mksh/lalloc.c

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#include "sh.h"
__RCSID("$MirOS: src/bin/mksh/lalloc.c,v 1.9 2009/04/07 18:56:51 tg Exp $");
/* build with CPPFLAGS+= -DUSE_REALLOC_MALLOC=0 on ancient systems */
#if defined(USE_REALLOC_MALLOC) && (USE_REALLOC_MALLOC == 0)
#define remalloc(p,n) ((p) == NULL ? malloc(n) : realloc((p), (n)))
#else
#define remalloc(p,n) realloc((p), (n))
#endif
static ALLOC_ITEM *findptr(ALLOC_ITEM **, char *, Area *);
void
ainit(Area *ap)
{
/* area pointer is an ALLOC_ITEM, just the head of the list */
ap->next = NULL;
}
static ALLOC_ITEM *
findptr(ALLOC_ITEM **lpp, char *ptr, Area *ap)
{
/* get address of ALLOC_ITEM from user item */
*lpp = (ALLOC_ITEM *)(ptr - ALLOC_SIZE);
/* search for allocation item in group list */
while (ap->next != *lpp)
if ((ap = ap->next) == NULL)
internal_errorf("rogue pointer %p", ptr);
return (ap);
}
void *
aresize(void *ptr, size_t numb, Area *ap)
{
ALLOC_ITEM *lp = NULL;
/* resizing (true) or newly allocating? */
if (ptr != NULL) {
ALLOC_ITEM *pp;
pp = findptr(&lp, ptr, ap);
pp->next = lp->next;
}
if ((numb >= SIZE_MAX - ALLOC_SIZE) ||
(lp = remalloc(lp, numb + ALLOC_SIZE)) == NULL)
internal_errorf("cannot allocate %lu data bytes",
(unsigned long)numb);
/* this only works because Area is an ALLOC_ITEM */
lp->next = ap->next;
ap->next = lp;
/* return user item address */
return ((char *)lp + ALLOC_SIZE);
}
void
afree(void *ptr, Area *ap)
{
if (ptr != NULL) {
ALLOC_ITEM *lp, *pp;
pp = findptr(&lp, ptr, ap);
/* unhook */
pp->next = lp->next;
/* now free ALLOC_ITEM */
free(lp);
}
}
void
afreeall(Area *ap)
{
ALLOC_ITEM *lp;
/* traverse group (linked list) */
while ((lp = ap->next) != NULL) {
/* make next ALLOC_ITEM head of list */
ap->next = lp->next;
/* free old head */
free(lp);
}
}