* allocate lock group attribute and group for tcp pcb mutexes
*/
pcbinfo->mtx_grp_attr = lck_grp_attr_alloc_init();
- lck_grp_attr_setdefault(pcbinfo->mtx_grp_attr);
pcbinfo->mtx_grp = lck_grp_alloc_init("tcppcb", pcbinfo->mtx_grp_attr);
/*
* allocate the lock attribute for tcp pcb mutexes
*/
pcbinfo->mtx_attr = lck_attr_alloc_init();
- lck_attr_setdefault(pcbinfo->mtx_attr);
if ((pcbinfo->mtx = lck_rw_alloc_init(pcbinfo->mtx_grp, pcbinfo->mtx_attr)) == NULL) {
printf("tcp_init: mutex not alloced!\n");
int lr;
{
int lr_saved;
-#ifdef __ppc__
- if (lr == 0) {
- __asm__ volatile("mflr %0" : "=r" (lr_saved));
- }
+ if (lr == 0)
+ lr_saved = (unsigned int) __builtin_return_address(0);
else lr_saved = lr;
-#endif
if (so->so_pcb) {
lck_mtx_lock(((struct inpcb *)so->so_pcb)->inpcb_mtx);
if (refcount)
so->so_usecount++;
- so->reserved3 = (void *)lr_saved;
+ so->lock_lr[so->next_lock_lr] = (u_int32_t *)lr_saved;
+ so->next_lock_lr = (so->next_lock_lr+1) % SO_LCKDBG_MAX;
return (0);
}
int lr;
{
int lr_saved;
-#ifdef __ppc__
- if (lr == 0) {
- __asm__ volatile("mflr %0" : "=r" (lr_saved));
- }
+ if (lr == 0)
+ lr_saved = (unsigned int) __builtin_return_address(0);
else lr_saved = lr;
-#endif
#ifdef MORE_TCPLOCK_DEBUG
printf("tcp_unlock: so=%x sopcb=%x lock=%x ref=%x lr=%x\n",
if (so->so_usecount < 0)
panic("tcp_unlock: so=%x usecount=%x\n", so, so->so_usecount);
- if (so->so_pcb == NULL) {
+ if (so->so_pcb == NULL)
panic("tcp_unlock: so=%x NO PCB usecount=%x lr=%x\n", so, so->so_usecount, lr_saved);
- lck_mtx_unlock(so->so_proto->pr_domain->dom_mtx);
- }
else {
lck_mtx_assert(((struct inpcb *)so->so_pcb)->inpcb_mtx, LCK_MTX_ASSERT_OWNED);
+ so->unlock_lr[so->next_unlock_lr] = (u_int *)lr_saved;
+ so->next_unlock_lr = (so->next_unlock_lr+1) % SO_LCKDBG_MAX;
lck_mtx_unlock(((struct inpcb *)so->so_pcb)->inpcb_mtx);
}
- so->reserved4 = (void *)lr_saved;
return (0);
}