atomic_fetchadd_32
oldval = atomic_fetchadd_32(&curthread->fsigblock, -SIGFASTBLOCK_INC);
oldval = atomic_fetchadd_32(&fsigblock, -SIGFASTBLOCK_INC);
#define atomic_fetchadd_ptr atomic_fetchadd_32
#define atomic_fetchadd_int atomic_fetchadd_32
return (atomic_fetchadd_32((volatile uint32_t *)p, val));
#define atomic_fetchadd_int atomic_fetchadd_32
io->scsiio.tag_num = atomic_fetchadd_32(&softc->cur_tag_num, 1);
atomic_fetchadd_32(&cs->cs_target_transfer_tag, 1);
atomic_fetchadd_32(&cs->cs_target_transfer_tag, 1);
return (atomic_fetchadd_32(target, delta) + delta);
value = atomic_fetchadd_32(&priv->tls_rx.num_resources, 1U);
#define ocs_atomic_add_return(a, v) atomic_fetchadd_32(a, v)
#define ocs_atomic_sub_return(a, v) atomic_fetchadd_32(a, (-(v)))
inflight = atomic_fetchadd_32(qr->qr_inflight, 1) + 1;
#define MTW_CMDQ_GET(c) (atomic_fetchadd_32((c), 1) & MTW_CMDQ_MASQ)
#define RUN_CMDQ_GET(c) (atomic_fetchadd_32((c), 1) & RUN_CMDQ_MASQ)
sp->wq_index = atomic_fetchadd_32(&splice_index, 1) % splice_num_wq;
seq = atomic_fetchadd_32(&kc->kc_local_seqnumber, 1);
seq = atomic_fetchadd_32(&kc->kc_local_seqnumber, 1);
seq = atomic_fetchadd_32(&kc->kc_local_seqnumber, 1);
seq = atomic_fetchadd_32(&kc->kc_local_seqnumber, 1);
p = atomic_fetchadd_32(&sc->sc_seq, 1);
ostate = atomic_fetchadd_32(&vap->iv_com_state, IEEE80211_COM_REF_ADD);
ostate = atomic_fetchadd_32(&vap->iv_com_state, -IEEE80211_COM_REF_ADD);
header->flow_seq = htonl(atomic_fetchadd_32(&fe->flow_seq,
header->seq_num = htonl(atomic_fetchadd_32(&fe->flow9_seq, 1));
#define atomic_fetchadd_int atomic_fetchadd_32
call_msg.rm_xid = atomic_fetchadd_32(&rpc_xid, 1);
xid = atomic_fetchadd_32(&rpc_xid, 1);
.cr_xid = atomic_fetchadd_32(&nl->nl_xid, 1),
cr->cr_xid = atomic_fetchadd_32(&nl->nl_xid, 1);
cookie = atomic_fetchadd_32(&inotify_rename_cookie, 1); \