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ar_io.c revision 1.38
      1  1.38       agc /*	$NetBSD: ar_io.c,v 1.38 2003/10/13 07:41:22 agc Exp $	*/
      2   1.4       cgd 
      3   1.1       jtc /*-
      4  1.38       agc  * Copyright (c) 1992 Keith Muller.
      5   1.1       jtc  * Copyright (c) 1992, 1993
      6   1.1       jtc  *	The Regents of the University of California.  All rights reserved.
      7   1.1       jtc  *
      8   1.1       jtc  * This code is derived from software contributed to Berkeley by
      9   1.1       jtc  * Keith Muller of the University of California, San Diego.
     10   1.1       jtc  *
     11   1.1       jtc  * Redistribution and use in source and binary forms, with or without
     12   1.1       jtc  * modification, are permitted provided that the following conditions
     13   1.1       jtc  * are met:
     14   1.1       jtc  * 1. Redistributions of source code must retain the above copyright
     15   1.1       jtc  *    notice, this list of conditions and the following disclaimer.
     16   1.1       jtc  * 2. Redistributions in binary form must reproduce the above copyright
     17   1.1       jtc  *    notice, this list of conditions and the following disclaimer in the
     18   1.1       jtc  *    documentation and/or other materials provided with the distribution.
     19  1.36       agc  * 3. Neither the name of the University nor the names of its contributors
     20  1.36       agc  *    may be used to endorse or promote products derived from this software
     21  1.36       agc  *    without specific prior written permission.
     22  1.36       agc  *
     23  1.36       agc  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     24  1.36       agc  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     25  1.36       agc  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     26  1.36       agc  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     27  1.36       agc  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     28  1.36       agc  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     29  1.36       agc  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     30  1.36       agc  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     31  1.36       agc  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     32  1.36       agc  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     33  1.36       agc  * SUCH DAMAGE.
     34  1.36       agc  */
     35  1.36       agc 
     36   1.7  christos #include <sys/cdefs.h>
     37  1.22        tv #if defined(__RCSID) && !defined(lint)
     38   1.4       cgd #if 0
     39   1.4       cgd static char sccsid[] = "@(#)ar_io.c	8.2 (Berkeley) 4/18/94";
     40   1.4       cgd #else
     41  1.38       agc __RCSID("$NetBSD: ar_io.c,v 1.38 2003/10/13 07:41:22 agc Exp $");
     42   1.4       cgd #endif
     43   1.1       jtc #endif /* not lint */
     44   1.1       jtc 
     45   1.1       jtc #include <sys/types.h>
     46   1.1       jtc #include <sys/time.h>
     47   1.1       jtc #include <sys/stat.h>
     48   1.1       jtc #include <sys/ioctl.h>
     49   1.1       jtc #include <sys/mtio.h>
     50   1.1       jtc #include <sys/param.h>
     51  1.23  christos #include <sys/wait.h>
     52   1.1       jtc #include <signal.h>
     53   1.1       jtc #include <string.h>
     54   1.1       jtc #include <fcntl.h>
     55   1.1       jtc #include <unistd.h>
     56   1.1       jtc #include <stdio.h>
     57   1.1       jtc #include <ctype.h>
     58   1.1       jtc #include <errno.h>
     59   1.1       jtc #include <stdlib.h>
     60  1.25   thorpej #ifdef SUPPORT_RMT
     61  1.23  christos #define __RMTLIB_PRIVATE
     62  1.23  christos #include <rmt.h>
     63  1.25   thorpej #endif /* SUPPORT_RMT */
     64   1.1       jtc #include "pax.h"
     65  1.23  christos #include "options.h"
     66   1.1       jtc #include "extern.h"
     67   1.1       jtc 
     68   1.1       jtc /*
     69   1.1       jtc  * Routines which deal directly with the archive I/O device/file.
     70   1.1       jtc  */
     71   1.1       jtc 
     72   1.1       jtc #define DMOD		0666		/* default mode of created archives */
     73   1.1       jtc #define EXT_MODE	O_RDONLY	/* open mode for list/extract */
     74   1.1       jtc #define AR_MODE		(O_WRONLY | O_CREAT | O_TRUNC)	/* mode for archive */
     75   1.1       jtc #define APP_MODE	O_RDWR		/* mode for append */
     76  1.17     itohy #define STDO		"<STDOUT>"	/* pseudo name for stdout */
     77  1.17     itohy #define STDN		"<STDIN>"	/* pseudo name for stdin */
     78   1.1       jtc static int arfd = -1;			/* archive file descriptor */
     79   1.1       jtc static int artyp = ISREG;		/* archive type: file/FIFO/tape */
     80   1.1       jtc static int arvol = 1;			/* archive volume number */
     81   1.1       jtc static int lstrval = -1;		/* return value from last i/o */
     82   1.1       jtc static int io_ok;			/* i/o worked on volume after resync */
     83   1.1       jtc static int did_io;			/* did i/o ever occur on volume? */
     84   1.1       jtc static int done;			/* set via tty termination */
     85   1.1       jtc static struct stat arsb;		/* stat of archive device at open */
     86   1.1       jtc static int invld_rec;			/* tape has out of spec record size */
     87   1.1       jtc static int wr_trail = 1;		/* trailer was rewritten in append */
     88   1.1       jtc static int can_unlnk = 0;		/* do we unlink null archives?  */
     89  1.17     itohy const char *arcname;			/* printable name of archive */
     90   1.9   mycroft const char *gzip_program;		/* name of gzip program */
     91  1.23  christos static pid_t zpid = -1;			/* pid of child process */
     92  1.13  christos time_t starttime;			/* time the run started */
     93  1.18   thorpej int force_one_volume;			/* 1 if we ignore volume changes */
     94   1.1       jtc 
     95  1.20     lukem static int get_phys(void);
     96   1.1       jtc extern sigset_t s_mask;
     97  1.23  christos static void ar_start_gzip(int, const char *, int);
     98  1.20     lukem static const char *timefmt(char *, size_t, off_t, time_t);
     99  1.20     lukem static const char *sizefmt(char *, size_t, off_t);
    100  1.24   thorpej 
    101  1.24   thorpej #ifdef SUPPORT_RMT
    102  1.23  christos #ifdef SYS_NO_RESTART
    103  1.23  christos static int rmtread_with_restart(int, void *, int);
    104  1.23  christos static int rmtwrite_with_restart(int, void *, int);
    105  1.23  christos #else
    106  1.23  christos #define rmtread_with_restart(a, b, c) rmtread((a), (b), (c))
    107  1.23  christos #define rmtwrite_with_restart(a, b, c) rmtwrite((a), (b), (c))
    108  1.23  christos #endif
    109  1.24   thorpej #endif /* SUPPORT_RMT */
    110   1.1       jtc 
    111   1.1       jtc /*
    112   1.1       jtc  * ar_open()
    113   1.1       jtc  *	Opens the next archive volume. Determines the type of the device and
    114   1.1       jtc  *	sets up block sizes as required by the archive device and the format.
    115   1.1       jtc  *	Note: we may be called with name == NULL on the first open only.
    116   1.1       jtc  * Return:
    117   1.1       jtc  *	-1 on failure, 0 otherwise
    118   1.1       jtc  */
    119   1.1       jtc 
    120   1.1       jtc int
    121   1.9   mycroft ar_open(const char *name)
    122   1.1       jtc {
    123  1.17     itohy 	struct mtget mb;
    124   1.8       mrg 
    125   1.1       jtc 	if (arfd != -1)
    126   1.1       jtc 		(void)close(arfd);
    127   1.1       jtc 	arfd = -1;
    128   1.1       jtc 	can_unlnk = did_io = io_ok = invld_rec = 0;
    129   1.1       jtc 	artyp = ISREG;
    130   1.1       jtc 	flcnt = 0;
    131   1.1       jtc 
    132  1.24   thorpej #ifdef SUPPORT_RMT
    133  1.26  christos 	if (name && strchr(name, ':') != NULL && !forcelocal) {
    134  1.23  christos 		artyp = ISRMT;
    135  1.23  christos 		if ((arfd = rmtopen(name, O_RDWR, DMOD)) == -1) {
    136  1.23  christos 			syswarn(0, errno, "Failed open on %s", name);
    137  1.23  christos 			return -1;
    138  1.23  christos 		}
    139  1.23  christos 		blksz = rdblksz = 8192;
    140  1.23  christos 		lstrval = 1;
    141  1.23  christos 		return 0;
    142  1.23  christos 	}
    143  1.24   thorpej #endif /* SUPPORT_RMT */
    144  1.23  christos 
    145   1.1       jtc 	/*
    146   1.1       jtc 	 * open based on overall operation mode
    147   1.1       jtc 	 */
    148   1.1       jtc 	switch (act) {
    149   1.1       jtc 	case LIST:
    150   1.1       jtc 	case EXTRACT:
    151   1.1       jtc 		if (name == NULL) {
    152   1.1       jtc 			arfd = STDIN_FILENO;
    153   1.1       jtc 			arcname = STDN;
    154   1.1       jtc 		} else if ((arfd = open(name, EXT_MODE, DMOD)) < 0)
    155   1.1       jtc 			syswarn(0, errno, "Failed open to read on %s", name);
    156  1.23  christos 		if (arfd != -1 && gzip_program != NULL)
    157  1.23  christos 			ar_start_gzip(arfd, gzip_program, 0);
    158   1.1       jtc 		break;
    159   1.1       jtc 	case ARCHIVE:
    160   1.1       jtc 		if (name == NULL) {
    161   1.1       jtc 			arfd = STDOUT_FILENO;
    162   1.1       jtc 			arcname = STDO;
    163   1.1       jtc 		} else if ((arfd = open(name, AR_MODE, DMOD)) < 0)
    164   1.1       jtc 			syswarn(0, errno, "Failed open to write on %s", name);
    165   1.1       jtc 		else
    166   1.1       jtc 			can_unlnk = 1;
    167  1.23  christos 		if (arfd != -1 && gzip_program != NULL)
    168  1.23  christos 			ar_start_gzip(arfd, gzip_program, 1);
    169   1.1       jtc 		break;
    170   1.1       jtc 	case APPND:
    171   1.1       jtc 		if (name == NULL) {
    172   1.1       jtc 			arfd = STDOUT_FILENO;
    173   1.1       jtc 			arcname = STDO;
    174   1.1       jtc 		} else if ((arfd = open(name, APP_MODE, DMOD)) < 0)
    175   1.1       jtc 			syswarn(0, errno, "Failed open to read/write on %s",
    176   1.1       jtc 				name);
    177   1.1       jtc 		break;
    178   1.1       jtc 	case COPY:
    179   1.1       jtc 		/*
    180   1.1       jtc 		 * arfd not used in COPY mode
    181   1.1       jtc 		 */
    182   1.1       jtc 		arcname = "<NONE>";
    183   1.1       jtc 		lstrval = 1;
    184   1.1       jtc 		return(0);
    185   1.1       jtc 	}
    186   1.1       jtc 	if (arfd < 0)
    187   1.1       jtc 		return(-1);
    188   1.1       jtc 
    189  1.23  christos 	if (chdname != NULL)
    190  1.23  christos 		if (chdir(chdname) != 0)
    191  1.23  christos 			syswarn(1, errno, "Failed chdir to %s", chdname);
    192   1.1       jtc 	/*
    193   1.1       jtc 	 * set up is based on device type
    194   1.1       jtc 	 */
    195   1.1       jtc 	if (fstat(arfd, &arsb) < 0) {
    196   1.1       jtc 		syswarn(0, errno, "Failed stat on %s", arcname);
    197   1.1       jtc 		(void)close(arfd);
    198   1.1       jtc 		arfd = -1;
    199   1.1       jtc 		can_unlnk = 0;
    200   1.1       jtc 		return(-1);
    201   1.1       jtc 	}
    202   1.1       jtc 	if (S_ISDIR(arsb.st_mode)) {
    203   1.7  christos 		tty_warn(0, "Cannot write an archive on top of a directory %s",
    204   1.1       jtc 		    arcname);
    205   1.1       jtc 		(void)close(arfd);
    206   1.1       jtc 		arfd = -1;
    207   1.1       jtc 		can_unlnk = 0;
    208   1.1       jtc 		return(-1);
    209   1.1       jtc 	}
    210   1.1       jtc 
    211   1.1       jtc 	if (S_ISCHR(arsb.st_mode))
    212   1.1       jtc 		artyp = ioctl(arfd, MTIOCGET, &mb) ? ISCHR : ISTAPE;
    213   1.1       jtc 	else if (S_ISBLK(arsb.st_mode))
    214   1.1       jtc 		artyp = ISBLK;
    215   1.1       jtc 	else if ((lseek(arfd, (off_t)0L, SEEK_CUR) == -1) && (errno == ESPIPE))
    216   1.1       jtc 		artyp = ISPIPE;
    217   1.1       jtc 	else
    218   1.1       jtc 		artyp = ISREG;
    219  1.29  christos 
    220  1.29  christos 	/*
    221  1.29  christos 	 * Special handling for empty files.
    222  1.29  christos 	 */
    223  1.29  christos 	if (artyp == ISREG && arsb.st_size == 0) {
    224  1.29  christos 		switch (act) {
    225  1.29  christos 		case LIST:
    226  1.29  christos 		case EXTRACT:
    227  1.29  christos 			return -1;
    228  1.29  christos 		case APPND:
    229  1.30  christos 			act = -ARCHIVE;
    230  1.29  christos 			return -1;
    231  1.29  christos 		case ARCHIVE:
    232  1.29  christos 			break;
    233  1.29  christos 		}
    234  1.29  christos 	}
    235   1.1       jtc 
    236   1.1       jtc 	/*
    237   1.1       jtc 	 * make sure we beyond any doubt that we only can unlink regular files
    238   1.1       jtc 	 * we created
    239   1.1       jtc 	 */
    240   1.1       jtc 	if (artyp != ISREG)
    241   1.1       jtc 		can_unlnk = 0;
    242  1.14        is 
    243  1.14        is 	/*
    244   1.1       jtc 	 * if we are writing, we are done
    245   1.1       jtc 	 */
    246   1.1       jtc 	if (act == ARCHIVE) {
    247   1.1       jtc 		blksz = rdblksz = wrblksz;
    248   1.1       jtc 		lstrval = 1;
    249   1.1       jtc 		return(0);
    250   1.8       mrg 	}
    251   1.8       mrg 
    252   1.8       mrg 	/*
    253   1.1       jtc 	 * set default blksz on read. APPNDs writes rdblksz on the last volume
    254   1.1       jtc 	 * On all new archive volumes, we shift to wrblksz (if the user
    255   1.1       jtc 	 * specified one, otherwize we will continue to use rdblksz). We
    256  1.31       wiz 	 * must set blocksize based on what kind of device the archive is
    257   1.1       jtc 	 * stored.
    258   1.1       jtc 	 */
    259   1.1       jtc 	switch(artyp) {
    260   1.1       jtc 	case ISTAPE:
    261   1.1       jtc 		/*
    262   1.1       jtc 		 * Tape drives come in at least two flavors. Those that support
    263   1.1       jtc 		 * variable sized records and those that have fixed sized
    264   1.1       jtc 		 * records. They must be treated differently. For tape drives
    265   1.1       jtc 		 * that support variable sized records, we must make large
    266   1.1       jtc 		 * reads to make sure we get the entire record, otherwise we
    267   1.1       jtc 		 * will just get the first part of the record (up to size we
    268   1.1       jtc 		 * asked). Tapes with fixed sized records may or may not return
    269   1.1       jtc 		 * multiple records in a single read. We really do not care
    270   1.1       jtc 		 * what the physical record size is UNLESS we are going to
    271   1.1       jtc 		 * append. (We will need the physical block size to rewrite
    272   1.1       jtc 		 * the trailer). Only when we are appending do we go to the
    273   1.1       jtc 		 * effort to figure out the true PHYSICAL record size.
    274   1.1       jtc 		 */
    275   1.1       jtc 		blksz = rdblksz = MAXBLK;
    276   1.1       jtc 		break;
    277   1.1       jtc 	case ISPIPE:
    278   1.1       jtc 	case ISBLK:
    279   1.1       jtc 	case ISCHR:
    280   1.1       jtc 		/*
    281   1.1       jtc 		 * Blocksize is not a major issue with these devices (but must
    282   1.1       jtc 		 * be kept a multiple of 512). If the user specified a write
    283   1.1       jtc 		 * block size, we use that to read. Under append, we must
    284   1.1       jtc 		 * always keep blksz == rdblksz. Otherwise we go ahead and use
    285   1.1       jtc 		 * the device optimal blocksize as (and if) returned by stat
    286   1.1       jtc 		 * and if it is within pax specs.
    287   1.1       jtc 		 */
    288   1.1       jtc 		if ((act == APPND) && wrblksz) {
    289   1.1       jtc 			blksz = rdblksz = wrblksz;
    290   1.1       jtc 			break;
    291   1.1       jtc 		}
    292   1.1       jtc 
    293   1.1       jtc 		if ((arsb.st_blksize > 0) && (arsb.st_blksize < MAXBLK) &&
    294   1.1       jtc 		    ((arsb.st_blksize % BLKMULT) == 0))
    295   1.1       jtc 			rdblksz = arsb.st_blksize;
    296   1.1       jtc 		else
    297   1.1       jtc 			rdblksz = DEVBLK;
    298   1.1       jtc 		/*
    299   1.1       jtc 		 * For performance go for large reads when we can without harm
    300   1.1       jtc 		 */
    301   1.1       jtc 		if ((act == APPND) || (artyp == ISCHR))
    302   1.1       jtc 			blksz = rdblksz;
    303   1.1       jtc 		else
    304   1.1       jtc 			blksz = MAXBLK;
    305   1.1       jtc 		break;
    306   1.1       jtc 	case ISREG:
    307   1.1       jtc 		/*
    308   1.1       jtc 		 * if the user specified wrblksz works, use it. Under appends
    309   1.1       jtc 		 * we must always keep blksz == rdblksz
    310   1.1       jtc 		 */
    311   1.1       jtc 		if ((act == APPND) && wrblksz && ((arsb.st_size%wrblksz)==0)){
    312   1.1       jtc 			blksz = rdblksz = wrblksz;
    313   1.1       jtc 			break;
    314   1.1       jtc 		}
    315   1.1       jtc 		/*
    316   1.1       jtc 		 * See if we can find the blocking factor from the file size
    317   1.1       jtc 		 */
    318   1.1       jtc 		for (rdblksz = MAXBLK; rdblksz > 0; rdblksz -= BLKMULT)
    319   1.1       jtc 			if ((arsb.st_size % rdblksz) == 0)
    320   1.1       jtc 				break;
    321   1.1       jtc 		/*
    322  1.17     itohy 		 * When we cannot find a match, we may have a flawed archive.
    323   1.1       jtc 		 */
    324   1.1       jtc 		if (rdblksz <= 0)
    325   1.1       jtc 			rdblksz = FILEBLK;
    326   1.1       jtc 		/*
    327   1.1       jtc 		 * for performance go for large reads when we can
    328   1.1       jtc 		 */
    329   1.1       jtc 		if (act == APPND)
    330   1.1       jtc 			blksz = rdblksz;
    331   1.1       jtc 		else
    332   1.1       jtc 			blksz = MAXBLK;
    333   1.1       jtc 		break;
    334   1.1       jtc 	default:
    335   1.1       jtc 		/*
    336  1.31       wiz 		 * should never happen, worst case, slow...
    337   1.1       jtc 		 */
    338   1.1       jtc 		blksz = rdblksz = BLKMULT;
    339   1.1       jtc 		break;
    340   1.1       jtc 	}
    341   1.1       jtc 	lstrval = 1;
    342   1.1       jtc 	return(0);
    343   1.1       jtc }
    344   1.1       jtc 
    345   1.1       jtc /*
    346   1.1       jtc  * ar_close()
    347   1.1       jtc  *	closes archive device, increments volume number, and prints i/o summary
    348   1.1       jtc  */
    349   1.1       jtc void
    350   1.1       jtc ar_close(void)
    351   1.1       jtc {
    352  1.37     grant 	int status;
    353  1.37     grant 
    354   1.1       jtc 	if (arfd < 0) {
    355   1.1       jtc 		did_io = io_ok = flcnt = 0;
    356   1.1       jtc 		return;
    357   1.1       jtc 	}
    358   1.1       jtc 
    359   1.1       jtc 
    360   1.1       jtc 	/*
    361   1.1       jtc 	 * Close archive file. This may take a LONG while on tapes (we may be
    362   1.1       jtc 	 * forced to wait for the rewind to complete) so tell the user what is
    363   1.1       jtc 	 * going on (this avoids the user hitting control-c thinking pax is
    364   1.1       jtc 	 * broken).
    365   1.1       jtc 	 */
    366   1.1       jtc 	if (vflag && (artyp == ISTAPE)) {
    367   1.1       jtc 		if (vfpart)
    368  1.23  christos 			(void)putc('\n', listf);
    369  1.23  christos 		(void)fprintf(listf,
    370   1.1       jtc 			"%s: Waiting for tape drive close to complete...",
    371   1.1       jtc 			argv0);
    372  1.23  christos 		(void)fflush(listf);
    373   1.1       jtc 	}
    374   1.1       jtc 
    375   1.1       jtc 	/*
    376   1.1       jtc 	 * if nothing was written to the archive (and we created it), we remove
    377   1.1       jtc 	 * it
    378   1.1       jtc 	 */
    379   1.1       jtc 	if (can_unlnk && (fstat(arfd, &arsb) == 0) && (S_ISREG(arsb.st_mode)) &&
    380   1.1       jtc 	    (arsb.st_size == 0)) {
    381   1.1       jtc 		(void)unlink(arcname);
    382   1.1       jtc 		can_unlnk = 0;
    383   1.1       jtc 	}
    384   1.1       jtc 
    385  1.23  christos 	/*
    386  1.23  christos 	 * for a quick extract/list, pax frequently exits before the child
    387  1.23  christos 	 * process is done
    388  1.23  christos 	 */
    389  1.37     grant 	if ((act == LIST || act == EXTRACT) && nflag && zpid > 0)
    390  1.23  christos 		kill(zpid, SIGINT);
    391  1.23  christos 
    392  1.24   thorpej #ifdef SUPPORT_RMT
    393  1.23  christos 	if (artyp == ISRMT)
    394  1.23  christos 		(void)rmtclose(arfd);
    395  1.23  christos 	else
    396  1.24   thorpej #endif /* SUPPORT_RMT */
    397  1.23  christos 		(void)close(arfd);
    398  1.37     grant 
    399  1.37     grant 	/* Do not exit before child to ensure data integrity */
    400  1.37     grant 	if (zpid > 0)
    401  1.37     grant 		waitpid(zpid, &status, 0);
    402   1.1       jtc 
    403   1.1       jtc 	if (vflag && (artyp == ISTAPE)) {
    404  1.23  christos 		(void)fputs("done.\n", listf);
    405   1.1       jtc 		vfpart = 0;
    406  1.23  christos 		(void)fflush(listf);
    407   1.1       jtc 	}
    408   1.1       jtc 	arfd = -1;
    409   1.1       jtc 
    410   1.1       jtc 	if (!io_ok && !did_io) {
    411   1.1       jtc 		flcnt = 0;
    412   1.1       jtc 		return;
    413   1.1       jtc 	}
    414   1.1       jtc 	did_io = io_ok = 0;
    415   1.1       jtc 
    416   1.1       jtc 	/*
    417   1.1       jtc 	 * The volume number is only increased when the last device has data
    418   1.1       jtc 	 * and we have already determined the archive format.
    419   1.1       jtc 	 */
    420   1.1       jtc 	if (frmt != NULL)
    421   1.1       jtc 		++arvol;
    422   1.1       jtc 
    423   1.1       jtc 	if (!vflag) {
    424   1.1       jtc 		flcnt = 0;
    425   1.1       jtc 		return;
    426   1.1       jtc 	}
    427   1.1       jtc 
    428   1.1       jtc 	/*
    429   1.1       jtc 	 * Print out a summary of I/O for this archive volume.
    430   1.1       jtc 	 */
    431   1.1       jtc 	if (vfpart) {
    432  1.23  christos 		(void)putc('\n', listf);
    433   1.1       jtc 		vfpart = 0;
    434   1.1       jtc 	}
    435  1.23  christos 	/*
    436  1.23  christos 	 * If we have not determined the format yet, we just say how many bytes
    437  1.23  christos 	 * we have skipped over looking for a header to id. there is no way we
    438  1.23  christos 	 * could have written anything yet.
    439  1.23  christos 	 */
    440  1.23  christos 	if (frmt == NULL) {
    441  1.23  christos 		(void)fprintf(listf, "%s: unknown format, " OFFT_F
    442  1.23  christos 		    " bytes skipped.\n", argv0, rdcnt);
    443  1.23  christos 		(void)fflush(listf);
    444  1.23  christos 		flcnt = 0;
    445  1.23  christos 		return;
    446  1.23  christos 	}
    447  1.23  christos 
    448  1.23  christos 	if (strcmp(NM_CPIO, argv0) == 0) {
    449  1.23  christos 		(void)fprintf(listf, OFFT_F " blocks\n",
    450  1.23  christos 		    (rdcnt ? rdcnt : wrcnt) / 5120);
    451  1.23  christos 	}
    452   1.1       jtc 
    453  1.13  christos 	ar_summary(0);
    454   1.1       jtc 
    455  1.23  christos 	(void)fflush(listf);
    456   1.1       jtc 	flcnt = 0;
    457   1.1       jtc }
    458   1.1       jtc 
    459   1.1       jtc /*
    460   1.1       jtc  * ar_drain()
    461   1.1       jtc  *	drain any archive format independent padding from an archive read
    462   1.1       jtc  *	from a socket or a pipe. This is to prevent the process on the
    463   1.1       jtc  *	other side of the pipe from getting a SIGPIPE (pax will stop
    464   1.1       jtc  *	reading an archive once a format dependent trailer is detected).
    465   1.1       jtc  */
    466   1.1       jtc void
    467   1.1       jtc ar_drain(void)
    468   1.1       jtc {
    469   1.6       tls 	int res;
    470   1.1       jtc 	char drbuf[MAXBLK];
    471   1.1       jtc 
    472   1.1       jtc 	/*
    473   1.1       jtc 	 * we only drain from a pipe/socket. Other devices can be closed
    474   1.1       jtc 	 * without reading up to end of file. We sure hope that pipe is closed
    475   1.1       jtc 	 * on the other side so we will get an EOF.
    476   1.1       jtc 	 */
    477   1.1       jtc 	if ((artyp != ISPIPE) || (lstrval <= 0))
    478   1.1       jtc 		return;
    479   1.1       jtc 
    480   1.1       jtc 	/*
    481   1.1       jtc 	 * keep reading until pipe is drained
    482   1.1       jtc 	 */
    483  1.24   thorpej #ifdef SUPPORT_RMT
    484  1.23  christos 	if (artyp == ISRMT) {
    485  1.24   thorpej 		while ((res = rmtread_with_restart(arfd,
    486  1.24   thorpej 						   drbuf, sizeof(drbuf))) > 0)
    487  1.23  christos 			continue;
    488  1.23  christos 	} else {
    489  1.24   thorpej #endif /* SUPPORT_RMT */
    490  1.24   thorpej 		while ((res = read_with_restart(arfd,
    491  1.24   thorpej 						drbuf, sizeof(drbuf))) > 0)
    492  1.23  christos 			continue;
    493  1.24   thorpej #ifdef SUPPORT_RMT
    494  1.23  christos 	}
    495  1.24   thorpej #endif /* SUPPORT_RMT */
    496   1.1       jtc 	lstrval = res;
    497   1.1       jtc }
    498   1.1       jtc 
    499   1.1       jtc /*
    500   1.1       jtc  * ar_set_wr()
    501   1.1       jtc  *	Set up device right before switching from read to write in an append.
    502   1.1       jtc  *	device dependent code (if required) to do this should be added here.
    503   1.1       jtc  *	For all archive devices we are already positioned at the place we want
    504   1.1       jtc  *	to start writing when this routine is called.
    505   1.1       jtc  * Return:
    506   1.1       jtc  *	0 if all ready to write, -1 otherwise
    507   1.1       jtc  */
    508   1.1       jtc 
    509   1.1       jtc int
    510   1.1       jtc ar_set_wr(void)
    511   1.1       jtc {
    512   1.1       jtc 	off_t cpos;
    513   1.1       jtc 
    514   1.1       jtc 	/*
    515   1.1       jtc 	 * we must make sure the trailer is rewritten on append, ar_next()
    516   1.1       jtc 	 * will stop us if the archive containing the trailer was not written
    517   1.1       jtc 	 */
    518   1.1       jtc 	wr_trail = 0;
    519  1.17     itohy 
    520  1.17     itohy 	/*
    521   1.1       jtc 	 * Add any device dependent code as required here
    522   1.1       jtc 	 */
    523   1.1       jtc 	if (artyp != ISREG)
    524   1.1       jtc 		return(0);
    525   1.1       jtc 	/*
    526   1.1       jtc 	 * Ok we have an archive in a regular file. If we were rewriting a
    527   1.1       jtc 	 * file, we must get rid of all the stuff after the current offset
    528   1.1       jtc 	 * (it was not written by pax).
    529   1.1       jtc 	 */
    530   1.1       jtc 	if (((cpos = lseek(arfd, (off_t)0L, SEEK_CUR)) < 0) ||
    531   1.1       jtc 	    (ftruncate(arfd, cpos) < 0)) {
    532   1.1       jtc 		syswarn(1, errno, "Unable to truncate archive file");
    533   1.1       jtc 		return(-1);
    534   1.1       jtc 	}
    535   1.1       jtc 	return(0);
    536   1.1       jtc }
    537   1.1       jtc 
    538   1.1       jtc /*
    539   1.1       jtc  * ar_app_ok()
    540   1.1       jtc  *	check if the last volume in the archive allows appends. We cannot check
    541  1.17     itohy  *	this until we are ready to write since there is no spec that says all
    542   1.1       jtc  *	volumes in a single archive have to be of the same type...
    543   1.1       jtc  * Return:
    544   1.1       jtc  *	0 if we can append, -1 otherwise.
    545   1.1       jtc  */
    546   1.1       jtc 
    547   1.1       jtc int
    548   1.1       jtc ar_app_ok(void)
    549   1.1       jtc {
    550   1.1       jtc 	if (artyp == ISPIPE) {
    551   1.7  christos 		tty_warn(1,
    552   1.7  christos 		    "Cannot append to an archive obtained from a pipe.");
    553   1.1       jtc 		return(-1);
    554   1.1       jtc 	}
    555   1.1       jtc 
    556   1.1       jtc 	if (!invld_rec)
    557   1.1       jtc 		return(0);
    558   1.7  christos 	tty_warn(1,
    559   1.7  christos 	    "Cannot append, device record size %d does not support %s spec",
    560   1.7  christos 	    rdblksz, argv0);
    561   1.1       jtc 	return(-1);
    562   1.1       jtc }
    563   1.1       jtc 
    564  1.15     itohy #ifdef SYS_NO_RESTART
    565  1.15     itohy /*
    566  1.15     itohy  * read_with_restart()
    567  1.15     itohy  *	Equivalent to read() but does retry on signals.
    568  1.15     itohy  *	This function is not needed on 4.2BSD and later.
    569  1.15     itohy  * Return:
    570  1.15     itohy  *	Number of bytes written.  -1 indicates an error.
    571  1.15     itohy  */
    572  1.15     itohy 
    573  1.15     itohy int
    574  1.15     itohy read_with_restart(int fd, void *buf, int bsz)
    575  1.15     itohy {
    576  1.15     itohy 	int r;
    577  1.15     itohy 
    578  1.15     itohy 	while (((r = read(fd, buf, bsz)) < 0) && errno == EINTR)
    579  1.23  christos 		continue;
    580  1.23  christos 
    581  1.23  christos 	return(r);
    582  1.23  christos }
    583  1.23  christos 
    584  1.23  christos /*
    585  1.23  christos  * rmtread_with_restart()
    586  1.23  christos  *	Equivalent to rmtread() but does retry on signals.
    587  1.23  christos  *	This function is not needed on 4.2BSD and later.
    588  1.23  christos  * Return:
    589  1.23  christos  *	Number of bytes written.  -1 indicates an error.
    590  1.23  christos  */
    591  1.23  christos static int
    592  1.23  christos rmtread_with_restart(int fd, void *buf, int bsz)
    593  1.23  christos {
    594  1.23  christos 	int r;
    595  1.23  christos 
    596  1.23  christos 	while (((r = rmtread(fd, buf, bsz)) < 0) && errno == EINTR)
    597  1.23  christos 		continue;
    598  1.15     itohy 
    599  1.15     itohy 	return(r);
    600  1.15     itohy }
    601  1.15     itohy #endif
    602  1.15     itohy 
    603  1.15     itohy /*
    604  1.15     itohy  * xread()
    605  1.15     itohy  *	Equivalent to read() but does retry on partial read, which may occur
    606  1.15     itohy  *	on signals.
    607  1.15     itohy  * Return:
    608  1.15     itohy  *	Number of bytes read.  0 for end of file, -1 for an error.
    609  1.15     itohy  */
    610  1.15     itohy 
    611  1.15     itohy int
    612  1.15     itohy xread(int fd, void *buf, int bsz)
    613  1.15     itohy {
    614  1.15     itohy 	char *b = buf;
    615  1.15     itohy 	int nread = 0;
    616  1.15     itohy 	int r;
    617  1.15     itohy 
    618  1.15     itohy 	do {
    619  1.24   thorpej #ifdef SUPPORT_RMT
    620  1.23  christos 		if ((r = rmtread_with_restart(fd, b, bsz)) <= 0)
    621  1.15     itohy 			break;
    622  1.24   thorpej #else
    623  1.24   thorpej 		if ((r = read_with_restart(fd, b, bsz)) <= 0)
    624  1.24   thorpej 			break;
    625  1.24   thorpej #endif /* SUPPORT_RMT */
    626  1.15     itohy 		b += r;
    627  1.15     itohy 		bsz -= r;
    628  1.15     itohy 		nread += r;
    629  1.15     itohy 	} while (bsz > 0);
    630  1.15     itohy 
    631  1.15     itohy 	return(nread ? nread : r);
    632  1.15     itohy }
    633  1.15     itohy 
    634  1.15     itohy #ifdef SYS_NO_RESTART
    635  1.15     itohy /*
    636  1.15     itohy  * write_with_restart()
    637  1.15     itohy  *	Equivalent to write() but does retry on signals.
    638  1.15     itohy  *	This function is not needed on 4.2BSD and later.
    639  1.15     itohy  * Return:
    640  1.15     itohy  *	Number of bytes written.  -1 indicates an error.
    641  1.15     itohy  */
    642  1.15     itohy 
    643  1.15     itohy int
    644  1.15     itohy write_with_restart(int fd, void *buf, int bsz)
    645  1.15     itohy {
    646  1.15     itohy 	int r;
    647  1.15     itohy 
    648  1.15     itohy 	while (((r = write(fd, buf, bsz)) < 0) && errno == EINTR)
    649  1.15     itohy 		;
    650  1.15     itohy 
    651  1.15     itohy 	return(r);
    652  1.15     itohy }
    653  1.23  christos 
    654  1.23  christos /*
    655  1.23  christos  * rmtwrite_with_restart()
    656  1.23  christos  *	Equivalent to write() but does retry on signals.
    657  1.23  christos  *	This function is not needed on 4.2BSD and later.
    658  1.23  christos  * Return:
    659  1.23  christos  *	Number of bytes written.  -1 indicates an error.
    660  1.23  christos  */
    661  1.23  christos 
    662  1.23  christos static int
    663  1.23  christos rmtwrite_with_restart(int fd, void *buf, int bsz)
    664  1.23  christos {
    665  1.23  christos 	int r;
    666  1.23  christos 
    667  1.23  christos 	while (((r = rmtwrite(fd, buf, bsz)) < 0) && errno == EINTR)
    668  1.23  christos 		;
    669  1.23  christos 
    670  1.23  christos 	return(r);
    671  1.23  christos }
    672  1.15     itohy #endif
    673  1.15     itohy 
    674  1.15     itohy /*
    675  1.15     itohy  * xwrite()
    676  1.15     itohy  *	Equivalent to write() but does retry on partial write, which may occur
    677  1.15     itohy  *	on signals.
    678  1.15     itohy  * Return:
    679  1.15     itohy  *	Number of bytes written.  -1 indicates an error.
    680  1.15     itohy  */
    681  1.15     itohy 
    682  1.15     itohy int
    683  1.15     itohy xwrite(int fd, void *buf, int bsz)
    684  1.15     itohy {
    685  1.15     itohy 	char *b = buf;
    686  1.15     itohy 	int written = 0;
    687  1.15     itohy 	int r;
    688  1.15     itohy 
    689  1.15     itohy 	do {
    690  1.24   thorpej #ifdef SUPPORT_RMT
    691  1.23  christos 		if ((r = rmtwrite_with_restart(fd, b, bsz)) <= 0)
    692  1.15     itohy 			break;
    693  1.24   thorpej #else
    694  1.24   thorpej 		if ((r = write_with_restart(fd, b, bsz)) <= 0)
    695  1.24   thorpej 			break;
    696  1.24   thorpej #endif /* SUPPORT_RMT */
    697  1.15     itohy 		b += r;
    698  1.15     itohy 		bsz -= r;
    699  1.15     itohy 		written += r;
    700  1.15     itohy 	} while (bsz > 0);
    701  1.15     itohy 
    702  1.15     itohy 	return(written ? written : r);
    703  1.15     itohy }
    704  1.15     itohy 
    705   1.1       jtc /*
    706   1.1       jtc  * ar_read()
    707   1.1       jtc  *	read up to a specified number of bytes from the archive into the
    708   1.1       jtc  *	supplied buffer. When dealing with tapes we may not always be able to
    709   1.1       jtc  *	read what we want.
    710   1.1       jtc  * Return:
    711   1.1       jtc  *	Number of bytes in buffer. 0 for end of file, -1 for a read error.
    712   1.1       jtc  */
    713   1.1       jtc 
    714   1.1       jtc int
    715   1.6       tls ar_read(char *buf, int cnt)
    716   1.1       jtc {
    717   1.6       tls 	int res = 0;
    718   1.1       jtc 
    719   1.1       jtc 	/*
    720   1.1       jtc 	 * if last i/o was in error, no more reads until reset or new volume
    721   1.1       jtc 	 */
    722   1.1       jtc 	if (lstrval <= 0)
    723   1.1       jtc 		return(lstrval);
    724   1.1       jtc 
    725   1.1       jtc 	/*
    726   1.1       jtc 	 * how we read must be based on device type
    727   1.1       jtc 	 */
    728   1.1       jtc 	switch (artyp) {
    729  1.24   thorpej #ifdef SUPPORT_RMT
    730  1.23  christos 	case ISRMT:
    731  1.23  christos 		if ((res = rmtread_with_restart(arfd, buf, cnt)) > 0) {
    732  1.23  christos 			io_ok = 1;
    733  1.23  christos 			return res;
    734  1.23  christos 		}
    735  1.23  christos 		break;
    736  1.24   thorpej #endif /* SUPPORT_RMT */
    737   1.1       jtc 	case ISTAPE:
    738  1.15     itohy 		if ((res = read_with_restart(arfd, buf, cnt)) > 0) {
    739   1.1       jtc 			/*
    740   1.1       jtc 			 * CAUTION: tape systems may not always return the same
    741   1.1       jtc 			 * sized records so we leave blksz == MAXBLK. The
    742   1.1       jtc 			 * physical record size that a tape drive supports is
    743   1.1       jtc 			 * very hard to determine in a uniform and portable
    744   1.1       jtc 			 * manner.
    745   1.1       jtc 			 */
    746   1.1       jtc 			io_ok = 1;
    747   1.1       jtc 			if (res != rdblksz) {
    748   1.1       jtc 				/*
    749  1.31       wiz 				 * Record size changed. If this happens on
    750   1.1       jtc 				 * any record after the first, we probably have
    751   1.1       jtc 				 * a tape drive which has a fixed record size
    752  1.31       wiz 				 * (we are getting multiple records in a single
    753   1.1       jtc 				 * read). Watch out for record blocking that
    754   1.1       jtc 				 * violates pax spec (must be a multiple of
    755   1.1       jtc 				 * BLKMULT).
    756   1.1       jtc 				 */
    757   1.1       jtc 				rdblksz = res;
    758   1.1       jtc 				if (rdblksz % BLKMULT)
    759   1.1       jtc 					invld_rec = 1;
    760   1.1       jtc 			}
    761   1.1       jtc 			return(res);
    762   1.1       jtc 		}
    763   1.1       jtc 		break;
    764   1.1       jtc 	case ISREG:
    765   1.1       jtc 	case ISBLK:
    766   1.1       jtc 	case ISCHR:
    767   1.1       jtc 	case ISPIPE:
    768   1.1       jtc 	default:
    769   1.1       jtc 		/*
    770   1.1       jtc 		 * Files are so easy to deal with. These other things cannot
    771   1.1       jtc 		 * be trusted at all. So when we are dealing with character
    772   1.1       jtc 		 * devices and pipes we just take what they have ready for us
    773   1.1       jtc 		 * and return. Trying to do anything else with them runs the
    774   1.1       jtc 		 * risk of failure.
    775   1.1       jtc 		 */
    776  1.15     itohy 		if ((res = read_with_restart(arfd, buf, cnt)) > 0) {
    777   1.1       jtc 			io_ok = 1;
    778   1.1       jtc 			return(res);
    779   1.1       jtc 		}
    780   1.1       jtc 		break;
    781   1.1       jtc 	}
    782   1.1       jtc 
    783   1.1       jtc 	/*
    784   1.1       jtc 	 * We are in trouble at this point, something is broken...
    785   1.1       jtc 	 */
    786   1.1       jtc 	lstrval = res;
    787   1.1       jtc 	if (res < 0)
    788   1.1       jtc 		syswarn(1, errno, "Failed read on archive volume %d", arvol);
    789  1.34  christos 	else
    790   1.7  christos 		tty_warn(0, "End of archive volume %d reached", arvol);
    791   1.1       jtc 	return(res);
    792  1.17     itohy }
    793   1.1       jtc 
    794   1.1       jtc /*
    795   1.1       jtc  * ar_write()
    796   1.1       jtc  *	Write a specified number of bytes in supplied buffer to the archive
    797   1.1       jtc  *	device so it appears as a single "block". Deals with errors and tries
    798   1.1       jtc  *	to recover when faced with short writes.
    799   1.1       jtc  * Return:
    800   1.1       jtc  *	Number of bytes written. 0 indicates end of volume reached and with no
    801   1.1       jtc  *	flaws (as best that can be detected). A -1 indicates an unrecoverable
    802  1.19       wiz  *	error in the archive occurred.
    803   1.1       jtc  */
    804   1.1       jtc 
    805   1.1       jtc int
    806   1.6       tls ar_write(char *buf, int bsz)
    807   1.1       jtc {
    808   1.6       tls 	int res;
    809   1.1       jtc 	off_t cpos;
    810   1.1       jtc 
    811   1.1       jtc 	/*
    812   1.1       jtc 	 * do not allow pax to create a "bad" archive. Once a write fails on
    813   1.1       jtc 	 * an archive volume prevent further writes to it.
    814   1.1       jtc 	 */
    815   1.1       jtc 	if (lstrval <= 0)
    816   1.1       jtc 		return(lstrval);
    817   1.1       jtc 
    818  1.15     itohy 	if ((res = xwrite(arfd, buf, bsz)) == bsz) {
    819   1.1       jtc 		wr_trail = 1;
    820   1.1       jtc 		io_ok = 1;
    821   1.1       jtc 		return(bsz);
    822   1.1       jtc 	}
    823   1.1       jtc 	/*
    824   1.1       jtc 	 * write broke, see what we can do with it. We try to send any partial
    825   1.1       jtc 	 * writes that may violate pax spec to the next archive volume.
    826   1.1       jtc 	 */
    827   1.1       jtc 	if (res < 0)
    828   1.1       jtc 		lstrval = res;
    829   1.1       jtc 	else
    830   1.1       jtc 		lstrval = 0;
    831   1.1       jtc 
    832   1.1       jtc 	switch (artyp) {
    833   1.1       jtc 	case ISREG:
    834   1.1       jtc 		if ((res > 0) && (res % BLKMULT)) {
    835   1.1       jtc 			/*
    836  1.17     itohy 			 * try to fix up partial writes which are not BLKMULT
    837   1.1       jtc 			 * in size by forcing the runt record to next archive
    838   1.1       jtc 			 * volume
    839  1.17     itohy 			 */
    840   1.1       jtc 			if ((cpos = lseek(arfd, (off_t)0L, SEEK_CUR)) < 0)
    841   1.1       jtc 				break;
    842   1.1       jtc 			cpos -= (off_t)res;
    843   1.1       jtc 			if (ftruncate(arfd, cpos) < 0)
    844   1.1       jtc 				break;
    845   1.1       jtc 			res = lstrval = 0;
    846   1.1       jtc 			break;
    847   1.1       jtc 		}
    848   1.1       jtc 		if (res >= 0)
    849   1.1       jtc 			break;
    850   1.1       jtc 		/*
    851   1.1       jtc 		 * if file is out of space, handle it like a return of 0
    852   1.1       jtc 		 */
    853   1.1       jtc 		if ((errno == ENOSPC) || (errno == EFBIG) || (errno == EDQUOT))
    854   1.1       jtc 			res = lstrval = 0;
    855   1.1       jtc 		break;
    856   1.1       jtc 	case ISTAPE:
    857   1.1       jtc 	case ISCHR:
    858   1.1       jtc 	case ISBLK:
    859  1.24   thorpej #ifdef SUPPORT_RMT
    860  1.23  christos 	case ISRMT:
    861  1.24   thorpej #endif /* SUPPORT_RMT */
    862   1.1       jtc 		if (res >= 0)
    863   1.1       jtc 			break;
    864   1.1       jtc 		if (errno == EACCES) {
    865   1.7  christos 			tty_warn(0,
    866   1.7  christos 			    "Write failed, archive is write protected.");
    867   1.1       jtc 			res = lstrval = 0;
    868   1.1       jtc 			return(0);
    869   1.1       jtc 		}
    870   1.1       jtc 		/*
    871   1.1       jtc 		 * see if we reached the end of media, if so force a change to
    872   1.1       jtc 		 * the next volume
    873   1.1       jtc 		 */
    874   1.1       jtc 		if ((errno == ENOSPC) || (errno == EIO) || (errno == ENXIO))
    875   1.1       jtc 			res = lstrval = 0;
    876   1.1       jtc 		break;
    877   1.1       jtc 	case ISPIPE:
    878   1.1       jtc 	default:
    879   1.1       jtc 		/*
    880   1.1       jtc 		 * we cannot fix errors to these devices
    881   1.1       jtc 		 */
    882   1.1       jtc 		break;
    883   1.1       jtc 	}
    884   1.1       jtc 
    885   1.1       jtc 	/*
    886   1.1       jtc 	 * Better tell the user the bad news...
    887   1.1       jtc 	 * if this is a block aligned archive format, we may have a bad archive
    888  1.17     itohy 	 * if the format wants the header to start at a BLKMULT boundary. While
    889   1.1       jtc 	 * we can deal with the mis-aligned data, it violates spec and other
    890   1.1       jtc 	 * archive readers will likely fail. if the format is not block
    891   1.1       jtc 	 * aligned, the user may be lucky (and the archive is ok).
    892   1.1       jtc 	 */
    893   1.1       jtc 	if (res >= 0) {
    894   1.1       jtc 		if (res > 0)
    895   1.1       jtc 			wr_trail = 1;
    896   1.1       jtc 		io_ok = 1;
    897   1.1       jtc 	}
    898   1.1       jtc 
    899   1.1       jtc 	/*
    900   1.1       jtc 	 * If we were trying to rewrite the trailer and it didn't work, we
    901   1.1       jtc 	 * must quit right away.
    902   1.1       jtc 	 */
    903   1.1       jtc 	if (!wr_trail && (res <= 0)) {
    904   1.7  christos 		tty_warn(1,
    905   1.7  christos 		    "Unable to append, trailer re-write failed. Quitting.");
    906   1.1       jtc 		return(res);
    907   1.1       jtc 	}
    908  1.17     itohy 
    909  1.17     itohy 	if (res == 0)
    910   1.7  christos 		tty_warn(0, "End of archive volume %d reached", arvol);
    911   1.1       jtc 	else if (res < 0)
    912   1.1       jtc 		syswarn(1, errno, "Failed write to archive volume: %d", arvol);
    913   1.1       jtc 	else if (!frmt->blkalgn || ((res % frmt->blkalgn) == 0))
    914   1.7  christos 		tty_warn(0,
    915   1.7  christos 		    "WARNING: partial archive write. Archive MAY BE FLAWED");
    916   1.1       jtc 	else
    917   1.7  christos 		tty_warn(1,"WARNING: partial archive write. Archive IS FLAWED");
    918   1.1       jtc 	return(res);
    919   1.1       jtc }
    920   1.1       jtc 
    921   1.1       jtc /*
    922   1.1       jtc  * ar_rdsync()
    923   1.1       jtc  *	Try to move past a bad spot on a flawed archive as needed to continue
    924   1.1       jtc  *	I/O. Clears error flags to allow I/O to continue.
    925   1.1       jtc  * Return:
    926   1.1       jtc  *	0 when ok to try i/o again, -1 otherwise.
    927   1.1       jtc  */
    928   1.1       jtc 
    929   1.1       jtc int
    930   1.1       jtc ar_rdsync(void)
    931   1.1       jtc {
    932   1.1       jtc 	long fsbz;
    933   1.1       jtc 	off_t cpos;
    934   1.1       jtc 	off_t mpos;
    935  1.17     itohy 	struct mtop mb;
    936   1.1       jtc 
    937   1.1       jtc 	/*
    938  1.31       wiz 	 * Fail resync attempts at user request (done) or if this is going to be
    939   1.1       jtc 	 * an update/append to a existing archive. if last i/o hit media end,
    940   1.1       jtc 	 * we need to go to the next volume not try a resync
    941   1.1       jtc 	 */
    942   1.1       jtc 	if ((done > 0) || (lstrval == 0))
    943   1.1       jtc 		return(-1);
    944   1.1       jtc 
    945   1.1       jtc 	if ((act == APPND) || (act == ARCHIVE)) {
    946   1.7  christos 		tty_warn(1, "Cannot allow updates to an archive with flaws.");
    947   1.1       jtc 		return(-1);
    948   1.1       jtc 	}
    949   1.1       jtc 	if (io_ok)
    950   1.1       jtc 		did_io = 1;
    951   1.1       jtc 
    952   1.1       jtc 	switch(artyp) {
    953  1.24   thorpej #ifdef SUPPORT_RMT
    954  1.23  christos 	case ISRMT:
    955  1.24   thorpej #endif /* SUPPORT_RMT */
    956   1.1       jtc 	case ISTAPE:
    957   1.1       jtc 		/*
    958   1.1       jtc 		 * if the last i/o was a successful data transfer, we assume
    959   1.1       jtc 		 * the fault is just a bad record on the tape that we are now
    960   1.1       jtc 		 * past. If we did not get any data since the last resync try
    961  1.17     itohy 		 * to move the tape forward one PHYSICAL record past any
    962   1.1       jtc 		 * damaged tape section. Some tape drives are stubborn and need
    963   1.1       jtc 		 * to be pushed.
    964   1.1       jtc 		 */
    965   1.1       jtc 		if (io_ok) {
    966   1.1       jtc 			io_ok = 0;
    967   1.1       jtc 			lstrval = 1;
    968   1.1       jtc 			break;
    969   1.1       jtc 		}
    970   1.1       jtc 		mb.mt_op = MTFSR;
    971   1.1       jtc 		mb.mt_count = 1;
    972  1.24   thorpej #ifdef SUPPORT_RMT
    973  1.23  christos 		if (artyp == ISRMT) {
    974  1.23  christos 			if (rmtioctl(arfd, MTIOCTOP, &mb) < 0)
    975  1.23  christos 				break;
    976  1.23  christos 		} else {
    977  1.24   thorpej #endif /* SUPPORT_RMT */
    978  1.23  christos 			if (ioctl(arfd, MTIOCTOP, &mb) < 0)
    979  1.23  christos 				break;
    980  1.24   thorpej #ifdef SUPPORT_RMT
    981  1.23  christos 		}
    982  1.24   thorpej #endif /* SUPPORT_RMT */
    983   1.1       jtc 		lstrval = 1;
    984   1.1       jtc 		break;
    985   1.1       jtc 	case ISREG:
    986   1.1       jtc 	case ISCHR:
    987   1.1       jtc 	case ISBLK:
    988   1.1       jtc 		/*
    989   1.1       jtc 		 * try to step over the bad part of the device.
    990   1.1       jtc 		 */
    991   1.1       jtc 		io_ok = 0;
    992   1.1       jtc 		if (((fsbz = arsb.st_blksize) <= 0) || (artyp != ISREG))
    993   1.1       jtc 			fsbz = BLKMULT;
    994   1.1       jtc 		if ((cpos = lseek(arfd, (off_t)0L, SEEK_CUR)) < 0)
    995   1.1       jtc 			break;
    996   1.1       jtc 		mpos = fsbz - (cpos % (off_t)fsbz);
    997  1.17     itohy 		if (lseek(arfd, mpos, SEEK_CUR) < 0)
    998   1.1       jtc 			break;
    999   1.1       jtc 		lstrval = 1;
   1000   1.1       jtc 		break;
   1001   1.1       jtc 	case ISPIPE:
   1002   1.1       jtc 	default:
   1003   1.1       jtc 		/*
   1004   1.1       jtc 		 * cannot recover on these archive device types
   1005   1.1       jtc 		 */
   1006   1.1       jtc 		io_ok = 0;
   1007   1.1       jtc 		break;
   1008   1.1       jtc 	}
   1009   1.1       jtc 	if (lstrval <= 0) {
   1010   1.7  christos 		tty_warn(1, "Unable to recover from an archive read failure.");
   1011   1.1       jtc 		return(-1);
   1012   1.1       jtc 	}
   1013   1.7  christos 	tty_warn(0, "Attempting to recover from an archive read failure.");
   1014   1.1       jtc 	return(0);
   1015   1.1       jtc }
   1016   1.1       jtc 
   1017   1.1       jtc /*
   1018   1.1       jtc  * ar_fow()
   1019  1.17     itohy  *	Move the I/O position within the archive forward the specified number of
   1020   1.1       jtc  *	bytes as supported by the device. If we cannot move the requested
   1021   1.1       jtc  *	number of bytes, return the actual number of bytes moved in skipped.
   1022   1.1       jtc  * Return:
   1023   1.1       jtc  *	0 if moved the requested distance, -1 on complete failure, 1 on
   1024   1.1       jtc  *	partial move (the amount moved is in skipped)
   1025   1.1       jtc  */
   1026   1.1       jtc 
   1027   1.1       jtc int
   1028   1.1       jtc ar_fow(off_t sksz, off_t *skipped)
   1029   1.1       jtc {
   1030   1.1       jtc 	off_t cpos;
   1031   1.1       jtc 	off_t mpos;
   1032   1.1       jtc 
   1033   1.1       jtc 	*skipped = 0;
   1034   1.1       jtc 	if (sksz <= 0)
   1035   1.1       jtc 		return(0);
   1036   1.1       jtc 
   1037   1.1       jtc 	/*
   1038  1.17     itohy 	 * we cannot move forward at EOF or error
   1039   1.1       jtc 	 */
   1040   1.1       jtc 	if (lstrval <= 0)
   1041   1.1       jtc 		return(lstrval);
   1042   1.1       jtc 
   1043   1.1       jtc 	/*
   1044   1.1       jtc 	 * Safer to read forward on devices where it is hard to find the end of
   1045   1.1       jtc 	 * the media without reading to it. With tapes we cannot be sure of the
   1046   1.1       jtc 	 * number of physical blocks to skip (we do not know physical block
   1047  1.17     itohy 	 * size at this point), so we must only read forward on tapes!
   1048   1.1       jtc 	 */
   1049  1.24   thorpej 	if (artyp == ISTAPE || artyp == ISPIPE
   1050  1.24   thorpej #ifdef SUPPORT_RMT
   1051  1.24   thorpej 	    || artyp == ISRMT
   1052  1.24   thorpej #endif /* SUPPORT_RMT */
   1053  1.24   thorpej 	    )
   1054   1.1       jtc 		return(0);
   1055   1.1       jtc 
   1056   1.1       jtc 	/*
   1057   1.1       jtc 	 * figure out where we are in the archive
   1058   1.1       jtc 	 */
   1059   1.1       jtc 	if ((cpos = lseek(arfd, (off_t)0L, SEEK_CUR)) >= 0) {
   1060  1.17     itohy 		/*
   1061  1.17     itohy 		 * we can be asked to move farther than there are bytes in this
   1062   1.1       jtc 		 * volume, if so, just go to file end and let normal buf_fill()
   1063   1.1       jtc 		 * deal with the end of file (it will go to next volume by
   1064   1.1       jtc 		 * itself)
   1065  1.17     itohy 		 */
   1066  1.16     itohy 		mpos = cpos + sksz;
   1067  1.16     itohy 		if (artyp == ISREG && mpos > arsb.st_size)
   1068   1.1       jtc 			mpos = arsb.st_size;
   1069  1.16     itohy 		if ((mpos = lseek(arfd, mpos, SEEK_SET)) >= 0) {
   1070  1.16     itohy 			*skipped = mpos - cpos;
   1071   1.1       jtc 			return(0);
   1072  1.16     itohy 		}
   1073  1.16     itohy 	} else {
   1074  1.16     itohy 		if (artyp != ISREG)
   1075  1.16     itohy 			return(0);		/* non-seekable device */
   1076   1.1       jtc 	}
   1077  1.17     itohy 	syswarn(1, errno, "Forward positioning operation on archive failed");
   1078   1.1       jtc 	lstrval = -1;
   1079   1.1       jtc 	return(-1);
   1080   1.1       jtc }
   1081   1.1       jtc 
   1082   1.1       jtc /*
   1083   1.1       jtc  * ar_rev()
   1084   1.1       jtc  *	move the i/o position within the archive backwards the specified byte
   1085   1.1       jtc  *	count as supported by the device. With tapes drives we RESET rdblksz to
   1086   1.1       jtc  *	the PHYSICAL blocksize.
   1087   1.1       jtc  *	NOTE: We should only be called to move backwards so we can rewrite the
   1088   1.1       jtc  *	last records (the trailer) of an archive (APPEND).
   1089   1.1       jtc  * Return:
   1090   1.1       jtc  *	0 if moved the requested distance, -1 on complete failure
   1091   1.1       jtc  */
   1092   1.1       jtc 
   1093   1.1       jtc int
   1094   1.1       jtc ar_rev(off_t sksz)
   1095   1.1       jtc {
   1096   1.1       jtc 	off_t cpos;
   1097  1.17     itohy 	struct mtop mb;
   1098  1.17     itohy 	int phyblk;
   1099   1.1       jtc 
   1100   1.1       jtc 	/*
   1101   1.1       jtc 	 * make sure we do not have try to reverse on a flawed archive
   1102   1.1       jtc 	 */
   1103   1.1       jtc 	if (lstrval < 0)
   1104   1.1       jtc 		return(lstrval);
   1105   1.1       jtc 
   1106   1.1       jtc 	switch(artyp) {
   1107   1.1       jtc 	case ISPIPE:
   1108  1.17     itohy 		if (sksz <= 0)
   1109   1.1       jtc 			break;
   1110   1.1       jtc 		/*
   1111   1.1       jtc 		 * cannot go backwards on these critters
   1112   1.1       jtc 		 */
   1113   1.7  christos 		tty_warn(1, "Reverse positioning on pipes is not supported.");
   1114   1.1       jtc 		lstrval = -1;
   1115   1.1       jtc 		return(-1);
   1116   1.1       jtc 	case ISREG:
   1117   1.1       jtc 	case ISBLK:
   1118   1.1       jtc 	case ISCHR:
   1119   1.1       jtc 	default:
   1120   1.1       jtc 		if (sksz <= 0)
   1121   1.1       jtc 			break;
   1122   1.1       jtc 
   1123   1.1       jtc 		/*
   1124   1.1       jtc 		 * For things other than files, backwards movement has a very
   1125   1.1       jtc 		 * high probability of failure as we really do not know the
   1126   1.1       jtc 		 * true attributes of the device we are talking to (the device
   1127   1.1       jtc 		 * may not even have the ability to lseek() in any direction).
   1128   1.1       jtc 		 * First we figure out where we are in the archive.
   1129   1.1       jtc 		 */
   1130   1.1       jtc 		if ((cpos = lseek(arfd, (off_t)0L, SEEK_CUR)) < 0) {
   1131   1.1       jtc 			syswarn(1, errno,
   1132   1.1       jtc 			   "Unable to obtain current archive byte offset");
   1133   1.1       jtc 			lstrval = -1;
   1134   1.1       jtc 			return(-1);
   1135   1.1       jtc 		}
   1136   1.1       jtc 
   1137   1.1       jtc 		/*
   1138   1.1       jtc 		 * we may try to go backwards past the start when the archive
   1139  1.31       wiz 		 * is only a single record. If this happens and we are on a
   1140  1.31       wiz 		 * multi-volume archive, we need to go to the end of the
   1141   1.1       jtc 		 * previous volume and continue our movement backwards from
   1142   1.1       jtc 		 * there.
   1143   1.1       jtc 		 */
   1144   1.1       jtc 		if ((cpos -= sksz) < (off_t)0L) {
   1145   1.1       jtc 			if (arvol > 1) {
   1146   1.1       jtc 				/*
   1147   1.1       jtc 				 * this should never happen
   1148   1.1       jtc 				 */
   1149   1.7  christos 				tty_warn(1,
   1150   1.7  christos 				    "Reverse position on previous volume.");
   1151   1.1       jtc 				lstrval = -1;
   1152   1.1       jtc 				return(-1);
   1153   1.1       jtc 			}
   1154   1.1       jtc 			cpos = (off_t)0L;
   1155   1.1       jtc 		}
   1156   1.1       jtc 		if (lseek(arfd, cpos, SEEK_SET) < 0) {
   1157   1.1       jtc 			syswarn(1, errno, "Unable to seek archive backwards");
   1158   1.1       jtc 			lstrval = -1;
   1159   1.1       jtc 			return(-1);
   1160   1.1       jtc 		}
   1161   1.1       jtc 		break;
   1162   1.1       jtc 	case ISTAPE:
   1163  1.24   thorpej #ifdef SUPPORT_RMT
   1164  1.23  christos 	case ISRMT:
   1165  1.24   thorpej #endif /* SUPPORT_RMT */
   1166   1.1       jtc 		/*
   1167  1.17     itohy 		 * Calculate and move the proper number of PHYSICAL tape
   1168   1.1       jtc 		 * blocks. If the sksz is not an even multiple of the physical
   1169   1.1       jtc 		 * tape size, we cannot do the move (this should never happen).
   1170  1.31       wiz 		 * (We also cannot handle trailers spread over two vols).
   1171   1.1       jtc 		 * get_phys() also makes sure we are in front of the filemark.
   1172  1.17     itohy 		 */
   1173   1.1       jtc 		if ((phyblk = get_phys()) <= 0) {
   1174   1.1       jtc 			lstrval = -1;
   1175   1.1       jtc 			return(-1);
   1176   1.1       jtc 		}
   1177   1.1       jtc 
   1178   1.1       jtc 		/*
   1179   1.1       jtc 		 * make sure future tape reads only go by physical tape block
   1180   1.1       jtc 		 * size (set rdblksz to the real size).
   1181   1.1       jtc 		 */
   1182   1.1       jtc 		rdblksz = phyblk;
   1183   1.1       jtc 
   1184   1.1       jtc 		/*
   1185   1.1       jtc 		 * if no movement is required, just return (we must be after
   1186   1.1       jtc 		 * get_phys() so the physical blocksize is properly set)
   1187   1.1       jtc 		 */
   1188   1.1       jtc 		if (sksz <= 0)
   1189   1.1       jtc 			break;
   1190   1.1       jtc 
   1191   1.1       jtc 		/*
   1192   1.1       jtc 		 * ok we have to move. Make sure the tape drive can do it.
   1193   1.1       jtc 		 */
   1194   1.1       jtc 		if (sksz % phyblk) {
   1195   1.7  christos 			tty_warn(1,
   1196   1.1       jtc 			    "Tape drive unable to backspace requested amount");
   1197   1.1       jtc 			lstrval = -1;
   1198   1.1       jtc 			return(-1);
   1199   1.1       jtc 		}
   1200   1.1       jtc 
   1201   1.1       jtc 		/*
   1202   1.1       jtc 		 * move backwards the requested number of bytes
   1203   1.1       jtc 		 */
   1204   1.1       jtc 		mb.mt_op = MTBSR;
   1205   1.1       jtc 		mb.mt_count = sksz/phyblk;
   1206  1.24   thorpej 		if (
   1207  1.24   thorpej #ifdef SUPPORT_RMT
   1208  1.24   thorpej 		    rmtioctl(arfd, MTIOCTOP, &mb)
   1209  1.24   thorpej #else
   1210  1.24   thorpej 		    ioctl(arfd, MTIOCTOP, &mb)
   1211  1.24   thorpej #endif /* SUPPORT_RMT */
   1212  1.24   thorpej 		    < 0) {
   1213  1.32     grant 			syswarn(1, errno, "Unable to backspace tape %ld blocks.",
   1214  1.11  christos 			    (long) mb.mt_count);
   1215   1.1       jtc 			lstrval = -1;
   1216   1.1       jtc 			return(-1);
   1217   1.1       jtc 		}
   1218   1.1       jtc 		break;
   1219   1.1       jtc 	}
   1220   1.1       jtc 	lstrval = 1;
   1221   1.1       jtc 	return(0);
   1222   1.1       jtc }
   1223   1.1       jtc 
   1224   1.1       jtc /*
   1225   1.1       jtc  * get_phys()
   1226   1.1       jtc  *	Determine the physical block size on a tape drive. We need the physical
   1227  1.17     itohy  *	block size so we know how many bytes we skip over when we move with
   1228   1.1       jtc  *	mtio commands. We also make sure we are BEFORE THE TAPE FILEMARK when
   1229   1.1       jtc  *	return.
   1230   1.1       jtc  *	This is one really SLOW routine...
   1231   1.1       jtc  * Return:
   1232   1.1       jtc  *	physical block size if ok (ok > 0), -1 otherwise
   1233   1.1       jtc  */
   1234   1.1       jtc 
   1235   1.1       jtc static int
   1236   1.1       jtc get_phys(void)
   1237   1.1       jtc {
   1238   1.6       tls 	int padsz = 0;
   1239   1.6       tls 	int res;
   1240   1.6       tls 	int phyblk;
   1241   1.1       jtc 	struct mtop mb;
   1242   1.1       jtc 	char scbuf[MAXBLK];
   1243   1.1       jtc 
   1244   1.1       jtc 	/*
   1245   1.1       jtc 	 * move to the file mark, and then back up one record and read it.
   1246   1.1       jtc 	 * this should tell us the physical record size the tape is using.
   1247   1.1       jtc 	 */
   1248   1.1       jtc 	if (lstrval == 1) {
   1249   1.1       jtc 		/*
   1250   1.1       jtc 		 * we know we are at file mark when we get back a 0 from
   1251   1.1       jtc 		 * read()
   1252   1.1       jtc 		 */
   1253  1.24   thorpej #ifdef SUPPORT_RMT
   1254  1.24   thorpej 		while ((res = rmtread_with_restart(arfd,
   1255  1.24   thorpej 						   scbuf, sizeof(scbuf))) > 0)
   1256  1.24   thorpej #else
   1257  1.24   thorpej 		while ((res = read_with_restart(arfd,
   1258  1.24   thorpej 						scbuf, sizeof(scbuf))) > 0)
   1259  1.24   thorpej #endif /* SUPPORT_RMT */
   1260   1.1       jtc 			padsz += res;
   1261   1.1       jtc 		if (res < 0) {
   1262   1.1       jtc 			syswarn(1, errno, "Unable to locate tape filemark.");
   1263   1.1       jtc 			return(-1);
   1264   1.1       jtc 		}
   1265   1.1       jtc 	}
   1266   1.1       jtc 
   1267   1.1       jtc 	/*
   1268   1.1       jtc 	 * move backwards over the file mark so we are at the end of the
   1269   1.1       jtc 	 * last record.
   1270   1.1       jtc 	 */
   1271   1.1       jtc 	mb.mt_op = MTBSF;
   1272   1.1       jtc 	mb.mt_count = 1;
   1273  1.24   thorpej 	if (
   1274  1.24   thorpej #ifdef SUPPORT_RMT
   1275  1.24   thorpej 	    rmtioctl(arfd, MTIOCTOP, &mb)
   1276  1.24   thorpej #else
   1277  1.24   thorpej 	    ioctl(arfd, MTIOCTOP, &mb)
   1278  1.24   thorpej #endif /* SUPPORT_RMT */
   1279  1.24   thorpej 	    < 0) {
   1280   1.1       jtc 		syswarn(1, errno, "Unable to backspace over tape filemark.");
   1281   1.1       jtc 		return(-1);
   1282   1.1       jtc 	}
   1283   1.1       jtc 
   1284   1.1       jtc 	/*
   1285   1.1       jtc 	 * move backwards so we are in front of the last record and read it to
   1286   1.1       jtc 	 * get physical tape blocksize.
   1287   1.1       jtc 	 */
   1288   1.1       jtc 	mb.mt_op = MTBSR;
   1289   1.1       jtc 	mb.mt_count = 1;
   1290  1.24   thorpej 	if (
   1291  1.24   thorpej #ifdef SUPPORT_RMT
   1292  1.24   thorpej 	    rmtioctl(arfd, MTIOCTOP, &mb)
   1293  1.24   thorpej #else
   1294  1.24   thorpej 	    ioctl(arfd, MTIOCTOP, &mb)
   1295  1.24   thorpej #endif /* SUPPORT_RMT */
   1296  1.24   thorpej 	    < 0) {
   1297   1.1       jtc 		syswarn(1, errno, "Unable to backspace over last tape block.");
   1298   1.1       jtc 		return(-1);
   1299   1.1       jtc 	}
   1300  1.24   thorpej 	if ((phyblk =
   1301  1.24   thorpej #ifdef SUPPORT_RMT
   1302  1.24   thorpej 	     rmtread_with_restart(arfd, scbuf, sizeof(scbuf))
   1303  1.24   thorpej #else
   1304  1.24   thorpej 	     read_with_restart(arfd, scbuf, sizeof(scbuf))
   1305  1.24   thorpej #endif /* SUPPORT_RMT */
   1306  1.24   thorpej 	    ) <= 0) {
   1307   1.1       jtc 		syswarn(1, errno, "Cannot determine archive tape blocksize.");
   1308   1.1       jtc 		return(-1);
   1309   1.1       jtc 	}
   1310   1.1       jtc 
   1311   1.1       jtc 	/*
   1312  1.17     itohy 	 * read forward to the file mark, then back up in front of the filemark
   1313   1.1       jtc 	 * (this is a bit paranoid, but should be safe to do).
   1314   1.1       jtc 	 */
   1315  1.24   thorpej 	while ((res =
   1316  1.24   thorpej #ifdef SUPPORT_RMT
   1317  1.24   thorpej 		rmtread_with_restart(arfd, scbuf, sizeof(scbuf))
   1318  1.24   thorpej #else
   1319  1.24   thorpej 		read_with_restart(arfd, scbuf, sizeof(scbuf))
   1320  1.24   thorpej #endif /* SUPPORT_RMT */
   1321  1.24   thorpej 	       ) > 0)
   1322   1.1       jtc 		;
   1323   1.1       jtc 	if (res < 0) {
   1324   1.1       jtc 		syswarn(1, errno, "Unable to locate tape filemark.");
   1325   1.1       jtc 		return(-1);
   1326   1.1       jtc 	}
   1327   1.1       jtc 	mb.mt_op = MTBSF;
   1328   1.1       jtc 	mb.mt_count = 1;
   1329  1.24   thorpej 	if (
   1330  1.24   thorpej #ifdef SUPPORT_RMT
   1331  1.24   thorpej 	    rmtioctl(arfd, MTIOCTOP, &mb)
   1332  1.24   thorpej #else
   1333  1.24   thorpej 	    ioctl(arfd, MTIOCTOP, &mb)
   1334  1.24   thorpej #endif /* SUPPORT_RMT */
   1335  1.24   thorpej 	    < 0) {
   1336   1.1       jtc 		syswarn(1, errno, "Unable to backspace over tape filemark.");
   1337   1.1       jtc 		return(-1);
   1338   1.1       jtc 	}
   1339   1.1       jtc 
   1340   1.1       jtc 	/*
   1341   1.1       jtc 	 * set lstrval so we know that the filemark has not been seen
   1342   1.1       jtc 	 */
   1343   1.1       jtc 	lstrval = 1;
   1344   1.1       jtc 
   1345   1.1       jtc 	/*
   1346   1.1       jtc 	 * return if there was no padding
   1347   1.1       jtc 	 */
   1348   1.1       jtc 	if (padsz == 0)
   1349   1.1       jtc 		return(phyblk);
   1350   1.1       jtc 
   1351   1.1       jtc 	/*
   1352   1.1       jtc 	 * make sure we can move backwards over the padding. (this should
   1353   1.1       jtc 	 * never fail).
   1354   1.1       jtc 	 */
   1355   1.1       jtc 	if (padsz % phyblk) {
   1356   1.7  christos 		tty_warn(1, "Tape drive unable to backspace requested amount");
   1357   1.1       jtc 		return(-1);
   1358   1.1       jtc 	}
   1359   1.1       jtc 
   1360   1.1       jtc 	/*
   1361   1.1       jtc 	 * move backwards over the padding so the head is where it was when
   1362   1.1       jtc 	 * we were first called (if required).
   1363   1.1       jtc 	 */
   1364   1.1       jtc 	mb.mt_op = MTBSR;
   1365   1.1       jtc 	mb.mt_count = padsz/phyblk;
   1366  1.24   thorpej 	if (
   1367  1.24   thorpej #ifdef SUPPORT_RMT
   1368  1.24   thorpej 	    rmtioctl(arfd, MTIOCTOP, &mb)
   1369  1.24   thorpej #else
   1370  1.24   thorpej 	    ioctl(arfd, MTIOCTOP, &mb)
   1371  1.24   thorpej #endif /* SUPPORT_RMT */
   1372  1.24   thorpej 	    < 0) {
   1373  1.32     grant 		syswarn(1, errno,
   1374  1.32     grant 		    "Unable to backspace tape over %ld pad blocks",
   1375  1.11  christos 		    (long)mb.mt_count);
   1376   1.1       jtc 		return(-1);
   1377   1.1       jtc 	}
   1378   1.1       jtc 	return(phyblk);
   1379   1.1       jtc }
   1380   1.1       jtc 
   1381   1.1       jtc /*
   1382   1.1       jtc  * ar_next()
   1383   1.1       jtc  *	prompts the user for the next volume in this archive. For some devices
   1384   1.1       jtc  *	we may allow the media to be changed. Otherwise a new archive is
   1385   1.1       jtc  *	prompted for. By pax spec, if there is no controlling tty or an eof is
   1386   1.1       jtc  *	read on tty input, we must quit pax.
   1387   1.1       jtc  * Return:
   1388   1.1       jtc  *	0 when ready to continue, -1 when all done
   1389   1.1       jtc  */
   1390   1.1       jtc 
   1391   1.1       jtc int
   1392   1.1       jtc ar_next(void)
   1393   1.1       jtc {
   1394   1.1       jtc 	char buf[PAXPATHLEN+2];
   1395   1.1       jtc 	static int freeit = 0;
   1396   1.1       jtc 	sigset_t o_mask;
   1397   1.1       jtc 
   1398   1.1       jtc 	/*
   1399   1.1       jtc 	 * WE MUST CLOSE THE DEVICE. A lot of devices must see last close, (so
   1400   1.1       jtc 	 * things like writing EOF etc will be done) (Watch out ar_close() can
   1401   1.1       jtc 	 * also be called via a signal handler, so we must prevent a race.
   1402   1.1       jtc 	 */
   1403   1.1       jtc 	if (sigprocmask(SIG_BLOCK, &s_mask, &o_mask) < 0)
   1404   1.1       jtc 		syswarn(0, errno, "Unable to set signal mask");
   1405   1.1       jtc 	ar_close();
   1406   1.1       jtc 	if (sigprocmask(SIG_SETMASK, &o_mask, (sigset_t *)NULL) < 0)
   1407   1.1       jtc 		syswarn(0, errno, "Unable to restore signal mask");
   1408   1.1       jtc 
   1409  1.34  christos 	if (done || !wr_trail || force_one_volume)
   1410   1.1       jtc 		return(-1);
   1411   1.1       jtc 
   1412  1.35  christos 	if (!is_gnutar)
   1413  1.35  christos 		tty_prnt("\nATTENTION! %s archive volume change required.\n",
   1414  1.35  christos 		    argv0);
   1415   1.1       jtc 
   1416   1.1       jtc 	/*
   1417   1.1       jtc 	 * if i/o is on stdin or stdout, we cannot reopen it (we do not know
   1418   1.1       jtc 	 * the name), the user will be forced to type it in.
   1419   1.1       jtc 	 */
   1420   1.1       jtc 	if (strcmp(arcname, STDO) && strcmp(arcname, STDN) && (artyp != ISREG)
   1421   1.1       jtc 	    && (artyp != ISPIPE)) {
   1422  1.24   thorpej 		if (artyp == ISTAPE
   1423  1.24   thorpej #ifdef SUPPORT_RMT
   1424  1.24   thorpej 		    || artyp == ISRMT
   1425  1.24   thorpej #endif /* SUPPORT_RMT */
   1426  1.24   thorpej 		    ) {
   1427   1.1       jtc 			tty_prnt("%s ready for archive tape volume: %d\n",
   1428   1.1       jtc 				arcname, arvol);
   1429   1.1       jtc 			tty_prnt("Load the NEXT TAPE on the tape drive");
   1430   1.1       jtc 		} else {
   1431   1.1       jtc 			tty_prnt("%s ready for archive volume: %d\n",
   1432   1.1       jtc 				arcname, arvol);
   1433   1.1       jtc 			tty_prnt("Load the NEXT STORAGE MEDIA (if required)");
   1434   1.1       jtc 		}
   1435   1.1       jtc 
   1436   1.1       jtc 		if ((act == ARCHIVE) || (act == APPND))
   1437   1.1       jtc 			tty_prnt(" and make sure it is WRITE ENABLED.\n");
   1438   1.1       jtc 		else
   1439   1.1       jtc 			tty_prnt("\n");
   1440   1.1       jtc 
   1441   1.1       jtc 		for(;;) {
   1442   1.1       jtc 			tty_prnt("Type \"y\" to continue, \".\" to quit %s,",
   1443   1.1       jtc 				argv0);
   1444   1.1       jtc 			tty_prnt(" or \"s\" to switch to new device.\nIf you");
   1445   1.1       jtc 			tty_prnt(" cannot change storage media, type \"s\"\n");
   1446   1.1       jtc 			tty_prnt("Is the device ready and online? > ");
   1447   1.1       jtc 
   1448   1.1       jtc 			if ((tty_read(buf,sizeof(buf))<0) || !strcmp(buf,".")){
   1449   1.1       jtc 				done = 1;
   1450   1.1       jtc 				lstrval = -1;
   1451   1.1       jtc 				tty_prnt("Quitting %s!\n", argv0);
   1452   1.1       jtc 				vfpart = 0;
   1453   1.1       jtc 				return(-1);
   1454   1.1       jtc 			}
   1455   1.1       jtc 
   1456   1.1       jtc 			if ((buf[0] == '\0') || (buf[1] != '\0')) {
   1457   1.1       jtc 				tty_prnt("%s unknown command, try again\n",buf);
   1458   1.1       jtc 				continue;
   1459   1.1       jtc 			}
   1460   1.1       jtc 
   1461   1.1       jtc 			switch (buf[0]) {
   1462   1.1       jtc 			case 'y':
   1463   1.1       jtc 			case 'Y':
   1464   1.1       jtc 				/*
   1465   1.1       jtc 				 * we are to continue with the same device
   1466   1.1       jtc 				 */
   1467  1.17     itohy 				if (ar_open(arcname) >= 0)
   1468   1.1       jtc 					return(0);
   1469   1.1       jtc 				tty_prnt("Cannot re-open %s, try again\n",
   1470   1.1       jtc 					arcname);
   1471   1.1       jtc 				continue;
   1472   1.1       jtc 			case 's':
   1473   1.1       jtc 			case 'S':
   1474   1.1       jtc 				/*
   1475   1.1       jtc 				 * user wants to open a different device
   1476   1.1       jtc 				 */
   1477   1.1       jtc 				tty_prnt("Switching to a different archive\n");
   1478   1.1       jtc 				break;
   1479   1.1       jtc 			default:
   1480   1.1       jtc 				tty_prnt("%s unknown command, try again\n",buf);
   1481   1.1       jtc 				continue;
   1482   1.1       jtc 			}
   1483   1.1       jtc 			break;
   1484   1.1       jtc 		}
   1485  1.35  christos 	} else {
   1486  1.35  christos 		if (is_gnutar) {
   1487  1.35  christos 			tty_warn(1, "Unexpected EOF on archive file");
   1488  1.35  christos 			return -1;
   1489  1.35  christos 		}
   1490   1.1       jtc 		tty_prnt("Ready for archive volume: %d\n", arvol);
   1491  1.35  christos 	}
   1492   1.1       jtc 
   1493   1.1       jtc 	/*
   1494   1.1       jtc 	 * have to go to a different archive
   1495   1.1       jtc 	 */
   1496   1.1       jtc 	for (;;) {
   1497   1.1       jtc 		tty_prnt("Input archive name or \".\" to quit %s.\n", argv0);
   1498   1.1       jtc 		tty_prnt("Archive name > ");
   1499   1.1       jtc 
   1500   1.1       jtc 		if ((tty_read(buf, sizeof(buf)) < 0) || !strcmp(buf, ".")) {
   1501   1.1       jtc 			done = 1;
   1502   1.1       jtc 			lstrval = -1;
   1503   1.1       jtc 			tty_prnt("Quitting %s!\n", argv0);
   1504   1.1       jtc 			vfpart = 0;
   1505   1.1       jtc 			return(-1);
   1506   1.1       jtc 		}
   1507   1.1       jtc 		if (buf[0] == '\0') {
   1508   1.1       jtc 			tty_prnt("Empty file name, try again\n");
   1509   1.1       jtc 			continue;
   1510   1.1       jtc 		}
   1511  1.17     itohy 		if (!strcmp(buf, "..")) {
   1512  1.17     itohy 			tty_prnt("Illegal file name: .. try again\n");
   1513  1.17     itohy 			continue;
   1514  1.17     itohy 		}
   1515   1.1       jtc 		if (strlen(buf) > PAXPATHLEN) {
   1516   1.1       jtc 			tty_prnt("File name too long, try again\n");
   1517   1.1       jtc 			continue;
   1518   1.1       jtc 		}
   1519   1.1       jtc 
   1520   1.1       jtc 		/*
   1521   1.1       jtc 		 * try to open new archive
   1522   1.1       jtc 		 */
   1523   1.1       jtc 		if (ar_open(buf) >= 0) {
   1524   1.1       jtc 			if (freeit) {
   1525   1.9   mycroft 				(void)free((char *)arcname);
   1526   1.1       jtc 				freeit = 0;
   1527   1.1       jtc 			}
   1528   1.1       jtc 			if ((arcname = strdup(buf)) == NULL) {
   1529   1.1       jtc 				done = 1;
   1530   1.1       jtc 				lstrval = -1;
   1531   1.7  christos 				tty_warn(0, "Cannot save archive name.");
   1532   1.1       jtc 				return(-1);
   1533   1.1       jtc 			}
   1534   1.1       jtc 			freeit = 1;
   1535   1.1       jtc 			break;
   1536   1.1       jtc 		}
   1537   1.1       jtc 		tty_prnt("Cannot open %s, try again\n", buf);
   1538   1.1       jtc 		continue;
   1539   1.1       jtc 	}
   1540   1.1       jtc 	return(0);
   1541   1.5       mrg }
   1542   1.5       mrg 
   1543   1.5       mrg /*
   1544   1.5       mrg  * ar_start_gzip()
   1545  1.33       wiz  * starts the compression/decompression process as a child, using magic
   1546  1.33       wiz  * to keep the fd the same in the calling function (parent). possible
   1547  1.33       wiz  * programs are GZIP_CMD, BZIP2_CMD, and COMPRESS_CMD.
   1548   1.5       mrg  */
   1549   1.5       mrg void
   1550  1.23  christos ar_start_gzip(int fd, const char *gzp, int wr)
   1551   1.5       mrg {
   1552   1.5       mrg 	int fds[2];
   1553  1.20     lukem 	const char *gzip_flags;
   1554   1.5       mrg 
   1555   1.5       mrg 	if (pipe(fds) < 0)
   1556   1.5       mrg 		err(1, "could not pipe");
   1557  1.23  christos 	zpid = fork();
   1558  1.23  christos 	if (zpid < 0)
   1559   1.5       mrg 		err(1, "could not fork");
   1560   1.5       mrg 
   1561   1.5       mrg 	/* parent */
   1562  1.23  christos 	if (zpid) {
   1563  1.23  christos 		if (wr)
   1564   1.5       mrg 			dup2(fds[1], fd);
   1565  1.23  christos 		else
   1566   1.5       mrg 			dup2(fds[0], fd);
   1567   1.5       mrg 		close(fds[0]);
   1568   1.5       mrg 		close(fds[1]);
   1569   1.5       mrg 	} else {
   1570  1.23  christos 		if (wr) {
   1571   1.5       mrg 			dup2(fds[0], STDIN_FILENO);
   1572   1.5       mrg 			dup2(fd, STDOUT_FILENO);
   1573   1.5       mrg 			gzip_flags = "-c";
   1574  1.23  christos 		} else {
   1575   1.5       mrg 			dup2(fds[1], STDOUT_FILENO);
   1576   1.5       mrg 			dup2(fd, STDIN_FILENO);
   1577   1.5       mrg 			gzip_flags = "-dc";
   1578   1.5       mrg 		}
   1579   1.5       mrg 		close(fds[0]);
   1580   1.5       mrg 		close(fds[1]);
   1581  1.23  christos 		if (execlp(gzp, gzp, gzip_flags, NULL) < 0)
   1582   1.5       mrg 			err(1, "could not exec");
   1583   1.5       mrg 		/* NOTREACHED */
   1584   1.5       mrg 	}
   1585  1.13  christos }
   1586  1.13  christos 
   1587  1.13  christos static const char *
   1588  1.13  christos timefmt(buf, size, sz, tm)
   1589  1.13  christos 	char *buf;
   1590  1.13  christos 	size_t size;
   1591  1.13  christos 	off_t sz;
   1592  1.13  christos 	time_t tm;
   1593  1.13  christos {
   1594  1.20     lukem 	(void)snprintf(buf, size, "%lu secs (" OFFT_F " bytes/sec)",
   1595  1.20     lukem 	    (unsigned long)tm, (OFFT_T)(sz / tm));
   1596  1.13  christos 	return buf;
   1597  1.13  christos }
   1598  1.13  christos 
   1599  1.13  christos static const char *
   1600  1.13  christos sizefmt(buf, size, sz)
   1601  1.13  christos 	char *buf;
   1602  1.13  christos 	size_t size;
   1603  1.13  christos 	off_t sz;
   1604  1.13  christos {
   1605  1.20     lukem 	(void)snprintf(buf, size, OFFT_F " bytes", (OFFT_T)sz);
   1606  1.13  christos 	return buf;
   1607  1.13  christos }
   1608  1.13  christos 
   1609  1.13  christos void
   1610  1.13  christos ar_summary(int n)
   1611  1.13  christos {
   1612  1.13  christos 	time_t secs;
   1613  1.13  christos 	int len;
   1614  1.13  christos 	char buf[MAXPATHLEN];
   1615  1.13  christos 	char tbuf[MAXPATHLEN/4];
   1616  1.13  christos 	char s1buf[MAXPATHLEN/8];
   1617  1.13  christos 	char s2buf[MAXPATHLEN/8];
   1618  1.13  christos 	FILE *outf;
   1619  1.13  christos 
   1620  1.13  christos 	if (act == LIST)
   1621  1.13  christos 		outf = stdout;
   1622  1.13  christos 	else
   1623  1.13  christos 		outf = stderr;
   1624  1.13  christos 
   1625  1.13  christos 	/*
   1626  1.13  christos 	 * If we are called from a signal (n != 0), use snprintf(3) so that we
   1627  1.13  christos 	 * don't reenter stdio(3).
   1628  1.13  christos 	 */
   1629  1.13  christos 	(void)time(&secs);
   1630  1.13  christos 	if ((secs -= starttime) == 0)
   1631  1.13  christos 		secs = 1;
   1632  1.13  christos 
   1633  1.13  christos 	/*
   1634  1.13  christos 	 * If we have not determined the format yet, we just say how many bytes
   1635  1.13  christos 	 * we have skipped over looking for a header to id. there is no way we
   1636  1.13  christos 	 * could have written anything yet.
   1637  1.13  christos 	 */
   1638  1.13  christos 	if (frmt == NULL) {
   1639  1.17     itohy 		len = snprintf(buf, sizeof(buf),
   1640  1.13  christos 		    "unknown format, %s skipped in %s\n",
   1641  1.13  christos 		    sizefmt(s1buf, sizeof(s1buf), rdcnt),
   1642  1.13  christos 		    timefmt(tbuf, sizeof(tbuf), rdcnt, secs));
   1643  1.13  christos 		if (n == 0)
   1644  1.13  christos 			(void)fprintf(outf, "%s: %s", argv0, buf);
   1645  1.17     itohy 		else
   1646  1.13  christos 			(void)write(STDERR_FILENO, buf, len);
   1647  1.13  christos 		return;
   1648  1.13  christos 	}
   1649  1.13  christos 
   1650  1.13  christos 
   1651  1.13  christos 	if (n != 0) {
   1652  1.13  christos 		len = snprintf(buf, sizeof(buf), "Working on `%s' (%s)\n",
   1653  1.13  christos 		    archd.name, sizefmt(s1buf, sizeof(s1buf), archd.sb.st_size));
   1654  1.13  christos 		(void)write(STDERR_FILENO, buf, len);
   1655  1.13  christos 	}
   1656  1.13  christos 
   1657  1.13  christos 
   1658  1.13  christos 	len = snprintf(buf, sizeof(buf),
   1659  1.13  christos 	    "%s vol %d, %lu files, %s read, %s written in %s\n",
   1660  1.13  christos 	    frmt->name, arvol-1, (unsigned long)flcnt,
   1661  1.13  christos 	    sizefmt(s1buf, sizeof(s1buf), rdcnt),
   1662  1.13  christos 	    sizefmt(s2buf, sizeof(s2buf), wrcnt),
   1663  1.13  christos 	    timefmt(tbuf, sizeof(tbuf), rdcnt + wrcnt, secs));
   1664  1.13  christos 	if (n == 0)
   1665  1.13  christos 		(void)fprintf(outf, "%s: %s", argv0, buf);
   1666  1.13  christos 	else
   1667  1.13  christos 		(void)write(STDERR_FILENO, buf, strlen(buf));
   1668  1.14        is }
   1669  1.14        is 
   1670  1.14        is /*
   1671  1.14        is  * ar_dochdir(name)
   1672  1.14        is  *	change directory to name, and remember where we came from and
   1673  1.14        is  *	where we change to (for ar_open).
   1674  1.14        is  *
   1675  1.14        is  *	Maybe we could try to be smart and only do the actual chdir
   1676  1.14        is  *	when necessary to write a file read from the archive, but this
   1677  1.14        is  *	is not easy to get right given the pax code structure.
   1678  1.14        is  *
   1679  1.14        is  *	Be sure to not leak descriptors!
   1680  1.14        is  *
   1681  1.14        is  *	We are called N * M times when extracting, and N times when
   1682  1.14        is  *	writing archives, where
   1683  1.14        is  *	N:	number of -C options
   1684  1.14        is  *	M:	number of files in archive
   1685  1.17     itohy  *
   1686  1.14        is  * Returns 0 if all went well, else -1.
   1687  1.14        is  */
   1688  1.14        is 
   1689  1.14        is int
   1690  1.14        is ar_dochdir(char *name)
   1691  1.14        is {
   1692  1.23  christos 	/* First fchdir() back... */
   1693  1.23  christos 	if (fchdir(cwdfd) < 0) {
   1694  1.23  christos 		syswarn(1, errno, "Can't fchdir to starting directory");
   1695  1.23  christos 		return(-1);
   1696  1.14        is 	}
   1697  1.23  christos 	if (chdir(name) < 0) {
   1698  1.23  christos 		syswarn(1, errno, "Can't chdir to %s", name);
   1699  1.23  christos 		return(-1);
   1700  1.14        is 	}
   1701  1.14        is 	return (0);
   1702   1.1       jtc }
   1703