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systemd / systemd / 20684862027

03 Jan 2026 10:26PM UTC coverage: 72.702% (+0.03%) from 72.677%
20684862027

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core/dynamic-user: two trivial modernizations (#40264)

2 of 4 new or added lines in 1 file covered. (50.0%)

215 existing lines in 37 files now uncovered.

310139 of 426587 relevant lines covered (72.7%)

1143601.25 hits per line

Source File
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85.48
/src/network/networkd-link.c
1
/* SPDX-License-Identifier: LGPL-2.1-or-later */
2

3
#include <linux/if.h>
4
#include <linux/if_arp.h>
5
#include <linux/if_link.h>
6
#include <linux/netdevice.h>
7
#include <net/if.h>
8
#include <sys/socket.h>
9
#include <unistd.h>
10

11
#include "sd-bus.h"
12
#include "sd-dhcp-client.h"
13
#include "sd-dhcp-server.h"
14
#include "sd-dhcp6-client.h"
15
#include "sd-dhcp6-lease.h"
16
#include "sd-ipv4ll.h"
17
#include "sd-lldp-rx.h"
18
#include "sd-ndisc.h"
19
#include "sd-netlink.h"
20
#include "sd-radv.h"
21

22
#include "alloc-util.h"
23
#include "arphrd-util.h"
24
#include "bitfield.h"
25
#include "device-util.h"
26
#include "dns-domain.h"
27
#include "errno-util.h"
28
#include "ethtool-util.h"
29
#include "event-util.h"
30
#include "format-ifname.h"
31
#include "fs-util.h"
32
#include "glyph-util.h"
33
#include "logarithm.h"
34
#include "netif-util.h"
35
#include "netlink-util.h"
36
#include "networkd-address.h"
37
#include "networkd-address-label.h"
38
#include "networkd-bridge-fdb.h"
39
#include "networkd-bridge-mdb.h"
40
#include "networkd-bridge-vlan.h"
41
#include "networkd-dhcp-prefix-delegation.h"
42
#include "networkd-dhcp-server.h"
43
#include "networkd-dhcp4.h"
44
#include "networkd-dhcp6.h"
45
#include "networkd-ipv4acd.h"
46
#include "networkd-ipv4ll.h"
47
#include "networkd-ipv6-proxy-ndp.h"
48
#include "networkd-link.h"
49
#include "networkd-link-bus.h"
50
#include "networkd-lldp-tx.h"
51
#include "networkd-manager.h"
52
#include "networkd-ndisc.h"
53
#include "networkd-neighbor.h"
54
#include "networkd-nexthop.h"
55
#include "networkd-queue.h"
56
#include "networkd-radv.h"
57
#include "networkd-resolve-hook.h"
58
#include "networkd-route.h"
59
#include "networkd-route-util.h"
60
#include "networkd-routing-policy-rule.h"
61
#include "networkd-setlink.h"
62
#include "networkd-sriov.h"
63
#include "networkd-state-file.h"
64
#include "networkd-sysctl.h"
65
#include "networkd-wifi.h"
66
#include "ordered-set.h"
67
#include "parse-util.h"
68
#include "set.h"
69
#include "socket-util.h"
70
#include "string-table.h"
71
#include "string-util.h"
72
#include "strv.h"
73
#include "tc.h"
74
#include "udev-util.h"
75

76
void link_required_operstate_for_online(Link *link, LinkOperationalStateRange *ret) {
18,749✔
77
        assert(link);
18,749✔
78
        assert(ret);
18,749✔
79

80
        if (link->network && operational_state_range_is_valid(&link->network->required_operstate_for_online))
18,749✔
81
                /* If explicitly specified, use it as is. */
82
                *ret = link->network->required_operstate_for_online;
362✔
83
        else if (link->iftype == ARPHRD_CAN)
18,387✔
84
                /* CAN devices do not support addressing, hence defaults to 'carrier'. */
85
                *ret = (const LinkOperationalStateRange) {
44✔
86
                        .min = LINK_OPERSTATE_CARRIER,
87
                        .max = LINK_OPERSTATE_CARRIER,
88
                };
89
        else if (link->network && link->network->bond)
18,343✔
90
                /* Bonding slaves do not support addressing. */
91
                *ret = (const LinkOperationalStateRange) {
141✔
92
                        .min = LINK_OPERSTATE_ENSLAVED,
93
                        .max = LINK_OPERSTATE_ENSLAVED,
94
                };
95
        else if (STRPTR_IN_SET(link->kind, "batadv", "bond", "bridge", "vrf"))
18,202✔
96
                /* Some of slave interfaces may be offline. */
97
                *ret = (const LinkOperationalStateRange) {
629✔
98
                        .min = LINK_OPERSTATE_DEGRADED_CARRIER,
99
                        .max = LINK_OPERSTATE_ROUTABLE,
100
                };
101
        else
102
                *ret = LINK_OPERSTATE_RANGE_DEFAULT;
17,573✔
103
}
18,749✔
104

105
AddressFamily link_required_family_for_online(Link *link) {
9,799✔
106
        assert(link);
9,799✔
107

108
        if (link->network && link->network->required_family_for_online >= 0)
9,799✔
109
                return link->network->required_family_for_online;
110

111
        if (link->network && operational_state_range_is_valid(&link->network->required_operstate_for_online))
×
112
                /* If RequiredForOnline= is explicitly specified, defaults to no. */
113
                return ADDRESS_FAMILY_NO;
114

115
        if (STRPTR_IN_SET(link->kind, "batadv", "bond", "bridge", "vrf"))
×
116
                /* As the minimum required operstate for master interfaces is 'degraded-carrier',
117
                 * we should request an address assigned to the link for backward compatibility. */
118
                return ADDRESS_FAMILY_YES;
×
119

120
        return ADDRESS_FAMILY_NO;
121
}
122

123
bool link_ipv6_enabled(Link *link) {
909✔
124
        assert(link);
909✔
125

126
        if (!socket_ipv6_is_supported())
909✔
127
                return false;
128

129
        if (link->iftype == ARPHRD_CAN)
909✔
130
                return false;
131

132
        if (!link->network)
907✔
133
                return false;
134

135
        if (link->network->bond)
907✔
136
                return false;
137

138
        if (link_ipv6ll_enabled(link))
896✔
139
                return true;
140

141
        if (network_has_static_ipv6_configurations(link->network))
111✔
142
                return true;
44✔
143

144
        return false;
145
}
146

147
bool link_has_ipv6_connectivity(Link *link) {
304✔
148
        LinkAddressState ipv6_address_state;
304✔
149

150
        assert(link);
304✔
151

152
        link_get_address_states(link, NULL, &ipv6_address_state, NULL);
304✔
153

154
        switch (ipv6_address_state) {
304✔
155
        case LINK_ADDRESS_STATE_ROUTABLE:
156
                /* If the interface has a routable IPv6 address, then we assume yes. */
157
                return true;
304✔
158

159
        case LINK_ADDRESS_STATE_DEGRADED:
160
                /* If the interface has only degraded IPv6 address (mostly, link-local address), then let's check
161
                 * there is an IPv6 default gateway. */
162
                return link_has_default_gateway(link, AF_INET6);
131✔
163

164
        case LINK_ADDRESS_STATE_OFF:
116✔
165
                /* No IPv6 address. */
166
                return false;
116✔
167

168
        default:
×
169
                assert_not_reached();
×
170
        }
171
}
172

173
static bool link_is_ready_to_configure_one(Link *link, bool allow_unmanaged) {
64,529✔
174
        assert(link);
64,529✔
175

176
        if (!IN_SET(link->state, LINK_STATE_CONFIGURING, LINK_STATE_CONFIGURED, LINK_STATE_UNMANAGED))
64,529✔
177
                return false;
178

179
        if (!link->network)
64,494✔
180
                return allow_unmanaged;
181

182
        if (!link->network->configure_without_carrier) {
64,493✔
183
                if (link->set_flags_messages > 0)
64,293✔
184
                        return false;
185

186
                if (!link_has_carrier(link))
18,029✔
187
                        return false;
188
        }
189

190
        if (link->set_link_messages > 0)
12,733✔
191
                return false;
192

193
        if (!link->activated)
12,600✔
194
                return false;
52✔
195

196
        return true;
197
}
198

199
bool link_is_ready_to_configure(Link *link, bool allow_unmanaged) {
64,529✔
200
        return check_ready_for_all_sr_iov_ports(link, allow_unmanaged, link_is_ready_to_configure_one);
64,529✔
201
}
202

203
bool link_is_ready_to_configure_by_name(Manager *manager, const char *name, bool allow_unmanaged) {
1,635✔
204
        assert(manager);
1,635✔
205
        assert(name);
1,635✔
206

207
        Link *link;
1,635✔
208
        if (link_get_by_name(manager, name, &link) < 0)
1,635✔
209
                return false;
1,635✔
210

211
        return link_is_ready_to_configure(link, allow_unmanaged);
1,635✔
212
}
213

214
void link_ntp_settings_clear(Link *link) {
2,811✔
215
        link->ntp = strv_free(link->ntp);
2,811✔
216
}
2,811✔
217

218
void link_dns_settings_clear(Link *link) {
2,827✔
219
        if (link->n_dns != UINT_MAX)
2,827✔
220
                for (unsigned i = 0; i < link->n_dns; i++)
12✔
221
                        in_addr_full_free(link->dns[i]);
7✔
222
        link->dns = mfree(link->dns);
2,827✔
223
        link->n_dns = UINT_MAX;
2,827✔
224

225
        link->search_domains = ordered_set_free(link->search_domains);
2,827✔
226
        link->route_domains = ordered_set_free(link->route_domains);
2,827✔
227

228
        link->dns_default_route = -1;
2,827✔
229
        link->llmnr = _RESOLVE_SUPPORT_INVALID;
2,827✔
230
        link->mdns = _RESOLVE_SUPPORT_INVALID;
2,827✔
231
        link->dnssec_mode = _DNSSEC_MODE_INVALID;
2,827✔
232
        link->dns_over_tls_mode = _DNS_OVER_TLS_MODE_INVALID;
2,827✔
233

234
        link->dnssec_negative_trust_anchors = set_free(link->dnssec_negative_trust_anchors);
2,827✔
235
}
2,827✔
236

237
static void link_free_engines(Link *link) {
4,825✔
238
        if (!link)
4,825✔
239
                return;
240

241
        link->dhcp_server = sd_dhcp_server_unref(link->dhcp_server);
4,825✔
242

243
        link->dhcp_client = sd_dhcp_client_unref(link->dhcp_client);
4,825✔
244
        link->dhcp_lease = sd_dhcp_lease_unref(link->dhcp_lease);
4,825✔
245
        link->dhcp4_6rd_tunnel_name = mfree(link->dhcp4_6rd_tunnel_name);
4,825✔
246

247
        link->lldp_rx = sd_lldp_rx_unref(link->lldp_rx);
4,825✔
248
        link->lldp_tx = sd_lldp_tx_unref(link->lldp_tx);
4,825✔
249

250
        link->ipv4acd_by_address = hashmap_free(link->ipv4acd_by_address);
4,825✔
251

252
        link->ipv4ll = sd_ipv4ll_unref(link->ipv4ll);
4,825✔
253

254
        link->dhcp6_client = sd_dhcp6_client_unref(link->dhcp6_client);
4,825✔
255
        link->dhcp6_lease = sd_dhcp6_lease_unref(link->dhcp6_lease);
4,825✔
256

257
        link->ndisc = sd_ndisc_unref(link->ndisc);
4,825✔
258
        link->ndisc_expire = sd_event_source_disable_unref(link->ndisc_expire);
4,825✔
259
        ndisc_flush(link);
4,825✔
260

261
        link->radv = sd_radv_unref(link->radv);
4,825✔
262
}
263

264
static Link* link_free(Link *link) {
2,810✔
265
        assert(link);
2,810✔
266

267
        (void) link_clear_sysctl_shadows(link);
2,810✔
268

269
        link_ntp_settings_clear(link);
2,810✔
270
        link_dns_settings_clear(link);
2,810✔
271

272
        link->neighbors = set_free(link->neighbors);
2,810✔
273
        link->addresses = set_free(link->addresses);
2,810✔
274
        link->qdiscs = set_free(link->qdiscs);
2,810✔
275
        link->tclasses = set_free(link->tclasses);
2,810✔
276

277
        link->dhcp_pd_prefixes = set_free(link->dhcp_pd_prefixes);
2,810✔
278

279
        link_free_engines(link);
2,810✔
280

281
        set_free(link->sr_iov_virt_port_ifindices);
2,810✔
282
        free(link->ifname);
2,810✔
283
        strv_free(link->alternative_names);
2,810✔
284
        free(link->kind);
2,810✔
285
        free(link->ssid);
2,810✔
286
        free(link->previous_ssid);
2,810✔
287
        free(link->driver);
2,810✔
288

289
        unlink_and_free(link->lease_file);
2,810✔
290
        unlink_and_free(link->state_file);
2,810✔
291

292
        sd_device_unref(link->dev);
2,810✔
293
        netdev_unref(link->netdev);
2,810✔
294

295
        hashmap_free(link->bound_to_links);
2,810✔
296
        hashmap_free(link->bound_by_links);
2,810✔
297

298
        set_free(link->slaves);
2,810✔
299

300
        network_unref(link->network);
2,810✔
301

302
        sd_event_source_disable_unref(link->carrier_lost_timer);
2,810✔
303
        sd_event_source_disable_unref(link->ipv6_mtu_wait_synced_event_source);
2,810✔
304

305
        return mfree(link);
2,810✔
306
}
307

308
DEFINE_TRIVIAL_REF_UNREF_FUNC(Link, link, link_free);
187,975✔
309

310
DEFINE_HASH_OPS_WITH_VALUE_DESTRUCTOR(
1,951✔
311
                link_hash_ops,
312
                void, trivial_hash_func, trivial_compare_func,
313
                Link, link_unref);
314

315
int link_get_by_index(Manager *m, int ifindex, Link **ret) {
70,099✔
316
        Link *link;
70,099✔
317

318
        assert(m);
70,099✔
319

320
        if (ifindex <= 0)
70,099✔
321
                return -EINVAL;
322

323
        link = hashmap_get(m->links_by_index, INT_TO_PTR(ifindex));
69,369✔
324
        if (!link)
69,369✔
325
                return -ENODEV;
326

327
        if (ret)
65,653✔
328
                *ret = link;
65,653✔
329
        return 0;
330
}
331

332
int link_get_by_name(Manager *m, const char *ifname, Link **ret) {
2,051✔
333
        Link *link;
2,051✔
334

335
        assert(m);
2,051✔
336
        assert(ifname);
2,051✔
337

338
        link = hashmap_get(m->links_by_name, ifname);
2,051✔
339
        if (!link)
2,051✔
340
                return -ENODEV;
341

342
        if (ret)
1,987✔
343
                *ret = link;
1,987✔
344
        return 0;
345
}
346

347
int link_get_by_hw_addr(Manager *m, const struct hw_addr_data *hw_addr, Link **ret) {
×
348
        Link *link;
×
349

350
        assert(m);
×
351
        assert(hw_addr);
×
352

353
        link = hashmap_get(m->links_by_hw_addr, hw_addr);
×
354
        if (!link)
×
355
                return -ENODEV;
356

357
        if (ret)
×
358
                *ret = link;
×
359
        return 0;
360
}
361

362
int link_get_master(Link *link, Link **ret) {
24,712✔
363
        assert(link);
24,712✔
364
        assert(link->manager);
24,712✔
365
        assert(ret);
24,712✔
366

367
        if (link->master_ifindex <= 0 || link->master_ifindex == link->ifindex)
24,712✔
368
                return -ENODEV;
369

370
        return link_get_by_index(link->manager, link->master_ifindex, ret);
712✔
371
}
372

373
void link_set_state(Link *link, LinkState state) {
9,331✔
374
        assert(link);
9,331✔
375

376
        if (link->state == state)
9,331✔
377
                return;
1,813✔
378

379
        log_link_debug(link, "State changed: %s -> %s",
7,518✔
380
                       link_state_to_string(link->state),
381
                       link_state_to_string(state));
382

383
        link->state = state;
7,518✔
384

385
        link_send_changed(link, "AdministrativeState");
7,518✔
386
        link_dirty(link);
7,518✔
387
}
388

389
int link_stop_engines(Link *link, bool may_keep_dynamic) {
4,638✔
390
        int r, ret = 0;
4,638✔
391

392
        assert(link);
4,638✔
393
        assert(link->manager);
4,638✔
394
        assert(link->manager->event);
4,638✔
395

396
        bool keep_dynamic =
13,869✔
397
                may_keep_dynamic &&
1,945✔
398
                link->network &&
4,638✔
399
                (link->manager->state == MANAGER_RESTARTING ||
57✔
400
                 FLAGS_SET(link->network->keep_configuration, KEEP_CONFIGURATION_DYNAMIC_ON_STOP));
14✔
401

402
        if (!keep_dynamic) {
4,593✔
403
                r = sd_dhcp_client_stop(link->dhcp_client);
4,593✔
404
                if (r < 0)
4,593✔
405
                        RET_GATHER(ret, log_link_warning_errno(link, r, "Could not stop DHCPv4 client: %m"));
×
406

407
                r = sd_ipv4ll_stop(link->ipv4ll);
4,593✔
408
                if (r < 0)
4,593✔
409
                        RET_GATHER(ret, log_link_warning_errno(link, r, "Could not stop IPv4 link-local: %m"));
×
410

411
                r = sd_dhcp6_client_stop(link->dhcp6_client);
4,593✔
412
                if (r < 0)
4,593✔
413
                        RET_GATHER(ret, log_link_warning_errno(link, r, "Could not stop DHCPv6 client: %m"));
×
414

415
                r = dhcp_pd_remove(link, /* only_marked= */ false);
4,593✔
416
                if (r < 0)
4,593✔
417
                        RET_GATHER(ret, log_link_warning_errno(link, r, "Could not remove DHCPv6 PD addresses and routes: %m"));
×
418

419
                r = ndisc_stop(link);
4,593✔
420
                if (r < 0)
4,593✔
421
                        RET_GATHER(ret, log_link_warning_errno(link, r, "Could not stop IPv6 Router Discovery: %m"));
×
422

423
                ndisc_flush(link);
4,593✔
424
        }
425

426
        r = sd_dhcp_server_stop(link->dhcp_server);
4,638✔
427
        if (r < 0)
4,638✔
428
                RET_GATHER(ret, log_link_warning_errno(link, r, "Could not stop DHCPv4 server: %m"));
×
429

430
        r = sd_lldp_rx_stop(link->lldp_rx);
4,638✔
431
        if (r < 0)
4,638✔
432
                RET_GATHER(ret, log_link_warning_errno(link, r, "Could not stop LLDP Rx: %m"));
×
433

434
        r = sd_lldp_tx_stop(link->lldp_tx);
4,638✔
435
        if (r < 0)
4,638✔
436
                RET_GATHER(ret, log_link_warning_errno(link, r, "Could not stop LLDP Tx: %m"));
×
437

438
        r = ipv4acd_stop(link);
4,638✔
439
        if (r < 0)
4,638✔
440
                RET_GATHER(ret, log_link_warning_errno(link, r, "Could not stop IPv4 ACD client: %m"));
×
441

442
        r = sd_radv_stop(link->radv);
4,638✔
443
        if (r < 0)
4,638✔
444
                RET_GATHER(ret, log_link_warning_errno(link, r, "Could not stop IPv6 Router Advertisement: %m"));
×
445

446
        return ret;
4,638✔
447
}
448

449
void link_enter_failed(Link *link) {
7✔
450
        assert(link);
7✔
451

452
        if (IN_SET(link->state, LINK_STATE_FAILED, LINK_STATE_LINGER))
7✔
453
                return;
454

455
        log_link_warning(link, "Failed");
7✔
456

457
        link_set_state(link, LINK_STATE_FAILED);
7✔
458

459
        if (!ratelimit_below(&link->automatic_reconfigure_ratelimit)) {
7✔
460
                log_link_warning(link, "The interface entered the failed state frequently, refusing to reconfigure it automatically.");
×
461
                goto stop;
×
462
        }
463

464
        log_link_info(link, "Trying to reconfigure the interface.");
7✔
465
        if (link_reconfigure(link, LINK_RECONFIGURE_UNCONDITIONALLY) > 0)
7✔
466
                return;
467

468
stop:
×
469
        (void) link_stop_engines(link, /* may_keep_dynamic= */ false);
×
470
}
471

472
void link_check_ready(Link *link) {
26,298✔
473
        Address *a;
26,298✔
474

475
        assert(link);
26,298✔
476

477
        if (link->state == LINK_STATE_CONFIGURED)
26,298✔
478
                return;
25,408✔
479

480
        if (link->state != LINK_STATE_CONFIGURING)
22,314✔
481
                return (void) log_link_debug(link, "%s(): link is in %s state.", __func__, link_state_to_string(link->state));
1,348✔
482

483
        if (!link->network)
20,966✔
484
                return (void) log_link_debug(link, "%s(): link is unmanaged.", __func__);
×
485

486
        if (!link->tc_configured)
20,966✔
487
                return (void) log_link_debug(link, "%s(): traffic controls are not configured.", __func__);
316✔
488

489
        if (link->set_link_messages > 0)
20,650✔
490
                return (void) log_link_debug(link, "%s(): link layer is configuring.", __func__);
2,354✔
491

492
        if (!link->activated)
18,296✔
493
                return (void) log_link_debug(link, "%s(): link is not activated.", __func__);
11,188✔
494

495
        if (link->iftype == ARPHRD_CAN)
7,108✔
496
                /* let's shortcut things for CAN which doesn't need most of checks below. */
497
                goto ready;
6✔
498

499
        if (!link->stacked_netdevs_created)
7,102✔
500
                return (void) log_link_debug(link, "%s(): stacked netdevs are not created.", __func__);
210✔
501

502
        if (!link->static_addresses_configured)
6,892✔
503
                return (void) log_link_debug(link, "%s(): static addresses are not configured.", __func__);
3,435✔
504

505
        if (!link->static_address_labels_configured)
3,457✔
506
                return (void) log_link_debug(link, "%s(): static address labels are not configured.", __func__);
3✔
507

508
        if (!link->static_bridge_fdb_configured)
3,454✔
509
                return (void) log_link_debug(link, "%s(): static bridge MDB entries are not configured.", __func__);
4✔
510

511
        if (!link->static_bridge_mdb_configured)
3,450✔
512
                return (void) log_link_debug(link, "%s(): static bridge MDB entries are not configured.", __func__);
12✔
513

514
        if (!link->static_ipv6_proxy_ndp_configured)
3,438✔
515
                return (void) log_link_debug(link, "%s(): static IPv6 proxy NDP addresses are not configured.", __func__);
3✔
516

517
        if (!link->static_neighbors_configured)
3,435✔
518
                return (void) log_link_debug(link, "%s(): static neighbors are not configured.", __func__);
7✔
519

520
        if (!link->static_nexthops_configured)
3,428✔
521
                return (void) log_link_debug(link, "%s(): static nexthops are not configured.", __func__);
20✔
522

523
        if (!link->static_routes_configured)
3,408✔
524
                return (void) log_link_debug(link, "%s(): static routes are not configured.", __func__);
155✔
525

526
        if (!link->static_routing_policy_rules_configured)
3,253✔
527
                return (void) log_link_debug(link, "%s(): static routing policy rules are not configured.", __func__);
43✔
528

529
        if (!link->sr_iov_configured)
3,210✔
530
                return (void) log_link_debug(link, "%s(): SR-IOV is not configured.", __func__);
×
531

532
        /* IPv6LL is assigned after the link gains its carrier. */
533
        if (!link->network->configure_without_carrier &&
6,407✔
534
            link_ipv6ll_enabled(link) &&
3,197✔
535
            !in6_addr_is_set(&link->ipv6ll_address))
3,071✔
536
                return (void) log_link_debug(link, "%s(): IPv6LL is not configured yet.", __func__);
1,188✔
537

538
        /* All static addresses must be ready. */
539
        bool has_static_address = false;
2,022✔
540
        SET_FOREACH(a, link->addresses) {
7,005✔
541
                if (a->source != NETWORK_CONFIG_SOURCE_STATIC)
5,134✔
542
                        continue;
3,186✔
543
                if (!address_is_ready(a))
1,948✔
544
                        return (void) log_link_debug(link, "%s(): static address %s is not ready.", __func__,
151✔
545
                                                     IN_ADDR_PREFIX_TO_STRING(a->family, &a->in_addr, a->prefixlen));
546
                has_static_address = true;
547
        }
548

549
        /* If at least one static address is requested, do not request that dynamic addressing protocols are finished. */
550
        if (has_static_address)
1,871✔
551
                goto ready;
396✔
552

553
        /* If no dynamic addressing protocol enabled, assume the interface is ready.
554
         * Note, ignore NDisc when ConfigureWithoutCarrier= is enabled, as IPv6AcceptRA= is enabled by default. */
555
        if (!link_ipv4ll_enabled(link) && !link_dhcp4_enabled(link) &&
2,825✔
556
            !link_dhcp6_enabled(link) && !link_dhcp_pd_is_enabled(link) &&
802✔
557
            (link->network->configure_without_carrier || !link_ndisc_enabled(link)))
599✔
558
                goto ready;
258✔
559

560
        bool ipv4ll_ready =
2,434✔
561
                link_ipv4ll_enabled(link) && link->ipv4ll_address_configured &&
1,271✔
562
                link_check_addresses_ready(link, NETWORK_CONFIG_SOURCE_IPV4LL);
54✔
563
        bool dhcp4_ready =
1,217✔
564
                link_dhcp4_enabled(link) && link->dhcp4_configured &&
1,312✔
565
                link_check_addresses_ready(link, NETWORK_CONFIG_SOURCE_DHCP4);
95✔
566
        bool dhcp6_ready =
1,217✔
567
                link_dhcp6_enabled(link) && link->dhcp6_configured &&
1,217✔
568
                (!link->network->dhcp6_use_address ||
48✔
569
                 link_check_addresses_ready(link, NETWORK_CONFIG_SOURCE_DHCP6));
23✔
570
        bool dhcp_pd_ready =
2,434✔
571
                link_dhcp_pd_is_enabled(link) && link->dhcp_pd_configured &&
1,217✔
572
                (!link->network->dhcp_pd_assign ||
141✔
573
                 link_check_addresses_ready(link, NETWORK_CONFIG_SOURCE_DHCP_PD));
67✔
574
        bool ndisc_ready =
2,434✔
575
                link_ndisc_enabled(link) && link->ndisc_configured &&
1,217✔
576
                (!link->network->ndisc_use_autonomous_prefix ||
444✔
577
                 link_check_addresses_ready(link, NETWORK_CONFIG_SOURCE_NDISC));
222✔
578

579
        /* If the uplink for PD is self, then request the corresponding DHCP protocol is also ready. */
580
        if (dhcp_pd_is_uplink(link, link, /* accept_auto= */ false)) {
1,217✔
581
                if (link_dhcp4_enabled(link) && link->network->dhcp_use_6rd &&
78✔
582
                    sd_dhcp_lease_has_6rd(link->dhcp_lease)) {
25✔
583
                        if (!link->dhcp4_configured)
22✔
584
                                return (void) log_link_debug(link, "%s(): DHCPv4 6rd prefix is assigned, but DHCPv4 protocol is not finished yet.", __func__);
10✔
585
                        if (!dhcp_pd_ready)
12✔
586
                                return (void) log_link_debug(link, "%s(): DHCPv4 is finished, but prefix acquired by DHCPv4-6rd is not assigned yet.", __func__);
10✔
587
                }
588

589
                if (link_dhcp6_enabled(link) && link->network->dhcp6_use_pd_prefix &&
61✔
590
                    sd_dhcp6_lease_has_pd_prefix(link->dhcp6_lease)) {
28✔
591
                        if (!link->dhcp6_configured)
19✔
592
                                return (void) log_link_debug(link, "%s(): DHCPv6 IA_PD prefix is assigned, but DHCPv6 protocol is not finished yet.", __func__);
13✔
593
                        if (!dhcp_pd_ready)
6✔
594
                                return (void) log_link_debug(link, "%s(): DHCPv6 is finished, but prefix acquired by DHCPv6 IA_PD is not assigned yet.", __func__);
3✔
595
                }
596
        }
597

598
        /* At least one dynamic addressing protocol is finished. */
599
        if (!ipv4ll_ready && !dhcp4_ready && !dhcp6_ready && !dhcp_pd_ready && !ndisc_ready)
1,181✔
600
                return (void) log_link_debug(link, "%s(): dynamic addressing protocols are enabled but none of them finished yet.", __func__);
951✔
601

602
        log_link_debug(link, "%s(): IPv4LL:%s DHCPv4:%s DHCPv6:%s DHCP-PD:%s NDisc:%s",
1,191✔
603
                       __func__,
604
                       yes_no(ipv4ll_ready),
605
                       yes_no(dhcp4_ready),
606
                       yes_no(dhcp6_ready),
607
                       yes_no(dhcp_pd_ready),
608
                       yes_no(ndisc_ready));
609

610
ready:
890✔
611
        link_set_state(link, LINK_STATE_CONFIGURED);
890✔
612
}
613

614
static int link_request_static_configs(Link *link) {
1,550✔
615
        int r;
1,550✔
616

617
        assert(link);
1,550✔
618
        assert(link->network);
1,550✔
619
        assert(link->state != _LINK_STATE_INVALID);
1,550✔
620

621
        r = link_request_static_addresses(link);
1,550✔
622
        if (r < 0)
1,550✔
623
                return r;
624

625
        r = link_request_static_address_labels(link);
1,550✔
626
        if (r < 0)
1,550✔
627
                return r;
628

629
        r = link_request_static_bridge_fdb(link);
1,550✔
630
        if (r < 0)
1,550✔
631
                return r;
632

633
        r = link_request_static_bridge_mdb(link);
1,550✔
634
        if (r < 0)
1,550✔
635
                return r;
636

637
        r = link_request_static_ipv6_proxy_ndp_addresses(link);
1,550✔
638
        if (r < 0)
1,550✔
639
                return r;
640

641
        r = link_request_static_neighbors(link);
1,550✔
642
        if (r < 0)
1,550✔
643
                return r;
644

645
        r = link_request_static_nexthops(link, false);
1,550✔
646
        if (r < 0)
1,550✔
647
                return r;
648

649
        r = link_request_static_routes(link, false);
1,550✔
650
        if (r < 0)
1,550✔
651
                return r;
652

653
        r = link_request_static_routing_policy_rules(link);
1,550✔
654
        if (r < 0)
1,550✔
655
                return r;
×
656

657
        return 0;
658
}
659

660
int link_request_stacked_netdevs(Link *link, NetDevLocalAddressType type) {
11,848✔
661
        NetDev *netdev;
11,848✔
662
        int r;
11,848✔
663

664
        assert(link);
11,848✔
665

666
        if (!IN_SET(link->state, LINK_STATE_CONFIGURING, LINK_STATE_CONFIGURED))
11,848✔
667
                return 0;
11,848✔
668

669
        assert(link->network);
2,652✔
670

671
        link->stacked_netdevs_created = false;
2,652✔
672

673
        HASHMAP_FOREACH(netdev, link->network->stacked_netdevs) {
3,163✔
674
                if (!netdev_needs_reconfigure(netdev, type))
511✔
675
                        continue;
296✔
676

677
                r = link_request_stacked_netdev(link, netdev);
215✔
678
                if (r < 0)
215✔
679
                        return r;
×
680
        }
681

682
        if (link->create_stacked_netdev_messages == 0) {
2,652✔
683
                link->stacked_netdevs_created = true;
2,477✔
684
                link_check_ready(link);
2,477✔
685
        }
686

687
        return 0;
688
}
689

690
static int link_acquire_dynamic_ipv6_conf(Link *link) {
791✔
691
        int r;
791✔
692

693
        assert(link);
791✔
694

695
        r = radv_start(link);
791✔
696
        if (r < 0)
791✔
697
                return log_link_warning_errno(link, r, "Failed to start IPv6 Router Advertisement engine: %m");
×
698

699
        r = ndisc_start(link);
791✔
700
        if (r < 0)
791✔
701
                return log_link_warning_errno(link, r, "Failed to start IPv6 Router Discovery: %m");
×
702

703
        r = dhcp6_start(link);
791✔
704
        if (r < 0)
791✔
705
                return log_link_warning_errno(link, r, "Failed to start DHCPv6 client: %m");
×
706

707
        return 0;
708
}
709

710
static int link_acquire_dynamic_ipv4_conf(Link *link) {
947✔
711
        int r;
947✔
712

713
        assert(link);
947✔
714
        assert(link->manager);
947✔
715
        assert(link->manager->event);
947✔
716

717
        if (link->dhcp_client) {
947✔
718
                r = dhcp4_start(link);
1✔
719
                if (r < 0)
1✔
720
                        return log_link_warning_errno(link, r, "Failed to start DHCPv4 client: %m");
×
721

722
                log_link_debug(link, "Acquiring DHCPv4 lease.");
1✔
723

724
        } else if (link->ipv4ll) {
946✔
725
                if (in4_addr_is_set(&link->network->ipv4ll_start_address)) {
72✔
726
                        r = sd_ipv4ll_set_address(link->ipv4ll, &link->network->ipv4ll_start_address);
1✔
727
                        if (r < 0)
1✔
728
                                return log_link_warning_errno(link, r, "Could not set IPv4 link-local start address: %m");
×
729
                }
730

731
                r = ipv4ll_start(link);
72✔
732
                if (r < 0)
72✔
733
                        return log_link_warning_errno(link, r, "Could not acquire IPv4 link-local address: %m");
×
734
                if (r > 0)
72✔
735
                        log_link_debug(link, "Acquiring IPv4 link-local address.");
71✔
736
        }
737

738
        r = link_start_dhcp4_server(link);
947✔
739
        if (r < 0)
947✔
740
                return log_link_warning_errno(link, r, "Could not start DHCP server: %m");
×
741

742
        r = ipv4acd_start(link);
947✔
743
        if (r < 0)
947✔
744
                return log_link_warning_errno(link, r, "Could not start IPv4 ACD client: %m");
×
745

746
        return 0;
747
}
748

749
static int link_acquire_dynamic_conf(Link *link) {
947✔
750
        int r;
947✔
751

752
        assert(link);
947✔
753
        assert(link->network);
947✔
754

755
        r = link_acquire_dynamic_ipv4_conf(link);
947✔
756
        if (r < 0)
947✔
757
                return r;
758

759
        if (in6_addr_is_set(&link->ipv6ll_address)) {
947✔
760
                r = link_acquire_dynamic_ipv6_conf(link);
272✔
761
                if (r < 0)
272✔
762
                        return r;
763
        }
764

765
        if (!link_radv_enabled(link) || !link->network->dhcp_pd_announce) {
947✔
766
                /* DHCPv6PD downstream does not require IPv6LL address. But may require RADV to be
767
                 * configured, and RADV may not be configured yet here. Only acquire subnet prefix when
768
                 * RADV is disabled, or the announcement of the prefix is disabled. Otherwise, the
769
                 * below will be called in radv_start(). */
770
                r = dhcp_request_prefix_delegation(link);
873✔
771
                if (r < 0)
873✔
772
                        return log_link_warning_errno(link, r, "Failed to request DHCP delegated subnet prefix: %m");
×
773
        }
774

775
        if (link->lldp_tx) {
947✔
776
                r = sd_lldp_tx_start(link->lldp_tx);
7✔
777
                if (r < 0)
7✔
778
                        return log_link_warning_errno(link, r, "Failed to start LLDP transmission: %m");
×
779
        }
780

781
        if (link->lldp_rx) {
947✔
782
                r = sd_lldp_rx_start(link->lldp_rx);
829✔
783
                if (r < 0)
829✔
784
                        return log_link_warning_errno(link, r, "Failed to start LLDP client: %m");
2✔
785
        }
786

787
        return 0;
788
}
789

790
int link_ipv6ll_gained(Link *link) {
637✔
791
        int r;
637✔
792

793
        assert(link);
637✔
794

795
        log_link_info(link, "Gained IPv6LL");
637✔
796

797
        if (!IN_SET(link->state, LINK_STATE_CONFIGURING, LINK_STATE_CONFIGURED))
637✔
798
                return 0;
799

800
        r = link_acquire_dynamic_ipv6_conf(link);
519✔
801
        if (r < 0)
519✔
802
                return r;
803

804
        r = link_request_stacked_netdevs(link, NETDEV_LOCAL_ADDRESS_IPV6LL);
519✔
805
        if (r < 0)
519✔
806
                return r;
807

808
        link_check_ready(link);
519✔
809
        return 0;
519✔
810
}
811

812
int link_handle_bound_to_list(Link *link) {
39✔
813
        bool required_up = false;
39✔
814
        bool link_is_up = false;
39✔
815
        Link *l;
39✔
816

817
        assert(link);
39✔
818

819
        /* If at least one interface in bound_to_links has carrier, then make this interface up.
820
         * If all interfaces in bound_to_links do not, then make this interface down. */
821

822
        if (hashmap_isempty(link->bound_to_links))
39✔
823
                return 0;
39✔
824

825
        if (link->flags & IFF_UP)
32✔
826
                link_is_up = true;
18✔
827

828
        HASHMAP_FOREACH(l, link->bound_to_links)
50✔
829
                if (link_has_carrier(l)) {
38✔
830
                        required_up = true;
831
                        break;
832
                }
833

834
        if (!required_up && link_is_up)
32✔
835
                return link_request_to_bring_up_or_down(link, /* up= */ false);
7✔
836
        if (required_up && !link_is_up)
25✔
837
                return link_request_to_bring_up_or_down(link, /* up= */ true);
9✔
838

839
        return 0;
840
}
841

842
static int link_handle_bound_by_list(Link *link) {
4,633✔
843
        Link *l;
4,633✔
844
        int r;
4,633✔
845

846
        assert(link);
4,633✔
847

848
        /* Update up or down state of interfaces which depend on this interface's carrier state. */
849

850
        HASHMAP_FOREACH(l, link->bound_by_links) {
4,659✔
851
                r = link_handle_bound_to_list(l);
26✔
852
                if (r < 0)
26✔
853
                        return r;
×
854
        }
855

856
        return 0;
4,633✔
857
}
858

859
static int link_put_carrier(Link *link, Link *carrier, Hashmap **h) {
30✔
860
        int r;
30✔
861

862
        assert(link);
30✔
863
        assert(carrier);
30✔
864

865
        if (link == carrier)
30✔
866
                return 0;
867

868
        if (hashmap_get(*h, INT_TO_PTR(carrier->ifindex)))
30✔
869
                return 0;
870

871
        r = hashmap_ensure_put(h, NULL, INT_TO_PTR(carrier->ifindex), carrier);
24✔
872
        if (r < 0)
24✔
873
                return r;
874

875
        link_dirty(link);
24✔
876

877
        return 0;
24✔
878
}
879

880
static int link_new_bound_by_list(Link *link) {
2,630✔
881
        Manager *m;
2,630✔
882
        Link *carrier;
2,630✔
883
        int r;
2,630✔
884

885
        assert(link);
2,630✔
886
        assert(link->manager);
2,630✔
887

888
        m = link->manager;
2,630✔
889

890
        HASHMAP_FOREACH(carrier, m->links_by_index) {
18,463✔
891
                if (!carrier->network)
15,833✔
892
                        continue;
15,004✔
893

894
                if (strv_isempty(carrier->network->bind_carrier))
829✔
895
                        continue;
817✔
896

897
                if (strv_fnmatch(carrier->network->bind_carrier, link->ifname)) {
12✔
898
                        r = link_put_carrier(link, carrier, &link->bound_by_links);
8✔
899
                        if (r < 0)
8✔
900
                                return r;
×
901
                }
902
        }
903

904
        HASHMAP_FOREACH(carrier, link->bound_by_links) {
2,638✔
905
                r = link_put_carrier(carrier, link, &carrier->bound_to_links);
8✔
906
                if (r < 0)
8✔
907
                        return r;
×
908
        }
909

910
        return 0;
2,630✔
911
}
912

913
static int link_new_bound_to_list(Link *link) {
863✔
914
        Manager *m;
863✔
915
        Link *carrier;
863✔
916
        int r;
863✔
917

918
        assert(link);
863✔
919
        assert(link->manager);
863✔
920

921
        if (!link->network)
863✔
922
                return 0;
863✔
923

924
        if (strv_isempty(link->network->bind_carrier))
863✔
925
                return 0;
926

927
        m = link->manager;
7✔
928

929
        HASHMAP_FOREACH(carrier, m->links_by_index) {
60✔
930
                if (strv_fnmatch(link->network->bind_carrier, carrier->ifname)) {
46✔
931
                        r = link_put_carrier(link, carrier, &link->bound_to_links);
7✔
932
                        if (r < 0)
7✔
933
                                return r;
×
934
                }
935
        }
936

937
        HASHMAP_FOREACH(carrier, link->bound_to_links) {
14✔
938
                r = link_put_carrier(carrier, link, &carrier->bound_by_links);
7✔
939
                if (r < 0)
7✔
940
                        return r;
×
941
        }
942

943
        return 0;
7✔
944
}
945

946
static void link_free_bound_to_list(Link *link) {
3,704✔
947
        bool updated = false;
3,704✔
948
        Link *bound_to;
3,704✔
949

950
        assert(link);
3,704✔
951

952
        while ((bound_to = hashmap_steal_first(link->bound_to_links))) {
3,708✔
953
                updated = true;
4✔
954

955
                if (hashmap_remove(bound_to->bound_by_links, INT_TO_PTR(link->ifindex)))
4✔
956
                        link_dirty(bound_to);
4✔
957
        }
958

959
        if (updated)
3,704✔
960
                link_dirty(link);
2✔
961
}
3,704✔
962

963
static void link_free_bound_by_list(Link *link) {
864✔
964
        bool updated = false;
864✔
965
        Link *bound_by;
864✔
966

967
        assert(link);
864✔
968

969
        while ((bound_by = hashmap_steal_first(link->bound_by_links))) {
870✔
970
                updated = true;
6✔
971

972
                if (hashmap_remove(bound_by->bound_to_links, INT_TO_PTR(link->ifindex))) {
6✔
973
                        link_dirty(bound_by);
6✔
974
                        link_handle_bound_to_list(bound_by);
6✔
975
                }
976
        }
977

978
        if (updated)
864✔
979
                link_dirty(link);
6✔
980
}
864✔
981

982
static int link_append_to_master(Link *link) {
10,651✔
983
        Link *master;
10,651✔
984
        int r;
10,651✔
985

986
        assert(link);
10,651✔
987

988
        /* - The link may have no master.
989
         * - RTM_NEWLINK message about master interface may not be received yet. */
990
        if (link_get_master(link, &master) < 0)
10,651✔
991
                return 0;
10,651✔
992

993
        r = set_ensure_put(&master->slaves, &link_hash_ops, link);
503✔
994
        if (r <= 0)
503✔
995
                return r;
996

997
        link_ref(link);
46✔
998
        return 0;
999
}
1000

1001
static void link_drop_from_master(Link *link) {
923✔
1002
        Link *master;
923✔
1003

1004
        assert(link);
923✔
1005

1006
        if (!link->manager)
923✔
1007
                return;
880✔
1008

1009
        if (link_get_master(link, &master) < 0)
923✔
1010
                return;
1011

1012
        link_unref(set_remove(master->slaves, link));
43✔
1013
}
1014

1015
static int link_drop_requests(Link *link) {
3,704✔
1016
        Request *req;
3,704✔
1017
        int ret = 0;
3,704✔
1018

1019
        assert(link);
3,704✔
1020
        assert(link->manager);
3,704✔
1021

1022
        ORDERED_SET_FOREACH(req, link->manager->request_queue) {
5,756✔
1023
                if (req->link != link)
2,052✔
1024
                        continue;
1,965✔
1025

1026
                /* If the request is already called, but its reply is not received, then we need to
1027
                 * drop the configuration (e.g. address) here. Note, if the configuration is known,
1028
                 * it will be handled later by link_drop_unmanaged_addresses() or so. */
1029
                if (req->waiting_reply && link->state != LINK_STATE_LINGER)
87✔
1030
                        switch (req->type) {
2✔
1031
                        case REQUEST_TYPE_ADDRESS: {
2✔
1032
                                Address *address = ASSERT_PTR(req->userdata);
2✔
1033

1034
                                if (address_get(link, address, NULL) < 0)
2✔
1035
                                        RET_GATHER(ret, address_remove(address, link));
1✔
1036
                                break;
1037
                        }
1038
                        case REQUEST_TYPE_NEIGHBOR: {
×
1039
                                Neighbor *neighbor = ASSERT_PTR(req->userdata);
×
1040

1041
                                if (neighbor_get(link, neighbor, NULL) < 0)
×
1042
                                        RET_GATHER(ret, neighbor_remove(neighbor, link));
×
1043
                                break;
1044
                        }
1045
                        case REQUEST_TYPE_NEXTHOP: {
×
1046
                                NextHop *nexthop = ASSERT_PTR(req->userdata);
×
1047

1048
                                if (nexthop_get_by_id(link->manager, nexthop->id, NULL) < 0)
×
1049
                                        RET_GATHER(ret, nexthop_remove(nexthop, link->manager));
×
1050
                                break;
1051
                        }
UNCOV
1052
                        case REQUEST_TYPE_ROUTE: {
×
UNCOV
1053
                                Route *route = ASSERT_PTR(req->userdata);
×
1054

UNCOV
1055
                                if (route_get(link->manager, route, NULL) < 0)
×
1056
                                        RET_GATHER(ret, route_remove(route, link->manager));
×
1057
                                break;
1058
                        }
1059
                        default:
85✔
1060
                                ;
87✔
1061
                        }
1062

1063
                request_detach(req);
87✔
1064
        }
1065

1066
        return ret;
3,704✔
1067
}
1068

1069
static Link *link_drop(Link *link) {
887✔
1070
        if (!link)
887✔
1071
                return NULL;
1072

1073
        assert(link->manager);
864✔
1074

1075
        bool notify = link_has_local_lease_domain(link);
864✔
1076

1077
        link_set_state(link, LINK_STATE_LINGER);
864✔
1078

1079
        /* Drop all references from other links and manager. Note that async netlink calls may have
1080
         * references to the link, and they will be dropped when we receive replies. */
1081

1082
        (void) link_drop_requests(link);
864✔
1083

1084
        link_free_bound_to_list(link);
864✔
1085
        link_free_bound_by_list(link);
864✔
1086

1087
        link_clear_sr_iov_ifindices(link);
864✔
1088

1089
        link_drop_from_master(link);
864✔
1090

1091
        if (link->state_file)
864✔
1092
                (void) unlink(link->state_file);
864✔
1093

1094
        link_clean(link);
864✔
1095

1096
        STRV_FOREACH(n, link->alternative_names)
898✔
1097
                hashmap_remove(link->manager->links_by_name, *n);
34✔
1098
        hashmap_remove(link->manager->links_by_name, link->ifname);
864✔
1099

1100
        /* bonding master and its slaves have the same hardware address. */
1101
        hashmap_remove_value(link->manager->links_by_hw_addr, &link->hw_addr, link);
864✔
1102

1103
        /* The following must be called at last. */
1104
        assert_se(hashmap_remove(link->manager->links_by_index, INT_TO_PTR(link->ifindex)) == link);
864✔
1105

1106
        if (notify)
864✔
1107
                manager_notify_hook_filters(link->manager);
3✔
1108

1109
        return link_unref(link);
864✔
1110
}
1111

1112
static int link_drop_unmanaged_config(Link *link) {
863✔
1113
        int r;
863✔
1114

1115
        assert(link);
863✔
1116
        assert(link->state == LINK_STATE_CONFIGURING);
863✔
1117
        assert(link->manager);
863✔
1118

1119
        r = link_drop_unmanaged_routes(link);
863✔
1120
        RET_GATHER(r, link_drop_unmanaged_nexthops(link));
863✔
1121
        RET_GATHER(r, link_drop_unmanaged_addresses(link));
863✔
1122
        RET_GATHER(r, link_drop_unmanaged_neighbors(link));
863✔
1123
        RET_GATHER(r, link_drop_unmanaged_routing_policy_rules(link));
863✔
1124

1125
        return r;
863✔
1126
}
1127

1128
static int link_drop_static_config(Link *link) {
2,655✔
1129
        int r;
2,655✔
1130

1131
        assert(link);
2,655✔
1132
        assert(link->manager);
2,655✔
1133

1134
        r = link_drop_static_routes(link);
2,655✔
1135
        RET_GATHER(r, link_drop_static_nexthops(link));
2,655✔
1136
        RET_GATHER(r, link_drop_static_addresses(link));
2,655✔
1137
        RET_GATHER(r, link_drop_static_neighbors(link));
2,655✔
1138
        RET_GATHER(r, link_drop_static_routing_policy_rules(link));
2,655✔
1139

1140
        return r;
2,655✔
1141
}
1142

1143
static int link_drop_dynamic_config(Link *link, Network *network) {
825✔
1144
        int r;
825✔
1145

1146
        assert(link);
825✔
1147
        assert(link->network);
825✔
1148

1149
        /* Drop unnecessary dynamic configurations gracefully, e.g. drop DHCP lease in the case that
1150
         * previously DHCP=yes and now DHCP=no, but keep DHCP lease when DHCP setting is unchanged. */
1151

1152
        r = link_drop_ndisc_config(link, network);
825✔
1153
        RET_GATHER(r, link_drop_radv_config(link, network)); /* Stop before dropping DHCP-PD prefixes. */
825✔
1154
        RET_GATHER(r, link_drop_ipv4ll_config(link, network)); /* Stop before DHCPv4 client. */
825✔
1155
        RET_GATHER(r, link_drop_dhcp4_config(link, network));
825✔
1156
        RET_GATHER(r, link_drop_dhcp6_config(link, network));
825✔
1157
        RET_GATHER(r, link_drop_dhcp_pd_config(link, network));
825✔
1158
        link->dhcp_server = sd_dhcp_server_unref(link->dhcp_server);
825✔
1159
        link->lldp_rx = sd_lldp_rx_unref(link->lldp_rx); /* TODO: keep the received neighbors. */
825✔
1160
        link->lldp_tx = sd_lldp_tx_unref(link->lldp_tx);
825✔
1161

1162
        /* Even if we do not release DHCP lease or so, reset 'configured' flags. Otherwise, e.g. if
1163
         * previously UseDNS= was disabled but is now enabled, link will enter configured state before
1164
         * expected DNS servers being acquired. */
1165
        link->ipv4ll_address_configured = false;
825✔
1166
        link->dhcp4_configured = false;
825✔
1167
        link->dhcp6_configured = false;
825✔
1168
        link->dhcp_pd_configured = false;
825✔
1169
        link->ndisc_configured = false;
825✔
1170

1171
        return r;
825✔
1172
}
1173

1174
static int link_configure(Link *link) {
863✔
1175
        int r;
863✔
1176

1177
        assert(link);
863✔
1178
        assert(link->network);
863✔
1179
        assert(link->state == LINK_STATE_INITIALIZED);
863✔
1180

1181
        link_set_state(link, LINK_STATE_CONFIGURING);
863✔
1182

1183
        r = link_drop_unmanaged_config(link);
863✔
1184
        if (r < 0)
863✔
1185
                return r;
1186

1187
        r = link_new_bound_to_list(link);
863✔
1188
        if (r < 0)
863✔
1189
                return r;
1190

1191
        r = link_request_traffic_control(link);
863✔
1192
        if (r < 0)
863✔
1193
                return r;
1194

1195
        r = link_configure_mtu(link);
863✔
1196
        if (r < 0)
863✔
1197
                return r;
1198

1199
        if (link->iftype == ARPHRD_CAN) {
863✔
1200
                /* let's shortcut things for CAN which doesn't need most of what's done below. */
1201
                r = link_request_to_set_can(link);
6✔
1202
                if (r < 0)
6✔
1203
                        return r;
1204

1205
                return link_request_to_activate(link);
6✔
1206
        }
1207

1208
        r = link_request_sr_iov_vfs(link);
857✔
1209
        if (r < 0)
857✔
1210
                return r;
1211

1212
        r = link_set_sysctl(link);
857✔
1213
        if (r < 0)
857✔
1214
                return r;
1215

1216
        r = link_request_to_set_mac(link, /* allow_retry= */ true);
857✔
1217
        if (r < 0)
857✔
1218
                return r;
1219

1220
        r = link_request_to_set_ipoib(link);
857✔
1221
        if (r < 0)
857✔
1222
                return r;
1223

1224
        r = link_request_to_set_flags(link);
857✔
1225
        if (r < 0)
857✔
1226
                return r;
1227

1228
        r = link_request_to_set_group(link);
857✔
1229
        if (r < 0)
857✔
1230
                return r;
1231

1232
        r = link_request_to_set_addrgen_mode(link);
857✔
1233
        if (r < 0)
857✔
1234
                return r;
1235

1236
        r = link_request_to_set_master(link);
857✔
1237
        if (r < 0)
857✔
1238
                return r;
1239

1240
        r = link_request_stacked_netdevs(link, _NETDEV_LOCAL_ADDRESS_TYPE_INVALID);
857✔
1241
        if (r < 0)
857✔
1242
                return r;
1243

1244
        r = link_request_to_set_bond(link);
857✔
1245
        if (r < 0)
857✔
1246
                return r;
1247

1248
        r = link_request_to_set_bridge(link);
857✔
1249
        if (r < 0)
857✔
1250
                return r;
1251

1252
        r = link_request_to_set_bridge_vlan(link);
857✔
1253
        if (r < 0)
857✔
1254
                return r;
1255

1256
        r = link_request_to_activate(link);
857✔
1257
        if (r < 0)
857✔
1258
                return r;
1259

1260
        r = ipv4ll_configure(link);
857✔
1261
        if (r < 0)
857✔
1262
                return r;
1263

1264
        r = link_request_dhcp4_client(link);
857✔
1265
        if (r < 0)
857✔
1266
                return r;
1267

1268
        r = link_request_dhcp6_client(link);
857✔
1269
        if (r < 0)
857✔
1270
                return r;
1271

1272
        r = link_request_ndisc(link);
857✔
1273
        if (r < 0)
857✔
1274
                return r;
1275

1276
        r = link_request_dhcp_server(link);
857✔
1277
        if (r < 0)
857✔
1278
                return r;
1279

1280
        r = link_request_radv(link);
857✔
1281
        if (r < 0)
857✔
1282
                return r;
1283

1284
        r = link_lldp_rx_configure(link);
857✔
1285
        if (r < 0)
857✔
1286
                return r;
1287

1288
        r = link_lldp_tx_configure(link);
857✔
1289
        if (r < 0)
857✔
1290
                return r;
1291

1292
        r = link_request_static_configs(link);
857✔
1293
        if (r < 0)
857✔
1294
                return r;
1295

1296
        if (!link_has_carrier(link))
857✔
1297
                return 0;
1298

1299
        return link_acquire_dynamic_conf(link);
253✔
1300
}
1301

1302
static int link_get_network(Link *link, Network **ret) {
4,800✔
1303
        Network *network;
4,800✔
1304
        int r;
4,800✔
1305

1306
        assert(link);
4,800✔
1307
        assert(link->manager);
4,800✔
1308
        assert(ret);
4,800✔
1309

1310
        ORDERED_HASHMAP_FOREACH(network, link->manager->networks) {
19,808✔
1311
                bool warn = false;
18,730✔
1312

1313
                r = net_match_config(
37,460✔
1314
                                &network->match,
18,730✔
1315
                                link->dev,
1316
                                &link->hw_addr,
18,730✔
1317
                                &link->permanent_hw_addr,
18,730✔
1318
                                link->driver,
18,730✔
1319
                                link->iftype,
18,730✔
1320
                                link->kind,
18,730✔
1321
                                link->ifname,
18,730✔
1322
                                link->alternative_names,
18,730✔
1323
                                link->wlan_iftype,
1324
                                link->ssid,
18,730✔
1325
                                &link->bssid);
18,730✔
1326
                if (r < 0)
18,730✔
1327
                        return r;
3,722✔
1328
                if (r == 0)
18,730✔
1329
                        continue;
15,008✔
1330

1331
                if (network->match.ifname && link->dev) {
3,722✔
1332
                        uint8_t name_assign_type = NET_NAME_UNKNOWN;
3,694✔
1333
                        const char *attr;
3,694✔
1334

1335
                        if (sd_device_get_sysattr_value(link->dev, "name_assign_type", &attr) >= 0)
3,694✔
1336
                                (void) safe_atou8(attr, &name_assign_type);
2,166✔
1337

1338
                        warn = name_assign_type == NET_NAME_ENUM;
3,694✔
1339
                }
1340

1341
                log_link_full(link, warn ? LOG_WARNING : LOG_DEBUG,
7,444✔
1342
                              "Found matching .network file%s: %s",
1343
                              warn ? ", based on potentially unpredictable interface name" : "",
1344
                              network->filename);
1345

1346
                if (network->unmanaged)
3,722✔
1347
                        return -ENOENT;
1348

1349
                *ret = network;
1,853✔
1350
                return 0;
1,853✔
1351
        }
1352

1353
        return log_link_debug_errno(link, SYNTHETIC_ERRNO(ENOENT), "No matching .network found.");
1,078✔
1354
}
1355

1356
static void link_enter_unmanaged(Link *link) {
2,947✔
1357
        assert(link);
2,947✔
1358

1359
        if (link->state == LINK_STATE_UNMANAGED)
2,947✔
1360
                return;
1361

1362
        bool notify = link_has_local_lease_domain(link);
1,977✔
1363

1364
        log_link_full(link, link->state == LINK_STATE_INITIALIZED ? LOG_DEBUG : LOG_INFO,
1,983✔
1365
                      "Unmanaging interface.");
1366

1367
        (void) link_stop_engines(link, /* may_keep_dynamic= */ false);
1,977✔
1368
        (void) link_drop_requests(link);
1,977✔
1369
        (void) link_drop_static_config(link);
1,977✔
1370

1371
        /* The bound_to map depends on .network file, hence it needs to be freed. But, do not free the
1372
         * bound_by map. Otherwise, if a link enters unmanaged state below, then its carrier state will
1373
         * not propagated to other interfaces anymore. Moreover, it is not necessary to recreate the
1374
         * map here, as it depends on .network files assigned to other links. */
1375
        link_free_bound_to_list(link);
1,977✔
1376
        link_free_engines(link);
1,977✔
1377

1378
        link->network = network_unref(link->network);
1,977✔
1379
        link_set_state(link, LINK_STATE_UNMANAGED);
1,977✔
1380

1381
        if (notify)
1,977✔
1382
                manager_notify_hook_filters(link->manager);
×
1383
}
1384

1385
static int link_managed_by_us(Link *link) {
7,462✔
1386
        int r;
7,462✔
1387

1388
        assert(link);
7,462✔
1389

1390
        if (!link->dev)
7,462✔
1391
                return true;
7,462✔
1392

1393
        const char *s;
7,341✔
1394
        r = sd_device_get_property_value(link->dev, "ID_NET_MANAGED_BY", &s);
7,341✔
1395
        if (r == -ENOENT)
7,341✔
1396
                return true;
1397
        if (r < 0)
42✔
1398
                return log_link_warning_errno(link, r, "Failed to get ID_NET_MANAGED_BY udev property: %m");
×
1399

1400
        if (streq(s, "io.systemd.Network"))
42✔
1401
                return true;
1402

1403
        if (link->state == LINK_STATE_UNMANAGED)
3✔
1404
                return false; /* Already in unmanaged state */
1405

1406
        log_link_debug(link, "Interface is requested to be managed by '%s', unmanaging the interface.", s);
1✔
1407
        link_set_state(link, LINK_STATE_UNMANAGED);
1✔
1408
        return false;
1409
}
1410

1411
int link_reconfigure_impl(Link *link, LinkReconfigurationFlag flags) {
5,730✔
1412
        Network *network = NULL;
5,730✔
1413
        int r;
5,730✔
1414

1415
        assert(link);
5,730✔
1416
        assert(link->manager);
5,730✔
1417

1418
        link_assign_netdev(link);
5,730✔
1419

1420
        if (link->manager->state != MANAGER_RUNNING)
5,730✔
1421
                return 0;
5,730✔
1422

1423
        if (IN_SET(link->state, LINK_STATE_PENDING, LINK_STATE_LINGER))
5,730✔
1424
                return 0;
1425

1426
        r = link_managed_by_us(link);
4,802✔
1427
        if (r <= 0)
4,802✔
1428
                return r;
1429

1430
        r = link_get_network(link, &network);
4,800✔
1431
        if (r == -ENOENT) {
4,800✔
1432
                link_enter_unmanaged(link);
2,947✔
1433
                return 0;
2,947✔
1434
        }
1435
        if (r < 0)
1,853✔
1436
                return r;
1437

1438
        if (link->network == network && !FLAGS_SET(flags, LINK_RECONFIGURE_UNCONDITIONALLY))
1,853✔
1439
                return 0;
1440

1441
        _cleanup_free_ char *joined = strv_join(network->dropins, ", ");
1,726✔
1442
        if (link->network)
863✔
1443
                log_link_info(link, "Reconfiguring with %s%s%s%s.",
594✔
1444
                              network->filename,
1445
                              isempty(joined) ? "" : " (dropins: ",
1446
                              joined,
1447
                              isempty(joined) ? "" : ")");
1448
        else
1449
                log_link_info(link, "Configuring with %s%s%s%s.",
1,995✔
1450
                              network->filename,
1451
                              isempty(joined) ? "" : " (dropins: ",
1452
                              joined,
1453
                              isempty(joined) ? "" : ")");
1454

1455
        /* Dropping configurations based on the old .network file. */
1456
        r = link_drop_requests(link);
863✔
1457
        if (r < 0)
863✔
1458
                return r;
1459

1460
        /* The bound_to map depends on .network file, hence it needs to be freed. But, do not free the
1461
         * bound_by map. Otherwise, if a link enters unmanaged state below, then its carrier state will
1462
         * not propagated to other interfaces anymore. Moreover, it is not necessary to recreate the
1463
         * map here, as it depends on .network files assigned to other links. */
1464
        link_free_bound_to_list(link);
863✔
1465

1466
        _cleanup_(network_unrefp) Network *old_network = TAKE_PTR(link->network);
863✔
1467

1468
        /* Then, apply new .network file */
1469
        link->network = network_ref(network);
863✔
1470

1471
        if (FLAGS_SET(network->keep_configuration, KEEP_CONFIGURATION_DYNAMIC) ||
863✔
1472
            !FLAGS_SET(flags, LINK_RECONFIGURE_CLEANLY)) {
856✔
1473
                /* To make 'networkctl reconfigure INTERFACE' work safely for an interface whose new .network
1474
                 * file has KeepConfiguration=dynamic or yes, even if a clean reconfiguration is requested,
1475
                 * drop only unnecessary or possibly being changed dynamic configurations here. */
1476
                r = link_drop_dynamic_config(link, old_network);
825✔
1477
                if (r < 0)
825✔
1478
                        return r;
1479
        } else {
1480
                /* Otherwise, stop DHCP client and friends unconditionally, and drop all dynamic
1481
                 * configurations like DHCP address and routes. */
1482
                r = link_stop_engines(link, /* may_keep_dynamic= */ false);
38✔
1483
                if (r < 0)
38✔
1484
                        return r;
1485

1486
                /* Free DHCP client and friends. */
1487
                link_free_engines(link);
38✔
1488
        }
1489

1490
        link_update_operstate(link, true);
863✔
1491
        link_dirty(link);
863✔
1492

1493
        link_set_state(link, LINK_STATE_INITIALIZED);
863✔
1494
        link->activated = false;
863✔
1495

1496
        r = link_configure(link);
863✔
1497
        if (r < 0)
863✔
1498
                return r;
1✔
1499

1500
        return 1;
1501
}
1502

1503
typedef struct LinkReconfigurationData {
1504
        Manager *manager;
1505
        Link *link;
1506
        LinkReconfigurationFlag flags;
1507
        sd_bus_message *message;
1508
        unsigned *counter;
1509
} LinkReconfigurationData;
1510

1511
static LinkReconfigurationData* link_reconfiguration_data_free(LinkReconfigurationData *data) {
1,365✔
1512
        if (!data)
1,365✔
1513
                return NULL;
1514

1515
        link_unref(data->link);
1,365✔
1516
        sd_bus_message_unref(data->message);
1,365✔
1517

1518
        return mfree(data);
1,365✔
1519
}
1520

1521
DEFINE_TRIVIAL_CLEANUP_FUNC(LinkReconfigurationData*, link_reconfiguration_data_free);
1,365✔
1522

1523
static void link_reconfiguration_data_destroy_callback(LinkReconfigurationData *data) {
1,365✔
1524
        int r;
1,365✔
1525

1526
        assert(data);
1,365✔
1527

1528
        if (data->message) {
1,365✔
1529
                if (data->counter) {
1,259✔
1530
                        assert(*data->counter > 0);
1,221✔
1531
                        (*data->counter)--;
1,221✔
1532
                }
1533

1534
                if (!data->counter || *data->counter <= 0) {
1,259✔
1535
                        /* Update the state files before replying the bus method. Otherwise,
1536
                         * systemd-networkd-wait-online following networkctl reload/reconfigure may read an
1537
                         * outdated state file and wrongly handle an interface is already in the configured
1538
                         * state. */
1539
                        (void) manager_clean_all(data->manager);
191✔
1540

1541
                        r = sd_bus_reply_method_return(data->message, NULL);
191✔
1542
                        if (r < 0)
191✔
1543
                                log_warning_errno(r, "Failed to reply for DBus method, ignoring: %m");
×
1544
                }
1545
        }
1546

1547
        link_reconfiguration_data_free(data);
1,365✔
1548
}
1,365✔
1549

1550
static int link_reconfigure_handler(sd_netlink *rtnl, sd_netlink_message *m, LinkReconfigurationData *data) {
1,365✔
1551
        Link *link = ASSERT_PTR(ASSERT_PTR(data)->link);
1,365✔
1552
        int r;
1,365✔
1553

1554
        r = link_getlink_handler_internal(rtnl, m, link, "Failed to update link state");
1,365✔
1555
        if (r <= 0)
1,365✔
1556
                return r;
1557

1558
        r = link_reconfigure_impl(link, data->flags);
1,358✔
1559
        if (r < 0) {
1,358✔
1560
                link_enter_failed(link);
×
1561
                return 0;
×
1562
        }
1563

1564
        return r;
1565
}
1566

1567
int link_reconfigure_full(Link *link, LinkReconfigurationFlag flags, sd_bus_message *message, unsigned *counter) {
1,365✔
1568
        _cleanup_(sd_netlink_message_unrefp) sd_netlink_message *req = NULL;
1,365✔
1569
        _cleanup_(link_reconfiguration_data_freep) LinkReconfigurationData *data = NULL;
1,365✔
1570
        int r;
1,365✔
1571

1572
        assert(link);
1,365✔
1573
        assert(link->manager);
1,365✔
1574
        assert(link->manager->rtnl);
1,365✔
1575

1576
        /* When the link is in the pending or initialized state, link_reconfigure_impl() will be called later
1577
         * by link_initialized() or link_initialized_and_synced(). To prevent the function from being called
1578
         * multiple times simultaneously, let's refuse to reconfigure the interface here in such cases. */
1579
        if (IN_SET(link->state, LINK_STATE_PENDING, LINK_STATE_INITIALIZED, LINK_STATE_LINGER))
1,365✔
1580
                return 0; /* 0 means no-op. */
1581

1582
        data = new(LinkReconfigurationData, 1);
1,365✔
1583
        if (!data) {
1,365✔
1584
                r = -ENOMEM;
×
1585
                goto failed;
×
1586
        }
1587

1588
        *data = (LinkReconfigurationData) {
2,730✔
1589
                .manager = link->manager,
1,365✔
1590
                .link = link_ref(link),
1,365✔
1591
                .flags = flags,
1592
                .message = sd_bus_message_ref(message), /* message may be NULL, but _ref() works fine. */
1,365✔
1593
                .counter = counter,
1594
        };
1595

1596
        r = sd_rtnl_message_new_link(link->manager->rtnl, &req, RTM_GETLINK, link->ifindex);
1,365✔
1597
        if (r < 0)
1,365✔
1598
                goto failed;
×
1599

1600
        r = netlink_call_async(link->manager->rtnl, NULL, req,
1,365✔
1601
                               link_reconfigure_handler,
1602
                               link_reconfiguration_data_destroy_callback, data);
1603
        if (r < 0)
1,365✔
1604
                goto failed;
×
1605

1606
        TAKE_PTR(data);
1,365✔
1607
        if (counter)
1,365✔
1608
                (*counter)++;
1,221✔
1609

1610
        if (link->state == LINK_STATE_FAILED)
1,365✔
1611
                link_set_state(link, LINK_STATE_INITIALIZED);
7✔
1612

1613
        return 1; /* 1 means the interface will be reconfigured, and bus method will be replied later. */
1614

1615
failed:
1616
        log_link_warning_errno(link, r, "Failed to reconfigure interface: %m");
×
1617
        link_enter_failed(link);
×
1618
        return r;
1619
}
1620

1621
static int link_initialized_and_synced(Link *link) {
2,638✔
1622
        int r;
2,638✔
1623

1624
        assert(link);
2,638✔
1625
        assert(link->manager);
2,638✔
1626

1627
        if (link->state == LINK_STATE_PENDING) {
2,638✔
1628
                log_link_debug(link, "Link state is up-to-date");
2,630✔
1629
                link_set_state(link, LINK_STATE_INITIALIZED);
2,630✔
1630

1631
                r = link_new_bound_by_list(link);
2,630✔
1632
                if (r < 0)
2,630✔
1633
                        return r;
1634

1635
                r = link_handle_bound_by_list(link);
2,630✔
1636
                if (r < 0)
2,630✔
1637
                        return r;
1638
        }
1639

1640
        return link_reconfigure_impl(link, /* flags= */ 0);
2,638✔
1641
}
1642

1643
static int link_initialized_handler(sd_netlink *rtnl, sd_netlink_message *m, Link *link) {
2,561✔
1644
        int r;
2,561✔
1645

1646
        r = link_getlink_handler_internal(rtnl, m, link, "Failed to wait for the interface to be initialized");
2,561✔
1647
        if (r <= 0)
2,561✔
1648
                return r;
1649

1650
        r = link_initialized_and_synced(link);
2,560✔
1651
        if (r < 0)
2,560✔
1652
                link_enter_failed(link);
1✔
1653

1654
        return 0;
1655
}
1656

1657
static int link_initialized(Link *link, sd_device *device) {
2,660✔
1658
        int r;
2,660✔
1659

1660
        assert(link);
2,660✔
1661
        assert(device);
2,660✔
1662

1663
        /* Always replace with the new sd_device object. As the sysname (and possibly other properties
1664
         * or sysattrs) may be outdated. */
1665
        device_unref_and_replace(link->dev, device);
2,660✔
1666

1667
        r = link_managed_by_us(link);
2,660✔
1668
        if (r <= 0)
2,660✔
1669
                return r;
1670

1671
        if (link->dhcp_client) {
2,659✔
1672
                r = sd_dhcp_client_attach_device(link->dhcp_client, link->dev);
×
1673
                if (r < 0)
×
1674
                        log_link_warning_errno(link, r, "Failed to attach device to DHCPv4 client, ignoring: %m");
×
1675
        }
1676

1677
        if (link->dhcp6_client) {
2,659✔
1678
                r = sd_dhcp6_client_attach_device(link->dhcp6_client, link->dev);
×
1679
                if (r < 0)
×
1680
                        log_link_warning_errno(link, r, "Failed to attach device to DHCPv6 client, ignoring: %m");
×
1681
        }
1682

1683
        r = link_set_sr_iov_ifindices(link);
2,659✔
1684
        if (r < 0)
2,659✔
1685
                log_link_warning_errno(link, r, "Failed to manage SR-IOV PF and VF ports, ignoring: %m");
×
1686

1687
        if (link->state != LINK_STATE_PENDING)
2,659✔
1688
                return link_reconfigure(link, /* flags= */ 0);
98✔
1689

1690
        log_link_debug(link, "udev initialized link");
2,561✔
1691

1692
        /* udev has initialized the link, but we don't know if we have yet
1693
         * processed the NEWLINK messages with the latest state. Do a GETLINK,
1694
         * when it returns we know that the pending NEWLINKs have already been
1695
         * processed and that we are up-to-date */
1696

1697
        return link_call_getlink(link, link_initialized_handler);
2,561✔
1698
}
1699

1700
int link_check_initialized(Link *link) {
2,809✔
1701
        _cleanup_(sd_device_unrefp) sd_device *device = NULL;
2,809✔
1702
        int r;
2,809✔
1703

1704
        assert(link);
2,809✔
1705

1706
        if (!udev_available())
2,809✔
1707
                return link_initialized_and_synced(link);
78✔
1708

1709
        /* udev should be around */
1710
        r = sd_device_new_from_ifindex(&device, link->ifindex);
2,731✔
1711
        if (r < 0) {
2,731✔
1712
                log_link_debug_errno(link, r, "Could not find device, waiting for device initialization: %m");
1✔
1713
                return 0;
1✔
1714
        }
1715

1716
        r = device_is_processed(device);
2,730✔
1717
        if (r < 0)
2,730✔
1718
                return log_link_warning_errno(link, r, "Could not determine whether the device is processed by udevd: %m");
×
1719
        if (r == 0) {
2,730✔
1720
                /* not yet ready */
1721
                log_link_debug(link, "link pending udev initialization...");
952✔
1722
                return 0;
952✔
1723
        }
1724

1725
        r = device_is_renaming(device);
1,778✔
1726
        if (r < 0)
1,778✔
1727
                return log_link_warning_errno(link, r, "Failed to determine the device is being renamed: %m");
×
1728
        if (r > 0) {
1,778✔
1729
                log_link_debug(link, "Interface is being renamed, pending initialization.");
×
1730
                return 0;
×
1731
        }
1732

1733
        return link_initialized(link, device);
1,778✔
1734
}
1735

1736
int manager_udev_process_link(Manager *m, sd_device *device, sd_device_action_t action) {
1,952✔
1737
        int r, ifindex;
1,952✔
1738
        Link *link;
1,952✔
1739

1740
        assert(m);
1,952✔
1741
        assert(device);
1,952✔
1742

1743
        r = sd_device_get_ifindex(device, &ifindex);
1,952✔
1744
        if (r < 0)
1,952✔
1745
                return log_device_debug_errno(device, r, "Failed to get ifindex: %m");
×
1746

1747
        r = link_get_by_index(m, ifindex, &link);
1,952✔
1748
        if (r < 0) {
1,952✔
1749
                /* This error is not critical, as the corresponding rtnl message may be received later. */
1750
                log_device_debug_errno(device, r, "Failed to get link from ifindex %i, ignoring: %m", ifindex);
680✔
1751
                return 0;
680✔
1752
        }
1753

1754
        /* Let's unref the sd-device object assigned to the corresponding Link object, but keep the Link
1755
         * object here. It will be removed only when rtnetlink says so. */
1756
        if (action == SD_DEVICE_REMOVE) {
1,272✔
1757
                link->dev = sd_device_unref(link->dev);
381✔
1758
                return 0;
381✔
1759
        }
1760

1761
        r = device_is_renaming(device);
891✔
1762
        if (r < 0)
891✔
1763
                return log_device_debug_errno(device, r, "Failed to determine if the device is renaming or not: %m");
×
1764
        if (r > 0) {
891✔
1765
                log_device_debug(device, "Device is renaming, waiting for the interface to be renamed.");
9✔
1766
                /* TODO:
1767
                 * What happens when a device is initialized, then soon renamed after that? When we detect
1768
                 * such, maybe we should cancel or postpone all queued requests for the interface. */
1769
                return 0;
9✔
1770
        }
1771

1772
        r = link_initialized(link, device);
882✔
1773
        if (r < 0)
882✔
1774
                link_enter_failed(link);
×
1775

1776
        return 0;
1777
}
1778

1779
static int link_carrier_gained(Link *link) {
1,266✔
1780
        LinkReconfigurationFlag flags = 0;
1,266✔
1781
        int r;
1,266✔
1782

1783
        assert(link);
1,266✔
1784

1785
        log_link_info(link, "Gained carrier");
1,266✔
1786

1787
        r = event_source_disable(link->carrier_lost_timer);
1,266✔
1788
        if (r < 0)
1,266✔
1789
                log_link_warning_errno(link, r, "Failed to disable carrier lost timer, ignoring: %m");
×
1790

1791
        /* Process BindCarrier= setting specified by other interfaces. This is independent of the .network
1792
         * file assigned to this interface, but depends on .network files assigned to other interfaces.
1793
         * Hence, this can and should be called earlier. */
1794
        r = link_handle_bound_by_list(link);
1,266✔
1795
        if (r < 0)
1,266✔
1796
                return r;
1797

1798
        /* If a wireless interface was connected to an access point, and the SSID is changed (that is,
1799
         * both previous_ssid and ssid are non-NULL), then the connected wireless network could be
1800
         * changed. So, always reconfigure the link. Which means e.g. the DHCP client will be
1801
         * restarted, and the correct network information will be gained.
1802
         *
1803
         * However, do not reconfigure the wireless interface forcibly if it was not connected to any
1804
         * access points previously (previous_ssid is NULL in this case). As, a .network file may be
1805
         * already assigned to the interface (in that case, the .network file does not have the SSID=
1806
         * setting in the [Match] section), and the interface is already being configured. Of course,
1807
         * there may exist another .network file with higher priority and a matching SSID= setting. But
1808
         * in that case, link_reconfigure_impl() can handle that without any flags.
1809
         *
1810
         * For non-wireless interfaces, we have no way to detect the connected network change. So,
1811
         * we do not set any flags here. Note, both ssid and previous_ssid are NULL in that case. */
1812
        if (link->previous_ssid && !streq_ptr(link->previous_ssid, link->ssid))
1,266✔
1813
                flags |= LINK_RECONFIGURE_UNCONDITIONALLY | LINK_RECONFIGURE_CLEANLY;
×
1814
        link->previous_ssid = mfree(link->previous_ssid);
1,266✔
1815

1816
        /* AP and P2P-GO interfaces may have a new SSID - update the link properties in case a new .network
1817
         * profile wants to match on it with SSID= in its [Match] section.
1818
         */
1819
        if (IN_SET(link->wlan_iftype, NL80211_IFTYPE_AP, NL80211_IFTYPE_P2P_GO)) {
1,266✔
1820
                r = link_get_wlan_interface(link);
×
1821
                if (r < 0)
×
1822
                        return r;
1823
        }
1824

1825
        /* At this stage, both wlan and link information should be up-to-date. Hence, it is not necessary to
1826
         * call RTM_GETLINK, NL80211_CMD_GET_INTERFACE, or NL80211_CMD_GET_STATION commands, and simply call
1827
         * link_reconfigure_impl(). Note, link_reconfigure_impl() returns 1 when the link is reconfigured. */
1828
        r = link_reconfigure_impl(link, flags);
1,266✔
1829
        if (r != 0)
1,266✔
1830
                return r;
1831

1832
        if (link->iftype == ARPHRD_CAN)
1,266✔
1833
                /* let's shortcut things for CAN which doesn't need most of what's done below. */
1834
                return 0;
1835

1836
        if (IN_SET(link->state, LINK_STATE_CONFIGURING, LINK_STATE_CONFIGURED)) {
1,262✔
1837
                r = link_acquire_dynamic_conf(link);
694✔
1838
                if (r < 0)
694✔
1839
                        return r;
1840

1841
                r = link_request_static_configs(link);
693✔
1842
                if (r < 0)
693✔
1843
                        return r;
×
1844
        }
1845

1846
        return 0;
1847
}
1848

1849
static int link_carrier_lost_impl(Link *link) {
737✔
1850
        int ret = 0;
737✔
1851

1852
        assert(link);
737✔
1853

1854
        link->previous_ssid = mfree(link->previous_ssid);
737✔
1855

1856
        ret = link_handle_bound_by_list(link);
737✔
1857

1858
        if (IN_SET(link->state, LINK_STATE_FAILED, LINK_STATE_LINGER))
737✔
1859
                return ret;
737✔
1860

1861
        if (!link->network)
737✔
1862
                return ret;
1863

1864
        RET_GATHER(ret, link_stop_engines(link, /* may_keep_dynamic= */ false));
678✔
1865
        RET_GATHER(ret, link_drop_static_config(link));
678✔
1866

1867
        return ret;
1868
}
1869

1870
static int link_carrier_lost_handler(sd_event_source *s, uint64_t usec, void *userdata) {
×
1871
        Link *link = ASSERT_PTR(userdata);
×
1872
        int r;
×
1873

1874
        r = link_carrier_lost_impl(link);
×
1875
        if (r < 0) {
×
1876
                log_link_warning_errno(link, r, "Failed to process carrier lost event: %m");
×
1877
                link_enter_failed(link);
×
1878
        }
1879

1880
        return 0;
×
1881
}
1882

1883
static int link_carrier_lost(Link *link) {
753✔
1884
        uint16_t dhcp_mtu;
753✔
1885
        usec_t usec;
753✔
1886

1887
        assert(link);
753✔
1888

1889
        log_link_info(link, "Lost carrier");
753✔
1890

1891
        if (link->iftype == ARPHRD_CAN)
753✔
1892
                /* let's shortcut things for CAN which doesn't need most of what's done below. */
1893
                usec = 0;
1894

1895
        else if (!link->network)
749✔
1896
                usec = 0;
1897

1898
        else if (link->network->ignore_carrier_loss_set)
690✔
1899
                /* If IgnoreCarrierLoss= is explicitly specified, then use the specified value. */
1900
                usec = link->network->ignore_carrier_loss_usec;
12✔
1901

1902
        else if (link->network->bond && link->wlan_iftype > 0)
678✔
1903
                /* Enslaving wlan interface to a bond disconnects from the connected AP, and causes its
1904
                 * carrier to be lost. See #19832. */
1905
                usec = 3 * USEC_PER_SEC;
1906

1907
        else if (link->network->dhcp_use_mtu &&
678✔
1908
                 link->dhcp_lease &&
4✔
1909
                 sd_dhcp_lease_get_mtu(link->dhcp_lease, &dhcp_mtu) >= 0 &&
2✔
1910
                 dhcp_mtu != link->original_mtu)
1✔
1911
                /* Some drivers reset interfaces when changing MTU. Resetting interfaces by the static
1912
                 * MTU should not cause any issues, as MTU is changed only once. However, setting MTU
1913
                 * through DHCP lease causes an infinite loop of resetting the interface. See #18738. */
1914
                usec = 5 * USEC_PER_SEC;
1915

1916
        else
1917
                /* Otherwise, use the implied default value. */
1918
                usec = link->network->ignore_carrier_loss_usec;
677✔
1919

1920
        if (usec == USEC_INFINITY)
689✔
1921
                return 0;
753✔
1922

1923
        if (usec == 0)
738✔
1924
                return link_carrier_lost_impl(link);
737✔
1925

1926
        return event_reset_time_relative(link->manager->event,
1✔
1927
                                         &link->carrier_lost_timer,
1928
                                         CLOCK_BOOTTIME,
1929
                                         usec,
1930
                                         0,
1931
                                         link_carrier_lost_handler,
1932
                                         link,
1933
                                         0,
1934
                                         "link-carrier-loss",
1935
                                         true);
1936
}
1937

1938
static int link_admin_state_up(Link *link) {
1,239✔
1939
        assert(link);
1,239✔
1940

1941
        /* This is called every time an interface admin state changes to up;
1942
         * specifically, when IFF_UP flag changes from unset to set. */
1943

1944
        log_link_info(link, "Link UP");
1,239✔
1945

1946
        if (!link->network)
1,239✔
1947
                return 0;
1948

1949
        if (link->activated && link->network->activation_policy == ACTIVATION_POLICY_ALWAYS_DOWN) {
668✔
1950
                log_link_info(link, "Activation policy is \"always-down\", forcing link down.");
4✔
1951
                return link_request_to_bring_up_or_down(link, /* up= */ false);
4✔
1952
        }
1953

1954
        /* We set the ipv6 mtu after the device mtu, but the kernel resets
1955
         * ipv6 mtu on NETDEV_UP, so we need to reset it. */
1956
        (void) link_set_ipv6_mtu(link, LOG_INFO);
664✔
1957

1958
        return 0;
664✔
1959
}
1960

1961
static int link_admin_state_down(Link *link) {
724✔
1962
        assert(link);
724✔
1963

1964
        log_link_info(link, "Link DOWN");
724✔
1965

1966
        link_forget_nexthops(link);
724✔
1967
        link_forget_routes(link);
724✔
1968

1969
        if (!link->network)
724✔
1970
                return 0;
1971

1972
        if (link->activated && link->network->activation_policy == ACTIVATION_POLICY_ALWAYS_UP) {
666✔
1973
                log_link_info(link, "Activation policy is \"always-up\", forcing link up.");
9✔
1974
                return link_request_to_bring_up_or_down(link, /* up= */ true);
9✔
1975
        }
1976

1977
        return 0;
1978
}
1979

1980
static bool link_is_enslaved(Link *link) {
6,986✔
1981
        if (link->flags & IFF_SLAVE)
6,986✔
1982
                return true;
1983

1984
        if (link->master_ifindex > 0)
6,934✔
1985
                return true;
232✔
1986

1987
        return false;
1988
}
1989

1990
void link_update_operstate(Link *link, bool also_update_master) {
13,361✔
1991
        LinkOperationalState operstate;
13,361✔
1992
        LinkCarrierState carrier_state;
13,361✔
1993
        LinkAddressState ipv4_address_state, ipv6_address_state, address_state;
13,361✔
1994
        LinkOnlineState online_state;
13,361✔
1995
        _cleanup_strv_free_ char **p = NULL;
13,361✔
1996
        bool changed = false;
13,361✔
1997

1998
        assert(link);
13,361✔
1999

2000
        if (link->kernel_operstate == IF_OPER_DORMANT)
13,361✔
2001
                carrier_state = LINK_CARRIER_STATE_DORMANT;
2002
        else if (link_has_carrier(link)) {
13,361✔
2003
                if (link_is_enslaved(link))
6,986✔
2004
                        carrier_state = LINK_CARRIER_STATE_ENSLAVED;
2005
                else
2006
                        carrier_state = LINK_CARRIER_STATE_CARRIER;
2007
        } else if (link->flags & IFF_UP)
6,375✔
2008
                carrier_state = LINK_CARRIER_STATE_NO_CARRIER;
2009
        else
2010
                carrier_state = LINK_CARRIER_STATE_OFF;
2011

2012
        if (carrier_state >= LINK_CARRIER_STATE_CARRIER) {
2013
                Link *slave;
6,986✔
2014

2015
                SET_FOREACH(slave, link->slaves) {
7,219✔
2016
                        link_update_operstate(slave, false);
233✔
2017

2018
                        if (slave->carrier_state < LINK_CARRIER_STATE_CARRIER)
233✔
2019
                                carrier_state = LINK_CARRIER_STATE_DEGRADED_CARRIER;
51✔
2020
                }
2021
        }
2022

2023
        link_get_address_states(link, &ipv4_address_state, &ipv6_address_state, &address_state);
13,361✔
2024

2025
        /* Mapping of address and carrier state vs operational state
2026
         *                                                     carrier state
2027
         *                          | off | no-carrier | dormant | degraded-carrier | carrier  | enslaved
2028
         *                 ------------------------------------------------------------------------------
2029
         *                 off      | off | no-carrier | dormant | degraded-carrier | carrier  | enslaved
2030
         * address_state   degraded | off | no-carrier | dormant | degraded         | degraded | enslaved
2031
         *                 routable | off | no-carrier | dormant | routable         | routable | routable
2032
         */
2033

2034
        if (carrier_state == LINK_CARRIER_STATE_DEGRADED_CARRIER && address_state == LINK_ADDRESS_STATE_ROUTABLE)
13,361✔
2035
                operstate = LINK_OPERSTATE_ROUTABLE;
2036
        else if (carrier_state == LINK_CARRIER_STATE_DEGRADED_CARRIER && address_state == LINK_ADDRESS_STATE_DEGRADED)
21✔
2037
                operstate = LINK_OPERSTATE_DEGRADED;
2038
        else if (carrier_state < LINK_CARRIER_STATE_CARRIER || address_state == LINK_ADDRESS_STATE_OFF)
13,320✔
2039
                operstate = (LinkOperationalState) carrier_state;
2040
        else if (address_state == LINK_ADDRESS_STATE_ROUTABLE)
4,517✔
2041
                operstate = LINK_OPERSTATE_ROUTABLE;
2042
        else if (carrier_state == LINK_CARRIER_STATE_CARRIER)
1,372✔
2043
                operstate = LINK_OPERSTATE_DEGRADED;
2044
        else
2045
                operstate = LINK_OPERSTATE_ENSLAVED;
37✔
2046

2047
        LinkOperationalStateRange req;
13,361✔
2048
        link_required_operstate_for_online(link, &req);
13,361✔
2049

2050
        /* Only determine online state for managed links with RequiredForOnline=yes */
2051
        if (!link->network || !link->network->required_for_online)
13,361✔
2052
                online_state = _LINK_ONLINE_STATE_INVALID;
2053

2054
        else if (!operational_state_is_in_range(operstate, &req))
8,787✔
2055
                online_state = LINK_ONLINE_STATE_OFFLINE;
2056

2057
        else {
2058
                AddressFamily required_family = link_required_family_for_online(link);
4,411✔
2059
                bool needs_ipv4 = required_family & ADDRESS_FAMILY_IPV4;
4,411✔
2060
                bool needs_ipv6 = required_family & ADDRESS_FAMILY_IPV6;
4,411✔
2061

2062
                /* The operational state is within the range required for online.
2063
                 * If a particular address family is also required, we might revert
2064
                 * to offline in the blocks below. */
2065
                online_state = LINK_ONLINE_STATE_ONLINE;
4,411✔
2066

2067
                if (req.min >= LINK_OPERSTATE_DEGRADED) {
4,411✔
2068
                        if (needs_ipv4 && ipv4_address_state < LINK_ADDRESS_STATE_DEGRADED)
4,256✔
2069
                                online_state = LINK_ONLINE_STATE_OFFLINE;
×
2070
                        if (needs_ipv6 && ipv6_address_state < LINK_ADDRESS_STATE_DEGRADED)
4,256✔
2071
                                online_state = LINK_ONLINE_STATE_OFFLINE;
×
2072
                }
2073

2074
                if (req.min >= LINK_OPERSTATE_ROUTABLE) {
4,411✔
2075
                        if (needs_ipv4 && ipv4_address_state < LINK_ADDRESS_STATE_ROUTABLE)
4✔
2076
                                online_state = LINK_ONLINE_STATE_OFFLINE;
×
2077
                        if (needs_ipv6 && ipv6_address_state < LINK_ADDRESS_STATE_ROUTABLE)
4✔
2078
                                online_state = LINK_ONLINE_STATE_OFFLINE;
3✔
2079
                }
2080
        }
2081

2082
        if (link->carrier_state != carrier_state) {
13,361✔
2083
                link->carrier_state = carrier_state;
4,691✔
2084
                changed = true;
4,691✔
2085
                if (strv_extend(&p, "CarrierState") < 0)
4,691✔
2086
                        log_oom();
×
2087
        }
2088

2089
        if (link->address_state != address_state) {
13,361✔
2090
                link->address_state = address_state;
1,983✔
2091
                changed = true;
1,983✔
2092
                if (strv_extend(&p, "AddressState") < 0)
1,983✔
2093
                        log_oom();
×
2094
        }
2095

2096
        if (link->ipv4_address_state != ipv4_address_state) {
13,361✔
2097
                link->ipv4_address_state = ipv4_address_state;
955✔
2098
                changed = true;
955✔
2099
                if (strv_extend(&p, "IPv4AddressState") < 0)
955✔
2100
                        log_oom();
×
2101
        }
2102

2103
        if (link->ipv6_address_state != ipv6_address_state) {
13,361✔
2104
                link->ipv6_address_state = ipv6_address_state;
1,701✔
2105
                changed = true;
1,701✔
2106
                if (strv_extend(&p, "IPv6AddressState") < 0)
1,701✔
2107
                        log_oom();
×
2108
        }
2109

2110
        if (link->operstate != operstate) {
13,361✔
2111
                link->operstate = operstate;
5,672✔
2112
                changed = true;
5,672✔
2113
                if (strv_extend(&p, "OperationalState") < 0)
5,672✔
2114
                        log_oom();
×
2115
        }
2116

2117
        if (link->online_state != online_state) {
13,361✔
2118
                link->online_state = online_state;
1,874✔
2119
                changed = true;
1,874✔
2120
                if (strv_extend(&p, "OnlineState") < 0)
1,874✔
2121
                        log_oom();
×
2122
        }
2123

2124
        if (p)
13,361✔
2125
                link_send_changed_strv(link, p);
7,972✔
2126
        if (changed)
13,361✔
2127
                link_dirty(link);
7,972✔
2128

2129
        if (also_update_master) {
13,361✔
2130
                Link *master;
13,128✔
2131

2132
                if (link_get_master(link, &master) >= 0)
13,128✔
2133
                        link_update_operstate(master, true);
152✔
2134
        }
2135
}
13,361✔
2136

2137
bool link_has_carrier(Link *link) {
42,506✔
2138
        assert(link);
42,506✔
2139
        return netif_has_carrier(link->kernel_operstate, link->flags);
42,506✔
2140
}
2141

2142
bool link_multicast_enabled(Link *link) {
9,695✔
2143
        assert(link);
9,695✔
2144

2145
        /* If Multicast= is specified, use the value. */
2146
        if (link->network && link->network->multicast >= 0)
9,695✔
2147
                return link->network->multicast;
×
2148

2149
        /* Otherwise, return the current state. */
2150
        return FLAGS_SET(link->flags, IFF_MULTICAST);
9,695✔
2151
}
2152

2153
#define FLAG_STRING(string, flag, old, new)                      \
2154
        (((old ^ new) & flag)                                    \
2155
         ? ((old & flag) ? (" -" string) : (" +" string))        \
2156
         : "")
2157

2158
static int link_update_flags(Link *link, sd_netlink_message *message) {
10,651✔
2159
        bool link_was_admin_up, had_carrier;
10,651✔
2160
        uint8_t operstate;
10,651✔
2161
        unsigned flags;
10,651✔
2162
        int r;
10,651✔
2163

2164
        assert(link);
10,651✔
2165
        assert(message);
10,651✔
2166

2167
        r = sd_rtnl_message_link_get_flags(message, &flags);
10,651✔
2168
        if (r < 0)
10,651✔
2169
                return log_link_debug_errno(link, r, "rtnl: failed to read link flags: %m");
×
2170

2171
        r = sd_netlink_message_read_u8(message, IFLA_OPERSTATE, &operstate);
10,651✔
2172
        if (r == -ENODATA)
10,651✔
2173
                /* If we got a message without operstate, assume the state was unchanged. */
2174
                operstate = link->kernel_operstate;
×
2175
        else if (r < 0)
10,651✔
2176
                return log_link_debug_errno(link, r, "rtnl: failed to read operational state: %m");
×
2177

2178
        if (link->flags == flags && link->kernel_operstate == operstate)
10,651✔
2179
                return 0;
2180

2181
        if (link->flags != flags) {
4,668✔
2182
                unsigned unknown_flags, unknown_flags_added, unknown_flags_removed;
4,668✔
2183

2184
                log_link_debug(link, "Flags change:%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s",
12,818✔
2185
                               FLAG_STRING("LOOPBACK", IFF_LOOPBACK, link->flags, flags),
2186
                               FLAG_STRING("MASTER", IFF_MASTER, link->flags, flags),
2187
                               FLAG_STRING("SLAVE", IFF_SLAVE, link->flags, flags),
2188
                               FLAG_STRING("UP", IFF_UP, link->flags, flags),
2189
                               FLAG_STRING("DORMANT", IFF_DORMANT, link->flags, flags),
2190
                               FLAG_STRING("LOWER_UP", IFF_LOWER_UP, link->flags, flags),
2191
                               FLAG_STRING("RUNNING", IFF_RUNNING, link->flags, flags),
2192
                               FLAG_STRING("MULTICAST", IFF_MULTICAST, link->flags, flags),
2193
                               FLAG_STRING("BROADCAST", IFF_BROADCAST, link->flags, flags),
2194
                               FLAG_STRING("POINTOPOINT", IFF_POINTOPOINT, link->flags, flags),
2195
                               FLAG_STRING("PROMISC", IFF_PROMISC, link->flags, flags),
2196
                               FLAG_STRING("ALLMULTI", IFF_ALLMULTI, link->flags, flags),
2197
                               FLAG_STRING("PORTSEL", IFF_PORTSEL, link->flags, flags),
2198
                               FLAG_STRING("AUTOMEDIA", IFF_AUTOMEDIA, link->flags, flags),
2199
                               FLAG_STRING("DYNAMIC", IFF_DYNAMIC, link->flags, flags),
2200
                               FLAG_STRING("NOARP", IFF_NOARP, link->flags, flags),
2201
                               FLAG_STRING("NOTRAILERS", IFF_NOTRAILERS, link->flags, flags),
2202
                               FLAG_STRING("DEBUG", IFF_DEBUG, link->flags, flags),
2203
                               FLAG_STRING("ECHO", IFF_ECHO, link->flags, flags));
2204

2205
                unknown_flags = ~(IFF_LOOPBACK | IFF_MASTER | IFF_SLAVE | IFF_UP |
4,668✔
2206
                                  IFF_DORMANT | IFF_LOWER_UP | IFF_RUNNING |
2207
                                  IFF_MULTICAST | IFF_BROADCAST | IFF_POINTOPOINT |
2208
                                  IFF_PROMISC | IFF_ALLMULTI | IFF_PORTSEL |
2209
                                  IFF_AUTOMEDIA | IFF_DYNAMIC | IFF_NOARP |
2210
                                  IFF_NOTRAILERS | IFF_DEBUG | IFF_ECHO);
2211
                unknown_flags_added = ((link->flags ^ flags) & flags & unknown_flags);
4,668✔
2212
                unknown_flags_removed = ((link->flags ^ flags) & link->flags & unknown_flags);
4,668✔
2213

2214
                if (unknown_flags_added)
4,668✔
2215
                        log_link_debug(link, "Unknown link flags gained, ignoring: %#.5x", unknown_flags_added);
×
2216

2217
                if (unknown_flags_removed)
4,668✔
2218
                        log_link_debug(link, "Unknown link flags lost, ignoring: %#.5x", unknown_flags_removed);
×
2219
        }
2220

2221
        link_was_admin_up = link->flags & IFF_UP;
4,668✔
2222
        had_carrier = link_has_carrier(link);
4,668✔
2223

2224
        link->flags = flags;
4,668✔
2225
        link->kernel_operstate = operstate;
4,668✔
2226

2227
        link_update_operstate(link, true);
4,668✔
2228

2229
        r = 0;
4,668✔
2230

2231
        if (!link_was_admin_up && (link->flags & IFF_UP))
4,668✔
2232
                r = link_admin_state_up(link);
1,239✔
2233
        else if (link_was_admin_up && !(link->flags & IFF_UP))
1,123✔
2234
                r = link_admin_state_down(link);
724✔
2235
        if (r < 0)
1,963✔
2236
                return r;
2237

2238
        if (!had_carrier && link_has_carrier(link))
4,668✔
2239
                r = link_carrier_gained(link);
1,266✔
2240
        else if (had_carrier && !link_has_carrier(link))
778✔
2241
                r = link_carrier_lost(link);
753✔
2242
        if (r < 0)
4,668✔
2243
                return r;
1✔
2244

2245
        return 0;
2246
}
2247

2248
static int link_update_master(Link *link, sd_netlink_message *message) {
10,651✔
2249
        int master_ifindex, r;
10,651✔
2250

2251
        assert(link);
10,651✔
2252
        assert(message);
10,651✔
2253

2254
        r = sd_netlink_message_read_u32(message, IFLA_MASTER, (uint32_t*) &master_ifindex);
10,651✔
2255
        if (r == -ENODATA)
10,651✔
2256
                master_ifindex = 0; /* no master interface */
10,136✔
2257
        else if (r < 0)
515✔
2258
                return log_link_debug_errno(link, r, "rtnl: failed to read master ifindex: %m");
×
2259

2260
        if (master_ifindex == link->ifindex)
10,651✔
2261
                master_ifindex = 0;
7✔
2262

2263
        if (master_ifindex != link->master_ifindex) {
10,651✔
2264
                if (link->master_ifindex == 0)
59✔
2265
                        log_link_debug(link, "Attached to master interface: %i", master_ifindex);
46✔
2266
                else if (master_ifindex == 0)
13✔
2267
                        log_link_debug(link, "Detached from master interface: %i", link->master_ifindex);
13✔
2268
                else
2269
                        log_link_debug(link, "Master interface changed: %i %s %i", link->master_ifindex,
×
2270
                                       glyph(GLYPH_ARROW_RIGHT), master_ifindex);
2271

2272
                link_drop_from_master(link);
59✔
2273
                link->master_ifindex = master_ifindex;
59✔
2274

2275
                /* Updating master ifindex may cause operational state change, e.g. carrier <-> enslaved */
2276
                link_dirty(link);
59✔
2277
        }
2278

2279
        r = link_append_to_master(link);
10,651✔
2280
        if (r < 0)
10,651✔
2281
                return log_link_debug_errno(link, r, "Failed to append link to master: %m");
×
2282

2283
        return 0;
2284
}
2285

2286
static int link_update_driver(Link *link, sd_netlink_message *message) {
10,651✔
2287
        int r;
10,651✔
2288

2289
        assert(link);
10,651✔
2290
        assert(link->manager);
10,651✔
2291
        assert(message);
10,651✔
2292

2293
        /* Driver is already read. Assuming the driver is never changed. */
2294
        if (link->ethtool_driver_read)
10,651✔
2295
                return 0;
2296

2297
        /* When udevd is running, read the driver after the interface is initialized by udevd.
2298
         * Otherwise, ethtool may not work correctly. See issue #22538.
2299
         * When udevd is not running, read the value when the interface is detected. */
2300
        if (udev_available() && !link->dev)
5,734✔
2301
                return 0;
2302

2303
        link->ethtool_driver_read = true;
2,632✔
2304

2305
        r = ethtool_get_driver(&link->manager->ethtool_fd, link->ifname, &link->driver);
2,632✔
2306
        if (r < 0) {
2,632✔
2307
                log_link_debug_errno(link, r, "Failed to get driver, continuing without: %m");
499✔
2308
                return 0;
499✔
2309
        }
2310

2311
        log_link_debug(link, "Found driver: %s", strna(link->driver));
2,133✔
2312

2313
        if (streq_ptr(link->driver, "dsa")) {
2,133✔
2314
                uint32_t dsa_master_ifindex = 0;
×
2315

2316
                r = sd_netlink_message_read_u32(message, IFLA_LINK, &dsa_master_ifindex);
×
2317
                if (r < 0 && r != -ENODATA)
×
2318
                        return log_link_debug_errno(link, r, "rtnl: failed to read ifindex of the DSA master interface: %m");
×
2319

2320
                if (dsa_master_ifindex > INT_MAX) {
×
2321
                        log_link_debug(link, "rtnl: received too large DSA master ifindex (%"PRIu32" > INT_MAX), ignoring.",
×
2322
                                       dsa_master_ifindex);
2323
                        dsa_master_ifindex = 0;
×
2324
                }
2325

2326
                link->dsa_master_ifindex = (int) dsa_master_ifindex;
×
2327
        }
2328

2329
        return 1; /* needs reconfigure */
2330
}
2331

2332
static int link_update_permanent_hardware_address_from_ethtool(Link *link, sd_netlink_message *message) {
5,366✔
2333
        int r;
5,366✔
2334

2335
        assert(link);
5,366✔
2336
        assert(link->manager);
5,366✔
2337
        assert(message);
5,366✔
2338

2339
        if (link->ethtool_permanent_hw_addr_read)
5,366✔
2340
                return 0;
2341

2342
        /* When udevd is running, read the permanent hardware address after the interface is
2343
         * initialized by udevd. Otherwise, ethtool may not work correctly. See issue #22538.
2344
         * When udevd is not running, read the value when the interface is detected. */
2345
        if (udev_available() && !link->dev)
5,366✔
2346
                return 0;
2347

2348
        /* If the interface does not have a hardware address, then it will not have a permanent address either. */
2349
        r = netlink_message_read_hw_addr(message, IFLA_ADDRESS, NULL);
2,492✔
2350
        if (r == -ENODATA)
2,492✔
2351
                return 0;
2352
        if (r < 0)
2,347✔
2353
                return log_link_debug_errno(link, r, "Failed to read IFLA_ADDRESS attribute: %m");
×
2354

2355
        link->ethtool_permanent_hw_addr_read = true;
2,347✔
2356

2357
        r = ethtool_get_permanent_hw_addr(&link->manager->ethtool_fd, link->ifname, &link->permanent_hw_addr);
2,347✔
2358
        if (r < 0)
2,347✔
2359
                log_link_debug_errno(link, r, "Permanent hardware address not found, continuing without: %m");
1✔
2360

2361
        return 0;
2362
}
2363

2364
static int link_update_permanent_hardware_address(Link *link, sd_netlink_message *message) {
10,651✔
2365
        int r;
10,651✔
2366

2367
        assert(link);
10,651✔
2368
        assert(link->manager);
10,651✔
2369
        assert(message);
10,651✔
2370

2371
        if (link->permanent_hw_addr.length > 0)
10,651✔
2372
                return 0;
2373

2374
        r = netlink_message_read_hw_addr(message, IFLA_PERM_ADDRESS, &link->permanent_hw_addr);
5,588✔
2375
        if (r < 0) {
5,588✔
2376
                if (r != -ENODATA)
5,366✔
2377
                        return log_link_debug_errno(link, r, "Failed to read IFLA_PERM_ADDRESS attribute: %m");
×
2378

2379
                /* Fallback to ethtool for kernels older than v5.6 (f74877a5457d34d604dba6dbbb13c4c05bac8b93). */
2380
                r = link_update_permanent_hardware_address_from_ethtool(link, message);
5,366✔
2381
                if (r < 0)
5,366✔
2382
                        return r;
2383
        }
2384

2385
        if (link->permanent_hw_addr.length > 0)
5,588✔
2386
                log_link_debug(link, "Saved permanent hardware address: %s", HW_ADDR_TO_STR(&link->permanent_hw_addr));
2,568✔
2387

2388
        return 1; /* needs reconfigure */
2389
}
2390

2391
static int link_update_hardware_address(Link *link, sd_netlink_message *message) {
10,651✔
2392
        struct hw_addr_data addr;
10,651✔
2393
        int r;
10,651✔
2394

2395
        assert(link);
10,651✔
2396
        assert(message);
10,651✔
2397

2398
        r = netlink_message_read_hw_addr(message, IFLA_BROADCAST, &link->bcast_addr);
10,651✔
2399
        if (r < 0 && r != -ENODATA)
10,651✔
2400
                return log_link_debug_errno(link, r, "rtnl: failed to read broadcast address: %m");
×
2401

2402
        r = netlink_message_read_hw_addr(message, IFLA_ADDRESS, &addr);
10,651✔
2403
        if (r == -ENODATA)
10,651✔
2404
                return 0;
2405
        if (r < 0)
10,443✔
2406
                return log_link_debug_errno(link, r, "rtnl: failed to read hardware address: %m");
×
2407

2408
        if (hw_addr_equal(&link->hw_addr, &addr))
10,443✔
2409
                return 0;
2410

2411
        if (link->hw_addr.length == 0)
2,956✔
2412
                log_link_debug(link, "Saved hardware address: %s", HW_ADDR_TO_STR(&addr));
2,747✔
2413
        else {
2414
                log_link_debug(link, "Hardware address is changed: %s %s %s",
209✔
2415
                               HW_ADDR_TO_STR(&link->hw_addr),
2416
                               glyph(GLYPH_ARROW_RIGHT),
2417
                               HW_ADDR_TO_STR(&addr));
2418

2419
                hashmap_remove_value(link->manager->links_by_hw_addr, &link->hw_addr, link);
209✔
2420
        }
2421

2422
        link->hw_addr = addr;
2,956✔
2423

2424
        if (!hw_addr_is_null(&link->hw_addr)) {
2,956✔
2425
                r = hashmap_ensure_put(&link->manager->links_by_hw_addr, &hw_addr_hash_ops, &link->hw_addr, link);
1,074✔
2426
                if (r == -EEXIST && streq_ptr(link->kind, "bond"))
1,074✔
2427
                        /* bonding master and its slaves have the same hardware address. */
2428
                        r = hashmap_replace(link->manager->links_by_hw_addr, &link->hw_addr, link);
4✔
2429
                if (r < 0)
1,074✔
2430
                        log_link_debug_errno(link, r, "Failed to manage link by its new hardware address, ignoring: %m");
51✔
2431
        }
2432

2433
        r = ipv4acd_update_mac(link);
2,956✔
2434
        if (r < 0)
2,956✔
2435
                return log_link_debug_errno(link, r, "Could not update MAC address in IPv4 ACD client: %m");
×
2436

2437
        r = ipv4ll_update_mac(link);
2,956✔
2438
        if (r < 0)
2,956✔
2439
                return log_link_debug_errno(link, r, "Could not update MAC address in IPv4LL client: %m");
×
2440

2441
        r = dhcp4_update_mac(link);
2,956✔
2442
        if (r < 0)
2,956✔
2443
                return log_link_debug_errno(link, r, "Could not update MAC address in DHCP client: %m");
×
2444

2445
        r = dhcp6_update_mac(link);
2,956✔
2446
        if (r < 0)
2,956✔
2447
                return log_link_debug_errno(link, r, "Could not update MAC address in DHCPv6 client: %m");
×
2448

2449
        r = radv_update_mac(link);
2,956✔
2450
        if (r < 0)
2,956✔
2451
                return log_link_debug_errno(link, r, "Could not update MAC address for Router Advertisement: %m");
×
2452

2453
        if (link->ndisc && link->hw_addr.length == ETH_ALEN) {
2,956✔
2454
                r = sd_ndisc_set_mac(link->ndisc, &link->hw_addr.ether);
×
2455
                if (r < 0)
×
2456
                        return log_link_debug_errno(link, r, "Could not update MAC for NDisc: %m");
×
2457
        }
2458

2459
        if (link->lldp_rx) {
2,956✔
2460
                r = sd_lldp_rx_set_filter_address(link->lldp_rx, &link->hw_addr.ether);
24✔
2461
                if (r < 0)
24✔
2462
                        return log_link_debug_errno(link, r, "Could not update MAC address for LLDP Rx: %m");
×
2463
        }
2464

2465
        if (link->lldp_tx) {
2,956✔
2466
                r = sd_lldp_tx_set_hwaddr(link->lldp_tx, &link->hw_addr.ether);
×
2467
                if (r < 0)
×
2468
                        return log_link_debug_errno(link, r, "Could not update MAC address for LLDP Tx: %m");
×
2469
        }
2470

2471
        return 1; /* needs reconfigure */
2472
}
2473

2474
static int link_update_mtu(Link *link, sd_netlink_message *message) {
10,651✔
2475
        uint32_t mtu, min_mtu = 0, max_mtu = UINT32_MAX;
10,651✔
2476
        int r;
10,651✔
2477

2478
        assert(link);
10,651✔
2479
        assert(message);
10,651✔
2480

2481
        r = sd_netlink_message_read_u32(message, IFLA_MTU, &mtu);
10,651✔
2482
        if (r == -ENODATA)
10,651✔
2483
                return 0;
10,651✔
2484
        if (r < 0)
10,651✔
2485
                return log_link_debug_errno(link, r, "rtnl: failed to read MTU in RTM_NEWLINK message: %m");
×
2486
        if (mtu == 0)
10,651✔
2487
                return 0;
2488

2489
        r = sd_netlink_message_read_u32(message, IFLA_MIN_MTU, &min_mtu);
10,629✔
2490
        if (r < 0 && r != -ENODATA)
10,629✔
2491
                return log_link_debug_errno(link, r, "rtnl: failed to read minimum MTU in RTM_NEWLINK message: %m");
×
2492

2493
        r = sd_netlink_message_read_u32(message, IFLA_MAX_MTU, &max_mtu);
10,629✔
2494
        if (r < 0 && r != -ENODATA)
10,629✔
2495
                return log_link_debug_errno(link, r, "rtnl: failed to read maximum MTU in RTM_NEWLINK message: %m");
×
2496

2497
        if (max_mtu == 0)
10,629✔
2498
                max_mtu = UINT32_MAX;
6,817✔
2499

2500
        link->min_mtu = min_mtu;
10,629✔
2501
        link->max_mtu = max_mtu;
10,629✔
2502

2503
        if (link->original_mtu == 0) {
10,629✔
2504
                link->original_mtu = mtu;
2,810✔
2505
                log_link_debug(link, "Saved original MTU %" PRIu32" (min: %"PRIu32", max: %"PRIu32")",
2,810✔
2506
                               link->original_mtu, link->min_mtu, link->max_mtu);
2507
        }
2508

2509
        if (link->mtu == mtu)
10,629✔
2510
                return 0;
2511

2512
        if (link->mtu != 0)
2,898✔
2513
                log_link_debug(link, "MTU is changed: %"PRIu32" %s %"PRIu32" (min: %"PRIu32", max: %"PRIu32")",
88✔
2514
                               link->mtu, glyph(GLYPH_ARROW_RIGHT), mtu,
2515
                               link->min_mtu, link->max_mtu);
2516

2517
        link->mtu = mtu;
2,898✔
2518

2519
        if (IN_SET(link->state, LINK_STATE_CONFIGURING, LINK_STATE_CONFIGURED))
2,898✔
2520
                /* The kernel resets IPv6 MTU after changing device MTU. So, we need to re-set IPv6 MTU again. */
2521
                (void) link_set_ipv6_mtu_async(link);
46✔
2522

2523
        if (link->dhcp_client) {
2,898✔
2524
                r = sd_dhcp_client_set_mtu(link->dhcp_client, link->mtu);
4✔
2525
                if (r < 0)
4✔
2526
                        return log_link_debug_errno(link, r, "Could not update MTU in DHCP client: %m");
×
2527
        }
2528

2529
        if (link->radv) {
2,898✔
2530
                r = sd_radv_set_mtu(link->radv, link->mtu);
×
2531
                if (r < 0)
×
2532
                        return log_link_debug_errno(link, r, "Could not set MTU for Router Advertisement: %m");
×
2533
        }
2534

2535
        return 0;
2536
}
2537

2538
static int link_update_alternative_names(Link *link, sd_netlink_message *message) {
10,651✔
2539
        _cleanup_strv_free_ char **altnames = NULL;
10,651✔
2540
        int r;
10,651✔
2541

2542
        assert(link);
10,651✔
2543
        assert(message);
10,651✔
2544

2545
        r = sd_netlink_message_read_strv(message, IFLA_PROP_LIST, IFLA_ALT_IFNAME, &altnames);
10,651✔
2546
        if (r == -ENODATA)
10,651✔
2547
                /* The message does not have IFLA_PROP_LIST container attribute. It does not mean the
2548
                 * interface has no alternative name. */
2549
                return 0;
2550
        if (r < 0)
164✔
2551
                return log_link_debug_errno(link, r, "rtnl: failed to read alternative names: %m");
×
2552

2553
        if (strv_equal(altnames, link->alternative_names))
164✔
2554
                return 0;
2555

2556
        STRV_FOREACH(n, link->alternative_names)
46✔
2557
                hashmap_remove(link->manager->links_by_name, *n);
10✔
2558

2559
        strv_free_and_replace(link->alternative_names, altnames);
36✔
2560

2561
        STRV_FOREACH(n, link->alternative_names) {
80✔
2562
                r = hashmap_ensure_put(&link->manager->links_by_name, &string_hash_ops, *n, link);
44✔
2563
                if (r < 0)
44✔
2564
                        return log_link_debug_errno(link, r, "Failed to manage link by its new alternative names: %m");
×
2565
        }
2566

2567
        return 1; /* needs reconfigure */
2568
}
2569

2570
static int link_update_name(Link *link, sd_netlink_message *message) {
10,656✔
2571
        char ifname_from_index[IF_NAMESIZE];
10,656✔
2572
        const char *ifname;
10,656✔
2573
        int r;
10,656✔
2574

2575
        assert(link);
10,656✔
2576
        assert(message);
10,656✔
2577

2578
        r = sd_netlink_message_read_string(message, IFLA_IFNAME, &ifname);
10,656✔
2579
        if (r == -ENODATA)
10,656✔
2580
                /* Hmm?? But ok. */
2581
                return 0;
10,656✔
2582
        if (r < 0)
10,656✔
2583
                return log_link_debug_errno(link, r, "Failed to read interface name in RTM_NEWLINK message: %m");
×
2584

2585
        if (streq(ifname, link->ifname))
10,656✔
2586
                return 0;
2587

2588
        r = format_ifname(link->ifindex, ifname_from_index);
44✔
2589
        if (r < 0)
44✔
2590
                return log_link_debug_errno(link, r, "Could not get interface name for index %i.", link->ifindex);
5✔
2591

2592
        if (!streq(ifname, ifname_from_index)) {
39✔
UNCOV
2593
                log_link_debug(link, "New interface name '%s' received from the kernel does not correspond "
×
2594
                               "with the name currently configured on the actual interface '%s'. Ignoring.",
2595
                               ifname, ifname_from_index);
UNCOV
2596
                return 0;
×
2597
        }
2598

2599
        log_link_info(link, "Interface name change detected, renamed to %s.", ifname);
39✔
2600

2601
        hashmap_remove(link->manager->links_by_name, link->ifname);
39✔
2602

2603
        r = free_and_strdup(&link->ifname, ifname);
39✔
2604
        if (r < 0)
39✔
2605
                return log_oom_debug();
×
2606

2607
        r = hashmap_ensure_put(&link->manager->links_by_name, &string_hash_ops, link->ifname, link);
39✔
2608
        if (r < 0)
39✔
2609
                return log_link_debug_errno(link, r, "Failed to manage link by its new name: %m");
×
2610

2611
        if (link->dhcp_client) {
39✔
2612
                r = sd_dhcp_client_set_ifname(link->dhcp_client, link->ifname);
×
2613
                if (r < 0)
×
2614
                        return log_link_debug_errno(link, r, "Failed to update interface name in DHCP client: %m");
×
2615
        }
2616

2617
        if (link->dhcp6_client) {
39✔
2618
                r = sd_dhcp6_client_set_ifname(link->dhcp6_client, link->ifname);
×
2619
                if (r < 0)
×
2620
                        return log_link_debug_errno(link, r, "Failed to update interface name in DHCPv6 client: %m");
×
2621
        }
2622

2623
        if (link->ndisc) {
39✔
2624
                r = sd_ndisc_set_ifname(link->ndisc, link->ifname);
×
2625
                if (r < 0)
×
2626
                        return log_link_debug_errno(link, r, "Failed to update interface name in NDisc: %m");
×
2627
        }
2628

2629
        if (link->dhcp_server) {
39✔
2630
                r = sd_dhcp_server_set_ifname(link->dhcp_server, link->ifname);
×
2631
                if (r < 0)
×
2632
                        return log_link_debug_errno(link, r, "Failed to update interface name in DHCP server: %m");
×
2633
        }
2634

2635
        if (link->radv) {
39✔
2636
                r = sd_radv_set_ifname(link->radv, link->ifname);
×
2637
                if (r < 0)
×
2638
                        return log_link_debug_errno(link, r, "Failed to update interface name in Router Advertisement: %m");
×
2639
        }
2640

2641
        if (link->lldp_rx) {
39✔
2642
                r = sd_lldp_rx_set_ifname(link->lldp_rx, link->ifname);
2✔
2643
                if (r < 0)
2✔
2644
                        return log_link_debug_errno(link, r, "Failed to update interface name in LLDP Rx: %m");
×
2645
        }
2646

2647
        if (link->lldp_tx) {
39✔
2648
                r = sd_lldp_tx_set_ifname(link->lldp_tx, link->ifname);
×
2649
                if (r < 0)
×
2650
                        return log_link_debug_errno(link, r, "Failed to update interface name in LLDP Tx: %m");
×
2651
        }
2652

2653
        if (link->ipv4ll) {
39✔
2654
                r = sd_ipv4ll_set_ifname(link->ipv4ll, link->ifname);
×
2655
                if (r < 0)
×
2656
                        return log_link_debug_errno(link, r, "Failed to update interface name in IPv4LL client: %m");
×
2657
        }
2658

2659
        r = ipv4acd_set_ifname(link);
39✔
2660
        if (r < 0)
39✔
2661
                return log_link_debug_errno(link, r, "Failed to update interface name in IPv4ACD client: %m");
×
2662

2663
        return 1; /* needs reconfigure */
2664
}
2665

2666
static int link_update(Link *link, sd_netlink_message *message) {
10,656✔
2667
        bool needs_reconfigure = false;
10,656✔
2668
        int r;
10,656✔
2669

2670
        assert(link);
10,656✔
2671
        assert(message);
10,656✔
2672

2673
        r = link_update_name(link, message);
10,656✔
2674
        if (r < 0)
10,656✔
2675
                return r;
2676
        needs_reconfigure = needs_reconfigure || r > 0;
10,651✔
2677

2678
        r = link_update_alternative_names(link, message);
10,651✔
2679
        if (r < 0)
10,651✔
2680
                return r;
2681
        needs_reconfigure = needs_reconfigure || r > 0;
10,651✔
2682

2683
        r = link_update_mtu(link, message);
10,651✔
2684
        if (r < 0)
10,651✔
2685
                return r;
2686

2687
        r = link_update_driver(link, message);
10,651✔
2688
        if (r < 0)
10,651✔
2689
                return r;
2690
        needs_reconfigure = needs_reconfigure || r > 0;
10,651✔
2691

2692
        r = link_update_permanent_hardware_address(link, message);
10,651✔
2693
        if (r < 0)
10,651✔
2694
                return r;
2695
        needs_reconfigure = needs_reconfigure || r > 0;
10,651✔
2696

2697
        r = link_update_hardware_address(link, message);
10,651✔
2698
        if (r < 0)
10,651✔
2699
                return r;
2700
        needs_reconfigure = needs_reconfigure || r > 0;
10,651✔
2701

2702
        r = link_update_master(link, message);
10,651✔
2703
        if (r < 0)
10,651✔
2704
                return r;
2705

2706
        r = link_update_ipv6ll_addrgen_mode(link, message);
10,651✔
2707
        if (r < 0)
10,651✔
2708
                return r;
2709

2710
        r = link_update_flags(link, message);
10,651✔
2711
        if (r < 0)
10,651✔
2712
                return r;
2713

2714
        r = link_update_bridge_vlan(link, message);
10,650✔
2715
        if (r < 0)
10,650✔
2716
                return r;
2717

2718
        return needs_reconfigure;
10,650✔
2719
}
2720

2721
static Link *link_drop_or_unref(Link *link) {
×
2722
        if (!link)
×
2723
                return NULL;
2724
        if (!link->manager)
×
2725
                return link_unref(link);
×
2726
        return link_drop(link);
×
2727
}
2728

2729
DEFINE_TRIVIAL_CLEANUP_FUNC(Link*, link_drop_or_unref);
2,810✔
2730

2731
static int link_new(Manager *manager, sd_netlink_message *message, Link **ret) {
2,810✔
2732
        _cleanup_free_ char *ifname = NULL, *kind = NULL, *state_file = NULL, *lease_file = NULL;
2,810✔
2733
        _cleanup_(link_drop_or_unrefp) Link *link = NULL;
2,810✔
2734
        unsigned short iftype;
2,810✔
2735
        int r, ifindex;
2,810✔
2736

2737
        assert(manager);
2,810✔
2738
        assert(message);
2,810✔
2739
        assert(ret);
2,810✔
2740

2741
        r = sd_rtnl_message_link_get_ifindex(message, &ifindex);
2,810✔
2742
        if (r < 0)
2,810✔
2743
                return log_debug_errno(r, "rtnl: failed to read ifindex from link message: %m");
×
2744
        else if (ifindex <= 0)
2,810✔
2745
                return log_debug_errno(SYNTHETIC_ERRNO(EINVAL), "rtnl: received link message without valid ifindex.");
×
2746

2747
        r = sd_rtnl_message_link_get_type(message, &iftype);
2,810✔
2748
        if (r < 0)
2,810✔
2749
                return log_debug_errno(r, "rtnl: failed to read interface type from link message: %m");
×
2750

2751
        r = sd_netlink_message_read_string_strdup(message, IFLA_IFNAME, &ifname);
2,810✔
2752
        if (r < 0)
2,810✔
2753
                return log_debug_errno(r, "rtnl: failed to read interface name from link message: %m");
×
2754

2755
        /* check for link kind */
2756
        r = sd_netlink_message_enter_container(message, IFLA_LINKINFO);
2,810✔
2757
        if (r >= 0) {
2,810✔
2758
                r = sd_netlink_message_read_string_strdup(message, IFLA_INFO_KIND, &kind);
2,270✔
2759
                if (r < 0 && r != -ENODATA)
2,270✔
2760
                        return log_debug_errno(r, "rtnl: failed to read interface kind from link message: %m");
×
2761
                r = sd_netlink_message_exit_container(message);
2,270✔
2762
                if (r < 0)
2,270✔
2763
                        return log_debug_errno(r, "rtnl: failed to exit IFLA_LINKINFO container: %m");
×
2764
        }
2765

2766
        if (!manager->test_mode) {
2,810✔
2767
                /* Do not update state files when running in test mode. */
2768
                if (asprintf(&state_file, "/run/systemd/netif/links/%d", ifindex) < 0)
2,809✔
2769
                        return log_oom_debug();
×
2770

2771
                if (asprintf(&lease_file, "/run/systemd/netif/leases/%d", ifindex) < 0)
2,809✔
2772
                        return log_oom_debug();
×
2773
        }
2774

2775
        link = new(Link, 1);
2,810✔
2776
        if (!link)
2,810✔
2777
                return -ENOMEM;
2778

2779
        *link = (Link) {
2,810✔
2780
                .n_ref = 1,
2781
                .state = LINK_STATE_PENDING,
2782
                .online_state = _LINK_ONLINE_STATE_INVALID,
2783
                .automatic_reconfigure_ratelimit = (const RateLimit) { .interval = 10 * USEC_PER_SEC, .burst = 5 },
2784
                .ifindex = ifindex,
2785
                .iftype = iftype,
2786
                .ifname = TAKE_PTR(ifname),
2,810✔
2787
                .kind = TAKE_PTR(kind),
2,810✔
2788

2789
                .bridge_vlan_pvid = UINT16_MAX,
2790

2791
                .ipv6ll_address_gen_mode = _IPV6_LINK_LOCAL_ADDRESS_GEN_MODE_INVALID,
2792

2793
                .state_file = TAKE_PTR(state_file),
2,810✔
2794
                .lease_file = TAKE_PTR(lease_file),
2,810✔
2795

2796
                .n_dns = UINT_MAX,
2797
                .dns_default_route = -1,
2798
                .llmnr = _RESOLVE_SUPPORT_INVALID,
2799
                .mdns = _RESOLVE_SUPPORT_INVALID,
2800
                .dnssec_mode = _DNSSEC_MODE_INVALID,
2801
                .dns_over_tls_mode = _DNS_OVER_TLS_MODE_INVALID,
2802
        };
2803

2804
        r = hashmap_ensure_put(&manager->links_by_index, &link_hash_ops, INT_TO_PTR(link->ifindex), link);
2,810✔
2805
        if (r < 0)
2,810✔
2806
                return log_link_debug_errno(link, r, "Failed to store link into manager: %m");
×
2807

2808
        link->manager = manager;
2,810✔
2809

2810
        r = hashmap_ensure_put(&manager->links_by_name, &string_hash_ops, link->ifname, link);
2,810✔
2811
        if (r < 0)
2,810✔
2812
                return log_link_debug_errno(link, r, "Failed to manage link by its interface name: %m");
×
2813

2814
        log_link_debug(link, "Saved new link: ifindex=%i, iftype=%s(%u), kind=%s",
3,350✔
2815
                       link->ifindex, strna(arphrd_to_name(link->iftype)), link->iftype, strna(link->kind));
2816

2817
        /* If contained in this set, the link is wireless and the corresponding NL80211_CMD_NEW_INTERFACE
2818
         * message arrived too early. Request the wireless link information again.
2819
         */
2820
        if (set_remove(manager->new_wlan_ifindices, INT_TO_PTR(link->ifindex))) {
2,810✔
2821
                r = link_get_wlan_interface(link);
×
2822
                if (r < 0)
×
2823
                        log_link_warning_errno(link, r, "Failed to get wireless interface, ignoring: %m");
×
2824
        }
2825

2826
        *ret = TAKE_PTR(link);
2,810✔
2827
        return 0;
2,810✔
2828
}
2829

2830
int manager_rtnl_process_link(sd_netlink *rtnl, sd_netlink_message *message, Manager *manager) {
6,591✔
2831
        Link *link = NULL;
6,591✔
2832
        NetDev *netdev = NULL;
6,591✔
2833
        uint16_t type;
6,591✔
2834
        const char *name;
6,591✔
2835
        int r, ifindex;
6,591✔
2836

2837
        assert(rtnl);
6,591✔
2838
        assert(message);
6,591✔
2839
        assert(manager);
6,591✔
2840

2841
        if (sd_netlink_message_is_error(message)) {
6,591✔
2842
                r = sd_netlink_message_get_errno(message);
×
2843
                if (r < 0)
×
2844
                        log_message_warning_errno(message, r, "rtnl: Could not receive link message, ignoring");
×
2845

2846
                return 0;
×
2847
        }
2848

2849
        r = sd_netlink_message_get_type(message, &type);
6,591✔
2850
        if (r < 0) {
6,591✔
2851
                log_warning_errno(r, "rtnl: Could not get message type, ignoring: %m");
×
2852
                return 0;
×
2853
        } else if (!IN_SET(type, RTM_NEWLINK, RTM_DELLINK)) {
6,591✔
2854
                log_warning("rtnl: Received unexpected message type %u when processing link, ignoring.", type);
×
2855
                return 0;
×
2856
        }
2857

2858
        r = sd_rtnl_message_link_get_ifindex(message, &ifindex);
6,591✔
2859
        if (r < 0) {
6,591✔
2860
                log_warning_errno(r, "rtnl: Could not get ifindex from link message, ignoring: %m");
×
2861
                return 0;
×
2862
        } else if (ifindex <= 0) {
6,591✔
2863
                log_warning("rtnl: received link message with invalid ifindex %d, ignoring.", ifindex);
×
2864
                return 0;
×
2865
        }
2866

2867
        r = sd_netlink_message_read_string(message, IFLA_IFNAME, &name);
6,591✔
2868
        if (r < 0) {
6,591✔
2869
                log_warning_errno(r, "rtnl: Received link message without ifname, ignoring: %m");
×
2870
                return 0;
×
2871
        }
2872

2873
        (void) link_get_by_index(manager, ifindex, &link);
6,591✔
2874
        (void) netdev_get(manager, name, &netdev);
6,591✔
2875

2876
        switch (type) {
6,591✔
2877
        case RTM_NEWLINK:
5,704✔
2878
                if (netdev) {
5,704✔
2879
                        /* netdev exists, so make sure the ifindex matches */
2880
                        r = netdev_set_ifindex(netdev, message);
2,893✔
2881
                        if (r < 0) {
2,893✔
2882
                                log_netdev_warning_errno(netdev, r, "Could not process new link message for netdev, ignoring: %m");
×
2883
                                netdev_enter_failed(netdev);
×
2884
                                return 0;
×
2885
                        }
2886
                }
2887

2888
                if (!link) {
5,704✔
2889
                        /* link is new, so add it */
2890
                        r = link_new(manager, message, &link);
2,810✔
2891
                        if (r < 0) {
2,810✔
2892
                                log_warning_errno(r, "Could not process new link message: %m");
×
2893
                                return 0;
×
2894
                        }
2895

2896
                        r = link_update(link, message);
2,810✔
2897
                        if (r < 0) {
2,810✔
2898
                                log_link_warning_errno(link, r, "Could not process link message: %m");
×
2899
                                link_enter_failed(link);
×
2900
                                return 0;
×
2901
                        }
2902

2903
                        if (link->manager->test_mode) {
2,810✔
2904
                                log_link_debug(link, "Running in test mode, refusing to enter initialized state.");
1✔
2905
                                link_set_state(link, LINK_STATE_UNMANAGED);
1✔
2906
                                return 0;
1✔
2907
                        }
2908

2909
                        /* Do not enter initialized state if we are enumerating. */
2910
                        if (manager->enumerating)
2,809✔
2911
                                return 0;
2912

2913
                        r = link_check_initialized(link);
932✔
2914
                        if (r < 0) {
932✔
2915
                                log_link_warning_errno(link, r, "Failed to check link is initialized: %m");
×
2916
                                link_enter_failed(link);
×
2917
                                return 0;
×
2918
                        }
2919
                } else {
2920
                        r = link_update(link, message);
2,894✔
2921
                        if (r < 0) {
2,894✔
2922
                                log_link_warning_errno(link, r, "Could not process link message: %m");
6✔
2923
                                link_enter_failed(link);
6✔
2924
                                return 0;
6✔
2925
                        }
2926
                        if (r == 0)
2,888✔
2927
                                return 0;
2928

2929
                        if (link->manager->test_mode) {
469✔
2930
                                log_link_debug(link, "Running in test mode, refusing to configure interface.");
×
2931
                                link_set_state(link, LINK_STATE_UNMANAGED);
×
2932
                                return 0;
×
2933
                        }
2934

2935
                        /* Do not configure interface if we are enumerating. */
2936
                        if (manager->enumerating)
469✔
2937
                                return 0;
2938

2939
                        r = link_reconfigure_impl(link, /* flags= */ 0);
468✔
2940
                        if (r < 0) {
468✔
2941
                                log_link_warning_errno(link, r, "Failed to reconfigure interface: %m");
×
2942
                                link_enter_failed(link);
×
2943
                                return 0;
×
2944
                        }
2945
                }
2946
                break;
2947

2948
        case RTM_DELLINK:
887✔
2949
                link_drop(link);
887✔
2950
                netdev_drop(netdev);
887✔
2951
                break;
2952

2953
        default:
×
2954
                assert_not_reached();
×
2955
        }
2956

2957
        return 1;
2958
}
2959

2960
int link_getlink_handler_internal(sd_netlink *rtnl, sd_netlink_message *m, Link *link, const char *error_msg) {
4,961✔
2961
        uint16_t message_type;
4,961✔
2962
        int r;
4,961✔
2963

2964
        assert(m);
4,961✔
2965
        assert(link);
4,961✔
2966
        assert(error_msg);
4,961✔
2967

2968
        if (IN_SET(link->state, LINK_STATE_FAILED, LINK_STATE_LINGER))
4,961✔
2969
                return 0;
4,961✔
2970

2971
        r = sd_netlink_message_get_errno(m);
4,952✔
2972
        if (r < 0) {
4,952✔
2973
                log_link_message_warning_errno(link, m, r, "%s", error_msg);
×
2974
                link_enter_failed(link);
×
2975
                return 0;
×
2976
        }
2977

2978
        r = sd_netlink_message_get_type(m, &message_type);
4,952✔
2979
        if (r < 0) {
4,952✔
2980
                log_link_debug_errno(link, r, "rtnl: failed to read link message type, ignoring: %m");
×
2981
                return 0;
×
2982
        }
2983
        if (message_type != RTM_NEWLINK) {
4,952✔
2984
                log_link_debug(link, "rtnl: received invalid link message type, ignoring.");
×
2985
                return 0;
×
2986
        }
2987

2988
        r = link_update(link, m);
4,952✔
2989
        if (r < 0) {
4,952✔
2990
                link_enter_failed(link);
×
2991
                return 0;
×
2992
        }
2993

2994
        return 1;
2995
}
2996

2997
int link_call_getlink(Link *link, link_netlink_message_handler_t callback) {
3,596✔
2998
        _cleanup_(sd_netlink_message_unrefp) sd_netlink_message *req = NULL;
3,596✔
2999
        int r;
3,596✔
3000

3001
        assert(link);
3,596✔
3002
        assert(link->manager);
3,596✔
3003
        assert(link->manager->rtnl);
3,596✔
3004
        assert(callback);
3,596✔
3005

3006
        r = sd_rtnl_message_new_link(link->manager->rtnl, &req, RTM_GETLINK, link->ifindex);
3,596✔
3007
        if (r < 0)
3,596✔
3008
                return r;
3009

3010
        r = netlink_call_async(link->manager->rtnl, NULL, req, callback,
3,596✔
3011
                               link_netlink_destroy_callback, link);
3012
        if (r < 0)
3,596✔
3013
                return r;
3014

3015
        link_ref(link);
3,596✔
3016
        return 0;
3017
}
3018

3019
static const char* const link_state_table[_LINK_STATE_MAX] = {
3020
        [LINK_STATE_PENDING]     = "pending",
3021
        [LINK_STATE_INITIALIZED] = "initialized",
3022
        [LINK_STATE_CONFIGURING] = "configuring",
3023
        [LINK_STATE_CONFIGURED]  = "configured",
3024
        [LINK_STATE_UNMANAGED]   = "unmanaged",
3025
        [LINK_STATE_FAILED]      = "failed",
3026
        [LINK_STATE_LINGER]      = "linger",
3027
};
3028

3029
DEFINE_STRING_TABLE_LOOKUP(link_state, LinkState);
33,039✔
3030

3031
int link_flags_to_string_alloc(uint32_t flags, char **ret) {
594✔
3032
        _cleanup_free_ char *str = NULL;
594✔
3033
        static const char* map[] = {
594✔
3034
                [LOG2U(IFF_UP)]          = "up",             /* interface is up. */
3035
                [LOG2U(IFF_BROADCAST)]   = "broadcast",      /* broadcast address valid. */
3036
                [LOG2U(IFF_DEBUG)]       = "debug",          /* turn on debugging. */
3037
                [LOG2U(IFF_LOOPBACK)]    = "loopback",       /* interface is a loopback net. */
3038
                [LOG2U(IFF_POINTOPOINT)] = "point-to-point", /* interface has p-p link. */
3039
                [LOG2U(IFF_NOTRAILERS)]  = "no-trailers",    /* avoid use of trailers. */
3040
                [LOG2U(IFF_RUNNING)]     = "running",        /* interface RFC2863 OPER_UP. */
3041
                [LOG2U(IFF_NOARP)]       = "no-arp",         /* no ARP protocol. */
3042
                [LOG2U(IFF_PROMISC)]     = "promiscuous",    /* receive all packets. */
3043
                [LOG2U(IFF_ALLMULTI)]    = "all-multicast",  /* receive all multicast packets. */
3044
                [LOG2U(IFF_MASTER)]      = "master",         /* master of a load balancer. */
3045
                [LOG2U(IFF_SLAVE)]       = "slave",          /* slave of a load balancer. */
3046
                [LOG2U(IFF_MULTICAST)]   = "multicast",      /* supports multicast. */
3047
                [LOG2U(IFF_PORTSEL)]     = "portsel",        /* can set media type. */
3048
                [LOG2U(IFF_AUTOMEDIA)]   = "auto-media",     /* auto media select active. */
3049
                [LOG2U(IFF_DYNAMIC)]     = "dynamic",        /* dialup device with changing addresses. */
3050
                [LOG2U(IFF_LOWER_UP)]    = "lower-up",       /* driver signals L1 up. */
3051
                [LOG2U(IFF_DORMANT)]     = "dormant",        /* driver signals dormant. */
3052
                [LOG2U(IFF_ECHO)]        = "echo",           /* echo sent packets. */
3053
        };
3054

3055
        assert(ret);
594✔
3056

3057
        for (size_t i = 0; i < ELEMENTSOF(map); i++)
11,880✔
3058
                if (BIT_SET(flags, i) && map[i])
11,286✔
3059
                        if (!strextend_with_separator(&str, ",", map[i]))
1,679✔
3060
                                return -ENOMEM;
3061

3062
        *ret = TAKE_PTR(str);
594✔
3063
        return 0;
594✔
3064
}
3065

3066
static const char * const kernel_operstate_table[] = {
3067
        [IF_OPER_UNKNOWN]        = "unknown",
3068
        [IF_OPER_NOTPRESENT]     = "not-present",
3069
        [IF_OPER_DOWN]           = "down",
3070
        [IF_OPER_LOWERLAYERDOWN] = "lower-layer-down",
3071
        [IF_OPER_TESTING]        = "testing",
3072
        [IF_OPER_DORMANT]        = "dormant",
3073
        [IF_OPER_UP]             = "up",
3074
};
3075

3076
DEFINE_STRING_TABLE_LOOKUP_TO_STRING(kernel_operstate, int);
594✔
3077

3078
bool link_has_local_lease_domain(Link *link) {
12,783✔
3079
        assert(link);
12,783✔
3080

3081
        return link->dhcp_server &&
12,935✔
3082
                link->network &&
152✔
3083
                link->network->dhcp_server_local_lease_domain &&
12,947✔
3084
                !dns_name_is_root(link->network->dhcp_server_local_lease_domain);
12✔
3085
}
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