The Design and Implementation of the FreeBSD Operating System, Second Edition
Now available: The Design and Implementation of the FreeBSD Operating System (Second Edition)


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FreeBSD/Linux Kernel Cross Reference
sys/compat/linux/linux_socket.c

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    1 /*-
    2  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
    3  *
    4  * Copyright (c) 1995 Søren Schmidt
    5  * All rights reserved.
    6  *
    7  * Redistribution and use in source and binary forms, with or without
    8  * modification, are permitted provided that the following conditions
    9  * are met:
   10  * 1. Redistributions of source code must retain the above copyright
   11  *    notice, this list of conditions and the following disclaimer.
   12  * 2. Redistributions in binary form must reproduce the above copyright
   13  *    notice, this list of conditions and the following disclaimer in the
   14  *    documentation and/or other materials provided with the distribution.
   15  *
   16  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
   17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
   18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
   19  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
   20  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
   21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
   22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
   23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
   24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
   25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
   26  * SUCH DAMAGE.
   27  */
   28 
   29 #include <sys/cdefs.h>
   30 __FBSDID("$FreeBSD: releng/12.0/sys/compat/linux/linux_socket.c 340762 2018-11-22 13:12:17Z tijl $");
   31 
   32 /* XXX we use functions that might not exist. */
   33 #include "opt_compat.h"
   34 #include "opt_inet6.h"
   35 
   36 #include <sys/param.h>
   37 #include <sys/proc.h>
   38 #include <sys/systm.h>
   39 #include <sys/sysproto.h>
   40 #include <sys/capsicum.h>
   41 #include <sys/fcntl.h>
   42 #include <sys/file.h>
   43 #include <sys/limits.h>
   44 #include <sys/lock.h>
   45 #include <sys/malloc.h>
   46 #include <sys/mutex.h>
   47 #include <sys/mbuf.h>
   48 #include <sys/socket.h>
   49 #include <sys/socketvar.h>
   50 #include <sys/syscallsubr.h>
   51 #include <sys/uio.h>
   52 #include <sys/syslog.h>
   53 #include <sys/un.h>
   54 
   55 #include <net/if.h>
   56 #include <net/vnet.h>
   57 #include <netinet/in.h>
   58 #include <netinet/in_systm.h>
   59 #include <netinet/ip.h>
   60 #include <netinet/tcp.h>
   61 #ifdef INET6
   62 #include <netinet/ip6.h>
   63 #include <netinet6/ip6_var.h>
   64 #endif
   65 
   66 #ifdef COMPAT_LINUX32
   67 #include <machine/../linux32/linux.h>
   68 #include <machine/../linux32/linux32_proto.h>
   69 #else
   70 #include <machine/../linux/linux.h>
   71 #include <machine/../linux/linux_proto.h>
   72 #endif
   73 #include <compat/linux/linux_file.h>
   74 #include <compat/linux/linux_socket.h>
   75 #include <compat/linux/linux_timer.h>
   76 #include <compat/linux/linux_util.h>
   77 
   78 static int linux_to_bsd_domain(int);
   79 static int linux_sendmsg_common(struct thread *, l_int, struct l_msghdr *,
   80                                         l_uint);
   81 static int linux_recvmsg_common(struct thread *, l_int, struct l_msghdr *,
   82                                         l_uint, struct msghdr *);
   83 static int linux_set_socket_flags(int, int *);
   84 
   85 /*
   86  * Reads a Linux sockaddr and does any necessary translation.
   87  * Linux sockaddrs don't have a length field, only a family.
   88  * Copy the osockaddr structure pointed to by osa to kernel, adjust
   89  * family and convert to sockaddr.
   90  */
   91 static int
   92 linux_getsockaddr(struct sockaddr **sap, const struct osockaddr *osa, int salen)
   93 {
   94         struct sockaddr *sa;
   95         struct osockaddr *kosa;
   96 #ifdef INET6
   97         struct sockaddr_in6 *sin6;
   98         int oldv6size;
   99 #endif
  100         char *name;
  101         int bdom, error, hdrlen, namelen;
  102 
  103         if (salen < 2 || salen > UCHAR_MAX || !osa)
  104                 return (EINVAL);
  105 
  106 #ifdef INET6
  107         oldv6size = 0;
  108         /*
  109          * Check for old (pre-RFC2553) sockaddr_in6. We may accept it
  110          * if it's a v4-mapped address, so reserve the proper space
  111          * for it.
  112          */
  113         if (salen == sizeof(struct sockaddr_in6) - sizeof(uint32_t)) {
  114                 salen += sizeof(uint32_t);
  115                 oldv6size = 1;
  116         }
  117 #endif
  118 
  119         kosa = malloc(salen, M_SONAME, M_WAITOK);
  120 
  121         if ((error = copyin(osa, kosa, salen)))
  122                 goto out;
  123 
  124         bdom = linux_to_bsd_domain(kosa->sa_family);
  125         if (bdom == -1) {
  126                 error = EAFNOSUPPORT;
  127                 goto out;
  128         }
  129 
  130 #ifdef INET6
  131         /*
  132          * Older Linux IPv6 code uses obsolete RFC2133 struct sockaddr_in6,
  133          * which lacks the scope id compared with RFC2553 one. If we detect
  134          * the situation, reject the address and write a message to system log.
  135          *
  136          * Still accept addresses for which the scope id is not used.
  137          */
  138         if (oldv6size) {
  139                 if (bdom == AF_INET6) {
  140                         sin6 = (struct sockaddr_in6 *)kosa;
  141                         if (IN6_IS_ADDR_V4MAPPED(&sin6->sin6_addr) ||
  142                             (!IN6_IS_ADDR_LINKLOCAL(&sin6->sin6_addr) &&
  143                              !IN6_IS_ADDR_SITELOCAL(&sin6->sin6_addr) &&
  144                              !IN6_IS_ADDR_V4COMPAT(&sin6->sin6_addr) &&
  145                              !IN6_IS_ADDR_UNSPECIFIED(&sin6->sin6_addr) &&
  146                              !IN6_IS_ADDR_MULTICAST(&sin6->sin6_addr))) {
  147                                 sin6->sin6_scope_id = 0;
  148                         } else {
  149                                 log(LOG_DEBUG,
  150                                     "obsolete pre-RFC2553 sockaddr_in6 rejected\n");
  151                                 error = EINVAL;
  152                                 goto out;
  153                         }
  154                 } else
  155                         salen -= sizeof(uint32_t);
  156         }
  157 #endif
  158         if (bdom == AF_INET) {
  159                 if (salen < sizeof(struct sockaddr_in)) {
  160                         error = EINVAL;
  161                         goto out;
  162                 }
  163                 salen = sizeof(struct sockaddr_in);
  164         }
  165 
  166         if (bdom == AF_LOCAL && salen > sizeof(struct sockaddr_un)) {
  167                 hdrlen = offsetof(struct sockaddr_un, sun_path);
  168                 name = ((struct sockaddr_un *)kosa)->sun_path;
  169                 if (*name == '\0') {
  170                         /*
  171                          * Linux abstract namespace starts with a NULL byte.
  172                          * XXX We do not support abstract namespace yet.
  173                          */
  174                         namelen = strnlen(name + 1, salen - hdrlen - 1) + 1;
  175                 } else
  176                         namelen = strnlen(name, salen - hdrlen);
  177                 salen = hdrlen + namelen;
  178                 if (salen > sizeof(struct sockaddr_un)) {
  179                         error = ENAMETOOLONG;
  180                         goto out;
  181                 }
  182         }
  183 
  184         sa = (struct sockaddr *)kosa;
  185         sa->sa_family = bdom;
  186         sa->sa_len = salen;
  187 
  188         *sap = sa;
  189         return (0);
  190 
  191 out:
  192         free(kosa, M_SONAME);
  193         return (error);
  194 }
  195 
  196 static int
  197 linux_to_bsd_domain(int domain)
  198 {
  199 
  200         switch (domain) {
  201         case LINUX_AF_UNSPEC:
  202                 return (AF_UNSPEC);
  203         case LINUX_AF_UNIX:
  204                 return (AF_LOCAL);
  205         case LINUX_AF_INET:
  206                 return (AF_INET);
  207         case LINUX_AF_INET6:
  208                 return (AF_INET6);
  209         case LINUX_AF_AX25:
  210                 return (AF_CCITT);
  211         case LINUX_AF_IPX:
  212                 return (AF_IPX);
  213         case LINUX_AF_APPLETALK:
  214                 return (AF_APPLETALK);
  215         }
  216         return (-1);
  217 }
  218 
  219 static int
  220 bsd_to_linux_domain(int domain)
  221 {
  222 
  223         switch (domain) {
  224         case AF_UNSPEC:
  225                 return (LINUX_AF_UNSPEC);
  226         case AF_LOCAL:
  227                 return (LINUX_AF_UNIX);
  228         case AF_INET:
  229                 return (LINUX_AF_INET);
  230         case AF_INET6:
  231                 return (LINUX_AF_INET6);
  232         case AF_CCITT:
  233                 return (LINUX_AF_AX25);
  234         case AF_IPX:
  235                 return (LINUX_AF_IPX);
  236         case AF_APPLETALK:
  237                 return (LINUX_AF_APPLETALK);
  238         }
  239         return (-1);
  240 }
  241 
  242 static int
  243 linux_to_bsd_sockopt_level(int level)
  244 {
  245 
  246         switch (level) {
  247         case LINUX_SOL_SOCKET:
  248                 return (SOL_SOCKET);
  249         }
  250         return (level);
  251 }
  252 
  253 static int
  254 bsd_to_linux_sockopt_level(int level)
  255 {
  256 
  257         switch (level) {
  258         case SOL_SOCKET:
  259                 return (LINUX_SOL_SOCKET);
  260         }
  261         return (level);
  262 }
  263 
  264 static int
  265 linux_to_bsd_ip_sockopt(int opt)
  266 {
  267 
  268         switch (opt) {
  269         case LINUX_IP_TOS:
  270                 return (IP_TOS);
  271         case LINUX_IP_TTL:
  272                 return (IP_TTL);
  273         case LINUX_IP_OPTIONS:
  274                 return (IP_OPTIONS);
  275         case LINUX_IP_MULTICAST_IF:
  276                 return (IP_MULTICAST_IF);
  277         case LINUX_IP_MULTICAST_TTL:
  278                 return (IP_MULTICAST_TTL);
  279         case LINUX_IP_MULTICAST_LOOP:
  280                 return (IP_MULTICAST_LOOP);
  281         case LINUX_IP_ADD_MEMBERSHIP:
  282                 return (IP_ADD_MEMBERSHIP);
  283         case LINUX_IP_DROP_MEMBERSHIP:
  284                 return (IP_DROP_MEMBERSHIP);
  285         case LINUX_IP_HDRINCL:
  286                 return (IP_HDRINCL);
  287         }
  288         return (-1);
  289 }
  290 
  291 static int
  292 linux_to_bsd_ip6_sockopt(int opt)
  293 {
  294 
  295         switch (opt) {
  296         case LINUX_IPV6_NEXTHOP:
  297                 return (IPV6_NEXTHOP);
  298         case LINUX_IPV6_UNICAST_HOPS:
  299                 return (IPV6_UNICAST_HOPS);
  300         case LINUX_IPV6_MULTICAST_IF:
  301                 return (IPV6_MULTICAST_IF);
  302         case LINUX_IPV6_MULTICAST_HOPS:
  303                 return (IPV6_MULTICAST_HOPS);
  304         case LINUX_IPV6_MULTICAST_LOOP:
  305                 return (IPV6_MULTICAST_LOOP);
  306         case LINUX_IPV6_ADD_MEMBERSHIP:
  307                 return (IPV6_JOIN_GROUP);
  308         case LINUX_IPV6_DROP_MEMBERSHIP:
  309                 return (IPV6_LEAVE_GROUP);
  310         case LINUX_IPV6_V6ONLY:
  311                 return (IPV6_V6ONLY);
  312         case LINUX_IPV6_DONTFRAG:
  313                 return (IPV6_DONTFRAG);
  314 #if 0
  315         case LINUX_IPV6_CHECKSUM:
  316                 return (IPV6_CHECKSUM);
  317         case LINUX_IPV6_RECVPKTINFO:
  318                 return (IPV6_RECVPKTINFO);
  319         case LINUX_IPV6_PKTINFO:
  320                 return (IPV6_PKTINFO);
  321         case LINUX_IPV6_RECVHOPLIMIT:
  322                 return (IPV6_RECVHOPLIMIT);
  323         case LINUX_IPV6_HOPLIMIT:
  324                 return (IPV6_HOPLIMIT);
  325         case LINUX_IPV6_RECVHOPOPTS:
  326                 return (IPV6_RECVHOPOPTS);
  327         case LINUX_IPV6_HOPOPTS:
  328                 return (IPV6_HOPOPTS);
  329         case LINUX_IPV6_RTHDRDSTOPTS:
  330                 return (IPV6_RTHDRDSTOPTS);
  331         case LINUX_IPV6_RECVRTHDR:
  332                 return (IPV6_RECVRTHDR);
  333         case LINUX_IPV6_RTHDR:
  334                 return (IPV6_RTHDR);
  335         case LINUX_IPV6_RECVDSTOPTS:
  336                 return (IPV6_RECVDSTOPTS);
  337         case LINUX_IPV6_DSTOPTS:
  338                 return (IPV6_DSTOPTS);
  339         case LINUX_IPV6_RECVPATHMTU:
  340                 return (IPV6_RECVPATHMTU);
  341         case LINUX_IPV6_PATHMTU:
  342                 return (IPV6_PATHMTU);
  343 #endif
  344         }
  345         return (-1);
  346 }
  347 
  348 static int
  349 linux_to_bsd_so_sockopt(int opt)
  350 {
  351 
  352         switch (opt) {
  353         case LINUX_SO_DEBUG:
  354                 return (SO_DEBUG);
  355         case LINUX_SO_REUSEADDR:
  356                 return (SO_REUSEADDR);
  357         case LINUX_SO_TYPE:
  358                 return (SO_TYPE);
  359         case LINUX_SO_ERROR:
  360                 return (SO_ERROR);
  361         case LINUX_SO_DONTROUTE:
  362                 return (SO_DONTROUTE);
  363         case LINUX_SO_BROADCAST:
  364                 return (SO_BROADCAST);
  365         case LINUX_SO_SNDBUF:
  366                 return (SO_SNDBUF);
  367         case LINUX_SO_RCVBUF:
  368                 return (SO_RCVBUF);
  369         case LINUX_SO_KEEPALIVE:
  370                 return (SO_KEEPALIVE);
  371         case LINUX_SO_OOBINLINE:
  372                 return (SO_OOBINLINE);
  373         case LINUX_SO_LINGER:
  374                 return (SO_LINGER);
  375         case LINUX_SO_PEERCRED:
  376                 return (LOCAL_PEERCRED);
  377         case LINUX_SO_RCVLOWAT:
  378                 return (SO_RCVLOWAT);
  379         case LINUX_SO_SNDLOWAT:
  380                 return (SO_SNDLOWAT);
  381         case LINUX_SO_RCVTIMEO:
  382                 return (SO_RCVTIMEO);
  383         case LINUX_SO_SNDTIMEO:
  384                 return (SO_SNDTIMEO);
  385         case LINUX_SO_TIMESTAMP:
  386                 return (SO_TIMESTAMP);
  387         case LINUX_SO_ACCEPTCONN:
  388                 return (SO_ACCEPTCONN);
  389         }
  390         return (-1);
  391 }
  392 
  393 static int
  394 linux_to_bsd_tcp_sockopt(int opt)
  395 {
  396 
  397         switch (opt) {
  398         case LINUX_TCP_NODELAY:
  399                 return (TCP_NODELAY);
  400         case LINUX_TCP_MAXSEG:
  401                 return (TCP_MAXSEG);
  402         case LINUX_TCP_KEEPIDLE:
  403                 return (TCP_KEEPIDLE);
  404         case LINUX_TCP_KEEPINTVL:
  405                 return (TCP_KEEPINTVL);
  406         case LINUX_TCP_KEEPCNT:
  407                 return (TCP_KEEPCNT);
  408         case LINUX_TCP_MD5SIG:
  409                 return (TCP_MD5SIG);
  410         }
  411         return (-1);
  412 }
  413 
  414 static int
  415 linux_to_bsd_msg_flags(int flags)
  416 {
  417         int ret_flags = 0;
  418 
  419         if (flags & LINUX_MSG_OOB)
  420                 ret_flags |= MSG_OOB;
  421         if (flags & LINUX_MSG_PEEK)
  422                 ret_flags |= MSG_PEEK;
  423         if (flags & LINUX_MSG_DONTROUTE)
  424                 ret_flags |= MSG_DONTROUTE;
  425         if (flags & LINUX_MSG_CTRUNC)
  426                 ret_flags |= MSG_CTRUNC;
  427         if (flags & LINUX_MSG_TRUNC)
  428                 ret_flags |= MSG_TRUNC;
  429         if (flags & LINUX_MSG_DONTWAIT)
  430                 ret_flags |= MSG_DONTWAIT;
  431         if (flags & LINUX_MSG_EOR)
  432                 ret_flags |= MSG_EOR;
  433         if (flags & LINUX_MSG_WAITALL)
  434                 ret_flags |= MSG_WAITALL;
  435         if (flags & LINUX_MSG_NOSIGNAL)
  436                 ret_flags |= MSG_NOSIGNAL;
  437 #if 0 /* not handled */
  438         if (flags & LINUX_MSG_PROXY)
  439                 ;
  440         if (flags & LINUX_MSG_FIN)
  441                 ;
  442         if (flags & LINUX_MSG_SYN)
  443                 ;
  444         if (flags & LINUX_MSG_CONFIRM)
  445                 ;
  446         if (flags & LINUX_MSG_RST)
  447                 ;
  448         if (flags & LINUX_MSG_ERRQUEUE)
  449                 ;
  450 #endif
  451         return (ret_flags);
  452 }
  453 
  454 /*
  455 * If bsd_to_linux_sockaddr() or linux_to_bsd_sockaddr() faults, then the
  456 * native syscall will fault.  Thus, we don't really need to check the
  457 * return values for these functions.
  458 */
  459 
  460 static int
  461 bsd_to_linux_sockaddr(struct sockaddr *arg)
  462 {
  463         struct sockaddr sa;
  464         size_t sa_len = sizeof(struct sockaddr);
  465         int error, bdom;
  466 
  467         if ((error = copyin(arg, &sa, sa_len)))
  468                 return (error);
  469 
  470         bdom = bsd_to_linux_domain(sa.sa_family);
  471         if (bdom == -1)
  472                 return (EAFNOSUPPORT);
  473 
  474         *(u_short *)&sa = bdom;
  475         return (copyout(&sa, arg, sa_len));
  476 }
  477 
  478 static int
  479 linux_to_bsd_sockaddr(struct sockaddr *arg, int len)
  480 {
  481         struct sockaddr sa;
  482         size_t sa_len = sizeof(struct sockaddr);
  483         int error, bdom;
  484 
  485         if ((error = copyin(arg, &sa, sa_len)))
  486                 return (error);
  487 
  488         bdom = linux_to_bsd_domain(*(sa_family_t *)&sa);
  489         if (bdom == -1)
  490                 return (EAFNOSUPPORT);
  491 
  492         sa.sa_family = bdom;
  493         sa.sa_len = len;
  494         return (copyout(&sa, arg, sa_len));
  495 }
  496 
  497 static int
  498 linux_sa_put(struct osockaddr *osa)
  499 {
  500         struct osockaddr sa;
  501         int error, bdom;
  502 
  503         /*
  504          * Only read/write the osockaddr family part, the rest is
  505          * not changed.
  506          */
  507         error = copyin(osa, &sa, sizeof(sa.sa_family));
  508         if (error != 0)
  509                 return (error);
  510 
  511         bdom = bsd_to_linux_domain(sa.sa_family);
  512         if (bdom == -1)
  513                 return (EINVAL);
  514 
  515         sa.sa_family = bdom;
  516         return (copyout(&sa, osa, sizeof(sa.sa_family)));
  517 }
  518 
  519 static int
  520 linux_to_bsd_cmsg_type(int cmsg_type)
  521 {
  522 
  523         switch (cmsg_type) {
  524         case LINUX_SCM_RIGHTS:
  525                 return (SCM_RIGHTS);
  526         case LINUX_SCM_CREDENTIALS:
  527                 return (SCM_CREDS);
  528         }
  529         return (-1);
  530 }
  531 
  532 static int
  533 bsd_to_linux_cmsg_type(int cmsg_type)
  534 {
  535 
  536         switch (cmsg_type) {
  537         case SCM_RIGHTS:
  538                 return (LINUX_SCM_RIGHTS);
  539         case SCM_CREDS:
  540                 return (LINUX_SCM_CREDENTIALS);
  541         case SCM_TIMESTAMP:
  542                 return (LINUX_SCM_TIMESTAMP);
  543         }
  544         return (-1);
  545 }
  546 
  547 static int
  548 linux_to_bsd_msghdr(struct msghdr *bhdr, const struct l_msghdr *lhdr)
  549 {
  550         if (lhdr->msg_controllen > INT_MAX)
  551                 return (ENOBUFS);
  552 
  553         bhdr->msg_name          = PTRIN(lhdr->msg_name);
  554         bhdr->msg_namelen       = lhdr->msg_namelen;
  555         bhdr->msg_iov           = PTRIN(lhdr->msg_iov);
  556         bhdr->msg_iovlen        = lhdr->msg_iovlen;
  557         bhdr->msg_control       = PTRIN(lhdr->msg_control);
  558 
  559         /*
  560          * msg_controllen is skipped since BSD and LINUX control messages
  561          * are potentially different sizes (e.g. the cred structure used
  562          * by SCM_CREDS is different between the two operating system).
  563          *
  564          * The caller can set it (if necessary) after converting all the
  565          * control messages.
  566          */
  567 
  568         bhdr->msg_flags         = linux_to_bsd_msg_flags(lhdr->msg_flags);
  569         return (0);
  570 }
  571 
  572 static int
  573 bsd_to_linux_msghdr(const struct msghdr *bhdr, struct l_msghdr *lhdr)
  574 {
  575         lhdr->msg_name          = PTROUT(bhdr->msg_name);
  576         lhdr->msg_namelen       = bhdr->msg_namelen;
  577         lhdr->msg_iov           = PTROUT(bhdr->msg_iov);
  578         lhdr->msg_iovlen        = bhdr->msg_iovlen;
  579         lhdr->msg_control       = PTROUT(bhdr->msg_control);
  580 
  581         /*
  582          * msg_controllen is skipped since BSD and LINUX control messages
  583          * are potentially different sizes (e.g. the cred structure used
  584          * by SCM_CREDS is different between the two operating system).
  585          *
  586          * The caller can set it (if necessary) after converting all the
  587          * control messages.
  588          */
  589 
  590         /* msg_flags skipped */
  591         return (0);
  592 }
  593 
  594 static int
  595 linux_set_socket_flags(int lflags, int *flags)
  596 {
  597 
  598         if (lflags & ~(LINUX_SOCK_CLOEXEC | LINUX_SOCK_NONBLOCK))
  599                 return (EINVAL);
  600         if (lflags & LINUX_SOCK_NONBLOCK)
  601                 *flags |= SOCK_NONBLOCK;
  602         if (lflags & LINUX_SOCK_CLOEXEC)
  603                 *flags |= SOCK_CLOEXEC;
  604         return (0);
  605 }
  606 
  607 static int
  608 linux_sendit(struct thread *td, int s, struct msghdr *mp, int flags,
  609     struct mbuf *control, enum uio_seg segflg)
  610 {
  611         struct sockaddr *to;
  612         int error;
  613 
  614         if (mp->msg_name != NULL) {
  615                 error = linux_getsockaddr(&to, mp->msg_name, mp->msg_namelen);
  616                 if (error != 0)
  617                         return (error);
  618                 mp->msg_name = to;
  619         } else
  620                 to = NULL;
  621 
  622         error = kern_sendit(td, s, mp, linux_to_bsd_msg_flags(flags), control,
  623             segflg);
  624 
  625         if (to)
  626                 free(to, M_SONAME);
  627         return (error);
  628 }
  629 
  630 /* Return 0 if IP_HDRINCL is set for the given socket. */
  631 static int
  632 linux_check_hdrincl(struct thread *td, int s)
  633 {
  634         int error, optval;
  635         socklen_t size_val;
  636 
  637         size_val = sizeof(optval);
  638         error = kern_getsockopt(td, s, IPPROTO_IP, IP_HDRINCL,
  639             &optval, UIO_SYSSPACE, &size_val);
  640         if (error != 0)
  641                 return (error);
  642 
  643         return (optval == 0);
  644 }
  645 
  646 /*
  647  * Updated sendto() when IP_HDRINCL is set:
  648  * tweak endian-dependent fields in the IP packet.
  649  */
  650 static int
  651 linux_sendto_hdrincl(struct thread *td, struct linux_sendto_args *linux_args)
  652 {
  653 /*
  654  * linux_ip_copysize defines how many bytes we should copy
  655  * from the beginning of the IP packet before we customize it for BSD.
  656  * It should include all the fields we modify (ip_len and ip_off).
  657  */
  658 #define linux_ip_copysize       8
  659 
  660         struct ip *packet;
  661         struct msghdr msg;
  662         struct iovec aiov[1];
  663         int error;
  664 
  665         /* Check that the packet isn't too big or too small. */
  666         if (linux_args->len < linux_ip_copysize ||
  667             linux_args->len > IP_MAXPACKET)
  668                 return (EINVAL);
  669 
  670         packet = (struct ip *)malloc(linux_args->len, M_LINUX, M_WAITOK);
  671 
  672         /* Make kernel copy of the packet to be sent */
  673         if ((error = copyin(PTRIN(linux_args->msg), packet,
  674             linux_args->len)))
  675                 goto goout;
  676 
  677         /* Convert fields from Linux to BSD raw IP socket format */
  678         packet->ip_len = linux_args->len;
  679         packet->ip_off = ntohs(packet->ip_off);
  680 
  681         /* Prepare the msghdr and iovec structures describing the new packet */
  682         msg.msg_name = PTRIN(linux_args->to);
  683         msg.msg_namelen = linux_args->tolen;
  684         msg.msg_iov = aiov;
  685         msg.msg_iovlen = 1;
  686         msg.msg_control = NULL;
  687         msg.msg_flags = 0;
  688         aiov[0].iov_base = (char *)packet;
  689         aiov[0].iov_len = linux_args->len;
  690         error = linux_sendit(td, linux_args->s, &msg, linux_args->flags,
  691             NULL, UIO_SYSSPACE);
  692 goout:
  693         free(packet, M_LINUX);
  694         return (error);
  695 }
  696 
  697 int
  698 linux_socket(struct thread *td, struct linux_socket_args *args)
  699 {
  700         int domain, retval_socket, type;
  701 
  702         type = args->type & LINUX_SOCK_TYPE_MASK;
  703         if (type < 0 || type > LINUX_SOCK_MAX)
  704                 return (EINVAL);
  705         retval_socket = linux_set_socket_flags(args->type & ~LINUX_SOCK_TYPE_MASK,
  706                 &type);
  707         if (retval_socket != 0)
  708                 return (retval_socket);
  709         domain = linux_to_bsd_domain(args->domain);
  710         if (domain == -1)
  711                 return (EAFNOSUPPORT);
  712 
  713         retval_socket = kern_socket(td, domain, type, args->protocol);
  714         if (retval_socket)
  715                 return (retval_socket);
  716 
  717         if (type == SOCK_RAW
  718             && (args->protocol == IPPROTO_RAW || args->protocol == 0)
  719             && domain == PF_INET) {
  720                 /* It's a raw IP socket: set the IP_HDRINCL option. */
  721                 int hdrincl;
  722 
  723                 hdrincl = 1;
  724                 /* We ignore any error returned by kern_setsockopt() */
  725                 kern_setsockopt(td, td->td_retval[0], IPPROTO_IP, IP_HDRINCL,
  726                     &hdrincl, UIO_SYSSPACE, sizeof(hdrincl));
  727         }
  728 #ifdef INET6
  729         /*
  730          * Linux AF_INET6 socket has IPV6_V6ONLY setsockopt set to 0 by default
  731          * and some apps depend on this. So, set V6ONLY to 0 for Linux apps.
  732          * For simplicity we do this unconditionally of the net.inet6.ip6.v6only
  733          * sysctl value.
  734          */
  735         if (domain == PF_INET6) {
  736                 int v6only;
  737 
  738                 v6only = 0;
  739                 /* We ignore any error returned by setsockopt() */
  740                 kern_setsockopt(td, td->td_retval[0], IPPROTO_IPV6, IPV6_V6ONLY,
  741                     &v6only, UIO_SYSSPACE, sizeof(v6only));
  742         }
  743 #endif
  744 
  745         return (retval_socket);
  746 }
  747 
  748 int
  749 linux_bind(struct thread *td, struct linux_bind_args *args)
  750 {
  751         struct sockaddr *sa;
  752         int error;
  753 
  754         error = linux_getsockaddr(&sa, PTRIN(args->name),
  755             args->namelen);
  756         if (error != 0)
  757                 return (error);
  758 
  759         error = kern_bindat(td, AT_FDCWD, args->s, sa);
  760         free(sa, M_SONAME);
  761         if (error == EADDRNOTAVAIL && args->namelen != sizeof(struct sockaddr_in))
  762                 return (EINVAL);
  763         return (error);
  764 }
  765 
  766 int
  767 linux_connect(struct thread *td, struct linux_connect_args *args)
  768 {
  769         struct socket *so;
  770         struct sockaddr *sa;
  771         struct file *fp;
  772         u_int fflag;
  773         int error;
  774 
  775         error = linux_getsockaddr(&sa, (struct osockaddr *)PTRIN(args->name),
  776             args->namelen);
  777         if (error != 0)
  778                 return (error);
  779 
  780         error = kern_connectat(td, AT_FDCWD, args->s, sa);
  781         free(sa, M_SONAME);
  782         if (error != EISCONN)
  783                 return (error);
  784 
  785         /*
  786          * Linux doesn't return EISCONN the first time it occurs,
  787          * when on a non-blocking socket. Instead it returns the
  788          * error getsockopt(SOL_SOCKET, SO_ERROR) would return on BSD.
  789          */
  790         error = getsock_cap(td, args->s, &cap_connect_rights,
  791             &fp, &fflag, NULL);
  792         if (error != 0)
  793                 return (error);
  794 
  795         error = EISCONN;
  796         so = fp->f_data;
  797         if (fflag & FNONBLOCK) {
  798                 SOCK_LOCK(so);
  799                 if (so->so_emuldata == 0)
  800                         error = so->so_error;
  801                 so->so_emuldata = (void *)1;
  802                 SOCK_UNLOCK(so);
  803         }
  804         fdrop(fp, td);
  805 
  806         return (error);
  807 }
  808 
  809 int
  810 linux_listen(struct thread *td, struct linux_listen_args *args)
  811 {
  812 
  813         return (kern_listen(td, args->s, args->backlog));
  814 }
  815 
  816 static int
  817 linux_accept_common(struct thread *td, int s, l_uintptr_t addr,
  818     l_uintptr_t namelen, int flags)
  819 {
  820         struct accept4_args /* {
  821                 int     s;
  822                 struct sockaddr * __restrict name;
  823                 socklen_t * __restrict anamelen;
  824                 int     flags;
  825         } */ bsd_args;
  826         struct socket *so;
  827         struct file *fp;
  828         int error, error1;
  829 
  830         bsd_args.s = s;
  831         bsd_args.name = (struct sockaddr * __restrict)PTRIN(addr);
  832         bsd_args.anamelen = PTRIN(namelen);
  833         bsd_args.flags = 0;
  834         error = linux_set_socket_flags(flags, &bsd_args.flags);
  835         if (error != 0)
  836                 return (error);
  837         error = sys_accept4(td, &bsd_args);
  838         bsd_to_linux_sockaddr((struct sockaddr *)bsd_args.name);
  839         if (error != 0) {
  840                 if (error == EFAULT && namelen != sizeof(struct sockaddr_in))
  841                         return (EINVAL);
  842                 if (error == EINVAL) {
  843                         error1 = getsock_cap(td, s, &cap_accept_rights, &fp, NULL, NULL);
  844                         if (error1 != 0)
  845                                 return (error1);
  846                         so = fp->f_data;
  847                         if (so->so_type == SOCK_DGRAM) {
  848                                 fdrop(fp, td);
  849                                 return (EOPNOTSUPP);
  850                         }
  851                         fdrop(fp, td);
  852                 }
  853                 return (error);
  854         }
  855         if (addr)
  856                 error = linux_sa_put(PTRIN(addr));
  857         if (error != 0) {
  858                 (void)kern_close(td, td->td_retval[0]);
  859                 td->td_retval[0] = 0;
  860         }
  861         return (error);
  862 }
  863 
  864 int
  865 linux_accept(struct thread *td, struct linux_accept_args *args)
  866 {
  867 
  868         return (linux_accept_common(td, args->s, args->addr,
  869             args->namelen, 0));
  870 }
  871 
  872 int
  873 linux_accept4(struct thread *td, struct linux_accept4_args *args)
  874 {
  875 
  876         return (linux_accept_common(td, args->s, args->addr,
  877             args->namelen, args->flags));
  878 }
  879 
  880 int
  881 linux_getsockname(struct thread *td, struct linux_getsockname_args *args)
  882 {
  883         struct getsockname_args /* {
  884                 int     fdes;
  885                 struct sockaddr * __restrict asa;
  886                 socklen_t * __restrict alen;
  887         } */ bsd_args;
  888         int error;
  889 
  890         bsd_args.fdes = args->s;
  891         bsd_args.asa = (struct sockaddr * __restrict)PTRIN(args->addr);
  892         bsd_args.alen = PTRIN(args->namelen);
  893         error = sys_getsockname(td, &bsd_args);
  894         bsd_to_linux_sockaddr((struct sockaddr *)bsd_args.asa);
  895         if (error != 0)
  896                 return (error);
  897         return (linux_sa_put(PTRIN(args->addr)));
  898 }
  899 
  900 int
  901 linux_getpeername(struct thread *td, struct linux_getpeername_args *args)
  902 {
  903         struct getpeername_args /* {
  904                 int fdes;
  905                 caddr_t asa;
  906                 int *alen;
  907         } */ bsd_args;
  908         int error;
  909 
  910         bsd_args.fdes = args->s;
  911         bsd_args.asa = (struct sockaddr *)PTRIN(args->addr);
  912         bsd_args.alen = (socklen_t *)PTRIN(args->namelen);
  913         error = sys_getpeername(td, &bsd_args);
  914         bsd_to_linux_sockaddr((struct sockaddr *)bsd_args.asa);
  915         if (error != 0)
  916                 return (error);
  917         return (linux_sa_put(PTRIN(args->addr)));
  918 }
  919 
  920 int
  921 linux_socketpair(struct thread *td, struct linux_socketpair_args *args)
  922 {
  923         struct socketpair_args /* {
  924                 int domain;
  925                 int type;
  926                 int protocol;
  927                 int *rsv;
  928         } */ bsd_args;
  929         int error;
  930 
  931         bsd_args.domain = linux_to_bsd_domain(args->domain);
  932         if (bsd_args.domain != PF_LOCAL)
  933                 return (EAFNOSUPPORT);
  934         bsd_args.type = args->type & LINUX_SOCK_TYPE_MASK;
  935         if (bsd_args.type < 0 || bsd_args.type > LINUX_SOCK_MAX)
  936                 return (EINVAL);
  937         error = linux_set_socket_flags(args->type & ~LINUX_SOCK_TYPE_MASK,
  938                 &bsd_args.type);
  939         if (error != 0)
  940                 return (error);
  941         if (args->protocol != 0 && args->protocol != PF_UNIX)
  942 
  943                 /*
  944                  * Use of PF_UNIX as protocol argument is not right,
  945                  * but Linux does it.
  946                  * Do not map PF_UNIX as its Linux value is identical
  947                  * to FreeBSD one.
  948                  */
  949                 return (EPROTONOSUPPORT);
  950         else
  951                 bsd_args.protocol = 0;
  952         bsd_args.rsv = (int *)PTRIN(args->rsv);
  953         return (sys_socketpair(td, &bsd_args));
  954 }
  955 
  956 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
  957 struct linux_send_args {
  958         register_t s;
  959         register_t msg;
  960         register_t len;
  961         register_t flags;
  962 };
  963 
  964 static int
  965 linux_send(struct thread *td, struct linux_send_args *args)
  966 {
  967         struct sendto_args /* {
  968                 int s;
  969                 caddr_t buf;
  970                 int len;
  971                 int flags;
  972                 caddr_t to;
  973                 int tolen;
  974         } */ bsd_args;
  975 
  976         bsd_args.s = args->s;
  977         bsd_args.buf = (caddr_t)PTRIN(args->msg);
  978         bsd_args.len = args->len;
  979         bsd_args.flags = args->flags;
  980         bsd_args.to = NULL;
  981         bsd_args.tolen = 0;
  982         return (sys_sendto(td, &bsd_args));
  983 }
  984 
  985 struct linux_recv_args {
  986         register_t s;
  987         register_t msg;
  988         register_t len;
  989         register_t flags;
  990 };
  991 
  992 static int
  993 linux_recv(struct thread *td, struct linux_recv_args *args)
  994 {
  995         struct recvfrom_args /* {
  996                 int s;
  997                 caddr_t buf;
  998                 int len;
  999                 int flags;
 1000                 struct sockaddr *from;
 1001                 socklen_t fromlenaddr;
 1002         } */ bsd_args;
 1003 
 1004         bsd_args.s = args->s;
 1005         bsd_args.buf = (caddr_t)PTRIN(args->msg);
 1006         bsd_args.len = args->len;
 1007         bsd_args.flags = linux_to_bsd_msg_flags(args->flags);
 1008         bsd_args.from = NULL;
 1009         bsd_args.fromlenaddr = 0;
 1010         return (sys_recvfrom(td, &bsd_args));
 1011 }
 1012 #endif /* __i386__ || (__amd64__ && COMPAT_LINUX32) */
 1013 
 1014 int
 1015 linux_sendto(struct thread *td, struct linux_sendto_args *args)
 1016 {
 1017         struct msghdr msg;
 1018         struct iovec aiov;
 1019 
 1020         if (linux_check_hdrincl(td, args->s) == 0)
 1021                 /* IP_HDRINCL set, tweak the packet before sending */
 1022                 return (linux_sendto_hdrincl(td, args));
 1023 
 1024         msg.msg_name = PTRIN(args->to);
 1025         msg.msg_namelen = args->tolen;
 1026         msg.msg_iov = &aiov;
 1027         msg.msg_iovlen = 1;
 1028         msg.msg_control = NULL;
 1029         msg.msg_flags = 0;
 1030         aiov.iov_base = PTRIN(args->msg);
 1031         aiov.iov_len = args->len;
 1032         return (linux_sendit(td, args->s, &msg, args->flags, NULL,
 1033             UIO_USERSPACE));
 1034 }
 1035 
 1036 int
 1037 linux_recvfrom(struct thread *td, struct linux_recvfrom_args *args)
 1038 {
 1039         struct msghdr msg;
 1040         struct iovec aiov;
 1041         int error, fromlen;
 1042 
 1043         if (PTRIN(args->fromlen) != NULL) {
 1044                 error = copyin(PTRIN(args->fromlen), &fromlen,
 1045                     sizeof(fromlen));
 1046                 if (error != 0)
 1047                         return (error);
 1048                 if (fromlen < 0)
 1049                         return (EINVAL);
 1050                 msg.msg_namelen = fromlen;
 1051         } else
 1052                 msg.msg_namelen = 0;
 1053 
 1054         msg.msg_name = (struct sockaddr * __restrict)PTRIN(args->from);
 1055         msg.msg_iov = &aiov;
 1056         msg.msg_iovlen = 1;
 1057         aiov.iov_base = PTRIN(args->buf);
 1058         aiov.iov_len = args->len;
 1059         msg.msg_control = 0;
 1060         msg.msg_flags = linux_to_bsd_msg_flags(args->flags);
 1061 
 1062         error = kern_recvit(td, args->s, &msg, UIO_USERSPACE, NULL);
 1063         if (error != 0)
 1064                 return (error);
 1065 
 1066         if (PTRIN(args->from) != NULL) {
 1067                 error = bsd_to_linux_sockaddr((struct sockaddr *)
 1068                     PTRIN(args->from));
 1069                 if (error != 0)
 1070                         return (error);
 1071 
 1072                 error = linux_sa_put((struct osockaddr *)
 1073                     PTRIN(args->from));
 1074         }
 1075 
 1076         if (PTRIN(args->fromlen) != NULL)
 1077                 error = copyout(&msg.msg_namelen, PTRIN(args->fromlen),
 1078                     sizeof(msg.msg_namelen));
 1079 
 1080         return (error);
 1081 }
 1082 
 1083 static int
 1084 linux_sendmsg_common(struct thread *td, l_int s, struct l_msghdr *msghdr,
 1085     l_uint flags)
 1086 {
 1087         struct cmsghdr *cmsg;
 1088         struct mbuf *control;
 1089         struct msghdr msg;
 1090         struct l_cmsghdr linux_cmsg;
 1091         struct l_cmsghdr *ptr_cmsg;
 1092         struct l_msghdr linux_msg;
 1093         struct iovec *iov;
 1094         socklen_t datalen;
 1095         struct sockaddr *sa;
 1096         sa_family_t sa_family;
 1097         void *data;
 1098         l_size_t len;
 1099         l_size_t clen;
 1100         int error;
 1101 
 1102         error = copyin(msghdr, &linux_msg, sizeof(linux_msg));
 1103         if (error != 0)
 1104                 return (error);
 1105 
 1106         /*
 1107          * Some Linux applications (ping) define a non-NULL control data
 1108          * pointer, but a msg_controllen of 0, which is not allowed in the
 1109          * FreeBSD system call interface.  NULL the msg_control pointer in
 1110          * order to handle this case.  This should be checked, but allows the
 1111          * Linux ping to work.
 1112          */
 1113         if (PTRIN(linux_msg.msg_control) != NULL && linux_msg.msg_controllen == 0)
 1114                 linux_msg.msg_control = PTROUT(NULL);
 1115 
 1116         error = linux_to_bsd_msghdr(&msg, &linux_msg);
 1117         if (error != 0)
 1118                 return (error);
 1119 
 1120 #ifdef COMPAT_LINUX32
 1121         error = linux32_copyiniov(PTRIN(msg.msg_iov), msg.msg_iovlen,
 1122             &iov, EMSGSIZE);
 1123 #else
 1124         error = copyiniov(msg.msg_iov, msg.msg_iovlen, &iov, EMSGSIZE);
 1125 #endif
 1126         if (error != 0)
 1127                 return (error);
 1128 
 1129         control = NULL;
 1130 
 1131         if (linux_msg.msg_controllen >= sizeof(struct l_cmsghdr)) {
 1132                 error = kern_getsockname(td, s, &sa, &datalen);
 1133                 if (error != 0)
 1134                         goto bad;
 1135                 sa_family = sa->sa_family;
 1136                 free(sa, M_SONAME);
 1137 
 1138                 error = ENOBUFS;
 1139                 control = m_get(M_WAITOK, MT_CONTROL);
 1140                 MCLGET(control, M_WAITOK);
 1141                 data = mtod(control, void *);
 1142                 datalen = 0;
 1143 
 1144                 ptr_cmsg = PTRIN(linux_msg.msg_control);
 1145                 clen = linux_msg.msg_controllen;
 1146                 do {
 1147                         error = copyin(ptr_cmsg, &linux_cmsg,
 1148                             sizeof(struct l_cmsghdr));
 1149                         if (error != 0)
 1150                                 goto bad;
 1151 
 1152                         error = EINVAL;
 1153                         if (linux_cmsg.cmsg_len < sizeof(struct l_cmsghdr) ||
 1154                             linux_cmsg.cmsg_len > clen)
 1155                                 goto bad;
 1156 
 1157                         if (datalen + CMSG_HDRSZ > MCLBYTES)
 1158                                 goto bad;
 1159 
 1160                         /*
 1161                          * Now we support only SCM_RIGHTS and SCM_CRED,
 1162                          * so return EINVAL in any other cmsg_type
 1163                          */
 1164                         cmsg = data;
 1165                         cmsg->cmsg_type =
 1166                             linux_to_bsd_cmsg_type(linux_cmsg.cmsg_type);
 1167                         cmsg->cmsg_level =
 1168                             linux_to_bsd_sockopt_level(linux_cmsg.cmsg_level);
 1169                         if (cmsg->cmsg_type == -1
 1170                             || cmsg->cmsg_level != SOL_SOCKET)
 1171                                 goto bad;
 1172 
 1173                         /*
 1174                          * Some applications (e.g. pulseaudio) attempt to
 1175                          * send ancillary data even if the underlying protocol
 1176                          * doesn't support it which is not allowed in the
 1177                          * FreeBSD system call interface.
 1178                          */
 1179                         if (sa_family != AF_UNIX)
 1180                                 continue;
 1181 
 1182                         if (cmsg->cmsg_type == SCM_CREDS) {
 1183                                 len = sizeof(struct cmsgcred);
 1184                                 if (datalen + CMSG_SPACE(len) > MCLBYTES)
 1185                                         goto bad;
 1186 
 1187                                 /*
 1188                                  * The lower levels will fill in the structure
 1189                                  */
 1190                                 memset(CMSG_DATA(data), 0, len);
 1191                         } else {
 1192                                 len = linux_cmsg.cmsg_len - L_CMSG_HDRSZ;
 1193                                 if (datalen + CMSG_SPACE(len) < datalen ||
 1194                                     datalen + CMSG_SPACE(len) > MCLBYTES)
 1195                                         goto bad;
 1196 
 1197                                 error = copyin(LINUX_CMSG_DATA(ptr_cmsg),
 1198                                     CMSG_DATA(data), len);
 1199                                 if (error != 0)
 1200                                         goto bad;
 1201                         }
 1202 
 1203                         cmsg->cmsg_len = CMSG_LEN(len);
 1204                         data = (char *)data + CMSG_SPACE(len);
 1205                         datalen += CMSG_SPACE(len);
 1206 
 1207                         if (clen <= LINUX_CMSG_ALIGN(linux_cmsg.cmsg_len))
 1208                                 break;
 1209 
 1210                         clen -= LINUX_CMSG_ALIGN(linux_cmsg.cmsg_len);
 1211                         ptr_cmsg = (struct l_cmsghdr *)((char *)ptr_cmsg +
 1212                             LINUX_CMSG_ALIGN(linux_cmsg.cmsg_len));
 1213                 } while(clen >= sizeof(struct l_cmsghdr));
 1214 
 1215                 control->m_len = datalen;
 1216                 if (datalen == 0) {
 1217                         m_freem(control);
 1218                         control = NULL;
 1219                 }
 1220         }
 1221 
 1222         msg.msg_iov = iov;
 1223         msg.msg_flags = 0;
 1224         error = linux_sendit(td, s, &msg, flags, control, UIO_USERSPACE);
 1225         control = NULL;
 1226 
 1227 bad:
 1228         m_freem(control);
 1229         free(iov, M_IOV);
 1230         return (error);
 1231 }
 1232 
 1233 int
 1234 linux_sendmsg(struct thread *td, struct linux_sendmsg_args *args)
 1235 {
 1236 
 1237         return (linux_sendmsg_common(td, args->s, PTRIN(args->msg),
 1238             args->flags));
 1239 }
 1240 
 1241 int
 1242 linux_sendmmsg(struct thread *td, struct linux_sendmmsg_args *args)
 1243 {
 1244         struct l_mmsghdr *msg;
 1245         l_uint retval;
 1246         int error, datagrams;
 1247 
 1248         if (args->vlen > UIO_MAXIOV)
 1249                 args->vlen = UIO_MAXIOV;
 1250 
 1251         msg = PTRIN(args->msg);
 1252         datagrams = 0;
 1253         while (datagrams < args->vlen) {
 1254                 error = linux_sendmsg_common(td, args->s, &msg->msg_hdr,
 1255                     args->flags);
 1256                 if (error != 0)
 1257                         break;
 1258 
 1259                 retval = td->td_retval[0];
 1260                 error = copyout(&retval, &msg->msg_len, sizeof(msg->msg_len));
 1261                 if (error != 0)
 1262                         break;
 1263                 ++msg;
 1264                 ++datagrams;
 1265         }
 1266         if (error == 0)
 1267                 td->td_retval[0] = datagrams;
 1268         return (error);
 1269 }
 1270 
 1271 static int
 1272 linux_recvmsg_common(struct thread *td, l_int s, struct l_msghdr *msghdr,
 1273     l_uint flags, struct msghdr *msg)
 1274 {
 1275         struct cmsghdr *cm;
 1276         struct cmsgcred *cmcred;
 1277         struct l_cmsghdr *linux_cmsg = NULL;
 1278         struct l_ucred linux_ucred;
 1279         socklen_t datalen, maxlen, outlen;
 1280         struct l_msghdr linux_msg;
 1281         struct iovec *iov, *uiov;
 1282         struct mbuf *control = NULL;
 1283         struct mbuf **controlp;
 1284         struct timeval *ftmvl;
 1285         l_timeval ltmvl;
 1286         caddr_t outbuf;
 1287         void *data;
 1288         int error, i, fd, fds, *fdp;
 1289 
 1290         error = copyin(msghdr, &linux_msg, sizeof(linux_msg));
 1291         if (error != 0)
 1292                 return (error);
 1293 
 1294         error = linux_to_bsd_msghdr(msg, &linux_msg);
 1295         if (error != 0)
 1296                 return (error);
 1297 
 1298 #ifdef COMPAT_LINUX32
 1299         error = linux32_copyiniov(PTRIN(msg->msg_iov), msg->msg_iovlen,
 1300             &iov, EMSGSIZE);
 1301 #else
 1302         error = copyiniov(msg->msg_iov, msg->msg_iovlen, &iov, EMSGSIZE);
 1303 #endif
 1304         if (error != 0)
 1305                 return (error);
 1306 
 1307         if (msg->msg_name) {
 1308                 error = linux_to_bsd_sockaddr((struct sockaddr *)msg->msg_name,
 1309                     msg->msg_namelen);
 1310                 if (error != 0)
 1311                         goto bad;
 1312         }
 1313 
 1314         uiov = msg->msg_iov;
 1315         msg->msg_iov = iov;
 1316         controlp = (msg->msg_control != NULL) ? &control : NULL;
 1317         error = kern_recvit(td, s, msg, UIO_USERSPACE, controlp);
 1318         msg->msg_iov = uiov;
 1319         if (error != 0)
 1320                 goto bad;
 1321 
 1322         error = bsd_to_linux_msghdr(msg, &linux_msg);
 1323         if (error != 0)
 1324                 goto bad;
 1325 
 1326         if (linux_msg.msg_name) {
 1327                 error = bsd_to_linux_sockaddr((struct sockaddr *)
 1328                     PTRIN(linux_msg.msg_name));
 1329                 if (error != 0)
 1330                         goto bad;
 1331         }
 1332         if (linux_msg.msg_name && linux_msg.msg_namelen > 2) {
 1333                 error = linux_sa_put(PTRIN(linux_msg.msg_name));
 1334                 if (error != 0)
 1335                         goto bad;
 1336         }
 1337 
 1338         maxlen = linux_msg.msg_controllen;
 1339         linux_msg.msg_controllen = 0;
 1340         if (control) {
 1341                 linux_cmsg = malloc(L_CMSG_HDRSZ, M_LINUX, M_WAITOK | M_ZERO);
 1342 
 1343                 msg->msg_control = mtod(control, struct cmsghdr *);
 1344                 msg->msg_controllen = control->m_len;
 1345 
 1346                 cm = CMSG_FIRSTHDR(msg);
 1347                 outbuf = PTRIN(linux_msg.msg_control);
 1348                 outlen = 0;
 1349                 while (cm != NULL) {
 1350                         linux_cmsg->cmsg_type =
 1351                             bsd_to_linux_cmsg_type(cm->cmsg_type);
 1352                         linux_cmsg->cmsg_level =
 1353                             bsd_to_linux_sockopt_level(cm->cmsg_level);
 1354                         if (linux_cmsg->cmsg_type == -1 ||
 1355                             cm->cmsg_level != SOL_SOCKET) {
 1356                                 error = EINVAL;
 1357                                 goto bad;
 1358                         }
 1359 
 1360                         data = CMSG_DATA(cm);
 1361                         datalen = (caddr_t)cm + cm->cmsg_len - (caddr_t)data;
 1362 
 1363                         switch (cm->cmsg_type) {
 1364                         case SCM_RIGHTS:
 1365                                 if (flags & LINUX_MSG_CMSG_CLOEXEC) {
 1366                                         fds = datalen / sizeof(int);
 1367                                         fdp = data;
 1368                                         for (i = 0; i < fds; i++) {
 1369                                                 fd = *fdp++;
 1370                                                 (void)kern_fcntl(td, fd,
 1371                                                     F_SETFD, FD_CLOEXEC);
 1372                                         }
 1373                                 }
 1374                                 break;
 1375 
 1376                         case SCM_CREDS:
 1377                                 /*
 1378                                  * Currently LOCAL_CREDS is never in
 1379                                  * effect for Linux so no need to worry
 1380                                  * about sockcred
 1381                                  */
 1382                                 if (datalen != sizeof(*cmcred)) {
 1383                                         error = EMSGSIZE;
 1384                                         goto bad;
 1385                                 }
 1386                                 cmcred = (struct cmsgcred *)data;
 1387                                 bzero(&linux_ucred, sizeof(linux_ucred));
 1388                                 linux_ucred.pid = cmcred->cmcred_pid;
 1389                                 linux_ucred.uid = cmcred->cmcred_uid;
 1390                                 linux_ucred.gid = cmcred->cmcred_gid;
 1391                                 data = &linux_ucred;
 1392                                 datalen = sizeof(linux_ucred);
 1393                                 break;
 1394 
 1395                         case SCM_TIMESTAMP:
 1396                                 if (datalen != sizeof(struct timeval)) {
 1397                                         error = EMSGSIZE;
 1398                                         goto bad;
 1399                                 }
 1400                                 ftmvl = (struct timeval *)data;
 1401                                 ltmvl.tv_sec = ftmvl->tv_sec;
 1402                                 ltmvl.tv_usec = ftmvl->tv_usec;
 1403                                 data = &ltmvl;
 1404                                 datalen = sizeof(ltmvl);
 1405                                 break;
 1406                         }
 1407 
 1408                         if (outlen + LINUX_CMSG_LEN(datalen) > maxlen) {
 1409                                 if (outlen == 0) {
 1410                                         error = EMSGSIZE;
 1411                                         goto bad;
 1412                                 } else {
 1413                                         linux_msg.msg_flags |= LINUX_MSG_CTRUNC;
 1414                                         m_dispose_extcontrolm(control);
 1415                                         goto out;
 1416                                 }
 1417                         }
 1418 
 1419                         linux_cmsg->cmsg_len = LINUX_CMSG_LEN(datalen);
 1420 
 1421                         error = copyout(linux_cmsg, outbuf, L_CMSG_HDRSZ);
 1422                         if (error != 0)
 1423                                 goto bad;
 1424                         outbuf += L_CMSG_HDRSZ;
 1425 
 1426                         error = copyout(data, outbuf, datalen);
 1427                         if (error != 0)
 1428                                 goto bad;
 1429 
 1430                         outbuf += LINUX_CMSG_ALIGN(datalen);
 1431                         outlen += LINUX_CMSG_LEN(datalen);
 1432 
 1433                         cm = CMSG_NXTHDR(msg, cm);
 1434                 }
 1435                 linux_msg.msg_controllen = outlen;
 1436         }
 1437 
 1438 out:
 1439         error = copyout(&linux_msg, msghdr, sizeof(linux_msg));
 1440 
 1441 bad:
 1442         if (control != NULL) {
 1443                 if (error != 0)
 1444                         m_dispose_extcontrolm(control);
 1445                 m_freem(control);
 1446         }
 1447         free(iov, M_IOV);
 1448         free(linux_cmsg, M_LINUX);
 1449 
 1450         return (error);
 1451 }
 1452 
 1453 int
 1454 linux_recvmsg(struct thread *td, struct linux_recvmsg_args *args)
 1455 {
 1456         struct msghdr bsd_msg;
 1457 
 1458         return (linux_recvmsg_common(td, args->s, PTRIN(args->msg),
 1459             args->flags, &bsd_msg));
 1460 }
 1461 
 1462 int
 1463 linux_recvmmsg(struct thread *td, struct linux_recvmmsg_args *args)
 1464 {
 1465         struct l_mmsghdr *msg;
 1466         struct msghdr bsd_msg;
 1467         struct l_timespec lts;
 1468         struct timespec ts, tts;
 1469         l_uint retval;
 1470         int error, datagrams;
 1471 
 1472         if (args->timeout) {
 1473                 error = copyin(args->timeout, &lts, sizeof(struct l_timespec));
 1474                 if (error != 0)
 1475                         return (error);
 1476                 error = linux_to_native_timespec(&ts, &lts);
 1477                 if (error != 0)
 1478                         return (error);
 1479                 getnanotime(&tts);
 1480                 timespecadd(&tts, &ts, &tts);
 1481         }
 1482 
 1483         msg = PTRIN(args->msg);
 1484         datagrams = 0;
 1485         while (datagrams < args->vlen) {
 1486                 error = linux_recvmsg_common(td, args->s, &msg->msg_hdr,
 1487                     args->flags & ~LINUX_MSG_WAITFORONE, &bsd_msg);
 1488                 if (error != 0)
 1489                         break;
 1490 
 1491                 retval = td->td_retval[0];
 1492                 error = copyout(&retval, &msg->msg_len, sizeof(msg->msg_len));
 1493                 if (error != 0)
 1494                         break;
 1495                 ++msg;
 1496                 ++datagrams;
 1497 
 1498                 /*
 1499                  * MSG_WAITFORONE turns on MSG_DONTWAIT after one packet.
 1500                  */
 1501                 if (args->flags & LINUX_MSG_WAITFORONE)
 1502                         args->flags |= LINUX_MSG_DONTWAIT;
 1503 
 1504                 /*
 1505                  * See BUGS section of recvmmsg(2).
 1506                  */
 1507                 if (args->timeout) {
 1508                         getnanotime(&ts);
 1509                         timespecsub(&ts, &tts, &ts);
 1510                         if (!timespecisset(&ts) || ts.tv_sec > 0)
 1511                                 break;
 1512                 }
 1513                 /* Out of band data, return right away. */
 1514                 if (bsd_msg.msg_flags & MSG_OOB)
 1515                         break;
 1516         }
 1517         if (error == 0)
 1518                 td->td_retval[0] = datagrams;
 1519         return (error);
 1520 }
 1521 
 1522 int
 1523 linux_shutdown(struct thread *td, struct linux_shutdown_args *args)
 1524 {
 1525 
 1526         return (kern_shutdown(td, args->s, args->how));
 1527 }
 1528 
 1529 int
 1530 linux_setsockopt(struct thread *td, struct linux_setsockopt_args *args)
 1531 {
 1532         struct setsockopt_args /* {
 1533                 int s;
 1534                 int level;
 1535                 int name;
 1536                 caddr_t val;
 1537                 int valsize;
 1538         } */ bsd_args;
 1539         l_timeval linux_tv;
 1540         struct timeval tv;
 1541         int error, name;
 1542 
 1543         bsd_args.s = args->s;
 1544         bsd_args.level = linux_to_bsd_sockopt_level(args->level);
 1545         switch (bsd_args.level) {
 1546         case SOL_SOCKET:
 1547                 name = linux_to_bsd_so_sockopt(args->optname);
 1548                 switch (name) {
 1549                 case SO_RCVTIMEO:
 1550                         /* FALLTHROUGH */
 1551                 case SO_SNDTIMEO:
 1552                         error = copyin(PTRIN(args->optval), &linux_tv,
 1553                             sizeof(linux_tv));
 1554                         if (error != 0)
 1555                                 return (error);
 1556                         tv.tv_sec = linux_tv.tv_sec;
 1557                         tv.tv_usec = linux_tv.tv_usec;
 1558                         return (kern_setsockopt(td, args->s, bsd_args.level,
 1559                             name, &tv, UIO_SYSSPACE, sizeof(tv)));
 1560                         /* NOTREACHED */
 1561                 default:
 1562                         break;
 1563                 }
 1564                 break;
 1565         case IPPROTO_IP:
 1566                 name = linux_to_bsd_ip_sockopt(args->optname);
 1567                 break;
 1568         case IPPROTO_IPV6:
 1569                 name = linux_to_bsd_ip6_sockopt(args->optname);
 1570                 break;
 1571         case IPPROTO_TCP:
 1572                 name = linux_to_bsd_tcp_sockopt(args->optname);
 1573                 break;
 1574         default:
 1575                 name = -1;
 1576                 break;
 1577         }
 1578         if (name == -1)
 1579                 return (ENOPROTOOPT);
 1580 
 1581         bsd_args.name = name;
 1582         bsd_args.val = PTRIN(args->optval);
 1583         bsd_args.valsize = args->optlen;
 1584 
 1585         if (name == IPV6_NEXTHOP) {
 1586                 linux_to_bsd_sockaddr((struct sockaddr *)bsd_args.val,
 1587                         bsd_args.valsize);
 1588                 error = sys_setsockopt(td, &bsd_args);
 1589                 bsd_to_linux_sockaddr((struct sockaddr *)bsd_args.val);
 1590         } else
 1591                 error = sys_setsockopt(td, &bsd_args);
 1592 
 1593         return (error);
 1594 }
 1595 
 1596 int
 1597 linux_getsockopt(struct thread *td, struct linux_getsockopt_args *args)
 1598 {
 1599         struct getsockopt_args /* {
 1600                 int s;
 1601                 int level;
 1602                 int name;
 1603                 caddr_t val;
 1604                 int *avalsize;
 1605         } */ bsd_args;
 1606         l_timeval linux_tv;
 1607         struct timeval tv;
 1608         socklen_t tv_len, xulen, len;
 1609         struct xucred xu;
 1610         struct l_ucred lxu;
 1611         int error, name, newval;
 1612 
 1613         bsd_args.s = args->s;
 1614         bsd_args.level = linux_to_bsd_sockopt_level(args->level);
 1615         switch (bsd_args.level) {
 1616         case SOL_SOCKET:
 1617                 name = linux_to_bsd_so_sockopt(args->optname);
 1618                 switch (name) {
 1619                 case SO_RCVTIMEO:
 1620                         /* FALLTHROUGH */
 1621                 case SO_SNDTIMEO:
 1622                         tv_len = sizeof(tv);
 1623                         error = kern_getsockopt(td, args->s, bsd_args.level,
 1624                             name, &tv, UIO_SYSSPACE, &tv_len);
 1625                         if (error != 0)
 1626                                 return (error);
 1627                         linux_tv.tv_sec = tv.tv_sec;
 1628                         linux_tv.tv_usec = tv.tv_usec;
 1629                         return (copyout(&linux_tv, PTRIN(args->optval),
 1630                             sizeof(linux_tv)));
 1631                         /* NOTREACHED */
 1632                 case LOCAL_PEERCRED:
 1633                         if (args->optlen < sizeof(lxu))
 1634                                 return (EINVAL);
 1635                         xulen = sizeof(xu);
 1636                         error = kern_getsockopt(td, args->s, bsd_args.level,
 1637                             name, &xu, UIO_SYSSPACE, &xulen);
 1638                         if (error != 0)
 1639                                 return (error);
 1640                         /*
 1641                          * XXX Use 0 for pid as the FreeBSD does not cache peer pid.
 1642                          */
 1643                         lxu.pid = 0;
 1644                         lxu.uid = xu.cr_uid;
 1645                         lxu.gid = xu.cr_gid;
 1646                         return (copyout(&lxu, PTRIN(args->optval), sizeof(lxu)));
 1647                         /* NOTREACHED */
 1648                 case SO_ERROR:
 1649                         len = sizeof(newval);
 1650                         error = kern_getsockopt(td, args->s, bsd_args.level,
 1651                             name, &newval, UIO_SYSSPACE, &len);
 1652                         if (error != 0)
 1653                                 return (error);
 1654                         newval = -SV_ABI_ERRNO(td->td_proc, newval);
 1655                         return (copyout(&newval, PTRIN(args->optval), len));
 1656                         /* NOTREACHED */
 1657                 default:
 1658                         break;
 1659                 }
 1660                 break;
 1661         case IPPROTO_IP:
 1662                 name = linux_to_bsd_ip_sockopt(args->optname);
 1663                 break;
 1664         case IPPROTO_IPV6:
 1665                 name = linux_to_bsd_ip6_sockopt(args->optname);
 1666                 break;
 1667         case IPPROTO_TCP:
 1668                 name = linux_to_bsd_tcp_sockopt(args->optname);
 1669                 break;
 1670         default:
 1671                 name = -1;
 1672                 break;
 1673         }
 1674         if (name == -1)
 1675                 return (EINVAL);
 1676 
 1677         bsd_args.name = name;
 1678         bsd_args.val = PTRIN(args->optval);
 1679         bsd_args.avalsize = PTRIN(args->optlen);
 1680 
 1681         if (name == IPV6_NEXTHOP) {
 1682                 error = sys_getsockopt(td, &bsd_args);
 1683                 bsd_to_linux_sockaddr((struct sockaddr *)bsd_args.val);
 1684         } else
 1685                 error = sys_getsockopt(td, &bsd_args);
 1686 
 1687         return (error);
 1688 }
 1689 
 1690 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
 1691 
 1692 /* Argument list sizes for linux_socketcall */
 1693 static const unsigned char lxs_args_cnt[] = {
 1694         0 /* unused*/,          3 /* socket */,
 1695         3 /* bind */,           3 /* connect */,
 1696         2 /* listen */,         3 /* accept */,
 1697         3 /* getsockname */,    3 /* getpeername */,
 1698         4 /* socketpair */,     4 /* send */,
 1699         4 /* recv */,           6 /* sendto */,
 1700         6 /* recvfrom */,       2 /* shutdown */,
 1701         5 /* setsockopt */,     5 /* getsockopt */,
 1702         3 /* sendmsg */,        3 /* recvmsg */,
 1703         4 /* accept4 */,        5 /* recvmmsg */,
 1704         4 /* sendmmsg */
 1705 };
 1706 #define LINUX_ARGS_CNT          (nitems(lxs_args_cnt) - 1)
 1707 #define LINUX_ARG_SIZE(x)       (lxs_args_cnt[x] * sizeof(l_ulong))
 1708 
 1709 int
 1710 linux_socketcall(struct thread *td, struct linux_socketcall_args *args)
 1711 {
 1712         l_ulong a[6];
 1713 #if defined(__amd64__) && defined(COMPAT_LINUX32)
 1714         register_t l_args[6];
 1715 #endif
 1716         void *arg;
 1717         int error;
 1718 
 1719         if (args->what < LINUX_SOCKET || args->what > LINUX_ARGS_CNT)
 1720                 return (EINVAL);
 1721         error = copyin(PTRIN(args->args), a, LINUX_ARG_SIZE(args->what));
 1722         if (error != 0)
 1723                 return (error);
 1724 
 1725 #if defined(__amd64__) && defined(COMPAT_LINUX32)
 1726         for (int i = 0; i < lxs_args_cnt[args->what]; ++i)
 1727                 l_args[i] = a[i];
 1728         arg = l_args;
 1729 #else
 1730         arg = a;
 1731 #endif
 1732         switch (args->what) {
 1733         case LINUX_SOCKET:
 1734                 return (linux_socket(td, arg));
 1735         case LINUX_BIND:
 1736                 return (linux_bind(td, arg));
 1737         case LINUX_CONNECT:
 1738                 return (linux_connect(td, arg));
 1739         case LINUX_LISTEN:
 1740                 return (linux_listen(td, arg));
 1741         case LINUX_ACCEPT:
 1742                 return (linux_accept(td, arg));
 1743         case LINUX_GETSOCKNAME:
 1744                 return (linux_getsockname(td, arg));
 1745         case LINUX_GETPEERNAME:
 1746                 return (linux_getpeername(td, arg));
 1747         case LINUX_SOCKETPAIR:
 1748                 return (linux_socketpair(td, arg));
 1749         case LINUX_SEND:
 1750                 return (linux_send(td, arg));
 1751         case LINUX_RECV:
 1752                 return (linux_recv(td, arg));
 1753         case LINUX_SENDTO:
 1754                 return (linux_sendto(td, arg));
 1755         case LINUX_RECVFROM:
 1756                 return (linux_recvfrom(td, arg));
 1757         case LINUX_SHUTDOWN:
 1758                 return (linux_shutdown(td, arg));
 1759         case LINUX_SETSOCKOPT:
 1760                 return (linux_setsockopt(td, arg));
 1761         case LINUX_GETSOCKOPT:
 1762                 return (linux_getsockopt(td, arg));
 1763         case LINUX_SENDMSG:
 1764                 return (linux_sendmsg(td, arg));
 1765         case LINUX_RECVMSG:
 1766                 return (linux_recvmsg(td, arg));
 1767         case LINUX_ACCEPT4:
 1768                 return (linux_accept4(td, arg));
 1769         case LINUX_RECVMMSG:
 1770                 return (linux_recvmmsg(td, arg));
 1771         case LINUX_SENDMMSG:
 1772                 return (linux_sendmmsg(td, arg));
 1773         }
 1774 
 1775         uprintf("LINUX: 'socket' typ=%d not implemented\n", args->what);
 1776         return (ENOSYS);
 1777 }
 1778 #endif /* __i386__ || (__amd64__ && COMPAT_LINUX32) */

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