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author | Jakub Jelinek <jakub@redhat.com> | 2005-04-27 11:31:41 +0000 |
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committer | Jakub Jelinek <jakub@redhat.com> | 2005-04-27 11:31:41 +0000 |
commit | 35278cc7d7fe81e01bb092e76b775c169e7e85f6 (patch) | |
tree | 6ec42ab959998df5c0182183807ee2b9efc4cc91 /malloc/hooks.c | |
parent | 536db0d3b5efac042be3bf1d6f99f9c418f76255 (diff) | |
download | glibc-35278cc7d7fe81e01bb092e76b775c169e7e85f6.tar glibc-35278cc7d7fe81e01bb092e76b775c169e7e85f6.tar.gz glibc-35278cc7d7fe81e01bb092e76b775c169e7e85f6.tar.bz2 glibc-35278cc7d7fe81e01bb092e76b775c169e7e85f6.zip |
Updated to fedora-glibc-20050427T1043
Diffstat (limited to 'malloc/hooks.c')
-rw-r--r-- | malloc/hooks.c | 45 |
1 files changed, 37 insertions, 8 deletions
diff --git a/malloc/hooks.c b/malloc/hooks.c index a5c97f3133..0f8f274e38 100644 --- a/malloc/hooks.c +++ b/malloc/hooks.c @@ -1,5 +1,5 @@ /* Malloc implementation for multiple threads without lock contention. - Copyright (C) 2001, 2002, 2003, 2004 Free Software Foundation, Inc. + Copyright (C) 2001, 2002, 2003, 2004, 2005 Free Software Foundation, Inc. This file is part of the GNU C Library. Contributed by Wolfram Gloger <wg@malloc.de>, 2001. @@ -146,9 +146,9 @@ mem2mem_check(ptr, sz) Void_t *ptr; size_t sz; static mchunkptr internal_function #if __STD_C -mem2chunk_check(Void_t* mem) +mem2chunk_check(Void_t* mem, unsigned char **magic_p) #else -mem2chunk_check(mem) Void_t* mem; +mem2chunk_check(mem, magic_p) Void_t* mem; unsigned char **magic_p; #endif { mchunkptr p; @@ -173,7 +173,6 @@ mem2chunk_check(mem) Void_t* mem; for(sz += SIZE_SZ-1; (c = ((unsigned char*)p)[sz]) != magic; sz -= c) { if(c<=0 || sz<(c+2*SIZE_SZ)) return NULL; } - ((unsigned char*)p)[sz] ^= 0xFF; } else { unsigned long offset, page_mask = malloc_getpagesize-1; @@ -193,8 +192,10 @@ mem2chunk_check(mem) Void_t* mem; for(sz -= 1; (c = ((unsigned char*)p)[sz]) != magic; sz -= c) { if(c<=0 || sz<(c+2*SIZE_SZ)) return NULL; } - ((unsigned char*)p)[sz] ^= 0xFF; } + ((unsigned char*)p)[sz] ^= 0xFF; + if (magic_p) + *magic_p = (unsigned char *)p + sz; return p; } @@ -232,7 +233,11 @@ top_check() sbrk_size = front_misalign + mp_.top_pad + MINSIZE; sbrk_size += pagesz - ((unsigned long)(brk + sbrk_size) & (pagesz - 1)); new_brk = (char*)(MORECORE (sbrk_size)); - if (new_brk == (char*)(MORECORE_FAILURE)) return -1; + if (new_brk == (char*)(MORECORE_FAILURE)) + { + MALLOC_FAILURE_ACTION; + return -1; + } /* Call the `morecore' hook if necessary. */ if (__after_morecore_hook) (*__after_morecore_hook) (); @@ -253,6 +258,11 @@ malloc_check(sz, caller) size_t sz; const Void_t *caller; { Void_t *victim; + if (sz+1 == 0) { + MALLOC_FAILURE_ACTION; + return NULL; + } + (void)mutex_lock(&main_arena.mutex); victim = (top_check() >= 0) ? _int_malloc(&main_arena, sz+1) : NULL; (void)mutex_unlock(&main_arena.mutex); @@ -270,7 +280,7 @@ free_check(mem, caller) Void_t* mem; const Void_t *caller; if(!mem) return; (void)mutex_lock(&main_arena.mutex); - p = mem2chunk_check(mem); + p = mem2chunk_check(mem, NULL); if(!p) { (void)mutex_unlock(&main_arena.mutex); @@ -302,10 +312,19 @@ realloc_check(oldmem, bytes, caller) mchunkptr oldp; INTERNAL_SIZE_T nb, oldsize; Void_t* newmem = 0; + unsigned char *magic_p; + if (bytes+1 == 0) { + MALLOC_FAILURE_ACTION; + return NULL; + } if (oldmem == 0) return malloc_check(bytes, NULL); + if (bytes == 0) { + free_check (oldmem, NULL); + return NULL; + } (void)mutex_lock(&main_arena.mutex); - oldp = mem2chunk_check(oldmem); + oldp = mem2chunk_check(oldmem, &magic_p); (void)mutex_unlock(&main_arena.mutex); if(!oldp) { malloc_printerr(check_action, "realloc(): invalid pointer", oldmem); @@ -357,6 +376,12 @@ realloc_check(oldmem, bytes, caller) #if HAVE_MMAP } #endif + + /* mem2chunk_check changed the magic byte in the old chunk. + If newmem is NULL, then the old chunk will still be used though, + so we need to invert that change here. */ + if (newmem == NULL) *magic_p ^= 0xFF; + (void)mutex_unlock(&main_arena.mutex); return mem2mem_check(newmem, bytes); @@ -376,6 +401,10 @@ memalign_check(alignment, bytes, caller) if (alignment <= MALLOC_ALIGNMENT) return malloc_check(bytes, NULL); if (alignment < MINSIZE) alignment = MINSIZE; + if (bytes+1 == 0) { + MALLOC_FAILURE_ACTION; + return NULL; + } checked_request2size(bytes+1, nb); (void)mutex_lock(&main_arena.mutex); mem = (top_check() >= 0) ? _int_memalign(&main_arena, alignment, bytes+1) : |