2020-04-24 23:36:52 +00:00
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/*
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2021-02-05 17:12:51 +00:00
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Copyright: (C)2015-2020 Laurent Bercot. http://skarnet.org/
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2020-04-24 23:36:52 +00:00
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ISC license. See http://opensource.org/licenses/ISC
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Build-time requirements: skalibs. http://skarnet.org/software/skalibs/
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Run-time requirements: none, if you link skalibs statically.
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Compilation:
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gcc -o sdnotify-wrapper -L/usr/lib/skalibs sdnotify-wrapper.c -lskarnet
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Use /usr/lib/skalibs/libskarnet.a instead of -lskarnet to link statically.
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Adapt gcc's -I and -L options to your skalibs installation paths.
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Usage: if a daemon would be launched by systemd as "foobard args...",
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launch it as "sdnotify-wrapper foobard args..." instead, and you can now
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tell systemd that this daemon supports readiness notification.
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Instead of using sd_notify() and having to link against the systemd
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library, the daemon notifies readiness by writing whatever it wants
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to a file descriptor (by default: stdout), then a newline. (Then it
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should close that file descriptor.) The simplest way is something like
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int notify_readiness() { write(1, "\n", 1) ; close(1) ; }
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This mechanism is understandable by any notification readiness framework.
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Readiness notification occurs when the newline is written, not when
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the descriptor is closed; but since sdnotify-wrapper stops reading
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after the first newline and will exit, any subsequent writes will
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fail and it's best to simply close the descriptor right away.
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sdnotify-wrapper sees the notification when it occurs and sends it
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to systemd using the sd_notify format.
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Options:
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-d fd: the daemon will write its notification on descriptor fd.
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Default is 1.
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-f: do not doublefork. Use if the daemon waits for children it does
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not know it has (for instance, superservers do this). When in doubt,
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do not use that option, or you may have a zombie hanging around.
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-t timeout: if the daemon has not sent a notification after timeout
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milliseconds, give up and exit; systemd will not be notified.
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-k: keep the NOTIFY_SOCKET environment variable when execing into the
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daemon. By default, the variable is unset: the daemon should not need it.
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Notes:
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sdnotify-wrapper does not change the daemon's pid. It runs as a
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(grand)child of the daemon.
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If the NOTIFY_SOCKET environment variable is not set, sdnotify-wrapper
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does nothing - it only execs into the daemon.
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sdnotify-wrapper is more liberal than sd_notify(). It will accept
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a relative path in NOTIFY_SOCKET.
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*/
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#include <sys/types.h>
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#include <string.h>
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#include <unistd.h>
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2021-02-05 17:12:51 +00:00
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#include <stdlib.h>
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2020-04-24 23:36:52 +00:00
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#include <errno.h>
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#include <sys/socket.h>
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#include <sys/un.h>
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2021-02-05 17:12:51 +00:00
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2020-04-24 23:36:52 +00:00
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#include <skalibs/uint64.h>
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#include <skalibs/types.h>
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#include <skalibs/bytestr.h>
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#include <skalibs/sgetopt.h>
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#include <skalibs/strerr2.h>
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#include <skalibs/allreadwrite.h>
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#include <skalibs/tai.h>
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#include <skalibs/iopause.h>
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#include <skalibs/djbunix.h>
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2021-02-05 17:12:51 +00:00
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//#include <skalibs/webipc.h>
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// svanderburg: This header no longer exists, but socket.h provides the functions this module needs
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#include <skalibs/socket.h>
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#include <skalibs/exec.h>
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2020-04-24 23:36:52 +00:00
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#define USAGE "sdnotify-wrapper [ -d fd ] [ -f ] [ -t timeout ] [ -k ] prog..."
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#define dieusage() strerr_dieusage(100, USAGE)
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#define VAR "NOTIFY_SOCKET"
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static inline int ipc_sendto (int fd, char const *s, size_t len, char const *path)
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{
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struct sockaddr_un sa ;
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size_t l = strlen(path) ;
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if (l > IPCPATH_MAX) return (errno = ENAMETOOLONG, 0) ;
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memset(&sa, 0, sizeof sa) ;
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sa.sun_family = AF_UNIX ;
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memcpy(sa.sun_path, path, l+1) ;
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if (path[0] == '@') sa.sun_path[0] = 0 ;
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return sendto(fd, s, len, MSG_NOSIGNAL, (struct sockaddr *)&sa, sizeof sa) >= 0 ;
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}
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static inline void notify_systemd (pid_t pid, char const *socketpath)
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{
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size_t n = 16 ;
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char fmt[16 + PID_FMT] = "READY=1\nMAINPID=" ;
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int fd = ipc_datagram_b() ;
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if (fd < 0) strerr_diefu1sys(111, "create socket") ;
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n += pid_fmt(fmt + n, pid) ;
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fmt[n++] = '\n' ;
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if (!ipc_sendto(fd, fmt, n, socketpath))
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strerr_diefu2sys(111, "send notification message to ", socketpath) ;
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close(fd) ;
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}
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static inline int run_child (int fd, unsigned int timeout, pid_t pid, char const *s)
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{
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char dummy[4096] ;
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iopause_fd x = { .fd = fd, .events = IOPAUSE_READ } ;
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tain_t deadline ;
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tain_now_g() ;
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if (timeout) tain_from_millisecs(&deadline, timeout) ;
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else deadline = tain_infinite_relative ;
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tain_add_g(&deadline, &deadline) ;
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for (;;)
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{
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int r = iopause_g(&x, 1, &deadline) ;
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if (r < 0) strerr_diefu1sys(111, "iopause") ;
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if (!r) return 99 ;
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r = sanitize_read(fd_read(fd, dummy, 4096)) ;
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if (r < 0)
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if (errno == EPIPE) return 1 ;
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else strerr_diefu1sys(111, "read from parent") ;
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else if (r && memchr(dummy, '\n', r)) break ;
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}
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close(fd) ;
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notify_systemd(pid, s) ;
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return 0 ;
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}
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2021-02-05 17:12:51 +00:00
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int main (int argc, char const *const *argv)
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2020-04-24 23:36:52 +00:00
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{
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2021-02-05 17:12:51 +00:00
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char const *s = getenv(VAR) ;
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2020-04-24 23:36:52 +00:00
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unsigned int fd = 1 ;
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unsigned int timeout = 0 ;
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int df = 1, keep = 0 ;
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PROG = "sdnotify-wrapper" ;
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{
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subgetopt_t l = SUBGETOPT_ZERO ;
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for (;;)
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{
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int opt = subgetopt_r(argc, argv, "d:ft:k", &l) ;
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2020-04-24 23:36:52 +00:00
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if (opt == -1) break ;
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switch (opt)
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{
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case 'd' : if (!uint0_scan(l.arg, &fd)) dieusage() ; break ;
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case 'f' : df = 0 ; break ;
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case 't' : if (!uint0_scan(l.arg, &timeout)) dieusage() ; break ;
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case 'k' : keep = 1 ; break ;
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default : dieusage() ;
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}
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}
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argc -= l.ind ; argv += l.ind ;
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}
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if (!argc) dieusage() ;
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2021-02-05 17:12:51 +00:00
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if (!s) xexec(argv) ;
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2020-04-24 23:36:52 +00:00
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else
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{
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pid_t parent = getpid() ;
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pid_t child ;
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int p[2] ;
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if (pipe(p) < 0) strerr_diefu1sys(111, "pipe") ;
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child = df ? doublefork() : fork() ;
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if (child < 0) strerr_diefu1sys(111, df ? "doublefork" : "fork") ;
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else if (!child)
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{
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PROG = "sdnotify-wrapper (child)" ;
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close(p[1]) ;
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return run_child(p[0], timeout, parent, s) ;
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}
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close(p[0]) ;
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if (fd_move((int)fd, p[1]) < 0) strerr_diefu1sys(111, "move descriptor") ;
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2021-02-05 17:12:51 +00:00
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if (keep) xexec(argv) ;
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else xmexec_m(argv, VAR, sizeof(VAR)) ;
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2020-04-24 23:36:52 +00:00
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}
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}
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