#include <sys/types.h>
#include <sys/file.h>
#include <dirent.h>
#include <errno.h>
#include <paths.h>
#include <signal.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
#include "libutil.h"
#define MAXTRIES 5
#define LOCKTMP "LCKTMP..%d"
#define LOCKFMT "LCK..%s"
#define GORET(level, val) { err = errno; uuerr = (val); \
goto __CONCAT(ret, level); }
static int put_pid (int fd, pid_t pid);
static pid_t get_pid (int fd,int *err);
int
uu_lock(const char *tty_name)
{
int fd, tmpfd, i;
pid_t pid, pid_old;
char lckname[sizeof(_PATH_UUCPLOCK) + MAXNAMLEN],
lcktmpname[sizeof(_PATH_UUCPLOCK) + MAXNAMLEN];
int err, uuerr;
pid = getpid();
(void)snprintf(lcktmpname, sizeof(lcktmpname), _PATH_UUCPLOCK LOCKTMP,
pid);
(void)snprintf(lckname, sizeof(lckname), _PATH_UUCPLOCK LOCKFMT,
tty_name);
if ((tmpfd = open(lcktmpname, O_CREAT | O_TRUNC | O_WRONLY | O_CLOEXEC,
0664)) < 0)
GORET(0, UU_LOCK_CREAT_ERR);
for (i = 0; i < MAXTRIES; i++) {
if (link (lcktmpname, lckname) < 0) {
if (errno != EEXIST)
GORET(1, UU_LOCK_LINK_ERR);
if ((fd = open(lckname, O_RDONLY | O_CLOEXEC)) < 0)
GORET(1, UU_LOCK_OPEN_ERR);
if ((pid_old = get_pid (fd, &err)) == -1)
GORET(2, UU_LOCK_READ_ERR);
close(fd);
if (kill(pid_old, 0) == 0 || errno != ESRCH)
GORET(1, UU_LOCK_INUSE);
(void)unlink(lckname);
} else {
if (!put_pid (tmpfd, pid))
GORET(3, UU_LOCK_WRITE_ERR);
break;
}
}
GORET(1, (i >= MAXTRIES) ? UU_LOCK_TRY_ERR : UU_LOCK_OK);
ret3:
(void)unlink(lckname);
goto ret1;
ret2:
(void)close(fd);
ret1:
(void)close(tmpfd);
(void)unlink(lcktmpname);
ret0:
errno = err;
return uuerr;
}
int
uu_lock_txfr(const char *tty_name, pid_t pid)
{
int fd, err;
char lckname[sizeof(_PATH_UUCPLOCK) + MAXNAMLEN];
snprintf(lckname, sizeof(lckname), _PATH_UUCPLOCK LOCKFMT, tty_name);
if ((fd = open(lckname, O_RDWR | O_CLOEXEC)) < 0)
return UU_LOCK_OWNER_ERR;
if (get_pid(fd, &err) != getpid())
err = UU_LOCK_OWNER_ERR;
else {
lseek(fd, (off_t)0, SEEK_SET);
err = put_pid(fd, pid) ? 0 : UU_LOCK_WRITE_ERR;
}
close(fd);
return err;
}
int
uu_unlock(const char *tty_name)
{
char tbuf[sizeof(_PATH_UUCPLOCK) + MAXNAMLEN];
(void)snprintf(tbuf, sizeof(tbuf), _PATH_UUCPLOCK LOCKFMT, tty_name);
return unlink(tbuf);
}
const char *
uu_lockerr(int uu_lockresult)
{
static char errbuf[128];
const char *fmt;
switch (uu_lockresult) {
case UU_LOCK_INUSE:
return "device in use";
case UU_LOCK_OK:
return "";
case UU_LOCK_OPEN_ERR:
fmt = "open error: %s";
break;
case UU_LOCK_READ_ERR:
fmt = "read error: %s";
break;
case UU_LOCK_CREAT_ERR:
fmt = "creat error: %s";
break;
case UU_LOCK_WRITE_ERR:
fmt = "write error: %s";
break;
case UU_LOCK_LINK_ERR:
fmt = "link error: %s";
break;
case UU_LOCK_TRY_ERR:
fmt = "too many tries: %s";
break;
case UU_LOCK_OWNER_ERR:
fmt = "not locking process: %s";
break;
default:
fmt = "undefined error: %s";
break;
}
(void)snprintf(errbuf, sizeof(errbuf), fmt, strerror(errno));
return errbuf;
}
static int
put_pid(int fd, pid_t pid)
{
char buf[32];
int len;
len = sprintf (buf, "%10d\n", (int)pid);
return write (fd, buf, (size_t)len) == len;
}
static pid_t
get_pid(int fd, int *err)
{
int bytes_read;
char buf[32];
pid_t pid;
bytes_read = read (fd, buf, sizeof (buf) - 1);
if (bytes_read > 0) {
buf[bytes_read] = '\0';
pid = (pid_t)strtol (buf, (char **) NULL, 10);
} else {
pid = -1;
*err = bytes_read ? errno : EINVAL;
}
return pid;
}