#include <netdb.h>
#include <sys/poll.h>
#include <byteswap.h>
+#include <sys/mman.h>
+#include <pthread.h>
#include "util.h"
#include "macro.h"
#include "strv.h"
+#include "set.h"
+#include "missing.h"
#include "sd-bus.h"
#include "bus-internal.h"
#include "bus-message.h"
#include "bus-type.h"
#include "bus-socket.h"
+#include "bus-kernel.h"
+#include "bus-control.h"
+#include "bus-introspect.h"
+#include "bus-signature.h"
+#include "bus-objects.h"
+#include "bus-util.h"
+#include "bus-container.h"
static int bus_poll(sd_bus *bus, bool need_more, uint64_t timeout_usec);
+static void bus_close_fds(sd_bus *b) {
+ assert(b);
+
+ if (b->input_fd >= 0)
+ close_nointr_nofail(b->input_fd);
+
+ if (b->output_fd >= 0 && b->output_fd != b->input_fd)
+ close_nointr_nofail(b->output_fd);
+
+ b->input_fd = b->output_fd = -1;
+}
+
+static void bus_node_destroy(sd_bus *b, struct node *n) {
+ struct node_callback *c;
+ struct node_vtable *v;
+ struct node_enumerator *e;
+
+ assert(b);
+
+ if (!n)
+ return;
+
+ while (n->child)
+ bus_node_destroy(b, n->child);
+
+ while ((c = n->callbacks)) {
+ LIST_REMOVE(callbacks, n->callbacks, c);
+ free(c);
+ }
+
+ while ((v = n->vtables)) {
+ LIST_REMOVE(vtables, n->vtables, v);
+ free(v->interface);
+ free(v);
+ }
+
+ while ((e = n->enumerators)) {
+ LIST_REMOVE(enumerators, n->enumerators, e);
+ free(e);
+ }
+
+ if (n->parent)
+ LIST_REMOVE(siblings, n->parent->child, n);
+
+ assert_se(hashmap_remove(b->nodes, n->path) == n);
+ free(n->path);
+ free(n);
+}
+
static void bus_free(sd_bus *b) {
struct filter_callback *f;
- struct object_callback *c;
+ struct node *n;
unsigned i;
assert(b);
- if (b->fd >= 0)
- close_nointr_nofail(b->fd);
+ sd_bus_detach_event(b);
+
+ bus_close_fds(b);
+
+ if (b->kdbus_buffer)
+ munmap(b->kdbus_buffer, KDBUS_POOL_SIZE);
free(b->rbuffer);
free(b->unique_name);
- free(b->auth_uid);
+ free(b->auth_buffer);
free(b->address);
+ free(b->kernel);
+ free(b->machine);
free(b->exec_path);
strv_free(b->exec_argv);
prioq_free(b->reply_callbacks_prioq);
while ((f = b->filter_callbacks)) {
- LIST_REMOVE(struct filter_callback, callbacks, b->filter_callbacks, f);
+ LIST_REMOVE(callbacks, b->filter_callbacks, f);
free(f);
}
- while ((c = hashmap_steal_first(b->object_callbacks))) {
- free(c->path);
- free(c);
- }
+ bus_match_free(&b->match_callbacks);
+
+ hashmap_free_free(b->vtable_methods);
+ hashmap_free_free(b->vtable_properties);
+
+ while ((n = hashmap_first(b->nodes)))
+ bus_node_destroy(b, n);
- hashmap_free(b->object_callbacks);
+ hashmap_free(b->nodes);
+
+ bus_kernel_flush_memfd(b);
+
+ assert_se(pthread_mutex_destroy(&b->memfd_cache_mutex) == 0);
free(b);
}
-int sd_bus_new(sd_bus **ret) {
+_public_ int sd_bus_new(sd_bus **ret) {
sd_bus *r;
- if (!ret)
- return -EINVAL;
+ assert_return(ret, -EINVAL);
r = new0(sd_bus, 1);
if (!r)
return -ENOMEM;
- r->n_ref = 1;
- r->fd = -1;
+ r->n_ref = REFCNT_INIT;
+ r->input_fd = r->output_fd = -1;
r->message_version = 1;
- r->negotiate_fds = true;
+ r->hello_flags |= KDBUS_HELLO_ACCEPT_FD;
+ r->original_pid = getpid();
+
+ assert_se(pthread_mutex_init(&r->memfd_cache_mutex, NULL) == 0);
/* We guarantee that wqueue always has space for at least one
* entry */
return 0;
}
-int sd_bus_set_address(sd_bus *bus, const char *address) {
+_public_ int sd_bus_set_address(sd_bus *bus, const char *address) {
char *a;
- if (!bus)
- return -EINVAL;
- if (bus->state != BUS_UNSET)
- return -EPERM;
- if (!address)
- return -EINVAL;
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(address, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
a = strdup(address);
if (!a)
return 0;
}
-int sd_bus_set_fd(sd_bus *bus, int fd) {
- if (!bus)
- return -EINVAL;
- if (bus->state != BUS_UNSET)
- return -EPERM;
- if (fd < 0)
- return -EINVAL;
+_public_ int sd_bus_set_fd(sd_bus *bus, int input_fd, int output_fd) {
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(input_fd >= 0, -EINVAL);
+ assert_return(output_fd >= 0, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
- bus->fd = fd;
+ bus->input_fd = input_fd;
+ bus->output_fd = output_fd;
return 0;
}
-int sd_bus_set_exec(sd_bus *bus, const char *path, char *const argv[]) {
+_public_ int sd_bus_set_exec(sd_bus *bus, const char *path, char *const argv[]) {
char *p, **a;
- if (!bus)
- return -EINVAL;
- if (bus->state != BUS_UNSET)
- return -EPERM;
- if (!path)
- return -EINVAL;
- if (strv_isempty(argv))
- return -EINVAL;
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(path, -EINVAL);
+ assert_return(!strv_isempty(argv), -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
p = strdup(path);
if (!p)
return 0;
}
-int sd_bus_set_bus_client(sd_bus *bus, int b) {
- if (!bus)
- return -EINVAL;
- if (bus->state != BUS_UNSET)
- return -EPERM;
+_public_ int sd_bus_set_bus_client(sd_bus *bus, int b) {
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
bus->bus_client = !!b;
return 0;
}
-int sd_bus_set_negotiate_fds(sd_bus *bus, int b) {
- if (!bus)
- return -EINVAL;
- if (bus->state != BUS_UNSET)
- return -EPERM;
+_public_ int sd_bus_negotiate_fds(sd_bus *bus, int b) {
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ SET_FLAG(bus->hello_flags, KDBUS_HELLO_ACCEPT_FD, b);
+ return 0;
+}
+
+_public_ int sd_bus_negotiate_attach_timestamp(sd_bus *bus, int b) {
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ SET_FLAG(bus->hello_flags, KDBUS_HELLO_ATTACH_TIMESTAMP, b);
+ return 0;
+}
+
+_public_ int sd_bus_negotiate_attach_creds(sd_bus *bus, int b) {
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ SET_FLAG(bus->hello_flags, KDBUS_HELLO_ATTACH_CREDS, b);
+ return 0;
+}
- bus->negotiate_fds = !!b;
+_public_ int sd_bus_negotiate_attach_comm(sd_bus *bus, int b) {
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ SET_FLAG(bus->hello_flags, KDBUS_HELLO_ATTACH_COMM, b);
+ return 0;
+}
+
+_public_ int sd_bus_negotiate_attach_exe(sd_bus *bus, int b) {
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ SET_FLAG(bus->hello_flags, KDBUS_HELLO_ATTACH_EXE, b);
+ return 0;
+}
+
+_public_ int sd_bus_negotiate_attach_cmdline(sd_bus *bus, int b) {
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ SET_FLAG(bus->hello_flags, KDBUS_HELLO_ATTACH_CMDLINE, b);
+ return 0;
+}
+
+_public_ int sd_bus_negotiate_attach_cgroup(sd_bus *bus, int b) {
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ SET_FLAG(bus->hello_flags, KDBUS_HELLO_ATTACH_CGROUP, b);
+ return 0;
+}
+
+_public_ int sd_bus_negotiate_attach_caps(sd_bus *bus, int b) {
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ SET_FLAG(bus->hello_flags, KDBUS_HELLO_ATTACH_CAPS, b);
+ return 0;
+}
+
+_public_ int sd_bus_negotiate_attach_selinux_context(sd_bus *bus, int b) {
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ SET_FLAG(bus->hello_flags, KDBUS_HELLO_ATTACH_SECLABEL, b);
+ return 0;
+}
+
+_public_ int sd_bus_negotiate_attach_audit(sd_bus *bus, int b) {
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ SET_FLAG(bus->hello_flags, KDBUS_HELLO_ATTACH_AUDIT, b);
+ return 0;
+}
+
+_public_ int sd_bus_set_server(sd_bus *bus, int b, sd_id128_t server_id) {
+ assert_return(bus, -EINVAL);
+ assert_return(b || sd_id128_equal(server_id, SD_ID128_NULL), -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ bus->is_server = !!b;
+ bus->server_id = server_id;
+ return 0;
+}
+
+_public_ int sd_bus_set_anonymous(sd_bus *bus, int b) {
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ bus->anonymous_auth = !!b;
return 0;
}
-static int hello_callback(sd_bus *bus, int error, sd_bus_message *reply, void *userdata) {
+static int hello_callback(sd_bus *bus, sd_bus_message *reply, void *userdata) {
const char *s;
int r;
assert(bus);
assert(bus->state == BUS_HELLO);
-
- if (error != 0)
- return -error;
-
assert(reply);
+ r = sd_bus_message_get_errno(reply);
+ if (r < 0)
+ return r;
+ if (r > 0)
+ return -r;
+
r = sd_bus_message_read(reply, "s", &s);
if (r < 0)
return r;
assert(bus);
- if (!bus->bus_client)
+ if (!bus->bus_client || bus->is_kernel)
return 0;
r = sd_bus_message_new_method_call(
if (r < 0)
return r;
- r = sd_bus_send_with_reply(bus, m, hello_callback, NULL, 0, NULL);
- if (r < 0)
- return r;
-
- return r;
+ return sd_bus_call_async(bus, m, hello_callback, NULL, 0, &bus->hello_serial);
}
int bus_start_running(sd_bus *bus) {
assert(bus);
- if (bus->bus_client) {
+ if (bus->bus_client && !bus->is_kernel) {
bus->state = BUS_HELLO;
return 1;
}
static int parse_tcp_address(sd_bus *b, const char **p, char **guid) {
_cleanup_free_ char *host = NULL, *port = NULL, *family = NULL;
- struct addrinfo hints, *result;
int r;
+ struct addrinfo *result, hints = {
+ .ai_socktype = SOCK_STREAM,
+ .ai_flags = AI_ADDRCONFIG,
+ };
assert(b);
assert(p);
if (!host || !port)
return -EINVAL;
- zero(hints);
- hints.ai_socktype = SOCK_STREAM;
- hints.ai_flags = AI_ADDRCONFIG;
-
if (family) {
if (streq(family, "ipv4"))
hints.ai_family = AF_INET;
errno = 0;
ul = strtoul(*p + 4, (char**) p, 10);
- if (errno != 0 || **p != '=' || ul > 256) {
+ if (errno > 0 || **p != '=' || ul > 256) {
r = -EINVAL;
goto fail;
}
skip_address_key(p);
}
- if (!path)
+ if (!path) {
+ r = -EINVAL;
goto fail;
+ }
/* Make sure there are no holes in the array, with the
* exception of argv[0] */
return r;
}
+static int parse_kernel_address(sd_bus *b, const char **p, char **guid) {
+ _cleanup_free_ char *path = NULL;
+ int r;
+
+ assert(b);
+ assert(p);
+ assert(*p);
+ assert(guid);
+
+ while (**p != 0 && **p != ';') {
+ r = parse_address_key(p, "guid", guid);
+ if (r < 0)
+ return r;
+ else if (r > 0)
+ continue;
+
+ r = parse_address_key(p, "path", &path);
+ if (r < 0)
+ return r;
+ else if (r > 0)
+ continue;
+
+ skip_address_key(p);
+ }
+
+ if (!path)
+ return -EINVAL;
+
+ free(b->kernel);
+ b->kernel = path;
+ path = NULL;
+
+ return 0;
+}
+
+static int parse_container_address(sd_bus *b, const char **p, char **guid) {
+ _cleanup_free_ char *machine = NULL;
+ int r;
+
+ assert(b);
+ assert(p);
+ assert(*p);
+ assert(guid);
+
+ while (**p != 0 && **p != ';') {
+ r = parse_address_key(p, "guid", guid);
+ if (r < 0)
+ return r;
+ else if (r > 0)
+ continue;
+
+ r = parse_address_key(p, "machine", &machine);
+ if (r < 0)
+ return r;
+ else if (r > 0)
+ continue;
+
+ skip_address_key(p);
+ }
+
+ if (!machine)
+ return -EINVAL;
+
+ free(b->machine);
+ b->machine = machine;
+ machine = NULL;
+
+ b->sockaddr.un.sun_family = AF_UNIX;
+ strncpy(b->sockaddr.un.sun_path, "/var/run/dbus/system_bus_socket", sizeof(b->sockaddr.un.sun_path));
+ b->sockaddr_size = offsetof(struct sockaddr_un, sun_path) + sizeof("/var/run/dbus/system_bus_socket") - 1;
+
+ return 0;
+}
+
static void bus_reset_parsed_address(sd_bus *b) {
assert(b);
free(b->exec_path);
b->exec_path = NULL;
b->exec_argv = NULL;
- b->peer = SD_ID128_NULL;
+ b->server_id = SD_ID128_NULL;
+ free(b->kernel);
+ b->kernel = NULL;
+ free(b->machine);
+ b->machine = NULL;
}
static int bus_parse_next_address(sd_bus *b) {
break;
+ } else if (startswith(a, "kernel:")) {
+
+ a += 7;
+ r = parse_kernel_address(b, &a, &guid);
+ if (r < 0)
+ return r;
+
+ break;
+ } else if (startswith(a, "x-container:")) {
+
+ a += 12;
+ r = parse_container_address(b, &a, &guid);
+ if (r < 0)
+ return r;
+
+ break;
}
a = strchr(a, ';');
}
if (guid) {
- r = sd_id128_from_string(guid, &b->peer);
+ r = sd_id128_from_string(guid, &b->server_id);
if (r < 0)
return r;
}
assert(b);
for (;;) {
- if (b->fd >= 0) {
- close_nointr_nofail(b->fd);
- b->fd = -1;
- }
+ sd_bus_close(b);
- if (b->sockaddr.sa.sa_family != AF_UNSPEC) {
+ if (b->exec_path) {
- r = bus_socket_connect(b);
+ r = bus_socket_exec(b);
+ if (r >= 0)
+ return r;
+
+ b->last_connect_error = -r;
+ } else if (b->kernel) {
+
+ r = bus_kernel_connect(b);
if (r >= 0)
return r;
b->last_connect_error = -r;
- } else if (b->exec_path) {
+ } else if (b->machine) {
- r = bus_socket_exec(b);
+ r = bus_container_connect(b);
+ if (r >= 0)
+ return r;
+
+ b->last_connect_error = -r;
+
+ } else if (b->sockaddr.sa.sa_family != AF_UNSPEC) {
+
+ r = bus_socket_connect(b);
if (r >= 0)
return r;
}
static int bus_start_fd(sd_bus *b) {
+ struct stat st;
int r;
assert(b);
+ assert(b->input_fd >= 0);
+ assert(b->output_fd >= 0);
- r = fd_nonblock(b->fd, true);
+ r = fd_nonblock(b->input_fd, true);
if (r < 0)
return r;
- r = fd_cloexec(b->fd, true);
+ r = fd_cloexec(b->input_fd, true);
if (r < 0)
return r;
- return bus_socket_take_fd(b);
+ if (b->input_fd != b->output_fd) {
+ r = fd_nonblock(b->output_fd, true);
+ if (r < 0)
+ return r;
+
+ r = fd_cloexec(b->output_fd, true);
+ if (r < 0)
+ return r;
+ }
+
+ if (fstat(b->input_fd, &st) < 0)
+ return -errno;
+
+ if (S_ISCHR(b->input_fd))
+ return bus_kernel_take_fd(b);
+ else
+ return bus_socket_take_fd(b);
}
-int sd_bus_start(sd_bus *bus) {
+_public_ int sd_bus_start(sd_bus *bus) {
int r;
- if (!bus)
- return -EINVAL;
- if (bus->state != BUS_UNSET)
- return -EPERM;
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state == BUS_UNSET, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
bus->state = BUS_OPENING;
- if (bus->fd >= 0)
+ if (bus->is_server && bus->bus_client)
+ return -EINVAL;
+
+ if (bus->input_fd >= 0)
r = bus_start_fd(bus);
- else if (bus->address)
+ else if (bus->address || bus->sockaddr.sa.sa_family != AF_UNSPEC || bus->exec_path || bus->kernel || bus->machine)
r = bus_start_address(bus);
else
return -EINVAL;
return bus_send_hello(bus);
}
-int sd_bus_open_system(sd_bus **ret) {
+_public_ int sd_bus_open_system(sd_bus **ret) {
const char *e;
sd_bus *b;
int r;
- if (!ret)
- return -EINVAL;
+ assert_return(ret, -EINVAL);
r = sd_bus_new(&b);
if (r < 0)
return r;
- e = getenv("DBUS_SYSTEM_BUS_ADDRESS");
+ e = secure_getenv("DBUS_SYSTEM_BUS_ADDRESS");
if (e) {
r = sd_bus_set_address(b, e);
if (r < 0)
return r;
}
-int sd_bus_open_user(sd_bus **ret) {
+_public_ int sd_bus_open_user(sd_bus **ret) {
const char *e;
sd_bus *b;
size_t l;
int r;
- if (!ret)
- return -EINVAL;
+ assert_return(ret, -EINVAL);
r = sd_bus_new(&b);
if (r < 0)
return r;
- e = getenv("DBUS_SESSION_BUS_ADDRESS");
+ e = secure_getenv("DBUS_SESSION_BUS_ADDRESS");
if (e) {
r = sd_bus_set_address(b, e);
if (r < 0)
goto fail;
} else {
- e = getenv("XDG_RUNTIME_DIR");
+ e = secure_getenv("XDG_RUNTIME_DIR");
if (!e) {
r = -ENOENT;
goto fail;
return r;
}
-void sd_bus_close(sd_bus *bus) {
- if (!bus)
- return;
- if (bus->fd < 0)
- return;
-
- close_nointr_nofail(bus->fd);
- bus->fd = -1;
-}
+_public_ int sd_bus_open_system_remote(const char *host, sd_bus **ret) {
+ _cleanup_free_ char *e = NULL;
+ char *p = NULL;
+ sd_bus *bus;
+ int r;
-sd_bus *sd_bus_ref(sd_bus *bus) {
- if (!bus)
- return NULL;
+ assert_return(host, -EINVAL);
+ assert_return(ret, -EINVAL);
- assert(bus->n_ref > 0);
+ e = bus_address_escape(host);
+ if (!e)
+ return -ENOMEM;
- bus->n_ref++;
- return bus;
-}
+ p = strjoin("unixexec:path=ssh,argv1=-xT,argv2=", e, ",argv3=systemd-stdio-bridge", NULL);
+ if (!p)
+ return -ENOMEM;
-sd_bus *sd_bus_unref(sd_bus *bus) {
- if (!bus)
- return NULL;
+ r = sd_bus_new(&bus);
+ if (r < 0) {
+ free(p);
+ return r;
+ }
- assert(bus->n_ref > 0);
- bus->n_ref--;
+ bus->address = p;
+ bus->bus_client = true;
- if (bus->n_ref <= 0)
+ r = sd_bus_start(bus);
+ if (r < 0) {
bus_free(bus);
+ return r;
+ }
- return NULL;
-}
-
-int sd_bus_is_open(sd_bus *bus) {
- if (!bus)
- return -EINVAL;
-
- return bus->state != BUS_UNSET && bus->fd >= 0;
+ *ret = bus;
+ return 0;
}
-int sd_bus_can_send(sd_bus *bus, char type) {
+_public_ int sd_bus_open_system_container(const char *machine, sd_bus **ret) {
+ _cleanup_free_ char *e = NULL;
+ sd_bus *bus;
+ char *p;
int r;
- if (!bus)
- return -EINVAL;
- if (bus->fd < 0)
- return -ENOTCONN;
+ assert_return(machine, -EINVAL);
+ assert_return(ret, -EINVAL);
- if (type == SD_BUS_TYPE_UNIX_FD) {
- if (!bus->negotiate_fds)
- return 0;
+ e = bus_address_escape(machine);
+ if (!e)
+ return -ENOMEM;
- r = bus_ensure_running(bus);
- if (r < 0)
- return r;
+ p = strjoin("x-container:machine=", e, NULL);
+ if (!p)
+ return -ENOMEM;
- return bus->can_fds;
- }
+ r = sd_bus_new(&bus);
+ if (r < 0) {
+ free(p);
+ return r;
+ }
+
+ bus->address = p;
+ bus->bus_client = true;
+
+ r = sd_bus_start(bus);
+ if (r < 0) {
+ bus_free(bus);
+ return r;
+ }
+
+ *ret = bus;
+ return 0;
+}
+
+_public_ void sd_bus_close(sd_bus *bus) {
+ if (!bus)
+ return;
+ if (bus->state == BUS_CLOSED)
+ return;
+ if (bus_pid_changed(bus))
+ return;
+
+ bus->state = BUS_CLOSED;
+
+ sd_bus_detach_event(bus);
+
+ if (!bus->is_kernel)
+ bus_close_fds(bus);
+
+ /* We'll leave the fd open in case this is a kernel bus, since
+ * there might still be memblocks around that reference this
+ * bus, and they might need to invoke the
+ * KDBUS_CMD_MSG_RELEASE ioctl on the fd when they are
+ * freed. */
+}
+
+static void bus_enter_closing(sd_bus *bus) {
+ assert(bus);
+
+ if (bus->state != BUS_OPENING &&
+ bus->state != BUS_AUTHENTICATING &&
+ bus->state != BUS_HELLO &&
+ bus->state != BUS_RUNNING)
+ return;
+
+ bus->state = BUS_CLOSING;
+}
+
+_public_ sd_bus *sd_bus_ref(sd_bus *bus) {
+ assert_return(bus, NULL);
+
+ assert_se(REFCNT_INC(bus->n_ref) >= 2);
+
+ return bus;
+}
+
+_public_ sd_bus *sd_bus_unref(sd_bus *bus) {
+ assert_return(bus, NULL);
+
+ if (REFCNT_DEC(bus->n_ref) <= 0)
+ bus_free(bus);
+
+ return NULL;
+}
+
+_public_ int sd_bus_is_open(sd_bus *bus) {
+
+ assert_return(bus, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ return BUS_IS_OPEN(bus->state);
+}
+
+_public_ int sd_bus_can_send(sd_bus *bus, char type) {
+ int r;
+
+ assert_return(bus, -EINVAL);
+ assert_return(bus->state != BUS_UNSET, -ENOTCONN);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ if (type == SD_BUS_TYPE_UNIX_FD) {
+ if (!(bus->hello_flags & KDBUS_HELLO_ACCEPT_FD))
+ return 0;
+
+ r = bus_ensure_running(bus);
+ if (r < 0)
+ return r;
+
+ return bus->can_fds;
+ }
return bus_type_is_valid(type);
}
-int sd_bus_get_peer(sd_bus *bus, sd_id128_t *peer) {
+_public_ int sd_bus_get_server_id(sd_bus *bus, sd_id128_t *server_id) {
int r;
- if (!bus)
- return -EINVAL;
- if (!peer)
- return -EINVAL;
+ assert_return(bus, -EINVAL);
+ assert_return(server_id, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
r = bus_ensure_running(bus);
if (r < 0)
return r;
- *peer = bus->peer;
+ *server_id = bus->server_id;
return 0;
}
if (m->header->version > b->message_version)
return -EPERM;
- if (m->sealed)
+ if (m->sealed) {
+ /* If we copy the same message to multiple
+ * destinations, avoid using the same serial
+ * numbers. */
+ b->serial = MAX(b->serial, BUS_MESSAGE_SERIAL(m));
return 0;
+ }
return bus_message_seal(m, ++b->serial);
}
+static int bus_write_message(sd_bus *bus, sd_bus_message *message, size_t *idx) {
+ int r;
+
+ assert(bus);
+ assert(message);
+
+ if (bus->is_kernel)
+ r = bus_kernel_write_message(bus, message);
+ else
+ r = bus_socket_write_message(bus, message, idx);
+
+ return r;
+}
+
static int dispatch_wqueue(sd_bus *bus) {
int r, ret = 0;
assert(bus);
assert(bus->state == BUS_RUNNING || bus->state == BUS_HELLO);
- if (bus->fd < 0)
- return -ENOTCONN;
-
while (bus->wqueue_size > 0) {
- r = bus_socket_write_message(bus, bus->wqueue[0], &bus->windex);
- if (r < 0) {
- sd_bus_close(bus);
+ r = bus_write_message(bus, bus->wqueue[0], &bus->windex);
+ if (r < 0)
return r;
- } else if (r == 0)
+ else if (r == 0)
/* Didn't do anything this time */
return ret;
- else if (bus->windex >= bus->wqueue[0]->size) {
+ else if (bus->is_kernel || bus->windex >= BUS_MESSAGE_SIZE(bus->wqueue[0])) {
/* Fully written. Let's drop the entry from
* the queue.
*
return ret;
}
+static int bus_read_message(sd_bus *bus, sd_bus_message **m) {
+ int r;
+
+ assert(bus);
+ assert(m);
+
+ if (bus->is_kernel)
+ r = bus_kernel_read_message(bus, m);
+ else
+ r = bus_socket_read_message(bus, m);
+
+ return r;
+}
+
static int dispatch_rqueue(sd_bus *bus, sd_bus_message **m) {
sd_bus_message *z = NULL;
int r, ret = 0;
assert(m);
assert(bus->state == BUS_RUNNING || bus->state == BUS_HELLO);
- if (bus->fd < 0)
- return -ENOTCONN;
-
if (bus->rqueue_size > 0) {
/* Dispatch a queued message */
/* Try to read a new message */
do {
- r = bus_socket_read_message(bus, &z);
- if (r < 0) {
- sd_bus_close(bus);
+ r = bus_read_message(bus, &z);
+ if (r < 0)
return r;
- }
if (r == 0)
return ret;
- r = 1;
+ ret = 1;
} while (!z);
*m = z;
- return 1;
+ return ret;
}
-int sd_bus_send(sd_bus *bus, sd_bus_message *m, uint64_t *serial) {
+_public_ int sd_bus_send(sd_bus *bus, sd_bus_message *m, uint64_t *serial) {
int r;
- if (!bus)
- return -EINVAL;
- if (bus->state == BUS_UNSET)
- return -ENOTCONN;
- if (bus->fd < 0)
- return -ENOTCONN;
- if (!m)
- return -EINVAL;
+ assert_return(bus, -EINVAL);
+ assert_return(BUS_IS_OPEN(bus->state), -ENOTCONN);
+ assert_return(m, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
if (m->n_fds > 0) {
r = sd_bus_can_send(bus, SD_BUS_TYPE_UNIX_FD);
/* If this is a reply and no reply was requested, then let's
* suppress this, if we can */
if (m->dont_send && !serial)
- return 0;
+ return 1;
if ((bus->state == BUS_RUNNING || bus->state == BUS_HELLO) && bus->wqueue_size <= 0) {
size_t idx = 0;
- r = bus_socket_write_message(bus, m, &idx);
- if (r < 0) {
- sd_bus_close(bus);
+ r = bus_write_message(bus, m, &idx);
+ if (r < 0)
return r;
- } else if (idx < m->size) {
+ else if (!bus->is_kernel && idx < BUS_MESSAGE_SIZE(m)) {
/* Wasn't fully written. So let's remember how
* much was written. Note that the first entry
* of the wqueue array is always allocated so
if (serial)
*serial = BUS_MESSAGE_SERIAL(m);
- return 0;
+ return 1;
+}
+
+_public_ int sd_bus_send_to(sd_bus *bus, sd_bus_message *m, const char *destination, uint64_t *serial) {
+ int r;
+
+ assert_return(bus, -EINVAL);
+ assert_return(BUS_IS_OPEN(bus->state), -ENOTCONN);
+ assert_return(m, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ if (!streq_ptr(m->destination, destination)) {
+
+ if (!destination)
+ return -EEXIST;
+
+ r = sd_bus_message_set_destination(m, destination);
+ if (r < 0)
+ return r;
+ }
+
+ return sd_bus_send(bus, m, serial);
}
static usec_t calc_elapse(uint64_t usec) {
return 0;
}
-int sd_bus_send_with_reply(
+_public_ int sd_bus_call_async(
sd_bus *bus,
sd_bus_message *m,
- sd_message_handler_t callback,
+ sd_bus_message_handler_t callback,
void *userdata,
uint64_t usec,
uint64_t *serial) {
struct reply_callback *c;
int r;
- if (!bus)
- return -EINVAL;
- if (bus->state == BUS_UNSET)
- return -ENOTCONN;
- if (bus->fd < 0)
- return -ENOTCONN;
- if (!m)
- return -EINVAL;
- if (!callback)
- return -EINVAL;
- if (m->header->type != SD_BUS_MESSAGE_TYPE_METHOD_CALL)
- return -EINVAL;
- if (m->header->flags & SD_BUS_MESSAGE_NO_REPLY_EXPECTED)
- return -EINVAL;
+ assert_return(bus, -EINVAL);
+ assert_return(BUS_IS_OPEN(bus->state), -ENOTCONN);
+ assert_return(m, -EINVAL);
+ assert_return(m->header->type == SD_BUS_MESSAGE_METHOD_CALL, -EINVAL);
+ assert_return(!(m->header->flags & SD_BUS_MESSAGE_NO_REPLY_EXPECTED), -EINVAL);
+ assert_return(callback, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
r = hashmap_ensure_allocated(&bus->reply_callbacks, uint64_hash_func, uint64_compare_func);
if (r < 0)
if (r < 0)
return r;
- c = new(struct reply_callback, 1);
+ c = new0(struct reply_callback, 1);
if (!c)
return -ENOMEM;
r = prioq_put(bus->reply_callbacks_prioq, c, &c->prioq_idx);
if (r < 0) {
c->timeout = 0;
- sd_bus_send_with_reply_cancel(bus, c->serial);
+ sd_bus_call_async_cancel(bus, c->serial);
return r;
}
}
r = sd_bus_send(bus, m, serial);
if (r < 0) {
- sd_bus_send_with_reply_cancel(bus, c->serial);
+ sd_bus_call_async_cancel(bus, c->serial);
return r;
}
return r;
}
-int sd_bus_send_with_reply_cancel(sd_bus *bus, uint64_t serial) {
+_public_ int sd_bus_call_async_cancel(sd_bus *bus, uint64_t serial) {
struct reply_callback *c;
- if (!bus)
- return -EINVAL;
- if (serial == 0)
- return -EINVAL;
+ assert_return(bus, -EINVAL);
+ assert_return(serial != 0, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
c = hashmap_remove(bus->reply_callbacks, &serial);
if (!c)
assert(bus);
- if (bus->fd < 0)
- return -ENOTCONN;
- if (bus->state == BUS_UNSET)
+ if (bus->state == BUS_UNSET || bus->state == BUS_CLOSED || bus->state == BUS_CLOSING)
return -ENOTCONN;
-
if (bus->state == BUS_RUNNING)
return 1;
}
}
-int sd_bus_send_with_reply_and_block(
+_public_ int sd_bus_call(
sd_bus *bus,
sd_bus_message *m,
uint64_t usec,
uint64_t serial;
bool room = false;
- if (!bus)
- return -EINVAL;
- if (bus->fd < 0)
- return -ENOTCONN;
- if (bus->state == BUS_UNSET)
- return -ENOTCONN;
- if (!m)
- return -EINVAL;
- if (m->header->type != SD_BUS_MESSAGE_TYPE_METHOD_CALL)
- return -EINVAL;
- if (m->header->flags & SD_BUS_MESSAGE_NO_REPLY_EXPECTED)
- return -EINVAL;
- if (bus_error_is_dirty(error))
- return -EINVAL;
+ assert_return(bus, -EINVAL);
+ assert_return(BUS_IS_OPEN(bus->state), -ENOTCONN);
+ assert_return(m, -EINVAL);
+ assert_return(m->header->type == SD_BUS_MESSAGE_METHOD_CALL, -EINVAL);
+ assert_return(!(m->header->flags & SD_BUS_MESSAGE_NO_REPLY_EXPECTED), -EINVAL);
+ assert_return(!bus_error_is_dirty(error), -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
r = bus_ensure_running(bus);
if (r < 0)
room = true;
}
- r = bus_socket_read_message(bus, &incoming);
+ r = bus_read_message(bus, &incoming);
if (r < 0)
return r;
+
if (incoming) {
if (incoming->reply_serial == serial) {
/* Found a match! */
- if (incoming->header->type == SD_BUS_MESSAGE_TYPE_METHOD_RETURN) {
- *reply = incoming;
- return 0;
+ if (incoming->header->type == SD_BUS_MESSAGE_METHOD_RETURN) {
+
+ if (reply)
+ *reply = incoming;
+ else
+ sd_bus_message_unref(incoming);
+
+ return 1;
}
- if (incoming->header->type == SD_BUS_MESSAGE_TYPE_METHOD_ERROR) {
+ if (incoming->header->type == SD_BUS_MESSAGE_METHOD_ERROR) {
int k;
r = sd_bus_error_copy(error, &incoming->error);
return r;
}
- k = bus_error_to_errno(&incoming->error);
+ k = sd_bus_error_get_errno(&incoming->error);
sd_bus_message_unref(incoming);
- return k;
+ return -k;
}
sd_bus_message_unref(incoming);
return -EIO;
+
+ } else if (incoming->header->serial == serial &&
+ bus->unique_name &&
+ incoming->sender &&
+ streq(bus->unique_name, incoming->sender)) {
+
+ /* Our own message? Somebody is trying
+ * to send its own client a message,
+ * let's not dead-lock, let's fail
+ * immediately. */
+
+ sd_bus_message_unref(incoming);
+ return -ELOOP;
}
/* There's already guaranteed to be room for
}
}
-int sd_bus_get_fd(sd_bus *bus) {
- if (!bus)
- return -EINVAL;
+_public_ int sd_bus_get_fd(sd_bus *bus) {
- if (bus->fd < 0)
- return -ENOTCONN;
+ assert_return(bus, -EINVAL);
+ assert_return(bus->input_fd == bus->output_fd, -EPERM);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
- return bus->fd;
+ return bus->input_fd;
}
-int sd_bus_get_events(sd_bus *bus) {
+_public_ int sd_bus_get_events(sd_bus *bus) {
int flags = 0;
- if (!bus)
- return -EINVAL;
- if (bus->state == BUS_UNSET)
- return -ENOTCONN;
- if (bus->fd < 0)
- return -ENOTCONN;
+ assert_return(bus, -EINVAL);
+ assert_return(BUS_IS_OPEN(bus->state) || bus->state == BUS_CLOSING, -ENOTCONN);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
if (bus->state == BUS_OPENING)
flags |= POLLOUT;
else if (bus->state == BUS_AUTHENTICATING) {
- if (bus->auth_index < ELEMENTSOF(bus->auth_iovec))
+ if (bus_socket_auth_needs_write(bus))
flags |= POLLOUT;
flags |= POLLIN;
return flags;
}
-int sd_bus_get_timeout(sd_bus *bus, uint64_t *timeout_usec) {
+_public_ int sd_bus_get_timeout(sd_bus *bus, uint64_t *timeout_usec) {
struct reply_callback *c;
- if (!bus)
- return -EINVAL;
- if (!timeout_usec)
- return -EINVAL;
- if (bus->state == BUS_UNSET)
- return -ENOTCONN;
- if (bus->fd < 0)
- return -ENOTCONN;
+ assert_return(bus, -EINVAL);
+ assert_return(timeout_usec, -EINVAL);
+ assert_return(BUS_IS_OPEN(bus->state) || bus->state == BUS_CLOSING, -ENOTCONN);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ if (bus->state == BUS_CLOSING) {
+ *timeout_usec = 0;
+ return 1;
+ }
if (bus->state == BUS_AUTHENTICATING) {
*timeout_usec = bus->auth_timeout;
return 1;
}
- if (bus->state != BUS_RUNNING && bus->state != BUS_HELLO)
+ if (bus->state != BUS_RUNNING && bus->state != BUS_HELLO) {
+ *timeout_usec = (uint64_t) -1;
return 0;
+ }
+
+ if (bus->rqueue_size > 0) {
+ *timeout_usec = 0;
+ return 1;
+ }
c = prioq_peek(bus->reply_callbacks_prioq);
- if (!c)
+ if (!c) {
+ *timeout_usec = (uint64_t) -1;
return 0;
+ }
*timeout_usec = c->timeout;
return 1;
}
static int process_timeout(sd_bus *bus) {
+ _cleanup_bus_message_unref_ sd_bus_message* m = NULL;
struct reply_callback *c;
usec_t n;
int r;
if (c->timeout > n)
return 0;
+ r = bus_message_new_synthetic_error(
+ bus,
+ c->serial,
+ &SD_BUS_ERROR_MAKE(SD_BUS_ERROR_NO_REPLY, "Method call timed out"),
+ &m);
+ if (r < 0)
+ return r;
+
+ r = bus_seal_message(bus, m);
+ if (r < 0)
+ return r;
+
assert_se(prioq_pop(bus->reply_callbacks_prioq) == c);
hashmap_remove(bus->reply_callbacks, &c->serial);
- r = c->callback(bus, ETIMEDOUT, NULL, c->userdata);
+ bus->current = m;
+ bus->iteration_counter ++;
+
+ r = c->callback(bus, m, c->userdata);
free(c);
+ bus->current = NULL;
+
return r < 0 ? r : 1;
}
+static int process_hello(sd_bus *bus, sd_bus_message *m) {
+ assert(bus);
+ assert(m);
+
+ if (bus->state != BUS_HELLO)
+ return 0;
+
+ /* Let's make sure the first message on the bus is the HELLO
+ * reply. But note that we don't actually parse the message
+ * here (we leave that to the usual handling), we just verify
+ * we don't let any earlier msg through. */
+
+ if (m->header->type != SD_BUS_MESSAGE_METHOD_RETURN &&
+ m->header->type != SD_BUS_MESSAGE_METHOD_ERROR)
+ return -EIO;
+
+ if (m->reply_serial != bus->hello_serial)
+ return -EIO;
+
+ return 0;
+}
+
static int process_reply(sd_bus *bus, sd_bus_message *m) {
struct reply_callback *c;
int r;
assert(bus);
assert(m);
- if (m->header->type != SD_BUS_MESSAGE_TYPE_METHOD_RETURN &&
- m->header->type != SD_BUS_MESSAGE_TYPE_METHOD_ERROR)
+ if (m->header->type != SD_BUS_MESSAGE_METHOD_RETURN &&
+ m->header->type != SD_BUS_MESSAGE_METHOD_ERROR)
return 0;
c = hashmap_remove(bus->reply_callbacks, &m->reply_serial);
if (c->timeout != 0)
prioq_remove(bus->reply_callbacks_prioq, c, &c->prioq_idx);
- r = c->callback(bus, 0, m, c->userdata);
+ r = sd_bus_message_rewind(m, true);
+ if (r < 0)
+ return r;
+
+ r = c->callback(bus, m, c->userdata);
free(c);
- return r;
+ return r < 0 ? r : 1;
}
static int process_filter(sd_bus *bus, sd_bus_message *m) {
struct filter_callback *l;
int r;
- LIST_FOREACH(callbacks, l, bus->filter_callbacks) {
- r = l->callback(bus, 0, m, l->userdata);
+ assert(bus);
+ assert(m);
+
+ do {
+ bus->filter_callbacks_modified = false;
+
+ LIST_FOREACH(callbacks, l, bus->filter_callbacks) {
+
+ if (bus->filter_callbacks_modified)
+ break;
+
+ /* Don't run this more than once per iteration */
+ if (l->last_iteration == bus->iteration_counter)
+ continue;
+
+ l->last_iteration = bus->iteration_counter;
+
+ r = sd_bus_message_rewind(m, true);
+ if (r < 0)
+ return r;
+
+ r = l->callback(bus, m, l->userdata);
+ if (r != 0)
+ return r;
+
+ }
+
+ } while (bus->filter_callbacks_modified);
+
+ return 0;
+}
+
+static int process_match(sd_bus *bus, sd_bus_message *m) {
+ int r;
+
+ assert(bus);
+ assert(m);
+
+ do {
+ bus->match_callbacks_modified = false;
+
+ r = bus_match_run(bus, &bus->match_callbacks, m);
if (r != 0)
return r;
- }
+
+ } while (bus->match_callbacks_modified);
return 0;
}
assert(bus);
assert(m);
- if (m->header->type != SD_BUS_MESSAGE_TYPE_METHOD_CALL)
+ if (m->header->type != SD_BUS_MESSAGE_METHOD_CALL)
return 0;
if (!streq_ptr(m->interface, "org.freedesktop.DBus.Peer"))
r = sd_bus_message_append(reply, "s", sd_id128_to_string(id, sid));
} else {
- _cleanup_bus_error_free_ sd_bus_error error = SD_BUS_ERROR_INIT;
-
- sd_bus_error_set(&error,
- "org.freedesktop.DBus.Error.UnknownMethod",
+ r = sd_bus_message_new_method_errorf(
+ bus, m, &reply,
+ SD_BUS_ERROR_UNKNOWN_METHOD,
"Unknown method '%s' on interface '%s'.", m->member, m->interface);
-
- r = sd_bus_message_new_method_error(bus, m, &error, &reply);
}
if (r < 0)
return 1;
}
-static int process_object(sd_bus *bus, sd_bus_message *m) {
- _cleanup_bus_error_free_ sd_bus_error error = SD_BUS_ERROR_INIT;
- _cleanup_bus_message_unref_ sd_bus_message *reply = NULL;
- struct object_callback *c;
- char *p;
+static int process_message(sd_bus *bus, sd_bus_message *m) {
int r;
- bool found = false;
assert(bus);
assert(m);
- if (m->header->type != SD_BUS_MESSAGE_TYPE_METHOD_CALL)
- return 0;
-
- if (hashmap_isempty(bus->object_callbacks))
- return 0;
-
- c = hashmap_get(bus->object_callbacks, m->path);
- if (c) {
- r = c->callback(bus, 0, m, c->userdata);
- if (r != 0)
- return r;
+ bus->current = m;
+ bus->iteration_counter++;
- found = true;
- }
+ log_debug("Got message sender=%s object=%s interface=%s member=%s",
+ strna(sd_bus_message_get_sender(m)),
+ strna(sd_bus_message_get_path(m)),
+ strna(sd_bus_message_get_interface(m)),
+ strna(sd_bus_message_get_member(m)));
- /* Look for fallback prefixes */
- p = strdupa(m->path);
- for (;;) {
- char *e;
+ r = process_hello(bus, m);
+ if (r != 0)
+ goto finish;
- e = strrchr(p, '/');
- if (e == p || !e)
- break;
+ r = process_reply(bus, m);
+ if (r != 0)
+ goto finish;
- *e = 0;
+ r = process_filter(bus, m);
+ if (r != 0)
+ goto finish;
- c = hashmap_get(bus->object_callbacks, p);
- if (c && c->is_fallback) {
- r = c->callback(bus, 0, m, c->userdata);
- if (r != 0)
- return r;
+ r = process_match(bus, m);
+ if (r != 0)
+ goto finish;
- found = true;
- }
- }
+ r = process_builtin(bus, m);
+ if (r != 0)
+ goto finish;
- if (!found)
- return 0;
+ r = bus_process_object(bus, m);
- sd_bus_error_set(&error,
- "org.freedesktop.DBus.Error.UnknownMethod",
- "Unknown method '%s' or interface '%s'.", m->member, m->interface);
-
- r = sd_bus_message_new_method_error(bus, m, &error, &reply);
- if (r < 0)
- return r;
-
- r = sd_bus_send(bus, reply, NULL);
- if (r < 0)
- return r;
-
- return 1;
-}
-
-static int process_message(sd_bus *bus, sd_bus_message *m) {
- int r;
-
- assert(bus);
- assert(m);
-
- r = process_reply(bus, m);
- if (r != 0)
- return r;
-
- r = process_filter(bus, m);
- if (r != 0)
- return r;
-
- r = process_builtin(bus, m);
- if (r != 0)
- return r;
-
- return process_object(bus, m);
-}
+finish:
+ bus->current = NULL;
+ return r;
+}
static int process_running(sd_bus *bus, sd_bus_message **ret) {
_cleanup_bus_message_unref_ sd_bus_message *m = NULL;
goto null_message;
if (ret) {
+ r = sd_bus_message_rewind(m, true);
+ if (r < 0)
+ return r;
+
*ret = m;
m = NULL;
return 1;
}
- if (m->header->type == SD_BUS_MESSAGE_TYPE_METHOD_CALL) {
- _cleanup_bus_message_unref_ sd_bus_message *reply = NULL;
- _cleanup_bus_error_free_ sd_bus_error error = SD_BUS_ERROR_INIT;
-
- sd_bus_error_set(&error, "org.freedesktop.DBus.Error.UnknownObject", "Unknown object '%s'.", m->path);
-
- r = sd_bus_message_new_method_error(bus, m, &error, &reply);
- if (r < 0)
- return r;
+ if (m->header->type == SD_BUS_MESSAGE_METHOD_CALL) {
- r = sd_bus_send(bus, reply, NULL);
+ r = sd_bus_reply_method_errorf(
+ bus, m,
+ SD_BUS_ERROR_UNKNOWN_OBJECT,
+ "Unknown object '%s'.", m->path);
if (r < 0)
return r;
}
return r;
}
-int sd_bus_process(sd_bus *bus, sd_bus_message **ret) {
+static int process_closing(sd_bus *bus, sd_bus_message **ret) {
+ _cleanup_bus_message_unref_ sd_bus_message *m = NULL;
+ struct reply_callback *c;
+ int r;
+
+ assert(bus);
+ assert(bus->state == BUS_CLOSING);
+
+ c = hashmap_first(bus->reply_callbacks);
+ if (c) {
+ /* First, fail all outstanding method calls */
+ r = bus_message_new_synthetic_error(
+ bus,
+ c->serial,
+ &SD_BUS_ERROR_MAKE(SD_BUS_ERROR_NO_REPLY, "Connection terminated"),
+ &m);
+ if (r < 0)
+ return r;
+
+ r = bus_seal_message(bus, m);
+ if (r < 0)
+ return r;
+
+ if (c->timeout != 0)
+ prioq_remove(bus->reply_callbacks_prioq, c, &c->prioq_idx);
+
+ hashmap_remove(bus->reply_callbacks, &c->serial);
+
+ bus->current = m;
+ bus->iteration_counter++;
+
+ r = c->callback(bus, m, c->userdata);
+ free(c);
+
+ if (r >= 0)
+ r = 1;
+
+ goto finish;
+ }
+
+ /* Then, synthesize a Disconnected message */
+ r = sd_bus_message_new_signal(
+ bus,
+ "/org/freedesktop/DBus/Local",
+ "org.freedesktop.DBus.Local",
+ "Disconnected",
+ &m);
+ if (r < 0)
+ return r;
+
+ r = bus_seal_message(bus, m);
+ if (r < 0)
+ return r;
+
+ sd_bus_close(bus);
+
+ bus->current = m;
+ bus->iteration_counter++;
+
+ r = process_filter(bus, m);
+ if (r != 0)
+ goto finish;
+
+ r = process_match(bus, m);
+ if (r != 0)
+ goto finish;
+
+ if (ret) {
+ *ret = m;
+ m = NULL;
+ }
+
+ r = 1;
+
+finish:
+ bus->current = NULL;
+ return r;
+}
+
+_public_ int sd_bus_process(sd_bus *bus, sd_bus_message **ret) {
+ BUS_DONT_DESTROY(bus);
int r;
/* Returns 0 when we didn't do anything. This should cause the
* time. Returns > 0 when we did something, which possibly
* means *ret is filled in with an unprocessed message. */
- if (!bus)
- return -EINVAL;
- if (bus->fd < 0)
- return -ENOTCONN;
+ assert_return(bus, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ /* We don't allow recursively invoking sd_bus_process(). */
+ assert_return(!bus->current, -EBUSY);
switch (bus->state) {
case BUS_UNSET:
+ case BUS_CLOSED:
return -ENOTCONN;
case BUS_OPENING:
r = bus_socket_process_opening(bus);
- if (r < 0)
+ if (r == -ECONNRESET || r == -EPIPE) {
+ bus_enter_closing(bus);
+ r = 1;
+ } else if (r < 0)
return r;
if (ret)
*ret = NULL;
return r;
case BUS_AUTHENTICATING:
-
r = bus_socket_process_authenticating(bus);
- if (r < 0)
+ if (r == -ECONNRESET || r == -EPIPE) {
+ bus_enter_closing(bus);
+ r = 1;
+ } else if (r < 0)
return r;
+
if (ret)
*ret = NULL;
+
return r;
case BUS_RUNNING:
case BUS_HELLO:
+ r = process_running(bus, ret);
+ if (r == -ECONNRESET || r == -EPIPE) {
+ bus_enter_closing(bus);
+ r = 1;
- return process_running(bus, ret);
+ if (ret)
+ *ret = NULL;
+ }
+
+ return r;
+
+ case BUS_CLOSING:
+ return process_closing(bus, ret);
}
assert_not_reached("Unknown state");
}
static int bus_poll(sd_bus *bus, bool need_more, uint64_t timeout_usec) {
- struct pollfd p;
- int r, e;
+ struct pollfd p[2] = {};
+ int r, e, n;
struct timespec ts;
- usec_t until, m;
+ usec_t m = (usec_t) -1;
assert(bus);
- if (bus->fd < 0)
- return -ENOTCONN;
+ if (bus->state == BUS_CLOSING)
+ return 1;
+
+ assert_return(BUS_IS_OPEN(bus->state), -ENOTCONN);
e = sd_bus_get_events(bus);
if (e < 0)
return e;
if (need_more)
+ /* The caller really needs some more data, he doesn't
+ * care about what's already read, or any timeouts
+ * except its own.*/
e |= POLLIN;
-
- r = sd_bus_get_timeout(bus, &until);
- if (r < 0)
- return r;
- if (r == 0)
- m = (uint64_t) -1;
else {
- usec_t n;
- n = now(CLOCK_MONOTONIC);
- m = until > n ? until - n : 0;
+ usec_t until;
+ /* The caller wants to process if there's something to
+ * process, but doesn't care otherwise */
+
+ r = sd_bus_get_timeout(bus, &until);
+ if (r < 0)
+ return r;
+ if (r > 0) {
+ usec_t nw;
+ nw = now(CLOCK_MONOTONIC);
+ m = until > nw ? until - nw : 0;
+ }
}
if (timeout_usec != (uint64_t) -1 && (m == (uint64_t) -1 || timeout_usec < m))
m = timeout_usec;
- zero(p);
- p.fd = bus->fd;
- p.events = e;
+ p[0].fd = bus->input_fd;
+ if (bus->output_fd == bus->input_fd) {
+ p[0].events = e;
+ n = 1;
+ } else {
+ p[0].events = e & POLLIN;
+ p[1].fd = bus->output_fd;
+ p[1].events = e & POLLOUT;
+ n = 2;
+ }
- r = ppoll(&p, 1, m == (uint64_t) -1 ? NULL : timespec_store(&ts, m), NULL);
+ r = ppoll(p, n, m == (uint64_t) -1 ? NULL : timespec_store(&ts, m), NULL);
if (r < 0)
return -errno;
return r > 0 ? 1 : 0;
}
-int sd_bus_wait(sd_bus *bus, uint64_t timeout_usec) {
+_public_ int sd_bus_wait(sd_bus *bus, uint64_t timeout_usec) {
+
+ assert_return(bus, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ if (bus->state == BUS_CLOSING)
+ return 0;
+
+ assert_return(BUS_IS_OPEN(bus->state) , -ENOTCONN);
- if (!bus)
- return -EINVAL;
- if (bus->state == BUS_UNSET)
- return -ENOTCONN;
- if (bus->fd < 0)
- return -ENOTCONN;
if (bus->rqueue_size > 0)
return 0;
return bus_poll(bus, false, timeout_usec);
}
-int sd_bus_flush(sd_bus *bus) {
+_public_ int sd_bus_flush(sd_bus *bus) {
int r;
- if (!bus)
- return -EINVAL;
- if (bus->state == BUS_UNSET)
- return -ENOTCONN;
- if (bus->fd < 0)
- return -ENOTCONN;
+ assert_return(bus, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ if (bus->state == BUS_CLOSING)
+ return 0;
+
+ assert_return(BUS_IS_OPEN(bus->state), -ENOTCONN);
r = bus_ensure_running(bus);
if (r < 0)
}
}
-int sd_bus_add_filter(sd_bus *bus, sd_message_handler_t callback, void *userdata) {
+_public_ int sd_bus_add_filter(sd_bus *bus,
+ sd_bus_message_handler_t callback,
+ void *userdata) {
+
struct filter_callback *f;
- if (!bus)
- return -EINVAL;
- if (!callback)
- return -EINVAL;
+ assert_return(bus, -EINVAL);
+ assert_return(callback, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
- f = new(struct filter_callback, 1);
+ f = new0(struct filter_callback, 1);
if (!f)
return -ENOMEM;
f->callback = callback;
f->userdata = userdata;
- LIST_PREPEND(struct filter_callback, callbacks, bus->filter_callbacks, f);
+ bus->filter_callbacks_modified = true;
+ LIST_PREPEND(callbacks, bus->filter_callbacks, f);
return 0;
}
-int sd_bus_remove_filter(sd_bus *bus, sd_message_handler_t callback, void *userdata) {
+_public_ int sd_bus_remove_filter(sd_bus *bus,
+ sd_bus_message_handler_t callback,
+ void *userdata) {
+
struct filter_callback *f;
- if (!bus)
- return -EINVAL;
- if (!callback)
- return -EINVAL;
+ assert_return(bus, -EINVAL);
+ assert_return(callback, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
LIST_FOREACH(callbacks, f, bus->filter_callbacks) {
if (f->callback == callback && f->userdata == userdata) {
- LIST_REMOVE(struct filter_callback, callbacks, bus->filter_callbacks, f);
+ bus->filter_callbacks_modified = true;
+ LIST_REMOVE(callbacks, bus->filter_callbacks, f);
free(f);
return 1;
}
return 0;
}
-static int bus_add_object(
- sd_bus *bus,
- bool fallback,
- const char *path,
- sd_message_handler_t callback,
- void *userdata) {
+_public_ int sd_bus_add_match(sd_bus *bus,
+ const char *match,
+ sd_bus_message_handler_t callback,
+ void *userdata) {
+
+ struct bus_match_component *components = NULL;
+ unsigned n_components = 0;
+ uint64_t cookie = 0;
+ int r = 0;
+
+ assert_return(bus, -EINVAL);
+ assert_return(match, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ r = bus_match_parse(match, &components, &n_components);
+ if (r < 0)
+ goto finish;
+
+ if (bus->bus_client) {
+ cookie = ++bus->match_cookie;
+
+ r = bus_add_match_internal(bus, match, components, n_components, cookie);
+ if (r < 0)
+ goto finish;
+ }
+
+ bus->match_callbacks_modified = true;
+ r = bus_match_add(&bus->match_callbacks, components, n_components, callback, userdata, cookie, NULL);
+ if (r < 0) {
+ if (bus->bus_client)
+ bus_remove_match_internal(bus, match, cookie);
+ }
+
+finish:
+ bus_match_parse_free(components, n_components);
+ return r;
+}
+
+_public_ int sd_bus_remove_match(sd_bus *bus,
+ const char *match,
+ sd_bus_message_handler_t callback,
+ void *userdata) {
+
+ struct bus_match_component *components = NULL;
+ unsigned n_components = 0;
+ int r = 0, q = 0;
+ uint64_t cookie = 0;
+
+ assert_return(bus, -EINVAL);
+ assert_return(match, -EINVAL);
+ assert_return(!bus_pid_changed(bus), -ECHILD);
+
+ r = bus_match_parse(match, &components, &n_components);
+ if (r < 0)
+ return r;
+
+ bus->match_callbacks_modified = true;
+ r = bus_match_remove(&bus->match_callbacks, components, n_components, callback, userdata, &cookie);
+
+ if (bus->bus_client)
+ q = bus_remove_match_internal(bus, match, cookie);
+
+ bus_match_parse_free(components, n_components);
- struct object_callback *c;
+ return r < 0 ? r : q;
+}
+
+bool bus_pid_changed(sd_bus *bus) {
+ assert(bus);
+
+ /* We don't support people creating a bus connection and
+ * keeping it around over a fork(). Let's complain. */
+
+ return bus->original_pid != getpid();
+}
+
+static int io_callback(sd_event_source *s, int fd, uint32_t revents, void *userdata) {
+ sd_bus *bus = userdata;
int r;
- if (!bus)
- return -EINVAL;
- if (!path)
- return -EINVAL;
- if (!callback)
- return -EINVAL;
+ assert(bus);
- r = hashmap_ensure_allocated(&bus->object_callbacks, string_hash_func, string_compare_func);
+ r = sd_bus_process(bus, NULL);
if (r < 0)
return r;
- c = new(struct object_callback, 1);
- if (!c)
- return -ENOMEM;
+ return 1;
+}
- c->path = strdup(path);
- if (!path) {
- free(c);
- return -ENOMEM;
+static int time_callback(sd_event_source *s, uint64_t usec, void *userdata) {
+ sd_bus *bus = userdata;
+ int r;
+
+ assert(bus);
+
+ r = sd_bus_process(bus, NULL);
+ if (r < 0)
+ return r;
+
+ return 1;
+}
+
+static int prepare_callback(sd_event_source *s, void *userdata) {
+ sd_bus *bus = userdata;
+ int r, e;
+ usec_t until;
+
+ assert(s);
+ assert(bus);
+
+ e = sd_bus_get_events(bus);
+ if (e < 0)
+ return e;
+
+ if (bus->output_fd != bus->input_fd) {
+
+ r = sd_event_source_set_io_events(bus->input_io_event_source, e & POLLIN);
+ if (r < 0)
+ return r;
+
+ r = sd_event_source_set_io_events(bus->output_io_event_source, e & POLLOUT);
+ if (r < 0)
+ return r;
+ } else {
+ r = sd_event_source_set_io_events(bus->input_io_event_source, e);
+ if (r < 0)
+ return r;
}
- c->callback = callback;
- c->userdata = userdata;
- c->is_fallback = fallback;
+ r = sd_bus_get_timeout(bus, &until);
+ if (r < 0)
+ return r;
+ if (r > 0) {
+ int j;
- r = hashmap_put(bus->object_callbacks, c->path, c);
- if (r < 0) {
- free(c->path);
- free(c);
+ j = sd_event_source_set_time(bus->time_event_source, until);
+ if (j < 0)
+ return j;
+ }
+
+ r = sd_event_source_set_enabled(bus->time_event_source, r > 0);
+ if (r < 0)
return r;
+
+ return 1;
+}
+
+static int quit_callback(sd_event_source *event, void *userdata) {
+ sd_bus *bus = userdata;
+
+ assert(event);
+
+ sd_bus_flush(bus);
+
+ return 1;
+}
+
+_public_ int sd_bus_attach_event(sd_bus *bus, sd_event *event, int priority) {
+ int r;
+
+ assert_return(bus, -EINVAL);
+ assert_return(!bus->event, -EBUSY);
+
+ assert(!bus->input_io_event_source);
+ assert(!bus->output_io_event_source);
+ assert(!bus->time_event_source);
+
+ if (event)
+ bus->event = sd_event_ref(event);
+ else {
+ r = sd_event_default(&bus->event);
+ if (r < 0)
+ return r;
+ }
+
+ r = sd_event_add_io(bus->event, bus->input_fd, 0, io_callback, bus, &bus->input_io_event_source);
+ if (r < 0)
+ goto fail;
+
+ r = sd_event_source_set_priority(bus->input_io_event_source, priority);
+ if (r < 0)
+ goto fail;
+
+ if (bus->output_fd != bus->input_fd) {
+ r = sd_event_add_io(bus->event, bus->output_fd, 0, io_callback, bus, &bus->output_io_event_source);
+ if (r < 0)
+ goto fail;
+
+ r = sd_event_source_set_priority(bus->output_io_event_source, priority);
+ if (r < 0)
+ goto fail;
+ }
+
+ r = sd_event_source_set_prepare(bus->input_io_event_source, prepare_callback);
+ if (r < 0)
+ goto fail;
+
+ r = sd_event_add_monotonic(bus->event, 0, 0, time_callback, bus, &bus->time_event_source);
+ if (r < 0)
+ goto fail;
+
+ r = sd_event_source_set_priority(bus->time_event_source, priority);
+ if (r < 0)
+ goto fail;
+
+ r = sd_event_add_quit(bus->event, quit_callback, bus, &bus->quit_event_source);
+ if (r < 0)
+ goto fail;
+
+ return 0;
+
+fail:
+ sd_bus_detach_event(bus);
+ return r;
+}
+
+_public_ int sd_bus_detach_event(sd_bus *bus) {
+ assert_return(bus, -EINVAL);
+ assert_return(bus->event, -ENXIO);
+
+ if (bus->input_io_event_source) {
+ sd_event_source_set_enabled(bus->input_io_event_source, SD_EVENT_OFF);
+ bus->input_io_event_source = sd_event_source_unref(bus->input_io_event_source);
+ }
+
+ if (bus->output_io_event_source) {
+ sd_event_source_set_enabled(bus->output_io_event_source, SD_EVENT_OFF);
+ bus->output_io_event_source = sd_event_source_unref(bus->output_io_event_source);
+ }
+
+ if (bus->time_event_source) {
+ sd_event_source_set_enabled(bus->time_event_source, SD_EVENT_OFF);
+ bus->time_event_source = sd_event_source_unref(bus->time_event_source);
}
+ if (bus->quit_event_source) {
+ sd_event_source_set_enabled(bus->quit_event_source, SD_EVENT_OFF);
+ bus->quit_event_source = sd_event_source_unref(bus->quit_event_source);
+ }
+
+ if (bus->event)
+ bus->event = sd_event_unref(bus->event);
+
return 0;
}
-static int bus_remove_object(
- sd_bus *bus,
- bool fallback,
- const char *path,
- sd_message_handler_t callback,
- void *userdata) {
+_public_ sd_bus_message* sd_bus_get_current(sd_bus *bus) {
+ assert_return(bus, NULL);
- struct object_callback *c;
+ return bus->current;
+}
- if (!bus)
- return -EINVAL;
- if (!path)
- return -EINVAL;
- if (!callback)
- return -EINVAL;
+static int bus_default(int (*bus_open)(sd_bus **), sd_bus **default_bus, sd_bus **ret) {
+ sd_bus *b = NULL;
+ int r;
- c = hashmap_get(bus->object_callbacks, path);
- if (!c)
- return 0;
+ assert(bus_open);
+ assert(default_bus);
- if (c->callback != callback || c->userdata != userdata || c->is_fallback != fallback)
+ if (!ret)
+ return !!*default_bus;
+
+ if (*default_bus) {
+ *ret = sd_bus_ref(*default_bus);
return 0;
+ }
- assert_se(c == hashmap_remove(bus->object_callbacks, c->path));
+ r = bus_open(&b);
+ if (r < 0)
+ return r;
- free(c->path);
- free(c);
+ b->default_bus_ptr = default_bus;
+ b->tid = gettid();
+ *default_bus = b;
+ *ret = b;
return 1;
}
-int sd_bus_add_object(sd_bus *bus, const char *path, sd_message_handler_t callback, void *userdata) {
- return bus_add_object(bus, false, path, callback, userdata);
-}
+_public_ int sd_bus_default_system(sd_bus **ret) {
+ static __thread sd_bus *default_system_bus = NULL;
-int sd_bus_remove_object(sd_bus *bus, const char *path, sd_message_handler_t callback, void *userdata) {
- return bus_remove_object(bus, false, path, callback, userdata);
+ return bus_default(sd_bus_open_system, &default_system_bus, ret);
}
-int sd_bus_add_fallback(sd_bus *bus, const char *prefix, sd_message_handler_t callback, void *userdata) {
- return bus_add_object(bus, true, prefix, callback, userdata);
+_public_ int sd_bus_default_user(sd_bus **ret) {
+ static __thread sd_bus *default_user_bus = NULL;
+
+ return bus_default(sd_bus_open_user, &default_user_bus, ret);
}
-int sd_bus_remove_fallback(sd_bus *bus, const char *prefix, sd_message_handler_t callback, void *userdata) {
- return bus_remove_object(bus, true, prefix, callback, userdata);
+_public_ int sd_bus_get_tid(sd_bus *b, pid_t *tid) {
+ assert_return(b, -EINVAL);
+ assert_return(tid, -EINVAL);
+ assert_return(!bus_pid_changed(b), -ECHILD);
+
+ if (b->tid != 0) {
+ *tid = b->tid;
+ return 0;
+ }
+
+ if (b->event)
+ return sd_event_get_tid(b->event, tid);
+
+ return -ENXIO;
}