) {
1797
0
#if ZEND_MM_STAT
1798
0
            do {
1799
0
              size_t size = heap->size + (new_size - old_size);
1800
0
              size_t peak = MAX(heap->peak, size);
1801
0
              heap->size = size;
1802
0
              heap->peak = peak;
1803
0
            } while (0);
1804
0
#endif
1805
0
            chunk->free_pages -= new_pages_count - old_pages_count;
1806
0
            zend_mm_bitset_set_range(chunk->free_map, page_num + old_pages_count, new_pages_count - old_pages_count);
1807
0
            chunk->map[page_num] = ZEND_MM_LRUN(new_pages_count);
1808
0
#if ZEND_DEBUG
1809
0
            dbg = zend_mm_get_debug_info(heap, ptr);
1810
0
            dbg->size = real_size;
1811
0
            dbg->filename = __zend_filename;
1812
0
            dbg->orig_filename = __zend_orig_filename;
1813
0
            dbg->lineno = __zend_lineno;
1814
0
            dbg->orig_lineno = __zend_orig_lineno;
1815
0
#endif
1816
0
            return ptr;
1817
0
          }
1818
0
        }
1819
0
      }
1820
0
    }
1821
0
#if ZEND_DEBUG
1822
0
    size = real_size;
1823
0
#endif
1824
0
  }
1825
1826
0
  copy_size = MIN(old_size, copy_size);
1827
0
  return zend_mm_realloc_slow(heap, ptr, size, copy_size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1828
0
}
1829
1830
/*********************/
1831
/* Huge Runs (again) */
1832
/*********************/
1833
1834
#if ZEND_DEBUG
1835
static void zend_mm_add_huge_block(zend_mm_heap *heap, void *ptr, size_t size, size_t dbg_size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1836
#else
1837
static void zend_mm_add_huge_block(zend_mm_heap *heap, void *ptr, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1838
#endif
1839
0
{
1840
0
  zend_mm_huge_list *list = (zend_mm_huge_list*)zend_mm_alloc_heap(heap, sizeof(zend_mm_huge_list) ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1841
0
  list->ptr = ptr;
1842
0
  list->size = size;
1843
0
  list->next = heap->huge_list;
1844
0
#if ZEND_DEBUG
1845
0
  list->dbg.size = dbg_size;
1846
0
  list->dbg.filename = __zend_filename;
1847
0
  list->dbg.orig_filename = __zend_orig_filename;
1848
0
  list->dbg.lineno = __zend_lineno;
1849
0
  list->dbg.orig_lineno = __zend_orig_lineno;
1850
0
#endif
1851
0
  heap->huge_list = list;
1852
0
}
1853
1854
static size_t zend_mm_del_huge_block(zend_mm_heap *heap, void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1855
0
{
1856
0
  zend_mm_huge_list *prev = NULL;
1857
0
  zend_mm_huge_list *list = heap->huge_list;
1858
0
  while (list != NULL) {
1859
0
    if (list->ptr == ptr) {
1860
0
      size_t size;
1861
1862
0
      if (prev) {
1863
0
        prev->next = list->next;
1864
0
      } else {
1865
0
        heap->huge_list = list->next;
1866
0
      }
1867
0
      size = list->size;
1868
0
      zend_mm_free_heap(heap, list ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1869
0
      return size;
1870
0
    }
1871
0
    prev = list;
1872
0
    list = list->next;
1873
0
  }
1874
0
  ZEND_MM_CHECK(0, "zend_mm_heap corrupted");
1875
0
  return 0;
1876
0
}
1877
1878
static size_t zend_mm_get_huge_block_size(zend_mm_heap *heap, void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1879
0
{
1880
0
  zend_mm_huge_list *list = heap->huge_list;
1881
0
  while (list != NULL) {
1882
0
    if (list->ptr == ptr) {
1883
0
      return list->size;
1884
0
    }
1885
0
    list = list->next;
1886
0
  }
1887
0
  ZEND_MM_CHECK(0, "zend_mm_heap corrupted");
1888
0
  return 0;
1889
0
}
1890
1891
#if ZEND_DEBUG
1892
static void zend_mm_change_huge_block_size(zend_mm_heap *heap, void *ptr, size_t size, size_t dbg_size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1893
#else
1894
static void zend_mm_change_huge_block_size(zend_mm_heap *heap, void *ptr, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1895
#endif
1896
0
{
1897
0
  zend_mm_huge_list *list = heap->huge_list;
1898
0
  while (list != NULL) {
1899
0
    if (list->ptr == ptr) {
1900
0
      list->size = size;
1901
0
#if ZEND_DEBUG
1902
0
      list->dbg.size = dbg_size;
1903
0
      list->dbg.filename = __zend_filename;
1904
0
      list->dbg.orig_filename = __zend_orig_filename;
1905
0
      list->dbg.lineno = __zend_lineno;
1906
0
      list->dbg.orig_lineno = __zend_orig_lineno;
1907
0
#endif
1908
0
      return;
1909
0
    }
1910
0
    list = list->next;
1911
0
  }
1912
0
}
1913
1914
static void *zend_mm_alloc_huge(zend_mm_heap *heap, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1915
0
{
1916
#ifdef ZEND_WIN32
1917
  /* On Windows we don't have ability to extend huge blocks in-place.
1918
   * We allocate them with 2MB size granularity, to avoid many
1919
   * reallocations when they are extended by small pieces
1920
   */
1921
  size_t alignment = MAX(REAL_PAGE_SIZE, ZEND_MM_CHUNK_SIZE);
1922
#else
1923
0
  size_t alignment = REAL_PAGE_SIZE;
1924
0
#endif
1925
0
  size_t new_size = ZEND_MM_ALIGNED_SIZE_EX(size, alignment);
1926
0
  void *ptr;
1927
1928
0
  if (UNEXPECTED(new_size < size)) {
1929
0
    zend_error_noreturn(E_ERROR, "Possible integer overflow in memory allocation (%zu + %zu)", size, alignment);
1930
0
  }
1931
1932
0
#if ZEND_MM_LIMIT
1933
0
  if (UNEXPECTED(new_size > heap->limit - heap->real_size)) {
1934
0
    if (zend_mm_gc(heap) && new_size <= heap->limit - heap->real_size) {
1935
      /* pass */
1936
0
    } else if (heap->overflow == 0) {
1937
0
#if ZEND_DEBUG
1938
0
      zend_mm_safe_error(heap, "Allowed memory size of %zu bytes exhausted at %s:%d (tried to allocate %zu bytes)", heap->limit, __zend_filename, __zend_lineno, size);
1939
#else
1940
      zend_mm_safe_error(heap, "Allowed memory size of %zu bytes exhausted (tried to allocate %zu bytes)", heap->limit, size);
1941
#endif
1942
0
      return NULL;
1943
0
    }
1944
0
  }
1945
0
#endif
1946
0
  ptr = zend_mm_chunk_alloc(heap, new_size, ZEND_MM_CHUNK_SIZE);
1947
0
  if (UNEXPECTED(ptr == NULL)) {
1948
    /* insufficient memory */
1949
0
    if (zend_mm_gc(heap) &&
1950
0
        (ptr = zend_mm_chunk_alloc(heap, new_size, ZEND_MM_CHUNK_SIZE)) != NULL) {
1951
      /* pass */
1952
0
    } else {
1953
#if !ZEND_MM_LIMIT
1954
      zend_mm_safe_error(heap, "Out of memory");
1955
#elif ZEND_DEBUG
1956
      zend_mm_safe_error(heap, "Out of memory (allocated %zu bytes) at %s:%d (tried to allocate %zu bytes)", heap->real_size, __zend_filename, __zend_lineno, size);
1957
#else
1958
      zend_mm_safe_error(heap, "Out of memory (allocated %zu bytes) (tried to allocate %zu bytes)", heap->real_size, size);
1959
#endif
1960
0
      return NULL;
1961
0
    }
1962
0
  }
1963
0
#if ZEND_DEBUG
1964
0
  zend_mm_add_huge_block(heap, ptr, new_size, size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1965
#else
1966
  zend_mm_add_huge_block(heap, ptr, new_size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1967
#endif
1968
0
#if ZEND_MM_STAT
1969
0
  do {
1970
0
    size_t size = heap->real_size + new_size;
1971
0
    size_t peak = MAX(heap->real_peak, size);
1972
0
    heap->real_size = size;
1973
0
    heap->real_peak = peak;
1974
0
  } while (0);
1975
0
  do {
1976
0
    size_t size = heap->size + new_size;
1977
0
    size_t peak = MAX(heap->peak, size);
1978
0
    heap->size = size;
1979
0
    heap->peak = peak;
1980
0
  } while (0);
1981
#elif ZEND_MM_LIMIT
1982
  heap->real_size += new_size;
1983
#endif
1984
0
  return ptr;
1985
0
}
1986
1987
static void zend_mm_free_huge(zend_mm_heap *heap, void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
1988
0
{
1989
0
  size_t size;
1990
1991
0
  ZEND_MM_CHECK(ZEND_MM_ALIGNED_OFFSET(ptr, ZEND_MM_CHUNK_SIZE) == 0, "zend_mm_heap corrupted");
1992
0
  size = zend_mm_del_huge_block(heap, ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
1993
0
  zend_mm_chunk_free(heap, ptr, size);
1994
0
#if ZEND_MM_STAT || ZEND_MM_LIMIT
1995
0
  heap->real_size -= size;
1996
0
#endif
1997
0
#if ZEND_MM_STAT
1998
0
  heap->size -= size;
1999
0
#endif
2000
0
}
2001
2002
/******************/
2003
/* Initialization */
2004
/******************/
2005
2006
static void zend_mm_refresh_key(zend_mm_heap *heap)
2007
0
{
2008
0
  zend_random_bytes_insecure(&heap->rand_state, &heap->shadow_key, sizeof(heap->shadow_key));
2009
0
}
2010
2011
static void zend_mm_init_key(zend_mm_heap *heap)
2012
0
{
2013
0
  memset(&heap->rand_state, 0, sizeof(heap->rand_state));
2014
0
  zend_mm_refresh_key(heap);
2015
0
}
2016
2017
ZEND_API void zend_mm_refresh_key_child(zend_mm_heap *heap)
2018
0
{
2019
0
  uintptr_t old_key = heap->shadow_key;
2020
2021
0
  zend_mm_init_key(heap);
2022
2023
  /* Update shadow pointers with new key */
2024
0
  for (int i = 0; i < ZEND_MM_BINS; i++) {
2025
0
    zend_mm_free_slot *slot = heap->free_slot[i];
2026
0
    if (!slot) {
2027
0
      continue;
2028
0
    }
2029
0
    zend_mm_free_slot *next;
2030
0
    while ((next = slot->next_free_slot)) {
2031
0
      zend_mm_free_slot *shadow = ZEND_MM_FREE_SLOT_PTR_SHADOW(slot, i);
2032
0
      if (UNEXPECTED(next != zend_mm_decode_free_slot_key(old_key, shadow))) {
2033
0
        zend_mm_panic("zend_mm_heap corrupted");
2034
0
      }
2035
0
      zend_mm_set_next_free_slot(heap, i, slot, next);
2036
0
      slot = next;
2037
0
    }
2038
0
  }
2039
2040
0
#if ZEND_DEBUG
2041
0
  heap->pid = getpid();
2042
0
#endif
2043
0
}
2044
2045
static zend_mm_heap *zend_mm_init(void)
2046
0
{
2047
0
  zend_mm_chunk *chunk = (zend_mm_chunk*)zend_mm_chunk_alloc_int(ZEND_MM_CHUNK_SIZE, ZEND_MM_CHUNK_SIZE);
2048
0
  zend_mm_heap *heap;
2049
2050
0
  if (UNEXPECTED(chunk == NULL)) {
2051
0
#if ZEND_MM_ERROR
2052
0
    fprintf(stderr, "Can't initialize heap\n");
2053
0
#endif
2054
0
    return NULL;
2055
0
  }
2056
0
  heap = &chunk->heap_slot;
2057
0
  chunk->heap = heap;
2058
0
  chunk->next = chunk;
2059
0
  chunk->prev = chunk;
2060
0
  chunk->free_pages = ZEND_MM_PAGES - ZEND_MM_FIRST_PAGE;
2061
0
  chunk->free_tail = ZEND_MM_FIRST_PAGE;
2062
0
  chunk->num = 0;
2063
0
  chunk->free_map[0] = (Z_L(1) << ZEND_MM_FIRST_PAGE) - 1;
2064
0
  chunk->map[0] = ZEND_MM_LRUN(ZEND_MM_FIRST_PAGE);
2065
0
  heap->main_chunk = chunk;
2066
0
  heap->cached_chunks = NULL;
2067
0
  heap->chunks_count = 1;
2068
0
  heap->peak_chunks_count = 1;
2069
0
  heap->cached_chunks_count = 0;
2070
0
  heap->avg_chunks_count = 1.0;
2071
0
  heap->last_chunks_delete_boundary = 0;
2072
0
  heap->last_chunks_delete_count = 0;
2073
0
#if ZEND_MM_STAT || ZEND_MM_LIMIT
2074
0
  heap->real_size = ZEND_MM_CHUNK_SIZE;
2075
0
#endif
2076
0
#if ZEND_MM_STAT
2077
0
  heap->real_peak = ZEND_MM_CHUNK_SIZE;
2078
0
  heap->size = 0;
2079
0
  heap->peak = 0;
2080
0
#endif
2081
0
  zend_mm_init_key(heap);
2082
0
#if ZEND_MM_LIMIT
2083
0
  heap->limit = (size_t)Z_L(-1) >> 1;
2084
0
  heap->overflow = 0;
2085
0
#endif
2086
0
#if ZEND_MM_CUSTOM
2087
0
  heap->use_custom_heap = ZEND_MM_CUSTOM_HEAP_NONE;
2088
0
#endif
2089
0
#if ZEND_MM_STORAGE
2090
0
  heap->storage = NULL;
2091
0
#endif
2092
0
  heap->huge_list = NULL;
2093
0
#if ZEND_DEBUG
2094
0
  heap->pid = getpid();
2095
0
#endif
2096
0
  return heap;
2097
0
}
2098
2099
ZEND_API size_t zend_mm_gc(zend_mm_heap *heap)
2100
0
{
2101
0
  zend_mm_free_slot *p, *q;
2102
0
  zend_mm_chunk *chunk;
2103
0
  size_t page_offset;
2104
0
  int page_num;
2105
0
  zend_mm_page_info info;
2106
0
  uint32_t i, free_counter;
2107
0
  bool has_free_pages;
2108
0
  size_t collected = 0;
2109
2110
0
#if ZEND_MM_CUSTOM
2111
0
  if (heap->use_custom_heap) {
2112
0
    size_t (*gc)(void) = heap->custom_heap._gc;
2113
0
    if (gc) {
2114
0
      return gc();
2115
0
    }
2116
0
    return 0;
2117
0
  }
2118
0
#endif
2119
2120
0
  for (i = 0; i < ZEND_MM_BINS; i++) {
2121
0
    has_free_pages = false;
2122
0
    p = heap->free_slot[i];
2123
0
    while (p != NULL) {
2124
0
      chunk = (zend_mm_chunk*)ZEND_MM_ALIGNED_BASE(p, ZEND_MM_CHUNK_SIZE);
2125
0
      ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
2126
0
      page_offset = ZEND_MM_ALIGNED_OFFSET(p, ZEND_MM_CHUNK_SIZE);
2127
0
      ZEND_ASSERT(page_offset != 0);
2128
0
      page_num = (int)(page_offset / ZEND_MM_PAGE_SIZE);
2129
0
      info = chunk->map[page_num];
2130
0
      ZEND_ASSERT(info & ZEND_MM_IS_SRUN);
2131
0
      if (info & ZEND_MM_IS_LRUN) {
2132
0
        page_num -= ZEND_MM_NRUN_OFFSET(info);
2133
0
        info = chunk->map[page_num];
2134
0
        ZEND_ASSERT(info & ZEND_MM_IS_SRUN);
2135
0
        ZEND_ASSERT(!(info & ZEND_MM_IS_LRUN));
2136
0
      }
2137
0
      ZEND_ASSERT(ZEND_MM_SRUN_BIN_NUM(info) == i);
2138
0
      free_counter = ZEND_MM_SRUN_FREE_COUNTER(info) + 1;
2139
0
      if (free_counter == bin_elements[i]) {
2140
0
        has_free_pages = true;
2141
0
      }
2142
0
      chunk->map[page_num] = ZEND_MM_SRUN_EX(i, free_counter);
2143
0
      p = zend_mm_get_next_free_slot(heap, i, p);
2144
0
    }
2145
2146
0
    if (!has_free_pages) {
2147
0
      continue;
2148
0
    }
2149
2150
0
    q = (zend_mm_free_slot*)&heap->free_slot[i];
2151
0
    p = q->next_free_slot;
2152
0
    while (p != NULL) {
2153
0
      chunk = (zend_mm_chunk*)ZEND_MM_ALIGNED_BASE(p, ZEND_MM_CHUNK_SIZE);
2154
0
      ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
2155
0
      page_offset = ZEND_MM_ALIGNED_OFFSET(p, ZEND_MM_CHUNK_SIZE);
2156
0
      ZEND_ASSERT(page_offset != 0);
2157
0
      page_num = (int)(page_offset / ZEND_MM_PAGE_SIZE);
2158
0
      info = chunk->map[page_num];
2159
0
      ZEND_ASSERT(info & ZEND_MM_IS_SRUN);
2160
0
      if (info & ZEND_MM_IS_LRUN) {
2161
0
        page_num -= ZEND_MM_NRUN_OFFSET(info);
2162
0
        info = chunk->map[page_num];
2163
0
        ZEND_ASSERT(info & ZEND_MM_IS_SRUN);
2164
0
        ZEND_ASSERT(!(info & ZEND_MM_IS_LRUN));
2165
0
      }
2166
0
      ZEND_ASSERT(ZEND_MM_SRUN_BIN_NUM(info) == i);
2167
0
      if (ZEND_MM_SRUN_FREE_COUNTER(info) == bin_elements[i]) {
2168
        /* remove from cache */
2169
0
        p = zend_mm_get_next_free_slot(heap, i, p);
2170
0
        if (q == (zend_mm_free_slot*)&heap->free_slot[i]) {
2171
0
          q->next_free_slot = p;
2172
0
        } else {
2173
0
          zend_mm_set_next_free_slot(heap, i, q, p);
2174
0
        }
2175
0
      } else {
2176
0
        q = p;
2177
0
        if (q == (zend_mm_free_slot*)&heap->free_slot[i]) {
2178
0
          p = q->next_free_slot;
2179
0
        } else {
2180
0
          p = zend_mm_get_next_free_slot(heap, i, q);
2181
0
        }
2182
0
      }
2183
0
    }
2184
0
  }
2185
2186
0
  chunk = heap->main_chunk;
2187
0
  do {
2188
0
    i = ZEND_MM_FIRST_PAGE;
2189
0
    while (i < chunk->free_tail) {
2190
0
      if (zend_mm_bitset_is_set(chunk->free_map, i)) {
2191
0
        info = chunk->map[i];
2192
0
        if (info & ZEND_MM_IS_SRUN) {
2193
0
          int bin_num = ZEND_MM_SRUN_BIN_NUM(info);
2194
0
          int pages_count = bin_pages[bin_num];
2195
2196
0
          if (ZEND_MM_SRUN_FREE_COUNTER(info) == bin_elements[bin_num]) {
2197
            /* all elements are free */
2198
0
            zend_mm_free_pages_ex(heap, chunk, i, pages_count, 0);
2199
0
            collected += pages_count;
2200
0
          } else {
2201
            /* reset counter */
2202
0
            chunk->map[i] = ZEND_MM_SRUN(bin_num);
2203
0
          }
2204
0
          i += bin_pages[bin_num];
2205
0
        } else /* if (info & ZEND_MM_IS_LRUN) */ {
2206
0
          i += ZEND_MM_LRUN_PAGES(info);
2207
0
        }
2208
0
      } else {
2209
0
        i++;
2210
0
      }
2211
0
    }
2212
0
    if (chunk->free_pages == ZEND_MM_PAGES - ZEND_MM_FIRST_PAGE && chunk != heap->main_chunk) {
2213
0
      zend_mm_chunk *next_chunk = chunk->next;
2214
2215
0
      zend_mm_delete_chunk(heap, chunk);
2216
0
      chunk = next_chunk;
2217
0
    } else {
2218
0
      chunk = chunk->next;
2219
0
    }
2220
0
  } while (chunk != heap->main_chunk);
2221
2222
0
  return collected * ZEND_MM_PAGE_SIZE;
2223
0
}
2224
2225
#if ZEND_DEBUG
2226
/******************/
2227
/* Leak detection */
2228
/******************/
2229
2230
static zend_long zend_mm_find_leaks_small(zend_mm_chunk *p, uint32_t i, uint32_t j, zend_leak_info *leak)
2231
0
{
2232
0
  bool empty = true;
2233
0
  zend_long count = 0;
2234
0
  int bin_num = ZEND_MM_SRUN_BIN_NUM(p->map[i]);
2235
0
  zend_mm_debug_info *dbg = (zend_mm_debug_info*)((char*)p + ZEND_MM_PAGE_SIZE * i + bin_data_size[bin_num] * (j + 1) - ZEND_MM_ALIGNED_SIZE(sizeof(zend_mm_debug_info)));
2236
2237
0
  while (j < bin_elements[bin_num]) {
2238
0
    if (dbg->size != 0) {
2239
0
      if (dbg->filename == leak->filename && dbg->lineno == leak->lineno) {
2240
0
        count++;
2241
0
        dbg->size = 0;
2242
0
        dbg->filename = NULL;
2243
0
        dbg->lineno = 0;
2244
0
      } else {
2245
0
        empty = false;
2246
0
      }
2247
0
    }
2248
0
    j++;
2249
0
    dbg = (zend_mm_debug_info*)((char*)dbg + bin_data_size[bin_num]);
2250
0
  }
2251
0
  if (empty) {
2252
0
    zend_mm_bitset_reset_range(p->free_map, i, bin_pages[bin_num]);
2253
0
  }
2254
0
  return count;
2255
0
}
2256
2257
static zend_long zend_mm_find_leaks(zend_mm_heap *heap, zend_mm_chunk *p, uint32_t i, zend_leak_info *leak)
2258
0
{
2259
0
  zend_long count = 0;
2260
2261
0
  do {
2262
0
    while (i < p->free_tail) {
2263
0
      if (zend_mm_bitset_is_set(p->free_map, i)) {
2264
0
        if (p->map[i] & ZEND_MM_IS_SRUN) {
2265
0
          int bin_num = ZEND_MM_SRUN_BIN_NUM(p->map[i]);
2266
0
          count += zend_mm_find_leaks_small(p, i, 0, leak);
2267
0
          i += bin_pages[bin_num];
2268
0
        } else /* if (p->map[i] & ZEND_MM_IS_LRUN) */ {
2269
0
          int pages_count = ZEND_MM_LRUN_PAGES(p->map[i]);
2270
0
          zend_mm_debug_info *dbg = (zend_mm_debug_info*)((char*)p + ZEND_MM_PAGE_SIZE * (i + pages_count) - ZEND_MM_ALIGNED_SIZE(sizeof(zend_mm_debug_info)));
2271
2272
0
          if (dbg->filename == leak->filename && dbg->lineno == leak->lineno) {
2273
0
            count++;
2274
0
          }
2275
0
          zend_mm_bitset_reset_range(p->free_map, i, pages_count);
2276
0
          i += pages_count;
2277
0
        }
2278
0
      } else {
2279
0
        i++;
2280
0
      }
2281
0
    }
2282
0
    p = p->next;
2283
0
    i = ZEND_MM_FIRST_PAGE;
2284
0
  } while (p != heap->main_chunk);
2285
0
  return count;
2286
0
}
2287
2288
static zend_long zend_mm_find_leaks_huge(zend_mm_heap *heap, zend_mm_huge_list *list)
2289
0
{
2290
0
  zend_long count = 0;
2291
0
  zend_mm_huge_list *prev = list;
2292
0
  zend_mm_huge_list *p = list->next;
2293
2294
0
  while (p) {
2295
0
    if (p->dbg.filename == list->dbg.filename && p->dbg.lineno == list->dbg.lineno) {
2296
0
      prev->next = p->next;
2297
0
      zend_mm_chunk_free(heap, p->ptr, p->size);
2298
0
      zend_mm_free_heap(heap, p, NULL, 0, NULL, 0);
2299
0
      count++;
2300
0
    } else {
2301
0
      prev = p;
2302
0
    }
2303
0
    p = prev->next;
2304
0
  }
2305
2306
0
  return count;
2307
0
}
2308
2309
static void zend_mm_check_leaks(zend_mm_heap *heap)
2310
0
{
2311
0
  zend_mm_huge_list *list;
2312
0
  zend_mm_chunk *p;
2313
0
  zend_leak_info leak;
2314
0
  zend_long repeated = 0;
2315
0
  uint32_t total = 0;
2316
0
  uint32_t i, j;
2317
2318
  /* find leaked huge blocks and free them */
2319
0
  list = heap->huge_list;
2320
0
  while (list) {
2321
0
    zend_mm_huge_list *q = list;
2322
2323
0
    leak.addr = list->ptr;
2324
0
    leak.size = list->dbg.size;
2325
0
    leak.filename = list->dbg.filename;
2326
0
    leak.orig_filename = list->dbg.orig_filename;
2327
0
    leak.lineno = list->dbg.lineno;
2328
0
    leak.orig_lineno = list->dbg.orig_lineno;
2329
2330
0
    zend_message_dispatcher(ZMSG_LOG_SCRIPT_NAME, NULL);
2331
0
    zend_message_dispatcher(ZMSG_MEMORY_LEAK_DETECTED, &leak);
2332
0
    repeated = zend_mm_find_leaks_huge(heap, list);
2333
0
    total += 1 + repeated;
2334
0
    if (repeated) {
2335
0
      zend_message_dispatcher(ZMSG_MEMORY_LEAK_REPEATED, (void *)(uintptr_t)repeated);
2336
0
    }
2337
2338
0
    heap->huge_list = list = list->next;
2339
0
    zend_mm_chunk_free(heap, q->ptr, q->size);
2340
0
    zend_mm_free_heap(heap, q, NULL, 0, NULL, 0);
2341
0
  }
2342
2343
  /* for each chunk */
2344
0
  p = heap->main_chunk;
2345
0
  do {
2346
0
    i = ZEND_MM_FIRST_PAGE;
2347
0
    while (i < p->free_tail) {
2348
0
      if (zend_mm_bitset_is_set(p->free_map, i)) {
2349
0
        if (p->map[i] & ZEND_MM_IS_SRUN) {
2350
0
          int bin_num = ZEND_MM_SRUN_BIN_NUM(p->map[i]);
2351
0
          zend_mm_debug_info *dbg = (zend_mm_debug_info*)((char*)p + ZEND_MM_PAGE_SIZE * i + bin_data_size[bin_num] - ZEND_MM_ALIGNED_SIZE(sizeof(zend_mm_debug_info)));
2352
2353
0
          j = 0;
2354
0
          while (j < bin_elements[bin_num]) {
2355
0
            if (dbg->size != 0) {
2356
0
              leak.addr = (zend_mm_debug_info*)((char*)p + ZEND_MM_PAGE_SIZE * i + bin_data_size[bin_num] * j);
2357
0
              leak.size = dbg->size;
2358
0
              leak.filename = dbg->filename;
2359
0
              leak.orig_filename = dbg->orig_filename;
2360
0
              leak.lineno = dbg->lineno;
2361
0
              leak.orig_lineno = dbg->orig_lineno;
2362
2363
0
              zend_message_dispatcher(ZMSG_LOG_SCRIPT_NAME, NULL);
2364
0
              zend_message_dispatcher(ZMSG_MEMORY_LEAK_DETECTED, &leak);
2365
2366
0
              dbg->size = 0;
2367
0
              dbg->filename = NULL;
2368
0
              dbg->lineno = 0;
2369
2370
0
              repeated = zend_mm_find_leaks_small(p, i, j + 1, &leak) +
2371
0
                         zend_mm_find_leaks(heap, p, i + bin_pages[bin_num], &leak);
2372
0
              total += 1 + repeated;
2373
0
              if (repeated) {
2374
0
                zend_message_dispatcher(ZMSG_MEMORY_LEAK_REPEATED, (void *)(uintptr_t)repeated);
2375
0
              }
2376
0
            }
2377
0
            dbg = (zend_mm_debug_info*)((char*)dbg + bin_data_size[bin_num]);
2378
0
            j++;
2379
0
          }
2380
0
          i += bin_pages[bin_num];
2381
0
        } else /* if (p->map[i] & ZEND_MM_IS_LRUN) */ {
2382
0
          int pages_count = ZEND_MM_LRUN_PAGES(p->map[i]);
2383
0
          zend_mm_debug_info *dbg = (zend_mm_debug_info*)((char*)p + ZEND_MM_PAGE_SIZE * (i + pages_count) - ZEND_MM_ALIGNED_SIZE(sizeof(zend_mm_debug_info)));
2384
2385
0
          leak.addr = (void*)((char*)p + ZEND_MM_PAGE_SIZE * i);
2386
0
          leak.size = dbg->size;
2387
0
          leak.filename = dbg->filename;
2388
0
          leak.orig_filename = dbg->orig_filename;
2389
0
          leak.lineno = dbg->lineno;
2390
0
          leak.orig_lineno = dbg->orig_lineno;
2391
2392
0
          zend_message_dispatcher(ZMSG_LOG_SCRIPT_NAME, NULL);
2393
0
          zend_message_dispatcher(ZMSG_MEMORY_LEAK_DETECTED, &leak);
2394
2395
0
          zend_mm_bitset_reset_range(p->free_map, i, pages_count);
2396
2397
0
          repeated = zend_mm_find_leaks(heap, p, i + pages_count, &leak);
2398
0
          total += 1 + repeated;
2399
0
          if (repeated) {
2400
0
            zend_message_dispatcher(ZMSG_MEMORY_LEAK_REPEATED, (void *)(uintptr_t)repeated);
2401
0
          }
2402
0
          i += pages_count;
2403
0
        }
2404
0
      } else {
2405
0
        i++;
2406
0
      }
2407
0
    }
2408
0
    p = p->next;
2409
0
  } while (p != heap->main_chunk);
2410
0
  if (total) {
2411
0
    zend_message_dispatcher(ZMSG_MEMORY_LEAKS_GRAND_TOTAL, &total);
2412
0
  }
2413
0
}
2414
#endif
2415
2416
#if ZEND_MM_CUSTOM
2417
static void *tracked_malloc(size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
2418
static void tracked_free_all(zend_mm_heap *heap);
2419
static void *poison_malloc(size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
2420
2421
static void zend_mm_check_freelists(zend_mm_heap *heap)
2422
0
{
2423
0
  for (uint32_t bin_num = 0; bin_num < ZEND_MM_BINS; bin_num++) {
2424
0
    zend_mm_free_slot *slot = heap->free_slot[bin_num];
2425
0
    while (slot) {
2426
0
      slot = zend_mm_get_next_free_slot(heap, bin_num, slot);
2427
0
    }
2428
0
  }
2429
0
}
2430
#endif
2431
2432
ZEND_API void zend_mm_shutdown(zend_mm_heap *heap, bool full, bool silent)
2433
33.5k
{
2434
33.5k
  zend_mm_chunk *p;
2435
33.5k
  zend_mm_huge_list *list;
2436
2437
33.5k
#if ZEND_MM_CUSTOM
2438
33.5k
  if (heap->use_custom_heap) {
2439
33.5k
    if (heap->custom_heap._malloc == tracked_malloc) {
2440
33.5k
      if (silent) {
2441
911
        tracked_free_all(heap);
2442
911
      }
2443
33.5k
      zend_hash_clean(heap->tracked_allocs);
2444
33.5k
      if (full) {
2445
0
        zend_hash_destroy(heap->tracked_allocs);
2446
0
        free(heap->tracked_allocs);
2447
        /* Make sure the heap free below does not use tracked_free(). */
2448
0
        heap->custom_heap._free = __zend_free;
2449
0
      }
2450
33.5k
#if ZEND_MM_STAT
2451
33.5k
      heap->size = 0;
2452
33.5k
      heap->real_size = 0;
2453
33.5k
#endif
2454
33.5k
    }
2455
2456
33.5k
    void (*shutdown)(bool, bool) = heap->custom_heap._shutdown;
2457
2458
33.5k
    if (full) {
2459
0
      heap->custom_heap._free(heap ZEND_FILE_LINE_CC ZEND_FILE_LINE_EMPTY_CC);
2460
0
    }
2461
2462
33.5k
    if (shutdown) {
2463
0
      shutdown(full, silent);
2464
0
    }
2465
2466
33.5k
    return;
2467
33.5k
  }
2468
0
#endif
2469
2470
0
#if ZEND_DEBUG
2471
0
  if (!silent) {
2472
0
    char *tmp = getenv("ZEND_ALLOC_PRINT_LEAKS");
2473
0
    if (!tmp || ZEND_ATOL(tmp)) {
2474
0
      zend_mm_check_leaks(heap);
2475
0
    }
2476
0
  }
2477
0
#endif
2478
2479
  /* free huge blocks */
2480
0
  list = heap->huge_list;
2481
0
  heap->huge_list = NULL;
2482
0
  while (list) {
2483
0
    zend_mm_huge_list *q = list;
2484
0
    list = list->next;
2485
0
    zend_mm_chunk_free(heap, q->ptr, q->size);
2486
0
  }
2487
2488
  /* move all chunks except of the first one into the cache */
2489
0
  p = heap->main_chunk->next;
2490
0
  while (p != heap->main_chunk) {
2491
0
    zend_mm_chunk *q = p->next;
2492
0
    p->next = heap->cached_chunks;
2493
0
    heap->cached_chunks = p;
2494
0
    p = q;
2495
0
    heap->chunks_count--;
2496
0
    heap->cached_chunks_count++;
2497
0
  }
2498
2499
0
  if (full) {
2500
    /* free all cached chunks */
2501
0
    while (heap->cached_chunks) {
2502
0
      p = heap->cached_chunks;
2503
0
      heap->cached_chunks = p->next;
2504
0
      zend_mm_chunk_free(heap, p, ZEND_MM_CHUNK_SIZE);
2505
0
    }
2506
    /* free the first chunk */
2507
0
    zend_mm_chunk_free(heap, heap->main_chunk, ZEND_MM_CHUNK_SIZE);
2508
0
  } else {
2509
    /* free some cached chunks to keep average count */
2510
0
    heap->avg_chunks_count = (heap->avg_chunks_count + (double)heap->peak_chunks_count) / 2.0;
2511
0
    while ((double)heap->cached_chunks_count + 0.9 > heap->avg_chunks_count &&
2512
0
           heap->cached_chunks) {
2513
0
      p = heap->cached_chunks;
2514
0
      heap->cached_chunks = p->next;
2515
0
      zend_mm_chunk_free(heap, p, ZEND_MM_CHUNK_SIZE);
2516
0
      heap->cached_chunks_count--;
2517
0
    }
2518
    /* clear cached chunks */
2519
0
    p = heap->cached_chunks;
2520
0
    while (p != NULL) {
2521
0
      zend_mm_chunk *q = p->next;
2522
0
      memset(p, 0, sizeof(zend_mm_chunk));
2523
0
      p->next = q;
2524
0
      p = q;
2525
0
    }
2526
2527
    /* reinitialize the first chunk and heap */
2528
0
    p = heap->main_chunk;
2529
0
    p->heap = &p->heap_slot;
2530
0
    p->next = p;
2531
0
    p->prev = p;
2532
0
    p->free_pages = ZEND_MM_PAGES - ZEND_MM_FIRST_PAGE;
2533
0
    p->free_tail = ZEND_MM_FIRST_PAGE;
2534
0
    p->num = 0;
2535
2536
0
#if ZEND_MM_STAT
2537
0
    heap->size = heap->peak = 0;
2538
0
#endif
2539
0
    memset(heap->free_slot, 0, sizeof(heap->free_slot));
2540
0
#if ZEND_MM_STAT || ZEND_MM_LIMIT
2541
0
    heap->real_size = (heap->cached_chunks_count + 1) * ZEND_MM_CHUNK_SIZE;
2542
0
#endif
2543
0
#if ZEND_MM_STAT
2544
0
    heap->real_peak = (heap->cached_chunks_count + 1) * ZEND_MM_CHUNK_SIZE;
2545
0
#endif
2546
0
    heap->chunks_count = 1;
2547
0
    heap->peak_chunks_count = 1;
2548
0
    heap->last_chunks_delete_boundary = 0;
2549
0
    heap->last_chunks_delete_count = 0;
2550
2551
0
    memset(p->free_map, 0, sizeof(p->free_map) + sizeof(p->map));
2552
0
    p->free_map[0] = (1L << ZEND_MM_FIRST_PAGE) - 1;
2553
0
    p->map[0] = ZEND_MM_LRUN(ZEND_MM_FIRST_PAGE);
2554
2555
0
#if ZEND_DEBUG
2556
0
    ZEND_ASSERT(getpid() == heap->pid
2557
0
        && "heap was re-used without calling zend_mm_refresh_key_child() after a fork");
2558
0
#endif
2559
2560
0
    zend_mm_refresh_key(heap);
2561
0
  }
2562
0
}
2563
2564
/**************/
2565
/* PUBLIC API */
2566
/**************/
2567
2568
ZEND_API void* ZEND_FASTCALL _zend_mm_alloc(zend_mm_heap *heap, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2569
0
{
2570
0
  return zend_mm_alloc_heap(heap, size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2571
0
}
2572
2573
ZEND_API void ZEND_FASTCALL _zend_mm_free(zend_mm_heap *heap, void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2574
0
{
2575
0
  zend_mm_free_heap(heap, ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2576
0
}
2577
2578
void* ZEND_FASTCALL _zend_mm_realloc(zend_mm_heap *heap, void *ptr, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2579
0
{
2580
0
  return zend_mm_realloc_heap(heap, ptr, size, 0, size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2581
0
}
2582
2583
void* ZEND_FASTCALL _zend_mm_realloc2(zend_mm_heap *heap, void *ptr, size_t size, size_t copy_size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2584
0
{
2585
0
  return zend_mm_realloc_heap(heap, ptr, size, 1, copy_size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2586
0
}
2587
2588
ZEND_API size_t ZEND_FASTCALL _zend_mm_block_size(zend_mm_heap *heap, void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2589
0
{
2590
0
#if ZEND_MM_CUSTOM
2591
0
  if (UNEXPECTED(heap->use_custom_heap)) {
2592
0
    if (heap->custom_heap._malloc == tracked_malloc) {
2593
0
      zend_ulong h = ((uintptr_t) ptr) >> ZEND_MM_ALIGNMENT_LOG2;
2594
0
      zval *size_zv = zend_hash_index_find(heap->tracked_allocs, h);
2595
0
      if  (size_zv) {
2596
0
        return Z_LVAL_P(size_zv);
2597
0
      }
2598
0
    } else if (heap->custom_heap._malloc != poison_malloc) {
2599
0
      return 0;
2600
0
    }
2601
0
  }
2602
0
#endif
2603
0
  return zend_mm_size(heap, ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2604
0
}
2605
2606
/**********************/
2607
/* Allocation Manager */
2608
/**********************/
2609
2610
typedef struct _zend_alloc_globals {
2611
  zend_mm_heap *mm_heap;
2612
} zend_alloc_globals;
2613
2614
#ifdef ZTS
2615
static int alloc_globals_id;
2616
static size_t alloc_globals_offset;
2617
# define AG(v) ZEND_TSRMG_FAST(alloc_globals_offset, zend_alloc_globals *, v)
2618
#else
2619
34.5M
# define AG(v) (alloc_globals.v)
2620
static zend_alloc_globals alloc_globals;
2621
#endif
2622
2623
ZEND_API bool is_zend_mm(void)
2624
1
{
2625
1
#if ZEND_MM_CUSTOM
2626
1
  return !AG(mm_heap)->use_custom_heap;
2627
#else
2628
  return true;
2629
#endif
2630
1
}
2631
2632
ZEND_API bool is_zend_ptr(const void *ptr)
2633
0
{
2634
0
#if ZEND_MM_CUSTOM
2635
0
  if (AG(mm_heap)->use_custom_heap) {
2636
0
    if (AG(mm_heap)->custom_heap._malloc == tracked_malloc) {
2637
0
      zend_ulong h = ((uintptr_t) ptr) >> ZEND_MM_ALIGNMENT_LOG2;
2638
0
      zval *size_zv = zend_hash_index_find(AG(mm_heap)->tracked_allocs, h);
2639
0
      if  (size_zv) {
2640
0
        return 1;
2641
0
      }
2642
0
    }
2643
0
    return 0;
2644
0
  }
2645
0
#endif
2646
2647
0
  if (AG(mm_heap)->main_chunk) {
2648
0
    zend_mm_chunk *chunk = AG(mm_heap)->main_chunk;
2649
2650
0
    do {
2651
0
      if (ptr >= (void*)chunk
2652
0
       && ptr < (void*)((char*)chunk + ZEND_MM_CHUNK_SIZE)) {
2653
0
        return 1;
2654
0
      }
2655
0
      chunk = chunk->next;
2656
0
    } while (chunk != AG(mm_heap)->main_chunk);
2657
0
  }
2658
2659
0
  zend_mm_huge_list *block = AG(mm_heap)->huge_list;
2660
0
  while (block) {
2661
0
    if (ptr >= block->ptr
2662
0
        && ptr < (void*)((char*)block->ptr + block->size)) {
2663
0
      return 1;
2664
0
    }
2665
0
    block = block->next;
2666
0
  }
2667
2668
0
  return 0;
2669
0
}
2670
2671
#if !ZEND_DEBUG && defined(HAVE_BUILTIN_CONSTANT_P)
2672
#undef _emalloc
2673
2674
#if ZEND_MM_CUSTOM
2675
# define ZEND_MM_CUSTOM_ALLOCATOR(size) do { \
2676
    if (UNEXPECTED(AG(mm_heap)->use_custom_heap)) { \
2677
      return AG(mm_heap)->custom_heap._malloc(size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC); \
2678
    } \
2679
  } while (0)
2680
# define ZEND_MM_CUSTOM_DEALLOCATOR(ptr) do { \
2681
    if (UNEXPECTED(AG(mm_heap)->use_custom_heap)) { \
2682
      AG(mm_heap)->custom_heap._free(ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC); \
2683
      return; \
2684
    } \
2685
  } while (0)
2686
#else
2687
# define ZEND_MM_CUSTOM_ALLOCATOR(size)
2688
# define ZEND_MM_CUSTOM_DEALLOCATOR(ptr)
2689
#endif
2690
2691
# define _ZEND_BIN_ALLOCATOR(_num, _size, _elements, _pages, _min_size, y) \
2692
  ZEND_API void* ZEND_FASTCALL _emalloc_ ## _size(void) { \
2693
    ZEND_MM_CUSTOM_ALLOCATOR(_size); \
2694
    if (_size < _min_size) { \
2695
      return _emalloc_ ## _min_size(); \
2696
    } \
2697
    return zend_mm_alloc_small(AG(mm_heap), _num ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC); \
2698
  }
2699
2700
ZEND_MM_BINS_INFO(_ZEND_BIN_ALLOCATOR, ZEND_MM_MIN_USEABLE_BIN_SIZE, y)
2701
2702
ZEND_API void* ZEND_FASTCALL _emalloc_large(size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2703
{
2704
  ZEND_MM_CUSTOM_ALLOCATOR(size);
2705
  return zend_mm_alloc_large_ex(AG(mm_heap), size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2706
}
2707
2708
ZEND_API void* ZEND_FASTCALL _emalloc_huge(size_t size)
2709
{
2710
  ZEND_MM_CUSTOM_ALLOCATOR(size);
2711
  return zend_mm_alloc_huge(AG(mm_heap), size);
2712
}
2713
2714
#if ZEND_DEBUG
2715
# define _ZEND_BIN_FREE(_num, _size, _elements, _pages, _min_size, y) \
2716
  ZEND_API void ZEND_FASTCALL _efree_ ## _size(void *ptr) { \
2717
    ZEND_MM_CUSTOM_DEALLOCATOR(ptr); \
2718
    if (_size < _min_size) { \
2719
      _efree_ ## _min_size(ptr); \
2720
      return; \
2721
    } \
2722
    { \
2723
      size_t page_offset = ZEND_MM_ALIGNED_OFFSET(ptr, ZEND_MM_CHUNK_SIZE); \
2724
      zend_mm_chunk *chunk = (zend_mm_chunk*)ZEND_MM_ALIGNED_BASE(ptr, ZEND_MM_CHUNK_SIZE); \
2725
      int page_num = page_offset / ZEND_MM_PAGE_SIZE; \
2726
      ZEND_MM_CHECK(chunk->heap == AG(mm_heap), "zend_mm_heap corrupted"); \
2727
      ZEND_ASSERT(chunk->map[page_num] & ZEND_MM_IS_SRUN); \
2728
      ZEND_ASSERT(ZEND_MM_SRUN_BIN_NUM(chunk->map[page_num]) == _num); \
2729
      zend_mm_free_small(AG(mm_heap), ptr, _num); \
2730
    } \
2731
  }
2732
#else
2733
# define _ZEND_BIN_FREE(_num, _size, _elements, _pages, _min_size, y) \
2734
  ZEND_API void ZEND_FASTCALL _efree_ ## _size(void *ptr) { \
2735
    ZEND_MM_CUSTOM_DEALLOCATOR(ptr); \
2736
    if (_size < _min_size) { \
2737
      _efree_ ## _min_size(ptr); \
2738
      return; \
2739
    } \
2740
    { \
2741
      zend_mm_chunk *chunk = (zend_mm_chunk*)ZEND_MM_ALIGNED_BASE(ptr, ZEND_MM_CHUNK_SIZE); \
2742
      ZEND_MM_CHECK(chunk->heap == AG(mm_heap), "zend_mm_heap corrupted"); \
2743
      zend_mm_free_small(AG(mm_heap), ptr, _num); \
2744
    } \
2745
  }
2746
#endif
2747
2748
ZEND_MM_BINS_INFO(_ZEND_BIN_FREE, ZEND_MM_MIN_USEABLE_BIN_SIZE, y)
2749
2750
ZEND_API void ZEND_FASTCALL _efree_large(void *ptr, size_t size)
2751
{
2752
  ZEND_MM_CUSTOM_DEALLOCATOR(ptr);
2753
  {
2754
    size_t page_offset = ZEND_MM_ALIGNED_OFFSET(ptr, ZEND_MM_CHUNK_SIZE);
2755
    zend_mm_chunk *chunk = (zend_mm_chunk*)ZEND_MM_ALIGNED_BASE(ptr, ZEND_MM_CHUNK_SIZE);
2756
    int page_num = page_offset / ZEND_MM_PAGE_SIZE;
2757
    uint32_t pages_count = ZEND_MM_ALIGNED_SIZE_EX(size, ZEND_MM_PAGE_SIZE) / ZEND_MM_PAGE_SIZE;
2758
2759
    ZEND_MM_CHECK(chunk->heap == AG(mm_heap) && ZEND_MM_ALIGNED_OFFSET(page_offset, ZEND_MM_PAGE_SIZE) == 0, "zend_mm_heap corrupted");
2760
    ZEND_ASSERT(chunk->map[page_num] & ZEND_MM_IS_LRUN);
2761
    ZEND_ASSERT(ZEND_MM_LRUN_PAGES(chunk->map[page_num]) == pages_count);
2762
    zend_mm_free_large(AG(mm_heap), chunk, page_num, pages_count);
2763
  }
2764
}
2765
2766
ZEND_API void ZEND_FASTCALL _efree_huge(void *ptr, size_t size)
2767
{
2768
2769
  ZEND_MM_CUSTOM_DEALLOCATOR(ptr);
2770
  zend_mm_free_huge(AG(mm_heap), ptr);
2771
}
2772
#endif
2773
2774
ZEND_API void* ZEND_FASTCALL _emalloc(size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2775
8.46M
{
2776
8.46M
#if ZEND_MM_CUSTOM
2777
8.46M
  if (UNEXPECTED(AG(mm_heap)->use_custom_heap)) {
2778
8.46M
    return AG(mm_heap)->custom_heap._malloc(size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC); \
2779
8.46M
  }
2780
0
#endif
2781
0
  return zend_mm_alloc_heap(AG(mm_heap), size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2782
8.46M
}
2783
2784
ZEND_API void ZEND_FASTCALL _efree(void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2785
8.57M
{
2786
8.57M
#if ZEND_MM_CUSTOM
2787
8.57M
  if (UNEXPECTED(AG(mm_heap)->use_custom_heap)) {
2788
8.57M
    AG(mm_heap)->custom_heap._free(ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2789
8.57M
    return;
2790
8.57M
  }
2791
0
#endif
2792
0
  zend_mm_free_heap(AG(mm_heap), ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2793
0
}
2794
2795
ZEND_API void* ZEND_FASTCALL _erealloc(void *ptr, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2796
219k
{
2797
219k
#if ZEND_MM_CUSTOM
2798
219k
  if (UNEXPECTED(AG(mm_heap)->use_custom_heap)) {
2799
219k
    return AG(mm_heap)->custom_heap._realloc(ptr, size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2800
219k
  }
2801
0
#endif
2802
0
  return zend_mm_realloc_heap(AG(mm_heap), ptr, size, 0, size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2803
219k
}
2804
2805
ZEND_API void* ZEND_FASTCALL _erealloc2(void *ptr, size_t size, size_t copy_size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2806
371
{
2807
371
#if ZEND_MM_CUSTOM
2808
371
  if (UNEXPECTED(AG(mm_heap)->use_custom_heap)) {
2809
371
    return AG(mm_heap)->custom_heap._realloc(ptr, size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2810
371
  }
2811
0
#endif
2812
0
  return zend_mm_realloc_heap(AG(mm_heap), ptr, size, 1, copy_size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2813
371
}
2814
2815
ZEND_API size_t ZEND_FASTCALL _zend_mem_block_size(void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2816
0
{
2817
0
  return _zend_mm_block_size(AG(mm_heap), ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2818
0
}
2819
2820
ZEND_API void* ZEND_FASTCALL _safe_emalloc(size_t nmemb, size_t size, size_t offset ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2821
1.45k
{
2822
1.45k
  return _emalloc(zend_safe_address_guarded(nmemb, size, offset) ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2823
1.45k
}
2824
2825
ZEND_API void* ZEND_FASTCALL _safe_malloc(size_t nmemb, size_t size, size_t offset)
2826
0
{
2827
0
  return pemalloc(zend_safe_address_guarded(nmemb, size, offset), 1);
2828
0
}
2829
2830
ZEND_API void* ZEND_FASTCALL _safe_erealloc(void *ptr, size_t nmemb, size_t size, size_t offset ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2831
34.6k
{
2832
34.6k
  return _erealloc(ptr, zend_safe_address_guarded(nmemb, size, offset) ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2833
34.6k
}
2834
2835
ZEND_API void* ZEND_FASTCALL _safe_realloc(void *ptr, size_t nmemb, size_t size, size_t offset)
2836
0
{
2837
0
  return perealloc(ptr, zend_safe_address_guarded(nmemb, size, offset), 1);
2838
0
}
2839
2840
ZEND_API void* ZEND_FASTCALL _ecalloc(size_t nmemb, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2841
283k
{
2842
283k
  void *p;
2843
2844
283k
  size = zend_safe_address_guarded(nmemb, size, 0);
2845
283k
  p = _emalloc(size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2846
283k
  memset(p, 0, size);
2847
283k
  return p;
2848
283k
}
2849
2850
ZEND_API char* ZEND_FASTCALL _estrdup(const char *s ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2851
36.2k
{
2852
36.2k
  size_t length;
2853
36.2k
  char *p;
2854
2855
36.2k
  length = strlen(s);
2856
36.2k
  if (UNEXPECTED(length + 1 == 0)) {
2857
0
    zend_error_noreturn(E_ERROR, "Possible integer overflow in memory allocation (1 * %zu + 1)", length);
2858
0
  }
2859
36.2k
  p = (char *) _emalloc(length + 1 ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2860
36.2k
  memcpy(p, s, length+1);
2861
36.2k
  return p;
2862
36.2k
}
2863
2864
ZEND_API char* ZEND_FASTCALL _estrndup(const char *s, size_t length ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
2865
60.0k
{
2866
60.0k
  char *p;
2867
2868
60.0k
  if (UNEXPECTED(length + 1 == 0)) {
2869
0
    zend_error_noreturn(E_ERROR, "Possible integer overflow in memory allocation (1 * %zu + 1)", length);
2870
0
  }
2871
60.0k
  p = (char *) _emalloc(length + 1 ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
2872
60.0k
  memcpy(p, s, length);
2873
60.0k
  p[length] = 0;
2874
60.0k
  return p;
2875
60.0k
}
2876
2877
static ZEND_COLD ZEND_NORETURN void zend_out_of_memory(void);
2878
2879
ZEND_API char* ZEND_FASTCALL zend_strndup(const char *s, size_t length)
2880
0
{
2881
0
  char *p;
2882
2883
0
  if (UNEXPECTED(length + 1 == 0)) {
2884
0
    zend_error_noreturn(E_ERROR, "Possible integer overflow in memory allocation (1 * %zu + 1)", length);
2885
0
  }
2886
0
  p = (char *) malloc(length + 1);
2887
0
  if (UNEXPECTED(p == NULL)) {
2888
0
    zend_out_of_memory();
2889
0
  }
2890
0
  if (EXPECTED(length)) {
2891
0
    memcpy(p, s, length);
2892
0
  }
2893
0
  p[length] = 0;
2894
0
  return p;
2895
0
}
2896
2897
ZEND_API zend_result zend_set_memory_limit(size_t memory_limit)
2898
34.3k
{
2899
34.3k
#if ZEND_MM_LIMIT
2900
34.3k
  zend_mm_heap *heap = AG(mm_heap);
2901
2902
34.3k
  if (UNEXPECTED(memory_limit < heap->real_size)) {
2903
14
    if (memory_limit >= heap->real_size - heap->cached_chunks_count * ZEND_MM_CHUNK_SIZE) {
2904
      /* free some cached chunks to fit into new memory limit */
2905
0
      do {
2906
0
        zend_mm_chunk *p = heap->cached_chunks;
2907
0
        heap->cached_chunks = p->next;
2908
0
        zend_mm_chunk_free(heap, p, ZEND_MM_CHUNK_SIZE);
2909
0
        heap->cached_chunks_count--;
2910
0
        heap->real_size -= ZEND_MM_CHUNK_SIZE;
2911
0
      } while (memory_limit < heap->real_size);
2912
0
      return SUCCESS;
2913
0
    }
2914
14
    return FAILURE;
2915
14
  }
2916
34.3k
  AG(mm_heap)->limit = memory_limit;
2917
34.3k
#endif
2918
34.3k
  return SUCCESS;
2919
34.3k
}
2920
2921
ZEND_API bool zend_alloc_in_memory_limit_error_reporting(void)
2922
53.4k
{
2923
53.4k
#if ZEND_MM_LIMIT
2924
53.4k
  return AG(mm_heap)->overflow;
2925
#else
2926
  return false;
2927
#endif
2928
53.4k
}
2929
2930
ZEND_API size_t zend_memory_usage(bool real_usage)
2931
14
{
2932
14
#if ZEND_MM_STAT
2933
14
  if (real_usage) {
2934
14
    return AG(mm_heap)->real_size;
2935
14
  } else {
2936
0
    size_t usage = AG(mm_heap)->size;
2937
0
    return usage;
2938
0
  }
2939
0
#endif
2940
0
  return 0;
2941
14
}
2942
2943
ZEND_API size_t zend_memory_peak_usage(bool real_usage)
2944
0
{
2945
0
#if ZEND_MM_STAT
2946
0
  if (real_usage) {
2947
0
    return AG(mm_heap)->real_peak;
2948
0
  } else {
2949
0
    return AG(mm_heap)->peak;
2950
0
  }
2951
0
#endif
2952
0
  return 0;
2953
0
}
2954
2955
ZEND_API void zend_memory_reset_peak_usage(void)
2956
0
{
2957
0
#if ZEND_MM_STAT
2958
0
  AG(mm_heap)->real_peak = AG(mm_heap)->real_size;
2959
0
  AG(mm_heap)->peak = AG(mm_heap)->size;
2960
0
#endif
2961
0
}
2962
2963
ZEND_API void shutdown_memory_manager(bool silent, bool full_shutdown)
2964
33.5k
{
2965
33.5k
  zend_mm_shutdown(AG(mm_heap), full_shutdown, silent);
2966
33.5k
}
2967
2968
ZEND_API void refresh_memory_manager(void)
2969
0
{
2970
0
  zend_mm_refresh_key_child(AG(mm_heap));
2971
0
}
2972
2973
static ZEND_COLD ZEND_NORETURN void zend_out_of_memory(void)
2974
0
{
2975
0
  fprintf(stderr, "Out of memory\n");
2976
0
  exit(1);
2977
0
}
2978
2979
#if ZEND_MM_CUSTOM
2980
8.68M
static zend_always_inline void tracked_add(zend_mm_heap *heap, void *ptr, size_t size) {
2981
8.68M
  zval size_zv;
2982
8.68M
  zend_ulong h = ((uintptr_t) ptr) >> ZEND_MM_ALIGNMENT_LOG2;
2983
8.68M
  ZEND_ASSERT((void *) (uintptr_t) (h << ZEND_MM_ALIGNMENT_LOG2) == ptr);
2984
8.68M
  ZVAL_LONG(&size_zv, size);
2985
8.68M
  zend_hash_index_add_new(heap->tracked_allocs, h, &size_zv);
2986
8.68M
}
2987
2988
8.64M
static zend_always_inline zval *tracked_get_size_zv(zend_mm_heap *heap, void *ptr) {
2989
8.64M
  zend_ulong h = ((uintptr_t) ptr) >> ZEND_MM_ALIGNMENT_LOG2;
2990
8.64M
  zval *size_zv = zend_hash_index_find(heap->tracked_allocs, h);
2991
8.64M
  ZEND_ASSERT(size_zv && "Trying to free pointer not allocated through ZendMM");
2992
8.64M
  return size_zv;
2993
8.64M
}
2994
2995
8.56M
static zend_always_inline void tracked_check_limit(zend_mm_heap *heap, size_t add_size) {
2996
8.56M
#if ZEND_MM_STAT
2997
8.56M
  if (add_size > heap->limit - heap->size && !heap->overflow) {
2998
19
#if ZEND_DEBUG
2999
19
    zend_mm_safe_error(heap,
3000
19
      "Allowed memory size of %zu bytes exhausted at %s:%d (tried to allocate %zu bytes)",
3001
19
      heap->limit, "file", 0, add_size);
3002
#else
3003
    zend_mm_safe_error(heap,
3004
      "Allowed memory size of %zu bytes exhausted (tried to allocate %zu bytes)",
3005
      heap->limit, add_size);
3006
#endif
3007
19
  }
3008
8.56M
#endif
3009
8.56M
}
3010
3011
static void *tracked_malloc(size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
3012
8.46M
{
3013
8.46M
  zend_mm_heap *heap = AG(mm_heap);
3014
8.46M
  tracked_check_limit(heap, size);
3015
3016
8.46M
  void *ptr = malloc(size);
3017
8.46M
  if (!ptr) {
3018
0
    zend_out_of_memory();
3019
0
  }
3020
3021
8.46M
  tracked_add(heap, ptr, size);
3022
8.46M
#if ZEND_MM_STAT
3023
8.46M
  heap->size += size;
3024
8.46M
  heap->real_size = heap->size;
3025
8.46M
#endif
3026
8.46M
  return ptr;
3027
8.46M
}
3028
3029
8.57M
static void tracked_free(void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC) {
3030
8.57M
  if (!ptr) {
3031
101k
    return;
3032
101k
  }
3033
3034
8.47M
  zend_mm_heap *heap = AG(mm_heap);
3035
8.47M
  zval *size_zv = tracked_get_size_zv(heap, ptr);
3036
8.47M
#if ZEND_MM_STAT
3037
8.47M
  heap->size -= Z_LVAL_P(size_zv);
3038
8.47M
  heap->real_size = heap->size;
3039
8.47M
#endif
3040
8.47M
  zend_hash_del_bucket(heap->tracked_allocs, (Bucket *) size_zv);
3041
8.47M
  free(ptr);
3042
8.47M
}
3043
3044
220k
static void *tracked_realloc(void *ptr, size_t new_size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC) {
3045
220k
  zend_mm_heap *heap = AG(mm_heap);
3046
220k
  zval *old_size_zv = NULL;
3047
220k
  size_t old_size = 0;
3048
220k
  if (ptr) {
3049
171k
    old_size_zv = tracked_get_size_zv(heap, ptr);
3050
171k
    old_size = Z_LVAL_P(old_size_zv);
3051
171k
  }
3052
3053
220k
  if (new_size > old_size) {
3054
98.4k
    tracked_check_limit(heap, new_size - old_size);
3055
98.4k
  }
3056
3057
  /* Delete information about old allocation only after checking the memory limit. */
3058
220k
  if (old_size_zv) {
3059
171k
    zend_hash_del_bucket(heap->tracked_allocs, (Bucket *) old_size_zv);
3060
171k
  }
3061
3062
220k
  ptr = __zend_realloc(ptr, new_size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
3063
220k
  tracked_add(heap, ptr, new_size);
3064
220k
#if ZEND_MM_STAT
3065
220k
  heap->size += new_size - old_size;
3066
220k
  heap->real_size = heap->size;
3067
220k
#endif
3068
220k
  return ptr;
3069
220k
}
3070
3071
911
static void tracked_free_all(zend_mm_heap *heap) {
3072
911
  HashTable *tracked_allocs = heap->tracked_allocs;
3073
911
  zend_ulong h;
3074
197k
  ZEND_HASH_FOREACH_NUM_KEY(tracked_allocs, h) {
3075
197k
    void *ptr = (void *) (uintptr_t) (h << ZEND_MM_ALIGNMENT_LOG2);
3076
197k
    free(ptr);
3077
197k
  } ZEND_HASH_FOREACH_END();
3078
911
}
3079
3080
static void* poison_malloc(size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
3081
0
{
3082
0
  zend_mm_heap *heap = AG(mm_heap);
3083
3084
0
  if (SIZE_MAX - heap->debug.padding * 2 < size) {
3085
0
    zend_mm_panic("Integer overflow in memory allocation");
3086
0
  }
3087
0
  size += heap->debug.padding * 2;
3088
3089
0
  void *ptr = zend_mm_alloc_heap(heap, size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
3090
3091
0
  if (EXPECTED(ptr)) {
3092
0
    if (heap->debug.poison_alloc) {
3093
0
      memset(ptr, heap->debug.poison_alloc_value, size);
3094
0
    }
3095
3096
0
    ptr = (char*)ptr + heap->debug.padding;
3097
0
  }
3098
3099
0
  return ptr;
3100
0
}
3101
3102
static void poison_free(void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
3103
0
{
3104
0
  zend_mm_heap *heap = AG(mm_heap);
3105
3106
0
  if (EXPECTED(ptr)) {
3107
    /* zend_mm_shutdown() will try to free the heap when custom handlers
3108
     * are installed */
3109
0
    if (UNEXPECTED(ptr == heap)) {
3110
0
      return;
3111
0
    }
3112
3113
0
    ptr = (char*)ptr - heap->debug.padding;
3114
3115
0
    size_t size = zend_mm_size(heap, ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
3116
3117
0
    if (heap->debug.poison_free) {
3118
0
      memset(ptr, heap->debug.poison_free_value, size);
3119
0
    }
3120
0
  }
3121
3122
0
  zend_mm_free_heap(heap, ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
3123
0
}
3124
3125
static void* poison_realloc(void *ptr, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
3126
0
{
3127
0
  zend_mm_heap *heap = AG(mm_heap);
3128
3129
0
  void *new = poison_malloc(size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
3130
3131
0
  if (ptr) {
3132
      /* Determine the size of the old allocation from the unpadded pointer. */
3133
0
    size_t oldsize = zend_mm_size(heap, (char*)ptr - heap->debug.padding ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
3134
3135
    /* Remove the padding size to determine the size that is available to the user. */
3136
0
    oldsize -= (2 * heap->debug.padding);
3137
3138
0
#if ZEND_DEBUG
3139
0
    oldsize -= sizeof(zend_mm_debug_info);
3140
0
#endif
3141
3142
0
    memcpy(new, ptr, MIN(oldsize, size));
3143
0
    poison_free(ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
3144
0
  }
3145
3146
0
  return new;
3147
0
}
3148
3149
static size_t poison_gc(void)
3150
0
{
3151
0
  zend_mm_heap *heap = AG(mm_heap);
3152
3153
0
  void* (*_malloc)(size_t ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
3154
0
  void  (*_free)(void* ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
3155
0
  void* (*_realloc)(void*, size_t ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
3156
0
  size_t (*_gc)(void);
3157
0
  void   (*_shutdown)(bool, bool);
3158
3159
0
  zend_mm_get_custom_handlers_ex(heap, &_malloc, &_free, &_realloc, &_gc, &_shutdown);
3160
0
  zend_mm_set_custom_handlers_ex(heap, NULL, NULL, NULL, NULL, NULL);
3161
3162
0
  size_t collected = zend_mm_gc(heap);
3163
3164
0
  zend_mm_set_custom_handlers_ex(heap, _malloc, _free, _realloc, _gc, _shutdown);
3165
3166
0
  return collected;
3167
0
}
3168
3169
static void poison_shutdown(bool full, bool silent)
3170
0
{
3171
0
  zend_mm_heap *heap = AG(mm_heap);
3172
3173
0
  void* (*_malloc)(size_t ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
3174
0
  void  (*_free)(void* ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
3175
0
  void* (*_realloc)(void*, size_t ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC);
3176
0
  size_t (*_gc)(void);
3177
0
  void   (*_shutdown)(bool, bool);
3178
3179
0
  zend_mm_get_custom_handlers_ex(heap, &_malloc, &_free, &_realloc, &_gc, &_shutdown);
3180
0
  zend_mm_set_custom_handlers_ex(heap, NULL, NULL, NULL, NULL, NULL);
3181
3182
0
  if (heap->debug.check_freelists_on_shutdown) {
3183
0
    zend_mm_check_freelists(heap);
3184
0
  }
3185
3186
0
  zend_mm_shutdown(heap, full, silent);
3187
3188
0
  if (!full) {
3189
0
    zend_mm_set_custom_handlers_ex(heap, _malloc, _free, _realloc, _gc, _shutdown);
3190
0
  }
3191
0
}
3192
3193
static void poison_enable(zend_mm_heap *heap, char *parameters)
3194
0
{
3195
0
  char *tmp = parameters;
3196
0
  char *end = tmp + strlen(tmp);
3197
3198
  /* Trim heading/trailing whitespaces */
3199
0
  while (*tmp == ' ' || *tmp == '\t' || *tmp == '\n') {
3200
0
    tmp++;
3201
0
  }
3202
0
  while (end != tmp && (*(end-1) == ' ' || *(end-1) == '\t' || *(end-1) == '\n')) {
3203
0
    end--;
3204
0
  }
3205
3206
0
  if (tmp == end) {
3207
0
    return;
3208
0
  }
3209
3210
0
  while (1) {
3211
0
    char *key = tmp;
3212
3213
0
    tmp = memchr(tmp, '=', end - tmp);
3214
0
    if (!tmp) {
3215
0
      size_t key_len = end - key;
3216
0
      fprintf(stderr, "Unexpected EOF after ZEND_MM_DEBUG parameter '%.*s', expected '='\n",
3217
0
          (int)key_len, key);
3218
0
      return;
3219
0
    }
3220
3221
0
    size_t key_len = tmp - key;
3222
0
    char *value = tmp + 1;
3223
3224
0
    if (key_len == strlen("poison_alloc")
3225
0
        && !memcmp(key, "poison_alloc", key_len)) {
3226
3227
0
      heap->debug.poison_alloc = true;
3228
0
      heap->debug.poison_alloc_value = (uint8_t) ZEND_STRTOUL(value, &tmp, 0);
3229
3230
0
    } else if (key_len == strlen("poison_free")
3231
0
        && !memcmp(key, "poison_free", key_len)) {
3232
3233
0
      heap->debug.poison_free = true;
3234
0
      heap->debug.poison_free_value = (uint8_t) ZEND_STRTOUL(value, &tmp, 0);
3235
3236
0
    } else if (key_len == strlen("padding")
3237
0
        && !memcmp(key, "padding", key_len)) {
3238
3239
0
      uint8_t padding = ZEND_STRTOUL(value, &tmp, 0);
3240
0
      if (ZEND_MM_ALIGNED_SIZE(padding) != padding) {
3241
0
        fprintf(stderr, "ZEND_MM_DEBUG padding must be a multiple of %u, %u given\n",
3242
0
            (unsigned int)ZEND_MM_ALIGNMENT,
3243
0
            (unsigned int)padding);
3244
0
        return;
3245
0
      }
3246
0
      heap->debug.padding = padding;
3247
3248
0
    } else if (key_len == strlen("check_freelists_on_shutdown")
3249
0
        && !memcmp(key, "check_freelists_on_shutdown", key_len)) {
3250
3251
0
      heap->debug.check_freelists_on_shutdown = (bool) ZEND_STRTOUL(value, &tmp, 0);
3252
3253
0
    } else {
3254
0
      fprintf(stderr, "Unknown ZEND_MM_DEBUG parameter: '%.*s'\n",
3255
0
          (int)key_len, key);
3256
0
      return;
3257
0
    }
3258
3259
0
    if (tmp == end) {
3260
0
      break;
3261
0
    }
3262
0
    if (*tmp != ',') {
3263
0
      fprintf(stderr, "Unexpected '%c' after value of ZEND_MM_DEBUG parameter '%.*s', expected ','\n",
3264
0
          *tmp, (int)key_len, key);
3265
0
      return;
3266
0
    }
3267
0
    tmp++;
3268
0
  }
3269
3270
0
  zend_mm_set_custom_handlers_ex(heap, poison_malloc, poison_free,
3271
0
      poison_realloc, poison_gc, poison_shutdown);
3272
0
}
3273
#endif
3274
3275
static void alloc_globals_ctor(zend_alloc_globals *alloc_globals)
3276
2
{
3277
2
  char *tmp;
3278
3279
2
#if ZEND_MM_CUSTOM
3280
2
  tmp = getenv("USE_ZEND_ALLOC");
3281
2
  if (tmp && !ZEND_ATOL(tmp)) {
3282
2
    bool tracked = (tmp = getenv("USE_TRACKED_ALLOC")) && ZEND_ATOL(tmp);
3283
2
    zend_mm_heap *mm_heap = alloc_globals->mm_heap = malloc(sizeof(zend_mm_heap));
3284
2
    memset(mm_heap, 0, sizeof(zend_mm_heap));
3285
2
    mm_heap->use_custom_heap = ZEND_MM_CUSTOM_HEAP_STD;
3286
2
    mm_heap->limit = (size_t)Z_L(-1) >> 1;
3287
2
    mm_heap->overflow = 0;
3288
3289
2
    if (!tracked) {
3290
      /* Use system allocator. */
3291
0
      mm_heap->custom_heap._malloc = __zend_malloc;
3292
0
      mm_heap->custom_heap._free = __zend_free;
3293
0
      mm_heap->custom_heap._realloc = __zend_realloc;
3294
2
    } else {
3295
      /* Use system allocator and track allocations for auto-free. */
3296
2
      mm_heap->custom_heap._malloc = tracked_malloc;
3297
2
      mm_heap->custom_heap._free = tracked_free;
3298
2
      mm_heap->custom_heap._realloc = tracked_realloc;
3299
2
      mm_heap->tracked_allocs = malloc(sizeof(HashTable));
3300
2
      zend_hash_init(mm_heap->tracked_allocs, 1024, NULL, NULL, 1);
3301
2
    }
3302
2
    return;
3303
2
  }
3304
0
#endif
3305
3306
0
  tmp = getenv("USE_ZEND_ALLOC_HUGE_PAGES");
3307
0
  if (tmp && ZEND_ATOL(tmp)) {
3308
0
    zend_mm_use_huge_pages = true;
3309
0
  }
3310
0
  alloc_globals->mm_heap = zend_mm_init();
3311
3312
0
#if ZEND_MM_CUSTOM
3313
0
  ZEND_ASSERT(!alloc_globals->mm_heap->tracked_allocs);
3314
0
  tmp = getenv("ZEND_MM_DEBUG");
3315
0
  if (tmp) {
3316
0
    poison_enable(alloc_globals->mm_heap, tmp);
3317
0
  }
3318
0
#endif
3319
0
}
3320
3321
#ifdef ZTS
3322
static void alloc_globals_dtor(zend_alloc_globals *alloc_globals)
3323
{
3324
  zend_mm_shutdown(alloc_globals->mm_heap, 1, 1);
3325
}
3326
#endif
3327
3328
ZEND_API void start_memory_manager(void)
3329
2
{
3330
2
#ifndef _WIN32
3331
2
#  if defined(_SC_PAGESIZE)
3332
2
  REAL_PAGE_SIZE = sysconf(_SC_PAGESIZE);
3333
#  elif defined(_SC_PAGE_SIZE)
3334
  REAL_PAGE_SIZE = sysconf(_SC_PAGE_SIZE);
3335
#  endif
3336
2
#endif
3337
#ifdef ZTS
3338
  ts_allocate_fast_id(&alloc_globals_id, &alloc_globals_offset, sizeof(zend_alloc_globals), (ts_allocate_ctor) alloc_globals_ctor, (ts_allocate_dtor) alloc_globals_dtor);
3339
#else
3340
2
  alloc_globals_ctor(&alloc_globals);
3341
2
#endif
3342
2
}
3343
3344
ZEND_API zend_mm_heap *zend_mm_set_heap(zend_mm_heap *new_heap)
3345
0
{
3346
0
  zend_mm_heap *old_heap;
3347
3348
0
  old_heap = AG(mm_heap);
3349
0
  AG(mm_heap) = (zend_mm_heap*)new_heap;
3350
0
  return (zend_mm_heap*)old_heap;
3351
0
}
3352
3353
ZEND_API zend_mm_heap *zend_mm_get_heap(void)
3354
0
{
3355
0
  return AG(mm_heap);
3356
0
}
3357
3358
ZEND_API bool zend_mm_is_custom_heap(zend_mm_heap *new_heap)
3359
0
{
3360
0
#if ZEND_MM_CUSTOM
3361
0
  return AG(mm_heap)->use_custom_heap;
3362
#else
3363
  return 0;
3364
#endif
3365
0
}
3366
3367
ZEND_API void zend_mm_set_custom_handlers(zend_mm_heap *heap,
3368
                                          void* (*_malloc)(size_t ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC),
3369
                                          void  (*_free)(void* ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC),
3370
                                          void* (*_realloc)(void*, size_t ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC))
3371
0
{
3372
0
#if ZEND_MM_CUSTOM
3373
0
  zend_mm_set_custom_handlers_ex(heap, _malloc, _free, _realloc, NULL, NULL);
3374
0
#endif
3375
0
}
3376
3377
ZEND_API void zend_mm_set_custom_handlers_ex(zend_mm_heap *heap,
3378
                                          void* (*_malloc)(size_t ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC),
3379
                                          void  (*_free)(void* ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC),
3380
                                          void* (*_realloc)(void*, size_t ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC),
3381
                                          size_t (*_gc)(void),
3382
                                          void   (*_shutdown)(bool, bool))
3383
0
{
3384
0
#if ZEND_MM_CUSTOM
3385
0
  zend_mm_heap *_heap = (zend_mm_heap*)heap;
3386
3387
0
  if (!_malloc && !_free && !_realloc) {
3388
0
    _heap->use_custom_heap = ZEND_MM_CUSTOM_HEAP_NONE;
3389
0
  } else {
3390
0
    _heap->use_custom_heap = ZEND_MM_CUSTOM_HEAP_STD;
3391
0
    _heap->custom_heap._malloc = _malloc;
3392
0
    _heap->custom_heap._free = _free;
3393
0
    _heap->custom_heap._realloc = _realloc;
3394
0
    _heap->custom_heap._gc = _gc;
3395
0
    _heap->custom_heap._shutdown = _shutdown;
3396
0
  }
3397
0
#endif
3398
0
}
3399
3400
ZEND_API void zend_mm_get_custom_handlers(zend_mm_heap *heap,
3401
                                             void* (**_malloc)(size_t ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC),
3402
                                             void  (**_free)(void* ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC),
3403
                                             void* (**_realloc)(void*, size_t ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC))
3404
0
{
3405
0
#if ZEND_MM_CUSTOM
3406
0
  zend_mm_get_custom_handlers_ex(heap, _malloc, _free, _realloc, NULL, NULL);
3407
0
#endif
3408
0
}
3409
3410
ZEND_API void zend_mm_get_custom_handlers_ex(zend_mm_heap *heap,
3411
                                             void* (**_malloc)(size_t ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC),
3412
                                             void  (**_free)(void* ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC),
3413
                                             void* (**_realloc)(void*, size_t ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC),
3414
                                             size_t (**_gc)(void),
3415
                                             void   (**_shutdown)(bool, bool))
3416
0
{
3417
0
#if ZEND_MM_CUSTOM
3418
0
  zend_mm_heap *_heap = (zend_mm_heap*)heap;
3419
3420
0
  if (heap->use_custom_heap) {
3421
0
    *_malloc = _heap->custom_heap._malloc;
3422
0
    *_free = _heap->custom_heap._free;
3423
0
    *_realloc = _heap->custom_heap._realloc;
3424
0
    if (_gc != NULL) {
3425
0
      *_gc = _heap->custom_heap._gc;
3426
0
    }
3427
0
    if (_shutdown != NULL) {
3428
0
      *_shutdown = _heap->custom_heap._shutdown;
3429
0
    }
3430
0
  } else {
3431
0
    *_malloc = NULL;
3432
0
    *_free = NULL;
3433
0
    *_realloc = NULL;
3434
0
    if (_gc != NULL) {
3435
0
      *_gc = NULL;
3436
0
    }
3437
0
    if (_shutdown != NULL) {
3438
0
      *_shutdown = NULL;
3439
0
    }
3440
0
  }
3441
#else
3442
  *_malloc = NULL;
3443
  *_free = NULL;
3444
  *_realloc = NULL;
3445
  *_gc = NULL;
3446
  *_shutdown = NULL;
3447
#endif
3448
0
}
3449
3450
ZEND_API zend_mm_storage *zend_mm_get_storage(zend_mm_heap *heap)
3451
0
{
3452
0
#if ZEND_MM_STORAGE
3453
0
  return heap->storage;
3454
#else
3455
  return NULL;
3456
#endif
3457
0
}
3458
3459
ZEND_API zend_mm_heap *zend_mm_startup(void)
3460
0
{
3461
0
  return zend_mm_init();
3462
0
}
3463
3464
ZEND_API zend_mm_heap *zend_mm_startup_ex(const zend_mm_handlers *handlers, void *data, size_t data_size)
3465
0
{
3466
0
#if ZEND_MM_STORAGE
3467
0
  zend_mm_storage *storage;
3468
0
  zend_mm_storage tmp_storage = {
3469
0
    .handlers = *handlers,
3470
0
    .data = data,
3471
0
  };
3472
0
  zend_mm_chunk *chunk;
3473
0
  zend_mm_heap *heap;
3474
3475
0
  chunk = (zend_mm_chunk*)handlers->chunk_alloc(&tmp_storage, ZEND_MM_CHUNK_SIZE, ZEND_MM_CHUNK_SIZE);
3476
0
  if (UNEXPECTED(chunk == NULL)) {
3477
0
#if ZEND_MM_ERROR
3478
0
    fprintf(stderr, "Can't initialize heap\n");
3479
0
#endif
3480
0
    return NULL;
3481
0
  }
3482
0
  heap = &chunk->heap_slot;
3483
0
  chunk->heap = heap;
3484
0
  chunk->next = chunk;
3485
0
  chunk->prev = chunk;
3486
0
  chunk->free_pages = ZEND_MM_PAGES - ZEND_MM_FIRST_PAGE;
3487
0
  chunk->free_tail = ZEND_MM_FIRST_PAGE;
3488
0
  chunk->num = 0;
3489
0
  chunk->free_map[0] = (Z_L(1) << ZEND_MM_FIRST_PAGE) - 1;
3490
0
  chunk->map[0] = ZEND_MM_LRUN(ZEND_MM_FIRST_PAGE);
3491
0
  heap->main_chunk = chunk;
3492
0
  heap->cached_chunks = NULL;
3493
0
  heap->chunks_count = 1;
3494
0
  heap->peak_chunks_count = 1;
3495
0
  heap->cached_chunks_count = 0;
3496
0
  heap->avg_chunks_count = 1.0;
3497
0
  heap->last_chunks_delete_boundary = 0;
3498
0
  heap->last_chunks_delete_count = 0;
3499
0
#if ZEND_MM_STAT || ZEND_MM_LIMIT
3500
0
  heap->real_size = ZEND_MM_CHUNK_SIZE;
3501
0
#endif
3502
0
#if ZEND_MM_STAT
3503
0
  heap->real_peak = ZEND_MM_CHUNK_SIZE;
3504
0
  heap->size = 0;
3505
0
  heap->peak = 0;
3506
0
#endif
3507
0
  zend_mm_init_key(heap);
3508
0
#if ZEND_MM_LIMIT
3509
0
  heap->limit = (size_t)Z_L(-1) >> 1;
3510
0
  heap->overflow = 0;
3511
0
#endif
3512
0
#if ZEND_MM_CUSTOM
3513
0
  heap->use_custom_heap = 0;
3514
0
#endif
3515
0
  heap->storage = &tmp_storage;
3516
0
  heap->huge_list = NULL;
3517
0
  memset(heap->free_slot, 0, sizeof(heap->free_slot));
3518
0
  storage = _zend_mm_alloc(heap, sizeof(zend_mm_storage) + data_size ZEND_FILE_LINE_CC ZEND_FILE_LINE_CC);
3519
0
  if (!storage) {
3520
0
    handlers->chunk_free(&tmp_storage, chunk, ZEND_MM_CHUNK_SIZE);
3521
0
#if ZEND_MM_ERROR
3522
0
    fprintf(stderr, "Can't initialize heap\n");
3523
0
#endif
3524
0
    return NULL;
3525
0
  }
3526
0
  memcpy(storage, &tmp_storage, sizeof(zend_mm_storage));
3527
0
  if (data) {
3528
0
    storage->data = (void*)(((char*)storage + sizeof(zend_mm_storage)));
3529
0
    memcpy(storage->data, data, data_size);
3530
0
  }
3531
0
  heap->storage = storage;
3532
0
#if ZEND_DEBUG
3533
0
  heap->pid = getpid();
3534
0
#endif
3535
0
  return heap;
3536
#else
3537
  return NULL;
3538
#endif
3539
0
}
3540
3541
ZEND_API void * __zend_malloc(size_t len ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
3542
23.4k
{
3543
23.4k
  void *tmp = malloc(len);
3544
23.4k
  if (EXPECTED(tmp || !len)) {
3545
23.4k
    return tmp;
3546
23.4k
  }
3547
0
  zend_out_of_memory();
3548
23.4k
}
3549
3550
ZEND_API void * __zend_calloc(size_t nmemb, size_t len ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
3551
0
{
3552
0
  void *tmp;
3553
3554
0
  len = zend_safe_address_guarded(nmemb, len, 0);
3555
0
  tmp = __zend_malloc(len ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
3556
0
  memset(tmp, 0, len);
3557
0
  return tmp;
3558
0
}
3559
3560
ZEND_API void * __zend_realloc(void *p, size_t len ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
3561
221k
{
3562
221k
  p = realloc(p, len);
3563
221k
  if (EXPECTED(p || !len)) {
3564
221k
    return p;
3565
221k
  }
3566
0
  zend_out_of_memory();
3567
221k
}
3568
3569
ZEND_API void __zend_free(void *p ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
3570
0
{
3571
0
  free(p);
3572
0
  return;
3573
0
}
3574
3575
ZEND_API char * __zend_strdup(const char *s)
3576
0
{
3577
0
  char *tmp = strdup(s);
3578
0
  if (EXPECTED(tmp)) {
3579
0
    return tmp;
3580
0
  }
3581
0
  zend_out_of_memory();
3582
0
}
3583
3584
#ifdef ZTS
3585
size_t zend_mm_globals_size(void)
3586
{
3587
  return sizeof(zend_alloc_globals);
3588
}
3589
#endif