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exec.c revision 1.78.4.1
      1  1.78.4.1    martin /*	$NetBSD: exec.c,v 1.78.4.1 2023/05/13 13:26:57 martin 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       1.1     perry 
     98       1.1     perry #include <lib/libsa/stand.h>
     99      1.23        ad #include <lib/libkern/libkern.h>
    100       1.4  drochner 
    101       1.6  christos #include "loadfile.h"
    102       1.1     perry #include "libi386.h"
    103       1.4  drochner #include "bootinfo.h"
    104      1.23        ad #include "bootmod.h"
    105      1.42  jmcneill #include "vbe.h"
    106      1.16  jdolecek #ifdef SUPPORT_PS2
    107      1.16  jdolecek #include "biosmca.h"
    108      1.16  jdolecek #endif
    109      1.63    nonaka #ifdef EFIBOOT
    110      1.63    nonaka #include "efiboot.h"
    111      1.63    nonaka #undef DEBUG	/* XXX */
    112      1.63    nonaka #endif
    113       1.1     perry 
    114       1.6  christos #define BOOT_NARGS	6
    115       1.1     perry 
    116      1.23        ad #ifndef	PAGE_SIZE
    117      1.23        ad #define	PAGE_SIZE	4096
    118      1.23        ad #endif
    119      1.23        ad 
    120      1.43   tsutsui #define MODULE_WARNING_SEC	5
    121      1.41  jmcneill 
    122      1.72  pgoyette #define MAXMODNAME	32	/* from <sys/module.h> */
    123      1.72  pgoyette 
    124       1.4  drochner extern struct btinfo_console btinfo_console;
    125      1.77   mlelstv extern struct btinfo_rootdevice bi_root;
    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      1.74      manu struct btinfo_framebuffer btinfo_framebuffer;
    139      1.39  jmcneill 
    140      1.74      manu 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      1.76  christos static void	module_base_path(char *, size_t, const char *);
    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      1.72  pgoyette /*
    195      1.72  pgoyette  * Add a /-separated list of module names to the boot list
    196      1.72  pgoyette  */
    197      1.72  pgoyette void
    198      1.72  pgoyette module_add_split(const char *name, uint8_t type)
    199      1.72  pgoyette {
    200      1.72  pgoyette 	char mod_name[MAXMODNAME];
    201      1.72  pgoyette 	int i;
    202      1.72  pgoyette 	const char *mp = name;
    203      1.72  pgoyette 	char *ep;
    204      1.72  pgoyette 
    205      1.72  pgoyette 	while (*mp) {				/* scan list of module names */
    206      1.72  pgoyette 		i = MAXMODNAME;
    207      1.72  pgoyette 		ep = mod_name;
    208      1.72  pgoyette 		while (--i) {			/* scan for end of first name */
    209      1.72  pgoyette 			*ep = *mp;
    210      1.72  pgoyette 			if (*ep == '/')		/* NUL-terminate the name */
    211      1.72  pgoyette 				*ep = '\0';
    212      1.72  pgoyette 
    213      1.72  pgoyette 			if (*ep == 0 ) {	/* add non-empty name */
    214      1.72  pgoyette 				if (ep != mod_name)
    215      1.72  pgoyette 					module_add_common(mod_name, type);
    216      1.72  pgoyette 				break;
    217      1.72  pgoyette 			}
    218      1.72  pgoyette 			ep++; mp++;
    219      1.72  pgoyette 		}
    220      1.72  pgoyette 		if (*ep != 0) {
    221      1.72  pgoyette 			printf("module name too long\n");
    222      1.72  pgoyette 			return;
    223      1.72  pgoyette 		}
    224      1.72  pgoyette 		if  (*mp == '/') {		/* skip separator if more */
    225      1.72  pgoyette 			mp++;
    226      1.72  pgoyette 		}
    227      1.72  pgoyette 	}
    228      1.72  pgoyette }
    229      1.72  pgoyette 
    230      1.46  jmcneill static void
    231      1.57  jakllsch module_add_common(const char *name, uint8_t type)
    232      1.46  jmcneill {
    233      1.34        ad 	boot_module_t *bm, *bmp;
    234      1.34        ad 	size_t len;
    235      1.34        ad 	char *str;
    236      1.34        ad 
    237      1.35        ad 	while (*name == ' ' || *name == '\t')
    238      1.35        ad 		++name;
    239      1.35        ad 
    240      1.67    nonaka 	for (bm = boot_modules; bm != NULL; bm = bm->bm_next)
    241      1.67    nonaka 		if (bm->bm_type == type && strcmp(bm->bm_path, name) == 0)
    242      1.67    nonaka 			return;
    243      1.67    nonaka 
    244      1.34        ad 	bm = alloc(sizeof(boot_module_t));
    245      1.34        ad 	len = strlen(name) + 1;
    246      1.34        ad 	str = alloc(len);
    247      1.34        ad 	if (bm == NULL || str == NULL) {
    248      1.34        ad 		printf("couldn't allocate module\n");
    249      1.34        ad 		return;
    250      1.34        ad 	}
    251      1.34        ad 	memcpy(str, name, len);
    252      1.34        ad 	bm->bm_path = str;
    253      1.34        ad 	bm->bm_next = NULL;
    254      1.46  jmcneill 	bm->bm_type = type;
    255      1.34        ad 	if (boot_modules == NULL)
    256      1.34        ad 		boot_modules = bm;
    257      1.34        ad 	else {
    258      1.34        ad 		for (bmp = boot_modules; bmp->bm_next;
    259      1.34        ad 		    bmp = bmp->bm_next)
    260      1.34        ad 			;
    261      1.34        ad 		bmp->bm_next = bm;
    262      1.34        ad 	}
    263      1.34        ad }
    264      1.34        ad 
    265      1.47  uebayasi void
    266      1.47  uebayasi userconf_add(char *cmd)
    267      1.47  uebayasi {
    268      1.47  uebayasi 	userconf_command_t *uc;
    269      1.47  uebayasi 	size_t len;
    270      1.47  uebayasi 	char *text;
    271      1.47  uebayasi 
    272      1.47  uebayasi 	while (*cmd == ' ' || *cmd == '\t')
    273      1.47  uebayasi 		++cmd;
    274      1.47  uebayasi 
    275      1.47  uebayasi 	uc = alloc(sizeof(*uc));
    276      1.47  uebayasi 	if (uc == NULL) {
    277      1.47  uebayasi 		printf("couldn't allocate command\n");
    278      1.47  uebayasi 		return;
    279      1.47  uebayasi 	}
    280      1.47  uebayasi 
    281      1.47  uebayasi 	len = strlen(cmd) + 1;
    282      1.47  uebayasi 	text = alloc(len);
    283      1.47  uebayasi 	if (text == NULL) {
    284      1.47  uebayasi 		dealloc(uc, sizeof(*uc));
    285      1.47  uebayasi 		printf("couldn't allocate command\n");
    286      1.47  uebayasi 		return;
    287      1.47  uebayasi 	}
    288      1.47  uebayasi 	memcpy(text, cmd, len);
    289      1.47  uebayasi 
    290      1.47  uebayasi 	uc->uc_text = text;
    291      1.47  uebayasi 	uc->uc_len = len;
    292      1.47  uebayasi 	uc->uc_next = NULL;
    293      1.47  uebayasi 
    294      1.47  uebayasi 	if (userconf_commands == NULL)
    295      1.47  uebayasi 		userconf_commands = uc;
    296      1.47  uebayasi 	else {
    297      1.47  uebayasi 		userconf_command_t *ucp;
    298      1.47  uebayasi 		for (ucp = userconf_commands; ucp->uc_next != NULL;
    299      1.47  uebayasi 		     ucp = ucp->uc_next)
    300      1.47  uebayasi 			;
    301      1.47  uebayasi 		ucp->uc_next = uc;
    302      1.47  uebayasi 	}
    303      1.47  uebayasi }
    304      1.47  uebayasi 
    305      1.69      maxv struct btinfo_prekern bi_prekern;
    306      1.69      maxv int has_prekern = 0;
    307      1.69      maxv 
    308      1.69      maxv static int
    309      1.69      maxv common_load_prekern(const char *file, u_long *basemem, u_long *extmem,
    310      1.69      maxv     physaddr_t loadaddr, int floppy, u_long marks[MARK_MAX])
    311      1.69      maxv {
    312      1.69      maxv 	paddr_t kernpa_start, kernpa_end;
    313      1.69      maxv 	char prekernpath[] = "/prekern";
    314      1.70      maxv 	u_long prekern_start;
    315      1.69      maxv 	int fd, flags;
    316      1.69      maxv 
    317      1.69      maxv 	*extmem = getextmem();
    318      1.69      maxv 	*basemem = getbasemem();
    319      1.69      maxv 
    320      1.69      maxv 	marks[MARK_START] = loadaddr;
    321      1.69      maxv 
    322      1.69      maxv 	/* Load the prekern (static) */
    323      1.70      maxv 	flags = LOAD_KERNEL & ~(LOAD_HDR|LOAD_SYM);
    324      1.69      maxv 	if ((fd = loadfile(prekernpath, marks, flags)) == -1)
    325      1.75  christos 		return errno;
    326      1.69      maxv 	close(fd);
    327      1.69      maxv 
    328      1.70      maxv 	prekern_start = marks[MARK_START];
    329      1.70      maxv 
    330      1.70      maxv 	/* The kernel starts at 2MB. */
    331      1.70      maxv 	marks[MARK_START] = loadaddr;
    332      1.70      maxv 	marks[MARK_END] = loadaddr + (1UL << 21);
    333      1.70      maxv 	kernpa_start = (1UL << 21);
    334      1.69      maxv 
    335      1.69      maxv 	/* Load the kernel (dynamic) */
    336      1.69      maxv 	flags = (LOAD_KERNEL | LOAD_DYN) & ~(floppy ? LOAD_BACKWARDS : 0);
    337      1.69      maxv 	if ((fd = loadfile(file, marks, flags)) == -1)
    338      1.75  christos 		return errno;
    339      1.69      maxv 	close(fd);
    340      1.69      maxv 
    341      1.70      maxv 	kernpa_end = marks[MARK_END] - loadaddr;
    342      1.69      maxv 
    343      1.69      maxv 	/* If the root fs type is unusual, load its module. */
    344      1.69      maxv 	if (fsmod != NULL)
    345      1.72  pgoyette 		module_add_split(fsmod, BM_TYPE_KMOD);
    346      1.69      maxv 
    347      1.69      maxv 	bi_prekern.kernpa_start = kernpa_start;
    348      1.69      maxv 	bi_prekern.kernpa_end = kernpa_end;
    349      1.69      maxv 	BI_ADD(&bi_prekern, BTINFO_PREKERN, sizeof(struct btinfo_prekern));
    350      1.69      maxv 
    351      1.69      maxv 	/*
    352      1.69      maxv 	 * Gather some information for the kernel. Do this after the
    353      1.69      maxv 	 * "point of no return" to avoid memory leaks.
    354      1.69      maxv 	 * (but before DOS might be trashed in the XMS case)
    355      1.69      maxv 	 */
    356      1.69      maxv #ifdef PASS_BIOSGEOM
    357      1.69      maxv 	bi_getbiosgeom();
    358      1.69      maxv #endif
    359      1.69      maxv #ifdef PASS_MEMMAP
    360      1.69      maxv 	bi_getmemmap();
    361      1.69      maxv #endif
    362      1.69      maxv 
    363      1.70      maxv 	marks[MARK_START] = prekern_start;
    364      1.69      maxv 	marks[MARK_END] = (((u_long)marks[MARK_END] + sizeof(int) - 1)) &
    365      1.69      maxv 	    (-sizeof(int));
    366      1.69      maxv 	image_end = marks[MARK_END];
    367      1.69      maxv 	kernel_loaded = true;
    368      1.69      maxv 
    369      1.69      maxv 	return 0;
    370      1.69      maxv }
    371      1.69      maxv 
    372      1.32     joerg static int
    373      1.32     joerg common_load_kernel(const char *file, u_long *basemem, u_long *extmem,
    374      1.32     joerg     physaddr_t loadaddr, int floppy, u_long marks[MARK_MAX])
    375       1.1     perry {
    376      1.32     joerg 	int fd;
    377       1.8  christos #ifdef XMS
    378      1.62      maxv 	u_long xmsmem;
    379      1.62      maxv 	physaddr_t origaddr = loadaddr;
    380       1.8  christos #endif
    381       1.8  christos 
    382      1.32     joerg 	*extmem = getextmem();
    383      1.32     joerg 	*basemem = getbasemem();
    384       1.8  christos 
    385       1.8  christos #ifdef XMS
    386       1.8  christos 	if ((getextmem1() == 0) && (xmsmem = checkxms())) {
    387      1.62      maxv 		u_long kernsize;
    388       1.8  christos 
    389       1.8  christos 		/*
    390       1.8  christos 		 * With "CONSERVATIVE_MEMDETECT", extmem is 0 because
    391      1.62      maxv 		 * getextmem() is getextmem1(). Without, the "smart"
    392      1.62      maxv 		 * methods could fail to report all memory as well.
    393       1.8  christos 		 * xmsmem is a few kB less than the actual size, but
    394      1.62      maxv 		 * better than nothing.
    395       1.8  christos 		 */
    396      1.32     joerg 		if (xmsmem > *extmem)
    397      1.32     joerg 			*extmem = xmsmem;
    398      1.21  junyoung 		/*
    399       1.8  christos 		 * Get the size of the kernel
    400       1.8  christos 		 */
    401       1.8  christos 		marks[MARK_START] = loadaddr;
    402      1.12  christos 		if ((fd = loadfile(file, marks, COUNT_KERNEL)) == -1)
    403      1.75  christos 			return errno;
    404       1.8  christos 		close(fd);
    405       1.8  christos 
    406       1.8  christos 		kernsize = marks[MARK_END];
    407       1.8  christos 		kernsize = (kernsize + 1023) / 1024;
    408       1.8  christos 
    409       1.8  christos 		loadaddr = xmsalloc(kernsize);
    410       1.8  christos 		if (!loadaddr)
    411      1.21  junyoung 			return ENOMEM;
    412       1.8  christos 	}
    413       1.8  christos #endif
    414       1.7  christos 	marks[MARK_START] = loadaddr;
    415      1.29  christos 	if ((fd = loadfile(file, marks,
    416      1.44  christos 	    LOAD_KERNEL & ~(floppy ? LOAD_BACKWARDS : 0))) == -1)
    417      1.75  christos 		return errno;
    418       1.1     perry 
    419       1.8  christos 	close(fd);
    420      1.10  drochner 
    421      1.50       dsl 	/* If the root fs type is unusual, load its module. */
    422      1.50       dsl 	if (fsmod != NULL)
    423      1.72  pgoyette 		module_add_split(fsmod, BM_TYPE_KMOD);
    424      1.34        ad 
    425      1.10  drochner 	/*
    426      1.10  drochner 	 * Gather some information for the kernel. Do this after the
    427      1.10  drochner 	 * "point of no return" to avoid memory leaks.
    428      1.10  drochner 	 * (but before DOS might be trashed in the XMS case)
    429      1.10  drochner 	 */
    430      1.10  drochner #ifdef PASS_BIOSGEOM
    431      1.10  drochner 	bi_getbiosgeom();
    432      1.10  drochner #endif
    433      1.10  drochner #ifdef PASS_MEMMAP
    434      1.10  drochner 	bi_getmemmap();
    435      1.10  drochner #endif
    436       1.8  christos 
    437       1.8  christos #ifdef XMS
    438       1.8  christos 	if (loadaddr != origaddr) {
    439       1.8  christos 		/*
    440      1.14      ross 		 * We now have done our last DOS IO, so we may
    441       1.8  christos 		 * trash the OS. Copy the data from the temporary
    442      1.20       wiz 		 * buffer to its real address.
    443       1.8  christos 		 */
    444       1.8  christos 		marks[MARK_START] -= loadaddr;
    445       1.8  christos 		marks[MARK_END] -= loadaddr;
    446       1.8  christos 		marks[MARK_SYM] -= loadaddr;
    447       1.8  christos 		marks[MARK_END] -= loadaddr;
    448       1.8  christos 		ppbcopy(loadaddr, origaddr, marks[MARK_END]);
    449       1.8  christos 	}
    450       1.8  christos #endif
    451       1.8  christos 	marks[MARK_END] = (((u_long) marks[MARK_END] + sizeof(int) - 1)) &
    452       1.8  christos 	    (-sizeof(int));
    453      1.23        ad 	image_end = marks[MARK_END];
    454      1.23        ad 	kernel_loaded = true;
    455       1.1     perry 
    456      1.32     joerg 	return 0;
    457      1.32     joerg }
    458      1.32     joerg 
    459      1.32     joerg int
    460      1.40        ad exec_netbsd(const char *file, physaddr_t loadaddr, int boothowto, int floppy,
    461      1.62      maxv     void (*callback)(void))
    462      1.32     joerg {
    463      1.62      maxv 	uint32_t boot_argv[BOOT_NARGS];
    464      1.62      maxv 	u_long marks[MARK_MAX];
    465      1.32     joerg 	struct btinfo_symtab btinfo_symtab;
    466      1.62      maxv 	u_long extmem;
    467      1.62      maxv 	u_long basemem;
    468  1.78.4.1    martin 	u_long entry;
    469      1.63    nonaka 	int error;
    470      1.64    nonaka #ifdef EFIBOOT
    471      1.64    nonaka 	int i;
    472      1.64    nonaka #endif
    473      1.32     joerg 
    474      1.32     joerg #ifdef	DEBUG
    475      1.62      maxv 	printf("exec: file=%s loadaddr=0x%lx\n", file ? file : "NULL",
    476      1.62      maxv 	    loadaddr);
    477      1.32     joerg #endif
    478      1.32     joerg 
    479      1.61      maxv 	BI_ALLOC(BTINFO_MAX);
    480      1.32     joerg 
    481      1.32     joerg 	BI_ADD(&btinfo_console, BTINFO_CONSOLE, sizeof(struct btinfo_console));
    482      1.77   mlelstv 	if (bi_root.devname[0])
    483      1.77   mlelstv 		BI_ADD(&bi_root, BTINFO_ROOTDEVICE, sizeof(struct btinfo_rootdevice));
    484      1.32     joerg 
    485      1.40        ad 	howto = boothowto;
    486      1.40        ad 
    487      1.56  jakllsch 	memset(marks, 0, sizeof(marks));
    488      1.56  jakllsch 
    489      1.69      maxv 	if (has_prekern) {
    490      1.69      maxv 		error = common_load_prekern(file, &basemem, &extmem, loadaddr,
    491      1.69      maxv 		    floppy, marks);
    492      1.69      maxv 	} else {
    493      1.69      maxv 		error = common_load_kernel(file, &basemem, &extmem, loadaddr,
    494      1.69      maxv 		    floppy, marks);
    495      1.69      maxv 	}
    496      1.63    nonaka 	if (error) {
    497      1.63    nonaka 		errno = error;
    498      1.32     joerg 		goto out;
    499      1.63    nonaka 	}
    500      1.67    nonaka #ifdef EFIBOOT
    501  1.78.4.1    martin 	efi_load_start = marks[MARK_START];
    502  1.78.4.1    martin 
    503      1.67    nonaka 	/* adjust to the real load address */
    504      1.67    nonaka 	marks[MARK_START] -= efi_loadaddr;
    505      1.67    nonaka 	marks[MARK_ENTRY] -= efi_loadaddr;
    506      1.67    nonaka 	marks[MARK_DATA] -= efi_loadaddr;
    507      1.67    nonaka 	/* MARK_NSYM */
    508      1.67    nonaka 	marks[MARK_SYM] -= efi_loadaddr;
    509      1.67    nonaka 	marks[MARK_END] -= efi_loadaddr;
    510      1.67    nonaka #endif
    511      1.32     joerg 
    512      1.31     joerg 	boot_argv[0] = boothowto;
    513      1.31     joerg 	boot_argv[1] = 0;
    514      1.31     joerg 	boot_argv[2] = vtophys(bootinfo);	/* old cyl offset */
    515      1.31     joerg 	boot_argv[3] = marks[MARK_END];
    516      1.31     joerg 	boot_argv[4] = extmem;
    517      1.31     joerg 	boot_argv[5] = basemem;
    518      1.31     joerg 
    519      1.23        ad 	/* pull in any modules if necessary */
    520      1.23        ad 	if (boot_modules_enabled) {
    521      1.41  jmcneill 		module_init(file);
    522      1.23        ad 		if (btinfo_modulelist) {
    523      1.67    nonaka #ifdef EFIBOOT
    524      1.67    nonaka 			/* convert module loaded address to paddr */
    525      1.67    nonaka 			struct bi_modulelist_entry *bim;
    526      1.67    nonaka 			bim = (void *)(btinfo_modulelist + 1);
    527      1.67    nonaka 			for (i = 0; i < btinfo_modulelist->num; i++, bim++)
    528      1.67    nonaka 				bim->base -= efi_loadaddr;
    529      1.67    nonaka 			btinfo_modulelist->endpa -= efi_loadaddr;
    530      1.67    nonaka #endif
    531      1.23        ad 			BI_ADD(btinfo_modulelist, BTINFO_MODULELIST,
    532      1.23        ad 			    btinfo_modulelist_size);
    533      1.23        ad 		}
    534      1.23        ad 	}
    535       1.1     perry 
    536      1.47  uebayasi 	userconf_init();
    537      1.47  uebayasi 	if (btinfo_userconfcommands != NULL)
    538      1.47  uebayasi 		BI_ADD(btinfo_userconfcommands, BTINFO_USERCONFCOMMANDS,
    539      1.58  jakllsch 		    btinfo_userconfcommands_size);
    540      1.47  uebayasi 
    541       1.1     perry #ifdef DEBUG
    542       1.8  christos 	printf("Start @ 0x%lx [%ld=0x%lx-0x%lx]...\n", marks[MARK_ENTRY],
    543       1.7  christos 	    marks[MARK_NSYM], marks[MARK_SYM], marks[MARK_END]);
    544       1.1     perry #endif
    545       1.1     perry 
    546       1.8  christos 	btinfo_symtab.nsym = marks[MARK_NSYM];
    547       1.8  christos 	btinfo_symtab.ssym = marks[MARK_SYM];
    548       1.8  christos 	btinfo_symtab.esym = marks[MARK_END];
    549       1.8  christos 	BI_ADD(&btinfo_symtab, BTINFO_SYMTAB, sizeof(struct btinfo_symtab));
    550       1.8  christos 
    551      1.42  jmcneill 	/* set new video mode if necessary */
    552      1.42  jmcneill 	vbe_commit();
    553      1.42  jmcneill 	BI_ADD(&btinfo_framebuffer, BTINFO_FRAMEBUFFER,
    554      1.42  jmcneill 	    sizeof(struct btinfo_framebuffer));
    555      1.42  jmcneill 
    556      1.40        ad 	if (callback != NULL)
    557      1.40        ad 		(*callback)();
    558  1.78.4.1    martin 
    559  1.78.4.1    martin 	entry = marks[MARK_ENTRY];
    560      1.63    nonaka #ifdef EFIBOOT
    561      1.64    nonaka 	/* Copy bootinfo to safe arena. */
    562      1.64    nonaka 	for (i = 0; i < bootinfo->nentries; i++) {
    563      1.64    nonaka 		struct btinfo_common *bi = (void *)(u_long)bootinfo->entry[i];
    564      1.64    nonaka 		char *p = alloc(bi->len);
    565      1.64    nonaka 		memcpy(p, bi, bi->len);
    566      1.64    nonaka 		bootinfo->entry[i] = vtophys(p);
    567      1.64    nonaka 	}
    568      1.64    nonaka 
    569      1.65    nonaka 	efi_kernel_start = marks[MARK_START];
    570      1.70      maxv 	efi_kernel_size = image_end - (efi_loadaddr + efi_kernel_start);
    571  1.78.4.1    martin 
    572  1.78.4.1    martin 	switch (efi_reloc_type) {
    573  1.78.4.1    martin 	case RELOC_NONE:
    574  1.78.4.1    martin 		entry += (efi_load_start - efi_kernel_start);
    575  1.78.4.1    martin 		efi_kernel_start = efi_load_start;
    576  1.78.4.1    martin 		break;
    577  1.78.4.1    martin 	case RELOC_ADDR:
    578  1.78.4.1    martin 		entry += (efi_kernel_reloc - efi_kernel_start);
    579  1.78.4.1    martin 		efi_kernel_start = efi_kernel_reloc;
    580  1.78.4.1    martin 		break;
    581  1.78.4.1    martin 	case RELOC_DEFAULT:
    582  1.78.4.1    martin 	default:
    583  1.78.4.1    martin 		break;
    584  1.78.4.1    martin 	}
    585      1.63    nonaka #endif
    586  1.78.4.1    martin 	startprog(entry, BOOT_NARGS, boot_argv,
    587      1.62      maxv 	    x86_trunc_page(basemem * 1024));
    588       1.1     perry 	panic("exec returned");
    589       1.1     perry 
    590       1.4  drochner out:
    591       1.4  drochner 	BI_FREE();
    592      1.60      maxv 	bootinfo = NULL;
    593      1.21  junyoung 	return -1;
    594       1.1     perry }
    595      1.23        ad 
    596      1.41  jmcneill static void
    597      1.41  jmcneill extract_device(const char *path, char *buf, size_t buflen)
    598      1.41  jmcneill {
    599      1.59  jakllsch 	size_t i;
    600      1.41  jmcneill 
    601      1.41  jmcneill 	if (strchr(path, ':') != NULL) {
    602      1.41  jmcneill 		for (i = 0; i < buflen - 2 && path[i] != ':'; i++)
    603      1.41  jmcneill 			buf[i] = path[i];
    604      1.41  jmcneill 		buf[i++] = ':';
    605      1.41  jmcneill 		buf[i] = '\0';
    606      1.41  jmcneill 	} else
    607      1.41  jmcneill 		buf[0] = '\0';
    608      1.41  jmcneill }
    609      1.41  jmcneill 
    610      1.26        ad static const char *
    611      1.67    nonaka module_path(boot_module_t *bm, const char *kdev, const char *base_path)
    612      1.26        ad {
    613      1.26        ad 	static char buf[256];
    614      1.41  jmcneill 	char name_buf[256], dev_buf[64];
    615      1.41  jmcneill 	const char *name, *name2, *p;
    616      1.26        ad 
    617      1.26        ad 	name = bm->bm_path;
    618      1.33     joerg 	for (name2 = name; *name2; ++name2) {
    619      1.33     joerg 		if (*name2 == ' ' || *name2 == '\t') {
    620      1.33     joerg 			strlcpy(name_buf, name, sizeof(name_buf));
    621      1.59  jakllsch 			if ((uintptr_t)name2 - (uintptr_t)name < sizeof(name_buf))
    622      1.33     joerg 				name_buf[name2 - name] = '\0';
    623      1.33     joerg 			name = name_buf;
    624      1.33     joerg 			break;
    625      1.33     joerg 		}
    626      1.33     joerg 	}
    627      1.41  jmcneill 	if ((p = strchr(name, ':')) != NULL) {
    628      1.41  jmcneill 		/* device specified, use it */
    629      1.41  jmcneill 		if (p[1] == '/')
    630      1.41  jmcneill 			snprintf(buf, sizeof(buf), "%s", name);
    631      1.41  jmcneill 		else {
    632      1.41  jmcneill 			p++;
    633      1.41  jmcneill 			extract_device(name, dev_buf, sizeof(dev_buf));
    634      1.41  jmcneill 			snprintf(buf, sizeof(buf), "%s%s/%s/%s.kmod",
    635      1.67    nonaka 			    dev_buf, base_path, p, p);
    636      1.41  jmcneill 		}
    637      1.41  jmcneill 	} else {
    638      1.41  jmcneill 		/* device not specified; load from kernel device if known */
    639      1.58  jakllsch 		if (name[0] == '/')
    640      1.41  jmcneill 			snprintf(buf, sizeof(buf), "%s%s", kdev, name);
    641      1.41  jmcneill 		else
    642      1.41  jmcneill 			snprintf(buf, sizeof(buf), "%s%s/%s/%s.kmod",
    643      1.67    nonaka 			    kdev, base_path, name, name);
    644      1.41  jmcneill 	}
    645      1.33     joerg 
    646      1.26        ad 	return buf;
    647      1.26        ad }
    648      1.26        ad 
    649      1.36  christos static int
    650      1.67    nonaka module_open(boot_module_t *bm, int mode, const char *kdev,
    651      1.67    nonaka     const char *base_path, bool doload)
    652      1.28     chris {
    653      1.28     chris 	int fd;
    654      1.28     chris 	const char *path;
    655      1.36  christos 
    656      1.28     chris 	/* check the expanded path first */
    657      1.67    nonaka 	path = module_path(bm, kdev, base_path);
    658      1.28     chris 	fd = open(path, mode);
    659      1.41  jmcneill 	if (fd != -1) {
    660      1.41  jmcneill 		if ((howto & AB_SILENT) == 0 && doload)
    661      1.41  jmcneill 			printf("Loading %s ", path);
    662      1.41  jmcneill 	} else {
    663      1.28     chris 		/* now attempt the raw path provided */
    664      1.28     chris 		fd = open(bm->bm_path, mode);
    665      1.41  jmcneill 		if (fd != -1 && (howto & AB_SILENT) == 0 && doload)
    666      1.41  jmcneill 			printf("Loading %s ", bm->bm_path);
    667      1.41  jmcneill 	}
    668      1.41  jmcneill 	if (!doload && fd == -1) {
    669      1.41  jmcneill 		printf("WARNING: couldn't open %s", bm->bm_path);
    670      1.41  jmcneill 		if (strcmp(bm->bm_path, path) != 0)
    671      1.41  jmcneill 			printf(" (%s)", path);
    672      1.41  jmcneill 		printf("\n");
    673      1.28     chris 	}
    674      1.28     chris 	return fd;
    675      1.28     chris }
    676      1.28     chris 
    677      1.23        ad static void
    678      1.76  christos module_base_path(char *buf, size_t bufsize, const char *kernel_path)
    679      1.23        ad {
    680      1.76  christos #ifdef KERNEL_DIR
    681      1.76  christos 	/* we cheat here, because %.* does not work with the mini printf */
    682      1.76  christos 	char *ptr = strrchr(kernel_path, '/');
    683      1.76  christos 	if (ptr) *ptr = '\0';
    684      1.76  christos 	snprintf(buf, bufsize, "%s/modules", kernel_path);
    685      1.76  christos 	if (ptr) *ptr = '/';
    686      1.76  christos #else
    687      1.30     joerg 	const char *machine;
    688      1.23        ad 
    689      1.30     joerg 	switch (netbsd_elf_class) {
    690      1.30     joerg 	case ELFCLASS32:
    691      1.30     joerg 		machine = "i386";
    692      1.30     joerg 		break;
    693      1.30     joerg 	case ELFCLASS64:
    694      1.30     joerg 		machine = "amd64";
    695      1.30     joerg 		break;
    696      1.30     joerg 	default:
    697      1.30     joerg 		machine = "generic";
    698      1.30     joerg 		break;
    699      1.30     joerg 	}
    700      1.30     joerg 	if (netbsd_version / 1000000 % 100 == 99) {
    701      1.30     joerg 		/* -current */
    702      1.67    nonaka 		snprintf(buf, bufsize,
    703      1.38     rmind 		    "/stand/%s/%d.%d.%d/modules", machine,
    704      1.30     joerg 		    netbsd_version / 100000000,
    705      1.30     joerg 		    netbsd_version / 1000000 % 100,
    706      1.78  riastrad 		    netbsd_version / 100 % 10000);
    707      1.30     joerg 	} else if (netbsd_version != 0) {
    708      1.30     joerg 		/* release */
    709      1.67    nonaka 		snprintf(buf, bufsize,
    710      1.38     rmind 		    "/stand/%s/%d.%d/modules", machine,
    711      1.30     joerg 		    netbsd_version / 100000000,
    712      1.30     joerg 		    netbsd_version / 1000000 % 100);
    713      1.30     joerg 	}
    714      1.76  christos #endif
    715      1.67    nonaka }
    716      1.67    nonaka 
    717      1.67    nonaka static void
    718      1.67    nonaka module_init(const char *kernel_path)
    719      1.67    nonaka {
    720      1.67    nonaka 	struct bi_modulelist_entry *bi;
    721      1.67    nonaka 	struct stat st;
    722      1.67    nonaka 	char kdev[64];
    723      1.67    nonaka 	char *buf;
    724      1.67    nonaka 	boot_module_t *bm;
    725      1.67    nonaka 	ssize_t len;
    726      1.67    nonaka 	off_t off;
    727      1.67    nonaka 	int err, fd, nfail = 0;
    728      1.67    nonaka 
    729      1.67    nonaka 	extract_device(kernel_path, kdev, sizeof(kdev));
    730      1.76  christos 	module_base_path(module_base, sizeof(module_base), kernel_path);
    731      1.30     joerg 
    732      1.23        ad 	/* First, see which modules are valid and calculate btinfo size */
    733      1.23        ad 	len = sizeof(struct btinfo_modulelist);
    734      1.23        ad 	for (bm = boot_modules; bm; bm = bm->bm_next) {
    735      1.67    nonaka 		fd = module_open(bm, 0, kdev, module_base, false);
    736      1.23        ad 		if (fd == -1) {
    737      1.23        ad 			bm->bm_len = -1;
    738      1.41  jmcneill 			++nfail;
    739      1.23        ad 			continue;
    740      1.23        ad 		}
    741      1.23        ad 		err = fstat(fd, &st);
    742      1.24        ad 		if (err == -1 || st.st_size == -1) {
    743      1.28     chris 			printf("WARNING: couldn't stat %s\n", bm->bm_path);
    744      1.23        ad 			close(fd);
    745      1.23        ad 			bm->bm_len = -1;
    746      1.41  jmcneill 			++nfail;
    747      1.23        ad 			continue;
    748      1.23        ad 		}
    749      1.23        ad 		bm->bm_len = st.st_size;
    750      1.23        ad 		close(fd);
    751      1.23        ad 		len += sizeof(struct bi_modulelist_entry);
    752      1.23        ad 	}
    753      1.23        ad 
    754      1.23        ad 	/* Allocate the module list */
    755      1.23        ad 	btinfo_modulelist = alloc(len);
    756      1.23        ad 	if (btinfo_modulelist == NULL) {
    757      1.23        ad 		printf("WARNING: couldn't allocate module list\n");
    758      1.43   tsutsui 		wait_sec(MODULE_WARNING_SEC);
    759      1.23        ad 		return;
    760      1.23        ad 	}
    761      1.23        ad 	memset(btinfo_modulelist, 0, len);
    762      1.23        ad 	btinfo_modulelist_size = len;
    763      1.23        ad 
    764      1.23        ad 	/* Fill in btinfo structure */
    765      1.23        ad 	buf = (char *)btinfo_modulelist;
    766      1.23        ad 	btinfo_modulelist->num = 0;
    767      1.23        ad 	off = sizeof(struct btinfo_modulelist);
    768      1.23        ad 
    769      1.23        ad 	for (bm = boot_modules; bm; bm = bm->bm_next) {
    770      1.23        ad 		if (bm->bm_len == -1)
    771      1.23        ad 			continue;
    772      1.67    nonaka 		fd = module_open(bm, 0, kdev, module_base, true);
    773      1.41  jmcneill 		if (fd == -1)
    774      1.23        ad 			continue;
    775      1.24        ad 		image_end = (image_end + PAGE_SIZE - 1) & ~(PAGE_SIZE - 1);
    776      1.52  jakllsch 		len = pread(fd, (void *)(uintptr_t)image_end, SSIZE_MAX);
    777      1.24        ad 		if (len < bm->bm_len) {
    778      1.40        ad 			if ((howto & AB_SILENT) != 0)
    779      1.40        ad 				printf("Loading %s ", bm->bm_path);
    780      1.23        ad 			printf(" FAILED\n");
    781      1.23        ad 		} else {
    782      1.23        ad 			btinfo_modulelist->num++;
    783      1.23        ad 			bi = (struct bi_modulelist_entry *)(buf + off);
    784      1.23        ad 			off += sizeof(struct bi_modulelist_entry);
    785      1.23        ad 			strncpy(bi->path, bm->bm_path, sizeof(bi->path) - 1);
    786      1.24        ad 			bi->base = image_end;
    787      1.24        ad 			bi->len = len;
    788      1.49       tls 			switch (bm->bm_type) {
    789      1.49       tls 			    case BM_TYPE_KMOD:
    790      1.49       tls 				bi->type = BI_MODULE_ELF;
    791      1.49       tls 				break;
    792      1.49       tls 			    case BM_TYPE_IMAGE:
    793      1.49       tls 				bi->type = BI_MODULE_IMAGE;
    794      1.49       tls 				break;
    795      1.51  jmcneill 			    case BM_TYPE_FS:
    796      1.51  jmcneill 				bi->type = BI_MODULE_FS;
    797      1.51  jmcneill 				break;
    798      1.49       tls 			    case BM_TYPE_RND:
    799      1.49       tls 			    default:
    800      1.49       tls 				/* safest -- rnd checks the sha1 */
    801      1.49       tls 				bi->type = BI_MODULE_RND;
    802      1.49       tls 				break;
    803      1.49       tls 			}
    804      1.40        ad 			if ((howto & AB_SILENT) == 0)
    805      1.40        ad 				printf(" \n");
    806      1.23        ad 		}
    807      1.24        ad 		if (len > 0)
    808      1.24        ad 			image_end += len;
    809      1.23        ad 		close(fd);
    810      1.23        ad 	}
    811      1.23        ad 	btinfo_modulelist->endpa = image_end;
    812      1.41  jmcneill 
    813      1.41  jmcneill 	if (nfail > 0) {
    814      1.41  jmcneill 		printf("WARNING: %d module%s failed to load\n",
    815      1.41  jmcneill 		    nfail, nfail == 1 ? "" : "s");
    816      1.41  jmcneill #if notyet
    817      1.43   tsutsui 		wait_sec(MODULE_WARNING_SEC);
    818      1.41  jmcneill #endif
    819      1.41  jmcneill 	}
    820      1.23        ad }
    821      1.33     joerg 
    822      1.47  uebayasi static void
    823      1.47  uebayasi userconf_init(void)
    824      1.47  uebayasi {
    825      1.47  uebayasi 	size_t count, len;
    826      1.47  uebayasi 	userconf_command_t *uc;
    827      1.47  uebayasi 	char *buf;
    828      1.47  uebayasi 	off_t off;
    829      1.47  uebayasi 
    830      1.47  uebayasi 	/* Calculate the userconf commands list size */
    831      1.47  uebayasi 	count = 0;
    832      1.47  uebayasi 	for (uc = userconf_commands; uc != NULL; uc = uc->uc_next)
    833      1.47  uebayasi 		count++;
    834      1.55  jakllsch 	len = sizeof(*btinfo_userconfcommands) +
    835      1.47  uebayasi 	      count * sizeof(struct bi_userconfcommand);
    836      1.47  uebayasi 
    837      1.47  uebayasi 	/* Allocate the userconf commands list */
    838      1.47  uebayasi 	btinfo_userconfcommands = alloc(len);
    839      1.47  uebayasi 	if (btinfo_userconfcommands == NULL) {
    840      1.47  uebayasi 		printf("WARNING: couldn't allocate userconf commands list\n");
    841      1.47  uebayasi 		return;
    842      1.47  uebayasi 	}
    843      1.47  uebayasi 	memset(btinfo_userconfcommands, 0, len);
    844      1.47  uebayasi 	btinfo_userconfcommands_size = len;
    845      1.47  uebayasi 
    846      1.47  uebayasi 	/* Fill in btinfo structure */
    847      1.47  uebayasi 	buf = (char *)btinfo_userconfcommands;
    848      1.47  uebayasi 	off = sizeof(*btinfo_userconfcommands);
    849      1.47  uebayasi 	btinfo_userconfcommands->num = 0;
    850      1.47  uebayasi 	for (uc = userconf_commands; uc != NULL; uc = uc->uc_next) {
    851      1.47  uebayasi 		struct bi_userconfcommand *bi;
    852      1.47  uebayasi 		bi = (struct bi_userconfcommand *)(buf + off);
    853      1.47  uebayasi 		strncpy(bi->text, uc->uc_text, sizeof(bi->text) - 1);
    854      1.47  uebayasi 
    855      1.47  uebayasi 		off += sizeof(*bi);
    856      1.47  uebayasi 		btinfo_userconfcommands->num++;
    857      1.47  uebayasi 	}
    858      1.47  uebayasi }
    859      1.47  uebayasi 
    860      1.33     joerg int
    861      1.33     joerg exec_multiboot(const char *file, char *args)
    862      1.33     joerg {
    863      1.74      manu 	physaddr_t loadaddr = 0;
    864      1.62      maxv 	u_long marks[MARK_MAX];
    865      1.62      maxv 	u_long extmem;
    866      1.62      maxv 	u_long basemem;
    867      1.74      manu 	struct multiboot_package *mbp = NULL;
    868      1.33     joerg 
    869      1.74      manu #ifndef NO_MULTIBOOT2
    870      1.74      manu 	if ((mbp = probe_multiboot2(file)) != NULL)
    871      1.74      manu 		goto is_multiboot;
    872      1.74      manu #endif
    873      1.33     joerg 
    874      1.74      manu 	if ((mbp = probe_multiboot1(file)) != NULL) {
    875      1.74      manu #ifdef EFIBOOT
    876      1.74      manu 		printf("EFI boot requires multiboot 2 kernel\n");
    877      1.33     joerg 		goto out;
    878      1.74      manu #else
    879      1.74      manu 		goto is_multiboot;
    880      1.74      manu #endif
    881      1.74      manu 	}
    882      1.33     joerg 
    883      1.74      manu #ifndef NO_MULTIBOOT2
    884      1.74      manu 	printf("%s is not a multiboot kernel\n", file);
    885      1.74      manu #else
    886      1.74      manu 	printf("%s is not a multiboot 1 kernel "
    887      1.74      manu 	    "(multiboot 2 support is not built in)\n", file);
    888      1.74      manu #endif
    889      1.74      manu 	goto out;
    890      1.33     joerg 
    891      1.74      manu is_multiboot:
    892      1.74      manu #ifdef EFIBOOT
    893      1.74      manu 	loadaddr = efi_loadaddr;
    894      1.74      manu #endif
    895      1.74      manu 	if (common_load_kernel(file, &basemem, &extmem, loadaddr, 0, marks))
    896      1.74      manu 		goto out;
    897      1.33     joerg 
    898      1.74      manu 	if (boot_modules_enabled)
    899      1.41  jmcneill 		module_init(file);
    900      1.33     joerg 
    901      1.74      manu 	mbp->mbp_args = args;
    902      1.74      manu 	mbp->mbp_basemem = basemem;
    903      1.74      manu 	mbp->mbp_extmem = extmem;
    904      1.74      manu 	mbp->mbp_loadaddr = loadaddr;
    905      1.74      manu 	mbp->mbp_marks = marks;
    906      1.33     joerg 
    907      1.74      manu 	/* Only returns on error */
    908      1.74      manu 	(void)mbp->mbp_exec(mbp);
    909      1.33     joerg 
    910      1.33     joerg out:
    911      1.74      manu 	if (mbp != NULL)
    912      1.74      manu 		mbp->mbp_cleanup(mbp);
    913      1.74      manu 
    914      1.33     joerg 	return -1;
    915      1.33     joerg }
    916      1.40        ad 
    917      1.40        ad void
    918      1.40        ad x86_progress(const char *fmt, ...)
    919      1.40        ad {
    920      1.40        ad 	va_list ap;
    921      1.40        ad 
    922      1.40        ad 	if ((howto & AB_SILENT) != 0)
    923      1.40        ad 		return;
    924      1.40        ad 	va_start(ap, fmt);
    925      1.40        ad 	vprintf(fmt, ap);
    926      1.40        ad 	va_end(ap);
    927      1.40        ad }
    928