mkbootimage.c revision 1.9 1 1.9 garbled /* $NetBSD: mkbootimage.c,v 1.9 2008/04/30 21:15:33 garbled Exp $ */
2 1.1 garbled
3 1.1 garbled /*-
4 1.2 garbled * Copyright (c) 2007 The NetBSD Foundation, Inc.
5 1.1 garbled * All rights reserved.
6 1.1 garbled *
7 1.2 garbled * This code is derived from software contributed to The NetBSD Foundation
8 1.2 garbled * by Tim Rightnour and NONAKA Kimihiro
9 1.2 garbled *
10 1.1 garbled * Redistribution and use in source and binary forms, with or without
11 1.1 garbled * modification, are permitted provided that the following conditions
12 1.1 garbled * are met:
13 1.1 garbled * 1. Redistributions of source code must retain the above copyright
14 1.1 garbled * notice, this list of conditions and the following disclaimer.
15 1.1 garbled * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 garbled * notice, this list of conditions and the following disclaimer in the
17 1.1 garbled * documentation and/or other materials provided with the distribution.
18 1.1 garbled *
19 1.2 garbled * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.2 garbled * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.2 garbled * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.2 garbled * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.2 garbled * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.2 garbled * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.2 garbled * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.2 garbled * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.2 garbled * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.2 garbled * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.2 garbled * POSSIBILITY OF SUCH DAMAGE.
30 1.1 garbled */
31 1.1 garbled
32 1.1 garbled #if HAVE_NBTOOL_CONFIG_H
33 1.1 garbled #include "nbtool_config.h"
34 1.1 garbled #include "../../sys/sys/bootblock.h"
35 1.1 garbled #else
36 1.1 garbled #include <sys/bootblock.h>
37 1.1 garbled #endif
38 1.1 garbled
39 1.1 garbled #include <stdio.h>
40 1.1 garbled #include <stdlib.h>
41 1.1 garbled #include <string.h>
42 1.1 garbled #include <fcntl.h>
43 1.1 garbled #include <unistd.h>
44 1.1 garbled #include <errno.h>
45 1.1 garbled #include <zlib.h>
46 1.1 garbled #include <err.h>
47 1.1 garbled #include <sys/stat.h>
48 1.1 garbled #include <sys/types.h>
49 1.1 garbled #include <sys/uio.h>
50 1.9 garbled #include <sys/signal.h>
51 1.1 garbled
52 1.9 garbled #undef USE_SYSCTL
53 1.9 garbled
54 1.9 garbled #if defined(__NetBSD__) && !defined(HAVE_NBTOOL_CONFIG_H)
55 1.9 garbled #define USE_SYSCTL 1
56 1.9 garbled #include <sys/param.h>
57 1.2 garbled #include <sys/sysctl.h>
58 1.2 garbled #include <sys/utsname.h>
59 1.2 garbled #endif
60 1.2 garbled
61 1.1 garbled /* BFD ELF headers */
62 1.1 garbled #include <elf/common.h>
63 1.1 garbled #include <elf/external.h>
64 1.1 garbled
65 1.6 garbled #include "bebox_bootrec.h"
66 1.1 garbled #include "byteorder.h"
67 1.3 garbled #include "magic.h"
68 1.6 garbled #include "pef.h"
69 1.6 garbled #include "rs6000_bootrec.h"
70 1.1 garbled
71 1.1 garbled /* Globals */
72 1.1 garbled
73 1.1 garbled int saloneflag = 0;
74 1.4 garbled int verboseflag = 0;
75 1.4 garbled int lfloppyflag = 0;
76 1.1 garbled Elf32_External_Ehdr hdr, khdr;
77 1.1 garbled struct stat elf_stat;
78 1.1 garbled unsigned char mbr[512];
79 1.4 garbled
80 1.4 garbled /* the boot and config records for rs6000 */
81 1.4 garbled rs6000_boot_record_t bootrec;
82 1.4 garbled rs6000_config_record_t confrec;
83 1.4 garbled
84 1.4 garbled /* supported platforms */
85 1.2 garbled char *sup_plats[] = {
86 1.6 garbled "bebox",
87 1.2 garbled "prep",
88 1.4 garbled "rs6000",
89 1.2 garbled NULL,
90 1.2 garbled };
91 1.1 garbled
92 1.1 garbled /*
93 1.1 garbled * Macros to get values from multi-byte ELF header fields. These assume
94 1.1 garbled * a big-endian image.
95 1.1 garbled */
96 1.1 garbled #define ELFGET16(x) (((x)[0] << 8) | (x)[1])
97 1.1 garbled
98 1.1 garbled #define ELFGET32(x) (((x)[0] << 24) | ((x)[1] << 16) | \
99 1.1 garbled ((x)[2] << 8) | (x)[3])
100 1.1 garbled
101 1.6 garbled #define ULALIGN(x) ((x + 0x0f) & 0xfffffff0)
102 1.6 garbled
103 1.4 garbled static void usage(int);
104 1.1 garbled static int open_file(const char *, char *, Elf32_External_Ehdr *,
105 1.1 garbled struct stat *);
106 1.4 garbled static void check_mbr(int, char *);
107 1.4 garbled static int prep_build_image(char *, char *, char *, char *);
108 1.4 garbled static void rs6000_build_records(int);
109 1.4 garbled static int rs6000_build_image(char *, char *, char *, char *);
110 1.1 garbled int main(int, char **);
111 1.1 garbled
112 1.6 garbled
113 1.1 garbled static void
114 1.4 garbled usage(int extended)
115 1.1 garbled {
116 1.4 garbled int i;
117 1.4 garbled
118 1.4 garbled if (extended) {
119 1.4 garbled fprintf(stderr, "You are not running this program on"
120 1.4 garbled " the target machine. You must supply the\n"
121 1.4 garbled "machine architecture with the -m flag\n");
122 1.4 garbled fprintf(stderr, "Supported architectures: ");
123 1.4 garbled for (i=0; sup_plats[i] != NULL; i++)
124 1.4 garbled fprintf(stderr, " %s", sup_plats[i]);
125 1.4 garbled fprintf(stderr, "\n\n");
126 1.4 garbled }
127 1.9 garbled #ifdef USE_SYSCTL
128 1.5 garbled fprintf(stderr, "usage: %s [-lsv] [-m machine_arch] [-b bootfile] "
129 1.2 garbled "[-k kernel] [-r rawdev] bootimage\n", getprogname());
130 1.2 garbled #else
131 1.5 garbled fprintf(stderr, "usage: %s [-lsv] -m machine_arch [-b bootfile] "
132 1.2 garbled "[-k kernel] [-r rawdev] bootimage\n", getprogname());
133 1.2 garbled #endif
134 1.1 garbled exit(1);
135 1.1 garbled }
136 1.1 garbled
137 1.1 garbled /* verify the file is ELF and ppc, and open it up */
138 1.1 garbled static int
139 1.1 garbled open_file(const char *ftype, char *file, Elf32_External_Ehdr *hdr,
140 1.1 garbled struct stat *f_stat)
141 1.1 garbled {
142 1.1 garbled int fd;
143 1.1 garbled
144 1.1 garbled if ((fd = open(file, 0)) < 0)
145 1.1 garbled errx(2, "Can't open %s '%s': %s", ftype, file, strerror(errno));
146 1.1 garbled fstat(fd, f_stat);
147 1.1 garbled
148 1.1 garbled if (read(fd, hdr, sizeof(Elf32_External_Ehdr)) !=
149 1.1 garbled sizeof(Elf32_External_Ehdr))
150 1.1 garbled errx(3, "Can't read input '%s': %s", file, strerror(errno));
151 1.1 garbled
152 1.1 garbled if (hdr->e_ident[EI_MAG0] != ELFMAG0 ||
153 1.1 garbled hdr->e_ident[EI_MAG1] != ELFMAG1 ||
154 1.1 garbled hdr->e_ident[EI_MAG2] != ELFMAG2 ||
155 1.1 garbled hdr->e_ident[EI_MAG3] != ELFMAG3 ||
156 1.1 garbled hdr->e_ident[EI_CLASS] != ELFCLASS32)
157 1.1 garbled errx(3, "input '%s' is not ELF32 format", file);
158 1.1 garbled
159 1.1 garbled if (hdr->e_ident[EI_DATA] != ELFDATA2MSB)
160 1.1 garbled errx(3, "input '%s' is not big-endian", file);
161 1.1 garbled
162 1.1 garbled if (ELFGET16(hdr->e_machine) != EM_PPC)
163 1.1 garbled errx(3, "input '%s' is not PowerPC exec binary", file);
164 1.1 garbled
165 1.1 garbled return(fd);
166 1.1 garbled }
167 1.1 garbled
168 1.1 garbled static void
169 1.4 garbled prep_check_mbr(int prep_fd, char *rawdev)
170 1.1 garbled {
171 1.1 garbled int raw_fd;
172 1.1 garbled unsigned long entry, length;
173 1.1 garbled struct mbr_partition *mbrp;
174 1.1 garbled struct stat raw_stat;
175 1.1 garbled
176 1.1 garbled /* If we are building a standalone image, do not write an MBR, just
177 1.1 garbled * set entry point and boot image size skipping over elf header
178 1.1 garbled */
179 1.1 garbled if (saloneflag) {
180 1.1 garbled entry = sa_htole32(0x400);
181 1.1 garbled length = sa_htole32(elf_stat.st_size - sizeof(hdr) + 0x400);
182 1.1 garbled lseek(prep_fd, sizeof(mbr), SEEK_SET);
183 1.1 garbled write(prep_fd, &entry, sizeof(entry));
184 1.1 garbled write(prep_fd, &length, sizeof(length));
185 1.1 garbled return;
186 1.1 garbled }
187 1.1 garbled
188 1.1 garbled /*
189 1.1 garbled * if we have a raw device, we need to check to see if it already
190 1.1 garbled * has a partition table, and if so, read it in and check for
191 1.1 garbled * suitability.
192 1.1 garbled */
193 1.1 garbled if (rawdev != NULL) {
194 1.1 garbled raw_fd = open(rawdev, O_RDONLY, 0);
195 1.1 garbled if (raw_fd == -1)
196 1.1 garbled errx(3, "couldn't open raw device %s: %s", rawdev,
197 1.1 garbled strerror(errno));
198 1.1 garbled
199 1.1 garbled fstat(raw_fd, &raw_stat);
200 1.1 garbled if (!S_ISCHR(raw_stat.st_mode))
201 1.1 garbled errx(3, "%s is not a raw device", rawdev);
202 1.1 garbled
203 1.1 garbled if (read(raw_fd, mbr, 512) != 512)
204 1.1 garbled errx(3, "MBR Read Failed: %s", strerror(errno));
205 1.1 garbled
206 1.1 garbled mbrp = (struct mbr_partition *)&mbr[MBR_PART_OFFSET];
207 1.1 garbled if (mbrp->mbrp_type != MBR_PTYPE_PREP)
208 1.1 garbled errx(3, "First partition is not of type 0x%x.",
209 1.1 garbled MBR_PTYPE_PREP);
210 1.1 garbled if (mbrp->mbrp_start != 0)
211 1.1 garbled errx(3, "Use of the raw device is intended for"
212 1.1 garbled " upgrading of legacy installations. Your"
213 1.1 garbled " install does not have a PReP boot partition"
214 1.1 garbled " starting at sector 0. Use the -s option"
215 1.1 garbled " to build an image instead.");
216 1.1 garbled
217 1.1 garbled /* if we got this far, we are fine, write back the partition
218 1.1 garbled * and write the entry points and get outta here */
219 1.1 garbled /* Set entry point and boot image size skipping over elf header */
220 1.1 garbled lseek(prep_fd, 0, SEEK_SET);
221 1.1 garbled entry = sa_htole32(0x400);
222 1.1 garbled length = sa_htole32(elf_stat.st_size - sizeof(hdr) + 0x400);
223 1.1 garbled write(prep_fd, mbr, sizeof(mbr));
224 1.1 garbled write(prep_fd, &entry, sizeof(entry));
225 1.1 garbled write(prep_fd, &length, sizeof(length));
226 1.1 garbled close(raw_fd);
227 1.1 garbled return;
228 1.1 garbled }
229 1.1 garbled
230 1.1 garbled /* if we get to here, we want to build a standard floppy or netboot
231 1.1 garbled * image to file, so just build it */
232 1.1 garbled
233 1.1 garbled memset(mbr, 0, sizeof(mbr));
234 1.1 garbled mbrp = (struct mbr_partition *)&mbr[MBR_PART_OFFSET];
235 1.1 garbled
236 1.1 garbled /* Set entry point and boot image size skipping over elf header */
237 1.1 garbled entry = sa_htole32(0x400);
238 1.1 garbled length = sa_htole32(elf_stat.st_size - sizeof(hdr) + 0x400);
239 1.1 garbled
240 1.1 garbled /*
241 1.1 garbled * Set magic number for msdos partition
242 1.1 garbled */
243 1.1 garbled *(unsigned short *)&mbr[MBR_MAGIC_OFFSET] = sa_htole16(MBR_MAGIC);
244 1.1 garbled
245 1.1 garbled /*
246 1.1 garbled * Build a "PReP" partition table entry in the boot record
247 1.1 garbled * - "PReP" may only look at the system_indicator
248 1.1 garbled */
249 1.1 garbled mbrp->mbrp_flag = MBR_PFLAG_ACTIVE;
250 1.1 garbled mbrp->mbrp_type = MBR_PTYPE_PREP;
251 1.1 garbled
252 1.1 garbled /*
253 1.1 garbled * The first block of the diskette is used by this "boot record" which
254 1.1 garbled * actually contains the partition table. (The first block of the
255 1.1 garbled * partition contains the boot image, but I digress...) We'll set up
256 1.1 garbled * one partition on the diskette and it shall contain the rest of the
257 1.1 garbled * diskette.
258 1.1 garbled */
259 1.1 garbled mbrp->mbrp_shd = 0; /* zero-based */
260 1.1 garbled mbrp->mbrp_ssect = 2; /* one-based */
261 1.1 garbled mbrp->mbrp_scyl = 0; /* zero-based */
262 1.1 garbled mbrp->mbrp_ehd = 1; /* assumes two heads */
263 1.1 garbled if (lfloppyflag)
264 1.1 garbled mbrp->mbrp_esect = 36; /* 2.88MB floppy */
265 1.1 garbled else
266 1.1 garbled mbrp->mbrp_esect = 18; /* assumes 18 sectors/track */
267 1.1 garbled mbrp->mbrp_ecyl = 79; /* assumes 80 cylinders/diskette */
268 1.1 garbled
269 1.1 garbled /*
270 1.1 garbled * The "PReP" software ignores the above fields and just looks at
271 1.1 garbled * the next two.
272 1.1 garbled * - size of the diskette is (assumed to be)
273 1.1 garbled * (2 tracks/cylinder)(18 sectors/tracks)(80 cylinders/diskette)
274 1.1 garbled * - unlike the above sector numbers,
275 1.1 garbled * the beginning sector is zero-based!
276 1.1 garbled */
277 1.1 garbled
278 1.1 garbled /* This has to be 0 on the PowerStack? */
279 1.1 garbled mbrp->mbrp_start = sa_htole32(0);
280 1.1 garbled mbrp->mbrp_size = sa_htole32(2 * 18 * 80 - 1);
281 1.1 garbled
282 1.1 garbled write(prep_fd, mbr, sizeof(mbr));
283 1.1 garbled write(prep_fd, &entry, sizeof(entry));
284 1.1 garbled write(prep_fd, &length, sizeof(length));
285 1.1 garbled }
286 1.1 garbled
287 1.2 garbled static int
288 1.4 garbled prep_build_image(char *kernel, char *boot, char *rawdev, char *outname)
289 1.1 garbled {
290 1.1 garbled unsigned char *elf_img = NULL, *kern_img = NULL;
291 1.2 garbled int i, ch, tmp, kgzlen, err;
292 1.1 garbled int elf_fd, prep_fd, kern_fd, elf_img_len = 0;
293 1.1 garbled off_t lenpos, kstart, kend;
294 1.1 garbled unsigned long length;
295 1.1 garbled long flength;
296 1.1 garbled gzFile gzf;
297 1.1 garbled struct stat kern_stat;
298 1.1 garbled Elf32_External_Phdr phdr;
299 1.1 garbled
300 1.1 garbled elf_fd = open_file("bootloader", boot, &hdr, &elf_stat);
301 1.1 garbled kern_fd = open_file("kernel", kernel, &khdr, &kern_stat);
302 1.2 garbled kern_len = kern_stat.st_size + PREP_MAGICSIZE + KERNLENSIZE;
303 1.1 garbled
304 1.1 garbled for (i = 0; i < ELFGET16(hdr.e_phnum); i++) {
305 1.1 garbled lseek(elf_fd, ELFGET32(hdr.e_phoff) + sizeof(phdr) * i,
306 1.1 garbled SEEK_SET);
307 1.1 garbled if (read(elf_fd, &phdr, sizeof(phdr)) != sizeof(phdr))
308 1.1 garbled errx(3, "Can't read input '%s' phdr : %s", boot,
309 1.1 garbled strerror(errno));
310 1.1 garbled
311 1.1 garbled if ((ELFGET32(phdr.p_type) != PT_LOAD) ||
312 1.1 garbled !(ELFGET32(phdr.p_flags) & PF_X))
313 1.1 garbled continue;
314 1.1 garbled
315 1.1 garbled fstat(elf_fd, &elf_stat);
316 1.1 garbled elf_img_len = elf_stat.st_size - ELFGET32(phdr.p_offset);
317 1.1 garbled lseek(elf_fd, ELFGET32(phdr.p_offset), SEEK_SET);
318 1.1 garbled
319 1.1 garbled break;
320 1.1 garbled }
321 1.2 garbled if ((prep_fd = open(outname, O_RDWR|O_TRUNC, 0)) < 0) {
322 1.1 garbled /* we couldn't open it, it must be new */
323 1.2 garbled prep_fd = creat(outname, 0644);
324 1.1 garbled if (prep_fd < 0)
325 1.2 garbled errx(2, "Can't open output '%s': %s", outname,
326 1.1 garbled strerror(errno));
327 1.1 garbled }
328 1.1 garbled
329 1.4 garbled prep_check_mbr(prep_fd, rawdev);
330 1.1 garbled
331 1.1 garbled /* Set file pos. to 2nd sector where image will be written */
332 1.1 garbled lseek(prep_fd, 0x400, SEEK_SET);
333 1.1 garbled
334 1.1 garbled /* Copy boot image */
335 1.1 garbled elf_img = (unsigned char *)malloc(elf_img_len);
336 1.1 garbled if (!elf_img)
337 1.1 garbled errx(3, "Can't malloc: %s", strerror(errno));
338 1.1 garbled if (read(elf_fd, elf_img, elf_img_len) != elf_img_len)
339 1.1 garbled errx(3, "Can't read file '%s' : %s", boot, strerror(errno));
340 1.1 garbled
341 1.1 garbled write(prep_fd, elf_img, elf_img_len);
342 1.1 garbled free(elf_img);
343 1.1 garbled
344 1.1 garbled /* Copy kernel */
345 1.1 garbled kern_img = (unsigned char *)malloc(kern_stat.st_size);
346 1.1 garbled
347 1.1 garbled if (kern_img == NULL)
348 1.1 garbled errx(3, "Can't malloc: %s", strerror(errno));
349 1.1 garbled
350 1.1 garbled /* we need to jump back after having read the headers */
351 1.1 garbled lseek(kern_fd, 0, SEEK_SET);
352 1.1 garbled if (read(kern_fd, (void *)kern_img, kern_stat.st_size) !=
353 1.1 garbled kern_stat.st_size)
354 1.1 garbled errx(3, "Can't read kernel '%s' : %s", kernel, strerror(errno));
355 1.1 garbled
356 1.1 garbled gzf = gzdopen(dup(prep_fd), "a");
357 1.1 garbled if (gzf == NULL)
358 1.1 garbled errx(3, "Can't init compression: %s", strerror(errno));
359 1.1 garbled if (gzsetparams(gzf, Z_BEST_COMPRESSION, Z_DEFAULT_STRATEGY) != Z_OK)
360 1.1 garbled errx(3, "%s", gzerror(gzf, &err));
361 1.1 garbled
362 1.1 garbled /* write a magic number and size before the kernel */
363 1.2 garbled write(prep_fd, (void *)prep_magic, PREP_MAGICSIZE);
364 1.1 garbled lenpos = lseek(prep_fd, 0, SEEK_CUR);
365 1.1 garbled tmp = sa_htobe32(0);
366 1.1 garbled write(prep_fd, (void *)&tmp, KERNLENSIZE);
367 1.1 garbled
368 1.1 garbled /* write in the compressed kernel */
369 1.1 garbled kstart = lseek(prep_fd, 0, SEEK_CUR);
370 1.1 garbled kgzlen = gzwrite(gzf, kern_img, kern_stat.st_size);
371 1.1 garbled gzclose(gzf);
372 1.1 garbled kend = lseek(prep_fd, 0, SEEK_CUR);
373 1.1 garbled
374 1.1 garbled /* jump back to the length position now that we know the length */
375 1.1 garbled lseek(prep_fd, lenpos, SEEK_SET);
376 1.1 garbled kgzlen = kend - kstart;
377 1.1 garbled tmp = sa_htobe32(kgzlen);
378 1.1 garbled write(prep_fd, (void *)&tmp, KERNLENSIZE);
379 1.1 garbled
380 1.1 garbled length = sa_htole32(0x400 + elf_img_len + 8 + kgzlen);
381 1.1 garbled lseek(prep_fd, sizeof(mbr) + 4, SEEK_SET);
382 1.1 garbled write(prep_fd, &length, sizeof(length));
383 1.1 garbled
384 1.1 garbled flength = 0x400 + elf_img_len + 8 + kgzlen;
385 1.4 garbled if (lfloppyflag)
386 1.1 garbled flength -= (5760 * 512);
387 1.1 garbled else
388 1.1 garbled flength -= (2880 * 512);
389 1.1 garbled if (flength > 0 && !saloneflag)
390 1.1 garbled fprintf(stderr, "%s: Image %s is %d bytes larger than single"
391 1.1 garbled " floppy. Can only be used for netboot.\n", getprogname(),
392 1.2 garbled outname, flength);
393 1.1 garbled
394 1.1 garbled free(kern_img);
395 1.1 garbled close(kern_fd);
396 1.1 garbled close(prep_fd);
397 1.1 garbled close(elf_fd);
398 1.1 garbled
399 1.4 garbled return 0;
400 1.2 garbled }
401 1.2 garbled
402 1.4 garbled /* Fill in the needed information on the boot and config records. Most of
403 1.4 garbled * this is just AIX garbage that we don't really need to boot.
404 1.4 garbled */
405 1.4 garbled static void
406 1.4 garbled rs6000_build_records(int img_len)
407 1.4 garbled {
408 1.4 garbled int bcl;
409 1.4 garbled
410 1.4 garbled /* zero out all the fields, so we only have to set the ones
411 1.4 garbled * we care about, which are rather few.
412 1.4 garbled */
413 1.4 garbled memset(&bootrec, 0, sizeof(rs6000_boot_record_t));
414 1.4 garbled memset(&confrec, 0, sizeof(rs6000_config_record_t));
415 1.4 garbled
416 1.4 garbled bootrec.ipl_record = IPLRECID;
417 1.4 garbled bcl = img_len/512;
418 1.4 garbled if (img_len%512 != 0)
419 1.4 garbled bcl++;
420 1.4 garbled bootrec.bootcode_len = bcl;
421 1.4 garbled bootrec.bootcode_off = 0; /* XXX */
422 1.4 garbled bootrec.bootpart_start = 2; /* skip bootrec and confrec */
423 1.4 garbled bootrec.bootprg_start = 2;
424 1.4 garbled bootrec.bootpart_len = bcl;
425 1.4 garbled bootrec.boot_load_addr = 0x800000; /* XXX? */
426 1.4 garbled bootrec.boot_frag = 1;
427 1.4 garbled bootrec.boot_emul = 0x02; /* ?? */
428 1.4 garbled /* service mode is a repeat of normal mode */
429 1.4 garbled bootrec.servcode_len = bootrec.bootcode_len;
430 1.4 garbled bootrec.servcode_off = bootrec.bootcode_off;
431 1.4 garbled bootrec.servpart_start = bootrec.bootpart_start;
432 1.4 garbled bootrec.servprg_start = bootrec.bootprg_start;
433 1.4 garbled bootrec.servpart_len = bootrec.bootpart_len;
434 1.4 garbled bootrec.serv_load_addr = bootrec.boot_load_addr;
435 1.4 garbled bootrec.serv_frag = bootrec.boot_frag;
436 1.4 garbled bootrec.serv_emul = bootrec.boot_emul;
437 1.4 garbled
438 1.4 garbled /* now the config record */
439 1.4 garbled confrec.conf_rec = CONFRECID;
440 1.4 garbled confrec.sector_size = 0x02; /* 512 bytes */
441 1.4 garbled confrec.last_cyl = 0x4f; /* 79 cyl, emulates floppy */
442 1.4 garbled }
443 1.4 garbled
444 1.4 garbled static int
445 1.4 garbled rs6000_build_image(char *kernel, char *boot, char *rawdev, char *outname)
446 1.4 garbled {
447 1.4 garbled unsigned char *elf_img = NULL, *kern_img = NULL;
448 1.4 garbled int i, ch, tmp, kgzlen, err;
449 1.4 garbled int elf_fd, rs6000_fd, kern_fd, elf_img_len = 0, elf_pad;
450 1.4 garbled uint32_t swapped[128];
451 1.4 garbled off_t lenpos, kstart, kend;
452 1.4 garbled unsigned long length;
453 1.4 garbled long flength;
454 1.4 garbled gzFile gzf;
455 1.4 garbled struct stat kern_stat;
456 1.4 garbled Elf32_External_Phdr phdr;
457 1.4 garbled
458 1.4 garbled elf_fd = open_file("bootloader", boot, &hdr, &elf_stat);
459 1.4 garbled kern_fd = open_file("kernel", kernel, &khdr, &kern_stat);
460 1.4 garbled kern_len = kern_stat.st_size + RS6000_MAGICSIZE + KERNLENSIZE;
461 1.4 garbled
462 1.4 garbled for (i = 0; i < ELFGET16(hdr.e_phnum); i++) {
463 1.4 garbled lseek(elf_fd, ELFGET32(hdr.e_phoff) + sizeof(phdr) * i,
464 1.4 garbled SEEK_SET);
465 1.4 garbled if (read(elf_fd, &phdr, sizeof(phdr)) != sizeof(phdr))
466 1.4 garbled errx(3, "Can't read input '%s' phdr : %s", boot,
467 1.4 garbled strerror(errno));
468 1.4 garbled
469 1.4 garbled if ((ELFGET32(phdr.p_type) != PT_LOAD) ||
470 1.4 garbled !(ELFGET32(phdr.p_flags) & PF_X))
471 1.4 garbled continue;
472 1.4 garbled
473 1.4 garbled fstat(elf_fd, &elf_stat);
474 1.4 garbled elf_img_len = elf_stat.st_size - ELFGET32(phdr.p_offset);
475 1.4 garbled elf_pad = ELFGET32(phdr.p_memsz) - ELFGET32(phdr.p_filesz);
476 1.4 garbled if (verboseflag)
477 1.4 garbled printf("Padding %d\n", elf_pad);
478 1.4 garbled lseek(elf_fd, ELFGET32(phdr.p_offset), SEEK_SET);
479 1.4 garbled
480 1.4 garbled break;
481 1.4 garbled }
482 1.4 garbled if ((rs6000_fd = open(outname, O_RDWR|O_TRUNC, 0)) < 0) {
483 1.4 garbled /* we couldn't open it, it must be new */
484 1.4 garbled rs6000_fd = creat(outname, 0644);
485 1.4 garbled if (rs6000_fd < 0)
486 1.4 garbled errx(2, "Can't open output '%s': %s", outname,
487 1.4 garbled strerror(errno));
488 1.4 garbled }
489 1.4 garbled
490 1.4 garbled /* Set file pos. to 2nd sector where image will be written */
491 1.4 garbled lseek(rs6000_fd, 0x400, SEEK_SET);
492 1.4 garbled
493 1.4 garbled /* Copy boot image */
494 1.4 garbled elf_img = (unsigned char *)malloc(elf_img_len);
495 1.4 garbled if (!elf_img)
496 1.4 garbled errx(3, "Can't malloc: %s", strerror(errno));
497 1.4 garbled if (read(elf_fd, elf_img, elf_img_len) != elf_img_len)
498 1.4 garbled errx(3, "Can't read file '%s' : %s", boot, strerror(errno));
499 1.4 garbled
500 1.4 garbled write(rs6000_fd, elf_img, elf_img_len);
501 1.4 garbled free(elf_img);
502 1.4 garbled
503 1.4 garbled /* now dump in the padding space for the BSS */
504 1.4 garbled elf_pad += 100; /* just a little extra for good luck */
505 1.4 garbled lseek(rs6000_fd, elf_pad, SEEK_CUR);
506 1.4 garbled
507 1.4 garbled /* Copy kernel */
508 1.4 garbled kern_img = (unsigned char *)malloc(kern_stat.st_size);
509 1.4 garbled
510 1.4 garbled if (kern_img == NULL)
511 1.4 garbled errx(3, "Can't malloc: %s", strerror(errno));
512 1.4 garbled
513 1.4 garbled /* we need to jump back after having read the headers */
514 1.4 garbled lseek(kern_fd, 0, SEEK_SET);
515 1.4 garbled if (read(kern_fd, (void *)kern_img, kern_stat.st_size) !=
516 1.4 garbled kern_stat.st_size)
517 1.4 garbled errx(3, "Can't read kernel '%s' : %s", kernel, strerror(errno));
518 1.4 garbled
519 1.4 garbled gzf = gzdopen(dup(rs6000_fd), "a");
520 1.4 garbled if (gzf == NULL)
521 1.4 garbled errx(3, "Can't init compression: %s", strerror(errno));
522 1.4 garbled if (gzsetparams(gzf, Z_BEST_COMPRESSION, Z_DEFAULT_STRATEGY) != Z_OK)
523 1.4 garbled errx(3, "%s", gzerror(gzf, &err));
524 1.4 garbled
525 1.4 garbled /* write a magic number and size before the kernel */
526 1.4 garbled write(rs6000_fd, (void *)rs6000_magic, RS6000_MAGICSIZE);
527 1.4 garbled lenpos = lseek(rs6000_fd, 0, SEEK_CUR);
528 1.4 garbled if (verboseflag)
529 1.4 garbled printf("wrote magic at pos 0x%x\n", lenpos);
530 1.4 garbled tmp = sa_htobe32(0);
531 1.4 garbled write(rs6000_fd, (void *)&tmp, KERNLENSIZE);
532 1.4 garbled
533 1.4 garbled /* write in the compressed kernel */
534 1.4 garbled kstart = lseek(rs6000_fd, 0, SEEK_CUR);
535 1.4 garbled if (verboseflag)
536 1.4 garbled printf("kernel start at pos 0x%x\n", kstart);
537 1.4 garbled kgzlen = gzwrite(gzf, kern_img, kern_stat.st_size);
538 1.4 garbled gzclose(gzf);
539 1.4 garbled kend = lseek(rs6000_fd, 0, SEEK_CUR);
540 1.4 garbled if (verboseflag)
541 1.4 garbled printf("kernel end at pos 0x%x\n", kend);
542 1.4 garbled
543 1.4 garbled /* jump back to the length position now that we know the length */
544 1.4 garbled lseek(rs6000_fd, lenpos, SEEK_SET);
545 1.4 garbled kgzlen = kend - kstart;
546 1.4 garbled tmp = sa_htobe32(kgzlen);
547 1.4 garbled if (verboseflag)
548 1.4 garbled printf("kernel len = 0x%x tmp = 0x%x\n", kgzlen, tmp);
549 1.4 garbled write(rs6000_fd, (void *)&tmp, KERNLENSIZE);
550 1.4 garbled
551 1.4 garbled #if 0
552 1.4 garbled lseek(rs6000_fd, sizeof(boot_record_t) + sizeof(config_record_t),
553 1.4 garbled SEEK_SET);
554 1.4 garbled /* set entry and length */
555 1.4 garbled length = sa_htole32(0x400);
556 1.4 garbled write(rs6000_fd, &length, sizeof(length));
557 1.4 garbled length = sa_htole32(0x400 + elf_img_len + 8 + kgzlen);
558 1.4 garbled write(rs6000_fd, &length, sizeof(length));
559 1.4 garbled #endif
560 1.4 garbled
561 1.4 garbled /* generate the header now that we know the kernel length */
562 1.4 garbled if (verboseflag)
563 1.4 garbled printf("building records\n");
564 1.4 garbled rs6000_build_records(elf_img_len + 8 + kgzlen);
565 1.4 garbled lseek(rs6000_fd, 0, SEEK_SET);
566 1.4 garbled /* ROM wants it byteswapped in 32bit chunks */
567 1.4 garbled if (verboseflag)
568 1.4 garbled printf("writing records\n");
569 1.4 garbled memcpy(swapped, &bootrec, sizeof(rs6000_boot_record_t));
570 1.4 garbled for (i=0; i < 128; i++)
571 1.4 garbled swapped[i] = htonl(swapped[i]);
572 1.4 garbled write(rs6000_fd, swapped, sizeof(rs6000_boot_record_t));
573 1.4 garbled memcpy(swapped, &confrec, sizeof(rs6000_config_record_t));
574 1.4 garbled for (i=0; i < 128; i++)
575 1.4 garbled swapped[i] = htonl(swapped[i]);
576 1.4 garbled write(rs6000_fd, swapped, sizeof(rs6000_config_record_t));
577 1.4 garbled
578 1.4 garbled free(kern_img);
579 1.4 garbled close(kern_fd);
580 1.4 garbled close(rs6000_fd);
581 1.4 garbled close(elf_fd);
582 1.4 garbled
583 1.4 garbled return 0;
584 1.4 garbled }
585 1.4 garbled
586 1.6 garbled static int
587 1.6 garbled bebox_write_header(int bebox_fd, int elf_image_len, int kern_img_len)
588 1.6 garbled {
589 1.6 garbled int hsize = BEBOX_HEADER_SIZE;
590 1.6 garbled unsigned long textOffset, dataOffset, ldrOffset;
591 1.6 garbled unsigned long entry_vector[3];
592 1.6 garbled struct FileHeader fileHdr;
593 1.6 garbled struct SectionHeader textHdr, dataHdr, ldrHdr;
594 1.6 garbled struct LoaderHeader lh;
595 1.6 garbled
596 1.6 garbled if (saloneflag)
597 1.6 garbled hsize = 0;
598 1.6 garbled
599 1.6 garbled ldrOffset = ULALIGN(sizeof (fileHdr) + sizeof (textHdr) +
600 1.6 garbled sizeof (dataHdr) + sizeof (ldrHdr));
601 1.6 garbled dataOffset = ULALIGN(ldrOffset + sizeof (lh));
602 1.6 garbled textOffset = ULALIGN(dataOffset + sizeof (entry_vector) + kern_img_len);
603 1.6 garbled
604 1.6 garbled /* Create the File Header */
605 1.6 garbled memset(&fileHdr, 0, sizeof (fileHdr));
606 1.6 garbled fileHdr.magic = sa_htobe32(PEF_MAGIC);
607 1.6 garbled fileHdr.fileTypeID = sa_htobe32(PEF_FILE);
608 1.6 garbled fileHdr.archID = sa_htobe32(PEF_PPC);
609 1.6 garbled fileHdr.versionNumber = sa_htobe32(1);
610 1.6 garbled fileHdr.numSections = sa_htobe16(3);
611 1.6 garbled fileHdr.loadableSections = sa_htobe16(2);
612 1.6 garbled write(bebox_fd, &fileHdr, sizeof (fileHdr));
613 1.6 garbled
614 1.6 garbled /* Create the Section Header for TEXT */
615 1.6 garbled memset(&textHdr, 0, sizeof (textHdr));
616 1.6 garbled textHdr.sectionName = sa_htobe32(-1);
617 1.6 garbled textHdr.sectionAddress = sa_htobe32(0);
618 1.6 garbled textHdr.execSize = sa_htobe32(elf_image_len);
619 1.6 garbled textHdr.initSize = sa_htobe32(elf_image_len);
620 1.6 garbled textHdr.rawSize = sa_htobe32(elf_image_len);
621 1.6 garbled textHdr.fileOffset = sa_htobe32(textOffset);
622 1.6 garbled textHdr.regionKind = CodeSection;
623 1.6 garbled textHdr.shareKind = ContextShare;
624 1.6 garbled textHdr.alignment = 4; /* 16 byte alignment */
625 1.6 garbled write(bebox_fd, &textHdr, sizeof (textHdr));
626 1.6 garbled
627 1.6 garbled /* Create the Section Header for DATA */
628 1.6 garbled memset(&dataHdr, 0, sizeof (dataHdr));
629 1.6 garbled dataHdr.sectionName = sa_htobe32(-1);
630 1.6 garbled dataHdr.sectionAddress = sa_htobe32(0);
631 1.6 garbled dataHdr.execSize = sa_htobe32(sizeof (entry_vector) + kern_img_len);
632 1.6 garbled dataHdr.initSize = sa_htobe32(sizeof (entry_vector) + kern_img_len);
633 1.6 garbled dataHdr.rawSize = sa_htobe32(sizeof (entry_vector) + kern_img_len);
634 1.6 garbled dataHdr.fileOffset = sa_htobe32(dataOffset);
635 1.6 garbled dataHdr.regionKind = DataSection;
636 1.6 garbled dataHdr.shareKind = ContextShare;
637 1.6 garbled dataHdr.alignment = 4; /* 16 byte alignment */
638 1.6 garbled write(bebox_fd, &dataHdr, sizeof (dataHdr));
639 1.6 garbled
640 1.6 garbled /* Create the Section Header for loader stuff */
641 1.6 garbled memset(&ldrHdr, 0, sizeof (ldrHdr));
642 1.6 garbled ldrHdr.sectionName = sa_htobe32(-1);
643 1.6 garbled ldrHdr.sectionAddress = sa_htobe32(0);
644 1.6 garbled ldrHdr.execSize = sa_htobe32(sizeof (lh));
645 1.6 garbled ldrHdr.initSize = sa_htobe32(sizeof (lh));
646 1.6 garbled ldrHdr.rawSize = sa_htobe32(sizeof (lh));
647 1.6 garbled ldrHdr.fileOffset = sa_htobe32(ldrOffset);
648 1.6 garbled ldrHdr.regionKind = LoaderSection;
649 1.6 garbled ldrHdr.shareKind = GlobalShare;
650 1.6 garbled ldrHdr.alignment = 4; /* 16 byte alignment */
651 1.6 garbled write(bebox_fd, &ldrHdr, sizeof (ldrHdr));
652 1.6 garbled
653 1.6 garbled /* Create the Loader Header */
654 1.6 garbled memset(&lh, 0, sizeof (lh));
655 1.6 garbled lh.entryPointSection = sa_htobe32(1); /* Data */
656 1.6 garbled lh.entryPointOffset = sa_htobe32(0);
657 1.6 garbled lh.initPointSection = sa_htobe32(-1);
658 1.6 garbled lh.initPointOffset = sa_htobe32(0);
659 1.6 garbled lh.termPointSection = sa_htobe32(-1);
660 1.6 garbled lh.termPointOffset = sa_htobe32(0);
661 1.6 garbled lseek(bebox_fd, ldrOffset + hsize, SEEK_SET);
662 1.6 garbled write(bebox_fd, &lh, sizeof (lh));
663 1.6 garbled
664 1.6 garbled /* Copy the pseudo-DATA */
665 1.6 garbled memset(entry_vector, 0, sizeof (entry_vector));
666 1.6 garbled entry_vector[0] = sa_htobe32(ENTRY); /* Magic */
667 1.6 garbled lseek(bebox_fd, dataOffset + hsize, SEEK_SET);
668 1.6 garbled write(bebox_fd, entry_vector, sizeof (entry_vector));
669 1.6 garbled
670 1.6 garbled return textOffset;
671 1.6 garbled }
672 1.6 garbled
673 1.6 garbled static int
674 1.6 garbled bebox_build_image(char *kernel, char *boot, char *rawdev, char *outname)
675 1.6 garbled {
676 1.6 garbled unsigned char *elf_img = NULL, *kern_img = NULL, *header_img = NULL;
677 1.6 garbled int i, ch, tmp, kgzlen, err, hsize = BEBOX_HEADER_SIZE;
678 1.6 garbled int elf_fd, bebox_fd, kern_fd, elf_img_len = 0;
679 1.6 garbled uint32_t swapped[128];
680 1.6 garbled off_t lenpos, kstart, kend, toff, endoff;
681 1.6 garbled unsigned long length;
682 1.6 garbled long flength, *offset;
683 1.6 garbled gzFile gzf;
684 1.6 garbled struct stat kern_stat;
685 1.6 garbled struct bebox_image_block *p;
686 1.6 garbled struct timeval tp;
687 1.6 garbled Elf32_External_Phdr phdr;
688 1.6 garbled
689 1.6 garbled if (saloneflag)
690 1.6 garbled hsize = 0;
691 1.6 garbled
692 1.6 garbled elf_fd = open_file("bootloader", boot, &hdr, &elf_stat);
693 1.6 garbled kern_fd = open_file("kernel", kernel, &khdr, &kern_stat);
694 1.6 garbled kern_len = kern_stat.st_size + BEBOX_MAGICSIZE + KERNLENSIZE;
695 1.6 garbled
696 1.6 garbled for (i = 0; i < ELFGET16(hdr.e_phnum); i++) {
697 1.6 garbled lseek(elf_fd, ELFGET32(hdr.e_phoff) + sizeof(phdr) * i,
698 1.6 garbled SEEK_SET);
699 1.6 garbled if (read(elf_fd, &phdr, sizeof(phdr)) != sizeof(phdr))
700 1.6 garbled errx(3, "Can't read input '%s' phdr : %s", boot,
701 1.6 garbled strerror(errno));
702 1.6 garbled
703 1.6 garbled if ((ELFGET32(phdr.p_type) != PT_LOAD) ||
704 1.6 garbled !(ELFGET32(phdr.p_flags) & PF_X))
705 1.6 garbled continue;
706 1.6 garbled
707 1.6 garbled fstat(elf_fd, &elf_stat);
708 1.6 garbled elf_img_len = elf_stat.st_size - ELFGET32(phdr.p_offset);
709 1.6 garbled lseek(elf_fd, ELFGET32(phdr.p_offset), SEEK_SET);
710 1.6 garbled
711 1.6 garbled break;
712 1.6 garbled }
713 1.6 garbled if ((bebox_fd = open(outname, O_RDWR|O_TRUNC, 0)) < 0) {
714 1.6 garbled /* we couldn't open it, it must be new */
715 1.6 garbled bebox_fd = creat(outname, 0644);
716 1.6 garbled if (bebox_fd < 0)
717 1.6 garbled errx(2, "Can't open output '%s': %s", outname,
718 1.6 garbled strerror(errno));
719 1.6 garbled }
720 1.6 garbled lseek(bebox_fd, hsize, SEEK_SET);
721 1.6 garbled
722 1.6 garbled /* write the header with the wrong values to get the offset right */
723 1.6 garbled bebox_write_header(bebox_fd, elf_img_len, kern_len);
724 1.6 garbled
725 1.6 garbled /* Copy kernel */
726 1.6 garbled kern_img = (unsigned char *)malloc(kern_stat.st_size);
727 1.6 garbled
728 1.6 garbled if (kern_img == NULL)
729 1.6 garbled errx(3, "Can't malloc: %s", strerror(errno));
730 1.6 garbled
731 1.6 garbled /* we need to jump back after having read the headers */
732 1.6 garbled lseek(kern_fd, 0, SEEK_SET);
733 1.6 garbled if (read(kern_fd, (void *)kern_img, kern_stat.st_size) !=
734 1.6 garbled kern_stat.st_size)
735 1.6 garbled errx(3, "Can't read kernel '%s' : %s", kernel, strerror(errno));
736 1.6 garbled
737 1.6 garbled gzf = gzdopen(dup(bebox_fd), "a");
738 1.6 garbled if (gzf == NULL)
739 1.6 garbled errx(3, "Can't init compression: %s", strerror(errno));
740 1.6 garbled if (gzsetparams(gzf, Z_BEST_COMPRESSION, Z_DEFAULT_STRATEGY) != Z_OK)
741 1.6 garbled errx(3, "%s", gzerror(gzf, &err));
742 1.6 garbled
743 1.6 garbled /* write a magic number and size before the kernel */
744 1.6 garbled write(bebox_fd, (void *)bebox_magic, BEBOX_MAGICSIZE);
745 1.6 garbled lenpos = lseek(bebox_fd, 0, SEEK_CUR);
746 1.6 garbled tmp = sa_htobe32(0);
747 1.6 garbled write(bebox_fd, (void *)&tmp, KERNLENSIZE);
748 1.6 garbled
749 1.6 garbled /* write in the compressed kernel */
750 1.6 garbled kstart = lseek(bebox_fd, 0, SEEK_CUR);
751 1.6 garbled kgzlen = gzwrite(gzf, kern_img, kern_stat.st_size);
752 1.6 garbled gzclose(gzf);
753 1.6 garbled kend = lseek(bebox_fd, 0, SEEK_CUR);
754 1.6 garbled free(kern_img);
755 1.6 garbled
756 1.6 garbled /* jump back to the length position now that we know the length */
757 1.6 garbled lseek(bebox_fd, lenpos, SEEK_SET);
758 1.6 garbled kgzlen = kend - kstart;
759 1.6 garbled tmp = sa_htobe32(kgzlen);
760 1.6 garbled write(bebox_fd, (void *)&tmp, KERNLENSIZE);
761 1.6 garbled
762 1.6 garbled /* now rewrite the header correctly */
763 1.6 garbled lseek(bebox_fd, hsize, SEEK_SET);
764 1.6 garbled toff = bebox_write_header(bebox_fd, elf_img_len, kgzlen);
765 1.6 garbled
766 1.6 garbled /* Copy boot image */
767 1.6 garbled elf_img = (unsigned char *)malloc(elf_img_len);
768 1.6 garbled if (!elf_img)
769 1.6 garbled errx(3, "Can't malloc: %s", strerror(errno));
770 1.6 garbled if (read(elf_fd, elf_img, elf_img_len) != elf_img_len)
771 1.6 garbled errx(3, "Can't read file '%s' : %s", boot, strerror(errno));
772 1.6 garbled lseek(bebox_fd, toff + hsize, SEEK_SET);
773 1.6 garbled write(bebox_fd, elf_img, elf_img_len);
774 1.6 garbled free(elf_img);
775 1.6 garbled
776 1.6 garbled close(kern_fd);
777 1.6 garbled close(elf_fd);
778 1.6 garbled
779 1.6 garbled if (saloneflag) {
780 1.6 garbled close(bebox_fd);
781 1.6 garbled return 0;
782 1.6 garbled }
783 1.6 garbled
784 1.6 garbled /* Now go back and write in the block header */
785 1.6 garbled endoff = lseek(bebox_fd, 0, SEEK_END);
786 1.6 garbled lseek(bebox_fd, 0, SEEK_SET);
787 1.6 garbled header_img = (unsigned char *)malloc(BEBOX_HEADER_SIZE);
788 1.6 garbled if (!header_img)
789 1.6 garbled errx(3, "Can't malloc: %s", strerror(errno));
790 1.6 garbled memset(header_img, 0, BEBOX_HEADER_SIZE);
791 1.6 garbled
792 1.6 garbled /* copy the boot image into the buffer */
793 1.6 garbled for (p = bebox_image_block; p->offset != -1; p++)
794 1.6 garbled memcpy(header_img + p->offset, p->data, p->size);
795 1.6 garbled
796 1.6 garbled /* fill used block bitmap */
797 1.6 garbled memset(header_img + BEBOX_FILE_BLOCK_MAP_START, 0xff,
798 1.6 garbled BEBOX_FILE_BLOCK_MAP_END - BEBOX_FILE_BLOCK_MAP_START);
799 1.6 garbled
800 1.6 garbled /* fix the file size in the header */
801 1.6 garbled *(long *)(header_img + BEBOX_FILE_SIZE_OFFSET) =
802 1.6 garbled (long)sa_htobe32(endoff);
803 1.6 garbled *(long *)(header_img + BEBOX_FILE_SIZE_ALIGN_OFFSET) =
804 1.6 garbled (long)sa_htobe32(roundup(endoff, BEBOX_BLOCK_SIZE));
805 1.6 garbled
806 1.6 garbled gettimeofday(&tp, 0);
807 1.6 garbled for (offset = bebox_mtime_offset; *offset != -1; offset++)
808 1.6 garbled *(long *)(header_img + *offset) = (long)sa_htobe32(tp.tv_sec);
809 1.6 garbled
810 1.6 garbled write(bebox_fd, header_img, BEBOX_HEADER_SIZE);
811 1.6 garbled
812 1.6 garbled /* now pad the end */
813 1.6 garbled flength = roundup(endoff, BEBOX_BLOCK_SIZE);
814 1.6 garbled /* refill the header_img with zeros */
815 1.6 garbled memset(header_img, 0, BEBOX_BLOCK_SIZE * 2);
816 1.6 garbled lseek(bebox_fd, 0, SEEK_END);
817 1.6 garbled write(bebox_fd, header_img, flength - endoff);
818 1.6 garbled
819 1.6 garbled close(bebox_fd);
820 1.6 garbled
821 1.6 garbled return 0;
822 1.6 garbled }
823 1.6 garbled
824 1.2 garbled int
825 1.2 garbled main(int argc, char **argv)
826 1.2 garbled {
827 1.2 garbled int ch, lfloppyflag=0;
828 1.2 garbled char *kernel = NULL, *boot = NULL, *rawdev = NULL, *outname = NULL;
829 1.2 garbled char *march = NULL;
830 1.9 garbled #ifdef USE_SYSCTL
831 1.2 garbled char machine_arch[SYS_NMLN];
832 1.2 garbled int mib[2] = { CTL_HW, HW_MACHINE_ARCH };
833 1.2 garbled #endif
834 1.2 garbled
835 1.2 garbled setprogname(argv[0]);
836 1.2 garbled kern_len = 0;
837 1.2 garbled
838 1.4 garbled while ((ch = getopt(argc, argv, "b:k:lm:r:sv")) != -1)
839 1.2 garbled switch (ch) {
840 1.2 garbled case 'b':
841 1.2 garbled boot = optarg;
842 1.2 garbled break;
843 1.2 garbled case 'k':
844 1.2 garbled kernel = optarg;
845 1.2 garbled break;
846 1.2 garbled case 'l':
847 1.2 garbled lfloppyflag = 1;
848 1.2 garbled break;
849 1.2 garbled case 'm':
850 1.2 garbled march = optarg;
851 1.2 garbled break;
852 1.2 garbled case 'r':
853 1.2 garbled rawdev = optarg;
854 1.2 garbled break;
855 1.2 garbled case 's':
856 1.2 garbled saloneflag = 1;
857 1.2 garbled break;
858 1.4 garbled case 'v':
859 1.4 garbled verboseflag = 1;
860 1.4 garbled break;
861 1.2 garbled case '?':
862 1.2 garbled default:
863 1.4 garbled usage(0);
864 1.2 garbled /* NOTREACHED */
865 1.2 garbled }
866 1.2 garbled argc -= optind;
867 1.2 garbled argv += optind;
868 1.2 garbled
869 1.2 garbled if (argc < 1)
870 1.4 garbled usage(0);
871 1.2 garbled
872 1.2 garbled if (kernel == NULL)
873 1.2 garbled kernel = "/netbsd";
874 1.2 garbled
875 1.2 garbled if (boot == NULL)
876 1.2 garbled boot = "/usr/mdec/boot";
877 1.2 garbled
878 1.7 garbled if (march != NULL && strcmp(march, "") == 0)
879 1.4 garbled march = NULL;
880 1.2 garbled if (march == NULL) {
881 1.2 garbled int i;
882 1.9 garbled #ifdef USE_SYSCTL
883 1.2 garbled size_t len = sizeof(machine_arch);
884 1.2 garbled
885 1.2 garbled if (sysctl(mib, sizeof (mib) / sizeof (mib[0]), machine_arch,
886 1.2 garbled &len, NULL, 0) != -1) {
887 1.2 garbled for (i=0; sup_plats[i] != NULL; i++) {
888 1.2 garbled if (strcmp(sup_plats[i], machine_arch) == 0) {
889 1.2 garbled march = strdup(sup_plats[i]);
890 1.2 garbled break;
891 1.2 garbled }
892 1.2 garbled }
893 1.2 garbled }
894 1.4 garbled if (march == NULL)
895 1.2 garbled #endif
896 1.4 garbled usage(1);
897 1.2 garbled }
898 1.2 garbled
899 1.2 garbled outname = argv[0];
900 1.2 garbled
901 1.2 garbled if (strcmp(march, "prep") == 0)
902 1.4 garbled return(prep_build_image(kernel, boot, rawdev, outname));
903 1.4 garbled if (strcmp(march, "rs6000") == 0)
904 1.4 garbled return(rs6000_build_image(kernel, boot, rawdev, outname));
905 1.6 garbled if (strcmp(march, "bebox") == 0)
906 1.6 garbled return(bebox_build_image(kernel, boot, rawdev, outname));
907 1.2 garbled
908 1.4 garbled usage(1);
909 1.2 garbled return(0);
910 1.1 garbled }
911