mkubootimage.c revision 1.8 1 1.8 riz /* $NetBSD: mkubootimage.c,v 1.8 2011/08/01 06:16:35 riz Exp $ */
2 1.1 jmcneill
3 1.1 jmcneill /*-
4 1.1 jmcneill * Copyright (c) 2010 Jared D. McNeill <jmcneill (at) invisible.ca>
5 1.1 jmcneill * All rights reserved.
6 1.1 jmcneill *
7 1.1 jmcneill * Redistribution and use in source and binary forms, with or without
8 1.1 jmcneill * modification, are permitted provided that the following conditions
9 1.1 jmcneill * are met:
10 1.1 jmcneill * 1. Redistributions of source code must retain the above copyright
11 1.1 jmcneill * notice, this list of conditions and the following disclaimer.
12 1.1 jmcneill * 2. The name of the author may not be used to endorse or promote products
13 1.1 jmcneill * derived from this software without specific prior written permission.
14 1.1 jmcneill *
15 1.1 jmcneill * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
16 1.1 jmcneill * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17 1.1 jmcneill * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
18 1.1 jmcneill * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
19 1.1 jmcneill * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
20 1.1 jmcneill * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
21 1.1 jmcneill * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
22 1.1 jmcneill * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
23 1.1 jmcneill * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24 1.1 jmcneill * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25 1.1 jmcneill * SUCH DAMAGE.
26 1.1 jmcneill */
27 1.1 jmcneill
28 1.2 dogcow #if HAVE_NBTOOL_CONFIG_H
29 1.2 dogcow #include "nbtool_config.h"
30 1.2 dogcow #endif
31 1.2 dogcow
32 1.1 jmcneill #include <sys/cdefs.h>
33 1.8 riz __RCSID("$NetBSD: mkubootimage.c,v 1.8 2011/08/01 06:16:35 riz Exp $");
34 1.1 jmcneill
35 1.1 jmcneill #include <sys/mman.h>
36 1.1 jmcneill #include <sys/stat.h>
37 1.1 jmcneill #include <err.h>
38 1.1 jmcneill #include <errno.h>
39 1.1 jmcneill #include <fcntl.h>
40 1.1 jmcneill #include <limits.h>
41 1.1 jmcneill #include <stdint.h>
42 1.1 jmcneill #include <stdio.h>
43 1.1 jmcneill #include <stdlib.h>
44 1.1 jmcneill #include <string.h>
45 1.1 jmcneill #include <time.h>
46 1.1 jmcneill #include <unistd.h>
47 1.1 jmcneill
48 1.1 jmcneill #include "uboot.h"
49 1.1 jmcneill
50 1.1 jmcneill #ifndef __arraycount
51 1.1 jmcneill #define __arraycount(__x) (sizeof(__x) / sizeof(__x[0]))
52 1.1 jmcneill #endif
53 1.1 jmcneill
54 1.1 jmcneill extern uint32_t crc32(const void *, size_t);
55 1.1 jmcneill
56 1.6 phx static enum uboot_image_os image_os = IH_OS_NETBSD;
57 1.1 jmcneill static enum uboot_image_arch image_arch = IH_ARCH_UNKNOWN;
58 1.1 jmcneill static enum uboot_image_type image_type = IH_TYPE_UNKNOWN;
59 1.1 jmcneill static enum uboot_image_comp image_comp = IH_COMP_NONE;
60 1.1 jmcneill static uint32_t image_loadaddr = 0;
61 1.1 jmcneill static uint32_t image_entrypoint = 0;
62 1.1 jmcneill static char *image_name;
63 1.8 riz static uint32_t image_magic = IH_MAGIC;
64 1.1 jmcneill
65 1.6 phx struct uboot_os {
66 1.6 phx enum uboot_image_os os;
67 1.6 phx const char *name;
68 1.6 phx } uboot_os[] = {
69 1.6 phx { IH_OS_OPENBSD, "openbsd" },
70 1.6 phx { IH_OS_NETBSD, "netbsd" },
71 1.6 phx { IH_OS_FREEBSD, "freebsd" },
72 1.6 phx { IH_OS_LINUX, "linux" },
73 1.6 phx };
74 1.6 phx
75 1.6 phx static enum uboot_image_os
76 1.6 phx get_os(const char *name)
77 1.6 phx {
78 1.6 phx unsigned int i;
79 1.6 phx
80 1.6 phx for (i = 0; i < __arraycount(uboot_os); i++) {
81 1.6 phx if (strcmp(uboot_os[i].name, name) == 0)
82 1.6 phx return uboot_os[i].os;
83 1.6 phx }
84 1.6 phx
85 1.6 phx return IH_OS_UNKNOWN;
86 1.6 phx }
87 1.6 phx
88 1.7 matt static const char *
89 1.7 matt get_os_name(enum uboot_image_os os)
90 1.7 matt {
91 1.7 matt unsigned int i;
92 1.7 matt
93 1.7 matt for (i = 0; i < __arraycount(uboot_os); i++) {
94 1.7 matt if (uboot_os[i].os == os)
95 1.7 matt return uboot_os[i].name;
96 1.7 matt }
97 1.7 matt
98 1.7 matt return "Unknown";
99 1.7 matt }
100 1.7 matt
101 1.1 jmcneill struct uboot_arch {
102 1.1 jmcneill enum uboot_image_arch arch;
103 1.1 jmcneill const char *name;
104 1.1 jmcneill } uboot_arch[] = {
105 1.1 jmcneill { IH_ARCH_ARM, "arm" },
106 1.5 matt { IH_ARCH_MIPS, "mips" },
107 1.5 matt { IH_ARCH_MIPS64, "mips64" },
108 1.1 jmcneill { IH_ARCH_PPC, "powerpc" },
109 1.1 jmcneill };
110 1.1 jmcneill
111 1.1 jmcneill static enum uboot_image_arch
112 1.1 jmcneill get_arch(const char *name)
113 1.1 jmcneill {
114 1.1 jmcneill unsigned int i;
115 1.1 jmcneill
116 1.1 jmcneill for (i = 0; i < __arraycount(uboot_arch); i++) {
117 1.1 jmcneill if (strcmp(uboot_arch[i].name, name) == 0)
118 1.1 jmcneill return uboot_arch[i].arch;
119 1.1 jmcneill }
120 1.1 jmcneill
121 1.1 jmcneill return IH_ARCH_UNKNOWN;
122 1.1 jmcneill }
123 1.1 jmcneill
124 1.7 matt static const char *
125 1.7 matt get_arch_name(enum uboot_image_arch arch)
126 1.7 matt {
127 1.7 matt unsigned int i;
128 1.7 matt
129 1.7 matt for (i = 0; i < __arraycount(uboot_arch); i++) {
130 1.7 matt if (uboot_arch[i].arch == arch)
131 1.7 matt return uboot_arch[i].name;
132 1.7 matt }
133 1.7 matt
134 1.7 matt return "Unknown";
135 1.7 matt }
136 1.7 matt
137 1.1 jmcneill struct uboot_type {
138 1.1 jmcneill enum uboot_image_type type;
139 1.1 jmcneill const char *name;
140 1.1 jmcneill } uboot_type[] = {
141 1.6 phx { IH_TYPE_STANDALONE, "standalone" },
142 1.1 jmcneill { IH_TYPE_KERNEL, "kernel" },
143 1.1 jmcneill { IH_TYPE_RAMDISK, "ramdisk" },
144 1.1 jmcneill { IH_TYPE_FILESYSTEM, "fs" },
145 1.1 jmcneill };
146 1.1 jmcneill
147 1.1 jmcneill static enum uboot_image_type
148 1.1 jmcneill get_type(const char *name)
149 1.1 jmcneill {
150 1.1 jmcneill unsigned int i;
151 1.1 jmcneill
152 1.1 jmcneill for (i = 0; i < __arraycount(uboot_type); i++) {
153 1.1 jmcneill if (strcmp(uboot_type[i].name, name) == 0)
154 1.1 jmcneill return uboot_type[i].type;
155 1.1 jmcneill }
156 1.1 jmcneill
157 1.1 jmcneill return IH_TYPE_UNKNOWN;
158 1.1 jmcneill }
159 1.1 jmcneill
160 1.7 matt static const char *
161 1.7 matt get_type_name(enum uboot_image_type type)
162 1.7 matt {
163 1.7 matt unsigned int i;
164 1.7 matt
165 1.7 matt for (i = 0; i < __arraycount(uboot_type); i++) {
166 1.7 matt if (uboot_type[i].type == type)
167 1.7 matt return uboot_type[i].name;
168 1.7 matt }
169 1.7 matt
170 1.7 matt return "Unknown";
171 1.7 matt }
172 1.7 matt
173 1.1 jmcneill struct uboot_comp {
174 1.1 jmcneill enum uboot_image_comp comp;
175 1.1 jmcneill const char *name;
176 1.1 jmcneill } uboot_comp[] = {
177 1.1 jmcneill { IH_COMP_NONE, "none" },
178 1.1 jmcneill { IH_COMP_GZIP, "gz" },
179 1.1 jmcneill { IH_COMP_BZIP2, "bz2" },
180 1.1 jmcneill };
181 1.1 jmcneill
182 1.1 jmcneill static enum uboot_image_comp
183 1.1 jmcneill get_comp(const char *name)
184 1.1 jmcneill {
185 1.1 jmcneill unsigned int i;
186 1.1 jmcneill
187 1.1 jmcneill for (i = 0; i < __arraycount(uboot_comp); i++) {
188 1.1 jmcneill if (strcmp(uboot_comp[i].name, name) == 0)
189 1.1 jmcneill return uboot_comp[i].comp;
190 1.1 jmcneill }
191 1.1 jmcneill
192 1.1 jmcneill return IH_TYPE_UNKNOWN;
193 1.1 jmcneill }
194 1.1 jmcneill
195 1.7 matt static const char *
196 1.7 matt get_comp_name(enum uboot_image_comp comp)
197 1.7 matt {
198 1.7 matt unsigned int i;
199 1.7 matt
200 1.7 matt for (i = 0; i < __arraycount(uboot_comp); i++) {
201 1.7 matt if (uboot_comp[i].comp == comp)
202 1.7 matt return uboot_comp[i].name;
203 1.7 matt }
204 1.7 matt
205 1.7 matt return "Unknown";
206 1.7 matt }
207 1.7 matt
208 1.1 jmcneill static void
209 1.1 jmcneill usage(void)
210 1.1 jmcneill {
211 1.5 matt fprintf(stderr, "usage: mkubootimage -A <arm|mips|mips64|powerpc>");
212 1.1 jmcneill fprintf(stderr, " -C <none|gz|bz2>");
213 1.6 phx fprintf(stderr, " -O <openbsd|netbsd|freebsd|linux>");
214 1.6 phx fprintf(stderr, " -T <standalone|kernel|ramdisk|fs>");
215 1.8 riz fprintf(stderr, " -a <addr> [-e <ep>] [-m <magic>] -n <name>");
216 1.1 jmcneill fprintf(stderr, " <srcfile> <dstfile>\n");
217 1.1 jmcneill
218 1.1 jmcneill exit(EXIT_FAILURE);
219 1.1 jmcneill }
220 1.1 jmcneill
221 1.1 jmcneill static void
222 1.1 jmcneill dump_header(struct uboot_image_header *hdr)
223 1.1 jmcneill {
224 1.1 jmcneill time_t tm = ntohl(hdr->ih_time);
225 1.1 jmcneill
226 1.1 jmcneill printf(" magic: 0x%08x\n", ntohl(hdr->ih_magic));
227 1.1 jmcneill printf(" time: %s", ctime(&tm));
228 1.1 jmcneill printf(" size: %u\n", ntohl(hdr->ih_size));
229 1.1 jmcneill printf(" load addr: 0x%08x\n", ntohl(hdr->ih_load));
230 1.1 jmcneill printf(" entry point: 0x%08x\n", ntohl(hdr->ih_ep));
231 1.1 jmcneill printf(" data crc: 0x%08x\n", ntohl(hdr->ih_dcrc));
232 1.7 matt printf(" os: %d (%s)\n", hdr->ih_os,
233 1.7 matt get_os_name(hdr->ih_os));
234 1.7 matt printf(" arch: %d (%s)\n", hdr->ih_arch,
235 1.7 matt get_arch_name(hdr->ih_arch));
236 1.7 matt printf(" type: %d (%s)\n", hdr->ih_type,
237 1.7 matt get_type_name(hdr->ih_type));
238 1.7 matt printf(" comp: %d (%s)\n", hdr->ih_comp,
239 1.7 matt get_comp_name(hdr->ih_comp));
240 1.1 jmcneill printf(" name: %s\n", hdr->ih_name);
241 1.1 jmcneill printf(" header crc: 0x%08x\n", hdr->ih_hcrc);
242 1.1 jmcneill }
243 1.1 jmcneill
244 1.1 jmcneill static int
245 1.1 jmcneill generate_header(struct uboot_image_header *hdr, int kernel_fd)
246 1.1 jmcneill {
247 1.1 jmcneill uint8_t *p;
248 1.1 jmcneill struct stat st;
249 1.1 jmcneill uint32_t crc;
250 1.1 jmcneill int error;
251 1.1 jmcneill
252 1.1 jmcneill error = fstat(kernel_fd, &st);
253 1.1 jmcneill if (error == -1) {
254 1.1 jmcneill perror("stat");
255 1.1 jmcneill return errno;
256 1.1 jmcneill }
257 1.1 jmcneill
258 1.1 jmcneill if (st.st_size + sizeof(*hdr) > UINT32_MAX) {
259 1.1 jmcneill fprintf(stderr, "fatal: kernel too big\n");
260 1.1 jmcneill return EINVAL;
261 1.1 jmcneill }
262 1.1 jmcneill
263 1.1 jmcneill p = mmap(0, st.st_size, PROT_READ, MAP_FILE|MAP_SHARED, kernel_fd, 0);
264 1.1 jmcneill if (p == MAP_FAILED) {
265 1.1 jmcneill perror("mmap kernel");
266 1.1 jmcneill return EINVAL;
267 1.1 jmcneill }
268 1.1 jmcneill crc = crc32(p, st.st_size);
269 1.1 jmcneill munmap(p, st.st_size);
270 1.1 jmcneill
271 1.1 jmcneill memset(hdr, 0, sizeof(*hdr));
272 1.8 riz hdr->ih_magic = htonl(image_magic);
273 1.1 jmcneill hdr->ih_time = htonl(st.st_mtime);
274 1.1 jmcneill hdr->ih_size = htonl(st.st_size);
275 1.1 jmcneill hdr->ih_load = htonl(image_loadaddr);
276 1.1 jmcneill hdr->ih_ep = htonl(image_entrypoint);
277 1.1 jmcneill hdr->ih_dcrc = htonl(crc);
278 1.6 phx hdr->ih_os = image_os;
279 1.1 jmcneill hdr->ih_arch = image_arch;
280 1.1 jmcneill hdr->ih_type = image_type;
281 1.1 jmcneill hdr->ih_comp = image_comp;
282 1.7 matt strlcpy((char *)hdr->ih_name, image_name, sizeof(hdr->ih_name));
283 1.1 jmcneill crc = crc32((void *)hdr, sizeof(*hdr));
284 1.1 jmcneill hdr->ih_hcrc = htonl(crc);
285 1.1 jmcneill
286 1.1 jmcneill dump_header(hdr);
287 1.1 jmcneill
288 1.1 jmcneill return 0;
289 1.1 jmcneill }
290 1.1 jmcneill
291 1.1 jmcneill static int
292 1.1 jmcneill write_image(struct uboot_image_header *hdr, int kernel_fd, int image_fd)
293 1.1 jmcneill {
294 1.1 jmcneill uint8_t buf[4096];
295 1.1 jmcneill ssize_t rlen, wlen;
296 1.1 jmcneill
297 1.1 jmcneill wlen = write(image_fd, hdr, sizeof(*hdr));
298 1.1 jmcneill if (wlen != sizeof(*hdr)) {
299 1.1 jmcneill perror("short write");
300 1.1 jmcneill return errno;
301 1.1 jmcneill }
302 1.1 jmcneill
303 1.1 jmcneill while ((rlen = read(kernel_fd, buf, sizeof(buf))) > 0) {
304 1.1 jmcneill wlen = write(image_fd, buf, rlen);
305 1.1 jmcneill if (wlen != rlen) {
306 1.1 jmcneill perror("short write");
307 1.1 jmcneill return errno;
308 1.1 jmcneill }
309 1.1 jmcneill }
310 1.1 jmcneill
311 1.1 jmcneill return 0;
312 1.1 jmcneill }
313 1.1 jmcneill
314 1.1 jmcneill int
315 1.1 jmcneill main(int argc, char *argv[])
316 1.1 jmcneill {
317 1.1 jmcneill struct uboot_image_header hdr;
318 1.1 jmcneill const char *src, *dest;
319 1.1 jmcneill char *ep;
320 1.1 jmcneill int kernel_fd, image_fd;
321 1.1 jmcneill int ch;
322 1.1 jmcneill unsigned long num;
323 1.1 jmcneill
324 1.8 riz while ((ch = getopt(argc, argv, "A:C:O:T:a:e:hm:n:")) != -1) {
325 1.1 jmcneill switch (ch) {
326 1.1 jmcneill case 'A': /* arch */
327 1.1 jmcneill image_arch = get_arch(optarg);
328 1.1 jmcneill break;
329 1.1 jmcneill case 'C': /* comp */
330 1.1 jmcneill image_comp = get_comp(optarg);
331 1.1 jmcneill break;
332 1.6 phx case 'O': /* os */
333 1.6 phx image_os = get_os(optarg);
334 1.6 phx break;
335 1.1 jmcneill case 'T': /* type */
336 1.1 jmcneill image_type = get_type(optarg);
337 1.1 jmcneill break;
338 1.1 jmcneill case 'a': /* addr */
339 1.1 jmcneill errno = 0;
340 1.1 jmcneill num = strtoul(optarg, &ep, 0);
341 1.1 jmcneill if (*ep != '\0' || (errno == ERANGE &&
342 1.1 jmcneill (num == ULONG_MAX || num == 0)))
343 1.1 jmcneill errx(1, "illegal number -- %s", optarg);
344 1.1 jmcneill image_loadaddr = (uint32_t)num;
345 1.1 jmcneill break;
346 1.1 jmcneill case 'e': /* ep */
347 1.1 jmcneill errno = 0;
348 1.1 jmcneill num = strtoul(optarg, &ep, 0);
349 1.1 jmcneill if (*ep != '\0' || (errno == ERANGE &&
350 1.1 jmcneill (num == ULONG_MAX || num == 0)))
351 1.1 jmcneill errx(1, "illegal number -- %s", optarg);
352 1.1 jmcneill image_entrypoint = (uint32_t)num;
353 1.1 jmcneill break;
354 1.8 riz case 'm': /* magic */
355 1.8 riz errno = 0;
356 1.8 riz num = strtoul(optarg, &ep, 0);
357 1.8 riz if (*ep != '\0' || (errno == ERANGE &&
358 1.8 riz (num == ULONG_MAX || num == 0)))
359 1.8 riz errx(1, "illegal number -- %s", optarg);
360 1.8 riz image_magic = (uint32_t)num;
361 1.1 jmcneill case 'n': /* name */
362 1.1 jmcneill image_name = strdup(optarg);
363 1.1 jmcneill break;
364 1.1 jmcneill case 'h':
365 1.1 jmcneill default:
366 1.1 jmcneill usage();
367 1.1 jmcneill /* NOTREACHED */
368 1.1 jmcneill }
369 1.1 jmcneill }
370 1.1 jmcneill argc -= optind;
371 1.1 jmcneill argv += optind;
372 1.1 jmcneill
373 1.1 jmcneill if (argc != 2)
374 1.1 jmcneill usage();
375 1.1 jmcneill
376 1.4 kiyohara if (image_entrypoint == 0)
377 1.4 kiyohara image_entrypoint = image_loadaddr;
378 1.4 kiyohara
379 1.1 jmcneill if (image_arch == IH_ARCH_UNKNOWN ||
380 1.1 jmcneill image_type == IH_TYPE_UNKNOWN ||
381 1.1 jmcneill image_loadaddr == 0 ||
382 1.1 jmcneill image_name == NULL)
383 1.1 jmcneill usage();
384 1.1 jmcneill
385 1.1 jmcneill src = argv[0];
386 1.1 jmcneill dest = argv[1];
387 1.1 jmcneill
388 1.1 jmcneill kernel_fd = open(src, O_RDONLY);
389 1.1 jmcneill if (kernel_fd == -1) {
390 1.1 jmcneill perror("open kernel");
391 1.1 jmcneill return EXIT_FAILURE;
392 1.1 jmcneill }
393 1.1 jmcneill image_fd = open(dest, O_WRONLY|O_CREAT, 0666);
394 1.1 jmcneill if (image_fd == -1) {
395 1.1 jmcneill perror("open image");
396 1.1 jmcneill return EXIT_FAILURE;
397 1.1 jmcneill }
398 1.1 jmcneill
399 1.1 jmcneill if (generate_header(&hdr, kernel_fd) != 0)
400 1.1 jmcneill return EXIT_FAILURE;
401 1.1 jmcneill
402 1.1 jmcneill if (write_image(&hdr, kernel_fd, image_fd) != 0)
403 1.1 jmcneill return EXIT_FAILURE;
404 1.1 jmcneill
405 1.1 jmcneill close(image_fd);
406 1.1 jmcneill close(kernel_fd);
407 1.1 jmcneill
408 1.1 jmcneill return EXIT_SUCCESS;
409 1.1 jmcneill }
410