1*1772Sjl139090 /* 2*1772Sjl139090 * CDDL HEADER START 3*1772Sjl139090 * 4*1772Sjl139090 * The contents of this file are subject to the terms of the 5*1772Sjl139090 * Common Development and Distribution License (the "License"). 6*1772Sjl139090 * You may not use this file except in compliance with the License. 7*1772Sjl139090 * 8*1772Sjl139090 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9*1772Sjl139090 * or http://www.opensolaris.org/os/licensing. 10*1772Sjl139090 * See the License for the specific language governing permissions 11*1772Sjl139090 * and limitations under the License. 12*1772Sjl139090 * 13*1772Sjl139090 * When distributing Covered Code, include this CDDL HEADER in each 14*1772Sjl139090 * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15*1772Sjl139090 * If applicable, add the following below this CDDL HEADER, with the 16*1772Sjl139090 * fields enclosed by brackets "[]" replaced with your own identifying 17*1772Sjl139090 * information: Portions Copyright [yyyy] [name of copyright owner] 18*1772Sjl139090 * 19*1772Sjl139090 * CDDL HEADER END 20*1772Sjl139090 */ 21*1772Sjl139090 /* 22*1772Sjl139090 * Copyright 2006 Sun Microsystems, Inc. All rights reserved. 23*1772Sjl139090 * Use is subject to license terms. 24*1772Sjl139090 */ 25*1772Sjl139090 26*1772Sjl139090 #pragma ident "%Z%%M% %I% %E% SMI" 27*1772Sjl139090 28*1772Sjl139090 #include <stdlib.h> 29*1772Sjl139090 #include <stdio.h> 30*1772Sjl139090 #include <unistd.h> 31*1772Sjl139090 #include <string.h> 32*1772Sjl139090 #include <ctype.h> 33*1772Sjl139090 #include <errno.h> 34*1772Sjl139090 #include <fcntl.h> 35*1772Sjl139090 #include <sys/types.h> 36*1772Sjl139090 #include <sys/stat.h> 37*1772Sjl139090 #include <sys/ioctl.h> 38*1772Sjl139090 #include <sys/socket.h> 39*1772Sjl139090 #include <sys/sockio.h> 40*1772Sjl139090 #include <net/if.h> 41*1772Sjl139090 #include <net/pfkeyv2.h> 42*1772Sjl139090 #include <netinet/in.h> 43*1772Sjl139090 #include <arpa/inet.h> 44*1772Sjl139090 #include <libdscp.h> 45*1772Sjl139090 46*1772Sjl139090 /* 47*1772Sjl139090 * Define the file containing the configured DSCP interface name 48*1772Sjl139090 */ 49*1772Sjl139090 #define DSCP_CONFIGFILE "/var/run/dscp.ifname" 50*1772Sjl139090 51*1772Sjl139090 /* 52*1772Sjl139090 * Forward declarations 53*1772Sjl139090 */ 54*1772Sjl139090 static int get_ifname(char *); 55*1772Sjl139090 static int convert_ipv6(struct sockaddr_in6 *, uint32_t *); 56*1772Sjl139090 static int convert_ipv4(struct sockaddr_in *, 57*1772Sjl139090 struct sockaddr_in6 *, int *); 58*1772Sjl139090 59*1772Sjl139090 /* 60*1772Sjl139090 * dscpBind() 61*1772Sjl139090 * 62*1772Sjl139090 * Properly bind a socket to the local DSCP address. 63*1772Sjl139090 * Optionally bind it to a specific port. 64*1772Sjl139090 */ 65*1772Sjl139090 int 66*1772Sjl139090 dscpBind(int domain_id, int sockfd, int port) 67*1772Sjl139090 { 68*1772Sjl139090 int len; 69*1772Sjl139090 int len6; 70*1772Sjl139090 int error; 71*1772Sjl139090 struct sockaddr_in addr; 72*1772Sjl139090 struct sockaddr_in6 addr6; 73*1772Sjl139090 74*1772Sjl139090 /* Check arguments */ 75*1772Sjl139090 if ((sockfd < 0) || (port >= IPPORT_RESERVED)) { 76*1772Sjl139090 return (DSCP_ERROR_INVALID); 77*1772Sjl139090 } 78*1772Sjl139090 79*1772Sjl139090 /* Get the local DSCP address used to communicate with the SP */ 80*1772Sjl139090 error = dscpAddr(domain_id, DSCP_ADDR_LOCAL, 81*1772Sjl139090 (struct sockaddr *)&addr, &len); 82*1772Sjl139090 83*1772Sjl139090 if (error != DSCP_OK) { 84*1772Sjl139090 return (error); 85*1772Sjl139090 } 86*1772Sjl139090 87*1772Sjl139090 /* 88*1772Sjl139090 * If the caller specified a port, then update the socket address 89*1772Sjl139090 * to also specify the same port. 90*1772Sjl139090 */ 91*1772Sjl139090 if (port != 0) { 92*1772Sjl139090 addr.sin_port = htons(port); 93*1772Sjl139090 } 94*1772Sjl139090 95*1772Sjl139090 /* 96*1772Sjl139090 * Bind the socket. 97*1772Sjl139090 * 98*1772Sjl139090 * EINVAL means it is already bound. 99*1772Sjl139090 * EAFNOSUPPORT means try again using IPv6. 100*1772Sjl139090 */ 101*1772Sjl139090 if (bind(sockfd, (struct sockaddr *)&addr, len) < 0) { 102*1772Sjl139090 103*1772Sjl139090 if (errno == EINVAL) { 104*1772Sjl139090 return (DSCP_ERROR_ALREADY); 105*1772Sjl139090 } 106*1772Sjl139090 107*1772Sjl139090 if (errno != EAFNOSUPPORT) { 108*1772Sjl139090 return (DSCP_ERROR); 109*1772Sjl139090 } 110*1772Sjl139090 111*1772Sjl139090 if (convert_ipv4(&addr, &addr6, &len6) < 0) { 112*1772Sjl139090 return (DSCP_ERROR); 113*1772Sjl139090 } 114*1772Sjl139090 115*1772Sjl139090 if (bind(sockfd, (struct sockaddr *)&addr6, len6) < 0) { 116*1772Sjl139090 if (errno == EINVAL) { 117*1772Sjl139090 return (DSCP_ERROR_ALREADY); 118*1772Sjl139090 } 119*1772Sjl139090 return (DSCP_ERROR); 120*1772Sjl139090 } 121*1772Sjl139090 } 122*1772Sjl139090 123*1772Sjl139090 return (DSCP_OK); 124*1772Sjl139090 } 125*1772Sjl139090 126*1772Sjl139090 /* 127*1772Sjl139090 * dscpSecure() 128*1772Sjl139090 * 129*1772Sjl139090 * Enable DSCP security mechanisms on a socket. 130*1772Sjl139090 * 131*1772Sjl139090 * DSCP uses the IPSec AH (Authentication Headers) protocol with 132*1772Sjl139090 * the SHA-1 algorithm. 133*1772Sjl139090 */ 134*1772Sjl139090 /*ARGSUSED*/ 135*1772Sjl139090 int 136*1772Sjl139090 dscpSecure(int domain_id, int sockfd) 137*1772Sjl139090 { 138*1772Sjl139090 ipsec_req_t opt; 139*1772Sjl139090 140*1772Sjl139090 /* Check arguments */ 141*1772Sjl139090 if (sockfd < 0) { 142*1772Sjl139090 return (DSCP_ERROR_INVALID); 143*1772Sjl139090 } 144*1772Sjl139090 145*1772Sjl139090 /* 146*1772Sjl139090 * Construct a socket option argument that specifies the protocols 147*1772Sjl139090 * and algorithms required for DSCP's use of IPSec. 148*1772Sjl139090 */ 149*1772Sjl139090 (void) memset(&opt, 0, sizeof (opt)); 150*1772Sjl139090 opt.ipsr_ah_req = IPSEC_PREF_REQUIRED; 151*1772Sjl139090 opt.ipsr_esp_req = IPSEC_PREF_NEVER; 152*1772Sjl139090 opt.ipsr_self_encap_req = IPSEC_PREF_NEVER; 153*1772Sjl139090 opt.ipsr_auth_alg = SADB_AALG_MD5HMAC; 154*1772Sjl139090 155*1772Sjl139090 /* 156*1772Sjl139090 * Set the socket option that enables IPSec usage upon the socket, 157*1772Sjl139090 * using the socket option argument constructed above. 158*1772Sjl139090 */ 159*1772Sjl139090 if (setsockopt(sockfd, IPPROTO_IP, IP_SEC_OPT, (const char *)&opt, 160*1772Sjl139090 sizeof (opt)) < 0) { 161*1772Sjl139090 return (DSCP_ERROR); 162*1772Sjl139090 } 163*1772Sjl139090 164*1772Sjl139090 return (DSCP_OK); 165*1772Sjl139090 } 166*1772Sjl139090 167*1772Sjl139090 /* 168*1772Sjl139090 * dscpAuth() 169*1772Sjl139090 * 170*1772Sjl139090 * Test whether a connection should be accepted or refused. 171*1772Sjl139090 * The address of the connection request is compared against 172*1772Sjl139090 * the remote address of the specified DSCP link. 173*1772Sjl139090 */ 174*1772Sjl139090 /*ARGSUSED*/ 175*1772Sjl139090 int 176*1772Sjl139090 dscpAuth(int domain_id, struct sockaddr *saddr, int len) 177*1772Sjl139090 { 178*1772Sjl139090 int dlen; 179*1772Sjl139090 struct sockaddr daddr; 180*1772Sjl139090 struct sockaddr_in *sin; 181*1772Sjl139090 struct sockaddr_in6 *sin6; 182*1772Sjl139090 uint32_t spaddr; 183*1772Sjl139090 uint32_t reqaddr; 184*1772Sjl139090 185*1772Sjl139090 /* Check arguments */ 186*1772Sjl139090 if (saddr == NULL) { 187*1772Sjl139090 return (DSCP_ERROR_INVALID); 188*1772Sjl139090 } 189*1772Sjl139090 190*1772Sjl139090 /* 191*1772Sjl139090 * Get the remote IP address associated with the SP. 192*1772Sjl139090 */ 193*1772Sjl139090 if (dscpAddr(0, DSCP_ADDR_REMOTE, &daddr, &dlen) != DSCP_OK) { 194*1772Sjl139090 return (DSCP_ERROR_DB); 195*1772Sjl139090 } 196*1772Sjl139090 197*1772Sjl139090 /* 198*1772Sjl139090 * Convert the request's address to a 32-bit integer. 199*1772Sjl139090 * 200*1772Sjl139090 * This may require a conversion if the caller is 201*1772Sjl139090 * using an IPv6 socket. 202*1772Sjl139090 */ 203*1772Sjl139090 switch (saddr->sa_family) { 204*1772Sjl139090 case AF_INET: 205*1772Sjl139090 /* LINTED E_BAD_PTR_CAST_ALIGN */ 206*1772Sjl139090 sin = (struct sockaddr_in *)saddr; 207*1772Sjl139090 reqaddr = ntohl(*((uint32_t *)&(sin->sin_addr))); 208*1772Sjl139090 break; 209*1772Sjl139090 case AF_INET6: 210*1772Sjl139090 /* LINTED E_BAD_PTR_CAST_ALIGN */ 211*1772Sjl139090 sin6 = (struct sockaddr_in6 *)saddr; 212*1772Sjl139090 if (convert_ipv6(sin6, &reqaddr) < 0) { 213*1772Sjl139090 return (DSCP_ERROR); 214*1772Sjl139090 } 215*1772Sjl139090 break; 216*1772Sjl139090 default: 217*1772Sjl139090 return (DSCP_ERROR); 218*1772Sjl139090 } 219*1772Sjl139090 220*1772Sjl139090 /* 221*1772Sjl139090 * Convert the SP's address to a 32-bit integer. 222*1772Sjl139090 */ 223*1772Sjl139090 /* LINTED E_BAD_PTR_CAST_ALIGN */ 224*1772Sjl139090 sin = (struct sockaddr_in *)&daddr; 225*1772Sjl139090 spaddr = ntohl(*((uint32_t *)&(sin->sin_addr))); 226*1772Sjl139090 227*1772Sjl139090 /* 228*1772Sjl139090 * Compare the addresses. Reject if they don't match. 229*1772Sjl139090 */ 230*1772Sjl139090 if (reqaddr != spaddr) { 231*1772Sjl139090 return (DSCP_ERROR_REJECT); 232*1772Sjl139090 } 233*1772Sjl139090 234*1772Sjl139090 return (DSCP_OK); 235*1772Sjl139090 } 236*1772Sjl139090 237*1772Sjl139090 /* 238*1772Sjl139090 * dscpAddr() 239*1772Sjl139090 * 240*1772Sjl139090 * Get the addresses associated with a specific DSCP link. 241*1772Sjl139090 */ 242*1772Sjl139090 /*ARGSUSED*/ 243*1772Sjl139090 int 244*1772Sjl139090 dscpAddr(int domain_id, int which, struct sockaddr *saddr, int *lenp) 245*1772Sjl139090 { 246*1772Sjl139090 int error; 247*1772Sjl139090 int sockfd; 248*1772Sjl139090 uint64_t flags; 249*1772Sjl139090 char ifname[LIFNAMSIZ]; 250*1772Sjl139090 struct lifreq lifr; 251*1772Sjl139090 252*1772Sjl139090 /* Check arguments */ 253*1772Sjl139090 if (((saddr == NULL) || (lenp == NULL)) || 254*1772Sjl139090 ((which != DSCP_ADDR_LOCAL) && (which != DSCP_ADDR_REMOTE))) { 255*1772Sjl139090 return (DSCP_ERROR_INVALID); 256*1772Sjl139090 } 257*1772Sjl139090 258*1772Sjl139090 /* 259*1772Sjl139090 * Get the DSCP interface name. 260*1772Sjl139090 */ 261*1772Sjl139090 if (get_ifname(ifname) != 0) { 262*1772Sjl139090 return (DSCP_ERROR_DB); 263*1772Sjl139090 } 264*1772Sjl139090 265*1772Sjl139090 /* 266*1772Sjl139090 * Open a socket. 267*1772Sjl139090 */ 268*1772Sjl139090 if ((sockfd = socket(PF_INET, SOCK_DGRAM, 0)) < 0) { 269*1772Sjl139090 return (DSCP_ERROR_DB); 270*1772Sjl139090 } 271*1772Sjl139090 272*1772Sjl139090 /* 273*1772Sjl139090 * Get the interface flags. 274*1772Sjl139090 */ 275*1772Sjl139090 (void) memset(&lifr, 0, sizeof (lifr)); 276*1772Sjl139090 (void) strncpy(lifr.lifr_name, ifname, sizeof (lifr.lifr_name)); 277*1772Sjl139090 if (ioctl(sockfd, SIOCGLIFFLAGS, (char *)&lifr) < 0) { 278*1772Sjl139090 (void) close(sockfd); 279*1772Sjl139090 return (DSCP_ERROR_DB); 280*1772Sjl139090 } 281*1772Sjl139090 flags = lifr.lifr_flags; 282*1772Sjl139090 283*1772Sjl139090 /* 284*1772Sjl139090 * The interface must be a PPP link using IPv4. 285*1772Sjl139090 */ 286*1772Sjl139090 if (((flags & IFF_IPV4) == 0) || 287*1772Sjl139090 ((flags & IFF_POINTOPOINT) == 0)) { 288*1772Sjl139090 (void) close(sockfd); 289*1772Sjl139090 return (DSCP_ERROR_DB); 290*1772Sjl139090 } 291*1772Sjl139090 292*1772Sjl139090 /* 293*1772Sjl139090 * Get the local or remote address, depending upon 'which'. 294*1772Sjl139090 */ 295*1772Sjl139090 (void) strncpy(lifr.lifr_name, ifname, sizeof (lifr.lifr_name)); 296*1772Sjl139090 if (which == DSCP_ADDR_LOCAL) { 297*1772Sjl139090 error = ioctl(sockfd, SIOCGLIFADDR, (char *)&lifr); 298*1772Sjl139090 } else { 299*1772Sjl139090 error = ioctl(sockfd, SIOCGLIFDSTADDR, (char *)&lifr); 300*1772Sjl139090 } 301*1772Sjl139090 if (error < 0) { 302*1772Sjl139090 (void) close(sockfd); 303*1772Sjl139090 return (DSCP_ERROR_DB); 304*1772Sjl139090 } 305*1772Sjl139090 306*1772Sjl139090 /* 307*1772Sjl139090 * Copy the sockaddr value back to the caller. 308*1772Sjl139090 */ 309*1772Sjl139090 (void) memset(saddr, 0, sizeof (struct sockaddr)); 310*1772Sjl139090 (void) memcpy(saddr, &lifr.lifr_addr, sizeof (struct sockaddr_in)); 311*1772Sjl139090 *lenp = sizeof (struct sockaddr_in); 312*1772Sjl139090 313*1772Sjl139090 (void) close(sockfd); 314*1772Sjl139090 return (DSCP_OK); 315*1772Sjl139090 } 316*1772Sjl139090 317*1772Sjl139090 /* 318*1772Sjl139090 * dscpIdent() 319*1772Sjl139090 * 320*1772Sjl139090 * Determine the domain of origin associated with a sockaddr. 321*1772Sjl139090 * (Map a sockaddr to a domain ID.) 322*1772Sjl139090 * 323*1772Sjl139090 * In the Solaris version, the remote socket address should always 324*1772Sjl139090 * be the SP. A call to dscpAuth() is used to confirm this, and 325*1772Sjl139090 * then DSCP_IDENT_SP is returned as a special domain ID. 326*1772Sjl139090 */ 327*1772Sjl139090 int 328*1772Sjl139090 dscpIdent(struct sockaddr *saddr, int len, int *domainp) 329*1772Sjl139090 { 330*1772Sjl139090 int error; 331*1772Sjl139090 332*1772Sjl139090 /* Check arguments */ 333*1772Sjl139090 if ((saddr == NULL) || (domainp == NULL)) { 334*1772Sjl139090 return (DSCP_ERROR_INVALID); 335*1772Sjl139090 } 336*1772Sjl139090 337*1772Sjl139090 /* Confirm that the address is the SP */ 338*1772Sjl139090 error = dscpAuth(0, saddr, len); 339*1772Sjl139090 if (error != DSCP_OK) { 340*1772Sjl139090 if (error == DSCP_ERROR_REJECT) { 341*1772Sjl139090 return (DSCP_ERROR); 342*1772Sjl139090 } 343*1772Sjl139090 return (error); 344*1772Sjl139090 } 345*1772Sjl139090 346*1772Sjl139090 *domainp = DSCP_IDENT_SP; 347*1772Sjl139090 return (DSCP_OK); 348*1772Sjl139090 } 349*1772Sjl139090 350*1772Sjl139090 /* 351*1772Sjl139090 * get_ifname() 352*1772Sjl139090 * 353*1772Sjl139090 * Retrieve the interface name used by DSCP. 354*1772Sjl139090 * It should be available from a file in /var/run. 355*1772Sjl139090 * 356*1772Sjl139090 * Returns: 0 upon success, -1 upon failure. 357*1772Sjl139090 */ 358*1772Sjl139090 static int 359*1772Sjl139090 get_ifname(char *ifname) 360*1772Sjl139090 { 361*1772Sjl139090 int i; 362*1772Sjl139090 int fd; 363*1772Sjl139090 int len; 364*1772Sjl139090 int size; 365*1772Sjl139090 int count; 366*1772Sjl139090 int end; 367*1772Sjl139090 int begin; 368*1772Sjl139090 struct stat stbuf; 369*1772Sjl139090 370*1772Sjl139090 /* 371*1772Sjl139090 * Initialize the interface name. 372*1772Sjl139090 */ 373*1772Sjl139090 (void) memset(ifname, 0, LIFNAMSIZ); 374*1772Sjl139090 375*1772Sjl139090 /* 376*1772Sjl139090 * Test for a a valid configuration file. 377*1772Sjl139090 */ 378*1772Sjl139090 if ((stat(DSCP_CONFIGFILE, &stbuf) < 0) || 379*1772Sjl139090 (S_ISREG(stbuf.st_mode) == 0) || 380*1772Sjl139090 (stbuf.st_size > LIFNAMSIZ)) { 381*1772Sjl139090 return (-1); 382*1772Sjl139090 } 383*1772Sjl139090 384*1772Sjl139090 /* 385*1772Sjl139090 * Open the configuration file and read its contents 386*1772Sjl139090 */ 387*1772Sjl139090 388*1772Sjl139090 if ((fd = open(DSCP_CONFIGFILE, O_RDONLY)) < 0) { 389*1772Sjl139090 return (-1); 390*1772Sjl139090 } 391*1772Sjl139090 392*1772Sjl139090 count = 0; 393*1772Sjl139090 size = stbuf.st_size; 394*1772Sjl139090 do { 395*1772Sjl139090 i = read(fd, &ifname[count], size - count); 396*1772Sjl139090 if (i <= 0) { 397*1772Sjl139090 (void) close(fd); 398*1772Sjl139090 return (-1); 399*1772Sjl139090 } 400*1772Sjl139090 count += i; 401*1772Sjl139090 } while (count < size); 402*1772Sjl139090 403*1772Sjl139090 (void) close(fd); 404*1772Sjl139090 405*1772Sjl139090 /* 406*1772Sjl139090 * Analyze the interface name that was just read, 407*1772Sjl139090 * and clean it up as necessary. The result should 408*1772Sjl139090 * be a simple NULL terminated string such as "sppp0" 409*1772Sjl139090 * with no extra whitespace or other characters. 410*1772Sjl139090 */ 411*1772Sjl139090 412*1772Sjl139090 /* Detect the beginning of the interface name */ 413*1772Sjl139090 for (begin = -1, i = 0; i < size; i++) { 414*1772Sjl139090 if (isalnum(ifname[i]) != 0) { 415*1772Sjl139090 begin = i; 416*1772Sjl139090 break; 417*1772Sjl139090 } 418*1772Sjl139090 } 419*1772Sjl139090 420*1772Sjl139090 /* Fail if no such beginning was found */ 421*1772Sjl139090 if (begin < 0) { 422*1772Sjl139090 return (-1); 423*1772Sjl139090 } 424*1772Sjl139090 425*1772Sjl139090 /* Detect the end of the interface name */ 426*1772Sjl139090 for (end = size - 1, i = begin; i < size; i++) { 427*1772Sjl139090 if (isalnum(ifname[i]) == 0) { 428*1772Sjl139090 end = i; 429*1772Sjl139090 break; 430*1772Sjl139090 } 431*1772Sjl139090 } 432*1772Sjl139090 433*1772Sjl139090 /* Compute the length of the name */ 434*1772Sjl139090 len = end - begin; 435*1772Sjl139090 436*1772Sjl139090 /* Remove leading whitespace */ 437*1772Sjl139090 if (begin > 0) { 438*1772Sjl139090 (void) memmove(ifname, &ifname[begin], len); 439*1772Sjl139090 } 440*1772Sjl139090 441*1772Sjl139090 /* Clear out any remaining garbage */ 442*1772Sjl139090 if (len < size) { 443*1772Sjl139090 (void) memset(&ifname[len], 0, size - len); 444*1772Sjl139090 } 445*1772Sjl139090 446*1772Sjl139090 return (0); 447*1772Sjl139090 } 448*1772Sjl139090 449*1772Sjl139090 /* 450*1772Sjl139090 * convert_ipv6() 451*1772Sjl139090 * 452*1772Sjl139090 * Converts an IPv6 socket address into an equivalent IPv4 453*1772Sjl139090 * address. The conversion is to a 32-bit integer because 454*1772Sjl139090 * that is sufficient for how libdscp uses IPv4 addresses. 455*1772Sjl139090 * 456*1772Sjl139090 * The IPv4 address is additionally converted from network 457*1772Sjl139090 * byte order to host byte order. 458*1772Sjl139090 * 459*1772Sjl139090 * Returns: 0 upon success, with 'addrp' updated. 460*1772Sjl139090 * -1 upon failure, with 'addrp' undefined. 461*1772Sjl139090 */ 462*1772Sjl139090 static int 463*1772Sjl139090 convert_ipv6(struct sockaddr_in6 *addr6, uint32_t *addrp) 464*1772Sjl139090 { 465*1772Sjl139090 uint32_t addr; 466*1772Sjl139090 char *ipv4str; 467*1772Sjl139090 char ipv6str[INET6_ADDRSTRLEN]; 468*1772Sjl139090 469*1772Sjl139090 /* 470*1772Sjl139090 * Convert the IPv6 address into a string. 471*1772Sjl139090 */ 472*1772Sjl139090 if (inet_ntop(AF_INET6, &addr6->sin6_addr, ipv6str, 473*1772Sjl139090 sizeof (ipv6str)) == NULL) { 474*1772Sjl139090 return (-1); 475*1772Sjl139090 } 476*1772Sjl139090 477*1772Sjl139090 /* 478*1772Sjl139090 * Use the IPv6 string to construct an IPv4 string. 479*1772Sjl139090 */ 480*1772Sjl139090 if ((ipv4str = strrchr(ipv6str, ':')) != NULL) { 481*1772Sjl139090 ipv4str++; 482*1772Sjl139090 } else { 483*1772Sjl139090 return (-1); 484*1772Sjl139090 } 485*1772Sjl139090 486*1772Sjl139090 /* 487*1772Sjl139090 * Convert the IPv4 string into a 32-bit integer. 488*1772Sjl139090 */ 489*1772Sjl139090 if (inet_pton(AF_INET, ipv4str, &addr) <= 0) { 490*1772Sjl139090 return (-1); 491*1772Sjl139090 } 492*1772Sjl139090 493*1772Sjl139090 *addrp = ntohl(addr); 494*1772Sjl139090 return (0); 495*1772Sjl139090 } 496*1772Sjl139090 497*1772Sjl139090 /* 498*1772Sjl139090 * convert_ipv4() 499*1772Sjl139090 * 500*1772Sjl139090 * Convert an IPv4 socket address into an equivalent IPv6 address. 501*1772Sjl139090 * 502*1772Sjl139090 * Returns: 0 upon success, with 'addr6' and 'lenp' updated. 503*1772Sjl139090 * -1 upon failure, with 'addr6' and 'lenp' undefined. 504*1772Sjl139090 */ 505*1772Sjl139090 static int 506*1772Sjl139090 convert_ipv4(struct sockaddr_in *addr, struct sockaddr_in6 *addr6, int *lenp) 507*1772Sjl139090 { 508*1772Sjl139090 int len; 509*1772Sjl139090 uint32_t ipv4addr; 510*1772Sjl139090 char ipv4str[INET_ADDRSTRLEN]; 511*1772Sjl139090 char ipv6str[INET6_ADDRSTRLEN]; 512*1772Sjl139090 513*1772Sjl139090 /* 514*1772Sjl139090 * Convert the IPv4 socket address into a string. 515*1772Sjl139090 */ 516*1772Sjl139090 ipv4addr = *((uint32_t *)&(addr->sin_addr)); 517*1772Sjl139090 if (inet_ntop(AF_INET, &ipv4addr, ipv4str, sizeof (ipv4str)) == NULL) { 518*1772Sjl139090 return (-1); 519*1772Sjl139090 } 520*1772Sjl139090 521*1772Sjl139090 /* 522*1772Sjl139090 * Use the IPv4 string to construct an IPv6 string. 523*1772Sjl139090 */ 524*1772Sjl139090 len = snprintf(ipv6str, INET6_ADDRSTRLEN, "::ffff:%s", ipv4str); 525*1772Sjl139090 if (len >= INET6_ADDRSTRLEN) { 526*1772Sjl139090 return (-1); 527*1772Sjl139090 } 528*1772Sjl139090 529*1772Sjl139090 /* 530*1772Sjl139090 * Convert the IPv6 string to an IPv6 socket address. 531*1772Sjl139090 */ 532*1772Sjl139090 (void) memset(addr6, 0, sizeof (*addr6)); 533*1772Sjl139090 addr6->sin6_family = AF_INET6; 534*1772Sjl139090 addr6->sin6_port = addr->sin_port; 535*1772Sjl139090 if (inet_pton(AF_INET6, ipv6str, &addr6->sin6_addr) <= 0) { 536*1772Sjl139090 return (-1); 537*1772Sjl139090 } 538*1772Sjl139090 539*1772Sjl139090 *lenp = sizeof (struct sockaddr_in6); 540*1772Sjl139090 541*1772Sjl139090 return (0); 542*1772Sjl139090 } 543