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db9ecf05 1/* SPDX-License-Identifier: LGPL-2.1-or-later */
c2f1db8f 2#pragma once
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3
4#include <stdbool.h>
5#include <stdlib.h>
bbc9006e 6#include <unistd.h>
87f0e418 7
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8#include "sd-id128.h"
9
6a48d82f 10#include "bpf-program.h"
134e56dc 11#include "condition.h"
87a47f99 12#include "emergency-action.h"
71d35b6b 13#include "list.h"
5bcf34eb 14#include "show-status.h"
fab34748 15#include "set.h"
5cfa33e0 16#include "unit-file.h"
6b659ed8 17#include "cgroup.h"
87f0e418 18
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19typedef struct UnitRef UnitRef;
20
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21typedef enum KillOperation {
22 KILL_TERMINATE,
1d98fef1 23 KILL_TERMINATE_AND_LOG,
a232ebcc 24 KILL_RESTART,
db2cb23b 25 KILL_KILL,
c87700a1 26 KILL_WATCHDOG,
4940c0b0 27 _KILL_OPERATION_MAX,
2d93c20e 28 _KILL_OPERATION_INVALID = -EINVAL,
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29} KillOperation;
30
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31typedef enum CollectMode {
32 COLLECT_INACTIVE,
33 COLLECT_INACTIVE_OR_FAILED,
34 _COLLECT_MODE_MAX,
2d93c20e 35 _COLLECT_MODE_INVALID = -EINVAL,
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36} CollectMode;
37
87f0e418 38static inline bool UNIT_IS_ACTIVE_OR_RELOADING(UnitActiveState t) {
3742095b 39 return IN_SET(t, UNIT_ACTIVE, UNIT_RELOADING);
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40}
41
42static inline bool UNIT_IS_ACTIVE_OR_ACTIVATING(UnitActiveState t) {
3742095b 43 return IN_SET(t, UNIT_ACTIVE, UNIT_ACTIVATING, UNIT_RELOADING);
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44}
45
46static inline bool UNIT_IS_INACTIVE_OR_DEACTIVATING(UnitActiveState t) {
3742095b 47 return IN_SET(t, UNIT_INACTIVE, UNIT_FAILED, UNIT_DEACTIVATING);
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48}
49
fdf20a31 50static inline bool UNIT_IS_INACTIVE_OR_FAILED(UnitActiveState t) {
3742095b 51 return IN_SET(t, UNIT_INACTIVE, UNIT_FAILED);
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52}
53
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54static inline bool UNIT_IS_LOAD_COMPLETE(UnitLoadState t) {
55 return t >= 0 && t < _UNIT_LOAD_STATE_MAX && t != UNIT_STUB && t != UNIT_MERGED;
56}
57
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58/* Stores the 'reason' a dependency was created as a bit mask, i.e. due to which configuration source it came to be. We
59 * use this so that we can selectively flush out parts of dependencies again. Note that the same dependency might be
60 * created as a result of multiple "reasons", hence the bitmask. */
61typedef enum UnitDependencyMask {
5238e957 62 /* Configured directly by the unit file, .wants/.requires symlink or drop-in, or as an immediate result of a
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63 * non-dependency option configured that way. */
64 UNIT_DEPENDENCY_FILE = 1 << 0,
65
66 /* As unconditional implicit dependency (not affected by unit configuration — except by the unit name and
67 * type) */
68 UNIT_DEPENDENCY_IMPLICIT = 1 << 1,
69
70 /* A dependency effected by DefaultDependencies=yes. Note that dependencies marked this way are conceptually
71 * just a subset of UNIT_DEPENDENCY_FILE, as DefaultDependencies= is itself a unit file setting that can only
72 * be set in unit files. We make this two separate bits only to help debugging how dependencies came to be. */
73 UNIT_DEPENDENCY_DEFAULT = 1 << 2,
74
75 /* A dependency created from udev rules */
76 UNIT_DEPENDENCY_UDEV = 1 << 3,
77
78 /* A dependency created because of some unit's RequiresMountsFor= setting */
79 UNIT_DEPENDENCY_PATH = 1 << 4,
80
81 /* A dependency created because of data read from /proc/self/mountinfo and no other configuration source */
82 UNIT_DEPENDENCY_MOUNTINFO_IMPLICIT = 1 << 5,
83
84 /* A dependency created because of data read from /proc/self/mountinfo, but conditionalized by
85 * DefaultDependencies= and thus also involving configuration from UNIT_DEPENDENCY_FILE sources */
86 UNIT_DEPENDENCY_MOUNTINFO_DEFAULT = 1 << 6,
87
88 /* A dependency created because of data read from /proc/swaps and no other configuration source */
89 UNIT_DEPENDENCY_PROC_SWAP = 1 << 7,
90
ef31828d 91 _UNIT_DEPENDENCY_MASK_FULL = (1 << 8) - 1,
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92} UnitDependencyMask;
93
94/* The Unit's dependencies[] hashmaps use this structure as value. It has the same size as a void pointer, and thus can
95 * be stored directly as hashmap value, without any indirection. Note that this stores two masks, as both the origin
96 * and the destination of a dependency might have created it. */
97typedef union UnitDependencyInfo {
98 void *data;
99 struct {
100 UnitDependencyMask origin_mask:16;
101 UnitDependencyMask destination_mask:16;
102 } _packed_;
103} UnitDependencyInfo;
104
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105/* Newer LLVM versions don't like implicit casts from large pointer types to smaller enums, hence let's add
106 * explicit type-safe helpers for that. */
107static inline UnitDependency UNIT_DEPENDENCY_FROM_PTR(const void *p) {
108 return PTR_TO_INT(p);
109}
110
111static inline void* UNIT_DEPENDENCY_TO_PTR(UnitDependency d) {
112 return INT_TO_PTR(d);
113}
114
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115#include "job.h"
116
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117struct UnitRef {
118 /* Keeps tracks of references to a unit. This is useful so
119 * that we can merge two units if necessary and correct all
120 * references to them */
121
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122 Unit *source, *target;
123 LIST_FIELDS(UnitRef, refs_by_target);
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124};
125
57b7a260 126typedef struct Unit {
87f0e418 127 Manager *manager;
23a177ef 128
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129 UnitType type;
130 UnitLoadState load_state;
23a177ef 131 Unit *merged_into;
87f0e418 132
4562c355 133 char *id; /* The one special name that we use for identification */
9e2f7c11 134 char *instance;
87f0e418 135
4562c355 136 Set *aliases; /* All the other names. */
87f0e418 137
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138 /* For each dependency type we can look up another Hashmap with this, whose key is a Unit* object,
139 * and whose value encodes why the dependency exists, using the UnitDependencyInfo type. i.e. a
140 * Hashmap(UnitDependency → Hashmap(Unit* → UnitDependencyInfo)) */
141 Hashmap *dependencies;
eef85c4a 142
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143 /* Similar, for RequiresMountsFor= path dependencies. The key is the path, the value the
144 * UnitDependencyInfo type */
eef85c4a 145 Hashmap *requires_mounts_for;
7c8fa05c 146
87f0e418 147 char *description;
49dbfa7b 148 char **documentation;
faf919f1 149
6be1e7d5 150 char *fragment_path; /* if loaded from a config file this is the primary path to it */
1b64d026 151 char *source_path; /* if converted, the source file */
ae7a7182 152 char **dropin_paths;
f78f265f 153
c2911d48 154 usec_t fragment_not_found_timestamp_hash;
45fb0699 155 usec_t fragment_mtime;
1b64d026 156 usec_t source_mtime;
ae7a7182 157 usec_t dropin_mtime;
87f0e418 158
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159 /* If this is a transient unit we are currently writing, this is where we are writing it to */
160 FILE *transient_file;
161
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162 /* Freezer state */
163 sd_bus_message *pending_freezer_message;
164 FreezerState freezer_state;
165
166 /* Job timeout and action to take */
167 EmergencyAction job_timeout_action;
168 usec_t job_timeout;
169 usec_t job_running_timeout;
170 char *job_timeout_reboot_arg;
171
e0209d83 172 /* If there is something to do with this unit, then this is the installed job for it */
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173 Job *job;
174
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175 /* JOB_NOP jobs are special and can be installed without disturbing the real job. */
176 Job *nop_job;
177
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178 /* The slot used for watching NameOwnerChanged signals */
179 sd_bus_slot *match_bus_slot;
a5a8776a 180 sd_bus_slot *get_name_owner_slot;
bbc29086 181
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182 /* References to this unit from clients */
183 sd_bus_track *bus_track;
184 char **deserialized_refs;
185
57020a3a 186 /* References to this */
7f7d01ed 187 LIST_HEAD(UnitRef, refs_by_target);
57020a3a 188
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189 /* Conditions to check */
190 LIST_HEAD(Condition, conditions);
59fccdc5 191 LIST_HEAD(Condition, asserts);
52661efd 192
90bbc946 193 dual_timestamp condition_timestamp;
59fccdc5 194 dual_timestamp assert_timestamp;
90bbc946 195
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196 /* Updated whenever the low-level state changes */
197 dual_timestamp state_change_timestamp;
198
199 /* Updated whenever the (high-level) active state enters or leaves the active or inactive states */
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200 dual_timestamp inactive_exit_timestamp;
201 dual_timestamp active_enter_timestamp;
202 dual_timestamp active_exit_timestamp;
203 dual_timestamp inactive_enter_timestamp;
87f0e418 204
ef734fd6 205 /* Per type list */
ac155bb8 206 LIST_FIELDS(Unit, units_by_type);
c1e1601e 207
701cc384 208 /* Load queue */
ac155bb8 209 LIST_FIELDS(Unit, load_queue);
701cc384 210
c1e1601e 211 /* D-Bus queue */
ac155bb8 212 LIST_FIELDS(Unit, dbus_queue);
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213
214 /* Cleanup queue */
ac155bb8 215 LIST_FIELDS(Unit, cleanup_queue);
9d58f1db 216
701cc384 217 /* GC queue */
ac155bb8 218 LIST_FIELDS(Unit, gc_queue);
701cc384 219
4ad49000 220 /* CGroup realize members queue */
91a6073e 221 LIST_FIELDS(Unit, cgroup_realize_queue);
4ad49000 222
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223 /* cgroup empty queue */
224 LIST_FIELDS(Unit, cgroup_empty_queue);
225
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226 /* cgroup OOM queue */
227 LIST_FIELDS(Unit, cgroup_oom_queue);
228
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229 /* Target dependencies queue */
230 LIST_FIELDS(Unit, target_deps_queue);
231
0bc488c9 232 /* Queue of units with StopWhenUnneeded= set that shall be checked for clean-up. */
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233 LIST_FIELDS(Unit, stop_when_unneeded_queue);
234
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235 /* Queue of units that have an Uphold= dependency from some other unit, and should be checked for starting */
236 LIST_FIELDS(Unit, start_when_upheld_queue);
237
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238 /* Queue of units that have a BindTo= dependency on some other unit, and should possibly be shut down */
239 LIST_FIELDS(Unit, stop_when_bound_queue);
240
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241 /* PIDs we keep an eye on. Note that a unit might have many
242 * more, but these are the ones we care enough about to
243 * process SIGCHLD for */
244 Set *pids;
245
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246 /* Used in SIGCHLD and sd_notify() message event invocation logic to avoid that we dispatch the same event
247 * multiple times on the same unit. */
248 unsigned sigchldgen;
249 unsigned notifygen;
36f20ae3 250
701cc384 251 /* Used during GC sweeps */
eced69b3 252 unsigned gc_marker;
701cc384 253
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254 /* Error code when we didn't manage to load the unit (negative) */
255 int load_error;
256
6bf0f408 257 /* Put a ratelimit on unit starting */
7bf081a1 258 RateLimit start_ratelimit;
87a47f99 259 EmergencyAction start_limit_action;
53c35a76 260
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261 /* The unit has been marked for reload, restart, etc. Stored as 1u << marker1 | 1u << marker2. */
262 unsigned markers;
263
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264 /* What to do on failure or success */
265 EmergencyAction success_action, failure_action;
266 int success_action_exit_status, failure_action_exit_status;
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267 char *reboot_arg;
268
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269 /* Make sure we never enter endless loops with the StopWhenUnneeded=, BindsTo=, Uphold= logic */
270 RateLimit auto_start_stop_ratelimit;
bea355da 271
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272 /* Reference to a specific UID/GID */
273 uid_t ref_uid;
274 gid_t ref_gid;
275
d2dc52db 276 /* Cached unit file state and preset */
a4375746 277 UnitFileState unit_file_state;
d2dc52db 278 int unit_file_preset;
a4375746 279
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280 /* Where the cpu.stat or cpuacct.usage was at the time the unit was started */
281 nsec_t cpu_usage_base;
fe700f46 282 nsec_t cpu_usage_last; /* the most recently read value */
5ad096b3 283
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284 /* The current counter of processes sent SIGKILL by systemd-oomd */
285 uint64_t managed_oom_kill_last;
286
287 /* The current counter of the oom_kill field in the memory.events cgroup attribute */
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288 uint64_t oom_kill_last;
289
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290 /* Where the io.stat data was at the time the unit was started */
291 uint64_t io_accounting_base[_CGROUP_IO_ACCOUNTING_METRIC_MAX];
292 uint64_t io_accounting_last[_CGROUP_IO_ACCOUNTING_METRIC_MAX]; /* the most recently read value */
293
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294 /* Counterparts in the cgroup filesystem */
295 char *cgroup_path;
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296 CGroupMask cgroup_realized_mask; /* In which hierarchies does this unit's cgroup exist? (only relevant on cgroup v1) */
297 CGroupMask cgroup_enabled_mask; /* Which controllers are enabled (or more correctly: enabled for the children) for this unit's cgroup? (only relevant on cgroup v2) */
5238e957 298 CGroupMask cgroup_invalidated_mask; /* A mask specifying controllers which shall be considered invalidated, and require re-realization */
5a62e5e2 299 CGroupMask cgroup_members_mask; /* A cache for the controllers required by all children of this cgroup (only relevant for slice units) */
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300
301 /* Inotify watch descriptors for watching cgroup.events and memory.events on cgroupv2 */
0bb814c2 302 int cgroup_control_inotify_wd;
afcfaa69 303 int cgroup_memory_inotify_wd;
7c52a17b 304
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305 /* Device Controller BPF program */
306 BPFProgram *bpf_device_control_installed;
307
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308 /* IP BPF Firewalling/accounting */
309 int ip_accounting_ingress_map_fd;
310 int ip_accounting_egress_map_fd;
0fd9c28c 311 uint64_t ip_accounting_extra[_CGROUP_IP_ACCOUNTING_METRIC_MAX];
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312
313 int ipv4_allow_map_fd;
314 int ipv6_allow_map_fd;
315 int ipv4_deny_map_fd;
316 int ipv6_deny_map_fd;
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317 BPFProgram *ip_bpf_ingress, *ip_bpf_ingress_installed;
318 BPFProgram *ip_bpf_egress, *ip_bpf_egress_installed;
0fd9c28c 319
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320 Set *ip_bpf_custom_ingress;
321 Set *ip_bpf_custom_ingress_installed;
322 Set *ip_bpf_custom_egress;
323 Set *ip_bpf_custom_egress_installed;
6a48d82f 324
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325 /* BPF programs managed (e.g. loaded to kernel) by an entity external to systemd,
326 * attached to unit cgroup by provided program fd and attach type. */
327 Hashmap *bpf_foreign_by_key;
328
3d027d4d 329 FDSet *initial_socket_bind_link_fds;
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330#if BPF_FRAMEWORK
331 /* BPF links to BPF programs attached to cgroup/bind{4|6} hooks and
332 * responsible for allowing or denying a unit to bind(2) to a socket
333 * address. */
334 struct bpf_link *ipv4_socket_bind_link;
335 struct bpf_link *ipv6_socket_bind_link;
336#endif
337
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338 FDSet *initial_restric_ifaces_link_fds;
339#if BPF_FRAMEWORK
340 struct bpf_link *restrict_ifaces_ingress_bpf_link;
341 struct bpf_link *restrict_ifaces_egress_bpf_link;
342#endif
343
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344 /* Low-priority event source which is used to remove watched PIDs that have gone away, and subscribe to any new
345 * ones which might have appeared. */
346 sd_event_source *rewatch_pids_event_source;
347
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348 /* How to start OnSuccess=/OnFailure= units */
349 JobMode on_success_job_mode;
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350 JobMode on_failure_job_mode;
351
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352 /* Tweaking the GC logic */
353 CollectMode collect_mode;
354
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355 /* The current invocation ID */
356 sd_id128_t invocation_id;
357 char invocation_id_string[SD_ID128_STRING_MAX]; /* useful when logging */
358
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359 /* Garbage collect us we nobody wants or requires us anymore */
360 bool stop_when_unneeded;
361
35b8ca3a 362 /* Create default dependencies */
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363 bool default_dependencies;
364
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365 /* Refuse manual starting, allow starting only indirectly via dependency. */
366 bool refuse_manual_start;
367
368 /* Don't allow the user to stop this unit manually, allow stopping only indirectly via dependency. */
369 bool refuse_manual_stop;
370
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371 /* Allow isolation requests */
372 bool allow_isolate;
373
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374 /* Ignore this unit when isolating */
375 bool ignore_on_isolate;
376
49f43d5f 377 /* Did the last condition check succeed? */
90bbc946 378 bool condition_result;
59fccdc5 379 bool assert_result;
90bbc946 380
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381 /* Is this a transient unit? */
382 bool transient;
383
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384 /* Is this a unit that is always running and cannot be stopped? */
385 bool perpetual;
386
66fa4bdd 387 /* Booleans indicating membership of this unit in the various queues */
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388 bool in_load_queue:1;
389 bool in_dbus_queue:1;
390 bool in_cleanup_queue:1;
701cc384 391 bool in_gc_queue:1;
91a6073e 392 bool in_cgroup_realize_queue:1;
09e24654 393 bool in_cgroup_empty_queue:1;
afcfaa69 394 bool in_cgroup_oom_queue:1;
19496554 395 bool in_target_deps_queue:1;
a3c1168a 396 bool in_stop_when_unneeded_queue:1;
0bc488c9 397 bool in_start_when_upheld_queue:1;
56c59592 398 bool in_stop_when_bound_queue:1;
701cc384 399
9d58f1db 400 bool sent_dbus_new_signal:1;
6c073082 401
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402 bool job_running_timeout_set:1;
403
cd6d0a45 404 bool in_audit:1;
adefcf28 405 bool on_console:1;
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406
407 bool cgroup_realized:1;
bc432dc7 408 bool cgroup_members_mask_valid:1;
f78f265f 409
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410 /* Reset cgroup accounting next time we fork something off */
411 bool reset_accounting:1;
412
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413 bool start_limit_hit:1;
414
f78f265f 415 /* Did we already invoke unit_coldplug() for this unit? */
f8a30ce5 416 bool coldplugged:1;
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417
418 /* For transient units: whether to add a bus track reference after creating the unit */
419 bool bus_track_add:1;
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420
421 /* Remember which unit state files we created */
422 bool exported_invocation_id:1;
423 bool exported_log_level_max:1;
424 bool exported_log_extra_fields:1;
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425 bool exported_log_ratelimit_interval:1;
426 bool exported_log_ratelimit_burst:1;
2e59b241 427
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428 /* Whether we warned about clamping the CPU quota period */
429 bool warned_clamping_cpu_quota_period:1;
430
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431 /* When writing transient unit files, stores which section we stored last. If < 0, we didn't write any yet. If
432 * == 0 we are in the [Unit] section, if > 0 we are in the unit type-specific section. */
845d247a 433 signed int last_section_private:2;
57b7a260 434} Unit;
87f0e418 435
57b7a260 436typedef struct UnitStatusMessageFormats {
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437 const char *starting_stopping[2];
438 const char *finished_start_job[_JOB_RESULT_MAX];
439 const char *finished_stop_job[_JOB_RESULT_MAX];
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440 /* If this entry is present, it'll be called to provide a context-dependent format string,
441 * or NULL to fall back to finished_{start,stop}_job; if those are NULL too, fall back to generic. */
442 const char *(*finished_job)(Unit *u, JobType t, JobResult result);
57b7a260 443} UnitStatusMessageFormats;
c6918296 444
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LP
445/* Flags used when writing drop-in files or transient unit files */
446typedef enum UnitWriteFlags {
447 /* Write a runtime unit file or drop-in (i.e. one below /run) */
448 UNIT_RUNTIME = 1 << 0,
449
450 /* Write a persistent drop-in (i.e. one below /etc) */
451 UNIT_PERSISTENT = 1 << 1,
452
453 /* Place this item in the per-unit-type private section, instead of [Unit] */
454 UNIT_PRIVATE = 1 << 2,
455
456 /* Apply specifier escaping before writing */
457 UNIT_ESCAPE_SPECIFIERS = 1 << 3,
458
459 /* Apply C escaping before writing */
460 UNIT_ESCAPE_C = 1 << 4,
461} UnitWriteFlags;
462
463/* Returns true if neither persistent, nor runtime storage is requested, i.e. this is a check invocation only */
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LP
464static inline bool UNIT_WRITE_FLAGS_NOOP(UnitWriteFlags flags) {
465 return (flags & (UNIT_RUNTIME|UNIT_PERSISTENT)) == 0;
466}
8e2af478 467
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FS
468#include "kill.h"
469
470typedef struct UnitVTable {
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471 /* How much memory does an object of this unit type need */
472 size_t object_size;
473
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474 /* If greater than 0, the offset into the object where
475 * ExecContext is found, if the unit type has that */
476 size_t exec_context_offset;
477
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478 /* If greater than 0, the offset into the object where
479 * CGroupContext is found, if the unit type has that */
480 size_t cgroup_context_offset;
481
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482 /* If greater than 0, the offset into the object where
483 * KillContext is found, if the unit type has that */
484 size_t kill_context_offset;
485
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486 /* If greater than 0, the offset into the object where the
487 * pointer to ExecRuntime is found, if the unit type has
488 * that */
489 size_t exec_runtime_offset;
490
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491 /* If greater than 0, the offset into the object where the pointer to DynamicCreds is found, if the unit type
492 * has that. */
493 size_t dynamic_creds_offset;
494
ee33e53a 495 /* The name of the configuration file section with the private settings of this unit */
4ad49000 496 const char *private_section;
71645aca 497
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498 /* Config file sections this unit type understands, separated
499 * by NUL chars */
500 const char *sections;
501
e537352b 502 /* This should reset all type-specific variables. This should
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503 * not allocate memory, and is called with zero-initialized
504 * data. It should hence only initialize variables that need
505 * to be set != 0. */
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LP
506 void (*init)(Unit *u);
507
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508 /* This should free all type-specific variables. It should be
509 * idempotent. */
510 void (*done)(Unit *u);
511
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512 /* Actually load data from disk. This may fail, and should set
513 * load_state to UNIT_LOADED, UNIT_MERGED or leave it at
514 * UNIT_STUB if no configuration could be found. */
515 int (*load)(Unit *u);
516
f0831ed2 517 /* During deserialization we only record the intended state to return to. With coldplug() we actually put the
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LP
518 * deserialized state in effect. This is where unit_notify() should be called to start things up. Note that
519 * this callback is invoked *before* we leave the reloading state of the manager, i.e. *before* we consider the
520 * reloading to be complete. Thus, this callback should just restore the exact same state for any unit that was
521 * in effect before the reload, i.e. units should not catch up with changes happened during the reload. That's
522 * what catchup() below is for. */
be847e82 523 int (*coldplug)(Unit *u);
87f0e418 524
a95c0505
LP
525 /* This is called shortly after all units' coldplug() call was invoked, and *after* the manager left the
526 * reloading state. It's supposed to catch up with state changes due to external events we missed so far (for
527 * example because they took place while we were reloading/reexecing) */
f0831ed2
LP
528 void (*catchup)(Unit *u);
529
87f0e418
LP
530 void (*dump)(Unit *u, FILE *f, const char *prefix);
531
532 int (*start)(Unit *u);
533 int (*stop)(Unit *u);
534 int (*reload)(Unit *u);
535
718db961 536 int (*kill)(Unit *u, KillWho w, int signo, sd_bus_error *error);
8a0867d6 537
380dc8b0
LP
538 /* Clear out the various runtime/state/cache/logs/configuration data */
539 int (*clean)(Unit *u, ExecCleanMask m);
540
d9e45bc3
MS
541 /* Freeze the unit */
542 int (*freeze)(Unit *u);
543 int (*thaw)(Unit *u);
544 bool (*can_freeze)(Unit *u);
545
380dc8b0
LP
546 /* Return which kind of data can be cleaned */
547 int (*can_clean)(Unit *u, ExecCleanMask *ret);
548
87f0e418
LP
549 bool (*can_reload)(Unit *u);
550
1ece068e
ZJS
551 /* Serialize state and file descriptors that should be carried over into the new
552 * instance after reexecution. */
a16e1123
LP
553 int (*serialize)(Unit *u, FILE *f, FDSet *fds);
554
555 /* Restore one item from the serialization */
556 int (*deserialize_item)(Unit *u, const char *key, const char *data, FDSet *fds);
557
01e10de3 558 /* Try to match up fds with what we need for this unit */
9ff1a6f1 559 void (*distribute_fds)(Unit *u, FDSet *fds);
01e10de3 560
87f0e418
LP
561 /* Boils down the more complex internal state of this unit to
562 * a simpler one that the engine can understand */
563 UnitActiveState (*active_state)(Unit *u);
564
10a94420
LP
565 /* Returns the substate specific to this unit type as
566 * string. This is purely information so that we can give the
35b8ca3a 567 * user a more fine grained explanation in which actual state a
10a94420
LP
568 * unit is in. */
569 const char* (*sub_state_to_string)(Unit *u);
570
deb4e708
MK
571 /* Additionally to UnitActiveState determine whether unit is to be restarted. */
572 bool (*will_restart)(Unit *u);
573
f2f725e5
ZJS
574 /* Return false when there is a reason to prevent this unit from being gc'ed
575 * even though nothing references it and it isn't active in any way. */
576 bool (*may_gc)(Unit *u);
701cc384 577
39c79477
ZJS
578 /* Return true when the unit is not controlled by the manager (e.g. extrinsic mounts). */
579 bool (*is_extrinsic)(Unit *u);
580
7eb2a8a1
LP
581 /* When the unit is not running and no job for it queued we shall release its runtime resources */
582 void (*release_resources)(Unit *u);
a354329f 583
718db961 584 /* Invoked on every child that died */
87f0e418 585 void (*sigchld_event)(Unit *u, pid_t pid, int code, int status);
7824bbeb 586
fdf20a31
MM
587 /* Reset failed state if we are in failed state */
588 void (*reset_failed)(Unit *u);
5632e374 589
afcfaa69 590 /* Called whenever any of the cgroups this unit watches for ran empty */
4ad49000 591 void (*notify_cgroup_empty)(Unit *u);
8e274523 592
afcfaa69
LP
593 /* Called whenever an OOM kill event on this unit was seen */
594 void (*notify_cgroup_oom)(Unit *u);
595
8c47c732 596 /* Called whenever a process of this unit sends us a message */
fcee2755 597 void (*notify_message)(Unit *u, const struct ucred *ucred, char * const *tags, FDSet *fds);
8c47c732 598
00d9ef85 599 /* Called whenever a name this Unit registered for comes or goes away. */
fc67a943 600 void (*bus_name_owner_change)(Unit *u, const char *new_owner);
05e343b7 601
8e2af478 602 /* Called for each property that is being set */
2e59b241 603 int (*bus_set_property)(Unit *u, const char *name, sd_bus_message *message, UnitWriteFlags flags, sd_bus_error *error);
8e2af478
LP
604
605 /* Called after at least one property got changed to apply the necessary change */
606 int (*bus_commit_properties)(Unit *u);
607
a7f241db
LP
608 /* Return the unit this unit is following */
609 Unit *(*following)(Unit *u);
610
6210e7fc
LP
611 /* Return the set of units that are following each other */
612 int (*following_set)(Unit *u, Set **s);
613
3ecaa09b
LP
614 /* Invoked each time a unit this unit is triggering changes
615 * state or gains/loses a job */
616 void (*trigger_notify)(Unit *u, Unit *trigger);
617
8742514c
LP
618 /* Called whenever CLOCK_REALTIME made a jump */
619 void (*time_change)(Unit *u);
620
bbf5fd8e
LP
621 /* Called whenever /etc/localtime was modified */
622 void (*timezone_change)(Unit *u);
623
7a7821c8
LP
624 /* Returns the next timeout of a unit */
625 int (*get_timeout)(Unit *u, usec_t *timeout);
68db7a3b 626
291d565a
LP
627 /* Returns the main PID if there is any defined, or 0. */
628 pid_t (*main_pid)(Unit *u);
629
630 /* Returns the main PID if there is any defined, or 0. */
631 pid_t (*control_pid)(Unit *u);
632
bb2c7685
LP
633 /* Returns true if the unit currently needs access to the console */
634 bool (*needs_console)(Unit *u);
635
7af67e9a
LP
636 /* Returns the exit status to propagate in case of FailureAction=exit/SuccessAction=exit; usually returns the
637 * exit code of the "main" process of the service or similar. */
638 int (*exit_status)(Unit *u);
639
5e1669ff
ZJS
640 /* Return a copy of the status string pointer. */
641 const char* (*status_text)(Unit *u);
642
04eb582a
LP
643 /* Like the enumerate() callback further down, but only enumerates the perpetual units, i.e. all units that
644 * unconditionally exist and are always active. The main reason to keep both enumeration functions separate is
645 * philosophical: the state of perpetual units should be put in place by coldplug(), while the state of those
646 * discovered through regular enumeration should be put in place by catchup(), see below. */
647 void (*enumerate_perpetual)(Manager *m);
648
f0831ed2
LP
649 /* This is called for each unit type and should be used to enumerate units already existing in the system
650 * internally and load them. However, everything that is loaded here should still stay in inactive state. It is
04eb582a 651 * the job of the catchup() call above to put the units into the discovered state. */
ba64af90 652 void (*enumerate)(Manager *m);
f50e0a01
LP
653
654 /* Type specific cleanups. */
7824bbeb 655 void (*shutdown)(Manager *m);
9d58f1db 656
cbd4a8df 657 /* If this function is set and returns false all jobs for units
0faacd47 658 * of this type will immediately fail. */
1c2e9646 659 bool (*supported)(void);
0faacd47 660
718db961 661 /* The strings to print in status messages */
c6918296
MS
662 UnitStatusMessageFormats status_message_formats;
663
c2756a68 664 /* True if transient units of this type are OK */
cbd4a8df 665 bool can_transient;
c5a97ed1 666
1d9cc876 667 /* True if cgroup delegation is permissible */
cbd4a8df 668 bool can_delegate;
1d9cc876 669
c80a9a33 670 /* True if the unit type triggers other units, i.e. can have a UNIT_TRIGGERS dependency */
cbd4a8df 671 bool can_trigger;
c80a9a33
LP
672
673 /* True if the unit type knows a failure state, and thus can be source of an OnFailure= dependency */
cbd4a8df 674 bool can_fail;
c80a9a33 675
d4fd1cf2 676 /* True if units of this type shall be startable only once and then never again */
cbd4a8df 677 bool once_only;
d4fd1cf2 678
755021d4
ZJS
679 /* Do not serialize this unit when preparing for root switch */
680 bool exclude_from_switch_root_serialization;
681
c5a97ed1 682 /* True if queued jobs of this type should be GC'ed if no other job needs them anymore */
cbd4a8df 683 bool gc_jobs;
4d824a4e
AZ
684
685 /* True if systemd-oomd can monitor and act on this unit's recursive children's cgroup(s) */
cbd4a8df 686 bool can_set_managed_oom;
57b7a260 687} UnitVTable;
87f0e418
LP
688
689extern const UnitVTable * const unit_vtable[_UNIT_TYPE_MAX];
690
c2503e35 691static inline const UnitVTable* UNIT_VTABLE(const Unit *u) {
6529ccfa
LP
692 return unit_vtable[u->type];
693}
87f0e418
LP
694
695/* For casting a unit into the various unit types */
696#define DEFINE_CAST(UPPERCASE, MixedCase) \
697 static inline MixedCase* UPPERCASE(Unit *u) { \
ac155bb8 698 if (_unlikely_(!u || u->type != UNIT_##UPPERCASE)) \
87f0e418
LP
699 return NULL; \
700 \
701 return (MixedCase*) u; \
702 }
703
704/* For casting the various unit types into a unit */
bbf11206
LP
705#define UNIT(u) \
706 ({ \
707 typeof(u) _u_ = (u); \
708 Unit *_w_ = _u_ ? &(_u_)->meta : NULL; \
709 _w_; \
710 })
87f0e418 711
35b7ff80
LP
712#define UNIT_HAS_EXEC_CONTEXT(u) (UNIT_VTABLE(u)->exec_context_offset > 0)
713#define UNIT_HAS_CGROUP_CONTEXT(u) (UNIT_VTABLE(u)->cgroup_context_offset > 0)
714#define UNIT_HAS_KILL_CONTEXT(u) (UNIT_VTABLE(u)->kill_context_offset > 0)
715
15ed3c3a
LP
716Unit* unit_has_dependency(const Unit *u, UnitDependencyAtom atom, Unit *other);
717int unit_get_dependency_array(const Unit *u, UnitDependencyAtom atom, Unit ***ret_array);
718
719static inline Hashmap* unit_get_dependencies(Unit *u, UnitDependency d) {
720 return hashmap_get(u->dependencies, UNIT_DEPENDENCY_TO_PTR(d));
721}
722
6529ccfa 723static inline Unit* UNIT_TRIGGER(Unit *u) {
15ed3c3a 724 return unit_has_dependency(u, UNIT_ATOM_TRIGGERS, NULL);
6529ccfa 725}
3ecaa09b 726
12f64221 727static inline Unit* UNIT_GET_SLICE(const Unit *u) {
d219a2b0 728 return unit_has_dependency(u, UNIT_ATOM_IN_SLICE, NULL);
12f64221
LP
729}
730
75db809a
ZJS
731Unit* unit_new(Manager *m, size_t size);
732Unit* unit_free(Unit *u);
dc409696 733DEFINE_TRIVIAL_CLEANUP_FUNC(Unit *, unit_free);
87f0e418 734
a581e45a 735int unit_new_for_name(Manager *m, size_t size, const char *name, Unit **ret);
87f0e418 736int unit_add_name(Unit *u, const char *name);
9e2f7c11 737
eef85c4a
LP
738int unit_add_dependency(Unit *u, UnitDependency d, Unit *other, bool add_reference, UnitDependencyMask mask);
739int unit_add_two_dependencies(Unit *u, UnitDependency d, UnitDependency e, Unit *other, bool add_reference, UnitDependencyMask mask);
2c966c03 740
35d8c19a 741int unit_add_dependency_by_name(Unit *u, UnitDependency d, const char *name, bool add_reference, UnitDependencyMask mask);
5a724170 742int unit_add_two_dependencies_by_name(Unit *u, UnitDependency d, UnitDependency e, const char *name, bool add_reference, UnitDependencyMask mask);
2c966c03 743
23a177ef
LP
744int unit_add_exec_dependencies(Unit *u, ExecContext *c);
745
0ae97ec1 746int unit_choose_id(Unit *u, const char *name);
f50e0a01 747int unit_set_description(Unit *u, const char *description);
87f0e418 748
f2f725e5 749bool unit_may_gc(Unit *u);
701cc384 750
39c79477
ZJS
751static inline bool unit_is_extrinsic(Unit *u) {
752 return u->perpetual ||
753 (UNIT_VTABLE(u)->is_extrinsic && UNIT_VTABLE(u)->is_extrinsic(u));
754}
755
5e1669ff
ZJS
756static inline const char* unit_status_text(Unit *u) {
757 if (u && UNIT_VTABLE(u)->status_text)
758 return UNIT_VTABLE(u)->status_text(u);
759 return NULL;
760}
761
87f0e418 762void unit_add_to_load_queue(Unit *u);
c1e1601e 763void unit_add_to_dbus_queue(Unit *u);
23a177ef 764void unit_add_to_cleanup_queue(Unit *u);
701cc384 765void unit_add_to_gc_queue(Unit *u);
19496554 766void unit_add_to_target_deps_queue(Unit *u);
fda09318 767void unit_submit_to_stop_when_unneeded_queue(Unit *u);
0bc488c9 768void unit_submit_to_start_when_upheld_queue(Unit *u);
56c59592 769void unit_submit_to_stop_when_bound_queue(Unit *u);
87f0e418
LP
770
771int unit_merge(Unit *u, Unit *other);
23a177ef
LP
772int unit_merge_by_name(Unit *u, const char *other);
773
44a6b1b6 774Unit *unit_follow_merge(Unit *u) _pure_;
87f0e418 775
c3620770 776int unit_load_fragment_and_dropin(Unit *u, bool fragment_required);
87f0e418
LP
777int unit_load(Unit *unit);
778
d219a2b0 779int unit_set_slice(Unit *u, Unit *slice, UnitDependencyMask mask);
d79200e2 780int unit_set_default_slice(Unit *u);
a016b922 781
44a6b1b6 782const char *unit_description(Unit *u) _pure_;
04d232d8 783const char *unit_status_string(Unit *u, char **combined);
87f0e418 784
303ee601 785bool unit_has_name(const Unit *u, const char *name);
f278026d 786
87f0e418 787UnitActiveState unit_active_state(Unit *u);
d9e45bc3
MS
788FreezerState unit_freezer_state(Unit *u);
789int unit_freezer_state_kernel(Unit *u, FreezerState *ret);
87f0e418 790
10a94420
LP
791const char* unit_sub_state_to_string(Unit *u);
792
44a6b1b6
ZJS
793bool unit_can_reload(Unit *u) _pure_;
794bool unit_can_start(Unit *u) _pure_;
f5869324 795bool unit_can_stop(Unit *u) _pure_;
44a6b1b6 796bool unit_can_isolate(Unit *u) _pure_;
87f0e418
LP
797
798int unit_start(Unit *u);
799int unit_stop(Unit *u);
800int unit_reload(Unit *u);
801
718db961
LP
802int unit_kill(Unit *u, KillWho w, int signo, sd_bus_error *error);
803int unit_kill_common(Unit *u, KillWho who, int signo, pid_t main_pid, pid_t control_pid, sd_bus_error *error);
8a0867d6 804
2ad2e41a 805typedef enum UnitNotifyFlags {
ef31828d
LP
806 UNIT_NOTIFY_RELOAD_FAILURE = 1 << 0,
807 UNIT_NOTIFY_WILL_AUTO_RESTART = 1 << 1,
2ad2e41a
LP
808} UnitNotifyFlags;
809
810void unit_notify(Unit *u, UnitActiveState os, UnitActiveState ns, UnitNotifyFlags flags);
87f0e418 811
f75f613d 812int unit_watch_pid(Unit *u, pid_t pid, bool exclusive);
87f0e418 813void unit_unwatch_pid(Unit *u, pid_t pid);
a911bb9a
LP
814void unit_unwatch_all_pids(Unit *u);
815
50be4f4a
LP
816int unit_enqueue_rewatch_pids(Unit *u);
817void unit_dequeue_rewatch_pids(Unit *u);
87f0e418 818
9806e87d 819int unit_install_bus_match(Unit *u, sd_bus *bus, const char *name);
05e343b7
LP
820int unit_watch_bus_name(Unit *u, const char *name);
821void unit_unwatch_bus_name(Unit *u, const char *name);
822
87f0e418
LP
823bool unit_job_is_applicable(Unit *u, JobType j);
824
0301abf4
LP
825int set_unit_path(const char *p);
826
50159e6a 827char *unit_dbus_path(Unit *u);
4b58153d 828char *unit_dbus_path_invocation_id(Unit *u);
50159e6a 829
f6ff8c29
LP
830int unit_load_related_unit(Unit *u, const char *type, Unit **_found);
831
d336ba9f 832int unit_add_node_dependency(Unit *u, const char *what, UnitDependency d, UnitDependencyMask mask);
44b0d1fd 833int unit_add_blockdev_dependency(Unit *u, const char *what, UnitDependencyMask mask);
6e2ef85b 834
be847e82 835int unit_coldplug(Unit *u);
f0831ed2 836void unit_catchup(Unit *u);
cca098b0 837
04d232d8 838void unit_status_printf(Unit *u, StatusType status_type, const char *status, const char *format, const char *ident) _printf_(4, 0);
9e58ff9c 839
45fb0699
LP
840bool unit_need_daemon_reload(Unit *u);
841
fdf20a31 842void unit_reset_failed(Unit *u);
5632e374 843
a7f241db 844Unit *unit_following(Unit *u);
eeaedb7c 845int unit_following_set(Unit *u, Set **s);
a7f241db 846
9444b1f2
LP
847const char *unit_slice_name(Unit *u);
848
44a6b1b6
ZJS
849bool unit_stop_pending(Unit *u) _pure_;
850bool unit_inactive_or_pending(Unit *u) _pure_;
31afa0a4 851bool unit_active_or_pending(Unit *u);
52a12341 852bool unit_will_restart_default(Unit *u);
deb4e708 853bool unit_will_restart(Unit *u);
18ffdfda 854
bba34eed
LP
855int unit_add_default_target_dependency(Unit *u, Unit *target);
856
294446dc 857void unit_start_on_failure(Unit *u, const char *dependency_name, UnitDependencyAtom atom, JobMode job_mode);
3ecaa09b 858void unit_trigger_notify(Unit *u);
c0daa706 859
a4375746 860UnitFileState unit_get_unit_file_state(Unit *u);
d2dc52db 861int unit_get_unit_file_preset(Unit *u);
a4375746 862
7f7d01ed 863Unit* unit_ref_set(UnitRef *ref, Unit *source, Unit *target);
57020a3a
LP
864void unit_ref_unset(UnitRef *ref);
865
7f7d01ed
ZJS
866#define UNIT_DEREF(ref) ((ref).target)
867#define UNIT_ISSET(ref) (!!(ref).target)
57020a3a 868
598459ce 869int unit_patch_contexts(Unit *u);
e06c73cc 870
c2503e35 871ExecContext *unit_get_exec_context(const Unit *u) _pure_;
718db961 872KillContext *unit_get_kill_context(Unit *u) _pure_;
4ad49000 873CGroupContext *unit_get_cgroup_context(Unit *u) _pure_;
598459ce 874
613b411c
LP
875ExecRuntime *unit_get_exec_runtime(Unit *u) _pure_;
876
877int unit_setup_exec_runtime(Unit *u);
29206d46 878int unit_setup_dynamic_creds(Unit *u);
3ef63c31 879
2e59b241
LP
880char* unit_escape_setting(const char *s, UnitWriteFlags flags, char **buf);
881char* unit_concat_strv(char **l, UnitWriteFlags flags);
b9ec9359 882
2e59b241
LP
883int unit_write_setting(Unit *u, UnitWriteFlags flags, const char *name, const char *data);
884int unit_write_settingf(Unit *u, UnitWriteFlags mode, const char *name, const char *format, ...) _printf_(4,5);
b9ec9359 885
db2cb23b 886int unit_kill_context(Unit *u, KillContext *c, KillOperation k, pid_t main_pid, pid_t control_pid, bool main_pid_alien);
cd2086fe 887
c2756a68
LP
888int unit_make_transient(Unit *u);
889
eef85c4a 890int unit_require_mounts_for(Unit *u, const char *path, UnitDependencyMask mask);
a57f7e2c 891
1c2e9646
LP
892bool unit_type_supported(UnitType t);
893
0f13f3bd
LP
894bool unit_is_pristine(Unit *u);
895
a3c1168a 896bool unit_is_unneeded(Unit *u);
0bc488c9 897bool unit_is_upheld_by_active(Unit *u, Unit **ret_culprit);
56c59592 898bool unit_is_bound_by_inactive(Unit *u, Unit **ret_culprit);
a3c1168a 899
291d565a
LP
900pid_t unit_control_pid(Unit *u);
901pid_t unit_main_pid(Unit *u);
902
8b4305c7 903void unit_warn_if_dir_nonempty(Unit *u, const char* where);
25cd4964 904int unit_fail_if_noncanonical(Unit *u, const char* where);
8b4305c7 905
97a3f4ee 906int unit_test_start_limit(Unit *u);
07299350 907
00d9ef85
LP
908int unit_ref_uid_gid(Unit *u, uid_t uid, gid_t gid);
909void unit_unref_uid_gid(Unit *u, bool destroy_now);
910
911void unit_notify_user_lookup(Unit *u, uid_t uid, gid_t gid);
912
2d3b784d 913int unit_set_invocation_id(Unit *u, sd_id128_t id);
4b58153d
LP
914int unit_acquire_invocation_id(Unit *u);
915
c891efaf
FB
916bool unit_shall_confirm_spawn(Unit *u);
917
1ad6e8b3 918int unit_set_exec_params(Unit *s, ExecParameters *p);
f0d47797 919
4c253ed1 920int unit_fork_helper_process(Unit *u, const char *name, pid_t *ret);
810ef318 921int unit_fork_and_watch_rm_rf(Unit *u, char **paths, pid_t *ret_pid);
a79279c7 922
c999cf38
LP
923void unit_remove_dependencies(Unit *u, UnitDependencyMask mask);
924
d3070fbd
LP
925void unit_export_state_files(Unit *u);
926void unit_unlink_state_files(Unit *u);
927
3c7416b6
LP
928int unit_prepare_exec(Unit *u);
929
4c425434
LP
930int unit_log_leftover_process_start(pid_t pid, int sig, void *userdata);
931int unit_log_leftover_process_stop(pid_t pid, int sig, void *userdata);
932int unit_warn_leftover_processes(Unit *u, cg_kill_log_func_t log_func);
a4634b21 933
bb2c7685
LP
934bool unit_needs_console(Unit *u);
935
f156e60c 936const char *unit_label_path(const Unit *u);
81e9871e 937
6592b975
LP
938int unit_pid_attachable(Unit *unit, pid_t pid, sd_bus_error *error);
939
28a2dfe8
ZJS
940static inline bool unit_has_job_type(Unit *u, JobType type) {
941 return u && u->job && u->job->type == type;
942}
943
c2503e35
RH
944static inline bool unit_log_level_test(const Unit *u, int level) {
945 ExecContext *ec = unit_get_exec_context(u);
946 return !ec || ec->log_level_max < 0 || ec->log_level_max >= LOG_PRI(level);
947}
948
31cd5f63
AZ
949/* unit_log_skip is for cases like ExecCondition= where a unit is considered "done"
950 * after some execution, rather than succeeded or failed. */
951void unit_log_skip(Unit *u, const char *result);
523ee2d4 952void unit_log_success(Unit *u);
7c047d74 953void unit_log_failure(Unit *u, const char *result);
aac99f30
ZJS
954static inline void unit_log_result(Unit *u, bool success, const char *result) {
955 if (success)
956 unit_log_success(u);
957 else
958 unit_log_failure(u, result);
959}
960
5cc2cd1c 961void unit_log_process_exit(Unit *u, const char *kind, const char *command, bool success, int code, int status);
7c047d74 962
7af67e9a
LP
963int unit_exit_status(Unit *u);
964int unit_success_action_exit_status(Unit *u);
965int unit_failure_action_exit_status(Unit *u);
966
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LP
967int unit_test_trigger_loaded(Unit *u);
968
bb0c0d6f 969void unit_destroy_runtime_data(Unit *u, const ExecContext *context);
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LP
970int unit_clean(Unit *u, ExecCleanMask mask);
971int unit_can_clean(Unit *u, ExecCleanMask *ret_mask);
972
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MS
973bool unit_can_freeze(Unit *u);
974int unit_freeze(Unit *u);
975void unit_frozen(Unit *u);
976
977int unit_thaw(Unit *u);
978void unit_thawed(Unit *u);
979
980int unit_freeze_vtable_common(Unit *u);
981int unit_thaw_vtable_common(Unit *u);
982
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ZJS
983/* Macros which append UNIT= or USER_UNIT= to the message */
984
ac513634 985#define log_unit_full_errno_zerook(unit, level, error, ...) \
f2341e0a 986 ({ \
8dec4a9d 987 const Unit *_u = (unit); \
c2503e35
RH
988 const int _l = (level); \
989 (log_get_max_level() < LOG_PRI(_l) || (_u && !unit_log_level_test(_u, _l))) ? -ERRNO_VALUE(error) : \
990 _u ? log_object_internal(_l, error, PROJECT_FILE, __LINE__, __func__, _u->manager->unit_log_field, _u->id, _u->manager->invocation_log_field, _u->invocation_id_string, ##__VA_ARGS__) : \
991 log_internal(_l, error, PROJECT_FILE, __LINE__, __func__, ##__VA_ARGS__); \
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LP
992 })
993
ac513634
YW
994#define log_unit_full_errno(unit, level, error, ...) \
995 ({ \
996 int _error = (error); \
997 ASSERT_NON_ZERO(_error); \
998 log_unit_full_errno_zerook(unit, level, _error, ##__VA_ARGS__); \
999 })
1000
1001#define log_unit_full(unit, level, ...) (void) log_unit_full_errno_zerook(unit, level, 0, __VA_ARGS__)
8ed6f81b 1002
ac513634 1003#define log_unit_debug(unit, ...) log_unit_full(unit, LOG_DEBUG, __VA_ARGS__)
8ed6f81b
YW
1004#define log_unit_info(unit, ...) log_unit_full(unit, LOG_INFO, __VA_ARGS__)
1005#define log_unit_notice(unit, ...) log_unit_full(unit, LOG_NOTICE, __VA_ARGS__)
1006#define log_unit_warning(unit, ...) log_unit_full(unit, LOG_WARNING, __VA_ARGS__)
1007#define log_unit_error(unit, ...) log_unit_full(unit, LOG_ERR, __VA_ARGS__)
1008
1009#define log_unit_debug_errno(unit, error, ...) log_unit_full_errno(unit, LOG_DEBUG, error, __VA_ARGS__)
1010#define log_unit_info_errno(unit, error, ...) log_unit_full_errno(unit, LOG_INFO, error, __VA_ARGS__)
1011#define log_unit_notice_errno(unit, error, ...) log_unit_full_errno(unit, LOG_NOTICE, error, __VA_ARGS__)
1012#define log_unit_warning_errno(unit, error, ...) log_unit_full_errno(unit, LOG_WARNING, error, __VA_ARGS__)
1013#define log_unit_error_errno(unit, error, ...) log_unit_full_errno(unit, LOG_ERR, error, __VA_ARGS__)
f2341e0a 1014
c2503e35
RH
1015#define log_unit_struct_errno(unit, level, error, ...) \
1016 ({ \
1017 const Unit *_u = (unit); \
1018 const int _l = (level); \
1019 unit_log_level_test(_u, _l) ? \
1020 log_struct_errno(_l, error, __VA_ARGS__, LOG_UNIT_ID(_u)) : \
1021 -ERRNO_VALUE(error); \
1022 })
1023
1024#define log_unit_struct(unit, level, ...) log_unit_struct_errno(unit, level, 0, __VA_ARGS__)
1025
1026#define log_unit_struct_iovec_errno(unit, level, error, iovec, n_iovec) \
1027 ({ \
1028 const int _l = (level); \
1029 unit_log_level_test(unit, _l) ? \
1030 log_struct_iovec_errno(_l, error, iovec, n_iovec) : \
1031 -ERRNO_VALUE(error); \
1032 })
1033
1034#define log_unit_struct_iovec(unit, level, iovec, n_iovec) log_unit_struct_iovec_errno(unit, level, 0, iovec, n_iovec)
1035
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LP
1036#define LOG_UNIT_MESSAGE(unit, fmt, ...) "MESSAGE=%s: " fmt, (unit)->id, ##__VA_ARGS__
1037#define LOG_UNIT_ID(unit) (unit)->manager->unit_log_format_string, (unit)->id
f1c50bec 1038#define LOG_UNIT_INVOCATION_ID(unit) (unit)->manager->invocation_log_format_string, (unit)->invocation_id_string
5afe510c
LP
1039
1040const char* collect_mode_to_string(CollectMode m) _const_;
1041CollectMode collect_mode_from_string(const char *s) _pure_;
15ed3c3a
LP
1042
1043typedef struct UnitForEachDependencyData {
1044 /* Stores state for the FOREACH macro below for iterating through all deps that have any of the
1045 * specified dependency atom bits set */
1046 UnitDependencyAtom match_atom;
1047 Hashmap *by_type, *by_unit;
1048 void *current_type;
1049 Iterator by_type_iterator, by_unit_iterator;
1050 Unit **current_unit;
1051} UnitForEachDependencyData;
1052
1053/* Iterates through all dependencies that have a specific atom in the dependency type set. This tries to be
1054 * smart: if the atom is unique, we'll directly go to right entry. Otherwise we'll iterate through the
1055 * per-dependency type hashmap and match all dep that have the right atom set. */
1056#define _UNIT_FOREACH_DEPENDENCY(other, u, ma, data) \
1057 for (UnitForEachDependencyData data = { \
1058 .match_atom = (ma), \
1059 .by_type = (u)->dependencies, \
1060 .by_type_iterator = ITERATOR_FIRST, \
1061 .current_unit = &(other), \
1062 }; \
1063 ({ \
1064 UnitDependency _dt = _UNIT_DEPENDENCY_INVALID; \
1065 bool _found; \
1066 \
1067 if (data.by_type && ITERATOR_IS_FIRST(data.by_type_iterator)) { \
1068 _dt = unit_dependency_from_unique_atom(data.match_atom); \
1069 if (_dt >= 0) { \
1070 data.by_unit = hashmap_get(data.by_type, UNIT_DEPENDENCY_TO_PTR(_dt)); \
1071 data.current_type = UNIT_DEPENDENCY_TO_PTR(_dt); \
1072 data.by_type = NULL; \
1073 _found = !!data.by_unit; \
1074 } \
1075 } \
1076 if (_dt < 0) \
1077 _found = hashmap_iterate(data.by_type, \
1078 &data.by_type_iterator, \
1079 (void**)&(data.by_unit), \
1080 (const void**) &(data.current_type)); \
1081 _found; \
1082 }); ) \
1083 if ((unit_dependency_to_atom(UNIT_DEPENDENCY_FROM_PTR(data.current_type)) & data.match_atom) != 0) \
1084 for (data.by_unit_iterator = ITERATOR_FIRST; \
1085 hashmap_iterate(data.by_unit, \
1086 &data.by_unit_iterator, \
1087 NULL, \
1088 (const void**) data.current_unit); )
1089
1090/* Note: this matches deps that have *any* of the atoms specified in match_atom set */
1091#define UNIT_FOREACH_DEPENDENCY(other, u, match_atom) \
1092 _UNIT_FOREACH_DEPENDENCY(other, u, match_atom, UNIQ_T(data, UNIQ))