exec.c revision 1.69 1 1.69 maxv /* $NetBSD: exec.c,v 1.69 2017/10/07 10:26:38 maxv Exp $ */
2 1.23 ad
3 1.62 maxv /*
4 1.40 ad * Copyright (c) 2008, 2009 The NetBSD Foundation, Inc.
5 1.23 ad * All rights reserved.
6 1.23 ad *
7 1.23 ad * Redistribution and use in source and binary forms, with or without
8 1.23 ad * modification, are permitted provided that the following conditions
9 1.23 ad * are met:
10 1.23 ad * 1. Redistributions of source code must retain the above copyright
11 1.23 ad * notice, this list of conditions and the following disclaimer.
12 1.23 ad * 2. Redistributions in binary form must reproduce the above copyright
13 1.23 ad * notice, this list of conditions and the following disclaimer in the
14 1.23 ad * documentation and/or other materials provided with the distribution.
15 1.23 ad *
16 1.23 ad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
17 1.23 ad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
18 1.23 ad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
19 1.23 ad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
20 1.23 ad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
21 1.23 ad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
22 1.23 ad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
23 1.23 ad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
24 1.23 ad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
25 1.23 ad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
26 1.23 ad * POSSIBILITY OF SUCH DAMAGE.
27 1.23 ad */
28 1.1 perry
29 1.1 perry /*
30 1.1 perry * Copyright (c) 1982, 1986, 1990, 1993
31 1.1 perry * The Regents of the University of California. All rights reserved.
32 1.19 agc *
33 1.19 agc * Redistribution and use in source and binary forms, with or without
34 1.19 agc * modification, are permitted provided that the following conditions
35 1.19 agc * are met:
36 1.19 agc * 1. Redistributions of source code must retain the above copyright
37 1.19 agc * notice, this list of conditions and the following disclaimer.
38 1.19 agc * 2. Redistributions in binary form must reproduce the above copyright
39 1.19 agc * notice, this list of conditions and the following disclaimer in the
40 1.19 agc * documentation and/or other materials provided with the distribution.
41 1.19 agc * 3. Neither the name of the University nor the names of its contributors
42 1.19 agc * may be used to endorse or promote products derived from this software
43 1.19 agc * without specific prior written permission.
44 1.19 agc *
45 1.19 agc * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
46 1.19 agc * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
47 1.19 agc * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
48 1.19 agc * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
49 1.19 agc * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
50 1.19 agc * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
51 1.19 agc * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
52 1.19 agc * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
53 1.19 agc * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
54 1.19 agc * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
55 1.19 agc * SUCH DAMAGE.
56 1.19 agc *
57 1.19 agc * @(#)boot.c 8.1 (Berkeley) 6/10/93
58 1.19 agc */
59 1.19 agc
60 1.19 agc /*
61 1.1 perry * Copyright (c) 1996
62 1.1 perry * Matthias Drochner. All rights reserved.
63 1.1 perry * Copyright (c) 1996
64 1.1 perry * Perry E. Metzger. All rights reserved.
65 1.1 perry *
66 1.1 perry * Redistribution and use in source and binary forms, with or without
67 1.1 perry * modification, are permitted provided that the following conditions
68 1.1 perry * are met:
69 1.1 perry * 1. Redistributions of source code must retain the above copyright
70 1.1 perry * notice, this list of conditions and the following disclaimer.
71 1.1 perry * 2. Redistributions in binary form must reproduce the above copyright
72 1.1 perry * notice, this list of conditions and the following disclaimer in the
73 1.1 perry * documentation and/or other materials provided with the distribution.
74 1.1 perry *
75 1.1 perry * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
76 1.1 perry * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
77 1.1 perry * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
78 1.1 perry * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
79 1.1 perry * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
80 1.1 perry * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
81 1.1 perry * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
82 1.1 perry * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
83 1.1 perry * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
84 1.1 perry * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
85 1.1 perry * SUCH DAMAGE.
86 1.1 perry *
87 1.1 perry * @(#)boot.c 8.1 (Berkeley) 6/10/93
88 1.1 perry */
89 1.1 perry
90 1.2 thorpej /*
91 1.62 maxv * Starts a NetBSD ELF kernel. The low level startup is done in startprog.S.
92 1.8 christos * This is a special version of exec.c to support use of XMS.
93 1.1 perry */
94 1.8 christos
95 1.1 perry #include <sys/param.h>
96 1.1 perry #include <sys/reboot.h>
97 1.40 ad #include <sys/reboot.h>
98 1.1 perry
99 1.53 jakllsch #include <i386/multiboot.h>
100 1.33 joerg
101 1.1 perry #include <lib/libsa/stand.h>
102 1.23 ad #include <lib/libkern/libkern.h>
103 1.4 drochner
104 1.6 christos #include "loadfile.h"
105 1.1 perry #include "libi386.h"
106 1.4 drochner #include "bootinfo.h"
107 1.23 ad #include "bootmod.h"
108 1.42 jmcneill #include "vbe.h"
109 1.16 jdolecek #ifdef SUPPORT_PS2
110 1.16 jdolecek #include "biosmca.h"
111 1.16 jdolecek #endif
112 1.63 nonaka #ifdef EFIBOOT
113 1.63 nonaka #include "efiboot.h"
114 1.63 nonaka #undef DEBUG /* XXX */
115 1.63 nonaka #endif
116 1.1 perry
117 1.6 christos #define BOOT_NARGS 6
118 1.1 perry
119 1.23 ad #ifndef PAGE_SIZE
120 1.23 ad #define PAGE_SIZE 4096
121 1.23 ad #endif
122 1.23 ad
123 1.43 tsutsui #define MODULE_WARNING_SEC 5
124 1.41 jmcneill
125 1.4 drochner extern struct btinfo_console btinfo_console;
126 1.4 drochner
127 1.23 ad boot_module_t *boot_modules;
128 1.23 ad bool boot_modules_enabled = true;
129 1.23 ad bool kernel_loaded;
130 1.23 ad
131 1.47 uebayasi typedef struct userconf_command {
132 1.47 uebayasi char *uc_text;
133 1.47 uebayasi size_t uc_len;
134 1.47 uebayasi struct userconf_command *uc_next;
135 1.47 uebayasi } userconf_command_t;
136 1.47 uebayasi userconf_command_t *userconf_commands = NULL;
137 1.47 uebayasi
138 1.39 jmcneill static struct btinfo_framebuffer btinfo_framebuffer;
139 1.39 jmcneill
140 1.23 ad static struct btinfo_modulelist *btinfo_modulelist;
141 1.23 ad static size_t btinfo_modulelist_size;
142 1.23 ad static uint32_t image_end;
143 1.26 ad static char module_base[64] = "/";
144 1.40 ad static int howto;
145 1.23 ad
146 1.47 uebayasi static struct btinfo_userconfcommands *btinfo_userconfcommands = NULL;
147 1.47 uebayasi static size_t btinfo_userconfcommands_size = 0;
148 1.47 uebayasi
149 1.41 jmcneill static void module_init(const char *);
150 1.57 jakllsch static void module_add_common(const char *, uint8_t);
151 1.23 ad
152 1.47 uebayasi static void userconf_init(void);
153 1.47 uebayasi
154 1.67 nonaka static void extract_device(const char *, char *, size_t);
155 1.67 nonaka static void module_base_path(char *, size_t);
156 1.67 nonaka static int module_open(boot_module_t *, int, const char *, const char *,
157 1.67 nonaka bool);
158 1.67 nonaka
159 1.34 ad void
160 1.39 jmcneill framebuffer_configure(struct btinfo_framebuffer *fb)
161 1.39 jmcneill {
162 1.39 jmcneill if (fb)
163 1.39 jmcneill btinfo_framebuffer = *fb;
164 1.39 jmcneill else {
165 1.39 jmcneill btinfo_framebuffer.physaddr = 0;
166 1.39 jmcneill btinfo_framebuffer.flags = 0;
167 1.39 jmcneill }
168 1.39 jmcneill }
169 1.39 jmcneill
170 1.39 jmcneill void
171 1.34 ad module_add(char *name)
172 1.34 ad {
173 1.46 jmcneill return module_add_common(name, BM_TYPE_KMOD);
174 1.46 jmcneill }
175 1.46 jmcneill
176 1.46 jmcneill void
177 1.46 jmcneill splash_add(char *name)
178 1.46 jmcneill {
179 1.46 jmcneill return module_add_common(name, BM_TYPE_IMAGE);
180 1.46 jmcneill }
181 1.46 jmcneill
182 1.49 tls void
183 1.49 tls rnd_add(char *name)
184 1.49 tls {
185 1.49 tls return module_add_common(name, BM_TYPE_RND);
186 1.49 tls }
187 1.49 tls
188 1.51 jmcneill void
189 1.51 jmcneill fs_add(char *name)
190 1.51 jmcneill {
191 1.51 jmcneill return module_add_common(name, BM_TYPE_FS);
192 1.51 jmcneill }
193 1.51 jmcneill
194 1.46 jmcneill static void
195 1.57 jakllsch module_add_common(const char *name, uint8_t type)
196 1.46 jmcneill {
197 1.34 ad boot_module_t *bm, *bmp;
198 1.34 ad size_t len;
199 1.34 ad char *str;
200 1.34 ad
201 1.35 ad while (*name == ' ' || *name == '\t')
202 1.35 ad ++name;
203 1.35 ad
204 1.67 nonaka for (bm = boot_modules; bm != NULL; bm = bm->bm_next)
205 1.67 nonaka if (bm->bm_type == type && strcmp(bm->bm_path, name) == 0)
206 1.67 nonaka return;
207 1.67 nonaka
208 1.34 ad bm = alloc(sizeof(boot_module_t));
209 1.34 ad len = strlen(name) + 1;
210 1.34 ad str = alloc(len);
211 1.34 ad if (bm == NULL || str == NULL) {
212 1.34 ad printf("couldn't allocate module\n");
213 1.34 ad return;
214 1.34 ad }
215 1.34 ad memcpy(str, name, len);
216 1.34 ad bm->bm_path = str;
217 1.34 ad bm->bm_next = NULL;
218 1.46 jmcneill bm->bm_type = type;
219 1.34 ad if (boot_modules == NULL)
220 1.34 ad boot_modules = bm;
221 1.34 ad else {
222 1.34 ad for (bmp = boot_modules; bmp->bm_next;
223 1.34 ad bmp = bmp->bm_next)
224 1.34 ad ;
225 1.34 ad bmp->bm_next = bm;
226 1.34 ad }
227 1.34 ad }
228 1.34 ad
229 1.47 uebayasi void
230 1.47 uebayasi userconf_add(char *cmd)
231 1.47 uebayasi {
232 1.47 uebayasi userconf_command_t *uc;
233 1.47 uebayasi size_t len;
234 1.47 uebayasi char *text;
235 1.47 uebayasi
236 1.47 uebayasi while (*cmd == ' ' || *cmd == '\t')
237 1.47 uebayasi ++cmd;
238 1.47 uebayasi
239 1.47 uebayasi uc = alloc(sizeof(*uc));
240 1.47 uebayasi if (uc == NULL) {
241 1.47 uebayasi printf("couldn't allocate command\n");
242 1.47 uebayasi return;
243 1.47 uebayasi }
244 1.47 uebayasi
245 1.47 uebayasi len = strlen(cmd) + 1;
246 1.47 uebayasi text = alloc(len);
247 1.47 uebayasi if (text == NULL) {
248 1.47 uebayasi dealloc(uc, sizeof(*uc));
249 1.47 uebayasi printf("couldn't allocate command\n");
250 1.47 uebayasi return;
251 1.47 uebayasi }
252 1.47 uebayasi memcpy(text, cmd, len);
253 1.47 uebayasi
254 1.47 uebayasi uc->uc_text = text;
255 1.47 uebayasi uc->uc_len = len;
256 1.47 uebayasi uc->uc_next = NULL;
257 1.47 uebayasi
258 1.47 uebayasi if (userconf_commands == NULL)
259 1.47 uebayasi userconf_commands = uc;
260 1.47 uebayasi else {
261 1.47 uebayasi userconf_command_t *ucp;
262 1.47 uebayasi for (ucp = userconf_commands; ucp->uc_next != NULL;
263 1.47 uebayasi ucp = ucp->uc_next)
264 1.47 uebayasi ;
265 1.47 uebayasi ucp->uc_next = uc;
266 1.47 uebayasi }
267 1.47 uebayasi }
268 1.47 uebayasi
269 1.69 maxv struct btinfo_prekern bi_prekern;
270 1.69 maxv int has_prekern = 0;
271 1.69 maxv
272 1.69 maxv static int
273 1.69 maxv common_load_prekern(const char *file, u_long *basemem, u_long *extmem,
274 1.69 maxv physaddr_t loadaddr, int floppy, u_long marks[MARK_MAX])
275 1.69 maxv {
276 1.69 maxv paddr_t kernpa_start, kernpa_end;
277 1.69 maxv char prekernpath[] = "/prekern";
278 1.69 maxv int fd, flags;
279 1.69 maxv
280 1.69 maxv *extmem = getextmem();
281 1.69 maxv *basemem = getbasemem();
282 1.69 maxv
283 1.69 maxv marks[MARK_START] = loadaddr;
284 1.69 maxv
285 1.69 maxv /* Load the prekern (static) */
286 1.69 maxv flags = LOAD_KERNEL & ~(LOAD_HDR|COUNT_HDR|LOAD_SYM|COUNT_SYM);
287 1.69 maxv if ((fd = loadfile(prekernpath, marks, flags)) == -1)
288 1.69 maxv return EIO;
289 1.69 maxv close(fd);
290 1.69 maxv
291 1.69 maxv marks[MARK_END] = (1UL << 21); /* the kernel starts at 2MB XXX */
292 1.69 maxv kernpa_start = marks[MARK_END];
293 1.69 maxv
294 1.69 maxv /* Load the kernel (dynamic) */
295 1.69 maxv flags = (LOAD_KERNEL | LOAD_DYN) & ~(floppy ? LOAD_BACKWARDS : 0);
296 1.69 maxv if ((fd = loadfile(file, marks, flags)) == -1)
297 1.69 maxv return EIO;
298 1.69 maxv close(fd);
299 1.69 maxv
300 1.69 maxv kernpa_end = marks[MARK_END];
301 1.69 maxv
302 1.69 maxv /* If the root fs type is unusual, load its module. */
303 1.69 maxv if (fsmod != NULL)
304 1.69 maxv module_add_common(fsmod, BM_TYPE_KMOD);
305 1.69 maxv
306 1.69 maxv bi_prekern.kernpa_start = kernpa_start;
307 1.69 maxv bi_prekern.kernpa_end = kernpa_end;
308 1.69 maxv BI_ADD(&bi_prekern, BTINFO_PREKERN, sizeof(struct btinfo_prekern));
309 1.69 maxv
310 1.69 maxv /*
311 1.69 maxv * Gather some information for the kernel. Do this after the
312 1.69 maxv * "point of no return" to avoid memory leaks.
313 1.69 maxv * (but before DOS might be trashed in the XMS case)
314 1.69 maxv */
315 1.69 maxv #ifdef PASS_BIOSGEOM
316 1.69 maxv bi_getbiosgeom();
317 1.69 maxv #endif
318 1.69 maxv #ifdef PASS_MEMMAP
319 1.69 maxv bi_getmemmap();
320 1.69 maxv #endif
321 1.69 maxv
322 1.69 maxv marks[MARK_END] = (((u_long)marks[MARK_END] + sizeof(int) - 1)) &
323 1.69 maxv (-sizeof(int));
324 1.69 maxv image_end = marks[MARK_END];
325 1.69 maxv kernel_loaded = true;
326 1.69 maxv
327 1.69 maxv return 0;
328 1.69 maxv }
329 1.69 maxv
330 1.32 joerg static int
331 1.32 joerg common_load_kernel(const char *file, u_long *basemem, u_long *extmem,
332 1.32 joerg physaddr_t loadaddr, int floppy, u_long marks[MARK_MAX])
333 1.1 perry {
334 1.32 joerg int fd;
335 1.8 christos #ifdef XMS
336 1.62 maxv u_long xmsmem;
337 1.62 maxv physaddr_t origaddr = loadaddr;
338 1.8 christos #endif
339 1.8 christos
340 1.32 joerg *extmem = getextmem();
341 1.32 joerg *basemem = getbasemem();
342 1.8 christos
343 1.8 christos #ifdef XMS
344 1.8 christos if ((getextmem1() == 0) && (xmsmem = checkxms())) {
345 1.62 maxv u_long kernsize;
346 1.8 christos
347 1.8 christos /*
348 1.8 christos * With "CONSERVATIVE_MEMDETECT", extmem is 0 because
349 1.62 maxv * getextmem() is getextmem1(). Without, the "smart"
350 1.62 maxv * methods could fail to report all memory as well.
351 1.8 christos * xmsmem is a few kB less than the actual size, but
352 1.62 maxv * better than nothing.
353 1.8 christos */
354 1.32 joerg if (xmsmem > *extmem)
355 1.32 joerg *extmem = xmsmem;
356 1.21 junyoung /*
357 1.8 christos * Get the size of the kernel
358 1.8 christos */
359 1.8 christos marks[MARK_START] = loadaddr;
360 1.12 christos if ((fd = loadfile(file, marks, COUNT_KERNEL)) == -1)
361 1.32 joerg return EIO;
362 1.8 christos close(fd);
363 1.8 christos
364 1.8 christos kernsize = marks[MARK_END];
365 1.8 christos kernsize = (kernsize + 1023) / 1024;
366 1.8 christos
367 1.8 christos loadaddr = xmsalloc(kernsize);
368 1.8 christos if (!loadaddr)
369 1.21 junyoung return ENOMEM;
370 1.8 christos }
371 1.8 christos #endif
372 1.7 christos marks[MARK_START] = loadaddr;
373 1.29 christos if ((fd = loadfile(file, marks,
374 1.44 christos LOAD_KERNEL & ~(floppy ? LOAD_BACKWARDS : 0))) == -1)
375 1.32 joerg return EIO;
376 1.1 perry
377 1.8 christos close(fd);
378 1.10 drochner
379 1.50 dsl /* If the root fs type is unusual, load its module. */
380 1.50 dsl if (fsmod != NULL)
381 1.57 jakllsch module_add_common(fsmod, BM_TYPE_KMOD);
382 1.34 ad
383 1.10 drochner /*
384 1.10 drochner * Gather some information for the kernel. Do this after the
385 1.10 drochner * "point of no return" to avoid memory leaks.
386 1.10 drochner * (but before DOS might be trashed in the XMS case)
387 1.10 drochner */
388 1.10 drochner #ifdef PASS_BIOSGEOM
389 1.10 drochner bi_getbiosgeom();
390 1.10 drochner #endif
391 1.10 drochner #ifdef PASS_MEMMAP
392 1.10 drochner bi_getmemmap();
393 1.10 drochner #endif
394 1.8 christos
395 1.8 christos #ifdef XMS
396 1.8 christos if (loadaddr != origaddr) {
397 1.8 christos /*
398 1.14 ross * We now have done our last DOS IO, so we may
399 1.8 christos * trash the OS. Copy the data from the temporary
400 1.20 wiz * buffer to its real address.
401 1.8 christos */
402 1.8 christos marks[MARK_START] -= loadaddr;
403 1.8 christos marks[MARK_END] -= loadaddr;
404 1.8 christos marks[MARK_SYM] -= loadaddr;
405 1.8 christos marks[MARK_END] -= loadaddr;
406 1.8 christos ppbcopy(loadaddr, origaddr, marks[MARK_END]);
407 1.8 christos }
408 1.8 christos #endif
409 1.8 christos marks[MARK_END] = (((u_long) marks[MARK_END] + sizeof(int) - 1)) &
410 1.8 christos (-sizeof(int));
411 1.23 ad image_end = marks[MARK_END];
412 1.23 ad kernel_loaded = true;
413 1.1 perry
414 1.32 joerg return 0;
415 1.32 joerg }
416 1.32 joerg
417 1.32 joerg int
418 1.40 ad exec_netbsd(const char *file, physaddr_t loadaddr, int boothowto, int floppy,
419 1.62 maxv void (*callback)(void))
420 1.32 joerg {
421 1.62 maxv uint32_t boot_argv[BOOT_NARGS];
422 1.62 maxv u_long marks[MARK_MAX];
423 1.32 joerg struct btinfo_symtab btinfo_symtab;
424 1.62 maxv u_long extmem;
425 1.62 maxv u_long basemem;
426 1.63 nonaka int error;
427 1.64 nonaka #ifdef EFIBOOT
428 1.64 nonaka int i;
429 1.64 nonaka #endif
430 1.32 joerg
431 1.32 joerg #ifdef DEBUG
432 1.62 maxv printf("exec: file=%s loadaddr=0x%lx\n", file ? file : "NULL",
433 1.62 maxv loadaddr);
434 1.32 joerg #endif
435 1.32 joerg
436 1.61 maxv BI_ALLOC(BTINFO_MAX);
437 1.32 joerg
438 1.32 joerg BI_ADD(&btinfo_console, BTINFO_CONSOLE, sizeof(struct btinfo_console));
439 1.32 joerg
440 1.40 ad howto = boothowto;
441 1.40 ad
442 1.56 jakllsch memset(marks, 0, sizeof(marks));
443 1.56 jakllsch
444 1.69 maxv if (has_prekern) {
445 1.69 maxv error = common_load_prekern(file, &basemem, &extmem, loadaddr,
446 1.69 maxv floppy, marks);
447 1.69 maxv } else {
448 1.69 maxv error = common_load_kernel(file, &basemem, &extmem, loadaddr,
449 1.69 maxv floppy, marks);
450 1.69 maxv }
451 1.63 nonaka if (error) {
452 1.63 nonaka errno = error;
453 1.32 joerg goto out;
454 1.63 nonaka }
455 1.67 nonaka #ifdef EFIBOOT
456 1.67 nonaka /* adjust to the real load address */
457 1.67 nonaka marks[MARK_START] -= efi_loadaddr;
458 1.67 nonaka marks[MARK_ENTRY] -= efi_loadaddr;
459 1.67 nonaka marks[MARK_DATA] -= efi_loadaddr;
460 1.67 nonaka /* MARK_NSYM */
461 1.67 nonaka marks[MARK_SYM] -= efi_loadaddr;
462 1.67 nonaka marks[MARK_END] -= efi_loadaddr;
463 1.67 nonaka #endif
464 1.32 joerg
465 1.31 joerg boot_argv[0] = boothowto;
466 1.31 joerg boot_argv[1] = 0;
467 1.31 joerg boot_argv[2] = vtophys(bootinfo); /* old cyl offset */
468 1.31 joerg boot_argv[3] = marks[MARK_END];
469 1.31 joerg boot_argv[4] = extmem;
470 1.31 joerg boot_argv[5] = basemem;
471 1.31 joerg
472 1.23 ad /* pull in any modules if necessary */
473 1.23 ad if (boot_modules_enabled) {
474 1.41 jmcneill module_init(file);
475 1.23 ad if (btinfo_modulelist) {
476 1.67 nonaka #ifdef EFIBOOT
477 1.67 nonaka /* convert module loaded address to paddr */
478 1.67 nonaka struct bi_modulelist_entry *bim;
479 1.67 nonaka bim = (void *)(btinfo_modulelist + 1);
480 1.67 nonaka for (i = 0; i < btinfo_modulelist->num; i++, bim++)
481 1.67 nonaka bim->base -= efi_loadaddr;
482 1.67 nonaka btinfo_modulelist->endpa -= efi_loadaddr;
483 1.67 nonaka #endif
484 1.23 ad BI_ADD(btinfo_modulelist, BTINFO_MODULELIST,
485 1.23 ad btinfo_modulelist_size);
486 1.23 ad }
487 1.23 ad }
488 1.1 perry
489 1.47 uebayasi userconf_init();
490 1.47 uebayasi if (btinfo_userconfcommands != NULL)
491 1.47 uebayasi BI_ADD(btinfo_userconfcommands, BTINFO_USERCONFCOMMANDS,
492 1.58 jakllsch btinfo_userconfcommands_size);
493 1.47 uebayasi
494 1.1 perry #ifdef DEBUG
495 1.8 christos printf("Start @ 0x%lx [%ld=0x%lx-0x%lx]...\n", marks[MARK_ENTRY],
496 1.7 christos marks[MARK_NSYM], marks[MARK_SYM], marks[MARK_END]);
497 1.1 perry #endif
498 1.1 perry
499 1.8 christos btinfo_symtab.nsym = marks[MARK_NSYM];
500 1.8 christos btinfo_symtab.ssym = marks[MARK_SYM];
501 1.8 christos btinfo_symtab.esym = marks[MARK_END];
502 1.8 christos BI_ADD(&btinfo_symtab, BTINFO_SYMTAB, sizeof(struct btinfo_symtab));
503 1.8 christos
504 1.42 jmcneill /* set new video mode if necessary */
505 1.42 jmcneill vbe_commit();
506 1.42 jmcneill BI_ADD(&btinfo_framebuffer, BTINFO_FRAMEBUFFER,
507 1.42 jmcneill sizeof(struct btinfo_framebuffer));
508 1.42 jmcneill
509 1.40 ad if (callback != NULL)
510 1.40 ad (*callback)();
511 1.63 nonaka #ifdef EFIBOOT
512 1.64 nonaka /* Copy bootinfo to safe arena. */
513 1.64 nonaka for (i = 0; i < bootinfo->nentries; i++) {
514 1.64 nonaka struct btinfo_common *bi = (void *)(u_long)bootinfo->entry[i];
515 1.64 nonaka char *p = alloc(bi->len);
516 1.64 nonaka memcpy(p, bi, bi->len);
517 1.64 nonaka bootinfo->entry[i] = vtophys(p);
518 1.64 nonaka }
519 1.64 nonaka
520 1.65 nonaka efi_kernel_start = marks[MARK_START];
521 1.67 nonaka efi_kernel_size = image_end - efi_loadaddr - efi_kernel_start;
522 1.63 nonaka #endif
523 1.15 dbj startprog(marks[MARK_ENTRY], BOOT_NARGS, boot_argv,
524 1.62 maxv x86_trunc_page(basemem * 1024));
525 1.1 perry panic("exec returned");
526 1.1 perry
527 1.4 drochner out:
528 1.4 drochner BI_FREE();
529 1.60 maxv bootinfo = NULL;
530 1.21 junyoung return -1;
531 1.1 perry }
532 1.23 ad
533 1.67 nonaka int
534 1.67 nonaka count_netbsd(const char *file, u_long *rsz)
535 1.67 nonaka {
536 1.67 nonaka u_long marks[MARK_MAX];
537 1.67 nonaka char kdev[64];
538 1.68 nonaka char base_path[64] = "/";
539 1.67 nonaka struct stat st;
540 1.67 nonaka boot_module_t *bm;
541 1.67 nonaka u_long sz;
542 1.67 nonaka int err, fd;
543 1.67 nonaka
544 1.68 nonaka howto = AB_SILENT;
545 1.68 nonaka
546 1.67 nonaka memset(marks, 0, sizeof(marks));
547 1.68 nonaka if ((fd = loadfile(file, marks, COUNT_KERNEL | LOAD_NOTE)) == -1)
548 1.67 nonaka return -1;
549 1.67 nonaka close(fd);
550 1.67 nonaka marks[MARK_END] = (((u_long) marks[MARK_END] + sizeof(int) - 1)) &
551 1.67 nonaka (-sizeof(int));
552 1.67 nonaka sz = marks[MARK_END];
553 1.67 nonaka
554 1.67 nonaka /* The modules must be allocated after the kernel */
555 1.67 nonaka if (boot_modules_enabled) {
556 1.67 nonaka extract_device(file, kdev, sizeof(kdev));
557 1.67 nonaka module_base_path(base_path, sizeof(base_path));
558 1.67 nonaka
559 1.67 nonaka /* If the root fs type is unusual, load its module. */
560 1.67 nonaka if (fsmod != NULL)
561 1.68 nonaka module_add_common(fsmod, BM_TYPE_KMOD);
562 1.67 nonaka
563 1.67 nonaka for (bm = boot_modules; bm; bm = bm->bm_next) {
564 1.67 nonaka fd = module_open(bm, 0, kdev, base_path, false);
565 1.67 nonaka if (fd == -1)
566 1.67 nonaka continue;
567 1.68 nonaka sz = (sz + PAGE_SIZE - 1) & ~(PAGE_SIZE - 1);
568 1.67 nonaka err = fstat(fd, &st);
569 1.67 nonaka if (err == -1 || st.st_size == -1) {
570 1.67 nonaka close(fd);
571 1.67 nonaka continue;
572 1.67 nonaka }
573 1.67 nonaka sz += st.st_size;
574 1.67 nonaka close(fd);
575 1.67 nonaka }
576 1.67 nonaka }
577 1.67 nonaka
578 1.67 nonaka *rsz = sz;
579 1.67 nonaka return 0;
580 1.67 nonaka }
581 1.67 nonaka
582 1.41 jmcneill static void
583 1.41 jmcneill extract_device(const char *path, char *buf, size_t buflen)
584 1.41 jmcneill {
585 1.59 jakllsch size_t i;
586 1.41 jmcneill
587 1.41 jmcneill if (strchr(path, ':') != NULL) {
588 1.41 jmcneill for (i = 0; i < buflen - 2 && path[i] != ':'; i++)
589 1.41 jmcneill buf[i] = path[i];
590 1.41 jmcneill buf[i++] = ':';
591 1.41 jmcneill buf[i] = '\0';
592 1.41 jmcneill } else
593 1.41 jmcneill buf[0] = '\0';
594 1.41 jmcneill }
595 1.41 jmcneill
596 1.26 ad static const char *
597 1.67 nonaka module_path(boot_module_t *bm, const char *kdev, const char *base_path)
598 1.26 ad {
599 1.26 ad static char buf[256];
600 1.41 jmcneill char name_buf[256], dev_buf[64];
601 1.41 jmcneill const char *name, *name2, *p;
602 1.26 ad
603 1.26 ad name = bm->bm_path;
604 1.33 joerg for (name2 = name; *name2; ++name2) {
605 1.33 joerg if (*name2 == ' ' || *name2 == '\t') {
606 1.33 joerg strlcpy(name_buf, name, sizeof(name_buf));
607 1.59 jakllsch if ((uintptr_t)name2 - (uintptr_t)name < sizeof(name_buf))
608 1.33 joerg name_buf[name2 - name] = '\0';
609 1.33 joerg name = name_buf;
610 1.33 joerg break;
611 1.33 joerg }
612 1.33 joerg }
613 1.41 jmcneill if ((p = strchr(name, ':')) != NULL) {
614 1.41 jmcneill /* device specified, use it */
615 1.41 jmcneill if (p[1] == '/')
616 1.41 jmcneill snprintf(buf, sizeof(buf), "%s", name);
617 1.41 jmcneill else {
618 1.41 jmcneill p++;
619 1.41 jmcneill extract_device(name, dev_buf, sizeof(dev_buf));
620 1.41 jmcneill snprintf(buf, sizeof(buf), "%s%s/%s/%s.kmod",
621 1.67 nonaka dev_buf, base_path, p, p);
622 1.41 jmcneill }
623 1.41 jmcneill } else {
624 1.41 jmcneill /* device not specified; load from kernel device if known */
625 1.58 jakllsch if (name[0] == '/')
626 1.41 jmcneill snprintf(buf, sizeof(buf), "%s%s", kdev, name);
627 1.41 jmcneill else
628 1.41 jmcneill snprintf(buf, sizeof(buf), "%s%s/%s/%s.kmod",
629 1.67 nonaka kdev, base_path, name, name);
630 1.41 jmcneill }
631 1.33 joerg
632 1.26 ad return buf;
633 1.26 ad }
634 1.26 ad
635 1.36 christos static int
636 1.67 nonaka module_open(boot_module_t *bm, int mode, const char *kdev,
637 1.67 nonaka const char *base_path, bool doload)
638 1.28 chris {
639 1.28 chris int fd;
640 1.28 chris const char *path;
641 1.36 christos
642 1.28 chris /* check the expanded path first */
643 1.67 nonaka path = module_path(bm, kdev, base_path);
644 1.28 chris fd = open(path, mode);
645 1.41 jmcneill if (fd != -1) {
646 1.41 jmcneill if ((howto & AB_SILENT) == 0 && doload)
647 1.41 jmcneill printf("Loading %s ", path);
648 1.41 jmcneill } else {
649 1.28 chris /* now attempt the raw path provided */
650 1.28 chris fd = open(bm->bm_path, mode);
651 1.41 jmcneill if (fd != -1 && (howto & AB_SILENT) == 0 && doload)
652 1.41 jmcneill printf("Loading %s ", bm->bm_path);
653 1.41 jmcneill }
654 1.41 jmcneill if (!doload && fd == -1) {
655 1.41 jmcneill printf("WARNING: couldn't open %s", bm->bm_path);
656 1.41 jmcneill if (strcmp(bm->bm_path, path) != 0)
657 1.41 jmcneill printf(" (%s)", path);
658 1.41 jmcneill printf("\n");
659 1.28 chris }
660 1.28 chris return fd;
661 1.28 chris }
662 1.28 chris
663 1.23 ad static void
664 1.67 nonaka module_base_path(char *buf, size_t bufsize)
665 1.23 ad {
666 1.30 joerg const char *machine;
667 1.23 ad
668 1.30 joerg switch (netbsd_elf_class) {
669 1.30 joerg case ELFCLASS32:
670 1.30 joerg machine = "i386";
671 1.30 joerg break;
672 1.30 joerg case ELFCLASS64:
673 1.30 joerg machine = "amd64";
674 1.30 joerg break;
675 1.30 joerg default:
676 1.30 joerg machine = "generic";
677 1.30 joerg break;
678 1.30 joerg }
679 1.30 joerg if (netbsd_version / 1000000 % 100 == 99) {
680 1.30 joerg /* -current */
681 1.67 nonaka snprintf(buf, bufsize,
682 1.38 rmind "/stand/%s/%d.%d.%d/modules", machine,
683 1.30 joerg netbsd_version / 100000000,
684 1.30 joerg netbsd_version / 1000000 % 100,
685 1.30 joerg netbsd_version / 100 % 100);
686 1.30 joerg } else if (netbsd_version != 0) {
687 1.30 joerg /* release */
688 1.67 nonaka snprintf(buf, bufsize,
689 1.38 rmind "/stand/%s/%d.%d/modules", machine,
690 1.30 joerg netbsd_version / 100000000,
691 1.30 joerg netbsd_version / 1000000 % 100);
692 1.30 joerg }
693 1.67 nonaka }
694 1.67 nonaka
695 1.67 nonaka static void
696 1.67 nonaka module_init(const char *kernel_path)
697 1.67 nonaka {
698 1.67 nonaka struct bi_modulelist_entry *bi;
699 1.67 nonaka struct stat st;
700 1.67 nonaka char kdev[64];
701 1.67 nonaka char *buf;
702 1.67 nonaka boot_module_t *bm;
703 1.67 nonaka ssize_t len;
704 1.67 nonaka off_t off;
705 1.67 nonaka int err, fd, nfail = 0;
706 1.67 nonaka
707 1.67 nonaka extract_device(kernel_path, kdev, sizeof(kdev));
708 1.67 nonaka module_base_path(module_base, sizeof(module_base));
709 1.30 joerg
710 1.23 ad /* First, see which modules are valid and calculate btinfo size */
711 1.23 ad len = sizeof(struct btinfo_modulelist);
712 1.23 ad for (bm = boot_modules; bm; bm = bm->bm_next) {
713 1.67 nonaka fd = module_open(bm, 0, kdev, module_base, false);
714 1.23 ad if (fd == -1) {
715 1.23 ad bm->bm_len = -1;
716 1.41 jmcneill ++nfail;
717 1.23 ad continue;
718 1.23 ad }
719 1.23 ad err = fstat(fd, &st);
720 1.24 ad if (err == -1 || st.st_size == -1) {
721 1.28 chris printf("WARNING: couldn't stat %s\n", bm->bm_path);
722 1.23 ad close(fd);
723 1.23 ad bm->bm_len = -1;
724 1.41 jmcneill ++nfail;
725 1.23 ad continue;
726 1.23 ad }
727 1.23 ad bm->bm_len = st.st_size;
728 1.23 ad close(fd);
729 1.23 ad len += sizeof(struct bi_modulelist_entry);
730 1.23 ad }
731 1.23 ad
732 1.23 ad /* Allocate the module list */
733 1.23 ad btinfo_modulelist = alloc(len);
734 1.23 ad if (btinfo_modulelist == NULL) {
735 1.23 ad printf("WARNING: couldn't allocate module list\n");
736 1.43 tsutsui wait_sec(MODULE_WARNING_SEC);
737 1.23 ad return;
738 1.23 ad }
739 1.23 ad memset(btinfo_modulelist, 0, len);
740 1.23 ad btinfo_modulelist_size = len;
741 1.23 ad
742 1.23 ad /* Fill in btinfo structure */
743 1.23 ad buf = (char *)btinfo_modulelist;
744 1.23 ad btinfo_modulelist->num = 0;
745 1.23 ad off = sizeof(struct btinfo_modulelist);
746 1.23 ad
747 1.23 ad for (bm = boot_modules; bm; bm = bm->bm_next) {
748 1.23 ad if (bm->bm_len == -1)
749 1.23 ad continue;
750 1.67 nonaka fd = module_open(bm, 0, kdev, module_base, true);
751 1.41 jmcneill if (fd == -1)
752 1.23 ad continue;
753 1.24 ad image_end = (image_end + PAGE_SIZE - 1) & ~(PAGE_SIZE - 1);
754 1.52 jakllsch len = pread(fd, (void *)(uintptr_t)image_end, SSIZE_MAX);
755 1.24 ad if (len < bm->bm_len) {
756 1.40 ad if ((howto & AB_SILENT) != 0)
757 1.40 ad printf("Loading %s ", bm->bm_path);
758 1.23 ad printf(" FAILED\n");
759 1.23 ad } else {
760 1.23 ad btinfo_modulelist->num++;
761 1.23 ad bi = (struct bi_modulelist_entry *)(buf + off);
762 1.23 ad off += sizeof(struct bi_modulelist_entry);
763 1.23 ad strncpy(bi->path, bm->bm_path, sizeof(bi->path) - 1);
764 1.24 ad bi->base = image_end;
765 1.24 ad bi->len = len;
766 1.49 tls switch (bm->bm_type) {
767 1.49 tls case BM_TYPE_KMOD:
768 1.49 tls bi->type = BI_MODULE_ELF;
769 1.49 tls break;
770 1.49 tls case BM_TYPE_IMAGE:
771 1.49 tls bi->type = BI_MODULE_IMAGE;
772 1.49 tls break;
773 1.51 jmcneill case BM_TYPE_FS:
774 1.51 jmcneill bi->type = BI_MODULE_FS;
775 1.51 jmcneill break;
776 1.49 tls case BM_TYPE_RND:
777 1.49 tls default:
778 1.49 tls /* safest -- rnd checks the sha1 */
779 1.49 tls bi->type = BI_MODULE_RND;
780 1.49 tls break;
781 1.49 tls }
782 1.40 ad if ((howto & AB_SILENT) == 0)
783 1.40 ad printf(" \n");
784 1.23 ad }
785 1.24 ad if (len > 0)
786 1.24 ad image_end += len;
787 1.23 ad close(fd);
788 1.23 ad }
789 1.23 ad btinfo_modulelist->endpa = image_end;
790 1.41 jmcneill
791 1.41 jmcneill if (nfail > 0) {
792 1.41 jmcneill printf("WARNING: %d module%s failed to load\n",
793 1.41 jmcneill nfail, nfail == 1 ? "" : "s");
794 1.41 jmcneill #if notyet
795 1.43 tsutsui wait_sec(MODULE_WARNING_SEC);
796 1.41 jmcneill #endif
797 1.41 jmcneill }
798 1.23 ad }
799 1.33 joerg
800 1.47 uebayasi static void
801 1.47 uebayasi userconf_init(void)
802 1.47 uebayasi {
803 1.47 uebayasi size_t count, len;
804 1.47 uebayasi userconf_command_t *uc;
805 1.47 uebayasi char *buf;
806 1.47 uebayasi off_t off;
807 1.47 uebayasi
808 1.47 uebayasi /* Calculate the userconf commands list size */
809 1.47 uebayasi count = 0;
810 1.47 uebayasi for (uc = userconf_commands; uc != NULL; uc = uc->uc_next)
811 1.47 uebayasi count++;
812 1.55 jakllsch len = sizeof(*btinfo_userconfcommands) +
813 1.47 uebayasi count * sizeof(struct bi_userconfcommand);
814 1.47 uebayasi
815 1.47 uebayasi /* Allocate the userconf commands list */
816 1.47 uebayasi btinfo_userconfcommands = alloc(len);
817 1.47 uebayasi if (btinfo_userconfcommands == NULL) {
818 1.47 uebayasi printf("WARNING: couldn't allocate userconf commands list\n");
819 1.47 uebayasi return;
820 1.47 uebayasi }
821 1.47 uebayasi memset(btinfo_userconfcommands, 0, len);
822 1.47 uebayasi btinfo_userconfcommands_size = len;
823 1.47 uebayasi
824 1.47 uebayasi /* Fill in btinfo structure */
825 1.47 uebayasi buf = (char *)btinfo_userconfcommands;
826 1.47 uebayasi off = sizeof(*btinfo_userconfcommands);
827 1.47 uebayasi btinfo_userconfcommands->num = 0;
828 1.47 uebayasi for (uc = userconf_commands; uc != NULL; uc = uc->uc_next) {
829 1.47 uebayasi struct bi_userconfcommand *bi;
830 1.47 uebayasi bi = (struct bi_userconfcommand *)(buf + off);
831 1.47 uebayasi strncpy(bi->text, uc->uc_text, sizeof(bi->text) - 1);
832 1.47 uebayasi
833 1.47 uebayasi off += sizeof(*bi);
834 1.47 uebayasi btinfo_userconfcommands->num++;
835 1.47 uebayasi }
836 1.47 uebayasi }
837 1.47 uebayasi
838 1.33 joerg int
839 1.33 joerg exec_multiboot(const char *file, char *args)
840 1.33 joerg {
841 1.33 joerg struct multiboot_info *mbi;
842 1.33 joerg struct multiboot_module *mbm;
843 1.33 joerg struct bi_modulelist_entry *bim;
844 1.62 maxv int i, len;
845 1.62 maxv u_long marks[MARK_MAX];
846 1.62 maxv u_long extmem;
847 1.62 maxv u_long basemem;
848 1.62 maxv char *cmdline;
849 1.33 joerg
850 1.33 joerg mbi = alloc(sizeof(struct multiboot_info));
851 1.33 joerg mbi->mi_flags = MULTIBOOT_INFO_HAS_MEMORY;
852 1.33 joerg
853 1.33 joerg if (common_load_kernel(file, &basemem, &extmem, 0, 0, marks))
854 1.33 joerg goto out;
855 1.33 joerg
856 1.33 joerg mbi->mi_mem_upper = extmem;
857 1.33 joerg mbi->mi_mem_lower = basemem;
858 1.33 joerg
859 1.33 joerg if (args) {
860 1.33 joerg mbi->mi_flags |= MULTIBOOT_INFO_HAS_CMDLINE;
861 1.33 joerg len = strlen(file) + 1 + strlen(args) + 1;
862 1.33 joerg cmdline = alloc(len);
863 1.33 joerg snprintf(cmdline, len, "%s %s", file, args);
864 1.33 joerg mbi->mi_cmdline = (char *) vtophys(cmdline);
865 1.33 joerg }
866 1.33 joerg
867 1.33 joerg /* pull in any modules if necessary */
868 1.33 joerg if (boot_modules_enabled) {
869 1.41 jmcneill module_init(file);
870 1.33 joerg if (btinfo_modulelist) {
871 1.33 joerg mbm = alloc(sizeof(struct multiboot_module) *
872 1.33 joerg btinfo_modulelist->num);
873 1.33 joerg
874 1.33 joerg bim = (struct bi_modulelist_entry *)
875 1.33 joerg (((char *) btinfo_modulelist) +
876 1.33 joerg sizeof(struct btinfo_modulelist));
877 1.33 joerg for (i = 0; i < btinfo_modulelist->num; i++) {
878 1.33 joerg mbm[i].mmo_start = bim->base;
879 1.33 joerg mbm[i].mmo_end = bim->base + bim->len;
880 1.33 joerg mbm[i].mmo_string = (char *)vtophys(bim->path);
881 1.33 joerg mbm[i].mmo_reserved = 0;
882 1.33 joerg bim++;
883 1.33 joerg }
884 1.33 joerg mbi->mi_flags |= MULTIBOOT_INFO_HAS_MODS;
885 1.33 joerg mbi->mi_mods_count = btinfo_modulelist->num;
886 1.33 joerg mbi->mi_mods_addr = vtophys(mbm);
887 1.33 joerg }
888 1.33 joerg }
889 1.33 joerg
890 1.33 joerg #ifdef DEBUG
891 1.33 joerg printf("Start @ 0x%lx [%ld=0x%lx-0x%lx]...\n", marks[MARK_ENTRY],
892 1.33 joerg marks[MARK_NSYM], marks[MARK_SYM], marks[MARK_END]);
893 1.33 joerg #endif
894 1.33 joerg
895 1.33 joerg #if 0
896 1.33 joerg if (btinfo_symtab.nsym) {
897 1.33 joerg mbi->mi_flags |= MULTIBOOT_INFO_HAS_ELF_SYMS;
898 1.33 joerg mbi->mi_elfshdr_addr = marks[MARK_SYM];
899 1.33 joerg btinfo_symtab.nsym = marks[MARK_NSYM];
900 1.33 joerg btinfo_symtab.ssym = marks[MARK_SYM];
901 1.33 joerg btinfo_symtab.esym = marks[MARK_END];
902 1.33 joerg #endif
903 1.33 joerg
904 1.33 joerg multiboot(marks[MARK_ENTRY], vtophys(mbi),
905 1.62 maxv x86_trunc_page(mbi->mi_mem_lower * 1024));
906 1.33 joerg panic("exec returned");
907 1.33 joerg
908 1.33 joerg out:
909 1.62 maxv dealloc(mbi, 0);
910 1.33 joerg return -1;
911 1.33 joerg }
912 1.40 ad
913 1.40 ad void
914 1.40 ad x86_progress(const char *fmt, ...)
915 1.40 ad {
916 1.40 ad va_list ap;
917 1.40 ad
918 1.40 ad if ((howto & AB_SILENT) != 0)
919 1.40 ad return;
920 1.40 ad va_start(ap, fmt);
921 1.40 ad vprintf(fmt, ap);
922 1.40 ad va_end(ap);
923 1.40 ad }
924