chiark / gitweb /
tree-wide: remove Lennart's copyright lines
[elogind.git] / src / core / cgroup.h
1 /* SPDX-License-Identifier: LGPL-2.1+ */
2 #pragma once
3
4 #include <stdbool.h>
5
6 #include "cgroup-util.h"
7 //#include "ip-address-access.h"
8 //#include "list.h"
9 //#include "time-util.h"
10
11 #if 0 /// UNNEEDED by elogind
12 typedef struct CGroupContext CGroupContext;
13 typedef struct CGroupDeviceAllow CGroupDeviceAllow;
14 typedef struct CGroupIODeviceWeight CGroupIODeviceWeight;
15 typedef struct CGroupIODeviceLimit CGroupIODeviceLimit;
16 typedef struct CGroupBlockIODeviceWeight CGroupBlockIODeviceWeight;
17 typedef struct CGroupBlockIODeviceBandwidth CGroupBlockIODeviceBandwidth;
18
19 typedef enum CGroupDevicePolicy {
20
21         /* When devices listed, will allow those, plus built-in ones,
22         if none are listed will allow everything. */
23         CGROUP_AUTO,
24
25         /* Everything forbidden, except built-in ones and listed ones. */
26         CGROUP_CLOSED,
27
28         /* Everythings forbidden, except for the listed devices */
29         CGROUP_STRICT,
30
31         _CGROUP_DEVICE_POLICY_MAX,
32         _CGROUP_DEVICE_POLICY_INVALID = -1
33 } CGroupDevicePolicy;
34
35 struct CGroupDeviceAllow {
36         LIST_FIELDS(CGroupDeviceAllow, device_allow);
37         char *path;
38         bool r:1;
39         bool w:1;
40         bool m:1;
41 };
42
43 struct CGroupIODeviceWeight {
44         LIST_FIELDS(CGroupIODeviceWeight, device_weights);
45         char *path;
46         uint64_t weight;
47 };
48
49 struct CGroupIODeviceLimit {
50         LIST_FIELDS(CGroupIODeviceLimit, device_limits);
51         char *path;
52         uint64_t limits[_CGROUP_IO_LIMIT_TYPE_MAX];
53 };
54
55 struct CGroupBlockIODeviceWeight {
56         LIST_FIELDS(CGroupBlockIODeviceWeight, device_weights);
57         char *path;
58         uint64_t weight;
59 };
60
61 struct CGroupBlockIODeviceBandwidth {
62         LIST_FIELDS(CGroupBlockIODeviceBandwidth, device_bandwidths);
63         char *path;
64         uint64_t rbps;
65         uint64_t wbps;
66 };
67
68 struct CGroupContext {
69         bool cpu_accounting;
70         bool io_accounting;
71         bool blockio_accounting;
72         bool memory_accounting;
73         bool tasks_accounting;
74         bool ip_accounting;
75
76         /* For unified hierarchy */
77         uint64_t cpu_weight;
78         uint64_t startup_cpu_weight;
79         usec_t cpu_quota_per_sec_usec;
80
81         uint64_t io_weight;
82         uint64_t startup_io_weight;
83         LIST_HEAD(CGroupIODeviceWeight, io_device_weights);
84         LIST_HEAD(CGroupIODeviceLimit, io_device_limits);
85
86         uint64_t memory_low;
87         uint64_t memory_high;
88         uint64_t memory_max;
89         uint64_t memory_swap_max;
90
91         LIST_HEAD(IPAddressAccessItem, ip_address_allow);
92         LIST_HEAD(IPAddressAccessItem, ip_address_deny);
93
94         /* For legacy hierarchies */
95         uint64_t cpu_shares;
96         uint64_t startup_cpu_shares;
97
98         uint64_t blockio_weight;
99         uint64_t startup_blockio_weight;
100         LIST_HEAD(CGroupBlockIODeviceWeight, blockio_device_weights);
101         LIST_HEAD(CGroupBlockIODeviceBandwidth, blockio_device_bandwidths);
102
103         uint64_t memory_limit;
104
105         CGroupDevicePolicy device_policy;
106         LIST_HEAD(CGroupDeviceAllow, device_allow);
107
108         /* Common */
109         uint64_t tasks_max;
110
111         bool delegate;
112         CGroupMask delegate_controllers;
113 };
114
115 /* Used when querying IP accounting data */
116 typedef enum CGroupIPAccountingMetric {
117         CGROUP_IP_INGRESS_BYTES,
118         CGROUP_IP_INGRESS_PACKETS,
119         CGROUP_IP_EGRESS_BYTES,
120         CGROUP_IP_EGRESS_PACKETS,
121         _CGROUP_IP_ACCOUNTING_METRIC_MAX,
122         _CGROUP_IP_ACCOUNTING_METRIC_INVALID = -1,
123 } CGroupIPAccountingMetric;
124
125 typedef struct Unit Unit;
126 typedef struct Manager Manager;
127
128 void cgroup_context_init(CGroupContext *c);
129 void cgroup_context_done(CGroupContext *c);
130 void cgroup_context_dump(CGroupContext *c, FILE* f, const char *prefix);
131
132 CGroupMask cgroup_context_get_mask(CGroupContext *c);
133
134 void cgroup_context_free_device_allow(CGroupContext *c, CGroupDeviceAllow *a);
135 void cgroup_context_free_io_device_weight(CGroupContext *c, CGroupIODeviceWeight *w);
136 void cgroup_context_free_io_device_limit(CGroupContext *c, CGroupIODeviceLimit *l);
137 void cgroup_context_free_blockio_device_weight(CGroupContext *c, CGroupBlockIODeviceWeight *w);
138 void cgroup_context_free_blockio_device_bandwidth(CGroupContext *c, CGroupBlockIODeviceBandwidth *b);
139
140 CGroupMask unit_get_own_mask(Unit *u);
141 CGroupMask unit_get_delegate_mask(Unit *u);
142 CGroupMask unit_get_members_mask(Unit *u);
143 CGroupMask unit_get_siblings_mask(Unit *u);
144 CGroupMask unit_get_subtree_mask(Unit *u);
145
146 CGroupMask unit_get_target_mask(Unit *u);
147 CGroupMask unit_get_enable_mask(Unit *u);
148
149 bool unit_get_needs_bpf(Unit *u);
150
151 void unit_update_cgroup_members_masks(Unit *u);
152
153 const char *unit_get_realized_cgroup_path(Unit *u, CGroupMask mask);
154 char *unit_default_cgroup_path(Unit *u);
155 int unit_set_cgroup_path(Unit *u, const char *path);
156 int unit_pick_cgroup_path(Unit *u);
157
158 int unit_realize_cgroup(Unit *u);
159 void unit_release_cgroup(Unit *u);
160 void unit_prune_cgroup(Unit *u);
161 int unit_watch_cgroup(Unit *u);
162
163 void unit_add_to_cgroup_empty_queue(Unit *u);
164
165 int unit_attach_pids_to_cgroup(Unit *u, Set *pids, const char *suffix_path);
166 #else
167 # include "logind.h"
168 #endif // 0
169
170 int manager_setup_cgroup(Manager *m);
171 void manager_shutdown_cgroup(Manager *m, bool delete);
172
173 #if 0 /// UNNEEDED by elogind
174 unsigned manager_dispatch_cgroup_realize_queue(Manager *m);
175
176 Unit *manager_get_unit_by_cgroup(Manager *m, const char *cgroup);
177 Unit *manager_get_unit_by_pid_cgroup(Manager *m, pid_t pid);
178 Unit* manager_get_unit_by_pid(Manager *m, pid_t pid);
179
180 int unit_search_main_pid(Unit *u, pid_t *ret);
181 int unit_watch_all_pids(Unit *u);
182
183 int unit_synthesize_cgroup_empty_event(Unit *u);
184
185 int unit_get_memory_current(Unit *u, uint64_t *ret);
186 int unit_get_tasks_current(Unit *u, uint64_t *ret);
187 int unit_get_cpu_usage(Unit *u, nsec_t *ret);
188 int unit_get_ip_accounting(Unit *u, CGroupIPAccountingMetric metric, uint64_t *ret);
189
190 int unit_reset_cpu_accounting(Unit *u);
191 int unit_reset_ip_accounting(Unit *u);
192
193 #define UNIT_CGROUP_BOOL(u, name)                       \
194         ({                                              \
195         CGroupContext *cc = unit_get_cgroup_context(u); \
196         cc ? cc->name : false;                          \
197         })
198
199 #endif // 0
200 bool manager_owns_root_cgroup(Manager *m);
201
202 #if 0 /// UNNEEDED by elogind
203 bool unit_has_root_cgroup(Unit *u);
204 #endif // 0
205
206 int manager_notify_cgroup_empty(Manager *m, const char *group);
207
208 #if 0 /// UNNEEDED by elogind
209 void unit_invalidate_cgroup(Unit *u, CGroupMask m);
210 void unit_invalidate_cgroup_bpf(Unit *u);
211
212 void manager_invalidate_startup_units(Manager *m);
213
214 const char* cgroup_device_policy_to_string(CGroupDevicePolicy i) _const_;
215 CGroupDevicePolicy cgroup_device_policy_from_string(const char *s) _pure_;
216
217 bool unit_cgroup_delegate(Unit *u);
218 #endif // 0