Index · Directives systemd 261.2

Name

sd_event_get_fd — Obtain a file descriptor to poll for event loop events

Synopsis

#include <systemd/sd-event.h>
int sd_event_get_fd(sd_event *event);
 

Description

sd_event_get_fd() returns the file descriptor that an event loop object returned by the sd_event_new(3) function uses to wait for events. This file descriptor may itself be polled for POLLIN/EPOLLIN events. This makes it possible to embed an sd-event(3) event loop into another, possibly foreign, event loop.

The returned file descriptor refers to an epoll(7) object. It is recommended not to alter it by invoking epoll_ctl(2) on it, in order to avoid interference with the event loop's inner logic and assumptions.

Return Value

On success, sd_event_get_fd() returns a non-negative file descriptor. On failure, it returns a negative errno-style error code.

Errors

Returned errors may indicate the following problems:

-EINVAL

event is not a valid pointer to an sd_event structure.

-ECHILD

The event loop has been created in a different process, library or module instance.

Examples

Example 1. Integration in the GLib event loop

/* SPDX-License-Identifier: MIT-0 */

#include <stdlib.h>
#include <glib.h>
#include <systemd/sd-event.h>

typedef struct SDEventSource {
  GSource source;
  GPollFD pollfd;
  sd_event *event;
} SDEventSource;

static gboolean event_prepare(GSource *source, gint *timeout_) {
  sd_event *event = ((SDEventSource *) source)->event;

  /* GLib does not guarantee that check() is always called between two
   * consecutive prepare() invocations. For example, if another thread
   * attaches/removes a source with poll fds to this GMainContext while
   * the main thread is inside poll(), g_main_context_check_unlocked()
   * returns immediately without calling any source's check().
   *
   * If check() was skipped, the sd_event is still in SD_EVENT_ARMED
   * state.  Return FALSE to let the normal poll() -> check() -> dispatch()
   * path complete the cycle. */
  if (sd_event_get_state(event) == SD_EVENT_ARMED)
    return FALSE;

  return sd_event_prepare(event) > 0;
}

static gboolean event_check(GSource *source) {
  return sd_event_wait(((SDEventSource *)source)->event, 0) > 0;
}

static gboolean event_dispatch(GSource *source, GSourceFunc callback, gpointer user_data) {
  return sd_event_dispatch(((SDEventSource *)source)->event) > 0;
}

static void event_finalize(GSource *source) {
  sd_event_unref(((SDEventSource *)source)->event);
}

static GSourceFuncs event_funcs = {
  .prepare = event_prepare,
  .check = event_check,
  .dispatch = event_dispatch,
  .finalize = event_finalize,
};

GSource *g_sd_event_create_source(sd_event *event) {
  SDEventSource *source;

  source = (SDEventSource *)g_source_new(&event_funcs, sizeof(SDEventSource));

  source->event = sd_event_ref(event);
  source->pollfd.fd = sd_event_get_fd(event);
  source->pollfd.events = G_IO_IN | G_IO_HUP | G_IO_ERR;

  g_source_add_poll((GSource *)source, &source->pollfd);

  return (GSource *)source;
}

Notes

Functions described here are available as a shared library, which can be compiled against and linked to with the libsystemd pkg-config(1) file.

All functions listed here are thread-agnostic and only a single thread may operate on a given object at any given time. Different threads may access the same object at different times. Multiple independent objects may be used from different threads in parallel.

The code described here uses getenv(3), which is declared to be not multi-thread-safe. This means that the code calling the functions described here must not call setenv(3) from a parallel thread. It is recommended to only do calls to setenv() from an early phase of the program when no other threads have been started.

History

sd_event_get_fd() was added in version 217.

See Also

sd-event(3), sd_event_new(3), sd_event_wait(3), epoll_ctl(2), epoll(7)