libnetwork: use inet_net_ntop and inet_net_pton from OpenBSD

* also used by FreeBSD, they are maintained.
* adjust port_before.h after the musl switch
* tested OK manually with the FreeBSD tests

Change-Id: Id6555aecd4df742d4762d54dd1393f05656793a3
Reviewed-on: https://review.haiku-os.org/c/haiku/+/9711
Tested-by: Commit checker robot <[email protected]>
Reviewed-by: Adrien Destugues <[email protected]>
This commit is contained in:
Jérôme Duval
2026-01-12 13:08:22 +00:00
committed by Adrien Destugues
parent 4531c92b2e
commit e4b96f0721
3 changed files with 230 additions and 511 deletions
@@ -1,5 +1,8 @@
/* $OpenBSD: inet_net_ntop.c,v 1.9 2019/07/03 03:24:04 deraadt Exp $ */
/*
* Copyright (c) 1996,1999 by Internet Software Consortium.
* Copyright (c) 2012 by Gilles Chehade <[email protected]>
* Copyright (c) 1996 by Internet Software Consortium.
*
* Permission to use, copy, modify, and distribute this software for any
* purpose with or without fee is hereby granted, provided that the above
@@ -15,15 +18,6 @@
* SOFTWARE.
*/
#include <sys/cdefs.h>
#if defined(LIBC_SCCS) && !defined(lint)
#ifdef notdef
static const char rcsid[] = "Id: inet_net_ntop.c,v 1.1.2.1 2002/08/02 02:17:21 marka Exp ";
#else
__RCSID("$NetBSD: inet_net_ntop.c,v 1.4 2017/05/09 02:56:44 maya Exp $");
#endif
#endif
#include "port_before.h"
#include <sys/types.h>
@@ -42,16 +36,8 @@ __RCSID("$NetBSD: inet_net_ntop.c,v 1.4 2017/05/09 02:56:44 maya Exp $");
__weak_alias(inet_net_ntop,_inet_net_ntop)
#endif
#ifdef SPRINTF_CHAR
# define SPRINTF(x) strlen(sprintf/**/x)
#else
# define SPRINTF(x) sprintf x
#endif
static char * inet_net_ntop_ipv4(const u_char *src, int bits,
char *dst, size_t size);
static char * inet_net_ntop_ipv6(const u_char *src, int bits,
char *dst, size_t size);
static char *inet_net_ntop_ipv4(const u_char *, int, char *, size_t);
static char *inet_net_ntop_ipv6(const u_char *, int, char *, size_t);
/*
* char *
@@ -86,7 +72,7 @@ inet_net_ntop(int af, const void *src, int bits, char *dst, size_t size)
* pointer to dst, or NULL if an error occurred (check errno).
* note:
* network byte order assumed. this means 192.5.5.240/28 has
* 0b11110000 in its fourth octet.
* 0x11110000 in its fourth octet.
* author:
* Paul Vixie (ISC), July 1996
*/
@@ -94,53 +80,63 @@ static char *
inet_net_ntop_ipv4(const u_char *src, int bits, char *dst, size_t size)
{
char *odst = dst;
char *t;
u_int m;
int b;
char *ep;
int advance;
ep = dst + size;
if (ep <= dst)
goto emsgsize;
if (bits < 0 || bits > 32) {
errno = EINVAL;
return (NULL);
}
if (bits == 0) {
if (size < sizeof "0")
if (ep - dst < sizeof "0")
goto emsgsize;
*dst++ = '0';
size--;
*dst = '\0';
}
/* Format whole octets. */
for (b = bits / 8; b > 0; b--) {
if (size <= sizeof "255.")
if (ep - dst < sizeof "255.")
goto emsgsize;
t = dst;
dst += SPRINTF((dst, "%u", *src++));
advance = snprintf(dst, ep - dst, "%u", *src++);
if (advance <= 0 || advance >= ep - dst)
goto emsgsize;
dst += advance;
if (b > 1) {
if (dst + 1 >= ep)
goto emsgsize;
*dst++ = '.';
*dst = '\0';
}
size -= (size_t)(dst - t);
}
/* Format partial octet. */
b = bits % 8;
if (b > 0) {
if (size <= sizeof ".255")
if (ep - dst < sizeof ".255")
goto emsgsize;
t = dst;
if (dst != odst)
*dst++ = '.';
m = ((1 << b) - 1) << (8 - b);
dst += SPRINTF((dst, "%u", *src & m));
size -= (size_t)(dst - t);
advance = snprintf(dst, ep - dst, "%u", *src & m);
if (advance <= 0 || advance >= ep - dst)
goto emsgsize;
dst += advance;
}
/* Format CIDR /width. */
if (size <= sizeof "/32")
if (ep - dst < sizeof "/32")
goto emsgsize;
dst += SPRINTF((dst, "/%u", bits));
advance = snprintf(dst, ep - dst, "/%u", bits);
if (advance <= 0 || advance >= ep - dst)
goto emsgsize;
dst += advance;
return (odst);
emsgsize:
@@ -148,133 +144,27 @@ inet_net_ntop_ipv4(const u_char *src, int bits, char *dst, size_t size)
return (NULL);
}
/*
* static char *
* inet_net_ntop_ipv6(src, bits, fakebits, dst, size)
* convert IPv6 network number from network to presentation format.
* generates CIDR style result always. Picks the shortest representation
* unless the IP is really IPv4.
* always prints specified number of bits (bits).
* return:
* pointer to dst, or NULL if an error occurred (check errno).
* note:
* network byte order assumed. this means 192.5.5.240/28 has
* 0x11110000 in its fourth octet.
* author:
* Vadim Kogan (UCB), June 2001
* Original version (IPv4) by Paul Vixie (ISC), July 1996
*/
static char *
inet_net_ntop_ipv6(const u_char *src, int bits, char *dst, size_t size)
{
u_int m;
int b;
size_t p;
size_t zero_s, zero_l, tmp_zero_s, tmp_zero_l;
size_t i;
int is_ipv4 = 0;
unsigned char inbuf[16];
char outbuf[sizeof("xxxx:xxxx:xxxx:xxxx:xxxx:xxxx:255.255.255.255/128")];
char *cp;
size_t words;
u_char *s;
int ret;
char buf[sizeof("xxxx:xxxx:xxxx:xxxx:xxxx:xxxx:255:255:255:255/128")];
if (bits < 0 || bits > 128) {
errno = EINVAL;
return (NULL);
}
cp = outbuf;
if (inet_ntop(AF_INET6, src, buf, size) == NULL)
return (NULL);
if (bits == 0) {
*cp++ = ':';
*cp++ = ':';
*cp = '\0';
} else {
/* Copy src to private buffer. Zero host part. */
p = (bits + 7) / 8;
memcpy(inbuf, src, p);
memset(inbuf + p, 0, 16 - p);
b = bits % 8;
if (b != 0) {
m = ~0u << (8 - b);
inbuf[p-1] &= m;
}
s = inbuf;
/* how many words need to be displayed in output */
words = (bits + 15) / 16;
if (words == 1)
words = 2;
/* Find the longest substring of zero's */
zero_s = zero_l = tmp_zero_s = tmp_zero_l = 0;
for (i = 0; i < (words * 2); i += 2) {
if ((s[i] | s[i+1]) == 0) {
if (tmp_zero_l == 0)
tmp_zero_s = i / 2;
tmp_zero_l++;
} else {
if (tmp_zero_l && zero_l < tmp_zero_l) {
zero_s = tmp_zero_s;
zero_l = tmp_zero_l;
tmp_zero_l = 0;
}
}
}
if (tmp_zero_l && zero_l < tmp_zero_l) {
zero_s = tmp_zero_s;
zero_l = tmp_zero_l;
}
if (zero_l != words && zero_s == 0 && ((zero_l == 6) ||
((zero_l == 5 && s[10] == 0xff && s[11] == 0xff) ||
((zero_l == 7 && s[14] != 0 && s[15] != 1)))))
is_ipv4 = 1;
/* Format whole words. */
for (p = 0; p < words; p++) {
if (zero_l != 0 && p >= zero_s && p < zero_s + zero_l) {
/* Time to skip some zeros */
if (p == zero_s)
*cp++ = ':';
if (p == words - 1)
*cp++ = ':';
s++;
s++;
continue;
}
if (is_ipv4 && p > 5 ) {
*cp++ = (p == 6) ? ':' : '.';
cp += SPRINTF((cp, "%u", *s++));
/* we can potentially drop the last octet */
if (p != 7 || bits > 120) {
*cp++ = '.';
cp += SPRINTF((cp, "%u", *s++));
}
} else {
if (cp != outbuf)
*cp++ = ':';
cp += SPRINTF((cp, "%x", *s * 256 + s[1]));
s += 2;
}
}
ret = snprintf(dst, size, "%s/%d", buf, bits);
if (ret < 0 || ret >= size) {
errno = EMSGSIZE;
return (NULL);
}
/* Format CIDR /width. */
(void)SPRINTF((cp, "/%u", bits));
if (strlen(outbuf) + 1 > size)
goto emsgsize;
strcpy(dst, outbuf);
return (dst);
emsgsize:
errno = EMSGSIZE;
return (NULL);
}
#undef inet_net_ntop
@@ -1,4 +1,7 @@
/* $OpenBSD: inet_net_pton.c,v 1.14 2022/12/27 17:10:06 jmc Exp $ */
/*
* Copyright (c) 2012 by Gilles Chehade <[email protected]>
* Copyright (c) 1996,1999 by Internet Software Consortium.
*
* Permission to use, copy, modify, and distribute this software for any
@@ -15,25 +18,14 @@
* SOFTWARE.
*/
#include <sys/cdefs.h>
#if defined(LIBC_SCCS) && !defined(lint)
#if 0
static const char rcsid[] = "Id: inet_net_pton.c,v 1.4.2.1 2002/08/02 02:17:21 marka Exp ";
#else
__RCSID("$NetBSD: inet_net_pton.c,v 1.4 2012/03/20 17:08:13 matt Exp $");
#endif
#endif
#include "port_before.h"
#include <sys/types.h>
#include <sys/socket.h>
#include <netinet/in.h>
#include <arpa/nameser.h>
#include <arpa/inet.h>
#include <isc/assertions.h>
#include <stddef.h>
#include <assert.h>
#include <ctype.h>
#include <errno.h>
#include <stdio.h>
@@ -46,353 +38,11 @@ __RCSID("$NetBSD: inet_net_pton.c,v 1.4 2012/03/20 17:08:13 matt Exp $");
__weak_alias(inet_net_pton,_inet_net_pton)
#endif
#ifdef SPRINTF_CHAR
# define SPRINTF(x) strlen(sprintf/**/x)
#else
# define SPRINTF(x) ((size_t)sprintf x)
#endif
static int inet_net_pton_ipv4(const char *, u_char *, size_t);
static int inet_net_pton_ipv6(const char *, u_char *, size_t);
/*
* static int
* inet_net_pton_ipv4(src, dst, size)
* convert IPv4 network number from presentation to network format.
* accepts hex octets, hex strings, decimal octets, and /CIDR.
* "size" is in bytes and describes "dst".
* return:
* number of bits, either imputed classfully or specified with /CIDR,
* or -1 if some failure occurred (check errno). ENOENT means it was
* not an IPv4 network specification.
* note:
* network byte order assumed. this means 192.5.5.240/28 has
* 0b11110000 in its fourth octet.
* author:
* Paul Vixie (ISC), June 1996
*/
static int
inet_net_pton_ipv4(const char *src, u_char *dst, size_t size)
{
static const char xdigits[] = "0123456789abcdef";
static const char digits[] = "0123456789";
int ch, dirty, bits;
ptrdiff_t n, tmp;
const u_char *odst = dst;
tmp = 0;
ch = *src++;
if (ch == '0' && (src[0] == 'x' || src[0] == 'X')
&& isascii((u_char)(src[1]))
&& isxdigit((u_char)(src[1]))) {
/* Hexadecimal: Eat nybble string. */
if (size == 0)
goto emsgsize;
dirty = 0;
src++; /* skip x or X. */
while ((ch = *src++) != '\0' && isascii((u_char)ch)
&& isxdigit((u_char)ch)) {
if (isupper((u_char)ch))
ch = tolower((u_char)ch);
n = strchr(xdigits, ch) - xdigits;
INSIST(n >= 0 && n <= 15);
if (dirty == 0)
tmp = n;
else
tmp = (tmp << 4) | n;
if (++dirty == 2) {
if (size-- == 0)
goto emsgsize;
*dst++ = (u_char) tmp;
dirty = 0;
}
}
if (dirty) { /* Odd trailing nybble? */
if (size-- == 0)
goto emsgsize;
*dst++ = (u_char) (tmp << 4);
}
} else if (isascii((u_char)ch) && isdigit((u_char)ch)) {
/* Decimal: eat dotted digit string. */
for (;;) {
tmp = 0;
do {
n = strchr(digits, ch) - digits;
INSIST(n >= 0 && n <= 9);
tmp *= 10;
tmp += n;
if (tmp > 255)
goto enoent;
} while ((ch = *src++) != '\0' &&
isascii((u_char)ch) && isdigit((u_char)ch));
if (size-- == 0)
goto emsgsize;
*dst++ = (u_char) tmp;
if (ch == '\0' || ch == '/')
break;
if (ch != '.')
goto enoent;
ch = *src++;
if (!isascii((u_char)ch) || !isdigit((u_char)ch))
goto enoent;
}
} else
goto enoent;
bits = -1;
if (ch == '/' && isascii((u_char)(src[0])) &&
isdigit((u_char)(src[0])) && dst > odst) {
/* CIDR width specifier. Nothing can follow it. */
ch = *src++; /* Skip over the /. */
bits = 0;
do {
n = strchr(digits, ch) - digits;
INSIST(n >= 0 && n <= 9);
bits *= 10;
bits += (int)n;
if (bits > 32)
goto emsgsize;
} while ((ch = *src++) != '\0' && isascii((u_char)ch)
&& isdigit((u_char)ch));
if (ch != '\0')
goto enoent;
}
/* Firey death and destruction unless we prefetched EOS. */
if (ch != '\0')
goto enoent;
/* If nothing was written to the destination, we found no address. */
if (dst == odst)
goto enoent;
/* If no CIDR spec was given, infer width from net class. */
if (bits == -1) {
if (*odst >= 240) /* Class E */
bits = 32;
else if (*odst >= 224) /* Class D */
bits = 4;
else if (*odst >= 192) /* Class C */
bits = 24;
else if (*odst >= 128) /* Class B */
bits = 16;
else /* Class A */
bits = 8;
/* If imputed mask is narrower than specified octets, widen. */
if (bits >= 8 && bits < ((dst - odst) * 8))
bits = (int)(dst - odst) * 8;
}
/* Extend network to cover the actual mask. */
while (bits > ((dst - odst) * 8)) {
if (size-- == 0)
goto emsgsize;
*dst++ = '\0';
}
return (bits);
enoent:
errno = ENOENT;
return (-1);
emsgsize:
errno = EMSGSIZE;
return (-1);
}
static int
getbits(const char *src, int *bitsp)
{
static const char digits[] = "0123456789";
int n;
int val;
char ch;
val = 0;
n = 0;
while ((ch = *src++) != '\0') {
const char *pch;
pch = strchr(digits, ch);
if (pch != NULL) {
if (n++ != 0 && val == 0) /* no leading zeros */
return (0);
val *= 10;
val += (int)(pch - digits);
if (val > 128) /* range */
return (0);
continue;
}
return (0);
}
if (n == 0)
return (0);
*bitsp = val;
return (1);
}
static int
getv4(const char *src, u_char *dst, int *bitsp)
{
static const char digits[] = "0123456789";
u_char *odst = dst;
int n;
u_int val;
char ch;
val = 0;
n = 0;
while ((ch = *src++) != '\0') {
const char *pch;
pch = strchr(digits, ch);
if (pch != NULL) {
if (n++ != 0 && val == 0) /* no leading zeros */
return (0);
val *= 10;
val += (int)(pch - digits);
if (val > 255) /* range */
return (0);
continue;
}
if (ch == '.' || ch == '/') {
if (dst - odst > 3) /* too many octets? */
return (0);
*dst++ = val;
if (ch == '/')
return (getbits(src, bitsp));
val = 0;
n = 0;
continue;
}
return (0);
}
if (n == 0)
return (0);
if (dst - odst > 3) /* too many octets? */
return (0);
*dst++ = val;
return (1);
}
static int
inet_net_pton_ipv6(const char *src, u_char *dst, size_t size)
{
static const char xdigits_l[] = "0123456789abcdef",
xdigits_u[] = "0123456789ABCDEF";
u_char tmp[NS_IN6ADDRSZ], *tp, *endp, *colonp;
const char *xdigits, *curtok;
int ch, saw_xdigit;
u_int val;
int digits;
int bits;
size_t bytes;
int words;
int ipv4;
memset((tp = tmp), '\0', NS_IN6ADDRSZ);
endp = tp + NS_IN6ADDRSZ;
colonp = NULL;
/* Leading :: requires some special handling. */
if (*src == ':')
if (*++src != ':')
goto enoent;
curtok = src;
saw_xdigit = 0;
val = 0;
digits = 0;
bits = -1;
ipv4 = 0;
while ((ch = *src++) != '\0') {
const char *pch;
if ((pch = strchr((xdigits = xdigits_l), ch)) == NULL)
pch = strchr((xdigits = xdigits_u), ch);
if (pch != NULL) {
val <<= 4;
val |= (int)(pch - xdigits);
if (++digits > 4)
goto enoent;
saw_xdigit = 1;
continue;
}
if (ch == ':') {
curtok = src;
if (!saw_xdigit) {
if (colonp)
goto enoent;
colonp = tp;
continue;
} else if (*src == '\0')
goto enoent;
if (tp + NS_INT16SZ > endp)
return (0);
*tp++ = (u_char) (val >> 8) & 0xff;
*tp++ = (u_char) val & 0xff;
saw_xdigit = 0;
digits = 0;
val = 0;
continue;
}
if (ch == '.' && ((tp + NS_INADDRSZ) <= endp) &&
getv4(curtok, tp, &bits) > 0) {
tp += NS_INADDRSZ;
saw_xdigit = 0;
ipv4 = 1;
break; /* '\0' was seen by inet_pton4(). */
}
if (ch == '/' && getbits(src, &bits) > 0)
break;
goto enoent;
}
if (saw_xdigit) {
if (tp + NS_INT16SZ > endp)
goto enoent;
*tp++ = (u_char) (val >> 8) & 0xff;
*tp++ = (u_char) val & 0xff;
}
if (bits == -1)
bits = 128;
words = (bits + 15) / 16;
if (words < 2)
words = 2;
if (ipv4)
words = 8;
endp = tmp + 2 * words;
if (colonp != NULL) {
/*
* Since some memmove()'s erroneously fail to handle
* overlapping regions, we'll do the shift by hand.
*/
const ptrdiff_t n = tp - colonp;
int i;
if (tp == endp)
goto enoent;
for (i = 1; i <= n; i++) {
endp[- i] = colonp[n - i];
colonp[n - i] = 0;
}
tp = endp;
}
if (tp != endp)
goto enoent;
bytes = (bits + 7) / 8;
if (bytes > size)
goto emsgsize;
memcpy(dst, tmp, bytes);
return (bits);
enoent:
errno = ENOENT;
return (-1);
emsgsize:
errno = EMSGSIZE;
return (-1);
}
/*
* int
* inet_net_pton(af, src, dst, size)
* convert network number from presentation to network format.
* accepts hex octets, hex strings, decimal octets, and /CIDR.
@@ -418,5 +68,190 @@ inet_net_pton(int af, const char *src, void *dst, size_t size)
}
}
/*
* static int
* inet_net_pton_ipv4(src, dst, size)
* convert IPv4 network number from presentation to network format.
* accepts hex octets, hex strings, decimal octets, and /CIDR.
* "size" is in bytes and describes "dst".
* return:
* number of bits, either imputed classfully or specified with /CIDR,
* or -1 if some failure occurred (check errno). ENOENT means it was
* not an IPv4 network specification.
* note:
* network byte order assumed. this means 192.5.5.240/28 has
* 0x11110000 in its fourth octet.
* author:
* Paul Vixie (ISC), June 1996
*/
static int
inet_net_pton_ipv4(const char *src, u_char *dst, size_t size)
{
static const char
xdigits[] = "0123456789abcdef",
digits[] = "0123456789";
int n, ch, tmp, dirty, bits;
const u_char *odst = dst;
ch = (unsigned char)*src++;
if (ch == '0' && (src[0] == 'x' || src[0] == 'X')
&& isascii((unsigned char)src[1]) && isxdigit((unsigned char)src[1])) {
/* Hexadecimal: Eat nybble string. */
if (size == 0)
goto emsgsize;
tmp = 0, dirty = 0;
src++; /* skip x or X. */
while ((ch = (unsigned char)*src++) != '\0' &&
isascii(ch) && isxdigit(ch)) {
if (isupper(ch))
ch = tolower(ch);
n = strchr(xdigits, ch) - xdigits;
assert(n >= 0 && n <= 15);
if (dirty == 0)
tmp = n;
else
tmp = (tmp << 4) | n;
if (++dirty == 2) {
if (size-- == 0)
goto emsgsize;
*dst++ = (u_char) tmp;
dirty = 0;
}
}
if (dirty) { /* Odd trailing nybble? */
if (size-- == 0)
goto emsgsize;
*dst++ = (u_char) (tmp << 4);
}
} else if (isascii(ch) && isdigit(ch)) {
/* Decimal: eat dotted digit string. */
for (;;) {
tmp = 0;
do {
n = strchr(digits, ch) - digits;
assert(n >= 0 && n <= 9);
tmp *= 10;
tmp += n;
if (tmp > 255)
goto enoent;
} while ((ch = (unsigned char)*src++) != '\0' &&
isascii(ch) && isdigit(ch));
if (size-- == 0)
goto emsgsize;
*dst++ = (u_char) tmp;
if (ch == '\0' || ch == '/')
break;
if (ch != '.')
goto enoent;
ch = (unsigned char)*src++;
if (!isascii(ch) || !isdigit(ch))
goto enoent;
}
} else
goto enoent;
bits = -1;
if (ch == '/' && isascii((unsigned char)src[0]) &&
isdigit((unsigned char)src[0]) && dst > odst) {
/* CIDR width specifier. Nothing can follow it. */
ch = (unsigned char)*src++; /* Skip over the /. */
bits = 0;
do {
n = strchr(digits, ch) - digits;
assert(n >= 0 && n <= 9);
bits *= 10;
bits += n;
if (bits > 32)
goto emsgsize;
} while ((ch = (unsigned char)*src++) != '\0' &&
isascii(ch) && isdigit(ch));
if (ch != '\0')
goto enoent;
}
/* Fiery death and destruction unless we prefetched EOS. */
if (ch != '\0')
goto enoent;
/* If nothing was written to the destination, we found no address. */
if (dst == odst)
goto enoent;
/* If no CIDR spec was given, infer width from net class. */
if (bits == -1) {
if (*odst >= 240) /* Class E */
bits = 32;
else if (*odst >= 224) /* Class D */
bits = 4;
else if (*odst >= 192) /* Class C */
bits = 24;
else if (*odst >= 128) /* Class B */
bits = 16;
else /* Class A */
bits = 8;
/* If imputed mask is narrower than specified octets, widen. */
if (bits < ((dst - odst) * 8))
bits = (dst - odst) * 8;
}
/* Extend network to cover the actual mask. */
while (bits > ((dst - odst) * 8)) {
if (size-- == 0)
goto emsgsize;
*dst++ = '\0';
}
return (bits);
enoent:
errno = ENOENT;
return (-1);
emsgsize:
errno = EMSGSIZE;
return (-1);
}
static int
inet_net_pton_ipv6(const char *src, u_char *dst, size_t size)
{
struct in6_addr in6;
int ret;
int bits;
size_t bytes;
char buf[INET6_ADDRSTRLEN + sizeof("/128")];
char *sep;
const char *errstr;
if (strlcpy(buf, src, sizeof buf) >= sizeof buf) {
errno = EMSGSIZE;
return (-1);
}
sep = strchr(buf, '/');
if (sep != NULL)
*sep++ = '\0';
ret = inet_pton(AF_INET6, buf, &in6);
if (ret != 1)
return (-1);
if (sep == NULL)
bits = 128;
else {
bits = strtonum(sep, 0, 128, &errstr);
if (errstr) {
errno = EINVAL;
return (-1);
}
}
bytes = (bits + 7) / 8;
if (bytes > size) {
errno = EMSGSIZE;
return (-1);
}
memcpy(dst, &in6.s6_addr, bytes);
return (bits);
}
#undef inet_net_pton
#pragma weak inet_net_pton = __inet_net_pton
@@ -26,17 +26,11 @@
// inet_*() are just weak symbols
# define inet_addr __inet_addr
# define inet_aton __inet_aton
# define inet_lnaof __inet_lnaof
# define inet_makeaddr __inet_makeaddr
# define inet_neta __inet_neta
# define inet_netof __inet_netof
# define inet_network __inet_network
# define inet_net_ntop __inet_net_ntop
# define inet_net_pton __inet_net_pton
# define inet_cidr_ntop __inet_cidr_ntop
# define inet_cidr_pton __inet_cidr_pton
# define inet_ntoa __inet_ntoa
# define inet_pton __inet_pton
# define inet_ntop __inet_ntop
# define inet_nsap_addr __inet_nsap_addr
# define inet_nsap_ntoa __inet_nsap_ntoa