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Linux Cross Reference
Linux/include/linux/capability.h

Version: ~ [ 2.4.0 ] ~
Architecture: ~ [ i386 ] ~ [ alpha ] ~ [ m68k ] ~ [ mips ] ~ [ ppc ] ~ [ sparc ] ~ [ sparc64 ] ~

  1 /*
  2  * This is <linux/capability.h>
  3  *
  4  * Andrew G. Morgan <morgan@transmeta.com>
  5  * Alexander Kjeldaas <astor@guardian.no>
  6  * with help from Aleph1, Roland Buresund and Andrew Main.
  7  *
  8  * See here for the libcap library ("POSIX draft" compliance):
  9  *
 10  * ftp://linux.kernel.org/pub/linux/libs/security/linux-privs/kernel-2.2/
 11  */ 
 12 
 13 #ifndef _LINUX_CAPABILITY_H
 14 #define _LINUX_CAPABILITY_H
 15 
 16 #include <linux/types.h>
 17 #include <linux/fs.h>
 18 
 19 /* User-level do most of the mapping between kernel and user
 20    capabilities based on the version tag given by the kernel. The
 21    kernel might be somewhat backwards compatible, but don't bet on
 22    it. */
 23 
 24 /* XXX - Note, cap_t, is defined by POSIX to be an "opaque" pointer to
 25    a set of three capability sets.  The transposition of 3*the
 26    following structure to such a composite is better handled in a user
 27    library since the draft standard requires the use of malloc/free
 28    etc.. */
 29  
 30 #define _LINUX_CAPABILITY_VERSION  0x19980330
 31 
 32 typedef struct __user_cap_header_struct {
 33         __u32 version;
 34         int pid;
 35 } *cap_user_header_t;
 36  
 37 typedef struct __user_cap_data_struct {
 38         __u32 effective;
 39         __u32 permitted;
 40         __u32 inheritable;
 41 } *cap_user_data_t;
 42   
 43 #ifdef __KERNEL__
 44 
 45 /* #define STRICT_CAP_T_TYPECHECKS */
 46 
 47 #ifdef STRICT_CAP_T_TYPECHECKS
 48 
 49 typedef struct kernel_cap_struct {
 50         __u32 cap;
 51 } kernel_cap_t;
 52 
 53 #else
 54 
 55 typedef __u32 kernel_cap_t;
 56 
 57 #endif
 58   
 59 #define _USER_CAP_HEADER_SIZE  (2*sizeof(__u32))
 60 #define _KERNEL_CAP_T_SIZE     (sizeof(kernel_cap_t))
 61 
 62 #endif
 63 
 64 
 65 /**
 66  ** POSIX-draft defined capabilities. 
 67  **/
 68 
 69 /* In a system with the [_POSIX_CHOWN_RESTRICTED] option defined, this
 70    overrides the restriction of changing file ownership and group
 71    ownership. */
 72 
 73 #define CAP_CHOWN            0
 74 
 75 /* Override all DAC access, including ACL execute access if
 76    [_POSIX_ACL] is defined. Excluding DAC access covered by
 77    CAP_LINUX_IMMUTABLE. */
 78 
 79 #define CAP_DAC_OVERRIDE     1
 80 
 81 /* Overrides all DAC restrictions regarding read and search on files
 82    and directories, including ACL restrictions if [_POSIX_ACL] is
 83    defined. Excluding DAC access covered by CAP_LINUX_IMMUTABLE. */
 84 
 85 #define CAP_DAC_READ_SEARCH  2
 86     
 87 /* Overrides all restrictions about allowed operations on files, where
 88    file owner ID must be equal to the user ID, except where CAP_FSETID
 89    is applicable. It doesn't override MAC and DAC restrictions. */
 90 
 91 #define CAP_FOWNER           3
 92 
 93 /* Overrides the following restrictions that the effective user ID
 94    shall match the file owner ID when setting the S_ISUID and S_ISGID
 95    bits on that file; that the effective group ID (or one of the
 96    supplementary group IDs) shall match the file owner ID when setting
 97    the S_ISGID bit on that file; that the S_ISUID and S_ISGID bits are
 98    cleared on successful return from chown(2) (not implemented). */
 99 
100 #define CAP_FSETID           4
101 
102 /* Used to decide between falling back on the old suser() or fsuser(). */
103 
104 #define CAP_FS_MASK          0x1f
105 
106 /* Overrides the restriction that the real or effective user ID of a
107    process sending a signal must match the real or effective user ID
108    of the process receiving the signal. */
109 
110 #define CAP_KILL             5
111 
112 /* Allows setgid(2) manipulation */
113 /* Allows setgroups(2) */
114 /* Allows forged gids on socket credentials passing. */
115 
116 #define CAP_SETGID           6
117 
118 /* Allows set*uid(2) manipulation (including fsuid). */
119 /* Allows forged pids on socket credentials passing. */
120 
121 #define CAP_SETUID           7
122 
123 
124 /**
125  ** Linux-specific capabilities
126  **/
127 
128 /* Transfer any capability in your permitted set to any pid,
129    remove any capability in your permitted set from any pid */
130 
131 #define CAP_SETPCAP          8
132 
133 /* Allow modification of S_IMMUTABLE and S_APPEND file attributes */
134 
135 #define CAP_LINUX_IMMUTABLE  9
136 
137 /* Allows binding to TCP/UDP sockets below 1024 */
138 /* Allows binding to ATM VCIs below 32 */
139 
140 #define CAP_NET_BIND_SERVICE 10
141 
142 /* Allow broadcasting, listen to multicast */
143 
144 #define CAP_NET_BROADCAST    11
145 
146 /* Allow interface configuration */
147 /* Allow administration of IP firewall, masquerading and accounting */
148 /* Allow setting debug option on sockets */
149 /* Allow modification of routing tables */
150 /* Allow setting arbitrary process / process group ownership on
151    sockets */
152 /* Allow binding to any address for transparent proxying */
153 /* Allow setting TOS (type of service) */
154 /* Allow setting promiscuous mode */
155 /* Allow clearing driver statistics */
156 /* Allow multicasting */
157 /* Allow read/write of device-specific registers */
158 /* Allow activation of ATM control sockets */
159 
160 #define CAP_NET_ADMIN        12
161 
162 /* Allow use of RAW sockets */
163 /* Allow use of PACKET sockets */
164 
165 #define CAP_NET_RAW          13
166 
167 /* Allow locking of shared memory segments */
168 /* Allow mlock and mlockall (which doesn't really have anything to do
169    with IPC) */
170 
171 #define CAP_IPC_LOCK         14
172 
173 /* Override IPC ownership checks */
174 
175 #define CAP_IPC_OWNER        15
176 
177 /* Insert and remove kernel modules - modify kernel without limit */
178 /* Modify cap_bset */
179 #define CAP_SYS_MODULE       16
180 
181 /* Allow ioperm/iopl access */
182 /* Allow sending USB messages to any device via /proc/bus/usb */
183 
184 #define CAP_SYS_RAWIO        17
185 
186 /* Allow use of chroot() */
187 
188 #define CAP_SYS_CHROOT       18
189 
190 /* Allow ptrace() of any process */
191 
192 #define CAP_SYS_PTRACE       19
193 
194 /* Allow configuration of process accounting */
195 
196 #define CAP_SYS_PACCT        20
197 
198 /* Allow configuration of the secure attention key */
199 /* Allow administration of the random device */
200 /* Allow examination and configuration of disk quotas */
201 /* Allow configuring the kernel's syslog (printk behaviour) */
202 /* Allow setting the domainname */
203 /* Allow setting the hostname */
204 /* Allow calling bdflush() */
205 /* Allow mount() and umount(), setting up new smb connection */
206 /* Allow some autofs root ioctls */
207 /* Allow nfsservctl */
208 /* Allow VM86_REQUEST_IRQ */
209 /* Allow to read/write pci config on alpha */
210 /* Allow irix_prctl on mips (setstacksize) */
211 /* Allow flushing all cache on m68k (sys_cacheflush) */
212 /* Allow removing semaphores */
213 /* Used instead of CAP_CHOWN to "chown" IPC message queues, semaphores
214    and shared memory */
215 /* Allow locking/unlocking of shared memory segment */
216 /* Allow turning swap on/off */
217 /* Allow forged pids on socket credentials passing */
218 /* Allow setting readahead and flushing buffers on block devices */
219 /* Allow setting geometry in floppy driver */
220 /* Allow turning DMA on/off in xd driver */
221 /* Allow administration of md devices (mostly the above, but some
222    extra ioctls) */
223 /* Allow tuning the ide driver */
224 /* Allow access to the nvram device */
225 /* Allow administration of apm_bios, serial and bttv (TV) device */
226 /* Allow manufacturer commands in isdn CAPI support driver */
227 /* Allow reading non-standardized portions of pci configuration space */
228 /* Allow DDI debug ioctl on sbpcd driver */
229 /* Allow setting up serial ports */
230 /* Allow sending raw qic-117 commands */
231 /* Allow enabling/disabling tagged queuing on SCSI controllers and sending
232    arbitrary SCSI commands */
233 /* Allow setting encryption key on loopback filesystem */
234 
235 #define CAP_SYS_ADMIN        21
236 
237 /* Allow use of reboot() */
238 
239 #define CAP_SYS_BOOT         22
240 
241 /* Allow raising priority and setting priority on other (different
242    UID) processes */
243 /* Allow use of FIFO and round-robin (realtime) scheduling on own
244    processes and setting the scheduling algorithm used by another
245    process. */
246 
247 #define CAP_SYS_NICE         23
248 
249 /* Override resource limits. Set resource limits. */
250 /* Override quota limits. */
251 /* Override reserved space on ext2 filesystem */
252 /* NOTE: ext2 honors fsuid when checking for resource overrides, so 
253    you can override using fsuid too */
254 /* Override size restrictions on IPC message queues */
255 /* Allow more than 64hz interrupts from the real-time clock */
256 /* Override max number of consoles on console allocation */
257 /* Override max number of keymaps */
258 
259 #define CAP_SYS_RESOURCE     24
260 
261 /* Allow manipulation of system clock */
262 /* Allow irix_stime on mips */
263 /* Allow setting the real-time clock */
264 
265 #define CAP_SYS_TIME         25
266 
267 /* Allow configuration of tty devices */
268 /* Allow vhangup() of tty */
269 
270 #define CAP_SYS_TTY_CONFIG   26
271 
272 /* Allow the privileged aspects of mknod() */
273 
274 #define CAP_MKNOD            27
275 
276 /* Allow taking of leases on files */
277 
278 #define CAP_LEASE            28
279 
280 #ifdef __KERNEL__
281 /* 
282  * Bounding set
283  */
284 extern kernel_cap_t cap_bset;
285 
286 /*
287  * Internal kernel functions only
288  */
289  
290 #ifdef STRICT_CAP_T_TYPECHECKS
291 
292 #define to_cap_t(x) { x }
293 #define cap_t(x) (x).cap
294 
295 #else
296 
297 #define to_cap_t(x) (x)
298 #define cap_t(x) (x)
299 
300 #endif
301 
302 #define CAP_EMPTY_SET       to_cap_t(0)
303 #define CAP_FULL_SET        to_cap_t(~0)
304 #define CAP_INIT_EFF_SET    to_cap_t(~0 & ~CAP_TO_MASK(CAP_SETPCAP))
305 #define CAP_INIT_INH_SET    to_cap_t(0)
306 
307 #define CAP_TO_MASK(x) (1 << (x))
308 #define cap_raise(c, flag)   (cap_t(c) |=  CAP_TO_MASK(flag))
309 #define cap_lower(c, flag)   (cap_t(c) &= ~CAP_TO_MASK(flag))
310 #define cap_raised(c, flag)  (cap_t(c) & CAP_TO_MASK(flag))
311 
312 static inline kernel_cap_t cap_combine(kernel_cap_t a, kernel_cap_t b)
313 {
314      kernel_cap_t dest;
315      cap_t(dest) = cap_t(a) | cap_t(b);
316      return dest;
317 }
318 
319 static inline kernel_cap_t cap_intersect(kernel_cap_t a, kernel_cap_t b)
320 {
321      kernel_cap_t dest;
322      cap_t(dest) = cap_t(a) & cap_t(b);
323      return dest;
324 }
325 
326 static inline kernel_cap_t cap_drop(kernel_cap_t a, kernel_cap_t drop)
327 {
328      kernel_cap_t dest;
329      cap_t(dest) = cap_t(a) & ~cap_t(drop);
330      return dest;
331 }
332 
333 static inline kernel_cap_t cap_invert(kernel_cap_t c)
334 {
335      kernel_cap_t dest;
336      cap_t(dest) = ~cap_t(c);
337      return dest;
338 }
339 
340 #define cap_isclear(c)       (!cap_t(c))
341 #define cap_issubset(a,set)  (!(cap_t(a) & ~cap_t(set)))
342 
343 #define cap_clear(c)         do { cap_t(c) =  0; } while(0)
344 #define cap_set_full(c)      do { cap_t(c) = ~0; } while(0)
345 #define cap_mask(c,mask)     do { cap_t(c) &= cap_t(mask); } while(0)
346 
347 #define cap_is_fs_cap(c)     (CAP_TO_MASK(c) & CAP_FS_MASK)
348 
349 #endif /* __KERNEL__ */
350 
351 #endif /* !_LINUX_CAPABILITY_H */
352 

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