xref: /OK3568_Linux_fs/kernel/include/linux/capability.h (revision 4882a59341e53eb6f0b4789bf948001014eff981)
1*4882a593Smuzhiyun /* SPDX-License-Identifier: GPL-2.0 */
2*4882a593Smuzhiyun /*
3*4882a593Smuzhiyun  * This is <linux/capability.h>
4*4882a593Smuzhiyun  *
5*4882a593Smuzhiyun  * Andrew G. Morgan <morgan@kernel.org>
6*4882a593Smuzhiyun  * Alexander Kjeldaas <astor@guardian.no>
7*4882a593Smuzhiyun  * with help from Aleph1, Roland Buresund and Andrew Main.
8*4882a593Smuzhiyun  *
9*4882a593Smuzhiyun  * See here for the libcap library ("POSIX draft" compliance):
10*4882a593Smuzhiyun  *
11*4882a593Smuzhiyun  * ftp://www.kernel.org/pub/linux/libs/security/linux-privs/kernel-2.6/
12*4882a593Smuzhiyun  */
13*4882a593Smuzhiyun #ifndef _LINUX_CAPABILITY_H
14*4882a593Smuzhiyun #define _LINUX_CAPABILITY_H
15*4882a593Smuzhiyun 
16*4882a593Smuzhiyun #include <uapi/linux/capability.h>
17*4882a593Smuzhiyun #include <linux/uidgid.h>
18*4882a593Smuzhiyun 
19*4882a593Smuzhiyun #define _KERNEL_CAPABILITY_VERSION _LINUX_CAPABILITY_VERSION_3
20*4882a593Smuzhiyun #define _KERNEL_CAPABILITY_U32S    _LINUX_CAPABILITY_U32S_3
21*4882a593Smuzhiyun 
22*4882a593Smuzhiyun extern int file_caps_enabled;
23*4882a593Smuzhiyun 
24*4882a593Smuzhiyun typedef struct kernel_cap_struct {
25*4882a593Smuzhiyun 	__u32 cap[_KERNEL_CAPABILITY_U32S];
26*4882a593Smuzhiyun } kernel_cap_t;
27*4882a593Smuzhiyun 
28*4882a593Smuzhiyun /* same as vfs_ns_cap_data but in cpu endian and always filled completely */
29*4882a593Smuzhiyun struct cpu_vfs_cap_data {
30*4882a593Smuzhiyun 	__u32 magic_etc;
31*4882a593Smuzhiyun 	kernel_cap_t permitted;
32*4882a593Smuzhiyun 	kernel_cap_t inheritable;
33*4882a593Smuzhiyun 	kuid_t rootid;
34*4882a593Smuzhiyun };
35*4882a593Smuzhiyun 
36*4882a593Smuzhiyun #define _USER_CAP_HEADER_SIZE  (sizeof(struct __user_cap_header_struct))
37*4882a593Smuzhiyun #define _KERNEL_CAP_T_SIZE     (sizeof(kernel_cap_t))
38*4882a593Smuzhiyun 
39*4882a593Smuzhiyun 
40*4882a593Smuzhiyun struct file;
41*4882a593Smuzhiyun struct inode;
42*4882a593Smuzhiyun struct dentry;
43*4882a593Smuzhiyun struct task_struct;
44*4882a593Smuzhiyun struct user_namespace;
45*4882a593Smuzhiyun 
46*4882a593Smuzhiyun extern const kernel_cap_t __cap_empty_set;
47*4882a593Smuzhiyun extern const kernel_cap_t __cap_init_eff_set;
48*4882a593Smuzhiyun 
49*4882a593Smuzhiyun /*
50*4882a593Smuzhiyun  * Internal kernel functions only
51*4882a593Smuzhiyun  */
52*4882a593Smuzhiyun 
53*4882a593Smuzhiyun #define CAP_FOR_EACH_U32(__capi)  \
54*4882a593Smuzhiyun 	for (__capi = 0; __capi < _KERNEL_CAPABILITY_U32S; ++__capi)
55*4882a593Smuzhiyun 
56*4882a593Smuzhiyun /*
57*4882a593Smuzhiyun  * CAP_FS_MASK and CAP_NFSD_MASKS:
58*4882a593Smuzhiyun  *
59*4882a593Smuzhiyun  * The fs mask is all the privileges that fsuid==0 historically meant.
60*4882a593Smuzhiyun  * At one time in the past, that included CAP_MKNOD and CAP_LINUX_IMMUTABLE.
61*4882a593Smuzhiyun  *
62*4882a593Smuzhiyun  * It has never meant setting security.* and trusted.* xattrs.
63*4882a593Smuzhiyun  *
64*4882a593Smuzhiyun  * We could also define fsmask as follows:
65*4882a593Smuzhiyun  *   1. CAP_FS_MASK is the privilege to bypass all fs-related DAC permissions
66*4882a593Smuzhiyun  *   2. The security.* and trusted.* xattrs are fs-related MAC permissions
67*4882a593Smuzhiyun  */
68*4882a593Smuzhiyun 
69*4882a593Smuzhiyun # define CAP_FS_MASK_B0     (CAP_TO_MASK(CAP_CHOWN)		\
70*4882a593Smuzhiyun 			    | CAP_TO_MASK(CAP_MKNOD)		\
71*4882a593Smuzhiyun 			    | CAP_TO_MASK(CAP_DAC_OVERRIDE)	\
72*4882a593Smuzhiyun 			    | CAP_TO_MASK(CAP_DAC_READ_SEARCH)	\
73*4882a593Smuzhiyun 			    | CAP_TO_MASK(CAP_FOWNER)		\
74*4882a593Smuzhiyun 			    | CAP_TO_MASK(CAP_FSETID))
75*4882a593Smuzhiyun 
76*4882a593Smuzhiyun # define CAP_FS_MASK_B1     (CAP_TO_MASK(CAP_MAC_OVERRIDE))
77*4882a593Smuzhiyun 
78*4882a593Smuzhiyun #if _KERNEL_CAPABILITY_U32S != 2
79*4882a593Smuzhiyun # error Fix up hand-coded capability macro initializers
80*4882a593Smuzhiyun #else /* HAND-CODED capability initializers */
81*4882a593Smuzhiyun 
82*4882a593Smuzhiyun #define CAP_LAST_U32			((_KERNEL_CAPABILITY_U32S) - 1)
83*4882a593Smuzhiyun #define CAP_LAST_U32_VALID_MASK		(CAP_TO_MASK(CAP_LAST_CAP + 1) -1)
84*4882a593Smuzhiyun 
85*4882a593Smuzhiyun # define CAP_EMPTY_SET    ((kernel_cap_t){{ 0, 0 }})
86*4882a593Smuzhiyun # define CAP_FULL_SET     ((kernel_cap_t){{ ~0, CAP_LAST_U32_VALID_MASK }})
87*4882a593Smuzhiyun # define CAP_FS_SET       ((kernel_cap_t){{ CAP_FS_MASK_B0 \
88*4882a593Smuzhiyun 				    | CAP_TO_MASK(CAP_LINUX_IMMUTABLE), \
89*4882a593Smuzhiyun 				    CAP_FS_MASK_B1 } })
90*4882a593Smuzhiyun # define CAP_NFSD_SET     ((kernel_cap_t){{ CAP_FS_MASK_B0 \
91*4882a593Smuzhiyun 				    | CAP_TO_MASK(CAP_SYS_RESOURCE), \
92*4882a593Smuzhiyun 				    CAP_FS_MASK_B1 } })
93*4882a593Smuzhiyun 
94*4882a593Smuzhiyun #endif /* _KERNEL_CAPABILITY_U32S != 2 */
95*4882a593Smuzhiyun 
96*4882a593Smuzhiyun # define cap_clear(c)         do { (c) = __cap_empty_set; } while (0)
97*4882a593Smuzhiyun 
98*4882a593Smuzhiyun #define cap_raise(c, flag)  ((c).cap[CAP_TO_INDEX(flag)] |= CAP_TO_MASK(flag))
99*4882a593Smuzhiyun #define cap_lower(c, flag)  ((c).cap[CAP_TO_INDEX(flag)] &= ~CAP_TO_MASK(flag))
100*4882a593Smuzhiyun #define cap_raised(c, flag) ((c).cap[CAP_TO_INDEX(flag)] & CAP_TO_MASK(flag))
101*4882a593Smuzhiyun 
102*4882a593Smuzhiyun #define CAP_BOP_ALL(c, a, b, OP)                                    \
103*4882a593Smuzhiyun do {                                                                \
104*4882a593Smuzhiyun 	unsigned __capi;                                            \
105*4882a593Smuzhiyun 	CAP_FOR_EACH_U32(__capi) {                                  \
106*4882a593Smuzhiyun 		c.cap[__capi] = a.cap[__capi] OP b.cap[__capi];     \
107*4882a593Smuzhiyun 	}                                                           \
108*4882a593Smuzhiyun } while (0)
109*4882a593Smuzhiyun 
110*4882a593Smuzhiyun #define CAP_UOP_ALL(c, a, OP)                                       \
111*4882a593Smuzhiyun do {                                                                \
112*4882a593Smuzhiyun 	unsigned __capi;                                            \
113*4882a593Smuzhiyun 	CAP_FOR_EACH_U32(__capi) {                                  \
114*4882a593Smuzhiyun 		c.cap[__capi] = OP a.cap[__capi];                   \
115*4882a593Smuzhiyun 	}                                                           \
116*4882a593Smuzhiyun } while (0)
117*4882a593Smuzhiyun 
cap_combine(const kernel_cap_t a,const kernel_cap_t b)118*4882a593Smuzhiyun static inline kernel_cap_t cap_combine(const kernel_cap_t a,
119*4882a593Smuzhiyun 				       const kernel_cap_t b)
120*4882a593Smuzhiyun {
121*4882a593Smuzhiyun 	kernel_cap_t dest;
122*4882a593Smuzhiyun 	CAP_BOP_ALL(dest, a, b, |);
123*4882a593Smuzhiyun 	return dest;
124*4882a593Smuzhiyun }
125*4882a593Smuzhiyun 
cap_intersect(const kernel_cap_t a,const kernel_cap_t b)126*4882a593Smuzhiyun static inline kernel_cap_t cap_intersect(const kernel_cap_t a,
127*4882a593Smuzhiyun 					 const kernel_cap_t b)
128*4882a593Smuzhiyun {
129*4882a593Smuzhiyun 	kernel_cap_t dest;
130*4882a593Smuzhiyun 	CAP_BOP_ALL(dest, a, b, &);
131*4882a593Smuzhiyun 	return dest;
132*4882a593Smuzhiyun }
133*4882a593Smuzhiyun 
cap_drop(const kernel_cap_t a,const kernel_cap_t drop)134*4882a593Smuzhiyun static inline kernel_cap_t cap_drop(const kernel_cap_t a,
135*4882a593Smuzhiyun 				    const kernel_cap_t drop)
136*4882a593Smuzhiyun {
137*4882a593Smuzhiyun 	kernel_cap_t dest;
138*4882a593Smuzhiyun 	CAP_BOP_ALL(dest, a, drop, &~);
139*4882a593Smuzhiyun 	return dest;
140*4882a593Smuzhiyun }
141*4882a593Smuzhiyun 
cap_invert(const kernel_cap_t c)142*4882a593Smuzhiyun static inline kernel_cap_t cap_invert(const kernel_cap_t c)
143*4882a593Smuzhiyun {
144*4882a593Smuzhiyun 	kernel_cap_t dest;
145*4882a593Smuzhiyun 	CAP_UOP_ALL(dest, c, ~);
146*4882a593Smuzhiyun 	return dest;
147*4882a593Smuzhiyun }
148*4882a593Smuzhiyun 
cap_isclear(const kernel_cap_t a)149*4882a593Smuzhiyun static inline bool cap_isclear(const kernel_cap_t a)
150*4882a593Smuzhiyun {
151*4882a593Smuzhiyun 	unsigned __capi;
152*4882a593Smuzhiyun 	CAP_FOR_EACH_U32(__capi) {
153*4882a593Smuzhiyun 		if (a.cap[__capi] != 0)
154*4882a593Smuzhiyun 			return false;
155*4882a593Smuzhiyun 	}
156*4882a593Smuzhiyun 	return true;
157*4882a593Smuzhiyun }
158*4882a593Smuzhiyun 
159*4882a593Smuzhiyun /*
160*4882a593Smuzhiyun  * Check if "a" is a subset of "set".
161*4882a593Smuzhiyun  * return true if ALL of the capabilities in "a" are also in "set"
162*4882a593Smuzhiyun  *	cap_issubset(0101, 1111) will return true
163*4882a593Smuzhiyun  * return false if ANY of the capabilities in "a" are not in "set"
164*4882a593Smuzhiyun  *	cap_issubset(1111, 0101) will return false
165*4882a593Smuzhiyun  */
cap_issubset(const kernel_cap_t a,const kernel_cap_t set)166*4882a593Smuzhiyun static inline bool cap_issubset(const kernel_cap_t a, const kernel_cap_t set)
167*4882a593Smuzhiyun {
168*4882a593Smuzhiyun 	kernel_cap_t dest;
169*4882a593Smuzhiyun 	dest = cap_drop(a, set);
170*4882a593Smuzhiyun 	return cap_isclear(dest);
171*4882a593Smuzhiyun }
172*4882a593Smuzhiyun 
173*4882a593Smuzhiyun /* Used to decide between falling back on the old suser() or fsuser(). */
174*4882a593Smuzhiyun 
cap_drop_fs_set(const kernel_cap_t a)175*4882a593Smuzhiyun static inline kernel_cap_t cap_drop_fs_set(const kernel_cap_t a)
176*4882a593Smuzhiyun {
177*4882a593Smuzhiyun 	const kernel_cap_t __cap_fs_set = CAP_FS_SET;
178*4882a593Smuzhiyun 	return cap_drop(a, __cap_fs_set);
179*4882a593Smuzhiyun }
180*4882a593Smuzhiyun 
cap_raise_fs_set(const kernel_cap_t a,const kernel_cap_t permitted)181*4882a593Smuzhiyun static inline kernel_cap_t cap_raise_fs_set(const kernel_cap_t a,
182*4882a593Smuzhiyun 					    const kernel_cap_t permitted)
183*4882a593Smuzhiyun {
184*4882a593Smuzhiyun 	const kernel_cap_t __cap_fs_set = CAP_FS_SET;
185*4882a593Smuzhiyun 	return cap_combine(a,
186*4882a593Smuzhiyun 			   cap_intersect(permitted, __cap_fs_set));
187*4882a593Smuzhiyun }
188*4882a593Smuzhiyun 
cap_drop_nfsd_set(const kernel_cap_t a)189*4882a593Smuzhiyun static inline kernel_cap_t cap_drop_nfsd_set(const kernel_cap_t a)
190*4882a593Smuzhiyun {
191*4882a593Smuzhiyun 	const kernel_cap_t __cap_fs_set = CAP_NFSD_SET;
192*4882a593Smuzhiyun 	return cap_drop(a, __cap_fs_set);
193*4882a593Smuzhiyun }
194*4882a593Smuzhiyun 
cap_raise_nfsd_set(const kernel_cap_t a,const kernel_cap_t permitted)195*4882a593Smuzhiyun static inline kernel_cap_t cap_raise_nfsd_set(const kernel_cap_t a,
196*4882a593Smuzhiyun 					      const kernel_cap_t permitted)
197*4882a593Smuzhiyun {
198*4882a593Smuzhiyun 	const kernel_cap_t __cap_nfsd_set = CAP_NFSD_SET;
199*4882a593Smuzhiyun 	return cap_combine(a,
200*4882a593Smuzhiyun 			   cap_intersect(permitted, __cap_nfsd_set));
201*4882a593Smuzhiyun }
202*4882a593Smuzhiyun 
203*4882a593Smuzhiyun #ifdef CONFIG_MULTIUSER
204*4882a593Smuzhiyun extern bool has_capability(struct task_struct *t, int cap);
205*4882a593Smuzhiyun extern bool has_ns_capability(struct task_struct *t,
206*4882a593Smuzhiyun 			      struct user_namespace *ns, int cap);
207*4882a593Smuzhiyun extern bool has_capability_noaudit(struct task_struct *t, int cap);
208*4882a593Smuzhiyun extern bool has_ns_capability_noaudit(struct task_struct *t,
209*4882a593Smuzhiyun 				      struct user_namespace *ns, int cap);
210*4882a593Smuzhiyun extern bool capable(int cap);
211*4882a593Smuzhiyun extern bool ns_capable(struct user_namespace *ns, int cap);
212*4882a593Smuzhiyun extern bool ns_capable_noaudit(struct user_namespace *ns, int cap);
213*4882a593Smuzhiyun extern bool ns_capable_setid(struct user_namespace *ns, int cap);
214*4882a593Smuzhiyun #else
has_capability(struct task_struct * t,int cap)215*4882a593Smuzhiyun static inline bool has_capability(struct task_struct *t, int cap)
216*4882a593Smuzhiyun {
217*4882a593Smuzhiyun 	return true;
218*4882a593Smuzhiyun }
has_ns_capability(struct task_struct * t,struct user_namespace * ns,int cap)219*4882a593Smuzhiyun static inline bool has_ns_capability(struct task_struct *t,
220*4882a593Smuzhiyun 			      struct user_namespace *ns, int cap)
221*4882a593Smuzhiyun {
222*4882a593Smuzhiyun 	return true;
223*4882a593Smuzhiyun }
has_capability_noaudit(struct task_struct * t,int cap)224*4882a593Smuzhiyun static inline bool has_capability_noaudit(struct task_struct *t, int cap)
225*4882a593Smuzhiyun {
226*4882a593Smuzhiyun 	return true;
227*4882a593Smuzhiyun }
has_ns_capability_noaudit(struct task_struct * t,struct user_namespace * ns,int cap)228*4882a593Smuzhiyun static inline bool has_ns_capability_noaudit(struct task_struct *t,
229*4882a593Smuzhiyun 				      struct user_namespace *ns, int cap)
230*4882a593Smuzhiyun {
231*4882a593Smuzhiyun 	return true;
232*4882a593Smuzhiyun }
capable(int cap)233*4882a593Smuzhiyun static inline bool capable(int cap)
234*4882a593Smuzhiyun {
235*4882a593Smuzhiyun 	return true;
236*4882a593Smuzhiyun }
ns_capable(struct user_namespace * ns,int cap)237*4882a593Smuzhiyun static inline bool ns_capable(struct user_namespace *ns, int cap)
238*4882a593Smuzhiyun {
239*4882a593Smuzhiyun 	return true;
240*4882a593Smuzhiyun }
ns_capable_noaudit(struct user_namespace * ns,int cap)241*4882a593Smuzhiyun static inline bool ns_capable_noaudit(struct user_namespace *ns, int cap)
242*4882a593Smuzhiyun {
243*4882a593Smuzhiyun 	return true;
244*4882a593Smuzhiyun }
ns_capable_setid(struct user_namespace * ns,int cap)245*4882a593Smuzhiyun static inline bool ns_capable_setid(struct user_namespace *ns, int cap)
246*4882a593Smuzhiyun {
247*4882a593Smuzhiyun 	return true;
248*4882a593Smuzhiyun }
249*4882a593Smuzhiyun #endif /* CONFIG_MULTIUSER */
250*4882a593Smuzhiyun extern bool privileged_wrt_inode_uidgid(struct user_namespace *ns, const struct inode *inode);
251*4882a593Smuzhiyun extern bool capable_wrt_inode_uidgid(const struct inode *inode, int cap);
252*4882a593Smuzhiyun extern bool file_ns_capable(const struct file *file, struct user_namespace *ns, int cap);
253*4882a593Smuzhiyun extern bool ptracer_capable(struct task_struct *tsk, struct user_namespace *ns);
perfmon_capable(void)254*4882a593Smuzhiyun static inline bool perfmon_capable(void)
255*4882a593Smuzhiyun {
256*4882a593Smuzhiyun 	return capable(CAP_PERFMON) || capable(CAP_SYS_ADMIN);
257*4882a593Smuzhiyun }
258*4882a593Smuzhiyun 
bpf_capable(void)259*4882a593Smuzhiyun static inline bool bpf_capable(void)
260*4882a593Smuzhiyun {
261*4882a593Smuzhiyun 	return capable(CAP_BPF) || capable(CAP_SYS_ADMIN);
262*4882a593Smuzhiyun }
263*4882a593Smuzhiyun 
checkpoint_restore_ns_capable(struct user_namespace * ns)264*4882a593Smuzhiyun static inline bool checkpoint_restore_ns_capable(struct user_namespace *ns)
265*4882a593Smuzhiyun {
266*4882a593Smuzhiyun 	return ns_capable(ns, CAP_CHECKPOINT_RESTORE) ||
267*4882a593Smuzhiyun 		ns_capable(ns, CAP_SYS_ADMIN);
268*4882a593Smuzhiyun }
269*4882a593Smuzhiyun 
270*4882a593Smuzhiyun /* audit system wants to get cap info from files as well */
271*4882a593Smuzhiyun extern int get_vfs_caps_from_disk(const struct dentry *dentry, struct cpu_vfs_cap_data *cpu_caps);
272*4882a593Smuzhiyun 
273*4882a593Smuzhiyun extern int cap_convert_nscap(struct dentry *dentry, void **ivalue, size_t size);
274*4882a593Smuzhiyun 
275*4882a593Smuzhiyun #endif /* !_LINUX_CAPABILITY_H */
276