malloc.c revision 1.43 1 1.43 junyoung /* $NetBSD: malloc.c,v 1.43 2003/10/05 04:49:46 junyoung 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 1.43 junyoung void utrace(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 1.43 junyoung int utrace(const char *, void *, size_t);
74 1.41 thorpej
75 1.41 thorpej #include <reentrant.h>
76 1.41 thorpej extern int __isthreaded;
77 1.41 thorpej static mutex_t thread_lock = MUTEX_INITIALIZER;
78 1.41 thorpej #define THREAD_LOCK() if (__isthreaded) mutex_lock(&thread_lock);
79 1.41 thorpej #define THREAD_UNLOCK() if (__isthreaded) mutex_unlock(&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 1.9 christos #include <stdio.h>
108 1.1 cgd #include <stdlib.h>
109 1.1 cgd #include <string.h>
110 1.1 cgd #include <unistd.h>
111 1.1 cgd
112 1.17 tls /*
113 1.17 tls * This structure describes a page worth of chunks.
114 1.17 tls */
115 1.17 tls
116 1.17 tls struct pginfo {
117 1.17 tls struct pginfo *next; /* next on the free list */
118 1.17 tls void *page; /* Pointer to the page */
119 1.17 tls u_short size; /* size of this page's chunks */
120 1.17 tls u_short shift; /* How far to shift for this size chunks */
121 1.17 tls u_short free; /* How many free chunks */
122 1.17 tls u_short total; /* How many chunk */
123 1.17 tls u_int bits[1]; /* Which chunks are free */
124 1.17 tls };
125 1.1 cgd
126 1.1 cgd /*
127 1.17 tls * This structure describes a number of free pages.
128 1.17 tls */
129 1.17 tls
130 1.17 tls struct pgfree {
131 1.17 tls struct pgfree *next; /* next run of free pages */
132 1.17 tls struct pgfree *prev; /* prev run of free pages */
133 1.17 tls void *page; /* pointer to free pages */
134 1.17 tls void *end; /* pointer to end of free pages */
135 1.17 tls size_t size; /* number of bytes free */
136 1.1 cgd };
137 1.1 cgd
138 1.17 tls /*
139 1.17 tls * How many bits per u_int in the bitmap.
140 1.17 tls * Change only if not 8 bits/byte
141 1.17 tls */
142 1.39 thorpej #define MALLOC_BITS ((int)(8*sizeof(u_int)))
143 1.17 tls
144 1.17 tls /*
145 1.17 tls * Magic values to put in the page_directory
146 1.17 tls */
147 1.17 tls #define MALLOC_NOT_MINE ((struct pginfo*) 0)
148 1.17 tls #define MALLOC_FREE ((struct pginfo*) 1)
149 1.17 tls #define MALLOC_FIRST ((struct pginfo*) 2)
150 1.17 tls #define MALLOC_FOLLOW ((struct pginfo*) 3)
151 1.17 tls #define MALLOC_MAGIC ((struct pginfo*) 4)
152 1.17 tls
153 1.20 thorpej /*
154 1.20 thorpej * Page size related parameters, computed at run-time.
155 1.20 thorpej */
156 1.20 thorpej static size_t malloc_pagesize;
157 1.20 thorpej static size_t malloc_pageshift;
158 1.20 thorpej static size_t malloc_pagemask;
159 1.17 tls
160 1.17 tls #ifndef malloc_minsize
161 1.17 tls #define malloc_minsize 16U
162 1.17 tls #endif
163 1.17 tls
164 1.17 tls #ifndef malloc_maxsize
165 1.17 tls #define malloc_maxsize ((malloc_pagesize)>>1)
166 1.17 tls #endif
167 1.17 tls
168 1.17 tls #define pageround(foo) (((foo) + (malloc_pagemask))&(~(malloc_pagemask)))
169 1.38 christos #define ptr2idx(foo) \
170 1.38 christos (((size_t)(uintptr_t)(foo) >> malloc_pageshift)-malloc_origo)
171 1.1 cgd
172 1.17 tls #ifndef THREAD_LOCK
173 1.17 tls #define THREAD_LOCK()
174 1.17 tls #endif
175 1.1 cgd
176 1.17 tls #ifndef THREAD_UNLOCK
177 1.17 tls #define THREAD_UNLOCK()
178 1.16 kleink #endif
179 1.16 kleink
180 1.17 tls #ifndef MMAP_FD
181 1.17 tls #define MMAP_FD (-1)
182 1.1 cgd #endif
183 1.1 cgd
184 1.17 tls #ifndef INIT_MMAP
185 1.17 tls #define INIT_MMAP()
186 1.18 thorpej #endif
187 1.18 thorpej
188 1.18 thorpej #ifndef MADV_FREE
189 1.18 thorpej #define MADV_FREE MADV_DONTNEED
190 1.9 christos #endif
191 1.9 christos
192 1.17 tls /* Set when initialization has been done */
193 1.17 tls static unsigned malloc_started;
194 1.17 tls
195 1.17 tls /* Recusion flag for public interface. */
196 1.17 tls static int malloc_active;
197 1.17 tls
198 1.17 tls /* Number of free pages we cache */
199 1.17 tls static unsigned malloc_cache = 16;
200 1.17 tls
201 1.17 tls /* The offset from pagenumber to index into the page directory */
202 1.30 enami static size_t malloc_origo;
203 1.17 tls
204 1.17 tls /* The last index in the page directory we care about */
205 1.30 enami static size_t last_idx;
206 1.17 tls
207 1.17 tls /* Pointer to page directory. Allocated "as if with" malloc */
208 1.17 tls static struct pginfo **page_dir;
209 1.17 tls
210 1.17 tls /* How many slots in the page directory */
211 1.17 tls static unsigned malloc_ninfo;
212 1.17 tls
213 1.17 tls /* Free pages line up here */
214 1.17 tls static struct pgfree free_list;
215 1.17 tls
216 1.17 tls /* Abort(), user doesn't handle problems. */
217 1.17 tls static int malloc_abort;
218 1.17 tls
219 1.17 tls /* Are we trying to die ? */
220 1.17 tls static int suicide;
221 1.17 tls
222 1.17 tls /* always realloc ? */
223 1.17 tls static int malloc_realloc;
224 1.9 christos
225 1.17 tls /* pass the kernel a hint on free pages ? */
226 1.32 simonb static int malloc_hint = 0;
227 1.17 tls
228 1.17 tls /* xmalloc behaviour ? */
229 1.17 tls static int malloc_xmalloc;
230 1.17 tls
231 1.17 tls /* sysv behaviour for malloc(0) ? */
232 1.17 tls static int malloc_sysv;
233 1.17 tls
234 1.17 tls /* zero fill ? */
235 1.17 tls static int malloc_zero;
236 1.17 tls
237 1.17 tls /* junk fill ? */
238 1.17 tls static int malloc_junk;
239 1.17 tls
240 1.17 tls #ifdef HAS_UTRACE
241 1.17 tls
242 1.17 tls /* utrace ? */
243 1.17 tls static int malloc_utrace;
244 1.17 tls
245 1.17 tls struct ut { void *p; size_t s; void *r; };
246 1.17 tls
247 1.17 tls #define UTRACE(a, b, c) \
248 1.35 jdolecek if (malloc_utrace) { \
249 1.35 jdolecek struct ut u; \
250 1.35 jdolecek u.p=a; u.s = b; u.r=c; \
251 1.35 jdolecek utrace(UTRACE_LABEL (void *) &u, sizeof u); \
252 1.35 jdolecek }
253 1.17 tls #else /* !HAS_UTRACE */
254 1.17 tls #define UTRACE(a,b,c)
255 1.17 tls #endif /* HAS_UTRACE */
256 1.17 tls
257 1.17 tls /* my last break. */
258 1.17 tls static void *malloc_brk;
259 1.17 tls
260 1.17 tls /* one location cache for free-list holders */
261 1.17 tls static struct pgfree *px;
262 1.17 tls
263 1.17 tls /* compile-time options */
264 1.17 tls char *malloc_options;
265 1.17 tls
266 1.17 tls /* Name of the current public function */
267 1.22 thorpej static char *malloc_func;
268 1.17 tls
269 1.17 tls /* Macro for mmap */
270 1.17 tls #define MMAP(size) \
271 1.17 tls mmap(0, (size), PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE, \
272 1.30 enami MMAP_FD, (off_t)0);
273 1.9 christos
274 1.16 kleink /*
275 1.17 tls * Necessary function declarations
276 1.16 kleink */
277 1.30 enami static int extend_pgdir(size_t idx);
278 1.17 tls static void *imalloc(size_t size);
279 1.17 tls static void ifree(void *ptr);
280 1.17 tls static void *irealloc(void *ptr, size_t size);
281 1.17 tls
282 1.17 tls static void
283 1.22 thorpej wrterror(char *p)
284 1.17 tls {
285 1.36 cgd const char *progname = getprogname();
286 1.22 thorpej char *q = " error: ";
287 1.36 cgd write(STDERR_FILENO, progname, strlen(progname));
288 1.17 tls write(STDERR_FILENO, malloc_func, strlen(malloc_func));
289 1.17 tls write(STDERR_FILENO, q, strlen(q));
290 1.17 tls write(STDERR_FILENO, p, strlen(p));
291 1.17 tls suicide = 1;
292 1.17 tls abort();
293 1.17 tls }
294 1.17 tls
295 1.16 kleink static void
296 1.22 thorpej wrtwarning(char *p)
297 1.1 cgd {
298 1.36 cgd const char *progname = getprogname();
299 1.22 thorpej char *q = " warning: ";
300 1.17 tls if (malloc_abort)
301 1.17 tls wrterror(p);
302 1.36 cgd write(STDERR_FILENO, progname, strlen(progname));
303 1.17 tls write(STDERR_FILENO, malloc_func, strlen(malloc_func));
304 1.17 tls write(STDERR_FILENO, q, strlen(q));
305 1.17 tls write(STDERR_FILENO, p, strlen(p));
306 1.17 tls }
307 1.17 tls
308 1.17 tls /*
309 1.17 tls * Allocate a number of pages from the OS
310 1.17 tls */
311 1.17 tls static void *
312 1.30 enami map_pages(size_t pages)
313 1.17 tls {
314 1.38 christos caddr_t result, rresult, tail;
315 1.38 christos intptr_t bytes = pages << malloc_pageshift;
316 1.16 kleink
317 1.38 christos if (bytes < 0 || (size_t)bytes < pages) {
318 1.38 christos errno = ENOMEM;
319 1.38 christos return NULL;
320 1.38 christos }
321 1.17 tls
322 1.38 christos if ((result = sbrk(bytes)) == (void *)-1)
323 1.38 christos return NULL;
324 1.38 christos
325 1.38 christos /*
326 1.38 christos * Round to a page, in case sbrk(2) did not do this for us
327 1.38 christos */
328 1.38 christos rresult = (caddr_t)pageround((size_t)(uintptr_t)result);
329 1.38 christos if (result < rresult) {
330 1.38 christos /* make sure we have enough space to fit bytes */
331 1.38 christos if (sbrk((intptr_t)(rresult - result)) == (void *) -1) {
332 1.38 christos /* we failed, put everything back */
333 1.38 christos if (brk(result)) {
334 1.38 christos wrterror("brk(2) failed [internal error]\n");
335 1.38 christos }
336 1.38 christos }
337 1.17 tls }
338 1.38 christos tail = rresult + (size_t)bytes;
339 1.38 christos
340 1.23 thorpej last_idx = ptr2idx(tail) - 1;
341 1.17 tls malloc_brk = tail;
342 1.17 tls
343 1.38 christos if ((last_idx+1) >= malloc_ninfo && !extend_pgdir(last_idx)) {
344 1.38 christos malloc_brk = result;
345 1.38 christos last_idx = ptr2idx(malloc_brk) - 1;
346 1.38 christos /* Put back break point since we failed. */
347 1.38 christos if (brk(malloc_brk))
348 1.38 christos wrterror("brk(2) failed [internal error]\n");
349 1.38 christos return 0;
350 1.38 christos }
351 1.16 kleink
352 1.38 christos return rresult;
353 1.1 cgd }
354 1.1 cgd
355 1.17 tls /*
356 1.17 tls * Extend page directory
357 1.17 tls */
358 1.17 tls static int
359 1.30 enami extend_pgdir(size_t idx)
360 1.1 cgd {
361 1.17 tls struct pginfo **new, **old;
362 1.30 enami size_t newlen, oldlen;
363 1.37 christos
364 1.37 christos /* check for overflow */
365 1.37 christos if ((((~(1UL << ((sizeof(size_t) * NBBY) - 1)) / sizeof(*page_dir)) + 1)
366 1.37 christos + (malloc_pagesize / sizeof *page_dir)) < idx) {
367 1.37 christos errno = ENOMEM;
368 1.37 christos return 0;
369 1.37 christos }
370 1.1 cgd
371 1.17 tls /* Make it this many pages */
372 1.30 enami newlen = pageround(idx * sizeof *page_dir) + malloc_pagesize;
373 1.17 tls
374 1.17 tls /* remember the old mapping size */
375 1.17 tls oldlen = malloc_ninfo * sizeof *page_dir;
376 1.17 tls
377 1.17 tls /*
378 1.17 tls * NOTE: we allocate new pages and copy the directory rather than tempt
379 1.17 tls * fate by trying to "grow" the region.. There is nothing to prevent
380 1.17 tls * us from accidently re-mapping space that's been allocated by our caller
381 1.17 tls * via dlopen() or other mmap().
382 1.17 tls *
383 1.17 tls * The copy problem is not too bad, as there is 4K of page index per
384 1.17 tls * 4MB of malloc arena.
385 1.17 tls *
386 1.17 tls * We can totally avoid the copy if we open a file descriptor to associate
387 1.17 tls * the anon mappings with. Then, when we remap the pages at the new
388 1.17 tls * address, the old pages will be "magically" remapped.. But this means
389 1.17 tls * keeping open a "secret" file descriptor.....
390 1.17 tls */
391 1.17 tls
392 1.17 tls /* Get new pages */
393 1.30 enami new = (struct pginfo**) MMAP(newlen);
394 1.43 junyoung if (new == MAP_FAILED)
395 1.17 tls return 0;
396 1.17 tls
397 1.17 tls /* Copy the old stuff */
398 1.30 enami memcpy(new, page_dir, oldlen);
399 1.17 tls
400 1.17 tls /* register the new size */
401 1.30 enami malloc_ninfo = newlen / sizeof *page_dir;
402 1.17 tls
403 1.17 tls /* swap the pointers */
404 1.17 tls old = page_dir;
405 1.17 tls page_dir = new;
406 1.17 tls
407 1.17 tls /* Now free the old stuff */
408 1.17 tls munmap(old, oldlen);
409 1.17 tls return 1;
410 1.17 tls }
411 1.16 kleink
412 1.17 tls /*
413 1.17 tls * Initialize the world
414 1.17 tls */
415 1.17 tls static void
416 1.17 tls malloc_init (void)
417 1.17 tls {
418 1.17 tls char *p, b[64];
419 1.17 tls int i, j;
420 1.17 tls int errnosave;
421 1.20 thorpej
422 1.20 thorpej /*
423 1.20 thorpej * Compute page-size related variables.
424 1.20 thorpej */
425 1.30 enami malloc_pagesize = (size_t)sysconf(_SC_PAGESIZE);
426 1.20 thorpej malloc_pagemask = malloc_pagesize - 1;
427 1.20 thorpej for (malloc_pageshift = 0;
428 1.20 thorpej (1UL << malloc_pageshift) != malloc_pagesize;
429 1.20 thorpej malloc_pageshift++)
430 1.20 thorpej /* nothing */ ;
431 1.17 tls
432 1.17 tls INIT_MMAP();
433 1.17 tls
434 1.19 thorpej #ifdef MALLOC_EXTRA_SANITY
435 1.17 tls malloc_junk = 1;
436 1.19 thorpej #endif /* MALLOC_EXTRA_SANITY */
437 1.17 tls
438 1.17 tls for (i = 0; i < 3; i++) {
439 1.17 tls if (i == 0) {
440 1.17 tls errnosave = errno;
441 1.17 tls j = readlink("/etc/malloc.conf", b, sizeof b - 1);
442 1.17 tls errno = errnosave;
443 1.17 tls if (j <= 0)
444 1.17 tls continue;
445 1.17 tls b[j] = '\0';
446 1.17 tls p = b;
447 1.17 tls } else if (i == 1) {
448 1.17 tls p = getenv("MALLOC_OPTIONS");
449 1.17 tls } else {
450 1.17 tls p = malloc_options;
451 1.1 cgd }
452 1.43 junyoung for (; p != NULL && *p != '\0'; p++) {
453 1.17 tls switch (*p) {
454 1.17 tls case '>': malloc_cache <<= 1; break;
455 1.17 tls case '<': malloc_cache >>= 1; break;
456 1.17 tls case 'a': malloc_abort = 0; break;
457 1.17 tls case 'A': malloc_abort = 1; break;
458 1.17 tls case 'h': malloc_hint = 0; break;
459 1.17 tls case 'H': malloc_hint = 1; break;
460 1.17 tls case 'r': malloc_realloc = 0; break;
461 1.17 tls case 'R': malloc_realloc = 1; break;
462 1.17 tls case 'j': malloc_junk = 0; break;
463 1.17 tls case 'J': malloc_junk = 1; break;
464 1.17 tls #ifdef HAS_UTRACE
465 1.17 tls case 'u': malloc_utrace = 0; break;
466 1.17 tls case 'U': malloc_utrace = 1; break;
467 1.17 tls #endif
468 1.17 tls case 'v': malloc_sysv = 0; break;
469 1.17 tls case 'V': malloc_sysv = 1; break;
470 1.17 tls case 'x': malloc_xmalloc = 0; break;
471 1.17 tls case 'X': malloc_xmalloc = 1; break;
472 1.17 tls case 'z': malloc_zero = 0; break;
473 1.17 tls case 'Z': malloc_zero = 1; break;
474 1.17 tls default:
475 1.17 tls j = malloc_abort;
476 1.17 tls malloc_abort = 0;
477 1.43 junyoung wrtwarning("unknown char in MALLOC_OPTIONS.\n");
478 1.17 tls malloc_abort = j;
479 1.17 tls break;
480 1.17 tls }
481 1.1 cgd }
482 1.17 tls }
483 1.17 tls
484 1.17 tls UTRACE(0, 0, 0);
485 1.17 tls
486 1.17 tls /*
487 1.17 tls * We want junk in the entire allocation, and zero only in the part
488 1.17 tls * the user asked for.
489 1.17 tls */
490 1.17 tls if (malloc_zero)
491 1.17 tls malloc_junk=1;
492 1.17 tls
493 1.17 tls /*
494 1.17 tls * If we run with junk (or implicitly from above: zero), we want to
495 1.17 tls * force realloc() to get new storage, so we can DTRT with it.
496 1.17 tls */
497 1.17 tls if (malloc_junk)
498 1.17 tls malloc_realloc=1;
499 1.17 tls
500 1.17 tls /* Allocate one page for the page directory */
501 1.17 tls page_dir = (struct pginfo **) MMAP(malloc_pagesize);
502 1.17 tls
503 1.43 junyoung if (page_dir == MAP_FAILED)
504 1.17 tls wrterror("mmap(2) failed, check limits.\n");
505 1.17 tls
506 1.17 tls /*
507 1.17 tls * We need a maximum of malloc_pageshift buckets, steal these from the
508 1.17 tls * front of the page_directory;
509 1.17 tls */
510 1.38 christos malloc_origo = pageround((size_t)(uintptr_t)sbrk((intptr_t)0))
511 1.34 christos >> malloc_pageshift;
512 1.17 tls malloc_origo -= malloc_pageshift;
513 1.17 tls
514 1.17 tls malloc_ninfo = malloc_pagesize / sizeof *page_dir;
515 1.17 tls
516 1.17 tls /* Recalculate the cache size in bytes, and make sure it's nonzero */
517 1.17 tls
518 1.17 tls if (!malloc_cache)
519 1.17 tls malloc_cache++;
520 1.17 tls
521 1.17 tls malloc_cache <<= malloc_pageshift;
522 1.17 tls
523 1.17 tls /*
524 1.17 tls * This is a nice hack from Kaleb Keithly (kaleb (at) x.org).
525 1.17 tls * We can sbrk(2) further back when we keep this on a low address.
526 1.17 tls */
527 1.17 tls px = (struct pgfree *) imalloc (sizeof *px);
528 1.17 tls
529 1.17 tls /* Been here, done that */
530 1.17 tls malloc_started++;
531 1.17 tls }
532 1.17 tls
533 1.17 tls /*
534 1.17 tls * Allocate a number of complete pages
535 1.17 tls */
536 1.17 tls static void *
537 1.17 tls malloc_pages(size_t size)
538 1.17 tls {
539 1.43 junyoung void *p, *delay_free = NULL;
540 1.38 christos size_t i;
541 1.17 tls struct pgfree *pf;
542 1.30 enami size_t idx;
543 1.17 tls
544 1.38 christos idx = pageround(size);
545 1.38 christos if (idx < size) {
546 1.38 christos errno = ENOMEM;
547 1.38 christos return NULL;
548 1.38 christos } else
549 1.38 christos size = idx;
550 1.17 tls
551 1.43 junyoung p = NULL;
552 1.17 tls
553 1.17 tls /* Look for free pages before asking for more */
554 1.17 tls for(pf = free_list.next; pf; pf = pf->next) {
555 1.17 tls
556 1.19 thorpej #ifdef MALLOC_EXTRA_SANITY
557 1.17 tls if (pf->size & malloc_pagemask)
558 1.43 junyoung wrterror("(ES): junk length entry on free_list.\n");
559 1.17 tls if (!pf->size)
560 1.43 junyoung wrterror("(ES): zero length entry on free_list.\n");
561 1.17 tls if (pf->page == pf->end)
562 1.43 junyoung wrterror("(ES): zero entry on free_list.\n");
563 1.43 junyoung if (pf->page > pf->end)
564 1.43 junyoung wrterror("(ES): sick entry on free_list.\n");
565 1.17 tls if ((void*)pf->page >= (void*)sbrk(0))
566 1.43 junyoung wrterror("(ES): entry on free_list past brk.\n");
567 1.43 junyoung if (page_dir[ptr2idx(pf->page)] != MALLOC_FREE)
568 1.43 junyoung wrterror("(ES): non-free first page on free-list.\n");
569 1.23 thorpej if (page_dir[ptr2idx(pf->end)-1] != MALLOC_FREE)
570 1.43 junyoung wrterror("(ES): non-free last page on free-list.\n");
571 1.19 thorpej #endif /* MALLOC_EXTRA_SANITY */
572 1.17 tls
573 1.17 tls if (pf->size < size)
574 1.17 tls continue;
575 1.17 tls
576 1.17 tls if (pf->size == size) {
577 1.17 tls p = pf->page;
578 1.43 junyoung if (pf->next != NULL)
579 1.17 tls pf->next->prev = pf->prev;
580 1.17 tls pf->prev->next = pf->next;
581 1.17 tls delay_free = pf;
582 1.17 tls break;
583 1.17 tls }
584 1.17 tls
585 1.17 tls p = pf->page;
586 1.17 tls pf->page = (char *)pf->page + size;
587 1.17 tls pf->size -= size;
588 1.17 tls break;
589 1.17 tls }
590 1.17 tls
591 1.19 thorpej #ifdef MALLOC_EXTRA_SANITY
592 1.43 junyoung if (p != NULL && page_dir[ptr2idx(p)] != MALLOC_FREE)
593 1.43 junyoung wrterror("(ES): allocated non-free page on free-list.\n");
594 1.19 thorpej #endif /* MALLOC_EXTRA_SANITY */
595 1.17 tls
596 1.17 tls size >>= malloc_pageshift;
597 1.17 tls
598 1.17 tls /* Map new pages */
599 1.43 junyoung if (p == NULL)
600 1.17 tls p = map_pages(size);
601 1.17 tls
602 1.43 junyoung if (p != NULL) {
603 1.17 tls
604 1.23 thorpej idx = ptr2idx(p);
605 1.23 thorpej page_dir[idx] = MALLOC_FIRST;
606 1.17 tls for (i=1;i<size;i++)
607 1.23 thorpej page_dir[idx+i] = MALLOC_FOLLOW;
608 1.17 tls
609 1.17 tls if (malloc_junk)
610 1.17 tls memset(p, SOME_JUNK, size << malloc_pageshift);
611 1.17 tls }
612 1.17 tls
613 1.17 tls if (delay_free) {
614 1.43 junyoung if (px == NULL)
615 1.17 tls px = delay_free;
616 1.17 tls else
617 1.17 tls ifree(delay_free);
618 1.17 tls }
619 1.17 tls
620 1.17 tls return p;
621 1.17 tls }
622 1.17 tls
623 1.17 tls /*
624 1.17 tls * Allocate a page of fragments
625 1.17 tls */
626 1.17 tls
627 1.17 tls static __inline__ int
628 1.17 tls malloc_make_chunks(int bits)
629 1.17 tls {
630 1.17 tls struct pginfo *bp;
631 1.17 tls void *pp;
632 1.31 enami int i, k, l;
633 1.17 tls
634 1.17 tls /* Allocate a new bucket */
635 1.17 tls pp = malloc_pages(malloc_pagesize);
636 1.43 junyoung if (pp == NULL)
637 1.17 tls return 0;
638 1.17 tls
639 1.17 tls /* Find length of admin structure */
640 1.33 christos l = (int)offsetof(struct pginfo, bits[0]);
641 1.17 tls l += sizeof bp->bits[0] *
642 1.17 tls (((malloc_pagesize >> bits)+MALLOC_BITS-1) / MALLOC_BITS);
643 1.17 tls
644 1.17 tls /* Don't waste more than two chunks on this */
645 1.17 tls if ((1<<(bits)) <= l+l) {
646 1.17 tls bp = (struct pginfo *)pp;
647 1.17 tls } else {
648 1.31 enami bp = (struct pginfo *)imalloc((size_t)l);
649 1.43 junyoung if (bp == NULL) {
650 1.17 tls ifree(pp);
651 1.17 tls return 0;
652 1.1 cgd }
653 1.17 tls }
654 1.17 tls
655 1.17 tls bp->size = (1<<bits);
656 1.17 tls bp->shift = bits;
657 1.17 tls bp->total = bp->free = malloc_pagesize >> bits;
658 1.17 tls bp->page = pp;
659 1.17 tls
660 1.17 tls /* set all valid bits in the bitmap */
661 1.17 tls k = bp->total;
662 1.17 tls i = 0;
663 1.17 tls
664 1.17 tls /* Do a bunch at a time */
665 1.17 tls for(;k-i >= MALLOC_BITS; i += MALLOC_BITS)
666 1.30 enami bp->bits[i / MALLOC_BITS] = ~0U;
667 1.17 tls
668 1.17 tls for(; i < k; i++)
669 1.17 tls bp->bits[i/MALLOC_BITS] |= 1<<(i%MALLOC_BITS);
670 1.17 tls
671 1.17 tls if (bp == bp->page) {
672 1.17 tls /* Mark the ones we stole for ourselves */
673 1.17 tls for(i=0;l > 0;i++) {
674 1.17 tls bp->bits[i/MALLOC_BITS] &= ~(1<<(i%MALLOC_BITS));
675 1.17 tls bp->free--;
676 1.17 tls bp->total--;
677 1.17 tls l -= (1 << bits);
678 1.1 cgd }
679 1.17 tls }
680 1.17 tls
681 1.17 tls /* MALLOC_LOCK */
682 1.17 tls
683 1.23 thorpej page_dir[ptr2idx(pp)] = bp;
684 1.17 tls
685 1.17 tls bp->next = page_dir[bits];
686 1.17 tls page_dir[bits] = bp;
687 1.17 tls
688 1.17 tls /* MALLOC_UNLOCK */
689 1.17 tls
690 1.17 tls return 1;
691 1.1 cgd }
692 1.1 cgd
693 1.1 cgd /*
694 1.17 tls * Allocate a fragment
695 1.1 cgd */
696 1.17 tls static void *
697 1.17 tls malloc_bytes(size_t size)
698 1.1 cgd {
699 1.30 enami size_t i;
700 1.30 enami int j;
701 1.17 tls u_int u;
702 1.17 tls struct pginfo *bp;
703 1.17 tls int k;
704 1.17 tls u_int *lp;
705 1.17 tls
706 1.17 tls /* Don't bother with anything less than this */
707 1.17 tls if (size < malloc_minsize)
708 1.17 tls size = malloc_minsize;
709 1.17 tls
710 1.17 tls /* Find the right bucket */
711 1.17 tls j = 1;
712 1.17 tls i = size-1;
713 1.17 tls while (i >>= 1)
714 1.17 tls j++;
715 1.17 tls
716 1.17 tls /* If it's empty, make a page more of that size chunks */
717 1.43 junyoung if (page_dir[j] == NULL && !malloc_make_chunks(j))
718 1.43 junyoung return NULL;
719 1.17 tls
720 1.17 tls bp = page_dir[j];
721 1.17 tls
722 1.17 tls /* Find first word of bitmap which isn't empty */
723 1.17 tls for (lp = bp->bits; !*lp; lp++)
724 1.17 tls ;
725 1.17 tls
726 1.17 tls /* Find that bit, and tweak it */
727 1.17 tls u = 1;
728 1.17 tls k = 0;
729 1.17 tls while (!(*lp & u)) {
730 1.17 tls u += u;
731 1.17 tls k++;
732 1.17 tls }
733 1.17 tls *lp ^= u;
734 1.17 tls
735 1.17 tls /* If there are no more free, remove from free-list */
736 1.17 tls if (!--bp->free) {
737 1.17 tls page_dir[j] = bp->next;
738 1.43 junyoung bp->next = NULL;
739 1.17 tls }
740 1.17 tls
741 1.17 tls /* Adjust to the real offset of that chunk */
742 1.17 tls k += (lp-bp->bits)*MALLOC_BITS;
743 1.17 tls k <<= bp->shift;
744 1.17 tls
745 1.17 tls if (malloc_junk)
746 1.30 enami memset((u_char*)bp->page + k, SOME_JUNK, (size_t)bp->size);
747 1.1 cgd
748 1.17 tls return (u_char *)bp->page + k;
749 1.1 cgd }
750 1.1 cgd
751 1.17 tls /*
752 1.17 tls * Allocate a piece of memory
753 1.17 tls */
754 1.17 tls static void *
755 1.17 tls imalloc(size_t size)
756 1.17 tls {
757 1.17 tls void *result;
758 1.17 tls
759 1.17 tls if (suicide)
760 1.17 tls abort();
761 1.17 tls
762 1.17 tls if ((size + malloc_pagesize) < size) /* Check for overflow */
763 1.43 junyoung result = NULL;
764 1.17 tls else if (size <= malloc_maxsize)
765 1.43 junyoung result = malloc_bytes(size);
766 1.17 tls else
767 1.43 junyoung result = malloc_pages(size);
768 1.17 tls
769 1.43 junyoung if (malloc_abort && result == NULL)
770 1.17 tls wrterror("allocation failed.\n");
771 1.17 tls
772 1.43 junyoung if (malloc_zero && result != NULL)
773 1.17 tls memset(result, 0, size);
774 1.17 tls
775 1.17 tls return result;
776 1.1 cgd }
777 1.1 cgd
778 1.1 cgd /*
779 1.17 tls * Change the size of an allocation.
780 1.1 cgd */
781 1.17 tls static void *
782 1.17 tls irealloc(void *ptr, size_t size)
783 1.17 tls {
784 1.17 tls void *p;
785 1.30 enami size_t osize, idx;
786 1.17 tls struct pginfo **mp;
787 1.30 enami size_t i;
788 1.17 tls
789 1.17 tls if (suicide)
790 1.17 tls abort();
791 1.17 tls
792 1.23 thorpej idx = ptr2idx(ptr);
793 1.1 cgd
794 1.23 thorpej if (idx < malloc_pageshift) {
795 1.17 tls wrtwarning("junk pointer, too low to make sense.\n");
796 1.17 tls return 0;
797 1.17 tls }
798 1.17 tls
799 1.23 thorpej if (idx > last_idx) {
800 1.17 tls wrtwarning("junk pointer, too high to make sense.\n");
801 1.17 tls return 0;
802 1.17 tls }
803 1.17 tls
804 1.23 thorpej mp = &page_dir[idx];
805 1.17 tls
806 1.17 tls if (*mp == MALLOC_FIRST) { /* Page allocation */
807 1.17 tls
808 1.17 tls /* Check the pointer */
809 1.38 christos if ((size_t)(uintptr_t)ptr & malloc_pagemask) {
810 1.17 tls wrtwarning("modified (page-) pointer.\n");
811 1.43 junyoung return NULL;
812 1.17 tls }
813 1.17 tls
814 1.17 tls /* Find the size in bytes */
815 1.17 tls for (osize = malloc_pagesize; *++mp == MALLOC_FOLLOW;)
816 1.17 tls osize += malloc_pagesize;
817 1.17 tls
818 1.17 tls if (!malloc_realloc && /* unless we have to, */
819 1.17 tls size <= osize && /* .. or are too small, */
820 1.17 tls size > (osize - malloc_pagesize)) { /* .. or can free a page, */
821 1.17 tls return ptr; /* don't do anything. */
822 1.6 jtc }
823 1.17 tls
824 1.17 tls } else if (*mp >= MALLOC_MAGIC) { /* Chunk allocation */
825 1.17 tls
826 1.17 tls /* Check the pointer for sane values */
827 1.38 christos if (((size_t)(uintptr_t)ptr & ((*mp)->size-1))) {
828 1.17 tls wrtwarning("modified (chunk-) pointer.\n");
829 1.43 junyoung return NULL;
830 1.1 cgd }
831 1.17 tls
832 1.17 tls /* Find the chunk index in the page */
833 1.38 christos i = ((size_t)(uintptr_t)ptr & malloc_pagemask) >> (*mp)->shift;
834 1.17 tls
835 1.17 tls /* Verify that it isn't a free chunk already */
836 1.17 tls if ((*mp)->bits[i/MALLOC_BITS] & (1<<(i%MALLOC_BITS))) {
837 1.17 tls wrtwarning("chunk is already free.\n");
838 1.43 junyoung return NULL;
839 1.16 kleink }
840 1.17 tls
841 1.17 tls osize = (*mp)->size;
842 1.17 tls
843 1.17 tls if (!malloc_realloc && /* Unless we have to, */
844 1.17 tls size < osize && /* ..or are too small, */
845 1.17 tls (size > osize/2 || /* ..or could use a smaller size, */
846 1.17 tls osize == malloc_minsize)) { /* ..(if there is one) */
847 1.17 tls return ptr; /* ..Don't do anything */
848 1.1 cgd }
849 1.17 tls
850 1.17 tls } else {
851 1.17 tls wrtwarning("pointer to wrong page.\n");
852 1.43 junyoung return NULL;
853 1.17 tls }
854 1.17 tls
855 1.17 tls p = imalloc(size);
856 1.17 tls
857 1.43 junyoung if (p != NULL) {
858 1.17 tls /* copy the lesser of the two sizes, and free the old one */
859 1.17 tls if (!size || !osize)
860 1.17 tls ;
861 1.17 tls else if (osize < size)
862 1.17 tls memcpy(p, ptr, osize);
863 1.17 tls else
864 1.17 tls memcpy(p, ptr, size);
865 1.17 tls ifree(ptr);
866 1.17 tls }
867 1.17 tls return p;
868 1.1 cgd }
869 1.1 cgd
870 1.1 cgd /*
871 1.17 tls * Free a sequence of pages
872 1.1 cgd */
873 1.17 tls
874 1.17 tls static __inline__ void
875 1.30 enami free_pages(void *ptr, size_t idx, struct pginfo *info)
876 1.17 tls {
877 1.30 enami size_t i;
878 1.43 junyoung struct pgfree *pf, *pt=NULL;
879 1.30 enami size_t l;
880 1.17 tls void *tail;
881 1.17 tls
882 1.17 tls if (info == MALLOC_FREE) {
883 1.17 tls wrtwarning("page is already free.\n");
884 1.17 tls return;
885 1.17 tls }
886 1.17 tls
887 1.17 tls if (info != MALLOC_FIRST) {
888 1.17 tls wrtwarning("pointer to wrong page.\n");
889 1.17 tls return;
890 1.17 tls }
891 1.17 tls
892 1.38 christos if ((size_t)(uintptr_t)ptr & malloc_pagemask) {
893 1.17 tls wrtwarning("modified (page-) pointer.\n");
894 1.17 tls return;
895 1.17 tls }
896 1.17 tls
897 1.17 tls /* Count how many pages and mark them free at the same time */
898 1.23 thorpej page_dir[idx] = MALLOC_FREE;
899 1.23 thorpej for (i = 1; page_dir[idx+i] == MALLOC_FOLLOW; i++)
900 1.23 thorpej page_dir[idx + i] = MALLOC_FREE;
901 1.17 tls
902 1.17 tls l = i << malloc_pageshift;
903 1.17 tls
904 1.17 tls if (malloc_junk)
905 1.17 tls memset(ptr, SOME_JUNK, l);
906 1.17 tls
907 1.17 tls if (malloc_hint)
908 1.17 tls madvise(ptr, l, MADV_FREE);
909 1.17 tls
910 1.17 tls tail = (char *)ptr+l;
911 1.17 tls
912 1.17 tls /* add to free-list */
913 1.43 junyoung if (px == NULL)
914 1.17 tls px = imalloc(sizeof *pt); /* This cannot fail... */
915 1.17 tls px->page = ptr;
916 1.17 tls px->end = tail;
917 1.17 tls px->size = l;
918 1.43 junyoung if (free_list.next == NULL) {
919 1.17 tls
920 1.17 tls /* Nothing on free list, put this at head */
921 1.17 tls px->next = free_list.next;
922 1.17 tls px->prev = &free_list;
923 1.17 tls free_list.next = px;
924 1.17 tls pf = px;
925 1.43 junyoung px = NULL;
926 1.17 tls
927 1.17 tls } else {
928 1.17 tls
929 1.17 tls /* Find the right spot, leave pf pointing to the modified entry. */
930 1.17 tls tail = (char *)ptr+l;
931 1.17 tls
932 1.43 junyoung for(pf = free_list.next; pf->end < ptr && pf->next != NULL;
933 1.43 junyoung pf = pf->next)
934 1.17 tls ; /* Race ahead here */
935 1.17 tls
936 1.17 tls if (pf->page > tail) {
937 1.17 tls /* Insert before entry */
938 1.17 tls px->next = pf;
939 1.17 tls px->prev = pf->prev;
940 1.17 tls pf->prev = px;
941 1.17 tls px->prev->next = px;
942 1.17 tls pf = px;
943 1.43 junyoung px = NULL;
944 1.17 tls } else if (pf->end == ptr ) {
945 1.17 tls /* Append to the previous entry */
946 1.17 tls pf->end = (char *)pf->end + l;
947 1.17 tls pf->size += l;
948 1.43 junyoung if (pf->next != NULL && pf->end == pf->next->page ) {
949 1.17 tls /* And collapse the next too. */
950 1.17 tls pt = pf->next;
951 1.17 tls pf->end = pt->end;
952 1.17 tls pf->size += pt->size;
953 1.17 tls pf->next = pt->next;
954 1.43 junyoung if (pf->next != NULL)
955 1.17 tls pf->next->prev = pf;
956 1.17 tls }
957 1.17 tls } else if (pf->page == tail) {
958 1.17 tls /* Prepend to entry */
959 1.17 tls pf->size += l;
960 1.17 tls pf->page = ptr;
961 1.43 junyoung } else if (pf->next == NULL) {
962 1.17 tls /* Append at tail of chain */
963 1.43 junyoung px->next = NULL;
964 1.17 tls px->prev = pf;
965 1.17 tls pf->next = px;
966 1.17 tls pf = px;
967 1.43 junyoung px = NULL;
968 1.17 tls } else {
969 1.17 tls wrterror("freelist is destroyed.\n");
970 1.1 cgd }
971 1.17 tls }
972 1.17 tls
973 1.17 tls /* Return something to OS ? */
974 1.43 junyoung if (pf->next == NULL && /* If we're the last one, */
975 1.17 tls pf->size > malloc_cache && /* ..and the cache is full, */
976 1.17 tls pf->end == malloc_brk && /* ..and none behind us, */
977 1.34 christos malloc_brk == sbrk((intptr_t)0)) { /* ..and it's OK to do... */
978 1.17 tls
979 1.17 tls /*
980 1.17 tls * Keep the cache intact. Notice that the '>' above guarantees that
981 1.17 tls * the pf will always have at least one page afterwards.
982 1.17 tls */
983 1.17 tls pf->end = (char *)pf->page + malloc_cache;
984 1.17 tls pf->size = malloc_cache;
985 1.17 tls
986 1.17 tls brk(pf->end);
987 1.17 tls malloc_brk = pf->end;
988 1.17 tls
989 1.23 thorpej idx = ptr2idx(pf->end);
990 1.23 thorpej last_idx = idx - 1;
991 1.17 tls
992 1.23 thorpej for(i=idx;i <= last_idx;)
993 1.17 tls page_dir[i++] = MALLOC_NOT_MINE;
994 1.17 tls
995 1.17 tls /* XXX: We could realloc/shrink the pagedir here I guess. */
996 1.17 tls }
997 1.43 junyoung if (pt != NULL)
998 1.17 tls ifree(pt);
999 1.1 cgd }
1000 1.1 cgd
1001 1.1 cgd /*
1002 1.17 tls * Free a chunk, and possibly the page it's on, if the page becomes empty.
1003 1.1 cgd */
1004 1.17 tls
1005 1.17 tls static __inline__ void
1006 1.30 enami free_bytes(void *ptr, size_t idx, struct pginfo *info)
1007 1.17 tls {
1008 1.30 enami size_t i;
1009 1.17 tls struct pginfo **mp;
1010 1.17 tls void *vp;
1011 1.17 tls
1012 1.17 tls /* Find the chunk number on the page */
1013 1.38 christos i = ((size_t)(uintptr_t)ptr & malloc_pagemask) >> info->shift;
1014 1.17 tls
1015 1.38 christos if (((size_t)(uintptr_t)ptr & (info->size-1))) {
1016 1.17 tls wrtwarning("modified (chunk-) pointer.\n");
1017 1.17 tls return;
1018 1.17 tls }
1019 1.17 tls
1020 1.17 tls if (info->bits[i/MALLOC_BITS] & (1<<(i%MALLOC_BITS))) {
1021 1.17 tls wrtwarning("chunk is already free.\n");
1022 1.17 tls return;
1023 1.17 tls }
1024 1.17 tls
1025 1.17 tls if (malloc_junk)
1026 1.30 enami memset(ptr, SOME_JUNK, (size_t)info->size);
1027 1.17 tls
1028 1.17 tls info->bits[i/MALLOC_BITS] |= 1<<(i%MALLOC_BITS);
1029 1.17 tls info->free++;
1030 1.17 tls
1031 1.17 tls mp = page_dir + info->shift;
1032 1.17 tls
1033 1.17 tls if (info->free == 1) {
1034 1.17 tls
1035 1.17 tls /* Page became non-full */
1036 1.17 tls
1037 1.17 tls mp = page_dir + info->shift;
1038 1.17 tls /* Insert in address order */
1039 1.17 tls while (*mp && (*mp)->next && (*mp)->next->page < info->page)
1040 1.17 tls mp = &(*mp)->next;
1041 1.17 tls info->next = *mp;
1042 1.17 tls *mp = info;
1043 1.17 tls return;
1044 1.17 tls }
1045 1.17 tls
1046 1.17 tls if (info->free != info->total)
1047 1.17 tls return;
1048 1.17 tls
1049 1.17 tls /* Find & remove this page in the queue */
1050 1.17 tls while (*mp != info) {
1051 1.17 tls mp = &((*mp)->next);
1052 1.19 thorpej #ifdef MALLOC_EXTRA_SANITY
1053 1.17 tls if (!*mp)
1054 1.43 junyoung wrterror("(ES): Not on queue.\n");
1055 1.19 thorpej #endif /* MALLOC_EXTRA_SANITY */
1056 1.17 tls }
1057 1.17 tls *mp = info->next;
1058 1.17 tls
1059 1.17 tls /* Free the page & the info structure if need be */
1060 1.30 enami page_dir[idx] = MALLOC_FIRST;
1061 1.17 tls vp = info->page; /* Order is important ! */
1062 1.17 tls if(vp != (void*)info)
1063 1.17 tls ifree(info);
1064 1.17 tls ifree(vp);
1065 1.17 tls }
1066 1.17 tls
1067 1.17 tls static void
1068 1.17 tls ifree(void *ptr)
1069 1.17 tls {
1070 1.17 tls struct pginfo *info;
1071 1.30 enami size_t idx;
1072 1.17 tls
1073 1.17 tls /* This is legal */
1074 1.43 junyoung if (ptr == NULL)
1075 1.17 tls return;
1076 1.17 tls
1077 1.17 tls /* If we're already sinking, don't make matters any worse. */
1078 1.17 tls if (suicide)
1079 1.17 tls return;
1080 1.17 tls
1081 1.23 thorpej idx = ptr2idx(ptr);
1082 1.17 tls
1083 1.23 thorpej if (idx < malloc_pageshift) {
1084 1.17 tls wrtwarning("junk pointer, too low to make sense.\n");
1085 1.17 tls return;
1086 1.17 tls }
1087 1.17 tls
1088 1.23 thorpej if (idx > last_idx) {
1089 1.17 tls wrtwarning("junk pointer, too high to make sense.\n");
1090 1.17 tls return;
1091 1.17 tls }
1092 1.17 tls
1093 1.23 thorpej info = page_dir[idx];
1094 1.17 tls
1095 1.17 tls if (info < MALLOC_MAGIC)
1096 1.23 thorpej free_pages(ptr, idx, info);
1097 1.17 tls else
1098 1.23 thorpej free_bytes(ptr, idx, info);
1099 1.17 tls return;
1100 1.17 tls }
1101 1.17 tls
1102 1.17 tls /*
1103 1.17 tls * These are the public exported interface routines.
1104 1.17 tls */
1105 1.17 tls
1106 1.17 tls
1107 1.17 tls void *
1108 1.17 tls malloc(size_t size)
1109 1.17 tls {
1110 1.43 junyoung void *r;
1111 1.17 tls
1112 1.17 tls THREAD_LOCK();
1113 1.17 tls malloc_func = " in malloc():";
1114 1.17 tls if (malloc_active++) {
1115 1.17 tls wrtwarning("recursive call.\n");
1116 1.17 tls malloc_active--;
1117 1.40 chris THREAD_UNLOCK();
1118 1.43 junyoung return (NULL);
1119 1.17 tls }
1120 1.17 tls if (!malloc_started)
1121 1.17 tls malloc_init();
1122 1.17 tls if (malloc_sysv && !size)
1123 1.43 junyoung r = NULL;
1124 1.17 tls else
1125 1.17 tls r = imalloc(size);
1126 1.17 tls UTRACE(0, size, r);
1127 1.17 tls malloc_active--;
1128 1.17 tls THREAD_UNLOCK();
1129 1.26 kleink if (r == NULL && (size != 0 || !malloc_sysv)) {
1130 1.24 thorpej if (malloc_xmalloc)
1131 1.24 thorpej wrterror("out of memory.\n");
1132 1.24 thorpej errno = ENOMEM;
1133 1.24 thorpej }
1134 1.17 tls return (r);
1135 1.17 tls }
1136 1.17 tls
1137 1.9 christos void
1138 1.17 tls free(void *ptr)
1139 1.1 cgd {
1140 1.17 tls THREAD_LOCK();
1141 1.17 tls malloc_func = " in free():";
1142 1.17 tls if (malloc_active++) {
1143 1.17 tls wrtwarning("recursive call.\n");
1144 1.17 tls malloc_active--;
1145 1.38 christos THREAD_UNLOCK();
1146 1.17 tls return;
1147 1.17 tls }
1148 1.42 itojun if (!malloc_started)
1149 1.42 itojun malloc_init();
1150 1.42 itojun ifree(ptr);
1151 1.42 itojun UTRACE(ptr, 0, 0);
1152 1.17 tls malloc_active--;
1153 1.17 tls THREAD_UNLOCK();
1154 1.17 tls return;
1155 1.17 tls }
1156 1.17 tls
1157 1.17 tls void *
1158 1.17 tls realloc(void *ptr, size_t size)
1159 1.17 tls {
1160 1.43 junyoung void *r;
1161 1.17 tls
1162 1.17 tls THREAD_LOCK();
1163 1.17 tls malloc_func = " in realloc():";
1164 1.17 tls if (malloc_active++) {
1165 1.17 tls wrtwarning("recursive call.\n");
1166 1.17 tls malloc_active--;
1167 1.40 chris THREAD_UNLOCK();
1168 1.43 junyoung return (NULL);
1169 1.17 tls }
1170 1.17 tls if (!malloc_started)
1171 1.17 tls malloc_init();
1172 1.17 tls if (malloc_sysv && !size) {
1173 1.17 tls ifree(ptr);
1174 1.43 junyoung r = NULL;
1175 1.17 tls } else if (!ptr) {
1176 1.17 tls r = imalloc(size);
1177 1.17 tls } else {
1178 1.17 tls r = irealloc(ptr, size);
1179 1.17 tls }
1180 1.17 tls UTRACE(ptr, size, r);
1181 1.17 tls malloc_active--;
1182 1.17 tls THREAD_UNLOCK();
1183 1.26 kleink if (r == NULL && (size != 0 || !malloc_sysv)) {
1184 1.24 thorpej if (malloc_xmalloc)
1185 1.24 thorpej wrterror("out of memory.\n");
1186 1.24 thorpej errno = ENOMEM;
1187 1.24 thorpej }
1188 1.17 tls return (r);
1189 1.1 cgd }
1190