Jim Crumpler:

working ipforward_solaris.c
This commit is contained in:
paul 2003-05-24 22:50:31 +00:00
parent 0750d21fcf
commit 269c67c5ea

View File

@ -21,57 +21,117 @@
*/ */
#include <zebra.h> #include <zebra.h>
#include "log.h"
#include "memory.h" /*
** Solaris should define IP_DEV_NAME in <inet/ip.h>, but we'll save
** configure.in changes for another day. We can use the same device
** for both IPv4 and IPv6.
*/
/* #include <inet/ip.h> */
#ifndef IP_DEV_NAME
#define IP_DEV_NAME "/dev/ip"
#endif
/*
** This is a limited ndd style function that operates one integer
** value only. Errors return -1. ND_SET commands return 0 on
** success. ND_GET commands return the value on success (which could
** be -1 and be confused for an error). The parameter is the string
** name of the parameter being referenced.
*/
int static int
ipforward () solaris_nd(const int cmd, const char* parameter, const int value)
{ {
int fd, ret; #define ND_BUFFER_SIZE 1024
int ipforwarding = 0; int fd;
char forward[] = "ip_forwarding"; char nd_buf[ND_BUFFER_SIZE];
char *buf; struct strioctl strioctl;
struct strioctl si; const char* device = IP_DEV_NAME;
int retval;
buf = (char *) XMALLOC (MTYPE_TMP, sizeof forward + 1); memset(nd_buf, '\0', ND_BUFFER_SIZE);
strcpy (buf, forward); /*
** ND_SET takes a NULL delimited list of strings further terminated
fd = open ("/dev/ip", O_RDWR); ** buy a NULL. ND_GET returns a list in a similar layout, although
if (fd < 0) { ** here we only use the first result.
free (buf); */
/* need logging here */ if (cmd == ND_SET) {
/* "I can't get ipforwarding value because can't open /dev/ip" */ snprintf(nd_buf, ND_BUFFER_SIZE, "%s%c%d%c", parameter, '\0', value,'\0');
} else if (cmd == ND_GET) {
snprintf(nd_buf, ND_BUFFER_SIZE, "%s", parameter);
} else {
zlog_err("internal error - inappropriate command given to solaris_nd()%s:%d", __FILE__, __LINE__);
return -1; return -1;
} }
strioctl.ic_cmd = cmd;
si.ic_cmd = ND_GET; strioctl.ic_timout = 0;
si.ic_timout = 0; strioctl.ic_len = ND_BUFFER_SIZE;
si.ic_len = strlen (buf) + 1; strioctl.ic_dp = nd_buf;
si.ic_dp = (caddr_t) buf; if ((fd = open (device, O_RDWR)) < 0) {
zlog_warn("failed to open device %s - %s", device, strerror(errno));
ret = ioctl (fd, I_STR, &si);
close (fd);
if (ret < 0) {
free (buf);
/* need logging here */
/* can't get ipforwarding value : ioctl failed */
return -1; return -1;
} }
if (ioctl (fd, I_STR, &strioctl) < 0) {
close (fd);
zlog_warn("ioctl I_STR failed on device %s - %s", device,strerror(errno));
return -1;
}
close(fd);
if (cmd == ND_GET) {
errno = 0;
retval = atoi(nd_buf);
if (errno) {
zlog_warn("failed to convert returned value to integer - %s",strerror(errno));
retval = -1;
}
} else {
retval = 0;
}
return retval;
}
ipforwarding = atoi (buf); static int
free (buf); solaris_nd_set(const char* parameter, const int value) {
return ipforwarding; return solaris_nd(ND_SET, parameter, value);
}
static int
solaris_nd_get(const char* parameter) {
return solaris_nd(ND_GET, parameter, 0);
}
int
ipforward()
{
return solaris_nd_get("ip_forwarding");
} }
int int
ipforward_on () ipforward_on ()
{ {
return 0; (void) solaris_nd_set("ip_forwarding", 1);
return ipforward();
} }
int int
ipforward_off () ipforward_off ()
{ {
return 0; (void) solaris_nd_set("ip_forwarding", 0);
return ipforward();
} }
#ifdef HAVE_IPV6
int ipforward_ipv6()
{
return solaris_nd_get("ip6_fowarding");
}
int
ipforward_ipv6_on ()
{
(void) solaris_nd_set("ip6_forwarding", 1);
return ipforward_ipv6();
}
int
ipforward_ipv6_off ()
{
(void) solaris_nd_set("ip6_forwarding", 0);
return ipforward_ipv6();
}
#endif /* HAVE_IPV6 */