nfs_bootdhcp.c revision 1.34 1 1.34 manu /* $NetBSD: nfs_bootdhcp.c,v 1.34 2007/05/08 06:10:28 manu Exp $ */
2 1.1 gwr
3 1.1 gwr /*-
4 1.1 gwr * Copyright (c) 1995, 1997 The NetBSD Foundation, Inc.
5 1.1 gwr * All rights reserved.
6 1.1 gwr *
7 1.1 gwr * This code is derived from software contributed to The NetBSD Foundation
8 1.1 gwr * by Adam Glass and Gordon W. Ross.
9 1.1 gwr *
10 1.1 gwr * Redistribution and use in source and binary forms, with or without
11 1.1 gwr * modification, are permitted provided that the following conditions
12 1.1 gwr * are met:
13 1.1 gwr * 1. Redistributions of source code must retain the above copyright
14 1.1 gwr * notice, this list of conditions and the following disclaimer.
15 1.1 gwr * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 gwr * notice, this list of conditions and the following disclaimer in the
17 1.1 gwr * documentation and/or other materials provided with the distribution.
18 1.1 gwr * 3. All advertising materials mentioning features or use of this software
19 1.1 gwr * must display the following acknowledgement:
20 1.9 christos * This product includes software developed by the NetBSD
21 1.9 christos * Foundation, Inc. and its contributors.
22 1.1 gwr * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.1 gwr * contributors may be used to endorse or promote products derived
24 1.1 gwr * from this software without specific prior written permission.
25 1.1 gwr *
26 1.1 gwr * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.1 gwr * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.1 gwr * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.1 gwr * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.1 gwr * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1 gwr * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1 gwr * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1 gwr * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1 gwr * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1 gwr * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.1 gwr * POSSIBILITY OF SUCH DAMAGE.
37 1.1 gwr */
38 1.1 gwr
39 1.1 gwr /*
40 1.1 gwr * Support for NFS diskless booting with BOOTP (RFC951, RFC1048)
41 1.1 gwr *
42 1.1 gwr * History:
43 1.1 gwr *
44 1.1 gwr * Tor Egge developed the initial version of this code based on
45 1.1 gwr * the Sun RPC/bootparam sources nfs_boot.c and krpc_subr.c and
46 1.1 gwr * submitted that work to NetBSD as bugreport "kern/2351" on
47 1.1 gwr * 29 Apr 1996.
48 1.1 gwr *
49 1.1 gwr * Gordon Ross reorganized Tor's version into this form and
50 1.1 gwr * integrated it into the NetBSD sources during Aug 1997.
51 1.1 gwr */
52 1.18 lukem
53 1.18 lukem #include <sys/cdefs.h>
54 1.34 manu __KERNEL_RCSID(0, "$NetBSD: nfs_bootdhcp.c,v 1.34 2007/05/08 06:10:28 manu Exp $");
55 1.1 gwr
56 1.5 scottr #include "opt_nfs_boot.h"
57 1.34 manu #include "opt_tftproot.h"
58 1.5 scottr
59 1.1 gwr #include <sys/param.h>
60 1.1 gwr #include <sys/systm.h>
61 1.1 gwr #include <sys/kernel.h>
62 1.1 gwr #include <sys/device.h>
63 1.1 gwr #include <sys/ioctl.h>
64 1.1 gwr #include <sys/proc.h>
65 1.1 gwr #include <sys/mount.h>
66 1.1 gwr #include <sys/mbuf.h>
67 1.1 gwr #include <sys/reboot.h>
68 1.1 gwr #include <sys/socket.h>
69 1.1 gwr #include <sys/socketvar.h>
70 1.1 gwr
71 1.1 gwr #include <net/if.h>
72 1.3 drochner #include <net/if_types.h>
73 1.1 gwr #include <net/if_arp.h> /* ARPHRD_ETHER, etc. */
74 1.1 gwr #include <net/if_dl.h>
75 1.1 gwr #include <net/if_ether.h>
76 1.1 gwr #include <net/route.h>
77 1.1 gwr
78 1.1 gwr #include <netinet/in.h>
79 1.1 gwr #include <netinet/if_inarp.h>
80 1.1 gwr
81 1.6 ross #include <nfs/rpcv2.h>
82 1.6 ross
83 1.1 gwr #include <nfs/nfsproto.h>
84 1.6 ross #include <nfs/nfs.h>
85 1.6 ross #include <nfs/nfsmount.h>
86 1.1 gwr #include <nfs/nfsdiskless.h>
87 1.1 gwr
88 1.1 gwr /*
89 1.1 gwr * There are two implementations of NFS diskless boot.
90 1.1 gwr * This implementation uses BOOTP (RFC951, RFC1048), and
91 1.1 gwr * the other uses Sun RPC/bootparams (nfs_bootparam.c).
92 1.1 gwr *
93 1.1 gwr * This method gets everything it needs with one BOOTP
94 1.1 gwr * request and reply. Note that this actually uses only
95 1.1 gwr * the old BOOTP functionality subset of DHCP. It is not
96 1.1 gwr * clear that DHCP provides any advantage over BOOTP for
97 1.1 gwr * diskless boot. DHCP allows the server to assign an IP
98 1.1 gwr * address without any a-priori knowledge of the client,
99 1.1 gwr * but we require that the server has a-priori knowledge
100 1.1 gwr * of the client so it can export our (unique) NFS root.
101 1.1 gwr * Given that the server needs a-priori knowledge about
102 1.1 gwr * the client anyway, it might as well assign a fixed IP
103 1.1 gwr * address for the client and support BOOTP.
104 1.28 perry *
105 1.1 gwr * On the other hand, disk-FULL clients may use DHCP, but
106 1.1 gwr * in that case the DHCP client should be user-mode code,
107 1.1 gwr * and has no bearing on the code below. -gwr
108 1.1 gwr */
109 1.1 gwr
110 1.1 gwr /* Begin stuff from bootp.h */
111 1.1 gwr /* Definitions from RFC951 */
112 1.1 gwr #define BP_CHADDR_LEN 16
113 1.1 gwr #define BP_SNAME_LEN 64
114 1.1 gwr #define BP_FILE_LEN 128
115 1.1 gwr #define BP_VEND_LEN 64
116 1.1 gwr struct bootp {
117 1.1 gwr u_int8_t bp_op; /* packet opcode type */
118 1.1 gwr u_int8_t bp_htype; /* hardware addr type */
119 1.1 gwr u_int8_t bp_hlen; /* hardware addr length */
120 1.1 gwr u_int8_t bp_hops; /* gateway hops */
121 1.1 gwr u_int32_t bp_xid; /* transaction ID */
122 1.1 gwr u_int16_t bp_secs; /* seconds since boot began */
123 1.1 gwr u_int16_t bp_flags; /* RFC1532 broadcast, etc. */
124 1.1 gwr struct in_addr bp_ciaddr; /* client IP address */
125 1.1 gwr struct in_addr bp_yiaddr; /* 'your' IP address */
126 1.1 gwr struct in_addr bp_siaddr; /* server IP address */
127 1.1 gwr struct in_addr bp_giaddr; /* gateway IP address */
128 1.1 gwr u_int8_t bp_chaddr[BP_CHADDR_LEN]; /* client hardware address */
129 1.1 gwr char bp_sname[BP_SNAME_LEN]; /* server host name */
130 1.1 gwr char bp_file[BP_FILE_LEN]; /* boot file name */
131 1.1 gwr u_int8_t bp_vend[BP_VEND_LEN]; /* RFC1048 options */
132 1.1 gwr /*
133 1.1 gwr * Note that BOOTP packets are allowed to be longer
134 1.1 gwr * (see RFC 1532 sect. 2.1) and common practice is to
135 1.1 gwr * allow the option data in bp_vend to extend into the
136 1.1 gwr * additional space provided in longer packets.
137 1.1 gwr */
138 1.1 gwr };
139 1.1 gwr
140 1.1 gwr #define IPPORT_BOOTPS 67
141 1.1 gwr #define IPPORT_BOOTPC 68
142 1.1 gwr
143 1.1 gwr #define BOOTREQUEST 1
144 1.1 gwr #define BOOTREPLY 2
145 1.1 gwr
146 1.1 gwr /*
147 1.1 gwr * Is this available from the sockaddr_dl somehow?
148 1.1 gwr * Perhaps (struct arphdr)->ar_hrd = ARPHRD_ETHER?
149 1.1 gwr * The interface has ->if_type but not the ARP fmt.
150 1.1 gwr */
151 1.15 gmcgarry #define HTYPE_ETHERNET 1
152 1.15 gmcgarry #define HTYPE_IEEE802 6
153 1.1 gwr
154 1.1 gwr /*
155 1.1 gwr * Vendor magic cookie (v_magic) for RFC1048
156 1.1 gwr */
157 1.1 gwr static const u_int8_t vm_rfc1048[4] = { 99, 130, 83, 99 };
158 1.1 gwr
159 1.1 gwr /*
160 1.1 gwr * Tag values used to specify what information is being supplied in
161 1.1 gwr * the vendor (options) data area of the packet.
162 1.1 gwr */
163 1.1 gwr /* RFC 1048 */
164 1.1 gwr #define TAG_END ((unsigned char) 255)
165 1.1 gwr #define TAG_PAD ((unsigned char) 0)
166 1.1 gwr #define TAG_SUBNET_MASK ((unsigned char) 1)
167 1.1 gwr #define TAG_TIME_OFFSET ((unsigned char) 2)
168 1.1 gwr #define TAG_GATEWAY ((unsigned char) 3)
169 1.1 gwr #define TAG_TIME_SERVER ((unsigned char) 4)
170 1.1 gwr #define TAG_NAME_SERVER ((unsigned char) 5)
171 1.1 gwr #define TAG_DOMAIN_SERVER ((unsigned char) 6)
172 1.1 gwr #define TAG_LOG_SERVER ((unsigned char) 7)
173 1.1 gwr #define TAG_COOKIE_SERVER ((unsigned char) 8)
174 1.1 gwr #define TAG_LPR_SERVER ((unsigned char) 9)
175 1.1 gwr #define TAG_IMPRESS_SERVER ((unsigned char) 10)
176 1.1 gwr #define TAG_RLP_SERVER ((unsigned char) 11)
177 1.1 gwr #define TAG_HOST_NAME ((unsigned char) 12)
178 1.1 gwr #define TAG_BOOT_SIZE ((unsigned char) 13)
179 1.1 gwr /* RFC 1395 */
180 1.1 gwr #define TAG_DUMP_FILE ((unsigned char) 14)
181 1.1 gwr #define TAG_DOMAIN_NAME ((unsigned char) 15)
182 1.1 gwr #define TAG_SWAP_SERVER ((unsigned char) 16)
183 1.1 gwr #define TAG_ROOT_PATH ((unsigned char) 17)
184 1.1 gwr /* End of stuff from bootp.h */
185 1.1 gwr
186 1.2 drochner #ifdef NFS_BOOT_DHCP
187 1.2 drochner #define TAG_REQ_ADDR ((unsigned char) 50)
188 1.2 drochner #define TAG_LEASETIME ((unsigned char) 51)
189 1.2 drochner #define TAG_OVERLOAD ((unsigned char) 52)
190 1.2 drochner #define TAG_DHCP_MSGTYPE ((unsigned char) 53)
191 1.2 drochner #define TAG_SERVERID ((unsigned char) 54)
192 1.2 drochner #define TAG_PARAM_REQ ((unsigned char) 55)
193 1.2 drochner #define TAG_MSG ((unsigned char) 56)
194 1.2 drochner #define TAG_MAXSIZE ((unsigned char) 57)
195 1.2 drochner #define TAG_T1 ((unsigned char) 58)
196 1.2 drochner #define TAG_T2 ((unsigned char) 59)
197 1.2 drochner #define TAG_CLASSID ((unsigned char) 60)
198 1.2 drochner #define TAG_CLIENTID ((unsigned char) 61)
199 1.2 drochner #endif
200 1.2 drochner
201 1.2 drochner #ifdef NFS_BOOT_DHCP
202 1.2 drochner #define DHCPDISCOVER 1
203 1.2 drochner #define DHCPOFFER 2
204 1.2 drochner #define DHCPREQUEST 3
205 1.2 drochner #define DHCPDECLINE 4
206 1.2 drochner #define DHCPACK 5
207 1.2 drochner #define DHCPNAK 6
208 1.2 drochner #define DHCPRELEASE 7
209 1.2 drochner #endif
210 1.1 gwr
211 1.2 drochner #ifdef NFS_BOOT_DHCP
212 1.2 drochner #define BOOTP_SIZE_MAX (sizeof(struct bootp)+312-64)
213 1.2 drochner #else
214 1.1 gwr /*
215 1.1 gwr * The "extended" size is somewhat arbitrary, but is
216 1.1 gwr * constrained by the maximum message size specified
217 1.1 gwr * by RFC1533 (567 total). This value increases the
218 1.1 gwr * space for options from 64 bytes to 256 bytes.
219 1.1 gwr */
220 1.2 drochner #define BOOTP_SIZE_MAX (sizeof(struct bootp)+256-64)
221 1.2 drochner #endif
222 1.1 gwr #define BOOTP_SIZE_MIN (sizeof(struct bootp))
223 1.1 gwr
224 1.1 gwr /* Convenience macro */
225 1.1 gwr #define INTOHL(ina) ((u_int32_t)ntohl((ina).s_addr))
226 1.1 gwr
227 1.29 christos static int bootpc_call __P((struct nfs_diskless *, struct lwp *));
228 1.2 drochner static void bootp_extract __P((struct bootp *, int, struct nfs_diskless *));
229 1.1 gwr
230 1.30 christos #ifdef DEBUG_NFS_BOOT_DHCP
231 1.30 christos #define DPRINTF(s) printf s
232 1.1 gwr #else
233 1.30 christos #define DPRINTF(s)
234 1.1 gwr #endif
235 1.1 gwr
236 1.1 gwr
237 1.1 gwr /*
238 1.1 gwr * Get our boot parameters using BOOTP.
239 1.1 gwr */
240 1.1 gwr int
241 1.29 christos nfs_bootdhcp(nd, lwp)
242 1.1 gwr struct nfs_diskless *nd;
243 1.29 christos struct lwp *lwp;
244 1.1 gwr {
245 1.11 drochner struct ifnet *ifp = nd->nd_ifp;
246 1.1 gwr int error;
247 1.1 gwr
248 1.1 gwr /*
249 1.1 gwr * Do enough of ifconfig(8) so that the chosen interface
250 1.1 gwr * can talk to the servers. Use address zero for now.
251 1.1 gwr */
252 1.29 christos error = nfs_boot_setaddress(ifp, lwp, INADDR_ANY, INADDR_ANY,
253 1.11 drochner INADDR_BROADCAST);
254 1.1 gwr if (error) {
255 1.1 gwr printf("nfs_boot: set ifaddr zero, error=%d\n", error);
256 1.11 drochner return (error);
257 1.1 gwr }
258 1.1 gwr
259 1.1 gwr /* This function call does the real send/recv work. */
260 1.29 christos error = bootpc_call(nd, lwp);
261 1.11 drochner
262 1.1 gwr /* Get rid of the temporary (zero) IP address. */
263 1.29 christos (void) nfs_boot_deladdress(ifp, lwp, INADDR_ANY);
264 1.11 drochner
265 1.1 gwr /* NOW we can test the error from bootpc_call. */
266 1.1 gwr if (error)
267 1.1 gwr goto out;
268 1.1 gwr
269 1.1 gwr /*
270 1.1 gwr * Do ifconfig with our real IP address and mask.
271 1.1 gwr */
272 1.29 christos error = nfs_boot_setaddress(ifp, lwp, nd->nd_myip.s_addr,
273 1.11 drochner nd->nd_mask.s_addr, INADDR_ANY);
274 1.1 gwr if (error) {
275 1.1 gwr printf("nfs_boot: set ifaddr real, error=%d\n", error);
276 1.1 gwr goto out;
277 1.1 gwr }
278 1.1 gwr
279 1.34 manu #ifdef TFTPROOT
280 1.1 gwr out:
281 1.34 manu #endif
282 1.11 drochner if (error) {
283 1.29 christos (void) nfs_boot_ifupdown(ifp, lwp, 0);
284 1.11 drochner nfs_boot_flushrt(ifp);
285 1.11 drochner }
286 1.1 gwr return (error);
287 1.1 gwr }
288 1.1 gwr
289 1.2 drochner struct bootpcontext {
290 1.2 drochner int xid;
291 1.2 drochner u_char *haddr;
292 1.2 drochner u_char halen;
293 1.2 drochner struct bootp *replybuf;
294 1.2 drochner int replylen;
295 1.2 drochner #ifdef NFS_BOOT_DHCP
296 1.2 drochner char expected_dhcpmsgtype, dhcp_ok;
297 1.2 drochner struct in_addr dhcp_serverip;
298 1.2 drochner #endif
299 1.2 drochner };
300 1.2 drochner
301 1.2 drochner static int bootpset __P((struct mbuf*, void*, int));
302 1.2 drochner static int bootpcheck __P((struct mbuf*, void*));
303 1.2 drochner
304 1.7 drochner static int
305 1.32 yamt bootpset(struct mbuf *m, void *context, int waited)
306 1.2 drochner {
307 1.2 drochner struct bootp *bootp;
308 1.2 drochner
309 1.2 drochner /* we know it's contigous (in 1 mbuf cluster) */
310 1.2 drochner bootp = mtod(m, struct bootp*);
311 1.2 drochner
312 1.2 drochner bootp->bp_secs = htons(waited);
313 1.2 drochner
314 1.7 drochner return (0);
315 1.2 drochner }
316 1.2 drochner
317 1.7 drochner static int
318 1.7 drochner bootpcheck(m, context)
319 1.7 drochner struct mbuf *m;
320 1.7 drochner void *context;
321 1.2 drochner {
322 1.2 drochner struct bootp *bootp;
323 1.2 drochner struct bootpcontext *bpc = context;
324 1.2 drochner u_int tag, len;
325 1.2 drochner u_char *p, *limit;
326 1.2 drochner
327 1.2 drochner /*
328 1.2 drochner * Is this a valid reply?
329 1.2 drochner */
330 1.2 drochner if (m->m_pkthdr.len < BOOTP_SIZE_MIN) {
331 1.30 christos DPRINTF(("bootpcheck: short packet %d < %d\n", m->m_pkthdr.len,
332 1.30 christos BOOTP_SIZE_MIN));
333 1.7 drochner return (-1);
334 1.2 drochner }
335 1.2 drochner if (m->m_pkthdr.len > BOOTP_SIZE_MAX) {
336 1.30 christos DPRINTF(("bootpcheck: long packet %d > %d\n", m->m_pkthdr.len,
337 1.30 christos BOOTP_SIZE_MAX));
338 1.7 drochner return (-1);
339 1.2 drochner }
340 1.2 drochner
341 1.2 drochner /*
342 1.2 drochner * don't make first checks more expensive than necessary
343 1.2 drochner */
344 1.20 simonb if (m->m_len < offsetof(struct bootp, bp_sname)) {
345 1.20 simonb m = m_pullup(m, offsetof(struct bootp, bp_sname));
346 1.30 christos if (m == NULL) {
347 1.30 christos DPRINTF(("bootpcheck: m_pullup failed\n"));
348 1.7 drochner return (-1);
349 1.30 christos }
350 1.2 drochner }
351 1.2 drochner bootp = mtod(m, struct bootp*);
352 1.2 drochner
353 1.2 drochner if (bootp->bp_op != BOOTREPLY) {
354 1.30 christos DPRINTF(("bootpcheck: op %d is not reply\n", bootp->bp_op));
355 1.7 drochner return (-1);
356 1.2 drochner }
357 1.2 drochner if (bootp->bp_hlen != bpc->halen) {
358 1.30 christos DPRINTF(("bootpcheck: hlen %d != %d\n", bootp->bp_hlen,
359 1.30 christos bpc->halen));
360 1.7 drochner return (-1);
361 1.2 drochner }
362 1.8 perry if (memcmp(bootp->bp_chaddr, bpc->haddr, bpc->halen)) {
363 1.30 christos #ifdef DEBUG_NFS_BOOT_DHCP
364 1.30 christos char bp_chaddr[3 * bpc->halen], haddr[3 * bpc->halen];
365 1.30 christos #endif
366 1.30 christos DPRINTF(("bootpcheck: incorrect hwaddr %s != %s\n",
367 1.30 christos ether_snprintf(bp_chaddr, sizeof(bp_chaddr),
368 1.30 christos bootp->bp_chaddr),
369 1.30 christos ether_snprintf(haddr, sizeof(haddr), bpc->haddr)));
370 1.7 drochner return (-1);
371 1.2 drochner }
372 1.2 drochner if (bootp->bp_xid != bpc->xid) {
373 1.30 christos DPRINTF(("bootpcheck: xid %d != %d\n", bootp->bp_xid,
374 1.30 christos bpc->xid));
375 1.7 drochner return (-1);
376 1.2 drochner }
377 1.2 drochner
378 1.2 drochner /*
379 1.2 drochner * OK, it's worth to look deeper.
380 1.2 drochner * We copy the mbuf into a flat buffer here because
381 1.2 drochner * m_pullup() is a bit limited for this purpose
382 1.2 drochner * (doesn't allocate a cluster if necessary).
383 1.2 drochner */
384 1.2 drochner bpc->replylen = m->m_pkthdr.len;
385 1.33 christos m_copydata(m, 0, bpc->replylen, (void *)bpc->replybuf);
386 1.2 drochner bootp = bpc->replybuf;
387 1.2 drochner
388 1.2 drochner /*
389 1.7 drochner * Check if the IP address we get looks correct.
390 1.7 drochner * (DHCP servers can send junk to unknown clients.)
391 1.7 drochner * XXX more checks might be needed
392 1.7 drochner */
393 1.7 drochner if (bootp->bp_yiaddr.s_addr == INADDR_ANY ||
394 1.7 drochner bootp->bp_yiaddr.s_addr == INADDR_BROADCAST) {
395 1.12 drochner printf("nfs_boot: wrong IP addr %s",
396 1.12 drochner inet_ntoa(bootp->bp_yiaddr));
397 1.7 drochner goto warn;
398 1.7 drochner }
399 1.7 drochner
400 1.7 drochner /*
401 1.2 drochner * Check the vendor data.
402 1.2 drochner */
403 1.8 perry if (memcmp(bootp->bp_vend, vm_rfc1048, 4)) {
404 1.7 drochner printf("nfs_boot: reply missing options");
405 1.7 drochner goto warn;
406 1.2 drochner }
407 1.2 drochner p = &bootp->bp_vend[4];
408 1.2 drochner limit = ((char*)bootp) + bpc->replylen;
409 1.2 drochner while (p < limit) {
410 1.2 drochner tag = *p++;
411 1.2 drochner if (tag == TAG_END)
412 1.2 drochner break;
413 1.2 drochner if (tag == TAG_PAD)
414 1.2 drochner continue;
415 1.2 drochner len = *p++;
416 1.2 drochner if ((p + len) > limit) {
417 1.7 drochner printf("nfs_boot: option %d too long", tag);
418 1.7 drochner goto warn;
419 1.2 drochner }
420 1.2 drochner switch (tag) {
421 1.2 drochner #ifdef NFS_BOOT_DHCP
422 1.19 thorpej case TAG_DHCP_MSGTYPE:
423 1.2 drochner if (*p != bpc->expected_dhcpmsgtype)
424 1.7 drochner return (-1);
425 1.2 drochner bpc->dhcp_ok = 1;
426 1.2 drochner break;
427 1.19 thorpej case TAG_SERVERID:
428 1.8 perry memcpy(&bpc->dhcp_serverip.s_addr, p,
429 1.2 drochner sizeof(bpc->dhcp_serverip.s_addr));
430 1.2 drochner break;
431 1.2 drochner #endif
432 1.19 thorpej default:
433 1.2 drochner break;
434 1.2 drochner }
435 1.2 drochner p += len;
436 1.2 drochner }
437 1.7 drochner return (0);
438 1.7 drochner
439 1.7 drochner warn:
440 1.12 drochner printf(" (bad reply from %s)\n", inet_ntoa(bootp->bp_siaddr));
441 1.7 drochner return (-1);
442 1.2 drochner }
443 1.2 drochner
444 1.1 gwr static int
445 1.29 christos bootpc_call(nd, lwp)
446 1.1 gwr struct nfs_diskless *nd;
447 1.29 christos struct lwp *lwp;
448 1.1 gwr {
449 1.11 drochner struct socket *so;
450 1.11 drochner struct ifnet *ifp = nd->nd_ifp;
451 1.1 gwr static u_int32_t xid = ~0xFF;
452 1.2 drochner struct bootp *bootp; /* request */
453 1.1 gwr struct mbuf *m, *nam;
454 1.1 gwr struct sockaddr_in *sin;
455 1.2 drochner int error;
456 1.1 gwr u_char *haddr;
457 1.1 gwr u_char hafmt, halen;
458 1.2 drochner struct bootpcontext bpc;
459 1.19 thorpej #ifdef NFS_BOOT_DHCP
460 1.19 thorpej char vci[64];
461 1.19 thorpej int vcilen;
462 1.19 thorpej #endif
463 1.1 gwr
464 1.29 christos error = socreate(AF_INET, &so, SOCK_DGRAM, 0, lwp);
465 1.11 drochner if (error) {
466 1.11 drochner printf("bootp: socreate, error=%d\n", error);
467 1.11 drochner return (error);
468 1.11 drochner }
469 1.11 drochner
470 1.1 gwr /*
471 1.1 gwr * Initialize to NULL anything that will hold an allocation,
472 1.1 gwr * and free each at the end if not null.
473 1.1 gwr */
474 1.2 drochner bpc.replybuf = NULL;
475 1.1 gwr m = nam = NULL;
476 1.1 gwr
477 1.1 gwr /* Record our H/W (Ethernet) address. */
478 1.1 gwr { struct sockaddr_dl *sdl = ifp->if_sadl;
479 1.3 drochner switch (sdl->sdl_type) {
480 1.15 gmcgarry case IFT_ISO88025:
481 1.15 gmcgarry hafmt = HTYPE_IEEE802;
482 1.15 gmcgarry break;
483 1.3 drochner case IFT_ETHER:
484 1.3 drochner case IFT_FDDI:
485 1.3 drochner hafmt = HTYPE_ETHERNET;
486 1.3 drochner break;
487 1.3 drochner default:
488 1.3 drochner printf("bootp: unsupported interface type %d\n",
489 1.3 drochner sdl->sdl_type);
490 1.3 drochner error = EINVAL;
491 1.3 drochner goto out;
492 1.3 drochner }
493 1.1 gwr halen = sdl->sdl_alen;
494 1.1 gwr haddr = (unsigned char *)LLADDR(sdl);
495 1.1 gwr }
496 1.1 gwr
497 1.1 gwr /*
498 1.1 gwr * Skip the route table when sending on this socket.
499 1.1 gwr * If this is not done, ip_output finds the loopback
500 1.1 gwr * interface (why?) and then fails because broadcast
501 1.1 gwr * is not supported on that interface...
502 1.1 gwr */
503 1.1 gwr { int32_t *opt;
504 1.1 gwr m = m_get(M_WAIT, MT_SOOPTS);
505 1.1 gwr opt = mtod(m, int32_t *);
506 1.1 gwr m->m_len = sizeof(*opt);
507 1.1 gwr *opt = 1;
508 1.1 gwr error = sosetopt(so, SOL_SOCKET, SO_DONTROUTE, m);
509 1.1 gwr m = NULL; /* was consumed */
510 1.1 gwr }
511 1.1 gwr if (error) {
512 1.30 christos DPRINTF(("bootpc_call: SO_DONTROUTE failed %d\n", error));
513 1.1 gwr goto out;
514 1.1 gwr }
515 1.1 gwr
516 1.1 gwr /* Enable broadcast. */
517 1.2 drochner if ((error = nfs_boot_enbroadcast(so))) {
518 1.30 christos DPRINTF(("bootpc_call: SO_BROADCAST failed %d\n", error));
519 1.21 drochner goto out;
520 1.21 drochner }
521 1.21 drochner
522 1.21 drochner /*
523 1.21 drochner * Set some TTL so we can boot through routers.
524 1.21 drochner * Real BOOTP forwarding agents don't need this; they obey "bp_hops"
525 1.21 drochner * and set "bp_giaddr", thus rewrite the packet anyway.
526 1.21 drochner * The "helper-address" feature of some popular router vendor seems
527 1.21 drochner * to do simple IP forwarding and drops packets with (ip_ttl == 1).
528 1.21 drochner */
529 1.21 drochner { u_char *opt;
530 1.21 drochner m = m_get(M_WAIT, MT_SOOPTS);
531 1.21 drochner opt = mtod(m, u_char *);
532 1.21 drochner m->m_len = sizeof(*opt);
533 1.21 drochner *opt = 7;
534 1.21 drochner error = sosetopt(so, IPPROTO_IP, IP_MULTICAST_TTL, m);
535 1.21 drochner m = NULL; /* was consumed */
536 1.21 drochner }
537 1.21 drochner if (error) {
538 1.30 christos DPRINTF(("bootpc_call: IP_MULTICAST_TTL failed %d\n", error));
539 1.1 gwr goto out;
540 1.1 gwr }
541 1.1 gwr
542 1.1 gwr /* Set the receive timeout for the socket. */
543 1.2 drochner if ((error = nfs_boot_setrecvtimo(so))) {
544 1.30 christos DPRINTF(("bootpc_call: SO_RCVTIMEO failed %d\n", error));
545 1.1 gwr goto out;
546 1.1 gwr }
547 1.1 gwr
548 1.1 gwr /*
549 1.1 gwr * Bind the local endpoint to a bootp client port.
550 1.1 gwr */
551 1.29 christos if ((error = nfs_boot_sobind_ipport(so, IPPORT_BOOTPC, lwp))) {
552 1.30 christos DPRINTF(("bootpc_call: bind failed %d\n", error));
553 1.1 gwr goto out;
554 1.1 gwr }
555 1.1 gwr
556 1.1 gwr /*
557 1.1 gwr * Setup socket address for the server.
558 1.1 gwr */
559 1.1 gwr nam = m_get(M_WAIT, MT_SONAME);
560 1.1 gwr sin = mtod(nam, struct sockaddr_in *);
561 1.1 gwr sin->sin_len = nam->m_len = sizeof(*sin);
562 1.1 gwr sin->sin_family = AF_INET;
563 1.1 gwr sin->sin_addr.s_addr = INADDR_BROADCAST;
564 1.1 gwr sin->sin_port = htons(IPPORT_BOOTPS);
565 1.1 gwr
566 1.1 gwr /*
567 1.2 drochner * Allocate buffer used for request
568 1.1 gwr */
569 1.2 drochner m = m_gethdr(M_WAIT, MT_DATA);
570 1.22 matt m_clget(m, M_WAIT);
571 1.2 drochner bootp = mtod(m, struct bootp*);
572 1.2 drochner m->m_pkthdr.len = m->m_len = BOOTP_SIZE_MAX;
573 1.2 drochner m->m_pkthdr.rcvif = NULL;
574 1.1 gwr
575 1.1 gwr /*
576 1.2 drochner * Build the BOOTP reqest message.
577 1.1 gwr * Note: xid is host order! (opaque to server)
578 1.1 gwr */
579 1.33 christos memset((void *)bootp, 0, BOOTP_SIZE_MAX);
580 1.1 gwr bootp->bp_op = BOOTREQUEST;
581 1.1 gwr bootp->bp_htype = hafmt;
582 1.1 gwr bootp->bp_hlen = halen; /* Hardware address length */
583 1.1 gwr bootp->bp_xid = ++xid;
584 1.8 perry memcpy(bootp->bp_chaddr, haddr, halen);
585 1.16 drochner #ifdef NFS_BOOT_BOOTP_REQFILE
586 1.16 drochner strncpy(bootp->bp_file, NFS_BOOT_BOOTP_REQFILE, sizeof(bootp->bp_file));
587 1.16 drochner #endif
588 1.1 gwr /* Fill-in the vendor data. */
589 1.8 perry memcpy(bootp->bp_vend, vm_rfc1048, 4);
590 1.2 drochner #ifdef NFS_BOOT_DHCP
591 1.2 drochner bootp->bp_vend[4] = TAG_DHCP_MSGTYPE;
592 1.2 drochner bootp->bp_vend[5] = 1;
593 1.2 drochner bootp->bp_vend[6] = DHCPDISCOVER;
594 1.19 thorpej /*
595 1.19 thorpej * Insert a NetBSD Vendor Class Identifier option.
596 1.19 thorpej */
597 1.25 itojun snprintf(vci, sizeof(vci), "%s:%s:kernel:%s", ostype, MACHINE,
598 1.25 itojun osrelease);
599 1.19 thorpej vcilen = strlen(vci);
600 1.19 thorpej bootp->bp_vend[7] = TAG_CLASSID;
601 1.19 thorpej bootp->bp_vend[8] = vcilen;
602 1.19 thorpej memcpy(&bootp->bp_vend[9], vci, vcilen);
603 1.19 thorpej bootp->bp_vend[9 + vcilen] = TAG_END;
604 1.2 drochner #else
605 1.1 gwr bootp->bp_vend[4] = TAG_END;
606 1.2 drochner #endif
607 1.2 drochner
608 1.2 drochner bpc.xid = xid;
609 1.2 drochner bpc.haddr = haddr;
610 1.2 drochner bpc.halen = halen;
611 1.2 drochner bpc.replybuf = malloc(BOOTP_SIZE_MAX, M_DEVBUF, M_WAITOK);
612 1.2 drochner if (bpc.replybuf == NULL)
613 1.2 drochner panic("nfs_boot: malloc reply buf");
614 1.2 drochner #ifdef NFS_BOOT_DHCP
615 1.2 drochner bpc.expected_dhcpmsgtype = DHCPOFFER;
616 1.2 drochner bpc.dhcp_ok = 0;
617 1.2 drochner #endif
618 1.1 gwr
619 1.2 drochner error = nfs_boot_sendrecv(so, nam, bootpset, m,
620 1.29 christos bootpcheck, 0, 0, &bpc, lwp);
621 1.2 drochner if (error)
622 1.1 gwr goto out;
623 1.2 drochner
624 1.2 drochner #ifdef NFS_BOOT_DHCP
625 1.2 drochner if (bpc.dhcp_ok) {
626 1.2 drochner u_int32_t leasetime;
627 1.2 drochner bootp->bp_vend[6] = DHCPREQUEST;
628 1.2 drochner bootp->bp_vend[7] = TAG_REQ_ADDR;
629 1.2 drochner bootp->bp_vend[8] = 4;
630 1.8 perry memcpy(&bootp->bp_vend[9], &bpc.replybuf->bp_yiaddr, 4);
631 1.2 drochner bootp->bp_vend[13] = TAG_SERVERID;
632 1.2 drochner bootp->bp_vend[14] = 4;
633 1.8 perry memcpy(&bootp->bp_vend[15], &bpc.dhcp_serverip.s_addr, 4);
634 1.2 drochner bootp->bp_vend[19] = TAG_LEASETIME;
635 1.2 drochner bootp->bp_vend[20] = 4;
636 1.2 drochner leasetime = htonl(300);
637 1.8 perry memcpy(&bootp->bp_vend[21], &leasetime, 4);
638 1.19 thorpej bootp->bp_vend[25] = TAG_CLASSID;
639 1.19 thorpej bootp->bp_vend[26] = vcilen;
640 1.19 thorpej memcpy(&bootp->bp_vend[27], vci, vcilen);
641 1.19 thorpej bootp->bp_vend[27 + vcilen] = TAG_END;
642 1.2 drochner
643 1.2 drochner bpc.expected_dhcpmsgtype = DHCPACK;
644 1.2 drochner
645 1.2 drochner error = nfs_boot_sendrecv(so, nam, bootpset, m,
646 1.29 christos bootpcheck, 0, 0, &bpc, lwp);
647 1.2 drochner if (error)
648 1.2 drochner goto out;
649 1.1 gwr }
650 1.2 drochner #endif
651 1.1 gwr
652 1.1 gwr /*
653 1.2 drochner * bootpcheck() has copied the receive mbuf into
654 1.2 drochner * the buffer at bpc.replybuf.
655 1.1 gwr */
656 1.7 drochner #ifdef NFS_BOOT_DHCP
657 1.17 kim printf("nfs_boot: %s next-server: %s\n",
658 1.7 drochner (bpc.dhcp_ok ? "DHCP" : "BOOTP"),
659 1.7 drochner #else
660 1.17 kim printf("nfs_boot: BOOTP next-server: %s\n",
661 1.7 drochner #endif
662 1.12 drochner inet_ntoa(bpc.replybuf->bp_siaddr));
663 1.7 drochner
664 1.2 drochner bootp_extract(bpc.replybuf, bpc.replylen, nd);
665 1.2 drochner
666 1.2 drochner out:
667 1.2 drochner if (bpc.replybuf)
668 1.2 drochner free(bpc.replybuf, M_DEVBUF);
669 1.2 drochner if (m)
670 1.2 drochner m_freem(m);
671 1.2 drochner if (nam)
672 1.2 drochner m_freem(nam);
673 1.11 drochner soclose(so);
674 1.2 drochner return (error);
675 1.2 drochner }
676 1.1 gwr
677 1.7 drochner static void
678 1.7 drochner bootp_extract(bootp, replylen, nd)
679 1.2 drochner struct bootp *bootp;
680 1.2 drochner int replylen;
681 1.2 drochner struct nfs_diskless *nd;
682 1.2 drochner {
683 1.2 drochner struct sockaddr_in *sin;
684 1.2 drochner struct in_addr netmask;
685 1.2 drochner struct in_addr gateway;
686 1.2 drochner struct in_addr rootserver;
687 1.2 drochner char *myname; /* my hostname */
688 1.2 drochner char *mydomain; /* my domainname */
689 1.2 drochner char *rootpath;
690 1.2 drochner int mynamelen;
691 1.2 drochner int mydomainlen;
692 1.2 drochner int rootpathlen;
693 1.13 enami int overloaded;
694 1.2 drochner u_int tag, len;
695 1.2 drochner u_char *p, *limit;
696 1.1 gwr
697 1.2 drochner /* Default these to "unspecified". */
698 1.2 drochner netmask.s_addr = 0;
699 1.2 drochner gateway.s_addr = 0;
700 1.2 drochner mydomain = myname = rootpath = NULL;
701 1.2 drochner mydomainlen = mynamelen = rootpathlen = 0;
702 1.34 manu
703 1.2 drochner /* default root server to bootp next-server */
704 1.2 drochner rootserver = bootp->bp_siaddr;
705 1.13 enami /* assume that server name field is not overloaded by default */
706 1.13 enami overloaded = 0;
707 1.2 drochner
708 1.2 drochner p = &bootp->bp_vend[4];
709 1.2 drochner limit = ((char*)bootp) + replylen;
710 1.2 drochner while (p < limit) {
711 1.2 drochner tag = *p++;
712 1.2 drochner if (tag == TAG_END)
713 1.2 drochner break;
714 1.2 drochner if (tag == TAG_PAD)
715 1.1 gwr continue;
716 1.2 drochner len = *p++;
717 1.7 drochner #if 0 /* already done in bootpcheck() */
718 1.2 drochner if ((p + len) > limit) {
719 1.2 drochner printf("nfs_boot: option %d too long\n", tag);
720 1.2 drochner break;
721 1.2 drochner }
722 1.7 drochner #endif
723 1.2 drochner switch (tag) {
724 1.2 drochner case TAG_SUBNET_MASK:
725 1.8 perry memcpy(&netmask, p, 4);
726 1.2 drochner break;
727 1.2 drochner case TAG_GATEWAY:
728 1.2 drochner /* Routers */
729 1.8 perry memcpy(&gateway, p, 4);
730 1.2 drochner break;
731 1.2 drochner case TAG_HOST_NAME:
732 1.2 drochner if (len >= sizeof(hostname)) {
733 1.10 thorpej printf("nfs_boot: host name >= %lu bytes",
734 1.10 thorpej (u_long)sizeof(hostname));
735 1.1 gwr break;
736 1.2 drochner }
737 1.2 drochner myname = p;
738 1.2 drochner mynamelen = len;
739 1.2 drochner break;
740 1.2 drochner case TAG_DOMAIN_NAME:
741 1.2 drochner if (len >= sizeof(domainname)) {
742 1.10 thorpej printf("nfs_boot: domain name >= %lu bytes",
743 1.10 thorpej (u_long)sizeof(domainname));
744 1.1 gwr break;
745 1.1 gwr }
746 1.2 drochner mydomain = p;
747 1.2 drochner mydomainlen = len;
748 1.2 drochner break;
749 1.2 drochner case TAG_ROOT_PATH:
750 1.2 drochner /* Leave some room for the server name. */
751 1.2 drochner if (len >= (MNAMELEN-10)) {
752 1.2 drochner printf("nfs_boot: rootpath >=%d bytes",
753 1.2 drochner (MNAMELEN-10));
754 1.1 gwr break;
755 1.1 gwr }
756 1.2 drochner rootpath = p;
757 1.2 drochner rootpathlen = len;
758 1.2 drochner break;
759 1.2 drochner case TAG_SWAP_SERVER:
760 1.2 drochner /* override NFS server address */
761 1.8 perry memcpy(&rootserver, p, 4);
762 1.2 drochner break;
763 1.13 enami #ifdef NFS_BOOT_DHCP
764 1.13 enami case TAG_OVERLOAD:
765 1.13 enami if (len > 0 && ((*p & 0x02) != 0))
766 1.13 enami /*
767 1.13 enami * The server name field in the dhcp packet
768 1.13 enami * is overloaded and we can't find server
769 1.13 enami * name there.
770 1.13 enami */
771 1.13 enami overloaded = 1;
772 1.13 enami break;
773 1.13 enami #endif
774 1.2 drochner default:
775 1.2 drochner break;
776 1.1 gwr }
777 1.2 drochner p += len;
778 1.1 gwr }
779 1.1 gwr
780 1.1 gwr /*
781 1.1 gwr * Store and print network config info.
782 1.1 gwr */
783 1.1 gwr if (myname) {
784 1.1 gwr myname[mynamelen] = '\0';
785 1.1 gwr strncpy(hostname, myname, sizeof(hostname));
786 1.1 gwr hostnamelen = mynamelen;
787 1.1 gwr printf("nfs_boot: my_name=%s\n", hostname);
788 1.1 gwr }
789 1.1 gwr if (mydomain) {
790 1.1 gwr mydomain[mydomainlen] = '\0';
791 1.1 gwr strncpy(domainname, mydomain, sizeof(domainname));
792 1.1 gwr domainnamelen = mydomainlen;
793 1.1 gwr printf("nfs_boot: my_domain=%s\n", domainname);
794 1.1 gwr }
795 1.1 gwr nd->nd_myip = bootp->bp_yiaddr;
796 1.1 gwr if (nd->nd_myip.s_addr)
797 1.12 drochner printf("nfs_boot: my_addr=%s\n", inet_ntoa(nd->nd_myip));
798 1.1 gwr nd->nd_mask = netmask;
799 1.1 gwr if (nd->nd_mask.s_addr)
800 1.12 drochner printf("nfs_boot: my_mask=%s\n", inet_ntoa(nd->nd_mask));
801 1.1 gwr nd->nd_gwip = gateway;
802 1.1 gwr if (nd->nd_gwip.s_addr)
803 1.12 drochner printf("nfs_boot: gateway=%s\n", inet_ntoa(nd->nd_gwip));
804 1.1 gwr
805 1.1 gwr /*
806 1.1 gwr * Store the information about our NFS root mount.
807 1.1 gwr * The caller will print it, so be silent here.
808 1.1 gwr */
809 1.1 gwr {
810 1.1 gwr struct nfs_dlmount *ndm = &nd->nd_root;
811 1.1 gwr
812 1.1 gwr /* Server IP address. */
813 1.1 gwr sin = (struct sockaddr_in *) &ndm->ndm_saddr;
814 1.33 christos memset((void *)sin, 0, sizeof(*sin));
815 1.1 gwr sin->sin_len = sizeof(*sin);
816 1.1 gwr sin->sin_family = AF_INET;
817 1.2 drochner sin->sin_addr = rootserver;
818 1.1 gwr /* Server name. */
819 1.13 enami if (!overloaded && bootp->bp_sname[0] != 0 &&
820 1.13 enami !memcmp(&rootserver, &bootp->bp_siaddr,
821 1.2 drochner sizeof(struct in_addr))) {
822 1.2 drochner /* standard root server, we have the name */
823 1.2 drochner strncpy(ndm->ndm_host, bootp->bp_sname, BP_SNAME_LEN-1);
824 1.2 drochner } else {
825 1.1 gwr /* Show the server IP address numerically. */
826 1.12 drochner strncpy(ndm->ndm_host, inet_ntoa(rootserver),
827 1.12 drochner BP_SNAME_LEN-1);
828 1.1 gwr }
829 1.2 drochner len = strlen(ndm->ndm_host);
830 1.2 drochner if (rootpath &&
831 1.2 drochner len + 1 + rootpathlen + 1 <= sizeof(ndm->ndm_host)) {
832 1.2 drochner ndm->ndm_host[len++] = ':';
833 1.2 drochner strncpy(ndm->ndm_host + len,
834 1.2 drochner rootpath, rootpathlen);
835 1.2 drochner ndm->ndm_host[len + rootpathlen] = '\0';
836 1.2 drochner } /* else: upper layer will handle error */
837 1.1 gwr }
838 1.34 manu
839 1.34 manu #ifdef TFTPROOT
840 1.34 manu #if BP_FILE_LEN > MNAMELEN
841 1.34 manu #define BOOTFILELEN MNAMELEN
842 1.34 manu #else
843 1.34 manu #define BOOTFILELEN BP_FILE_LEN
844 1.34 manu #endif
845 1.34 manu strncpy(nd->nd_bootfile, bootp->bp_file, BOOTFILELEN);
846 1.34 manu nd->nd_bootfile[BOOTFILELEN - 1] = '\0';
847 1.34 manu #undef BOOTFILELEN
848 1.34 manu #endif /* TFTPROOT */
849 1.1 gwr }
850