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b886d83c | 1 | // SPDX-License-Identifier: GPL-2.0-only |
dbec2846 EB |
2 | |
3 | #include <linux/stat.h> | |
4 | #include <linux/sysctl.h> | |
5 | #include <linux/slab.h> | |
5b825c3a | 6 | #include <linux/cred.h> |
f6b2db1a | 7 | #include <linux/hash.h> |
514c6032 | 8 | #include <linux/kmemleak.h> |
dbec2846 EB |
9 | #include <linux/user_namespace.h> |
10 | ||
905ae01c AG |
11 | struct ucounts init_ucounts = { |
12 | .ns = &init_user_ns, | |
13 | .uid = GLOBAL_ROOT_UID, | |
b6c33652 | 14 | .count = ATOMIC_INIT(1), |
905ae01c AG |
15 | }; |
16 | ||
f6b2db1a EB |
17 | #define UCOUNTS_HASHTABLE_BITS 10 |
18 | static struct hlist_head ucounts_hashtable[(1 << UCOUNTS_HASHTABLE_BITS)]; | |
19 | static DEFINE_SPINLOCK(ucounts_lock); | |
20 | ||
21 | #define ucounts_hashfn(ns, uid) \ | |
22 | hash_long((unsigned long)__kuid_val(uid) + (unsigned long)(ns), \ | |
23 | UCOUNTS_HASHTABLE_BITS) | |
24 | #define ucounts_hashentry(ns, uid) \ | |
25 | (ucounts_hashtable + ucounts_hashfn(ns, uid)) | |
26 | ||
27 | ||
dbec2846 EB |
28 | #ifdef CONFIG_SYSCTL |
29 | static struct ctl_table_set * | |
30 | set_lookup(struct ctl_table_root *root) | |
31 | { | |
32 | return ¤t_user_ns()->set; | |
33 | } | |
34 | ||
35 | static int set_is_seen(struct ctl_table_set *set) | |
36 | { | |
37 | return ¤t_user_ns()->set == set; | |
38 | } | |
39 | ||
40 | static int set_permissions(struct ctl_table_header *head, | |
41 | struct ctl_table *table) | |
42 | { | |
43 | struct user_namespace *user_ns = | |
44 | container_of(head->set, struct user_namespace, set); | |
45 | int mode; | |
46 | ||
47 | /* Allow users with CAP_SYS_RESOURCE unrestrained access */ | |
48 | if (ns_capable(user_ns, CAP_SYS_RESOURCE)) | |
49 | mode = (table->mode & S_IRWXU) >> 6; | |
50 | else | |
51 | /* Allow all others at most read-only access */ | |
52 | mode = table->mode & S_IROTH; | |
53 | return (mode << 6) | (mode << 3) | mode; | |
54 | } | |
55 | ||
56 | static struct ctl_table_root set_root = { | |
57 | .lookup = set_lookup, | |
58 | .permissions = set_permissions, | |
59 | }; | |
60 | ||
f153c224 SS |
61 | static long ue_zero = 0; |
62 | static long ue_int_max = INT_MAX; | |
63 | ||
64 | #define UCOUNT_ENTRY(name) \ | |
65 | { \ | |
66 | .procname = name, \ | |
67 | .maxlen = sizeof(long), \ | |
68 | .mode = 0644, \ | |
69 | .proc_handler = proc_doulongvec_minmax, \ | |
70 | .extra1 = &ue_zero, \ | |
71 | .extra2 = &ue_int_max, \ | |
25f9c081 | 72 | } |
f6b2db1a | 73 | static struct ctl_table user_table[] = { |
25f9c081 | 74 | UCOUNT_ENTRY("max_user_namespaces"), |
f333c700 | 75 | UCOUNT_ENTRY("max_pid_namespaces"), |
f7af3d1c | 76 | UCOUNT_ENTRY("max_uts_namespaces"), |
aba35661 | 77 | UCOUNT_ENTRY("max_ipc_namespaces"), |
70328660 | 78 | UCOUNT_ENTRY("max_net_namespaces"), |
537f7ccb | 79 | UCOUNT_ENTRY("max_mnt_namespaces"), |
d08311dd | 80 | UCOUNT_ENTRY("max_cgroup_namespaces"), |
eeec26d5 | 81 | UCOUNT_ENTRY("max_time_namespaces"), |
1cce1eea NB |
82 | #ifdef CONFIG_INOTIFY_USER |
83 | UCOUNT_ENTRY("max_inotify_instances"), | |
84 | UCOUNT_ENTRY("max_inotify_watches"), | |
5b8fea65 AG |
85 | #endif |
86 | #ifdef CONFIG_FANOTIFY | |
87 | UCOUNT_ENTRY("max_fanotify_groups"), | |
88 | UCOUNT_ENTRY("max_fanotify_marks"), | |
1cce1eea | 89 | #endif |
dbec2846 EB |
90 | { } |
91 | }; | |
92 | #endif /* CONFIG_SYSCTL */ | |
93 | ||
94 | bool setup_userns_sysctls(struct user_namespace *ns) | |
95 | { | |
96 | #ifdef CONFIG_SYSCTL | |
97 | struct ctl_table *tbl; | |
0f538e3e JK |
98 | |
99 | BUILD_BUG_ON(ARRAY_SIZE(user_table) != UCOUNT_COUNTS + 1); | |
dbec2846 | 100 | setup_sysctl_set(&ns->set, &set_root, set_is_seen); |
f6b2db1a | 101 | tbl = kmemdup(user_table, sizeof(user_table), GFP_KERNEL); |
dbec2846 | 102 | if (tbl) { |
25f9c081 EB |
103 | int i; |
104 | for (i = 0; i < UCOUNT_COUNTS; i++) { | |
105 | tbl[i].data = &ns->ucount_max[i]; | |
106 | } | |
f6b2db1a | 107 | ns->sysctls = __register_sysctl_table(&ns->set, "user", tbl); |
dbec2846 EB |
108 | } |
109 | if (!ns->sysctls) { | |
110 | kfree(tbl); | |
111 | retire_sysctl_set(&ns->set); | |
112 | return false; | |
113 | } | |
114 | #endif | |
115 | return true; | |
116 | } | |
117 | ||
118 | void retire_userns_sysctls(struct user_namespace *ns) | |
119 | { | |
120 | #ifdef CONFIG_SYSCTL | |
121 | struct ctl_table *tbl; | |
122 | ||
123 | tbl = ns->sysctls->ctl_table_arg; | |
124 | unregister_sysctl_table(ns->sysctls); | |
125 | retire_sysctl_set(&ns->set); | |
126 | kfree(tbl); | |
127 | #endif | |
128 | } | |
129 | ||
f6b2db1a EB |
130 | static struct ucounts *find_ucounts(struct user_namespace *ns, kuid_t uid, struct hlist_head *hashent) |
131 | { | |
132 | struct ucounts *ucounts; | |
133 | ||
134 | hlist_for_each_entry(ucounts, hashent, node) { | |
135 | if (uid_eq(ucounts->uid, uid) && (ucounts->ns == ns)) | |
136 | return ucounts; | |
137 | } | |
138 | return NULL; | |
139 | } | |
140 | ||
905ae01c AG |
141 | static void hlist_add_ucounts(struct ucounts *ucounts) |
142 | { | |
143 | struct hlist_head *hashent = ucounts_hashentry(ucounts->ns, ucounts->uid); | |
144 | spin_lock_irq(&ucounts_lock); | |
145 | hlist_add_head(&ucounts->node, hashent); | |
146 | spin_unlock_irq(&ucounts_lock); | |
147 | } | |
148 | ||
da70d310 EB |
149 | static inline bool get_ucounts_or_wrap(struct ucounts *ucounts) |
150 | { | |
151 | /* Returns true on a successful get, false if the count wraps. */ | |
152 | return !atomic_add_negative(1, &ucounts->count); | |
153 | } | |
154 | ||
b6c33652 AG |
155 | struct ucounts *get_ucounts(struct ucounts *ucounts) |
156 | { | |
da70d310 | 157 | if (!get_ucounts_or_wrap(ucounts)) { |
b6c33652 AG |
158 | put_ucounts(ucounts); |
159 | ucounts = NULL; | |
160 | } | |
161 | return ucounts; | |
162 | } | |
163 | ||
905ae01c | 164 | struct ucounts *alloc_ucounts(struct user_namespace *ns, kuid_t uid) |
f6b2db1a EB |
165 | { |
166 | struct hlist_head *hashent = ucounts_hashentry(ns, uid); | |
167 | struct ucounts *ucounts, *new; | |
da70d310 | 168 | bool wrapped; |
f6b2db1a | 169 | |
880a3854 | 170 | spin_lock_irq(&ucounts_lock); |
f6b2db1a EB |
171 | ucounts = find_ucounts(ns, uid, hashent); |
172 | if (!ucounts) { | |
880a3854 | 173 | spin_unlock_irq(&ucounts_lock); |
f6b2db1a EB |
174 | |
175 | new = kzalloc(sizeof(*new), GFP_KERNEL); | |
176 | if (!new) | |
177 | return NULL; | |
178 | ||
179 | new->ns = ns; | |
180 | new->uid = uid; | |
b6c33652 | 181 | atomic_set(&new->count, 1); |
f6b2db1a | 182 | |
880a3854 | 183 | spin_lock_irq(&ucounts_lock); |
f6b2db1a EB |
184 | ucounts = find_ucounts(ns, uid, hashent); |
185 | if (ucounts) { | |
186 | kfree(new); | |
187 | } else { | |
188 | hlist_add_head(&new->node, hashent); | |
f9d87929 | 189 | get_user_ns(new->ns); |
b6c33652 AG |
190 | spin_unlock_irq(&ucounts_lock); |
191 | return new; | |
f6b2db1a EB |
192 | } |
193 | } | |
da70d310 | 194 | wrapped = !get_ucounts_or_wrap(ucounts); |
880a3854 | 195 | spin_unlock_irq(&ucounts_lock); |
da70d310 | 196 | if (wrapped) { |
345daff2 AG |
197 | put_ucounts(ucounts); |
198 | return NULL; | |
199 | } | |
f6b2db1a EB |
200 | return ucounts; |
201 | } | |
202 | ||
905ae01c | 203 | void put_ucounts(struct ucounts *ucounts) |
f6b2db1a | 204 | { |
880a3854 NB |
205 | unsigned long flags; |
206 | ||
345daff2 | 207 | if (atomic_dec_and_lock_irqsave(&ucounts->count, &ucounts_lock, flags)) { |
f6b2db1a | 208 | hlist_del_init(&ucounts->node); |
b6c33652 | 209 | spin_unlock_irqrestore(&ucounts_lock, flags); |
f9d87929 | 210 | put_user_ns(ucounts->ns); |
b6c33652 AG |
211 | kfree(ucounts); |
212 | } | |
f6b2db1a EB |
213 | } |
214 | ||
f9c82a4e | 215 | static inline bool atomic_long_inc_below(atomic_long_t *v, int u) |
b376c3e1 | 216 | { |
f9c82a4e AG |
217 | long c, old; |
218 | c = atomic_long_read(v); | |
b376c3e1 EB |
219 | for (;;) { |
220 | if (unlikely(c >= u)) | |
221 | return false; | |
f9c82a4e | 222 | old = atomic_long_cmpxchg(v, c, c+1); |
b376c3e1 EB |
223 | if (likely(old == c)) |
224 | return true; | |
225 | c = old; | |
226 | } | |
227 | } | |
228 | ||
25f9c081 EB |
229 | struct ucounts *inc_ucount(struct user_namespace *ns, kuid_t uid, |
230 | enum ucount_type type) | |
b376c3e1 | 231 | { |
f6b2db1a EB |
232 | struct ucounts *ucounts, *iter, *bad; |
233 | struct user_namespace *tns; | |
905ae01c | 234 | ucounts = alloc_ucounts(ns, uid); |
f6b2db1a | 235 | for (iter = ucounts; iter; iter = tns->ucounts) { |
f9c82a4e | 236 | long max; |
f6b2db1a | 237 | tns = iter->ns; |
25f9c081 | 238 | max = READ_ONCE(tns->ucount_max[type]); |
f9c82a4e | 239 | if (!atomic_long_inc_below(&iter->ucount[type], max)) |
b376c3e1 EB |
240 | goto fail; |
241 | } | |
f6b2db1a | 242 | return ucounts; |
b376c3e1 | 243 | fail: |
f6b2db1a EB |
244 | bad = iter; |
245 | for (iter = ucounts; iter != bad; iter = iter->ns->ucounts) | |
f9c82a4e | 246 | atomic_long_dec(&iter->ucount[type]); |
b376c3e1 | 247 | |
f6b2db1a EB |
248 | put_ucounts(ucounts); |
249 | return NULL; | |
b376c3e1 EB |
250 | } |
251 | ||
25f9c081 | 252 | void dec_ucount(struct ucounts *ucounts, enum ucount_type type) |
b376c3e1 | 253 | { |
f6b2db1a EB |
254 | struct ucounts *iter; |
255 | for (iter = ucounts; iter; iter = iter->ns->ucounts) { | |
f9c82a4e | 256 | long dec = atomic_long_dec_if_positive(&iter->ucount[type]); |
b376c3e1 EB |
257 | WARN_ON_ONCE(dec < 0); |
258 | } | |
f6b2db1a | 259 | put_ucounts(ucounts); |
b376c3e1 EB |
260 | } |
261 | ||
de399236 | 262 | long inc_rlimit_ucounts(struct ucounts *ucounts, enum rlimit_type type, long v) |
21d1c5e3 AG |
263 | { |
264 | struct ucounts *iter; | |
59ec7157 | 265 | long max = LONG_MAX; |
21d1c5e3 AG |
266 | long ret = 0; |
267 | ||
268 | for (iter = ucounts; iter; iter = iter->ns->ucounts) { | |
de399236 | 269 | long new = atomic_long_add_return(v, &iter->rlimit[type]); |
21d1c5e3 AG |
270 | if (new < 0 || new > max) |
271 | ret = LONG_MAX; | |
272 | else if (iter == ucounts) | |
273 | ret = new; | |
de399236 | 274 | max = get_userns_rlimit_max(iter->ns, type); |
21d1c5e3 AG |
275 | } |
276 | return ret; | |
277 | } | |
278 | ||
de399236 | 279 | bool dec_rlimit_ucounts(struct ucounts *ucounts, enum rlimit_type type, long v) |
21d1c5e3 AG |
280 | { |
281 | struct ucounts *iter; | |
f928ef68 | 282 | long new = -1; /* Silence compiler warning */ |
21d1c5e3 | 283 | for (iter = ucounts; iter; iter = iter->ns->ucounts) { |
de399236 | 284 | long dec = atomic_long_sub_return(v, &iter->rlimit[type]); |
21d1c5e3 AG |
285 | WARN_ON_ONCE(dec < 0); |
286 | if (iter == ucounts) | |
287 | new = dec; | |
288 | } | |
289 | return (new == 0); | |
290 | } | |
291 | ||
15bc01ef | 292 | static void do_dec_rlimit_put_ucounts(struct ucounts *ucounts, |
de399236 | 293 | struct ucounts *last, enum rlimit_type type) |
15bc01ef EB |
294 | { |
295 | struct ucounts *iter, *next; | |
296 | for (iter = ucounts; iter != last; iter = next) { | |
de399236 | 297 | long dec = atomic_long_sub_return(1, &iter->rlimit[type]); |
15bc01ef EB |
298 | WARN_ON_ONCE(dec < 0); |
299 | next = iter->ns->ucounts; | |
300 | if (dec == 0) | |
301 | put_ucounts(iter); | |
302 | } | |
303 | } | |
304 | ||
de399236 | 305 | void dec_rlimit_put_ucounts(struct ucounts *ucounts, enum rlimit_type type) |
15bc01ef EB |
306 | { |
307 | do_dec_rlimit_put_ucounts(ucounts, NULL, type); | |
308 | } | |
309 | ||
de399236 | 310 | long inc_rlimit_get_ucounts(struct ucounts *ucounts, enum rlimit_type type) |
15bc01ef EB |
311 | { |
312 | /* Caller must hold a reference to ucounts */ | |
313 | struct ucounts *iter; | |
59ec7157 | 314 | long max = LONG_MAX; |
15bc01ef EB |
315 | long dec, ret = 0; |
316 | ||
317 | for (iter = ucounts; iter; iter = iter->ns->ucounts) { | |
de399236 | 318 | long new = atomic_long_add_return(1, &iter->rlimit[type]); |
15bc01ef EB |
319 | if (new < 0 || new > max) |
320 | goto unwind; | |
321 | if (iter == ucounts) | |
322 | ret = new; | |
de399236 | 323 | max = get_userns_rlimit_max(iter->ns, type); |
15bc01ef EB |
324 | /* |
325 | * Grab an extra ucount reference for the caller when | |
326 | * the rlimit count was previously 0. | |
327 | */ | |
328 | if (new != 1) | |
329 | continue; | |
330 | if (!get_ucounts(iter)) | |
331 | goto dec_unwind; | |
332 | } | |
333 | return ret; | |
334 | dec_unwind: | |
de399236 | 335 | dec = atomic_long_sub_return(1, &iter->rlimit[type]); |
15bc01ef EB |
336 | WARN_ON_ONCE(dec < 0); |
337 | unwind: | |
338 | do_dec_rlimit_put_ucounts(ucounts, iter, type); | |
339 | return 0; | |
340 | } | |
341 | ||
de399236 | 342 | bool is_rlimit_overlimit(struct ucounts *ucounts, enum rlimit_type type, unsigned long rlimit) |
21d1c5e3 AG |
343 | { |
344 | struct ucounts *iter; | |
59ec7157 AG |
345 | long max = rlimit; |
346 | if (rlimit > LONG_MAX) | |
347 | max = LONG_MAX; | |
21d1c5e3 | 348 | for (iter = ucounts; iter; iter = iter->ns->ucounts) { |
de399236 | 349 | long val = get_rlimit_value(iter, type); |
0cbae9e2 | 350 | if (val < 0 || val > max) |
21d1c5e3 | 351 | return true; |
de399236 | 352 | max = get_userns_rlimit_max(iter->ns, type); |
21d1c5e3 AG |
353 | } |
354 | return false; | |
355 | } | |
356 | ||
dbec2846 EB |
357 | static __init int user_namespace_sysctl_init(void) |
358 | { | |
359 | #ifdef CONFIG_SYSCTL | |
f6b2db1a | 360 | static struct ctl_table_header *user_header; |
dbec2846 EB |
361 | static struct ctl_table empty[1]; |
362 | /* | |
f6b2db1a | 363 | * It is necessary to register the user directory in the |
dbec2846 EB |
364 | * default set so that registrations in the child sets work |
365 | * properly. | |
366 | */ | |
f6b2db1a | 367 | user_header = register_sysctl("user", empty); |
ed5bd7dc | 368 | kmemleak_ignore(user_header); |
f6b2db1a | 369 | BUG_ON(!user_header); |
dbec2846 EB |
370 | BUG_ON(!setup_userns_sysctls(&init_user_ns)); |
371 | #endif | |
905ae01c | 372 | hlist_add_ucounts(&init_ucounts); |
21d1c5e3 | 373 | inc_rlimit_ucounts(&init_ucounts, UCOUNT_RLIMIT_NPROC, 1); |
dbec2846 EB |
374 | return 0; |
375 | } | |
376 | subsys_initcall(user_namespace_sysctl_init); |