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malloc.c revision 1.36.2.2
      1  1.36.2.2   nathanw /*	$NetBSD: malloc.c,v 1.36.2.2 2001/10/08 20:21:13 nathanw 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      1.17       tls  * From FreeBSD: malloc.c,v 1.43 1998/09/30 06:13:59 jb
     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      1.17       tls #if defined(__FreeBSD__)
     44      1.17       tls #   if defined(__i386__)
     45      1.17       tls #       define malloc_minsize		16U
     46      1.17       tls #   endif
     47      1.17       tls #   if defined(__alpha__)
     48      1.17       tls #       define malloc_minsize		16U
     49      1.17       tls #   endif
     50      1.35  jdolecek #   define HAS_UTRACE
     51      1.35  jdolecek #   define UTRACE_LABEL
     52      1.35  jdolecek 
     53      1.35  jdolecek #include <sys/cdefs.h>
     54      1.35  jdolecek void utrace __P((struct ut *, int));
     55      1.35  jdolecek 
     56      1.17       tls     /*
     57      1.17       tls      * Make malloc/free/realloc thread-safe in libc for use with
     58      1.17       tls      * kernel threads.
     59      1.17       tls      */
     60      1.17       tls #   include "libc_private.h"
     61      1.17       tls #   include "spinlock.h"
     62      1.17       tls     static spinlock_t thread_lock	= _SPINLOCK_INITIALIZER;
     63      1.17       tls #   define THREAD_LOCK()		if (__isthreaded) _SPINLOCK(&thread_lock);
     64      1.17       tls #   define THREAD_UNLOCK()		if (__isthreaded) _SPINUNLOCK(&thread_lock);
     65      1.17       tls #endif /* __FreeBSD__ */
     66      1.17       tls 
     67      1.17       tls #if defined(__NetBSD__)
     68      1.17       tls #   define malloc_minsize               16U
     69      1.35  jdolecek #   define HAS_UTRACE
     70      1.35  jdolecek #   define UTRACE_LABEL "malloc",
     71      1.35  jdolecek #include <sys/cdefs.h>
     72      1.35  jdolecek #include <sys/types.h>
     73      1.35  jdolecek int utrace __P((const char *, void *, size_t));
     74  1.36.2.1   nathanw 
     75  1.36.2.1   nathanw #include <pthread.h>
     76  1.36.2.1   nathanw extern int __isthreaded;
     77  1.36.2.1   nathanw static pt_spin_t thread_lock = __SIMPLELOCK_UNLOCKED;
     78  1.36.2.1   nathanw #define THREAD_LOCK()	if (__isthreaded) pthread_spinlock(pthread_self(), &thread_lock);
     79  1.36.2.1   nathanw #define THREAD_UNLOCK()	if (__isthreaded) pthread_spinunlock(pthread_self(), &thread_lock);
     80      1.17       tls #endif /* __NetBSD__ */
     81      1.17       tls 
     82      1.17       tls #if defined(__sparc__) && defined(sun)
     83      1.17       tls #   define malloc_minsize		16U
     84      1.17       tls #   define MAP_ANON			(0)
     85      1.17       tls     static int fdzero;
     86      1.17       tls #   define MMAP_FD	fdzero
     87      1.17       tls #   define INIT_MMAP() \
     88      1.17       tls 	{ if ((fdzero=open("/dev/zero", O_RDWR, 0000)) == -1) \
     89      1.17       tls 	    wrterror("open of /dev/zero"); }
     90      1.17       tls #endif /* __sparc__ */
     91      1.17       tls 
     92      1.17       tls /* Insert your combination here... */
     93      1.17       tls #if defined(__FOOCPU__) && defined(__BAROS__)
     94      1.17       tls #   define malloc_minsize		16U
     95      1.17       tls #endif /* __FOOCPU__ && __BAROS__ */
     96      1.17       tls 
     97      1.17       tls 
     98      1.17       tls /*
     99      1.17       tls  * No user serviceable parts behind this point.
    100      1.17       tls  */
    101      1.25    kleink #include "namespace.h"
    102      1.16    kleink #include <sys/types.h>
    103      1.17       tls #include <sys/mman.h>
    104      1.17       tls #include <errno.h>
    105      1.17       tls #include <fcntl.h>
    106      1.17       tls #include <stddef.h>
    107  1.36.2.2   nathanw #include <stdint.h>
    108       1.9  christos #include <stdio.h>
    109       1.1       cgd #include <stdlib.h>
    110       1.1       cgd #include <string.h>
    111       1.1       cgd #include <unistd.h>
    112       1.1       cgd 
    113      1.17       tls /*
    114      1.17       tls  * This structure describes a page worth of chunks.
    115      1.17       tls  */
    116      1.17       tls 
    117      1.17       tls struct pginfo {
    118      1.17       tls     struct pginfo	*next;	/* next on the free list */
    119      1.17       tls     void		*page;	/* Pointer to the page */
    120      1.17       tls     u_short		size;	/* size of this page's chunks */
    121      1.17       tls     u_short		shift;	/* How far to shift for this size chunks */
    122      1.17       tls     u_short		free;	/* How many free chunks */
    123      1.17       tls     u_short		total;	/* How many chunk */
    124      1.17       tls     u_int		bits[1]; /* Which chunks are free */
    125      1.17       tls };
    126       1.1       cgd 
    127       1.1       cgd /*
    128      1.17       tls  * This structure describes a number of free pages.
    129      1.17       tls  */
    130      1.17       tls 
    131      1.17       tls struct pgfree {
    132      1.17       tls     struct pgfree	*next;	/* next run of free pages */
    133      1.17       tls     struct pgfree	*prev;	/* prev run of free pages */
    134      1.17       tls     void		*page;	/* pointer to free pages */
    135      1.17       tls     void		*end;	/* pointer to end of free pages */
    136      1.17       tls     size_t		size;	/* number of bytes free */
    137       1.1       cgd };
    138       1.1       cgd 
    139      1.17       tls /*
    140      1.17       tls  * How many bits per u_int in the bitmap.
    141      1.17       tls  * Change only if not 8 bits/byte
    142      1.17       tls  */
    143      1.17       tls #define	MALLOC_BITS	(8*sizeof(u_int))
    144      1.17       tls 
    145      1.17       tls /*
    146      1.17       tls  * Magic values to put in the page_directory
    147      1.17       tls  */
    148      1.17       tls #define MALLOC_NOT_MINE	((struct pginfo*) 0)
    149      1.17       tls #define MALLOC_FREE 	((struct pginfo*) 1)
    150      1.17       tls #define MALLOC_FIRST	((struct pginfo*) 2)
    151      1.17       tls #define MALLOC_FOLLOW	((struct pginfo*) 3)
    152      1.17       tls #define MALLOC_MAGIC	((struct pginfo*) 4)
    153      1.17       tls 
    154      1.20   thorpej /*
    155      1.20   thorpej  * Page size related parameters, computed at run-time.
    156      1.20   thorpej  */
    157      1.20   thorpej static size_t malloc_pagesize;
    158      1.20   thorpej static size_t malloc_pageshift;
    159      1.20   thorpej static size_t malloc_pagemask;
    160      1.17       tls 
    161      1.17       tls #ifndef malloc_minsize
    162      1.17       tls #define malloc_minsize			16U
    163      1.17       tls #endif
    164      1.17       tls 
    165      1.17       tls #ifndef malloc_maxsize
    166      1.17       tls #define malloc_maxsize			((malloc_pagesize)>>1)
    167      1.17       tls #endif
    168      1.17       tls 
    169      1.17       tls #define pageround(foo) (((foo) + (malloc_pagemask))&(~(malloc_pagemask)))
    170  1.36.2.2   nathanw #define ptr2idx(foo) \
    171  1.36.2.2   nathanw     (((size_t)(uintptr_t)(foo) >> malloc_pageshift)-malloc_origo)
    172       1.1       cgd 
    173      1.17       tls #ifndef THREAD_LOCK
    174      1.17       tls #define THREAD_LOCK()
    175      1.17       tls #endif
    176       1.1       cgd 
    177      1.17       tls #ifndef THREAD_UNLOCK
    178      1.17       tls #define THREAD_UNLOCK()
    179      1.16    kleink #endif
    180      1.16    kleink 
    181      1.17       tls #ifndef MMAP_FD
    182      1.17       tls #define MMAP_FD (-1)
    183       1.1       cgd #endif
    184       1.1       cgd 
    185      1.17       tls #ifndef INIT_MMAP
    186      1.17       tls #define INIT_MMAP()
    187      1.18   thorpej #endif
    188      1.18   thorpej 
    189      1.18   thorpej #ifndef MADV_FREE
    190      1.18   thorpej #define MADV_FREE MADV_DONTNEED
    191       1.9  christos #endif
    192       1.9  christos 
    193      1.17       tls /* Set when initialization has been done */
    194      1.17       tls static unsigned malloc_started;
    195      1.17       tls 
    196      1.17       tls /* Recusion flag for public interface. */
    197      1.17       tls static int malloc_active;
    198      1.17       tls 
    199      1.17       tls /* Number of free pages we cache */
    200      1.17       tls static unsigned malloc_cache = 16;
    201      1.17       tls 
    202      1.17       tls /* The offset from pagenumber to index into the page directory */
    203      1.30     enami static size_t malloc_origo;
    204      1.17       tls 
    205      1.17       tls /* The last index in the page directory we care about */
    206      1.30     enami static size_t last_idx;
    207      1.17       tls 
    208      1.17       tls /* Pointer to page directory. Allocated "as if with" malloc */
    209      1.17       tls static struct	pginfo **page_dir;
    210      1.17       tls 
    211      1.17       tls /* How many slots in the page directory */
    212      1.17       tls static unsigned	malloc_ninfo;
    213      1.17       tls 
    214      1.17       tls /* Free pages line up here */
    215      1.17       tls static struct pgfree free_list;
    216      1.17       tls 
    217      1.17       tls /* Abort(), user doesn't handle problems.  */
    218      1.17       tls static int malloc_abort;
    219      1.17       tls 
    220      1.17       tls /* Are we trying to die ?  */
    221      1.17       tls static int suicide;
    222      1.17       tls 
    223      1.17       tls /* always realloc ?  */
    224      1.17       tls static int malloc_realloc;
    225       1.9  christos 
    226      1.17       tls /* pass the kernel a hint on free pages ?  */
    227      1.32    simonb static int malloc_hint = 0;
    228      1.17       tls 
    229      1.17       tls /* xmalloc behaviour ?  */
    230      1.17       tls static int malloc_xmalloc;
    231      1.17       tls 
    232      1.17       tls /* sysv behaviour for malloc(0) ?  */
    233      1.17       tls static int malloc_sysv;
    234      1.17       tls 
    235      1.17       tls /* zero fill ?  */
    236      1.17       tls static int malloc_zero;
    237      1.17       tls 
    238      1.17       tls /* junk fill ?  */
    239      1.17       tls static int malloc_junk;
    240      1.17       tls 
    241      1.17       tls #ifdef HAS_UTRACE
    242      1.17       tls 
    243      1.17       tls /* utrace ?  */
    244      1.17       tls static int malloc_utrace;
    245      1.17       tls 
    246      1.17       tls struct ut { void *p; size_t s; void *r; };
    247      1.17       tls 
    248      1.17       tls #define UTRACE(a, b, c) \
    249      1.35  jdolecek 	if (malloc_utrace) {			\
    250      1.35  jdolecek 		struct ut u;			\
    251      1.35  jdolecek 		u.p=a; u.s = b; u.r=c;		\
    252      1.35  jdolecek 		utrace(UTRACE_LABEL (void *) &u, sizeof u);	\
    253      1.35  jdolecek 	}
    254      1.17       tls #else /* !HAS_UTRACE */
    255      1.17       tls #define UTRACE(a,b,c)
    256      1.17       tls #endif /* HAS_UTRACE */
    257      1.17       tls 
    258      1.17       tls /* my last break. */
    259      1.17       tls static void *malloc_brk;
    260      1.17       tls 
    261      1.17       tls /* one location cache for free-list holders */
    262      1.17       tls static struct pgfree *px;
    263      1.17       tls 
    264      1.17       tls /* compile-time options */
    265      1.17       tls char *malloc_options;
    266      1.17       tls 
    267      1.17       tls /* Name of the current public function */
    268      1.22   thorpej static char *malloc_func;
    269      1.17       tls 
    270      1.17       tls /* Macro for mmap */
    271      1.17       tls #define MMAP(size) \
    272      1.17       tls 	mmap(0, (size), PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE, \
    273      1.30     enami 	    MMAP_FD, (off_t)0);
    274       1.9  christos 
    275      1.16    kleink /*
    276      1.17       tls  * Necessary function declarations
    277      1.16    kleink  */
    278      1.30     enami static int extend_pgdir(size_t idx);
    279      1.17       tls static void *imalloc(size_t size);
    280      1.17       tls static void ifree(void *ptr);
    281      1.17       tls static void *irealloc(void *ptr, size_t size);
    282      1.17       tls 
    283      1.17       tls static void
    284      1.22   thorpej wrterror(char *p)
    285      1.17       tls {
    286      1.36       cgd     const char *progname = getprogname();
    287      1.22   thorpej     char *q = " error: ";
    288      1.36       cgd     write(STDERR_FILENO, progname, strlen(progname));
    289      1.17       tls     write(STDERR_FILENO, malloc_func, strlen(malloc_func));
    290      1.17       tls     write(STDERR_FILENO, q, strlen(q));
    291      1.17       tls     write(STDERR_FILENO, p, strlen(p));
    292      1.17       tls     suicide = 1;
    293      1.17       tls     abort();
    294      1.17       tls }
    295      1.17       tls 
    296      1.16    kleink static void
    297      1.22   thorpej wrtwarning(char *p)
    298       1.1       cgd {
    299      1.36       cgd     const char *progname = getprogname();
    300      1.22   thorpej     char *q = " warning: ";
    301      1.17       tls     if (malloc_abort)
    302      1.17       tls 	wrterror(p);
    303      1.36       cgd     write(STDERR_FILENO, progname, strlen(progname));
    304      1.17       tls     write(STDERR_FILENO, malloc_func, strlen(malloc_func));
    305      1.17       tls     write(STDERR_FILENO, q, strlen(q));
    306      1.17       tls     write(STDERR_FILENO, p, strlen(p));
    307      1.17       tls }
    308      1.17       tls 
    309      1.16    kleink 
    310      1.17       tls /*
    311      1.17       tls  * Allocate a number of pages from the OS
    312      1.17       tls  */
    313      1.17       tls static void *
    314      1.30     enami map_pages(size_t pages)
    315      1.17       tls {
    316  1.36.2.2   nathanw     caddr_t result, rresult, tail;
    317  1.36.2.2   nathanw     intptr_t bytes = pages << malloc_pageshift;
    318      1.16    kleink 
    319  1.36.2.2   nathanw     if (bytes < 0 || (size_t)bytes < pages) {
    320  1.36.2.2   nathanw 	errno = ENOMEM;
    321  1.36.2.2   nathanw 	return NULL;
    322  1.36.2.2   nathanw     }
    323      1.17       tls 
    324  1.36.2.2   nathanw     if ((result = sbrk(bytes)) == (void *)-1)
    325  1.36.2.2   nathanw 	return NULL;
    326  1.36.2.2   nathanw 
    327  1.36.2.2   nathanw     /*
    328  1.36.2.2   nathanw      * Round to a page, in case sbrk(2) did not do this for us
    329  1.36.2.2   nathanw      */
    330  1.36.2.2   nathanw     rresult = (caddr_t)pageround((size_t)(uintptr_t)result);
    331  1.36.2.2   nathanw     if (result < rresult) {
    332  1.36.2.2   nathanw 	/* make sure we have enough space to fit bytes */
    333  1.36.2.2   nathanw 	if (sbrk((intptr_t)(rresult - result)) == (void *) -1) {
    334  1.36.2.2   nathanw 	    /* we failed, put everything back */
    335  1.36.2.2   nathanw 	    if (brk(result)) {
    336  1.36.2.2   nathanw 		wrterror("brk(2) failed [internal error]\n");
    337  1.36.2.2   nathanw 	    }
    338  1.36.2.2   nathanw 	}
    339      1.17       tls     }
    340  1.36.2.2   nathanw     tail = rresult + (size_t)bytes;
    341  1.36.2.2   nathanw 
    342      1.23   thorpej     last_idx = ptr2idx(tail) - 1;
    343      1.17       tls     malloc_brk = tail;
    344      1.17       tls 
    345  1.36.2.2   nathanw     if ((last_idx+1) >= malloc_ninfo && !extend_pgdir(last_idx)) {
    346  1.36.2.2   nathanw 	malloc_brk = result;
    347  1.36.2.2   nathanw 	last_idx = ptr2idx(malloc_brk) - 1;
    348  1.36.2.2   nathanw 	/* Put back break point since we failed. */
    349  1.36.2.2   nathanw 	if (brk(malloc_brk))
    350  1.36.2.2   nathanw 	    wrterror("brk(2) failed [internal error]\n");
    351  1.36.2.2   nathanw 	return 0;
    352  1.36.2.2   nathanw     }
    353      1.16    kleink 
    354  1.36.2.2   nathanw     return rresult;
    355       1.1       cgd }
    356       1.1       cgd 
    357      1.17       tls /*
    358      1.17       tls  * Extend page directory
    359      1.17       tls  */
    360      1.17       tls static int
    361      1.30     enami extend_pgdir(size_t idx)
    362       1.1       cgd {
    363      1.17       tls     struct  pginfo **new, **old;
    364      1.30     enami     size_t newlen, oldlen;
    365       1.1       cgd 
    366  1.36.2.2   nathanw     /* check for overflow */
    367  1.36.2.2   nathanw     if ((((~(1UL << ((sizeof(size_t) * NBBY) - 1)) / sizeof(*page_dir)) + 1)
    368  1.36.2.2   nathanw 	+ (malloc_pagesize / sizeof *page_dir)) < idx) {
    369  1.36.2.2   nathanw 	errno = ENOMEM;
    370  1.36.2.2   nathanw 	return 0;
    371  1.36.2.2   nathanw     }
    372  1.36.2.2   nathanw 
    373      1.17       tls     /* Make it this many pages */
    374      1.30     enami     newlen = pageround(idx * sizeof *page_dir) + malloc_pagesize;
    375      1.17       tls 
    376      1.17       tls     /* remember the old mapping size */
    377      1.17       tls     oldlen = malloc_ninfo * sizeof *page_dir;
    378      1.17       tls 
    379      1.17       tls     /*
    380      1.17       tls      * NOTE: we allocate new pages and copy the directory rather than tempt
    381      1.17       tls      * fate by trying to "grow" the region.. There is nothing to prevent
    382      1.17       tls      * us from accidently re-mapping space that's been allocated by our caller
    383      1.17       tls      * via dlopen() or other mmap().
    384      1.17       tls      *
    385      1.17       tls      * The copy problem is not too bad, as there is 4K of page index per
    386      1.17       tls      * 4MB of malloc arena.
    387      1.17       tls      *
    388      1.17       tls      * We can totally avoid the copy if we open a file descriptor to associate
    389      1.17       tls      * the anon mappings with.  Then, when we remap the pages at the new
    390      1.17       tls      * address, the old pages will be "magically" remapped..  But this means
    391      1.17       tls      * keeping open a "secret" file descriptor.....
    392      1.17       tls      */
    393      1.17       tls 
    394      1.17       tls     /* Get new pages */
    395      1.30     enami     new = (struct pginfo**) MMAP(newlen);
    396      1.17       tls     if (new == (struct pginfo **)-1)
    397      1.17       tls 	return 0;
    398      1.17       tls 
    399      1.17       tls     /* Copy the old stuff */
    400      1.30     enami     memcpy(new, page_dir, oldlen);
    401      1.17       tls 
    402      1.17       tls     /* register the new size */
    403      1.30     enami     malloc_ninfo = newlen / sizeof *page_dir;
    404      1.17       tls 
    405      1.17       tls     /* swap the pointers */
    406      1.17       tls     old = page_dir;
    407      1.17       tls     page_dir = new;
    408      1.17       tls 
    409      1.17       tls     /* Now free the old stuff */
    410      1.17       tls     munmap(old, oldlen);
    411      1.17       tls     return 1;
    412      1.17       tls }
    413      1.16    kleink 
    414      1.17       tls /*
    415      1.17       tls  * Initialize the world
    416      1.17       tls  */
    417      1.17       tls static void
    418      1.17       tls malloc_init (void)
    419      1.17       tls {
    420      1.17       tls     char *p, b[64];
    421      1.17       tls     int i, j;
    422      1.17       tls     int errnosave;
    423      1.20   thorpej 
    424      1.20   thorpej     /*
    425      1.20   thorpej      * Compute page-size related variables.
    426      1.20   thorpej      */
    427      1.30     enami     malloc_pagesize = (size_t)sysconf(_SC_PAGESIZE);
    428      1.20   thorpej     malloc_pagemask = malloc_pagesize - 1;
    429      1.20   thorpej     for (malloc_pageshift = 0;
    430      1.20   thorpej 	 (1UL << malloc_pageshift) != malloc_pagesize;
    431      1.20   thorpej 	 malloc_pageshift++)
    432      1.20   thorpej 	/* nothing */ ;
    433      1.17       tls 
    434      1.17       tls     INIT_MMAP();
    435      1.17       tls 
    436      1.19   thorpej #ifdef MALLOC_EXTRA_SANITY
    437      1.17       tls     malloc_junk = 1;
    438      1.19   thorpej #endif /* MALLOC_EXTRA_SANITY */
    439      1.17       tls 
    440      1.17       tls     for (i = 0; i < 3; i++) {
    441      1.17       tls 	if (i == 0) {
    442      1.17       tls 	    errnosave = errno;
    443      1.17       tls 	    j = readlink("/etc/malloc.conf", b, sizeof b - 1);
    444      1.17       tls 	    errno = errnosave;
    445      1.17       tls 	    if (j <= 0)
    446      1.17       tls 		continue;
    447      1.17       tls 	    b[j] = '\0';
    448      1.17       tls 	    p = b;
    449      1.17       tls 	} else if (i == 1) {
    450      1.17       tls 	    p = getenv("MALLOC_OPTIONS");
    451      1.17       tls 	} else {
    452      1.17       tls 	    p = malloc_options;
    453       1.1       cgd 	}
    454      1.17       tls 	for (; p && *p; p++) {
    455      1.17       tls 	    switch (*p) {
    456      1.17       tls 		case '>': malloc_cache   <<= 1; break;
    457      1.17       tls 		case '<': malloc_cache   >>= 1; break;
    458      1.17       tls 		case 'a': malloc_abort   = 0; break;
    459      1.17       tls 		case 'A': malloc_abort   = 1; break;
    460      1.17       tls 		case 'h': malloc_hint    = 0; break;
    461      1.17       tls 		case 'H': malloc_hint    = 1; break;
    462      1.17       tls 		case 'r': malloc_realloc = 0; break;
    463      1.17       tls 		case 'R': malloc_realloc = 1; break;
    464      1.17       tls 		case 'j': malloc_junk    = 0; break;
    465      1.17       tls 		case 'J': malloc_junk    = 1; break;
    466      1.17       tls #ifdef HAS_UTRACE
    467      1.17       tls 		case 'u': malloc_utrace  = 0; break;
    468      1.17       tls 		case 'U': malloc_utrace  = 1; break;
    469      1.17       tls #endif
    470      1.17       tls 		case 'v': malloc_sysv    = 0; break;
    471      1.17       tls 		case 'V': malloc_sysv    = 1; break;
    472      1.17       tls 		case 'x': malloc_xmalloc = 0; break;
    473      1.17       tls 		case 'X': malloc_xmalloc = 1; break;
    474      1.17       tls 		case 'z': malloc_zero    = 0; break;
    475      1.17       tls 		case 'Z': malloc_zero    = 1; break;
    476      1.17       tls 		default:
    477      1.17       tls 		    j = malloc_abort;
    478      1.17       tls 		    malloc_abort = 0;
    479      1.17       tls 		    wrtwarning("unknown char in MALLOC_OPTIONS\n");
    480      1.17       tls 		    malloc_abort = j;
    481      1.17       tls 		    break;
    482      1.17       tls 	    }
    483       1.1       cgd 	}
    484      1.17       tls     }
    485      1.17       tls 
    486      1.17       tls     UTRACE(0, 0, 0);
    487      1.17       tls 
    488      1.17       tls     /*
    489      1.17       tls      * We want junk in the entire allocation, and zero only in the part
    490      1.17       tls      * the user asked for.
    491      1.17       tls      */
    492      1.17       tls     if (malloc_zero)
    493      1.17       tls 	malloc_junk=1;
    494      1.17       tls 
    495      1.17       tls     /*
    496      1.17       tls      * If we run with junk (or implicitly from above: zero), we want to
    497      1.17       tls      * force realloc() to get new storage, so we can DTRT with it.
    498      1.17       tls      */
    499      1.17       tls     if (malloc_junk)
    500      1.17       tls 	malloc_realloc=1;
    501      1.17       tls 
    502      1.17       tls     /* Allocate one page for the page directory */
    503      1.17       tls     page_dir = (struct pginfo **) MMAP(malloc_pagesize);
    504      1.17       tls 
    505      1.17       tls     if (page_dir == (struct pginfo **) -1)
    506      1.17       tls 	wrterror("mmap(2) failed, check limits.\n");
    507      1.17       tls 
    508      1.17       tls     /*
    509      1.17       tls      * We need a maximum of malloc_pageshift buckets, steal these from the
    510      1.17       tls      * front of the page_directory;
    511      1.17       tls      */
    512  1.36.2.2   nathanw     malloc_origo = pageround((size_t)(uintptr_t)sbrk((intptr_t)0))
    513      1.34  christos 	>> malloc_pageshift;
    514      1.17       tls     malloc_origo -= malloc_pageshift;
    515      1.17       tls 
    516      1.17       tls     malloc_ninfo = malloc_pagesize / sizeof *page_dir;
    517      1.17       tls 
    518      1.17       tls     /* Recalculate the cache size in bytes, and make sure it's nonzero */
    519      1.17       tls 
    520      1.17       tls     if (!malloc_cache)
    521      1.17       tls 	malloc_cache++;
    522      1.17       tls 
    523      1.17       tls     malloc_cache <<= malloc_pageshift;
    524      1.17       tls 
    525      1.17       tls     /*
    526      1.17       tls      * This is a nice hack from Kaleb Keithly (kaleb (at) x.org).
    527      1.17       tls      * We can sbrk(2) further back when we keep this on a low address.
    528      1.17       tls      */
    529      1.17       tls     px = (struct pgfree *) imalloc (sizeof *px);
    530      1.17       tls 
    531      1.17       tls     /* Been here, done that */
    532      1.17       tls     malloc_started++;
    533      1.17       tls }
    534      1.17       tls 
    535      1.17       tls /*
    536      1.17       tls  * Allocate a number of complete pages
    537      1.17       tls  */
    538      1.17       tls static void *
    539      1.17       tls malloc_pages(size_t size)
    540      1.17       tls {
    541      1.17       tls     void *p, *delay_free = 0;
    542  1.36.2.2   nathanw     size_t i;
    543      1.17       tls     struct pgfree *pf;
    544      1.30     enami     size_t idx;
    545      1.17       tls 
    546  1.36.2.2   nathanw     idx = pageround(size);
    547  1.36.2.2   nathanw     if (idx < size) {
    548  1.36.2.2   nathanw 	errno = ENOMEM;
    549  1.36.2.2   nathanw 	return NULL;
    550  1.36.2.2   nathanw     } else
    551  1.36.2.2   nathanw 	size = idx;
    552      1.17       tls 
    553      1.17       tls     p = 0;
    554      1.17       tls 
    555      1.17       tls     /* Look for free pages before asking for more */
    556      1.17       tls     for(pf = free_list.next; pf; pf = pf->next) {
    557      1.17       tls 
    558      1.19   thorpej #ifdef MALLOC_EXTRA_SANITY
    559      1.17       tls 	if (pf->size & malloc_pagemask)
    560      1.17       tls 	    wrterror("(ES): junk length entry on free_list\n");
    561      1.17       tls 	if (!pf->size)
    562      1.17       tls 	    wrterror("(ES): zero length entry on free_list\n");
    563      1.17       tls 	if (pf->page == pf->end)
    564      1.17       tls 	    wrterror("(ES): zero entry on free_list\n");
    565      1.17       tls 	if (pf->page > pf->end)
    566      1.17       tls 	    wrterror("(ES): sick entry on free_list\n");
    567      1.17       tls 	if ((void*)pf->page >= (void*)sbrk(0))
    568      1.17       tls 	    wrterror("(ES): entry on free_list past brk\n");
    569      1.23   thorpej 	if (page_dir[ptr2idx(pf->page)] != MALLOC_FREE)
    570      1.17       tls 	    wrterror("(ES): non-free first page on free-list\n");
    571      1.23   thorpej 	if (page_dir[ptr2idx(pf->end)-1] != MALLOC_FREE)
    572      1.17       tls 	    wrterror("(ES): non-free last page on free-list\n");
    573      1.19   thorpej #endif /* MALLOC_EXTRA_SANITY */
    574      1.17       tls 
    575      1.17       tls 	if (pf->size < size)
    576      1.17       tls 	    continue;
    577      1.17       tls 
    578      1.17       tls 	if (pf->size == size) {
    579      1.17       tls 	    p = pf->page;
    580      1.17       tls 	    if (pf->next)
    581      1.17       tls 		    pf->next->prev = pf->prev;
    582      1.17       tls 	    pf->prev->next = pf->next;
    583      1.17       tls 	    delay_free = pf;
    584      1.17       tls 	    break;
    585      1.17       tls 	}
    586      1.17       tls 
    587      1.17       tls 	p = pf->page;
    588      1.17       tls 	pf->page = (char *)pf->page + size;
    589      1.17       tls 	pf->size -= size;
    590      1.17       tls 	break;
    591      1.17       tls     }
    592      1.17       tls 
    593      1.19   thorpej #ifdef MALLOC_EXTRA_SANITY
    594      1.23   thorpej     if (p && page_dir[ptr2idx(p)] != MALLOC_FREE)
    595      1.17       tls 	wrterror("(ES): allocated non-free page on free-list\n");
    596      1.19   thorpej #endif /* MALLOC_EXTRA_SANITY */
    597      1.17       tls 
    598      1.17       tls     size >>= malloc_pageshift;
    599      1.17       tls 
    600      1.17       tls     /* Map new pages */
    601      1.17       tls     if (!p)
    602      1.17       tls 	p = map_pages(size);
    603      1.17       tls 
    604      1.17       tls     if (p) {
    605      1.17       tls 
    606      1.23   thorpej 	idx = ptr2idx(p);
    607      1.23   thorpej 	page_dir[idx] = MALLOC_FIRST;
    608      1.17       tls 	for (i=1;i<size;i++)
    609      1.23   thorpej 	    page_dir[idx+i] = MALLOC_FOLLOW;
    610      1.17       tls 
    611      1.17       tls 	if (malloc_junk)
    612      1.17       tls 	    memset(p, SOME_JUNK, size << malloc_pageshift);
    613      1.17       tls     }
    614      1.17       tls 
    615      1.17       tls     if (delay_free) {
    616      1.17       tls 	if (!px)
    617      1.17       tls 	    px = delay_free;
    618      1.17       tls 	else
    619      1.17       tls 	    ifree(delay_free);
    620      1.17       tls     }
    621      1.17       tls 
    622      1.17       tls     return p;
    623      1.17       tls }
    624      1.17       tls 
    625      1.17       tls /*
    626      1.17       tls  * Allocate a page of fragments
    627      1.17       tls  */
    628      1.17       tls 
    629      1.17       tls static __inline__ int
    630      1.17       tls malloc_make_chunks(int bits)
    631      1.17       tls {
    632      1.17       tls     struct  pginfo *bp;
    633      1.17       tls     void *pp;
    634      1.31     enami     int i, k, l;
    635      1.17       tls 
    636      1.17       tls     /* Allocate a new bucket */
    637      1.17       tls     pp = malloc_pages(malloc_pagesize);
    638      1.17       tls     if (!pp)
    639      1.17       tls 	return 0;
    640      1.17       tls 
    641      1.17       tls     /* Find length of admin structure */
    642      1.33  christos     l = (int)offsetof(struct pginfo, bits[0]);
    643      1.17       tls     l += sizeof bp->bits[0] *
    644      1.17       tls 	(((malloc_pagesize >> bits)+MALLOC_BITS-1) / MALLOC_BITS);
    645      1.17       tls 
    646      1.17       tls     /* Don't waste more than two chunks on this */
    647      1.17       tls     if ((1<<(bits)) <= l+l) {
    648      1.17       tls 	bp = (struct  pginfo *)pp;
    649      1.17       tls     } else {
    650      1.31     enami 	bp = (struct  pginfo *)imalloc((size_t)l);
    651      1.17       tls 	if (!bp) {
    652      1.17       tls 	    ifree(pp);
    653      1.17       tls 	    return 0;
    654       1.1       cgd 	}
    655      1.17       tls     }
    656      1.17       tls 
    657      1.17       tls     bp->size = (1<<bits);
    658      1.17       tls     bp->shift = bits;
    659      1.17       tls     bp->total = bp->free = malloc_pagesize >> bits;
    660      1.17       tls     bp->page = pp;
    661      1.17       tls 
    662      1.17       tls     /* set all valid bits in the bitmap */
    663      1.17       tls     k = bp->total;
    664      1.17       tls     i = 0;
    665      1.17       tls 
    666      1.17       tls     /* Do a bunch at a time */
    667      1.17       tls     for(;k-i >= MALLOC_BITS; i += MALLOC_BITS)
    668      1.30     enami 	bp->bits[i / MALLOC_BITS] = ~0U;
    669      1.17       tls 
    670      1.17       tls     for(; i < k; i++)
    671      1.17       tls         bp->bits[i/MALLOC_BITS] |= 1<<(i%MALLOC_BITS);
    672      1.17       tls 
    673      1.17       tls     if (bp == bp->page) {
    674      1.17       tls 	/* Mark the ones we stole for ourselves */
    675      1.17       tls 	for(i=0;l > 0;i++) {
    676      1.17       tls 	    bp->bits[i/MALLOC_BITS] &= ~(1<<(i%MALLOC_BITS));
    677      1.17       tls 	    bp->free--;
    678      1.17       tls 	    bp->total--;
    679      1.17       tls 	    l -= (1 << bits);
    680       1.1       cgd 	}
    681      1.17       tls     }
    682      1.17       tls 
    683      1.17       tls     /* MALLOC_LOCK */
    684      1.17       tls 
    685      1.23   thorpej     page_dir[ptr2idx(pp)] = bp;
    686      1.17       tls 
    687      1.17       tls     bp->next = page_dir[bits];
    688      1.17       tls     page_dir[bits] = bp;
    689      1.17       tls 
    690      1.17       tls     /* MALLOC_UNLOCK */
    691      1.17       tls 
    692      1.17       tls     return 1;
    693       1.1       cgd }
    694       1.1       cgd 
    695       1.1       cgd /*
    696      1.17       tls  * Allocate a fragment
    697       1.1       cgd  */
    698      1.17       tls static void *
    699      1.17       tls malloc_bytes(size_t size)
    700       1.1       cgd {
    701      1.30     enami     size_t i;
    702      1.30     enami     int j;
    703      1.17       tls     u_int u;
    704      1.17       tls     struct  pginfo *bp;
    705      1.17       tls     int k;
    706      1.17       tls     u_int *lp;
    707      1.17       tls 
    708      1.17       tls     /* Don't bother with anything less than this */
    709      1.17       tls     if (size < malloc_minsize)
    710      1.17       tls 	size = malloc_minsize;
    711      1.17       tls 
    712      1.17       tls     /* Find the right bucket */
    713      1.17       tls     j = 1;
    714      1.17       tls     i = size-1;
    715      1.17       tls     while (i >>= 1)
    716      1.17       tls 	j++;
    717      1.17       tls 
    718      1.17       tls     /* If it's empty, make a page more of that size chunks */
    719      1.17       tls     if (!page_dir[j] && !malloc_make_chunks(j))
    720      1.17       tls 	return 0;
    721      1.17       tls 
    722      1.17       tls     bp = page_dir[j];
    723      1.17       tls 
    724      1.17       tls     /* Find first word of bitmap which isn't empty */
    725      1.17       tls     for (lp = bp->bits; !*lp; lp++)
    726      1.17       tls 	;
    727      1.17       tls 
    728      1.17       tls     /* Find that bit, and tweak it */
    729      1.17       tls     u = 1;
    730      1.17       tls     k = 0;
    731      1.17       tls     while (!(*lp & u)) {
    732      1.17       tls 	u += u;
    733      1.17       tls 	k++;
    734      1.17       tls     }
    735      1.17       tls     *lp ^= u;
    736      1.17       tls 
    737      1.17       tls     /* If there are no more free, remove from free-list */
    738      1.17       tls     if (!--bp->free) {
    739      1.17       tls 	page_dir[j] = bp->next;
    740      1.17       tls 	bp->next = 0;
    741      1.17       tls     }
    742      1.17       tls 
    743      1.17       tls     /* Adjust to the real offset of that chunk */
    744      1.17       tls     k += (lp-bp->bits)*MALLOC_BITS;
    745      1.17       tls     k <<= bp->shift;
    746      1.17       tls 
    747      1.17       tls     if (malloc_junk)
    748      1.30     enami 	memset((u_char*)bp->page + k, SOME_JUNK, (size_t)bp->size);
    749       1.1       cgd 
    750      1.17       tls     return (u_char *)bp->page + k;
    751       1.1       cgd }
    752       1.1       cgd 
    753      1.17       tls /*
    754      1.17       tls  * Allocate a piece of memory
    755      1.17       tls  */
    756      1.17       tls static void *
    757      1.17       tls imalloc(size_t size)
    758      1.17       tls {
    759      1.17       tls     void *result;
    760      1.17       tls 
    761      1.17       tls     if (suicide)
    762      1.17       tls 	abort();
    763      1.17       tls 
    764      1.17       tls     if ((size + malloc_pagesize) < size)	/* Check for overflow */
    765      1.17       tls 	result = 0;
    766      1.17       tls     else if (size <= malloc_maxsize)
    767      1.17       tls 	result =  malloc_bytes(size);
    768      1.17       tls     else
    769      1.17       tls 	result =  malloc_pages(size);
    770      1.17       tls 
    771      1.17       tls     if (malloc_abort && !result)
    772      1.17       tls 	wrterror("allocation failed.\n");
    773      1.17       tls 
    774      1.17       tls     if (malloc_zero && result)
    775      1.17       tls 	memset(result, 0, size);
    776      1.17       tls 
    777      1.17       tls     return result;
    778       1.1       cgd }
    779       1.1       cgd 
    780       1.1       cgd /*
    781      1.17       tls  * Change the size of an allocation.
    782       1.1       cgd  */
    783      1.17       tls static void *
    784      1.17       tls irealloc(void *ptr, size_t size)
    785      1.17       tls {
    786      1.17       tls     void *p;
    787      1.30     enami     size_t osize, idx;
    788      1.17       tls     struct pginfo **mp;
    789      1.30     enami     size_t i;
    790      1.17       tls 
    791      1.17       tls     if (suicide)
    792      1.17       tls 	abort();
    793      1.17       tls 
    794      1.23   thorpej     idx = ptr2idx(ptr);
    795       1.1       cgd 
    796      1.23   thorpej     if (idx < malloc_pageshift) {
    797      1.17       tls 	wrtwarning("junk pointer, too low to make sense.\n");
    798      1.17       tls 	return 0;
    799      1.17       tls     }
    800      1.17       tls 
    801      1.23   thorpej     if (idx > last_idx) {
    802      1.17       tls 	wrtwarning("junk pointer, too high to make sense.\n");
    803      1.17       tls 	return 0;
    804      1.17       tls     }
    805      1.17       tls 
    806      1.23   thorpej     mp = &page_dir[idx];
    807      1.17       tls 
    808      1.17       tls     if (*mp == MALLOC_FIRST) {			/* Page allocation */
    809      1.17       tls 
    810      1.17       tls 	/* Check the pointer */
    811  1.36.2.2   nathanw 	if ((size_t)(uintptr_t)ptr & malloc_pagemask) {
    812      1.17       tls 	    wrtwarning("modified (page-) pointer.\n");
    813      1.17       tls 	    return 0;
    814      1.17       tls 	}
    815      1.17       tls 
    816      1.17       tls 	/* Find the size in bytes */
    817      1.17       tls 	for (osize = malloc_pagesize; *++mp == MALLOC_FOLLOW;)
    818      1.17       tls 	    osize += malloc_pagesize;
    819      1.17       tls 
    820      1.17       tls         if (!malloc_realloc && 			/* unless we have to, */
    821      1.17       tls 	  size <= osize && 			/* .. or are too small, */
    822      1.17       tls 	  size > (osize - malloc_pagesize)) {	/* .. or can free a page, */
    823      1.17       tls 	    return ptr;				/* don't do anything. */
    824       1.6       jtc 	}
    825      1.17       tls 
    826      1.17       tls     } else if (*mp >= MALLOC_MAGIC) {		/* Chunk allocation */
    827      1.17       tls 
    828      1.17       tls 	/* Check the pointer for sane values */
    829  1.36.2.2   nathanw 	if (((size_t)(uintptr_t)ptr & ((*mp)->size-1))) {
    830      1.17       tls 	    wrtwarning("modified (chunk-) pointer.\n");
    831      1.17       tls 	    return 0;
    832       1.1       cgd 	}
    833      1.17       tls 
    834      1.17       tls 	/* Find the chunk index in the page */
    835  1.36.2.2   nathanw 	i = ((size_t)(uintptr_t)ptr & malloc_pagemask) >> (*mp)->shift;
    836      1.17       tls 
    837      1.17       tls 	/* Verify that it isn't a free chunk already */
    838      1.17       tls         if ((*mp)->bits[i/MALLOC_BITS] & (1<<(i%MALLOC_BITS))) {
    839      1.17       tls 	    wrtwarning("chunk is already free.\n");
    840      1.17       tls 	    return 0;
    841      1.16    kleink 	}
    842      1.17       tls 
    843      1.17       tls 	osize = (*mp)->size;
    844      1.17       tls 
    845      1.17       tls 	if (!malloc_realloc &&		/* Unless we have to, */
    846      1.17       tls 	  size < osize && 		/* ..or are too small, */
    847      1.17       tls 	  (size > osize/2 ||	 	/* ..or could use a smaller size, */
    848      1.17       tls 	  osize == malloc_minsize)) {	/* ..(if there is one) */
    849      1.17       tls 	    return ptr;			/* ..Don't do anything */
    850       1.1       cgd 	}
    851      1.17       tls 
    852      1.17       tls     } else {
    853      1.17       tls 	wrtwarning("pointer to wrong page.\n");
    854      1.17       tls 	return 0;
    855      1.17       tls     }
    856      1.17       tls 
    857      1.17       tls     p = imalloc(size);
    858      1.17       tls 
    859      1.17       tls     if (p) {
    860      1.17       tls 	/* copy the lesser of the two sizes, and free the old one */
    861      1.17       tls 	if (!size || !osize)
    862      1.17       tls 	    ;
    863      1.17       tls 	else if (osize < size)
    864      1.17       tls 	    memcpy(p, ptr, osize);
    865      1.17       tls 	else
    866      1.17       tls 	    memcpy(p, ptr, size);
    867      1.17       tls 	ifree(ptr);
    868      1.17       tls     }
    869      1.17       tls     return p;
    870       1.1       cgd }
    871       1.1       cgd 
    872       1.1       cgd /*
    873      1.17       tls  * Free a sequence of pages
    874       1.1       cgd  */
    875      1.17       tls 
    876      1.17       tls static __inline__ void
    877      1.30     enami free_pages(void *ptr, size_t idx, struct pginfo *info)
    878      1.17       tls {
    879      1.30     enami     size_t i;
    880      1.17       tls     struct pgfree *pf, *pt=0;
    881      1.30     enami     size_t l;
    882      1.17       tls     void *tail;
    883      1.17       tls 
    884      1.17       tls     if (info == MALLOC_FREE) {
    885      1.17       tls 	wrtwarning("page is already free.\n");
    886      1.17       tls 	return;
    887      1.17       tls     }
    888      1.17       tls 
    889      1.17       tls     if (info != MALLOC_FIRST) {
    890      1.17       tls 	wrtwarning("pointer to wrong page.\n");
    891      1.17       tls 	return;
    892      1.17       tls     }
    893      1.17       tls 
    894  1.36.2.2   nathanw     if ((size_t)(uintptr_t)ptr & malloc_pagemask) {
    895      1.17       tls 	wrtwarning("modified (page-) pointer.\n");
    896      1.17       tls 	return;
    897      1.17       tls     }
    898      1.17       tls 
    899      1.17       tls     /* Count how many pages and mark them free at the same time */
    900      1.23   thorpej     page_dir[idx] = MALLOC_FREE;
    901      1.23   thorpej     for (i = 1; page_dir[idx+i] == MALLOC_FOLLOW; i++)
    902      1.23   thorpej 	page_dir[idx + i] = MALLOC_FREE;
    903      1.17       tls 
    904      1.17       tls     l = i << malloc_pageshift;
    905      1.17       tls 
    906      1.17       tls     if (malloc_junk)
    907      1.17       tls 	memset(ptr, SOME_JUNK, l);
    908      1.17       tls 
    909      1.17       tls     if (malloc_hint)
    910      1.17       tls 	madvise(ptr, l, MADV_FREE);
    911      1.17       tls 
    912      1.17       tls     tail = (char *)ptr+l;
    913      1.17       tls 
    914      1.17       tls     /* add to free-list */
    915      1.17       tls     if (!px)
    916      1.17       tls 	px = imalloc(sizeof *pt);	/* This cannot fail... */
    917      1.17       tls     px->page = ptr;
    918      1.17       tls     px->end =  tail;
    919      1.17       tls     px->size = l;
    920      1.17       tls     if (!free_list.next) {
    921      1.17       tls 
    922      1.17       tls 	/* Nothing on free list, put this at head */
    923      1.17       tls 	px->next = free_list.next;
    924      1.17       tls 	px->prev = &free_list;
    925      1.17       tls 	free_list.next = px;
    926      1.17       tls 	pf = px;
    927      1.17       tls 	px = 0;
    928      1.17       tls 
    929      1.17       tls     } else {
    930      1.17       tls 
    931      1.17       tls 	/* Find the right spot, leave pf pointing to the modified entry. */
    932      1.17       tls 	tail = (char *)ptr+l;
    933      1.17       tls 
    934      1.17       tls 	for(pf = free_list.next; pf->end < ptr && pf->next; pf = pf->next)
    935      1.17       tls 	    ; /* Race ahead here */
    936      1.17       tls 
    937      1.17       tls 	if (pf->page > tail) {
    938      1.17       tls 	    /* Insert before entry */
    939      1.17       tls 	    px->next = pf;
    940      1.17       tls 	    px->prev = pf->prev;
    941      1.17       tls 	    pf->prev = px;
    942      1.17       tls 	    px->prev->next = px;
    943      1.17       tls 	    pf = px;
    944      1.17       tls 	    px = 0;
    945      1.17       tls 	} else if (pf->end == ptr ) {
    946      1.17       tls 	    /* Append to the previous entry */
    947      1.17       tls 	    pf->end = (char *)pf->end + l;
    948      1.17       tls 	    pf->size += l;
    949      1.17       tls 	    if (pf->next && pf->end == pf->next->page ) {
    950      1.17       tls 		/* And collapse the next too. */
    951      1.17       tls 		pt = pf->next;
    952      1.17       tls 		pf->end = pt->end;
    953      1.17       tls 		pf->size += pt->size;
    954      1.17       tls 		pf->next = pt->next;
    955      1.17       tls 		if (pf->next)
    956      1.17       tls 		    pf->next->prev = pf;
    957      1.17       tls 	    }
    958      1.17       tls 	} else if (pf->page == tail) {
    959      1.17       tls 	    /* Prepend to entry */
    960      1.17       tls 	    pf->size += l;
    961      1.17       tls 	    pf->page = ptr;
    962      1.17       tls 	} else if (!pf->next) {
    963      1.17       tls 	    /* Append at tail of chain */
    964      1.17       tls 	    px->next = 0;
    965      1.17       tls 	    px->prev = pf;
    966      1.17       tls 	    pf->next = px;
    967      1.17       tls 	    pf = px;
    968      1.17       tls 	    px = 0;
    969      1.17       tls 	} else {
    970      1.17       tls 	    wrterror("freelist is destroyed.\n");
    971       1.1       cgd 	}
    972      1.17       tls     }
    973      1.17       tls 
    974      1.17       tls     /* Return something to OS ? */
    975      1.17       tls     if (!pf->next &&				/* If we're the last one, */
    976      1.17       tls       pf->size > malloc_cache &&		/* ..and the cache is full, */
    977      1.17       tls       pf->end == malloc_brk &&			/* ..and none behind us, */
    978      1.34  christos       malloc_brk == sbrk((intptr_t)0)) {	/* ..and it's OK to do... */
    979      1.17       tls 
    980      1.17       tls 	/*
    981      1.17       tls 	 * Keep the cache intact.  Notice that the '>' above guarantees that
    982      1.17       tls 	 * the pf will always have at least one page afterwards.
    983      1.17       tls 	 */
    984      1.17       tls 	pf->end = (char *)pf->page + malloc_cache;
    985      1.17       tls 	pf->size = malloc_cache;
    986      1.17       tls 
    987      1.17       tls 	brk(pf->end);
    988      1.17       tls 	malloc_brk = pf->end;
    989      1.17       tls 
    990      1.23   thorpej 	idx = ptr2idx(pf->end);
    991      1.23   thorpej 	last_idx = idx - 1;
    992      1.17       tls 
    993      1.23   thorpej 	for(i=idx;i <= last_idx;)
    994      1.17       tls 	    page_dir[i++] = MALLOC_NOT_MINE;
    995      1.17       tls 
    996      1.17       tls 	/* XXX: We could realloc/shrink the pagedir here I guess. */
    997      1.17       tls     }
    998      1.17       tls     if (pt)
    999      1.17       tls 	ifree(pt);
   1000       1.1       cgd }
   1001       1.1       cgd 
   1002       1.1       cgd /*
   1003      1.17       tls  * Free a chunk, and possibly the page it's on, if the page becomes empty.
   1004       1.1       cgd  */
   1005      1.17       tls 
   1006      1.17       tls static __inline__ void
   1007      1.30     enami free_bytes(void *ptr, size_t idx, struct pginfo *info)
   1008      1.17       tls {
   1009      1.30     enami     size_t i;
   1010      1.17       tls     struct pginfo **mp;
   1011      1.17       tls     void *vp;
   1012      1.17       tls 
   1013      1.17       tls     /* Find the chunk number on the page */
   1014  1.36.2.2   nathanw     i = ((size_t)(uintptr_t)ptr & malloc_pagemask) >> info->shift;
   1015      1.17       tls 
   1016  1.36.2.2   nathanw     if (((size_t)(uintptr_t)ptr & (info->size-1))) {
   1017      1.17       tls 	wrtwarning("modified (chunk-) pointer.\n");
   1018      1.17       tls 	return;
   1019      1.17       tls     }
   1020      1.17       tls 
   1021      1.17       tls     if (info->bits[i/MALLOC_BITS] & (1<<(i%MALLOC_BITS))) {
   1022      1.17       tls 	wrtwarning("chunk is already free.\n");
   1023      1.17       tls 	return;
   1024      1.17       tls     }
   1025      1.17       tls 
   1026      1.17       tls     if (malloc_junk)
   1027      1.30     enami 	memset(ptr, SOME_JUNK, (size_t)info->size);
   1028      1.17       tls 
   1029      1.17       tls     info->bits[i/MALLOC_BITS] |= 1<<(i%MALLOC_BITS);
   1030      1.17       tls     info->free++;
   1031      1.17       tls 
   1032      1.17       tls     mp = page_dir + info->shift;
   1033      1.17       tls 
   1034      1.17       tls     if (info->free == 1) {
   1035      1.17       tls 
   1036      1.17       tls 	/* Page became non-full */
   1037      1.17       tls 
   1038      1.17       tls 	mp = page_dir + info->shift;
   1039      1.17       tls 	/* Insert in address order */
   1040      1.17       tls 	while (*mp && (*mp)->next && (*mp)->next->page < info->page)
   1041      1.17       tls 	    mp = &(*mp)->next;
   1042      1.17       tls 	info->next = *mp;
   1043      1.17       tls 	*mp = info;
   1044      1.17       tls 	return;
   1045      1.17       tls     }
   1046      1.17       tls 
   1047      1.17       tls     if (info->free != info->total)
   1048      1.17       tls 	return;
   1049      1.17       tls 
   1050      1.17       tls     /* Find & remove this page in the queue */
   1051      1.17       tls     while (*mp != info) {
   1052      1.17       tls 	mp = &((*mp)->next);
   1053      1.19   thorpej #ifdef MALLOC_EXTRA_SANITY
   1054      1.17       tls 	if (!*mp)
   1055      1.17       tls 		wrterror("(ES): Not on queue\n");
   1056      1.19   thorpej #endif /* MALLOC_EXTRA_SANITY */
   1057      1.17       tls     }
   1058      1.17       tls     *mp = info->next;
   1059      1.17       tls 
   1060      1.17       tls     /* Free the page & the info structure if need be */
   1061      1.30     enami     page_dir[idx] = MALLOC_FIRST;
   1062      1.17       tls     vp = info->page;		/* Order is important ! */
   1063      1.17       tls     if(vp != (void*)info)
   1064      1.17       tls 	ifree(info);
   1065      1.17       tls     ifree(vp);
   1066      1.17       tls }
   1067      1.17       tls 
   1068      1.17       tls static void
   1069      1.17       tls ifree(void *ptr)
   1070      1.17       tls {
   1071      1.17       tls     struct pginfo *info;
   1072      1.30     enami     size_t idx;
   1073      1.17       tls 
   1074      1.17       tls     /* This is legal */
   1075      1.17       tls     if (!ptr)
   1076      1.17       tls 	return;
   1077      1.17       tls 
   1078      1.17       tls     if (!malloc_started) {
   1079      1.17       tls 	wrtwarning("malloc() has never been called.\n");
   1080      1.17       tls 	return;
   1081      1.17       tls     }
   1082      1.17       tls 
   1083      1.17       tls     /* If we're already sinking, don't make matters any worse. */
   1084      1.17       tls     if (suicide)
   1085      1.17       tls 	return;
   1086      1.17       tls 
   1087      1.23   thorpej     idx = ptr2idx(ptr);
   1088      1.17       tls 
   1089      1.23   thorpej     if (idx < malloc_pageshift) {
   1090      1.17       tls 	wrtwarning("junk pointer, too low to make sense.\n");
   1091      1.17       tls 	return;
   1092      1.17       tls     }
   1093      1.17       tls 
   1094      1.23   thorpej     if (idx > last_idx) {
   1095      1.17       tls 	wrtwarning("junk pointer, too high to make sense.\n");
   1096      1.17       tls 	return;
   1097      1.17       tls     }
   1098      1.17       tls 
   1099      1.23   thorpej     info = page_dir[idx];
   1100      1.17       tls 
   1101      1.17       tls     if (info < MALLOC_MAGIC)
   1102      1.23   thorpej         free_pages(ptr, idx, info);
   1103      1.17       tls     else
   1104      1.23   thorpej 	free_bytes(ptr, idx, info);
   1105      1.17       tls     return;
   1106      1.17       tls }
   1107      1.17       tls 
   1108      1.17       tls /*
   1109      1.17       tls  * These are the public exported interface routines.
   1110      1.17       tls  */
   1111      1.17       tls 
   1112      1.17       tls 
   1113      1.17       tls void *
   1114      1.17       tls malloc(size_t size)
   1115      1.17       tls {
   1116      1.17       tls     register void *r;
   1117      1.17       tls 
   1118      1.17       tls     THREAD_LOCK();
   1119      1.17       tls     malloc_func = " in malloc():";
   1120      1.17       tls     if (malloc_active++) {
   1121      1.17       tls 	wrtwarning("recursive call.\n");
   1122      1.17       tls         malloc_active--;
   1123      1.17       tls 	return (0);
   1124      1.17       tls     }
   1125      1.17       tls     if (!malloc_started)
   1126      1.17       tls 	malloc_init();
   1127      1.17       tls     if (malloc_sysv && !size)
   1128      1.17       tls 	r = 0;
   1129      1.17       tls     else
   1130      1.17       tls 	r = imalloc(size);
   1131      1.17       tls     UTRACE(0, size, r);
   1132      1.17       tls     malloc_active--;
   1133      1.17       tls     THREAD_UNLOCK();
   1134      1.26    kleink     if (r == NULL && (size != 0 || !malloc_sysv)) {
   1135      1.24   thorpej 	if (malloc_xmalloc)
   1136      1.24   thorpej 	    wrterror("out of memory.\n");
   1137      1.24   thorpej 	errno = ENOMEM;
   1138      1.24   thorpej     }
   1139      1.17       tls     return (r);
   1140      1.17       tls }
   1141      1.17       tls 
   1142       1.9  christos void
   1143      1.17       tls free(void *ptr)
   1144       1.1       cgd {
   1145      1.17       tls     THREAD_LOCK();
   1146      1.17       tls     malloc_func = " in free():";
   1147      1.17       tls     if (malloc_active++) {
   1148      1.17       tls 	wrtwarning("recursive call.\n");
   1149      1.17       tls 	malloc_active--;
   1150  1.36.2.2   nathanw 	THREAD_UNLOCK();
   1151      1.17       tls 	return;
   1152      1.17       tls     } else {
   1153      1.17       tls 	ifree(ptr);
   1154      1.17       tls 	UTRACE(ptr, 0, 0);
   1155      1.17       tls     }
   1156      1.17       tls     malloc_active--;
   1157      1.17       tls     THREAD_UNLOCK();
   1158      1.17       tls     return;
   1159      1.17       tls }
   1160      1.17       tls 
   1161      1.17       tls void *
   1162      1.17       tls realloc(void *ptr, size_t size)
   1163      1.17       tls {
   1164      1.17       tls     register void *r;
   1165      1.17       tls 
   1166      1.17       tls     THREAD_LOCK();
   1167      1.17       tls     malloc_func = " in realloc():";
   1168      1.17       tls     if (malloc_active++) {
   1169      1.17       tls 	wrtwarning("recursive call.\n");
   1170      1.17       tls         malloc_active--;
   1171      1.17       tls 	return (0);
   1172      1.17       tls     }
   1173      1.17       tls     if (ptr && !malloc_started) {
   1174      1.17       tls 	wrtwarning("malloc() has never been called.\n");
   1175      1.17       tls 	ptr = 0;
   1176      1.17       tls     }
   1177      1.17       tls     if (!malloc_started)
   1178      1.17       tls 	malloc_init();
   1179      1.17       tls     if (malloc_sysv && !size) {
   1180      1.17       tls 	ifree(ptr);
   1181      1.17       tls 	r = 0;
   1182      1.17       tls     } else if (!ptr) {
   1183      1.17       tls 	r = imalloc(size);
   1184      1.17       tls     } else {
   1185      1.17       tls         r = irealloc(ptr, size);
   1186      1.17       tls     }
   1187      1.17       tls     UTRACE(ptr, size, r);
   1188      1.17       tls     malloc_active--;
   1189      1.17       tls     THREAD_UNLOCK();
   1190      1.26    kleink     if (r == NULL && (size != 0 || !malloc_sysv)) {
   1191      1.24   thorpej 	if (malloc_xmalloc)
   1192      1.24   thorpej 	    wrterror("out of memory.\n");
   1193      1.24   thorpej 	errno = ENOMEM;
   1194      1.24   thorpej     }
   1195      1.17       tls     return (r);
   1196       1.1       cgd }
   1197