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disks.c revision 1.44.2.1
      1  1.44.2.1   msaitoh /*	$NetBSD: disks.c,v 1.44.2.1 2019/08/02 05:41:46 msaitoh Exp $ */
      2       1.1  dholland 
      3       1.1  dholland /*
      4       1.1  dholland  * Copyright 1997 Piermont Information Systems Inc.
      5       1.1  dholland  * All rights reserved.
      6       1.1  dholland  *
      7       1.1  dholland  * Written by Philip A. Nelson for Piermont Information Systems Inc.
      8       1.1  dholland  *
      9       1.1  dholland  * Redistribution and use in source and binary forms, with or without
     10       1.1  dholland  * modification, are permitted provided that the following conditions
     11       1.1  dholland  * are met:
     12       1.1  dholland  * 1. Redistributions of source code must retain the above copyright
     13       1.1  dholland  *    notice, this list of conditions and the following disclaimer.
     14       1.1  dholland  * 2. Redistributions in binary form must reproduce the above copyright
     15       1.1  dholland  *    notice, this list of conditions and the following disclaimer in the
     16       1.1  dholland  *    documentation and/or other materials provided with the distribution.
     17       1.1  dholland  * 3. The name of Piermont Information Systems Inc. may not be used to endorse
     18       1.1  dholland  *    or promote products derived from this software without specific prior
     19       1.1  dholland  *    written permission.
     20       1.1  dholland  *
     21       1.1  dholland  * THIS SOFTWARE IS PROVIDED BY PIERMONT INFORMATION SYSTEMS INC. ``AS IS''
     22       1.1  dholland  * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     23       1.1  dholland  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     24       1.1  dholland  * ARE DISCLAIMED. IN NO EVENT SHALL PIERMONT INFORMATION SYSTEMS INC. BE
     25       1.1  dholland  * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     26       1.1  dholland  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     27       1.1  dholland  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     28       1.1  dholland  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     29       1.1  dholland  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     30       1.1  dholland  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
     31       1.1  dholland  * THE POSSIBILITY OF SUCH DAMAGE.
     32       1.1  dholland  *
     33       1.1  dholland  */
     34       1.1  dholland 
     35       1.1  dholland /* disks.c -- routines to deal with finding disks and labeling disks. */
     36       1.1  dholland 
     37       1.1  dholland 
     38      1.30    martin #include <assert.h>
     39       1.1  dholland #include <errno.h>
     40      1.17    martin #include <inttypes.h>
     41       1.1  dholland #include <stdio.h>
     42       1.1  dholland #include <stdlib.h>
     43       1.1  dholland #include <unistd.h>
     44       1.1  dholland #include <fcntl.h>
     45      1.20    martin #include <fnmatch.h>
     46       1.1  dholland #include <util.h>
     47       1.2    martin #include <uuid.h>
     48      1.30    martin #include <paths.h>
     49       1.1  dholland 
     50       1.1  dholland #include <sys/param.h>
     51       1.1  dholland #include <sys/sysctl.h>
     52       1.1  dholland #include <sys/swap.h>
     53      1.30    martin #include <sys/disklabel_gpt.h>
     54       1.1  dholland #include <ufs/ufs/dinode.h>
     55       1.1  dholland #include <ufs/ffs/fs.h>
     56       1.1  dholland 
     57       1.1  dholland #include <dev/scsipi/scsipi_all.h>
     58       1.1  dholland #include <sys/scsiio.h>
     59       1.1  dholland 
     60       1.1  dholland #include <dev/ata/atareg.h>
     61       1.1  dholland #include <sys/ataio.h>
     62       1.1  dholland 
     63       1.1  dholland #include "defs.h"
     64       1.1  dholland #include "md.h"
     65       1.1  dholland #include "msg_defs.h"
     66       1.1  dholland #include "menu_defs.h"
     67       1.1  dholland #include "txtwalk.h"
     68       1.1  dholland 
     69      1.31    martin /* #define DEBUG_VERBOSE	1 */
     70      1.30    martin 
     71       1.1  dholland /* Disk descriptions */
     72       1.1  dholland struct disk_desc {
     73       1.1  dholland 	char	dd_name[SSTRSIZE];
     74      1.29       mrg 	char	dd_descr[256];
     75      1.15    martin 	bool	dd_no_mbr, dd_no_part;
     76       1.1  dholland 	uint	dd_cyl;
     77       1.1  dholland 	uint	dd_head;
     78       1.1  dholland 	uint	dd_sec;
     79       1.1  dholland 	uint	dd_secsize;
     80      1.30    martin 	daddr_t	dd_totsec;
     81       1.2    martin };
     82       1.2    martin 
     83  1.44.2.1   msaitoh static const char name_prefix[] = "NAME=";
     84  1.44.2.1   msaitoh 
     85       1.1  dholland /* Local prototypes */
     86       1.1  dholland static int foundffs(struct data *, size_t);
     87       1.1  dholland #ifdef USE_SYSVBFS
     88       1.1  dholland static int foundsysvbfs(struct data *, size_t);
     89       1.1  dholland #endif
     90      1.30    martin static int fsck_preen(const char *, const char *, bool silent);
     91      1.30    martin static void fixsb(const char *, const char *);
     92       1.1  dholland 
     93       1.1  dholland 
     94       1.1  dholland static bool tmpfs_on_var_shm(void);
     95       1.1  dholland 
     96       1.1  dholland const char *
     97      1.30    martin getfslabelname(uint f, uint f_version)
     98       1.1  dholland {
     99      1.30    martin 	if (f == FS_TMPFS)
    100      1.30    martin 		return "tmpfs";
    101      1.30    martin 	else if (f == FS_MFS)
    102      1.30    martin 		return "mfs";
    103      1.30    martin 	else if (f == FS_BSDFFS && f_version > 0)
    104      1.30    martin 		return f_version == 2 ?
    105      1.30    martin 		    msg_string(MSG_fs_type_ffsv2) : msg_string(MSG_fs_type_ffs);
    106      1.30    martin 	else if (f >= __arraycount(fstypenames) || fstypenames[f] == NULL)
    107       1.1  dholland 		return "invalid";
    108       1.1  dholland 	return fstypenames[f];
    109       1.1  dholland }
    110       1.1  dholland 
    111       1.1  dholland /*
    112       1.1  dholland  * Decide wether we want to mount a tmpfs on /var/shm: we do this always
    113       1.1  dholland  * when the machine has more than 16 MB of user memory. On smaller machines,
    114       1.1  dholland  * shm_open() and friends will not perform well anyway.
    115       1.1  dholland  */
    116       1.1  dholland static bool
    117       1.1  dholland tmpfs_on_var_shm()
    118       1.1  dholland {
    119       1.1  dholland 	uint64_t ram;
    120       1.1  dholland 	size_t len;
    121       1.1  dholland 
    122       1.1  dholland 	len = sizeof(ram);
    123       1.1  dholland 	if (sysctlbyname("hw.usermem64", &ram, &len, NULL, 0))
    124       1.1  dholland 		return false;
    125       1.1  dholland 
    126      1.28    martin 	return ram > 16 * MEG;
    127       1.1  dholland }
    128       1.1  dholland 
    129       1.1  dholland /* from src/sbin/atactl/atactl.c
    130       1.1  dholland  * extract_string: copy a block of bytes out of ataparams and make
    131       1.1  dholland  * a proper string out of it, truncating trailing spaces and preserving
    132       1.1  dholland  * strict typing. And also, not doing unaligned accesses.
    133       1.1  dholland  */
    134       1.1  dholland static void
    135       1.1  dholland ata_extract_string(char *buf, size_t bufmax,
    136       1.1  dholland 		   uint8_t *bytes, unsigned numbytes,
    137       1.1  dholland 		   int needswap)
    138       1.1  dholland {
    139       1.1  dholland 	unsigned i;
    140       1.1  dholland 	size_t j;
    141       1.1  dholland 	unsigned char ch1, ch2;
    142       1.1  dholland 
    143       1.1  dholland 	for (i = 0, j = 0; i < numbytes; i += 2) {
    144       1.1  dholland 		ch1 = bytes[i];
    145       1.1  dholland 		ch2 = bytes[i+1];
    146       1.1  dholland 		if (needswap && j < bufmax-1) {
    147       1.1  dholland 			buf[j++] = ch2;
    148       1.1  dholland 		}
    149       1.1  dholland 		if (j < bufmax-1) {
    150       1.1  dholland 			buf[j++] = ch1;
    151       1.1  dholland 		}
    152       1.1  dholland 		if (!needswap && j < bufmax-1) {
    153       1.1  dholland 			buf[j++] = ch2;
    154       1.1  dholland 		}
    155       1.1  dholland 	}
    156       1.1  dholland 	while (j > 0 && buf[j-1] == ' ') {
    157       1.1  dholland 		j--;
    158       1.1  dholland 	}
    159       1.1  dholland 	buf[j] = '\0';
    160       1.1  dholland }
    161       1.1  dholland 
    162       1.1  dholland /*
    163       1.1  dholland  * from src/sbin/scsictl/scsi_subr.c
    164       1.1  dholland  */
    165       1.1  dholland #define STRVIS_ISWHITE(x) ((x) == ' ' || (x) == '\0' || (x) == (u_char)'\377')
    166       1.1  dholland 
    167       1.1  dholland static void
    168       1.1  dholland scsi_strvis(char *sdst, size_t dlen, const char *ssrc, size_t slen)
    169       1.1  dholland {
    170       1.1  dholland 	u_char *dst = (u_char *)sdst;
    171       1.1  dholland 	const u_char *src = (const u_char *)ssrc;
    172       1.1  dholland 
    173       1.1  dholland 	/* Trim leading and trailing blanks and NULs. */
    174       1.1  dholland 	while (slen > 0 && STRVIS_ISWHITE(src[0]))
    175       1.1  dholland 		++src, --slen;
    176       1.1  dholland 	while (slen > 0 && STRVIS_ISWHITE(src[slen - 1]))
    177       1.1  dholland 		--slen;
    178       1.1  dholland 
    179       1.1  dholland 	while (slen > 0) {
    180       1.1  dholland 		if (*src < 0x20 || *src >= 0x80) {
    181       1.1  dholland 			/* non-printable characters */
    182       1.1  dholland 			dlen -= 4;
    183       1.1  dholland 			if (dlen < 1)
    184       1.1  dholland 				break;
    185       1.1  dholland 			*dst++ = '\\';
    186       1.1  dholland 			*dst++ = ((*src & 0300) >> 6) + '0';
    187       1.1  dholland 			*dst++ = ((*src & 0070) >> 3) + '0';
    188       1.1  dholland 			*dst++ = ((*src & 0007) >> 0) + '0';
    189       1.1  dholland 		} else if (*src == '\\') {
    190       1.1  dholland 			/* quote characters */
    191       1.1  dholland 			dlen -= 2;
    192       1.1  dholland 			if (dlen < 1)
    193       1.1  dholland 				break;
    194       1.1  dholland 			*dst++ = '\\';
    195       1.1  dholland 			*dst++ = '\\';
    196       1.1  dholland 		} else {
    197       1.1  dholland 			/* normal characters */
    198       1.1  dholland 			if (--dlen < 1)
    199       1.1  dholland 				break;
    200       1.1  dholland 			*dst++ = *src;
    201       1.1  dholland 		}
    202       1.1  dholland 		++src, --slen;
    203       1.1  dholland 	}
    204       1.1  dholland 
    205       1.1  dholland 	*dst++ = 0;
    206       1.1  dholland }
    207       1.1  dholland 
    208       1.1  dholland 
    209       1.1  dholland static int
    210      1.35  christos get_descr_scsi(struct disk_desc *dd)
    211       1.1  dholland {
    212       1.1  dholland 	struct scsipi_inquiry_data inqbuf;
    213       1.1  dholland 	struct scsipi_inquiry cmd;
    214       1.1  dholland 	scsireq_t req;
    215       1.1  dholland         /* x4 in case every character is escaped, +1 for NUL. */
    216       1.1  dholland 	char vendor[(sizeof(inqbuf.vendor) * 4) + 1],
    217       1.1  dholland 	     product[(sizeof(inqbuf.product) * 4) + 1],
    218       1.1  dholland 	     revision[(sizeof(inqbuf.revision) * 4) + 1];
    219       1.1  dholland 	char size[5];
    220       1.1  dholland 
    221       1.1  dholland 	memset(&inqbuf, 0, sizeof(inqbuf));
    222       1.1  dholland 	memset(&cmd, 0, sizeof(cmd));
    223       1.1  dholland 	memset(&req, 0, sizeof(req));
    224       1.1  dholland 
    225       1.1  dholland 	cmd.opcode = INQUIRY;
    226       1.1  dholland 	cmd.length = sizeof(inqbuf);
    227       1.1  dholland 	memcpy(req.cmd, &cmd, sizeof(cmd));
    228       1.1  dholland 	req.cmdlen = sizeof(cmd);
    229       1.1  dholland 	req.databuf = &inqbuf;
    230       1.1  dholland 	req.datalen = sizeof(inqbuf);
    231       1.1  dholland 	req.timeout = 10000;
    232       1.1  dholland 	req.flags = SCCMD_READ;
    233       1.1  dholland 	req.senselen = SENSEBUFLEN;
    234       1.1  dholland 
    235      1.35  christos 	if (!disk_ioctl(dd->dd_name, SCIOCCOMMAND, &req)
    236      1.35  christos 	    || req.retsts != SCCMD_OK)
    237       1.1  dholland 		return 0;
    238       1.1  dholland 
    239       1.1  dholland 	scsi_strvis(vendor, sizeof(vendor), inqbuf.vendor,
    240       1.1  dholland 	    sizeof(inqbuf.vendor));
    241       1.1  dholland 	scsi_strvis(product, sizeof(product), inqbuf.product,
    242       1.1  dholland 	    sizeof(inqbuf.product));
    243       1.1  dholland 	scsi_strvis(revision, sizeof(revision), inqbuf.revision,
    244       1.1  dholland 	    sizeof(inqbuf.revision));
    245       1.1  dholland 
    246       1.1  dholland 	humanize_number(size, sizeof(size),
    247       1.1  dholland 	    (uint64_t)dd->dd_secsize * (uint64_t)dd->dd_totsec,
    248       1.1  dholland 	    "", HN_AUTOSCALE, HN_B | HN_NOSPACE | HN_DECIMAL);
    249       1.1  dholland 
    250       1.1  dholland 	snprintf(dd->dd_descr, sizeof(dd->dd_descr),
    251       1.1  dholland 	    "%s (%s, %s %s)",
    252       1.1  dholland 	    dd->dd_name, size, vendor, product);
    253       1.1  dholland 
    254       1.1  dholland 	return 1;
    255       1.1  dholland }
    256       1.1  dholland 
    257       1.1  dholland static int
    258      1.35  christos get_descr_ata(struct disk_desc *dd)
    259       1.1  dholland {
    260       1.1  dholland 	struct atareq req;
    261       1.1  dholland 	static union {
    262       1.1  dholland 		unsigned char inbuf[DEV_BSIZE];
    263       1.1  dholland 		struct ataparams inqbuf;
    264       1.1  dholland 	} inbuf;
    265       1.1  dholland 	struct ataparams *inqbuf = &inbuf.inqbuf;
    266       1.1  dholland 	char model[sizeof(inqbuf->atap_model)+1];
    267       1.1  dholland 	char size[5];
    268      1.35  christos 	int needswap = 0;
    269       1.1  dholland 
    270       1.1  dholland 	memset(&inbuf, 0, sizeof(inbuf));
    271       1.1  dholland 	memset(&req, 0, sizeof(req));
    272       1.1  dholland 
    273       1.1  dholland 	req.flags = ATACMD_READ;
    274       1.1  dholland 	req.command = WDCC_IDENTIFY;
    275       1.1  dholland 	req.databuf = (void *)&inbuf;
    276       1.1  dholland 	req.datalen = sizeof(inbuf);
    277       1.1  dholland 	req.timeout = 1000;
    278       1.1  dholland 
    279      1.35  christos 	if (!disk_ioctl(dd->dd_name, ATAIOCCOMMAND, &req)
    280      1.35  christos 	    || req.retsts != ATACMD_OK)
    281       1.1  dholland 		return 0;
    282       1.1  dholland 
    283       1.1  dholland #if BYTE_ORDER == LITTLE_ENDIAN
    284       1.1  dholland 	/*
    285       1.1  dholland 	 * On little endian machines, we need to shuffle the string
    286       1.1  dholland 	 * byte order.  However, we don't have to do this for NEC or
    287       1.1  dholland 	 * Mitsumi ATAPI devices
    288       1.1  dholland 	 */
    289       1.1  dholland 
    290       1.1  dholland 	if (!(inqbuf->atap_config != WDC_CFG_CFA_MAGIC &&
    291       1.1  dholland 	      (inqbuf->atap_config & WDC_CFG_ATAPI) &&
    292       1.1  dholland 	      ((inqbuf->atap_model[0] == 'N' &&
    293      1.10     isaki 	        inqbuf->atap_model[1] == 'E') ||
    294       1.1  dholland 	       (inqbuf->atap_model[0] == 'F' &&
    295      1.10     isaki 	        inqbuf->atap_model[1] == 'X')))) {
    296       1.1  dholland 		needswap = 1;
    297       1.1  dholland 	}
    298       1.1  dholland #endif
    299       1.1  dholland 
    300       1.1  dholland 	ata_extract_string(model, sizeof(model),
    301       1.1  dholland 	    inqbuf->atap_model, sizeof(inqbuf->atap_model), needswap);
    302       1.1  dholland 	humanize_number(size, sizeof(size),
    303       1.1  dholland 	    (uint64_t)dd->dd_secsize * (uint64_t)dd->dd_totsec,
    304       1.1  dholland 	    "", HN_AUTOSCALE, HN_B | HN_NOSPACE | HN_DECIMAL);
    305       1.1  dholland 
    306       1.1  dholland 	snprintf(dd->dd_descr, sizeof(dd->dd_descr), "%s (%s, %s)",
    307       1.1  dholland 	    dd->dd_name, size, model);
    308       1.1  dholland 
    309       1.1  dholland 	return 1;
    310       1.1  dholland }
    311       1.1  dholland 
    312       1.1  dholland static void
    313       1.1  dholland get_descr(struct disk_desc *dd)
    314       1.1  dholland {
    315      1.35  christos 	char size[5];
    316       1.1  dholland 	dd->dd_descr[0] = '\0';
    317       1.1  dholland 
    318       1.1  dholland 	/* try ATA */
    319      1.35  christos 	if (get_descr_ata(dd))
    320       1.1  dholland 		goto done;
    321       1.1  dholland 	/* try SCSI */
    322      1.35  christos 	if (get_descr_scsi(dd))
    323       1.1  dholland 		goto done;
    324      1.30    martin 
    325      1.30    martin 	/* XXX: identify for ld @ NVME or microSD */
    326      1.30    martin 
    327       1.2    martin 	/* XXX: get description from raid, cgd, vnd... */
    328      1.35  christos done:
    329      1.30    martin 	/* punt, just give some generic info */
    330      1.30    martin 	humanize_number(size, sizeof(size),
    331      1.30    martin 	    (uint64_t)dd->dd_secsize * (uint64_t)dd->dd_totsec,
    332      1.30    martin 	    "", HN_AUTOSCALE, HN_B | HN_NOSPACE | HN_DECIMAL);
    333      1.30    martin 
    334      1.30    martin 	snprintf(dd->dd_descr, sizeof(dd->dd_descr),
    335      1.30    martin 	    "%s (%s)", dd->dd_name, size);
    336       1.1  dholland }
    337       1.1  dholland 
    338      1.21    martin /*
    339      1.21    martin  * State for helper callback for get_default_cdrom
    340      1.21    martin  */
    341      1.21    martin struct default_cdrom_data {
    342      1.21    martin 	char *device;
    343      1.21    martin 	size_t max_len;
    344      1.21    martin 	bool found;
    345      1.21    martin };
    346      1.21    martin 
    347      1.21    martin /*
    348      1.21    martin  * Helper function for get_default_cdrom, gets passed a device
    349      1.21    martin  * name and a void pointer to default_cdrom_data.
    350      1.21    martin  */
    351      1.21    martin static bool
    352      1.21    martin get_default_cdrom_helper(void *state, const char *dev)
    353      1.21    martin {
    354      1.21    martin 	struct default_cdrom_data *data = state;
    355      1.21    martin 
    356      1.25    martin 	if (!is_cdrom_device(dev, false))
    357      1.22    martin 		return true;
    358      1.22    martin 
    359      1.21    martin 	strlcpy(data->device, dev, data->max_len);
    360      1.22    martin 	strlcat(data->device, "a", data->max_len); /* default to partition a */
    361      1.21    martin 	data->found = true;
    362      1.21    martin 
    363      1.21    martin 	return false;	/* one is enough, stop iteration */
    364      1.21    martin }
    365      1.21    martin 
    366      1.21    martin /*
    367      1.21    martin  * Set the argument to the name of the first CD devices actually
    368      1.21    martin  * available, leave it unmodified otherwise.
    369      1.21    martin  * Return true if a device has been found.
    370       1.1  dholland  */
    371      1.18    martin bool
    372      1.18    martin get_default_cdrom(char *cd, size_t max_len)
    373       1.1  dholland {
    374      1.21    martin 	struct default_cdrom_data state;
    375      1.21    martin 
    376      1.21    martin 	state.device = cd;
    377      1.21    martin 	state.max_len = max_len;
    378      1.21    martin 	state.found = false;
    379      1.21    martin 
    380      1.21    martin 	if (enumerate_disks(&state, get_default_cdrom_helper))
    381      1.21    martin 		return state.found;
    382      1.21    martin 
    383      1.21    martin 	return false;
    384       1.1  dholland }
    385       1.1  dholland 
    386      1.30    martin static bool
    387      1.15    martin get_wedge_descr(struct disk_desc *dd)
    388      1.15    martin {
    389      1.15    martin 	struct dkwedge_info dkw;
    390      1.15    martin 
    391      1.35  christos 	if (!get_wedge_info(dd->dd_name, &dkw))
    392      1.30    martin 		return false;
    393      1.15    martin 
    394      1.35  christos 	snprintf(dd->dd_descr, sizeof(dd->dd_descr), "%s (%s@%s)",
    395      1.35  christos 	    dkw.dkw_wname, dkw.dkw_devname, dkw.dkw_parent);
    396      1.35  christos 	return true;
    397      1.15    martin }
    398      1.15    martin 
    399      1.15    martin static bool
    400      1.15    martin get_name_and_parent(const char *dev, char *name, char *parent)
    401      1.15    martin {
    402      1.15    martin 	struct dkwedge_info dkw;
    403      1.15    martin 
    404      1.35  christos 	if (!get_wedge_info(dev, &dkw))
    405      1.15    martin 		return false;
    406      1.35  christos 	strcpy(name, (const char *)dkw.dkw_wname);
    407      1.35  christos 	strcpy(parent, dkw.dkw_parent);
    408      1.35  christos 	return true;
    409      1.15    martin }
    410      1.15    martin 
    411      1.15    martin static bool
    412      1.15    martin find_swap_part_on(const char *dev, char *swap_name)
    413      1.15    martin {
    414      1.35  christos 	struct dkwedge_list dkwl;
    415      1.15    martin 	struct dkwedge_info *dkw;
    416      1.15    martin 	u_int i;
    417      1.15    martin 	bool res = false;
    418      1.15    martin 
    419      1.35  christos 	if (!get_wedge_list(dev, &dkwl))
    420      1.15    martin 		return false;
    421      1.15    martin 
    422      1.35  christos 	dkw = dkwl.dkwl_buf;
    423      1.15    martin 	for (i = 0; i < dkwl.dkwl_nwedges; i++) {
    424      1.15    martin 		res = strcmp(dkw[i].dkw_ptype, DKW_PTYPE_SWAP) == 0;
    425      1.15    martin 		if (res) {
    426      1.15    martin 			strcpy(swap_name, (const char*)dkw[i].dkw_wname);
    427      1.15    martin 			break;
    428      1.15    martin 		}
    429      1.15    martin 	}
    430      1.35  christos 	free(dkwl.dkwl_buf);
    431      1.15    martin 
    432      1.15    martin 	return res;
    433      1.15    martin }
    434      1.15    martin 
    435      1.15    martin static bool
    436      1.15    martin is_ffs_wedge(const char *dev)
    437      1.15    martin {
    438      1.15    martin 	struct dkwedge_info dkw;
    439      1.15    martin 
    440      1.35  christos 	if (!get_wedge_info(dev, &dkw))
    441      1.15    martin 		return false;
    442      1.15    martin 
    443      1.35  christos 	return strcmp(dkw.dkw_ptype, DKW_PTYPE_FFS) == 0;
    444      1.15    martin }
    445      1.15    martin 
    446      1.18    martin /*
    447      1.18    martin  * Does this device match an entry in our default CDROM device list?
    448      1.25    martin  * If looking for install targets, we also flag floopy devices.
    449      1.18    martin  */
    450      1.22    martin bool
    451      1.25    martin is_cdrom_device(const char *dev, bool as_target)
    452      1.18    martin {
    453      1.25    martin 	static const char *target_devices[] = {
    454      1.24    martin #ifdef CD_NAMES
    455      1.24    martin 		CD_NAMES
    456      1.24    martin #endif
    457      1.24    martin #if defined(CD_NAMES) && defined(FLOPPY_NAMES)
    458      1.24    martin 		,
    459      1.24    martin #endif
    460      1.24    martin #ifdef FLOPPY_NAMES
    461      1.24    martin 		FLOPPY_NAMES
    462      1.24    martin #endif
    463      1.24    martin #if defined(CD_NAMES) || defined(FLOPPY_NAMES)
    464      1.24    martin 		,
    465      1.24    martin #endif
    466      1.24    martin 		0
    467      1.24    martin 	};
    468      1.25    martin 	static const char *src_devices[] = {
    469      1.25    martin #ifdef CD_NAMES
    470      1.25    martin 		CD_NAMES ,
    471      1.25    martin #endif
    472      1.25    martin 		0
    473      1.25    martin 	};
    474      1.18    martin 
    475      1.25    martin 	for (const char **dev_pat = as_target ? target_devices : src_devices;
    476      1.25    martin 	     *dev_pat; dev_pat++)
    477      1.20    martin 		if (fnmatch(*dev_pat, dev, 0) == 0)
    478      1.20    martin 			return true;
    479      1.18    martin 
    480      1.18    martin 	return false;
    481      1.18    martin }
    482      1.18    martin 
    483      1.27    martin /* does this device match any entry in the driver list? */
    484      1.27    martin static bool
    485      1.27    martin dev_in_list(const char *dev, const char **list)
    486      1.27    martin {
    487      1.27    martin 
    488      1.27    martin 	for ( ; *list; list++) {
    489      1.27    martin 
    490      1.27    martin 		size_t len = strlen(*list);
    491      1.27    martin 
    492      1.27    martin 		/* start of name matches? */
    493      1.27    martin 		if (strncmp(dev, *list, len) == 0) {
    494      1.27    martin 			char *endp;
    495      1.27    martin 			int e;
    496      1.27    martin 
    497      1.27    martin 			/* remainder of name is a decimal number? */
    498      1.27    martin 			strtou(dev+len, &endp, 10, 0, INT_MAX, &e);
    499      1.27    martin 			if (endp && *endp == 0 && e == 0)
    500      1.27    martin 				return true;
    501      1.27    martin 		}
    502      1.27    martin 	}
    503      1.27    martin 
    504      1.27    martin 	return false;
    505      1.27    martin }
    506      1.27    martin 
    507      1.27    martin bool
    508      1.27    martin is_bootable_device(const char *dev)
    509      1.27    martin {
    510      1.27    martin 	static const char *non_bootable_devs[] = {
    511      1.27    martin 		"raid",	/* bootcode lives outside of raid */
    512      1.27    martin 		"xbd",	/* xen virtual device, can not boot from that */
    513      1.27    martin 		NULL
    514      1.27    martin 	};
    515      1.27    martin 
    516      1.27    martin 	return !dev_in_list(dev, non_bootable_devs);
    517      1.27    martin }
    518      1.27    martin 
    519      1.27    martin bool
    520      1.27    martin is_partitionable_device(const char *dev)
    521      1.27    martin {
    522      1.27    martin 	static const char *non_partitionable_devs[] = {
    523      1.42   msaitoh 		"dk",	/* this is already a partitioned slice */
    524      1.27    martin 		NULL
    525      1.27    martin 	};
    526      1.27    martin 
    527      1.27    martin 	return !dev_in_list(dev, non_partitionable_devs);
    528      1.27    martin }
    529      1.27    martin 
    530      1.18    martin /*
    531      1.18    martin  * Multi-purpose helper function:
    532      1.21    martin  * iterate all known disks, invoke a callback for each.
    533      1.21    martin  * Stop iteration when the callback returns false.
    534      1.21    martin  * Return true when iteration actually happend, false on error.
    535      1.18    martin  */
    536      1.22    martin bool
    537      1.21    martin enumerate_disks(void *state, bool (*func)(void *state, const char *dev))
    538       1.1  dholland {
    539      1.17    martin 	static const int mib[] = { CTL_HW, HW_DISKNAMES };
    540      1.17    martin 	static const unsigned int miblen = __arraycount(mib);
    541      1.17    martin 	const char *xd;
    542      1.21    martin 	char *disk_names;
    543      1.17    martin 	size_t len;
    544       1.1  dholland 
    545      1.21    martin 	if (sysctl(mib, miblen, NULL, &len, NULL, 0) == -1)
    546      1.21    martin 		return false;
    547       1.1  dholland 
    548      1.17    martin 	disk_names = malloc(len);
    549      1.17    martin 	if (disk_names == NULL)
    550      1.21    martin 		return false;
    551      1.17    martin 
    552      1.17    martin 	if (sysctl(mib, miblen, disk_names, &len, NULL, 0) == -1) {
    553      1.17    martin 		free(disk_names);
    554      1.21    martin 		return false;
    555      1.17    martin 	}
    556       1.1  dholland 
    557      1.17    martin 	for (xd = strtok(disk_names, " "); xd != NULL; xd = strtok(NULL, " ")) {
    558      1.21    martin 		if (!(*func)(state, xd))
    559      1.21    martin 			break;
    560      1.21    martin 	}
    561      1.21    martin 	free(disk_names);
    562      1.21    martin 
    563      1.21    martin 	return true;
    564      1.21    martin }
    565      1.21    martin 
    566      1.21    martin /*
    567      1.21    martin  * Helper state for get_disks
    568      1.21    martin  */
    569      1.21    martin struct get_disks_state {
    570      1.21    martin 	int numdisks;
    571      1.21    martin 	struct disk_desc *dd;
    572      1.21    martin 	bool with_non_partitionable;
    573      1.21    martin };
    574      1.21    martin 
    575      1.21    martin /*
    576      1.21    martin  * Helper function for get_disks enumartion
    577      1.21    martin  */
    578      1.21    martin static bool
    579      1.21    martin get_disks_helper(void *arg, const char *dev)
    580      1.21    martin {
    581      1.21    martin 	struct get_disks_state *state = arg;
    582      1.30    martin 	struct disk_geom geo;
    583      1.18    martin 
    584      1.21    martin 	/* is this a CD device? */
    585      1.25    martin 	if (is_cdrom_device(dev, true))
    586      1.21    martin 		return true;
    587      1.21    martin 
    588      1.27    martin 	memset(state->dd, 0, sizeof(*state->dd));
    589      1.21    martin 	strlcpy(state->dd->dd_name, dev, sizeof state->dd->dd_name - 2);
    590      1.27    martin 	state->dd->dd_no_mbr = !is_bootable_device(dev);
    591      1.27    martin 	state->dd->dd_no_part = !is_partitionable_device(dev);
    592      1.21    martin 
    593      1.21    martin 	if (state->dd->dd_no_part && !state->with_non_partitionable)
    594      1.21    martin 		return true;
    595       1.1  dholland 
    596      1.30    martin 	if (!get_disk_geom(state->dd->dd_name, &geo)) {
    597      1.21    martin 		if (errno == ENOENT)
    598      1.21    martin 			return true;
    599      1.21    martin 		if (errno != ENOTTY || !state->dd->dd_no_part)
    600      1.21    martin 			/*
    601      1.21    martin 			 * Allow plain partitions,
    602      1.21    martin 			 * like already existing wedges
    603      1.21    martin 			 * (like dk0) if marked as
    604      1.21    martin 			 * non-partitioning device.
    605      1.21    martin 			 * For all other cases, continue
    606      1.21    martin 			 * with the next disk.
    607      1.21    martin 			 */
    608      1.21    martin 			return true;
    609      1.21    martin 		if (!is_ffs_wedge(state->dd->dd_name))
    610      1.21    martin 			return true;
    611      1.21    martin 	}
    612       1.1  dholland 
    613      1.21    martin 	/*
    614      1.21    martin 	 * Exclude a disk mounted as root partition,
    615      1.21    martin 	 * in case of install-image on a USB memstick.
    616      1.21    martin 	 */
    617      1.23    martin 	if (is_active_rootpart(state->dd->dd_name,
    618      1.23    martin 	    state->dd->dd_no_part ? -1 : 0))
    619      1.21    martin 		return true;
    620      1.17    martin 
    621      1.30    martin 	state->dd->dd_cyl = geo.dg_ncylinders;
    622      1.30    martin 	state->dd->dd_head = geo.dg_ntracks;
    623      1.30    martin 	state->dd->dd_sec = geo.dg_nsectors;
    624      1.30    martin 	state->dd->dd_secsize = geo.dg_secsize;
    625      1.30    martin 	state->dd->dd_totsec = geo.dg_secperunit;
    626      1.30    martin 
    627      1.30    martin 	if (!state->dd->dd_no_part || !get_wedge_descr(state->dd))
    628      1.21    martin 		get_descr(state->dd);
    629      1.21    martin 	state->dd++;
    630      1.21    martin 	state->numdisks++;
    631      1.21    martin 	if (state->numdisks == MAX_DISKS)
    632      1.21    martin 		return false;
    633      1.21    martin 
    634      1.21    martin 	return true;
    635      1.21    martin }
    636      1.21    martin 
    637      1.21    martin /*
    638      1.21    martin  * Get all disk devices that are not CDs.
    639      1.21    martin  * Optionally leave out those that can not be partitioned further.
    640      1.21    martin  */
    641      1.21    martin static int
    642      1.21    martin get_disks(struct disk_desc *dd, bool with_non_partitionable)
    643      1.21    martin {
    644      1.21    martin 	struct get_disks_state state;
    645      1.21    martin 
    646      1.21    martin 	/* initialize */
    647      1.21    martin 	state.numdisks = 0;
    648      1.21    martin 	state.dd = dd;
    649      1.21    martin 	state.with_non_partitionable = with_non_partitionable;
    650      1.21    martin 
    651      1.21    martin 	if (enumerate_disks(&state, get_disks_helper))
    652      1.21    martin 		return state.numdisks;
    653      1.21    martin 
    654      1.21    martin 	return 0;
    655       1.1  dholland }
    656       1.1  dholland 
    657      1.30    martin #ifdef DEBUG_VERBOSE
    658      1.30    martin static void
    659      1.30    martin dump_parts(const struct disk_partitions *parts)
    660      1.30    martin {
    661      1.30    martin 	fprintf(stderr, "%s partitions on %s:\n",
    662      1.30    martin 	    MSG_XLAT(parts->pscheme->short_name), parts->disk);
    663      1.30    martin 
    664      1.30    martin 	for (size_t p = 0; p < parts->num_part; p++) {
    665      1.30    martin 		struct disk_part_info info;
    666      1.30    martin 
    667      1.30    martin 		if (parts->pscheme->get_part_info(
    668      1.30    martin 		    parts, p, &info)) {
    669      1.30    martin 			fprintf(stderr, " #%zu: start: %" PRIu64 " "
    670      1.30    martin 			    "size: %" PRIu64 ", flags: %x\n",
    671      1.30    martin 			    p, info.start, info.size,
    672      1.30    martin 			    info.flags);
    673      1.30    martin 			if (info.nat_type)
    674      1.30    martin 				fprintf(stderr, "\ttype: %s\n",
    675      1.30    martin 				    info.nat_type->description);
    676      1.30    martin 		} else {
    677      1.30    martin 			fprintf(stderr, "failed to get info "
    678      1.30    martin 			    "for partition #%zu\n", p);
    679      1.30    martin 		}
    680      1.30    martin 	}
    681      1.30    martin 	fprintf(stderr, "%" PRIu64 " sectors free, disk size %" PRIu64
    682      1.30    martin 	    " sectors, %zu partitions used\n", parts->free_space,
    683      1.30    martin 	    parts->disk_size, parts->num_part);
    684      1.30    martin }
    685      1.30    martin #endif
    686      1.30    martin 
    687      1.30    martin static bool
    688      1.30    martin delete_scheme(struct pm_devs *p)
    689      1.30    martin {
    690      1.30    martin 
    691      1.30    martin 	if (!ask_noyes(MSG_removepartswarn))
    692      1.30    martin 		return false;
    693      1.30    martin 
    694      1.30    martin 	p->parts->pscheme->free(p->parts);
    695      1.30    martin 	p->parts = NULL;
    696      1.30    martin 	return true;
    697      1.30    martin }
    698      1.30    martin 
    699      1.30    martin 
    700      1.30    martin static void
    701      1.30    martin convert_copy(struct disk_partitions *old_parts,
    702      1.30    martin     struct disk_partitions *new_parts)
    703      1.30    martin {
    704      1.30    martin 	struct disk_part_info oinfo, ninfo;
    705      1.30    martin 	part_id i;
    706      1.30    martin 
    707      1.30    martin 	for (i = 0; i < old_parts->num_part; i++) {
    708      1.30    martin 		if (!old_parts->pscheme->get_part_info(old_parts, i, &oinfo))
    709      1.30    martin 			continue;
    710      1.30    martin 
    711      1.30    martin 		if (oinfo.flags & PTI_PSCHEME_INTERNAL)
    712      1.30    martin 			continue;
    713      1.30    martin 
    714      1.30    martin 		if (oinfo.flags & PTI_SEC_CONTAINER) {
    715      1.30    martin 		    	if (old_parts->pscheme->secondary_partitions) {
    716      1.30    martin 				struct disk_partitions *sec_part =
    717      1.30    martin 					old_parts->pscheme->
    718      1.30    martin 					    secondary_partitions(
    719      1.32    martin 					    old_parts, oinfo.start, false);
    720      1.30    martin 				if (sec_part)
    721      1.30    martin 					convert_copy(sec_part, new_parts);
    722      1.30    martin 			}
    723      1.30    martin 			continue;
    724      1.30    martin 		}
    725      1.30    martin 
    726      1.30    martin 		if (!new_parts->pscheme->adapt_foreign_part_info(new_parts,
    727      1.30    martin 			    &oinfo, &ninfo))
    728      1.30    martin 			continue;
    729      1.30    martin 		new_parts->pscheme->add_partition(new_parts, &ninfo, NULL);
    730      1.30    martin 	}
    731      1.30    martin }
    732      1.30    martin 
    733      1.30    martin bool
    734      1.30    martin convert_scheme(struct pm_devs *p, bool is_boot_drive, const char **err_msg)
    735      1.30    martin {
    736      1.30    martin 	struct disk_partitions *old_parts, *new_parts;
    737      1.30    martin 	const struct disk_partitioning_scheme *new_scheme;
    738      1.30    martin 
    739      1.30    martin 	*err_msg = NULL;
    740      1.30    martin 
    741      1.30    martin 	old_parts = p->parts;
    742      1.30    martin 	new_scheme = select_part_scheme(p, old_parts->pscheme,
    743      1.30    martin 	    false, MSG_select_other_partscheme);
    744      1.30    martin 
    745      1.30    martin 	if (new_scheme == NULL)
    746      1.30    martin 		return false;
    747      1.30    martin 
    748      1.30    martin 	new_parts = new_scheme->create_new_for_disk(p->diskdev,
    749      1.30    martin 	    0, p->dlsize, p->dlsize, is_boot_drive);
    750      1.30    martin 	if (new_parts == NULL)
    751      1.30    martin 		return false;
    752      1.30    martin 
    753      1.30    martin 	convert_copy(old_parts, new_parts);
    754      1.30    martin 
    755      1.30    martin 	if (new_parts->num_part == 0) {
    756      1.30    martin 		/* need to cleanup */
    757      1.30    martin 		new_parts->pscheme->free(new_parts);
    758      1.30    martin 		return false;
    759      1.30    martin 	}
    760      1.30    martin 
    761      1.30    martin 	old_parts->pscheme->free(old_parts);
    762      1.30    martin 	p->parts = new_parts;
    763      1.30    martin 	return true;
    764      1.30    martin }
    765      1.30    martin 
    766      1.40    martin static struct pm_devs *
    767      1.40    martin dummy_whole_system_pm(void)
    768      1.40    martin {
    769      1.40    martin 	static struct pm_devs whole_system = {
    770      1.40    martin 		.diskdev = "/",
    771      1.40    martin 		.no_mbr = true,
    772      1.40    martin 		.no_part = true,
    773      1.40    martin 		.cur_system = true,
    774      1.40    martin 	};
    775      1.40    martin 	static bool init = false;
    776      1.40    martin 
    777      1.40    martin 	if (!init) {
    778      1.40    martin 		strlcpy(whole_system.diskdev_descr,
    779      1.40    martin 		    msg_string(MSG_running_system),
    780      1.40    martin 		    sizeof whole_system.diskdev_descr);
    781      1.40    martin 	}
    782      1.40    martin 
    783      1.40    martin 	return &whole_system;
    784      1.40    martin }
    785      1.40    martin 
    786       1.1  dholland int
    787      1.40    martin find_disks(const char *doingwhat, bool allow_cur_system)
    788       1.1  dholland {
    789       1.1  dholland 	struct disk_desc disks[MAX_DISKS];
    790      1.40    martin 	/* need two more menu entries: current system + extended partitioning */
    791      1.40    martin 	menu_ent dsk_menu[__arraycount(disks) + 2];
    792       1.1  dholland 	struct disk_desc *disk;
    793      1.15    martin 	int i = 0, skipped = 0;
    794      1.15    martin 	int already_found, numdisks, selected_disk = -1;
    795       1.1  dholland 	int menu_no;
    796      1.30    martin 	struct pm_devs *pm_i, *pm_last = NULL;
    797      1.30    martin 
    798      1.30    martin 	memset(dsk_menu, 0, sizeof(dsk_menu));
    799       1.1  dholland 
    800       1.1  dholland 	/* Find disks. */
    801      1.21    martin 	numdisks = get_disks(disks, partman_go <= 0);
    802       1.1  dholland 
    803       1.1  dholland 	/* need a redraw here, kernel messages hose everything */
    804       1.1  dholland 	touchwin(stdscr);
    805       1.1  dholland 	refresh();
    806       1.1  dholland 	/* Kill typeahead, it won't be what the user had in mind */
    807       1.1  dholland 	fpurge(stdin);
    808       1.1  dholland 
    809      1.10     isaki 	/*
    810      1.10     isaki 	 * partman_go: <0 - we want to see menu with extended partitioning
    811      1.10     isaki 	 *            ==0 - we want to see simple select disk menu
    812      1.10     isaki 	 *             >0 - we do not want to see any menus, just detect
    813      1.10     isaki 	 *                  all disks
    814      1.10     isaki 	 */
    815       1.2    martin 	if (partman_go <= 0) {
    816      1.40    martin 		if (numdisks == 0 && !allow_cur_system) {
    817       1.2    martin 			/* No disks found! */
    818      1.30    martin 			hit_enter_to_continue(MSG_nodisk, NULL);
    819       1.2    martin 			/*endwin();*/
    820       1.2    martin 			return -1;
    821       1.2    martin 		} else {
    822      1.40    martin 			/* One or more disks found or current system allowed */
    823      1.40    martin 			i = 0;
    824      1.40    martin 			if (allow_cur_system) {
    825      1.40    martin 				dsk_menu[i].opt_name = MSG_running_system;
    826      1.40    martin 				dsk_menu[i].opt_flags = OPT_EXIT;
    827      1.40    martin 				dsk_menu[i].opt_action = set_menu_select;
    828      1.40    martin 				i++;
    829      1.40    martin 			}
    830      1.43    martin 			for (; i < numdisks+allow_cur_system; i++) {
    831      1.15    martin 				dsk_menu[i].opt_name =
    832      1.40    martin 				    disks[i-allow_cur_system].dd_descr;
    833       1.2    martin 				dsk_menu[i].opt_flags = OPT_EXIT;
    834       1.2    martin 				dsk_menu[i].opt_action = set_menu_select;
    835       1.2    martin 			}
    836       1.2    martin 			if (partman_go < 0) {
    837       1.2    martin 				dsk_menu[i].opt_name = MSG_partman;
    838       1.2    martin 				dsk_menu[i].opt_flags = OPT_EXIT;
    839       1.2    martin 				dsk_menu[i].opt_action = set_menu_select;
    840      1.40    martin 				i++;
    841       1.2    martin 			}
    842       1.2    martin 			menu_no = new_menu(MSG_Available_disks,
    843      1.40    martin 				dsk_menu, i, -1,
    844      1.15    martin 				 4, 0, 0, MC_SCROLL,
    845       1.2    martin 				NULL, NULL, NULL, NULL, NULL);
    846       1.2    martin 			if (menu_no == -1)
    847       1.2    martin 				return -1;
    848      1.33  christos 			msg_fmt_display(MSG_ask_disk, "%s", doingwhat);
    849       1.2    martin 			process_menu(menu_no, &selected_disk);
    850       1.2    martin 			free_menu(menu_no);
    851      1.40    martin 			if (allow_cur_system) {
    852      1.40    martin 				if (selected_disk == 0) {
    853      1.40    martin 					pm = dummy_whole_system_pm();
    854      1.40    martin 					return 1;
    855      1.40    martin 				} else {
    856      1.40    martin 					selected_disk--;
    857      1.40    martin 				}
    858      1.40    martin 			}
    859       1.2    martin 		}
    860       1.2    martin 		if (partman_go < 0 && selected_disk == numdisks) {
    861       1.2    martin 			partman_go = 1;
    862      1.10     isaki 			return -2;
    863       1.2    martin 		} else
    864       1.2    martin 			partman_go = 0;
    865       1.2    martin 		if (selected_disk < 0 || selected_disk >= numdisks)
    866      1.10     isaki 			return -1;
    867       1.2    martin 	}
    868       1.2    martin 
    869       1.2    martin 	/* Fill pm struct with device(s) info */
    870       1.2    martin 	for (i = 0; i < numdisks; i++) {
    871       1.2    martin 		if (! partman_go)
    872       1.2    martin 			disk = disks + selected_disk;
    873       1.2    martin 		else {
    874       1.2    martin 			disk = disks + i;
    875       1.2    martin 			already_found = 0;
    876       1.2    martin 			SLIST_FOREACH(pm_i, &pm_head, l) {
    877       1.2    martin 				pm_last = pm_i;
    878      1.44    martin 				if (strcmp(pm_i->diskdev, disk->dd_name) == 0) {
    879      1.44    martin 					already_found = 1;
    880       1.2    martin 					break;
    881       1.2    martin 				}
    882       1.2    martin 			}
    883      1.44    martin 			if (pm_i != NULL && already_found) {
    884      1.44    martin 				/*
    885      1.44    martin 				 * We already added this device, but
    886      1.44    martin 				 * partitions might have changed
    887      1.44    martin 				 */
    888      1.44    martin 				if (!pm_i->found) {
    889      1.44    martin 					pm_i->found = true;
    890      1.44    martin 					if (pm_i->parts == NULL) {
    891      1.44    martin 						pm_i->parts =
    892      1.44    martin 						    partitions_read_disk(
    893      1.44    martin 						    pm_i->diskdev,
    894      1.44    martin 						    disk->dd_totsec);
    895      1.44    martin 					}
    896      1.44    martin 				}
    897       1.2    martin 				continue;
    898      1.44    martin 			}
    899       1.1  dholland 		}
    900       1.2    martin 		pm = pm_new;
    901       1.2    martin 		pm->found = 1;
    902      1.30    martin 		pm->ptstart = 0;
    903      1.30    martin 		pm->ptsize = 0;
    904       1.2    martin 		pm->bootable = 0;
    905       1.2    martin 		strlcpy(pm->diskdev, disk->dd_name, sizeof pm->diskdev);
    906       1.2    martin 		strlcpy(pm->diskdev_descr, disk->dd_descr, sizeof pm->diskdev_descr);
    907       1.2    martin 		/* Use as a default disk if the user has the sets on a local disk */
    908       1.2    martin 		strlcpy(localfs_dev, disk->dd_name, sizeof localfs_dev);
    909       1.2    martin 
    910      1.30    martin 		/*
    911      1.30    martin 		 * Init disk size and geometry
    912      1.30    martin 		 */
    913      1.30    martin 		pm->sectorsize = disk->dd_secsize;
    914      1.30    martin 		pm->dlcyl = disk->dd_cyl;
    915      1.30    martin 		pm->dlhead = disk->dd_head;
    916      1.30    martin 		pm->dlsec = disk->dd_sec;
    917      1.30    martin 		pm->dlsize = disk->dd_totsec;
    918      1.30    martin 		if (pm->dlsize == 0)
    919      1.30    martin 			pm->dlsize = disk->dd_cyl * disk->dd_head
    920      1.30    martin 			    * disk->dd_sec;
    921      1.30    martin 
    922      1.30    martin 		pm->parts = partitions_read_disk(pm->diskdev, disk->dd_totsec);
    923      1.30    martin 
    924      1.30    martin again:
    925      1.30    martin 
    926      1.30    martin #ifdef DEBUG_VERBOSE
    927      1.30    martin 		if (pm->parts) {
    928      1.30    martin 			fputs("\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n", stderr);
    929      1.30    martin 			dump_parts(pm->parts);
    930      1.30    martin 
    931      1.30    martin 			if (pm->parts->pscheme->secondary_partitions) {
    932      1.30    martin 				const struct disk_partitions *sparts =
    933      1.30    martin 				    pm->parts->pscheme->secondary_partitions(
    934      1.32    martin 				    pm->parts, pm->ptstart, false);
    935      1.30    martin 				if (sparts != NULL)
    936      1.30    martin 					dump_parts(sparts);
    937      1.30    martin 			}
    938      1.30    martin 		}
    939      1.30    martin #endif
    940      1.30    martin 
    941      1.30    martin 		pm->no_mbr = disk->dd_no_mbr;
    942      1.15    martin 		pm->no_part = disk->dd_no_part;
    943      1.15    martin 		if (!pm->no_part) {
    944      1.15    martin 			pm->sectorsize = disk->dd_secsize;
    945      1.15    martin 			pm->dlcyl = disk->dd_cyl;
    946      1.15    martin 			pm->dlhead = disk->dd_head;
    947      1.15    martin 			pm->dlsec = disk->dd_sec;
    948      1.15    martin 			pm->dlsize = disk->dd_totsec;
    949      1.15    martin 			if (pm->dlsize == 0)
    950      1.30    martin 				pm->dlsize = disk->dd_cyl * disk->dd_head
    951      1.30    martin 				    * disk->dd_sec;
    952      1.30    martin 
    953      1.30    martin 			if (pm->parts && pm->parts->pscheme->size_limit != 0
    954      1.30    martin 			    && pm->dlsize > pm->parts->pscheme->size_limit
    955      1.30    martin 			    && ! partman_go) {
    956      1.30    martin 
    957      1.30    martin 				char size[5], limit[5];
    958      1.30    martin 
    959      1.30    martin 				humanize_number(size, sizeof(size),
    960      1.30    martin 				    (uint64_t)pm->dlsize * 512U,
    961      1.30    martin 				    "", HN_AUTOSCALE, HN_B | HN_NOSPACE
    962      1.30    martin 				    | HN_DECIMAL);
    963      1.30    martin 
    964      1.30    martin 				humanize_number(limit, sizeof(limit),
    965      1.30    martin 				    (uint64_t)pm->parts->pscheme->size_limit
    966      1.30    martin 					* 512U,
    967      1.30    martin 				    "", HN_AUTOSCALE, HN_B | HN_NOSPACE
    968      1.30    martin 				    | HN_DECIMAL);
    969      1.30    martin 
    970      1.15    martin 				if (logfp)
    971      1.30    martin 					fprintf(logfp,
    972      1.30    martin 					    "disk %s: is too big (%" PRIu64
    973      1.30    martin 					    " blocks, %s), will be truncated\n",
    974      1.30    martin 						pm->diskdev, pm->dlsize,
    975      1.30    martin 						size);
    976      1.30    martin 
    977      1.30    martin 				msg_display_subst(MSG_toobigdisklabel, 5,
    978      1.30    martin 				   pm->diskdev,
    979      1.30    martin 				   msg_string(pm->parts->pscheme->name),
    980      1.30    martin 				   msg_string(pm->parts->pscheme->short_name),
    981      1.30    martin 				   size, limit);
    982      1.30    martin 
    983      1.30    martin 				int sel = -1;
    984      1.30    martin 				const char *err = NULL;
    985      1.30    martin 				process_menu(MENU_convertscheme, &sel);
    986      1.30    martin 				if (sel == 1) {
    987      1.30    martin 					if (!delete_scheme(pm)) {
    988      1.30    martin 						return -1;
    989      1.30    martin 					}
    990      1.30    martin 					goto again;
    991      1.30    martin 				} else if (sel == 2) {
    992      1.30    martin 					if (!convert_scheme(pm,
    993      1.30    martin 					     partman_go < 0, &err)) {
    994      1.30    martin 						if (err != NULL)
    995      1.30    martin 							err_msg_win(err);
    996      1.30    martin 						return -1;
    997      1.30    martin 					}
    998      1.30    martin 					goto again;
    999      1.30    martin 				} else if (sel == 3) {
   1000      1.30    martin 					return -1;
   1001      1.30    martin 				}
   1002      1.30    martin 				pm->dlsize = pm->parts->pscheme->size_limit;
   1003      1.15    martin 			}
   1004      1.15    martin 		} else {
   1005      1.15    martin 			pm->sectorsize = 0;
   1006      1.15    martin 			pm->dlcyl = 0;
   1007      1.15    martin 			pm->dlhead = 0;
   1008      1.15    martin 			pm->dlsec = 0;
   1009      1.15    martin 			pm->dlsize = 0;
   1010      1.15    martin 			pm->no_mbr = 1;
   1011       1.2    martin 		}
   1012       1.2    martin 		pm->dlcylsize = pm->dlhead * pm->dlsec;
   1013       1.2    martin 
   1014       1.2    martin 		if (partman_go) {
   1015       1.2    martin 			pm_getrefdev(pm_new);
   1016       1.2    martin 			if (SLIST_EMPTY(&pm_head) || pm_last == NULL)
   1017       1.2    martin 				 SLIST_INSERT_HEAD(&pm_head, pm_new, l);
   1018       1.2    martin 			else
   1019       1.2    martin 				 SLIST_INSERT_AFTER(pm_last, pm_new, l);
   1020      1.30    martin 			pm_new = malloc(sizeof (struct pm_devs));
   1021       1.2    martin 			memset(pm_new, 0, sizeof *pm_new);
   1022       1.2    martin 		} else
   1023      1.30    martin 			/* We are not in partman and do not want to process
   1024      1.30    martin 			 * all devices, exit */
   1025       1.2    martin 			break;
   1026       1.1  dholland 	}
   1027       1.1  dholland 
   1028      1.15    martin 	return numdisks-skipped;
   1029       1.2    martin }
   1030       1.2    martin 
   1031      1.30    martin static int
   1032      1.30    martin sort_part_usage_by_mount(const void *a, const void *b)
   1033       1.2    martin {
   1034      1.30    martin 	const struct part_usage_info *pa = a, *pb = b;
   1035      1.15    martin 
   1036      1.30    martin 	/* sort all real partitions by mount point */
   1037      1.30    martin 	if ((pa->instflags & PUIINST_MOUNT) &&
   1038      1.30    martin 	    (pb->instflags & PUIINST_MOUNT))
   1039      1.30    martin 		return strcmp(pa->mount, pb->mount);
   1040      1.15    martin 
   1041      1.30    martin 	/* real partitions go first */
   1042      1.30    martin 	if (pa->instflags & PUIINST_MOUNT)
   1043      1.30    martin 		return -1;
   1044      1.30    martin 	if (pb->instflags & PUIINST_MOUNT)
   1045      1.30    martin 		return 1;
   1046       1.8    martin 
   1047      1.30    martin 	/* arbitrary order for all other partitions */
   1048      1.30    martin 	if (pa->type == PT_swap)
   1049      1.30    martin 		return -1;
   1050      1.30    martin 	if (pb->type == PT_swap)
   1051      1.30    martin 		return 1;
   1052      1.30    martin 	if (pa->type < pb->type)
   1053      1.30    martin 		return -1;
   1054      1.30    martin 	if (pa->type > pb->type)
   1055      1.30    martin 		return 1;
   1056      1.30    martin 	if (pa->cur_part_id < pb->cur_part_id)
   1057      1.30    martin 		return -1;
   1058      1.30    martin 	if (pa->cur_part_id > pb->cur_part_id)
   1059      1.30    martin 		return 1;
   1060      1.30    martin 	return (uintptr_t)a < (uintptr_t)b ? -1 : 1;
   1061       1.1  dholland }
   1062       1.1  dholland 
   1063       1.1  dholland int
   1064      1.30    martin make_filesystems(struct install_partition_desc *install)
   1065       1.1  dholland {
   1066      1.30    martin 	int error = 0, partno = -1;
   1067      1.30    martin 	char *newfs = NULL, devdev[PATH_MAX], rdev[PATH_MAX];
   1068      1.30    martin 	size_t i;
   1069      1.30    martin 	struct part_usage_info *ptn;
   1070      1.30    martin 	struct disk_partitions *parts;
   1071      1.30    martin 	const char *mnt_opts = NULL, *fsname = NULL;
   1072       1.1  dholland 
   1073      1.40    martin 	if (pm->cur_system)
   1074      1.40    martin 		return 1;
   1075      1.40    martin 
   1076      1.15    martin 	if (pm->no_part) {
   1077      1.15    martin 		/* check if this target device already has a ffs */
   1078      1.30    martin 		snprintf(rdev, sizeof rdev, _PATH_DEV "/r%s", pm->diskdev);
   1079      1.30    martin 		error = fsck_preen(rdev, "ffs", true);
   1080      1.15    martin 		if (error) {
   1081      1.15    martin 			if (!ask_noyes(MSG_No_filesystem_newfs))
   1082      1.15    martin 				return EINVAL;
   1083      1.15    martin 			error = run_program(RUN_DISPLAY | RUN_PROGRESS,
   1084      1.30    martin 			    "/sbin/newfs -V2 -O2 %s", rdev);
   1085      1.15    martin 		}
   1086      1.15    martin 
   1087      1.37    martin 		md_pre_mount(install, 0);
   1088      1.15    martin 
   1089      1.15    martin 		make_target_dir("/");
   1090      1.30    martin 
   1091      1.30    martin 		snprintf(devdev, sizeof devdev, _PATH_DEV "%s", pm->diskdev);
   1092      1.15    martin 		error = target_mount_do("-o async", devdev, "/");
   1093      1.15    martin 		if (error) {
   1094      1.30    martin 			msg_display_subst(MSG_mountfail, 2, devdev, "/");
   1095      1.30    martin 			hit_enter_to_continue(NULL, NULL);
   1096      1.15    martin 		}
   1097      1.30    martin 
   1098      1.15    martin 		return error;
   1099      1.15    martin 	}
   1100      1.15    martin 
   1101       1.1  dholland 	/* Making new file systems and mounting them */
   1102       1.1  dholland 
   1103       1.1  dholland 	/* sort to ensure /usr/local is mounted after /usr (etc) */
   1104      1.30    martin 	qsort(install->infos, install->num, sizeof(*install->infos),
   1105      1.30    martin 	    sort_part_usage_by_mount);
   1106       1.1  dholland 
   1107      1.30    martin 	for (i = 0; i < install->num; i++) {
   1108       1.1  dholland 		/*
   1109      1.38    martin 		 * Newfs all file systems mareked as needing this.
   1110      1.38    martin 		 * Mount the ones that have a mountpoint in the target.
   1111       1.1  dholland 		 */
   1112      1.30    martin 		ptn = &install->infos[i];
   1113      1.30    martin 		parts = ptn->parts;
   1114       1.1  dholland 
   1115      1.30    martin 		if (ptn->size == 0 || parts == NULL)
   1116       1.1  dholland 			continue;
   1117       1.1  dholland 
   1118      1.30    martin 		if (parts->pscheme->get_part_device(parts, ptn->cur_part_id,
   1119      1.30    martin 		    devdev, sizeof devdev, &partno, parent_device_only, false)
   1120      1.30    martin 		    && is_active_rootpart(devdev, partno))
   1121      1.30    martin 			continue;
   1122      1.30    martin 
   1123      1.38    martin 		if (!(ptn->instflags & PUIINST_NEWFS))
   1124       1.1  dholland 			continue;
   1125       1.1  dholland 
   1126      1.30    martin 		parts->pscheme->get_part_device(parts, ptn->cur_part_id,
   1127      1.30    martin 		    devdev, sizeof devdev, &partno, plain_name, true);
   1128      1.30    martin 
   1129      1.30    martin 		parts->pscheme->get_part_device(parts, ptn->cur_part_id,
   1130      1.30    martin 		    rdev, sizeof rdev, &partno, raw_dev_name, true);
   1131       1.2    martin 
   1132       1.1  dholland 		newfs = NULL;
   1133      1.30    martin 		switch (ptn->fs_type) {
   1134       1.1  dholland 		case FS_APPLEUFS:
   1135      1.30    martin 			asprintf(&newfs, "/sbin/newfs");
   1136      1.30    martin 			mnt_opts = "-tffs -o async";
   1137      1.30    martin 			fsname = "ffs";
   1138       1.1  dholland 			break;
   1139       1.1  dholland 		case FS_BSDFFS:
   1140       1.1  dholland 			asprintf(&newfs,
   1141      1.30    martin 			    "/sbin/newfs -V2 -O %d",
   1142      1.30    martin 			    ptn->fs_version == 2 ? 2 : 1);
   1143      1.30    martin 			if (ptn->mountflags & PUIMNT_LOG)
   1144      1.30    martin 				mnt_opts = "-tffs -o log";
   1145       1.1  dholland 			else
   1146      1.30    martin 				mnt_opts = "-tffs -o async";
   1147      1.30    martin 			fsname = "ffs";
   1148       1.1  dholland 			break;
   1149       1.1  dholland 		case FS_BSDLFS:
   1150      1.30    martin 			asprintf(&newfs, "/sbin/newfs_lfs");
   1151      1.30    martin 			mnt_opts = "-tlfs";
   1152      1.30    martin 			fsname = "lfs";
   1153       1.1  dholland 			break;
   1154       1.1  dholland 		case FS_MSDOS:
   1155       1.1  dholland 			asprintf(&newfs, "/sbin/newfs_msdos");
   1156      1.30    martin 			mnt_opts = "-tmsdos";
   1157      1.30    martin 			fsname = "msdos";
   1158       1.1  dholland 			break;
   1159       1.1  dholland #ifdef USE_SYSVBFS
   1160       1.1  dholland 		case FS_SYSVBFS:
   1161       1.1  dholland 			asprintf(&newfs, "/sbin/newfs_sysvbfs");
   1162      1.30    martin 			mnt_opts = "-tsysvbfs";
   1163      1.30    martin 			fsname = "sysvbfs";
   1164       1.1  dholland 			break;
   1165       1.1  dholland #endif
   1166       1.1  dholland #ifdef USE_EXT2FS
   1167       1.1  dholland 		case FS_EX2FS:
   1168       1.1  dholland 			asprintf(&newfs, "/sbin/newfs_ext2fs");
   1169      1.30    martin 			mnt_opts = "-text2fs";
   1170      1.30    martin 			fsname = "ext2fs";
   1171       1.1  dholland 			break;
   1172       1.1  dholland #endif
   1173       1.1  dholland 		}
   1174      1.30    martin 		if ((ptn->instflags & PUIINST_NEWFS) && newfs != NULL) {
   1175      1.30    martin 			if (ptn->fs_type == FS_MSDOS) {
   1176       1.1  dholland 			        /* newfs only if mount fails */
   1177       1.1  dholland 			        if (run_program(RUN_SILENT | RUN_ERROR_OK,
   1178      1.30    martin 				    "mount -rt msdos %s /mnt2", devdev) != 0)
   1179       1.1  dholland 					error = run_program(
   1180       1.1  dholland 					    RUN_DISPLAY | RUN_PROGRESS,
   1181      1.30    martin 					    "%s %s",
   1182      1.30    martin 					    newfs, rdev);
   1183       1.1  dholland 				else {
   1184      1.10     isaki 					run_program(RUN_SILENT | RUN_ERROR_OK,
   1185       1.1  dholland 					    "umount /mnt2");
   1186       1.1  dholland 					error = 0;
   1187       1.1  dholland 				}
   1188      1.30    martin 			} else {
   1189      1.30    martin 				error = run_program(RUN_DISPLAY | RUN_PROGRESS,
   1190      1.30    martin 			    "%s %s", newfs, rdev);
   1191      1.30    martin 			}
   1192       1.1  dholland 		} else {
   1193       1.1  dholland 			/* We'd better check it isn't dirty */
   1194      1.30    martin 			error = fsck_preen(devdev, fsname, false);
   1195       1.1  dholland 		}
   1196       1.1  dholland 		free(newfs);
   1197      1.30    martin 		if (error != 0)
   1198       1.1  dholland 			return error;
   1199       1.1  dholland 
   1200      1.30    martin 		ptn->instflags &= ~PUIINST_NEWFS;
   1201      1.37    martin 		md_pre_mount(install, i);
   1202       1.1  dholland 
   1203      1.30    martin 		if (partman_go == 0 && (ptn->instflags & PUIINST_MOUNT) &&
   1204      1.30    martin 				mnt_opts != NULL) {
   1205      1.30    martin 			make_target_dir(ptn->mount);
   1206      1.30    martin 			error = target_mount_do(mnt_opts, devdev,
   1207      1.30    martin 			    ptn->mount);
   1208       1.1  dholland 			if (error) {
   1209      1.30    martin 				msg_display_subst(MSG_mountfail, 2, devdev,
   1210      1.30    martin 				    ptn->mount);
   1211      1.30    martin 				hit_enter_to_continue(NULL, NULL);
   1212       1.1  dholland 				return error;
   1213       1.1  dholland 			}
   1214       1.1  dholland 		}
   1215       1.1  dholland 	}
   1216       1.1  dholland 	return 0;
   1217       1.1  dholland }
   1218       1.1  dholland 
   1219       1.1  dholland int
   1220      1.30    martin make_fstab(struct install_partition_desc *install)
   1221       1.1  dholland {
   1222       1.1  dholland 	FILE *f;
   1223      1.30    martin 	const char *dump_dev = NULL;
   1224      1.30    martin 	const char *dev;
   1225      1.30    martin 	char dev_buf[PATH_MAX], swap_dev[PATH_MAX];
   1226      1.30    martin 
   1227      1.40    martin 	if (pm->cur_system)
   1228      1.40    martin 		return 1;
   1229      1.40    martin 
   1230      1.30    martin 	swap_dev[0] = 0;
   1231       1.1  dholland 
   1232       1.1  dholland 	/* Create the fstab. */
   1233       1.1  dholland 	make_target_dir("/etc");
   1234       1.1  dholland 	f = target_fopen("/etc/fstab", "w");
   1235       1.2    martin 	scripting_fprintf(NULL, "cat <<EOF >%s/etc/fstab\n", target_prefix());
   1236       1.2    martin 
   1237       1.1  dholland 	if (logfp)
   1238       1.1  dholland 		(void)fprintf(logfp,
   1239      1.30    martin 		    "Making %s/etc/fstab (%s).\n", target_prefix(),
   1240      1.30    martin 		    pm->diskdev);
   1241      1.10     isaki 
   1242       1.1  dholland 	if (f == NULL) {
   1243       1.1  dholland 		msg_display(MSG_createfstab);
   1244       1.1  dholland 		if (logfp)
   1245       1.1  dholland 			(void)fprintf(logfp, "Failed to make /etc/fstab!\n");
   1246      1.30    martin 		hit_enter_to_continue(NULL, NULL);
   1247       1.2    martin #ifndef DEBUG
   1248       1.1  dholland 		return 1;
   1249       1.1  dholland #else
   1250       1.1  dholland 		f = stdout;
   1251       1.1  dholland #endif
   1252       1.1  dholland 	}
   1253       1.1  dholland 
   1254      1.16    martin 	scripting_fprintf(f, "# NetBSD /etc/fstab\n# See /usr/share/examples/"
   1255      1.16    martin 			"fstab/ for more examples.\n");
   1256      1.15    martin 
   1257      1.15    martin 	if (pm->no_part) {
   1258      1.15    martin 		/* single dk? target */
   1259      1.15    martin 		char buf[200], parent[200], swap[200], *prompt;
   1260      1.15    martin 		int res;
   1261      1.15    martin 
   1262      1.15    martin 		if (!get_name_and_parent(pm->diskdev, buf, parent))
   1263      1.15    martin 			goto done_with_disks;
   1264      1.15    martin 		scripting_fprintf(f, "NAME=%s\t/\tffs\trw\t\t1 1\n",
   1265      1.15    martin 		    buf);
   1266      1.15    martin 		if (!find_swap_part_on(parent, swap))
   1267      1.15    martin 			goto done_with_disks;
   1268      1.30    martin 		const char *args[] = { parent, swap };
   1269      1.30    martin 		prompt = str_arg_subst(msg_string(MSG_Auto_add_swap_part),
   1270      1.30    martin 		    __arraycount(args), args);
   1271      1.15    martin 		res = ask_yesno(prompt);
   1272      1.15    martin 		free(prompt);
   1273      1.15    martin 		if (res)
   1274      1.15    martin 			scripting_fprintf(f, "NAME=%s\tnone"
   1275      1.15    martin 			    "\tswap\tsw,dp\t\t0 0\n", swap);
   1276      1.15    martin 		goto done_with_disks;
   1277      1.15    martin 	}
   1278      1.15    martin 
   1279      1.30    martin 	for (size_t i = 0; i < install->num; i++) {
   1280      1.30    martin 
   1281      1.30    martin 		const struct part_usage_info *ptn = &install->infos[i];
   1282      1.30    martin 
   1283      1.30    martin 		if (ptn->type != PT_swap &&
   1284      1.30    martin 		    (ptn->instflags & PUIINST_MOUNT) == 0)
   1285      1.30    martin 			continue;
   1286      1.30    martin 
   1287      1.30    martin 		const char *s = "";
   1288      1.30    martin 		const char *mp = ptn->mount;
   1289      1.30    martin 		const char *fstype = "ffs";
   1290      1.30    martin 		int fsck_pass = 0, dump_freq = 0;
   1291      1.30    martin 
   1292      1.30    martin 		if (ptn->parts->pscheme->get_part_device(ptn->parts,
   1293      1.30    martin 			    ptn->cur_part_id, dev_buf, sizeof dev_buf, NULL,
   1294      1.30    martin 			    logical_name, true))
   1295      1.30    martin 			dev = dev_buf;
   1296      1.30    martin 		else
   1297      1.30    martin 			dev = NULL;
   1298      1.30    martin 
   1299      1.30    martin 		if (!*mp) {
   1300      1.30    martin 			/*
   1301      1.30    martin 			 * No mount point specified, comment out line and
   1302      1.30    martin 			 * use /mnt as a placeholder for the mount point.
   1303      1.30    martin 			 */
   1304      1.30    martin 			s = "# ";
   1305      1.30    martin 			mp = "/mnt";
   1306      1.30    martin 		}
   1307      1.30    martin 
   1308      1.30    martin 		switch (ptn->fs_type) {
   1309      1.30    martin 		case FS_UNUSED:
   1310      1.30    martin 			continue;
   1311      1.30    martin 		case FS_BSDLFS:
   1312      1.30    martin 			/* If there is no LFS, just comment it out. */
   1313      1.30    martin 			if (!check_lfs_progs())
   1314       1.1  dholland 				s = "# ";
   1315      1.30    martin 			fstype = "lfs";
   1316      1.30    martin 			/* FALLTHROUGH */
   1317      1.30    martin 		case FS_BSDFFS:
   1318      1.30    martin 			fsck_pass = (strcmp(mp, "/") == 0) ? 1 : 2;
   1319      1.30    martin 			dump_freq = 1;
   1320      1.30    martin 			break;
   1321      1.30    martin 		case FS_MSDOS:
   1322      1.30    martin 			fstype = "msdos";
   1323      1.30    martin 			break;
   1324      1.30    martin 		case FS_SWAP:
   1325      1.30    martin 			if (swap_dev[0] == 0) {
   1326      1.30    martin 				strncpy(swap_dev, dev, sizeof swap_dev);
   1327      1.30    martin 				dump_dev = ",dp";
   1328      1.30    martin 			} else {
   1329      1.30    martin 				dump_dev = "";
   1330       1.1  dholland 			}
   1331      1.30    martin 			scripting_fprintf(f, "%s\t\tnone\tswap\tsw%s\t\t 0 0\n",
   1332      1.30    martin 				dev, dump_dev);
   1333      1.30    martin 			continue;
   1334       1.1  dholland #ifdef USE_SYSVBFS
   1335      1.30    martin 		case FS_SYSVBFS:
   1336      1.30    martin 			fstype = "sysvbfs";
   1337      1.30    martin 			make_target_dir("/stand");
   1338      1.30    martin 			break;
   1339       1.1  dholland #endif
   1340      1.30    martin 		default:
   1341      1.30    martin 			fstype = "???";
   1342      1.30    martin 			s = "# ";
   1343      1.30    martin 			break;
   1344       1.2    martin 		}
   1345      1.30    martin 		/* The code that remounts root rw doesn't check the partition */
   1346      1.30    martin 		if (strcmp(mp, "/") == 0 &&
   1347      1.30    martin 		    (ptn->instflags & PUIINST_MOUNT) == 0)
   1348      1.30    martin 			s = "# ";
   1349      1.30    martin 
   1350      1.30    martin  		scripting_fprintf(f,
   1351      1.30    martin 		  "%s%s\t\t%s\t%s\trw%s%s%s%s%s%s%s%s\t\t %d %d\n",
   1352      1.30    martin 		   s, dev, mp, fstype,
   1353      1.30    martin 		   ptn->mountflags & PUIMNT_LOG ? ",log" : "",
   1354      1.30    martin 		   ptn->mountflags & PUIMNT_NOAUTO ? "" : ",noauto",
   1355      1.30    martin 		   ptn->mountflags & PUIMNT_ASYNC ? ",async" : "",
   1356      1.30    martin 		   ptn->mountflags & PUIMNT_NOATIME ? ",noatime" : "",
   1357      1.30    martin 		   ptn->mountflags & PUIMNT_NODEV ? ",nodev" : "",
   1358      1.30    martin 		   ptn->mountflags & PUIMNT_NODEVMTIME ? ",nodevmtime" : "",
   1359      1.30    martin 		   ptn->mountflags & PUIMNT_NOEXEC ? ",noexec" : "",
   1360      1.30    martin 		   ptn->mountflags & PUIMNT_NOSUID ? ",nosuid" : "",
   1361      1.30    martin 		   dump_freq, fsck_pass);
   1362       1.1  dholland 	}
   1363      1.30    martin 
   1364      1.15    martin done_with_disks:
   1365      1.30    martin 	if (tmp_ramdisk_size > 0) {
   1366       1.1  dholland #ifdef HAVE_TMPFS
   1367       1.1  dholland 		scripting_fprintf(f, "tmpfs\t\t/tmp\ttmpfs\trw,-m=1777,-s=%"
   1368      1.30    martin 		    PRIu64 "\n",
   1369       1.1  dholland 		    tmp_ramdisk_size * 512);
   1370       1.1  dholland #else
   1371      1.30    martin 		if (swap_dev[0] != 0)
   1372      1.30    martin 			scripting_fprintf(f, "%s\t\t/tmp\tmfs\trw,-s=%"
   1373      1.30    martin 			    PRIu64 "\n", swap_dev, tmp_ramdisk_size);
   1374       1.1  dholland 		else
   1375       1.1  dholland 			scripting_fprintf(f, "swap\t\t/tmp\tmfs\trw,-s=%"
   1376      1.30    martin 			    PRIu64 "\n", tmp_ramdisk_size);
   1377       1.1  dholland #endif
   1378       1.1  dholland 	}
   1379       1.1  dholland 
   1380      1.18    martin 	if (cdrom_dev[0] == 0)
   1381      1.18    martin 		get_default_cdrom(cdrom_dev, sizeof(cdrom_dev));
   1382      1.18    martin 
   1383       1.1  dholland 	/* Add /kern, /proc and /dev/pts to fstab and make mountpoint. */
   1384       1.1  dholland 	scripting_fprintf(f, "kernfs\t\t/kern\tkernfs\trw\n");
   1385       1.1  dholland 	scripting_fprintf(f, "ptyfs\t\t/dev/pts\tptyfs\trw\n");
   1386       1.1  dholland 	scripting_fprintf(f, "procfs\t\t/proc\tprocfs\trw\n");
   1387       1.1  dholland 	scripting_fprintf(f, "/dev/%s\t\t/cdrom\tcd9660\tro,noauto\n",
   1388      1.18    martin 	    cdrom_dev);
   1389       1.1  dholland 	scripting_fprintf(f, "%stmpfs\t\t/var/shm\ttmpfs\trw,-m1777,-sram%%25\n",
   1390       1.1  dholland 	    tmpfs_on_var_shm() ? "" : "#");
   1391       1.1  dholland 	make_target_dir("/kern");
   1392       1.1  dholland 	make_target_dir("/proc");
   1393       1.1  dholland 	make_target_dir("/dev/pts");
   1394       1.1  dholland 	make_target_dir("/cdrom");
   1395       1.1  dholland 	make_target_dir("/var/shm");
   1396       1.1  dholland 
   1397       1.1  dholland 	scripting_fprintf(NULL, "EOF\n");
   1398       1.1  dholland 
   1399       1.1  dholland 	fclose(f);
   1400       1.1  dholland 	fflush(NULL);
   1401       1.1  dholland 	return 0;
   1402       1.1  dholland }
   1403       1.1  dholland 
   1404       1.1  dholland static int
   1405       1.1  dholland /*ARGSUSED*/
   1406       1.1  dholland foundffs(struct data *list, size_t num)
   1407       1.1  dholland {
   1408       1.1  dholland 	int error;
   1409  1.44.2.1   msaitoh 	char rbuf[PATH_MAX], buf[PATH_MAX];
   1410  1.44.2.1   msaitoh 	const char *rdev, *dev;
   1411       1.1  dholland 
   1412       1.1  dholland 	if (num < 2 || strcmp(list[1].u.s_val, "/") == 0 ||
   1413       1.1  dholland 	    strstr(list[2].u.s_val, "noauto") != NULL)
   1414       1.1  dholland 		return 0;
   1415       1.1  dholland 
   1416  1.44.2.1   msaitoh 	/* need the raw device for fsck_preen */
   1417  1.44.2.1   msaitoh 	if (strncmp(list[0].u.s_val, name_prefix, sizeof(name_prefix)-1)
   1418  1.44.2.1   msaitoh 	     != 0) {
   1419  1.44.2.1   msaitoh 		strcpy(rbuf, "/dev/r");
   1420  1.44.2.1   msaitoh 		strlcat(rbuf, list[0].u.s_val, sizeof(rbuf));
   1421  1.44.2.1   msaitoh 		rdev = rbuf;
   1422  1.44.2.1   msaitoh 		strcpy(buf, "/dev/");
   1423  1.44.2.1   msaitoh 		strlcat(buf, list[0].u.s_val, sizeof(buf));
   1424  1.44.2.1   msaitoh 		dev = buf;
   1425  1.44.2.1   msaitoh 	} else {
   1426  1.44.2.1   msaitoh 		rdev = list[0].u.s_val;
   1427  1.44.2.1   msaitoh 		dev = list[0].u.s_val;
   1428  1.44.2.1   msaitoh 	}
   1429  1.44.2.1   msaitoh 
   1430  1.44.2.1   msaitoh 	error = fsck_preen(rdev, "ffs", false);
   1431       1.1  dholland 	if (error != 0)
   1432       1.1  dholland 		return error;
   1433       1.1  dholland 
   1434  1.44.2.1   msaitoh 	error = target_mount("", dev, list[1].u.s_val);
   1435       1.1  dholland 	if (error != 0) {
   1436      1.33  christos 		msg_fmt_display(MSG_mount_failed, "%s", list[0].u.s_val);
   1437       1.9    martin 		if (!ask_noyes(NULL))
   1438       1.1  dholland 			return error;
   1439       1.1  dholland 	}
   1440       1.1  dholland 	return 0;
   1441       1.1  dholland }
   1442       1.1  dholland 
   1443       1.1  dholland #ifdef USE_SYSVBFS
   1444       1.1  dholland static int
   1445       1.1  dholland /*ARGSUSED*/
   1446       1.1  dholland foundsysvbfs(struct data *list, size_t num)
   1447       1.1  dholland {
   1448       1.1  dholland 	int error;
   1449       1.1  dholland 
   1450       1.1  dholland 	if (num < 2 || strcmp(list[1].u.s_val, "/") == 0 ||
   1451       1.1  dholland 	    strstr(list[2].u.s_val, "noauto") != NULL)
   1452       1.1  dholland 		return 0;
   1453       1.1  dholland 
   1454      1.30    martin 	error = target_mount("", list[0].u.s_val, list[1].u.s_val);
   1455       1.1  dholland 	if (error != 0)
   1456       1.1  dholland 		return error;
   1457       1.1  dholland 	return 0;
   1458       1.1  dholland }
   1459       1.1  dholland #endif
   1460       1.1  dholland 
   1461       1.1  dholland /*
   1462       1.1  dholland  * Do an fsck. On failure, inform the user by showing a warning
   1463       1.1  dholland  * message and doing menu_ok() before proceeding.
   1464      1.30    martin  * The device passed should be the full qualified path to raw disk
   1465      1.30    martin  * (e.g. /dev/rwd0a).
   1466       1.1  dholland  * Returns 0 on success, or nonzero return code from fsck() on failure.
   1467       1.1  dholland  */
   1468       1.1  dholland static int
   1469      1.30    martin fsck_preen(const char *disk, const char *fsname, bool silent)
   1470       1.1  dholland {
   1471      1.30    martin 	char *prog, err[12];
   1472       1.1  dholland 	int error;
   1473       1.1  dholland 
   1474       1.1  dholland 	if (fsname == NULL)
   1475       1.1  dholland 		return 0;
   1476       1.1  dholland 	/* first, check if fsck program exists, if not, assume ok */
   1477       1.1  dholland 	asprintf(&prog, "/sbin/fsck_%s", fsname);
   1478       1.1  dholland 	if (prog == NULL)
   1479       1.1  dholland 		return 0;
   1480      1.12    martin 	if (access(prog, X_OK) != 0) {
   1481      1.12    martin 		free(prog);
   1482       1.1  dholland 		return 0;
   1483      1.12    martin 	}
   1484       1.1  dholland 	if (!strcmp(fsname,"ffs"))
   1485      1.30    martin 		fixsb(prog, disk);
   1486      1.30    martin 	error = run_program(silent? RUN_SILENT|RUN_ERROR_OK : 0, "%s -p -q %s", prog, disk);
   1487       1.1  dholland 	free(prog);
   1488      1.15    martin 	if (error != 0 && !silent) {
   1489      1.30    martin 		sprintf(err, "%d", error);
   1490      1.30    martin 		msg_display_subst(msg_string(MSG_badfs), 3,
   1491      1.30    martin 		    disk, fsname, err);
   1492       1.9    martin 		if (ask_noyes(NULL))
   1493       1.1  dholland 			error = 0;
   1494       1.1  dholland 		/* XXX at this point maybe we should run a full fsck? */
   1495       1.1  dholland 	}
   1496       1.1  dholland 	return error;
   1497       1.1  dholland }
   1498       1.1  dholland 
   1499       1.1  dholland /* This performs the same function as the etc/rc.d/fixsb script
   1500       1.1  dholland  * which attempts to correct problems with ffs1 filesystems
   1501       1.1  dholland  * which may have been introduced by booting a netbsd-current kernel
   1502       1.1  dholland  * from between April of 2003 and January 2004. For more information
   1503       1.1  dholland  * This script was developed as a response to NetBSD pr install/25138
   1504       1.1  dholland  * Additional prs regarding the original issue include:
   1505       1.1  dholland  *  bin/17910 kern/21283 kern/21404 port-macppc/23925 port-macppc/23926
   1506       1.1  dholland  */
   1507       1.1  dholland static void
   1508      1.30    martin fixsb(const char *prog, const char *disk)
   1509       1.1  dholland {
   1510       1.1  dholland 	int fd;
   1511       1.1  dholland 	int rval;
   1512       1.1  dholland 	union {
   1513       1.1  dholland 		struct fs fs;
   1514       1.1  dholland 		char buf[SBLOCKSIZE];
   1515       1.1  dholland 	} sblk;
   1516       1.1  dholland 	struct fs *fs = &sblk.fs;
   1517       1.1  dholland 
   1518      1.30    martin 	fd = open(disk, O_RDONLY);
   1519       1.1  dholland 	if (fd == -1)
   1520       1.1  dholland 		return;
   1521       1.1  dholland 
   1522       1.1  dholland 	/* Read ffsv1 main superblock */
   1523       1.1  dholland 	rval = pread(fd, sblk.buf, sizeof sblk.buf, SBLOCK_UFS1);
   1524       1.1  dholland 	close(fd);
   1525       1.1  dholland 	if (rval != sizeof sblk.buf)
   1526       1.1  dholland 		return;
   1527       1.1  dholland 
   1528       1.1  dholland 	if (fs->fs_magic != FS_UFS1_MAGIC &&
   1529       1.1  dholland 	    fs->fs_magic != FS_UFS1_MAGIC_SWAPPED)
   1530       1.1  dholland 		/* Not FFSv1 */
   1531       1.1  dholland 		return;
   1532       1.1  dholland 	if (fs->fs_old_flags & FS_FLAGS_UPDATED)
   1533       1.1  dholland 		/* properly updated fslevel 4 */
   1534       1.1  dholland 		return;
   1535       1.1  dholland 	if (fs->fs_bsize != fs->fs_maxbsize)
   1536       1.1  dholland 		/* not messed up */
   1537       1.1  dholland 		return;
   1538       1.1  dholland 
   1539       1.1  dholland 	/*
   1540       1.1  dholland 	 * OK we have a munged fs, first 'upgrade' to fslevel 4,
   1541       1.1  dholland 	 * We specify -b16 in order to stop fsck bleating that the
   1542       1.1  dholland 	 * sb doesn't match the first alternate.
   1543       1.1  dholland 	 */
   1544       1.1  dholland 	run_program(RUN_DISPLAY | RUN_PROGRESS,
   1545      1.30    martin 	    "%s -p -b 16 -c 4 %s", prog, disk);
   1546       1.1  dholland 	/* Then downgrade to fslevel 3 */
   1547       1.1  dholland 	run_program(RUN_DISPLAY | RUN_PROGRESS,
   1548      1.30    martin 	    "%s -p -c 3 %s", prog, disk);
   1549       1.1  dholland }
   1550       1.1  dholland 
   1551       1.1  dholland /*
   1552       1.1  dholland  * fsck and mount the root partition.
   1553      1.30    martin  * devdev is the fully qualified block device name.
   1554       1.1  dholland  */
   1555       1.1  dholland static int
   1556      1.30    martin mount_root(const char *devdev, struct install_partition_desc *install)
   1557       1.1  dholland {
   1558       1.1  dholland 	int	error;
   1559       1.1  dholland 
   1560      1.30    martin 	error = fsck_preen(devdev, "ffs", false);
   1561       1.1  dholland 	if (error != 0)
   1562       1.1  dholland 		return error;
   1563       1.1  dholland 
   1564      1.37    martin 	md_pre_mount(install, 0);
   1565       1.1  dholland 
   1566      1.30    martin 	/* Mount devdev on target's "".
   1567       1.1  dholland 	 * If we pass "" as mount-on, Prefixing will DTRT.
   1568       1.1  dholland 	 * for now, use no options.
   1569       1.1  dholland 	 * XXX consider -o remount in case target root is
   1570       1.1  dholland 	 * current root, still readonly from single-user?
   1571       1.1  dholland 	 */
   1572      1.30    martin 	return target_mount("", devdev, "");
   1573       1.1  dholland }
   1574       1.1  dholland 
   1575       1.1  dholland /* Get information on the file systems mounted from the root filesystem.
   1576       1.1  dholland  * Offer to convert them into 4.4BSD inodes if they are not 4.4BSD
   1577       1.1  dholland  * inodes.  Fsck them.  Mount them.
   1578       1.1  dholland  */
   1579       1.1  dholland 
   1580       1.1  dholland int
   1581      1.30    martin mount_disks(struct install_partition_desc *install)
   1582       1.1  dholland {
   1583       1.1  dholland 	char *fstab;
   1584       1.1  dholland 	int   fstabsize;
   1585       1.1  dholland 	int   error;
   1586      1.30    martin 	char devdev[PATH_MAX];
   1587      1.39    martin 	size_t i;
   1588       1.1  dholland 
   1589      1.40    martin 	if (install->cur_system)
   1590      1.40    martin 		return 0;
   1591      1.40    martin 
   1592       1.1  dholland 	static struct lookfor fstabbuf[] = {
   1593       1.1  dholland 		{"/dev/", "/dev/%s %s ffs %s", "c", NULL, 0, 0, foundffs},
   1594       1.1  dholland 		{"/dev/", "/dev/%s %s ufs %s", "c", NULL, 0, 0, foundffs},
   1595       1.1  dholland #ifdef USE_SYSVBFS
   1596       1.1  dholland 		{"/dev/", "/dev/%s %s sysvbfs %s", "c", NULL, 0, 0,
   1597       1.1  dholland 		    foundsysvbfs},
   1598       1.1  dholland #endif
   1599       1.1  dholland 	};
   1600       1.1  dholland 	static size_t numfstabbuf = sizeof(fstabbuf) / sizeof(struct lookfor);
   1601       1.1  dholland 
   1602       1.1  dholland 	/* First the root device. */
   1603       1.1  dholland 	if (target_already_root())
   1604       1.1  dholland 		/* avoid needing to call target_already_root() again */
   1605       1.1  dholland 		targetroot_mnt[0] = 0;
   1606       1.1  dholland 	else {
   1607      1.39    martin 		for (i = 0; i < install->num; i++) {
   1608      1.39    martin 			if (is_root_part_mount(install->infos[i].mount))
   1609      1.39    martin 				break;
   1610      1.39    martin 		}
   1611      1.39    martin 
   1612      1.39    martin 		if (i >= install->num) {
   1613      1.39    martin 			hit_enter_to_continue(MSG_noroot, NULL);
   1614      1.39    martin 			return -1;
   1615      1.39    martin 		}
   1616      1.39    martin 
   1617      1.39    martin 		if (!install->infos[i].parts->pscheme->get_part_device(
   1618      1.39    martin 		    install->infos[i].parts, install->infos[i].cur_part_id,
   1619      1.30    martin 		    devdev, sizeof devdev, NULL, plain_name, true))
   1620      1.30    martin 			return -1;
   1621      1.30    martin 		error = mount_root(devdev, install);
   1622       1.1  dholland 		if (error != 0 && error != EBUSY)
   1623       1.1  dholland 			return -1;
   1624       1.1  dholland 	}
   1625       1.1  dholland 
   1626       1.1  dholland 	/* Check the target /etc/fstab exists before trying to parse it. */
   1627       1.1  dholland 	if (target_dir_exists_p("/etc") == 0 ||
   1628       1.1  dholland 	    target_file_exists_p("/etc/fstab") == 0) {
   1629      1.33  christos 		msg_fmt_display(MSG_noetcfstab, "%s", pm->diskdev);
   1630      1.30    martin 		hit_enter_to_continue(NULL, NULL);
   1631       1.1  dholland 		return -1;
   1632       1.1  dholland 	}
   1633       1.1  dholland 
   1634       1.1  dholland 
   1635       1.1  dholland 	/* Get fstab entries from the target-root /etc/fstab. */
   1636       1.1  dholland 	fstabsize = target_collect_file(T_FILE, &fstab, "/etc/fstab");
   1637       1.1  dholland 	if (fstabsize < 0) {
   1638       1.1  dholland 		/* error ! */
   1639      1.33  christos 		msg_fmt_display(MSG_badetcfstab, "%s", pm->diskdev);
   1640      1.30    martin 		hit_enter_to_continue(NULL, NULL);
   1641       1.2    martin 		return -2;
   1642       1.1  dholland 	}
   1643       1.1  dholland 	error = walk(fstab, (size_t)fstabsize, fstabbuf, numfstabbuf);
   1644       1.1  dholland 	free(fstab);
   1645       1.1  dholland 
   1646       1.1  dholland 	return error;
   1647       1.1  dholland }
   1648       1.1  dholland 
   1649       1.1  dholland int
   1650      1.30    martin set_swap_if_low_ram(struct install_partition_desc *install)
   1651      1.10     isaki {
   1652      1.10     isaki 	if (get_ramsize() <= 32)
   1653      1.30    martin 		return set_swap(install);
   1654      1.10     isaki 	return 0;
   1655       1.7       abs }
   1656       1.7       abs 
   1657       1.7       abs int
   1658      1.30    martin set_swap(struct install_partition_desc *install)
   1659       1.1  dholland {
   1660      1.30    martin 	size_t i;
   1661      1.30    martin 	char dev_buf[PATH_MAX];
   1662       1.1  dholland 	int rval;
   1663       1.1  dholland 
   1664      1.30    martin 	for (i = 0; i < install->num; i++) {
   1665      1.30    martin 		if (install->infos[i].type == PT_swap)
   1666      1.30    martin 			break;
   1667      1.30    martin 	}
   1668      1.30    martin 	if (i >= install->num)
   1669      1.30    martin 		return 0;
   1670       1.1  dholland 
   1671      1.30    martin 	if (!install->infos[i].parts->pscheme->get_part_device(
   1672      1.30    martin 	    install->infos[i].parts, install->infos[i].cur_part_id, dev_buf,
   1673      1.30    martin 	    sizeof dev_buf, NULL, plain_name, true))
   1674      1.30    martin 		return -1;
   1675      1.30    martin 
   1676      1.30    martin 	rval = swapctl(SWAP_ON, dev_buf, 0);
   1677      1.30    martin 	if (rval != 0)
   1678      1.30    martin 		return -1;
   1679       1.1  dholland 
   1680       1.1  dholland 	return 0;
   1681       1.1  dholland }
   1682       1.1  dholland 
   1683       1.1  dholland int
   1684       1.1  dholland check_swap(const char *disk, int remove_swap)
   1685       1.1  dholland {
   1686       1.1  dholland 	struct swapent *swap;
   1687       1.1  dholland 	char *cp;
   1688       1.1  dholland 	int nswap;
   1689       1.1  dholland 	int l;
   1690       1.1  dholland 	int rval = 0;
   1691       1.1  dholland 
   1692       1.1  dholland 	nswap = swapctl(SWAP_NSWAP, 0, 0);
   1693       1.1  dholland 	if (nswap <= 0)
   1694       1.1  dholland 		return 0;
   1695       1.1  dholland 
   1696       1.1  dholland 	swap = malloc(nswap * sizeof *swap);
   1697       1.1  dholland 	if (swap == NULL)
   1698       1.1  dholland 		return -1;
   1699       1.1  dholland 
   1700       1.1  dholland 	nswap = swapctl(SWAP_STATS, swap, nswap);
   1701       1.1  dholland 	if (nswap < 0)
   1702       1.1  dholland 		goto bad_swap;
   1703       1.1  dholland 
   1704       1.1  dholland 	l = strlen(disk);
   1705       1.1  dholland 	while (--nswap >= 0) {
   1706       1.1  dholland 		/* Should we check the se_dev or se_path? */
   1707       1.1  dholland 		cp = swap[nswap].se_path;
   1708       1.1  dholland 		if (memcmp(cp, "/dev/", 5) != 0)
   1709       1.1  dholland 			continue;
   1710       1.1  dholland 		if (memcmp(cp + 5, disk, l) != 0)
   1711       1.1  dholland 			continue;
   1712       1.1  dholland 		if (!isalpha(*(unsigned char *)(cp + 5 + l)))
   1713       1.1  dholland 			continue;
   1714       1.1  dholland 		if (cp[5 + l + 1] != 0)
   1715       1.1  dholland 			continue;
   1716       1.1  dholland 		/* ok path looks like it is for this device */
   1717       1.1  dholland 		if (!remove_swap) {
   1718       1.1  dholland 			/* count active swap areas */
   1719       1.1  dholland 			rval++;
   1720       1.1  dholland 			continue;
   1721       1.1  dholland 		}
   1722       1.1  dholland 		if (swapctl(SWAP_OFF, cp, 0) == -1)
   1723       1.1  dholland 			rval = -1;
   1724       1.1  dholland 	}
   1725       1.1  dholland 
   1726       1.1  dholland     done:
   1727       1.1  dholland 	free(swap);
   1728       1.1  dholland 	return rval;
   1729       1.1  dholland 
   1730       1.1  dholland     bad_swap:
   1731       1.1  dholland 	rval = -1;
   1732       1.1  dholland 	goto done;
   1733       1.1  dholland }
   1734       1.1  dholland 
   1735       1.1  dholland #ifdef HAVE_BOOTXX_xFS
   1736       1.1  dholland char *
   1737      1.30    martin bootxx_name(struct install_partition_desc *install)
   1738       1.1  dholland {
   1739       1.1  dholland 	int fstype;
   1740       1.1  dholland 	const char *bootxxname;
   1741       1.1  dholland 	char *bootxx;
   1742       1.1  dholland 
   1743       1.1  dholland 	/* check we have boot code for the root partition type */
   1744      1.30    martin 	fstype = install->infos[0].fs_type;
   1745       1.1  dholland 	switch (fstype) {
   1746       1.1  dholland #if defined(BOOTXX_FFSV1) || defined(BOOTXX_FFSV2)
   1747       1.1  dholland 	case FS_BSDFFS:
   1748      1.30    martin 		if (install->infos[0].fs_version == 2) {
   1749       1.1  dholland #ifdef BOOTXX_FFSV2
   1750       1.1  dholland 			bootxxname = BOOTXX_FFSV2;
   1751       1.1  dholland #else
   1752       1.1  dholland 			bootxxname = NULL;
   1753       1.1  dholland #endif
   1754       1.1  dholland 		} else {
   1755       1.1  dholland #ifdef BOOTXX_FFSV1
   1756       1.1  dholland 			bootxxname = BOOTXX_FFSV1;
   1757       1.1  dholland #else
   1758       1.1  dholland 			bootxxname = NULL;
   1759       1.1  dholland #endif
   1760       1.1  dholland 		}
   1761       1.1  dholland 		break;
   1762       1.1  dholland #endif
   1763      1.11  pgoyette #ifdef BOOTXX_LFSV2
   1764       1.1  dholland 	case FS_BSDLFS:
   1765      1.11  pgoyette 		bootxxname = BOOTXX_LFSV2;
   1766       1.1  dholland 		break;
   1767       1.1  dholland #endif
   1768       1.1  dholland 	default:
   1769       1.1  dholland 		bootxxname = NULL;
   1770       1.1  dholland 		break;
   1771       1.1  dholland 	}
   1772       1.1  dholland 
   1773       1.1  dholland 	if (bootxxname == NULL)
   1774       1.1  dholland 		return NULL;
   1775       1.1  dholland 
   1776       1.1  dholland 	asprintf(&bootxx, "%s/%s", BOOTXXDIR, bootxxname);
   1777       1.1  dholland 	return bootxx;
   1778       1.1  dholland }
   1779       1.1  dholland #endif
   1780       1.2    martin 
   1781       1.2    martin /* from dkctl.c */
   1782       1.2    martin static int
   1783       1.2    martin get_dkwedges_sort(const void *a, const void *b)
   1784       1.2    martin {
   1785       1.2    martin 	const struct dkwedge_info *dkwa = a, *dkwb = b;
   1786       1.2    martin 	const daddr_t oa = dkwa->dkw_offset, ob = dkwb->dkw_offset;
   1787       1.2    martin 	return (oa < ob) ? -1 : (oa > ob) ? 1 : 0;
   1788       1.2    martin }
   1789       1.2    martin 
   1790       1.2    martin int
   1791       1.2    martin get_dkwedges(struct dkwedge_info **dkw, const char *diskdev)
   1792       1.2    martin {
   1793       1.2    martin 	struct dkwedge_list dkwl;
   1794       1.2    martin 
   1795       1.2    martin 	*dkw = NULL;
   1796      1.35  christos 	if (!get_wedge_list(diskdev, &dkwl))
   1797       1.2    martin 		return -1;
   1798       1.2    martin 
   1799      1.35  christos 	if (dkwl.dkwl_nwedges > 0 && *dkw != NULL) {
   1800      1.35  christos 		qsort(*dkw, dkwl.dkwl_nwedges, sizeof(**dkw),
   1801      1.35  christos 		    get_dkwedges_sort);
   1802       1.2    martin 	}
   1803       1.2    martin 
   1804       1.2    martin 	return dkwl.dkwl_nwedges;
   1805       1.2    martin }
   1806