// SPDX-License-Identifier: GPL-2.0-or-later /****************************************************************************** * * (C)Copyright 1998,1999 SysKonnect, * a business unit of Schneider & Koch & Co. Datensysteme GmbH. * * See the file "skfddi.c" for further information. * * The information in this file is provided "AS IS" without warranty. *
******************************************************************************/
time = smt_get_time();
count = ((time - smc->sm.last_tok_time[mac_index]) *
100)/TICKS_PER_SECOND;
/* * Only when ring is up we will have a token count. The * flag is unfortunately a single instance value. This * doesn't matter now, because we currently have only * one MAC instance.
*/ if (smc->hw.mac_ring_is_up){
smc->mib.m[mac_index].fddiMACToken_Ct += count;
}
/* Remember current time */
smc->sm.last_tok_time[mac_index] = time;
} #endif
/*ARGSUSED1*/ void smt_event(struct s_smc *smc, int event)
{
u_long time ; #ifndef SMT_REAL_TOKEN_CT int i ; #endif
if (smc->sm.please_reconnect) {
smc->sm.please_reconnect -- ; if (smc->sm.please_reconnect == 0) { /* Counted down */
queue_event(smc,EVENT_ECM,EC_CONNECT) ;
}
}
if (time - smc->sm.smt_last_lem >= TICKS_PER_SECOND*8) { /* * Use 8 sec. for the time intervall, it simplifies the * LER estimation.
*/ struct fddi_mib_m *mib ;
u_long upper ;
u_long lower ; int cond ; int port; struct s_phy *phy ; /* * calculate LEM bit error rate
*/
sm_lem_evaluate(smc) ;
smc->sm.smt_last_lem = time ;
/* If ratio is more than 5 in 8 seconds * Set the condition.
*/
smt_srf_event(smc,SMT_COND_PORT_EB_ERROR,
(int) (INDEX_PORT+ phy->np) ,cond) ;
/* * set old values
*/
phy->mib->fddiPORTOldEBError_Ct =
phy->mib->fddiPORTEBError_Ct ;
}
#endif/* no SLIM_SMT */
}
#ifndef SLIM_SMT
if (time - smc->sm.smt_last_notify >= (u_long)
(smc->mib.fddiSMTTT_Notify * TICKS_PER_SECOND) ) { /* * we can either send an announcement or a request * a request will trigger a reply so that we can update * our dna * note: same tid must be used until reply is received
*/ if (!smc->sm.pend[SMT_TID_NIF])
smc->sm.pend[SMT_TID_NIF] = smt_get_tid(smc) ;
smt_send_nif(smc,&fddi_broadcast, FC_SMT_NSA,
smc->sm.pend[SMT_TID_NIF], SMT_REQUEST,0) ;
smc->sm.smt_last_notify = time ;
}
/* * check timer
*/ if (smc->sm.smt_tvu &&
time - smc->sm.smt_tvu > 228*TICKS_PER_SECOND) {
DB_SMT("SMT : UNA expired");
smc->sm.smt_tvu = 0 ;
if (!is_equal(&smc->mib.m[MAC0].fddiMACUpstreamNbr,
&SMT_Unknown)){ /* Do not update unknown address */
smc->mib.m[MAC0].fddiMACOldUpstreamNbr=
smc->mib.m[MAC0].fddiMACUpstreamNbr ;
}
smc->mib.m[MAC0].fddiMACUpstreamNbr = SMT_Unknown ;
smc->mib.m[MAC0].fddiMACUNDA_Flag = FALSE ; /* * Make sure the fddiMACUNDA_Flag = FALSE is * included in the SRF so we don't generate * a separate SRF for the deassertion of this * condition
*/
update_dac(smc,0) ;
smt_srf_event(smc, SMT_EVENT_MAC_NEIGHBOR_CHANGE,
INDEX_MAC,0) ;
} if (smc->sm.smt_tvd &&
time - smc->sm.smt_tvd > 228*TICKS_PER_SECOND) {
DB_SMT("SMT : DNA expired");
smc->sm.smt_tvd = 0 ; if (!is_equal(&smc->mib.m[MAC0].fddiMACDownstreamNbr,
&SMT_Unknown)){ /* Do not update unknown address */
smc->mib.m[MAC0].fddiMACOldDownstreamNbr=
smc->mib.m[MAC0].fddiMACDownstreamNbr ;
}
smc->mib.m[MAC0].fddiMACDownstreamNbr = SMT_Unknown ;
smt_srf_event(smc, SMT_EVENT_MAC_NEIGHBOR_CHANGE,
INDEX_MAC,0) ;
}
#endif/* no SLIM_SMT */
#ifndef SMT_REAL_TOKEN_CT /* * Token counter emulation section. If hardware supports the token * count, the token counter will be updated in mac_update_counter.
*/ for (i = MAC0; i < NUMMACS; i++ ){ if (time - smc->sm.last_tok_time[i] > 2*TICKS_PER_SECOND ){
smt_emulate_token_ct( smc, i );
}
} #endif
/* * ignore any packet with NSA and A-indicator set
*/ if ( (fs & A_INDICATOR) && m_fc(mb) == FC_SMT_NSA) {
DB_SMT("SMT : ignoring NSA with A-indicator set from %pM",
&sm->smt_source);
smt_free_mbuf(smc,mb) ; return ;
}
/* * check SMT version
*/ switch (sm->smt_class) { case SMT_NIF : case SMT_SIF_CONFIG : case SMT_SIF_OPER : case SMT_ECF : if (sm->smt_version != SMT_VID)
illegal = 1; break ; default : if (sm->smt_version != SMT_VID_2)
illegal = 1; break ;
} if (illegal) {
DB_SMT("SMT : version = %d, dest = %pM",
sm->smt_version, &sm->smt_source);
smt_send_rdf(smc,mb,m_fc(mb),SMT_RDF_VERSION,local) ;
smt_free_mbuf(smc,mb) ; return ;
} if ((sm->smt_len > mb->sm_len - sizeof(struct smt_header)) ||
((sm->smt_len & 3) && (sm->smt_class != SMT_ECF))) {
DB_SMT("SMT: info length error, len = %d", sm->smt_len);
smt_send_rdf(smc,mb,m_fc(mb),SMT_RDF_LENGTH,local) ;
smt_free_mbuf(smc,mb) ; return ;
} switch (sm->smt_class) { case SMT_NIF : if (smt_check_para(smc,sm,plist_nif)) {
DB_SMT("SMT: NIF with para problem, ignoring"); break ;
} switch (sm->smt_type) { case SMT_ANNOUNCE : case SMT_REQUEST : if (!(fs & C_INDICATOR) && m_fc(mb) == FC_SMT_NSA
&& is_broadcast(&sm->smt_dest)) { struct smt_p_state *st ;
/* set my UNA */ if (!is_equal(
&smc->mib.m[MAC0].fddiMACUpstreamNbr,
&sm->smt_source)) {
DB_SMT("SMT : updated my UNA = %pM",
&sm->smt_source); if (!is_equal(&smc->mib.m[MAC0].
fddiMACUpstreamNbr,&SMT_Unknown)){ /* Do not update unknown address */
smc->mib.m[MAC0].fddiMACOldUpstreamNbr=
smc->mib.m[MAC0].fddiMACUpstreamNbr ;
}
smc->mib.m[MAC0].fddiMACUpstreamNbr =
sm->smt_source ;
smt_srf_event(smc,
SMT_EVENT_MAC_NEIGHBOR_CHANGE,
INDEX_MAC,0) ;
smt_echo_test(smc,0) ;
}
smc->sm.smt_tvu = smt_get_time() ;
st = (struct smt_p_state *)
sm_to_para(smc,sm,SMT_P_STATE) ; if (st) {
smc->mib.m[MAC0].fddiMACUNDA_Flag =
(st->st_dupl_addr & SMT_ST_MY_DUPA) ? TRUE : FALSE ;
update_dac(smc,1) ;
}
} if ((sm->smt_type == SMT_REQUEST) &&
is_individual(&sm->smt_source) &&
((!(fs & A_INDICATOR) && m_fc(mb) == FC_SMT_NSA) ||
(m_fc(mb) != FC_SMT_NSA))) {
DB_SMT("SMT : replying to NIF request %pM",
&sm->smt_source);
smt_send_nif(smc,&sm->smt_source,
FC_SMT_INFO,
sm->smt_tid,
SMT_REPLY,local) ;
} break ; case SMT_REPLY :
DB_SMT("SMT : received NIF response from %pM",
&sm->smt_source); if (fs & A_INDICATOR) {
smc->sm.pend[SMT_TID_NIF] = 0 ;
DB_SMT("SMT : duplicate address");
smc->mib.m[MAC0].fddiMACDupAddressTest =
DA_FAILED ;
smc->r.dup_addr_test = DA_FAILED ;
queue_event(smc,EVENT_RMT,RM_DUP_ADDR) ;
smc->mib.m[MAC0].fddiMACDA_Flag = TRUE ;
update_dac(smc,1) ; break ;
} if (sm->smt_tid == smc->sm.pend[SMT_TID_NIF]) {
smc->sm.pend[SMT_TID_NIF] = 0 ; /* set my DNA */ if (!is_equal(
&smc->mib.m[MAC0].fddiMACDownstreamNbr,
&sm->smt_source)) {
DB_SMT("SMT : updated my DNA"); if (!is_equal(&smc->mib.m[MAC0].
fddiMACDownstreamNbr, &SMT_Unknown)){ /* Do not update unknown address */
smc->mib.m[MAC0].fddiMACOldDownstreamNbr =
smc->mib.m[MAC0].fddiMACDownstreamNbr ;
}
smc->mib.m[MAC0].fddiMACDownstreamNbr =
sm->smt_source ;
smt_srf_event(smc,
SMT_EVENT_MAC_NEIGHBOR_CHANGE,
INDEX_MAC,0) ;
smt_echo_test(smc,1) ;
}
smc->mib.m[MAC0].fddiMACDA_Flag = FALSE ;
update_dac(smc,1) ;
smc->sm.smt_tvd = smt_get_time() ;
smc->mib.m[MAC0].fddiMACDupAddressTest =
DA_PASSED ; if (smc->r.dup_addr_test != DA_PASSED) {
smc->r.dup_addr_test = DA_PASSED ;
queue_event(smc,EVENT_RMT,RM_DUP_ADDR) ;
}
} elseif (sm->smt_tid ==
smc->sm.pend[SMT_TID_NIF_TEST]) {
DB_SMT("SMT : NIF test TID ok");
} else {
DB_SMT("SMT : expected TID %lx, got %x",
smc->sm.pend[SMT_TID_NIF], sm->smt_tid);
} break ; default :
illegal = 2 ; break ;
} break ; case SMT_SIF_CONFIG : /* station information */ if (sm->smt_type != SMT_REQUEST) break ;
DB_SMT("SMT : replying to SIF Config request from %pM",
&sm->smt_source);
smt_send_sif_config(smc,&sm->smt_source,sm->smt_tid,local) ; break ; case SMT_SIF_OPER : /* station information */ if (sm->smt_type != SMT_REQUEST) break ;
DB_SMT("SMT : replying to SIF Operation request from %pM",
&sm->smt_source);
smt_send_sif_operation(smc,&sm->smt_source,sm->smt_tid,local) ; break ; case SMT_ECF : /* echo frame */ switch (sm->smt_type) { case SMT_REPLY :
smc->mib.priv.fddiPRIVECF_Reply_Rx++ ;
DB_SMT("SMT: received ECF reply from %pM",
&sm->smt_source); if (sm_to_para(smc,sm,SMT_P_ECHODATA) == NULL) {
DB_SMT("SMT: ECHODATA missing"); break ;
} if (sm->smt_tid == smc->sm.pend[SMT_TID_ECF]) {
DB_SMT("SMT : ECF test TID ok");
} elseif (sm->smt_tid == smc->sm.pend[SMT_TID_ECF_UNA]) {
DB_SMT("SMT : ECF test UNA ok");
} elseif (sm->smt_tid == smc->sm.pend[SMT_TID_ECF_DNA]) {
DB_SMT("SMT : ECF test DNA ok");
} else {
DB_SMT("SMT : expected TID %lx, got %x",
smc->sm.pend[SMT_TID_ECF],
sm->smt_tid);
} break ; case SMT_REQUEST :
smc->mib.priv.fddiPRIVECF_Req_Rx++ ;
{ if (sm->smt_len && !sm_to_para(smc,sm,SMT_P_ECHODATA)) {
DB_SMT("SMT: ECF with para problem,sending RDF");
smt_send_rdf(smc,mb,m_fc(mb),SMT_RDF_LENGTH,
local) ; break ;
}
DB_SMT("SMT - sending ECF reply to %pM",
&sm->smt_source);
#ifdef SBA
DB_SBAN(2, "SBA: RAF frame received") ;
sba_raf_received_pack(smc,sm,fs) ; #endif break ; case SMT_RDF : /* request denied */
smc->mib.priv.fddiPRIVRDF_Rx++ ; break ; case SMT_ESF : /* extended service - not supported */ if (sm->smt_type == SMT_REQUEST) {
DB_SMT("SMT - received ESF, sending RDF");
smt_send_rdf(smc,mb,m_fc(mb),SMT_RDF_CLASS,local) ;
} break ; case SMT_PMF_GET : case SMT_PMF_SET : if (sm->smt_type != SMT_REQUEST) break ; /* update statistics */ if (sm->smt_class == SMT_PMF_GET)
smc->mib.priv.fddiPRIVPMF_Get_Rx++ ; else
smc->mib.priv.fddiPRIVPMF_Set_Rx++ ; /* * ignore PMF SET with I/G set
*/ if ((sm->smt_class == SMT_PMF_SET) &&
!is_individual(&sm->smt_dest)) {
DB_SMT("SMT: ignoring PMF-SET with I/G set"); break ;
}
smt_pmf_received_pack(smc,mb, local) ; break ; case SMT_SRF :
dump_smt(smc,sm,"SRF received") ; break ; default : if (sm->smt_type != SMT_REQUEST) break ; /* * For frames with unknown class: * we need to send a RDF frame according to 8.1.3.1.1, * only if it is a REQUEST.
*/
DB_SMT("SMT : class = %d, send RDF to %pM",
sm->smt_class, &sm->smt_source);
/* * send SMT frame * set source address * set station ID * send frame
*/ void smt_send_frame(struct s_smc *smc, SMbuf *mb, int fc, int local) /* SMbuf *mb; buffer to send */ /* int fc; FC value */
{ struct smt_header *sm ;
smt_swap_para(sm,(int) mb->sm_len,0) ; /* swap para & header */
hwm_conv_can(smc,(char *)sm,12) ; /* convert SA and DA */
smc->mib.m[MAC0].fddiMACSMTTransmit_Ct++ ;
smt_send_mbuf(smc,mb,local ? FC_SMT_LOC : fc) ;
}
/* * generate and send RDF
*/ staticvoid smt_send_rdf(struct s_smc *smc, SMbuf *rej, int fc, int reason, int local) /* SMbuf *rej; mbuf of offending frame */ /* int fc; FC of denied frame */ /* int reason; reason code */
{
SMbuf *mb ; struct smt_header *sm ; /* header of offending frame */ struct smt_rdf *rdf ; int len ; int frame_len ;
sm = smtod(rej,struct smt_header *) ; if (sm->smt_type != SMT_REQUEST) return ;
DB_SMT("SMT: sending RDF to %pM,reason = 0x%x",
&sm->smt_source, reason);
/* * note: get framelength from MAC length, NOT from SMT header * smt header length is included in sm_len
*/
frame_len = rej->sm_len ;
if (!(mb=smt_build_frame(smc,SMT_RDF,SMT_REPLY,sizeof(struct smt_rdf)))) return ;
rdf = smtod(mb,struct smt_rdf *) ;
rdf->smt.smt_tid = sm->smt_tid ; /* use TID from sm */
rdf->smt.smt_dest = sm->smt_source ; /* set dest = source */
smt_fill_echo(smc,&ecf->ec_echo,tid,len) ; /* set ECHO */
ecf->smt.smt_dest = *dest ; /* destination address */
ecf->smt.smt_tid = tid ; /* transaction ID */
smc->mib.priv.fddiPRIVECF_Req_Tx++ ;
smt_send_frame(smc,mb,fc,0) ;
}
/* * generate and send SIF config response
*/
staticvoid smt_send_sif_config(struct s_smc *smc, struct fddi_addr *dest,
u_long tid, int local) /* struct fddi_addr *dest; dest address */ /* u_long tid; transaction id */
{ struct smt_sif_config *sif ;
SMbuf *mb ; int len ; if (!(mb = smt_build_frame(smc,SMT_SIF_CONFIG,SMT_REPLY,
SIZEOF_SMT_SIF_CONFIG))) return ;
sif = smtod(mb, struct smt_sif_config *) ;
smt_fill_timestamp(smc,&sif->ts) ; /* set time stamp */
smt_fill_sde(smc,&sif->sde) ; /* set station descriptor */
smt_fill_version(smc,&sif->version) ; /* set version information */
smt_fill_state(smc,&sif->state) ; /* set state information */
smt_fill_policy(smc,&sif->policy) ; /* set station policy */
smt_fill_latency(smc,&sif->latency); /* set station latency */
smt_fill_neighbor(smc,&sif->neighbor); /* set station neighbor */
smt_fill_setcount(smc,&sif->setcount) ; /* set count */
len = smt_fill_path(smc,&sif->path); /* set station path descriptor*/
sif->smt.smt_dest = *dest ; /* destination address */
sif->smt.smt_tid = tid ; /* transaction ID */
smt_add_frame_len(mb,len) ; /* adjust length fields */
dump_smt(smc,(struct smt_header *)sif,"SIF Configuration Reply") ;
smt_send_frame(smc,mb,FC_SMT_INFO,local) ;
}
/* * generate and send SIF operation response
*/
staticvoid smt_send_sif_operation(struct s_smc *smc, struct fddi_addr *dest,
u_long tid, int local) /* struct fddi_addr *dest; dest address */ /* u_long tid; transaction id */
{ struct smt_sif_operation *sif ;
SMbuf *mb ; int ports ; int i ;
if (!(mb = smt_build_frame(smc,SMT_SIF_OPER,SMT_REPLY,
struct_size(sif, lem, ports)))) return ;
sif = smtod(mb, typeof(sif));
smt_fill_timestamp(smc,&sif->ts) ; /* set time stamp */
smt_fill_mac_status(smc,&sif->status) ; /* set mac status */
smt_fill_mac_counter(smc,&sif->mc) ; /* set mac counter field */
smt_fill_mac_fnc(smc,&sif->fnc) ; /* set frame not copied counter */
smt_fill_manufacturer(smc,&sif->man) ; /* set manufacturer field */
smt_fill_user(smc,&sif->user) ; /* set user field */
smt_fill_setcount(smc,&sif->setcount) ; /* set count */ /* * set link error mon information
*/ if (ports == 1) {
smt_fill_lem(smc,sif->lem,PS) ;
} else { for (i = 0 ; i < ports ; i++) {
smt_fill_lem(smc,&sif->lem[i],i) ;
}
}
/* * fill values in station policy parameter
*/ staticvoid smt_fill_policy(struct s_smc *smc, struct smt_p_policy *policy)
{ int i ; const u_char *map ;
u_short in ;
u_short out ;
/* * MIB para 101b (fddiSMTConnectionPolicy) coding * is different from 0005 coding
*/ staticconst u_char ansi_weirdness[16] = {
0,7,5,3,8,1,6,4,9,10,2,11,12,13,14,15
} ;
SMTSETPARA(policy,SMT_P_POLICY) ;
out = 0 ;
in = smc->mib.fddiSMTConnectionPolicy ; for (i = 0, map = ansi_weirdness ; i < 16 ; i++) { if (in & 1)
out |= (1<<*map) ;
in >>= 1 ;
map++ ;
}
policy->pl_config = smc->mib.fddiSMTConfigPolicy ;
policy->pl_connect = out ;
}
/* * fill values in latency equivalent parameter
*/ staticvoid smt_fill_latency(struct s_smc *smc, struct smt_p_latency *latency)
{
SMTSETPARA(latency,SMT_P_LATENCY) ;
latency->lt_phyout_idx1 = phy_index(smc,0) ;
latency->lt_latency1 = 10 ; /* in octets (byte clock) */ /* * note: latency has two phy entries by definition * for a SAS, the 2nd one is null
*/ if (smc->s.sas == SMT_DAS) {
latency->lt_phyout_idx2 = phy_index(smc,1) ;
latency->lt_latency2 = 10 ; /* in octets (byte clock) */
} else {
latency->lt_phyout_idx2 = 0 ;
latency->lt_latency2 = 0 ;
}
}
/* * fill values in MAC neighbors parameter
*/ staticvoid smt_fill_neighbor(struct s_smc *smc, struct smt_p_neighbor *neighbor)
{
SMTSETPARA(neighbor,SMT_P_NEIGHBORS) ;
/* * fill echo data
*/ staticvoid smt_fill_echo(struct s_smc *smc, struct smt_p_echo *echo, u_long seed, int len)
{
u_char *p ;
SK_UNUSED(smc) ;
SMTSETPARA(echo,SMT_P_ECHODATA) ;
echo->para.p_len = len ; for (p = echo->ec_data ; len ; len--) {
*p++ = (u_char) seed ;
seed += 13 ;
}
}
/* * clear DNA and UNA * called from CFM if configuration changes
*/ staticvoid smt_clear_una_dna(struct s_smc *smc)
{
smc->mib.m[MAC0].fddiMACUpstreamNbr = SMT_Unknown ;
smc->mib.m[MAC0].fddiMACDownstreamNbr = SMT_Unknown ;
}
void smt_swap_para(struct smt_header *sm, int len, int direction) /* int direction; 0 encode 1 decode */
{ struct smt_para *pa ; conststruct smt_pdef *pd ; char *p ; int plen ; int type ; int i ;
/* printf("smt_swap_para sm %x len %d dir %d\n", sm,len,direction) ;
*/
smt_string_swap((char *)sm,SWAP_SMTHEADER,len) ;
/* swap args */
len -= sizeof(struct smt_header) ;
p = (char *) (sm + 1) ; while (len > 0) {
pa = (struct smt_para *) p ;
plen = pa->p_len ;
type = pa->p_type ;
pa->p_type = smt_swap_short(pa->p_type) ;
pa->p_len = smt_swap_short(pa->p_len) ; if (direction) {
plen = pa->p_len ;
type = pa->p_type ;
} /* * note: paras can have 0 length !
*/ if (plen < 0) break ;
plen += PARA_LEN ; for (i = N_SMT_PLEN, pd = smt_pdef; i ; i--,pd++) { if (pd->ptype == type) break ;
} if (i && pd->pswap) {
smt_string_swap(p+PARA_LEN,pd->pswap,len) ;
}
len -= plen ;
p += plen ;
}
}
/* * PMF actions
*/ int smt_action(struct s_smc *smc, intclass, int code, int index)
{ int event ; int port ;
DB_SMT("SMT: action %d code %d", class, code); switch(class) { case SMT_STATION_ACTION : switch(code) { case SMT_STATION_ACTION_CONNECT :
smc->mib.fddiSMTRemoteDisconnectFlag = FALSE ;
queue_event(smc,EVENT_ECM,EC_CONNECT) ; break ; case SMT_STATION_ACTION_DISCONNECT :
queue_event(smc,EVENT_ECM,EC_DISCONNECT) ;
smc->mib.fddiSMTRemoteDisconnectFlag = TRUE ;
RS_SET(smc,RS_DISCONNECT) ;
AIX_EVENT(smc, (u_long) FDDI_RING_STATUS, (u_long)
FDDI_SMT_EVENT, (u_long) FDDI_REMOTE_DISCONNECT,
smt_get_event_word(smc)); break ; case SMT_STATION_ACTION_PATHTEST :
AIX_EVENT(smc, (u_long) FDDI_RING_STATUS, (u_long)
FDDI_SMT_EVENT, (u_long) FDDI_PATH_TEST,
smt_get_event_word(smc)); break ; case SMT_STATION_ACTION_SELFTEST :
AIX_EVENT(smc, (u_long) FDDI_RING_STATUS, (u_long)
FDDI_SMT_EVENT, (u_long) FDDI_REMOTE_SELF_TEST,
smt_get_event_word(smc)); break ; case SMT_STATION_ACTION_DISABLE_A : if (smc->y[PA].pc_mode == PM_PEER) {
RS_SET(smc,RS_EVENT) ;
queue_event(smc,EVENT_PCM+PA,PC_DISABLE) ;
} break ; case SMT_STATION_ACTION_DISABLE_B : if (smc->y[PB].pc_mode == PM_PEER) {
RS_SET(smc,RS_EVENT) ;
queue_event(smc,EVENT_PCM+PB,PC_DISABLE) ;
} break ; case SMT_STATION_ACTION_DISABLE_M : for (port = 0 ; port < NUMPHYS ; port++) { if (smc->mib.p[port].fddiPORTMy_Type != TM) continue ;
RS_SET(smc,RS_EVENT) ;
queue_event(smc,EVENT_PCM+port,PC_DISABLE) ;
} break ; default : return 1;
} break ; case SMT_PORT_ACTION : switch(code) { case SMT_PORT_ACTION_ENABLE :
event = PC_ENABLE ; break ; case SMT_PORT_ACTION_DISABLE :
event = PC_DISABLE ; break ; case SMT_PORT_ACTION_MAINT :
event = PC_MAINT ; break ; case SMT_PORT_ACTION_START :
event = PC_START ; break ; case SMT_PORT_ACTION_STOP :
event = PC_STOP ; break ; default : return 1;
}
queue_event(smc,EVENT_PCM+index,event) ; break ; default : return 1;
} return 0;
}
/* * canonical conversion of <len> bytes beginning form *data
*/ #ifdef USE_CAN_ADDR staticvoid hwm_conv_can(struct s_smc *smc, char *data, int len)
{ int i ;
SK_UNUSED(smc) ;
for (i = len; i ; i--, data++)
*data = bitrev8(*data);
} #endif
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