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systemd / systemd / 15057632786

15 May 2025 09:01PM UTC coverage: 72.267% (+0.02%) from 72.244%
15057632786

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bluca
man: document how to hook stuff into system wakeup

Fixes: #6364

298523 of 413084 relevant lines covered (72.27%)

738132.88 hits per line

Source File
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55.58
/src/core/socket.c
1
/* SPDX-License-Identifier: LGPL-2.1-or-later */
2

3
#include <arpa/inet.h>
4
#include <errno.h>
5
#include <fcntl.h>
6
#include <linux/sctp.h>
7
#include <mqueue.h>
8
#include <netinet/tcp.h>
9
#include <sys/epoll.h>
10
#include <sys/stat.h>
11
#include <unistd.h>
12

13
#include "alloc-util.h"
14
#include "bpf-firewall.h"
15
#include "bus-error.h"
16
#include "bus-util.h"
17
#include "chase.h"
18
#include "constants.h"
19
#include "copy.h"
20
#include "dbus-socket.h"
21
#include "dbus-unit.h"
22
#include "errno-list.h"
23
#include "exit-status.h"
24
#include "fd-util.h"
25
#include "format-util.h"
26
#include "in-addr-util.h"
27
#include "io-util.h"
28
#include "ip-protocol-list.h"
29
#include "label-util.h"
30
#include "log.h"
31
#include "manager.h"
32
#include "mkdir-label.h"
33
#include "parse-util.h"
34
#include "path-util.h"
35
#include "pidfd-util.h"
36
#include "process-util.h"
37
#include "recurse-dir.h"
38
#include "selinux-util.h"
39
#include "serialize.h"
40
#include "service.h"
41
#include "signal-util.h"
42
#include "smack-util.h"
43
#include "socket.h"
44
#include "socket-netlink.h"
45
#include "special.h"
46
#include "string-table.h"
47
#include "string-util.h"
48
#include "strv.h"
49
#include "unit.h"
50
#include "unit-name.h"
51
#include "user-util.h"
52

53
struct SocketPeer {
54
        unsigned n_ref;
55

56
        Socket *socket;
57
        union sockaddr_union peer;
58
        socklen_t peer_salen;
59
        struct ucred peer_cred;
60
};
61

62
static const UnitActiveState state_translation_table[_SOCKET_STATE_MAX] = {
63
        [SOCKET_DEAD]             = UNIT_INACTIVE,
64
        [SOCKET_START_PRE]        = UNIT_ACTIVATING,
65
        [SOCKET_START_OPEN]       = UNIT_ACTIVATING,
66
        [SOCKET_START_CHOWN]      = UNIT_ACTIVATING,
67
        [SOCKET_START_POST]       = UNIT_ACTIVATING,
68
        [SOCKET_LISTENING]        = UNIT_ACTIVE,
69
        [SOCKET_RUNNING]          = UNIT_ACTIVE,
70
        [SOCKET_STOP_PRE]         = UNIT_DEACTIVATING,
71
        [SOCKET_STOP_PRE_SIGTERM] = UNIT_DEACTIVATING,
72
        [SOCKET_STOP_PRE_SIGKILL] = UNIT_DEACTIVATING,
73
        [SOCKET_STOP_POST]        = UNIT_DEACTIVATING,
74
        [SOCKET_FINAL_SIGTERM]    = UNIT_DEACTIVATING,
75
        [SOCKET_FINAL_SIGKILL]    = UNIT_DEACTIVATING,
76
        [SOCKET_FAILED]           = UNIT_FAILED,
77
        [SOCKET_CLEANING]         = UNIT_MAINTENANCE,
78
};
79

80
static int socket_dispatch_io(sd_event_source *source, int fd, uint32_t revents, void *userdata);
81
static int socket_dispatch_timer(sd_event_source *source, usec_t usec, void *userdata);
82

83
static bool SOCKET_STATE_WITH_PROCESS(SocketState state) {
10,210✔
84
        return IN_SET(state,
10,210✔
85
                      SOCKET_START_PRE,
86
                      SOCKET_START_CHOWN,
87
                      SOCKET_START_POST,
88
                      SOCKET_STOP_PRE,
89
                      SOCKET_STOP_PRE_SIGTERM,
90
                      SOCKET_STOP_PRE_SIGKILL,
91
                      SOCKET_STOP_POST,
92
                      SOCKET_FINAL_SIGTERM,
93
                      SOCKET_FINAL_SIGKILL,
94
                      SOCKET_CLEANING);
95
}
96

97
static bool SOCKET_SERVICE_IS_ACTIVE(Service *s, bool allow_finalize) {
4,000✔
98
        assert(s);
4,000✔
99

100
        /* If unit_active_state() reports inactive/failed then it's all good, otherwise we need to
101
         * manually exclude SERVICE_AUTO_RESTART and SERVICE_AUTO_RESTART_QUEUED, in which cases
102
         * the start job hasn't been enqueued/run, but are only placeholders in order to allow
103
         * canceling auto restart. */
104

105
        if (UNIT_IS_INACTIVE_OR_FAILED(unit_active_state(UNIT(s))))
4,000✔
106
                return false;
107

108
        if (IN_SET(s->state, SERVICE_AUTO_RESTART, SERVICE_AUTO_RESTART_QUEUED))
1,433✔
109
                return false;
110

111
        if (allow_finalize && IN_SET(s->state, SERVICE_FINAL_SIGTERM, SERVICE_FINAL_SIGKILL, SERVICE_CLEANING))
1,424✔
112
                return false;
×
113

114
        return true;
115
}
116

117
static void socket_init(Unit *u) {
5,366✔
118
        Socket *s = ASSERT_PTR(SOCKET(u));
5,366✔
119

120
        assert(u->load_state == UNIT_STUB);
5,366✔
121

122
        s->backlog = SOMAXCONN_DELUXE;
5,366✔
123
        s->timeout_usec = u->manager->defaults.timeout_start_usec;
5,366✔
124
        s->directory_mode = 0755;
5,366✔
125
        s->socket_mode = 0666;
5,366✔
126

127
        s->max_connections = 64;
5,366✔
128

129
        s->priority = -1;
5,366✔
130
        s->ip_tos = -1;
5,366✔
131
        s->ip_ttl = -1;
5,366✔
132
        s->mark = -1;
5,366✔
133

134
        s->exec_context.std_output = u->manager->defaults.std_output;
5,366✔
135
        s->exec_context.std_error = u->manager->defaults.std_error;
5,366✔
136

137
        s->control_pid = PIDREF_NULL;
5,366✔
138
        s->control_command_id = _SOCKET_EXEC_COMMAND_INVALID;
5,366✔
139

140
        s->trigger_limit = RATELIMIT_OFF;
5,366✔
141

142
        s->poll_limit = RATELIMIT_OFF;
5,366✔
143
}
5,366✔
144

145
static void socket_unwatch_control_pid(Socket *s) {
23,941✔
146
        assert(s);
23,941✔
147
        unit_unwatch_pidref_done(UNIT(s), &s->control_pid);
23,941✔
148
}
23,941✔
149

150
static void socket_port_close_auxiliary_fds(SocketPort *p) {
7,658✔
151
        assert(p);
7,658✔
152

153
        close_many(p->auxiliary_fds, p->n_auxiliary_fds);
7,658✔
154
        p->auxiliary_fds = mfree(p->auxiliary_fds);
7,658✔
155
        p->n_auxiliary_fds = 0;
7,658✔
156
}
7,658✔
157

158
SocketPort* socket_port_free(SocketPort *p) {
5,690✔
159
        if (!p)
5,690✔
160
                return NULL;
161

162
        sd_event_source_unref(p->event_source);
5,690✔
163

164
        socket_port_close_auxiliary_fds(p);
5,690✔
165
        safe_close(p->fd);
5,690✔
166
        free(p->path);
5,690✔
167

168
        return mfree(p);
5,690✔
169
}
170

171
void socket_free_ports(Socket *s) {
5,366✔
172
        assert(s);
5,366✔
173

174
        LIST_CLEAR(port, s->ports, socket_port_free);
11,056✔
175
}
5,366✔
176

177
static void socket_done(Unit *u) {
5,366✔
178
        Socket *s = ASSERT_PTR(SOCKET(u));
5,366✔
179
        SocketPeer *p;
5,366✔
180

181
        socket_free_ports(s);
5,366✔
182

183
        while ((p = set_steal_first(s->peers_by_address)))
5,366✔
184
                p->socket = NULL;
×
185

186
        s->peers_by_address = set_free(s->peers_by_address);
5,366✔
187

188
        s->exec_runtime = exec_runtime_free(s->exec_runtime);
5,366✔
189

190
        exec_command_free_array(s->exec_command, _SOCKET_EXEC_COMMAND_MAX);
5,366✔
191
        s->control_command = NULL;
5,366✔
192

193
        socket_unwatch_control_pid(s);
5,366✔
194

195
        unit_ref_unset(&s->service);
5,366✔
196

197
        s->tcp_congestion = mfree(s->tcp_congestion);
5,366✔
198
        s->bind_to_device = mfree(s->bind_to_device);
5,366✔
199

200
        s->smack = mfree(s->smack);
5,366✔
201
        s->smack_ip_in = mfree(s->smack_ip_in);
5,366✔
202
        s->smack_ip_out = mfree(s->smack_ip_out);
5,366✔
203

204
        strv_free(s->symlinks);
5,366✔
205

206
        s->user = mfree(s->user);
5,366✔
207
        s->group = mfree(s->group);
5,366✔
208

209
        s->fdname = mfree(s->fdname);
5,366✔
210

211
        s->timer_event_source = sd_event_source_disable_unref(s->timer_event_source);
5,366✔
212
}
5,366✔
213

214
static int socket_arm_timer(Socket *s, bool relative, usec_t usec) {
173✔
215
        assert(s);
173✔
216

217
        return unit_arm_timer(UNIT(s), &s->timer_event_source, relative, usec, socket_dispatch_timer);
173✔
218
}
219

220
static bool have_non_accept_socket(Socket *s) {
6,564✔
221
        assert(s);
6,564✔
222

223
        if (!s->accept)
6,564✔
224
                return true;
225

226
        LIST_FOREACH(port, p, s->ports) {
4,804✔
227

228
                if (p->type != SOCKET_SOCKET)
2,402✔
229
                        return true;
230

231
                if (!socket_address_can_accept(&p->address))
2,402✔
232
                        return true;
233
        }
234

235
        return false;
236
}
237

238
static int socket_add_mount_dependencies(Socket *s) {
5,363✔
239
        int r;
5,363✔
240

241
        assert(s);
5,363✔
242

243
        LIST_FOREACH(port, p, s->ports) {
11,053✔
244
                const char *path = NULL;
5,690✔
245

246
                if (p->type == SOCKET_SOCKET)
5,690✔
247
                        path = socket_address_get_path(&p->address);
5,453✔
248
                else if (IN_SET(p->type, SOCKET_FIFO, SOCKET_SPECIAL, SOCKET_USB_FUNCTION))
237✔
249
                        path = p->path;
237✔
250

251
                if (!path)
5,690✔
252
                        continue;
348✔
253

254
                r = unit_add_mounts_for(UNIT(s), path, UNIT_DEPENDENCY_FILE, UNIT_MOUNT_REQUIRES);
5,342✔
255
                if (r < 0)
5,342✔
256
                        return r;
257
        }
258

259
        return 0;
260
}
261

262
static int socket_add_device_dependencies(Socket *s) {
5,363✔
263
        char *t;
5,363✔
264

265
        assert(s);
5,363✔
266

267
        if (!s->bind_to_device || streq(s->bind_to_device, "lo"))
5,363✔
268
                return 0;
269

270
        t = strjoina("/sys/subsystem/net/devices/", s->bind_to_device);
×
271
        return unit_add_node_dependency(UNIT(s), t, UNIT_BINDS_TO, UNIT_DEPENDENCY_FILE);
×
272
}
273

274
static int socket_add_default_dependencies(Socket *s) {
5,363✔
275
        int r;
5,363✔
276

277
        assert(s);
5,363✔
278

279
        if (!UNIT(s)->default_dependencies)
5,363✔
280
                return 0;
281

282
        r = unit_add_dependency_by_name(UNIT(s), UNIT_BEFORE, SPECIAL_SOCKETS_TARGET, true, UNIT_DEPENDENCY_DEFAULT);
2,492✔
283
        if (r < 0)
2,492✔
284
                return r;
285

286
        if (MANAGER_IS_SYSTEM(UNIT(s)->manager)) {
2,492✔
287
                r = unit_add_two_dependencies_by_name(UNIT(s), UNIT_AFTER, UNIT_REQUIRES, SPECIAL_SYSINIT_TARGET, true, UNIT_DEPENDENCY_DEFAULT);
1,068✔
288
                if (r < 0)
1,068✔
289
                        return r;
290
        }
291

292
        return unit_add_two_dependencies_by_name(UNIT(s), UNIT_BEFORE, UNIT_CONFLICTS, SPECIAL_SHUTDOWN_TARGET, true, UNIT_DEPENDENCY_DEFAULT);
2,492✔
293
}
294

295
static bool socket_has_exec(Socket *s) {
5,363✔
296
        assert(s);
5,363✔
297

298
        FOREACH_ARRAY(i, s->exec_command, _SOCKET_EXEC_COMMAND_MAX)
31,644✔
299
                if (*i)
26,459✔
300
                        return true;
301

302
        return false;
303
}
304

305
static int socket_add_extras(Socket *s) {
5,363✔
306
        Unit *u = UNIT(ASSERT_PTR(s));
5,363✔
307
        int r;
5,363✔
308

309
        /* Pick defaults for the trigger limit, if nothing was explicitly configured. We pick a relatively high limit
310
         * in Accept=yes mode, and a lower limit for Accept=no. Reason: in Accept=yes mode we are invoking accept()
311
         * ourselves before the trigger limit can hit, thus incoming connections are taken off the socket queue quickly
312
         * and reliably. This is different for Accept=no, where the spawned service has to take the incoming traffic
313
         * off the queues, which it might not necessarily do. Moreover, while Accept=no services are supposed to
314
         * process whatever is queued in one go, and thus should normally never have to be started frequently. This is
315
         * different for Accept=yes where each connection is processed by a new service instance, and thus frequent
316
         * service starts are typical.
317
         *
318
         * For the poll limit we follow a similar rule, but use 3/4th of the trigger limit parameters, to
319
         * trigger this earlier. */
320

321
        if (s->trigger_limit.interval == USEC_INFINITY)
5,363✔
322
                s->trigger_limit.interval = 2 * USEC_PER_SEC;
5,363✔
323
        if (s->trigger_limit.burst == UINT_MAX)
5,363✔
324
                s->trigger_limit.burst = s->accept ? 200 : 20;
9,525✔
325

326
        if (s->poll_limit.interval == USEC_INFINITY)
5,363✔
327
                s->poll_limit.interval = 2 * USEC_PER_SEC;
5,213✔
328
        if (s->poll_limit.burst == UINT_MAX)
5,363✔
329
                s->poll_limit.burst = s->accept ? 150 : 15;
9,375✔
330

331
        if (have_non_accept_socket(s)) {
5,363✔
332

333
                if (!UNIT_ISSET(s->service)) {
4,162✔
334
                        Unit *x;
2,463✔
335

336
                        r = unit_load_related_unit(u, ".service", &x);
2,463✔
337
                        if (r < 0)
2,463✔
338
                                return r;
×
339

340
                        unit_ref_set(&s->service, u, x);
2,463✔
341
                }
342

343
                r = unit_add_two_dependencies(u, UNIT_BEFORE, UNIT_TRIGGERS, UNIT_DEREF(s->service), true, UNIT_DEPENDENCY_IMPLICIT);
4,162✔
344
                if (r < 0)
4,162✔
345
                        return r;
346
        }
347

348
        r = socket_add_mount_dependencies(s);
5,363✔
349
        if (r < 0)
5,363✔
350
                return r;
351

352
        r = socket_add_device_dependencies(s);
5,363✔
353
        if (r < 0)
5,363✔
354
                return r;
355

356
        r = unit_patch_contexts(u);
5,363✔
357
        if (r < 0)
5,363✔
358
                return r;
359

360
        if (socket_has_exec(s)) {
5,363✔
361
                r = unit_add_exec_dependencies(u, &s->exec_context);
178✔
362
                if (r < 0)
178✔
363
                        return r;
364
        }
365

366
        r = unit_set_default_slice(u);
5,363✔
367
        if (r < 0)
5,363✔
368
                return r;
369

370
        r = socket_add_default_dependencies(s);
5,363✔
371
        if (r < 0)
5,363✔
372
                return r;
×
373

374
        return 0;
375
}
376

377
static const char* socket_find_symlink_target(Socket *s) {
2,748✔
378
        const char *found = NULL;
2,748✔
379

380
        assert(s);
2,748✔
381

382
        LIST_FOREACH(port, p, s->ports) {
5,496✔
383
                const char *f;
2,940✔
384

385
                switch (p->type) {
2,940✔
386

387
                case SOCKET_FIFO:
132✔
388
                        f = p->path;
132✔
389
                        break;
132✔
390

391
                case SOCKET_SOCKET:
2,808✔
392
                        f = socket_address_get_path(&p->address);
2,808✔
393
                        break;
2,808✔
394

395
                default:
396
                        f = NULL;
397
                }
398

399
                if (f) {
2,940✔
400
                        if (found)
2,874✔
401
                                return NULL;
402

403
                        found = f;
404
                }
405
        }
406

407
        return found;
408
}
409

410
static int socket_verify(Socket *s) {
5,363✔
411
        assert(s);
5,363✔
412
        assert(UNIT(s)->load_state == UNIT_LOADED);
5,363✔
413

414
        if (!s->ports)
5,363✔
415
                return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC), "Unit has no Listen setting (ListenStream=, ListenDatagram=, ListenFIFO=, ...). Refusing.");
×
416

417
        if (s->max_connections <= 0)
5,363✔
418
                return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC), "MaxConnection= setting too small. Refusing.");
×
419

420
        if (s->accept && have_non_accept_socket(s))
5,363✔
421
                return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC), "Unit configured for accepting sockets, but sockets are non-accepting. Refusing.");
×
422

423
        if (s->accept && UNIT_ISSET(s->service))
5,363✔
424
                return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC), "Explicit service configuration for accepting socket units not supported. Refusing.");
×
425

426
        if (!strv_isempty(s->symlinks) && !socket_find_symlink_target(s))
5,688✔
427
                return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC), "Unit has symlinks set but none or more than one node in the file system. Refusing.");
×
428

429
        return 0;
430
}
431

432
static void peer_address_hash_func(const SocketPeer *s, struct siphash *state) {
3✔
433
        assert(s);
3✔
434

435
        if (s->peer.sa.sa_family == AF_INET)
3✔
436
                siphash24_compress_typesafe(s->peer.in.sin_addr, state);
×
437
        else if (s->peer.sa.sa_family == AF_INET6)
3✔
438
                siphash24_compress_typesafe(s->peer.in6.sin6_addr, state);
×
439
        else if (s->peer.sa.sa_family == AF_VSOCK)
3✔
440
                siphash24_compress_typesafe(s->peer.vm.svm_cid, state);
×
441
        else if (s->peer.sa.sa_family == AF_UNIX)
3✔
442
                siphash24_compress_typesafe(s->peer_cred.uid, state);
3✔
443
        else
444
                assert_not_reached();
×
445
}
3✔
446

447
static int peer_address_compare_func(const SocketPeer *x, const SocketPeer *y) {
2✔
448
        int r;
2✔
449

450
        r = CMP(x->peer.sa.sa_family, y->peer.sa.sa_family);
2✔
451
        if (r != 0)
2✔
452
                return r;
×
453

454
        switch (x->peer.sa.sa_family) {
2✔
455
        case AF_INET:
×
456
                return memcmp(&x->peer.in.sin_addr, &y->peer.in.sin_addr, sizeof(x->peer.in.sin_addr));
×
457
        case AF_INET6:
×
458
                return memcmp(&x->peer.in6.sin6_addr, &y->peer.in6.sin6_addr, sizeof(x->peer.in6.sin6_addr));
×
459
        case AF_VSOCK:
×
460
                return CMP(x->peer.vm.svm_cid, y->peer.vm.svm_cid);
×
461
        case AF_UNIX:
2✔
462
                return CMP(x->peer_cred.uid, y->peer_cred.uid);
2✔
463
        }
464
        assert_not_reached();
×
465
}
466

467
DEFINE_PRIVATE_HASH_OPS(peer_address_hash_ops, SocketPeer, peer_address_hash_func, peer_address_compare_func);
468

469
static int socket_load(Unit *u) {
5,366✔
470
        Socket *s = ASSERT_PTR(SOCKET(u));
5,366✔
471
        int r;
5,366✔
472

473
        assert(u->load_state == UNIT_STUB);
5,366✔
474

475
        r = unit_load_fragment_and_dropin(u, true);
5,366✔
476
        if (r < 0)
5,366✔
477
                return r;
478

479
        if (u->load_state != UNIT_LOADED)
5,363✔
480
                return 0;
481

482
        /* This is a new unit? Then let's add in some extras */
483
        r = socket_add_extras(s);
5,363✔
484
        if (r < 0)
5,363✔
485
                return r;
486

487
        return socket_verify(s);
5,363✔
488
}
489

490
static SocketPeer* socket_peer_dup(const SocketPeer *q) {
1✔
491
        SocketPeer *p;
1✔
492

493
        assert(q);
1✔
494

495
        p = new(SocketPeer, 1);
1✔
496
        if (!p)
1✔
497
                return NULL;
498

499
        *p = (SocketPeer) {
1✔
500
                .n_ref = 1,
501
                .peer = q->peer,
1✔
502
                .peer_salen = q->peer_salen,
1✔
503
                .peer_cred = q->peer_cred,
1✔
504
        };
505

506
        return p;
1✔
507
}
508

509
static SocketPeer* socket_peer_free(SocketPeer *p) {
1✔
510
        assert(p);
1✔
511

512
        if (p->socket)
1✔
513
                set_remove(p->socket->peers_by_address, p);
1✔
514

515
        return mfree(p);
1✔
516
}
517

518
DEFINE_TRIVIAL_REF_UNREF_FUNC(SocketPeer, socket_peer, socket_peer_free);
3✔
519

520
int socket_acquire_peer(Socket *s, int fd, SocketPeer **ret) {
2✔
521
        _cleanup_(socket_peer_unrefp) SocketPeer *remote = NULL;
2✔
522
        SocketPeer key = {
2✔
523
                .peer_salen = sizeof(union sockaddr_union),
524
                .peer_cred = UCRED_INVALID,
525
        }, *i;
526
        int r;
2✔
527

528
        assert(s);
2✔
529
        assert(fd >= 0);
2✔
530
        assert(ret);
2✔
531

532
        if (getpeername(fd, &key.peer.sa, &key.peer_salen) < 0)
2✔
533
                return log_unit_error_errno(UNIT(s), errno, "getpeername() failed: %m");
×
534

535
        switch (key.peer.sa.sa_family) {
2✔
536
        case AF_INET:
537
        case AF_INET6:
538
        case AF_VSOCK:
539
                break;
540

541
        case AF_UNIX:
2✔
542
                r = getpeercred(fd, &key.peer_cred);
2✔
543
                if (r < 0)
2✔
544
                        return log_unit_error_errno(UNIT(s), r, "Failed to get peer credentials of socket: %m");
×
545
                break;
546

547
        default:
×
548
                *ret = NULL;
×
549
                return 0;
×
550
        }
551

552
        i = set_get(s->peers_by_address, &key);
2✔
553
        if (i) {
2✔
554
                *ret = socket_peer_ref(i);
1✔
555
                return 1;
1✔
556
        }
557

558
        remote = socket_peer_dup(&key);
1✔
559
        if (!remote)
1✔
560
                return log_oom();
×
561

562
        r = set_ensure_put(&s->peers_by_address, &peer_address_hash_ops, remote);
1✔
563
        if (r < 0)
1✔
564
                return log_unit_error_errno(UNIT(s), r, "Failed to insert peer info into hash table: %m");
×
565

566
        remote->socket = s;
1✔
567

568
        *ret = TAKE_PTR(remote);
1✔
569
        return 1;
1✔
570
}
571

572
static const char* listen_lookup(int family, int type) {
×
573

574
        if (family == AF_NETLINK)
×
575
                return "ListenNetlink";
576

577
        if (type == SOCK_STREAM)
×
578
                return "ListenStream";
579
        else if (type == SOCK_DGRAM)
×
580
                return "ListenDatagram";
581
        else if (type == SOCK_SEQPACKET)
×
582
                return "ListenSequentialPacket";
583

584
        assert_not_reached();
×
585
}
586

587
static void socket_dump(Unit *u, FILE *f, const char *prefix) {
×
588
        Socket *s = ASSERT_PTR(SOCKET(u));
×
589
        const char *prefix2, *str;
×
590

591
        assert(f);
×
592

593
        prefix = strempty(prefix);
×
594
        prefix2 = strjoina(prefix, "\t");
×
595

596
        fprintf(f,
×
597
                "%sSocket State: %s\n"
598
                "%sResult: %s\n"
599
                "%sClean Result: %s\n"
600
                "%sBindIPv6Only: %s\n"
601
                "%sBacklog: %u\n"
602
                "%sSocketMode: %04o\n"
603
                "%sDirectoryMode: %04o\n"
604
                "%sKeepAlive: %s\n"
605
                "%sNoDelay: %s\n"
606
                "%sFreeBind: %s\n"
607
                "%sTransparent: %s\n"
608
                "%sBroadcast: %s\n"
609
                "%sPassCredentials: %s\n"
610
                "%sPassFileDescriptorsToExec: %s\n"
611
                "%sPassSecurity: %s\n"
612
                "%sPassPacketInfo: %s\n"
613
                "%sTCPCongestion: %s\n"
614
                "%sRemoveOnStop: %s\n"
615
                "%sWritable: %s\n"
616
                "%sFileDescriptorName: %s\n"
617
                "%sSELinuxContextFromNet: %s\n",
618
                prefix, socket_state_to_string(s->state),
619
                prefix, socket_result_to_string(s->result),
620
                prefix, socket_result_to_string(s->clean_result),
621
                prefix, socket_address_bind_ipv6_only_to_string(s->bind_ipv6_only),
622
                prefix, s->backlog,
623
                prefix, s->socket_mode,
624
                prefix, s->directory_mode,
625
                prefix, yes_no(s->keep_alive),
×
626
                prefix, yes_no(s->no_delay),
×
627
                prefix, yes_no(s->free_bind),
×
628
                prefix, yes_no(s->transparent),
×
629
                prefix, yes_no(s->broadcast),
×
630
                prefix, yes_no(s->pass_cred),
×
631
                prefix, yes_no(s->pass_fds_to_exec),
×
632
                prefix, yes_no(s->pass_sec),
×
633
                prefix, yes_no(s->pass_pktinfo),
×
634
                prefix, strna(s->tcp_congestion),
×
635
                prefix, yes_no(s->remove_on_stop),
×
636
                prefix, yes_no(s->writable),
×
637
                prefix, socket_fdname(s),
638
                prefix, yes_no(s->selinux_context_from_net));
×
639

640
        if (s->timestamping != SOCKET_TIMESTAMPING_OFF)
×
641
                fprintf(f,
×
642
                        "%sTimestamping: %s\n",
643
                        prefix, socket_timestamping_to_string(s->timestamping));
644

645
        if (pidref_is_set(&s->control_pid))
646
                fprintf(f,
×
647
                        "%sControl PID: "PID_FMT"\n",
648
                        prefix, s->control_pid.pid);
649

650
        if (s->bind_to_device)
×
651
                fprintf(f,
×
652
                        "%sBindToDevice: %s\n",
653
                        prefix, s->bind_to_device);
654

655
        if (s->accept)
×
656
                fprintf(f,
×
657
                        "%sAccepted: %u\n"
658
                        "%sNConnections: %u\n"
659
                        "%sMaxConnections: %u\n"
660
                        "%sMaxConnectionsPerSource: %u\n",
661
                        prefix, s->n_accepted,
662
                        prefix, s->n_connections,
663
                        prefix, s->max_connections,
664
                        prefix, s->max_connections_per_source);
665
        else
666
                fprintf(f,
×
667
                        "%sFlushPending: %s\n",
668
                         prefix, yes_no(s->flush_pending));
×
669

670
        if (s->priority >= 0)
×
671
                fprintf(f,
×
672
                        "%sPriority: %i\n",
673
                        prefix, s->priority);
674

675
        if (s->receive_buffer > 0)
×
676
                fprintf(f,
×
677
                        "%sReceiveBuffer: %zu\n",
678
                        prefix, s->receive_buffer);
679

680
        if (s->send_buffer > 0)
×
681
                fprintf(f,
×
682
                        "%sSendBuffer: %zu\n",
683
                        prefix, s->send_buffer);
684

685
        if (s->ip_tos >= 0)
×
686
                fprintf(f,
×
687
                        "%sIPTOS: %i\n",
688
                        prefix, s->ip_tos);
689

690
        if (s->ip_ttl >= 0)
×
691
                fprintf(f,
×
692
                        "%sIPTTL: %i\n",
693
                        prefix, s->ip_ttl);
694

695
        if (s->pipe_size > 0)
×
696
                fprintf(f,
×
697
                        "%sPipeSize: %zu\n",
698
                        prefix, s->pipe_size);
699

700
        if (s->mark >= 0)
×
701
                fprintf(f,
×
702
                        "%sMark: %i\n",
703
                        prefix, s->mark);
704

705
        if (s->mq_maxmsg > 0)
×
706
                fprintf(f,
×
707
                        "%sMessageQueueMaxMessages: %li\n",
708
                        prefix, s->mq_maxmsg);
709

710
        if (s->mq_msgsize > 0)
×
711
                fprintf(f,
×
712
                        "%sMessageQueueMessageSize: %li\n",
713
                        prefix, s->mq_msgsize);
714

715
        if (s->reuse_port)
×
716
                fprintf(f,
×
717
                        "%sReusePort: %s\n",
718
                         prefix, yes_no(s->reuse_port));
719

720
        if (s->smack)
×
721
                fprintf(f,
×
722
                        "%sSmackLabel: %s\n",
723
                        prefix, s->smack);
724

725
        if (s->smack_ip_in)
×
726
                fprintf(f,
×
727
                        "%sSmackLabelIPIn: %s\n",
728
                        prefix, s->smack_ip_in);
729

730
        if (s->smack_ip_out)
×
731
                fprintf(f,
×
732
                        "%sSmackLabelIPOut: %s\n",
733
                        prefix, s->smack_ip_out);
734

735
        if (!isempty(s->user) || !isempty(s->group))
×
736
                fprintf(f,
×
737
                        "%sSocketUser: %s\n"
738
                        "%sSocketGroup: %s\n",
739
                        prefix, strna(s->user),
×
740
                        prefix, strna(s->group));
×
741

742
        if (timestamp_is_set(s->keep_alive_time))
×
743
                fprintf(f,
×
744
                        "%sKeepAliveTimeSec: %s\n",
745
                        prefix, FORMAT_TIMESPAN(s->keep_alive_time, USEC_PER_SEC));
×
746

747
        if (s->keep_alive_interval > 0)
×
748
                fprintf(f,
×
749
                        "%sKeepAliveIntervalSec: %s\n",
750
                        prefix, FORMAT_TIMESPAN(s->keep_alive_interval, USEC_PER_SEC));
×
751

752
        if (s->keep_alive_cnt > 0)
×
753
                fprintf(f,
×
754
                        "%sKeepAliveProbes: %u\n",
755
                        prefix, s->keep_alive_cnt);
756

757
        if (s->defer_accept > 0)
×
758
                fprintf(f,
×
759
                        "%sDeferAcceptSec: %s\n",
760
                        prefix, FORMAT_TIMESPAN(s->defer_accept, USEC_PER_SEC));
×
761

762
        LIST_FOREACH(port, p, s->ports) {
×
763

764
                switch (p->type) {
×
765
                case SOCKET_SOCKET: {
×
766
                        _cleanup_free_ char *k = NULL;
×
767
                        int r;
×
768

769
                        r = socket_address_print(&p->address, &k);
×
770
                        if (r < 0) {
×
771
                                errno = -r;
×
772
                                fprintf(f, "%s%s: %m\n", prefix, listen_lookup(socket_address_family(&p->address), p->address.type));
×
773
                        } else
774
                                fprintf(f, "%s%s: %s\n", prefix, listen_lookup(socket_address_family(&p->address), p->address.type), k);
×
775
                        break;
×
776
                }
777
                case SOCKET_SPECIAL:
×
778
                        fprintf(f, "%sListenSpecial: %s\n", prefix, p->path);
×
779
                        break;
780
                case SOCKET_USB_FUNCTION:
×
781
                        fprintf(f, "%sListenUSBFunction: %s\n", prefix, p->path);
×
782
                        break;
783
                case SOCKET_MQUEUE:
×
784
                        fprintf(f, "%sListenMessageQueue: %s\n", prefix, p->path);
×
785
                        break;
786
                default:
×
787
                        fprintf(f, "%sListenFIFO: %s\n", prefix, p->path);
×
788
                }
789
        }
790

791
        fprintf(f,
×
792
                "%sTriggerLimitIntervalSec: %s\n"
793
                "%sTriggerLimitBurst: %u\n"
794
                "%sPollLimitIntervalSec: %s\n"
795
                "%sPollLimitBurst: %u\n",
796
                prefix, FORMAT_TIMESPAN(s->trigger_limit.interval, USEC_PER_SEC),
×
797
                prefix, s->trigger_limit.burst,
798
                prefix, FORMAT_TIMESPAN(s->poll_limit.interval, USEC_PER_SEC),
×
799
                prefix, s->poll_limit.burst);
800

801
        str = ip_protocol_to_name(s->socket_protocol);
×
802
        if (str)
×
803
                fprintf(f, "%sSocketProtocol: %s\n", prefix, str);
×
804

805
        if (!strv_isempty(s->symlinks)) {
×
806
                fprintf(f, "%sSymlinks:", prefix);
×
807
                STRV_FOREACH(q, s->symlinks)
×
808
                        fprintf(f, " %s", *q);
×
809

810
                fprintf(f, "\n");
×
811
        }
812

813
        fprintf(f,
×
814
                "%sTimeoutSec: %s\n",
815
                prefix, FORMAT_TIMESPAN(s->timeout_usec, USEC_PER_SEC));
×
816

817
        exec_context_dump(&s->exec_context, f, prefix);
×
818
        kill_context_dump(&s->kill_context, f, prefix);
×
819

820
        for (SocketExecCommand c = 0; c < _SOCKET_EXEC_COMMAND_MAX; c++) {
×
821
                if (!s->exec_command[c])
×
822
                        continue;
×
823

824
                fprintf(f, "%s%s %s:\n",
×
825
                        prefix, glyph(GLYPH_ARROW_RIGHT), socket_exec_command_to_string(c));
826

827
                exec_command_dump_list(s->exec_command[c], f, prefix2);
×
828
        }
829

830
        cgroup_context_dump(UNIT(s), f, prefix);
×
831
}
×
832

833
static int instance_from_socket(
2✔
834
                int fd,
835
                unsigned nr,
836
                char **ret) {
837

838
        union sockaddr_union local, remote;
2✔
839
        socklen_t l;
2✔
840
        int r;
2✔
841

842
        assert(fd >= 0);
2✔
843
        assert(ret);
2✔
844

845
        l = sizeof(local);
2✔
846
        if (getsockname(fd, &local.sa, &l) < 0)
2✔
847
                return -errno;
2✔
848

849
        l = sizeof(remote);
2✔
850
        if (getpeername(fd, &remote.sa, &l) < 0)
2✔
851
                return -errno;
×
852

853
        uint64_t cookie;
2✔
854
        r = socket_get_cookie(fd, &cookie);
2✔
855
        if (r < 0)
2✔
856
                return r;
857

858
        char *s;
2✔
859

860
        switch (local.sa.sa_family) {
2✔
861

862
        case AF_INET: {
×
863
                uint32_t
×
864
                        a = be32toh(local.in.sin_addr.s_addr),
×
865
                        b = be32toh(remote.in.sin_addr.s_addr);
×
866

867
                if (asprintf(&s,
×
868
                             "%u-%" PRIu64 "-%u.%u.%u.%u:%u-%u.%u.%u.%u:%u",
869
                             nr,
870
                             cookie,
871
                             a >> 24, (a >> 16) & 0xFF, (a >> 8) & 0xFF, a & 0xFF,
872
                             be16toh(local.in.sin_port),
×
873
                             b >> 24, (b >> 16) & 0xFF, (b >> 8) & 0xFF, b & 0xFF,
874
                             be16toh(remote.in.sin_port)) < 0)
×
875
                        return -ENOMEM;
876

877
                break;
878
        }
879

880
        case AF_INET6: {
×
881
                static const unsigned char ipv4_prefix[] = {
×
882
                        0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0xFF, 0xFF
883
                };
884

885
                if (memcmp(&local.in6.sin6_addr, ipv4_prefix, sizeof(ipv4_prefix)) == 0 &&
×
886
                    memcmp(&remote.in6.sin6_addr, ipv4_prefix, sizeof(ipv4_prefix)) == 0) {
×
887
                        const uint8_t
×
888
                                *a = local.in6.sin6_addr.s6_addr+12,
×
889
                                *b = remote.in6.sin6_addr.s6_addr+12;
×
890

891
                        if (asprintf(&s,
×
892
                                     "%u-%" PRIu64 "-%u.%u.%u.%u:%u-%u.%u.%u.%u:%u",
893
                                     nr,
894
                                     cookie,
895
                                     a[0], a[1], a[2], a[3],
×
896
                                     be16toh(local.in6.sin6_port),
×
897
                                     b[0], b[1], b[2], b[3],
×
898
                                     be16toh(remote.in6.sin6_port)) < 0)
×
899
                                return -ENOMEM;
900
                } else {
901
                        if (asprintf(&s,
×
902
                                     "%u-%" PRIu64 "-%s:%u-%s:%u",
903
                                     nr,
904
                                     cookie,
905
                                     IN6_ADDR_TO_STRING(&local.in6.sin6_addr),
×
906
                                     be16toh(local.in6.sin6_port),
×
907
                                     IN6_ADDR_TO_STRING(&remote.in6.sin6_addr),
×
908
                                     be16toh(remote.in6.sin6_port)) < 0)
×
909
                                return -ENOMEM;
×
910
                }
911

912
                break;
913
        }
914

915
        case AF_UNIX: {
2✔
916
                struct ucred ucred;
2✔
917

918
                r = getpeercred(fd, &ucred);
2✔
919
                if (r >= 0) {
2✔
920
                        _cleanup_close_ int pidfd = getpeerpidfd(fd);
4✔
921
                        uint64_t pidfd_id;
2✔
922

923
                        if (pidfd >= 0 && pidfd_get_inode_id(pidfd, &pidfd_id) >= 0)
2✔
924
                                r = asprintf(&s, "%u-%" PRIu64 "-" PID_FMT "_%" PRIu64 "-" UID_FMT,
×
925
                                             nr, cookie, ucred.pid, pidfd_id, ucred.uid);
926
                        else
927
                                r = asprintf(&s, "%u-%" PRIu64 "-" PID_FMT "-" UID_FMT,
2✔
928
                                             nr, cookie, ucred.pid, ucred.uid);
929
                        if (r < 0)
2✔
930
                                return -ENOMEM;
×
931
                } else if (r == -ENODATA) {
×
932
                        /* This handles the case where somebody is connecting from another pid/uid namespace
933
                         * (e.g. from outside of our container). */
934
                        if (asprintf(&s,
×
935
                                     "%u-%" PRIu64 "-unknown",
936
                                     nr,
937
                                     cookie) < 0)
938
                                return -ENOMEM;
939
                } else
940
                        return r;
941

942
                break;
2✔
943
        }
944

945
        case AF_VSOCK:
×
946
                if (asprintf(&s,
×
947
                             "%u-%" PRIu64 "-%u:%u-%u:%u",
948
                             nr,
949
                             cookie,
950
                             local.vm.svm_cid, local.vm.svm_port,
951
                             remote.vm.svm_cid, remote.vm.svm_port) < 0)
952
                        return -ENOMEM;
953

954
                break;
955

956
        default:
×
957
                assert_not_reached();
×
958
        }
959

960
        *ret = s;
2✔
961
        return 0;
2✔
962
}
963

964
static void socket_close_fds(Socket *s) {
1,936✔
965
        assert(s);
1,936✔
966

967
        LIST_FOREACH(port, p, s->ports) {
3,904✔
968
                bool was_open = p->fd >= 0;
1,968✔
969

970
                p->event_source = sd_event_source_disable_unref(p->event_source);
1,968✔
971
                p->fd = safe_close(p->fd);
1,968✔
972
                socket_port_close_auxiliary_fds(p);
1,968✔
973

974
                /* One little note: we should normally not delete any sockets in the file system here! After all some
975
                 * other process we spawned might still have a reference of this fd and wants to continue to use
976
                 * it. Therefore we normally delete sockets in the file system before we create a new one, not after we
977
                 * stopped using one! That all said, if the user explicitly requested this, we'll delete them here
978
                 * anyway, but only then. */
979

980
                if (!was_open || !s->remove_on_stop)
1,968✔
981
                        continue;
1,909✔
982

983
                switch (p->type) {
59✔
984

985
                case SOCKET_FIFO:
18✔
986
                        (void) unlink(p->path);
18✔
987
                        break;
18✔
988

989
                case SOCKET_MQUEUE:
×
990
                        (void) mq_unlink(p->path);
×
991
                        break;
×
992

993
                case SOCKET_SOCKET:
41✔
994
                        (void) socket_address_unlink(&p->address);
41✔
995
                        break;
41✔
996

997
                default:
998
                        ;
999
                }
1000
        }
1001

1002
        if (s->remove_on_stop)
1,936✔
1003
                STRV_FOREACH(i, s->symlinks)
68✔
1004
                        (void) unlink(*i);
18✔
1005

1006
        /* Note that we don't return NULL here, since s has not been freed. */
1007
}
1,936✔
1008

1009
DEFINE_TRIVIAL_CLEANUP_FUNC_FULL(Socket*, socket_close_fds, NULL);
2,333✔
1010

1011
static void socket_apply_socket_options(Socket *s, SocketPort *p, int fd) {
2,359✔
1012
        int r;
2,359✔
1013

1014
        assert(s);
2,359✔
1015
        assert(p);
2,359✔
1016
        assert(fd >= 0);
2,359✔
1017

1018
        if (s->keep_alive) {
2,359✔
1019
                r = setsockopt_int(fd, SOL_SOCKET, SO_KEEPALIVE, true);
×
1020
                if (r < 0)
×
1021
                        log_unit_warning_errno(UNIT(s), r, "SO_KEEPALIVE failed: %m");
×
1022
        }
1023

1024
        if (timestamp_is_set(s->keep_alive_time)) {
2,359✔
1025
                r = setsockopt_int(fd, SOL_TCP, TCP_KEEPIDLE, s->keep_alive_time / USEC_PER_SEC);
×
1026
                if (r < 0)
×
1027
                        log_unit_warning_errno(UNIT(s), r, "TCP_KEEPIDLE failed: %m");
×
1028
        }
1029

1030
        if (s->keep_alive_interval > 0) {
2,359✔
1031
                r = setsockopt_int(fd, SOL_TCP, TCP_KEEPINTVL, s->keep_alive_interval / USEC_PER_SEC);
×
1032
                if (r < 0)
×
1033
                        log_unit_warning_errno(UNIT(s), r, "TCP_KEEPINTVL failed: %m");
×
1034
        }
1035

1036
        if (s->keep_alive_cnt > 0) {
2,359✔
1037
                r = setsockopt_int(fd, SOL_TCP, TCP_KEEPCNT, s->keep_alive_cnt);
×
1038
                if (r < 0)
×
1039
                        log_unit_warning_errno(UNIT(s), r, "TCP_KEEPCNT failed: %m");
×
1040
        }
1041

1042
        if (s->defer_accept > 0) {
2,359✔
1043
                r = setsockopt_int(fd, SOL_TCP, TCP_DEFER_ACCEPT, s->defer_accept / USEC_PER_SEC);
×
1044
                if (r < 0)
×
1045
                        log_unit_warning_errno(UNIT(s), r, "TCP_DEFER_ACCEPT failed: %m");
×
1046
        }
1047

1048
        if (s->no_delay) {
2,359✔
1049
                if (s->socket_protocol == IPPROTO_SCTP) {
×
1050
                        r = setsockopt_int(fd, SOL_SCTP, SCTP_NODELAY, true);
×
1051
                        if (r < 0)
×
1052
                                log_unit_warning_errno(UNIT(s), r, "SCTP_NODELAY failed: %m");
×
1053
                } else {
1054
                        r = setsockopt_int(fd, SOL_TCP, TCP_NODELAY, true);
×
1055
                        if (r < 0)
×
1056
                                log_unit_warning_errno(UNIT(s), r, "TCP_NODELAY failed: %m");
×
1057
                }
1058
        }
1059

1060
        if (s->broadcast) {
2,359✔
1061
                r = setsockopt_int(fd, SOL_SOCKET, SO_BROADCAST, true);
×
1062
                if (r < 0)
×
1063
                        log_unit_warning_errno(UNIT(s), r, "SO_BROADCAST failed: %m");
×
1064
        }
1065

1066
        if (s->pass_cred) {
2,359✔
1067
                r = setsockopt_int(fd, SOL_SOCKET, SO_PASSCRED, true);
132✔
1068
                if (r < 0)
132✔
1069
                        log_unit_warning_errno(UNIT(s), r, "SO_PASSCRED failed: %m");
×
1070
        }
1071

1072
        if (s->pass_sec) {
2,359✔
1073
                r = setsockopt_int(fd, SOL_SOCKET, SO_PASSSEC, true);
90✔
1074
                if (r < 0)
90✔
1075
                        log_unit_warning_errno(UNIT(s), r, "SO_PASSSEC failed: %m");
×
1076
        }
1077

1078
        if (s->pass_pktinfo) {
2,359✔
1079
                r = socket_set_recvpktinfo(fd, socket_address_family(&p->address), true);
33✔
1080
                if (r < 0)
33✔
1081
                        log_unit_warning_errno(UNIT(s), r, "Failed to enable packet info socket option: %m");
×
1082
        }
1083

1084
        if (s->timestamping != SOCKET_TIMESTAMPING_OFF) {
2,359✔
1085
                r = setsockopt_int(fd, SOL_SOCKET,
180✔
1086
                                   s->timestamping == SOCKET_TIMESTAMPING_NS ? SO_TIMESTAMPNS : SO_TIMESTAMP,
1087
                                   true);
1088
                if (r < 0)
90✔
1089
                        log_unit_warning_errno(UNIT(s), r, "Failed to enable timestamping socket option, ignoring: %m");
×
1090
        }
1091

1092
        if (s->priority >= 0) {
2,359✔
1093
                r = setsockopt_int(fd, SOL_SOCKET, SO_PRIORITY, s->priority);
173✔
1094
                if (r < 0)
173✔
1095
                        log_unit_warning_errno(UNIT(s), r, "SO_PRIORITY failed: %m");
×
1096
        }
1097

1098
        if (s->receive_buffer > 0) {
2,359✔
1099
                r = fd_set_rcvbuf(fd, s->receive_buffer, false);
150✔
1100
                if (r < 0)
150✔
1101
                        log_unit_full_errno(UNIT(s), ERRNO_IS_PRIVILEGE(r) ? LOG_DEBUG : LOG_WARNING, r,
×
1102
                                            "SO_RCVBUF/SO_RCVBUFFORCE failed: %m");
1103
        }
1104

1105
        if (s->send_buffer > 0) {
2,359✔
1106
                r = fd_set_sndbuf(fd, s->send_buffer, false);
30✔
1107
                if (r < 0)
30✔
1108
                        log_unit_full_errno(UNIT(s), ERRNO_IS_PRIVILEGE(r) ? LOG_DEBUG : LOG_WARNING, r,
×
1109
                                            "SO_SNDBUF/SO_SNDBUFFORCE failed: %m");
1110
        }
1111

1112
        if (s->mark >= 0) {
2,359✔
1113
                r = setsockopt_int(fd, SOL_SOCKET, SO_MARK, s->mark);
×
1114
                if (r < 0)
×
1115
                        log_unit_warning_errno(UNIT(s), r, "SO_MARK failed: %m");
×
1116
        }
1117

1118
        if (s->ip_tos >= 0) {
2,359✔
1119
                r = setsockopt_int(fd, IPPROTO_IP, IP_TOS, s->ip_tos);
×
1120
                if (r < 0)
×
1121
                        log_unit_warning_errno(UNIT(s), r, "IP_TOS failed: %m");
×
1122
        }
1123

1124
        if (s->ip_ttl >= 0) {
2,359✔
1125
                r = socket_set_ttl(fd, socket_address_family(&p->address), s->ip_ttl);
×
1126
                if (r < 0)
×
1127
                        log_unit_warning_errno(UNIT(s), r, "IP_TTL/IPV6_UNICAST_HOPS failed: %m");
×
1128
        }
1129

1130
        if (s->tcp_congestion)
2,359✔
1131
                if (setsockopt(fd, SOL_TCP, TCP_CONGESTION, s->tcp_congestion, strlen(s->tcp_congestion)+1) < 0)
×
1132
                        log_unit_warning_errno(UNIT(s), errno, "TCP_CONGESTION failed: %m");
×
1133

1134
        if (s->smack_ip_in) {
2,359✔
1135
                r = mac_smack_apply_fd(fd, SMACK_ATTR_IPIN, s->smack_ip_in);
×
1136
                if (r < 0)
×
1137
                        log_unit_error_errno(UNIT(s), r, "mac_smack_apply_ip_in_fd: %m");
×
1138
        }
1139

1140
        if (s->smack_ip_out) {
2,359✔
1141
                r = mac_smack_apply_fd(fd, SMACK_ATTR_IPOUT, s->smack_ip_out);
×
1142
                if (r < 0)
×
1143
                        log_unit_error_errno(UNIT(s), r, "mac_smack_apply_ip_out_fd: %m");
×
1144
        }
1145
}
2,359✔
1146

1147
static void socket_apply_fifo_options(Socket *s, int fd) {
66✔
1148
        int r;
66✔
1149

1150
        assert(s);
66✔
1151
        assert(fd >= 0);
66✔
1152

1153
        if (s->pipe_size > 0)
66✔
1154
                if (fcntl(fd, F_SETPIPE_SZ, s->pipe_size) < 0)
×
1155
                        log_unit_warning_errno(UNIT(s), errno, "Setting pipe size failed, ignoring: %m");
×
1156

1157
        if (s->smack) {
66✔
1158
                r = mac_smack_apply_fd(fd, SMACK_ATTR_ACCESS, s->smack);
×
1159
                if (r < 0)
×
1160
                        log_unit_error_errno(UNIT(s), r, "SMACK relabelling failed, ignoring: %m");
×
1161
        }
1162
}
66✔
1163

1164
static int fifo_address_create(
66✔
1165
                const char *path,
1166
                mode_t directory_mode,
1167
                mode_t socket_mode) {
1168

1169
        _cleanup_close_ int fd = -EBADF;
66✔
1170
        mode_t old_mask;
66✔
1171
        struct stat st;
66✔
1172
        int r;
66✔
1173

1174
        assert(path);
66✔
1175

1176
        (void) mkdir_parents_label(path, directory_mode);
66✔
1177

1178
        r = mac_selinux_create_file_prepare(path, S_IFIFO);
66✔
1179
        if (r < 0)
66✔
1180
                return r;
1181

1182
        /* Enforce the right access mode for the fifo */
1183
        old_mask = umask(~socket_mode);
66✔
1184

1185
        /* Include the original umask in our mask */
1186
        (void) umask(~socket_mode | old_mask);
66✔
1187

1188
        r = mkfifo(path, socket_mode);
66✔
1189
        (void) umask(old_mask);
66✔
1190

1191
        if (r < 0 && errno != EEXIST) {
66✔
1192
                r = -errno;
×
1193
                goto fail;
×
1194
        }
1195

1196
        fd = open(path, O_RDWR | O_CLOEXEC | O_NOCTTY | O_NONBLOCK | O_NOFOLLOW);
66✔
1197
        if (fd < 0) {
66✔
1198
                r = -errno;
×
1199
                goto fail;
×
1200
        }
1201

1202
        mac_selinux_create_file_clear();
66✔
1203

1204
        if (fstat(fd, &st) < 0) {
66✔
1205
                r = -errno;
×
1206
                goto fail;
×
1207
        }
1208

1209
        if (!S_ISFIFO(st.st_mode) ||
66✔
1210
            (st.st_mode & 0777) != (socket_mode & ~old_mask) ||
132✔
1211
            st.st_uid != getuid() ||
132✔
1212
            st.st_gid != getgid()) {
66✔
1213
                r = -EEXIST;
×
1214
                goto fail;
×
1215
        }
1216

1217
        return TAKE_FD(fd);
1218

1219
fail:
×
1220
        mac_selinux_create_file_clear();
×
1221
        return r;
1222
}
1223

1224
static int special_address_create(const char *path, bool writable) {
6✔
1225
        _cleanup_close_ int fd = -EBADF;
6✔
1226
        struct stat st;
6✔
1227

1228
        assert(path);
6✔
1229

1230
        fd = open(path, (writable ? O_RDWR : O_RDONLY)|O_CLOEXEC|O_NOCTTY|O_NONBLOCK|O_NOFOLLOW);
6✔
1231
        if (fd < 0)
6✔
1232
                return -errno;
×
1233

1234
        if (fstat(fd, &st) < 0)
6✔
1235
                return -errno;
×
1236

1237
        /* Check whether this is a /proc, /sys or /dev file or char device */
1238
        if (!S_ISREG(st.st_mode) && !S_ISCHR(st.st_mode))
6✔
1239
                return -EEXIST;
×
1240

1241
        return TAKE_FD(fd);
1242
}
1243

1244
static int usbffs_address_create_at(int dfd, const char *name) {
×
1245
        _cleanup_close_ int fd = -EBADF;
×
1246
        struct stat st;
×
1247

1248
        assert(dfd >= 0);
×
1249
        assert(name);
×
1250

1251
        fd = openat(dfd, name, O_RDWR|O_CLOEXEC|O_NOCTTY|O_NONBLOCK|O_NOFOLLOW);
×
1252
        if (fd < 0)
×
1253
                return -errno;
×
1254

1255
        if (fstat(fd, &st) < 0)
×
1256
                return -errno;
×
1257

1258
        /* Check whether this is a regular file (ffs endpoint) */
1259
        if (!S_ISREG(st.st_mode))
×
1260
                return -EEXIST;
×
1261

1262
        return TAKE_FD(fd);
1263
}
1264

1265
static int mq_address_create(
×
1266
                const char *path,
1267
                mode_t mq_mode,
1268
                long maxmsg,
1269
                long msgsize) {
1270

1271
        _cleanup_close_ int fd = -EBADF;
×
1272
        struct stat st;
×
1273
        mode_t old_mask;
×
1274
        struct mq_attr _attr, *attr = NULL;
×
1275

1276
        assert(path);
×
1277

1278
        if (maxmsg > 0 && msgsize > 0) {
×
1279
                _attr = (struct mq_attr) {
×
1280
                        .mq_flags = O_NONBLOCK,
1281
                        .mq_maxmsg = maxmsg,
1282
                        .mq_msgsize = msgsize,
1283
                };
1284
                attr = &_attr;
×
1285
        }
1286

1287
        /* Enforce the right access mode for the mq */
1288
        old_mask = umask(~mq_mode);
×
1289

1290
        /* Include the original umask in our mask */
1291
        (void) umask(~mq_mode | old_mask);
×
1292
        fd = mq_open(path, O_RDONLY|O_CLOEXEC|O_NONBLOCK|O_CREAT, mq_mode, attr);
×
1293
        (void) umask(old_mask);
×
1294

1295
        if (fd < 0)
×
1296
                return -errno;
×
1297

1298
        if (fstat(fd, &st) < 0)
×
1299
                return -errno;
×
1300

1301
        if ((st.st_mode & 0777) != (mq_mode & ~old_mask) ||
×
1302
            st.st_uid != getuid() ||
×
1303
            st.st_gid != getgid())
×
1304
                return -EEXIST;
×
1305

1306
        return TAKE_FD(fd);
1307
}
1308

1309
static int socket_symlink(Socket *s) {
2,423✔
1310
        const char *p;
2,423✔
1311
        int r;
2,423✔
1312

1313
        assert(s);
2,423✔
1314

1315
        p = socket_find_symlink_target(s);
2,423✔
1316
        if (!p)
2,423✔
1317
                return 0;
1318

1319
        STRV_FOREACH(i, s->symlinks) {
2,294✔
1320
                (void) mkdir_parents_label(*i, s->directory_mode);
129✔
1321

1322
                r = symlink_idempotent(p, *i, false);
129✔
1323
                if (r == -EEXIST && s->remove_on_stop) {
129✔
1324
                        /* If there's already something where we want to create the symlink, and the destructive
1325
                         * RemoveOnStop= mode is set, then we might as well try to remove what already exists and try
1326
                         * again. */
1327

1328
                        if (unlink(*i) >= 0)
×
1329
                                r = symlink_idempotent(p, *i, false);
×
1330
                }
1331
                if (r < 0)
129✔
1332
                        log_unit_warning_errno(UNIT(s), r, "Failed to create symlink %s %s %s, ignoring: %m",
×
1333
                                               p, glyph(GLYPH_ARROW_RIGHT), *i);
1334
        }
1335

1336
        return 0;
1337
}
1338

1339
static int usbffs_write_descs(int fd, Service *s) {
×
1340
        int r;
×
1341

1342
        assert(fd >= 0);
×
1343
        assert(s);
×
1344

1345
        if (!s->usb_function_descriptors || !s->usb_function_strings)
×
1346
                return -EINVAL;
1347

1348
        r = copy_file_fd(s->usb_function_descriptors, fd, 0);
×
1349
        if (r < 0)
×
1350
                return r;
1351

1352
        return copy_file_fd(s->usb_function_strings, fd, 0);
×
1353
}
1354

1355
static int usbffs_dispatch_eps(SocketPort *p, int dfd) {
×
1356
        _cleanup_free_ DirectoryEntries *des = NULL;
×
1357
        int r;
×
1358

1359
        assert(p);
×
1360
        assert(dfd >= 0);
×
1361

1362
        r = readdir_all(dfd, RECURSE_DIR_SORT|RECURSE_DIR_IGNORE_DOT, &des);
×
1363
        if (r < 0)
×
1364
                return r;
1365

1366
        p->auxiliary_fds = new(int, des->n_entries);
×
1367
        if (!p->auxiliary_fds)
×
1368
                return -ENOMEM;
1369

1370
        FOREACH_ARRAY(i, des->entries, des->n_entries) {
×
1371
                const struct dirent *de = *i;
×
1372

1373
                if (streq(de->d_name, "ep0"))
×
1374
                        continue;
×
1375

1376
                r = usbffs_address_create_at(dfd, de->d_name);
×
1377
                if (r < 0)
×
1378
                        goto fail;
×
1379

1380
                p->auxiliary_fds[p->n_auxiliary_fds++] = r;
×
1381
        }
1382

1383
        assert(p->n_auxiliary_fds < des->n_entries);
×
1384

1385
        return 0;
1386

1387
fail:
×
1388
        socket_port_close_auxiliary_fds(p);
×
1389
        return r;
1390
}
1391

1392
int socket_load_service_unit(Socket *s, int cfd, Unit **ret) {
2,343✔
1393
        int r;
2,343✔
1394

1395
        /* Figure out what the unit that will be used to handle the connections on the socket looks like.
1396
         *
1397
         * If cfd < 0, then we don't have a connection yet. In case of Accept=yes sockets, use a fake
1398
         * instance name.
1399
         */
1400

1401
        assert(s);
2,343✔
1402
        assert(ret);
2,343✔
1403

1404
        if (UNIT_ISSET(s->service)) {
2,343✔
1405
                *ret = UNIT_DEREF(s->service);
1,885✔
1406
                return 0;
2,343✔
1407
        }
1408

1409
        if (!s->accept)
458✔
1410
                return -ENODATA;
1411

1412
        /* Build the instance name and load the unit */
1413
        _cleanup_free_ char *prefix = NULL, *instance = NULL, *name = NULL;
458✔
1414

1415
        r = unit_name_to_prefix(UNIT(s)->id, &prefix);
458✔
1416
        if (r < 0)
458✔
1417
                return r;
1418

1419
        if (cfd >= 0) {
458✔
1420
                r = instance_from_socket(cfd, s->n_accepted, &instance);
2✔
1421
                if (ERRNO_IS_NEG_DISCONNECT(r))
2✔
1422
                        /* ENOTCONN is legitimate if TCP RST was received. Other socket families might return
1423
                         * different errors. This connection is over, but the socket unit lives on. */
1424
                        return log_unit_debug_errno(UNIT(s), r,
×
1425
                                                    "Got %s on incoming socket, assuming aborted connection attempt, ignoring.",
1426
                                                    errno_to_name(r));
1427
                if (r < 0)
2✔
1428
                        return r;
1429
        }
1430

1431
        /* For accepting sockets, we don't know how the instance will be called until we get a connection and
1432
         * can figure out what the peer name is. So let's use "internal" as the instance to make it clear
1433
         * that this is not an actual peer name. We use "unknown" when we cannot figure out the peer. */
1434
        r = unit_name_build(prefix, instance ?: "internal", ".service", &name);
914✔
1435
        if (r < 0)
458✔
1436
                return r;
1437

1438
        return manager_load_unit(UNIT(s)->manager, name, NULL, NULL, ret);
458✔
1439
}
1440

1441
static int socket_determine_selinux_label(Socket *s, char **ret) {
2,294✔
1442
        Unit *service;
2,294✔
1443
        int r;
2,294✔
1444

1445
        assert(s);
2,294✔
1446
        assert(ret);
2,294✔
1447

1448
        r = socket_load_service_unit(s, /* cfd= */ -EBADF, &service);
2,294✔
1449
        if (r == -ENODATA) {
2,294✔
1450
                *ret = NULL;
×
1451
                return 0;
×
1452
        }
1453
        if (r < 0)
2,294✔
1454
                return r;
1455

1456
        r = service_determine_exec_selinux_label(SERVICE(service), ret);
4,588✔
1457
        if (r == -ENODATA) {
2,294✔
1458
                *ret = NULL;
2,294✔
1459
                return 0;
2,294✔
1460
        }
1461
        return r;
1462
}
1463

1464
static int socket_address_listen_do(
2,358✔
1465
                Socket *s,
1466
                const SocketAddress *address,
1467
                const char *label) {
1468

1469
        assert(s);
2,358✔
1470
        assert(address);
2,358✔
1471

1472
        return socket_address_listen(
4,716✔
1473
                        address,
1474
                        SOCK_CLOEXEC|SOCK_NONBLOCK,
1475
                        s->backlog,
2,358✔
1476
                        s->bind_ipv6_only,
1477
                        s->bind_to_device,
2,358✔
1478
                        s->reuse_port,
2,358✔
1479
                        s->free_bind,
2,358✔
1480
                        s->transparent,
2,358✔
1481
                        s->directory_mode,
1482
                        s->socket_mode,
1483
                        label);
1484
}
1485

1486
#define log_address_error_errno(u, address, error, fmt)          \
1487
        ({                                                       \
1488
                _cleanup_free_ char *_t = NULL;                  \
1489
                                                                 \
1490
                (void) socket_address_print(address, &_t);       \
1491
                log_unit_error_errno(u, error, fmt, strna(_t));  \
1492
        })
1493

1494
static bool fork_needed(const SocketAddress *address, Socket *s) {
2,357✔
1495
        assert(address);
2,357✔
1496
        assert(s);
2,357✔
1497

1498
        /* Check if we need to do the cgroup or netns stuff. If not we can do things much simpler. */
1499

1500
        /* If there are any NFTSet= directives with cgroup source, we need the cgroup */
1501
        Unit *u = UNIT(s);
2,357✔
1502
        CGroupContext *c = unit_get_cgroup_context(u);
2,357✔
1503
        if (c)
2,357✔
1504
                FOREACH_ARRAY(nft_set, c->nft_set_context.sets, c->nft_set_context.n_sets)
2,357✔
1505
                        if (nft_set->source == NFT_SET_SOURCE_CGROUP)
×
1506
                                return true;
1507

1508
        if (IN_SET(address->sockaddr.sa.sa_family, AF_INET, AF_INET6) &&
2,357✔
1509
            bpf_program_supported() > 0) /* If BPF firewalling isn't supported anyway — there's no point in this forking complexity */
×
1510
                return true;
1511

1512
        return exec_needs_network_namespace(&s->exec_context);
2,357✔
1513
}
1514

1515
static int socket_address_listen_in_cgroup(
2,357✔
1516
                Socket *s,
1517
                const SocketAddress *address,
1518
                const char *label) {
1519

1520
        _cleanup_(pidref_done) PidRef pid = PIDREF_NULL;
×
1521
        _cleanup_close_pair_ int pair[2] = EBADF_PAIR;
2,357✔
1522
        int fd, r;
2,357✔
1523

1524
        assert(s);
2,357✔
1525
        assert(address);
2,357✔
1526

1527
        /* This is a wrapper around socket_address_listen(), that forks off a helper process inside the
1528
         * socket's cgroup and network namespace in which the socket is actually created. This way we ensure
1529
         * the socket is actually properly attached to the unit's cgroup for the purpose of BPF filtering and
1530
         * such. */
1531

1532
        if (!fork_needed(address, s)) {
2,357✔
1533
                /* Shortcut things... */
1534
                fd = socket_address_listen_do(s, address, label);
2,357✔
1535
                if (fd < 0)
2,357✔
1536
                        return log_address_error_errno(UNIT(s), address, fd, "Failed to create listening socket (%s): %m");
×
1537

1538
                return fd;
1539
        }
1540

1541
        r = unit_setup_exec_runtime(UNIT(s));
×
1542
        if (r < 0)
×
1543
                return log_unit_error_errno(UNIT(s), r, "Failed acquire runtime: %m");
×
1544

1545
        if (s->exec_context.network_namespace_path &&
×
1546
            s->exec_runtime &&
×
1547
            s->exec_runtime->shared &&
×
1548
            s->exec_runtime->shared->netns_storage_socket[0] >= 0) {
×
1549
                r = open_shareable_ns_path(s->exec_runtime->shared->netns_storage_socket, s->exec_context.network_namespace_path, CLONE_NEWNET);
×
1550
                if (r < 0)
×
1551
                        return log_unit_error_errno(UNIT(s), r, "Failed to open network namespace path %s: %m", s->exec_context.network_namespace_path);
×
1552
        }
1553

1554
        if (s->exec_context.ipc_namespace_path &&
×
1555
            s->exec_runtime &&
×
1556
            s->exec_runtime->shared &&
×
1557
            s->exec_runtime->shared->ipcns_storage_socket[0] >= 0) {
×
1558
                r = open_shareable_ns_path(s->exec_runtime->shared->ipcns_storage_socket, s->exec_context.ipc_namespace_path, CLONE_NEWIPC);
×
1559
                if (r < 0)
×
1560
                        return log_unit_error_errno(UNIT(s), r, "Failed to open IPC namespace path %s: %m", s->exec_context.ipc_namespace_path);
×
1561
        }
1562

1563
        if (socketpair(AF_UNIX, SOCK_SEQPACKET|SOCK_CLOEXEC, 0, pair) < 0)
×
1564
                return log_unit_error_errno(UNIT(s), errno, "Failed to create communication channel: %m");
×
1565

1566
        r = unit_fork_helper_process(UNIT(s), "(sd-listen)", /* into_cgroup= */ true, &pid);
×
1567
        if (r < 0)
1✔
1568
                return log_unit_error_errno(UNIT(s), r, "Failed to fork off listener stub process: %m");
×
1569
        if (r == 0) {
1✔
1570
                /* Child */
1571

1572
                pair[0] = safe_close(pair[0]);
1✔
1573

1574
                if (exec_needs_network_namespace(&s->exec_context) &&
1✔
1575
                    s->exec_runtime &&
×
1576
                    s->exec_runtime->shared &&
×
1577
                    s->exec_runtime->shared->netns_storage_socket[0] >= 0) {
×
1578

1579
                        if (namespace_type_supported(NAMESPACE_NET)) {
×
1580
                                r = setup_shareable_ns(s->exec_runtime->shared->netns_storage_socket, CLONE_NEWNET);
×
1581
                                if (r < 0) {
×
1582
                                        log_unit_error_errno(UNIT(s), r, "Failed to join network namespace: %m");
×
1583
                                        _exit(EXIT_NETWORK);
×
1584
                                }
1585
                        } else if (s->exec_context.network_namespace_path) {
×
1586
                                log_unit_error(UNIT(s), "Network namespace path configured but network namespaces not supported.");
×
1587
                                _exit(EXIT_NETWORK);
×
1588
                        } else
1589
                                log_unit_warning(UNIT(s), "PrivateNetwork=yes is configured, but the kernel does not support network namespaces, ignoring.");
×
1590
                }
1591

1592
                fd = socket_address_listen_do(s, address, label);
1✔
1593
                if (fd < 0) {
1✔
1594
                        log_address_error_errno(UNIT(s), address, fd, "Failed to create listening socket (%s): %m");
×
1595
                        _exit(EXIT_FAILURE);
×
1596
                }
1597

1598
                r = send_one_fd(pair[1], fd, 0);
1✔
1599
                if (r < 0) {
1✔
1600
                        log_address_error_errno(UNIT(s), address, r, "Failed to send listening socket (%s) to parent: %m");
×
1601
                        _exit(EXIT_FAILURE);
×
1602
                }
1603

1604
                _exit(EXIT_SUCCESS);
1✔
1605
        }
1606

1607
        pair[1] = safe_close(pair[1]);
×
1608
        fd = receive_one_fd(pair[0], 0);
×
1609

1610
        /* We synchronously wait for the helper, as it shouldn't be slow */
1611
        r = wait_for_terminate_and_check("(sd-listen)", pid.pid, WAIT_LOG_ABNORMAL);
×
1612
        if (r < 0) {
×
1613
                safe_close(fd);
×
1614
                return r;
1615
        }
1616

1617
        if (fd < 0)
×
1618
                return log_address_error_errno(UNIT(s), address, fd, "Failed to receive listening socket (%s): %m");
×
1619

1620
        return fd;
1621
}
1622

1623
static int socket_open_fds(Socket *orig_s) {
2,333✔
1624
        _cleanup_(socket_close_fdsp) Socket *s = orig_s;
2,333✔
1625
        _cleanup_freecon_ char *label = NULL;
×
1626
        bool know_label = false;
2,333✔
1627
        int r;
2,333✔
1628

1629
        assert(s);
2,333✔
1630

1631
        LIST_FOREACH(port, p, s->ports) {
2,333✔
1632

1633
                if (p->fd >= 0)
2,429✔
1634
                        continue;
×
1635

1636
                switch (p->type) {
2,429✔
1637

1638
                case SOCKET_SOCKET:
2,357✔
1639

1640
                        if (!know_label) {
2,357✔
1641
                                /* Figure out the label, if we don't it know yet. We do it once for the first
1642
                                 * socket where we need this and remember it for the rest. */
1643

1644
                                r = socket_determine_selinux_label(s, &label);
2,294✔
1645
                                if (r < 0)
2,294✔
1646
                                        return log_unit_error_errno(UNIT(s), r, "Failed to determine SELinux label: %m");
×
1647

1648
                                know_label = true;
1649
                        }
1650

1651
                        /* Apply the socket protocol */
1652
                        switch (p->address.type) {
2,357✔
1653

1654
                        case SOCK_STREAM:
2,189✔
1655
                                if (IN_SET(s->socket_protocol, IPPROTO_SCTP, IPPROTO_MPTCP))
2,189✔
1656
                                        p->address.protocol = s->socket_protocol;
×
1657
                                break;
1658

1659
                        case SOCK_SEQPACKET:
48✔
1660
                                if (s->socket_protocol == IPPROTO_SCTP)
48✔
1661
                                        p->address.protocol = s->socket_protocol;
×
1662
                                break;
1663

1664
                        case SOCK_DGRAM:
60✔
1665
                                if (s->socket_protocol == IPPROTO_UDPLITE)
60✔
1666
                                        p->address.protocol = s->socket_protocol;
×
1667
                                break;
1668
                        }
1669

1670
                        p->fd = socket_address_listen_in_cgroup(s, &p->address, label);
2,357✔
1671
                        if (p->fd < 0)
2,357✔
1672
                                return p->fd;
1673

1674
                        socket_apply_socket_options(s, p, p->fd);
2,357✔
1675
                        socket_symlink(s);
2,357✔
1676
                        break;
1677

1678
                case SOCKET_SPECIAL:
6✔
1679

1680
                        p->fd = special_address_create(p->path, s->writable);
6✔
1681
                        if (p->fd < 0)
6✔
1682
                                return log_unit_error_errno(UNIT(s), p->fd, "Failed to open special file '%s': %m", p->path);
×
1683
                        break;
1684

1685
                case SOCKET_FIFO:
66✔
1686

1687
                        p->fd = fifo_address_create(
132✔
1688
                                        p->path,
66✔
1689
                                        s->directory_mode,
1690
                                        s->socket_mode);
1691
                        if (p->fd < 0)
66✔
1692
                                return log_unit_error_errno(UNIT(s), p->fd, "Failed to open FIFO '%s': %m", p->path);
×
1693

1694
                        socket_apply_fifo_options(s, p->fd);
66✔
1695
                        socket_symlink(s);
66✔
1696
                        break;
1697

1698
                case SOCKET_MQUEUE:
×
1699

1700
                        p->fd = mq_address_create(
×
1701
                                        p->path,
×
1702
                                        s->socket_mode,
1703
                                        s->mq_maxmsg,
1704
                                        s->mq_msgsize);
1705
                        if (p->fd < 0)
×
1706
                                return log_unit_error_errno(UNIT(s), p->fd, "Failed to open message queue '%s': %m", p->path);
×
1707
                        break;
1708

1709
                case SOCKET_USB_FUNCTION: {
×
1710
                        _cleanup_close_ int dfd = -EBADF;
4,762✔
1711

1712
                        dfd = open(p->path, O_DIRECTORY|O_CLOEXEC);
×
1713
                        if (dfd < 0)
×
1714
                                return log_unit_error_errno(UNIT(s), errno,
×
1715
                                                            "Failed to open USB FunctionFS dir '%s': %m", p->path);
1716

1717
                        p->fd = usbffs_address_create_at(dfd, "ep0");
×
1718
                        if (p->fd < 0)
×
1719
                                return log_unit_error_errno(UNIT(s), p->fd, "Failed to open USB FunctionFS ep0: %m");
×
1720

1721
                        r = usbffs_write_descs(p->fd, SERVICE(UNIT_DEREF(s->service)));
×
1722
                        if (r < 0)
×
1723
                                return log_unit_error_errno(UNIT(s), r, "Failed to write to USB FunctionFS ep0: %m");
×
1724

1725
                        r = usbffs_dispatch_eps(p, dfd);
×
1726
                        if (r < 0)
×
1727
                                return log_unit_error_errno(UNIT(s), r, "Failed to dispatch USB FunctionFS eps: %m");
×
1728

1729
                        break;
×
1730
                }
1731

1732
                default:
×
1733
                        assert_not_reached();
×
1734
                }
1735
        }
1736

1737
        TAKE_PTR(s);
1738
        return 0;
1739
}
1740

1741
static void socket_unwatch_fds(Socket *s) {
6,445✔
1742
        int r;
6,445✔
1743

1744
        assert(s);
6,445✔
1745

1746
        LIST_FOREACH(port, p, s->ports) {
13,202✔
1747
                if (p->fd < 0)
6,757✔
1748
                        continue;
2,429✔
1749

1750
                r = sd_event_source_set_enabled(p->event_source, SD_EVENT_OFF);
4,328✔
1751
                if (r < 0)
4,328✔
1752
                        log_unit_debug_errno(UNIT(s), r, "Failed to disable event source: %m");
×
1753
        }
1754
}
6,445✔
1755

1756
static int socket_watch_fds(Socket *s) {
3,765✔
1757
        int r;
3,765✔
1758

1759
        assert(s);
3,765✔
1760

1761
        LIST_FOREACH(port, p, s->ports) {
7,734✔
1762
                if (p->fd < 0)
3,969✔
1763
                        continue;
×
1764

1765
                if (p->event_source) {
3,969✔
1766
                        r = sd_event_source_set_enabled(p->event_source, SD_EVENT_ON);
672✔
1767
                        if (r < 0)
672✔
1768
                                goto fail;
×
1769
                } else {
1770
                        r = sd_event_add_io(UNIT(s)->manager->event, &p->event_source, p->fd, EPOLLIN, socket_dispatch_io, p);
3,297✔
1771
                        if (r < 0)
3,297✔
1772
                                goto fail;
×
1773

1774
                        (void) sd_event_source_set_description(p->event_source, "socket-port-io");
3,297✔
1775
                }
1776

1777
                r = sd_event_source_set_ratelimit(p->event_source, s->poll_limit.interval, s->poll_limit.burst);
3,969✔
1778
                if (r < 0)
3,969✔
1779
                        log_unit_debug_errno(UNIT(s), r, "Failed to set poll limit on I/O event source, ignoring: %m");
×
1780
        }
1781

1782
        return 0;
1783

1784
fail:
×
1785
        log_unit_warning_errno(UNIT(s), r, "Failed to watch listening fds: %m");
×
1786
        socket_unwatch_fds(s);
×
1787
        return r;
×
1788
}
1789

1790
enum {
1791
        SOCKET_OPEN_NONE,
1792
        SOCKET_OPEN_SOME,
1793
        SOCKET_OPEN_ALL,
1794
};
1795

1796
static int socket_check_open(Socket *s) {
1,233✔
1797
        bool have_open = false, have_closed = false;
1,233✔
1798

1799
        assert(s);
1,233✔
1800

1801
        LIST_FOREACH(port, p, s->ports) {
2,622✔
1802
                if (p->fd < 0)
1,389✔
1803
                        have_closed = true;
1804
                else
1805
                        have_open = true;
1,389✔
1806

1807
                if (have_open && have_closed)
1,389✔
1808
                        return SOCKET_OPEN_SOME;
1809
        }
1810

1811
        if (have_open)
1,233✔
1812
                return SOCKET_OPEN_ALL;
1,233✔
1813

1814
        return SOCKET_OPEN_NONE;
1815
}
1816

1817
static void socket_set_state(Socket *s, SocketState state) {
10,210✔
1818
        SocketState old_state;
10,210✔
1819

1820
        assert(s);
10,210✔
1821

1822
        if (s->state != state)
10,210✔
1823
                bus_unit_send_pending_change_signal(UNIT(s), false);
8,854✔
1824

1825
        old_state = s->state;
10,210✔
1826
        s->state = state;
10,210✔
1827

1828
        if (!SOCKET_STATE_WITH_PROCESS(state)) {
10,210✔
1829
                s->timer_event_source = sd_event_source_disable_unref(s->timer_event_source);
10,037✔
1830
                socket_unwatch_control_pid(s);
10,037✔
1831
                s->control_command = NULL;
10,037✔
1832
                s->control_command_id = _SOCKET_EXEC_COMMAND_INVALID;
10,037✔
1833
        }
1834

1835
        if (state != SOCKET_LISTENING)
10,210✔
1836
                socket_unwatch_fds(s);
6,445✔
1837

1838
        if (!IN_SET(state,
6,445✔
1839
                    SOCKET_START_OPEN,
1840
                    SOCKET_START_CHOWN,
1841
                    SOCKET_START_POST,
1842
                    SOCKET_LISTENING,
1843
                    SOCKET_RUNNING,
1844
                    SOCKET_STOP_PRE,
1845
                    SOCKET_STOP_PRE_SIGTERM,
1846
                    SOCKET_STOP_PRE_SIGKILL))
1847
                socket_close_fds(s);
1,936✔
1848

1849
        if (state != old_state)
10,210✔
1850
                log_unit_debug(UNIT(s), "Changed %s -> %s", socket_state_to_string(old_state), socket_state_to_string(state));
8,854✔
1851

1852
        unit_notify(UNIT(s), state_translation_table[old_state], state_translation_table[state], /* reload_success = */ true);
10,210✔
1853
}
10,210✔
1854

1855
static int socket_coldplug(Unit *u) {
2,952✔
1856
        Socket *s = ASSERT_PTR(SOCKET(u));
2,952✔
1857
        int r;
2,952✔
1858

1859
        assert(s->state == SOCKET_DEAD);
2,952✔
1860

1861
        if (s->deserialized_state == s->state)
2,952✔
1862
                return 0;
1863

1864
        if (pidref_is_set(&s->control_pid) &&
1,233✔
1865
            pidref_is_unwaited(&s->control_pid) > 0 &&
×
1866
            SOCKET_STATE_WITH_PROCESS(s->deserialized_state)) {
×
1867

1868
                r = unit_watch_pidref(UNIT(s), &s->control_pid, /* exclusive= */ false);
×
1869
                if (r < 0)
×
1870
                        return r;
1871

1872
                r = socket_arm_timer(s, /* relative= */ false, usec_add(u->state_change_timestamp.monotonic, s->timeout_usec));
×
1873
                if (r < 0)
×
1874
                        return r;
1875
        }
1876

1877
        if (IN_SET(s->deserialized_state,
1,233✔
1878
                   SOCKET_START_OPEN,
1879
                   SOCKET_START_CHOWN,
1880
                   SOCKET_START_POST,
1881
                   SOCKET_LISTENING,
1882
                   SOCKET_RUNNING)) {
1883

1884
                /* Originally, we used to simply reopen all sockets here that we didn't have file descriptors
1885
                 * for. However, this is problematic, as we won't traverse through the SOCKET_START_CHOWN state for
1886
                 * them, and thus the UID/GID wouldn't be right. Hence, instead simply check if we have all fds open,
1887
                 * and if there's a mismatch, warn loudly.
1888
                 *
1889
                 * Note that SOCKET_START_OPEN requires no special treatment, as it's only intermediate
1890
                 * between SOCKET_START_PRE and SOCKET_START_CHOWN and shall otherwise not be observed.
1891
                 * It's listed only for consistency. */
1892

1893
                r = socket_check_open(s);
1,233✔
1894
                if (r == SOCKET_OPEN_NONE)
1,233✔
1895
                        log_unit_warning(UNIT(s),
×
1896
                                         "Socket unit configuration has changed while unit has been running, "
1897
                                         "no open socket file descriptor left. "
1898
                                         "The socket unit is not functional until restarted.");
1899
                else if (r == SOCKET_OPEN_SOME)
1,233✔
1900
                        log_unit_warning(UNIT(s),
×
1901
                                         "Socket unit configuration has changed while unit has been running, "
1902
                                         "and some socket file descriptors have not been opened yet. "
1903
                                         "The socket unit is not fully functional until restarted.");
1904
        }
1905

1906
        if (s->deserialized_state == SOCKET_LISTENING) {
1,233✔
1907
                r = socket_watch_fds(s);
750✔
1908
                if (r < 0)
750✔
1909
                        return r;
1910
        }
1911

1912
        if (!IN_SET(s->deserialized_state, SOCKET_DEAD, SOCKET_FAILED, SOCKET_CLEANING))
1,233✔
1913
                (void) unit_setup_exec_runtime(u);
1,233✔
1914

1915
        socket_set_state(s, s->deserialized_state);
1,233✔
1916
        return 0;
1,233✔
1917
}
1918

1919
static int socket_spawn(Socket *s, ExecCommand *c, PidRef *ret_pid) {
173✔
1920
        _cleanup_(exec_params_shallow_clear) ExecParameters exec_params = EXEC_PARAMETERS_INIT(
173✔
1921
                        EXEC_APPLY_SANDBOXING|EXEC_APPLY_CHROOT|EXEC_APPLY_TTY_STDIN);
1922
        _cleanup_(pidref_done) PidRef pidref = PIDREF_NULL;
173✔
1923
        int r;
173✔
1924

1925
        assert(s);
173✔
1926
        assert(c);
173✔
1927
        assert(ret_pid);
173✔
1928

1929
        r = unit_prepare_exec(UNIT(s));
173✔
1930
        if (r < 0)
173✔
1931
                return r;
1932

1933
        r = socket_arm_timer(s, /* relative= */ true, s->timeout_usec);
173✔
1934
        if (r < 0)
173✔
1935
                return r;
1936

1937
        r = unit_set_exec_params(UNIT(s), &exec_params);
173✔
1938
        if (r < 0)
173✔
1939
                return r;
1940

1941
        /* Note that ExecStartPre= command doesn't inherit any FDs. It runs before we open listen FDs. */
1942
        if (s->pass_fds_to_exec) {
173✔
1943
                _cleanup_strv_free_ char **fd_names = NULL;
×
1944
                _cleanup_free_ int *fds = NULL;
×
1945
                int n_fds;
×
1946

1947
                n_fds = socket_collect_fds(s, &fds);
×
1948
                if (n_fds < 0)
×
1949
                        return n_fds;
1950

1951
                r = strv_extend_n(&fd_names, socket_fdname(s), n_fds);
×
1952
                if (r < 0)
×
1953
                        return r;
1954

1955
                exec_params.flags |= EXEC_PASS_FDS;
×
1956
                exec_params.fds = TAKE_PTR(fds);
×
1957
                exec_params.fd_names = TAKE_PTR(fd_names);
×
1958
                exec_params.n_socket_fds = n_fds;
×
1959
        }
1960

1961
        r = exec_spawn(UNIT(s),
173✔
1962
                       c,
1963
                       &s->exec_context,
173✔
1964
                       &exec_params,
1965
                       s->exec_runtime,
1966
                       &s->cgroup_context,
173✔
1967
                       &pidref);
1968
        if (r < 0)
173✔
1969
                return r;
1970

1971
        r = unit_watch_pidref(UNIT(s), &pidref, /* exclusive= */ true);
173✔
1972
        if (r < 0)
173✔
1973
                return r;
1974

1975
        *ret_pid = TAKE_PIDREF(pidref);
173✔
1976
        return 0;
173✔
1977
}
1978

1979
static int socket_chown(Socket *s, PidRef *ret_pid) {
×
1980
        _cleanup_(pidref_done) PidRef pid = PIDREF_NULL;
×
1981
        int r;
×
1982

1983
        assert(s);
×
1984

1985
        r = socket_arm_timer(s, /* relative= */ true, s->timeout_usec);
×
1986
        if (r < 0)
×
1987
                return r;
1988

1989
        /* We have to resolve the user names out-of-process, hence
1990
         * let's fork here. It's messy, but well, what can we do? */
1991

1992
        r = unit_fork_helper_process(UNIT(s), "(sd-chown)", /* into_cgroup= */ true, &pid);
×
1993
        if (r < 0)
3✔
1994
                return r;
1995
        if (r == 0) {
3✔
1996
                uid_t uid = UID_INVALID;
3✔
1997
                gid_t gid = GID_INVALID;
3✔
1998

1999
                /* Child */
2000

2001
                if (!isempty(s->user)) {
3✔
2002
                        const char *user = s->user;
1✔
2003

2004
                        r = get_user_creds(&user, &uid, &gid, NULL, NULL, 0);
1✔
2005
                        if (r < 0) {
1✔
2006
                                log_unit_error_errno(UNIT(s), r, "Failed to resolve user %s: %m", user);
×
2007
                                _exit(EXIT_USER);
×
2008
                        }
2009
                }
2010

2011
                if (!isempty(s->group)) {
3✔
2012
                        const char *group = s->group;
3✔
2013

2014
                        r = get_group_creds(&group, &gid, 0);
3✔
2015
                        if (r < 0) {
3✔
2016
                                log_unit_error_errno(UNIT(s), r, "Failed to resolve group %s: %m", group);
×
2017
                                _exit(EXIT_GROUP);
×
2018
                        }
2019
                }
2020

2021
                LIST_FOREACH(port, p, s->ports) {
6✔
2022
                        const char *path = NULL;
3✔
2023

2024
                        if (p->type == SOCKET_SOCKET)
3✔
2025
                                path = socket_address_get_path(&p->address);
2✔
2026
                        else if (p->type == SOCKET_FIFO)
1✔
2027
                                path = p->path;
×
2028
                        else if (p->type == SOCKET_MQUEUE) {
1✔
2029
                                /* Use fchown on the fd since /dev/mqueue might not be mounted. */
2030
                                if (fchown(p->fd, uid, gid) < 0) {
1✔
2031
                                        log_unit_error_errno(UNIT(s), errno, "Failed to fchown(): %m");
×
2032
                                        _exit(EXIT_CHOWN);
×
2033
                                }
2034
                                continue;
1✔
2035
                        }
2036

2037
                        if (!path)
2✔
2038
                                continue;
×
2039

2040
                        if (chown(path, uid, gid) < 0) {
2✔
2041
                                log_unit_error_errno(UNIT(s), errno, "Failed to chown(): %m");
×
2042
                                _exit(EXIT_CHOWN);
×
2043
                        }
2044
                }
2045

2046
                _exit(EXIT_SUCCESS);
3✔
2047
        }
2048

2049
        r = unit_watch_pidref(UNIT(s), &pid, /* exclusive= */ true);
×
2050
        if (r < 0)
×
2051
                return r;
2052

2053
        *ret_pid = TAKE_PIDREF(pid);
×
2054
        return 0;
×
2055
}
2056

2057
static void socket_enter_dead(Socket *s, SocketResult f) {
1,936✔
2058
        assert(s);
1,936✔
2059

2060
        if (s->result == SOCKET_SUCCESS)
1,936✔
2061
                s->result = f;
1,936✔
2062

2063
        if (s->result == SOCKET_SUCCESS)
1,936✔
2064
                unit_log_success(UNIT(s));
1,936✔
2065
        else
2066
                unit_log_failure(UNIT(s), socket_result_to_string(s->result));
×
2067

2068
        unit_warn_leftover_processes(UNIT(s), /* start = */ false);
1,936✔
2069

2070
        socket_set_state(s, s->result != SOCKET_SUCCESS ? SOCKET_FAILED : SOCKET_DEAD);
3,872✔
2071

2072
        s->exec_runtime = exec_runtime_destroy(s->exec_runtime);
1,936✔
2073

2074
        unit_destroy_runtime_data(UNIT(s), &s->exec_context, /* destroy_runtime_dir = */ true);
1,936✔
2075

2076
        unit_unref_uid_gid(UNIT(s), true);
1,936✔
2077
}
1,936✔
2078

2079
static void socket_enter_signal(Socket *s, SocketState state, SocketResult f);
2080

2081
static void socket_enter_stop_post(Socket *s, SocketResult f) {
1,936✔
2082
        int r;
1,936✔
2083

2084
        assert(s);
1,936✔
2085

2086
        if (s->result == SOCKET_SUCCESS)
1,936✔
2087
                s->result = f;
1,936✔
2088

2089
        socket_unwatch_control_pid(s);
1,936✔
2090
        s->control_command_id = SOCKET_EXEC_STOP_POST;
1,936✔
2091
        s->control_command = s->exec_command[SOCKET_EXEC_STOP_POST];
1,936✔
2092

2093
        if (s->control_command) {
1,936✔
2094
                pidref_done(&s->control_pid);
×
2095

2096
                r = socket_spawn(s, s->control_command, &s->control_pid);
×
2097
                if (r < 0) {
×
2098
                        log_unit_warning_errno(UNIT(s), r, "Failed to spawn 'stop-post' task: %m");
×
2099
                        socket_enter_signal(s, SOCKET_FINAL_SIGTERM, SOCKET_FAILURE_RESOURCES);
×
2100
                        return;
×
2101
                }
2102

2103
                socket_set_state(s, SOCKET_STOP_POST);
×
2104
        } else
2105
                socket_enter_signal(s, SOCKET_FINAL_SIGTERM, SOCKET_SUCCESS);
1,936✔
2106
}
2107

2108
static int state_to_kill_operation(Socket *s, SocketState state) {
3,872✔
2109
        assert(s);
3,872✔
2110

2111
        if (state == SOCKET_STOP_PRE_SIGTERM)
3,872✔
2112
                return unit_has_job_type(UNIT(s), JOB_RESTART) ? KILL_RESTART : KILL_TERMINATE;
×
2113

2114
        if (state == SOCKET_FINAL_SIGTERM)
3,872✔
2115
                return KILL_TERMINATE;
1,936✔
2116

2117
        return KILL_KILL;
2118
}
2119

2120
static void socket_enter_signal(Socket *s, SocketState state, SocketResult f) {
3,872✔
2121
        int r;
3,872✔
2122

2123
        assert(s);
3,872✔
2124

2125
        if (s->result == SOCKET_SUCCESS)
3,872✔
2126
                s->result = f;
3,872✔
2127

2128
        r = unit_kill_context(UNIT(s), state_to_kill_operation(s, state));
3,872✔
2129
        if (r < 0) {
3,872✔
2130
                log_unit_warning_errno(UNIT(s), r, "Failed to kill processes: %m");
×
2131
                goto fail;
×
2132
        }
2133
        if (r > 0) {
3,872✔
2134
                r = socket_arm_timer(s, /* relative= */ true, s->timeout_usec);
×
2135
                if (r < 0) {
×
2136
                        log_unit_warning_errno(UNIT(s), r, "Failed to install timer: %m");
×
2137
                        goto fail;
×
2138
                }
2139

2140
                socket_set_state(s, state);
×
2141
        } else if (state == SOCKET_STOP_PRE_SIGTERM)
3,872✔
2142
                socket_enter_signal(s, SOCKET_STOP_PRE_SIGKILL, SOCKET_SUCCESS);
×
2143
        else if (state == SOCKET_STOP_PRE_SIGKILL)
3,872✔
2144
                socket_enter_stop_post(s, SOCKET_SUCCESS);
×
2145
        else if (state == SOCKET_FINAL_SIGTERM)
3,872✔
2146
                socket_enter_signal(s, SOCKET_FINAL_SIGKILL, SOCKET_SUCCESS);
1,936✔
2147
        else
2148
                socket_enter_dead(s, SOCKET_SUCCESS);
1,936✔
2149

2150
        return;
2151

2152
fail:
×
2153
        if (IN_SET(state, SOCKET_STOP_PRE_SIGTERM, SOCKET_STOP_PRE_SIGKILL))
×
2154
                socket_enter_stop_post(s, SOCKET_FAILURE_RESOURCES);
×
2155
        else
2156
                socket_enter_dead(s, SOCKET_FAILURE_RESOURCES);
×
2157
}
2158

2159
static void socket_enter_stop_pre(Socket *s, SocketResult f) {
1,936✔
2160
        int r;
1,936✔
2161

2162
        assert(s);
1,936✔
2163

2164
        if (s->result == SOCKET_SUCCESS)
1,936✔
2165
                s->result = f;
1,936✔
2166

2167
        socket_unwatch_control_pid(s);
1,936✔
2168
        s->control_command_id = SOCKET_EXEC_STOP_PRE;
1,936✔
2169
        s->control_command = s->exec_command[SOCKET_EXEC_STOP_PRE];
1,936✔
2170

2171
        if (s->control_command) {
1,936✔
2172
                pidref_done(&s->control_pid);
×
2173

2174
                r = socket_spawn(s, s->control_command, &s->control_pid);
×
2175
                if (r < 0) {
×
2176
                        log_unit_warning_errno(UNIT(s), r, "Failed to spawn 'stop-pre' task: %m");
×
2177
                        socket_enter_stop_post(s, SOCKET_FAILURE_RESOURCES);
×
2178
                        return;
×
2179
                }
2180

2181
                socket_set_state(s, SOCKET_STOP_PRE);
×
2182
        } else
2183
                socket_enter_stop_post(s, SOCKET_SUCCESS);
1,936✔
2184
}
2185

2186
static void flush_ports(Socket *s) {
×
2187
        assert(s);
×
2188

2189
        /* Flush all incoming traffic, regardless if actual bytes or new connections, so that this socket isn't busy
2190
         * anymore */
2191

2192
        LIST_FOREACH(port, p, s->ports) {
×
2193
                if (p->fd < 0)
×
2194
                        continue;
×
2195

2196
                if (p->type == SOCKET_MQUEUE)
×
2197
                        (void) flush_mqueue(p->fd);
×
2198
                else {
2199
                        (void) flush_accept(p->fd);
×
2200
                        (void) flush_fd(p->fd);
×
2201
                }
2202
        }
2203
}
×
2204

2205
static void socket_enter_listening(Socket *s) {
3,015✔
2206
        int r;
3,015✔
2207

2208
        assert(s);
3,015✔
2209

2210
        if (!s->accept && s->flush_pending) {
3,015✔
2211
                log_unit_debug(UNIT(s), "Flushing socket before listening.");
×
2212
                flush_ports(s);
×
2213
        }
2214

2215
        r = socket_watch_fds(s);
3,015✔
2216
        if (r < 0) {
3,015✔
2217
                log_unit_warning_errno(UNIT(s), r, "Failed to watch sockets: %m");
×
2218
                socket_enter_stop_pre(s, SOCKET_FAILURE_RESOURCES);
×
2219
                return;
×
2220
        }
2221

2222
        socket_set_state(s, SOCKET_LISTENING);
3,015✔
2223
}
2224

2225
static void socket_enter_start_post(Socket *s) {
2,333✔
2226
        int r;
2,333✔
2227

2228
        assert(s);
2,333✔
2229

2230
        socket_unwatch_control_pid(s);
2,333✔
2231
        s->control_command_id = SOCKET_EXEC_START_POST;
2,333✔
2232
        s->control_command = s->exec_command[SOCKET_EXEC_START_POST];
2,333✔
2233

2234
        if (s->control_command) {
2,333✔
2235
                pidref_done(&s->control_pid);
173✔
2236

2237
                r = socket_spawn(s, s->control_command, &s->control_pid);
173✔
2238
                if (r < 0) {
173✔
2239
                        log_unit_warning_errno(UNIT(s), r, "Failed to spawn 'start-post' task: %m");
×
2240
                        socket_enter_stop_pre(s, SOCKET_FAILURE_RESOURCES);
×
2241
                        return;
×
2242
                }
2243

2244
                socket_set_state(s, SOCKET_START_POST);
173✔
2245
        } else
2246
                socket_enter_listening(s);
2,160✔
2247
}
2248

2249
static void socket_enter_start_chown(Socket *s) {
2,333✔
2250
        int r;
2,333✔
2251

2252
        assert(s);
2,333✔
2253
        assert(s->state == SOCKET_START_OPEN);
2,333✔
2254

2255
        if (!isempty(s->user) || !isempty(s->group)) {
2,333✔
2256

2257
                socket_unwatch_control_pid(s);
×
2258
                s->control_command_id = SOCKET_EXEC_START_CHOWN;
×
2259
                s->control_command = NULL;
×
2260

2261
                r = socket_chown(s, &s->control_pid);
×
2262
                if (r < 0) {
×
2263
                        log_unit_warning_errno(UNIT(s), r, "Failed to spawn 'start-chown' task: %m");
×
2264
                        socket_enter_stop_pre(s, SOCKET_FAILURE_RESOURCES);
×
2265
                        return;
×
2266
                }
2267

2268
                socket_set_state(s, SOCKET_START_CHOWN);
×
2269
        } else
2270
                socket_enter_start_post(s);
2,333✔
2271
}
2272

2273
static void socket_enter_start_open(Socket *s) {
2,333✔
2274
        int r;
2,333✔
2275

2276
        assert(s);
2,333✔
2277
        assert(IN_SET(s->state, SOCKET_DEAD, SOCKET_FAILED, SOCKET_START_PRE));
2,333✔
2278

2279
        /* We force a state transition here even though we're not spawning any process (i.e. the state is purely
2280
         * intermediate), so that failure of socket_open_fds() always causes a state change in unit_notify().
2281
         * Otherwise, if no Exec*= is defined, we might go from previous SOCKET_FAILED to SOCKET_FAILED,
2282
         * meaning the OnFailure= deps are unexpectedly skipped (#35635). */
2283

2284
        socket_set_state(s, SOCKET_START_OPEN);
2,333✔
2285

2286
        r = socket_open_fds(s);
2,333✔
2287
        if (r < 0) {
2,333✔
2288
                log_unit_error_errno(UNIT(s), r, "Failed to listen on sockets: %m");
×
2289
                socket_enter_stop_pre(s, SOCKET_FAILURE_RESOURCES);
×
2290
                return;
×
2291
        }
2292

2293
        socket_enter_start_chown(s);
2,333✔
2294
}
2295

2296
static void socket_enter_start_pre(Socket *s) {
2,333✔
2297
        int r;
2,333✔
2298

2299
        assert(s);
2,333✔
2300

2301
        socket_unwatch_control_pid(s);
2,333✔
2302

2303
        unit_warn_leftover_processes(UNIT(s), /* start = */ true);
2,333✔
2304

2305
        s->control_command_id = SOCKET_EXEC_START_PRE;
2,333✔
2306
        s->control_command = s->exec_command[SOCKET_EXEC_START_PRE];
2,333✔
2307

2308
        if (s->control_command) {
2,333✔
2309
                pidref_done(&s->control_pid);
×
2310

2311
                r = socket_spawn(s, s->control_command, &s->control_pid);
×
2312
                if (r < 0) {
×
2313
                        log_unit_warning_errno(UNIT(s), r, "Failed to spawn 'start-pre' task: %m");
×
2314
                        socket_enter_dead(s, SOCKET_FAILURE_RESOURCES);
×
2315
                        return;
×
2316
                }
2317

2318
                socket_set_state(s, SOCKET_START_PRE);
×
2319
        } else
2320
                socket_enter_start_open(s);
2,333✔
2321
}
2322

2323
static void socket_enter_running(Socket *s, int cfd_in) {
203✔
2324
        /* Note that this call takes possession of the connection fd passed. It either has to assign it
2325
         * somewhere or close it. */
2326
        _cleanup_close_ int cfd = cfd_in;
203✔
2327
        _cleanup_(sd_bus_error_free) sd_bus_error error = SD_BUS_ERROR_NULL;
203✔
2328
        int r;
203✔
2329

2330
        assert(s);
203✔
2331

2332
        /* We don't take connections anymore if we are supposed to shut down anyway */
2333
        if (unit_stop_pending(UNIT(s))) {
203✔
2334

2335
                log_unit_debug(UNIT(s), "Suppressing connection request since unit stop is scheduled.");
×
2336

2337
                if (cfd >= 0)
×
2338
                        goto refuse;
×
2339

2340
                flush_ports(s);
×
2341
                return;
2342
        }
2343

2344
        if (!ratelimit_below(&s->trigger_limit)) {
203✔
2345
                log_unit_warning(UNIT(s), "Trigger limit hit, refusing further activation.");
×
2346
                socket_enter_stop_pre(s, SOCKET_FAILURE_TRIGGER_LIMIT_HIT);
×
2347
                goto refuse;
×
2348
        }
2349

2350
        if (cfd < 0) { /* Accept=no case */
203✔
2351
                bool pending = false;
201✔
2352
                Unit *other;
201✔
2353

2354
                /* If there's already a start pending don't bother to do anything */
2355
                UNIT_FOREACH_DEPENDENCY(other, UNIT(s), UNIT_ATOM_TRIGGERS)
696✔
2356
                        if (unit_active_or_pending(other)) {
201✔
2357
                                pending = true;
2358
                                break;
2359
                        }
2360

2361
                if (!pending) {
201✔
2362
                        if (!UNIT_ISSET(s->service)) {
93✔
2363
                                log_unit_warning(UNIT(s),
×
2364
                                                 "Service to activate vanished, refusing activation.");
2365
                                goto fail;
×
2366
                        }
2367

2368
                        r = manager_add_job(UNIT(s)->manager, JOB_START, UNIT_DEREF(s->service), JOB_REPLACE, &error, /* ret = */ NULL);
93✔
2369
                        if (r == -EDEADLK)
93✔
2370
                                return (void) log_unit_debug_errno(UNIT(s), r, "Failed to queue service startup job, ignoring: %s", bus_error_message(&error, r));
×
2371
                        if (r < 0)
93✔
2372
                                goto queue_error;
×
2373
                }
2374

2375
                socket_set_state(s, SOCKET_RUNNING);
201✔
2376
        } else { /* Accept=yes case */
2377
                _cleanup_(socket_peer_unrefp) SocketPeer *p = NULL;
2✔
2378
                Unit *service;
2✔
2379

2380
                if (s->n_connections >= s->max_connections) {
2✔
2381
                        log_unit_warning(UNIT(s), "Too many incoming connections (%u), dropping connection.",
×
2382
                                         s->n_connections);
2383
                        goto refuse;
×
2384
                }
2385

2386
                if (s->max_connections_per_source > 0) {
2✔
2387
                        r = socket_acquire_peer(s, cfd, &p);
2✔
2388
                        if (r < 0) {
2✔
2389
                                if (ERRNO_IS_DISCONNECT(r))
×
2390
                                        return;
2391
                                /* We didn't have enough resources to acquire peer information, let's fail. */
2392
                                goto fail;
×
2393
                        }
2394
                        if (r > 0 && p->n_ref > s->max_connections_per_source) {
2✔
2395
                                _cleanup_free_ char *t = NULL;
×
2396

2397
                                if (p->peer.sa.sa_family == AF_UNIX)
×
2398
                                        (void) asprintf(&t, "UID " UID_FMT, p->peer_cred.uid);
×
2399
                                else
2400
                                        (void) sockaddr_pretty(&p->peer.sa, p->peer_salen, /* translate_ipv6= */ true, /* include_port= */ false, &t);
×
2401

2402
                                log_unit_warning(UNIT(s),
×
2403
                                                 "Too many incoming connections (%u) from source %s, dropping connection.",
2404
                                                 p->n_ref, strnull(t));
2405
                                goto refuse;
×
2406
                        }
2407
                }
2408

2409
                r = socket_load_service_unit(s, cfd, &service);
2✔
2410
                if (ERRNO_IS_NEG_DISCONNECT(r))
2✔
2411
                        return;
2412
                if (r < 0 || UNIT_IS_LOAD_ERROR(service->load_state)) {
2✔
2413
                        log_unit_warning_errno(UNIT(s), r < 0 ? r : service->load_error,
×
2414
                                               "Failed to load connection service unit: %m");
2415
                        goto fail;
×
2416
                }
2417
                if (service->load_state == UNIT_MASKED) {
2✔
2418
                        log_unit_warning(UNIT(s), "Connection service unit is masked, refusing.");
×
2419
                        goto fail;
×
2420
                }
2421

2422
                s->n_accepted++;
2✔
2423

2424
                r = service_set_socket_fd(SERVICE(service), cfd, s, p, s->selinux_context_from_net);
4✔
2425
                if (ERRNO_IS_NEG_DISCONNECT(r))
2✔
2426
                        return;
2427
                if (r < 0) {
2✔
2428
                        log_unit_warning_errno(UNIT(s), r, "Failed to set socket on service: %m");
×
2429
                        goto fail;
×
2430
                }
2431

2432
                /* We passed ownership of the fd and socket peer to the service now. */
2433
                TAKE_FD(cfd);
2✔
2434
                TAKE_PTR(p);
2✔
2435

2436
                s->n_connections++;
2✔
2437

2438
                r = manager_add_job(UNIT(s)->manager, JOB_START, service, JOB_REPLACE, &error, /* ret = */ NULL);
2✔
2439
                if (r < 0) {
2✔
2440
                        /* We failed to activate the new service, but it still exists. Let's make sure the
2441
                         * service closes and forgets the connection fd again, immediately. */
2442
                        service_release_socket_fd(SERVICE(service));
×
2443
                        goto queue_error;
×
2444
                }
2445

2446
                /* Notify clients about changed counters */
2447
                unit_add_to_dbus_queue(UNIT(s));
2✔
2448
        }
2449

2450
        return;
2451

2452
refuse:
×
2453
        s->n_refused++;
×
2454
        return;
×
2455

2456
queue_error:
×
2457
        log_unit_warning_errno(UNIT(s), r, "Failed to queue service startup job%s: %s",
×
2458
                               cfd >= 0 && !ERRNO_IS_RESOURCE(r) ? " (Maybe the service is missing or is a template unit?)" : "",
2459
                               bus_error_message(&error, r));
2460

2461
fail:
×
2462
        socket_enter_stop_pre(s, SOCKET_FAILURE_RESOURCES);
×
2463
}
2464

2465
static void socket_run_next(Socket *s) {
×
2466
        int r;
×
2467

2468
        assert(s);
×
2469
        assert(s->control_command);
×
2470
        assert(s->control_command->command_next);
×
2471

2472
        socket_unwatch_control_pid(s);
×
2473

2474
        s->control_command = s->control_command->command_next;
×
2475

2476
        pidref_done(&s->control_pid);
×
2477

2478
        r = socket_spawn(s, s->control_command, &s->control_pid);
×
2479
        if (r < 0) {
×
2480
                log_unit_warning_errno(UNIT(s), r, "Failed to spawn next task: %m");
×
2481

2482
                if (s->state == SOCKET_START_POST)
×
2483
                        socket_enter_stop_pre(s, SOCKET_FAILURE_RESOURCES);
×
2484
                else if (s->state == SOCKET_STOP_POST)
×
2485
                        socket_enter_dead(s, SOCKET_FAILURE_RESOURCES);
×
2486
                else
2487
                        socket_enter_signal(s, SOCKET_FINAL_SIGTERM, SOCKET_FAILURE_RESOURCES);
×
2488
        }
2489
}
×
2490

2491
static int socket_start(Unit *u) {
2,333✔
2492
        Socket *s = ASSERT_PTR(SOCKET(u));
2,333✔
2493
        int r;
2,333✔
2494

2495
        /* We cannot fulfill this request right now, try again later
2496
         * please! */
2497
        if (IN_SET(s->state,
2,333✔
2498
                   SOCKET_STOP_PRE,
2499
                   SOCKET_STOP_PRE_SIGKILL,
2500
                   SOCKET_STOP_PRE_SIGTERM,
2501
                   SOCKET_STOP_POST,
2502
                   SOCKET_FINAL_SIGTERM,
2503
                   SOCKET_FINAL_SIGKILL,
2504
                   SOCKET_CLEANING))
2505
                return -EAGAIN;
2506

2507
        /* Already on it! */
2508
        if (IN_SET(s->state,
2,333✔
2509
                   SOCKET_START_PRE,
2510
                   SOCKET_START_OPEN,
2511
                   SOCKET_START_CHOWN,
2512
                   SOCKET_START_POST))
2513
                return 0;
2514

2515
        /* Cannot run this without the service being around */
2516
        if (UNIT_ISSET(s->service)) {
2,333✔
2517
                Service *service = ASSERT_PTR(SERVICE(UNIT_DEREF(s->service)));
1,894✔
2518

2519
                if (UNIT(service)->load_state != UNIT_LOADED)
1,894✔
2520
                        return log_unit_error_errno(u, SYNTHETIC_ERRNO(ENOENT),
×
2521
                                                    "Socket service %s not loaded, refusing.", UNIT(service)->id);
2522

2523
                /* If the service is already active we cannot start the socket */
2524
                if (SOCKET_SERVICE_IS_ACTIVE(service, /* allow_finalize = */ false))
1,894✔
2525
                        return log_unit_error_errno(u, SYNTHETIC_ERRNO(EBUSY),
×
2526
                                                    "Socket service %s already active, refusing.", UNIT(service)->id);
2527
        }
2528

2529
        assert(IN_SET(s->state, SOCKET_DEAD, SOCKET_FAILED));
2,333✔
2530

2531
        r = unit_acquire_invocation_id(u);
2,333✔
2532
        if (r < 0)
2,333✔
2533
                return r;
2534

2535
        s->result = SOCKET_SUCCESS;
2,333✔
2536
        exec_command_reset_status_list_array(s->exec_command, _SOCKET_EXEC_COMMAND_MAX);
2,333✔
2537

2538
        if (s->cgroup_runtime)
2,333✔
2539
                s->cgroup_runtime->reset_accounting = true;
66✔
2540

2541
        socket_enter_start_pre(s);
2,333✔
2542
        return 1;
2,333✔
2543
}
2544

2545
static int socket_stop(Unit *u) {
1,936✔
2546
        Socket *s = ASSERT_PTR(SOCKET(u));
1,936✔
2547

2548
        /* Already on it */
2549
        if (IN_SET(s->state,
1,936✔
2550
                   SOCKET_STOP_PRE,
2551
                   SOCKET_STOP_PRE_SIGTERM,
2552
                   SOCKET_STOP_PRE_SIGKILL,
2553
                   SOCKET_STOP_POST,
2554
                   SOCKET_FINAL_SIGTERM,
2555
                   SOCKET_FINAL_SIGKILL))
2556
                return 0;
2557

2558
        /* If there's already something running we go directly into
2559
         * kill mode. */
2560
        if (IN_SET(s->state,
1,936✔
2561
                   SOCKET_START_PRE,
2562
                   SOCKET_START_OPEN,
2563
                   SOCKET_START_CHOWN,
2564
                   SOCKET_START_POST)) {
2565
                socket_enter_signal(s, SOCKET_STOP_PRE_SIGTERM, SOCKET_SUCCESS);
×
2566
                return -EAGAIN;
×
2567
        }
2568

2569
        /* If we are currently cleaning, then abort it, brutally. */
2570
        if (s->state == SOCKET_CLEANING) {
1,936✔
2571
                socket_enter_signal(s, SOCKET_FINAL_SIGKILL, SOCKET_SUCCESS);
×
2572
                return 0;
×
2573
        }
2574

2575
        assert(IN_SET(s->state, SOCKET_LISTENING, SOCKET_RUNNING));
1,936✔
2576

2577
        socket_enter_stop_pre(s, SOCKET_SUCCESS);
1,936✔
2578
        return 1;
1,936✔
2579
}
2580

2581
static int socket_serialize(Unit *u, FILE *f, FDSet *fds) {
2,475✔
2582
        Socket *s = ASSERT_PTR(SOCKET(u));
2,475✔
2583
        int r;
2,475✔
2584

2585
        assert(f);
2,475✔
2586
        assert(fds);
2,475✔
2587

2588
        (void) serialize_item(f, "state", socket_state_to_string(s->state));
2,475✔
2589
        (void) serialize_item(f, "result", socket_result_to_string(s->result));
2,475✔
2590
        (void) serialize_item_format(f, "n-accepted", "%u", s->n_accepted);
2,475✔
2591
        (void) serialize_item_format(f, "n-refused", "%u", s->n_refused);
2,475✔
2592
        (void) serialize_pidref(f, fds, "control-pid", &s->control_pid);
2,475✔
2593

2594
        if (s->control_command_id >= 0)
2,475✔
2595
                (void) serialize_item(f, "control-command", socket_exec_command_to_string(s->control_command_id));
×
2596

2597
        LIST_FOREACH(port, p, s->ports) {
5,160✔
2598
                int copy;
2,685✔
2599

2600
                if (p->fd < 0)
2,685✔
2601
                        continue;
1,007✔
2602

2603
                copy = fdset_put_dup(fds, p->fd);
1,678✔
2604
                if (copy < 0)
1,678✔
2605
                        return log_unit_warning_errno(u, copy, "Failed to serialize socket fd: %m");
×
2606

2607
                if (p->type == SOCKET_SOCKET) {
1,678✔
2608
                        _cleanup_free_ char *t = NULL;
1,538✔
2609

2610
                        r = socket_address_print(&p->address, &t);
1,538✔
2611
                        if (r < 0)
1,538✔
2612
                                return log_unit_error_errno(u, r, "Failed to format socket address: %m");
×
2613

2614
                        if (socket_address_family(&p->address) == AF_NETLINK)
1,538✔
2615
                                (void) serialize_item_format(f, "netlink", "%i %s", copy, t);
106✔
2616
                        else
2617
                                (void) serialize_item_format(f, "socket", "%i %i %s", copy, p->address.type, t);
1,432✔
2618
                } else if (p->type == SOCKET_SPECIAL)
140✔
2619
                        (void) serialize_item_format(f, "special", "%i %s", copy, p->path);
18✔
2620
                else if (p->type == SOCKET_MQUEUE)
122✔
2621
                        (void) serialize_item_format(f, "mqueue", "%i %s", copy, p->path);
×
2622
                else if (p->type == SOCKET_USB_FUNCTION)
122✔
2623
                        (void) serialize_item_format(f, "ffs", "%i %s", copy, p->path);
×
2624
                else {
2625
                        assert(p->type == SOCKET_FIFO);
122✔
2626
                        (void) serialize_item_format(f, "fifo", "%i %s", copy, p->path);
122✔
2627
                }
2628
        }
2629

2630
        (void) serialize_ratelimit(f, "trigger-ratelimit", &s->trigger_limit);
2,475✔
2631

2632
        return 0;
2,475✔
2633
}
2634

2635
static int socket_deserialize_item(Unit *u, const char *key, const char *value, FDSet *fds) {
11,169✔
2636
        Socket *s = ASSERT_PTR(SOCKET(u));
11,169✔
2637
        int r;
11,169✔
2638

2639
        assert(key);
11,169✔
2640
        assert(value);
11,169✔
2641

2642
        if (streq(key, "state")) {
11,169✔
2643
                SocketState state;
1,956✔
2644

2645
                state = socket_state_from_string(value);
1,956✔
2646
                if (state < 0)
1,956✔
2647
                        log_unit_debug(u, "Failed to parse state value: %s", value);
×
2648
                else
2649
                        s->deserialized_state = state;
1,956✔
2650
        } else if (streq(key, "result")) {
9,213✔
2651
                SocketResult f;
1,956✔
2652

2653
                f = socket_result_from_string(value);
1,956✔
2654
                if (f < 0)
1,956✔
2655
                        log_unit_debug(u, "Failed to parse result value: %s", value);
×
2656
                else if (f != SOCKET_SUCCESS)
1,956✔
2657
                        s->result = f;
×
2658

2659
        } else if (streq(key, "n-accepted")) {
7,257✔
2660
                unsigned k;
1,956✔
2661

2662
                if (safe_atou(value, &k) < 0)
1,956✔
2663
                        log_unit_debug(u, "Failed to parse n-accepted value: %s", value);
×
2664
                else
2665
                        s->n_accepted += k;
1,956✔
2666
        } else if (streq(key, "n-refused")) {
5,301✔
2667
                unsigned k;
1,956✔
2668

2669
                if (safe_atou(value, &k) < 0)
1,956✔
2670
                        log_unit_debug(u, "Failed to parse n-refused value: %s", value);
×
2671
                else
2672
                        s->n_refused += k;
1,956✔
2673
        } else if (streq(key, "control-pid")) {
3,345✔
2674

2675
                if (!pidref_is_set(&s->control_pid))
11,169✔
2676
                        (void) deserialize_pidref(fds, value, &s->control_pid);
×
2677

2678
        } else if (streq(key, "control-command")) {
3,345✔
2679
                SocketExecCommand id;
×
2680

2681
                id = socket_exec_command_from_string(value);
×
2682
                if (id < 0)
×
2683
                        log_unit_debug(u, "Failed to parse exec-command value: %s", value);
×
2684
                else {
2685
                        s->control_command_id = id;
×
2686
                        s->control_command = s->exec_command[id];
×
2687
                }
2688
        } else if (streq(key, "fifo")) {
3,345✔
2689
                _cleanup_free_ char *fdv = NULL;
102✔
2690
                bool found = false;
102✔
2691
                int fd;
102✔
2692

2693
                r = extract_first_word(&value, &fdv, NULL, 0);
102✔
2694
                if (r <= 0) {
102✔
2695
                        log_unit_debug(u, "Failed to parse fifo value: %s", value);
×
2696
                        return 0;
×
2697
                }
2698

2699
                fd = parse_fd(fdv);
102✔
2700
                if (fd < 0 || !fdset_contains(fds, fd)) {
102✔
2701
                        log_unit_debug(u, "Invalid fifo value: %s", fdv);
×
2702
                        return 0;
×
2703
                }
2704

2705
                LIST_FOREACH(port, p, s->ports)
153✔
2706
                        if (p->fd < 0 &&
153✔
2707
                            p->type == SOCKET_FIFO &&
102✔
2708
                            path_equal_or_inode_same(p->path, value, 0)) {
102✔
2709
                                p->fd = fdset_remove(fds, fd);
102✔
2710
                                found = true;
102✔
2711
                                break;
102✔
2712
                        }
2713
                if (!found)
102✔
2714
                        log_unit_debug(u, "No matching fifo socket found: %s", value);
×
2715

2716
        } else if (streq(key, "special")) {
3,243✔
2717
                _cleanup_free_ char *fdv = NULL;
15✔
2718
                bool found = false;
15✔
2719
                int fd;
15✔
2720

2721
                r = extract_first_word(&value, &fdv, NULL, 0);
15✔
2722
                if (r <= 0) {
15✔
2723
                        log_unit_debug(u, "Failed to parse special value: %s", value);
×
2724
                        return 0;
×
2725
                }
2726

2727
                fd = parse_fd(fdv);
15✔
2728
                if (fd < 0 || !fdset_contains(fds, fd)) {
15✔
2729
                        log_unit_debug(u, "Invalid special value: %s", fdv);
×
2730
                        return 0;
×
2731
                }
2732

2733
                LIST_FOREACH(port, p, s->ports)
15✔
2734
                        if (p->fd < 0 &&
15✔
2735
                            p->type == SOCKET_SPECIAL &&
15✔
2736
                            path_equal_or_inode_same(p->path, value, 0)) {
15✔
2737
                                p->fd = fdset_remove(fds, fd);
15✔
2738
                                found = true;
15✔
2739
                                break;
15✔
2740
                        }
2741
                if (!found)
15✔
2742
                        log_unit_debug(u, "No matching special socket found: %s", value);
×
2743

2744
        } else if (streq(key, "mqueue")) {
3,228✔
2745
                _cleanup_free_ char *fdv = NULL;
×
2746
                bool found = false;
×
2747
                int fd;
×
2748

2749
                r = extract_first_word(&value, &fdv, NULL, 0);
×
2750
                if (r <= 0) {
×
2751
                        log_unit_debug(u, "Failed to parse mqueue value: %s", value);
×
2752
                        return 0;
×
2753
                }
2754

2755
                fd = parse_fd(fdv);
×
2756
                if (fd < 0 || !fdset_contains(fds, fd)) {
×
2757
                        log_unit_debug(u, "Invalid mqueue value: %s", fdv);
×
2758
                        return 0;
×
2759
                }
2760

2761
                LIST_FOREACH(port, p, s->ports)
×
2762
                        if (p->fd < 0 &&
×
2763
                            p->type == SOCKET_MQUEUE &&
×
2764
                            streq(p->path, value)) {
×
2765
                                p->fd = fdset_remove(fds, fd);
×
2766
                                found = true;
×
2767
                                break;
×
2768
                        }
2769
                if (!found)
×
2770
                        log_unit_debug(u, "No matching mqueue socket found: %s", value);
×
2771

2772
        } else if (streq(key, "socket")) {
3,228✔
2773
                _cleanup_free_ char *fdv = NULL, *typev = NULL;
1,188✔
2774
                bool found = false;
1,188✔
2775
                int fd, type;
1,188✔
2776

2777
                r = extract_first_word(&value, &fdv, NULL, 0);
1,188✔
2778
                if (r <= 0) {
1,188✔
2779
                        log_unit_debug(u, "Failed to parse socket fd from value: %s", value);
×
2780
                        return 0;
×
2781
                }
2782

2783
                fd = parse_fd(fdv);
1,188✔
2784
                if (fd < 0 || !fdset_contains(fds, fd)) {
1,188✔
2785
                        log_unit_debug(u, "Invalid socket fd: %s", fdv);
×
2786
                        return 0;
×
2787
                }
2788

2789
                r = extract_first_word(&value, &typev, NULL, 0);
1,188✔
2790
                if (r <= 0) {
1,188✔
2791
                        log_unit_debug(u, "Failed to parse socket type from value: %s", value);
×
2792
                        return 0;
×
2793
                }
2794

2795
                if (safe_atoi(typev, &type) < 0 || type < 0) {
1,188✔
2796
                        log_unit_debug(u, "Invalid socket type: %s", typev);
×
2797
                        return 0;
×
2798
                }
2799

2800
                LIST_FOREACH(port, p, s->ports)
1,293✔
2801
                        if (p->fd < 0 &&
2,481✔
2802
                            socket_address_is(&p->address, value, type)) {
1,188✔
2803
                                p->fd = fdset_remove(fds, fd);
1,188✔
2804
                                found = true;
1,188✔
2805
                                break;
1,188✔
2806
                        }
2807
                if (!found)
1,188✔
2808
                        log_unit_debug(u, "No matching %s socket found: %s",
×
2809
                                       socket_address_type_to_string(type), value);
2810

2811
        } else if (streq(key, "netlink")) {
2,040✔
2812
                _cleanup_free_ char *fdv = NULL;
84✔
2813
                bool found = false;
84✔
2814
                int fd;
84✔
2815

2816
                r = extract_first_word(&value, &fdv, NULL, 0);
84✔
2817
                if (r <= 0) {
84✔
2818
                        log_unit_debug(u, "Failed to parse socket value: %s", value);
×
2819
                        return 0;
×
2820
                }
2821

2822
                fd = parse_fd(fdv);
84✔
2823
                if (fd < 0 || !fdset_contains(fds, fd)) {
84✔
2824
                        log_unit_debug(u, "Invalid socket value: %s", fdv);
×
2825
                        return 0;
×
2826
                }
2827

2828
                LIST_FOREACH(port, p, s->ports)
84✔
2829
                        if (p->fd < 0 &&
168✔
2830
                            socket_address_is_netlink(&p->address, value)) {
84✔
2831
                                p->fd = fdset_remove(fds, fd);
84✔
2832
                                found = true;
84✔
2833
                                break;
84✔
2834
                        }
2835
                if (!found)
84✔
2836
                        log_unit_debug(u, "No matching netlink socket found: %s", value);
×
2837

2838
        } else if (streq(key, "ffs")) {
1,956✔
2839
                _cleanup_free_ char *fdv = NULL;
×
2840
                bool found = false;
×
2841
                int fd;
×
2842

2843
                r = extract_first_word(&value, &fdv, NULL, 0);
×
2844
                if (r <= 0) {
×
2845
                        log_unit_debug(u, "Failed to parse ffs value: %s", value);
×
2846
                        return 0;
×
2847
                }
2848

2849
                fd = parse_fd(fdv);
×
2850
                if (fd < 0 || !fdset_contains(fds, fd)) {
×
2851
                        log_unit_debug(u, "Invalid ffs value: %s", fdv);
×
2852
                        return 0;
×
2853
                }
2854

2855
                LIST_FOREACH(port, p, s->ports)
×
2856
                        if (p->fd < 0 &&
×
2857
                            p->type == SOCKET_USB_FUNCTION &&
×
2858
                            path_equal_or_inode_same(p->path, value, 0)) {
×
2859
                                p->fd = fdset_remove(fds, fd);
×
2860
                                found = true;
×
2861
                                break;
×
2862
                        }
2863
                if (!found)
×
2864
                        log_unit_debug(u, "No matching ffs socket found: %s", value);
×
2865

2866
        } else if (streq(key, "trigger-ratelimit"))
1,956✔
2867
                (void) deserialize_ratelimit(&s->trigger_limit, key, value);
1,956✔
2868
        else
2869
                log_unit_debug(UNIT(s), "Unknown serialization key: %s", key);
×
2870

2871
        return 0;
2872
}
2873

2874
static void socket_distribute_fds(Unit *u, FDSet *fds) {
1,091✔
2875
        Socket *s = ASSERT_PTR(SOCKET(u));
1,091✔
2876

2877
        LIST_FOREACH(port, p, s->ports) {
2,272✔
2878
                int fd;
1,181✔
2879

2880
                if (p->type != SOCKET_SOCKET)
1,181✔
2881
                        continue;
65✔
2882

2883
                if (p->fd >= 0)
1,116✔
2884
                        continue;
662✔
2885

2886
                FDSET_FOREACH(fd, fds) {
1,392✔
2887
                        if (socket_address_matches_fd(&p->address, fd)) {
938✔
2888
                                p->fd = fdset_remove(fds, fd);
×
2889
                                s->deserialized_state = SOCKET_LISTENING;
×
2890
                                break;
×
2891
                        }
2892
                }
2893
        }
2894
}
1,091✔
2895

2896
static UnitActiveState socket_active_state(Unit *u) {
367,770✔
2897
        Socket *s = ASSERT_PTR(SOCKET(u));
367,770✔
2898

2899
        return state_translation_table[s->state];
367,770✔
2900
}
2901

2902
static const char *socket_sub_state_to_string(Unit *u) {
3,334✔
2903
        Socket *s = ASSERT_PTR(SOCKET(u));
3,334✔
2904

2905
        return socket_state_to_string(s->state);
3,334✔
2906
}
2907

2908
int socket_port_to_address(const SocketPort *p, char **ret) {
117✔
2909
        _cleanup_free_ char *address = NULL;
117✔
2910
        int r;
117✔
2911

2912
        assert(p);
117✔
2913
        assert(ret);
117✔
2914

2915
        switch (p->type) {
117✔
2916
                case SOCKET_SOCKET: {
111✔
2917
                        r = socket_address_print(&p->address, &address);
111✔
2918
                        if (r < 0)
111✔
2919
                                return r;
2920

2921
                        break;
2922
                }
2923

2924
                case SOCKET_SPECIAL:
6✔
2925
                case SOCKET_MQUEUE:
2926
                case SOCKET_FIFO:
2927
                case SOCKET_USB_FUNCTION:
2928
                        address = strdup(p->path);
6✔
2929
                        if (!address)
6✔
2930
                                return -ENOMEM;
2931
                        break;
2932

2933
                default:
×
2934
                        assert_not_reached();
×
2935
        }
2936

2937
        *ret = TAKE_PTR(address);
117✔
2938

2939
        return 0;
117✔
2940
}
2941

2942
const char* socket_port_type_to_string(SocketPort *p) {
117✔
2943
        assert(p);
117✔
2944

2945
        switch (p->type) {
117✔
2946

2947
        case SOCKET_SOCKET:
111✔
2948

2949
                switch (p->address.type) {
111✔
2950

2951
                case SOCK_STREAM:
2952
                        return "Stream";
2953

2954
                case SOCK_DGRAM:
9✔
2955
                        return "Datagram";
9✔
2956

2957
                case SOCK_SEQPACKET:
6✔
2958
                        return "SequentialPacket";
6✔
2959

2960
                case SOCK_RAW:
9✔
2961
                        if (socket_address_family(&p->address) == AF_NETLINK)
9✔
2962
                                return "Netlink";
2963

2964
                        _fallthrough_;
×
2965
                default:
2966
                        return NULL;
×
2967
                }
2968

2969
        case SOCKET_SPECIAL:
2970
                return "Special";
2971

2972
        case SOCKET_MQUEUE:
×
2973
                return "MessageQueue";
×
2974

2975
        case SOCKET_FIFO:
6✔
2976
                return "FIFO";
6✔
2977

2978
        case SOCKET_USB_FUNCTION:
×
2979
                return "USBFunction";
×
2980

2981
        default:
×
2982
                return NULL;
×
2983
        }
2984
}
2985

2986
SocketType socket_port_type_from_string(const char *s) {
×
2987
        assert(s);
×
2988

2989
        if (STR_IN_SET(s, "Stream", "Datagram", "SequentialPacket", "Netlink"))
×
2990
                return SOCKET_SOCKET;
×
2991
        else if (streq(s, "Special"))
×
2992
                return SOCKET_SPECIAL;
2993
        else if (streq(s, "MessageQueue"))
×
2994
                return SOCKET_MQUEUE;
2995
        else if (streq(s, "FIFO"))
×
2996
                return SOCKET_FIFO;
2997
        else if (streq(s, "USBFunction"))
×
2998
                return SOCKET_USB_FUNCTION;
2999
        else
3000
                return _SOCKET_TYPE_INVALID;
×
3001
}
3002

3003
static bool socket_may_gc(Unit *u) {
11,740✔
3004
        Socket *s = ASSERT_PTR(SOCKET(u));
11,740✔
3005

3006
        return s->n_connections == 0;
11,740✔
3007
}
3008

3009
static int socket_accept_do(Socket *s, int fd) {
2✔
3010
        int cfd;
2✔
3011

3012
        assert(s);
2✔
3013
        assert(fd >= 0);
2✔
3014

3015
        cfd = accept4(fd, NULL, NULL, SOCK_NONBLOCK|SOCK_CLOEXEC);
2✔
3016
        if (cfd < 0)
2✔
3017
                /* Convert transient network errors into clean and well-defined EAGAIN */
3018
                return ERRNO_IS_ACCEPT_AGAIN(errno) ? -EAGAIN : -errno;
×
3019

3020
        return cfd;
3021
}
3022

3023
static int socket_accept_in_cgroup(Socket *s, SocketPort *p, int fd) {
2✔
3024
        _cleanup_(pidref_done) PidRef pid = PIDREF_NULL;
×
3025
        _cleanup_close_pair_ int pair[2] = EBADF_PAIR;
2✔
3026
        int cfd, r;
2✔
3027

3028
        assert(s);
2✔
3029
        assert(p);
2✔
3030
        assert(fd >= 0);
2✔
3031

3032
        /* Similar to socket_address_listen_in_cgroup(), but for accept() rather than socket(): make sure that any
3033
         * connection socket is also properly associated with the cgroup. */
3034

3035
        if (!IN_SET(p->address.sockaddr.sa.sa_family, AF_INET, AF_INET6))
2✔
3036
                goto shortcut;
2✔
3037

3038
        if (bpf_program_supported() <= 0)
×
3039
                goto shortcut;
×
3040

3041
        if (socketpair(AF_UNIX, SOCK_SEQPACKET|SOCK_CLOEXEC, 0, pair) < 0)
×
3042
                return log_unit_error_errno(UNIT(s), errno, "Failed to create communication channel: %m");
×
3043

3044
        r = unit_fork_helper_process(UNIT(s), "(sd-accept)", /* into_cgroup= */ true, &pid);
×
3045
        if (r < 0)
×
3046
                return log_unit_error_errno(UNIT(s), r, "Failed to fork off accept stub process: %m");
×
3047
        if (r == 0) {
×
3048
                /* Child */
3049

3050
                pair[0] = safe_close(pair[0]);
×
3051

3052
                cfd = socket_accept_do(s, fd);
×
3053
                if (cfd == -EAGAIN) /* spurious accept() */
×
3054
                        _exit(EXIT_SUCCESS);
×
3055
                if (cfd < 0) {
×
3056
                        log_unit_error_errno(UNIT(s), cfd, "Failed to accept connection socket: %m");
×
3057
                        _exit(EXIT_FAILURE);
×
3058
                }
3059

3060
                r = send_one_fd(pair[1], cfd, 0);
×
3061
                if (r < 0) {
×
3062
                        log_unit_error_errno(UNIT(s), r, "Failed to send connection socket to parent: %m");
×
3063
                        _exit(EXIT_FAILURE);
×
3064
                }
3065

3066
                _exit(EXIT_SUCCESS);
×
3067
        }
3068

3069
        pair[1] = safe_close(pair[1]);
×
3070
        cfd = receive_one_fd(pair[0], 0);
×
3071

3072
        /* We synchronously wait for the helper, as it shouldn't be slow */
3073
        r = wait_for_terminate_and_check("(sd-accept)", pid.pid, WAIT_LOG_ABNORMAL);
×
3074
        if (r < 0) {
×
3075
                safe_close(cfd);
×
3076
                return r;
3077
        }
3078

3079
        /* If we received no fd, we got EIO here. If this happens with a process exit code of EXIT_SUCCESS
3080
         * this is a spurious accept(), let's convert that back to EAGAIN here. */
3081
        if (cfd == -EIO)
×
3082
                return -EAGAIN;
3083
        if (cfd < 0)
×
3084
                return log_unit_error_errno(UNIT(s), cfd, "Failed to receive connection socket: %m");
×
3085

3086
        return cfd;
3087

3088
shortcut:
2✔
3089
        cfd = socket_accept_do(s, fd);
2✔
3090
        if (cfd == -EAGAIN) /* spurious accept(), skip it silently */
2✔
3091
                return -EAGAIN;
3092
        if (cfd < 0)
2✔
3093
                return log_unit_error_errno(UNIT(s), cfd, "Failed to accept connection socket: %m");
×
3094

3095
        return cfd;
3096
}
3097

3098
static int socket_dispatch_io(sd_event_source *source, int fd, uint32_t revents, void *userdata) {
203✔
3099
        SocketPort *p = ASSERT_PTR(userdata);
203✔
3100
        int cfd = -EBADF;
203✔
3101

3102
        assert(fd >= 0);
203✔
3103

3104
        if (p->socket->state != SOCKET_LISTENING)
203✔
3105
                return 0;
3106

3107
        log_unit_debug(UNIT(p->socket), "Incoming traffic");
203✔
3108

3109
        if (revents != EPOLLIN) {
203✔
3110
                if (revents & EPOLLHUP)
×
3111
                        log_unit_error(UNIT(p->socket), "Got POLLHUP on a listening socket. The service probably invoked shutdown() on it, and should better not do that.");
×
3112
                else
3113
                        log_unit_error(UNIT(p->socket), "Got unexpected poll event (0x%x) on socket.", revents);
×
3114
                goto fail;
×
3115
        }
3116

3117
        if (p->socket->accept &&
203✔
3118
            p->type == SOCKET_SOCKET &&
4✔
3119
            socket_address_can_accept(&p->address)) {
2✔
3120

3121
                cfd = socket_accept_in_cgroup(p->socket, p, fd);
2✔
3122
                if (cfd == -EAGAIN) /* Spurious accept() */
2✔
3123
                        return 0;
3124
                if (cfd < 0)
2✔
3125
                        goto fail;
×
3126

3127
                socket_apply_socket_options(p->socket, p, cfd);
2✔
3128
        }
3129

3130
        socket_enter_running(p->socket, cfd);
203✔
3131
        return 0;
203✔
3132

3133
fail:
×
3134
        socket_enter_stop_pre(p->socket, SOCKET_FAILURE_RESOURCES);
×
3135
        return 0;
×
3136
}
3137

3138
static void socket_sigchld_event(Unit *u, pid_t pid, int code, int status) {
173✔
3139
        Socket *s = ASSERT_PTR(SOCKET(u));
173✔
3140
        SocketResult f;
173✔
3141

3142
        assert(pid >= 0);
173✔
3143

3144
        if (pid != s->control_pid.pid)
173✔
3145
                return;
3146

3147
        pidref_done(&s->control_pid);
173✔
3148

3149
        if (is_clean_exit(code, status, EXIT_CLEAN_COMMAND, NULL))
173✔
3150
                f = SOCKET_SUCCESS;
3151
        else if (code == CLD_EXITED)
×
3152
                f = SOCKET_FAILURE_EXIT_CODE;
3153
        else if (code == CLD_KILLED)
×
3154
                f = SOCKET_FAILURE_SIGNAL;
3155
        else if (code == CLD_DUMPED)
×
3156
                f = SOCKET_FAILURE_CORE_DUMP;
3157
        else
3158
                assert_not_reached();
×
3159

3160
        if (s->control_command) {
173✔
3161
                exec_status_exit(&s->control_command->exec_status, &s->exec_context, pid, code, status);
173✔
3162

3163
                if (s->control_command->flags & EXEC_COMMAND_IGNORE_FAILURE)
173✔
3164
                        f = SOCKET_SUCCESS;
173✔
3165
        }
3166

3167
        unit_log_process_exit(
173✔
3168
                        u,
3169
                        "Control process",
3170
                        socket_exec_command_to_string(s->control_command_id),
3171
                        f == SOCKET_SUCCESS,
3172
                        code, status);
3173

3174
        if (s->result == SOCKET_SUCCESS)
173✔
3175
                s->result = f;
173✔
3176

3177
        if (s->control_command &&
173✔
3178
            s->control_command->command_next &&
173✔
3179
            f == SOCKET_SUCCESS) {
3180

3181
                log_unit_debug(u, "Running next command for state %s", socket_state_to_string(s->state));
×
3182
                socket_run_next(s);
×
3183
        } else {
3184
                s->control_command = NULL;
173✔
3185
                s->control_command_id = _SOCKET_EXEC_COMMAND_INVALID;
173✔
3186

3187
                /* No further commands for this step, so let's figure
3188
                 * out what to do next */
3189

3190
                log_unit_debug(u, "Got final SIGCHLD for state %s", socket_state_to_string(s->state));
173✔
3191

3192
                switch (s->state) {
173✔
3193

3194
                case SOCKET_START_PRE:
×
3195
                        if (f == SOCKET_SUCCESS)
×
3196
                                socket_enter_start_open(s);
×
3197
                        else
3198
                                socket_enter_signal(s, SOCKET_FINAL_SIGTERM, f);
×
3199
                        break;
3200

3201
                case SOCKET_START_CHOWN:
×
3202
                        if (f == SOCKET_SUCCESS)
×
3203
                                socket_enter_start_post(s);
×
3204
                        else
3205
                                socket_enter_stop_pre(s, f);
×
3206
                        break;
3207

3208
                case SOCKET_START_POST:
173✔
3209
                        if (f == SOCKET_SUCCESS)
173✔
3210
                                socket_enter_listening(s);
173✔
3211
                        else
3212
                                socket_enter_stop_pre(s, f);
×
3213
                        break;
3214

3215
                case SOCKET_STOP_PRE:
×
3216
                case SOCKET_STOP_PRE_SIGTERM:
3217
                case SOCKET_STOP_PRE_SIGKILL:
3218
                        socket_enter_stop_post(s, f);
×
3219
                        break;
×
3220

3221
                case SOCKET_STOP_POST:
×
3222
                case SOCKET_FINAL_SIGTERM:
3223
                case SOCKET_FINAL_SIGKILL:
3224
                        socket_enter_dead(s, f);
×
3225
                        break;
×
3226

3227
                case SOCKET_CLEANING:
×
3228

3229
                        if (s->clean_result == SOCKET_SUCCESS)
×
3230
                                s->clean_result = f;
×
3231

3232
                        socket_enter_dead(s, SOCKET_SUCCESS);
×
3233
                        break;
×
3234

3235
                default:
×
3236
                        assert_not_reached();
×
3237
                }
3238
        }
3239

3240
        /* Notify clients about changed exit status */
3241
        unit_add_to_dbus_queue(u);
173✔
3242
}
3243

3244
static int socket_dispatch_timer(sd_event_source *source, usec_t usec, void *userdata) {
×
3245
        Socket *s = ASSERT_PTR(SOCKET(userdata));
×
3246

3247
        assert(s->timer_event_source == source);
×
3248

3249
        switch (s->state) {
×
3250

3251
        case SOCKET_START_PRE:
3252
                log_unit_warning(UNIT(s), "Starting timed out. Terminating.");
×
3253
                socket_enter_signal(s, SOCKET_FINAL_SIGTERM, SOCKET_FAILURE_TIMEOUT);
×
3254
                break;
×
3255

3256
        case SOCKET_START_CHOWN:
3257
        case SOCKET_START_POST:
3258
                log_unit_warning(UNIT(s), "Starting timed out. Stopping.");
×
3259
                socket_enter_stop_pre(s, SOCKET_FAILURE_TIMEOUT);
×
3260
                break;
×
3261

3262
        case SOCKET_STOP_PRE:
3263
                log_unit_warning(UNIT(s), "Stopping timed out. Terminating.");
×
3264
                socket_enter_signal(s, SOCKET_STOP_PRE_SIGTERM, SOCKET_FAILURE_TIMEOUT);
×
3265
                break;
×
3266

3267
        case SOCKET_STOP_PRE_SIGTERM:
×
3268
                if (s->kill_context.send_sigkill) {
×
3269
                        log_unit_warning(UNIT(s), "Stopping timed out. Killing.");
×
3270
                        socket_enter_signal(s, SOCKET_STOP_PRE_SIGKILL, SOCKET_FAILURE_TIMEOUT);
×
3271
                } else {
3272
                        log_unit_warning(UNIT(s), "Stopping timed out. Skipping SIGKILL. Ignoring.");
×
3273
                        socket_enter_stop_post(s, SOCKET_FAILURE_TIMEOUT);
×
3274
                }
3275
                break;
3276

3277
        case SOCKET_STOP_PRE_SIGKILL:
3278
                log_unit_warning(UNIT(s), "Processes still around after SIGKILL. Ignoring.");
×
3279
                socket_enter_stop_post(s, SOCKET_FAILURE_TIMEOUT);
×
3280
                break;
×
3281

3282
        case SOCKET_STOP_POST:
3283
                log_unit_warning(UNIT(s), "Stopping timed out (2). Terminating.");
×
3284
                socket_enter_signal(s, SOCKET_FINAL_SIGTERM, SOCKET_FAILURE_TIMEOUT);
×
3285
                break;
×
3286

3287
        case SOCKET_FINAL_SIGTERM:
×
3288
                if (s->kill_context.send_sigkill) {
×
3289
                        log_unit_warning(UNIT(s), "Stopping timed out (2). Killing.");
×
3290
                        socket_enter_signal(s, SOCKET_FINAL_SIGKILL, SOCKET_FAILURE_TIMEOUT);
×
3291
                } else {
3292
                        log_unit_warning(UNIT(s), "Stopping timed out (2). Skipping SIGKILL. Ignoring.");
×
3293
                        socket_enter_dead(s, SOCKET_FAILURE_TIMEOUT);
×
3294
                }
3295
                break;
3296

3297
        case SOCKET_FINAL_SIGKILL:
3298
                log_unit_warning(UNIT(s), "Still around after SIGKILL (2). Entering failed mode.");
×
3299
                socket_enter_dead(s, SOCKET_FAILURE_TIMEOUT);
×
3300
                break;
×
3301

3302
        case SOCKET_CLEANING:
3303
                log_unit_warning(UNIT(s), "Cleaning timed out. killing.");
×
3304

3305
                if (s->clean_result == SOCKET_SUCCESS)
×
3306
                        s->clean_result = SOCKET_FAILURE_TIMEOUT;
×
3307

3308
                socket_enter_signal(s, SOCKET_FINAL_SIGKILL, 0);
×
3309
                break;
×
3310

3311
        default:
×
3312
                assert_not_reached();
×
3313
        }
3314

3315
        return 0;
×
3316
}
3317

3318
int socket_collect_fds(Socket *s, int **ret) {
526✔
3319
        size_t n = 0, k = 0;
526✔
3320

3321
        assert(s);
526✔
3322
        assert(ret);
526✔
3323

3324
        /* Called from the service code for requesting our fds */
3325

3326
        LIST_FOREACH(port, p, s->ports) {
1,086✔
3327
                if (p->fd >= 0)
560✔
3328
                        n++;
541✔
3329
                n += p->n_auxiliary_fds;
560✔
3330
        }
3331

3332
        if (n == 0) {
526✔
3333
                *ret = NULL;
19✔
3334
                return 0;
19✔
3335
        }
3336

3337
        int *fds = new(int, n);
507✔
3338
        if (!fds)
507✔
3339
                return -ENOMEM;
3340

3341
        LIST_FOREACH(port, p, s->ports) {
1,048✔
3342
                if (p->fd >= 0)
541✔
3343
                        fds[k++] = p->fd;
541✔
3344
                FOREACH_ARRAY(i, p->auxiliary_fds, p->n_auxiliary_fds)
541✔
3345
                        fds[k++] = *i;
×
3346
        }
3347

3348
        assert(k == n);
507✔
3349

3350
        *ret = fds;
507✔
3351
        return (int) n;
507✔
3352
}
3353

3354
static void socket_reset_failed(Unit *u) {
36✔
3355
        Socket *s = SOCKET(u);
36✔
3356

3357
        assert(s);
×
3358

3359
        if (s->state == SOCKET_FAILED)
36✔
3360
                socket_set_state(s, SOCKET_DEAD);
×
3361

3362
        s->result = SOCKET_SUCCESS;
36✔
3363
        s->clean_result = SOCKET_SUCCESS;
36✔
3364
}
36✔
3365

3366
void socket_connection_unref(Socket *s) {
2✔
3367
        assert(s);
2✔
3368

3369
        /* The service is dead. Yay!
3370
         *
3371
         * This is strictly for one-instance-per-connection
3372
         * services. */
3373

3374
        assert(s->n_connections > 0);
2✔
3375
        s->n_connections--;
2✔
3376

3377
        log_unit_debug(UNIT(s), "One connection closed, %u left.", s->n_connections);
2✔
3378
}
2✔
3379

3380
static void socket_trigger_notify(Unit *u, Unit *other) {
3,191✔
3381
        Socket *s = ASSERT_PTR(SOCKET(u));
3,191✔
3382

3383
        assert(other);
3,191✔
3384

3385
        /* Filter out invocations with bogus state */
3386
        assert(UNIT_IS_LOAD_COMPLETE(other->load_state));
3,191✔
3387

3388
        Service *service = ASSERT_PTR(SERVICE(other));
3,191✔
3389

3390
        /* Don't propagate state changes from the service if we are already down */
3391
        if (!IN_SET(s->state, SOCKET_RUNNING, SOCKET_LISTENING))
3,191✔
3392
                return;
3393

3394
        /* We don't care for the service state if we are in Accept=yes mode */
3395
        if (s->accept)
2,794✔
3396
                return;
3397

3398
        /* Propagate start limit hit state */
3399
        if (other->start_limit_hit) {
2,786✔
3400
                socket_enter_stop_pre(s, SOCKET_FAILURE_SERVICE_START_LIMIT_HIT);
×
3401
                return;
×
3402
        }
3403

3404
        /* Don't propagate anything if there's still a job queued */
3405
        if (other->job)
2,786✔
3406
                return;
3407

3408
        if (!SOCKET_SERVICE_IS_ACTIVE(service, /* allow_finalize = */ true))
2,106✔
3409
                socket_enter_listening(s);
682✔
3410

3411
        if (SERVICE(other)->state == SERVICE_RUNNING)
2,106✔
3412
                socket_set_state(s, SOCKET_RUNNING);
1,319✔
3413
}
3414

3415
static void socket_handoff_timestamp(
346✔
3416
                Unit *u,
3417
                const struct ucred *ucred,
3418
                const dual_timestamp *ts) {
3419

3420
        Socket *s = ASSERT_PTR(SOCKET(u));
346✔
3421

3422
        assert(ucred);
346✔
3423
        assert(ts);
346✔
3424

3425
        if (s->control_pid.pid == ucred->pid && s->control_command) {
346✔
3426
                exec_status_handoff(&s->control_command->exec_status, ucred, ts);
346✔
3427
                unit_add_to_dbus_queue(u);
346✔
3428
        }
3429
}
346✔
3430

3431
static int socket_get_timeout(Unit *u, usec_t *timeout) {
×
3432
        Socket *s = ASSERT_PTR(SOCKET(u));
×
3433
        usec_t t;
×
3434
        int r;
×
3435

3436
        if (!s->timer_event_source)
×
3437
                return 0;
×
3438

3439
        r = sd_event_source_get_time(s->timer_event_source, &t);
×
3440
        if (r < 0)
×
3441
                return r;
3442
        if (t == USEC_INFINITY)
×
3443
                return 0;
3444

3445
        *timeout = t;
×
3446
        return 1;
×
3447
}
3448

3449
const char* socket_fdname(Socket *s) {
617✔
3450
        assert(s);
617✔
3451

3452
        /* Returns the name to use for $LISTEN_FDNAMES. If the user didn't specify anything specifically,
3453
         * use the socket unit's name as fallback for Accept=no sockets, "connection" otherwise. */
3454

3455
        if (s->fdname)
617✔
3456
                return s->fdname;
3457

3458
        if (s->accept)
482✔
3459
                return "connection";
3460

3461
        return UNIT(s)->id;
471✔
3462
}
3463

3464
static PidRef* socket_control_pid(Unit *u) {
7,744✔
3465
        return &ASSERT_PTR(SOCKET(u))->control_pid;
15,488✔
3466
}
3467

3468
static int socket_clean(Unit *u, ExecCleanMask mask) {
×
3469
        Socket *s = ASSERT_PTR(SOCKET(u));
×
3470
        _cleanup_strv_free_ char **l = NULL;
×
3471
        int r;
×
3472

3473
        assert(mask != 0);
×
3474

3475
        if (s->state != SOCKET_DEAD)
×
3476
                return -EBUSY;
3477

3478
        r = exec_context_get_clean_directories(&s->exec_context, u->manager->prefix, mask, &l);
×
3479
        if (r < 0)
×
3480
                return r;
3481

3482
        if (strv_isempty(l))
×
3483
                return -EUNATCH;
3484

3485
        socket_unwatch_control_pid(s);
×
3486
        s->clean_result = SOCKET_SUCCESS;
×
3487
        s->control_command = NULL;
×
3488
        s->control_command_id = _SOCKET_EXEC_COMMAND_INVALID;
×
3489

3490
        r = socket_arm_timer(s, /* relative= */ true, s->exec_context.timeout_clean_usec);
×
3491
        if (r < 0) {
×
3492
                log_unit_warning_errno(u, r, "Failed to install timer: %m");
×
3493
                goto fail;
×
3494
        }
3495

3496
        r = unit_fork_and_watch_rm_rf(u, l, &s->control_pid);
×
3497
        if (r < 0) {
×
3498
                log_unit_warning_errno(u, r, "Failed to spawn cleaning task: %m");
×
3499
                goto fail;
×
3500
        }
3501

3502
        socket_set_state(s, SOCKET_CLEANING);
×
3503
        return 0;
3504

3505
fail:
×
3506
        s->clean_result = SOCKET_FAILURE_RESOURCES;
×
3507
        s->timer_event_source = sd_event_source_disable_unref(s->timer_event_source);
×
3508
        return r;
×
3509
}
3510

3511
static int socket_can_clean(Unit *u, ExecCleanMask *ret) {
108✔
3512
        Socket *s = ASSERT_PTR(SOCKET(u));
108✔
3513

3514
        return exec_context_get_clean_mask(&s->exec_context, ret);
108✔
3515
}
3516

3517
static int socket_can_start(Unit *u) {
2,333✔
3518
        Socket *s = ASSERT_PTR(SOCKET(u));
2,333✔
3519
        int r;
2,333✔
3520

3521
        r = unit_test_start_limit(u);
2,333✔
3522
        if (r < 0) {
2,333✔
3523
                socket_enter_dead(s, SOCKET_FAILURE_START_LIMIT_HIT);
×
3524
                return r;
×
3525
        }
3526

3527
        return 1;
3528
}
3529

3530
static const char* const socket_exec_command_table[_SOCKET_EXEC_COMMAND_MAX] = {
3531
        [SOCKET_EXEC_START_PRE]   = "ExecStartPre",
3532
        [SOCKET_EXEC_START_CHOWN] = "ExecStartChown",
3533
        [SOCKET_EXEC_START_POST]  = "ExecStartPost",
3534
        [SOCKET_EXEC_STOP_PRE]    = "ExecStopPre",
3535
        [SOCKET_EXEC_STOP_POST]   = "ExecStopPost",
3536
};
3537

3538
DEFINE_STRING_TABLE_LOOKUP(socket_exec_command, SocketExecCommand);
229✔
3539

3540
static const char* const socket_result_table[_SOCKET_RESULT_MAX] = {
3541
        [SOCKET_SUCCESS]                         = "success",
3542
        [SOCKET_FAILURE_RESOURCES]               = "resources",
3543
        [SOCKET_FAILURE_TIMEOUT]                 = "timeout",
3544
        [SOCKET_FAILURE_EXIT_CODE]               = "exit-code",
3545
        [SOCKET_FAILURE_SIGNAL]                  = "signal",
3546
        [SOCKET_FAILURE_CORE_DUMP]               = "core-dump",
3547
        [SOCKET_FAILURE_START_LIMIT_HIT]         = "start-limit-hit",
3548
        [SOCKET_FAILURE_TRIGGER_LIMIT_HIT]       = "trigger-limit-hit",
3549
        [SOCKET_FAILURE_SERVICE_START_LIMIT_HIT] = "service-start-limit-hit",
3550
};
3551

3552
DEFINE_STRING_TABLE_LOOKUP(socket_result, SocketResult);
7,353✔
3553

3554
static const char* const socket_timestamping_table[_SOCKET_TIMESTAMPING_MAX] = {
3555
        [SOCKET_TIMESTAMPING_OFF] = "off",
3556
        [SOCKET_TIMESTAMPING_US]  = "us",
3557
        [SOCKET_TIMESTAMPING_NS]  = "ns",
3558
};
3559

3560
DEFINE_STRING_TABLE_LOOKUP(socket_timestamping, SocketTimestamping);
326✔
3561

3562
SocketTimestamping socket_timestamping_from_string_harder(const char *p) {
218✔
3563
        SocketTimestamping t;
218✔
3564
        int r;
218✔
3565

3566
        if (!p)
218✔
3567
                return _SOCKET_TIMESTAMPING_INVALID;
3568

3569
        t = socket_timestamping_from_string(p);
218✔
3570
        if (t >= 0)
218✔
3571
                return t;
3572

3573
        /* Let's alternatively support the various other aliases parse_time() accepts for ns and µs here,
3574
         * too. */
3575
        if (streq(p, "nsec"))
×
3576
                return SOCKET_TIMESTAMPING_NS;
3577
        if (STR_IN_SET(p, "usec", "µs", "μs")) /* Accept both small greek letter mu + micro sign unicode codepoints */
×
3578
                return SOCKET_TIMESTAMPING_US;
×
3579

3580
        r = parse_boolean(p);
×
3581
        if (r < 0)
×
3582
                return _SOCKET_TIMESTAMPING_INVALID;
3583

3584
        return r ? SOCKET_TIMESTAMPING_NS : SOCKET_TIMESTAMPING_OFF; /* If boolean yes, default to ns accuracy */
×
3585
}
3586

3587
const UnitVTable socket_vtable = {
3588
        .object_size = sizeof(Socket),
3589
        .exec_context_offset = offsetof(Socket, exec_context),
3590
        .cgroup_context_offset = offsetof(Socket, cgroup_context),
3591
        .kill_context_offset = offsetof(Socket, kill_context),
3592
        .exec_runtime_offset = offsetof(Socket, exec_runtime),
3593
        .cgroup_runtime_offset = offsetof(Socket, cgroup_runtime),
3594

3595
        .sections =
3596
                "Unit\0"
3597
                "Socket\0"
3598
                "Install\0",
3599
        .private_section = "Socket",
3600

3601
        .can_transient = true,
3602
        .can_trigger = true,
3603
        .can_fail = true,
3604

3605
        .init = socket_init,
3606
        .done = socket_done,
3607
        .load = socket_load,
3608

3609
        .coldplug = socket_coldplug,
3610

3611
        .dump = socket_dump,
3612

3613
        .start = socket_start,
3614
        .stop = socket_stop,
3615

3616
        .clean = socket_clean,
3617
        .can_clean = socket_can_clean,
3618

3619
        .get_timeout = socket_get_timeout,
3620

3621
        .serialize = socket_serialize,
3622
        .deserialize_item = socket_deserialize_item,
3623
        .distribute_fds = socket_distribute_fds,
3624

3625
        .active_state = socket_active_state,
3626
        .sub_state_to_string = socket_sub_state_to_string,
3627

3628
        .will_restart = unit_will_restart_default,
3629

3630
        .may_gc = socket_may_gc,
3631

3632
        .sigchld_event = socket_sigchld_event,
3633

3634
        .trigger_notify = socket_trigger_notify,
3635

3636
        .reset_failed = socket_reset_failed,
3637

3638
        .notify_handoff_timestamp = socket_handoff_timestamp,
3639

3640
        .control_pid = socket_control_pid,
3641

3642
        .bus_set_property = bus_socket_set_property,
3643
        .bus_commit_properties = bus_socket_commit_properties,
3644

3645
        .status_message_formats = {
3646
                .finished_start_job = {
3647
                        [JOB_DONE]       = "Listening on %s.",
3648
                        [JOB_FAILED]     = "Failed to listen on %s.",
3649
                        [JOB_TIMEOUT]    = "Timed out starting %s.",
3650
                },
3651
                .finished_stop_job = {
3652
                        [JOB_DONE]       = "Closed %s.",
3653
                        [JOB_FAILED]     = "Failed stopping %s.",
3654
                        [JOB_TIMEOUT]    = "Timed out stopping %s.",
3655
                },
3656
        },
3657

3658
        .can_start = socket_can_start,
3659
};
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