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malloc.c revision 1.54.10.1
      1  1.54.10.1       tls /*	$NetBSD: malloc.c,v 1.54.10.1 2013/02/25 00:27:53 tls Exp $	*/
      2       1.18   thorpej 
      3        1.1       cgd /*
      4       1.17       tls  * ----------------------------------------------------------------------------
      5       1.17       tls  * "THE BEER-WARE LICENSE" (Revision 42):
      6       1.17       tls  * <phk (at) FreeBSD.ORG> wrote this file.  As long as you retain this notice you
      7       1.17       tls  * can do whatever you want with this stuff. If we meet some day, and you think
      8       1.17       tls  * this stuff is worth it, you can buy me a beer in return.   Poul-Henning Kamp
      9       1.17       tls  * ----------------------------------------------------------------------------
     10        1.1       cgd  *
     11       1.49  christos  * From FreeBSD: malloc.c,v 1.91 2006/01/12 07:28:20 jasone
     12        1.1       cgd  *
     13       1.17       tls  */
     14       1.17       tls 
     15       1.17       tls /*
     16       1.19   thorpej  * Defining MALLOC_EXTRA_SANITY will enable extra checks which are related
     17       1.17       tls  * to internal conditions and consistency in malloc.c. This has a
     18       1.17       tls  * noticeable runtime performance hit, and generally will not do you
     19       1.17       tls  * any good unless you fiddle with the internals of malloc or want
     20       1.17       tls  * to catch random pointer corruption as early as possible.
     21       1.17       tls  */
     22       1.17       tls #ifndef MALLOC_EXTRA_SANITY
     23       1.17       tls #undef MALLOC_EXTRA_SANITY
     24        1.5   thorpej #endif
     25        1.1       cgd 
     26        1.1       cgd /*
     27       1.17       tls  * What to use for Junk.  This is the byte value we use to fill with
     28       1.17       tls  * when the 'J' option is enabled.
     29       1.17       tls  */
     30       1.17       tls #define SOME_JUNK	0xd0		/* as in "Duh" :-) */
     31       1.17       tls 
     32       1.17       tls /*
     33       1.17       tls  * The basic parameters you can tweak.
     34       1.17       tls  *
     35       1.17       tls  * malloc_minsize	minimum size of an allocation in bytes.
     36       1.17       tls  *			If this is too small it's too much work
     37       1.17       tls  *			to manage them.  This is also the smallest
     38       1.17       tls  *			unit of alignment used for the storage
     39       1.17       tls  *			returned by malloc/realloc.
     40        1.1       cgd  *
     41        1.1       cgd  */
     42        1.1       cgd 
     43       1.49  christos #include "namespace.h"
     44       1.17       tls #if defined(__FreeBSD__)
     45       1.17       tls #   if defined(__i386__)
     46       1.17       tls #       define malloc_minsize		16U
     47       1.17       tls #   endif
     48       1.49  christos #   if defined(__ia64__)
     49       1.49  christos #	define malloc_pageshift		13U
     50       1.49  christos #	define malloc_minsize		16U
     51       1.49  christos #   endif
     52       1.17       tls #   if defined(__alpha__)
     53       1.49  christos #       define malloc_pageshift		13U
     54       1.49  christos #       define malloc_minsize		16U
     55       1.49  christos #   endif
     56       1.49  christos #   if defined(__sparc64__)
     57       1.49  christos #       define malloc_pageshift		13U
     58       1.17       tls #       define malloc_minsize		16U
     59       1.17       tls #   endif
     60       1.49  christos #   if defined(__amd64__)
     61       1.49  christos #       define malloc_pageshift		12U
     62       1.49  christos #       define malloc_minsize		16U
     63       1.49  christos #   endif
     64       1.49  christos #   if defined(__arm__)
     65       1.49  christos #       define malloc_pageshift         12U
     66       1.49  christos #       define malloc_minsize           16U
     67       1.49  christos #   endif
     68       1.35  jdolecek #   define HAS_UTRACE
     69       1.35  jdolecek #   define UTRACE_LABEL
     70       1.35  jdolecek 
     71       1.35  jdolecek #include <sys/cdefs.h>
     72       1.43  junyoung void utrace(struct ut *, int);
     73       1.35  jdolecek 
     74       1.17       tls     /*
     75       1.17       tls      * Make malloc/free/realloc thread-safe in libc for use with
     76       1.17       tls      * kernel threads.
     77       1.17       tls      */
     78       1.17       tls #   include "libc_private.h"
     79       1.17       tls #   include "spinlock.h"
     80       1.17       tls     static spinlock_t thread_lock	= _SPINLOCK_INITIALIZER;
     81       1.49  christos #   define _MALLOC_LOCK()		if (__isthreaded) _SPINLOCK(&thread_lock);
     82       1.49  christos #   define _MALLOC_UNLOCK()		if (__isthreaded) _SPINUNLOCK(&thread_lock);
     83       1.17       tls #endif /* __FreeBSD__ */
     84       1.17       tls 
     85       1.51  macallan #include <sys/types.h>
     86       1.17       tls #if defined(__NetBSD__)
     87       1.17       tls #   define malloc_minsize               16U
     88       1.35  jdolecek #   define HAS_UTRACE
     89       1.35  jdolecek #   define UTRACE_LABEL "malloc",
     90       1.35  jdolecek #include <sys/cdefs.h>
     91       1.50  christos #include "extern.h"
     92       1.44     lukem #if defined(LIBC_SCCS) && !defined(lint)
     93  1.54.10.1       tls __RCSID("$NetBSD: malloc.c,v 1.54.10.1 2013/02/25 00:27:53 tls Exp $");
     94       1.44     lukem #endif /* LIBC_SCCS and not lint */
     95       1.43  junyoung int utrace(const char *, void *, size_t);
     96       1.41   thorpej 
     97       1.41   thorpej #include <reentrant.h>
     98       1.41   thorpej extern int __isthreaded;
     99       1.41   thorpej static mutex_t thread_lock = MUTEX_INITIALIZER;
    100       1.49  christos #define _MALLOC_LOCK()	if (__isthreaded) mutex_lock(&thread_lock);
    101       1.49  christos #define _MALLOC_UNLOCK()	if (__isthreaded) mutex_unlock(&thread_lock);
    102       1.17       tls #endif /* __NetBSD__ */
    103       1.17       tls 
    104       1.17       tls #if defined(__sparc__) && defined(sun)
    105       1.17       tls #   define malloc_minsize		16U
    106       1.17       tls #   define MAP_ANON			(0)
    107       1.17       tls     static int fdzero;
    108       1.17       tls #   define MMAP_FD	fdzero
    109       1.17       tls #   define INIT_MMAP() \
    110       1.49  christos 	{ if ((fdzero = open(_PATH_DEVZERO, O_RDWR, 0000)) == -1) \
    111       1.17       tls 	    wrterror("open of /dev/zero"); }
    112       1.17       tls #endif /* __sparc__ */
    113       1.17       tls 
    114       1.17       tls /* Insert your combination here... */
    115       1.17       tls #if defined(__FOOCPU__) && defined(__BAROS__)
    116       1.17       tls #   define malloc_minsize		16U
    117       1.17       tls #endif /* __FOOCPU__ && __BAROS__ */
    118       1.17       tls 
    119       1.49  christos #ifndef ZEROSIZEPTR
    120       1.49  christos #define ZEROSIZEPTR	((void *)(uintptr_t)(1UL << (malloc_pageshift - 1)))
    121       1.49  christos #endif
    122       1.17       tls 
    123       1.17       tls /*
    124       1.17       tls  * No user serviceable parts behind this point.
    125       1.17       tls  */
    126       1.16    kleink #include <sys/types.h>
    127       1.17       tls #include <sys/mman.h>
    128       1.17       tls #include <errno.h>
    129       1.17       tls #include <fcntl.h>
    130       1.49  christos #include <paths.h>
    131       1.17       tls #include <stddef.h>
    132        1.9  christos #include <stdio.h>
    133        1.1       cgd #include <stdlib.h>
    134        1.1       cgd #include <string.h>
    135        1.1       cgd #include <unistd.h>
    136        1.1       cgd 
    137       1.17       tls /*
    138       1.17       tls  * This structure describes a page worth of chunks.
    139       1.17       tls  */
    140       1.17       tls 
    141       1.17       tls struct pginfo {
    142       1.17       tls     struct pginfo	*next;	/* next on the free list */
    143       1.17       tls     void		*page;	/* Pointer to the page */
    144       1.17       tls     u_short		size;	/* size of this page's chunks */
    145       1.17       tls     u_short		shift;	/* How far to shift for this size chunks */
    146       1.17       tls     u_short		free;	/* How many free chunks */
    147       1.17       tls     u_short		total;	/* How many chunk */
    148       1.17       tls     u_int		bits[1]; /* Which chunks are free */
    149       1.17       tls };
    150        1.1       cgd 
    151        1.1       cgd /*
    152       1.17       tls  * This structure describes a number of free pages.
    153       1.17       tls  */
    154       1.17       tls 
    155       1.17       tls struct pgfree {
    156       1.17       tls     struct pgfree	*next;	/* next run of free pages */
    157       1.17       tls     struct pgfree	*prev;	/* prev run of free pages */
    158       1.17       tls     void		*page;	/* pointer to free pages */
    159       1.17       tls     void		*end;	/* pointer to end of free pages */
    160       1.17       tls     size_t		size;	/* number of bytes free */
    161        1.1       cgd };
    162        1.1       cgd 
    163       1.17       tls /*
    164       1.17       tls  * How many bits per u_int in the bitmap.
    165       1.17       tls  * Change only if not 8 bits/byte
    166       1.17       tls  */
    167       1.39   thorpej #define	MALLOC_BITS	((int)(8*sizeof(u_int)))
    168       1.17       tls 
    169       1.17       tls /*
    170       1.17       tls  * Magic values to put in the page_directory
    171       1.17       tls  */
    172       1.17       tls #define MALLOC_NOT_MINE	((struct pginfo*) 0)
    173       1.17       tls #define MALLOC_FREE 	((struct pginfo*) 1)
    174       1.17       tls #define MALLOC_FIRST	((struct pginfo*) 2)
    175       1.17       tls #define MALLOC_FOLLOW	((struct pginfo*) 3)
    176       1.17       tls #define MALLOC_MAGIC	((struct pginfo*) 4)
    177       1.17       tls 
    178       1.20   thorpej /*
    179       1.20   thorpej  * Page size related parameters, computed at run-time.
    180       1.20   thorpej  */
    181       1.20   thorpej static size_t malloc_pagesize;
    182       1.20   thorpej static size_t malloc_pageshift;
    183       1.20   thorpej static size_t malloc_pagemask;
    184       1.17       tls 
    185       1.17       tls #ifndef malloc_minsize
    186       1.17       tls #define malloc_minsize			16U
    187       1.17       tls #endif
    188       1.17       tls 
    189       1.17       tls #ifndef malloc_maxsize
    190       1.17       tls #define malloc_maxsize			((malloc_pagesize)>>1)
    191       1.17       tls #endif
    192       1.17       tls 
    193       1.17       tls #define pageround(foo) (((foo) + (malloc_pagemask))&(~(malloc_pagemask)))
    194       1.38  christos #define ptr2idx(foo) \
    195       1.38  christos     (((size_t)(uintptr_t)(foo) >> malloc_pageshift)-malloc_origo)
    196        1.1       cgd 
    197       1.49  christos #ifndef _MALLOC_LOCK
    198       1.49  christos #define _MALLOC_LOCK()
    199       1.17       tls #endif
    200        1.1       cgd 
    201       1.49  christos #ifndef _MALLOC_UNLOCK
    202       1.49  christos #define _MALLOC_UNLOCK()
    203       1.16    kleink #endif
    204       1.16    kleink 
    205       1.17       tls #ifndef MMAP_FD
    206       1.17       tls #define MMAP_FD (-1)
    207        1.1       cgd #endif
    208        1.1       cgd 
    209       1.17       tls #ifndef INIT_MMAP
    210       1.17       tls #define INIT_MMAP()
    211       1.18   thorpej #endif
    212       1.18   thorpej 
    213       1.18   thorpej #ifndef MADV_FREE
    214       1.18   thorpej #define MADV_FREE MADV_DONTNEED
    215        1.9  christos #endif
    216        1.9  christos 
    217       1.17       tls /* Number of free pages we cache */
    218       1.49  christos static size_t malloc_cache = 16;
    219       1.17       tls 
    220       1.17       tls /* The offset from pagenumber to index into the page directory */
    221       1.30     enami static size_t malloc_origo;
    222       1.17       tls 
    223       1.17       tls /* The last index in the page directory we care about */
    224       1.30     enami static size_t last_idx;
    225       1.17       tls 
    226       1.17       tls /* Pointer to page directory. Allocated "as if with" malloc */
    227       1.17       tls static struct	pginfo **page_dir;
    228       1.17       tls 
    229       1.17       tls /* How many slots in the page directory */
    230       1.49  christos static size_t	malloc_ninfo;
    231       1.17       tls 
    232       1.17       tls /* Free pages line up here */
    233       1.17       tls static struct pgfree free_list;
    234       1.17       tls 
    235       1.17       tls /* Abort(), user doesn't handle problems.  */
    236       1.17       tls static int malloc_abort;
    237       1.17       tls 
    238       1.17       tls /* Are we trying to die ?  */
    239       1.17       tls static int suicide;
    240       1.17       tls 
    241       1.17       tls /* always realloc ?  */
    242       1.17       tls static int malloc_realloc;
    243        1.9  christos 
    244       1.17       tls /* pass the kernel a hint on free pages ?  */
    245       1.49  christos #if defined(MADV_FREE)
    246       1.32    simonb static int malloc_hint = 0;
    247       1.49  christos #endif
    248       1.17       tls 
    249       1.17       tls /* xmalloc behaviour ?  */
    250       1.17       tls static int malloc_xmalloc;
    251       1.17       tls 
    252       1.17       tls /* sysv behaviour for malloc(0) ?  */
    253       1.17       tls static int malloc_sysv;
    254       1.17       tls 
    255       1.17       tls /* zero fill ?  */
    256       1.17       tls static int malloc_zero;
    257       1.17       tls 
    258       1.17       tls /* junk fill ?  */
    259       1.17       tls static int malloc_junk;
    260       1.17       tls 
    261       1.17       tls #ifdef HAS_UTRACE
    262       1.17       tls 
    263       1.17       tls /* utrace ?  */
    264       1.17       tls static int malloc_utrace;
    265       1.17       tls 
    266       1.17       tls struct ut { void *p; size_t s; void *r; };
    267       1.17       tls 
    268       1.17       tls #define UTRACE(a, b, c) \
    269       1.35  jdolecek 	if (malloc_utrace) {			\
    270       1.35  jdolecek 		struct ut u;			\
    271       1.35  jdolecek 		u.p=a; u.s = b; u.r=c;		\
    272       1.35  jdolecek 		utrace(UTRACE_LABEL (void *) &u, sizeof u);	\
    273       1.35  jdolecek 	}
    274       1.17       tls #else /* !HAS_UTRACE */
    275       1.17       tls #define UTRACE(a,b,c)
    276       1.17       tls #endif /* HAS_UTRACE */
    277       1.17       tls 
    278       1.17       tls /* my last break. */
    279       1.17       tls static void *malloc_brk;
    280       1.17       tls 
    281       1.17       tls /* one location cache for free-list holders */
    282       1.17       tls static struct pgfree *px;
    283       1.17       tls 
    284       1.17       tls /* compile-time options */
    285       1.49  christos const char *_malloc_options;
    286       1.17       tls 
    287       1.17       tls /* Name of the current public function */
    288       1.45  christos static const char *malloc_func;
    289       1.17       tls 
    290       1.17       tls /* Macro for mmap */
    291       1.17       tls #define MMAP(size) \
    292       1.49  christos 	mmap(NULL, (size), PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE, \
    293       1.30     enami 	    MMAP_FD, (off_t)0);
    294        1.9  christos 
    295       1.16    kleink /*
    296       1.17       tls  * Necessary function declarations
    297       1.16    kleink  */
    298       1.30     enami static int extend_pgdir(size_t idx);
    299       1.17       tls static void *imalloc(size_t size);
    300       1.17       tls static void ifree(void *ptr);
    301       1.17       tls static void *irealloc(void *ptr, size_t size);
    302       1.17       tls 
    303       1.17       tls static void
    304       1.49  christos wrtmessage(const char *p1, const char *p2, const char *p3, const char *p4)
    305       1.49  christos {
    306       1.49  christos 
    307       1.49  christos     write(STDERR_FILENO, p1, strlen(p1));
    308       1.49  christos     write(STDERR_FILENO, p2, strlen(p2));
    309       1.49  christos     write(STDERR_FILENO, p3, strlen(p3));
    310       1.49  christos     write(STDERR_FILENO, p4, strlen(p4));
    311       1.49  christos }
    312       1.49  christos 
    313       1.49  christos void (*_malloc_message)(const char *p1, const char *p2, const char *p3,
    314       1.49  christos 	    const char *p4) = wrtmessage;
    315       1.49  christos static void
    316       1.45  christos wrterror(const char *p)
    317       1.17       tls {
    318       1.49  christos 
    319       1.17       tls     suicide = 1;
    320       1.49  christos     _malloc_message(getprogname(), malloc_func, " error: ", p);
    321       1.17       tls     abort();
    322       1.17       tls }
    323       1.17       tls 
    324       1.16    kleink static void
    325       1.45  christos wrtwarning(const char *p)
    326        1.1       cgd {
    327       1.49  christos 
    328       1.49  christos     /*
    329       1.49  christos      * Sensitive processes, somewhat arbitrarily defined here as setuid,
    330       1.49  christos      * setgid, root and wheel cannot afford to have malloc mistakes.
    331       1.49  christos      */
    332       1.49  christos     if (malloc_abort || issetugid() || getuid() == 0 || getgid() == 0)
    333       1.17       tls 	wrterror(p);
    334       1.17       tls }
    335       1.17       tls 
    336       1.17       tls /*
    337       1.17       tls  * Allocate a number of pages from the OS
    338       1.17       tls  */
    339       1.17       tls static void *
    340       1.30     enami map_pages(size_t pages)
    341       1.17       tls {
    342       1.38  christos     caddr_t result, rresult, tail;
    343       1.38  christos     intptr_t bytes = pages << malloc_pageshift;
    344       1.16    kleink 
    345       1.38  christos     if (bytes < 0 || (size_t)bytes < pages) {
    346       1.38  christos 	errno = ENOMEM;
    347       1.38  christos 	return NULL;
    348       1.38  christos     }
    349       1.17       tls 
    350       1.38  christos     if ((result = sbrk(bytes)) == (void *)-1)
    351       1.38  christos 	return NULL;
    352       1.38  christos 
    353       1.38  christos     /*
    354       1.38  christos      * Round to a page, in case sbrk(2) did not do this for us
    355       1.38  christos      */
    356       1.38  christos     rresult = (caddr_t)pageround((size_t)(uintptr_t)result);
    357       1.38  christos     if (result < rresult) {
    358       1.38  christos 	/* make sure we have enough space to fit bytes */
    359       1.38  christos 	if (sbrk((intptr_t)(rresult - result)) == (void *) -1) {
    360       1.38  christos 	    /* we failed, put everything back */
    361       1.38  christos 	    if (brk(result)) {
    362       1.38  christos 		wrterror("brk(2) failed [internal error]\n");
    363       1.38  christos 	    }
    364       1.38  christos 	}
    365       1.17       tls     }
    366       1.38  christos     tail = rresult + (size_t)bytes;
    367       1.38  christos 
    368       1.23   thorpej     last_idx = ptr2idx(tail) - 1;
    369       1.17       tls     malloc_brk = tail;
    370       1.17       tls 
    371       1.38  christos     if ((last_idx+1) >= malloc_ninfo && !extend_pgdir(last_idx)) {
    372       1.38  christos 	malloc_brk = result;
    373       1.38  christos 	last_idx = ptr2idx(malloc_brk) - 1;
    374       1.38  christos 	/* Put back break point since we failed. */
    375       1.38  christos 	if (brk(malloc_brk))
    376       1.38  christos 	    wrterror("brk(2) failed [internal error]\n");
    377       1.38  christos 	return 0;
    378       1.38  christos     }
    379       1.16    kleink 
    380       1.38  christos     return rresult;
    381        1.1       cgd }
    382        1.1       cgd 
    383       1.17       tls /*
    384       1.17       tls  * Extend page directory
    385       1.17       tls  */
    386       1.17       tls static int
    387       1.30     enami extend_pgdir(size_t idx)
    388        1.1       cgd {
    389       1.17       tls     struct  pginfo **new, **old;
    390       1.30     enami     size_t newlen, oldlen;
    391       1.37  christos 
    392       1.37  christos     /* check for overflow */
    393       1.37  christos     if ((((~(1UL << ((sizeof(size_t) * NBBY) - 1)) / sizeof(*page_dir)) + 1)
    394       1.37  christos 	+ (malloc_pagesize / sizeof *page_dir)) < idx) {
    395       1.37  christos 	errno = ENOMEM;
    396       1.37  christos 	return 0;
    397       1.37  christos     }
    398        1.1       cgd 
    399       1.17       tls     /* Make it this many pages */
    400       1.30     enami     newlen = pageround(idx * sizeof *page_dir) + malloc_pagesize;
    401       1.17       tls 
    402       1.17       tls     /* remember the old mapping size */
    403       1.17       tls     oldlen = malloc_ninfo * sizeof *page_dir;
    404       1.17       tls 
    405       1.17       tls     /*
    406       1.17       tls      * NOTE: we allocate new pages and copy the directory rather than tempt
    407       1.17       tls      * fate by trying to "grow" the region.. There is nothing to prevent
    408       1.48  christos      * us from accidentally re-mapping space that's been allocated by our caller
    409       1.17       tls      * via dlopen() or other mmap().
    410       1.17       tls      *
    411       1.17       tls      * The copy problem is not too bad, as there is 4K of page index per
    412       1.17       tls      * 4MB of malloc arena.
    413       1.17       tls      *
    414       1.17       tls      * We can totally avoid the copy if we open a file descriptor to associate
    415       1.17       tls      * the anon mappings with.  Then, when we remap the pages at the new
    416       1.17       tls      * address, the old pages will be "magically" remapped..  But this means
    417       1.17       tls      * keeping open a "secret" file descriptor.....
    418       1.17       tls      */
    419       1.17       tls 
    420       1.17       tls     /* Get new pages */
    421       1.49  christos     new = MMAP(newlen);
    422       1.43  junyoung     if (new == MAP_FAILED)
    423       1.17       tls 	return 0;
    424       1.17       tls 
    425       1.17       tls     /* Copy the old stuff */
    426       1.30     enami     memcpy(new, page_dir, oldlen);
    427       1.17       tls 
    428       1.17       tls     /* register the new size */
    429       1.30     enami     malloc_ninfo = newlen / sizeof *page_dir;
    430       1.17       tls 
    431       1.17       tls     /* swap the pointers */
    432       1.17       tls     old = page_dir;
    433       1.17       tls     page_dir = new;
    434       1.17       tls 
    435       1.17       tls     /* Now free the old stuff */
    436       1.17       tls     munmap(old, oldlen);
    437       1.17       tls     return 1;
    438       1.17       tls }
    439       1.16    kleink 
    440       1.17       tls /*
    441       1.17       tls  * Initialize the world
    442       1.17       tls  */
    443       1.17       tls static void
    444       1.49  christos malloc_init(void)
    445       1.17       tls {
    446       1.49  christos     const char *p;
    447       1.49  christos     char b[64];
    448       1.49  christos     size_t i;
    449       1.49  christos     ssize_t j;
    450       1.54  christos     int serrno = errno;
    451       1.20   thorpej 
    452       1.20   thorpej     /*
    453       1.20   thorpej      * Compute page-size related variables.
    454       1.20   thorpej      */
    455       1.30     enami     malloc_pagesize = (size_t)sysconf(_SC_PAGESIZE);
    456       1.20   thorpej     malloc_pagemask = malloc_pagesize - 1;
    457       1.20   thorpej     for (malloc_pageshift = 0;
    458       1.20   thorpej 	 (1UL << malloc_pageshift) != malloc_pagesize;
    459       1.20   thorpej 	 malloc_pageshift++)
    460       1.20   thorpej 	/* nothing */ ;
    461       1.17       tls 
    462       1.17       tls     INIT_MMAP();
    463       1.17       tls 
    464       1.19   thorpej #ifdef MALLOC_EXTRA_SANITY
    465       1.17       tls     malloc_junk = 1;
    466       1.19   thorpej #endif /* MALLOC_EXTRA_SANITY */
    467       1.17       tls 
    468       1.17       tls     for (i = 0; i < 3; i++) {
    469       1.17       tls 	if (i == 0) {
    470       1.17       tls 	    j = readlink("/etc/malloc.conf", b, sizeof b - 1);
    471       1.54  christos 	    if (j == -1)
    472       1.17       tls 		continue;
    473       1.17       tls 	    b[j] = '\0';
    474       1.17       tls 	    p = b;
    475       1.49  christos 	} else if (i == 1 && issetugid() == 0) {
    476       1.49  christos 	    p = getenv("MALLOC_OPTIONS");
    477       1.17       tls 	} else if (i == 1) {
    478       1.49  christos 	    continue;
    479       1.17       tls 	} else {
    480       1.49  christos 	    p = _malloc_options;
    481        1.1       cgd 	}
    482       1.43  junyoung 	for (; p != NULL && *p != '\0'; p++) {
    483       1.17       tls 	    switch (*p) {
    484       1.17       tls 		case '>': malloc_cache   <<= 1; break;
    485       1.17       tls 		case '<': malloc_cache   >>= 1; break;
    486       1.17       tls 		case 'a': malloc_abort   = 0; break;
    487       1.17       tls 		case 'A': malloc_abort   = 1; break;
    488       1.17       tls 		case 'h': malloc_hint    = 0; break;
    489       1.17       tls 		case 'H': malloc_hint    = 1; break;
    490       1.17       tls 		case 'r': malloc_realloc = 0; break;
    491       1.17       tls 		case 'R': malloc_realloc = 1; break;
    492       1.17       tls 		case 'j': malloc_junk    = 0; break;
    493       1.17       tls 		case 'J': malloc_junk    = 1; break;
    494       1.17       tls #ifdef HAS_UTRACE
    495       1.17       tls 		case 'u': malloc_utrace  = 0; break;
    496       1.17       tls 		case 'U': malloc_utrace  = 1; break;
    497       1.17       tls #endif
    498       1.17       tls 		case 'v': malloc_sysv    = 0; break;
    499       1.17       tls 		case 'V': malloc_sysv    = 1; break;
    500       1.17       tls 		case 'x': malloc_xmalloc = 0; break;
    501       1.17       tls 		case 'X': malloc_xmalloc = 1; break;
    502       1.17       tls 		case 'z': malloc_zero    = 0; break;
    503       1.17       tls 		case 'Z': malloc_zero    = 1; break;
    504       1.17       tls 		default:
    505       1.49  christos 		    _malloc_message(getprogname(), malloc_func,
    506       1.49  christos 			 " warning: ", "unknown char in MALLOC_OPTIONS\n");
    507       1.17       tls 		    break;
    508       1.17       tls 	    }
    509        1.1       cgd 	}
    510       1.17       tls     }
    511       1.17       tls 
    512       1.17       tls     UTRACE(0, 0, 0);
    513       1.17       tls 
    514       1.17       tls     /*
    515       1.17       tls      * We want junk in the entire allocation, and zero only in the part
    516       1.17       tls      * the user asked for.
    517       1.17       tls      */
    518       1.17       tls     if (malloc_zero)
    519       1.49  christos 	malloc_junk = 1;
    520       1.17       tls 
    521       1.17       tls     /* Allocate one page for the page directory */
    522       1.49  christos     page_dir = MMAP(malloc_pagesize);
    523       1.17       tls 
    524       1.43  junyoung     if (page_dir == MAP_FAILED)
    525       1.17       tls 	wrterror("mmap(2) failed, check limits.\n");
    526       1.17       tls 
    527       1.17       tls     /*
    528       1.17       tls      * We need a maximum of malloc_pageshift buckets, steal these from the
    529       1.17       tls      * front of the page_directory;
    530       1.17       tls      */
    531       1.38  christos     malloc_origo = pageround((size_t)(uintptr_t)sbrk((intptr_t)0))
    532       1.34  christos 	>> malloc_pageshift;
    533       1.17       tls     malloc_origo -= malloc_pageshift;
    534       1.17       tls 
    535       1.17       tls     malloc_ninfo = malloc_pagesize / sizeof *page_dir;
    536       1.17       tls 
    537       1.17       tls     /* Recalculate the cache size in bytes, and make sure it's nonzero */
    538       1.17       tls 
    539       1.17       tls     if (!malloc_cache)
    540       1.17       tls 	malloc_cache++;
    541       1.17       tls 
    542       1.17       tls     malloc_cache <<= malloc_pageshift;
    543       1.17       tls 
    544       1.17       tls     /*
    545       1.17       tls      * This is a nice hack from Kaleb Keithly (kaleb (at) x.org).
    546       1.17       tls      * We can sbrk(2) further back when we keep this on a low address.
    547       1.17       tls      */
    548       1.49  christos     px = imalloc(sizeof *px);
    549       1.17       tls 
    550       1.54  christos     errno = serrno;
    551       1.17       tls }
    552       1.17       tls 
    553       1.17       tls /*
    554       1.17       tls  * Allocate a number of complete pages
    555       1.17       tls  */
    556       1.17       tls static void *
    557       1.17       tls malloc_pages(size_t size)
    558       1.17       tls {
    559       1.43  junyoung     void *p, *delay_free = NULL;
    560       1.38  christos     size_t i;
    561       1.17       tls     struct pgfree *pf;
    562       1.30     enami     size_t idx;
    563       1.17       tls 
    564       1.38  christos     idx = pageround(size);
    565       1.38  christos     if (idx < size) {
    566       1.38  christos 	errno = ENOMEM;
    567       1.38  christos 	return NULL;
    568       1.38  christos     } else
    569       1.38  christos 	size = idx;
    570       1.17       tls 
    571       1.43  junyoung     p = NULL;
    572       1.17       tls 
    573       1.17       tls     /* Look for free pages before asking for more */
    574       1.17       tls     for(pf = free_list.next; pf; pf = pf->next) {
    575       1.17       tls 
    576       1.19   thorpej #ifdef MALLOC_EXTRA_SANITY
    577       1.17       tls 	if (pf->size & malloc_pagemask)
    578       1.43  junyoung 	    wrterror("(ES): junk length entry on free_list.\n");
    579       1.17       tls 	if (!pf->size)
    580       1.43  junyoung 	    wrterror("(ES): zero length entry on free_list.\n");
    581       1.17       tls 	if (pf->page == pf->end)
    582       1.43  junyoung 	    wrterror("(ES): zero entry on free_list.\n");
    583       1.43  junyoung 	if (pf->page > pf->end)
    584       1.43  junyoung 	    wrterror("(ES): sick entry on free_list.\n");
    585       1.17       tls 	if ((void*)pf->page >= (void*)sbrk(0))
    586       1.43  junyoung 	    wrterror("(ES): entry on free_list past brk.\n");
    587       1.43  junyoung 	if (page_dir[ptr2idx(pf->page)] != MALLOC_FREE)
    588       1.43  junyoung 	    wrterror("(ES): non-free first page on free-list.\n");
    589       1.23   thorpej 	if (page_dir[ptr2idx(pf->end)-1] != MALLOC_FREE)
    590       1.43  junyoung 	    wrterror("(ES): non-free last page on free-list.\n");
    591       1.19   thorpej #endif /* MALLOC_EXTRA_SANITY */
    592       1.17       tls 
    593       1.17       tls 	if (pf->size < size)
    594       1.17       tls 	    continue;
    595       1.17       tls 
    596       1.17       tls 	if (pf->size == size) {
    597       1.17       tls 	    p = pf->page;
    598       1.43  junyoung 	    if (pf->next != NULL)
    599       1.17       tls 		    pf->next->prev = pf->prev;
    600       1.17       tls 	    pf->prev->next = pf->next;
    601       1.17       tls 	    delay_free = pf;
    602       1.17       tls 	    break;
    603       1.17       tls 	}
    604       1.17       tls 
    605       1.17       tls 	p = pf->page;
    606       1.17       tls 	pf->page = (char *)pf->page + size;
    607       1.17       tls 	pf->size -= size;
    608       1.17       tls 	break;
    609       1.17       tls     }
    610       1.17       tls 
    611       1.19   thorpej #ifdef MALLOC_EXTRA_SANITY
    612       1.43  junyoung     if (p != NULL && page_dir[ptr2idx(p)] != MALLOC_FREE)
    613       1.43  junyoung 	wrterror("(ES): allocated non-free page on free-list.\n");
    614       1.19   thorpej #endif /* MALLOC_EXTRA_SANITY */
    615       1.17       tls 
    616       1.17       tls     size >>= malloc_pageshift;
    617       1.17       tls 
    618       1.17       tls     /* Map new pages */
    619       1.43  junyoung     if (p == NULL)
    620       1.17       tls 	p = map_pages(size);
    621       1.17       tls 
    622       1.43  junyoung     if (p != NULL) {
    623       1.17       tls 
    624       1.23   thorpej 	idx = ptr2idx(p);
    625       1.23   thorpej 	page_dir[idx] = MALLOC_FIRST;
    626       1.17       tls 	for (i=1;i<size;i++)
    627       1.23   thorpej 	    page_dir[idx+i] = MALLOC_FOLLOW;
    628       1.17       tls 
    629       1.17       tls 	if (malloc_junk)
    630       1.17       tls 	    memset(p, SOME_JUNK, size << malloc_pageshift);
    631       1.17       tls     }
    632       1.17       tls 
    633       1.17       tls     if (delay_free) {
    634       1.43  junyoung 	if (px == NULL)
    635       1.17       tls 	    px = delay_free;
    636       1.17       tls 	else
    637       1.17       tls 	    ifree(delay_free);
    638       1.17       tls     }
    639       1.17       tls 
    640       1.17       tls     return p;
    641       1.17       tls }
    642       1.17       tls 
    643       1.17       tls /*
    644       1.17       tls  * Allocate a page of fragments
    645       1.17       tls  */
    646       1.17       tls 
    647       1.46     perry static inline int
    648       1.17       tls malloc_make_chunks(int bits)
    649       1.17       tls {
    650       1.17       tls     struct  pginfo *bp;
    651       1.17       tls     void *pp;
    652       1.49  christos     int i, k;
    653       1.49  christos     long l;
    654       1.17       tls 
    655       1.17       tls     /* Allocate a new bucket */
    656       1.17       tls     pp = malloc_pages(malloc_pagesize);
    657       1.43  junyoung     if (pp == NULL)
    658       1.17       tls 	return 0;
    659       1.17       tls 
    660       1.17       tls     /* Find length of admin structure */
    661       1.49  christos     l = (long)offsetof(struct pginfo, bits[0]);
    662       1.49  christos     l += (long)sizeof bp->bits[0] *
    663       1.17       tls 	(((malloc_pagesize >> bits)+MALLOC_BITS-1) / MALLOC_BITS);
    664       1.17       tls 
    665       1.17       tls     /* Don't waste more than two chunks on this */
    666       1.17       tls     if ((1<<(bits)) <= l+l) {
    667       1.17       tls 	bp = (struct  pginfo *)pp;
    668       1.17       tls     } else {
    669       1.49  christos 	bp = imalloc((size_t)l);
    670       1.43  junyoung 	if (bp == NULL) {
    671       1.17       tls 	    ifree(pp);
    672       1.17       tls 	    return 0;
    673        1.1       cgd 	}
    674       1.17       tls     }
    675       1.17       tls 
    676       1.17       tls     bp->size = (1<<bits);
    677       1.17       tls     bp->shift = bits;
    678       1.49  christos     bp->total = bp->free = (u_short)(malloc_pagesize >> bits);
    679       1.17       tls     bp->page = pp;
    680       1.17       tls 
    681       1.17       tls     /* set all valid bits in the bitmap */
    682       1.17       tls     k = bp->total;
    683       1.17       tls     i = 0;
    684       1.17       tls 
    685       1.17       tls     /* Do a bunch at a time */
    686       1.17       tls     for(;k-i >= MALLOC_BITS; i += MALLOC_BITS)
    687       1.30     enami 	bp->bits[i / MALLOC_BITS] = ~0U;
    688       1.17       tls 
    689       1.17       tls     for(; i < k; i++)
    690       1.17       tls         bp->bits[i/MALLOC_BITS] |= 1<<(i%MALLOC_BITS);
    691       1.17       tls 
    692       1.17       tls     if (bp == bp->page) {
    693       1.17       tls 	/* Mark the ones we stole for ourselves */
    694       1.49  christos 	for(i = 0; l > 0; i++) {
    695       1.49  christos 	    bp->bits[i / MALLOC_BITS] &= ~(1 << (i % MALLOC_BITS));
    696       1.17       tls 	    bp->free--;
    697       1.17       tls 	    bp->total--;
    698       1.49  christos 	    l -= (long)(1 << bits);
    699        1.1       cgd 	}
    700       1.17       tls     }
    701       1.17       tls 
    702       1.17       tls     /* MALLOC_LOCK */
    703       1.17       tls 
    704       1.23   thorpej     page_dir[ptr2idx(pp)] = bp;
    705       1.17       tls 
    706       1.17       tls     bp->next = page_dir[bits];
    707       1.17       tls     page_dir[bits] = bp;
    708       1.17       tls 
    709       1.17       tls     /* MALLOC_UNLOCK */
    710       1.17       tls 
    711       1.17       tls     return 1;
    712        1.1       cgd }
    713        1.1       cgd 
    714        1.1       cgd /*
    715       1.17       tls  * Allocate a fragment
    716        1.1       cgd  */
    717       1.17       tls static void *
    718       1.17       tls malloc_bytes(size_t size)
    719        1.1       cgd {
    720       1.30     enami     size_t i;
    721       1.30     enami     int j;
    722       1.17       tls     u_int u;
    723       1.17       tls     struct  pginfo *bp;
    724       1.49  christos     size_t k;
    725       1.17       tls     u_int *lp;
    726       1.17       tls 
    727       1.17       tls     /* Don't bother with anything less than this */
    728       1.17       tls     if (size < malloc_minsize)
    729       1.17       tls 	size = malloc_minsize;
    730       1.17       tls 
    731       1.49  christos 
    732       1.17       tls     /* Find the right bucket */
    733       1.17       tls     j = 1;
    734       1.17       tls     i = size-1;
    735       1.17       tls     while (i >>= 1)
    736       1.17       tls 	j++;
    737       1.17       tls 
    738       1.17       tls     /* If it's empty, make a page more of that size chunks */
    739       1.43  junyoung     if (page_dir[j] == NULL && !malloc_make_chunks(j))
    740       1.43  junyoung 	return NULL;
    741       1.17       tls 
    742       1.17       tls     bp = page_dir[j];
    743       1.17       tls 
    744       1.17       tls     /* Find first word of bitmap which isn't empty */
    745       1.17       tls     for (lp = bp->bits; !*lp; lp++)
    746       1.17       tls 	;
    747       1.17       tls 
    748       1.17       tls     /* Find that bit, and tweak it */
    749       1.17       tls     u = 1;
    750       1.17       tls     k = 0;
    751       1.17       tls     while (!(*lp & u)) {
    752       1.17       tls 	u += u;
    753       1.17       tls 	k++;
    754       1.17       tls     }
    755       1.17       tls     *lp ^= u;
    756       1.17       tls 
    757       1.17       tls     /* If there are no more free, remove from free-list */
    758       1.17       tls     if (!--bp->free) {
    759       1.17       tls 	page_dir[j] = bp->next;
    760       1.43  junyoung 	bp->next = NULL;
    761       1.17       tls     }
    762       1.17       tls 
    763       1.17       tls     /* Adjust to the real offset of that chunk */
    764       1.17       tls     k += (lp-bp->bits)*MALLOC_BITS;
    765       1.17       tls     k <<= bp->shift;
    766       1.17       tls 
    767       1.17       tls     if (malloc_junk)
    768       1.30     enami 	memset((u_char*)bp->page + k, SOME_JUNK, (size_t)bp->size);
    769        1.1       cgd 
    770       1.17       tls     return (u_char *)bp->page + k;
    771        1.1       cgd }
    772        1.1       cgd 
    773       1.17       tls /*
    774       1.17       tls  * Allocate a piece of memory
    775       1.17       tls  */
    776       1.17       tls static void *
    777       1.17       tls imalloc(size_t size)
    778       1.17       tls {
    779       1.17       tls     void *result;
    780       1.17       tls 
    781       1.17       tls     if (suicide)
    782       1.17       tls 	abort();
    783       1.17       tls 
    784       1.17       tls     if ((size + malloc_pagesize) < size)	/* Check for overflow */
    785       1.43  junyoung 	result = NULL;
    786       1.49  christos     else if ((size + malloc_pagesize) >= (uintptr_t)page_dir)
    787       1.49  christos 	result = NULL;
    788       1.17       tls     else if (size <= malloc_maxsize)
    789       1.43  junyoung 	result = malloc_bytes(size);
    790       1.17       tls     else
    791       1.43  junyoung 	result = malloc_pages(size);
    792       1.17       tls 
    793       1.43  junyoung     if (malloc_abort && result == NULL)
    794       1.17       tls 	wrterror("allocation failed.\n");
    795       1.17       tls 
    796       1.43  junyoung     if (malloc_zero && result != NULL)
    797       1.17       tls 	memset(result, 0, size);
    798       1.17       tls 
    799       1.17       tls     return result;
    800        1.1       cgd }
    801        1.1       cgd 
    802        1.1       cgd /*
    803       1.17       tls  * Change the size of an allocation.
    804        1.1       cgd  */
    805       1.17       tls static void *
    806       1.17       tls irealloc(void *ptr, size_t size)
    807       1.17       tls {
    808       1.17       tls     void *p;
    809       1.30     enami     size_t osize, idx;
    810       1.17       tls     struct pginfo **mp;
    811       1.30     enami     size_t i;
    812       1.17       tls 
    813       1.17       tls     if (suicide)
    814       1.17       tls 	abort();
    815       1.17       tls 
    816       1.23   thorpej     idx = ptr2idx(ptr);
    817        1.1       cgd 
    818       1.23   thorpej     if (idx < malloc_pageshift) {
    819       1.17       tls 	wrtwarning("junk pointer, too low to make sense.\n");
    820       1.17       tls 	return 0;
    821       1.17       tls     }
    822       1.17       tls 
    823       1.23   thorpej     if (idx > last_idx) {
    824       1.17       tls 	wrtwarning("junk pointer, too high to make sense.\n");
    825       1.17       tls 	return 0;
    826       1.17       tls     }
    827       1.17       tls 
    828       1.23   thorpej     mp = &page_dir[idx];
    829       1.17       tls 
    830       1.17       tls     if (*mp == MALLOC_FIRST) {			/* Page allocation */
    831       1.17       tls 
    832       1.17       tls 	/* Check the pointer */
    833       1.38  christos 	if ((size_t)(uintptr_t)ptr & malloc_pagemask) {
    834       1.17       tls 	    wrtwarning("modified (page-) pointer.\n");
    835       1.43  junyoung 	    return NULL;
    836       1.17       tls 	}
    837       1.17       tls 
    838       1.17       tls 	/* Find the size in bytes */
    839       1.17       tls 	for (osize = malloc_pagesize; *++mp == MALLOC_FOLLOW;)
    840       1.17       tls 	    osize += malloc_pagesize;
    841       1.17       tls 
    842       1.17       tls         if (!malloc_realloc && 			/* unless we have to, */
    843       1.17       tls 	  size <= osize && 			/* .. or are too small, */
    844       1.17       tls 	  size > (osize - malloc_pagesize)) {	/* .. or can free a page, */
    845       1.49  christos 	    if (malloc_junk)
    846       1.49  christos 		memset((u_char *)ptr + size, SOME_JUNK, osize-size);
    847       1.17       tls 	    return ptr;				/* don't do anything. */
    848        1.6       jtc 	}
    849       1.17       tls 
    850       1.17       tls     } else if (*mp >= MALLOC_MAGIC) {		/* Chunk allocation */
    851       1.17       tls 
    852       1.17       tls 	/* Check the pointer for sane values */
    853       1.38  christos 	if (((size_t)(uintptr_t)ptr & ((*mp)->size-1))) {
    854       1.17       tls 	    wrtwarning("modified (chunk-) pointer.\n");
    855       1.43  junyoung 	    return NULL;
    856        1.1       cgd 	}
    857       1.17       tls 
    858       1.17       tls 	/* Find the chunk index in the page */
    859       1.38  christos 	i = ((size_t)(uintptr_t)ptr & malloc_pagemask) >> (*mp)->shift;
    860       1.17       tls 
    861       1.17       tls 	/* Verify that it isn't a free chunk already */
    862       1.49  christos         if ((*mp)->bits[i/MALLOC_BITS] & (1UL << (i % MALLOC_BITS))) {
    863       1.17       tls 	    wrtwarning("chunk is already free.\n");
    864       1.43  junyoung 	    return NULL;
    865       1.16    kleink 	}
    866       1.17       tls 
    867       1.17       tls 	osize = (*mp)->size;
    868       1.17       tls 
    869       1.17       tls 	if (!malloc_realloc &&		/* Unless we have to, */
    870       1.49  christos 	  size <= osize && 		/* ..or are too small, */
    871       1.49  christos 	  (size > osize / 2 ||	 	/* ..or could use a smaller size, */
    872       1.17       tls 	  osize == malloc_minsize)) {	/* ..(if there is one) */
    873       1.49  christos 	    if (malloc_junk)
    874       1.49  christos 		memset((u_char *)ptr + size, SOME_JUNK, osize-size);
    875       1.17       tls 	    return ptr;			/* ..Don't do anything */
    876        1.1       cgd 	}
    877       1.17       tls 
    878       1.17       tls     } else {
    879       1.17       tls 	wrtwarning("pointer to wrong page.\n");
    880       1.43  junyoung 	return NULL;
    881       1.17       tls     }
    882       1.17       tls 
    883       1.17       tls     p = imalloc(size);
    884       1.17       tls 
    885       1.43  junyoung     if (p != NULL) {
    886       1.17       tls 	/* copy the lesser of the two sizes, and free the old one */
    887       1.17       tls 	if (!size || !osize)
    888       1.17       tls 	    ;
    889       1.17       tls 	else if (osize < size)
    890       1.17       tls 	    memcpy(p, ptr, osize);
    891       1.17       tls 	else
    892       1.17       tls 	    memcpy(p, ptr, size);
    893       1.17       tls 	ifree(ptr);
    894       1.17       tls     }
    895       1.17       tls     return p;
    896        1.1       cgd }
    897        1.1       cgd 
    898        1.1       cgd /*
    899       1.17       tls  * Free a sequence of pages
    900        1.1       cgd  */
    901       1.17       tls 
    902       1.46     perry static inline void
    903       1.30     enami free_pages(void *ptr, size_t idx, struct pginfo *info)
    904       1.17       tls {
    905       1.30     enami     size_t i;
    906       1.43  junyoung     struct pgfree *pf, *pt=NULL;
    907       1.30     enami     size_t l;
    908       1.17       tls     void *tail;
    909       1.17       tls 
    910       1.17       tls     if (info == MALLOC_FREE) {
    911       1.17       tls 	wrtwarning("page is already free.\n");
    912       1.17       tls 	return;
    913       1.17       tls     }
    914       1.17       tls 
    915       1.17       tls     if (info != MALLOC_FIRST) {
    916       1.17       tls 	wrtwarning("pointer to wrong page.\n");
    917       1.17       tls 	return;
    918       1.17       tls     }
    919       1.17       tls 
    920       1.38  christos     if ((size_t)(uintptr_t)ptr & malloc_pagemask) {
    921       1.17       tls 	wrtwarning("modified (page-) pointer.\n");
    922       1.17       tls 	return;
    923       1.17       tls     }
    924       1.17       tls 
    925       1.17       tls     /* Count how many pages and mark them free at the same time */
    926       1.23   thorpej     page_dir[idx] = MALLOC_FREE;
    927       1.23   thorpej     for (i = 1; page_dir[idx+i] == MALLOC_FOLLOW; i++)
    928       1.23   thorpej 	page_dir[idx + i] = MALLOC_FREE;
    929       1.17       tls 
    930       1.17       tls     l = i << malloc_pageshift;
    931       1.17       tls 
    932       1.17       tls     if (malloc_junk)
    933       1.17       tls 	memset(ptr, SOME_JUNK, l);
    934       1.17       tls 
    935       1.17       tls     if (malloc_hint)
    936       1.17       tls 	madvise(ptr, l, MADV_FREE);
    937       1.17       tls 
    938       1.17       tls     tail = (char *)ptr+l;
    939       1.17       tls 
    940       1.17       tls     /* add to free-list */
    941       1.43  junyoung     if (px == NULL)
    942       1.49  christos 	px = imalloc(sizeof *px);	/* This cannot fail... */
    943       1.17       tls     px->page = ptr;
    944       1.17       tls     px->end =  tail;
    945       1.17       tls     px->size = l;
    946       1.43  junyoung     if (free_list.next == NULL) {
    947       1.17       tls 
    948       1.17       tls 	/* Nothing on free list, put this at head */
    949       1.17       tls 	px->next = free_list.next;
    950       1.17       tls 	px->prev = &free_list;
    951       1.17       tls 	free_list.next = px;
    952       1.17       tls 	pf = px;
    953       1.43  junyoung 	px = NULL;
    954       1.17       tls 
    955       1.17       tls     } else {
    956       1.17       tls 
    957       1.17       tls 	/* Find the right spot, leave pf pointing to the modified entry. */
    958       1.17       tls 	tail = (char *)ptr+l;
    959       1.17       tls 
    960       1.43  junyoung 	for(pf = free_list.next; pf->end < ptr && pf->next != NULL;
    961       1.43  junyoung 	    pf = pf->next)
    962       1.17       tls 	    ; /* Race ahead here */
    963       1.17       tls 
    964       1.17       tls 	if (pf->page > tail) {
    965       1.17       tls 	    /* Insert before entry */
    966       1.17       tls 	    px->next = pf;
    967       1.17       tls 	    px->prev = pf->prev;
    968       1.17       tls 	    pf->prev = px;
    969       1.17       tls 	    px->prev->next = px;
    970       1.17       tls 	    pf = px;
    971       1.43  junyoung 	    px = NULL;
    972       1.17       tls 	} else if (pf->end == ptr ) {
    973       1.17       tls 	    /* Append to the previous entry */
    974       1.17       tls 	    pf->end = (char *)pf->end + l;
    975       1.17       tls 	    pf->size += l;
    976       1.43  junyoung 	    if (pf->next != NULL && pf->end == pf->next->page ) {
    977       1.17       tls 		/* And collapse the next too. */
    978       1.17       tls 		pt = pf->next;
    979       1.17       tls 		pf->end = pt->end;
    980       1.17       tls 		pf->size += pt->size;
    981       1.17       tls 		pf->next = pt->next;
    982       1.43  junyoung 		if (pf->next != NULL)
    983       1.17       tls 		    pf->next->prev = pf;
    984       1.17       tls 	    }
    985       1.17       tls 	} else if (pf->page == tail) {
    986       1.17       tls 	    /* Prepend to entry */
    987       1.17       tls 	    pf->size += l;
    988       1.17       tls 	    pf->page = ptr;
    989       1.43  junyoung 	} else if (pf->next == NULL) {
    990       1.17       tls 	    /* Append at tail of chain */
    991       1.43  junyoung 	    px->next = NULL;
    992       1.17       tls 	    px->prev = pf;
    993       1.17       tls 	    pf->next = px;
    994       1.17       tls 	    pf = px;
    995       1.43  junyoung 	    px = NULL;
    996       1.17       tls 	} else {
    997       1.17       tls 	    wrterror("freelist is destroyed.\n");
    998        1.1       cgd 	}
    999       1.17       tls     }
   1000       1.17       tls 
   1001       1.17       tls     /* Return something to OS ? */
   1002       1.43  junyoung     if (pf->next == NULL &&			/* If we're the last one, */
   1003       1.17       tls       pf->size > malloc_cache &&		/* ..and the cache is full, */
   1004       1.17       tls       pf->end == malloc_brk &&			/* ..and none behind us, */
   1005       1.34  christos       malloc_brk == sbrk((intptr_t)0)) {	/* ..and it's OK to do... */
   1006       1.17       tls 
   1007       1.17       tls 	/*
   1008       1.17       tls 	 * Keep the cache intact.  Notice that the '>' above guarantees that
   1009       1.17       tls 	 * the pf will always have at least one page afterwards.
   1010       1.17       tls 	 */
   1011       1.17       tls 	pf->end = (char *)pf->page + malloc_cache;
   1012       1.17       tls 	pf->size = malloc_cache;
   1013       1.17       tls 
   1014       1.17       tls 	brk(pf->end);
   1015       1.17       tls 	malloc_brk = pf->end;
   1016       1.17       tls 
   1017       1.23   thorpej 	idx = ptr2idx(pf->end);
   1018       1.17       tls 
   1019       1.23   thorpej 	for(i=idx;i <= last_idx;)
   1020       1.17       tls 	    page_dir[i++] = MALLOC_NOT_MINE;
   1021       1.17       tls 
   1022       1.47      elad 	last_idx = idx - 1;
   1023       1.47      elad 
   1024       1.17       tls 	/* XXX: We could realloc/shrink the pagedir here I guess. */
   1025       1.17       tls     }
   1026       1.43  junyoung     if (pt != NULL)
   1027       1.17       tls 	ifree(pt);
   1028        1.1       cgd }
   1029        1.1       cgd 
   1030        1.1       cgd /*
   1031       1.17       tls  * Free a chunk, and possibly the page it's on, if the page becomes empty.
   1032        1.1       cgd  */
   1033       1.17       tls 
   1034       1.46     perry static inline void
   1035       1.30     enami free_bytes(void *ptr, size_t idx, struct pginfo *info)
   1036       1.17       tls {
   1037       1.30     enami     size_t i;
   1038       1.17       tls     struct pginfo **mp;
   1039       1.17       tls     void *vp;
   1040       1.17       tls 
   1041       1.17       tls     /* Find the chunk number on the page */
   1042       1.38  christos     i = ((size_t)(uintptr_t)ptr & malloc_pagemask) >> info->shift;
   1043       1.17       tls 
   1044       1.38  christos     if (((size_t)(uintptr_t)ptr & (info->size-1))) {
   1045       1.17       tls 	wrtwarning("modified (chunk-) pointer.\n");
   1046       1.17       tls 	return;
   1047       1.17       tls     }
   1048       1.17       tls 
   1049       1.49  christos     if (info->bits[i/MALLOC_BITS] & (1UL << (i % MALLOC_BITS))) {
   1050       1.17       tls 	wrtwarning("chunk is already free.\n");
   1051       1.17       tls 	return;
   1052       1.17       tls     }
   1053       1.17       tls 
   1054       1.17       tls     if (malloc_junk)
   1055       1.30     enami 	memset(ptr, SOME_JUNK, (size_t)info->size);
   1056       1.17       tls 
   1057       1.49  christos     info->bits[i/MALLOC_BITS] |= (u_int)(1UL << (i % MALLOC_BITS));
   1058       1.17       tls     info->free++;
   1059       1.17       tls 
   1060       1.17       tls     mp = page_dir + info->shift;
   1061       1.17       tls 
   1062       1.17       tls     if (info->free == 1) {
   1063       1.17       tls 
   1064       1.17       tls 	/* Page became non-full */
   1065       1.17       tls 
   1066       1.17       tls 	mp = page_dir + info->shift;
   1067       1.17       tls 	/* Insert in address order */
   1068       1.17       tls 	while (*mp && (*mp)->next && (*mp)->next->page < info->page)
   1069       1.17       tls 	    mp = &(*mp)->next;
   1070       1.17       tls 	info->next = *mp;
   1071       1.17       tls 	*mp = info;
   1072       1.17       tls 	return;
   1073       1.17       tls     }
   1074       1.17       tls 
   1075       1.17       tls     if (info->free != info->total)
   1076       1.17       tls 	return;
   1077       1.17       tls 
   1078       1.17       tls     /* Find & remove this page in the queue */
   1079       1.17       tls     while (*mp != info) {
   1080       1.17       tls 	mp = &((*mp)->next);
   1081       1.19   thorpej #ifdef MALLOC_EXTRA_SANITY
   1082       1.17       tls 	if (!*mp)
   1083       1.43  junyoung 		wrterror("(ES): Not on queue.\n");
   1084       1.19   thorpej #endif /* MALLOC_EXTRA_SANITY */
   1085       1.17       tls     }
   1086       1.17       tls     *mp = info->next;
   1087       1.17       tls 
   1088       1.17       tls     /* Free the page & the info structure if need be */
   1089       1.30     enami     page_dir[idx] = MALLOC_FIRST;
   1090       1.17       tls     vp = info->page;		/* Order is important ! */
   1091       1.17       tls     if(vp != (void*)info)
   1092       1.17       tls 	ifree(info);
   1093       1.17       tls     ifree(vp);
   1094       1.17       tls }
   1095       1.17       tls 
   1096       1.17       tls static void
   1097       1.17       tls ifree(void *ptr)
   1098       1.17       tls {
   1099       1.17       tls     struct pginfo *info;
   1100       1.30     enami     size_t idx;
   1101       1.17       tls 
   1102       1.17       tls     /* This is legal */
   1103       1.43  junyoung     if (ptr == NULL)
   1104       1.17       tls 	return;
   1105       1.17       tls 
   1106       1.17       tls     /* If we're already sinking, don't make matters any worse. */
   1107       1.17       tls     if (suicide)
   1108       1.17       tls 	return;
   1109       1.17       tls 
   1110       1.23   thorpej     idx = ptr2idx(ptr);
   1111       1.17       tls 
   1112       1.23   thorpej     if (idx < malloc_pageshift) {
   1113       1.17       tls 	wrtwarning("junk pointer, too low to make sense.\n");
   1114       1.17       tls 	return;
   1115       1.17       tls     }
   1116       1.17       tls 
   1117       1.23   thorpej     if (idx > last_idx) {
   1118       1.17       tls 	wrtwarning("junk pointer, too high to make sense.\n");
   1119       1.17       tls 	return;
   1120       1.17       tls     }
   1121       1.17       tls 
   1122       1.23   thorpej     info = page_dir[idx];
   1123       1.17       tls 
   1124       1.17       tls     if (info < MALLOC_MAGIC)
   1125       1.23   thorpej         free_pages(ptr, idx, info);
   1126       1.17       tls     else
   1127       1.23   thorpej 	free_bytes(ptr, idx, info);
   1128       1.17       tls     return;
   1129       1.17       tls }
   1130       1.17       tls 
   1131  1.54.10.1       tls static int malloc_active; /* Recursion flag for public interface. */
   1132       1.52  christos static unsigned malloc_started; /* Set when initialization has been done */
   1133       1.52  christos 
   1134       1.49  christos static void *
   1135       1.49  christos pubrealloc(void *ptr, size_t size, const char *func)
   1136       1.49  christos {
   1137       1.49  christos     void *r;
   1138       1.49  christos     int err = 0;
   1139       1.49  christos 
   1140       1.49  christos     /*
   1141       1.49  christos      * If a thread is inside our code with a functional lock held, and then
   1142       1.49  christos      * catches a signal which calls us again, we would get a deadlock if the
   1143       1.49  christos      * lock is not of a recursive type.
   1144       1.49  christos      */
   1145       1.49  christos     _MALLOC_LOCK();
   1146       1.49  christos     malloc_func = func;
   1147       1.49  christos     if (malloc_active > 0) {
   1148       1.49  christos 	if (malloc_active == 1) {
   1149       1.49  christos 	    wrtwarning("recursive call\n");
   1150       1.49  christos 	    malloc_active = 2;
   1151       1.49  christos 	}
   1152       1.49  christos         _MALLOC_UNLOCK();
   1153       1.49  christos 	errno = EINVAL;
   1154       1.49  christos 	return (NULL);
   1155       1.49  christos     }
   1156       1.49  christos     malloc_active = 1;
   1157       1.49  christos 
   1158       1.49  christos     if (!malloc_started) {
   1159       1.49  christos         if (ptr != NULL) {
   1160       1.49  christos 	    wrtwarning("malloc() has never been called\n");
   1161       1.49  christos 	    malloc_active = 0;
   1162       1.49  christos             _MALLOC_UNLOCK();
   1163       1.49  christos 	    errno = EINVAL;
   1164       1.49  christos 	    return (NULL);
   1165       1.49  christos 	}
   1166       1.49  christos 	malloc_init();
   1167       1.49  christos 	malloc_started = 1;
   1168       1.49  christos     }
   1169       1.49  christos 
   1170       1.49  christos     if (ptr == ZEROSIZEPTR)
   1171       1.49  christos 	ptr = NULL;
   1172       1.49  christos     if (malloc_sysv && !size) {
   1173       1.49  christos 	if (ptr != NULL)
   1174       1.49  christos 	    ifree(ptr);
   1175       1.49  christos 	r = NULL;
   1176       1.49  christos     } else if (!size) {
   1177       1.49  christos 	if (ptr != NULL)
   1178       1.49  christos 	    ifree(ptr);
   1179       1.49  christos 	r = ZEROSIZEPTR;
   1180       1.49  christos     } else if (ptr == NULL) {
   1181       1.49  christos 	r = imalloc(size);
   1182       1.49  christos 	err = (r == NULL);
   1183       1.49  christos     } else {
   1184       1.49  christos         r = irealloc(ptr, size);
   1185       1.49  christos 	err = (r == NULL);
   1186       1.49  christos     }
   1187       1.49  christos     UTRACE(ptr, size, r);
   1188       1.49  christos     malloc_active = 0;
   1189       1.49  christos     _MALLOC_UNLOCK();
   1190       1.49  christos     if (malloc_xmalloc && err)
   1191       1.49  christos 	wrterror("out of memory\n");
   1192       1.49  christos     if (err)
   1193       1.49  christos 	errno = ENOMEM;
   1194       1.49  christos     return (r);
   1195       1.49  christos }
   1196       1.49  christos 
   1197       1.17       tls /*
   1198       1.17       tls  * These are the public exported interface routines.
   1199       1.17       tls  */
   1200       1.17       tls 
   1201       1.49  christos void *
   1202       1.49  christos malloc(size_t size)
   1203       1.49  christos {
   1204       1.49  christos 
   1205       1.49  christos     return pubrealloc(NULL, size, " in malloc():");
   1206       1.49  christos }
   1207       1.49  christos 
   1208       1.49  christos int
   1209       1.49  christos posix_memalign(void **memptr, size_t alignment, size_t size)
   1210       1.49  christos {
   1211       1.49  christos     int err;
   1212       1.49  christos     void *result;
   1213       1.49  christos 
   1214       1.52  christos     if (!malloc_started) {
   1215       1.52  christos 	    malloc_init();
   1216       1.52  christos 	    malloc_started = 1;
   1217       1.52  christos     }
   1218       1.49  christos     /* Make sure that alignment is a large enough power of 2. */
   1219       1.52  christos     if (((alignment - 1) & alignment) != 0 || alignment < sizeof(void *) ||
   1220       1.52  christos 	alignment > malloc_pagesize)
   1221       1.49  christos 	    return EINVAL;
   1222       1.49  christos 
   1223       1.49  christos     /*
   1224       1.52  christos      * (size | alignment) is enough to assure the requested alignment, since
   1225       1.49  christos      * the allocator always allocates power-of-two blocks.
   1226       1.49  christos      */
   1227       1.49  christos     err = errno; /* Protect errno against changes in pubrealloc(). */
   1228       1.52  christos     result = pubrealloc(NULL, (size | alignment), " in posix_memalign()");
   1229       1.49  christos     errno = err;
   1230       1.49  christos 
   1231       1.49  christos     if (result == NULL)
   1232       1.49  christos 	return ENOMEM;
   1233       1.49  christos 
   1234       1.49  christos     *memptr = result;
   1235       1.49  christos     return 0;
   1236       1.49  christos }
   1237       1.17       tls 
   1238       1.17       tls void *
   1239       1.49  christos calloc(size_t num, size_t size)
   1240       1.17       tls {
   1241       1.49  christos     void *ret;
   1242       1.17       tls 
   1243       1.49  christos     if (size != 0 && (num * size) / size != num) {
   1244       1.49  christos 	/* size_t overflow. */
   1245       1.49  christos 	errno = ENOMEM;
   1246       1.43  junyoung 	return (NULL);
   1247       1.17       tls     }
   1248       1.49  christos 
   1249       1.49  christos     ret = pubrealloc(NULL, num * size, " in calloc():");
   1250       1.49  christos 
   1251       1.49  christos     if (ret != NULL)
   1252       1.49  christos 	memset(ret, 0, num * size);
   1253       1.49  christos 
   1254       1.49  christos     return ret;
   1255       1.17       tls }
   1256       1.17       tls 
   1257        1.9  christos void
   1258       1.17       tls free(void *ptr)
   1259        1.1       cgd {
   1260       1.49  christos 
   1261       1.49  christos     pubrealloc(ptr, 0, " in free():");
   1262       1.17       tls }
   1263       1.17       tls 
   1264       1.17       tls void *
   1265       1.17       tls realloc(void *ptr, size_t size)
   1266       1.17       tls {
   1267       1.17       tls 
   1268       1.49  christos     return pubrealloc(ptr, size, " in realloc():");
   1269       1.49  christos }
   1270       1.49  christos 
   1271       1.49  christos /*
   1272       1.49  christos  * Begin library-private functions, used by threading libraries for protection
   1273       1.49  christos  * of malloc during fork().  These functions are only called if the program is
   1274       1.49  christos  * running in threaded mode, so there is no need to check whether the program
   1275       1.49  christos  * is threaded here.
   1276       1.49  christos  */
   1277       1.49  christos 
   1278       1.49  christos void
   1279       1.49  christos _malloc_prefork(void)
   1280       1.49  christos {
   1281       1.49  christos 
   1282       1.49  christos 	_MALLOC_LOCK();
   1283       1.49  christos }
   1284       1.49  christos 
   1285       1.49  christos void
   1286       1.49  christos _malloc_postfork(void)
   1287       1.49  christos {
   1288       1.49  christos 
   1289       1.49  christos 	_MALLOC_UNLOCK();
   1290        1.1       cgd }
   1291