ndbootd.c revision 1.11.4.1       1  1.11.4.1  liamjfoy /*	$NetBSD: ndbootd.c,v 1.11.4.1 2007/07/19 14:38:15 liamjfoy Exp $	*/
      2       1.2  fredette 
      3       1.1  fredette /* ndbootd.c - the Sun Network Disk (nd) daemon: */
      4       1.1  fredette 
      5       1.1  fredette /*
      6       1.1  fredette  * Copyright (c) 2001 Matthew Fredette.  All rights reserved.
      7       1.1  fredette  *
      8       1.1  fredette  * Redistribution and use in source and binary forms, with or without
      9       1.1  fredette  * modification, are permitted provided that the following conditions
     10       1.1  fredette  * are met:
     11       1.1  fredette  *   1. Redistributions of source code must retain the above copyright
     12       1.1  fredette  *      notice, this list of conditions and the following disclaimer.
     13       1.1  fredette  *   2. Redistributions in binary form must reproduce the above copyright
     14       1.1  fredette  *      notice, this list of conditions and the following disclaimer in the
     15       1.1  fredette  *      documentation and/or other materials provided with the distribution.
     16       1.1  fredette  *   3. All advertising materials mentioning features or use of this software
     17       1.1  fredette  *      must display the following acknowledgement:
     18       1.1  fredette  *        This product includes software developed by Matthew Fredette.
     19       1.1  fredette  *   4. The name of Matthew Fredette may not be used to endorse or promote
     20       1.1  fredette  *      products derived from this software without specific prior written
     21       1.1  fredette  *      permission.
     22       1.1  fredette  *
     23       1.1  fredette  * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED
     24       1.1  fredette  * WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF
     25       1.1  fredette  * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
     26       1.1  fredette  */
     27       1.1  fredette 
     28       1.4  fredette /* <<Header: /data/home/fredette/project/THE-WEIGHT-CVS/ndbootd/ndbootd.c,v 1.9 2001/06/13 21:19:11 fredette Exp >> */
     29       1.1  fredette 
     30       1.1  fredette /*
     31       1.1  fredette  * <<Log: ndbootd.c,v >>
     32       1.4  fredette  * Revision 1.9  2001/06/13 21:19:11  fredette
     33       1.4  fredette  * (main): Don't assume that a successful, but short, read
     34       1.4  fredette  * leaves a zero in errno.  Instead, just check for the short
     35       1.4  fredette  * read by looking at the byte count that read returned.
     36       1.4  fredette  *
     37       1.3  fredette  * Revision 1.8  2001/05/23 02:35:36  fredette
     38       1.3  fredette  * Changed many debugging printfs to compile quietly on the
     39       1.3  fredette  * alpha.  Patch from Andrew Brown <atatat (at) atatdot.net>.
     40       1.3  fredette  *
     41       1.1  fredette  * Revision 1.7  2001/05/22 13:13:20  fredette
     42       1.1  fredette  * Ran indent(1) with NetBSD's KNF-approximating profile.
     43       1.1  fredette  *
     44       1.1  fredette  * Revision 1.6  2001/05/22 12:53:40  fredette
     45       1.1  fredette  * [HAVE_STRICT_ALIGNMENT]: Added code to copy packet headers
     46       1.1  fredette  * between the buffer and local variables, to satisfy
     47       1.1  fredette  * alignment constraints.
     48       1.1  fredette  *
     49       1.1  fredette  * Revision 1.5  2001/05/15 14:43:24  fredette
     50       1.1  fredette  * Now have prototypes for the allocation functions.
     51       1.1  fredette  * (main): Now handle boot blocks that aren't an integral
     52       1.1  fredette  * multiple of the block size.
     53       1.1  fredette  *
     54       1.1  fredette  * Revision 1.4  2001/05/09 20:53:38  fredette
     55       1.1  fredette  * (main): Now insert a small delay before sending each packet.
     56       1.1  fredette  * Sending packets too quickly apparently overwhelms clients.
     57       1.1  fredette  * Added new single-letter versions of all options that didn't
     58       1.1  fredette  * already have them.  Expanded some debug messages, and fixed
     59       1.1  fredette  * others to display Ethernet addresses correctly.
     60       1.1  fredette  *
     61       1.1  fredette  * Revision 1.3  2001/01/31 17:35:50  fredette
     62       1.1  fredette  * (main): Fixed various printf argument lists.
     63       1.1  fredette  *
     64       1.1  fredette  * Revision 1.2  2001/01/30 15:35:38  fredette
     65       1.1  fredette  * Now, ndbootd assembles disk images for clients on-the-fly.
     66       1.1  fredette  * Defined many new macros related to this.
     67       1.1  fredette  * (main): Added support for the --boot2 option.  Turned the
     68       1.1  fredette  * original disk-image filename into the filename of the
     69       1.1  fredette  * first-stage boot program.  Now do better multiple-client
     70       1.1  fredette  * support, especially when it comes to checking if a client
     71       1.1  fredette  * is really ours.  Now assemble client-specific disk images
     72       1.1  fredette  * on-the-fly, potentially serving each client a different
     73       1.1  fredette  * second-stage boot.
     74       1.1  fredette  *
     75       1.1  fredette  * Revision 1.1  2001/01/29 15:12:13  fredette
     76       1.1  fredette  * Added.
     77       1.1  fredette  *
     78       1.1  fredette  */
     79       1.1  fredette 
     80       1.5   thorpej #include <sys/cdefs.h>
     81       1.5   thorpej #if 0
     82       1.4  fredette static const char _ndbootd_c_rcsid[] = "<<Id: ndbootd.c,v 1.9 2001/06/13 21:19:11 fredette Exp >>";
     83       1.5   thorpej #else
     84  1.11.4.1  liamjfoy __RCSID("$NetBSD: ndbootd.c,v 1.11.4.1 2007/07/19 14:38:15 liamjfoy Exp $");
     85       1.5   thorpej #endif
     86       1.1  fredette 
     87       1.1  fredette /* includes: */
     88       1.1  fredette #include "ndbootd.h"
     89       1.1  fredette 
     90       1.1  fredette /* the number of blocks that Sun-2 PROMs load, starting from block
     91       1.1  fredette    zero: */
     92       1.1  fredette #define NDBOOTD_PROM_BLOCK_COUNT (16)
     93       1.1  fredette 
     94       1.1  fredette /* the first block number of the (dummy) Sun disklabel: */
     95       1.1  fredette #define NDBOOTD_SUNDK_BLOCK_FIRST (0)
     96       1.1  fredette 
     97       1.1  fredette /* the number of blocks in the (dummy) Sun disklabel: */
     98       1.1  fredette #define NDBOOTD_SUNDK_BLOCK_COUNT (1)
     99       1.1  fredette 
    100       1.1  fredette /* the first block number of the first-stage boot program.
    101       1.1  fredette    the first-stage boot program begins right after the (dummy)
    102       1.1  fredette    Sun disklabel: */
    103       1.1  fredette #define NDBOOTD_BOOT1_BLOCK_FIRST (NDBOOTD_SUNDK_BLOCK_FIRST + NDBOOTD_SUNDK_BLOCK_COUNT)
    104       1.1  fredette 
    105       1.1  fredette /* the number of blocks in the first-stage boot program: */
    106       1.1  fredette #define NDBOOTD_BOOT1_BLOCK_COUNT (NDBOOTD_PROM_BLOCK_COUNT - NDBOOTD_BOOT1_BLOCK_FIRST)
    107       1.1  fredette 
    108       1.1  fredette /* the first block number of any second-stage boot program.
    109       1.1  fredette    any second-stage boot program begins right after the first-stage boot program: */
    110       1.1  fredette #define NDBOOTD_BOOT2_BLOCK_FIRST (NDBOOTD_BOOT1_BLOCK_FIRST + NDBOOTD_BOOT1_BLOCK_COUNT)
    111       1.1  fredette 
    112       1.1  fredette /* this macro returns the number of bytes available in an object starting at a given offset: */
    113       1.1  fredette #define NDBOOTD_BYTES_AVAIL(block_number, byte_offset, obj_block_first, obj_block_count) \
    114       1.1  fredette   ((((ssize_t) (obj_block_count) - (ssize_t) ((block_number) - (obj_block_first))) * NDBOOT_BSIZE) - (ssize_t) (byte_offset))
    115       1.1  fredette 
    116       1.1  fredette /* this determines how long we can cache file descriptors and RARP
    117       1.1  fredette    information: */
    118       1.1  fredette #define NDBOOTD_CLIENT_TTL_SECONDS (10)
    119       1.1  fredette 
    120       1.1  fredette /* this determines how long we wait before sending a packet: */
    121       1.7   mycroft #define NDBOOTD_SEND_DELAY_NSECONDS (10000000)
    122       1.1  fredette 
    123       1.1  fredette /* this macro helps us size a struct ifreq: */
    124       1.1  fredette #ifdef HAVE_SOCKADDR_SA_LEN
    125       1.8    itojun #define SIZEOF_IFREQ(ifr) (sizeof((ifr)->ifr_name) + (ifr)->ifr_addr.sa_len)
    126       1.1  fredette #else				/* !HAVE_SOCKADDR_SA_LEN */
    127       1.8    itojun #define SIZEOF_IFREQ(ifr) (sizeof((ifr)->ifr_name) + sizeof(struct sockaddr))
    128       1.1  fredette #endif				/* !HAVE_SOCKADDR_SA_LEN */
    129       1.1  fredette 
    130       1.1  fredette /* prototypes: */
    131       1.1  fredette void *ndbootd_malloc _NDBOOTD_P((size_t));
    132       1.1  fredette void *ndbootd_malloc0 _NDBOOTD_P((size_t));
    133       1.1  fredette void *ndbootd_memdup _NDBOOTD_P((void *, size_t));
    134       1.1  fredette 
    135       1.1  fredette /* globals: */
    136       1.1  fredette const char *_ndbootd_argv0;
    137       1.1  fredette #ifdef _NDBOOTD_DO_DEBUG
    138       1.1  fredette int _ndbootd_debug;
    139       1.1  fredette #endif				/* _NDBOOTD_DO_DEBUG */
    140       1.1  fredette 
    141       1.1  fredette /* allocators: */
    142       1.1  fredette void *
    143       1.1  fredette ndbootd_malloc(size_t size)
    144       1.1  fredette {
    145       1.1  fredette 	void *buffer;
    146       1.1  fredette 	if ((buffer = malloc(size)) == NULL) {
    147       1.1  fredette 		abort();
    148       1.1  fredette 	}
    149       1.1  fredette 	return (buffer);
    150       1.1  fredette }
    151       1.1  fredette void *
    152       1.1  fredette ndbootd_malloc0(size_t size)
    153       1.1  fredette {
    154       1.1  fredette 	void *buffer;
    155       1.1  fredette 	buffer = ndbootd_malloc(size);
    156       1.1  fredette 	memset(buffer, 0, size);
    157       1.1  fredette 	return (buffer);
    158       1.1  fredette }
    159       1.1  fredette void *
    160       1.1  fredette ndbootd_memdup(void *buffer0, size_t size)
    161       1.1  fredette {
    162       1.1  fredette 	void *buffer1;
    163       1.1  fredette 	buffer1 = ndbootd_malloc(size);
    164       1.1  fredette 	memcpy(buffer1, buffer0, size);
    165       1.1  fredette 	return (buffer1);
    166       1.1  fredette }
    167       1.1  fredette #define ndbootd_free free
    168       1.1  fredette #define ndbootd_new(t, c) ((t *) ndbootd_malloc(sizeof(t) * (c)))
    169       1.1  fredette #define ndbootd_new0(t, c) ((t *) ndbootd_malloc0(sizeof(t) * (c)))
    170       1.1  fredette #define ndbootd_dup(t, b, c) ((t *) ndbootd_memdup(b, c))
    171       1.1  fredette 
    172       1.1  fredette /* this calculates an IP packet header checksum: */
    173       1.1  fredette static void
    174       1.1  fredette _ndbootd_ip_cksum(struct ip * ip_packet)
    175       1.1  fredette {
    176       1.1  fredette 	u_int16_t *_word, word;
    177       1.1  fredette 	u_int32_t checksum;
    178       1.1  fredette 	unsigned int byte_count, bytes_left;
    179       1.1  fredette 
    180       1.1  fredette 	/* we assume that the IP packet header is 16-bit aligned: */
    181       1.1  fredette 	assert((((unsigned long) ip_packet) % sizeof(word)) == 0);
    182       1.1  fredette 
    183       1.1  fredette 	/* initialize for the checksum: */
    184       1.1  fredette 	checksum = 0;
    185       1.1  fredette 
    186       1.1  fredette 	/* sum up the packet contents: */
    187       1.1  fredette 	_word = (u_int16_t *) ip_packet;
    188       1.1  fredette 	byte_count = ip_packet->ip_hl << 2;
    189       1.1  fredette 	for (bytes_left = byte_count; bytes_left >= sizeof(*_word);) {
    190       1.1  fredette 		checksum += *(_word++);
    191       1.1  fredette 		bytes_left -= sizeof(*_word);
    192       1.1  fredette 	}
    193       1.1  fredette 	word = 0;
    194       1.1  fredette 	memcpy(&word, _word, bytes_left);
    195       1.1  fredette 	checksum += word;
    196       1.1  fredette 
    197       1.1  fredette 	/* finish the checksum: */
    198       1.1  fredette 	checksum = (checksum >> 16) + (checksum & 0xffff);
    199       1.1  fredette 	checksum += (checksum >> 16);
    200  1.11.4.1  liamjfoy 	ip_packet->ip_sum = (~checksum);
    201       1.1  fredette }
    202       1.1  fredette /* this finds a network interface: */
    203       1.1  fredette static struct ndbootd_interface *
    204       1.1  fredette _ndbootd_find_interface(const char *ifr_name_user)
    205       1.1  fredette {
    206       1.8    itojun 	struct ifreq ifr;
    207       1.1  fredette #ifdef HAVE_AF_LINK
    208       1.1  fredette 	struct sockaddr_dl *sadl;
    209       1.1  fredette #endif				/* HAVE_AF_LINK */
    210       1.1  fredette 	struct ndbootd_interface *interface;
    211       1.8    itojun 	struct ifaddrs *ifap, *ifa, *ifa_user;
    212       1.1  fredette 
    213       1.1  fredette 	/* read the interface list: */
    214       1.8    itojun 	if (getifaddrs(&ifap) != 0) {
    215       1.1  fredette 		return (NULL);
    216       1.1  fredette 	}
    217       1.1  fredette 
    218       1.1  fredette 	/* walk the interface list: */
    219       1.8    itojun 	ifa_user = NULL;
    220       1.8    itojun 	for (ifa = ifap; ifa; ifa = ifa->ifa_next) {
    221       1.1  fredette 		/* ignore this interface if it doesn't do IP: */
    222       1.8    itojun 		if (ifa->ifa_addr->sa_family != AF_INET) {
    223       1.1  fredette 			continue;
    224       1.1  fredette 		}
    225       1.1  fredette 
    226       1.1  fredette 		/* ignore this interface if it isn't up and running: */
    227       1.8    itojun 		if ((ifa->ifa_flags & (IFF_UP | IFF_RUNNING)) !=
    228       1.8    itojun 		    (IFF_UP | IFF_RUNNING)) {
    229       1.1  fredette 			continue;
    230       1.1  fredette 		}
    231       1.1  fredette 		/* if we don't have an interface yet, take this one depending
    232       1.1  fredette 		 * on whether the user asked for an interface by name or not.
    233       1.1  fredette 		 * if he did, and this is it, take this one.  if he didn't,
    234       1.1  fredette 		 * and this isn't a loopback interface, take this one: */
    235       1.8    itojun 		if (ifa_user == NULL
    236       1.1  fredette 		    && (ifr_name_user != NULL
    237       1.8    itojun 			? !strcmp(ifa->ifa_name, ifr_name_user)
    238       1.8    itojun 			: !(ifa->ifa_flags & IFF_LOOPBACK))) {
    239       1.8    itojun 			ifa_user = ifa;
    240       1.1  fredette 		}
    241       1.1  fredette 	}
    242       1.1  fredette 
    243       1.1  fredette 	/* if we don't have an interface to return: */
    244      1.11  christos 	if (ifa_user == NULL) {
    245       1.8    itojun 		freeifaddrs(ifap);
    246       1.9     lukem 		errno = ENOENT;
    247       1.1  fredette 		return (NULL);
    248       1.1  fredette 	}
    249       1.1  fredette 	/* start the interface description: */
    250       1.1  fredette 	interface = ndbootd_new0(struct ndbootd_interface, 1);
    251       1.1  fredette 
    252       1.1  fredette #ifdef HAVE_AF_LINK
    253       1.1  fredette 
    254       1.1  fredette 	/* we must be able to find an AF_LINK ifreq that gives us the
    255       1.1  fredette 	 * interface's Ethernet address. */
    256       1.8    itojun 	for (ifa = ifap; ifa; ifa = ifa->ifa_next) {
    257       1.9     lukem 		if (ifa->ifa_addr->sa_family != AF_LINK) {
    258       1.9     lukem 			continue;
    259       1.9     lukem 		}
    260       1.9     lukem 		/* if this is the hardware address we want */
    261       1.9     lukem 		if (!strcmp(ifa->ifa_name, ifa_user->ifa_name)) {
    262       1.1  fredette 			break;
    263       1.1  fredette 		}
    264       1.1  fredette 	}
    265       1.8    itojun 	if (ifa == NULL) {
    266       1.8    itojun 		freeifaddrs(ifap);
    267       1.1  fredette 		free(interface);
    268       1.9     lukem 		errno = ENOENT;
    269       1.1  fredette 		return (NULL);
    270       1.1  fredette 	}
    271       1.1  fredette 	/* copy out the Ethernet address: */
    272       1.8    itojun 	sadl = (struct sockaddr_dl *)ifa->ifa_addr;
    273       1.1  fredette 	memcpy(interface->ndbootd_interface_ether, LLADDR(sadl), sadl->sdl_alen);
    274       1.1  fredette 
    275       1.1  fredette #else				/* !HAVE_AF_LINK */
    276       1.1  fredette #error "must have AF_LINK for now"
    277       1.1  fredette #endif				/* !HAVE_AF_LINK */
    278       1.1  fredette 
    279       1.1  fredette 	/* finish this interface and return it: */
    280       1.8    itojun 	strlcpy(ifr.ifr_name, ifa_user->ifa_name, sizeof(ifr.ifr_name));
    281       1.8    itojun 	assert(sizeof(ifr.ifr_addr) >= ifa_user->ifa_addr->sa_len);
    282       1.8    itojun 	memcpy(&ifr.ifr_addr, ifa_user->ifa_addr, ifa_user->ifa_addr->sa_len);
    283       1.8    itojun 	interface->ndbootd_interface_ifreq = (struct ifreq *) ndbootd_memdup(&ifr, SIZEOF_IFREQ(&ifr));
    284       1.1  fredette 	interface->ndbootd_interface_fd = -1;
    285       1.8    itojun 	freeifaddrs(ifap);
    286       1.1  fredette 	return (interface);
    287       1.1  fredette }
    288       1.1  fredette 
    289       1.1  fredette int
    290       1.1  fredette main(int argc, char *argv[])
    291       1.1  fredette {
    292       1.1  fredette 	int argv_i;
    293       1.1  fredette 	int show_usage;
    294       1.1  fredette 	const char *interface_name;
    295       1.1  fredette 	const char *boot1_file_name;
    296       1.1  fredette 	const char *boot2_x_name;
    297       1.1  fredette 	char *boot2_file_name;
    298       1.1  fredette 	int boot2_x_name_is_dir;
    299       1.1  fredette 	time_t last_open_time;
    300       1.1  fredette 	int boot1_fd;
    301       1.1  fredette 	int boot2_fd;
    302       1.1  fredette 	time_t last_rarp_time;
    303       1.1  fredette 	char last_client_ether[ETHER_ADDR_LEN];
    304       1.1  fredette 	struct in_addr last_client_ip;
    305       1.1  fredette 	struct stat stat_buffer;
    306       1.1  fredette 	int32_t boot1_block_count;
    307       1.1  fredette 	int32_t boot2_block_count;
    308       1.1  fredette 	size_t boot1_byte_count;
    309       1.1  fredette 	size_t boot2_byte_count;
    310       1.1  fredette 	ssize_t byte_count_read;
    311       1.1  fredette 	struct ndbootd_interface *interface;
    312       1.1  fredette 	char pid_buffer[(sizeof(pid_t) * 3) + 2];
    313       1.1  fredette 	unsigned char packet_buffer[sizeof(struct ether_header) + IP_MAXPACKET];
    314       1.1  fredette 	unsigned char disk_buffer[NDBOOT_MAX_BYTE_COUNT];
    315       1.1  fredette 	char hostname_buffer[MAXHOSTNAMELEN + 1];
    316       1.1  fredette 	struct hostent *the_hostent;
    317       1.1  fredette 	ssize_t packet_length;
    318       1.1  fredette 	time_t now;
    319       1.1  fredette 	struct ether_header *ether_packet;
    320       1.1  fredette 	struct ip *ip_packet;
    321       1.1  fredette 	struct ndboot_packet *nd_packet;
    322       1.1  fredette #ifdef HAVE_STRICT_ALIGNMENT
    323       1.1  fredette 	struct ether_header ether_packet_buffer;
    324       1.1  fredette 	unsigned char ip_packet_buffer[IP_MAXPACKET];
    325       1.1  fredette 	struct ndboot_packet nd_packet_buffer;
    326       1.1  fredette #endif				/* HAVE_STRICT_ALIGNMENT */
    327       1.1  fredette 	int nd_window_size;
    328       1.1  fredette 	int nd_window_filled;
    329       1.1  fredette 	off_t file_offset;
    330       1.1  fredette 	size_t disk_buffer_offset;
    331       1.1  fredette 	size_t block_number;
    332       1.1  fredette 	size_t byte_offset;
    333       1.1  fredette 	ssize_t byte_count;
    334       1.1  fredette 	ssize_t byte_count_wanted;
    335       1.7   mycroft 	struct timespec send_delay;
    336       1.1  fredette 	int fd;
    337       1.1  fredette 
    338       1.1  fredette 	/* check our command line: */
    339       1.1  fredette 	if ((_ndbootd_argv0 = strrchr(argv[0], '/')) == NULL)
    340       1.1  fredette 		_ndbootd_argv0 = argv[0];
    341       1.1  fredette 	else
    342       1.1  fredette 		_ndbootd_argv0++;
    343       1.1  fredette 	show_usage = FALSE;
    344       1.1  fredette #ifdef _NDBOOTD_DO_DEBUG
    345       1.1  fredette 	_ndbootd_debug = FALSE;
    346       1.1  fredette #endif				/* _NDBOOTD_DO_DEBUG */
    347       1.1  fredette 	boot1_file_name = NULL;
    348       1.1  fredette 	boot2_x_name = NULL;
    349       1.1  fredette 	interface_name = NULL;
    350       1.1  fredette 	nd_window_size = NDBOOT_WINDOW_SIZE_DEFAULT;
    351       1.1  fredette 	for (argv_i = 1; argv_i < argc; argv_i++) {
    352       1.1  fredette 		if (argv[argv_i][0] != '-'
    353       1.1  fredette 		    || argv[argv_i][1] == '\0') {
    354       1.1  fredette 			break;
    355       1.1  fredette 		} else if (!strcmp(argv[argv_i], "-s")
    356       1.1  fredette 		    || !strcmp(argv[argv_i], "--boot2")) {
    357       1.1  fredette 			if (++argv_i < argc) {
    358       1.1  fredette 				boot2_x_name = argv[argv_i];
    359       1.1  fredette 			} else {
    360       1.1  fredette 				show_usage = TRUE;
    361       1.1  fredette 				break;
    362       1.1  fredette 			}
    363       1.1  fredette 		} else if (!strcmp(argv[argv_i], "-i")
    364       1.1  fredette 		    || !strcmp(argv[argv_i], "--interface")) {
    365       1.1  fredette 			if (++argv_i < argc) {
    366       1.1  fredette 				interface_name = argv[argv_i];
    367       1.1  fredette 			} else {
    368       1.1  fredette 				show_usage = TRUE;
    369       1.1  fredette 				break;
    370       1.1  fredette 			}
    371       1.1  fredette 		} else if (!strcmp(argv[argv_i], "-w")
    372       1.1  fredette 		    || !strcmp(argv[argv_i], "--window-size")) {
    373       1.1  fredette 			if (++argv_i == argc || (nd_window_size = atoi(argv[argv_i])) <= 0) {
    374       1.1  fredette 				show_usage = TRUE;
    375       1.1  fredette 				break;
    376       1.1  fredette 			}
    377       1.1  fredette 		}
    378       1.1  fredette #ifdef _NDBOOTD_DO_DEBUG
    379       1.1  fredette 		else if (!strcmp(argv[argv_i], "-d")
    380       1.1  fredette 		    || !strcmp(argv[argv_i], "--debug")) {
    381       1.1  fredette 			_ndbootd_debug = TRUE;
    382       1.1  fredette 		}
    383       1.1  fredette #endif				/* _NDBOOTD_DO_DEBUG */
    384       1.1  fredette 		else {
    385       1.1  fredette 			if (strcmp(argv[argv_i], "-h")
    386       1.1  fredette 			    && strcmp(argv[argv_i], "--help")) {
    387       1.1  fredette 				fprintf(stderr, "%s error: unknown switch '%s'\n",
    388       1.1  fredette 				    _ndbootd_argv0, argv[argv_i]);
    389       1.1  fredette 			}
    390       1.1  fredette 			show_usage = TRUE;
    391       1.1  fredette 			break;
    392       1.1  fredette 		}
    393       1.1  fredette 	}
    394       1.1  fredette 	if (argv_i + 1 == argc) {
    395       1.1  fredette 		boot1_file_name = argv[argv_i];
    396       1.1  fredette 	} else {
    397       1.1  fredette 		show_usage = TRUE;
    398       1.1  fredette 	}
    399       1.1  fredette 
    400       1.1  fredette 	if (show_usage) {
    401       1.1  fredette 		fprintf(stderr, "\
    402       1.1  fredette usage: %s [OPTIONS] BOOT1-BIN\n\
    403       1.1  fredette where OPTIONS are:\n\
    404       1.1  fredette   -s, --boot2 { BOOT2-BIN | DIR }\n\
    405       1.1  fredette                           find a second-stage boot program in the file\n\
    406       1.1  fredette                           BOOT2-BIN or in the directory DIR\n\
    407       1.1  fredette   -i, --interface NAME    use interface NAME\n\
    408       1.1  fredette   -w, --window-size COUNT \n\
    409       1.1  fredette                           send at most COUNT unacknowledged packets [default=%d]\n",
    410       1.1  fredette 		    _ndbootd_argv0,
    411       1.1  fredette 		    NDBOOT_WINDOW_SIZE_DEFAULT);
    412       1.1  fredette #ifdef _NDBOOTD_DO_DEBUG
    413       1.1  fredette 		fprintf(stderr, "\
    414       1.1  fredette   -d, --debug             set debug mode\n");
    415       1.1  fredette #endif				/* _NDBOOTD_DO_DEBUG */
    416       1.1  fredette 		exit(1);
    417       1.1  fredette 	}
    418       1.1  fredette 	/* if we have been given a name for the second-stage boot, see if it's
    419       1.1  fredette 	 * a filename or a directory: */
    420       1.1  fredette 	boot2_x_name_is_dir = FALSE;
    421       1.1  fredette 	if (boot2_x_name != NULL) {
    422       1.1  fredette 		if (stat(boot2_x_name, &stat_buffer) < 0) {
    423       1.1  fredette 			fprintf(stderr, "%s error: could not stat %s: %s\n",
    424       1.1  fredette 			    _ndbootd_argv0, boot2_x_name, strerror(errno));
    425       1.1  fredette 			exit(1);
    426       1.1  fredette 		}
    427       1.1  fredette 		if (S_ISDIR(stat_buffer.st_mode)) {
    428       1.1  fredette 			boot2_x_name_is_dir = TRUE;
    429       1.1  fredette 		} else if (!S_ISREG(stat_buffer.st_mode)) {
    430       1.1  fredette 			fprintf(stderr, "%s error: %s is neither a regular file nor a directory\n",
    431       1.1  fredette 			    _ndbootd_argv0, boot2_x_name);
    432       1.1  fredette 			exit(1);
    433       1.1  fredette 		}
    434       1.1  fredette 	}
    435       1.1  fredette 	/* find the interface we will use: */
    436       1.1  fredette 	if ((interface = _ndbootd_find_interface(interface_name)) == NULL) {
    437       1.1  fredette 		fprintf(stderr, "%s error: could not find the interface to use: %s\n",
    438       1.1  fredette 		    _ndbootd_argv0, strerror(errno));
    439       1.1  fredette 		exit(1);
    440       1.1  fredette 	}
    441       1.1  fredette 	_NDBOOTD_DEBUG((fp, "opening interface %s", interface->ndbootd_interface_ifreq->ifr_name));
    442       1.1  fredette 
    443       1.1  fredette 	/* open the network interface: */
    444       1.1  fredette 	if (ndbootd_raw_open(interface)) {
    445       1.1  fredette 		fprintf(stderr, "%s error: could not open the %s interface: %s\n",
    446       1.1  fredette 		    _ndbootd_argv0, interface->ndbootd_interface_ifreq->ifr_name, strerror(errno));
    447       1.1  fredette 		exit(1);
    448       1.1  fredette 	}
    449       1.1  fredette 	_NDBOOTD_DEBUG((fp, "opened interface %s (ip %s ether %02x:%02x:%02x:%02x:%02x:%02x)",
    450       1.1  fredette 		interface->ndbootd_interface_ifreq->ifr_name,
    451       1.1  fredette 		inet_ntoa(((struct sockaddr_in *) & interface->ndbootd_interface_ifreq->ifr_addr)->sin_addr),
    452       1.1  fredette 		((unsigned char *) interface->ndbootd_interface_ether)[0],
    453       1.1  fredette 		((unsigned char *) interface->ndbootd_interface_ether)[1],
    454       1.1  fredette 		((unsigned char *) interface->ndbootd_interface_ether)[2],
    455       1.1  fredette 		((unsigned char *) interface->ndbootd_interface_ether)[3],
    456       1.1  fredette 		((unsigned char *) interface->ndbootd_interface_ether)[4],
    457       1.1  fredette 		((unsigned char *) interface->ndbootd_interface_ether)[5]));
    458       1.1  fredette 
    459       1.1  fredette 	/* become a daemon: */
    460       1.1  fredette #ifdef _NDBOOTD_DO_DEBUG
    461       1.1  fredette 	if (!_ndbootd_debug)
    462       1.1  fredette #endif				/* _NDBOOTD_DO_DEBUG */
    463       1.1  fredette 	{
    464       1.1  fredette 
    465       1.1  fredette 		/* fork and exit: */
    466       1.1  fredette 		switch (fork()) {
    467       1.1  fredette 		case 0:
    468       1.1  fredette 			break;
    469       1.1  fredette 		case -1:
    470       1.1  fredette 			fprintf(stderr, "%s error: could not fork: %s\n",
    471       1.1  fredette 			    _ndbootd_argv0, strerror(errno));
    472       1.1  fredette 			exit(1);
    473       1.1  fredette 		default:
    474       1.1  fredette 			exit(0);
    475       1.1  fredette 		}
    476       1.1  fredette 
    477       1.1  fredette 		/* close all file descriptors: */
    478       1.1  fredette #ifdef HAVE_GETDTABLESIZE
    479       1.1  fredette 		fd = getdtablesize();
    480       1.1  fredette #else				/* !HAVE_GETDTABLESIZE */
    481       1.1  fredette 		fd = -1;
    482       1.1  fredette #endif				/* !HAVE_GETDTABLESIZE */
    483       1.1  fredette 		for (; fd >= 0; fd--) {
    484       1.1  fredette 			if (fd != interface->ndbootd_interface_fd) {
    485       1.1  fredette 				close(fd);
    486       1.1  fredette 			}
    487       1.1  fredette 		}
    488       1.1  fredette 
    489       1.1  fredette #ifdef HAVE_SETSID
    490       1.1  fredette 		/* become our own session: */
    491       1.1  fredette 		setsid();
    492       1.1  fredette #endif				/* HAVE_SETSID */
    493       1.1  fredette 	}
    494       1.1  fredette 	/* write the pid file: */
    495       1.1  fredette 	if ((fd = open(NDBOOTD_PID_FILE, O_WRONLY | O_CREAT | O_TRUNC, 0644)) >= 0) {
    496       1.1  fredette 		sprintf(pid_buffer, "%u\n", getpid());
    497       1.1  fredette 		write(fd, pid_buffer, strlen(pid_buffer));
    498       1.1  fredette 		close(fd);
    499       1.1  fredette 	}
    500       1.1  fredette #ifdef HAVE_STRICT_ALIGNMENT
    501       1.1  fredette 	/* we will be dealing with all packet headers in separate buffers, to
    502       1.1  fredette 	 * make sure everything is correctly aligned: */
    503       1.1  fredette 	ether_packet = ðer_packet_buffer;
    504       1.1  fredette 	ip_packet = (struct ip *) & ip_packet_buffer[0];
    505       1.1  fredette 	nd_packet = &nd_packet_buffer;
    506       1.1  fredette #else				/* !HAVE_STRICT_ALIGNMENT */
    507       1.1  fredette 	/* we will always find the Ethernet header and the IP packet at the
    508       1.1  fredette 	 * front of the buffer: */
    509       1.1  fredette 	ether_packet = (struct ether_header *) packet_buffer;
    510       1.1  fredette 	ip_packet = (struct ip *) (ether_packet + 1);
    511       1.1  fredette #endif				/* !HAVE_STRICT_ALIGNMENT */
    512       1.1  fredette 
    513       1.1  fredette 	/* initialize our state: */
    514       1.1  fredette 	last_rarp_time = 0;
    515       1.1  fredette 	last_open_time = 0;
    516       1.1  fredette 	boot1_fd = -1;
    517       1.1  fredette 	boot2_file_name = NULL;
    518       1.1  fredette 	boot2_fd = -1;
    519      1.10     lukem 	boot1_block_count = 0;		/* XXXGCC -Wuninitialized */
    520      1.10     lukem 	boot2_block_count = 0;		/* XXXGCC -Wuninitialized */
    521      1.10     lukem 	boot1_byte_count = 0;		/* XXXGCC -Wuninitialized */
    522      1.10     lukem 	boot2_byte_count = 0;		/* XXXGCC -Wuninitialized */
    523       1.1  fredette 
    524       1.1  fredette 	/* loop processing packets: */
    525       1.1  fredette 	for (;;) {
    526       1.1  fredette 
    527       1.1  fredette 		/* receive another packet: */
    528       1.1  fredette 		packet_length = ndbootd_raw_read(interface, packet_buffer, sizeof(packet_buffer));
    529       1.1  fredette 		if (packet_length < 0) {
    530       1.1  fredette 			_NDBOOTD_DEBUG((fp, "failed to receive packet: %s", strerror(errno)));
    531       1.1  fredette 			exit(1);
    532       1.1  fredette 			continue;
    533       1.1  fredette 		}
    534       1.1  fredette 		now = time(NULL);
    535       1.1  fredette 
    536       1.1  fredette 		/* check the Ethernet and IP parts of the packet: */
    537       1.1  fredette 		if (packet_length
    538       1.1  fredette 		    < (sizeof(struct ether_header)
    539       1.1  fredette 			+ sizeof(struct ip)
    540       1.1  fredette 			+ sizeof(struct ndboot_packet))) {
    541       1.3  fredette 			_NDBOOTD_DEBUG((fp, "ignoring a too-short packet of length %ld", (long) packet_length));
    542       1.1  fredette 			continue;
    543       1.1  fredette 		}
    544       1.1  fredette #ifdef HAVE_STRICT_ALIGNMENT
    545       1.1  fredette 		memcpy(ether_packet, packet_buffer, sizeof(struct ether_header));
    546       1.1  fredette 		memcpy(ip_packet, packet_buffer + sizeof(struct ether_header),
    547       1.1  fredette 		    (((struct ip *) (packet_buffer + sizeof(struct ether_header)))->ip_hl << 2));
    548       1.1  fredette #endif				/* !HAVE_STRICT_ALIGNMENT */
    549       1.1  fredette 		if (ether_packet->ether_type != htons(ETHERTYPE_IP)
    550       1.1  fredette 		    || ip_packet->ip_p != IPPROTO_ND) {
    551       1.1  fredette 			_NDBOOTD_DEBUG((fp, "ignoring a packet with the wrong Ethernet or IP protocol"));
    552       1.1  fredette 			continue;
    553       1.1  fredette 		}
    554       1.1  fredette 		_ndbootd_ip_cksum(ip_packet);
    555       1.1  fredette 		if (ip_packet->ip_sum != 0) {
    556       1.1  fredette 			_NDBOOTD_DEBUG((fp, "ignoring a packet with a bad IP checksum"));
    557       1.1  fredette 			continue;
    558       1.1  fredette 		}
    559       1.1  fredette 		if (packet_length
    560       1.1  fredette 		    != (sizeof(struct ether_header)
    561       1.1  fredette 			+ (ip_packet->ip_hl << 2)
    562       1.1  fredette 			+ sizeof(struct ndboot_packet))) {
    563       1.3  fredette 			_NDBOOTD_DEBUG((fp, "ignoring a packet with bad total length %ld", (long) packet_length));
    564       1.1  fredette 			continue;
    565       1.1  fredette 		}
    566       1.1  fredette 		/* if we need to, refresh our RARP cache: */
    567       1.1  fredette 		if ((last_rarp_time + NDBOOTD_CLIENT_TTL_SECONDS) < now
    568       1.1  fredette 		    || memcmp(last_client_ether, ether_packet->ether_shost, ETHER_ADDR_LEN)) {
    569       1.1  fredette 
    570       1.1  fredette 			/* turn the Ethernet address into a hostname: */
    571       1.1  fredette 			if (ether_ntohost(hostname_buffer, (struct ether_addr *) ether_packet->ether_shost)) {
    572       1.1  fredette 				_NDBOOTD_DEBUG((fp, "could not resolve %02x:%02x:%02x:%02x:%02x:%02x into a hostname: %s",
    573       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[0],
    574       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[1],
    575       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[2],
    576       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[3],
    577       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[4],
    578       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[5],
    579       1.1  fredette 					strerror(errno)));
    580       1.1  fredette 				continue;
    581       1.1  fredette 			}
    582       1.1  fredette 			/* turn the hostname into an IP address: */
    583       1.1  fredette 			hostname_buffer[sizeof(hostname_buffer) - 1] = '\0';
    584       1.1  fredette 			if ((the_hostent = gethostbyname(hostname_buffer)) == NULL
    585       1.1  fredette 			    || the_hostent->h_addrtype != AF_INET) {
    586       1.1  fredette 				_NDBOOTD_DEBUG((fp, "could not resolve %s into an IP address: %s",
    587       1.1  fredette 					hostname_buffer,
    588       1.1  fredette 					strerror(errno)));
    589       1.1  fredette 				continue;
    590       1.1  fredette 			}
    591       1.1  fredette 			/* save these new results in our RARP cache: */
    592       1.1  fredette 			last_rarp_time = now;
    593       1.1  fredette 			memcpy(last_client_ether, ether_packet->ether_shost, ETHER_ADDR_LEN);
    594       1.1  fredette 			memcpy(&last_client_ip, the_hostent->h_addr, sizeof(last_client_ip));
    595       1.1  fredette 			_NDBOOTD_DEBUG((fp, "IP address for %02x:%02x:%02x:%02x:%02x:%02x is %s",
    596       1.1  fredette 				((unsigned char *) last_client_ether)[0],
    597       1.1  fredette 				((unsigned char *) last_client_ether)[1],
    598       1.1  fredette 				((unsigned char *) last_client_ether)[2],
    599       1.1  fredette 				((unsigned char *) last_client_ether)[3],
    600       1.1  fredette 				((unsigned char *) last_client_ether)[4],
    601       1.1  fredette 				((unsigned char *) last_client_ether)[5],
    602       1.1  fredette 				inet_ntoa(last_client_ip)));
    603       1.1  fredette 
    604       1.1  fredette 			/* this will cause the file descriptor cache to be
    605       1.1  fredette 			 * reloaded, the next time we make it that far: */
    606       1.1  fredette 			last_open_time = 0;
    607       1.1  fredette 		}
    608       1.1  fredette 		/* if this IP packet was broadcast, rewrite the source IP
    609       1.1  fredette 		 * address to be the client, else, check that the client is
    610       1.1  fredette 		 * using the correct IP addresses: */
    611       1.1  fredette 		if (ip_packet->ip_dst.s_addr == htonl(0)) {
    612       1.1  fredette 			ip_packet->ip_src = last_client_ip;
    613       1.1  fredette 		} else {
    614       1.1  fredette 			if (ip_packet->ip_src.s_addr !=
    615       1.1  fredette 			    last_client_ip.s_addr) {
    616       1.1  fredette 				_NDBOOTD_DEBUG((fp, "machine %02x:%02x:%02x:%02x:%02x:%02x is using the wrong IP address\n",
    617       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[0],
    618       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[1],
    619       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[2],
    620       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[3],
    621       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[4],
    622       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[5]));
    623       1.1  fredette 				continue;
    624       1.1  fredette 			}
    625       1.1  fredette 			if (ip_packet->ip_dst.s_addr
    626       1.1  fredette 			    != ((struct sockaddr_in *) & interface->ndbootd_interface_ifreq->ifr_addr)->sin_addr.s_addr) {
    627       1.1  fredette 				_NDBOOTD_DEBUG((fp, "machine %02x:%02x:%02x:%02x:%02x:%02x is sending to the wrong IP address\n",
    628       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[0],
    629       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[1],
    630       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[2],
    631       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[3],
    632       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[4],
    633       1.1  fredette 					((unsigned char *) ether_packet->ether_shost)[5]));
    634       1.1  fredette 				continue;
    635       1.1  fredette 			}
    636       1.1  fredette 		}
    637       1.1  fredette 
    638       1.1  fredette 		/* if we need to, refresh our "cache" of file descriptors for
    639       1.1  fredette 		 * the boot programs: */
    640       1.1  fredette 		if ((last_open_time + NDBOOTD_CLIENT_TTL_SECONDS) < now) {
    641       1.1  fredette 
    642       1.1  fredette 			/* close any previously opened programs: */
    643       1.1  fredette 			if (boot1_fd >= 0) {
    644       1.1  fredette 				close(boot1_fd);
    645       1.1  fredette 			}
    646       1.1  fredette 			if (boot2_file_name != NULL) {
    647       1.1  fredette 				free(boot2_file_name);
    648       1.1  fredette 			}
    649       1.1  fredette 			if (boot2_fd >= 0) {
    650       1.1  fredette 				close(boot2_fd);
    651       1.1  fredette 			}
    652       1.1  fredette 			/* open the first-stage boot program: */
    653       1.1  fredette 			if ((boot1_fd = open(boot1_file_name, O_RDONLY)) < 0) {
    654       1.1  fredette 				_NDBOOTD_DEBUG((fp, "could not open %s: %s",
    655       1.1  fredette 					boot1_file_name, strerror(errno)));
    656       1.1  fredette 				continue;
    657       1.1  fredette 			}
    658       1.1  fredette 			if (fstat(boot1_fd, &stat_buffer) < 0) {
    659       1.1  fredette 				_NDBOOTD_DEBUG((fp, "could not stat %s: %s",
    660       1.1  fredette 					boot1_file_name, strerror(errno)));
    661       1.1  fredette 				continue;
    662       1.1  fredette 			}
    663       1.1  fredette 			boot1_byte_count = stat_buffer.st_size;
    664       1.1  fredette 			boot1_block_count = (boot1_byte_count + (NDBOOT_BSIZE - 1)) / NDBOOT_BSIZE;
    665       1.1  fredette 			if (boot1_block_count > NDBOOTD_BOOT1_BLOCK_COUNT) {
    666       1.1  fredette 				_NDBOOTD_DEBUG((fp, "first-stage boot program %s has too many blocks (%d, max is %d)",
    667       1.1  fredette 					boot1_file_name, boot1_block_count, NDBOOTD_BOOT1_BLOCK_COUNT));
    668       1.1  fredette 			}
    669       1.1  fredette 			_NDBOOTD_DEBUG((fp, "first-stage boot program %s has %d blocks",
    670       1.1  fredette 				boot1_file_name, boot1_block_count));
    671       1.1  fredette 
    672       1.1  fredette 			/* open any second-stage boot program: */
    673       1.1  fredette 			if (boot2_x_name != NULL) {
    674       1.1  fredette 
    675       1.1  fredette 				/* determine what the name of the second-stage
    676       1.1  fredette 				 * boot program will be: */
    677       1.1  fredette 				if (boot2_x_name_is_dir) {
    678       1.1  fredette 					if ((boot2_file_name = malloc(strlen(boot2_x_name) + strlen("/00000000.SUN2") + 1)) != NULL) {
    679       1.1  fredette 						sprintf(boot2_file_name, "%s/%02X%02X%02X%02X.SUN2",
    680       1.1  fredette 						    boot2_x_name,
    681       1.1  fredette 						    ((unsigned char *) &last_client_ip)[0],
    682       1.1  fredette 						    ((unsigned char *) &last_client_ip)[1],
    683       1.1  fredette 						    ((unsigned char *) &last_client_ip)[2],
    684       1.1  fredette 						    ((unsigned char *) &last_client_ip)[3]);
    685       1.1  fredette 					}
    686       1.1  fredette 				} else {
    687       1.1  fredette 					boot2_file_name = strdup(boot2_x_name);
    688       1.1  fredette 				}
    689       1.1  fredette 				if (boot2_file_name == NULL) {
    690       1.1  fredette 					abort();
    691       1.1  fredette 				}
    692       1.1  fredette 				/* open the second-stage boot program: */
    693       1.1  fredette 				if ((boot2_fd = open(boot2_file_name, O_RDONLY)) < 0) {
    694       1.1  fredette 					_NDBOOTD_DEBUG((fp, "could not open %s: %s",
    695       1.1  fredette 						boot2_file_name, strerror(errno)));
    696       1.1  fredette 					continue;
    697       1.1  fredette 				}
    698       1.1  fredette 				if (fstat(boot2_fd, &stat_buffer) < 0) {
    699       1.1  fredette 					_NDBOOTD_DEBUG((fp, "could not stat %s: %s",
    700       1.1  fredette 						boot2_file_name, strerror(errno)));
    701       1.1  fredette 					continue;
    702       1.1  fredette 				}
    703       1.1  fredette 				boot2_byte_count = stat_buffer.st_size;
    704       1.1  fredette 				boot2_block_count = (boot2_byte_count + (NDBOOT_BSIZE - 1)) / NDBOOT_BSIZE;
    705       1.1  fredette 				_NDBOOTD_DEBUG((fp, "second-stage boot program %s has %d blocks",
    706       1.1  fredette 					boot2_file_name, boot2_block_count));
    707       1.1  fredette 			}
    708       1.1  fredette 			/* success: */
    709       1.1  fredette 			last_open_time = now;
    710       1.1  fredette 		}
    711       1.1  fredette 		/* check the nd packet: */
    712       1.1  fredette #ifdef HAVE_STRICT_ALIGNMENT
    713       1.1  fredette 		memcpy(nd_packet, packet_buffer + sizeof(struct ether_header) + (ip_packet->ip_hl << 2), sizeof(struct ndboot_packet));
    714       1.1  fredette #else				/* !HAVE_STRICT_ALIGNMENT */
    715       1.1  fredette 		nd_packet = (struct ndboot_packet *) (((char *) ip_packet) + (ip_packet->ip_hl << 2));
    716       1.1  fredette #endif				/* !HAVE_STRICT_ALIGNMENT */
    717       1.1  fredette 
    718       1.1  fredette 		/* dump a bunch of debug information: */
    719       1.1  fredette 		_NDBOOTD_DEBUG((fp, "recv: op 0x%02x minor 0x%02x error %d vers %d seq %d blk %d bcount %d off %d count %d",
    720       1.1  fredette 			nd_packet->ndboot_packet_op,
    721       1.1  fredette 			nd_packet->ndboot_packet_minor,
    722       1.1  fredette 			nd_packet->ndboot_packet_error,
    723       1.1  fredette 			nd_packet->ndboot_packet_disk_version,
    724       1.1  fredette 			(int) ntohl(nd_packet->ndboot_packet_sequence),
    725       1.1  fredette 			(int) ntohl(nd_packet->ndboot_packet_block_number),
    726       1.1  fredette 			(int) ntohl(nd_packet->ndboot_packet_byte_count),
    727       1.1  fredette 			(int) ntohl(nd_packet->ndboot_packet_current_byte_offset),
    728       1.1  fredette 			(int) ntohl(nd_packet->ndboot_packet_current_byte_count)));
    729       1.1  fredette 
    730       1.1  fredette 		/* ignore this packet if it has a bad opcode, a bad minor
    731       1.1  fredette 		 * number, a bad disk version, a bad block number, a bad byte
    732       1.1  fredette 		 * count, a bad current byte offset, or a bad current byte
    733       1.1  fredette 		 * count: */
    734       1.1  fredette 		/* FIXME - for some of these conditions, we probably should
    735       1.1  fredette 		 * return an NDBOOT_OP_ERROR packet: */
    736       1.1  fredette 		if ((nd_packet->ndboot_packet_op & NDBOOT_OP_MASK) != NDBOOT_OP_READ) {
    737       1.1  fredette 			_NDBOOTD_DEBUG((fp, "ignoring a packet with bad op %d",
    738       1.1  fredette 				nd_packet->ndboot_packet_op & NDBOOT_OP_MASK));
    739       1.1  fredette 			continue;
    740       1.1  fredette 		}
    741       1.1  fredette 		if (nd_packet->ndboot_packet_minor != NDBOOT_MINOR_NDP0) {
    742       1.1  fredette 			_NDBOOTD_DEBUG((fp, "ignoring a packet with device minor %d",
    743       1.1  fredette 				nd_packet->ndboot_packet_minor));
    744       1.1  fredette 			continue;
    745       1.1  fredette 		}
    746       1.1  fredette 		if (nd_packet->ndboot_packet_disk_version != 0) {
    747       1.1  fredette 			_NDBOOTD_DEBUG((fp, "ignoring a packet with disk version %d",
    748       1.1  fredette 				nd_packet->ndboot_packet_disk_version));
    749       1.1  fredette 			continue;
    750       1.1  fredette 		}
    751       1.1  fredette 		if (ntohl(nd_packet->ndboot_packet_block_number) < 0) {
    752       1.1  fredette 			_NDBOOTD_DEBUG((fp, "ignoring a packet with bad block number %d",
    753       1.1  fredette 				(int) ntohl(nd_packet->ndboot_packet_block_number)));
    754       1.1  fredette 			continue;
    755       1.1  fredette 		}
    756       1.1  fredette 		if (ntohl(nd_packet->ndboot_packet_byte_count) <= 0 ||
    757       1.1  fredette 		    ntohl(nd_packet->ndboot_packet_byte_count) > NDBOOT_MAX_BYTE_COUNT) {
    758       1.1  fredette 			_NDBOOTD_DEBUG((fp, "ignoring a packet with bad byte count %d",
    759       1.1  fredette 				(int) ntohl(nd_packet->ndboot_packet_byte_count)));
    760       1.1  fredette 			continue;
    761       1.1  fredette 		}
    762       1.1  fredette 		if (ntohl(nd_packet->ndboot_packet_current_byte_offset) < 0 ||
    763       1.1  fredette 		    ntohl(nd_packet->ndboot_packet_current_byte_offset)
    764       1.1  fredette 		    >= ntohl(nd_packet->ndboot_packet_byte_count)) {
    765       1.1  fredette 			_NDBOOTD_DEBUG((fp, "ignoring a packet with bad current offset %d",
    766       1.1  fredette 				(int) ntohl(nd_packet->ndboot_packet_current_byte_offset)));
    767       1.1  fredette 			continue;
    768       1.1  fredette 		}
    769       1.1  fredette 		if (ntohl(nd_packet->ndboot_packet_current_byte_count) < 0 ||
    770       1.1  fredette 		    ntohl(nd_packet->ndboot_packet_current_byte_count)
    771       1.1  fredette 		    > (ntohl(nd_packet->ndboot_packet_byte_count)
    772       1.1  fredette 			- ntohl(nd_packet->ndboot_packet_current_byte_offset))) {
    773       1.1  fredette 			_NDBOOTD_DEBUG((fp, "ignoring a packet with bad current count %d",
    774       1.1  fredette 				(int) ntohl(nd_packet->ndboot_packet_current_byte_count)));
    775       1.1  fredette 			continue;
    776       1.1  fredette 		}
    777       1.1  fredette 		/* if we were given a current byte count of zero, rewrite it
    778       1.1  fredette 		 * to be the maximum: */
    779       1.1  fredette 		if (ntohl(nd_packet->ndboot_packet_current_byte_count) == 0) {
    780       1.1  fredette 			nd_packet->ndboot_packet_current_byte_count =
    781       1.1  fredette 			    htonl(ntohl(nd_packet->ndboot_packet_byte_count)
    782       1.1  fredette 			    - ntohl(nd_packet->ndboot_packet_current_byte_offset));
    783       1.1  fredette 		}
    784       1.1  fredette 		/* read the data: */
    785       1.1  fredette 		disk_buffer_offset = 0;
    786       1.1  fredette 		block_number = ntohl(nd_packet->ndboot_packet_block_number);
    787       1.1  fredette 		byte_offset = ntohl(nd_packet->ndboot_packet_current_byte_offset);
    788       1.1  fredette 		byte_count = ntohl(nd_packet->ndboot_packet_current_byte_count);
    789       1.1  fredette 		for (; byte_count > 0;) {
    790       1.1  fredette 
    791       1.1  fredette 			/* adjust the current block number and byte offset
    792       1.1  fredette 			 * such that the byte offset is always < NDBOOT_BSIZE: */
    793       1.1  fredette 			block_number += (byte_offset / NDBOOT_BSIZE);
    794       1.1  fredette 			byte_offset = byte_offset % NDBOOT_BSIZE;
    795       1.1  fredette 
    796       1.1  fredette 			/* dispatch on the beginning block number: */
    797       1.1  fredette 			byte_count_read = 0;
    798       1.1  fredette 
    799       1.1  fredette 			/* the (dummy) Sun disk label: */
    800       1.1  fredette 			if (block_number >= NDBOOTD_SUNDK_BLOCK_FIRST
    801       1.1  fredette 			    && block_number < (NDBOOTD_SUNDK_BLOCK_FIRST + NDBOOTD_SUNDK_BLOCK_COUNT)) {
    802       1.1  fredette 				byte_count_read = MIN(NDBOOTD_BYTES_AVAIL(block_number, byte_offset,
    803       1.1  fredette 					NDBOOTD_SUNDK_BLOCK_FIRST, NDBOOTD_SUNDK_BLOCK_COUNT),
    804       1.1  fredette 				    byte_count);
    805       1.1  fredette 			}
    806       1.1  fredette 			/* the first-stage boot program: */
    807       1.1  fredette 			else if (block_number >= NDBOOTD_BOOT1_BLOCK_FIRST
    808       1.1  fredette 			    && block_number < (NDBOOTD_BOOT1_BLOCK_FIRST + NDBOOTD_BOOT1_BLOCK_COUNT)) {
    809       1.1  fredette 
    810       1.1  fredette 				/* if any real part of the first-stage boot
    811       1.1  fredette 				 * program is needed to satisfy the request,
    812       1.1  fredette 				 * read it (otherwise we return garbage as
    813       1.1  fredette 				 * padding): */
    814       1.1  fredette 				byte_count_wanted = MIN(NDBOOTD_BYTES_AVAIL(block_number, byte_offset,
    815       1.1  fredette 					NDBOOTD_BOOT1_BLOCK_FIRST, boot1_block_count),
    816       1.1  fredette 				    byte_count);
    817       1.1  fredette 				if (byte_count_wanted > 0) {
    818       1.1  fredette 
    819       1.1  fredette 					file_offset = ((block_number - NDBOOTD_BOOT1_BLOCK_FIRST) * NDBOOT_BSIZE) + byte_offset;
    820       1.1  fredette 					if (lseek(boot1_fd, file_offset, SEEK_SET) < 0) {
    821       1.3  fredette 						_NDBOOTD_DEBUG((fp, "could not seek %s to block %ld offset %ld: %s",
    822       1.1  fredette 							boot1_file_name,
    823       1.3  fredette 							(long) (block_number - NDBOOTD_BOOT1_BLOCK_FIRST),
    824       1.3  fredette 							(long) byte_offset,
    825       1.1  fredette 							strerror(errno)));
    826       1.1  fredette 						break;
    827       1.1  fredette 					}
    828       1.1  fredette 					byte_count_read = read(boot1_fd, disk_buffer + disk_buffer_offset, byte_count_wanted);
    829       1.1  fredette 					/* pretend that the size of the
    830       1.1  fredette 					 * first-stage boot program is a
    831       1.1  fredette 					 * multiple of NDBOOT_BSIZE: */
    832       1.1  fredette 					if (byte_count_read != byte_count_wanted
    833       1.4  fredette 					    && byte_count_read > 0
    834       1.1  fredette 					    && file_offset + byte_count_read == boot1_byte_count) {
    835       1.1  fredette 						byte_count_read = byte_count_wanted;
    836       1.1  fredette 					}
    837       1.1  fredette 					if (byte_count_read != byte_count_wanted) {
    838       1.3  fredette 						_NDBOOTD_DEBUG((fp, "could not read %ld bytes at block %ld offset %ld from %s: %s (read %ld bytes)",
    839       1.3  fredette 							(long) byte_count_wanted,
    840       1.3  fredette 							(long) (block_number - NDBOOTD_BOOT1_BLOCK_FIRST),
    841       1.3  fredette 							(long) byte_offset,
    842       1.1  fredette 							boot1_file_name,
    843       1.1  fredette 							strerror(errno),
    844       1.3  fredette 							(long) byte_count_read));
    845       1.1  fredette 						break;
    846       1.1  fredette 					}
    847       1.1  fredette 				}
    848       1.1  fredette 				/* the number of bytes we read, including any
    849       1.1  fredette 				 * padding garbage: */
    850       1.1  fredette 				byte_count_read = MIN(NDBOOTD_BYTES_AVAIL(block_number, byte_offset,
    851       1.1  fredette 					NDBOOTD_BOOT1_BLOCK_FIRST, NDBOOTD_BOOT1_BLOCK_COUNT),
    852       1.1  fredette 				    byte_count);
    853       1.1  fredette 			}
    854       1.1  fredette 			/* any second-stage boot program: */
    855       1.1  fredette 			else if (block_number >= NDBOOTD_BOOT2_BLOCK_FIRST) {
    856       1.1  fredette 
    857       1.1  fredette 				/* if any real part of any first-stage boot
    858       1.1  fredette 				 * program is needed to satisfy the request,
    859       1.1  fredette 				 * read it (otherwise we return garbage as
    860       1.1  fredette 				 * padding): */
    861       1.1  fredette 				byte_count_wanted = MIN(NDBOOTD_BYTES_AVAIL(block_number, byte_offset,
    862       1.1  fredette 					NDBOOTD_BOOT2_BLOCK_FIRST, boot2_block_count),
    863       1.1  fredette 				    byte_count);
    864       1.1  fredette 				if (boot2_fd >= 0
    865       1.1  fredette 				    && byte_count_wanted > 0) {
    866       1.1  fredette 
    867       1.1  fredette 					file_offset = ((block_number - NDBOOTD_BOOT2_BLOCK_FIRST) * NDBOOT_BSIZE) + byte_offset;
    868       1.1  fredette 					if (lseek(boot2_fd, file_offset, SEEK_SET) < 0) {
    869       1.3  fredette 						_NDBOOTD_DEBUG((fp, "could not seek %s to block %ld offset %ld: %s",
    870       1.1  fredette 							boot2_file_name,
    871       1.3  fredette 							(long) (block_number - NDBOOTD_BOOT2_BLOCK_FIRST),
    872       1.3  fredette 							(long) byte_offset,
    873       1.1  fredette 							strerror(errno)));
    874       1.1  fredette 						break;
    875       1.1  fredette 					}
    876       1.1  fredette 					byte_count_read = read(boot2_fd, disk_buffer + disk_buffer_offset, byte_count_wanted);
    877       1.1  fredette 					/* pretend that the size of the
    878       1.1  fredette 					 * second-stage boot program is a
    879       1.1  fredette 					 * multiple of NDBOOT_BSIZE: */
    880       1.1  fredette 					if (byte_count_read != byte_count_wanted
    881       1.4  fredette 					    && byte_count_read > 0
    882       1.1  fredette 					    && file_offset + byte_count_read == boot2_byte_count) {
    883       1.1  fredette 						byte_count_read = byte_count_wanted;
    884       1.1  fredette 					}
    885       1.1  fredette 					if (byte_count_read != byte_count_wanted) {
    886       1.3  fredette 						_NDBOOTD_DEBUG((fp, "could not read %ld bytes at block %ld offset %ld from %s: %s (read %ld bytes)",
    887       1.3  fredette 							(long) byte_count_wanted,
    888       1.3  fredette 							(long) (block_number - NDBOOTD_BOOT2_BLOCK_FIRST),
    889       1.3  fredette 							(long) byte_offset,
    890       1.1  fredette 							boot2_file_name,
    891       1.1  fredette 							strerror(errno),
    892       1.3  fredette 							(long) byte_count_read));
    893       1.1  fredette 						break;
    894       1.1  fredette 					}
    895       1.1  fredette 				}
    896       1.1  fredette 				/* the number of bytes we read, including any
    897       1.1  fredette 				 * padding garbage: */
    898       1.1  fredette 				byte_count_read = byte_count;
    899       1.1  fredette 			}
    900       1.1  fredette 			/* update for the amount that we read: */
    901       1.1  fredette 			assert(byte_count_read > 0);
    902       1.1  fredette 			disk_buffer_offset += byte_count_read;
    903       1.1  fredette 			byte_offset += byte_count_read;
    904       1.1  fredette 			byte_count -= byte_count_read;
    905       1.1  fredette 		}
    906       1.1  fredette 		if (byte_count > 0) {
    907       1.1  fredette 			/* an error occurred: */
    908       1.1  fredette 			continue;
    909       1.1  fredette 		}
    910       1.1  fredette 		/* set the Ethernet and IP destination and source addresses,
    911       1.1  fredette 		 * and the IP TTL: */
    912       1.1  fredette 		memcpy(ether_packet->ether_dhost, ether_packet->ether_shost, ETHER_ADDR_LEN);
    913       1.1  fredette 		memcpy(ether_packet->ether_shost, interface->ndbootd_interface_ether, ETHER_ADDR_LEN);
    914       1.1  fredette #ifdef HAVE_STRICT_ALIGNMENT
    915       1.1  fredette 		memcpy(packet_buffer, ether_packet, sizeof(struct ether_header));
    916       1.1  fredette #endif				/* !HAVE_STRICT_ALIGNMENT */
    917       1.1  fredette 		ip_packet->ip_dst = ip_packet->ip_src;
    918       1.1  fredette 		ip_packet->ip_src = ((struct sockaddr_in *) & interface->ndbootd_interface_ifreq->ifr_addr)->sin_addr;
    919       1.1  fredette 		ip_packet->ip_ttl = 4;
    920       1.1  fredette 
    921       1.1  fredette 		/* return the data: */
    922       1.1  fredette 		nd_window_filled = 0;
    923       1.1  fredette 		disk_buffer_offset = 0;
    924       1.1  fredette 		byte_count = ntohl(nd_packet->ndboot_packet_current_byte_count);
    925       1.1  fredette 		for (;;) {
    926       1.1  fredette 
    927       1.1  fredette 			/* set the byte count on this packet: */
    928       1.1  fredette 			nd_packet->ndboot_packet_current_byte_count = htonl(MIN(byte_count, NDBOOT_MAX_PACKET_DATA));
    929       1.1  fredette 
    930       1.1  fredette 			/* set our opcode.  the opcode is always
    931       1.1  fredette 			 * NDBOOT_OP_READ, ORed with NDBOOT_OP_FLAG_DONE |
    932       1.1  fredette 			 * NDBOOT_OP_FLAG_WAIT if this packet finishes the
    933       1.1  fredette 			 * request, or ORed with NDBOOT_OP_FLAG_WAIT if this
    934       1.1  fredette 			 * packet fills the window: */
    935       1.1  fredette 			nd_window_filled++;
    936       1.1  fredette 			nd_packet->ndboot_packet_op =
    937       1.1  fredette 			    (NDBOOT_OP_READ
    938       1.1  fredette 			    | ((ntohl(nd_packet->ndboot_packet_current_byte_offset)
    939       1.1  fredette 				    + ntohl(nd_packet->ndboot_packet_current_byte_count))
    940       1.1  fredette 				== ntohl(nd_packet->ndboot_packet_byte_count)
    941       1.1  fredette 				? (NDBOOT_OP_FLAG_DONE
    942       1.1  fredette 				    | NDBOOT_OP_FLAG_WAIT)
    943       1.1  fredette 				: (nd_window_filled == nd_window_size
    944       1.1  fredette 				    ? NDBOOT_OP_FLAG_WAIT
    945       1.1  fredette 				    : 0)));
    946       1.1  fredette 
    947       1.1  fredette 			/* copy the data into the packet: */
    948       1.1  fredette 			memcpy(packet_buffer +
    949       1.1  fredette 			    sizeof(struct ether_header) + (ip_packet->ip_hl << 2) + sizeof(struct ndboot_packet),
    950       1.1  fredette 			    disk_buffer + disk_buffer_offset,
    951       1.1  fredette 			    ntohl(nd_packet->ndboot_packet_current_byte_count));
    952       1.1  fredette 
    953       1.1  fredette 			/* finish the IP packet and calculate the checksum: */
    954       1.1  fredette 			ip_packet->ip_len = htons((ip_packet->ip_hl << 2)
    955       1.1  fredette 			    + sizeof(struct ndboot_packet)
    956       1.1  fredette 			    + ntohl(nd_packet->ndboot_packet_current_byte_count));
    957       1.1  fredette 			ip_packet->ip_sum = 0;
    958       1.1  fredette 			_ndbootd_ip_cksum(ip_packet);
    959       1.1  fredette 
    960       1.1  fredette #ifdef HAVE_STRICT_ALIGNMENT
    961       1.1  fredette 			memcpy(packet_buffer + sizeof(struct ether_header), ip_packet, ip_packet->ip_hl << 2);
    962       1.1  fredette 			memcpy(packet_buffer + sizeof(struct ether_header) + (ip_packet->ip_hl << 2), nd_packet, sizeof(struct ndboot_packet));
    963       1.1  fredette #endif				/* !HAVE_STRICT_ALIGNMENT */
    964       1.1  fredette 
    965       1.1  fredette 			/* dump a bunch of debug information: */
    966       1.1  fredette 			_NDBOOTD_DEBUG((fp, "send: op 0x%02x minor 0x%02x error %d vers %d seq %d blk %d bcount %d off %d count %d (win %d)",
    967       1.1  fredette 				nd_packet->ndboot_packet_op,
    968       1.1  fredette 				nd_packet->ndboot_packet_minor,
    969       1.1  fredette 				nd_packet->ndboot_packet_error,
    970       1.1  fredette 				nd_packet->ndboot_packet_disk_version,
    971       1.1  fredette 				(int) ntohl(nd_packet->ndboot_packet_sequence),
    972       1.1  fredette 				(int) ntohl(nd_packet->ndboot_packet_block_number),
    973       1.1  fredette 				(int) ntohl(nd_packet->ndboot_packet_byte_count),
    974       1.1  fredette 				(int) ntohl(nd_packet->ndboot_packet_current_byte_offset),
    975       1.1  fredette 				(int) ntohl(nd_packet->ndboot_packet_current_byte_count),
    976       1.1  fredette 				nd_window_filled - 1));
    977       1.1  fredette 
    978       1.1  fredette 			/* delay before sending the packet: */
    979       1.1  fredette 			send_delay.tv_sec = 0;
    980       1.7   mycroft 			send_delay.tv_nsec = NDBOOTD_SEND_DELAY_NSECONDS;
    981       1.7   mycroft 			nanosleep(&send_delay, NULL);
    982       1.1  fredette 
    983       1.1  fredette 			/* transmit the packet: */
    984       1.1  fredette 			if (ndbootd_raw_write(interface, packet_buffer,
    985       1.1  fredette 				sizeof(struct ether_header) + (ip_packet->ip_hl << 2) + sizeof(struct ndboot_packet) + ntohl(nd_packet->ndboot_packet_current_byte_count)) < 0) {
    986       1.1  fredette 				_NDBOOTD_DEBUG((fp, "could not write a packet: %s",
    987       1.1  fredette 					strerror(errno)));
    988       1.1  fredette 			}
    989       1.1  fredette 			/* if we set NDBOOT_OP_FLAG_DONE or
    990       1.1  fredette 			 * NDBOOT_OP_FLAG_WAIT in the packet we just sent,
    991       1.1  fredette 			 * we're done sending: */
    992       1.1  fredette 			if (nd_packet->ndboot_packet_op != NDBOOT_OP_READ) {
    993       1.1  fredette 				break;
    994       1.1  fredette 			}
    995       1.1  fredette 			/* advance to the next packet: */
    996       1.1  fredette 			byte_count -= ntohl(nd_packet->ndboot_packet_current_byte_count);
    997       1.1  fredette 			disk_buffer_offset += ntohl(nd_packet->ndboot_packet_current_byte_count);
    998       1.1  fredette 			nd_packet->ndboot_packet_current_byte_offset =
    999       1.1  fredette 			    htonl(ntohl(nd_packet->ndboot_packet_current_byte_offset)
   1000       1.1  fredette 			    + ntohl(nd_packet->ndboot_packet_current_byte_count));
   1001       1.1  fredette 		}
   1002       1.1  fredette 	}
   1003       1.1  fredette 	/* NOTREACHED */
   1004       1.1  fredette }
   1005       1.1  fredette /* the raw Ethernet access code: */
   1006       1.2  fredette #include "config/ndbootd-bpf.c"
   1007