userns: Generalize the user namespace count into ucount
[linux-2.6-block.git] / kernel / ucount.c
CommitLineData
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1/*
2 * This program is free software; you can redistribute it and/or
3 * modify it under the terms of the GNU General Public License as
4 * published by the Free Software Foundation, version 2 of the
5 * License.
6 */
7
8#include <linux/stat.h>
9#include <linux/sysctl.h>
10#include <linux/slab.h>
f6b2db1a 11#include <linux/hash.h>
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12#include <linux/user_namespace.h>
13
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14#define UCOUNTS_HASHTABLE_BITS 10
15static struct hlist_head ucounts_hashtable[(1 << UCOUNTS_HASHTABLE_BITS)];
16static DEFINE_SPINLOCK(ucounts_lock);
17
18#define ucounts_hashfn(ns, uid) \
19 hash_long((unsigned long)__kuid_val(uid) + (unsigned long)(ns), \
20 UCOUNTS_HASHTABLE_BITS)
21#define ucounts_hashentry(ns, uid) \
22 (ucounts_hashtable + ucounts_hashfn(ns, uid))
23
24
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25#ifdef CONFIG_SYSCTL
26static struct ctl_table_set *
27set_lookup(struct ctl_table_root *root)
28{
29 return &current_user_ns()->set;
30}
31
32static int set_is_seen(struct ctl_table_set *set)
33{
34 return &current_user_ns()->set == set;
35}
36
37static int set_permissions(struct ctl_table_header *head,
38 struct ctl_table *table)
39{
40 struct user_namespace *user_ns =
41 container_of(head->set, struct user_namespace, set);
42 int mode;
43
44 /* Allow users with CAP_SYS_RESOURCE unrestrained access */
45 if (ns_capable(user_ns, CAP_SYS_RESOURCE))
46 mode = (table->mode & S_IRWXU) >> 6;
47 else
48 /* Allow all others at most read-only access */
49 mode = table->mode & S_IROTH;
50 return (mode << 6) | (mode << 3) | mode;
51}
52
53static struct ctl_table_root set_root = {
54 .lookup = set_lookup,
55 .permissions = set_permissions,
56};
57
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58static int zero = 0;
59static int int_max = INT_MAX;
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60#define UCOUNT_ENTRY(name) \
61 { \
62 .procname = name, \
63 .maxlen = sizeof(int), \
64 .mode = 0644, \
65 .proc_handler = proc_dointvec_minmax, \
66 .extra1 = &zero, \
67 .extra2 = &int_max, \
68 }
f6b2db1a 69static struct ctl_table user_table[] = {
25f9c081 70 UCOUNT_ENTRY("max_user_namespaces"),
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71 { }
72};
73#endif /* CONFIG_SYSCTL */
74
75bool setup_userns_sysctls(struct user_namespace *ns)
76{
77#ifdef CONFIG_SYSCTL
78 struct ctl_table *tbl;
79 setup_sysctl_set(&ns->set, &set_root, set_is_seen);
f6b2db1a 80 tbl = kmemdup(user_table, sizeof(user_table), GFP_KERNEL);
dbec2846 81 if (tbl) {
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82 int i;
83 for (i = 0; i < UCOUNT_COUNTS; i++) {
84 tbl[i].data = &ns->ucount_max[i];
85 }
f6b2db1a 86 ns->sysctls = __register_sysctl_table(&ns->set, "user", tbl);
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87 }
88 if (!ns->sysctls) {
89 kfree(tbl);
90 retire_sysctl_set(&ns->set);
91 return false;
92 }
93#endif
94 return true;
95}
96
97void retire_userns_sysctls(struct user_namespace *ns)
98{
99#ifdef CONFIG_SYSCTL
100 struct ctl_table *tbl;
101
102 tbl = ns->sysctls->ctl_table_arg;
103 unregister_sysctl_table(ns->sysctls);
104 retire_sysctl_set(&ns->set);
105 kfree(tbl);
106#endif
107}
108
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109static struct ucounts *find_ucounts(struct user_namespace *ns, kuid_t uid, struct hlist_head *hashent)
110{
111 struct ucounts *ucounts;
112
113 hlist_for_each_entry(ucounts, hashent, node) {
114 if (uid_eq(ucounts->uid, uid) && (ucounts->ns == ns))
115 return ucounts;
116 }
117 return NULL;
118}
119
120static struct ucounts *get_ucounts(struct user_namespace *ns, kuid_t uid)
121{
122 struct hlist_head *hashent = ucounts_hashentry(ns, uid);
123 struct ucounts *ucounts, *new;
124
125 spin_lock(&ucounts_lock);
126 ucounts = find_ucounts(ns, uid, hashent);
127 if (!ucounts) {
128 spin_unlock(&ucounts_lock);
129
130 new = kzalloc(sizeof(*new), GFP_KERNEL);
131 if (!new)
132 return NULL;
133
134 new->ns = ns;
135 new->uid = uid;
136 atomic_set(&new->count, 0);
137
138 spin_lock(&ucounts_lock);
139 ucounts = find_ucounts(ns, uid, hashent);
140 if (ucounts) {
141 kfree(new);
142 } else {
143 hlist_add_head(&new->node, hashent);
144 ucounts = new;
145 }
146 }
147 if (!atomic_add_unless(&ucounts->count, 1, INT_MAX))
148 ucounts = NULL;
149 spin_unlock(&ucounts_lock);
150 return ucounts;
151}
152
153static void put_ucounts(struct ucounts *ucounts)
154{
155 if (atomic_dec_and_test(&ucounts->count)) {
156 spin_lock(&ucounts_lock);
157 hlist_del_init(&ucounts->node);
158 spin_unlock(&ucounts_lock);
159
160 kfree(ucounts);
161 }
162}
163
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164static inline bool atomic_inc_below(atomic_t *v, int u)
165{
166 int c, old;
167 c = atomic_read(v);
168 for (;;) {
169 if (unlikely(c >= u))
170 return false;
171 old = atomic_cmpxchg(v, c, c+1);
172 if (likely(old == c))
173 return true;
174 c = old;
175 }
176}
177
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178struct ucounts *inc_ucount(struct user_namespace *ns, kuid_t uid,
179 enum ucount_type type)
b376c3e1 180{
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181 struct ucounts *ucounts, *iter, *bad;
182 struct user_namespace *tns;
183 ucounts = get_ucounts(ns, uid);
184 for (iter = ucounts; iter; iter = tns->ucounts) {
185 int max;
186 tns = iter->ns;
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187 max = READ_ONCE(tns->ucount_max[type]);
188 if (!atomic_inc_below(&iter->ucount[type], max))
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189 goto fail;
190 }
f6b2db1a 191 return ucounts;
b376c3e1 192fail:
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193 bad = iter;
194 for (iter = ucounts; iter != bad; iter = iter->ns->ucounts)
25f9c081 195 atomic_dec(&iter->ucount[type]);
b376c3e1 196
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197 put_ucounts(ucounts);
198 return NULL;
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199}
200
25f9c081 201void dec_ucount(struct ucounts *ucounts, enum ucount_type type)
b376c3e1 202{
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203 struct ucounts *iter;
204 for (iter = ucounts; iter; iter = iter->ns->ucounts) {
25f9c081 205 int dec = atomic_dec_if_positive(&iter->ucount[type]);
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206 WARN_ON_ONCE(dec < 0);
207 }
f6b2db1a 208 put_ucounts(ucounts);
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209}
210
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211static __init int user_namespace_sysctl_init(void)
212{
213#ifdef CONFIG_SYSCTL
f6b2db1a 214 static struct ctl_table_header *user_header;
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215 static struct ctl_table empty[1];
216 /*
f6b2db1a 217 * It is necessary to register the user directory in the
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218 * default set so that registrations in the child sets work
219 * properly.
220 */
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221 user_header = register_sysctl("user", empty);
222 BUG_ON(!user_header);
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223 BUG_ON(!setup_userns_sysctls(&init_user_ns));
224#endif
225 return 0;
226}
227subsys_initcall(user_namespace_sysctl_init);
228
229