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rmtlib.c revision 1.14
      1  1.14    lukem /*	$NetBSD: rmtlib.c,v 1.14 2001/01/04 15:30:15 lukem Exp $	*/
      2   1.1      jtc 
      3   1.1      jtc /*
      4   1.1      jtc  *	rmt --- remote tape emulator subroutines
      5   1.1      jtc  *
      6   1.1      jtc  *	Originally written by Jeff Lee, modified some by Arnold Robbins
      7   1.1      jtc  *
      8   1.1      jtc  *	WARNING:  The man page rmt(8) for /etc/rmt documents the remote mag
      9   1.1      jtc  *	tape protocol which rdump and rrestore use.  Unfortunately, the man
     10   1.1      jtc  *	page is *WRONG*.  The author of the routines I'm including originally
     11   1.1      jtc  *	wrote his code just based on the man page, and it didn't work, so he
     12   1.1      jtc  *	went to the rdump source to figure out why.  The only thing he had to
     13   1.1      jtc  *	change was to check for the 'F' return code in addition to the 'E',
     14   1.1      jtc  *	and to separate the various arguments with \n instead of a space.  I
     15   1.1      jtc  *	personally don't think that this is much of a problem, but I wanted to
     16   1.1      jtc  *	point it out.
     17   1.1      jtc  *	-- Arnold Robbins
     18   1.1      jtc  *
     19   1.1      jtc  *	Redone as a library that can replace open, read, write, etc, by
     20   1.1      jtc  *	Fred Fish, with some additional work by Arnold Robbins.
     21   1.1      jtc  */
     22  1.11   simonb 
     23   1.1      jtc /*
     24   1.1      jtc  *	MAXUNIT --- Maximum number of remote tape file units
     25   1.1      jtc  *
     26   1.1      jtc  *	READ --- Return the number of the read side file descriptor
     27   1.1      jtc  *	WRITE --- Return the number of the write side file descriptor
     28   1.1      jtc  */
     29   1.1      jtc 
     30   1.1      jtc #define RMTIOCTL	1
     31   1.6    mikel /* #define USE_REXEC	1 */	/* rexec code courtesy of Dan Kegel, srs!dan */
     32   1.1      jtc 
     33   1.1      jtc #include <sys/types.h>
     34  1.12    lukem #include <sys/stat.h>
     35   1.1      jtc 
     36   1.1      jtc #ifdef RMTIOCTL
     37   1.1      jtc #include <sys/ioctl.h>
     38   1.1      jtc #include <sys/mtio.h>
     39   1.1      jtc #endif
     40   1.1      jtc 
     41  1.12    lukem #include <assert.h>
     42  1.12    lukem #include <errno.h>
     43  1.12    lukem #include <fcntl.h>
     44  1.12    lukem #include <signal.h>
     45  1.14    lukem #include <stdarg.h>
     46  1.12    lukem #include <stdio.h>
     47  1.12    lukem #include <stdlib.h>
     48  1.12    lukem #include <string.h>
     49  1.12    lukem #include <unistd.h>
     50  1.12    lukem 
     51   1.1      jtc #ifdef USE_REXEC
     52   1.1      jtc #include <netdb.h>
     53   1.1      jtc #endif
     54   1.1      jtc 
     55   1.9  thorpej #define __RMTLIB_PRIVATE
     56   1.9  thorpej #include <rmt.h>		/* get prototypes for remapped functions */
     57   1.9  thorpej 
     58  1.10      mrg #include "pathnames.h"
     59  1.10      mrg 
     60  1.14    lukem static	int	_rmt_close(int);
     61  1.14    lukem static	int	_rmt_ioctl(int, unsigned long, void *);
     62  1.14    lukem static	off_t	_rmt_lseek(int, off_t, int);
     63  1.14    lukem static	int	_rmt_open(const char *, int, int);
     64  1.14    lukem static	ssize_t	_rmt_read(int, void *, size_t);
     65  1.14    lukem static	ssize_t	_rmt_write(int, const void *, size_t);
     66  1.14    lukem static	int	command(int, char *);
     67  1.14    lukem static	int	remdev(const char *);
     68  1.14    lukem static	void	rmtabort(int);
     69  1.14    lukem static	int	status(int);
     70   1.7    lukem 
     71  1.14    lukem 	int	isrmt(int);
     72   1.7    lukem 
     73   1.7    lukem 
     74   1.1      jtc #define BUFMAGIC	64	/* a magic number for buffer sizes */
     75   1.1      jtc #define MAXUNIT	4
     76   1.1      jtc 
     77   1.1      jtc #define READ(fd)	(Ctp[fd][0])
     78   1.1      jtc #define WRITE(fd)	(Ptc[fd][1])
     79   1.1      jtc 
     80   1.6    mikel static int Ctp[MAXUNIT][2] = { {-1, -1}, {-1, -1}, {-1, -1}, {-1, -1} };
     81   1.6    mikel static int Ptc[MAXUNIT][2] = { {-1, -1}, {-1, -1}, {-1, -1}, {-1, -1} };
     82   1.1      jtc 
     83   1.1      jtc 
     84   1.1      jtc /*
     85   1.2      jtc  *	rmtabort --- close off a remote tape connection
     86   1.1      jtc  */
     87   1.7    lukem static void
     88  1.14    lukem rmtabort(int fildes)
     89   1.1      jtc {
     90  1.14    lukem 
     91   1.1      jtc 	close(READ(fildes));
     92   1.1      jtc 	close(WRITE(fildes));
     93   1.1      jtc 	READ(fildes) = -1;
     94   1.1      jtc 	WRITE(fildes) = -1;
     95   1.1      jtc }
     96   1.1      jtc 
     97   1.1      jtc 
     98   1.1      jtc /*
     99   1.1      jtc  *	command --- attempt to perform a remote tape command
    100   1.1      jtc  */
    101   1.7    lukem static int
    102  1.14    lukem command(int fildes, char *buf)
    103   1.1      jtc {
    104  1.14    lukem 	size_t blen;
    105  1.14    lukem 	void (*pstat)(int);
    106   1.1      jtc 
    107  1.12    lukem 	_DIAGASSERT(buf != NULL);
    108  1.12    lukem 
    109   1.1      jtc /*
    110   1.1      jtc  *	save current pipe status and try to make the request
    111   1.1      jtc  */
    112   1.1      jtc 
    113   1.1      jtc 	blen = strlen(buf);
    114   1.1      jtc 	pstat = signal(SIGPIPE, SIG_IGN);
    115  1.14    lukem 	if (write(WRITE(fildes), buf, blen) == blen) {
    116   1.1      jtc 		signal(SIGPIPE, pstat);
    117   1.1      jtc 		return(0);
    118   1.1      jtc 	}
    119   1.1      jtc 
    120   1.1      jtc /*
    121   1.1      jtc  *	something went wrong. close down and go home
    122   1.1      jtc  */
    123   1.1      jtc 
    124   1.1      jtc 	signal(SIGPIPE, pstat);
    125   1.2      jtc 	rmtabort(fildes);
    126   1.1      jtc 
    127   1.1      jtc 	errno = EIO;
    128   1.1      jtc 	return(-1);
    129   1.1      jtc }
    130   1.1      jtc 
    131   1.1      jtc 
    132   1.1      jtc /*
    133   1.1      jtc  *	status --- retrieve the status from the pipe
    134   1.1      jtc  */
    135   1.7    lukem static int
    136  1.14    lukem status(int fildes)
    137   1.1      jtc {
    138   1.1      jtc 	int i;
    139   1.1      jtc 	char c, *cp;
    140   1.1      jtc 	char buffer[BUFMAGIC];
    141   1.1      jtc 
    142   1.1      jtc /*
    143   1.1      jtc  *	read the reply command line
    144   1.1      jtc  */
    145   1.1      jtc 
    146  1.14    lukem 	for (i = 0, cp = buffer; i < BUFMAGIC; i++, cp++) {
    147  1.14    lukem 		if (read(READ(fildes), cp, 1) != 1) {
    148   1.2      jtc 			rmtabort(fildes);
    149   1.1      jtc 			errno = EIO;
    150   1.1      jtc 			return(-1);
    151   1.1      jtc 		}
    152  1.14    lukem 		if (*cp == '\n') {
    153   1.1      jtc 			*cp = 0;
    154   1.1      jtc 			break;
    155   1.1      jtc 		}
    156   1.1      jtc 	}
    157   1.1      jtc 
    158  1.14    lukem 	if (i == BUFMAGIC) {
    159   1.2      jtc 		rmtabort(fildes);
    160   1.1      jtc 		errno = EIO;
    161   1.1      jtc 		return(-1);
    162   1.1      jtc 	}
    163   1.1      jtc 
    164   1.1      jtc /*
    165   1.1      jtc  *	check the return status
    166   1.1      jtc  */
    167   1.1      jtc 
    168   1.1      jtc 	for (cp = buffer; *cp; cp++)
    169   1.1      jtc 		if (*cp != ' ')
    170   1.1      jtc 			break;
    171   1.1      jtc 
    172  1.14    lukem 	if (*cp == 'E' || *cp == 'F') {
    173   1.1      jtc 		errno = atoi(cp + 1);
    174   1.1      jtc 		while (read(READ(fildes), &c, 1) == 1)
    175   1.1      jtc 			if (c == '\n')
    176   1.1      jtc 				break;
    177   1.1      jtc 
    178   1.1      jtc 		if (*cp == 'F')
    179   1.2      jtc 			rmtabort(fildes);
    180   1.1      jtc 
    181   1.1      jtc 		return(-1);
    182   1.1      jtc 	}
    183   1.1      jtc 
    184   1.1      jtc /*
    185   1.1      jtc  *	check for mis-synced pipes
    186   1.1      jtc  */
    187   1.1      jtc 
    188  1.14    lukem 	if (*cp != 'A') {
    189   1.2      jtc 		rmtabort(fildes);
    190   1.1      jtc 		errno = EIO;
    191   1.1      jtc 		return(-1);
    192   1.1      jtc 	}
    193   1.1      jtc 
    194   1.1      jtc 	return(atoi(cp + 1));
    195   1.1      jtc }
    196   1.1      jtc 
    197  1.14    lukem 
    198   1.1      jtc #ifdef USE_REXEC
    199   1.1      jtc /*
    200   1.1      jtc  * _rmt_rexec
    201   1.1      jtc  *
    202   1.1      jtc  * execute /etc/rmt on a remote system using rexec().
    203   1.1      jtc  * Return file descriptor of bidirectional socket for stdin and stdout
    204   1.1      jtc  * If username is NULL, or an empty string, uses current username.
    205   1.1      jtc  *
    206   1.1      jtc  * ADR: By default, this code is not used, since it requires that
    207   1.1      jtc  * the user have a .netrc file in his/her home directory, or that the
    208   1.1      jtc  * application designer be willing to have rexec prompt for login and
    209   1.1      jtc  * password info. This may be unacceptable, and .rhosts files for use
    210   1.1      jtc  * with rsh are much more common on BSD systems.
    211   1.1      jtc  */
    212   1.1      jtc 
    213  1.14    lukem static	int	_rmt_rexec(const char *, const char *);
    214   1.7    lukem 
    215   1.1      jtc static int
    216  1.14    lukem _rmt_rexec(const char *host, const char *user)
    217   1.1      jtc {
    218   1.1      jtc 	struct servent *rexecserv;
    219   1.1      jtc 
    220  1.12    lukem 	_DIAGASSERT(host != NULL);
    221  1.12    lukem 	/* user may be NULL */
    222  1.12    lukem 
    223   1.1      jtc 	rexecserv = getservbyname("exec", "tcp");
    224   1.1      jtc 	if (NULL == rexecserv) {
    225  1.14    lukem 		fprintf(stderr, "? exec/tcp: service not available.");
    226  1.14    lukem 		exit(-1);
    227   1.1      jtc 	}
    228   1.1      jtc 	if ((user != NULL) && *user == '\0')
    229   1.1      jtc 		user = (char *) NULL;
    230  1.14    lukem 	return (rexec(&host, rexecserv->s_port, user, NULL,
    231  1.14    lukem 			"/etc/rmt", (int *)NULL));
    232   1.1      jtc }
    233   1.1      jtc #endif /* USE_REXEC */
    234   1.1      jtc 
    235  1.14    lukem 
    236   1.1      jtc /*
    237   1.1      jtc  *	_rmt_open --- open a magtape device on system specified, as given user
    238   1.1      jtc  *
    239   1.1      jtc  *	file name has the form [user@]system:/dev/????
    240   1.1      jtc #ifdef COMPAT
    241   1.1      jtc  *	file name has the form system[.user]:/dev/????
    242   1.1      jtc #endif
    243   1.1      jtc  */
    244   1.1      jtc 
    245   1.1      jtc #define MAXHOSTLEN	257	/* BSD allows very long host names... */
    246   1.1      jtc 
    247   1.7    lukem static int
    248  1.14    lukem _rmt_open(const char *path, int oflag, int mode)
    249   1.1      jtc {
    250   1.1      jtc 	int i, rc;
    251   1.1      jtc 	char buffer[BUFMAGIC];
    252   1.1      jtc 	char system[MAXHOSTLEN];
    253   1.1      jtc 	char device[BUFMAGIC];
    254   1.1      jtc 	char login[BUFMAGIC];
    255   1.1      jtc 	char *sys, *dev, *user;
    256   1.1      jtc 
    257  1.12    lukem 	_DIAGASSERT(path != NULL);
    258  1.12    lukem 
    259   1.1      jtc 	sys = system;
    260   1.1      jtc 	dev = device;
    261   1.1      jtc 	user = login;
    262   1.1      jtc 
    263   1.1      jtc /*
    264   1.1      jtc  *	first, find an open pair of file descriptors
    265   1.1      jtc  */
    266   1.1      jtc 
    267   1.1      jtc 	for (i = 0; i < MAXUNIT; i++)
    268   1.1      jtc 		if (READ(i) == -1 && WRITE(i) == -1)
    269   1.1      jtc 			break;
    270   1.1      jtc 
    271  1.14    lukem 	if (i == MAXUNIT) {
    272   1.1      jtc 		errno = EMFILE;
    273   1.1      jtc 		return(-1);
    274   1.1      jtc 	}
    275   1.1      jtc 
    276   1.1      jtc /*
    277   1.1      jtc  *	pull apart system and device, and optional user
    278   1.1      jtc  *	don't munge original string
    279   1.1      jtc  *	if COMPAT is defined, also handle old (4.2) style person.site notation.
    280   1.1      jtc  */
    281   1.1      jtc 
    282   1.1      jtc 	while (*path != '@'
    283   1.1      jtc #ifdef COMPAT
    284   1.1      jtc 			&& *path != '.'
    285   1.1      jtc #endif
    286   1.1      jtc 			&& *path != ':') {
    287   1.1      jtc 		*sys++ = *path++;
    288   1.1      jtc 	}
    289   1.1      jtc 	*sys = '\0';
    290   1.1      jtc 	path++;
    291   1.1      jtc 
    292  1.14    lukem 	if (*(path - 1) == '@') {
    293   1.5      mrg 		(void)strncpy(user, system, sizeof(login) - 1);
    294   1.5      mrg 				/* saw user part of user@host */
    295   1.1      jtc 		sys = system;			/* start over */
    296   1.1      jtc 		while (*path != ':') {
    297   1.1      jtc 			*sys++ = *path++;
    298   1.1      jtc 		}
    299   1.1      jtc 		*sys = '\0';
    300   1.1      jtc 		path++;
    301   1.1      jtc 	}
    302   1.1      jtc #ifdef COMPAT
    303  1.14    lukem 	else if (*(path - 1) == '.') {
    304   1.1      jtc 		while (*path != ':') {
    305   1.1      jtc 			*user++ = *path++;
    306   1.1      jtc 		}
    307   1.1      jtc 		*user = '\0';
    308   1.1      jtc 		path++;
    309   1.1      jtc 	}
    310   1.1      jtc #endif
    311   1.1      jtc 	else
    312   1.1      jtc 		*user = '\0';
    313   1.1      jtc 
    314   1.1      jtc 	while (*path) {
    315   1.1      jtc 		*dev++ = *path++;
    316   1.1      jtc 	}
    317   1.1      jtc 	*dev = '\0';
    318   1.1      jtc 
    319   1.1      jtc #ifdef USE_REXEC
    320  1.11   simonb /*
    321  1.11   simonb  *	Execute the remote command using rexec
    322   1.1      jtc  */
    323   1.1      jtc 	READ(i) = WRITE(i) = _rmt_rexec(system, login);
    324   1.1      jtc 	if (READ(i) < 0)
    325   1.1      jtc 		return -1;
    326   1.1      jtc #else
    327   1.1      jtc /*
    328   1.1      jtc  *	setup the pipes for the 'rsh' command and fork
    329   1.1      jtc  */
    330   1.1      jtc 
    331   1.1      jtc 	if (pipe(Ptc[i]) == -1 || pipe(Ctp[i]) == -1)
    332   1.1      jtc 		return(-1);
    333   1.1      jtc 
    334   1.1      jtc 	if ((rc = fork()) == -1)
    335   1.1      jtc 		return(-1);
    336   1.1      jtc 
    337  1.14    lukem 	if (rc == 0) {
    338  1.10      mrg 		char	*rshpath, *rsh;
    339  1.10      mrg 
    340   1.1      jtc 		close(0);
    341   1.1      jtc 		dup(Ptc[i][0]);
    342   1.1      jtc 		close(Ptc[i][0]); close(Ptc[i][1]);
    343   1.1      jtc 		close(1);
    344   1.1      jtc 		dup(Ctp[i][1]);
    345   1.1      jtc 		close(Ctp[i][0]); close(Ctp[i][1]);
    346  1.14    lukem 		(void) setuid(getuid());
    347  1.14    lukem 		(void) setgid(getgid());
    348  1.11   simonb 
    349  1.10      mrg 		if ((rshpath = getenv("RCMD_CMD")) == NULL)
    350  1.10      mrg 			rshpath = _PATH_RSH;
    351  1.10      mrg 		if ((rsh = strrchr(rshpath, '/')) == NULL)
    352  1.10      mrg 			rsh = rshpath;
    353  1.10      mrg 		else
    354  1.10      mrg 			rsh++;
    355  1.11   simonb 
    356  1.14    lukem 		if (*login) {
    357  1.10      mrg 			execl(rshpath, rsh, system, "-l", login,
    358  1.10      mrg 				_PATH_RMT, (char *) 0);
    359  1.14    lukem 		} else {
    360  1.10      mrg 			execl(rshpath, rsh, system,
    361  1.10      mrg 				_PATH_RMT, (char *) 0);
    362   1.1      jtc 		}
    363   1.1      jtc 
    364   1.1      jtc /*
    365   1.1      jtc  *	bad problems if we get here
    366   1.1      jtc  */
    367   1.1      jtc 
    368   1.1      jtc 		perror("exec");
    369   1.1      jtc 		exit(1);
    370   1.1      jtc 	}
    371   1.1      jtc 
    372   1.1      jtc 	close(Ptc[i][0]); close(Ctp[i][1]);
    373   1.1      jtc #endif
    374   1.1      jtc 
    375   1.1      jtc /*
    376   1.1      jtc  *	now attempt to open the tape device
    377   1.1      jtc  */
    378   1.1      jtc 
    379   1.5      mrg 	(void)snprintf(buffer, sizeof(buffer), "O%s\n%d\n", device, oflag);
    380   1.1      jtc 	if (command(i, buffer) == -1 || status(i) == -1)
    381   1.1      jtc 		return(-1);
    382   1.1      jtc 
    383   1.1      jtc 	return(i);
    384   1.1      jtc }
    385   1.1      jtc 
    386   1.1      jtc 
    387   1.1      jtc /*
    388   1.1      jtc  *	_rmt_close --- close a remote magtape unit and shut down
    389   1.1      jtc  */
    390   1.7    lukem static int
    391  1.14    lukem _rmt_close(int fildes)
    392   1.1      jtc {
    393   1.1      jtc 	int rc;
    394   1.1      jtc 
    395  1.14    lukem 	if (command(fildes, "C\n") != -1) {
    396   1.1      jtc 		rc = status(fildes);
    397   1.1      jtc 
    398   1.2      jtc 		rmtabort(fildes);
    399   1.1      jtc 		return(rc);
    400   1.1      jtc 	}
    401   1.1      jtc 
    402   1.1      jtc 	return(-1);
    403   1.1      jtc }
    404   1.1      jtc 
    405   1.1      jtc 
    406   1.1      jtc /*
    407   1.1      jtc  *	_rmt_read --- read a buffer from a remote tape
    408   1.1      jtc  */
    409  1.14    lukem static ssize_t
    410  1.14    lukem _rmt_read(int fildes, void *buf, size_t nbyte)
    411   1.1      jtc {
    412  1.14    lukem 	size_t rc, i;
    413  1.14    lukem 	char *p;
    414   1.1      jtc 	char buffer[BUFMAGIC];
    415   1.1      jtc 
    416  1.12    lukem 	_DIAGASSERT(buf != NULL);
    417  1.12    lukem 
    418   1.5      mrg 	(void)snprintf(buffer, sizeof buffer, "R%d\n", nbyte);
    419   1.1      jtc 	if (command(fildes, buffer) == -1 || (rc = status(fildes)) == -1)
    420   1.1      jtc 		return(-1);
    421   1.1      jtc 
    422  1.14    lukem 	p = buf;
    423  1.14    lukem 	for (i = 0; i < rc; i += nbyte, p += nbyte) {
    424  1.14    lukem 		nbyte = read(READ(fildes), p, rc);
    425  1.14    lukem 		if (nbyte <= 0) {
    426   1.2      jtc 			rmtabort(fildes);
    427   1.1      jtc 			errno = EIO;
    428   1.1      jtc 			return(-1);
    429   1.1      jtc 		}
    430   1.1      jtc 	}
    431   1.1      jtc 
    432   1.1      jtc 	return(rc);
    433   1.1      jtc }
    434   1.1      jtc 
    435   1.1      jtc 
    436   1.1      jtc /*
    437   1.1      jtc  *	_rmt_write --- write a buffer to the remote tape
    438   1.1      jtc  */
    439  1.14    lukem static ssize_t
    440  1.14    lukem _rmt_write(int fildes, const void *buf, size_t nbyte)
    441   1.1      jtc {
    442   1.1      jtc 	char buffer[BUFMAGIC];
    443  1.14    lukem 	void (*pstat)(int);
    444   1.1      jtc 
    445  1.12    lukem 	_DIAGASSERT(buf != NULL);
    446  1.12    lukem 
    447   1.5      mrg 	(void)snprintf(buffer, sizeof buffer, "W%d\n", nbyte);
    448   1.1      jtc 	if (command(fildes, buffer) == -1)
    449   1.1      jtc 		return(-1);
    450   1.1      jtc 
    451   1.1      jtc 	pstat = signal(SIGPIPE, SIG_IGN);
    452  1.14    lukem 	if (write(WRITE(fildes), buf, nbyte) == nbyte) {
    453  1.14    lukem 		signal(SIGPIPE, pstat);
    454   1.1      jtc 		return(status(fildes));
    455   1.1      jtc 	}
    456   1.1      jtc 
    457  1.14    lukem 	signal(SIGPIPE, pstat);
    458   1.2      jtc 	rmtabort(fildes);
    459   1.1      jtc 	errno = EIO;
    460   1.1      jtc 	return(-1);
    461   1.1      jtc }
    462   1.1      jtc 
    463   1.1      jtc 
    464   1.1      jtc /*
    465   1.1      jtc  *	_rmt_lseek --- perform an imitation lseek operation remotely
    466   1.1      jtc  */
    467   1.7    lukem static off_t
    468  1.14    lukem _rmt_lseek(int fildes, off_t offset, int whence)
    469   1.1      jtc {
    470   1.1      jtc 	char buffer[BUFMAGIC];
    471   1.1      jtc 
    472  1.14    lukem 	(void)snprintf(buffer, sizeof buffer, "L%lld\n%d\n", (long long)offset,
    473   1.8      mrg 	    whence);
    474   1.1      jtc 	if (command(fildes, buffer) == -1)
    475   1.1      jtc 		return(-1);
    476   1.1      jtc 
    477   1.1      jtc 	return(status(fildes));
    478   1.1      jtc }
    479   1.1      jtc 
    480   1.1      jtc 
    481   1.1      jtc /*
    482   1.1      jtc  *	_rmt_ioctl --- perform raw tape operations remotely
    483   1.1      jtc  */
    484   1.1      jtc #ifdef RMTIOCTL
    485   1.7    lukem static int
    486  1.14    lukem _rmt_ioctl(int fildes, unsigned long op, void *arg)
    487   1.1      jtc {
    488   1.1      jtc 	char c;
    489  1.14    lukem 	size_t rc, cnt;
    490  1.14    lukem 	char buffer[BUFMAGIC], *p;
    491   1.1      jtc 
    492  1.12    lukem 	_DIAGASSERT(arg != NULL);
    493  1.12    lukem 
    494   1.1      jtc /*
    495   1.1      jtc  *	MTIOCOP is the easy one. nothing is transfered in binary
    496   1.1      jtc  */
    497   1.1      jtc 
    498  1.14    lukem 	if (op == MTIOCTOP) {
    499   1.5      mrg 		(void)snprintf(buffer, sizeof buffer, "I%d\n%d\n",
    500   1.5      mrg 		    ((struct mtop *)arg)->mt_op,
    501   1.5      mrg 		    ((struct mtop *)arg)->mt_count);
    502   1.1      jtc 		if (command(fildes, buffer) == -1)
    503   1.1      jtc 			return(-1);
    504   1.1      jtc 		return(status(fildes));
    505   1.1      jtc 	}
    506   1.1      jtc 
    507   1.1      jtc /*
    508   1.1      jtc  *	we can only handle 2 ops, if not the other one, punt
    509   1.1      jtc  */
    510   1.1      jtc 
    511  1.14    lukem 	if (op != MTIOCGET) {
    512   1.1      jtc 		errno = EINVAL;
    513   1.1      jtc 		return(-1);
    514   1.1      jtc 	}
    515   1.1      jtc 
    516   1.1      jtc /*
    517   1.1      jtc  *	grab the status and read it directly into the structure
    518   1.1      jtc  *	this assumes that the status buffer is (hopefully) not
    519   1.1      jtc  *	padded and that 2 shorts fit in a long without any word
    520   1.1      jtc  *	alignment problems, ie - the whole struct is contiguous
    521   1.1      jtc  *	NOTE - this is probably NOT a good assumption.
    522   1.1      jtc  */
    523   1.1      jtc 
    524   1.1      jtc 	if (command(fildes, "S") == -1 || (rc = status(fildes)) == -1)
    525   1.1      jtc 		return(-1);
    526   1.1      jtc 
    527  1.14    lukem 	p = arg;
    528  1.14    lukem 	for (; rc > 0; rc -= cnt, p += cnt) {
    529  1.14    lukem 		cnt = read(READ(fildes), p, rc);
    530  1.14    lukem 		if (cnt <= 0) {
    531   1.2      jtc 			rmtabort(fildes);
    532   1.1      jtc 			errno = EIO;
    533   1.1      jtc 			return(-1);
    534   1.1      jtc 		}
    535   1.1      jtc 	}
    536   1.1      jtc 
    537   1.1      jtc /*
    538   1.1      jtc  *	now we check for byte position. mt_type is a small integer field
    539   1.1      jtc  *	(normally) so we will check its magnitude. if it is larger than
    540   1.1      jtc  *	256, we will assume that the bytes are swapped and go through
    541   1.1      jtc  *	and reverse all the bytes
    542   1.1      jtc  */
    543   1.1      jtc 
    544  1.14    lukem 	if (((struct mtget *) p)->mt_type < 256)
    545   1.1      jtc 		return(0);
    546   1.1      jtc 
    547  1.14    lukem 	for (cnt = 0; cnt < rc; cnt += 2) {
    548  1.14    lukem 		c = p[cnt];
    549  1.14    lukem 		p[cnt] = p[cnt+1];
    550  1.14    lukem 		p[cnt+1] = c;
    551   1.1      jtc 	}
    552   1.1      jtc 
    553   1.1      jtc 	return(0);
    554   1.1      jtc   }
    555   1.1      jtc #endif /* RMTIOCTL */
    556   1.1      jtc 
    557  1.14    lukem 
    558   1.1      jtc /*
    559   1.1      jtc  *	Added routines to replace open(), close(), lseek(), ioctl(), etc.
    560   1.1      jtc  *	The preprocessor can be used to remap these the rmtopen(), etc
    561   1.1      jtc  *	thus minimizing source changes:
    562   1.1      jtc  *
    563   1.1      jtc  *		#ifdef <something>
    564   1.1      jtc  *		#  define access rmtaccess
    565   1.1      jtc  *		#  define close rmtclose
    566   1.1      jtc  *		#  define creat rmtcreat
    567   1.1      jtc  *		#  define dup rmtdup
    568   1.1      jtc  *		#  define fcntl rmtfcntl
    569   1.1      jtc  *		#  define fstat rmtfstat
    570   1.1      jtc  *		#  define ioctl rmtioctl
    571   1.1      jtc  *		#  define isatty rmtisatty
    572   1.1      jtc  *		#  define lseek rmtlseek
    573   1.1      jtc  *		#  define lstat rmtlstat
    574   1.1      jtc  *		#  define open rmtopen
    575   1.1      jtc  *		#  define read rmtread
    576   1.1      jtc  *		#  define stat rmtstat
    577   1.1      jtc  *		#  define write rmtwrite
    578   1.1      jtc  *		#endif
    579   1.1      jtc  *
    580   1.1      jtc  *	-- Fred Fish
    581   1.1      jtc  *
    582   1.1      jtc  *	ADR --- I set up a <rmt.h> include file for this
    583   1.1      jtc  *
    584   1.1      jtc  */
    585   1.1      jtc 
    586   1.1      jtc /*
    587   1.1      jtc  *	Note that local vs remote file descriptors are distinquished
    588   1.1      jtc  *	by adding a bias to the remote descriptors.  This is a quick
    589   1.1      jtc  *	and dirty trick that may not be portable to some systems.
    590   1.1      jtc  */
    591   1.1      jtc 
    592   1.1      jtc #define REM_BIAS 128
    593   1.1      jtc 
    594   1.1      jtc 
    595   1.1      jtc /*
    596   1.1      jtc  *	Test pathname to see if it is local or remote.  A remote device
    597   1.1      jtc  *	is any string that contains ":/dev/".  Returns 1 if remote,
    598   1.1      jtc  *	0 otherwise.
    599   1.1      jtc  */
    600  1.11   simonb 
    601   1.7    lukem static int
    602  1.14    lukem remdev(const char *path)
    603   1.1      jtc {
    604  1.12    lukem 
    605  1.12    lukem 	_DIAGASSERT(path != NULL);
    606  1.12    lukem 
    607  1.14    lukem 	if ((path = strchr(path, ':')) != NULL) {
    608  1.14    lukem 		if (strncmp(path + 1, "/dev/", 5) == 0) {
    609   1.1      jtc 			return (1);
    610   1.1      jtc 		}
    611   1.1      jtc 	}
    612   1.1      jtc 	return (0);
    613   1.1      jtc }
    614   1.1      jtc 
    615   1.1      jtc 
    616   1.1      jtc /*
    617   1.1      jtc  *	Open a local or remote file.  Looks just like open(2) to
    618   1.1      jtc  *	caller.
    619   1.1      jtc  */
    620   1.7    lukem int
    621   1.9  thorpej rmtopen(const char *path, int oflag, ...)
    622   1.9  thorpej {
    623   1.9  thorpej 	mode_t mode;
    624   1.9  thorpej 	int fd;
    625   1.9  thorpej 	va_list ap;
    626   1.9  thorpej 	va_start(ap, oflag);
    627   1.9  thorpej 
    628   1.9  thorpej 	mode = va_arg(ap, mode_t);
    629   1.9  thorpej 	va_end(ap);
    630   1.1      jtc 
    631  1.12    lukem 	_DIAGASSERT(path != NULL);
    632  1.12    lukem 
    633  1.14    lukem 	if (remdev(path)) {
    634  1.14    lukem 		fd = _rmt_open(path, oflag, mode);
    635   1.1      jtc 
    636  1.14    lukem 		return ((fd == -1) ? -1 : (fd + REM_BIAS));
    637  1.14    lukem 	} else {
    638  1.14    lukem 		return (open(path, oflag, mode));
    639   1.1      jtc 	}
    640   1.1      jtc }
    641   1.1      jtc 
    642   1.1      jtc /*
    643   1.1      jtc  *	Test pathname for specified access.  Looks just like access(2)
    644   1.1      jtc  *	to caller.
    645   1.1      jtc  */
    646  1.11   simonb 
    647   1.7    lukem int
    648  1.14    lukem rmtaccess(const char *path, int amode)
    649   1.1      jtc {
    650  1.12    lukem 
    651  1.12    lukem 	_DIAGASSERT(path != NULL);
    652  1.12    lukem 
    653  1.14    lukem 	if (remdev(path)) {
    654   1.1      jtc 		return (0);		/* Let /etc/rmt find out */
    655  1.14    lukem 	} else {
    656  1.14    lukem 		return (access(path, amode));
    657   1.1      jtc 	}
    658   1.1      jtc }
    659   1.1      jtc 
    660   1.1      jtc 
    661   1.1      jtc /*
    662   1.6    mikel  *	Isrmt. Let a programmer know he has a remote device.
    663   1.6    mikel  */
    664   1.7    lukem int
    665  1.14    lukem isrmt(int fd)
    666   1.6    mikel {
    667  1.14    lukem 
    668   1.6    mikel 	return (fd >= REM_BIAS);
    669   1.6    mikel }
    670   1.6    mikel 
    671   1.6    mikel 
    672   1.6    mikel /*
    673   1.1      jtc  *	Read from stream.  Looks just like read(2) to caller.
    674   1.1      jtc  */
    675   1.7    lukem ssize_t
    676  1.14    lukem rmtread(int fildes, void *buf, size_t nbyte)
    677   1.1      jtc {
    678  1.12    lukem 
    679  1.12    lukem 	_DIAGASSERT(buf != NULL);
    680  1.12    lukem 
    681  1.14    lukem 	if (isrmt(fildes)) {
    682  1.14    lukem 		return (_rmt_read(fildes - REM_BIAS, buf, nbyte));
    683  1.14    lukem 	} else {
    684  1.14    lukem 		return (read(fildes, buf, nbyte));
    685   1.1      jtc 	}
    686   1.1      jtc }
    687   1.1      jtc 
    688   1.1      jtc 
    689   1.1      jtc /*
    690   1.1      jtc  *	Write to stream.  Looks just like write(2) to caller.
    691   1.1      jtc  */
    692   1.7    lukem ssize_t
    693  1.14    lukem rmtwrite(int fildes, const void *buf, size_t nbyte)
    694   1.1      jtc {
    695  1.12    lukem 
    696  1.12    lukem 	_DIAGASSERT(buf != NULL);
    697  1.12    lukem 
    698  1.14    lukem 	if (isrmt(fildes)) {
    699  1.14    lukem 		return (_rmt_write(fildes - REM_BIAS, buf, nbyte));
    700  1.14    lukem 	} else {
    701  1.14    lukem 		return (write(fildes, buf, nbyte));
    702   1.1      jtc 	}
    703   1.1      jtc }
    704   1.1      jtc 
    705   1.1      jtc /*
    706   1.1      jtc  *	Perform lseek on file.  Looks just like lseek(2) to caller.
    707   1.1      jtc  */
    708   1.7    lukem off_t
    709  1.14    lukem rmtlseek(int fildes, off_t offset, int whence)
    710  1.14    lukem {
    711  1.14    lukem 	if (isrmt(fildes)) {
    712  1.14    lukem 		return (_rmt_lseek(fildes - REM_BIAS, offset, whence));
    713  1.14    lukem 	} else {
    714  1.14    lukem 		return (lseek(fildes, offset, whence));
    715   1.1      jtc 	}
    716   1.1      jtc }
    717   1.1      jtc 
    718   1.1      jtc 
    719   1.1      jtc /*
    720   1.1      jtc  *	Close a file.  Looks just like close(2) to caller.
    721   1.1      jtc  */
    722   1.7    lukem int
    723  1.14    lukem rmtclose(int fildes)
    724   1.1      jtc {
    725  1.14    lukem 	if (isrmt(fildes)) {
    726  1.14    lukem 		return (_rmt_close(fildes - REM_BIAS));
    727  1.14    lukem 	} else {
    728  1.14    lukem 		return (close(fildes));
    729   1.1      jtc 	}
    730   1.1      jtc }
    731   1.1      jtc 
    732  1.14    lukem 
    733   1.1      jtc /*
    734   1.1      jtc  *	Do ioctl on file.  Looks just like ioctl(2) to caller.
    735   1.1      jtc  */
    736   1.7    lukem int
    737   1.9  thorpej rmtioctl(int fildes, unsigned long request, ...)
    738   1.9  thorpej {
    739   1.9  thorpej 	char *arg;
    740   1.9  thorpej 	va_list ap;
    741   1.9  thorpej 	va_start(ap, request);
    742   1.9  thorpej 
    743   1.9  thorpej 	arg = va_arg(ap, char *);
    744   1.9  thorpej 	va_end(ap);
    745   1.9  thorpej 
    746  1.12    lukem 	/* XXX: arg may be NULL ? */
    747  1.12    lukem 
    748  1.14    lukem 	if (isrmt(fildes)) {
    749   1.1      jtc #ifdef RMTIOCTL
    750  1.14    lukem 		return (_rmt_ioctl(fildes - REM_BIAS, request, arg));
    751   1.1      jtc #else
    752   1.1      jtc 		errno = EOPNOTSUPP;
    753  1.14    lukem 		return (-1);		/* For now (fnf) */
    754   1.1      jtc #endif
    755  1.14    lukem 	} else {
    756  1.14    lukem 		return (ioctl(fildes, request, arg));
    757   1.1      jtc 	}
    758   1.1      jtc }
    759   1.1      jtc 
    760   1.1      jtc 
    761   1.1      jtc /*
    762   1.1      jtc  *	Duplicate an open file descriptor.  Looks just like dup(2)
    763   1.1      jtc  *	to caller.
    764   1.1      jtc  */
    765   1.7    lukem int
    766  1.14    lukem rmtdup(int fildes)
    767   1.1      jtc {
    768  1.14    lukem 	if (isrmt(fildes)) {
    769   1.1      jtc 		errno = EOPNOTSUPP;
    770   1.1      jtc 		return (-1);		/* For now (fnf) */
    771  1.14    lukem 	} else {
    772  1.14    lukem 		return (dup(fildes));
    773   1.1      jtc 	}
    774   1.1      jtc }
    775   1.1      jtc 
    776  1.14    lukem 
    777   1.1      jtc /*
    778   1.1      jtc  *	Get file status.  Looks just like fstat(2) to caller.
    779   1.1      jtc  */
    780   1.7    lukem int
    781  1.14    lukem rmtfstat(int fildes, struct stat *buf)
    782   1.1      jtc {
    783  1.12    lukem 
    784  1.12    lukem 	_DIAGASSERT(buf != NULL);
    785  1.12    lukem 
    786  1.14    lukem 	if (isrmt(fildes)) {
    787   1.1      jtc 		errno = EOPNOTSUPP;
    788   1.1      jtc 		return (-1);		/* For now (fnf) */
    789  1.14    lukem 	} else {
    790  1.14    lukem 		return (fstat(fildes, buf));
    791   1.1      jtc 	}
    792   1.1      jtc }
    793   1.1      jtc 
    794   1.1      jtc 
    795   1.1      jtc /*
    796   1.1      jtc  *	Get file status.  Looks just like stat(2) to caller.
    797   1.1      jtc  */
    798   1.7    lukem int
    799  1.14    lukem rmtstat(const char *path, struct stat *buf)
    800   1.1      jtc {
    801  1.12    lukem 
    802  1.12    lukem 	_DIAGASSERT(path != NULL);
    803  1.12    lukem 	_DIAGASSERT(buf != NULL);
    804  1.12    lukem 
    805  1.14    lukem 	if (remdev(path)) {
    806   1.1      jtc 		errno = EOPNOTSUPP;
    807   1.1      jtc 		return (-1);		/* For now (fnf) */
    808  1.14    lukem 	} else {
    809  1.14    lukem 		return (stat(path, buf));
    810   1.1      jtc 	}
    811   1.1      jtc }
    812   1.1      jtc 
    813   1.1      jtc 
    814   1.1      jtc /*
    815   1.1      jtc  *	Create a file from scratch.  Looks just like creat(2) to the caller.
    816   1.1      jtc  */
    817   1.7    lukem int
    818  1.14    lukem rmtcreat(const char *path, mode_t mode)
    819   1.1      jtc {
    820  1.12    lukem 
    821  1.12    lukem 	_DIAGASSERT(path != NULL);
    822  1.12    lukem 
    823  1.14    lukem 	if (remdev(path)) {
    824  1.14    lukem 		return (rmtopen(path, 1 | O_CREAT, mode));
    825  1.14    lukem 	} else {
    826  1.14    lukem 		return (creat(path, mode));
    827   1.1      jtc 	}
    828   1.1      jtc }
    829   1.1      jtc 
    830  1.14    lukem 
    831   1.1      jtc /*
    832   1.1      jtc  *	Rmtfcntl. Do a remote fcntl operation.
    833   1.1      jtc  */
    834   1.7    lukem int
    835   1.9  thorpej rmtfcntl(int fd, int cmd, ...)
    836   1.1      jtc {
    837   1.9  thorpej 	void *arg;
    838   1.9  thorpej 	va_list ap;
    839   1.9  thorpej 	va_start(ap, cmd);
    840   1.9  thorpej 
    841   1.9  thorpej 	arg = va_arg(ap, void *);
    842   1.9  thorpej 	va_end(ap);
    843   1.9  thorpej 
    844  1.12    lukem 	/* XXX: arg may be NULL ? */
    845  1.12    lukem 
    846  1.14    lukem 	if (isrmt(fd)) {
    847   1.1      jtc 		errno = EOPNOTSUPP;
    848   1.1      jtc 		return (-1);
    849  1.14    lukem 	} else {
    850  1.14    lukem 		return (fcntl(fd, cmd, arg));
    851   1.1      jtc 	}
    852   1.1      jtc }
    853   1.1      jtc 
    854  1.14    lukem 
    855   1.1      jtc /*
    856   1.1      jtc  *	Rmtisatty.  Do the isatty function.
    857   1.1      jtc  */
    858   1.7    lukem int
    859  1.14    lukem rmtisatty(int fd)
    860   1.1      jtc {
    861  1.14    lukem 
    862  1.14    lukem 	if (isrmt(fd))
    863   1.1      jtc 		return (0);
    864   1.1      jtc 	else
    865  1.14    lukem 		return (isatty(fd));
    866   1.1      jtc }
    867   1.1      jtc 
    868   1.1      jtc 
    869   1.1      jtc /*
    870   1.1      jtc  *	Get file status, even if symlink.  Looks just like lstat(2) to caller.
    871   1.1      jtc  */
    872   1.7    lukem int
    873  1.14    lukem rmtlstat(const char *path, struct stat *buf)
    874   1.1      jtc {
    875  1.12    lukem 
    876  1.12    lukem 	_DIAGASSERT(path != NULL);
    877  1.12    lukem 	_DIAGASSERT(buf != NULL);
    878  1.12    lukem 
    879  1.14    lukem 	if (remdev(path)) {
    880   1.1      jtc 		errno = EOPNOTSUPP;
    881   1.1      jtc 		return (-1);		/* For now (fnf) */
    882  1.14    lukem 	} else {
    883  1.14    lukem 		return (lstat(path, buf));
    884   1.1      jtc 	}
    885   1.1      jtc }
    886