bootp_subr.c revision 1.3 1 1.3 pgoyette /* $NetBSD: bootp_subr.c,v 1.3 2016/12/13 22:52:46 pgoyette Exp $ */
2 1.1 dholland /*-
3 1.1 dholland * Copyright (c) 1995 Gordon Ross, Adam Glass
4 1.1 dholland * Copyright (c) 1992 Regents of the University of California.
5 1.1 dholland * All rights reserved.
6 1.1 dholland *
7 1.1 dholland * This software was developed by the Computer Systems Engineering group
8 1.1 dholland * at Lawrence Berkeley Laboratory under DARPA contract BG 91-66 and
9 1.1 dholland * contributed to Berkeley.
10 1.1 dholland *
11 1.1 dholland * Redistribution and use in source and binary forms, with or without
12 1.1 dholland * modification, are permitted provided that the following conditions
13 1.1 dholland * are met:
14 1.1 dholland * 1. Redistributions of source code must retain the above copyright
15 1.1 dholland * notice, this list of conditions and the following disclaimer.
16 1.1 dholland * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 dholland * notice, this list of conditions and the following disclaimer in the
18 1.1 dholland * documentation and/or other materials provided with the distribution.
19 1.1 dholland * 3. All advertising materials mentioning features or use of this software
20 1.1 dholland * must display the following acknowledgement:
21 1.1 dholland * This product includes software developed by the University of
22 1.1 dholland * California, Lawrence Berkeley Laboratory and its contributors.
23 1.1 dholland * 4. Neither the name of the University nor the names of its contributors
24 1.1 dholland * may be used to endorse or promote products derived from this software
25 1.1 dholland * without specific prior written permission.
26 1.1 dholland *
27 1.1 dholland * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
28 1.1 dholland * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
29 1.1 dholland * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
30 1.1 dholland * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
31 1.1 dholland * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
32 1.1 dholland * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
33 1.1 dholland * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
34 1.1 dholland * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
35 1.1 dholland * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
36 1.1 dholland * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
37 1.1 dholland * SUCH DAMAGE.
38 1.1 dholland *
39 1.1 dholland * based on:
40 1.1 dholland * nfs/krpc_subr.c
41 1.1 dholland * NetBSD: krpc_subr.c,v 1.10 1995/08/08 20:43:43 gwr Exp
42 1.1 dholland */
43 1.1 dholland
44 1.1 dholland #include <sys/cdefs.h>
45 1.2 pgoyette /* __FBSDID("FreeBSD: head/sys/nfs/bootp_subr.c 297326 2016-03-27 23:16:37Z ian "); */
46 1.3 pgoyette __RCSID("$NetBSD: bootp_subr.c,v 1.3 2016/12/13 22:52:46 pgoyette Exp $");
47 1.1 dholland
48 1.2 pgoyette #ifdef _KERNEL_OPT
49 1.2 pgoyette #include "opt_newnfs.h"
50 1.2 pgoyette #endif
51 1.1 dholland
52 1.1 dholland #include <sys/param.h>
53 1.1 dholland #include <sys/systm.h>
54 1.2 pgoyette #include <sys/endian.h>
55 1.1 dholland #include <sys/kernel.h>
56 1.1 dholland #include <sys/sockio.h>
57 1.1 dholland #include <sys/malloc.h>
58 1.1 dholland #include <sys/mount.h>
59 1.1 dholland #include <sys/mbuf.h>
60 1.1 dholland #include <sys/proc.h>
61 1.1 dholland #include <sys/reboot.h>
62 1.1 dholland #include <sys/socket.h>
63 1.1 dholland #include <sys/socketvar.h>
64 1.1 dholland #include <sys/sysctl.h>
65 1.1 dholland #include <sys/uio.h>
66 1.3 pgoyette #include <sys/kauth.h>
67 1.3 pgoyette #include <sys/lwp.h>
68 1.3 pgoyette #include <sys/vnode.h>
69 1.3 pgoyette #include <sys/mutex.h>
70 1.3 pgoyette
71 1.3 pgoyette #if 0
72 1.3 pgoyette #include <src/include/rpc/auth.h>
73 1.3 pgoyette #endif
74 1.1 dholland
75 1.1 dholland #include <net/if.h>
76 1.1 dholland #include <net/route.h>
77 1.2 pgoyette #ifdef BOOTP_DEBUG
78 1.2 pgoyette #include <net/route_var.h>
79 1.2 pgoyette #endif
80 1.1 dholland
81 1.1 dholland #include <netinet/in.h>
82 1.1 dholland #include <netinet/in_var.h>
83 1.1 dholland #include <net/if_types.h>
84 1.1 dholland #include <net/if_dl.h>
85 1.1 dholland
86 1.2 pgoyette #include <fs/nfs/common/nfsproto.h>
87 1.3 pgoyette #include <fs/nfs/common/nfsport.h>
88 1.3 pgoyette #include <fs/nfs/common/nfs.h>
89 1.3 pgoyette #include <fs/nfs/client/nfsmount.h>
90 1.3 pgoyette #include <fs/nfs/client/nfsnode.h>
91 1.2 pgoyette #include <fs/nfs/client/nfs.h>
92 1.2 pgoyette #include <fs/nfs/common/nfsdiskless.h>
93 1.2 pgoyette #include <fs/nfs/common/krpc.h>
94 1.2 pgoyette #include <fs/nfs/common/xdr_subs.h>
95 1.1 dholland
96 1.1 dholland
97 1.1 dholland #define BOOTP_MIN_LEN 300 /* Minimum size of bootp udp packet */
98 1.1 dholland
99 1.1 dholland #ifndef BOOTP_SETTLE_DELAY
100 1.1 dholland #define BOOTP_SETTLE_DELAY 3
101 1.1 dholland #endif
102 1.1 dholland
103 1.1 dholland /*
104 1.1 dholland * Wait 10 seconds for interface appearance
105 1.1 dholland * USB ethernet adapters might require some time to pop up
106 1.1 dholland */
107 1.1 dholland #ifndef BOOTP_IFACE_WAIT_TIMEOUT
108 1.1 dholland #define BOOTP_IFACE_WAIT_TIMEOUT 10
109 1.1 dholland #endif
110 1.1 dholland
111 1.1 dholland /*
112 1.1 dholland * What is the longest we will wait before re-sending a request?
113 1.1 dholland * Note this is also the frequency of "RPC timeout" messages.
114 1.1 dholland * The re-send loop count sup linearly to this maximum, so the
115 1.1 dholland * first complaint will happen after (1+2+3+4+5)=15 seconds.
116 1.1 dholland */
117 1.1 dholland #define MAX_RESEND_DELAY 5 /* seconds */
118 1.1 dholland
119 1.1 dholland /* Definitions from RFC951 */
120 1.1 dholland struct bootp_packet {
121 1.1 dholland u_int8_t op;
122 1.1 dholland u_int8_t htype;
123 1.1 dholland u_int8_t hlen;
124 1.1 dholland u_int8_t hops;
125 1.1 dholland u_int32_t xid;
126 1.1 dholland u_int16_t secs;
127 1.1 dholland u_int16_t flags;
128 1.1 dholland struct in_addr ciaddr;
129 1.1 dholland struct in_addr yiaddr;
130 1.1 dholland struct in_addr siaddr;
131 1.1 dholland struct in_addr giaddr;
132 1.1 dholland unsigned char chaddr[16];
133 1.1 dholland char sname[64];
134 1.1 dholland char file[128];
135 1.1 dholland unsigned char vend[1222];
136 1.1 dholland };
137 1.1 dholland
138 1.1 dholland struct bootpc_ifcontext {
139 1.1 dholland STAILQ_ENTRY(bootpc_ifcontext) next;
140 1.1 dholland struct bootp_packet call;
141 1.1 dholland struct bootp_packet reply;
142 1.1 dholland int replylen;
143 1.1 dholland int overload;
144 1.1 dholland union {
145 1.1 dholland struct ifreq _ifreq;
146 1.1 dholland struct in_aliasreq _in_alias_req;
147 1.1 dholland } _req;
148 1.1 dholland #define ireq _req._ifreq
149 1.1 dholland #define iareq _req._in_alias_req
150 1.1 dholland struct ifnet *ifp;
151 1.1 dholland struct sockaddr_dl *sdl;
152 1.1 dholland struct sockaddr_in myaddr;
153 1.1 dholland struct sockaddr_in netmask;
154 1.1 dholland struct sockaddr_in gw;
155 1.1 dholland int gotgw;
156 1.1 dholland int gotnetmask;
157 1.1 dholland int gotrootpath;
158 1.1 dholland int outstanding;
159 1.1 dholland int sentmsg;
160 1.1 dholland u_int32_t xid;
161 1.1 dholland enum {
162 1.1 dholland IF_BOOTP_UNRESOLVED,
163 1.1 dholland IF_BOOTP_RESOLVED,
164 1.1 dholland IF_BOOTP_FAILED,
165 1.1 dholland IF_DHCP_UNRESOLVED,
166 1.1 dholland IF_DHCP_OFFERED,
167 1.1 dholland IF_DHCP_RESOLVED,
168 1.1 dholland IF_DHCP_FAILED,
169 1.1 dholland } state;
170 1.1 dholland int dhcpquerytype; /* dhcp type sent */
171 1.1 dholland struct in_addr dhcpserver;
172 1.1 dholland int gotdhcpserver;
173 1.2 pgoyette uint16_t mtu;
174 1.1 dholland };
175 1.1 dholland
176 1.1 dholland #define TAG_MAXLEN 1024
177 1.1 dholland struct bootpc_tagcontext {
178 1.1 dholland char buf[TAG_MAXLEN + 1];
179 1.1 dholland int overload;
180 1.1 dholland int badopt;
181 1.1 dholland int badtag;
182 1.1 dholland int foundopt;
183 1.1 dholland int taglen;
184 1.1 dholland };
185 1.1 dholland
186 1.1 dholland struct bootpc_globalcontext {
187 1.1 dholland STAILQ_HEAD(, bootpc_ifcontext) interfaces;
188 1.1 dholland u_int32_t xid;
189 1.1 dholland int any_root_overrides;
190 1.1 dholland int gotrootpath;
191 1.1 dholland int gotgw;
192 1.1 dholland int ifnum;
193 1.1 dholland int secs;
194 1.1 dholland int starttime;
195 1.1 dholland struct bootp_packet reply;
196 1.1 dholland int replylen;
197 1.1 dholland struct bootpc_ifcontext *setrootfs;
198 1.1 dholland struct bootpc_ifcontext *sethostname;
199 1.1 dholland struct bootpc_tagcontext tmptag;
200 1.1 dholland struct bootpc_tagcontext tag;
201 1.1 dholland };
202 1.1 dholland
203 1.1 dholland #define IPPORT_BOOTPC 68
204 1.1 dholland #define IPPORT_BOOTPS 67
205 1.1 dholland
206 1.1 dholland #define BOOTP_REQUEST 1
207 1.1 dholland #define BOOTP_REPLY 2
208 1.1 dholland
209 1.1 dholland /* Common tags */
210 1.1 dholland #define TAG_PAD 0 /* Pad option, implicit length 1 */
211 1.1 dholland #define TAG_SUBNETMASK 1 /* RFC 950 subnet mask */
212 1.1 dholland #define TAG_ROUTERS 3 /* Routers (in order of preference) */
213 1.1 dholland #define TAG_HOSTNAME 12 /* Client host name */
214 1.1 dholland #define TAG_ROOT 17 /* Root path */
215 1.2 pgoyette #define TAG_INTF_MTU 26 /* Interface MTU Size (RFC2132) */
216 1.1 dholland
217 1.1 dholland /* DHCP specific tags */
218 1.1 dholland #define TAG_OVERLOAD 52 /* Option Overload */
219 1.1 dholland #define TAG_MAXMSGSIZE 57 /* Maximum DHCP Message Size */
220 1.1 dholland
221 1.1 dholland #define TAG_END 255 /* End Option (i.e. no more options) */
222 1.1 dholland
223 1.1 dholland /* Overload values */
224 1.1 dholland #define OVERLOAD_FILE 1
225 1.1 dholland #define OVERLOAD_SNAME 2
226 1.1 dholland
227 1.1 dholland /* Site specific tags: */
228 1.1 dholland #define TAG_ROOTOPTS 130
229 1.1 dholland #define TAG_COOKIE 134 /* ascii info for userland, via sysctl */
230 1.1 dholland
231 1.1 dholland #define TAG_DHCP_MSGTYPE 53
232 1.1 dholland #define TAG_DHCP_REQ_ADDR 50
233 1.1 dholland #define TAG_DHCP_SERVERID 54
234 1.1 dholland #define TAG_DHCP_LEASETIME 51
235 1.1 dholland
236 1.1 dholland #define TAG_VENDOR_INDENTIFIER 60
237 1.1 dholland
238 1.1 dholland #define DHCP_NOMSG 0
239 1.1 dholland #define DHCP_DISCOVER 1
240 1.1 dholland #define DHCP_OFFER 2
241 1.1 dholland #define DHCP_REQUEST 3
242 1.1 dholland #define DHCP_ACK 5
243 1.1 dholland
244 1.1 dholland /* NFS read/write block size */
245 1.1 dholland #ifndef BOOTP_BLOCKSIZE
246 1.1 dholland #define BOOTP_BLOCKSIZE 8192
247 1.1 dholland #endif
248 1.1 dholland
249 1.1 dholland static char bootp_cookie[128];
250 1.1 dholland static struct socket *bootp_so;
251 1.3 pgoyette
252 1.3 pgoyette #if 0 /* Need to init sysctl variables in the module initialization code */
253 1.1 dholland SYSCTL_STRING(_kern, OID_AUTO, bootp_cookie, CTLFLAG_RD,
254 1.1 dholland bootp_cookie, 0, "Cookie (T134) supplied by bootp server");
255 1.3 pgoyette #endif
256 1.1 dholland
257 1.1 dholland /* mountd RPC */
258 1.1 dholland static int md_mount(struct sockaddr_in *mdsin, char *path, u_char *fhp,
259 1.3 pgoyette int *fhsizep, struct nfs_args *args, struct lwp *td);
260 1.3 pgoyette static int setmyfs(struct sockaddr_in *addr, char *path, char *p,
261 1.1 dholland const struct in_addr *siaddr);
262 1.1 dholland static int getdec(char **ptr);
263 1.1 dholland static int getip(char **ptr, struct in_addr *ip);
264 1.1 dholland static void mountopts(struct nfs_args *args, char *p);
265 1.1 dholland static int xdr_opaque_decode(struct mbuf **ptr, u_char *buf, int len);
266 1.1 dholland static int xdr_int_decode(struct mbuf **ptr, int *iptr);
267 1.1 dholland static void print_in_addr(struct in_addr addr);
268 1.1 dholland static void print_sin_addr(struct sockaddr_in *addr);
269 1.1 dholland static void clear_sinaddr(struct sockaddr_in *sin);
270 1.1 dholland static void allocifctx(struct bootpc_globalcontext *gctx);
271 1.1 dholland static void bootpc_compose_query(struct bootpc_ifcontext *ifctx,
272 1.3 pgoyette struct lwp *td);
273 1.1 dholland static unsigned char *bootpc_tag(struct bootpc_tagcontext *tctx,
274 1.1 dholland struct bootp_packet *bp, int len, int tag);
275 1.1 dholland static void bootpc_tag_helper(struct bootpc_tagcontext *tctx,
276 1.1 dholland unsigned char *start, int len, int tag);
277 1.1 dholland
278 1.1 dholland #ifdef BOOTP_DEBUG
279 1.1 dholland void bootpboot_p_sa(struct sockaddr *sa, struct sockaddr *ma);
280 1.1 dholland void bootpboot_p_rtentry(struct rtentry *rt);
281 1.1 dholland void bootpboot_p_tree(struct radix_node *rn);
282 1.1 dholland void bootpboot_p_rtlist(void);
283 1.1 dholland void bootpboot_p_if(struct ifnet *ifp, struct ifaddr *ifa);
284 1.1 dholland void bootpboot_p_iflist(void);
285 1.1 dholland #endif
286 1.1 dholland
287 1.1 dholland static int bootpc_call(struct bootpc_globalcontext *gctx,
288 1.3 pgoyette struct lwp *td);
289 1.1 dholland
290 1.1 dholland static void bootpc_fakeup_interface(struct bootpc_ifcontext *ifctx,
291 1.3 pgoyette struct lwp *td);
292 1.1 dholland
293 1.2 pgoyette static void bootpc_adjust_interface(struct bootpc_ifcontext *ifctx,
294 1.3 pgoyette struct bootpc_globalcontext *gctx, struct lwp *td);
295 1.1 dholland
296 1.1 dholland static void bootpc_decode_reply(struct nfsv3_diskless *nd,
297 1.1 dholland struct bootpc_ifcontext *ifctx,
298 1.1 dholland struct bootpc_globalcontext *gctx);
299 1.1 dholland
300 1.1 dholland static int bootpc_received(struct bootpc_globalcontext *gctx,
301 1.1 dholland struct bootpc_ifcontext *ifctx);
302 1.1 dholland
303 1.1 dholland static __inline int bootpc_ifctx_isresolved(struct bootpc_ifcontext *ifctx);
304 1.1 dholland static __inline int bootpc_ifctx_isunresolved(struct bootpc_ifcontext *ifctx);
305 1.1 dholland static __inline int bootpc_ifctx_isfailed(struct bootpc_ifcontext *ifctx);
306 1.1 dholland
307 1.1 dholland /*
308 1.1 dholland * In order to have multiple active interfaces with address 0.0.0.0
309 1.1 dholland * and be able to send data to a selected interface, we first set
310 1.1 dholland * mask to /8 on all interfaces, and temporarily set it to /0 when
311 1.1 dholland * doing sosend().
312 1.1 dholland */
313 1.1 dholland
314 1.1 dholland #ifdef BOOTP_DEBUG
315 1.1 dholland void
316 1.1 dholland bootpboot_p_sa(struct sockaddr *sa, struct sockaddr *ma)
317 1.1 dholland {
318 1.1 dholland
319 1.1 dholland if (sa == NULL) {
320 1.1 dholland printf("(sockaddr *) <null>");
321 1.1 dholland return;
322 1.1 dholland }
323 1.1 dholland switch (sa->sa_family) {
324 1.1 dholland case AF_INET:
325 1.1 dholland {
326 1.1 dholland struct sockaddr_in *sin;
327 1.1 dholland
328 1.1 dholland sin = (struct sockaddr_in *) sa;
329 1.1 dholland printf("inet ");
330 1.1 dholland print_sin_addr(sin);
331 1.1 dholland if (ma != NULL) {
332 1.1 dholland sin = (struct sockaddr_in *) ma;
333 1.1 dholland printf(" mask ");
334 1.1 dholland print_sin_addr(sin);
335 1.1 dholland }
336 1.1 dholland }
337 1.1 dholland break;
338 1.1 dholland case AF_LINK:
339 1.1 dholland {
340 1.1 dholland struct sockaddr_dl *sli;
341 1.1 dholland int i;
342 1.1 dholland
343 1.1 dholland sli = (struct sockaddr_dl *) sa;
344 1.1 dholland printf("link %.*s ", sli->sdl_nlen, sli->sdl_data);
345 1.1 dholland for (i = 0; i < sli->sdl_alen; i++) {
346 1.1 dholland if (i > 0)
347 1.1 dholland printf(":");
348 1.1 dholland printf("%x", ((unsigned char *) LLADDR(sli))[i]);
349 1.1 dholland }
350 1.1 dholland }
351 1.1 dholland break;
352 1.1 dholland default:
353 1.1 dholland printf("af%d", sa->sa_family);
354 1.1 dholland }
355 1.1 dholland }
356 1.1 dholland
357 1.1 dholland void
358 1.1 dholland bootpboot_p_rtentry(struct rtentry *rt)
359 1.1 dholland {
360 1.1 dholland
361 1.1 dholland bootpboot_p_sa(rt_key(rt), rt_mask(rt));
362 1.1 dholland printf(" ");
363 1.1 dholland bootpboot_p_sa(rt->rt_gateway, NULL);
364 1.1 dholland printf(" ");
365 1.1 dholland printf("flags %x", (unsigned short) rt->rt_flags);
366 1.2 pgoyette printf(" %d", (int) rt->rt_expire);
367 1.1 dholland printf(" %s\n", rt->rt_ifp->if_xname);
368 1.1 dholland }
369 1.1 dholland
370 1.1 dholland void
371 1.1 dholland bootpboot_p_tree(struct radix_node *rn)
372 1.1 dholland {
373 1.1 dholland
374 1.1 dholland while (rn != NULL) {
375 1.1 dholland if (rn->rn_bit < 0) {
376 1.1 dholland if ((rn->rn_flags & RNF_ROOT) != 0) {
377 1.1 dholland } else {
378 1.1 dholland bootpboot_p_rtentry((struct rtentry *) rn);
379 1.1 dholland }
380 1.1 dholland rn = rn->rn_dupedkey;
381 1.1 dholland } else {
382 1.1 dholland bootpboot_p_tree(rn->rn_left);
383 1.1 dholland bootpboot_p_tree(rn->rn_right);
384 1.1 dholland return;
385 1.1 dholland }
386 1.1 dholland }
387 1.1 dholland }
388 1.1 dholland
389 1.1 dholland void
390 1.1 dholland bootpboot_p_rtlist(void)
391 1.1 dholland {
392 1.2 pgoyette struct rib_head *rnh;
393 1.1 dholland
394 1.1 dholland printf("Routing table:\n");
395 1.1 dholland rnh = rt_tables_get_rnh(0, AF_INET);
396 1.1 dholland if (rnh == NULL)
397 1.1 dholland return;
398 1.2 pgoyette RIB_RLOCK(rnh); /* could sleep XXX */
399 1.1 dholland bootpboot_p_tree(rnh->rnh_treetop);
400 1.2 pgoyette RIB_RUNLOCK(rnh);
401 1.1 dholland }
402 1.1 dholland
403 1.1 dholland void
404 1.1 dholland bootpboot_p_if(struct ifnet *ifp, struct ifaddr *ifa)
405 1.1 dholland {
406 1.1 dholland
407 1.1 dholland printf("%s flags %x, addr ",
408 1.1 dholland ifp->if_xname, ifp->if_flags);
409 1.1 dholland print_sin_addr((struct sockaddr_in *) ifa->ifa_addr);
410 1.1 dholland printf(", broadcast ");
411 1.1 dholland print_sin_addr((struct sockaddr_in *) ifa->ifa_dstaddr);
412 1.1 dholland printf(", netmask ");
413 1.1 dholland print_sin_addr((struct sockaddr_in *) ifa->ifa_netmask);
414 1.1 dholland printf("\n");
415 1.1 dholland }
416 1.1 dholland
417 1.1 dholland void
418 1.1 dholland bootpboot_p_iflist(void)
419 1.1 dholland {
420 1.1 dholland struct ifnet *ifp;
421 1.1 dholland struct ifaddr *ifa;
422 1.1 dholland
423 1.1 dholland printf("Interface list:\n");
424 1.1 dholland IFNET_RLOCK();
425 1.1 dholland for (ifp = TAILQ_FIRST(&V_ifnet);
426 1.1 dholland ifp != NULL;
427 1.1 dholland ifp = TAILQ_NEXT(ifp, if_link)) {
428 1.1 dholland for (ifa = TAILQ_FIRST(&ifp->if_addrhead);
429 1.1 dholland ifa != NULL;
430 1.1 dholland ifa = TAILQ_NEXT(ifa, ifa_link))
431 1.1 dholland if (ifa->ifa_addr->sa_family == AF_INET)
432 1.1 dholland bootpboot_p_if(ifp, ifa);
433 1.1 dholland }
434 1.1 dholland IFNET_RUNLOCK();
435 1.1 dholland }
436 1.1 dholland #endif /* defined(BOOTP_DEBUG) */
437 1.1 dholland
438 1.1 dholland static void
439 1.1 dholland clear_sinaddr(struct sockaddr_in *sin)
440 1.1 dholland {
441 1.1 dholland
442 1.1 dholland bzero(sin, sizeof(*sin));
443 1.1 dholland sin->sin_len = sizeof(*sin);
444 1.1 dholland sin->sin_family = AF_INET;
445 1.1 dholland sin->sin_addr.s_addr = INADDR_ANY; /* XXX: htonl(INAADDR_ANY) ? */
446 1.1 dholland sin->sin_port = 0;
447 1.1 dholland }
448 1.1 dholland
449 1.1 dholland static void
450 1.1 dholland allocifctx(struct bootpc_globalcontext *gctx)
451 1.1 dholland {
452 1.1 dholland struct bootpc_ifcontext *ifctx;
453 1.1 dholland
454 1.1 dholland ifctx = malloc(sizeof(*ifctx), M_TEMP, M_WAITOK | M_ZERO);
455 1.1 dholland ifctx->xid = gctx->xid;
456 1.1 dholland #ifdef BOOTP_NO_DHCP
457 1.1 dholland ifctx->state = IF_BOOTP_UNRESOLVED;
458 1.1 dholland #else
459 1.1 dholland ifctx->state = IF_DHCP_UNRESOLVED;
460 1.1 dholland #endif
461 1.1 dholland gctx->xid += 0x100;
462 1.1 dholland STAILQ_INSERT_TAIL(&gctx->interfaces, ifctx, next);
463 1.1 dholland }
464 1.1 dholland
465 1.1 dholland static __inline int
466 1.1 dholland bootpc_ifctx_isresolved(struct bootpc_ifcontext *ifctx)
467 1.1 dholland {
468 1.1 dholland
469 1.1 dholland if (ifctx->state == IF_BOOTP_RESOLVED ||
470 1.1 dholland ifctx->state == IF_DHCP_RESOLVED)
471 1.1 dholland return 1;
472 1.1 dholland return 0;
473 1.1 dholland }
474 1.1 dholland
475 1.1 dholland static __inline int
476 1.1 dholland bootpc_ifctx_isunresolved(struct bootpc_ifcontext *ifctx)
477 1.1 dholland {
478 1.1 dholland
479 1.1 dholland if (ifctx->state == IF_BOOTP_UNRESOLVED ||
480 1.1 dholland ifctx->state == IF_DHCP_UNRESOLVED)
481 1.1 dholland return 1;
482 1.1 dholland return 0;
483 1.1 dholland }
484 1.1 dholland
485 1.1 dholland static __inline int
486 1.1 dholland bootpc_ifctx_isfailed(struct bootpc_ifcontext *ifctx)
487 1.1 dholland {
488 1.1 dholland
489 1.1 dholland if (ifctx->state == IF_BOOTP_FAILED ||
490 1.1 dholland ifctx->state == IF_DHCP_FAILED)
491 1.1 dholland return 1;
492 1.1 dholland return 0;
493 1.1 dholland }
494 1.1 dholland
495 1.1 dholland static int
496 1.1 dholland bootpc_received(struct bootpc_globalcontext *gctx,
497 1.1 dholland struct bootpc_ifcontext *ifctx)
498 1.1 dholland {
499 1.1 dholland unsigned char dhcpreplytype;
500 1.1 dholland char *p;
501 1.1 dholland
502 1.1 dholland /*
503 1.1 dholland * Need timeout for fallback to less
504 1.1 dholland * desirable alternative.
505 1.1 dholland */
506 1.1 dholland
507 1.1 dholland /* This call used for the side effect (badopt flag) */
508 1.1 dholland (void) bootpc_tag(&gctx->tmptag, &gctx->reply,
509 1.1 dholland gctx->replylen,
510 1.1 dholland TAG_END);
511 1.1 dholland
512 1.1 dholland /* If packet is invalid, ignore it */
513 1.1 dholland if (gctx->tmptag.badopt != 0)
514 1.1 dholland return 0;
515 1.1 dholland
516 1.1 dholland p = bootpc_tag(&gctx->tmptag, &gctx->reply,
517 1.1 dholland gctx->replylen, TAG_DHCP_MSGTYPE);
518 1.1 dholland if (p != NULL)
519 1.1 dholland dhcpreplytype = *p;
520 1.1 dholland else
521 1.1 dholland dhcpreplytype = DHCP_NOMSG;
522 1.1 dholland
523 1.1 dholland switch (ifctx->dhcpquerytype) {
524 1.1 dholland case DHCP_DISCOVER:
525 1.1 dholland if (dhcpreplytype != DHCP_OFFER /* Normal DHCP offer */
526 1.1 dholland #ifndef BOOTP_FORCE_DHCP
527 1.1 dholland && dhcpreplytype != DHCP_NOMSG /* Fallback to BOOTP */
528 1.1 dholland #endif
529 1.1 dholland )
530 1.1 dholland return 0;
531 1.1 dholland break;
532 1.1 dholland case DHCP_REQUEST:
533 1.1 dholland if (dhcpreplytype != DHCP_ACK)
534 1.1 dholland return 0;
535 1.1 dholland case DHCP_NOMSG:
536 1.1 dholland break;
537 1.1 dholland }
538 1.1 dholland
539 1.1 dholland /* Ignore packet unless it gives us a root tag we didn't have */
540 1.1 dholland
541 1.1 dholland if ((ifctx->state == IF_BOOTP_RESOLVED ||
542 1.1 dholland (ifctx->dhcpquerytype == DHCP_DISCOVER &&
543 1.1 dholland (ifctx->state == IF_DHCP_OFFERED ||
544 1.1 dholland ifctx->state == IF_DHCP_RESOLVED))) &&
545 1.1 dholland (bootpc_tag(&gctx->tmptag, &ifctx->reply,
546 1.1 dholland ifctx->replylen,
547 1.1 dholland TAG_ROOT) != NULL ||
548 1.1 dholland bootpc_tag(&gctx->tmptag, &gctx->reply,
549 1.1 dholland gctx->replylen,
550 1.1 dholland TAG_ROOT) == NULL))
551 1.1 dholland return 0;
552 1.1 dholland
553 1.1 dholland bcopy(&gctx->reply, &ifctx->reply, gctx->replylen);
554 1.1 dholland ifctx->replylen = gctx->replylen;
555 1.1 dholland
556 1.1 dholland /* XXX: Only reset if 'perfect' response */
557 1.1 dholland if (ifctx->state == IF_BOOTP_UNRESOLVED)
558 1.1 dholland ifctx->state = IF_BOOTP_RESOLVED;
559 1.1 dholland else if (ifctx->state == IF_DHCP_UNRESOLVED &&
560 1.1 dholland ifctx->dhcpquerytype == DHCP_DISCOVER) {
561 1.1 dholland if (dhcpreplytype == DHCP_OFFER)
562 1.1 dholland ifctx->state = IF_DHCP_OFFERED;
563 1.1 dholland else
564 1.1 dholland ifctx->state = IF_BOOTP_RESOLVED; /* Fallback */
565 1.1 dholland } else if (ifctx->state == IF_DHCP_OFFERED &&
566 1.1 dholland ifctx->dhcpquerytype == DHCP_REQUEST)
567 1.1 dholland ifctx->state = IF_DHCP_RESOLVED;
568 1.1 dholland
569 1.1 dholland
570 1.1 dholland if (ifctx->dhcpquerytype == DHCP_DISCOVER &&
571 1.1 dholland ifctx->state != IF_BOOTP_RESOLVED) {
572 1.1 dholland p = bootpc_tag(&gctx->tmptag, &ifctx->reply,
573 1.1 dholland ifctx->replylen, TAG_DHCP_SERVERID);
574 1.1 dholland if (p != NULL && gctx->tmptag.taglen == 4) {
575 1.1 dholland memcpy(&ifctx->dhcpserver, p, 4);
576 1.1 dholland ifctx->gotdhcpserver = 1;
577 1.1 dholland } else
578 1.1 dholland ifctx->gotdhcpserver = 0;
579 1.1 dholland return 1;
580 1.1 dholland }
581 1.1 dholland
582 1.1 dholland ifctx->gotrootpath = (bootpc_tag(&gctx->tmptag, &ifctx->reply,
583 1.1 dholland ifctx->replylen,
584 1.1 dholland TAG_ROOT) != NULL);
585 1.1 dholland ifctx->gotgw = (bootpc_tag(&gctx->tmptag, &ifctx->reply,
586 1.1 dholland ifctx->replylen,
587 1.1 dholland TAG_ROUTERS) != NULL);
588 1.1 dholland ifctx->gotnetmask = (bootpc_tag(&gctx->tmptag, &ifctx->reply,
589 1.1 dholland ifctx->replylen,
590 1.1 dholland TAG_SUBNETMASK) != NULL);
591 1.1 dholland return 1;
592 1.1 dholland }
593 1.1 dholland
594 1.1 dholland static int
595 1.3 pgoyette bootpc_call(struct bootpc_globalcontext *gctx, struct lwp *td)
596 1.1 dholland {
597 1.1 dholland struct sockaddr_in *sin, dst;
598 1.1 dholland struct uio auio;
599 1.1 dholland struct sockopt sopt;
600 1.1 dholland struct iovec aio;
601 1.1 dholland int error, on, rcvflg, timo, len;
602 1.1 dholland time_t atimo;
603 1.1 dholland time_t rtimo;
604 1.1 dholland struct timeval tv;
605 1.1 dholland struct bootpc_ifcontext *ifctx;
606 1.1 dholland int outstanding;
607 1.1 dholland int gotrootpath;
608 1.1 dholland int retry;
609 1.1 dholland const char *s;
610 1.1 dholland
611 1.1 dholland tv.tv_sec = 1;
612 1.1 dholland tv.tv_usec = 0;
613 1.3 pgoyette sockopt_init(&sopt, SOL_SOCKET, SO_RCVTIMEO, sizeof(tv));
614 1.3 pgoyette error = sockopt_set(&sopt, &tv, sizeof(tv));
615 1.3 pgoyette sockopt_destroy(&sopt);
616 1.1 dholland
617 1.1 dholland if (error != 0)
618 1.1 dholland goto out;
619 1.1 dholland
620 1.1 dholland /*
621 1.1 dholland * Enable broadcast.
622 1.1 dholland */
623 1.1 dholland on = 1;
624 1.3 pgoyette sockopt_init(&sopt, SOL_SOCKET, SO_BROADCAST, sizeof(on));
625 1.3 pgoyette error = sockopt_set(&sopt, &on, sizeof(on));
626 1.3 pgoyette sockopt_destroy(&sopt);
627 1.1 dholland
628 1.1 dholland if (error != 0)
629 1.1 dholland goto out;
630 1.1 dholland
631 1.1 dholland /*
632 1.1 dholland * Disable routing.
633 1.1 dholland */
634 1.1 dholland
635 1.1 dholland on = 1;
636 1.3 pgoyette sockopt_init(&sopt, SOL_SOCKET, SO_DONTROUTE, sizeof(on));
637 1.3 pgoyette error = sockopt_set(&sopt, &on, sizeof(on));
638 1.3 pgoyette sockopt_destroy(&sopt);
639 1.1 dholland
640 1.1 dholland if (error != 0)
641 1.1 dholland goto out;
642 1.1 dholland
643 1.1 dholland /*
644 1.1 dholland * Bind the local endpoint to a bootp client port.
645 1.1 dholland */
646 1.1 dholland sin = &dst;
647 1.1 dholland clear_sinaddr(sin);
648 1.1 dholland sin->sin_port = htons(IPPORT_BOOTPC);
649 1.1 dholland error = sobind(bootp_so, (struct sockaddr *)sin, td);
650 1.1 dholland if (error != 0) {
651 1.1 dholland printf("bind failed\n");
652 1.1 dholland goto out;
653 1.1 dholland }
654 1.1 dholland
655 1.1 dholland /*
656 1.1 dholland * Setup socket address for the server.
657 1.1 dholland */
658 1.1 dholland sin = &dst;
659 1.1 dholland clear_sinaddr(sin);
660 1.1 dholland sin->sin_addr.s_addr = INADDR_BROADCAST;
661 1.1 dholland sin->sin_port = htons(IPPORT_BOOTPS);
662 1.1 dholland
663 1.1 dholland /*
664 1.1 dholland * Send it, repeatedly, until a reply is received,
665 1.1 dholland * but delay each re-send by an increasing amount.
666 1.1 dholland * If the delay hits the maximum, start complaining.
667 1.1 dholland */
668 1.1 dholland timo = 0;
669 1.1 dholland rtimo = 0;
670 1.1 dholland for (;;) {
671 1.1 dholland
672 1.1 dholland outstanding = 0;
673 1.1 dholland gotrootpath = 0;
674 1.1 dholland
675 1.1 dholland STAILQ_FOREACH(ifctx, &gctx->interfaces, next) {
676 1.1 dholland if (bootpc_ifctx_isresolved(ifctx) != 0 &&
677 1.1 dholland bootpc_tag(&gctx->tmptag, &ifctx->reply,
678 1.1 dholland ifctx->replylen,
679 1.1 dholland TAG_ROOT) != NULL)
680 1.1 dholland gotrootpath = 1;
681 1.1 dholland }
682 1.1 dholland
683 1.1 dholland STAILQ_FOREACH(ifctx, &gctx->interfaces, next) {
684 1.1 dholland struct in_aliasreq *ifra = &ifctx->iareq;
685 1.1 dholland sin = (struct sockaddr_in *)&ifra->ifra_mask;
686 1.1 dholland
687 1.1 dholland ifctx->outstanding = 0;
688 1.1 dholland if (bootpc_ifctx_isresolved(ifctx) != 0 &&
689 1.1 dholland gotrootpath != 0) {
690 1.1 dholland continue;
691 1.1 dholland }
692 1.1 dholland if (bootpc_ifctx_isfailed(ifctx) != 0)
693 1.1 dholland continue;
694 1.1 dholland
695 1.1 dholland outstanding++;
696 1.1 dholland ifctx->outstanding = 1;
697 1.1 dholland
698 1.1 dholland /* Proceed to next step in DHCP negotiation */
699 1.1 dholland if ((ifctx->state == IF_DHCP_OFFERED &&
700 1.1 dholland ifctx->dhcpquerytype != DHCP_REQUEST) ||
701 1.1 dholland (ifctx->state == IF_DHCP_UNRESOLVED &&
702 1.1 dholland ifctx->dhcpquerytype != DHCP_DISCOVER) ||
703 1.1 dholland (ifctx->state == IF_BOOTP_UNRESOLVED &&
704 1.1 dholland ifctx->dhcpquerytype != DHCP_NOMSG)) {
705 1.1 dholland ifctx->sentmsg = 0;
706 1.1 dholland bootpc_compose_query(ifctx, td);
707 1.1 dholland }
708 1.1 dholland
709 1.1 dholland /* Send BOOTP request (or re-send). */
710 1.1 dholland
711 1.1 dholland if (ifctx->sentmsg == 0) {
712 1.1 dholland switch(ifctx->dhcpquerytype) {
713 1.1 dholland case DHCP_DISCOVER:
714 1.1 dholland s = "DHCP Discover";
715 1.1 dholland break;
716 1.1 dholland case DHCP_REQUEST:
717 1.1 dholland s = "DHCP Request";
718 1.1 dholland break;
719 1.1 dholland case DHCP_NOMSG:
720 1.1 dholland default:
721 1.1 dholland s = "BOOTP Query";
722 1.1 dholland break;
723 1.1 dholland }
724 1.1 dholland printf("Sending %s packet from "
725 1.3 pgoyette "interface %s (%*ld):\n",
726 1.1 dholland s,
727 1.1 dholland ifctx->ireq.ifr_name,
728 1.1 dholland ifctx->sdl->sdl_alen,
729 1.3 pgoyette (unsigned char *) LLADDR(ifctx->sdl) );
730 1.1 dholland ifctx->sentmsg = 1;
731 1.1 dholland }
732 1.1 dholland
733 1.3 pgoyette aio.iov_base = (void *) &ifctx->call;
734 1.1 dholland aio.iov_len = sizeof(ifctx->call);
735 1.1 dholland
736 1.1 dholland auio.uio_iov = &aio;
737 1.1 dholland auio.uio_iovcnt = 1;
738 1.1 dholland auio.uio_segflg = UIO_SYSSPACE;
739 1.1 dholland auio.uio_rw = UIO_WRITE;
740 1.1 dholland auio.uio_offset = 0;
741 1.1 dholland auio.uio_resid = sizeof(ifctx->call);
742 1.1 dholland auio.uio_td = td;
743 1.1 dholland
744 1.1 dholland /* Set netmask to 0.0.0.0 */
745 1.1 dholland clear_sinaddr(sin);
746 1.3 pgoyette error = ifioctl(bootp_so, SIOCAIFADDR, (void *)ifra,
747 1.1 dholland td);
748 1.1 dholland if (error != 0)
749 1.1 dholland panic("%s: SIOCAIFADDR, error=%d", __func__,
750 1.1 dholland error);
751 1.1 dholland
752 1.1 dholland error = sosend(bootp_so, (struct sockaddr *) &dst,
753 1.1 dholland &auio, NULL, NULL, 0, td);
754 1.1 dholland if (error != 0)
755 1.1 dholland printf("%s: sosend: %d state %08x\n", __func__,
756 1.1 dholland error, (int )bootp_so->so_state);
757 1.1 dholland
758 1.1 dholland /* Set netmask to 255.0.0.0 */
759 1.1 dholland sin->sin_addr.s_addr = htonl(IN_CLASSA_NET);
760 1.3 pgoyette error = ifioctl(bootp_so, SIOCAIFADDR, (void *)ifra,
761 1.1 dholland td);
762 1.1 dholland if (error != 0)
763 1.1 dholland panic("%s: SIOCAIFADDR, error=%d", __func__,
764 1.1 dholland error);
765 1.1 dholland }
766 1.1 dholland
767 1.1 dholland if (outstanding == 0 &&
768 1.1 dholland (rtimo == 0 || time_second >= rtimo)) {
769 1.1 dholland error = 0;
770 1.1 dholland goto out;
771 1.1 dholland }
772 1.1 dholland
773 1.1 dholland /* Determine new timeout. */
774 1.1 dholland if (timo < MAX_RESEND_DELAY)
775 1.1 dholland timo++;
776 1.1 dholland else {
777 1.1 dholland printf("DHCP/BOOTP timeout for server ");
778 1.1 dholland print_sin_addr(&dst);
779 1.1 dholland printf("\n");
780 1.1 dholland }
781 1.1 dholland
782 1.1 dholland /*
783 1.1 dholland * Wait for up to timo seconds for a reply.
784 1.1 dholland * The socket receive timeout was set to 1 second.
785 1.1 dholland */
786 1.1 dholland atimo = timo + time_second;
787 1.1 dholland while (time_second < atimo) {
788 1.3 pgoyette aio.iov_base = (void *) &gctx->reply;
789 1.1 dholland aio.iov_len = sizeof(gctx->reply);
790 1.1 dholland
791 1.1 dholland auio.uio_iov = &aio;
792 1.1 dholland auio.uio_iovcnt = 1;
793 1.1 dholland auio.uio_segflg = UIO_SYSSPACE;
794 1.1 dholland auio.uio_rw = UIO_READ;
795 1.1 dholland auio.uio_offset = 0;
796 1.1 dholland auio.uio_resid = sizeof(gctx->reply);
797 1.1 dholland auio.uio_td = td;
798 1.1 dholland
799 1.1 dholland rcvflg = 0;
800 1.1 dholland error = soreceive(bootp_so, NULL, &auio,
801 1.1 dholland NULL, NULL, &rcvflg);
802 1.1 dholland gctx->secs = time_second - gctx->starttime;
803 1.1 dholland STAILQ_FOREACH(ifctx, &gctx->interfaces, next) {
804 1.1 dholland if (bootpc_ifctx_isresolved(ifctx) != 0 ||
805 1.1 dholland bootpc_ifctx_isfailed(ifctx) != 0)
806 1.1 dholland continue;
807 1.1 dholland
808 1.1 dholland ifctx->call.secs = htons(gctx->secs);
809 1.1 dholland }
810 1.1 dholland if (error == EWOULDBLOCK)
811 1.1 dholland continue;
812 1.1 dholland if (error != 0)
813 1.1 dholland goto out;
814 1.1 dholland len = sizeof(gctx->reply) - auio.uio_resid;
815 1.1 dholland
816 1.1 dholland /* Do we have the required number of bytes ? */
817 1.1 dholland if (len < BOOTP_MIN_LEN)
818 1.1 dholland continue;
819 1.1 dholland gctx->replylen = len;
820 1.1 dholland
821 1.1 dholland /* Is it a reply? */
822 1.1 dholland if (gctx->reply.op != BOOTP_REPLY)
823 1.1 dholland continue;
824 1.1 dholland
825 1.1 dholland /* Is this an answer to our query */
826 1.1 dholland STAILQ_FOREACH(ifctx, &gctx->interfaces, next) {
827 1.1 dholland if (gctx->reply.xid != ifctx->call.xid)
828 1.1 dholland continue;
829 1.1 dholland
830 1.1 dholland /* Same HW address size ? */
831 1.1 dholland if (gctx->reply.hlen != ifctx->call.hlen)
832 1.1 dholland continue;
833 1.1 dholland
834 1.1 dholland /* Correct HW address ? */
835 1.1 dholland if (bcmp(gctx->reply.chaddr,
836 1.1 dholland ifctx->call.chaddr,
837 1.1 dholland ifctx->call.hlen) != 0)
838 1.1 dholland continue;
839 1.1 dholland
840 1.1 dholland break;
841 1.1 dholland }
842 1.1 dholland
843 1.1 dholland if (ifctx != NULL) {
844 1.1 dholland s = bootpc_tag(&gctx->tmptag,
845 1.1 dholland &gctx->reply,
846 1.1 dholland gctx->replylen,
847 1.1 dholland TAG_DHCP_MSGTYPE);
848 1.1 dholland if (s != NULL) {
849 1.1 dholland switch (*s) {
850 1.1 dholland case DHCP_OFFER:
851 1.1 dholland s = "DHCP Offer";
852 1.1 dholland break;
853 1.1 dholland case DHCP_ACK:
854 1.1 dholland s = "DHCP Ack";
855 1.1 dholland break;
856 1.1 dholland default:
857 1.1 dholland s = "DHCP (unexpected)";
858 1.1 dholland break;
859 1.1 dholland }
860 1.1 dholland } else
861 1.1 dholland s = "BOOTP Reply";
862 1.1 dholland
863 1.1 dholland printf("Received %s packet"
864 1.1 dholland " on %s from ",
865 1.1 dholland s,
866 1.1 dholland ifctx->ireq.ifr_name);
867 1.1 dholland print_in_addr(gctx->reply.siaddr);
868 1.1 dholland if (gctx->reply.giaddr.s_addr !=
869 1.1 dholland htonl(INADDR_ANY)) {
870 1.1 dholland printf(" via ");
871 1.1 dholland print_in_addr(gctx->reply.giaddr);
872 1.1 dholland }
873 1.1 dholland if (bootpc_received(gctx, ifctx) != 0) {
874 1.1 dholland printf(" (accepted)");
875 1.1 dholland if (ifctx->outstanding) {
876 1.1 dholland ifctx->outstanding = 0;
877 1.1 dholland outstanding--;
878 1.1 dholland }
879 1.1 dholland /* Network settle delay */
880 1.1 dholland if (outstanding == 0)
881 1.1 dholland atimo = time_second +
882 1.1 dholland BOOTP_SETTLE_DELAY;
883 1.1 dholland } else
884 1.1 dholland printf(" (ignored)");
885 1.1 dholland if (ifctx->gotrootpath ||
886 1.1 dholland gctx->any_root_overrides) {
887 1.1 dholland gotrootpath = 1;
888 1.1 dholland rtimo = time_second +
889 1.1 dholland BOOTP_SETTLE_DELAY;
890 1.1 dholland if (ifctx->gotrootpath)
891 1.1 dholland printf(" (got root path)");
892 1.1 dholland }
893 1.1 dholland printf("\n");
894 1.1 dholland }
895 1.1 dholland } /* while secs */
896 1.1 dholland #ifdef BOOTP_TIMEOUT
897 1.1 dholland if (gctx->secs > BOOTP_TIMEOUT && BOOTP_TIMEOUT > 0)
898 1.1 dholland break;
899 1.1 dholland #endif
900 1.1 dholland /* Force a retry if halfway in DHCP negotiation */
901 1.1 dholland retry = 0;
902 1.1 dholland STAILQ_FOREACH(ifctx, &gctx->interfaces, next)
903 1.1 dholland if (ifctx->state == IF_DHCP_OFFERED) {
904 1.1 dholland if (ifctx->dhcpquerytype == DHCP_DISCOVER)
905 1.1 dholland retry = 1;
906 1.1 dholland else
907 1.1 dholland ifctx->state = IF_DHCP_UNRESOLVED;
908 1.1 dholland }
909 1.1 dholland
910 1.1 dholland if (retry != 0)
911 1.1 dholland continue;
912 1.1 dholland
913 1.1 dholland if (gotrootpath != 0) {
914 1.1 dholland gctx->gotrootpath = gotrootpath;
915 1.1 dholland if (rtimo != 0 && time_second >= rtimo)
916 1.1 dholland break;
917 1.1 dholland }
918 1.1 dholland } /* forever send/receive */
919 1.1 dholland
920 1.1 dholland /*
921 1.1 dholland * XXX: These are errors of varying seriousness being silently
922 1.1 dholland * ignored
923 1.1 dholland */
924 1.1 dholland
925 1.1 dholland STAILQ_FOREACH(ifctx, &gctx->interfaces, next)
926 1.1 dholland if (bootpc_ifctx_isresolved(ifctx) == 0) {
927 1.1 dholland printf("%s timeout for interface %s\n",
928 1.1 dholland ifctx->dhcpquerytype != DHCP_NOMSG ?
929 1.1 dholland "DHCP" : "BOOTP",
930 1.1 dholland ifctx->ireq.ifr_name);
931 1.1 dholland }
932 1.1 dholland
933 1.1 dholland if (gctx->gotrootpath != 0) {
934 1.1 dholland #if 0
935 1.1 dholland printf("Got a root path, ignoring remaining timeout\n");
936 1.1 dholland #endif
937 1.1 dholland error = 0;
938 1.1 dholland goto out;
939 1.1 dholland }
940 1.1 dholland #ifndef BOOTP_NFSROOT
941 1.1 dholland STAILQ_FOREACH(ifctx, &gctx->interfaces, next)
942 1.1 dholland if (bootpc_ifctx_isresolved(ifctx) != 0) {
943 1.1 dholland error = 0;
944 1.1 dholland goto out;
945 1.1 dholland }
946 1.1 dholland #endif
947 1.1 dholland error = ETIMEDOUT;
948 1.1 dholland
949 1.1 dholland out:
950 1.1 dholland return (error);
951 1.1 dholland }
952 1.1 dholland
953 1.1 dholland static void
954 1.3 pgoyette bootpc_fakeup_interface(struct bootpc_ifcontext *ifctx, struct lwp *td)
955 1.1 dholland {
956 1.1 dholland struct ifreq *ifr;
957 1.1 dholland struct in_aliasreq *ifra;
958 1.1 dholland struct sockaddr_in *sin;
959 1.1 dholland int error;
960 1.1 dholland
961 1.1 dholland ifr = &ifctx->ireq;
962 1.1 dholland ifra = &ifctx->iareq;
963 1.1 dholland
964 1.1 dholland /*
965 1.1 dholland * Bring up the interface.
966 1.1 dholland *
967 1.1 dholland * Get the old interface flags and or IFF_UP into them; if
968 1.1 dholland * IFF_UP set blindly, interface selection can be clobbered.
969 1.1 dholland */
970 1.3 pgoyette error = ifioctl(bootp_so, SIOCGIFFLAGS, (void *)ifr, td);
971 1.1 dholland if (error != 0)
972 1.1 dholland panic("%s: SIOCGIFFLAGS, error=%d", __func__, error);
973 1.1 dholland ifr->ifr_flags |= IFF_UP;
974 1.3 pgoyette error = ifioctl(bootp_so, SIOCSIFFLAGS, (void *)ifr, td);
975 1.1 dholland if (error != 0)
976 1.1 dholland panic("%s: SIOCSIFFLAGS, error=%d", __func__, error);
977 1.1 dholland
978 1.1 dholland /*
979 1.1 dholland * Do enough of ifconfig(8) so that the chosen interface
980 1.1 dholland * can talk to the servers. Set address to 0.0.0.0/8 and
981 1.1 dholland * broadcast address to local broadcast.
982 1.1 dholland */
983 1.1 dholland sin = (struct sockaddr_in *)&ifra->ifra_addr;
984 1.1 dholland clear_sinaddr(sin);
985 1.1 dholland sin = (struct sockaddr_in *)&ifra->ifra_mask;
986 1.1 dholland clear_sinaddr(sin);
987 1.1 dholland sin->sin_addr.s_addr = htonl(IN_CLASSA_NET);
988 1.1 dholland sin = (struct sockaddr_in *)&ifra->ifra_broadaddr;
989 1.1 dholland clear_sinaddr(sin);
990 1.1 dholland sin->sin_addr.s_addr = htonl(INADDR_BROADCAST);
991 1.3 pgoyette error = ifioctl(bootp_so, SIOCAIFADDR, (void *)ifra, td);
992 1.1 dholland if (error != 0)
993 1.1 dholland panic("%s: SIOCAIFADDR, error=%d", __func__, error);
994 1.1 dholland }
995 1.1 dholland
996 1.1 dholland static void
997 1.3 pgoyette bootpc_shutdown_interface(struct bootpc_ifcontext *ifctx, struct lwp *td)
998 1.1 dholland {
999 1.1 dholland struct ifreq *ifr;
1000 1.1 dholland struct sockaddr_in *sin;
1001 1.1 dholland int error;
1002 1.1 dholland
1003 1.1 dholland ifr = &ifctx->ireq;
1004 1.1 dholland
1005 1.1 dholland printf("Shutdown interface %s\n", ifctx->ireq.ifr_name);
1006 1.3 pgoyette error = ifioctl(bootp_so, SIOCGIFFLAGS, (void *)ifr, td);
1007 1.1 dholland if (error != 0)
1008 1.1 dholland panic("%s: SIOCGIFFLAGS, error=%d", __func__, error);
1009 1.1 dholland ifr->ifr_flags &= ~IFF_UP;
1010 1.3 pgoyette error = ifioctl(bootp_so, SIOCSIFFLAGS, (void *)ifr, td);
1011 1.1 dholland if (error != 0)
1012 1.1 dholland panic("%s: SIOCSIFFLAGS, error=%d", __func__, error);
1013 1.1 dholland
1014 1.1 dholland sin = (struct sockaddr_in *) &ifr->ifr_addr;
1015 1.1 dholland clear_sinaddr(sin);
1016 1.3 pgoyette error = ifioctl(bootp_so, SIOCDIFADDR, (void *) ifr, td);
1017 1.1 dholland if (error != 0)
1018 1.1 dholland panic("%s: SIOCDIFADDR, error=%d", __func__, error);
1019 1.1 dholland }
1020 1.1 dholland
1021 1.2 pgoyette static void
1022 1.1 dholland bootpc_adjust_interface(struct bootpc_ifcontext *ifctx,
1023 1.3 pgoyette struct bootpc_globalcontext *gctx, struct lwp *td)
1024 1.1 dholland {
1025 1.1 dholland int error;
1026 1.1 dholland struct sockaddr_in *sin;
1027 1.1 dholland struct ifreq *ifr;
1028 1.1 dholland struct in_aliasreq *ifra;
1029 1.1 dholland struct sockaddr_in *myaddr;
1030 1.1 dholland struct sockaddr_in *netmask;
1031 1.1 dholland
1032 1.1 dholland ifr = &ifctx->ireq;
1033 1.1 dholland ifra = &ifctx->iareq;
1034 1.1 dholland myaddr = &ifctx->myaddr;
1035 1.1 dholland netmask = &ifctx->netmask;
1036 1.1 dholland
1037 1.1 dholland if (bootpc_ifctx_isresolved(ifctx) == 0) {
1038 1.1 dholland /* Shutdown interfaces where BOOTP failed */
1039 1.1 dholland bootpc_shutdown_interface(ifctx, td);
1040 1.2 pgoyette return;
1041 1.2 pgoyette }
1042 1.2 pgoyette
1043 1.2 pgoyette printf("Adjusted interface %s", ifctx->ireq.ifr_name);
1044 1.2 pgoyette
1045 1.2 pgoyette /* Do BOOTP interface options */
1046 1.2 pgoyette if (ifctx->mtu != 0) {
1047 1.2 pgoyette printf(" (MTU=%d%s)", ifctx->mtu,
1048 1.2 pgoyette (ifctx->mtu > 1514) ? "/JUMBO" : "");
1049 1.2 pgoyette ifr->ifr_mtu = ifctx->mtu;
1050 1.3 pgoyette error = ifioctl(bootp_so, SIOCSIFMTU, (void *) ifr, td);
1051 1.2 pgoyette if (error != 0)
1052 1.2 pgoyette panic("%s: SIOCSIFMTU, error=%d", __func__, error);
1053 1.1 dholland }
1054 1.2 pgoyette printf("\n");
1055 1.1 dholland
1056 1.1 dholland /*
1057 1.1 dholland * Do enough of ifconfig(8) so that the chosen interface
1058 1.1 dholland * can talk to the servers. (just set the address)
1059 1.1 dholland */
1060 1.1 dholland sin = (struct sockaddr_in *) &ifr->ifr_addr;
1061 1.1 dholland clear_sinaddr(sin);
1062 1.3 pgoyette error = ifioctl(bootp_so, SIOCDIFADDR, (void *) ifr, td);
1063 1.1 dholland if (error != 0)
1064 1.1 dholland panic("%s: SIOCDIFADDR, error=%d", __func__, error);
1065 1.1 dholland
1066 1.1 dholland bcopy(myaddr, &ifra->ifra_addr, sizeof(*myaddr));
1067 1.1 dholland bcopy(netmask, &ifra->ifra_mask, sizeof(*netmask));
1068 1.1 dholland clear_sinaddr(&ifra->ifra_broadaddr);
1069 1.1 dholland ifra->ifra_broadaddr.sin_addr.s_addr = myaddr->sin_addr.s_addr |
1070 1.1 dholland ~netmask->sin_addr.s_addr;
1071 1.1 dholland
1072 1.3 pgoyette error = ifioctl(bootp_so, SIOCAIFADDR, (void *)ifra, td);
1073 1.1 dholland if (error != 0)
1074 1.1 dholland panic("%s: SIOCAIFADDR, error=%d", __func__, error);
1075 1.2 pgoyette }
1076 1.2 pgoyette
1077 1.2 pgoyette static void
1078 1.2 pgoyette bootpc_add_default_route(struct bootpc_ifcontext *ifctx)
1079 1.2 pgoyette {
1080 1.2 pgoyette int error;
1081 1.2 pgoyette struct sockaddr_in defdst;
1082 1.2 pgoyette struct sockaddr_in defmask;
1083 1.2 pgoyette
1084 1.2 pgoyette if (ifctx->gw.sin_addr.s_addr == htonl(INADDR_ANY))
1085 1.2 pgoyette return;
1086 1.1 dholland
1087 1.2 pgoyette clear_sinaddr(&defdst);
1088 1.2 pgoyette clear_sinaddr(&defmask);
1089 1.1 dholland
1090 1.2 pgoyette error = rtrequest_fib(RTM_ADD, (struct sockaddr *)&defdst,
1091 1.2 pgoyette (struct sockaddr *) &ifctx->gw, (struct sockaddr *)&defmask,
1092 1.2 pgoyette (RTF_UP | RTF_GATEWAY | RTF_STATIC), NULL, RT_DEFAULT_FIB);
1093 1.2 pgoyette if (error != 0) {
1094 1.2 pgoyette printf("%s: RTM_ADD, error=%d\n", __func__, error);
1095 1.1 dholland }
1096 1.2 pgoyette }
1097 1.2 pgoyette
1098 1.2 pgoyette static void
1099 1.2 pgoyette bootpc_remove_default_route(struct bootpc_ifcontext *ifctx)
1100 1.2 pgoyette {
1101 1.2 pgoyette int error;
1102 1.2 pgoyette struct sockaddr_in defdst;
1103 1.2 pgoyette struct sockaddr_in defmask;
1104 1.2 pgoyette
1105 1.2 pgoyette if (ifctx->gw.sin_addr.s_addr == htonl(INADDR_ANY))
1106 1.2 pgoyette return;
1107 1.2 pgoyette
1108 1.2 pgoyette clear_sinaddr(&defdst);
1109 1.2 pgoyette clear_sinaddr(&defmask);
1110 1.1 dholland
1111 1.2 pgoyette error = rtrequest_fib(RTM_DELETE, (struct sockaddr *)&defdst,
1112 1.2 pgoyette (struct sockaddr *) &ifctx->gw, (struct sockaddr *)&defmask,
1113 1.2 pgoyette (RTF_UP | RTF_GATEWAY | RTF_STATIC), NULL, RT_DEFAULT_FIB);
1114 1.2 pgoyette if (error != 0) {
1115 1.2 pgoyette printf("%s: RTM_DELETE, error=%d\n", __func__, error);
1116 1.2 pgoyette }
1117 1.1 dholland }
1118 1.1 dholland
1119 1.1 dholland static int
1120 1.3 pgoyette setmyfs(struct sockaddr_in *addr, char *path, char *p,
1121 1.1 dholland const struct in_addr *siaddr)
1122 1.1 dholland {
1123 1.1 dholland
1124 1.1 dholland if (getip(&p, &addr->sin_addr) == 0) {
1125 1.1 dholland if (siaddr != NULL && *p == '/')
1126 1.1 dholland bcopy(siaddr, &addr->sin_addr, sizeof(struct in_addr));
1127 1.1 dholland else
1128 1.1 dholland return 0;
1129 1.1 dholland } else {
1130 1.1 dholland if (*p != ':')
1131 1.1 dholland return 0;
1132 1.1 dholland p++;
1133 1.1 dholland }
1134 1.1 dholland
1135 1.1 dholland addr->sin_len = sizeof(struct sockaddr_in);
1136 1.1 dholland addr->sin_family = AF_INET;
1137 1.1 dholland
1138 1.1 dholland strlcpy(path, p, MNAMELEN);
1139 1.1 dholland return 1;
1140 1.1 dholland }
1141 1.1 dholland
1142 1.1 dholland static int
1143 1.1 dholland getip(char **ptr, struct in_addr *addr)
1144 1.1 dholland {
1145 1.1 dholland char *p;
1146 1.1 dholland unsigned int ip;
1147 1.1 dholland int val;
1148 1.1 dholland
1149 1.1 dholland p = *ptr;
1150 1.1 dholland ip = 0;
1151 1.1 dholland if (((val = getdec(&p)) < 0) || (val > 255))
1152 1.1 dholland return 0;
1153 1.1 dholland ip = val << 24;
1154 1.1 dholland if (*p != '.')
1155 1.1 dholland return 0;
1156 1.1 dholland p++;
1157 1.1 dholland if (((val = getdec(&p)) < 0) || (val > 255))
1158 1.1 dholland return 0;
1159 1.1 dholland ip |= (val << 16);
1160 1.1 dholland if (*p != '.')
1161 1.1 dholland return 0;
1162 1.1 dholland p++;
1163 1.1 dholland if (((val = getdec(&p)) < 0) || (val > 255))
1164 1.1 dholland return 0;
1165 1.1 dholland ip |= (val << 8);
1166 1.1 dholland if (*p != '.')
1167 1.1 dholland return 0;
1168 1.1 dholland p++;
1169 1.1 dholland if (((val = getdec(&p)) < 0) || (val > 255))
1170 1.1 dholland return 0;
1171 1.1 dholland ip |= val;
1172 1.1 dholland
1173 1.1 dholland addr->s_addr = htonl(ip);
1174 1.1 dholland *ptr = p;
1175 1.1 dholland return 1;
1176 1.1 dholland }
1177 1.1 dholland
1178 1.1 dholland static int
1179 1.1 dholland getdec(char **ptr)
1180 1.1 dholland {
1181 1.1 dholland char *p;
1182 1.1 dholland int ret;
1183 1.1 dholland
1184 1.1 dholland p = *ptr;
1185 1.1 dholland ret = 0;
1186 1.1 dholland if ((*p < '0') || (*p > '9'))
1187 1.1 dholland return -1;
1188 1.1 dholland while ((*p >= '0') && (*p <= '9')) {
1189 1.1 dholland ret = ret * 10 + (*p - '0');
1190 1.1 dholland p++;
1191 1.1 dholland }
1192 1.1 dholland *ptr = p;
1193 1.1 dholland return ret;
1194 1.1 dholland }
1195 1.1 dholland
1196 1.1 dholland static void
1197 1.1 dholland mountopts(struct nfs_args *args, char *p)
1198 1.1 dholland {
1199 1.1 dholland args->version = NFS_ARGSVERSION;
1200 1.1 dholland args->rsize = BOOTP_BLOCKSIZE;
1201 1.1 dholland args->wsize = BOOTP_BLOCKSIZE;
1202 1.1 dholland args->flags = NFSMNT_RSIZE | NFSMNT_WSIZE | NFSMNT_RESVPORT;
1203 1.1 dholland args->sotype = SOCK_DGRAM;
1204 1.1 dholland if (p != NULL)
1205 1.1 dholland nfs_parse_options(p, args);
1206 1.1 dholland }
1207 1.1 dholland
1208 1.1 dholland static int
1209 1.1 dholland xdr_opaque_decode(struct mbuf **mptr, u_char *buf, int len)
1210 1.1 dholland {
1211 1.1 dholland struct mbuf *m;
1212 1.1 dholland int alignedlen;
1213 1.1 dholland
1214 1.1 dholland m = *mptr;
1215 1.1 dholland alignedlen = ( len + 3 ) & ~3;
1216 1.1 dholland
1217 1.1 dholland if (m->m_len < alignedlen) {
1218 1.1 dholland m = m_pullup(m, alignedlen);
1219 1.1 dholland if (m == NULL) {
1220 1.1 dholland *mptr = NULL;
1221 1.1 dholland return EBADRPC;
1222 1.1 dholland }
1223 1.1 dholland }
1224 1.1 dholland bcopy(mtod(m, u_char *), buf, len);
1225 1.1 dholland m_adj(m, alignedlen);
1226 1.1 dholland *mptr = m;
1227 1.1 dholland return 0;
1228 1.1 dholland }
1229 1.1 dholland
1230 1.1 dholland static int
1231 1.1 dholland xdr_int_decode(struct mbuf **mptr, int *iptr)
1232 1.1 dholland {
1233 1.1 dholland u_int32_t i;
1234 1.1 dholland
1235 1.1 dholland if (xdr_opaque_decode(mptr, (u_char *) &i, sizeof(u_int32_t)) != 0)
1236 1.1 dholland return EBADRPC;
1237 1.1 dholland *iptr = fxdr_unsigned(u_int32_t, i);
1238 1.1 dholland return 0;
1239 1.1 dholland }
1240 1.1 dholland
1241 1.1 dholland static void
1242 1.1 dholland print_sin_addr(struct sockaddr_in *sin)
1243 1.1 dholland {
1244 1.1 dholland
1245 1.1 dholland print_in_addr(sin->sin_addr);
1246 1.1 dholland }
1247 1.1 dholland
1248 1.1 dholland static void
1249 1.1 dholland print_in_addr(struct in_addr addr)
1250 1.1 dholland {
1251 1.1 dholland unsigned int ip;
1252 1.1 dholland
1253 1.1 dholland ip = ntohl(addr.s_addr);
1254 1.1 dholland printf("%d.%d.%d.%d",
1255 1.1 dholland ip >> 24, (ip >> 16) & 255, (ip >> 8) & 255, ip & 255);
1256 1.1 dholland }
1257 1.1 dholland
1258 1.1 dholland static void
1259 1.3 pgoyette bootpc_compose_query(struct bootpc_ifcontext *ifctx, struct lwp *td)
1260 1.1 dholland {
1261 1.1 dholland unsigned char *vendp;
1262 1.1 dholland unsigned char vendor_client[64];
1263 1.1 dholland uint32_t leasetime;
1264 1.1 dholland uint8_t vendor_client_len;
1265 1.1 dholland
1266 1.1 dholland ifctx->gotrootpath = 0;
1267 1.1 dholland
1268 1.3 pgoyette bzero((void *) &ifctx->call, sizeof(ifctx->call));
1269 1.1 dholland
1270 1.1 dholland /* bootpc part */
1271 1.1 dholland ifctx->call.op = BOOTP_REQUEST; /* BOOTREQUEST */
1272 1.1 dholland ifctx->call.htype = 1; /* 10mb ethernet */
1273 1.1 dholland ifctx->call.hlen = ifctx->sdl->sdl_alen;/* Hardware address length */
1274 1.1 dholland ifctx->call.hops = 0;
1275 1.1 dholland if (bootpc_ifctx_isunresolved(ifctx) != 0)
1276 1.1 dholland ifctx->xid++;
1277 1.1 dholland ifctx->call.xid = txdr_unsigned(ifctx->xid);
1278 1.1 dholland bcopy(LLADDR(ifctx->sdl), &ifctx->call.chaddr, ifctx->sdl->sdl_alen);
1279 1.1 dholland
1280 1.1 dholland vendp = ifctx->call.vend;
1281 1.1 dholland *vendp++ = 99; /* RFC1048 cookie */
1282 1.1 dholland *vendp++ = 130;
1283 1.1 dholland *vendp++ = 83;
1284 1.1 dholland *vendp++ = 99;
1285 1.1 dholland *vendp++ = TAG_MAXMSGSIZE;
1286 1.1 dholland *vendp++ = 2;
1287 1.1 dholland *vendp++ = (sizeof(struct bootp_packet) >> 8) & 255;
1288 1.1 dholland *vendp++ = sizeof(struct bootp_packet) & 255;
1289 1.1 dholland
1290 1.1 dholland snprintf(vendor_client, sizeof(vendor_client), "%s:%s:%s",
1291 1.1 dholland ostype, MACHINE, osrelease);
1292 1.1 dholland vendor_client_len = strlen(vendor_client);
1293 1.1 dholland *vendp++ = TAG_VENDOR_INDENTIFIER;
1294 1.1 dholland *vendp++ = vendor_client_len;
1295 1.1 dholland memcpy(vendp, vendor_client, vendor_client_len);
1296 1.1 dholland vendp += vendor_client_len;
1297 1.1 dholland ifctx->dhcpquerytype = DHCP_NOMSG;
1298 1.1 dholland switch (ifctx->state) {
1299 1.1 dholland case IF_DHCP_UNRESOLVED:
1300 1.1 dholland *vendp++ = TAG_DHCP_MSGTYPE;
1301 1.1 dholland *vendp++ = 1;
1302 1.1 dholland *vendp++ = DHCP_DISCOVER;
1303 1.1 dholland ifctx->dhcpquerytype = DHCP_DISCOVER;
1304 1.1 dholland ifctx->gotdhcpserver = 0;
1305 1.1 dholland break;
1306 1.1 dholland case IF_DHCP_OFFERED:
1307 1.1 dholland *vendp++ = TAG_DHCP_MSGTYPE;
1308 1.1 dholland *vendp++ = 1;
1309 1.1 dholland *vendp++ = DHCP_REQUEST;
1310 1.1 dholland ifctx->dhcpquerytype = DHCP_REQUEST;
1311 1.1 dholland *vendp++ = TAG_DHCP_REQ_ADDR;
1312 1.1 dholland *vendp++ = 4;
1313 1.1 dholland memcpy(vendp, &ifctx->reply.yiaddr, 4);
1314 1.1 dholland vendp += 4;
1315 1.1 dholland if (ifctx->gotdhcpserver != 0) {
1316 1.1 dholland *vendp++ = TAG_DHCP_SERVERID;
1317 1.1 dholland *vendp++ = 4;
1318 1.1 dholland memcpy(vendp, &ifctx->dhcpserver, 4);
1319 1.1 dholland vendp += 4;
1320 1.1 dholland }
1321 1.1 dholland *vendp++ = TAG_DHCP_LEASETIME;
1322 1.1 dholland *vendp++ = 4;
1323 1.1 dholland leasetime = htonl(300);
1324 1.1 dholland memcpy(vendp, &leasetime, 4);
1325 1.1 dholland vendp += 4;
1326 1.1 dholland break;
1327 1.1 dholland default:
1328 1.1 dholland break;
1329 1.1 dholland }
1330 1.1 dholland *vendp = TAG_END;
1331 1.1 dholland
1332 1.1 dholland ifctx->call.secs = 0;
1333 1.1 dholland ifctx->call.flags = htons(0x8000); /* We need a broadcast answer */
1334 1.1 dholland }
1335 1.1 dholland
1336 1.1 dholland static int
1337 1.1 dholland bootpc_hascookie(struct bootp_packet *bp)
1338 1.1 dholland {
1339 1.1 dholland
1340 1.1 dholland return (bp->vend[0] == 99 && bp->vend[1] == 130 &&
1341 1.1 dholland bp->vend[2] == 83 && bp->vend[3] == 99);
1342 1.1 dholland }
1343 1.1 dholland
1344 1.1 dholland static void
1345 1.1 dholland bootpc_tag_helper(struct bootpc_tagcontext *tctx,
1346 1.1 dholland unsigned char *start, int len, int tag)
1347 1.1 dholland {
1348 1.1 dholland unsigned char *j;
1349 1.1 dholland unsigned char *ej;
1350 1.1 dholland unsigned char code;
1351 1.1 dholland
1352 1.1 dholland if (tctx->badtag != 0 || tctx->badopt != 0)
1353 1.1 dholland return;
1354 1.1 dholland
1355 1.1 dholland j = start;
1356 1.1 dholland ej = j + len;
1357 1.1 dholland
1358 1.1 dholland while (j < ej) {
1359 1.1 dholland code = *j++;
1360 1.1 dholland if (code == TAG_PAD)
1361 1.1 dholland continue;
1362 1.1 dholland if (code == TAG_END)
1363 1.1 dholland return;
1364 1.1 dholland if (j >= ej || j + *j + 1 > ej) {
1365 1.1 dholland tctx->badopt = 1;
1366 1.1 dholland return;
1367 1.1 dholland }
1368 1.1 dholland len = *j++;
1369 1.1 dholland if (code == tag) {
1370 1.1 dholland if (tctx->taglen + len > TAG_MAXLEN) {
1371 1.1 dholland tctx->badtag = 1;
1372 1.1 dholland return;
1373 1.1 dholland }
1374 1.1 dholland tctx->foundopt = 1;
1375 1.1 dholland if (len > 0)
1376 1.1 dholland memcpy(tctx->buf + tctx->taglen,
1377 1.1 dholland j, len);
1378 1.1 dholland tctx->taglen += len;
1379 1.1 dholland }
1380 1.1 dholland if (code == TAG_OVERLOAD)
1381 1.1 dholland tctx->overload = *j;
1382 1.1 dholland
1383 1.1 dholland j += len;
1384 1.1 dholland }
1385 1.1 dholland }
1386 1.1 dholland
1387 1.1 dholland static unsigned char *
1388 1.1 dholland bootpc_tag(struct bootpc_tagcontext *tctx,
1389 1.1 dholland struct bootp_packet *bp, int len, int tag)
1390 1.1 dholland {
1391 1.1 dholland tctx->overload = 0;
1392 1.1 dholland tctx->badopt = 0;
1393 1.1 dholland tctx->badtag = 0;
1394 1.1 dholland tctx->foundopt = 0;
1395 1.1 dholland tctx->taglen = 0;
1396 1.1 dholland
1397 1.1 dholland if (bootpc_hascookie(bp) == 0)
1398 1.1 dholland return NULL;
1399 1.1 dholland
1400 1.1 dholland bootpc_tag_helper(tctx, &bp->vend[4],
1401 1.1 dholland (unsigned char *) bp + len - &bp->vend[4], tag);
1402 1.1 dholland
1403 1.1 dholland if ((tctx->overload & OVERLOAD_FILE) != 0)
1404 1.1 dholland bootpc_tag_helper(tctx,
1405 1.1 dholland (unsigned char *) bp->file,
1406 1.1 dholland sizeof(bp->file),
1407 1.1 dholland tag);
1408 1.1 dholland if ((tctx->overload & OVERLOAD_SNAME) != 0)
1409 1.1 dholland bootpc_tag_helper(tctx,
1410 1.1 dholland (unsigned char *) bp->sname,
1411 1.1 dholland sizeof(bp->sname),
1412 1.1 dholland tag);
1413 1.1 dholland
1414 1.1 dholland if (tctx->badopt != 0 || tctx->badtag != 0 || tctx->foundopt == 0)
1415 1.1 dholland return NULL;
1416 1.1 dholland tctx->buf[tctx->taglen] = '\0';
1417 1.1 dholland return tctx->buf;
1418 1.1 dholland }
1419 1.1 dholland
1420 1.1 dholland static void
1421 1.1 dholland bootpc_decode_reply(struct nfsv3_diskless *nd, struct bootpc_ifcontext *ifctx,
1422 1.1 dholland struct bootpc_globalcontext *gctx)
1423 1.1 dholland {
1424 1.1 dholland char *p, *s;
1425 1.1 dholland
1426 1.1 dholland ifctx->gotgw = 0;
1427 1.1 dholland ifctx->gotnetmask = 0;
1428 1.1 dholland
1429 1.1 dholland clear_sinaddr(&ifctx->myaddr);
1430 1.1 dholland clear_sinaddr(&ifctx->netmask);
1431 1.1 dholland clear_sinaddr(&ifctx->gw);
1432 1.1 dholland
1433 1.1 dholland ifctx->myaddr.sin_addr = ifctx->reply.yiaddr;
1434 1.1 dholland
1435 1.1 dholland printf("%s at ", ifctx->ireq.ifr_name);
1436 1.1 dholland print_sin_addr(&ifctx->myaddr);
1437 1.1 dholland printf(" server ");
1438 1.1 dholland print_in_addr(ifctx->reply.siaddr);
1439 1.1 dholland
1440 1.1 dholland ifctx->gw.sin_addr = ifctx->reply.giaddr;
1441 1.1 dholland if (ifctx->reply.giaddr.s_addr != htonl(INADDR_ANY)) {
1442 1.1 dholland printf(" via gateway ");
1443 1.1 dholland print_in_addr(ifctx->reply.giaddr);
1444 1.1 dholland }
1445 1.1 dholland
1446 1.1 dholland /* This call used for the side effect (overload flag) */
1447 1.1 dholland (void) bootpc_tag(&gctx->tmptag,
1448 1.1 dholland &ifctx->reply, ifctx->replylen, TAG_END);
1449 1.1 dholland
1450 1.1 dholland if ((gctx->tmptag.overload & OVERLOAD_SNAME) == 0)
1451 1.1 dholland if (ifctx->reply.sname[0] != '\0')
1452 1.1 dholland printf(" server name %s", ifctx->reply.sname);
1453 1.1 dholland if ((gctx->tmptag.overload & OVERLOAD_FILE) == 0)
1454 1.1 dholland if (ifctx->reply.file[0] != '\0')
1455 1.1 dholland printf(" boot file %s", ifctx->reply.file);
1456 1.1 dholland
1457 1.1 dholland printf("\n");
1458 1.1 dholland
1459 1.1 dholland p = bootpc_tag(&gctx->tag, &ifctx->reply, ifctx->replylen,
1460 1.1 dholland TAG_SUBNETMASK);
1461 1.1 dholland if (p != NULL) {
1462 1.1 dholland if (gctx->tag.taglen != 4)
1463 1.1 dholland panic("bootpc: subnet mask len is %d",
1464 1.1 dholland gctx->tag.taglen);
1465 1.1 dholland bcopy(p, &ifctx->netmask.sin_addr, 4);
1466 1.1 dholland ifctx->gotnetmask = 1;
1467 1.1 dholland printf("subnet mask ");
1468 1.1 dholland print_sin_addr(&ifctx->netmask);
1469 1.1 dholland printf(" ");
1470 1.1 dholland }
1471 1.1 dholland
1472 1.1 dholland p = bootpc_tag(&gctx->tag, &ifctx->reply, ifctx->replylen,
1473 1.1 dholland TAG_ROUTERS);
1474 1.1 dholland if (p != NULL) {
1475 1.1 dholland /* Routers */
1476 1.1 dholland if (gctx->tag.taglen % 4)
1477 1.1 dholland panic("bootpc: Router Len is %d", gctx->tag.taglen);
1478 1.1 dholland if (gctx->tag.taglen > 0) {
1479 1.1 dholland bcopy(p, &ifctx->gw.sin_addr, 4);
1480 1.1 dholland printf("router ");
1481 1.1 dholland print_sin_addr(&ifctx->gw);
1482 1.1 dholland printf(" ");
1483 1.1 dholland ifctx->gotgw = 1;
1484 1.1 dholland gctx->gotgw = 1;
1485 1.1 dholland }
1486 1.1 dholland }
1487 1.1 dholland
1488 1.1 dholland /*
1489 1.1 dholland * Choose a root filesystem. If a value is forced in the environment
1490 1.1 dholland * and it contains "nfs:", use it unconditionally. Otherwise, if the
1491 1.1 dholland * kernel is compiled with the ROOTDEVNAME option, then use it if:
1492 1.1 dholland * - The server doesn't provide a pathname.
1493 1.1 dholland * - The boothowto flags include RB_DFLTROOT (user said to override
1494 1.1 dholland * the server value).
1495 1.1 dholland */
1496 1.1 dholland p = NULL;
1497 1.2 pgoyette if ((s = kern_getenv("vfs.root.mountfrom")) != NULL) {
1498 1.1 dholland if ((p = strstr(s, "nfs:")) != NULL)
1499 1.1 dholland p = strdup(p + 4, M_TEMP);
1500 1.1 dholland freeenv(s);
1501 1.1 dholland }
1502 1.1 dholland if (p == NULL) {
1503 1.1 dholland p = bootpc_tag(&gctx->tag, &ifctx->reply, ifctx->replylen,
1504 1.1 dholland TAG_ROOT);
1505 1.2 pgoyette if (p != NULL)
1506 1.2 pgoyette ifctx->gotrootpath = 1;
1507 1.1 dholland }
1508 1.1 dholland #ifdef ROOTDEVNAME
1509 1.1 dholland if ((p == NULL || (boothowto & RB_DFLTROOT) != 0) &&
1510 1.1 dholland (p = strstr(ROOTDEVNAME, "nfs:")) != NULL) {
1511 1.1 dholland p += 4;
1512 1.1 dholland }
1513 1.1 dholland #endif
1514 1.1 dholland if (p != NULL) {
1515 1.1 dholland if (gctx->setrootfs != NULL) {
1516 1.1 dholland printf("rootfs %s (ignored) ", p);
1517 1.3 pgoyette } else if (setmyfs(&nd->root_saddr,
1518 1.1 dholland nd->root_hostnam, p, &ifctx->reply.siaddr)) {
1519 1.1 dholland if (*p == '/') {
1520 1.1 dholland printf("root_server ");
1521 1.1 dholland print_sin_addr(&nd->root_saddr);
1522 1.1 dholland printf(" ");
1523 1.1 dholland }
1524 1.1 dholland printf("rootfs %s ", p);
1525 1.1 dholland gctx->gotrootpath = 1;
1526 1.1 dholland gctx->setrootfs = ifctx;
1527 1.1 dholland
1528 1.1 dholland p = bootpc_tag(&gctx->tag, &ifctx->reply,
1529 1.1 dholland ifctx->replylen,
1530 1.1 dholland TAG_ROOTOPTS);
1531 1.1 dholland if (p != NULL) {
1532 1.1 dholland mountopts(&nd->root_args, p);
1533 1.1 dholland printf("rootopts %s ", p);
1534 1.1 dholland }
1535 1.1 dholland } else
1536 1.1 dholland panic("Failed to set rootfs to %s", p);
1537 1.1 dholland }
1538 1.1 dholland
1539 1.1 dholland p = bootpc_tag(&gctx->tag, &ifctx->reply, ifctx->replylen,
1540 1.1 dholland TAG_HOSTNAME);
1541 1.1 dholland if (p != NULL) {
1542 1.1 dholland if (gctx->tag.taglen >= MAXHOSTNAMELEN)
1543 1.1 dholland panic("bootpc: hostname >= %d bytes",
1544 1.1 dholland MAXHOSTNAMELEN);
1545 1.1 dholland if (gctx->sethostname != NULL) {
1546 1.1 dholland printf("hostname %s (ignored) ", p);
1547 1.1 dholland } else {
1548 1.1 dholland strcpy(nd->my_hostnam, p);
1549 1.3 pgoyette mutex_enter(&prison0.pr_mtx);
1550 1.1 dholland strcpy(prison0.pr_hostname, p);
1551 1.3 pgoyette mutex_exit(&prison0.pr_mtx);
1552 1.1 dholland printf("hostname %s ", p);
1553 1.1 dholland gctx->sethostname = ifctx;
1554 1.1 dholland }
1555 1.1 dholland }
1556 1.1 dholland p = bootpc_tag(&gctx->tag, &ifctx->reply, ifctx->replylen,
1557 1.1 dholland TAG_COOKIE);
1558 1.1 dholland if (p != NULL) { /* store in a sysctl variable */
1559 1.1 dholland int i, l = sizeof(bootp_cookie) - 1;
1560 1.1 dholland for (i = 0; i < l && p[i] != '\0'; i++)
1561 1.1 dholland bootp_cookie[i] = p[i];
1562 1.1 dholland p[i] = '\0';
1563 1.1 dholland }
1564 1.1 dholland
1565 1.2 pgoyette p = bootpc_tag(&gctx->tag, &ifctx->reply, ifctx->replylen,
1566 1.2 pgoyette TAG_INTF_MTU);
1567 1.2 pgoyette if (p != NULL) {
1568 1.2 pgoyette ifctx->mtu = be16dec(p);
1569 1.2 pgoyette }
1570 1.1 dholland
1571 1.1 dholland printf("\n");
1572 1.1 dholland
1573 1.1 dholland if (ifctx->gotnetmask == 0) {
1574 1.1 dholland if (IN_CLASSA(ntohl(ifctx->myaddr.sin_addr.s_addr)))
1575 1.1 dholland ifctx->netmask.sin_addr.s_addr = htonl(IN_CLASSA_NET);
1576 1.1 dholland else if (IN_CLASSB(ntohl(ifctx->myaddr.sin_addr.s_addr)))
1577 1.1 dholland ifctx->netmask.sin_addr.s_addr = htonl(IN_CLASSB_NET);
1578 1.1 dholland else
1579 1.1 dholland ifctx->netmask.sin_addr.s_addr = htonl(IN_CLASSC_NET);
1580 1.1 dholland }
1581 1.1 dholland }
1582 1.1 dholland
1583 1.1 dholland void
1584 1.1 dholland bootpc_init(void)
1585 1.1 dholland {
1586 1.1 dholland struct bootpc_ifcontext *ifctx; /* Interface BOOTP contexts */
1587 1.1 dholland struct bootpc_globalcontext *gctx; /* Global BOOTP context */
1588 1.1 dholland struct ifnet *ifp;
1589 1.1 dholland struct sockaddr_dl *sdl;
1590 1.1 dholland struct ifaddr *ifa;
1591 1.1 dholland int error;
1592 1.1 dholland #ifndef BOOTP_WIRED_TO
1593 1.1 dholland int ifcnt;
1594 1.1 dholland #endif
1595 1.1 dholland struct nfsv3_diskless *nd;
1596 1.3 pgoyette struct lwp *td;
1597 1.1 dholland int timeout;
1598 1.1 dholland int delay;
1599 1.1 dholland
1600 1.1 dholland timeout = BOOTP_IFACE_WAIT_TIMEOUT * hz;
1601 1.1 dholland delay = hz / 10;
1602 1.1 dholland
1603 1.1 dholland nd = &nfsv3_diskless;
1604 1.3 pgoyette td = curlwp;
1605 1.1 dholland
1606 1.1 dholland /*
1607 1.1 dholland * If already filled in, don't touch it here
1608 1.1 dholland */
1609 1.1 dholland if (nfs_diskless_valid != 0)
1610 1.1 dholland return;
1611 1.1 dholland
1612 1.1 dholland gctx = malloc(sizeof(*gctx), M_TEMP, M_WAITOK | M_ZERO);
1613 1.1 dholland STAILQ_INIT(&gctx->interfaces);
1614 1.1 dholland gctx->xid = ~0xFFFF;
1615 1.1 dholland gctx->starttime = time_second;
1616 1.1 dholland
1617 1.1 dholland /*
1618 1.1 dholland * If ROOTDEVNAME is defined or vfs.root.mountfrom is set then we have
1619 1.1 dholland * root-path overrides that can potentially let us boot even if we don't
1620 1.1 dholland * get a root path from the server, so we can treat that as a non-error.
1621 1.1 dholland */
1622 1.1 dholland #ifdef ROOTDEVNAME
1623 1.1 dholland gctx->any_root_overrides = 1;
1624 1.1 dholland #else
1625 1.1 dholland gctx->any_root_overrides = testenv("vfs.root.mountfrom");
1626 1.1 dholland #endif
1627 1.1 dholland
1628 1.1 dholland /*
1629 1.1 dholland * Find a network interface.
1630 1.1 dholland */
1631 1.1 dholland CURVNET_SET(TD_TO_VNET(td));
1632 1.1 dholland #ifdef BOOTP_WIRED_TO
1633 1.1 dholland printf("%s: wired to interface '%s'\n", __func__,
1634 1.1 dholland __XSTRING(BOOTP_WIRED_TO));
1635 1.1 dholland allocifctx(gctx);
1636 1.1 dholland #else
1637 1.1 dholland /*
1638 1.1 dholland * Preallocate interface context storage, if another interface
1639 1.1 dholland * attaches and wins the race, it won't be eligible for bootp.
1640 1.1 dholland */
1641 1.1 dholland ifcnt = 0;
1642 1.1 dholland IFNET_RLOCK();
1643 1.3 pgoyette TAILQ_FOREACH(ifp, &V_ifnet, if_list) {
1644 1.1 dholland if ((ifp->if_flags &
1645 1.1 dholland (IFF_LOOPBACK | IFF_POINTOPOINT | IFF_BROADCAST)) !=
1646 1.1 dholland IFF_BROADCAST)
1647 1.1 dholland continue;
1648 1.3 pgoyette switch (ifp->if_type) {
1649 1.1 dholland case IFT_ETHER:
1650 1.1 dholland case IFT_FDDI:
1651 1.1 dholland case IFT_ISO88025:
1652 1.1 dholland break;
1653 1.1 dholland default:
1654 1.1 dholland continue;
1655 1.1 dholland }
1656 1.1 dholland ifcnt++;
1657 1.1 dholland }
1658 1.1 dholland IFNET_RUNLOCK();
1659 1.1 dholland if (ifcnt == 0)
1660 1.1 dholland panic("%s: no eligible interfaces", __func__);
1661 1.1 dholland for (; ifcnt > 0; ifcnt--)
1662 1.1 dholland allocifctx(gctx);
1663 1.1 dholland #endif
1664 1.1 dholland
1665 1.1 dholland retry:
1666 1.1 dholland ifctx = STAILQ_FIRST(&gctx->interfaces);
1667 1.1 dholland IFNET_RLOCK();
1668 1.3 pgoyette TAILQ_FOREACH(ifp, &V_ifnet, if_list) {
1669 1.1 dholland if (ifctx == NULL)
1670 1.1 dholland break;
1671 1.1 dholland #ifdef BOOTP_WIRED_TO
1672 1.1 dholland if (strcmp(ifp->if_xname, __XSTRING(BOOTP_WIRED_TO)) != 0)
1673 1.1 dholland continue;
1674 1.1 dholland #else
1675 1.1 dholland if ((ifp->if_flags &
1676 1.1 dholland (IFF_LOOPBACK | IFF_POINTOPOINT | IFF_BROADCAST)) !=
1677 1.1 dholland IFF_BROADCAST)
1678 1.1 dholland continue;
1679 1.3 pgoyette switch (ifp->if_type) {
1680 1.1 dholland case IFT_ETHER:
1681 1.1 dholland case IFT_FDDI:
1682 1.1 dholland case IFT_ISO88025:
1683 1.1 dholland break;
1684 1.1 dholland default:
1685 1.1 dholland continue;
1686 1.1 dholland }
1687 1.1 dholland #endif
1688 1.1 dholland strlcpy(ifctx->ireq.ifr_name, ifp->if_xname,
1689 1.1 dholland sizeof(ifctx->ireq.ifr_name));
1690 1.1 dholland ifctx->ifp = ifp;
1691 1.1 dholland
1692 1.1 dholland /* Get HW address */
1693 1.1 dholland sdl = NULL;
1694 1.3 pgoyette TAILQ_FOREACH(ifa, &ifp->if_addrlist, ifa_list)
1695 1.1 dholland if (ifa->ifa_addr->sa_family == AF_LINK) {
1696 1.1 dholland sdl = (struct sockaddr_dl *)ifa->ifa_addr;
1697 1.1 dholland if (sdl->sdl_type == IFT_ETHER)
1698 1.1 dholland break;
1699 1.1 dholland }
1700 1.1 dholland if (sdl == NULL)
1701 1.1 dholland panic("bootpc: Unable to find HW address for %s",
1702 1.1 dholland ifctx->ireq.ifr_name);
1703 1.1 dholland ifctx->sdl = sdl;
1704 1.1 dholland
1705 1.1 dholland ifctx = STAILQ_NEXT(ifctx, next);
1706 1.1 dholland }
1707 1.1 dholland IFNET_RUNLOCK();
1708 1.1 dholland CURVNET_RESTORE();
1709 1.1 dholland
1710 1.1 dholland if (STAILQ_EMPTY(&gctx->interfaces) ||
1711 1.1 dholland STAILQ_FIRST(&gctx->interfaces)->ifp == NULL) {
1712 1.1 dholland if (timeout > 0) {
1713 1.1 dholland pause("bootpc", delay);
1714 1.1 dholland timeout -= delay;
1715 1.1 dholland goto retry;
1716 1.1 dholland }
1717 1.1 dholland #ifdef BOOTP_WIRED_TO
1718 1.1 dholland panic("%s: Could not find interface specified "
1719 1.1 dholland "by BOOTP_WIRED_TO: "
1720 1.1 dholland __XSTRING(BOOTP_WIRED_TO), __func__);
1721 1.1 dholland #else
1722 1.1 dholland panic("%s: no suitable interface", __func__);
1723 1.1 dholland #endif
1724 1.1 dholland }
1725 1.1 dholland
1726 1.3 pgoyette error = socreate(AF_INET, &bootp_so, SOCK_DGRAM, 0, td, NULL);
1727 1.1 dholland if (error != 0)
1728 1.1 dholland panic("%s: socreate, error=%d", __func__, error);
1729 1.1 dholland
1730 1.1 dholland STAILQ_FOREACH(ifctx, &gctx->interfaces, next)
1731 1.1 dholland bootpc_fakeup_interface(ifctx, td);
1732 1.1 dholland
1733 1.1 dholland STAILQ_FOREACH(ifctx, &gctx->interfaces, next)
1734 1.1 dholland bootpc_compose_query(ifctx, td);
1735 1.1 dholland
1736 1.1 dholland error = bootpc_call(gctx, td);
1737 1.1 dholland if (error != 0) {
1738 1.1 dholland printf("BOOTP call failed\n");
1739 1.1 dholland }
1740 1.1 dholland
1741 1.1 dholland mountopts(&nd->root_args, NULL);
1742 1.1 dholland
1743 1.1 dholland STAILQ_FOREACH(ifctx, &gctx->interfaces, next)
1744 1.1 dholland if (bootpc_ifctx_isresolved(ifctx) != 0)
1745 1.1 dholland bootpc_decode_reply(nd, ifctx, gctx);
1746 1.1 dholland
1747 1.1 dholland #ifdef BOOTP_NFSROOT
1748 1.1 dholland if (gctx->gotrootpath == 0 && gctx->any_root_overrides == 0)
1749 1.1 dholland panic("bootpc: No root path offered");
1750 1.1 dholland #endif
1751 1.1 dholland
1752 1.1 dholland STAILQ_FOREACH(ifctx, &gctx->interfaces, next)
1753 1.1 dholland bootpc_adjust_interface(ifctx, gctx, td);
1754 1.1 dholland
1755 1.1 dholland soclose(bootp_so);
1756 1.1 dholland
1757 1.1 dholland STAILQ_FOREACH(ifctx, &gctx->interfaces, next)
1758 1.1 dholland if (ifctx->gotrootpath != 0)
1759 1.1 dholland break;
1760 1.1 dholland if (ifctx == NULL) {
1761 1.1 dholland STAILQ_FOREACH(ifctx, &gctx->interfaces, next)
1762 1.1 dholland if (bootpc_ifctx_isresolved(ifctx) != 0)
1763 1.1 dholland break;
1764 1.1 dholland }
1765 1.1 dholland if (ifctx == NULL)
1766 1.1 dholland goto out;
1767 1.1 dholland
1768 1.1 dholland if (gctx->gotrootpath != 0) {
1769 1.1 dholland
1770 1.2 pgoyette kern_setenv("boot.netif.name", ifctx->ifp->if_xname);
1771 1.1 dholland
1772 1.2 pgoyette bootpc_add_default_route(ifctx);
1773 1.1 dholland error = md_mount(&nd->root_saddr, nd->root_hostnam,
1774 1.1 dholland nd->root_fh, &nd->root_fhsize,
1775 1.1 dholland &nd->root_args, td);
1776 1.2 pgoyette bootpc_remove_default_route(ifctx);
1777 1.1 dholland if (error != 0) {
1778 1.1 dholland if (gctx->any_root_overrides == 0)
1779 1.1 dholland panic("nfs_boot: mount root, error=%d", error);
1780 1.1 dholland else
1781 1.1 dholland goto out;
1782 1.1 dholland }
1783 1.1 dholland rootdevnames[0] = "nfs:";
1784 1.1 dholland nfs_diskless_valid = 3;
1785 1.1 dholland }
1786 1.1 dholland
1787 1.1 dholland strcpy(nd->myif.ifra_name, ifctx->ireq.ifr_name);
1788 1.1 dholland bcopy(&ifctx->myaddr, &nd->myif.ifra_addr, sizeof(ifctx->myaddr));
1789 1.1 dholland bcopy(&ifctx->myaddr, &nd->myif.ifra_broadaddr, sizeof(ifctx->myaddr));
1790 1.1 dholland ((struct sockaddr_in *) &nd->myif.ifra_broadaddr)->sin_addr.s_addr =
1791 1.1 dholland ifctx->myaddr.sin_addr.s_addr |
1792 1.1 dholland ~ ifctx->netmask.sin_addr.s_addr;
1793 1.1 dholland bcopy(&ifctx->netmask, &nd->myif.ifra_mask, sizeof(ifctx->netmask));
1794 1.2 pgoyette bcopy(&ifctx->gw, &nd->mygateway, sizeof(ifctx->gw));
1795 1.1 dholland
1796 1.1 dholland out:
1797 1.1 dholland while((ifctx = STAILQ_FIRST(&gctx->interfaces)) != NULL) {
1798 1.1 dholland STAILQ_REMOVE_HEAD(&gctx->interfaces, next);
1799 1.1 dholland free(ifctx, M_TEMP);
1800 1.1 dholland }
1801 1.1 dholland free(gctx, M_TEMP);
1802 1.1 dholland }
1803 1.1 dholland
1804 1.1 dholland /*
1805 1.1 dholland * RPC: mountd/mount
1806 1.1 dholland * Given a server pathname, get an NFS file handle.
1807 1.1 dholland * Also, sets sin->sin_port to the NFS service port.
1808 1.1 dholland */
1809 1.1 dholland static int
1810 1.1 dholland md_mount(struct sockaddr_in *mdsin, char *path, u_char *fhp, int *fhsizep,
1811 1.3 pgoyette struct nfs_args *args, struct lwp *td)
1812 1.1 dholland {
1813 1.1 dholland struct mbuf *m;
1814 1.1 dholland int error;
1815 1.1 dholland int authunixok;
1816 1.1 dholland int authcount;
1817 1.1 dholland int authver;
1818 1.1 dholland
1819 1.1 dholland #define RPCPROG_MNT 100005
1820 1.1 dholland #define RPCMNT_VER1 1
1821 1.1 dholland #define RPCMNT_VER3 3
1822 1.1 dholland #define RPCMNT_MOUNT 1
1823 1.1 dholland #define AUTH_SYS 1 /* unix style (uid, gids) */
1824 1.1 dholland #define AUTH_UNIX AUTH_SYS
1825 1.1 dholland
1826 1.1 dholland /* XXX honor v2/v3 flags in args->flags? */
1827 1.1 dholland #ifdef BOOTP_NFSV3
1828 1.1 dholland /* First try NFS v3 */
1829 1.1 dholland /* Get port number for MOUNTD. */
1830 1.1 dholland error = krpc_portmap(mdsin, RPCPROG_MNT, RPCMNT_VER3,
1831 1.1 dholland &mdsin->sin_port, td);
1832 1.1 dholland if (error == 0) {
1833 1.1 dholland m = xdr_string_encode(path, strlen(path));
1834 1.1 dholland
1835 1.1 dholland /* Do RPC to mountd. */
1836 1.1 dholland error = krpc_call(mdsin, RPCPROG_MNT, RPCMNT_VER3,
1837 1.1 dholland RPCMNT_MOUNT, &m, NULL, td);
1838 1.1 dholland }
1839 1.1 dholland if (error == 0) {
1840 1.1 dholland args->flags |= NFSMNT_NFSV3;
1841 1.1 dholland } else {
1842 1.1 dholland #endif
1843 1.1 dholland /* Fallback to NFS v2 */
1844 1.1 dholland
1845 1.1 dholland /* Get port number for MOUNTD. */
1846 1.1 dholland error = krpc_portmap(mdsin, RPCPROG_MNT, RPCMNT_VER1,
1847 1.1 dholland &mdsin->sin_port, td);
1848 1.1 dholland if (error != 0)
1849 1.1 dholland return error;
1850 1.1 dholland
1851 1.1 dholland m = xdr_string_encode(path, strlen(path));
1852 1.1 dholland
1853 1.1 dholland /* Do RPC to mountd. */
1854 1.1 dholland error = krpc_call(mdsin, RPCPROG_MNT, RPCMNT_VER1,
1855 1.1 dholland RPCMNT_MOUNT, &m, NULL, td);
1856 1.1 dholland if (error != 0)
1857 1.1 dholland return error; /* message already freed */
1858 1.1 dholland
1859 1.1 dholland #ifdef BOOTP_NFSV3
1860 1.1 dholland }
1861 1.1 dholland #endif
1862 1.1 dholland
1863 1.1 dholland if (xdr_int_decode(&m, &error) != 0 || error != 0)
1864 1.1 dholland goto bad;
1865 1.1 dholland
1866 1.1 dholland if ((args->flags & NFSMNT_NFSV3) != 0) {
1867 1.1 dholland if (xdr_int_decode(&m, fhsizep) != 0 ||
1868 1.1 dholland *fhsizep > NFSX_V3FHMAX ||
1869 1.1 dholland *fhsizep <= 0)
1870 1.1 dholland goto bad;
1871 1.1 dholland } else
1872 1.1 dholland *fhsizep = NFSX_V2FH;
1873 1.1 dholland
1874 1.1 dholland if (xdr_opaque_decode(&m, fhp, *fhsizep) != 0)
1875 1.1 dholland goto bad;
1876 1.1 dholland
1877 1.1 dholland if (args->flags & NFSMNT_NFSV3) {
1878 1.1 dholland if (xdr_int_decode(&m, &authcount) != 0)
1879 1.1 dholland goto bad;
1880 1.1 dholland authunixok = 0;
1881 1.1 dholland if (authcount < 0 || authcount > 100)
1882 1.1 dholland goto bad;
1883 1.1 dholland while (authcount > 0) {
1884 1.1 dholland if (xdr_int_decode(&m, &authver) != 0)
1885 1.1 dholland goto bad;
1886 1.1 dholland if (authver == AUTH_UNIX)
1887 1.1 dholland authunixok = 1;
1888 1.1 dholland authcount--;
1889 1.1 dholland }
1890 1.1 dholland if (authunixok == 0)
1891 1.1 dholland goto bad;
1892 1.1 dholland }
1893 1.1 dholland
1894 1.1 dholland /* Set port number for NFS use. */
1895 1.1 dholland error = krpc_portmap(mdsin, NFS_PROG,
1896 1.1 dholland (args->flags &
1897 1.1 dholland NFSMNT_NFSV3) ? NFS_VER3 : NFS_VER2,
1898 1.1 dholland &mdsin->sin_port, td);
1899 1.1 dholland
1900 1.1 dholland goto out;
1901 1.1 dholland
1902 1.1 dholland bad:
1903 1.1 dholland error = EBADRPC;
1904 1.1 dholland
1905 1.1 dholland out:
1906 1.1 dholland m_freem(m);
1907 1.1 dholland return error;
1908 1.1 dholland }
1909 1.1 dholland
1910 1.3 pgoyette #if 0 /* Need to call bootpc_init from module initialization routine */
1911 1.1 dholland SYSINIT(bootp_rootconf, SI_SUB_ROOT_CONF, SI_ORDER_FIRST, bootpc_init, NULL);
1912 1.3 pgoyette #endif
1913