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netax25.c
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netax25.c
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/* **************************************************************** *
* *
* APRX -- 2nd generation APRS iGate and digi with *
* minimal requirement of esoteric facilities or *
* libraries of any kind beyond UNIX system libc. *
* *
* (c) Matti Aarnio - OH2MQK, 2007-2014 *
* *
* NETAX25: Listen on (Linux) AX.25 socket and pick all AX.25 *
* data packets ... actually don't pick those *
* that are going outwards. All incoming ones do pick. *
* *
* **************************************************************** */
#include "aprx.h"
#ifdef PF_AX25 /* PF_AX25 exists -- highly likely a Linux system ! */
#include <sys/ioctl.h>
#include <net/if.h>
#include <netpacket/packet.h>
#include <netinet/if_ether.h>
#include <netinet/in.h>
#include <netax25/ax25.h>
/*
* Link-level device access
*
* s = socket(PF_PACKET, SOCK_RAW, htons(ETH_P_AX25));
*
*/
/*
struct sockaddr_ll
{
unsigned short int sll_family;
unsigned short int sll_protocol;
int sll_ifindex;
unsigned short int sll_hatype;
unsigned char sll_pkttype;
unsigned char sll_halen;
unsigned char sll_addr[8];
};
SOCK_RAW Sending uses sll_ifindex and sll_protocol
*/
struct netax25_dev {
int ifindex;
int16_t protocol;
uint8_t ax25addr[7];
uint8_t rxok;
//uint8_t txok;
uint8_t scan;
char devname[IFNAMSIZ];
char callsign[10];
const struct aprx_interface *interface;
};
static struct netax25_dev **netax25_devs;
static int netax25_devcount;
/*
* Talking to Linux kernel 2.6.x, using SMACK type frames
* on each configured serial port callsign -> ptymux
* writer channel. If system does not write correct SMACK
* frame on that KISS port for any number of reasons,
* including writing incompletely buffered data, then
* kernel will be able to notice that frame it received
* is not valid, and discards it. (Maybe... P = 2^-16 to
* accepting of error frame in spite of these controls.)
*/
struct netax25_pty {
int fd;
int ifindex;
const char *callsign;
const struct aprx_interface *interface;
struct sockaddr_ax25 ax25addr;
};
static int rx_socket = -1;
static int tx_socket = -1;
static struct netax25_pty **ax25rxports;
static int ax25rxportscount;
static char **ax25ttyports;
static int *ax25ttyfds;
static int ax25ttyportscount;
#if defined(HAVE_OPENPTY)
#ifdef HAVE_PTY_H
#include <pty.h>
#endif
static void netax25_addttyport(const char *callsign,
const int masterfd, const int slavefd);
static const void* netax25_openpty(const char *mycall)
{
int rc;
int disc;
struct termios tio;
char devname[64];
uint8_t ax25call[64]; // overlarge for AX.25 - which needs only 7 bytes, but valgrind whines..
struct ifreq ifr;
int fd = -1;
struct netax25_pty *nax25 = NULL;
int pty_master, pty_slave;
if (!mycall)
return NULL; /* No mycall, no ptys! */
memset(ax25call, 0, sizeof(ax25call)); // valgrind
if (parse_ax25addr(ax25call, mycall, 0x60)) {
// Not valid per AX.25 rules
if (debug)
printf(" netax25_openpty('%s') failed to parse the parameter string as valid AX.25 callsign. Not opening kernel pty.\n", mycall);
return NULL;
}
memset(devname, 0, sizeof(devname)); // valgrind
rc = openpty(&pty_master, &pty_slave, devname, NULL, NULL);
if (debug)
printf("openpty() rc=%d name='%s' master=%d slave=%d\n",
rc, devname, pty_master, pty_slave);
if (rc != 0 || pty_slave < 0) {
error_exit:;
if (pty_master >= 0)
close(pty_master);
pty_master = -1;
if (pty_slave >= 0)
close(pty_slave);
pty_slave = -1;
if (fd >= 0)
close(fd);
if (debug)
printf("netax25_openpty() error exit.\n");
if (nax25 != NULL) free(nax25);
return NULL; /* D'uh.. */
}
nax25 = calloc( 1,sizeof(*nax25) );
nax25->fd = pty_master;
nax25->ifindex = -1;
nax25->callsign = mycall;
nax25->ax25addr.sax25_family = PF_AX25;
nax25->ax25addr.sax25_ndigis = 0;
memcpy(&nax25->ax25addr.sax25_call, ax25call, 7);
/* setup termios parameters for this line.. */
memset(&tio, 0, sizeof(tio)); // please valgrind
aprx_cfmakeraw(&tio, 0);
tio.c_cc[VMIN] = 1; /* pick at least one char .. */
tio.c_cc[VTIME] = 3; /* 0.3 seconds timeout - 36 chars @ 1200 baud */
tio.c_cflag |= (CREAD | CLOCAL);
cfsetispeed(&tio, B38400); /* Pseudo-tty -- pseudo speed */
cfsetospeed(&tio, B38400);
rc = tcsetattr(pty_slave, TCSANOW, &tio);
if (rc < 0)
goto error_exit;
/* The pty_slave will get N_AX25 discipline attached on itself.. */
disc = N_AX25;
rc = ioctl(pty_slave, TIOCSETD, &disc);
if (rc < 0)
goto error_exit;
rc = ioctl(pty_slave, SIOCGIFNAME, devname);
if (rc < 0)
goto error_exit;
/* Convert mycall[] to AX.25 format callsign */
rc = ioctl(pty_slave, SIOCSIFHWADDR, ax25call);
if (rc < 0)
goto error_exit;
/* Now set encapsulation.. */
disc = 4;
rc = ioctl(pty_slave, SIOCSIFENCAP, &disc);
if (rc < 0)
goto error_exit;
/* Then final tricks to start the interface... */
fd = socket(AF_INET, SOCK_DGRAM, 0);
if (fd < 0)
goto error_exit;
memset(&ifr, 0, sizeof(ifr)); // please valgrind
strncpy(ifr.ifr_name, devname, sizeof(ifr.ifr_name));
ifr.ifr_name[sizeof(ifr.ifr_name)-1] = 0;
ifr.ifr_mtu = 512;
rc = ioctl(fd, SIOCSIFMTU, &ifr);
if (rc < 0)
goto error_exit;
ifr.ifr_flags = IFF_UP | IFF_RUNNING | IFF_NOARP;
rc = ioctl(fd, SIOCSIFFLAGS, &ifr);
if (rc < 0)
goto error_exit;
close(fd);
/* OK, we write and read on pty_master, the pty_slave is now
attached on kernel side AX.25 interface with call: mycall */
netax25_addttyport( mycall, pty_master, pty_slave );
return (void*) nax25;
}
void netax25_sendax25(const void *nax25p, const void *ax25, int ax25len)
{
int rc, p;
uint8_t ax25buf[2100];
const struct netax25_pty *nax25 = nax25p;
/* kissencoder() takes AX.25 frame, and adds framing + cmd-byte */
rc = kissencoder(ax25buf, sizeof(ax25buf), LINETYPE_KISSSMACK,
ax25, ax25len, 0x80);
if (rc < 0)
return;
ax25len = rc;
if (debug>2) {
printf("netax25_sendax25() len=%d ",ax25len);
hexdumpfp(stdout, ax25, ax25len, 1);
printf("\n");
}
/* Try to write it to the PTY */
p = 0;
rc = write(nax25->fd, ax25buf + p, ax25len - p);
if (rc < 0) rc = 0; // error hickup..
p += rc; rc = 0;
if (p < ax25len) { // something left unwritten
rc = write(nax25->fd, ax25buf + p, ax25len - p);
if (rc < 0) rc = 0; // error hickup..
}
p += rc; rc = 0;
if (p < ax25len) { // something left unwritten
rc = write(nax25->fd, ax25buf + p, ax25len - p);
if (rc < 0) rc = 0; // error hickup..
}
p += rc; rc = 0;
// Now it either succeeded, or it failed.
// in both cases we give up on this frame.
if (p < ax25len) {
if (aprxlogfile) {
aprxlog("netax25_sendax25(%s,len=%d) wrote %d bytes\n", nax25->callsign, ax25len, p);
}
}
}
#else /* !HAVE_OPENPTY */
static const void* netax25_openpty(const char *mycall)
{
return NULL;
}
void netax25_sendax25(const void *nax25, const void *ax25, int ax25len)
{
}
#endif /* HAVE_OPENPTY */
static int is_ax25ttyport(const char *callsign)
{
int i;
for (i = 0; i < ax25ttyportscount; ++i) {
if (strcmp(callsign,ax25ttyports[i]) == 0)
return 1; // Have match
}
return 0; // No match
}
static int scan_linux_devices(void) {
FILE *fp;
struct ifreq ifr;
char buffer[512], *s;
int fd;
struct netax25_dev ax25dev, *d;
int i;
// Mark all devices ready for scanning
for (i = 0; i < netax25_devcount; ++i)
netax25_devs[i]->scan = 0;
fd = socket(PF_FILE, SOCK_DGRAM, 0);
if (fd < 0) {
// ... error
if (debug)printf("Can not create socket(PF_FILE,SOCK_DGRAM,0); errno=%d\n", errno);
return -1;
}
fp = fopen("/proc/net/dev", "r");
if (fp == NULL) {
if (debug)printf("Can not open /proc/net/dev for reading; errno=%d\n", errno);
close(fd);
// ... error
return -1;
}
// Two header lines
s = fgets(buffer, sizeof(buffer), fp);
s = fgets(buffer, sizeof(buffer), fp);
// Then network interface names
while (!feof(fp)) {
if (!fgets(buffer, sizeof(buffer), fp))
break; // EOF
s = strchr(buffer, ':');
if (s) *s = 0;
s = buffer;
while (*s == ' '||*s == '\t') ++s;
memset(&ifr, 0, sizeof(ifr)); // please valgrind
strncpy(ifr.ifr_name, s, IFNAMSIZ-1);
ifr.ifr_name[IFNAMSIZ-1] = 0;
// Is it active?
if (ioctl(fd, SIOCGIFFLAGS, &ifr) < 0) {
// error
continue;
}
if (!(ifr.ifr_flags & IFF_UP))
continue; // not active, try next
// Does it have AX.25 HW address ?
if (ioctl(fd, SIOCGIFHWADDR, &ifr) < 0) {
// Error
continue;
}
if (ifr.ifr_hwaddr.sa_family != ARPHRD_AX25)
continue; // Not AX.25 HW address, try next
memset(&ax25dev, 0, sizeof(ax25dev));
memcpy(ax25dev.devname, ifr.ifr_name, IFNAMSIZ);
memcpy(ax25dev.ax25addr, ifr.ifr_hwaddr.sa_data, 7); // AX.25 address
ax25_to_tnc2_fmtaddress(ax25dev.callsign, ax25dev.ax25addr, 0); // in text
if (ioctl(fd, SIOCGIFINDEX, &ifr) < 0) {
// Error
continue;
}
ax25dev.ifindex = ifr.ifr_ifindex;
// Store/Update internal kernel interface index list
d = NULL;
for (i = 0; i < netax25_devcount; ++i) {
d = netax25_devs[i];
if (d->ifindex == ax25dev.ifindex) {
d->scan = 1; // The ifindex does not change during interface lifetime
break;
}
d = NULL;
}
if (d == NULL) {
// Not in known interfaces, add a new one..
d = malloc(sizeof(*d));
++netax25_devcount;
netax25_devs = realloc( netax25_devs,
sizeof(void*) * netax25_devcount );
netax25_devs[netax25_devcount-1] = d;
memcpy(d, &ax25dev, sizeof(*d));
d->scan = 1;
d->rxok = !is_ax25ttyport(d->callsign);
}
}
fclose(fp);
close(fd);
// Remove devices no longer known
for (i = 0; i < netax25_devcount; ++i) {
if (netax25_devs[i]->scan == 0) {
int j;
if (debug>1)printf("Compating netax25_devs[] i=%d callsign=%s\n",
i, netax25_devs[i]->callsign);
free(netax25_devs[i]);
for (j = i+1; j < netax25_devcount; ++j) {
netax25_devs[j-1] = netax25_devs[j];
}
--netax25_devcount;
}
}
// Link interfaces
for (i = 0; i < netax25_devcount; ++i) {
int j;
struct netax25_dev *d = netax25_devs[i];
for (j = 0; j < ax25rxportscount; ++j) {
if (strcmp(ax25rxports[j]->callsign,d->callsign) == 0) {
d->interface = ax25rxports[j]->interface;
ax25rxports[j]->ifindex = d->ifindex;
}
}
}
return 0;
}
/* config interface: ax25-rxport: callsign */
void *netax25_addrxport(const char *callsign, const struct aprx_interface *interface)
{
struct netax25_pty *nax25p = calloc(1, sizeof(*nax25p));
nax25p->fd = -1;
nax25p->interface = interface;
nax25p->ax25addr.sax25_family = PF_AX25;
nax25p->ax25addr.sax25_ndigis = 0;
if (interface == NULL) { // Old config style
if (parse_ax25addr((uint8_t*)&nax25p->ax25addr.sax25_call, callsign, 0x60)) {
// Not valid per AX.25 rules
free(nax25p);
return NULL;
}
nax25p->callsign = strdup(callsign);
} else { // new config fule
memcpy(&nax25p->ax25addr.sax25_call, interface->ax25call, sizeof(interface->ax25call));
nax25p->callsign = interface->callsign;
}
ax25rxports = realloc(ax25rxports,
sizeof(struct netax25_pty*) * (ax25rxportscount + 1));
ax25rxports[ax25rxportscount++] = nax25p;
return nax25p;
}
static void netax25_addttyport(const char *callsign,
const int masterfd, const int slavefd)
{
ax25ttyports = realloc(ax25ttyports,
sizeof(void *) * (ax25ttyportscount + 1));
ax25ttyfds = realloc(ax25ttyfds,
sizeof(int) * (ax25ttyportscount + 1));
ax25ttyports[ax25ttyportscount] = strdup(callsign);
ax25ttyfds [ax25ttyportscount] = masterfd; /* slavefd forgotten */
++ax25ttyportscount;
}
/* Nothing much in early init */
void netax25_init(void)
{
}
/* .. but all things in late start.. */
void netax25_start(void)
{
int i;
int rx_protocol;
rx_socket = -1; /* Initialize for early bail-out */
tx_socket = -1;
if (!ax25rxports) return; /* No configured receiver ports.
No receiver socket creation. */
rx_protocol = ETH_P_AX25; /* Choosing ETH_P_ALL would pick also
outbound packets, but also all of
the ethernet traffic.. ETH_P_AX25
picks only inbound-at-ax25-devices
..packets. */
rx_socket = socket(PF_PACKET, SOCK_RAW, htons(rx_protocol));
tx_socket = socket(PF_PACKET, SOCK_RAW, htons(ETH_P_AX25));
if (rx_socket < 0) {
i = errno;
/* D'uh.. could not open it, report and leave it at that. */
fprintf(stderr,
"aprx: Could not open socket(PF_PACKET,SOCK_RAW,ETH_P_AX25) for listening. Errno=%d (%s)"
" -- not a big deal unless you want to receive via AX.25 sockets.\n",
i, strerror(i));
return;
}
if (tx_socket < 0) {
i = errno;
/* D'uh.. could not open it, report and leave it at that. */
fprintf(stderr,
"aprx: Could not open socket(PF_PACKET,SOCK_RAW,ETH_P_AX25) for sending. Errno=%d (%s)"
" -- not a big deal unless you want to send via AX.25 sockets.\n",
i, strerror(i));
return;
}
if (rx_socket >= 0)
fd_nonblockingmode(rx_socket);
}
/* .. but all things in late start.. */
const void* netax25_open(const char *ifcallsign)
{
return netax25_openpty(ifcallsign);
}
static struct timeval next_scantime;
static void netax25_resettimer(void*arg)
{
struct timeval *tv = (struct timeval *)arg;
tv_timeradd_seconds(tv, &tick, 60);
scan_linux_devices();
}
int netax25_prepoll(struct aprxpolls *app)
{
struct pollfd *pfd;
int i;
if (next_scantime.tv_sec == 0) next_scantime = tick;
if (time_reset) {
netax25_resettimer(&next_scantime);
}
if (rx_socket >= 0) {
/* FD is open, lets mark it for poll read.. */
pfd = aprxpolls_new(app);
pfd->fd = rx_socket;
pfd->events = POLLIN | POLLPRI;
pfd->revents = 0;
}
/* read from PTY masters */
for (i = 0; i < ax25ttyportscount; ++i) {
if (ax25ttyfds[i] >= 0) {
pfd = aprxpolls_new(app);
pfd->fd = ax25ttyfds[i];
pfd->events = POLLIN | POLLPRI;
pfd->revents = 0;
}
}
return 1;
}
static int rxsock_read( const int fd )
{
struct sockaddr_ll sll;
socklen_t sllsize;
int rcvlen, ifindex, i;
struct netax25_dev *netdev;
uint8_t rxbuf[3000];
sllsize = sizeof(sll);
rcvlen = recvfrom(fd, rxbuf, sizeof(rxbuf), 0, (struct sockaddr*)&sll, &sllsize);
if (rcvlen < 0) {
return 0; /* No more at this time.. */
}
/*
struct sockaddr_ll
{
unsigned short int sll_family; = PF_PACKET
unsigned short int sll_protocol; = 200 ?
int sll_ifindex; = 4
unsigned short int sll_hatype; = 3 = SOCK_RAW ?
unsigned char sll_pkttype; = 0
unsigned char sll_halen; = 0
unsigned char sll_addr[8]; = random
};
netax25rx packet len=54 from rx_socket; family=17 protocol=200 ifindex=4 hatype=3
pkttype=0 halen=0 addr=84:f9:ca:bf:d7:04:f3:b7
Data: 00 82 a0 aa 64 6a 9c e0 9e 90 70 9a b0 94 60 ae 92 88 8a 64 40 61 03 f0 3d 36 33 35 33 2e ...
Text: 00 82 a0 aa d j 9c e0 9e 90 p 9a b0 94 ` ae 92 88 8a d @ a 03 f0 = 6 3 5 3 . ...
AX25: 00 A P U 2 5 N p O H 8 M X J 0 W I D E 2 0 01 x 1e 1b 19 1a 19 17 ...
Leads with 00 byte, then AX.25 address..
*/
if (sll.sll_family != PF_PACKET ||
sll.sll_protocol != htons(ETH_P_AX25) ||
sll.sll_hatype != SOCK_RAW ||
sll.sll_pkttype != 0 ||
sll.sll_halen != 0 ||
rxbuf[0] != 0 ) {
return 1; // Not of our interest
}
ifindex = sll.sll_ifindex;
if (debug>1) {
printf("netax25rx packet len=%d from rx_socket; family=%d protocol=%x ifindex=%d hatype=%d pkttype=%d halen=%d\n",
rcvlen, sll.sll_family, sll.sll_protocol, sll.sll_ifindex, sll.sll_hatype, sll.sll_pkttype, sll.sll_halen);
/*
printf(" addr=%02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x\n",
sll.sll_addr[0],sll.sll_addr[1],sll.sll_addr[2],sll.sll_addr[3],
sll.sll_addr[4],sll.sll_addr[5],sll.sll_addr[6],sll.sll_addr[7]);
int i;
printf("Data: ");
for (i = 0; i < rcvlen; ++i)
printf(" %02x", rxbuf[i]);
printf("\n");
printf("Text: ");
for (i = 0; i < rcvlen; ++i) {
uint8_t c = rxbuf[i];
if (32 <= c && c <= 126)
printf(" %c", c);
else
printf(" %02x", c);
}
printf("\n");
printf("AX25: ");
for (i = 0; i < rcvlen; ++i) {
uint8_t c = rxbuf[i] >> 1;
if (32 <= c && c <= 126)
printf(" %c", c);
else
printf(" %02x", c);
}
printf("\n");
*/
}
netdev = NULL;
for (i = 0; i < netax25_devcount; ++i) {
if (netax25_devs[i]->ifindex == ifindex) {
netdev = netax25_devs[i];
break;
}
}
if (netdev == NULL) {
// Not found from Ax.25 devices
if (debug>1) printf(".. not from known AX.25 device\n");
return 1;
}
if (netdev->interface == NULL) {
if (debug>1) printf(".. not from AX.25 device configured for receiving.\n");
return 1;
}
if (debug) printf("Received frame of %d bytes from %s: %s\n",
rcvlen, netdev->devname, netdev->callsign);
// if (is_ax25ttyport(netdev->callsign)) {
if (!netdev->rxok) {
if (debug > 1) {
printf("%s is ttyport which we serve.\n",netdev->callsign);
}
return 1; // We drop our own packets, if we ever see them
}
/// Now: actual AX.25 frame reception,
// and transmit via ax25_to_tnc2() !
/*
* "+10" is a magic constant for trying
* to estimate channel occupation overhead
*/
erlang_add(netdev->callsign, ERLANG_RX, rcvlen + 10, 1); // rxsock_read()
// Send it to Rx-IGate, validates also AX.25 header bits,
// and returns non-zero only when things are OK for processing.
// Will internally also send to interface layer, if OK.
if (ax25_to_tnc2(netdev->interface, netdev->callsign, 0, rxbuf[0], rxbuf + 1, rcvlen - 1)) {
// The packet is valid per AX.25 header bit rules.
// ax25_to_tnc2() did send the packet to rx-igate
;
} else {
// The packet is not valid per AX.25 header bit rules
rfloghex(netdev->callsign, 'D', 1, rxbuf, rcvlen);
erlang_add(netdev->callsign, ERLANG_DROP, rcvlen+10, 1); /* Account one packet */
if (aprxlogfile) {
FILE *fp = fopen(aprxlogfile, "a");
if (fp) {
char timebuf[60];
printtime(timebuf, sizeof(timebuf));
fprintf(fp, "%s ax25_to_tnc2(%s,len=%d) rejected the message: ", timebuf, netdev->callsign, rcvlen);
hexdumpfp(fp, rxbuf, rcvlen, 1);
fprintf(fp, "\n");
fclose(fp);
}
}
}
return 1;
}
static void discard_read_fd( const int fd )
{
char buf[2000];
int sts;
sts = read(fd, buf, sizeof(buf));
}
int netax25_postpoll(struct aprxpolls *app)
{
int i, j;
struct pollfd *pfd;
// char ifaddress[10];
assert(app->polls != NULL);
if (tv_timercmp(&tick, &next_scantime) > 0) {
scan_linux_devices();
// Rescan every 60 seconds, on the dot.
tv_timeradd_seconds(&next_scantime, &next_scantime, 60);
}
pfd = app->polls;
if (rx_socket < 0)
return 0;
for (i = 0; i < app->pollcount; ++i, ++pfd) {
if ((pfd->fd == rx_socket) &&
(pfd->revents & (POLLIN | POLLPRI))) {
/* something coming in.. */
rxsock_read( rx_socket );
}
for (j = 0; j < ax25ttyportscount; ++j) {
if ((pfd->revents & (POLLIN | POLLPRI)) &&
(ax25ttyfds[j] == pfd->fd)) {
discard_read_fd(ax25ttyfds[j]);
}
}
}
return 0;
}
void netax25_sendto(const void *nax25p, const uint8_t *axaddr, const int axaddrlen, const char *axdata, const int axdatalen)
{
const struct netax25_pty *nax25 = nax25p;
struct sockaddr_ll sll;
char c0[1];
struct iovec iovec[3];
struct msghdr mh;
int i, len;
if (tx_socket < 0) {
if (debug>1) printf("netax25_sendto() tx_socket = -1, can not do..\n");
return; // D'uh..
}
if (nax25->ifindex < 0) {
if (debug>1) printf("netax25_sendto() ifindex < 0, can not do..\n");
return; // D'uh..
}
if (debug>2) {
printf("netax25_sendto() len=%d,%d ",axaddrlen,axdatalen);
hexdumpfp(stdout, axaddr, axaddrlen, 1);
printf(" // ");
hexdumpfp(stdout, (uint8_t*)axdata, axdatalen, 0);
printf("\n");
}
memset(&sll, 0, sizeof(sll));
sll.sll_family = PF_PACKET;
sll.sll_ifindex = nax25->ifindex;
sll.sll_protocol = htons(ETH_P_AX25);
sll.sll_hatype = SOCK_RAW;
c0[0] = 0;
iovec[0].iov_base = c0;
iovec[0].iov_len = 1;
iovec[1].iov_base = (void*)axaddr; // silence the compiler
iovec[1].iov_len = axaddrlen;
iovec[2].iov_base = (void*)axdata; // silence the compiler
iovec[2].iov_len = axdatalen;
len = 1+axaddrlen+axdatalen; // for debugging
memset(&mh, 0, sizeof(mh));
mh.msg_name = &sll;
mh.msg_namelen = sizeof(sll);
mh.msg_iov = iovec;
mh.msg_iovlen = 3;
errno = 0;
i = sendmsg(tx_socket, &mh, 0);
if (debug>1)printf("netax25_sendto() the sendmsg len=%d rc=%d errno=%d\n", len, i, errno);
erlang_add(nax25->callsign, ERLANG_TX, axaddrlen+axdatalen + 10, 1); // netax25_sendto()
}
#endif