putnextctl1
(void) putnextctl1(strvp2wq(SOTOV(so)), M_FLUSH, FLUSHRW);
(void) putnextctl1(strvp2wq(SOTOV(so)), M_FLUSH, FLUSHRW);
(void) putnextctl1(strvp2wq(SOTOV(so)), M_FLUSH, FLUSHW);
(void) putnextctl1(RD(q), M_ERROR, EPROTO);
(void) putnextctl1(RD(q), M_ERROR, EPROTO);
(void) putnextctl1(RD(q), M_ERROR, EPROTO);
(void) putnextctl1(connp->conn_rq, M_FLUSH, FLUSHRW);
(void) putnextctl1(q, M_FLUSH, FLUSHR);
(void) putnextctl1(q, M_ERROR, EPROTO);
!putnextctl1(connp->conn_rq,
!putnextctl1(connp->conn_rq, M_PCSIG,
(void) putnextctl1(q, M_FLUSH, FLUSHRW);
(void) putnextctl1(connp->conn_rq, M_FLUSH, FLUSHRW);
(void) putnextctl1(RD(wq), M_FLUSH, FLUSHRW);
(void) putnextctl1(q, M_FLUSH, FLUSHR);
(void) putnextctl1(q, M_FLUSH, FLUSHW);
(void) putnextctl1(q, M_FLUSH, FLUSHW);
(void) putnextctl1(q, mtype, sig);
(void) putnextctl1(WR(q), M_FLUSH, mode);
(void) putnextctl1(q, M_FLUSH, FLUSHW);
(void) putnextctl1(q, mtype, sig);
(void) putnextctl1(q, M_FLUSH, FLUSHR);
(void) putnextctl1(RD(q), M_FLUSH, FLUSHW);
(void) putnextctl1(q, M_FLUSH, FLUSHW);
(void) putnextctl1(q, M_FLUSH, FLUSHRW);
(void) putnextctl1(RD(q), M_FLUSH, FLUSHRW);
(void) putnextctl1(RD(q), M_CTL, PPPCTL_OERROR);
(void) putnextctl1(RD(q), M_CTL, PPPCTL_OERROR);
(void) putnextctl1(q, M_CTL, PPPCTL_IERROR);
(void) putnextctl1(q, M_CTL, PPPCTL_IERROR);
(void) putnextctl1(q, M_CTL, PPPCTL_IERROR);
(void) putnextctl1(q, M_CTL, PPPCTL_IERROR);
(void) putnextctl1(q, M_CTL, PPPCTL_IERROR);
(void) putnextctl1(q, M_CTL, PPPCTL_IERROR);
(void) putnextctl1(q, M_CTL, PPPCTL_IERROR);
(void) putnextctl1(RD(q), M_CTL, PPPCTL_OERROR);
(void) putnextctl1(RD(q), M_CTL, PPPCTL_OERROR);
if (putnextctl1(q, M_PCSIG, sig) == 0) {
if (putnextctl1(q, M_FLUSH, FLUSHR) == 0) {
(void) putnextctl1(RD(q), M_SIG, SIGWINCH);
(void) putnextctl1(q, M_SIG, SIGWINCH);
(void) putnextctl1(q, M_FLUSH, FLUSHW);
(void) putnextctl1(RD(wq), M_FLUSH, FLUSHRW);
(void) putnextctl1(acc_ep->te_rq, M_FLUSH, FLUSHR);
(void) putnextctl1(RD(wq), M_FLUSH, FLUSHRW);
(void) putnextctl1(peer_tep->te_rq, M_FLUSH, FLUSHRW);
(void) putnextctl1(tep->te_rq, M_FLUSH, FLUSHRW);
(void) putnextctl1(tep->te_rq, M_ERROR, error);
(void) putnextctl1(q, M_FLUSH, FLUSHR);
(void) putnextctl1(RD(q), M_FLUSH, FLUSHR);
(void) putnextctl1(RD(q), M_FLUSH, FLUSHR);
(void) putnextctl1(RD(q), M_PCSIG, SIGWINCH);
(void) putnextctl1(RD(q), M_FLUSH, FLUSHR);
(void) putnextctl1(RD(q), M_FLUSH, FLUSHR);
(void) putnextctl1(RD(q), M_PCSIG, SIGWINCH);
(void) putnextctl1(q, M_FLUSH, FLUSHR);
(void) putnextctl1(q, M_FLUSH, FLUSHR);
(void) putnextctl1(q, M_FLUSH, FLUSHR);
if (putnextctl1(stp->sd_wrq, M_FLUSH, (int)arg)) {
extern int putnextctl1(queue_t *, int, int);
(void) putnextctl1(WR(q), M_CTL, MC_SERVICEIMM);
(void) putnextctl1(q, M_CTL, MC_SERVICEDEF);
(void) putnextctl1(q, M_FLUSH, FLUSHR);
(void) putnextctl1(q, M_ERROR, m_error);
(void) putnextctl1(q, M_ERROR, m_error);
(void) putnextctl1(RD(wq), M_ERROR, EPROTO);
(void) putnextctl1(RD(wq), M_ERROR, EPROTO);
(void) putnextctl1(RD(wq), M_ERROR, ECOMM);