[NET]: Make /proc/net per network namespace
[safe/jmp/linux-2.6] / net / ipv4 / ipconfig.c
1 /*
2  *  $Id: ipconfig.c,v 1.46 2002/02/01 22:01:04 davem Exp $
3  *
4  *  Automatic Configuration of IP -- use DHCP, BOOTP, RARP, or
5  *  user-supplied information to configure own IP address and routes.
6  *
7  *  Copyright (C) 1996-1998 Martin Mares <mj@atrey.karlin.mff.cuni.cz>
8  *
9  *  Derived from network configuration code in fs/nfs/nfsroot.c,
10  *  originally Copyright (C) 1995, 1996 Gero Kuhlmann and me.
11  *
12  *  BOOTP rewritten to construct and analyse packets itself instead
13  *  of misusing the IP layer. num_bugs_causing_wrong_arp_replies--;
14  *                                           -- MJ, December 1998
15  *
16  *  Fixed ip_auto_config_setup calling at startup in the new "Linker Magic"
17  *  initialization scheme.
18  *      - Arnaldo Carvalho de Melo <acme@conectiva.com.br>, 08/11/1999
19  *
20  *  DHCP support added.  To users this looks like a whole separate
21  *  protocol, but we know it's just a bag on the side of BOOTP.
22  *              -- Chip Salzenberg <chip@valinux.com>, May 2000
23  *
24  *  Ported DHCP support from 2.2.16 to 2.4.0-test4
25  *              -- Eric Biederman <ebiederman@lnxi.com>, 30 Aug 2000
26  *
27  *  Merged changes from 2.2.19 into 2.4.3
28  *              -- Eric Biederman <ebiederman@lnxi.com>, 22 April Aug 2001
29  *
30  *  Multiple Nameservers in /proc/net/pnp
31  *              --  Josef Siemes <jsiemes@web.de>, Aug 2002
32  */
33
34 #include <linux/types.h>
35 #include <linux/string.h>
36 #include <linux/kernel.h>
37 #include <linux/jiffies.h>
38 #include <linux/random.h>
39 #include <linux/init.h>
40 #include <linux/utsname.h>
41 #include <linux/in.h>
42 #include <linux/if.h>
43 #include <linux/inet.h>
44 #include <linux/inetdevice.h>
45 #include <linux/netdevice.h>
46 #include <linux/if_arp.h>
47 #include <linux/skbuff.h>
48 #include <linux/ip.h>
49 #include <linux/socket.h>
50 #include <linux/route.h>
51 #include <linux/udp.h>
52 #include <linux/proc_fs.h>
53 #include <linux/seq_file.h>
54 #include <linux/major.h>
55 #include <linux/root_dev.h>
56 #include <linux/delay.h>
57 #include <linux/nfs_fs.h>
58 #include <net/net_namespace.h>
59 #include <net/arp.h>
60 #include <net/ip.h>
61 #include <net/ipconfig.h>
62 #include <net/route.h>
63
64 #include <asm/uaccess.h>
65 #include <net/checksum.h>
66 #include <asm/processor.h>
67
68 /* Define this to allow debugging output */
69 #undef IPCONFIG_DEBUG
70
71 #ifdef IPCONFIG_DEBUG
72 #define DBG(x) printk x
73 #else
74 #define DBG(x) do { } while(0)
75 #endif
76
77 #if defined(CONFIG_IP_PNP_DHCP)
78 #define IPCONFIG_DHCP
79 #endif
80 #if defined(CONFIG_IP_PNP_BOOTP) || defined(CONFIG_IP_PNP_DHCP)
81 #define IPCONFIG_BOOTP
82 #endif
83 #if defined(CONFIG_IP_PNP_RARP)
84 #define IPCONFIG_RARP
85 #endif
86 #if defined(IPCONFIG_BOOTP) || defined(IPCONFIG_RARP)
87 #define IPCONFIG_DYNAMIC
88 #endif
89
90 /* Define the friendly delay before and after opening net devices */
91 #define CONF_PRE_OPEN           500     /* Before opening: 1/2 second */
92 #define CONF_POST_OPEN          1       /* After opening: 1 second */
93
94 /* Define the timeout for waiting for a DHCP/BOOTP/RARP reply */
95 #define CONF_OPEN_RETRIES       2       /* (Re)open devices twice */
96 #define CONF_SEND_RETRIES       6       /* Send six requests per open */
97 #define CONF_INTER_TIMEOUT      (HZ/2)  /* Inter-device timeout: 1/2 second */
98 #define CONF_BASE_TIMEOUT       (HZ*2)  /* Initial timeout: 2 seconds */
99 #define CONF_TIMEOUT_RANDOM     (HZ)    /* Maximum amount of randomization */
100 #define CONF_TIMEOUT_MULT       *7/4    /* Rate of timeout growth */
101 #define CONF_TIMEOUT_MAX        (HZ*30) /* Maximum allowed timeout */
102 #define CONF_NAMESERVERS_MAX   3       /* Maximum number of nameservers
103                                            - '3' from resolv.h */
104
105 #define NONE __constant_htonl(INADDR_NONE)
106
107 /*
108  * Public IP configuration
109  */
110
111 /* This is used by platforms which might be able to set the ipconfig
112  * variables using firmware environment vars.  If this is set, it will
113  * ignore such firmware variables.
114  */
115 int ic_set_manually __initdata = 0;             /* IPconfig parameters set manually */
116
117 static int ic_enable __initdata = 0;            /* IP config enabled? */
118
119 /* Protocol choice */
120 int ic_proto_enabled __initdata = 0
121 #ifdef IPCONFIG_BOOTP
122                         | IC_BOOTP
123 #endif
124 #ifdef CONFIG_IP_PNP_DHCP
125                         | IC_USE_DHCP
126 #endif
127 #ifdef IPCONFIG_RARP
128                         | IC_RARP
129 #endif
130                         ;
131
132 static int ic_host_name_set __initdata = 0;     /* Host name set by us? */
133
134 __be32 ic_myaddr = NONE;                /* My IP address */
135 static __be32 ic_netmask = NONE;        /* Netmask for local subnet */
136 __be32 ic_gateway = NONE;       /* Gateway IP address */
137
138 __be32 ic_servaddr = NONE;      /* Boot server IP address */
139
140 __be32 root_server_addr = NONE; /* Address of NFS server */
141 u8 root_server_path[256] = { 0, };      /* Path to mount as root */
142
143 /* Persistent data: */
144
145 static int ic_proto_used;                       /* Protocol used, if any */
146 static __be32 ic_nameservers[CONF_NAMESERVERS_MAX]; /* DNS Server IP addresses */
147 static u8 ic_domain[64];                /* DNS (not NIS) domain name */
148
149 /*
150  * Private state.
151  */
152
153 /* Name of user-selected boot device */
154 static char user_dev_name[IFNAMSIZ] __initdata = { 0, };
155
156 /* Protocols supported by available interfaces */
157 static int ic_proto_have_if __initdata = 0;
158
159 #ifdef IPCONFIG_DYNAMIC
160 static DEFINE_SPINLOCK(ic_recv_lock);
161 static volatile int ic_got_reply __initdata = 0;    /* Proto(s) that replied */
162 #endif
163 #ifdef IPCONFIG_DHCP
164 static int ic_dhcp_msgtype __initdata = 0;      /* DHCP msg type received */
165 #endif
166
167
168 /*
169  *      Network devices
170  */
171
172 struct ic_device {
173         struct ic_device *next;
174         struct net_device *dev;
175         unsigned short flags;
176         short able;
177         __be32 xid;
178 };
179
180 static struct ic_device *ic_first_dev __initdata = NULL;/* List of open device */
181 static struct net_device *ic_dev __initdata = NULL;     /* Selected device */
182
183 static int __init ic_open_devs(void)
184 {
185         struct ic_device *d, **last;
186         struct net_device *dev;
187         unsigned short oflags;
188
189         last = &ic_first_dev;
190         rtnl_lock();
191
192         /* bring loopback device up first */
193         if (dev_change_flags(&loopback_dev, loopback_dev.flags | IFF_UP) < 0)
194                 printk(KERN_ERR "IP-Config: Failed to open %s\n", loopback_dev.name);
195
196         for_each_netdev(dev) {
197                 if (dev == &loopback_dev)
198                         continue;
199                 if (user_dev_name[0] ? !strcmp(dev->name, user_dev_name) :
200                     (!(dev->flags & IFF_LOOPBACK) &&
201                      (dev->flags & (IFF_POINTOPOINT|IFF_BROADCAST)) &&
202                      strncmp(dev->name, "dummy", 5))) {
203                         int able = 0;
204                         if (dev->mtu >= 364)
205                                 able |= IC_BOOTP;
206                         else
207                                 printk(KERN_WARNING "DHCP/BOOTP: Ignoring device %s, MTU %d too small", dev->name, dev->mtu);
208                         if (!(dev->flags & IFF_NOARP))
209                                 able |= IC_RARP;
210                         able &= ic_proto_enabled;
211                         if (ic_proto_enabled && !able)
212                                 continue;
213                         oflags = dev->flags;
214                         if (dev_change_flags(dev, oflags | IFF_UP) < 0) {
215                                 printk(KERN_ERR "IP-Config: Failed to open %s\n", dev->name);
216                                 continue;
217                         }
218                         if (!(d = kmalloc(sizeof(struct ic_device), GFP_KERNEL))) {
219                                 rtnl_unlock();
220                                 return -1;
221                         }
222                         d->dev = dev;
223                         *last = d;
224                         last = &d->next;
225                         d->flags = oflags;
226                         d->able = able;
227                         if (able & IC_BOOTP)
228                                 get_random_bytes(&d->xid, sizeof(__be32));
229                         else
230                                 d->xid = 0;
231                         ic_proto_have_if |= able;
232                         DBG(("IP-Config: %s UP (able=%d, xid=%08x)\n",
233                                 dev->name, able, d->xid));
234                 }
235         }
236         rtnl_unlock();
237
238         *last = NULL;
239
240         if (!ic_first_dev) {
241                 if (user_dev_name[0])
242                         printk(KERN_ERR "IP-Config: Device `%s' not found.\n", user_dev_name);
243                 else
244                         printk(KERN_ERR "IP-Config: No network devices available.\n");
245                 return -1;
246         }
247         return 0;
248 }
249
250 static void __init ic_close_devs(void)
251 {
252         struct ic_device *d, *next;
253         struct net_device *dev;
254
255         rtnl_lock();
256         next = ic_first_dev;
257         while ((d = next)) {
258                 next = d->next;
259                 dev = d->dev;
260                 if (dev != ic_dev) {
261                         DBG(("IP-Config: Downing %s\n", dev->name));
262                         dev_change_flags(dev, d->flags);
263                 }
264                 kfree(d);
265         }
266         rtnl_unlock();
267 }
268
269 /*
270  *      Interface to various network functions.
271  */
272
273 static inline void
274 set_sockaddr(struct sockaddr_in *sin, __be32 addr, __be16 port)
275 {
276         sin->sin_family = AF_INET;
277         sin->sin_addr.s_addr = addr;
278         sin->sin_port = port;
279 }
280
281 static int __init ic_dev_ioctl(unsigned int cmd, struct ifreq *arg)
282 {
283         int res;
284
285         mm_segment_t oldfs = get_fs();
286         set_fs(get_ds());
287         res = devinet_ioctl(cmd, (struct ifreq __user *) arg);
288         set_fs(oldfs);
289         return res;
290 }
291
292 static int __init ic_route_ioctl(unsigned int cmd, struct rtentry *arg)
293 {
294         int res;
295
296         mm_segment_t oldfs = get_fs();
297         set_fs(get_ds());
298         res = ip_rt_ioctl(cmd, (void __user *) arg);
299         set_fs(oldfs);
300         return res;
301 }
302
303 /*
304  *      Set up interface addresses and routes.
305  */
306
307 static int __init ic_setup_if(void)
308 {
309         struct ifreq ir;
310         struct sockaddr_in *sin = (void *) &ir.ifr_ifru.ifru_addr;
311         int err;
312
313         memset(&ir, 0, sizeof(ir));
314         strcpy(ir.ifr_ifrn.ifrn_name, ic_dev->name);
315         set_sockaddr(sin, ic_myaddr, 0);
316         if ((err = ic_dev_ioctl(SIOCSIFADDR, &ir)) < 0) {
317                 printk(KERN_ERR "IP-Config: Unable to set interface address (%d).\n", err);
318                 return -1;
319         }
320         set_sockaddr(sin, ic_netmask, 0);
321         if ((err = ic_dev_ioctl(SIOCSIFNETMASK, &ir)) < 0) {
322                 printk(KERN_ERR "IP-Config: Unable to set interface netmask (%d).\n", err);
323                 return -1;
324         }
325         set_sockaddr(sin, ic_myaddr | ~ic_netmask, 0);
326         if ((err = ic_dev_ioctl(SIOCSIFBRDADDR, &ir)) < 0) {
327                 printk(KERN_ERR "IP-Config: Unable to set interface broadcast address (%d).\n", err);
328                 return -1;
329         }
330         return 0;
331 }
332
333 static int __init ic_setup_routes(void)
334 {
335         /* No need to setup device routes, only the default route... */
336
337         if (ic_gateway != NONE) {
338                 struct rtentry rm;
339                 int err;
340
341                 memset(&rm, 0, sizeof(rm));
342                 if ((ic_gateway ^ ic_myaddr) & ic_netmask) {
343                         printk(KERN_ERR "IP-Config: Gateway not on directly connected network.\n");
344                         return -1;
345                 }
346                 set_sockaddr((struct sockaddr_in *) &rm.rt_dst, 0, 0);
347                 set_sockaddr((struct sockaddr_in *) &rm.rt_genmask, 0, 0);
348                 set_sockaddr((struct sockaddr_in *) &rm.rt_gateway, ic_gateway, 0);
349                 rm.rt_flags = RTF_UP | RTF_GATEWAY;
350                 if ((err = ic_route_ioctl(SIOCADDRT, &rm)) < 0) {
351                         printk(KERN_ERR "IP-Config: Cannot add default route (%d).\n", err);
352                         return -1;
353                 }
354         }
355
356         return 0;
357 }
358
359 /*
360  *      Fill in default values for all missing parameters.
361  */
362
363 static int __init ic_defaults(void)
364 {
365         /*
366          *      At this point we have no userspace running so need not
367          *      claim locks on system_utsname
368          */
369
370         if (!ic_host_name_set)
371                 sprintf(init_utsname()->nodename, "%u.%u.%u.%u", NIPQUAD(ic_myaddr));
372
373         if (root_server_addr == NONE)
374                 root_server_addr = ic_servaddr;
375
376         if (ic_netmask == NONE) {
377                 if (IN_CLASSA(ntohl(ic_myaddr)))
378                         ic_netmask = htonl(IN_CLASSA_NET);
379                 else if (IN_CLASSB(ntohl(ic_myaddr)))
380                         ic_netmask = htonl(IN_CLASSB_NET);
381                 else if (IN_CLASSC(ntohl(ic_myaddr)))
382                         ic_netmask = htonl(IN_CLASSC_NET);
383                 else {
384                         printk(KERN_ERR "IP-Config: Unable to guess netmask for address %u.%u.%u.%u\n",
385                                 NIPQUAD(ic_myaddr));
386                         return -1;
387                 }
388                 printk("IP-Config: Guessing netmask %u.%u.%u.%u\n", NIPQUAD(ic_netmask));
389         }
390
391         return 0;
392 }
393
394 /*
395  *      RARP support.
396  */
397
398 #ifdef IPCONFIG_RARP
399
400 static int ic_rarp_recv(struct sk_buff *skb, struct net_device *dev, struct packet_type *pt, struct net_device *orig_dev);
401
402 static struct packet_type rarp_packet_type __initdata = {
403         .type = __constant_htons(ETH_P_RARP),
404         .func = ic_rarp_recv,
405 };
406
407 static inline void ic_rarp_init(void)
408 {
409         dev_add_pack(&rarp_packet_type);
410 }
411
412 static inline void ic_rarp_cleanup(void)
413 {
414         dev_remove_pack(&rarp_packet_type);
415 }
416
417 /*
418  *  Process received RARP packet.
419  */
420 static int __init
421 ic_rarp_recv(struct sk_buff *skb, struct net_device *dev, struct packet_type *pt, struct net_device *orig_dev)
422 {
423         struct arphdr *rarp;
424         unsigned char *rarp_ptr;
425         __be32 sip, tip;
426         unsigned char *sha, *tha;               /* s for "source", t for "target" */
427         struct ic_device *d;
428
429         if ((skb = skb_share_check(skb, GFP_ATOMIC)) == NULL)
430                 return NET_RX_DROP;
431
432         if (!pskb_may_pull(skb, sizeof(struct arphdr)))
433                 goto drop;
434
435         /* Basic sanity checks can be done without the lock.  */
436         rarp = (struct arphdr *)skb_transport_header(skb);
437
438         /* If this test doesn't pass, it's not IP, or we should
439          * ignore it anyway.
440          */
441         if (rarp->ar_hln != dev->addr_len || dev->type != ntohs(rarp->ar_hrd))
442                 goto drop;
443
444         /* If it's not a RARP reply, delete it. */
445         if (rarp->ar_op != htons(ARPOP_RREPLY))
446                 goto drop;
447
448         /* If it's not Ethernet, delete it. */
449         if (rarp->ar_pro != htons(ETH_P_IP))
450                 goto drop;
451
452         if (!pskb_may_pull(skb,
453                            sizeof(struct arphdr) +
454                            (2 * dev->addr_len) +
455                            (2 * 4)))
456                 goto drop;
457
458         /* OK, it is all there and looks valid, process... */
459         rarp = (struct arphdr *)skb_transport_header(skb);
460         rarp_ptr = (unsigned char *) (rarp + 1);
461
462         /* One reply at a time, please. */
463         spin_lock(&ic_recv_lock);
464
465         /* If we already have a reply, just drop the packet */
466         if (ic_got_reply)
467                 goto drop_unlock;
468
469         /* Find the ic_device that the packet arrived on */
470         d = ic_first_dev;
471         while (d && d->dev != dev)
472                 d = d->next;
473         if (!d)
474                 goto drop_unlock;       /* should never happen */
475
476         /* Extract variable-width fields */
477         sha = rarp_ptr;
478         rarp_ptr += dev->addr_len;
479         memcpy(&sip, rarp_ptr, 4);
480         rarp_ptr += 4;
481         tha = rarp_ptr;
482         rarp_ptr += dev->addr_len;
483         memcpy(&tip, rarp_ptr, 4);
484
485         /* Discard packets which are not meant for us. */
486         if (memcmp(tha, dev->dev_addr, dev->addr_len))
487                 goto drop_unlock;
488
489         /* Discard packets which are not from specified server. */
490         if (ic_servaddr != NONE && ic_servaddr != sip)
491                 goto drop_unlock;
492
493         /* We have a winner! */
494         ic_dev = dev;
495         if (ic_myaddr == NONE)
496                 ic_myaddr = tip;
497         ic_servaddr = sip;
498         ic_got_reply = IC_RARP;
499
500 drop_unlock:
501         /* Show's over.  Nothing to see here.  */
502         spin_unlock(&ic_recv_lock);
503
504 drop:
505         /* Throw the packet out. */
506         kfree_skb(skb);
507         return 0;
508 }
509
510
511 /*
512  *  Send RARP request packet over a single interface.
513  */
514 static void __init ic_rarp_send_if(struct ic_device *d)
515 {
516         struct net_device *dev = d->dev;
517         arp_send(ARPOP_RREQUEST, ETH_P_RARP, 0, dev, 0, NULL,
518                  dev->dev_addr, dev->dev_addr);
519 }
520 #endif
521
522 /*
523  *      DHCP/BOOTP support.
524  */
525
526 #ifdef IPCONFIG_BOOTP
527
528 struct bootp_pkt {              /* BOOTP packet format */
529         struct iphdr iph;       /* IP header */
530         struct udphdr udph;     /* UDP header */
531         u8 op;                  /* 1=request, 2=reply */
532         u8 htype;               /* HW address type */
533         u8 hlen;                /* HW address length */
534         u8 hops;                /* Used only by gateways */
535         __be32 xid;             /* Transaction ID */
536         __be16 secs;            /* Seconds since we started */
537         __be16 flags;           /* Just what it says */
538         __be32 client_ip;               /* Client's IP address if known */
539         __be32 your_ip;         /* Assigned IP address */
540         __be32 server_ip;               /* (Next, e.g. NFS) Server's IP address */
541         __be32 relay_ip;                /* IP address of BOOTP relay */
542         u8 hw_addr[16];         /* Client's HW address */
543         u8 serv_name[64];       /* Server host name */
544         u8 boot_file[128];      /* Name of boot file */
545         u8 exten[312];          /* DHCP options / BOOTP vendor extensions */
546 };
547
548 /* packet ops */
549 #define BOOTP_REQUEST   1
550 #define BOOTP_REPLY     2
551
552 /* DHCP message types */
553 #define DHCPDISCOVER    1
554 #define DHCPOFFER       2
555 #define DHCPREQUEST     3
556 #define DHCPDECLINE     4
557 #define DHCPACK         5
558 #define DHCPNAK         6
559 #define DHCPRELEASE     7
560 #define DHCPINFORM      8
561
562 static int ic_bootp_recv(struct sk_buff *skb, struct net_device *dev, struct packet_type *pt, struct net_device *orig_dev);
563
564 static struct packet_type bootp_packet_type __initdata = {
565         .type = __constant_htons(ETH_P_IP),
566         .func = ic_bootp_recv,
567 };
568
569
570 /*
571  *  Initialize DHCP/BOOTP extension fields in the request.
572  */
573
574 static const u8 ic_bootp_cookie[4] = { 99, 130, 83, 99 };
575
576 #ifdef IPCONFIG_DHCP
577
578 static void __init
579 ic_dhcp_init_options(u8 *options)
580 {
581         u8 mt = ((ic_servaddr == NONE)
582                  ? DHCPDISCOVER : DHCPREQUEST);
583         u8 *e = options;
584
585 #ifdef IPCONFIG_DEBUG
586         printk("DHCP: Sending message type %d\n", mt);
587 #endif
588
589         memcpy(e, ic_bootp_cookie, 4);  /* RFC1048 Magic Cookie */
590         e += 4;
591
592         *e++ = 53;              /* DHCP message type */
593         *e++ = 1;
594         *e++ = mt;
595
596         if (mt == DHCPREQUEST) {
597                 *e++ = 54;      /* Server ID (IP address) */
598                 *e++ = 4;
599                 memcpy(e, &ic_servaddr, 4);
600                 e += 4;
601
602                 *e++ = 50;      /* Requested IP address */
603                 *e++ = 4;
604                 memcpy(e, &ic_myaddr, 4);
605                 e += 4;
606         }
607
608         /* always? */
609         {
610                 static const u8 ic_req_params[] = {
611                         1,      /* Subnet mask */
612                         3,      /* Default gateway */
613                         6,      /* DNS server */
614                         12,     /* Host name */
615                         15,     /* Domain name */
616                         17,     /* Boot path */
617                         40,     /* NIS domain name */
618                 };
619
620                 *e++ = 55;      /* Parameter request list */
621                 *e++ = sizeof(ic_req_params);
622                 memcpy(e, ic_req_params, sizeof(ic_req_params));
623                 e += sizeof(ic_req_params);
624         }
625
626         *e++ = 255;     /* End of the list */
627 }
628
629 #endif /* IPCONFIG_DHCP */
630
631 static void __init ic_bootp_init_ext(u8 *e)
632 {
633         memcpy(e, ic_bootp_cookie, 4);  /* RFC1048 Magic Cookie */
634         e += 4;
635         *e++ = 1;               /* Subnet mask request */
636         *e++ = 4;
637         e += 4;
638         *e++ = 3;               /* Default gateway request */
639         *e++ = 4;
640         e += 4;
641         *e++ = 5;               /* Name server request */
642         *e++ = 8;
643         e += 8;
644         *e++ = 12;              /* Host name request */
645         *e++ = 32;
646         e += 32;
647         *e++ = 40;              /* NIS Domain name request */
648         *e++ = 32;
649         e += 32;
650         *e++ = 17;              /* Boot path */
651         *e++ = 40;
652         e += 40;
653
654         *e++ = 57;              /* set extension buffer size for reply */
655         *e++ = 2;
656         *e++ = 1;               /* 128+236+8+20+14, see dhcpd sources */
657         *e++ = 150;
658
659         *e++ = 255;             /* End of the list */
660 }
661
662
663 /*
664  *  Initialize the DHCP/BOOTP mechanism.
665  */
666 static inline void ic_bootp_init(void)
667 {
668         int i;
669
670         for (i = 0; i < CONF_NAMESERVERS_MAX; i++)
671                 ic_nameservers[i] = NONE;
672
673         dev_add_pack(&bootp_packet_type);
674 }
675
676
677 /*
678  *  DHCP/BOOTP cleanup.
679  */
680 static inline void ic_bootp_cleanup(void)
681 {
682         dev_remove_pack(&bootp_packet_type);
683 }
684
685
686 /*
687  *  Send DHCP/BOOTP request to single interface.
688  */
689 static void __init ic_bootp_send_if(struct ic_device *d, unsigned long jiffies_diff)
690 {
691         struct net_device *dev = d->dev;
692         struct sk_buff *skb;
693         struct bootp_pkt *b;
694         int hh_len = LL_RESERVED_SPACE(dev);
695         struct iphdr *h;
696
697         /* Allocate packet */
698         skb = alloc_skb(sizeof(struct bootp_pkt) + hh_len + 15, GFP_KERNEL);
699         if (!skb)
700                 return;
701         skb_reserve(skb, hh_len);
702         b = (struct bootp_pkt *) skb_put(skb, sizeof(struct bootp_pkt));
703         memset(b, 0, sizeof(struct bootp_pkt));
704
705         /* Construct IP header */
706         skb_reset_network_header(skb);
707         h = ip_hdr(skb);
708         h->version = 4;
709         h->ihl = 5;
710         h->tot_len = htons(sizeof(struct bootp_pkt));
711         h->frag_off = htons(IP_DF);
712         h->ttl = 64;
713         h->protocol = IPPROTO_UDP;
714         h->daddr = htonl(INADDR_BROADCAST);
715         h->check = ip_fast_csum((unsigned char *) h, h->ihl);
716
717         /* Construct UDP header */
718         b->udph.source = htons(68);
719         b->udph.dest = htons(67);
720         b->udph.len = htons(sizeof(struct bootp_pkt) - sizeof(struct iphdr));
721         /* UDP checksum not calculated -- explicitly allowed in BOOTP RFC */
722
723         /* Construct DHCP/BOOTP header */
724         b->op = BOOTP_REQUEST;
725         if (dev->type < 256) /* check for false types */
726                 b->htype = dev->type;
727         else if (dev->type == ARPHRD_IEEE802_TR) /* fix for token ring */
728                 b->htype = ARPHRD_IEEE802;
729         else if (dev->type == ARPHRD_FDDI)
730                 b->htype = ARPHRD_ETHER;
731         else {
732                 printk("Unknown ARP type 0x%04x for device %s\n", dev->type, dev->name);
733                 b->htype = dev->type; /* can cause undefined behavior */
734         }
735         b->hlen = dev->addr_len;
736         b->your_ip = NONE;
737         b->server_ip = NONE;
738         memcpy(b->hw_addr, dev->dev_addr, dev->addr_len);
739         b->secs = htons(jiffies_diff / HZ);
740         b->xid = d->xid;
741
742         /* add DHCP options or BOOTP extensions */
743 #ifdef IPCONFIG_DHCP
744         if (ic_proto_enabled & IC_USE_DHCP)
745                 ic_dhcp_init_options(b->exten);
746         else
747 #endif
748                 ic_bootp_init_ext(b->exten);
749
750         /* Chain packet down the line... */
751         skb->dev = dev;
752         skb->protocol = htons(ETH_P_IP);
753         if ((dev->hard_header &&
754              dev->hard_header(skb, dev, ntohs(skb->protocol), dev->broadcast, dev->dev_addr, skb->len) < 0) ||
755             dev_queue_xmit(skb) < 0)
756                 printk("E");
757 }
758
759
760 /*
761  *  Copy BOOTP-supplied string if not already set.
762  */
763 static int __init ic_bootp_string(char *dest, char *src, int len, int max)
764 {
765         if (!len)
766                 return 0;
767         if (len > max-1)
768                 len = max-1;
769         memcpy(dest, src, len);
770         dest[len] = '\0';
771         return 1;
772 }
773
774
775 /*
776  *  Process BOOTP extensions.
777  */
778 static void __init ic_do_bootp_ext(u8 *ext)
779 {
780        u8 servers;
781        int i;
782
783 #ifdef IPCONFIG_DEBUG
784         u8 *c;
785
786         printk("DHCP/BOOTP: Got extension %d:",*ext);
787         for (c=ext+2; c<ext+2+ext[1]; c++)
788                 printk(" %02x", *c);
789         printk("\n");
790 #endif
791
792         switch (*ext++) {
793                 case 1:         /* Subnet mask */
794                         if (ic_netmask == NONE)
795                                 memcpy(&ic_netmask, ext+1, 4);
796                         break;
797                 case 3:         /* Default gateway */
798                         if (ic_gateway == NONE)
799                                 memcpy(&ic_gateway, ext+1, 4);
800                         break;
801                 case 6:         /* DNS server */
802                         servers= *ext/4;
803                         if (servers > CONF_NAMESERVERS_MAX)
804                                 servers = CONF_NAMESERVERS_MAX;
805                         for (i = 0; i < servers; i++) {
806                                 if (ic_nameservers[i] == NONE)
807                                         memcpy(&ic_nameservers[i], ext+1+4*i, 4);
808                         }
809                         break;
810                 case 12:        /* Host name */
811                         ic_bootp_string(utsname()->nodename, ext+1, *ext, __NEW_UTS_LEN);
812                         ic_host_name_set = 1;
813                         break;
814                 case 15:        /* Domain name (DNS) */
815                         ic_bootp_string(ic_domain, ext+1, *ext, sizeof(ic_domain));
816                         break;
817                 case 17:        /* Root path */
818                         if (!root_server_path[0])
819                                 ic_bootp_string(root_server_path, ext+1, *ext, sizeof(root_server_path));
820                         break;
821                 case 40:        /* NIS Domain name (_not_ DNS) */
822                         ic_bootp_string(utsname()->domainname, ext+1, *ext, __NEW_UTS_LEN);
823                         break;
824         }
825 }
826
827
828 /*
829  *  Receive BOOTP reply.
830  */
831 static int __init ic_bootp_recv(struct sk_buff *skb, struct net_device *dev, struct packet_type *pt, struct net_device *orig_dev)
832 {
833         struct bootp_pkt *b;
834         struct iphdr *h;
835         struct ic_device *d;
836         int len, ext_len;
837
838         /* Perform verifications before taking the lock.  */
839         if (skb->pkt_type == PACKET_OTHERHOST)
840                 goto drop;
841
842         if ((skb = skb_share_check(skb, GFP_ATOMIC)) == NULL)
843                 return NET_RX_DROP;
844
845         if (!pskb_may_pull(skb,
846                            sizeof(struct iphdr) +
847                            sizeof(struct udphdr)))
848                 goto drop;
849
850         b = (struct bootp_pkt *)skb_network_header(skb);
851         h = &b->iph;
852
853         if (h->ihl != 5 || h->version != 4 || h->protocol != IPPROTO_UDP)
854                 goto drop;
855
856         /* Fragments are not supported */
857         if (h->frag_off & htons(IP_OFFSET | IP_MF)) {
858                 if (net_ratelimit())
859                         printk(KERN_ERR "DHCP/BOOTP: Ignoring fragmented "
860                                "reply.\n");
861                 goto drop;
862         }
863
864         if (skb->len < ntohs(h->tot_len))
865                 goto drop;
866
867         if (ip_fast_csum((char *) h, h->ihl))
868                 goto drop;
869
870         if (b->udph.source != htons(67) || b->udph.dest != htons(68))
871                 goto drop;
872
873         if (ntohs(h->tot_len) < ntohs(b->udph.len) + sizeof(struct iphdr))
874                 goto drop;
875
876         len = ntohs(b->udph.len) - sizeof(struct udphdr);
877         ext_len = len - (sizeof(*b) -
878                          sizeof(struct iphdr) -
879                          sizeof(struct udphdr) -
880                          sizeof(b->exten));
881         if (ext_len < 0)
882                 goto drop;
883
884         /* Ok the front looks good, make sure we can get at the rest.  */
885         if (!pskb_may_pull(skb, skb->len))
886                 goto drop;
887
888         b = (struct bootp_pkt *)skb_network_header(skb);
889         h = &b->iph;
890
891         /* One reply at a time, please. */
892         spin_lock(&ic_recv_lock);
893
894         /* If we already have a reply, just drop the packet */
895         if (ic_got_reply)
896                 goto drop_unlock;
897
898         /* Find the ic_device that the packet arrived on */
899         d = ic_first_dev;
900         while (d && d->dev != dev)
901                 d = d->next;
902         if (!d)
903                 goto drop_unlock;  /* should never happen */
904
905         /* Is it a reply to our BOOTP request? */
906         if (b->op != BOOTP_REPLY ||
907             b->xid != d->xid) {
908                 if (net_ratelimit())
909                         printk(KERN_ERR "DHCP/BOOTP: Reply not for us, "
910                                "op[%x] xid[%x]\n",
911                                b->op, b->xid);
912                 goto drop_unlock;
913         }
914
915         /* Parse extensions */
916         if (ext_len >= 4 &&
917             !memcmp(b->exten, ic_bootp_cookie, 4)) { /* Check magic cookie */
918                 u8 *end = (u8 *) b + ntohs(b->iph.tot_len);
919                 u8 *ext;
920
921 #ifdef IPCONFIG_DHCP
922                 if (ic_proto_enabled & IC_USE_DHCP) {
923                         __be32 server_id = NONE;
924                         int mt = 0;
925
926                         ext = &b->exten[4];
927                         while (ext < end && *ext != 0xff) {
928                                 u8 *opt = ext++;
929                                 if (*opt == 0)  /* Padding */
930                                         continue;
931                                 ext += *ext + 1;
932                                 if (ext >= end)
933                                         break;
934                                 switch (*opt) {
935                                 case 53:        /* Message type */
936                                         if (opt[1])
937                                                 mt = opt[2];
938                                         break;
939                                 case 54:        /* Server ID (IP address) */
940                                         if (opt[1] >= 4)
941                                                 memcpy(&server_id, opt + 2, 4);
942                                         break;
943                                 }
944                         }
945
946 #ifdef IPCONFIG_DEBUG
947                         printk("DHCP: Got message type %d\n", mt);
948 #endif
949
950                         switch (mt) {
951                         case DHCPOFFER:
952                                 /* While in the process of accepting one offer,
953                                  * ignore all others.
954                                  */
955                                 if (ic_myaddr != NONE)
956                                         goto drop_unlock;
957
958                                 /* Let's accept that offer. */
959                                 ic_myaddr = b->your_ip;
960                                 ic_servaddr = server_id;
961 #ifdef IPCONFIG_DEBUG
962                                 printk("DHCP: Offered address %u.%u.%u.%u",
963                                        NIPQUAD(ic_myaddr));
964                                 printk(" by server %u.%u.%u.%u\n",
965                                        NIPQUAD(ic_servaddr));
966 #endif
967                                 /* The DHCP indicated server address takes
968                                  * precedence over the bootp header one if
969                                  * they are different.
970                                  */
971                                 if ((server_id != NONE) &&
972                                     (b->server_ip != server_id))
973                                         b->server_ip = ic_servaddr;
974                                 break;
975
976                         case DHCPACK:
977                                 if (memcmp(dev->dev_addr, b->hw_addr, dev->addr_len) != 0)
978                                         goto drop_unlock;
979
980                                 /* Yeah! */
981                                 break;
982
983                         default:
984                                 /* Urque.  Forget it*/
985                                 ic_myaddr = NONE;
986                                 ic_servaddr = NONE;
987                                 goto drop_unlock;
988                         }
989
990                         ic_dhcp_msgtype = mt;
991
992                 }
993 #endif /* IPCONFIG_DHCP */
994
995                 ext = &b->exten[4];
996                 while (ext < end && *ext != 0xff) {
997                         u8 *opt = ext++;
998                         if (*opt == 0)  /* Padding */
999                                 continue;
1000                         ext += *ext + 1;
1001                         if (ext < end)
1002                                 ic_do_bootp_ext(opt);
1003                 }
1004         }
1005
1006         /* We have a winner! */
1007         ic_dev = dev;
1008         ic_myaddr = b->your_ip;
1009         ic_servaddr = b->server_ip;
1010         if (ic_gateway == NONE && b->relay_ip)
1011                 ic_gateway = b->relay_ip;
1012         if (ic_nameservers[0] == NONE)
1013                 ic_nameservers[0] = ic_servaddr;
1014         ic_got_reply = IC_BOOTP;
1015
1016 drop_unlock:
1017         /* Show's over.  Nothing to see here.  */
1018         spin_unlock(&ic_recv_lock);
1019
1020 drop:
1021         /* Throw the packet out. */
1022         kfree_skb(skb);
1023
1024         return 0;
1025 }
1026
1027
1028 #endif
1029
1030
1031 /*
1032  *      Dynamic IP configuration -- DHCP, BOOTP, RARP.
1033  */
1034
1035 #ifdef IPCONFIG_DYNAMIC
1036
1037 static int __init ic_dynamic(void)
1038 {
1039         int retries;
1040         struct ic_device *d;
1041         unsigned long start_jiffies, timeout, jiff;
1042         int do_bootp = ic_proto_have_if & IC_BOOTP;
1043         int do_rarp = ic_proto_have_if & IC_RARP;
1044
1045         /*
1046          * If none of DHCP/BOOTP/RARP was selected, return with an error.
1047          * This routine gets only called when some pieces of information
1048          * are missing, and without DHCP/BOOTP/RARP we are unable to get it.
1049          */
1050         if (!ic_proto_enabled) {
1051                 printk(KERN_ERR "IP-Config: Incomplete network configuration information.\n");
1052                 return -1;
1053         }
1054
1055 #ifdef IPCONFIG_BOOTP
1056         if ((ic_proto_enabled ^ ic_proto_have_if) & IC_BOOTP)
1057                 printk(KERN_ERR "DHCP/BOOTP: No suitable device found.\n");
1058 #endif
1059 #ifdef IPCONFIG_RARP
1060         if ((ic_proto_enabled ^ ic_proto_have_if) & IC_RARP)
1061                 printk(KERN_ERR "RARP: No suitable device found.\n");
1062 #endif
1063
1064         if (!ic_proto_have_if)
1065                 /* Error message already printed */
1066                 return -1;
1067
1068         /*
1069          * Setup protocols
1070          */
1071 #ifdef IPCONFIG_BOOTP
1072         if (do_bootp)
1073                 ic_bootp_init();
1074 #endif
1075 #ifdef IPCONFIG_RARP
1076         if (do_rarp)
1077                 ic_rarp_init();
1078 #endif
1079
1080         /*
1081          * Send requests and wait, until we get an answer. This loop
1082          * seems to be a terrible waste of CPU time, but actually there is
1083          * only one process running at all, so we don't need to use any
1084          * scheduler functions.
1085          * [Actually we could now, but the nothing else running note still
1086          *  applies.. - AC]
1087          */
1088         printk(KERN_NOTICE "Sending %s%s%s requests .",
1089                do_bootp
1090                 ? ((ic_proto_enabled & IC_USE_DHCP) ? "DHCP" : "BOOTP") : "",
1091                (do_bootp && do_rarp) ? " and " : "",
1092                do_rarp ? "RARP" : "");
1093
1094         start_jiffies = jiffies;
1095         d = ic_first_dev;
1096         retries = CONF_SEND_RETRIES;
1097         get_random_bytes(&timeout, sizeof(timeout));
1098         timeout = CONF_BASE_TIMEOUT + (timeout % (unsigned) CONF_TIMEOUT_RANDOM);
1099         for (;;) {
1100 #ifdef IPCONFIG_BOOTP
1101                 if (do_bootp && (d->able & IC_BOOTP))
1102                         ic_bootp_send_if(d, jiffies - start_jiffies);
1103 #endif
1104 #ifdef IPCONFIG_RARP
1105                 if (do_rarp && (d->able & IC_RARP))
1106                         ic_rarp_send_if(d);
1107 #endif
1108
1109                 jiff = jiffies + (d->next ? CONF_INTER_TIMEOUT : timeout);
1110                 while (time_before(jiffies, jiff) && !ic_got_reply)
1111                         schedule_timeout_uninterruptible(1);
1112 #ifdef IPCONFIG_DHCP
1113                 /* DHCP isn't done until we get a DHCPACK. */
1114                 if ((ic_got_reply & IC_BOOTP)
1115                     && (ic_proto_enabled & IC_USE_DHCP)
1116                     && ic_dhcp_msgtype != DHCPACK)
1117                 {
1118                         ic_got_reply = 0;
1119                         printk(",");
1120                         continue;
1121                 }
1122 #endif /* IPCONFIG_DHCP */
1123
1124                 if (ic_got_reply) {
1125                         printk(" OK\n");
1126                         break;
1127                 }
1128
1129                 if ((d = d->next))
1130                         continue;
1131
1132                 if (! --retries) {
1133                         printk(" timed out!\n");
1134                         break;
1135                 }
1136
1137                 d = ic_first_dev;
1138
1139                 timeout = timeout CONF_TIMEOUT_MULT;
1140                 if (timeout > CONF_TIMEOUT_MAX)
1141                         timeout = CONF_TIMEOUT_MAX;
1142
1143                 printk(".");
1144         }
1145
1146 #ifdef IPCONFIG_BOOTP
1147         if (do_bootp)
1148                 ic_bootp_cleanup();
1149 #endif
1150 #ifdef IPCONFIG_RARP
1151         if (do_rarp)
1152                 ic_rarp_cleanup();
1153 #endif
1154
1155         if (!ic_got_reply) {
1156                 ic_myaddr = NONE;
1157                 return -1;
1158         }
1159
1160         printk("IP-Config: Got %s answer from %u.%u.%u.%u, ",
1161                 ((ic_got_reply & IC_RARP) ? "RARP"
1162                  : (ic_proto_enabled & IC_USE_DHCP) ? "DHCP" : "BOOTP"),
1163                 NIPQUAD(ic_servaddr));
1164         printk("my address is %u.%u.%u.%u\n", NIPQUAD(ic_myaddr));
1165
1166         return 0;
1167 }
1168
1169 #endif /* IPCONFIG_DYNAMIC */
1170
1171 #ifdef CONFIG_PROC_FS
1172
1173 static int pnp_seq_show(struct seq_file *seq, void *v)
1174 {
1175         int i;
1176
1177         if (ic_proto_used & IC_PROTO)
1178                 seq_printf(seq, "#PROTO: %s\n",
1179                            (ic_proto_used & IC_RARP) ? "RARP"
1180                            : (ic_proto_used & IC_USE_DHCP) ? "DHCP" : "BOOTP");
1181         else
1182                 seq_puts(seq, "#MANUAL\n");
1183
1184         if (ic_domain[0])
1185                 seq_printf(seq,
1186                            "domain %s\n", ic_domain);
1187         for (i = 0; i < CONF_NAMESERVERS_MAX; i++) {
1188                 if (ic_nameservers[i] != NONE)
1189                         seq_printf(seq,
1190                                    "nameserver %u.%u.%u.%u\n",
1191                                    NIPQUAD(ic_nameservers[i]));
1192         }
1193         if (ic_servaddr != NONE)
1194                 seq_printf(seq,
1195                            "bootserver %u.%u.%u.%u\n",
1196                            NIPQUAD(ic_servaddr));
1197         return 0;
1198 }
1199
1200 static int pnp_seq_open(struct inode *indoe, struct file *file)
1201 {
1202         return single_open(file, pnp_seq_show, NULL);
1203 }
1204
1205 static const struct file_operations pnp_seq_fops = {
1206         .owner          = THIS_MODULE,
1207         .open           = pnp_seq_open,
1208         .read           = seq_read,
1209         .llseek         = seq_lseek,
1210         .release        = single_release,
1211 };
1212 #endif /* CONFIG_PROC_FS */
1213
1214 /*
1215  *  Extract IP address from the parameter string if needed. Note that we
1216  *  need to have root_server_addr set _before_ IPConfig gets called as it
1217  *  can override it.
1218  */
1219 __be32 __init root_nfs_parse_addr(char *name)
1220 {
1221         __be32 addr;
1222         int octets = 0;
1223         char *cp, *cq;
1224
1225         cp = cq = name;
1226         while (octets < 4) {
1227                 while (*cp >= '0' && *cp <= '9')
1228                         cp++;
1229                 if (cp == cq || cp - cq > 3)
1230                         break;
1231                 if (*cp == '.' || octets == 3)
1232                         octets++;
1233                 if (octets < 4)
1234                         cp++;
1235                 cq = cp;
1236         }
1237         if (octets == 4 && (*cp == ':' || *cp == '\0')) {
1238                 if (*cp == ':')
1239                         *cp++ = '\0';
1240                 addr = in_aton(name);
1241                 memmove(name, cp, strlen(cp) + 1);
1242         } else
1243                 addr = NONE;
1244
1245         return addr;
1246 }
1247
1248 /*
1249  *      IP Autoconfig dispatcher.
1250  */
1251
1252 static int __init ip_auto_config(void)
1253 {
1254         __be32 addr;
1255
1256 #ifdef CONFIG_PROC_FS
1257         proc_net_fops_create(&init_net, "pnp", S_IRUGO, &pnp_seq_fops);
1258 #endif /* CONFIG_PROC_FS */
1259
1260         if (!ic_enable)
1261                 return 0;
1262
1263         DBG(("IP-Config: Entered.\n"));
1264 #ifdef IPCONFIG_DYNAMIC
1265  try_try_again:
1266 #endif
1267         /* Give hardware a chance to settle */
1268         msleep(CONF_PRE_OPEN);
1269
1270         /* Setup all network devices */
1271         if (ic_open_devs() < 0)
1272                 return -1;
1273
1274         /* Give drivers a chance to settle */
1275         ssleep(CONF_POST_OPEN);
1276
1277         /*
1278          * If the config information is insufficient (e.g., our IP address or
1279          * IP address of the boot server is missing or we have multiple network
1280          * interfaces and no default was set), use BOOTP or RARP to get the
1281          * missing values.
1282          */
1283         if (ic_myaddr == NONE ||
1284 #ifdef CONFIG_ROOT_NFS
1285             (root_server_addr == NONE
1286              && ic_servaddr == NONE
1287              && ROOT_DEV == Root_NFS) ||
1288 #endif
1289             ic_first_dev->next) {
1290 #ifdef IPCONFIG_DYNAMIC
1291
1292                 int retries = CONF_OPEN_RETRIES;
1293
1294                 if (ic_dynamic() < 0) {
1295                         ic_close_devs();
1296
1297                         /*
1298                          * I don't know why, but sometimes the
1299                          * eepro100 driver (at least) gets upset and
1300                          * doesn't work the first time it's opened.
1301                          * But then if you close it and reopen it, it
1302                          * works just fine.  So we need to try that at
1303                          * least once before giving up.
1304                          *
1305                          * Also, if the root will be NFS-mounted, we
1306                          * have nowhere to go if DHCP fails.  So we
1307                          * just have to keep trying forever.
1308                          *
1309                          *                              -- Chip
1310                          */
1311 #ifdef CONFIG_ROOT_NFS
1312                         if (ROOT_DEV ==  Root_NFS) {
1313                                 printk(KERN_ERR
1314                                         "IP-Config: Retrying forever (NFS root)...\n");
1315                                 goto try_try_again;
1316                         }
1317 #endif
1318
1319                         if (--retries) {
1320                                 printk(KERN_ERR
1321                                        "IP-Config: Reopening network devices...\n");
1322                                 goto try_try_again;
1323                         }
1324
1325                         /* Oh, well.  At least we tried. */
1326                         printk(KERN_ERR "IP-Config: Auto-configuration of network failed.\n");
1327                         return -1;
1328                 }
1329 #else /* !DYNAMIC */
1330                 printk(KERN_ERR "IP-Config: Incomplete network configuration information.\n");
1331                 ic_close_devs();
1332                 return -1;
1333 #endif /* IPCONFIG_DYNAMIC */
1334         } else {
1335                 /* Device selected manually or only one device -> use it */
1336                 ic_dev = ic_first_dev->dev;
1337         }
1338
1339         addr = root_nfs_parse_addr(root_server_path);
1340         if (root_server_addr == NONE)
1341                 root_server_addr = addr;
1342
1343         /*
1344          * Use defaults whereever applicable.
1345          */
1346         if (ic_defaults() < 0)
1347                 return -1;
1348
1349         /*
1350          * Close all network devices except the device we've
1351          * autoconfigured and set up routes.
1352          */
1353         ic_close_devs();
1354         if (ic_setup_if() < 0 || ic_setup_routes() < 0)
1355                 return -1;
1356
1357         /*
1358          * Record which protocol was actually used.
1359          */
1360 #ifdef IPCONFIG_DYNAMIC
1361         ic_proto_used = ic_got_reply | (ic_proto_enabled & IC_USE_DHCP);
1362 #endif
1363
1364 #ifndef IPCONFIG_SILENT
1365         /*
1366          * Clue in the operator.
1367          */
1368         printk("IP-Config: Complete:");
1369         printk("\n      device=%s", ic_dev->name);
1370         printk(", addr=%u.%u.%u.%u", NIPQUAD(ic_myaddr));
1371         printk(", mask=%u.%u.%u.%u", NIPQUAD(ic_netmask));
1372         printk(", gw=%u.%u.%u.%u", NIPQUAD(ic_gateway));
1373         printk(",\n     host=%s, domain=%s, nis-domain=%s",
1374                utsname()->nodename, ic_domain, utsname()->domainname);
1375         printk(",\n     bootserver=%u.%u.%u.%u", NIPQUAD(ic_servaddr));
1376         printk(", rootserver=%u.%u.%u.%u", NIPQUAD(root_server_addr));
1377         printk(", rootpath=%s", root_server_path);
1378         printk("\n");
1379 #endif /* !SILENT */
1380
1381         return 0;
1382 }
1383
1384 late_initcall(ip_auto_config);
1385
1386
1387 /*
1388  *  Decode any IP configuration options in the "ip=" or "nfsaddrs=" kernel
1389  *  command line parameter. It consists of option fields separated by colons in
1390  *  the following order:
1391  *
1392  *  <client-ip>:<server-ip>:<gw-ip>:<netmask>:<host name>:<device>:<PROTO>
1393  *
1394  *  Any of the fields can be empty which means to use a default value:
1395  *      <client-ip>     - address given by BOOTP or RARP
1396  *      <server-ip>     - address of host returning BOOTP or RARP packet
1397  *      <gw-ip>         - none, or the address returned by BOOTP
1398  *      <netmask>       - automatically determined from <client-ip>, or the
1399  *                        one returned by BOOTP
1400  *      <host name>     - <client-ip> in ASCII notation, or the name returned
1401  *                        by BOOTP
1402  *      <device>        - use all available devices
1403  *      <PROTO>:
1404  *         off|none         - don't do autoconfig at all (DEFAULT)
1405  *         on|any           - use any configured protocol
1406  *         dhcp|bootp|rarp  - use only the specified protocol
1407  *         both             - use both BOOTP and RARP (not DHCP)
1408  */
1409 static int __init ic_proto_name(char *name)
1410 {
1411         if (!strcmp(name, "on") || !strcmp(name, "any")) {
1412                 return 1;
1413         }
1414 #ifdef CONFIG_IP_PNP_DHCP
1415         else if (!strcmp(name, "dhcp")) {
1416                 ic_proto_enabled &= ~IC_RARP;
1417                 return 1;
1418         }
1419 #endif
1420 #ifdef CONFIG_IP_PNP_BOOTP
1421         else if (!strcmp(name, "bootp")) {
1422                 ic_proto_enabled &= ~(IC_RARP | IC_USE_DHCP);
1423                 return 1;
1424         }
1425 #endif
1426 #ifdef CONFIG_IP_PNP_RARP
1427         else if (!strcmp(name, "rarp")) {
1428                 ic_proto_enabled &= ~(IC_BOOTP | IC_USE_DHCP);
1429                 return 1;
1430         }
1431 #endif
1432 #ifdef IPCONFIG_DYNAMIC
1433         else if (!strcmp(name, "both")) {
1434                 ic_proto_enabled &= ~IC_USE_DHCP; /* backward compat :-( */
1435                 return 1;
1436         }
1437 #endif
1438         return 0;
1439 }
1440
1441 static int __init ip_auto_config_setup(char *addrs)
1442 {
1443         char *cp, *ip, *dp;
1444         int num = 0;
1445
1446         ic_set_manually = 1;
1447
1448         ic_enable = (*addrs &&
1449                 (strcmp(addrs, "off") != 0) &&
1450                 (strcmp(addrs, "none") != 0));
1451         if (!ic_enable)
1452                 return 1;
1453
1454         if (ic_proto_name(addrs))
1455                 return 1;
1456
1457         /* Parse the whole string */
1458         ip = addrs;
1459         while (ip && *ip) {
1460                 if ((cp = strchr(ip, ':')))
1461                         *cp++ = '\0';
1462                 if (strlen(ip) > 0) {
1463                         DBG(("IP-Config: Parameter #%d: `%s'\n", num, ip));
1464                         switch (num) {
1465                         case 0:
1466                                 if ((ic_myaddr = in_aton(ip)) == INADDR_ANY)
1467                                         ic_myaddr = NONE;
1468                                 break;
1469                         case 1:
1470                                 if ((ic_servaddr = in_aton(ip)) == INADDR_ANY)
1471                                         ic_servaddr = NONE;
1472                                 break;
1473                         case 2:
1474                                 if ((ic_gateway = in_aton(ip)) == INADDR_ANY)
1475                                         ic_gateway = NONE;
1476                                 break;
1477                         case 3:
1478                                 if ((ic_netmask = in_aton(ip)) == INADDR_ANY)
1479                                         ic_netmask = NONE;
1480                                 break;
1481                         case 4:
1482                                 if ((dp = strchr(ip, '.'))) {
1483                                         *dp++ = '\0';
1484                                         strlcpy(utsname()->domainname, dp,
1485                                                 sizeof(utsname()->domainname));
1486                                 }
1487                                 strlcpy(utsname()->nodename, ip,
1488                                         sizeof(utsname()->nodename));
1489                                 ic_host_name_set = 1;
1490                                 break;
1491                         case 5:
1492                                 strlcpy(user_dev_name, ip, sizeof(user_dev_name));
1493                                 break;
1494                         case 6:
1495                                 ic_proto_name(ip);
1496                                 break;
1497                         }
1498                 }
1499                 ip = cp;
1500                 num++;
1501         }
1502
1503         return 1;
1504 }
1505
1506 static int __init nfsaddrs_config_setup(char *addrs)
1507 {
1508         return ip_auto_config_setup(addrs);
1509 }
1510
1511 __setup("ip=", ip_auto_config_setup);
1512 __setup("nfsaddrs=", nfsaddrs_config_setup);