xref: /freebsd-13-stable/sys/compat/linux/linux_socket.c (revision 3bc80996974a61a4223eae4c1ccd47b6ee32a48a)
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause
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 #include "opt_inet6.h"
31 
32 #include <sys/param.h>
33 #include <sys/capsicum.h>
34 #include <sys/filedesc.h>
35 #include <sys/limits.h>
36 #include <sys/malloc.h>
37 #include <sys/mbuf.h>
38 #include <sys/proc.h>
39 #include <sys/socket.h>
40 #include <sys/socketvar.h>
41 #include <sys/syscallsubr.h>
42 #include <sys/sysproto.h>
43 #include <sys/un.h>
44 #include <sys/unistd.h>
45 
46 #include <security/audit/audit.h>
47 
48 #include <net/if.h>
49 #include <net/vnet.h>
50 #include <netinet/in.h>
51 #include <netinet/ip.h>
52 #include <netinet/tcp.h>
53 #ifdef INET6
54 #include <netinet/ip6.h>
55 #include <netinet6/ip6_var.h>
56 #endif
57 
58 #ifdef COMPAT_LINUX32
59 #include <machine/../linux32/linux.h>
60 #include <machine/../linux32/linux32_proto.h>
61 #else
62 #include <machine/../linux/linux.h>
63 #include <machine/../linux/linux_proto.h>
64 #endif
65 #include <compat/linux/linux_common.h>
66 #include <compat/linux/linux_emul.h>
67 #include <compat/linux/linux_file.h>
68 #include <compat/linux/linux_mib.h>
69 #include <compat/linux/linux_socket.h>
70 #include <compat/linux/linux_time.h>
71 #include <compat/linux/linux_util.h>
72 
73 #define	SECURITY_CONTEXT_STRING	"unconfined"
74 
75 static int linux_sendmsg_common(struct thread *, l_int, struct l_msghdr *,
76 					l_uint);
77 static int linux_recvmsg_common(struct thread *, l_int, struct l_msghdr *,
78 					l_uint, struct msghdr *);
79 static int linux_set_socket_flags(int, int *);
80 
81 #define	SOL_NETLINK	270
82 
83 static int
linux_to_bsd_sockopt_level(int level)84 linux_to_bsd_sockopt_level(int level)
85 {
86 
87 	if (level == LINUX_SOL_SOCKET)
88 		return (SOL_SOCKET);
89 	/* Remaining values are RFC-defined protocol numbers. */
90 	return (level);
91 }
92 
93 static int
bsd_to_linux_sockopt_level(int level)94 bsd_to_linux_sockopt_level(int level)
95 {
96 
97 	if (level == SOL_SOCKET)
98 		return (LINUX_SOL_SOCKET);
99 	return (level);
100 }
101 
102 static int
linux_to_bsd_ip_sockopt(int opt)103 linux_to_bsd_ip_sockopt(int opt)
104 {
105 
106 	switch (opt) {
107 	/* known and translated sockopts */
108 	case LINUX_IP_TOS:
109 		return (IP_TOS);
110 	case LINUX_IP_TTL:
111 		return (IP_TTL);
112 	case LINUX_IP_HDRINCL:
113 		return (IP_HDRINCL);
114 	case LINUX_IP_OPTIONS:
115 		return (IP_OPTIONS);
116 	case LINUX_IP_RECVOPTS:
117 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_RECVOPTS");
118 		return (IP_RECVOPTS);
119 	case LINUX_IP_RETOPTS:
120 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_REETOPTS");
121 		return (IP_RETOPTS);
122 	case LINUX_IP_RECVTTL:
123 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_RECVTTL");
124 		return (IP_RECVTTL);
125 	case LINUX_IP_RECVTOS:
126 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_RECVTOS");
127 		return (IP_RECVTOS);
128 	case LINUX_IP_FREEBIND:
129 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_FREEBIND");
130 		return (IP_BINDANY);
131 	case LINUX_IP_IPSEC_POLICY:
132 		/* we have this option, but not documented in ip(4) manpage */
133 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_IPSEC_POLICY");
134 		return (IP_IPSEC_POLICY);
135 	case LINUX_IP_MINTTL:
136 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_MINTTL");
137 		return (IP_MINTTL);
138 	case LINUX_IP_MULTICAST_IF:
139 		return (IP_MULTICAST_IF);
140 	case LINUX_IP_MULTICAST_TTL:
141 		return (IP_MULTICAST_TTL);
142 	case LINUX_IP_MULTICAST_LOOP:
143 		return (IP_MULTICAST_LOOP);
144 	case LINUX_IP_ADD_MEMBERSHIP:
145 		return (IP_ADD_MEMBERSHIP);
146 	case LINUX_IP_DROP_MEMBERSHIP:
147 		return (IP_DROP_MEMBERSHIP);
148 	case LINUX_IP_UNBLOCK_SOURCE:
149 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_UNBLOCK_SOURCE");
150 		return (IP_UNBLOCK_SOURCE);
151 	case LINUX_IP_BLOCK_SOURCE:
152 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_BLOCK_SOURCE");
153 		return (IP_BLOCK_SOURCE);
154 	case LINUX_IP_ADD_SOURCE_MEMBERSHIP:
155 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_ADD_SOURCE_MEMBERSHIP");
156 		return (IP_ADD_SOURCE_MEMBERSHIP);
157 	case LINUX_IP_DROP_SOURCE_MEMBERSHIP:
158 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_DROP_SOURCE_MEMBERSHIP");
159 		return (IP_DROP_SOURCE_MEMBERSHIP);
160 	case LINUX_MCAST_JOIN_GROUP:
161 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_MCAST_JOIN_GROUP");
162 		return (MCAST_JOIN_GROUP);
163 	case LINUX_MCAST_LEAVE_GROUP:
164 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_MCAST_LEAVE_GROUP");
165 		return (MCAST_LEAVE_GROUP);
166 	case LINUX_MCAST_JOIN_SOURCE_GROUP:
167 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_MCAST_JOIN_SOURCE_GROUP");
168 		return (MCAST_JOIN_SOURCE_GROUP);
169 	case LINUX_MCAST_LEAVE_SOURCE_GROUP:
170 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv4 socket option IP_MCAST_LEAVE_SOURCE_GROUP");
171 		return (MCAST_LEAVE_SOURCE_GROUP);
172 	case LINUX_IP_RECVORIGDSTADDR:
173 		return (IP_RECVORIGDSTADDR);
174 
175 	/* known but not implemented sockopts */
176 	case LINUX_IP_ROUTER_ALERT:
177 		LINUX_RATELIMIT_MSG_OPT1(
178 		    "unsupported IPv4 socket option IP_ROUTER_ALERT (%d), you can not do user-space routing from linux programs",
179 		    opt);
180 		return (-2);
181 	case LINUX_IP_PKTINFO:
182 		LINUX_RATELIMIT_MSG_OPT1(
183 		    "unsupported IPv4 socket option IP_PKTINFO (%d), you can not get extended packet info for datagram sockets in linux programs",
184 		    opt);
185 		return (-2);
186 	case LINUX_IP_PKTOPTIONS:
187 		LINUX_RATELIMIT_MSG_OPT1(
188 		    "unsupported IPv4 socket option IP_PKTOPTIONS (%d)",
189 		    opt);
190 		return (-2);
191 	case LINUX_IP_MTU_DISCOVER:
192 		LINUX_RATELIMIT_MSG_OPT1(
193 		    "unsupported IPv4 socket option IP_MTU_DISCOVER (%d), your linux program can not control path-MTU discovery",
194 		    opt);
195 		return (-2);
196 	case LINUX_IP_RECVERR:
197 		/* needed by steam */
198 		LINUX_RATELIMIT_MSG_OPT1(
199 		    "unsupported IPv4 socket option IP_RECVERR (%d), you can not get extended reliability info in linux programs",
200 		    opt);
201 		return (-2);
202 	case LINUX_IP_MTU:
203 		LINUX_RATELIMIT_MSG_OPT1(
204 		    "unsupported IPv4 socket option IP_MTU (%d), your linux program can not control the MTU on this socket",
205 		    opt);
206 		return (-2);
207 	case LINUX_IP_XFRM_POLICY:
208 		LINUX_RATELIMIT_MSG_OPT1(
209 		    "unsupported IPv4 socket option IP_XFRM_POLICY (%d)",
210 		    opt);
211 		return (-2);
212 	case LINUX_IP_PASSSEC:
213 		/* needed by steam */
214 		LINUX_RATELIMIT_MSG_OPT1(
215 		    "unsupported IPv4 socket option IP_PASSSEC (%d), you can not get IPSEC related credential information associated with this socket in linux programs -- if you do not use IPSEC, you can ignore this",
216 		    opt);
217 		return (-2);
218 	case LINUX_IP_TRANSPARENT:
219 		/* IP_BINDANY or more? */
220 		LINUX_RATELIMIT_MSG_OPT1(
221 		    "unsupported IPv4 socket option IP_TRANSPARENT (%d), you can not enable transparent proxying in linux programs -- note, IP_FREEBIND is supported, no idea if the FreeBSD IP_BINDANY is equivalent to the Linux IP_TRANSPARENT or not, any info is welcome",
222 		    opt);
223 		return (-2);
224 	case LINUX_IP_NODEFRAG:
225 		LINUX_RATELIMIT_MSG_OPT1(
226 		    "unsupported IPv4 socket option IP_NODEFRAG (%d)",
227 		    opt);
228 		return (-2);
229 	case LINUX_IP_CHECKSUM:
230 		LINUX_RATELIMIT_MSG_OPT1(
231 		    "unsupported IPv4 socket option IP_CHECKSUM (%d)",
232 		    opt);
233 		return (-2);
234 	case LINUX_IP_BIND_ADDRESS_NO_PORT:
235 		LINUX_RATELIMIT_MSG_OPT1(
236 		    "unsupported IPv4 socket option IP_BIND_ADDRESS_NO_PORT (%d)",
237 		    opt);
238 		return (-2);
239 	case LINUX_IP_RECVFRAGSIZE:
240 		LINUX_RATELIMIT_MSG_OPT1(
241 		    "unsupported IPv4 socket option IP_RECVFRAGSIZE (%d)",
242 		    opt);
243 		return (-2);
244 	case LINUX_MCAST_MSFILTER:
245 		LINUX_RATELIMIT_MSG_OPT1(
246 		    "unsupported IPv4 socket option IP_MCAST_MSFILTER (%d)",
247 		    opt);
248 		return (-2);
249 	case LINUX_IP_MULTICAST_ALL:
250 		LINUX_RATELIMIT_MSG_OPT1(
251 		    "unsupported IPv4 socket option IP_MULTICAST_ALL (%d), your linux program will not see all multicast groups joined by the entire system, only those the program joined itself on this socket",
252 		    opt);
253 		return (-2);
254 	case LINUX_IP_UNICAST_IF:
255 		LINUX_RATELIMIT_MSG_OPT1(
256 		    "unsupported IPv4 socket option IP_UNICAST_IF (%d)",
257 		    opt);
258 		return (-2);
259 
260 	/* unknown sockopts */
261 	default:
262 		return (-1);
263 	}
264 }
265 
266 static int
linux_to_bsd_ip6_sockopt(int opt)267 linux_to_bsd_ip6_sockopt(int opt)
268 {
269 
270 	switch (opt) {
271 	/* known and translated sockopts */
272 	case LINUX_IPV6_2292PKTINFO:
273 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_2292PKTINFO");
274 		return (IPV6_2292PKTINFO);
275 	case LINUX_IPV6_2292HOPOPTS:
276 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_2292HOPOPTS");
277 		return (IPV6_2292HOPOPTS);
278 	case LINUX_IPV6_2292DSTOPTS:
279 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_2292DSTOPTS");
280 		return (IPV6_2292DSTOPTS);
281 	case LINUX_IPV6_2292RTHDR:
282 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_2292RTHDR");
283 		return (IPV6_2292RTHDR);
284 	case LINUX_IPV6_2292PKTOPTIONS:
285 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_2292PKTOPTIONS");
286 		return (IPV6_2292PKTOPTIONS);
287 	case LINUX_IPV6_CHECKSUM:
288 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_CHECKSUM");
289 		return (IPV6_CHECKSUM);
290 	case LINUX_IPV6_2292HOPLIMIT:
291 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_2292HOPLIMIT");
292 		return (IPV6_2292HOPLIMIT);
293 	case LINUX_IPV6_NEXTHOP:
294 		return (IPV6_NEXTHOP);
295 	case LINUX_IPV6_UNICAST_HOPS:
296 		return (IPV6_UNICAST_HOPS);
297 	case LINUX_IPV6_MULTICAST_IF:
298 		return (IPV6_MULTICAST_IF);
299 	case LINUX_IPV6_MULTICAST_HOPS:
300 		return (IPV6_MULTICAST_HOPS);
301 	case LINUX_IPV6_MULTICAST_LOOP:
302 		return (IPV6_MULTICAST_LOOP);
303 	case LINUX_IPV6_ADD_MEMBERSHIP:
304 		return (IPV6_JOIN_GROUP);
305 	case LINUX_IPV6_DROP_MEMBERSHIP:
306 		return (IPV6_LEAVE_GROUP);
307 	case LINUX_IPV6_V6ONLY:
308 		return (IPV6_V6ONLY);
309 	case LINUX_IPV6_IPSEC_POLICY:
310 		/* we have this option, but not documented in ip6(4) manpage */
311 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_IPSEC_POLICY");
312 		return (IPV6_IPSEC_POLICY);
313 	case LINUX_MCAST_JOIN_GROUP:
314 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_JOIN_GROUP");
315 		return (IPV6_JOIN_GROUP);
316 	case LINUX_MCAST_LEAVE_GROUP:
317 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_LEAVE_GROUP");
318 		return (IPV6_LEAVE_GROUP);
319 	case LINUX_IPV6_RECVPKTINFO:
320 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_RECVPKTINFO");
321 		return (IPV6_RECVPKTINFO);
322 	case LINUX_IPV6_PKTINFO:
323 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_PKTINFO");
324 		return (IPV6_PKTINFO);
325 	case LINUX_IPV6_RECVHOPLIMIT:
326 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_RECVHOPLIMIT");
327 		return (IPV6_RECVHOPLIMIT);
328 	case LINUX_IPV6_HOPLIMIT:
329 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_HOPLIMIT");
330 		return (IPV6_HOPLIMIT);
331 	case LINUX_IPV6_RECVHOPOPTS:
332 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_RECVHOPOPTS");
333 		return (IPV6_RECVHOPOPTS);
334 	case LINUX_IPV6_HOPOPTS:
335 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_HOPOPTS");
336 		return (IPV6_HOPOPTS);
337 	case LINUX_IPV6_RTHDRDSTOPTS:
338 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_RTHDRDSTOPTS");
339 		return (IPV6_RTHDRDSTOPTS);
340 	case LINUX_IPV6_RECVRTHDR:
341 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_RECVRTHDR");
342 		return (IPV6_RECVRTHDR);
343 	case LINUX_IPV6_RTHDR:
344 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_RTHDR");
345 		return (IPV6_RTHDR);
346 	case LINUX_IPV6_RECVDSTOPTS:
347 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_RECVDSTOPTS");
348 		return (IPV6_RECVDSTOPTS);
349 	case LINUX_IPV6_DSTOPTS:
350 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_DSTOPTS");
351 		return (IPV6_DSTOPTS);
352 	case LINUX_IPV6_RECVPATHMTU:
353 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_RECVPATHMTU");
354 		return (IPV6_RECVPATHMTU);
355 	case LINUX_IPV6_PATHMTU:
356 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_PATHMTU");
357 		return (IPV6_PATHMTU);
358 	case LINUX_IPV6_DONTFRAG:
359 		return (IPV6_DONTFRAG);
360 	case LINUX_IPV6_AUTOFLOWLABEL:
361 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_AUTOFLOWLABEL");
362 		return (IPV6_AUTOFLOWLABEL);
363 	case LINUX_IPV6_ORIGDSTADDR:
364 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_ORIGDSTADDR");
365 		return (IPV6_ORIGDSTADDR);
366 	case LINUX_IPV6_FREEBIND:
367 		LINUX_RATELIMIT_MSG_NOTTESTED("IPv6 socket option IPV6_FREEBIND");
368 		return (IPV6_BINDANY);
369 
370 	/* known but not implemented sockopts */
371 	case LINUX_IPV6_ADDRFORM:
372 		LINUX_RATELIMIT_MSG_OPT1(
373 		    "unsupported IPv6 socket option IPV6_ADDRFORM (%d), you linux program can not convert the socket to IPv4",
374 		    opt);
375 		return (-2);
376 	case LINUX_IPV6_AUTHHDR:
377 		LINUX_RATELIMIT_MSG_OPT1(
378 		    "unsupported IPv6 socket option IPV6_AUTHHDR (%d), your linux program can not get the authentication header info of IPv6 packets",
379 		    opt);
380 		return (-2);
381 	case LINUX_IPV6_FLOWINFO:
382 		LINUX_RATELIMIT_MSG_OPT1(
383 		    "unsupported IPv6 socket option IPV6_FLOWINFO (%d), your linux program can not get the flowid of IPv6 packets",
384 		    opt);
385 		return (-2);
386 	case LINUX_IPV6_ROUTER_ALERT:
387 		LINUX_RATELIMIT_MSG_OPT1(
388 		    "unsupported IPv6 socket option IPV6_ROUTER_ALERT (%d), you can not do user-space routing from linux programs",
389 		    opt);
390 		return (-2);
391 	case LINUX_IPV6_MTU_DISCOVER:
392 		LINUX_RATELIMIT_MSG_OPT1(
393 		    "unsupported IPv6 socket option IPV6_MTU_DISCOVER (%d), your linux program can not control path-MTU discovery",
394 		    opt);
395 		return (-2);
396 	case LINUX_IPV6_MTU:
397 		LINUX_RATELIMIT_MSG_OPT1(
398 		    "unsupported IPv6 socket option IPV6_MTU (%d), your linux program can not control the MTU on this socket",
399 		    opt);
400 		return (-2);
401 	case LINUX_IPV6_JOIN_ANYCAST:
402 		LINUX_RATELIMIT_MSG_OPT1(
403 		    "unsupported IPv6 socket option IPV6_JOIN_ANYCAST (%d)",
404 		    opt);
405 		return (-2);
406 	case LINUX_IPV6_LEAVE_ANYCAST:
407 		LINUX_RATELIMIT_MSG_OPT1(
408 		    "unsupported IPv6 socket option IPV6_LEAVE_ANYCAST (%d)",
409 		    opt);
410 		return (-2);
411 	case LINUX_IPV6_MULTICAST_ALL:
412 		LINUX_RATELIMIT_MSG_OPT1(
413 		    "unsupported IPv6 socket option IPV6_MULTICAST_ALL (%d)",
414 		    opt);
415 		return (-2);
416 	case LINUX_IPV6_ROUTER_ALERT_ISOLATE:
417 		LINUX_RATELIMIT_MSG_OPT1(
418 		    "unsupported IPv6 socket option IPV6_ROUTER_ALERT_ISOLATE (%d)",
419 		    opt);
420 		return (-2);
421 	case LINUX_IPV6_FLOWLABEL_MGR:
422 		LINUX_RATELIMIT_MSG_OPT1(
423 		    "unsupported IPv6 socket option IPV6_FLOWLABEL_MGR (%d)",
424 		    opt);
425 		return (-2);
426 	case LINUX_IPV6_FLOWINFO_SEND:
427 		LINUX_RATELIMIT_MSG_OPT1(
428 		    "unsupported IPv6 socket option IPV6_FLOWINFO_SEND (%d)",
429 		    opt);
430 		return (-2);
431 	case LINUX_IPV6_XFRM_POLICY:
432 		LINUX_RATELIMIT_MSG_OPT1(
433 		    "unsupported IPv6 socket option IPV6_XFRM_POLICY (%d)",
434 		    opt);
435 		return (-2);
436 	case LINUX_IPV6_HDRINCL:
437 		LINUX_RATELIMIT_MSG_OPT1(
438 		    "unsupported IPv6 socket option IPV6_HDRINCL (%d)",
439 		    opt);
440 		return (-2);
441 	case LINUX_MCAST_BLOCK_SOURCE:
442 		LINUX_RATELIMIT_MSG_OPT1(
443 		    "unsupported IPv6 socket option MCAST_BLOCK_SOURCE (%d), your linux program may see more multicast stuff than it wants",
444 		    opt);
445 		return (-2);
446 	case LINUX_MCAST_UNBLOCK_SOURCE:
447 		LINUX_RATELIMIT_MSG_OPT1(
448 		    "unsupported IPv6 socket option MCAST_UNBLOCK_SOURCE (%d), your linux program may not see all the multicast stuff it wants",
449 		    opt);
450 		return (-2);
451 	case LINUX_MCAST_JOIN_SOURCE_GROUP:
452 		LINUX_RATELIMIT_MSG_OPT1(
453 		    "unsupported IPv6 socket option MCAST_JOIN_SOURCE_GROUP (%d), your linux program is not able to join a multicast source group",
454 		    opt);
455 		return (-2);
456 	case LINUX_MCAST_LEAVE_SOURCE_GROUP:
457 		LINUX_RATELIMIT_MSG_OPT1(
458 		    "unsupported IPv6 socket option MCAST_LEAVE_SOURCE_GROUP (%d), your linux program is not able to leave a multicast source group -- but it was also not able to join one, so no issue",
459 		    opt);
460 		return (-2);
461 	case LINUX_MCAST_MSFILTER:
462 		LINUX_RATELIMIT_MSG_OPT1(
463 		    "unsupported IPv6 socket option MCAST_MSFILTER (%d), your linux program can not manipulate the multicast filter, it may see more multicast data than it wants to see",
464 		    opt);
465 		return (-2);
466 	case LINUX_IPV6_ADDR_PREFERENCES:
467 		LINUX_RATELIMIT_MSG_OPT1(
468 		    "unsupported IPv6 socket option IPV6_ADDR_PREFERENCES (%d)",
469 		    opt);
470 		return (-2);
471 	case LINUX_IPV6_MINHOPCOUNT:
472 		LINUX_RATELIMIT_MSG_OPT1(
473 		    "unsupported IPv6 socket option IPV6_MINHOPCOUNT (%d)",
474 		    opt);
475 		return (-2);
476 	case LINUX_IPV6_TRANSPARENT:
477 		/* IP_BINDANY or more? */
478 		LINUX_RATELIMIT_MSG_OPT1(
479 		    "unsupported IPv6 socket option IPV6_TRANSPARENT (%d), you can not enable transparent proxying in linux programs -- note, IP_FREEBIND is supported, no idea if the FreeBSD IP_BINDANY is equivalent to the Linux IP_TRANSPARENT or not, any info is welcome",
480 		    opt);
481 		return (-2);
482 	case LINUX_IPV6_UNICAST_IF:
483 		LINUX_RATELIMIT_MSG_OPT1(
484 		    "unsupported IPv6 socket option IPV6_UNICAST_IF (%d)",
485 		    opt);
486 		return (-2);
487 	case LINUX_IPV6_RECVFRAGSIZE:
488 		LINUX_RATELIMIT_MSG_OPT1(
489 		    "unsupported IPv6 socket option IPV6_RECVFRAGSIZE (%d)",
490 		    opt);
491 		return (-2);
492 
493 	/* unknown sockopts */
494 	default:
495 		return (-1);
496 	}
497 }
498 
499 static int
linux_to_bsd_so_sockopt(int opt)500 linux_to_bsd_so_sockopt(int opt)
501 {
502 
503 	switch (opt) {
504 	case LINUX_SO_DEBUG:
505 		return (SO_DEBUG);
506 	case LINUX_SO_REUSEADDR:
507 		return (SO_REUSEADDR);
508 	case LINUX_SO_TYPE:
509 		return (SO_TYPE);
510 	case LINUX_SO_ERROR:
511 		return (SO_ERROR);
512 	case LINUX_SO_DONTROUTE:
513 		return (SO_DONTROUTE);
514 	case LINUX_SO_BROADCAST:
515 		return (SO_BROADCAST);
516 	case LINUX_SO_SNDBUF:
517 	case LINUX_SO_SNDBUFFORCE:
518 		return (SO_SNDBUF);
519 	case LINUX_SO_RCVBUF:
520 	case LINUX_SO_RCVBUFFORCE:
521 		return (SO_RCVBUF);
522 	case LINUX_SO_KEEPALIVE:
523 		return (SO_KEEPALIVE);
524 	case LINUX_SO_OOBINLINE:
525 		return (SO_OOBINLINE);
526 	case LINUX_SO_LINGER:
527 		return (SO_LINGER);
528 	case LINUX_SO_REUSEPORT:
529 		return (SO_REUSEPORT_LB);
530 	case LINUX_SO_PASSCRED:
531 		return (LOCAL_CREDS_PERSISTENT);
532 	case LINUX_SO_PEERCRED:
533 		return (LOCAL_PEERCRED);
534 	case LINUX_SO_RCVLOWAT:
535 		return (SO_RCVLOWAT);
536 	case LINUX_SO_SNDLOWAT:
537 		return (SO_SNDLOWAT);
538 	case LINUX_SO_RCVTIMEO:
539 		return (SO_RCVTIMEO);
540 	case LINUX_SO_SNDTIMEO:
541 		return (SO_SNDTIMEO);
542 	case LINUX_SO_TIMESTAMPO:
543 	case LINUX_SO_TIMESTAMPN:
544 		return (SO_TIMESTAMP);
545 	case LINUX_SO_TIMESTAMPNSO:
546 	case LINUX_SO_TIMESTAMPNSN:
547 		return (SO_BINTIME);
548 	case LINUX_SO_ACCEPTCONN:
549 		return (SO_ACCEPTCONN);
550 	case LINUX_SO_PROTOCOL:
551 		return (SO_PROTOCOL);
552 	case LINUX_SO_DOMAIN:
553 		return (SO_DOMAIN);
554 	}
555 	return (-1);
556 }
557 
558 static int
linux_to_bsd_tcp_sockopt(int opt)559 linux_to_bsd_tcp_sockopt(int opt)
560 {
561 
562 	switch (opt) {
563 	case LINUX_TCP_NODELAY:
564 		return (TCP_NODELAY);
565 	case LINUX_TCP_MAXSEG:
566 		return (TCP_MAXSEG);
567 	case LINUX_TCP_CORK:
568 		return (TCP_NOPUSH);
569 	case LINUX_TCP_KEEPIDLE:
570 		return (TCP_KEEPIDLE);
571 	case LINUX_TCP_KEEPINTVL:
572 		return (TCP_KEEPINTVL);
573 	case LINUX_TCP_KEEPCNT:
574 		return (TCP_KEEPCNT);
575 	case LINUX_TCP_INFO:
576 		LINUX_RATELIMIT_MSG_OPT1(
577 		    "unsupported TCP socket option TCP_INFO (%d)", opt);
578 		return (-2);
579 	case LINUX_TCP_MD5SIG:
580 		return (TCP_MD5SIG);
581 	}
582 	return (-1);
583 }
584 
585 static int
linux_to_bsd_msg_flags(int flags)586 linux_to_bsd_msg_flags(int flags)
587 {
588 	int ret_flags = 0;
589 
590 	if (flags & LINUX_MSG_OOB)
591 		ret_flags |= MSG_OOB;
592 	if (flags & LINUX_MSG_PEEK)
593 		ret_flags |= MSG_PEEK;
594 	if (flags & LINUX_MSG_DONTROUTE)
595 		ret_flags |= MSG_DONTROUTE;
596 	if (flags & LINUX_MSG_CTRUNC)
597 		ret_flags |= MSG_CTRUNC;
598 	if (flags & LINUX_MSG_TRUNC)
599 		ret_flags |= MSG_TRUNC;
600 	if (flags & LINUX_MSG_DONTWAIT)
601 		ret_flags |= MSG_DONTWAIT;
602 	if (flags & LINUX_MSG_EOR)
603 		ret_flags |= MSG_EOR;
604 	if (flags & LINUX_MSG_WAITALL)
605 		ret_flags |= MSG_WAITALL;
606 	if (flags & LINUX_MSG_NOSIGNAL)
607 		ret_flags |= MSG_NOSIGNAL;
608 	if (flags & LINUX_MSG_PROXY)
609 		LINUX_RATELIMIT_MSG_OPT1("socket message flag MSG_PROXY (%d) not handled",
610 		    LINUX_MSG_PROXY);
611 	if (flags & LINUX_MSG_FIN)
612 		LINUX_RATELIMIT_MSG_OPT1("socket message flag MSG_FIN (%d) not handled",
613 		    LINUX_MSG_FIN);
614 	if (flags & LINUX_MSG_SYN)
615 		LINUX_RATELIMIT_MSG_OPT1("socket message flag MSG_SYN (%d) not handled",
616 		    LINUX_MSG_SYN);
617 	if (flags & LINUX_MSG_CONFIRM)
618 		LINUX_RATELIMIT_MSG_OPT1("socket message flag MSG_CONFIRM (%d) not handled",
619 		    LINUX_MSG_CONFIRM);
620 	if (flags & LINUX_MSG_RST)
621 		LINUX_RATELIMIT_MSG_OPT1("socket message flag MSG_RST (%d) not handled",
622 		    LINUX_MSG_RST);
623 	if (flags & LINUX_MSG_ERRQUEUE)
624 		LINUX_RATELIMIT_MSG_OPT1("socket message flag MSG_ERRQUEUE (%d) not handled",
625 		    LINUX_MSG_ERRQUEUE);
626 	return (ret_flags);
627 }
628 
629 static int
linux_to_bsd_cmsg_type(int cmsg_type)630 linux_to_bsd_cmsg_type(int cmsg_type)
631 {
632 
633 	switch (cmsg_type) {
634 	case LINUX_SCM_RIGHTS:
635 		return (SCM_RIGHTS);
636 	case LINUX_SCM_CREDENTIALS:
637 		return (SCM_CREDS);
638 	}
639 	return (-1);
640 }
641 
642 static int
bsd_to_linux_ip_cmsg_type(int cmsg_type)643 bsd_to_linux_ip_cmsg_type(int cmsg_type)
644 {
645 
646 	switch (cmsg_type) {
647 	case IP_RECVORIGDSTADDR:
648 		return (LINUX_IP_RECVORIGDSTADDR);
649 	}
650 	return (-1);
651 }
652 
653 static int
bsd_to_linux_cmsg_type(struct proc * p,int cmsg_type,int cmsg_level)654 bsd_to_linux_cmsg_type(struct proc *p, int cmsg_type, int cmsg_level)
655 {
656 	struct linux_pemuldata *pem;
657 
658 	if (cmsg_level == IPPROTO_IP)
659 		return (bsd_to_linux_ip_cmsg_type(cmsg_type));
660 	if (cmsg_level != SOL_SOCKET)
661 		return (-1);
662 
663 	pem = pem_find(p);
664 
665 	switch (cmsg_type) {
666 	case SCM_RIGHTS:
667 		return (LINUX_SCM_RIGHTS);
668 	case SCM_CREDS:
669 		return (LINUX_SCM_CREDENTIALS);
670 	case SCM_CREDS2:
671 		return (LINUX_SCM_CREDENTIALS);
672 	case SCM_TIMESTAMP:
673 		return (pem->so_timestamp);
674 	case SCM_BINTIME:
675 		return (pem->so_timestampns);
676 	}
677 	return (-1);
678 }
679 
680 static int
linux_to_bsd_msghdr(struct msghdr * bhdr,const struct l_msghdr * lhdr)681 linux_to_bsd_msghdr(struct msghdr *bhdr, const struct l_msghdr *lhdr)
682 {
683 	if (lhdr->msg_controllen > INT_MAX)
684 		return (ENOBUFS);
685 
686 	bhdr->msg_name		= PTRIN(lhdr->msg_name);
687 	bhdr->msg_namelen	= lhdr->msg_namelen;
688 	bhdr->msg_iov		= PTRIN(lhdr->msg_iov);
689 	bhdr->msg_iovlen	= lhdr->msg_iovlen;
690 	bhdr->msg_control	= PTRIN(lhdr->msg_control);
691 
692 	/*
693 	 * msg_controllen is skipped since BSD and LINUX control messages
694 	 * are potentially different sizes (e.g. the cred structure used
695 	 * by SCM_CREDS is different between the two operating system).
696 	 *
697 	 * The caller can set it (if necessary) after converting all the
698 	 * control messages.
699 	 */
700 
701 	bhdr->msg_flags		= linux_to_bsd_msg_flags(lhdr->msg_flags);
702 	return (0);
703 }
704 
705 static int
bsd_to_linux_msghdr(const struct msghdr * bhdr,struct l_msghdr * lhdr)706 bsd_to_linux_msghdr(const struct msghdr *bhdr, struct l_msghdr *lhdr)
707 {
708 	lhdr->msg_name		= PTROUT(bhdr->msg_name);
709 	lhdr->msg_namelen	= bhdr->msg_namelen;
710 	lhdr->msg_iov		= PTROUT(bhdr->msg_iov);
711 	lhdr->msg_iovlen	= bhdr->msg_iovlen;
712 	lhdr->msg_control	= PTROUT(bhdr->msg_control);
713 
714 	/*
715 	 * msg_controllen is skipped since BSD and LINUX control messages
716 	 * are potentially different sizes (e.g. the cred structure used
717 	 * by SCM_CREDS is different between the two operating system).
718 	 *
719 	 * The caller can set it (if necessary) after converting all the
720 	 * control messages.
721 	 */
722 
723 	/* msg_flags skipped */
724 	return (0);
725 }
726 
727 static int
linux_set_socket_flags(int lflags,int * flags)728 linux_set_socket_flags(int lflags, int *flags)
729 {
730 
731 	if (lflags & ~(LINUX_SOCK_CLOEXEC | LINUX_SOCK_NONBLOCK))
732 		return (EINVAL);
733 	if (lflags & LINUX_SOCK_NONBLOCK)
734 		*flags |= SOCK_NONBLOCK;
735 	if (lflags & LINUX_SOCK_CLOEXEC)
736 		*flags |= SOCK_CLOEXEC;
737 	return (0);
738 }
739 
740 static int
linux_copyout_sockaddr(const struct sockaddr * sa,void * uaddr,size_t len)741 linux_copyout_sockaddr(const struct sockaddr *sa, void *uaddr, size_t len)
742 {
743 	struct l_sockaddr *lsa;
744 	int error;
745 
746 	error = bsd_to_linux_sockaddr(sa, &lsa, len);
747 	if (error != 0)
748 		return (error);
749 
750 	error = copyout(lsa, uaddr, len);
751 	free(lsa, M_LINUX);
752 
753 	return (error);
754 }
755 
756 static int
linux_sendit(struct thread * td,int s,struct msghdr * mp,int flags,struct mbuf * control,enum uio_seg segflg)757 linux_sendit(struct thread *td, int s, struct msghdr *mp, int flags,
758     struct mbuf *control, enum uio_seg segflg)
759 {
760 	struct sockaddr *to;
761 	int error, len;
762 
763 	if (mp->msg_name != NULL) {
764 		len = mp->msg_namelen;
765 		error = linux_to_bsd_sockaddr(mp->msg_name, &to, &len);
766 		if (error != 0)
767 			return (error);
768 		mp->msg_name = to;
769 	} else
770 		to = NULL;
771 
772 	error = kern_sendit(td, s, mp, linux_to_bsd_msg_flags(flags), control,
773 	    segflg);
774 
775 	if (to)
776 		free(to, M_SONAME);
777 	return (error);
778 }
779 
780 /* Return 0 if IP_HDRINCL is set for the given socket. */
781 static int
linux_check_hdrincl(struct thread * td,int s)782 linux_check_hdrincl(struct thread *td, int s)
783 {
784 	int error, optval;
785 	socklen_t size_val;
786 
787 	size_val = sizeof(optval);
788 	error = kern_getsockopt(td, s, IPPROTO_IP, IP_HDRINCL,
789 	    &optval, UIO_SYSSPACE, &size_val);
790 	if (error != 0)
791 		return (error);
792 
793 	return (optval == 0);
794 }
795 
796 /*
797  * Updated sendto() when IP_HDRINCL is set:
798  * tweak endian-dependent fields in the IP packet.
799  */
800 static int
linux_sendto_hdrincl(struct thread * td,struct linux_sendto_args * linux_args)801 linux_sendto_hdrincl(struct thread *td, struct linux_sendto_args *linux_args)
802 {
803 /*
804  * linux_ip_copysize defines how many bytes we should copy
805  * from the beginning of the IP packet before we customize it for BSD.
806  * It should include all the fields we modify (ip_len and ip_off).
807  */
808 #define linux_ip_copysize	8
809 
810 	struct ip *packet;
811 	struct msghdr msg;
812 	struct iovec aiov[1];
813 	int error;
814 
815 	/* Check that the packet isn't too big or too small. */
816 	if (linux_args->len < linux_ip_copysize ||
817 	    linux_args->len > IP_MAXPACKET)
818 		return (EINVAL);
819 
820 	packet = (struct ip *)malloc(linux_args->len, M_LINUX, M_WAITOK);
821 
822 	/* Make kernel copy of the packet to be sent */
823 	if ((error = copyin(PTRIN(linux_args->msg), packet,
824 	    linux_args->len)))
825 		goto goout;
826 
827 	/* Convert fields from Linux to BSD raw IP socket format */
828 	packet->ip_len = linux_args->len;
829 	packet->ip_off = ntohs(packet->ip_off);
830 
831 	/* Prepare the msghdr and iovec structures describing the new packet */
832 	msg.msg_name = PTRIN(linux_args->to);
833 	msg.msg_namelen = linux_args->tolen;
834 	msg.msg_iov = aiov;
835 	msg.msg_iovlen = 1;
836 	msg.msg_control = NULL;
837 	msg.msg_flags = 0;
838 	aiov[0].iov_base = (char *)packet;
839 	aiov[0].iov_len = linux_args->len;
840 	error = linux_sendit(td, linux_args->s, &msg, linux_args->flags,
841 	    NULL, UIO_SYSSPACE);
842 goout:
843 	free(packet, M_LINUX);
844 	return (error);
845 }
846 
847 static const char *linux_netlink_names[] = {
848 	[LINUX_NETLINK_ROUTE] = "ROUTE",
849 	[LINUX_NETLINK_SOCK_DIAG] = "SOCK_DIAG",
850 	[LINUX_NETLINK_NFLOG] = "NFLOG",
851 	[LINUX_NETLINK_SELINUX] = "SELINUX",
852 	[LINUX_NETLINK_AUDIT] = "AUDIT",
853 	[LINUX_NETLINK_FIB_LOOKUP] = "FIB_LOOKUP",
854 	[LINUX_NETLINK_NETFILTER] = "NETFILTER",
855 	[LINUX_NETLINK_KOBJECT_UEVENT] = "KOBJECT_UEVENT",
856 };
857 
858 int
linux_socket(struct thread * td,struct linux_socket_args * args)859 linux_socket(struct thread *td, struct linux_socket_args *args)
860 {
861 	int domain, retval_socket, type;
862 
863 	type = args->type & LINUX_SOCK_TYPE_MASK;
864 	if (type < 0 || type > LINUX_SOCK_MAX)
865 		return (EINVAL);
866 	retval_socket = linux_set_socket_flags(args->type & ~LINUX_SOCK_TYPE_MASK,
867 		&type);
868 	if (retval_socket != 0)
869 		return (retval_socket);
870 	domain = linux_to_bsd_domain(args->domain);
871 	if (domain == -1) {
872 		/* Mask off SOCK_NONBLOCK / CLOEXEC for error messages. */
873 		type = args->type & LINUX_SOCK_TYPE_MASK;
874 		if (args->domain == LINUX_AF_NETLINK &&
875 		    args->protocol == LINUX_NETLINK_AUDIT) {
876 			; /* Do nothing, quietly. */
877 		} else if (args->domain == LINUX_AF_NETLINK) {
878 			const char *nl_name;
879 
880 			if (args->protocol >= 0 &&
881 			    args->protocol < nitems(linux_netlink_names))
882 				nl_name = linux_netlink_names[args->protocol];
883 			else
884 				nl_name = NULL;
885 			if (nl_name != NULL)
886 				linux_msg(curthread,
887 				    "unsupported socket(AF_NETLINK, %d, "
888 				    "NETLINK_%s)", type, nl_name);
889 			else
890 				linux_msg(curthread,
891 				    "unsupported socket(AF_NETLINK, %d, %d)",
892 				    type, args->protocol);
893 		} else {
894 			linux_msg(curthread, "unsupported socket domain %d, "
895 			    "type %d, protocol %d", args->domain, type,
896 			    args->protocol);
897 		}
898 		return (EAFNOSUPPORT);
899 	}
900 
901 	retval_socket = kern_socket(td, domain, type, args->protocol);
902 	if (retval_socket)
903 		return (retval_socket);
904 
905 	if (type == SOCK_RAW
906 	    && (args->protocol == IPPROTO_RAW || args->protocol == 0)
907 	    && domain == PF_INET) {
908 		/* It's a raw IP socket: set the IP_HDRINCL option. */
909 		int hdrincl;
910 
911 		hdrincl = 1;
912 		/* We ignore any error returned by kern_setsockopt() */
913 		kern_setsockopt(td, td->td_retval[0], IPPROTO_IP, IP_HDRINCL,
914 		    &hdrincl, UIO_SYSSPACE, sizeof(hdrincl));
915 	}
916 #ifdef INET6
917 	/*
918 	 * Linux AF_INET6 socket has IPV6_V6ONLY setsockopt set to 0 by default
919 	 * and some apps depend on this. So, set V6ONLY to 0 for Linux apps.
920 	 * For simplicity we do this unconditionally of the net.inet6.ip6.v6only
921 	 * sysctl value.
922 	 */
923 	if (domain == PF_INET6) {
924 		int v6only;
925 
926 		v6only = 0;
927 		/* We ignore any error returned by setsockopt() */
928 		kern_setsockopt(td, td->td_retval[0], IPPROTO_IPV6, IPV6_V6ONLY,
929 		    &v6only, UIO_SYSSPACE, sizeof(v6only));
930 	}
931 #endif
932 
933 	return (retval_socket);
934 }
935 
936 int
linux_bind(struct thread * td,struct linux_bind_args * args)937 linux_bind(struct thread *td, struct linux_bind_args *args)
938 {
939 	struct sockaddr *sa;
940 	int error;
941 
942 	error = linux_to_bsd_sockaddr(PTRIN(args->name), &sa,
943 	    &args->namelen);
944 	if (error != 0)
945 		return (error);
946 
947 	error = kern_bindat(td, AT_FDCWD, args->s, sa);
948 	free(sa, M_SONAME);
949 
950 	/* XXX */
951 	if (error == EADDRNOTAVAIL && args->namelen != sizeof(struct sockaddr_in))
952 		return (EINVAL);
953 	return (error);
954 }
955 
956 int
linux_connect(struct thread * td,struct linux_connect_args * args)957 linux_connect(struct thread *td, struct linux_connect_args *args)
958 {
959 	struct socket *so;
960 	struct sockaddr *sa;
961 	struct file *fp;
962 	u_int fflag;
963 	int error;
964 
965 	error = linux_to_bsd_sockaddr(PTRIN(args->name), &sa,
966 	    &args->namelen);
967 	if (error != 0)
968 		return (error);
969 
970 	error = kern_connectat(td, AT_FDCWD, args->s, sa);
971 	free(sa, M_SONAME);
972 	if (error != EISCONN)
973 		return (error);
974 
975 	/*
976 	 * Linux doesn't return EISCONN the first time it occurs,
977 	 * when on a non-blocking socket. Instead it returns the
978 	 * error getsockopt(SOL_SOCKET, SO_ERROR) would return on BSD.
979 	 */
980 	error = getsock_cap(td, args->s, &cap_connect_rights,
981 	    &fp, &fflag, NULL);
982 	if (error != 0)
983 		return (error);
984 
985 	error = EISCONN;
986 	so = fp->f_data;
987 	if (fflag & FNONBLOCK) {
988 		SOCK_LOCK(so);
989 		if (so->so_emuldata == 0)
990 			error = so->so_error;
991 		so->so_emuldata = (void *)1;
992 		SOCK_UNLOCK(so);
993 	}
994 	fdrop(fp, td);
995 
996 	return (error);
997 }
998 
999 int
linux_listen(struct thread * td,struct linux_listen_args * args)1000 linux_listen(struct thread *td, struct linux_listen_args *args)
1001 {
1002 
1003 	return (kern_listen(td, args->s, args->backlog));
1004 }
1005 
1006 static int
linux_accept_common(struct thread * td,int s,l_uintptr_t addr,l_uintptr_t namelen,int flags)1007 linux_accept_common(struct thread *td, int s, l_uintptr_t addr,
1008     l_uintptr_t namelen, int flags)
1009 {
1010 	struct sockaddr *sa;
1011 	struct file *fp, *fp1;
1012 	int bflags, len;
1013 	struct socket *so;
1014 	int error, error1;
1015 
1016 	bflags = 0;
1017 	fp = NULL;
1018 	sa = NULL;
1019 
1020 	error = linux_set_socket_flags(flags, &bflags);
1021 	if (error != 0)
1022 		return (error);
1023 
1024 	if (PTRIN(addr) == NULL) {
1025 		len = 0;
1026 		error = kern_accept4(td, s, NULL, NULL, bflags, NULL);
1027 	} else {
1028 		error = copyin(PTRIN(namelen), &len, sizeof(len));
1029 		if (error != 0)
1030 			return (error);
1031 		if (len < 0)
1032 			return (EINVAL);
1033 		error = kern_accept4(td, s, &sa, &len, bflags, &fp);
1034 	}
1035 
1036 	/*
1037 	 * Translate errno values into ones used by Linux.
1038 	 */
1039 	if (error != 0) {
1040 		/*
1041 		 * XXX. This is wrong, different sockaddr structures
1042 		 * have different sizes.
1043 		 */
1044 		switch (error) {
1045 		case EFAULT:
1046 			if (namelen != sizeof(struct sockaddr_in))
1047 				error = EINVAL;
1048 			break;
1049 		case EINVAL:
1050 			error1 = getsock_cap(td, s, &cap_accept_rights, &fp1, NULL, NULL);
1051 			if (error1 != 0) {
1052 				error = error1;
1053 				break;
1054 			}
1055 			so = fp1->f_data;
1056 			if (so->so_type == SOCK_DGRAM)
1057 				error = EOPNOTSUPP;
1058 			fdrop(fp1, td);
1059 			break;
1060 		}
1061 		return (error);
1062 	}
1063 
1064 	if (len != 0) {
1065 		error = linux_copyout_sockaddr(sa, PTRIN(addr), len);
1066 		if (error == 0)
1067 			error = copyout(&len, PTRIN(namelen),
1068 			    sizeof(len));
1069 		if (error != 0) {
1070 			fdclose(td, fp, td->td_retval[0]);
1071 			td->td_retval[0] = 0;
1072 		}
1073 	}
1074 	if (fp != NULL)
1075 		fdrop(fp, td);
1076 	free(sa, M_SONAME);
1077 	return (error);
1078 }
1079 
1080 int
linux_accept(struct thread * td,struct linux_accept_args * args)1081 linux_accept(struct thread *td, struct linux_accept_args *args)
1082 {
1083 
1084 	return (linux_accept_common(td, args->s, args->addr,
1085 	    args->namelen, 0));
1086 }
1087 
1088 int
linux_accept4(struct thread * td,struct linux_accept4_args * args)1089 linux_accept4(struct thread *td, struct linux_accept4_args *args)
1090 {
1091 
1092 	return (linux_accept_common(td, args->s, args->addr,
1093 	    args->namelen, args->flags));
1094 }
1095 
1096 int
linux_getsockname(struct thread * td,struct linux_getsockname_args * args)1097 linux_getsockname(struct thread *td, struct linux_getsockname_args *args)
1098 {
1099 	struct sockaddr *sa;
1100 	int len, error;
1101 
1102 	error = copyin(PTRIN(args->namelen), &len, sizeof(len));
1103 	if (error != 0)
1104 		return (error);
1105 
1106 	error = kern_getsockname(td, args->s, &sa, &len);
1107 	if (error != 0)
1108 		return (error);
1109 
1110 	if (len != 0)
1111 		error = linux_copyout_sockaddr(sa, PTRIN(args->addr), len);
1112 
1113 	free(sa, M_SONAME);
1114 	if (error == 0)
1115 		error = copyout(&len, PTRIN(args->namelen), sizeof(len));
1116 	return (error);
1117 }
1118 
1119 int
linux_getpeername(struct thread * td,struct linux_getpeername_args * args)1120 linux_getpeername(struct thread *td, struct linux_getpeername_args *args)
1121 {
1122 	struct sockaddr *sa;
1123 	int len, error;
1124 
1125 	error = copyin(PTRIN(args->namelen), &len, sizeof(len));
1126 	if (error != 0)
1127 		return (error);
1128 	if (len < 0)
1129 		return (EINVAL);
1130 
1131 	error = kern_getpeername(td, args->s, &sa, &len);
1132 	if (error != 0)
1133 		return (error);
1134 
1135 	if (len != 0)
1136 		error = linux_copyout_sockaddr(sa, PTRIN(args->addr), len);
1137 
1138 	free(sa, M_SONAME);
1139 	if (error == 0)
1140 		error = copyout(&len, PTRIN(args->namelen), sizeof(len));
1141 	return (error);
1142 }
1143 
1144 int
linux_socketpair(struct thread * td,struct linux_socketpair_args * args)1145 linux_socketpair(struct thread *td, struct linux_socketpair_args *args)
1146 {
1147 	int domain, error, sv[2], type;
1148 
1149 	domain = linux_to_bsd_domain(args->domain);
1150 	if (domain != PF_LOCAL)
1151 		return (EAFNOSUPPORT);
1152 	type = args->type & LINUX_SOCK_TYPE_MASK;
1153 	if (type < 0 || type > LINUX_SOCK_MAX)
1154 		return (EINVAL);
1155 	error = linux_set_socket_flags(args->type & ~LINUX_SOCK_TYPE_MASK,
1156 	    &type);
1157 	if (error != 0)
1158 		return (error);
1159 	if (args->protocol != 0 && args->protocol != PF_UNIX) {
1160 		/*
1161 		 * Use of PF_UNIX as protocol argument is not right,
1162 		 * but Linux does it.
1163 		 * Do not map PF_UNIX as its Linux value is identical
1164 		 * to FreeBSD one.
1165 		 */
1166 		return (EPROTONOSUPPORT);
1167 	}
1168 	error = kern_socketpair(td, domain, type, 0, sv);
1169 	if (error != 0)
1170                 return (error);
1171         error = copyout(sv, PTRIN(args->rsv), 2 * sizeof(int));
1172         if (error != 0) {
1173                 (void)kern_close(td, sv[0]);
1174                 (void)kern_close(td, sv[1]);
1175         }
1176 	return (error);
1177 }
1178 
1179 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
1180 struct linux_send_args {
1181 	register_t s;
1182 	register_t msg;
1183 	register_t len;
1184 	register_t flags;
1185 };
1186 
1187 static int
linux_send(struct thread * td,struct linux_send_args * args)1188 linux_send(struct thread *td, struct linux_send_args *args)
1189 {
1190 	struct sendto_args /* {
1191 		int s;
1192 		caddr_t buf;
1193 		int len;
1194 		int flags;
1195 		caddr_t to;
1196 		int tolen;
1197 	} */ bsd_args;
1198 	struct file *fp;
1199 	int error, fflag;
1200 
1201 	bsd_args.s = args->s;
1202 	bsd_args.buf = (caddr_t)PTRIN(args->msg);
1203 	bsd_args.len = args->len;
1204 	bsd_args.flags = linux_to_bsd_msg_flags(args->flags);
1205 	bsd_args.to = NULL;
1206 	bsd_args.tolen = 0;
1207 	error = sys_sendto(td, &bsd_args);
1208 	if (error == ENOTCONN) {
1209 		/*
1210 		 * Linux doesn't return ENOTCONN for non-blocking sockets.
1211 		 * Instead it returns the EAGAIN.
1212 		 */
1213 		error = getsock_cap(td, args->s, &cap_send_rights, &fp,
1214 		    &fflag, NULL);
1215 		if (error == 0) {
1216 			if (fflag & FNONBLOCK)
1217 				error = EAGAIN;
1218 			fdrop(fp, td);
1219 		}
1220 	}
1221 	return (error);
1222 }
1223 
1224 struct linux_recv_args {
1225 	register_t s;
1226 	register_t msg;
1227 	register_t len;
1228 	register_t flags;
1229 };
1230 
1231 static int
linux_recv(struct thread * td,struct linux_recv_args * args)1232 linux_recv(struct thread *td, struct linux_recv_args *args)
1233 {
1234 	struct recvfrom_args /* {
1235 		int s;
1236 		caddr_t buf;
1237 		int len;
1238 		int flags;
1239 		struct sockaddr *from;
1240 		socklen_t fromlenaddr;
1241 	} */ bsd_args;
1242 
1243 	bsd_args.s = args->s;
1244 	bsd_args.buf = (caddr_t)PTRIN(args->msg);
1245 	bsd_args.len = args->len;
1246 	bsd_args.flags = linux_to_bsd_msg_flags(args->flags);
1247 	bsd_args.from = NULL;
1248 	bsd_args.fromlenaddr = 0;
1249 	return (sys_recvfrom(td, &bsd_args));
1250 }
1251 #endif /* __i386__ || (__amd64__ && COMPAT_LINUX32) */
1252 
1253 int
linux_sendto(struct thread * td,struct linux_sendto_args * args)1254 linux_sendto(struct thread *td, struct linux_sendto_args *args)
1255 {
1256 	struct msghdr msg;
1257 	struct iovec aiov;
1258 	struct socket *so;
1259 	struct file *fp;
1260 	int error;
1261 
1262 	if (linux_check_hdrincl(td, args->s) == 0)
1263 		/* IP_HDRINCL set, tweak the packet before sending */
1264 		return (linux_sendto_hdrincl(td, args));
1265 
1266 	bzero(&msg, sizeof(msg));
1267 	error = getsock_cap(td, args->s, &cap_send_connect_rights,
1268 	    &fp, NULL, NULL);
1269 	if (error != 0)
1270 		return (error);
1271 	so = fp->f_data;
1272 	if ((so->so_state & (SS_ISCONNECTED|SS_ISCONNECTING)) == 0) {
1273 		msg.msg_name = PTRIN(args->to);
1274 		msg.msg_namelen = args->tolen;
1275 	}
1276 	msg.msg_iov = &aiov;
1277 	msg.msg_iovlen = 1;
1278 	aiov.iov_base = PTRIN(args->msg);
1279 	aiov.iov_len = args->len;
1280 	fdrop(fp, td);
1281 	return (linux_sendit(td, args->s, &msg, args->flags, NULL,
1282 	    UIO_USERSPACE));
1283 }
1284 
1285 int
linux_recvfrom(struct thread * td,struct linux_recvfrom_args * args)1286 linux_recvfrom(struct thread *td, struct linux_recvfrom_args *args)
1287 {
1288 	struct sockaddr *sa;
1289 	struct msghdr msg;
1290 	struct iovec aiov;
1291 	int error, fromlen;
1292 
1293 	if (PTRIN(args->fromlen) != NULL) {
1294 		error = copyin(PTRIN(args->fromlen), &fromlen,
1295 		    sizeof(fromlen));
1296 		if (error != 0)
1297 			return (error);
1298 		if (fromlen < 0)
1299 			return (EINVAL);
1300 		fromlen = min(fromlen, SOCK_MAXADDRLEN);
1301 		sa = malloc(fromlen, M_SONAME, M_WAITOK);
1302 	} else {
1303 		fromlen = 0;
1304 		sa = NULL;
1305 	}
1306 
1307 	msg.msg_name = sa;
1308 	msg.msg_namelen = fromlen;
1309 	msg.msg_iov = &aiov;
1310 	msg.msg_iovlen = 1;
1311 	aiov.iov_base = PTRIN(args->buf);
1312 	aiov.iov_len = args->len;
1313 	msg.msg_control = 0;
1314 	msg.msg_flags = linux_to_bsd_msg_flags(args->flags);
1315 
1316 	error = kern_recvit(td, args->s, &msg, UIO_SYSSPACE, NULL);
1317 	if (error != 0)
1318 		goto out;
1319 
1320 	/*
1321 	 * XXX. Seems that FreeBSD is different from Linux here. Linux
1322 	 * fill source address if underlying protocol provides it, while
1323 	 * FreeBSD fill it if underlying protocol is not connection-oriented.
1324 	 * So, kern_recvit() set msg.msg_namelen to 0 if protocol pr_flags
1325 	 * does not contains PR_ADDR flag.
1326 	 */
1327 	if (PTRIN(args->from) != NULL && msg.msg_namelen != 0)
1328 		error = linux_copyout_sockaddr(sa, PTRIN(args->from),
1329 		    msg.msg_namelen);
1330 
1331 	if (error == 0 && PTRIN(args->fromlen) != NULL)
1332 		error = copyout(&msg.msg_namelen, PTRIN(args->fromlen),
1333 		    sizeof(msg.msg_namelen));
1334 out:
1335 	free(sa, M_SONAME);
1336 	return (error);
1337 }
1338 
1339 static int
linux_sendmsg_common(struct thread * td,l_int s,struct l_msghdr * msghdr,l_uint flags)1340 linux_sendmsg_common(struct thread *td, l_int s, struct l_msghdr *msghdr,
1341     l_uint flags)
1342 {
1343 	struct cmsghdr *cmsg;
1344 	struct mbuf *control;
1345 	struct msghdr msg;
1346 	struct l_cmsghdr linux_cmsg;
1347 	struct l_cmsghdr *ptr_cmsg;
1348 	struct l_msghdr linux_msghdr;
1349 	struct iovec *iov;
1350 	socklen_t datalen;
1351 	struct sockaddr *sa;
1352 	struct socket *so;
1353 	sa_family_t sa_family;
1354 	struct file *fp;
1355 	void *data;
1356 	l_size_t len;
1357 	l_size_t clen;
1358 	int error, fflag;
1359 
1360 	error = copyin(msghdr, &linux_msghdr, sizeof(linux_msghdr));
1361 	if (error != 0)
1362 		return (error);
1363 
1364 	/*
1365 	 * Some Linux applications (ping) define a non-NULL control data
1366 	 * pointer, but a msg_controllen of 0, which is not allowed in the
1367 	 * FreeBSD system call interface.  NULL the msg_control pointer in
1368 	 * order to handle this case.  This should be checked, but allows the
1369 	 * Linux ping to work.
1370 	 */
1371 	if (PTRIN(linux_msghdr.msg_control) != NULL &&
1372 	    linux_msghdr.msg_controllen == 0)
1373 		linux_msghdr.msg_control = PTROUT(NULL);
1374 
1375 	error = linux_to_bsd_msghdr(&msg, &linux_msghdr);
1376 	if (error != 0)
1377 		return (error);
1378 
1379 #ifdef COMPAT_LINUX32
1380 	error = linux32_copyiniov(PTRIN(msg.msg_iov), msg.msg_iovlen,
1381 	    &iov, EMSGSIZE);
1382 #else
1383 	error = copyiniov(msg.msg_iov, msg.msg_iovlen, &iov, EMSGSIZE);
1384 #endif
1385 	if (error != 0)
1386 		return (error);
1387 
1388 	control = NULL;
1389 
1390 	error = kern_getsockname(td, s, &sa, &datalen);
1391 	if (error != 0)
1392 		goto bad;
1393 	sa_family = sa->sa_family;
1394 	free(sa, M_SONAME);
1395 
1396 	if (flags & LINUX_MSG_OOB) {
1397 		error = EOPNOTSUPP;
1398 		if (sa_family == AF_UNIX)
1399 			goto bad;
1400 
1401 		error = getsock_cap(td, s, &cap_send_rights, &fp,
1402 		    &fflag, NULL);
1403 		if (error != 0)
1404 			goto bad;
1405 		so = fp->f_data;
1406 		if (so->so_type != SOCK_STREAM)
1407 			error = EOPNOTSUPP;
1408 		fdrop(fp, td);
1409 		if (error != 0)
1410 			goto bad;
1411 	}
1412 
1413 	if (linux_msghdr.msg_controllen >= sizeof(struct l_cmsghdr)) {
1414 		error = ENOBUFS;
1415 		control = m_get(M_WAITOK, MT_CONTROL);
1416 		MCLGET(control, M_WAITOK);
1417 		data = mtod(control, void *);
1418 		datalen = 0;
1419 
1420 		ptr_cmsg = PTRIN(linux_msghdr.msg_control);
1421 		clen = linux_msghdr.msg_controllen;
1422 		do {
1423 			error = copyin(ptr_cmsg, &linux_cmsg,
1424 			    sizeof(struct l_cmsghdr));
1425 			if (error != 0)
1426 				goto bad;
1427 
1428 			error = EINVAL;
1429 			if (linux_cmsg.cmsg_len < sizeof(struct l_cmsghdr) ||
1430 			    linux_cmsg.cmsg_len > clen)
1431 				goto bad;
1432 
1433 			if (datalen + CMSG_HDRSZ > MCLBYTES)
1434 				goto bad;
1435 
1436 			/*
1437 			 * Now we support only SCM_RIGHTS and SCM_CRED,
1438 			 * so return EINVAL in any other cmsg_type
1439 			 */
1440 			cmsg = data;
1441 			cmsg->cmsg_type =
1442 			    linux_to_bsd_cmsg_type(linux_cmsg.cmsg_type);
1443 			cmsg->cmsg_level =
1444 			    linux_to_bsd_sockopt_level(linux_cmsg.cmsg_level);
1445 			if (cmsg->cmsg_type == -1
1446 			    || cmsg->cmsg_level != SOL_SOCKET) {
1447 				linux_msg(curthread,
1448 				    "unsupported sendmsg cmsg level %d type %d",
1449 				    linux_cmsg.cmsg_level, linux_cmsg.cmsg_type);
1450 				goto bad;
1451 			}
1452 
1453 			/*
1454 			 * Some applications (e.g. pulseaudio) attempt to
1455 			 * send ancillary data even if the underlying protocol
1456 			 * doesn't support it which is not allowed in the
1457 			 * FreeBSD system call interface.
1458 			 */
1459 			if (sa_family != AF_UNIX)
1460 				goto next;
1461 
1462 			if (cmsg->cmsg_type == SCM_CREDS) {
1463 				len = sizeof(struct cmsgcred);
1464 				if (datalen + CMSG_SPACE(len) > MCLBYTES)
1465 					goto bad;
1466 
1467 				/*
1468 				 * The lower levels will fill in the structure
1469 				 */
1470 				memset(CMSG_DATA(data), 0, len);
1471 			} else {
1472 				len = linux_cmsg.cmsg_len - L_CMSG_HDRSZ;
1473 				if (datalen + CMSG_SPACE(len) < datalen ||
1474 				    datalen + CMSG_SPACE(len) > MCLBYTES)
1475 					goto bad;
1476 
1477 				error = copyin(LINUX_CMSG_DATA(ptr_cmsg),
1478 				    CMSG_DATA(data), len);
1479 				if (error != 0)
1480 					goto bad;
1481 			}
1482 
1483 			cmsg->cmsg_len = CMSG_LEN(len);
1484 			data = (char *)data + CMSG_SPACE(len);
1485 			datalen += CMSG_SPACE(len);
1486 
1487 next:
1488 			if (clen <= LINUX_CMSG_ALIGN(linux_cmsg.cmsg_len))
1489 				break;
1490 
1491 			clen -= LINUX_CMSG_ALIGN(linux_cmsg.cmsg_len);
1492 			ptr_cmsg = (struct l_cmsghdr *)((char *)ptr_cmsg +
1493 			    LINUX_CMSG_ALIGN(linux_cmsg.cmsg_len));
1494 		} while(clen >= sizeof(struct l_cmsghdr));
1495 
1496 		control->m_len = datalen;
1497 		if (datalen == 0) {
1498 			m_freem(control);
1499 			control = NULL;
1500 		}
1501 	}
1502 
1503 	msg.msg_iov = iov;
1504 	msg.msg_flags = 0;
1505 	error = linux_sendit(td, s, &msg, flags, control, UIO_USERSPACE);
1506 	control = NULL;
1507 
1508 bad:
1509 	m_freem(control);
1510 	free(iov, M_IOV);
1511 	return (error);
1512 }
1513 
1514 int
linux_sendmsg(struct thread * td,struct linux_sendmsg_args * args)1515 linux_sendmsg(struct thread *td, struct linux_sendmsg_args *args)
1516 {
1517 
1518 	return (linux_sendmsg_common(td, args->s, PTRIN(args->msg),
1519 	    args->flags));
1520 }
1521 
1522 int
linux_sendmmsg(struct thread * td,struct linux_sendmmsg_args * args)1523 linux_sendmmsg(struct thread *td, struct linux_sendmmsg_args *args)
1524 {
1525 	struct l_mmsghdr *msg;
1526 	l_uint retval;
1527 	int error, datagrams;
1528 
1529 	if (args->vlen > UIO_MAXIOV)
1530 		args->vlen = UIO_MAXIOV;
1531 
1532 	msg = PTRIN(args->msg);
1533 	datagrams = 0;
1534 	while (datagrams < args->vlen) {
1535 		error = linux_sendmsg_common(td, args->s, &msg->msg_hdr,
1536 		    args->flags);
1537 		if (error != 0)
1538 			break;
1539 
1540 		retval = td->td_retval[0];
1541 		error = copyout(&retval, &msg->msg_len, sizeof(msg->msg_len));
1542 		if (error != 0)
1543 			break;
1544 		++msg;
1545 		++datagrams;
1546 	}
1547 	if (error == 0)
1548 		td->td_retval[0] = datagrams;
1549 	return (error);
1550 }
1551 
1552 static int
recvmsg_scm_rights(struct thread * td,l_uint flags,socklen_t * datalen,void ** data,void ** udata)1553 recvmsg_scm_rights(struct thread *td, l_uint flags, socklen_t *datalen,
1554     void **data, void **udata)
1555 {
1556 	int i, fd, fds, *fdp;
1557 
1558 	if (flags & LINUX_MSG_CMSG_CLOEXEC) {
1559 		fds = *datalen / sizeof(int);
1560 		fdp = *data;
1561 		for (i = 0; i < fds; i++) {
1562 			fd = *fdp++;
1563 			(void)kern_fcntl(td, fd, F_SETFD, FD_CLOEXEC);
1564 		}
1565 	}
1566 	return (0);
1567 }
1568 
1569 
1570 static int
recvmsg_scm_creds(socklen_t * datalen,void ** data,void ** udata)1571 recvmsg_scm_creds(socklen_t *datalen, void **data, void **udata)
1572 {
1573 	struct cmsgcred *cmcred;
1574 	struct l_ucred lu;
1575 
1576 	cmcred = *data;
1577 	lu.pid = cmcred->cmcred_pid;
1578 	lu.uid = cmcred->cmcred_uid;
1579 	lu.gid = cmcred->cmcred_gid;
1580 	memmove(*data, &lu, sizeof(lu));
1581 	*datalen = sizeof(lu);
1582 	return (0);
1583 }
1584 _Static_assert(sizeof(struct cmsgcred) >= sizeof(struct l_ucred),
1585     "scm_creds sizeof l_ucred");
1586 
1587 static int
recvmsg_scm_creds2(socklen_t * datalen,void ** data,void ** udata)1588 recvmsg_scm_creds2(socklen_t *datalen, void **data, void **udata)
1589 {
1590 	struct sockcred2 *scred;
1591 	struct l_ucred lu;
1592 
1593 	scred = *data;
1594 	lu.pid = scred->sc_pid;
1595 	lu.uid = scred->sc_uid;
1596 	lu.gid = scred->sc_gid;
1597 	memmove(*data, &lu, sizeof(lu));
1598 	*datalen = sizeof(lu);
1599 	return (0);
1600 }
1601 _Static_assert(sizeof(struct sockcred2) >= sizeof(struct l_ucred),
1602     "scm_creds2 sizeof l_ucred");
1603 
1604 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
1605 static int
recvmsg_scm_timestamp(l_int msg_type,socklen_t * datalen,void ** data,void ** udata)1606 recvmsg_scm_timestamp(l_int msg_type, socklen_t *datalen, void **data,
1607     void **udata)
1608 {
1609 	l_sock_timeval ltv64;
1610 	l_timeval ltv;
1611 	struct timeval *tv;
1612 	socklen_t len;
1613 	void *buf;
1614 
1615 	if (*datalen != sizeof(struct timeval))
1616 		return (EMSGSIZE);
1617 
1618 	tv = *data;
1619 #if defined(COMPAT_LINUX32)
1620 	if (msg_type == LINUX_SCM_TIMESTAMPO &&
1621 	    (tv->tv_sec > INT_MAX || tv->tv_sec < INT_MIN))
1622 		return (EOVERFLOW);
1623 #endif
1624 	if (msg_type == LINUX_SCM_TIMESTAMPN)
1625 		len = sizeof(ltv64);
1626 	else
1627 		len = sizeof(ltv);
1628 
1629 	buf = malloc(len, M_LINUX, M_WAITOK);
1630 	if (msg_type == LINUX_SCM_TIMESTAMPN) {
1631 		ltv64.tv_sec = tv->tv_sec;
1632 		ltv64.tv_usec = tv->tv_usec;
1633 		memmove(buf, &ltv64, len);
1634 	} else {
1635 		ltv.tv_sec = tv->tv_sec;
1636 		ltv.tv_usec = tv->tv_usec;
1637 		memmove(buf, &ltv, len);
1638 	}
1639 	*data = *udata = buf;
1640 	*datalen = len;
1641 	return (0);
1642 }
1643 #else
1644 _Static_assert(sizeof(struct timeval) == sizeof(l_timeval),
1645     "scm_timestamp sizeof l_timeval");
1646 #endif /* __i386__ || (__amd64__ && COMPAT_LINUX32) */
1647 
1648 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
1649 static int
recvmsg_scm_timestampns(l_int msg_type,socklen_t * datalen,void ** data,void ** udata)1650 recvmsg_scm_timestampns(l_int msg_type, socklen_t *datalen, void **data,
1651     void **udata)
1652 {
1653 	struct l_timespec64 ts64;
1654 	struct l_timespec ts32;
1655 	struct timespec ts;
1656 	socklen_t len;
1657 	void *buf;
1658 
1659 	if (msg_type == LINUX_SCM_TIMESTAMPNSO)
1660 		len = sizeof(ts32);
1661 	else
1662 		len = sizeof(ts64);
1663 
1664 	buf = malloc(len, M_LINUX, M_WAITOK);
1665 	bintime2timespec(*data, &ts);
1666 	if (msg_type == LINUX_SCM_TIMESTAMPNSO) {
1667 		ts32.tv_sec = ts.tv_sec;
1668 		ts32.tv_nsec = ts.tv_nsec;
1669 		memmove(buf, &ts32, len);
1670 	} else {
1671 		ts64.tv_sec = ts.tv_sec;
1672 		ts64.tv_nsec = ts.tv_nsec;
1673 		memmove(buf, &ts64, len);
1674 	}
1675 	*data = *udata = buf;
1676 	*datalen = len;
1677 	return (0);
1678 }
1679 #else
1680 static int
recvmsg_scm_timestampns(l_int msg_type,socklen_t * datalen,void ** data,void ** udata)1681 recvmsg_scm_timestampns(l_int msg_type, socklen_t *datalen, void **data,
1682     void **udata)
1683 {
1684 	struct timespec ts;
1685 
1686 	bintime2timespec(*data, &ts);
1687 	memmove(*data, &ts, sizeof(struct timespec));
1688 	*datalen = sizeof(struct timespec);
1689 	return (0);
1690 }
1691 _Static_assert(sizeof(struct bintime) >= sizeof(struct timespec),
1692     "scm_timestampns sizeof timespec");
1693 #endif /* __i386__ || (__amd64__ && COMPAT_LINUX32) */
1694 
1695 static int
recvmsg_scm_sol_socket(struct thread * td,l_int msg_type,l_int lmsg_type,l_uint flags,socklen_t * datalen,void ** data,void ** udata)1696 recvmsg_scm_sol_socket(struct thread *td, l_int msg_type, l_int lmsg_type,
1697     l_uint flags, socklen_t *datalen, void **data, void **udata)
1698 {
1699 	int error;
1700 
1701 	error = 0;
1702 	switch (msg_type) {
1703 	case SCM_RIGHTS:
1704 		error = recvmsg_scm_rights(td, flags, datalen,
1705 		    data, udata);
1706 		break;
1707 	case SCM_CREDS:
1708 		error = recvmsg_scm_creds(datalen, data, udata);
1709 		break;
1710 	case SCM_CREDS2:
1711 		error = recvmsg_scm_creds2(datalen, data, udata);
1712 		break;
1713 	case SCM_TIMESTAMP:
1714 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
1715 		error = recvmsg_scm_timestamp(lmsg_type, datalen,
1716 		    data, udata);
1717 #endif
1718 		break;
1719 	case SCM_BINTIME:
1720 		error = recvmsg_scm_timestampns(lmsg_type, datalen,
1721 		    data, udata);
1722 		break;
1723 	}
1724 
1725 	return (error);
1726 }
1727 
1728 static int
recvmsg_scm_ip_origdstaddr(socklen_t * datalen,void ** data,void ** udata)1729 recvmsg_scm_ip_origdstaddr(socklen_t *datalen, void **data, void **udata)
1730 {
1731 	struct l_sockaddr *lsa;
1732 	int error;
1733 
1734 	error = bsd_to_linux_sockaddr(*data, &lsa, *datalen);
1735 	if (error == 0) {
1736 		*data = *udata = lsa;
1737 		*datalen = sizeof(*lsa);
1738 	}
1739 	return (error);
1740 }
1741 
1742 static int
recvmsg_scm_ipproto_ip(l_int msg_type,l_int lmsg_type,socklen_t * datalen,void ** data,void ** udata)1743 recvmsg_scm_ipproto_ip(l_int msg_type, l_int lmsg_type, socklen_t *datalen,
1744     void **data, void **udata)
1745 {
1746 	int error;
1747 
1748 	error = 0;
1749 	switch (msg_type) {
1750 	case IP_ORIGDSTADDR:
1751 		error = recvmsg_scm_ip_origdstaddr(datalen, data,
1752 		    udata);
1753 		break;
1754 	}
1755 
1756 	return (error);
1757 }
1758 
1759 static int
linux_recvmsg_common(struct thread * td,l_int s,struct l_msghdr * msghdr,l_uint flags,struct msghdr * msg)1760 linux_recvmsg_common(struct thread *td, l_int s, struct l_msghdr *msghdr,
1761     l_uint flags, struct msghdr *msg)
1762 {
1763 	struct proc *p = td->td_proc;
1764 	struct cmsghdr *cm;
1765 	struct l_cmsghdr *lcm = NULL;
1766 	socklen_t datalen, maxlen, outlen;
1767 	struct l_msghdr l_msghdr;
1768 	struct iovec *iov, *uiov;
1769 	struct mbuf *m, *control = NULL;
1770 	struct mbuf **controlp;
1771 	struct sockaddr *sa;
1772 	caddr_t outbuf;
1773 	void *data, *udata;
1774 	int error, skiped;
1775 
1776 	error = copyin(msghdr, &l_msghdr, sizeof(l_msghdr));
1777 	if (error != 0)
1778 		return (error);
1779 
1780 	/*
1781 	 * Pass user-supplied recvmsg() flags in msg_flags field,
1782 	 * following sys_recvmsg() convention.
1783 	*/
1784 	l_msghdr.msg_flags = flags;
1785 
1786 	error = linux_to_bsd_msghdr(msg, &l_msghdr);
1787 	if (error != 0)
1788 		return (error);
1789 
1790 #ifdef COMPAT_LINUX32
1791 	error = linux32_copyiniov(PTRIN(msg->msg_iov), msg->msg_iovlen,
1792 	    &iov, EMSGSIZE);
1793 #else
1794 	error = copyiniov(msg->msg_iov, msg->msg_iovlen, &iov, EMSGSIZE);
1795 #endif
1796 	if (error != 0)
1797 		return (error);
1798 
1799 	if (msg->msg_name != NULL && msg->msg_namelen > 0) {
1800 		msg->msg_namelen = min(msg->msg_namelen, SOCK_MAXADDRLEN);
1801 		sa = malloc(msg->msg_namelen, M_SONAME, M_WAITOK);
1802 		msg->msg_name = sa;
1803 	} else {
1804 		sa = NULL;
1805 		msg->msg_name = NULL;
1806 	}
1807 
1808 	uiov = msg->msg_iov;
1809 	msg->msg_iov = iov;
1810 	controlp = (msg->msg_control != NULL) ? &control : NULL;
1811 	error = kern_recvit(td, s, msg, UIO_SYSSPACE, controlp);
1812 	msg->msg_iov = uiov;
1813 	if (error != 0)
1814 		goto bad;
1815 
1816 	/*
1817 	 * Note that kern_recvit() updates msg->msg_namelen.
1818 	 */
1819 	if (msg->msg_name != NULL && msg->msg_namelen > 0) {
1820 		msg->msg_name = PTRIN(l_msghdr.msg_name);
1821 		error = linux_copyout_sockaddr(sa, msg->msg_name,
1822 		    msg->msg_namelen);
1823 		if (error != 0)
1824 			goto bad;
1825 	}
1826 
1827 	error = bsd_to_linux_msghdr(msg, &l_msghdr);
1828 	if (error != 0)
1829 		goto bad;
1830 
1831 	skiped = outlen = 0;
1832 	maxlen = l_msghdr.msg_controllen;
1833 	if (control == NULL)
1834 		goto out;
1835 
1836 	lcm = malloc(L_CMSG_HDRSZ, M_LINUX, M_WAITOK | M_ZERO);
1837 	msg->msg_control = mtod(control, struct cmsghdr *);
1838 	msg->msg_controllen = control->m_len;
1839 	outbuf = PTRIN(l_msghdr.msg_control);
1840 	for (m = control; m != NULL; m = m->m_next) {
1841 		cm = mtod(m, struct cmsghdr *);
1842 		lcm->cmsg_type = bsd_to_linux_cmsg_type(p, cm->cmsg_type,
1843 		    cm->cmsg_level);
1844 		lcm->cmsg_level = bsd_to_linux_sockopt_level(cm->cmsg_level);
1845 
1846 		if (lcm->cmsg_type == -1 ||
1847 		    cm->cmsg_level == -1) {
1848 			LINUX_RATELIMIT_MSG_OPT2(
1849 			    "unsupported recvmsg cmsg level %d type %d",
1850 			    cm->cmsg_level, cm->cmsg_type);
1851 			/* Skip unsupported messages */
1852 			skiped++;
1853 			continue;
1854 		}
1855 		data = CMSG_DATA(cm);
1856 		datalen = (caddr_t)cm + cm->cmsg_len - (caddr_t)data;
1857 		udata = NULL;
1858 		error = 0;
1859 
1860 		switch (cm->cmsg_level) {
1861 		case IPPROTO_IP:
1862 			error = recvmsg_scm_ipproto_ip(cm->cmsg_type,
1863 			    lcm->cmsg_type, &datalen, &data, &udata);
1864  			break;
1865 		case SOL_SOCKET:
1866 			error = recvmsg_scm_sol_socket(td, cm->cmsg_type,
1867 			    lcm->cmsg_type, flags, &datalen, &data, &udata);
1868  			break;
1869  		}
1870 
1871 		/* The recvmsg_scm_ is responsible to free udata on error. */
1872 		if (error != 0)
1873 			goto bad;
1874 
1875 		if (outlen + LINUX_CMSG_LEN(datalen) > maxlen) {
1876 			if (outlen == 0) {
1877 				error = EMSGSIZE;
1878 				goto err;
1879 			} else {
1880 				l_msghdr.msg_flags |= LINUX_MSG_CTRUNC;
1881 				m_dispose_extcontrolm(control);
1882 				free(udata, M_LINUX);
1883 				goto out;
1884 			}
1885 		}
1886 
1887 		lcm->cmsg_len = LINUX_CMSG_LEN(datalen);
1888 		error = copyout(lcm, outbuf, L_CMSG_HDRSZ);
1889 		if (error == 0) {
1890 			error = copyout(data, LINUX_CMSG_DATA(outbuf), datalen);
1891 			if (error == 0) {
1892 				outbuf += LINUX_CMSG_SPACE(datalen);
1893 				outlen += LINUX_CMSG_SPACE(datalen);
1894 			}
1895 		}
1896 err:
1897 		free(udata, M_LINUX);
1898 		if (error != 0)
1899 			goto bad;
1900 	}
1901 	if (outlen == 0 && skiped > 0) {
1902 		error = EINVAL;
1903 		goto bad;
1904 	}
1905 
1906 out:
1907 	l_msghdr.msg_controllen = outlen;
1908 	error = copyout(&l_msghdr, msghdr, sizeof(l_msghdr));
1909 
1910 bad:
1911 	if (control != NULL) {
1912 		if (error != 0)
1913 			m_dispose_extcontrolm(control);
1914 		m_freem(control);
1915 	}
1916 	free(iov, M_IOV);
1917 	free(lcm, M_LINUX);
1918 	free(sa, M_SONAME);
1919 
1920 	return (error);
1921 }
1922 
1923 int
linux_recvmsg(struct thread * td,struct linux_recvmsg_args * args)1924 linux_recvmsg(struct thread *td, struct linux_recvmsg_args *args)
1925 {
1926 	struct msghdr bsd_msg;
1927 	struct file *fp;
1928 	int error;
1929 
1930 	error = getsock_cap(td, args->s, &cap_recv_rights,
1931 	    &fp, NULL, NULL);
1932 	if (error != 0)
1933 		return (error);
1934 	fdrop(fp, td);
1935 	return (linux_recvmsg_common(td, args->s, PTRIN(args->msg),
1936 	    args->flags, &bsd_msg));
1937 }
1938 
1939 static int
linux_recvmmsg_common(struct thread * td,l_int s,struct l_mmsghdr * msg,l_uint vlen,l_uint flags,struct timespec * tts)1940 linux_recvmmsg_common(struct thread *td, l_int s, struct l_mmsghdr *msg,
1941     l_uint vlen, l_uint flags, struct timespec *tts)
1942 {
1943 	struct msghdr bsd_msg;
1944 	struct timespec ts;
1945 	struct file *fp;
1946 	l_uint retval;
1947 	int error, datagrams;
1948 
1949 	error = getsock_cap(td, s, &cap_recv_rights,
1950 	    &fp, NULL, NULL);
1951 	if (error != 0)
1952 		return (error);
1953 	datagrams = 0;
1954 	while (datagrams < vlen) {
1955 		error = linux_recvmsg_common(td, s, &msg->msg_hdr,
1956 		    flags & ~LINUX_MSG_WAITFORONE, &bsd_msg);
1957 		if (error != 0)
1958 			break;
1959 
1960 		retval = td->td_retval[0];
1961 		error = copyout(&retval, &msg->msg_len, sizeof(msg->msg_len));
1962 		if (error != 0)
1963 			break;
1964 		++msg;
1965 		++datagrams;
1966 
1967 		/*
1968 		 * MSG_WAITFORONE turns on MSG_DONTWAIT after one packet.
1969 		 */
1970 		if (flags & LINUX_MSG_WAITFORONE)
1971 			flags |= LINUX_MSG_DONTWAIT;
1972 
1973 		/*
1974 		 * See BUGS section of recvmmsg(2).
1975 		 */
1976 		if (tts) {
1977 			getnanotime(&ts);
1978 			timespecsub(&ts, tts, &ts);
1979 			if (!timespecisset(&ts) || ts.tv_sec > 0)
1980 				break;
1981 		}
1982 		/* Out of band data, return right away. */
1983 		if (bsd_msg.msg_flags & MSG_OOB)
1984 			break;
1985 	}
1986 	if (error == 0)
1987 		td->td_retval[0] = datagrams;
1988 	fdrop(fp, td);
1989 	return (error);
1990 }
1991 
1992 int
linux_recvmmsg(struct thread * td,struct linux_recvmmsg_args * args)1993 linux_recvmmsg(struct thread *td, struct linux_recvmmsg_args *args)
1994 {
1995 	struct timespec ts, tts, *ptts;
1996 	int error;
1997 
1998 	if (args->timeout) {
1999 		error = linux_get_timespec(&ts, args->timeout);
2000 		if (error != 0)
2001 			return (error);
2002 		getnanotime(&tts);
2003 		timespecadd(&tts, &ts, &tts);
2004 		ptts = &tts;
2005 	}
2006 		else ptts = NULL;
2007 
2008 	return (linux_recvmmsg_common(td, args->s, PTRIN(args->msg),
2009 	    args->vlen, args->flags, ptts));
2010 }
2011 
2012 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
2013 int
linux_recvmmsg_time64(struct thread * td,struct linux_recvmmsg_time64_args * args)2014 linux_recvmmsg_time64(struct thread *td, struct linux_recvmmsg_time64_args *args)
2015 {
2016 	struct timespec ts, tts, *ptts;
2017 	int error;
2018 
2019 	if (args->timeout) {
2020 		error = linux_get_timespec64(&ts, args->timeout);
2021 		if (error != 0)
2022 			return (error);
2023 		getnanotime(&tts);
2024 		timespecadd(&tts, &ts, &tts);
2025 		ptts = &tts;
2026 	}
2027 		else ptts = NULL;
2028 
2029 	return (linux_recvmmsg_common(td, args->s, PTRIN(args->msg),
2030 	    args->vlen, args->flags, ptts));
2031 }
2032 #endif
2033 
2034 int
linux_shutdown(struct thread * td,struct linux_shutdown_args * args)2035 linux_shutdown(struct thread *td, struct linux_shutdown_args *args)
2036 {
2037 
2038 	return (kern_shutdown(td, args->s, args->how));
2039 }
2040 
2041 int
linux_setsockopt(struct thread * td,struct linux_setsockopt_args * args)2042 linux_setsockopt(struct thread *td, struct linux_setsockopt_args *args)
2043 {
2044 	struct proc *p = td->td_proc;
2045 	struct linux_pemuldata *pem;
2046 	l_timeval linux_tv;
2047 	struct sockaddr *sa;
2048 	struct timeval tv;
2049 	socklen_t len;
2050 	int error, level, name, val;
2051 
2052 	level = linux_to_bsd_sockopt_level(args->level);
2053 	switch (level) {
2054 	case SOL_SOCKET:
2055 		name = linux_to_bsd_so_sockopt(args->optname);
2056 		switch (name) {
2057 		case LOCAL_CREDS_PERSISTENT:
2058 			level = SOL_LOCAL;
2059 			break;
2060 		case SO_RCVTIMEO:
2061 			/* FALLTHROUGH */
2062 		case SO_SNDTIMEO:
2063 			error = copyin(PTRIN(args->optval), &linux_tv,
2064 			    sizeof(linux_tv));
2065 			if (error != 0)
2066 				return (error);
2067 			tv.tv_sec = linux_tv.tv_sec;
2068 			tv.tv_usec = linux_tv.tv_usec;
2069 			return (kern_setsockopt(td, args->s, level,
2070 			    name, &tv, UIO_SYSSPACE, sizeof(tv)));
2071 			/* NOTREACHED */
2072 		case SO_TIMESTAMP:
2073 			/* overwrite SO_BINTIME */
2074 			val = 0;
2075 			error = kern_setsockopt(td, args->s, level,
2076 			    SO_BINTIME, &val, UIO_SYSSPACE, sizeof(val));
2077 			if (error != 0)
2078 				return (error);
2079 			pem = pem_find(p);
2080 			pem->so_timestamp = args->optname;
2081 			break;
2082 		case SO_BINTIME:
2083 			/* overwrite SO_TIMESTAMP */
2084 			val = 0;
2085 			error = kern_setsockopt(td, args->s, level,
2086 			    SO_TIMESTAMP, &val, UIO_SYSSPACE, sizeof(val));
2087 			if (error != 0)
2088 				return (error);
2089 			pem = pem_find(p);
2090 			pem->so_timestampns = args->optname;
2091 			break;
2092 		default:
2093 			break;
2094 		}
2095 		break;
2096 	case IPPROTO_IP:
2097 		if (args->optname == LINUX_IP_RECVERR &&
2098 		    linux_ignore_ip_recverr) {
2099 			/*
2100 			 * XXX: This is a hack to unbreak DNS resolution
2101 			 *	with glibc 2.30 and above.
2102 			 */
2103 			return (0);
2104 		}
2105 		name = linux_to_bsd_ip_sockopt(args->optname);
2106 		break;
2107 	case IPPROTO_IPV6:
2108 		name = linux_to_bsd_ip6_sockopt(args->optname);
2109 		break;
2110 	case IPPROTO_TCP:
2111 		name = linux_to_bsd_tcp_sockopt(args->optname);
2112 		break;
2113 	case SOL_NETLINK:
2114 		level = SOL_SOCKET;
2115 		name = args->optname;
2116 		break;
2117 	default:
2118 		name = -1;
2119 		break;
2120 	}
2121 	if (name < 0) {
2122 		if (name == -1)
2123 			linux_msg(curthread,
2124 			    "unsupported setsockopt level %d optname %d",
2125 			    args->level, args->optname);
2126 		return (ENOPROTOOPT);
2127 	}
2128 
2129 	if (name == IPV6_NEXTHOP) {
2130 		len = args->optlen;
2131 		error = linux_to_bsd_sockaddr(PTRIN(args->optval), &sa, &len);
2132 		if (error != 0)
2133 			return (error);
2134 
2135 		error = kern_setsockopt(td, args->s, level,
2136 		    name, sa, UIO_SYSSPACE, len);
2137 		free(sa, M_SONAME);
2138 	} else {
2139 		error = kern_setsockopt(td, args->s, level,
2140 		    name, PTRIN(args->optval), UIO_USERSPACE, args->optlen);
2141 	}
2142 
2143 	return (error);
2144 }
2145 
2146 static int
linux_sockopt_copyout(struct thread * td,void * val,socklen_t len,struct linux_getsockopt_args * args)2147 linux_sockopt_copyout(struct thread *td, void *val, socklen_t len,
2148     struct linux_getsockopt_args *args)
2149 {
2150 	int error;
2151 
2152 	error = copyout(val, PTRIN(args->optval), len);
2153 	if (error == 0)
2154 		error = copyout(&len, PTRIN(args->optlen), sizeof(len));
2155 	return (error);
2156 }
2157 
2158 static int
linux_getsockopt_so_peergroups(struct thread * td,struct linux_getsockopt_args * args)2159 linux_getsockopt_so_peergroups(struct thread *td,
2160     struct linux_getsockopt_args *args)
2161 {
2162 	struct xucred xu;
2163 	socklen_t xulen, len;
2164 	int error, i;
2165 
2166 	xulen = sizeof(xu);
2167 	error = kern_getsockopt(td, args->s, 0,
2168 	    LOCAL_PEERCRED, &xu, UIO_SYSSPACE, &xulen);
2169 	if (error != 0)
2170 		return (error);
2171 
2172 	len = xu.cr_ngroups * sizeof(l_gid_t);
2173 	if (args->optlen < len) {
2174 		error = copyout(&len, PTRIN(args->optlen), sizeof(len));
2175 		if (error == 0)
2176 			error = ERANGE;
2177 		return (error);
2178 	}
2179 
2180 	/*
2181 	 * "- 1" to skip the primary group.
2182 	 */
2183 	for (i = 0; i < xu.cr_ngroups - 1; i++) {
2184 		error = copyout(xu.cr_groups + i + 1,
2185 		    (void *)(args->optval + i * sizeof(l_gid_t)),
2186 		    sizeof(l_gid_t));
2187 		if (error != 0)
2188 			return (error);
2189 	}
2190 
2191 	error = copyout(&len, PTRIN(args->optlen), sizeof(len));
2192 	return (error);
2193 }
2194 
2195 static int
linux_getsockopt_so_peersec(struct thread * td,struct linux_getsockopt_args * args)2196 linux_getsockopt_so_peersec(struct thread *td,
2197     struct linux_getsockopt_args *args)
2198 {
2199 	socklen_t len;
2200 	int error;
2201 
2202 	len = sizeof(SECURITY_CONTEXT_STRING);
2203 	if (args->optlen < len) {
2204 		error = copyout(&len, PTRIN(args->optlen), sizeof(len));
2205 		if (error == 0)
2206 			error = ERANGE;
2207 		return (error);
2208 	}
2209 
2210 	return (linux_sockopt_copyout(td, SECURITY_CONTEXT_STRING,
2211 	    len, args));
2212 }
2213 
2214 static int
linux_getsockopt_so_linger(struct thread * td,struct linux_getsockopt_args * args)2215 linux_getsockopt_so_linger(struct thread *td,
2216     struct linux_getsockopt_args *args)
2217 {
2218 	struct linger ling;
2219 	socklen_t len;
2220 	int error;
2221 
2222 	len = sizeof(ling);
2223 	error = kern_getsockopt(td, args->s, SOL_SOCKET,
2224 	    SO_LINGER, &ling, UIO_SYSSPACE, &len);
2225 	if (error != 0)
2226 		return (error);
2227 	ling.l_onoff = ((ling.l_onoff & SO_LINGER) != 0);
2228 	return (linux_sockopt_copyout(td, &ling, len, args));
2229 }
2230 
2231 int
linux_getsockopt(struct thread * td,struct linux_getsockopt_args * args)2232 linux_getsockopt(struct thread *td, struct linux_getsockopt_args *args)
2233 {
2234 	l_timeval linux_tv;
2235 	struct timeval tv;
2236 	socklen_t tv_len, xulen, len;
2237 	struct sockaddr *sa;
2238 	struct xucred xu;
2239 	struct l_ucred lxu;
2240 	int error, level, name, newval;
2241 
2242 	level = linux_to_bsd_sockopt_level(args->level);
2243 	switch (level) {
2244 	case SOL_SOCKET:
2245 		switch (args->optname) {
2246 		case LINUX_SO_PEERGROUPS:
2247 			return (linux_getsockopt_so_peergroups(td, args));
2248 		case LINUX_SO_PEERSEC:
2249 			return (linux_getsockopt_so_peersec(td, args));
2250 		default:
2251 			break;
2252 		}
2253 
2254 		name = linux_to_bsd_so_sockopt(args->optname);
2255 		switch (name) {
2256 		case LOCAL_CREDS_PERSISTENT:
2257 			level = SOL_LOCAL;
2258 			break;
2259 		case SO_RCVTIMEO:
2260 			/* FALLTHROUGH */
2261 		case SO_SNDTIMEO:
2262 			tv_len = sizeof(tv);
2263 			error = kern_getsockopt(td, args->s, level,
2264 			    name, &tv, UIO_SYSSPACE, &tv_len);
2265 			if (error != 0)
2266 				return (error);
2267 			linux_tv.tv_sec = tv.tv_sec;
2268 			linux_tv.tv_usec = tv.tv_usec;
2269 			return (linux_sockopt_copyout(td, &linux_tv,
2270 			    sizeof(linux_tv), args));
2271 			/* NOTREACHED */
2272 		case LOCAL_PEERCRED:
2273 			if (args->optlen < sizeof(lxu))
2274 				return (EINVAL);
2275 			/*
2276 			 * LOCAL_PEERCRED is not served at the SOL_SOCKET level,
2277 			 * but by the Unix socket's level 0.
2278 			 */
2279 			level = 0;
2280 			xulen = sizeof(xu);
2281 			error = kern_getsockopt(td, args->s, level,
2282 			    name, &xu, UIO_SYSSPACE, &xulen);
2283 			if (error != 0)
2284 				return (error);
2285 			lxu.pid = xu.cr_pid;
2286 			lxu.uid = xu.cr_uid;
2287 			lxu.gid = xu.cr_gid;
2288 			return (linux_sockopt_copyout(td, &lxu,
2289 			    sizeof(lxu), args));
2290 			/* NOTREACHED */
2291 		case SO_ERROR:
2292 			len = sizeof(newval);
2293 			error = kern_getsockopt(td, args->s, level,
2294 			    name, &newval, UIO_SYSSPACE, &len);
2295 			if (error != 0)
2296 				return (error);
2297 			newval = -bsd_to_linux_errno(newval);
2298 			return (linux_sockopt_copyout(td, &newval,
2299 			    len, args));
2300 			/* NOTREACHED */
2301 		case SO_DOMAIN:
2302 			len = sizeof(newval);
2303 			error = kern_getsockopt(td, args->s, level,
2304 			    name, &newval, UIO_SYSSPACE, &len);
2305 			if (error != 0)
2306 				return (error);
2307 			newval = bsd_to_linux_domain(newval);
2308 			if (newval == -1)
2309 				return (ENOPROTOOPT);
2310 			return (linux_sockopt_copyout(td, &newval,
2311 			    len, args));
2312 			/* NOTREACHED */
2313 		case SO_LINGER:
2314 			return (linux_getsockopt_so_linger(td, args));
2315 			/* NOTREACHED */
2316 		default:
2317 			break;
2318 		}
2319 		break;
2320 	case IPPROTO_IP:
2321 		name = linux_to_bsd_ip_sockopt(args->optname);
2322 		break;
2323 	case IPPROTO_IPV6:
2324 		name = linux_to_bsd_ip6_sockopt(args->optname);
2325 		break;
2326 	case IPPROTO_TCP:
2327 		name = linux_to_bsd_tcp_sockopt(args->optname);
2328 		break;
2329 	default:
2330 		name = -1;
2331 		break;
2332 	}
2333 	if (name < 0) {
2334 		if (name == -1)
2335 			linux_msg(curthread,
2336 			    "unsupported getsockopt level %d optname %d",
2337 			    args->level, args->optname);
2338 		return (EINVAL);
2339 	}
2340 
2341 	if (name == IPV6_NEXTHOP) {
2342 		error = copyin(PTRIN(args->optlen), &len, sizeof(len));
2343                 if (error != 0)
2344                         return (error);
2345 		sa = malloc(len, M_SONAME, M_WAITOK);
2346 
2347 		error = kern_getsockopt(td, args->s, level,
2348 		    name, sa, UIO_SYSSPACE, &len);
2349 		if (error != 0)
2350 			goto out;
2351 
2352 		error = linux_copyout_sockaddr(sa, PTRIN(args->optval), len);
2353 		if (error == 0)
2354 			error = copyout(&len, PTRIN(args->optlen),
2355 			    sizeof(len));
2356 out:
2357 		free(sa, M_SONAME);
2358 	} else {
2359 		if (args->optval) {
2360 			error = copyin(PTRIN(args->optlen), &len, sizeof(len));
2361 			if (error != 0)
2362 				return (error);
2363 		}
2364 		error = kern_getsockopt(td, args->s, level,
2365 		    name, PTRIN(args->optval), UIO_USERSPACE, &len);
2366 		if (error == 0)
2367 			error = copyout(&len, PTRIN(args->optlen),
2368 			    sizeof(len));
2369 	}
2370 
2371 	return (error);
2372 }
2373 
2374 static int
linux_sendfile_common(struct thread * td,l_int out,l_int in,l_loff_t * offset,l_size_t count)2375 linux_sendfile_common(struct thread *td, l_int out, l_int in,
2376     l_loff_t *offset, l_size_t count)
2377 {
2378 	off_t bytes_read;
2379 	int error;
2380 	l_loff_t current_offset;
2381 	struct file *fp;
2382 
2383 	AUDIT_ARG_FD(in);
2384 	error = fget_read(td, in, &cap_pread_rights, &fp);
2385 	if (error != 0)
2386 		return (error);
2387 
2388 	if (offset != NULL) {
2389 		current_offset = *offset;
2390 	} else {
2391 		error = (fp->f_ops->fo_flags & DFLAG_SEEKABLE) != 0 ?
2392 		    fo_seek(fp, 0, SEEK_CUR, td) : ESPIPE;
2393 		if (error != 0)
2394 			goto drop;
2395 		current_offset = td->td_uretoff.tdu_off;
2396 	}
2397 
2398 	bytes_read = 0;
2399 
2400 	/* Linux cannot have 0 count. */
2401 	if (count <= 0 || current_offset < 0) {
2402 		error = EINVAL;
2403 		goto drop;
2404 	}
2405 
2406 	error = fo_sendfile(fp, out, NULL, NULL, current_offset, count,
2407 	    &bytes_read, 0, td);
2408 	if (error != 0)
2409 		goto drop;
2410 	current_offset += bytes_read;
2411 
2412 	if (offset != NULL) {
2413 		*offset = current_offset;
2414 	} else {
2415 		error = fo_seek(fp, current_offset, SEEK_SET, td);
2416 		if (error != 0)
2417 			goto drop;
2418 	}
2419 
2420 	td->td_retval[0] = (ssize_t)bytes_read;
2421 drop:
2422 	fdrop(fp, td);
2423 	if (error == ENOTSOCK)
2424 		error = EINVAL;
2425 	return (error);
2426 }
2427 
2428 int
linux_sendfile(struct thread * td,struct linux_sendfile_args * arg)2429 linux_sendfile(struct thread *td, struct linux_sendfile_args *arg)
2430 {
2431 	/*
2432 	 * Differences between FreeBSD and Linux sendfile:
2433 	 * - Linux doesn't send anything when count is 0 (FreeBSD uses 0 to
2434 	 *   mean send the whole file.)  In linux_sendfile given fds are still
2435 	 *   checked for validity when the count is 0.
2436 	 * - Linux can send to any fd whereas FreeBSD only supports sockets.
2437 	 *   The same restriction follows for linux_sendfile.
2438 	 * - Linux doesn't have an equivalent for FreeBSD's flags and sf_hdtr.
2439 	 * - Linux takes an offset pointer and updates it to the read location.
2440 	 *   FreeBSD takes in an offset and a 'bytes read' parameter which is
2441 	 *   only filled if it isn't NULL.  We use this parameter to update the
2442 	 *   offset pointer if it exists.
2443 	 * - Linux sendfile returns bytes read on success while FreeBSD
2444 	 *   returns 0.  We use the 'bytes read' parameter to get this value.
2445 	 */
2446 
2447 	l_loff_t offset64;
2448 	l_long offset;
2449 	int ret;
2450 	int error;
2451 
2452 	if (arg->offset != NULL) {
2453 		error = copyin(arg->offset, &offset, sizeof(offset));
2454 		if (error != 0)
2455 			return (error);
2456 		offset64 = (l_loff_t)offset;
2457 	}
2458 
2459 	ret = linux_sendfile_common(td, arg->out, arg->in,
2460 	    arg->offset != NULL ? &offset64 : NULL, arg->count);
2461 
2462 	if (arg->offset != NULL) {
2463 #if defined(__i386__) || defined(__arm__) || \
2464     (defined(__amd64__) && defined(COMPAT_LINUX32))
2465 		if (offset64 > INT32_MAX)
2466 			return (EOVERFLOW);
2467 #endif
2468 		offset = (l_long)offset64;
2469 		error = copyout(&offset, arg->offset, sizeof(offset));
2470 		if (error != 0)
2471 			return (error);
2472 	}
2473 
2474 	return (ret);
2475 }
2476 
2477 #if defined(__i386__) || defined(__arm__) || \
2478     (defined(__amd64__) && defined(COMPAT_LINUX32))
2479 
2480 int
linux_sendfile64(struct thread * td,struct linux_sendfile64_args * arg)2481 linux_sendfile64(struct thread *td, struct linux_sendfile64_args *arg)
2482 {
2483 	l_loff_t offset;
2484 	int ret;
2485 	int error;
2486 
2487 	if (arg->offset != NULL) {
2488 		error = copyin(arg->offset, &offset, sizeof(offset));
2489 		if (error != 0)
2490 			return (error);
2491 	}
2492 
2493 	ret = linux_sendfile_common(td, arg->out, arg->in,
2494 		arg->offset != NULL ? &offset : NULL, arg->count);
2495 
2496 	if (arg->offset != NULL) {
2497 		error = copyout(&offset, arg->offset, sizeof(offset));
2498 		if (error != 0)
2499 			return (error);
2500 	}
2501 
2502 	return (ret);
2503 }
2504 
2505 /* Argument list sizes for linux_socketcall */
2506 static const unsigned char lxs_args_cnt[] = {
2507 	0 /* unused*/,		3 /* socket */,
2508 	3 /* bind */,		3 /* connect */,
2509 	2 /* listen */,		3 /* accept */,
2510 	3 /* getsockname */,	3 /* getpeername */,
2511 	4 /* socketpair */,	4 /* send */,
2512 	4 /* recv */,		6 /* sendto */,
2513 	6 /* recvfrom */,	2 /* shutdown */,
2514 	5 /* setsockopt */,	5 /* getsockopt */,
2515 	3 /* sendmsg */,	3 /* recvmsg */,
2516 	4 /* accept4 */,	5 /* recvmmsg */,
2517 	4 /* sendmmsg */,	4 /* sendfile */
2518 };
2519 #define	LINUX_ARGS_CNT		(nitems(lxs_args_cnt) - 1)
2520 #define	LINUX_ARG_SIZE(x)	(lxs_args_cnt[x] * sizeof(l_ulong))
2521 
2522 int
linux_socketcall(struct thread * td,struct linux_socketcall_args * args)2523 linux_socketcall(struct thread *td, struct linux_socketcall_args *args)
2524 {
2525 	l_ulong a[6];
2526 #if defined(__amd64__) && defined(COMPAT_LINUX32)
2527 	register_t l_args[6];
2528 #endif
2529 	void *arg;
2530 	int error;
2531 
2532 	if (args->what < LINUX_SOCKET || args->what > LINUX_ARGS_CNT)
2533 		return (EINVAL);
2534 	error = copyin(PTRIN(args->args), a, LINUX_ARG_SIZE(args->what));
2535 	if (error != 0)
2536 		return (error);
2537 
2538 #if defined(__amd64__) && defined(COMPAT_LINUX32)
2539 	for (int i = 0; i < lxs_args_cnt[args->what]; ++i)
2540 		l_args[i] = a[i];
2541 	arg = l_args;
2542 #else
2543 	arg = a;
2544 #endif
2545 	switch (args->what) {
2546 	case LINUX_SOCKET:
2547 		return (linux_socket(td, arg));
2548 	case LINUX_BIND:
2549 		return (linux_bind(td, arg));
2550 	case LINUX_CONNECT:
2551 		return (linux_connect(td, arg));
2552 	case LINUX_LISTEN:
2553 		return (linux_listen(td, arg));
2554 	case LINUX_ACCEPT:
2555 		return (linux_accept(td, arg));
2556 	case LINUX_GETSOCKNAME:
2557 		return (linux_getsockname(td, arg));
2558 	case LINUX_GETPEERNAME:
2559 		return (linux_getpeername(td, arg));
2560 	case LINUX_SOCKETPAIR:
2561 		return (linux_socketpair(td, arg));
2562 	case LINUX_SEND:
2563 		return (linux_send(td, arg));
2564 	case LINUX_RECV:
2565 		return (linux_recv(td, arg));
2566 	case LINUX_SENDTO:
2567 		return (linux_sendto(td, arg));
2568 	case LINUX_RECVFROM:
2569 		return (linux_recvfrom(td, arg));
2570 	case LINUX_SHUTDOWN:
2571 		return (linux_shutdown(td, arg));
2572 	case LINUX_SETSOCKOPT:
2573 		return (linux_setsockopt(td, arg));
2574 	case LINUX_GETSOCKOPT:
2575 		return (linux_getsockopt(td, arg));
2576 	case LINUX_SENDMSG:
2577 		return (linux_sendmsg(td, arg));
2578 	case LINUX_RECVMSG:
2579 		return (linux_recvmsg(td, arg));
2580 	case LINUX_ACCEPT4:
2581 		return (linux_accept4(td, arg));
2582 	case LINUX_RECVMMSG:
2583 		return (linux_recvmmsg(td, arg));
2584 	case LINUX_SENDMMSG:
2585 		return (linux_sendmmsg(td, arg));
2586 	case LINUX_SENDFILE:
2587 		return (linux_sendfile(td, arg));
2588 	}
2589 
2590 	linux_msg(td, "socket type %d not implemented", args->what);
2591 	return (ENOSYS);
2592 }
2593 #endif /* __i386__ || __arm__ || (__amd64__ && COMPAT_LINUX32) */
2594