mirror of
https://github.com/moparisthebest/socat
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132 lines
4.2 KiB
C
132 lines
4.2 KiB
C
/* source: xio-ip4.c */
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/* Copyright Gerhard Rieger 2001-2008 */
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/* Published under the GNU General Public License V.2, see file COPYING */
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/* this file contains the source for IP4 related functions */
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#include "xiosysincludes.h"
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#if WITH_IP4
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#include "xioopen.h"
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#include "xio-socket.h"
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#include "xio-ip.h"
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#include "xio-ip4.h"
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int xioparsenetwork_ip4(const char *rangename, struct xiorange *range) {
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struct hostent *maskaddr;
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struct in_addr *netaddr_in = &range->netaddr.ip4.sin_addr;
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struct in_addr *netmask_in = &range->netmask.ip4.sin_addr;
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char *rangename1; /* a copy of rangename with writing allowed */
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char *delimpos; /* absolute address of delimiter */
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int bits;
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if ((rangename1 = strdup(rangename)) == NULL) {
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Error1("strdup(\"%s\"): out of memory", rangename);
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return STAT_RETRYLATER;
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}
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if (delimpos = strchr(rangename1, '/')) {
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bits = strtoul(delimpos+1, NULL, 10);
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netmask_in->s_addr = htonl((0xffffffff << (32-bits)));
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} else if (delimpos = strchr(rangename1, ':')) {
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if ((maskaddr = Gethostbyname(delimpos+1)) == NULL) {
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/* note: cast is req on AIX: */
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Error2("gethostbyname(\"%s\"): %s", delimpos+1,
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h_errno == NETDB_INTERNAL ? strerror(errno) :
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(char *)hstrerror(h_errno));
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return STAT_NORETRY;
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}
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netmask_in->s_addr = *(uint32_t *)maskaddr->h_addr_list[0];
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} else {
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Error1("xioparsenetwork_ip4(\"%s\",,): missing netmask delimiter", rangename);
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free(rangename1);
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return STAT_NORETRY;
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}
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{
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struct hostent *nameaddr;
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*delimpos = 0;
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if ((nameaddr = Gethostbyname(rangename1)) == NULL) {
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/* note: cast is req on AIX: */
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Error2("gethostbyname(\"%s\"): %s", rangename1,
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h_errno == NETDB_INTERNAL ? strerror(errno) :
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(char *)hstrerror(h_errno));
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free(rangename1);
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return STAT_NORETRY;
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}
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netaddr_in->s_addr = *(unsigned long *)nameaddr->h_addr_list[0];
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}
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free(rangename1);
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return STAT_OK;
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}
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/* check if peer address is within permitted range.
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return >= 0 if so. */
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int xiocheckrange_ip4(struct sockaddr_in *pa, struct xiorange *range) {
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struct in_addr *netaddr_in = &range->netaddr.ip4.sin_addr;
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struct in_addr *netmask_in = &range->netmask.ip4.sin_addr;
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char addrbuf[256], maskbuf[256];
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char peername[256];
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/* is provided client address valid? */
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if (pa->sin_addr.s_addr == 0) {
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Warn("invalid client address 0.0.0.0");
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return -1;
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}
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/* client address restriction */
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Debug2("permitted client subnet: %s:%s",
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inet4addr_info(ntohl(netaddr_in->s_addr), addrbuf, sizeof(addrbuf)),
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inet4addr_info(ntohl(netmask_in->s_addr), maskbuf, sizeof(maskbuf)));
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Debug1("client address is 0x%08x",
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ntohl(pa->sin_addr.s_addr));
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Debug1("masked address is 0x%08x",
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ntohl(pa->sin_addr.s_addr & netmask_in->s_addr));
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if ((pa->sin_addr.s_addr & netmask_in->s_addr)
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!= netaddr_in->s_addr) {
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Debug1("client address %s is not permitted",
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sockaddr_inet4_info(pa, peername, sizeof(peername)));
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return -1;
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}
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return 0;
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}
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/* returns information that can be used for constructing an environment
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variable describing the socket address.
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if idx is 0, this function writes "ADDR" into namebuff and the IP address
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into valuebuff, and returns 1 (which means that one more info is there).
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if idx is 1, it writes "PORT" into namebuff and the port number into
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valuebuff, and returns 0 (no more info)
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namelen and valuelen contain the max. allowed length of output chars in the
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respective buffer.
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on error this function returns -1.
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*/
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int
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xiosetsockaddrenv_ip4(int idx, char *namebuff, size_t namelen,
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char *valuebuff, size_t valuelen,
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struct sockaddr_in *sa, int ipproto) {
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switch (idx) {
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case 0:
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strcpy(namebuff, "ADDR");
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strcpy(valuebuff,
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inet4addr_info(ntohl(sa->sin_addr.s_addr), valuebuff, valuelen));
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switch (ipproto) {
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case IPPROTO_TCP:
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case IPPROTO_UDP:
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#ifdef IPPROTO_SCTP
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case IPPROTO_SCTP:
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#endif
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return 1; /* there is port information to also be retrieved */
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default:
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return 0; /* no port info coming */
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}
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case 1:
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strcpy(namebuff, "PORT");
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snprintf(valuebuff, valuelen, "%u", ntohs(sa->sin_port));
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return 0;
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}
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return -1;
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}
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#endif /* WITH_IP4 */
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